462 lines
13 KiB
Nim
462 lines
13 KiB
Nim
## Nim-LibP2P
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## Copyright (c) 2020 Status Research & Development GmbH
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## Licensed under either of
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## * Apache License, version 2.0, ([LICENSE-APACHE](LICENSE-APACHE))
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## * MIT license ([LICENSE-MIT](LICENSE-MIT))
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## at your option.
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## This file may not be copied, modified, or distributed except according to
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## those terms.
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import std/[options, tables, sequtils, sets]
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import chronos, chronicles, metrics
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import peerinfo,
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stream/connection,
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muxers/muxer,
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errors
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logScope:
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topics = "libp2p connmanager"
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declareGauge(libp2p_peers, "total connected peers")
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const MaxConnectionsPerPeer = 5
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type
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TooManyConnections* = object of CatchableError
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ConnEventKind* {.pure.} = enum
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Connected, # A connection was made and securely upgraded - there may be
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# more than one concurrent connection thus more than one upgrade
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# event per peer.
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Disconnected # Peer disconnected - this event is fired once per upgrade
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# when the associated connection is terminated.
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ConnEvent* = object
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case kind*: ConnEventKind
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of ConnEventKind.Connected:
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incoming*: bool
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else:
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discard
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ConnEventHandler* =
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proc(peerId: PeerID, event: ConnEvent): Future[void] {.gcsafe.}
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PeerEventKind* {.pure.} = enum
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Left,
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Joined
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PeerEvent* = object
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case kind*: PeerEventKind
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of PeerEventKind.Joined:
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initiator*: bool
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else:
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discard
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PeerEventHandler* =
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proc(peerId: PeerID, event: PeerEvent): Future[void] {.gcsafe.}
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MuxerHolder = object
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muxer: Muxer
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handle: Future[void]
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ConnManager* = ref object of RootObj
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maxConns: int
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# NOTE: don't change to PeerInfo here
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# the reference semantics on the PeerInfo
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# object itself make it susceptible to
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# copies and mangling by unrelated code.
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conns: Table[PeerID, HashSet[Connection]]
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muxed: Table[Connection, MuxerHolder]
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connEvents: Table[ConnEventKind, OrderedSet[ConnEventHandler]]
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peerEvents: Table[PeerEventKind, OrderedSet[PeerEventHandler]]
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proc newTooManyConnections(): ref TooManyConnections {.inline.} =
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result = newException(TooManyConnections, "too many connections for peer")
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proc init*(C: type ConnManager,
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maxConnsPerPeer: int = MaxConnectionsPerPeer): ConnManager =
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C(maxConns: maxConnsPerPeer,
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conns: initTable[PeerID, HashSet[Connection]](),
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muxed: initTable[Connection, MuxerHolder]())
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proc connCount*(c: ConnManager, peerId: PeerID): int =
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c.conns.getOrDefault(peerId).len
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proc addConnEventHandler*(c: ConnManager,
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handler: ConnEventHandler,
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kind: ConnEventKind) =
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## Add peer event handler - handlers must not raise exceptions!
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##
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if isNil(handler): return
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c.connEvents.mgetOrPut(kind,
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initOrderedSet[ConnEventHandler]()).incl(handler)
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proc removeConnEventHandler*(c: ConnManager,
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handler: ConnEventHandler,
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kind: ConnEventKind) =
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c.connEvents.withValue(kind, handlers) do:
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handlers[].excl(handler)
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proc triggerConnEvent*(c: ConnManager,
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peerId: PeerID,
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event: ConnEvent) {.async, gcsafe.} =
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try:
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if event.kind in c.connEvents:
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var connEvents: seq[Future[void]]
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for h in c.connEvents[event.kind]:
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connEvents.add(h(peerId, event))
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checkFutures(await allFinished(connEvents))
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except CancelledError as exc:
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raise exc
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except CatchableError as exc: # handlers should not raise!
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warn "Exception in triggerConnEvents",
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msg = exc.msg, peerId, event = $event
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proc addPeerEventHandler*(c: ConnManager,
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handler: PeerEventHandler,
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kind: PeerEventKind) =
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## Add peer event handler - handlers must not raise exceptions!
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##
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if isNil(handler): return
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c.peerEvents.mgetOrPut(kind,
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initOrderedSet[PeerEventHandler]()).incl(handler)
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proc removePeerEventHandler*(c: ConnManager,
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handler: PeerEventHandler,
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kind: PeerEventKind) =
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c.peerEvents.withValue(kind, handlers) do:
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handlers[].excl(handler)
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proc triggerPeerEvents*(c: ConnManager,
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peerId: PeerID,
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event: PeerEvent) {.async, gcsafe.} =
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trace "About to trigger peer events", peer = peerId
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if event.kind notin c.peerEvents:
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return
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try:
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let count = c.connCount(peerId)
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if event.kind == PeerEventKind.Joined and count != 1:
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trace "peer already joined", peerId, event = $event
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return
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elif event.kind == PeerEventKind.Left and count != 0:
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trace "peer still connected or already left", peerId, event = $event
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return
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trace "triggering peer events", peerId, event = $event
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var peerEvents: seq[Future[void]]
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for h in c.peerEvents[event.kind]:
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peerEvents.add(h(peerId, event))
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checkFutures(await allFinished(peerEvents))
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except CancelledError as exc:
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raise exc
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except CatchableError as exc: # handlers should not raise!
