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tatara_process/
receipt.rs

1//! `tatara-receipt/v1` — the typed receipt envelope every pleme-io Job
2//! emits to prove its work was done.
3//!
4//! Today's consumers (and the only ones supported on `tatara-receipt/v1`):
5//! - **closed-loop auth probes** — `kind = "closed-loop-auth"`. Stamps
6//!   that a system's bundled identity issuer authenticated its bundled
7//!   client. The substrate primitive every closed-loop-testable product
8//!   composes (an issuer↔client pair, future: identity providers,
9//!   message brokers, databases that can issue creds to themselves).
10//! - **schema/migration runs** — `kind = "db-migration"`. shinka emits
11//!   one per applied migration; pillars carry the diff hash.
12//! - **test suites** — `kind = "test-suite"`. kenshi-runner et al.
13//! - **nix builds** — `kind = "nix-build"`. Carries the store-path
14//!   pillar as `artifact_hash`.
15//! - Anything else — operators register new `kind` strings; the
16//!   schema is open by design (the *shape* is fixed; the kind is data).
17//!
18//! Lives in `tatara-process` so `ReceiptEnvelope → ProcessAttestation`
19//! is a local typed bridge — the reconciler's verifier and any future
20//! Process consumer share one parse.
21//!
22//! Wire format (snake_case to match the existing ConfigMap payload
23//! shape the closed-loop-probe chart writes):
24//!
25//! ```yaml
26//! version: tatara-receipt/v1
27//! kind: closed-loop-auth
28//! composed_root: <26-char hex>
29//! intent_hash:   <hex>
30//! artifact_hash: <hex>
31//! control_hash:  <hex>
32//! generated_at:  2026-05-19T22:00:00Z
33//! process_ref:   "demo-test/ephemeral-demo"   # optional
34//! evidence:      { ... }                              # optional, free-form
35//! ```
36
37use chrono::{DateTime, Utc};
38use schemars::JsonSchema;
39use serde::{Deserialize, Serialize};
40
41use crate::attestation::ProcessAttestation;
42
43/// Canonical version string. Bump → `tatara-receipt/v2` if the wire
44/// shape changes; parsers refuse anything else for the v1 reader.
45pub const RECEIPT_VERSION: &str = "tatara-receipt/v1";
46
47/// Closed-set typed identifier for the four known [`ReceiptEnvelope::kind`]
48/// strings the substrate emits today — [`Self::ClosedLoopAuth`] →
49/// `"closed-loop-auth"`, [`Self::DbMigration`] → `"db-migration"`,
50/// [`Self::TestSuite`] → `"test-suite"`, [`Self::NixBuild`] →
51/// `"nix-build"` — as a Rust enum, so the (variant, canonical kebab-case
52/// kind, semantic role) triple binds at ONE site on the typed algebra
53/// rather than at the four byte-identical string-literal sites scattered
54/// across the closed-loop probe binary (`default_value` on
55/// `--receipt-kind`), the reconciler's receipt-parser tests, the
56/// `ephemeral_pipeline` integration test, and the future shinka /
57/// kenshi / nix-build Job authors that compose `ReceiptEnvelope::build`.
58///
59/// Pre-lift the four canonical kebab-case kinds lived as `&'static str`
60/// literal arguments at every author site (`ReceiptEnvelope::build(
61/// "closed-loop-auth", …)`) AND as docstring prose at this module's
62/// header (`Today's consumers: closed-loop-auth, db-migration,
63/// test-suite, nix-build`). The (canonical-string, semantic-role)
64/// pairing was load-bearing across ≥5 files yet enforced by per-site
65/// call-site discipline — a rename of `"closed-loop-auth"` →
66/// `"closed-loop"` at the probe binary's CLI default (the originator of
67/// every production receipt) silently desynchronizes from the docstring
68/// prose AND from the reconciler's test fixtures AND from any future
69/// kind-keyed dispatch (e.g. shinka's per-kind verifier registry) — the
70/// `kind` field is a `String` from the wire shape's perspective so the
71/// compiler cannot bind the literals together. Post-lift the canonical
72/// kebab-case strings live at ONE [`Self::as_str`] arm per variant;
73/// every author site composes the typed variant through
74/// `ReceiptEnvelope::build(ReceiptKind::ClosedLoopAuth, …)` (the typed
75/// → `String` `From` impl lets the existing `impl Into<String>` API
76/// surface accept the variant transparently) and a rename lands at ONE
77/// `as_str` arm here — no per-call-site grep + edit sweep, no silent
78/// drift between the docstring header and the wire literals.
79///
80/// The `kind` field on [`ReceiptEnvelope`] remains a `String` because
81/// the schema is open by design: operators register new `kind` strings
82/// for future consumers (operator-domain Job receipts) without bumping
83/// the wire version. The typed `ReceiptKind` is the closed-set *view*
84/// over that open String — every receipt the substrate itself emits
85/// projects through one of the four typed variants, and the typed
86/// projection [`ReceiptEnvelope::known_kind`] decodes any envelope's
87/// `kind` into `Some(ReceiptKind)` when it matches a known variant,
88/// `None` for operator-registered open kinds. The (open-String,
89/// closed-typed-view) split is the same shape `tatara-lisp`'s
90/// `Sexp::Sym` (open atoms) vs `MacroDefHead` (closed-set head
91/// markers) takes — open data through one type, closed dispatch
92/// through another, no `_` fallthrough where the closed set runs.
93///
94/// Adding a fifth kind (e.g. `Provenance` → `"provenance-attest"`)
95/// extends the enum AND the two projection arms ([`Self::as_str`],
96/// [`Self::from_str`] via the [`Self::ALL`] sweep) in lockstep — rustc
97/// binds the extension through exhaustiveness over the closed enum so
98/// a partial extension that forgets ONE projection becomes a compile
99/// error rather than a runtime drift where the new kind builds receipts
100/// but `known_kind()` returns `None` and the future kind-keyed verifier
101/// dispatch silently falls through.
102///
103/// Sibling closed-set [`Self::ALL`] lift across the crate:
104/// [`crate::export::ReportFormat::ALL`],
105/// [`crate::export::ExportTrigger::ALL`],
106/// [`crate::export::ReportPayloadShape::ALL`],
107/// [`crate::phase::ProcessPhase::ALL`],
108/// [`crate::signal::ProcessSignal::ALL`],
109/// [`crate::boundary::ConditionKind::ALL`],
110/// [`crate::lifetime::TeardownPolicy::ALL`],
111/// [`crate::lifetime::LifetimeKind::ALL`],
112/// [`crate::intent::IntentKind::ALL`],
113/// [`crate::lifetime_clock::TerminateReasonKind::ALL`].
114///
115/// Theory anchor: THEORY.md §III — the typescape; the substrate's own
116/// receipt kinds become a TYPE rather than four `&'static str` literals
117/// at every author site and a docstring header that drifts the moment
118/// any rename happens off-script. THEORY.md §V.3 — three-pillar
119/// attestation; the `kind` field is the *what-am-I* discriminator on
120/// every receipt that chains into a [`ProcessAttestation`], and the
121/// typed variant is the substrate's shared vocabulary for "which kind
122/// of work just got attested" — pre-lift each call site had to spell
123/// the kind by hand, post-lift each call site composes the typed
124/// constant and any consumer (future verifier, future dashboard, future
125/// LSP completion) sweeps [`Self::ALL`] to enumerate every known
126/// substrate-emitted receipt without grep.
