proxmox-rest-server: improve docs
And renames abort_worker_async to abort_worker_nowait (avoid confusion, because the function itself is not async).
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@ -102,7 +102,7 @@ where
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Ok(task)
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}
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/// Send a command to the specified socket
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pub async fn send_command<P, T>(path: P, params: &T) -> Result<Value, Error>
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where
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P: AsRef<Path>,
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@ -113,6 +113,7 @@ where
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send_raw_command(path.as_ref(), &command_string).await
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}
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/// Send a raw command (string) to the specified socket
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pub async fn send_raw_command<P>(path: P, command_string: &str) -> Result<Value, Error>
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where
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P: AsRef<Path>,
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@ -146,11 +147,12 @@ where
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}
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}
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/// A callback for a specific commando socket.
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pub type CommandoSocketFn = Box<(dyn Fn(Option<&Value>) -> Result<Value, Error> + Send + Sync + 'static)>;
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// A callback for a specific commando socket.
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type CommandoSocketFn = Box<(dyn Fn(Option<&Value>) -> Result<Value, Error> + Send + Sync + 'static)>;
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/// Tooling to get a single control command socket where one can register multiple commands
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/// dynamically.
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/// Tooling to get a single control command socket where one can
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/// register multiple commands dynamically.
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///
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/// You need to call `spawn()` to make the socket active.
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pub struct CommandoSocket {
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socket: PathBuf,
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@ -40,6 +40,7 @@ pub use worker_task::*;
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mod h2service;
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pub use h2service::*;
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/// Authentification Error
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pub enum AuthError {
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Generic(Error),
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NoData,
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@ -51,7 +52,12 @@ impl From<Error> for AuthError {
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}
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}
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/// User Authentification trait
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pub trait ApiAuth {
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/// Extract user credentials from headers and check them.
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///
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/// If credenthials are valid, returns the username and a
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/// [UserInformation] object to query additional user data.
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fn check_auth(
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&self,
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headers: &http::HeaderMap,
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@ -64,47 +70,64 @@ lazy_static::lazy_static!{
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static ref PSTART: u64 = PidStat::read_from_pid(Pid::from_raw(*PID)).unwrap().starttime;
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}
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/// Retruns the current process ID (see [libc::getpid])
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///
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/// The value is cached at startup (so it is invalid after a fork)
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pub fn pid() -> i32 {
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*PID
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}
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/// Returns the starttime of the process (see [PidStat])
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///
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/// The value is cached at startup (so it is invalid after a fork)
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pub fn pstart() -> u64 {
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*PSTART
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}
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/// Helper to write the PID into a file
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pub fn write_pid(pid_fn: &str) -> Result<(), Error> {
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let pid_str = format!("{}\n", *PID);
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proxmox::tools::fs::replace_file(pid_fn, pid_str.as_bytes(), CreateOptions::new())
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}
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/// Helper to read the PID from a file
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pub fn read_pid(pid_fn: &str) -> Result<i32, Error> {
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let pid = proxmox::tools::fs::file_get_contents(pid_fn)?;
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let pid = std::str::from_utf8(&pid)?.trim();
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pid.parse().map_err(|err| format_err!("could not parse pid - {}", err))
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}
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/// Returns the control socket path for a specific process ID.
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///
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/// Note: The control socket always uses @/run/proxmox-backup/ as
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/// prefix for historic reason. This does not matter because the
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/// generated path is unique for each ``pid`` anyways.
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pub fn ctrl_sock_from_pid(pid: i32) -> String {
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// Note: The control socket always uses @/run/proxmox-backup/ as prefix
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// for historc reason.
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format!("\0{}/control-{}.sock", "/run/proxmox-backup", pid)
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}
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/// Returns the control socket path for this server.
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pub fn our_ctrl_sock() -> String {
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ctrl_sock_from_pid(*PID)
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}
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static SHUTDOWN_REQUESTED: AtomicBool = AtomicBool::new(false);
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/// Request a server shutdown (usually called from [catch_shutdown_signal])
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pub fn request_shutdown() {
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SHUTDOWN_REQUESTED.store(true, Ordering::SeqCst);
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crate::server_shutdown();
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}
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/// Returns true if there was a shutdown request.
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#[inline(always)]
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pub fn shutdown_requested() -> bool {
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SHUTDOWN_REQUESTED.load(Ordering::SeqCst)
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}
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/// Raise an error if there was a shutdown request.
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pub fn fail_on_shutdown() -> Result<(), Error> {
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if shutdown_requested() {
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bail!("Server shutdown requested - aborting task");
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@ -8,6 +8,8 @@ use tokio::signal::unix::{signal, SignalKind};
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use pbs_tools::broadcast_future::BroadcastData;
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use crate::request_shutdown;
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#[derive(PartialEq, Copy, Clone, Debug)]
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enum ServerMode {
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Normal,
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@ -35,6 +37,8 @@ lazy_static! {
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}
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/// Listen to ``SIGINT`` for server shutdown
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///
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/// This calls [request_shutdown] when receiving the signal.
