extern crate futures;
extern crate tokio_core;
use std::env;
use std::io::{self, Read, Write};
use std::net::SocketAddr;
use std::thread;
use futures::{Sink, Future, Stream};
use futures::sync::mpsc;
use tokio_core::reactor::Core;
use tokio_core::io::{Io, EasyBuf, Codec};
use tokio_core::net::TcpStream;
fn main() {
let addr = env::args().nth(1).unwrap_or_else(|| {
panic!("this program requires at least one argument")
});
let addr = addr.parse::<SocketAddr>().unwrap();
let mut core = Core::new().unwrap();
let handle = core.handle();
let tcp = TcpStream::connect(&addr, &handle);
let (stdin_tx, stdin_rx) = mpsc::channel(0);
thread::spawn(|| read_stdin(stdin_tx));
let stdin_rx = stdin_rx.map_err(|_| panic!());
let mut stdout = io::stdout();
let client = tcp.and_then(|stream| {
let (sink, stream) = stream.framed(Bytes).split();
let send_stdin = stdin_rx.forward(sink);
let write_stdout = stream.for_each(move |buf| {
stdout.write_all(buf.as_slice())
});
send_stdin.map(|_| ())
.select(write_stdout.map(|_| ()))
.then(|_| Ok(()))
});
core.run(client).unwrap();
}
struct Bytes;
impl Codec for Bytes {
type In = EasyBuf;
type Out = Vec<u8>;
fn decode(&mut self, buf: &mut EasyBuf) -> io::Result<Option<EasyBuf>> {
if buf.len() > 0 {
let len = buf.len();
Ok(Some(buf.drain_to(len)))
} else {
Ok(None)
}
}
fn encode(&mut self, data: Vec<u8>, buf: &mut Vec<u8>) -> io::Result<()> {
buf.extend(data);
Ok(())
}
}
fn read_stdin(mut rx: mpsc::Sender<Vec<u8>>) {
let mut stdin = io::stdin();
loop {
let mut buf = vec![0; 1024];
let n = match stdin.read(&mut buf) {
Err(_) |
Ok(0) => break,
Ok(n) => n,
};
buf.truncate(n);
rx = rx.send(buf).wait().unwrap();
}
}