486 lines
14 KiB
Nim
486 lines
14 KiB
Nim
{.used.}
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# Nim-Libp2p
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# Copyright (c) 2023 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 strformat, stew/byteutils
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import chronos
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import ../libp2p/multistream,
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../libp2p/stream/bufferstream,
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../libp2p/stream/connection,
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../libp2p/multiaddress,
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../libp2p/transports/transport,
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../libp2p/transports/tcptransport,
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../libp2p/protocols/protocol,
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../libp2p/upgrademngrs/upgrade
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{.push raises: [].}
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import ./helpers
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when defined(nimHasUsed): {.used.}
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## Mock stream for select test
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type
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TestSelectStream = ref object of Connection
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step*: int
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method readOnce*(s: TestSelectStream,
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pbytes: pointer,
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nbytes: int): Future[int] {.async.} =
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case s.step:
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of 1:
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var buf = newSeq[byte](1)
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buf[0] = 19
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copyMem(pbytes, addr buf[0], buf.len())
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s.step = 2
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return buf.len
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of 2:
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var buf = "/multistream/1.0.0\n"
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copyMem(pbytes, addr buf[0], buf.len())
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s.step = 3
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return buf.len
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of 3:
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var buf = newSeq[byte](1)
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buf[0] = 18
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copyMem(pbytes, addr buf[0], buf.len())
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s.step = 4
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return buf.len
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of 4:
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var buf = "/test/proto/1.0.0\n"
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copyMem(pbytes, addr buf[0], buf.len())
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return buf.len
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else:
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copyMem(pbytes,
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cstring("\0x3na\n"),
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"\0x3na\n".len())
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return "\0x3na\n".len()
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method write*(s: TestSelectStream, msg: seq[byte]) {.async.} = discard
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method close(s: TestSelectStream) {.async.} =
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s.isClosed = true
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s.isEof = true
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proc newTestSelectStream(): TestSelectStream =
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new result
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result.step = 1
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## Mock stream for handles `ls` test
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type
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LsHandler = proc(procs: seq[byte]): Future[void] {.gcsafe, raises: [].}
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TestLsStream = ref object of Connection
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step*: int
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ls*: LsHandler
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method readOnce*(s: TestLsStream,
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pbytes: pointer,
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nbytes: int):
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Future[int] {.async.} =
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case s.step:
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of 1:
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var buf = newSeq[byte](1)
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buf[0] = 19
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copyMem(pbytes, addr buf[0], buf.len())
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s.step = 2
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return buf.len()
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of 2:
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var buf = "/multistream/1.0.0\n"
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copyMem(pbytes, addr buf[0], buf.len())
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s.step = 3
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return buf.len()
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of 3:
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var buf = newSeq[byte](1)
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buf[0] = 3
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copyMem(pbytes, addr buf[0], buf.len())
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s.step = 4
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return buf.len()
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of 4:
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var buf = "ls\n"
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copyMem(pbytes, addr buf[0], buf.len())
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return buf.len()
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else:
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var buf = "na\n"
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copyMem(pbytes, addr buf[0], buf.len())
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return buf.len()
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method write*(s: TestLsStream, msg: seq[byte]) {.async.} =
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if s.step == 4:
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await s.ls(msg)
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method close(s: TestLsStream) {.async.} =
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s.isClosed = true
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s.isEof = true
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proc newTestLsStream(ls: LsHandler): TestLsStream {.gcsafe.} =
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new result
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result.ls = ls
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result.step = 1
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## Mock stream for handles `na` test
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type
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NaHandler = proc(procs: string): Future[void] {.gcsafe, raises: [].}
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TestNaStream = ref object of Connection
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step*: int
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na*: NaHandler
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method readOnce*(s: TestNaStream,
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pbytes: pointer,
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nbytes: int):
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Future[int] {.async.} =
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case s.step:
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of 1:
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var buf = newSeq[byte](1)
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buf[0] = 19
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copyMem(pbytes, addr buf[0], buf.len())
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s.step = 2
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return buf.len()
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of 2:
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var buf = "/multistream/1.0.0\n"
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copyMem(pbytes, addr buf[0], buf.len())
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s.step = 3
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return buf.len()
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of 3:
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var buf = newSeq[byte](1)
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buf[0] = 18
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copyMem(pbytes, addr buf[0], buf.len())
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s.step = 4
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return buf.len()
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of 4:
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var buf = "/test/proto/1.0.0\n"
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copyMem(pbytes, addr buf[0], buf.len())
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return buf.len()
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else:
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copyMem(pbytes,
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cstring("\0x3na\n"),
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"\0x3na\n".len())
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return "\0x3na\n".len()
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method write*(s: TestNaStream, msg: seq[byte]) {.async.} =
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if s.step == 4:
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await s.na(string.fromBytes(msg))
