mirror of
https://github.com/rust-lang/rust.git
synced 2025-04-29 19:47:38 +00:00

This commit adds the needed modifications to compile the std crate
for the L4 Runtime environment (L4Re).
A target for the L4Re was introduced in commit:
c151220a84
In many aspects implementations for linux also apply for the L4Re
microkernel.
Two uncommon characteristics had to be resolved:
* L4Re has no network funktionality
* L4Re has a maximum stacksize of 1Mb for threads
Co-authored-by: Sebastian Humenda <sebastian.humenda@tu-dresden.de>
516 lines
16 KiB
Rust
516 lines
16 KiB
Rust
// Copyright 2015 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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//! Implementation of `std::os` functionality for unix systems
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#![allow(unused_imports)] // lots of cfg code here
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use os::unix::prelude::*;
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use error::Error as StdError;
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use ffi::{CString, CStr, OsString, OsStr};
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use fmt;
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use io;
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use iter;
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use libc::{self, c_int, c_char, c_void};
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use marker::PhantomData;
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use mem;
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use memchr;
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use path::{self, PathBuf};
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use ptr;
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use slice;
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use str;
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use sys_common::mutex::Mutex;
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use sys::cvt;
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use sys::fd;
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use vec;
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const TMPBUF_SZ: usize = 128;
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static ENV_LOCK: Mutex = Mutex::new();
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extern {
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#[cfg(not(target_os = "dragonfly"))]
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#[cfg_attr(any(target_os = "linux",
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target_os = "emscripten",
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target_os = "fuchsia",
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target_os = "l4re"),
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link_name = "__errno_location")]
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#[cfg_attr(any(target_os = "bitrig",
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target_os = "netbsd",
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target_os = "openbsd",
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target_os = "android",
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target_env = "newlib"),
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link_name = "__errno")]
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#[cfg_attr(target_os = "solaris", link_name = "___errno")]
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#[cfg_attr(any(target_os = "macos",
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target_os = "ios",
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target_os = "freebsd"),
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link_name = "__error")]
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#[cfg_attr(target_os = "haiku", link_name = "_errnop")]
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fn errno_location() -> *mut c_int;
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}
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/// Returns the platform-specific value of errno
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#[cfg(not(target_os = "dragonfly"))]
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pub fn errno() -> i32 {
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unsafe {
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(*errno_location()) as i32
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}
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}
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/// Sets the platform-specific value of errno
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#[cfg(any(target_os = "solaris", target_os = "fuchsia"))] // only needed for readdir so far
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pub fn set_errno(e: i32) {
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unsafe {
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*errno_location() = e as c_int
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}
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}
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#[cfg(target_os = "dragonfly")]
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pub fn errno() -> i32 {
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extern {
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#[thread_local]
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static errno: c_int;
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}
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unsafe { errno as i32 }
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}
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/// Gets a detailed string description for the given error number.
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pub fn error_string(errno: i32) -> String {
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extern {
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#[cfg_attr(any(target_os = "linux", target_env = "newlib"),
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link_name = "__xpg_strerror_r")]
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fn strerror_r(errnum: c_int, buf: *mut c_char,
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buflen: libc::size_t) -> c_int;
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}
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let mut buf = [0 as c_char; TMPBUF_SZ];
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let p = buf.as_mut_ptr();
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unsafe {
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if strerror_r(errno as c_int, p, buf.len()) < 0 {
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panic!("strerror_r failure");
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}
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let p = p as *const _;
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str::from_utf8(CStr::from_ptr(p).to_bytes()).unwrap().to_owned()
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}
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}
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pub fn getcwd() -> io::Result<PathBuf> {
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let mut buf = Vec::with_capacity(512);
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loop {
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unsafe {
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let ptr = buf.as_mut_ptr() as *mut libc::c_char;
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if !libc::getcwd(ptr, buf.capacity()).is_null() {
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let len = CStr::from_ptr(buf.as_ptr() as *const libc::c_char).to_bytes().len();
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buf.set_len(len);
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buf.shrink_to_fit();
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return Ok(PathBuf::from(OsString::from_vec(buf)));
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} else {
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let error = io::Error::last_os_error();
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if error.raw_os_error() != Some(libc::ERANGE) {
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return Err(error);
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}
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}
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// Trigger the internal buffer resizing logic of `Vec` by requiring
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// more space than the current capacity.
