mirror of
https://github.com/actix/actix-web.git
synced 2024-12-16 05:06:33 +00:00
add graceful shutdown system
This commit is contained in:
parent
3f4898a6d1
commit
538fea8027
8 changed files with 208 additions and 33 deletions
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@ -11,7 +11,4 @@ path = "src/main.rs"
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env_logger = "*"
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futures = "0.1"
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actix = "^0.3.5"
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#actix-web = { git = "https://github.com/actix/actix-web.git" }
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actix-web = { path="../../", features=["signal"] }
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actix-web = { git = "https://github.com/actix/actix-web.git", features=["signal"] }
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@ -3,10 +3,22 @@ extern crate actix_web;
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extern crate futures;
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extern crate env_logger;
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use actix::*;
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use actix_web::*;
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use actix::Arbiter;
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use actix::actors::signal::{ProcessSignals, Subscribe};
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struct MyWebSocket;
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impl Actor for MyWebSocket {
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type Context = HttpContext<Self>;
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}
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impl StreamHandler<ws::Message> for MyWebSocket {}
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impl Handler<ws::Message> for MyWebSocket {
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fn handle(&mut self, _: ws::Message, _: &mut Self::Context) -> Response<Self, ws::Message> {
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Self::empty()
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}
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}
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fn main() {
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::std::env::set_var("RUST_LOG", "actix_web=info");
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@ -17,6 +29,7 @@ fn main() {
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Application::new()
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// enable logger
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.middleware(middleware::Logger::default())
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.resource("/ws/", |r| r.f(|req| ws::start(req, MyWebSocket)))
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.resource("/", |r| r.h(httpcodes::HTTPOk))})
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.bind("127.0.0.1:8080").unwrap()
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.start();
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@ -164,3 +164,73 @@ fn index(req: HttpRequest) -> HttpResponse {
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}
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# fn main() {}
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```
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## Graceful shutdown
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Actix http server support graceful shutdown. After receiving a stop signal, workers
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have specific amount of time to finish serving requests. Workers still alive after the
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timeout are force dropped. By default shutdown timeout sets to 30 seconds.
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You can change this parameter with `HttpServer::shutdown_timeout()` method.
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You can send stop message to server with server address and specify if you what
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graceful shutdown or not. `start()` or `spawn()` methods return address of the server.
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```rust
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# extern crate futures;
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# extern crate actix;
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# extern crate actix_web;
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# use futures::Future;
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use actix_web::*;
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fn main() {
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let addr = HttpServer::new(
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|| Application::new()
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.resource("/", |r| r.h(httpcodes::HTTPOk)))
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.bind("127.0.0.1:0").expect("Can not bind to 127.0.0.1:0")
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.shutdown_timeout(60) // <- Set shutdown timeout to 60 seconds
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.spawn();
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let _ = addr.call_fut(
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dev::StopServer{graceful:true}).wait(); // <- Send `StopServer` message to server.
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}
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```
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It is possible to use unix signals on compatible OSs. "signal" feature needs to be enabled
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in *Cargo.toml* for *actix-web* dependency.
