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magi/
run.rs

1//! Run state: what happened, where it is stored, and how a run is resumed.
2//!
3//! Every node writes its result into [`RunState`] and the whole struct is
4//! flushed to `run.json` before the next node starts. That is what makes a run
5//! resumable: a competition can take an hour, and dying in review round four
6//! should not throw away three implementations, nine judge reads and a
7//! deliberation.
8//!
9//! Patches and raw agent transcripts are *not* in `run.json` — they live beside
10//! it under `artifacts/`, so the state file stays small enough to read by hand.
11use std::collections::BTreeMap;
12use std::path::{Path, PathBuf};
13
14use anyhow::{Context as _, Result, bail};
15use jiff::{Timestamp, Zoned};
16use serde::{Deserialize, Serialize};
17
18use crate::agent::SeatState;
19use crate::blind::Leak;
20use crate::config::{Config, MergeMode};
21use crate::verdict::{Finding, Rejection, ReviewVote, Severity};
22
23/// On-disk format version. Bumped when a field changes meaning, so a resumed
24/// run never half-reads a state file written by a different magi.
25///
26/// 2: added `RunStatus::Stalled`, `RunState::quota` (rate-limit losses), and
27/// the quorum fields on `Tally`. `RunState::load` already fails loudly and
28/// clearly on a schema mismatch; an old `run.json` from schema 1 now says so
29/// instead of silently half-reading.
30///
31/// 3: added `RunState::judge_skipped`. A solo candidate makes `judge` write
32/// only an event, leaving `judgements` empty forever — indistinguishable from
33/// "not yet judged" on every later reentry, which is what let `judge` re-run
34/// on a finished run and clobber its status back to `Judging`. The flag is
35/// the missing record of the fact that judging was skipped on purpose.
36///
37/// Also 3: a single-viable-candidate tally records `Tally::judges` as `0` and
38/// fills `Tally::uncontested`, instead of leaving the full roster size sitting
39/// next to a panel that never sat. A schema-2 record keeps reading as "0 of 3
40/// judges present" forever, because a tally is computed once and never
41/// recomputed on resume; the bump keeps that stale reading from being mixed
42/// with the new meaning.
43///
44/// 4: added `ReviewRound::progressed`. `graph::STAGNANT_LIMIT` counts
45/// consecutive rounds with `progressed == false` to decide whether the
46/// review loop should give up early, and a schema-3 record's default
47/// `false` would misreport a round that, at the time, actually committed a
48/// real diff — the field simply did not exist yet to say so. Without the
49/// bump, resuming an old multi-round review could spuriously trip the
50/// stagnation check on rounds that were never stagnant.
51///
52/// 5: added `RunStatus::Landing`. A run inside [`crate::land`]'s post-merge
53/// loop used to carry whatever status `merge` set before calling it forward
54/// unchanged - `Merged`, even while still watching CI or waiting on the
55/// owner's approval - which is also the one status [`RunStatus::resumable`]
56/// treats as finished. A daemon that gave this run's slot back to poll
57/// something else while an approval was outstanding, or one that simply
58/// crashed mid-land, had no way to tell "still landing" from "actually
59/// merged" and would either restart the whole competition or leave the run
60/// stuck reading as done. A schema-4 record has no notion of `Landing` at
61/// all, so this is a meaning a resumed old run cannot be guessed into rather
62/// than a value it can default to - hence the bump, not a `#[serde(default)]`.
63///
64/// 6: a deferred e2e is represented by an empty outcome list plus
65/// `ReviewRound::e2e_deferred`. Schema 5 treated that same empty list as an
66/// unconfigured, successful check, so schema-5 records are migrated with the
67/// old (not-deferred) meaning while older binaries reject schema-6 records.
68///
69/// 7: added `RunState::gate_ran`. An empty `RunState::gate` used to carry two
70/// meanings at once — "never attempted, or the last attempt was
71/// resource-blocked" (`graph::Runner::gate`'s retry case) and "attempted,
72/// zero commands configured, vacuously passed" (a repo with no
73/// `verify.gate`) — and nothing told them apart. `graph::Runner::merge`
74/// therefore read the second case as the first and refused forever: a
75/// review-only run with no gate commands configured reached `Gating` and
76/// then could never leave it. A schema-6 record's non-empty `gate` is
77/// migrated to `gate_ran = true` (a recorded attempt, real or historical,
78/// should not be spent again); an empty one migrates to `gate_ran = false`
79/// and is simply re-attempted by the next `gate()` call, which self-heals
80/// instantly for the zero-commands case.
81///
82/// 8: `ReviewRound::verified_head` used to be `None` for the overwhelming
83/// majority of rounds — every ordinary round that ran e2e against its own
84/// `head` in the main review loop never set it at all, leaving only the
85/// rare catch-up-on-a-different-commit case populated. A reader (a review
86/// prompt, `magi show`, the web UI) had no field to ask "which commit did
87/// this round's `e2e` actually check" and fell back to assuming it was
88/// always `head`, which is also what let a stale round's red output get
89/// quoted to a later round's reviewers as if it were about their patch, not
90/// an earlier one (see `ReviewRound::verification_summary`, which now exists
91/// so nowhere else has to guess). `verified_head` is now set whenever `e2e`
92/// held a real attempt (`E2eStatus::Passed`/`Failed`), always naming the
93/// commit actually checked instead of only the divergent case, and
94/// `ReviewRound::verified_at` is new alongside it. A schema-7 round's own
95/// unconditional main-loop check was always against `head` whether or not
96/// this field said so, so a `None` with a non-empty `e2e` migrates to
97/// `Some(head)` — a reconstruction of a fact that was always true, not a
98/// guess. `verified_at` has no historical value to reconstruct and stays
99/// `None`, which reads through `verification_summary` as "checked at:
100/// unknown" — an honest gap, not a fabricated time.
101/// 9: added [`RunState::operator_fixes`] — one record per `magi fix`
102/// invocation, routing specific, already-recorded findings to a fixer as a
103/// targeted, out-of-band fix outside the normal round sequence. Kept in a
104/// channel of its own rather than folded into [`ReviewRound`], because a
105/// reviewer's own severity and vote (copied verbatim onto
106/// [`OperatorFixFinding`]) must never be rewritten to look like the operator
107/// manufactured a blocking verdict — see `graph::Runner::fix_selected`. A
108/// schema-8 record has no operator-fix history at all, and
109/// `#[serde(default)]` reads an empty list as exactly that: "none happened",
110/// not an unknown gap. Nothing about an existing field's meaning changes.
111///
112/// 10: added `RunStatus::VerifiedNoop` and `Candidate::verified_noop`. Before
113/// this, an implementer that correctly concluded (with evidence) that a
114/// task's request was already satisfied elsewhere had no way to say so: the
115/// run ended the same way as one where every candidate simply failed to
116/// write anything — `after_implement` bailing with "no candidate produced a
117/// change; nothing to judge" and the run settling as a plain `Failed`. That
118/// conflated two very different facts (investigation run 391f's audit is
119/// what surfaced it: two attempts that had, correctly, found their fix
120/// already on `main`). A schema-9 record has no notion of either the new
121/// status or field, so a `VerifiedNoop` value is a meaning that cannot be
122/// reconstructed from an old record — hence the bump, not a
123/// `#[serde(default)]` for the status. `Candidate::verified_noop` alone
124/// *does* default-read as `None` on an old record, which is the honest
125/// reading: a run written before this schema never made the claim.
126///
127/// The report task 391f itself was raised from also named `6c5e`, `8df3` and
128/// `e9ce` as three more tasks whose implement wave ended the same
129/// diff-zero way, and the investigation traced all three — they do not
130/// share one cause.
131///
132/// `6c5e` and `8df3` are the same already-landed pattern as `391f`, not a
133/// coincidence: all three were re-queued together by a same-day audit of
134/// `done`-but-unlanded magi tasks (queue talk `20260912-115153-7216`,
135/// 2026-09-12 02:51–04:24), which found 17 magi tasks marked `done` with no
136/// merge to show for it and re-queued 16 of them, `6c5e` (a fix for the
137/// owner's `magi ask --thread` back-and-forth) and `8df3` (release
138/// automation) included. A second, same-day audit (talk
139/// `20260912-222053-07fe`, 13:20–13:36) then found 12 of those re-queued
140/// tasks — `391f`, `6c5e` and `8df3` among them — already merged by another
141/// route, and the owner had them deleted (`magi task rm`); `391f` alone
142/// survived because a daemon still held its run at the moment of deletion,
143/// which is the only reason any record of this group still exists to audit.
144/// Quoted directly from that second audit's own turn (talk `07fe`, so this
145/// reads without needing access to that talk store), naming both by id:
146///
147/// > 12件がマージ済み(対応不要)、3件が未実装(妥当)、2件が部分実装(要確認)でした。
148/// > **マージ済み → hold/rmを推奨:** 6c5e, 1ddc, fcf5, e25b, cea2, 391f, 3202,
149/// > b0a1, 5365, af85, 9f26, 8df3
150///
151/// — followed by the owner answering "削除!" and the agent confirming "11件
152/// 削除完了。391f はいま実行中のdaemonが掴んでいて削除できませんでした."
153/// `git log` independently confirms both fixes: the ask-back feature `6c5e`
154/// wanted landed as `f0df474` ("let the owner ask back on a question...",
155/// #93) on 2026-09-06, and the release-bump automation `8df3` wanted landed
156/// as `61005dd`/`bedd925` (open a release-bump PR on merge) on 2026-09-07
157/// and `116fcdc` (proportional version bump, #108) on 2026-09-08 — all
158/// before the 09-12 requeue. No run record survives the deletion for either
159/// task, so this schema's evidence is the audit transcript plus the
160/// independently re-checked `git log`, not a `run.json`.
161///
162/// `e9ce` is not that pattern at all, and is the reason the adoption guard
163/// below is all-or-nothing rather than "any candidate said so": its task
164/// asked an implementer to merge the real repository's `main` and cut a
165/// GitHub release — a destructive, out-of-worktree operation `AGENTS.md`
166/// names explicitly as not something to hand to an unattended candidate.
167/// Both of its runs (`20260912-053352-49ad`, `20260912-062629-bab1`)
168/// correctly refused, filed `magi ask` (questions `6196`, `6c9a`), and ended
169/// with an empty diff only because no answer arrived before the implement
170/// node's timeout — `49ad` looped `magi ask --wait` in the foreground for
171/// roughly 50 minutes as instructed before the timeout cut it off; `bab1`
172/// ended its turn moments after filing its question without ever actually
173/// blocking on the wait, a separate protocol slip this schema change does
174/// not attempt to fix. `49ad`'s own `candidates[0].summary` (quoted here
175/// because both records predate schema 10 and, separately, predate a
176/// still-unrelated struct change that already makes today's `magi show`
177/// refuse to parse either of them — `unknown field 'planner'` — so this is
178/// read straight from `run.json` on disk, not through that command):
179///
180/// > タスクの内容(READY 状態の run を実リポジトリの main に `merge --no-ff`
181/// > する、GitHub Release を作る)を精査した結果、これは全てこのワーカーの
182/// > worktree の外にある実リポジトリと GitHub 上の共有状態に対する不可逆な
183/// > 操作であり […] 私自身の運用ルール「Work only inside this worktree.
184/// > Nothing outside it is yours.」と正面から矛盾すると判断しました。
185///
186/// Neither candidate's reply carries the
187/// `NO CHANGE NEEDED` marker below, so both runs correctly stay `Failed`
188/// under this schema, not `VerifiedNoop`: a run blocked on an unanswered
189/// authorization question is not a verified no-op, and reading the two
190/// alike is exactly the misclassification the guard's per-candidate and
191/// whole-run conditions exist to refuse.
192///
193/// `RunStatus::Superseded` (added without a bump, still schema 10) is
194/// additive in the ordinary sense — an old build reading a run written under
195/// a newer one only had `RunStatus` variants to worry about before this, and
196/// a record already on disk never contained the new variant to begin with —
197/// but it is not additive in the sense every earlier schema bump on this
198/// constant was: `daemon::supersede_prior_runs` now rewrites a `Blocked` or
199/// `Stalled` run's `status` field *after* it was first written, once a later
200/// attempt at the same task lands. Any tooling outside magi that reads
201/// `run.json` and assumes a terminal `status` is permanent once set — a
202/// monitoring script polling for `blocked`, say — needs to know that
203/// `superseded` is where some of those records now go instead of staying put
204/// forever; see that function's own doc for exactly when.
205///
206/// Schema 11 adds [`RunState::released_to`] / [`RunState::released_branches`]:
207/// a run whose worktree a later attempt at the same task took over
208/// (`crate::handover`) can no longer be resumed from where it was. The fields
209/// are additive, but an older build would happily resume such a run into a
210/// worktree that no longer exists, which is the one thing the bump is for.
211///
212/// Schema 12 adds [`RunState::driver_exited`]: the driver records that it
213/// stopped walking the graph. Additive, but an older build would keep reading
214/// a long-lived daemon's pid as a live driver of a run that ended long ago.
215///
216/// Schema 13 adds [`RunState::origin`]: who started the run and which task it
217/// stood in for. Additive, and an older record is deliberately left with
218/// `None` ("origin unknown") rather than guessed at — a run from before this
219/// existed must not read as an operator's when nobody knows. The bump exists
220/// so a run is never mistaken for one whose origin was known and empty.
221pub const SCHEMA: u32 = 13;
222
223/// What an unrecorded origin reads as, wherever one is shown.
224pub const ORIGIN_UNKNOWN: &str = "origin unknown (started before origins were recorded)";
225
226/// Who started a run. Legibility only: nothing branches on it, the same rule
227/// as `agent::Invocation::run` / `node`.
228#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
229#[serde(tag = "kind", rename_all = "snake_case")]
230pub enum StartedBy {
231    /// The daemon, minting an attempt for a queue task.
232    Queue {
233        /// The task the attempt belongs to.
234        task: String,
235    },
236    /// An agent inside a talk (chat) conversation, via `magi run` / `magi review`.
237    Chat {
238        /// Talk id, e.g. `4a7b`.
239        talk: String,
240    },
241    /// An agent seat inside another run, identified by the `MAGI_RUN` /
242    /// `MAGI_NODE` it was spawned with.
243    Seat {
244        /// Run the seat belonged to.
245        run: String,
246        /// Node it was working in.
247        node: String,
248    },
249    /// A person at a terminal (or anything that carries no attribution).
250    Operator,
251}
252
253/// Where a run came from, and the task it was meant to finish, if any.
254///
255/// Kept as two facts because they vary independently: a chat agent may start a
256/// run on behalf of a queue task.
257#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
258pub struct Origin {
259    /// Who started it.
260    pub by: StartedBy,
261    /// The queue task this run serves, when it names one.
262    #[serde(default)]
263    pub task: Option<String>,
264}
265
266impl Origin {
267    /// A run a person started with no task attached.
268    pub fn operator() -> Self {
269        Self {
270            by: StartedBy::Operator,
271            task: None,
272        }
273    }
274
275    /// An attempt the daemon mints for `task`.
276    pub fn queue(task: &str) -> Self {
277        Self {
278            by: StartedBy::Queue {
279                task: task.to_owned(),
280            },
281            task: Some(task.to_owned()),
282        }
283    }
284
285    /// Attribute from the `MAGI_RUN` / `MAGI_NODE` pair `agent::invoke`
286    /// exports, as `(run, node)`; `None` for no (or blank) `run` is an
287    /// operator. A node of `chat` is the talk layer, whose run is the talk id.
288    pub fn from_agent_env(env: Option<(String, String)>, task: Option<String>) -> Self {
289        let by = match env {
290            Some((run, node)) if node == "chat" => StartedBy::Chat { talk: run },
291            Some((run, node)) => StartedBy::Seat { run, node },
292            None => StartedBy::Operator,
293        };
294        Self { by, task }
295    }
296
297    /// The same origin, naming `task` as the one it serves.
298    pub fn serving(mut self, task: Option<String>) -> Self {
299        if task.is_some() {
300            self.task = task;
301        }
302        self
303    }
304
305    /// One short label for lists, reports and the web UI.
306    pub fn label(&self) -> String {
307        let by = match &self.by {
308            StartedBy::Queue { task } => format!("task {}", short_of(task)),
309            StartedBy::Chat { talk } => format!("chat {}", short_of(talk)),
310            StartedBy::Seat { run, node } => format!("{node}@{}", short_of(run)),
311            StartedBy::Operator => "operator".to_owned(),
312        };
313        match (&self.by, &self.task) {
314            (StartedBy::Queue { task: a }, Some(b)) if a == b => by,
315            (_, Some(t)) => format!("{by}, for task {}", short_of(t)),
316            _ => by,
317        }
318    }
319}
320
321/// [`Origin::label`] for a run that may predate origins.
322pub fn origin_label(origin: Option<&Origin>) -> String {
323    origin.map_or_else(|| ORIGIN_UNKNOWN.to_owned(), Origin::label)
324}
325
326/// Where a run got to.
327#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
328#[serde(rename_all = "snake_case")]
329pub enum RunStatus {
330    /// Worktrees being prepared.
331    Prep,
332    /// Candidates being implemented.
333    Implementing,
334    /// Judges ranking blind.
335    Judging,
336    /// Judges deliberating after a split.
337    Deliberating,
338    /// Final votes being collected privately.
339    Voting,
340    /// Winner in the review + verification loop.
341    Reviewing,
342    /// Gate commands running. Transient: `graph::Runner::gate` and
343    /// `graph::Runner::merge` always move a run on from here, whether or not
344    /// any gate commands are configured — see [`RunState::gate_status`] and
345    /// `SCHEMA`'s doc for schema 7, which fixed a repo with an empty
346    /// `verify.gate` stranding a review-only run in `Gating` forever.
347    Gating,
348    /// Inside [`crate::land`]'s post-merge loop: watching CI, running a fix
349    /// round, rebasing onto a moved base, or waiting on the owner's merge
350    /// approval. A run parked here while an approval is outstanding has
351    /// handed its daemon slot back — see [`crate::daemon`] — and resumes
352    /// through exactly this status, not a fresh competition.
353    Landing,
354    /// Winner merged.
355    Merged,
356    /// Winner passed the gate; merge was not requested.
357    Ready,
358    /// The judgement did not gather enough judges (e.g. rate limiting took out
359    /// seats), so the verdict is not trustworthy. The run stopped and kept its
360    /// work so it can be resumed or folded — it must never be confused with a
361    /// healthy `Ready`.
362    Stalled,
363    /// Review rounds exhausted with findings still open, or the gate failed.
364    Blocked,
365    /// The graph could not complete.
366    Failed,
367    /// Every candidate wrote nothing, and every one of them said why in a way
368    /// that survived [`crate::graph::Runner`]'s adoption guard: a clean CLI
369    /// exit, an actually-empty tree, no command left with an unconfirmed
370    /// exit status, and non-empty evidence. Distinct from `Failed` on
371    /// purpose — see `SCHEMA`'s doc for schema 10 — because the two read
372    /// identically to an operator glancing at a card ("nothing happened")
373    /// while meaning opposite things: one is an agent that could not do the
374    /// work, the other is an agent that checked and the work was already
375    /// done. Settles the task through [`crate::queue::Task::handed_off`], not
376    /// [`crate::queue::Task::fail`]: a human still has to look — the claim is
377    /// unverified by magi itself — and `Held` (not `Failed`-and-requeued)
378    /// means nothing retries the task unattended on the same unconfirmed
379    /// claim while that look is pending.
380    VerifiedNoop,
381    /// A later attempt at the same task already finished the job — see
382    /// `crate::queue::Task::superseded_attempts` — so this run's own
383    /// `Blocked`/`Stalled` no longer means anyone has to look at it. Written
384    /// only over one of those two statuses, only once the task itself is
385    /// `crate::queue::TaskStatus::Done`, and only onto an attempt that comes
386    /// before the one that succeeded. Unlike them, not [`Self::resumable`]:
387    /// there is nothing left to resume towards, the task already has its
388    /// answer, and a fold is free to clean this run's worktree away without
389    /// waiting on a human to confirm that first.
390    Superseded,
391    /// The winner's whole change is already on the base under other commit
392    /// ids (a cherry-pick or squash by another task) — see
393    /// [`crate::already`]. Terminal and not a failure: nothing is left to
394    /// land, so unlike `Blocked` nobody has to look, and unlike `Merged` this
395    /// run did not land anything. Never resumable; `BaseSync::already_in`
396    /// names the base commits that carry the change. Added without a schema
397    /// bump, like `Superseded`: no record on disk can contain it yet.
398    AlreadyInBase,
399}
400
401impl RunStatus {
402    /// Is this a terminal state?
403    pub fn done(self) -> bool {
404        matches!(
405            self,
406            Self::Merged
407                | Self::Ready
408                | Self::Stalled
409                | Self::Blocked
410                | Self::Failed
411                | Self::VerifiedNoop
412                | Self::Superseded
413                | Self::AlreadyInBase
414        )
415    }
416
417    /// The name this status is written and shown under, matching the
418    /// `snake_case` serde spelling so a log line, an error message and the
419    /// JSON a phone reads all say the same word.
420    pub fn as_str(self) -> &'static str {
421        match self {
422            Self::Prep => "prep",
423            Self::Implementing => "implementing",
424            Self::Judging => "judging",
425            Self::Deliberating => "deliberating",
426            Self::Voting => "voting",
427            Self::Reviewing => "reviewing",
428            Self::Gating => "gating",
429            Self::Landing => "landing",
430            Self::Merged => "merged",
431            Self::Ready => "ready",
432            Self::Stalled => "stalled",
433            Self::Blocked => "blocked",
434            Self::Failed => "failed",
435            Self::VerifiedNoop => "verified_noop",
436            Self::Superseded => "superseded",
437            Self::AlreadyInBase => "already_in_base",
438        }
439    }
440
441    /// Label for a human-facing listing or report — the same word as
442    /// [`Self::as_str`] except where the machine spelling would read harsher
443    /// than the state actually is. `VerifiedNoop` is the one case: its own
444    /// `as_str` exists for logs, JSON and event messages, none of which
445    /// should quietly grow a second vocabulary, but a bare "verified_noop" in
446    /// a report reads like an error code, not the qualified, evidence-backed
447    /// claim it actually is.
