2008-07-29 04:48:21 +08:00
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//=====================================================
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// File : action_hessenberg.hh
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2010-06-25 05:21:58 +08:00
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// Copyright (C) 2008 Gael Guennebaud <gael.guennebaud@inria.fr>
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2008-07-29 04:48:21 +08:00
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//=====================================================
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//
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// This program is free software; you can redistribute it and/or
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// modify it under the terms of the GNU General Public License
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// as published by the Free Software Foundation; either version 2
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// of the License, or (at your option) any later version.
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//
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// This program 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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// You should have received a copy of the GNU General Public License
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// along with this program; if not, write to the Free Software
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// Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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//
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#ifndef ACTION_HESSENBERG
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#define ACTION_HESSENBERG
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#include "utilities.h"
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#include "STL_interface.hh"
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#include <string>
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#include "init/init_function.hh"
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#include "init/init_vector.hh"
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#include "init/init_matrix.hh"
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using namespace std;
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template<class Interface>
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class Action_hessenberg {
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public :
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// Ctor
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Action_hessenberg( int size ):_size(size)
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{
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MESSAGE("Action_hessenberg Ctor");
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// STL vector initialization
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init_matrix<pseudo_random>(X_stl,_size);
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init_matrix<null_function>(C_stl,_size);
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init_matrix<null_function>(resu_stl,_size);
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// generic matrix and vector initialization
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Interface::matrix_from_stl(X_ref,X_stl);
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Interface::matrix_from_stl(X,X_stl);
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Interface::matrix_from_stl(C,C_stl);
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_cost = 0;
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for (int j=0; j<_size-2; ++j)
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{
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2009-03-05 16:11:47 +08:00
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double r = std::max(0,_size-j-1);
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double b = std::max(0,_size-j-2);
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2008-07-29 04:48:21 +08:00
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_cost += 6 + 3*b + r*r*4 + r*_size*4;
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}
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}
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// invalidate copy ctor
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Action_hessenberg( const Action_hessenberg & )
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{
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INFOS("illegal call to Action_hessenberg Copy Ctor");
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exit(1);
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}
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// Dtor
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~Action_hessenberg( void ){
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MESSAGE("Action_hessenberg Dtor");
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// deallocation
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Interface::free_matrix(X_ref,_size);
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Interface::free_matrix(X,_size);
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Interface::free_matrix(C,_size);
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}
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// action name
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static inline std::string name( void )
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{
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return "hessenberg_"+Interface::name();
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}
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double nb_op_base( void ){
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return _cost;
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}
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inline void initialize( void ){
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Interface::copy_matrix(X_ref,X,_size);
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}
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inline void calculate( void ) {
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Interface::hessenberg(X,C,_size);
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}
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void check_result( void ){
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// calculation check
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Interface::matrix_to_stl(C,resu_stl);
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// STL_interface<typename Interface::real_type>::hessenberg(X_stl,C_stl,_size);
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//
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// typename Interface::real_type error=
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// STL_interface<typename Interface::real_type>::norm_diff(C_stl,resu_stl);
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//
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// if (error>1.e-6){
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// INFOS("WRONG CALCULATION...residual=" << error);
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// exit(0);
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// }
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}
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private :
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typename Interface::stl_matrix X_stl;
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typename Interface::stl_matrix C_stl;
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typename Interface::stl_matrix resu_stl;
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typename Interface::gene_matrix X_ref;
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typename Interface::gene_matrix X;
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typename Interface::gene_matrix C;
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int _size;
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double _cost;
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};
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template<class Interface>
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class Action_tridiagonalization {
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public :
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// Ctor
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Action_tridiagonalization( int size ):_size(size)
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{
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2011-03-23 17:07:24 +08:00
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MESSAGE("Action_tridiagonalization Ctor");
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2008-07-29 04:48:21 +08:00
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// STL vector initialization
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2011-03-23 23:28:09 +08:00
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init_matrix<pseudo_random>(X_stl,_size);
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for(int i=0; i<_size; ++i)
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{
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for(int j=0; j<i; ++j)
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X_stl[i][j] = X_stl[j][i];
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}
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2008-07-29 04:48:21 +08:00
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init_matrix<null_function>(C_stl,_size);
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init_matrix<null_function>(resu_stl,_size);
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// generic matrix and vector initialization
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Interface::matrix_from_stl(X_ref,X_stl);
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Interface::matrix_from_stl(X,X_stl);
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Interface::matrix_from_stl(C,C_stl);
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_cost = 0;
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for (int j=0; j<_size-2; ++j)
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{
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2011-03-23 17:07:24 +08:00
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double r = std::max(0,_size-j-1);
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double b = std::max(0,_size-j-2);
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_cost += 6. + 3.*b + r*r*8.;
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2008-07-29 04:48:21 +08:00
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}
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}
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// invalidate copy ctor
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Action_tridiagonalization( const Action_tridiagonalization & )
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{
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INFOS("illegal call to Action_tridiagonalization Copy Ctor");
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exit(1);
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}
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// Dtor
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~Action_tridiagonalization( void ){
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MESSAGE("Action_tridiagonalization Dtor");
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// deallocation
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Interface::free_matrix(X_ref,_size);
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Interface::free_matrix(X,_size);
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Interface::free_matrix(C,_size);
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}
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// action name
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static inline std::string name( void ) { return "tridiagonalization_"+Interface::name(); }
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double nb_op_base( void ){
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return _cost;
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}
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inline void initialize( void ){
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Interface::copy_matrix(X_ref,X,_size);
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}
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inline void calculate( void ) {
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Interface::tridiagonalization(X,C,_size);
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}
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void check_result( void ){
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// calculation check
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Interface::matrix_to_stl(C,resu_stl);
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// STL_interface<typename Interface::real_type>::tridiagonalization(X_stl,C_stl,_size);
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//
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// typename Interface::real_type error=
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// STL_interface<typename Interface::real_type>::norm_diff(C_stl,resu_stl);
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//
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// if (error>1.e-6){
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// INFOS("WRONG CALCULATION...residual=" << error);
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// exit(0);
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// }
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}
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private :
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typename Interface::stl_matrix X_stl;
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typename Interface::stl_matrix C_stl;
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typename Interface::stl_matrix resu_stl;
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typename Interface::gene_matrix X_ref;
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typename Interface::gene_matrix X;
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typename Interface::gene_matrix C;
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int _size;
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double _cost;
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};
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#endif
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