/usr/include/vigra/random_forest/rf_region.hxx is in libvigraimpex-dev 1.10.0+dfsg-3ubuntu2.
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/* */
/* Copyright 2008-2009 by Ullrich Koethe and Rahul Nair */
/* */
/* This file is part of the VIGRA computer vision library. */
/* The VIGRA Website is */
/* http://hci.iwr.uni-heidelberg.de/vigra/ */
/* Please direct questions, bug reports, and contributions to */
/* ullrich.koethe@iwr.uni-heidelberg.de or */
/* vigra@informatik.uni-hamburg.de */
/* */
/* Permission is hereby granted, free of charge, to any person */
/* obtaining a copy of this software and associated documentation */
/* files (the "Software"), to deal in the Software without */
/* restriction, including without limitation the rights to use, */
/* copy, modify, merge, publish, distribute, sublicense, and/or */
/* sell copies of the Software, and to permit persons to whom the */
/* Software is furnished to do so, subject to the following */
/* conditions: */
/* */
/* The above copyright notice and this permission notice shall be */
/* included in all copies or substantial portions of the */
/* Software. */
/* */
/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND */
/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES */
/* OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND */
/* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT */
/* HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, */
/* WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING */
/* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR */
/* OTHER DEALINGS IN THE SOFTWARE. */
/* */
/************************************************************************/
#ifndef VIGRA_RANDOM_FOREST_REGION_HXX
#define VIGRA_RANDOM_FOREST_REGION_HXX
#include <algorithm>
#include <map>
#include <numeric>
#include "vigra/mathutil.hxx"
#include "vigra/array_vector.hxx"
#include "vigra/sized_int.hxx"
#include "vigra/matrix.hxx"
#include "vigra/random.hxx"
#include "vigra/functorexpression.hxx"
namespace vigra
{
/** Standard Stackentry used to Build a Tree. Contains Information
* About the current region being split
*/
template <class Iter>
class DT_StackEntry
{
public:
typedef Iter IndexIterator;
// tree specific stuff
enum ParentTag
{
DecisionTreeNoParent = -1
};
/** Address of left and Right parent in the topology container
*/
Int32 leftParent;
Int32 rightParent;
/** rule associated with current node
*/
ArrayVector<std::pair<Int32, double> > rule;
// RegionSpecificStuff
ArrayVector<double> classCounts_;
ArrayVector<double> weightedClassCounts_;
bool classCountsIsValid;
bool weightedClassCountsIsValid;
IndexIterator begin_, end_;
int size_;
IndexIterator oob_begin_, oob_end_;
int oob_size_;
Int32 depth()
{
return rule.size();
}
void setRange(IndexIterator s, IndexIterator e)
{
begin_ = s;
end_ = e;
size_ = e-s;
}
void set_oob_range(IndexIterator s, IndexIterator e)
{
oob_begin_ = s;
oob_end_ = e;
oob_size_ = e-s;
}
void reset()
{
begin_ = end_ = IndexIterator();
oob_begin_ = oob_end_ = IndexIterator();
size_ = oob_size_ = 0;
leftParent = DecisionTreeNoParent;
rightParent = DecisionTreeNoParent;
classCountsIsValid = false;
}
bool isPure()
{
int num = 0;
for(int ii = 0; ii < (int)classCounts().size(); ++ii)
{
num += classCounts()[ii] > 0;
}
return num <= 1;
}
int& operator[](int i)
{
return *(begin_+i);
}
IndexIterator & begin()
{
return begin_;
}
IndexIterator & end()
{
return end_;
}
IndexIterator & oob_begin()
{
return oob_begin_;
}
IndexIterator & oob_end()
{
return oob_end_;
}
ArrayVector<double> & classCounts()
{
return classCounts_;
}
ArrayVector<double> & weightedClassCounts()
{
return classCounts_;
}
bool classCountsValid(bool u)
{
classCountsIsValid = u;
return classCountsIsValid;
}
void classCounts(ArrayVector<Int32> in);
DT_StackEntry( IndexIterator i, IndexIterator e,
int classCount,
Int32 lp = DecisionTreeNoParent,
Int32 rp = DecisionTreeNoParent)
:
leftParent(lp),
rightParent(rp),
classCounts_(classCount, 0u),
classCountsIsValid(false),
begin_(i),
end_(e),
size_(e-i)
{}
Int32 size()const
{
return size_;
}
Int32 oob_size()const
{
return oob_size_;
}
};
}
//namespace vigra
#endif // VIGRA_RANDOM_FOREST_REGION_HXX
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