mirror of
https://github.com/tokio-rs/tokio.git
synced 2026-08-28 00:00:11 +02:00
1082 lines
39 KiB
Rust
1082 lines
39 KiB
Rust
use crate::io::{AsyncRead, AsyncWrite, Interest, PollEvented, ReadBuf, Ready};
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use crate::net::unix::split::{split, ReadHalf, WriteHalf};
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use crate::net::unix::split_owned::{split_owned, OwnedReadHalf, OwnedWriteHalf};
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use crate::net::unix::ucred::{self, UCred};
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use crate::net::unix::SocketAddr;
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use std::fmt;
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use std::future::poll_fn;
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use std::io::{self, Read, Write};
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use std::net::Shutdown;
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#[cfg(target_os = "android")]
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use std::os::android::net::SocketAddrExt;
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#[cfg(target_os = "linux")]
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use std::os::linux::net::SocketAddrExt;
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#[cfg(any(target_os = "linux", target_os = "android"))]
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use std::os::unix::ffi::OsStrExt;
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use std::os::unix::io::{AsFd, AsRawFd, BorrowedFd, FromRawFd, IntoRawFd, RawFd};
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use std::os::unix::net::{self, SocketAddr as StdSocketAddr};
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use std::path::Path;
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use std::pin::Pin;
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use std::task::{Context, Poll};
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cfg_io_util! {
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use bytes::BufMut;
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}
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cfg_net_unix! {
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/// A structure representing a connected Unix socket.
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///
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/// This socket can be connected directly with [`UnixStream::connect`] or accepted
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/// from a listener with [`UnixListener::accept`]. Additionally, a pair of
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/// anonymous Unix sockets can be created with `UnixStream::pair`.
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///
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/// To shut down the stream in the write direction, you can call the
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/// [`shutdown()`] method. This will cause the other peer to receive a read of
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/// length 0, indicating that no more data will be sent. This only closes
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/// the stream in one direction.
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///
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/// [`shutdown()`]: fn@crate::io::AsyncWriteExt::shutdown
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/// [`UnixListener::accept`]: crate::net::UnixListener::accept
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#[cfg_attr(docsrs, doc(alias = "uds"))]
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pub struct UnixStream {
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io: PollEvented<mio::net::UnixStream>,
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}
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}
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impl UnixStream {
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pub(crate) async fn connect_mio(sys: mio::net::UnixStream) -> io::Result<UnixStream> {
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let stream = UnixStream::new(sys)?;
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// Once we've connected, wait for the stream to be writable as
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// that's when the actual connection has been initiated. Once we're
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// writable we check for `take_socket_error` to see if the connect
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// actually hit an error or not.
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//
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// If all that succeeded then we ship everything on up.
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poll_fn(|cx| stream.io.registration().poll_write_ready(cx)).await?;
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if let Some(e) = stream.io.take_error()? {
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return Err(e);
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}
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Ok(stream)
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}
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/// Connects to the socket named by `path`.
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///
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/// This function will create a new Unix socket and connect to the path
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/// specified, associating the returned stream with the default event loop's
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/// handle.
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pub async fn connect<P>(path: P) -> io::Result<UnixStream>
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where
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P: AsRef<Path>,
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{
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// On linux, abstract socket paths need to be considered.
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#[cfg(any(target_os = "linux", target_os = "android"))]
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let addr = {
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let os_str_bytes = path.as_ref().as_os_str().as_bytes();
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if os_str_bytes.starts_with(b"\0") {
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StdSocketAddr::from_abstract_name(&os_str_bytes[1..])?
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} else {
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StdSocketAddr::from_pathname(path)?
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}
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};
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#[cfg(not(any(target_os = "linux", target_os = "android")))]
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let addr = StdSocketAddr::from_pathname(path)?;
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let stream = mio::net::UnixStream::connect_addr(&addr)?;
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let stream = UnixStream::new(stream)?;
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poll_fn(|cx| stream.io.registration().poll_write_ready(cx)).await?;
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if let Some(e) = stream.io.take_error()? {
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return Err(e);
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}
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Ok(stream)
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}
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/// Waits for any of the requested ready states.
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///
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/// This function is usually paired with `try_read()` or `try_write()`. It
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/// can be used to concurrently read / write to the same socket on a single
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/// task without splitting the socket.
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///
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/// The function may complete without the socket being ready. This is a
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/// false-positive and attempting an operation will return with
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/// `io::ErrorKind::WouldBlock`. The function can also return with an empty
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/// [`Ready`] set, so you should always check the returned value and possibly
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/// wait again if the requested states are not set.
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///
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/// # Cancel safety
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///
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/// This method is cancel safe. Once a readiness event occurs, the method
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/// will continue to return immediately until the readiness event is
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/// consumed by an attempt to read or write that fails with `WouldBlock` or
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/// `Poll::Pending`.
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///
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/// # Examples
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///
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/// Concurrently read and write to the stream on the same task without
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/// splitting.
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///
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/// ```no_run
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/// use tokio::io::Interest;
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/// use tokio::net::UnixStream;
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/// use std::error::Error;
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/// use std::io;
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///
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/// #[tokio::main]
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/// async fn main() -> Result<(), Box<dyn Error>> {
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/// let dir = tempfile::tempdir().unwrap();
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/// let bind_path = dir.path().join("bind_path");
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/// let stream = UnixStream::connect(bind_path).await?;
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///
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/// loop {
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/// let ready = stream.ready(Interest::READABLE | Interest::WRITABLE).await?;
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///
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/// if ready.is_readable() {
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/// let mut data = vec![0; 1024];
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/// // Try to read data, this may still fail with `WouldBlock`
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/// // if the readiness event is a false positive.
