magi/queue.rs
1//! The task queue: what magi should do next, and who asked for it.
2//!
3//! The queue is what lets magi run unattended. `magi serve` takes the next
4//! task, runs the graph on it, records the outcome, and takes the next one.
5//!
6//! It is also the reason an agent can ask for work. `magi task add` is the
7//! whole interface, and it is the same command whether a human types it at a
8//! prompt, a phone posts it through the web UI, or an implementer inside a run
9//! shells out to it because it noticed something worth doing but out of scope.
10//! magi's CLI is the operating surface for both kinds of user; the queue is
11//! where their intentions meet.
12//!
13//! One task is one JSON file under [`Queue`]'s root. Files rather than a
14//! database because the operator has to be able to read, edit, and delete the
15//! backlog with the tools already on the machine, and because a crashed daemon
16//! must leave a queue the next one can pick up without recovery ceremony.
17//!
18//! # Shape
19//!
20//! [`Task`] is data plus *pure* state transitions - [`Task::fail`] decides
21//! whether an attempt was the last one, and touches no disk. [`Queue`] owns all
22//! I/O and is constructed with its root, so a test drives a real queue in a
23//! temp directory without setting a process-global home. Splitting them this
24//! way is why the retry policy below can be asserted directly.
25//!
26//! # Bounded by construction
27//!
28//! An autonomous loop that retries forever is a way to spend money on a task
29//! that cannot succeed. Every claim increments [`Task::attempts`]; a task that
30//! has burned its attempts becomes [`TaskStatus::Held`] and waits for a human
31//! rather than for another agent.
32
33use std::path::{Path, PathBuf};
34
35use anyhow::{Context, Result, bail};
36use jiff::Timestamp;
37use serde::{Deserialize, Serialize};
38
39use crate::ask::Questions;
40
41/// On-disk format for a queued task. Bumped when a field's meaning changes.
42///
43/// 4: added [`Task::blocked_from`], the status a task had the moment it
44/// became [`TaskStatus::Blocked`], so [`Task::unblock`] restores it instead
45/// of always landing on [`TaskStatus::Queued`]. Without it, a task a human
46/// or `crate::triage` had deliberately left [`TaskStatus::Held`] — machine
47/// or manual — would lose that the instant `crate::conduct` blocked it on a
48/// follow-up question, and come back `Queued` the moment the question was
49/// answered, regardless of what the answer said: exactly the loop where a
50/// task the operator told to stay held instead re-enters the competition
51/// queue every time someone answers a question about it. `#[serde(default)]`
52/// so an older record reads as `None`; [`Task::unblock`] then falls back to
53/// inferring `Held` from surviving hold evidence ([`Task::hold_reason`] /
54/// [`Task::hold_source`], never cleared by [`Task::block`]) rather than
55/// guessing `Queued` outright — see [`Task::unblock`]'s own doc.
56///
57/// 3: added [`HoldSource`] so conductor recovery cannot release a hold an
58/// operator deliberately placed. Old records default to `None` and are
59/// protected as operator-held until an explicit release; the safe direction
60/// when their author was never recorded.
61///
62/// 2: added [`TaskStatus::Blocked`], [`Task::blocked_by`] and
63/// [`Task::block_reason`] (`crate::conduct`'s decisions) and
64/// [`Task::answers`] (operator answers carried forward to the next
65/// conductor prompt and the next run's instruction). All three are
66/// `#[serde(default)]`, so [`read_path`] accepts anything up to and
67/// including this schema rather than only an exact match — a task written
68/// by a build that only knew about schema 1 has nothing to say about
69/// blocking or answers, and defaulting those fields is exactly as good a
70/// reading as a value that build never had a chance to write.
71pub const SCHEMA: u32 = 4;
72
73/// Who placed the current hold.
74#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
75#[serde(rename_all = "lowercase")]
76pub enum HoldSource {
77 /// An operator used the CLI or web UI.
78 Manual,
79 /// The daemon or conductor placed the hold as part of its own recovery.
80 Machine,
81}
82
83impl HoldSource {
84 /// Short human-facing label for reports and the CLI.
85 pub fn label(self) -> &'static str {
86 match self {
87 Self::Manual => "manual",
88 Self::Machine => "machine",
89 }
90 }
91}
92
93/// Where a task came from. Recorded because "who asked for this" is the first
94/// question about an autonomous run, and the answer is not recoverable later.
95#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
96#[serde(tag = "kind", rename_all = "lowercase")]
97pub enum Source {
98 /// A person, at a terminal or through the web UI.
99 Human,
100 /// An agent inside a run, via `magi task add`. Both ids are recorded so a
101 /// task can be traced back to the exact seat that asked for it.
102 Agent {
103 /// Run the asking agent belonged to.
104 run: String,
105 /// Node it was working in, e.g. `implement` or `review`.
106 node: String,
107 },
108 /// A GitHub issue, imported by number.
109 Issue {
110 /// Issue number.
111 number: u64,
112 /// `owner/repo`, as `gh` reports it.
113 repo: String,
114 },
115}
116
117impl Source {
118 /// Short human-facing label, for lists and the web UI.
119 pub fn label(&self) -> String {
120 match self {
121 Self::Human => "human".to_owned(),
122 Self::Agent { run, node } => format!("{node}@{}", short(run)),
123 Self::Issue { number, .. } => format!("issue #{number}"),
124 }
125 }
126}
127
128/// Where a task is in its life.
129#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
130#[serde(rename_all = "lowercase")]
131pub enum TaskStatus {
132 /// Waiting to be claimed.
133 Queued,
134 /// Claimed by a daemon; a run is in flight.
135 Running,
136 /// A run finished and its gate passed.
137 Done,
138 /// A run finished without passing, and attempts remain.
139 Failed,
140 /// Out of attempts, or held by hand. The loop will not pick it up.
141 Held,
142 /// Waiting on another task or an unanswered question. See
143 /// [`Task::blocked_by`]. Set and cleared by `crate::conduct` and
144 /// `crate::daemon`'s deterministic resolver, never by hand.
145 Blocked,
146}
147
148impl TaskStatus {
149 /// Is this task eligible for a daemon to claim?
150 pub fn runnable(self) -> bool {
151 matches!(self, Self::Queued | Self::Failed)
152 }
153
154 /// Lowercase name, as it appears on disk and in the API.
155 pub fn as_str(self) -> &'static str {
156 match self {
157 Self::Queued => "queued",
158 Self::Running => "running",
159 Self::Done => "done",
160 Self::Failed => "failed",
161 Self::Held => "held",
162 Self::Blocked => "blocked",
163 }
164 }
165}
166
167/// One unit of work.
168#[derive(Debug, Clone, Serialize, Deserialize)]
169#[serde(deny_unknown_fields)]
170pub struct Task {
171 /// On-disk format version.
172 pub schema: u32,
173 /// Task id, e.g. `20260902-140501-a1b2`.
174 pub id: String,
175 /// One line, for lists and notifications.
176 pub title: String,
177 /// The task itself, handed to the graph verbatim.
178 pub instruction: String,
179 /// Repository to work in.
180 pub repo: PathBuf,
181 /// Who asked.
182 pub source: Source,
183 /// Higher runs first; ties break oldest-first so nothing starves.
184 #[serde(default)]
185 pub priority: i32,
186 /// Run this task alone: one implementer, no panel of judges to convince.
187 ///
188 /// `#[serde(default)]` so a queue file written before this field existed
189 /// still reads, as `false` - the ordinary multi-candidate competition,
190 /// unchanged. A task set to `solo` still runs the whole graph; only the
191 /// candidate count the daemon builds it with changes, and
192 /// [`crate::graph::Runner`] already collapses a single-candidate run to
193 /// implement → review → gate → merge on its own (see
194 /// [`crate::graph::Runner::review`]'s doc), so nothing about judging,
195 /// deliberation or voting had to change to support this.
196 #[serde(default)]
197 pub solo: bool,
198 /// Current state.
199 pub status: TaskStatus,
200 /// How many times this task has been claimed.
201 #[serde(default)]
202 pub attempts: usize,
203 /// Runs this task has produced, oldest first.
204 #[serde(default)]
205 pub runs: Vec<String>,
206 /// Why the last attempt did not land.
207 #[serde(default)]
208 pub last_error: Option<String>,
209 /// What a human hold is waiting on.
210 ///
211 /// `None` covers both the ordinary cases: a hold the loop makes itself
212 /// (out of attempts, or the disk gate closed) explains itself through
213 /// [`Task::last_error`] instead, and a human hold nobody bothered to
214 /// explain is still a valid hold. The queue has no way to express a
215 /// dependency between two tasks, so on the occasions a hold really is
216 /// "wait for that other task first", this is the only place that reason
217 /// survives - see [`Task::hold_manual`] and [`Task::release`].
218 ///
219 /// `#[serde(default)]` so a queue file written before this field existed
220 /// still reads, with no reason recorded rather than a parse error.
221 #[serde(default)]
222 pub hold_reason: Option<String>,
223 /// Who placed [`Task::hold_reason`]. `None` is a compatible old record;
224 /// see [`Task::operator_held`] for its deliberately conservative meaning.
225 #[serde(default)]
226 pub hold_source: Option<HoldSource>,
227 /// Diagnostic detail excerpted from the run that led to a hold - what a
228 /// human would have found opening `artifacts/` by hand, not the one-line
229 /// reason in [`Task::last_error`]. Set only when a run's own attempts are
230 /// exhausted and the task becomes [`TaskStatus::Held`]; `daemon` computes
231 /// it from the run's own record, since this module has no notion of a
232 /// run's internals. Bounded in length by the writer - see
233 /// `daemon::diagnostic` - so a verbose run cannot make this file grow
234 /// without limit.
235 ///
236 /// `#[serde(default)]` so a queue file written before this field existed
237 /// still reads, with no diagnostic recorded rather than a parse error.
238 #[serde(default)]
239 pub diagnostic: Option<String>,
240 /// What this task is waiting on: other task ids, unanswered
241 /// `crate::ask::Question` ids, or both. Non-empty exactly when
242 /// [`TaskStatus::Blocked`]; emptying it — see [`Task::unblock`] — is what
243 /// puts the task back at [`TaskStatus::Queued`].
