use std::fs;
-use std::io::prelude::*;
-use std::net::{ TcpListener, TcpStream };
use std::time::Duration;
+use async_std::prelude::*;
+use async_std::net::{ TcpListener, TcpStream };
use async_std::task;
+use futures::stream::StreamExt;
#[async_std::main]
async fn main() {
env_logger::Builder::from_env(env_logger::Env::default().default_filter_or("info")).init();
// Listen for incoming TCP connections on localhost port 7878
- let listener = TcpListener::bind("127.0.0.1:7878").unwrap();
+ let listener = TcpListener::bind("127.0.0.1:7878").await.unwrap();
- // Block forever, handling each request that arrives at this IP address
- for stream in listener.incoming() {
- let stream = stream.unwrap();
- // not concurrent
- handle_connection(stream).await;
- }
+ listener.incoming().for_each_concurrent(/* limit */ None, |tcpstream| async move {
+ let tcpstream = tcpstream.unwrap();
+ handle_connection(tcpstream).await;
+ }).await;
}
async fn handle_connection(mut stream: TcpStream) {
// Read the first 1024 bytes of data from the stream
let mut buffer = [0; 1024];
- assert!(stream.read(&mut buffer).unwrap() > 0);
+ assert!(stream.read(&mut buffer).await.unwrap() > 0);
// Respond with greetings or a 404,
// depending on the data in the request
("HTTP/1.1 200 OK", "index.html")
} else if buffer.starts_with(b"GET /sleep HTTP/1.1\r\n") {
task::sleep(Duration::from_secs(5)).await;
+ // sync version, to demonstrate concurrent async vs. parallel threads
+ // std::thread::sleep(Duration::from_secs(5));
("HTTP/1.1 201 Sleep", "index.html")
} else {
("HTTP/1.1 404 NOT FOUND", "404.html")
// Write response back to the stream,
// and flush the stream to ensure the response is sent back to the client
let response = format!("{status_line}\r\n\r\n{contents}");
- stream.write_all(response.as_bytes()).unwrap();
- stream.flush().unwrap();
+ stream.write_all(response.as_bytes()).await.unwrap();
+ stream.flush().await.unwrap();
}