448    pub fn display_label(self) -> &'static str {
449        match self {
450            Self::VerifiedNoop => "agent-verified no-op",
451            Self::AlreadyInBase => "already in base",
452            other => other.as_str(),
453        }
454    }
455
456    /// Can this run be carried on from where it stopped?
457    ///
458    /// Everything except a finished run and a failed one. `execute` skips
459    /// nodes already recorded, so re-entering is cheap wherever the run
460    /// stopped, and the alternative is always a fresh competition against
461    /// work that already exists.
462    ///
463    /// - `Stalled` re-asks only the seats whose absence collapsed the panel,
464    ///   keeping the candidates that were already paid for.
465    /// - `Blocked` re-enters the review loop against a branch that is built.
466    /// - **A non-terminal status** means the run was interrupted: a parked
467    ///   run waiting for its upgrade, or one whose daemon was killed. This
468    ///   used to be excluded, which left run 4043 stuck at `reviewing` with
469    ///   the deck telling the operator it could not be resumed - the one
470    ///   state where resuming is the only sensible answer.
471    ///
472    /// `Failed` does not qualify: the graph could not complete and there is
473    /// no established point to continue from. Nor does a finished run, whose
474    /// answer is a new competition. Nor does `VerifiedNoop`: every candidate
475    /// already agreed nothing belongs in this worktree, and resuming would
476    /// only re-ask the same question — the answer is for a human to check
477    /// the evidence, not for the graph to run again. Nor does `Superseded`:
478    /// a later attempt at the same task already finished it, so there is
479    /// nothing left this run's own answer could still contribute.
480    ///
481    /// Whether anything is *already* driving the run is a separate question,
482    /// answered by `daemon::is_working_on` at the callers that need it.
483    pub fn resumable(self) -> bool {
484        !matches!(
485            self,
486            Self::Merged
487                | Self::Ready
488                | Self::Failed
489                | Self::VerifiedNoop
490                | Self::Superseded
491                | Self::AlreadyInBase
492        )
493    }
494}
495
496/// One candidate implementation.
497#[derive(Debug, Clone, Serialize, Deserialize)]
498pub struct Candidate {
499    /// Position in the implementer list.
500    pub index: usize,
501    /// Blind label as presented to judges.
502    pub label: char,
503    /// Which agent wrote it. Recorded for the stats tables, never shown to a
504    /// judge.
505    pub agent: String,
506    /// Branch, named after the label so judges can inspect it without learning
507    /// the author.
508    pub branch: String,
509    /// Worktree path.
510    pub worktree: PathBuf,
511    /// Sanitized author summary.
512    #[serde(default)]
513    pub summary: String,
514    /// `git diff --stat`.
515    #[serde(default)]
516    pub stat: String,
517    /// Files touched.
518    #[serde(default)]
519    pub files: usize,
520    /// Commits ahead of base.
521    #[serde(default)]
522    pub commits: usize,
523    /// True when the agent produced no change at all.
524    #[serde(default)]
525    pub empty: bool,
526    /// Why this candidate is not in the running.
527    #[serde(default)]
528    pub failed: Option<String>,
529    /// The evidence this candidate gave for writing no change on purpose —
530    /// the `NO CHANGE NEEDED:` marker `prompt::implement`'s reply format
531    /// documents, verbatim. `Some` only when [`crate::graph`]'s adoption
532    /// guard accepted the claim: the CLI exited cleanly, the tree really is
533    /// empty, no command in the reply was left with an unconfirmed exit
534    /// status, and the evidence itself is non-empty. A candidate that wrote
535    /// nothing and said nothing about why — the ordinary empty loss — always
536    /// reads `None` here, same as one written before schema 10 ever existed.
537    #[serde(default)]
538    pub verified_noop: Option<String>,
539    /// Wall-clock time for the implementation.
540    #[serde(default)]
541    pub duration_ms: u64,
542    /// Whether the worktree has been folded away.
543    #[serde(default)]
544    pub folded: bool,
545}
546
547impl Candidate {
548    /// Can this candidate be judged?
549    pub fn viable(&self) -> bool {
550        self.failed.is_none() && !self.empty
551    }
552}
553
554/// One judge's independent ranking.
555#[derive(Debug, Clone, Serialize, Deserialize)]
556pub struct Judgement {
557    /// Judge seat number, 1-based.
558    pub judge: usize,
559    /// Seat key.
560    pub seat: String,
561    /// Agent occupying the seat.
562    pub agent: String,
563    /// Best-first labels.
564    #[serde(default)]
565    pub ranking: Vec<char>,
566    /// Per-label justification.
567    #[serde(default)]
568    pub reasons: BTreeMap<String, String>,
569    /// Self-reported confidence.
570    #[serde(default)]
571    pub confidence: Option<u8>,
572    /// Order the candidates were presented in, as candidate indices.
573    #[serde(default)]
574    pub order: Vec<usize>,
575    /// Why this judge has no ranking.
576    #[serde(default)]
577    pub failed: Option<String>,
578    /// Wall-clock time.
579    #[serde(default)]
580    pub duration_ms: u64,
581}
582
583/// One judge's turn in a deliberation round.
584#[derive(Debug, Clone, Serialize, Deserialize)]
585pub struct DeliberationTurn {
586    /// Judge seat number, 1-based.
587    pub judge: usize,
588    /// Agent occupying the seat.
589    pub agent: String,
590    /// The argument, as written.
591    pub body: String,
592    /// Where the judge stood at the end of the turn.
593    #[serde(default)]
594    pub tentative: Option<char>,
595}
596
597/// A deliberation round.
598#[derive(Debug, Clone, Serialize, Deserialize)]
599pub struct DeliberationRound {
600    /// 1-based round number.
601    pub round: usize,
602    /// Turns, in the order they were taken.
603    pub turns: Vec<DeliberationTurn>,
604}
605
606/// A final vote, collected privately.
607#[derive(Debug, Clone, Serialize, Deserialize)]
608pub struct VoteRecord {
609    /// Judge seat number, 1-based.
610    pub judge: usize,
611    /// Agent occupying the seat.
612    pub agent: String,
613    /// The vote.
614    #[serde(default)]
615    pub vote: Option<char>,
616    /// Why.
617    #[serde(default)]
618    pub reason: String,
619    /// Did this judge move from its initial first choice?
620    #[serde(default)]
621    pub changed: bool,
622}
623
624/// A seat that was taken out by a CLI rate limit / quota, recorded so a run
625/// whose panel collapsed does not masquerade as a healthy one.
626#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
627pub struct QuotaLoss {
628    /// Seat key, e.g. `judge-1` or `review-2`.
629    pub seat: String,
630    /// Node that was running, e.g. `judge`, `vote`, `review`.
631    pub node: String,
632    /// When the CLI reported the limit.
633    pub at: Timestamp,
634    /// Reset hint if the CLI printed one, free text.
635    #[serde(default)]
636    pub reset: Option<String>,
637}
638
639/// A newly created lockfile of a package manager the directory does not use,
640/// which a rescue commit left untracked instead of committing. Recorded so the
641/// omission is visible: the file may be one the task really wanted.
642#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
643pub struct Withheld {
644    /// Repo-relative path.
645    pub path: String,
646    /// The manager the file belongs to.
647    pub manager: String,
648    /// The tracked file (or missing manifest) that made it foreign.
649    pub kept_by: String,
650    /// Node whose rescue commit withheld it.
651    pub node: String,
652    /// When.
653    pub at: Timestamp,
654}
655
656/// The mechanical count.
657#[derive(Debug, Clone, Serialize, Deserialize)]
658pub struct Tally {
659    /// First-choice votes per label.
660    pub first_choice: BTreeMap<char, usize>,
661    /// Borda points from the initial rankings, used only to break a tie.
662    pub borda: BTreeMap<char, usize>,
663    /// The winning label.
664    pub winner: char,
665    /// How many judges produced a usable ranking. A panel of one is not a
666    /// consensus and must not be reported as a split.
667    #[serde(default)]
668    pub rankings: usize,
669    /// Did every judge's *initial* first choice agree?
670    pub unanimous_initial: bool,
671    /// Was deliberation run?
672    pub deliberated: bool,
673    /// Judges who moved between their initial ranking and their final vote.
674    pub changed_votes: usize,
675    /// Did the final votes agree?
676    pub unanimous_final: bool,
677    /// How the tie was broken, when it had to be.
678    #[serde(default)]
679    pub tie_break: Option<String>,
680    /// Configured judge count — the size of the full panel. `0` when no
681    /// panel was asked (see `uncontested`), not the roster size a panel that
682    /// never sat would have had.
683    #[serde(default)]
684    pub judges: usize,
685    /// Judges who actually contributed to the decision (not taken out by a
686    /// rate limit and producing a usable rank or vote).
687    #[serde(default)]
688    pub present: usize,
689    /// How many judges are required for a trustworthy verdict. Chosen as a
690    /// strict majority (`judges / 2 + 1`): a verdict backed by a minority must
691    /// never be presented as a healthy one, while a bare majority is still
692    /// real signal. A one-candidate run needs no quorum.
693    #[serde(default)]
694    pub quorum: usize,
695    /// `present >= quorum`, or no quorum was required.
696    #[serde(default)]
697    pub met_quorum: bool,
698    /// Why no panel was asked, when none was: a single viable candidate, or
699    /// a review-only run that never competed. `None` when judges actually
700    /// ranked and voted — including when too few of them survived to reach
701    /// quorum, which is a collapse and must keep reading as one.
702    #[serde(default)]
703    pub uncontested: Option<String>,
704}
705
706/// One reviewer's report in a round.
707#[derive(Debug, Clone, Serialize, Deserialize)]
708pub struct ReviewRecord {
709    /// Reviewer seat number, 1-based.
710    pub reviewer: usize,
711    /// Agent occupying the seat.
712    pub agent: String,
713    /// Reviewer prose.
714    #[serde(default)]
715    pub summary: String,
716    /// Findings, with magi-assigned ids.
717    #[serde(default)]
718    pub findings: Vec<Finding>,
719    /// This seat's initial vote. `None` on a record predating votes, exactly
720    /// like a round that genuinely had none cast — never a stand-in for a
721    /// vote that was lost.
722    #[serde(default)]
723    pub vote: Option<ReviewVote>,
724    /// Why this reviewer produced nothing.
725    #[serde(default)]
726    pub failed: Option<String>,
727    /// Wall-clock time.
728    #[serde(default)]
729    pub duration_ms: u64,
730    /// How many times this seat was asked before it settled — 0 for a first
731    /// answer, N after N nudges (`ask_json_wave`'s retry loop). Read this
732    /// together with [`Self::failed`], never `failed` alone: `failed: Some(_)`
733    /// with `attempts == 0` is a seat that never answered at all, while
734    /// `failed: None` with `attempts > 0` is one that only came back after a
735    /// nudge — recovered, not silent — and the two must not look the same in
736    /// history. A record written before this field existed defaults to `0`,
737    /// which under-reports a pre-existing retry rather than inventing one;
738    /// see `ask_json_wave`'s own doc for where this is filled in.
739    #[serde(default)]
740    pub attempts: usize,
741}
742
743/// One seat's revote during a round's reconsideration (see
744/// [`ReviewRound::reconsideration`]).
745#[derive(Debug, Clone, Serialize, Deserialize)]
746pub struct ReviewRevoteRecord {
747    /// Reviewer seat number, 1-based.
748    pub reviewer: usize,
749    /// Agent occupying the seat.
750    pub agent: String,
751    /// The revote. `None` when the seat did not answer.
752    #[serde(default)]
753    pub vote: Option<ReviewVote>,
754    /// Why.
755    #[serde(default)]
756    pub reason: String,
757    /// Why this seat produced no revote.
758    #[serde(default)]
759    pub failed: Option<String>,
760}
761
762/// One fix round spent on a failing `verify.gate`: which fixer, what it did to
763/// the tree, and the gate output it was shown.
764#[derive(Debug, Clone, Serialize, Deserialize)]
765pub struct GateFixRecord {
766    /// Agent that applied the fix.
767    pub agent: String,
768    /// The gate output the fixer was handed, tail-truncated.
769    pub failed: Vec<CommandOutcome>,
770    /// What the fixer said it changed.
771    #[serde(default)]
772    pub notes: String,
773    /// Did the fix produce a commit?
774    #[serde(default)]
775    pub committed: bool,
776    /// Why the fix step produced nothing.
777    #[serde(default)]
778    pub error: Option<String>,
779}
780
781/// One fixer round spent on a rebase that stopped on a conflict: which fixer,
782/// what it was shown and whether git says the rebase then finished.
783///
784/// The number of these is the budget spent (`graph.review_rounds` is the cap),
785/// written to disk *before* the fixer runs so a park or crash cannot hand the
786/// round back.
787#[derive(Debug, Clone, Serialize, Deserialize)]
788pub struct RebaseFixRecord {
789    /// Agent asked to resolve the conflict.
790    pub agent: String,
791    /// Paths git reported unmerged when the round started.
792    pub paths: Vec<String>,
793    /// The branch tip the rebase started from, so a resumed run can tell a
794    /// worktree still holding those files from one with edits of its own.
795    #[serde(default)]
796    pub from: Option<String>,
797    /// Did git report the rebase finished after the round?
798    #[serde(default)]
799    pub finished: bool,
800    /// Why the round produced nothing (agent failure, quota).
801    #[serde(default)]
802    pub error: Option<String>,
803}
804
805/// The fixer's response to a round.
806#[derive(Debug, Clone, Serialize, Deserialize)]
807pub struct FixRecord {
808    /// Agent that applied the fixes.
809    pub agent: String,
810    /// Finding ids acted on.
811    #[serde(default)]
812    pub addressed: Vec<String>,
813    /// Findings declined, with reasons.
814    #[serde(default)]
815    pub rejected: Vec<Rejection>,
816    /// What changed.
817    #[serde(default)]
818    pub notes: String,
819    /// Did the fix produce a commit?
820    #[serde(default)]
821    pub committed: bool,
822    /// Why the fix step produced nothing.
823    #[serde(default)]
824    pub failed: Option<String>,
825    /// Wall-clock time.
826    #[serde(default)]
827    pub duration_ms: u64,
828    /// How the fixer's own seat was made to answer when its CLI turn ended
829    /// cleanly but without an addressed/rejected report — see
830    /// [`graph::Runner::continue_fix_report`]. `None` for a record written
831    /// before this existed, which must read as "unknown", not as
832    /// [`ContinuationOutcome::NotNeeded`]: an old run really may have hit
833    /// this exact gap and simply had no mechanism to say so.
834    #[serde(default)]
835    pub continuation: Option<ContinuationRecord>,
836}
837
838/// How a node recovered — or failed to recover — a structured report after
839/// the CLI's own turn ended cleanly (a usable, non-empty, exit-0 reply)
840/// without it. A clean CLI turn is not the same fact as the node's own work
841/// being done — see the `fix` node's `continue_fix_report`, which is what
842/// produces this.
843#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq)]
844pub enum ContinuationOutcome {
845    /// The first reply already carried the report; nothing was resumed.
846    NotNeeded,
847    /// A follow-up call in the same session recovered the report.
848    Resumed,
849    /// The continuation budget was spent without ever recovering it.
850    Exhausted,
851    /// A continuation attempt hit the CLI's rate limit; not retried further
852    /// — a quota fails the same way again immediately.
853    QuotaLost,
854    /// No session was left to resume into, so nothing was attempted.
855    NoSession,
856}
857
858/// Cost and outcome of one node's attempt to recover a missing report by
859/// resuming its own seat.
860#[derive(Debug, Clone, Copy, Serialize, Deserialize)]
861pub struct ContinuationRecord {
862    /// Follow-up calls made to the same seat. `0` when the outcome is
863    /// [`ContinuationOutcome::NotNeeded`] or [`ContinuationOutcome::NoSession`].
864    pub attempts: usize,
865    /// Wall-clock time spent on those follow-up calls, summed — not counting
866    /// the original call whose reply this is recovering from.
867    pub cumulative_wait_ms: u64,
868    /// What ended the loop.
869    pub outcome: ContinuationOutcome,
870}
871
872impl ContinuationRecord {
873    /// The report was already there on the first try.
874    pub fn not_needed() -> Self {
875        Self {
876            attempts: 0,
877            cumulative_wait_ms: 0,
878            outcome: ContinuationOutcome::NotNeeded,
879        }
880    }
881}
882
883/// What happened to one operator-selected finding after the fixer ran, as
884/// part of an [`OperatorFixRequest`].
885#[derive(Debug, Clone, Default, PartialEq, Serialize, Deserialize)]
886#[serde(rename_all = "snake_case")]
887pub enum OperatorFixOutcome {
888    /// The request has not run yet, or never got far enough to report.
889    #[default]
890    Pending,
891    /// The fixer's adoption report named this finding as addressed.
892    Addressed,
893    /// The fixer's adoption report declined it, with an argument.
894    Rejected {
895        /// The fixer's own reason.
896        why: String,
897    },
898    /// The fixer never delivered a usable adoption report at all — a
899    /// dropped stream, a quota hit, or a continuation budget spent without
900    /// recovering one (see `graph::Runner::continue_fix_report`). Distinct
901    /// from `Rejected`, which needs an argument this never produced, and
902    /// never written back as "addressed" or silently left `Pending` — a
903    /// gap in the report is its own outcome, not evidence either way about
904    /// the finding.
905    Unreported,
906}
907
908/// One finding an operator selected for [`OperatorFixRequest`], with the
909/// provenance a reviewer originally gave it, copied here verbatim.
910///
911/// Severity and vote are snapshots, never recomputed and never treated as
912/// blocking just because an operator picked the finding — only
913/// [`Severity::blocks`] on the original [`ReviewRecord`] decides that. This
914/// type exists so an operator's selection is an auditable *addition* to the
915/// record, not a rewrite of what a reviewer actually said.
916#[derive(Debug, Clone, Serialize, Deserialize)]
917pub struct OperatorFixFinding {
918    /// Finding id, e.g. `R2-1-3`.
919    pub id: String,
920    /// Severity as the reviewer recorded it.
921    pub severity: Severity,
922    /// The reviewer seat's overall vote for the round this finding came
923    /// from, if one was cast.
924    #[serde(default)]
925    pub reviewer_vote: Option<ReviewVote>,
926    /// Review round the finding was raised in.
927    pub round: usize,
928    /// That round's own head — the commit the finding was actually raised
929    /// against, used for the freshness check against the branch's current
930    /// head at request time.
931    pub round_head: String,
932    /// Reviewer seat number, 1-based.
933    pub reviewer: usize,
934    /// Agent occupying that seat.
935    pub agent: String,
936    /// File the finding concerns.
937    #[serde(default)]
938    pub file: Option<String>,
939    /// Line the finding concerns.
940    #[serde(default)]
941    pub line: Option<u32>,
942    /// One-line summary.
943    pub title: String,
944    /// The argument.
945    #[serde(default)]
946    pub detail: String,
947    /// What happened to this finding after the fixer ran.
948    #[serde(default)]
949    pub outcome: OperatorFixOutcome,
950}
951
952/// One `magi fix` invocation: the operator's own record of which
953/// already-recorded findings they routed to a fixer, why, and what came
954/// back. See [`SCHEMA`]'s doc for schema 9 on why this is a channel of its
955/// own rather than a field on [`ReviewRound`].
956#[derive(Debug, Clone, Serialize, Deserialize)]
957pub struct OperatorFixRequest {
958    /// When `magi fix` was invoked.
959    pub requested_at: Timestamp,
960    /// The operator's own reasoning. Required and never empty at the CLI —
961    /// the audit trail this feature exists for.
962    pub reason: String,
963    /// The findings selected, each with its own provenance and outcome.
964    pub findings: Vec<OperatorFixFinding>,
965    /// The branch's head at the moment this request started executing.
966    pub head_at_request: String,
967    /// Did the operator pass `--allow-stale`?
968    pub allow_stale: bool,
969    /// Did any selected finding's own `round_head` differ from
970    /// `head_at_request`? Kept distinct from `allow_stale` — flipping that
971    /// flag does not retroactively make a request that was actually fresh
972    /// read as stale, or the reverse.
973    pub stale: bool,
974    /// The fixer's own attempt, once dispatched.
975    #[serde(default)]
976    pub fix: Option<FixRecord>,
977    /// Head after the fixer's commit, when it produced one.
978    #[serde(default)]
979    pub result_head: Option<String>,
980    /// The review-only run opened to re-verify the change, when one was
981    /// actually committed. `None` when nothing changed, so there was
982    /// nothing new to re-review — never left implicit as "not gotten to
983    /// yet".
984    #[serde(default)]
985    pub follow_up_review_run: Option<String>,
986}
987
988/// A command a seat's own CLI reported running, kept for `magi show` and for
989/// telling "this seat's turn ended" apart from "the process it started is
990/// done" — see `agent::CommandEvidence`, which is the only source this is
991/// ever built from. Never something magi polled or supervised; a command the
992/// CLI never reported finishing (or a CLI this crate has no adapter for at
993/// all) simply has no entry here, which must read as "unknown", not as
994/// "nothing ran".
995#[derive(Debug, Clone, Serialize, Deserialize)]
996pub struct JobRecord {
997    /// Graph node the seat belongs to, e.g. `"implement"`, `"fix"`.