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/// match stream.try_read(&mut data) {
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/// Ok(n) => {
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/// println!("read {} bytes", n);
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/// }
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/// Err(ref e) if e.kind() == io::ErrorKind::WouldBlock => {
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/// continue;
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/// }
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/// Err(e) => {
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/// return Err(e.into());
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/// }
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/// }
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///
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/// }
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///
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/// if ready.is_writable() {
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/// // Try to write data, this may still fail with `WouldBlock`
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/// // if the readiness event is a false positive.
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/// match stream.try_write(b"hello world") {
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/// Ok(n) => {
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/// println!("write {} bytes", n);
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/// }
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/// Err(ref e) if e.kind() == io::ErrorKind::WouldBlock => {
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/// continue;
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/// }
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/// Err(e) => {
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/// return Err(e.into());
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/// }
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/// }
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/// }
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/// }
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/// }
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/// ```
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pub async fn ready(&self, interest: Interest) -> io::Result<Ready> {
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let event = self.io.registration().readiness(interest).await?;
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Ok(event.ready)
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}
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/// Waits for the socket to become readable.
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///
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/// This function is equivalent to `ready(Interest::READABLE)` and is usually
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/// paired with `try_read()`.
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///
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/// # Cancel safety
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///
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/// This method is cancel safe. Once a readiness event occurs, the method
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/// will continue to return immediately until the readiness event is
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/// consumed by an attempt to read that fails with `WouldBlock` or
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/// `Poll::Pending`.
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///
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/// # Examples
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///
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/// ```no_run
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/// use tokio::net::UnixStream;
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/// use std::error::Error;
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/// use std::io;
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///
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/// #[tokio::main]
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/// async fn main() -> Result<(), Box<dyn Error>> {
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/// // Connect to a peer
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/// let dir = tempfile::tempdir().unwrap();
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/// let bind_path = dir.path().join("bind_path");
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/// let stream = UnixStream::connect(bind_path).await?;
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///
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/// let mut msg = vec![0; 1024];
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///
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/// loop {
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/// // Wait for the socket to be readable
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/// stream.readable().await?;
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///
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/// // Try to read data, this may still fail with `WouldBlock`
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/// // if the readiness event is a false positive.
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/// match stream.try_read(&mut msg) {
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/// Ok(n) => {
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/// msg.truncate(n);
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/// break;
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/// }
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/// Err(ref e) if e.kind() == io::ErrorKind::WouldBlock => {
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/// continue;
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/// }
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/// Err(e) => {
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/// return Err(e.into());
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/// }
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/// }
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/// }
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///
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/// println!("GOT = {:?}", msg);
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/// Ok(())
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/// }
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/// ```
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pub async fn readable(&self) -> io::Result<()> {
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self.ready(Interest::READABLE).await?;
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Ok(())
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}
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/// Polls for read readiness.
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///
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/// If the unix stream is not currently ready for reading, this method will
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/// store a clone of the `Waker` from the provided `Context`. When the unix
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/// stream becomes ready for reading, `Waker::wake` will be called on the
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/// waker.
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///
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/// Note that on multiple calls to `poll_read_ready` or `poll_read`, only
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/// the `Waker` from the `Context` passed to the most recent call is
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/// scheduled to receive a wakeup. (However, `poll_write_ready` retains a
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/// second, independent waker.)
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///
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/// This function is intended for cases where creating and pinning a future
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/// via [`readable`] is not feasible. Where possible, using [`readable`] is
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/// preferred, as this supports polling from multiple tasks at once.
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///
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/// # Return value
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///
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/// The function returns:
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///
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/// * `Poll::Pending` if the unix stream is not ready for reading.
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/// * `Poll::Ready(Ok(()))` if the unix stream is ready for reading.
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/// * `Poll::Ready(Err(e))` if an error is encountered.
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///
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/// # Errors
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///
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/// This function may encounter any standard I/O error except `WouldBlock`.
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///
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/// [`readable`]: method@Self::readable
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pub fn poll_read_ready(&self, cx: &mut Context<'_>) -> Poll<io::Result<()>> {
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self.io.registration().poll_read_ready(cx).map_ok(|_| ())
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}
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/// Try to read data from the stream into the provided buffer, returning how
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/// many bytes were read.
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///
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/// Receives any pending data from the socket but does not wait for new data
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/// to arrive. On success, returns the number of bytes read. Because
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/// `try_read()` is non-blocking, the buffer does not have to be stored by
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/// the async task and can exist entirely on the stack.
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///
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/// Usually, [`readable()`] or [`ready()`] is used with this function.
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///
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/// [`readable()`]: UnixStream::readable()
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/// [`ready()`]: UnixStream::ready()
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///
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/// # Return
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///
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/// If data is successfully read, `Ok(n)` is returned, where `n` is the
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/// number of bytes read. If `n` is `0`, then it can indicate one of two scenarios:
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///
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/// 1. The stream's read half is closed and will no longer yield data.
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/// 2. The specified buffer was 0 bytes in length.
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///
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/// If the stream is not ready to read data,
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/// `Err(io::ErrorKind::WouldBlock)` is returned.
