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#include "BoundaryWidget.h"
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#include "ui_BoundaryWidget.h"
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#include "CompSelectComBoxWidget.h"
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#include "OperatorsInterface/GraphEventOperator.h"
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#include "OperatorsInterface/ParaWidgetInterfaceOperator.h"
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#include "FITK_Kernel/FITKCore/FITKOperatorRepo.h"
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#include "FITK_Kernel/FITKAppFramework/FITKAppFramework.h"
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#include "FITK_Kernel/FITKAppFramework/FITKGlobalData.h"
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#include "FITK_Kernel/FITKAppFramework/FITKComponents.h"
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#include "FITK_Kernel/FITKEasyParam/FITKWidgetComLine.h"
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#include "FITK_Kernel/FITKEasyParam/FITKEasyParamWidgetFactory.h"
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#include "FITK_Kernel/FITKEasyParam/FITKParameter.h"
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#include "FITK_Interface/FITKInterfaceMesh/FITKUnstructuredFluidMeshVTK.h"
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#include "FITK_Interface/FITKInterfaceFlowOF/FITKFlowPhysicsHandlerFactory.h"
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#include "FITK_Interface/FITKInterfaceFlowOF/FITKOFBoundary.h"
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#include "FITK_Interface/FITKInterfaceFlowOF/FITKOFBoundaryType.h"
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#include "FITK_Interface/FITKInterfaceFlowOF/FITKOFBoundaryTypeManager.h"
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#include "FITK_Interface/FITKInterfaceFlowOF/FITKOFPhysicsManager.h"
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#include "FITK_Interface/FITKInterfaceFlowOF/FITKOFPhysicsData.h"
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#include "FITK_Interface/FITKInterfaceFlowOF/FITKAbstractOFSolver.h"
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#include <QTabBar>
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#include <QToolBox>
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namespace GUI
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{
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/**
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* @brief FLow子数据回调函数
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* @param[i] type 类型
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* @param[i] widget 对应的界面
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* @return Core::FITKParameter* 子数据对象
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* @author BaGuijun (baguijun@163.com)
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* @date 2024-08-27
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*/
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Core::FITKParameter* getBoundaryFlowSubData(const QString& type, CompSelectComBoxWidget* widget)
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{
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if (widget == nullptr)return nullptr;
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auto phyFactory = FITKAPP->getComponents()->getComponentTByName<Interface::FITKFlowPhysicsHandlerFactory>("FITKFlowPhysicsHandlerFactory");
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if (phyFactory == nullptr)return nullptr;
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auto phyData = FITKAPP->getGlobalData()->getPhysicsData<Interface::FITKOFPhysicsData>();
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if (phyData == nullptr)return nullptr;
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int objID = widget->getData("objID").toInt();
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QString objName = widget->getData("objName").toString();
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int index = widget->getData("index").toInt();
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int boundaryID = widget->getData("boundaryID").toInt();
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auto boundary = phyData->getBoundaryManager()->getDataByID(boundaryID);
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if (boundary == nullptr)return nullptr;
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phyFactory->setVariableBoundaryType(boundaryID, objName, type);
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return boundary->getFlowVBType(index)->getBoundaryTypePara();
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}
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/**
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* @brief Turbulence子数据回调函数
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* @param[i] type 类型
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* @param[i] widget 对应的界面
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* @return Core::FITKParameter* 子数据对象
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* @author BaGuijun (baguijun@163.com)
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* @date 2024-08-27
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*/
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Core::FITKParameter* getBoundaryTurbulenceSubData(const QString& type, CompSelectComBoxWidget* widget)
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{
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if (widget == nullptr)return nullptr;
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auto phyFactory = FITKAPP->getComponents()->getComponentTByName<Interface::FITKFlowPhysicsHandlerFactory>("FITKFlowPhysicsHandlerFactory");
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if (phyFactory == nullptr)return nullptr;
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auto phyData = FITKAPP->getGlobalData()->getPhysicsData<Interface::FITKOFPhysicsData>();
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if (phyData == nullptr)return nullptr;
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int objID = widget->getData("objID").toInt();
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QString objName = widget->getData("objName").toString();
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int index = widget->getData("index").toInt();
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int boundaryID = widget->getData("boundaryID").toInt();
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auto boundary = phyData->getBoundaryManager()->getDataByID(boundaryID);
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if (boundary == nullptr)return nullptr;
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phyFactory->setVariableBoundaryType(boundaryID, objName, type);
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return boundary->getTurbulenceVBType(index)->getBoundaryTypePara();
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}
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/**
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* @brief Phases子数据回调函数
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* @param[i] type 类型
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* @param[i] widget 对应的界面
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* @return Core::FITKParameter* 子数据对象
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* @author BaGuijun (baguijun@163.com)
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* @date 2024-08-27
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*/
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Core::FITKParameter* getBoundaryPhasesSubData(const QString& type, CompSelectComBoxWidget* widget)
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{
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if (widget == nullptr)return nullptr;
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auto phyFactory = FITKAPP->getComponents()->getComponentTByName<Interface::FITKFlowPhysicsHandlerFactory>("FITKFlowPhysicsHandlerFactory");
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if (phyFactory == nullptr)return nullptr;
