mirror of
https://github.com/fafhrd91/actix-net
synced 2024-11-24 00:01:11 +01:00
feat(tls): add accept::rustls_0_22 module
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02ac0bb4f7
@ -115,6 +115,7 @@ actix-server = "2"
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bytes = "1"
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env_logger = "0.10"
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futures-util = { version = "0.3.17", default-features = false, features = ["sink"] }
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itertools = "0.12"
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rcgen = "0.11"
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rustls-pemfile = "2"
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tokio-rustls-025 = { package = "tokio-rustls", version = "0.25" }
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@ -122,4 +123,4 @@ trust-dns-resolver = "0.23"
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[[example]]
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name = "accept-rustls"
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required-features = ["accept", "rustls-0_22"]
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required-features = ["accept", "rustls-0_22-webpki-roots"]
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@ -15,11 +15,8 @@
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//! http --verify=false https://127.0.0.1:8443
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//! ```
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#[rustfmt::skip]
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// this `use` is only exists because of how we have organised the crate
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// it is not necessary for your actual code; you should import from `rustls` normally
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use tokio_rustls_024::rustls;
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use std::{
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fs::File,
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io::{self, BufReader},
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@ -33,10 +30,13 @@ use std::{
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use actix_rt::net::TcpStream;
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use actix_server::Server;
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use actix_service::ServiceFactoryExt as _;
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use actix_tls::accept::rustls_0_21::{Acceptor as RustlsAcceptor, TlsStream};
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use actix_tls::accept::rustls_0_22::{Acceptor as RustlsAcceptor, TlsStream};
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use futures_util::future::ok;
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use rustls::{server::ServerConfig, Certificate, PrivateKey};
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use itertools::Itertools as _;
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use rustls::server::ServerConfig;
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use rustls_pemfile::{certs, rsa_private_keys};
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use rustls_pki_types_1::PrivateKeyDer;
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use tokio_rustls_025::rustls;
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use tracing::info;
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#[actix_rt::main]
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@ -54,17 +54,15 @@ async fn main() -> io::Result<()> {
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let cert_file = &mut BufReader::new(File::open(cert_path).unwrap());
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let key_file = &mut BufReader::new(File::open(key_path).unwrap());
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let cert_chain = certs(cert_file)
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.unwrap()
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.into_iter()
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.map(Certificate)
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.collect();
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let mut keys = rsa_private_keys(key_file).unwrap();
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let cert_chain = certs(cert_file);
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let mut keys = rsa_private_keys(key_file);
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let tls_config = ServerConfig::builder()
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.with_safe_defaults()
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.with_no_client_auth()
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.with_single_cert(cert_chain, PrivateKey(keys.remove(0)))
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.with_single_cert(
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cert_chain.try_collect::<_, Vec<_>, _>()?,
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PrivateKeyDer::Pkcs1(keys.next().unwrap()?),
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)
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.unwrap();
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let tls_acceptor = RustlsAcceptor::new(tls_config);
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@ -22,6 +22,12 @@ pub use rustls_0_20 as rustls;
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#[cfg(feature = "rustls-0_21")]
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pub mod rustls_0_21;
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#[cfg(any(
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feature = "rustls-0_22-webpki-roots",
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feature = "rustls-0_22-native-roots",
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))]
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pub mod rustls_0_22;
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#[cfg(feature = "native-tls")]
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pub mod native_tls;
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198
actix-tls/src/accept/rustls_0_22.rs
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198
actix-tls/src/accept/rustls_0_22.rs
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@ -0,0 +1,198 @@
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//! `rustls` v0.22 based TLS connection acceptor service.
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//!
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//! See [`Acceptor`] for main service factory docs.
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use std::{
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convert::Infallible,
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future::Future,
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io::{self, IoSlice},
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pin::Pin,
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sync::Arc,
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task::{Context, Poll},
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time::Duration,
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};
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use actix_rt::{
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net::{ActixStream, Ready},
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time::{sleep, Sleep},
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};
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use actix_service::{Service, ServiceFactory};
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use actix_utils::{
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counter::{Counter, CounterGuard},
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future::{ready, Ready as FutReady},
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};
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use pin_project_lite::pin_project;
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use tokio::io::{AsyncRead, AsyncWrite, ReadBuf};
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use tokio_rustls::{Accept, TlsAcceptor};
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use tokio_rustls_025 as tokio_rustls;
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use super::{TlsError, DEFAULT_TLS_HANDSHAKE_TIMEOUT, MAX_CONN_COUNTER};
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pub mod reexports {
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//! Re-exports from `rustls` that are useful for acceptors.
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pub use tokio_rustls_025::rustls::ServerConfig;
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}
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/// Wraps a `rustls` based async TLS stream in order to implement [`ActixStream`].