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///
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/// # Examples
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///
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/// ```no_run
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/// use tokio::net::UnixStream;
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/// use std::error::Error;
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/// use std::io;
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///
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/// #[tokio::main]
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/// async fn main() -> Result<(), Box<dyn Error>> {
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/// // Connect to a peer
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/// let dir = tempfile::tempdir().unwrap();
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/// let bind_path = dir.path().join("bind_path");
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/// let stream = UnixStream::connect(bind_path).await?;
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///
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/// loop {
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/// // Wait for the socket to be readable
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/// stream.readable().await?;
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///
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/// // Creating the buffer **after** the `await` prevents it from
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/// // being stored in the async task.
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/// let mut buf = [0; 4096];
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///
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/// // Try to read data, this may still fail with `WouldBlock`
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/// // if the readiness event is a false positive.
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/// match stream.try_read(&mut buf) {
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/// Ok(0) => break,
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/// Ok(n) => {
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/// println!("read {} bytes", n);
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/// }
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/// Err(ref e) if e.kind() == io::ErrorKind::WouldBlock => {
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/// continue;
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/// }
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/// Err(e) => {
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/// return Err(e.into());
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/// }
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/// }
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/// }
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///
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/// Ok(())
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/// }
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/// ```
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pub fn try_read(&self, buf: &mut [u8]) -> io::Result<usize> {
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self.io
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.registration()
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.try_io(Interest::READABLE, || (&*self.io).read(buf))
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}
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/// Tries to read data from the stream into the provided buffers, returning
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/// how many bytes were read.
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///
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/// Data is copied to fill each buffer in order, with the final buffer
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/// written to possibly being only partially filled. This method behaves
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/// equivalently to a single call to [`try_read()`] with concatenated
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/// buffers.
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///
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/// Receives any pending data from the socket but does not wait for new data
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/// to arrive. On success, returns the number of bytes read. Because
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/// `try_read_vectored()` is non-blocking, the buffer does not have to be
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/// stored by the async task and can exist entirely on the stack.
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///
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/// Usually, [`readable()`] or [`ready()`] is used with this function.
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///
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/// [`try_read()`]: UnixStream::try_read()
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/// [`readable()`]: UnixStream::readable()
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/// [`ready()`]: UnixStream::ready()
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///
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/// # Return
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///
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/// If data is successfully read, `Ok(n)` is returned, where `n` is the
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/// number of bytes read. `Ok(0)` indicates the stream's read half is closed
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/// and will no longer yield data. If the stream is not ready to read data
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/// `Err(io::ErrorKind::WouldBlock)` is returned.
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///
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/// # Examples
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///
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/// ```no_run
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/// use tokio::net::UnixStream;
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/// use std::error::Error;
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/// use std::io::{self, IoSliceMut};
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///
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/// #[tokio::main]
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/// async fn main() -> Result<(), Box<dyn Error>> {
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/// // Connect to a peer
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/// let dir = tempfile::tempdir().unwrap();
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/// let bind_path = dir.path().join("bind_path");
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/// let stream = UnixStream::connect(bind_path).await?;
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///
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/// loop {
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/// // Wait for the socket to be readable
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/// stream.readable().await?;
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///
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/// // Creating the buffer **after** the `await` prevents it from
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/// // being stored in the async task.
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/// let mut buf_a = [0; 512];
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/// let mut buf_b = [0; 1024];
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/// let mut bufs = [
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/// IoSliceMut::new(&mut buf_a),
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/// IoSliceMut::new(&mut buf_b),
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/// ];
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///
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/// // Try to read data, this may still fail with `WouldBlock`
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/// // if the readiness event is a false positive.
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/// match stream.try_read_vectored(&mut bufs) {
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/// Ok(0) => break,
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/// Ok(n) => {
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/// println!("read {} bytes", n);
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/// }
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/// Err(ref e) if e.kind() == io::ErrorKind::WouldBlock => {
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/// continue;
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/// }
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/// Err(e) => {
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/// return Err(e.into());
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/// }
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/// }
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/// }
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///
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/// Ok(())
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/// }
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/// ```
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pub fn try_read_vectored(&self, bufs: &mut [io::IoSliceMut<'_>]) -> io::Result<usize> {
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self.io
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.registration()
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.try_io(Interest::READABLE, || (&*self.io).read_vectored(bufs))
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}
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|
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cfg_io_util! {
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/// Tries to read data from the stream into the provided buffer, advancing the
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/// buffer's internal cursor, returning how many bytes were read.
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///
|
|
/// Receives any pending data from the socket but does not wait for new data
|
|
/// to arrive. On success, returns the number of bytes read. Because
|
|
/// `try_read_buf()` is non-blocking, the buffer does not have to be stored by
|
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/// the async task and can exist entirely on the stack.
|
|
///
|
|
/// Usually, [`readable()`] or [`ready()`] is used with this function.
|
|
///
|
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/// [`readable()`]: UnixStream::readable()
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/// [`ready()`]: UnixStream::ready()
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///
|
|
/// # Return
|
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///
|
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/// If data is successfully read, `Ok(n)` is returned, where `n` is the
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/// number of bytes read. `Ok(0)` indicates the stream's read half is closed
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/// and will no longer yield data. If the stream is not ready to read data
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/// `Err(io::ErrorKind::WouldBlock)` is returned.