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warn "Exception in triggerPeerEvents", exc = exc.msg, peerId
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proc contains*(c: ConnManager, conn: Connection): bool =
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## checks if a connection is being tracked by the
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## connection manager
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##
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if isNil(conn):
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return
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if isNil(conn.peerInfo):
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return
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return conn in c.conns.getOrDefault(conn.peerInfo.peerId)
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proc contains*(c: ConnManager, peerId: PeerID): bool =
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peerId in c.conns
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proc contains*(c: ConnManager, muxer: Muxer): bool =
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## checks if a muxer is being tracked by the connection
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## manager
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##
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if isNil(muxer):
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return
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let conn = muxer.connection
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if conn notin c:
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return
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if conn notin c.muxed:
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return
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return muxer == c.muxed[conn].muxer
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proc closeMuxerHolder(muxerHolder: MuxerHolder) {.async.} =
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trace "Cleaning up muxer", m = muxerHolder.muxer
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await muxerHolder.muxer.close()
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if not(isNil(muxerHolder.handle)):
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await muxerHolder.handle # TODO noraises?
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trace "Cleaned up muxer", m = muxerHolder.muxer
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proc delConn(c: ConnManager, conn: Connection) =
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let peerId = conn.peerInfo.peerId
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if peerId in c.conns:
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c.conns[peerId].excl(conn)
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if c.conns[peerId].len == 0:
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c.conns.del(peerId)
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libp2p_peers.set(c.conns.len.int64)
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trace "Removed connection", conn
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proc cleanupConn(c: ConnManager, conn: Connection) {.async.} =
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## clean connection's resources such as muxers and streams
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if isNil(conn):
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return
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if isNil(conn.peerInfo):
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return
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# Remove connection from all tables without async breaks
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var muxer = some(MuxerHolder())
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if not c.muxed.pop(conn, muxer.get()):
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muxer = none(MuxerHolder)
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delConn(c, conn)
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try:
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if muxer.isSome:
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await closeMuxerHolder(muxer.get())
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finally:
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await conn.close()
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trace "Connection cleaned up", conn
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proc peerStartup(c: ConnManager, conn: Connection) {.async.} =
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try:
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trace "Triggering connect events", conn
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let peerId = conn.peerInfo.peerId
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await c.triggerPeerEvents(
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peerId, PeerEvent(kind: PeerEventKind.Joined, initiator: conn.dir == Direction.Out))
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await c.triggerConnEvent(
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peerId, ConnEvent(kind: ConnEventKind.Connected, incoming: conn.dir == Direction.In))
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except CatchableError as exc:
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# This is top-level procedure which will work as separate task, so it
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# do not need to propagate CancelledError and should handle other errors
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warn "Unexpected exception in switch peer connection cleanup",
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conn, msg = exc.msg
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proc peerCleanup(c: ConnManager, conn: Connection) {.async.} =
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try:
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trace "Triggering disconnect events", conn
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let peerId = conn.peerInfo.peerId
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await c.triggerConnEvent(
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peerId, ConnEvent(kind: ConnEventKind.Disconnected))
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await c.triggerPeerEvents(peerId, PeerEvent(kind: PeerEventKind.Left))
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except CatchableError as exc:
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# This is top-level procedure which will work as separate task, so it
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# do not need to propagate CancelledError and should handle other errors
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warn "Unexpected exception peer cleanup handler",
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conn, msg = exc.msg
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proc onClose(c: ConnManager, conn: Connection) {.async.} =
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## connection close even handler
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##
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## triggers the connections resource cleanup
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##
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try:
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await conn.join()
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trace "Connection closed, cleaning up", conn
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await c.cleanupConn(conn)
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except CancelledError:
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# This is top-level procedure which will work as separate task, so it
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# do not need to propagate CancelledError.
