[2615] | 1 | #include "sopnamsp.h"
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[2586] | 2 | #include "machdefs.h"
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| 3 |
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| 4 | #include <math.h>
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| 5 | #include <iostream>
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| 6 |
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| 7 | #include "tarrinit.h"
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| 8 | #include "array.h"
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| 9 | #include "timing.h"
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| 10 | #include "resusage.h"
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| 11 |
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| 12 | /* Programme de test de vitesse des operations sur TArray */
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| 13 | /* de SOPHYA Reza, Juillet 2004 */
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| 14 |
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| 15 | /* Flag a activer pour compiler avec SOPHYA V <= 1.7 */
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| 16 | /* #define VSOP_17 */
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| 17 |
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| 18 | int main(int narg, char* arg[])
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| 19 | {
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| 20 |
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| 21 | SophyaInit();
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| 22 | InitTim(); // Initializing the CPU timer
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| 23 |
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| 24 | if (narg < 5) {
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| 25 | cout << " spar TSel NLoop NRow NCols \n"
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| 26 | << " TSel=0/1/2: Option de selection test 7 avec sous-tableaux \n"
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| 27 | << " 0: Ne pas faire test 7 (couteux en V <= 1.7) \n"
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| 28 | << " 1: Test 7 1ere partie (sans AA.Row(r)*x+BB.Row(r)*y \n"
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| 29 | << " 2: Test 7 complet \n"
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| 30 | << " NLoop: Nombre d'iterations \n"
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| 31 | << " NRow,NCols: Taille de matrices \n"
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| 32 | << " Exemple: spar 0 10 800 1000 (Grande taille memoire) \n"
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| 33 | << " spar 1 100 80 100 (Petite taille memoire) \n" << endl;
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| 34 | return 1;
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| 35 | }
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| 36 | int ope = atoi(arg[1]);
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| 37 | int nloop = atoi(arg[2]);
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| 38 | int nr = atoi(arg[3]);
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| 39 | int nc = atoi(arg[4]);
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| 40 |
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| 41 | cout << " ------------------------------------------------- " << endl;
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| 42 | cout << " spar = SpeedArray Ope=" << ope << " NLoop= " << nloop
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| 43 | << " NR= " << nr << " NC= " << nc << endl;
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| 44 | cout << " ------------------------------------------------- " << endl;
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| 45 |
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| 46 | ResourceUsage res;
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| 47 | cout << "(1) Initialisation matrices Ac,Bc,Af,Bf - Random" << endl;
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| 48 | Matrix A(nr, nc, BaseArray::CMemoryMapping);
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| 49 | Matrix B(nr, nc, BaseArray::CMemoryMapping);
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| 50 | Matrix Ac(nr, nc, BaseArray::CMemoryMapping);
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| 51 | Matrix Bc(nr, nc, BaseArray::CMemoryMapping);
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| 52 | Matrix Af(nr, nc, BaseArray::FortranMemoryMapping);
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| 53 | Matrix Bf(nr, nc, BaseArray::CMemoryMapping);
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| 54 |
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| 55 | A = RandomSequence(RandomSequence::Flat);
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| 56 | B = RandomSequence(RandomSequence::Flat);
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| 57 |
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| 58 | Ac = A;
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| 59 | Bc = B;
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| 60 | Af = A;
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| 61 | Bf = B;
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| 62 |
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| 63 | PrtTim("(1) ApresInit Ac,Bc,Af,Bf ");
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| 64 | cout << res;
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| 65 |
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| 66 | long nop, noptot;
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| 67 | noptot = 0;
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| 68 |
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| 69 | cout << "(2) Operations de type A *= c , A += B " << endl;
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| 70 | Ac = A; Bc = B;
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| 71 | Af = A; Bf = B;
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| 72 | for(int k=0; k<nloop; k++) {
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| 73 | Ac *= 1.2;
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| 74 | Bf *= 1.15;
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| 75 | Ac -= Bc;
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| 76 | Af += Bf;
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| 77 | }
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| 78 | nop = nloop*nr*nc*4/1000;
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| 79 | cout << "(2) Op A *= c, A += B (KFLOP) = " << nop << endl;
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| 80 | noptot += nop;
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| 81 | PrtTim(" Apres (2) ");
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| 82 |
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| 83 | cout << "(3) Operations de type C = A*c , E = A+B " << endl;
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| 84 | Ac = A; Bc = B;
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| 85 | Af = A; Bf = B;
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| 86 | for(int k=0; k<nloop; k++) {
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| 87 | Matrix C = Ac*8.5;
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| 88 | C = Bf*54.;
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| 89 | Matrix E = Ac-Bc;
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| 90 | E = Af+Bc;
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| 91 | }
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| 92 | nop = nloop*nr*nc*4/1000;
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| 93 | cout << "(3) Op C = A*c , E = A+B (KFLOP) = " << nop << endl;
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| 94 | noptot += nop;
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| 95 | PrtTim(" Apres (3) ");
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| 96 |
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| 97 |
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| 98 | cout << "(4) Operations de type C = A*x+B*y " << endl;
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| 99 | Ac = A; Bc = B;
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| 100 | Af = A; Bf = B;
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| 101 | for(int k=0; k<nloop; k++) {
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| 102 | Matrix Ccc = Ac*4.+2.5*Bc;
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| 103 | Matrix Ccf = Ac*4.+2.5*Bf;
