Adding additional objects to FEM

This commit is contained in:
jriegel 2013-04-20 10:53:03 +02:00
parent eaa639e5ae
commit 2bc64acebf
13 changed files with 344 additions and 177 deletions

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@ -33,8 +33,10 @@
#include "FemMeshPy.h"
#include "FemMesh.h"
#include "FemMeshProperty.h"
#include "FemAnalysis.h"
#include "FemMeshObject.h"
#include "FemMeshShapeObject.h"
#include "FemMeshShapeNetgenObject.h"
#include "FemSetElementsObject.h"
#include "FemSetFacesObject.h"
@ -111,23 +113,25 @@ void AppFemExport initFem()
// call PyType_Ready, otherwise we run into a segmentation fault, later on.
// This function is responsible for adding inherited slots from a type's base class.
Fem::FemMesh ::init();
Fem::FemMeshObject ::init();
Fem::FemMeshShapeObject ::init();
Fem::PropertyFemMesh ::init();
Fem::FemAnalysis ::init();
Fem::FemMesh ::init();
Fem::FemMeshObject ::init();
Fem::FemMeshShapeObject ::init();
Fem::FemMeshShapeNetgenObject ::init();
Fem::PropertyFemMesh ::init();
Fem::FemSetObject ::init();
Fem::FemSetElementsObject ::init();
Fem::FemSetFacesObject ::init();
Fem::FemSetGeometryObject ::init();
Fem::FemSetNodesObject ::init();
Fem::FemSetObject ::init();
Fem::FemSetElementsObject ::init();
Fem::FemSetFacesObject ::init();
Fem::FemSetGeometryObject ::init();
Fem::FemSetNodesObject ::init();
Fem::Constraint ::init();
Fem::ConstraintBearing ::init();
Fem::ConstraintFixed ::init();
Fem::ConstraintForce ::init();
Fem::ConstraintGear ::init();
Fem::ConstraintPulley ::init();
Fem::Constraint ::init();
Fem::ConstraintBearing ::init();
Fem::ConstraintFixed ::init();
Fem::ConstraintForce ::init();
Fem::ConstraintGear ::init();
Fem::ConstraintPulley ::init();
}
} // extern "C"

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@ -43,7 +43,7 @@ public:
/// returns the type name of the ViewProvider
virtual const char* getViewProviderName(void) const {
return "FemGui::ViewProviderFemAnalysis";
return "FemGui::ViewProviderAnalysis";
}
virtual App::DocumentObjectExecReturn *execute(void) {
return App::DocumentObject::StdReturn;

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@ -64,6 +64,8 @@ App::DocumentObjectExecReturn *FemMeshShapeNetgenObject::execute(void)
Part::Feature *feat = Shape.getValue<Part::Feature*>();
TopoDS_Shape shape = feat->Shape.getValue();
if(shape.IsNull())
return App::DocumentObject::StdReturn;
NETGENPlugin_Mesher myNetGenMesher(newMesh.getSMesh(),shape,true);

