mirror of
https://github.com/rust-lang/rust.git
synced 2025-05-02 21:17:39 +00:00
513 lines
17 KiB
Rust
513 lines
17 KiB
Rust
use crate::cmp;
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use crate::ffi::CStr;
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use crate::io::{self, IoSlice, IoSliceMut};
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use crate::mem;
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use crate::net::{Shutdown, SocketAddr};
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use crate::os::unix::io::{AsFd, AsRawFd, BorrowedFd, FromRawFd, IntoRawFd, RawFd};
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use crate::str;
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use crate::sys::fd::FileDesc;
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use crate::sys_common::net::{getsockopt, setsockopt, sockaddr_to_addr};
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use crate::sys_common::{AsInner, FromInner, IntoInner};
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use crate::time::{Duration, Instant};
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use libc::{c_int, c_void, size_t, sockaddr, socklen_t, MSG_PEEK};
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cfg_if::cfg_if! {
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if #[cfg(target_vendor = "apple")] {
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use libc::SO_LINGER_SEC as SO_LINGER;
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} else {
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use libc::SO_LINGER;
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}
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}
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pub use crate::sys::{cvt, cvt_r};
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#[allow(unused_extern_crates)]
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pub extern crate libc as netc;
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pub type wrlen_t = size_t;
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pub struct Socket(FileDesc);
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pub fn init() {}
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pub fn cvt_gai(err: c_int) -> io::Result<()> {
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if err == 0 {
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return Ok(());
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}
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// We may need to trigger a glibc workaround. See on_resolver_failure() for details.
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on_resolver_failure();
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#[cfg(not(target_os = "espidf"))]
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if err == libc::EAI_SYSTEM {
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return Err(io::Error::last_os_error());
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}
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#[cfg(not(target_os = "espidf"))]
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let detail = unsafe {
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str::from_utf8(CStr::from_ptr(libc::gai_strerror(err)).to_bytes()).unwrap().to_owned()
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};
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#[cfg(target_os = "espidf")]
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let detail = "";
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Err(io::Error::new(
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io::ErrorKind::Uncategorized,
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&format!("failed to lookup address information: {detail}")[..],
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))
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}
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impl Socket {
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pub fn new(addr: &SocketAddr, ty: c_int) -> io::Result<Socket> {
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let fam = match *addr {
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SocketAddr::V4(..) => libc::AF_INET,
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SocketAddr::V6(..) => libc::AF_INET6,
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};
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Socket::new_raw(fam, ty)
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}
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pub fn new_raw(fam: c_int, ty: c_int) -> io::Result<Socket> {
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unsafe {
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cfg_if::cfg_if! {
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if #[cfg(any(
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target_os = "android",
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target_os = "dragonfly",
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target_os = "freebsd",
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target_os = "illumos",
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target_os = "linux",
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target_os = "netbsd",
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target_os = "openbsd",
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))] {
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// On platforms that support it we pass the SOCK_CLOEXEC
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// flag to atomically create the socket and set it as
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// CLOEXEC. On Linux this was added in 2.6.27.
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let fd = cvt(libc::socket(fam, ty | libc::SOCK_CLOEXEC, 0))?;
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Ok(Socket(FileDesc::from_raw_fd(fd)))
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} else {
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let fd = cvt(libc::socket(fam, ty, 0))?;
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let fd = FileDesc::from_raw_fd(fd);
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fd.set_cloexec()?;
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let socket = Socket(fd);
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// macOS and iOS use `SO_NOSIGPIPE` as a `setsockopt`
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// flag to disable `SIGPIPE` emission on socket.