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| 104 | Matrix Cff = Af*4.+2.5*Bc;
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| 105 | }
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| 106 | nop = nloop*3*nr*nc*3/1000;
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| 107 | cout << "(4) Op C = A*x+B*y (KFLOP) = " << nop << endl;
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| 108 | noptot += nop;
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| 109 | PrtTim(" Apres (4) ");
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| 110 |
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| 111 |
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| 112 | cout << "(5) Operations de type C = A*x+B*y-z*A-B*t " << endl;
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| 113 | Ac = A; Bc = B;
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| 114 | Af = A; Bf = B;
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| 115 | for(int k=0; k<nloop; k++) {
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| 116 | Matrix Ccc = Ac*4.+2.5*Bc-0.3*Ac-Bc*0.8;
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| 117 | Matrix Ccf = Ac*4.+2.5*Bf-0.3*Ac-Bf*0.8;
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| 118 | Matrix Cff = Af*4.+2.5*Bf-0.3*Af-Bf*0.8;
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| 119 | }
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| 120 | nop = nloop*3*nr*nc*7/1000;
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| 121 | cout << "(5) Op C = A*x+B*y-z*A-B*t (KFLOP) = " << nop << endl;
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| 122 | noptot += nop;
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| 123 | PrtTim(" Apres (5) ");
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| 124 |
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| 125 | cout << "(6) Operations de type (A*x+y*B).MulElt(B-A, ->D) " << endl;
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| 126 | Ac = A; Bc = B;
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| 127 | Af = A; Bf = B;
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| 128 | #ifndef VSOP_17
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| 129 | for(int k=0; k<nloop; k++) {
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| 130 | Matrix Dc;
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| 131 | (Ac+4.+6.5*Bc).MulElt(Bc-Ac, Dc);
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| 132 | Matrix Dcf;
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| 133 | (Ac+4.+6.5*Bf).MulElt(Bc-Af, Dcf);
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| 134 | Matrix Df;
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| 135 | (Af+4.+6.5*Bf).MulElt(Bf-Af, Df);
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| 136 | }
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| 137 | #else
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| 138 | for(int k=0; k<nloop; k++) {
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| 139 | Matrix Dc;
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| 140 | Dc = (Ac+4.+6.5*Bc);
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| 141 | Dc.MulElt(Bc-Ac);
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| 142 | Matrix Dcf = (Ac+4.+6.5*Bf);
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| 143 | Dcf.MulElt(Bc-Af);
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| 144 | Matrix Df = (Af+4.+6.5*Bf);
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| 145 | Df.MulElt(Bf-Af);
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| 146 | }
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| 147 | #endif
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| 148 | nop = nloop*3*nr*nc*5/1000;
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[2940] | 149 | cout << "(6.a) Op (A*x+y*B).MulElt(B-A, ->D) (KFLOP) = " << nop << endl;
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[2586] | 150 | noptot += nop;
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[2940] | 151 | PrtTim(" Apres (6.a) ");
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| 152 |
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| 153 | for(int k=0; k<nloop; k++) {
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| 154 | Matrix Dc = (Ac+4.+6.5*Bc) && (Bc-Ac);
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| 155 | Matrix Dcf = (Ac+4.+6.5*Bf) && (Bc-Af);
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| 156 | Matrix Df = (Af+4.+6.5*Bf) && (Bf-Af);
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| 157 | }
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| 158 | nop = nloop*3*nr*nc*5/1000;
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| 159 | cout << "(6.b) Op D = (A*x+y*B) && (B-A) (KFLOP) = " << nop << endl;
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| 160 | noptot += nop;
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| 161 | PrtTim(" Apres (6.b) ");
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[2586] | 162 | cout << res;
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| 163 |
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| 164 | // Les operations sur sous-tableaux sont beaucoup trop couteux V <= 1.7
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| 165 | if (ope > 0) {
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[2940] | 166 | cout << "\n(7) Op AA.Row() *= ... [AA.Row()*x+BB.Row()*y ope=2] " << endl;
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[2586] | 167 | Ac = A; Bc = B;
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| 168 | Af = A; Bf = B;
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| 169 | #ifdef VSOP_17
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| 170 | cout << " !!! Operations couteuses en V<=1.7 " << endl;
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| 171 | #endif
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| 172 | Matrix AA,BB;
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| 173 | Vector * vr = new Vector[nr];
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| 174 | for(int k=0; k<nloop; k++) {
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| 175 | AA = Ac;
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| 176 | BB = Bc;
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| 177 | for(int r=0; r<nr; r++) {
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| 178 | double fac = (5*r+0.33);
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| 179 | AA.Row(r) *= fac;
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| 180 | BB.Row(r) += AA.Row(r)*4.;
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| 181 | if (ope < 2) continue;
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| 182 | #ifdef VSOP_17
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| 183 | // Attention, si on ne fait pas le SetSize a la main, ca explose en memoire en V <= 1.7
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| 184 | vr[r].SetSize(AA.Row(r).Size(), AA.Row(r).GetVectorType());
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| 185 | vr[r] = AA.Row(r)*3.14+BB.Row(r)*5.6;
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| 186 | #else
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| 187 | vr[r] = AA.Row(r)*3.14+BB.Row(r)*5.6;
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| 188 | #endif
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| 189 | }
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| 190 | }
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| 191 | if (ope < 2) nop = nloop*nr*nc*3/1000;
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| 192 | else nop = nloop*nr*nc*6/1000;
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| 193 | cout << "(7) Op AA.Row() *= (KFLOP) = " << nop << endl;
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| 194 | noptot += nop;
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| 195 | PrtTim(" Apres (7) ");
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| 196 | cout << res;
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| 197 | delete[] vr;
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| 198 | }
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| 199 | cout << " ------------------------------------------------- " << endl;
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| 200 | cout << res;
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| 201 | PrtTim("Fin spar ");
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| 202 | cout << " ------ Fin spar N_OP_TOT= " << noptot << " (KFLOP) ------- " << endl;
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| 203 | }
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