[2615] | 1 | #include "sopnamsp.h"
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[1611] | 2 | #include "zthread.h"
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[3080] | 3 | #include "resusage.h"
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[1611] | 4 |
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[2322] | 5 | #include <iostream>
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[3080] | 6 | #include <vector>
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[1611] | 7 |
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[3080] | 8 | #include "tmatrix.h"
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[3177] | 9 | #include "tvector.h"
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[3263] | 10 | #include "matharr.h"
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[3080] | 11 | #include "tarrinit.h"
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[3451] | 12 | #include "stsrand.h"
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[3080] | 13 |
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[1611] | 14 | #include <stdlib.h>
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| 15 | #include <stdio.h>
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| 16 |
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[3080] | 17 | /* -------------------------------------------------
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| 18 | Programme de test des classes de threads de SOPHYA
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| 19 | SOPHYA::ZThread SOPHYA::ZMutex ...
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| 20 | Exemples d'execution
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[3263] | 21 | csh> time zthr mtx 2 500
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[3080] | 22 | csh> time zthr arr 2 500
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[3263] | 23 | csh> time zthr arrdl 2 500
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| 24 | csh> time zthr arrmf 2 500
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[3177] | 25 | csh> time zthr sync 4 1000
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[3263] | 26 | csh> time zthr syncp 4 1000
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[3080] | 27 | */
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| 28 |
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[1611] | 29 | #include <time.h>
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| 30 | #include <unistd.h>
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| 31 |
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| 32 | #include "timing.h"
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[3177] | 33 | #include "ctimer.h"
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[1611] | 34 |
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| 35 |
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[3080] | 36 | // --- Structure d'argument pour fonction d'execution dans les threads de test
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| 37 | typedef struct {
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[3185] | 38 | int_4 thid, NTh;
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| 39 | int_4 M, VSz;
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[3080] | 40 | } ztarg;
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| 41 |
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| 42 | // --- fonction de test simple avec boucle de sleep
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| 43 | void funzt(void *arg)
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[1611] | 44 | {
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| 45 | time_t t0, t1;
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| 46 | int i;
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| 47 |
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[3080] | 48 | ztarg * za = (ztarg *)arg;
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| 49 |
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[1611] | 50 | t0 = time(NULL);
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[3080] | 51 | printf("+++++ funzt(ThId=%d) Entry to funzt (za.M=%d) +++++\n", za->thid, za->M);
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| 52 | int imax = za->M;
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[1611] | 53 | for(i=0; i<imax; i++)
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| 54 | {
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[3080] | 55 | sleep(3);
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[1611] | 56 | t1 = time(NULL)-t0;
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[3080] | 57 | printf("++funzt(ThId=%d) Dt= %d \n", za->thid, (int)t1);
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[1611] | 58 | }
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| 59 |
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| 60 | return;
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| 61 | }
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| 62 |
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[3451] | 63 | void randgenths(Array& mx, double sig)
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| 64 | {
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| 65 | RandomGenerator rg;
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| 66 | for(sa_size_t j=0; j<mx.SizeY(); j++)
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| 67 | for(sa_size_t i=0; i<mx.SizeX(); i++) mx(i,j) = rg.Gaussian(sig);
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| 68 | }
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| 69 |
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[3253] | 70 | // --- fonction de test simple avec calcul matriciel (produit de 2 matrices double)
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[3080] | 71 | void mtx_funzt(void *arg)
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[1611] | 72 | {
