GeometryHelper 11.1.0
See the version list below for details.
dotnet add package GeometryHelper --version 11.1.0
NuGet\Install-Package GeometryHelper -Version 11.1.0
<PackageReference Include="GeometryHelper" Version="11.1.0" />
<PackageVersion Include="GeometryHelper" Version="11.1.0" />
<PackageReference Include="GeometryHelper" />
paket add GeometryHelper --version 11.1.0
#r "nuget: GeometryHelper, 11.1.0"
#:package GeometryHelper@11.1.0
#addin nuget:?package=GeometryHelper&version=11.1.0
#tool nuget:?package=GeometryHelper&version=11.1.0
GeometryHelper
Geometry for engineering drawings and models, in two dimensions and in three, with the label placement
algorithms that run on the 2D half. Written in C# and targeting netstandard2.0, so it loads into the
.NET Framework hosts that Tekla Structures and AutoCAD provide as well as into modern .NET.
Every comparison that floating point error can affect takes a Tolerance, because coordinates that come
out of a BIM model are never exact.
Use the default tolerance. The overloads without a tolerance read Tolerance.Global, which starts as
Tolerance.Default: a thousandth of a millimetre for points and for flatness, in a model in millimetres. That is as
exact as the corners of a modelled part are: two parts a hundredth apart are apart, and a thin overlap holds what it
holds. A finer tolerance cuts as slivers the few ten-thousandths a modeller's rounding leaves faces off flat and parts
apart, many times slower; a coarser one, passed to the call that needs it, takes what touches within it for touching.
Never new Tolerance(): made so, every threshold is 0. For parts drawn against each other, as a model's are, cut with a
SolidBooleanOptions whose Contact takes faces a hundredth apart for touching, and take a part's net body with
TrySubtractAll: within a thousandth alone, a part keeps a skin of itself where a cutter's face stood a few
thousandths inside it. A body read open, by copies of an edge a hair apart or by a face left out, is closed by
TryClose within a gap of its own, a hole filled only where asked, with a report of what it changed or why it would not.
Installation
dotnet add package GeometryHelper
Quick start
using GeometryHelper; // Tolerance, Angle, OffsetOptions
using GeometryHelper.Enums; // LineEnd, OffsetJoin, PointLocation
using GeometryHelper.Geometry; // every Geo type, 2D and 3D
using GeometryHelper.Core; // every operation
// In the plane: grow a slab, then cut an opening out of it.
var slab = new GeoPolygon2(new GeoPoint2(0, 0), new GeoPoint2(4000, 0),
new GeoPoint2(4000, 2000), new GeoPoint2(0, 2000));
var duct = new GeoPolygon2(new GeoPoint2(1000, 500), new GeoPoint2(1400, 500),
new GeoPoint2(1400, 900), new GeoPoint2(1000, 900));
GeoPolygon2 grown = slab.Offset(50.0)[0]; // 4100 x 2100
GeoFace2 pierced = Boolean2.Subtract(grown, duct)[0]; // one face, one hole
// In space: a beam trimmed where it runs into a wall.
var beam = new GeoLine3(new GeoPoint3(0, 0, 0), new GeoPoint3(3000, 0, 0));
var wall = new GeoPlane3(new GeoPoint3(2500, 0, 0), GeoVector3.XAxis);
beam.TryTrimTo(wall, LineEnd.End, out GeoLine3 cut); // (0,0,0) -> (2500,0,0)
What is inside
| Namespace | Holds |
|---|---|
GeometryHelper |
Tolerance, Angle, OffsetOptions, GeometryHelperLog, MassProperties3, MeasureComparison3 |
GeometryHelper.Enums |
PointLocation, PlaneSide, LineSide, LineEnd, LineExtension, OffsetJoin, VolumeMethod, AreaMethod |
GeometryHelper.Geometry |
30 immutable shapes: GeoPoint2 … GeoFace2 in the plane, GeoPoint3 … GeoSolid3 in space, arcs and the chains that carry them, and a transformation and a local coordinate system for each dimension |
GeometryHelper.Core |
35 operation classes, each dimension mirroring the other: Boolean2/Boolean3, Offset2/Offset3, Distance2/Distance3, … plus Arc2, Corner2 for chamfering and rounding, PlanarMap, which carries flat shapes between the two, and Measure3, a body's volume, mass and area read more than one way |
GeometryHelper.Spatial |
GeoBvh2 and GeoBvh3, the bounding volume hierarchies for large chains and meshes |
GeometryHelper.Extension |
turning raw point lists into geometry |
GeometryHelper.Arranging |
label placement: Arranger, ArrangeItem, ArrangeResult, ArrangeOptions, five algorithms |
GeometryHelper.Meshing |
closed shapes of the plane and flat shapes of space broken into triangles, grids, strips or convex pieces, and bodies cut into the cells of a grid: GeoMesh2, Mesh2, GeoMesh3, Mesh3, MeshKind, MeshOptions, MeshPlacement3, GeoCellGrid3, GeoCell3, CellOptions3, CellAxis, GridAlignment |
GeometryHelper.Packing |
boxes onto sheets of paper: SheetPacker, Sheet, PackOptions, PackResult |
Every operation is reachable both ways: the static form names the larger shape first, and the instance form sits on whichever of the two reads better where you are calling from.