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@ -31,6 +31,49 @@
#include <App/DocumentObjectPy.h>
#include <Base/Placement.h>
#include <Mod/Part/App/PartFeature.h>
#include <SMESH_Gen.hxx>
#include <SMESH_Mesh.hxx>
#include <SMDS_PolyhedralVolumeOfNodes.hxx>
#include <SMDS_VolumeTool.hxx>
#include <StdMeshers_Arithmetic1D.hxx>
#include <StdMeshers_AutomaticLength.hxx>
#include <StdMeshers_MaxLength.hxx>
#include <StdMeshers_LocalLength.hxx>
#include <StdMeshers_MaxElementArea.hxx>
#include <StdMeshers_NotConformAllowed.hxx>
#include <StdMeshers_QuadranglePreference.hxx>
#include <StdMeshers_Quadrangle_2D.hxx>
#include <StdMeshers_Regular_1D.hxx>
#include <StdMeshers_UseExisting_1D2D.hxx>
#include <StdMeshers_CompositeSegment_1D.hxx>
#include <StdMeshers_Deflection1D.hxx>
#include <StdMeshers_Hexa_3D.hxx>
#include <StdMeshers_LayerDistribution.hxx>
#include <StdMeshers_LengthFromEdges.hxx>
#include <StdMeshers_MaxElementVolume.hxx>
#include <StdMeshers_MEFISTO_2D.hxx>
#include <StdMeshers_NumberOfLayers.hxx>
#include <StdMeshers_NumberOfSegments.hxx>
#include <StdMeshers_Prism_3D.hxx>
#include <StdMeshers_Projection_1D.hxx>
#include <StdMeshers_Projection_2D.hxx>
#include <StdMeshers_Projection_3D.hxx>
#include <StdMeshers_QuadraticMesh.hxx>
#include <StdMeshers_RadialPrism_3D.hxx>
#include <StdMeshers_SegmentAroundVertex_0D.hxx>
#include <StdMeshers_TrianglePreference.hxx>
#include <StdMeshers_ProjectionSource1D.hxx>
#include <StdMeshers_ProjectionSource2D.hxx>
#include <StdMeshers_ProjectionSource3D.hxx>
#include <StdMeshers_SegmentLengthAroundVertex.hxx>
#include <StdMeshers_StartEndLength.hxx>
//#include <StdMeshers_Propagation.hxx>
#include <StdMeshers_CompositeHexa_3D.hxx>
#include <NETGENPlugin_SimpleHypothesis_3D.hxx>
#include <NETGENPlugin_Mesher.hxx>
#include <BRepBuilderAPI_Copy.hxx>
#include <BRepTools.hxx>
using namespace Fem;
using namespace App;
@ -47,140 +90,140 @@ FemMeshShapeObject::~FemMeshShapeObject()
{
}
//App::DocumentObjectExecReturn *FemMeshShapeObject::execute(void)
//{
// Fem::FemMesh newMesh;
//
// Part::Feature *feat = Shape.getValue<Part::Feature*>();
//
//#if 0
// TopoDS_Shape oshape = feat->Shape.getValue();
// BRepBuilderAPI_Copy copy(oshape);
// const TopoDS_Shape& shape = copy.Shape();
// BRepTools::Clean(shape); // remove triangulation
//#else
// TopoDS_Shape shape = feat->Shape.getValue();
//#endif
//
// newMesh.getSMesh()->ShapeToMesh(shape);
// SMESH_Gen *myGen = newMesh.getGenerator();
//
// int hyp=0;
//#if 0
// SMESH_HypothesisPtr len(new StdMeshers_MaxLength(hyp++, 1, myGen));
// static_cast<StdMeshers_MaxLength*>(len.get())->SetLength(1.0);
// newMesh.addHypothesis(shape, len);
//
// SMESH_HypothesisPtr loc(new StdMeshers_LocalLength(hyp++, 1, myGen));
// static_cast<StdMeshers_LocalLength*>(loc.get())->SetLength(1.0);
// newMesh.addHypothesis(shape, loc);
//
// SMESH_HypothesisPtr area(new StdMeshers_MaxElementArea(hyp++, 1, myGen));
// static_cast<StdMeshers_MaxElementArea*>(area.get())->SetMaxArea(1.0);
