mirror of
https://github.com/NGSolve/netgen.git
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b694b4667a
move fieldlines code to meshing dir move visualization function pointers to meshing directory DLL_HEADER -> NGGUI_API in visualization lib move soldata.hpp to meshing update occ, no freetype necessary anymore
213 lines
5.6 KiB
C++
213 lines
5.6 KiB
C++
#include <mystdlib.h>
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#include <myadt.hpp>
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#include <occgeom.hpp>
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#define OCCGEOMETRY 1
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namespace nglib {
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#include "nglib.h"
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}
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namespace netgen
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{
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inline void NOOP_Deleter(void *) { ; }
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extern MeshingParameters mparam;
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DLL_HEADER extern OCCParameters occparam;
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} // namespace netgen
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using namespace netgen;
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namespace nglib
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{
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// --------------------- OCC Geometry / Meshing Utility Functions -------------------
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// Create new OCC Geometry Object
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NGLIB_API Ng_OCC_Geometry * Ng_OCC_NewGeometry ()
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{
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return (Ng_OCC_Geometry*)(void*)new OCCGeometry;
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}
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// Delete the OCC Geometry Object
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NGLIB_API Ng_Result Ng_OCC_DeleteGeometry(Ng_OCC_Geometry * geom)
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{
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if (geom != NULL)
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{
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delete (OCCGeometry*)geom;
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geom = NULL;
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return NG_OK;
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}
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return NG_ERROR;
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}
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// Loads geometry from STEP File
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NGLIB_API Ng_OCC_Geometry * Ng_OCC_Load_STEP (const char * filename)
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{
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// Call the STEP File Load function. Note.. the geometry class
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// is created and instantiated within the load function
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OCCGeometry * occgeo = LoadOCC_STEP(filename);
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return ((Ng_OCC_Geometry *)occgeo);
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}
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// Loads geometry from IGES File
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NGLIB_API Ng_OCC_Geometry * Ng_OCC_Load_IGES (const char * filename)
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{
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// Call the IGES File Load function. Note.. the geometry class
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// is created and instantiated within the load function
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OCCGeometry * occgeo = LoadOCC_IGES(filename);
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return ((Ng_OCC_Geometry *)occgeo);
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}
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// Loads geometry from BREP File
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NGLIB_API Ng_OCC_Geometry * Ng_OCC_Load_BREP (const char * filename)
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{
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// Call the BREP File Load function. Note.. the geometry class
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// is created and instantiated within the load function
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OCCGeometry * occgeo = LoadOCC_BREP(filename);
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return ((Ng_OCC_Geometry *)occgeo);
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}
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// Locally limit the size of the mesh to be generated at various points
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// based on the topology of the geometry
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NGLIB_API Ng_Result Ng_OCC_SetLocalMeshSize (Ng_OCC_Geometry * geom,
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Ng_Mesh * mesh,
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Ng_Meshing_Parameters * mp)
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{
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OCCGeometry * occgeom = (OCCGeometry*)geom;
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Mesh * me = (Mesh*)mesh;
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me->SetGeometry( shared_ptr<NetgenGeometry>(occgeom, &NOOP_Deleter) );
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me->geomtype = Mesh::GEOM_OCC;
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mp->Transfer_Parameters();
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if(mp->closeedgeenable)
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mparam.closeedgefac = mp->closeedgefact;
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// Delete the mesh structures in order to start with a clean
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// slate
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me->DeleteMesh();
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OCCSetLocalMeshSize(*occgeom, *me, mparam, occparam);
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return(NG_OK);
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}
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// Mesh the edges and add Face descriptors to prepare for surface meshing
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NGLIB_API Ng_Result Ng_OCC_GenerateEdgeMesh (Ng_OCC_Geometry * geom,
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Ng_Mesh * mesh,
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Ng_Meshing_Parameters * mp)
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{
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OCCGeometry * occgeom = (OCCGeometry*)geom;
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Mesh * me = (Mesh*)mesh;
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me->SetGeometry( shared_ptr<NetgenGeometry>(occgeom, &NOOP_Deleter) );
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mp->Transfer_Parameters();
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occgeom->FindEdges(*me, mparam);
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if((me->GetNP()))
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{
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return NG_OK;
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}
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else
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{
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return NG_ERROR;
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}
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}
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// Mesh the edges and add Face descriptors to prepare for surface meshing
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NGLIB_API Ng_Result Ng_OCC_GenerateSurfaceMesh (Ng_OCC_Geometry * geom,
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Ng_Mesh * mesh,
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Ng_Meshing_Parameters * mp)
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{
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int numpoints = 0;
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OCCGeometry * occgeom = (OCCGeometry*)geom;
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Mesh * me = (Mesh*)mesh;
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me->SetGeometry( shared_ptr<NetgenGeometry>(occgeom, &NOOP_Deleter) );
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// Set the internal meshing parameters structure from the nglib meshing
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// parameters structure
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mp->Transfer_Parameters();
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numpoints = me->GetNP();
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// Initially set up only for surface meshing without any optimisation
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int perfstepsend = MESHCONST_MESHSURFACE;
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// Check and if required, enable surface mesh optimisation step
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if(mp->optsurfmeshenable)
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{
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perfstepsend = MESHCONST_OPTSURFACE;
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}
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occgeom->MeshSurface(*me, mparam);
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occgeom->OptimizeSurface(*me, mparam);
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me->CalcSurfacesOfNode();
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if(me->GetNP() <= numpoints)
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return NG_ERROR;
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if(me->GetNSE() <= 0)
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return NG_ERROR;
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return NG_OK;
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}
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// Extract the face map from the OCC geometry
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// The face map basically gives an index to each face in the geometry,
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// which can be used to access a specific face
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NGLIB_API Ng_Result Ng_OCC_GetFMap(Ng_OCC_Geometry * geom,
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Ng_OCC_TopTools_IndexedMapOfShape * FMap)
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{
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OCCGeometry* occgeom = (OCCGeometry*)geom;
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TopTools_IndexedMapOfShape *occfmap = (TopTools_IndexedMapOfShape *)FMap;
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// Copy the face map from the geometry to the given variable
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occfmap->Assign(occgeom->fmap);
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if(occfmap->Extent())
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{
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return NG_OK;
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}
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else
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{
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return NG_ERROR;
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}
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}
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// ------------------ End - OCC Geometry / Meshing Utility Functions ----------------
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NGLIB_API void Ng_OCC_Generate_SecondOrder (Ng_OCC_Geometry * geom,
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Ng_Mesh * mesh)
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{
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((OCCGeometry*)geom )->GetRefinement().MakeSecondOrder(*(Mesh*) mesh);
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}
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NGLIB_API void Ng_OCC_Uniform_Refinement (Ng_OCC_Geometry * geom,
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Ng_Mesh * mesh)
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{
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( (OCCGeometry*)geom ) -> GetRefinement().Refine ( * (Mesh*) mesh );
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}
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} // namespace nglib
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