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magi/
clean.rs

1//! The disk janitor: finished runs get their worktrees folded, worktrees whose
2//! run record is already gone get reclaimed too, and the shared build cache is
3//! pruned to its cap.
4//!
5//! A run's state being written by an older schema is not the same thing as it
6//! being unreadable, and this module used to conflate the two: [`fold_due`]
7//! treated any `run.json` its version check rejected exactly like one that
8//! failed to parse at all, so a single schema bump silently stopped every
9//! automatic fold in the fleet the moment it shipped, and did so with no
10//! counter and no log line to say so. A record magi genuinely cannot parse —
11//! missing fields, broken JSON, a schema newer than this build has ever heard
12//! of — is still left alone here, still counted in
13//! [`Housekeeping::unreadable`], and still only ever removed by an explicit
14//! operator action (`magi fold`, or the equivalent phone route). One written
15//! by a schema this build merely disagrees with the *meaning* of is not that:
16//! as long as it still parses, folding proceeds regardless of the number in
17//! its `schema` field.
18//!
19//! Everything policy-shaped — which statuses are foldable, how long a finished
20//! run is left alone, whether the cache is over its limit — is a pure function
21//! injected with numbers, so nothing here has to ask the operating system to
22//! be testable. The only I/O is the removal itself.
23
24use std::collections::BTreeSet;
25use std::path::{Path, PathBuf};
26
27use anyhow::{Context as _, Result, bail};
28use jiff::{SignedDuration, Timestamp};
29use serde::Deserialize;
30
31use crate::ask::Questions;
32use crate::config::Disk;
33use crate::run::{RunState, RunStatus, SCHEMA, short_of};
34
35use crate::disk::{Prune, dir_size};
36
37/// What one janitor pass did, for the caller's log line.
38#[derive(Debug, Clone, Copy, Default, PartialEq, Eq)]
39pub struct Housekeeping {
40    /// Runs folded (worktrees dropped).
41    pub folded: usize,
42    /// Runs [`fold_due`] left alone because their `run.json` genuinely could
43    /// not be read - missing, broken JSON, a schema this build has never
44    /// heard of - as opposed to one merely written by a different schema
45    /// number, which is folded like any other (see the module docs). This was
46    /// defined but never incremented for a long stretch of this module's
47    /// history, which is exactly how 90 of 93 runs sat unfolded on one
48    /// operator's machine with nothing anywhere saying why: every one of them
49    /// was misclassified as unreadable by a schema check that has since been
50    /// narrowed to only the runs that actually are.
51    pub unreadable: usize,
52    /// Worktrees under the worktree bay reclaimed because no run record in
53    /// `runs/` claims them anymore (see [`fold_orphaned_worktrees`]).
54    pub orphaned_worktrees: usize,
55    /// Files dropped from the shared cache.
56    pub cache_files: usize,
57    /// Bytes freed from the shared cache.
58    pub cache_freed: u64,
59    /// Open questions abandoned because the run that asked them has already
60    /// settled where nothing is coming back to read an answer.
61    pub questions_abandoned: usize,
62    /// Runs found blocked on a merge magi never recorded — a pull request the
63    /// operator merged by hand while `land::land` never got as far as
64    /// opening one itself — and corrected automatically. See
65    /// [`reconcile_external_merges`].
66    pub external_merges_recorded: usize,
67}
68
69/// Run the janitor: fold due runs, reclaim orphaned worktrees, prune stale
70/// worktree registrations, then prune the cache if it is over its cap.
71///
72/// Every part is best-effort; a jammed cache lock or a run whose worktree
73/// another borrower holds must not stop the rest. Errors are reported through
74/// `tracing::warn` - this is housekeeping, and the daemon keeps serving
75/// either way.
76pub async fn housekeep(
77    cfg: &crate::config::Config,
78    home: &Path,
79    worktrees_root: &Path,
80    repo: &Path,
81    now: Timestamp,
82) -> Housekeeping {
83    let mut out = Housekeeping::default();
84    if cfg.disk.auto_fold {
85        let runs = home.join("runs");
86        match fold_due(&runs, home, worktrees_root, &cfg.disk, now).await {
87            Ok((folded, unreadable)) => {
88                out.folded = folded;
89                out.unreadable = unreadable;
90            }
91            Err(e) => {
92                tracing::warn!("housekeep: fold due runs: {e:#}");
93                // Stable wording: the reason varies per pass, and a changed
94                // message would relight the bell on every retry.
95                crate::notices::raise_in(
96                    home,
97                    crate::notices::Notice::warn(
98                        "housekeep:fold",
99                        "Automatic cleanup of finished runs failed; disk usage may keep growing.",
100                    ),
101                );
102            }
103        }
104        out.orphaned_worktrees =
105            fold_orphaned_worktrees(&runs, worktrees_root, home, cfg.disk.fold_grace_secs, now)
106                .await;
107        // Best-effort in the same sense as everything else here: a repository
108        // this janitor pass has nothing to do with (or none at all, in a unit
109        // test) must not turn a `warn` into a reason to skip the rest.
110        if let Err(e) = crate::git::worktree_prune(repo).await {
111            tracing::warn!("housekeep: prune worktree registrations: {e:#}");
112        }
113        out.external_merges_recorded = reconcile_external_merges(&runs, home, &cfg.disk, now).await;
114    }
115    match prune_cache_if_over_limit(cfg, home) {
116        Ok(Some(pruned)) => {
117            out.cache_files = pruned.files;
118            out.cache_freed = pruned.freed;
119        }
120        Ok(None) => {}
121        Err(e) => tracing::warn!("housekeep: prune cache: {e:#}"),
122    }
123    // Unconditional, unlike the two passes above: this is not a disk policy
124    // with a cap or an opt-out, it is closing a gap `graph::Runner` itself
125    // cannot - a run that reached `Merged`/`Ready`/`Failed` before this
126    // cleanup existed, or whose process died between saving that status and
127    // abandoning the question it leaves behind (see `Runner::settle_questions`).
128    // Left alone, that question sits `open` forever: the owner's badge,
129    // banner and title all keep counting a decision nobody is left to read.
130    out.questions_abandoned =
131        abandon_settled_questions(&Questions::at(home.join("questions")), &home.join("runs"));
132    out
133}
134
135/// Abandon every open question whose run has already settled into a status
136/// nothing comes back from, worded with what the run became - the same
137/// cleanup `graph::Runner::settle_questions` runs the moment `status` lands
138/// there, for questions that missed it.
139///
140/// Scans questions rather than runs: the open list is normally short, and a
141/// run that never asked anything costs nothing here. A run this cannot read,
142/// deleted or written by a schema this build does not speak, is left alone
143/// the same as everywhere else in this module; the question stays open
144/// rather than guessed at.
145pub fn abandon_settled_questions(store: &Questions, runs: &Path) -> usize {
146    let waiting_on: BTreeSet<String> = store
147        .list()
148        .into_iter()
149        .filter(|q| q.status.open())
150        .map(|q| q.run)
151        .collect();
152    let mut abandoned = 0;
153    for run in waiting_on {
154        let Ok(meta) = read_meta(runs, &run) else {
155            continue;
156        };
157        match store.settle_run(&run, meta.status) {
158            Ok(n) => abandoned += n,
159            Err(e) => tracing::warn!("housekeep: abandon questions for {run}: {e:#}"),
160        }
161    }
162    abandoned
163}
164
165/// Fold every run that is finished, older than the grace period, and not being
166/// worked on; return `(folded, unreadable)`.
167///
168/// A run whose `run.json` genuinely cannot be parsed — missing fields, broken
169/// JSON, a schema newer than this build has ever heard of — is left exactly
170/// as it is. Automatic housekeeping cannot tell a mid-write file from one that
171/// will never parse again, and `<home>/runs/<id>/` is the evidence `magi
172/// stats` and the deck read; when unsure whether it is safe to touch, the
173/// janitor keeps rather than deletes (see the module docs). Discarding a
174/// record this unreadable is an explicit operator action (`magi fold`, or the
175/// equivalent phone route), never something that happens unattended. Every
176/// such skip is counted in the returned `unreadable` and logged through
177/// `tracing::warn` with the parse failure that caused it - silence here is
178/// exactly the failure mode that let 90 of 93 runs sit unfolded with nothing
179/// to show for it.
180///
181/// A run merely written by a *different* schema number is not unreadable: as
182/// long as `run.json` still parses, it folds like any other terminal run (see
183/// the module docs for why the two are different questions).
184///
185/// Runnable statuses and runs newer than the grace period are also left
186/// alone; folding them would throw away work that is still the answer to
187/// somebody's question. `Merged` runs forget their winner's worktree (the
188/// merge already landed it); `Ready` and `Failed` runs keep it.
189pub async fn fold_due(
190    runs: &Path,
191    home: &Path,
192    _worktrees_root: &Path,
193    disk: &Disk,
194    now: Timestamp,
195) -> Result<(usize, usize)> {
196    let mut folded = 0usize;
197    let mut unreadable = 0usize;
198    let mut ids: Vec<String> = std::fs::read_dir(runs)
199        .into_iter()
200        .flatten()
201        .flatten()
202        .filter(|e| e.path().join("run.json").is_file())
203        .map(|e| e.file_name().to_string_lossy().into_owned())
204        .collect();
205    ids.sort_unstable();
206    for id in ids {
207        if crate::daemon::is_working_on(home, &id, now) {
208            continue;
209        }
210        let meta = match read_meta(runs, &id) {
211            Ok(meta) => meta,
212            Err(e) => {
213                unreadable += 1;
214                tracing::warn!("housekeep: run {id} unreadable, left alone: {e:#}");
215                continue;
216            }
217        };
218        if meta.status.resumable() || !due(now, meta.updated_at, disk.fold_grace_secs) {
219            continue;
220        }
221        // `read_meta` already proved the file parses; `read_state` asks for
222        // the rest of the fields `graph::fold_run` needs (worktree paths,
223        // candidates, tally). A schema mismatch alone does not fail this -
224        // see the module docs - so reaching `Err` here means the JSON itself
225        // is broken in a way `read_meta` did not exercise, which is rare but
226        // not impossible (a body truncated between the two fields it reads
227        // and the rest). That must not cost every other run its turn through
228        // this loop, so it is a skip, not a `?`.