// newMesh.addHypothesis(shape, area);
//
// SMESH_HypothesisPtr segm(new StdMeshers_NumberOfSegments(hyp++, 1, myGen));
// static_cast<StdMeshers_NumberOfSegments*>(segm.get())->SetNumberOfSegments(1);
// newMesh.addHypothesis(shape, segm);
//
// SMESH_HypothesisPtr defl(new StdMeshers_Deflection1D(hyp++, 1, myGen));
// static_cast<StdMeshers_Deflection1D*>(defl.get())->SetDeflection(0.01);
// newMesh.addHypothesis(shape, defl);
//
// SMESH_HypothesisPtr reg(new StdMeshers_Regular_1D(hyp++, 1, myGen));
// newMesh.addHypothesis(shape, reg);
//
// //SMESH_HypothesisPtr sel(new StdMeshers_StartEndLength(hyp++, 1, myGen));
// //static_cast<StdMeshers_StartEndLength*>(sel.get())->SetLength(1.0, true);
// //newMesh.addHypothesis(shape, sel;
//
// SMESH_HypothesisPtr qdp(new StdMeshers_QuadranglePreference(hyp++,1,myGen));
// newMesh.addHypothesis(shape, qdp);
//
// //SMESH_HypothesisPtr q2d(new StdMeshers_Quadrangle_2D(hyp++,1,myGen));
// //newMesh.addHypothesis(shape, q2d);
//
// SMESH_HypothesisPtr h3d(new StdMeshers_Hexa_3D(hyp++,1,myGen));
// newMesh.addHypothesis(shape, h3d);
//
// // create mesh
// newMesh.compute();
//#endif
//#if 0 // Surface quad mesh
// SMESH_HypothesisPtr len(new StdMeshers_MaxLength(hyp++, 1, myGen));
// static_cast<StdMeshers_MaxLength*>(len.get())->SetLength(1.0);
// newMesh.addHypothesis(shape, len);
//
// SMESH_HypothesisPtr loc(new StdMeshers_LocalLength(hyp++, 1, myGen));
// static_cast<StdMeshers_LocalLength*>(loc.get())->SetLength(1.0);
// newMesh.addHypothesis(shape, loc);
//
// SMESH_HypothesisPtr area(new StdMeshers_MaxElementArea(hyp++, 1, myGen));
// static_cast<StdMeshers_MaxElementArea*>(area.get())->SetMaxArea(1.0);
// newMesh.addHypothesis(shape, area);
//
// SMESH_HypothesisPtr segm(new StdMeshers_NumberOfSegments(hyp++, 1, myGen));
// static_cast<StdMeshers_NumberOfSegments*>(segm.get())->SetNumberOfSegments(1);
// newMesh.addHypothesis(shape, segm);
//
// SMESH_HypothesisPtr defl(new StdMeshers_Deflection1D(hyp++, 1, myGen));
// static_cast<StdMeshers_Deflection1D*>(defl.get())->SetDeflection(0.01);
// newMesh.addHypothesis(shape, defl);
//
// SMESH_HypothesisPtr reg(new StdMeshers_Regular_1D(hyp++, 1, myGen));
// newMesh.addHypothesis(shape, reg);
//
// //SMESH_HypothesisPtr sel(new StdMeshers_StartEndLength(hyp++, 1, myGen));
// //static_cast<StdMeshers_StartEndLength*>(sel.get())->SetLength(1.0, true);
// //newMesh.addHypothesis(shape, sel;
//
// SMESH_HypothesisPtr qdp(new StdMeshers_QuadranglePreference(hyp++,1,myGen));
// newMesh.addHypothesis(shape, qdp);
//
// SMESH_HypothesisPtr q2d(new StdMeshers_Quadrangle_2D(hyp++,1,myGen));
// newMesh.addHypothesis(shape, q2d);
//
// // create mesh
// newMesh.compute();
//#endif
//#if 1 // NETGEN test
// NETGENPlugin_Mesher myNetGenMesher(newMesh.getSMesh(),shape,true);
//
// //NETGENPlugin_SimpleHypothesis_2D * tet2 = new NETGENPlugin_SimpleHypothesis_2D(hyp++,1,myGen);
// //static_cast<NETGENPlugin_SimpleHypothesis_2D*>(tet2.get())->SetNumberOfSegments(5);
