1#[cfg(target_os = "vxworks")]
2use libc::RTP_ID as pid_t;
3#[cfg(not(target_os = "vxworks"))]
4use libc::{c_int, pid_t};
5#[cfg(not(any(
6 target_os = "vxworks",
7 target_os = "l4re",
8 target_os = "tvos",
9 target_os = "watchos",
10)))]
11use libc::{gid_t, uid_t};
12
13use super::common::*;
14use crate::io::{self, Error, ErrorKind};
15use crate::num::NonZero;
16use crate::sys::cvt;
17#[cfg(target_os = "linux")]
18use crate::sys::pal::linux::pidfd::PidFd;
19use crate::{fmt, mem, sys};
20
21cfg_if::cfg_if! {
22 if #[cfg(target_os = "nto")] {
23 use crate::thread;
24 use libc::{c_char, posix_spawn_file_actions_t, posix_spawnattr_t};
25 use crate::time::Duration;
26 use crate::sync::LazyLock;
27 fn get_clock_resolution() -> Duration {
30 static MIN_DELAY: LazyLock<Duration, fn() -> Duration> = LazyLock::new(|| {
31 let mut mindelay = libc::timespec { tv_sec: 0, tv_nsec: 0 };
32 if unsafe { libc::clock_getres(libc::CLOCK_MONOTONIC, &mut mindelay) } == 0
33 {
34 Duration::from_nanos(mindelay.tv_nsec as u64)
35 } else {
36 Duration::from_millis(1)
37 }
38 });
39 *MIN_DELAY
40 }
41 const MIN_FORKSPAWN_SLEEP: Duration = Duration::from_nanos(1);
43 const MAX_FORKSPAWN_SLEEP: Duration = Duration::from_millis(1000);
45 }
46}
47
48impl Command {
53 pub fn spawn(
54 &mut self,
55 default: Stdio,
56 needs_stdin: bool,
57 ) -> io::Result<(Process, StdioPipes)> {
58 const CLOEXEC_MSG_FOOTER: [u8; 4] = *b"NOEX";
59
60 let envp = self.capture_env();
61
62 if self.saw_nul() {
63 return Err(io::const_error!(
64 ErrorKind::InvalidInput,
65 "nul byte found in provided data",
66 ));
67 }
68
69 let (ours, theirs) = self.setup_io(default, needs_stdin)?;
70
71 if let Some(ret) = self.posix_spawn(&theirs, envp.as_ref())? {
72 return Ok((ret, ours));
73 }
74
75 #[cfg(target_os = "linux")]
76 let (input, output) = sys::net::Socket::new_pair(libc::AF_UNIX, libc::SOCK_SEQPACKET)?;
77
78 #[cfg(not(target_os = "linux"))]
79 let (input, output) = sys::pipe::anon_pipe()?;
80
81 let env_lock = sys::os::env_read_lock();
92 let pid = unsafe { self.do_fork()? };
93
94 if pid == 0 {
95 crate::panic::always_abort();
96 mem::forget(env_lock); drop(input);
98 #[cfg(target_os = "linux")]
99 if self.get_create_pidfd() {
100 self.send_pidfd(&output);
101 }
102 let Err(err) = unsafe { self.do_exec(theirs, envp.as_ref()) };
103 let errno = err.raw_os_error().unwrap_or(libc::EINVAL) as u32;
104 let errno = errno.to_be_bytes();
105 let bytes = [
106 errno[0],
107 errno[1],
108 errno[2],
109 errno[3],
110 CLOEXEC_MSG_FOOTER[0],
111 CLOEXEC_MSG_FOOTER[1],
112 CLOEXEC_MSG_FOOTER[2],
113 CLOEXEC_MSG_FOOTER[3],
114 ];
115 rtassert!(output.write(&bytes).is_ok());
119 unsafe { libc::_exit(1) }
120 }
121
122 drop(env_lock);
123 drop(output);
124
125 #[cfg(target_os = "linux")]
126 let pidfd = if self.get_create_pidfd() { self.recv_pidfd(&input) } else { -1 };
127
128 #[cfg(not(target_os = "linux"))]
129 let pidfd = -1;
130
131 let mut p = unsafe { Process::new(pid, pidfd) };
133 let mut bytes = [0; 8];
134
135 loop {
137 match input.read(&mut bytes) {
138 Ok(0) => return Ok((p, ours)),
139 Ok(8) => {
140 let (errno, footer) = bytes.split_at(4);
141 assert_eq!(
142 CLOEXEC_MSG_FOOTER, footer,
143 "Validation on the CLOEXEC pipe failed: {:?}",
144 bytes
145 );
146 let errno = i32::from_be_bytes(errno.try_into().unwrap());
147 assert!(p.wait().is_ok(), "wait() should either return Ok or panic");
148 return Err(Error::from_raw_os_error(errno));
149 }
150 Err(ref e) if e.is_interrupted() => {}
151 Err(e) => {
152 assert!(p.wait().is_ok(), "wait() should either return Ok or panic");
153 panic!("the CLOEXEC pipe failed: {e:?}")
154 }
155 Ok(..) => {
156 assert!(p.wait().is_ok(), "wait() should either return Ok or panic");
