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/usr/include/ITK-4.9/itkPolygonGroupSpatialObject.hxx is in libinsighttoolkit4-dev 4.9.0-4ubuntu1.

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/*=========================================================================
 *
 *  Copyright Insight Software Consortium
 *
 *  Licensed under the Apache License, Version 2.0 (the "License");
 *  you may not use this file except in compliance with the License.
 *  You may obtain a copy of the License at
 *
 *         http://www.apache.org/licenses/LICENSE-2.0.txt
 *
 *  Unless required by applicable law or agreed to in writing, software
 *  distributed under the License is distributed on an "AS IS" BASIS,
 *  WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 *  See the License for the specific language governing permissions and
 *  limitations under the License.
 *
 *=========================================================================*/
#ifndef itkPolygonGroupSpatialObject_hxx
#define itkPolygonGroupSpatialObject_hxx

#include "itkPolygonGroupSpatialObject.h"

namespace itk
{
template< unsigned int TDimension >
bool PolygonGroupSpatialObject< TDimension >::AddStrand(PolygonSpatialObject< TDimension > *toAdd)
{
  this->AddSpatialObject(toAdd);
  return true;
}

template< unsigned int TDimension >
bool PolygonGroupSpatialObject< TDimension >::DeleteStrand(PolygonSpatialObject< TDimension > *toDelete)
{
  this->RemoveSpatialObject(toDelete);
  return true;
}

template< unsigned int TDimension >
bool PolygonGroupSpatialObject< TDimension >::ReplaceStrand(PolygonSpatialObject< TDimension > *toReplace,
                                                            PolygonSpatialObject< TDimension > *replacement)
{
  TreeNodeChildrenListType & children = this->GetModifiableTreeNode()->GetChildrenList();

  typename TreeNodeChildrenListType::iterator it = children.begin();
  typename TreeNodeChildrenListType::iterator itend = children.end();
  while ( it != itend )
    {
    if ( static_cast< void * >( ( *it ) ) == static_cast< void * >( toReplace ) )
      {
      typename TreeNodeChildrenListType::iterator after = it;
      after++;
      children.insert( after, 1, replacement->GetModifiableTreeNode() );
      children.erase(it);
      return true;
      }
    it++;
    }
  return false;
}

template< unsigned int TDimension >
bool PolygonGroupSpatialObject< TDimension >::IsClosed()
{
  TreeNodeChildrenListType & children = this->GetModifiableTreeNode()->GetChildrenList();

  typename TreeNodeChildrenListType::iterator it = children.begin();
  typename TreeNodeChildrenListType::iterator itend = children.end();
  while ( it != itend )
    {
    PolygonSpatialObject< TDimension > *curstrand =
      dynamic_cast< PolygonSpatialObject< TDimension > * >( ( *it ).GetPointer() );
    if ( curstrand != ITK_NULLPTR )
      {
      if ( !curstrand->IsClosed() )
        {
        return false;
        }
      }
    it++;
    }
  return true;
}

template< unsigned int TDimension >
unsigned PolygonGroupSpatialObject< TDimension >::NumberOfStrands()
{
  return this->GetTreeNode()->GetNumberOfChildren();
}

template< unsigned int TDimension >
double PolygonGroupSpatialObject< TDimension >::Volume()
{
  double            volume = 0;
  ChildrenListType *children = this->GetChildren();

  typename ChildrenListType::iterator it = children->begin();
  typename ChildrenListType::iterator itend = children->end();
  while ( it != itend )
    {
    PolygonSpatialObject< TDimension > *curstrand =
      dynamic_cast< PolygonSpatialObject< TDimension > * >( ( *it ).GetPointer() );
    volume += curstrand->MeasureVolume();
    it++;
    }
  delete children;
  return volume;
}

template< unsigned int TDimension >
double PolygonGroupSpatialObject< TDimension >::MeasureVolume()
{
  return this->Volume();
}

template< unsigned int TDimension >
bool PolygonGroupSpatialObject< TDimension >::IsInside(const PointType & point, unsigned int, char *name) const
{
  // want to encompass all children, at least 2 levels, but to be
  // safe say 4;
  const_cast< Self * >( this )->SetBoundingBoxChildrenDepth(4);
  const_cast< Self * >( this )->SetBoundingBoxChildrenName("");
  const_cast< Self * >( this )->ComputeBoundingBox();
  BoundingBoxType *bounds = const_cast< Self * >( this )->GetBoundingBox();
  if ( !bounds->IsInside(point) )
    {
    return false;
    }
  return this->SpatialObject< TDimension >::IsInside(point, 4, name);
}
}
#endif