Because both dimensions are one assembly, a flat shape in space can be laid out in its own plane, worked on with the whole 2D half of the library, and put back:
GeoCoordinateSystem3 frame = plate.GetFrame();
GeoFace2 flat = plate.ProjectToFace2(frame);
GeoFace3 back = flat.Subtract(openings)[0].ToFace3(frame);
Guides
The whole of it, searchable, with every type and member: https://nguyenthanguth.github.io/GeometryHelper/.
| Guide | Covers |
|---|---|
| Shared types | Tolerance, Angle, the enumerations, OffsetOptions, GeometryHelperLog |
| Geometry in the plane | points to polygons and faces; extending, trimming, offsetting, combining regions |
| Meshing the plane | triangles, grids of panels or tiles with joints and alignment, strips and convex pieces, edge to edge |
| Geometry in space | points to solids; splitting, boolean bodies, meshes, local frames |
| Meshing in space | flat shapes of space in panels, tiles, strips and triangles; bodies and boxes cut into blocks, bays and lifts; the cases, drawn and checked |
| Label placement | five algorithms behind one entry point |
| Packing boxes onto sheets | drawing views onto A0 to A4 sheets or sheets of a size of their own, a new sheet when one is full |
Coverage
dotnet test tests/GeometryHelper.UnitTest --collect:"XPlat Code Coverage"
writes a Cobertura file under TestResults. Only this library is counted.
Build and Test
dotnet build src/GeometryHelper/GeometryHelper.csproj
dotnet test tests/GeometryHelper.UnitTest/GeometryHelper.UnitTest.csproj
Warnings are errors in CI, and every public member is documented, so a missing XML comment or a stale
cref fails the build rather than landing quietly. Every example printed in the guides is also a test.
Licence
MIT. The clipping engine of Clipper2, by Angus Johnson, which is compiled into this package and resolves regions in the plane, is under the Boost Software License 1.0; THIRD-PARTY-NOTICES.md in the package holds its notice.
| Product | Versions Compatible and additional computed target framework versions. |
|---|---|
| .NET | net5.0 was computed. net5.0-windows was computed. net6.0 was computed. net6.0-android was computed. net6.0-ios was computed. net6.0-maccatalyst was computed. net6.0-macos was computed. net6.0-tvos was computed. net6.0-windows was computed. net7.0 was computed. net7.0-android was computed. net7.0-ios was computed. net7.0-maccatalyst was computed. net7.0-macos was computed. net7.0-tvos was computed. net7.0-windows was computed. net8.0 was computed. net8.0-android was computed. net8.0-browser was computed. net8.0-ios was computed. net8.0-maccatalyst was computed. net8.0-macos was computed. net8.0-tvos was computed. net8.0-windows was computed. net9.0 was computed. net9.0-android was computed. net9.0-browser was computed. net9.0-ios was computed. net9.0-maccatalyst was computed. net9.0-macos was computed. net9.0-tvos was computed. net9.0-windows was computed. net10.0 was computed. net10.0-android was computed. net10.0-browser was computed. net10.0-ios was computed. net10.0-maccatalyst was computed. net10.0-macos was computed. net10.0-tvos was computed. net10.0-windows was computed. |
| .NET Core | netcoreapp2.0 was computed. netcoreapp2.1 was computed. netcoreapp2.2 was computed. netcoreapp3.0 was computed. netcoreapp3.1 was computed. |
| .NET Standard | netstandard2.0 is compatible. netstandard2.1 was computed. |
| .NET Framework | net461 was computed. net462 was computed. net463 was computed. net47 was computed. net471 was computed. net472 was computed. net48 was computed. net481 was computed. |
| MonoAndroid | monoandroid was computed. |
| MonoMac | monomac was computed. |
| MonoTouch | monotouch was computed. |
| Tizen | tizen40 was computed. tizen60 was computed. |
| Xamarin.iOS | xamarinios was computed. |
| Xamarin.Mac | xamarinmac was computed. |
| Xamarin.TVOS | xamarintvos was computed. |
| Xamarin.WatchOS | xamarinwatchos was computed. |
-
.NETStandard 2.0
- No dependencies.
