/*=========================================================================

  Program:   Visualization Toolkit
  Module:    vtkLightActor.cxx

  Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
  All rights reserved.
  See Copyright.txt or http://www.kitware.com/Copyright.htm for details.

     This software is distributed WITHOUT ANY WARRANTY; without even
     the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
     PURPOSE.  See the above copyright notice for more information.

=========================================================================*/
#include "vtkLightActor.h"

#include "vtkActor.h"
#include "vtkPolyDataMapper.h"
#include "vtkCameraActor.h"
#include "vtkConeSource.h"
#include "vtkCamera.h"
#include "vtkLight.h"
#include "vtkMath.h"
#include "vtkObjectFactory.h"
#include "vtkProperty.h"
#include "vtkBoundingBox.h"

vtkStandardNewMacro(vtkLightActor);
vtkCxxSetObjectMacro(vtkLightActor, Light, vtkLight);

// ----------------------------------------------------------------------------
vtkLightActor::vtkLightActor()
{
  this->Light=0;
  this->ClippingRange[0]=0.5;
  this->ClippingRange[1]=10.0;
  
  this->ConeSource=0;
  this->ConeMapper=0;
  this->ConeActor=0;
  this->CameraLight=0;
  this->FrustumActor=0;
  
  this->BoundingBox=new vtkBoundingBox;
}

// ----------------------------------------------------------------------------
vtkLightActor::~vtkLightActor()
{
  this->SetLight(0);
  if(this->ConeActor!=0)
    {
    this->ConeActor->Delete();
    }
  
   if(this->ConeMapper!=0)
    {
    this->ConeMapper->Delete();
    }
  
  if(this->FrustumActor!=0)
    {
    this->FrustumActor->Delete();
    }
  if(this->ConeSource!=0)
    {
    this->ConeSource->Delete();
    }
  if(this->CameraLight!=0)
    {
    this->CameraLight->Delete();
    }
  delete this->BoundingBox;
}

// ----------------------------------------------------------------------------
 // Description:
// Set/Get the location of the near and far clipping planes along the
// direction of projection.  Both of these values must be positive.
// Initial values are  (0.5,11.0)
void vtkLightActor::SetClippingRange(double dNear,
                                     double dFar)
{
  this->ClippingRange[0]=dNear;
  this->ClippingRange[1]=dFar;
}

// ----------------------------------------------------------------------------
void vtkLightActor::SetClippingRange(const double a[2])
{
  this->SetClippingRange(a[0], a[1]);
}

// ----------------------------------------------------------------------------
// Description:
// Support the standard render methods.
int vtkLightActor::RenderOpaqueGeometry(vtkViewport *viewport)
{
  this->UpdateViewProps();
  
  int result=0;
  
  if(this->ConeActor!=0 && this->ConeActor->GetMapper()!=0)
    {
    result=this->ConeActor->RenderOpaqueGeometry(viewport);
    result+=this->FrustumActor->RenderOpaqueGeometry(viewport);
    }
  
  return result;
}

// ----------------------------------------------------------------------------
// Description:
// Does this prop have some translucent polygonal geometry? No.
int vtkLightActor::HasTranslucentPolygonalGeometry()
{
  return false;
}


//-----------------------------------------------------------------------------
void vtkLightActor::ReleaseGraphicsResources(vtkWindow *window)
{
  if(this->ConeActor!=0)
    {
    this->ConeActor->ReleaseGraphicsResources(window);
    this->FrustumActor->ReleaseGraphicsResources(window);
    }
}

//-------------------------------------------------------------------------
// Get the bounds for this Actor as (Xmin,Xmax,Ymin,Ymax,Zmin,Zmax).
double *vtkLightActor::GetBounds()
{
  this->Bounds[0] = this->Bounds[2] = this->Bounds[4] = VTK_DOUBLE_MAX;
  this->Bounds[1] = this->Bounds[3] = this->Bounds[5] = -VTK_DOUBLE_MAX;
  
  this->UpdateViewProps();
  
  this->BoundingBox->Reset();
  
  if(this->ConeActor!=0)
    {
    if(this->ConeActor->GetUseBounds())
      {
      this->BoundingBox->AddBounds(this->ConeActor->GetBounds());
      }
    if(this->FrustumActor->GetUseBounds())
      {
      this->BoundingBox->AddBounds(this->FrustumActor->GetBounds());
      }
    }
  