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///
|
|
/// # Examples
|
|
///
|
|
/// ```no_run
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|
/// use tokio::net::UnixStream;
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|
/// use std::error::Error;
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/// use std::io;
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|
///
|
|
/// #[tokio::main]
|
|
/// async fn main() -> Result<(), Box<dyn Error>> {
|
|
/// // Connect to a peer
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/// let dir = tempfile::tempdir().unwrap();
|
|
/// let bind_path = dir.path().join("bind_path");
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/// let stream = UnixStream::connect(bind_path).await?;
|
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///
|
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/// loop {
|
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/// // Wait for the socket to be readable
|
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/// stream.readable().await?;
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///
|
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/// let mut buf = Vec::with_capacity(4096);
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///
|
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/// // Try to read data, this may still fail with `WouldBlock`
|
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/// // if the readiness event is a false positive.
|
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/// match stream.try_read_buf(&mut buf) {
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/// Ok(0) => break,
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/// Ok(n) => {
|
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/// println!("read {} bytes", n);
|
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/// }
|
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/// Err(ref e) if e.kind() == io::ErrorKind::WouldBlock => {
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/// continue;
|
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/// }
|
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/// Err(e) => {
|
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/// return Err(e.into());
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/// }
|
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/// }
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/// }
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///
|
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/// Ok(())
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/// }
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/// ```
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pub fn try_read_buf<B: BufMut>(&self, buf: &mut B) -> io::Result<usize> {
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self.io.registration().try_io(Interest::READABLE, || {
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use std::io::Read;
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|
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let dst = buf.chunk_mut();
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|
let dst =
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unsafe { &mut *(dst as *mut _ as *mut [std::mem::MaybeUninit<u8>] as *mut [u8]) };
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|
|
// Safety: We trust `UnixStream::read` to have filled up `n` bytes in the
|
|
// buffer.
|
|
let n = (&*self.io).read(dst)?;
|
|
|
|
unsafe {
|
|
buf.advance_mut(n);
|
|
}
|
|
|
|
Ok(n)
|
|
})
|
|
}
|
|
}
|
|
|
|
/// Waits for the socket to become writable.
|
|
///
|
|
/// This function is equivalent to `ready(Interest::WRITABLE)` and is usually
|
|
/// paired with `try_write()`.
|
|
///
|
|
/// # Cancel safety
|
|
///
|
|
/// This method is cancel safe. Once a readiness event occurs, the method
|
|
/// will continue to return immediately until the readiness event is
|
|
/// consumed by an attempt to write that fails with `WouldBlock` or
|
|
/// `Poll::Pending`.
|
|
///
|
|
/// # Examples
|
|
///
|
|
/// ```no_run
|
|
/// use tokio::net::UnixStream;
|
|
/// use std::error::Error;
|
|
/// use std::io;
|
|
///
|
|
/// #[tokio::main]
|
|
/// async fn main() -> Result<(), Box<dyn Error>> {
|
|
/// // Connect to a peer
|
|
/// let dir = tempfile::tempdir().unwrap();
|
|
/// let bind_path = dir.path().join("bind_path");
|
|
/// let stream = UnixStream::connect(bind_path).await?;
|
|
///
|
|
/// loop {
|
|
/// // Wait for the socket to be writable
|
|
/// stream.writable().await?;
|
|
///
|
|
/// // Try to write data, this may still fail with `WouldBlock`
|
|
/// // if the readiness event is a false positive.
|
|
/// match stream.try_write(b"hello world") {
|
|
/// Ok(n) => {
|
|
/// break;
|
|
/// }
|
|
/// Err(ref e) if e.kind() == io::ErrorKind::WouldBlock => {
|
|
/// continue;
|
|
/// }
|
|
/// Err(e) => {
|
|
/// return Err(e.into());
|
|
/// }
|
|
/// }
|
|
/// }
|
|
///
|
|
/// Ok(())
|
|
/// }
|
|
/// ```
|
|
pub async fn writable(&self) -> io::Result<()> {
|
|
self.ready(Interest::WRITABLE).await?;
|
|
Ok(())
|
|
}
|
|
|
|
/// Polls for write readiness.
|
|
///
|
|
/// If the unix stream is not currently ready for writing, this method will
|
|
/// store a clone of the `Waker` from the provided `Context`. When the unix
|
|
/// stream becomes ready for writing, `Waker::wake` will be called on the
|
|
/// waker.
|
|
///
|
|
/// Note that on multiple calls to `poll_write_ready` or `poll_write`, only
|
|
/// the `Waker` from the `Context` passed to the most recent call is
|
|
/// scheduled to receive a wakeup. (However, `poll_read_ready` retains a
|
|
/// second, independent waker.)
|
|
///
|
|
/// This function is intended for cases where creating and pinning a future
|
|
/// via [`writable`] is not feasible. Where possible, using [`writable`] is
|
|
/// preferred, as this supports polling from multiple tasks at once.
|
|
///
|
|
/// # Return value
|
|
///
|
|
/// The function returns:
|
|
///
|
|
/// * `Poll::Pending` if the unix stream is not ready for writing.
|
|
/// * `Poll::Ready(Ok(()))` if the unix stream is ready for writing.
|
|
/// * `Poll::Ready(Err(e))` if an error is encountered.
|
|
///
|
|
/// # Errors
|
|
///
|
|
/// This function may encounter any standard I/O error except `WouldBlock`.
|
|
///
|
|
/// [`writable`]: method@Self::writable
|
|
pub fn poll_write_ready(&self, cx: &mut Context<'_>) -> Poll<io::Result<()>> {
|
|
self.io.registration().poll_write_ready(cx).map_ok(|_| ())
|
|
}
|
|
|
|
/// Tries to write a buffer to the stream, returning how many bytes were
|
|
/// written.
