epiphany/crates/epiphany-testkit
Levi Neuwirth 043c18cabf P13-S1: every requirement is named, and now it is also numbered
168 of core_spec's 207 requirement blocks carried no `\label`, so no conformance
claim could cite them. All 207 are labelled now; the suite is 277/277.

Labelling alone would not have delivered a citable requirement. **No document in
the suite numbered its requirements.** `\newtcolorbox{requirement}` had no
counter, so a `\label` inside one bound to the enclosing sectioning unit and
`\ref` rendered a *section* number: core_spec said "see Requirement 2.5.4" where
2.5.4 is a subsubsection, and 61 of its 207 requirements shared a rendered number
with another -- one number, 5.6.3, was shared by six. Adding 168 labels to that
scheme would have produced 168 citable-but-ambiguous references. All six documents
now carry a real counter, numbered within chapter, and the box title shows it, so
a reader can see which requirement they are looking at. 277 labels, zero
collisions.

The counter is stepped with a `code=` key rather than tcolorbox's own
`auto counter`, and that is not a style choice. `auto counter` steps its counter
for `\label` purposes inside an internal `\sbox`, and `\refstepcounter`'s effect
on `\@currentlabel` is a local assignment discarded when that box closes --
before a `\label` written in the box body ever runs, which is how every
requirement in this suite is labelled. Measured on a three-box test document:
titles rendered `1.1 1.2 1.3` while the three refs resolved to `1.1 1.1 1.2`. The
idiomatic form would have shipped 207 silently wrong cross-references under
correct-looking numbers.

`requirement_labels.rs` locks all of it: every requirement block in every
`spec/*.tex` carries a label; labels match `req:<area>:<slug>`; the area matches
the chapter; labels are unique suite-wide; no `req:*` string cited anywhere in the
repository is undefined; and the counter is stepped where the label can see it --
a regression lock, because reverting to `auto counter` leaves every other check
green while the references break.

The citation check needed an escape. It cannot tell "cite this requirement" from
"name a label that does not exist", and documenting a dangling label is a
legitimate thing to do -- it had already rewritten a scoping plan's prose into a
euphemism to make itself pass. `DISCUSSED_NOT_CITED` carries the one such string
with its reason.

That string was the pass's other finding. `req:layoutir:vertical-bands` was cited
twice in the Pass-12 log and never existed. It should not be repointed at the two
*ownership* requirements: those govern which band a primitive belongs to, while
both entries describe the inter-staff solve realizing a band's declared *height*,
which no requirement governs at all. That is why the log invented a name. Both
citations now say so, and the gap is filed as P13-S4 -- shipped behaviour with no
governing requirement.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-21 18:27:52 -04:00
..
benches Push 4: Binary Format companion, F1 benches, subquadratic reduction order 2026-07-02 19:02:07 -04:00
examples Text Projection: whole-document conformance, and a corpus with teeth 2026-07-21 15:44:25 -04:00
src Text Projection: whole-document conformance, and a corpus with teeth 2026-07-21 15:44:25 -04:00
tests P13-S1: every requirement is named, and now it is also numbered 2026-07-21 18:27:52 -04:00
Cargo.toml Text Projection: whole-document conformance, and a corpus with teeth 2026-07-21 15:44:25 -04:00
DECISIONS.md Text Projection 0.5.0: the projection is schema-directed 2026-07-09 22:40:27 -04:00
README.md Push 4: Binary Format companion, F1 benches, subquadratic reduction order 2026-07-02 19:02:07 -04:00

README.md

epiphany-testkit

Agent F's crate per spec/QUICKSTART.md: the cross-cutting conformance testkit. It is the architecture's tripwire — the suite that proves the other crates work end to end and that runs in CI (see .github/workflows/ci.yml).

It provides:

  • Deterministic property-test generators for the public types of A (epiphany-determinism), B (epiphany-core), C (epiphany-ops), D (epiphany-bundle), and E (epiphany-layout-ir). Agent B's score-graph generators/shrinkers are re-exported as generators::graph.
  • The canonical round-trip harness (roundtrip) — v0 acceptance criterion 4 (typed values + bundle container; the bookkeeping MaterializedState round-trip is retained as assert_reduction_serialization_stable).
  • The CRDT convergence harness (convergence) — criteria 1 and 5. Criterion 1 proper is real-Score convergence through reduce_onto (run_graph_convergence); the byte-canonical bookkeeping-projection convergence (assert_convergence) backs criterion 5.
  • The equivocation harness (equivocation) — criterion 3.
  • The crash-recovery harness (bundle_harness) — Agent D's gate, criterion 2.
  • The manifest-selection harness (bundle_harness).
  • The layout round-trip harness (layout_stub) — criterion 6.
  • The audit regression guards (negative) — one guard per defect the Agent C framework audit surfaced (the M1 fixes), so a regression trips this suite directly.