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```toml
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[dependencies]
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actix-web = { git = "https://github.com/actix/actix-web", features=["signal"] }
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```
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Then you can subscribe your server to unix signals. Http server handles three signals:
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* *SIGINT* - Force shutdown workers
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* *SIGTERM* - Graceful shutdown workers
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* *SIGQUIT* - Force shutdown workers
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```rust,ignore
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# extern crate futures;
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# extern crate actix;
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# extern crate actix_web;
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use actix_web::*;
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use actix::actors::signal::{ProcessSignals, Subscribe};
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fn main() {
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let sys = actix::System::new("signals");
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let addr = HttpServer::new(|| {
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Application::new()
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.resource("/", |r| r.h(httpcodes::HTTPOk))})
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.bind("127.0.0.1:8080").unwrap()
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.start();
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// Subscribe to unix signals
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let signals = Arbiter::system_registry().get::<ProcessSignals>();
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signals.send(Subscribe(addr.subscriber()));
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println!("Started http server: 127.0.0.1:8080");
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# actix::Arbiter::system().send(actix::msgs::SystemExit(0));
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let _ = sys.run();
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}
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```
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@ -1,7 +1,6 @@
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use std::rc::Rc;
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use std::net::SocketAddr;
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use actix::dev::*;
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use bytes::Bytes;
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use futures::{Future, Poll, Async};
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use tokio_io::{AsyncRead, AsyncWrite};
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@ -71,6 +70,7 @@ impl<T, H> HttpChannel<T, H>
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pub(crate) fn new(h: Rc<WorkerSettings<H>>,
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io: T, peer: Option<SocketAddr>, http2: bool) -> HttpChannel<T, H>
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{
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h.add_channel();
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if http2 {
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HttpChannel {
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proto: Some(HttpProtocol::H2(
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@ -89,12 +89,6 @@ impl<T, H> HttpChannel<T, H>
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}
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}*/
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impl<T, H> Actor for HttpChannel<T, H>
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where T: AsyncRead + AsyncWrite + 'static, H: HttpHandler + 'static
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{
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type Context = Context<Self>;
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}
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impl<T, H> Future for HttpChannel<T, H>
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where T: AsyncRead + AsyncWrite + 'static, H: HttpHandler + 'static
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{
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@ -105,16 +99,27 @@ impl<T, H> Future for HttpChannel<T, H>
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match self.proto {
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Some(HttpProtocol::H1(ref mut h1)) => {
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match h1.poll() {
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Ok(Async::Ready(h1::Http1Result::Done)) =>
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return Ok(Async::Ready(())),
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Ok(Async::Ready(h1::Http1Result::Done)) => {
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h1.settings().remove_channel();
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return Ok(Async::Ready(()))
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}
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Ok(Async::Ready(h1::Http1Result::Switch)) => (),
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Ok(Async::NotReady) =>
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return Ok(Async::NotReady),
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Err(_) =>
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return Err(()),
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Err(_) => {
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h1.settings().remove_channel();
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return Err(())
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}
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}
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}
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Some(HttpProtocol::H2(ref mut h2)) => return h2.poll(),
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Some(HttpProtocol::H2(ref mut h2)) => {
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let result = h2.poll();
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match result {
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Ok(Async::Ready(())) | Err(_) => h2.settings().remove_channel(),
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_ => (),
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}
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return result
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}
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None => unreachable!(),
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}
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@ -89,6 +89,10 @@ impl<T, H> Http1<T, H>
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keepalive_timer: None }
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}
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pub fn settings(&self) -> &WorkerSettings<H> {
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self.settings.as_ref()
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}
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pub fn into_inner(self) -> (Rc<WorkerSettings<H>>, T, Option<SocketAddr>, Bytes) {
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(self.settings, self.stream.into_inner(), self.addr, self.read_buf.freeze())
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}
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@ -64,6 +64,10 @@ impl<T, H> Http2<T, H>
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}
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}
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pub fn settings(&self) -> &WorkerSettings<H> {
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self.settings.as_ref()
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}
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pub fn poll(&mut self) -> Poll<(), ()> {
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// server
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if let State::Server(ref mut server) = self.state {
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@ -7,7 +7,7 @@ use std::collections::HashMap;
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use actix::dev::*;
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use actix::System;
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use futures::Stream;
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use futures::{Future, Sink, Stream};
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use futures::sync::mpsc;
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use tokio_io::{AsyncRead, AsyncWrite};
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use tokio_core::net::TcpStream;
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@ -107,6 +107,7 @@ pub struct HttpServer<T, A, H, U>
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sockets: HashMap<net::SocketAddr, net::TcpListener>,
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accept: Vec<(mio::SetReadiness, sync_mpsc::Sender<Command>)>,
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exit: bool,
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shutdown_timeout: u16,
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}
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unsafe impl<T, A, H, U> Sync for HttpServer<T, A, H, U> where H: 'static {}
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sockets: HashMap::new(),
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accept: Vec::new(),
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exit: false,
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shutdown_timeout: 30,
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}
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}
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@ -210,6 +212,17 @@ impl<T, A, H, U, V> HttpServer<T, A, H, U>
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self
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}
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/// Timeout for graceful workers shutdown.
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///
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/// After receiving a stop signal, workers have this much time to finish serving requests.
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/// Workers still alive after the timeout are force dropped.
