| 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 "nbrandom.h"
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| 7 | #include "fftpserver.h"
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| 8 | #include "fftmserver.h"
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| 9 | #include "fftwserver.h"
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| 10 | #include "ntoolsinit.h"
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| 11 | 
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| 12 | #include "timing.h"
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| 13 | 
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| 14 | 
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| 15 | static bool inp_typ_random = false ;  // true -> random input
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| 16 | 
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| 17 | template <class T>
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| 18 | inline T module(complex<T> c) 
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| 19 | {
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| 20 |   return (sqrt(c.real()*c.real()+c.imag()*c.imag()));
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| 21 | }
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| 22 | 
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| 23 | // Max Matrix print elts
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| 24 | static int nprt = 2;
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| 25 | static int nprtfc = 8;
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| 26 | 
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| 27 | template <class T>
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| 28 | void TestFFTPack(T seuil, int num)
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| 29 | {
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| 30 |   int i;
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| 31 |   T fact = 1./num;
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| 32 | 
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| 33 |   TVector< complex<T> > inc(num), bkc(num), difc(num);
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| 34 |   TVector< T > in(num), ino(num), bk(num),dif(num);
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| 35 |   TVector< complex<T> > outc(num);
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| 36 | 
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| 37 |   cout << " DBG/1 outc " << outc.NElts()  << endl; 
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| 38 |   outc.ReSize(32);
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| 39 |   cout << " DBG/2 outc " << outc.NElts()  << endl; 
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| 40 |   outc.ReSize(10);
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| 41 |   cout << " DBG/3 outc " << outc.NElts()  << endl; 
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| 42 |   outc.ReSize(48);
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| 43 |   cout << " DBG/4 outc " << outc.NElts()  << endl; 
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| 44 | 
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| 45 |   if (inp_typ_random) 
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| 46 |     for (int i=0; i<num ; i++){
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| 47 |       ino[i] = in[i] = GauRnd(0., 1.);
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| 48 |       inc[i] = complex<T> (in[i], 0.);
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| 49 |     }
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| 50 |   else for (int i=0; i<num ; i++){
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| 51 |     ino[i] = in[i] = 0.5 + cos(2*M_PI*(double)i/(double)num) 
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| 52 |                          + 2*sin(4*M_PI*(double)i/(double)num);
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| 53 |     inc[i] = complex<T> (in[i], 0.);
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| 54 |   }
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| 55 |   
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| 56 | 
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| 57 |   cout << "Input / L = " << num << endl; 
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| 58 |   in.Print(0,0,nprt,0,nprt);
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| 59 |   cout << endl;
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| 60 | 
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| 61 |   cout << " >>>> Testing FFTPackServer "  << endl;
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| 62 |   FFTPackServer fftp;
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| 63 |   cout << " Testing FFTPackServer "  << endl;
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| 64 |   fftp.fftf(in.NElts(), in.Data());
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| 65 |   //  in /= (num/2.);
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| 66 |   cout << " fftp.fftf(in.NElts(), in.Data()) FORWARD: " << endl; 
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| 67 |   in.Print(0,0,nprtfc,0,nprtfc);
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| 68 |   cout << endl;
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| 69 |   fftp.fftb(in.NElts(), in.Data());
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| 70 |   cout << " fftp.fftb(in.NElts(), in.Data()) BACKWARD: " << endl; 
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| 71 |   in.Print(0,0,nprt,0,nprt);
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| 72 |   cout << endl;
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| 73 |   dif = ino-in;
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| 74 |   cout << " dif , NElts= " << dif.NElts() << endl;
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| 75 |   dif.Print(0,0,nprt,0,nprt);
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| 76 | 
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| 77 |   int ndiff = 0;
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| 78 |   T maxdif=0., vdif;
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| 79 |   for(i=0; i<num; i++) {
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| 80 |     vdif = fabs(dif(i));
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| 81 |     if (vdif > seuil)  ndiff++;
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| 82 |     if (vdif > maxdif) maxdif = vdif;
