Fix pipe2 and accept4 on static linked executables on linux (like musl).
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4 changed files with 81 additions and 27 deletions
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@ -250,6 +250,7 @@
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#![feature(cfg_target_vendor)]
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#![feature(char_error_internals)]
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#![feature(compiler_builtins_lib)]
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#![feature(concat_idents)]
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#![feature(const_int_ops)]
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#![feature(const_ip)]
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#![feature(const_raw_ptr_deref)]
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@ -203,18 +203,21 @@ impl Socket {
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// Linux. This was added in 2.6.28, however, and because we support
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// 2.6.18 we must detect this support dynamically.
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if cfg!(target_os = "linux") {
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weak! {
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fn accept4(c_int, *mut sockaddr, *mut socklen_t, c_int) -> c_int
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syscall! {
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fn accept4(
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fd: c_int,
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addr: *mut sockaddr,
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addr_len: *mut socklen_t,
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flags: c_int
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) -> c_int
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}
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if let Some(accept) = accept4.get() {
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let res = cvt_r(|| unsafe {
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accept(self.0.raw(), storage, len, SOCK_CLOEXEC)
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});
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match res {
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Ok(fd) => return Ok(Socket(FileDesc::new(fd))),
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Err(ref e) if e.raw_os_error() == Some(libc::ENOSYS) => {}
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Err(e) => return Err(e),
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}
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let res = cvt_r(|| unsafe {
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accept4(self.0.raw(), storage, len, SOCK_CLOEXEC)
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});
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match res {
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Ok(fd) => return Ok(Socket(FileDesc::new(fd))),
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Err(ref e) if e.raw_os_error() == Some(libc::ENOSYS) => {}
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Err(e) => return Err(e),
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}
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}
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@ -22,7 +22,7 @@ use sys::{cvt, cvt_r};
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pub struct AnonPipe(FileDesc);
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pub fn anon_pipe() -> io::Result<(AnonPipe, AnonPipe)> {
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weak! { fn pipe2(*mut c_int, c_int) -> c_int }
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syscall! { fn pipe2(fds: *mut c_int, flags: c_int) -> c_int }
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static INVALID: AtomicBool = ATOMIC_BOOL_INIT;
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let mut fds = [0; 2];
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@ -39,22 +39,20 @@ pub fn anon_pipe() -> io::Result<(AnonPipe, AnonPipe)> {
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!INVALID.load(Ordering::SeqCst)
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{
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if let Some(pipe) = pipe2.get() {
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// Note that despite calling a glibc function here we may still
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// get ENOSYS. Glibc has `pipe2` since 2.9 and doesn't try to
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// emulate on older kernels, so if you happen to be running on
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// an older kernel you may see `pipe2` as a symbol but still not
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// see the syscall.
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match cvt(unsafe { pipe(fds.as_mut_ptr(), libc::O_CLOEXEC) }) {
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Ok(_) => {
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return Ok((AnonPipe(FileDesc::new(fds[0])),
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AnonPipe(FileDesc::new(fds[1]))));
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}
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Err(ref e) if e.raw_os_error() == Some(libc::ENOSYS) => {
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INVALID.store(true, Ordering::SeqCst);
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}
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Err(e) => return Err(e),
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// Note that despite calling a glibc function here we may still
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// get ENOSYS. Glibc has `pipe2` since 2.9 and doesn't try to
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// emulate on older kernels, so if you happen to be running on
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// an older kernel you may see `pipe2` as a symbol but still not
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// see the syscall.
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match cvt(unsafe { pipe2(fds.as_mut_ptr(), libc::O_CLOEXEC) }) {
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Ok(_) => {
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return Ok((AnonPipe(FileDesc::new(fds[0])),
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AnonPipe(FileDesc::new(fds[1]))));
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}
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Err(ref e) if e.raw_os_error() == Some(libc::ENOSYS) => {
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INVALID.store(true, Ordering::SeqCst);
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}
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Err(e) => return Err(e),
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}
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}
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cvt(unsafe { libc::pipe(fds.as_mut_ptr()) })?;
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@ -77,3 +77,55 @@ unsafe fn fetch(name: &str) -> usize {
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};
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libc::dlsym(libc::RTLD_DEFAULT, name.as_ptr()) as usize
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}
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#[cfg(not(target_os = "linux"))]
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macro_rules! syscall {
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(fn $name:ident($($arg_name:ident: $t:ty),*) -> $ret:ty) => (
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unsafe fn $name($($arg_name: $t),*) -> $ret {
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use libc;
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weak! { fn $name($($t),*) -> $ret }
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if let Some(fun) = $name.get() {
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fun($($arg_name),*)
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} else {
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libc::ENOSYS
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}
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}
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)
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}
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#[cfg(target_os = "linux")]
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macro_rules! syscall {
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(fn $name:ident($($arg_name:ident: $t:ty),*) -> $ret:ty) => (
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unsafe fn $name($($arg_name:$t),*) -> $ret {
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// This like a hack, but concat_idents only accepts idents
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// (not paths).
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use libc::*;
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syscall(
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concat_idents!(SYS_, $name),
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$(::sys::weak::SyscallParam::to_param($arg_name)),*
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) as $ret
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}
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)
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}
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#[cfg(target_os = "linux")]
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pub trait SyscallParam {
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fn to_param(self) -> libc::c_long;
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}
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#[cfg(target_os = "linux")]
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impl SyscallParam for libc::c_int {
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fn to_param(self) -> libc::c_long {
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self as libc::c_long
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}
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}
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#[cfg(target_os = "linux")]
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impl<T> SyscallParam for *mut T {
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fn to_param(self) -> libc::c_long {
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unsafe { mem::transmute(self) }
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}
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}
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