mirror of
https://develop.openfoam.com/Development/openfoam.git
synced 2025-11-28 03:28:01 +00:00
488 lines
16 KiB
C++
488 lines
16 KiB
C++
/*---------------------------------------------------------------------------*\
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========= |
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\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
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\\ / O peration |
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\\ / A nd | Copyright (C) 2011-2013 OpenFOAM Foundation
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\\/ M anipulation |
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-------------------------------------------------------------------------------
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License
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This file is part of OpenFOAM.
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OpenFOAM is free software: you can redistribute it and/or modify it
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under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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OpenFOAM is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with OpenFOAM. If not, see <http://www.gnu.org/licenses/>.
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Class
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Foam::extendedFeatureEdgeMesh
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Description
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Description of feature edges and points.
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Feature points are a sorted subset at the start of the overall points list:
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0 .. concaveStart_-1 : convex points (w.r.t normals)
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concaveStart_ .. mixedStart_-1 : concave points
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mixedStart_ .. nonFeatureStart_-1 : mixed internal/external points
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nonFeatureStart_ .. size-1 : non-feature points
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Feature edges are the edgeList of the edgeMesh and are sorted:
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0 .. internalStart_-1 : external edges (convex w.r.t normals)
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internalStart_ .. flatStart_-1 : internal edges (concave)
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flatStart_ .. openStart_-1 : flat edges (neither concave or convex)
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can arise from region interfaces on
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flat surfaces
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openStart_ .. multipleStart_-1 : open edges (e.g. from baffle surfaces)
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multipleStart_ .. size-1 : multiply connected edges
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The edge direction and feature edge and feature point adjacent normals
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are stored.
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SourceFiles
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extendedFeatureEdgeMeshI.H
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extendedFeatureEdgeMesh.C
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\*---------------------------------------------------------------------------*/
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#ifndef extendedFeatureEdgeMesh_H
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#define extendedFeatureEdgeMesh_H
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#include "edgeMesh.H"
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#include "regIOobject.H"
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#include "indexedOctree.H"
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#include "treeDataEdge.H"
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#include "treeDataPoint.H"
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#include "PrimitivePatch.H"
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#include "PackedList.H"
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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namespace Foam
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{
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class surfaceFeatures;
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class objectRegistry;
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/*---------------------------------------------------------------------------*\
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Class extendedFeatureEdgeMesh Declaration
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\*---------------------------------------------------------------------------*/
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class extendedFeatureEdgeMesh
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:
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public regIOobject,
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public edgeMesh
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{
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public:
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//- Runtime type information
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TypeName("extendedFeatureEdgeMesh");
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enum pointStatus
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{
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CONVEX, // Fully convex point (w.r.t normals)
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CONCAVE, // Fully concave point
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MIXED, // A point surrounded by both convex and concave edges
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NONFEATURE // Not a feature point
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};
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static const Foam::NamedEnum<pointStatus, 4> pointStatusNames_;
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enum edgeStatus
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{
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EXTERNAL, // "Convex" edge
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INTERNAL, // "Concave" edge
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FLAT, // Neither concave or convex, on a flat surface
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OPEN, // i.e. only connected to one face
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MULTIPLE, // Multiply connected (connected to more than two faces)
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NONE // Not a classified feature edge (consistency with
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// surfaceFeatures)
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};
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static const Foam::NamedEnum<edgeStatus, 6> edgeStatusNames_;
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//- Normals point to the outside
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enum sideVolumeType
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{
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INSIDE = 0, // mesh inside
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OUTSIDE = 1, // mesh outside
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BOTH = 2, // e.g. a baffle
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NEITHER = 3 // not sure when this may be used
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};
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static const Foam::NamedEnum<sideVolumeType, 4> sideVolumeTypeNames_;
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private:
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// Static data
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//- Angular closeness tolerance for treating normals as the same
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static scalar cosNormalAngleTol_;
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//- Index of the start of the convex feature points - static as 0
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static label convexStart_;
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//- Index of the start of the external feature edges - static as 0
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static label externalStart_;
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// Private data
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//- Index of the start of the concave feature points
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label concaveStart_;
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//- Index of the start of the mixed type feature points
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label mixedStart_;
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//- Index of the start of the non-feature points
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label nonFeatureStart_;
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//- Index of the start of the internal feature edges
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label internalStart_;
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//- Index of the start of the flat feature edges
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label flatStart_;
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//- Index of the start of the open feature edges
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label openStart_;
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//- Index of the start of the multiply-connected feature edges
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label multipleStart_;
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//- Normals of the features, to be referred to by index by both feature
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// points and edges, unsorted
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vectorField normals_;
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//-
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PackedList<2> normalVolumeTypes_;
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//- Flat and open edges require the direction of the edge
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vectorField edgeDirections_;
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//- Starting directions for the edges.
