mirror of
https://github.com/fafhrd91/actix-web
synced 2025-01-18 13:51:50 +01:00
227 lines
7.8 KiB
Rust
227 lines
7.8 KiB
Rust
#![allow(unused_variables)]
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extern crate rand;
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extern crate bytes;
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extern crate byteorder;
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extern crate futures;
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extern crate tokio_io;
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extern crate tokio_core;
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extern crate env_logger;
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extern crate serde;
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extern crate serde_json;
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#[macro_use] extern crate serde_derive;
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extern crate actix;
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extern crate actix_web;
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use std::time::Instant;
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use actix::*;
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use actix_web::*;
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mod codec;
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mod server;
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mod session;
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/// This is our websocket route state, this state is shared with all route instances
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/// via `HttpContext::state()`
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struct WsChatSessionState {
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addr: SyncAddress<server::ChatServer>,
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}
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struct WsChatSession {
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/// unique session id
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id: usize,
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/// Client must send ping at least once per 10 seconds, otherwise we drop connection.
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hb: Instant,
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/// joined room
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room: String,
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/// peer name
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name: Option<String>,
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}
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impl Actor for WsChatSession {
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type Context = HttpContext<Self>;
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}
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/// Entry point for our route
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impl Route for WsChatSession {
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type State = WsChatSessionState;
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fn request(req: &mut HttpRequest,
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payload: Payload, ctx: &mut HttpContext<Self>) -> RouteResult<Self>
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{
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// websocket handshakre, it may fail if request is not websocket request
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let resp = ws::handshake(&req)?;
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ctx.start(resp);
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ctx.add_stream(ws::WsStream::new(payload));
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Reply::async(
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WsChatSession {
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id: 0,
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hb: Instant::now(),
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room: "Main".to_owned(),
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name: None})
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}
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}
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/// Handle messages from chat server, we simply send it to peer websocket
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impl Handler<session::Message> for WsChatSession {
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fn handle(&mut self, msg: session::Message, ctx: &mut HttpContext<Self>)
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-> Response<Self, session::Message>
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{
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ws::WsWriter::text(ctx, &msg.0);
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Self::empty()
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}
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}
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/// WebSocket message handler
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impl Handler<ws::Message> for WsChatSession {
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fn handle(&mut self, msg: ws::Message, ctx: &mut HttpContext<Self>)
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-> Response<Self, ws::Message>
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{
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println!("WEBSOCKET MESSAGE: {:?}", msg);
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match msg {
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ws::Message::Ping(msg) =>
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ws::WsWriter::pong(ctx, &msg),
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ws::Message::Pong(msg) =>
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self.hb = Instant::now(),
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ws::Message::Text(text) => {
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let m = text.trim();
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// we check for /sss type of messages
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if m.starts_with('/') {
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let v: Vec<&str> = m.splitn(2, ' ').collect();
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match v[0] {
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"/list" => {
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// Send ListRooms message to chat server and wait for response
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println!("List rooms");
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ctx.state().addr.call(self, server::ListRooms).then(|res, _, ctx| {
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match res {
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Ok(Ok(rooms)) => {
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for room in rooms {
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ws::WsWriter::text(ctx, &room);
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}
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},
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_ => println!("Something is wrong"),
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}
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fut::ok(())
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}).wait(ctx)
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// .wait(ctx) pauses all events in context,
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// so actor wont receive any new messages until it get list
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// of rooms back
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},
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"/join" => {
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if v.len() == 2 {
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self.room = v[1].to_owned();
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ctx.state().addr.send(
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server::Join{id: self.id, name: self.room.clone()});
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ws::WsWriter::text(ctx, "joined");
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} else {
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ws::WsWriter::text(ctx, "!!! room name is required");
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}
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},
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"/name" => {
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if v.len() == 2 {
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self.name = Some(v[1].to_owned());
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} else {
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ws::WsWriter::text(ctx, "!!! name is required");
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}
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},
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_ => ws::WsWriter::text(
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ctx, &format!("!!! unknown command: {:?}", m)),
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}
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} else {
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let msg = if let Some(ref name) = self.name {
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format!("{}: {}", name, m)
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} else {
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m.to_owned()
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};
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// send message to chat server
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ctx.state().addr.send(
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server::Message{id: self.id,
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msg: msg,
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room: self.room.clone()})
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}
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},
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ws::Message::Binary(bin) =>
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println!("Unexpected binary"),
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ws::Message::Closed | ws::Message::Error => {
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ctx.stop();
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}
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_ => (),
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}
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Self::empty()
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}
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}
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impl StreamHandler<ws::Message> for WsChatSession
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{
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/// Method is called when stream get polled first time.
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/// We register ws session with ChatServer
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fn started(&mut self, ctx: &mut Self::Context) {
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// register self in chat server. `AsyncContext::wait` register
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// future within context, but context waits until this future resolves
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// before processing any other events.
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// HttpContext::state() is instance of WsChatSessionState, state is shared across all
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// routes within application
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let subs = ctx.sync_subscriber();
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ctx.state().addr.call(
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self, server::Connect{addr: subs}).then(
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|res, act, ctx| {
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match res {
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Ok(Ok(res)) => act.id = res,
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// something is wrong with chat server
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_ => ctx.stop(),
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}
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fut::ok(())
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}).wait(ctx);
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}
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/// Method is called when stream finishes, even if stream finishes with error.
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fn finished(&mut self, ctx: &mut Self::Context) {
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// notify chat server
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ctx.state().addr.send(server::Disconnect{id: self.id});
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ctx.stop()
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}
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}
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fn main() {
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let _ = env_logger::init();
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let sys = actix::System::new("websocket-example");
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// Start chat server actor in separate thread
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let server: SyncAddress<_> =
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Arbiter::start(|_| server::ChatServer::default());
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// Start tcp server in separate thread
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let srv = server.clone();
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Arbiter::new("tcp-server").send::<msgs::Execute>(
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msgs::Execute::new(move || {
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session::TcpServer::new("127.0.0.1:12345", srv);
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Ok(())
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}));
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// Websocket sessions state
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let state = WsChatSessionState { addr: server };
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// Create Http server with websocket support
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HttpServer::new(
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Application::builder("/", state)
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// redirect to websocket.html
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.resource("/", |r|
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r.handler(Method::GET, |req, payload, state| {
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Ok(httpcodes::HTTPFound
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.builder()
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.header("LOCATION", "/static/websocket.html")
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.body(Body::Empty)?)
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}))
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// websocket
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.resource("/ws/", |r| r.get::<WsChatSession>())
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// static resources
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.route_handler("/static", StaticFiles::new("static/", true)))
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.serve::<_, ()>("127.0.0.1:8080").unwrap();
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let _ = sys.run();
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}
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