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ic_host_process/child/
mod.rs

1//! Explicit child ownership and cleanup, without application lifecycle policy.
2//!
3//! Callers own executable admission, IO, readiness, cancellation and deadlines.
4//! Group cleanup signals members of a newly created group; it cannot contain
5//! processes that escape that group or prove completion of external effects.
6
7#[cfg(target_os = "macos")]
8mod macos;
9#[cfg(test)]
10mod tests;
11
12use rustix::{
13    io::Errno,
14    process::{Pid, Signal, WaitId, WaitIdOptions, WaitIdStatus, kill_process_group, waitid},
15};
16use std::{
17    fmt, io,
18    os::unix::process::{CommandExt, ExitStatusExt},
19    process::{Child, ChildStderr, ChildStdin, ChildStdout, Command, ExitStatus},
20};
21
22/// One exclusively owned child, normally spawned as a new process-group leader.
23///
24/// [`Self::spawn`] preserves the command's IO, environment and other settings,
25/// replacing its process-group selection with a new group. It performs no
26/// executable admission. The child must not change groups, and callers must
27/// not independently reap it (including through a global SIGCHLD handler).
28///
29/// Ordinary waiting signals remaining group members before reaping the leader.
30/// For a deliberate background handoff, [`Self::poll_exit`] observes without
31/// releasing cleanup ownership, then [`Self::handoff`] reaps a successful leader
32/// without signalling its group. The caller then owns the background lifetime.
33/// Drop makes a best-effort kill/reap attempt, including during unwinding. Use
34/// [`Self::terminate`] to observe cleanup failures. Cleanup is synchronous and
35/// has no wall-clock bound; successful signalling is not proof that descendants
36/// have exited or completed external effects. Only the direct child is reaped.
37/// Group signalling can succeed for only some members when credentials differ.
38pub struct OwnedChild {
39    child: Child,
40    group: bool,
41    status: Option<ExitStatus>,
42    owned: bool,
43}
44
45/// Failures observed during one explicit termination attempt.
46///
47/// Keep this separately from the caller's original cancellation/operation error.
48/// If group signalling fails, direct-child kill and reaping are still attempted.
49#[derive(Debug)]
50pub struct CleanupError {
51    /// Status retained if the direct child was reaped despite another failure.
52    pub status: Option<ExitStatus>,
53    /// Failure signalling the owned process group.
54    pub group_error: Option<io::Error>,
55    /// Failure killing the direct child (including fallback after group failure).
56    pub kill_error: Option<io::Error>,
57    /// Failure reaping the direct child.
58    pub wait_error: Option<io::Error>,
59}
60
61impl fmt::Display for CleanupError {
62    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
63        f.write_str("child cleanup failed")?;
64        for (operation, error) in [
65            ("group signal", &self.group_error),
66            ("child kill", &self.kill_error),
67            ("child wait", &self.wait_error),
68        ] {
69            if let Some(error) = error {
70                write!(f, "; {operation}: {error}")?;
71            }
72        }
73        Ok(())
74    }
75}
76
77impl std::error::Error for CleanupError {
78    fn source(&self) -> Option<&(dyn std::error::Error + 'static)> {
79        self.group_error
80            .as_ref()
81            .or(self.kill_error.as_ref())
82            .or(self.wait_error.as_ref())
83            .map(|error| error as &dyn std::error::Error)
84    }
85}
86
87impl OwnedChild {
88    /// Spawn once in a new owned process group, preserving caller-configured IO.
89    ///
90    /// # Errors
91    /// Returns the native spawn/setup failure. No retries are performed.
92    pub fn spawn(command: &mut Command) -> io::Result<Self> {
93        command.process_group(0);
94        Self::spawn_inner(command, true)
95    }
96
97    pub(crate) fn spawn_direct(command: &mut Command) -> io::Result<Self> {
98        Self::spawn_inner(command, false)
99    }
100
101    pub(crate) const fn is_owned(&self) -> bool {
102        self.owned
103    }
104
105    fn spawn_inner(command: &mut Command, group: bool) -> io::Result<Self> {
106        command.spawn().map(|child| Self {
107            child,
108            group,
109            status: None,
110            owned: true,
111        })
112    }
113
114    /// Direct-child PID, for observation only; it can be reused after reaping.
115    #[must_use]
116    pub fn id(&self) -> u32 {
117        self.child.id()
118    }
119
120    /// Take caller-configured piped stdin. Close it before waiting for EOF-driven children.
