epiphany/crates/epiphany-ops
Levi Neuwirth f62f5d4276 Agent K M2b (Group 2): cross-cutting CRUD operations
Second broad-K0 subsystem group — two new value-typed ops reusing M1's proven
disciplines (additive: OperationKind variants 13-14, new apply arms + reduction
methods; framework frozen):

- DeleteCrossCutting { structure: TypedObjectId } — delete-wins tombstone of a
  cross-cutting structure (idempotent concurrent deletes; guarded to the
  Tie/Slur/Beam/Spanner kinds). Drops the transient endpoint/LWW indices so a
  later event-tombstone re-anchoring pass never re-processes the deleted
  structure.
- ModifyCrossCutting { structure: CrossCuttingValue } — LWW field-overwrite by
  the structure's id; concurrent differing => StructuralFieldCollision. Mirrors
  modify_event (resolved value lives in the graph, not MaterializedState);
  re-derives endpoints from the new value, and mirrors CreateCrossCutting's
  beam->=2 / endpoints-live preconditions.

Graph materialization (reduce_onto): graph_delete_cross_cutting removes the
structure by id; graph_modify_cross_cutting replaces it in place by id, across
all four kinds (Slur/Tie/Beam/Spanner). New last_cross_cutting_modify LWW map,
synced through WorkingSnapshot/snapshot/restore.

Migration: v1-native (no lossy v0 predecessor) -> project/migrate by identity;
group1_and_group2_kinds_round_trip_by_identity extended to cover them.

Coverage:
- testkit operation_payload + ops fuzz gen_payload now emit both kinds, so the
  convergence / determinism / migration-equivalence gates exercise the
  bookkeeping projection at scale.
- Targeted reduce_onto graph tests (tests/graph_reduction.rs) cover every kind
  arm of graph_delete/graph_modify_cross_cutting (Slur/Tie/Beam/Spanner) plus
  the beam->=2 reject branch of modify, with check_invariants; plus two
  bookkeeping unit tests (delete tombstones; concurrent differing modify
  conflicts).

Not wired into graph_edit_session (criterion 1): doing so requires creating
structures in the session, which exposes a pre-existing M1 reanchor/graph-delete
divergence (a slur whose endpoint event is deleted is re-anchored in bookkeeping
but removed from the graph). That is a separate DeleteEvent fix; the targeted
reduce_onto tests above give the M2b graph paths guaranteed coverage meanwhile.

Gates: build/fmt/clippy -D warnings clean; cargo test --workspace green (ops lib
53, ops graph_reduction 18); conformance_suite scale 1 passes. Catalog sections +
DECISIONS for these ops land in M2e per the staged plan. The unrelated Agent-I
working tree is left uncommitted; this commit stages only ops/testkit.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-25 14:31:24 -04:00
..
examples A B C D F 2026-06-19 12:42:31 -04:00
src Agent K M2b (Group 2): cross-cutting CRUD operations 2026-06-25 14:31:24 -04:00
tests Agent K M2b (Group 2): cross-cutting CRUD operations 2026-06-25 14:31:24 -04:00
Cargo.toml A B C D F 2026-06-19 12:42:31 -04:00
DECISIONS.md Agent K M2a review follow-up: graph-materialization fixes for the leaf-field ops 2026-06-24 18:25:48 -04:00
README.md Land M1 + M2 (Agent C): framework edge fixes and real-Score graph integration 2026-06-21 16:37:51 -04:00

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

  1. A single reduction-order function. canonical_reduction_order performs deterministic causal topological ordering, using the intrinsic stamp tuple (physical, logical, replica, counter) only among ready operations.
  2. Order-independent equivocation. A duplicate OperationId with different canonical bytes transitions its slot to Equivocated regardless of which envelope arrived first (Pass 10). Equivocated slots contribute nothing to reduction; dependents are held pending.
  3. Content-derived facts. ConflictId and IntegrityAnomalyId are 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.
  4. Byte-identical materialized state. MaterializedState::canonical_bytes serializes the effect log, conflict registry, anomaly register, object existence, spellings, and LWW fields in their normative orders.
  5. Real graph materialization. OperationSet::reduce_onto(&base_score) returns GraphMaterialization { 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 ~6080-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.