998    pub node: String,
999    /// Review round this job belongs to, for a `"review"`/`"fix"` node —
1000    /// `None` for every other node, where rounds do not apply, and for every
1001    /// record written before this was tracked. Lets a reader ask "what did
1002    /// this seat itself actually run this round", distinct from and never
1003    /// substituted for magi's own recorded `ReviewRound::e2e` — an absent
1004    /// entry here means unobserved, not that nothing ran (see this type's
1005    /// own doc).
1006    #[serde(default)]
1007    pub round: Option<usize>,
1008    /// Seat key, e.g. `"impl-A"`.
1009    pub seat: String,
1010    /// The CLI's own id for this command.
1011    pub id: String,
1012    /// The command itself, as the CLI reported it.
1013    pub description: String,
1014    /// When this evidence was captured — the moment this seat's reply
1015    /// carrying it was read, not the command's own start time, which no
1016    /// adapter here currently has. A lower bound on staleness only.
1017    pub checked_at: Timestamp,
1018    /// What the CLI reported for it.
1019    pub status: JobStatus,
1020    /// Exit code the CLI reported.
1021    pub exit_code: Option<i32>,
1022    /// Tail of the command's own output, when reported.
1023    #[serde(default)]
1024    pub result_summary: String,
1025    /// Which CLI/event stream this came from, e.g. `"codex"`.
1026    pub source: String,
1027}
1028
1029/// What a [`JobRecord`]'s own CLI reported for it. There is no `Running`
1030/// variant: nothing here is ever polled live, so "still running" and
1031/// "finished but never reported" are the same absence of evidence, not a
1032/// state this type can name — see [`JobRecord`]'s own doc.
1033#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq)]
1034pub enum JobStatus {
1035    /// The command's own reported exit code was `0`.
1036    Completed,
1037    /// The command's own reported exit code was non-zero.
1038    Failed,
1039    /// The CLI reported this command but not a readable exit code.
1040    Unknown,
1041}
1042
1043/// Outcome of one shell command.
1044#[derive(Debug, Clone, Serialize, Deserialize)]
1045pub struct CommandOutcome {
1046    /// The command, as configured.
1047    pub command: String,
1048    /// Exit code, `None` on timeout or signal.
1049    pub code: Option<i32>,
1050    /// Tail of the combined output, for the report and the fix prompt.
1051    #[serde(default)]
1052    pub output_tail: String,
1053    /// Wall-clock time.
1054    #[serde(default)]
1055    pub duration_ms: u64,
1056    /// Set only by magi itself, never inferred from `output_tail`: the
1057    /// configured command was never actually run because a resource it
1058    /// needs — right now, only the shared build cache's lease or the
1059    /// freshness check that must precede using it — was not available
1060    /// within budget. Distinct from an ordinary failure or timeout (both of
1061    /// which *did* run something and are evidence about the patch); this is
1062    /// evidence about the machine, and must never be read as a verdict on
1063    /// the tree it named. `#[serde(default)]` so every record written
1064    /// before this field existed keeps reading as `false` — exactly what it
1065    /// was.
1066    #[serde(default)]
1067    pub resource_blocked: bool,
1068}
1069
1070/// Substrings that mark a Cargo/rustc/link failure: the toolchain could not
1071/// produce a binary to run at all, as opposed to producing one that ran and
1072/// failed. A Windows link race against a shared `CARGO_TARGET_DIR` (see
1073/// AGENTS.md, "Running magi on magi") looks exactly like a red command
1074/// otherwise, and a run has concluded `Blocked` on nothing but that race.
1075const BUILD_FAILURE_MARKERS: &[&str] = &[
1076    "error: could not compile",
1077    "error: linking with",
1078    "LINK : fatal error",
1079    "fatal error LNK",
1080];
1081
1082impl CommandOutcome {
1083    /// Did it pass?
1084    pub fn ok(&self) -> bool {
1085        self.code == Some(0)
1086    }
1087
1088    /// Did this command fail because the code could not be built or linked,
1089    /// rather than because it ran and produced a wrong result? A failure here
1090    /// is not a verdict on the patch under review.
1091    pub fn build_failed(&self) -> bool {
1092        !self.ok()
1093            && BUILD_FAILURE_MARKERS
1094                .iter()
1095                .any(|m| self.output_tail.contains(m))
1096    }
1097}
1098
1099/// One review + verify + fix round.
1100#[derive(Debug, Clone, Serialize, Deserialize)]
1101pub struct ReviewRound {
1102    /// 1-based round number.
1103    pub round: usize,
1104    /// Commit the round reviewed.
1105    pub head: String,
1106    /// The commit `e2e` was actually attempted against. Set whenever an
1107    /// attempt was dispatched (`e2e_status()` reads `Passed`, `Failed`, or
1108    /// `ResourceBlocked`), naming that commit even when it equals `head` —
1109    /// never left implicit, because an implicit "must have been `head`" is
1110    /// exactly what let a later round quote an earlier round's result
1111    /// without saying which commit it came from. A resource-blocked attempt
1112    /// still targeted a specific commit even though no command finished, and
1113    /// leaving that unrecorded is exactly what made a *fresh* blocked
1114    /// attempt read the same as an untracked one from before schema 8.
1115    /// `None` only when nothing was attempted at all (`NotConfigured`,
1116    /// `Deferred`). See `SCHEMA`'s doc for schema 8 for why this broadened
1117    /// from only the catch-up-on-a-different-commit case.
1118    #[serde(default)]
1119    pub verified_head: Option<String>,
1120    /// When the attempt behind `verified_head` actually ran. `None` on
1121    /// every record written before schema 8, and on a round where nothing
1122    /// ran —
1123    /// both read as "unknown", not as "now" or "never asked".
1124    #[serde(default)]
1125    pub verified_at: Option<Timestamp>,
1126    /// Reviewer reports.
1127    pub reviews: Vec<ReviewRecord>,
1128    /// E2E command outcomes for this round.
1129    #[serde(default)]
1130    pub e2e: Vec<CommandOutcome>,
1131    /// True when the first verify attempt this round could not build or
1132    /// link, and `e2e` above holds a second attempt run before concluding.
1133    /// A run must never be decided on a red it could not tell from an
1134    /// unrelated build race.
1135    #[serde(default)]
1136    pub verify_retried: bool,
1137    /// True when `e2e` was intentionally left empty this round: the round
1138    /// already had blocking findings and another round was available, so
1139    /// `graph::Runner::review_loop` sent the fixer straight at them instead
1140    /// of spending a full verify run on a head it already knew would need
1141    /// another fix. Distinct from an `e2e` that is simply empty because
1142    /// `verify.e2e` has no commands configured — `e2e.is_empty()` alone
1143    /// cannot tell those apart, and conflating them is exactly how a
1144    /// deferred check would get painted green. A record written before this
1145    /// field existed defaults to `false`, which is the truth for it: every
1146    /// round used to run e2e unconditionally.
1147    #[serde(default)]
1148    pub e2e_deferred: bool,
1149    /// Why `e2e` was deferred, set only when [`Self::e2e_deferred`] is true.
1150    /// Carried to the fixer's prompt and shown in the report so "deferred"
1151    /// never reads as silence.
1152    #[serde(default)]
1153    pub e2e_defer_reason: Option<String>,
1154    /// Fixer response, absent when the round was already clean.
1155    #[serde(default)]
1156    pub fix: Option<FixRecord>,
1157    /// Findings that hold the merge.
1158    #[serde(default)]
1159    pub blocking: usize,
1160    /// Reviewer seats that answered (did not time out, crash, or return
1161    /// something unparsable).
1162    #[serde(default)]
1163    pub answered: usize,
1164    /// Reviewer seats the round expected an answer from — normally
1165    /// `graph.reviewers`, but recorded per round so a config change between
1166    /// runs never has to be inferred from history.
1167    #[serde(default)]
1168    pub expected: usize,
1169    /// Round ended with no blocking findings and green verification, judged
1170    /// against the seats that answered. See [`Self::incomplete`] for whether
1171    /// that verdict is missing input.
1172    #[serde(default)]
1173    pub clean: bool,
1174    /// Did the tree actually move against `base` this round, comparing the
1175    /// diff after the fix to the diff the reviewers saw at the start of the
1176    /// round?
1177    ///
1178    /// Never derived from the fixer's own `addressed`/`rejected` count: that
1179    /// self-report has been caught lying twice on this workload (runs `b455`
1180    /// and `6218`, both of which committed a real, substantial diff while
1181    /// reporting `0 addressed`). `git` does not lie about whether the tree
1182    /// changed, so this is what `graph::Runner::review_loop` counts rounds of
1183    /// no progress against. Absent on a round with no fix attempt (already
1184    /// clean, or the round the budget ran out on), where it defaults to
1185    /// `false` and is not consulted.
1186    #[serde(default)]
1187    pub progressed: bool,
1188    /// Did the seats' initial votes ([`ReviewRecord::vote`]) disagree?
1189    #[serde(default)]
1190    pub vote_split: bool,
1191    /// One round of revoting, run only when `vote_split`: each seat that cast
1192    /// an initial vote reads every seat's findings and votes, then revotes.
1193    /// Empty when the initial votes already agreed, the same as a solo
1194    /// candidate leaving `deliberation` empty.
1195    #[serde(default)]
1196    pub reconsideration: Vec<ReviewRevoteRecord>,
1197    /// The round's verdict: the most cautious vote among the seats that
1198    /// answered, using each seat's revote where reconsideration ran and its
1199    /// initial vote otherwise. `None` when no seat produced a usable vote —
1200    /// including every record written before votes existed, which is the
1201    /// truth for those rounds, not a gap in this one.
1202    #[serde(default)]
1203    pub verdict: Option<ReviewVote>,
1204}
1205
1206impl ReviewRound {
1207    /// Did at least one reviewer seat fail to answer this round?
1208    pub fn incomplete(&self) -> bool {
1209        self.answered < self.expected
1210    }
1211
1212    /// The honest state of this round's e2e leg.
1213    ///
1214    /// Never derive this from `e2e.is_empty()` alone anywhere else in the
1215    /// codebase — `NotConfigured` and `Deferred` both leave it empty, and
1216    /// only this method (backed by [`Self::e2e_deferred`]) tells them apart.
1217    /// A resource-blocked attempt is checked first and ahead of both: `e2e`
1218    /// is non-empty for it too, but `CommandOutcome::resource_blocked` says
1219    /// no command actually ran, and reading that as `Failed` is exactly how
1220    /// shared build-cache contention gets misreported as a verdict on the
1221    /// patch (see `CommandOutcome::resource_blocked`'s own doc).
1222    pub fn e2e_status(&self) -> E2eStatus {
1223        if self.e2e.iter().any(|o| o.resource_blocked) {
1224            E2eStatus::ResourceBlocked
1225        } else if !self.e2e.is_empty() {
1226            if self.e2e.iter().all(CommandOutcome::ok) {
1227                E2eStatus::Passed
1228            } else {
1229                E2eStatus::Failed
1230            }
1231        } else if self.e2e_deferred {
1232            E2eStatus::Deferred
1233        } else {
1234            E2eStatus::NotConfigured
1235        }
1236    }
1237
1238    /// Facts about this round's verification leg, judged against
1239    /// `current_head` — the commit whoever is asking is actually looking at
1240    /// right now. `None` when there is nothing worth surfacing: no
1241    /// `verify.e2e` configured, or the round's own check came back green (a
1242    /// passing result needs no skepticism attached to it, and an unread
1243    /// `None` is exactly what keeps a quiet round quiet instead of padding
1244    /// every prompt with "everything was fine").
1245    ///
1246    /// This is the single place that turns `e2e`/`e2e_deferred`/
1247    /// `verified_head`/`verified_at` into text. Every prompt and report that
1248    /// shows a round's verification result must build its wording from this,
1249    /// not re-derive its own summary at the call site — a hand-rolled
1250    /// version at one more place is exactly how "an old red read as today's
1251    /// answer" comes back through a different door (see the incident this
1252    /// type exists to prevent, recorded alongside `SCHEMA`'s doc for schema
1253    /// 8).
1254    pub fn verification_summary(&self, current_head: &str) -> Option<VerificationSummary> {
1255        let status = self.e2e_status();
1256        if matches!(status, E2eStatus::NotConfigured | E2eStatus::Passed) {
1257            return None;
1258        }
1259        let commit = match &self.verified_head {
1260            Some(h) if h == current_head => {
1261                format!("commit {} (this is the head being looked at now)", short(h))
1262            }
1263            Some(h) => format!("commit {} (an earlier head, since superseded)", short(h)),
1264            None => "commit unknown (no command finished checking one)".to_owned(),
1265        };
1266        let checked_at = match self.verified_at {
1267            Some(t) => format!("checked at {t}"),
1268            None => "checked at: unknown (recorded before this was tracked)".to_owned(),
1269        };
1270        let result = match status {
1271            E2eStatus::NotConfigured | E2eStatus::Passed => unreachable!("checked above"),
1272            E2eStatus::Failed => "result: FAILED".to_owned(),
1273            E2eStatus::Deferred => format!(
1274                "result: not run this round yet — deferred to the fixer{}. Not passed, not \
1275                 failed.",
1276                self.e2e_defer_reason
1277                    .as_deref()
1278                    .map(|why| format!(" ({why})"))
1279                    .unwrap_or_default()
1280            ),
1281            E2eStatus::ResourceBlocked => "result: could not run — the shared build cache was \
1282                                            not available. This is evidence about the machine, \
1283                                            not about the patch."
1284                .to_owned(),
1285        };
1286        let label = format!("round {}, {commit}, {checked_at}\n{result}", self.round);
1287        // `Failed` names the command that actually ran and failed;
1288        // `ResourceBlocked` names the operation magi was waiting on (or the
1289        // freshness check it could not confirm) — `command` still says what
1290        // was attempted even though nothing finished, and leaving it out is
1291        // exactly how a reviewer or fixer lost the one thing this leg *can*
1292        // still tell them: what was being checked, not whether it passed.
1293        let tail = matches!(status, E2eStatus::Failed | E2eStatus::ResourceBlocked).then(|| {
1294            self.e2e
1295                .iter()
1296                .filter(|o| !o.ok())
1297                .map(|o| format!("$ {}\n{}\n", o.command, o.output_tail))
1298                .collect::<String>()
1299        });
1300        Some(VerificationSummary { label, tail })
1301    }
1302}
1303
1304/// The honest state of a round's e2e leg. See [`ReviewRound::e2e_status`].
1305#[derive(Debug, Clone, Copy, PartialEq, Eq)]
1306pub enum E2eStatus {
1307    /// `verify.e2e` has no commands configured.
1308    NotConfigured,
1309    /// Skipped this round on purpose: blocking findings already required a
1310    /// fix, so the round went straight to the fixer instead of spending a
1311    /// full verify run on a head it already knew would need another pass.
1312    Deferred,
1313    /// Ran, and every command exited 0.
1314    Passed,
1315    /// Ran, and at least one command did not exit 0.
1316    Failed,
1317    /// Magi could not even get a command to run — the shared build cache's
1318    /// lease or freshness check was not available within budget. Evidence
1319    /// about the machine, never a verdict on the tree it named; must not be
1320    /// shown or counted the same as [`Self::Failed`].
1321    ResourceBlocked,
1322}
1323
1324/// [`ReviewRound::verification_summary`]'s output: the facts, pre-worded, for
1325/// a prompt or report to place under its own heading. Kept as two pieces
1326/// rather than one pre-joined string so a caller that wants to insert its own
1327/// note between the label and the raw command tail (see `prompt::review`) can
1328/// do so without re-parsing text back apart.
1329#[derive(Debug, Clone)]
1330pub struct VerificationSummary {
1331    /// Round, commit, freshness and result — always present.
1332    pub label: String,
1333    /// Raw `$ command` / output tail, present for `result: FAILED` and for
1334    /// a resource-blocked attempt (naming the operation magi was waiting on,
1335    /// even though nothing finished) — absent for every other result, which
1336    /// has nothing to add past the label.
1337    pub tail: Option<String>,
1338}
1339
1340/// The honest state of a run's final gate. See [`RunState::gate_status`].
1341#[derive(Debug, Clone, Copy, PartialEq, Eq)]
1342pub enum GateStatus {
1343    /// Never attempted, or the last attempt was resource-blocked (the shared
1344    /// build cache could not be acquired or confirmed fresh in time) and
1345    /// needs a retry.
1346    NotRun,
1347    /// Ran with zero commands configured (`verify.gate` is empty) and
1348    /// therefore vacuously passed — there was nothing to check.
1349    PassedWithNoCommands,
1350    /// Ran one or more commands, and every one of them exited 0.
1351    Passed,
1352    /// Ran one or more commands, and at least one did not exit 0.
1353    Failed,
1354}
1355
1356impl GateStatus {
1357    /// May a run in this state proceed to merge?
1358    pub fn ok(self) -> bool {
1359        matches!(self, Self::PassedWithNoCommands | Self::Passed)
1360    }
1361}
1362
1363/// What happened to the winning branch.
1364#[derive(Debug, Clone, Serialize, Deserialize)]
1365pub struct MergeOutcome {
1366    /// Requested mode.
1367    pub mode: MergeMode,
1368    /// Did it land?
1369    pub ok: bool,
1370    /// Command output, or the command the operator should run.
1371    #[serde(default)]
1372    pub detail: String,
1373    /// The winner had no commits ahead of the base, so no pull request was
1374    /// attempted. Distinct from a `gh` failure: nothing was wrong with the
1375    /// tooling, there was simply nothing to land.
1376    #[serde(default)]
1377    pub empty: bool,
1378}
1379
1380/// A seat currently mid-answer: a prompt was sent and no reply has landed yet.
1381///
1382/// This is not the whole story of "is it alive" — a daemon killed mid-wave
1383/// leaves its last wave's entries here forever, since nothing ran to clear
1384/// them. A reader must cross-check a live daemon's heartbeat
1385/// (`daemon::is_working_on`) before trusting one of these as "still running"
1386/// rather than "abandoned". [`RunState::clear_active`] is what keeps that
1387/// leftover from surviving into the next attempt at this run: `execute` calls
1388/// it before doing anything else, so a resumed run never carries a stale
1389/// entry into its own report before the next wave repopulates it.
1390///
1391/// Deliberately carries no agent id: an implementer's agent is no secret, but
1392/// a judge or reviewer seat is blind (`SeatState::key` is keyed by seat, never
1393/// agent, for exactly this reason), and this struct has no way to tell which
1394/// kind of seat it describes. The seat key alone — already in the map this
1395/// lives under — is what every caller needs to say which seat is running.
1396///
1397/// The same map also carries entries for shell-command work that runs
1398/// outside any seat — `verify.e2e`, `verify.gate` — keyed by the task's own
1399/// name (`"e2e"`, `"gate"`) rather than a seat key. [`Self::task`] is `Some`
1400/// only for those; it is how a reader tells the two kinds of entry apart
1401/// without a second map, a second route, or a second SSE reason to poll for
1402/// — see [`RunState::seats_active`] / [`RunState::tasks_active`] for the
1403/// accessors that split them back apart. A task entry is exactly as blind as
1404/// a seat entry: no agent runs it, so there is nothing to leak, and
1405/// [`Self::command`] carries only the shell command being run, never
1406/// anything about who is running it.
1407#[derive(Debug, Clone, Serialize, Deserialize)]
1408pub struct ActiveSeat {
1409    /// Node the seat is answering for, e.g. `implement`, `judge`, `review`.
1410    /// For a task entry, the node the command list runs under (`verify`,
1411    /// `gate`).
1412    pub node: String,
1413    /// When this attempt — or, for a task entry, this one command — was
1414    /// started. A task entry's timer resets at every command boundary,
1415    /// because `verify.e2e` / `verify.gate` apply their timeout per command,
1416    /// not once across the whole list — see [`RunState::task_command`].
1417    pub started_at: Timestamp,
1418    /// The wall-clock budget for this attempt (a seat) or this one command
1419    /// (a task entry).
1420    pub timeout_secs: u64,
1421    /// 0 for the first ask, N for the Nth nudge or resume. For a task entry,
1422    /// 0 for the first pass over the command list, N for the Nth retry (see
1423    /// `run_e2e_with_retry`'s build/link retry).
1424    #[serde(default)]
1425    pub attempt: usize,
1426    /// `None` for a seat; `Some("e2e")` / `Some("gate")` for a running
1427    /// command-list task. This is the type tag that lets both kinds of entry
1428    /// share one map without a task ever being mistaken for a (blind) seat —
1429    /// see this struct's own doc. Omitted from JSON when absent (the common,
1430    /// seat case), rather than written out as a literal `null` on every one
1431    /// of a run's seat entries.
1432    #[serde(default, skip_serializing_if = "Option::is_none")]
1433    pub task: Option<String>,
1434    /// The command currently running, task entries only. Never set on a
1435    /// seat entry — a seat has no command, only a prompt, and a prompt is
1436    /// not safe to show mid-run (see this struct's blindness note).
1437    #[serde(default, skip_serializing_if = "Option::is_none")]
1438    pub command: Option<String>,
1439    /// 1-based position of [`Self::command`] within the task's command list.
1440    #[serde(default, skip_serializing_if = "Option::is_none")]
1441    pub index: Option<usize>,
1442    /// Number of commands in the task's list.
1443    #[serde(default, skip_serializing_if = "Option::is_none")]
1444    pub total: Option<usize>,
1445}
1446
1447impl ActiveSeat {
1448    /// Seconds since this attempt was sent.
1449    #[must_use]
1450    pub fn elapsed_secs(&self, now: Timestamp) -> i64 {
1451        (now.as_second() - self.started_at.as_second()).max(0)
1452    }
1453
1454    /// Seconds left before this attempt's own timeout fires, floored at zero
1455    /// rather than going negative once the CLI has overrun its budget.
