lex_vcs/attestation.rs
1//! Persistent evidence about a stage (#132).
2//!
3//! [`Operation`](crate::Operation) records *what* changed.
4//! [`Intent`](crate::Intent) records *why*. An [`Attestation`] records
5//! *what we know about the result*: did this stage typecheck, did its
6//! examples pass, did a spec prove it, did `lex agent-tool` run it
7//! cleanly under a sandbox.
8//!
9//! Today every verification (`lex check`, `lex agent-tool --spec ...`,
10//! `lex audit --effect ...`) runs, prints a verdict, and exits. The
11//! evidence is ephemeral — there's no persistent answer to "has this
12//! stage ever been spec-checked?" beyond rerunning. That makes
13//! attestations useless as a CI gate and useless as a trust signal
14//! across sessions.
15//!
16//! This module is the foundational data layer for tier-2's evidence
17//! story. Producers (`lex check` emits `TypeCheck`, `lex agent-tool`
18//! emits `Spec` / `Examples` / `DiffBody` / `SandboxRun`) and
19//! consumers (`lex blame --with-evidence`, `GET /v1/stage/<id>/
20//! attestations`) wire to it in subsequent slices.
21//!
22//! # Identity
23//!
24//! [`AttestationId`] is the lowercase-hex SHA-256 of the canonical
25//! form of `(stage_id, op_id, intent_id, kind, result, produced_by)`.
26//! `cost`, `timestamp`, and `signature` are deliberately *not* in the
27//! hash so two independent runs of the same logical verification —
28//! same stage, same kind, same producer, same outcome — produce the
29//! same `attestation_id`. This is the dedup property the issue calls
30//! out: harnesses can ask "has this exact verification been done?"
31//! by checking for the id without rerunning.
32//!
33//! # Storage
34//!
35//! ```text
36//! <root>/attestations/<AttestationId>.json
37//! <root>/attestations/by-stage/<StageId>/<AttestationId>
38//! ```
39//!
40//! The primary file under `attestations/` is the source of truth.
41//! `by-stage/` is a per-stage index — empty marker files whose names
42//! point at the primary record. Rebuildable from primary records on
43//! demand; we write it eagerly so `lex stage <id> --attestations` is
44//! a directory listing rather than a full scan.
45//!
46//! `by-spec/` (mentioned in the issue) is deferred until a producer
47//! actually emits `Spec` attestations against persisted spec ids.
48//!
49//! # Trust model
50//!
51//! Attestations are claims, not proofs. The store doesn't trust
52//! attestations from outside — it just stores them. A maintainer
53//! choosing to skip CI for a stage that already has a passing spec
54//! attestation from a known producer is a *policy* decision, not a
55//! guarantee the store enforces. The optional Ed25519 signature
56//! field exists so an attestation can be cryptographically tied to
57//! a producer (e.g. a CI runner's public key) and the policy
58//! decision auditable. Verifying signatures is out of scope for the
59//! data layer.
60
61use serde::{Deserialize, Serialize};
62use std::collections::BTreeSet;
63use std::fs;
64use std::io::{self, Write};
65use std::path::{Path, PathBuf};
66use std::time::{SystemTime, UNIX_EPOCH};
67
68use crate::canonical;
69use crate::intent::IntentId;
70use crate::operation::{OpId, StageId};
71
72/// Content-addressed identity of an attestation. Lowercase-hex
73/// SHA-256 of the canonical form of
74/// `(stage_id, op_id, intent_id, kind, result, produced_by)`.
75pub type AttestationId = String;
76
77/// Reference to a spec file. Free-form string so callers can use
78/// either a content hash or a logical name; the data layer doesn't
79/// care which. Producers should pick one and stick with it for
80/// dedup to work as expected.
81pub type SpecId = String;
82
83/// Content hash of a file (examples list, body source, etc.). Kept
84/// as a string for the same reason as [`OpId`]: we want this crate
85/// to have no view into the hash function used by callers.
86pub type ContentHash = String;
87
88/// The decision a [`AttestationKind::Review`] carries (#836 G4).
89#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
90#[serde(rename_all = "snake_case")]
91pub enum ReviewVerdict {
92 /// This candidate should win / this stage is good to promote.
93 Approve,
94 /// This candidate should not win / this stage should not advance.
95 Reject,
96 /// Not a veto, but changes are wanted before it advances.
97 RequestChanges,
98}
99
100/// What was verified. The variants mirror the verdict surfaces
101/// `lex agent-tool` and the store-write gate already produce.
102#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
103#[serde(tag = "kind", rename_all = "snake_case")]
104pub enum AttestationKind {
105 /// `lex agent-tool --examples FILE` — body was run against
106 /// `{input, expected}` pairs.
107 Examples {
108 file_hash: ContentHash,
109 count: usize,
110 },
111 /// `lex spec check` or `lex agent-tool --spec FILE` — a
112 /// behavioral contract was checked against the body.
113 Spec {
114 spec_id: SpecId,
115 method: SpecMethod,
116 #[serde(default, skip_serializing_if = "Option::is_none")]
117 trials: Option<usize>,
118 },
119 /// `lex agent-tool --diff-body 'src'` — a second body was run on
120 /// the same inputs and the outputs compared.
121 DiffBody {
122 other_body_hash: ContentHash,
123 input_count: usize,
124 },
125 /// A structured review verdict on a stage — closes the
126 /// Candidate->Promote gap (#836 G4): the path from a `Candidate`
127 /// to a `Promote` otherwise carries no recorded reason. An agent
128 /// or human records why a candidate should (or shouldn't) win the
129 /// bake-off, addressable at the candidate's stage like any other
130 /// attestation. `Approve`/`Reject`/`RequestChanges` also map onto
131 /// the `result` field (Passed/Failed/Inconclusive) so existing
132 /// result-based tooling reads it sensibly.
133 Review {
134 reviewer: String,
135 verdict: ReviewVerdict,
136 #[serde(default, skip_serializing_if = "Option::is_none")]
137 notes: Option<String>,
138 },
139 /// A typed issue's declared acceptance was evaluated at a head (#949
140 /// phase 2) — the definition of done as code. Keyed by the *issue id*
141 /// (as the attestation's stage subject) so "is issue X done?" is a
142 /// lookup, not a judgment. `result` carries the verdict: `Passed` when
143 /// the oracle holds, `Failed` with what didn't, `Inconclusive` when the
144 /// shape isn't machine-evaluable here (free-form is human-closed; the
145 /// metric/evidence oracles land later). Never recorded as passed for a
146 /// shape the gate could not actually check.
147 IssueVerified {
148 issue_id: String,
149 shape: String,
150 },
151 /// Emitted by the store-write gate (#130) on every accepted op.
152 /// The store can answer "the HEAD typechecks" as a queryable
153 /// fact rather than an implicit invariant.
154 TypeCheck,
155 /// Emitted by `lex audit --effect K` when no violations are
156 /// found. Useful as a trust signal that a stage was checked
157 /// against a specific effect-policy revision.
