mirror of
https://github.com/actix/actix-extras.git
synced 2024-11-28 17:52:40 +01:00
211 lines
6.8 KiB
Rust
211 lines
6.8 KiB
Rust
use std::{net, time};
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use std::rc::Rc;
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use futures::Future;
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use futures::unsync::oneshot;
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use tokio_core::net::TcpStream;
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use tokio_core::reactor::Handle;
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use net2::TcpStreamExt;
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#[cfg(feature="tls")]
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use futures::future;
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#[cfg(feature="tls")]
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use native_tls::TlsAcceptor;
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#[cfg(feature="tls")]
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use tokio_tls::TlsAcceptorExt;
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#[cfg(feature="alpn")]
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use futures::future;
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#[cfg(feature="alpn")]
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use openssl::ssl::SslAcceptor;
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#[cfg(feature="alpn")]
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use tokio_openssl::SslAcceptorExt;
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use actix::*;
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use actix::msgs::StopArbiter;
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use helpers;
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use server::HttpHandler;
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use server::channel::HttpChannel;
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use server::settings::WorkerSettings;
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#[derive(Message)]
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pub(crate) struct Conn<T> {
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pub io: T,
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pub peer: Option<net::SocketAddr>,
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pub http2: bool,
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}
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/// Stop worker message. Returns `true` on successful shutdown
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/// and `false` if some connections still alive.
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#[derive(Message)]
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#[rtype(bool)]
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pub(crate) struct StopWorker {
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pub graceful: Option<time::Duration>,
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}
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/// Http worker
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///
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/// Worker accepts Socket objects via unbounded channel and start requests processing.
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pub(crate) struct Worker<H> where H: HttpHandler + 'static {
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settings: Rc<WorkerSettings<H>>,
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hnd: Handle,
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handler: StreamHandlerType,
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}
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impl<H: HttpHandler + 'static> Worker<H> {
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pub(crate) fn new(h: Vec<H>, handler: StreamHandlerType, keep_alive: Option<u64>)
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-> Worker<H>
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{
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Worker {
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settings: Rc::new(WorkerSettings::new(h, keep_alive)),
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hnd: Arbiter::handle().clone(),
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handler: handler,
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}
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}
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fn update_time(&self, ctx: &mut Context<Self>) {
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helpers::update_date();
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ctx.run_later(time::Duration::new(1, 0), |slf, ctx| slf.update_time(ctx));
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}
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fn shutdown_timeout(&self, ctx: &mut Context<Self>,
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tx: oneshot::Sender<bool>, dur: time::Duration) {
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// sleep for 1 second and then check again
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ctx.run_later(time::Duration::new(1, 0), move |slf, ctx| {
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let num = slf.settings.num_channels();
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if num == 0 {
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let _ = tx.send(true);
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Arbiter::arbiter().send(StopArbiter(0));
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} else if let Some(d) = dur.checked_sub(time::Duration::new(1, 0)) {
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slf.shutdown_timeout(ctx, tx, d);
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} else {
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info!("Force shutdown http worker, {} connections", num);
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slf.settings.head().traverse::<TcpStream, H>();
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let _ = tx.send(false);
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Arbiter::arbiter().send(StopArbiter(0));
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}
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});
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}
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}
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impl<H: 'static> Actor for Worker<H> where H: HttpHandler + 'static {
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type Context = Context<Self>;
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fn started(&mut self, ctx: &mut Self::Context) {
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self.update_time(ctx);
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}
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}
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impl<H> Handler<Conn<net::TcpStream>> for Worker<H>
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where H: HttpHandler + 'static,
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{
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type Result = ();
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fn handle(&mut self, msg: Conn<net::TcpStream>, _: &mut Context<Self>)
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{
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if !self.settings.keep_alive_enabled() &&
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msg.io.set_keepalive(Some(time::Duration::new(75, 0))).is_err()
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{
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error!("Can not set socket keep-alive option");
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}
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self.handler.handle(Rc::clone(&self.settings), &self.hnd, msg);
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}
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}
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/// `StopWorker` message handler
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impl<H> Handler<StopWorker> for Worker<H>
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where H: HttpHandler + 'static,
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{
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type Result = Response<Self, StopWorker>;
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fn handle(&mut self, msg: StopWorker, ctx: &mut Context<Self>) -> Self::Result {
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let num = self.settings.num_channels();
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if num == 0 {
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info!("Shutting down http worker, 0 connections");
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Self::reply(Ok(true))
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} else if let Some(dur) = msg.graceful {
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info!("Graceful http worker shutdown, {} connections", num);
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let (tx, rx) = oneshot::channel();
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self.shutdown_timeout(ctx, tx, dur);
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Self::async_reply(rx.map_err(|_| ()).actfuture())
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} else {
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info!("Force shutdown http worker, {} connections", num);
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self.settings.head().traverse::<TcpStream, H>();
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Self::reply(Ok(false))
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}
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}
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}
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#[derive(Clone)]
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pub(crate) enum StreamHandlerType {
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Normal,
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#[cfg(feature="tls")]
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Tls(TlsAcceptor),
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#[cfg(feature="alpn")]
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Alpn(SslAcceptor),
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}
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impl StreamHandlerType {
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fn handle<H: HttpHandler>(&mut self,
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h: Rc<WorkerSettings<H>>,
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hnd: &Handle, msg: Conn<net::TcpStream>) {
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match *self {
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StreamHandlerType::Normal => {
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let _ = msg.io.set_nodelay(true);
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let io = TcpStream::from_stream(msg.io, hnd)
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.expect("failed to associate TCP stream");
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hnd.spawn(HttpChannel::new(h, io, msg.peer, msg.http2));
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}
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#[cfg(feature="tls")]
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StreamHandlerType::Tls(ref acceptor) => {
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let Conn { io, peer, http2 } = msg;
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let _ = io.set_nodelay(true);
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let io = TcpStream::from_stream(io, hnd)
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.expect("failed to associate TCP stream");
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hnd.spawn(
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TlsAcceptorExt::accept_async(acceptor, io).then(move |res| {
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match res {
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Ok(io) => Arbiter::handle().spawn(
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HttpChannel::new(h, io, peer, http2)),
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Err(err) =>
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trace!("Error during handling tls connection: {}", err),
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};
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future::result(Ok(()))
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})
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);
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}
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#[cfg(feature="alpn")]
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StreamHandlerType::Alpn(ref acceptor) => {
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let Conn { io, peer, .. } = msg;
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let _ = io.set_nodelay(true);
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let io = TcpStream::from_stream(io, hnd)
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.expect("failed to associate TCP stream");
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hnd.spawn(
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SslAcceptorExt::accept_async(acceptor, io).then(move |res| {
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match res {
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Ok(io) => {
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let http2 = if let Some(p) = io.get_ref().ssl().selected_alpn_protocol()
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{
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p.len() == 2 && &p == b"h2"
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} else {
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false
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};
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Arbiter::handle().spawn(HttpChannel::new(h, io, peer, http2));
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},
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Err(err) =>
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trace!("Error during handling tls connection: {}", err),
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};
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future::result(Ok(()))
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})
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);
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}
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}
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}
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}
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