mirror of
https://github.com/rust-lang/rust.git
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322 lines
9.8 KiB
Rust
322 lines
9.8 KiB
Rust
// Copyright 2014 The Rust Project Developers. See the COPYRIGHT
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// file at the top-level directory of this distribution and at
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// http://rust-lang.org/COPYRIGHT.
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//
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// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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use alloc::arc::Arc;
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use libc;
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use c_str::CString;
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use mem;
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use rt::mutex;
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use sync::atomic;
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use io::{mod, IoResult, IoError};
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use prelude::*;
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use sys::{mod, timer, retry, c, set_nonblocking, wouldblock};
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use sys::fs::{fd_t, FileDesc};
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use sys_common::net::*;
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use sys_common::{eof, mkerr_libc};
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fn unix_socket(ty: libc::c_int) -> IoResult<fd_t> {
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match unsafe { libc::socket(libc::AF_UNIX, ty, 0) } {
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-1 => Err(super::last_error()),
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fd => Ok(fd)
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}
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}
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fn addr_to_sockaddr_un(addr: &CString,
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storage: &mut libc::sockaddr_storage)
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-> IoResult<libc::socklen_t> {
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// the sun_path length is limited to SUN_LEN (with null)
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assert!(mem::size_of::<libc::sockaddr_storage>() >=
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mem::size_of::<libc::sockaddr_un>());
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let s = unsafe { &mut *(storage as *mut _ as *mut libc::sockaddr_un) };
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let len = addr.len();
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if len > s.sun_path.len() - 1 {
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return Err(IoError {
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kind: io::InvalidInput,
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desc: "invalid argument: path must be smaller than SUN_LEN",
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detail: None,
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})
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}
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s.sun_family = libc::AF_UNIX as libc::sa_family_t;
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for (slot, value) in s.sun_path.iter_mut().zip(addr.iter()) {
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*slot = value;
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}
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// count the null terminator
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let len = mem::size_of::<libc::sa_family_t>() + len + 1;
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return Ok(len as libc::socklen_t);
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}
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struct Inner {
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fd: fd_t,
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// Unused on Linux, where this lock is not necessary.
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#[allow(dead_code)]
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lock: mutex::NativeMutex
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}
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impl Inner {
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fn new(fd: fd_t) -> Inner {
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Inner { fd: fd, lock: unsafe { mutex::NativeMutex::new() } }
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}
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}
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impl Drop for Inner {
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fn drop(&mut self) { unsafe { let _ = libc::close(self.fd); } }
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}
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fn connect(addr: &CString, ty: libc::c_int,
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timeout: Option<u64>) -> IoResult<Inner> {
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let mut storage = unsafe { mem::zeroed() };
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let len = try!(addr_to_sockaddr_un(addr, &mut storage));
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let inner = Inner::new(try!(unix_socket(ty)));
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let addrp = &storage as *const _ as *const libc::sockaddr;
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match timeout {
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None => {
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match retry(|| unsafe { libc::connect(inner.fd, addrp, len) }) {
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-1 => Err(super::last_error()),
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_ => Ok(inner)
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}
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}
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Some(timeout_ms) => {
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try!(connect_timeout(inner.fd, addrp, len, timeout_ms));
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Ok(inner)
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}
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}
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}
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fn bind(addr: &CString, ty: libc::c_int) -> IoResult<Inner> {
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let mut storage = unsafe { mem::zeroed() };
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let len = try!(addr_to_sockaddr_un(addr, &mut storage));
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let inner = Inner::new(try!(unix_socket(ty)));
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let addrp = &storage as *const _ as *const libc::sockaddr;
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match unsafe {
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libc::bind(inner.fd, addrp, len)
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} {
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-1 => Err(super::last_error()),
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_ => Ok(inner)
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}
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}
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////////////////////////////////////////////////////////////////////////////////
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// Unix Streams
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////////////////////////////////////////////////////////////////////////////////
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pub struct UnixStream {
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inner: Arc<Inner>,
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read_deadline: u64,
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write_deadline: u64,
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}
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impl UnixStream {
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pub fn connect(addr: &CString,
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timeout: Option<u64>) -> IoResult<UnixStream> {
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connect(addr, libc::SOCK_STREAM, timeout).map(|inner| {
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UnixStream::new(Arc::new(inner))
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})
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}
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fn new(inner: Arc<Inner>) -> UnixStream {
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UnixStream {
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inner: inner,
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read_deadline: 0,
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write_deadline: 0,
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}
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}
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fn fd(&self) -> fd_t { self.inner.fd }
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#[cfg(target_os = "linux")]
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fn lock_nonblocking(&self) {}
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#[cfg(not(target_os = "linux"))]
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fn lock_nonblocking<'a>(&'a self) -> Guard<'a> {
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let ret = Guard {
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fd: self.fd(),
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guard: unsafe { self.inner.lock.lock() },
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};
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assert!(set_nonblocking(self.fd(), true).is_ok());
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ret
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}
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pub fn read(&mut self, buf: &mut [u8]) -> IoResult<uint> {
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let fd = self.fd();
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let dolock = || self.lock_nonblocking();
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let doread = |nb| unsafe {
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let flags = if nb {c::MSG_DONTWAIT} else {0};
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libc::recv(fd,
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buf.as_mut_ptr() as *mut libc::c_void,
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buf.len() as libc::size_t,
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flags) as libc::c_int
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};