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debug "Unexpected cancellation in connection manager's cleanup", conn
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except CatchableError as exc:
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debug "Unexpected exception in connection manager's cleanup",
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errMsg = exc.msg, conn
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finally:
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trace "Triggering peerCleanup", conn
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asyncSpawn c.peerCleanup(conn)
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proc selectConn*(c: ConnManager,
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peerId: PeerID,
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dir: Direction): Connection =
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## Select a connection for the provided peer and direction
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##
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let conns = toSeq(
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c.conns.getOrDefault(peerId))
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.filterIt( it.dir == dir )
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if conns.len > 0:
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return conns[0]
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proc selectConn*(c: ConnManager, peerId: PeerID): Connection =
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## Select a connection for the provided giving priority
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## to outgoing connections
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##
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var conn = c.selectConn(peerId, Direction.Out)
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if isNil(conn):
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conn = c.selectConn(peerId, Direction.In)
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if isNil(conn):
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trace "connection not found", peerId
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return conn
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proc selectMuxer*(c: ConnManager, conn: Connection): Muxer =
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## select the muxer for the provided connection
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##
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if isNil(conn):
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return
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if conn in c.muxed:
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return c.muxed[conn].muxer
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else:
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debug "no muxer for connection", conn
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proc storeConn*(c: ConnManager, conn: Connection) =
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## store a connection
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##
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if isNil(conn):
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raise newException(CatchableError, "connection cannot be nil")
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if conn.closed() or conn.atEof():
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trace "Can't store dead connection", conn
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raise newException(CatchableError, "can't store dead connection")
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if isNil(conn.peerInfo):
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raise newException(CatchableError, "empty peer info")
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let peerId = conn.peerInfo.peerId
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if c.conns.getOrDefault(peerId).len > c.maxConns:
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debug "too many connections",
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conn, conns = c.conns.getOrDefault(peerId).len
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raise newTooManyConnections()
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if peerId notin c.conns:
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c.conns[peerId] = initHashSet[Connection]()
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c.conns[peerId].incl(conn)
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# Launch on close listener
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# All the errors are handled inside `onClose()` procedure.
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asyncSpawn c.onClose(conn)
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libp2p_peers.set(c.conns.len.int64)
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trace "Stored connection",
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conn, direction = $conn.dir, connections = c.conns.len
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proc storeOutgoing*(c: ConnManager, conn: Connection) =
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conn.dir = Direction.Out
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c.storeConn(conn)
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proc storeIncoming*(c: ConnManager, conn: Connection) =
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conn.dir = Direction.In
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c.storeConn(conn)
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proc storeMuxer*(c: ConnManager,
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muxer: Muxer,
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handle: Future[void] = nil) =
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## store the connection and muxer
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##
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if isNil(muxer):
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raise newException(CatchableError, "muxer cannot be nil")
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if isNil(muxer.connection):
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raise newException(CatchableError, "muxer's connection cannot be nil")
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if muxer.connection notin c:
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raise newException(CatchableError, "cant add muxer for untracked connection")
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c.muxed[muxer.connection] = MuxerHolder(
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muxer: muxer,
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handle: handle)
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trace "Stored muxer",
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muxer, handle = not handle.isNil, connections = c.conns.len
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asyncSpawn c.peerStartup(muxer.connection)
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proc getStream*(c: ConnManager,
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peerId: PeerID,
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dir: Direction): Future[Connection] {.async, gcsafe.} =
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## get a muxed stream for the provided peer
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## with the given direction
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##
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let muxer = c.selectMuxer(c.selectConn(peerId, dir))
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if not(isNil(muxer)):
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return await muxer.newStream()
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proc getStream*(c: ConnManager,
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peerId: PeerID): Future[Connection] {.async, gcsafe.} =
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## get a muxed stream for the passed peer from any connection
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##
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let muxer = c.selectMuxer(c.selectConn(peerId))
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if not(isNil(muxer)):
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return await muxer.newStream()
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proc getStream*(c: ConnManager,
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conn: Connection): Future[Connection] {.async, gcsafe.} =
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## get a muxed stream for the passed connection
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##
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let muxer = c.selectMuxer(conn)
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if not(isNil(muxer)):
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return await muxer.newStream()
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proc dropPeer*(c: ConnManager, peerId: PeerID) {.async.} =
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## drop connections and cleanup resources for peer
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##
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trace "Dropping peer", peerId
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let conns = c.conns.getOrDefault(peerId)
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for conn in conns:
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trace "Removing connection", conn
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delConn(c, conn)
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var muxers: seq[MuxerHolder]
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for conn in conns:
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if conn in c.muxed:
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muxers.add c.muxed[conn]
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c.muxed.del(conn)
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for muxer in muxers:
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await closeMuxerHolder(muxer)
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for conn in conns:
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await conn.close()
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trace "Dropped peer", peerId
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trace "Peer dropped", peerId
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proc close*(c: ConnManager) {.async.} =
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## cleanup resources for the connection
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## manager
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##
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trace "Closing ConnManager"
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let conns = c.conns
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c.conns.clear()
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let muxed = c.muxed
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c.muxed.clear()
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for _, muxer in muxed:
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await closeMuxerHolder(muxer)
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for _, conns2 in conns:
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for conn in conns2:
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await conn.close()
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trace "Closed ConnManager"
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