| 1 | #include "sopnamsp.h"
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| 2 | #include "machdefs.h"
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| 3 | #include "JTC/JTC.h"
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| 4 |
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| 5 | #include <math.h>
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| 6 | #include <iostream>
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| 7 | #include <stdexcept>
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| 8 |
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| 9 | // Include file pour PI
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| 10 | #include "pisysdep.h"
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| 11 |
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| 12 | #include PIAPP_H
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| 13 | #include PIMENU_H
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| 14 | #include PISTDWDG_H
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| 15 | #include PIWIN_H
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| 16 | #include PIPERIODIC_H
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| 17 | #include "picons.h"
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| 18 |
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| 19 | // Include file Sophya (TArray)
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| 20 | #include "tarrinit.h"
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| 21 | #include "array.h"
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| 22 | #include "timing.h"
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| 23 |
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| 24 | using namespace std;
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| 25 |
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| 26 | // ..........................................................
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| 27 | // Programme interactive de test des threads JThreadsC++
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| 28 | // avec les arrays de Sophya et PI
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| 29 | // R. Ansari LAL-IN2P3/CNRS 05/2000
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| 30 | // ..........................................................
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| 31 |
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| 32 | // ................... MtxComputer ...................
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| 33 | // A thread class for doing matrix computation
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| 34 | class PIJTApp;
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| 35 | class MtxComputer : public JTCThread // <JThreadC++>
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| 36 | {
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| 37 | public:
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| 38 | MtxComputer(PIJTApp * japp, PIScale * sc, int id, int sz, int nloop);
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| 39 | virtual void run();
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| 40 | protected:
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| 41 | int id_;
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| 42 | int sz_;
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| 43 | int nloop_;
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| 44 | PIJTApp * japp_;
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| 45 | PIScale * sc_;
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| 46 | };
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| 47 |
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| 48 | // ................... CPUTimer ...................
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| 49 | // Periodic class for CPU and elapsed time counting
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| 50 | class CPUTimer : public PIPeriodic {
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| 51 | public:
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| 52 | CPUTimer(PIJTApp * app);
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| 53 | virtual void DoPeriodic();
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| 54 | protected:
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| 55 | PIJTApp * japp;
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| 56 | int dt;
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| 57 | };
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| 58 |
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| 59 | // ................... PIJTApp ...................
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| 60 | // La classe application <JThreadC++>
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| 61 | class PIJTApp : public PIApplication , public JTCThread {
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| 62 | // class PIJTApp : public PIApplication { // Pas oblige d'en faire un Thread
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| 63 | public:
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| 64 | PIJTApp(int narg, char* arg[]);
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| 65 | ~PIJTApp();
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| 66 | virtual void Process(PIMessage msg, PIMsgHandler* sender, void* data=NULL);
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| 67 | virtual void UpdateCPUTime();
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| 68 | virtual void run(); // <JThreadC++>
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| 69 | // virtual void Run(); Si pas thread
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| 70 | JTCMonitor & getMonitor(); // <JThreadC++> for synchronization
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| 71 | protected:
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| 72 | PIMenu * m[3];
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| 73 | PIScale *sc[2];
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| 74 | PILabel *tlab[2];
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| 75 | PILabel *cputlab;
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| 76 | PIConsole* cons;
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| 77 | // CPU and elapsed time
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| 78 | CPUTimer tm;
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| 79 | clock_t cput0;
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| 80 | time_t t0;
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| 81 | // The computing threads
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| 82 | JTCThreadHandle thr[2]; // <JThreadC++>
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| 83 | // for synchronization with other threads
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| 84 | JTCMonitor amon; // <JThreadC++>
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| 85 | int syn_cntrl;
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| 86 | };
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| 87 |
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| 88 |
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| 89 | // .........................................................
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| 90 | // ............. PIJTApp implementation .................
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| 91 | // .........................................................