159 panic!("short read on the CLOEXEC pipe")
160 }
161 }
162 }
163 }
164
165 pub fn output(&mut self) -> io::Result<(ExitStatus, Vec<u8>, Vec<u8>)> {
166 let (proc, pipes) = self.spawn(Stdio::MakePipe, false)?;
167 crate::sys_common::process::wait_with_output(proc, pipes)
168 }
169
170 #[cfg(any(target_os = "tvos", target_os = "watchos"))]
177 const ERR_APPLE_TV_WATCH_NO_FORK_EXEC: Error = io::const_error!(
178 ErrorKind::Unsupported,
179 "`fork`+`exec`-based process spawning is not supported on this target",
180 );
181
182 #[cfg(any(target_os = "tvos", target_os = "watchos"))]
183 unsafe fn do_fork(&mut self) -> Result<pid_t, io::Error> {
184 return Err(Self::ERR_APPLE_TV_WATCH_NO_FORK_EXEC);
185 }
186
187 #[cfg(not(any(target_os = "watchos", target_os = "tvos", target_os = "nto")))]
190 unsafe fn do_fork(&mut self) -> Result<pid_t, io::Error> {
191 cvt(libc::fork())
192 }
193
194 #[cfg(target_os = "nto")]
199 unsafe fn do_fork(&mut self) -> Result<pid_t, io::Error> {
200 use crate::sys::os::errno;
201
202 let mut delay = MIN_FORKSPAWN_SLEEP;
203
204 loop {
205 let r = libc::fork();
206 if r == -1 as libc::pid_t && errno() as libc::c_int == libc::EBADF {
207 if delay < get_clock_resolution() {
208 thread::yield_now();
211 } else if delay < MAX_FORKSPAWN_SLEEP {
212 thread::sleep(delay);
213 } else {
214 return Err(io::const_error!(
215 ErrorKind::WouldBlock,
216 "forking returned EBADF too often",
217 ));
218 }
219 delay *= 2;
220 continue;
221 } else {
222 return cvt(r);
223 }
224 }
225 }
226
227 pub fn exec(&mut self, default: Stdio) -> io::Error {
228 let envp = self.capture_env();
229
230 if self.saw_nul() {
231 return io::const_error!(ErrorKind::InvalidInput, "nul byte found in provided data");
232 }
233
234 match self.setup_io(default, true) {
235 Ok((_, theirs)) => {
236 unsafe {
237 let _lock = sys::os::env_read_lock();
241
242 let Err(e) = self.do_exec(theirs, envp.as_ref());
243 e
244 }
245 }
246 Err(e) => e,
247 }
248 }
249
250 #[cfg(not(any(target_os = "tvos", target_os = "watchos")))]
281 unsafe fn do_exec(
282 &mut self,
283 stdio: ChildPipes,
284 maybe_envp: Option<&CStringArray>,
285 ) -> Result<!, io::Error> {
286 use crate::sys::{self, cvt_r};
287
288 if let Some(fd) = stdio.stdin.fd() {
289 cvt_r(|| libc::dup2(fd, libc::STDIN_FILENO))?;
290 }
291 if let Some(fd) = stdio.stdout.fd() {
292 cvt_r(|| libc::dup2(fd, libc::STDOUT_FILENO))?;
293 }
294 if let Some(fd) = stdio.stderr.fd() {
295 cvt_r(|| libc::dup2(fd, libc::STDERR_FILENO))?;
296 }
297
298 #[cfg(not(target_os = "l4re"))]
299 {
300 if let Some(_g) = self.get_groups() {
301 #[cfg(not(target_os = "redox"))]
303 cvt(libc::setgroups(_g.len().try_into().unwrap(), _g.as_ptr()))?;
304 }
305 if let Some(u) = self.get_gid() {
306 cvt(libc::setgid(u as gid_t))?;
307 }
308 if let Some(u) = self.get_uid() {
309 #[cfg(not(target_os = "redox"))]
317 if self.get_groups().is_none() {
318 let res = cvt(libc::setgroups(0, crate::ptr::null()));
319 if let Err(e) = res {
320 if e.raw_os_error() != Some(libc::EPERM) {
324 return Err(e.into());
325 }
326 }
327 }
328 cvt(libc::setuid(u as uid_t))?;
329 }
330 }
331 if let Some(cwd) = self.get_cwd() {
332 cvt(libc::chdir(cwd.as_ptr()))?;
333 }
334
335 if let Some(pgroup) = self.get_pgroup() {
336 cvt(libc::setpgid(0, pgroup))?;
337 }
338
339 #[cfg(not(target_os = "emscripten"))]
341 {
342 if !crate::sys::pal::on_broken_pipe_flag_used() {
350 #[cfg(target_os = "android")] {
352 let mut action: libc::sigaction = mem::zeroed();
353 action.sa_sigaction = libc::SIG_DFL;
354 cvt(libc::sigaction(libc::SIGPIPE, &action, crate::ptr::null_mut()))?;
355 }
356 #[cfg(not(target_os = "android"))]
357 {
358 let ret = sys::signal(libc::SIGPIPE, libc::SIG_DFL);
359 if ret == libc::SIG_ERR {
