| [786] | 1 | #include "machdefs.h"
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 | 2 | 
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 | 3 | #include <math.h>
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 | 4 | #include <iostream.h>
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 | 5 | 
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 | 6 | #include "tarrinit.h"
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| [812] | 7 | #include "array.h"
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| [786] | 8 | #include "timing.h"
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 | 9 | 
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| [812] | 10 | static void tstarr(bool tio);
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 | 11 | static void tstioarr(TArray<int_4> & ia, TArray<int_4> & ib, TArray<int_4> & ic);
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 | 12 | static void tstmtx(int n);
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 | 13 | void _ZZ_TestTMatrixRC_YY_(TMatrix<r_8> & m);
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| [786] | 14 | 
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 | 15 | int main(int narg, char* arg[])
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 | 16 | {
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 | 17 | 
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 | 18 |   SophyaInit();
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 | 19 |   InitTim();   // Initializing the CPU timer
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 | 20 | 
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 | 21 | 
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| [812] | 22 |   if (narg < 2) {
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| [1100] | 23 |     cout << " arrt - TArray<T> Test - Usage arrt a/w/m/z [size=5] [prtlev=1] [nprt=50]\n" 
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| [812] | 24 |          << " a: Simple Array Test  w: a+ PPersist Test (FIO_TArray<T>) \n" 
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 | 25 |          << " m: Matrix and Vector Test \n" 
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 | 26 |          << " z: Appel_ZZ_TestTMatrixRC_YY_ " << endl;
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 | 27 |     exit(0);
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 | 28 |   }
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 | 29 | 
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 | 30 |   int opt = *(arg[1]);
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| [786] | 31 |   int n = 5;
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| [812] | 32 |   if (narg > 2) n = atoi(arg[2]);
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 | 33 |   uint_4 prtlev = 1;
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 | 34 |   uint_4 nprt = 50;
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 | 35 |   if (narg > 3) prtlev = atoi(arg[3]);
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 | 36 |   if (narg > 4) nprt = atoi(arg[4]);
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| [786] | 37 | 
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| [812] | 38 |   BaseArray::SetMaxPrint(nprt, prtlev);
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| [786] | 39 | 
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 | 40 |   try {
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| [812] | 41 |     if ((opt == 'w') || (opt == 'a')) tstarr((opt=='w'));
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 | 42 |     else if (opt == 'z') {
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 | 43 |       if (n<5) n = 5;
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 | 44 |       TMatrix<r_8> tza(n,n+3);
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| [1102] | 45 |       tza = RegularSequence(2.,1.5);
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| [812] | 46 |       _ZZ_TestTMatrixRC_YY_(tza);
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 | 47 |       TMatrix<r_8> tza2 = tza(Range(1,3), Range(2,5));
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 | 48 |       _ZZ_TestTMatrixRC_YY_(tza2);
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 | 49 |     }
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 | 50 |     else tstmtx(n);
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 | 51 |   }
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 | 52 |   catch (PThrowable exc) {
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 | 53 |     cerr << " catched Exception " << exc.Msg() << endl;
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 | 54 |   }  
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 | 55 |   catch (...) {
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 | 56 |     cerr << " catched unknown (...) exception " << endl; 
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 | 57 |   }  
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 | 58 |   PrtTim("--- End of arrt ---");
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 | 59 |   cout << " ---------------  END of ArrayTest programme -------------- " << endl;
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 | 60 | }
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 | 61 | 
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 | 62 | 
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 | 63 | void tstmtx(int n)
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 | 64 | {
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 | 65 |   TMatrix<r_4> ma(4,7);
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| [1102] | 66 |   ma = RegularSequence(10., 2.);