244 ///
245 /// Set by `crate::conduct`'s decisions and cleared deterministically by
246 /// `crate::daemon` as each dependency resolves, never by a person. Never
247 /// `#[serde(default)]` is skipped: a queue file from before this field
248 /// existed has nothing to report here, and an empty list is exactly that.
249 #[serde(default)]
250 pub blocked_by: Vec<String>,
251 /// One line explaining the current [`Task::blocked_by`], written by
252 /// `crate::conduct`. Cleared whenever `blocked_by` empties.
253 #[serde(default)]
254 pub block_reason: Option<String>,
255 /// The status this task had the moment [`Task::block`] most recently
256 /// moved it to [`TaskStatus::Blocked`] — what [`Task::unblock`] restores
257 /// once nothing is left in `blocked_by`, instead of always landing on
258 /// [`TaskStatus::Queued`]. See [`SCHEMA`]'s doc for schema 4 on why this
259 /// exists: an answer to a question `crate::conduct` filed about a
260 /// [`TaskStatus::Held`] task must not itself be what puts the task back
261 /// in the competition queue.
262 ///
263 /// `#[serde(default)]` so a queue file written before this field existed
264 /// reads as `None`; [`Task::unblock`] treats that the same as a task
265 /// blocked straight from `Queued`, unless surviving hold evidence says
266 /// otherwise.
267 #[serde(default)]
268 pub blocked_from: Option<TaskStatus>,
269 /// Questions `crate::conduct` asked about this task that the operator has
270 /// since answered, oldest first — what was asked, and what they said.
271 ///
272 /// A blocking question's id leaves [`Task::blocked_by`] the moment
273 /// [`crate::ask::QuestionStatus::Answered`] is observed, but the id alone
274 /// tells nobody what was decided. This is what carries the answer's
275 /// *content* forward: into the next conductor prompt for this task, and
276 /// into the instruction handed to the next run — see `crate::daemon`'s
277 /// deterministic blocker resolution. Kept for the task's whole life, the
278 /// same as [`Task::runs`]: a release resets attempts, not evidence.
279 #[serde(default)]
280 pub answers: Vec<AnsweredQuestion>,
281 /// Set by `crate::conduct` when it chooses `Review` recovery for a task
282 /// whose branch survived a blocked run: the branch to reopen with
283 /// `crate::graph::Runner::review` instead of competing from scratch.
284 ///
285 /// Requeues the task the same way [`Task::release`] does, so it is
286 /// picked up by the ordinary loop; `crate::daemon` reads this field once,
287 /// when it actually starts the run, and clears it either way — consumed
288 /// on success, dropped if the branch no longer exists by then. Never set
289 /// from the conductor's own words: `crate::daemon` derives the branch
290 /// name itself from the task's last run, so a hallucinated branch can
291 /// never reach here.
292 #[serde(default)]
293 pub review_branch: Option<String>,
294 /// A release deliberately starts a new competition instead of resuming
295 /// the prior run. History remains as evidence in `runs`.
296 #[serde(default)]
297 pub fresh_start: bool,
298 /// Marked by an operator (`magi task interrupt`) to ask `magi serve` to
299 /// run this one ahead of whatever it already has in flight, once
300 /// `[daemon] pause_for_interrupts` is on - see
301 /// `crate::daemon::advance_interrupt`. Never set by the loop itself, and
302 /// deliberately a different operation from [`Task::set_priority`]: a
303 /// priority only reorders the queue a claim has not reached yet, while
304 /// this asks a run already in flight to park at its next safe boundary
305 /// and step aside. `#[serde(default)]` so a queue file written before
306 /// this field existed still reads, as `false` - no task interrupts
307 /// anything unless asked to, exactly as before.
308 #[serde(default)]
309 pub interrupt: bool,
310 /// When the task was filed.
311 pub created_at: Timestamp,
312 /// Last change to this file.
313 pub updated_at: Timestamp,
314}
315
316/// One question `crate::conduct` asked about a task, and what the operator
317/// said back. See [`Task::answers`].
318#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
319pub struct AnsweredQuestion {
320 /// The question as asked, e.g. [`crate::ask::Question::summary`].
321 pub question: String,
322 /// What the operator answered.
323 pub answer: String,
324}
325
326impl Task {
327 /// File a new task. Persist it with [`Queue::put`].
328 pub fn new(title: String, instruction: String, repo: PathBuf, source: Source) -> Self {
329 let now = Timestamp::now();
330 Self {
331 schema: SCHEMA,
332 id: new_id(),
333 title,
334 instruction,
335 repo,
336 source,
337 priority: 0,
338 solo: false,
339 status: TaskStatus::Queued,
340 attempts: 0,
341 runs: Vec::new(),
342 last_error: None,
343 hold_reason: None,
344 hold_source: None,
345 diagnostic: None,
346 blocked_by: Vec::new(),
347 block_reason: None,
348 blocked_from: None,
349 answers: Vec::new(),
350 review_branch: None,
351 fresh_start: false,
352 interrupt: false,
353 created_at: now,
354 updated_at: now,
355 }
356 }
357
358 /// Short form used in reports, matching a run's short id.
359 pub fn short(&self) -> &str {
360 short(&self.id)
361 }
362
363 /// Record that a run has started for this task.
364 ///
365 /// Clears [`Task::interrupt`]: a mark to run ahead of whatever else is
366 /// in flight is fulfilled the moment this task actually gets its turn,
367 /// dispatched same as any other. Without this, a task whose run fails
368 /// and requeues - still `runnable`, still carrying the mark from its
369 /// first attempt - would keep re-triggering `crate::daemon`'s interrupt
370 /// scheduler and re-parking whatever it interrupted on every later
371 /// boundary, for as long as its attempts hold out, instead of the
372 /// one-shot "let this go next" the mark is meant to be.
373 pub fn start(&mut self, run: String) {
374 self.status = TaskStatus::Running;
375 self.attempts += 1;
376 self.runs.push(run);
377 self.last_error = None;
378 self.fresh_start = false;
379 self.interrupt = false;
380 }
381
382 /// Record a successful run.
383 ///
384 /// Both `magi task done` and `POST /api/queue/{id}/done` can close a held
385 /// *or blocked* task directly, with no release in between, so this clears
386 /// `hold_reason` and `blocked_by`/`block_reason` the same way
387 /// [`Task::release`] does. Otherwise a task held for "waiting on 3ed9", or
388 /// blocked on a dependency that never actually finished, and then closed
389 /// as done without ever being released would still read as waiting on
390 /// something in `magi task show` and on its card, after it no longer is.
391 pub fn succeed(&mut self) {
392 self.status = TaskStatus::Done;
393 self.last_error = None;
394 self.hold_reason = None;
395 self.hold_source = None;
396 self.diagnostic = None;
397 self.blocked_by.clear();
398 self.block_reason = None;
399 self.blocked_from = None;
400 }
401
402 /// Record a failed attempt. Out of attempts means held for a human, rather
403 /// than retried until the money runs out.
404 ///
405 /// Clears [`Task::diagnostic`] unconditionally: it belongs to whatever run
406 /// produced it, and a caller that has one for *this* attempt sets it
407 /// itself right after calling this, once it knows the task actually ended
408 /// up [`TaskStatus::Held`] - see `daemon::diagnostic`. Without the clear, a
409 /// task released after a diagnosed hold and then failed again for an
410 /// unrelated, undiagnosed reason (a config error, say) would go on
411 /// showing the previous run's diagnostic as if it explained the new one.
412 pub fn fail(&mut self, why: impl Into<String>, max_attempts: usize) {
413 self.last_error = Some(why.into());
414 self.diagnostic = None;
415 self.status = if self.attempts >= max_attempts {
416 self.hold_source = Some(HoldSource::Machine);
417 TaskStatus::Held
418 } else {
419 TaskStatus::Failed
420 };
421 }
422
423 /// Record an attempt that failed for a reason the task is not responsible
424 /// for - the agent CLIs ran out of quota and the judging panel collapsed.
425 ///
426 /// This refunds the attempt on purpose. A quota window closing at 4am must
427 /// not spend the backlog's retry budget: the operator would come back to a
428 /// queue of held tasks that were never actually judged, and would have to
429 /// release every one by hand to find out which had a real problem. The task
430 /// goes back to `Failed`, which the loop retries, so a reset quota picks the
431 /// work up where it stopped.
432 pub fn stall(&mut self, why: impl Into<String>) {
433 self.last_error = Some(why.into());
434 self.diagnostic = None;
435 self.attempts = self.attempts.saturating_sub(1);
436 self.status = TaskStatus::Failed;
437 }
438
439 /// Whether this held task may only be released by an operator.
440 ///
441 /// Old files did not record a source. Preserve every such hold rather
442 /// than guessing that it was automatic and risking duplicate work. New
443 /// automatic holds record [`HoldSource::Machine`] and remain recoverable.
444 pub fn operator_held(&self) -> bool {
445 self.status == TaskStatus::Held && !matches!(self.hold_source, Some(HoldSource::Machine))
446 }
447
448 /// Take this task out of the loop's reach by an operator action.
449 ///
450 /// Clears `blocked_by`/`block_reason` unconditionally, the same as
451 /// [`Task::release`] and for the same reason its own comment already
452 /// gives: a human choosing to hold a *blocked* task overrides its wait
453 /// outright, the same as it overrides an ordinary hold. Without this, a
454 /// task held straight out of [`TaskStatus::Blocked`] - the web UI's "Hold"
455 /// button is reachable on a blocked task, same as "Mark done" - kept
456 /// reading as still waiting on a dependency it no longer had any claim on.
457 pub fn hold_manual(&mut self, reason: Option<String>) {
458 self.status = TaskStatus::Held;
459 if reason.is_some() {
460 self.hold_reason = reason;
461 }
462 self.hold_source = Some(HoldSource::Manual);
463 self.blocked_by.clear();
464 self.block_reason = None;
465 self.blocked_from = None;
466 }
467
468 /// Take this task out of the loop's reach during automatic recovery.
469 ///
470 /// Clears `blocked_by`/`block_reason` for the same reason
471 /// [`Task::hold_manual`] does.
472 pub fn hold_machine(&mut self, reason: Option<String>) {
473 self.status = TaskStatus::Held;
474 if reason.is_some() {
475 self.hold_reason = reason;
476 }
477 self.hold_source = Some(HoldSource::Machine);
478 self.blocked_by.clear();
479 self.block_reason = None;
480 self.blocked_from = None;
481 }
482
483 /// Block this task on other task ids and/or open question ids, chosen by
484 /// `crate::conduct`. Pure: the caller still owns writing it back with
485 /// [`Queue::put`].
