Re-evaluated cost/benefit of Phase 8 vs Phase 9 after distinguishing three
concurrent goals:
• Goal A (Port): ~90% done, ~3 weeks remaining
• Goal B (CGAL): speculative, 12+ months, uncertain submission
• Goal C (Tool): research utility with novel features
Phase 8 full (3–4 weeks) would mostly serve Goal C plus optional Goal B.
Phase 9 (3 weeks) finishes Goal A unconditionally. Building Phase 8 in
full before Phase 9 risks 3-4 weeks of speculative architecture for a
hypothetical CGAL submission.
New strategy: Hybrid MVP.
Phase 8 MVP (3–5 days):
Conformal_map_traits.h concept + Default<Surface_mesh,K>
Discrete_conformal_map.h ONE entry: _euclidean()
4 named parameters Theta-map, max_iter, tol, pin
Concept-check header + Doxygen
Phase 9a (3–5 days): Inversive-Distance vs MVP API = acceptance test
Phase 9b + 9c (~2 weeks): Port truly complete
Phase 8 extensions: Only on concrete trigger
8a.2 generic FaceGraph trigger: Polyhedron_3 user
8c full doc trigger: submission planned
8d CGAL-format tests trigger: submission planned
8e YAML pipeline orthogonal, any time
Net committed budget: ~4 weeks for "port complete + CGAL MVP",
not 6–8 weeks for full Phase 8 + Phase 9.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
doc/concepts/declarative-pipeline.md — vollständige Design-Spezifikation:
1. Kernidee: Processing Units mit expliziten require/provide-Contracts
2. Token-Vokabular: 30 Tokens in 7 Kategorien
input, setup, Gauss-Bonnet, solver, topology, layout, period/domain/output
3. YAML-Schema: Vollständige Syntax inkl. Parameterdefaults aller Units
4. Validierungsalgorithmus: monoton wachsendes provided-Set, Pre-Execution-Check
5. 5 vollständige Beispiele:
A — Euklidische Uniformisierung Torus (τ-Ausgabe)
B — Sphärische Uniformisierung (cathead.obj)
C — Hyperbolische Uniformisierung Torus (Poincaré-Disk)
D — Volle Pipeline mit Periodenmatrix + 5×5-Kachelung
E — Absichtlich fehlerhaftes Beispiel mit Validator-Fehlermeldungen
6. C++-Mapping: alle YAML-Unit-Namen → C++-Funktionen + Header
7. Implementierungsplan (Phase 8e): pipeline.hpp + CLI-App + YAML-Abhängigkeit
8. Design-Entscheidungen: YAML vs. JSON/TOML, explizit vs. auto-inference,
linear vs. DAG, eine Geometrie pro Datei
doc/api/cgal-package.md: Link zum Konzeptdokument ergänzt.
README.md: Link in Dokumentationstabelle ergänzt.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
README.md: reduced from 703 to ~75 lines — what/why, status, quick
start, minimal usage example, navigation table to doc/ files.
doc/architecture/overall_pipeline.md: trimmed — roadmap, extension
points, declarative pipeline YAML, and references sections removed
(each now has its own dedicated file). Replaced with a link table.
New files:
doc/getting-started.md — build modes, single-test invocation, CLI
doc/api/pipeline.md — full pipeline API with code for all 3 geometries
doc/api/extending.md — new functionals, geometry modes, Java porting guide
doc/api/contracts.md — processing unit preconditions/provides table
doc/api/cgal-package.md — Phase 8 CGAL package design + YAML pipeline (TODO)
doc/math/geometry-modes.md — Euclidean/Spherical/HyperIdeal comparison
doc/math/references.md — all papers by module
doc/roadmap/phases.md — Phases 1–10 with porting/research boundary
doc/roadmap/java-parity.md — Java vs C++ feature parity table
doc/contributing.md — language policy, test standards, release flow
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>