epiphany/crates/epiphany-layout-ir
Levi Neuwirth 9539b1652b layout-ir, engrave: ledger lines
Notes above or below the staff now get ledger lines — the gap the GUI surfaced
the moment a note is moved off the staff. Each notehead carries its StaffStep;
to_constrained emits one short horizontal stroke per whole step between the
staff (lines at steps 0..=8) and the note, reaching LEDGER_LINE_EXTENSION past
each side of the note's actual bounding box (so a wide whole note gets a wider
ledger), synthesized from the pitch so the strokes are deterministic and
hit-testable. The synthesis key splits component (high 64 bits) from signed step
(low 64) so two components of a very low note can never collide.

Ledger lines are fixed-width marks, not system-spanning lines, so the Engraver's
horizontal spacing must not scale them. is_rigid_width_stroke marks them; the
remap translates such a stroke rigidly by its *owning glyph's* column delta
(found by source, not the stroke midpoint — which for a wide head can fall nearer
a neighbouring column), so it keeps both its length and its offset from the
notehead. The spacing pass folds each ledger's extent into its notehead's slot,
so adjacent off-staff notes' ledgers reserve room and do not overlap. The stub
solver passes ledgers through unchanged.

Tests cover the step geometry, key distinctness (incl. steps below -128), the
bbox span, width preservation and offset (no-drift) through the Engraver, the
adjacent-overlap spacing, and an explicit two-whole-note off-staff drift case.
Render goldens regenerated.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01NAtEiJtt9yKVV1zjKYmZhS
2026-06-29 17:12:56 -04:00
..
src layout-ir, engrave: ledger lines 2026-06-29 17:12:56 -04:00
Cargo.toml Land epiphany-layout-ir (Agent E): layout IR + solver interface 2026-06-19 19:58:01 -04:00
DECISIONS.md layout-ir: a render-to-hit-test contract at the RenderIR boundary 2026-06-27 14:25:53 -04:00
README.md Land epiphany-layout-ir (Agent E): layout IR + solver interface 2026-06-19 19:58:01 -04:00

README.md

epiphany-layout-ir

The Epiphany layout intermediate representation and constraint-solver interface, implementing the normative requirements of Chapter 7 ("Layout Intermediate Representation") and the interface of Chapter 9 ("Constraint-Solver Interface") of the core specification (spec/core_spec.pdf). This is Agent E's crate per spec/QUICKSTART.md — it lands last among the implementation crates, building on Agent A's epiphany-determinism and Agent B's epiphany-core (and on Agent C's OperationKindTag for the edit-barrier types — see DECISIONS.md).

The IR sits between the score graph and two downstream consumers: the constraint solver, which resolves spacing and positioning, and the renderer, which produces final visual output. — Chapter 7

The score graph is the canonical truth about the music; this crate is a downstream projection of it. The transformation is a pipeline of four stages, each with its own type and a deterministic, provenance-preserving contract for the next.