127#[derive(Clone, Copy, Debug, PartialEq, Eq, Hash, tatara_closed_set::DeriveClosedSet)]
128#[closed_set(via = "as_str", display, generate_unknown)]
129pub enum ReceiptKind {
130    /// Closed-loop auth probe — stamps that a system's bundled identity
131    /// issuer authenticated its bundled client. Emitted by
132    /// `tatara-closed-loop-probe`; the substrate primitive every
133    /// closed-loop-testable product composes (an issuer↔client pair,
134    /// future: identity providers, message brokers, databases that can
135    /// issue creds to themselves).
136    ClosedLoopAuth,
137    /// Schema/migration runs. shinka emits one per applied migration;
138    /// the pillars carry the diff hash so the chain shows exactly which
139    /// migration was applied where.
140    DbMigration,
141    /// Test suites — kenshi-runner et al. The `evidence` field carries
142    /// pass/fail counts; the pillars stamp the suite identity.
143    TestSuite,
144    /// Nix builds. Carries the store-path pillar as `artifact_hash`;
145    /// chains every reproducible build into the Process attestation
146    /// chain so a derivation's output is provable on its owning
147    /// Process.
148    NixBuild,
149}
150
151impl ReceiptKind {
152    /// The closed set of substrate-emitted receipt kinds — single
153    /// source of truth that drives the [`Self::from_str`] decode sweep
154    /// AND any future enumeration consumer (kind-keyed verifier
155    /// registry, dashboard completion list, `tatara-check` receipt-kind
156    /// enumeration). Adding a fifth variant (e.g. `Provenance` →
157    /// `"provenance-attest"`) lands at one `ALL` entry + one `as_str`
158    /// arm — exhaustively checked by the compiler (the `[Self; 4]`
159    /// array literal forces the arity) AND by the per-variant
160    /// truth-table tests below.
161    ///
162    /// Sibling closed-set lifts across the crate's typescape:
163    /// [`crate::export::ReportFormat::ALL`],
164    /// [`crate::phase::ProcessPhase::ALL`],
165    /// [`crate::boundary::ConditionKind::ALL`],
166    /// [`crate::intent::IntentKind::ALL`].
167    pub const ALL: [Self; 4] = [
168        Self::ClosedLoopAuth,
169        Self::DbMigration,
170        Self::TestSuite,
171        Self::NixBuild,
172    ];
173
174    /// Canonical kebab-case wire-format kind — the literal that lands
175    /// in [`ReceiptEnvelope::kind`] when this variant authors the
176    /// receipt. Pinned to four byte-exact strings the substrate has
177    /// already published (the closed-loop probe's `default_value` on
178    /// `--receipt-kind`, the reconciler tests' fixture builds, the
179    /// `ephemeral_pipeline` integration test's assertions) — renaming
180    /// any one is a wire-format change, not a typed-internal refactor,
181    /// and the `receipt_kind_canonical_names_pinned` truth-table test
182    /// fails first to keep the substrate honest. Used by
183    /// [`fmt::Display`] (single source of truth) and as the `String`
184    /// projection that `From<ReceiptKind> for String` ([`Self::into`])
185    /// composes so [`ReceiptEnvelope::build`]'s `impl Into<String>`
186    /// kind argument transparently accepts the typed variant.
187    #[must_use]
188    pub const fn as_str(self) -> &'static str {
189        match self {
190            Self::ClosedLoopAuth => "closed-loop-auth",
191            Self::DbMigration => "db-migration",
192            Self::TestSuite => "test-suite",
193            Self::NixBuild => "nix-build",
194        }
195    }
196}
197
198// `impl fmt::Display for ReceiptKind` + `impl FromStr for ReceiptKind`
199// + `impl tatara_lisp::ClosedSet for ReceiptKind` + `pub struct
200// UnknownReceiptKind(pub String)` are generated by
201// `#[derive(tatara_closed_set::DeriveClosedSet)]` + `#[closed_set(via =
202// "as_str", display, generate_unknown)]` on the enum declaration above.
203// The auto-derived label `"receipt kind"` matches the prior hand-
204// rolled `#[error("unknown receipt kind: {0}")]` verbatim. The
205// inherent `as_str` projection stays load-bearing — the kebab-case
206// wire-format that matches `ReceiptEnvelope::kind`'s published literals
207// verbatim — while the trait method `label` gives generic consumers a
208// STABLE name across the workspace-wide closed-set implementors. The
209// open-by-design `ReceiptEnvelope::known_kind` projection routes the
210// `Err(UnknownReceiptKind)` arm into a `None` so operator-registered
211// open kinds stay open.
212
213impl From<ReceiptKind> for String {
214    /// Composes [`ReceiptKind::as_str`] into an owned `String` so
215    /// every `impl Into<String>` API surface ([`ReceiptEnvelope::build`]'s
216    /// `kind` parameter most notably) accepts the typed variant
217    /// transparently — the call site stays `build(kind, …)` and the
218    /// typed → wire bridge runs through ONE place.
219    fn from(k: ReceiptKind) -> Self {
220        k.as_str().to_owned()
221    }
222}
223
224impl From<ReceiptKind> for &'static str {
225    fn from(k: ReceiptKind) -> Self {
226        k.as_str()
227    }
228}
229
230/// One entry in the [`ReceiptEnvelope::REQUIRED_PILLARS`] closed-set
231/// table — the pair (diagnostic field name, wire-form accessor) that
232/// composes ONE required-pillar rejection through the shared
233/// [`require_nonempty`] peer. The alias gives the tuple a nameable
234/// type so downstream consumers (`tatara-check` receipt-inspector, an
235/// LSP hover on the const, per-pillar dashboard columns) bind to
236/// "one pillar's descriptor" as a first-class handle rather than
237/// re-typing the underlying `(&'static str, fn(&ReceiptEnvelope) ->
238/// &str)` tuple at every consumer.
239pub type RequiredPillar = (&'static str, fn(&ReceiptEnvelope) -> &str);
240
241/// Typed receipt envelope. Any Job in pleme-io that wants its result to
242/// chain into a Process's `status.attestation` writes one of these.
243#[derive(Clone, Debug, Serialize, Deserialize, JsonSchema, PartialEq, Eq)]
244#[serde(rename_all = "snake_case", deny_unknown_fields)]
245pub struct ReceiptEnvelope {
246    /// Must equal `RECEIPT_VERSION`. Mismatches reject the receipt.
247    pub version: String,
248    /// What this receipt proves. Known: `closed-loop-auth`, `db-migration`,
249    /// `test-suite`, `nix-build`. Operators may register new kinds —
250    /// the envelope is open.
251    pub kind: String,
252    /// Three-pillar root: `BLAKE3(domain ++ artifact ++ control ++ intent ++ previous)`.
253    pub composed_root: String,
254    /// Pillar 1: what the Job was *trying* to do (canonical intent).
255    pub intent_hash: String,
256    /// Pillar 2: what the Job *produced* (artifact / proof material).
257    pub artifact_hash: String,
258    /// Pillar 3: how the Job *verified* its work (controls / signatures /
259    /// auth steps). Empty string when there was no control step.
260    pub control_hash: String,
261    /// Timestamp the Job set when it wrote the receipt.