All harnesses are real

The QUICKSTART charters Agent F to "build against A and stubs for the others." All five implementation crates — A, B, C, D, and now E (epiphany-layout-ir) — have shipped, so every harness drives the real crate.

Harness Backend Status
roundtrip (criterion 4) A + B + C + D, real real
bundle_harness (criterion 2, manifest selection) D, real real
convergence (criteria 1, 5) C (epiphany-ops), real real
equivocation (criterion 3) C (epiphany-ops), real real
layout_stub (criterion 6) E (epiphany-layout-ir), real real

For criteria 1, 3, and 5 the testkit drives the real epiphany_ops::OperationSet / canonical_reduction_order / reduce and also re-exports Agent C's own authoritative gates (convergence::ops_reduction_determinism_fuzz, equivocation::ops_equivocation_fuzz). The layout_stub module — once a faithful in-tree stub of Chapters 7 & 9 — now re-exports the real epiphany-layout-ir IR types and stub solver behind the same round_trip signature; the provenance-preservation contract is implemented and tested inside that crate. (The "stub" in the module name now refers to the spec-sanctioned stub constraint solver, not to a stubbed crate.)

Criterion 1: real-Score vs. reducer-bookkeeping convergence

Criterion 1 proper (convergence::run_graph_convergence, the acceptance criterion_1_convergence test) is real-Score convergence: a real ~50-bar, two-voice base epiphany_core::Score is edited by two replicas through OperationSet::reduce_onto, and the entire materialized graph — arena, voices, tombstones, cross-cutting, and the bookkeeping state — must be identical under every delivery order, pass check_invariants, and genuinely grow both edited voices (non-vacuity). The session targets the base's actual voice ids (generators::graph_edit_session), so it exercises the integration point, not a synthetic id space.

The earlier, narrower gate is retained and honestly renamed (reducer_bookkeeping_convergence): it converges the byte-canonical bookkeeping projection (OperationSet::reduceMaterializedState::canonical_bytes) — the Chapter 6 §6.3 ledger (effects, conflicts, anomalies, tombstones, spellings, pending), not the full musical graph. It still backs criterion 5 and proves causal-first ordering (convergence::assert_causal_order_respected, run_authoritative_reduction_gate). The bookkeeping two-staff scenario remains instantiated — a real ~50-bar (TWO_STAFF_BARS) session whose staves are asserted populated by generators::assert_two_staff_populated, not just modeled.

Criterion 4: what is and isn't tested

Criterion 4 has three tiers — two asserted now, one pending item 5:

  • Real decode round-trips (these catch decoder / canonicalization defects): the generic CanonicalEncode/CanonicalDecode property swept across every typed identifier, both RationalTime arms, and every TypedObjectId discriminant; the bundle Manifest (encode → decode → encode fixpoint, with a rich generator exercising snapshots, blobs, extensions, varied profiles, retention, and the optional roots); the FixedHeader; and the Superblock slot encoding. Crucially, the decoders are shown to validate: corrupting a manifest or header makes decode reject it (assert_manifest_decode_rejects_corruption, assert_header_decode_rejects_corruption).

  • A reducer-bookkeeping serialization tier (reducer_bookkeeping_serialization, via assert_reduction_serialization_stable): a real OperationSet is reduced to its MaterializedState::canonical_bytes() — the canonical bookkeeping state, not the whole musical Score — which is stored as a Snapshot chunk referenced by the manifest's canonical_base, survives the bundle's content-addressed store (hash-verified on reopen), decodes through MaterializedState::decode_canonical, compares structurally with the original reduction, and re-serializes byte-identically. The decoder validates nested tags, lengths, primitive values, canonical form, and trailing bytes. Musical sensitivity is proven two ways: assert_content_mutation_changes_serialization (a cloned operation set with identical ids/stamps/causal contexts but one changed payload reduces to different bytes — the rebuttal to an id-only serializer) and assert_distinct_scores_serialize_differently. The materialized real Score itself is shown reproducible today (full_score_materialization_is_reproducible, structural equality across delivery orders) — the determinism precondition a byte codec depends on.

