1 | #include "sopnamsp.h"
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2 | #include "machdefs.h"
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3 |
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4 | #include <math.h>
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5 | #include <ctype.h>
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6 | #include <iostream>
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7 | #include <typeinfo>
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8 |
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9 | #include "srandgen.h"
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10 | #include "matharr.h"
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11 | #include "fftpserver.h"
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12 | #include "fftmserver.h"
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13 | #include "fftmayer.h"
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14 | #include "fftwserver.h"
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15 | #include "ntoolsinit.h"
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16 |
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17 | #include "timing.h"
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18 |
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19 | /* --------------------------------------------------------- */
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20 | /* ---- Programme de test de calcul de FFT --- */
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21 | /* ---- par les FFTServer de SOPHYA --- */
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22 | /* 2000-2005 - C. Magneville, R. Ansari */
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23 | /* Test FFT-1D real<>complex complex<>complex */
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24 | /* Aide/Liste d'arguments : */
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25 | /* csh> tfft */
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26 | /* Tests de base ( ==> Rc=0 ) */
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27 | /* csh> tfft 15 P */
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28 | /* csh> tfft 16 P */
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29 | /* csh> tfft 15 W */
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30 | /* csh> tfft 16 W */
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31 | /* csh> tfft 1531 P D 0 50 0.0002 */
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32 | /* csh> tfft 1220 P D 0 50 0.0002 */
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33 | /* csh> tfft 1531 W D 0 50 0.0002 */
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34 | /* csh> tfft 1220 W D 0 50 0.0002 */
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35 | /* --------------------------------------------------------- */
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36 |
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37 | static bool inp_typ_random = false ; // true -> random input
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38 |
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39 | template <class T>
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40 | inline T module(complex<T> c)
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41 | {
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42 | return (sqrt(c.real()*c.real()+c.imag()*c.imag()));
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43 | }
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44 |
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45 | // Max Matrix print elts
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46 | static int nprt = 2;
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47 | static int nprtfc = 8;
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48 |
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49 | static int prtlev = 0;
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50 |
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51 | //-------------------------------------------------
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52 | template <class T>
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53 | void TestFFTPack(T seuil, sa_size_t num)
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54 | {
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55 | int i;
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56 | T fact = 1./num;
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57 |
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58 | TVector< complex<T> > inc(num), bkc(num), difc(num);
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59 | TVector< T > in(num), ino(num), bk(num),dif(num);
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60 | TVector< complex<T> > outc(num);
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61 |
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62 | cout << " DBG/1 outc " << outc.NElts() << endl;
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63 | outc.ReSize(32);
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64 | cout << " DBG/2 outc " << outc.NElts() << endl;
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65 | outc.ReSize(10);
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66 | cout << " DBG/3 outc " << outc.NElts() << endl;
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67 | outc.ReSize(48);
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68 | cout << " DBG/4 outc " << outc.NElts() << endl;
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69 |
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70 | if (inp_typ_random)
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71 | for (i=0; i<num ; i++){
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72 | ino[i] = in[i] = GauRnd(0., 1.);
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73 | inc[i] = complex<T> (in[i], 0.);
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74 | }
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75 | else for (i=0; i<num ; i++){
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76 | ino[i] = in[i] = 0.5 + cos(2*M_PI*(double)i/(double)num)
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77 | + 2*sin(4*M_PI*(double)i/(double)num);
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78 | inc[i] = complex<T> (in[i], 0.);
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79 | }
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80 |
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81 |
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82 | cout << "Input / L = " << num << in;
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83 | cout << endl;
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84 |
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85 | cout << " >>>> Testing FFTPackServer " << endl;
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86 | FFTPackServer fftp;
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87 | cout << " Testing FFTPackServer " << endl;
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88 | fftp.fftf(in.NElts(), in.Data());
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89 | // in /= (num/2.);
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90 | cout << " fftp.fftf(in.NElts(), in.Data()) FORWARD: " << in << endl;
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91 | cout << endl;
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92 | fftp.fftb(in.NElts(), in.Data());
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93 | cout << " fftp.fftb(in.NElts(), in.Data()) BACKWARD: " << in <<endl;
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94 | cout << endl;
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95 | dif = ino-in;
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96 | cout << " dif , NElts= " << dif.NElts() << dif << endl;
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97 |
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98 | int ndiff = 0;
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99 | T maxdif=0., vdif;
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100 | for(i=0; i<num; i++) {
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101 | vdif = fabs(dif(i));
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102 | if (vdif > seuil) ndiff++;
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103 | if (vdif > maxdif) maxdif = vdif;
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104 | }
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105 | cout << " Difference, Seuil= " << seuil << " NDiff= " << ndiff
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106 | << " MaxDiff= " << maxdif << endl;
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107 |
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108 | }
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109 |
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110 | //-------------------------------------------------
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111 | template <class T>
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112 | int TestFFTS(T seuil, FFTServerInterface & ffts, sa_size_t num)
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113 | {
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114 |
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115 | cout <<" ===> TestFFTS " << ffts.getInfo() << " ArrSz= " << num << endl;
