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[proxmox-backup.git] / src / server / worker_task.rs
1 use std::collections::{HashMap, VecDeque};
2 use std::fs::File;
3 use std::io::{Read, Write, BufRead, BufReader};
4 use std::panic::UnwindSafe;
5 use std::sync::atomic::{AtomicBool, Ordering};
6 use std::sync::{Arc, Mutex};
7
8 use anyhow::{bail, format_err, Error};
9 use futures::*;
10 use lazy_static::lazy_static;
11 use serde_json::{json, Value};
12 use serde::{Serialize, Deserialize};
13 use tokio::sync::oneshot;
14
15 use proxmox::sys::linux::procfs;
16 use proxmox::try_block;
17 use proxmox::tools::fs::{create_path, open_file_locked, replace_file, CreateOptions};
18
19 use super::UPID;
20
21 use crate::buildcfg;
22 use crate::server;
23 use crate::tools::logrotate::{LogRotate, LogRotateFiles};
24 use crate::tools::{FileLogger, FileLogOptions};
25 use crate::api2::types::{Authid, TaskStateType};
26
27 macro_rules! taskdir {
28 ($subdir:expr) => (concat!(PROXMOX_BACKUP_LOG_DIR_M!(), "/tasks", $subdir))
29 }
30 pub const PROXMOX_BACKUP_TASK_DIR: &str = taskdir!("/");
31 pub const PROXMOX_BACKUP_TASK_LOCK_FN: &str = taskdir!("/.active.lock");
32 pub const PROXMOX_BACKUP_ACTIVE_TASK_FN: &str = taskdir!("/active");
33 pub const PROXMOX_BACKUP_INDEX_TASK_FN: &str = taskdir!("/index");
34 pub const PROXMOX_BACKUP_ARCHIVE_TASK_FN: &str = taskdir!("/archive");
35
36 lazy_static! {
37 static ref WORKER_TASK_LIST: Mutex<HashMap<usize, Arc<WorkerTask>>> = Mutex::new(HashMap::new());
38 }
39
40 /// checks if the task UPID refers to a worker from this process
41 fn is_local_worker(upid: &UPID) -> bool {
42 upid.pid == server::pid() && upid.pstart == server::pstart()
43 }
44
45 /// Test if the task is still running
46 pub async fn worker_is_active(upid: &UPID) -> Result<bool, Error> {
47 if is_local_worker(upid) {
48 return Ok(WORKER_TASK_LIST.lock().unwrap().contains_key(&upid.task_id));
49 }
50
51 if procfs::check_process_running_pstart(upid.pid, upid.pstart).is_none() {
52 return Ok(false);
53 }
54
55 let sock = server::ctrl_sock_from_pid(upid.pid);
56 let cmd = json!({
57 "command": "worker-task-status",
58 "args": {
59 "upid": upid.to_string(),
60 },
61 });
62 let status = super::send_command(sock, cmd).await?;
63
64 if let Some(active) = status.as_bool() {
65 Ok(active)
66 } else {
67 bail!("got unexpected result {:?} (expected bool)", status);
68 }
69 }
70
71 /// Test if the task is still running (fast but inaccurate implementation)
72 ///
73 /// If the task is spawned from a different process, we simply return if
74 /// that process is still running. This information is good enough to detect
75 /// stale tasks...