262    pub generated_at: DateTime<Utc>,
263    /// Optional owning-Process reference (`namespace/name`). When the
264    /// reconciler creates the Job it stamps this in via the downward
265    /// API; receipts without it still parse for ad-hoc / out-of-cluster
266    /// runs.
267    #[serde(default, skip_serializing_if = "Option::is_none")]
268    pub process_ref: Option<String>,
269    /// Optional structured evidence. Free-form JSON. The reconciler does
270    /// not parse this — it's for human / downstream-tool inspection.
271    #[serde(default, skip_serializing_if = "is_null")]
272    pub evidence: serde_json::Value,
273}
274
275fn is_null(v: &serde_json::Value) -> bool {
276    v.is_null()
277}
278
279/// Why a receipt is rejected. Kept as a typed enum so callers can
280/// pattern-match on the failure mode and surface targeted operator
281/// messages.
282#[derive(Clone, Debug, thiserror::Error, PartialEq, Eq)]
283pub enum ReceiptError {
284    #[error("invalid JSON: {0}")]
285    InvalidJson(String),
286    #[error("invalid YAML: {0}")]
287    InvalidYaml(String),
288    #[error("version != {RECEIPT_VERSION} (got {0:?})")]
289    WrongVersion(String),
290    #[error("missing required field: {0}")]
291    MissingField(&'static str),
292    #[error("kind is empty")]
293    EmptyKind,
294    #[error("composed_root mismatch (got {got}, want {want})")]
295    RootMismatch { got: String, want: String },
296}
297
298impl ReceiptEnvelope {
299    /// Build a receipt envelope from typed pillars + kind. `generated_at`
300    /// defaults to `Utc::now()`.
301    pub fn build(
302        kind: impl Into<String>,
303        intent_hash: impl Into<String>,
304        artifact_hash: impl Into<String>,
305        control_hash: impl Into<String>,
306        previous_root: Option<&str>,
307    ) -> Self {
308        let intent_hash = intent_hash.into();
309        let artifact_hash = artifact_hash.into();
310        let control_hash = control_hash.into();
311        let composed_root = compose_root(
312            &artifact_hash,
313            empty_to_none(&control_hash),
314            &intent_hash,
315            previous_root,
316        );
317        Self {
318            version: RECEIPT_VERSION.into(),
319            kind: kind.into(),
320            composed_root,
321            intent_hash,
322            artifact_hash,
323            control_hash,
324            generated_at: Utc::now(),
325            process_ref: None,
326            evidence: serde_json::Value::Null,
327        }
328    }
329
330    /// Parse a receipt from a JSON string.
331    pub fn parse_json(payload: &str) -> Result<Self, ReceiptError> {
332        let env: Self =
333            serde_json::from_str(payload).map_err(|e| ReceiptError::InvalidJson(e.to_string()))?;
334        env.verify_shape()?;
335        Ok(env)
336    }
337
338    /// Parse a receipt from a YAML string. Useful for ConfigMaps that
339    /// store the payload in YAML form.
340    pub fn parse_yaml(payload: &str) -> Result<Self, ReceiptError> {
341        let env: Self =
342            serde_yaml::from_str(payload).map_err(|e| ReceiptError::InvalidYaml(e.to_string()))?;
343        env.verify_shape()?;
344        Ok(env)
345    }
346
347    /// Parse via JSON first, then YAML if JSON fails. Lets a single
348    /// reader accept either wire form without the operator having to
349    /// declare it. Useful when the Job writes JSON and the reconciler
350    /// reads back through a kube DynamicObject whose `data` is YAML.
351    pub fn parse_either(payload: &str) -> Result<Self, ReceiptError> {
352        match Self::parse_json(payload) {
353            Ok(env) => Ok(env),
354            Err(_) => Self::parse_yaml(payload),
355        }
356    }
357
358    /// Closed-set table of pillars that MUST be non-empty on every
359    /// well-formed receipt — the wire-form's structural invariant
360    /// [`Self::verify_shape`] enforces. Pre-lift the three checks
361    /// lived as three byte-identical `if self.<pillar>.is_empty() {
362    /// return Err(ReceiptError::MissingField("<pillar>")); }` two-arm
363    /// conditionals inline in `verify_shape` — one per pillar name,
364    /// each hand-writing the SAME (field-name, accessor, rejection)
365    /// triple with the pillar name repeated at BOTH the accessor
366    /// (`self.composed_root`) AND the diagnostic literal
367    /// (`"composed_root"`). Post-lift the three (field-name,
368    /// accessor) pairs live at ONE closed-set table here;
369    /// `verify_shape` composes ONE per-entry iteration that
370    /// dispatches through the shared [`require_nonempty`] free-fn
371    /// peer of [`empty_to_none`].
372    ///
373    /// Each entry is a [`RequiredPillar`] tuple whose named type gives
374    /// downstream consumers (a `tatara-check` receipt-inspector, an
375    /// LSP hover, a per-pillar dashboard column) a nameable handle
376    /// for "one pillar's (diagnostic-name, wire-form-accessor)
377    /// pairing" rather than an unnamed function-pointer tuple
378    /// re-typed at every consumer.
379    ///
380    /// The `control_hash` field is DELIBERATELY NOT in this table:
381    /// the substrate's second pillar carries an "empty means absent"
382    /// convention that [`Self::control_hash_opt`] + [`empty_to_none`]
383    /// project as a typed `Option::None`, so its emptiness is a
384    /// semantic bit rather than a validation failure. The pair
385    /// (`REQUIRED_PILLARS` — must be non-empty; `control_hash_opt` —
386    /// may be empty) is the substrate's typed answer to which
387    /// pillars are load-bearing vs. schema-optional. A future
388    /// re-shape that promotes a fourth required pillar (e.g. a
389    /// mandatory `signer_hash` on a signed-receipt schema variant)
390    /// lands as ONE new entry in this table + rustc's `[…; N]`
391    /// arity constant on the type binding the extension in lockstep
392    /// so a partial addition that forgets the diagnostic surface
393    /// becomes a compile error rather than a runtime drift.
394    ///
395    /// Sibling closed-set tables across the crate:
396    /// [`ReceiptKind::ALL`],
397    /// [`crate::export::ReportFormat::ALL`],
398    /// [`crate::phase::ProcessPhase::ALL`],
399    /// [`crate::boundary::ConditionKind::ALL`],
400    /// [`crate::intent::IntentKind::ALL`].
401    ///
402    /// Theory anchor: THEORY.md §VI.1 — generation over composition;
403    /// the three inline pillar-emptiness checks recurred at THREE
404    /// sites past the ★★ PRIME-DIRECTIVE ≥ 2 duplication threshold
405    /// and are lifted to ONE closed-set table + ONE shared rejection
406    /// peer. THEORY.md §V.1 — knowable platform; the enumeration of
407    /// required-pillar field names lives at ONE surface a
408    /// documentation surface, an LSP hover, or a `tatara-check`
409    /// receipt-inspector binds to for enumerating the receipt's
410    /// structural invariants. THEORY.md §V.3 — three-pillar
411    /// attestation; the (mandatory, may-be-absent) split of the
412    /// three-pillar-plus-composed-root wire form is a typed
413    /// substrate contract, not a per-consumer discipline.
414    pub const REQUIRED_PILLARS: [RequiredPillar; 3] = [
415        ("composed_root", |e| e.composed_root.as_str()),
416        ("intent_hash", |e| e.intent_hash.as_str()),
417        ("artifact_hash", |e| e.artifact_hash.as_str()),
418    ];
419
420    /// Verify the schema-level invariants: correct version + non-empty
421    /// kind + non-empty pillar hashes (length-only, not BLAKE3-recompute).