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116 | int i;
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117 |
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118 | T fact = 1.;
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119 |
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120 | TVector< complex<T> > inc(num), bkc(num), difc(num);
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121 | TVector< T > in(num), ino(num), bk(num),dif(num);
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122 | TVector< complex<T> > outc(num);
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123 |
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124 | if (inp_typ_random) {
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125 | cout << " TestFFTS/Random input vector ... " << endl;
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126 | ino = in = RandomSequence() ; // Nombre aleatoire gaussienne - sigma=1, mean=0
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127 | ComplexMathArray< T > cma;
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128 | TVector< T > im(num);
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129 | im = RandomSequence(RandomSequence::Flat);
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130 | inc = cma.FillFrom(in, im);
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131 | }
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132 | else {
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133 | cout << " TestFFTS/Random input vector = 0.5+cos(2x)+2sin(4x)... " << endl;
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134 | for (i=0; i<num ; i++){
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135 | ino[i] = in[i] = 0.5 + cos(2*M_PI*(double)i/(double)num)
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136 | + 2*sin(4*M_PI*(double)i/(double)num);
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137 | inc[i] = complex<T> (in[i], 0.);
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138 | }
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139 | }
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140 |
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141 | cout << " Testing FFTServer " << ffts.getInfo() << endl;
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142 |
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143 | cout << "Input / Length= " << num << endl;
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144 | if (prtlev > 0)
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145 | cout << in << endl;
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146 |
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147 | int ndiff = 0;
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148 | int rc = 0;
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149 |
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150 | cout << "\n ---- Testing FFT-1D(T, complex<T>) ---- " << endl;
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151 | ffts.FFTForward(in, outc);
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152 | if (prtlev > 0)
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153 | cout << " FourierCoefs: outc= \n" << outc << endl;
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154 |
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155 | ffts.FFTBackward(outc, bk);
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156 | if (prtlev > 0)
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157 | cout << " Backward: bk= \n" << bk << endl;
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158 |
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159 | dif = bk*fact - in;
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160 | if (prtlev > 0)
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161 | cout << " Difference dif= \n" << dif << endl;
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162 |
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163 | ndiff = 0;
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164 | T maxdif=0., vdif;
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165 | for(i=0; i<num; i++) {
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166 | vdif = fabs(dif(i));
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167 | if (vdif > seuil) ndiff++;
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168 | if (vdif > maxdif) maxdif = vdif;
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169 | }
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170 | cout << " Difference, Seuil= " << seuil << " NDiff= " << ndiff
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171 | << " MaxDiff= " << maxdif << endl;
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172 |
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173 | if (ndiff != 0) rc += 4;
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174 |
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175 | cout << "\n ---- Testing FFT-1D(complex<T>, complex<T>) ---- " << endl;
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176 | ffts.FFTForward(inc, outc);
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177 | if (prtlev > 0)
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178 | cout << " FourierCoef , outc= \n" << outc << endl;
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179 |
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180 | ffts.FFTBackward(outc, bkc);
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181 | if (prtlev > 0)
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182 | cout << " Backward , bkc= \n " << bkc << endl;
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183 |
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184 | difc = bkc*complex<T>(fact,0.) - inc;
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185 | if (prtlev > 0)
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186 | cout << " Difference , difc= \n " << difc << endl;
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187 |
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188 | ndiff = 0;
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189 | maxdif=0., vdif;
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190 | for(i=0; i<num; i++) {
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191 | vdif = fabs(module(difc(i)));
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192 | if (vdif > seuil) ndiff++;
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193 | if (vdif > maxdif) maxdif = vdif;
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194 | }
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195 | cout << " Difference, Seuil= " << seuil << " NDiff= " << ndiff
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196 | << " MaxDiff= " << maxdif << endl;
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197 |
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198 | if (ndiff != 0) rc += 8;
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199 | return rc;
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200 | }
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201 |
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202 | inline void MayerFFTForw(r_4* d, int sz) {
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203 | fht_r4(d, sz);
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204 | }
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205 | inline void MayerFFTForw(r_8* d, int sz) {
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206 | fht_r8(d, sz);
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207 | }
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208 |
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209 | //-------------------------------------------------
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210 | template <class T>
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211 | int MultiFFTTest(T t, sa_size_t sz, int nloop, bool fgp)
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212 | {
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213 | cout <<" ===> MultiFFTTest<T=r_" << sizeof(T) << "> NLoop= " << nloop << " ArrSz= " << sz << endl;
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214 | TVector< T > in(sz), incopie(sz);
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215 |
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216 | incopie = in = RandomSequence();
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217 | FFTPackServer fftp(false);
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218 | TVector< complex<T> > outc;
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219 |
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220 | PrtTim("MultiFFT-LoopStart");
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221 |
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222 | if (fgp) {
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223 | cout << " --- Test effectue avec FFTPack " << endl;
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224 | for(int kk=0; kk<nloop; kk++) {
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225 | in = incopie;
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226 | // fftp.FFTForward(in, outc);
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227 | fftp.fftf(sz, in.Data());
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228 | }
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229 | }
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230 | else {
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231 | cout << " --- Test effectue avec FFTMayer " << endl;
