axum_server/tls_openssl/
mod.rs

1//! Tls implementation using [`openssl`]
2//!
3//! # Example
4//!
5//! ```rust,no_run
6//! use axum::{routing::get, Router};
7//! use axum_server::tls_openssl::OpenSSLConfig;
8//! use std::net::SocketAddr;
9//!
10//! #[tokio::main]
11//! async fn main() {
12//!     let app = Router::new().route("/", get(|| async { "Hello, world!" }));
13//!
14//!     let config = OpenSSLConfig::from_pem_file(
15//!         "examples/self-signed-certs/cert.pem",
16//!         "examples/self-signed-certs/key.pem",
17//!     )
18//!     .unwrap();
19//!
20//!     let addr = SocketAddr::from(([127, 0, 0, 1], 3000));
21//!     println!("listening on {}", addr);
22//!     axum_server::bind_openssl(addr, config)
23//!         .serve(app.into_make_service())
24//!         .await
25//!         .unwrap();
26//! }
27//! ```
28
29use self::future::OpenSSLAcceptorFuture;
30use crate::{
31    accept::{Accept, DefaultAcceptor},
32    server::Server,
33};
34use arc_swap::ArcSwap;
35use openssl::{
36    pkey::PKey,
37    ssl::{
38        self, AlpnError, Error as OpenSSLError, SslAcceptor, SslAcceptorBuilder, SslFiletype,
39        SslMethod, SslRef,
40    },
41    x509::X509,
42};
43use std::{convert::TryFrom, fmt, net::SocketAddr, path::Path, sync::Arc, time::Duration};
44use tokio::io::{AsyncRead, AsyncWrite};
45use tokio_openssl::SslStream;
46
47pub mod future;
48
49/// Create a TLS server that will be bound to the provided socket with a configuration. See
50/// the [`crate::tls_openssl`] module for more details.
51pub fn bind_openssl(addr: SocketAddr, config: OpenSSLConfig) -> Server<OpenSSLAcceptor> {
52    let acceptor = OpenSSLAcceptor::new(config);
53
54    Server::bind(addr).acceptor(acceptor)
55}
56
57/// Tls acceptor that uses OpenSSL. For details on how to use this see [`crate::tls_openssl`] module
58/// for more details.
59#[derive(Clone)]
60pub struct OpenSSLAcceptor<A = DefaultAcceptor> {
61    inner: A,
62    config: OpenSSLConfig,
63    handshake_timeout: Duration,
64}
65
66impl OpenSSLAcceptor {
67    /// Create a new OpenSSL acceptor based on the provided [`OpenSSLConfig`]. This is
68    /// generally used with manual calls to [`Server::bind`]. You may want [`bind_openssl`]
69    /// instead.
70    pub fn new(config: OpenSSLConfig) -> Self {
71        let inner = DefaultAcceptor::new();
72
73        #[cfg(not(test))]
74        let handshake_timeout = Duration::from_secs(10);
75
76        // Don't force tests to wait too long.
77        #[cfg(test)]
78        let handshake_timeout = Duration::from_secs(1);
79
80        Self {
81            inner,
82            config,
83            handshake_timeout,
84        }
85    }
86
87    /// Override the default TLS handshake timeout of 10 seconds.
88    pub fn handshake_timeout(mut self, val: Duration) -> Self {
89        self.handshake_timeout = val;
90        self
91    }
92}
93
94impl<A> OpenSSLAcceptor<A> {
95    /// Overwrite inner acceptor.
96    pub fn acceptor<Acceptor>(self, acceptor: Acceptor) -> OpenSSLAcceptor<Acceptor> {
97        OpenSSLAcceptor {
98            inner: acceptor,
99            config: self.config,
100            handshake_timeout: self.handshake_timeout,
101        }
102    }
103}
104
105impl<A, I, S> Accept<I, S> for OpenSSLAcceptor<A>
106where
107    A: Accept<I, S>,
108    A::Stream: AsyncRead + AsyncWrite + Unpin,
109{
110    type Stream = SslStream<A::Stream>;
111    type Service = A::Service;
112    type Future = OpenSSLAcceptorFuture<A::Future, A::Stream, A::Service>;
113
114    fn accept(&self, stream: I, service: S) -> Self::Future {
115        let inner_future = self.inner.accept(stream, service);
116        let config = self.config.clone();
117
118        OpenSSLAcceptorFuture::new(inner_future, config, self.handshake_timeout)
119    }
120}
121
122impl<A> fmt::Debug for OpenSSLAcceptor<A> {
123    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
124        f.debug_struct("OpenSSLAcceptor").finish()
125    }
126}
127
128/// OpenSSL configuration.