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| [812] | 67 |   cout << "\n ::::::  Testing TMatrix - TVector ::::::  " << endl;  
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 | 68 |   TMatrix<r_4> sma1 = ma(Range(1,2), Range(2,4));
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 | 69 |   cout << " ----- Matrix ma = \n " << ma << endl;
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 | 70 |   sma1 = 3.14;
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 | 71 |   cout << " ----- Matrix ma (Avec sma1=ma(Range(1,2), Range(2,3))=3.14) = \n " << ma << endl;
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 | 72 |   TMatrix<r_4> mb(2,3);
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 | 73 |   mb = 50.;
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 | 74 |   TMatrix<r_4> mc = mb+sma1;
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 | 75 |   cout << " ----- Matrix mc = mb(=50.)+sma1(=3.14) = " << mc << endl;
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 | 76 |   TMatrix<r_4> md = (float)100+mc;
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 | 77 |   cout << " ----- Matrix md=100.+mc = " << md << endl;
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 | 78 |   cout << " ----- Matrix md-50 = " << md-(float)50. << endl;
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 | 79 | 
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 | 80 |   TMatrix<int_4> ima(3,10);
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| [1102] | 81 |   ima = RegularSequence(0.01,1.);
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 | 82 |   cout << " ----- Matrix ima(3,10) = RegularSequence(0.01,1.) = " << ima << endl;
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| [812] | 83 |   cout << " ----- Matrix  ima.Column(3) = \n" << ima.Column(3) << endl;
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 | 84 |   TVector<int_4> vcol = ima.Column(7);
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 | 85 |   cout << " ----- Vector  vcol=ima.Column(7) = \n" << vcol << endl;
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 | 86 |   cout << " ----- Matrix  ima.Row(0) = \n" << ima.Row(0) << endl;
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| [820] | 87 |   TVector<int_4> vlig;
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 | 88 |   vlig = ima.Row(1);
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| [812] | 89 |   cout << " ----- Vector  vlig=ima.Row(1) = \n" << vlig << endl;
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 | 90 | 
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 | 91 |   TMatrix<int_4> imb(3,10);
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| [1102] | 92 |   imb = RegularSequence(100.01,10.);
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 | 93 |   cout << " ----- Matrix imb(3,10) = RegularSequence(100.01,10.) = " << imb << endl;
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| [812] | 94 |   TMatrix<int_4> imc = ima+imb;
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 | 95 |   cout << " ----- Matrix imc=ima+imb = " << imc << endl;
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 | 96 |   TMatrix<int_4> imd(3,10);
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 | 97 |   TMatrix<int_4> imd2(3,10);
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 | 98 |   imd += 25;
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 | 99 |   imd *= 2;
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 | 100 |   imd2 = 2;
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 | 101 |   imd.MulElt(imd2);
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 | 102 |   cout << " ----- Matrix imd (? = 100) " << imd << endl;
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 | 103 |   imb -= imd;
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 | 104 |   imc -= imd;
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 | 105 |   cout << " ----- Matrix ((imc-=imd)-(imb-=imd))-ima (== 0 ?) " 
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 | 106 |        << (imc-imb)-ima << endl;
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 | 107 |   TVector<r_4> va(16, BaseArray::RowVector);
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| [1102] | 108 |   va = RegularSequence(0.,1.);
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 | 109 |   cout << " ----- Vector va = RegularSequence(0.,1.) = " << va << endl;
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| [812] | 110 |   va(Range(2,0,6,2)) *= 10.;
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 | 111 |   cout << " ----- Vector va apres va(Range(2,0,6,2)) *= 10. " << va << endl;
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 | 112 |   va(Range(0,5)) += 100.;
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 | 113 |   cout << " ----- Vector va apres va(Range(0,6)) += 100. " << va << endl;
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 | 114 | 
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| [1107] | 115 |   TMatrix<r_4> esm(3,5);
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| [1114] | 116 |   EnumeratedSequence ess;
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 | 117 |               ess ,
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| [1107] | 118 |          11 , 12 , 13, 14, 15,  
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| [1114] | 119 |          21 , 22 , 23, 24, 25,
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 | 120 |          31 , 32 , 33, 34, 35  ;  
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 | 121 |   esm = ess;
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| [1107] | 122 |   cout << "\n TMatrix<r_4> esm(3,5) = EnumeratedSequence(), 11 , 12 , 13, 14, 15 ... " 