158 EffectAudit,
159 /// Emitted by `lex agent-tool` on a successful sandboxed run.
160 /// `effects` is the set the sandbox actually allowed; useful for
161 /// answering "did this code run under fs_write?" after the fact.
162 SandboxRun {
163 effects: BTreeSet<String>,
164 },
165 /// Human-issued override (lex-tea v3, #172). Records that a
166 /// human took an action that bypassed an automatic verdict
167 /// — e.g. activating a stage despite a `Spec::Failed` or
168 /// `TypeCheck::Failed` attestation. Subject to the same
169 /// trust trail as agent attestations: the audit fact lives
170 /// in the log alongside what it overrode.
171 ///
172 /// `actor` is the human's identifier (today: `LEX_TEA_USER`
173 /// env var or `--actor` flag; v3b adds session auth).
174 /// `target_attestation_id` points at the attestation being
175 /// overridden, when one exists; for unconditional pins
176 /// (e.g. activate-by-default) it can be `None`.
177 Override {
178 actor: String,
179 reason: String,
180 #[serde(default, skip_serializing_if = "Option::is_none")]
181 target_attestation_id: Option<AttestationId>,
182 },
183 /// `lex stage defer` (lex-tea v3b, #172). Records that a human
184 /// looked at the stage and chose to revisit it later. No state
185 /// change — purely an audit/triage signal so dashboards and AI
186 /// reviewers can see "this isn't abandoned, it's snoozed."
187 Defer {
188 actor: String,
189 reason: String,
190 },
191 /// `lex stage block` (lex-tea v3b, #172). Records that a human
192 /// has decided this stage should not activate. `lex stage pin`
193 /// and any other activation path consults the attestation log
194 /// and refuses while a Block is the latest decision for the
195 /// stage. Reversed by [`AttestationKind::Unblock`].
196 Block {
197 actor: String,
198 reason: String,
199 },
200 /// `lex stage unblock` (lex-tea v3b, #172). Counterpart to
201 /// [`AttestationKind::Block`]. The attestation log is append-
202 /// only, so we encode "block lifted" as a separate, later fact
203 /// rather than mutating the original block.
204 Unblock {
205 actor: String,
206 reason: String,
207 },
208 /// `lex run --trace` finalized a [`lex_trace::TraceTree`] (#246).
209 /// Links the trace blob to the stage that was the run's entry
210 /// point. The trace itself stays at
211 /// `<store>/traces/<run_id>/trace.json` (per
212 /// `docs/design/trace-vs-vcs.md`); this attestation is the
213 /// audit-side hook so `lex attest filter --kind trace` and
214 /// cross-store sync can reason about runs without copying the
215 /// trace bytes.
216 ///
217 /// `root_target` is the entry function's `SigId` — the call site
218 /// the user (or agent) typed on the command line. Distinct from
219 /// `Attestation::stage_id`, which records the *content-addressed*
220 /// stage the entry function resolved to; the same `root_target`
221 /// across multiple body edits surfaces as multiple
222 /// `(stage_id, root_target)` rows in the attestation log.
223 Trace {
224 run_id: TraceRunId,
225 root_target: super::operation::SigId,
226 },
227 /// Retroactive producer quarantine (#248). Declares "as of
228 /// `blocked_at`, attestations produced by `tool_id` are no
229 /// longer trusted; the branch advance gate must refuse to move
230 /// past any op whose attestations were produced by this tool
231 /// at or after `blocked_at`."
232 ///
233 /// Distinct from `policy.json`'s `blocked_producers` (#181):
234 /// that is a *forward-going* read-time tag for the activity
235 /// feed; this is a write-time gate on branch advance, retro-
236 /// active to a specific timestamp. The two compose cleanly —
237 /// `blocked_producers` filters what reviewers see; `ProducerBlock`
238 /// stops a compromised tool's history from being promoted past
239 /// a known-bad point.
240 ///
241 /// Stored at the attestation log under `stage_id == tool_id`
242 /// so the by-stage index doubles as a by-tool lookup for these
243 /// records — no schema break, no separate index needed.
244 /// `Attestation::stage_id` carries the `tool_id` for these
245 /// records; the variant payload duplicates it for clarity in
246 /// the JSON.
247 ProducerBlock {
248 tool_id: String,
249 reason: String,
250 blocked_at: u64,
251 },
252 /// Counterpart to [`AttestationKind::ProducerBlock`] (#248). The
253 /// attestation log is append-only, so revoking a producer block
254 /// is a separate, later fact rather than a delete. The branch
255 /// advance gate honors the most recent verdict for each
256 /// `tool_id` by timestamp.
257 ProducerUnblock {
258 tool_id: String,
259 reason: String,
260 unblocked_at: u64,
261 },
262 /// Auto-emitted by `Store::apply_operation_checked` when an op
263 /// is rejected for `TypeError` (#281). Records the failed op's
264 /// id, the structured type-error envelope, and an optional
265 /// suggested-transform payload (left empty by the gate; the
266 /// `lex repair --apply` flow populates it via LLM call). The
267 /// hint is attached to the candidate stage that didn't
268 /// typecheck, so `lex_vcs::AttestationLog::list_for_stage`
269 /// surfaces it on the next read.
270 ///
271 /// Schema: `errors` and `suggested_transform` are
272 /// `serde_json::Value` to keep this crate independent of
273 /// `lex-types::TypeError` (which lives downstream) and to let
274 /// the slice-2 LLM integration ship without a schema bump.
275 RepairHint {
276 failed_op_id: super::operation::OpId,
277 errors: serde_json::Value,
278 #[serde(default, skip_serializing_if = "Option::is_none")]
279 suggested_transform: Option<serde_json::Value>,
280 },
281 /// Records one iteration of `lex repair --apply` (#281). The
282 /// repair loop emits a chain of `RepairAttempt`s — one per
283 /// applied transform — so the audit trail walks the agent's
284 /// fix progression.
285 RepairAttempt {
286 hint_id: super::operation::OpId,
287 /// Outcome tag: `passed` / `failed` / `skipped`.
288 outcome: String,
289 #[serde(default, skip_serializing_if = "Option::is_none")]
290 applied_op_id: Option<super::operation::OpId>,
291 },
292 /// Positive trust signal for a producer (#293). Complement to
293 /// [`Self::ProducerBlock`]. Computed from a producer's recent
294 /// history of (passed, failed, inconclusive) attestations;
295 /// not manually set. `score_thousandths` is in `[0, 1000]`
296 /// (representing `0.0 .. 1.0`); fixed-point because
297 /// `AttestationKind` is `Eq` for content-addressed hashing,
298 /// which `f64` doesn't implement. Consumers (the
299 /// `required_attestations` gate) may waive a requirement
300 /// when the latest score for a tool exceeds a configured
301 /// threshold in `policy.required_attestations[].skip_if_producer_trust_thousandths_above`.
302 ///
303 /// Refuses to grant trust to a tool with an active
304 /// `ProducerBlock` (the hard veto wins).
