Merge pull request #819 from async-rs/fix-sockets

master
Friedel Ziegelmayer 5 years ago committed by GitHub
commit 5f418f07ac
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GPG Key ID: 4AEE18F83AFDEB23

@ -5,7 +5,7 @@ use std::time::Duration;
use pin_project_lite::pin_project;
use crate::task::{Context, Poll};
use crate::utils::Timer;
use crate::utils::{timer_after, Timer};
pin_project! {
#[doc(hidden)]
@ -20,7 +20,7 @@ pin_project! {
impl<F> DelayFuture<F> {
pub fn new(future: F, dur: Duration) -> DelayFuture<F> {
let delay = Timer::after(dur);
let delay = timer_after(dur);
DelayFuture { future, delay }
}

@ -7,7 +7,7 @@ use std::time::Duration;
use pin_project_lite::pin_project;
use crate::task::{Context, Poll};
use crate::utils::Timer;
use crate::utils::{timer_after, Timer};
/// Awaits a future or times out after a duration of time.
///
@ -51,7 +51,7 @@ impl<F> TimeoutFuture<F> {
pub(super) fn new(future: F, dur: Duration) -> TimeoutFuture<F> {
TimeoutFuture {
future,
delay: Timer::after(dur),
delay: timer_after(dur),
}
}
}

@ -6,7 +6,7 @@ use std::time::Duration;
use pin_project_lite::pin_project;
use crate::io;
use crate::utils::Timer;
use crate::utils::{timer_after, Timer};
/// Awaits an I/O future or times out after a duration of time.
///
@ -37,7 +37,7 @@ where
F: Future<Output = io::Result<T>>,
{
Timeout {
timeout: Timer::after(dur),
timeout: timer_after(dur),
future: f,
}
.await

@ -75,6 +75,8 @@ impl TcpListener {
///
/// [`local_addr`]: #method.local_addr
pub async fn bind<A: ToSocketAddrs>(addrs: A) -> io::Result<TcpListener> {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
let mut last_err = None;
let addrs = addrs.to_socket_addrs().await?;
@ -200,6 +202,8 @@ impl<'a> Stream for Incoming<'a> {
impl From<std::net::TcpListener> for TcpListener {
/// Converts a `std::net::TcpListener` into its asynchronous equivalent.
fn from(listener: std::net::TcpListener) -> TcpListener {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
TcpListener {
watcher: Async::new(listener).expect("TcpListener is known to be good"),
}

@ -71,6 +71,8 @@ impl TcpStream {
/// # Ok(()) }) }
/// ```
pub async fn connect<A: ToSocketAddrs>(addrs: A) -> io::Result<TcpStream> {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
let mut last_err = None;
let addrs = addrs.to_socket_addrs().await?;
@ -356,6 +358,8 @@ impl Write for &TcpStream {
impl From<std::net::TcpStream> for TcpStream {
/// Converts a `std::net::TcpStream` into its asynchronous equivalent.
fn from(stream: std::net::TcpStream) -> TcpStream {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
TcpStream {
watcher: Arc::new(Async::new(stream).expect("TcpStream is known to be good")),
}

@ -68,6 +68,8 @@ impl UdpSocket {
/// # Ok(()) }) }
/// ```
pub async fn bind<A: ToSocketAddrs>(addrs: A) -> io::Result<UdpSocket> {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
let mut last_err = None;
let addrs = addrs.to_socket_addrs().await?;
@ -479,6 +481,8 @@ impl UdpSocket {
impl From<std::net::UdpSocket> for UdpSocket {
/// Converts a `std::net::UdpSocket` into its asynchronous equivalent.
fn from(socket: std::net::UdpSocket) -> UdpSocket {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
UdpSocket {
watcher: Async::new(socket).expect("UdpSocket is known to be good"),
}

@ -45,6 +45,8 @@ pub struct UnixDatagram {
impl UnixDatagram {
fn new(socket: StdUnixDatagram) -> UnixDatagram {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
UnixDatagram {
watcher: Async::new(socket).expect("UnixDatagram is known to be good"),
}
@ -64,6 +66,8 @@ impl UnixDatagram {
/// # Ok(()) }) }
/// ```
pub async fn bind<P: AsRef<Path>>(path: P) -> io::Result<UnixDatagram> {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
let path = path.as_ref().to_owned();
let socket = Async::<StdUnixDatagram>::bind(path)?;
Ok(UnixDatagram { watcher: socket })
@ -305,6 +309,8 @@ impl fmt::Debug for UnixDatagram {
impl From<StdUnixDatagram> for UnixDatagram {
/// Converts a `std::os::unix::net::UnixDatagram` into its asynchronous equivalent.
fn from(datagram: StdUnixDatagram) -> UnixDatagram {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
UnixDatagram {
watcher: Async::new(datagram).expect("UnixDatagram is known to be good"),
}
@ -319,6 +325,8 @@ impl AsRawFd for UnixDatagram {
impl FromRawFd for UnixDatagram {
unsafe fn from_raw_fd(fd: RawFd) -> UnixDatagram {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
let raw = StdUnixDatagram::from_raw_fd(fd);
let datagram = Async::<StdUnixDatagram>::new(raw).expect("invalid file descriptor");
UnixDatagram { watcher: datagram }