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// This vector points to the half of the plane defined by the first
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// edge normal.
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labelListList normalDirections_;
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//- Indices of the normals that are adjacent to the feature edges
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labelListList edgeNormals_;
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//- Indices of the normals that are adjacent to the feature points
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// (only valid for 0..nonFeatureStart_-1)
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labelListList featurePointNormals_;
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//- Indices of feature edges attached to feature points. The edges are
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// ordered so that they can be circulated.
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labelListList featurePointEdges_;
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//- Feature edges which are on the boundary between regions
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labelList regionEdges_;
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//- Search tree for all feature points
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mutable autoPtr<indexedOctree<treeDataPoint> > pointTree_;
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//- Search tree for all edges
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mutable autoPtr<indexedOctree<treeDataEdge> > edgeTree_;
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//- Individual search trees for each type of edge
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mutable PtrList<indexedOctree<treeDataEdge> > edgeTreesByType_;
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// Private Member Functions
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//- Classify the type of feature point. Requires valid stored member
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// data for edges and normals.
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pointStatus classifyFeaturePoint(label ptI) const;
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//- Classify the type of feature edge. Requires face centre 0 to face
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// centre 1 vector to distinguish internal from external
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edgeStatus classifyEdge
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(
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const List<vector>& norms,
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const labelList& edNorms,
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const vector& fC0tofC1
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) const;
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template<class Patch>
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void sortPointsAndEdges
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(
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const Patch&,
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const labelList& featureEdges,
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const labelList& regionFeatureEdges,
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const labelList& feaurePoints
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);
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public:
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// Static data
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//- Number of possible point types (i.e. number of slices)
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static label nPointTypes;
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//- Number of possible feature edge types (i.e. number of slices)
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static label nEdgeTypes;
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// Constructors
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//- Construct (read) given an IOobject
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extendedFeatureEdgeMesh(const IOobject&);
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//- Construct as copy
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explicit extendedFeatureEdgeMesh
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(
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const IOobject&,
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const extendedFeatureEdgeMesh&
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);
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//- Construct by transferring components (points, edges)
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extendedFeatureEdgeMesh
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(
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const IOobject&,
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const Xfer<pointField>&,
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const Xfer<edgeList>&
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);
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//- Construct given a surface with selected edges,point
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// (surfaceFeatures), an objectRegistry and a
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// fileName to write to.
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// Extracts, classifies and reorders the data from surfaceFeatures.
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extendedFeatureEdgeMesh
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(
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const surfaceFeatures& sFeat,
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const objectRegistry& obr,
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const fileName& sFeatFileName
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);
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//- Construct from PrimitivePatch
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extendedFeatureEdgeMesh
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(
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const IOobject&,
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const PrimitivePatch<face, List, pointField, point>& surf,
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const labelList& featureEdges,
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const labelList& regionFeatureEdges,
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const labelList& featurePoints
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);
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//- Construct from all components
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extendedFeatureEdgeMesh
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(
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const IOobject& io,
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const pointField& pts,
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const edgeList& eds,
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label concaveStart,
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label mixedStart,
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label nonFeatureStart,
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label internalStart,
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label flatStart,
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label openStart,
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label multipleStart,
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const vectorField& normals,
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const vectorField& edgeDirections,
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const labelListList& normalDirections,
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const labelListList& edgeNormals,
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const labelListList& featurePointNormals,
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const labelListList& featurePointEdges,
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const labelList& regionEdges
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);
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//- Destructor
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~extendedFeatureEdgeMesh();
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// Member Functions
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// Find
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//- Find nearest surface edge for the sample point.
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void nearestFeaturePoint
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const point& sample,
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scalar searchDistSqr,
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pointIndexHit& info
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) const;
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//- Find nearest surface edge for the sample point.
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void nearestFeatureEdge
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(
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const point& sample,
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scalar searchDistSqr,
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pointIndexHit& info
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) const;
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//- Find nearest surface edge for each sample point.