1456    #[must_use]
1457    pub fn remaining_secs(&self, now: Timestamp) -> i64 {
1458        (self.timeout_secs as i64 - self.elapsed_secs(now)).max(0)
1459    }
1460}
1461
1462/// Whether a process is provably still driving a run, provably not, or
1463/// neither — see [`RunState::liveness`]. Serialized as a lowercase string
1464/// (`"live"` / `"dead"` / `"unknown"`) rather than a bool: a bool has no room
1465/// for "could not tell", and folding that case into either `true` or `false`
1466/// is exactly the wrong call for a display an operator uses to decide
1467/// whether to wait or to act — see the schema-10 field doc on
1468/// [`RunState::driver_pid`] for the report it used to produce instead.
1469#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
1470#[serde(rename_all = "lowercase")]
1471pub enum Liveness {
1472    /// Proven: a daemon's heartbeat claims the run, or `driver_pid` answers
1473    /// alive under the same identity (`driver_started_at`) this run recorded
1474    /// for it.
1475    Live,
1476    /// Proven: no daemon claim, and either `driver_pid` answers dead outright
1477    /// or it answers alive under a *different* identity than recorded — a
1478    /// pid the OS has since handed to an unrelated process is exactly as
1479    /// good as proof the original driver is gone (see
1480    /// [`RunState::driver_started_at`]'s own doc).
1481    Dead,
1482    /// Neither proven — no daemon claim, and either no `driver_pid` to ask,
1483    /// the platform could not answer for it, or a live pid with nothing (or
1484    /// nothing queryable) to corroborate its identity against. Never treated
1485    /// as `Dead`: see [`RunState::liveness_with`].
1486    Unknown,
1487}
1488
1489/// A timestamped note about a node.
1490#[derive(Debug, Clone, Serialize, Deserialize)]
1491pub struct Event {
1492    /// When.
1493    pub at: Timestamp,
1494    /// Node name.
1495    pub node: String,
1496    /// What happened.
1497    pub message: String,
1498}
1499
1500/// How far the winner's tree trailed the landing base, last time it was
1501/// checked, and what came of trying to close that gap.
1502///
1503/// Set by `graph::Runner::sync_to_base`, which runs before the review loop and
1504/// again before the gate: verifying against a tree that does not yet contain
1505/// the base's tip answers "green on the commit this run branched from", not
1506/// "green on what is about to land", and a merge on that answer can revert
1507/// whatever landed elsewhere while the run was thinking.
1508#[derive(Debug, Clone, Serialize, Deserialize)]
1509pub struct BaseSync {
1510    /// `<remote>/<base>` tip the tree was last checked against.
1511    pub tip: String,
1512    /// Commits `tip` was ahead of the tree at that check, before any rebase
1513    /// this round tried to close the gap. Zero means the tree already
1514    /// contained `tip`.
1515    pub behind: usize,
1516    /// Rebase attempts spent so far this run, bounded by
1517    /// `graph::BASE_SYNC_ROUNDS`.
1518    pub attempts: usize,
1519    /// What git said, if the most recent rebase attempt conflicted or could
1520    /// not be pushed. `Some` here is what makes a `Blocked` run read as
1521    /// "stopped on the base, not on review or the gate" - the rebase is not
1522    /// retried again while this is set; a person has to look.
1523    #[serde(default)]
1524    pub conflict: Option<String>,
1525    /// Set when the winner's whole change turned out to be on the base already
1526    /// under other commit ids (see [`crate::already`]). Present exactly when the
1527    /// run ended as [`RunStatus::AlreadyInBase`].
1528    #[serde(default)]
1529    pub already_in: Option<crate::already::Evidence>,
1530}
1531
1532/// What the land loop saw last time it looked at the pull request.
1533///
1534/// Strings for `state` and `checks` on purpose: they are `gh`'s vocabulary, and
1535/// pinning them into an enum here would mean a new GitHub check conclusion
1536/// turns a readable status into a deserialisation error on a run someone is
1537/// trying to look at.
1538#[derive(Debug, Clone, Serialize, Deserialize)]
1539pub struct PrRecord {
1540    /// Pull request url.
1541    pub url: String,
1542    /// Pull request number.
1543    pub number: u64,
1544    /// `open`, `merged` or `closed`.
1545    pub state: String,
1546    /// `pending`, `green`, `red` or `unknown`.
1547    pub checks: String,
1548    /// Land round, 1-based, or 0 before the first fix.
1549    pub round: usize,
1550    /// Land round budget.
1551    pub rounds: usize,
1552    /// Checks that were red when the pull request merged anyway (the forge
1553    /// said they do not block it). Empty for a green merge, and for any run
1554    /// recorded before this field existed - so empty is not proof nothing was
1555    /// red.
1556    #[serde(default, skip_serializing_if = "Vec::is_empty")]
1557    pub red_at_merge: Vec<String>,
1558}
1559
1560/// What the post-merge release-bump step did, and whether it needs a human.
1561///
1562/// Recorded next to the `bump` events rather than instead of them: the events
1563/// are the narrative, this is what `magi show`, the status word and the
1564/// notification read without parsing prose. `status` stays `Merged` - the
1565/// merge did happen - so [`RunState::needs_attention`] is the one place that
1566/// says a merged run is not fully done.
1567#[derive(Debug, Clone, Default, PartialEq, Eq, Serialize, Deserialize)]
1568pub struct ReleaseBump {
1569    /// The release pull request, when one was opened.
1570    #[serde(default)]
1571    pub pr_url: Option<String>,
1572    /// The version it releases.
1573    #[serde(default)]
1574    pub version: Option<String>,
1575    /// Did enabling automerge on `pr_url` succeed?
1576    #[serde(default)]
1577    pub automerge_enabled: bool,
1578    /// GitHub refused automerge because CI had already finished (the pull
1579    /// request was in clean status), so magi merged it directly. Kept apart
1580    /// from `automerge_enabled`, which stays the plain fact it says it is.
1581    #[serde(default)]
1582    pub merged_directly: bool,
1583    /// What went wrong, verbatim from the tool that said it.
1584    #[serde(default)]
1585    pub problem: Option<String>,
1586    /// What the operator has to do about it. `Some` is what makes a merged run
1587    /// read as needing attention.
1588    #[serde(default)]
1589    pub action_required: Option<String>,
1590}
1591
1592/// The whole run.
1593#[derive(Debug, Clone, Serialize, Deserialize)]
1594pub struct RunState {
1595    /// On-disk format version.
1596    pub schema: u32,
1597    /// Run id, e.g. `20260830-153012-a1b2`.
1598    pub id: String,
1599    /// Repository the run operates on.
1600    pub repo: PathBuf,
1601    /// Branch the run started from.
1602    pub base_branch: String,
1603    /// Commit the run started from.
1604    pub base_commit: String,
1605    /// The task, verbatim.
1606    pub instruction: String,
1607    /// When the run was created.
1608    pub created_at: Timestamp,
1609    /// Last state flush.
1610    pub updated_at: Timestamp,
1611    /// Current status.
1612    pub status: RunStatus,
1613    /// Seed for labels and session ids.
1614    pub seed: u64,
1615    /// Config snapshot, so a resumed run behaves like the original.
1616    pub config: Config,
1617    /// Did this run take a reference on `extensions.worktreeConfig` being on
1618    /// (see [`crate::git::acquire_worktree_config`])? If so, cleanup releases
1619    /// it - which only actually turns the setting back off once every other
1620    /// run sharing this repository has released its own reference too.
1621    #[serde(default)]
1622    pub enabled_worktree_config: bool,
1623    /// Candidates.
1624    #[serde(default)]
1625    pub candidates: Vec<Candidate>,
1626    /// Initial blind rankings.
1627    #[serde(default)]
1628    pub judgements: Vec<Judgement>,
1629    /// `judge` decided a solo candidate needs no panel and only logged it.
1630    ///
1631    /// `judgements` stays empty in that case — nothing to distinguish from
1632    /// "not yet judged" — so this is the record that makes the skip
1633    /// idempotent: without it, every reentry re-ran `judge`, re-logged the
1634    /// same event, and rewrote `status` to `Judging` over whatever a later
1635    /// node had already concluded.
1636    #[serde(default)]
1637    pub judge_skipped: bool,
1638    /// Deliberation, if it happened.
1639    #[serde(default)]
1640    pub deliberation: Vec<DeliberationRound>,
1641    /// Private final votes.
1642    #[serde(default)]
1643    pub votes: Vec<VoteRecord>,
1644    /// The count.
1645    #[serde(default)]
1646    pub tally: Option<Tally>,
1647    /// Review rounds.
1648    #[serde(default)]
1649    pub reviews: Vec<ReviewRound>,
1650    /// Final gate.
1651    ///
1652    /// Never derive whether the gate has run from `gate.is_empty()` alone —
1653    /// use [`Self::gate_status`] instead. An empty list is ambiguous on its
1654    /// own: it is what an unattempted gate looks like, what a
1655    /// resource-blocked attempt leaves behind (see `graph::Runner::gate`'s
1656    /// own doc), and also what a repo with no `verify.gate` commands
1657    /// configured produces once it *has* run. [`Self::gate_ran`] is what
1658    /// tells the third case apart from the first two.
1659    #[serde(default)]
1660    pub gate: Vec<CommandOutcome>,
1661    /// Did `gate()` actually record an attempt — zero commands configured
1662    /// and vacuously passed, or one or more commands that ran to
1663    /// completion — as opposed to never having run, or having last hit a
1664    /// resource-blocked retry?
1665    ///
1666    /// `gate.is_empty()` cannot tell those apart by itself: a repo with no
1667    /// `verify.gate` commands leaves `gate` empty exactly like an
1668    /// unattempted or resource-blocked one does, and reading that empty list
1669    /// as "not yet run" is what stranded a review-only run in
1670    /// `RunStatus::Gating` forever on such a repo — see `SCHEMA`'s doc for
1671    /// schema 7. A record written before this field existed defaults to
1672    /// `false` and is migrated in [`migrate_schema`].
1673    #[serde(default)]
1674    pub gate_ran: bool,
1675    /// Fix rounds a failing gate has already spent, oldest first. Persisted
1676    /// right after each fixer call so a resumed run spends only what is left
1677    /// of `graph.gate_fix_rounds` instead of starting the budget over.
1678    #[serde(default)]
1679    pub gate_fixes: Vec<GateFixRecord>,
1680    /// Fixer rounds spent on a rebase conflict (base sync and land share one
1681    /// budget, `graph.review_rounds`), oldest first. Persisted right before
1682    /// each fixer call, so a resumed run spends only what is left.
1683    #[serde(default)]
1684    pub rebase_fixes: Vec<RebaseFixRecord>,
1685    /// Outcomes of the `verify.pre_gate` commands from the latest time they
1686    /// ran on the winner. Informational only: a failure here never blocks the
1687    /// run, the gate stays the single arbiter. Overwritten on each pass.
1688    #[serde(default)]
1689    pub pre_gate: Vec<CommandOutcome>,
1690    /// The latest commit a `pre_gate` pass made, if any pass left changes.
1691    #[serde(default)]
1692    pub pre_gate_commit: Option<String>,
1693    /// Merge outcome.
1694    #[serde(default)]
1695    pub merge: Option<MergeOutcome>,
1696    /// Vendor tokens seen in judged material.
1697    #[serde(default)]
1698    pub leaks: Vec<Leak>,
1699    /// Seats lost to a CLI rate limit / quota, in the order they hit.
1700    #[serde(default)]
1701    pub quota: Vec<QuotaLoss>,
1702    /// Stray foreign lockfiles a rescue commit left out, one entry per path.
1703    #[serde(default)]
1704    pub withheld: Vec<Withheld>,
1705    /// Parked at a node boundary, waiting to be resumed.
1706    ///
1707    /// A run that is neither finished nor being worked on is otherwise
1708    /// indistinguishable from one whose daemon was killed, and the two want
1709    /// opposite things from an operator: the first is expected to be resumed,
1710    /// the second is a leftover. Cleared by the resume that carries it on.
1711    #[serde(default)]
1712    pub parked: bool,
1713    /// The run that took this run's worktree over, when one did — see
1714    /// [`crate::handover`]. `Some` means the worktree is gone on purpose and
1715    /// the run can no longer be resumed from it ([`Self::released`]).
1716    #[serde(default)]
1717    pub released_to: Option<String>,
1718    /// Branches that outlived this run's released worktree and now belong to
1719    /// the run in [`Self::released_to`] (and to its pull request). A later
1720    /// fold must leave them alone.
1721    #[serde(default)]
1722    pub released_branches: Vec<String>,
1723    /// Existing branches and commits the task text names, and what the
1724    /// repository says about each (`crate::refs`). Unmerged ones seed the
1725    /// candidates; `base_commit` stays the comparison point.
1726    #[serde(default)]
1727    pub seeds: Vec<crate::refs::Seed>,
1728    /// Per-seat conversation state.
1729    #[serde(default)]
1730    pub seats: BTreeMap<String, SeatState>,
1731    /// Seats currently mid-answer, keyed by seat.
1732    ///
1733    /// An entry exists from the moment a prompt is sent until a reply (of any
1734    /// kind — success, failure, quota, drop) comes back, so its keys are
1735    /// exactly "who hasn't answered yet" for whichever node populated it. See
1736    /// [`ActiveSeat`] for why a reader still has to check a live daemon
1737    /// before trusting one of these as "running" rather than "abandoned".
1738    #[serde(default)]
1739    pub active: BTreeMap<String, ActiveSeat>,
1740    /// Process id of whichever `execute()` call last drove this run —
1741    /// written at the very top of that method, the same place
1742    /// [`Self::clear_active`] runs, so a fresh reentry always overwrites the
1743    /// pid a previous, possibly-dead process left behind.
1744    ///
1745    /// A daemon-claimed run already has a stronger signal
1746    /// (`daemon::is_working_on`), but a `magi run` / `magi review` typed
1747    /// straight into a terminal claims nothing there — before this field
1748    /// existed, [`report::active_seats`] had no way to tell that run apart
1749    /// from one a killed process abandoned, and printed the same "no live
1750    /// daemon claims this run" warning over a run that was, in fact, still
1751    /// answering. See [`Liveness`] for how this and the daemon claim combine.
1752    #[serde(default)]
1753    pub driver_pid: Option<u32>,
1754    /// The OS-reported moment [`Self::driver_pid`] started, recorded in the
1755    /// same breath as the pid itself — an opaque marker
1756    /// (`crate::proc::process_started_at`), compared only for equality.
1757    ///
1758    /// A pid alone never proves a live process is *this run's* driver: pids
1759    /// get reused, sometimes within minutes on a busy machine, and a killed
1760    /// manual `magi run` whose pid a later, wholly unrelated process happens
1761    /// to receive would otherwise read back as `Liveness::Live` from that
1762    /// coincidence alone. [`Self::liveness`] re-queries the current holder
1763    /// of `driver_pid` and requires this marker to still match before
1764    /// trusting a live answer — a mismatch means a different process now
1765    /// answers to that number, and no marker to compare (an old run, or a
1766    /// platform this build could not ask at record time) means neither
1767    /// extreme can be proven.
1768    #[serde(default)]
1769    pub driver_started_at: Option<String>,
1770    /// The process named by [`Self::driver_pid`] has stopped driving this run:
1771    /// its graph walk returned, whatever the outcome. Cleared at the start of
1772    /// every walk, set as the last write of one.
1773    ///
1774    /// A long-lived `magi serve` records its own pid and keeps it after the
1775    /// run ends, so that pid answers alive with a matching identity for as
1776    /// long as the daemon lives, and every blocked, failed or parked run it
1777    /// ever drove would read as being worked on right now. A crash or kill
1778    /// never sets this, and needs nothing to: the pid is dead then.
1779    #[serde(default)]
1780    pub driver_exited: bool,
1781    /// Last observation of the winner's pull request, when a land loop ran.
1782    ///
1783    /// Persisted rather than derived from the event log because the phone asks
1784    /// two questions about a run that has opened a PR - how are its checks and
1785    /// which round is it on - and parsing prose out of events to answer them
1786    /// would break the first time an event message was reworded.
1787    #[serde(default)]
1788    pub pr: Option<PrRecord>,
1789    /// The post-merge release-bump step's outcome, when it got as far as
1790    /// having one to report. See [`ReleaseBump`].
1791    #[serde(default)]
1792    pub release_bump: Option<ReleaseBump>,
1793    /// The last look at how far the winner's tree trailed the landing base,
1794    /// and the rebase(s) tried to close that gap. `None` until the tree has a
1795    /// winner to check.
1796    #[serde(default)]
1797    pub base_sync: Option<BaseSync>,
1798    /// The design-deliberation stage's output, when `[graph] advise` ran it:
1799    /// one record per advisor seat, plus the synthesis blended into the
1800    /// implementer's prompt. `None` when the stage is off, has not run yet,
1801    /// or could not even resolve its seats - see
1802    /// [`crate::graph::Runner::advise`].
1803    #[serde(default)]
1804    pub advice: Option<crate::advise::Advice>,
1805    /// Whether the design-deliberation stage has already been attempted this
1806    /// run, whatever it produced. The idempotency marker `Runner::advise`
1807    /// checks on reentry, the same role [`Self::judge_skipped`] plays for
1808    /// `judge` - without it a resumed run whose stage failed (a misconfigured
1809    /// `[roles] advisors`, every seat quota'd) would re-run it, and re-spend
1810    /// the agent calls, on every single reentry before `implement`.
1811    #[serde(default)]
1812    pub advise_attempted: bool,
1813    /// Node log.
1814    #[serde(default)]
1815    pub events: Vec<Event>,
1816    /// Commands seats' own CLIs reported running, across every node — see
1817    /// [`JobRecord`]. Populated in [`crate::graph::wave`] as each seat
1818    /// answers, so a resumed run keeps what earlier waves already collected
1819    /// rather than losing it to a reentry. Empty on a record written before
1820    /// this existed, or wherever no adapter reads structured job events for
1821    /// the backend a seat used — both read as "no evidence", not "nothing
1822    /// ran".
1823    #[serde(default)]
1824    pub jobs: Vec<JobRecord>,
1825    /// Operator-triggered targeted fixes — see [`OperatorFixRequest`] and
1826    /// `SCHEMA`'s doc for schema 9. Empty on every record written before
1827    /// this existed, which reads correctly as "no operator fix ever
1828    /// requested".
1829    #[serde(default)]
1830    pub operator_fixes: Vec<OperatorFixRequest>,
1831    /// Absolute paths of the files the task was filed with (see
1832    /// `crate::queue::Task::attachments`), listed in the implementers' prompt
1833    /// and made readable to their seats. Refreshed from the task on every
1834    /// start and resume, so a file attached while the task was held reaches a
1835    /// resumed run. Additive and `#[serde(default)]`, so `SCHEMA` stays put.
1836    #[serde(default)]
1837    pub attachments: Vec<PathBuf>,
1838    /// Who started this run and which task it serves — see [`Origin`] and
1839    /// `SCHEMA`'s doc for schema 13. `None` is a run recorded before origins
1840    /// existed, and is reported as unknown, never as an operator's.
1841    #[serde(default)]
1842    pub origin: Option<Origin>,
1843}
1844
1845impl RunState {
1846    /// A fresh run.
1847    pub fn new(
1848        repo: PathBuf,
1849        base_branch: String,
1850        base_commit: String,
1851        instruction: String,
1852        config: Config,
1853    ) -> Self {
1854        let now = Timestamp::now();
1855        let seed = config.blind.seed.unwrap_or_else(crate::rng::entropy);
1856        Self {
1857            schema: SCHEMA,
1858            id: new_id(),
1859            repo,
1860            base_branch,
1861            base_commit,
1862            instruction,
1863            created_at: now,
1864            updated_at: now,
1865            status: RunStatus::Prep,
1866            seed,
1867            config,
1868            enabled_worktree_config: false,
1869            candidates: Vec::new(),
1870            judgements: Vec::new(),
1871            judge_skipped: false,
1872            deliberation: Vec::new(),
1873            votes: Vec::new(),
1874            tally: None,
1875            reviews: Vec::new(),
1876            gate: Vec::new(),
1877            gate_ran: false,
1878            gate_fixes: Vec::new(),
1879            rebase_fixes: Vec::new(),
1880            pre_gate: Vec::new(),
1881            pre_gate_commit: None,
1882            merge: None,
1883            leaks: Vec::new(),
1884            quota: Vec::new(),
1885            withheld: Vec::new(),
1886            parked: false,
1887            released_to: None,
1888            released_branches: Vec::new(),
1889            seeds: Vec::new(),
1890            seats: BTreeMap::new(),
1891            active: BTreeMap::new(),
1892            driver_pid: None,
1893            driver_started_at: None,
1894            driver_exited: false,
1895            pr: None,
1896            release_bump: None,
1897            base_sync: None,
1898            advice: None,
1899            advise_attempted: false,
1900            attachments: Vec::new(),
1901            origin: None,
1902            events: Vec::new(),
1903            jobs: Vec::new(),
1904            operator_fixes: Vec::new(),
1905        }
1906    }
1907
1908    /// Directory holding this run's state and artifacts.
1909    pub fn dir(&self) -> PathBuf {
1910        run_dir(&self.id)
1911    }
1912
1913    /// Short form used in branch names and reports.
1914    pub fn short(&self) -> &str {
1915        short_of(&self.id)
1916    }
1917
1918    /// Branch name for a label.
1919    pub fn branch_for(&self, label: char) -> String {
1920        format!("magi/{}/{}", self.short(), label)
1921    }
1922
1923    /// Root of this run's worktrees.