360 return Err(io::Error::last_os_error());
361 }
362 }
363 #[cfg(target_os = "hurd")]
364 {
365 let ret = sys::signal(libc::SIGLOST, libc::SIG_DFL);
366 if ret == libc::SIG_ERR {
367 return Err(io::Error::last_os_error());
368 }
369 }
370 }
371 }
372
373 for callback in self.get_closures().iter_mut() {
374 callback()?;
375 }
376
377 let mut _reset = None;
383 if let Some(envp) = maybe_envp {
384 struct Reset(*const *const libc::c_char);
385
386 impl Drop for Reset {
387 fn drop(&mut self) {
388 unsafe {
389 *sys::os::environ() = self.0;
390 }
391 }
392 }
393
394 _reset = Some(Reset(*sys::os::environ()));
395 *sys::os::environ() = envp.as_ptr();
396 }
397
398 libc::execvp(self.get_program_cstr().as_ptr(), self.get_argv().as_ptr());
399 Err(io::Error::last_os_error())
400 }
401
402 #[cfg(any(target_os = "tvos", target_os = "watchos"))]
403 unsafe fn do_exec(
404 &mut self,
405 _stdio: ChildPipes,
406 _maybe_envp: Option<&CStringArray>,
407 ) -> Result<!, io::Error> {
408 return Err(Self::ERR_APPLE_TV_WATCH_NO_FORK_EXEC);
409 }
410
411 #[cfg(not(any(
412 target_os = "freebsd",
413 target_os = "illumos",
414 all(target_os = "linux", target_env = "gnu"),
415 all(target_os = "linux", target_env = "musl"),
416 target_os = "nto",
417 target_vendor = "apple",
418 )))]
419 fn posix_spawn(
420 &mut self,
421 _: &ChildPipes,
422 _: Option<&CStringArray>,
423 ) -> io::Result<Option<Process>> {
424 Ok(None)
425 }
426
427 #[cfg(any(
430 target_os = "freebsd",
431 target_os = "illumos",
432 all(target_os = "linux", target_env = "gnu"),
433 all(target_os = "linux", target_env = "musl"),
434 target_os = "nto",
435 target_vendor = "apple",
436 ))]
437 #[cfg_attr(target_os = "linux", no_sanitize(cfi))]
440 fn posix_spawn(
441 &mut self,
442 stdio: &ChildPipes,
443 envp: Option<&CStringArray>,
444 ) -> io::Result<Option<Process>> {
445 #[cfg(target_os = "linux")]
446 use core::sync::atomic::{AtomicU8, Ordering};
447
448 use crate::mem::MaybeUninit;
449 use crate::sys::{self, cvt_nz, on_broken_pipe_flag_used};
450
451 if self.get_gid().is_some()
452 || self.get_uid().is_some()
453 || (self.env_saw_path() && !self.program_is_path())
454 || !self.get_closures().is_empty()
455 || self.get_groups().is_some()
456 {
457 return Ok(None);
458 }
459
460 cfg_if::cfg_if! {
461 if #[cfg(target_os = "linux")] {
462 use crate::sys::weak::weak;
463
464 weak!(
465 fn pidfd_spawnp(
466 pidfd: *mut libc::c_int,
467 path: *const libc::c_char,
468 file_actions: *const libc::posix_spawn_file_actions_t,
469 attrp: *const libc::posix_spawnattr_t,
470 argv: *const *mut libc::c_char,
471 envp: *const *mut libc::c_char,
472 ) -> libc::c_int;
473 );
474
475 weak!(
476 fn pidfd_getpid(pidfd: libc::c_int) -> libc::c_int;
477 );
478
479 static PIDFD_SUPPORTED: AtomicU8 = AtomicU8::new(0);
480 const UNKNOWN: u8 = 0;
481 const SPAWN: u8 = 1;
482 const FORK_EXEC: u8 = 2;
484 const NO: u8 = 3;
487
488 if self.get_create_pidfd() {
489 let mut support = PIDFD_SUPPORTED.load(Ordering::Relaxed);
490 if support == FORK_EXEC {
491 return Ok(None);
492 }
493 if support == UNKNOWN {
494 support = NO;
495 let our_pid = crate::process::id();
496 let pidfd = cvt(unsafe { libc::syscall(libc::SYS_pidfd_open, our_pid, 0) } as c_int);
497 match pidfd {
498 Ok(pidfd) => {
499 support = FORK_EXEC;
500 if let Some(Ok(pid)) = pidfd_getpid.get().map(|f| cvt(unsafe { f(pidfd) } as i32)) {
501 if pidfd_spawnp.get().is_some() && pid as u32 == our_pid {
502 support = SPAWN
503 }
504 }
505 unsafe { libc::close(pidfd) };
506 }
507 Err(e) if e.raw_os_error() == Some(libc::EMFILE) => {
508 return Err(e)
511 }
512 _ => {}
513 }
514 PIDFD_SUPPORTED.store(support, Ordering::Relaxed);
515 if support == FORK_EXEC {
516 return Ok(None);
517 }
