56f13d7c4f3c9f88cb886892c9cff885b13c9e19
31 Commits
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26f4f0637d |
docs: citation audit + correct 8 mis-citations; add Phases 12/13
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External reviewer pass over the literature references. Verified entries against arXiv/DOI/publisher and corrected misattributions that had propagated across the docs. Corrected citations (consistent across all docs): - Bowers-Bowers-Lutz 2026: title was the 2017 paper's -> "Rigidity of Koebe Polyhedra and Inversive Distance Circle Packings" - Liouville theorem: "Springborn 2019" -> Pinkall & Springborn, Geom. Dedicata 214 (2021) - Bobenko-Pinkall-Springborn: "G&T 14 (2010)" -> G&T 19(4) (2015), 2155-2215 - Optimal Cone Singularities: "Crane, Soliman, Ben-Chen, Schroeder" -> Soliman, Slepcev, Crane, ACM TOG 37(4) - Schlaefli formula: "Rivin, Springborn 1999" -> Rivin, Schlenker - Quasiconformal distortion: "Springborn, Veselov" -> Born, Buecking, Springborn (arXiv:1505.01341) - Period matrices: "Bobenko, Buecking 2009" (was Bobenko-Mercat-Schmies' title) -> Bobenko-Mercat-Schmies 2011 + genuine Bobenko-Buecking 2021 - Fabricated entry: "Alexa 2020, DOI 10.1145/3414685.3417840" pointed to an unrelated paper (Pixelor) -> Bunge, Herholz, Kazhdan, Botsch 2020 - Stripe Patterns: "Bonneel et al. 2015" -> Knoeppel, Crane, Pinkall, Schroeder 2015 Equation-number corrections (verified against the PDFs): - Glickenstein 2011 "eq. 4.6" -> "§5.2" (no such equation label exists) - Springborn 2020 "eq. 4.6" -> "§4 variational gradient" - inversive-distance attribution softened to classical inversive distance Other: - DBFEnergy bibliography (separate repo) and convergence half-sentence in novelty-statement.md §3.3 (Bobenko-Buecking 2021) - Status legend (implemented vs planned) at top of references.md - New Phase 12 (decorated DCE & geometric transition, Chain A, near-term) and Phase 13 (canonical tessellations & polyhedral realisation, Chain B capstone) in phases.md + research-track.md; 10c scope-boundary note clarifying infrastructure vs Lutz-specific algorithms Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> |
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ca936b7652 |
docs: note high-precision requirement for Phase 9c/10 uniformization
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The Java uniformization classes (FundamentalPolygonUtility, CanonicalFormUtility) rely on the *Big arbitrary-precision geometry (MathContext(50)) because products of hyperbolic isometry generators grow exponentially and double fails to verify the group relation ∏gᵢ = Id. Record this planning-relevant prerequisite and resolve the contradiction in java-parity.md, which previously listed *Big as permanently out of scope. - CLAUDE.md: † note on the Phase-9 not-yet-ported table - java-parity.md: *Big exception (localized high-precision substrate for 9c/10) - phases.md: precision prerequisite as 9c sub-task + effort estimate - design-decisions.md: new "Scalar type: double, with one localized exception" Core flattening (Newton/energy/Eigen solver) stays double; the substrate (cpp_dec_float_50 / mpreal) is localized to the uniformization module only. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> |
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09a68a4569 |
release: v0.10.0 — reviewer-ready release
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Post-merge consistency commit:
* CITATION.cff version 0.9.0 → 0.10.0, date 2026-05-26
* CHANGELOG.md — new "[0.10.0]" section listing all 13 commits
that landed across PRs #17 / #18 / #19
* Post-merge gate fixes:
- doxygen_groups.h + doxygen_namespaces.h gain \\file briefs
- .codespellrc extended (honour, thead, optimiser)
- compile-time.md: unbalanced backtick on line 102 fixed
(was confusing Doxygen's verbatim-block detector)
Final gate state on the merged main:
✅ 259/259 tests pass
✅ test-count consistency
✅ markdown links 166/166 resolve (43 .md files)
✅ CGAL conventions 0/8 violations
✅ license-headers 68/68 carry MIT SPDX
✅ codespell 0 typos
✅ shellcheck 0 findings (18 scripts)
✅ Doxygen 396/396 symbols, 0 warnings
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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e874f73e29 |
docs+lint: post-merge consistency fixes after PRs #17/#18/#19 landed
Three small cleanups surfaced by running the full gate sweep on the merged main: 1. CGAL conventions (CGAL-2 \\file briefs) doc-only headers `Conformal_map/doxygen_groups.h` and `Conformal_map/doxygen_namespaces.h` were missing the `\\file` brief required by the CGAL conventions check. Added both. 2. codespell — three new triggers `code/tests/cgal/CMakeLists.txt` uses "honour", `doc/reviewer/hub.html` uses `<thead>` (HTML tag, false-positive for "thread"), and `doc/roadmap/research-track.md` uses "optimiser". All three are British-English / HTML usage; added to `.codespellrc` ignore list. 3. Doxygen warning in `doc/architecture/compile-time.md:250` A trailing backtick-quoted CMake flag at end-of-file confused Doxygen's markdown parser into starting a never-closing verbatim block. Rewrote the line to put the prose first and the backtick in the middle, not at end-of-file. All gates green again on the merged main: ✅ 259/259 tests pass ✅ test-count consistency ✅ markdown links 166/166 resolve ✅ CGAL conventions 0/8 violations ✅ license-headers 68/68 carry MIT SPDX ✅ codespell 0 typos ✅ shellcheck 0 findings (18 scripts) ✅ Doxygen 100% coverage, 0 warnings Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> |
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3f508adf18 |
ci+hub: durable reviewer hub via in-repo HTML + perf-CI matrix on Linux
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Two additions that close out the reviewer-prep work cleanly:
1. doc/reviewer/hub.html + publish-workflow integration
──────────────────────────────────────────────────────
Move the hand-curated reviewer hub from the codeberg `pages`
branch (where it lived as an opaque snapshot) into the repo as
`doc/reviewer/hub.html`. `.gitea/workflows/doxygen-pages.yml`
gains a conditional `if [ -f doc/reviewer/hub.html ]; then …`
step that installs it as the publish `index.html` and demotes
the auto-generated Doxygen index to `/doxygen.html`.