305 ///
306 /// Stored under `stage_id == tool_id` so the by-stage index
307 /// doubles as a per-tool lookup — same trick `ProducerBlock`
308 /// uses.
309 ProducerTrust {
310 tool_id: String,
311 /// Score × 1000, clamped to `[0, 1000]`. Derived from
312 /// `passed / (passed + failed + inconclusive)` over the
313 /// last `window` attestations from this tool.
314 score_thousandths: u32,
315 /// Free-form reference to the evidence corpus the score
316 /// was derived from — e.g. "window=1000 as of <head_op>".
317 evidence: String,
318 granted_by: String,
319 },
320 /// Records that the `required_attestations` gate waived a
321 /// requirement because the producer's `ProducerTrust` score
322 /// exceeded the configured threshold (#293). Audit signal —
323 /// not load-bearing for gate decisions, but ensures every
324 /// skip is recoverable from the attestation log.
325 TrustWaived {
326 /// Tool whose trust score caused the waiver.
327 producer: String,
328 /// Latest score (× 1000) consulted at gate time.
329 score_thousandths: u32,
330 /// Threshold (× 1000) from the policy rule.
331 threshold_thousandths: u32,
332 /// Which required-attestation kind tag was skipped
333 /// (e.g. `spec`, `type_check`).
334 kind_tag: String,
335 },
336 /// A capsule installed cleanly under lex-os (lex-os#36 / #38).
337 /// Promotes the tamper-evident `CapsuleInstalled` record from a
338 /// `lex-os capsule install --audit-out` log into a durable,
339 /// content-addressed attestation, via `lex attest import-install`.
340 ///
341 /// In the capsule distribution model the publisher's signing key
342 /// *is* the producer identity, so these records are stored under
343 /// `stage_id == signer` **and** carry `produced_by.tool == signer`
344 /// — the same convention `ProducerBlock` / `ProducerTrust` use.
345 /// That makes a publisher's install track record feed
346 /// `recompute_producer_trust` (which scores `produced_by.tool`)
347 /// and, through it, the trusted-keys keyring that `capsule install
348 /// --trusted-keys` consumes. The loop closes: install → attestation
349 /// → earned trust → keyring → next install.
350 CapsuleInstall {
351 /// `name@version` label of the installed artifact.
352 artifact: String,
353 /// Hex SHA-256 of the published archive bytes — the
354 /// publish-time identity of exactly which bytes installed.
355 /// Empty when imported from a pre-content-hash audit log.
356 content_hash: ContentHash,
357 /// The publisher's Ed25519 public key (hex): the verified
358 /// signer of the capability contract. Duplicated from
359 /// `stage_id` / `produced_by.tool` for clarity in the JSON.
360 signer: String,
361 /// The grant the box actually ran at — `meet(consumer,
362 /// requires)`, pretty-printed.
363 effective_grant: String,
364 },
365 /// A plan-shaped decision a capability gate reached, promoted into
366 /// durable evidence by `lex attest import-apply` (#790).
367 ///
368 /// Two gates emit this fact today — `lex-iac` between `terraform
369 /// plan` and `terraform apply`, and `lex-k8s` at Kubernetes
370 /// admission — and both emit the *same* fact: a plan-shaped
371 /// artifact, checked against a manifest, decided under a signer.
372 /// The name is deliberately generic. An `InfraApply` variant would
373 /// have pushed the Kubernetes gate into minting a near-duplicate,
374 /// and a duplicate discriminant splits one producer's track record
375 /// across two kinds. Whatever differs between the gates lives in
376 /// the `gate` and `subject` fields, which are payload rather than
377 /// identity-by-variant.
378 ///
379 /// Stored under `stage_id == signer` **and** `produced_by.tool ==
380 /// signer`, the convention [`Self::CapsuleInstall`] /
381 /// [`Self::ProducerBlock`] / [`Self::ProducerTrust`] use — get it
382 /// wrong and `recompute_producer_trust`, which scores
383 /// `produced_by.tool`, silently never sees these records.
384 ///
385 /// # Refusals are part of the record
386 ///
387 /// [`AttestationResult`] carries the verdict, so a refused decision
388 /// is this same kind with `Failed { detail }`. That is not an
389 /// afterthought: producer trust is `passed / (passed + failed)`, so
390 /// a corpus of acceptances only would score every submitter 1.0 and
391 /// mean nothing. A submitter loses trust by having its refusals on
392 /// the record next to its acceptances.
393 PlanApply {
394 /// Which gate decided — `terraform`, `kubernetes`, … Free-form,
395 /// and in the payload rather than the discriminant so a third
396 /// gate needs no schema change here.
397 gate: String,
398 /// What was decided about, in the gate's own vocabulary: a
399 /// workspace, a namespaced pod name. Human-facing; may be empty
400 /// when the gate names nothing.
401 subject: String,
402 /// Hex SHA-256 of the artifact's bytes — the plan or spec the
403 /// decision was actually reached about. Load-bearing: an
404 /// acceptance authorises *these* bytes, so a substituted plan
405 /// must not match. Never empty; the importer refuses an event
406 /// without it rather than minting evidence that matches
407 /// anything.
408 artifact_sha256: ContentHash,
409 /// The identity the decision was made under — a CI pipeline
410 /// key, a ServiceAccount, an agent key. Duplicated from
411 /// `stage_id` / `produced_by.tool` for clarity in the JSON.
412 signer: String,
413 /// The manifest the artifact was checked against: the ceiling
414 /// in force at decision time.
415 manifest: String,
416 },
417 /// Replay-as-verification (#836 G3): the recorded [`Intent`] behind
418 /// an op was re-run against the op's parent state, and the
419 /// regenerated stage compared to the recorded one. Makes the
420 /// reproducibility claim concrete — "can this change be regenerated
421 /// from its recorded cause". Addressed to the op's recorded stage;
422 /// `result` maps `reproduced` onto Passed/Failed so result-based
423 /// tooling reads it. The model call itself is external (the agent
424 /// harness regenerates and hands back a candidate); this attestation
425 /// records the deterministic comparison lex performed.
426 ///
427 /// [`Intent`]: crate::Intent
428 Replay {
429 /// The stage id the op recorded producing — what a faithful
430 /// regeneration should reproduce.
431 expected_stage_id: super::operation::StageId,
432 /// The stage id the regeneration actually produced, or `None`
433 /// when the regenerator returned nothing / a non-matching sig.
434 #[serde(default, skip_serializing_if = "Option::is_none")]
435 produced_stage_id: Option<super::operation::StageId>,
436 /// Whether the regeneration reproduced the recorded change — by
437 /// exact stage-id match, or (see `behavioral_samples`) behaviorally.
438 reproduced: bool,
439 /// When reproduction was established *behaviorally* rather than by
440 /// exact stage-id match — the regenerated function returned the same
441 /// value as the recorded one over this many sampled inputs (#836
442 /// follow-up). `None` for an exact match (the stronger claim:
443 /// `produced_stage_id == expected_stage_id`) or a genuine miss.
444 /// Distinguishes "the same function, written differently" from
445 /// "byte-identical" without conflating them.