  • The full-Score byte round-trip (criterion_4_full_score_byte_roundtrip, via assert_score_serialization_stable): item 5's whole-score codec (epiphany_core::Score::canonical_bytes / decode_canonical) has landed, so a real ~50-bar Score — materialized through Agent C's reduce_onto — now encode → decode → re-encodes byte-identically through a real bundle snapshot (hash-verified on reopen), with the decoded Score structurally equal to the original. This is the whole musical graph (arena, voices, regions, cross-cutting, tombstones), not the bookkeeping projection.

Decisions (per QUICKSTART "Make each one once and document it")

  1. No platform entropy in the harness. Appendix D §"Randomness" forbids platform entropy in canonical state; the testkit holds itself to the stronger rule that no platform entropy enters the harness at all. Everything draws from rng::Rng (a wrapper over Agent A's vendored SplitMix64, with unbiased bounded draws and an overflow-safe full-range range), so every failure reproduces from its seed.
  2. Drive the real crate once it ships; stub only what hasn't landed. Earlier in development epiphany-ops (C) and epiphany-layout-ir (E) were in-flight and their harnesses ran against faithful in-tree stubs; now that both have shipped, every harness drives the real crate and re-exports its gates.

Flagged for a future spec pass (Pass 11 candidates)

Per the QUICKSTART, implementation-discovered gaps are batched, not improvised:

  • Whole-graph (epiphany_core::Score) wire format — landed (item 5). A direct canonical byte codec for the core Score now exists (epiphany_core::Score::canonical_bytes / decode_canonical), and criterion_4_full_score_byte_roundtrip exercises it on a real reduce_onto materialization through a bundle snapshot. The prototype byte form predates the Binary Format companion specification and is to be reconciled with it (see epiphany-core/DECISIONS.md, P11-4).
  • Layout harness re-pointed. epiphany-layout-ir has landed, so layout_stub now drives the real IR types behind the same round_trip signature (done). IR coordinates are f32 staff spaces, quantized only when serializing canonical ResolvedLayoutIR (Appendix D); see that crate's DECISIONS.md for the remaining layout-specific Pass 11 candidates (the OperationKindTag variant set and the layout-object id derivation).

Performance benches (Chapter 10 budgets, worklist F1)

benches/ holds the criterion benches for the spec's measurable Chapter 10 budgets (see DECISIONS.md F0 for why they live in this crate, F1 for every call made). Criterion measures; the budget gate (src/budget.rs) asserts: each bench's main() ends by re-timing every budget row and exiting nonzero if a Pass-marked row misses its threshold. Known-pending rows are marked Xfail(reason) in the bench source next to the numeric budget — a miss is reported and tolerated, and a pass prints a loud promotion notice so stale markings cannot linger. This is the "F surfaces, K fixes" handshake, and its inaugural round has completed: the bench documented the reducer's O(n²) canonical_reduction_order failure at scale, and Agent K's subquadratic rewrite (see epiphany-ops/DECISIONS.md) flipped the xfail row to Pass.

row budget (spec Chapter 10) expectation
reduction/1000 > 10,000 envelopes/s, cold Pass (~674K env/s measured)
reduction/10000 > 10,000 envelopes/s, cold Pass (~257K env/s measured)
reduction/50000 > 10,000 envelopes/s, cold Pass (~87K env/s measured; promoted from Xfail by Agent K's reducer fix — was ~1.7K env/s)
bundle/typical_edit_commit ≤ 50 ms (append + manifest + superblock flip, fsync'd) Pass (~15 ms)
bundle/open_bootstrap_read ≤ 200 ms (manifest + bootstrap chunks) Pass (moderate-corpus stand-in)
# Full run (includes the 50K cold-reduction point, ~0.6 s per iteration):
cargo bench -p epiphany-testkit

# The reduced CI shape: smaller sampling, 50K point skipped (PR CI runs this):
EPIPHANY_BENCH_QUICK=1 cargo bench -p epiphany-testkit

The gate is a calibrated median over a few iterations, deliberately not the spec's p99-over-1000-iterations conformance methodology (that is the reference suite's job; the deviation is documented in src/budget.rs).

Running

# Unit + acceptance tests (a meaningful slice, under the cargo test timeout):
cargo test -p epiphany-testkit

# The full conformance suite at scale, outside the test timeout (includes Agent
# A's 1,000,000-iteration determinism gate and Agent C's reduction/equivocation
# gates):
cargo run --release -p epiphany-testkit --example conformance_suite        # scale 1
cargo run --release -p epiphany-testkit --example conformance_suite 10     # soak
cargo run --release -p epiphany-testkit --example conformance_suite 0      # smoke

The six v0 acceptance criteria are asserted in tests/acceptance.rs, one test per architecture layer.