// //static_cast<NETGENPlugin_SimpleHypothesis_2D*>(tet2.get())->SetLocalLength(0.1);
// //static_cast<NETGENPlugin_SimpleHypothesis_2D*>(tet2.get())->LengthFromEdges();
// //myNetGenMesher.SetParameters(tet2);
//
// //NETGENPlugin_SimpleHypothesis_3D* tet= new NETGENPlugin_SimpleHypothesis_3D(hyp++,1,myGen);
// //static_cast<NETGENPlugin_SimpleHypothesis_3D*>(tet.get())->LengthFromFaces();
// //static_cast<NETGENPlugin_SimpleHypothesis_3D*>(tet.get())->SetMaxElementVolume(0.1);
// //myNetGenMesher.SetParameters( tet);
//
// myNetGenMesher.Compute();
//#endif
//
//
//
// SMESHDS_Mesh* data = const_cast<SMESH_Mesh*>(newMesh.getSMesh())->GetMeshDS();
// const SMDS_MeshInfo& info = data->GetMeshInfo();
// int numNode = info.NbNodes();
// int numTria = info.NbTriangles();
// int numQuad = info.NbQuadrangles();
// int numPoly = info.NbPolygons();
// int numVolu = info.NbVolumes();
// int numTetr = info.NbTetras();
// int numHexa = info.NbHexas();
// int numPyrd = info.NbPyramids();
// int numPris = info.NbPrisms();
// int numHedr = info.NbPolyhedrons();
//
// // set the value to the object
// FemMesh.setValue(newMesh);
//
//
// return App::DocumentObject::StdReturn;
//}
App::DocumentObjectExecReturn *FemMeshShapeObject::execute(void)
{
Fem::FemMesh newMesh;
Part::Feature *feat = Shape.getValue<Part::Feature*>();
#if 0
TopoDS_Shape oshape = feat->Shape.getValue();
BRepBuilderAPI_Copy copy(oshape);
const TopoDS_Shape& shape = copy.Shape();
BRepTools::Clean(shape); // remove triangulation
#else
TopoDS_Shape shape = feat->Shape.getValue();
#endif
newMesh.getSMesh()->ShapeToMesh(shape);
SMESH_Gen *myGen = newMesh.getGenerator();
int hyp=0;
#if 0
SMESH_HypothesisPtr len(new StdMeshers_MaxLength(hyp++, 1, myGen));
static_cast<StdMeshers_MaxLength*>(len.get())->SetLength(1.0);
newMesh.addHypothesis(shape, len);
SMESH_HypothesisPtr loc(new StdMeshers_LocalLength(hyp++, 1, myGen));
static_cast<StdMeshers_LocalLength*>(loc.get())->SetLength(1.0);
newMesh.addHypothesis(shape, loc);
SMESH_HypothesisPtr area(new StdMeshers_MaxElementArea(hyp++, 1, myGen));
static_cast<StdMeshers_MaxElementArea*>(area.get())->SetMaxArea(1.0);
newMesh.addHypothesis(shape, area);
SMESH_HypothesisPtr segm(new StdMeshers_NumberOfSegments(hyp++, 1, myGen));
static_cast<StdMeshers_NumberOfSegments*>(segm.get())->SetNumberOfSegments(1);
newMesh.addHypothesis(shape, segm);
SMESH_HypothesisPtr defl(new StdMeshers_Deflection1D(hyp++, 1, myGen));
static_cast<StdMeshers_Deflection1D*>(defl.get())->SetDeflection(0.01);
newMesh.addHypothesis(shape, defl);
SMESH_HypothesisPtr reg(new StdMeshers_Regular_1D(hyp++, 1, myGen));
newMesh.addHypothesis(shape, reg);
//SMESH_HypothesisPtr sel(new StdMeshers_StartEndLength(hyp++, 1, myGen));
//static_cast<StdMeshers_StartEndLength*>(sel.get())->SetLength(1.0, true);
//newMesh.addHypothesis(shape, sel;
SMESH_HypothesisPtr qdp(new StdMeshers_QuadranglePreference(hyp++,1,myGen));
newMesh.addHypothesis(shape, qdp);
//SMESH_HypothesisPtr q2d(new StdMeshers_Quadrangle_2D(hyp++,1,myGen));
//newMesh.addHypothesis(shape, q2d);