  int i=0;
  while(i<6)
    {
    this->Bounds[i]=this->BoundingBox->GetBound(i);
    ++i;
    }
  if(this->Bounds[0]==VTK_DOUBLE_MAX)
    {
    // we cannot initialize the Bounds the same way vtkBoundingBox does because
    // vtkProp3D::GetLength() does not check if the Bounds are initialized or
    // not and makes a call to sqrt(). This call to sqrt with invalid values
    // would raise a floating-point overflow exception (notably on BCC).
    // As vtkMath::UninitializeBounds initialized finite unvalid bounds, it
    // passes silently and GetLength() returns 0.
    vtkMath::UninitializeBounds(this->Bounds);
    }
  
  return this->Bounds;
}

//-------------------------------------------------------------------------
unsigned long int vtkLightActor::GetMTime()
{
  unsigned long mTime=this->Superclass::GetMTime();
   if(this->Light!=0)
    {
    unsigned long time;
    time = this->Light->GetMTime();
    if(time>mTime)
      {
      mTime=time;
      }
    }
  return mTime;
}

// ----------------------------------------------------------------------------
void vtkLightActor::UpdateViewProps()
{
  if(this->Light==0)
    {
    vtkDebugMacro(<< "no light.");
    return;
    }
  double angle=this->Light->GetConeAngle();
  
  if(this->Light->GetPositional() && angle<180.0)
    {
    if(this->ConeSource==0)
      {
      this->ConeSource=vtkConeSource::New();
      }
    
    this->ConeSource->SetResolution(24);
    double *pos=this->Light->GetPosition();
    double *f=this->Light->GetFocalPoint();
      
    double direction[3];
    int i=0;
    while(i<3)
      {
      direction[i]=pos[i]-f[i];
      ++i;
      }
    double height=1.0;
    double center[3]; //=pos
    
    double n=vtkMath::Norm(direction);
    
    // cone center is the middle of its axis, not the center of the base...
    i=0;
    while(i<3)
      {
      center[i]=pos[i]-0.5*height/n*direction[i];
      ++i;
      }
    this->ConeSource->SetCenter(center);
    this->ConeSource->SetDirection(direction);
    this->ConeSource->SetHeight(height);
    this->ConeSource->SetAngle(angle);
    
    if(this->ConeMapper==0)
      {
      this->ConeMapper=vtkPolyDataMapper::New();
      this->ConeMapper->SetInputConnection(this->ConeSource->GetOutputPort());
      this->ConeMapper->SetScalarVisibility(0);
      }
    
    if(this->ConeActor==0)
      {
      this->ConeActor=vtkActor::New();
      this->ConeActor->SetMapper(this->ConeMapper);
      }
    
    this->ConeActor->SetVisibility(this->Light->GetSwitch());
    
    vtkProperty *p=this->ConeActor->GetProperty();
    p->SetLighting(false);
    p->SetColor(this->Light->GetDiffuseColor());
    p->SetRepresentationToWireframe();
    
    if(this->CameraLight==0)
      {
      this->CameraLight=vtkCamera::New();
      }
    
    this->CameraLight->SetPosition(this->Light->GetPosition());
    this->CameraLight->SetFocalPoint(this->Light->GetFocalPoint());
    this->CameraLight->SetViewUp(0.0,1.0,0.0);
    // view angle is an aperture, but cone (or light) angle is between
    // the axis of the cone and a ray along the edge  of the cone.
    this->CameraLight->SetViewAngle(angle*2.0);
    // initial clip=(0.1,1000). near>0, far>near);
    this->CameraLight->SetClippingRange(this->ClippingRange);
    
    if(this->FrustumActor==0)
      {
      this->FrustumActor=vtkCameraActor::New();
      }
    this->FrustumActor->SetCamera(this->CameraLight);
    this->FrustumActor->SetWidthByHeightRatio(1.0); // camera light is square
    this->FrustumActor->SetUseBounds(false);
    }
  else
    {
    this->ConeActor->SetMapper(0);
    this->FrustumActor->SetCamera(0);
    vtkErrorMacro(<< "not a spotlight.");
    return;
    }
}

//-------------------------------------------------------------------------
void vtkLightActor::PrintSelf(ostream& os, vtkIndent indent)
{
  this->Superclass::PrintSelf(os,indent);
  
  os << indent << "Light: ";
  if(this->Light==0)
    {
    os << "(none)" << endl; 
    }
  else
    {
    this->Light->PrintSelf(os,indent);
    }
  
  os << indent << "ClippingRange: " << this->ClippingRange[0] << ","
     << this->ClippingRange[1] <<  endl;
}