518 }
519 core::assert_matches::debug_assert_matches!(support, SPAWN | NO);
520 }
521 } else {
522 if self.get_create_pidfd() {
523 unreachable!("only implemented on linux")
524 }
525 }
526 }
527
528 #[cfg(all(target_os = "linux", target_env = "gnu"))]
530 {
531 if let Some(version) = sys::os::glibc_version() {
532 if version < (2, 24) {
533 return Ok(None);
534 }
535 } else {
536 return Ok(None);
537 }
538 }
539
540 #[cfg(target_os = "nto")]
545 unsafe fn retrying_libc_posix_spawnp(
546 pid: *mut pid_t,
547 file: *const c_char,
548 file_actions: *const posix_spawn_file_actions_t,
549 attrp: *const posix_spawnattr_t,
550 argv: *const *mut c_char,
551 envp: *const *mut c_char,
552 ) -> io::Result<i32> {
553 let mut delay = MIN_FORKSPAWN_SLEEP;
554 loop {
555 match libc::posix_spawnp(pid, file, file_actions, attrp, argv, envp) {
556 libc::EBADF => {
557 if delay < get_clock_resolution() {
558 thread::yield_now();
561 } else if delay < MAX_FORKSPAWN_SLEEP {
562 thread::sleep(delay);
563 } else {
564 return Err(io::const_error!(
565 ErrorKind::WouldBlock,
566 "posix_spawnp returned EBADF too often",
567 ));
568 }
569 delay *= 2;
570 continue;
571 }
572 r => {
573 return Ok(r);
574 }
575 }
576 }
577 }
578
579 type PosixSpawnAddChdirFn = unsafe extern "C" fn(
580 *mut libc::posix_spawn_file_actions_t,
581 *const libc::c_char,
582 ) -> libc::c_int;
583
584 #[cfg(not(all(target_os = "linux", target_env = "musl")))]
591 fn get_posix_spawn_addchdir() -> Option<PosixSpawnAddChdirFn> {
592 use crate::sys::weak::weak;
593
594 weak!(
599 fn posix_spawn_file_actions_addchdir_np(
600 file_actions: *mut libc::posix_spawn_file_actions_t,
601 path: *const libc::c_char,
602 ) -> libc::c_int;
603 );
604
605 weak!(
606 fn posix_spawn_file_actions_addchdir(
607 file_actions: *mut libc::posix_spawn_file_actions_t,
608 path: *const libc::c_char,
609 ) -> libc::c_int;
610 );
611
612 posix_spawn_file_actions_addchdir_np
613 .get()
614 .or_else(|| posix_spawn_file_actions_addchdir.get())
615 }
616
617 #[cfg(all(target_os = "linux", target_env = "musl"))]
625 fn get_posix_spawn_addchdir() -> Option<PosixSpawnAddChdirFn> {
626 Some(libc::posix_spawn_file_actions_addchdir_np)
628 }
629
630 let addchdir = match self.get_cwd() {
631 Some(cwd) => {
632 if cfg!(target_vendor = "apple") {
633 if self.get_program_kind() == ProgramKind::Relative {
639 return Ok(None);
640 }
641 }
642 match get_posix_spawn_addchdir() {
646 Some(f) => Some((f, cwd)),
647 None => return Ok(None),
648 }
649 }
650 None => None,
651 };
652
653 let pgroup = self.get_pgroup();
654
655 struct PosixSpawnFileActions<'a>(&'a mut MaybeUninit<libc::posix_spawn_file_actions_t>);
656
657 impl Drop for PosixSpawnFileActions<'_> {
658 fn drop(&mut self) {
659 unsafe {
660 libc::posix_spawn_file_actions_destroy(self.0.as_mut_ptr());
661 }
662 }
663 }
664
665 struct PosixSpawnattr<'a>(&'a mut MaybeUninit<libc::posix_spawnattr_t>);
666
667 impl Drop for PosixSpawnattr<'_> {
668 fn drop(&mut self) {
669 unsafe {
670 libc::posix_spawnattr_destroy(self.0.as_mut_ptr());
671 }
672 }
673 }
674
675 unsafe {
676 let mut attrs = MaybeUninit::uninit();
677 cvt_nz(libc::posix_spawnattr_init(attrs.as_mut_ptr()))?;
678 let attrs = PosixSpawnattr(&mut attrs);
679
680 let mut flags = 0;
681
682 let mut file_actions = MaybeUninit::uninit();
683 cvt_nz(libc::posix_spawn_file_actions_init(file_actions.as_mut_ptr()))?;
684 let file_actions = PosixSpawnFileActions(&mut file_actions);
685
686 if let Some(fd) = stdio.stdin.fd() {
687 cvt_nz(libc::posix_spawn_file_actions_adddup2(
688 file_actions.0.as_mut_ptr(),
689 fd,
690 libc::STDIN_FILENO,
691 ))?;
692 }
693 if let Some(fd) = stdio.stdout.fd() {
694 cvt_nz(libc::posix_spawn_file_actions_adddup2(
695 file_actions.0.as_mut_ptr(),
696 fd,
697 libc::STDOUT_FILENO,
698 ))?;
699 }
700 if let Some(fd) = stdio.stderr.fd() {
701 cvt_nz(libc::posix_spawn_file_actions_adddup2(
702 file_actions.0.as_mut_ptr(),
703 fd,
704 libc::STDERR_FILENO,
705 ))?;
706 }
707 if let Some((f, cwd)) = addchdir {
708 cvt_nz(f(file_actions.0.as_mut_ptr(), cwd.as_ptr()))?;
709 }
710
711 if let Some(pgroup) = pgroup {
712 flags |= libc::POSIX_SPAWN_SETPGROUP;
713 cvt_nz(libc::posix_spawnattr_setpgroup(attrs.0.as_mut_ptr(), pgroup))?;
714 }
715
716 if !on_broken_pipe_flag_used() {
724 let mut default_set = MaybeUninit::<libc::sigset_t>::uninit();
725 cvt(sigemptyset(default_set.as_mut_ptr()))?;
726 cvt(sigaddset(default_set.as_mut_ptr(), libc::SIGPIPE))?;
727 #[cfg(target_os = "hurd")]
728 {
729 cvt(sigaddset(default_set.as_mut_ptr(), libc::SIGLOST))?;
730 }
731 cvt_nz(libc::posix_spawnattr_setsigdefault(
732 attrs.0.as_mut_ptr(),
733 default_set.as_ptr(),
734 ))?;
735 flags |= libc::POSIX_SPAWN_SETSIGDEF;
736 }
737
738 cvt_nz(libc::posix_spawnattr_setflags(attrs.0.as_mut_ptr(), flags as _))?;
739
740 let _env_lock = sys::os::env_read_lock();
742 let envp = envp.map(|c| c.as_ptr()).unwrap_or_else(|| *sys::os::environ() as *const _);
743
744 #[cfg(not(target_os = "nto"))]
745 let spawn_fn = libc::posix_spawnp;
746 #[cfg(target_os = "nto")]
747 let spawn_fn = retrying_libc_posix_spawnp;
748
749 #[cfg(target_os = "linux")]
750 if self.get_create_pidfd() && PIDFD_SUPPORTED.load(Ordering::Relaxed) == SPAWN {
751 let mut pidfd: libc::c_int = -1;
752 let spawn_res = pidfd_spawnp.get().unwrap()(
753 &mut pidfd,
754 self.get_program_cstr().as_ptr(),
755 file_actions.0.as_ptr(),
756 attrs.0.as_ptr(),
757 self.get_argv().as_ptr() as *const _,
758 envp as *const _,
759 );
760
761 let spawn_res = cvt_nz(spawn_res);
762 if let Err(ref e) = spawn_res
763 && e.raw_os_error() == Some(libc::ENOSYS)
764 {
765 PIDFD_SUPPORTED.store(FORK_EXEC, Ordering::Relaxed);
766 return Ok(None);
767 }
768 spawn_res?;
769
770 let pid = match cvt(pidfd_getpid.get().unwrap()(pidfd)) {
771 Ok(pid) => pid,
772 Err(e) => {
773 libc::close(pidfd);
777 return Err(Error::new(
778 e.kind(),
779 "pidfd_spawnp succeeded but the child's PID could not be obtained",
780 ));
781 }
782 };
783
784 return Ok(Some(Process::new(pid, pidfd)));
785 }
786
787 let mut p = Process::new(0, -1);
789
790 let spawn_res = spawn_fn(
791 &mut p.pid,
792 self.get_program_cstr().as_ptr(),
793 file_actions.0.as_ptr(),
794 attrs.0.as_ptr(),
795 self.get_argv().as_ptr() as *const _,
796 envp as *const _,
797 );
798
799 #[cfg(target_os = "nto")]
800 let spawn_res = spawn_res?;
801
802 cvt_nz(spawn_res)?;
803 Ok(Some(p))
804 }
805 }
806
807 #[cfg(target_os = "linux")]
808 fn send_pidfd(&self, sock: &crate::sys::net::Socket) {
809 use libc::{CMSG_DATA, CMSG_FIRSTHDR, CMSG_LEN, CMSG_SPACE, SCM_RIGHTS, SOL_SOCKET};
810
811 use crate::io::IoSlice;
812 use crate::os::fd::RawFd;
813 use crate::sys::cvt_r;
814
815 unsafe {
816 let child_pid = libc::getpid();
817 let pidfd = libc::syscall(libc::SYS_pidfd_open, child_pid, 0);
819
820 let fds: [c_int; 1] = [pidfd as RawFd];
821
822 const SCM_MSG_LEN: usize = size_of::<[c_int; 1]>();
823
824 #[repr(C)]
825 union Cmsg {
826 buf: [u8; unsafe { CMSG_SPACE(SCM_MSG_LEN as u32) as usize }],
827 _align: libc::cmsghdr,
828 }
829
830 let mut cmsg: Cmsg = mem::zeroed();
831
832 let mut iov = [IoSlice::new(b"")];
834 let mut msg: libc::msghdr = mem::zeroed();
835
836 msg.msg_iov = (&raw mut iov) as *mut _;
837 msg.msg_iovlen = 1;
838
839 if pidfd >= 0 {
841 msg.msg_controllen = size_of_val(&cmsg.buf) as _;
842 msg.msg_control = (&raw mut cmsg.buf) as *mut _;
843
844 let hdr = CMSG_FIRSTHDR((&raw mut msg) as *mut _);
845 (*hdr).cmsg_level = SOL_SOCKET;
