2014-02-12 18:39:17 +00:00
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/*
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* StatArray.hpp, part of LatAnalyze 3
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*
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* Copyright (C) 2013 - 2014 Antonin Portelli
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*
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* LatAnalyze 3 is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* LatAnalyze 3 is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with LatAnalyze 3. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef Latan_StatArray_hpp_
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#define Latan_StatArray_hpp_
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#include <latan/Global.hpp>
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#include <latan/Mat.hpp>
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2014-02-17 18:48:44 +00:00
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#include <iostream>
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2014-02-12 18:39:17 +00:00
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BEGIN_NAMESPACE
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/******************************************************************************
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* Array class with statistics *
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******************************************************************************/
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2014-02-17 18:48:44 +00:00
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template <typename T, unsigned int offset = 0>
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2014-02-26 18:36:29 +00:00
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class StatArray: public Array<T, dynamic, 1>
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{
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private:
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typedef Array<T, dynamic, 1> Base;
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public:
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// constructors
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StatArray(void);
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2014-03-03 14:21:37 +00:00
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explicit StatArray(const Index size);
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2014-02-17 18:50:03 +00:00
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EIGEN_EXPR_CTOR(StatArray, unique_arg(StatArray<T, offset>), Base,
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ArrayBase)
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// destructor
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2014-02-20 22:54:11 +00:00
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virtual ~StatArray(void) = default;
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// access
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Index size(void) const;
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2014-02-17 18:48:44 +00:00
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// operators
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2014-03-03 12:41:48 +00:00
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T & operator[](const Index s);
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const T & operator[](const Index s) const;
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// statistics
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void bin(Index binSize);
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T mean(const Index pos, const Index n) const;
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T mean(void) const;
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T variance(const Index pos, const Index n) const;
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T variance(void) const;
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};
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// reduction operations
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namespace ReducOp
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{
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template <typename T>
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inline T square(const T &a);
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template <typename T>
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inline T sum(const T &a, const T &b);
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template <>
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inline DMat square(const DMat &a);
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}
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/******************************************************************************
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* StatArray class template implementation *
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******************************************************************************/
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// constructors ////////////////////////////////////////////////////////////////
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template <typename T, unsigned int offset>
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StatArray<T, offset>::StatArray(void)
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: Base(static_cast<typename Base::Index>(offset))
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{}
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template <typename T, unsigned int offset>
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StatArray<T, offset>::StatArray(const Index size)
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: Base(static_cast<typename Base::Index>(size + offset))
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{}
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// access //////////////////////////////////////////////////////////////////////
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template <typename T, unsigned int offset>
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Index StatArray<T, offset>::size(void) const
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{
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return Base::size() - offset;
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}
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// operators ///////////////////////////////////////////////////////////////////
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template <typename T, unsigned int offset>
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T & StatArray<T, offset>::operator[](const Index s)
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{
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return Base::operator[](s + offset);
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}
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template <typename T, unsigned int offset>
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const T & StatArray<T, offset>::operator[](const Index s) const
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{
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return Base::operator[](s + offset);
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}
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2014-02-12 18:39:17 +00:00
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// statistics //////////////////////////////////////////////////////////////////
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template <typename T, unsigned int offset>
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void StatArray<T, offset>::bin(Index binSize)
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{
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Index q = size()/binSize, r = size()%binSize;
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for (Index i = 0; i < q; ++i)
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{
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(*this)[i] = mean(i*binSize, binSize);
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}
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if (r != 0)
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{
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(*this)[q] = mean(q*binSize, r);
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this->conservativeResize(offset + q + 1);
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}
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else
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{
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this->conservativeResize(offset + q);
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}
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}
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template <typename T, unsigned int offset>
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T StatArray<T, offset>::mean(const Index pos, const Index n) const
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{
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T result;
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if (n)
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{
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result = this->segment(pos+offset, n).redux(&ReducOp::sum<T>);
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}
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return result/static_cast<double>(n);
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}
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template <typename T, unsigned int offset>
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T StatArray<T, offset>::mean(void) const
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{
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return mean(0, size());
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}
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template <typename T, unsigned int offset>
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T StatArray<T, offset>::variance(const Index pos, const Index n) const
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{
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T s, sqs, result;
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if (n)
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{
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s = this->segment(pos+offset, n).redux(&ReducOp::sum<T>);
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sqs = this->segment(pos+offset, n).unaryExpr(&ReducOp::square<T>)
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.redux(&ReducOp::sum<T>);
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result = sqs - ReducOp::square(s)/static_cast<double>(n);
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}
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return result/static_cast<double>(n - 1);
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}
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template <typename T, unsigned int offset>
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T StatArray<T, offset>::variance(void) const
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{
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return variance(0, size());
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}
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2014-02-17 18:48:44 +00:00
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// reduction operations ////////////////////////////////////////////////////////
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template <typename T>
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inline T ReducOp::sum(const T &a, const T &b)
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{
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return a + b;
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}
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template <typename T>
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inline T ReducOp::square(const T &a)
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{
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return a*a;
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}
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template <>
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inline DMat ReducOp::square(const DMat &a)
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{
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return a.cwiseProduct(a);
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}
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END_NAMESPACE
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#endif // Latan_StatArray_hpp_
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