Effect: merging any of the open PRs into main will trigger the
workflow, which republishes BOTH the Doxygen + the reviewer hub
together. The reviewer URL stays live across merges with zero
manual intervention.
Source-controlled benefits:
* hub edits go through normal PRs, not orphan-branch
force-pushes
* old hub versions live in git history
* the in-repo links now target `branch/main/…` instead of the
transient `preview/reviewer-snapshot-vN/…` paths
2. .gitea/workflows/perf-compile-time.yml — Linux CI bench
────────────────────────────────────────────────────────
New workflow runs on every push to main that touches the build
system or public headers. Five-step matrix measures and reports:
Run 1 cold baseline (no PCH, no Unity, no ccache)
Run 2 + PCH only
Run 3 + PCH + Unity (current default)
Run 4 + FAST_TEST_BUILD=ON (-O0 -g — Linux's expected ~40 % win)
Run 5 + ccache warm rerun (expected ≥ 90 % cache hit)
Validates the Apple-M1 predictions in doc/architecture/compile-time.md
against the Linux + g++ runner where Backend dominates more and
the Apple-clang+PCH friction that defeats ccache locally does not
apply. Job is data-collection only; never blocks a merge.
doc updates:
* doc/architecture/compile-time.md — new "Cross-platform perf bench"
section linking to the workflow + the table of macOS-vs-Linux
expected deltas.
* doc/reviewer/README.md — new "Hub-Page durability" subsection
explaining how the hub survives merges.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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bc40a13e8d |
perf: architecture-touch quick-wins #6 + #10; skip #5 + #7 with honest notes
Evaluated all four mid-tier architecture-touch levers from doc/architecture/compile-time.md. Outcome: ship two opt-in improvements, defer two with explicit rationale. #6 — Eager-include reduction (Dense → Core) ✅ shipped ───────────────────────────────────────────────────── Three headers downgraded from `<Eigen/Dense>` to `<Eigen/Core>`: * projective_math.hpp * hyper_ideal_visualization_utility.hpp * mesh_utils.hpp All three only use Matrix/Vector primitives, no Eigen decompositions. The other five Dense-including headers were inspected and KEPT on `<Eigen/Dense>` because they use `.inverse()`, `.determinant()`, `ColPivHouseholderQR`, or `SelfAdjointEigenSolver`. Measured Apple M1 cold rebuild after this change: 58 / 60 / 63 s across three runs. The prior analysis predicted ~10 % gain; reality landed within the ±5 s natural variance band of repeated builds, so the net build-time effect on the test target is "noise-level". The change is still kept because downstream consumers who include ONLY one of the three downgraded headers see a real per-TU drop (Core preprocesses to ~250 k lines vs Dense's ~350 k). #10 — Fast test-build mode (-O0 -g) ✅ shipped ─────────────────────────────────────────────── New option CONFORMALLAB_FAST_TEST_BUILD (default OFF). When ON, both test targets (`conformallab_tests` and `conformallab_cgal_tests`) compile with `-O0 -g -UNDEBUG`, overriding the inherited Release `-O3 -DNDEBUG`. Measured Apple clang: 51.6 s vs 46.8 s without -O0 → slightly slower. The Backend phase that prior analysis predicted would drop from 9.3 s to ~2 s doesn't dominate on Apple clang the way it does with GCC; the bigger `-g` debug info also lengthens the link step. Kept shipped because: * On Linux + g++ (CI runner) the picture flips — Backend dominates more, `-O0` typically delivers the predicted ~40 % build-time cut. * Cross-platform parity: users on Linux see the same CMake option they see locally. Honest documentation in doc/architecture/compile-time.md notes that the Apple-clang-local benefit is currently 0 %. Tests RUN ~15× slower under `-O0` (1.5 s → 23 s for 236 tests); acceptable for CI "did anything break" loops, NOT acceptable for benchmark workloads. #5 — Move detail:: impls to .inl files ⏸ deferred ─────────────────────────────────────────────────── Pure enabler for #7. Without #7 landing, the .inl extraction would just add an extra hop to header reading. Reconsider once a concrete maintenance reason emerges (e.g. a downstream user wants to override a detail helper). #7 — Pimpl on newton_solver + priority_BFS ⏸ deferred ─────────────────────────────────────────────────────── Honest assessment: Newton_solver is template-on-Functional, so a faithful Pimpl would require either type erasure or a virtual-method interface across the five solver instantiations. Estimated 1-2 weeks of refactor with measurable API-surface risk. PCH already absorbs the SimplicialLDLT + SparseQR template parse cost, so the remaining delta is small. Deferred until a concrete user reports compile-time pain from these specific templates. Documentation ───────────── README.md gains a "Compile-time workflow modes" section with all six opt-in switches (BUILD_TESTING, HEADERS_CHECK, DEV_BUILD, FAST_TEST_BUILD, USE_PCH, USE_CCACHE) as ready-to-paste command lines. doc/architecture/compile-time.md gains: * an "Architecture-touch quick-wins" section with the four-row status table (5 deferred / 6 shipped / 7 deferred / 10 shipped) * the FAST_TEST_BUILD row added to the workflow-modes table * the mode-matrix table updated with Linux-vs-macOS expected values * an honest "variance" note explaining the ±5 s spread between repeated cold builds and why #6's net effect lands in that noise Verified: default build 55 s (within usual variance), 236/236 tests pass under default; FAST_TEST_BUILD=ON build 52 s, 236/236 PASS. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> |
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9ea7d15aa0 |
perf: add 4 workflow modes (BUILD_TESTING / DEV_BUILD / HEADERS_CHECK / ccache)
Four orthogonal opt-in build modes on top of the existing PCH + Unity
defaults. Each addresses a specific iteration scenario; defaults are
unchanged (PCH + Unity stays the canonical fast full-rebuild path).
(A) HEADERS_CHECK target — opt-in via -DCONFORMALLAB_HEADERS_CHECK=ON
Per-public-header smoke-compile sentinels. For each of the six
public CGAL umbrella headers, a stub TU `#include <…>\nint main(){}`
is generated at configure time and compiled in isolation.
* Full headers_check build: ≈ 12 s
* Incremental after touching one header: ≈ 0.1 s
Use case: "did my refactor still parse the public API?" without
waiting 55 s for the full CGAL test build.
(C) DEV_BUILD mode — opt-in via -DCONFORMALLAB_DEV_BUILD=ON
PCH stays on; Unity Build is forced off (both globally AND on the
cgal-tests target which previously overrode the global setting).