76 pub fn worker_is_active_local(upid: &UPID) -> bool {
77 if is_local_worker(upid) {
78 WORKER_TASK_LIST.lock().unwrap().contains_key(&upid.task_id)
79 } else {
80 procfs::check_process_running_pstart(upid.pid, upid.pstart).is_some()
81 }
82 }
83
84 pub fn register_task_control_commands(
85 commando_sock: &mut super::CommandoSocket,
86 ) -> Result<(), Error> {
87 fn get_upid(args: Option<&Value>) -> Result<UPID, Error> {
88 let args = if let Some(args) = args { args } else { bail!("missing args") };
89 let upid = match args.get("upid") {
90 Some(Value::String(upid)) => upid.parse::<UPID>()?,
91 None => bail!("no upid in args"),
92 _ => bail!("unable to parse upid"),
93 };
94 if !is_local_worker(&upid) {
95 bail!("upid does not belong to this process");
96 }
97 Ok(upid)
98 }
99
100 commando_sock.register_command("worker-task-abort".into(), move |args| {
101 let upid = get_upid(args)?;
102
103 if let Some(ref worker) = WORKER_TASK_LIST.lock().unwrap().get(&upid.task_id) {
104 worker.request_abort();
105 }
106 Ok(Value::Null)
107 })?;
108 commando_sock.register_command("worker-task-status".into(), move |args| {
109 let upid = get_upid(args)?;
110
111 let active = WORKER_TASK_LIST.lock().unwrap().contains_key(&upid.task_id);
112
113 Ok(active.into())
114 })?;
115
116 Ok(())
117 }
118
119 pub fn abort_worker_async(upid: UPID) {
120 tokio::spawn(async move {
121 if let Err(err) = abort_worker(upid).await {
122 eprintln!("abort worker failed - {}", err);
123 }
124 });
125 }
126
127 pub async fn abort_worker(upid: UPID) -> Result<(), Error> {
128
129 let sock = server::ctrl_sock_from_pid(upid.pid);
130 let cmd = json!({
131 "command": "worker-task-abort",
132 "args": {
133 "upid": upid.to_string(),
134 },
135 });
136 super::send_command(sock, cmd).map_ok(|_| ()).await
137 }
138
139 fn parse_worker_status_line(line: &str) -> Result<(String, UPID, Option<TaskState>), Error> {
140
141 let data = line.splitn(3, ' ').collect::<Vec<&str>>();
142
143 let len = data.len();
144
145 match len {
146 1 => Ok((data[0].to_owned(), data[0].parse::<UPID>()?, None)),
147 3 => {
148 let endtime = i64::from_str_radix(data[1], 16)?;
149 let state = TaskState::from_endtime_and_message(endtime, data[2])?;
150 Ok((data[0].to_owned(), data[0].parse::<UPID>()?, Some(state)))
151 }
152 _ => bail!("wrong number of components"),
153 }
154 }
155
156 /// Create task log directory with correct permissions
157 pub fn create_task_log_dirs() -> Result<(), Error> {
158
159 try_block!({
160 let backup_user = crate::backup::backup_user()?;
161 let opts = CreateOptions::new()
162 .owner(backup_user.uid)
163 .group(backup_user.gid);
164
165 create_path(buildcfg::PROXMOX_BACKUP_LOG_DIR, None, Some(opts.clone()))?;
166 create_path(PROXMOX_BACKUP_TASK_DIR, None, Some(opts.clone()))?;
167 create_path(buildcfg::PROXMOX_BACKUP_RUN_DIR, None, Some(opts))?;
168 Ok(())
169 }).map_err(|err: Error| format_err!("unable to create task log dir - {}", err))?;
170
171 Ok(())
172 }
173
174 /// Read endtime (time of last log line) and exitstatus from task log file
175 /// If there is not a single line with at valid datetime, we assume the
176 /// starttime to be the endtime
177 pub fn upid_read_status(upid: &UPID) -> Result<TaskState, Error> {
178
179 let mut status = TaskState::Unknown { endtime: upid.starttime };
180
181 let path = upid.log_path();
182
183 let mut file = File::open(path)?;
184
185 /// speedup - only read tail
186 use std::io::Seek;
187 use std::io::SeekFrom;
188 let _ = file.seek(SeekFrom::End(-8192)); // ignore errors
189
190 let mut data = Vec::with_capacity(8192);
191 file.read_to_end(&mut data)?;
192
