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use std::sync::Arc;
use std::sync::atomic::AtomicBool;
use std::sync::atomic::Ordering;
use tokio::sync::Mutex;
use tokio::sync::Notify;
use tokio::sync::broadcast;
use tokio::sync::oneshot::error::TryRecvError;
use tokio::sync::watch;
use tokio::task::JoinHandle;
use tokio::time::Duration;
use tokio_util::sync::CancellationToken;
use codex_exec_server::ExecProcess;
use codex_exec_server::ExecProcessEvent;
use codex_exec_server::ProcessSignal as ExecServerProcessSignal;
use codex_exec_server::ReadResponse as ExecReadResponse;
use codex_exec_server::StartedExecProcess;
use codex_exec_server::WriteStatus;
use codex_protocol::exec_output::ExecToolCallOutput;
use codex_protocol::exec_output::StreamOutput;
use codex_protocol::protocol::TruncationPolicy;
use codex_sandboxing::SandboxType;
use codex_sandboxing::is_likely_sandbox_denied;
use codex_sandboxing::record_filesystem_sandbox_violation;
use codex_utils_output_truncation::formatted_truncate_text;
use codex_utils_pty::ExecCommandSession;
use codex_utils_pty::ProcessSignal as PtyProcessSignal;
use codex_utils_pty::SpawnedPty;
use super::UNIFIED_EXEC_OUTPUT_MAX_BYTES;
use super::UNIFIED_EXEC_OUTPUT_MAX_TOKENS;
use super::UnifiedExecError;
use super::head_tail_buffer::HeadTailBuffer;
use super::process_state::ProcessState;
use crate::shell_snapshot::ShellSnapshotFile;
const EARLY_EXIT_GRACE_PERIOD: Duration = Duration::from_millis(150);
pub(crate) trait SpawnLifecycle: std::fmt::Debug + Send + Sync {
/// Returns file descriptors that must stay open across the child `exec()`.
///
/// The returned descriptors must already be valid in the parent process and
/// stay valid until `after_spawn()` runs, which is the first point where
/// the parent may release its copies.
fn inherited_fds(&self) -> Vec<i32> {
Vec::new()
}
fn after_spawn(&mut self) {}
}
pub(crate) type SpawnLifecycleHandle = Box<dyn SpawnLifecycle>;
#[derive(Debug, Default)]
/// Spawn lifecycle that performs no extra setup around process launch.
pub(crate) struct NoopSpawnLifecycle;
impl SpawnLifecycle for NoopSpawnLifecycle {}
/// Shared output state exposed to polling and streaming consumers.
#[derive(Clone)]
pub(crate) struct OutputHandles<const MAX_BYTES: usize = UNIFIED_EXEC_OUTPUT_MAX_BYTES> {
pub(crate) output_buffer: Arc<Mutex<HeadTailBuffer<MAX_BYTES>>>,
pub(crate) output_notify: Arc<Notify>,
pub(crate) output_closed: Arc<AtomicBool>,
pub(crate) output_closed_notify: Arc<Notify>,
pub(crate) cancellation_token: CancellationToken,
}
struct OutputTaskGuard {
output_closed: Arc<AtomicBool>,
output_closed_notify: Arc<Notify>,
}
impl Drop for OutputTaskGuard {
fn drop(&mut self) {
self.output_closed.store(true, Ordering::Release);
self.output_closed_notify.notify_waiters();
}
}
/// Transport-specific process handle used by unified exec.
enum ProcessHandle {
Local(Box<ExecCommandSession>),
ExecServer(Arc<dyn ExecProcess>),
}
/// Unified wrapper over directly spawned PTY sessions and exec-server-backed
/// processes.
pub(crate) struct UnifiedExecProcess {
process_handle: ProcessHandle,
output_tx: broadcast::Sender<Vec<u8>>,
output: OutputHandles,
output_drained: Arc<Notify>,
interaction_lock: Arc<Mutex<()>>,
state_tx: watch::Sender<ProcessState>,
state_rx: watch::Receiver<ProcessState>,
output_task: Option<JoinHandle<()>>,
sandbox_type: SandboxType,
timed_out: AtomicBool,
_spawn_lifecycle: Option<SpawnLifecycleHandle>,
// The shell may still need to replay this file after process startup returns.