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#[cfg(target_vendor = "apple")]
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setsockopt(&socket, libc::SOL_SOCKET, libc::SO_NOSIGPIPE, 1)?;
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Ok(socket)
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}
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}
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}
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}
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#[cfg(not(target_os = "vxworks"))]
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pub fn new_pair(fam: c_int, ty: c_int) -> io::Result<(Socket, Socket)> {
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unsafe {
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let mut fds = [0, 0];
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cfg_if::cfg_if! {
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if #[cfg(any(
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target_os = "android",
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target_os = "dragonfly",
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target_os = "freebsd",
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target_os = "illumos",
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target_os = "linux",
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target_os = "netbsd",
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target_os = "openbsd",
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))] {
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// Like above, set cloexec atomically
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cvt(libc::socketpair(fam, ty | libc::SOCK_CLOEXEC, 0, fds.as_mut_ptr()))?;
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Ok((Socket(FileDesc::from_raw_fd(fds[0])), Socket(FileDesc::from_raw_fd(fds[1]))))
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} else {
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cvt(libc::socketpair(fam, ty, 0, fds.as_mut_ptr()))?;
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let a = FileDesc::from_raw_fd(fds[0]);
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let b = FileDesc::from_raw_fd(fds[1]);
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a.set_cloexec()?;
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b.set_cloexec()?;
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Ok((Socket(a), Socket(b)))
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}
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}
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}
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}
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#[cfg(target_os = "vxworks")]
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pub fn new_pair(_fam: c_int, _ty: c_int) -> io::Result<(Socket, Socket)> {
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unimplemented!()
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}
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pub fn connect_timeout(&self, addr: &SocketAddr, timeout: Duration) -> io::Result<()> {
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self.set_nonblocking(true)?;
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let r = unsafe {
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let (addr, len) = addr.into_inner();
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cvt(libc::connect(self.as_raw_fd(), addr.as_ptr(), len))
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};
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self.set_nonblocking(false)?;
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match r {
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Ok(_) => return Ok(()),
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// there's no ErrorKind for EINPROGRESS :(
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Err(ref e) if e.raw_os_error() == Some(libc::EINPROGRESS) => {}
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Err(e) => return Err(e),
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}
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let mut pollfd = libc::pollfd { fd: self.as_raw_fd(), events: libc::POLLOUT, revents: 0 };
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if timeout.as_secs() == 0 && timeout.subsec_nanos() == 0 {
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return Err(io::const_io_error!(
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io::ErrorKind::InvalidInput,
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"cannot set a 0 duration timeout",
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));
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}
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let start = Instant::now();
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loop {
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let elapsed = start.elapsed();
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if elapsed >= timeout {
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return Err(io::const_io_error!(io::ErrorKind::TimedOut, "connection timed out"));
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}
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let timeout = timeout - elapsed;
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let mut timeout = timeout
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.as_secs()
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.saturating_mul(1_000)
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.saturating_add(timeout.subsec_nanos() as u64 / 1_000_000);
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if timeout == 0 {
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timeout = 1;
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}
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let timeout = cmp::min(timeout, c_int::MAX as u64) as c_int;
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match unsafe { libc::poll(&mut pollfd, 1, timeout) } {
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-1 => {
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let err = io::Error::last_os_error();
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if err.kind() != io::ErrorKind::Interrupted {
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return Err(err);
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}
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}
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0 => {}
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_ => {
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// linux returns POLLOUT|POLLERR|POLLHUP for refused connections (!), so look
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// for POLLHUP rather than read readiness
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if pollfd.revents & libc::POLLHUP != 0 {
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let e = self.take_error()?.unwrap_or_else(|| {
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io::const_io_error!(
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io::ErrorKind::Uncategorized,
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"no error set after POLLHUP",
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)
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});
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return Err(e);
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}
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return Ok(());
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}
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}
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}
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}
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pub fn accept(&self, storage: *mut sockaddr, len: *mut socklen_t) -> io::Result<Socket> {
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// Unfortunately the only known way right now to accept a socket and
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// atomically set the CLOEXEC flag is to use the `accept4` syscall on
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// platforms that support it. On Linux, this was added in 2.6.28,
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// glibc 2.10 and musl 0.9.5.