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auto phyData = FITKAPP->getGlobalData()->getPhysicsData<Interface::FITKOFPhysicsData>();
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if (phyData == nullptr)return nullptr;
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int objID = widget->getData("objID").toInt();
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QString objName = widget->getData("objName").toString();
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int index = widget->getData("index").toInt();
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int boundaryID = widget->getData("boundaryID").toInt();
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auto boundary = phyData->getBoundaryManager()->getDataByID(boundaryID);
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if (boundary == nullptr)return nullptr;
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phyFactory->setVariableBoundaryType(boundaryID, objName, type);
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return boundary->getPhasesVBType(index)->getBoundaryTypePara();
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}
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BoundaryWidget::BoundaryWidget(Interface::FITKOFBoundary* boundaryObj, EventOper::ParaWidgetInterfaceOperator * oper, QWidget * parent) :
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GUICalculateWidgetBase(oper, parent), _boundaryObj(boundaryObj)
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{
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_ui = new Ui::BoundaryWidget();
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_ui->setupUi(this);
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init();
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}
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BoundaryWidget::~BoundaryWidget()
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{
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if (_ui) delete _ui;
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}
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void BoundaryWidget::init()
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{
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if (_boundaryObj == nullptr)return;
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auto globalData = FITKAPP->getGlobalData();
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if (globalData == nullptr)return;
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Interface::FITKUnstructuredFluidMeshVTK* meshData = globalData->getMeshData< Interface::FITKUnstructuredFluidMeshVTK>();
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if (meshData == nullptr)return;
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Interface::FITKBoundaryMeshVTKManager* boundMeshManager = meshData->getBoundaryMeshManager();
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if (boundMeshManager == nullptr)return;
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//名称设置
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QString name = _boundaryObj->getDataObjectName();
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_ui->lineEdit_Name->setText(name);
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_ui->lineEdit_Name->setEnabled(false);
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//网格边界名称设置
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auto meshBoundary = boundMeshManager->getDataByID(_boundaryObj->getMeshBoundaryID());
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_ui->lineEdit_Boundary->setEnabled(false);
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if (meshBoundary)_ui->lineEdit_Boundary->setText(meshBoundary->getDataObjectName());
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//边界类型名称设置
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_currentType = _boundaryObj->getBoundaryType();
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QString typeName = "";
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switch (_currentType) {
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case Interface::FITKOFSolverTypeEnum::BWall:typeName = tr("Wall"); break;
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case Interface::FITKOFSolverTypeEnum::BPressureInlet:typeName = tr("Pressure Inlet"); break;
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case Interface::FITKOFSolverTypeEnum::BVelocityInlet:typeName = tr("Velocity Inlet"); break;
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case Interface::FITKOFSolverTypeEnum::BPressureOutlet:typeName = tr("Pressure Outlet"); break;
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case Interface::FITKOFSolverTypeEnum::BOutflow:typeName = tr("Outflow"); break;
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case Interface::FITKOFSolverTypeEnum::BSymmetry:typeName = tr("Symmetry"); break;
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case Interface::FITKOFSolverTypeEnum::BWedge:typeName = tr("Wedge"); break;
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}
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_ui->lineEdit_Type->setText(typeName);
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_ui->lineEdit_Type->setEnabled(false);
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update();
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}
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void BoundaryWidget::update()
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{
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if (_boundaryObj == nullptr)return;
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updateFlow();
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updateTurbulence();
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updatePhases();
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}
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Interface::FITKOFBoundary * BoundaryWidget::getCurrentObj()
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{
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return _boundaryObj;
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}
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void BoundaryWidget::showEvent(QShowEvent * event)
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{
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GUICalculateWidgetBase::showEvent(event);
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if (_boundaryObj == nullptr)return;
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EventOper::GraphEventOperator* graphOper = FITKOPERREPO->getOperatorT<EventOper::GraphEventOperator>("GraphPreprocess");
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if (graphOper == nullptr)return;
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graphOper->clearHighlight();
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graphOper->highlight(_boundaryObj->getMeshBoundaryID());
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}
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void BoundaryWidget::hideEvent(QHideEvent * event)
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{
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GUICalculateWidgetBase::hideEvent(event);
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EventOper::GraphEventOperator* graphOper = FITKOPERREPO->getOperatorT<EventOper::GraphEventOperator>("GraphPreprocess");
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if (graphOper == nullptr)return;
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graphOper->clearHighlight();
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}
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void BoundaryWidget::updateFlow()
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{
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if (_boundaryObj == nullptr)return;
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if (_physicsManager == nullptr)return;
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auto boundartTypeMan = _physicsManager->getBoundaryTypeManager();
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if (boundartTypeMan == nullptr)return;
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int num = _boundaryObj->getFlowCount();
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if (num == 0) {
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_ui->tabWidget->removeTab(0);