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read(fd, self.read_deadline, dolock, doread)
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}
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pub fn write(&mut self, buf: &[u8]) -> IoResult<()> {
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let fd = self.fd();
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let dolock = || self.lock_nonblocking();
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let dowrite = |nb: bool, buf: *const u8, len: uint| unsafe {
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let flags = if nb {c::MSG_DONTWAIT} else {0};
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libc::send(fd,
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buf as *const _,
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len as libc::size_t,
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flags) as i64
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};
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match write(fd, self.write_deadline, buf, true, dolock, dowrite) {
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Ok(_) => Ok(()),
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Err(e) => Err(e)
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}
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}
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pub fn close_write(&mut self) -> IoResult<()> {
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mkerr_libc(unsafe { libc::shutdown(self.fd(), libc::SHUT_WR) })
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}
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pub fn close_read(&mut self) -> IoResult<()> {
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mkerr_libc(unsafe { libc::shutdown(self.fd(), libc::SHUT_RD) })
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}
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pub fn set_timeout(&mut self, timeout: Option<u64>) {
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let deadline = timeout.map(|a| timer::now() + a).unwrap_or(0);
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self.read_deadline = deadline;
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self.write_deadline = deadline;
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}
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pub fn set_read_timeout(&mut self, timeout: Option<u64>) {
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self.read_deadline = timeout.map(|a| timer::now() + a).unwrap_or(0);
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}
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pub fn set_write_timeout(&mut self, timeout: Option<u64>) {
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self.write_deadline = timeout.map(|a| timer::now() + a).unwrap_or(0);
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}
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}
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impl Clone for UnixStream {
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fn clone(&self) -> UnixStream {
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UnixStream::new(self.inner.clone())
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}
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}
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////////////////////////////////////////////////////////////////////////////////
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// Unix Listener
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////////////////////////////////////////////////////////////////////////////////
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pub struct UnixListener {
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inner: Inner,
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path: CString,
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}
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impl UnixListener {
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pub fn bind(addr: &CString) -> IoResult<UnixListener> {
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bind(addr, libc::SOCK_STREAM).map(|fd| {
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UnixListener { inner: fd, path: addr.clone() }
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})
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}
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fn fd(&self) -> fd_t { self.inner.fd }
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pub fn listen(self) -> IoResult<UnixAcceptor> {
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match unsafe { libc::listen(self.fd(), 128) } {
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-1 => Err(super::last_error()),
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_ => {
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let (reader, writer) = try!(unsafe { sys::os::pipe() });
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try!(set_nonblocking(reader.fd(), true));
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try!(set_nonblocking(writer.fd(), true));
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try!(set_nonblocking(self.fd(), true));
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Ok(UnixAcceptor {
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inner: Arc::new(AcceptorInner {
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listener: self,
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reader: reader,
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writer: writer,
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closed: atomic::AtomicBool::new(false),
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}),
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deadline: 0,
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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 struct UnixAcceptor {
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inner: Arc<AcceptorInner>,
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deadline: u64,
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}
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struct AcceptorInner {
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listener: UnixListener,
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reader: FileDesc,
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writer: FileDesc,
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closed: atomic::AtomicBool,
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}
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impl UnixAcceptor {
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fn fd(&self) -> fd_t { self.inner.listener.fd() }
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pub fn accept(&mut self) -> IoResult<UnixStream> {
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let deadline = if self.deadline == 0 {None} else {Some(self.deadline)};
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while !self.inner.closed.load(atomic::SeqCst) {
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unsafe {
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let mut storage: libc::sockaddr_storage = mem::zeroed();
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let storagep = &mut storage as *mut libc::sockaddr_storage;
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let size = mem::size_of::<libc::sockaddr_storage>();
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let mut size = size as libc::socklen_t;
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match retry(|| {
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libc::accept(self.fd(),
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storagep as *mut libc::sockaddr,
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&mut size as *mut libc::socklen_t) as libc::c_int
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}) {
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-1 if wouldblock() => {}
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-1 => return Err(super::last_error()),
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fd => return Ok(UnixStream::new(Arc::new(Inner::new(fd)))),
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}
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}
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try!(await(&[self.fd(), self.inner.reader.fd()],
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deadline, Readable));
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}
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Err(eof())
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}
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pub fn set_timeout(&mut self, timeout: Option<u64>) {
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self.deadline = timeout.map(|a| timer::now() + a).unwrap_or(0);
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}
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pub fn close_accept(&mut self) -> IoResult<()> {
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self.inner.closed.store(true, atomic::SeqCst);
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let fd = FileDesc::new(self.inner.writer.fd(), false);
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match fd.write(&[0]) {
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Ok(..) => Ok(()),
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Err(..) if wouldblock() => Ok(()),
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Err(e) => Err(e),
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}
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}
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}
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impl Clone for UnixAcceptor {
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fn clone(&self) -> UnixAcceptor {
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UnixAcceptor { inner: self.inner.clone(), deadline: 0 }
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}
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}
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impl Drop for UnixListener {
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fn drop(&mut self) {
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// Unlink the path to the socket to ensure that it doesn't linger. We're
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// careful to unlink the path before we close the file descriptor to
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// prevent races where we unlink someone else's path.
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unsafe {
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let _ = libc::unlink(self.path.as_ptr());
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}
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}
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}
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