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let cap = buf.capacity();
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buf.set_len(cap);
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buf.reserve(1);
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}
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}
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}
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pub fn chdir(p: &path::Path) -> io::Result<()> {
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let p: &OsStr = p.as_ref();
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let p = CString::new(p.as_bytes())?;
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unsafe {
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match libc::chdir(p.as_ptr()) == (0 as c_int) {
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true => Ok(()),
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false => Err(io::Error::last_os_error()),
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}
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}
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}
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pub struct SplitPaths<'a> {
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iter: iter::Map<slice::Split<'a, u8, fn(&u8) -> bool>,
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fn(&'a [u8]) -> PathBuf>,
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}
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pub fn split_paths(unparsed: &OsStr) -> SplitPaths {
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fn bytes_to_path(b: &[u8]) -> PathBuf {
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PathBuf::from(<OsStr as OsStrExt>::from_bytes(b))
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}
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fn is_colon(b: &u8) -> bool { *b == b':' }
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let unparsed = unparsed.as_bytes();
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SplitPaths {
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iter: unparsed.split(is_colon as fn(&u8) -> bool)
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.map(bytes_to_path as fn(&[u8]) -> PathBuf)
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}
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}
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impl<'a> Iterator for SplitPaths<'a> {
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type Item = PathBuf;
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fn next(&mut self) -> Option<PathBuf> { self.iter.next() }
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fn size_hint(&self) -> (usize, Option<usize>) { self.iter.size_hint() }
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}
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#[derive(Debug)]
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pub struct JoinPathsError;
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pub fn join_paths<I, T>(paths: I) -> Result<OsString, JoinPathsError>
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where I: Iterator<Item=T>, T: AsRef<OsStr>
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{
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let mut joined = Vec::new();
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let sep = b':';
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for (i, path) in paths.enumerate() {
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let path = path.as_ref().as_bytes();
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if i > 0 { joined.push(sep) }
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if path.contains(&sep) {
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return Err(JoinPathsError)
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}
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joined.extend_from_slice(path);
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}
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Ok(OsStringExt::from_vec(joined))
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}
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impl fmt::Display for JoinPathsError {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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"path segment contains separator `:`".fmt(f)
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}
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}
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impl StdError for JoinPathsError {
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fn description(&self) -> &str { "failed to join paths" }
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}
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#[cfg(any(target_os = "freebsd", target_os = "dragonfly"))]
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pub fn current_exe() -> io::Result<PathBuf> {
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unsafe {
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let mut mib = [libc::CTL_KERN as c_int,
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libc::KERN_PROC as c_int,
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libc::KERN_PROC_PATHNAME as c_int,
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-1 as c_int];
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let mut sz = 0;
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cvt(libc::sysctl(mib.as_mut_ptr(), mib.len() as ::libc::c_uint,
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ptr::null_mut(), &mut sz, ptr::null_mut(), 0))?;
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if sz == 0 {
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return Err(io::Error::last_os_error())
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}
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let mut v: Vec<u8> = Vec::with_capacity(sz);
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cvt(libc::sysctl(mib.as_mut_ptr(), mib.len() as ::libc::c_uint,
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v.as_mut_ptr() as *mut libc::c_void, &mut sz,
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ptr::null_mut(), 0))?;
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if sz == 0 {
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return Err(io::Error::last_os_error());
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}
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v.set_len(sz - 1); // chop off trailing NUL
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Ok(PathBuf::from(OsString::from_vec(v)))
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}
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}
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#[cfg(target_os = "netbsd")]
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pub fn current_exe() -> io::Result<PathBuf> {
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::fs::read_link("/proc/curproc/exe")
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}
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#[cfg(any(target_os = "bitrig", target_os = "openbsd"))]
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pub fn current_exe() -> io::Result<PathBuf> {
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unsafe {
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let mut mib = [libc::CTL_KERN,
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libc::KERN_PROC_ARGS,
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libc::getpid(),
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libc::KERN_PROC_ARGV];
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let mib = mib.as_mut_ptr();
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let mut argv_len = 0;
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cvt(libc::sysctl(mib, 4, ptr::null_mut(), &mut argv_len,
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ptr::null_mut(), 0))?;
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let mut argv = Vec::<*const libc::c_char>::with_capacity(argv_len as usize);
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cvt(libc::sysctl(mib, 4, argv.as_mut_ptr() as *mut _,
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&mut argv_len, ptr::null_mut(), 0))?;
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argv.set_len(argv_len as usize);
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if argv[0].is_null() {
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return Err(io::Error::new(io::ErrorKind::Other,
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"no current exe available"))
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}
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let argv0 = CStr::from_ptr(argv[0]).to_bytes();
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if argv0[0] == b'.' || argv0.iter().any(|b| *b == b'/') {
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::fs::canonicalize(OsStr::from_bytes(argv0))
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} else {
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Ok(PathBuf::from(OsStr::from_bytes(argv0)))
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}
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}
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}
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#[cfg(any(target_os = "linux", target_os = "android", target_os = "emscripten"))]
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pub fn current_exe() -> io::Result<PathBuf> {
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let selfexe = PathBuf::from("/proc/self/exe");
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if selfexe.exists() {
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::fs::read_link(selfexe)
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} else {
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Err(io::Error::new(io::ErrorKind::Other, "no /proc/self/exe available. Is /proc mounted?"))