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 | 123 |        << esm << endl;
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| [1114] | 124 |   r_4 emin,emax,esum,eprod,esumx2;
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 | 125 |   esm.MinMax(emin, emax);  
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 | 126 |   esum = esm.Sum();
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 | 127 |   eprod = esm.Product();
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 | 128 |   esumx2 = esm.SumX2();
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| [1107] | 129 | 
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| [1114] | 130 |   cout << " Min= " << emin << "  Max= " << emax 
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 | 131 |        << " Sum= " << esum << " Prod=" << eprod << " SumX2=" << esumx2 << endl;
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 | 132 | 
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| [812] | 133 |   cout << "\n :::::: Testing Matrix operations :::::: " << endl;
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 | 134 |   TMatrix<r_4> ra(2,2), ira(2,2);
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| [1102] | 135 |   /*  ra(0,0) = 2.;   ra(0,1) = 1.;
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| [812] | 136 |   ra(1,0) = 4.;   ra(1,1) = 3.;
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| [1102] | 137 |   */
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| [812] | 138 |   ira(0,0) = 1.5;   ira(0,1) = -0.5;
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 | 139 |   ira(1,0) = -2.;    ira(1,1) = 1.;
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| [1102] | 140 |   EnumeratedSequence es;
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 | 141 |   es, 2 , 1 , 4 , 3 ;
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 | 142 |   ra = es ;
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 | 143 |   
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| [812] | 144 |   cout << " ----- Matrix ra = \n " << ra << endl; 
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 | 145 |   cout << " ----- Matrix ira = \n " << ira << endl; 
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 | 146 |   cout << " ----- Matrix ira*ra = (= Identity ?) " << ira*ra << endl; 
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 | 147 | 
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 | 148 | 
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 | 149 |   cout << "\n ::::::: Testing Matrix Inversion ::::::: " << endl;
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 | 150 |   SimpleMatrixOperation<r_4> smr;
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 | 151 |   TMatrix<r_4> cira = smr.Inverse(ra);
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 | 152 |   cout << " ----- Matrix Inverse(ra) =  " << cira << endl;
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 | 153 |   cout << " ----- ira-Inverse(ra) = " << ira-cira << endl;
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 | 154 | 
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 | 155 |   Matrix a(n,n);
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 | 156 | 
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 | 157 |     
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| [857] | 158 |   //  for(int i=0; i<n; i++)
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 | 159 |   //    for(int j=0; j<n; j++)  a(j,i) = GauRnd(0., 1.);
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| [1102] | 160 |   a = RandomSequence(RandomSequence::Gaussian, 0., 2.5);
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 | 161 |   cout << " ----- Matrix a=RandomSequence(RandomSequence::Gaussian, 0., 2.5) = \n " << a << endl;
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| [812] | 162 |   Vector x(n);
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| [1102] | 163 |   x = RegularSequence(1.,3.);
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| [812] | 164 |   Vector b = a*x;
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 | 165 |   cout << " ----- Vector x = \n " << x << endl;
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 | 166 |   cout << " ----- Vector b = a*x = \n " << b << endl;
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 | 167 |   SimpleMatrixOperation<r_8> smo;
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 | 168 |   Matrix inva = smo.Inverse(a);
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 | 169 |   cout << " ----- Matrix Inverse(a) = \n " << inva << endl;
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 | 170 |   cout << " ----- Matrix a*Inverse(a) = \n " << inva*a << endl;
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 | 171 |   cout << " ----- Matrix Inverse(a)*b (=Inv(a)*a*x) = \n " << inva*b << endl;
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 | 172 |   cout << " ----- Matrix x-Inverse(a)*b = (=0 ?)\n " << x-inva*b << endl;
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 | 173 | }
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 | 174 | 
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 | 175 | void tstarr(bool tio)
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 | 176 | {
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| [786] | 177 |   cout << "\n -----> Testing TArray <---- " << endl;  
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| [789] | 178 |   // We create a integer array SizeX=7, SizeY=5
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| [786] | 179 |   TArray<int_4> ia(7,5); 
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| [789] | 180 |   // We fill it with a sequence of numbers starting at 10., with step = 2.
