mirror of https://github.com/rairyx/raven
commit
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Cargo.lock
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target/
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[package]
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name = "floodsub-example"
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version = "0.0.1"
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authors = ["Rust Libp2p <libp2p@libp2p.io>"]
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[dependencies]
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bytes = "0.4"
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futures = "0.1"
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tokio-codec = "0.1"
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tokio-io = "0.1"
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tokio-current-thread = "0.1"
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tokio-stdin = "0.1"
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env_logger = "0.5.4"
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rand = "0.4"
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libp2p = { git = "https://github.com/libp2p/rust-libp2p" }
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# To use local rust-libp2p source
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#libp2p = { path = "../rust-libp2p" }
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SRC = src/main.rs
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BIN = $(SRC:.rs=)
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all: $(SRC)
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cargo build
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run:
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RUST_BACKTRACE=1 cargo run
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// Copyright 2018 Parity Technologies (UK) Ltd.
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//
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// Permission is hereby granted, free of charge, to any person obtaining a
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// copy of this software and associated documentation files (the "Software"),
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// to deal in the Software without restriction, including without limitation
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// the rights to use, copy, modify, merge, publish, distribute, sublicense,
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// and/or sell copies of the Software, and to permit persons to whom the
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// Software is furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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// FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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// DEALINGS IN THE SOFTWARE.
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extern crate bytes;
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extern crate env_logger;
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extern crate futures;
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extern crate libp2p;
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extern crate rand;
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extern crate tokio_current_thread;
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extern crate tokio_io;
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extern crate tokio_stdin;
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use futures::Stream;
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use futures::future::Future;
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use std::{env, mem};
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use libp2p::core::{either::EitherOutput, upgrade};
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use libp2p::core::{Multiaddr, Transport, PublicKey};
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use libp2p::peerstore::PeerId;
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use libp2p::tcp::TcpConfig;
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use libp2p::websocket::WsConfig;
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fn main() {
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env_logger::init();
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// Determine which address to listen to.
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let listen_addr = env::args()
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.nth(1)
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.unwrap_or("/ip4/0.0.0.0/tcp/10050".to_owned());
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// We start by creating a `TcpConfig` that indicates that we want TCP/IP.
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let transport = TcpConfig::new()
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// In addition to TCP/IP, we also want to support the Websockets protocol on top of TCP/IP.
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// The parameter passed to `WsConfig::new()` must be an implementation of `Transport` to be
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// used for the underlying multiaddress.
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.or_transport(WsConfig::new(TcpConfig::new()))
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// On top of TCP/IP, we will use either the plaintext protocol or the secio protocol,
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// depending on which one the remote supports.
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.with_upgrade({
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let plain_text = upgrade::PlainTextConfig;
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let secio = {
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let private_key = include_bytes!("test-rsa-private-key.pk8");
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let public_key = include_bytes!("test-rsa-public-key.der").to_vec();
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libp2p::secio::SecioConfig::new(
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libp2p::secio::SecioKeyPair::rsa_from_pkcs8(private_key, public_key).unwrap()
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)
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};
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upgrade::or(
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upgrade::map(plain_text, |pt| EitherOutput::First(pt)),
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upgrade::map(secio, |out: libp2p::secio::SecioOutput<_>| EitherOutput::Second(out.stream))
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)
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})
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// On top of plaintext or secio, we will use the multiplex protocol.
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.with_upgrade(libp2p::mplex::MplexConfig::new())
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// The object returned by the call to `with_upgrade(MplexConfig::new())` can't be used as a
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// `Transport` because the output of the upgrade is not a stream but a controller for
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// muxing. We have to explicitly call `into_connection_reuse()` in order to turn this into
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// a `Transport`.
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.map(|val, _| ((), val))
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.into_connection_reuse()
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.map(|((), val), _| val);
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// We now have a `transport` variable that can be used either to dial nodes or listen to
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// incoming connections, and that will automatically apply secio and multiplex on top
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// of any opened stream.
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// We now prepare the protocol that we are going to negotiate with nodes that open a connection
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// or substream to our server.
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let my_id = {
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let key = (0..2048).map(|_| rand::random::<u8>()).collect::<Vec<_>>();
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PeerId::from_public_key(PublicKey::Rsa(key))
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};
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let (floodsub_upgrade, floodsub_rx) = libp2p::floodsub::FloodSubUpgrade::new(my_id);
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// Let's put this `transport` into a *swarm*. The swarm will handle all the incoming and
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// outgoing connections for us.
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let (swarm_controller, swarm_future) = libp2p::core::swarm(
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transport.clone().with_upgrade(floodsub_upgrade.clone()),
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|socket, _| {
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println!("Successfully negotiated protocol");
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socket
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},
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);
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let address = swarm_controller
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.listen_on(listen_addr.parse().expect("invalid multiaddr"))
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.expect("unsupported multiaddr");
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println!("Now listening on {:?}", address);
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let topic = libp2p::floodsub::TopicBuilder::new("libp2p-demo-chat").build();
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let floodsub_ctl = libp2p::floodsub::FloodSubController::new(&floodsub_upgrade);
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floodsub_ctl.subscribe(&topic);
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let floodsub_rx = floodsub_rx.for_each(|msg| {
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if let Ok(msg) = String::from_utf8(msg.data) {
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println!("< {}", msg);
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}
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Ok(())
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});
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let stdin = {
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let mut buffer = Vec::new();
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tokio_stdin::spawn_stdin_stream_unbounded().for_each(move |msg| {
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if msg != b'\r' && msg != b'\n' {
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buffer.push(msg);
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return Ok(());
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} else if buffer.is_empty() {
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return Ok(());
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}
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let msg = String::from_utf8(mem::replace(&mut buffer, Vec::new())).unwrap();
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if msg.starts_with("/dial ") {
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let target: Multiaddr = msg[6..].parse().unwrap();
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println!("*Dialing {}*", target);
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swarm_controller
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.dial(
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target,
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transport.clone().with_upgrade(floodsub_upgrade.clone()),
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)
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.unwrap();
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} else {
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floodsub_ctl.publish(&topic, msg.into_bytes());
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}
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Ok(())
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})
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};
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let final_fut = swarm_future
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.for_each(|_| Ok(()))
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.select(floodsub_rx)
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.map(|_| ())
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.map_err(|e| e.0)
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.select(stdin.map_err(|_| unreachable!()))
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.map(|_| ())
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.map_err(|e| e.0);
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tokio_current_thread::block_on_all(final_fut).unwrap();
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}
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