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248 lines
8.8 KiB
C++
248 lines
8.8 KiB
C++
/*=========================================================================
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Program: Visualization Toolkit
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Module: vtkAffineWidget.cxx
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Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
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All rights reserved.
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See Copyright.txt or http://www.kitware.com/Copyright.htm for details.
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This software is distributed WITHOUT ANY WARRANTY; without even
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the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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PURPOSE. See the above copyright notice for more information.
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=========================================================================*/
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#include "vtkAffineWidget.h"
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#include "vtkAffineRepresentation2D.h"
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#include "vtkCommand.h"
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#include "vtkCallbackCommand.h"
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#include "vtkRenderWindowInteractor.h"
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#include "vtkObjectFactory.h"
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#include "vtkRenderer.h"
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#include "vtkRenderWindow.h"
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#include "vtkWidgetEventTranslator.h"
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#include "vtkWidgetCallbackMapper.h"
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#include "vtkEvent.h"
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#include "vtkWidgetEvent.h"
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vtkStandardNewMacro(vtkAffineWidget);
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//----------------------------------------------------------------------------------
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vtkAffineWidget::vtkAffineWidget()
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{
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// Set the initial state
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this->WidgetState = vtkAffineWidget::Start;
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this->ModifierActive = 0;
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// Okay, define the events for this widget
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this->CallbackMapper->SetCallbackMethod(vtkCommand::LeftButtonPressEvent,
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vtkWidgetEvent::Select,
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this, vtkAffineWidget::SelectAction);
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this->CallbackMapper->SetCallbackMethod(vtkCommand::LeftButtonReleaseEvent,
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vtkWidgetEvent::EndSelect,
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this, vtkAffineWidget::EndSelectAction);
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this->CallbackMapper->SetCallbackMethod(vtkCommand::MouseMoveEvent,
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vtkWidgetEvent::Move,
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this, vtkAffineWidget::MoveAction);
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this->CallbackMapper->SetCallbackMethod(vtkCommand::KeyPressEvent,
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vtkWidgetEvent::ModifyEvent,
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this, vtkAffineWidget::ModifyEventAction);
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this->CallbackMapper->SetCallbackMethod(vtkCommand::KeyReleaseEvent,
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vtkWidgetEvent::ModifyEvent,
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this, vtkAffineWidget::ModifyEventAction);
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}
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//----------------------------------------------------------------------------------
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vtkAffineWidget::~vtkAffineWidget()
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{
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}
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//----------------------------------------------------------------------
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void vtkAffineWidget::SetEnabled(int enabling)
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{
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this->Superclass::SetEnabled(enabling);
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}
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//----------------------------------------------------------------------
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void vtkAffineWidget::CreateDefaultRepresentation()
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{
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if ( ! this->WidgetRep )
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{
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this->WidgetRep = vtkAffineRepresentation2D::New();
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}
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}
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//-------------------------------------------------------------------------
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void vtkAffineWidget::SetCursor(int cState)
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{
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switch (cState)
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{
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case vtkAffineRepresentation::ScaleNE: case vtkAffineRepresentation::ScaleSW:
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this->RequestCursorShape(VTK_CURSOR_SIZESW);
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break;
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case vtkAffineRepresentation::ScaleNW: case vtkAffineRepresentation::ScaleSE:
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this->RequestCursorShape(VTK_CURSOR_SIZENW);
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break;
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case vtkAffineRepresentation::ScaleNEdge: case vtkAffineRepresentation::ScaleSEdge:
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case vtkAffineRepresentation::ShearWEdge: case vtkAffineRepresentation::ShearEEdge:
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this->RequestCursorShape(VTK_CURSOR_SIZENS);
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break;
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case vtkAffineRepresentation::ScaleWEdge: case vtkAffineRepresentation::ScaleEEdge:
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case vtkAffineRepresentation::ShearNEdge: case vtkAffineRepresentation::ShearSEdge:
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this->RequestCursorShape(VTK_CURSOR_SIZEWE);
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break;
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case vtkAffineRepresentation::Rotate:
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this->RequestCursorShape(VTK_CURSOR_HAND);
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break;
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case vtkAffineRepresentation::TranslateX: case vtkAffineRepresentation::MoveOriginX:
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this->RequestCursorShape(VTK_CURSOR_SIZEWE);
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break;
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case vtkAffineRepresentation::TranslateY: case vtkAffineRepresentation::MoveOriginY:
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this->RequestCursorShape(VTK_CURSOR_SIZENS);
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break;
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case vtkAffineRepresentation::Translate: case vtkAffineRepresentation::MoveOrigin:
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this->RequestCursorShape(VTK_CURSOR_SIZEALL);
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break;
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case vtkAffineRepresentation::Outside:
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default:
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this->RequestCursorShape(VTK_CURSOR_DEFAULT);
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}
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}
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//-------------------------------------------------------------------------
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void vtkAffineWidget::SelectAction(vtkAbstractWidget *w)
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{
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vtkAffineWidget *self = reinterpret_cast<vtkAffineWidget*>(w);
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int X = self->Interactor->GetEventPosition()[0];