@ -68,6 +68,8 @@ impl UnixListener {
/// # Ok(()) }) }
/// ```
pub async fn bind<P: AsRef<Path>>(path: P) -> io::Result<UnixListener> {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
let path = path.as_ref().to_owned();
let listener = Async::<StdUnixListener>::bind(path)?;
@ -93,7 +95,12 @@ impl UnixListener {
pub async fn accept(&self) -> io::Result<(UnixStream, SocketAddr)> {
let (stream, addr) = self.watcher.accept().await?;
Ok((UnixStream { watcher: Arc::new(stream) }, addr))
Ok((
UnixStream {
watcher: Arc::new(stream),
},
addr,
))
}
/// Returns a stream of incoming connections.
@ -187,6 +194,8 @@ impl Stream for Incoming<'_> {
impl From<StdUnixListener> for UnixListener {
/// Converts a `std::os::unix::net::UnixListener` into its asynchronous equivalent.
fn from(listener: StdUnixListener) -> UnixListener {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
UnixListener {
watcher: Async::new(listener).expect("UnixListener is known to be good"),
}

@ -57,6 +57,8 @@ impl UnixStream {
/// # Ok(()) }) }
/// ```
pub async fn connect<P: AsRef<Path>>(path: P) -> io::Result<UnixStream> {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
let path = path.as_ref().to_owned();
let stream = Arc::new(Async::<StdUnixStream>::connect(path).await?);
@ -79,6 +81,8 @@ impl UnixStream {
/// # Ok(()) }) }
/// ```
pub fn pair() -> io::Result<(UnixStream, UnixStream)> {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
let (a, b) = Async::<StdUnixStream>::pair()?;
let a = UnixStream {
watcher: Arc::new(a),
@ -224,8 +228,12 @@ impl fmt::Debug for UnixStream {
impl From<StdUnixStream> for UnixStream {
/// Converts a `std::os::unix::net::UnixStream` into its asynchronous equivalent.
fn from(stream: StdUnixStream) -> UnixStream {
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
let stream = Async::new(stream).expect("UnixStream is known to be good");
UnixStream { watcher: Arc::new(stream) }
UnixStream {
watcher: Arc::new(stream),
}
}
}

@ -4,7 +4,7 @@ use std::task::{Context, Poll};
use std::time::Duration;
use crate::stream::Stream;
use crate::utils::Timer;
use crate::utils::{timer_after, Timer};
/// Creates a new stream that yields at a set interval.
///
@ -45,7 +45,7 @@ use crate::utils::Timer;
#[cfg_attr(feature = "docs", doc(cfg(unstable)))]
pub fn interval(dur: Duration) -> Interval {
Interval {
delay: Timer::after(dur),
delay: timer_after(dur),
interval: dur,
}
}
@ -72,7 +72,7 @@ impl Stream for Interval {
return Poll::Pending;
}
let interval = self.interval;
let _ = std::mem::replace(&mut self.delay, Timer::after(interval));
let _ = std::mem::replace(&mut self.delay, timer_after(interval));
Poll::Ready(Some(()))
}
}

@ -6,7 +6,7 @@ use pin_project_lite::pin_project;
use crate::stream::Stream;
use crate::task::{Context, Poll};
use crate::utils::Timer;
use crate::utils::{timer_after, Timer};
pin_project! {
#[doc(hidden)]
@ -24,7 +24,7 @@ impl<S> Delay<S> {
pub(super) fn new(stream: S, dur: Duration) -> Self {
Delay {
stream,
delay: Timer::after(dur),
delay: timer_after(dur),
delay_done: false,
}
}

@ -6,7 +6,7 @@ use pin_project_lite::pin_project;
use crate::stream::Stream;
use crate::task::{Context, Poll};
use crate::utils::Timer;
use crate::utils::{timer_after, Timer};
pin_project! {
/// A stream that only yields one element once every `duration`.
@ -35,7 +35,7 @@ impl<S: Stream> Throttle<S> {
stream,
duration,
blocked: false,
delay: Timer::after(Duration::default()),
delay: timer_after(Duration::default()),
}
}
}
@ -59,7 +59,7 @@ impl<S: Stream> Stream for Throttle<S> {
Poll::Ready(None) => Poll::Ready(None),
Poll::Ready(Some(v)) => {
*this.blocked = true;
let _ = std::mem::replace(&mut *this.delay, Timer::after(*this.duration));
let _ = std::mem::replace(&mut *this.delay, timer_after(*this.duration));
Poll::Ready(Some(v))
}
}

@ -8,7 +8,7 @@ use pin_project_lite::pin_project;
use crate::stream::Stream;
use crate::task::{Context, Poll};
use crate::utils::Timer;
use crate::utils::{timer_after, Timer};
pin_project! {
/// A stream with timeout time set
@ -23,7 +23,7 @@ pin_project! {
impl<S: Stream> Timeout<S> {
pub(crate) fn new(stream: S, dur: Duration) -> Self {
let delay = Timer::after(dur);
let delay = timer_after(dur);
Self { stream, delay }
}

@ -64,6 +64,14 @@ mod timer {
pub type Timer = smol::Timer;
}
#[cfg(any(feature = "unstable", feature = "default"))]
pub(crate) fn timer_after(dur: std::time::Duration) -> timer::Timer {
#[cfg(not(target_os = "unknown"))]
once_cell::sync::Lazy::force(&crate::rt::RUNTIME);
Timer::after(dur)
}
#[cfg(any(
all(target_arch = "wasm32", feature = "default"),
all(feature = "unstable", not(feature = "default"))

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