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method close(s: TestNaStream) {.async.} =
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s.isClosed = true
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s.isEof = true
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proc newTestNaStream(na: NaHandler): TestNaStream =
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new result
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result.na = na
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result.step = 1
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suite "Multistream select":
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teardown:
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checkTrackers()
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asyncTest "test select custom proto":
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let ms = MultistreamSelect.new()
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let conn = newTestSelectStream()
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check (await ms.select(conn, @["/test/proto/1.0.0"])) == "/test/proto/1.0.0"
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await conn.close()
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asyncTest "test handle custom proto":
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let ms = MultistreamSelect.new()
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let conn = newTestSelectStream()
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var protocol: LPProtocol = new LPProtocol
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proc testHandler(conn: Connection,
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proto: string):
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Future[void] {.async.} =
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check proto == "/test/proto/1.0.0"
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await conn.close()
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protocol.handler = testHandler
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ms.addHandler("/test/proto/1.0.0", protocol)
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await ms.handle(conn)
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asyncTest "test handle `ls`":
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let ms = MultistreamSelect.new()
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var conn: Connection = nil
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let done = newFuture[void]()
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proc testLsHandler(proto: seq[byte]) {.async.} =
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var strProto: string = string.fromBytes(proto)
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check strProto == "\x26/test/proto1/1.0.0\n/test/proto2/1.0.0\n"
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await conn.close()
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done.complete()
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conn = Connection(newTestLsStream(testLsHandler))
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proc testHandler(conn: Connection, proto: string): Future[void]
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{.async.} = discard
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var protocol: LPProtocol = new LPProtocol
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protocol.handler = testHandler
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ms.addHandler("/test/proto1/1.0.0", protocol)
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ms.addHandler("/test/proto2/1.0.0", protocol)
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await ms.handle(conn)
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await done.wait(5.seconds)
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asyncTest "test handle `na`":
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let ms = MultistreamSelect.new()
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var conn: Connection = nil
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proc testNaHandler(msg: string): Future[void] {.async.} =
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check msg == "\x03na\n"
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await conn.close()
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conn = newTestNaStream(testNaHandler)
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var protocol: LPProtocol = new LPProtocol
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proc testHandler(conn: Connection,
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proto: string):
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Future[void] {.async.} = discard
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protocol.handler = testHandler
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ms.addHandler("/unabvailable/proto/1.0.0", protocol)
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await ms.handle(conn)
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asyncTest "e2e - handle":
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let ma = @[MultiAddress.init("/ip4/0.0.0.0/tcp/0").tryGet()]
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var protocol: LPProtocol = new LPProtocol
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proc testHandler(conn: Connection,
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proto: string):
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Future[void] {.async.} =
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check proto == "/test/proto/1.0.0"
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await conn.writeLp("Hello!")
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await conn.close()
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protocol.handler = testHandler
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let msListen = MultistreamSelect.new()
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msListen.addHandler("/test/proto/1.0.0", protocol)
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let transport1 = TcpTransport.new(upgrade = Upgrade())
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asyncSpawn transport1.start(ma)
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proc acceptHandler(): Future[void] {.async.} =
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let conn = await transport1.accept()
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await msListen.handle(conn)
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await conn.close()
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let handlerWait = acceptHandler()
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let msDial = MultistreamSelect.new()
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let transport2 = TcpTransport.new(upgrade = Upgrade())
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let conn = await transport2.dial(transport1.addrs[0])
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check (await msDial.select(conn, "/test/proto/1.0.0")) == true
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let hello = string.fromBytes(await conn.readLp(1024))
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check hello == "Hello!"
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await conn.close()
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await transport2.stop()
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await transport1.stop()
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await handlerWait.wait(30.seconds)
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asyncTest "e2e - streams limit":
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let ma = @[MultiAddress.init("/ip4/0.0.0.0/tcp/0").tryGet()]
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let blocker = newFuture[void]()
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# Start 5 streams which are blocked by `blocker`
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# Try to start a new one, which should fail
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# Unblock the 5 streams, check that we can open a new one
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proc testHandler(conn: Connection,
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proto: string):
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Future[void] {.async.} =
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await blocker
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await conn.writeLp("Hello!")
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await conn.close()
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var protocol: LPProtocol = LPProtocol.new(
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@["/test/proto/1.0.0"],
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testHandler,
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maxIncomingStreams = 5
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)
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protocol.handler = testHandler
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let msListen = MultistreamSelect.new()
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msListen.addHandler("/test/proto/1.0.0", protocol)
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let transport1 = TcpTransport.new(upgrade = Upgrade())
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await transport1.start(ma)
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proc acceptedOne(c: Connection) {.async.} =
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await msListen.handle(c)
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await c.close()
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proc acceptHandler() {.async.} =
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while true:
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let conn = await transport1.accept()
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asyncSpawn acceptedOne(conn)
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var handlerWait = acceptHandler()
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let msDial = MultistreamSelect.new()
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let transport2 = TcpTransport.new(upgrade = Upgrade())
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proc connector {.async.} =
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let conn = await transport2.dial(transport1.addrs[0])
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check: (await msDial.select(conn, "/test/proto/1.0.0")) == true
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check: string.fromBytes(await conn.readLp(1024)) == "Hello!"