846 (*hdr).cmsg_type = SCM_RIGHTS;
847 (*hdr).cmsg_len = CMSG_LEN(SCM_MSG_LEN as _) as _;
848 let data = CMSG_DATA(hdr);
849 crate::ptr::copy_nonoverlapping(
850 fds.as_ptr().cast::<u8>(),
851 data as *mut _,
852 SCM_MSG_LEN,
853 );
854 }
855
856 match cvt_r(|| libc::sendmsg(sock.as_raw(), &msg, 0)) {
859 Ok(0) => {}
860 other => rtabort!("failed to communicate with parent process. {:?}", other),
861 }
862 }
863 }
864
865 #[cfg(target_os = "linux")]
866 fn recv_pidfd(&self, sock: &crate::sys::net::Socket) -> pid_t {
867 use libc::{CMSG_DATA, CMSG_FIRSTHDR, CMSG_LEN, CMSG_SPACE, SCM_RIGHTS, SOL_SOCKET};
868
869 use crate::io::IoSliceMut;
870 use crate::sys::cvt_r;
871
872 unsafe {
873 const SCM_MSG_LEN: usize = size_of::<[c_int; 1]>();
874
875 #[repr(C)]
876 union Cmsg {
877 _buf: [u8; unsafe { CMSG_SPACE(SCM_MSG_LEN as u32) as usize }],
878 _align: libc::cmsghdr,
879 }
880 let mut cmsg: Cmsg = mem::zeroed();
881 let mut iov = [IoSliceMut::new(&mut [])];
883
884 let mut msg: libc::msghdr = mem::zeroed();
885
886 msg.msg_iov = (&raw mut iov) as *mut _;
887 msg.msg_iovlen = 1;
888 msg.msg_controllen = size_of::<Cmsg>() as _;
889 msg.msg_control = (&raw mut cmsg) as *mut _;
890
891 match cvt_r(|| libc::recvmsg(sock.as_raw(), &mut msg, libc::MSG_CMSG_CLOEXEC)) {
892 Err(_) => return -1,
893 Ok(_) => {}
894 }
895
896 let hdr = CMSG_FIRSTHDR((&raw mut msg) as *mut _);
897 if hdr.is_null()
898 || (*hdr).cmsg_level != SOL_SOCKET
899 || (*hdr).cmsg_type != SCM_RIGHTS
900 || (*hdr).cmsg_len != CMSG_LEN(SCM_MSG_LEN as _) as _
901 {
902 return -1;
903 }
904 let data = CMSG_DATA(hdr);
905
906 let mut fds = [-1 as c_int];
907
908 crate::ptr::copy_nonoverlapping(
909 data as *const _,
910 fds.as_mut_ptr().cast::<u8>(),
911 SCM_MSG_LEN,
912 );
913
914 fds[0]
915 }
916 }
917}
918
919pub struct Process {
925 pid: pid_t,
926 status: Option<ExitStatus>,
927 #[cfg(target_os = "linux")]
932 pidfd: Option<PidFd>,
933}
934
935impl Process {
936 #[cfg(target_os = "linux")]
937 unsafe fn new(pid: pid_t, pidfd: pid_t) -> Self {
944 use crate::os::unix::io::FromRawFd;
945 use crate::sys_common::FromInner;
946 let pidfd = (pidfd >= 0).then(|| PidFd::from_inner(sys::fd::FileDesc::from_raw_fd(pidfd)));
948 Process { pid, status: None, pidfd }
949 }
950
951 #[cfg(not(target_os = "linux"))]
952 unsafe fn new(pid: pid_t, _pidfd: pid_t) -> Self {
953 Process { pid, status: None }
954 }
955
956 pub fn id(&self) -> u32 {
957 self.pid as u32
958 }
959
960 pub fn kill(&mut self) -> io::Result<()> {
961 if self.status.is_some() {
965 return Ok(());
966 }
967 #[cfg(target_os = "linux")]
968 if let Some(pid_fd) = self.pidfd.as_ref() {
969 return pid_fd.kill();
971 }
972 cvt(unsafe { libc::kill(self.pid, libc::SIGKILL) }).map(drop)
973 }
974
975 pub fn wait(&mut self) -> io::Result<ExitStatus> {
976 use crate::sys::cvt_r;
977 if let Some(status) = self.status {
978 return Ok(status);
979 }
980 #[cfg(target_os = "linux")]
981 if let Some(pid_fd) = self.pidfd.as_ref() {
982 let status = pid_fd.wait()?;
983 self.status = Some(status);
984 return Ok(status);
985 }
986 let mut status = 0 as c_int;
987 cvt_r(|| unsafe { libc::waitpid(self.pid, &mut status, 0) })?;
988 self.status = Some(ExitStatus::new(status));
989 Ok(ExitStatus::new(status))
990 }
991
992 pub fn try_wait(&mut self) -> io::Result<Option<ExitStatus>> {
993 if let Some(status) = self.status {
994 return Ok(Some(status));
995 }
996 #[cfg(target_os = "linux")]
997 if let Some(pid_fd) = self.pidfd.as_ref() {
998 let status = pid_fd.try_wait()?;
999 if let Some(status) = status {
1000 self.status = Some(status)
1001 }
1002 return Ok(status);
1003 }
1004 let mut status = 0 as c_int;
1005 let pid = cvt(unsafe { libc::waitpid(self.pid, &mut status, libc::WNOHANG) })?;