SMESH_HypothesisPtr h3d(new StdMeshers_Hexa_3D(hyp++,1,myGen));
newMesh.addHypothesis(shape, h3d);
// create mesh
newMesh.compute();
#endif
#if 0 // Surface quad mesh
SMESH_HypothesisPtr len(new StdMeshers_MaxLength(hyp++, 1, myGen));
static_cast<StdMeshers_MaxLength*>(len.get())->SetLength(1.0);
newMesh.addHypothesis(shape, len);
SMESH_HypothesisPtr loc(new StdMeshers_LocalLength(hyp++, 1, myGen));
static_cast<StdMeshers_LocalLength*>(loc.get())->SetLength(1.0);
newMesh.addHypothesis(shape, loc);
SMESH_HypothesisPtr area(new StdMeshers_MaxElementArea(hyp++, 1, myGen));
static_cast<StdMeshers_MaxElementArea*>(area.get())->SetMaxArea(1.0);
newMesh.addHypothesis(shape, area);
SMESH_HypothesisPtr segm(new StdMeshers_NumberOfSegments(hyp++, 1, myGen));
static_cast<StdMeshers_NumberOfSegments*>(segm.get())->SetNumberOfSegments(1);
newMesh.addHypothesis(shape, segm);
SMESH_HypothesisPtr defl(new StdMeshers_Deflection1D(hyp++, 1, myGen));
static_cast<StdMeshers_Deflection1D*>(defl.get())->SetDeflection(0.01);
newMesh.addHypothesis(shape, defl);
SMESH_HypothesisPtr reg(new StdMeshers_Regular_1D(hyp++, 1, myGen));
newMesh.addHypothesis(shape, reg);
//SMESH_HypothesisPtr sel(new StdMeshers_StartEndLength(hyp++, 1, myGen));
//static_cast<StdMeshers_StartEndLength*>(sel.get())->SetLength(1.0, true);
//newMesh.addHypothesis(shape, sel;
SMESH_HypothesisPtr qdp(new StdMeshers_QuadranglePreference(hyp++,1,myGen));
newMesh.addHypothesis(shape, qdp);
SMESH_HypothesisPtr q2d(new StdMeshers_Quadrangle_2D(hyp++,1,myGen));
newMesh.addHypothesis(shape, q2d);
// create mesh
newMesh.compute();
#endif
#if 1 // NETGEN test
NETGENPlugin_Mesher myNetGenMesher(newMesh.getSMesh(),shape,true);
//NETGENPlugin_SimpleHypothesis_2D * tet2 = new NETGENPlugin_SimpleHypothesis_2D(hyp++,1,myGen);
//static_cast<NETGENPlugin_SimpleHypothesis_2D*>(tet2.get())->SetNumberOfSegments(5);
//static_cast<NETGENPlugin_SimpleHypothesis_2D*>(tet2.get())->SetLocalLength(0.1);
//static_cast<NETGENPlugin_SimpleHypothesis_2D*>(tet2.get())->LengthFromEdges();
//myNetGenMesher.SetParameters(tet2);
//NETGENPlugin_SimpleHypothesis_3D* tet= new NETGENPlugin_SimpleHypothesis_3D(hyp++,1,myGen);
//static_cast<NETGENPlugin_SimpleHypothesis_3D*>(tet.get())->LengthFromFaces();
//static_cast<NETGENPlugin_SimpleHypothesis_3D*>(tet.get())->SetMaxElementVolume(0.1);
//myNetGenMesher.SetParameters( tet);
myNetGenMesher.Compute();
#endif
SMESHDS_Mesh* data = const_cast<SMESH_Mesh*>(newMesh.getSMesh())->GetMeshDS();
const SMDS_MeshInfo& info = data->GetMeshInfo();
int numNode = info.NbNodes();
int numTria = info.NbTriangles();
int numQuad = info.NbQuadrangles();
int numPoly = info.NbPolygons();
int numVolu = info.NbVolumes();
int numTetr = info.NbTetras();
int numHexa = info.NbHexas();
int numPyrd = info.NbPyramids();
int numPris = info.NbPrisms();
int numHedr = info.NbPolyhedrons();
// set the value to the object
FemMesh.setValue(newMesh);
return App::DocumentObject::StdReturn;
}
//short FemMeshShapeObject::mustExecute(void) const
//{