422    /// The three required-pillar rejections dispatch through
423    /// [`Self::REQUIRED_PILLARS`] + [`require_nonempty`] so a future
424    /// fourth required pillar lands at ONE table entry rather than
425    /// as a fourth inline `if …is_empty() { return Err(…); }` copy.
426    pub fn verify_shape(&self) -> Result<(), ReceiptError> {
427        if self.version != RECEIPT_VERSION {
428            return Err(ReceiptError::WrongVersion(self.version.clone()));
429        }
430        if self.kind.is_empty() {
431            return Err(ReceiptError::EmptyKind);
432        }
433        for (field, accessor) in Self::REQUIRED_PILLARS {
434            require_nonempty(field, accessor(self))?;
435        }
436        // control_hash MAY be empty when there is no control step;
437        // the BLAKE3 compose treats empty as "absent" via Option —
438        // see `Self::control_hash_opt` + `empty_to_none`.
439        Ok(())
440    }
441
442    /// Verify that `composed_root` is consistent with the pillars.
443    /// `expected_previous_root` is the previous root in the Process's
444    /// attestation chain (or `None` for first attestation).
445    pub fn verify_root(&self, expected_previous_root: Option<&str>) -> bool {
446        let want = compose_root(
447            &self.artifact_hash,
448            self.control_hash_opt(),
449            &self.intent_hash,
450            expected_previous_root,
451        );
452        constant_time_eq(want.as_bytes(), self.composed_root.as_bytes())
453    }
454
455    /// Strict-equality check against an operator-provided expected root.
456    /// Returns the receipt's root unchanged on success.
457    pub fn expect_root(&self, expected: Option<&str>) -> Result<&str, ReceiptError> {
458        if let Some(want) = expected {
459            if want != self.composed_root {
460                return Err(ReceiptError::RootMismatch {
461                    got: self.composed_root.clone(),
462                    want: want.to_string(),
463                });
464            }
465        }
466        Ok(&self.composed_root)
467    }
468
469    /// Decode `self.kind` into the typed [`ReceiptKind`] variant when
470    /// the wire string matches one of the four substrate-emitted
471    /// canonical kebab-case kinds; `None` when the kind is an
472    /// operator-registered open string (the schema is open by design —
473    /// every receipt remains a valid receipt, but only typed kinds
474    /// participate in closed-set dispatch). The (open `String`,
475    /// closed-typed view) split lets future kind-keyed consumers
476    /// (verifier registries, dashboard completion, audit-trail
477    /// classifiers) sweep the typed variants without touching the
478    /// open-by-design wire shape. Lifted as the canonical decode site
479    /// so no consumer re-implements the `match self.kind.as_str()`
480    /// arm-by-arm — the closed-set sweep happens through
481    /// [`ReceiptKind::from_str`] at ONE site.
482    #[must_use]
483    pub fn known_kind(&self) -> Option<ReceiptKind> {
484        self.kind.parse().ok()
485    }
486
487    /// Lower into a `ProcessAttestation` — the canonical handoff so a
488    /// Job's typed receipt becomes evidence on a Process. `generation`
489    /// + `previous_root` come from the owning Process's prior
490    /// attestation (or 0 + None for the first cycle).
491    pub fn to_attestation(
492        &self,
493        generation: u64,
494        previous_root: Option<&str>,
495    ) -> ProcessAttestation {
496        ProcessAttestation::compose(
497            self.artifact_hash.clone(),
498            self.control_hash_opt().map(str::to_owned),
499            self.intent_hash.clone(),
500            previous_root.map(String::from),
501            generation,
502        )
503    }
504
505    /// Typed projection of the wire form's `control_hash` field —
506    /// `Some(hash)` when a control step ran, `None` when it did not.
507    ///
508    /// The wire form stamps `control_hash: String` (schema-open,
509    /// serde-friendly), but the substrate's `compose_root` +
510    /// `ProcessAttestation::compose` compositions both take an
511    /// `Option<&str>` / `Option<String>` and thread `None` through the
512    /// exact BLAKE3 bytes pattern an absent-pillar walk emits — an
513    /// empty `control_hash` and an absent-pillar receipt hash to the
514    /// SAME `composed_root`. That "empty means absent" convention
515    /// pre-lift lived at THREE sites inside this impl block —
516    /// [`Self::build`] (constructing the envelope from typed pillars),
517    /// [`Self::verify_root`] (recomposing the root against pillars for
518    /// wire-form verification), and [`Self::to_attestation`] (lowering
519    /// the receipt into a [`ProcessAttestation`] on a Process's
520    /// attestation chain) — each hand-writing the SAME
521    /// `if self.control_hash.is_empty() { None } else {
522    /// Some(self.control_hash.as_str()) }` two-arm conditional. Post-
523    /// lift the convention lives at ONE method here; the three
524    /// consumers each compose a ONE-LINE call:
525    ///   * `verify_root` → `self.control_hash_opt()` directly,
526    ///   * `to_attestation` → `self.control_hash_opt().map(str::to_owned)`
527    ///     for the `Option<String>` shape [`ProcessAttestation::compose`]
528    ///     binds,
529    ///   * `build` (which reads a local `control_hash: String` before
530    ///     the envelope is constructed) → the free-fn peer
531    ///     [`empty_to_none`] on the same borrowed string.
532    ///
533    /// Public because the projection is load-bearing operator-facing
534    /// contract: an authoring surface (an LSP hover, a
535    /// `tatara-check` report, a REPL `:receipt-inspect` command) that
536    /// wants to render "no control step" vs. "control_hash: <hash>"
537    /// binds to this method rather than pattern-matching on
538    /// `self.control_hash.is_empty()` at its own call site — a future
539    /// re-shape of the empty-means-absent convention (a sentinel-
540    /// string variant, an explicit `Option<String>` on the wire form
541    /// once the schema evolves, or a typed
542    /// `ControlStep::{Ran(hash), Skipped}` enum) lands at ONE method
543    /// here rather than at every consumer that inspects the pillar.
544    ///
545    /// Theory anchor: THEORY.md §V.1 — knowable platform; the
546    /// wire-vs-typed projection lives at ONE substrate method so a
547    /// consumer reads the pillar's typed-Option contract from the
548    /// receipt directly, not from three parallel inline conditionals
549    /// scattered across `build` / `verify_root` / `to_attestation`.
550    /// THEORY.md §VI.1 — generation over composition; the
551    /// `is_empty() ? None : Some(&self.control_hash)` two-arm
552    /// projection recurred at THREE inline sites past the ★★
553    /// PRIME-DIRECTIVE ≥ 2 duplication threshold and is lifted to ONE
554    /// owner here. THEORY.md §V.3 — three-pillar attestation; the
555    /// receipt's second pillar (control step) has ONE typed projection
556    /// site the composition primitives ([`compose_root`],
557    /// [`ProcessAttestation::compose`]) both bind against, so the
558    /// pillar's wire-vs-typed identity cannot drift across the three
559    /// consumers.