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cfg_if::cfg_if! {
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if #[cfg(any(
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target_os = "android",
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target_os = "dragonfly",
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target_os = "freebsd",
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target_os = "illumos",
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target_os = "linux",
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target_os = "netbsd",
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target_os = "openbsd",
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))] {
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unsafe {
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let fd = cvt_r(|| libc::accept4(self.as_raw_fd(), storage, len, libc::SOCK_CLOEXEC))?;
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Ok(Socket(FileDesc::from_raw_fd(fd)))
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}
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} else {
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unsafe {
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let fd = cvt_r(|| libc::accept(self.as_raw_fd(), storage, len))?;
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let fd = FileDesc::from_raw_fd(fd);
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fd.set_cloexec()?;
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Ok(Socket(fd))
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}
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}
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}
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}
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pub fn duplicate(&self) -> io::Result<Socket> {
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self.0.duplicate().map(Socket)
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}
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fn recv_with_flags(&self, buf: &mut [u8], flags: c_int) -> io::Result<usize> {
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let ret = cvt(unsafe {
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libc::recv(self.as_raw_fd(), buf.as_mut_ptr() as *mut c_void, buf.len(), flags)
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})?;
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Ok(ret as usize)
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}
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pub fn read(&self, buf: &mut [u8]) -> io::Result<usize> {
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self.recv_with_flags(buf, 0)
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}
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pub fn peek(&self, buf: &mut [u8]) -> io::Result<usize> {
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self.recv_with_flags(buf, MSG_PEEK)
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}
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pub fn read_vectored(&self, bufs: &mut [IoSliceMut<'_>]) -> io::Result<usize> {
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self.0.read_vectored(bufs)
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}
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#[inline]
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pub fn is_read_vectored(&self) -> bool {
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self.0.is_read_vectored()
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}
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fn recv_from_with_flags(
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&self,
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buf: &mut [u8],
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flags: c_int,
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) -> io::Result<(usize, SocketAddr)> {
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let mut storage: libc::sockaddr_storage = unsafe { mem::zeroed() };
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let mut addrlen = mem::size_of_val(&storage) as libc::socklen_t;
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let n = cvt(unsafe {
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libc::recvfrom(
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self.as_raw_fd(),
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buf.as_mut_ptr() as *mut c_void,
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buf.len(),
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flags,
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&mut storage as *mut _ as *mut _,
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&mut addrlen,
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)
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})?;
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Ok((n as usize, sockaddr_to_addr(&storage, addrlen as usize)?))
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}
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pub fn recv_from(&self, buf: &mut [u8]) -> io::Result<(usize, SocketAddr)> {
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self.recv_from_with_flags(buf, 0)
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}
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#[cfg(any(target_os = "android", target_os = "linux"))]
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pub fn recv_msg(&self, msg: &mut libc::msghdr) -> io::Result<usize> {
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let n = cvt(unsafe { libc::recvmsg(self.as_raw_fd(), msg, libc::MSG_CMSG_CLOEXEC) })?;
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Ok(n as usize)
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}
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pub fn peek_from(&self, buf: &mut [u8]) -> io::Result<(usize, SocketAddr)> {
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self.recv_from_with_flags(buf, MSG_PEEK)
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}
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pub fn write(&self, buf: &[u8]) -> io::Result<usize> {
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self.0.write(buf)
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}
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pub fn write_vectored(&self, bufs: &[IoSlice<'_>]) -> io::Result<usize> {
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self.0.write_vectored(bufs)
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}
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#[inline]
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pub fn is_write_vectored(&self) -> bool {
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self.0.is_write_vectored()
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}
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#[cfg(any(target_os = "android", target_os = "linux"))]
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pub fn send_msg(&self, msg: &mut libc::msghdr) -> io::Result<usize> {
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let n = cvt(unsafe { libc::sendmsg(self.as_raw_fd(), msg, 0) })?;
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Ok(n as usize)
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}
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pub fn set_timeout(&self, dur: Option<Duration>, kind: libc::c_int) -> io::Result<()> {
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let timeout = match dur {
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Some(dur) => {
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if dur.as_secs() == 0 && dur.subsec_nanos() == 0 {
