| 1 | // Test de l'inversion de matrice (cmv 14/04/00)
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| 2 | #include "machdefs.h"
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| 3 | #include <iostream.h>
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| 4 | #include <stdlib.h>
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| 5 | #include <stdio.h>
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| 6 | #include <string.h>
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| 7 | #include <math.h>
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| 8 | #include <unistd.h>
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| 9 | #include "ntoolsinit.h"
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| 10 | #include "pexceptions.h"
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| 11 | #include "array.h"
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| 12 | #include "srandgen.h"
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| 13 | 
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| 14 | // if defined COMPLEX , if not REAL
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| 15 | #define COMPLEX
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| 16 | // if defined 32 bits precision, if not 64 bits
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| 17 | // #define PRECIS32
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| 18 | 
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| 19 | #if defined(COMPLEX)
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| 20 | #define ABS_VAL(_x_) sqrt((double)(_x_.real()*_x_.real() + _x_.imag()*_x_.imag()))
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| 21 | #if defined(PRECIS32)
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| 22 | #define TYPE complex<r_4>
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| 23 | #else
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| 24 | #define TYPE complex<r_8>
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| 25 | #endif
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| 26 | #else
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| 27 | #define ABS_VAL(_x_) fabs((double)_x_)
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| 28 | #if defined(PRECIS32)
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| 29 | #define TYPE r_4
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| 30 | #else
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| 31 | #define TYPE r_8
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| 32 | #endif
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| 33 | #endif
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| 34 | 
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| 35 | int main(int narg,char *arg[])
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| 36 | {
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| 37 | //--------------------------------------------------------
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| 38 | // number of lines/columns
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| 39 | int_4 N = 5;
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| 40 | // scale of the value (if =1 values between -1 and 1)
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| 41 | r_8 scale = 1.;
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| 42 | // number of values change by +/- vbig
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| 43 | int_4 nbig = N;
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| 44 | r_8 vbig = 1000.;
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| 45 | // Nombre de ligne de matrice a imprimer
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| 46 |  int_4 nprline = 10;
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| 47 | //--------------------------------------------------------
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| 48 | 
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| 49 | //-- Decodage arguments
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| 50 | char c;
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| 51 | while((c = getopt(narg,arg,"hv:l:")) != -1) {
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| 52 |   switch (c) {
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| 53 |   case 'v' :
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| 54 |     sscanf(optarg,"%d,%lf,%d,%lf",&N,&scale,&nbig,&vbig);
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| 55 |     break;
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| 56 |   case 'l' :
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| 57 |     sscanf(optarg,"%d",&nprline);
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| 58 |     break;
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| 59 |   case 'h' :
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| 60 |     cout<<"tsttminv [-h] [-v N,scale,nbig,vbig] [-l nprline]"<<endl;
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| 61 |     cout<<"matrix filled with : {[-1,1] +/- vbig(nbig time)}*scale"<<endl;
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| 62 |     exit(-1);
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| 63 |   }
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| 64 | }
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| 65 | if(N<=1) N = 1;
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| 66 | cout<<"Taille matrice N = "<<N<<endl;
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| 67 | cout<<"Elements entre +/- "<<scale<<endl;
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| 68 | cout<<"Nombre de valeurs hors standard "<<nbig<<endl;
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| 69 | cout<<"Valeurs hors standard v = v*(+/- "<<vbig<<" )"<<endl;
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| 70 | cout<<"Nombre de lignes de matrice a imprimer "<<nprline<<endl;
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| 71 | cout<<endl;
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| 72 | 
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| 73 | //-- Initialization arrays
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| 74 | SophyaInit();
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| 75 | 
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| 76 | //-- Definition arrays
