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cvflann::L2_Simple< T > Struct Template Reference

Squared Euclidean distance functor. More...

#include <opencv2/flann/dist.h>

Public Types

typedef T ElementType
 
typedef True is_kdtree_distance
 
typedef True is_vector_space_distance
 
typedef Accumulator< T >::Type ResultType
 

Public Member Functions

template<typename U , typename V >
ResultType accum_dist (const U &a, const V &b, int) const
 
template<typename Iterator1 , typename Iterator2 >
ResultType operator() (Iterator1 a, Iterator2 b, size_t size, ResultType=-1) const
 

Detailed Description

template<class T>
struct cvflann::L2_Simple< T >

Squared Euclidean distance functor.

This is the simpler, unrolled version. This is preferable for very low dimensionality data (eg 3D points)

Member Typedef Documentation

◆ ElementType

template<class T >
typedef T cvflann::L2_Simple< T >::ElementType

◆ is_kdtree_distance

template<class T >
typedef True cvflann::L2_Simple< T >::is_kdtree_distance

◆ is_vector_space_distance

template<class T >
typedef True cvflann::L2_Simple< T >::is_vector_space_distance

◆ ResultType

template<class T >
typedef Accumulator<T>::Type cvflann::L2_Simple< T >::ResultType

Member Function Documentation

◆ accum_dist()

template<class T >
template<typename U , typename V >
ResultType cvflann::L2_Simple< T >::accum_dist ( const U &  a,
const V &  b,
int   
) const
inline

◆ operator()()

template<class T >
template<typename Iterator1 , typename Iterator2 >
ResultType cvflann::L2_Simple< T >::operator() ( Iterator1  a,
Iterator2  b,
size_t  size,
ResultType  = -1 
) const
inline

The documentation for this struct was generated from the following file: