151 lines
4.8 KiB
Nim
151 lines
4.8 KiB
Nim
when not(compileOption("threads")):
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{.fatal: "Please, compile this program with the --threads:on option!".}
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import tables, strformat, strutils
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import chronos
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import ../libp2p/[switch,
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multistream,
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crypto/crypto,
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protocols/identify,
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connection,
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transports/transport,
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transports/tcptransport,
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multiaddress,
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peerinfo,
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peer,
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protocols/protocol,
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protocols/secure/secure,
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protocols/secure/secio,
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muxers/muxer,
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muxers/mplex/mplex,
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muxers/mplex/types]
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const ChatCodec = "/nim-libp2p/chat/1.0.0"
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const DefaultAddr = "/ip4/127.0.0.1/tcp/55505"
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const Help = """
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Commands: /[?|hep|connect|disconnect|exit]
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help: Prints this help
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connect: dials a remote peer
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disconnect: ends current session
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exit: closes the chat
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"""
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type ChatProto = ref object of LPProtocol
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switch: Switch # a single entry point for dialing and listening to peer
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transp: StreamTransport # transport streams between read & write file descriptor
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conn: Connection # create and close read & write stream
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connected: bool # if the node is connected to another peer
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started: bool # if the node has started
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# copied from https://github.com/status-im/nim-beacon-chain/blob/0ed657e953740a92458f23033d47483ffa17ccb0/beacon_chain/eth2_network.nim#L109-L115
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proc initAddress(T: type MultiAddress, str: string): T =
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let address = MultiAddress.init(str)
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if IPFS.match(address) and matchPartial(multiaddress.TCP, address):
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result = address
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else:
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raise newException(MultiAddressError,
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"Invalid bootstrap node multi-address")
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proc dialPeer(p: ChatProto, address: string) {.async.} =
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let multiAddr = MultiAddress.initAddress(address);
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let parts = address.split("/")
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let remotePeer = PeerInfo.init(parts[^1],
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[multiAddr])
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echo &"dialing peer: {multiAddr}"
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p.conn = await p.switch.dial(remotePeer, ChatCodec)
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p.connected = true
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proc readAndPrint(p: ChatProto) {.async.} =
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while true:
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while p.connected:
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echo cast[string](await p.conn.readLp(1024))
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await sleepAsync(100.millis)
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proc writeAndPrint(p: ChatProto) {.async.} =
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while true:
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if not p.connected:
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echo "type an address or wait for a connection:"
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echo "type /[help|?] for help"
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let line = await p.transp.readLine()
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if line.startsWith("/help") or line.startsWith("/?") or not p.started:
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echo Help
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continue
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if line.startsWith("/disconnect"):
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echo "Ending current session"
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if p.connected and p.conn.closed.not:
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await p.conn.close()
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p.connected = false
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elif line.startsWith("/connect"):
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if p.connected:
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var yesno = "N"
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echo "a session is already in progress, do you want end it [y/N]?"
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yesno = await p.transp.readLine()
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if yesno.cmpIgnoreCase("y") == 0:
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await p.conn.close()
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p.connected = false
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elif yesno.cmpIgnoreCase("n") == 0:
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continue
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else:
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echo "unrecognized response"
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continue
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echo "enter address of remote peer"
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let address = await p.transp.readLine()
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if address.len > 0:
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await p.dialPeer(address)
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elif line.startsWith("/exit"):
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if p.connected and p.conn.closed.not:
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await p.conn.close()
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p.connected = false
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await p.switch.stop()
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echo "quitting..."
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quit(0)
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else:
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if p.connected:
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await p.conn.writeLp(line)
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else:
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try:
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if line.startsWith("/") and "ipfs" in line:
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await p.dialPeer(line)
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except:
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echo &"unable to dial remote peer {line}"
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echo getCurrentExceptionMsg()
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proc readWriteLoop(p: ChatProto) {.async.} =
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asyncCheck p.writeAndPrint() # execute the async function but does not block
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asyncCheck p.readAndPrint()
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proc processInput(rfd: AsyncFD) {.async.} =
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let transp = fromPipe(rfd)
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while true:
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let a = await transp.readLine()
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echo "You just entered: " & a
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proc readInput(wfd: AsyncFD) {.thread.} =
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## This procedure performs reading from `stdin` and sends data over
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## pipe to main thread.
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let transp = fromPipe(wfd)
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while true:
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let line = stdin.readLine()
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discard waitFor transp.write(line & "\r\n")
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proc main() {.async.} =
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let (rfd, wfd) = createAsyncPipe()
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if rfd == asyncInvalidPipe or wfd == asyncInvalidPipe:
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raise newException(ValueError, "Could not initialize pipe!")
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var thread: Thread[AsyncFD]
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thread.createThread(readInput, wfd)
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await processInput(rfd)
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when isMainModule: # isMainModule = true when the module is compiled as the main file
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waitFor(main())
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