1924    pub fn worktree_root(&self) -> PathBuf {
1925        self.config
1926            .graph
1927            .worktree_root
1928            .clone()
1929            .unwrap_or_else(default_worktree_root)
1930            .join(self.short())
1931    }
1932
1933    /// Record lockfiles a rescue commit withheld; a path already recorded by an
1934    /// earlier round is not repeated.
1935    pub fn note_withheld(&mut self, node: &str, strays: &[crate::git::Stray]) {
1936        for s in strays {
1937            if self.withheld.iter().any(|w| w.path == s.path) {
1938                continue;
1939            }
1940            self.event(
1941                node,
1942                format!(
1943                    "withheld stray lockfile {} ({}; the directory uses {})",
1944                    s.path, s.manager, s.kept_by
1945                ),
1946            );
1947            self.withheld.push(Withheld {
1948                path: s.path.clone(),
1949                manager: s.manager.clone(),
1950                kept_by: s.kept_by.clone(),
1951                node: node.to_owned(),
1952                at: Timestamp::now(),
1953            });
1954        }
1955    }
1956
1957    /// Note something in the run log and on the tracing stream.
1958    pub fn event(&mut self, node: &str, message: impl Into<String>) {
1959        let message = message.into();
1960        tracing::info!(node, "{message}");
1961        self.events.push(Event {
1962            at: Timestamp::now(),
1963            node: node.to_owned(),
1964            message,
1965        });
1966    }
1967
1968    /// The honest state of the final gate.
1969    ///
1970    /// Never derive this from `gate.is_empty()` alone anywhere else in the
1971    /// codebase — `NotRun` and `PassedWithNoCommands` both leave `gate`
1972    /// empty, and only this method (backed by [`Self::gate_ran`]) tells them
1973    /// apart. See `SCHEMA`'s doc for schema 7 for what conflating them used
1974    /// to do.
1975    pub fn gate_status(&self) -> GateStatus {
1976        if !self.gate_ran {
1977            GateStatus::NotRun
1978        } else if self.gate.is_empty() {
1979            GateStatus::PassedWithNoCommands
1980        } else if self.gate.iter().all(CommandOutcome::ok) {
1981            GateStatus::Passed
1982        } else {
1983            GateStatus::Failed
1984        }
1985    }
1986
1987    /// Record that `seat` was just sent a prompt for `node`, with the given
1988    /// wall-clock budget. `attempt` is 0 for the first ask and N for the Nth
1989    /// nudge or resume, purely for display — it does not change how the seat
1990    /// is treated.
1991    pub fn seat_started(
1992        &mut self,
1993        node: &str,
1994        seat: &str,
1995        timeout: std::time::Duration,
1996        attempt: usize,
1997    ) {
1998        self.active.insert(
1999            seat.to_owned(),
2000            ActiveSeat {
2001                node: node.to_owned(),
2002                started_at: Timestamp::now(),
2003                timeout_secs: timeout.as_secs(),
2004                attempt,
2005                task: None,
2006                command: None,
2007                index: None,
2008                total: None,
2009            },
2010        );
2011    }
2012
2013    /// Record that `seat` has answered, whatever the answer was.
2014    pub fn seat_finished(&mut self, seat: &str) {
2015        self.active.remove(seat);
2016    }
2017
2018    /// Record that `task` (`"e2e"` or `"gate"` — a shell-command list run
2019    /// outside any seat) has just started `command`, the `index`-th of
2020    /// `total`. Called at every command boundary, not once for the whole
2021    /// list: `verify.e2e` / `verify.gate` apply `timeout` per command, so
2022    /// this is the only way a reader can tell "how long is left" for
2023    /// whichever command is actually running right now, rather than a stale
2024    /// budget left over from the first one.
2025    #[allow(clippy::too_many_arguments)]
2026    pub fn task_command(
2027        &mut self,
2028        task: &str,
2029        node: &str,
2030        attempt: usize,
2031        command: &str,
2032        index: usize,
2033        total: usize,
2034        timeout: std::time::Duration,
2035    ) {
2036        self.active.insert(
2037            task.to_owned(),
2038            ActiveSeat {
2039                node: node.to_owned(),
2040                started_at: Timestamp::now(),
2041                timeout_secs: timeout.as_secs(),
2042                attempt,
2043                task: Some(task.to_owned()),
2044                command: Some(command.to_owned()),
2045                index: Some(index),
2046                total: Some(total),
2047            },
2048        );
2049    }
2050
2051    /// Record that `task` has finished its whole command list for this
2052    /// attempt.
2053    pub fn task_finished(&mut self, task: &str) {
2054        self.active.remove(task);
2055    }
2056
2057    /// The seats — never task entries — currently mid-answer. What
2058    /// `report::active_seats` and the phone's "who has not answered yet"
2059    /// note need: a seat's identifier is safe to show ([`ActiveSeat`]'s doc),
2060    /// so nothing here filters anything out beyond the type tag itself.
2061    pub fn seats_active(&self) -> impl Iterator<Item = (&String, &ActiveSeat)> {
2062        self.active.iter().filter(|(_, a)| a.task.is_none())
2063    }
2064
2065    /// The command-list tasks — never seat entries — currently running.
2066    /// Counterpart to [`Self::seats_active`]; see [`ActiveSeat::task`] for
2067    /// the tag both read.
2068    pub fn tasks_active(&self) -> impl Iterator<Item = (&String, &ActiveSeat)> {
2069        self.active.iter().filter(|(_, a)| a.task.is_some())
2070    }
2071
2072    /// Drop every seat this state still lists as answering, reporting whether
2073    /// anything was dropped.
2074    ///
2075    /// Called first thing in `execute`, on every entry — fresh, resumed, or
2076    /// recovering a stall — because an entry here only means something while
2077    /// the process that wrote it is still asking that seat something. A
2078    /// process killed mid-wave leaves its last batch of seats here with
2079    /// nobody left to clear them, and the next process to touch this run must
2080    /// not let that leftover read as "still going" before it has asked
2081    /// anyone anything.
2082    pub fn clear_active(&mut self) -> bool {
2083        if self.active.is_empty() {
2084            return false;
2085        }
2086        self.active.clear();
2087        true
2088    }
2089
2090    /// Does every seat this run still lists as [`Self::active`] sit past its
2091    /// own [`ActiveSeat::timeout_secs`]? `false` when nothing is active at
2092    /// all — an empty map is not evidence of anything overrunning.
2093    ///
2094    /// This alone is not proof the run is dead: a seat's own attempt can
2095    /// legitimately run a little past its budget while the process driving it
2096    /// is still tearing the attempt down. Every caller pairs this with its own
2097    /// `!live` reading (`daemon::is_working_on`) before treating the run as
2098    /// abandoned — this module cannot check that itself without depending on
2099    /// `crate::daemon`, and callers already have to ask that question anyway.
2100    #[must_use]
2101    pub fn active_all_overrun(&self, now: Timestamp) -> bool {
2102        !self.active.is_empty()
2103            && self
2104                .active
2105                .values()
2106                .all(|a| a.elapsed_secs(now) > a.timeout_secs as i64)
2107    }
2108
2109    /// Whether a process is actually still driving this run, given whether a
2110    /// daemon's heartbeat claims it and process-liveness/identity queries for
2111    /// [`Self::driver_pid`].
2112    ///
2113    /// A daemon claim wins outright when present — it is the stronger,
2114    /// independently-heartbeating signal. Absent that (every manual `magi
2115    /// run` / `magi review`, and every daemon-driven run whose daemon has
2116    /// since exited cleanly), `driver_pid` is asked directly. A live answer
2117    /// alone is not enough to trust, though: pids get reused, so `identity`
2118    /// re-queries whoever currently holds that pid and the result must still
2119    /// match [`Self::driver_started_at`] — the marker recorded at the same
2120    /// moment `driver_pid` was — before this reads `Live`. A mismatch means
2121    /// a *different* process now answers to that number, which is exactly as
2122    /// good as proof the original driver is gone, so that reads `Dead`; no
2123    /// marker to compare against (an old run, or a platform this build could
2124    /// not ask at record time) or a `None` from either query, and this
2125    /// cannot tell either way, so it reads [`Liveness::Unknown`] — never
2126    /// guessed as [`Liveness::Dead`] out of mere silence. A display that
2127    /// guessed "dead" out of missing information would be exactly the
2128    /// mtime-and-task-manager guessing this type exists to replace.
2129    ///
2130    /// Kept generic over `query` and `identity` so a test can inject answers
2131    /// without spawning a real process query — production code goes through
2132    /// [`Self::liveness`], which supplies [`crate::proc::pid_status`] and
2133    /// [`crate::proc::process_started_at`].
2134    #[must_use]
2135    pub fn liveness_with<F, G>(&self, daemon_claims: bool, query: F, identity: G) -> Liveness
2136    where
2137        F: FnOnce(u32) -> Option<bool>,
2138        G: FnOnce(u32) -> Option<String>,
2139    {
2140        if daemon_claims {
2141            return Liveness::Live;
2142        }
2143        // The driver said itself that it stopped; its pid may well be alive
2144        // (a daemon outlives the runs it drives), so it is not asked.
2145        if self.driver_exited {
2146            return Liveness::Dead;
2147        }
2148        let Some(pid) = self.driver_pid else {
2149            return Liveness::Unknown;
2150        };
2151        match query(pid) {
2152            Some(false) => Liveness::Dead,
2153            None => Liveness::Unknown,
2154            Some(true) => match (&self.driver_started_at, identity(pid)) {
2155                (Some(recorded), Some(current)) if *recorded == current => Liveness::Live,
2156                (Some(_), Some(_)) => Liveness::Dead,
2157                _ => Liveness::Unknown,
2158            },
2159        }
2160    }
2161
2162    /// [`Self::liveness_with`], backed by the real process-liveness and
2163    /// identity queries.
2164    #[must_use]
2165    pub fn liveness(&self, daemon_claims: bool) -> Liveness {
2166        self.liveness_with(
2167            daemon_claims,
2168            crate::proc::pid_status,
2169            crate::proc::process_started_at,
2170        )
2171    }
2172
2173    /// Clear every seat this run still lists as active and fail it, unless it
2174    /// had already reached a terminal status some other way.
2175    ///
2176    /// Callers must already have proven this run is dead — [`Self::active_all_overrun`]
2177    /// plus their own `!live` reading — before calling this; it does not
2178    /// check either itself. Unlike [`Self::clear_active`] (dropping a resumed
2179    /// run's own stale wave before repopulating it, called unconditionally at
2180    /// the top of every `execute()`), this is a verdict: a run left this way
2181    /// has nothing left to repopulate the wave, ever, and must stop reading as
2182    /// `implementing` (or whichever node) forever.
2183    pub fn abandon(&mut self, by: &str) {
2184        let seats: Vec<String> = self.active.keys().cloned().collect();
2185        self.clear_active();
2186        if !self.status.done() {
2187            self.status = RunStatus::Failed;
2188        }
2189        self.event(
2190            by,
2191            format!(
2192                "abandoned: seat(s) {} left behind by a killed process, past their own \
2193                 timeout with no live daemon claiming this run",
2194                seats.join(", ")
2195            ),
2196        );
2197    }
2198
2199    /// Flush to `run.json`, atomically, under the process-global [`home`].
2200    pub fn save(&mut self) -> Result<()> {
2201        let home = home();
2202        self.save_under(&home)
2203    }
2204
2205    /// [`Self::save`], rooted at an explicit `home` instead of the
2206    /// process-global one.
2207    ///
2208    /// For a caller that was already handed its own `home` explicitly — a
2209    /// housekeeping pass, mainly, for the same reason `Queue::at` and the
2210    /// daemon status path are parameters rather than resolved here (see
2211    /// `daemon::drive`'s own doc) — falling through to the global would write
2212    /// back through whichever directory some *other* process or test pinned
2213    /// into that `OnceLock` first, not the one this call was actually handed.
2214    pub fn save_under(&mut self, home: &Path) -> Result<()> {
2215        self.updated_at = Timestamp::now();
2216        let dir = home.join("runs").join(&self.id);
2217        std::fs::create_dir_all(&dir).with_context(|| format!("create {}", dir.display()))?;
2218        let body = serde_json::to_string_pretty(self).context("serialize run state")?;
2219        let tmp = dir.join("run.json.tmp");
2220        std::fs::write(&tmp, &body).with_context(|| format!("write {}", tmp.display()))?;
2221        std::fs::rename(&tmp, dir.join("run.json")).with_context(|| "replace run.json")?;
2222        Ok(())
2223    }
2224
2225    /// Load a run by id or unambiguous id prefix.
2226    pub fn load(id: &str) -> Result<Self> {
2227        let resolved = resolve_id(id)?;
2228        let path = run_dir(&resolved).join("run.json");
2229        let body =
2230            std::fs::read_to_string(&path).with_context(|| format!("read {}", path.display()))?;
2231        let state: Self =
2232            serde_json::from_str(&body).with_context(|| format!("parse {}", path.display()))?;
2233        migrate_schema(state)
2234    }
2235
2236    /// [`Self::load`], rooted at an explicit `home` instead of the
2237    /// process-global one, and for a full id rather than a prefix — a caller
2238    /// with its own `home` already has the exact id (from a `RunState` it
2239    /// already read, or from `Task::runs`) and has no `runs_root` to search
2240    /// for a prefix against in the first place. Same reasoning as
2241    /// [`Self::save_under`]: a caller holding its own `home` explicitly must
2242    /// not read back through whichever directory some *other* process or
2243    /// test pinned into the global [`home`] `OnceLock` first.
2244    pub fn load_under(id: &str, home: &Path) -> Result<Self> {
2245        let path = home.join("runs").join(id).join("run.json");
2246        let body =
2247            std::fs::read_to_string(&path).with_context(|| format!("read {}", path.display()))?;
2248        let state: Self =
2249            serde_json::from_str(&body).with_context(|| format!("parse {}", path.display()))?;
2250        migrate_schema(state)
2251    }
2252}
2253
2254pub(crate) fn migrate_schema(mut state: RunState) -> Result<RunState> {
2255    // Schema 5 predates deferred e2e. Its empty e2e lists therefore mean
2256    // "not configured", never "deferred"; serde's field defaults retain
2257    // exactly that representation while this migration permits resumes.
2258    if state.schema == 5 {
2259        state.schema = 6;
2260    }
2261    // Schema 6 predates `gate_ran` and could not tell "never attempted or
2262    // resource-blocked" apart from "ran with zero commands configured" — see
2263    // `SCHEMA`'s doc for schema 7. A non-empty `gate` is a real recorded
2264    // attempt either way, so it is trusted as `gate_ran = true` rather than
2265    // spent again; an empty one is simply handed back to the next `gate()`
2266    // call, which re-attempts it and, for the zero-commands case, resolves
2267    // instantly.
2268    if state.schema == 6 {
2269        state.gate_ran = !state.gate.is_empty();
2270        state.schema = 7;
2271    }
2272    // Schema 7's main review loop always checked `e2e` against the round's
2273    // own `head`, it just never wrote that fact into `verified_head` unless
2274    // a catch-up run had checked a *different* commit — see `SCHEMA`'s doc
2275    // for schema 8. Reconstructing `Some(head)` for a round whose `e2e` held
2276    // a real attempt restores a fact that was always true; `verified_at` has
2277    // no historical value to recover and stays `None`.
2278    if state.schema == 7 {
2279        for round in &mut state.reviews {
2280            if round.verified_head.is_none()
2281                && matches!(round.e2e_status(), E2eStatus::Passed | E2eStatus::Failed)
2282            {
2283                round.verified_head = Some(round.head.clone());
2284            }
2285        }
2286        state.schema = 8;
2287    }
2288    // Schema 8 predates `operator_fixes`. There is nothing to reconstruct —
2289    // an old run simply never had one requested — so `#[serde(default)]`
2290    // already left it as the correct empty `Vec`; this only advances the
2291    // version number.
2292    if state.schema == 8 {
2293        state.schema = 9;
2294    }
2295    // Schema 9 predates `RunStatus::VerifiedNoop` and
2296    // `Candidate::verified_noop`. Nothing to reconstruct: an old record never
2297    // made the claim, `#[serde(default)]` already reads `verified_noop` as
2298    // `None` on every candidate, and a `VerifiedNoop` status cannot appear in
2299    // a schema-9 record at all — see `SCHEMA`'s doc for schema 10. This only
2300    // advances the version number.
2301    if state.schema == 9 {
2302        state.schema = 10;
2303    }
2304    // Schema 10 predates `released_to`: no old run ever had its worktree
2305    // handed over, and `#[serde(default)]` reads exactly that. Only the
2306    // version number advances.
2307    if state.schema == 10 {
2308        state.schema = 11;
2309    }
2310    // Schema 11 predates `driver_exited`. A run that had already ended
2311    // Blocked / Failed / Stalled, or was parked in Landing (which hands its
2312    // daemon slot back), stopped walking the graph, but its recorded
2313    // pid may belong to a daemon still alive doing other work, which would pin
2314    // it as running for good; those are marked exited. Any other status keeps
2315    // `false`, and its pid is asked as before. This is an inference from
2316    // status, sound because a schema-11 record was written by a build that is
2317    // gone once this one is installed (and a daemon claim, which wins
2318    // regardless, still protects a run a live daemon is driving).
2319    if state.schema == 11 {
2320        if matches!(
2321            state.status,
2322            RunStatus::Blocked | RunStatus::Failed | RunStatus::Stalled | RunStatus::Landing
2323        ) {
2324            state.driver_exited = true;
2325        }
2326        state.schema = 12;
2327    }
2328    // Schema 12 predates `origin`. Nothing is reconstructed: `None` already
2329    // says "unknown", which is the truth for a run nobody recorded. Only the
2330    // version number advances.
2331    if state.schema == 12 {
2332        state.schema = SCHEMA;
2333    }
2334    if state.schema != SCHEMA {
2335        bail!(
2336            "run {} was written by a different magi (schema {}, this build \
2337                 speaks {SCHEMA})",
2338            state.id,
2339            state.schema
2340        );
2341    }
2342    Ok(state)
2343}
2344
2345impl RunState {
2346    /// Whether a later attempt took this run's worktree over, so a resume has
2347    /// nothing left to continue from.
2348    pub fn released(&self) -> bool {
2349        self.released_to.is_some()
2350    }
2351
2352    /// The winning candidate, once the tally has run.
2353    pub fn winner(&self) -> Option<&Candidate> {
2354        let label = self.tally.as_ref()?.winner;
2355        self.candidates.iter().find(|c| c.label == label)
2356    }
2357
2358    /// Candidates eligible for judging.
2359    pub fn viable(&self) -> Vec<&Candidate> {
2360        self.candidates.iter().filter(|c| c.viable()).collect()
2361    }
2362
2363    /// Did every candidate write nothing, and every one of them back it with
2364    /// evidence [`crate::graph`]'s adoption guard accepted?
2365    ///
2366    /// All-or-nothing on purpose: one candidate declaring `NO CHANGE NEEDED`
2367    /// while another simply failed to produce anything is not agreement, it
2368    /// is one candidate's unverified claim next to an ordinary loss, and the
2369    /// run must still read as the `Failed` it is. Only ever meaningful when
2370    /// [`Self::viable`] is already empty — a run with any real patch to judge
2371    /// never reaches the caller that asks this.
2372    pub fn all_candidates_verified_noop(&self) -> bool {
2373        !self.candidates.is_empty()
2374            && self
2375                .candidates
2376                .iter()
2377                .all(|c| c.empty && c.verified_noop.is_some())
2378    }
2379
2380    /// Findings still open when the review loop stopped trying: the last
2381    /// round's, exactly when that round was not clean. Empty on a run that
2382    /// never reviewed, or whose last round was clean.
2383    ///
2384    /// This is the last round's findings regardless of what the fixer claims
2385    /// to have addressed in that same round: a round that stopped the loop
2386    /// (round budget spent, or no tree progress for
2387    /// [`crate::graph::STAGNANT_LIMIT`] rounds) never had a *following* round
2388    /// to confirm the fix actually landed, and the self-reported adoption
2389    /// count is not trusted for that judgement either — see
2390    /// [`ReviewRound::progressed`].
2391    pub fn open_findings(&self) -> Vec<&Finding> {
2392        match self.reviews.last() {
2393            Some(r) if !r.clean => r
2394                .reviews
2395                .iter()
2396                .flat_map(|rec| rec.findings.iter())
2397                .collect(),
2398            _ => Vec::new(),
2399        }
2400    }
2401
2402    /// Every finding raised in the most recent review round, regardless of
2403    /// that round's own severity mix — unlike [`Self::open_findings`], not
2404    /// filtered to a round that was not clean. This is the pool `magi fix`
2405    /// reports as available to pick from: a round can conclude clean (no
2406    /// finding blocked merge) while still carrying minor findings nobody
2407    /// has acted on.
2408    pub fn last_round_findings(&self) -> Vec<&Finding> {
2409        self.reviews
2410            .last()
2411            .into_iter()
2412            .flat_map(|r| r.reviews.iter())
2413            .flat_map(|rec| rec.findings.iter())
2414            .collect()
2415    }
2416
2417    /// Look up a finding by id anywhere in this run's review history,
2418    /// together with the round and reviewer record that raised it — the
2419    /// provenance `magi fix` snapshots onto [`OperatorFixFinding`].
2420    pub fn finding(&self, id: &str) -> Option<(&ReviewRound, &ReviewRecord, &Finding)> {
2421        self.reviews.iter().find_map(|round| {
2422            round.reviews.iter().find_map(|rec| {
2423                rec.findings
2424                    .iter()
2425                    .find(|f| f.id == id)
2426                    .map(|f| (round, rec, f))
2427            })
2428        })
2429    }
2430
2431    /// Did this run reach a mergeable status (`Ready` or `Merged`) with
2432    /// review findings still open?