193 // strip newlines at the end of the task logs
194 while data.last() == Some(&b'\n') {
195 data.pop();
196 }
197
198 let last_line = match data.iter().rposition(|c| *c == b'\n') {
199 Some(start) if data.len() > (start+1) => &data[start+1..],
200 Some(_) => &data, // should not happen, since we removed all trailing newlines
201 None => &data,
202 };
203
204 let last_line = std::str::from_utf8(last_line)
205 .map_err(|err| format_err!("upid_read_status: utf8 parse failed: {}", err))?;
206
207 let mut iter = last_line.splitn(2, ": ");
208 if let Some(time_str) = iter.next() {
209 if let Ok(endtime) = proxmox::tools::time::parse_rfc3339(time_str) {
210 // set the endtime even if we cannot parse the state
211 status = TaskState::Unknown { endtime };
212 if let Some(rest) = iter.next().and_then(|rest| rest.strip_prefix("TASK ")) {
213 if let Ok(state) = TaskState::from_endtime_and_message(endtime, rest) {
214 status = state;
215 }
216 }
217 }
218 }
219
220 Ok(status)
221 }
222
223 /// Task State
224 #[derive(Debug, PartialEq, Eq, Serialize, Deserialize)]
225 pub enum TaskState {
226 /// The Task ended with an undefined state
227 Unknown { endtime: i64 },
228 /// The Task ended and there were no errors or warnings
229 OK { endtime: i64 },
230 /// The Task had 'count' amount of warnings and no errors
231 Warning { count: u64, endtime: i64 },
232 /// The Task ended with the error described in 'message'
233 Error { message: String, endtime: i64 },
234 }
235
236 impl TaskState {
237 pub fn endtime(&self) -> i64 {
238 match *self {
239 TaskState::Unknown { endtime } => endtime,
240 TaskState::OK { endtime } => endtime,
241 TaskState::Warning { endtime, .. } => endtime,
242 TaskState::Error { endtime, .. } => endtime,
243 }
244 }
245
246 pub fn tasktype(&self) -> TaskStateType {
247 match self {
248 TaskState::OK { .. } => TaskStateType::OK,
249 TaskState::Unknown { .. } => TaskStateType::Unknown,
250 TaskState::Error { .. } => TaskStateType::Error,
251 TaskState::Warning { .. } => TaskStateType::Warning,
252 }
253 }
254
255 fn result_text(&self) -> String {
256 match self {
257 TaskState::Error { message, .. } => format!("TASK ERROR: {}", message),
258 other => format!("TASK {}", other),
259 }
260 }
261
262 fn from_endtime_and_message(endtime: i64, s: &str) -> Result<Self, Error> {
263 if s == "unknown" {
264 Ok(TaskState::Unknown { endtime })
265 } else if s == "OK" {
266 Ok(TaskState::OK { endtime })
267 } else if let Some(warnings) = s.strip_prefix("WARNINGS: ") {
268 let count: u64 = warnings.parse()?;
269 Ok(TaskState::Warning{ count, endtime })
270 } else if !s.is_empty() {
271 let message = if let Some(err) = s.strip_prefix("ERROR: ") { err } else { s }.to_string();
272 Ok(TaskState::Error{ message, endtime })
273 } else {
274 bail!("unable to parse Task Status '{}'", s);
275 }
276 }
277 }
278
279 impl std::cmp::PartialOrd for TaskState {
280 fn partial_cmp(&self, other: &Self) -> Option<std::cmp::Ordering> {
281 Some(self.endtime().cmp(&other.endtime()))
282 }
283 }
284
285 impl std::cmp::Ord for TaskState {
286 fn cmp(&self, other: &Self) -> std::cmp::Ordering {
287 self.endtime().cmp(&other.endtime())
288 }
289 }
290
291 impl std::fmt::Display for TaskState {
292 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
293 match self {
294 TaskState::Unknown { .. } => write!(f, "unknown"),
295 TaskState::OK { .. }=> write!(f, "OK"),
296 TaskState::Warning { count, .. } => write!(f, "WARNINGS: {}", count),
297 TaskState::Error { message, .. } => write!(f, "{}", message),
298 }
299 }
300 }
301
302 /// Task details including parsed UPID
303 ///
304 /// If there is no `state`, the task is still running.