121    pub const fn take_stdin(&mut self) -> Option<ChildStdin> {
122        self.child.stdin.take()
123    }
124
125    /// Take caller-configured piped stdout; the caller owns draining and bounds.
126    pub const fn take_stdout(&mut self) -> Option<ChildStdout> {
127        self.child.stdout.take()
128    }
129
130    /// Take caller-configured piped stderr; the caller owns draining and bounds.
131    pub const fn take_stderr(&mut self) -> Option<ChildStderr> {
132        self.child.stderr.take()
133    }
134
135    /// Observe leader exit without signalling or reaping it.
136    ///
137    /// An exited leader stays reserved with `WNOWAIT`, so cancellation, failed IO
138    /// admission and unwinding still clean its group. Repeated observations do
139    /// not release ownership. After a completed wait/termination/handoff, returns
140    /// the cached status. This status alone does not establish a handoff.
141    ///
142    /// Call [`Self::handoff`] only after admitting a successful background start.
143    /// Otherwise use [`Self::wait`] or [`Self::terminate`] to clean and reap.
144    /// # Errors
145    /// Returns native inspection errors; external reaping invalidates ownership.
146    pub fn poll_exit(&mut self) -> io::Result<Option<ExitStatus>> {
147        if let Some(status) = self.status {
148            return Ok(Some(status));
149        }
150        self.observe_exit(true)?
151            .map(|status| {
152                // Unix wait status encoding used by Linux and Darwin. waitid's
153                // siginfo status is an exit code/signal, not an encoded wait status.
154                let raw = if let Some(code) = status.exit_status() {
155                    code << 8
156                } else if let Some(signal) = status.terminating_signal() {
157                    signal | if status.dumped() { 0x80 } else { 0 }
158                } else {
159                    return Err(io::Error::other("waitid returned a non-exit observation"));
160                };
161                Ok(ExitStatus::from_raw(raw))
162            })
163            .transpose()
164    }
165
166    /// Reap an already successful leader without signalling its remaining group.
167    ///
168    /// This is the explicit transfer point for a background lifetime. The caller
169    /// must first admit its IO/result and arrange application-owned readiness,
170    /// cancellation and stop/recovery. Zero exit does not prove those obligations.
171    /// No PID/group handle is transferred: it could be reused after reaping.
172    /// Subsequent wait/termination/Drop never signal the handed-off group.
173    ///
174    /// Use [`Self::poll_exit`] while draining IO and checking cancellation. A
175    /// running or unsuccessful leader is refused without releasing ownership;
176    /// use ordinary wait/termination for failed startup, keeping its original
177    /// failure separate from any cleanup error. Drop still attempts cleanup.
178    /// # Errors
179    /// Returns `InvalidInput` for a running, unsuccessful or already-reaped
180    /// leader, or native inspection/reap errors. Reap failures retain cleanup
181    /// ownership unless it was lost externally.
182    pub fn handoff(&mut self) -> io::Result<ExitStatus> {
183        if !self.owned || !self.poll_exit()?.is_some_and(|status| status.success()) {
184            return Err(io::Error::new(
185                io::ErrorKind::InvalidInput,
186                "handoff requires an owned, successfully exited leader",
187            ));
188        }
189        self.reap()
190    }
191
192    /// Inspect exit without blocking on a running child; clean its group before reaping.
193    ///
194    /// Repeated successful calls return the cached status without signalling again.
195    /// # Errors
196    /// Returns native inspection, group-signal or reap errors. The leader remains
197    /// reserved on a group-signal failure, so explicit cleanup can still be attempted.
198    pub fn try_wait(&mut self) -> io::Result<Option<ExitStatus>> {
199        if let Some(status) = self.status {
200            return Ok(Some(status));
201        }
202        if !self.owned {
203            return Err(Errno::CHILD.into());
204        }
205        if self.group {
206            if self.observe_exit(true)?.is_none() {
207                return Ok(None);
208            }
209            self.signal_group()?;
210            self.reap().map(Some)
211        } else {
212            let result = retry_interrupted(|| self.child.try_wait());
213            if let Ok(Some(status)) = result {
214                self.status = Some(status);
215                self.owned = false;
216            }
217            self.check_wait_ownership(&result);
218            result
219        }
220    }
221
222    /// Wait for natural leader exit, then clean its group and reap the leader.
223    ///
224    /// Close/drain caller-owned pipes as needed before waiting. No deadline or
225    /// cancellation policy is installed; callers may use polling instead.
226    /// # Errors
227    /// Returns native inspection, group-signal or reap errors.
