214 lines
7.2 KiB
Nim
214 lines
7.2 KiB
Nim
import options, bearssl
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import chronos, strutils, sequtils, sets, algorithm
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import ../libp2p/[protocols/identify,
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multiaddress,
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peerinfo,
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peerid,
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stream/connection,
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multistream,
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transports/transport,
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switch,
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builders,
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transports/tcptransport,
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crypto/crypto,
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upgrademngrs/upgrade]
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import ./helpers
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when defined(nimHasUsed): {.used.}
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suite "Identify":
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teardown:
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checkTrackers()
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suite "handle identify message":
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var
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ma {.threadvar.}: MultiAddress
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remoteSecKey {.threadvar.}: PrivateKey
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remotePeerInfo {.threadvar.}: PeerInfo
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serverFut {.threadvar.}: Future[void]
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acceptFut {.threadvar.}: Future[void]
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identifyProto1 {.threadvar.}: Identify
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identifyProto2 {.threadvar.}: Identify
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transport1 {.threadvar.}: Transport
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transport2 {.threadvar.}: Transport
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msListen {.threadvar.}: MultistreamSelect
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msDial {.threadvar.}: MultistreamSelect
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conn {.threadvar.}: Connection
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asyncSetup:
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ma = Multiaddress.init("/ip4/0.0.0.0/tcp/0").tryGet()
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remoteSecKey = PrivateKey.random(ECDSA, rng[]).get()
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remotePeerInfo = PeerInfo.init(
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remoteSecKey, [ma], ["/test/proto1/1.0.0", "/test/proto2/1.0.0"])
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transport1 = TcpTransport.new(upgrade = Upgrade())
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transport2 = TcpTransport.new(upgrade = Upgrade())
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identifyProto1 = Identify.new(remotePeerInfo)
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identifyProto2 = Identify.new(remotePeerInfo)
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msListen = MultistreamSelect.new()
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msDial = MultistreamSelect.new()
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asyncTeardown:
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await conn.close()
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await acceptFut
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await transport1.stop()
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await serverFut
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await transport2.stop()
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asyncTest "default agent version":
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msListen.addHandler(IdentifyCodec, identifyProto1)
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serverFut = transport1.start(ma)
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proc acceptHandler(): Future[void] {.async, gcsafe.} =
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let c = await transport1.accept()
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await msListen.handle(c)
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acceptFut = acceptHandler()
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conn = await transport2.dial(transport1.ma)
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discard await msDial.select(conn, IdentifyCodec)
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let id = await identifyProto2.identify(conn, remotePeerInfo)
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check id.pubKey.get() == remoteSecKey.getKey().get()
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check id.addrs[0] == ma
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check id.protoVersion.get() == ProtoVersion
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check id.agentVersion.get() == AgentVersion
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check id.protos == @["/test/proto1/1.0.0", "/test/proto2/1.0.0"]
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asyncTest "custom agent version":
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const customAgentVersion = "MY CUSTOM AGENT STRING"
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remotePeerInfo.agentVersion = customAgentVersion
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msListen.addHandler(IdentifyCodec, identifyProto1)
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serverFut = transport1.start(ma)
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proc acceptHandler(): Future[void] {.async, gcsafe.} =
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let c = await transport1.accept()
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await msListen.handle(c)
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acceptFut = acceptHandler()
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conn = await transport2.dial(transport1.ma)
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discard await msDial.select(conn, IdentifyCodec)
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let id = await identifyProto2.identify(conn, remotePeerInfo)
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check id.pubKey.get() == remoteSecKey.getKey().get()
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check id.addrs[0] == ma
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check id.protoVersion.get() == ProtoVersion
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check id.agentVersion.get() == customAgentVersion
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check id.protos == @["/test/proto1/1.0.0", "/test/proto2/1.0.0"]
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asyncTest "handle failed identify":
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msListen.addHandler(IdentifyCodec, identifyProto1)
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asyncSpawn transport1.start(ma)
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proc acceptHandler() {.async.} =