229        let mut state = match read_state(runs, &id) {
230            Ok(state) => state,
231            Err(e) => {
232                unreadable += 1;
233                tracing::warn!("housekeep: run {id} unreadable, left alone: {e:#}");
234                continue;
235            }
236        };
237        if state.schema != SCHEMA {
238            tracing::info!(
239                "housekeep: run {id} was written by schema {} (this build speaks {SCHEMA}); \
240                 folding it anyway",
241                state.schema
242            );
243        }
244        let drop_winner = state.status == RunStatus::Merged;
245        // One run's fold must not cost every later run its turn. A worktree
246        // another borrower holds, a branch git refuses to delete, a repository
247        // that has since moved: each is a reason this run cannot be folded
248        // now, and none is a reason to stop the pass. Left unfolded, it is
249        // simply due again next time; a `?` here stopped automatic folding
250        // permanently at the first such run (finding R3-1-1 of run 51a3).
251        match crate::graph::fold_run(&mut state, drop_winner, home).await {
252            Ok(_) => folded += 1,
253            Err(e) => tracing::warn!("housekeep: fold {id}: {e:#}"),
254        }
255    }
256    Ok((folded, unreadable))
257}
258
259/// Is `updated` old enough, measured against `now`, that the run may fold?
260///
261/// Pure; the janitor compares against wallclock, tests inject both sides. The
262/// comparison is strict, so a run exactly at the edge of its grace period is
263/// left alone one more pass — the same convention as [`crate::disk::over_limit`].
264pub fn due(now: Timestamp, updated: Timestamp, grace_secs: u64) -> bool {
265    now.duration_since(updated) > SignedDuration::new(grace_secs as i64, 0)
266}
267
268/// The two fields the janitor decides on, read with a serde that tolerates
269/// everything else about the run being unreadable.
270#[derive(Deserialize)]
271struct Meta {
272    status: RunStatus,
273    updated_at: Timestamp,
274}
275
276/// Read `status` and `updated_at` straight off the state file, asking for
277/// nothing else. `Err` when the file is missing, not parseable, or a status in
278/// a version this build does not speak - all of which mean "unreadable".
279fn read_meta(runs: &Path, id: &str) -> Result<Meta> {
280    let path = runs.join(id).join("run.json");
281    let body =
282        std::fs::read_to_string(&path).with_context(|| format!("read {}", path.display()))?;
283    let meta: Meta =
284        serde_json::from_str(&body).with_context(|| format!("parse {}", path.display()))?;
285    Ok(meta)
286}
287
288/// Runs checked against GitHub in one janitor pass, at most.
289///
290/// A fleet with many stuck runs must not turn every idle tick into a burst of
291/// `gh pr list` calls; a run left unchecked this pass is checked again next
292/// pass, same as an unfolded due run is.
293const MAX_EXTERNAL_MERGE_CHECKS_PER_PASS: usize = 5;
294
295/// The fields [`reconcile_external_merges`] filters on before paying for a
296/// full [`RunState`] parse or a `gh` round trip.
297#[derive(Deserialize)]
298struct ExternalMergeMeta {
299    status: RunStatus,
300    updated_at: Timestamp,
301    #[serde(default)]
302    merge: Option<crate::run::MergeOutcome>,
303}
304
305fn read_external_merge_meta(runs: &Path, id: &str) -> Result<ExternalMergeMeta> {
306    let path = runs.join(id).join("run.json");
307    let body =
308        std::fs::read_to_string(&path).with_context(|| format!("read {}", path.display()))?;
309    let meta: ExternalMergeMeta =
310        serde_json::from_str(&body).with_context(|| format!("parse {}", path.display()))?;
311    Ok(meta)
312}
313
314/// Is a run worth asking GitHub about?
315///
316/// Pure, so the filter itself is assertable without a fixture that writes
317/// `run.json` files or spawns `gh`. Narrower than "blocked": `merge_recorded`
318/// excludes a run `land::land` already finished landing (successfully or
319/// not) - that path already carries its own record of what happened - and
320/// `due` gives an operator who is about to fix a run by hand a grace window
321/// before the janitor starts asking the same question about it.
322pub fn eligible_for_external_merge_check(
323    status: RunStatus,
324    merge_recorded: bool,
325    updated_at: Timestamp,
326    now: Timestamp,
327    grace_secs: u64,
328) -> bool {
329    status == RunStatus::Blocked && !merge_recorded && due(now, updated_at, grace_secs)
330}
331
332/// Rotate `ids` so a fixed per-pass cap does not always land on the same
333/// prefix of the list, starting at `start` (already reduced modulo nothing -
334/// callers pass whatever a persisted cursor last recorded, and this takes it
335/// modulo `ids.len()` itself).
336///
337/// Pure: the offset is the caller's problem, not wall-clock time. An earlier
338/// version derived `start` from `now.as_second() % ids.len()`, which looked
339/// independent of any state to persist but is not actually independent of
340/// how often the janitor runs - a poll interval and a pass's own duration
341/// that alias onto the same handful of `now.as_second()` values (say, a
342/// ten-second poll and a pass that finishes in under a second) revisit only
343/// those same few residues forever and never advance into the rest of the
344/// list at all. [`reconcile_external_merges`] instead persists a cursor
345/// across passes ([`read_external_merge_cursor`] /
346/// [`write_external_merge_cursor`]) and advances it by exactly how many ids
347/// this pass actually looked at, which is the only quantity that is
348/// guaranteed to move forward pass over pass regardless of timing.
349fn rotate_from(ids: &[String], start: usize) -> Vec<String> {
350    if ids.is_empty() {
351        return Vec::new();
352    }
353    let start = start % ids.len();
354    ids[start..]
355        .iter()
356        .chain(ids[..start].iter())
357        .cloned()
358        .collect()
359}
360
361/// Where [`reconcile_external_merges`] remembers how far it got, so a fixed
362/// per-pass cap advances through a fleet's eligible runs pass over pass
363/// instead of camping on whichever ones happen to sort first.
364const EXTERNAL_MERGE_CURSOR_FILE: &str = "external-merge-cursor";
365
366/// `0` for anything this cannot read as a plain number - a first run, a
367/// corrupt or missing file, a build that has never written one - which is
368/// exactly as good a starting point as any: the cursor's whole job is to
369/// keep moving, not to encode any particular position as meaningful.
370fn read_external_merge_cursor(home: &Path) -> usize {
371    std::fs::read_to_string(home.join(EXTERNAL_MERGE_CURSOR_FILE))
372        .ok()
373        .and_then(|s| s.trim().parse().ok())
374        .unwrap_or(0)
375}
376
377/// Best-effort, like every other write in this module's sweep: a failure to
378/// persist the cursor costs the fleet one pass's worth of forward progress
379/// on this sweep, never the run whose housekeeping it is racing to keep up
380/// with.
381fn write_external_merge_cursor(home: &Path, cursor: usize) {
382    if let Err(e) = std::fs::write(home.join(EXTERNAL_MERGE_CURSOR_FILE), cursor.to_string()) {
383        tracing::warn!("housekeep: persist the external-merge sweep's cursor: {e:#}");
384    }
385}
386
387/// Close the gap `magi fold --merged` exists for, without waiting for an
388/// operator to notice and go find the pull request URL: a run that stopped
389/// `Blocked` with no `merge` recorded may have been merged anyway, by hand,
390/// on a pull request `land::land` never opened or never got to observe as
391/// merged. `land::find_external_merge` asks GitHub about the run's own
392/// winning branch, and only a pull request it can uniquely tie back to this
393/// run is ever acted on - see that function's own doc for what "uniquely"
394/// excludes.
395///
396/// A run this finds and fixes goes through
397/// [`crate::land::correct_confirmed_external_merge`] - the same correction
398/// `magi fold --merged` performs, minus the same-repo guard that command
399/// needs and this loop doesn't (see that function's own doc: the URL here
400/// was never operator-supplied, it came from asking `state.repo`'s own
401/// remote) - then through [`crate::graph::fold_run`] so it stops holding
402/// worktrees the moment it stops needing them. A run this cannot decide
403/// about - `gh` unreachable, more than one candidate pull
404/// request, nothing found at all - is left exactly as it is; only an error
405/// asking GitHub raises a notice, since "nothing found" is the ordinary,
406/// expected shape of a run that really is just blocked.
407async fn reconcile_external_merges(runs: &Path, home: &Path, disk: &Disk, now: Timestamp) -> usize {
408    let mut ids: Vec<String> = std::fs::read_dir(runs)
409        .into_iter()
410        .flatten()
411        .flatten()
412        .filter(|e| e.path().join("run.json").is_file())
413        .map(|e| e.file_name().to_string_lossy().into_owned())
414        .collect();
415    ids.sort_unstable();
416
417    // Every eligible id first, cheaply (a `Meta` read, no `gh`), then rotated
418    // before the cap is applied. Capping the sorted order directly would
419    // always land on the same lexicographic prefix - a fleet's oldest run ids
420    // - so a handful of long-blocked runs that never turn out to be merged
421    // would starve every id after them of a `gh` check, forever.
422    let mut eligible: Vec<String> = Vec::new();
423    for id in ids {
424        if crate::daemon::is_working_on(home, &id, now) {
425            continue;
426        }
427        let meta = match read_external_merge_meta(runs, &id) {
428            Ok(meta) => meta,
429            // Already counted as unreadable by `fold_due`'s own pass; not
430            // worth a second warning for the same file.