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| 92 |
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| 93 | PIJTApp::PIJTApp(int narg, char* arg[])
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| 94 | : PIApplication(600, 400, narg, arg) , tm(this) // 200 ms timer
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| 95 | {
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| 96 | if (narg < 3) throw ParmError("PIJTApp::PIJTApp() narg<3 !");
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| 97 |
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| 98 | m[0] = new PIMenu(Menubar(),"Fichier");
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| 99 | m[0]->AppendItem("Start", 10101);
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| 100 | m[0]->AppendItem("Exit", 10110);
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| 101 | AppendMenu(m[0]);
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| 102 | m[1] = new PIMenu(Menubar(),"Thread-1");
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| 103 | m[1]->AppendItem("Suspend", 10201);
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| 104 | m[1]->AppendItem("Resume", 10202);
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| 105 | m[1]->AppendItem("Stop", 10203);
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| 106 | AppendMenu(m[1]);
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| 107 | m[2] = new PIMenu(Menubar(),"Thread-2");
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| 108 | m[2]->AppendItem("Suspend", 10301);
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| 109 | m[2]->AppendItem("Resume", 10302);
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| 110 | m[2]->AppendItem("Stop", 10303);
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| 111 | AppendMenu(m[2]);
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| 112 |
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| 113 | cputlab = new PILabel(MainWin(), "CPUTime", 590, 30, 5, 5);
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| 114 | cputlab->SetBorderWidth(1);
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| 115 |
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| 116 | tlab[0] = new PILabel(MainWin(), "Thr-1", 50, 30, 10, 40);
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| 117 | sc[0] = new PIScale(MainWin(), "Sc-Thr-1", 510, kSDirLtoR, 220, 40, 70, 40);
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| 118 | sc[0]->SetValue(0);
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| 119 | tlab[1] = new PILabel(MainWin(), "Thr-2", 50, 30, 300, 40);
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| 120 | sc[1] = new PIScale(MainWin(), "Sc-Thr-2", 520, kSDirLtoR, 220, 40, 360, 40);
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| 121 | sc[1]->SetValue(0);
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| 122 |
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| 123 | // Creating the console and redirecting output
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| 124 | cons = new PIConsole(MainWin(), "PIConsole", 700, 500, 80, 600, 315, 0, 85, true );
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| 125 | cons->SetBinding(PIBK_fixed, PIBK_fixed, PIBK_fixed, PIBK_fixed);
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| 126 | RedirectOutStream(cons);
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| 127 | //RedirectErrStream(cons);
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| 128 |
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| 129 | // Creating matrix Computing thread
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| 130 | int nloop = atoi(arg[1]);
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| 131 | int size = atoi(arg[2]);
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| 132 | thr[0] = new MtxComputer(this, sc[0], 0, size, nloop);
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| 133 | thr[1] = new MtxComputer(this, sc[1], 1, size, nloop);
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| 134 |
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| 135 | cput0 = clock(); t0 = time(NULL);
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| 136 | tm.Start(); // We start our cpu timer
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| 137 | syn_cntrl = 0; // Normal event loop
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| 138 | }
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| 139 |
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| 140 | PIJTApp::~PIJTApp()
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| 141 | {
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| 142 | int k;
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| 143 | for(k=0; k<3; k++) delete m;
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| 144 | for(k=0; k<2; k++) { delete tlab[k]; delete sc[k]; }
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| 145 | delete cputlab;
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| 146 |
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| 147 | delete cons;
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| 148 | }
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| 149 |
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| 150 | void PIJTApp::UpdateCPUTime()
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| 151 | {
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| 152 | clock_t cput;
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| 153 | time_t elt;
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| 154 | time_t tm; struct tm * stm;
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| 155 | elt = time(&tm); stm = localtime(&tm);
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| 156 | cput = clock();
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| 157 | float tcal = ( (float)(cput) - (float)(cput0) ) / (float)(CLOCKS_PER_SEC);
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| 158 | float etm = elt - t0;
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| 159 | float percen = (elt > t0) ? (tcal*100.)/etm : 0.;
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| 160 | char buff[192];
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| 161 | sprintf(buff, "%02d:%02d:%02d CPUTime= %g sec Elapsed= %g sec (%g %%)",
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| 162 | stm->tm_hour, stm->tm_min, stm->tm_sec,
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| 163 | tcal, etm, percen);
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| 164 |
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| 165 | string s = buff;
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| 166 | cputlab->SetLabel(s);
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| 167 | }
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| 168 |
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| 169 | JTCMonitor & PIJTApp::getMonitor()
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| 170 | {
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| 171 | syn_cntrl++;
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| 172 | return amon;
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| 173 | }
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| 174 |
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| 175 | void PIJTApp::run()
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| 176 | // void PIJTApp::Run() Si pas thread
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| 177 | {
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| 178 |
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| 179 | XEvent evt;
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| 180 | int szx, szy, szf;
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| 181 | XtAppContext * appctx = PIXtAppCtx(szx, szy, szf);
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| 182 | // Pour appeler FinishCreate() des objets dans la fenetre principale
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| 183 | if (mStop) { // C'est la premiere fois
