389 lines
14 KiB
C++
389 lines
14 KiB
C++
/***************************************************************************
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* Copyright (c) 2023 Peter McB *
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* Copyright (c) 2008 Werner Mayer <werner.wm.mayer@gmx.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 <qobject.h>
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#endif
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#include <App/Application.h>
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#include <Gui/MenuManager.h>
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#include <Gui/ToolBarManager.h>
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#include <Mod/Fem/App/FemTools.h>
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#include "Workbench.h"
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using namespace FemGui;
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#if 0 // needed for Qt's lupdate utility
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qApp->translate("Workbench", "FEM");
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qApp->translate("Workbench", "&FEM");
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//
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qApp->translate("Workbench", "Model");
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qApp->translate("Workbench", "M&odel");
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qApp->translate("Workbench", "Materials");
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qApp->translate("Workbench", "&Materials");
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qApp->translate("Workbench", "Element Geometry");
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qApp->translate("Workbench", "&Element Geometry");
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qApp->translate("Workbench", "Electrostatic boundary conditions");
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qApp->translate("Workbench", "&Electrostatic boundary conditions");
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qApp->translate("Workbench", "Fluid boundary conditions");
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qApp->translate("Workbench", "&Fluid boundary conditions");
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qApp->translate("Workbench", "Electromagnetic boundary conditions");
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qApp->translate("Workbench", "&Electromagnetic boundary conditions");
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qApp->translate("Workbench", "Geometrical analysis features");
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qApp->translate("Workbench", "&Geometrical analysis features");
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qApp->translate("Workbench", "Mechanical boundary conditions and loads");
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qApp->translate("Workbench", "&Mechanical boundary conditions and loads");
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qApp->translate("Workbench", "Thermal boundary conditions and loads");
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qApp->translate("Workbench", "&Thermal boundary conditions and loads");
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qApp->translate("Workbench", "Analysis features without solver");
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qApp->translate("Workbench", "&Analysis features without solver");
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qApp->translate("Workbench", "Overwrite Constants");
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qApp->translate("Workbench", "&Overwrite Constants");
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//
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qApp->translate("Workbench", "Mesh");
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qApp->translate("Workbench", "M&esh");
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//
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qApp->translate("Workbench", "Solve");
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qApp->translate("Workbench", "&Solve");
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//
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qApp->translate("Workbench", "Results");
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qApp->translate("Workbench", "&Results");
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qApp->translate("Workbench", "Filter functions");
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qApp->translate("Workbench", "&Filter functions");
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//
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qApp->translate("Workbench", "Utilities");
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#endif
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/// @namespace FemGui @class Workbench
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TYPESYSTEM_SOURCE(FemGui::Workbench, Gui::StdWorkbench)
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Workbench::Workbench() = default;
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Workbench::~Workbench() = default;
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void Workbench::setupContextMenu(const char* recipient, Gui::MenuItem* item) const
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{
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StdWorkbench::setupContextMenu(recipient, item);
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*item << "Separator"
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<< "FEM_MeshClear"
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<< "FEM_MeshDisplayInfo";
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}
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Gui::ToolBarItem* Workbench::setupToolBars() const
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{
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Gui::ToolBarItem* root = StdWorkbench::setupToolBars();
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Gui::ToolBarItem* model = new Gui::ToolBarItem(root);
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model->setCommand("Model");
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*model << "FEM_Analysis"
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<< "Separator"
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<< "FEM_MaterialSolid"
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<< "FEM_MaterialFluid"
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<< "FEM_MaterialMechanicalNonlinear"
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<< "FEM_MaterialReinforced"
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<< "FEM_MaterialEditor"
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<< "Separator"
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<< "FEM_ElementGeometry1D"
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<< "FEM_ElementRotation1D"
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<< "FEM_ElementGeometry2D"
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<< "FEM_ElementFluid1D";
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Gui::ToolBarItem* electromag = new Gui::ToolBarItem(root);
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electromag->setCommand("Electromagnetic boundary conditions");
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*electromag << "FEM_CompEmConstraints";
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Gui::ToolBarItem* fluid = new Gui::ToolBarItem(root);
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fluid->setCommand("Fluid boundary conditions");
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*fluid << "FEM_ConstraintInitialFlowVelocity"
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<< "FEM_ConstraintInitialPressure"
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<< "Separator"
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<< "FEM_ConstraintFlowVelocity";
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Gui::ToolBarItem* geom = new Gui::ToolBarItem(root);
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geom->setCommand("Geometrical analysis features");
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*geom << "FEM_ConstraintPlaneRotation"
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<< "FEM_ConstraintSectionPrint"
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<< "FEM_ConstraintTransform";
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Gui::ToolBarItem* mech = new Gui::ToolBarItem(root);
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mech->setCommand("Mechanical boundary conditions and loads");
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*mech << "FEM_ConstraintFixed"
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<< "FEM_ConstraintRigidBody"
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<< "FEM_ConstraintDisplacement"
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<< "FEM_ConstraintContact"
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<< "FEM_ConstraintTie"
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<< "FEM_ConstraintSpring"
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<< "Separator"