pub(crate) _shell_snapshot: Option<Arc<ShellSnapshotFile>>,
}
impl std::fmt::Debug for UnifiedExecProcess {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
f.debug_struct("UnifiedExecProcess")
.field("has_exited", &self.has_exited())
.field("exit_code", &self.exit_code())
.field("sandbox_type", &self.sandbox_type)
.finish_non_exhaustive()
}
}
impl UnifiedExecProcess {
fn new(
process_handle: ProcessHandle,
sandbox_type: SandboxType,
spawn_lifecycle: Option<SpawnLifecycleHandle>,
) -> Self {
let output = OutputHandles {
output_buffer: Arc::new(Mutex::new(HeadTailBuffer::default())),
output_notify: Arc::new(Notify::new()),
output_closed: Arc::new(AtomicBool::new(false)),
output_closed_notify: Arc::new(Notify::new()),
cancellation_token: CancellationToken::new(),
};
let output_drained = Arc::new(Notify::new());
let (output_tx, _) = broadcast::channel(64);
let (state_tx, state_rx) = watch::channel(ProcessState::default());
Self {
process_handle,
output_tx,
output,
output_drained,
interaction_lock: Arc::new(Mutex::new(())),
state_tx,
state_rx,
output_task: None,
sandbox_type,
timed_out: AtomicBool::new(false),
_spawn_lifecycle: spawn_lifecycle,
_shell_snapshot: None,
}
}
pub(super) async fn write(&self, data: &[u8]) -> Result<(), UnifiedExecError> {
match &self.process_handle {
ProcessHandle::Local(process_handle) => process_handle
.writer_sender()
.send(data.to_vec())
.await
.map_err(|_| UnifiedExecError::WriteToStdin),
ProcessHandle::ExecServer(process_handle) => {
match process_handle.write(data.to_vec()).await {
Ok(response) => match response.status {
WriteStatus::Accepted => Ok(()),
WriteStatus::UnknownProcess | WriteStatus::StdinClosed => {
let state = self.state_rx.borrow().clone();
let _ = self.state_tx.send_replace(state.exited(state.exit_code));
self.output.cancellation_token.cancel();
Err(UnifiedExecError::WriteToStdin)
}
WriteStatus::Starting => Err(UnifiedExecError::WriteToStdin),
},
Err(err) => Err(UnifiedExecError::process_failed(err.to_string())),
}
}
}
}
pub(super) fn output_handles(&self) -> &OutputHandles {
&self.output
}
pub(super) fn output_receiver(&self) -> tokio::sync::broadcast::Receiver<Vec<u8>> {
self.output_tx.subscribe()
}
pub(super) fn cancellation_token(&self) -> CancellationToken {
self.output.cancellation_token.clone()
}
pub(super) fn output_drained_notify(&self) -> Arc<Notify> {
Arc::clone(&self.output_drained)
}
pub(super) fn interaction_lock(&self) -> Arc<Mutex<()>> {
Arc::clone(&self.interaction_lock)
}
pub(super) fn has_exited(&self) -> bool {
let state = self.state_rx.borrow().clone();
match &self.process_handle {
ProcessHandle::Local(process_handle) => state.has_exited || process_handle.has_exited(),
ProcessHandle::ExecServer(_) => state.has_exited,
}
}
pub(super) fn exit_code(&self) -> Option<i32> {
if self.timed_out() {
return Some(124);
}
let state = self.state_rx.borrow().clone();
match &self.process_handle {
ProcessHandle::Local(process_handle) => {
state.exit_code.or_else(|| process_handle.exit_code())
}
ProcessHandle::ExecServer(_) => state.exit_code,
}
}
pub(super) fn mark_timed_out(&self) {
self.timed_out.store(true, Ordering::Release);
}
pub(super) fn timed_out(&self) -> bool {
self.timed_out.load(Ordering::Acquire)
}
fn finish_termination(&self) {
self.output.cancellation_token.cancel();
if let Some(output_task) = &self.output_task {
output_task.abort();
}
}
pub(super) fn terminate(&self) {
match &self.process_handle {