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pub fn catch_shutdown_signal() -> Result<(), Error> {
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let mut stream = signal(SignalKind::interrupt())?;
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@ -43,7 +47,7 @@ pub fn catch_shutdown_signal() -> Result<(), Error> {
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while stream.recv().await.is_some() {
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log::info!("got shutdown request (SIGINT)");
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SERVER_STATE.lock().unwrap().reload_request = false;
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crate::request_shutdown();
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request_shutdown();
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}
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}.boxed();
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@ -56,6 +60,9 @@ pub fn catch_shutdown_signal() -> Result<(), Error> {
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}
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/// Listen to ``SIGHUP`` for server reload
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///
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/// This calls [request_shutdown] when receiving the signal, and tries
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/// to restart the server.
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pub fn catch_reload_signal() -> Result<(), Error> {
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let mut stream = signal(SignalKind::hangup())?;
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@ -76,13 +83,14 @@ pub fn catch_reload_signal() -> Result<(), Error> {
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Ok(())
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}
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pub fn is_reload_request() -> bool {
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pub(crate) fn is_reload_request() -> bool {
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let data = SERVER_STATE.lock().unwrap();
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data.mode == ServerMode::Shutdown && data.reload_request
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}
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pub fn server_shutdown() {
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pub(crate) fn server_shutdown() {
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let mut data = SERVER_STATE.lock().unwrap();
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log::info!("request_shutdown");
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@ -96,6 +104,7 @@ pub fn server_shutdown() {
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check_last_worker();
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}
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/// Future to signal server shutdown
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pub fn shutdown_future() -> impl Future<Output = ()> {
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let mut data = SERVER_STATE.lock().unwrap();
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data
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@ -104,18 +113,19 @@ pub fn shutdown_future() -> impl Future<Output = ()> {
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.map(|_| ())
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}
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/// Future to signal when last worker task finished
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pub fn last_worker_future() -> impl Future<Output = Result<(), Error>> {
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let mut data = SERVER_STATE.lock().unwrap();
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data.last_worker_listeners.listen()
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}
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pub fn set_worker_count(count: usize) {
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pub(crate) fn set_worker_count(count: usize) {
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SERVER_STATE.lock().unwrap().worker_count = count;
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check_last_worker();
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}
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pub fn check_last_worker() {
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pub(crate) fn check_last_worker() {
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let mut data = SERVER_STATE.lock().unwrap();
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if !(data.mode == ServerMode::Shutdown && data.worker_count == 0 && data.internal_task_count == 0) { return; }
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@ -324,6 +324,14 @@ pub fn worker_is_active_local(upid: &UPID) -> bool {
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}
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}
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/// Register task control command on a [CommandoSocket].
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///
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/// This create two commands:
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///
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/// * ``worker-task-abort <UPID>``: calls [abort_local_worker]
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///
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/// * ``worker-task-status <UPID>``: return true of false, depending on
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/// whether the worker is running or stopped.
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pub fn register_task_control_commands(
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commando_sock: &mut CommandoSocket,
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) -> Result<(), Error> {
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@ -358,14 +366,20 @@ pub fn register_task_control_commands(
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Ok(())
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}
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pub fn abort_worker_async(upid: UPID) {
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/// Try to abort a worker task, but do no wait
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///
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/// Errors (if any) are simply logged.
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pub fn abort_worker_nowait(upid: UPID) {
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tokio::spawn(async move {
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if let Err(err) = abort_worker(upid).await {
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eprintln!("abort worker failed - {}", err);
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log::error!("abort worker task failed - {}", err);
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}
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});
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}
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/// Abort a worker task
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///
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/// By sending ``worker-task-abort`` to the control socket.
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pub async fn abort_worker(upid: UPID) -> Result<(), Error> {
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let sock = crate::ctrl_sock_from_pid(upid.pid);
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@ -513,7 +527,7 @@ fn read_task_file<R: Read>(reader: R) -> Result<Vec<TaskListInfo>, Error>
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state
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}),
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Err(err) => {
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eprintln!("unable to parse worker status '{}' - {}", line, err);
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log::warn!("unable to parse worker status '{}' - {}", line, err);
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continue;
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}
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};
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@ -536,6 +550,7 @@ where
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read_task_file(file)
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}
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/// Iterate over existing/active worker tasks
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pub struct TaskListInfoIterator {
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list: VecDeque<TaskListInfo>,
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end: bool,
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}
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impl TaskListInfoIterator {
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/// Creates a new iterator instance.
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pub fn new(active_only: bool) -> Result<Self, Error> {
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let setup = worker_task_setup()?;
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@ -811,8 +827,6 @@ impl WorkerTask {
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/// Request abort
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pub fn request_abort(&self) {
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eprintln!("set abort flag for worker {}", self.upid);
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let prev_abort = self.abort_requested.swap(true, Ordering::SeqCst);
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if !prev_abort { // log abort one time
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self.log_message(format!("received abort request ..."));
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@ -374,7 +374,7 @@ fn stop_task(
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user_info.check_privs(&auth_id, &["system", "tasks"], PRIV_SYS_MODIFY, false)?;
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}
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proxmox_rest_server::abort_worker_async(upid);
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proxmox_rest_server::abort_worker_nowait(upid);
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Ok(Value::Null)
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}
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@ -95,7 +95,7 @@ fn worker_task_abort() -> Result<(), Error> {
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}
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Ok(wid) => {
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println!("WORKER: {}", wid);
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proxmox_rest_server::abort_worker_async(wid.parse::<UPID>().unwrap());
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proxmox_rest_server::abort_worker_nowait(wid.parse::<UPID>().unwrap());
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proxmox_rest_server::wait_for_local_worker(&wid).await.unwrap();
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}
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}
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