mirror of https://github.com/vacp2p/nim-libp2p.git
289 lines
7.6 KiB
Nim
289 lines
7.6 KiB
Nim
## Nim-LibP2P
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## Copyright (c) 2019 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 oids, deques
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import chronos, chronicles, metrics
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import types,
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coder,
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../muxer,
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nimcrypto/utils,
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../../stream/connection,
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../../stream/bufferstream,
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../../peerinfo
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export connection
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logScope:
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topics = "mplexchannel"
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## Channel half-closed states
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##
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## | State | Closed local | Closed remote
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## |=============================================
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## | Read | Yes (until EOF) | No
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## | Write | No | Yes
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##
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# TODO: this is one place where we need to use
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# a proper state machine, but I've opted out of
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# it for now for two reasons:
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#
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# 1) we don't have that many states to manage
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# 2) I'm not sure if adding the state machine
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# would have simplified or complicated the code
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#
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# But now that this is in place, we should perhaps
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# reconsider reworking it again, this time with a
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# more formal approach.
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#
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type
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LPChannel* = ref object of BufferStream
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id*: uint64 # channel id
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name*: string # name of the channel (for debugging)
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conn*: Connection # wrapped connection used to for writing
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initiator*: bool # initiated remotely or locally flag
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isLazy*: bool # is channel lazy
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isOpen*: bool # has channel been opened (only used with isLazy)
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closedLocal*: bool # has channel been closed locally
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msgCode*: MessageType # cached in/out message code
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closeCode*: MessageType # cached in/out close code
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resetCode*: MessageType # cached in/out reset code
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proc open*(s: LPChannel) {.async, gcsafe.}
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template withWriteLock(lock: AsyncLock, body: untyped): untyped =
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try:
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await lock.acquire()
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body
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finally:
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if not(isNil(lock)) and lock.locked:
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lock.release()
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template withEOFExceptions(body: untyped): untyped =
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try:
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body
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except LPStreamEOFError as exc:
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trace "muxed connection EOF", exc = exc.msg
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except LPStreamClosedError as exc:
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trace "muxed connection closed", exc = exc.msg
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except LPStreamIncompleteError as exc:
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trace "incomplete message", exc = exc.msg
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proc closeMessage(s: LPChannel) {.async.} =
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logScope:
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id = s.id
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initiator = s.initiator
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name = s.name
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oid = $s.oid
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peer = $s.conn.peerInfo
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# stack = getStackTrace()
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## send close message - this will not raise
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## on EOF or Closed
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withWriteLock(s.writeLock):
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trace "sending close message"
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await s.conn.writeMsg(s.id, s.closeCode) # write close
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proc resetMessage(s: LPChannel) {.async.} =
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logScope:
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id = s.id
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initiator = s.initiator
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name = s.name
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oid = $s.oid
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peer = $s.conn.peerInfo
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# stack = getStackTrace()
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## send reset message - this will not raise
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withEOFExceptions:
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withWriteLock(s.writeLock):
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trace "sending reset message"
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await s.conn.writeMsg(s.id, s.resetCode) # write reset
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proc open*(s: LPChannel) {.async, gcsafe.} =
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logScope:
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id = s.id
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initiator = s.initiator
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name = s.name
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oid = $s.oid
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peer = $s.conn.peerInfo
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# stack = getStackTrace()
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## NOTE: Don't call withExcAndLock or withWriteLock,
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## because this already gets called from writeHandler
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## which is locked
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await s.conn.writeMsg(s.id, MessageType.New, s.name)
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trace "opened channel"
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s.isOpen = true
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proc closeRemote*(s: LPChannel) {.async.} =
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logScope:
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id = s.id
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initiator = s.initiator
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name = s.name
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oid = $s.oid
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peer = $s.conn.peerInfo
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# stack = getStackTrace()
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trace "got EOF, closing channel"
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try:
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await s.drainBuffer()
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s.isEof = true # set EOF immediately to prevent further reads
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await s.close() # close local end
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# call to avoid leaks