Trade-off: full clean rebuild ~75 s (+36 % vs the 55 s default)
but incremental rebuild after editing a single test file drops
from ~46 s (unity batch) to ~16 s (single TU + relink).
Flip on for trial-and-error sessions, flip off before measuring
CI build time or shipping a PR.
(D) ccache integration — default ON, disable with -DCONFORMALLAB_USE_CCACHE=OFF
Detects `ccache` on PATH and prepends it to compile + link
launchers. On Apple clang + PCH + Unity the macOS-local hit
rate is currently 0 % (3 separate friction points documented
in doc/architecture/compile-time.md § "ccache — honesty notes");
stays neutral when it doesn't help. Real payoff on Linux CI
(g++ + traditional PCH) where 80 %+ hit rates are typical.
(BUILD_TESTING=OFF) Standard CMake gate, now respected end-to-end.
Wrapped both `add_subdirectory(tests)` AND the FetchContent of
GoogleTest in `if(BUILD_TESTING)`. Pass `-DBUILD_TESTING=OFF`:
* Configure ≈ 1 s
* Build ≈ 0 s
* 0 object files
* No GTest fetch
Use case: IDE-syntax-check workflow that needs
`compile_commands.json` but does NOT need to download GTest
or build any test binary.
doc/architecture/compile-time.md gains:
* a "Workflow modes — what to choose when" section with a 4-row
switch matrix and a "mode matrix at a glance" comparison table
* a ccache honesty-notes block listing the three macOS friction
points (PCH artefact caching, Unity Build path randomisation,
CMake launcher integration) — Linux CI is where the lever pays
off
Verified: default build 53 s wall, 236/236 tests pass; all opt-in
modes tested end-to-end with their expected workflow numbers
documented in the doc.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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5fbc4bcc7f |
ci+perf: PCH + Unity Build cut CGAL test build wall-time 30% (78s -> 55s)
Two structural compile-time optimisations on the conformallab_cgal_tests
target, both opt-out-able and verified safe (236/236 tests pass under
every configuration).
(1) Precompiled headers — option CONFORMALLAB_USE_PCH (default ON)
target_precompile_headers(conformallab_cgal_tests PRIVATE
<CGAL/Surface_mesh.h>
<CGAL/Simple_cartesian.h>
<CGAL/Kernel_traits.h>
<CGAL/boost/graph/iterator.h>
<CGAL/Polygon_mesh_processing/triangulate_faces.h>
<Eigen/Dense> <Eigen/Sparse> <Eigen/SparseCholesky> <Eigen/SparseQR>
<gtest/gtest.h>
<vector> <string> <cmath> <complex>
)
Absorbs the per-TU CGAL+Eigen template-parse cost (measured at 5.9 s
per minimal "include <CGAL/Discrete_conformal_map.h>" hello-world TU
on Apple M1).
(2) Unity Build — UNITY_BUILD ON with UNITY_BUILD_BATCH_SIZE 4
Concatenates the 22 test TUs into 5 batches of <=4 files each;
CGAL+Eigen headers parsed once per batch instead of once per TU.
Batch size 4 keeps gtest's TEST(...) macros and per-file
`using namespace ...` from colliding across batched files.
Numbers (Apple M1, Ninja, -j8, clean rebuild)
─────────────────────────────────────────────
wall CPU tests
baseline 78 s 676 s 236/236
+ PCH 66 s 474 s 236/236 (-15% wall, -30% CPU)
+ PCH + Unity 55 s 167 s 236/236 (-30% wall, -75% CPU)
Honest deferred items (documented in doc/architecture/compile-time.md):
* `extern template` (lever #2 in the analysis) — subsumed by PCH;
estimated residual gain <5%, would add Eigen-version fragility.
* Header split <CGAL/Discrete_conformal_map_{euclidean,spherical,
hyper_ideal}.h> (lever #3) — downstream-only benefit (our test
build needs all three); kept as a future cleanup once a downstream
user actually requests it.
Opt-outs: `-DCONFORMALLAB_USE_PCH=OFF` and `-DCMAKE_UNITY_BUILD=OFF`.
Detailed measurement methodology, per-TU breakdowns, clang
-ftime-trace template hot-spots, and a "what comes next" lever list
live in doc/architecture/compile-time.md.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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72503a3518 |
docs(reviewer): anonymise reviewer references; profile-based framing
Replaces the "Springborn / Bobenko alumnus" placeholder in the reviewer materials (briefing, questions, agenda, README) and in locked-vs-flexible.md with a research-profile description: active researcher in the decorated-DCE / Penner-coordinates / canonical-tessellations / hyperideal-polyhedra line, treated as a peer most likely to USE conformallab++ as numerical infrastructure for their own future experiments — not merely to evaluate it. Citations to the published literature (Springborn 2020 paper, etc.) remain untouched. Only personal references to the prospective reviewer were anonymised. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> |
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f25174ed69 |
feat: output_uv_map for InversiveDistance, error for CP-Euclidean, reviewer trio
Three reviewer-meeting deliverables in one commit.
(1) output_uv_map for the two remaining DCE entries
─────────────────────────────────────────────────
* Discrete_inversive_distance.h: full implementation. After Newton,
reconstruct effective Euclidean edge lengths from the converged
log-radii via the Bowers-Stephenson identity
`ℓᵢⱼ² = rᵢ² + rⱼ² + 2·Iᵢⱼ·rᵢ·rⱼ`, populate a temporary
EuclideanMaps with `lambda0 = log(ℓᵢⱼ²)`, and reuse the existing
`euclidean_layout(mesh, 0, eucl)` priority-BFS. Per-vertex
Point_2 coordinates written into the user-supplied pmap.
Optional `normalise_layout(true)` applies the canonical PCA
centroid + major-axis rotation, same as the other 3 entries.
* Discrete_circle_packing.h: throws std::runtime_error with a
clear pointer to Phase 9c rather than silently producing
nonsense. CP-Euclidean is face-based; the faithful output is a
per-face circle packing in ℝ², not a per-vertex Point_2 map.
A true layout requires BPS-2010 §6 (~150 lines, on the porting
roadmap as Phase 9c). Failing loudly is the honest default.
Tests: 2 new cases in test_cgal_phase8b_lite.cpp
(OutputUvMap_InversiveDistance_PopulatesPmap;
OutputUvMap_CPEuclidean_ThrowsClearly). Both green.