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| 83 |   }
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| 84 |   cout << " Difference, Seuil= " << seuil << " NDiff= " << ndiff 
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| 85 |        << " MaxDiff= " << maxdif << endl;
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| 86 | 
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| 87 | }
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| 88 | 
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| 89 | template <class T>
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| 90 | void TestFFTS(T seuil, FFTServerInterface & ffts, int num)
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| 91 | {
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| 92 | 
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| 93 |   cout <<" ===>  TestFFTS " << ffts.getInfo() << " ArrSz= " << num << endl;  
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| 94 |   int i;
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| 95 | 
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| 96 |   T fact = 1.;
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| 97 | 
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| 98 |   TVector< complex<T> > inc(num), bkc(num), difc(num);
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| 99 |   TVector< T > in(num), ino(num), bk(num),dif(num);
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| 100 |   TVector< complex<T> > outc(num);
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| 101 | 
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| 102 |   for (int i=0; i<num ; i++){
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| 103 |     ino[i] = in[i] = 0.5 + cos(2*M_PI*(double)i/(double)num) 
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| 104 |                          + 2*sin(4*M_PI*(double)i/(double)num);
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| 105 |     inc[i] = complex<T> (in[i], 0.);
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| 106 |   }
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| 107 |   
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| 108 | 
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| 109 |   cout << " Testing FFTServer " << ffts.getInfo() << endl;
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| 110 | 
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| 111 |   cout << "Input / L = " << num << endl; 
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| 112 |   in.Print(0,0,nprt,0,nprt);
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| 113 |   cout << endl;
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| 114 | 
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| 115 |   int ndiff = 0;
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| 116 | 
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| 117 |   cout << "\n ----  Testing FFT(T, complex<T>) ---- " << endl;
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| 118 |   ffts.FFTForward(in, outc);
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| 119 |   cout << " FourierCoefs , NElts= " << outc.NElts() << endl;
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| 120 |   outc.Print(0,0,nprtfc,0,nprtfc);
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| 121 | 
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| 122 |   ffts.FFTBackward(outc, bk);
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| 123 |   cout << " Backward , NElts= " << bk.NElts() << endl;
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| 124 |   bk.Print(0,0,nprt,0,nprt);
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| 125 |  
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| 126 |   dif = bk*fact - in;
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| 127 |   cout << " Difference , NElts= " << dif.NElts() << endl;
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| 128 |   dif.Print(0,0,nprt,0,nprt);
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| 129 | 
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| 130 |   ndiff = 0;
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| 131 |   T maxdif=0., vdif;
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| 132 |   for(i=0; i<num; i++) {
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| 133 |     vdif = fabs(dif(i));
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| 134 |     if (vdif > seuil)  ndiff++;
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| 135 |     if (vdif > maxdif) maxdif = vdif;
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| 136 |   }
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| 137 |   cout << " Difference, Seuil= " << seuil << " NDiff= " << ndiff 
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| 138 |        << " MaxDiff= " << maxdif << endl;
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| 139 |  
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| 140 |   cout << "\n ----  Testing FFT(complex<T>, complex<T>) ---- " << endl;
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| 141 |   ffts.FFTForward(inc, outc);
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| 142 |   cout << " FourierCoef , NElts= " << outc.NElts() << endl;
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| 143 |   outc.Print(0,0,nprtfc,0,nprtfc);
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| 144 | 
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| 145 |   ffts.FFTBackward(outc, bkc);
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| 146 |   cout << " Backward , NElts= " << bkc.NElts() << endl;
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| 147 |   bkc.Print(0,0,nprt,0,nprt);
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| 148 |  
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| 149 |   difc = bkc*complex<T>(fact,0.) - inc;
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| 150 |   cout << " Difference , NElts= " << difc.NElts() << endl;
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| 151 |   difc.Print(0,0,nprt,0,nprt);
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| 152 | 
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| 153 |   ndiff = 0;
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| 154 |   maxdif=0., vdif;
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| 155 |   for(i=0; i<num; i++) {
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| 156 |     vdif = fabs(module(difc(i)));
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| 157 |     if (vdif > seuil)  ndiff++;