129#[derive(Clone)]
130pub struct OpenSSLConfig {
131    acceptor: Arc<ArcSwap<SslAcceptor>>,
132}
133
134impl OpenSSLConfig {
135    /// Create config from `Arc<`[`SslAcceptor`]`>`.
136    pub fn from_acceptor(acceptor: Arc<SslAcceptor>) -> Self {
137        let acceptor = Arc::new(ArcSwap::new(acceptor));
138
139        OpenSSLConfig { acceptor }
140    }
141
142    /// This helper will establish a TLS server based on strong cipher suites
143    /// from a DER-encoded certificate and key.
144    pub fn from_der(cert: &[u8], key: &[u8]) -> Result<Self, OpenSSLError> {
145        let acceptor = Arc::new(ArcSwap::from_pointee(config_from_der(cert, key)?));
146
147        Ok(OpenSSLConfig { acceptor })
148    }
149
150    /// This helper will establish a TLS server based on strong cipher suites
151    /// from a PEM-formatted certificate and key.
152    pub fn from_pem(cert: &[u8], key: &[u8]) -> Result<Self, OpenSSLError> {
153        let acceptor = Arc::new(ArcSwap::from_pointee(config_from_pem(cert, key)?));
154
155        Ok(OpenSSLConfig { acceptor })
156    }
157
158    /// This helper will establish a TLS server based on strong cipher suites
159    /// from a PEM-formatted certificate and key.
160    pub fn from_pem_file(
161        cert: impl AsRef<Path>,
162        key: impl AsRef<Path>,
163    ) -> Result<Self, OpenSSLError> {
164        let acceptor = Arc::new(ArcSwap::from_pointee(config_from_pem_file(cert, key)?));
165
166        Ok(OpenSSLConfig { acceptor })
167    }
168
169    /// This helper will establish a TLS server based on strong cipher suites
170    /// from a PEM-formatted certificate chain and key.
171    pub fn from_pem_chain_file(
172        chain: impl AsRef<Path>,
173        key: impl AsRef<Path>,
174    ) -> Result<Self, OpenSSLError> {
175        let acceptor = Arc::new(ArcSwap::from_pointee(config_from_pem_chain_file(
176            chain, key,
177        )?));
178
179        Ok(OpenSSLConfig { acceptor })
180    }
181
182    /// Get inner `Arc<`[`SslAcceptor`]`>`.
183    pub fn get_inner(&self) -> Arc<SslAcceptor> {
184        self.acceptor.load_full()
185    }
186
187    /// Reload acceptor from `Arc<`[`SslAcceptor`]`>`.
188    pub fn reload_from_acceptor(&self, acceptor: Arc<SslAcceptor>) {
189        self.acceptor.store(acceptor);
190    }
191
192    /// Reload acceptor from a DER-encoded certificate and key.
193    pub fn reload_from_der(&self, cert: &[u8], key: &[u8]) -> Result<(), OpenSSLError> {
194        let acceptor = Arc::new(config_from_der(cert, key)?);
195        self.acceptor.store(acceptor);
196
197        Ok(())
198    }
199
200    /// Reload acceptor from a PEM-formatted certificate and key.
201    pub fn reload_from_pem(&self, cert: &[u8], key: &[u8]) -> Result<(), OpenSSLError> {
202        let acceptor = Arc::new(config_from_pem(cert, key)?);
203        self.acceptor.store(acceptor);
204
205        Ok(())
206    }
207
208    /// Reload acceptor from a PEM-formatted certificate and key.
209    pub fn reload_from_pem_file(
210        &self,
211        cert: impl AsRef<Path>,
212        key: impl AsRef<Path>,
213    ) -> Result<(), OpenSSLError> {
214        let acceptor = Arc::new(config_from_pem_file(cert, key)?);
215        self.acceptor.store(acceptor);
216
217        Ok(())
218    }
219
220    /// Reload acceptor from a PEM-formatted certificate chain and key.
221    pub fn reload_from_pem_chain_file(
222        &self,
223        chain: impl AsRef<Path>,
224        key: impl AsRef<Path>,
225    ) -> Result<(), OpenSSLError> {
226        let acceptor = Arc::new(config_from_pem_chain_file(chain, key)?);
227        self.acceptor.store(acceptor);
228
229        Ok(())
230    }
231}
232
233impl TryFrom<SslAcceptorBuilder> for OpenSSLConfig {
234    type Error = OpenSSLError;
235
236    /// Build the [`OpenSSLConfig`] from an [`SslAcceptorBuilder`]. This allows precise
237    /// control over the settings that will be used by OpenSSL in this server.