2433    ///
2434    /// That combination is the point of the review hand-off: the review
2435    /// round budget (or an unproductive round, see [`ReviewRound::progressed`])
2436    /// was spent while gate and e2e stayed green, so the run was handed off
2437    /// rather than blocked — but the findings did not disappear, and whoever
2438    /// reads the result should be told they are still there.
2439    pub fn handed_off_with_open_findings(&self) -> bool {
2440        matches!(self.status, RunStatus::Ready | RunStatus::Merged)
2441            && self.reviews.last().is_some_and(|r| !r.clean)
2442    }
2443
2444    /// Reached `Ready` because `[merge] mode = "none"` left it there by
2445    /// design, never to be picked up by the PR-polling merge watcher — as
2446    /// opposed to a `Ready` that is still a plausible landing candidate (a
2447    /// PR closed without merging, or a re-entry onto an already-concluded
2448    /// node). Both leave `status` at `Ready`; only this one leaves the
2449    /// winning branch permanently unwatched, which is what a caller needs to
2450    /// know before labelling the run in a listing.
2451    pub fn unmerged_by_design(&self) -> bool {
2452        self.status == RunStatus::Ready
2453            && self
2454                .merge
2455                .as_ref()
2456                .is_some_and(|m| m.mode == MergeMode::None)
2457    }
2458
2459    /// Did a step after the merge leave something only a human can finish?
2460    ///
2461    /// Derived, not a status: the merge happened, so `status` stays `Merged`
2462    /// and everything that branches on it keeps working. Display code asks
2463    /// this so a merged run with an unmerged release PR does not read as
2464    /// plain green.
2465    pub fn needs_attention(&self) -> bool {
2466        self.status == RunStatus::Merged
2467            && self
2468                .release_bump
2469                .as_ref()
2470                .is_some_and(|b| b.action_required.is_some())
2471    }
2472
2473    /// Local-time creation stamp for reports.
2474    pub fn created_local(&self) -> String {
2475        self.created_at
2476            .to_zoned(jiff::tz::TimeZone::system())
2477            .strftime("%Y-%m-%d %H:%M:%S")
2478            .to_string()
2479    }
2480
2481    /// Assert that this run is safe to delete.
2482    ///
2483    /// Refuses a run a live daemon is working on, and refuses any run whose
2484    /// candidate worktrees and branches have not been folded away with `magi
2485    /// fold`. The fold requirement is the real protection: it is what makes
2486    /// "delete" mean "remove a record" rather than "throw away a worktree
2487    /// somebody may still be editing".
2488    ///
2489    /// `in_flight` has to come from the caller, because a run's own status
2490    /// cannot answer the question. A daemon killed mid-run leaves its status at
2491    /// `implementing` forever, and a guard that trusted that would make every
2492    /// interrupted run permanently undeletable - the operator's only recourse
2493    /// being to edit `run.json` by hand, which is exactly the sort of thing
2494    /// this command exists to avoid. The queue already treats an orphaned
2495    /// `.lock` from a `SIGKILL`ed daemon the same way; this is that rule for
2496    /// runs.
2497    pub fn ensure_can_delete(&self, in_flight: bool) -> Result<()> {
2498        if in_flight {
2499            bail!(
2500                "run {} is being worked on by a live daemon right now",
2501                self.short()
2502            );
2503        }
2504        if self.candidates.iter().any(|c| !c.folded) {
2505            bail!(
2506                "run {} has unfolded candidates; fold first with `magi fold`",
2507                self.short()
2508            );
2509        }
2510        Ok(())
2511    }
2512}
2513
2514/// The short form of a commit, for a label a human or an LLM reads.
2515fn short(commit: &str) -> String {
2516    commit.chars().take(7).collect()
2517}
2518
2519/// The short form of a run id: the trailing block after the last `-`.
2520///
2521/// A free function as well as [`RunState::short`], because callers that have
2522/// only an id - an error message, a daemon status, a route handler - were
2523/// otherwise reimplementing the split, and two spellings of "short id" is one
2524/// rename away from branch names that no longer match their run.
2525pub fn short_of(id: &str) -> &str {
2526    id.split('-').next_back().unwrap_or(id)
2527}
2528
2529/// Where magi keeps its runs.
2530///
2531/// `MAGI_HOME` overrides the default, and [`set_home`] overrides both — which
2532/// is what lets the integration tests drive a whole graph without writing into
2533/// the operator's real history.
2534///
2535/// In a unit test build (`cfg(test)`), falling through to the real
2536/// `<data_local>/magi` is not a fallback worth having: it is exactly how
2537/// three broken fixture runs ended up in the operator's actual history and
2538/// were counted as `unreadable` by the deck. A test that reaches this point
2539/// forgot to call [`set_home`] (or set `MAGI_HOME`) - that is a bug in the
2540/// test, not a case to serve, so it panics instead of writing anywhere.
2541pub fn home() -> PathBuf {
2542    resolve_home(HOME.get().cloned(), std::env::var_os("MAGI_HOME"))
2543}
2544
2545/// The decision `home` makes, taking its two overrides as plain values
2546/// instead of reading the `OnceLock` and the environment itself.
2547///
2548/// Pulled out so the `cfg(test)` panic is asserted directly against a
2549/// `None, None` input, rather than racing every other unit test in the
2550/// binary for who touches the process-global `HOME` first.
2551fn resolve_home(pinned: Option<PathBuf>, magi_home_env: Option<std::ffi::OsString>) -> PathBuf {
2552    if let Some(dir) = pinned {
2553        return dir;
2554    }
2555    if let Some(dir) = magi_home_env {
2556        return PathBuf::from(dir);
2557    }
2558    #[cfg(test)]
2559    {
2560        panic!(
2561            "run::home() was reached in a test without run::set_home() or \
2562             MAGI_HOME; this would write into the operator's real \
2563             <data_local>/magi. Call `run::set_home(temp_dir)` before any \
2564             code path that touches a RunState."
2565        );
2566    }
2567    #[cfg(not(test))]
2568    {
2569        dirs::data_local_dir()
2570            .unwrap_or_else(|| PathBuf::from("."))
2571            .join("magi")
2572    }
2573}
2574
2575/// [`home`] without the test panic: `None` in a test that never pinned a
2576/// home, so best-effort writers (see [`crate::notices::raise`]) skip the write
2577/// instead of touching the operator's real state or aborting the test.
2578pub fn try_home() -> Option<PathBuf> {
2579    if cfg!(test) {
2580        HOME.get()
2581            .cloned()
2582            .or_else(|| std::env::var_os("MAGI_HOME").map(PathBuf::from))
2583    } else {
2584        Some(home())
2585    }
2586}
2587
2588/// Pin the run home for this process. The first call wins.
2589pub fn set_home(dir: PathBuf) {
2590    let _ = HOME.set(dir);
2591}
2592
2593static HOME: std::sync::OnceLock<PathBuf> = std::sync::OnceLock::new();
2594
2595/// `<home>/runs`.
2596pub fn runs_root() -> PathBuf {
2597    home().join("runs")
2598}
2599
2600/// The worktree root a run uses when the config sets none: `~/wt/magi`.
2601///
2602/// One definition of the default, so the folder the janitor folds and the
2603/// folder the health view sizes cannot drift apart: a run with no configured
2604/// [`crate::config::Graph::worktree_root`] lays its worktrees exactly here.
2605pub fn default_worktree_root() -> PathBuf {
2606    dirs::home_dir()
2607        .unwrap_or_else(|| PathBuf::from("."))
2608        .join("wt")
2609        .join("magi")
2610}
2611
2612/// Directory for one run id.
2613pub fn run_dir(id: &str) -> PathBuf {
2614    runs_root().join(id)
2615}
2616
2617/// Every run id on disk, newest first.
2618///
2619/// A directory is a run because of its **name**, not because it holds a
2620/// readable `run.json`. A run whose very first save lost the machine's last
2621/// free bytes leaves `<id>/run.json.tmp` and nothing else, and filtering on
2622/// `run.json` made that run invisible everywhere: not in `magi list`, not in
2623/// `runs_unreadable`, not on the phone, so nothing could report it and no
2624/// route could clear it. `88c0` sat like that for two days. Unreadable is
2625/// counted, never hidden - the readers already say why each one cannot be
2626/// read, and `fold_unreadable` is how a record like this leaves.
2627pub fn list_ids() -> Vec<String> {
2628    list_ids_in(&runs_root())
2629}
2630
2631/// [`list_ids`] against an explicit runs root, for callers (and tests) that
2632/// must not depend on the process-global home.
2633pub fn list_ids_in(root: &Path) -> Vec<String> {
2634    let mut ids: Vec<String> = std::fs::read_dir(root)
2635        .into_iter()
2636        .flatten()
2637        .flatten()
2638        .filter(|e| e.path().is_dir())
2639        .map(|e| e.file_name().to_string_lossy().into_owned())
2640        .filter(|name| is_run_id(name))
2641        .collect();
2642    // Ids start with a sortable timestamp.
2643    ids.sort_unstable_by(|a, b| b.cmp(a));
2644    ids
2645}
2646
2647/// Does `name` have the shape [`new_id`] mints: `YYYYMMDD-HHMMSS-xxxx`?
2648///
2649/// The test for "this directory is a run", so a stray folder under
2650/// `<home>/runs` is not reported as a broken run.
2651///
2652/// The tag is checked for length and for being alphanumeric, not for being
2653/// hex: real ids are hex, but fixtures across this crate name runs
2654/// `...-dead` / `...-gone` / `...-once`, and a predicate that disowned those
2655/// would be asserting the fixtures' spelling rather than the shape.
2656pub fn is_run_id(name: &str) -> bool {
2657    let mut parts = name.split('-');
2658    let (Some(day), Some(time), Some(tag), None) =
2659        (parts.next(), parts.next(), parts.next(), parts.next())
2660    else {
2661        return false;
2662    };
2663    day.len() == 8
2664        && day.bytes().all(|b| b.is_ascii_digit())
2665        && time.len() == 6
2666        && time.bytes().all(|b| b.is_ascii_digit())
2667        && tag.len() == 4
2668        && tag.bytes().all(|b| b.is_ascii_alphanumeric())
2669}
2670
2671/// Expand an id prefix to exactly one run id.
2672pub fn resolve_id(prefix: &str) -> Result<String> {
2673    // A whole id names its directory, readable state or not: the run whose
2674    // `run.json` never landed still has to be reachable by `magi show` and
2675    // by the fold route, which is the only way its record ever leaves.
2676    if is_run_id(prefix) && run_dir(prefix).is_dir() {
2677        return Ok(prefix.to_owned());
2678    }
2679    let hits: Vec<String> = list_ids()
2680        .into_iter()
2681        .filter(|id| id.starts_with(prefix) || id.ends_with(prefix))
2682        .collect();
2683    match hits.len() {
2684        1 => Ok(hits.into_iter().next().expect("exactly one hit")),
2685        0 => bail!("no run matches `{prefix}`"),
2686        _ => bail!(
2687            "`{prefix}` matches {} runs: {}",
2688            hits.len(),
2689            hits.join(", ")
2690        ),
2691    }
2692}
2693
2694/// The most recent run, if any.
2695pub fn latest_id() -> Option<String> {
2696    list_ids().into_iter().next()
2697}
2698
2699/// `YYYYMMDD-HHMMSS-xxxx`, sortable and short enough for a branch name.
2700///
2701/// The four hex digits are fresh entropy, **not** `blind.seed`. They were the
2702/// seed, and a pinned seed then made the whole id a function of the second it
2703/// started in: two runs a second apart were distinguishable, two in the same
2704/// second were not. Everything keyed on the id collided with them - the run
2705/// directory, `artifacts/`, and the candidate worktrees under
2706/// `wt/magi/<short>/`.
2707///
2708/// `tests/common` pins the seed on purpose, so its integration tests all share
2709/// one suffix. On Windows the suite is slow enough that the seconds differ and
2710/// nothing showed; on Linux `graph_dropped_stream`'s three tests run inside
2711/// 16s, so two of them shared a run directory and the second read an artifact
2712/// the first had written (`impl-B-resume.out`) - a failure that looked like the
2713/// resume logic misbehaving and was really two runs in one directory.
2714///
2715/// A seed exists to make the *blind* decisions reproducible: label assignment
2716/// and per-judge presentation order. It was never meant to name the run, and
2717/// `RunState::seed` still carries it for what it is for.
2718fn new_id() -> String {
2719    let stamp = Zoned::now().strftime("%Y%m%d-%H%M%S");
2720    let entropy = crate::rng::entropy();
2721    format!("{stamp}-{:04x}", (entropy ^ (entropy >> 32)) & 0xffff)
2722}
2723
2724/// Keep the last `max` bytes of `text`, on a line boundary.
2725pub fn tail(text: &str, max: usize) -> String {
2726    if text.len() <= max {
2727        return text.to_owned();
2728    }
2729    let mut cut = text.len() - max;
2730    while cut < text.len() && !text.is_char_boundary(cut) {
2731        cut += 1;
2732    }
2733    let slice = &text[cut..];
2734    let start = slice.find('\n').map_or(0, |i| i + 1);
2735    format!(
2736        "[... {} earlier bytes omitted ...]\n{}",
2737        cut,
2738        &slice[start..]
2739    )
2740}
2741
2742/// Path of a run artifact.
2743pub fn artifact_path(run: &RunState, name: &str) -> PathBuf {
2744    run.dir().join("artifacts").join(name)
2745}
2746
2747/// Write an artifact, creating the directory if needed.
2748pub fn write_artifact(run: &RunState, name: &str, body: &str) -> Result<PathBuf> {
2749    let path = artifact_path(run, name);
2750    if let Some(parent) = path.parent() {
2751        std::fs::create_dir_all(parent).with_context(|| format!("create {}", parent.display()))?;
2752    }
2753    std::fs::write(&path, body).with_context(|| format!("write {}", path.display()))?;
2754    Ok(path)
2755}
2756
2757/// Read an artifact back, e.g. a stored patch on resume.
2758pub fn read_artifact(run: &RunState, name: &str) -> Option<String> {
2759    std::fs::read_to_string(artifact_path(run, name)).ok()
2760}
2761
2762#[cfg(test)]
2763mod tests {
2764    use super::*;
2765
2766    fn state() -> RunState {
2767        RunState::new(
2768            PathBuf::from("/repo"),
2769            "main".to_owned(),
2770            "abc1234def".to_owned(),
2771            "add retries".to_owned(),
2772            Config::default(),
2773        )
2774    }
2775
2776    #[test]
2777    fn superseded_is_terminal_but_not_resumable() {
2778        assert!(RunStatus::Superseded.done());
2779        assert!(!RunStatus::Superseded.resumable());
2780        assert_eq!(RunStatus::Superseded.as_str(), "superseded");
2781        assert!(RunStatus::AlreadyInBase.done());
2782        assert!(!RunStatus::AlreadyInBase.resumable());
2783        assert_eq!(RunStatus::AlreadyInBase.as_str(), "already_in_base");
2784    }
2785
2786    #[test]
2787    fn load_under_reads_back_exactly_what_save_under_wrote_at_an_explicit_home() {
2788        // Both rooted at an explicit `home` rather than the process-global
2789        // one - a caller with its own `home` (a test fixture, a housekeeping
2790        // pass) must round-trip through exactly that directory, never
2791        // through whichever home some other test in the same binary pinned
2792        // into the global `OnceLock` first.
2793        let dir = tempfile::tempdir().unwrap();
2794        let mut original = state();
2795        original.id = "20260101-000000-load".to_owned();
2796        original.status = RunStatus::Blocked;
2797        original.save_under(dir.path()).unwrap();
2798
2799        let reloaded = RunState::load_under(&original.id, dir.path()).unwrap();
2800        assert_eq!(reloaded.id, original.id);
2801        assert_eq!(reloaded.status, RunStatus::Blocked);
2802
2803        assert!(
2804            RunState::load_under("20260101-000000-none", dir.path()).is_err(),
2805            "an id with nothing saved under this home must not silently read something else"
2806        );
2807    }
2808
2809    #[test]
2810    fn resolve_home_prefers_the_pin_then_the_env_var() {
2811        let pinned = PathBuf::from("/pinned");
2812        assert_eq!(
2813            resolve_home(Some(pinned.clone()), Some("/env".into())),
2814            pinned,
2815            "a pin wins even over MAGI_HOME"
2816        );
2817        assert_eq!(
2818            resolve_home(None, Some("/env".into())),
2819            PathBuf::from("/env")
2820        );
2821    }
2822
2823    #[test]
2824    #[should_panic(expected = "run::set_home()")]
2825    fn resolve_home_refuses_to_fall_back_to_the_operators_real_home() {
2826        // Neither override present is exactly the state a test reaches by
2827        // forgetting `set_home`/`MAGI_HOME` - the accident that put three
2828        // broken fixture runs into the operator's real history. Asserted
2829        // against the pure decision directly, not `home()` itself, because
2830        // `HOME` is a process-wide `OnceLock` another test may have already
2831        // set - this must not depend on test execution order.
2832        resolve_home(None, None);
2833    }
2834
2835    #[test]
2836    fn a_run_is_named_by_shape_so_a_state_less_directory_is_still_a_run() {
2837        // The shape `new_id` mints. A directory answering to it is a run even
2838        // with no readable `run.json`: that is how a save that ran out of
2839        // disk stays visible instead of vanishing from every listing.
2840        assert!(is_run_id(&new_id()));
2841        assert!(is_run_id("20260904-014540-88c0"));
2842        // Not runs: a stray folder, a truncated id, a non-hex tag, and an id
2843        // with an extra segment (a worktree label, say).
2844        assert!(!is_run_id("scratch"));
2845        assert!(!is_run_id("20260904-014540"));
2846        assert!(!is_run_id("20260904-014540-88c0f"));
2847        assert!(!is_run_id("2026090x-014540-88c0"));
2848        assert!(!is_run_id("20260904-014540-88c0-A"));
2849    }
2850
2851    #[test]
2852    fn ids_are_sortable_and_short_suffixed() {
2853        let s = state();
2854        let parts: Vec<&str> = s.id.split('-').collect();
2855        assert_eq!(parts.len(), 3);
2856        assert_eq!(parts[0].len(), 8);
2857        assert_eq!(parts[1].len(), 6);
2858        assert_eq!(parts[2].len(), 4);
2859        assert_eq!(s.short(), parts[2]);
2860    }
2861
2862    #[test]
2863    fn branch_names_carry_the_label_not_the_author() {
2864        let s = state();
2865        let b = s.branch_for('B');
2866        assert_eq!(b, format!("magi/{}/B", s.short()));
2867        assert!(!b.contains("claude"));
2868    }
2869
2870    /// A pinned seed reproduces the blind decisions. It must **not** reproduce
2871    /// the run's identity.
2872    ///
2873    /// `assert_eq!(a.short(), b.short())` used to stand where the last
2874    /// assertion is now, and it was pinning the defect: with the id's suffix
2875    /// derived from the seed, two runs started in the same second were the
2876    /// same run as far as the filesystem was concerned - one directory, one
2877    /// `artifacts/`, one set of candidate worktrees. `tests/common` pins a
2878    /// seed for every integration test, so on Linux, where the suite is fast,
2879    /// two tests in `graph_dropped_stream` shared a directory and one read the
2880    /// other's artifact.
2881    #[test]
2882    fn a_pinned_seed_is_reproducible_but_never_the_run_id() {
2883        let mut cfg = Config::default();
2884        cfg.blind.seed = Some(1234);
2885        let a = RunState::new(
2886            PathBuf::from("/r"),
2887            "main".to_owned(),
2888            "c".to_owned(),
2889            "t".to_owned(),
2890            cfg.clone(),
2891        );
2892        let b = RunState::new(
2893            PathBuf::from("/r"),
2894            "main".to_owned(),
2895            "c".to_owned(),
2896            "t".to_owned(),
2897            cfg,
2898        );
2899        // What the seed is for: the same shuffles, run after run.
2900        assert_eq!(a.seed, 1234);
2901        assert_eq!(a.seed, b.seed);
2902        // What it is not for. Two runs are two runs, in the same second or
2903        // not, and everything keyed on the id depends on that.
2904        assert_ne!(
2905            a.id, b.id,
2906            "two runs sharing an id share a directory, artifacts and worktrees"
2907        );
2908    }
2909
2910    #[test]
2911    fn status_terminality() {
2912        assert!(RunStatus::Merged.done());
2913        assert!(RunStatus::Blocked.done());
2914        assert!(!RunStatus::Reviewing.done());
2915    }
2916
2917    fn overrun_seat(now: Timestamp, elapsed_secs: i64, timeout_secs: u64) -> ActiveSeat {
2918        ActiveSeat {
2919            node: "implement".to_owned(),
2920            started_at: now - jiff::SignedDuration::new(elapsed_secs, 0),
2921            timeout_secs,
2922            attempt: 0,
2923            task: None,
2924            command: None,
2925            index: None,
2926            total: None,
2927        }
2928    }
2929
2930    #[test]
2931    fn active_all_overrun_requires_every_seat_past_its_own_timeout() {
2932        let mut s = state();
2933        let now = Timestamp::now();
2934        assert!(
2935            !s.active_all_overrun(now),
2936            "nothing active is not evidence of anything"
2937        );
2938
2939        s.active
2940            .insert("impl-A".to_owned(), overrun_seat(now, 21_000, 3_600));
2941        assert!(
2942            s.active_all_overrun(now),
2943            "21000s elapsed against a 3600s budget"
2944        );
2945
2946        // A seat still well within its own budget means the run is not
2947        // provably dead, however far its sibling has overrun.
2948        s.active
2949            .insert("impl-B".to_owned(), overrun_seat(now, 0, 3_600));
2950        assert!(!s.active_all_overrun(now));
2951    }
2952
2953    /// A schema-11 run that ended Blocked cannot be pinned by a daemon pid
2954    /// that is still alive; one still mid-walk keeps asking the pid.