ProcessHandle::Local(process_handle) => process_handle.terminate(),
ProcessHandle::ExecServer(process_handle) => {
let process_handle = Arc::clone(process_handle);
tokio::spawn(async move {
let _ = process_handle.terminate().await;
});
}
}
self.finish_termination();
}
pub(super) async fn terminate_confirmed(&self) -> Result<(), UnifiedExecError> {
match &self.process_handle {
ProcessHandle::Local(process_handle) => process_handle.terminate(),
ProcessHandle::ExecServer(process_handle) => {
process_handle
.terminate()
.await
.map_err(|err| UnifiedExecError::process_failed(err.to_string()))?;
}
}
self.signal_exit(self.exit_code());
self.finish_termination();
Ok(())
}
pub(super) async fn interrupt(&self) -> Result<(), UnifiedExecError> {
match &self.process_handle {
ProcessHandle::Local(process_handle) => process_handle
.signal(PtyProcessSignal::Interrupt)
.map_err(|err| UnifiedExecError::process_failed(err.to_string())),
ProcessHandle::ExecServer(process_handle) => process_handle
.signal(ExecServerProcessSignal::Interrupt)
.await
.map_err(|err| UnifiedExecError::process_failed(err.to_string())),
}
}
pub(super) fn fail_and_terminate(&self, message: String) {
let state = self.state_rx.borrow().clone();
if state.failure_message.is_none() {
let _ = self.state_tx.send_replace(state.failed(message));
}
self.terminate();
}
async fn snapshot_output(&self) -> Vec<u8> {
let guard = self.output.output_buffer.lock().await;
guard.to_bytes()
}
pub(crate) fn sandbox_type(&self) -> SandboxType {
self.sandbox_type
}
pub(super) fn failure_message(&self) -> Option<String> {
self.state_rx.borrow().failure_message.clone()
}
pub(super) async fn check_for_sandbox_denial(&self) -> Result<(), UnifiedExecError> {
let _ = tokio::time::timeout(
Duration::from_millis(20),
self.output.output_notify.notified(),
)
.await;
let aggregated = self.snapshot_output().await;
let aggregated_text = String::from_utf8_lossy(&aggregated);
self.check_for_sandbox_denial_with_text(aggregated_text.as_ref())
.await?;
Ok(())
}
pub(super) async fn check_for_sandbox_denial_with_text(
&self,
text: &str,
) -> Result<(), UnifiedExecError> {
let executor_reported_denial = self.state_rx.borrow().sandbox_denied;
let sandbox_type = self.sandbox_type();
if !self.has_exited() || (!executor_reported_denial && sandbox_type == SandboxType::None) {
return Ok(());
}
let exit_code = self.exit_code().unwrap_or(-1);
let exec_output = ExecToolCallOutput {
exit_code,
stderr: StreamOutput::new(text.to_string()),
aggregated_output: StreamOutput::new(text.to_string()),
..Default::default()
};
let likely_sandbox_denial = is_likely_sandbox_denied(sandbox_type, &exec_output);
if likely_sandbox_denial {
record_filesystem_sandbox_violation(sandbox_type, &exec_output);
}
if executor_reported_denial || likely_sandbox_denial {
let snippet = formatted_truncate_text(
text,
TruncationPolicy::Tokens(UNIFIED_EXEC_OUTPUT_MAX_TOKENS),
);
let message = if snippet.is_empty() {
format!("Process exited with code {exit_code}")
} else {
snippet
};
return Err(UnifiedExecError::sandbox_denied(message, exec_output));
}
Ok(())
}
pub(super) async fn from_spawned(
spawned: SpawnedPty,
sandbox_type: SandboxType,
spawn_lifecycle: SpawnLifecycleHandle,
) -> Result<Self, UnifiedExecError> {
let SpawnedPty {
session: process_handle,
stdout_rx,
stderr_rx,
mut exit_rx,
} = spawned;
let output_rx = codex_utils_pty::combine_output_receivers(stdout_rx, stderr_rx);
let mut managed = Self::new(
ProcessHandle::Local(Box::new(process_handle)),