446 #[serde(default, skip_serializing_if = "Option::is_none")]
447 behavioral_samples: Option<usize>,
448 /// The model the recorded intent named, for audit (`None` when
449 /// the op carried no intent or the intent no model).
450 #[serde(default, skip_serializing_if = "Option::is_none")]
451 model: Option<String>,
452 },
453}
454
455/// Walk a tool's `ProducerBlock` / `ProducerUnblock` attestations
456/// and return the active block timestamp, if any (#248). The
457/// attestation log is append-only, so a tool's state is whichever
458/// `ProducerBlock` / `ProducerUnblock` record has the latest
459/// `timestamp`. Returns `Some(blocked_at)` when the latest verdict
460/// is a `ProducerBlock` and `None` when the latest is an unblock or
461/// no verdict exists.
462///
463/// Ties: a `ProducerUnblock` at the same wall-clock second as a
464/// `ProducerBlock` wins, so re-running an unblock immediately after
465/// a block leaves the tool unblocked. Mirrors the tie-breaking in
466/// [`is_stage_blocked`].
467pub fn active_producer_block(
468 attestations: &[Attestation],
469 tool_id: &str,
470) -> Option<u64> {
471 let mut latest: Option<&Attestation> = None;
472 for a in attestations {
473 let matches = match &a.kind {
474 AttestationKind::ProducerBlock { tool_id: tid, .. }
475 | AttestationKind::ProducerUnblock { tool_id: tid, .. } => tid == tool_id,
476 _ => false,
477 };
478 if !matches {
479 continue;
480 }
481 match latest {
482 None => latest = Some(a),
483 Some(prev) if a.timestamp > prev.timestamp => latest = Some(a),
484 Some(prev) if a.timestamp == prev.timestamp
485 && matches!(a.kind, AttestationKind::ProducerUnblock { .. }) =>
486 {
487 latest = Some(a);
488 }
489 _ => {}
490 }
491 }
492 match latest.map(|a| &a.kind) {
493 Some(AttestationKind::ProducerBlock { blocked_at, .. }) => Some(*blocked_at),
494 _ => None,
495 }
496}
497
498/// Stable identifier for a [`lex_trace::TraceTree`]. Mirrors the
499/// `run_id` field on the trace JSON; kept as a `String` so this
500/// crate doesn't pull `lex-trace` in.
501pub type TraceRunId = String;
502
503/// Walk a stage's attestations and return whether the latest
504/// Block/Unblock decision is currently a Block. Used by
505/// activation paths (e.g. `lex stage pin`) to refuse when a
506/// human has signalled the stage shouldn't ship.
507///
508/// "Latest" is defined by `timestamp`, which matches what users
509/// see in `lex stage <id> --attestations`. Ties go to Unblock so
510/// retrying an unblock right after a block (same wall-clock
511/// second) doesn't leave the stage stuck.
512pub fn is_stage_blocked(attestations: &[Attestation]) -> bool {
513 let mut latest: Option<&Attestation> = None;
514 for a in attestations {
515 if !matches!(a.kind, AttestationKind::Block { .. } | AttestationKind::Unblock { .. }) {
516 continue;
517 }
518 match latest {
519 None => latest = Some(a),
520 Some(prev) if a.timestamp > prev.timestamp => latest = Some(a),
521 Some(prev) if a.timestamp == prev.timestamp
522 && matches!(a.kind, AttestationKind::Unblock { .. }) =>
523 {
524 latest = Some(a);
525 }
526 _ => {}
527 }
528 }
529 matches!(latest.map(|a| &a.kind), Some(AttestationKind::Block { .. }))
530}
531
532/// Verification method for [`AttestationKind::Spec`]. Mirrors the
533/// tag the spec checker already uses — kept as a string so the
534/// vcs crate doesn't have to pull `spec-checker` in.
535#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
536#[serde(rename_all = "snake_case")]
537pub enum SpecMethod {
538 /// Exhaustive search; `trials` is unset.
539 Exhaustive,
540 /// Random sampling; `trials` carries the sample count.
541 Random,
542 /// Symbolic execution.
543 Symbolic,
544}
545
546/// Whether the verification succeeded. `Inconclusive` is its own
547/// state because some checkers (e.g. random-sampling spec checks
548/// over an unbounded input space) can pass within their budget
549/// without proving the contract holds in general.
550#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
551#[serde(tag = "result", rename_all = "snake_case")]
552pub enum AttestationResult {
553 Passed,
554 Failed { detail: String },
555 Inconclusive { detail: String },
556}
557
558/// Who produced this attestation. `tool` is the CLI / harness name
559/// (`"lex check"`, `"lex agent-tool"`, `"ci-runner@v3"`). `version`
560/// pins the tool revision so a regression in the producer is
561/// distinguishable from a regression in the code being verified.
562/// `model` is set when an LLM was the proximate producer — for
563/// `--spec`-style runs the harness is the producer; for `lex
564/// agent-tool` the model is, and we want both recorded.
565#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
566pub struct ProducerDescriptor {
567 pub tool: String,
568 pub version: String,
569 #[serde(default, skip_serializing_if = "Option::is_none")]
570 pub model: Option<String>,
571}
572
573/// Optional cost record. Excluded from the attestation hash so
574/// rerunning a verification on a different machine (different
575/// wall-clock, different token pricing) doesn't break dedup.
576#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
577pub struct Cost {
578 #[serde(default, skip_serializing_if = "Option::is_none")]
579 pub tokens_in: Option<u64>,
580 #[serde(default, skip_serializing_if = "Option::is_none")]
581 pub tokens_out: Option<u64>,
582 /// USD cents (avoid floating-point in persisted form).
583 #[serde(default, skip_serializing_if = "Option::is_none")]
584 pub usd_cents: Option<u64>,
585 #[serde(default, skip_serializing_if = "Option::is_none")]
586 pub wall_time_ms: Option<u64>,
587}
588
589/// Optional Ed25519 signature over the attestation hash. Verifying
590/// it is the consumer's job; the data layer just stores the bytes.
591#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
592pub struct Signature {
593 /// Hex-encoded Ed25519 public key.
594 pub public_key: String,
595 /// Hex-encoded signature over the lowercase-hex `attestation_id`.
596 pub signature: String,
597}
598
599/// The persisted attestation. See module docs for what each field
600/// is, what's in the hash, and what isn't.
601#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
602pub struct Attestation {
603 pub attestation_id: AttestationId,
604 pub stage_id: StageId,
605 #[serde(default, skip_serializing_if = "Option::is_none")]
606 pub op_id: Option<OpId>,
607 #[serde(default, skip_serializing_if = "Option::is_none")]
608 pub intent_id: Option<IntentId>,
609 pub kind: AttestationKind,
610 pub result: AttestationResult,
611 pub produced_by: ProducerDescriptor,
612 #[serde(default, skip_serializing_if = "Option::is_none")]
613 pub cost: Option<Cost>,
614 /// Wall-clock seconds since epoch when this attestation was
615 /// produced. Excluded from `attestation_id` so the dedup
616 /// property holds across runs.