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pub struct TlsStream<IO>(tokio_rustls::server::TlsStream<IO>);
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impl_more::impl_from!(<IO> in tokio_rustls::server::TlsStream<IO> => TlsStream<IO>);
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impl_more::impl_deref_and_mut!(<IO> in TlsStream<IO> => tokio_rustls::server::TlsStream<IO>);
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impl<IO: ActixStream> AsyncRead for TlsStream<IO> {
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fn poll_read(
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self: Pin<&mut Self>,
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cx: &mut Context<'_>,
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buf: &mut ReadBuf<'_>,
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) -> Poll<io::Result<()>> {
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Pin::new(&mut **self.get_mut()).poll_read(cx, buf)
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}
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}
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impl<IO: ActixStream> AsyncWrite for TlsStream<IO> {
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fn poll_write(
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self: Pin<&mut Self>,
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cx: &mut Context<'_>,
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buf: &[u8],
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) -> Poll<io::Result<usize>> {
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Pin::new(&mut **self.get_mut()).poll_write(cx, buf)
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}
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fn poll_flush(self: Pin<&mut Self>, cx: &mut Context<'_>) -> Poll<io::Result<()>> {
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Pin::new(&mut **self.get_mut()).poll_flush(cx)
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}
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fn poll_shutdown(self: Pin<&mut Self>, cx: &mut Context<'_>) -> Poll<io::Result<()>> {
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Pin::new(&mut **self.get_mut()).poll_shutdown(cx)
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}
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fn poll_write_vectored(
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self: Pin<&mut Self>,
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cx: &mut Context<'_>,
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bufs: &[IoSlice<'_>],
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) -> Poll<io::Result<usize>> {
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Pin::new(&mut **self.get_mut()).poll_write_vectored(cx, bufs)
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}
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fn is_write_vectored(&self) -> bool {
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(**self).is_write_vectored()
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}
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}
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impl<IO: ActixStream> ActixStream for TlsStream<IO> {
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fn poll_read_ready(&self, cx: &mut Context<'_>) -> Poll<io::Result<Ready>> {
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IO::poll_read_ready((**self).get_ref().0, cx)
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}
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fn poll_write_ready(&self, cx: &mut Context<'_>) -> Poll<io::Result<Ready>> {
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IO::poll_write_ready((**self).get_ref().0, cx)
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}
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}
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/// Accept TLS connections via the `rustls` crate.
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pub struct Acceptor {
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config: Arc<reexports::ServerConfig>,
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handshake_timeout: Duration,
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}
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impl Acceptor {
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/// Constructs `rustls` based acceptor service factory.
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pub fn new(config: reexports::ServerConfig) -> Self {
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Acceptor {
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config: Arc::new(config),
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handshake_timeout: DEFAULT_TLS_HANDSHAKE_TIMEOUT,
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}
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}
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/// Limit the amount of time that the acceptor will wait for a TLS handshake to complete.
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///
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/// Default timeout is 3 seconds.
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pub fn set_handshake_timeout(&mut self, handshake_timeout: Duration) -> &mut Self {
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self.handshake_timeout = handshake_timeout;
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self
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}
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}
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impl Clone for Acceptor {
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fn clone(&self) -> Self {
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Self {
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config: self.config.clone(),
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handshake_timeout: self.handshake_timeout,
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}
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}
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}
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impl<IO: ActixStream> ServiceFactory<IO> for Acceptor {
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type Response = TlsStream<IO>;
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type Error = TlsError<io::Error, Infallible>;
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type Config = ();
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type Service = AcceptorService;
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type InitError = ();
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type Future = FutReady<Result<Self::Service, Self::InitError>>;
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fn new_service(&self, _: ()) -> Self::Future {
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let res = MAX_CONN_COUNTER.with(|conns| {
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Ok(AcceptorService {
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acceptor: self.config.clone().into(),
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conns: conns.clone(),
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handshake_timeout: self.handshake_timeout,
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})
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});
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ready(res)
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}
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}
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/// Rustls based acceptor service.
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pub struct AcceptorService {
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acceptor: TlsAcceptor,
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conns: Counter,
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handshake_timeout: Duration,
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}
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impl<IO: ActixStream> Service<IO> for AcceptorService {
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type Response = TlsStream<IO>;
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type Error = TlsError<io::Error, Infallible>;
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type Future = AcceptFut<IO>;
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fn poll_ready(&self, cx: &mut Context<'_>) -> Poll<Result<(), Self::Error>> {
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if self.conns.available(cx) {
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Poll::Ready(Ok(()))
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} else {
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Poll::Pending
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}
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}
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fn call(&self, req: IO) -> Self::Future {
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AcceptFut {
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fut: self.acceptor.accept(req),
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timeout: sleep(self.handshake_timeout),
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_guard: self.conns.get(),
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}
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}
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}
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pin_project! {
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/// Accept future for Rustls service.
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#[doc(hidden)]
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pub struct AcceptFut<IO: ActixStream> {
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fut: Accept<IO>,
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#[pin]
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timeout: Sleep,
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_guard: CounterGuard,
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}
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}
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impl<IO: ActixStream> Future for AcceptFut<IO> {
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type Output = Result<TlsStream<IO>, TlsError<io::Error, Infallible>>;
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fn poll(self: Pin<&mut Self>, cx: &mut Context<'_>) -> Poll<Self::Output> {
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let mut this = self.project();
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match Pin::new(&mut this.fut).poll(cx) {
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Poll::Ready(Ok(stream)) => Poll::Ready(Ok(TlsStream(stream))),
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Poll::Ready(Err(err)) => Poll::Ready(Err(TlsError::Tls(err))),
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Poll::Pending => this.timeout.poll(cx).map(|_| Err(TlsError::Timeout)),
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}
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}
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}
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