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var conn: Connection
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try:
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conn = await transport1.accept()
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await msListen.handle(conn)
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except CatchableError:
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discard
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finally:
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await conn.close()
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acceptFut = acceptHandler()
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conn = await transport2.dial(transport1.ma)
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expect IdentityNoMatchError:
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let pi2 = PeerInfo.init(PrivateKey.random(ECDSA, rng[]).get())
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discard await msDial.select(conn, IdentifyCodec)
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discard await identifyProto2.identify(conn, pi2)
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suite "handle push identify message":
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var
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switch1 {.threadvar.}: Switch
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switch2 {.threadvar.}: Switch
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identifyPush1 {.threadvar.}: IdentifyPush
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identifyPush2 {.threadvar.}: IdentifyPush
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awaiters {.threadvar.}: seq[Future[void]]
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conn {.threadvar.}: Connection
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asyncSetup:
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switch1 = newStandardSwitch()
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switch2 = newStandardSwitch()
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identifyPush1 = IdentifyPush.new(switch1.connManager)
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identifyPush2 = IdentifyPush.new(switch2.connManager)
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switch1.mount(identifyPush1)
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switch2.mount(identifyPush2)
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awaiters.add(await switch1.start())
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awaiters.add(await switch2.start())
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conn = await switch2.dial(switch1.peerInfo.peerId, switch1.peerInfo.addrs, IdentifyPushCodec)
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let storedInfo1 = switch1.peerStore.get(switch2.peerInfo.peerId)
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let storedInfo2 = switch2.peerStore.get(switch1.peerInfo.peerId)
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check:
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storedInfo1.peerId == switch2.peerInfo.peerId
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storedInfo2.peerId == switch1.peerInfo.peerId
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storedInfo1.addrs.toSeq() == switch2.peerInfo.addrs
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storedInfo2.addrs.toSeq() == switch1.peerInfo.addrs
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storedInfo1.protos.toSeq() == switch2.peerInfo.protocols
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storedInfo2.protos.toSeq() == switch1.peerInfo.protocols
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proc closeAll() {.async.} =
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await conn.close()
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await switch1.stop()
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await switch2.stop()
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# this needs to go at end
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await allFuturesThrowing(awaiters)
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asyncTest "simple push identify":
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switch2.peerInfo.protocols.add("/newprotocol/")
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switch2.peerInfo.addrs.add(MultiAddress.init("/ip4/127.0.0.1/tcp/5555").tryGet())
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check:
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switch1.peerStore.get(switch2.peerInfo.peerId).addrs.toSeq() != switch2.peerInfo.addrs
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switch1.peerStore.get(switch2.peerInfo.peerId).protos != switch2.peerInfo.protocols.toSet()
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await identifyPush2.push(switch2.peerInfo, conn)
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await closeAll()
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# Wait the very end to be sure that the push has been processed
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var aprotos = switch1.peerStore.get(switch2.peerInfo.peerId).protos.toSeq()
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var bprotos = switch2.peerInfo.protocols
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aprotos.sort()
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bprotos.sort()
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check:
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aprotos == bprotos
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switch1.peerStore.get(switch2.peerInfo.peerId).addrs == switch2.peerInfo.addrs.toSet()
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asyncTest "wrong peer id push identify":
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switch2.peerInfo.protocols.add("/newprotocol/")
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switch2.peerInfo.addrs.add(MultiAddress.init("/ip4/127.0.0.1/tcp/5555").tryGet())
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check:
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switch1.peerStore.get(switch2.peerInfo.peerId).addrs != switch2.peerInfo.addrs.toSet()
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switch1.peerStore.get(switch2.peerInfo.peerId).protos.toSeq() != switch2.peerInfo.protocols
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let oldPeerId = switch2.peerInfo.peerId
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switch2.peerInfo = PeerInfo.init(PrivateKey.random(newRng()[]).get())
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await identifyPush2.push(switch2.peerInfo, conn)
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await closeAll()
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# Wait the very end to be sure that the push has been processed
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var aprotos = switch1.peerStore.get(oldPeerId).protos.toSeq()
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var bprotos = switch2.peerInfo.protocols
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aprotos.sort()
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bprotos.sort()
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check:
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aprotos != bprotos
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switch1.peerStore.get(oldPeerId).addrs.toSeq() != switch2.peerInfo.addrs
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