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[3080] | 73 | ztarg * za = (ztarg *)arg;
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| 74 | cout << ">>>> mtx-funzt(ThId=" << za->thid << ") - Matrix size= " << za->M << endl;
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| 75 |
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| 76 | sa_size_t m = za->M;
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| 77 | Matrix a1(m,m), a2(m,m), mxprod;
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[3451] | 78 | // a1 = RandomSequence(RandomSequence::Gaussian, 0., 4.);
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| 79 | // a2 = RandomSequence(RandomSequence::Gaussian, 0., 3.);
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| 80 | randgenths(a1,4.);
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| 81 | randgenths(a2,3.);
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[3080] | 82 | char buff[128];
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| 83 | sprintf(buff, "mtx-funzt(ThId=%d) EndOfInit", za->thid);
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| 84 | PrtTim(buff);
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| 85 | mxprod = a1*a2;
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| 86 | sprintf(buff, "mtx-funzt(ThId=%d) EndOfMxProd", za->thid);
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| 87 | PrtTim(buff);
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| 88 | return;
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| 89 | }
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[3263] | 90 | // --- fonction de test simple avec calcul sur tableaux entier I4
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[3080] | 91 | void arr_funzt(void *arg)
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| 92 | {
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| 93 | ztarg * za = (ztarg *)arg;
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| 94 | cout << ">>>> arr-funzt(ThId=" << za->thid << ") - Matrix size= " << za->M << endl;
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| 95 |
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| 96 | sa_size_t m = za->M;
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| 97 | TMatrix<int_4> a1(m,m), a2(m,m), ares;
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| 98 | a1 = RegularSequence(1.,1.);
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| 99 | a2 = RegularSequence(5.,3.);
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| 100 | char buff[128];
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| 101 | sprintf(buff, "arr-funzt(ThId=%d) EndOfInit", za->thid);
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| 102 | PrtTim(buff);
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[3253] | 103 | // ares = 4*a1*12*a2; correction le 23/05/2007 - * (prod.mtx par erreur)
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| 104 | ares = (4*a1)+(12*a2);
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[3080] | 105 | sprintf(buff, "arr-funzt(ThId=%d) EndOfOper", za->thid);
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| 106 | PrtTim(buff);
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| 107 | return;
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| 108 | }
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[3263] | 109 | // --- fonction de test simple avec calcul de type DL sur tableaux double 1D
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| 110 | void arrdl_funzt(void *arg)
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| 111 | {
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| 112 | ztarg * za = (ztarg *)arg;
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| 113 | sa_size_t vsz = za->M*za->M;
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[3264] | 114 | sa_size_t EXS = 10;
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[1611] | 115 |
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[3264] | 116 | cout << ">>>> arrdl-funzt(ThId=" << za->thid << " DataBlock_Sz=M*M " << vsz
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| 117 | << " V2=DLO4(V1) , NOp ~= 10*10*vsz=" << 10*EXS*vsz << endl;
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[3263] | 118 |
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| 119 | TVector<r_8> v1(vsz), v2(vsz);
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[3264] | 120 | TVector<r_8> coeff(EXS);
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[3451] | 121 | // coeff = RandomSequence();
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| 122 | randgenths(coeff, 1.);
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[3264] | 123 | // v1 = RegularSequence(1.,0.001); --- ATTENTION , couteux en temps
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| 124 | // NDataBlock<r_8> v1(vsz, false), v2(vsz, false);
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| 125 | for(sa_size_t i=0; i<vsz; i++) v1(i) = i*0.001;
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[3263] | 126 | char buff[128];
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| 127 | sprintf(buff, "arrdl-funzt(ThId=%d) EndOfInit", za->thid);
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| 128 | PrtTim(buff);
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[3264] | 129 |
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| 130 | double c2 = 0.5;
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| 131 | double c3 = 1./6.;
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| 132 | double c4 = 1./24;
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| 133 | for(sa_size_t k=0; k<EXS; k++) {
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| 134 | for(sa_size_t i=0; i<vsz; i++) {
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| 135 | register double x = v1(i)*coeff(k);
