Split upgrade flow (#507)
* splitting upgrade flow * bring back master changes * re-export `Upgrade` * export public methods/procs in derived class * style fixes
This commit is contained in:
parent
34e330353f
commit
96c01e5e69
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@ -19,6 +19,7 @@ import chronos,
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import stream/connection,
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transports/transport,
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upgrademngrs/[upgrade, muxedupgrade],
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multistream,
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multiaddress,
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protocols/protocol,
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@ -31,7 +32,7 @@ import stream/connection,
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peerid,
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errors
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export connmanager
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export connmanager, upgrade
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logScope:
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topics = "libp2p switch"
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@ -52,21 +53,16 @@ const
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ConcurrentUpgrades* = 4
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type
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UpgradeFailedError* = object of CatchableError
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DialFailedError* = object of CatchableError
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Switch* = ref object of RootObj
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peerInfo*: PeerInfo
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connManager*: ConnManager
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transports*: seq[Transport]
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protocols*: seq[LPProtocol]
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muxers*: Table[string, MuxerProvider]
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ms*: MultistreamSelect
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identity*: Identify
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streamHandler*: StreamHandler
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secureManagers*: seq[Secure]
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dialLock: Table[PeerID, AsyncLock]
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acceptFuts: seq[Future[void]]
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upgrade: Upgrade
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proc addConnEventHandler*(s: Switch,
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handler: ConnEventHandler,
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@ -97,178 +93,9 @@ proc isConnected*(s: Switch, peerId: PeerID): bool =
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peerId in s.connManager
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proc secure(s: Switch, conn: Connection): Future[Connection] {.async, gcsafe.} =
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if s.secureManagers.len <= 0:
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raise newException(UpgradeFailedError, "No secure managers registered!")
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let codec = await s.ms.select(conn, s.secureManagers.mapIt(it.codec))
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if codec.len == 0:
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raise newException(UpgradeFailedError, "Unable to negotiate a secure channel!")
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trace "Securing connection", conn, codec
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let secureProtocol = s.secureManagers.filterIt(it.codec == codec)
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# ms.select should deal with the correctness of this
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# let's avoid duplicating checks but detect if it fails to do it properly
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doAssert(secureProtocol.len > 0)
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return await secureProtocol[0].secure(conn, true)
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proc identify(s: Switch, conn: Connection) {.async, gcsafe.} =
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## identify the connection
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if (await s.ms.select(conn, s.identity.codec)):
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let info = await s.identity.identify(conn, conn.peerInfo)
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if info.pubKey.isNone and isNil(conn):
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raise newException(UpgradeFailedError,
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"no public key provided and no existing peer identity found")
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if isNil(conn.peerInfo):
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conn.peerInfo = PeerInfo.init(info.pubKey.get())
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if info.addrs.len > 0:
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conn.peerInfo.addrs = info.addrs
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if info.agentVersion.isSome:
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conn.peerInfo.agentVersion = info.agentVersion.get()
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if info.protoVersion.isSome:
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conn.peerInfo.protoVersion = info.protoVersion.get()
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if info.protos.len > 0:
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conn.peerInfo.protocols = info.protos
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trace "identified remote peer", conn, peerInfo = shortLog(conn.peerInfo)
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proc identify(s: Switch, muxer: Muxer) {.async, gcsafe.} =
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# new stream for identify
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var stream = await muxer.newStream()
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if stream == nil:
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return
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try:
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await s.identify(stream)
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finally:
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await stream.closeWithEOF()
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proc mux(s: Switch, conn: Connection): Future[Muxer] {.async, gcsafe.} =
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## mux incoming connection
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trace "Muxing connection", conn
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if s.muxers.len == 0:
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warn "no muxers registered, skipping upgrade flow", conn
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return
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let muxerName = await s.ms.select(conn, toSeq(s.muxers.keys()))
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if muxerName.len == 0 or muxerName == "na":
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debug "no muxer available, early exit", conn
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return
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trace "Found a muxer", conn, muxerName
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# create new muxer for connection
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let muxer = s.muxers[muxerName].newMuxer(conn)
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# install stream handler
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muxer.streamHandler = s.streamHandler
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s.connManager.storeOutgoing(conn)
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# store it in muxed connections if we have a peer for it
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s.connManager.storeMuxer(muxer, muxer.handle()) # store muxer and start read loop
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try:
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await s.identify(muxer)
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except CatchableError as exc:
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# Identify is non-essential, though if it fails, it might indicate that
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# the connection was closed already - this will be picked up by the read
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# loop
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debug "Could not identify connection", conn, msg = exc.msg
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return muxer
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proc disconnect*(s: Switch, peerId: PeerID): Future[void] {.gcsafe.} =
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s.connManager.dropPeer(peerId)
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proc upgradeOutgoing(s: Switch, conn: Connection): Future[Connection] {.async, gcsafe.} =
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trace "Upgrading outgoing connection", conn
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let sconn = await s.secure(conn) # secure the connection
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if isNil(sconn):
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raise newException(UpgradeFailedError,
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"unable to secure connection, stopping upgrade")
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if sconn.peerInfo.isNil:
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raise newException(UpgradeFailedError,
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"current version of nim-libp2p requires that secure protocol negotiates peerid")
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let muxer = await s.mux(sconn) # mux it if possible
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if muxer == nil:
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# TODO this might be relaxed in the future
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raise newException(UpgradeFailedError,
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"a muxer is required for outgoing connections")
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if sconn.closed() or isNil(sconn.peerInfo):
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await sconn.close()
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raise newException(UpgradeFailedError,
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"Connection closed or missing peer info, stopping upgrade")
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trace "Upgraded outgoing connection", conn, sconn
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return sconn
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proc upgradeIncoming(s: Switch, incomingConn: Connection) {.async, gcsafe.} = # noraises
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trace "Upgrading incoming connection", incomingConn
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let ms = newMultistream()
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# secure incoming connections
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proc securedHandler(conn: Connection,
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proto: string)
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{.async, gcsafe, closure.} =
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trace "Starting secure handler", conn
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let secure = s.secureManagers.filterIt(it.codec == proto)[0]
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var cconn = conn
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try:
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var sconn = await secure.secure(cconn, false)
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if isNil(sconn):
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return
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cconn = sconn
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# add the muxer
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for muxer in s.muxers.values:
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ms.addHandler(muxer.codecs, muxer)
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# handle subsequent secure requests
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await ms.handle(cconn)
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except CatchableError as exc:
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debug "Exception in secure handler during incoming upgrade", msg = exc.msg, conn
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if not cconn.isUpgraded:
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cconn.upgrade(exc)
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finally:
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if not isNil(cconn):
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await cconn.close()
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trace "Stopped secure handler", conn
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try:
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if (await ms.select(incomingConn)): # just handshake
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# add the secure handlers
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for k in s.secureManagers:
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ms.addHandler(k.codec, securedHandler)
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# handle un-secured connections
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# we handshaked above, set this ms handler as active
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await ms.handle(incomingConn, active = true)
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except CatchableError as exc:
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debug "Exception upgrading incoming", exc = exc.msg
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if not incomingConn.isUpgraded:
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incomingConn.upgrade(exc)
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finally:
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if not isNil(incomingConn):
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await incomingConn.close()
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proc dialAndUpgrade(s: Switch,
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peerId: PeerID,
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addrs: seq[MultiAddress]):
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@ -295,7 +122,7 @@ proc dialAndUpgrade(s: Switch,
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libp2p_successful_dials.inc()
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let conn = try:
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await s.upgradeOutgoing(dialed)
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await s.upgrade.upgradeOutgoing(dialed)
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except CatchableError as exc:
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# If we failed to establish the connection through one transport,
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# we won't succeeded through another - no use in trying again
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@ -476,7 +303,7 @@ proc accept(s: Switch, transport: Transport) {.async.} = # noraises
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debug "Accepted an incoming connection", conn
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asyncSpawn upgradeMonitor(conn, upgrades)
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asyncSpawn s.upgradeIncoming(conn)
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asyncSpawn s.upgrade.upgradeIncoming(conn)
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except CancelledError as exc:
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trace "releasing semaphore on cancellation"
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upgrades.release() # always release the slot
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@ -529,39 +356,6 @@ proc stop*(s: Switch) {.async.} =
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trace "Switch stopped"
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proc muxerHandler(s: Switch, muxer: Muxer) {.async, gcsafe.} =
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let
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conn = muxer.connection
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if conn.peerInfo.isNil:
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warn "This version of nim-libp2p requires secure protocol to negotiate peerid"
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await muxer.close()
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return