sandbox_type,
Some(spawn_lifecycle),
);
managed.output_task = Some(Self::spawn_local_output_task(
output_rx,
managed.output_handles().clone(),
managed.output_tx.clone(),
));
match exit_rx.try_recv() {
Ok(exit_code) => {
managed.signal_exit(Some(exit_code));
managed.check_for_sandbox_denial().await?;
return Ok(managed);
}
Err(TryRecvError::Closed) => {
managed.signal_exit(/*exit_code*/ None);
managed.check_for_sandbox_denial().await?;
return Ok(managed);
}
Err(TryRecvError::Empty) => {}
}
if let Ok(exit_result) = tokio::time::timeout(EARLY_EXIT_GRACE_PERIOD, &mut exit_rx).await {
managed.signal_exit(exit_result.ok());
managed.check_for_sandbox_denial().await?;
return Ok(managed);
}
tokio::spawn({
let state_tx = managed.state_tx.clone();
let cancellation_token = managed.output.cancellation_token.clone();
async move {
let exit_code = exit_rx.await.ok();
let state = state_tx.borrow().clone();
let _ = state_tx.send_replace(state.exited(exit_code));
cancellation_token.cancel();
}
});
Ok(managed)
}
pub(super) async fn from_exec_server_started(
started: StartedExecProcess,
) -> Result<Self, UnifiedExecError> {
let process_handle = ProcessHandle::ExecServer(Arc::clone(&started.process));
// Older peers do not report this field. In that case, skip local
// classification rather than attributing a violation to a guessed backend.
let sandbox_type = started.sandbox_type.unwrap_or(SandboxType::None);
let mut managed = Self::new(process_handle, sandbox_type, /*spawn_lifecycle*/ None);
let output_handles = managed.output_handles().clone();
managed.output_task = Some(Self::spawn_exec_server_output_task(
started,
output_handles,
managed.output_tx.clone(),
managed.state_tx.clone(),
));
let mut state_rx = managed.state_rx.clone();
if tokio::time::timeout(EARLY_EXIT_GRACE_PERIOD, async {
loop {
let state = state_rx.borrow().clone();
if state.has_exited || state.failure_message.is_some() {
break;
}
if state_rx.changed().await.is_err() {
break;
}
}
})
.await
.is_ok()
{
managed.check_for_sandbox_denial().await?;
}
Ok(managed)
}
fn spawn_exec_server_output_task(
started: StartedExecProcess,
output_handles: OutputHandles,
output_tx: broadcast::Sender<Vec<u8>>,
state_tx: watch::Sender<ProcessState>,
) -> JoinHandle<()> {
let OutputHandles {
output_buffer,
output_notify,
output_closed,
output_closed_notify,
cancellation_token,
} = output_handles;
let process = started.process;
let mut events = process.subscribe_events();
tokio::spawn(async move {
let _output_task_guard = OutputTaskGuard {
output_closed: Arc::clone(&output_closed),
output_closed_notify: Arc::clone(&output_closed_notify),
};
let mut last_seq: u64 = 0;
loop {
let event = match events.recv().await {
Ok(event) => Some(event),
Err(broadcast::error::RecvError::Lagged(_)) => None,
Err(broadcast::error::RecvError::Closed) => {
let state = state_tx.borrow().clone();
let _ = state_tx.send_replace(
state.failed("exec-server process event stream closed".to_string()),
);
output_closed.store(true, Ordering::Release);
output_closed_notify.notify_waiters();
cancellation_token.cancel();
break;
}
};
let event_seq = event.as_ref().and_then(|event| match event {
ExecProcessEvent::Output(chunk) => Some(chunk.seq),
ExecProcessEvent::Exited { seq, .. } | ExecProcessEvent::Closed { seq } => {
Some(*seq)
}
ExecProcessEvent::Failed(_) => None,
});
let missing_sandbox_denial = matches!(
event.as_ref(),
Some(ExecProcessEvent::Exited {
sandbox_denied: None,
..
