brokerd: the Podman runtime
Implemented-By: OpenCode session (model recorded in docs/implementer-log.md)
This commit is contained in:
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//! The Podman runtime: one fresh container per call, with the limits of `[runner]`. Whatever the
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//! tool prints is the result's content; every failure is a fixed sentence, and what Podman itself
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//! said goes only to `brokerd`'s log. M3b spec, section 6.
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use std::ffi::OsString;
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use std::io::{Read, Write};
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use std::path::{Path, PathBuf};
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use std::process::{Child, Command, ExitStatus, Stdio};
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use std::sync::Arc;
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use std::sync::atomic::{AtomicU64, Ordering};
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use std::thread::JoinHandle;
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use std::time::{Duration, Instant};
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use crate::config::Runner;
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use crate::podman;
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use crate::runner::{RunError, RunOutput, RunSpec, Runtime};
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pub const RUNBOOK: &str = "see docs/runbook.md#runner-unavailable";
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pub const COULD_NOT_RUN: &str = "the tool could not run";
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pub const CANNOT_START: &str = "the tool runner could not start the container";
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pub const KILLED: &str = "the tool was stopped: it ran out of memory or was killed";
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pub const TIMED_OUT: &str = "the tool ran past its time limit";
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pub const UNEXPECTED: &str = "the tool failed with an unexpected status";
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/// How often a running container is checked.
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pub const POLL: Duration = Duration::from_millis(50);
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/// How much of Podman's standard error is kept for the log.
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pub const STDERR_KEPT: usize = 4096;
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/// A log sink. Call it as `(self.log)("a line")`.
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pub type Log = Arc<dyn Fn(&str) + Send + Sync>;
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pub struct Podman {
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runner: Runner,
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egress_dir: PathBuf,
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log: Log,
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next: AtomicU64,
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}
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impl Podman {
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/// `egress_dir` is `Config::egress_dir()`; task 12 uses it.
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pub fn new(runner: Runner, egress_dir: PathBuf, log: Log) -> Podman {
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Podman {
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runner,
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egress_dir,
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log,
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next: AtomicU64::new(0),
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}
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}
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/// Where `http_fetch` calls get their directories. Public, so the field counts as read.
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pub fn egress_dir(&self) -> &Path {
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&self.egress_dir
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}
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/// Run one short `podman` command (`kill`, `rm -f`) whose result only matters for the log.
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pub(crate) fn podman(&self, args: &[&str]) {
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let what = args.join(" ");
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let podman = &self.runner.podman;
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match Command::new(podman)
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.args(args)
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.stdin(Stdio::null())
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.stdout(Stdio::null())
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.stderr(Stdio::null())
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.status()
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{
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Ok(status) if status.success() => {}
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Ok(status) => (self.log)(&format!("brokerd: podman {what} exited {status}")),
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Err(e) => (self.log)(&format!("brokerd: podman {what} failed: {e}")),
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}
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}
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/// Wait for `child` until `limit` has passed since `started`. `Some(status)` if it ended;
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/// `None` if it ran too long, after `podman kill <name>`, `podman rm -f <name>`,
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/// `child.kill()` and `child.wait()` (step 5).
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fn wait(
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&self,
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child: &mut Child,
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name: &str,
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started: Instant,
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limit: Duration,
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) -> Option<ExitStatus> {
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loop {
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if let Ok(Some(status)) = child.try_wait() {
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return Some(status);
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}
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if started.elapsed() >= limit {
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self.podman(&["kill", name]);
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self.podman(&["rm", "-f", name]);
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let _ = child.kill();
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let _ = child.wait();
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return None;
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}
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std::thread::sleep(POLL);
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}
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}
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}
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impl Podman {
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/// Steps 3 to 7 for one container: spawn, feed and read it, wait, answer. Task 12 calls it too.
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/// Already written: it only joins the helpers below.
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fn run_container(
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&self,
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name: &str,
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args: Vec<OsString>,
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input: String,
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limit: Duration,
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) -> Result<RunOutput, RunError> {
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let Some(mut child) = self.spawn(args) else {
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return Err(RunError::Unavailable(CANNOT_START.to_string()));
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};
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let started = Instant::now();
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let cap = usize::try_from(self.runner.output_cap).unwrap_or(usize::MAX);
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let io = Io::start(&mut child, input, cap);
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let status = self.wait(&mut child, name, started, limit);
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let (out, truncated, err) = io.finish();
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self.answer(name, status, out, truncated, &err)
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}
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/// Step 3: spawn `podman` with `args` and all three standard streams piped. On failure, log
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/// `brokerd: cannot start {podman path}: {e}` + "\n" + RUNBOOK and return `None`.
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fn spawn(&self, args: Vec<OsString>) -> Option<Child> {
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let podman = &self.runner.podman;
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match Command::new(podman)
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.args(args)
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.stdin(Stdio::piped())
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.stdout(Stdio::piped())
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.stderr(Stdio::piped())
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.spawn()
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{
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Ok(child) => Some(child),
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Err(e) => {
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(self.log)(&format!(
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"brokerd: cannot start {}: {}\n{}",
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podman.display(),
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e,
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RUNBOOK
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));
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None
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}
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}
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}
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/// Step 7: the answer, by the table in the task. `status` is `None` when the time limit was
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/// passed. `out` is the kept standard output, `err` the kept standard error (for the log only:
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/// it never goes into a `RunError`).
