librqbit_dualstack_sockets/
socket.rs

1use std::{
2    net::{IpAddr, Ipv6Addr, SocketAddr, SocketAddrV4, SocketAddrV6},
3    task::Poll,
4};
5
6use socket2::{Domain, Socket};
7use tracing::{debug, trace};
8
9use crate::{
10    Error,
11    addr::{ToV6Mapped, TryToV4},
12};
13
14#[derive(Clone, Copy, Debug)]
15pub enum SocketAddrKind {
16    V4(SocketAddrV4),
17    V6 {
18        addr: SocketAddrV6,
19        is_dualstack: bool,
20    },
21}
22
23impl SocketAddrKind {
24    fn as_socketaddr(&self) -> SocketAddr {
25        match *self {
26            SocketAddrKind::V4(addr) => SocketAddr::V4(addr),
27            SocketAddrKind::V6 { addr, .. } => SocketAddr::V6(addr),
28        }
29    }
30}
31
32#[derive(Clone, Copy, Debug)]
33pub struct BindOpts {
34    pub request_dualstack: bool,
35    pub reuseport: bool,
36}
37
38impl Default for BindOpts {
39    fn default() -> Self {
40        Self {
41            request_dualstack: true,
42            reuseport: false,
43        }
44    }
45}
46
47pub struct MaybeDualstackSocket<S> {
48    socket: S,
49    addr_kind: SocketAddrKind,
50}
51
52impl<S> MaybeDualstackSocket<S> {
53    pub fn socket(&self) -> &S {
54        &self.socket
55    }
56
57    pub fn bind_addr(&self) -> SocketAddr {
58        self.addr_kind.as_socketaddr()
59    }
60
61    pub fn is_dualstack(&self) -> bool {
62        matches!(
63            self.addr_kind,
64            SocketAddrKind::V6 {
65                is_dualstack: true,
66                ..
67            }
68        )
69    }
70
71    fn convert_addr_for_send(&self, addr: SocketAddr) -> SocketAddr {
72        if self.is_dualstack() {
73            return SocketAddr::V6(addr.to_ipv6_mapped());
74        }
75        addr
76    }
77}
78
79impl MaybeDualstackSocket<Socket> {
80    fn bind(addr: SocketAddr, opts: BindOpts, is_udp: bool) -> crate::Result<Self> {
81        let socket = Socket::new(
82            if addr.is_ipv6() {
83                Domain::IPV6
84            } else {
85                Domain::IPV4
86            },
87            if is_udp {
88                socket2::Type::DGRAM
89            } else {
90                socket2::Type::STREAM
91            },
92            Some(if is_udp {
93                socket2::Protocol::UDP
94            } else {
95                socket2::Protocol::TCP
96            }),
97        )
98        .map_err(Error::SocketNew)?;
99
100        let mut set_dualstack = false;
101
102        let addr_kind = match (opts.request_dualstack, addr) {
103            (request_dualstack, SocketAddr::V6(addr))
104                if *addr.ip() == IpAddr::V6(Ipv6Addr::UNSPECIFIED) =>
105            {
106                let value = !request_dualstack;
107                trace!(?addr, only_v6 = value, "setting only_v6");
108                socket
109                    .set_only_v6(value)
110                    .map_err(|e| Error::OnlyV6 { value, source: e })?;
111                #[cfg(not(windows))] // socket.only_v6() panics on windows somehow
112                trace!(?addr, only_v6=?socket.only_v6());
113                set_dualstack = true;
114                SocketAddrKind::V6 {
115                    addr,
116                    is_dualstack: request_dualstack,
117                }
118            }
119            (_, SocketAddr::V6(addr)) => SocketAddrKind::V6 {
120                addr,
121                is_dualstack: false,
122            },
123            (_, SocketAddr::V4(addr)) => SocketAddrKind::V4(addr),
124        };
125
126        if !set_dualstack {
127            debug!(
128                ?addr,
129                "ignored dualstack request as it only applies to [::] address"
130            );
131        }
132
133        #[cfg(not(windows))]
134        {
135            if !is_udp {
136                socket
137                    .set_reuse_address(true)
138                    .map_err(Error::ReuseAddress)?;
139            }
140        }
141
142        if opts.reuseport {
143            socket.set_reuse_port(true).map_err(Error::ReusePort)?;
144        }
145
146        socket.bind(&addr.into()).map_err(|e| {
147            trace!(?addr, "error binding: {e:#}");
148            Error::Bind(e)
149        })?;
150
151        let local_addr: SocketAddr = socket
152            .local_addr()
153            .map_err(Error::LocalAddr)?
