2017-11-04 20:33:14 +01:00
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use std::{io, net};
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2017-10-07 06:48:14 +02:00
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use std::rc::Rc;
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2017-11-10 22:08:15 +01:00
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use std::net::SocketAddr;
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2017-10-16 22:13:32 +02:00
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use std::marker::PhantomData;
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2017-10-07 06:48:14 +02:00
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use actix::dev::*;
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2017-11-04 20:33:14 +01:00
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use futures::Stream;
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2017-10-16 22:13:32 +02:00
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use tokio_io::{AsyncRead, AsyncWrite};
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2017-11-04 20:33:14 +01:00
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use tokio_core::net::{TcpListener, TcpStream};
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2017-10-07 06:48:14 +02:00
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2017-11-10 22:08:15 +01:00
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#[cfg(feature="tls")]
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use futures::Future;
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2017-11-02 00:34:58 +01:00
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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::{TlsStream, TlsAcceptorExt};
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2017-11-04 21:24:57 +01:00
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#[cfg(feature="alpn")]
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use futures::Future;
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2017-11-04 20:33:14 +01:00
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#[cfg(feature="alpn")]
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use openssl::ssl::{SslMethod, SslAcceptorBuilder};
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#[cfg(feature="alpn")]
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use openssl::pkcs12::ParsedPkcs12;
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#[cfg(feature="alpn")]
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use tokio_openssl::{SslStream, SslAcceptorExt};
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2017-12-06 20:00:39 +01:00
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use channel::{HttpChannel, HttpHandler, IntoHttpHandler};
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2017-10-22 03:54:24 +02:00
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2017-10-07 06:48:14 +02:00
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2017-10-08 23:56:51 +02:00
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/// An HTTP Server
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2017-10-16 22:13:32 +02:00
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///
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/// `T` - async stream, anything that implements `AsyncRead` + `AsyncWrite`.
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///
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/// `A` - peer address
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2017-10-22 03:54:24 +02:00
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///
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/// `H` - request handler
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pub struct HttpServer<T, A, H> {
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h: Rc<Vec<H>>,
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2017-10-16 22:13:32 +02:00
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io: PhantomData<T>,
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addr: PhantomData<A>,
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2017-10-07 06:48:14 +02:00
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}
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2017-10-22 03:54:24 +02:00
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impl<T: 'static, A: 'static, H: 'static> Actor for HttpServer<T, A, H> {
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2017-10-07 06:48:14 +02:00
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type Context = Context<Self>;
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}
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2017-10-22 03:54:24 +02:00
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impl<T, A, H> HttpServer<T, A, H> where H: HttpHandler
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{
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/// Create new http server with vec of http handlers
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2017-12-06 20:00:39 +01:00
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pub fn new<V, U: IntoIterator<Item=V>>(handler: U) -> Self
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where V: IntoHttpHandler<Handler=H>
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{
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let apps: Vec<_> = handler.into_iter().map(|h| h.into_handler()).collect();
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2017-10-22 03:54:24 +02:00
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HttpServer {h: Rc::new(apps),
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io: PhantomData,
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addr: PhantomData}
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2017-10-07 06:48:14 +02:00
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}
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2017-10-16 22:13:32 +02:00
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}
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2017-10-22 03:54:24 +02:00
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impl<T, A, H> HttpServer<T, A, H>
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2017-10-16 22:13:32 +02:00
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where T: AsyncRead + AsyncWrite + 'static,
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2017-10-22 03:54:24 +02:00
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A: 'static,
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H: HttpHandler,
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2017-10-16 22:13:32 +02:00
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{
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/// Start listening for incomming connections from stream.