560    #[must_use]
561    pub fn control_hash_opt(&self) -> Option<&str> {
562        empty_to_none(&self.control_hash)
563    }
564}
565
566/// Project a wire-form pillar string onto its typed `Option<&str>`
567/// contract — `Some(s)` when `s` is non-empty, `None` when `s` is
568/// empty (the substrate's "no such pillar" convention that
569/// [`compose_root`] + [`ProcessAttestation::compose`] both thread as
570/// an absent-pillar walk through the BLAKE3 domain-tagged
571/// composition).
572///
573/// The free-fn peer of [`ReceiptEnvelope::control_hash_opt`] for
574/// call sites that hold a borrowed pillar string BEFORE a
575/// [`ReceiptEnvelope`] is constructed — namely
576/// [`ReceiptEnvelope::build`]'s inline `compose_root` call, which
577/// composes the pillar's typed-Option identity from the local
578/// `control_hash: String` intake before the envelope value exists.
579/// The two peers share ONE projection body (`(!s.is_empty()).
580/// then_some(s)`) so a future re-shape of the empty-means-absent
581/// convention (a sentinel-string variant, an explicit
582/// `Option<String>` on the wire form once the schema evolves)
583/// lands at ONE substrate primitive rather than at both the
584/// inherent method and its pre-construction free-fn peer.
585///
586/// Theory anchor: THEORY.md §VI.1 — generation over composition;
587/// the pre-construction peer of the pillar projection lives at ONE
588/// substrate primitive alongside the post-construction inherent
589/// method, so the two receipt-lifecycle stages (pre-envelope in
590/// [`ReceiptEnvelope::build`], post-envelope in every other
591/// consumer) share ONE typed projection.
592fn empty_to_none(s: &str) -> Option<&str> {
593    (!s.is_empty()).then_some(s)
594}
595
596/// Reject a required pillar whose wire form is empty with a typed
597/// [`ReceiptError::MissingField`] carrying `field` — the diagnostic
598/// literal the operator sees. Free-fn peer of [`empty_to_none`] on
599/// the same wire-form-emptiness axis, and rejection sibling of the
600/// [`ReceiptEnvelope::REQUIRED_PILLARS`] closed-set table
601/// [`ReceiptEnvelope::verify_shape`] dispatches through.
602///
603/// The two peers on the emptiness axis carry two different typed
604/// projections of the SAME wire-form bit:
605///   * [`empty_to_none`] — the "empty means absent" convention for
606///     the second pillar (control step); the substrate composes
607///     `Option::None` through `compose_root` so an empty
608///     `control_hash` and an absent-pillar receipt hash to the SAME
609///     `composed_root`.
610///   * [`require_nonempty`] — the "empty is a validation failure"
611///     convention for the three required pillars; the substrate
612///     rejects the receipt with a typed [`ReceiptError::MissingField`]
613///     carrying the offending field name so the operator's diagnostic
614///     surface (a reconciler event, a CLI stderr, a `tatara-check`
615///     receipt-inspect report) names the pillar directly.
616///
617/// The two peers are DELIBERATELY named as (`empty_to_none`,
618/// `require_nonempty`) rather than as a single overloaded projection
619/// so the two typed conventions (absence-as-Option vs.
620/// absence-as-Err) surface at the substrate's exported vocabulary
621/// as two distinct primitives — a per-caller misroute (composing
622/// `require_nonempty` on `control_hash` and getting a false
623/// `MissingField`, or composing `empty_to_none` on `intent_hash`
624/// and threading `None` through `compose_root` past a wire that
625/// should have rejected) is a name-typo, not a silent semantic
626/// swap.
627///
628/// Theory anchor: THEORY.md §VI.1 — generation over composition;
629/// the "empty is a required-pillar failure" three-line inline
630/// conditional recurred at THREE sites past the ★★ PRIME-DIRECTIVE
631/// ≥ 2 duplication threshold and is lifted to ONE substrate primitive
632/// composed through the [`ReceiptEnvelope::REQUIRED_PILLARS`] table.
633/// THEORY.md §V.1 — knowable platform; the two emptiness projections
634/// live at ONE typed vocabulary the receipt-inspection surfaces (LSP
635/// hover, `tatara-check` report, REPL) bind to for reading the
636/// receipt's structural contract from the substrate directly.
637fn require_nonempty(field: &'static str, value: &str) -> Result<(), ReceiptError> {
638    if value.is_empty() {
639        return Err(ReceiptError::MissingField(field));
640    }
641    Ok(())
642}
643
644const DOMAIN_TAG: &[u8] = b"tatara-process/v1alpha1\n";
645
646/// Same composition as `ProcessAttestation::composed_hex` — kept local so
647/// `tatara_process::receipt::compose_root(...)` is a single line in
648/// downstream code without re-importing the attestation module.
649fn compose_root(
650    artifact: &str,
651    control: Option<&str>,
652    intent: &str,
653    previous: Option<&str>,
654) -> String {
655    let mut h = blake3::Hasher::new();
656    h.update(DOMAIN_TAG);
657    h.update(artifact.as_bytes());
658    h.update(b"\n");
659    h.update(control.unwrap_or("").as_bytes());
660    h.update(b"\n");
661    h.update(intent.as_bytes());
662    h.update(b"\n");
663    h.update(previous.unwrap_or("").as_bytes());
664    hex::encode(h.finalize().as_bytes())
665}
666
667fn constant_time_eq(a: &[u8], b: &[u8]) -> bool {
668    if a.len() != b.len() {
669        return false;
670    }
671    let mut acc: u8 = 0;
672    for (x, y) in a.iter().zip(b.iter()) {
673        acc |= x ^ y;
674    }
675    acc == 0
676}
677
678#[cfg(test)]
679mod tests {
680    use super::*;
681
682    fn sample_payload() -> &'static str {
683        // Composed_root precomputed from compose_root("bbbb", Some("cccc"), "aaaa", None)
684        // (recomputed at test time to be canonical; this string is regenerated
685        // if the domain tag ever changes).
686        r#"{
687            "version": "tatara-receipt/v1",
688            "kind": "closed-loop-auth",
689            "composed_root": "RECOMPUTE",
690            "intent_hash":   "aaaa",
691            "artifact_hash": "bbbb",
692            "control_hash":  "cccc",
693            "generated_at":  "2026-05-19T12:00:00Z"
694        }"#
695    }
696
697    fn canonical_payload_json() -> String {
698        let root = compose_root("bbbb", Some("cccc"), "aaaa", None);
699        sample_payload().replace("RECOMPUTE", &root)
700    }
701
702    #[test]
703    fn build_produces_valid_envelope() {
704        let r = ReceiptEnvelope::build("test-suite", "i", "a", "c", None);
705        assert_eq!(r.version, RECEIPT_VERSION);
706        assert_eq!(r.kind, "test-suite");
707        assert!(r.verify_shape().is_ok());
708        assert!(r.verify_root(None));
709    }
710
711    #[test]
712    fn build_empty_control_omits_from_root() {
713        let with_empty = ReceiptEnvelope::build("nix-build", "i", "a", "", None);
714        let with_explicit_none = ReceiptEnvelope::build("nix-build", "i", "a", "", None);
715        assert_eq!(with_empty.composed_root, with_explicit_none.composed_root);
716
717        // And differs from a receipt with a real control hash.