431            Err(_) => continue,
432        };
433        if eligible_for_external_merge_check(
434            meta.status,
435            meta.merge.is_some(),
436            meta.updated_at,
437            now,
438            disk.fold_grace_secs,
439        ) {
440            eligible.push(id);
441        }
442    }
443
444    if eligible.is_empty() {
445        return 0;
446    }
447    let cursor = read_external_merge_cursor(home);
448    let window: Vec<String> = rotate_from(&eligible, cursor)
449        .into_iter()
450        .take(MAX_EXTERNAL_MERGE_CHECKS_PER_PASS)
451        .collect();
452    // Advances by exactly how many ids this pass looked at, regardless of
453    // what came of looking - a run that turned out not to be merged after
454    // all must not be revisited before every other eligible run has had its
455    // own turn.
456    write_external_merge_cursor(home, (cursor + window.len()) % eligible.len());
457
458    let mut reconciled = 0usize;
459    for id in window {
460        let mut state = match read_state(runs, &id) {
461            Ok(state) => state,
462            Err(_) => continue,
463        };
464        match crate::land::find_external_merge(&state).await {
465            Ok(Some(found)) => {
466                match crate::land::correct_confirmed_external_merge(&mut state, &found.url).await {
467                    Ok(_) => {
468                        if let Err(e) = crate::graph::fold_run(&mut state, true, home).await {
469                            tracing::warn!(
470                                "housekeep: fold {id} after recording its external merge: {e:#}"
471                            );
472                        }
473                        reconciled += 1;
474                    }
475                    Err(e) => tracing::warn!(
476                        "housekeep: record external merge {} for {id}: {e:#}",
477                        found.url
478                    ),
479                }
480            }
481            Ok(None) => {}
482            Err(e) => {
483                tracing::warn!("housekeep: check external merge for {id}: {e:#}");
484                crate::notices::raise_in(
485                    home,
486                    crate::notices::Notice::warn(
487                        &format!("merged-unrecorded:{id}"),
488                        format!(
489                            "Run {id} is blocked with no recorded merge, and checking GitHub \
490                             for a merge failed; check by hand."
491                        ),
492                    ),
493                );
494            }
495        }
496    }
497    reconciled
498}
499
500/// Read a whole run state from a runs directory, for folding only.
501///
502/// Deliberately more permissive than [`RunState::load`], which this does not
503/// call: `load` backs `--resume` and every hand-driven command, where a
504/// schema this build disagrees with the *meaning* of must refuse outright
505/// rather than resume a review round or a tally against stale semantics
506/// (`RunState::SCHEMA`'s own docs list what has changed meaning at each
507/// bump). Folding recomputes nothing - it only reads worktree paths, branch
508/// names and a tally winner off the struct to remove them - so an old
509/// schema's values are exactly as good here as a current one's; every schema
510/// bump so far has only ever added a field or a variant, never repurposed an
511/// existing one, and serde already fills an added field's default when an
512/// older record has nothing to say about it. What this cannot tolerate, and
513/// what still surfaces as an `Err`, is `run.json` failing to parse at all.
514fn read_state(runs: &Path, id: &str) -> Result<RunState> {
515    let path = runs.join(id).join("run.json");
516    let body =
517        std::fs::read_to_string(&path).with_context(|| format!("read {}", path.display()))?;
518    let state: RunState =
519        serde_json::from_str(&body).with_context(|| format!("parse {}", path.display()))?;
520    Ok(state)
521}
522
523/// Remove a run that cannot be read: its state directory under `runs` and its
524/// worktree directory under `worktrees_root`.
525///
526/// The state file is the only record of a run's repository and branches, so a
527/// run this unreadable is discarded at the filesystem level - there is no
528/// candidate list to fold first. The worktrees live under
529/// [`crate::run::default_worktree_root`] unless the run's config relocated
530/// them, which an unreadable run cannot tell us; the default location is
531/// removed, and anything the run placed elsewhere is a leftover for whoever
532/// knows where it went.
533///
534/// Deleting a worktree directory by hand leaves its registration in git, and a
535/// registered path cannot be re-`worktree add`-ed until it is pruned - so every
536/// worktree is unregistered from its repository first, best-effort, via the
537/// `gitdir:` link git keeps inside the directory.
538pub async fn fold_unreadable(runs: &Path, worktrees_root: &Path, id: &str) -> Result<Vec<String>> {
539    let resolved = resolve_id_path(runs, id)?;
540    let mut removed = Vec::new();
541    let run_dir = runs.join(&resolved);
542    if run_dir.exists() {
543        std::fs::remove_dir_all(&run_dir)
544            .with_context(|| format!("remove {}", run_dir.display()))?;
545        removed.push(format!("runs/{resolved}"));
546    }
547    let wt = worktrees_root.join(short_of(&resolved));
548    if wt.exists() {
549        crate::git::remove_worktree_from_linked(&wt).await;
550        for e in std::fs::read_dir(&wt).into_iter().flatten().flatten() {
551            crate::git::remove_worktree_from_linked(&e.path()).await;
552        }
553        std::fs::remove_dir_all(&wt).with_context(|| format!("remove {}", wt.display()))?;
554        removed.push(wt.to_string_lossy().into_owned());
555    }
556    Ok(removed)
557}
558
559/// Reclaim worktrees under `worktrees_root` that no run record in `runs`
560/// claims anymore, and return how many were removed.
561///
562/// [`fold_due`] only ever sees a worktree by walking `runs/` first, so a
563/// worktree whose run record is already gone — `magi run rm`, or a record
564/// deleted before its worktree — never enters that loop at all: nothing there
565/// is looking for it. This walks the worktree bay directly instead, and
566/// removes any `<short>` directory that no run id maps to.
567///
568/// Two things must never happen, and this checks both before ever touching a
569/// directory:
570///
571/// - **A worktree bay is never the only kind of thing under `worktrees_root`,
572///   and this must not assume it is.** A hand-placed scratch directory, or
573///   anything else an operator or another tool left in the same bay, has the
574///   same "no run claims it" shape as a genuine orphan but is not one -
575///   [`looks_like_a_worktree_bay`] is the same tag shape [`crate::run::is_run_id`]
576///   already requires of a real run's short id, and anything else is left
577///   alone regardless of what else is true about it.
578/// - **A worktree that was only just created might not have a `run.json` yet
579///   for a reason that has nothing to do with being orphaned.** `Runner::start`
580///   and `Runner::review` both create the worktree before the first
581///   `RunState::save` lands, and that gap - several `git` subprocesses wide -
582///   is invisible to [`crate::daemon::is_working_on_short`] whenever the run
583///   is not being driven through this daemon's own `poll` loop at all (a
584///   `magi review` invocation, for one). A directory whose own modification
585///   time is within `grace_secs` of `now` is left alone on that basis alone,
586///   the same margin [`fold_due`] gives a run before treating it as truly
587///   finished - long enough that no realistic gap between a `worktree add`
588///   and its `run.json` could ever be mistaken for one.
589///
590/// The one failure this must never cause is deleting the worktree of a run
591/// that is genuinely in flight. [`crate::daemon::is_working_on_short`] is the
592/// same liveness check [`fold_due`] trusts everywhere else in this module,
593/// checked by short id because there is no full id to compare here; when it
594/// cannot tell, this leaves the directory alone. Best-effort like the rest of
595/// housekeeping: one directory git or the filesystem refuses to give up is a
596/// `tracing::warn`, not a reason to abandon the rest of the pass.
597pub async fn fold_orphaned_worktrees(
598    runs: &Path,
599    worktrees_root: &Path,
600    home: &Path,
601    grace_secs: u64,
602    now: Timestamp,
603) -> usize {
604    let known: std::collections::HashSet<String> = std::fs::read_dir(runs)
605        .into_iter()
606        .flatten()
607        .flatten()
608        .map(|e| e.file_name().to_string_lossy().into_owned())
609        .filter(|name| crate::run::is_run_id(name))
610        .map(|id| short_of(&id).to_owned())
611        .collect();
612
613    let mut folded = 0usize;
614    for entry in std::fs::read_dir(worktrees_root)
615        .into_iter()
616        .flatten()
617        .flatten()
618    {
619        if !entry.path().is_dir() {
620            continue;
621        }
622        let short = entry.file_name().to_string_lossy().into_owned();
623        if !looks_like_a_worktree_bay(&short) {
624            continue;
625        }
626        if known.contains(&short) || crate::daemon::is_working_on_short(home, &short, now) {
627            continue;
628        }
629        let wt = entry.path();
630        if !stale_enough(&wt, grace_secs, now) {
631            continue;
632        }
633        crate::git::remove_worktree_from_linked(&wt).await;
634        for e in std::fs::read_dir(&wt).into_iter().flatten().flatten() {
635            crate::git::remove_worktree_from_linked(&e.path()).await;
636        }
637        match std::fs::remove_dir_all(&wt) {
638            Ok(()) => folded += 1,
639            Err(e) => tracing::warn!(
640                "housekeep: remove orphaned worktree {}: {e:#}",
641                wt.display()
642            ),
643        }
644    }
645    folded
646}
647
648/// Does `name` have the shape a run's own worktree bay is named with: the
649/// same 4-character alphanumeric tag [`crate::run::is_run_id`] requires of a
650/// full id's trailing block (see [`short_of`])?
651///
652/// Anything else under `worktrees_root` is not a bay this function reclaims
653/// at all, claimed or not - answering "does a run claim this?" about a
654/// directory that was never a run's worktree in the first place is exactly
655/// the wrong question to ask before deleting it.
656fn looks_like_a_worktree_bay(name: &str) -> bool {
657    name.len() == 4 && name.bytes().all(|b| b.is_ascii_alphanumeric())
658}
659
660/// Is `dir`'s own modification time old enough, against `grace_secs` and
661/// `now`, that its emptiness of a run record can be trusted rather than
662/// caught mid-creation?