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@ -40,10 +40,10 @@ public:
virtual ~FemMeshShapeObject();
/// returns the type name of the ViewProvider
//virtual const char* getViewProviderName(void) const {
// return "FemGui::ViewProviderFemMeshShape";
//}
//virtual App::DocumentObjectExecReturn *execute(void);
virtual const char* getViewProviderName(void) const {
return "FemGui::ViewProviderFemMeshShape";
}
virtual App::DocumentObjectExecReturn *execute(void);
//virtual short mustExecute(void) const;
//virtual PyObject *getPyObject(void);

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@ -30,6 +30,9 @@
#include <Gui/Application.h>
#include <Gui/Language/Translator.h>
#include "ViewProviderFemMesh.h"
#include "ViewProviderFemMeshShape.h"
#include "ViewProviderFemMeshShapeNetgen.h"
#include "ViewProviderAnalysis.h"
#include "ViewProviderSetNodes.h"
#include "ViewProviderSetElements.h"
#include "ViewProviderSetFaces.h"
@ -73,18 +76,21 @@ void FemGuiExport initFemGui()
CreateFemCommands();
// addition objects
FemGui::Workbench ::init();
FemGui::ViewProviderFemMesh ::init();
FemGui::ViewProviderSetNodes ::init();
FemGui::ViewProviderSetElements ::init();
FemGui::ViewProviderSetFaces ::init();
FemGui::ViewProviderSetGeometry ::init();
FemGui::ViewProviderFemConstraint ::init();
FemGui::ViewProviderFemConstraintBearing ::init();
FemGui::ViewProviderFemConstraintFixed ::init();
FemGui::ViewProviderFemConstraintForce ::init();
FemGui::ViewProviderFemConstraintGear ::init();
FemGui::ViewProviderFemConstraintPulley ::init();
FemGui::Workbench ::init();
FemGui::ViewProviderAnalysis ::init();
FemGui::ViewProviderFemMesh ::init();
FemGui::ViewProviderFemMeshShape ::init();
FemGui::ViewProviderFemMeshShapeNetgen ::init();
FemGui::ViewProviderSetNodes ::init();
FemGui::ViewProviderSetElements ::init();
FemGui::ViewProviderSetFaces ::init();
FemGui::ViewProviderSetGeometry ::init();
FemGui::ViewProviderFemConstraint ::init();
FemGui::ViewProviderFemConstraintBearing ::init();
FemGui::ViewProviderFemConstraintFixed ::init();
FemGui::ViewProviderFemConstraintForce ::init();
FemGui::ViewProviderFemConstraintGear ::init();
FemGui::ViewProviderFemConstraintPulley ::init();
// add resources and reloads the translators
loadFemResource();