486 ///
487 /// Records [`Task::blocked_from`] the first time this moves the task into
488 /// [`TaskStatus::Blocked`], and leaves it alone on a later call that adds
489 /// or replaces `blocked_by` while the task is already `Blocked` - a
490 /// second question about an already-blocked task must not overwrite the
491 /// status it should eventually return to with `Blocked` itself.
492 pub fn block(&mut self, blocked_by: Vec<String>, reason: Option<String>) {
493 if self.status != TaskStatus::Blocked {
494 self.blocked_from = Some(self.status);
495 }
496 self.status = TaskStatus::Blocked;
497 self.blocked_by = blocked_by;
498 self.block_reason = reason;
499 }
500
501 /// Remove one resolved dependency (a task id that became [`TaskStatus::Done`],
502 /// or a question id that became [`crate::ask::QuestionStatus::Answered`]).
503 /// Once nothing is left in [`Task::blocked_by`], the task returns to
504 /// whatever [`Task::blocked_from`] recorded - deciding *why* a task was
505 /// blocked was `crate::conduct`'s job, but noticing a dependency resolved
506 /// needs no model at all, and restoring the status it interrupted needs
507 /// nothing more than what `block` already wrote down.
508 ///
509 /// A task blocked while `Running` restores to [`TaskStatus::Queued`]
510 /// instead: whatever process was running it is gone by the time this
511 /// runs, so there is nothing left to resume. A task with no recorded
512 /// `blocked_from` - a pre-schema-4 record, or one blocked before this
513 /// field existed - falls back to [`TaskStatus::Held`] when it still
514 /// carries hold evidence ([`Task::hold_reason`] or [`Task::hold_source`],
515 /// neither ever cleared by `block`), and to `Queued` otherwise: the same
516 /// choice `block` itself would have recorded, reconstructed from what
517 /// survived.
518 ///
519 /// A no-op, on purpose, for a task that is not [`TaskStatus::Blocked`]:
520 /// `crate::daemon`'s deterministic resolver runs over every task on every
521 /// poll, and a task that moved on for some other reason must not be
522 /// dragged back by a stale id it still happens to carry.
523 pub fn unblock(&mut self, resolved_id: &str) {
524 if self.status != TaskStatus::Blocked {
525 return;
526 }
527 self.blocked_by.retain(|id| id != resolved_id);
528 if self.blocked_by.is_empty() {
529 self.status = match self.blocked_from {
530 Some(TaskStatus::Running) => TaskStatus::Queued,
531 Some(other) => other,
532 None if self.hold_reason.is_some() || self.hold_source.is_some() => {
533 TaskStatus::Held
534 }
535 None => TaskStatus::Queued,
536 };
537 self.block_reason = None;
538 self.blocked_from = None;
539 }
540 }
541
542 /// Record that a question `crate::conduct` asked about this task has been
543 /// answered, so the answer's content — not just the fact that the
544 /// question is gone — reaches the next conductor prompt and the next
545 /// run's instruction. See [`Task::answers`].
546 pub fn record_answer(&mut self, question: String, answer: String) {
547 self.answers.push(AnsweredQuestion { question, answer });
548 }
549
550 /// Requeue this task to reopen its last run as a review-only pass against
551 /// `branch` (`crate::graph::Runner::review`) rather than competing from
552 /// scratch. See [`Task::review_branch`].
553 pub fn request_review(&mut self, branch: String) {
554 self.release();
555 self.review_branch = Some(branch);
556 }
557
558 /// Requeue after a conductor chose a new competition. Unlike an ordinary
559 /// operator release, this deliberately does not resume the old run.
560 pub fn requeue(&mut self) {
561 self.release();
562 self.fresh_start = true;
563 }
564
565 /// Change how urgently this task should run next.
566 ///
567 /// Refused once the task is `running`: priority only feeds the sort
568 /// [`Queue::next_runnable`] does over tasks waiting to be claimed, and a
569 /// running task has already left that pool. Accepting the write anyway
570 /// would look like it worked while changing nothing until - and unless -
571 /// this attempt fails and the task becomes runnable again, which is a
572 /// surprise the phone should not hand back as a success.
573 pub fn set_priority(&mut self, priority: i32) -> Result<()> {
574 if self.status == TaskStatus::Running {
575 bail!(
576 "task {} is running; its priority cannot be changed until \
577 this attempt finishes",
578 self.short()
579 );
580 }
581 self.priority = priority;
582 Ok(())
583 }
584
585 /// Mark (or unmark) this task to interrupt whatever `magi serve` already
586 /// has in flight, once `[daemon] pause_for_interrupts` is on. See
587 /// [`Task::interrupt`].
588 ///
589 /// Setting it is restricted to a task the loop could pick up on its own
590 /// right now - [`TaskStatus::runnable`] - for the same reason as
591 /// [`Task::set_priority`]: a task already `running` has been claimed, and
592 /// a task that is `done`, `held`, or `blocked` is not going to compete
593 /// for the daemon's attention regardless of this flag. Unlike priority,
594 /// this is never silently inert while `running` - it is refused outright,
595 /// because the entire feature this flag drives (`crate::daemon`'s
596 /// interrupt scheduler) is scoped to tasks still waiting to be claimed.
597 /// Clearing it back to `false` carries no such risk and is always
598 /// allowed, including on a task that moved on since it was set.
599 pub fn set_interrupt(&mut self, interrupt: bool) -> Result<()> {
600 if interrupt && !self.status.runnable() {
601 bail!(
602 "task {} is {}; only a queued or failed task can be marked \
603 to interrupt",
604 self.short(),
605 self.status.as_str()
606 );
607 }
608 self.interrupt = interrupt;
609 Ok(())
610 }
611
612 /// Replace this task's title and instruction wholesale.
613 ///
614 /// Restricted to `queued` and `held`. A `running` task's instruction has
615 /// already been handed to the graph, so a run in flight and the file on
616 /// disk must not be allowed to disagree about what was asked; a `done` or
617 /// `failed` task is a record of what actually happened and editing it
618 /// after the fact would falsify that record. `id`, `created_at`,
619 /// `source`, and `runs` are left untouched on purpose - an edit stands in
620 /// for "delete and refile", and keeping the id, the timestamp, the
621 /// attribution, and the run history is the entire reason it exists
622 /// instead.
623 pub fn edit(&mut self, title: String, instruction: String) -> Result<()> {
624 if !matches!(self.status, TaskStatus::Queued | TaskStatus::Held) {
625 bail!(
626 "task {} is {}; only a queued or held task's instruction can \
627 be edited",
628 self.short(),
629 self.status.as_str()
630 );
631 }
632 self.title = title;
633 self.instruction = instruction;
634 Ok(())
635 }
636
637 /// Record a run that produced a pull request without merging it.
638 ///
639 /// The task is held rather than retried, and it costs no further attempt
640 /// either way. The work the task asked for exists: it is sitting on a
641 /// branch, in a pull request, waiting for CI or for a person. Retrying
642 /// would spend the whole competition budget a second time and then race a
643 /// second branch against the pull request the first one opened - which is
644 /// exactly what happened to run 01c2, whose finished and green pull request
645 /// was re-competed from scratch four seconds after it opened.
646 ///
647 /// A pull request nobody merged is a request for a person, not a failure.
648 pub fn handed_off(&mut self, why: impl Into<String>) {
649 self.last_error = Some(why.into());
650 self.diagnostic = None;
651 self.status = TaskStatus::Held;
652 self.hold_source = Some(HoldSource::Machine);
653 }
654
655 /// Put a held or finished task back in line, with its attempt count reset
656 /// so a release is a real second chance rather than an instant re-hold.
657 /// The run history is kept: attempts reset, evidence does not.
658 pub fn release(&mut self) {
659 self.status = TaskStatus::Queued;
660 self.attempts = 0;
661 self.last_error = None;
662 // Otherwise the next person who holds this task reads a reason that
663 // belonged to whatever it was waiting on last time.
664 self.hold_reason = None;
665 self.hold_source = None;
666 self.diagnostic = None;
667 // A release also un-blocks: the dependency or question `blocked_by`
668 // named may still be unresolved, but a human (or `crate::conduct`)
669 // choosing to release the task overrides that wait outright, the same
670 // as it overrides an ordinary hold.
671 self.blocked_by.clear();
672 self.block_reason = None;
673 self.blocked_from = None;
674 self.review_branch = None;
675 self.fresh_start = false;
676 }
677}
678
679/// A queue on disk.
680#[derive(Debug, Clone)]
681pub struct Queue {
682 root: PathBuf,
683}
684
685impl Queue {
686 /// The operator's queue, `<home>/queue`.
687 pub fn open() -> Self {
688 Self::at(crate::run::home().join("queue"))
689 }
690
691 /// A queue at an explicit root. Tests use this; so could an operator who
692 /// wants a queue per project.
693 pub fn at(root: PathBuf) -> Self {
694 Self { root }
695 }
696
697 /// Directory holding the task files.
698 pub fn root(&self) -> &Path {
699 &self.root
700 }
701
702 /// Path for one task id.
703 pub fn path_of(&self, id: &str) -> PathBuf {
704 self.root.join(format!("{id}.json"))
705 }
706
707 /// Write a task, atomically, so a daemon killed mid-write leaves the
708 /// previous state readable rather than a truncated file.
709 pub fn put(&self, task: &mut Task) -> Result<()> {
710 task.updated_at = Timestamp::now();
711 std::fs::create_dir_all(&self.root)
712 .with_context(|| format!("create {}", self.root.display()))?;
713 let body = serde_json::to_string_pretty(task).context("serialize task")?;
714 let path = self.path_of(&task.id);
715 let tmp = path.with_extension("json.tmp");
716 std::fs::write(&tmp, &body).with_context(|| format!("write {}", tmp.display()))?;
717 std::fs::rename(&tmp, &path).with_context(|| format!("replace {}", path.display()))?;
718 Ok(())
719 }
720
721 /// Load a task by id or unambiguous id prefix.
722 pub fn get(&self, id: &str) -> Result<Task> {
723 let resolved = self.resolve_id(id)?;
724 read_path(&self.path_of(&resolved))
725 }
726
727 /// Remove a task, and the claim lock that belongs to it.