718        let with_control = ReceiptEnvelope::build("nix-build", "i", "a", "c", None);
719        assert_ne!(with_empty.composed_root, with_control.composed_root);
720    }
721
722    #[test]
723    fn parse_json_round_trip() {
724        let r = ReceiptEnvelope::parse_json(&canonical_payload_json()).expect("parse");
725        assert_eq!(r.kind, "closed-loop-auth");
726        assert!(r.verify_root(None));
727    }
728
729    #[test]
730    fn parse_yaml_round_trip() {
731        let yaml = r#"
732version: tatara-receipt/v1
733kind: db-migration
734composed_root: ROOT
735intent_hash:   aaaa
736artifact_hash: bbbb
737control_hash:  cccc
738generated_at:  2026-05-19T12:00:00Z
739"#
740        .replace("ROOT", &compose_root("bbbb", Some("cccc"), "aaaa", None));
741        let r = ReceiptEnvelope::parse_yaml(&yaml).expect("yaml parse");
742        assert_eq!(r.kind, "db-migration");
743        assert!(r.verify_root(None));
744    }
745
746    #[test]
747    fn parse_either_falls_back_to_yaml() {
748        let yaml = r#"
749version: tatara-receipt/v1
750kind: test-suite
751composed_root: ROOT
752intent_hash:   aaaa
753artifact_hash: bbbb
754control_hash:  cccc
755generated_at:  2026-05-19T12:00:00Z
756"#
757        .replace("ROOT", &compose_root("bbbb", Some("cccc"), "aaaa", None));
758        assert!(ReceiptEnvelope::parse_either(&yaml).is_ok());
759    }
760
761    #[test]
762    fn wrong_version_rejected() {
763        let mut env: serde_json::Value = serde_json::from_str(&canonical_payload_json()).unwrap();
764        env["version"] = "tatara-receipt/v2".into();
765        let err = ReceiptEnvelope::parse_json(&env.to_string()).unwrap_err();
766        assert!(matches!(err, ReceiptError::WrongVersion(ref s) if s == "tatara-receipt/v2"));
767    }
768
769    #[test]
770    fn missing_field_rejected() {
771        let mut env: serde_json::Value = serde_json::from_str(&canonical_payload_json()).unwrap();
772        env.as_object_mut().unwrap().remove("intent_hash");
773        let err = ReceiptEnvelope::parse_json(&env.to_string()).unwrap_err();
774        assert!(matches!(err, ReceiptError::InvalidJson(_)));
775    }
776
777    #[test]
778    fn unknown_field_rejected() {
779        let mut env: serde_json::Value = serde_json::from_str(&canonical_payload_json()).unwrap();
780        env["forged_extra"] = "should-fail".into();
781        let err = ReceiptEnvelope::parse_json(&env.to_string()).unwrap_err();
782        assert!(matches!(err, ReceiptError::InvalidJson(_)));
783    }
784
785    #[test]
786    fn empty_kind_rejected_in_verify_shape() {
787        let mut r = ReceiptEnvelope::build("k", "i", "a", "c", None);
788        r.kind = String::new();
789        assert!(matches!(r.verify_shape(), Err(ReceiptError::EmptyKind)));
790    }
791
792    #[test]
793    fn expect_root_matches_or_mismatches() {
794        let r = ReceiptEnvelope::build("test-suite", "i", "a", "c", None);
795        let root = r.composed_root.clone();
796        assert!(r.expect_root(Some(&root)).is_ok());
797        let err = r.expect_root(Some("nope")).unwrap_err();
798        assert!(matches!(err, ReceiptError::RootMismatch { .. }));
799        assert!(r.expect_root(None).is_ok());
800    }
801
802    #[test]
803    fn lower_to_attestation_chains_pillars() {
804        let r = ReceiptEnvelope::build("closed-loop-auth", "i", "a", "c", None);
805        let a = r.to_attestation(0, None);
806        assert_eq!(a.intent_hash, "i");
807        assert_eq!(a.artifact_hash, "a");
808        assert_eq!(a.control_hash.as_deref(), Some("c"));
809        // Both compose the same root.
810        assert_eq!(a.composed_root, r.composed_root);
811        assert!(a.verify());
812
813        let next = r.to_attestation(1, Some(&a.composed_root));
814        assert_eq!(next.generation, 1);
815        assert_eq!(
816            next.previous_root.as_deref(),
817            Some(a.composed_root.as_str())
818        );
819        // The composed_root differs because previous_root is included.
820        assert_ne!(next.composed_root, a.composed_root);
821    }
822
823    #[test]
824    fn verify_root_detects_tamper() {
825        let mut r = ReceiptEnvelope::build("closed-loop-auth", "i", "a", "c", None);
826        assert!(r.verify_root(None));
827        r.intent_hash = "tampered".into();
828        assert!(!r.verify_root(None));
829    }
830
831    #[test]
832    fn process_ref_optional_and_round_trips() {
833        let mut r = ReceiptEnvelope::build("test-suite", "i", "a", "c", None);
834        r.process_ref = Some("demo-test/ephemeral".into());
835        let s = serde_json::to_string(&r).unwrap();
836        let back = ReceiptEnvelope::parse_json(&s).expect("round-trip");
837        assert_eq!(back.process_ref.as_deref(), Some("demo-test/ephemeral"));
838    }
839
840    #[test]
841    fn evidence_round_trips() {
842        let mut r = ReceiptEnvelope::build("test-suite", "i", "a", "c", None);
843        r.evidence = serde_json::json!({ "passed": 12, "failed": 0, "duration_ms": 4200 });
844        let s = serde_json::to_string(&r).unwrap();
845        let back = ReceiptEnvelope::parse_json(&s).expect("round-trip");
846        assert_eq!(back.evidence["passed"], 12);
847    }
848
849    // ── ReceiptKind closed-set truth-table ───────────────────────────
850
851    /// Structural well-formedness of [`ReceiptKind`] as a
852    /// [`tatara_lisp::ClosedSet`] implementor — the workspace-wide
853    /// testkit lift that pins all three structural invariants (`ALL`
854    /// is non-empty, every variant round-trips through
855    /// `label ↔ parse_label`, labels are pairwise distinct, `""` is
856    /// outside the closed set) at ONE call site. Replaces the hand-
857    /// derived `receipt_kind_all_enumerates_each_variant_exactly_once`
858    /// + `receipt_kind_from_str_round_trips_canonical_names` + the
859    /// empty-input arm of `receipt_kind_from_str_rejects_open_kinds`.
860    /// `FromStr` delegates to
861    /// `<Self as tatara_closed_set::ClosedSet>::parse_label`, so this helper
862    /// exercises the same code path operators hit when parsing a wire
863    /// `kind` field back to the typed kind.
864    #[test]
865    fn receipt_kind_is_well_formed_closed_set() {
866        tatara_closed_set::assert_closed_set_well_formed::<ReceiptKind>();
867    }
868
869    #[test]
870    fn receipt_kind_canonical_names_pinned() {
871        // Byte-exact wire-format pin — renaming any of these is a
872        // wire-format change, not a typed-internal refactor.
873        assert_eq!(ReceiptKind::ClosedLoopAuth.as_str(), "closed-loop-auth");
874        assert_eq!(ReceiptKind::DbMigration.as_str(), "db-migration");
875        assert_eq!(ReceiptKind::TestSuite.as_str(), "test-suite");
876        assert_eq!(ReceiptKind::NixBuild.as_str(), "nix-build");
877    }
878
879    #[test]
880    fn receipt_kind_from_str_rejects_open_kinds() {
881        // Future / typo / wrong-case all surface a typed
882        // UnknownReceiptKind carrying the offending input verbatim
883        // (operator-facing diagnostic); the schema is open at the
884        // wire layer, but the closed-set view is byte-exact. The
885        // empty-input arm is pinned by
886        // [`receipt_kind_is_well_formed_closed_set`] via the
887        // `tatara_lisp::ClosedSet` testkit; the cases here pin the
888        // verbatim-echo contract on the [`UnknownReceiptKind`] newtype,
889        // which the trait's `make_unknown` can't see.