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int Y = self->Interactor->GetEventPosition()[1];
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self->ModifierActive = self->Interactor->GetShiftKey() |
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self->Interactor->GetControlKey();
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reinterpret_cast<vtkAffineRepresentation*>(self->WidgetRep)->
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ComputeInteractionState(X, Y, self->ModifierActive);
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if ( self->WidgetRep->GetInteractionState() == vtkAffineRepresentation::Outside )
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{
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return;
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}
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self->GrabFocus(self->EventCallbackCommand);
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double eventPos[2];
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eventPos[0] = static_cast<double>(X);
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eventPos[1] = static_cast<double>(Y);
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self->WidgetRep->StartWidgetInteraction(eventPos);
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// We are definitely selected
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self->WidgetState = vtkAffineWidget::Active;
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self->SetCursor(self->WidgetRep->GetInteractionState());
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// Highlight as necessary
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self->WidgetRep->Highlight(1);
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self->EventCallbackCommand->SetAbortFlag(1);
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self->StartInteraction();
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self->InvokeEvent(vtkCommand::StartInteractionEvent,NULL);
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self->Render();
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}
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//-------------------------------------------------------------------------
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void vtkAffineWidget::MoveAction(vtkAbstractWidget *w)
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{
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vtkAffineWidget *self = reinterpret_cast<vtkAffineWidget*>(w);
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// compute some info we need for all cases
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int X = self->Interactor->GetEventPosition()[0];
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int Y = self->Interactor->GetEventPosition()[1];
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// Set the cursor appropriately
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if ( self->WidgetState == vtkAffineWidget::Start )
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{
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self->ModifierActive = self->Interactor->GetShiftKey() |
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self->Interactor->GetControlKey();
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int state = self->WidgetRep->GetInteractionState();
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reinterpret_cast<vtkAffineRepresentation*>(self->WidgetRep)->
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ComputeInteractionState(X, Y, self->ModifierActive );
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self->SetCursor(self->WidgetRep->GetInteractionState());
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if ( state != self->WidgetRep->GetInteractionState() )
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{
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self->Render();
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}
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return;
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}
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// Okay, adjust the representation
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double eventPosition[2];
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eventPosition[0] = static_cast<double>(X);
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eventPosition[1] = static_cast<double>(Y);
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self->WidgetRep->WidgetInteraction(eventPosition);
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// Got this event, we are finished
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self->EventCallbackCommand->SetAbortFlag(1);
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self->InvokeEvent(vtkCommand::InteractionEvent,NULL);
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self->Render();
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}
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//-------------------------------------------------------------------------
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void vtkAffineWidget::ModifyEventAction(vtkAbstractWidget *w)
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{
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vtkAffineWidget *self = reinterpret_cast<vtkAffineWidget*>(w);
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if ( self->WidgetState == vtkAffineWidget::Start )
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{
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int modifierActive = self->Interactor->GetShiftKey() |
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self->Interactor->GetControlKey();
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if ( self->ModifierActive != modifierActive )
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{
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self->ModifierActive = modifierActive;
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int X = self->Interactor->GetEventPosition()[0];
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int Y = self->Interactor->GetEventPosition()[1];
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reinterpret_cast<vtkAffineRepresentation*>(self->WidgetRep)->
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ComputeInteractionState(X, Y, self->ModifierActive );
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self->SetCursor(self->WidgetRep->GetInteractionState());
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}
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}
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}
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//-------------------------------------------------------------------------
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void vtkAffineWidget::EndSelectAction(vtkAbstractWidget *w)
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{
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vtkAffineWidget *self = reinterpret_cast<vtkAffineWidget*>(w);
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if ( self->WidgetState != vtkAffineWidget::Active )
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{
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return;
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}
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int X = self->Interactor->GetEventPosition()[0];
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int Y = self->Interactor->GetEventPosition()[1];
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double eventPos[2];
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eventPos[0] = static_cast<double>(X);
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eventPos[1] = static_cast<double>(Y);
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self->WidgetRep->EndWidgetInteraction(eventPos);
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// return to initial state
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self->WidgetState = vtkAffineWidget::Start;
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self->ModifierActive = 0;
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// Highlight as necessary
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self->WidgetRep->Highlight(0);
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// stop adjusting
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self->EventCallbackCommand->SetAbortFlag(1);
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self->ReleaseFocus();
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self->EndInteraction();
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self->InvokeEvent(vtkCommand::EndInteractionEvent,NULL);
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self->WidgetState = vtkAffineWidget::Start;
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self->Render();
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}
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//----------------------------------------------------------------------------------
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void vtkAffineWidget::PrintSelf(ostream& os, vtkIndent indent)
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{
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//Superclass typedef defined in vtkTypeMacro() found in vtkSetGet.h
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this->Superclass::PrintSelf(os,indent);
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}
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