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# store incoming connection
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s.connManager.storeIncoming(conn)
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# store muxer and muxed connection
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s.connManager.storeMuxer(muxer)
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try:
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await s.identify(muxer)
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except IdentifyError as exc:
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# Identify is non-essential, though if it fails, it might indicate that
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# the connection was closed already - this will be picked up by the read
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# loop
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debug "Could not identify connection", conn, msg = exc.msg
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except LPStreamClosedError as exc:
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debug "Identify stream closed", conn, msg = exc.msg
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except LPStreamEOFError as exc:
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debug "Identify stream EOF", conn, msg = exc.msg
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except CancelledError as exc:
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await muxer.close()
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raise exc
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except CatchableError as exc:
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await muxer.close()
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trace "Exception in muxer handler", conn, msg = exc.msg
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proc newSwitch*(peerInfo: PeerInfo,
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transports: seq[Transport],
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identity: Identify,
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@ -570,34 +364,19 @@ proc newSwitch*(peerInfo: PeerInfo,
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if secureManagers.len == 0:
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raise (ref CatchableError)(msg: "Provide at least one secure manager")
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let ms = newMultistream()
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let connManager = ConnManager.init()
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let upgrade = MuxedUpgrade.init(identity, muxers, secureManagers, connManager, ms)
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let switch = Switch(
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peerInfo: peerInfo,
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ms: newMultistream(),
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ms: ms,
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transports: transports,
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connManager: ConnManager.init(),
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identity: identity,
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muxers: muxers,
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secureManagers: @secureManagers,
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connManager: connManager,
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upgrade: upgrade,
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)
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switch.streamHandler = proc(conn: Connection) {.async, gcsafe.} = # noraises
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trace "Starting stream handler", conn
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try:
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await switch.ms.handle(conn) # handle incoming connection
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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 stream handler", conn, msg = exc.msg
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finally:
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await conn.closeWithEOF()
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trace "Stream handler done", conn
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switch.mount(identity)
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for key, val in muxers:
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val.streamHandler = switch.streamHandler
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val.muxerHandler = proc(muxer: Muxer): Future[void] =
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switch.muxerHandler(muxer)
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return switch
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proc isConnected*(s: Switch, peerInfo: PeerInfo): bool
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@ -0,0 +1,213 @@
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## Nim-LibP2P
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## Copyright (c) 2021 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/[tables, sequtils]
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import pkg/[chronos, chronicles, metrics]
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import ../upgrademngrs/upgrade,
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../muxers/muxer
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export Upgrade
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type
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MuxedUpgrade* = ref object of Upgrade
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muxers*: Table[string, MuxerProvider]
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streamHandler*: StreamHandler
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proc identify*(u: MuxedUpgrade, muxer: Muxer) {.async, gcsafe.} =
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# new stream for identify
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var stream = await muxer.newStream()
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if stream == nil:
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return
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try:
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await u.identify(stream)
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finally:
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await stream.closeWithEOF()
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proc mux*(u: MuxedUpgrade, conn: Connection): Future[Muxer] {.async, gcsafe.} =
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## mux incoming connection
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trace "Muxing connection", conn
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if u.muxers.len == 0:
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warn "no muxers registered, skipping upgrade flow", conn
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return
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let muxerName = await u.ms.select(conn, toSeq(u.muxers.keys()))
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if muxerName.len == 0 or muxerName == "na":
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debug "no muxer available, early exit", conn
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return
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trace "Found a muxer", conn, muxerName
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# create new muxer for connection
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let muxer = u.muxers[muxerName].newMuxer(conn)
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# install stream handler
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muxer.streamHandler = u.streamHandler
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u.connManager.storeOutgoing(conn)
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# store it in muxed connections if we have a peer for it
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u.connManager.storeMuxer(muxer, muxer.handle()) # store muxer and start read loop
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try:
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await u.identify(muxer)
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except CatchableError as exc:
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# Identify is non-essential, though if it fails, it might indicate that
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# the connection was closed already - this will be picked up by the read
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# loop