728 ///
729 /// `in_flight` comes from the caller — a live daemon's heartbeat naming
730 /// this task — because the task's own `running` status cannot answer the
731 /// question. A daemon killed mid-competition leaves the status at
732 /// `running` and an orphaned `.lock` behind, and a guard that trusted
733 /// either would make the task undeletable for good: the phone showed
734 /// exactly that, refusing a task whose daemon had been gone for an hour.
735 ///
736 /// So the lock is removed with the task rather than respected. Any lock
737 /// still there once no live daemon claims the task is by definition stale,
738 /// and leaving it would make a deleted task look claimed to
739 /// [`Queue::claim`] and to whoever reads the directory.
740 ///
741 /// Anything still `blocked` on the id just deleted is quarantined to a
742 /// machine hold in the same call - see [`Removal::quarantined`] - rather
743 /// than left to wait on a dependency that no longer exists. Best-effort:
744 /// a dependent claimed by something else right now, or one whose write
745 /// fails, is simply left for `crate::daemon::resolve_blockers`'s own poll
746 /// (or `crate::triage::run_once`) to catch on its own next pass, and does
747 /// not fail this removal.
748 ///
749 /// `questions` is the store [`missing_blockers`] checks a `blocked_by` id
750 /// against before calling it gone - the same store the caller already
751 /// resolves `id`'s own home from, passed in rather than reopened here so
752 /// a test queue at an explicit root is never quarantined against the
753 /// operator's real questions directory.
754 pub fn remove(&self, id: &str, in_flight: bool, questions: &Questions) -> Result<Removal> {
755 let resolved = self.resolve_id(id)?;
756 if in_flight {
757 bail!("task {resolved} is being run by a live daemon right now");
758 }
759 let path = self.path_of(&resolved);
760 std::fs::remove_file(&path).with_context(|| format!("remove {}", path.display()))?;
761 let lock = self.lock_path(&resolved);
762 if let Err(e) = std::fs::remove_file(&lock) {
763 if e.kind() != std::io::ErrorKind::NotFound {
764 return Err(e).with_context(|| format!("remove {}", lock.display()));
765 }
766 }
767 let quarantined = self.quarantine_dependents_of(&resolved, questions);
768 Ok(Removal {
769 id: resolved,
770 quarantined,
771 })
772 }
773
774 /// Move every `blocked` task naming `dependency` in its own `blocked_by`
775 /// to a machine hold, now that `dependency`'s own file is gone. See
776 /// [`Queue::remove`]'s own doc for why this is best-effort.
777 fn quarantine_dependents_of(&self, dependency: &str, questions: &Questions) -> Vec<String> {
778 let mut quarantined = Vec::new();
779 for listed in self.list() {
780 if listed.status != TaskStatus::Blocked
781 || !listed.blocked_by.iter().any(|b| b == dependency)
782 {
783 continue;
784 }
785 let Ok(_claim) = self.claim(&listed.id) else {
786 continue;
787 };
788 let Ok(mut task) = self.get(&listed.id) else {
789 continue;
790 };
791 if task.status != TaskStatus::Blocked
792 || !task.blocked_by.iter().any(|b| b == dependency)
793 {
794 continue;
795 }
796 let missing = missing_blockers(self, questions, &task.blocked_by);
797 task.hold_machine(Some(missing_blocker_hold_reason(
798 &task.blocked_by,
799 &missing,
800 )));
801 if self.put(&mut task).is_ok() {
802 quarantined.push(task.id.clone());
803 }
804 }
805 quarantined
806 }
807
808 /// Path of the claim lock for a task. One definition, so `claim` and
809 /// `remove` cannot end up naming different files.
810 fn lock_path(&self, id: &str) -> PathBuf {
811 self.root.join(format!("{id}.lock"))
812 }
813
814 /// Every task on disk, highest priority first and newest first within a
815 /// priority. This is what `magi task list` and `GET /api/queue` print, so
816 /// a raised priority has to move a task here the moment it is saved, not
817 /// only in [`Queue::next_runnable`]'s own ordering - the operator reading
818 /// the backlog and the loop about to drain it must agree on what "first"
819 /// means. Every existing task defaults to priority 0, so this is a no-op
820 /// change from the old newest-first order for a queue nobody has
821 /// reprioritised.
822 ///
823 /// Unreadable files are skipped rather than fatal: one corrupt task must
824 /// not take the queue - or the web UI, or an unattended daemon - down
825 /// with it.
826 pub fn list(&self) -> Vec<Task> {
827 let mut tasks: Vec<Task> = std::fs::read_dir(&self.root)
828 .into_iter()
829 .flatten()
830 .flatten()
831 .map(|e| e.path())
832 .filter(|p| p.extension().is_some_and(|x| x == "json"))
833 .filter_map(|p| read_path(&p).ok())
834 .collect();
835 tasks.sort_unstable_by(|a, b| b.priority.cmp(&a.priority).then_with(|| b.id.cmp(&a.id)));
836 tasks
837 }
838
839 /// The task a daemon should run next, or `None` when the queue is idle.
840 ///
841 /// Highest priority first, oldest first within a priority, so a burst of
842 /// agent-filed work cannot starve the task a human filed this morning.
843 pub fn next_runnable(&self) -> Option<Task> {
844 let mut runnable: Vec<Task> = self
845 .list()
846 .into_iter()
847 .filter(|t| t.status.runnable())
848 .collect();
849 runnable.sort_unstable_by(|a, b| b.priority.cmp(&a.priority).then(a.id.cmp(&b.id)));
850 runnable.into_iter().next()
851 }
852
853 /// Take exclusive ownership of a task.
854 ///
855 /// The lock is a `create_new` file next to the task, which is atomic on
856 /// every platform magi targets. It exists so two daemons - or a daemon and
857 /// a human running `magi run` - cannot drive one task into two competing
858 /// runs. The returned guard releases on drop, including on panic.
859 pub fn claim(&self, id: &str) -> Result<Claim> {
860 std::fs::create_dir_all(&self.root)
861 .with_context(|| format!("create {}", self.root.display()))?;
862 let path = self.lock_path(id);
863 match std::fs::OpenOptions::new()
864 .write(true)
865 .create_new(true)
866 .open(&path)
867 {
868 Ok(mut f) => {
869 use std::io::Write as _;
870 // Best effort: the pid is for the human looking at a stale lock.
871 let _ = writeln!(f, "{}", std::process::id());
872 Ok(Claim { path })
873 }
874 Err(e) if e.kind() == std::io::ErrorKind::AlreadyExists => {
875 bail!("task {id} is already claimed ({} exists)", path.display())
876 }
877 Err(e) => Err(e).with_context(|| format!("lock {}", path.display())),
878 }
879 }
880
881 /// Expand an id prefix to exactly one task id.
882 pub fn resolve_id(&self, prefix: &str) -> Result<String> {
883 if self.path_of(prefix).is_file() {
884 return Ok(prefix.to_owned());
885 }
886 let hits: Vec<String> = self
887 .list()
888 .into_iter()
889 .map(|t| t.id)
890 .filter(|id| id.starts_with(prefix) || id.ends_with(prefix))
891 .collect();
892 match hits.len() {
893 1 => Ok(hits.into_iter().next().expect("exactly one hit")),
894 0 => bail!("no task matches `{prefix}`"),
895 _ => bail!(
896 "`{prefix}` matches {} tasks: {}",
897 hits.len(),
898 hits.join(", ")
899 ),
900 }
901 }
902
903 /// Change detection token for the queue.
904 ///
905 /// Combines file names and modification times of all task files in the
906 /// queue, so adding, modifying, or deleting any task — even an older one —
907 /// moves the revision and notifies connected clients via the change stream.
908 /// Returns 0 when the queue is completely empty.
909 pub fn revision(&self) -> u64 {
910 use std::hash::{Hash as _, Hasher as _};
911
912 let mut entries: Vec<(String, u64)> = std::fs::read_dir(&self.root)
913 .into_iter()
914 .flatten()
915 .flatten()
916 .filter(|e| e.path().extension().is_some_and(|ext| ext == "json"))
917 .filter_map(|e| {
918 let name = e.file_name().to_string_lossy().into_owned();
919 let mtime = e
920 .metadata()
921 .ok()?
922 .modified()
923 .ok()?
924 .duration_since(std::time::UNIX_EPOCH)
925 .ok()?
926 .as_millis() as u64;
927 Some((name, mtime))
928 })
929 .collect();
930
931 if entries.is_empty() {
932 return 0;
933 }
934
935 entries.sort_unstable();
936 let mut hasher = std::hash::DefaultHasher::new();
937 for (name, mtime) in &entries {
938 name.hash(&mut hasher);
939 mtime.hash(&mut hasher);
940 }
941 let h = hasher.finish();
942 if h == 0 { 1 } else { h }
943 }
944}
945
946/// What [`Queue::remove`] did, beyond deleting the named task's own file.
947#[derive(Debug, Clone)]
948pub struct Removal {
949 /// The id actually removed - `id` expanded from a prefix, if it was one.
950 pub id: String,
951 /// Every `blocked` task that named [`Removal::id`] in its own
952 /// `blocked_by` and was moved to a machine hold as a result, rather than
953 /// left waiting on a dependency this call just erased.
954 pub quarantined: Vec<String>,
955}
956
957/// Exclusive ownership of a task, released on drop.
958#[derive(Debug)]
959pub struct Claim {
960 path: PathBuf,
961}
962
963impl Drop for Claim {
964 fn drop(&mut self) {
965 let _ = std::fs::remove_file(&self.path);
966 }
967}
968
969/// The first line of a task, trimmed to a title. Used when the caller gives a
970/// body but no title, which is the normal case for an agent piping a file in.
971pub fn title_from(instruction: &str, max: usize) -> String {
972 // The first non-blank line, whatever it is. A markdown heading is the
973 // task's own summary - agents pipe in `# Rework the config loader` and mean
974 // exactly that - so it is preferred over the prose beneath it rather than
975 // skipped as decoration. Leading list and heading markers are stripped
976 // because they are syntax, not words.