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| 136 | v2(i) = x*(1+x*(x*c2+x*(x*c3+x*x*c4)));
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| 137 | }
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[3263] | 138 | }
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| 139 | sprintf(buff, "arrdl-funzt(ThId=%d) EndOfOper", za->thid);
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| 140 | PrtTim(buff);
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| 141 | return;
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| 142 | }
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| 143 | // --- fonction de test simple avec calcul de type fonction mathematique sur tableaux double 1D
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| 144 | void arrmf_funzt(void *arg)
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| 145 | {
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| 146 | ztarg * za = (ztarg *)arg;
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| 147 | sa_size_t vsz = za->M*za->M;
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[1611] | 148 |
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[3263] | 149 | cout << ">>>> arrmf-funzt(ThId=" << za->thid << " VecSz=M*M " << vsz
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[3264] | 150 | << " V2=Sin(V1) , NOp ~= 50*vsz=" << 50*vsz << endl;
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[3263] | 151 |
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| 152 | TVector<r_8> v1(vsz), v2(vsz);
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[3264] | 153 | //-- v1 = RegularSequence(1.,0.001); COUTEUX en TCPU
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| 154 | for(sa_size_t i=0; i<vsz; i++) v1(i) = i*0.001;
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[3263] | 155 | char buff[128];
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[3264] | 156 | sprintf(buff, "arrmf-funzt(ThId=%d) EndOfInit", za->thid);
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[3263] | 157 | PrtTim(buff);
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[3264] | 158 |
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[3263] | 159 | v2 = Sin(v1);
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[3264] | 160 | v2 += Cos(v1);
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[3263] | 161 | sprintf(buff, "arrmf-funzt(ThId=%d) EndOfOper", za->thid);
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| 162 | PrtTim(buff);
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| 163 | return;
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| 164 | }
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| 165 |
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| 166 |
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[3177] | 167 | // Structure de gestion utilisee par la classe MTVecPool
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| 168 | typedef struct {
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| 169 | bool busy;
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| 170 | int stat;
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| 171 | } St_VecPool;
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[1611] | 172 |
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[3177] | 173 | // -------------------------------------------------------------------
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| 174 | // Structure de gestion de zones memoire partagee (des vecteurs) entre
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| 175 | // threads - qui doivent operer successivement sur les vecteurs
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| 176 | // -------------------------------------------------------------------
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| 177 | class MTVecPool {
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| 178 | public:
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| 179 | MTVecPool(uint_4 nth, uint_4 vsz, uint_4 nvec)
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| 180 | {
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| 181 | if (nth > 60) throw ParmError("MTVecPool::MTVecPool() nth > 60");
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| 182 | if ((nth < 1) || (vsz < 2))
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| 183 | throw ParmError("MTVecPool::MTVecPool() nth<1 OR vsz<2 ");
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| 184 | _vmx.SetSize(vsz, nvec);
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| 185 | _nth = nth;
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| 186 | _vsz = vsz;
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[3186] | 187 | TVector<int_8> xx(2);
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| 188 | for(int k=0; k<nth; k++) _vecp.push_back(xx);
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[3177] | 189 | cout << "-- MTVecPool(nth=" << nth << ")" << endl;
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| 190 | _vmx.Show();
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| 191 | }
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| 192 | ~MTVecPool() { }
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| 193 | // Renvoie un pointeur de vecteur pour thread tid
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[3185] | 194 | TVector<int_8>* GetVecP(uint_4 tid, uint_4& idx)
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[3177] | 195 | {
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[3185] | 196 | if (tid >= _nth) ParmError("MTVecPool::GetVecP() tid > _nth");
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| 197 | //DBG cout << "DBG-GetVecP(tid= " << tid << ")" << endl;
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| 198 | if (tid == 0) {
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| 199 | mex.lock();
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| 200 | St_VecPool stv;
