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>
167 lines
4.1 KiB
Markdown
167 lines
4.1 KiB
Markdown
# Phase 8 — CGAL Package Design
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> **Status: planned.** This document describes the target architecture for Phase 8.
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> No code has been written yet. The design is informed by the CGAL package submission
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> guidelines at https://www.cgal.org/developers.html
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---
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## Goal
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Integrate conformallab++ into the CGAL library as a proper CGAL package:
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`Discrete_conformal_map`. The package must satisfy all CGAL submission requirements:
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traits-class design, Doxygen documentation, CGAL-format test suite, and coverage of
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the CGAL coding conventions.
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---
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## 8a — Traits class & concepts
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The current code is tightly coupled to `CGAL::Surface_mesh<Point3>`. Phase 8a introduces
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a traits class that separates the mesh type from the algorithm:
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```cpp
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// TODO(Phase 8a): implement this header
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// include/CGAL/Conformal_map_traits.h
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template<
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typename MeshType, // any CGAL halfedge mesh
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typename KernelType, // CGAL kernel
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typename ScalarType = double
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>
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struct Conformal_map_traits {
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using Mesh = MeshType;
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using Kernel = KernelType;
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using FT = ScalarType;
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// ... vertex/edge/face descriptor types
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// ... property map access
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};
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```
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Concept checks will ensure any user-provided mesh satisfies the halfedge mesh concept.
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---
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## 8b — Public header hierarchy
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A clean public API separate from the internal implementation:
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```
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include/CGAL/
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Discrete_conformal_map.h ← single user-facing include
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Conformal_map_traits.h
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Conformal_newton_solver.h
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Conformal_layout.h
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Conformal_cut_graph.h
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conformal_map_package.h ← PackageDescription
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```
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All existing `include/*.hpp` headers remain as internal implementation details,
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not part of the public CGAL API.
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---
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## 8c — CGAL-style documentation
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```
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doc/Conformal_map/
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PackageDescription.txt
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User_manual.md
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Reference_manual.md
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fig/ ← pipeline diagrams, mathematical figures
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```
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All public functions and concepts require Doxygen comments following the CGAL style.
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---
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## 8d — CGAL test format
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```
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test/Conformal_map/
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CMakeLists.txt ← CGAL-format, uses find_package(CGAL)
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test_euclidean_functional.cpp
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test_newton_solver.cpp
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...
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```
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The existing GTest suite remains. CGAL-format tests are added alongside as a separate
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target, following the CGAL test infrastructure conventions.
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---
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## 8e — Declarative YAML pipeline
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A lightweight YAML format for reproducible experiments. The CLI accepts
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`--pipeline experiment.yml`; the validator checks `require`/`provide` tokens
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before execution.
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**Full concept & design specification:** [doc/concepts/declarative-pipeline.md](../concepts/declarative-pipeline.md)
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— token vocabulary, validation algorithm, 5 complete examples, implementation plan.
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Abbreviated example:
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```yaml
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pipeline:
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name: flat_torus_period
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geometry: euclidean
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input:
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source: data/torus.off
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steps:
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- id: setup
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unit: setup_euclidean_maps
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provide: [maps_initialised]
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- id: gauss_bonnet
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unit: enforce_gauss_bonnet
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require: [maps_initialised]
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provide: [gauss_bonnet_satisfied]
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- id: solve
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unit: newton_euclidean
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require: [gauss_bonnet_satisfied]
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params:
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tol: 1.0e-10
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max_iter: 200
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provide: [x_converged]
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- id: cut
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unit: compute_cut_graph
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require: [mesh_closed]
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provide: [cut_graph]
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- id: layout
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unit: euclidean_layout
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require: [x_converged, cut_graph]
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params:
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normalise: true
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provide: [layout_uv, holonomy]
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- id: period
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unit: compute_period_matrix
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require: [holonomy]
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provide: [tau]
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output:
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layout: out/torus_layout.off
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json: out/torus_result.json
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tau: out/torus_tau.txt
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```
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The contract table in [contracts.md](contracts.md) defines the valid `require`/`provide`
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token vocabulary.
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---
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## TODO
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- [ ] Design `Conformal_map_traits.h` interface (8a)
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- [ ] Define concept requirements for `MeshType` (8a)
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- [ ] Create `include/CGAL/` header skeleton (8b)
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- [ ] Write `PackageDescription.txt` (8c)
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- [ ] Port GTest tests to CGAL format (8d)
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- [ ] Implement YAML validator (8e)
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- [ ] CLI: `--pipeline` flag (8e)
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