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<< "FEM_ConstraintForce"
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<< "FEM_ConstraintPressure"
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<< "FEM_ConstraintCentrif"
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<< "FEM_ConstraintSelfWeight";
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Gui::ToolBarItem* thermal = new Gui::ToolBarItem(root);
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thermal->setCommand("Thermal boundary conditions and loads");
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*thermal << "FEM_ConstraintInitialTemperature"
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<< "Separator"
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<< "FEM_ConstraintHeatflux"
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<< "FEM_ConstraintTemperature"
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<< "FEM_ConstraintBodyHeatSource";
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Gui::ToolBarItem* mesh = new Gui::ToolBarItem(root);
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mesh->setCommand("Mesh");
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*mesh << "FEM_MeshNetgenFromShape"
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<< "FEM_MeshGmshFromShape"
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<< "Separator"
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<< "FEM_MeshBoundaryLayer"
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<< "FEM_MeshRegion"
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<< "FEM_MeshGroup"
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<< "Separator"
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<< "FEM_FEMMesh2Mesh";
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Gui::ToolBarItem* solve = new Gui::ToolBarItem(root);
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solve->setCommand("Solve");
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if (!Fem::Tools::checkIfBinaryExists("Ccx", "ccx", "ccx").empty()) {
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*solve << "FEM_SolverCalculiX";
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}
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if (!Fem::Tools::checkIfBinaryExists("Elmer", "elmer", "ElmerSolver").empty()) {
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*solve << "FEM_SolverElmer";
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}
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// also check the multi-CPU Elmer build
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else if (!Fem::Tools::checkIfBinaryExists("Elmer", "elmer", "ElmerSolver_mpi").empty()) {
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*solve << "FEM_SolverElmer";
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}
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if (!Fem::Tools::checkIfBinaryExists("Mystran", "mystran", "mystran").empty()) {
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*solve << "FEM_SolverMystran";
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}
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if (!Fem::Tools::checkIfBinaryExists("Z88", "z88", "z88r").empty()) {
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*solve << "FEM_SolverZ88";
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}
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*solve << "Separator"
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<< "FEM_CompMechEquations"
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<< "FEM_CompEmEquations"
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<< "FEM_EquationFlow"
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<< "FEM_EquationFlux"
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<< "FEM_EquationHeat"
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<< "Separator"
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<< "FEM_SolverControl"
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<< "FEM_SolverRun";
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Gui::ToolBarItem* results = new Gui::ToolBarItem(root);
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results->setCommand("Results");
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*results << "FEM_ResultsPurge"
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<< "FEM_ResultShow";
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#ifdef FC_USE_VTK
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*results << "Separator"
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<< "FEM_PostApplyChanges"
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<< "FEM_PostPipelineFromResult"
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<< "FEM_PostBranchFilter"
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<< "Separator"
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<< "FEM_PostFilterWarp"
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<< "FEM_PostFilterClipScalar"
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<< "FEM_PostFilterCutFunction"
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<< "FEM_PostFilterClipRegion"
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<< "FEM_PostFilterContours"
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#ifdef FC_USE_VTK_PYTHON
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<< "FEM_PostFilterGlyph"
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#endif
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<< "FEM_PostFilterDataAlongLine"
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<< "FEM_PostFilterLinearizedStresses"
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<< "FEM_PostFilterDataAtPoint"
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<< "FEM_PostFilterCalculator"
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<< "Separator"
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<< "FEM_PostCreateFunctions"
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#ifdef FC_USE_VTK_PYTHON
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<< "FEM_PostVisualization"
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#endif
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;
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#endif
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Gui::ToolBarItem* utils = new Gui::ToolBarItem(root);
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utils->setCommand("Utilities");
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*utils << "FEM_ClippingPlaneAdd"
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<< "FEM_ClippingPlaneRemoveAll"
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<< "FEM_Examples";
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return root;
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}
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Gui::MenuItem* Workbench::setupMenuBar() const
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{
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Gui::MenuItem* root = StdWorkbench::setupMenuBar();
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Gui::MenuItem* item = root->findItem("&Windows");
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Gui::MenuItem* material = new Gui::MenuItem;
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material->setCommand("Materials");
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*material << "FEM_MaterialSolid"
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<< "FEM_MaterialFluid"
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<< "FEM_MaterialMechanicalNonlinear"
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<< "FEM_MaterialReinforced"
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<< "FEM_MaterialEditor";
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Gui::MenuItem* elegeom = new Gui::MenuItem;
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elegeom->setCommand("&Element Geometry");
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*elegeom << "FEM_ElementGeometry1D"
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<< "FEM_ElementRotation1D"
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<< "FEM_ElementGeometry2D"
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<< "FEM_ElementFluid1D";
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Gui::MenuItem* elec = new Gui::MenuItem;
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elec->setCommand("&Electromagnetic boundary conditions");
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*elec << "FEM_ConstraintElectrostaticPotential"
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<< "FEM_ConstraintCurrentDensity"
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<< "FEM_ConstraintMagnetization"
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<< "FEM_ConstraintElectricChargeDensity";
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Gui::MenuItem* fluid = new Gui::MenuItem;
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fluid->setCommand("&Fluid boundary conditions");
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*fluid << "FEM_ConstraintInitialFlowVelocity"
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<< "FEM_ConstraintInitialPressure"
