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use std::path::Path;
use std::path::PathBuf;
use std::process::Stdio;
use std::time::Duration;
use anyhow::Context;
use anyhow::Result;
use anyhow::anyhow;
use serde::Deserialize;
use serde::Serialize;
use tokio::fs;
use tokio::process::Command;
use tokio::time::timeout;
/// New daemons own their packages, regardless of how the calling CLI was installed.
/// Preserve legacy launch state, including logs left after a daemon is stopped;
/// settings, installer selections, and lock files alone do not prove a prior launch.
pub(crate) fn package_root(codex_home: &Path) -> PathBuf {
let dedicated = codex_home.join("packages/app-server-daemon");
if !matches!(dedicated.join("current").symlink_metadata(),
Err(error) if error.kind() == std::io::ErrorKind::NotFound)
{
return dedicated;
}
let state = codex_home.join("app-server-daemon");
for (package, artifacts) in [
(
"app-server-daemon",
[
crate::DAEMON_PID_FILE_NAME,
"daemon.stderr.log",
crate::DAEMON_UPDATE_PID_FILE_NAME,
"daemon-updater.stderr.log",
],
),
(
"standalone",
[
crate::LEGACY_PID_FILE_NAME,
"app-server.stderr.log",
crate::LEGACY_UPDATE_PID_FILE_NAME,
"app-server-updater.stderr.log",
],
),
] {
if artifacts.iter().any(|name| {
!matches!(state.join(name).symlink_metadata(),
Err(error) if error.kind() == std::io::ErrorKind::NotFound)
}) {
return codex_home.join("packages").join(package);
}
}
dedicated
}
/// Resolve both packaged and legacy binaries without requiring a valid install.
pub(crate) fn managed_codex_bin(codex_home: &Path) -> PathBuf {
let root = package_root(codex_home);
let current = root.join("current");
let packaged = current.join("bin").join(managed_codex_file_name());
let legacy = current.join(managed_codex_file_name());
if packaged.is_file()
|| !legacy.is_file() && (cfg!(windows) || root.ends_with("app-server-daemon"))
{
packaged
} else {
legacy
}
}
/// Only latest-channel stable releases may run the public latest-version updater.
pub(crate) fn is_stable_standalone_release(codex_home: &Path, codex_bin: &Path) -> bool {
let standalone = package_root(codex_home);
let Ok(releases) = std::fs::canonicalize(standalone.join("releases")) else {
return false;
};
let Ok(release) = std::fs::canonicalize(standalone.join("current")) else {
return false;
};
if release.parent() != Some(releases.as_path()) {
return false;
}
let Some(release_name) = release.file_name().and_then(|name| name.to_str()) else {
return false;
};
// GNU packages can seed the new directory; retain legacy updater eligibility.
if standalone.ends_with("standalone") && release_name.ends_with("-gnu") {
return false;
}
let targets = [
"aarch64-apple-darwin",
"x86_64-apple-darwin",
"aarch64-unknown-linux-gnu",
"x86_64-unknown-linux-gnu",
"aarch64-unknown-linux-musl",
"x86_64-unknown-linux-musl",
"aarch64-pc-windows-msvc",
"x86_64-pc-windows-msvc",
];
let Some(version) = targets
.iter()
.find_map(|target| release_name.strip_suffix(&format!("-{target}")))
else {
return false;
};
let components: Vec<_> = version.split('.').collect();
components.len() == 3
&& components.iter().all(|component| {
!component.is_empty() && component.bytes().all(|byte| byte.is_ascii_digit())
})
&& std::fs::read_to_string(standalone.join("auto-update-version"))
.is_ok_and(|selected| selected == release_name)
&& std::fs::canonicalize(codex_bin).is_ok_and(|bin| bin.starts_with(&release))
}
/// Older managed binaries can serve app-server requests without owning an updater.
pub(crate) async fn supports_daemon_update_loop(codex_bin: &Path) -> bool {
supports_daemon_command(codex_bin, &["pid-update-loop", "--help"]).await
}
/// Probe an internal daemon command without running a long-lived process.
pub(crate) async fn supports_daemon_command(codex_bin: &Path, args: &[&str]) -> bool {
let mut command = Command::new(codex_bin);
#[cfg(windows)]
command.creation_flags(windows_sys::Win32::System::Threading::CREATE_NO_WINDOW);
timeout(
Duration::from_secs(5),
command
.args(["app-server", "daemon"])
.args(args)
.stdin(Stdio::null())
.stdout(Stdio::null())
.stderr(Stdio::null())
.kill_on_drop(true)
.status(),
)
.await
.is_ok_and(|result| result.is_ok_and(|status| status.success()))
}
pub(crate) async fn resolved_managed_codex_bin(codex_bin: &Path) -> Result<PathBuf> {
fs::canonicalize(codex_bin).await.with_context(|| {
format!(
"failed to resolve managed Codex binary {}",
codex_bin.display()
)
})
}
pub(crate) async fn managed_codex_version(codex_bin: &Path) -> Result<String> {
let mut command = Command::new(codex_bin);
#[cfg(windows)]
command.creation_flags(windows_sys::Win32::System::Threading::CREATE_NO_WINDOW);
let output = command
.arg("--version")
.kill_on_drop(true)
.output()
.await
.with_context(|| {
format!(
"failed to invoke managed Codex binary {}",
codex_bin.display()
)
})?;
if !output.status.success() {
return Err(anyhow!(
"managed Codex binary {} exited with status {}",
codex_bin.display(),
output.status
));
}
let stdout = String::from_utf8(output.stdout).with_context(|| {
format!(
"managed Codex version was not utf-8: {}",
codex_bin.display()
)
})?;
parse_codex_version(&stdout)
}
#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
pub(crate) struct ExecutableIdentity {
digest: [u8; 32],
}
pub(crate) async fn executable_identity(executable: &Path) -> Result<ExecutableIdentity> {
let bytes = fs::read(executable)
.await
.with_context(|| format!("failed to read executable {}", executable.display()))?;
Ok(executable_identity_from_bytes(&bytes))
}
pub(crate) fn executable_identity_from_bytes(bytes: &[u8]) -> ExecutableIdentity {
ExecutableIdentity {
digest: *blake3::hash(bytes).as_bytes(),
}
}
fn managed_codex_file_name() -> &'static str {
if cfg!(windows) { "codex.exe" } else { "codex" }
}
fn parse_codex_version(output: &str) -> Result<String> {
let version = output
.split_whitespace()
.nth(1)
.filter(|version| !version.is_empty())
.ok_or_else(|| anyhow!("managed Codex version output was malformed"))?;
Ok(version.to_string())
}
#[cfg(test)]
#[path = "managed_install_tests.rs"]
mod tests;
#[cfg(test)]
#[path = "managed_install_path_tests.rs"]
mod path_tests;
|