617 pub timestamp: u64,
618 #[serde(default, skip_serializing_if = "Option::is_none")]
619 pub signature: Option<Signature>,
620}
621
622impl Attestation {
623 /// Build an attestation against a stage, computing its
624 /// content-addressed id. `timestamp` defaults to the current
625 /// wall clock; pass to [`Attestation::with_timestamp`] in tests.
626 #[allow(clippy::too_many_arguments)]
627 pub fn new(
628 stage_id: impl Into<StageId>,
629 op_id: Option<OpId>,
630 intent_id: Option<IntentId>,
631 kind: AttestationKind,
632 result: AttestationResult,
633 produced_by: ProducerDescriptor,
634 cost: Option<Cost>,
635 ) -> Self {
636 let now = SystemTime::now()
637 .duration_since(UNIX_EPOCH)
638 .map(|d| d.as_secs())
639 .unwrap_or(0);
640 Self::with_timestamp(stage_id, op_id, intent_id, kind, result, produced_by, cost, now)
641 }
642
643 /// Build an attestation with a caller-controlled `timestamp`.
644 /// Used in tests to keep golden hashes stable.
645 #[allow(clippy::too_many_arguments)]
646 pub fn with_timestamp(
647 stage_id: impl Into<StageId>,
648 op_id: Option<OpId>,
649 intent_id: Option<IntentId>,
650 kind: AttestationKind,
651 result: AttestationResult,
652 produced_by: ProducerDescriptor,
653 cost: Option<Cost>,
654 timestamp: u64,
655 ) -> Self {
656 let stage_id = stage_id.into();
657 let attestation_id = compute_attestation_id(
658 &stage_id,
659 op_id.as_deref(),
660 intent_id.as_deref(),
661 &kind,
662 &result,
663 &produced_by,
664 );
665 Self {
666 attestation_id,
667 stage_id,
668 op_id,
669 intent_id,
670 kind,
671 result,
672 produced_by,
673 cost,
674 timestamp,
675 signature: None,
676 }
677 }
678
679 /// Attach a signature. The signature is not part of the hash;
680 /// the same logical attestation produced by an unsigned harness
681 /// dedupes against a signed one. Callers who *want* signature
682 /// to be part of identity should hash signature into the
683 /// `produced_by.tool` string explicitly.
684 pub fn with_signature(mut self, signature: Signature) -> Self {
685 self.signature = Some(signature);
686 self
687 }
688}
689
690fn compute_attestation_id(
691 stage_id: &str,
692 op_id: Option<&str>,
693 intent_id: Option<&str>,
694 kind: &AttestationKind,
695 result: &AttestationResult,
696 produced_by: &ProducerDescriptor,
697) -> AttestationId {
698 let view = CanonicalAttestationView {
699 stage_id,
700 op_id,
701 intent_id,
702 kind,
703 result,
704 produced_by,
705 };
706 canonical::hash(&view)
707}
708
709/// Hashable shadow of [`Attestation`] omitting the fields we
710/// deliberately exclude from identity (`attestation_id`, `cost`,
711/// `timestamp`, `signature`). Lives only as a transient.
712#[derive(Serialize)]
713struct CanonicalAttestationView<'a> {
714 stage_id: &'a str,
715 #[serde(skip_serializing_if = "Option::is_none")]
716 op_id: Option<&'a str>,
717 #[serde(skip_serializing_if = "Option::is_none")]
718 intent_id: Option<&'a str>,
719 kind: &'a AttestationKind,
720 result: &'a AttestationResult,
721 produced_by: &'a ProducerDescriptor,
722}
723
724// ---- Persistence -------------------------------------------------
725
726/// Persistent log of [`Attestation`] records.
727///
728/// Mirrors [`crate::OpLog`] / [`crate::IntentLog`] in shape: one
729/// canonical-JSON file per attestation, atomic writes via tempfile +
730/// rename, idempotent on re-puts. Maintains two secondary indices
731/// for cheap reverse lookups:
732///
733/// * `by-stage/<StageId>/<AttestationId>` — every attestation,
734/// indexed by the stage it records evidence for.
735/// * `by-run/<TraceRunId>/<AttestationId>` (#246) — only
736/// `AttestationKind::Trace` entries are indexed here, so
737/// `list_for_run` is `O(traces of that run)` rather than scanning
738/// the whole log.
739pub struct AttestationLog {
740 dir: PathBuf,
741 by_stage: PathBuf,
742 by_run: PathBuf,
743}
744
745impl AttestationLog {
746 pub fn open(root: &Path) -> io::Result<Self> {
747 let dir = root.join("attestations");
748 let by_stage = dir.join("by-stage");
749 let by_run = dir.join("by-run");
750 fs::create_dir_all(&by_stage)?;
751 fs::create_dir_all(&by_run)?;
752 Ok(Self { dir, by_stage, by_run })
753 }
754
755 fn primary_path(&self, id: &AttestationId) -> PathBuf {
756 self.dir.join(format!("{id}.json"))
757 }
758
759 /// Persist an attestation. Idempotent on existing ids — content
760 /// addressing guarantees the same logical attestation produces
761 /// the same id, so re-putting is a no-op for the primary file.
762 /// The by-stage index is also re-written idempotently.
763 pub fn put(&self, attestation: &Attestation) -> io::Result<()> {
764 let primary = self.primary_path(&attestation.attestation_id);
765 if !primary.exists() {
766 let bytes = serde_json::to_vec(attestation)
767 .map_err(|e| io::Error::new(io::ErrorKind::InvalidData, e))?;
768 let tmp = primary.with_extension("json.tmp");
769 let mut f = fs::File::create(&tmp)?;
770 f.write_all(&bytes)?;
771 f.sync_all()?;
772 fs::rename(&tmp, &primary)?;
773 }
774 // Index entry: empty marker file. Reading the index is a
775 // directory listing; resolving each entry is a primary-file
776 // read by id.
777 let stage_dir = self.by_stage.join(&attestation.stage_id);
778 fs::create_dir_all(&stage_dir)?;
779 let idx = stage_dir.join(&attestation.attestation_id);
780 if !idx.exists() {
781 fs::File::create(&idx)?;
782 }
783 // by-run secondary index for Trace attestations (#246) —
784 // only the variants that carry a `run_id` are indexed; every
785 // other kind skips this directory entirely.
786 if let AttestationKind::Trace { run_id, .. } = &attestation.kind {
787 let run_dir = self.by_run.join(run_id);
788 fs::create_dir_all(&run_dir)?;
789 let idx = run_dir.join(&attestation.attestation_id);
790 if !idx.exists() {
791 fs::File::create(&idx)?;
792 }
793 }
794 Ok(())
795 }
796
797 /// Remove an attestation from the log along with both index
798 /// entries (#258). Idempotent on missing files.
799 ///
800 /// **Not** part of the day-to-day API — the attestation log is
801 /// append-only by design (#132). The only legitimate caller is
802 /// the migration tool, which supervises a destructive,
803 /// `--confirm`-gated batch.