663///
664/// A directory this pass cannot stat at all - a race with its own removal, a
665/// permission error - is treated as not yet stale: unreadable metadata is not
666/// evidence of anything, and the janitor already keeps rather than deletes
667/// whenever it cannot tell (see the module docs).
668///
669/// `grace_secs` is floored at [`MIN_ORPHAN_AGE_SECS`] regardless of what the
670/// caller passes: `0` is a documented, legitimate value for
671/// [`crate::config::Disk::fold_grace_secs`] (`due`'s own "always due" case),
672/// because that grace answers a policy question the operator owns - how long
673/// a *known, finished* run's worktree lingers before cleanup. Whether an
674/// orphan worktree is actually a race with `Runner::review`'s `git worktree
675/// add` landing before its `run.json` is not a policy question, and must not
676/// collapse to zero just because the operator turned the other grace off -
677/// that would defeat the very check meant to catch it.
678fn stale_enough(dir: &Path, grace_secs: u64, now: Timestamp) -> bool {
679    let Ok(modified) = std::fs::metadata(dir).and_then(|m| m.modified()) else {
680        return false;
681    };
682    let Ok(ts) = Timestamp::try_from(modified) else {
683        return false;
684    };
685    due(now, ts, grace_secs.max(MIN_ORPHAN_AGE_SECS))
686}
687
688/// The floor under [`stale_enough`]'s grace, independent of
689/// [`crate::config::Disk::fold_grace_secs`].
690///
691/// Ample next to the race it guards: the gap between `Runner::start` or
692/// `Runner::review` creating a worktree and the first `RunState::save`
693/// landing is a handful of `git` subprocess calls, not minutes - but the
694/// janitor cannot tell "still mid-setup" from "orphaned" by any other signal
695/// for a run that never registers with `daemon::Status` at all (a `magi
696/// review` invocation, for one), so this is generous on purpose rather than
697/// tuned to the observed case.
698const MIN_ORPHAN_AGE_SECS: u64 = 5 * 60;
699
700/// Resolve an id or prefix against an explicit runs directory, exactly the way
701/// [`crate::run::resolve_id`] does against the global home.
702fn resolve_id_path(runs: &Path, prefix: &str) -> Result<String> {
703    // Keyed on the directory, not on a readable state file: the record this
704    // route exists to remove may be a lone `run.json.tmp` from a save that
705    // ran out of disk, and that is precisely the one a human needs a way to
706    // clear (see `crate::run::list_ids`).
707    if runs.join(prefix).is_dir() && crate::run::is_run_id(prefix) {
708        return Ok(prefix.to_owned());
709    }
710    let mut hits: Vec<String> = Vec::new();
711    for e in std::fs::read_dir(runs).into_iter().flatten().flatten() {
712        if !e.path().is_dir() {
713            continue;
714        }
715        let id = e.file_name().to_string_lossy().into_owned();
716        if crate::run::is_run_id(&id) && (id.starts_with(prefix) || id.ends_with(prefix)) {
717            hits.push(id);
718        }
719    }
720    match hits.len() {
721        1 => Ok(hits.into_iter().next().expect("exactly one hit")),
722        0 => bail!("no run matches `{prefix}`"),
723        _ => bail!(
724            "`{prefix}` matches {} runs: {}",
725            hits.len(),
726            hits.join(", ")
727        ),
728    }
729}
730
731/// `magi fold`'s recovery path for a run whose worktrees are already gone —
732/// so [`crate::graph::fold_run`] removed nothing — but whose `run.json` still
733/// lists active seats nobody is left to answer for: no live daemon claims the
734/// run, and every one of those seats has overrun its own timeout (see
735/// [`RunState::active_all_overrun`]). Clearing them and failing the run is
736/// what lets it be deleted afterward — [`RunState::ensure_can_delete`] only
737/// ever checks whether a live daemon is working on the run and whether its
738/// candidates are folded, not `status`, but a run stuck `implementing`
739/// forever with an empty worktree still reads as unresolved everywhere else
740/// (`magi show`, the deck, the phone) until this runs.
741///
742/// Returns `false` without changing anything when a live daemon still claims
743/// the run, or when some active seat has not actually overrun its budget yet
744/// — a run that is merely between waves must never be guessed at.
745pub fn clear_abandoned_active(state: &mut RunState, home: &Path, now: Timestamp) -> Result<bool> {
746    if crate::daemon::is_working_on(home, &state.id, now) || !state.active_all_overrun(now) {
747        return Ok(false);
748    }
749    state.abandon("fold");
750    state.save_under(home)?;
751    // The seat that asked is gone for good now - the same door
752    // `graph::Runner::settle_questions` closes the moment `status` lands
753    // somewhere non-resumable, see that method's own doc. Without this, an
754    // open question the abandoned seat left behind would keep badging the
755    // operator until the next daemon startup's `abandon_settled_questions`
756    // pass happened to notice it, or forever if nothing is running `magi
757    // serve` at all.
758    if let Err(e) = Questions::at(home.join("questions")).settle_run(&state.id, state.status) {
759        tracing::warn!("abandon questions for {}: {e:#}", state.id);
760    }
761    Ok(true)
762}
763
764/// Delete files from the shared build cache until it fits its cap — but only
765/// while nobody live is registered as using it. [`crate::cache::maintenance_prune`]
766/// takes out the same lease a build would, so a prune can never race a
767/// compile in flight (this run's own, another run's, or a human's `magi
768/// review`) into deleting a file that build still needs. `Ok(None)` when the
769/// cache is in use right now; the next pass catches it once the borrower
770/// releases it, the same way a cap of `0` or a missing `CARGO_TARGET_DIR`
771/// already meant "nothing to do this time" here.
772pub fn prune_cache(home: &Path, cache: &Path, limit_bytes: u64) -> Result<Option<Prune>> {
773    crate::cache::maintenance_prune(home, cache, limit_bytes)
774}
775
776/// [`prune_cache`], but resolving the operator's opt-out and missing
777/// `CARGO_TARGET_DIR` first — the same two checks [`housekeep`]'s idle pass
778/// makes before ever measuring the cache, factored out so
779/// [`crate::daemon`]'s between-runs check (see the module's own doc for why
780/// congestion can make "idle" arrive too rarely to matter) makes them
781/// identically rather than growing its own copy that could drift. `Ok(None)`
782/// covers a cap of `0` (see the module docs on `cache_limit_bytes`), a config
783/// that renders no `CARGO_TARGET_DIR` to aggregate at all, and a cache
784/// currently in use (see [`prune_cache`]).
785pub fn prune_cache_if_over_limit(
786    cfg: &crate::config::Config,
787    home: &Path,
788) -> Result<Option<Prune>> {
789    if cfg.disk.cache_limit_bytes == 0 {
790        return Ok(None);
791    }
792    let Some(cache) = cfg.cache_dir() else {
793        return Ok(None);
794    };
795    prune_cache(home, &cache, cfg.disk.cache_limit_bytes)
796}
797
798/// The cache's path, size and cap, for `magi cache show` and the health view.
799/// `None` when the config declares no `CARGO_TARGET_DIR` to aggregate.
800///
801/// A cap of `0` means the operator opted out of pruning; the size is then
802/// reported but never acted on.
803pub fn cache_report(cfg: &crate::config::Config) -> Option<(PathBuf, u64, u64)> {
804    let cache = cfg.cache_dir()?;
805    Some((
806        cache.clone(),
807        cache_size(&cache),
808        cfg.disk.cache_limit_bytes,
809    ))
810}
811
812/// Size in bytes of the shared build cache.
813pub fn cache_size(cache: &Path) -> u64 {
814    dir_size(cache)
815}
816
817#[cfg(test)]
818mod tests {
819    use super::*;
820    use crate::config::Disk;
821    use std::fs;
822
823    fn ts(s: &str) -> Timestamp {
824        s.parse().expect("rfc3339")
825    }
826
827    fn block_on<F: std::future::Future>(f: F) -> F::Output {
828        tokio::runtime::Runtime::new().expect("runtime").block_on(f)
829    }
830
831    #[test]
832    fn a_run_is_due_after_its_grace_and_not_before() {
833        let now = ts("2026-09-05T00:00:00Z");
834        let grace = 600;
835        let old = now - SignedDuration::new(601, 0);
836        let fresh = now - SignedDuration::new(599, 0);
837        assert!(due(now, old, grace));
838        assert!(!due(now, fresh, grace));
839        // Exactly at the edge: not yet due.
840        let edge = now - SignedDuration::new(600, 0);
841        assert!(!due(now, edge, grace));
842        // A zero grace folds everything, ever.
843        assert!(due(now, old, 0));
844    }
845
846    #[test]
847    fn rotate_from_moves_the_starting_point_as_the_cursor_advances() {
848        let ids: Vec<String> = ["a", "b", "c", "d", "e"]
849            .iter()
850            .map(|s| s.to_string())
851            .collect();
852
853        // A cursor of 0 starts at the front, same as an unrotated list.
854        assert_eq!(rotate_from(&ids, 0), ids);
855
856        // A cursor of 2 starts two ids further along, with the skipped
857        // front wrapping to the tail rather than being dropped.
858        let at_2 = rotate_from(&ids, 2);
859        assert_eq!(at_2, vec!["c", "d", "e", "a", "b"]);
860        for id in &ids {
861            assert!(at_2.contains(id));
862        }
863
864        // A cursor past the list's own length wraps rather than panicking -
865        // the caller never has to reduce it modulo anything itself.
866        assert_eq!(rotate_from(&ids, 7), rotate_from(&ids, 2));
867
868        // An empty list has no start point to compute and must not panic.