Suite total now 259 (was 257, +2). CGAL subtotal: 234 → 236.
(2) Reviewer meeting documents
──────────────────────────
New directory doc/reviewer/ with three files:
* briefing.md — one-page orientation for the reviewer.
What the project is, where to look first
(https://tmoussa.codeberg.page/ConformalLabpp/), the headline
evidence (tests/coverage/sanitizers/license), what we want from
them, what's deferred and why, and the 5 questions in a separate
file.
* questions.md — the 5 concrete decisions we want their second
opinion on:
Q1 Phase 9c (port-literal vs re-derive)
Q2 Phase 9b-analytic (worth ~2 weeks for ~6× speedup?)
Q3 CP-Euclidean output_uv_map (build now or defer?)
Q4 CGAL submission strategy (one package or five?)
Q5 geometry-central cross-validation co-authorship
Plus an explicit "what would you say no to?" question at the
bottom — negative feedback is the highest-value information.
* agenda.md — my own internal playbook (NOT to be sent).
60-min flow: 5-min thank-you, 10-min architecture tour,
30-min for Q1-Q5 in the order Q4-Q1-Q2-Q5-Q3, 5-min "no"
question, 5-min wrap-up. Includes post-meeting memo template
to fill out in the 30 min after.
* README.md — index for the directory; says which file goes
to whom and when to send.
(3) locked-vs-flexible.md known-limitations update
─────────────────────────────────────────────
"output_uv_map covers 3 of 5 entries" → "covers 4 of 5".
CP-Euclidean's throws-clearly behaviour documented as a Phase 9c
deliverable rather than a passive gap.
Bonus: extended .codespellrc ignore list (acknowledgement, the
British-English spelling I used in agenda.md).
Verifications on this commit:
259/259 tests pass (0 skipped)
scripts/check-test-counts.sh: OK (23 + 236 = 259)
scripts/quality/license-headers.sh: OK (66/66 SPDX)
python3 scripts/quality/cgal-conventions.py: OK (0/6 violations)
scripts/quality/codespell.sh: OK (0 typos)
scripts/quality/shellcheck.sh: OK (0 findings)
python3 scripts/check-markdown-links.py: OK (143/143)
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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| 704f42bbfd |
Merge pull request 'ci+quality: structural gates (CI: 3 new; local: 7 new + .clang-tidy)' (#18) from ci/structural-tests into main
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1aa3493e7d |
quality: 4 more gates + dependency audit; full --fast sweep 10/10 green
This commit closes the structural-tests work on PR #18. Every gate in `run-all.sh --fast` now passes end-to-end on the canonical dev machine. New gates ───────── 1. shellcheck (scripts/quality/shellcheck.sh) * Scans every `scripts/**/*.sh` at severity=warning+ * 16 scripts inspected; cleanup pass took the tree from 7 findings (SC2164 + SC2034) to 0 findings. 2. cppcheck (scripts/quality/cppcheck.sh) * Complementary static analyser to clang-tidy; different heuristics, fewer false-positives on heavy CGAL/Eigen templates. * Default severity warning+, --strict adds style, --all = everything. * Suppresses 4 noise classes (missingIncludeSystem, etc.) explicitly. 3. .editorconfig * Cross-IDE fallback for editors that don't honour clang-format. * Covers Markdown (preserve trailing whitespace), Python, YAML, JSON, shell, Makefile (tabs) — the file types clang-format doesn't cover. 4. CONFORMALLAB_WARNINGS_AS_ERRORS CMake option * Off by default → regular builds don't break on new GCC warnings. * `-DCONFORMALLAB_WARNINGS_AS_ERRORS=ON` adds `-Werror`, intended for CI promotion-track and sanitizer runs. Dependency audit (doc/architecture/dependencies.md) ──────────────────────────────────────────────────── New single-source-of-truth document listing: * what the library requires (Eigen + CGAL + Boost — all header-only) * what tests require (auto-fetched GTest, no system install) * what each quality tool is for, install command per OS, and behaviour when missing (each gate exits 2 = SKIP, run-all recognises this and continues) * a verification recipe that strips PATH down and shows the library still configures + builds + tests cleanly with zero quality tools installed. run-all.sh enhanced ─────────────────── * Recognises "tool not in PATH" → SKIP (not FAIL). * Summary now reports `passed / skipped / failed` separately. Bug fixes uncovered by the sweep ──────────────────────────────── * sanitizers.sh: gtest_discover_tests ran the ASan-instrumented binary at build time and aborted → added `-DCMAKE_GTEST_DISCOVER_TESTS_DISCOVERY_MODE=PRE_TEST` to defer discovery to ctest invocation. Now 23/23 sanitizer-instrumented tests pass. * clang-tidy.sh on macOS: brew-installed clang-tidy couldn't find Apple SDK system headers (<cmath>, <complex>, …) → added `--extra-arg=-isysroot $(xcrun --show-sdk-path)` on Darwin. * clang-tidy.sh: needed `-DWITH_CGAL_TESTS=ON` in compile_commands generation so CGAL include paths are part of at least one compile entry. Now resolves CGAL/Surface_mesh.h etc. * clang-tidy.sh: viewer-only headers (`viewer_utils.h`, `mesh_utils.hpp`) excluded — they need `WITH_VIEWER=ON` + system GLFW/libigl that the lint build doesn't drag in. * `.codespellrc`: extended ignore list (recognise, signalled, modelled, travelled, …) for British-English consistency across own writing. Final state — local quality block on this commit, this branch: ✅ License headers (66/66 carry MIT SPDX) ✅ CGAL conventions (0/6 violations on 6 CGAL headers) ✅ clang-format drift (0 drift) ✅ cmake-format/-lint (0 drift, 0 lint findings) ✅ codespell (0 typos in scope) ✅ shellcheck (0 findings across 16 .sh files) ✅ cppcheck (warning+ severity clean) ✅ Markdown links (122/122 resolve) ✅ Sanitizers (ASan+UBSan) (23/23 fast tests pass) ✅ clang-tidy (35 headers inspected, 0 findings) Library standalone-ness verified: env -i PATH=... cmake -S code -B /tmp/build-standalone cmake --build /tmp/build-standalone --target conformallab_tests ctest -E '^cgal\.' → all green Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> |
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f1d77aa293 |
quality: add code-style + CGAL-convention checkers (local-only)
Closes the gap "no code-quality / convention gate" from the structural
review. Three new artefacts, all local-only (CI promotion deferred
until the existing tree is 100 % clean under each):
1. .clang-format — project's existing style mechanically captured
(4-space indent, opening brace on new line for class/struct/function,
left-aligned pointer/reference modifiers, aligned `using = ...` blocks,
100-col loose limit, no include re-ordering — matches code/include/
today).
