`cmn-24` was declared in the built-in pitch-space table as "CMN extended with
24-EDO quarter-tone accidentals" while Chapter 2 fixed a `Cmn` position's
absolute semitone at `nominal.chromatic() + alteration + 12*octave` for every
space, unqualified. Two ratified MUSTs, each correct in its own chapter,
jointly unsatisfiable -- P13-I1's two-listings drift in another costume.
The tracker parked this as "a data-model major". It is not.
`req:binfmt:frozen-layout` names `PitchSpacePosition` as one of four open
value-layer vocabularies, so three of the four available options cost no schema
event at all. The one that *is* a major -- regrading `alteration` onto a finer
fixed unit -- is also the only one that rewrites the canonical bytes of every
pitch ever authored, and it buys a single grid while `edo-31`/`53`/`72` stay
unrepresentable. It is explicitly ruled out.
Ratified instead: a `Cmn` alteration and a `CmnChromatic` modification are
denominated in steps of the enclosing pitch space's chromatic layer. One rule,
not a special case for one catalog row -- it settles `cmn-24`, `maqam-base`,
and `PitchSpaceModification::CmnChromatic` together. `cmn-12`'s step is the
semitone, so every score in existence keeps its meaning and **not one canonical
byte moves**; `canonical_pitch_bytes` writes the space id before the position,
so a `cmn-24` E-half-flat and a `cmn-12` E-flat already derive different
`PitchId`s.
The defect was larger than `cmn-24`. Nothing bound a `Cmn` position to a
12-chromatic space: `ScalePosition { space: "edo-31", position: Cmn { .. } }`
constructed, validated, encoded and transposed, and meant nothing. Neither
`Pitch::transposed` nor `twelve_tet_semitone` ever read the space. Until Push
4b resolves `PitchSpaceId` to a `DiatonicOverChromatic` structure, both now
fail closed outside provable built-in `cmn-12` -- a capability check, not a
claim that the identifier defines the structure. False refusal for a
score-defined 12-chromatic space is accepted over silently wrong arithmetic.
No wire change. `TransposeRefusal::PitchSpaceUnavailable` is a new *diagnostic*
mapping to the existing `PreconditionFailureReason::PitchSpaceMismatch` (6);
appending a discriminant for a guard Push 4b must delete would have reserved a
permanent wire value for a temporary mechanism, in exactly the artifact the
fail-closed ruling exists to protect. Assignments 10-15 are untouched.
Operation Catalog 0.9.0 records the broadened case *and* amends the 0.8.0
rationale, which asserted that discriminant 6 never consults a pitch-space
registry -- true of the non-`Cmn` check, false of this one.
Two spec-side fixes found in review, neither visible to any test: the
`TranspositionInterval` listing had lost its `pub chromatic_steps: i32,`
declaration to a comment rewrite, leaving a one-field struct above the sentence
"Both components are load-bearing"; and `pitch.rs` still documented
`alteration` as "in semitones", contradicting the requirement landing beside
it. Both new requirements are now cited from the code that implements them --
the label checker catches cited-but-undefined, not the reverse.
Push 4b keeps the registry work and loses the contradiction. P13-S4 is the last
item open in Batch 3.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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| examples | ||
| src | ||
| tests | ||
| Cargo.toml | ||
| DECISIONS.md | ||
| README.md | ||
README.md
epiphany-ops
The Epiphany concurrent semantics: the operations through which the score
graph becomes a live model, and the deterministic reduction by which a set of
operations becomes a materialized score state. Implements the normative
requirements of Chapter 6 (Semantic Operations and Concurrent Reduction) of
the core specification (spec/core_spec.pdf). This is Agent C's crate per
spec/QUICKSTART.md, building on Agent A's epiphany-determinism and Agent B's
epiphany-core.
A score's state is defined by the set of operations committed to it. Any materialized graph is a deterministic reduction of that set; caches, snapshots, and partial reductions are acceleration structures, never the source of truth. — Chapter 6, Design Principles
The thesis in one paragraph
The replicated operation set is a grow-only CRDT: replicas accumulate envelopes and converge on the same set. The materialized graph is not a CRDT — it is the deterministic reduction of that set in a single canonical order (causal-first, then the HLC tuple). Any permutation of the same envelopes reduces to byte-identical materialized state. That property is the determinism heart of the architecture, and the reduction fuzzer is its tripwire.