1006 if pid == 0 {
1007 Ok(None)
1008 } else {
1009 self.status = Some(ExitStatus::new(status));
1010 Ok(Some(ExitStatus::new(status)))
1011 }
1012 }
1013}
1014
1015#[derive(PartialEq, Eq, Clone, Copy, Default)]
1020pub struct ExitStatus(c_int);
1021
1022impl fmt::Debug for ExitStatus {
1023 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1024 f.debug_tuple("unix_wait_status").field(&self.0).finish()
1025 }
1026}
1027
1028impl ExitStatus {
1029 pub fn new(status: c_int) -> ExitStatus {
1030 ExitStatus(status)
1031 }
1032
1033 #[cfg(target_os = "linux")]
1034 pub fn from_waitid_siginfo(siginfo: libc::siginfo_t) -> ExitStatus {
1035 let status = unsafe { siginfo.si_status() };
1036
1037 match siginfo.si_code {
1038 libc::CLD_EXITED => ExitStatus((status & 0xff) << 8),
1039 libc::CLD_KILLED => ExitStatus(status),
1040 libc::CLD_DUMPED => ExitStatus(status | 0x80),
1041 libc::CLD_CONTINUED => ExitStatus(0xffff),
1042 libc::CLD_STOPPED | libc::CLD_TRAPPED => ExitStatus(((status & 0xff) << 8) | 0x7f),
1043 _ => unreachable!("waitid() should only return the above codes"),
1044 }
1045 }
1046
1047 fn exited(&self) -> bool {
1048 libc::WIFEXITED(self.0)
1049 }
1050
1051 pub fn exit_ok(&self) -> Result<(), ExitStatusError> {
1052 match NonZero::try_from(self.0) {
1058 Ok(failure) => Err(ExitStatusError(failure)),
1059 Err(_) => Ok(()),
1060 }
1061 }
1062
1063 pub fn code(&self) -> Option<i32> {
1064 self.exited().then(|| libc::WEXITSTATUS(self.0))
1065 }
1066
1067 pub fn signal(&self) -> Option<i32> {
1068 libc::WIFSIGNALED(self.0).then(|| libc::WTERMSIG(self.0))
1069 }
1070
1071 pub fn core_dumped(&self) -> bool {
1072 libc::WIFSIGNALED(self.0) && libc::WCOREDUMP(self.0)
1073 }
1074
1075 pub fn stopped_signal(&self) -> Option<i32> {
1076 libc::WIFSTOPPED(self.0).then(|| libc::WSTOPSIG(self.0))
1077 }
1078
1079 pub fn continued(&self) -> bool {
1080 libc::WIFCONTINUED(self.0)
1081 }
1082
1083 pub fn into_raw(&self) -> c_int {
1084 self.0
1085 }
1086}
1087
1088impl From<c_int> for ExitStatus {
1090 fn from(a: c_int) -> ExitStatus {
1091 ExitStatus(a)
1092 }
1093}
1094
1095fn signal_string(signal: i32) -> &'static str {
1102 match signal {
1103 libc::SIGHUP => " (SIGHUP)",
1104 libc::SIGINT => " (SIGINT)",
1105 libc::SIGQUIT => " (SIGQUIT)",
1106 libc::SIGILL => " (SIGILL)",
1107 libc::SIGTRAP => " (SIGTRAP)",
1108 libc::SIGABRT => " (SIGABRT)",
1109 #[cfg(not(target_os = "l4re"))]
1110 libc::SIGBUS => " (SIGBUS)",
1111 libc::SIGFPE => " (SIGFPE)",
1112 libc::SIGKILL => " (SIGKILL)",
1113 #[cfg(not(target_os = "l4re"))]
1114 libc::SIGUSR1 => " (SIGUSR1)",
1115 libc::SIGSEGV => " (SIGSEGV)",
1116 #[cfg(not(target_os = "l4re"))]
1117 libc::SIGUSR2 => " (SIGUSR2)",
1118 libc::SIGPIPE => " (SIGPIPE)",
1119 libc::SIGALRM => " (SIGALRM)",
1120 libc::SIGTERM => " (SIGTERM)",
1121 #[cfg(not(target_os = "l4re"))]
1122 libc::SIGCHLD => " (SIGCHLD)",
1123 #[cfg(not(target_os = "l4re"))]
1124 libc::SIGCONT => " (SIGCONT)",
1125 #[cfg(not(target_os = "l4re"))]
1126 libc::SIGSTOP => " (SIGSTOP)",
1127 #[cfg(not(target_os = "l4re"))]
1128 libc::SIGTSTP => " (SIGTSTP)",
1129 #[cfg(not(target_os = "l4re"))]
1130 libc::SIGTTIN => " (SIGTTIN)",
1131 #[cfg(not(target_os = "l4re"))]
1132 libc::SIGTTOU => " (SIGTTOU)",
1133 #[cfg(not(target_os = "l4re"))]
1134 libc::SIGURG => " (SIGURG)",
1135 #[cfg(not(target_os = "l4re"))]
1136 libc::SIGXCPU => " (SIGXCPU)",
1137 #[cfg(not(any(target_os = "l4re", target_os = "rtems")))]
1138 libc::SIGXFSZ => " (SIGXFSZ)",
1139 #[cfg(not(any(target_os = "l4re", target_os = "rtems")))]
1140 libc::SIGVTALRM => " (SIGVTALRM)",
1141 #[cfg(not(target_os = "l4re"))]
1142 libc::SIGPROF => " (SIGPROF)",
1143 #[cfg(not(any(target_os = "l4re", target_os = "rtems")))]