|
|
///
|
|
/// The function will attempt to write the entire contents of `buf`, but
|
|
/// only part of the buffer may be written.
|
|
///
|
|
/// This function is usually paired with `writable()`.
|
|
///
|
|
/// # Return
|
|
///
|
|
/// If data is successfully written, `Ok(n)` is returned, where `n` is the
|
|
/// number of bytes written. If the stream is not ready to write data,
|
|
/// `Err(io::ErrorKind::WouldBlock)` is returned.
|
|
///
|
|
/// # Examples
|
|
///
|
|
/// ```no_run
|
|
/// use tokio::net::UnixStream;
|
|
/// use std::error::Error;
|
|
/// use std::io;
|
|
///
|
|
/// #[tokio::main]
|
|
/// async fn main() -> Result<(), Box<dyn Error>> {
|
|
/// // Connect to a peer
|
|
/// let dir = tempfile::tempdir().unwrap();
|
|
/// let bind_path = dir.path().join("bind_path");
|
|
/// let stream = UnixStream::connect(bind_path).await?;
|
|
///
|
|
/// loop {
|
|
/// // Wait for the socket to be writable
|
|
/// stream.writable().await?;
|
|
///
|
|
/// // Try to write data, this may still fail with `WouldBlock`
|
|
/// // if the readiness event is a false positive.
|
|
/// match stream.try_write(b"hello world") {
|
|
/// Ok(n) => {
|
|
/// break;
|
|
/// }
|
|
/// Err(ref e) if e.kind() == io::ErrorKind::WouldBlock => {
|
|
/// continue;
|
|
/// }
|
|
/// Err(e) => {
|
|
/// return Err(e.into());
|
|
/// }
|
|
/// }
|
|
/// }
|
|
///
|
|
/// Ok(())
|
|
/// }
|
|
/// ```
|
|
pub fn try_write(&self, buf: &[u8]) -> io::Result<usize> {
|
|
self.io
|
|
.registration()
|
|
.try_io(Interest::WRITABLE, || (&*self.io).write(buf))
|
|
}
|
|
|
|
/// Tries to write several buffers to the stream, returning how many bytes
|
|
/// were written.
|
|
///
|
|
/// Data is written from each buffer in order, with the final buffer read
|
|
/// from possible being only partially consumed. This method behaves
|
|
/// equivalently to a single call to [`try_write()`] with concatenated
|
|
/// buffers.
|
|
///
|
|
/// This function is usually paired with `writable()`.
|
|
///
|
|
/// [`try_write()`]: UnixStream::try_write()
|
|
///
|
|
/// # Return
|
|
///
|
|
/// If data is successfully written, `Ok(n)` is returned, where `n` is the
|
|
/// number of bytes written. If the stream is not ready to write data,
|
|
/// `Err(io::ErrorKind::WouldBlock)` is returned.
|
|
///
|
|
/// # Examples
|
|
///
|
|
/// ```no_run
|
|
/// use tokio::net::UnixStream;
|
|
/// use std::error::Error;
|
|
/// use std::io;
|
|
///
|
|
/// #[tokio::main]
|
|
/// async fn main() -> Result<(), Box<dyn Error>> {
|
|
/// // Connect to a peer
|
|
/// let dir = tempfile::tempdir().unwrap();
|
|
/// let bind_path = dir.path().join("bind_path");
|
|
/// let stream = UnixStream::connect(bind_path).await?;
|
|
///
|
|
/// let bufs = [io::IoSlice::new(b"hello "), io::IoSlice::new(b"world")];
|
|
///
|
|
/// loop {
|
|
/// // Wait for the socket to be writable
|
|
/// stream.writable().await?;
|
|
///
|
|
/// // Try to write data, this may still fail with `WouldBlock`
|
|
/// // if the readiness event is a false positive.
|
|
/// match stream.try_write_vectored(&bufs) {
|
|
/// Ok(n) => {
|
|
/// break;
|
|
/// }
|
|
/// Err(ref e) if e.kind() == io::ErrorKind::WouldBlock => {
|
|
/// continue;
|
|
/// }
|
|
/// Err(e) => {
|
|
/// return Err(e.into());
|
|
/// }
|
|
/// }
|
|
/// }
|
|
///
|
|
/// Ok(())
|
|
/// }
|
|
/// ```
|
|
pub fn try_write_vectored(&self, buf: &[io::IoSlice<'_>]) -> io::Result<usize> {
|
|
self.io
|
|
.registration()
|
|
.try_io(Interest::WRITABLE, || (&*self.io).write_vectored(buf))
|
|
}
|
|
|
|
/// Tries to read or write from the socket using a user-provided IO operation.
|
|
///
|
|
/// If the socket is ready, the provided closure is called. The closure
|
|
/// should attempt to perform IO operation on the socket by manually
|
|
/// calling the appropriate syscall. If the operation fails because the
|
|
/// socket is not actually ready, then the closure should return a
|
|
/// `WouldBlock` error and the readiness flag is cleared. The return value
|
|
/// of the closure is then returned by `try_io`.
|
|
///
|
|
/// If the socket is not ready, then the closure is not called
|
|
/// and a `WouldBlock` error is returned.