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}
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}
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#[cfg(any(target_os = "macos", target_os = "ios"))]
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pub fn current_exe() -> io::Result<PathBuf> {
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extern {
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fn _NSGetExecutablePath(buf: *mut libc::c_char,
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bufsize: *mut u32) -> libc::c_int;
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}
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unsafe {
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let mut sz: u32 = 0;
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_NSGetExecutablePath(ptr::null_mut(), &mut sz);
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if sz == 0 { return Err(io::Error::last_os_error()); }
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let mut v: Vec<u8> = Vec::with_capacity(sz as usize);
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let err = _NSGetExecutablePath(v.as_mut_ptr() as *mut i8, &mut sz);
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if err != 0 { return Err(io::Error::last_os_error()); }
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v.set_len(sz as usize - 1); // chop off trailing NUL
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Ok(PathBuf::from(OsString::from_vec(v)))
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}
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}
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#[cfg(any(target_os = "solaris"))]
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pub fn current_exe() -> io::Result<PathBuf> {
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extern {
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fn getexecname() -> *const c_char;
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}
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unsafe {
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let path = getexecname();
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if path.is_null() {
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Err(io::Error::last_os_error())
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} else {
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let filename = CStr::from_ptr(path).to_bytes();
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let path = PathBuf::from(<OsStr as OsStrExt>::from_bytes(filename));
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// Prepend a current working directory to the path if
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// it doesn't contain an absolute pathname.
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if filename[0] == b'/' {
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Ok(path)
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} else {
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getcwd().map(|cwd| cwd.join(path))
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}
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}
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}
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}
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#[cfg(target_os = "haiku")]
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pub fn current_exe() -> io::Result<PathBuf> {
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// Use Haiku's image info functions
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#[repr(C)]
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struct image_info {
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id: i32,
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type_: i32,
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sequence: i32,
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init_order: i32,
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init_routine: *mut libc::c_void, // function pointer
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term_routine: *mut libc::c_void, // function pointer
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device: libc::dev_t,
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node: libc::ino_t,
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name: [libc::c_char; 1024], // MAXPATHLEN
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text: *mut libc::c_void,
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data: *mut libc::c_void,
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text_size: i32,
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data_size: i32,
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api_version: i32,
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abi: i32,
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}
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unsafe {
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extern {
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fn _get_next_image_info(team_id: i32, cookie: *mut i32,
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info: *mut image_info, size: i32) -> i32;
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}
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let mut info: image_info = mem::zeroed();
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let mut cookie: i32 = 0;
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// the executable can be found at team id 0
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let result = _get_next_image_info(0, &mut cookie, &mut info,
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mem::size_of::<image_info>() as i32);
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if result != 0 {
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use io::ErrorKind;
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Err(io::Error::new(ErrorKind::Other, "Error getting executable path"))
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} else {
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let name = CStr::from_ptr(info.name.as_ptr()).to_bytes();
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Ok(PathBuf::from(OsStr::from_bytes(name)))
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}
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}
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}
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#[cfg(any(target_os = "fuchsia", target_os = "l4re"))]
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pub fn current_exe() -> io::Result<PathBuf> {
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use io::ErrorKind;
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Err(io::Error::new(ErrorKind::Other, "Not yet implemented!"))
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}
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pub struct Env {
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iter: vec::IntoIter<(OsString, OsString)>,
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_dont_send_or_sync_me: PhantomData<*mut ()>,
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}
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impl Iterator for Env {
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type Item = (OsString, OsString);
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fn next(&mut self) -> Option<(OsString, OsString)> { self.iter.next() }
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fn size_hint(&self) -> (usize, Option<usize>) { self.iter.size_hint() }
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}
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#[cfg(target_os = "macos")]
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pub unsafe fn environ() -> *mut *const *const c_char {
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extern { fn _NSGetEnviron() -> *mut *const *const c_char; }
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_NSGetEnviron()
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}
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#[cfg(not(target_os = "macos"))]
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pub unsafe fn environ() -> *mut *const *const c_char {
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extern { static mut environ: *const *const c_char; }
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&mut environ
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}
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/// Returns a vector of (variable, value) byte-vector pairs for all the
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/// environment variables of the current process.