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| 184 | topwdg->SetSize(MBCont()->XSize(), MBCont()->YSize());
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| 185 | MBCont()->FinishCreate();
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| 186 | }
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| 187 | else mStop = true; // On rerentre apres un stop
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| 188 |
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| 189 | cout << "DBG-PIJTApp::run/Run Starting event loop " << endl;
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| 190 | try {
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| 191 | JTCSynchronized sync(amon); // <JThreadC++> synchronized block
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| 192 |
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| 193 | while (mStop) {
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| 194 | while (syn_cntrl > 0) {
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| 195 | amon.wait(); // <JThreadC++>
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| 196 | syn_cntrl = 0;
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| 197 | }
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| 198 | XtAppNextEvent(*appctx, &evt);
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| 199 | XtDispatchEvent(&evt);
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| 200 | }
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| 201 | }
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| 202 | catch (JTCException const & e) { // <JThreadC++>
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| 203 | cerr << "PIJTApp::run() Catched JTCException Msg= " << e.getMessage() << endl;
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| 204 | }
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| 205 | catch (JTCThreadDeath const & e) { // <JThreadC++>
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| 206 | cerr << "PIJTApp::run() Catched JTCThreadDeath exception ! " << endl;
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| 207 | }
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| 208 | catch (...) {
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| 209 | cerr << "PIJTApp::run() Catched ... exception " << endl;
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| 210 | }
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| 211 |
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| 212 |
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| 213 | }
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| 214 |
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| 215 | void PIJTApp::Process(PIMessage msg, PIMsgHandler* sender, void* data)
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| 216 | {
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| 217 | int num;
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| 218 | try {
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| 219 | switch(UserMsg(msg)) {
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| 220 | case 10101 : // starting computing threads
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| 221 | thr[0]->start(); // <JThreadC++>
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| 222 | thr[1]->start(); // <JThreadC++>
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| 223 | break;
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| 224 | case 10110 : // starting computing threads
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| 225 | RedirectOutStream(NULL);
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| 226 | RedirectErrStream(NULL);
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| 227 | cout << " PIJTApp::Process() Waiting for threads to terminate ... " << endl;
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| 228 | thr[0]->join(); // <JThreadC++>
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| 229 | thr[1]->join(); // <JThreadC++>
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| 230 | Stop();
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| 231 | break;
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| 232 | case 10201 :
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| 233 | case 10301 :
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| 234 | num = (UserMsg(msg)-10201)/100;
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| 235 | thr[num]->suspend(); // <JThreadC++>
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| 236 | break;
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| 237 | case 10202 :
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| 238 | case 10302 :
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| 239 | num = (UserMsg(msg)-10202)/100;
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| 240 | thr[num]->resume(); // <JThreadC++>
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| 241 | break;
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| 242 | case 10203 :
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| 243 | case 10303 :
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| 244 | num = (UserMsg(msg)-10203)/100;
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| 245 | thr[num]->stop(); // <JThreadC++>
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| 246 | break;
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| 247 | }
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| 248 | }
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| 249 | catch (JTCException const & e) { // <JThreadC++>
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| 250 | cerr << "PIJTApp::Process() Catched JTCException Msg= " << e.getMessage() << endl;
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| 251 | }
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| 252 | catch (...) {
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| 253 | cerr << "PIJTApp::Process() Catched ... exception " << endl;
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| 254 | }
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| 255 |
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| 256 | }
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| 257 |
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| 258 | // .........................................................
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| 259 | // ............. CPUTimer implementation .................
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| 260 | // .........................................................
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| 261 |
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| 262 | CPUTimer::CPUTimer(PIJTApp * app)
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| 263 | : PIPeriodic(1)
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| 264 | {
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| 265 | japp = app;
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| 266 | dt = -1;
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| 267 | SetIntervalms(200); // 200 ms interval timer
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| 268 | }
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| 269 |
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| 270 | void
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| 271 | CPUTimer::DoPeriodic()
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| 272 | {
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| 273 | dt++;
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| 274 | if ((dt == 0) || (dt >= 5)) { japp->UpdateCPUTime(); dt = 0; }
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| 275 | }
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| 276 |
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| 277 |
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| 278 | // .........................................................
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| 279 | // ............. MtxComputer implementation ...............
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| 280 | // .........................................................