|
|
///
|
|
/// The closure should only return a `WouldBlock` error if it has performed
|
|
/// an IO operation on the socket that failed due to the socket not being
|
|
/// ready. Returning a `WouldBlock` error in any other situation will
|
|
/// incorrectly clear the readiness flag, which can cause the socket to
|
|
/// behave incorrectly.
|
|
///
|
|
/// The closure should not perform the IO operation using any of the methods
|
|
/// defined on the Tokio `UnixStream` type, as this will mess with the
|
|
/// readiness flag and can cause the socket to behave incorrectly.
|
|
///
|
|
/// This method is not intended to be used with combined interests.
|
|
/// The closure should perform only one type of IO operation, so it should not
|
|
/// require more than one ready state. This method may panic or sleep forever
|
|
/// if it is called with a combined interest.
|
|
///
|
|
/// Usually, [`readable()`], [`writable()`] or [`ready()`] is used with this function.
|
|
///
|
|
/// [`readable()`]: UnixStream::readable()
|
|
/// [`writable()`]: UnixStream::writable()
|
|
/// [`ready()`]: UnixStream::ready()
|
|
pub fn try_io<R>(
|
|
&self,
|
|
interest: Interest,
|
|
f: impl FnOnce() -> io::Result<R>,
|
|
) -> io::Result<R> {
|
|
self.io
|
|
.registration()
|
|
.try_io(interest, || self.io.try_io(f))
|
|
}
|
|
|
|
/// Reads or writes from the socket using a user-provided IO operation.
|
|
///
|
|
/// The readiness of the socket is awaited and when the socket is ready,
|
|
/// the provided closure is called. The closure should attempt to perform
|
|
/// IO operation on the socket by manually calling the appropriate syscall.
|
|
/// If the operation fails because the socket is not actually ready,
|
|
/// then the closure should return a `WouldBlock` error. In such case the
|
|
/// readiness flag is cleared and the socket readiness is awaited again.
|
|
/// This loop is repeated until the closure returns an `Ok` or an error
|
|
/// other than `WouldBlock`.
|
|
///
|
|
/// The closure should only return a `WouldBlock` error if it has performed
|
|
/// an IO operation on the socket that failed due to the socket not being
|
|
/// ready. Returning a `WouldBlock` error in any other situation will
|
|
/// incorrectly clear the readiness flag, which can cause the socket to
|
|
/// behave incorrectly.
|
|
///
|
|
/// The closure should not perform the IO operation using any of the methods
|
|
/// defined on the Tokio `UnixStream` type, as this will mess with the
|
|
/// readiness flag and can cause the socket to behave incorrectly.
|
|
///
|
|
/// This method is not intended to be used with combined interests.
|
|
/// The closure should perform only one type of IO operation, so it should not
|
|
/// require more than one ready state. This method may panic or sleep forever
|
|
/// if it is called with a combined interest.
|
|
pub async fn async_io<R>(
|
|
&self,
|
|
interest: Interest,
|
|
mut f: impl FnMut() -> io::Result<R>,
|
|
) -> io::Result<R> {
|
|
self.io
|
|
.registration()
|
|
.async_io(interest, || self.io.try_io(&mut f))
|
|
.await
|
|
}
|
|
|
|
/// Creates new [`UnixStream`] from a [`std::os::unix::net::UnixStream`].
|
|
///
|
|
/// This function is intended to be used to wrap a `UnixStream` from the
|
|
/// standard library in the Tokio equivalent.
|
|
///
|
|
/// # Notes
|
|
///
|
|
/// The caller is responsible for ensuring that the stream is in
|
|
/// non-blocking mode. Otherwise all I/O operations on the stream
|
|
/// will block the thread, which will cause unexpected behavior.
|
|
/// Non-blocking mode can be set using [`set_nonblocking`].
|
|
///
|
|
/// [`set_nonblocking`]: std::os::unix::net::UnixStream::set_nonblocking
|
|
///
|
|
/// # Examples
|
|
///
|
|
/// ```no_run
|
|
/// use tokio::net::UnixStream;
|
|
/// use std::os::unix::net::UnixStream as StdUnixStream;
|
|
/// # use std::error::Error;
|
|
///
|
|
/// # async fn dox() -> Result<(), Box<dyn Error>> {
|
|
/// let std_stream = StdUnixStream::connect("/path/to/the/socket")?;
|
|
/// std_stream.set_nonblocking(true)?;
|
|
/// let stream = UnixStream::from_std(std_stream)?;
|
|
/// # Ok(())
|
|
/// # }
|
|
/// ```
|
|
///
|
|
/// # Panics
|
|
///
|
|
/// This function panics if it is not called from within a runtime with
|
|
/// IO enabled.
|
|
///
|
|
/// The runtime is usually set implicitly when this function is called
|
|
/// from a future driven by a tokio runtime, otherwise runtime can be set
|
|
/// explicitly with [`Runtime::enter`](crate::runtime::Runtime::enter) function.
|
|
#[track_caller]
|
|
pub fn from_std(stream: net::UnixStream) -> io::Result<UnixStream> {
|
|
let stream = mio::net::UnixStream::from_std(stream);
|
|
let io = PollEvented::new(stream)?;
|
|
|
|
Ok(UnixStream { io })
|
|
}
|
|
|
|
/// Turns a [`tokio::net::UnixStream`] into a [`std::os::unix::net::UnixStream`].
|
|
///
|
|
/// The returned [`std::os::unix::net::UnixStream`] will have nonblocking
|
|
/// mode set as `true`. Use [`set_nonblocking`] to change the blocking
|
|
/// mode if needed.