What's here

Area Items Spec
Stage 1 — logical LogicalLayoutIR, LayoutRegion, composite LayoutObject, overrides/cross-region objects, to_logical Ch. 7 §"LogicalLayoutIR"
Stage 2 — constrained ConstrainedLayoutIR, SpringSlot, LayoutConstraint, GlyphObject, to_constrained Ch. 7 §"ConstrainedLayoutIR"
Stage 3 — resolved ResolvedLayoutIR, pages/systems/staves/measures, ResolvedGlyph Ch. 7 §"ResolvedLayoutIR"
Stage 4 — render (interface only) RenderIR, RenderPrimitive, RenderIRProducer, to_render Ch. 7 §"RenderIR"
Time axis canonical TimeAxisModel plus dynamic TimeAxis, including registered payload preservation Ch. 7 §"Layout Regions"
Provenance Provenance, LayoutObjectId, SynthesisKind, stable_layout_id (a pure function of the source — stable across relayouts) Ch. 7 §"Provenance"
Engraving decisions EngravingDecision/EngravingDecisionId/EngravingDecisionKind, DecisionSource Ch. 7 §"Engraving Decisions"
Vertical bands VerticalBand/VerticalBandId/VerticalBandKind Ch. 7 §"Vertical Bands"
Incremental cache LayoutCache, DependencyIndex, granular stage caches and invalidation Ch. 7 §"Incremental Layout and Caching"
Glyph catalog GlyphCatalog (metric-lookup interface) + in-tree BravuraCatalog, GlyphCatalogIdentity, SmuflVersion, FontId, GlyphMetric/GlyphAnchor, BRAVURA_METRICS/BRAVURA_VERSION, metrics_hash_for (MUSCFNTM-tagged) Ch. 7 §"Glyph Catalog Interface" / §7.3.2
Edit barriers EditBarrier, BarrierScope, BarrierCondition, ObjectKind, EditContext (precise scope evaluation), keyed on Agent C's OperationKindTag Ch. 8 §"Edit Barriers"
Solver interface ConstraintSolver (solve/solve_incremental, Send + Sync), SolverConfig/SolverBudget, SolverState, InvalidationSet, SolveReport, SolveStatus, SolverTier/SolverVersion, the v0 StubSolver Ch. 9
Round-trip round_trip, RoundTripReport, laid_out_object_ids Ch. 7 (v0 acceptance criterion 6)

The stub solver

Per the QUICKSTART, the v0 constraint solver is a stub: StubSolver returns SolveStatus::Solved with the input geometry verbatim (each glyph's resolved position is exactly its constrained baseline), preserves provenance, and reports all hard constraints satisfied. The real solver — Cassowary or otherwise — comes later (Chapter 9 specifies the interface, not the algorithm); v0 only needs to round-trip IR through the solver interface to prove the contracts hold. The one stub validates the full Chapter 7 §7.3.2 catalog identity and all slot, band, and geometry cross-references before reporting Solved. Explicit constraints are rejected because this interface-only solver cannot honestly evaluate them.

The round-trip (v0 acceptance criterion 6)

round_trip runs graph → LogicalLayoutIRConstrainedLayoutIR → stub-solved ResolvedLayoutIRRenderIR and asserts the contract every stage must satisfy:

  • the stub solver reports Solved with all hard constraints satisfied;
  • the complete Provenance of every object — source, synthesis, dependencies, and stable_id — survives every stage unchanged;
  • no two objects ever share a stable_id, so manifestation multiplicity is preserved (a source manifested in two regions stays two layout objects);
  • the stub solver returns the input geometry verbatim;
  • the set of score-graph sources recovered from the RenderIR is exactly the set laid out — a surjection onto graph identity (one source may back several manifestations, each with its own stable id).

Agent F's testkit drives this same entry point (layout_stub::round_trip) on the 10-measure single-staff hand-off fixture and the rich multi-region generator.

Algorithmic scope

Per the QUICKSTART ("a prototype baseline, not the product"), this crate implements the Chapter 7 IR contracts and interface types, not a production engraving engine. The real spacing and casting-off algorithms, quality-metric computation, constraint solver, and renderer remain later implementations of these interfaces.

Determinism

IR coordinates are single-precision staff spaces (StaffSpace(f32), Chapter 7 §7.2); the canonical ResolvedLayoutIR output quantizes them to the 1/1024 grid at serialization time (ResolvedLayoutIR::canonical_bytes), exactly as Appendix D §"Quantized Layout Coordinates" prescribes — quantization absorbs all f32 variation below 1/2048 staff space, so the canonical output is independent of the floating-point environment. The glyph-catalog identity hashes its consulted metrics (advance, bounding box, named anchors) under the MUSCFNTM domain tag, and the edit-barrier types carry a canonical encoding with set-valued fields emitted in canonical byte order (sorted and de-duplicated). See DECISIONS.md.

Tests

cargo test -p epiphany-layout-ir covers each module plus the round-trip on Agent B's valid_score / valid_score_rich generators. The end-to-end v0 acceptance gate (criterion 6) lives in the testkit.