2. scripts/quality/clang-format.sh — drift detector. Dry-run mode by
default (always exits 0); --strict to fail on drift; --fix to apply
suggested changes in place. Skips code/deps/ and macOS-duplicate
files.
3. scripts/quality/cgal-conventions.py — checker for the CGAL idioms
that clang-format/clang-tidy cannot express:
CGAL-1 include-guard format `CGAL_<DIRS>_<FILE>_H`
CGAL-2 every public header has a `\\file` Doxygen brief
CGAL-3 no nested namespaces beyond the allowed set
(CGAL::parameters, CGAL::Conformal_map, internal_np, IO)
CGAL-4 named-parameter tag types end in `_t`; value object does not
CGAL-5 no `using namespace ...` at file scope (header leakage)
CGAL-6 no #define beyond CGAL_* / include-guard
Result on the current tree: 6 CGAL public headers, 0 violations.
The checker therefore doubles as documentation of the conventions
we already follow.
Both are wired into scripts/quality/run-all.sh's fast subset (~5 s
combined wall time). README.md updated to split the gates into a
"style/convention" group (cheap, run-on-every-commit material) and a
"correctness/quality" group (slow, run-before-tag material).
The reviewer-facing locked-vs-flexible.md gains another "✅ Closed"
row documenting both gates and the 0-violation baseline.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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a2eee9c279 |
ci+quality: structural gates (CI: 3 new; local: 7 new + .clang-tidy)
CI gates (active on every PR via .gitea/workflows/)
───────────────────────────────────────────────────
1. test-count consistency
cpp-tests.yml gains a step after test-cgal that runs
`scripts/check-test-counts.sh` against the just-built ./build dir
(reuse via new BUILD_DIR env var, ~5 s overhead). Drift between
`doc/api/tests.md` and ctest reality now fails the PR.
2. End-to-end smoke
`scripts/try_it.sh` (the documented user quick-start) is now part of
the CGAL job, so README quick-start regressions fail the PR rather
than silently breaking when users land.
3. Internal markdown link checker
New `.gitea/workflows/markdown-links.yml` + `scripts/check-markdown
-links.py`. PRs that touch any *.md file run the check; main pushes
trigger it too; a weekly cron catches external link rot. Pure
Python, no third-party action. Validated against the current tree:
122 internal links across 37 *.md files, 0 broken.
Local quality scripts (`scripts/quality/`, not in CI)
─────────────────────────────────────────────────────
* `license-headers.sh` — `SPDX-License-Identifier: MIT` audit over
code/{include,src,tests}/. Currently
reports 60/66 files missing it — that's
a follow-up; the script captures the
structural gap.
* `sanitizers.sh` — ASan + UBSan over the fast test suite.
* `coverage.sh` — gcov/lcov line + branch coverage of
code/include/, HTML report under
build-coverage/lcov-html/.
* `clang-tidy.sh` — runs the curated `.clang-tidy` policy over
every public header.
* `multi-compiler.sh` — sequential build + test against every
detected g++/clang++ (auto-discovery or
explicit list).
* `cgal-version-matrix.sh`— sequential build + CGAL test suite against
every CGAL tree under `~/cgal/<ver>/` (or
via `CGAL_ROOTS=...` env var).
* `reproducible-build.sh`— two `Release -j1` builds, fail if any test
executable byte-differs.
* `run-all.sh` — driver: `--fast` for the ~5-min subset,
no arg for the ~25–40 min full sweep;
captures per-gate logs to
build-quality-logs/.
+ `.clang-tidy` — curated, deliberately-small policy (only
checks that fire on OUR code, never on
transitive CGAL/Eigen/Boost headers).
+ `scripts/quality/README.md` — explains the structure, lists each
gate's wall-time + prereqs, and codifies
the promotion path: a gate moves into CI
only when it's green on the dev machine
AND has a recovery-instructions paragraph
in `doc/release-policy.md`.
Doc updates
───────────
`doc/architecture/locked-vs-flexible.md` (reviewer-facing) gains 4
"closed" rows in the limitations table — the 3 CI gates above and the
local quality-script suite.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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e04515c423 |
docs(doxygen): fix critical extraction bug; baseline 24% → 42% on public API
ROOT CAUSE FIX
The Doxyfile EXCLUDE_PATTERNS line contained `*/* 2.hpp` (note the
space — a stray glob from macOS-style "foo 2.hpp" duplicate files).
That pattern was silently matching ALL .hpp / .h files, so Doxygen was
indexing nothing under code/include/. The pre-existing 556 KB of HTML
output was effectively documenting only README.md, CLAUDE.md and a
small stub for std:: — not the C++ API at all.
After fixing the pattern (and properly escaping the space-prefixed
"foo 2.hpp / foo 2.h" macOS-dup patterns), Doxygen now extracts 141
compounds and emits 248 HTML pages from the public headers.
WHAT THIS PR ADDS
1. Doxyfile fix: correct EXCLUDE_PATTERNS; add GENERATE_XML for the
coverage measurement script; add MathJax for `$$...$$` math in
markdown; add the missing CGAL `\cgalParamNBegin/End/Description/
Default/...` aliases so CGAL-style param blocks render correctly.
2. New headers:
- code/include/CGAL/Conformal_map/doxygen_groups.h
defines `PkgConformalMap{,Ref,Concepts,NamedParameters}`,
resolving 17 prior "non-existing group" warnings.
- code/include/CGAL/Conformal_map/doxygen_namespaces.h
gives every namespace under `CGAL::` and `conformallab::` a
brief description.
3. New tool: scripts/doxygen-coverage.sh
Parses the XML output and reports % of public symbols (excluding
the `detail::` implementation namespaces by default) that have a
non-empty brief/detailed description. Supports `--list-undoc`
and `--threshold N` for CI integration.
4. Substantial docstring additions to the public CGAL headers:
`Conformal_map_traits.h`, `Discrete_circle_packing.h`,
`Discrete_inversive_distance.h`, `conformal_mesh.hpp`,
`Discrete_conformal_map.h` (Hyper_ideal_map_result fields).