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return;
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}
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QWidget* widget = new QWidget(this);
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QVBoxLayout* layout = new QVBoxLayout();
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QToolBox* toolBox = Core::FITKWidgetComLine::CreateToolBox(widget);
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for (int i = 0; i < num; i++) {
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Interface::FITKOFAbsBoundaryType* data = _boundaryObj->getFlowVBType(i);
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if (data == nullptr)continue;
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QStringList options = boundartTypeMan->filterBoundariesType(_physicsData->getSolver()->getSolverType(),
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_currentType, _boundaryObj->getFlowVariableName(i));
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CompSelectComBoxWidget* w = new CompSelectComBoxWidget(_boundaryObj->getFlowVariableName(i), this);
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w->setData("boundaryID", _boundaryObj->getDataObjectID());
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w->setData("objID", data->getDataObjectID());
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w->setData("objName", _boundaryObj->getFlowVariableName(i));
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w->setData("index", i);
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w->setSubWidgetData(data->getBoundaryTypePara());
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w->setOptions(options);
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w->setCurrentText(data->getDataObjectName());
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w->setFunction(&getBoundaryFlowSubData);
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toolBox->addItem(w, _boundaryObj->getFlowVariableName(i));
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}
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layout->addWidget(toolBox);
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widget->setLayout(layout);
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_ui->tabWidget->addTab(widget, tr("Flow"));
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}
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void BoundaryWidget::updateTurbulence()
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{
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if (_boundaryObj == nullptr)return;
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if (_physicsManager == nullptr)return;
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auto boundartTypeMan = _physicsManager->getBoundaryTypeManager();
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if (boundartTypeMan == nullptr)return;
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int num = _boundaryObj->getTurbulenceCount();
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if (num == 0) {
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return;
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}
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QWidget* widget = new QWidget(this);
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QVBoxLayout* layout = new QVBoxLayout();
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QToolBox* toolBox = Core::FITKWidgetComLine::CreateToolBox(widget);
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for (int i = 0; i < num; i++) {
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Interface::FITKOFAbsBoundaryType* data = _boundaryObj->getTurbulenceVBType(i);
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if (data == nullptr)continue;
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QStringList options = boundartTypeMan->filterBoundariesType(_physicsData->getSolver()->getSolverType(),
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_currentType, _boundaryObj->getTurbulenceVariableName(i));
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CompSelectComBoxWidget* w = new CompSelectComBoxWidget(_boundaryObj->getTurbulenceVariableName(i), this);
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w->setData("boundaryID", _boundaryObj->getDataObjectID());
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w->setData("objID", data->getDataObjectID());
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w->setData("objName", _boundaryObj->getTurbulenceVariableName(i));
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w->setData("index", i);
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w->setSubWidgetData(data->getBoundaryTypePara());
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w->setOptions(options);
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w->setCurrentText(data->getDataObjectName());
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w->setFunction(&getBoundaryTurbulenceSubData);
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toolBox->addItem(w, _boundaryObj->getTurbulenceVariableName(i));
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}
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layout->addWidget(toolBox);
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widget->setLayout(layout);
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_ui->tabWidget->addTab(widget, tr("Turbulence"));
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}
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void BoundaryWidget::updatePhases()
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{
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if (_boundaryObj == nullptr)return;
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if (_physicsManager == nullptr)return;
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auto boundartTypeMan = _physicsManager->getBoundaryTypeManager();
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if (boundartTypeMan == nullptr)return;
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int num = _boundaryObj->getPhasesCount();
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if (num == 0) {
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_ui->tabWidget->removeTab(2);
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return;
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}
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QWidget* widget = new QWidget(this);
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QVBoxLayout* layout = new QVBoxLayout();
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QToolBox* toolBox = Core::FITKWidgetComLine::CreateToolBox(widget);
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for (int i = 0; i < num; i++) {
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Interface::FITKOFAbsBoundaryType* data = _boundaryObj->getPhasesVBType(i);
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if (data == nullptr)continue;
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QStringList options = boundartTypeMan->filterBoundariesType(_physicsData->getSolver()->getSolverType(),
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_currentType, _boundaryObj->getPhasesVariableName(i));
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CompSelectComBoxWidget* w = new CompSelectComBoxWidget(_boundaryObj->getPhasesVariableName(i), this);
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w->setData("boundaryID", _boundaryObj->getDataObjectID());
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w->setData("objID", data->getDataObjectID());
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w->setData("objName", _boundaryObj->getPhasesVariableName(i));
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w->setData("index", i);
|
|
|
|
|
w->setSubWidgetData(data->getBoundaryTypePara());
|
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|
|
|
w->setOptions(options);
|
|
|
|
|
w->setCurrentText(data->getDataObjectName());
|
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|
|
|
w->setFunction(&getBoundaryPhasesSubData);
|
|
|
|
|
toolBox->addItem(w, _boundaryObj->getPhasesVariableName(i));
|
|
|
|
|
}
|
|
|
|
|
layout->addWidget(toolBox);
|
|
|
|
|
widget->setLayout(layout);
|
|
|
|
|
_ui->tabWidget->addTab(widget, tr("Phases"));
|
|
|
|
|
}
|
|
|
|
|
}
|
|
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|