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await procCall BufferStream(s).close() # close parent bufferstream
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trace "channel closed on EOF"
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except CancelledError as exc:
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raise exc
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except CatchableError as exc:
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trace "exception closing remote channel", exc = exc.msg
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method closed*(s: LPChannel): bool =
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## this emulates half-closed behavior
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## when closed locally writing is
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## disabled - see the table in the
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## header of the file
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s.closedLocal
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method reset*(s: LPChannel) {.base, async, gcsafe.} =
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logScope:
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id = s.id
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initiator = s.initiator
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name = s.name
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oid = $s.oid
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peer = $s.conn.peerInfo
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# stack = getStackTrace()
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if s.closedLocal and s.isEof:
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trace "channel already closed or reset"
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return
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trace "resetting channel"
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# we asyncCheck here because the other end
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# might be dead already - reset is always
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# optimistic
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asyncCheck s.resetMessage()
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try:
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# drain the buffer before closing
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await s.drainBuffer()
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await procCall BufferStream(s).close()
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s.isEof = true
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s.closedLocal = true
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except CancelledError as exc:
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raise exc
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except CatchableError as exc:
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trace "exception in reset", exc = exc.msg
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trace "channel reset"
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method close*(s: LPChannel) {.async, gcsafe.} =
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logScope:
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id = s.id
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initiator = s.initiator
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name = s.name
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oid = $s.oid
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peer = $s.conn.peerInfo
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# stack = getStackTrace()
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if s.closedLocal:
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trace "channel already closed"
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return
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trace "closing local lpchannel"
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proc closeInternal() {.async.} =
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try:
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await s.closeMessage().wait(2.minutes)
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if s.atEof: # already closed by remote close parent buffer immediately
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await procCall BufferStream(s).close()
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except CancelledError as exc:
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await s.reset()
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raise exc
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except CatchableError as exc:
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trace "exception closing channel", exc = exc.msg
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await s.reset()
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trace "lpchannel closed local"
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s.closedLocal = true
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asyncCheck closeInternal()
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method initStream*(s: LPChannel) =
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if s.objName.len == 0:
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s.objName = "LPChannel"
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s.timeoutHandler = proc() {.async, gcsafe.} =
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trace "idle timeout expired, resetting LPChannel"
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await s.reset()
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procCall BufferStream(s).initStream()
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proc init*(
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L: type LPChannel,
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id: uint64,
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conn: Connection,
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initiator: bool,
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name: string = "",
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size: int = DefaultBufferSize,
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lazy: bool = false,
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timeout: Duration = DefaultChanTimeout): LPChannel =
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let chann = L(
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id: id,
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name: name,
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conn: conn,
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initiator: initiator,
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isLazy: lazy,
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timeout: timeout,
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msgCode: if initiator: MessageType.MsgOut else: MessageType.MsgIn,
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closeCode: if initiator: MessageType.CloseOut else: MessageType.CloseIn,
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resetCode: if initiator: MessageType.ResetOut else: MessageType.ResetIn,
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dir: if initiator: Direction.Out else: Direction.In)
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logScope:
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id = chann.id
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initiator = chann.initiator
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name = chann.name
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oid = $chann.oid
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peer = $chann.conn.peerInfo
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# stack = getStackTrace()
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proc writeHandler(data: seq[byte]) {.async, gcsafe.} =
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try:
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if chann.isLazy and not(chann.isOpen):
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await chann.open()
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# writes should happen in sequence
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trace "sending data"
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await conn.writeMsg(chann.id,
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chann.msgCode,
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data)
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except CatchableError as exc:
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trace "exception in lpchannel write handler", exc = exc.msg
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await chann.reset()
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raise exc
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chann.initBufferStream(writeHandler, size)
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when chronicles.enabledLogLevel == LogLevel.TRACE:
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chann.name = if chann.name.len > 0: chann.name else: $chann.oid
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trace "created new lpchannel"
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return chann
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