977 let line = instruction
978 .lines()
979 .map(str::trim)
980 .find(|l| !l.is_empty())
981 .unwrap_or("(empty task)")
982 .trim_start_matches(['#', '-', '*', '>', ' '])
983 .trim();
984 if line.is_empty() {
985 return "(empty task)".to_owned();
986 }
987 if line.chars().count() <= max {
988 return line.to_owned();
989 }
990 let head: String = line.chars().take(max.saturating_sub(1)).collect();
991 format!("{head}…")
992}
993
994fn read_path(path: &Path) -> Result<Task> {
995 let body = std::fs::read_to_string(path).with_context(|| format!("read {}", path.display()))?;
996 let task: Task =
997 serde_json::from_str(&body).with_context(|| format!("parse {}", path.display()))?;
998 // Greater-than, not not-equal: every field added since schema 1 carries
999 // `#[serde(default)]`, so an older task has nothing to say about it and
1000 // defaulting is exactly as good a reading as a value that build never had
1001 // a chance to write. Only a schema *ahead* of this build - a meaning it
1002 // cannot possibly know - is refused rather than guessed at.
1003 if task.schema > SCHEMA {
1004 bail!(
1005 "task {} was written by a different magi (schema {}, this build \
1006 speaks {SCHEMA})",
1007 task.id,
1008 task.schema
1009 );
1010 }
1011 Ok(task)
1012}
1013
1014/// Ids inside a `blocked_by` list that name neither an existing task file nor
1015/// an existing question file - a dependency deleted (`magi task rm`, or by
1016/// hand) while something was still waiting on it.
1017///
1018/// Existence is decided by [`Queue::path_of`]/[`Questions::path_of`]
1019/// `is_file()` alone, never by [`Queue::get`]/[`Questions::get`] succeeding:
1020/// those also fail on a merely unreadable file - mid-write, corrupt, or from
1021/// a schema ahead of this build (see [`read_path`]) - and misreading "cannot
1022/// read it right now" as "it was deleted" would quarantine a task over a
1023/// transient failure. `blocked_by` always carries a full id, written by
1024/// `crate::conduct` or `crate::triage` from a real task's or question's own
1025/// `id`/`short`, never a prefix a caller typed - so the exact-path check is
1026/// complete on its own, with no [`Queue::resolve_id`] fallback needed.
1027pub fn missing_blockers(
1028 queue: &Queue,
1029 questions: &Questions,
1030 blocked_by: &[String],
1031) -> Vec<String> {
1032 blocked_by
1033 .iter()
1034 .filter(|id| !queue.path_of(id).is_file() && !questions.path_of(id).is_file())
1035 .cloned()
1036 .collect()
1037}
1038
1039/// The `hold_reason` text for a task quarantined because one or more of its
1040/// `blocked_by` ids no longer exist. Shared by `crate::daemon::resolve_blockers`,
1041/// `crate::triage::run_once`, and [`Queue::remove`]'s own dependent
1042/// quarantine, so the three call sites read as the same event to an operator
1043/// looking at `magi task show` rather than three different wordings for it.
1044///
1045/// Names the full original `blocked_by` list, not just `missing` - a task
1046/// quarantined here can also have named a dependency that was still
1047/// perfectly valid, and [`Task::hold_machine`] clears `blocked_by` on the way
1048/// in, so this text is the only place that information survives for an
1049/// operator deciding whether to release the task outright.
1050pub fn missing_blocker_hold_reason(blocked_by: &[String], missing: &[String]) -> String {
1051 format!(
1052 "blocked on {} but {} no longer exist(s) on disk - see `magi task triage`",
1053 blocked_by.join(", "),
1054 missing.join(", "),
1055 )
1056}
1057
1058fn short(id: &str) -> &str {
1059 id.split('-').next_back().unwrap_or(id)
1060}
1061
1062fn new_id() -> String {
1063 let stamp = jiff::Zoned::now().strftime("%Y%m%d-%H%M%S");
1064 let seed = crate::rng::entropy();
1065 format!("{stamp}-{:04x}", (seed ^ (seed >> 32)) & 0xffff)
1066}
1067
1068#[cfg(test)]
1069mod tests {
1070 use super::*;
1071
1072 /// A queue of its own, with no process-global state - which is the point of
1073 /// `Queue::at`, and why these can run in parallel.
1074 fn queue() -> (tempfile::TempDir, Queue) {
1075 let dir = tempfile::tempdir().unwrap();
1076 let q = Queue::at(dir.path().join("queue"));
1077 (dir, q)
1078 }
1079
1080 fn task(title: &str) -> Task {
1081 Task::new(
1082 title.to_owned(),
1083 format!("do {title}"),
1084 PathBuf::from("."),
1085 Source::Human,
1086 )
1087 }
1088
1089 #[test]
1090 fn a_markdown_heading_is_the_title_not_decoration() {
1091 // A task file's heading is the summary its author already wrote, so it
1092 // beats the prose underneath. Getting this backwards was visible in the
1093 // first smoke test: a task titled "# Rework the config loader" listed
1094 // as "It re-reads the file on every lookup".
1095 assert_eq!(
1096 title_from("# Rework the config loader\n\nIt re-reads it.\n", 40),
1097 "Rework the config loader"
1098 );
1099 assert_eq!(title_from("- fix the thing", 40), "fix the thing");
1100 assert_eq!(title_from("> quoted task", 40), "quoted task");
1101 // Nothing usable at all still has to produce something printable.
1102 assert_eq!(title_from(" \n\n", 40), "(empty task)");
1103 assert_eq!(title_from("###\n", 40), "(empty task)");
1104 }
1105
1106 #[test]
1107 fn a_long_title_is_elided_by_characters_not_bytes() {
1108 // Byte truncation would split a multi-byte character and panic.
1109 let long = "課題".repeat(30);
1110 let title = title_from(&long, 10);
1111 assert_eq!(title.chars().count(), 10);
1112 assert!(title.ends_with('…'));
1113 }
1114
1115 #[test]
1116 fn priority_wins_and_ties_break_oldest_first() {
1117 let (_dir, q) = queue();
1118 let mut a = task("first");
1119 let mut b = task("second");
1120 let mut c = task("urgent");
1121 // Ids carry a timestamp, so force a known order.
1122 a.id = "20260101-000001-aaaa".to_owned();
1123 b.id = "20260101-000002-bbbb".to_owned();
1124 c.id = "20260101-000003-cccc".to_owned();
1125 c.priority = 5;
1126 for t in [&mut a, &mut b, &mut c] {
1127 q.put(t).unwrap();
1128 }
1129
1130 // Priority first...
1131 assert_eq!(q.next_runnable().unwrap().id, c.id);
1132 c.hold_machine(None);
1133 q.put(&mut c).unwrap();
1134 // ...then oldest, so a burst of new work cannot starve older work.
1135 assert_eq!(q.next_runnable().unwrap().id, a.id);
1136 assert_eq!(q.list().len(), 3, "b is still waiting its turn");
1137 }
1138
1139 #[test]
1140 fn a_blocked_task_never_starves_another_runnable_one() {
1141 let (_dir, q) = queue();
1142 let mut blocked = task("blocked");
1143 blocked.block(vec!["something".to_owned()], None);
1144 q.put(&mut blocked).unwrap();
1145
1146 let mut runnable = task("free to go");
1147 q.put(&mut runnable).unwrap();
1148
1149 let next = q.next_runnable().expect("a runnable task is still offered");
1150 assert_eq!(next.id, runnable.id);
1151 }
1152
1153 #[test]
1154 fn a_held_task_is_never_offered_to_the_loop() {
1155 let (_dir, q) = queue();
1156 let mut t = task("held");
1157 q.put(&mut t).unwrap();
1158 assert!(q.next_runnable().is_some());
1159
1160 t.hold_machine(None);
1161 q.put(&mut t).unwrap();
1162 assert!(
1163 q.next_runnable().is_none(),
1164 "a held task must wait for a human"
1165 );
1166
1167 // A failed task, by contrast, is exactly what the loop should retry.
1168 t.status = TaskStatus::Failed;
1169 q.put(&mut t).unwrap();
1170 assert!(q.next_runnable().is_some());
1171 }
1172
1173 #[test]
1174 fn attempts_are_capped_and_then_the_task_is_held() {
1175 let mut t = task("doomed");
1176
1177 t.start("run-1".to_owned());
1178 t.fail("gate red", 2);
1179 assert_eq!(t.status, TaskStatus::Failed, "one attempt of two: retry");
1180
1181 t.start("run-2".to_owned());
1182 t.fail("gate red", 2);
1183 assert_eq!(
1184 t.status,
1185 TaskStatus::Held,
1186 "out of attempts: stop spending money on it"
1187 );
1188 assert_eq!(t.runs, ["run-1", "run-2"]);
1189 assert_eq!(t.last_error.as_deref(), Some("gate red"));
1190 }
1191
1192 #[test]
1193 fn a_quota_stall_is_refunded_so_the_backlog_survives_the_night() {
1194 let mut t = task("stalled by quota");
1195
1196 t.start("run-1".to_owned());
1197 assert_eq!(t.attempts, 1);
1198 t.stall("judge-1, judge-2 out of quota");
1199 assert_eq!(
1200 t.attempts, 0,
1201 "a closed quota window must not spend the task's retry budget"
1202 );
1203 assert_eq!(t.status, TaskStatus::Failed, "the loop should retry it");
1204 assert_eq!(
1205 t.last_error.as_deref(),
1206 Some("judge-1, judge-2 out of quota")
1207 );
1208
1209 // A task can therefore stall all night and still get its real attempts
1210 // once the quota resets - which is the whole point.
1211 for _ in 0..20 {
1212 t.start("run-n".to_owned());
1213 t.stall("still out of quota");
1214 }
1215 t.start("run-real".to_owned());
1216 t.fail("gate red", 2);
1217 assert_eq!(
1218 t.status,
1219 TaskStatus::Failed,
1220 "the first attempt that was really judged is attempt one"
1221 );
1222 }
1223
1224 #[test]
1225 fn releasing_a_held_task_gives_it_a_real_second_chance() {
1226 let mut t = task("retry me");
1227 t.start("run-1".to_owned());
1228 t.fail("gate red", 1);
1229 assert_eq!(t.status, TaskStatus::Held);
1230
1231 t.release();
1232 assert_eq!(t.status, TaskStatus::Queued);
1233 // Without resetting attempts the next failure would re-hold at once,
1234 // and a release would be a no-op the operator cannot see.
