mirror of https://github.com/vacp2p/nim-libp2p.git
don't use method as handler in protocol base
This commit is contained in:
parent
e7c3412d69
commit
ca4ccbe37f
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@ -1,118 +0,0 @@
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## Nim-LibP2P
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## Copyright (c) 2018 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 sequtils, strutils
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import chronos
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import connection, varint, vbuffer, protocol
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const MsgSize* = 64*1024
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const Codec* = "/multistream/1.0.0"
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const MultiCodec* = "\x13" & Codec & "\n"
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const Na = "\x03na\n"
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const Ls = "\x03ls\n"
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type
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MultisteamSelectException = object of CatchableError
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Matcher* = proc (proto: string): bool
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HandlerHolder* = object
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proto: string
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protocol: LPProtocol
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handler: LPProtoHandler
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match: Matcher
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MultisteamSelect* = ref object of RootObj
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handlers*: seq[HandlerHolder]
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codec*: string
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na: string
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ls: string
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proc newMultistream*(): MultisteamSelect =
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new result
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result.codec = MultiCodec
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result.ls = Ls
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result.na = Na
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proc select*(m: MultisteamSelect,
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conn: Connection,
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proto: string = ""): Future[bool] {.async.} =
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## select a remote protocol
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## TODO: select should support a list of protos to be selected
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await conn.write(m.codec) # write handshake
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if proto.len() > 0:
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await conn.writeLp(proto) # select proto
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var ms = cast[string](await conn.readLp())
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ms.removeSuffix("\n")
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if ms != Codec:
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return false
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if proto.len() <= 0:
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return true
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ms = cast[string](await conn.readLp())
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ms.removeSuffix("\n")
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result = ms == proto
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proc list*(m: MultisteamSelect,
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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(m.ls) # send ls
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var list = newSeq[string]()
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let ms = cast[string](await conn.readLp())
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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: MultisteamSelect, conn: Connection) {.async, gcsafe.} =
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## handle requests on connection
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if not (await m.select(conn)):
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return
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while not conn.closed:
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var ms = cast[string](await conn.readLp())
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ms.removeSuffix("\n")
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if ms.len() <= 0:
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await conn.write(m.na)
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if m.handlers.len() == 0:
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await conn.write(m.na)
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continue
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case ms:
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of "ls":
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var protos = ""
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for h in m.handlers:
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protos &= (h.proto & "\n")
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await conn.writeLp(cast[seq[byte]](toSeq(protos.items)))
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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 ms == h.proto:
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await conn.writeLp(h.proto & "\n")
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await h.handler(h.protocol, conn, ms)
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return
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await conn.write(m.na)
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proc addHandler*[T: LPProtocol](m: MultisteamSelect,
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proto: string,
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protocol: T,
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handler: LPProtoHandler,
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matcher: Matcher = nil) =
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## register a handler for the protocol
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m.handlers.add(HandlerHolder(proto: proto,
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handler: handler,
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protocol: protocol,
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match: matcher))
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@ -26,5 +26,3 @@ proc newProtocol*(p: typedesc[LPProtocol],
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result.init()
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result.init()
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method init*(p: LPProtocol) {.base.} = discard
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method init*(p: LPProtocol) {.base.} = discard
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method handle*(protocol: LPProtocol, conn: Connection, proto: string): Future[void]
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{.base, async.} = discard
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@ -1,265 +0,0 @@
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import unittest, strutils, sequtils, sugar
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import chronos
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import ../libp2p/connection, ../libp2p/multistreamselect,
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../libp2p/stream, ../libp2p/connection, ../libp2p/multiaddress,
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../libp2p/transport, ../libp2p/tcptransport, ../libp2p/protocol
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## Mock stream for select test
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type
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TestSelectStream = ref object of LPStream
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step*: int
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method readExactly*(s: TestSelectStream,
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pbytes: pointer,
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nbytes: int): Future[void] {.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(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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s.step = 2
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of 2:
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var buf = "/multistream/1.0.0\n"
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copyMem(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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s.step = 3
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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(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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s.step = 4
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of 4:
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var buf = "/test/proto/1.0.0\n"
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copyMem(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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else:
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copyMem(cast[pointer](cast[uint](pbytes)),
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cstring("\0x3na\n"),
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"\0x3na\n".len())
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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]
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TestLsStream = ref object of LPStream
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step*: int
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ls*: LsHandler
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method readExactly*(s: TestLsStream,
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pbytes: pointer,
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nbytes: int): Future[void] {.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(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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s.step = 2
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of 2:
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var buf = "/multistream/1.0.0\n"
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copyMem(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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s.step = 3
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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(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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s.step = 4
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of 4:
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var buf = "ls\n"
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copyMem(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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else:
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copyMem(cast[pointer](cast[uint](pbytes)),