154            .as_socket()
155            .ok_or(Error::AsSocket)?;
156
157        let addr_kind = match (addr_kind, local_addr) {
158            (SocketAddrKind::V4(..), SocketAddr::V4(received)) => SocketAddrKind::V4(received),
159            (SocketAddrKind::V6 { is_dualstack, .. }, SocketAddr::V6(received)) => {
160                SocketAddrKind::V6 {
161                    addr: received,
162                    is_dualstack,
163                }
164            }
165            _ => {
166                tracing::debug!(?local_addr, bind_addr=?addr, "mismatch between local_addr() and requested bind_addr");
167                return Err(Error::LocalBindAddrMismatch);
168            }
169        };
170
171        socket
172            .set_nonblocking(true)
173            .map_err(Error::SetNonblocking)?;
174
175        Ok(Self { socket, addr_kind })
176    }
177}
178
179impl MaybeDualstackSocket<tokio::net::TcpListener> {
180    pub fn bind_tcp(addr: SocketAddr, opts: BindOpts) -> crate::Result<Self> {
181        let sock = MaybeDualstackSocket::bind(addr, opts, false)?;
182
183        debug!(addr=?sock.bind_addr(), requested_addr=?addr, dualstack = sock.is_dualstack(), "listening on TCP");
184        sock.socket().listen(1024).map_err(Error::Listen)?;
185
186        Ok(Self {
187            socket: tokio::net::TcpListener::from_std(std::net::TcpListener::from(sock.socket))
188                .map_err(Error::TokioFromStd)?,
189            addr_kind: sock.addr_kind,
190        })
191    }
192
193    pub async fn accept(&self) -> std::io::Result<(tokio::net::TcpStream, SocketAddr)> {
194        let (s, addr) = self.socket.accept().await?;
195        Ok((s, addr.try_to_ipv4()))
196    }
197}
198
199#[cfg(feature = "axum")]
200pub mod axum {
201    use std::net::SocketAddr;
202
203    use crate::socket::MaybeDualstackSocket;
204
205    #[derive(Clone, Copy)]
206    pub struct WrappedSocketAddr(pub SocketAddr);
207    impl core::fmt::Debug for WrappedSocketAddr {
208        fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
209            write!(f, "{:?}", self.0)
210        }
211    }
212    impl From<SocketAddr> for WrappedSocketAddr {
213        fn from(value: SocketAddr) -> Self {
214            Self(value)
215        }
216    }
217    impl From<WrappedSocketAddr> for SocketAddr {
218        fn from(value: WrappedSocketAddr) -> Self {
219            value.0
220        }
221    }
222
223    impl axum::serve::Listener for MaybeDualstackSocket<tokio::net::TcpListener> {
224        type Io = tokio::net::TcpStream;
225
226        type Addr = WrappedSocketAddr;
227
228        async fn accept(&mut self) -> (Self::Io, Self::Addr) {
229            use backon::{ExponentialBuilder, Retryable};
230            let (l, a) = (|| MaybeDualstackSocket::accept(self))
231                .retry(
232                    ExponentialBuilder::new()
233                        .without_max_times()
234                        .with_max_delay(std::time::Duration::from_secs(5)),
235                )
236                .notify(|e, retry_in| tracing::trace!(?retry_in, "error accepting: {e:#}"))
237                .await
238                .unwrap();
239            (l, a.into())
240        }
241
242        fn local_addr(&self) -> tokio::io::Result<Self::Addr> {
243            Ok(self.bind_addr().into())
244        }
245    }
246
247    impl
248        axum::extract::connect_info::Connected<
249            axum::serve::IncomingStream<'_, MaybeDualstackSocket<tokio::net::TcpListener>>,
250        > for WrappedSocketAddr
251    {
252        fn connect_info(
253            stream: axum::serve::IncomingStream<'_, MaybeDualstackSocket<tokio::net::TcpListener>>,
254        ) -> Self {
255            *stream.remote_addr()
256        }
257    }
258}
259
260impl MaybeDualstackSocket<tokio::net::UdpSocket> {
261    pub fn bind_udp(addr: SocketAddr, opts: BindOpts) -> crate::Result<Self> {
262        let sock = MaybeDualstackSocket::bind(addr, opts, true)?;
263
264        debug!(addr=?sock.bind_addr(), requested_addr=?addr, dualstack = sock.is_dualstack(), "listening on UDP");
265
266        Ok(Self {
267            socket: tokio::net::UdpSocket::from_std(std::net::UdpSocket::from(sock.socket))
268                .map_err(Error::TokioFromStd)?,
269            addr_kind: sock.addr_kind,
270        })
271    }
272
273    pub async fn recv_from(&self, buf: &mut [u8]) -> std::io::Result<(usize, SocketAddr)> {
274        let (size, addr) = self.socket.recv_from(buf).await?;
275        Ok((size, addr.try_to_ipv4()))
276    }
277
278    pub async fn send_to(&self, buf: &[u8], target: SocketAddr) -> std::io::Result<usize> {
279        let target = self.convert_addr_for_send(target);
280        trace!(?target, "sending");
281        self.socket.send_to(buf, target).await
282    }
283
284    pub fn poll_send_to(
285        &self,
286        cx: &mut std::task::Context<'_>,
287        buf: &[u8],
288        target: SocketAddr,
289    ) -> Poll<std::io::Result<usize>> {
290        let target = self.convert_addr_for_send(target);
291        self.socket.poll_send_to(cx, buf, target)
292    }
293}