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return Err(io::const_io_error!(
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io::ErrorKind::InvalidInput,
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"cannot set a 0 duration timeout",
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));
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}
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let secs = if dur.as_secs() > libc::time_t::MAX as u64 {
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libc::time_t::MAX
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} else {
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dur.as_secs() as libc::time_t
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};
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let mut timeout = libc::timeval {
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tv_sec: secs,
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tv_usec: dur.subsec_micros() as libc::suseconds_t,
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};
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if timeout.tv_sec == 0 && timeout.tv_usec == 0 {
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timeout.tv_usec = 1;
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}
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timeout
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}
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None => libc::timeval { tv_sec: 0, tv_usec: 0 },
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};
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setsockopt(self, libc::SOL_SOCKET, kind, timeout)
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}
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pub fn timeout(&self, kind: libc::c_int) -> io::Result<Option<Duration>> {
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let raw: libc::timeval = getsockopt(self, libc::SOL_SOCKET, kind)?;
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if raw.tv_sec == 0 && raw.tv_usec == 0 {
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Ok(None)
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} else {
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let sec = raw.tv_sec as u64;
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let nsec = (raw.tv_usec as u32) * 1000;
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Ok(Some(Duration::new(sec, nsec)))
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}
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}
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pub fn shutdown(&self, how: Shutdown) -> io::Result<()> {
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let how = match how {
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Shutdown::Write => libc::SHUT_WR,
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Shutdown::Read => libc::SHUT_RD,
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Shutdown::Both => libc::SHUT_RDWR,
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};
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cvt(unsafe { libc::shutdown(self.as_raw_fd(), how) })?;
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Ok(())
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}
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pub fn set_linger(&self, linger: Option<Duration>) -> io::Result<()> {
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let linger = libc::linger {
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l_onoff: linger.is_some() as libc::c_int,
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l_linger: linger.unwrap_or_default().as_secs() as libc::c_int,
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};
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setsockopt(self, libc::SOL_SOCKET, SO_LINGER, linger)
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}
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pub fn linger(&self) -> io::Result<Option<Duration>> {
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let val: libc::linger = getsockopt(self, libc::SOL_SOCKET, SO_LINGER)?;
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Ok((val.l_onoff != 0).then(|| Duration::from_secs(val.l_linger as u64)))
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}
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pub fn set_nodelay(&self, nodelay: bool) -> io::Result<()> {
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setsockopt(self, libc::IPPROTO_TCP, libc::TCP_NODELAY, nodelay as c_int)
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}
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pub fn nodelay(&self) -> io::Result<bool> {
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let raw: c_int = getsockopt(self, libc::IPPROTO_TCP, libc::TCP_NODELAY)?;
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Ok(raw != 0)
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}
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#[cfg(any(target_os = "android", target_os = "linux",))]
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pub fn set_passcred(&self, passcred: bool) -> io::Result<()> {
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setsockopt(self, libc::SOL_SOCKET, libc::SO_PASSCRED, passcred as libc::c_int)
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}
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#[cfg(any(target_os = "android", target_os = "linux",))]
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pub fn passcred(&self) -> io::Result<bool> {
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let passcred: libc::c_int = getsockopt(self, libc::SOL_SOCKET, libc::SO_PASSCRED)?;
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Ok(passcred != 0)
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}
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#[cfg(target_os = "netbsd")]
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pub fn set_passcred(&self, passcred: bool) -> io::Result<()> {
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setsockopt(self, 0 as libc::c_int, libc::LOCAL_CREDS, passcred as libc::c_int)
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}
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#[cfg(target_os = "netbsd")]
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pub fn passcred(&self) -> io::Result<bool> {
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let passcred: libc::c_int = getsockopt(self, 0 as libc::c_int, libc::LOCAL_CREDS)?;
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Ok(passcred != 0)
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}
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#[cfg(not(any(target_os = "solaris", target_os = "illumos")))]
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pub fn set_nonblocking(&self, nonblocking: bool) -> io::Result<()> {
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let mut nonblocking = nonblocking as libc::c_int;
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cvt(unsafe { libc::ioctl(self.as_raw_fd(), libc::FIONBIO, &mut nonblocking) }).map(drop)
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}
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#[cfg(any(target_os = "solaris", target_os = "illumos"))]
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pub fn set_nonblocking(&self, nonblocking: bool) -> io::Result<()> {
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// FIONBIO is inadequate for sockets on illumos/Solaris, so use the
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// fcntl(F_[GS]ETFL)-based method provided by FileDesc instead.