804 pub fn delete(&self, attestation: &Attestation) -> io::Result<()> {
805 let primary = self.primary_path(&attestation.attestation_id);
806 match fs::remove_file(&primary) {
807 Ok(()) | Err(_) => {} // best-effort; missing is fine
808 }
809 let stage_idx = self.by_stage
810 .join(&attestation.stage_id)
811 .join(&attestation.attestation_id);
812 let _ = fs::remove_file(&stage_idx);
813 if let AttestationKind::Trace { run_id, .. } = &attestation.kind {
814 let run_idx = self.by_run.join(run_id).join(&attestation.attestation_id);
815 let _ = fs::remove_file(&run_idx);
816 }
817 Ok(())
818 }
819
820 pub fn get(&self, id: &AttestationId) -> io::Result<Option<Attestation>> {
821 let path = self.primary_path(id);
822 if !path.exists() {
823 return Ok(None);
824 }
825 let bytes = fs::read(&path)?;
826 let attestation: Attestation = serde_json::from_slice(&bytes)
827 .map_err(|e| io::Error::new(io::ErrorKind::InvalidData, e))?;
828 Ok(Some(attestation))
829 }
830
831 /// Enumerate every attestation in the log. Walks
832 /// `<root>/attestations/*.json` directly — no per-stage index
833 /// — so cost is `O(total attestations)`. Used by `lex attest
834 /// filter` for CI / dashboard queries that span stages.
835 /// Order is not stable; callers that need stable ordering
836 /// should sort by `timestamp` or `attestation_id`.
837 pub fn list_all(&self) -> io::Result<Vec<Attestation>> {
838 let mut out = Vec::new();
839 if !self.dir.exists() {
840 return Ok(out);
841 }
842 for entry in fs::read_dir(&self.dir)? {
843 let entry = entry?;
844 let p = entry.path();
845 // Skip the by-stage/ subdir and the .tmp staging files
846 // a crashed put might have left behind.
847 if p.is_dir() {
848 continue;
849 }
850 if p.extension().is_none_or(|e| e != "json") {
851 continue;
852 }
853 let bytes = fs::read(&p)?;
854 // A corrupt primary file shouldn't take down a filter
855 // query — log to stderr and skip.
856 match serde_json::from_slice::<Attestation>(&bytes) {
857 Ok(att) => out.push(att),
858 Err(e) => eprintln!(
859 "warning: skipping unreadable attestation {}: {e}",
860 p.display()
861 ),
862 }
863 }
864 Ok(out)
865 }
866
867 /// Enumerate attestations for a given stage. Order is not
868 /// stable across calls (it follows directory iteration order).
869 /// Callers that need a stable ordering should sort by
870 /// `timestamp` or `attestation_id`.
871 pub fn list_for_stage(&self, stage_id: &StageId) -> io::Result<Vec<Attestation>> {
872 let stage_dir = self.by_stage.join(stage_id);
873 if !stage_dir.exists() {
874 return Ok(Vec::new());
875 }
876 let mut out = Vec::new();
877 for entry in fs::read_dir(&stage_dir)? {
878 let entry = entry?;
879 let id = match entry.file_name().into_string() {
880 Ok(s) => s,
881 Err(_) => continue,
882 };
883 if let Some(att) = self.get(&id)? {
884 out.push(att);
885 }
886 }
887 Ok(out)
888 }
889
890 /// Enumerate `AttestationKind::Trace` entries for a given
891 /// `run_id` (#246). Walks the `by-run/<run_id>/` directory; cost
892 /// is `O(trace attestations for that run)`, typically 1.
893 /// Returns an empty vec if the run has no Trace attestations.
894 /// Order is not stable.
895 pub fn list_for_run(&self, run_id: &TraceRunId) -> io::Result<Vec<Attestation>> {
896 let run_dir = self.by_run.join(run_id);
897 if !run_dir.exists() {
898 return Ok(Vec::new());
899 }
900 let mut out = Vec::new();
901 for entry in fs::read_dir(&run_dir)? {
902 let entry = entry?;
903 let id = match entry.file_name().into_string() {
904 Ok(s) => s,
905 Err(_) => continue,
906 };
907 if let Some(att) = self.get(&id)? {
908 out.push(att);
909 }
910 }
911 Ok(out)
912 }
913}
914
915// ---- Tests --------------------------------------------------------
916
917#[cfg(test)]
918mod tests {
919 use super::*;
920
921 fn ci_runner() -> ProducerDescriptor {
922 ProducerDescriptor {
923 tool: "lex check".into(),
924 version: "0.1.0".into(),
925 model: None,
926 }
927 }
928
929 fn typecheck_passed() -> Attestation {
930 Attestation::with_timestamp(
931 "stage-abc",
932 Some("op-123".into()),
933 None,
934 AttestationKind::TypeCheck,
935 AttestationResult::Passed,
936 ci_runner(),
937 None,
938 1000,
939 )
940 }
941
942 #[test]
943 fn same_logical_verification_hashes_equal() {
944 // Dedup invariant: same stage, same kind, same producer,
945 // same outcome → same `attestation_id` regardless of
946 // wall-clock or cost.
947 let a = typecheck_passed();
948 let b = Attestation::with_timestamp(
949 "stage-abc",
950 Some("op-123".into()),
951 None,
952 AttestationKind::TypeCheck,
953 AttestationResult::Passed,
954 ci_runner(),
955 Some(Cost {
956 tokens_in: Some(0),
957 tokens_out: Some(0),
958 usd_cents: Some(0),
959 wall_time_ms: Some(42),
960 }),
961 99999,
962 );
963 assert_eq!(a.attestation_id, b.attestation_id);
964 }
965
966 #[test]
967 fn different_stages_hash_differently() {
968 let a = typecheck_passed();
969 let b = Attestation::with_timestamp(
970 "stage-XYZ",
971 Some("op-123".into()),
972 None,
973 AttestationKind::TypeCheck,
974 AttestationResult::Passed,
975 ci_runner(),
976 None,
977 1000,
978 );
979 assert_ne!(a.attestation_id, b.attestation_id);
980 }
981
982 #[test]
983 fn different_op_ids_hash_differently() {
984 let a = typecheck_passed();
985 let b = Attestation::with_timestamp(
986 "stage-abc",
987 Some("op-XYZ".into()),
988 None,
989 AttestationKind::TypeCheck,
990 AttestationResult::Passed,
991 ci_runner(),
992 None,
993 1000,
994 );
995 assert_ne!(a.attestation_id, b.attestation_id);
996 }
997
998 #[test]
999 fn different_intents_hash_differently() {
1000 let a = Attestation::with_timestamp(
1001 "stage-abc", None,
1002 Some("intent-A".into()),
1003 AttestationKind::TypeCheck, AttestationResult::Passed,
1004 ci_runner(), None, 1000,
1005 );
1006 let b = Attestation::with_timestamp(
1007 "stage-abc", None,
1008 Some("intent-B".into()),
1009 AttestationKind::TypeCheck, AttestationResult::Passed,
1010 ci_runner(), None, 1000,
1011 );
1012 assert_ne!(a.attestation_id, b.attestation_id);
1013 }
1014
1015 #[test]
1016 fn different_kinds_hash_differently() {
1017 let a = typecheck_passed();
1018 let b = Attestation::with_timestamp(
1019 "stage-abc",
1020 Some("op-123".into()),
1021 None,
1022 AttestationKind::EffectAudit,
1023 AttestationResult::Passed,
1024 ci_runner(),
1025 None,
1026 1000,
1027 );
1028 assert_ne!(a.attestation_id, b.attestation_id);
1029 }
1030
1031 #[test]
1032 fn passed_vs_failed_hash_differently() {
1033 // Critical: a Failed attestation must not collide with a
1034 // Passed one for the same logical verification. Otherwise
1035 // a flaky producer could overwrite the negative evidence
1036 // by re-running and getting Passed.