|
|
///
|
|
/// # Examples
|
|
///
|
|
/// ```
|
|
/// use std::error::Error;
|
|
/// use std::io::Read;
|
|
/// use tokio::net::UnixListener;
|
|
/// # use tokio::net::UnixStream;
|
|
/// # use tokio::io::AsyncWriteExt;
|
|
///
|
|
/// #[tokio::main]
|
|
/// async fn main() -> Result<(), Box<dyn Error>> {
|
|
/// let dir = tempfile::tempdir().unwrap();
|
|
/// let bind_path = dir.path().join("bind_path");
|
|
///
|
|
/// let mut data = [0u8; 12];
|
|
/// let listener = UnixListener::bind(&bind_path)?;
|
|
/// # let handle = tokio::spawn(async {
|
|
/// # let mut stream = UnixStream::connect(bind_path).await.unwrap();
|
|
/// # stream.write(b"Hello world!").await.unwrap();
|
|
/// # });
|
|
/// let (tokio_unix_stream, _) = listener.accept().await?;
|
|
/// let mut std_unix_stream = tokio_unix_stream.into_std()?;
|
|
/// # handle.await.expect("The task being joined has panicked");
|
|
/// std_unix_stream.set_nonblocking(false)?;
|
|
/// std_unix_stream.read_exact(&mut data)?;
|
|
/// # assert_eq!(b"Hello world!", &data);
|
|
/// Ok(())
|
|
/// }
|
|
/// ```
|
|
/// [`tokio::net::UnixStream`]: UnixStream
|
|
/// [`std::os::unix::net::UnixStream`]: std::os::unix::net::UnixStream
|
|
/// [`set_nonblocking`]: fn@std::os::unix::net::UnixStream::set_nonblocking
|
|
pub fn into_std(self) -> io::Result<std::os::unix::net::UnixStream> {
|
|
self.io
|
|
.into_inner()
|
|
.map(IntoRawFd::into_raw_fd)
|
|
.map(|raw_fd| unsafe { std::os::unix::net::UnixStream::from_raw_fd(raw_fd) })
|
|
}
|
|
|
|
/// Creates an unnamed pair of connected sockets.
|
|
///
|
|
/// This function will create a pair of interconnected Unix sockets for
|
|
/// communicating back and forth between one another. Each socket will
|
|
/// be associated with the default event loop's handle.
|
|
pub fn pair() -> io::Result<(UnixStream, UnixStream)> {
|
|
let (a, b) = mio::net::UnixStream::pair()?;
|
|
let a = UnixStream::new(a)?;
|
|
let b = UnixStream::new(b)?;
|
|
|
|
Ok((a, b))
|
|
}
|
|
|
|
pub(crate) fn new(stream: mio::net::UnixStream) -> io::Result<UnixStream> {
|
|
let io = PollEvented::new(stream)?;
|
|
Ok(UnixStream { io })
|
|
}
|
|
|
|
/// Returns the socket address of the local half of this connection.
|
|
///
|
|
/// # Examples
|
|
///
|
|
/// ```no_run
|
|
/// use tokio::net::UnixStream;
|
|
///
|
|
/// # async fn dox() -> Result<(), Box<dyn std::error::Error>> {
|
|
/// let dir = tempfile::tempdir().unwrap();
|
|
/// let bind_path = dir.path().join("bind_path");
|
|
/// let stream = UnixStream::connect(bind_path).await?;
|
|
///
|
|
/// println!("{:?}", stream.local_addr()?);
|
|
/// # Ok(())
|
|
/// # }
|
|
/// ```
|
|
pub fn local_addr(&self) -> io::Result<SocketAddr> {
|
|
self.io.local_addr().map(SocketAddr)
|
|
}
|
|
|
|
/// Returns the socket address of the remote half of this connection.
|
|
///
|
|
/// # Examples
|
|
///
|
|
/// ```no_run
|
|
/// use tokio::net::UnixStream;
|
|
///
|
|
/// # async fn dox() -> Result<(), Box<dyn std::error::Error>> {
|
|
/// let dir = tempfile::tempdir().unwrap();
|
|
/// let bind_path = dir.path().join("bind_path");
|
|
/// let stream = UnixStream::connect(bind_path).await?;
|
|
///
|
|
/// println!("{:?}", stream.peer_addr()?);
|
|
/// # Ok(())
|
|
/// # }
|
|
/// ```
|
|
pub fn peer_addr(&self) -> io::Result<SocketAddr> {
|
|
self.io.peer_addr().map(SocketAddr)
|
|
}
|
|
|
|
/// Returns effective credentials of the process which called `connect` or `pair`.
|
|
pub fn peer_cred(&self) -> io::Result<UCred> {
|
|
ucred::get_peer_cred(self)
|
|
}
|
|
|
|
/// Returns the value of the `SO_ERROR` option.
|
|
pub fn take_error(&self) -> io::Result<Option<io::Error>> {
|
|
self.io.take_error()
|
|
}
|
|
|
|
/// Shuts down the read, write, or both halves of this connection.
|
|
///
|
|
/// This function will cause all pending and future I/O calls on the
|
|
/// specified portions to immediately return with an appropriate value
|
|
/// (see the documentation of `Shutdown`).
|
|
pub(super) fn shutdown_std(&self, how: Shutdown) -> io::Result<()> {
|
|
self.io.shutdown(how)
|
|
}
|
|
|
|
// These lifetime markers also appear in the generated documentation, and make
|
|
// it more clear that this is a *borrowed* split.