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fn answer(
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&self,
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name: &str,
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status: Option<ExitStatus>,
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out: Vec<u8>,
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truncated: bool,
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err: &str,
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) -> Result<RunOutput, RunError> {
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match status {
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None => {
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(self.log)(&format!(
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"brokerd: stopped container {}: it ran past its time limit",
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name
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));
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Err(RunError::Failed(TIMED_OUT.to_string()))
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}
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Some(status) => match status.code() {
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Some(0) | Some(1) => Ok(RunOutput {
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content: String::from_utf8_lossy(&out).into_owned(),
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truncated,
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}),
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Some(2) => {
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(self.log)(err);
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Err(RunError::Failed(COULD_NOT_RUN.to_string()))
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}
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Some(125..=127) => {
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(self.log)(&format!("{err}\n{RUNBOOK}"));
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Err(RunError::Unavailable(CANNOT_START.to_string()))
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}
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Some(137) => Err(RunError::Failed(KILLED.to_string())),
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_ => {
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(self.log)(&format!("brokerd: container {name} exited {status}\n{err}"));
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Err(RunError::Failed(UNEXPECTED.to_string()))
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}
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},
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}
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}
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}
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impl Runtime for Podman {
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/// Steps 1 and 2, then `run_container`. Already written.
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fn run(&self, spec: &RunSpec) -> Result<RunOutput, RunError> {
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let n = self.next.fetch_add(1, Ordering::SeqCst);
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let name = podman::container_name(spec.session(), spec.call(), n);
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let args = podman::tool_args(spec, &self.runner, &name, None);
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let input = spec.arguments().canonical_json();
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let limit = self.runner.time_limit(spec.tool());
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self.run_container(&name, args, input, limit)
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}
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}
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/// Step 4: the three threads that feed and read one container, so no pipe can block another.
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struct Io {
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writer: Option<JoinHandle<()>>,
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stdout: Option<JoinHandle<(Vec<u8>, bool)>>,
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stderr: Option<JoinHandle<(Vec<u8>, bool)>>,
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}
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impl Io {
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/// Take `child`'s three pipes (`child.stdin.take()` and so on) and start one thread for each:
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/// write `input` to standard input and then drop it; `read_capped` standard output with `cap`;
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/// `read_capped` standard error with `STDERR_KEPT`. A pipe that is `None` gets no thread.
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fn start(child: &mut Child, input: String, cap: usize) -> Io {
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let writer = child.stdin.take().map(|mut stdin| {
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std::thread::spawn(move || {
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let _ = stdin.write_all(input.as_bytes());
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})
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});
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let stdout = child
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.stdout
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.take()
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.map(|stdout| std::thread::spawn(move || read_capped(stdout, cap)));
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let stderr = child
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.stderr
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.take()
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.map(|stderr| std::thread::spawn(move || read_capped(stderr, STDERR_KEPT)));
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Io {
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writer,
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stdout,
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stderr,
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}
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}
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/// Step 6: join the three threads. A thread that is missing or panicked counts as empty
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/// (`join().ok()`, `unwrap_or_default()`). Returns the kept standard output, whether there was
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/// more, and the kept standard error decoded with `from_utf8_lossy`.
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fn finish(self) -> (Vec<u8>, bool, String) {
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if let Some(handle) = self.writer {
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let _ = handle.join();
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}
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let (out, truncated) = match self.stdout {
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Some(handle) => handle.join().ok().unwrap_or_default(),
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None => (Vec::new(), false),
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};
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let err = match self.stderr {
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Some(handle) => {
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let (bytes, _) = handle.join().ok().unwrap_or_default();
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String::from_utf8_lossy(&bytes).into_owned()
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}
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None => String::new(),
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};
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(out, truncated, err)
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}
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}
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/// Everything `from` gives, keeping the first `cap` bytes; `true` if there was more. Reads on past
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/// the cap, so the writer is never blocked or broken by a closed pipe. No indexing: `buf.get(..n)`.
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fn read_capped(from: impl Read, cap: usize) -> (Vec<u8>, bool) {
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let mut from = from;
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let mut kept: Vec<u8> = Vec::new();
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let mut truncated = false;
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let mut chunk = [0u8; 8192];
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loop {
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let n = match from.read(&mut chunk) {
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Ok(0) => break,
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Ok(n) => n,
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Err(_) => break,
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};
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let remaining = cap - kept.len();
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if remaining == 0 {
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truncated = true;
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} else {
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let take = remaining.min(n);
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kept.extend_from_slice(&chunk[..take]);
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if n > take {
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truncated = true;
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}
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}
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}
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(kept, truncated)
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}
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@@ -6,6 +6,7 @@ pub mod args;
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pub mod audit;
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pub mod broker;
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pub mod config;
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pub mod container;
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pub mod grants;
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pub mod ledger;
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pub mod podman;
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