1037 let a = typecheck_passed();
1038 let b = Attestation::with_timestamp(
1039 "stage-abc",
1040 Some("op-123".into()),
1041 None,
1042 AttestationKind::TypeCheck,
1043 AttestationResult::Failed { detail: "arity mismatch".into() },
1044 ci_runner(),
1045 None,
1046 1000,
1047 );
1048 assert_ne!(a.attestation_id, b.attestation_id);
1049 }
1050
1051 #[test]
1052 fn different_producers_hash_differently() {
1053 let a = typecheck_passed();
1054 let mut other = ci_runner();
1055 other.tool = "third-party-runner".into();
1056 let b = Attestation::with_timestamp(
1057 "stage-abc",
1058 Some("op-123".into()),
1059 None,
1060 AttestationKind::TypeCheck,
1061 AttestationResult::Passed,
1062 other,
1063 None,
1064 1000,
1065 );
1066 assert_ne!(
1067 a.attestation_id, b.attestation_id,
1068 "an attestation from a different producer is a different fact",
1069 );
1070 }
1071
1072 #[test]
1073 fn signature_is_excluded_from_hash() {
1074 // A signed and unsigned attestation of the same logical
1075 // fact must dedupe. Otherwise late-signing a record would
1076 // create two attestations that say the same thing.
1077 let a = typecheck_passed();
1078 let b = typecheck_passed().with_signature(Signature {
1079 public_key: "ed25519:fffe".into(),
1080 signature: "0xabcd".into(),
1081 });
1082 assert_eq!(a.attestation_id, b.attestation_id);
1083 }
1084
1085 #[test]
1086 fn attestation_id_is_64_char_lowercase_hex() {
1087 let a = typecheck_passed();
1088 assert_eq!(a.attestation_id.len(), 64);
1089 assert!(a
1090 .attestation_id
1091 .chars()
1092 .all(|c| c.is_ascii_digit() || ('a'..='f').contains(&c)));
1093 }
1094
1095 #[test]
1096 fn round_trip_through_serde_json() {
1097 let a = Attestation::with_timestamp(
1098 "stage-abc",
1099 Some("op-123".into()),
1100 Some("intent-A".into()),
1101 AttestationKind::Spec {
1102 spec_id: "clamp.spec".into(),
1103 method: SpecMethod::Random,
1104 trials: Some(1000),
1105 },
1106 AttestationResult::Passed,
1107 ProducerDescriptor {
1108 tool: "lex agent-tool".into(),
1109 version: "0.1.0".into(),
1110 model: Some("claude-opus-4-7".into()),
1111 },
1112 Some(Cost {
1113 tokens_in: Some(1234),
1114 tokens_out: Some(567),
1115 usd_cents: Some(2),
1116 wall_time_ms: Some(3400),
1117 }),
1118 99,
1119 )
1120 .with_signature(Signature {
1121 public_key: "ed25519:abc".into(),
1122 signature: "0x1234".into(),
1123 });
1124 let json = serde_json::to_string(&a).unwrap();
1125 let back: Attestation = serde_json::from_str(&json).unwrap();
1126 assert_eq!(a, back);
1127 }
1128
1129 /// Golden hash. If this changes, the canonical form has shifted
1130 /// — every `AttestationId` in every existing store has changed
1131 /// too. Update with care; same protective shape as the
1132 /// `Operation` and `Intent` golden tests.
1133 #[test]
1134 fn canonical_form_is_stable_for_a_known_input() {
1135 let a = Attestation::with_timestamp(
1136 "stage-abc",
1137 Some("op-123".into()),
1138 None,
1139 AttestationKind::TypeCheck,
1140 AttestationResult::Passed,
1141 ProducerDescriptor {
1142 tool: "lex check".into(),
1143 version: "0.1.0".into(),
1144 model: None,
1145 },
1146 None,
1147 0,
1148 );
1149 assert_eq!(
1150 a.attestation_id,
1151 "a4ef921f7bb0db70779c5b698cda1744d49165a4a56aa8414bdbafc85bcbc16b",
1152 "canonical-form regression: the AttestationId for a known input changed",
1153 );
1154 }
1155
1156 // ---- AttestationLog ----
1157
1158 #[test]
1159 fn log_round_trips_through_disk() {
1160 let tmp = tempfile::tempdir().unwrap();
1161 let log = AttestationLog::open(tmp.path()).unwrap();
1162 let a = typecheck_passed();
1163 log.put(&a).unwrap();
1164 let read_back = log.get(&a.attestation_id).unwrap().unwrap();
1165 assert_eq!(a, read_back);
1166 }
1167
1168 #[test]
1169 fn log_get_unknown_returns_none() {
1170 let tmp = tempfile::tempdir().unwrap();
1171 let log = AttestationLog::open(tmp.path()).unwrap();
1172 assert!(log
1173 .get(&"nonexistent".to_string())
1174 .unwrap()
1175 .is_none());
1176 }
1177
1178 #[test]
1179 fn log_put_is_idempotent() {
1180 let tmp = tempfile::tempdir().unwrap();
1181 let log = AttestationLog::open(tmp.path()).unwrap();
1182 let a = typecheck_passed();
1183 log.put(&a).unwrap();
1184 log.put(&a).unwrap();
1185 let read_back = log.get(&a.attestation_id).unwrap().unwrap();
1186 assert_eq!(a, read_back);
1187 }
1188
1189 #[test]
1190 fn list_for_stage_returns_only_that_stage() {
1191 let tmp = tempfile::tempdir().unwrap();
1192 let log = AttestationLog::open(tmp.path()).unwrap();
1193
1194 let on_abc_1 = typecheck_passed();
1195 let on_abc_2 = Attestation::with_timestamp(
1196 "stage-abc",
1197 Some("op-123".into()),
1198 None,
1199 AttestationKind::EffectAudit,
1200 AttestationResult::Passed,
1201 ci_runner(),
1202 None,
1203 2000,
1204 );
1205 let on_xyz = Attestation::with_timestamp(
1206 "stage-xyz",
1207 Some("op-456".into()),
1208 None,
1209 AttestationKind::TypeCheck,
1210 AttestationResult::Passed,
1211 ci_runner(),
1212 None,
1213 1000,
1214 );
1215
1216 log.put(&on_abc_1).unwrap();
1217 log.put(&on_abc_2).unwrap();
1218 log.put(&on_xyz).unwrap();
1219
1220 let mut on_abc = log.list_for_stage(&"stage-abc".to_string()).unwrap();
1221 on_abc.sort_by_key(|a| a.timestamp);
1222 assert_eq!(on_abc.len(), 2);
1223 assert_eq!(on_abc[0], on_abc_1);
1224 assert_eq!(on_abc[1], on_abc_2);
1225
1226 let on_xyz_listed = log.list_for_stage(&"stage-xyz".to_string()).unwrap();
1227 assert_eq!(on_xyz_listed.len(), 1);
1228 assert_eq!(on_xyz_listed[0], on_xyz);
1229 }
1230
1231 #[test]
1232 fn list_for_unknown_stage_is_empty() {
1233 let tmp = tempfile::tempdir().unwrap();
1234 let log = AttestationLog::open(tmp.path()).unwrap();
1235 let v = log.list_for_stage(&"never-attested".to_string()).unwrap();
1236 assert!(v.is_empty());
1237 }
1238
1239 #[test]
1240 fn list_all_returns_every_persisted_attestation() {
1241 // Cross-stage enumeration: `list_all` walks the primary
1242 // directory regardless of stage, so a CI / dashboard query
1243 // can filter across the whole log without iterating the
1244 // by-stage index.