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<< "Separator"
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<< "FEM_ConstraintFlowVelocity";
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Gui::MenuItem* geom = new Gui::MenuItem;
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geom->setCommand("&Geometrical analysis features");
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*geom << "FEM_ConstraintPlaneRotation"
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<< "FEM_ConstraintSectionPrint"
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<< "FEM_ConstraintTransform";
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Gui::MenuItem* mech = new Gui::MenuItem;
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mech->setCommand("&Mechanical boundary conditions and loads");
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*mech << "FEM_ConstraintFixed"
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<< "FEM_ConstraintRigidBody"
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<< "FEM_ConstraintDisplacement"
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<< "FEM_ConstraintContact"
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<< "FEM_ConstraintTie"
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<< "FEM_ConstraintSpring"
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<< "Separator"
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<< "FEM_ConstraintForce"
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<< "FEM_ConstraintPressure"
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<< "FEM_ConstraintCentrif"
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<< "FEM_ConstraintSelfWeight";
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Gui::MenuItem* thermal = new Gui::MenuItem;
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thermal->setCommand("&Thermal boundary conditions and loads");
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*thermal << "FEM_ConstraintInitialTemperature"
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<< "Separator"
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<< "FEM_ConstraintHeatflux"
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<< "FEM_ConstraintTemperature"
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<< "FEM_ConstraintBodyHeatSource";
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// Gui::MenuItem* nosolver = new Gui::MenuItem;
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// nosolver->setCommand("&Analysis features without solver");
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// *nosolver
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// << "FEM_ConstraintFluidBoundary"
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// << "Separator"
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// << "FEM_ConstraintBearing"
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// << "FEM_ConstraintGear"
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// << "FEM_ConstraintPulley";
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Gui::MenuItem* constants = new Gui::MenuItem;
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constants->setCommand("&Overwrite Constants");
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*constants << "FEM_ConstantVacuumPermittivity";
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Gui::MenuItem* model = new Gui::MenuItem;
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root->insertItem(item, model);
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model->setCommand("M&odel");
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*model << "FEM_Analysis"
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<< "Separator" << material << elegeom << "Separator" << elec << fluid << geom << mech
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<< thermal
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<< "Separator"
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// << nosolver
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// << "Separator"
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<< constants;
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Gui::MenuItem* mesh = new Gui::MenuItem;
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root->insertItem(item, mesh);
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mesh->setCommand("M&esh");
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*mesh << "FEM_MeshNetgenFromShape"
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<< "FEM_MeshGmshFromShape"
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<< "Separator"
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<< "FEM_MeshBoundaryLayer"
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<< "FEM_MeshRegion"
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<< "FEM_MeshGroup"
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<< "Separator"
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// << "FEM_CreateNodesSet"
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<< "FEM_CreateElementsSet"
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<< "FEM_FEMMesh2Mesh";
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Gui::MenuItem* solve = new Gui::MenuItem;
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root->insertItem(item, solve);
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solve->setCommand("&Solve");
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*solve << "FEM_SolverCalculiX"
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<< "FEM_SolverElmer"
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<< "FEM_SolverMystran"
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<< "FEM_SolverZ88"
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<< "Separator"
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<< "FEM_CompMechEquations"
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<< "FEM_CompEmEquations"
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<< "FEM_EquationFlow"
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<< "FEM_EquationFlux"
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<< "FEM_EquationHeat"
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<< "Separator"
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<< "FEM_SolverControl"
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<< "FEM_SolverRun";
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Gui::MenuItem* results = new Gui::MenuItem;
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root->insertItem(item, results);
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results->setCommand("&Results");
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*results << "FEM_ResultsPurge"
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<< "FEM_ResultShow";
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#ifdef FC_USE_VTK
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*results << "Separator"
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<< "FEM_PostApplyChanges"
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<< "FEM_PostPipelineFromResult"
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<< "Separator"
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<< "FEM_PostFilterWarp"
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<< "FEM_PostFilterClipScalar"
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<< "FEM_PostFilterCutFunction"
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<< "FEM_PostFilterClipRegion"
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<< "FEM_PostFilterContours"
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#ifdef FC_USE_VTK_PYTHON
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<< "FEM_PostFilterGlyph"
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#endif
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<< "FEM_PostFilterDataAlongLine"
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<< "FEM_PostFilterLinearizedStresses"
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<< "FEM_PostFilterDataAtPoint"
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<< "FEM_PostFilterCalculator"
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<< "Separator"
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<< "FEM_PostCreateFunctions"
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#ifdef FC_USE_VTK_PYTHON
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<< "FEM_PostVisualization"
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#endif
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;
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#endif
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Gui::MenuItem* utils = new Gui::MenuItem;
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root->insertItem(item, utils);
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utils->setCommand("Utilities");
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*utils << "FEM_ClippingPlaneAdd"
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<< "FEM_ClippingPlaneRemoveAll"
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<< "FEM_Examples";
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return root;
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}
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