|
|
#[allow(clippy::needless_lifetimes)]
|
|
/// Splits a `UnixStream` into a read half and a write half, which can be used
|
|
/// to read and write the stream concurrently.
|
|
///
|
|
/// This method is more efficient than [`into_split`], but the halves cannot be
|
|
/// moved into independently spawned tasks.
|
|
///
|
|
/// [`into_split`]: Self::into_split()
|
|
pub fn split<'a>(&'a mut self) -> (ReadHalf<'a>, WriteHalf<'a>) {
|
|
split(self)
|
|
}
|
|
|
|
/// Splits a `UnixStream` into a read half and a write half, which can be used
|
|
/// to read and write the stream concurrently.
|
|
///
|
|
/// Unlike [`split`], the owned halves can be moved to separate tasks, however
|
|
/// this comes at the cost of a heap allocation.
|
|
///
|
|
/// **Note:** Dropping the write half will shut down the write half of the
|
|
/// stream. This is equivalent to calling [`shutdown()`] on the `UnixStream`.
|
|
///
|
|
/// [`split`]: Self::split()
|
|
/// [`shutdown()`]: fn@crate::io::AsyncWriteExt::shutdown
|
|
pub fn into_split(self) -> (OwnedReadHalf, OwnedWriteHalf) {
|
|
split_owned(self)
|
|
}
|
|
}
|
|
|
|
impl TryFrom<net::UnixStream> for UnixStream {
|
|
type Error = io::Error;
|
|
|
|
/// Consumes stream, returning the tokio I/O object.
|
|
///
|
|
/// This is equivalent to
|
|
/// [`UnixStream::from_std(stream)`](UnixStream::from_std).
|
|
fn try_from(stream: net::UnixStream) -> io::Result<Self> {
|
|
Self::from_std(stream)
|
|
}
|
|
}
|
|
|
|
impl AsyncRead for UnixStream {
|
|
fn poll_read(
|
|
self: Pin<&mut Self>,
|
|
cx: &mut Context<'_>,
|
|
buf: &mut ReadBuf<'_>,
|
|
) -> Poll<io::Result<()>> {
|
|
self.poll_read_priv(cx, buf)
|
|
}
|
|
}
|
|
|
|
impl AsyncWrite for UnixStream {
|
|
fn poll_write(
|
|
self: Pin<&mut Self>,
|
|
cx: &mut Context<'_>,
|
|
buf: &[u8],
|
|
) -> Poll<io::Result<usize>> {
|
|
self.poll_write_priv(cx, buf)
|
|
}
|
|
|
|
fn poll_write_vectored(
|
|
self: Pin<&mut Self>,
|
|
cx: &mut Context<'_>,
|
|
bufs: &[io::IoSlice<'_>],
|
|
) -> Poll<io::Result<usize>> {
|
|
self.poll_write_vectored_priv(cx, bufs)
|
|
}
|
|
|
|
fn is_write_vectored(&self) -> bool {
|
|
true
|
|
}
|
|
|
|
fn poll_flush(self: Pin<&mut Self>, _: &mut Context<'_>) -> Poll<io::Result<()>> {
|
|
Poll::Ready(Ok(()))
|
|
}
|
|
|
|
fn poll_shutdown(self: Pin<&mut Self>, _: &mut Context<'_>) -> Poll<io::Result<()>> {
|
|
self.shutdown_std(std::net::Shutdown::Write)?;
|
|
Poll::Ready(Ok(()))
|
|
}
|
|
}
|
|
|
|
impl UnixStream {
|
|
// == Poll IO functions that takes `&self` ==
|
|
//
|
|
// To read or write without mutable access to the `UnixStream`, combine the
|
|
// `poll_read_ready` or `poll_write_ready` methods with the `try_read` or
|
|
// `try_write` methods.
|
|
|
|
pub(crate) fn poll_read_priv(
|
|
&self,
|
|
cx: &mut Context<'_>,
|
|
buf: &mut ReadBuf<'_>,
|
|
) -> Poll<io::Result<()>> {
|
|
// Safety: `UnixStream::read` correctly handles reads into uninitialized memory
|
|
unsafe { self.io.poll_read(cx, buf) }
|
|
}
|
|
|
|
pub(crate) fn poll_write_priv(
|
|
&self,
|
|
cx: &mut Context<'_>,
|
|
buf: &[u8],
|
|
) -> Poll<io::Result<usize>> {
|
|
self.io.poll_write(cx, buf)
|
|
}
|
|
|
|
pub(super) fn poll_write_vectored_priv(
|
|
&self,
|
|
cx: &mut Context<'_>,
|
|
bufs: &[io::IoSlice<'_>],
|
|
) -> Poll<io::Result<usize>> {
|
|
self.io.poll_write_vectored(cx, bufs)
|
|
}
|
|
}
|
|
|
|
impl fmt::Debug for UnixStream {
|
|
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
|
|
self.io.fmt(f)
|
|
}
|
|
}
|
|
|
|
impl AsRawFd for UnixStream {
|
|
fn as_raw_fd(&self) -> RawFd {
|
|
self.io.as_raw_fd()
|
|
}
|
|
}
|
|
|
|
impl AsFd for UnixStream {
|
|
fn as_fd(&self) -> BorrowedFd<'_> {
|
|
unsafe { BorrowedFd::borrow_raw(self.as_raw_fd()) }
|
|
}
|
|
}
|