218 lines
6.6 KiB
Nim
218 lines
6.6 KiB
Nim
# Nim-LibP2P
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# Copyright (c) 2022 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: [Defect].}
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import std/[strutils, sequtils]
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import chronos, chronicles, stew/byteutils
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import stream/connection,
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protocols/protocol
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logScope:
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topics = "libp2p multistream"
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const
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MsgSize* = 64*1024
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Codec* = "/multistream/1.0.0"
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MSCodec* = "\x13" & Codec & "\n"
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Na* = "\x03na\n"
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Ls* = "\x03ls\n"
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type
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Matcher* = proc (proto: string): bool {.gcsafe, raises: [Defect].}
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MultiStreamError* = object of LPError
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HandlerHolder* = object
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protos*: seq[string]
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protocol*: LPProtocol
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match*: Matcher
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MultistreamSelect* = ref object of RootObj
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handlers*: seq[HandlerHolder]
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codec*: string
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proc new*(T: typedesc[MultistreamSelect]): T =
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T(codec: MSCodec)
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template validateSuffix(str: string): untyped =
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if str.endsWith("\n"):
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str.removeSuffix("\n")
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else:
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raise newException(MultiStreamError, "MultistreamSelect failed, malformed message")
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proc select*(m: MultistreamSelect,
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conn: Connection,
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proto: seq[string]):
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Future[string] {.async.} =
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trace "initiating handshake", conn, codec = m.codec
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## select a remote protocol
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await conn.write(m.codec) # write handshake
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if proto.len() > 0:
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trace "selecting proto", conn, proto = proto[0]
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await conn.writeLp((proto[0] & "\n")) # select proto
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var s = string.fromBytes((await conn.readLp(MsgSize))) # read ms header
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validateSuffix(s)
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if s != Codec:
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notice "handshake failed", conn, codec = s
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raise newException(MultiStreamError, "MultistreamSelect handshake failed")
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else:
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trace "multistream handshake success", conn
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if proto.len() == 0: # no protocols, must be a handshake call
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return Codec
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else:
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s = string.fromBytes(await conn.readLp(MsgSize)) # read the first proto
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validateSuffix(s)
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trace "reading first requested proto", conn
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if s == proto[0]:
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trace "successfully selected ", conn, proto = proto[0]
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conn.protocol = proto[0]
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return proto[0]
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elif proto.len > 1:
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# Try to negotiate alternatives
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let protos = proto[1..<proto.len()]
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trace "selecting one of several protos", conn, protos = protos
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for p in protos:
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trace "selecting proto", conn, proto = p
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await conn.writeLp((p & "\n")) # select proto
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s = string.fromBytes(await conn.readLp(MsgSize)) # read the first proto
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validateSuffix(s)
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if s == p:
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trace "selected protocol", conn, protocol = s
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conn.protocol = s
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return s
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return ""
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else:
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# No alternatives, fail
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return ""
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proc select*(m: MultistreamSelect,
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conn: Connection,
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proto: string): Future[bool] {.async.} =
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if proto.len > 0:
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return (await m.select(conn, @[proto])) == proto
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else:
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return (await m.select(conn, @[])) == Codec
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proc select*(m: MultistreamSelect, conn: Connection): Future[bool] =
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m.select(conn, "")
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proc list*(m: MultistreamSelect,
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conn: Connection): Future[seq[string]] {.async.} =
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## list remote protos requests on connection
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if not await m.select(conn):
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return
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await conn.write(Ls) # send ls
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var list = newSeq[string]()
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let ms = string.fromBytes(await conn.readLp(MsgSize))
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for s in ms.split("\n"):
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if s.len() > 0:
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list.add(s)
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result = list
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proc handle*(m: MultistreamSelect, conn: Connection, active: bool = false) {.async, gcsafe.} =
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trace "Starting multistream handler", conn, handshaked = active
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var handshaked = active
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try:
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while not conn.atEof:
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var ms = string.fromBytes(await conn.readLp(MsgSize))
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validateSuffix(ms)
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if not handshaked and ms != Codec:
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notice "expected handshake message", conn, instead=ms
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raise newException(CatchableError,
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"MultistreamSelect handling failed, invalid first message")
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trace "handle: got request", conn, ms
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if ms.len() <= 0:
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trace "handle: invalid proto", conn
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await conn.write(Na)
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if m.handlers.len() == 0:
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trace "handle: sending `na` for protocol", conn, protocol = ms
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await conn.write(Na)
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continue
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case ms:
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of "ls":
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trace "handle: listing protos", conn
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var protos = ""
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for h in m.handlers:
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for proto in h.protos:
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protos &= (proto & "\n")
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await conn.writeLp(protos)
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of Codec:
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if not handshaked:
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await conn.write(m.codec)
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handshaked = true
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else:
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trace "handle: sending `na` for duplicate handshake while handshaked",
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conn
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await conn.write(Na)
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else:
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for h in m.handlers:
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if (not isNil(h.match) and h.match(ms)) or h.protos.contains(ms):
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trace "found handler", conn, protocol = ms
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await conn.writeLp(ms & "\n")
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conn.protocol = ms
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await h.protocol.handler(conn, ms)
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return
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debug "no handlers", conn, protocol = ms
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await conn.write(Na)
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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 multistream", conn, msg = exc.msg
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finally:
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await conn.close()
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trace "Stopped multistream handler", conn
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proc addHandler*(m: MultistreamSelect,
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codecs: seq[string],
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protocol: LPProtocol,
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matcher: Matcher = nil) =
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trace "registering protocols", protos = codecs
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m.handlers.add(HandlerHolder(protos: codecs,
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protocol: protocol,
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match: matcher))
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proc addHandler*(m: MultistreamSelect,
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codec: string,
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protocol: LPProtocol,
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matcher: Matcher = nil) =
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addHandler(m, @[codec], protocol, matcher)
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proc addHandler*(m: MultistreamSelect,
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codec: string,
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handler: LPProtoHandler,
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matcher: Matcher = nil) =
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## helper to allow registering pure handlers
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trace "registering proto handler", proto = codec
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let protocol = new LPProtocol
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protocol.codec = codec
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protocol.handler = handler
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m.handlers.add(HandlerHolder(protos: @[codec],
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protocol: protocol,
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match: matcher))
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proc start*(m: MultistreamSelect) {.async.} =
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await allFutures(m.handlers.mapIt(it.protocol.start()))
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proc stop*(m: MultistreamSelect) {.async.} =
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await allFutures(m.handlers.mapIt(it.protocol.stop()))
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