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| 281 |
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| 282 | // A global monitor for print synchronisation
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| 283 | JTCMonitor prtmon; // <JThreadC++>
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| 284 |
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| 285 | MtxComputer::MtxComputer(PIJTApp * japp, PIScale * sc, int id, int sz, int nloop)
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| 286 | {
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| 287 | id_ = id; sz_ = sz; nloop_ = nloop; japp_ = japp; sc_ = sc;
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| 288 | }
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| 289 |
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| 290 | void MtxComputer::run()
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| 291 | {
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| 292 | int n = sz_;
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| 293 | double seuil = 1.e-6;
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| 294 | Matrix id;
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| 295 | id = IdentityMatrix(1.,n);
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| 296 | double gmax = -1.e99;
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| 297 | double gmin = 1.e99;
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| 298 | int npb = 0;
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| 299 | // Loop creating a random matrix, inverting it
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| 300 | // and checking the result
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| 301 | for(int k=0; k<nloop_; k++) {
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| 302 | try {
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| 303 | Matrix a(n,n);
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| 304 | a = RandomSequence(RandomSequence::Gaussian, 0., 2.5);
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| 305 | Matrix inva = Inverse(a);
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| 306 | Matrix diff = id-a*inva;
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| 307 | double max = -1.e99;
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| 308 | double min = 1.e99;
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| 309 | double x;
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| 310 | int nerr = 0;
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| 311 | for(int i=0; i<n; i++)
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| 312 | for(int j=0; j<n; j++) {
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| 313 | x = diff(i,j);
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| 314 | if (x < min) min = diff(i,j);
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| 315 | if (x > max) max = diff(i,j);
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| 316 | if (fabs(x) > seuil) nerr++;
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| 317 | }
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| 318 | if (min < gmin) gmin = min;
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| 319 | if (max > gmax) gmax = max;
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| 320 | if (nerr > 0) npb++;
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| 321 | { // Synchronized writing to cout stream
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| 322 | JTCSynchronized sync(prtmon); // <JThreadC++>
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| 323 | cout << " ------- Thread[" << id_ << "] K= "
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| 324 | << k << " NErr = " << nerr << endl;
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| 325 | cout << " Min(Diff) = " << min << " Max(Diff) = " << max << endl;
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| 326 | if (k == nloop_-1) {
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| 327 | double frac = (double)npb*100./(double)nloop_;
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| 328 | cout << " ...... Thread[" << id_ << "] End NPb= " << npb
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| 329 | << " / NTot= " << nloop_ << " ( = " << frac << " %) " << endl;
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| 330 | cout << " GMin(Diff) = " << gmin << " GMax(Diff) = " << gmax << endl;
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| 331 | cout << " ..................................................... " << endl;
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| 332 | }
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| 333 | }
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| 334 | { // Synchronized updating of Scale Widget
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| 335 | JTCMonitor & amon = japp_->getMonitor();
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| 336 | JTCSynchronized sync(amon); // <JThreadC++>
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| 337 | // The event loop should be stopped until the end of the block
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| 338 | int percentage = 100*(k+1)/nloop_;
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| 339 | sc_->SetValue(percentage);
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| 340 | amon.notify(); // <JThreadC++>
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| 341 | }
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| 342 |
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| 343 | }
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| 344 | catch (PException const & e) {
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| 345 | cerr << "MtxComputer Catched PException in Thread(" << (string)getName()
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| 346 | << ") Msg= " << e.Msg() << endl;
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| 347 | }
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| 348 | catch (JTCException const & e) { // <JThreadC++>
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| 349 | cerr << "MtxComputer Catched JTCException in Thread(" << (string)getName()
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| 350 | << ") Msg= " << e.getMessage() << endl;
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| 351 | }
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| 352 | }
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| 353 | }
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| 354 |
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| 355 |
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| 356 | // .........................................................
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| 357 | // ................... The main program ....................
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| 358 | // .........................................................
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| 359 |
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| 360 | int main(int narg, char* arg[])
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| 361 | {
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| 362 |
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| 363 | if (narg < 3) {
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| 364 | cout << " jtcpitarr - JThreadsC++/PI+Sophya::TArray<T> Test \n "
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| 365 | << " ... Usage jtcpitarr NLoop MtxSize [-JTCss ... \n"
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| 366 | << " NLoop=10...10^4 MtxSize=10...10^3 \n"
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| 367 | << endl;
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| 368 | exit(0);
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| 369 | }
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| 370 |
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| 371 | InitTim(); // Initializing the CPU timer
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| 372 |
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| 373 | int nloop = atoi(arg[1]);
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| 374 | int size = atoi(arg[2]);
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| 375 | cout << " ::::: jtcpitarr - JThreadsC++/PI+Sophya::TArray<T> Test ::::: \n"
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| 376 | << " NLoop= " << nloop << " MtxSize= " << size << endl;
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| 377 |
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| 378 | try {
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| 379 | SophyaInit(); // Sophya Initialization
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| 380 | JTCInitialize iniJTC(narg, arg); // <JThreadC++> Initialize library
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| 381 | JTCThreadHandle t = new PIJTApp(narg, arg); // <JThreadC++>
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| 382 | t->start(); // <JThreadC++> - starting event loop
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| 383 | t->join(); // <JThreadC++> Waiting for thread to end
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| 384 | // PIJTApp * t = new PIJTApp(narg, arg); Si pas thread
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| 385 | // t->Run(); Si pas thread
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| 386 | }
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| 387 | catch (PThrowable const & e) {
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| 388 | cerr << " Catched PThrowable in main Msg= " << e.Msg() << endl;
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| 389 | }
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| 390 | catch (JTCException const & e) { // <JThreadC++>
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| 391 | cerr << " Catched JTCException in main Msg= " << e.getMessage() << endl;
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| 392 | }
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| 393 | catch(...) {
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| 394 | cerr << " Catched ... exception in main " << endl;
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| 395 | }
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| 396 |
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| 397 | PrtTim("End of jtcpitarr");
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| 398 | }
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