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pub fn serve_incoming<S, Addr>(self, stream: S) -> io::Result<Addr>
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where Self: ActorAddress<Self, Addr>,
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S: Stream<Item=(T, A), Error=io::Error> + 'static
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{
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Ok(HttpServer::create(move |ctx| {
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2017-11-10 22:08:15 +01:00
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ctx.add_stream(stream.map(|(t, _)| IoStream(t, None, false)));
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2017-10-16 22:13:32 +02:00
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self
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}))
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}
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2017-10-07 06:48:14 +02:00
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2017-11-02 00:34:58 +01:00
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fn bind<S: net::ToSocketAddrs>(&self, addr: S)
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-> io::Result<Vec<(net::SocketAddr, TcpListener)>>
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2017-10-07 06:48:14 +02:00
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{
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2017-10-15 23:53:03 +02:00
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let mut err = None;
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let mut addrs = Vec::new();
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2017-10-16 10:19:23 +02:00
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if let Ok(iter) = addr.to_socket_addrs() {
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2017-10-15 23:53:03 +02:00
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for addr in iter {
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match TcpListener::bind(&addr, Arbiter::handle()) {
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2017-10-27 08:14:33 +02:00
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Ok(tcp) => addrs.push((addr, tcp)),
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2017-10-15 23:53:03 +02:00
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Err(e) => err = Some(e),
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}
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}
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}
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if addrs.is_empty() {
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if let Some(e) = err.take() {
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Err(e)
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} else {
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Err(io::Error::new(io::ErrorKind::Other, "Can not bind to address."))
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}
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} else {
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2017-11-02 00:34:58 +01:00
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Ok(addrs)
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2017-10-15 23:53:03 +02:00
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}
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2017-10-07 06:48:14 +02:00
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}
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}
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2017-11-02 00:34:58 +01:00
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impl<H: HttpHandler> HttpServer<TcpStream, net::SocketAddr, H> {
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/// Start listening for incomming connections.
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///
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/// This methods converts address to list of `SocketAddr`
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/// then binds to all available addresses.
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pub fn serve<S, Addr>(self, addr: S) -> io::Result<Addr>
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where Self: ActorAddress<Self, Addr>,
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S: net::ToSocketAddrs,
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{
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let addrs = self.bind(addr)?;
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Ok(HttpServer::create(move |ctx| {
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for (addr, tcp) in addrs {
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info!("Starting http server on {}", addr);
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2017-11-10 22:08:15 +01:00
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ctx.add_stream(tcp.incoming().map(|(t, a)| IoStream(t, Some(a), false)));
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2017-11-02 00:34:58 +01:00
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}
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self
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}))
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}
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}
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#[cfg(feature="tls")]
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impl<H: HttpHandler> HttpServer<TlsStream<TcpStream>, net::SocketAddr, H> {
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/// Start listening for incomming tls connections.
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///
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/// This methods converts address to list of `SocketAddr`
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/// then binds to all available addresses.
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pub fn serve_tls<S, Addr>(self, addr: S, pkcs12: ::Pkcs12) -> io::Result<Addr>
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where Self: ActorAddress<Self, Addr>,
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S: net::ToSocketAddrs,
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{
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let addrs = self.bind(addr)?;
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let acceptor = match TlsAcceptor::builder(pkcs12) {
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Ok(builder) => {
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match builder.build() {
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Ok(acceptor) => Rc::new(acceptor),
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Err(err) => return Err(io::Error::new(io::ErrorKind::Other, err))
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}
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}
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Err(err) => return Err(io::Error::new(io::ErrorKind::Other, err))
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};
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Ok(HttpServer::create(move |ctx| {
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for (addr, tcp) in addrs {
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info!("Starting tls http server on {}", addr);
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let acc = acceptor.clone();
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ctx.add_stream(tcp.incoming().and_then(move |(stream, addr)| {
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TlsAcceptorExt::accept_async(acc.as_ref(), stream)
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2017-11-02 20:54:09 +01:00
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.map(move |t| {
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2017-11-10 22:08:15 +01:00
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IoStream(t, Some(addr), false)
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2017-11-02 20:54:09 +01:00
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})
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.map_err(|err| {
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2017-11-03 19:29:44 +01:00
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trace!("Error during handling tls connection: {}", err);
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2017-11-02 20:54:09 +01:00
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io::Error::new(io::ErrorKind::Other, err)
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})
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2017-11-02 00:34:58 +01:00
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}));
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}
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self
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}))
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}
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}
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2017-11-04 20:33:14 +01:00
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#[cfg(feature="alpn")]
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impl<H: HttpHandler> HttpServer<SslStream<TcpStream>, net::SocketAddr, H> {
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/// Start listening for incomming tls connections.
