mirror of
https://github.com/LemmyNet/lemmy.git
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180 lines
4.5 KiB
Rust
180 lines
4.5 KiB
Rust
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use crate::websocket::server::*;
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use actix::prelude::*;
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use actix_web::web;
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use actix_web::*;
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use actix_web_actors::ws;
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use std::time::{Duration, Instant};
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pub fn config(cfg: &mut web::ServiceConfig) {
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// Start chat server actor in separate thread
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let server = ChatServer::default().start();
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cfg
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.data(server.clone())
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.service(web::resource("/api/v1/ws").to(chat_route));
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}
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/// How often heartbeat pings are sent
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const HEARTBEAT_INTERVAL: Duration = Duration::from_secs(5);
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/// How long before lack of client response causes a timeout
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const CLIENT_TIMEOUT: Duration = Duration::from_secs(10);
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/// Entry point for our route
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fn chat_route(
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req: HttpRequest,
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stream: web::Payload,
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chat_server: web::Data<Addr<ChatServer>>,
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) -> Result<HttpResponse, Error> {
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ws::start(
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WSSession {
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cs_addr: chat_server.get_ref().to_owned(),
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id: 0,
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hb: Instant::now(),
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ip: req
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.connection_info()
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.remote()
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.unwrap_or("127.0.0.1:12345")
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.split(":")
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.next()
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.unwrap_or("127.0.0.1")
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.to_string(),
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},
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&req,
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stream,
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)
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}
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struct WSSession {
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cs_addr: Addr<ChatServer>,
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/// unique session id
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id: usize,
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ip: String,
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/// Client must send ping at least once per 10 seconds (CLIENT_TIMEOUT),
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/// otherwise we drop connection.
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hb: Instant,
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}
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impl Actor for WSSession {
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type Context = ws::WebsocketContext<Self>;
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/// Method is called on actor start.
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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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// we'll start heartbeat process on session start.
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self.hb(ctx);
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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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// across all routes within application
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let addr = ctx.address();
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self
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.cs_addr
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.send(Connect {
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addr: addr.recipient(),
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ip: self.ip.to_owned(),
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})
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.into_actor(self)
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.then(|res, act, ctx| {
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match res {
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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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})
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.wait(ctx);
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}
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fn stopping(&mut self, _ctx: &mut Self::Context) -> Running {
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// notify chat server
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self.cs_addr.do_send(Disconnect {
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id: self.id,
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ip: self.ip.to_owned(),
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});
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Running::Stop
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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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/// These are room messages, IE sent to others in the room
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impl Handler<WSMessage> for WSSession {
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type Result = ();
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fn handle(&mut self, msg: WSMessage, ctx: &mut Self::Context) {
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// println!("id: {} msg: {}", self.id, msg.0);
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ctx.text(msg.0);
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}
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}
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/// WebSocket message handler
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impl StreamHandler<ws::Message, ws::ProtocolError> for WSSession {
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fn handle(&mut self, msg: ws::Message, ctx: &mut Self::Context) {
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// println!("WEBSOCKET MESSAGE: {:?} from id: {}", msg, self.id);
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match msg {
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ws::Message::Ping(msg) => {
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self.hb = Instant::now();
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ctx.pong(&msg);
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}
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ws::Message::Pong(_) => {
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self.hb = Instant::now();
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}
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ws::Message::Text(text) => {
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let m = text.trim().to_owned();
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println!("WEBSOCKET MESSAGE: {:?} from id: {}", &m, self.id);
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self
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.cs_addr
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.send(StandardMessage {
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id: self.id,
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msg: m,
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})
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.into_actor(self)
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.then(|res, _, ctx| {
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match res {
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Ok(res) => ctx.text(res),
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Err(e) => {
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eprintln!("{}", &e);
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}
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}
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fut::ok(())
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})
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.wait(ctx);
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}
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ws::Message::Binary(_bin) => println!("Unexpected binary"),
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ws::Message::Close(_) => {
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ctx.stop();
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}
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_ => {}
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}
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}
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}
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impl WSSession {
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/// helper method that sends ping to client every second.
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///
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/// also this method checks heartbeats from client
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fn hb(&self, ctx: &mut ws::WebsocketContext<Self>) {
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ctx.run_interval(HEARTBEAT_INTERVAL, |act, ctx| {
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// check client heartbeats
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if Instant::now().duration_since(act.hb) > CLIENT_TIMEOUT {
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// heartbeat timed out
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println!("Websocket Client heartbeat failed, disconnecting!");
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// notify chat server
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act.cs_addr.do_send(Disconnect {
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id: act.id,
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ip: act.ip.to_owned(),
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});
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// stop actor
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ctx.stop();
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// don't try to send a ping
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return;
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}
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ctx.ping("");
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});
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}
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}
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