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debug "Could not identify connection", conn, msg = exc.msg
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return muxer
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method upgradeOutgoing*(u: MuxedUpgrade, conn: Connection): Future[Connection] {.async, gcsafe.} =
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trace "Upgrading outgoing connection", conn
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let sconn = await u.secure(conn) # secure the connection
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if isNil(sconn):
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raise newException(UpgradeFailedError,
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"unable to secure connection, stopping upgrade")
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if sconn.peerInfo.isNil:
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raise newException(UpgradeFailedError,
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"current version of nim-libp2p requires that secure protocol negotiates peerid")
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let muxer = await u.mux(sconn) # mux it if possible
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if muxer == nil:
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# TODO this might be relaxed in the future
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raise newException(UpgradeFailedError,
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"a muxer is required for outgoing connections")
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if sconn.closed() or isNil(sconn.peerInfo):
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await sconn.close()
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raise newException(UpgradeFailedError,
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"Connection closed or missing peer info, stopping upgrade")
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trace "Upgraded outgoing connection", conn, sconn
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return sconn
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method upgradeIncoming*(u: MuxedUpgrade, incomingConn: Connection) {.async, gcsafe.} = # noraises
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trace "Upgrading incoming connection", incomingConn
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let ms = newMultistream()
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# secure incoming connections
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proc securedHandler(conn: Connection,
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proto: string)
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{.async, gcsafe, closure.} =
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trace "Starting secure handler", conn
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let secure = u.secureManagers.filterIt(it.codec == proto)[0]
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var cconn = conn
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try:
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var sconn = await secure.secure(cconn, false)
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if isNil(sconn):
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return
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cconn = sconn
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# add the muxer
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for muxer in u.muxers.values:
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ms.addHandler(muxer.codecs, muxer)
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# handle subsequent secure requests
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await ms.handle(cconn)
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except CatchableError as exc:
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debug "Exception in secure handler during incoming upgrade", msg = exc.msg, conn
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if not cconn.isUpgraded:
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cconn.upgrade(exc)
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finally:
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if not isNil(cconn):
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await cconn.close()
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trace "Stopped secure handler", conn
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try:
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if (await ms.select(incomingConn)): # just handshake
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# add the secure handlers
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for k in u.secureManagers:
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ms.addHandler(k.codec, securedHandler)
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# handle un-secured connections
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# we handshaked above, set this ms handler as active
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await ms.handle(incomingConn, active = true)
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except CatchableError as exc:
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debug "Exception upgrading incoming", exc = exc.msg
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if not incomingConn.isUpgraded:
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incomingConn.upgrade(exc)
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finally:
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if not isNil(incomingConn):
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await incomingConn.close()
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proc muxerHandler(u: MuxedUpgrade, muxer: Muxer) {.async, gcsafe.} =
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let
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conn = muxer.connection
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if conn.peerInfo.isNil:
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warn "This version of nim-libp2p requires secure protocol to negotiate peerid"
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await muxer.close()
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return
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# store incoming connection
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u.connManager.storeIncoming(conn)
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# store muxer and muxed connection
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u.connManager.storeMuxer(muxer)
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try:
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await u.identify(muxer)
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except IdentifyError as exc:
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# Identify is non-essential, though if it fails, it might indicate that
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# the connection was closed already - this will be picked up by the read
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# loop
|
||||
debug "Could not identify connection", conn, msg = exc.msg
|
||||
except LPStreamClosedError as exc:
|
||||
debug "Identify stream closed", conn, msg = exc.msg
|
||||
except LPStreamEOFError as exc:
|
||||
debug "Identify stream EOF", conn, msg = exc.msg
|
||||
except CancelledError as exc:
|
||||
await muxer.close()
|
||||
raise exc
|
||||
except CatchableError as exc:
|
||||
await muxer.close()
|
||||
trace "Exception in muxer handler", conn, msg = exc.msg
|
||||
|
||||
proc init*(
|
||||
T: type MuxedUpgrade,
|
||||
identity: Identify,
|
||||
muxers: Table[string, MuxerProvider],
|
||||
secureManagers: openarray[Secure] = [],
|
||||
connManager: ConnManager,
|
||||
ms: MultistreamSelect): T =
|
||||
|
||||
let upgrader = T(
|
||||
identity: identity,
|
||||
muxers: muxers,
|
||||
secureManagers: @secureManagers,
|
||||
connManager: connManager,
|
||||
ms: ms)
|
||||
|
||||
upgrader.streamHandler = proc(conn: Connection) {.async, gcsafe.} = # noraises
|
||||
trace "Starting stream handler", conn
|
||||
try:
|
||||
await upgrader.ms.handle(conn) # handle incoming connection
|
||||
except CancelledError as exc:
|
||||
raise exc
|
||||
except CatchableError as exc:
|
||||
trace "exception in stream handler", conn, msg = exc.msg
|
||||
finally:
|
||||
await conn.closeWithEOF()
|
||||
trace "Stream handler done", conn
|
||||
|
||||
for _, val in muxers:
|
||||
val.streamHandler = upgrader.streamHandler
|
||||
val.muxerHandler = proc(muxer: Muxer): Future[void] =
|
||||
upgrader.muxerHandler(muxer)