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| 201 | idx = _vecs.size();
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[3186] | 202 | _vecp[tid].Share(_vmx.Column(idx));
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[3185] | 203 | stv.busy = true;
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| 204 | stv.stat = 0;
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| 205 | _vecs.push_back(stv);
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| 206 | mex.unlock();
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| 207 | //DBG cout << "DBG-GetVecP(tid= " << tid << ") -> Idx=" << idx << " VecSz=" << &(_vecs[idx].vv) << endl;
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[3186] | 208 | return (&(_vecp[tid]));
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[3185] | 209 | }
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| 210 | else {
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| 211 | mex.lock();
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| 212 | bool found = false;
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| 213 | while (!found) {
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| 214 | for(uint_4 k=0; k<_vecs.size(); k++) {
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| 215 | if ( (_vecs[k].stat == tid) && (! _vecs[k].busy) ) {
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| 216 | found = true; idx = k;
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| 217 | _vecs[k].stat = tid; _vecs[k].busy = true;
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| 218 | break;
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| 219 | }
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| 220 | }
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| 221 | if (found) {
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[3186] | 222 | _vecp[tid].Share(_vmx.Column(idx));
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[3185] | 223 | mex.unlock();
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| 224 | //DBG cout << "DBG-GetVecP(tid= " << tid << ") -> nv=" << hex << rv << dec << endl;
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[3186] | 225 | return (&(_vecp[tid]));
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[3185] | 226 | }
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| 227 | else {
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| 228 | mex.broadcast();
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| 229 | mex.wait();
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| 230 | }
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| 231 | }
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| 232 | }
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| 233 | }
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| 234 | // Renvoie un vecteur pour thread tid
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| 235 | TVector<int_8> GetVec(uint_4 tid, uint_4& idx)
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| 236 | {
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| 237 | if (tid >= _nth) ParmError("MTVecPool::GetVec() tid > _nth");
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[3177] | 238 | //DBG cout << "DBG-GetVec(tid= " << tid << ")" << endl;
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| 239 | if (tid == 0) {
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| 240 | mex.lock();
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| 241 | St_VecPool stv;
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| 242 | idx = _vecs.size();
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| 243 | stv.busy = true;
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| 244 | stv.stat = 0;
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| 245 | _vecs.push_back(stv);
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| 246 | mex.unlock();
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[3178] | 247 | //DBG cout << "DBG-GetVec(tid= " << tid << ") -> Idx=" << idx << " VecSz=" << &(_vecs[idx].vv) << endl;
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[3186] | 248 | return (_vmx.Column(idx));
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[3177] | 249 | }
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| 250 | else {
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| 251 | mex.lock();
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| 252 | bool found = false;
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| 253 | while (!found) {
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| 254 | for(uint_4 k=0; k<_vecs.size(); k++) {
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| 255 | if ( (_vecs[k].stat == tid) && (! _vecs[k].busy) ) {
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| 256 | found = true; idx = k;
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| 257 | _vecs[k].stat = tid; _vecs[k].busy = true;
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| 258 | break;
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| 259 | }
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| 260 | }
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| 261 | if (found) {
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| 262 | mex.unlock();
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| 263 | //DBG cout << "DBG-GetVec(tid= " << tid << ") -> nv=" << hex << rv << dec << endl;
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[3186] | 264 | return (_vmx.Column(idx));
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[3177] | 265 | }
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| 266 | else {
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| 267 | mex.broadcast();
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| 268 | mex.wait();
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| 269 | }
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| 270 | }
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| 271 | }