238    ///
239    /// # Example
240    /// ```
241    /// use axum_server::tls_openssl::OpenSSLConfig;
242    /// use openssl::ssl::{SslAcceptor, SslMethod};
243    /// use std::convert::TryFrom;
244    ///
245    /// #[tokio::main]
246    /// async fn main() {
247    ///     let mut tls_builder = SslAcceptor::mozilla_modern_v5(SslMethod::tls())
248    ///         .unwrap();
249    ///     // Set configurations like set_certificate_chain_file or
250    ///     // set_private_key_file.
251    ///     // let tls_builder.set_ ... ;
252    ///     let _config = OpenSSLConfig::try_from(tls_builder);
253    /// }
254    /// ```
255    fn try_from(mut tls_builder: SslAcceptorBuilder) -> Result<Self, Self::Error> {
256        // Any other checks?
257        tls_builder.check_private_key()?;
258        tls_builder.set_alpn_select_callback(alpn_select);
259
260        let acceptor = Arc::new(ArcSwap::from_pointee(tls_builder.build()));
261
262        Ok(OpenSSLConfig { acceptor })
263    }
264}
265
266impl fmt::Debug for OpenSSLConfig {
267    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
268        f.debug_struct("OpenSSLConfig").finish()
269    }
270}
271
272fn alpn_select<'a>(_tls: &mut SslRef, client: &'a [u8]) -> Result<&'a [u8], AlpnError> {
273    ssl::select_next_proto(b"\x02h2\x08http/1.1", client).ok_or(AlpnError::NOACK)
274}
275
276fn config_from_der(cert: &[u8], key: &[u8]) -> Result<SslAcceptor, OpenSSLError> {
277    let cert = X509::from_der(cert)?;
278    let key = PKey::private_key_from_der(key)?;
279
280    let mut tls_builder = SslAcceptor::mozilla_modern_v5(SslMethod::tls())?;
281    tls_builder.set_certificate(&cert)?;
282    tls_builder.set_private_key(&key)?;
283    tls_builder.check_private_key()?;
284    tls_builder.set_alpn_select_callback(alpn_select);
285
286    let acceptor = tls_builder.build();
287    Ok(acceptor)
288}
289
290fn config_from_pem(cert: &[u8], key: &[u8]) -> Result<SslAcceptor, OpenSSLError> {
291    let cert = X509::from_pem(cert)?;
292    let key = PKey::private_key_from_pem(key)?;
293
294    let mut tls_builder = SslAcceptor::mozilla_modern_v5(SslMethod::tls())?;
295    tls_builder.set_certificate(&cert)?;
296    tls_builder.set_private_key(&key)?;
297    tls_builder.check_private_key()?;
298    tls_builder.set_alpn_select_callback(alpn_select);
299
300    let acceptor = tls_builder.build();
301    Ok(acceptor)
302}
303
304fn config_from_pem_file(
305    cert: impl AsRef<Path>,
306    key: impl AsRef<Path>,
307) -> Result<SslAcceptor, OpenSSLError> {
308    let mut tls_builder = SslAcceptor::mozilla_modern_v5(SslMethod::tls())?;
309    tls_builder.set_certificate_file(cert, SslFiletype::PEM)?;
310    tls_builder.set_private_key_file(key, SslFiletype::PEM)?;
311    tls_builder.check_private_key()?;
312    tls_builder.set_alpn_select_callback(alpn_select);
313
314    let acceptor = tls_builder.build();
315    Ok(acceptor)
316}
317
318fn config_from_pem_chain_file(
319    chain: impl AsRef<Path>,
320    key: impl AsRef<Path>,
321) -> Result<SslAcceptor, OpenSSLError> {
322    let mut tls_builder = SslAcceptor::mozilla_modern_v5(SslMethod::tls())?;
323    tls_builder.set_certificate_chain_file(chain)?;
324    tls_builder.set_private_key_file(key, SslFiletype::PEM)?;
325    tls_builder.check_private_key()?;
326    tls_builder.set_alpn_select_callback(alpn_select);
327
328    let acceptor = tls_builder.build();
329    Ok(acceptor)
330}
331
332#[cfg(test)]
333mod tests {
334    use crate::{
335        handle::Handle,
336        tls_openssl::{self, OpenSSLConfig},
337    };
338    use axum::body::Body;
339    use axum::routing::get;
340    use axum::Router;
341    use bytes::Bytes;
342    use http::{response, Request};
343    use http_body_util::BodyExt;
344    use hyper::client::conn::http1::{handshake, SendRequest};
345    use hyper_util::rt::TokioIo;
346    use std::{io, net::SocketAddr};
347    use tokio::{net::TcpStream, task::JoinHandle};
348
349    use openssl::{
350        ssl::{Ssl, SslConnector, SslMethod, SslVerifyMode},
351        x509::X509,
352    };
353    use std::pin::Pin;
354    use tokio_openssl::SslStream;
355
356    #[tokio::test]
357    async fn start_and_request() {
358        let (_handle, _server_task, addr) = start_server().await;
359
360        let (mut client, _conn) = connect(addr).await;
361
362        let (_parts, body) = send_empty_request(&mut client).await;
363
364        assert_eq!(body.as_ref(), b"Hello, world!");
365    }
366
367    #[tokio::test]
368    async fn test_reload() {