1235 assert_eq!(t.attempts, 0);
1236 assert!(t.last_error.is_none());
1237 assert_eq!(
1238 t.runs.len(),
1239 1,
1240 "history is kept: attempts reset, evidence does not"
1241 );
1242 }
1243
1244 #[test]
1245 fn a_hold_reason_survives_and_a_release_clears_it() {
1246 let mut t = task("waiting on something else");
1247 t.hold_manual(Some(
1248 "waiting for 20260101-000000-aaaa to land first".to_owned(),
1249 ));
1250 assert_eq!(t.status, TaskStatus::Held);
1251 assert_eq!(
1252 t.hold_reason.as_deref(),
1253 Some("waiting for 20260101-000000-aaaa to land first")
1254 );
1255
1256 // Holding again with no reason must not erase the one already there.
1257 t.hold_manual(None);
1258 assert_eq!(
1259 t.hold_reason.as_deref(),
1260 Some("waiting for 20260101-000000-aaaa to land first"),
1261 "a bare re-hold keeps whatever a human already wrote down"
1262 );
1263
1264 // A hold with no reason at all is still an ordinary, allowed hold.
1265 let mut plain = task("no reason given");
1266 plain.hold_manual(None);
1267 assert_eq!(plain.status, TaskStatus::Held);
1268 assert!(plain.hold_reason.is_none());
1269
1270 t.release();
1271 assert_eq!(t.status, TaskStatus::Queued);
1272 assert!(
1273 t.hold_reason.is_none(),
1274 "a stale reason must not greet the next person who holds this task"
1275 );
1276 }
1277
1278 #[test]
1279 fn closing_a_held_task_as_done_clears_its_hold_reason_too() {
1280 // `done` can close a held task directly - neither `magi task done`
1281 // nor `POST /api/queue/{id}/done` requires a release first - so a
1282 // task held for "waiting on 3ed9" and then closed without ever being
1283 // released must not still read as waiting on it afterwards.
1284 let mut t = task("landed by hand while held");
1285 t.hold_manual(Some("waiting on 3ed9".to_owned()));
1286 assert_eq!(t.hold_reason.as_deref(), Some("waiting on 3ed9"));
1287
1288 t.succeed();
1289 assert_eq!(t.status, TaskStatus::Done);
1290 assert!(
1291 t.hold_reason.is_none(),
1292 "a done task cannot still be waiting on something"
1293 );
1294 }
1295
1296 #[test]
1297 fn holding_or_closing_a_blocked_task_clears_its_dependency_too() {
1298 // The web UI's "Hold" and "Mark done" buttons are both reachable on a
1299 // `blocked` task, not just on `queued`/`held` ones - neither requires
1300 // a release first. A task moved off `Blocked` that way must not still
1301 // carry the dependency it was waiting on: a dependency graph built
1302 // from `blocked_by` would otherwise keep drawing an edge for a task
1303 // that is not blocked on anything any more.
1304 let mut held = task("held straight out of blocked");
1305 held.block(
1306 vec!["20260101-000000-dead".to_owned()],
1307 Some("waiting on the migration script".to_owned()),
1308 );
1309 assert_eq!(held.status, TaskStatus::Blocked);
1310
1311 held.hold_manual(None);
1312 assert_eq!(held.status, TaskStatus::Held);
1313 assert!(
1314 held.blocked_by.is_empty(),
1315 "hold overrides the wait, same as release"
1316 );
1317 assert!(held.block_reason.is_none());
1318
1319 let mut done = task("closed straight out of blocked");
1320 done.block(
1321 vec!["20260101-000000-dead".to_owned()],
1322 Some("waiting on the migration script".to_owned()),
1323 );
1324 done.succeed();
1325 assert_eq!(done.status, TaskStatus::Done);
1326 assert!(
1327 done.blocked_by.is_empty(),
1328 "a done task cannot still be waiting on a dependency"
1329 );
1330 assert!(done.block_reason.is_none());
1331 }
1332
1333 #[test]
1334 fn a_blocked_task_is_never_offered_to_the_loop() {
1335 let mut t = task("blocked");
1336 assert!(t.status.runnable());
1337 t.block(
1338 vec!["dep-id".to_owned()],
1339 Some("waits on dep-id".to_owned()),
1340 );
1341 assert_eq!(t.status, TaskStatus::Blocked);
1342 assert!(!t.status.runnable());
1343 assert_eq!(TaskStatus::Blocked.as_str(), "blocked");
1344 }
1345
1346 #[test]
1347 fn unblocking_the_last_dependency_returns_the_task_to_queued() {
1348 let mut t = task("blocked on two");
1349 t.block(
1350 vec!["a".to_owned(), "b".to_owned()],
1351 Some("waits on a and b".to_owned()),
1352 );
1353
1354 t.unblock("a");
1355 assert_eq!(t.status, TaskStatus::Blocked, "b is still outstanding");
1356 assert_eq!(t.blocked_by, ["b"]);
1357
1358 t.unblock("b");
1359 assert_eq!(t.status, TaskStatus::Queued);
1360 assert!(t.blocked_by.is_empty());
1361 assert!(t.block_reason.is_none());
1362 }
1363
1364 #[test]
1365 fn unblocking_an_id_on_a_task_that_is_not_blocked_is_a_no_op() {
1366 let mut t = task("never blocked");
1367 t.unblock("whatever");
1368 assert_eq!(t.status, TaskStatus::Queued);
1369 }
1370
1371 #[test]
1372 fn a_held_task_blocked_on_a_question_returns_to_held_not_queued() {
1373 // The bug this guards: a task an operator (or `crate::triage`) has
1374 // deliberately held, once `crate::conduct` blocks it on a follow-up
1375 // question, must not silently re-enter the competition queue the
1376 // moment that question is answered - whatever the answer said.
1377 let mut t = task("held, then asked about");
1378 t.hold_machine(Some("out of attempts".to_owned()));
1379 assert_eq!(t.status, TaskStatus::Held);
1380
1381 t.block(vec!["q1".to_owned()], Some("what now?".to_owned()));
1382 assert_eq!(t.status, TaskStatus::Blocked);
1383
1384 t.record_answer("what now?".to_owned(), "leave it held".to_owned());
1385 t.unblock("q1");
1386 assert_eq!(t.status, TaskStatus::Held, "must restore, not requeue");
1387 assert_eq!(t.hold_reason.as_deref(), Some("out of attempts"));
1388 assert_eq!(t.hold_source, Some(HoldSource::Machine));
1389 assert!(t.blocked_from.is_none(), "consumed once restored");
1390 }
1391
1392 #[test]
1393 fn a_manually_held_task_blocked_on_a_question_returns_to_held() {
1394 let mut t = task("manually held, then asked about");
1395 t.hold_manual(Some("waiting on a dependency".to_owned()));
1396
1397 t.block(vec!["q1".to_owned()], None);
1398 t.unblock("q1");
1399
1400 assert_eq!(t.status, TaskStatus::Held);
1401 assert_eq!(t.hold_source, Some(HoldSource::Manual));
1402 }
1403
1404 #[test]
1405 fn re_blocking_an_already_blocked_task_keeps_the_original_blocked_from() {
1406 // A second `Task::block` call - `crate::conduct` adding a question on
1407 // top of an existing block - must not overwrite `blocked_from` with
1408 // `Blocked` itself, or the task would restore into itself.
1409 let mut t = task("held, blocked twice");
1410 t.hold_machine(None);
1411 t.block(vec!["q1".to_owned()], Some("first".to_owned()));
1412 t.block(
1413 vec!["q1".to_owned(), "q2".to_owned()],
1414 Some("second".to_owned()),
1415 );
1416
1417 t.unblock("q1");
1418 assert_eq!(t.status, TaskStatus::Blocked, "q2 still outstanding");
1419 t.unblock("q2");
1420 assert_eq!(t.status, TaskStatus::Held);
1421 }
1422
1423 #[test]
1424 fn unblocking_a_task_blocked_while_running_lands_on_queued_not_running() {
1425 // Whatever process was driving the run is gone by the time a
1426 // conductor's question about it gets answered - there is nothing left
1427 // to resume into.
1428 let mut t = task("blocked mid-run");
1429 t.start("run-1".to_owned());
1430 assert_eq!(t.status, TaskStatus::Running);
1431
1432 t.block(vec!["q1".to_owned()], None);
1433 t.unblock("q1");
1434 assert_eq!(t.status, TaskStatus::Queued);
1435 }
1436
1437 #[test]
1438 fn a_pre_schema_4_blocked_record_with_hold_evidence_restores_to_held() {
1439 // `blocked_from` is `None` for a record written before schema 4 (or,
1440 // equivalently, deserialized straight from an on-disk file that never
1441 // had the field). Held evidence surviving on the task - never cleared
1442 // by `block` - is the only way left to tell such a record apart from
1443 // one blocked straight out of `Queued`.
1444 let mut t = task("legacy record, held before it was blocked");
1445 t.hold_source = Some(HoldSource::Machine);
1446 t.hold_reason = Some("legacy hold reason".to_owned());
1447 t.status = TaskStatus::Blocked;
1448 t.blocked_by = vec!["q1".to_owned()];
1449 t.blocked_from = None;
1450
1451 t.unblock("q1");
1452 assert_eq!(t.status, TaskStatus::Held);
1453 }
1454
1455 #[test]
1456 fn a_pre_schema_4_blocked_record_with_no_hold_evidence_restores_to_queued() {
1457 let mut t = task("legacy record, ordinary dependency block");
1458 t.status = TaskStatus::Blocked;
1459 t.blocked_by = vec!["dep".to_owned()];
1460 t.blocked_from = None;
1461
1462 t.unblock("dep");
1463 assert_eq!(t.status, TaskStatus::Queued);
1464 }
1465
1466 #[test]
1467 fn answering_a_question_is_recorded_and_survives_a_release() {
1468 let mut t = task("asked something");
1469 t.block(vec!["q1".to_owned()], Some("which backend?".to_owned()));
1470 t.record_answer("Which backend?".to_owned(), "SQLite".to_owned());
1471 t.unblock("q1");
1472 assert_eq!(t.status, TaskStatus::Queued);
1473 assert_eq!(t.answers.len(), 1);
1474 assert_eq!(t.answers[0].answer, "SQLite");
1475
1476 // A release resets attempts, not evidence - the same rule
1477 // `releasing_a_held_task_gives_it_a_real_second_chance` asserts for
1478 // `runs`.