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| 272 | }
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| 273 |
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[3178] | 274 | // Retourne l'index du vecteur au gestionnaire, qui le marque comme disponible
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[3177] | 275 | void RetVec(uint_4 idx)
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| 276 | {
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| 277 | //DBG cout << "DBG-RetVec(idx= " << idx << ")" << endl;
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| 278 | ZSync zs(mex, 2);
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| 279 | _vecs[idx].busy = false; _vecs[idx].stat++;
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| 280 | zs.NOp();
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| 281 | }
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| 282 |
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| 283 | // Verifie l'etat memoire de tous les vecteurs et fait des print
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| 284 | int Check()
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| 285 | {
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| 286 | cout << "MTVecPool::Check() NVec=" << _vecs.size() << " VSz="
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| 287 | << _vsz << " NThreads=" << _nth << endl;
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| 288 | int nerr = 0;
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| 289 | int_8 sum = 0;
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| 290 | int_8 p2 = 1;
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| 291 | int_8 min,max;
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| 292 | for(int i=0; i<_nth; i++) { sum += p2; p2 *= 2; }
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| 293 | for(uint_4 k=0; k<_vecs.size(); k++) {
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| 294 | if ( (_vecs[k].busy) || (_vecs[k].stat != _nth) ) {
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| 295 | cout << " Check()/Pb Busy Or Stat for k=" << k << endl;
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| 296 | nerr++;
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| 297 | }
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[3186] | 298 | _vmx.Column(k) -= sum;
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| 299 | _vmx.Column(k).MinMax(min, max);
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[3177] | 300 | if ((min!=0) || (max!=0)) {
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| 301 | cout << " Check()/Pb vec[k=" << k << "] != (sum=" << sum << ")" << endl;
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| 302 | nerr++;
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| 303 | }
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| 304 | }
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| 305 | if (nerr == 0) cout << "MTVecPool::Check() - OK (NErr=0)" << endl;
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| 306 | else cout << "MTVecPool::Check() PB NErr=" << nerr << endl;
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| 307 | return nerr;
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| 308 | }
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| 309 |
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| 310 | // ... variables membres
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| 311 | ZMutex mex;
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| 312 | uint_4 _vsz;
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| 313 | uint_4 _nth;
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| 314 | TMatrix<int_8> _vmx;
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| 315 | vector< St_VecPool> _vecs;
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[3186] | 316 | vector< TVector<int_8> > _vecp;
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[3177] | 317 | };
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| 318 |
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| 319 |
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| 320 | static MTVecPool* mtvp = NULL;
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| 321 |
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[3185] | 322 | // --- fonction de test avec synchronisation entre threads en utilisant pointeur de vecteurs
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| 323 | void syncp_funzt(void *arg)
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| 324 | {
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| 325 | ztarg * za = (ztarg *)arg;
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| 326 | cout << ">>>> syncp_funzt(ThId=" << za->thid << ") - NVec/NLoop= " << za->M << endl;
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| 327 |
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| 328 | if (mtvp == NULL)
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| 329 | throw NullPtrError("syncp_funzt: MTVecPool* mtvp = NULL");
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| 330 |
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| 331 | int_4 L = za->M;
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| 332 | int_4 VS = za->VSz;
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| 333 | int_8 p2 = 1;
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| 334 | uint_4 k, ii, tid;
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| 335 | tid = za->thid;
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| 336 | for(k=0; k<tid; k++) p2 *= 2;
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| 337 |
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| 338 | char buff[128];
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| 339 | sprintf(buff, "syncp_funzt(ThId=%d) StarOfLoop", za->thid);
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| 340 | PrtTim(buff);
