/usr/include/ITK-4.9/itkAdaptiveEqualizationHistogram.h is in libinsighttoolkit4-dev 4.9.0-4ubuntu1.
This file is owned by root:root, with mode 0o644.
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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 itkAdaptiveEqualizationHistogram_h
#define itkAdaptiveEqualizationHistogram_h
#include "itksys/hash_map.hxx"
#include "itkStructHashFunction.h"
#include "vnl/vnl_math.h"
#include <cmath>
namespace itk
{
namespace Function
{
/* \class AdaptiveEqualizationHistogram
*
* Implements the function class for a moving histogram algorithm for
* adaptive histogram equalization.
*
* \sa AdaptiveHistogramEqualizationImageFilter
* \sa MovingHistogramImageFilter
* \ingroup ITKImageStatistics
*/
template< class TInputPixel, class TOutputPixel >
class AdaptiveEqualizationHistogram
{
public:
typedef float RealType;
AdaptiveEqualizationHistogram()
: m_BoundaryCount(0)
{
}
// ~AdaptiveEqualizationHistogram() {} default is ok
void AddPixel(const TInputPixel & p)
{
m_Map[p]++;
}
void RemovePixel(const TInputPixel & p)
{
// insert new item if one doesn't exist
typename MapType::iterator it = m_Map.find( p );
itkAssertInDebugAndIgnoreInReleaseMacro( it != m_Map.end() );
if ( --(it->second) == 0 )
{
m_Map.erase( it );
}
}
TOutputPixel GetValue(const TInputPixel &pixel)
{
// Normalize input pixels to [-0.5 0.5] gray level.
// AdaptiveHistogramEqualization compute kernel components with
// float, but use double for accumulate and temporaries.
const double iscale = (double)m_Maximum - m_Minimum;
double sum = 0.0;
typename MapType::iterator itMap = m_Map.begin();
const RealType u = ( (double)pixel - m_Minimum ) / iscale - 0.5;
while ( itMap != m_Map.end() )
{
const RealType v = ( (double)itMap->first - m_Minimum ) / iscale - 0.5;
const double ikernel = m_KernelSize - m_BoundaryCount;
sum += itMap->second * CumulativeFunction(u,v) / ikernel;
++itMap;
}
return (TOutputPixel)( iscale * ( sum + 0.5 ) + m_Minimum );
}
void AddBoundary() {++m_BoundaryCount;}
void RemoveBoundary() {--m_BoundaryCount;}
void SetAlpha( RealType alpha ) {m_Alpha=alpha;}
void SetBeta( RealType beta ) {m_Beta=beta;}
void SetKernelSize( RealType kernelSize ) {m_KernelSize=kernelSize;}
void SetMinimum( TInputPixel minimum ) {m_Minimum=minimum;}
void SetMaximum( TInputPixel maximum ) {m_Maximum=maximum;}
private:
RealType m_Alpha;
RealType m_Beta;
RealType m_KernelSize;
TInputPixel m_Minimum;
TInputPixel m_Maximum;
RealType CumulativeFunction(RealType u, RealType v)
{
// Calculate cumulative function
const RealType s = vnl_math_sgn(u - v);
const RealType ad = vnl_math_abs( 2.0 * ( u - v ) );
return 0.5 * s * std::pow(ad, m_Alpha) - m_Beta * 0.5 * s * ad + m_Beta * u;
}
private:
typedef typename itksys::hash_map< TInputPixel,
size_t,
StructHashFunction< TInputPixel > > MapType;
MapType m_Map;
size_t m_BoundaryCount;
};
} // end namespace Function
} // end namespace itk
#endif // itkAdaptiveHistogramHistogram_h
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