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void nearestFeatureEdge
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(
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const pointField& samples,
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const scalarField& searchDistSqr,
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List<pointIndexHit>& info
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) const;
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//- Find the nearest point on each type of feature edge
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void nearestFeatureEdgeByType
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(
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const point& sample,
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const scalarField& searchDistSqr,
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List<pointIndexHit>& info
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) const;
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//- Find all the feature points within searchDistSqr of sample
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void allNearestFeaturePoints
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(
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const point& sample,
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scalar searchRadiusSqr,
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List<pointIndexHit>& info
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) const;
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//- Find all the feature edges within searchDistSqr of sample
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void allNearestFeatureEdges
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(
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const point& sample,
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const scalar searchRadiusSqr,
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List<pointIndexHit>& info
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) const;
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// Access
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//- Return the index of the start of the convex feature points
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inline label convexStart() const;
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//- Return the index of the start of the concave feature points
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inline label concaveStart() const;
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//- Return the index of the start of the mixed type feature points
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inline label mixedStart() const;
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//- Return the index of the start of the non-feature points
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inline label nonFeatureStart() const;
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//- Return the index of the start of the external feature edges
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inline label externalStart() const;
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//- Return the index of the start of the internal feature edges
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inline label internalStart() const;
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//- Return the index of the start of the flat feature edges
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inline label flatStart() const;
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//- Return the index of the start of the open feature edges
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inline label openStart() const;
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//- Return the index of the start of the multiply-connected feature
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// edges
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inline label multipleStart() const;
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//- Return whether or not the point index is a feature point
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inline bool featurePoint(label ptI) const;
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//- Return the normals of the surfaces adjacent to the feature edges
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// and points
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inline const vectorField& normals() const;
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//- Return
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inline const PackedList<2>& normalVolumeTypes() const;
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//- Return the edgeDirection vectors
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inline const vectorField& edgeDirections() const;
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//-
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inline const labelListList& normalDirections() const;
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//- Return the direction of edgeI, pointing away from ptI
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inline vector edgeDirection(label edgeI, label ptI) const;
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//- Return the indices of the normals that are adjacent to the
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// feature edges
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inline const labelListList& edgeNormals() const;
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//- Return the normal vectors for a given set of normal indices
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inline vectorField edgeNormals(const labelList& edgeNormIs) const;
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//- Return the normal vectors for a given edge
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inline vectorField edgeNormals(label edgeI) const;
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//- Return the indices of the normals that are adjacent to the
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// feature points
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inline const labelListList& featurePointNormals() const;
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//- Return the normal vectors for a given feature point
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inline vectorField featurePointNormals(label ptI) const;
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//- Return the edge labels for a given feature point. Edges are
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// ordered by the faces that they share. The edge labels
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// correspond to the entry in edges().
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inline const labelListList& featurePointEdges() const;
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//- Return the feature edges which are on the boundary between
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// regions
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inline const labelList& regionEdges() const;
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//- Return the pointStatus of a specified point
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inline pointStatus getPointStatus(label ptI) const;
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//- Return the edgeStatus of a specified edge
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inline edgeStatus getEdgeStatus(label edgeI) const;
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//- Demand driven construction of octree for feature points
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const indexedOctree<treeDataPoint>& pointTree() const;
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//- Demand driven construction of octree for boundary edges
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const indexedOctree<treeDataEdge>& edgeTree() const;
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//- Demand driven construction of octree for boundary edges by type
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const PtrList<indexedOctree<treeDataEdge> >&
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edgeTreesByType() const;
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// Edit
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//- Add extendedFeatureEdgeMesh. No filtering of duplicates.
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void add(const extendedFeatureEdgeMesh&);
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//- Flip normals. All concave become convex, all internal external
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// etc.
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void flipNormals();
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// Write
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//- Write all components of the extendedFeatureEdgeMesh as obj files
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void writeObj(const fileName& prefix) const;
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//- Give precedence to the regIOobject write
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using regIOobject::write;
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//- WriteData function required for regIOobject write operation
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virtual bool writeData(Ostream&) const;
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};
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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} // End namespace Foam
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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#include "extendedFeatureEdgeMeshI.H"
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#ifdef NoRepository
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# include "extendedFeatureEdgeMeshTemplates.C"
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#endif
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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#endif
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// ************************************************************************* //
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