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| 341 | uint_4 idx;
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| 342 | for(k=0; k<L; k++) {
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| 343 | *(mtvp->GetVecP(tid, idx)) += p2;
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| 344 | //DBG cout << "DBG-syncp_funzt(tid=" << tid << ", idx=" << idx << endl;
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| 345 | mtvp->RetVec(idx);
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| 346 | }
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| 347 | sprintf(buff, "syncp_funzt(ThId=%d) EndOfLoop", za->thid);
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| 348 | PrtTim(buff);
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| 349 | return;
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| 350 | }
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[3177] | 351 | // --- fonction de test avec synchronisation entre threads
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| 352 | void sync_funzt(void *arg)
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| 353 | {
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| 354 | ztarg * za = (ztarg *)arg;
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| 355 | cout << ">>>> sync_funzt(ThId=" << za->thid << ") - NVec/NLoop= " << za->M << endl;
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| 356 |
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| 357 | if (mtvp == NULL)
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| 358 | throw NullPtrError("sync_funzt: MTVecPool* mtvp = NULL");
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| 359 |
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| 360 | int_4 L = za->M;
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[3185] | 361 | int_4 VS = za->VSz;
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[3177] | 362 | int_8 p2 = 1;
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[3185] | 363 | uint_4 k, ii, tid;
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[3177] | 364 | tid = za->thid;
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| 365 | for(k=0; k<tid; k++) p2 *= 2;
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| 366 |
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| 367 | char buff[128];
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| 368 | sprintf(buff, "sync_funzt(ThId=%d) StarOfLoop", za->thid);
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| 369 | PrtTim(buff);
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| 370 | uint_4 idx;
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| 371 | for(k=0; k<L; k++) {
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[3185] | 372 | mtvp->GetVec(tid, idx) += p2;
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[3177] | 373 | //DBG cout << "DBG-sync_funzt(tid=" << tid << ", idx=" << idx << endl;
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| 374 | mtvp->RetVec(idx);
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| 375 | }
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| 376 | sprintf(buff, "sync_funzt(ThId=%d) EndOfLoop", za->thid);
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| 377 | PrtTim(buff);
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| 378 | return;
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| 379 | }
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| 380 |
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[1611] | 381 | class CountLock : public ZMutex {
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| 382 | int count;
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| 383 | public:
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| 384 | CountLock() { count = 0; }
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| 385 | inline int Count() { lock(); int rc = ++count; unlock(); return(rc);
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| 386 | }
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| 387 | };
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| 388 |
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| 389 |
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[3080] | 390 | static int N = 1;
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| 391 | static int M = 5;
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[3185] | 392 | static int VSZ = 32;
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[3080] | 393 |
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[1611] | 394 | int main(int narg, char *arg[])
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| 395 |
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| 396 | {
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| 397 |
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| 398 | if (narg < 4) {
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[3177] | 399 | cout << " Usage: zthr select N LM [Sz] " << endl;
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[3080] | 400 | cout << " select= sl -> simple loop with sleep " << endl;
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[3263] | 401 | cout << " select= mtx -> matrix<r_8> init and multiply mx1*mx2" << endl;
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| 402 | cout << " select= arr -> array/matrix<int_4> init and operation c1*a1+c2*a2 " << endl;
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| 403 | cout << " select= arrdl -> vectorOpe V2 ~= DLO4(V1), VSz=LM*LM " << endl;
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| 404 | cout << " select= arrmf -> vectorOpe V2 = Sin(V1), VSz=LM*LM " << endl;
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[3080] | 405 | cout << " select= clk -> Mutex lock count " << endl;
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[3177] | 406 | cout << " select= sync -> Thread synchronisation using ZMutex" << endl;
