150 lines
6.8 KiB
C++
Executable File
150 lines
6.8 KiB
C++
Executable File
/***************************************************************************
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* Copyright (c) 2008 Jürgen Riegel (juergen.riegel@web.de) *
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* *
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* This file is part of the FreeCAD CAx development system. *
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* *
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* This library is free software; you can redistribute it and/or *
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* modify it under the terms of the GNU Library General Public *
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* License as published by the Free Software Foundation; either *
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* version 2 of the License, or (at your option) any later version. *
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* *
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* This library is distributed in the hope that it will be useful, *
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* but WITHOUT ANY WARRANTY; without even the implied warranty of *
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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* GNU Library General Public License for more details. *
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* *
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* You should have received a copy of the GNU Library General Public *
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* License along with this library; see the file COPYING.LIB. If not, *
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* write to the Free Software Foundation, Inc., 59 Temple Place, *
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* Suite 330, Boston, MA 02111-1307, USA *
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* *
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***************************************************************************/
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#include "PreCompiled.h"
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#ifndef _PreComp_
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# include <Python.h>
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#endif
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#include <Base/Console.h>
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#include <Base/Interpreter.h>
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#include <CXX/Extensions.hxx>
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#include "FemMeshPy.h"
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#include "FemMesh.h"
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#include "FemMeshProperty.h"
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#include "FemAnalysis.h"
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#include "FemMeshObject.h"
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#include "FemMeshShapeObject.h"
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#include "FemMeshShapeNetgenObject.h"
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#include "FemSetElementsObject.h"
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#include "FemSetFacesObject.h"
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#include "FemSetGeometryObject.h"
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#include "FemSetNodesObject.h"
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#include "HypothesisPy.h"
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#include "FemConstraintBearing.h"
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#include "FemConstraintFixed.h"
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#include "FemConstraintForce.h"
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#include "FemConstraintGear.h"
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#include "FemConstraintPulley.h"
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#include "FemResultObject.h"
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#include "FemResultValue.h"
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#include "FemResultVector.h"
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extern struct PyMethodDef Fem_methods[];
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PyDoc_STRVAR(module_Fem_doc,
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"This module is the FEM module.");
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/* Python entry */
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extern "C" {
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void AppFemExport initFem()
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{
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// load dependend module
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try {
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Base::Interpreter().loadModule("Part");
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//Base::Interpreter().loadModule("Mesh");
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}
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catch(const Base::Exception& e) {
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PyErr_SetString(PyExc_ImportError, e.what());
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return;
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}
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PyObject* femModule = Py_InitModule3("Fem", Fem_methods, module_Fem_doc); /* mod name, table ptr */
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Base::Console().Log("Loading Fem module... done\n");
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Fem::StdMeshers_Arithmetic1DPy ::init_type(femModule);
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Fem::StdMeshers_AutomaticLengthPy ::init_type(femModule);
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Fem::StdMeshers_NotConformAllowedPy ::init_type(femModule);
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Fem::StdMeshers_MaxLengthPy ::init_type(femModule);
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Fem::StdMeshers_LocalLengthPy ::init_type(femModule);
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Fem::StdMeshers_QuadranglePreferencePy ::init_type(femModule);
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Fem::StdMeshers_Quadrangle_2DPy ::init_type(femModule);
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Fem::StdMeshers_MaxElementAreaPy ::init_type(femModule);
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Fem::StdMeshers_Regular_1DPy ::init_type(femModule);
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Fem::StdMeshers_UseExisting_1DPy ::init_type(femModule);
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Fem::StdMeshers_UseExisting_2DPy ::init_type(femModule);
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Fem::StdMeshers_CompositeSegment_1DPy ::init_type(femModule);
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Fem::StdMeshers_Deflection1DPy ::init_type(femModule);
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Fem::StdMeshers_LayerDistributionPy ::init_type(femModule);
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Fem::StdMeshers_LengthFromEdgesPy ::init_type(femModule);
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Fem::StdMeshers_MaxElementVolumePy ::init_type(femModule);
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Fem::StdMeshers_MEFISTO_2DPy ::init_type(femModule);
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Fem::StdMeshers_NumberOfLayersPy ::init_type(femModule);
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Fem::StdMeshers_NumberOfSegmentsPy ::init_type(femModule);
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Fem::StdMeshers_Prism_3DPy ::init_type(femModule);
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Fem::StdMeshers_Projection_1DPy ::init_type(femModule);
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Fem::StdMeshers_Projection_2DPy ::init_type(femModule);
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Fem::StdMeshers_Projection_3DPy ::init_type(femModule);
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Fem::StdMeshers_ProjectionSource1DPy ::init_type(femModule);
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Fem::StdMeshers_ProjectionSource2DPy ::init_type(femModule);
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Fem::StdMeshers_ProjectionSource3DPy ::init_type(femModule);
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Fem::StdMeshers_QuadraticMeshPy ::init_type(femModule);
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Fem::StdMeshers_RadialPrism_3DPy ::init_type(femModule);
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Fem::StdMeshers_SegmentAroundVertex_0DPy ::init_type(femModule);
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Fem::StdMeshers_SegmentLengthAroundVertexPy ::init_type(femModule);
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Fem::StdMeshers_StartEndLengthPy ::init_type(femModule);
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Fem::StdMeshers_TrianglePreferencePy ::init_type(femModule);
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Fem::StdMeshers_Hexa_3DPy ::init_type(femModule);
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// Add Types to module
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Base::Interpreter().addType(&Fem::FemMeshPy::Type,femModule,"FemMesh");
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// NOTE: To finish the initialization of our own type objects we must
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// call PyType_Ready, otherwise we run into a segmentation fault, later on.
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// This function is responsible for adding inherited slots from a type's base class.
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Fem::FemAnalysis ::init();
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Fem::FemAnalysisPython ::init();
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Fem::FemMesh ::init();
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Fem::FemMeshObject ::init();
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Fem::FemMeshShapeObject ::init();
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Fem::FemMeshShapeNetgenObject ::init();
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Fem::PropertyFemMesh ::init();
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Fem::FemSetObject ::init();
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Fem::FemSetElementsObject ::init();
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Fem::FemSetFacesObject ::init();
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Fem::FemSetGeometryObject ::init();
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Fem::FemSetNodesObject ::init();
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Fem::Constraint ::init();
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Fem::ConstraintBearing ::init();
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Fem::ConstraintFixed ::init();
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Fem::ConstraintForce ::init();
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Fem::ConstraintGear ::init();
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Fem::ConstraintPulley ::init();
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Fem::FemResultObject ::init();
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Fem::FemResultPython ::init();
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Fem::FemResultValue ::init();
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Fem::FemResultValuePython ::init();
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Fem::FemResultVector ::init();
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Fem::FemResultVectorPython ::init();
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}
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} // extern "C"
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