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///
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/// By default shutdown timeout sets to 30 seconds.
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pub fn shutdown_timeout(mut self, sec: u16) -> Self {
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self.shutdown_timeout = sec;
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self
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}
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/// Get addresses of bound sockets.
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pub fn addrs(&self) -> Vec<net::SocketAddr> {
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self.sockets.keys().cloned().collect()
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@ -607,19 +620,42 @@ impl<T, A, H, U> Handler<StopServer> for HttpServer<T, A, H, U>
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let _ = item.1.send(Command::Stop);
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let _ = item.0.set_readiness(mio::Ready::readable());
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}
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ctx.stop();
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// stop workers
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let dur = if msg.graceful { Some(Duration::new(30, 0)) } else { None };
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let (tx, rx) = mpsc::channel(1);
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let dur = if msg.graceful {
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Some(Duration::new(u64::from(self.shutdown_timeout), 0))
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} else {
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None
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};
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for worker in &self.workers {
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worker.send(StopWorker{graceful: dur})
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let tx2 = tx.clone();
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let fut = worker.call(self, StopWorker{graceful: dur});
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ActorFuture::then(fut, move |_, slf, _| {
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slf.workers.pop();
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if slf.workers.is_empty() {
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let _ = tx2.send(());
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// we need to stop system if server was spawned
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if slf.exit {
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Arbiter::system().send(msgs::SystemExit(0))
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}
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}
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fut::ok(())
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}).spawn(ctx);
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}
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// we need to stop system if server was spawned
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if self.exit {
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Arbiter::system().send(msgs::SystemExit(0))
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if !self.workers.is_empty() {
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Self::async_reply(
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rx.into_future().map(|_| ()).map_err(|_| ()).actfuture())
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} else {
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// we need to stop system if server was spawned
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if self.exit {
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Arbiter::system().send(msgs::SystemExit(0))
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}
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Self::empty()
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}
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Self::empty()
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}
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}
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use std::{net, time};
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use std::rc::Rc;
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use std::cell::{RefCell, RefMut};
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use std::cell::{Cell, RefCell, RefMut};
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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, Future};
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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, Future};
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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::{Actor, Arbiter, AsyncContext, Context, Handler, Response, StreamHandler};
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use actix::*;
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use actix::msgs::StopArbiter;
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use helpers;
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@ -33,8 +35,10 @@ pub(crate) struct Conn<T> {
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pub http2: bool,
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}
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/// Stop worker
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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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keep_alive: u64,
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bytes: Rc<helpers::SharedBytesPool>,
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messages: Rc<helpers::SharedMessagePool>,
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channels: Cell<usize>,
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}
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impl<H> WorkerSettings<H> {
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keep_alive: keep_alive.unwrap_or(0),
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bytes: Rc::new(helpers::SharedBytesPool::new()),
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messages: Rc::new(helpers::SharedMessagePool::new()),
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channels: Cell::new(0),
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}
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}
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pub fn get_http_message(&self) -> helpers::SharedHttpMessage {
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helpers::SharedHttpMessage::new(self.messages.get(), Rc::clone(&self.messages))
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}
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pub fn add_channel(&self) {
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self.channels.set(self.channels.get()+1);
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}
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pub fn remove_channel(&self) {
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let num = self.channels.get();
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if num > 0 {
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self.channels.set(num-1);
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} else {
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error!("Number of removed channels is bigger than added channel. Bug in actix-web");
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}
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}
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}
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/// Http worker
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@ -100,6 +117,24 @@ impl<H: 'static> Worker<H> {
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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.h.channels.get();
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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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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> {
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@ -133,10 +168,21 @@ impl<H> Handler<Conn<net::TcpStream>> for Worker<H>
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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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fn handle(&mut self, _: StopWorker, _: &mut Context<Self>) -> Response<Self, StopWorker>
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fn handle(&mut self, msg: StopWorker, ctx: &mut Context<Self>) -> Response<Self, StopWorker>
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{
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Arbiter::arbiter().send(StopArbiter(0));
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Self::empty()
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let num = self.h.channels.get();
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if num == 0 {
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info!("Shutting down http worker, 0 connections");
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Self::reply(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::reply(false)
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}
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}
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}
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