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await conn.close()
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# Fill up the 5 allowed streams
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var dialers: seq[Future[void]]
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for _ in 0..<5:
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dialers.add(connector())
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# This one will fail during negotiation
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expect(CatchableError):
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try: waitFor(connector().wait(1.seconds))
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except AsyncTimeoutError as exc:
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check false
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raise exc
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# check that the dialers aren't finished
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check: (await dialers[0].withTimeout(10.milliseconds)) == false
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# unblock the dialers
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blocker.complete()
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await allFutures(dialers)
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# now must work
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waitFor(connector())
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await transport2.stop()
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await transport1.stop()
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await handlerWait.cancelAndWait()
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asyncTest "e2e - ls":
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let ma = @[MultiAddress.init("/ip4/0.0.0.0/tcp/0").tryGet()]
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let msListen = MultistreamSelect.new()
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var protocol: LPProtocol = new LPProtocol
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protocol.handler = proc(conn: Connection, proto: string) {.async.} =
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# never reached
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discard
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proc testHandler(conn: Connection,
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proto: string):
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Future[void] {.async.} =
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# never reached
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discard
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protocol.handler = testHandler
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msListen.addHandler("/test/proto1/1.0.0", protocol)
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msListen.addHandler("/test/proto2/1.0.0", protocol)
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let transport1: TcpTransport = TcpTransport.new(upgrade = Upgrade())
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let listenFut = transport1.start(ma)
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proc acceptHandler(): Future[void] {.async.} =
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let conn = await transport1.accept()
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try:
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await msListen.handle(conn)
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except LPStreamEOFError:
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discard
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except LPStreamClosedError:
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discard
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finally:
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await conn.close()
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let acceptFut = acceptHandler()
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let msDial = MultistreamSelect.new()
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let transport2: TcpTransport = TcpTransport.new(upgrade = Upgrade())
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let conn = await transport2.dial(transport1.addrs[0])
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let ls = await msDial.list(conn)
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let protos: seq[string] = @["/test/proto1/1.0.0", "/test/proto2/1.0.0"]
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check ls == protos
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await conn.close()
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await acceptFut
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await transport2.stop()
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await transport1.stop()
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await listenFut.wait(5.seconds)
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asyncTest "e2e - select one from a list with unsupported protos":
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let ma = @[MultiAddress.init("/ip4/0.0.0.0/tcp/0").tryGet()]
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var protocol: LPProtocol = new LPProtocol
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proc testHandler(conn: Connection,
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proto: string):
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Future[void] {.async.} =
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check proto == "/test/proto/1.0.0"
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await conn.writeLp("Hello!")
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await conn.close()
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protocol.handler = testHandler
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let msListen = MultistreamSelect.new()
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msListen.addHandler("/test/proto/1.0.0", protocol)
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let transport1: TcpTransport = TcpTransport.new(upgrade = Upgrade())
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asyncSpawn transport1.start(ma)
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proc acceptHandler(): Future[void] {.async.} =
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let conn = await transport1.accept()
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await msListen.handle(conn)
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let acceptFut = acceptHandler()
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let msDial = MultistreamSelect.new()
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let transport2: TcpTransport = TcpTransport.new(upgrade = Upgrade())
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let conn = await transport2.dial(transport1.addrs[0])
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check (await msDial.select(conn,
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@["/test/proto/1.0.0", "/test/no/proto/1.0.0"])) == "/test/proto/1.0.0"
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let hello = string.fromBytes(await conn.readLp(1024))
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check hello == "Hello!"
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await conn.close()
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await acceptFut
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await transport2.stop()
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await transport1.stop()
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asyncTest "e2e - select one with both valid":
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let ma = @[MultiAddress.init("/ip4/0.0.0.0/tcp/0").tryGet()]
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var protocol: LPProtocol = new LPProtocol
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proc testHandler(conn: Connection,
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proto: string):
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Future[void] {.async.} =
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await conn.writeLp(&"Hello from {proto}!")
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await conn.close()
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protocol.handler = testHandler
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let msListen = MultistreamSelect.new()
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msListen.addHandler("/test/proto1/1.0.0", protocol)
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msListen.addHandler("/test/proto2/1.0.0", protocol)
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let transport1: TcpTransport = TcpTransport.new(upgrade = Upgrade())
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asyncSpawn transport1.start(ma)
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proc acceptHandler(): Future[void] {.async.} =
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let conn = await transport1.accept()
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await msListen.handle(conn)
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let acceptFut = acceptHandler()
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let msDial = MultistreamSelect.new()
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let transport2: TcpTransport = TcpTransport.new(upgrade = Upgrade())
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let conn = await transport2.dial(transport1.addrs[0])
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check (await msDial.select(conn,
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@[
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"/test/proto2/1.0.0",
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"/test/proto1/1.0.0"
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])) == "/test/proto2/1.0.0"
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check string.fromBytes(await conn.readLp(1024)) == "Hello from /test/proto2/1.0.0!"
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await conn.close()
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await acceptFut
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await transport2.stop()
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await transport1.stop()
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