1479 t.release();
1480 assert_eq!(t.answers.len(), 1, "the answer is not lost on release");
1481 }
1482
1483 #[test]
1484 fn requesting_review_requeues_the_task_and_remembers_the_branch() {
1485 let mut t = task("blocked run with a surviving branch");
1486 t.start("run-1".to_owned());
1487 t.fail("blocked with major findings", 5);
1488 assert_eq!(t.status, TaskStatus::Failed);
1489
1490 t.request_review("magi/eba2/A".to_owned());
1491 assert_eq!(t.status, TaskStatus::Queued);
1492 assert_eq!(t.attempts, 0);
1493 assert_eq!(t.review_branch.as_deref(), Some("magi/eba2/A"));
1494
1495 // An ordinary release (a human overriding the choice) drops it again.
1496 t.release();
1497 assert!(t.review_branch.is_none());
1498 }
1499
1500 #[test]
1501 fn conductor_requeue_but_not_an_ordinary_release_forces_a_fresh_start() {
1502 let mut t = task("retry");
1503 t.start("run-1".to_owned());
1504 t.requeue();
1505 assert!(t.fresh_start);
1506
1507 t.release();
1508 assert!(!t.fresh_start);
1509 }
1510
1511 #[test]
1512 fn priority_can_be_changed_while_queued_but_not_while_running() {
1513 let mut t = task("reprioritise me");
1514 t.set_priority(5).unwrap();
1515 assert_eq!(t.priority, 5);
1516
1517 t.start("run-1".to_owned());
1518 let err = t.set_priority(9).unwrap_err().to_string();
1519 assert!(err.contains("running"), "{err}");
1520 assert_eq!(t.priority, 5, "the rejected write must not partially apply");
1521 }
1522
1523 #[test]
1524 fn interrupt_can_be_marked_while_queued_but_not_while_running() {
1525 let mut t = task("interrupt me");
1526 assert!(!t.interrupt, "off unless asked, same as any other task");
1527
1528 t.set_interrupt(true).unwrap();
1529 assert!(t.interrupt);
1530
1531 t.start("run-1".to_owned());
1532 assert!(
1533 !t.interrupt,
1534 "the mark is one-shot: dispatching the task fulfils it, \
1535 whatever the run that follows ends up doing"
1536 );
1537 let err = t.set_interrupt(true).unwrap_err().to_string();
1538 assert!(err.contains("running"), "{err}");
1539 // Clearing is always allowed, even on a running task - there is
1540 // nothing left for it to interrupt once it has been claimed.
1541 t.set_interrupt(false).unwrap();
1542 assert!(!t.interrupt);
1543 }
1544
1545 /// R2-1-1: a task whose run fails and requeues must not go on
1546 /// re-triggering `crate::daemon`'s interrupt scheduler on every later
1547 /// boundary, attempt after attempt, until it exhausts its budget.
1548 #[test]
1549 fn a_failed_run_does_not_leave_the_task_still_marked_to_interrupt() {
1550 let mut t = task("interrupt me");
1551 t.set_interrupt(true).unwrap();
1552 t.start("run-1".to_owned());
1553 t.fail("mock failure", 5);
1554 assert_eq!(t.status, TaskStatus::Failed);
1555 assert!(
1556 !t.interrupt,
1557 "one attempt already spent the mark; a retry is an ordinary \
1558 requeue, not a fresh interrupt request"
1559 );
1560 }
1561
1562 #[test]
1563 fn changing_priority_moves_a_task_ahead_in_the_real_queue_order() {
1564 let (_dir, q) = queue();
1565 let mut a = task("first filed");
1566 let mut b = task("second filed");
1567 a.id = "20260101-000001-aaaa".to_owned();
1568 b.id = "20260101-000002-bbbb".to_owned();
1569 q.put(&mut a).unwrap();
1570 q.put(&mut b).unwrap();
1571
1572 assert_eq!(
1573 q.next_runnable().unwrap().id,
1574 a.id,
1575 "with equal priority the older task goes first, so a burst of \
1576 new work cannot starve it"
1577 );
1578 assert_eq!(
1579 q.list()[0].id,
1580 b.id,
1581 "but the list an operator reads is newest first, the same as \
1582 before priority existed - a's turn to run does not make it the \
1583 newest task"
1584 );
1585
1586 let mut a = q.get(&a.id).unwrap();
1587 a.set_priority(10).unwrap();
1588 q.put(&mut a).unwrap();
1589
1590 assert_eq!(
1591 q.next_runnable().unwrap().id,
1592 a.id,
1593 "a raised priority must be reflected the moment it is saved"
1594 );
1595 // `magi task list` and `GET /api/queue` both print `Queue::list()`
1596 // directly, so the raised task has to lead there too - not only in
1597 // what the loop would claim next.
1598 assert_eq!(
1599 q.list()[0].id,
1600 a.id,
1601 "the raised task must sort first in the list an operator reads, \
1602 not only in next_runnable's own ordering"
1603 );
1604 }
1605
1606 #[test]
1607 fn editing_replaces_title_and_instruction_but_keeps_identity_and_history() {
1608 let mut t = Task::new(
1609 "old title".to_owned(),
1610 "old instruction".to_owned(),
1611 PathBuf::from("/repo"),
1612 Source::Agent {
1613 run: "20260101-000000-beef".to_owned(),
1614 node: "implement".to_owned(),
1615 },
1616 );
1617 let id = t.id.clone();
1618 let created_at = t.created_at;
1619 t.runs.push("20260101-000000-beef".to_owned());
1620
1621 t.edit("new title".to_owned(), "new instruction".to_owned())
1622 .unwrap();
1623
1624 assert_eq!(t.title, "new title");
1625 assert_eq!(t.instruction, "new instruction");
1626 assert_eq!(t.id, id, "editing must not mint a new id");
1627 assert_eq!(t.created_at, created_at);
1628 assert_eq!(
1629 t.source,
1630 Source::Agent {
1631 run: "20260101-000000-beef".to_owned(),
1632 node: "implement".to_owned(),
1633 },
1634 "editing must not turn agent attribution into human"
1635 );
1636 assert_eq!(t.runs, ["20260101-000000-beef"]);
1637 }
1638
1639 #[test]
1640 fn editing_is_refused_once_a_task_is_running_or_finished() {
1641 let mut running = task("in flight");
1642 running.start("run-1".to_owned());
1643 let err = running
1644 .edit("x".to_owned(), "y".to_owned())
1645 .unwrap_err()
1646 .to_string();
1647 assert!(err.contains("running"), "{err}");
1648
1649 let mut done = task("finished");
1650 done.succeed();
1651 let err = done
1652 .edit("x".to_owned(), "y".to_owned())
1653 .unwrap_err()
1654 .to_string();
1655 assert!(err.contains("done"), "{err}");
1656
1657 // Both queued and held are the point of the feature and must work.
1658 let mut queued = task("waiting");
1659 queued.edit("x".to_owned(), "y".to_owned()).unwrap();
1660 let mut held = task("parked");
1661 held.hold_machine(None);
1662 held.edit("x".to_owned(), "y".to_owned()).unwrap();
1663 }
1664
1665 #[test]
1666 fn a_task_recorded_without_a_hold_reason_still_reads_as_none() {
1667 let (_dir, q) = queue();
1668 let path = q.path_of("20260101-000000-aaaa");
1669 std::fs::create_dir_all(q.root()).unwrap();
1670 std::fs::write(
1671 &path,
1672 serde_json::json!({
1673 "schema": SCHEMA,
1674 "id": "20260101-000000-aaaa",
1675 "title": "from before hold reasons existed",
1676 "instruction": "from before hold reasons existed",
1677 "repo": ".",
1678 "source": { "kind": "human" },
1679 "status": "held",
1680 "created_at": Timestamp::now().to_string(),
1681 "updated_at": Timestamp::now().to_string(),
1682 })
1683 .to_string(),
1684 )
1685 .unwrap();
1686
1687 let task = q.get("20260101-000000-aaaa").expect("must still read");
1688 assert!(task.hold_reason.is_none());
1689 assert!(task.operator_held());
1690 }
1691
1692 #[test]
1693 fn a_legacy_reasoned_hold_defaults_to_operator_protection() {
1694 let (_dir, q) = queue();
1695 let path = q.path_of("20260101-000000-bbbb");
1696 std::fs::create_dir_all(q.root()).unwrap();
1697 std::fs::write(
1698 &path,
1699 serde_json::json!({
1700 "schema": 2,
1701 "id": "20260101-000000-bbbb",
1702 "title": "old manual recovery",
1703 "instruction": "old manual recovery",
1704 "repo": ".",
1705 "source": { "kind": "human" },
1706 "status": "held",
1707 "hold_reason": "active manual recovery run20260912-224242-daf5",
1708 "created_at": Timestamp::now().to_string(),
1709 "updated_at": Timestamp::now().to_string(),
1710 })
1711 .to_string(),
1712 )
1713 .unwrap();
1714
1715 let task = q.get("20260101-000000-bbbb").expect("must still read");
1716 assert_eq!(task.hold_source, None);
1717 assert!(task.operator_held());
1718 }
1719
1720 #[test]
1721 fn a_task_recorded_without_a_diagnostic_still_reads_as_none() {
1722 let (_dir, q) = queue();
1723 let path = q.path_of("20260101-000000-aaaa");
1724 std::fs::create_dir_all(q.root()).unwrap();
1725 std::fs::write(
1726 &path,
1727 serde_json::json!({
1728 "schema": SCHEMA,
1729 "id": "20260101-000000-aaaa",
1730 "title": "from before diagnostics existed",
1731 "instruction": "from before diagnostics existed",
1732 "repo": ".",
1733 "source": { "kind": "human" },
1734 "status": "held",
1735 "created_at": Timestamp::now().to_string(),
1736 "updated_at": Timestamp::now().to_string(),
1737 })
1738 .to_string(),
1739 )
1740 .unwrap();
1741
1742 let task = q.get("20260101-000000-aaaa").expect("must still read");
1743 assert!(task.diagnostic.is_none());
1744 }
1745
1746 #[test]
1747 fn a_schema_1_task_with_no_blocking_fields_still_reads() {
1748 // Written by a build that predates `blocked_by`, `block_reason`,
1749 // `answers` and `review_branch` entirely - literal `"schema": 1`,
1750 // not `SCHEMA`, since the whole point is a build older than this one.