What's here
| Area | Items | Spec |
|---|---|---|
| Stamps | HybridLogicalClock, OperationStamp, the reduction & monotonicity tuples |
Ch. 6 §"Operation Identity and Stamps" |
| Causal context | CausalContext (dotted version vector), covers, the missing-predecessor signal |
Ch. 6 §6.2 |
| Payloads | OperationKind, the discriminator-only OperationKindTag, OperationPayload, the §6.10 representative ops |
Ch. 6 §"Operation Envelopes", §6.10 |
| Envelopes | OperationEnvelope, EnvelopeHash (MUSCENVH), well_formed (incl. stamp.id == id) |
Ch. 6 §6.4 |
| Slots | OperationSlot::{Single, Equivocated}, the order-independent (Pass-10) transitions |
Ch. 6 §6.5 |
| Anomalies | AnomalousReplicaSegment, IntegrityAnomaly/Kind, the HLC-monotonicity detector |
Ch. 6 §6.6; Ch. 5 §"System-Derived Counter Collisions" |
| Effects | OperationEffect, NoOpReason, the typed PreconditionFailureReason, RepairRecord/RepairKind |
Ch. 6 §6.3.2, §6.5 |
| Conflicts | ConflictRecord, ConflictKind, content-derived ConflictId (derive_conflict_id), the registry, resolution |
Ch. 6 §6.4 |
| Transactions / undo | TransactionDescriptor with the causal-prior-descriptor rule, UndoTransactionPayload / UndoPolicy |
Ch. 6 §6.6, §6.8 |
| Operation set | OperationSet: accept pipeline (well-formedness → slot → causal), grow-only |
Ch. 6 §"Envelope Acceptance" |
| Reduction | canonical_reduction_order (single function), MaterializedState, the reduction driver |
Ch. 6 §6.3 |
The determinism this crate enforces
- A single reduction-order function.
canonical_reduction_orderperforms deterministic causal topological ordering, using the intrinsic stamp tuple(physical, logical, replica, counter)only among ready operations. - Order-independent equivocation. A duplicate
OperationIdwith different canonical bytes transitions its slot toEquivocatedregardless of which envelope arrived first (Pass 10). Equivocated slots contribute nothing to reduction; dependents are held pending. - Content-derived facts.
ConflictIdandIntegrityAnomalyIdare derived from content, so two replicas reducing the same set agree on every conflict and anomaly id — the conflict registry and anomaly register are deterministic materialized facts, not local bookkeeping. - Byte-identical materialized state.
MaterializedState::canonical_bytesserializes the effect log, conflict registry, anomaly register, object existence, spellings, and LWW fields in their normative orders. - Real graph materialization.
OperationSet::reduce_onto(&base_score)returnsGraphMaterialization { state, score }. The graph is mutated in the same canonical order and compares by canonical event identity, independent of arena storage order.
Hand-off gates
Run the gate harnesses (QUICKSTART, Agent C):
cargo test -p epiphany-ops
cargo run --release -p epiphany-ops --example fuzz_reduction # 10k iters, seed 0
cargo run --release -p epiphany-ops --example fuzz_reduction 100000 7 # soak, seed 7
- Reduction determinism — every randomized envelope set reduces to byte-identical materialized state under any acceptance order (v0 acceptance criteria 1 and 5).
- Equivocation order-independence — every duplicate-id-with-different-bytes scenario equivocates regardless of arrival order (v0 acceptance criterion 3).
The integration tests (tests/concurrent_reduction.rs) exercise these plus
transaction atomicity, descriptor precedence, anomaly exclusion, and forward
undo through the public API.
Scope and decisions
Chapter 6 specifies the framework and a representative selection of
operations; the full ~60–80-primitive catalog is an explicit open question
(§6.11) deferred to the Operation Catalog companion. This crate implements the
framework in full and the representative operations, which is sufficient to
exercise every reduction discipline. The representative operations can also
reduce onto an epiphany_core::Score: insert/delete, voice promotion, supported
cross-cutting structures, system breaks, migration checks, transaction
rollback, and undo mutate the real graph while preserving Agent B's invariants.
reduce() remains the base-free CRDT/bookkeeping API; reduce_onto() is the
graph-aware editing path. See DECISIONS.md for remaining payload boundaries.
Per QUICKSTART "Don't do these": undo is the spec's forward compensating
operation, never inverse-based; unsafe is forbidden; everything is sync.