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///
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/// This methods converts address to list of `SocketAddr`
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/// then binds to all available addresses.
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pub fn serve_tls<S, Addr>(self, addr: S, identity: ParsedPkcs12) -> io::Result<Addr>
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where Self: ActorAddress<Self, Addr>,
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S: net::ToSocketAddrs,
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{
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let addrs = self.bind(addr)?;
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let acceptor = match SslAcceptorBuilder::mozilla_intermediate(SslMethod::tls(),
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&identity.pkey,
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&identity.cert,
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&identity.chain)
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{
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Ok(mut builder) => {
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match builder.builder_mut().set_alpn_protocols(&[b"h2", b"http/1.1"]) {
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Ok(_) => builder.build(),
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Err(err) => return Err(io::Error::new(io::ErrorKind::Other, err)),
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}
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},
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Err(err) => return Err(io::Error::new(io::ErrorKind::Other, err))
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};
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Ok(HttpServer::create(move |ctx| {
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for (addr, tcp) in addrs {
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info!("Starting tls http server on {}", addr);
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let acc = acceptor.clone();
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ctx.add_stream(tcp.incoming().and_then(move |(stream, addr)| {
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SslAcceptorExt::accept_async(&acc, stream)
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.map(move |stream| {
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let http2 = if let Some(p) =
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stream.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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2017-11-10 22:08:15 +01:00
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IoStream(stream, Some(addr), http2)
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2017-11-04 20:33:14 +01:00
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})
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.map_err(|err| {
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trace!("Error during handling tls connection: {}", err);
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io::Error::new(io::ErrorKind::Other, err)
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})
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}));
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}
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self
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}))
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}
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}
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2017-11-10 22:08:15 +01:00
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struct IoStream<T>(T, Option<SocketAddr>, bool);
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2017-10-22 00:21:16 +02:00
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2017-11-10 22:08:15 +01:00
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impl<T> ResponseType for IoStream<T>
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where T: AsyncRead + AsyncWrite + 'static
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2017-10-16 22:13:32 +02:00
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{
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2017-10-07 06:48:14 +02:00
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type Item = ();
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type Error = ();
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}
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2017-11-10 22:08:15 +01:00
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impl<T, A, H> StreamHandler<IoStream<T>, io::Error> for HttpServer<T, A, H>
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2017-10-22 03:54:24 +02:00
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where T: AsyncRead + AsyncWrite + 'static,
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2017-11-10 22:08:15 +01:00
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H: HttpHandler + 'static,
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A: 'static {}
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2017-10-07 06:48:14 +02:00
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2017-11-10 22:08:15 +01:00
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impl<T, A, H> Handler<IoStream<T>, io::Error> for HttpServer<T, A, H>
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2017-10-16 22:13:32 +02:00
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where T: AsyncRead + AsyncWrite + 'static,
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2017-10-22 03:54:24 +02:00
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H: HttpHandler + 'static,
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2017-11-10 22:08:15 +01:00
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A: 'static,
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2017-10-16 22:13:32 +02:00
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{
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2017-11-02 00:34:58 +01:00
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fn error(&mut self, err: io::Error, _: &mut Context<Self>) {
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2017-11-04 17:07:44 +01:00
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debug!("Error handling request: {}", err)
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2017-11-02 00:34:58 +01:00
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}
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2017-11-10 22:08:15 +01:00
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fn handle(&mut self, msg: IoStream<T>, _: &mut Context<Self>)
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-> Response<Self, IoStream<T>>
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2017-10-07 06:48:14 +02:00
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{
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Arbiter::handle().spawn(
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2017-11-04 20:33:14 +01:00
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HttpChannel::new(msg.0, msg.1, Rc::clone(&self.h), msg.2));
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2017-10-07 09:22:09 +02:00
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Self::empty()
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2017-10-07 06:48:14 +02:00
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}
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}
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