|
||||
|
||||
return upgrader
|
|
@ -0,0 +1,80 @@
|
|||
## Nim-LibP2P
|
||||
## Copyright (c) 2021 Status Research & Development GmbH
|
||||
## Licensed under either of
|
||||
## * Apache License, version 2.0, ([LICENSE-APACHE](LICENSE-APACHE))
|
||||
## * MIT license ([LICENSE-MIT](LICENSE-MIT))
|
||||
## at your option.
|
||||
## This file may not be copied, modified, or distributed except according to
|
||||
## those terms.
|
||||
|
||||
import std/[options, sequtils]
|
||||
import pkg/[chronos, chronicles, metrics]
|
||||
|
||||
import ../stream/connection,
|
||||
../protocols/secure/secure,
|
||||
../protocols/identify,
|
||||
../multistream,
|
||||
../connmanager
|
||||
|
||||
export connmanager, connection, identify, secure, multistream
|
||||
|
||||
declarePublicCounter(libp2p_failed_upgrade, "peers failed upgrade")
|
||||
|
||||
type
|
||||
UpgradeFailedError* = object of CatchableError
|
||||
|
||||
Upgrade* = ref object of RootObj
|
||||
ms*: MultistreamSelect
|
||||
identity*: Identify
|
||||
connManager*: ConnManager
|
||||
secureManagers*: seq[Secure]
|
||||
|
||||
method upgradeIncoming*(u: Upgrade, conn: Connection): Future[void] {.base.} =
|
||||
doAssert(false, "Not implemented!")
|
||||
|
||||
method upgradeOutgoing*(u: Upgrade, conn: Connection): Future[Connection] {.base.} =
|
||||
doAssert(false, "Not implemented!")
|
||||
|
||||
proc secure*(u: Upgrade, conn: Connection): Future[Connection] {.async, gcsafe.} =
|
||||
if u.secureManagers.len <= 0:
|
||||
raise newException(UpgradeFailedError, "No secure managers registered!")
|
||||
|
||||
let codec = await u.ms.select(conn, u.secureManagers.mapIt(it.codec))
|
||||
if codec.len == 0:
|
||||
raise newException(UpgradeFailedError, "Unable to negotiate a secure channel!")
|
||||
|
||||
trace "Securing connection", conn, codec
|
||||
let secureProtocol = u.secureManagers.filterIt(it.codec == codec)
|
||||
|
||||
# ms.select should deal with the correctness of this
|
||||
# let's avoid duplicating checks but detect if it fails to do it properly
|
||||
doAssert(secureProtocol.len > 0)
|
||||
|
||||
return await secureProtocol[0].secure(conn, true)
|
||||
|
||||
proc identify*(u: Upgrade, conn: Connection) {.async, gcsafe.} =
|
||||
## identify the connection
|
||||
|
||||
if (await u.ms.select(conn, u.identity.codec)):
|
||||
let info = await u.identity.identify(conn, conn.peerInfo)
|
||||
|
||||
if info.pubKey.isNone and isNil(conn):
|
||||
raise newException(UpgradeFailedError,
|
||||
"no public key provided and no existing peer identity found")
|
||||
|
||||
if isNil(conn.peerInfo):
|
||||
conn.peerInfo = PeerInfo.init(info.pubKey.get())
|
||||
|
||||
if info.addrs.len > 0:
|
||||
conn.peerInfo.addrs = info.addrs
|
||||
|
||||
if info.agentVersion.isSome:
|
||||
conn.peerInfo.agentVersion = info.agentVersion.get()
|
||||
|
||||
if info.protoVersion.isSome:
|
||||
conn.peerInfo.protoVersion = info.protoVersion.get()
|
||||
|
||||
if info.protos.len > 0:
|
||||
conn.peerInfo.protocols = info.protos
|
||||
|
||||
trace "identified remote peer", conn, peerInfo = shortLog(conn.peerInfo)
|
Loading…
Reference in New Issue