2955    #[test]
2956    fn migrating_schema_11_marks_only_ended_runs_as_exited() {
2957        for (status, exited) in [
2958            (RunStatus::Blocked, true),
2959            (RunStatus::Failed, true),
2960            (RunStatus::Stalled, true),
2961            (RunStatus::Landing, true),
2962            (RunStatus::Reviewing, false),
2963        ] {
2964            let mut s = state();
2965            s.schema = 11;
2966            s.status = status;
2967            let m = migrate_schema(s).unwrap();
2968            assert_eq!(m.schema, SCHEMA);
2969            assert_eq!(m.driver_exited, exited, "{status:?}");
2970        }
2971    }
2972
2973    /// A driver that recorded its own exit reads dead without its pid being
2974    /// asked: a daemon's pid outlives the runs it drove.
2975    #[test]
2976    fn an_exited_driver_is_dead_even_when_its_pid_answers_alive() {
2977        let mut s = state();
2978        s.driver_pid = Some(4242);
2979        s.driver_started_at = Some("2026-09-22T10:00:00Z".to_owned());
2980        s.driver_exited = true;
2981        let never = |_| -> Option<bool> { panic!("the pid must not be asked") };
2982        assert_eq!(
2983            s.liveness_with(false, never, |_| panic!("nor its identity")),
2984            Liveness::Dead
2985        );
2986        assert_eq!(s.liveness_with(true, never, |_| None), Liveness::Live);
2987    }
2988
2989    /// A daemon claim wins outright, whatever `driver_pid` or either query
2990    /// says — the stronger, independently-heartbeating signal. Neither query
2991    /// closure is even called: a daemon claim short-circuits before either
2992    /// one, which panicking closures here prove.
2993    #[test]
2994    fn liveness_reads_live_from_a_daemon_claim_alone() {
2995        let mut s = state();
2996        s.driver_pid = None;
2997        assert_eq!(
2998            s.liveness_with(
2999                true,
3000                |_| panic!("a daemon claim needs no pid query"),
3001                |_| panic!("a daemon claim needs no identity query")
3002            ),
3003            Liveness::Live,
3004            "a daemon claim needs no pid to back it up"
3005        );
3006    }
3007
3008    /// The gap `driver_pid` closes: no daemon claim (every manual `magi run`
3009    /// / `magi review`), but the recorded pid answers alive *and* the
3010    /// process currently holding it still carries the same start-time
3011    /// marker this run recorded — proof it is genuinely the same process,
3012    /// not merely the same number.
3013    #[test]
3014    fn liveness_reads_live_from_a_confirmed_pid_with_a_matching_identity() {
3015        let mut s = state();
3016        s.driver_pid = Some(4242);
3017        s.driver_started_at = Some("2026-09-22T10:00:00Z".to_owned());
3018        assert_eq!(
3019            s.liveness_with(
3020                false,
3021                |pid| {
3022                    assert_eq!(pid, 4242);
3023                    Some(true)
3024                },
3025                |pid| {
3026                    assert_eq!(pid, 4242);
3027                    Some("2026-09-22T10:00:00Z".to_owned())
3028                }
3029            ),
3030            Liveness::Live
3031        );
3032    }
3033
3034    /// No daemon claim and the recorded pid confirmed gone by the OS itself
3035    /// — dead outright, and the identity query is never even reached (a
3036    /// panicking closure proves it), since there is nothing left to
3037    /// corroborate.
3038    #[test]
3039    fn liveness_reads_dead_from_a_confirmed_dead_pid() {
3040        let mut s = state();
3041        s.driver_pid = Some(4242);
3042        assert_eq!(
3043            s.liveness_with(
3044                false,
3045                |_| Some(false),
3046                |_| panic!("a confirmed-dead pid needs no identity query")
3047            ),
3048            Liveness::Dead
3049        );
3050    }
3051
3052    /// The gap this task's review round exists to close: a killed manual
3053    /// run's pid gets handed to a wholly unrelated later process. `pid_status`
3054    /// alone would read that as `Live` — the reused pid really is alive —
3055    /// but the process now holding it started at a different moment than the
3056    /// one this run recorded, so this must read `Dead`, not `Live`: a
3057    /// mismatch is exactly as good as proof the original driver is gone.
3058    #[test]
3059    fn liveness_reads_dead_when_a_live_pid_no_longer_matches_the_recorded_start_time() {
3060        let mut s = state();
3061        s.driver_pid = Some(4242);
3062        s.driver_started_at = Some("2026-09-22T10:00:00Z".to_owned());
3063        assert_eq!(
3064            s.liveness_with(
3065                false,
3066                |_| Some(true),
3067                |_| Some("2026-09-22T11:30:00Z".to_owned())
3068            ),
3069            Liveness::Dead,
3070            "the pid is alive, but under a different process than the one this run recorded"
3071        );
3072    }
3073
3074    /// Missing information never collapses to `Dead`: an old run with no
3075    /// `driver_pid` at all, a `driver_pid` this build could not query, a live
3076    /// pid with no recorded start time to compare (an even older run, before
3077    /// that field existed), and a live pid whose current identity this build
3078    /// could not re-query, all read as `Unknown` — never a guess in either
3079    /// direction.
3080    #[test]
3081    fn liveness_never_guesses_out_of_missing_information() {
3082        let mut s = state();
3083        s.driver_pid = None;
3084        assert_eq!(
3085            s.liveness_with(
3086                false,
3087                |_| panic!("no pid to query"),
3088                |_| panic!("no pid to query")
3089            ),
3090            Liveness::Unknown,
3091            "no driver_pid recorded at all — an old run predating this field"
3092        );
3093
3094        s.driver_pid = Some(4242);
3095        assert_eq!(
3096            s.liveness_with(false, |_| None, |_| panic!("inconclusive already")),
3097            Liveness::Unknown,
3098            "a pid to ask, but the platform could not answer for it"
3099        );
3100
3101        s.driver_started_at = None;
3102        assert_eq!(
3103            s.liveness_with(false, |_| Some(true), |_| Some("anything".to_owned())),
3104            Liveness::Unknown,
3105            "a live pid, but no recorded marker to corroborate it against — an old run \
3106             predating `driver_started_at`"
3107        );
3108
3109        s.driver_started_at = Some("2026-09-22T10:00:00Z".to_owned());
3110        assert_eq!(
3111            s.liveness_with(false, |_| Some(true), |_| None),
3112            Liveness::Unknown,
3113            "a live pid and a recorded marker, but the identity re-query itself failed"
3114        );
3115    }
3116
3117    #[test]
3118    fn abandon_clears_active_and_fails_a_non_terminal_run() {
3119        let mut s = state();
3120        s.status = RunStatus::Implementing;
3121        let now = Timestamp::now();
3122        s.active
3123            .insert("impl-A".to_owned(), overrun_seat(now, 21_000, 3_600));
3124
3125        s.abandon("daemon");
3126
3127        assert!(s.active.is_empty());
3128        assert_eq!(s.status, RunStatus::Failed);
3129        assert!(
3130            s.events
3131                .last()
3132                .expect("an event was logged")
3133                .message
3134                .contains("impl-A"),
3135            "the event names the abandoned seat"
3136        );
3137    }
3138
3139    #[test]
3140    fn abandon_never_overwrites_a_status_already_terminal() {
3141        let mut s = state();
3142        s.status = RunStatus::Ready;
3143        let now = Timestamp::now();
3144        s.active
3145            .insert("impl-A".to_owned(), overrun_seat(now, 21_000, 3_600));
3146
3147        s.abandon("daemon");
3148
3149        assert!(s.active.is_empty());
3150        assert_eq!(
3151            s.status,
3152            RunStatus::Ready,
3153            "a run already done must not be relabelled Failed"
3154        );
3155    }
3156
3157    #[test]
3158    fn candidate_viability_excludes_empty_and_failed() {
3159        let mut c = Candidate {
3160            index: 0,
3161            label: 'A',
3162            agent: "a".to_owned(),
3163            branch: "b".to_owned(),
3164            worktree: PathBuf::from("/w"),
3165            summary: String::new(),
3166            stat: String::new(),
3167            files: 1,
3168            commits: 1,
3169            empty: false,
3170            failed: None,
3171            verified_noop: None,
3172            duration_ms: 0,
3173            folded: false,
3174        };
3175        assert!(c.viable());
3176        c.empty = true;
3177        assert!(!c.viable());
3178        c.empty = false;
3179        c.failed = Some("timeout".to_owned());
3180        assert!(!c.viable());
3181    }
3182
3183    #[test]
3184    fn build_failure_is_distinguished_from_a_failing_test() {
3185        let link_race = CommandOutcome {
3186            command: "cargo test".to_owned(),
3187            code: Some(1),
3188            output_tail: "LINK : fatal error LNK1104: cannot open file \
3189                          'graph_dirty_tree-71d4dc8e.exe'\n\
3190                          error: could not compile `magi-cli` (test \"graph_dirty_tree\")"
3191                .to_owned(),
3192            duration_ms: 500,
3193            resource_blocked: false,
3194        };
3195        assert!(!link_race.ok());
3196        assert!(link_race.build_failed());
3197
3198        let failing_test = CommandOutcome {
3199            command: "cargo test".to_owned(),
3200            code: Some(101),
3201            output_tail: "thread 'it_works' panicked at 'assertion failed'".to_owned(),
3202            duration_ms: 500,
3203            resource_blocked: false,
3204        };
3205        assert!(!failing_test.ok());
3206        assert!(
3207            !failing_test.build_failed(),
3208            "a real test failure must not be classed as a build failure"
3209        );
3210
3211        let passing = CommandOutcome {
3212            command: "cargo test".to_owned(),
3213            code: Some(0),
3214            output_tail: String::new(),
3215            duration_ms: 500,
3216            resource_blocked: false,
3217        };
3218        assert!(passing.ok());
3219        assert!(!passing.build_failed());
3220    }
3221
3222    #[test]
3223    fn tail_keeps_the_end_on_a_line_boundary() {
3224        let text = (0..100).map(|i| format!("line {i}\n")).collect::<String>();
3225        let t = tail(&text, 40);
3226        assert!(t.starts_with("[..."));
3227        assert!(t.ends_with("line 99\n"));
3228        assert!(t.len() < 120);
3229        assert_eq!(tail("short", 40), "short");
3230    }
3231
3232    #[test]
3233    fn tail_survives_multibyte_cuts() {
3234        let text = "あ".repeat(50);
3235        let t = tail(&text, 10);
3236        assert!(t.contains("earlier bytes omitted"));
3237        assert!(t.ends_with('あ'));
3238    }
3239
3240    fn finding(id: &str, severity: crate::verdict::Severity) -> crate::verdict::Finding {
3241        crate::verdict::Finding {
3242            id: id.to_owned(),
3243            severity,
3244            file: None,
3245            line: None,
3246            title: "x".to_owned(),
3247            detail: String::new(),
3248        }
3249    }
3250
3251    fn round(clean: bool, findings: Vec<crate::verdict::Finding>) -> ReviewRound {
3252        ReviewRound {
3253            round: 1,
3254            head: "h".to_owned(),
3255            verified_head: None,
3256            verified_at: None,
3257            reviews: vec![ReviewRecord {
3258                attempts: 0,
3259                reviewer: 1,
3260                agent: "a".to_owned(),
3261                summary: String::new(),
3262                findings,
3263                vote: None,
3264                failed: None,
3265                duration_ms: 0,
3266            }],
3267            e2e: Vec::new(),
3268            verify_retried: false,
3269            e2e_deferred: false,
3270            e2e_defer_reason: None,
3271            fix: None,
3272            blocking: 0,
3273            answered: 1,
3274            expected: 1,
3275            clean,
3276            progressed: false,
3277            vote_split: false,
3278            reconsideration: Vec::new(),
3279            verdict: None,
3280        }
3281    }
3282
3283    #[test]
3284    fn e2e_status_tells_deferred_apart_from_not_configured() {
3285        let mut r = round(false, Vec::new());
3286        assert_eq!(r.e2e_status(), E2eStatus::NotConfigured);
3287
3288        r.e2e_deferred = true;
3289        assert_eq!(
3290            r.e2e_status(),
3291            E2eStatus::Deferred,
3292            "an empty e2e must not read as unconfigured once it was deferred on purpose"
3293        );
3294
3295        r.e2e = vec![CommandOutcome {
3296            command: "test".to_owned(),
3297            code: Some(0),
3298            output_tail: String::new(),
3299            duration_ms: 0,
3300            resource_blocked: false,
3301        }];
3302        assert_eq!(
3303            r.e2e_status(),
3304            E2eStatus::Passed,
3305            "a round with real outcomes is never read as deferred, even if the flag is still set"
3306        );
3307    }
3308
3309    #[test]
3310    fn e2e_status_reports_a_real_failure_as_failed_not_deferred() {
3311        let mut r = round(false, Vec::new());
3312        r.e2e = vec![CommandOutcome {
3313            command: "test".to_owned(),
3314            code: Some(1),
3315            output_tail: "boom".to_owned(),
3316            duration_ms: 0,
3317            resource_blocked: false,
3318        }];
3319        assert_eq!(r.e2e_status(), E2eStatus::Failed);
3320    }
3321
3322    #[test]
3323    fn e2e_status_never_reads_a_resource_block_as_a_failure() {
3324        // The exact shape of contention on the shared build cache: `e2e`
3325        // holds one outcome, and it is `resource_blocked`, never a command
3326        // that actually ran and produced a red exit code.
3327        let mut r = round(false, Vec::new());
3328        r.e2e = vec![CommandOutcome {
3329            command: "(waiting for the shared build cache)".to_owned(),
3330            code: None,
3331            output_tail: "contended".to_owned(),
3332            duration_ms: 0,
3333            resource_blocked: true,
3334        }];
3335        assert_eq!(
3336            r.e2e_status(),
3337            E2eStatus::ResourceBlocked,
3338            "magi's own inability to get a command to run must not read as a verdict on the \
3339             patch"
3340        );
3341    }
3342
3343    #[test]
3344    fn verification_summary_is_silent_when_there_is_nothing_worth_saying() {
3345        let mut r = round(true, Vec::new());
3346        assert!(
3347            r.verification_summary("h").is_none(),
3348            "no verify.e2e configured: nothing to surface"
3349        );
3350        r.e2e = vec![CommandOutcome {
3351            command: "test".to_owned(),
3352            code: Some(0),
3353            output_tail: String::new(),
3354            duration_ms: 0,
3355            resource_blocked: false,
3356        }];
3357        assert!(
3358            r.verification_summary("h").is_none(),
3359            "a green result needs no skepticism attached to it"
3360        );
3361    }
3362
3363    #[test]
3364    fn verification_summary_tells_the_current_head_apart_from_an_earlier_one() {
3365        let mut r = round(false, Vec::new());
3366        r.head = "h1".to_owned();
3367        r.e2e = vec![CommandOutcome {
3368            command: "test".to_owned(),
3369            code: Some(1),
3370            output_tail: "boom".to_owned(),
3371            duration_ms: 0,
3372            resource_blocked: false,
3373        }];
3374        r.verified_head = Some("h1".to_owned());
3375        r.verified_at = Some(Timestamp::now());
3376
3377        let fresh = r.verification_summary("h1").expect("a failure is surfaced");
3378        assert!(
3379            fresh.label.contains("this is the head being looked at now"),
3380            "{}",
3381            fresh.label
3382        );
3383        assert_eq!(fresh.tail.as_deref(), Some("$ test\nboom\n"));
3384
3385        let stale = r.verification_summary("h2").expect("still surfaced");
3386        assert!(
3387            stale.label.contains("an earlier head, since superseded"),
3388            "a result about a different commit than the one being looked at now must say so, \
3389             not read as current: {}",
3390            stale.label
3391        );
3392    }
3393
3394    #[test]
3395    fn verification_summary_marks_a_resource_block_and_a_deferral_distinctly_from_a_failure() {
3396        let mut r = round(false, Vec::new());
3397        r.e2e = vec![CommandOutcome {
3398            command: "(waiting for the shared build cache)".to_owned(),
3399            code: None,
3400            output_tail: "contended".to_owned(),
3401            duration_ms: 0,
3402            resource_blocked: true,
3403        }];
3404        let blocked = r
3405            .verification_summary("h")
3406            .expect("a resource block is still surfaced, never silent");
3407        assert!(blocked.label.contains("could not run"));
3408        // No command actually ran, but which operation was attempted is
3409        // still a fact worth showing — never silent past the label either.
3410        let tail = blocked
3411            .tail
3412            .expect("the attempted operation is still named");
3413        assert!(tail.contains("(waiting for the shared build cache)"));
3414        assert!(tail.contains("contended"));
3415
3416        let mut d = round(false, Vec::new());
3417        d.e2e_deferred = true;
3418        d.e2e_defer_reason = Some("2 blocking finding(s) already required a fix".to_owned());
3419        let deferred = d.verification_summary("h").expect("deferred is surfaced");
3420        assert!(deferred.label.contains("deferred to the fixer"));
3421        assert!(deferred.label.contains("2 blocking finding(s)"));
3422        assert!(deferred.tail.is_none());
3423    }
3424
3425    #[test]
3426    fn verification_summary_says_unknown_rather_than_guessing_a_time_or_a_commit() {
3427        let mut r = round(false, Vec::new());
3428        r.e2e = vec![CommandOutcome {
3429            command: "test".to_owned(),
3430            code: Some(1),
3431            output_tail: "boom".to_owned(),
3432            duration_ms: 0,
3433            resource_blocked: false,
3434        }];
3435        // verified_head/verified_at left at their default `None` — exactly
3436        // the shape a schema-7 round with no reconstructable timestamp has.
3437        let summary = r.verification_summary("h").expect("a failure is surfaced");
3438        assert!(summary.label.contains("commit unknown"));
3439        assert!(summary.label.contains("checked at: unknown"));
3440    }
3441
3442    #[test]
3443    fn gate_status_tells_not_run_apart_from_passed_with_no_commands() {
3444        let mut s = state();
3445        assert_eq!(s.gate_status(), GateStatus::NotRun);
3446
3447        s.gate_ran = true;
3448        assert_eq!(
3449            s.gate_status(),
3450            GateStatus::PassedWithNoCommands,
3451            "an empty gate must read as a real pass once gate_ran says it actually ran"
3452        );
3453
3454        s.gate = vec![CommandOutcome {
3455            command: "cargo make check".to_owned(),
3456            code: Some(0),
3457            output_tail: String::new(),
3458            duration_ms: 0,
3459            resource_blocked: false,
3460        }];
3461        assert_eq!(s.gate_status(), GateStatus::Passed);
3462
3463        s.gate[0].code = Some(1);
3464        assert_eq!(s.gate_status(), GateStatus::Failed);
3465
3466        s.gate_ran = false;
3467        assert_eq!(
3468            s.gate_status(),
3469            GateStatus::NotRun,
3470            "gate_ran false must win even over a non-empty gate left from a stale record"
3471        );
3472    }
3473
3474    #[test]
3475    fn open_findings_is_empty_when_the_last_round_was_clean() {
3476        let mut s = state();
3477        s.reviews = vec![round(
3478            true,
3479            vec![finding("R1-1-1", crate::verdict::Severity::Minor)],
3480        )];
3481        assert!(s.open_findings().is_empty());
3482    }
3483
3484    #[test]
3485    fn open_findings_reads_the_last_non_clean_round() {
3486        let mut s = state();
3487        s.reviews = vec![round(
3488            false,
3489            vec![finding("R1-1-1", crate::verdict::Severity::Major)],
3490        )];
3491        let open = s.open_findings();
3492        assert_eq!(open.len(), 1);
3493        assert_eq!(open[0].id, "R1-1-1");
3494    }
3495
3496    #[test]
3497    fn handed_off_with_open_findings_needs_a_mergeable_status_and_an_open_round() {
3498        let mut s = state();
3499        s.reviews = vec![round(
3500            false,
3501            vec![finding("R1-1-1", crate::verdict::Severity::Major)],
3502        )];
3503
3504        s.status = RunStatus::Blocked;
3505        assert!(
3506            !s.handed_off_with_open_findings(),
3507            "a blocked run is not a hand-off"
3508        );
3509
3510        s.status = RunStatus::Ready;
3511        assert!(s.handed_off_with_open_findings());
3512
3513        s.reviews = vec![round(true, Vec::new())];
3514        assert!(
3515            !s.handed_off_with_open_findings(),
3516            "a clean last round has nothing to hand off"
3517        );
3518    }
3519
3520    #[test]
3521    fn unmerged_by_design_is_only_ready_reached_via_merge_mode_none() {
3522        let mut s = state();
3523
3524        s.status = RunStatus::Ready;
3525        assert!(
3526            !s.unmerged_by_design(),
3527            "no merge outcome recorded at all must not be flagged"
3528        );
3529
3530        s.merge = Some(MergeOutcome {
3531            mode: MergeMode::None,
3532            ok: true,
3533            detail: "git merge --no-ff magi/x/A".to_owned(),
3534            empty: false,
3535        });
3536        assert!(
3537            s.unmerged_by_design(),
3538            "Ready reached through mode none is the case this exists to flag"
3539        );
3540
3541        // A PR closed without merging also leaves `status` at `Ready`, but
3542        // through `mode = "pr"` — a run that may still have been landable by
3543        // a person watching the PR, unlike the honest mode-none no-op.
3544        s.merge = Some(MergeOutcome {
3545            mode: MergeMode::Pr,
3546            ok: false,
3547            detail: "https://example.com/pr/1 was closed without merging".to_owned(),
3548            empty: false,
3549        });
3550        assert!(
3551            !s.unmerged_by_design(),
3552            "a closed pull request is a different Ready and must not be relabelled"
3553        );
3554
3555        // Same signal must not fire before the run actually got there.