305 #[derive(Debug)]
306 pub struct TaskListInfo {
307 /// The parsed UPID
308 pub upid: UPID,
309 /// UPID string representation
310 pub upid_str: String,
311 /// Task `(endtime, status)` if already finished
312 pub state: Option<TaskState>, // endtime, status
313 }
314
315 fn lock_task_list_files(exclusive: bool) -> Result<std::fs::File, Error> {
316 let backup_user = crate::backup::backup_user()?;
317
318 let lock = open_file_locked(PROXMOX_BACKUP_TASK_LOCK_FN, std::time::Duration::new(10, 0), exclusive)?;
319 nix::unistd::chown(PROXMOX_BACKUP_TASK_LOCK_FN, Some(backup_user.uid), Some(backup_user.gid))?;
320
321 Ok(lock)
322 }
323
324 /// checks if the Task Archive is bigger that 'size_threshold' bytes, and
325 /// rotates it if it is
326 pub fn rotate_task_log_archive(size_threshold: u64, compress: bool, max_files: Option<usize>) -> Result<bool, Error> {
327 let _lock = lock_task_list_files(true)?;
328
329 let mut logrotate = LogRotate::new(PROXMOX_BACKUP_ARCHIVE_TASK_FN, compress)
330 .ok_or_else(|| format_err!("could not get archive file names"))?;
331
332 logrotate.rotate(size_threshold, None, max_files)
333 }
334
335 // atomically read/update the task list, update status of finished tasks
336 // new_upid is added to the list when specified.
337 fn update_active_workers(new_upid: Option<&UPID>) -> Result<(), Error> {
338
339 let backup_user = crate::backup::backup_user()?;
340
341 let lock = lock_task_list_files(true)?;
342
343 // TODO remove with 1.x
344 let mut finish_list: Vec<TaskListInfo> = read_task_file_from_path(PROXMOX_BACKUP_INDEX_TASK_FN)?;
345 let had_index_file = !finish_list.is_empty();
346
347 // We use filter_map because one negative case wants to *move* the data into `finish_list`,
348 // clippy doesn't quite catch this!
349 #[allow(clippy::unnecessary_filter_map)]
350 let mut active_list: Vec<TaskListInfo> = read_task_file_from_path(PROXMOX_BACKUP_ACTIVE_TASK_FN)?
351 .into_iter()
352 .filter_map(|info| {
353 if info.state.is_some() {
354 // this can happen when the active file still includes finished tasks
355 finish_list.push(info);
356 return None;
357 }
358
359 if !worker_is_active_local(&info.upid) {
360 // println!("Detected stopped task '{}'", &info.upid_str);
361 let now = proxmox::tools::time::epoch_i64();
362 let status = upid_read_status(&info.upid).unwrap_or(TaskState::Unknown { endtime: now });
363 finish_list.push(TaskListInfo {
364 upid: info.upid,
365 upid_str: info.upid_str,
366 state: Some(status)
367 });
368 return None;
369 }
370
371 Some(info)
372 }).collect();
373
374 if let Some(upid) = new_upid {
375 active_list.push(TaskListInfo { upid: upid.clone(), upid_str: upid.to_string(), state: None });
376 }
377
378 let active_raw = render_task_list(&active_list);
379
380 replace_file(
381 PROXMOX_BACKUP_ACTIVE_TASK_FN,
382 active_raw.as_bytes(),
383 CreateOptions::new()
384 .owner(backup_user.uid)
385 .group(backup_user.gid),
386 )?;
387
388 finish_list.sort_unstable_by(|a, b| {
389 match (&a.state, &b.state) {
390 (Some(s1), Some(s2)) => s1.cmp(&s2),
391 (Some(_), None) => std::cmp::Ordering::Less,
392 (None, Some(_)) => std::cmp::Ordering::Greater,
393 _ => a.upid.starttime.cmp(&b.upid.starttime),
394 }
395 });
396
397 if !finish_list.is_empty() {
398 match std::fs::OpenOptions::new().append(true).create(true).open(PROXMOX_BACKUP_ARCHIVE_TASK_FN) {
399 Ok(mut writer) => {
400 for info in &finish_list {
401 writer.write_all(render_task_line(&info).as_bytes())?;
402 }
403 },
404 Err(err) => bail!("could not write task archive - {}", err),
405 }
406
407 nix::unistd::chown(PROXMOX_BACKUP_ARCHIVE_TASK_FN, Some(backup_user.uid), Some(backup_user.gid))?;
408 }
409
410 // TODO Remove with 1.x
411 // for compatibility, if we had an INDEX file, we do not need it anymore
412 if had_index_file {