869        assert_eq!(rotate_from(&[], 0), Vec::<String>::new());
870    }
871
872    /// A fleet with more eligible runs than one pass can check must not park
873    /// the same handful at the front of the window forever: advancing the
874    /// cursor by exactly how many ids one pass actually looked at - the
875    /// arithmetic [`reconcile_external_merges`] itself does - walks every id
876    /// to the front within one full rotation, with no reliance on how often
877    /// or how regularly passes happen to run.
878    #[test]
879    fn advancing_the_cursor_by_the_window_size_gives_every_id_a_turn() {
880        let ids: Vec<String> = (0..12).map(|n| format!("run-{n}")).collect();
881        let cap = 5usize;
882        let mut cursor = 0usize;
883        let mut ever_seen: std::collections::HashSet<String> = std::collections::HashSet::new();
884        for _ in 0..ids.len() {
885            let window: Vec<String> = rotate_from(&ids, cursor).into_iter().take(cap).collect();
886            ever_seen.extend(window.iter().cloned());
887            cursor = (cursor + window.len()) % ids.len();
888        }
889        assert_eq!(
890            ever_seen.len(),
891            ids.len(),
892            "every id must be checked at least once across a full rotation, whatever \
893             the cadence between passes"
894        );
895    }
896
897    #[test]
898    fn the_external_merge_cursor_round_trips_through_a_files_absence() {
899        let dir = tempfile::tempdir().unwrap();
900        let home = dir.path();
901
902        // Nothing written yet: starts at 0, not an error.
903        assert_eq!(read_external_merge_cursor(home), 0);
904
905        write_external_merge_cursor(home, 7);
906        assert_eq!(read_external_merge_cursor(home), 7);
907
908        // Anything unreadable as a plain number falls back to 0 rather than
909        // wedging the sweep on a corrupt file.
910        std::fs::write(home.join(EXTERNAL_MERGE_CURSOR_FILE), "not a number").unwrap();
911        assert_eq!(read_external_merge_cursor(home), 0);
912    }
913
914    #[test]
915    fn a_run_qualifies_for_an_external_merge_check_only_when_blocked_unmerged_and_due() {
916        let now = ts("2026-09-05T00:00:00Z");
917        let grace = 600;
918        let old = now - SignedDuration::new(601, 0);
919        let fresh = now - SignedDuration::new(599, 0);
920
921        assert!(
922            eligible_for_external_merge_check(RunStatus::Blocked, false, old, now, grace),
923            "blocked, unmerged, and past its grace period is exactly the run this exists for"
924        );
925        assert!(
926            !eligible_for_external_merge_check(RunStatus::Blocked, false, fresh, now, grace),
927            "an operator mid-fix deserves the same grace window `fold_due` gives before \
928             the janitor starts asking GitHub about it"
929        );
930        assert!(
931            !eligible_for_external_merge_check(RunStatus::Blocked, true, old, now, grace),
932            "a run `land::land` already recorded a merge outcome for has its own answer \
933             already; this check is only for a run with nothing recorded at all"
934        );
935        assert!(
936            !eligible_for_external_merge_check(RunStatus::Stalled, false, old, now, grace),
937            "stalled is not blocked - it means the tally never reached quorum, which a \
938             pull request cannot fix"
939        );
940        assert!(
941            !eligible_for_external_merge_check(RunStatus::Ready, false, old, now, grace),
942            "ready has nothing to correct - it was never landed by design"
943        );
944    }
945
946    /// A `Blocked` run with a decided winner, so `land::find_external_merge`
947    /// has a branch to ask `gh` about instead of returning early for lack of
948    /// one - which is what makes an unreachable `/nonexistent/repo` fail
949    /// loudly (an `Err`, raising a notice) rather than silently (an early
950    /// `Ok(None)`, raising nothing) when this run's sweep is exercised.
951    fn write_blocked_run(runs: &Path, id: &str, updated_at: Timestamp) {
952        use crate::run::{Candidate, Tally};
953        use std::collections::BTreeMap;
954
955        let mut state = RunState::new(
956            PathBuf::from("/nonexistent/repo"),
957            "main".to_owned(),
958            "0000000000000000000000000000000000000000".to_owned(),
959            String::new(),
960            crate::config::Config::default(),
961        );
962        state.id = id.to_owned();
963        state.status = RunStatus::Blocked;
964        state.updated_at = updated_at;
965        state.candidates.push(Candidate {
966            index: 0,
967            label: 'A',
968            agent: "agent".to_owned(),
969            branch: format!("magi/{id}/A"),
970            worktree: PathBuf::from("/nonexistent/repo"),
971            summary: String::new(),
972            stat: String::new(),
973            files: 0,
974            commits: 0,
975            empty: false,
976            failed: None,
977            verified_noop: None,
978            duration_ms: 0,
979            folded: false,
980        });
981        state.tally = Some(Tally {
982            first_choice: BTreeMap::from([('A', 1)]),
983            borda: BTreeMap::new(),
984            winner: 'A',
985            rankings: 1,
986            unanimous_initial: true,
987            deliberated: false,
988            changed_votes: 0,
989            unanimous_final: true,
990            tie_break: None,
991            judges: 1,
992            present: 1,
993            quorum: 1,
994            met_quorum: true,
995            uncontested: None,
996        });
997        std::fs::create_dir_all(runs.join(id)).unwrap();
998        std::fs::write(
999            runs.join(id).join("run.json"),
1000            serde_json::to_string_pretty(&state).unwrap(),
1001        )
1002        .unwrap();
1003    }
1004
1005    /// No run here can be confirmed merged - one has no repository `gh` can
1006    /// even ask about, one has not sat blocked long enough, and one is
1007    /// claimed by a live daemon - so the sweep must leave every one of them
1008    /// exactly as it found them and never panic on the failures in between.
1009    #[tokio::test]
1010    async fn reconcile_external_merges_leaves_ineligible_and_unconfirmable_runs_alone() {
1011        let dir = tempfile::tempdir().unwrap();
1012        let runs = dir.path().join("runs");
1013        let home = dir.path().to_path_buf();
1014        std::fs::create_dir_all(&runs).unwrap();
1015
1016        let now = ts("2026-09-05T00:00:00Z");
1017        let disk = Disk {
1018            fold_grace_secs: 600,
1019            ..Disk::default()
1020        };
1021
1022        let due_id = "20260905-000000-blkd";
1023        write_blocked_run(&runs, due_id, ts("2026-08-01T00:00:00Z"));
1024
1025        let fresh_id = "20260905-000000-fres";
1026        write_blocked_run(&runs, fresh_id, now);
1027
1028        let live_id = "20260905-000000-live";
1029        write_blocked_run(&runs, live_id, ts("2026-08-01T00:00:00Z"));
1030        let mut status = crate::daemon::Status::new();
1031        status.current = vec![crate::daemon::Current {
1032            task: "20260905-000000-task".to_owned(),
1033            run: live_id.to_owned(),
1034        }];
1035        status.updated_at = now;
1036        crate::daemon::write_status_to(&home.join("daemon.json"), &status).unwrap();
1037
1038        let reconciled = reconcile_external_merges(&runs, &home, &disk, now).await;
1039        assert_eq!(
1040            reconciled, 0,
1041            "an unreachable repository can never be confirmed merged"
1042        );
1043        for id in [due_id, fresh_id, live_id] {
1044            assert_eq!(
1045                read_meta(&runs, id).unwrap().status,
1046                RunStatus::Blocked,
1047                "{id} must be left exactly as it was found"
1048            );
1049        }
1050    }
1051
1052    /// The bug this exists to pin: a first version rotated on
1053    /// `now.as_second() % len`, which is fully determined by wall-clock time
1054    /// and nothing else. Two passes seconds apart - as they would be when a
1055    /// short poll interval and a fast pass alias onto the same handful of
1056    /// `now.as_second()` residues - landed on the *same* starting point and
1057    /// never covered a fleet bigger than the per-pass cap, however many
1058    /// times housekeeping ran. Persisting a cursor makes forward progress a
1059    /// function of how many ids got looked at, not of when the clock reads
1060    /// this pass happened to run.
1061    #[tokio::test]
1062    async fn reconcile_external_merges_covers_a_larger_fleet_across_repeated_passes_at_one_instant()
1063    {
1064        let dir = tempfile::tempdir().unwrap();
1065        let runs = dir.path().join("runs");
1066        let home = dir.path().to_path_buf();
1067        std::fs::create_dir_all(&runs).unwrap();
1068
1069        let now = ts("2026-09-05T00:00:00Z");
1070        let disk = Disk {
1071            fold_grace_secs: 600,
1072            ..Disk::default()
1073        };
1074        let old = ts("2026-08-01T00:00:00Z");
1075
1076        let ids: Vec<String> = (0..8).map(|n| format!("20260905-000000-r{n:03}")).collect();
1077        for id in &ids {
1078            write_blocked_run(&runs, id, old);
1079        }
1080
1081        let notices = crate::notices::Notices::at(home.join("notifications"));
1082
1083        // Two passes at the exact same `now`, exactly what a fast pass on a
1084        // short poll interval looks like. Each of the 8 unreachable-repo
1085        // runs raises its own notice the first time it is looked at, so the
1086        // count of distinct notices is a direct readout of how many distinct
1087        // ids have been checked so far.