1245 let tmp = tempfile::tempdir().unwrap();
1246 let log = AttestationLog::open(tmp.path()).unwrap();
1247 let on_abc = typecheck_passed();
1248 let on_xyz = Attestation::with_timestamp(
1249 "stage-xyz",
1250 Some("op-456".into()),
1251 None,
1252 AttestationKind::TypeCheck,
1253 AttestationResult::Passed,
1254 ci_runner(),
1255 None,
1256 2000,
1257 );
1258 log.put(&on_abc).unwrap();
1259 log.put(&on_xyz).unwrap();
1260 let mut all = log.list_all().unwrap();
1261 all.sort_by_key(|a| a.attestation_id.clone());
1262 assert_eq!(all.len(), 2);
1263 let ids: BTreeSet<_> = all.iter().map(|a| a.attestation_id.clone()).collect();
1264 assert!(ids.contains(&on_abc.attestation_id));
1265 assert!(ids.contains(&on_xyz.attestation_id));
1266 }
1267
1268 #[test]
1269 fn list_all_on_empty_log_is_empty() {
1270 let tmp = tempfile::tempdir().unwrap();
1271 let log = AttestationLog::open(tmp.path()).unwrap();
1272 let v = log.list_all().unwrap();
1273 assert!(v.is_empty());
1274 }
1275
1276 #[test]
1277 fn passed_and_failed_for_same_stage_both_persist() {
1278 // Failure attestations are evidence too; they must not be
1279 // overwritten by a later passing attestation. The hash
1280 // distinction (tested above) plus the by-stage listing
1281 // should keep both visible.
1282 let tmp = tempfile::tempdir().unwrap();
1283 let log = AttestationLog::open(tmp.path()).unwrap();
1284
1285 let passed = typecheck_passed();
1286 let failed = Attestation::with_timestamp(
1287 "stage-abc",
1288 Some("op-123".into()),
1289 None,
1290 AttestationKind::TypeCheck,
1291 AttestationResult::Failed { detail: "arity mismatch".into() },
1292 ci_runner(),
1293 None,
1294 500,
1295 );
1296
1297 log.put(&failed).unwrap();
1298 log.put(&passed).unwrap();
1299
1300 let listing = log.list_for_stage(&"stage-abc".to_string()).unwrap();
1301 assert_eq!(listing.len(), 2, "both passing and failing evidence must persist");
1302 }
1303
1304 fn human_decision(kind: AttestationKind, ts: u64) -> Attestation {
1305 Attestation::with_timestamp(
1306 "stage-abc",
1307 None, None,
1308 kind,
1309 AttestationResult::Passed,
1310 ProducerDescriptor {
1311 tool: "lex stage".into(),
1312 version: "0.1.0".into(),
1313 model: None,
1314 },
1315 None,
1316 ts,
1317 )
1318 }
1319
1320 #[test]
1321 fn is_stage_blocked_empty_log_is_false() {
1322 assert!(!is_stage_blocked(&[]));
1323 }
1324
1325 #[test]
1326 fn is_stage_blocked_only_unrelated_attestations() {
1327 // TypeCheck/Override attestations don't gate activation —
1328 // only Block/Unblock do.
1329 let attestations = vec![
1330 typecheck_passed(),
1331 human_decision(
1332 AttestationKind::Override {
1333 actor: "alice".into(),
1334 reason: "ship".into(),
1335 target_attestation_id: None,
1336 },
1337 500,
1338 ),
1339 ];
1340 assert!(!is_stage_blocked(&attestations));
1341 }
1342
1343 #[test]
1344 fn is_stage_blocked_block_alone_blocks() {
1345 let attestations = vec![human_decision(
1346 AttestationKind::Block { actor: "alice".into(), reason: "x".into() },
1347 500,
1348 )];
1349 assert!(is_stage_blocked(&attestations));
1350 }
1351
1352 #[test]
1353 fn is_stage_blocked_later_unblock_clears_block() {
1354 let attestations = vec![
1355 human_decision(
1356 AttestationKind::Block { actor: "alice".into(), reason: "x".into() },
1357 500,
1358 ),
1359 human_decision(
1360 AttestationKind::Unblock { actor: "alice".into(), reason: "ok".into() },
1361 600,
1362 ),
1363 ];
1364 assert!(!is_stage_blocked(&attestations));
1365 }
1366
1367 #[test]
1368 fn is_stage_blocked_later_block_re_blocks() {
1369 let attestations = vec![
1370 human_decision(
1371 AttestationKind::Block { actor: "a".into(), reason: "1".into() },
1372 500,
1373 ),
1374 human_decision(
1375 AttestationKind::Unblock { actor: "a".into(), reason: "2".into() },
1376 600,
1377 ),
1378 human_decision(
1379 AttestationKind::Block { actor: "a".into(), reason: "3".into() },
1380 700,
1381 ),
1382 ];
1383 assert!(is_stage_blocked(&attestations));
1384 }
1385
1386 #[test]
1387 fn is_stage_blocked_unblock_wins_at_same_timestamp() {
1388 // Tie-break favours Unblock so a hasty re-attempt at the
1389 // same wall-clock second can't strand the stage.
1390 let attestations = vec![
1391 human_decision(
1392 AttestationKind::Block { actor: "a".into(), reason: "1".into() },
1393 500,
1394 ),
1395 human_decision(
1396 AttestationKind::Unblock { actor: "a".into(), reason: "2".into() },
1397 500,
1398 ),
1399 ];
1400 assert!(!is_stage_blocked(&attestations));
1401 }
1402}