5. Markdown housekeeping that the strict-warning Doxygen run surfaced:
tests.md (escape literal `#` in table cell),
locked-vs-flexible.md (broken section anchor),
overall_pipeline.md (replace `$$LaTeX$$` with inline-unicode math).
CURRENT NUMBERS
before: ~24% documented (public API; the prior "87%" claim was
based on the broken extraction)
after: 42% documented (165 of 396 public symbols)
warnings: 0 (was 27 spurious + a flood of bogus undocumented
warnings hidden by the buggy EXCLUDE pattern)
NEXT (in a follow-up commit on this branch)
The remaining 231 public symbols (mostly in `layout.hpp`,
`hyper_ideal_functional.hpp`, `spherical_functional.hpp`, the per-mode
functional/Hessian files) can be brought to ~100% with another pass of
short `///` brief descriptions. The coverage script is the gate; CI
can begin enforcing `--threshold 95` once the next pass lands.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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b0c67af922 |
ci: auto-publish Doxygen HTML to Codeberg Pages on main
New .gitea/workflows/doxygen-pages.yml runs on every push to main that touches the public headers, Doxyfile, the markdown-link filter, any doc/**/*.md, README.md, or the workflow itself. It reuses the existing ci-cpp container image and the existing CODEBERG_TOKEN secret already used by mirror-to-codeberg.yml — no new secret setup needed. The job force-pushes an orphan commit to the `pages` branch on codeberg.org/TMoussa/ConformalLabpp, which Codeberg Pages serves from https://tmoussa.codeberg.page/ConformalLabpp/ (verified live). README.md gains a Doxygen badge and a Documentation table row pointing at the Pages URL. locked-vs-flexible.md (the reviewer-facing doc) is updated to mention the Pages URL next to the Doxygen-coverage gap. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> |
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ba5c9303a3 |
docs: clean Doxygen warning log (0 warnings) + flag honest gaps to reviewer
Doxygen now builds with **0 warnings** (was 27). Root cause: `[label](doc/api/tests.md)`-style relative markdown links in README.md and CLAUDE.md were being interpreted by Doxygen as \ref commands and failed to resolve (Doxygen indexes .md files by basename, not by repo-relative path). Fix: add a per-file `FILTER_PATTERNS` to Doxyfile that rewrites `[label](path/to/file.md)` into `<a href="path/to/file.md">label</a>` just for Doxygen. HTML anchors bypass \ref resolution entirely; the generated Doxygen HTML still hyperlinks correctly. The on-disk markdown is untouched, so GitHub rendering is unaffected. New file: scripts/doxygen-md-filter.sh (24 lines, documented). Also: append a "Known limitations (state at the time of the reviewer meeting)" table to doc/architecture/locked-vs-flexible.md so the external reviewer sees the 7 deliberate gaps (output_uv_map covers 3 of 5 entries; pipe-only chaining; Phase 9b-analytic derived but not implemented; Doxygen WARN_IF_UNDOCUMENTED policy; CI test-count gate; research-track utilities) with effort estimates next to each. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> |
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039cc26e36 |
Phase 8b-Lite: pipe-operator chaining for named parameters
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Adds `operator|` in `namespace CGAL` so package-local named parameters
can be combined left-to-right without modifying CGAL upstream:
auto p = CGAL::parameters::gradient_tolerance(1e-12)
| CGAL::parameters::max_iterations(500)
| CGAL::parameters::output_uv_map(uv);
CGAL::discrete_conformal_map_euclidean(mesh, p);
Why not the canonical `.a().b().c()` syntax
───────────────────────────────────────────
CGAL's standard chaining mechanism requires registering each named
parameter as a member function on `Named_function_parameters` via the
`CGAL_add_named_parameter` macro in
`CGAL/STL_Extension/internal/parameters_interface.h` — a vendored
upstream file that conformallab++ deliberately treats as read-only.
Adding member-function chainers for our package-local tags would
require either forking CGAL or modifying the vendored copy. Neither
is acceptable for a library that wants to remain portable across
future CGAL releases.
The pipe-operator achieves the same compositional semantics via a
free function in `namespace CGAL` (so ADL finds it for
`Named_function_parameters` operands). Implementation: rebuild the
right-hand-side `Named_function_parameters` with the left-hand-side
as its `Base`, producing an indistinguishable chain that every entry
function accepts unchanged.
Implementation: `code/include/CGAL/Conformal_map/internal/parameters.h`
lines 158-187. The operator is constrained to right-hand-sides with
`No_property` base (i.e. fresh single-parameter packs from the helper
functions), so it never collides with any future CGAL operator on the
same type.
Tests (2 new, total Phase-8b-Lite suite 15 → 17)
────────────────────────────────────────────────
* CGALPhase8bLite.NamedParamPipe_MultipleParamsTakeEffect
Chain three parameters; verify all three take effect (tight
tolerance respected + UV pmap populated + iteration cap honoured).
* CGALPhase8bLite.NamedParamPipe_TwoParams
Chain two parameters; verify max_iterations(0) blocks the loop
even when combined with another param.
Full CGAL suite: 234/234 PASSED, 0 SKIPPED (was 232).
Total: 257/257 PASSED, 0 SKIPPED (was 255).
scripts/check-test-counts.sh: OK.
Documentation updates
─────────────────────
* doc/tutorials/add-output-uv-map.md §3.4: "Current limitation: no
chaining" → "Chaining: use the pipe operator `|`". Explains why
CGAL's `.member()` syntax isn't available and shows the `|`
workaround with a working code example.
* doc/architecture/locked-vs-flexible.md §8: chaining now flagged as
shipped via pipe; recommended posture says `.member()` chaining
only if a user pushes for the CGAL-canonical syntax.
* doc/roadmap/porting-status.md §5: API limitations table updated.
* doc/api/tests.md: CGALPhase8bLite row 15 → 17, total 232 → 234.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
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eb393537f3 |
docs: 5-document meeting prep — tutorials + research note + status + architecture
External-reviewer-visit prep package (Springborn-Bobenko PhD alumnus,
2026-05-26). All five documents target the same audience: a
mathematician who wants to evaluate, extend, or contribute to
conformallab++. Goal: make the project maximally hackable BEFORE the
meeting. Code unchanged in this commit — pure documentation.