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| [1102] | 181 |   ia = RegularSequence(10., 2.);
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| [812] | 182 |   cout << " ----- Array IA = \n " << ia << endl;
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 | 183 |   // sub array extraction, Range(2,4) : starting position=2 , End=4
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 | 184 |   TArray<int_4> ic = ia(Range(2,3),Range(1,3),Range(0));
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| [1100] | 185 |   cout << " ----- Array IC IA(Range(2,3),Range(1,3)) = \n " << ic << endl;
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| [789] | 186 |   // we set the sub-array to zero, this should reflect in the original array
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 | 187 |   // sub-arrays share their data with parent array
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| [786] | 188 |   ic = 0;
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| [812] | 189 |   cout << " ----- Array IC Apres (=0) = \n " << ic << endl;
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 | 190 |   cout << " ----- Array IA Apres IC=0 = \n " << ia << endl;
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| [786] | 191 | 
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 | 192 |   cout << "  :::: 3 Dim arrays ::::: " << endl;
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 | 193 |   TArray<int_4>::SetMaxPrint(1000);
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| [789] | 194 |   // Creating 3-dim array (X=8 x Y=7 x Z=2) , filling it with 5
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| [786] | 195 |   TArray<int_4> ib(8,7,2);
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 | 196 |   ib = 5;
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| [812] | 197 |   cout << " ----- Array IB = \n " << ib << endl;
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| [789] | 198 |   // Sub array extraction  X from 1 , size 4 - Y from 2 , size 3 , in Z default, from 0, size 1
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 | 199 |   // we multiply this sub-array elements by 3
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| [812] | 200 |   ib(Range(1,4),Range(2,4), Range(0)) *= 3;
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 | 201 |   cout << " -- Array IB , Apres ib(Range(1,4),Range(2,4))*=3 : " << endl;
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| [786] | 202 |   cout << ib;
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| [812] | 203 |   cout << " -- Array ib(Range(1,4),Range(2,4)) =  : " 
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 | 204 |        << ib(Range(1,4),Range(2,4), Range(0)) << endl;
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| [789] | 205 | 
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 | 206 |   // Creating a double array X=5 x Y=2
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 | 207 |   TArray<r_4> fa(5,2);
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 | 208 |   // fill it up with a sequence of 0. to 1.
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| [1102] | 209 |   fa = RegularSequence(0.,1./(5*2));
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| [789] | 210 |   cout << " ------ TArray<r_4> fa(5,2) = \n" << fa << endl;
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 | 211 |   // Create a new array from the original array , multiplying it by 2*Pi
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 | 212 |   TArray<r_4> fa2 = fa*(float)(2.*M_PI); 
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 | 213 |   cout << " ------ TArray<r_4> fa2=fa*2*Pi = \n" << fa2 << endl;
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 | 214 |   // Compute sin(fa2) cos(fa2)
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| [1229] | 215 |   cout << " ------ sin(fa2=fa*2*Pi) = \n" << Sin(fa2) << endl;
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 | 216 |   cout << " ------ cos(fa2=fa*2*Pi) = \n" << Cos(fa2) << endl;
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| [807] | 217 | 
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| [1519] | 218 |   //  Test des fonctions sur complexes 
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 | 219 |   TVector<r_4> p_real(10, BaseArray::RowVector), p_imag(10, BaseArray::RowVector);
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 | 220 |   p_real = RegularSequence(0., 0.5);
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 | 221 |   p_imag = RegularSequence(0., 0.25);
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 | 222 |   TVector< complex<r_4> > zvec = ComplexArray(p_real, p_imag);
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 | 223 |   cout << " ------ zvec = ComplexArray(p_real, p_imag) -------- "  << endl;
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 | 224 |   cout << " :: p_real= " << p_real; 
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 | 225 |   cout << " :: p_imag= " << p_imag;
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 | 226 |   cout << " :: zvec= " << zvec;
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 | 227 |   cout << " :: real(zvec) = " << real(zvec) ;
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 | 228 |   cout << " :::: imag(zvec) = " << imag(zvec) ;
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 | 229 |   cout << " :::: module2(zvec) = " << module2(zvec) ;
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 | 230 |   cout << " :::: module(zvec) = " << module(zvec) ;
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 | 231 |   cout << " :::: phase(zvec) = " << phase(zvec) ;