413 let _ = nix::unistd::unlink(PROXMOX_BACKUP_INDEX_TASK_FN);
414 }
415
416 drop(lock);
417
418 Ok(())
419 }
420
421 fn render_task_line(info: &TaskListInfo) -> String {
422 let mut raw = String::new();
423 if let Some(status) = &info.state {
424 raw.push_str(&format!("{} {:08X} {}\n", info.upid_str, status.endtime(), status));
425 } else {
426 raw.push_str(&info.upid_str);
427 raw.push('\n');
428 }
429
430 raw
431 }
432
433 fn render_task_list(list: &[TaskListInfo]) -> String {
434 let mut raw = String::new();
435 for info in list {
436 raw.push_str(&render_task_line(&info));
437 }
438 raw
439 }
440
441 // note this is not locked, caller has to make sure it is
442 // this will skip (and log) lines that are not valid status lines
443 fn read_task_file<R: Read>(reader: R) -> Result<Vec<TaskListInfo>, Error>
444 {
445 let reader = BufReader::new(reader);
446 let mut list = Vec::new();
447 for line in reader.lines() {
448 let line = line?;
449 match parse_worker_status_line(&line) {
450 Ok((upid_str, upid, state)) => list.push(TaskListInfo {
451 upid_str,
452 upid,
453 state
454 }),
455 Err(err) => {
456 eprintln!("unable to parse worker status '{}' - {}", line, err);
457 continue;
458 }
459 };
460 }
461
462 Ok(list)
463 }
464
465 // note this is not locked, caller has to make sure it is
466 fn read_task_file_from_path<P>(path: P) -> Result<Vec<TaskListInfo>, Error>
467 where
468 P: AsRef<std::path::Path> + std::fmt::Debug,
469 {
470 let file = match File::open(&path) {
471 Ok(f) => f,
472 Err(err) if err.kind() == std::io::ErrorKind::NotFound => return Ok(Vec::new()),
473 Err(err) => bail!("unable to open task list {:?} - {}", path, err),
474 };
475
476 read_task_file(file)
477 }
478
479 pub struct TaskListInfoIterator {
480 list: VecDeque<TaskListInfo>,
481 end: bool,
482 archive: Option<LogRotateFiles>,
483 lock: Option<File>,
484 }
485
486 impl TaskListInfoIterator {
487 pub fn new(active_only: bool) -> Result<Self, Error> {
488 let (read_lock, active_list) = {
489 let lock = lock_task_list_files(false)?;
490 let active_list = read_task_file_from_path(PROXMOX_BACKUP_ACTIVE_TASK_FN)?;
491
492 let needs_update = active_list
493 .iter()
494 .any(|info| info.state.is_some() || !worker_is_active_local(&info.upid));
495
496 // TODO remove with 1.x
497 let index_exists = std::path::Path::new(PROXMOX_BACKUP_INDEX_TASK_FN).is_file();
498
499 if needs_update || index_exists {
500 drop(lock);
501 update_active_workers(None)?;
502 let lock = lock_task_list_files(false)?;
503 let active_list = read_task_file_from_path(PROXMOX_BACKUP_ACTIVE_TASK_FN)?;
504 (lock, active_list)
505 } else {
506 (lock, active_list)
507 }
508 };
509
510 let archive = if active_only {
511 None
512 } else {
513 let logrotate = LogRotate::new(PROXMOX_BACKUP_ARCHIVE_TASK_FN, true)
514 .ok_or_else(|| format_err!("could not get archive file names"))?;
515 Some(logrotate.files())
516 };
517
518 let lock = if active_only { None } else { Some(read_lock) };
519
520 Ok(Self {
521 list: active_list.into(),
522 end: active_only,
523 archive,
524 lock,
525 })
526 }
527 }
528
529 impl Iterator for TaskListInfoIterator {
530 type Item = Result<TaskListInfo, Error>;
531
532 fn next(&mut self) -> Option<Self::Item> {
533 loop {
534 if let Some(element) = self.list.pop_back() {
535 return Some(Ok(element));
536 } else if self.end {
537 return None;
538 } else {
539 if let Some(mut archive) = self.archive.take() {
540 if let Some(file) = archive.next() {
541 let list = match read_task_file(file) {
542 Ok(list) => list,
543 Err(err) => return Some(Err(err)),
544 };
545 self.list.append(&mut list.into());
546 self.archive = Some(archive);
547 continue;
548 }
549 }
550
551 self.end = true;
552 self.lock.take();
553 }
554 }
555 }
556 }
557
558 /// Launch long running worker tasks.