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pub fn env() -> Env {
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unsafe {
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ENV_LOCK.lock();
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let mut environ = *environ();
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if environ == ptr::null() {
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ENV_LOCK.unlock();
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panic!("os::env() failure getting env string from OS: {}",
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io::Error::last_os_error());
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}
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let mut result = Vec::new();
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while *environ != ptr::null() {
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if let Some(key_value) = parse(CStr::from_ptr(*environ).to_bytes()) {
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result.push(key_value);
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}
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environ = environ.offset(1);
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}
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let ret = Env {
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iter: result.into_iter(),
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_dont_send_or_sync_me: PhantomData,
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};
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ENV_LOCK.unlock();
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return ret
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}
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fn parse(input: &[u8]) -> Option<(OsString, OsString)> {
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// Strategy (copied from glibc): Variable name and value are separated
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// by an ASCII equals sign '='. Since a variable name must not be
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// empty, allow variable names starting with an equals sign. Skip all
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// malformed lines.
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if input.is_empty() {
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return None;
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}
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let pos = memchr::memchr(b'=', &input[1..]).map(|p| p + 1);
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pos.map(|p| (
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OsStringExt::from_vec(input[..p].to_vec()),
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OsStringExt::from_vec(input[p+1..].to_vec()),
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))
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}
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}
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pub fn getenv(k: &OsStr) -> io::Result<Option<OsString>> {
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// environment variables with a nul byte can't be set, so their value is
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// always None as well
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let k = CString::new(k.as_bytes())?;
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unsafe {
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ENV_LOCK.lock();
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let s = libc::getenv(k.as_ptr()) as *const _;
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let ret = if s.is_null() {
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None
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} else {
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Some(OsStringExt::from_vec(CStr::from_ptr(s).to_bytes().to_vec()))
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};
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ENV_LOCK.unlock();
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return Ok(ret)
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}
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}
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pub fn setenv(k: &OsStr, v: &OsStr) -> io::Result<()> {
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let k = CString::new(k.as_bytes())?;
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let v = CString::new(v.as_bytes())?;
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unsafe {
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ENV_LOCK.lock();
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let ret = cvt(libc::setenv(k.as_ptr(), v.as_ptr(), 1)).map(|_| ());
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ENV_LOCK.unlock();
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return ret
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}
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}
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pub fn unsetenv(n: &OsStr) -> io::Result<()> {
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let nbuf = CString::new(n.as_bytes())?;
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unsafe {
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ENV_LOCK.lock();
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let ret = cvt(libc::unsetenv(nbuf.as_ptr())).map(|_| ());
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ENV_LOCK.unlock();
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return ret
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}
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}
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pub fn page_size() -> usize {
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unsafe {
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libc::sysconf(libc::_SC_PAGESIZE) as usize
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}
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}
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pub fn temp_dir() -> PathBuf {
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::env::var_os("TMPDIR").map(PathBuf::from).unwrap_or_else(|| {
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if cfg!(target_os = "android") {
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PathBuf::from("/data/local/tmp")
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} else {
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PathBuf::from("/tmp")
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}
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})
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}
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|
pub fn home_dir() -> Option<PathBuf> {
|
|
return ::env::var_os("HOME").or_else(|| unsafe {
|
|
fallback()
|
|
}).map(PathBuf::from);
|
|
|
|
#[cfg(any(target_os = "android",
|
|
target_os = "ios",
|
|
target_os = "nacl",
|
|
target_os = "emscripten"))]
|
|
unsafe fn fallback() -> Option<OsString> { None }
|
|
#[cfg(not(any(target_os = "android",
|
|
target_os = "ios",
|
|
target_os = "nacl",
|
|
target_os = "emscripten")))]
|
|
unsafe fn fallback() -> Option<OsString> {
|
|
let amt = match libc::sysconf(libc::_SC_GETPW_R_SIZE_MAX) {
|
|
n if n < 0 => 512 as usize,
|
|
n => n as usize,
|
|
};
|
|
let mut buf = Vec::with_capacity(amt);
|
|
let mut passwd: libc::passwd = mem::zeroed();
|
|
let mut result = ptr::null_mut();
|
|
match libc::getpwuid_r(libc::getuid(), &mut passwd, buf.as_mut_ptr(),
|
|
buf.capacity(), &mut result) {
|
|
0 if !result.is_null() => {
|
|
let ptr = passwd.pw_dir as *const _;
|
|
let bytes = CStr::from_ptr(ptr).to_bytes().to_vec();
|
|
Some(OsStringExt::from_vec(bytes))
|
|
},
|
|
_ => None,
|
|
}
|
|
}
|
|
}
|
|
|
|
pub fn exit(code: i32) -> ! {
|
|
unsafe { libc::exit(code as c_int) }
|
|
}
|