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232 | for(int kk=0; kk<nloop; kk++) {
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233 | in = incopie;
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234 | // in += 0.01;
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235 | MayerFFTForw(in.Data(), sz);
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236 | }
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237 | }
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238 | PrtTim("MultiFFT-LoopEnd");
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239 | cout << " ----- End ---- MultiFFTTest<T> ----" << endl;
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240 | return 0;
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241 | }
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242 |
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243 |
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244 |
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245 | //-------------------------------------------------
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246 | //-------------------------------------------------
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247 | //-------------------------------------------------
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248 | int main(int narg, char* arg[])
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249 | {
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250 |
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251 | SophyaInit();
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252 | InitTim(); // Initializing the CPU timer
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253 |
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254 | if (narg < 3) {
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255 | cout << "tfft/ args error - \n Usage tfft size p/P/M/W [f/d/F/D PrtLev=0 MaxNPrt=50 diffthr] \n"
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256 | << " OR tfft size P/M FL/DL/FZ/DZ [NFFT=10] \n"
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257 | << " 1D real/complex-FFT test (FFTServer) \n"
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258 | << " size: input vector length \n "
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259 | << " p=FFTPackTest P=FFTPack, M=FFTMayer, W= FFTWServer \n "
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260 | << " F/f:float, D/d:double F/D:random in_vector (default=D) \n"
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261 | << " FL/DL : perform NFFT on a serie of float[size] or double[size] "
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262 | << " FZ/DZ : perform NFFT on a series of complex<float>[size] or complex<double>[size] "
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263 | << " diffthr : Threshold for diff checks (=10^-6/10^-4 double/float)"
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264 | << endl;
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265 | return(1);
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266 | }
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267 |
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268 | FFTPackServer fftp;
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269 | FFTMayerServer fftm;
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270 |
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271 | FFTWServer fftw;
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272 |
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273 | sa_size_t sz = atol(arg[1]);
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274 | int nprt = 50;
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275 | if (narg > 4) prtlev = atoi(arg[4]);
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276 | if (narg > 5) nprt = atoi(arg[5]);
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277 | BaseArray::SetMaxPrint(nprt, prtlev);
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278 | float fs = 1.e-4;
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279 | double ds = 1.e-6;
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280 | if (narg > 6) fs = ds = atof(arg[6]);
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281 |
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282 | if (sz < 2) sz = 2;
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283 |
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284 | char dtyp = 'D';
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285 | if (narg > 3) dtyp = *arg[3];
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286 | inp_typ_random = true;
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287 | if (islower(dtyp)) inp_typ_random = false;
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288 | dtyp = toupper(dtyp);
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289 |
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290 |
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291 | FFTServerInterface * ffts;
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292 | if (*arg[2] == 'M') ffts = fftm.Clone();
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293 | else if (*arg[2] == 'W') ffts = fftw.Clone();
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294 | else ffts = fftp.Clone();
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295 |
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296 | int nloop = 0;
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297 | bool fgpack = true;
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298 | if (arg[3][1] == 'L') { // MultiFFT test
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299 | nloop = 10;
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300 | if (narg > 4) nloop = atoi(arg[4]);
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301 | if (*arg[2] == 'M') fgpack = false;
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302 | }
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303 |
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304 |
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305 | cout << "\n ============================================= \n"
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306 | << " ------ Testing FFTServer " << typeid(*ffts).name() << "\n"
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307 | << " VecSize= " << sz << " InputType= "
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308 | << ( (inp_typ_random ) ? " random " : " fixed(sin+cos) ") << "\n"
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309 | << " =============================================== " << endl;
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310 |
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311 | int rc = 0;
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312 | try {
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313 | if (dtyp == 'D') {
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314 | cout << " ------ Testing FFTServer for double (r_8)----- " << endl;
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315 | if (*arg[2] == 'p') TestFFTPack(ds, sz);
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316 | else if (nloop > 0) rc = MultiFFTTest(ds, sz, nloop, fgpack);
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317 | else rc = TestFFTS(ds, *ffts, sz);
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318 | }
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319 | else {
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320 | cout << " ------ Testing FFTServer for float (r_4)----- " << endl;
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321 | if (*arg[2] == 'p') TestFFTPack(fs, sz);
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322 | else if (nloop > 0) rc = MultiFFTTest(fs, sz, nloop, fgpack);
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323 | else rc = TestFFTS(fs, *ffts, sz);
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324 | }
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325 | }
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326 | catch(PThrowable& exc ) {
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327 | cerr << "TestFFT-main() , Catched exception: \n" << exc.Msg() << endl;
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328 | rc = 97;
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329 | }
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330 | catch(std::exception ex) {
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331 | cerr << "TestFFT-main() , Catched exception ! " << (string)(ex.what()) << endl;
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332 | rc = 98;
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333 | }
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334 | catch(...) {
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335 | cerr << "TestFFT-main() , Catched ... exception ! " << endl;
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336 | rc = 99;
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337 | }
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338 | PrtTim("End of tfft ");
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339 | delete ffts;
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340 | cout << " =========== End of tfft Rc= " << rc << " =============" << endl;
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341 | }
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