559 ///
560 /// A worker task can either be a whole thread, or a simply tokio
561 /// task/future. Each task can `log()` messages, which are stored
562 /// persistently to files. Task should poll the `abort_requested`
563 /// flag, and stop execution when requested.
564 #[derive(Debug)]
565 pub struct WorkerTask {
566 upid: UPID,
567 data: Mutex<WorkerTaskData>,
568 abort_requested: AtomicBool,
569 }
570
571 impl std::fmt::Display for WorkerTask {
572
573 fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result {
574 self.upid.fmt(f)
575 }
576 }
577
578 #[derive(Debug)]
579 struct WorkerTaskData {
580 logger: FileLogger,
581 progress: f64, // 0..1
582 warn_count: u64,
583 pub abort_listeners: Vec<oneshot::Sender<()>>,
584 }
585
586 impl WorkerTask {
587
588 pub fn new(worker_type: &str, worker_id: Option<String>, auth_id: Authid, to_stdout: bool) -> Result<Arc<Self>, Error> {
589 let upid = UPID::new(worker_type, worker_id, auth_id)?;
590 let task_id = upid.task_id;
591
592 let mut path = std::path::PathBuf::from(PROXMOX_BACKUP_TASK_DIR);
593
594 path.push(format!("{:02X}", upid.pstart & 255));
595
596 let backup_user = crate::backup::backup_user()?;
597
598 create_path(&path, None, Some(CreateOptions::new().owner(backup_user.uid).group(backup_user.gid)))?;
599
600 path.push(upid.to_string());
601
602 let logger_options = FileLogOptions {
603 to_stdout,
604 exclusive: true,
605 prefix_time: true,
606 read: true,
607 ..Default::default()
608 };
609 let logger = FileLogger::new(&path, logger_options)?;
610 nix::unistd::chown(&path, Some(backup_user.uid), Some(backup_user.gid))?;
611
612 let worker = Arc::new(Self {
613 upid: upid.clone(),
614 abort_requested: AtomicBool::new(false),
615 data: Mutex::new(WorkerTaskData {
616 logger,
617 progress: 0.0,
618 warn_count: 0,
619 abort_listeners: vec![],
620 }),
621 });
622
623 // scope to drop the lock again after inserting
624 {
625 let mut hash = WORKER_TASK_LIST.lock().unwrap();
626 hash.insert(task_id, worker.clone());
627 super::set_worker_count(hash.len());
628 }
629
630 update_active_workers(Some(&upid))?;
631
632 Ok(worker)
633 }
634
635 /// Spawn a new tokio task/future.
636 pub fn spawn<F, T>(
637 worker_type: &str,
638 worker_id: Option<String>,
639 auth_id: Authid,
640 to_stdout: bool,
641 f: F,
642 ) -> Result<String, Error>
643 where F: Send + 'static + FnOnce(Arc<WorkerTask>) -> T,
644 T: Send + 'static + Future<Output = Result<(), Error>>,
645 {
646 let worker = WorkerTask::new(worker_type, worker_id, auth_id, to_stdout)?;
647 let upid_str = worker.upid.to_string();
648 let f = f(worker.clone());
649 tokio::spawn(async move {
650 let result = f.await;
651 worker.log_result(&result);
652 });
653
654 Ok(upid_str)
655 }
656
657 /// Create a new worker thread.
658 pub fn new_thread<F>(
659 worker_type: &str,
660 worker_id: Option<String>,
661 auth_id: Authid,
662 to_stdout: bool,
663 f: F,
664 ) -> Result<String, Error>
665 where F: Send + UnwindSafe + 'static + FnOnce(Arc<WorkerTask>) -> Result<(), Error>
666 {
667 let worker = WorkerTask::new(worker_type, worker_id, auth_id, to_stdout)?;
668 let upid_str = worker.upid.to_string();
669
670 let _child = std::thread::Builder::new().name(upid_str.clone()).spawn(move || {
671 let worker1 = worker.clone();