Files added
───────────
1. **doc/tutorials/block-fd-hessian.md** (460 lines)
Step-by-step tutorial on the per-face block-FD Hessian pattern
shipped in Phase 9b (96× speed-up). Matches the style of
add-inversive-distance.md. Covers:
* The per-face locality lemma (mathematical justification).
* Cost analysis (full-FD vs block-FD vs analytic).
* Implementation walkthrough through face_angles_from_local_dofs +
hyper_ideal_hessian_block_fd.
* Porting checklist for applying the same pattern to a new
functional.
* The four cross-validation criteria.
* When NOT to use block-FD + upgrade path to Phase 9b-analytic.
2. **doc/tutorials/add-output-uv-map.md** (477 lines)
Tutorial for the `output_uv_map` named-parameter pattern shipped in
PR #14. Covers:
* The UX problem (two-step pipeline → one-call wrapper).
* The CGAL named-parameter mechanism + how the entry functions
wire it (get_parameter + constexpr if).
* Step-by-step recipe for adding a new named parameter (worked
example: hypothetical `output_holonomy_map`).
* The five test patterns for verification.
* Why CP-Euclidean (face-DOF) and Inversive-Distance (Luo-edge-length)
do not yet support output_uv_map — what is needed to add them.
3. **doc/math/hyperideal-hessian-derivation.md** (805 lines)
Research-quality LaTeX-formatted derivation of the analytic
HyperIdeal Hessian via the Schläfli identity (Phase 9b-analytic
preparation). Covers:
* Schläfli identity (1858/60) — gradient and second-order form.
* Derivatives of ζ, ζ₁₃, ζ₁₄, ζ₁₅ (all hyper-ideal-to-fully-ideal cases).
* Chain rule for ∂β_i/∂(b,a) and ∂α_ij/∂(b,a) — case-split on the
four α_ij branches.
* Per-face 6×6 block formulas.
* Acceptance criteria for the future implementation.
* Implementation outline (Conformal_map header sketch).
* Appendix A: sign / argument-order pitfalls reading the code.
* References: Schläfli 1858, Milnor 1982, Vinberg 1993, Cho-Kim 1999,
Rivin, Glickenstein 2011, Springborn 2020, BPS 2015.
4. **doc/roadmap/porting-status.md** (~250 lines)
Operational snapshot of "where is each piece of Java math today"
at v0.9.0. Sections:
* 25 000 lines of Java in one table (ported / worth porting /
intentionally skipped breakdown).
* Five DCE models — full status matrix with Java port status,
Hessian type, Newton support, CGAL entry, UV-output capability.
* Topology + solver infrastructure status.
* CGAL public API map + known limitations (no chaining, Surface_mesh
only, submission-readiness gaps).
* Reverse cross-reference: Java class → C++ port location (or
"skipped: replaced by …" / "in roadmap: phase X").
* Things in C++ that the Java original does NOT have (research
extensions track).
* "How to use the library today" quickstart.
5. **doc/architecture/locked-vs-flexible.md** (~270 lines)
12-item architecture-decision review with tier classification
(🔴 load-bearing / 🟡 semi-fixed / 🟢 opportunistic). Each item
includes: locked-since date, cost to change, when to revisit,
recommended posture for new contributors. Key insight stated up
front: "the load-bearing decisions are all good in 2026". Closes
with five open questions for the external reviewer — items where
a second opinion would genuinely help (Phase 9c algorithm choice,
Phase 10a priorities, analytic-Hessian payoff justification,
CGAL upstream vs independent distribution, geometry-central
cross-validation).
Total: ~2 250 lines across five new docs.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
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8c01a133d8 |
Phase 9a: dual circle-packing functionals (CP-Euclidean + Inversive Distance)
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Implements both Phase 9a sub-functionals — the face-dual circle-packing
functional from the Java original and the vertex-based inversive-distance
functional from Luo 2004 / Glickenstein 2011 — together with a side-by-side
mathematical validation report.
CGAL test count: 194 → 205 (+11 from 9a.2, +10 from 9a.1, was already
+1 from 9a.1's setup defaults regression).
Phase 9a.1 — CPEuclideanFunctional (face-based, BPS 2010)
──────────────────────────────────────────────────────────
* code/include/cp_euclidean_functional.hpp (320 lines)
- Face-based DOFs ρ_f = log R_f
- Per-edge intersection angle θ_e (default π/2 = orthogonal)
- Per-face target angle sum φ_f (default 2π)
- Energy: Σ_f φ_f ρ_f + Σ_h [½ p(θ*,Δρ)·Δρ + Λ(θ*+p) − θ* ρ_left]
with p(θ*, Δρ) = 2 atan(tan(θ*/2) tanh(Δρ/2))
Λ = Clausen-Lobachevsky
- Analytic Hessian: h_jk = sin θ / (cosh Δρ − cos θ)
- Java original: de.varylab.discreteconformal.functional.CPEuclideanFunctional
(260 lines, line-by-line mapping documented in
phase-9a-validation.md §1)
* code/tests/cgal/test_cp_euclidean_functional.cpp (10 tests)
- PFunctionKnownValues, SetupDefaults, AssignDofIndices_PinsOneFace
- TangentialLimitGradientEqualsPhi (closed-form θ=0 check)
- FDGradientCheck on closed and open tetrahedron, random ρ seed=1
- FDHessianCheck on closed and open tetrahedron, random ρ seed=1
- HessianIsPSD (BPS 2010 §6 convexity)
- NaturalPhiMakesZeroTheEquilibrium (gauge fixing)
Phase 9a.2 — InversiveDistanceFunctional (vertex-based, Luo 2004)
──────────────────────────────────────────────────────────────────
* code/include/inversive_distance_functional.hpp (290 lines)
- Vertex DOFs u_i = log r_i
- Per-edge inversive distance I_ij from Bowers-Stephenson 2004:
I_ij = (ℓ² − r_i² − r_j²) / (2 r_i r_j)
- Edge length (Luo 2004 §3):
ℓ_ij² = exp(2u_i) + exp(2u_j) + 2 I_ij exp(u_i+u_j)
- Gradient (Luo 2004 Lemma 3.1):
∂E/∂u_v = Θ_v − Σ α_v(f)
- Energy via 10-pt Gauss-Legendre path integral (matches Euclidean)
- Hessian: finite-difference for MVP; Glickenstein 2011 eq. 4.6
analytic form deferred (joins Phase 9b queue)
* code/tests/cgal/test_inversive_distance_functional.cpp (11 tests)
- Four edge-length-formula limits (tangential I=1 ⇒ ℓ=r_i+r_j,
orthogonal I=0 ⇒ ℓ=√(r_i²+r_j²), inside-tangent I=−1, degenerate I<−1)
- BowersStephensonRoundTrip (Bowers-Stephenson 2004 identity)
- InitProducesValidPositiveRadii
- NaturalThetaGivesZeroGradientAtU0
- FDGradientCheck on triangle, quad strip, tetrahedron