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@ -120,10 +120,16 @@ void CmdFemCreateAnalysis::activated(int iMsg)
Part::Feature *base = static_cast<Part::Feature*>(selection[0].getObject());
std::string AnalysisName = getUniqueObjectName("FemAnalysis");
std::string MeshName = getUniqueObjectName((std::string(base->getNameInDocument()) +"_Mesh").c_str());
openCommand("Create FEM analysis");
doCommand(Doc,"App.activeDocument().addObject('Fem::FemMeshShapeObject','%s')","FemShape");
doCommand(Doc,"App.activeDocument().addObject('Fem::FemAnalysis','%s')",AnalysisName.c_str());
doCommand(Doc,"App.activeDocument().addObject('Fem::FemMeshShapeNetgenObject','%s')",MeshName.c_str());
doCommand(Doc,"App.activeDocument().ActiveObject.Shape = App.activeDocument().%s",base->getNameInDocument());
doCommand(Doc,"App.activeDocument().%s.Member = App.activeDocument().%s",AnalysisName.c_str(),MeshName.c_str());
updateActive();
}

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@ -29,10 +29,13 @@
#endif
#include "ViewProviderAnalysis.h"
#include <Gui/Command.h>
#include <Gui/Document.h>
#include <Gui/Control.h>
#include <Mod/Fem/App/FemMeshObject.h>
#include <Mod/Fem/App/FemMesh.h>
#include <Mod/Fem/App/FemAnalysis.h>
#include "TaskDlgAnalysis.h"
using namespace FemGui;
@ -42,7 +45,7 @@ using namespace FemGui;
PROPERTY_SOURCE(FemGui::ViewProviderAnalysis, Gui::ViewProviderGeometryObject)
PROPERTY_SOURCE(FemGui::ViewProviderAnalysis, Gui::ViewProviderDocumentObject)
ViewProviderAnalysis::ViewProviderAnalysis()
@ -56,3 +59,95 @@ ViewProviderAnalysis::~ViewProviderAnalysis()
}
std::vector<App::DocumentObject*> ViewProviderAnalysis::claimChildren(void)const
{
std::vector<App::DocumentObject*> temp(static_cast<Fem::FemAnalysis*>(getObject())->Member.getValues());
return temp;
}
//std::vector<App::DocumentObject*> ViewProviderAnalysis::claimChildren3D(void)const
//{
//
// //return static_cast<Assembly::ConstraintGroup*>(getObject())->Constraints.getValues();
// return std::vector<App::DocumentObject*> ();
//}
void ViewProviderAnalysis::setupContextMenu(QMenu* menu, QObject* receiver, const char* member)
{
//QAction* act;
//act = menu->addAction(QObject::tr("Edit pad"), receiver, member);
//act->setData(QVariant((int)ViewProvider::Default));
//PartGui::ViewProviderPart::setupContextMenu(menu, receiver, member);
}
bool ViewProviderAnalysis::setEdit(int ModNum)
{
if (ModNum == ViewProvider::Default ) {
//// When double-clicking on the item for this pad the
//// object unsets and sets its edit mode without closing
//// the task panel
//Gui::TaskView::TaskDialog *dlg = Gui::Control().activeDialog();
//TaskDlgAnalysis *anaDlg = qobject_cast<TaskDlgAnalysis *>(dlg);
//if (padDlg && anaDlg->getPadView() != this)
// padDlg = 0; // another pad left open its task panel
//if (dlg && !padDlg) {
// QMessageBox msgBox;
// msgBox.setText(QObject::tr("A dialog is already open in the task panel"));
// msgBox.setInformativeText(QObject::tr("Do you want to close this dialog?"));
// msgBox.setStandardButtons(QMessageBox::Yes | QMessageBox::No);
// msgBox.setDefaultButton(QMessageBox::Yes);
// int ret = msgBox.exec();
// if (ret == QMessageBox::Yes)
// Gui::Control().closeDialog();
// else
// return false;
//}
// start the edit dialog
// if (padDlg)
// Gui::Control().showDialog(padDlg);
// else
Fem::FemAnalysis* pcAna = static_cast<Fem::FemAnalysis*>(this->getObject());
Gui::Control().showDialog(new TaskDlgAnalysis(pcAna));
return true;
}
else {
return Gui::ViewProviderDocumentObject::setEdit(ModNum);
}
}
void ViewProviderAnalysis::unsetEdit(int ModNum)
{
if (ModNum == ViewProvider::Default) {
// when pressing ESC make sure to close the dialog
Gui::Control().closeDialog();
}
else {
Gui::ViewProviderDocumentObject::unsetEdit(ModNum);
}
}
bool ViewProviderAnalysis::onDelete(const std::vector<std::string> &)
{
//// get the support and Sketch
//PartDesign::Pad* pcPad = static_cast<PartDesign::Pad*>(getObject());
//Sketcher::SketchObject *pcSketch = 0;
//App::DocumentObject *pcSupport = 0;
//if (pcPad->Sketch.getValue()){
// pcSketch = static_cast<Sketcher::SketchObject*>(pcPad->Sketch.getValue());
// pcSupport = pcSketch->Support.getValue();
//}
//// if abort command deleted the object the support is visible again
//if (pcSketch && Gui::Application::Instance->getViewProvider(pcSketch))
// Gui::Application::Instance->getViewProvider(pcSketch)->show();
//if (pcSupport && Gui::Application::Instance->getViewProvider(pcSupport))
// Gui::Application::Instance->getViewProvider(pcSupport)->show();
return true;
}