672 let result = match std::panic::catch_unwind(move || f(worker1)) {
673 Ok(r) => r,
674 Err(panic) => {
675 match panic.downcast::<&str>() {
676 Ok(panic_msg) => {
677 Err(format_err!("worker panicked: {}", panic_msg))
678 }
679 Err(_) => {
680 Err(format_err!("worker panicked: unknown type."))
681 }
682 }
683 }
684 };
685
686 worker.log_result(&result);
687 });
688
689 Ok(upid_str)
690 }
691
692 /// create state from self and a result
693 pub fn create_state(&self, result: &Result<(), Error>) -> TaskState {
694 let warn_count = self.data.lock().unwrap().warn_count;
695
696 let endtime = proxmox::tools::time::epoch_i64();
697
698 if let Err(err) = result {
699 TaskState::Error { message: err.to_string(), endtime }
700 } else if warn_count > 0 {
701 TaskState::Warning { count: warn_count, endtime }
702 } else {
703 TaskState::OK { endtime }
704 }
705 }
706
707 /// Log task result, remove task from running list
708 pub fn log_result(&self, result: &Result<(), Error>) {
709 let state = self.create_state(result);
710 self.log(state.result_text());
711
712 WORKER_TASK_LIST.lock().unwrap().remove(&self.upid.task_id);
713 let _ = update_active_workers(None);
714 super::set_worker_count(WORKER_TASK_LIST.lock().unwrap().len());
715 }
716
717 /// Log a message.
718 pub fn log<S: AsRef<str>>(&self, msg: S) {
719 let mut data = self.data.lock().unwrap();
720 data.logger.log(msg);
721 }
722
723 /// Log a message as warning.
724 pub fn warn<S: AsRef<str>>(&self, msg: S) {
725 let mut data = self.data.lock().unwrap();
726 data.logger.log(format!("WARN: {}", msg.as_ref()));
727 data.warn_count += 1;
728 }
729
730 /// Set progress indicator
731 pub fn progress(&self, progress: f64) {
732 if progress >= 0.0 && progress <= 1.0 {
733 let mut data = self.data.lock().unwrap();
734 data.progress = progress;
735 } else {
736 // fixme: log!("task '{}': ignoring strange value for progress '{}'", self.upid, progress);
737 }
738 }
739
740 /// Request abort
741 pub fn request_abort(&self) {
742 eprintln!("set abort flag for worker {}", self.upid);
743
744 let prev_abort = self.abort_requested.swap(true, Ordering::SeqCst);
745 if !prev_abort { // log abort one time
746 self.log(format!("received abort request ..."));
747 }
748 // noitify listeners
749 let mut data = self.data.lock().unwrap();
750 loop {
751 match data.abort_listeners.pop() {
752 None => { break; },
753 Some(ch) => {
754 let _ = ch.send(()); // ignore errors here
755 },
756 }
757 }
758 }
759
760 /// Test if abort was requested.
761 pub fn abort_requested(&self) -> bool {
762 self.abort_requested.load(Ordering::SeqCst)
763 }
764
765 /// Fail if abort was requested.
766 pub fn fail_on_abort(&self) -> Result<(), Error> {
767 if self.abort_requested() {
768 bail!("abort requested - aborting task");
769 }
770 Ok(())
771 }
772
773 /// Get a future which resolves on task abort
774 pub fn abort_future(&self) -> oneshot::Receiver<()> {
775 let (tx, rx) = oneshot::channel::<()>();
776
777 let mut data = self.data.lock().unwrap();
778 if self.abort_requested() {
779 let _ = tx.send(());
780 } else {
781 data.abort_listeners.push(tx);
782 }
783 rx
784 }
785
786 pub fn upid(&self) -> &UPID {
787 &self.upid
788 }
789 }
790
791 impl crate::task::TaskState for WorkerTask {
792 fn check_abort(&self) -> Result<(), Error> {
793 self.fail_on_abort()
794 }
795
796 fn log(&self, level: log::Level, message: &std::fmt::Arguments) {
797 match level {
798 log::Level::Error => self.warn(&message.to_string()),
799 log::Level::Warn => self.warn(&message.to_string()),
800 log::Level::Info => self.log(&message.to_string()),
801 log::Level::Debug => self.log(&format!("DEBUG: {}", message)),
802 log::Level::Trace => self.log(&format!("TRACE: {}", message)),
803 }
804 }
805 }