1751 let (_dir, q) = queue();
1752 let path = q.path_of("20260101-000000-aaaa");
1753 std::fs::create_dir_all(q.root()).unwrap();
1754 std::fs::write(
1755 &path,
1756 serde_json::json!({
1757 "schema": 1,
1758 "id": "20260101-000000-aaaa",
1759 "title": "from before blocking existed",
1760 "instruction": "from before blocking existed",
1761 "repo": ".",
1762 "source": { "kind": "human" },
1763 "status": "queued",
1764 "created_at": Timestamp::now().to_string(),
1765 "updated_at": Timestamp::now().to_string(),
1766 })
1767 .to_string(),
1768 )
1769 .unwrap();
1770
1771 let task = q.get("20260101-000000-aaaa").expect("must still read");
1772 assert!(task.blocked_by.is_empty());
1773 assert!(task.block_reason.is_none());
1774 assert!(task.answers.is_empty());
1775 assert!(task.review_branch.is_none());
1776 }
1777
1778 #[test]
1779 fn releasing_or_finishing_a_task_clears_its_stale_diagnostic() {
1780 // A diagnostic belongs to the run that produced it. Left in place
1781 // across a release, an unrelated later failure - a config error, say -
1782 // would go on showing evidence for a problem that is no longer why the
1783 // task is stuck.
1784 let mut held = task("diagnosed");
1785 held.start("run-1".to_owned());
1786 held.fail("gate red", 1);
1787 held.diagnostic = Some("cargo test failed: ...".to_owned());
1788 assert_eq!(held.status, TaskStatus::Held);
1789
1790 held.release();
1791 assert!(held.diagnostic.is_none());
1792
1793 held.diagnostic = Some("cargo test failed: ...".to_owned());
1794 held.succeed();
1795 assert!(held.diagnostic.is_none());
1796 }
1797
1798 #[test]
1799 fn failing_a_task_always_clears_whatever_diagnostic_it_carried() {
1800 let mut t = task("retried");
1801 t.start("run-1".to_owned());
1802 t.diagnostic = Some("stale evidence from a previous hold".to_owned());
1803 t.fail("unrelated config error", 5);
1804 assert_eq!(t.status, TaskStatus::Failed);
1805 assert!(
1806 t.diagnostic.is_none(),
1807 "fail() must not let an old diagnostic outlive the run that produced it"
1808 );
1809 }
1810
1811 #[test]
1812 fn a_claim_is_exclusive_and_releases_on_drop() {
1813 let (_dir, q) = queue();
1814 let mut t = task("contended");
1815 q.put(&mut t).unwrap();
1816
1817 let held = q.claim(&t.id).unwrap();
1818 assert!(
1819 q.claim(&t.id).is_err(),
1820 "two daemons must not drive one task into two runs"
1821 );
1822 drop(held);
1823 assert!(q.claim(&t.id).is_ok(), "a released claim is reclaimable");
1824 }
1825
1826 #[test]
1827 fn a_round_trip_survives_disk() {
1828 let (_dir, q) = queue();
1829 let mut t = Task::new(
1830 "titled".to_owned(),
1831 "body".to_owned(),
1832 PathBuf::from("/repo"),
1833 Source::Agent {
1834 run: "20260101-000000-beef".to_owned(),
1835 node: "implement".to_owned(),
1836 },
1837 );
1838 t.priority = 3;
1839 q.put(&mut t).unwrap();
1840
1841 let back = q.get(&t.id).unwrap();
1842 assert_eq!(back.id, t.id);
1843 assert_eq!(back.priority, 3);
1844 assert_eq!(back.source.label(), "implement@beef");
1845 // A prefix is enough, the way run ids work everywhere else.
1846 assert_eq!(q.get(t.short()).unwrap().id, t.id);
1847 }
1848
1849 #[test]
1850 fn an_unreadable_task_does_not_take_the_queue_down() {
1851 let (_dir, q) = queue();
1852 let mut t = task("fine");
1853 q.put(&mut t).unwrap();
1854 std::fs::write(q.root().join("broken.json"), "{ not json").unwrap();
1855
1856 let listed = q.list();
1857 assert_eq!(listed.len(), 1, "the readable task still lists");
1858 assert_eq!(listed[0].id, t.id);
1859 }
1860
1861 #[test]
1862 fn a_task_recorded_without_a_solo_field_still_reads_as_not_solo() {
1863 let (_dir, q) = queue();
1864 let path = q.path_of("20260101-000000-aaaa");
1865 std::fs::create_dir_all(q.root()).unwrap();
1866 std::fs::write(
1867 &path,
1868 serde_json::json!({
1869 "schema": SCHEMA,
1870 "id": "20260101-000000-aaaa",
1871 "title": "from before solo existed",
1872 "instruction": "from before solo existed",
1873 "repo": ".",
1874 "source": { "kind": "human" },
1875 "status": "queued",
1876 "created_at": Timestamp::now().to_string(),
1877 "updated_at": Timestamp::now().to_string(),
1878 })
1879 .to_string(),
1880 )
1881 .unwrap();
1882
1883 let task = q.get("20260101-000000-aaaa").expect("must still read");
1884 assert!(!task.solo, "a queue file with no `solo` field means false");
1885 }
1886
1887 #[test]
1888 fn a_task_from_a_future_schema_is_refused_rather_than_guessed_at() {
1889 let (_dir, q) = queue();
1890 let mut t = task("from the future");
1891 q.put(&mut t).unwrap();
1892 let path = q.path_of(&t.id);
1893 let body = std::fs::read_to_string(&path)
1894 .unwrap()
1895 .replace(&format!("\"schema\": {SCHEMA}"), "\"schema\": 99");
1896 std::fs::write(&path, body).unwrap();
1897
1898 let err = q.get(&t.id).unwrap_err().to_string();
1899 assert!(err.contains("schema 99"), "{err}");
1900 }
1901
1902 #[test]
1903 fn revision_moves_when_the_queue_changes() {
1904 let (_dir, q) = queue();
1905 assert_eq!(q.revision(), 0, "an empty queue has no revision");
1906 let mut t = task("first");
1907 q.put(&mut t).unwrap();
1908 assert!(q.revision() > 0, "a written task moves the revision");
1909 }
1910
1911 #[test]
1912 fn revision_moves_when_deleting_an_older_task() {
1913 let (dir, q) = queue();
1914 let questions = Questions::at(dir.path().join("questions"));
1915 let mut t1 = task("older");
1916 q.put(&mut t1).unwrap();
1917 // Ensure mtime ticks forward.
1918 std::thread::sleep(std::time::Duration::from_millis(10));
1919 let mut t2 = task("newer");
1920 q.put(&mut t2).unwrap();
1921
1922 let rev_before = q.revision();
1923 q.remove(&t1.id, false, &questions).unwrap();
1924 let rev_after = q.revision();
1925
1926 assert_ne!(
1927 rev_before, rev_after,
1928 "deleting an older task must change the revision so other clients see the deletion"
1929 );
1930 }
1931
1932 #[test]
1933 fn removing_a_task_takes_it_out_of_the_listing() {
1934 let (dir, q) = queue();
1935 let questions = Questions::at(dir.path().join("questions"));
1936 let mut t = task("delete me");
1937 q.put(&mut t).unwrap();
1938 let removed = q.remove(t.short(), false, &questions).unwrap();
1939 assert_eq!(removed.id, t.id, "a prefix resolves before deleting");
1940 assert!(removed.quarantined.is_empty(), "nothing was blocked on it");
1941 assert!(q.list().is_empty());
1942 assert!(
1943 q.remove(&t.id, false, &questions).is_err(),
1944 "removing twice is an error"
1945 );
1946 }
1947
1948 #[test]
1949 fn removing_a_task_takes_its_stale_lock_with_it() {
1950 let (dir, q) = queue();
1951 let questions = Questions::at(dir.path().join("questions"));
1952 let mut t = task("interrupted");
1953 q.put(&mut t).unwrap();
1954
1955 // A daemon killed mid-run leaves this behind. Nothing holds it: the
1956 // process that would have dropped the guard is gone.
1957 let claim = q.claim(&t.id).unwrap();
1958 std::mem::forget(claim);
1959 assert!(
1960 q.claim(&t.id).is_err(),
1961 "the orphaned lock is what makes the task look claimed"
1962 );
1963
1964 // A live daemon on this task is refused, whatever the lock says.
1965 let err = q.remove(&t.id, true, &questions).unwrap_err().to_string();
1966 assert!(err.contains("live daemon"), "{err}");
1967 assert!(q.get(&t.id).is_ok(), "a refused delete keeps the task");
1968
1969 // With no daemon behind it, the lock is stale and goes with the task.
1970 q.remove(&t.id, false, &questions).unwrap();
1971 assert!(q.list().is_empty());
1972 let mut again = task("interrupted");
1973 again.id = t.id.clone();
1974 q.put(&mut again).unwrap();
1975 assert!(
1976 q.claim(&t.id).is_ok(),
1977 "a task that comes back must be claimable, which a left-behind lock would prevent"
1978 );
1979 }
1980
1981 #[test]
1982 fn removing_a_task_quarantines_what_was_blocked_on_it() {
1983 let (dir, q) = queue();
1984 let questions = Questions::at(dir.path().join("questions"));
1985
1986 let mut dep = task("dependency");
1987 q.put(&mut dep).unwrap();
1988
1989 let mut still_valid = task("still valid");
1990 q.put(&mut still_valid).unwrap();
1991
1992 let mut blocked = task("waiting");
1993 blocked.block(
1994 vec![dep.id.clone(), still_valid.id.clone()],
1995 Some("waits on both".to_owned()),
1996 );
1997 q.put(&mut blocked).unwrap();
1998
1999 let removed = q.remove(&dep.id, false, &questions).unwrap();
2000 assert_eq!(removed.quarantined, [blocked.id.clone()]);
2001
2002 let after = q.get(&blocked.id).unwrap();
2003 assert_eq!(after.status, TaskStatus::Held);
2004 assert_eq!(after.hold_source, Some(HoldSource::Machine));
2005 assert!(after.blocked_by.is_empty());
2006 let reason = after.hold_reason.as_deref().unwrap_or_default();
2007 assert!(reason.contains(&dep.id), "{reason}");
2008 assert!(
2009 reason.contains(&still_valid.id),
2010 "the still-valid dependency must survive in the reason text: {reason}"
2011 );
2012 }
2013}