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cstring("\0x3na\n"),
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"\0x3na\n".len())
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method write*(s: TestLsStream, msg: seq[byte], msglen = -1) {.async.} =
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if s.step == 4:
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await s.ls(msg)
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proc newTestLsStream(ls: LsHandler): TestLsStream =
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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]
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TestNaStream = ref object of LPStream
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step*: int
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na*: NaHandler
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method readExactly*(s: TestNaStream,
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pbytes: pointer,
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nbytes: int): Future[void] {.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(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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s.step = 2
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of 2:
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var buf = "/multistream/1.0.0\n"
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copyMem(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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s.step = 3
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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(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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s.step = 4
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of 4:
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var buf = "/test/proto/1.0.0\n"
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copyMem(cast[pointer](cast[uint](pbytes)), addr buf[0], buf.len())
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else:
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copyMem(cast[pointer](cast[uint](pbytes)),
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cstring("\0x3na\n"),
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"\0x3na\n".len())
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method write*(s: TestNaStream, msg: string, msglen = -1) {.async.} =
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if s.step == 4:
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await s.na(msg)
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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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test "test select custom proto":
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proc testSelect(): Future[bool] {.async.} =
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let ms = newMultistream()
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let conn = newConnection(newTestSelectStream())
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result = await ms.select(conn, "/test/proto/1.0.0")
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check:
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waitFor(testSelect()) == true
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test "test handle custom proto":
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proc testHandle(): Future[bool] {.async.} =
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let ms = newMultistream()
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let conn = newConnection(newTestSelectStream())
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var protocol: LPProtocol
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proc testHandler(protocol: LPProtocol,
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conn: Connection,
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proto: string): Future[void] {.async, gcsafe.} =
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check proto == "/test/proto/1.0.0"
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ms.addHandler("/test/proto/1.0.0", protocol, testHandler)
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await ms.handle(conn)
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result = true
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check:
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waitFor(testHandle()) == true
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test "test handle `ls`":
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proc testLs(): Future[bool] {.async.} =
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let ms = newMultistream()
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proc testLs(proto: seq[byte]): Future[void] {.async.}
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let conn = newConnection(newTestLsStream(testLs))
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proc testLs(proto: seq[byte]): Future[void] {.async.} =
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var strProto: string = cast[string](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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var protocol: LPProtocol
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proc testHandler(protocol: LPProtocol,
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conn: Connection,
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proto: string): Future[void] {.async, gcsafe.} = discard
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ms.addHandler("/test/proto1/1.0.0", protocol, testHandler)
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ms.addHandler("/test/proto2/1.0.0", protocol, testHandler)
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await ms.handle(conn)
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result = true
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check:
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waitFor(testLs()) == true
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test "test handle `na`":
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proc testNa(): Future[bool] {.async.} =
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let ms = newMultistream()
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proc testNa(msg: string): Future[void] {.async.}
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let conn = newConnection(newTestNaStream(testNa))
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proc testNa(msg: string): Future[void] {.async.} =
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check cast[string](msg) == "\x3na\n"
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await conn.close()
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var protocol: LPProtocol
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proc testHandler(protocol: LPProtocol,
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conn: Connection,
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proto: string): Future[void] {.async, gcsafe.} = discard
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ms.addHandler("/unabvailable/proto/1.0.0", protocol, testHandler)
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await ms.handle(conn)
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result = true
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check:
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waitFor(testNa()) == true
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test "e2e - handle":
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proc endToEnd(): Future[bool] {.async.} =
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let ma: MultiAddress = Multiaddress.init("/ip4/127.0.0.1/tcp/53350")
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var protocol: LPProtocol
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proc testHandler(protocol: LPProtocol,
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conn: Connection,
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proto: string): Future[void] {.async, gcsafe.} =
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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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let msListen = newMultistream()
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msListen.addHandler("/test/proto/1.0.0", protocol, testHandler)
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proc connHandler(conn: Connection): Future[void] {.async, gcsafe.} =
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await msListen.handle(conn)
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let transport1: TcpTransport = newTransport(TcpTransport)
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await transport1.listen(ma, connHandler)
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let msDial = newMultistream()
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let transport2: TcpTransport = newTransport(TcpTransport)
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let conn = await transport2.dial(ma)
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let res = await msDial.select(conn, "/test/proto/1.0.0")
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check res == true
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let hello = cast[string](await conn.readLp())
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result = hello == "Hello!"
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await conn.close()
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check:
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waitFor(endToEnd()) == true
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test "e2e - ls":
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proc endToEnd(): Future[bool] {.async.} =
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let ma: MultiAddress = Multiaddress.init("/ip4/127.0.0.1/tcp/53351")
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let msListen = newMultistream()
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var protocol: LPProtocol
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proc testHandler(protocol: LPProtocol,
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conn: Connection,
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proto: string): Future[void] {.async.} = discard
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msListen.addHandler("/test/proto1/1.0.0", protocol, testHandler)
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msListen.addHandler("/test/proto2/1.0.0", protocol, testHandler)
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let transport1: TcpTransport = newTransport(TcpTransport)
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proc connHandler(conn: Connection): Future[void] {.async, gcsafe.} =
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await msListen.handle(conn)
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await transport1.listen(ma, connHandler)
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let msDial = newMultistream()
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let transport2: TcpTransport = newTransport(TcpTransport)
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let conn = await transport2.dial(ma)
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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"]
|
|
||||||
await conn.close()
|
|
||||||
result = ls == protos
|
|
||||||
|
|
||||||
check:
|
|
||||||
waitFor(endToEnd()) == true
|
|
Loading…
Reference in New Issue