1144 libc::SIGWINCH => " (SIGWINCH)",
1145 #[cfg(not(any(target_os = "haiku", target_os = "l4re")))]
1146 libc::SIGIO => " (SIGIO)",
1147 #[cfg(target_os = "haiku")]
1148 libc::SIGPOLL => " (SIGPOLL)",
1149 #[cfg(not(target_os = "l4re"))]
1150 libc::SIGSYS => " (SIGSYS)",
1151 #[cfg(all(
1153 target_os = "linux",
1154 any(
1155 target_arch = "x86_64",
1156 target_arch = "x86",
1157 target_arch = "arm",
1158 target_arch = "aarch64"
1159 )
1160 ))]
1161 libc::SIGSTKFLT => " (SIGSTKFLT)",
1162 #[cfg(any(target_os = "linux", target_os = "nto", target_os = "cygwin"))]
1163 libc::SIGPWR => " (SIGPWR)",
1164 #[cfg(any(
1165 target_os = "freebsd",
1166 target_os = "netbsd",
1167 target_os = "openbsd",
1168 target_os = "dragonfly",
1169 target_os = "nto",
1170 target_vendor = "apple",
1171 target_os = "cygwin",
1172 ))]
1173 libc::SIGEMT => " (SIGEMT)",
1174 #[cfg(any(
1175 target_os = "freebsd",
1176 target_os = "netbsd",
1177 target_os = "openbsd",
1178 target_os = "dragonfly",
1179 target_vendor = "apple",
1180 ))]
1181 libc::SIGINFO => " (SIGINFO)",
1182 #[cfg(target_os = "hurd")]
1183 libc::SIGLOST => " (SIGLOST)",
1184 #[cfg(target_os = "freebsd")]
1185 libc::SIGTHR => " (SIGTHR)",
1186 #[cfg(target_os = "freebsd")]
1187 libc::SIGLIBRT => " (SIGLIBRT)",
1188 _ => "",
1189 }
1190}
1191
1192impl fmt::Display for ExitStatus {
1193 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1194 if let Some(code) = self.code() {
1195 write!(f, "exit status: {code}")
1196 } else if let Some(signal) = self.signal() {
1197 let signal_string = signal_string(signal);
1198 if self.core_dumped() {
1199 write!(f, "signal: {signal}{signal_string} (core dumped)")
1200 } else {
1201 write!(f, "signal: {signal}{signal_string}")
1202 }
1203 } else if let Some(signal) = self.stopped_signal() {
1204 let signal_string = signal_string(signal);
1205 write!(f, "stopped (not terminated) by signal: {signal}{signal_string}")
1206 } else if self.continued() {
1207 write!(f, "continued (WIFCONTINUED)")
1208 } else {
1209 write!(f, "unrecognised wait status: {} {:#x}", self.0, self.0)
1210 }
1211 }
1212}
1213
1214#[derive(PartialEq, Eq, Clone, Copy)]
1215pub struct ExitStatusError(NonZero<c_int>);
1216
1217impl Into<ExitStatus> for ExitStatusError {
1218 fn into(self) -> ExitStatus {
1219 ExitStatus(self.0.into())
1220 }
1221}
1222
1223impl fmt::Debug for ExitStatusError {
1224 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1225 f.debug_tuple("unix_wait_status").field(&self.0).finish()
1226 }
1227}
1228
1229impl ExitStatusError {
1230 pub fn code(self) -> Option<NonZero<i32>> {
1231 ExitStatus(self.0.into()).code().map(|st| st.try_into().unwrap())
1232 }
1233}
1234
1235#[cfg(target_os = "linux")]
1236mod linux_child_ext {
1237 use crate::io::ErrorKind;
1238 use crate::os::linux::process as os;
1239 use crate::sys::pal::linux::pidfd as imp;
1240 use crate::sys_common::FromInner;
1241 use crate::{io, mem};
1242
1243 #[unstable(feature = "linux_pidfd", issue = "82971")]
1244 impl crate::os::linux::process::ChildExt for crate::process::Child {
1245 fn pidfd(&self) -> io::Result<&os::PidFd> {
1246 self.handle
1247 .pidfd
1248 .as_ref()
1249 .map(|fd| unsafe { mem::transmute::<&imp::PidFd, &os::PidFd>(fd) })
1251 .ok_or_else(|| io::const_error!(ErrorKind::Uncategorized, "no pidfd was created."))
1252 }
1253
1254 fn into_pidfd(mut self) -> Result<os::PidFd, Self> {
1255 self.handle
1256 .pidfd
1257 .take()
1258 .map(|fd| <os::PidFd as FromInner<imp::PidFd>>::from_inner(fd))
1259 .ok_or_else(|| self)
1260 }
1261 }
1262}
1263
1264#[cfg(test)]
1265mod tests;
1266
1267#[cfg(all(test, target_os = "linux"))]
1269#[path = "unsupported/wait_status.rs"]
1270mod unsupported_wait_status;