[1571] | 1 | #include <stdlib.h>
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| 2 | #include <stdio.h>
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| 3 |
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| 4 | #include <exception>
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| 5 | #include <string>
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| 6 |
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[2803] | 7 | #include <iostream>
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[1571] | 8 | #include <vector>
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| 9 | #include <map>
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[1863] | 10 | #include <complex>
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[1571] | 11 |
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[1863] | 12 | // :::::::::::::::::::::::::::::::::::::::::::::::::::::
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| 13 | // Test du support de la STL par le compilateur
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| 14 | // string, vector<T>, map<T>, complex<T> exception
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| 15 | // :::::::::::::::::::::::::::::::::::::::::::::::::::::
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| 16 |
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[1571] | 17 | using namespace std;
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| 18 |
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[1863] | 19 | // --------------------------------------------------------------------
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| 20 | // definition d'une classe de conversion de C (complexes) <> R (reel)
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| 21 | class convCR {
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| 22 | public:
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| 23 | inline convCR() { dv = 0.; dv_im = 0.; }
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[1868] | 24 | inline convCR(convCR const& x) { dv = x.dv; dv_im = x.dv_im; }
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[1863] | 25 | inline convCR(float v) { dv = (double)v; dv_im = 0.; }
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| 26 | inline convCR(double v) { dv = v; dv_im = 0.; }
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[1866] | 27 | inline convCR(complex<float> const & z) { dv = (double)z.real(); dv_im = (double)z.imag(); }
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| 28 | inline convCR(complex<double> const & z) { dv = z.real(); dv_im = z.imag(); }
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[1868] | 29 | inline convCR& operator= (float v) { dv = (double)v; dv_im = 0.; return (*this); }
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| 30 | inline convCR& operator= (double v) { dv = v; dv_im = 0.; return (*this); }
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| 31 | inline convCR& operator= (complex<float> const & z)
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| 32 | { dv = (double)z.real(); dv_im = (double)z.imag(); return (*this); }
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| 33 | inline convCR& operator= (complex<double> const & z)
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| 34 | { dv = z.real(); dv_im = z.imag(); return (*this); }
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[1571] | 35 |
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[1863] | 36 | inline operator float() const { return((float)dv); }
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| 37 | inline operator double() const { return(dv); }
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| 38 | inline operator complex<float>() const { return(complex<float>((float)dv, (float)dv_im)); }
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[1867] | 39 | inline operator complex<double>() const { return(complex<double>(dv, dv_im)); }
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| 40 | inline complex<float> ToComplexF() const { return(complex<float>((float)dv, (float)dv_im)); }
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| 41 | inline complex<double> ToComplexD() const { return(complex<double>(dv, dv_im)); }
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[1863] | 42 | double dv;
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| 43 | double dv_im; /* for holding imaginary part of a complex */
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| 44 | };
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| 45 | // --------------------------------------------------------------------
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| 46 |
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[1571] | 47 | int main(int narg, char *arg[])
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| 48 | {
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[1863] | 49 | cout << "\n :::::::: Test complex / vector et map de la stl :::::::: \n" ;
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[1571] | 50 | int rc = 0;
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| 51 | try {
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| 52 | vector<int> vi;
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| 53 | int k;
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| 54 | for(k=0; k<5; k++) vi.push_back(k*5);
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[1863] | 55 | cout << " -----> vector<int> vi.size() = " << vi.size() << endl;
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[1571] | 56 | for(k=0; k<vi.size(); k++)
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| 57 | cout << "vi[" << k << "]= " << vi[k] << endl;
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| 58 | map<string, int> msi;
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| 59 | msi["Un"] = 1;
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| 60 | msi["Deux"] = 2;
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| 61 | msi["Cinq"] = 5;
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| 62 | msi["Douze"] = 12;
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| 63 | map<string, int>::iterator it;
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[1863] | 64 | cout << " -----> map<string, int> msi.size() = " << msi.size() << endl;
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[1571] | 65 | for(it=msi.begin(); it!=msi.end(); it++)
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| 66 | cout << " S= " << (*it).first << " I=" << (*it).second << endl;
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[1863] | 67 | cout << " ----> complex numbers and convCR : " << endl;
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| 68 | complex<float> z,z1(2,2),z2(3,-1);
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| 69 | complex<double> zd,zd1(2.5,2.5),zd2(3.3,-1);
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| 70 | cout << " complex<float>: z1=" << z1 << " z2=" << z2
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| 71 | << " z1+z2=" << z1+z2 << endl;
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| 72 | cout << " complex<double>: z1=" << zd1 << " z2=" << zd2
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| 73 | << " zd1+zd2=" << zd1+zd2 << endl;
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| 74 | convCR czr, czr1(z1), czr2(zd2), czr3;
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[1866] | 75 | /* if defined(__GNUG__) && (__GNUC__ < 3) */
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[1865] | 76 | complex<float> za;
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| 77 | complex<double> zb,zc;
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[1867] | 78 | za = czr1.ToComplexF(); zb = czr1.ToComplexD(); zc = czr2.ToComplexD();
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[1869] | 79 | cout << " convCR:.ToComplexF/D() za=(zb)=czr1" << za << " zc=" << zc
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[1866] | 80 | << " zb+zc=" << zb+zc << endl ;
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[1874] | 81 | #if defined(__GNUG__)
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| 82 | cout << " GNUG_Version: __GNUC__ = " << __GNUC__ << endl;
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[1865] | 83 | #else
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[1874] | 84 | cout << " convCR: (complex<float>)(czr1(z1))" << (complex<float>)(czr1)
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[1869] | 85 | << " czr2(z2)" << (complex<double>)(czr2)
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[1868] | 86 | << " czr1+czr2= " << (complex<double>)czr2+(complex<double>)czr1 << endl;
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[1865] | 87 | #endif
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[2803] | 88 | complex<double> zdd(2);
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| 89 | // zdd = static_cast< complex<double> >(czr1);
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| 90 | // cout << " zdd = static_cast< complex<double> >(czr1) = " << zdd << endl;
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| 91 | // ----------- Mai 2005 , compilation avec icc
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| 92 | // Suite a l'essai de compilation avec icc (Intel compiler)
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| 93 | // on fait un appel explicite a l'operateur de comversion
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| 94 | // object.operator T()
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| 95 | zdd = czr1.operator complex<double>();
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| 96 | cout << " zdd = czr1.operator complex<double>() : " << zdd << endl;
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| 97 | double xx ;
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| 98 | xx = czr1;
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| 99 |
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[1571] | 100 | }
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| 101 | catch(exception exc){
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| 102 | // Classe de base des exception standard -
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| 103 | // La methode what() n'est pas forcement conforme a la norme
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| 104 | string msg = exc.what();
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| 105 | cerr << " Catched exception : msg= " << msg << endl;
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| 106 | rc = 98;
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| 107 | }
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| 108 | catch (...) {
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| 109 | cerr << " Catched Unknown exception ! " << endl;
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| 110 | rc = 99;
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| 111 | }
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| 112 |
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[1863] | 113 | cout << " ::::::::: Exiting from vecmapstl.cc ::::::::: \n" << endl;
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[1571] | 114 | exit(rc);
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| 115 | }
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| 116 |
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| 117 |
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| 118 |
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| 119 |
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| 120 |
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| 121 |
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| 122 |
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| 123 |
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