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@ -39,7 +39,7 @@ namespace FemGui
class FemGuiExport ViewProviderAnalysis : public Gui::ViewProviderGeometryObject
class FemGuiExport ViewProviderAnalysis : public Gui::ViewProviderDocumentObject
{
PROPERTY_HEADER(FemGui::ViewProviderAnalysis);
@ -50,6 +50,17 @@ public:
/// destructor.
~ViewProviderAnalysis();
virtual std::vector<App::DocumentObject*> claimChildren(void)const;
//virtual std::vector<App::DocumentObject*> claimChildren3D(void)const;
void setupContextMenu(QMenu*, QObject*, const char*);
virtual bool onDelete(const std::vector<std::string> &);
protected:
virtual bool setEdit(int ModNum);
virtual void unsetEdit(int ModNum);
};
} //namespace FemGui

View File

@ -35,7 +35,7 @@ using namespace FemGui;
PROPERTY_SOURCE(FemGui::ViewProviderFemMeshShape, Gui::ViewProviderGeometryObject)
PROPERTY_SOURCE(FemGui::ViewProviderFemMeshShape, FemGui::ViewProviderFemMesh)
ViewProviderFemMeshShape::ViewProviderFemMeshShape()

View File

@ -24,7 +24,7 @@
#ifndef FEM_ViewProviderFemMeshShape_H
#define FEM_ViewProviderFemMeshShape_H
#include <Gui/ViewProviderGeometryObject.h>
#include "ViewProviderFemMesh.h"
#include <Gui/ViewProviderBuilder.h>
class SoCoordinate3;
@ -38,7 +38,7 @@ namespace FemGui
{
class FemGuiExport ViewProviderFemMeshShape : public Gui::ViewProviderGeometryObject
class FemGuiExport ViewProviderFemMeshShape : public ViewProviderFemMesh
{
PROPERTY_HEADER(FemGui::ViewProviderFemMeshShape);

View File

@ -37,7 +37,7 @@ using namespace FemGui;
PROPERTY_SOURCE(FemGui::ViewProviderFemMeshShapeNetgen, Gui::ViewProviderGeometryObject)
PROPERTY_SOURCE(FemGui::ViewProviderFemMeshShapeNetgen, FemGui::ViewProviderFemMeshShape)
ViewProviderFemMeshShapeNetgen::ViewProviderFemMeshShapeNetgen()

View File

@ -24,7 +24,7 @@
#ifndef FEM_ViewProviderFemMeshShapeNetgen_H
#define FEM_ViewProviderFemMeshShapeNetgen_H
#include <Gui/ViewProviderGeometryObject.h>
#include "ViewProviderFemMeshShape.h"
#include <Gui/ViewProviderBuilder.h>
class SoCoordinate3;
@ -38,7 +38,7 @@ namespace FemGui
{
class FemGuiExport ViewProviderFemMeshShapeNetgen : public Gui::ViewProviderGeometryObject
class FemGuiExport ViewProviderFemMeshShapeNetgen : public ViewProviderFemMeshShape
{
PROPERTY_HEADER(FemGui::ViewProviderFemMeshShapeNetgen);