- AngleDefectAtU0_AgreesWithEuclideanAtU0
— cross-validation against euclidean_functional.hpp
(Glickenstein 2011 §5: "different parametrisations of the
same initial metric produce the same Newton-time-zero gradient")
Phase 9a Validation Report
──────────────────────────
* doc/architecture/phase-9a-validation.md (350 lines)
- Line-by-line mapping CPEuclideanFunctional.java ↔ C++ port
- Three special-case verifications of Luo's edge-length formula
- Comparison table euclidean / cp-euclidean / inversive-distance
- Acceptance-criteria checklist (all met)
- Full reference list
Roadmap and tutorial corrections (already committed earlier in this branch)
──────────────────────────────────────────────────────────────────────────
* doc/roadmap/phases.md — Phase 9a split into 9a.1 + 9a.2,
clear math citations per sub-phase
* doc/tutorials/add-inversive-distance.md — corrects the prior claim
that InversiveDistanceFunctional.java
exists upstream (it does not); now
cites Luo 2004 + Glickenstein 2011 +
Bowers-Stephenson 2004 as primary sources
* CLAUDE.md — adds phase-9a-validation.md to doc map
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
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b02f08625c |
docs: detaillierter geometry-central Vergleich (Abgrenzung, Adoption, Mehrwert)
Neues Dokument doc/architecture/geometry-central-comparison.md: - Gemeinsame mathematische Grundlage (Bobenko–Springborn 2004, Springborn 2020) - Algorithmenvergleich: Newton (fixed triangulation) vs. Ptolemäische Flips - Vollständige Feature-Matrix: was existiert wo, was fehlt wo - Klare Adoptionsempfehlungen: Ptolemäischer Pre-Conditioner ja (GC-2), intrinsische Triangulierungen als Architektur nein (Begründung) - 5 wissenschaftliche Mehrwerte: Kreuz-Validierung, Konvergenzstudie, Period-Matrix als Alleinstellungsmerkmal, Sphärische Geometrie, Springborn 2020 - Praktischer Roadmap GC-1 bis GC-paper mit Aufwandsschätzungen - README-Eintrag ergänzt Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> |
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66d52fc028 |
docs: fill information gaps — headers, tests, design decisions, project structure
doc/api/headers.md — all 24 public headers with descriptions doc/api/tests.md — 26 test suites, individual counts, run instructions doc/architecture/design-decisions.md — 5 key design choices with rationale doc/architecture/project-structure.md — full directory tree + build targets README + overall_pipeline.md link tables updated. Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> |
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95d48c434a |
chore: .gitignore + vergessene Doc-Dateien nachgetragen
.gitignore: build-Verzeichnisse, .DS_Store, .claude/, CMake-Artefakte Doc-Dateien die beim Restructure-Commit fehlten: doc/api/headers.md — alle 24 Public-Header mit Beschreibung doc/api/tests.md — 26 Suiten, 158 Tests, Einzelzahlen doc/architecture/design-decisions.md — Architekturentscheidungen + Begründung doc/architecture/project-structure.md — Verzeichnisbaum + Build-Targets README.md: Links zu den vier neuen Doc-Dateien ergänzt Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> |
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14134b99ce |
docs: restructure documentation into focused files
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> |
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f8686a073c |
docs: add phase roadmap with porting/research boundary to README and architecture doc
Structured the development roadmap into four blocks with an explicit boundary marker separating direct Java ports (Phase 1–7) from infrastructure (Phase 8), remaining porting (Phase 9), and new research territory (Phase 10+). Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> |
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a937edcafe |
docs: Dissertation, GitHub-Repo, Website und LinkedIn von Stefan Sechelmann ergänzt
README: - Neuer Einstieg mit vollständiger Dissertation-Referenz (Titel, TU Berlin 2016, DOI 10.14279/depositonce-5415, CC BY-SA 4.0) - Links zu Original-Java-Repo, sechel.de und linkedin.com/in/sechel - Neuer Abschnitt "Ursprung & Danksagung" vor der Lizenz doc/architecture/overall_pipeline.md: - Neuer "Origin"-Abschnitt ganz oben mit vollständiger Quellenangabe - Literaturabschnitt erweitert: Dissertation als "Primary source" hervorgehoben, Java-Original-Repo als direkter Port-Bezug dokumentiert Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> |
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9c61c9fc40 |
docs(architecture): overall_pipeline.md vollständig neu geschrieben
Ersetzt den generischen Geometry-Framework-Entwurf durch eine präzise Beschreibung der tatsächlichen konformen Geometrie-Pipeline: - Klare Positionierung: spezialisiertes Werkzeug für diskrete konforme Abbildungen, kein generisches Mesh-Processing-Framework - Korrigiertes Mermaid-Diagramm: alle 3 Phasen mit realen Komponenten (load_mesh → setup_maps → GB-check → Newton → CutGraph → Layout → halfedge_uv → Holonomie → Periodenmatrix → Fundamentalbereich → Export) - Preconditions/Capabilities-Tabelle für alle Processing-Units - Drei Geometrie-Modi (Euklidisch/Sphärisch/Hyper-ideal) im Vergleich - MobiusMap, halfedge_uv, Priority-BFS, SL(2,ℤ)-Reduktion dokumentiert - Realistischer YAML-Pipeline-Entwurf als Phase-8-Ziel (Tokens statt Prosa) - Erweiterungspunkte: neues Funktional, neue Geometrie, neues Unit - Alle Literaturverweise direkt auf Implementierungsstellen gemappt - "Nice To Have but maybe too much" komplett entfernt Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> |
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82e1a72bf1 | doc/architecture/overall_pipeline.md aktualisiert | ||
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a2e3dae414 | doc/architecture/overall_pipeline.md aktualisiert | ||
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439cbfc44c |
doc/architecture/overall_pipeline.md aktualisiert
Final the first |
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3a4fee3f76 | doc/architecture/overall_pipeline.md hinzugefügt |