3556        s.status = RunStatus::Gating;
3557        s.merge = Some(MergeOutcome {
3558            mode: MergeMode::None,
3559            ok: true,
3560            detail: "git merge --no-ff magi/x/A".to_owned(),
3561            empty: false,
3562        });
3563        assert!(
3564            !s.unmerged_by_design(),
3565            "status must actually be Ready, not merely have a stale mode-none merge record"
3566        );
3567    }
3568
3569    #[test]
3570    fn state_round_trips_through_json() {
3571        let s = state();
3572        let body = serde_json::to_string(&s).unwrap();
3573        let back: RunState = serde_json::from_str(&body).unwrap();
3574        assert_eq!(back.id, s.id);
3575        assert_eq!(back.instruction, "add retries");
3576        assert_eq!(back.status, RunStatus::Prep);
3577    }
3578
3579    #[test]
3580    fn a_round_recorded_before_e2e_deferral_existed_still_loads() {
3581        // Exactly the shape a pre-existing `run.json` has for a round: no
3582        // `e2e_deferred`, no `e2e_defer_reason`. Every round used to run e2e
3583        // unconditionally, so the honest reading of an old record's silence
3584        // on this is "it was not deferred" — `false`/`None`, not a load
3585        // failure and not a schema bump (see the `SCHEMA` doc comment: a
3586        // purely additive field whose absence has one unambiguous meaning
3587        // does not need one).
3588        let body = r#"{
3589            "round": 1,
3590            "head": "deadbeef",
3591            "reviews": [],
3592            "e2e": [],
3593            "verify_retried": false,
3594            "fix": null,
3595            "blocking": 0,
3596            "answered": 1,
3597            "expected": 1,
3598            "clean": true
3599        }"#;
3600        let r: ReviewRound = serde_json::from_str(body).expect("an old-shaped round must load");
3601        assert!(!r.e2e_deferred);
3602        assert!(r.e2e_defer_reason.is_none());
3603        assert_eq!(r.e2e_status(), E2eStatus::NotConfigured);
3604    }
3605
3606    #[test]
3607    fn schema_five_state_migrates_old_empty_e2e_and_legacy_verify_budget() {
3608        let mut value = serde_json::to_value(state()).expect("serialize state");
3609        let object = value.as_object_mut().expect("state object");
3610        object.insert("schema".to_owned(), serde_json::json!(5));
3611        let graph = object["config"]["graph"]
3612            .as_object_mut()
3613            .expect("graph object");
3614        graph.insert("timeout_review".to_owned(), serde_json::json!(3600));
3615        graph.remove("timeout_verify");
3616        let review = object["reviews"].as_array_mut().expect("reviews");
3617        review.push(serde_json::json!({
3618            "round": 1, "head": "old", "reviews": [], "e2e": [],
3619            "verify_retried": false, "blocking": 0, "answered": 1,
3620            "expected": 1, "clean": true
3621        }));
3622        let old: RunState = serde_json::from_value(value).expect("schema-5 shape parses");
3623        let migrated = migrate_schema(old).expect("schema 5 migrates");
3624        assert_eq!(migrated.schema, SCHEMA);
3625        assert_eq!(migrated.config.graph.verify_timeout(), 3600);
3626        assert_eq!(migrated.reviews[0].e2e_status(), E2eStatus::NotConfigured);
3627    }
3628
3629    #[test]
3630    fn schema_six_state_with_a_recorded_gate_migrates_to_gate_ran_true() {
3631        let mut value = serde_json::to_value(state()).expect("serialize state");
3632        let object = value.as_object_mut().expect("state object");
3633        object.insert("schema".to_owned(), serde_json::json!(6));
3634        object.insert(
3635            "gate".to_owned(),
3636            serde_json::json!([{
3637                "command": "cargo make check",
3638                "code": 0,
3639                "output_tail": "",
3640                "duration_ms": 0,
3641                "resource_blocked": false
3642            }]),
3643        );
3644        let old: RunState = serde_json::from_value(value).expect("schema-6 shape parses");
3645        let migrated = migrate_schema(old).expect("schema 6 migrates");
3646        assert_eq!(migrated.schema, SCHEMA);
3647        assert!(
3648            migrated.gate_ran,
3649            "a non-empty recorded gate is a real attempt, not an unrun one"
3650        );
3651        assert_eq!(migrated.gate_status(), GateStatus::Passed);
3652    }
3653
3654    #[test]
3655    fn schema_six_state_with_an_empty_gate_migrates_to_gate_ran_false_and_is_retried() {
3656        // The exact shape of the stuck `shoka` run this schema bump fixes:
3657        // `verify.gate` empty, `gate` empty, schema 6. It must come back as
3658        // "not yet run" so the next `gate()` call re-attempts it — and for a
3659        // repo with no gate commands configured, that resolves instantly to
3660        // `PassedWithNoCommands` instead of staying stuck forever.
3661        let mut value = serde_json::to_value(state()).expect("serialize state");
3662        let object = value.as_object_mut().expect("state object");
3663        object.insert("schema".to_owned(), serde_json::json!(6));
3664        object.insert("gate".to_owned(), serde_json::json!([]));
3665        let old: RunState = serde_json::from_value(value).expect("schema-6 shape parses");
3666        let migrated = migrate_schema(old).expect("schema 6 migrates");
3667        assert_eq!(migrated.schema, SCHEMA);
3668        assert!(
3669            !migrated.gate_ran,
3670            "an empty gate on schema 6 is ambiguous and must be treated as unrun"
3671        );
3672        assert_eq!(migrated.gate_status(), GateStatus::NotRun);
3673    }
3674
3675    #[test]
3676    fn schema_seven_state_reconstructs_verified_head_for_a_round_that_actually_ran_e2e() {
3677        // Schema 7's main review loop always checked `e2e` against the
3678        // round's own `head` — it just never wrote that into `verified_head`
3679        // unless a catch-up run had checked a *different* commit. Migrating
3680        // to schema 8 restores that always-true fact instead of leaving a
3681        // reader to assume it.
3682        let mut value = serde_json::to_value(state()).expect("serialize state");
3683        let object = value.as_object_mut().expect("state object");
3684        object.insert("schema".to_owned(), serde_json::json!(7));
3685        let reviews = object["reviews"].as_array_mut().expect("reviews");
3686        reviews.push(serde_json::json!({
3687            "round": 1, "head": "deadbeef", "reviews": [],
3688            "e2e": [{
3689                "command": "cargo test", "code": 0, "output_tail": "",
3690                "duration_ms": 0, "resource_blocked": false
3691            }],
3692            "verify_retried": false, "blocking": 0, "answered": 1,
3693            "expected": 1, "clean": true
3694        }));
3695        let old: RunState = serde_json::from_value(value).expect("schema-7 shape parses");
3696        let migrated = migrate_schema(old).expect("schema 7 migrates");
3697        assert_eq!(migrated.schema, SCHEMA);
3698        assert_eq!(
3699            migrated.reviews[0].verified_head.as_deref(),
3700            Some("deadbeef"),
3701            "a schema-7 round's main-loop e2e was always against its own head, even though the \
3702             field never said so"
3703        );
3704        assert!(
3705            migrated.reviews[0].verified_at.is_none(),
3706            "no historical timestamp exists to reconstruct; unknown stays unknown, not a \
3707             guessed 'now'"
3708        );
3709    }
3710
3711    #[test]
3712    fn schema_seven_state_leaves_a_deferred_round_with_no_verified_head() {
3713        let mut value = serde_json::to_value(state()).expect("serialize state");
3714        let object = value.as_object_mut().expect("state object");
3715        object.insert("schema".to_owned(), serde_json::json!(7));
3716        let reviews = object["reviews"].as_array_mut().expect("reviews");
3717        reviews.push(serde_json::json!({
3718            "round": 1, "head": "deadbeef", "reviews": [],
3719            "e2e": [], "e2e_deferred": true,
3720            "verify_retried": false, "blocking": 1, "answered": 1,
3721            "expected": 1, "clean": false
3722        }));
3723        let old: RunState = serde_json::from_value(value).expect("schema-7 shape parses");
3724        let migrated = migrate_schema(old).expect("schema 7 migrates");
3725        assert!(
3726            migrated.reviews[0].verified_head.is_none(),
3727            "a deferred round never ran e2e; there is nothing to reconstruct"
3728        );
3729    }
3730
3731    #[test]
3732    fn origin_round_trips_through_the_run_state() {
3733        let mut s = state();
3734        s.origin = Some(Origin::from_agent_env(
3735            Some(("4a7b".to_owned(), "chat".to_owned())),
3736            Some("20260930-092817-4f6f".to_owned()),
3737        ));
3738        let back: RunState =
3739            serde_json::from_str(&serde_json::to_string(&s).unwrap()).expect("parse back");
3740        assert_eq!(back.origin, s.origin);
3741        assert_eq!(
3742            back.origin.as_ref().unwrap().by,
3743            StartedBy::Chat {
3744                talk: "4a7b".to_owned()
3745            }
3746        );
3747        assert_eq!(
3748            origin_label(back.origin.as_ref()),
3749            "chat 4a7b, for task 4f6f"
3750        );
3751    }
3752
3753    #[test]
3754    fn a_schema_twelve_record_without_an_origin_loads_and_reads_as_unknown() {
3755        let mut value = serde_json::to_value(state()).expect("serialize state");
3756        let object = value.as_object_mut().expect("state object");
3757        object.insert("schema".to_owned(), serde_json::json!(12));
3758        object.remove("origin");
3759        let old: RunState = serde_json::from_value(value).expect("schema-12 shape parses");
3760        assert!(old.origin.is_none());
3761        let migrated = migrate_schema(old).expect("schema 12 migrates");
3762        assert_eq!(migrated.schema, SCHEMA);
3763        assert!(
3764            migrated.origin.is_none(),
3765            "an origin nobody recorded is not invented"
3766        );
3767        assert_eq!(
3768            origin_label(migrated.origin.as_ref()),
3769            "origin unknown (started before origins were recorded)"
3770        );
3771    }
3772
3773    #[test]
3774    fn origin_attributes_agents_by_node_and_never_by_guesswork() {
3775        let chat = Origin::from_agent_env(Some(("4a7b".to_owned(), "chat".to_owned())), None);
3776        assert_eq!(
3777            chat.by,
3778            StartedBy::Chat {
3779                talk: "4a7b".into()
3780            }
3781        );
3782        let seat = Origin::from_agent_env(
3783            Some(("20260930-092817-ec34".to_owned(), "implement".to_owned())),
3784            None,
3785        );
3786        assert_eq!(seat.label(), "implement@ec34");
3787        assert_eq!(Origin::from_agent_env(None, None), Origin::operator());
3788        assert_eq!(Origin::operator().label(), "operator");
3789        assert_eq!(Origin::queue("20260930-000000-4f6f").label(), "task 4f6f");
3790        assert_eq!(
3791            Origin::operator()
3792                .serving(Some("20260930-000000-4f6f".to_owned()))
3793                .label(),
3794            "operator, for task 4f6f"
3795        );
3796    }
3797
3798    #[test]
3799    fn schema_six_serialization_is_rejected_by_a_schema_five_reader() {
3800        let body = serde_json::to_value(state()).expect("serialize state");
3801        assert_eq!(body["schema"], serde_json::json!(SCHEMA));
3802        assert_ne!(body["schema"], serde_json::json!(5));
3803    }
3804
3805    #[test]
3806    fn seat_started_and_finished_track_who_has_not_answered_yet() {
3807        let mut s = state();
3808        s.seat_started("judge", "judge-1", std::time::Duration::from_secs(60), 0);
3809        s.seat_started("judge", "judge-2", std::time::Duration::from_secs(60), 0);
3810        assert_eq!(s.active.len(), 2, "both seats are still out");
3811
3812        s.seat_finished("judge-1");
3813        assert_eq!(
3814            s.active.keys().collect::<Vec<_>>(),
3815            vec!["judge-2"],
3816            "only the seat that answered drops out; judge-2 is still waited on"
3817        );
3818    }
3819
3820    /// `seats_active` / `tasks_active` are the accessors report/web read
3821    /// instead of `active` directly, so neither ever counts the other kind of
3822    /// entry as a seat — a `verify.e2e` task must never inflate a quorum or
3823    /// seat count, and a seat must never show up in a task listing.
3824    #[test]
3825    fn seats_active_and_tasks_active_never_cross_over() {
3826        let mut s = state();
3827        s.seat_started("judge", "judge-1", std::time::Duration::from_secs(60), 0);
3828        s.task_command(
3829            "e2e",
3830            "verify",
3831            0,
3832            "cargo test",
3833            1,
3834            2,
3835            std::time::Duration::from_secs(600),
3836        );
3837
3838        assert_eq!(
3839            s.seats_active()
3840                .map(|(k, _)| k.as_str())
3841                .collect::<Vec<_>>(),
3842            vec!["judge-1"]
3843        );
3844        assert_eq!(
3845            s.tasks_active()
3846                .map(|(k, _)| k.as_str())
3847                .collect::<Vec<_>>(),
3848            vec!["e2e"]
3849        );
3850
3851        // A command boundary updates the same entry in place — still one
3852        // task, never a second one accumulating alongside it.
3853        s.task_command(
3854            "e2e",
3855            "verify",
3856            0,
3857            "cargo clippy",
3858            2,
3859            2,
3860            std::time::Duration::from_secs(600),
3861        );
3862        assert_eq!(s.tasks_active().count(), 1);
3863        assert_eq!(s.active["e2e"].command.as_deref(), Some("cargo clippy"));
3864
3865        s.task_finished("e2e");
3866        assert!(s.tasks_active().next().is_none());
3867        assert_eq!(
3868            s.seats_active()
3869                .map(|(k, _)| k.as_str())
3870                .collect::<Vec<_>>(),
3871            vec!["judge-1"],
3872            "clearing the task must not touch the seat entry"
3873        );
3874    }
3875
3876    #[test]
3877    fn a_retry_is_recorded_as_a_later_attempt_on_the_same_seat() {
3878        let mut s = state();
3879        s.seat_started("review", "review-2", std::time::Duration::from_secs(30), 0);
3880        s.seat_finished("review-2");
3881        // A nudge re-asks the same seat; attempt says this is not the first
3882        // time, which is the only trace a nudge otherwise leaves behind.
3883        s.seat_started("review", "review-2", std::time::Duration::from_secs(30), 1);
3884        assert_eq!(s.active["review-2"].attempt, 1);
3885    }
3886
3887    #[test]
3888    fn active_seat_reports_elapsed_and_remaining_time() {
3889        let now = Timestamp::now();
3890        let started = now - jiff::SignedDuration::from_secs(30);
3891        let seat = ActiveSeat {
3892            node: "judge".to_owned(),
3893            started_at: started,
3894            timeout_secs: 100,
3895            attempt: 0,
3896            task: None,
3897            command: None,
3898            index: None,
3899            total: None,
3900        };
3901        assert_eq!(seat.elapsed_secs(now), 30);
3902        assert_eq!(seat.remaining_secs(now), 70);
3903    }
3904
3905    #[test]
3906    fn remaining_time_never_goes_negative_past_the_timeout() {
3907        // `agy`'s own print-timeout occasionally overruns by a hair before the
3908        // kill lands; a naive subtraction would print a negative "time left".
3909        let now = Timestamp::now();
3910        let started = now - jiff::SignedDuration::from_secs(200);
3911        let seat = ActiveSeat {
3912            node: "implement".to_owned(),
3913            started_at: started,
3914            timeout_secs: 100,
3915            attempt: 1,
3916            task: None,
3917            command: None,
3918            index: None,
3919            total: None,
3920        };
3921        assert_eq!(seat.remaining_secs(now), 0);
3922    }
3923
3924    #[test]
3925    fn clear_active_drops_stale_seats_and_reports_whether_it_did() {
3926        let mut s = state();
3927        assert!(!s.clear_active(), "nothing to clear on a fresh run");
3928        s.seat_started(
3929            "implement",
3930            "impl-B",
3931            std::time::Duration::from_secs(3600),
3932            0,
3933        );
3934        assert!(s.clear_active(), "a leftover entry is reported as cleared");
3935        assert!(s.active.is_empty());
3936    }
3937
3938    #[test]
3939    fn active_seat_carries_nothing_that_could_be_read_as_output_bytes() {
3940        // `agy` prints exactly one JSON object, at the very end (see
3941        // `agent::dropped_stream`'s doc comment) — a seat can sit at zero
3942        // captured bytes for its whole timeout while working normally. So
3943        // `ActiveSeat` records only the wall-clock facts (when it started,
3944        // its budget, which attempt), never a byte count, which is what
3945        // keeps a reader from being able to build "0 bytes => dead" out of
3946        // it even by accident.
3947        let seat = ActiveSeat {
3948            node: "implement".to_owned(),
3949            started_at: Timestamp::now(),
3950            timeout_secs: 60,
3951            attempt: 0,
3952            task: None,
3953            command: None,
3954            index: None,
3955            total: None,
3956        };
3957        let value = serde_json::to_value(&seat).unwrap();
3958        let keys: std::collections::BTreeSet<String> =
3959            value.as_object().unwrap().keys().cloned().collect();
3960        assert_eq!(
3961            keys,
3962            std::collections::BTreeSet::from([
3963                "node".to_owned(),
3964                "started_at".to_owned(),
3965                "timeout_secs".to_owned(),
3966                "attempt".to_owned(),
3967            ]),
3968            "a byte count here would be a lever to declare a silent-but-healthy seat dead, and \
3969             the task-only fields must stay absent (not null) on an ordinary seat entry"
3970        );
3971    }
3972
3973    /// The same guarantee as
3974    /// [`active_seat_carries_nothing_that_could_be_read_as_output_bytes`],
3975    /// extended to a task entry: `verify.e2e` / `verify.gate` are exactly as
3976    /// silent as `agy` between commands, so a running command-list task must
3977    /// never carry anything a reader could mistake for output-byte evidence
3978    /// either.
3979    #[test]
3980    fn task_active_seat_carries_nothing_that_could_be_read_as_output_bytes() {
3981        let seat = ActiveSeat {
3982            node: "verify".to_owned(),
3983            started_at: Timestamp::now(),
3984            timeout_secs: 600,
3985            attempt: 0,
3986            task: Some("e2e".to_owned()),
3987            command: Some("cargo test".to_owned()),
3988            index: Some(1),
3989            total: Some(3),
3990        };
3991        let value = serde_json::to_value(&seat).unwrap();
3992        let keys: std::collections::BTreeSet<String> =
3993            value.as_object().unwrap().keys().cloned().collect();
3994        assert_eq!(
3995            keys,
3996            std::collections::BTreeSet::from([
3997                "node".to_owned(),
3998                "started_at".to_owned(),
3999                "timeout_secs".to_owned(),
4000                "attempt".to_owned(),
4001                "task".to_owned(),
4002                "command".to_owned(),
4003                "index".to_owned(),
4004                "total".to_owned(),
4005            ]),
4006        );
4007    }
4008
4009    #[test]
4010    fn an_old_run_json_without_active_seats_still_loads() {
4011        // Schema did not bump for this field: an already-written run.json
4012        // simply lacks the key, and `#[serde(default)]` must fill it in
4013        // rather than fail the whole read.
4014        let s = state();
4015        let mut value = serde_json::to_value(&s).unwrap();
4016        value.as_object_mut().unwrap().remove("active");
4017        let back: RunState = serde_json::from_value(value).unwrap();
4018        assert!(back.active.is_empty());
4019        assert_eq!(back.schema, SCHEMA);
4020    }
4021
4022    #[test]
4023    fn an_old_run_json_without_jobs_still_loads() {
4024        // No schema bump for this field either, for the same reason: an
4025        // empty `jobs` list on an old record means exactly what it always
4026        // meant for that record — no adapter existed yet to report one —
4027        // and `#[serde(default)]` fills it in rather than failing the read.
4028        let s = state();
4029        let mut value = serde_json::to_value(&s).unwrap();
4030        value.as_object_mut().unwrap().remove("jobs");
4031        let back: RunState = serde_json::from_value(value).unwrap();
4032        assert!(back.jobs.is_empty());
4033        assert_eq!(back.schema, SCHEMA);
4034    }
4035
4036    #[test]
4037    fn ensure_can_delete_guards_live_and_unfolded_runs() {
4038        let mut s = state();
4039        // 1. A daemon is working on it right now.
4040        s.status = RunStatus::Prep;
4041        let err = s.ensure_can_delete(true).unwrap_err().to_string();
4042        assert!(err.contains("live daemon"), "{err}");
4043
4044        // 2. The same unfinished run with no daemon behind it is a leftover
4045        // from a killed process, and deletable. Without this an interrupted
4046        // run could never be removed: its status stays `prep` forever.
4047        assert!(s.ensure_can_delete(false).is_ok());
4048
4049        // 3. Unfolded candidates are refused either way — that is the guard
4050        // that stops a delete from discarding a worktree.
4051        s.status = RunStatus::Merged;
4052        s.candidates.push(Candidate {
4053            index: 0,
4054            label: 'A',
4055            agent: "a".to_owned(),
4056            branch: "b".to_owned(),
4057            worktree: PathBuf::from("/w"),
4058            summary: String::new(),
4059            stat: String::new(),
4060            files: 1,
4061            commits: 1,
4062            empty: false,
4063            failed: None,
4064            verified_noop: None,
4065            duration_ms: 0,
4066            folded: false,
4067        });
4068        let err = s.ensure_can_delete(false).unwrap_err().to_string();
4069        assert!(
4070            err.contains("magi fold"),
4071            "error must suggest `magi fold`: {err}"
4072        );
4073
4074        // 4. Folded and nobody working on it.
4075        s.candidates[0].folded = true;
4076        assert!(s.ensure_can_delete(false).is_ok());
4077    }
4078}