228    pub fn wait(&mut self) -> io::Result<ExitStatus> {
229        if let Some(status) = self.status {
230            return Ok(status);
231        }
232        if self.group {
233            self.observe_exit(false)?;
234            self.signal_group()?;
235        }
236        self.reap()
237    }
238
239    /// Kill the owned group (or internal direct child), then reap the leader.
240    ///
241    /// Repeated calls after reaping return the cached status and never signal a
242    /// reused PID. A prior group failure still matters even if reaping succeeded;
243    /// later calls cannot recover group ownership and do not erase that evidence.
244    /// # Errors
245    /// Retains each failed cleanup step separately. Group failure triggers a
246    /// direct-child kill fallback. Drop cannot report errors; call this explicitly
247    /// when cleanup evidence matters.
248    pub fn terminate(&mut self) -> Result<ExitStatus, CleanupError> {
249        if let Some(status) = self.status {
250            return Ok(status);
251        }
252        let group_error = if self.group {
253            self.signal_group().err()
254        } else {
255            None
256        };
257        let kill_error = if self.owned && (!self.group || group_error.is_some()) {
258            retry_interrupted(|| self.child.kill()).err()
259        } else {
260            None
261        };
262        let waited = self.reap();
263        match waited {
264            Ok(status) if group_error.is_none() && kill_error.is_none() => Ok(status),
265            other => Err(CleanupError {
266                status: self.status,
267                group_error,
268                kill_error,
269                wait_error: other.err(),
270            }),
271        }
272    }
273
274    fn pid(&self) -> io::Result<Pid> {
275        if !self.owned {
276            return Err(Errno::CHILD.into());
277        }
278        Pid::from_raw(i32::try_from(self.id()).map_err(io::Error::other)?)
279            .ok_or_else(|| io::Error::other("child PID is zero"))
280    }
281
282    fn observe_exit(&mut self, nonblocking: bool) -> io::Result<Option<WaitIdStatus>> {
283        let pid = self.pid()?;
284        // NOWAIT reserves the leader PID until cleanup or explicit handoff,
285        // avoiding signals to an unrelated group after an early leader exit.
286        let mut options = WaitIdOptions::EXITED | WaitIdOptions::NOWAIT;
287        if nonblocking {
288            options |= WaitIdOptions::NOHANG;
289        }
290        let result = retry_interrupted(|| waitid(WaitId::Pid(pid), options).map_err(Into::into));
291        self.check_wait_ownership(&result);
292        result
293    }
294
295    #[cfg_attr(
296        not(target_os = "macos"),
297        allow(
298            clippy::needless_pass_by_ref_mut,
299            reason = "Darwin inspects and may invalidate child ownership"
300        )
301    )]
302    fn signal_group(&mut self) -> io::Result<()> {
303        let pid = self.pid()?;
304        match retry_interrupted(|| kill_process_group(pid, Signal::KILL).map_err(Into::into)) {
305            Ok(()) => Ok(()),
306            Err(error) if error.raw_os_error() == Some(Errno::SRCH.raw_os_error()) => Ok(()),
307            #[cfg(target_os = "macos")]
308            Err(error)
309                if error.raw_os_error() == Some(Errno::PERM.raw_os_error())
310                    && self.observe_exit(true)?.is_some()
311                    && macos::sole_group_member(pid) =>
312            {
313                Ok(())
314            }
315            Err(error) => Err(error),
316        }
317    }
318
319    fn reap(&mut self) -> io::Result<ExitStatus> {
320        if !self.owned {
321            return Err(Errno::CHILD.into());
322        }
323        let result = retry_interrupted(|| self.child.wait());
324        if let Ok(status) = result {
325            self.status = Some(status);
326            self.owned = false;
327        }
328        self.check_wait_ownership(&result);
329        result
330    }
331
332    fn check_wait_ownership<T>(&mut self, result: &io::Result<T>) {
333        if result
334            .as_ref()
335            .is_err_and(|error| error.raw_os_error() == Some(Errno::CHILD.raw_os_error()))
336        {
337            // An external reaper violates exclusive ownership; never signal a
338            // potentially reused PID after observing that ownership was lost.
339            self.owned = false;
340        }
341    }
342}
343
344impl Drop for OwnedChild {
345    fn drop(&mut self) {
346        if self.owned {
347            let _ = self.terminate();
348        }
349    }
350}
351
352fn retry_interrupted<T>(mut operation: impl FnMut() -> io::Result<T>) -> io::Result<T> {
353    loop {
354        match operation() {
355            Err(error) if error.kind() == io::ErrorKind::Interrupted => {}
356            result => return result,
357        }
358    }
359}