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self.0.set_nonblocking(nonblocking)
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}
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pub fn take_error(&self) -> io::Result<Option<io::Error>> {
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let raw: c_int = getsockopt(self, libc::SOL_SOCKET, libc::SO_ERROR)?;
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if raw == 0 { Ok(None) } else { Ok(Some(io::Error::from_raw_os_error(raw as i32))) }
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}
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// This is used by sys_common code to abstract over Windows and Unix.
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pub fn as_raw(&self) -> RawFd {
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self.as_raw_fd()
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}
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}
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impl AsInner<FileDesc> for Socket {
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fn as_inner(&self) -> &FileDesc {
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&self.0
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}
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}
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impl IntoInner<FileDesc> for Socket {
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fn into_inner(self) -> FileDesc {
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self.0
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}
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}
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impl FromInner<FileDesc> for Socket {
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fn from_inner(file_desc: FileDesc) -> Self {
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Self(file_desc)
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}
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}
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impl AsFd for Socket {
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fn as_fd(&self) -> BorrowedFd<'_> {
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self.0.as_fd()
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}
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}
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impl AsRawFd for Socket {
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fn as_raw_fd(&self) -> RawFd {
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self.0.as_raw_fd()
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}
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}
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impl IntoRawFd for Socket {
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fn into_raw_fd(self) -> RawFd {
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self.0.into_raw_fd()
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}
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}
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impl FromRawFd for Socket {
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|
unsafe fn from_raw_fd(raw_fd: RawFd) -> Self {
|
|
Self(FromRawFd::from_raw_fd(raw_fd))
|
|
}
|
|
}
|
|
|
|
// In versions of glibc prior to 2.26, there's a bug where the DNS resolver
|
|
// will cache the contents of /etc/resolv.conf, so changes to that file on disk
|
|
// can be ignored by a long-running program. That can break DNS lookups on e.g.
|
|
// laptops where the network comes and goes. See
|
|
// https://sourceware.org/bugzilla/show_bug.cgi?id=984. Note however that some
|
|
// distros including Debian have patched glibc to fix this for a long time.
|
|
//
|
|
// A workaround for this bug is to call the res_init libc function, to clear
|
|
// the cached configs. Unfortunately, while we believe glibc's implementation
|
|
// of res_init is thread-safe, we know that other implementations are not
|
|
// (https://github.com/rust-lang/rust/issues/43592). Code here in libstd could
|
|
// try to synchronize its res_init calls with a Mutex, but that wouldn't
|
|
// protect programs that call into libc in other ways. So instead of calling
|
|
// res_init unconditionally, we call it only when we detect we're linking
|
|
// against glibc version < 2.26. (That is, when we both know its needed and
|
|
// believe it's thread-safe).
|
|
#[cfg(all(target_os = "linux", target_env = "gnu"))]
|
|
fn on_resolver_failure() {
|
|
use crate::sys;
|
|
|
|
// If the version fails to parse, we treat it the same as "not glibc".
|
|
if let Some(version) = sys::os::glibc_version() {
|
|
if version < (2, 26) {
|
|
unsafe { libc::res_init() };
|
|
}
|
|
}
|
|
}
|
|
|
|
#[cfg(not(all(target_os = "linux", target_env = "gnu")))]
|
|
fn on_resolver_failure() {}
|