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| 77 | TMatrix< TYPE > A(N,N);
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| 78 | TMatrix< TYPE > InvA(N,N);
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| 79 | TMatrix< TYPE > AiA(N,N);
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| 80 | TMatrix< TYPE > B(N,N);
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| 81 | TMatrix< TYPE > C(N,N);
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| 82 | A.Show();
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| 83 | 
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| 84 | //-- Mise a zero
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| 85 | A = (TYPE) 0;
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| 86 | InvA = (TYPE) 0;
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| 87 | AiA = (TYPE) 0;
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| 88 | B = (TYPE) 0;
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| 89 | C = (TYPE) 0;
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| 90 | BaseArray::SetMaxPrint(nprline*N,0);
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| 91 | 
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| 92 | //-- Fill matrices
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| 93 | uint_8 k;
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| 94 | int_4 i,j; double s;
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| 95 | A = Sequence(RandomSequence(RandomSequence::Flat,0.,1.));
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| 96 | if(nbig>0) for(i=0;i<nbig;i++)
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| 97 |   {k=(uint_8)(drand01()*N*N); if(k>=N*N) k--;
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| 98 |    s=(drand01()>0.5)?1.:-1.; A[k] += (TYPE) s*vbig;}
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| 99 | A *= (TYPE) scale;
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| 100 | #if defined(COMPLEX)
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| 101 | B = Sequence(RandomSequence(RandomSequence::Flat,0.,1.));
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| 102 | if(nbig>0) for(i=0;i<nbig;i++)
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| 103 |   {k=(uint_8)(drand01()*N*N); if(k>=N*N) k--;
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| 104 |    s=(drand01()>0.5)?1.:-1.; B[k] += (TYPE) s*vbig;}
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| 105 | B *= (TYPE) scale;
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| 106 | A += TYPE(0.,1.)*B;
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| 107 | #endif
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| 108 | 
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| 109 | //-- Print matrice A
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| 110 | cout<<"------------ TMatrix A :"<<endl;
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| 111 | if(nprline>0) {cout<<A; cout<<endl<<endl;}
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| 112 | 
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| 113 | //-- Inversion
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| 114 | cout<<"Inversion"<<endl;
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| 115 | InvA = Inverse(A);
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| 116 | cout<<"------------ TMatrix InvA = A^(-1):"<<endl;
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| 117 | if(nprline>0) {cout<<InvA; cout<<endl<<endl;}
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| 118 | 
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| 119 | //-- AiA = A * InvA
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| 120 | cout<<"AiA = A * InvA"<<endl;
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| 121 | AiA = A * InvA;
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| 122 | cout<<"------------ TMatrix AiA = A * InvA:"<<endl;
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| 123 | if(nprline>0) {cout<<AiA; cout<<endl;}
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| 124 | 
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| 125 | //-- Check
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| 126 | double vmin,vmax;
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| 127 | k = 0;
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| 128 | for(int i=0;i<N;i++) {
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| 129 |   double absv = ABS_VAL( AiA(i,i) );
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| 130 |   if(k==0) {vmin = vmax = absv; k++; continue;}
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| 131 |   if( absv > vmax ) vmax = absv;
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| 132 |   if( absv < vmin ) vmin = absv;
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| 133 |   k++;
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| 134 | }
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| 135 | cout<<"Limites sur la diagonale  "
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| 136 |     <<vmin<<" , "<<vmax<<"  n="<<k<<endl;
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| 137 | k = 0;
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| 138 | for(int i=0;i<N;i++) for(int j=0;j<N;j++) {
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| 139 |   if( i == j ) continue;
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| 140 |   double absv = ABS_VAL( AiA(i,j) );
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| 141 |   if(k==0) {vmin = vmax = absv; k++; continue;}
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| 142 |   if( absv > vmax ) vmax = absv;
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| 143 |   if( absv < vmin ) vmin = absv;
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| 144 |   k++;
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| 145 | }
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| 146 | cout<<"Limites hors diagonale  "
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| 147 |     <<vmin<<" , "<<vmax<<"  n="<<k<<endl;
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| 148 | 
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| 149 | exit(0);
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| 150 | }
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