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[3185] | 407 | cout << " select= syncp -> Thread synchronisation using ZMutex , Vector pointers" << endl;
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[3080] | 408 | cout << " N= Number of threads (sl/mtx) or CountLock " << endl;
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[3177] | 409 | cout << " LM = Loop limit (sl/sync) or Matrix size (mtx) " << endl;
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[3185] | 410 | cout << " Sz = Vector size for select=sync,syncp (default=32) " << endl;
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[3080] | 411 | return(1);
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[1611] | 412 | }
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| 413 |
|
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[3080] | 414 | string sel = arg[1];
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[3177] | 415 | if ((sel != "sl") && (sel != "mtx") && (sel != "arr") &&
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[3263] | 416 | (sel != "arrdl") && (sel != "arrmf") &&
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[3185] | 417 | (sel != "sync") && (sel != "syncp") && (sel != "clk")) {
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[3080] | 418 | cout << "zthr/erreur argument sel (!= sl / mtx / arr / clk) " << endl;
|
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| 419 | return 2;
|
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| 420 | }
|
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| 421 |
|
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| 422 | //-- Decodage arguments
|
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| 423 | N = atoi(arg[2]);
|
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| 424 | M = atoi(arg[3]);
|
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[3177] | 425 | if (narg > 4) VSZ = atoi(arg[4]);
|
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| 426 | cout << "zthr/Info: select=" << sel << " N=" << N << " M= " << M
|
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| 427 | << " VSz=" << VSZ << endl;
|
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[3080] | 428 |
|
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| 429 |
|
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[1611] | 430 | InitTim();
|
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[3080] | 431 | SophyaInit();
|
---|
[1611] | 432 |
|
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[3080] | 433 | int rc = 0;
|
---|
| 434 | try {
|
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[3177] | 435 | ResourceUsage res(ResourceUsage::RU_All);
|
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[3263] | 436 | if ((sel == "mtx") || (sel == "arr") || (sel == "sl") ||
|
---|
| 437 | (sel == "arrdl") || (sel == "arrmf") ||
|
---|
| 438 | (sel == "sync") || (sel == "syncp")) {
|
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[3185] | 439 | if ( (sel == "sync") || (sel == "syncp")) mtvp = new MTVecPool(N,VSZ,M);
|
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[3080] | 440 | vector<ztarg *> vza;
|
---|
| 441 | vector<ZThread *> vzth;
|
---|
| 442 | for(int i=0; i<N; i++) {
|
---|
| 443 | cout << "*****zthr: Creating Thread " << i+1 << " /" << N << endl;
|
---|
| 444 | ZThread * pzt = new ZThread();
|
---|
| 445 | ztarg* zap = new ztarg;
|
---|
| 446 | vzth.push_back(pzt);
|
---|
[3177] | 447 | // ATTENTION : il faut que le thid = 0 ... N-1 (et pas 1)
|
---|
| 448 | zap->thid = i; zap->M = M;
|
---|
[3185] | 449 | zap->NTh = N; zap->VSz = VSZ;
|
---|
[3080] | 450 | vza.push_back(zap);
|
---|
| 451 | if (sel == "mtx") pzt->setAction(mtx_funzt, vza[i]);
|
---|
| 452 | else if (sel == "arr") pzt->setAction(arr_funzt, vza[i]);
|
---|
[3263] | 453 | else if (sel == "arrdl") pzt->setAction(arrdl_funzt, vza[i]);
|
---|
| 454 | else if (sel == "arrmf") pzt->setAction(arrmf_funzt, vza[i]);
|
---|
[3177] | 455 | else if (sel == "sync") pzt->setAction(sync_funzt, vza[i]);
|
---|
[3185] | 456 | else if (sel == "syncp") pzt->setAction(syncp_funzt, vza[i]);
|
---|
[3080] | 457 | else pzt->setAction(funzt, vza[i]);
|
---|
| 458 | }
|
---|
| 459 | cout << "***zthr: Starting threads ... " << endl;
|
---|
| 460 | PrtTim("***zthr/StarThr");
|
---|
| 461 | for(int i=0; i<N; i++) vzth[i]->start();
|
---|
| 462 | sleep(1);
|
---|
| 463 | cout << "***ResourceUsage before thr[i].join()" << endl;
|
---|
| 464 | cout << res;
|
---|
| 465 | cout << "***zthr Joining Threads ..." << endl;
|
---|
| 466 | for(int i=0; i<N; i++) vzth[i]->join();
|
---|
| 467 | cout << "***zthr Threads Z1 ... Z" << N << " Finished OK" << endl;
|
---|
[3185] | 468 | cout << " zthr/Resusage: getDataSize() = " << res.getDataSize() << " getStackSize()="
|
---|
| 469 | << res.getStackSize() << endl;
|
---|
[3080] | 470 | cout << res;
|
---|
| 471 | for(int i=0; i<N; i++) {
|
---|
| 472 | delete vzth[i];
|
---|
| 473 | delete vza[i];
|
---|
| 474 | }
|
---|
[3177] | 475 | if (mtvp) {
|
---|
| 476 | Timer tm("MTVecPool::Check()");
|
---|
| 477 | mtvp->Check();
|
---|
| 478 | tm.Nop();
|
---|
| 479 | delete mtvp;
|
---|
| 480 | }
|
---|
[3080] | 481 | }
|
---|
| 482 | else {
|
---|
| 483 | PrtTim("BeginOfCount");
|
---|
| 484 | CountLock clk;
|
---|
| 485 | int kk;
|
---|
| 486 | for(kk=0; kk<atoi(arg[3]); kk++) {
|
---|
| 487 | clk.Count();
|
---|
| 488 | }
|
---|
| 489 | cout << " End CountLock-Test Count= " << clk.Count() << endl;
|
---|
| 490 | }
|
---|
[1611] | 491 | }
|
---|
[3080] | 492 | catch (PThrowable exc) {
|
---|
| 493 | cerr << "zthr: catched Exception " << exc.Msg() << endl;
|
---|
| 494 | rc = 77;
|
---|
| 495 | }
|
---|
| 496 | catch (...) {
|
---|
| 497 | cerr << " catched unknown (...) exception (lpk.cc) " << endl;
|
---|
| 498 | rc = 78;
|
---|
| 499 | }
|
---|
| 500 |
|
---|
| 501 | return(rc);
|
---|
| 502 |
|
---|
| 503 | }
|
---|
[1611] | 504 |
|
---|
| 505 |
|
---|
| 506 |
|
---|