890        for bad in ["closed_loop_auth", "ClosedLoopAuth", "operator-custom-kind"] {
891            let err = bad.parse::<ReceiptKind>().unwrap_err();
892            assert_eq!(err, UnknownReceiptKind(bad.to_string()));
893        }
894    }
895
896    #[test]
897    fn receipt_kind_display_delegates_to_as_str() {
898        for k in ReceiptKind::ALL {
899            assert_eq!(format!("{k}"), k.as_str());
900        }
901    }
902
903    #[test]
904    fn receipt_kind_into_string_matches_as_str() {
905        for k in ReceiptKind::ALL {
906            let s: String = k.into();
907            assert_eq!(s, k.as_str());
908        }
909    }
910
911    #[test]
912    fn build_accepts_typed_receipt_kind() {
913        // The typed → wire bridge: `build(ReceiptKind::X, …)` produces
914        // a receipt whose `kind` field is exactly `X.as_str()`.
915        for k in ReceiptKind::ALL {
916            let env = ReceiptEnvelope::build(k, "i", "a", "c", None);
917            assert_eq!(env.kind, k.as_str());
918            assert!(env.verify_shape().is_ok());
919            assert!(env.verify_root(None));
920        }
921    }
922
923    #[test]
924    fn known_kind_decodes_built_receipts() {
925        for k in ReceiptKind::ALL {
926            let env = ReceiptEnvelope::build(k, "i", "a", "c", None);
927            assert_eq!(env.known_kind(), Some(k));
928        }
929    }
930
931    #[test]
932    fn known_kind_returns_none_for_open_kinds() {
933        // Open-by-design: a custom operator-registered kind still
934        // parses, still verifies, and still attests — it just doesn't
935        // project through the closed-set typed view.
936        let env = ReceiptEnvelope::build("operator-custom-kind", "i", "a", "c", None);
937        assert_eq!(env.known_kind(), None);
938        assert!(
939            env.verify_shape().is_ok(),
940            "open kind must remain a valid receipt"
941        );
942    }
943
944    // ── `control_hash_opt` / `empty_to_none` — the wire-form-to-typed
945    //    projection of the second pillar (control step). Pre-lift the
946    //    `is_empty() ? None : Some(&self.control_hash)` two-arm
947    //    conditional lived at THREE inline sites — `build`,
948    //    `verify_root`, `to_attestation` — each hand-writing the SAME
949    //    projection with slightly-different ownership shapes
950    //    (`Option<&str>` for the two composers, `Option<String>` for
951    //    the attestation composer). Post-lift the projection lives at
952    //    ONE inherent method + ONE free-fn peer for the pre-envelope
953    //    call site. The tests below pin the substrate primitive's
954    //    contract at its boundary so a regression at the projection
955    //    surfaces here rather than as a silent `composed_root` drift
956    //    at every consumer that composes the pillar.
957
958    #[test]
959    fn empty_to_none_projects_empty_to_none_and_non_empty_to_some_verbatim() {
960        // The pre-envelope free-fn peer of `control_hash_opt` — used
961        // by `build` before the envelope exists. Pin BOTH arms of the
962        // projection: an empty string projects to `None` (the "no
963        // such pillar" convention that `compose_root` threads through
964        // the absent-pillar BLAKE3 bytes pattern), and any non-empty
965        // string projects to `Some(s)` byte-identical to the input.
966        // A regression that (a) inverted the arms (folding `""` to
967        // `Some("")` and every non-empty into `None`), (b) normalized
968        // the payload (trimming whitespace, lowercasing hex), or (c)
969        // introduced a sentinel-string special case (`"none"`, `"-"`,
970        // etc.) would surface here rather than as a silent
971        // `composed_root` shift at every consumer that composes the
972        // pillar.
973        assert_eq!(super::empty_to_none(""), None);
974        assert_eq!(super::empty_to_none("c"), Some("c"));
975        assert_eq!(super::empty_to_none("cccc"), Some("cccc"));
976        // A whitespace-only string is NOT empty by the pillar's typed
977        // contract — the substrate composes bytes verbatim through
978        // BLAKE3, so a `" "` control hash IS a distinct pillar from
979        // an absent one; the projection must preserve that
980        // distinction.
981        assert_eq!(super::empty_to_none(" "), Some(" "));
982    }
983
984    #[test]
985    fn control_hash_opt_matches_the_free_fn_peer_on_every_receipt() {
986        // Post-envelope inherent method routes through the same
987        // `empty_to_none` free-fn body — pin the equivalence across
988        // both arms so a future regression that split the two
989        // projections (e.g. the inherent method starts trimming, the
990        // free-fn stays byte-verbatim) surfaces here rather than as a
991        // `composed_root` mismatch between `build` (uses the free-fn
992        // peer) and `verify_root` / `to_attestation` (use the
993        // inherent method).
994        let with_control = ReceiptEnvelope::build("test-suite", "i", "a", "cccc", None);
995        assert_eq!(with_control.control_hash_opt(), Some("cccc"));
996        assert_eq!(
997            with_control.control_hash_opt(),
998            super::empty_to_none(&with_control.control_hash),
999        );
1000
1001        let no_control = ReceiptEnvelope::build("nix-build", "i", "a", "", None);
1002        assert_eq!(no_control.control_hash_opt(), None);
1003        assert_eq!(
1004            no_control.control_hash_opt(),
1005            super::empty_to_none(&no_control.control_hash),
1006        );
1007    }
1008
1009    #[test]
1010    fn control_hash_opt_composes_the_same_root_the_three_consumers_bind() {
1011        // End-to-end pin at the receipt-lifecycle boundary — the
1012        // three consumers (`build`, `verify_root`, `to_attestation`)
1013        // must land on the SAME `composed_root` for a given pillar
1014        // tuple regardless of which projection body they route
1015        // through. Sweeps BOTH pillar arms (present control + empty
1016        // control) so a regression that mis-wired ONE consumer to
1017        // the pre-lift inline conditional or that changed the
1018        // projection at ONE site surfaces here rather than as a
1019        // silent divergence between `verify_root`'s decision and
1020        // `to_attestation`'s written `composed_root`.
1021        for control in ["", "control-hash-cccc"] {
1022            let env = ReceiptEnvelope::build("test-suite", "i", "a", control, None);
1023            // `verify_root` composes through the inherent method AND
1024            // through the same `compose_root(&artifact, control_opt,
1025            // &intent, previous)` skeleton `build` binds — so the
1026            // envelope must verify against its own composed root.
1027            assert!(
1028                env.verify_root(None),
1029                "verify_root failed for control={control:?}",
1030            );
1031            // `to_attestation` composes the same pillar tuple through
1032            // `ProcessAttestation::compose`'s `Option<String>` shape;
1033            // the attestation's `composed_root` must match the
1034            // envelope's `composed_root` byte-for-byte because both
1035            // compose the SAME BLAKE3 domain-tagged skeleton over
1036            // the SAME typed-Option pillar identity.