369        let handle = Handle::new();
370
371        let config = OpenSSLConfig::from_pem_file(
372            "examples/self-signed-certs/cert.pem",
373            "examples/self-signed-certs/key.pem",
374        )
375        .unwrap();
376
377        let server_handle = handle.clone();
378        let openssl_config = config.clone();
379        tokio::spawn(async move {
380            let app = Router::new().route("/", get(|| async { "Hello, world!" }));
381
382            let addr = SocketAddr::from(([127, 0, 0, 1], 0));
383
384            tls_openssl::bind_openssl(addr, openssl_config)
385                .handle(server_handle)
386                .serve(app.into_make_service())
387                .await
388        });
389
390        let addr = handle.listening().await.unwrap();
391
392        let cert_a = get_first_cert(addr).await;
393        let mut cert_b = get_first_cert(addr).await;
394
395        assert_eq!(cert_a, cert_b);
396
397        config
398            .reload_from_pem_file(
399                "examples/self-signed-certs/reload/cert.pem",
400                "examples/self-signed-certs/reload/key.pem",
401            )
402            .unwrap();
403
404        cert_b = get_first_cert(addr).await;
405
406        assert_ne!(cert_a, cert_b);
407
408        config
409            .reload_from_pem_file(
410                "examples/self-signed-certs/cert.pem",
411                "examples/self-signed-certs/key.pem",
412            )
413            .unwrap();
414
415        cert_b = get_first_cert(addr).await;
416
417        assert_eq!(cert_a, cert_b);
418    }
419
420    async fn start_server() -> (Handle, JoinHandle<io::Result<()>>, SocketAddr) {
421        let handle = Handle::new();
422
423        let server_handle = handle.clone();
424        let server_task = tokio::spawn(async move {
425            let app = Router::new().route("/", get(|| async { "Hello, world!" }));
426
427            let config = OpenSSLConfig::from_pem_file(
428                "examples/self-signed-certs/cert.pem",
429                "examples/self-signed-certs/key.pem",
430            )
431            .unwrap();
432
433            let addr = SocketAddr::from(([127, 0, 0, 1], 0));
434
435            tls_openssl::bind_openssl(addr, config)
436                .handle(server_handle)
437                .serve(app.into_make_service())
438                .await
439        });
440
441        let addr = handle.listening().await.unwrap();
442
443        (handle, server_task, addr)
444    }
445
446    async fn get_first_cert(addr: SocketAddr) -> X509 {
447        let stream = TcpStream::connect(addr).await.unwrap();
448        let tls_stream = tls_connector(dns_name(), stream).await;
449
450        tls_stream.ssl().peer_certificate().unwrap()
451    }
452
453    async fn connect(addr: SocketAddr) -> (SendRequest<Body>, JoinHandle<()>) {
454        let stream = TcpStream::connect(addr).await.unwrap();
455        let tls_stream = TokioIo::new(tls_connector(dns_name(), stream).await);
456
457        let (send_request, connection) = handshake(tls_stream).await.unwrap();
458
459        let task = tokio::spawn(async move {
460            let _ = connection.await;
461        });
462
463        (send_request, task)
464    }
465
466    async fn send_empty_request(client: &mut SendRequest<Body>) -> (response::Parts, Bytes) {
467        let (parts, body) = client
468            .send_request(Request::new(Body::empty()))
469            .await
470            .unwrap()
471            .into_parts();
472        let body = body.collect().await.unwrap().to_bytes();
473
474        (parts, body)
475    }
476
477    async fn tls_connector(hostname: &str, stream: TcpStream) -> SslStream<TcpStream> {
478        let mut tls_parms = SslConnector::builder(SslMethod::tls_client()).unwrap();
479        tls_parms.set_verify(SslVerifyMode::NONE);
480        let hostname_owned = hostname.to_string();
481        tls_parms.set_client_hello_callback(move |ssl_ref, _ssl_alert| {
482            ssl_ref
483                .set_hostname(hostname_owned.as_str())
484                .map(|()| openssl::ssl::ClientHelloResponse::SUCCESS)
485        });
486        let tls_parms = tls_parms.build();
487
488        let ssl = Ssl::new(tls_parms.context()).unwrap();
489        let mut tls_stream = SslStream::new(ssl, stream).unwrap();
490
491        SslStream::connect(Pin::new(&mut tls_stream)).await.unwrap();
492
493        tls_stream
494    }
495
496    fn dns_name() -> &'static str {
497        "localhost"
498    }
499}