1088        reconcile_external_merges(&runs, &home, &disk, now).await;
1089        let after_first = notices.list().len();
1090        assert_eq!(
1091            after_first, MAX_EXTERNAL_MERGE_CHECKS_PER_PASS,
1092            "the first pass checks exactly one cap's worth"
1093        );
1094
1095        reconcile_external_merges(&runs, &home, &disk, now).await;
1096        let after_second = notices.list().len();
1097        assert_eq!(
1098            after_second,
1099            ids.len(),
1100            "a second pass at the same instant must still reach every id the \
1101             first pass had no room for, not repeat the same cap's worth"
1102        );
1103    }
1104
1105    #[test]
1106    fn the_meta_reader_is_tolerant_of_everything_except_the_deciders() {
1107        let dir = tempfile::tempdir().unwrap();
1108        let runs = dir.path().join("runs");
1109        let id = "20260905-000000-abcd";
1110        std::fs::create_dir_all(runs.join(id)).unwrap();
1111        std::fs::write(
1112            runs.join(id).join("run.json"),
1113            r#"{"schema": 99, "id": "20260905-000000-abcd", "updated_at": "2026-09-05T00:00:00Z", "status": "ready", "junk_from_another_build": [1, 2, 3]}"#,
1114        )
1115        .unwrap();
1116        let meta = read_meta(&runs, id).expect("readable");
1117        assert_eq!(meta.status, RunStatus::Ready);
1118        assert_eq!(meta.updated_at, ts("2026-09-05T00:00:00Z"));
1119        assert!(read_meta(&runs, "nope").is_err(), "missing file unreadable");
1120        std::fs::write(runs.join(id).join("run.json"), "not json at all").unwrap();
1121        assert!(read_meta(&runs, id).is_err(), "garbage unreadable");
1122    }
1123
1124    #[test]
1125    fn fold_unreadable_releases_run_dir_and_worktrees() {
1126        let dir = tempfile::tempdir().unwrap();
1127        let runs = dir.path().join("runs");
1128        let wt = dir.path().join("wt");
1129        let id = "20260905-000000-abcd";
1130        std::fs::create_dir_all(runs.join(id)).unwrap();
1131        std::fs::write(runs.join(id).join("run.json"), "garbage").unwrap();
1132        std::fs::create_dir_all(wt.join("abcd")).unwrap();
1133        std::fs::write(wt.join("abcd").join("leftover"), b"x").unwrap();
1134
1135        let removed = block_on(fold_unreadable(&runs, &wt, id)).expect("fold");
1136        assert_eq!(removed.len(), 2);
1137        assert!(!runs.join(id).exists(), "run dir gone");
1138        assert!(!wt.join("abcd").exists(), "worktrees gone");
1139
1140        // A prefix resolves like `run::resolve_id` does.
1141        std::fs::create_dir_all(runs.join(id)).unwrap();
1142        std::fs::write(runs.join(id).join("run.json"), "garbage").unwrap();
1143        std::fs::create_dir_all(wt.join("abcd")).unwrap();
1144        std::fs::write(wt.join("abcd").join("leftover"), b"x").unwrap();
1145        let removed = block_on(fold_unreadable(&runs, &wt, "20260905")).expect("by prefix");
1146        assert_eq!(removed.len(), 2);
1147        // Once gone, `id` cannot be resolved at all - same as `run::resolve_id`
1148        // on an id nothing on disk matches - so a repeat pass errors rather
1149        // than silently reporting nothing removed.
1150        assert!(
1151            block_on(fold_unreadable(&runs, &wt, id)).is_err(),
1152            "a run already gone cannot be resolved again"
1153        );
1154    }
1155
1156    #[test]
1157    fn prune_cache_sheds_the_oldest_generation_until_it_fits() {
1158        let home = tempfile::tempdir().unwrap();
1159        let dir = tempfile::tempdir().unwrap();
1160        // Same size, different age: only the age decides, and the newest
1161        // generation - the one the next build reuses - is what survives.
1162        fs::write(dir.path().join("old"), b"xx").unwrap();
1163        fs::write(dir.path().join("new"), b"yy").unwrap();
1164        touch(&dir.path().join("old"), 1_000_000);
1165        touch(&dir.path().join("new"), 2_000_000);
1166
1167        let out = prune_cache(home.path(), dir.path(), 2)
1168            .expect("prune")
1169            .expect("the cache is free");
1170        assert_eq!(out.files, 1, "one deletion is enough to reach the cap");
1171        assert_eq!(out.remaining, 2);
1172        assert!(!dir.path().join("old").exists(), "the older file went");
1173        assert!(dir.path().join("new").exists(), "the newer one stayed");
1174
1175        // A whole generation shares one timestamp tick, so the tie has to be
1176        // decided too: largest first, which reaches the cap in the fewest
1177        // deletions. Left to `read_dir` and an unstable sort this deleted
1178        // both files on Linux and one on Windows.
1179        let tied = tempfile::tempdir().unwrap();
1180        fs::write(tied.path().join("big"), b"xxxx").unwrap();
1181        fs::write(tied.path().join("small"), b"yy").unwrap();
1182        touch(&tied.path().join("big"), 1_000_000);
1183        touch(&tied.path().join("small"), 1_000_000);
1184        let out = prune_cache(home.path(), tied.path(), 2)
1185            .expect("prune")
1186            .expect("the cache is free");
1187        assert_eq!(out.files, 1, "the big one alone gets under the cap");
1188        assert_eq!(out.remaining, 2);
1189        assert!(tied.path().join("small").exists());
1190    }
1191
1192    #[test]
1193    fn prune_cache_if_over_limit_resolves_the_opt_outs_before_ever_measuring() {
1194        let home = tempfile::tempdir().unwrap();
1195        let dir = tempfile::tempdir().unwrap();
1196        fs::write(dir.path().join("big"), vec![0u8; 10]).unwrap();
1197
1198        let mut cfg = crate::config::Config::default();
1199        cfg.verify.gate = vec![format!(
1200            "CARGO_TARGET_DIR={} cargo make check",
1201            dir.path().display()
1202        )];
1203
1204        // A cap of `0` is the operator's opt-out: never measured, never
1205        // pruned, regardless of what is actually on disk.
1206        cfg.disk.cache_limit_bytes = 0;
1207        assert_eq!(
1208            prune_cache_if_over_limit(&cfg, home.path()).unwrap(),
1209            None,
1210            "a zero cap must not even look at the directory"
1211        );
1212        assert!(dir.path().join("big").exists());
1213
1214        // No `CARGO_TARGET_DIR` in either verify command: nothing to
1215        // aggregate, so there is nothing to prune either.
1216        let mut no_cache = crate::config::Config::default();
1217        no_cache.disk.cache_limit_bytes = 1;
1218        assert_eq!(
1219            prune_cache_if_over_limit(&no_cache, home.path()).unwrap(),
1220            None
1221        );
1222
1223        // Over the cap and configured: pruned exactly like `prune_cache`
1224        // itself would.
1225        cfg.disk.cache_limit_bytes = 1;
1226        let pruned = prune_cache_if_over_limit(&cfg, home.path())
1227            .unwrap()
1228            .expect("a real cache dir over its cap prunes");
1229        assert_eq!(pruned.files, 1);
1230        assert!(!dir.path().join("big").exists());
1231    }
1232
1233    /// Pin a file's mtime, so a test asserts the policy and not the runner's
1234    /// timestamp granularity.
1235    fn touch(path: &Path, secs: u64) {
1236        let f = fs::File::options().write(true).open(path).unwrap();
1237        f.set_times(fs::FileTimes::new().set_modified(
1238            std::time::SystemTime::UNIX_EPOCH + std::time::Duration::from_secs(secs),
1239        ))
1240        .unwrap();
1241    }
1242
1243    /// The disk-full casualty: a run whose first save left `run.json.tmp` and
1244    /// nothing else. It has to be clearable, or the record is permanent.
1245    #[test]
1246    fn fold_unreadable_clears_a_run_whose_state_never_landed() {
1247        let dir = tempfile::tempdir().unwrap();
1248        let runs = dir.path().join("runs");
1249        let wt = dir.path().join("wt");
1250        let id = "20260904-014540-88c0";
1251        std::fs::create_dir_all(runs.join(id)).unwrap();
1252        std::fs::write(runs.join(id).join("run.json.tmp"), b"").unwrap();
1253
1254        let removed = block_on(fold_unreadable(&runs, &wt, id)).expect("fold by id");
1255        assert_eq!(removed, vec![format!("runs/{id}")]);
1256        assert!(!runs.join(id).exists(), "record gone");
1257
1258        // And by prefix, the way the deck and the phone address a run.
1259        std::fs::create_dir_all(runs.join(id)).unwrap();
1260        std::fs::write(runs.join(id).join("run.json.tmp"), b"").unwrap();
1261        assert!(
1262            block_on(fold_unreadable(&runs, &wt, "88c0")).is_ok(),
1263            "by prefix"
1264        );
1265
1266        // A directory under `runs` that is not a run is never a fold target.
1267        std::fs::create_dir_all(runs.join("scratch")).unwrap();
1268        assert!(
1269            block_on(fold_unreadable(&runs, &wt, "scratch")).is_err(),
1270            "a stray directory is not a run"
1271        );
1272    }
1273
1274    #[test]
1275    fn fold_due_folds_terminal_runs_of_any_schema_but_leaves_genuinely_unreadable_ones() {
1276        let dir = tempfile::tempdir().unwrap();
1277        let runs = dir.path().join("runs");
1278        let wt = dir.path().join("wt");
1279        let home = dir.path().to_path_buf();
1280        let disk = Disk::default();
1281        let now = ts("2026-09-05T00:00:00Z");
1282
1283        // 1. Runnable (judging): never folded, however old.
1284        let judging = "20260801-000000-0001";
1285        write_meta(&runs, judging, "judging", "2026-08-01T00:00:00Z");
1286
1287        // 2. Finished but fresh: grace not elapsed. Within the default 6h
1288        //    grace of `now`, so `fold_due` must stop at the freshness check
1289        //    and never even reach `read_state` - `write_meta`'s minimal JSON
1290        //    would fail that full parse anyway, and this case exists to
1291        //    prove freshness is why the run survives, not an accident of the
1292        //    fixture being unparseable as a whole `RunState`.
1293        let ready_fresh = "20260904-220000-0002";
1294        write_meta(&runs, ready_fresh, "ready", "2026-09-04T22:00:00Z");
1295
1296        // 3. Genuinely unreadable: broken JSON, not merely an unfamiliar
1297        //    schema number. Left alone and counted - this is the one case
1298        //    automatic housekeeping must never touch (see `fold_due`'s docs);
1299        //    discarding it is an explicit operator action, not something a
1300        //    background pass does.