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 | 232 |   cout << " ----------------------------------------------------- " << endl;
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 | 233 | 
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| [807] | 234 |   if (tio) tstioarr(ia, ib, ic);
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| [786] | 235 | }
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| [807] | 236 | 
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 | 237 | void tstioarr(TArray<int_4> & ia, TArray<int_4> & ib, TArray<int_4> & ic)
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 | 238 | {
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 | 239 |   cout << " ------ tstioarr(TArray<int_4> & ia, TArray<int_4> & ib, TArray<int_4> & ic) ---- " << endl;
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 | 240 |   {
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 | 241 |   cout << " >>>>>> Writing in  arrt.ppf <<<<<<< " << endl;
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 | 242 |   POutPersist pos("arrt.ppf");
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 | 243 |   // We write  the three arrays in the stream 
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 | 244 |   pos << ia << ib << ic;
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 | 245 |   cout << " >>>>>> Writing in  arrtn.ppf with names <<<<<<<" << endl;
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 | 246 |   POutPersist posn("arrtn.ppf");
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 | 247 |   string tag = "ArrIA";
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 | 248 |   posn.PutObject(ia, tag);
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 | 249 |   tag = "ArrIB";
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 | 250 |   posn.PutObject(ib, tag);
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 | 251 |   tag = "ArrIC";
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 | 252 |   posn.PutObject(ic, tag);
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 | 253 |   }
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 | 254 | 
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 | 255 |   {
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 | 256 |   cout << " >>>>>>> Reading from  arrt.ppf  <<<<< " << endl;
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 | 257 |   PInPersist pis("arrt.ppf");
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 | 258 |   TArray<int_4> iaa, ibb, icc; 
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 | 259 |   // We read the three arrays from the stream 
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 | 260 |   pis >> iaa >> ibb >> icc;
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| [812] | 261 |   cout << " ----- Array IAA = \n " << iaa << endl;
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 | 262 |   cout << " ----- Array IBB = \n " << ibb << endl;
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 | 263 |   cout << " ----- Array ICC = \n " << icc << endl;
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| [807] | 264 |   icc = 12;
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| [812] | 265 |   cout << " ----- Array ICC (=12) = \n " << icc << endl;
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 | 266 |   cout << " ----- Array IAA (ICC=12) = \n " << iaa << endl;
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| [807] | 267 |   }
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 | 268 | 
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 | 269 |   {
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 | 270 |   cout << " >>>>>>> Reading from  arrtn.ppf  <<<<< " << endl;
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 | 271 |   PInPersist pis("arrtn.ppf");
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 | 272 |   TArray<int_4> iaa, ibb, icc; 
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 | 273 |   // We read the three arrays from the stream 
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 | 274 |   string tag = "ArrIC";
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 | 275 |   pis.GetObject(icc, tag);
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 | 276 |   tag = "ArrIB";
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 | 277 |   pis.GetObject(ibb, tag);
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 | 278 |   tag = "ArrIA";
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 | 279 |   pis.GetObject(iaa, tag);
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 | 280 | 
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| [812] | 281 |   cout << " ----- Array IAAA = \n " << iaa << endl;
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 | 282 |   cout << " ----- Array IBBB = \n " << ibb << endl;
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 | 283 |   cout << " ----- Array ICCC = \n " << icc << endl;
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| [807] | 284 |   icc = 68;
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| [812] | 285 |   cout << " ----- Array ICCC (=12) = \n " << icc << endl;
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 | 286 |   cout << " ----- Array IAAA (ICC=12) = \n " << iaa << endl;
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| [807] | 287 |   }
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 | 288 | 
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 | 289 | 
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 | 290 | }
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