})
);
if event.is_none()
|| event_seq.is_some_and(|seq| seq > last_seq.saturating_add(1))
|| missing_sandbox_denial
{
let response = match process
.read(
Some(last_seq),
/*max_bytes*/ None,
/*wait_ms*/ Some(0),
)
.await
{
Ok(response) => response,
Err(err) => {
let state = state_tx.borrow().clone();
let _ = state_tx.send_replace(state.failed(err.to_string()));
output_closed.store(true, Ordering::Release);
output_closed_notify.notify_waiters();
cancellation_token.cancel();
break;
}
};
let ExecReadResponse {
chunks,
next_seq,
exited,
exit_code,
closed,
failure,
sandbox_denied,
} = response;
for chunk in chunks.into_iter().filter(|chunk| chunk.seq > last_seq) {
let bytes = chunk.chunk.into_inner();
let mut guard = output_buffer.lock().await;
guard.push_chunk(&bytes);
drop(guard);
let _ = output_tx.send(bytes);
output_notify.notify_waiters();
}
last_seq = last_seq.max(next_seq.saturating_sub(1));
if let Some(message) = failure {
let state = state_tx.borrow().clone();
let _ = state_tx.send_replace(state.failed(message));
output_closed.store(true, Ordering::Release);
output_closed_notify.notify_waiters();
cancellation_token.cancel();
break;
}
if sandbox_denied || exited {
let mut state = state_tx.borrow().clone();
state.sandbox_denied |= sandbox_denied;
let _ = state_tx.send_replace(if exited {
state.exited(exit_code)
} else {
state
});
}
if closed {
output_closed.store(true, Ordering::Release);
output_closed_notify.notify_waiters();
cancellation_token.cancel();
break;
}
continue;
}
let Some(event) = event else {
continue;
};
match event {
ExecProcessEvent::Output(chunk) => {
if chunk.seq <= last_seq {
continue;
}
last_seq = chunk.seq;
let bytes = chunk.chunk.into_inner();
let mut guard = output_buffer.lock().await;
guard.push_chunk(&bytes);
drop(guard);
let _ = output_tx.send(bytes);
output_notify.notify_waiters();
}
ExecProcessEvent::Exited {
seq,
exit_code,
sandbox_denied,
} => {
if seq <= last_seq {
continue;
}
last_seq = seq;
let mut state = state_tx.borrow().clone();
state.sandbox_denied |= sandbox_denied.unwrap_or(false);
let _ = state_tx.send_replace(state.exited(Some(exit_code)));
}
ExecProcessEvent::Closed { seq } => {
if seq <= last_seq {
continue;
}
output_closed.store(true, Ordering::Release);
output_closed_notify.notify_waiters();
cancellation_token.cancel();
break;
}
ExecProcessEvent::Failed(message) => {
let state = state_tx.borrow().clone();
let _ = state_tx.send_replace(state.failed(message));
output_closed.store(true, Ordering::Release);
output_closed_notify.notify_waiters();
cancellation_token.cancel();
break;
}
}
}
})
}
fn spawn_local_output_task(
mut receiver: tokio::sync::broadcast::Receiver<Vec<u8>>,
output_handles: OutputHandles,
output_tx: broadcast::Sender<Vec<u8>>,
) -> JoinHandle<()> {
let OutputHandles {
output_buffer,
output_notify,
output_closed,
output_closed_notify,
..
} = output_handles;
tokio::spawn(async move {
let _output_task_guard = OutputTaskGuard {
output_closed: Arc::clone(&output_closed),
output_closed_notify: Arc::clone(&output_closed_notify),
};
loop {
match receiver.recv().await {
Ok(chunk) => {
let mut guard = output_buffer.lock().await;
guard.push_chunk(&chunk);
drop(guard);
let _ = output_tx.send(chunk);
output_notify.notify_waiters();
}
Err(tokio::sync::broadcast::error::RecvError::Lagged(_)) => continue,
Err(tokio::sync::broadcast::error::RecvError::Closed) => {
output_closed.store(true, Ordering::Release);
output_closed_notify.notify_waiters();
break;
}
};
}
})
}
fn signal_exit(&self, exit_code: Option<i32>) {
let state = self.state_rx.borrow().clone();
let _ = self.state_tx.send_replace(state.exited(exit_code));
self.output.cancellation_token.cancel();
}
}
impl Drop for UnifiedExecProcess {
fn drop(&mut self) {
self.terminate();
}
}
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