1301        let garbage = "20260901-000000-0004";
1302        std::fs::create_dir_all(runs.join(garbage)).unwrap();
1303        std::fs::write(runs.join(garbage).join("run.json"), "not json").unwrap();
1304        std::fs::create_dir_all(wt.join("0004")).unwrap();
1305
1306        // 4. Finished, well past grace, current schema: the ordinary case
1307        //    `fold_due` has always acted on.
1308        let due_ready = due_run(&runs, &wt, "20260801-000000-ffff", SCHEMA);
1309
1310        // 5. Finished, well past grace, but written by a schema number this
1311        //    build no longer matches - the defect this task exists to fix.
1312        //    It still parses cleanly, so only the version number differs, and
1313        //    that alone must not block folding.
1314        let due_old_schema = due_run(&runs, &wt, "20260801-000000-eeee", SCHEMA - 1);
1315
1316        let (folded, unreadable) =
1317            block_on(fold_due(&runs, &home, &wt, &disk, now)).expect("fold_due");
1318        assert_eq!(
1319            folded, 2,
1320            "both due, parseable runs fold regardless of their schema number"
1321        );
1322        assert_eq!(
1323            unreadable, 1,
1324            "only the run with broken JSON counts as unreadable"
1325        );
1326        assert!(runs.join(judging).exists(), "runnable never folded");
1327        assert!(runs.join(ready_fresh).exists(), "fresh never folded");
1328        assert!(runs.join(garbage).exists(), "unreadable record kept");
1329        assert!(wt.join("0004").exists(), "unreadable worktree kept");
1330        assert!(
1331            runs.join(&due_ready).exists(),
1332            "folding drops worktrees, not the record"
1333        );
1334        assert!(
1335            runs.join(&due_old_schema).exists(),
1336            "an old-schema record survives its fold exactly like a current one"
1337        );
1338        // `graph::fold_run` saves the state it just folded back to disk. That
1339        // write must land under this test's own `runs` - the argument it
1340        // passed to `fold_due`, not the process-global `run::home` - or a
1341        // fold that landed somewhere else entirely would still be counted
1342        // above as one of the two `folded` runs.
1343        for id in [&due_ready, &due_old_schema] {
1344            let saved = read_meta(&runs, id).expect("folded run still parses");
1345            assert_ne!(
1346                saved.updated_at,
1347                ts("2026-08-01T00:00:00Z"),
1348                "fold_run must have saved the updated state back through the \
1349                 `runs` directory this test passed to fold_due"
1350            );
1351        }
1352    }
1353
1354    /// `[disk] auto_fold = false` must leave the janitor's fold-and-reclaim
1355    /// passes completely inert - a due run's worktree and record both
1356    /// survive exactly as if `housekeep` had never run at all. Cache pruning
1357    /// is a separate opt-out (`cache_limit_bytes`) and stays disabled here
1358    /// too, so this test is only ever about `auto_fold`.
1359    #[tokio::test]
1360    async fn housekeep_leaves_everything_alone_when_auto_fold_is_disabled() {
1361        let dir = tempfile::tempdir().unwrap();
1362        let runs = dir.path().join("runs");
1363        let wt = dir.path().join("wt");
1364        let home = dir.path().to_path_buf();
1365        crate::run::set_home(dir.path().to_path_buf());
1366
1367        let due_id = due_run(&runs, &wt, "20260801-000000-abcd", SCHEMA);
1368        std::fs::create_dir_all(wt.join("orphan").join("cand-A")).unwrap();
1369
1370        let mut cfg = crate::config::Config::default();
1371        cfg.disk.auto_fold = false;
1372        cfg.disk.cache_limit_bytes = 0;
1373
1374        let out = housekeep(&cfg, &home, &wt, &dir.path().join("repo"), Timestamp::now()).await;
1375
1376        assert_eq!(out.folded, 0);
1377        assert_eq!(out.unreadable, 0);
1378        assert_eq!(out.orphaned_worktrees, 0);
1379        assert!(
1380            runs.join(&due_id).exists(),
1381            "a due run's record survives untouched"
1382        );
1383        assert!(
1384            wt.join("orphan").exists(),
1385            "an orphaned worktree survives untouched: the reclaim pass never ran"
1386        );
1387    }
1388
1389    #[test]
1390    fn fold_orphaned_worktrees_removes_only_worktrees_no_run_claims_and_none_in_flight() {
1391        let dir = tempfile::tempdir().unwrap();
1392        let runs = dir.path().join("runs");
1393        let wt = dir.path().join("wt");
1394        let home = dir.path().to_path_buf();
1395
1396        // A run record exists for this one: its worktree is claimed, not
1397        // orphaned, however old the record.
1398        write_meta(
1399            &runs,
1400            "20260801-000000-aaaa",
1401            "ready",
1402            "2026-08-01T00:00:00Z",
1403        );
1404        std::fs::create_dir_all(wt.join("aaaa").join("cand-A")).unwrap();
1405
1406        // No run record at all, and nobody is working on it: this is the
1407        // leftover `fold_due` can never see, because it only ever walks
1408        // `runs/`.
1409        std::fs::create_dir_all(wt.join("bbbb").join("cand-A")).unwrap();
1410
1411        // No run record either, but a live daemon status names a run with
1412        // this short id - the save-timing gap between the daemon claiming a
1413        // task and `RunState::new` writing its first `run.json`. Must survive
1414        // untouched.
1415        std::fs::create_dir_all(wt.join("cccc")).unwrap();
1416
1417        // Not shaped like a run's short id at all - a scratch directory an
1418        // operator or another tool left in the same bay - so it is never a
1419        // reclaim target regardless of what runs claim it or not.
1420        std::fs::create_dir_all(wt.join("scratch")).unwrap();
1421
1422        // `now` pushed comfortably past `MIN_ORPHAN_AGE_SECS`, so a zero
1423        // grace - the same "always due" escape hatch `due` itself documents
1424        // - still reclaims once a worktree is genuinely old, without faking
1425        // an mtime: real directory creation just above is already in the
1426        // past relative to this `now`, by design rather than by timing.
1427        let now = Timestamp::now() + SignedDuration::new((MIN_ORPHAN_AGE_SECS + 1) as i64, 0);
1428        let mut status = crate::daemon::Status::new();
1429        status.current = vec![crate::daemon::Current {
1430            task: "20260905-000000-t111".to_owned(),
1431            run: "20260905-000000-cccc".to_owned(),
1432        }];
1433        status.updated_at = now;
1434        crate::daemon::write_status_to(&home.join("daemon.json"), &status).unwrap();
1435
1436        let folded = block_on(fold_orphaned_worktrees(&runs, &wt, &home, 0, now));
1437        assert_eq!(
1438            folded, 1,
1439            "only the truly orphaned, idle, bay-shaped worktree is removed"
1440        );
1441        assert!(wt.join("aaaa").exists(), "claimed by a run record");
1442        assert!(!wt.join("bbbb").exists(), "orphaned and idle: reclaimed");
1443        assert!(wt.join("cccc").exists(), "a run in flight is never touched");
1444        assert!(
1445            wt.join("scratch").exists(),
1446            "not shaped like a worktree bay, so never a reclaim target"
1447        );
1448    }
1449
1450    /// The gap this closes: `Runner::review` (`magi review`) creates the
1451    /// worktree with `git worktree add` before `RunState::save` ever writes a
1452    /// `run.json`, and that path never runs through the daemon's own `poll`
1453    /// loop at all, so `daemon::Status` never names it either. Without a
1454    /// grace window, a janitor pass landing in that gap would read the
1455    /// worktree as an orphan nothing is waiting on and delete a review still
1456    /// being set up.
1457    #[test]
1458    fn fold_orphaned_worktrees_leaves_a_freshly_created_bay_alone() {
1459        let dir = tempfile::tempdir().unwrap();
1460        let runs = dir.path().join("runs");
1461        let wt = dir.path().join("wt");
1462        let home = dir.path().to_path_buf();
1463
1464        std::fs::create_dir_all(wt.join("dddd").join("under-review")).unwrap();
1465
1466        let now = Timestamp::now();
1467        let folded = block_on(fold_orphaned_worktrees(&runs, &wt, &home, 6 * 60 * 60, now));
1468        assert_eq!(
1469            folded, 0,
1470            "too fresh to tell apart from a run still being set up"
1471        );
1472        assert!(wt.join("dddd").exists());
1473    }
1474
1475    /// A fresh open question on `run`, stored and handed back for assertions.
1476    fn open_question(store: &Questions, run: &str) -> crate::ask::Question {
1477        let mut q = crate::ask::Question::new(
1478            run.to_owned(),
1479            "implement".to_owned(),
1480            "impl-A".to_owned(),
1481            "Which storage backend should the cache use?".to_owned(),
1482            String::new(),
1483            vec!["SQLite".to_owned(), "Redis".to_owned()],
1484        );
1485        store.put(&mut q).unwrap();
1486        q
1487    }
1488
1489    /// The exact ghost the phone showed: a run that already finished, with a
1490    /// question its dead seat asked still sitting `open` because it reached
1491    /// that status before `graph::Runner::settle_questions` existed (or
1492    /// missed it in the crash window `daemon::reclaim_orphaned_running`
1493    /// covers). This sweep is the second door to the same fact.
