255 lines
7.4 KiB
Nim
255 lines
7.4 KiB
Nim
# Nim-LibP2P
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# Copyright (c) 2023-2024 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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{.push raises: [].}
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import tables, sequtils, oids
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import chronos, chronicles, stew/byteutils, metrics
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import
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../muxer,
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../../stream/connection,
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../../stream/bufferstream,
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../../utility,
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../../peerinfo,
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./coder,
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./lpchannel
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export muxer
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logScope:
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topics = "libp2p mplex"
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const MplexCodec* = "/mplex/6.7.0"
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const MaxChannelCount = 200
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when defined(libp2p_expensive_metrics):
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declareGauge(libp2p_mplex_channels, "mplex channels", labels = ["initiator", "peer"])
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type
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InvalidChannelIdError* = object of MuxerError
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Mplex* = ref object of Muxer
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channels: array[bool, Table[uint64, LPChannel]]
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currentId: uint64
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inChannTimeout: Duration
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outChannTimeout: Duration
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isClosed: bool
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oid*: Oid
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maxChannCount: int
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func shortLog*(m: Mplex): auto =
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shortLog(m.connection)
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chronicles.formatIt(Mplex):
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shortLog(it)
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proc newTooManyChannels(): ref TooManyChannels =
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newException(TooManyChannels, "max allowed channel count exceeded")
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proc newInvalidChannelIdError(): ref InvalidChannelIdError =
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newException(InvalidChannelIdError, "max allowed channel count exceeded")
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proc cleanupChann(m: Mplex, chann: LPChannel) {.async: (raises: []), inline.} =
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## remove the local channel from the internal tables
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##
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try:
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await chann.join()
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m.channels[chann.initiator].del(chann.id)
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trace "cleaned up channel", m, chann
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when defined(libp2p_expensive_metrics):
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libp2p_mplex_channels.set(
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m.channels[chann.initiator].len.int64,
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labelValues = [$chann.initiator, $m.connection.peerId],
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)
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except CancelledError as exc:
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warn "Error cleaning up mplex channel", m, chann, description = exc.msg
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proc newStreamInternal*(
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m: Mplex,
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initiator: bool = true,
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chanId: uint64 = 0,
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name: string = "",
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timeout: Duration,
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): LPChannel {.gcsafe, raises: [InvalidChannelIdError].} =
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## create new channel/stream
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##
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let id =
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if initiator:
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m.currentId.inc()
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m.currentId
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else:
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chanId
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if id in m.channels[initiator]:
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raise newInvalidChannelIdError()
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result = LPChannel.init(id, m.connection, initiator, name, timeout = timeout)
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result.peerId = m.connection.peerId
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result.observedAddr = m.connection.observedAddr
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result.transportDir = m.connection.transportDir
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when defined(libp2p_agents_metrics):
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result.shortAgent = m.connection.shortAgent
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trace "Creating new channel", m, channel = result, id, initiator, name
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m.channels[initiator][id] = result
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# All the errors are handled inside `cleanupChann()` procedure.
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asyncSpawn m.cleanupChann(result)
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when defined(libp2p_expensive_metrics):
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libp2p_mplex_channels.set(
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m.channels[initiator].len.int64, labelValues = [$initiator, $m.connection.peerId]
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)
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proc handleStream(m: Mplex, chann: LPChannel) {.async: (raises: []).} =
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## call the muxer stream handler for this channel
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##
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await m.streamHandler(chann)
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trace "finished handling stream", m, chann
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doAssert(chann.closed, "connection not closed by handler!")
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method handle*(m: Mplex) {.async: (raises: []).} =
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trace "Starting mplex handler", m
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try:
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while not m.connection.atEof:
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trace "waiting for data", m
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let
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(id, msgType, data) = await m.connection.readMsg()
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initiator = bool(ord(msgType) and 1)
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logScope:
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id = id
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initiator = initiator
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msgType = msgType
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size = data.len
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trace "read message from connection", m, data = data.shortLog
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var channel =
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if MessageType(msgType) != MessageType.New:
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let tmp = m.channels[initiator].getOrDefault(id, nil)
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if tmp == nil:
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trace "Channel not found, skipping", m
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continue
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tmp
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else:
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if m.channels[false].len > m.maxChannCount - 1:
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warn "too many channels created by remote peer",
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allowedMax = MaxChannelCount, m
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raise newTooManyChannels()
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let name = string.fromBytes(data)
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m.newStreamInternal(false, id, name, timeout = m.outChannTimeout)
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trace "Processing channel message", m, channel, data = data.shortLog
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case msgType
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of MessageType.New:
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trace "created channel", m, channel
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if m.streamHandler != nil:
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# Launch handler task
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# All the errors are handled inside `handleStream()` procedure.
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asyncSpawn m.handleStream(channel)
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of MessageType.MsgIn, MessageType.MsgOut:
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if data.len > MaxMsgSize:
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warn "attempting to send a packet larger than allowed",
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allowed = MaxMsgSize, channel
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raise newLPStreamLimitError()
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trace "pushing data to channel", m, channel, len = data.len
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try:
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await channel.pushData(data)
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trace "pushed data to channel", m, channel, len = data.len
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except LPStreamClosedError as exc:
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# Channel is being closed, but `cleanupChann` was not yet triggered.
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trace "pushing data to channel failed",
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m, channel, len = data.len, description = exc.msg
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discard # Ignore message, same as if `cleanupChann` had completed.
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of MessageType.CloseIn, MessageType.CloseOut:
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await channel.pushEof()
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of MessageType.ResetIn, MessageType.ResetOut:
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channel.remoteReset = true
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await channel.reset()
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except CancelledError:
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debug "Unexpected cancellation in mplex handler", m
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except LPStreamEOFError as exc:
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trace "Stream EOF", m, description = exc.msg
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except LPStreamError as exc:
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debug "Unexpected stream exception in mplex read loop", m, description = exc.msg
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except MuxerError as exc:
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debug "Unexpected muxer exception in mplex read loop", m, description = exc.msg
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finally:
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await m.close()
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trace "Stopped mplex handler", m
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proc new*(
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M: type Mplex,
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conn: Connection,
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inTimeout: Duration = DefaultChanTimeout,
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outTimeout: Duration = DefaultChanTimeout,
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maxChannCount: int = MaxChannelCount,
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): Mplex =
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M(
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connection: conn,
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inChannTimeout: inTimeout,
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outChannTimeout: outTimeout,
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oid: genOid(),
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maxChannCount: maxChannCount,
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)
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method newStream*(
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m: Mplex, name: string = "", lazy: bool = false
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): Future[Connection] {.async: (raises: [CancelledError, LPStreamError, MuxerError]).} =
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let channel = m.newStreamInternal(timeout = m.inChannTimeout)
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if not lazy:
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await channel.open()
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return Connection(channel)
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method close*(m: Mplex) {.async: (raises: []).} =
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if m.isClosed:
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trace "Already closed", m
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return
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m.isClosed = true
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trace "Closing mplex", m
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var channs = toSeq(m.channels[false].values) & toSeq(m.channels[true].values)
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for chann in channs:
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await chann.close()
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await m.connection.close()
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# TODO while we're resetting, new channels may be created that will not be
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# closed properly
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channs = toSeq(m.channels[false].values) & toSeq(m.channels[true].values)
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for chann in channs:
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await chann.reset()
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m.channels[false].clear()
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m.channels[true].clear()
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trace "Closed mplex", m
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method getStreams*(m: Mplex): seq[Connection] =
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for c in m.channels[false].values:
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result.add(c)
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for c in m.channels[true].values:
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result.add(c)
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