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📄 checkanalysis.cpp

📁 模糊聚類分析源碼。包含教學文件
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/*    Context       : Fuzzy Clustering Algorithms  Author        : Frank Hoeppner, see also AUTHORS file   Description   : implementation of class module CheckAnalysis                    History       :      Comment       :     This file was generated automatically. DO NOT EDIT.  Copyright     : Copyright (C) 1999-2000 Frank Hoeppner    This program is free software; you can redistribute it and/or modify    it under the terms of the GNU General Public License as published by    the Free Software Foundation; either version 2 of the License, or    (at your option) any later version.    This program is distributed in the hope that it will be useful,    but WITHOUT ANY WARRANTY; without even the implied warranty of    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the    GNU General Public License for more details.    You should have received a copy of the GNU General Public License    along with this program; if not, write to the Free Software    Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA*//*  The University of Applied Sciences Oldenburg/Ostfriesland/Wilhelmshaven  hereby disclaims all copyright interests in the program package `fc'   (tool package for fuzzy cluster analysis) written by Frank Hoeppner.    Prof. Haass, President of Vice, 2000-Mar-10*/#ifndef CheckAnalysis_SOURCE#define CheckAnalysis_SOURCE/* configuration include */#ifdef HAVE_CONFIG_H/*//FILETREE_IFDEF HAVE_CONFIG_H*/#include "config.h"/*//FILETREE_ENDIF*/#endif// necessary includes#include "CheckAnalysis.hpp"// data// implementationtemplate < class ANALYSIS >CheckAnalysis< ANALYSIS >::CheckAnalysis  (  OnePassAlgorithm<ANALYSIS> *ap_alg  )  : mp_succ_alg(ap_alg)    , m_elem_funcs_called(false)  , m_emulated_elem_wise(false)  {    }template < class ANALYSIS >CheckAnalysis< ANALYSIS >::~CheckAnalysis  (  )  {  FUNCLOG("~CheckAnalysis");    delete mp_succ_alg;  }template < class ANALYSIS >voidCheckAnalysis< ANALYSIS >::operator()  (  ANALYSIS& a_analysis  )  {  FUNCLOG("CheckAnalysis");  if (!m_elem_funcs_called)    {    m_emulated_elem_wise = true;    operator()(a_analysis,a_analysis.option());    for (        typename ANALYSIS::data_iter i_data(a_analysis.data().begin());        i_data != a_analysis.data().end();        ++i_data        )      { operator()(a_analysis,*i_data); }    for (        typename ANALYSIS::prot_iter i_prot(a_analysis.prototypes().begin());        i_prot != a_analysis.prototypes().end();        ++i_prot        )      { operator()(a_analysis,*i_prot); }    for (        typename ANALYSIS::link_iter i_link(a_analysis.links().begin());        i_link != a_analysis.links().end();        ++i_link        )      { operator()(a_analysis,*i_link); }    }  if (a_analysis.option().number_features()!=m_count_data)    {    if (a_analysis.option().number_features()>0)      warning("number of data vectors mismatch");    if (m_count_data>0)      a_analysis.option().number_features() = m_count_data;    }  if (a_analysis.option().number_prototypes()!=m_count_prototypes)    {    if (a_analysis.option().number_prototypes()>0)      warning("number of prototypes mismatch");    if (m_count_prototypes>0)      a_analysis.option().number_prototypes() = m_count_prototypes;    }  if ((m_count_prototypes*m_count_data!=m_count_links) && (m_count_links!=0))    {    warning("number of links mismatch");    }  if (a_analysis.option().data_dimension() != m_data_dim)    {    if (a_analysis.option().data_dimension()>0)      warning("data dimension mismatch");    if (m_data_dim>0)      a_analysis.option().data_dimension() = m_data_dim;    }  a_analysis.option().data_depth() = m_data_depth;  a_analysis.option().prot_depth() = m_prot_depth;  (*mp_succ_alg)(a_analysis);  m_elem_funcs_called=false;  m_emulated_elem_wise=false;  }template < class ANALYSIS >voidCheckAnalysis< ANALYSIS >::operator()  (  ANALYSIS& a_analysis,  CheckAnalysis< ANALYSIS >::opt_type& a_option  )  {  FUNCLOG("CheckAnalysis::operator(opt)");  if (!m_elem_funcs_called) reset(a_analysis);  (*mp_succ_alg)(a_analysis,a_option);  }template < class ANALYSIS >voidCheckAnalysis< ANALYSIS >::operator()  (  ANALYSIS& a_analysis,  CheckAnalysis< ANALYSIS >::data_type& a_datum  )  {  FUNCLOG("CheckAnalysis::operator(data)");  if (!m_elem_funcs_called) reset(a_analysis);  ++m_count_data;  if (!a_datum.consistent(m_data_dim,0,m_data_depth)) // GETS data_dim!    error("data dimension mismatch",a_datum);  if (m_data_dim==0) m_data_dim=-1; // identify 0 (not found) with -1 (unkown)  (*mp_succ_alg)(a_analysis,a_datum);  }template < class ANALYSIS >voidCheckAnalysis< ANALYSIS >::operator()  (  ANALYSIS& a_analysis,  CheckAnalysis< ANALYSIS >::prot_type& a_prototype  )  {  FUNCLOG("CheckAnalysis::operator(prot)");  if (!m_elem_funcs_called) reset(a_analysis);  ++m_count_prototypes;  bool ok = a_prototype.consistent(m_data_dim,0,m_prot_depth);   if (!ok) error("prototype data dimension mismatch",a_prototype);  (*mp_succ_alg)(a_analysis,a_prototype);  }template < class ANALYSIS >voidCheckAnalysis< ANALYSIS >::operator()  (  ANALYSIS& a_analysis,  CheckAnalysis< ANALYSIS >::link_type& a_link  )  {  FUNCLOG("CheckAnalysis::operator(link)");  if (!m_elem_funcs_called) reset(a_analysis);  ++m_count_links;  if (!a_link.consistent()) error("link inconsistency",a_link);  (*mp_succ_alg)(a_analysis,a_link);  }template < class ANALYSIS >voidCheckAnalysis< ANALYSIS >::reset  (  ANALYSIS& a_analysis  )  {  FUNCLOG("CheckAnalysis::reset");  m_count_data = 0;  m_count_prototypes = 0;  m_count_links = 0;  m_data_dim = -1;  m_data_depth = FC_DEPTH_ANY;  m_prot_depth = FC_DEPTH_ANY;  m_elem_funcs_called=true;  }// template instantiation#endif // CheckAnalysis_SOURCE

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