IfcTriangulatedFaceSet and IfcPolygonalFaceSet used CoordIndex values to
index Coordinates.CoordList directly, ignoring the optional PnIndex
attribute. When PnIndex is present it remaps point references, so a
CoordIndex value i must resolve as CoordList[PnIndex[i-1]-1] (both 1-based).
Without the indirection any model carrying a PnIndex was built from the wrong
points.
Add a resolve() helper in both mappings that applies the PnIndex indirection
when present and is a plain bounds-checked lookup otherwise, with bounds
checks at both index levels. When PnIndex is absent the behavior is unchanged.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Address maintainer request on #8368: instead of a deflection floor on top
of a fixed CircleSegments count, use one mode or the other. When
CircleSegments == 0 (the new default) the CGAL kernel derives the conic
segment count from MesherLinearDeflection, matching the deflection based
meshing OpenCascade already does and fixing #8051. When CircleSegments is
non zero it is used directly as a fixed, radius independent count.
CircleSegments is only read by the CGAL kernel; OpenCascade meshes by
deflection and never reads it, so the new default has no effect there.
Update the setting description and the ifcconvert / geometry-settings docs.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The CGAL kernels (cgal and cgal-simple) allocate arc segments as a
fraction of the full circle via CircleSegments, ignoring the radius.
A large-radius arc that spans a small angle therefore collapsed to a
single chord, turning curved curtain-wall mullions straight while the
OpenCascade kernel (which meshes by deflection) kept them curved.
evaluate_conic now also enforces a deflection-based floor on the number
of segments, keeping the chord deviation within mesher-linear-deflection,
matching OpenCascade. Small circles are unchanged (CircleSegments floor
still dominates); only large-radius curves get denser.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
A face whose inner boundary crosses the outer boundary (or another inner
boundary) is invalid per the schema. Open Cascade silently heals or drops
such a face, so the intended hole is lost or the face is corrupted with no
diagnostic at all (the 2018 report saw a dropped face; on the current line
the face survives as wrong geometry, still silently).
After the wires are collected, if a face has inner boundaries, measure the
BRepExtrema distance between each inner wire and every earlier wire. Two
non intersecting loops have strictly positive distance, so a distance at
or below the modelling precision means the boundaries touch or cross; emit
a warning (GEO 402) naming the offending face. This is diagnostic only, no
geometry change.
The message is emitted via the kernel logger() rather than Logger::Root():
IfcConvert configures a local Logger and worker logs merge into it, while
Logger::Root() is a separate unconfigured singleton whose messages are
discarded (a latent issue affecting some existing GEO messages too).
Verified on OCC 7.9.2 with synthesized IFC4 faces: an inner triangle
crossing the outer edge, and one straddling the bottom edge, each emit one
GEO 402; a valid 4x4 hole emits none and triangulates identically (area
84.0), in both sequential and multithreaded runs. Pure inner self
intersection and full containment are distinct classes and intentionally
left untouched.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Comply with AGENTS.md: new AI-generated files must carry a top-of-file
comment indicating AI assistance.
Generated with the assistance of an AI coding tool.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
In IFC2X3 IfcAsymmetricIShapeProfileDef is a subtype of
IfcIShapeProfileDef, so the IfcIShapeProfileDef mapping dispatched it by
inheritance. From IFC4 onwards it is a standalone subtype of
IfcParameterizedProfileDef, so nothing mapped it and the extruded solid
came out empty (GEO326, 0 verts).
Add a dedicated map_impl that builds the twelve-point asymmetric section
(independent bottom/top flange widths, thicknesses, fillet/edge radii and
flange slopes), plus a guarded BIND. Both are wrapped in
SCHEMA_IfcAsymmetricIShapeProfileDef_HAS_BottomFlangeWidth, which is only
defined where the type is standalone, so IFC2X3 keeps its existing
subtype route unchanged.
Verified on OCC 7.9.2: an IFC4 asymmetric extrusion goes from 0 verts to
a correct 72-vert solid (bottom flange wider than top); IFC2X3 output is
unchanged.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
CGAL 6.x deleted operator< from Point_d, so std::map<Point_d, ...>
no longer compiles. Adds a custom lexicographic comparator and updates
the three affected maps in snap_halfspaces and snap_halfspaces_2.
Fixes builds with newer GCC/libstdc++ that no longer provide <cstdint>,
<cstring>, <cfloat>, <memory>, <algorithm> etc. transitively. Also
disambiguates visit<> calls in taxonomy.h with the full namespace and
casts the character value in IfcCharacterDecoder to uint32_t to silence
ambiguous overload warnings.
The temporary-offset workaround (#7408, commit bd57cc8735) subtracts the
directrix centroid (`mean`) from the curve points before building the
sweep near the origin, then must add it back to restore the original
location. The restore negated the sign — `Move(-mean)` instead of
`Move(+mean)` — placing the swept solid at -mean (mirrored through the
origin) rather than its true position.
Only triggers for polyline directrixes (`is_polyhedron()`) whose centroid
is more than 100 m from the origin (`mean.norm() > 1e2`), so models
centered near the origin are unaffected. Models that keep absolute site
coordinates (e.g. many Revit/ODA IFC exports) render affected swept
solids — reinforcing bars, pipes — at a mirrored phantom location far
from the rest of the model.