NuGet packages (5)
Showing the top 5 NuGet packages that depend on GeometryHelper:
| Package | Downloads |
|---|---|
|
GeometryHelper.IfcConvert
Converts geometry between IFC (via xBIM) and GeometryHelper: points, vectors, matrices, faces, and solids. |
|
|
GeometryHelper.CadConvert
Converts geometry between AutoCAD and GeometryHelper: points, vectors, lines, polylines, polygons, circles, and bounding boxes. |
|
|
GeometryHelper.TeklaConvert.2026
Converts geometry between Tekla Structures 2026 and GeometryHelper: points, vectors, segments, planes, coordinate systems, bounding boxes, transformation matrices, and the faces and loops of a Tekla solid. Also reads the objects of IFC reference models into solids placed where Tekla shows them, through GeometryHelper.IfcConvert. Built for Tekla Structures 2026; install the package whose year matches your Tekla. |
|
|
GeometryHelper.TeklaConvert.2025
Converts geometry between Tekla Structures 2025 and GeometryHelper: points, vectors, segments, planes, coordinate systems, bounding boxes, transformation matrices, and the faces and loops of a Tekla solid. Also reads the objects of IFC reference models into solids placed where Tekla shows them, through GeometryHelper.IfcConvert. Built for Tekla Structures 2025; install the package whose year matches your Tekla. |
|
|
GeometryHelper.TeklaConvert.2020
Converts geometry between Tekla Structures 2020 and GeometryHelper: points, vectors, segments, planes, coordinate systems, bounding boxes, transformation matrices, and the faces and loops of a Tekla solid. Also reads the objects of IFC reference models into solids placed where Tekla shows them, through GeometryHelper.IfcConvert. Built for Tekla Structures 2020; install the package whose year matches your Tekla. |
GitHub repositories
This package is not used by any popular GitHub repositories.
| Version | Downloads | Last Updated |
|---|---|---|
| 12.0.0 | 95 | 10/7/2026 |
| 11.2.0 | 193 | 10/6/2026 |
| 11.1.0 | 203 | 10/6/2026 |
| 11.0.1 | 248 | 10/5/2026 |
| 11.0.0 | 256 | 10/5/2026 |
| 10.0.0 | 257 | 10/3/2026 |
| 9.0.2 | 255 | 10/1/2026 |
| 9.0.1 | 245 | 10/1/2026 |
| 9.0.0 | 250 | 10/1/2026 |
| 8.0.0 | 248 | 9/30/2026 |
| 7.0.0 | 239 | 9/29/2026 |
| 6.3.0 | 246 | 9/29/2026 |
| 6.2.0 | 245 | 9/29/2026 |
| 6.1.0 | 246 | 9/28/2026 |
| 6.0.0 | 245 | 9/28/2026 |
| 5.1.0 | 258 | 9/21/2026 |
| 5.0.0 | 260 | 9/21/2026 |
NEW IN 11.1.0
NEW, closing an open solid
- GeoSolid3.TryClose closes a body read open with the least change that does it, and says what it changed, or,
changing nothing, why it could not and where: a body open by copies of an edge a few thousandths apart, by a
corner standing off the edge of the face beside it, or by a face left out. A body valid already comes back as
the very instance.
- SolidClosingOptions says how: the Tolerance the result is valid within; MaxGap, which has to be given, how far
apart the corners across a gap may stand and still be made one; MaxHoleArea, the most a hole may enclose and
still be filled, nought by default, so that nothing is filled unless asked; MaxOffFlat, how far out of flat a
hole may stand and still be filled by triangles; and Fill, a FillStrategy: WhenUnambiguous, MinArea or None.
- The report, a SolidClosing3, lists each change in the order it was made, a SolidRepair3 of a SolidRepairKind
(Drop, Flip, Weld, SplitEdge, Fill), with the area added and the volume moved; a body not closed reports the
ClosingFailure of the first step that could not go on (NonManifold, GapTooWide, HoleTooLarge, HoleOffFlat,
HoleAmbiguous, StillOpen) and a point at the trouble.
- The faces are cleaned and turned, each closed shell keeping its winding against the shell it lies in; the corners
across the gaps are welded within the least reach that closes the body; and the holes left are filled where
allowed: a flat one by one face on the body's own corners, the two ends of a hole through the body by caps or by
walls, one out of flat by the triangles of least area across it. Nothing is made up: no weld or fill is taken
that leaves a ring doubling back, lies back to back with a face of the body, or crosses one, though each of
those would read valid.
Of the 1 989 parts of a Tekla model, damaged five ways and closed within a gap of 0.005, 9 736 of the 9 945 bodies
closed, each valid, none further from the part's volume than 13 parts in a million. Of the 35 cuts TrySubtractAll
skips on the 79 864 parts of a Tekla model, 23 closed, none further from the same cut within a hundredth than 2.1
parts in a million; the other 12 are cut wrong, or hold a hole larger than allowed.
Details in CHANGELOG.md.
Earlier releases: https://github.com/nguyenthanguth/GeometryHelper/blob/main/CHANGELOG.md