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| 158 |     if (vdif > maxdif) maxdif = vdif;
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| 159 |   }
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| 160 |   cout << " Difference, Seuil= " << seuil << " NDiff= " << ndiff 
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| 161 |        << " MaxDiff= " << maxdif << endl;
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| 162 | }
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| 163 | 
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| 164 | 
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| 165 | 
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| 166 | 
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| 167 | 
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| 168 | int main(int narg, char* arg[])
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| 169 | {
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| 170 | 
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| 171 |   SophyaInit();
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| 172 |   InitTim();   // Initializing the CPU timer
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| 173 | 
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| 174 |   if (narg < 4) {
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| 175 |     cout << "tfft/ args error - \n  Usage tfft size px/Px/Mx/Wx f/d [NPrtFC NPrt] \n" 
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| 176 |          << " p=FFTPackTest  P=FFTPack, M=FFTMayer, W= FFTWServer" 
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| 177 |          << " x=0 -> Random input - f=float, d=double " << endl;
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| 178 |     exit(0);
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| 179 |   }
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| 180 | 
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| 181 |   FFTPackServer fftp;
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| 182 |   FFTMayerServer fftm;
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| 183 | 
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| 184 |   FFTWServer fftw;
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| 185 | 
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| 186 |   inp_typ_random = false;
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| 187 |   if (arg[2][1] == '0')  inp_typ_random = true;
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| 188 | 
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| 189 |   int sz = atoi(arg[1]);
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| 190 |   if (narg > 4) nprtfc = atoi(arg[4]);
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| 191 |   if (narg > 5) nprt = atoi(arg[4]);
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| 192 | 
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| 193 |   if (sz < 2) sz = 2;
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| 194 |   FFTServerInterface * ffts;
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| 195 |   if (*arg[2] == 'M')  ffts = fftm.Clone();
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| 196 |   else if (*arg[2] == 'W')  ffts = fftw.Clone();
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| 197 |   else ffts = fftp.Clone();
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| 198 | 
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| 199 |   float fs = 1.e-4;
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| 200 |   double ds = 1.e-6;
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| 201 | 
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| 202 |   try {
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| 203 |     if (*arg[3] == 'd') {
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| 204 |       cout << "\n ========================================== \n"
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| 205 |            << "    ------ Testing FFTServer for double ----- \n"
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| 206 |            << " ============================================ " << endl;
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| 207 |       if (*arg[2] == 'p') TestFFTPack(ds, sz);
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| 208 |       else TestFFTS(ds, *ffts, sz);
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| 209 |     }
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| 210 |     else {
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| 211 |       cout << "\n ========================================= \n"
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| 212 |            << "    ------ Testing FFTServer for float ----- \n"
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| 213 |            << " =========================================== " << endl;
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| 214 |       if (*arg[2] == 'p') TestFFTPack(fs, sz);
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| 215 |       else TestFFTS(fs, *ffts, sz);
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| 216 |     }
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| 217 |   }
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| 218 |   catch(PThrowable exc ) {
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| 219 |     cerr << "TestFFT-main() , Catched exception: \n" << exc.Msg() << endl;
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| 220 |   }
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| 221 |   catch(std::exception ex) {
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| 222 |     cerr << "TestFFT-main() , Catched exception ! " << (string)(ex.what()) << endl;
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| 223 |   }
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| 224 | 
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| 225 |   /*
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| 226 |   catch(...) {
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| 227 |     cerr << "TestFFT-main() , Catched ... exception ! " << endl;
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| 228 |   }
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| 229 |   */
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| 230 |   PrtTim("End of tfft ");
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| 231 |   delete ffts;
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| 232 | }
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