1037            let att = env.to_attestation(0, None);
1038            assert_eq!(
1039                att.composed_root, env.composed_root,
1040                "attestation root drift for control={control:?}",
1041            );
1042        }
1043    }
1044
1045    // ── `REQUIRED_PILLARS` / `require_nonempty` — the closed-set
1046    //    table + shared rejection peer that `verify_shape` composes
1047    //    the three required-pillar emptiness checks through. Pre-lift
1048    //    the three `if self.<pillar>.is_empty() { return Err(
1049    //    ReceiptError::MissingField("<pillar>")); }` two-arm
1050    //    conditionals lived inline in `verify_shape` — one per pillar
1051    //    name, each hand-writing the SAME (field-name, accessor,
1052    //    rejection) triple. Post-lift the three (field-name,
1053    //    accessor) pairs live at ONE `REQUIRED_PILLARS` const, and
1054    //    the rejection body lives at ONE `require_nonempty` peer. The
1055    //    tests below pin the substrate primitives' contract at their
1056    //    boundary so a regression at the projection surfaces here
1057    //    rather than as a silent shift in the receipt's structural
1058    //    validation semantics.
1059
1060    #[test]
1061    fn require_nonempty_rejects_empty_with_the_named_field_and_passes_non_empty_verbatim() {
1062        // The shared rejection peer of `empty_to_none` — used by
1063        // `verify_shape` through the `REQUIRED_PILLARS` sweep. Pin
1064        // BOTH arms of the projection: an empty value rejects with
1065        // `ReceiptError::MissingField(field)` carrying the literal
1066        // `field` byte-identically (so a rename at the table entry
1067        // reaches the operator's diagnostic surface — the reconciler
1068        // event, the CLI stderr, the `tatara-check` receipt-inspect
1069        // report), and any non-empty value passes with `Ok(())`
1070        // (regardless of the payload's shape — a whitespace-only `" "`
1071        // is NOT empty by the pillar's typed contract). A regression
1072        // that (a) mis-named the field on the rejection (leaking a
1073        // caller-controlled `&str` in place of the `&'static` diagnostic
1074        // literal), (b) rejected non-empty values (folding `" "` or
1075        // some other sentinel into `MissingField`), or (c) accepted
1076        // the empty payload silently would surface here rather than
1077        // as a silent semantic shift in `verify_shape`'s rejection
1078        // vocabulary.
1079        assert_eq!(
1080            super::require_nonempty("composed_root", ""),
1081            Err(ReceiptError::MissingField("composed_root")),
1082        );
1083        assert_eq!(
1084            super::require_nonempty("intent_hash", ""),
1085            Err(ReceiptError::MissingField("intent_hash")),
1086        );
1087        assert_eq!(super::require_nonempty("composed_root", "aaaa"), Ok(()));
1088        // Whitespace-only strings pass the rejection gate — the
1089        // substrate composes bytes verbatim through BLAKE3 so `" "`
1090        // IS a distinct pillar from an absent one; the rejection
1091        // must preserve that distinction.
1092        assert_eq!(super::require_nonempty("intent_hash", " "), Ok(()));
1093    }
1094
1095    #[test]
1096    fn required_pillars_table_is_pairwise_distinct_and_enumerates_the_three_names() {
1097        // The closed-set table `verify_shape` dispatches through.
1098        // Pin: (a) the arity is exactly THREE (rustc's `[…; 3]`
1099        // constant on the type binds this at compile time; the pin
1100        // here checks the runtime enumeration matches so a future
1101        // arity bump surfaces as a coordinated update rather than a
1102        // silent drift), (b) each entry's field name is a
1103        // pillar-unique string (a duplicate entry — the same pillar
1104        // listed twice — would evaluate the same rejection twice at
1105        // ONE run, hiding a distinct pillar's absence behind the
1106        // duplicate's success), (c) the three names match the
1107        // byte-exact wire literals the reconciler tests + operator
1108        // diagnostics have already published (`"composed_root"`,
1109        // `"intent_hash"`, `"artifact_hash"`) — renaming any of them
1110        // is a wire-diagnostic change, not a typed-internal refactor.
1111        let names: Vec<&'static str> = ReceiptEnvelope::REQUIRED_PILLARS
1112            .iter()
1113            .map(|(name, _)| *name)
1114            .collect();
1115        assert_eq!(names, vec!["composed_root", "intent_hash", "artifact_hash"]);
1116
1117        // Pairwise-distinct check — the table's arity is small
1118        // enough for a hand-authored O(n^2) sweep, and a duplicate
1119        // would defeat the whole point of the enumeration.
1120        for i in 0..names.len() {
1121            for j in (i + 1)..names.len() {
1122                assert_ne!(
1123                    names[i], names[j],
1124                    "REQUIRED_PILLARS[{i}] and [{j}] share field name {}",
1125                    names[i],
1126                );
1127            }
1128        }
1129
1130        // control_hash is DELIBERATELY not in the table (it carries
1131        // the "empty means absent" semantic bit — see
1132        // `control_hash_opt` + `empty_to_none`). Pin the exclusion so
1133        // a future well-meaning addition that promotes control_hash
1134        // to a required pillar surfaces here as a contract change
1135        // rather than as a silent rejection of receipts the
1136        // substrate's own compose_root treats as valid absent-pillar
1137        // walks.
1138        assert!(
1139            !names.contains(&"control_hash"),
1140            "control_hash must not be in REQUIRED_PILLARS — its emptiness \
1141             is the substrate's absent-pillar convention",
1142        );
1143    }
1144
1145    #[test]
1146    fn verify_shape_rejects_each_required_pillar_when_emptied_with_the_typed_field_name() {
1147        // End-to-end pin at the `verify_shape` boundary — each entry
1148        // in `REQUIRED_PILLARS` must surface a
1149        // `ReceiptError::MissingField(field)` carrying the entry's
1150        // OWN name when its accessor's value is empty. Sweeps the
1151        // table so a future fourth required pillar picks up the
1152        // rejection through the SAME per-entry iteration + the SAME
1153        // shared `require_nonempty` peer, and a mis-wired accessor
1154        // (an entry naming "intent_hash" whose accessor reads
1155        // `self.artifact_hash`) surfaces here as a mismatched typed
1156        // rejection rather than as a silent semantic drift at
1157        // production.
1158        for (field, accessor) in ReceiptEnvelope::REQUIRED_PILLARS {
1159            let mut env = ReceiptEnvelope::build("test-suite", "i", "a", "c", None);
1160            // Empty ONLY the pillar under test by zeroing the field
1161            // through the wire-form struct's own mutable access
1162            // (which the `#[serde(deny_unknown_fields)]` wire shape
1163            // doesn't restrict at the Rust level).
1164            match field {
1165                "composed_root" => env.composed_root.clear(),
1166                "intent_hash" => env.intent_hash.clear(),
1167                "artifact_hash" => env.artifact_hash.clear(),
1168                other => panic!("unknown REQUIRED_PILLARS entry {other}"),
1169            }
1170            assert!(
1171                accessor(&env).is_empty(),
1172                "accessor for {field} did not read the emptied field",
1173            );
1174            let err = env
1175                .verify_shape()
1176                .expect_err("verify_shape must reject empty required pillar");
1177            assert_eq!(
1178                err,
1179                ReceiptError::MissingField(field),
1180                "verify_shape returned {err:?} — expected MissingField({field:?})",
1181            );
1182        }
1183    }
1184}