1494    #[test]
1495    fn a_finished_runs_open_question_is_swept_up() {
1496        let dir = tempfile::tempdir().unwrap();
1497        let runs = dir.path().join("runs");
1498        let store = Questions::at(dir.path().join("questions"));
1499
1500        let failed = "20260908-205802-c9eb";
1501        write_meta(&runs, failed, "failed", "2026-09-08T20:58:02Z");
1502        let failed_q = open_question(&store, failed);
1503
1504        let merged = "20260908-205501-ca67";
1505        write_meta(&runs, merged, "merged", "2026-09-08T20:55:01Z");
1506        let merged_q = open_question(&store, merged);
1507
1508        let n = abandon_settled_questions(&store, &runs);
1509        assert_eq!(n, 2, "both dead runs' questions are swept in one pass");
1510
1511        for (id, run) in [(&failed_q.id, failed), (&merged_q.id, merged)] {
1512            let back = store.get(id).unwrap();
1513            assert!(!back.status.open(), "{run} is done; nobody reads an answer");
1514            assert!(back.detail.contains(run), "{}", back.detail);
1515        }
1516    }
1517
1518    #[test]
1519    fn a_still_alive_runs_open_question_survives_the_sweep() {
1520        let dir = tempfile::tempdir().unwrap();
1521        let runs = dir.path().join("runs");
1522        let store = Questions::at(dir.path().join("questions"));
1523
1524        // `Blocked` and `Stalled` are `RunStatus::resumable`: the run can
1525        // still be picked back up, so its question may yet get a real
1526        // answer. A run still mid-competition is even more obviously alive.
1527        for (id, status) in [
1528            ("20260908-000000-b10c", "blocked"),
1529            ("20260908-000000-5ta1", "stalled"),
1530            ("20260908-000000-jud6", "judging"),
1531        ] {
1532            write_meta(&runs, id, status, "2026-09-08T00:00:00Z");
1533            let q = open_question(&store, id);
1534
1535            let n = abandon_settled_questions(&store, &runs);
1536            assert_eq!(n, 0, "{status} run is not done; nothing to sweep");
1537            assert!(
1538                store.get(&q.id).unwrap().status.open(),
1539                "{status} run's question must still be waiting"
1540            );
1541        }
1542    }
1543
1544    #[test]
1545    fn the_sweep_leaves_an_answered_question_and_an_unreadable_run_alone() {
1546        let dir = tempfile::tempdir().unwrap();
1547        let runs = dir.path().join("runs");
1548        let store = Questions::at(dir.path().join("questions"));
1549
1550        // Already decided: a sweep must never revisit it, whatever the run
1551        // that asked went on to become.
1552        let done = "20260908-000000-answ";
1553        write_meta(&runs, done, "failed", "2026-09-08T00:00:00Z");
1554        let mut answered = open_question(&store, done);
1555        answered
1556            .answer(crate::ask::Answer::Choice("SQLite".to_owned()))
1557            .unwrap();
1558        store.put(&mut answered).unwrap();
1559
1560        // No `run.json` at all for this one - deleted, or never landed.
1561        let gone = "20260908-000000-gone";
1562        let orphan = open_question(&store, gone);
1563
1564        assert_eq!(abandon_settled_questions(&store, &runs), 0);
1565        assert_eq!(
1566            store.get(&answered.id).unwrap().status,
1567            crate::ask::QuestionStatus::Answered,
1568            "a real answer is never overwritten by a sweep"
1569        );
1570        assert!(
1571            store.get(&orphan.id).unwrap().status.open(),
1572            "a run this sweep cannot read is left exactly as it was, not guessed at"
1573        );
1574    }
1575
1576    /// A grace of `0` is a legitimate, documented value for the operator's
1577    /// own `Disk::fold_grace_secs` - `due`'s "always due" case - but the
1578    /// freshness check this guards is not that policy, and must not collapse
1579    /// to it: a `0` handed straight through would reclaim a worktree the
1580    /// instant it exists, exactly the race `fold_orphaned_worktrees_leaves_a_
1581    /// freshly_created_bay_alone` exists to rule out, just with the operator
1582    /// having turned the other grace off instead of leaving it at its
1583    /// default.
1584    #[test]
1585    fn fold_orphaned_worktrees_floors_a_zero_grace_at_the_race_safe_minimum() {
1586        let dir = tempfile::tempdir().unwrap();
1587        let runs = dir.path().join("runs");
1588        let wt = dir.path().join("wt");
1589        let home = dir.path().to_path_buf();
1590
1591        std::fs::create_dir_all(wt.join("eeee").join("under-review")).unwrap();
1592
1593        // Too fresh, even with the grace argument at zero.
1594        let now = Timestamp::now();
1595        let folded = block_on(fold_orphaned_worktrees(&runs, &wt, &home, 0, now));
1596        assert_eq!(
1597            folded, 0,
1598            "a zero grace must not defeat the race-safety floor"
1599        );
1600        assert!(wt.join("eeee").exists());
1601
1602        // Once genuinely past the floor, a zero grace reclaims it - the
1603        // floor is a minimum, not a replacement policy that never fires.
1604        let later = now + SignedDuration::new((MIN_ORPHAN_AGE_SECS + 1) as i64, 0);
1605        let folded = block_on(fold_orphaned_worktrees(&runs, &wt, &home, 0, later));
1606        assert_eq!(folded, 1, "old enough now, regardless of the zero grace");
1607        assert!(!wt.join("eeee").exists());
1608    }
1609
1610    #[test]
1611    fn clear_abandoned_active_only_acts_once_dead_and_overrun() {
1612        let dir = tempfile::tempdir().unwrap();
1613        // Harmless if another test in this binary already pinned the global
1614        // home first (see `run::set_home`'s own doc): this test only checks
1615        // the in-memory mutation `clear_abandoned_active` makes, never a
1616        // write that landed under this exact directory.
1617        crate::run::set_home(dir.path().to_path_buf());
1618        let home = dir.path().to_path_buf();
1619        let now = ts("2026-09-14T12:00:00Z");
1620        let overrun_seat = || crate::run::ActiveSeat {
1621            node: "implement".to_owned(),
1622            started_at: now - SignedDuration::new(21_000, 0),
1623            timeout_secs: 3_600,
1624            attempt: 0,
1625            task: None,
1626            command: None,
1627            index: None,
1628            total: None,
1629        };
1630
1631        let mut state = RunState::new(
1632            PathBuf::from("/repo"),
1633            "main".to_owned(),
1634            "abc1234".to_owned(),
1635            "fixture".to_owned(),
1636            crate::config::Config::default(),
1637        );
1638        state.status = RunStatus::Implementing;
1639        state.active.insert("impl-A".to_owned(), overrun_seat());
1640
1641        // A seat still within its own budget: not provably dead yet, so this
1642        // must change nothing.
1643        let mut fresh = state.clone();
1644        fresh.active.insert(
1645            "impl-B".to_owned(),
1646            crate::run::ActiveSeat {
1647                node: "implement".to_owned(),
1648                started_at: now,
1649                timeout_secs: 3_600,
1650                attempt: 0,
1651                task: None,
1652                command: None,
1653                index: None,
1654                total: None,
1655            },
1656        );
1657        assert!(!clear_abandoned_active(&mut fresh, &home, now).unwrap());
1658        assert!(!fresh.active.is_empty());
1659        assert_eq!(fresh.status, RunStatus::Implementing);
1660
1661        let store = Questions::at(home.join("questions"));
1662        let q = open_question(&store, &state.id);
1663
1664        assert!(clear_abandoned_active(&mut state, &home, now).unwrap());
1665        assert!(state.active.is_empty());
1666        assert_eq!(state.status, RunStatus::Failed);
1667        assert!(
1668            !store.get(&q.id).unwrap().status.open(),
1669            "the abandoned seat's own open question must not keep badging the \
1670             operator until some later daemon startup notices it"
1671        );
1672    }
1673
1674    /// Write a whole `run.json` that magi can read, over the given state.
1675    fn write_meta(runs: &Path, id: &str, status: &str, updated_at: &str) {
1676        let day = &updated_at[..10];
1677        std::fs::create_dir_all(runs.join(id)).unwrap();
1678        let body = format!(
1679            r#"{{"schema": {SCHEMA}, "id": "{id}", "repo": "/nonexistent/repo", "base_branch": "main", "base_commit": "0000000000000000000000000000000000000000", "instruction": "", "created_at": "{day}T00:00:00Z", "updated_at": "{updated_at}", "status": "{status}", "seed": 1}}"#
1680        );
1681        std::fs::write(runs.join(id).join("run.json"), body).unwrap();
1682    }
1683
1684    /// Write a fully-formed, `Ready`, well-past-grace `run.json` tagged with
1685    /// an arbitrary schema number - so a test can write one this build's own
1686    /// `RunState::new` could never produce on its own. Returns the id.
1687    ///
1688    /// `wt` becomes this run's `graph.worktree_root`: left at the config
1689    /// default, `RunState::worktree_root` falls through to
1690    /// `run::default_worktree_root` - the operator's real `~/wt/magi` - and
1691    /// `graph::fold_run`'s second sweep would then `read_dir` and remove
1692    /// worktrees there instead of anything this test owns.
1693    fn due_run(runs: &Path, wt: &Path, id: &str, schema: u32) -> String {
1694        let mut config = crate::config::Config::default();
1695        config.graph.worktree_root = Some(wt.to_path_buf());
1696        let mut state = RunState::new(
1697            PathBuf::from("/nonexistent/repo"),
1698            "main".to_owned(),
1699            "0000000000000000000000000000000000000000".to_owned(),
1700            String::new(),
1701            config,
1702        );
1703        state.id = id.to_owned();
1704        state.status = RunStatus::Ready;
1705        state.updated_at = ts("2026-08-01T00:00:00Z");
1706        let mut value = serde_json::to_value(&state).unwrap();
1707        value["schema"] = serde_json::json!(schema);
1708        std::fs::create_dir_all(runs.join(id)).unwrap();
1709        std::fs::write(
1710            runs.join(id).join("run.json"),
1711            serde_json::to_string_pretty(&value).unwrap(),
1712        )
1713        .unwrap();
1714        id.to_owned()
1715    }
1716}