1 | /* ------------------------ Projet BAORadio --------------------
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2 | Programme de convolution avec le lobe d'un cube 3D (angles,freq)
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3 | R. Ansari , C. Magneville - Juin 2010
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4 |
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5 | Usage: applobe Diameter/Four2DRespTableFile In3DPPFName Out3DPPFName
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6 | [TargetBeamDoL] [ResmapleFactor=0.5,0.333...]
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7 | --------------------------------------------------------------- */
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8 |
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9 | #include "sopnamsp.h"
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10 | #include "machdefs.h"
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11 | #include <math.h>
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12 | #include <iostream>
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13 | #include <typeinfo>
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14 |
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15 | #include "array.h"
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16 | #include "histats.h"
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17 |
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18 | #include "swfitsdtable.h"
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19 | #include "fitshdtable.h"
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20 |
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21 | #include "randr48.h"
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22 | #include "vector3d.h"
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23 |
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24 | // #include "xastropack.h" -- Pour faire les conversions de coordonnees celestes
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25 |
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26 | #include "radutil.h"
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27 | #include "lobe.h"
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28 |
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29 | // Pour l'initialisation des modules
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30 | #include "tarrinit.h"
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31 | #include "histinit.h"
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32 | #include "fiosinit.h"
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33 |
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34 | #include "timing.h"
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35 | #include "ctimer.h"
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36 |
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37 | #include "cubedef.h"
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38 |
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39 | //----------------------------------------------------------------------------
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40 | //----------------------------------------------------------------------------
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41 | int main(int narg, char* arg[])
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42 | {
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43 | // Sophya modules initialization
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44 | TArrayInitiator _inia;
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45 | HiStatsInitiator _inih;
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46 | FitsIOServerInitiator _inif;
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47 | //------- AU LIEU DE ------> SophyaInit();
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48 |
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49 | InitTim(); // Initializing the CPU timer
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50 | Timer tm("applobe");
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51 |
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52 | if (narg < 3) {
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53 | cout << "Usage: applobe Diameter/Four2DRespTableFile In3DPPFName Out3DPPFName "
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54 | << " [TargetBeamDoL] [ResmapleFactor=0.5,0.333...] \n" << endl;
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55 | return 1;
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56 | }
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57 |
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58 | // decodage arguments
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59 | bool fgresptbl=true;
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60 | double DIAMETRE=100.;
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61 | string resptblname;
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62 | if (isdigit(*arg[1])) {
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63 | fgresptbl=false;
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64 | DIAMETRE=atof(arg[1]);
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65 | }
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66 | else resptblname=arg[1];
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67 |
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68 | string inname = arg[2];
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69 | string outname = arg[3];
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70 | bool fgcorrbeam=false;
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71 | double tbeamDoL=135;
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72 | if (narg>4) {
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73 | tbeamDoL=atof(arg[4]);
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74 | if (tbeamDoL>1) fgcorrbeam=true;
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75 | }
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76 | bool fgresample=false;
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77 | double fresamp=1.;
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78 | if (narg>5) {
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79 | fresamp=atof(arg[5]);
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80 | if ((fabs(fresamp)>1.e-2)&&(fabs(fresamp-1.)>1.e-2)) fgresample=true;
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81 | }
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82 |
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83 | int rc = 91;
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84 |
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85 | cout << " ====== applobe : Input skycube name= " << inname << " OutName=" << outname;
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86 | bool fginmap=true;
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87 | try {
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88 | TArray<r_4> incube;
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89 | cout << "applobe[1]: reading input 3D map (cube) from file " << inname << endl;
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90 | {
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91 | PInPersist pin(inname);
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92 | pin >> incube;
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93 | }
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94 | incube.Show();
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95 |
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96 | double dxdeg = ThetaSizeDegre/(double)NTheta;
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97 | double dydeg = PhiSizeDegre/(double)NPhi;
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98 | double dx = DegreeToRadian(dxdeg);
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99 | double dy = DegreeToRadian(dydeg);
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100 | double dfreq = FreqSizeMHz/(double)NFreq;
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101 |
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102 | cout << " X,Y map size in degrees , X/Phi=" << PhiSizeDegre << " Y/Theta=" << ThetaSizeDegre
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103 | << " \n dx=" << dxdeg << " dy=" << dydeg << " degres ( dx_rad=" << dx << " dy_rad=" << dy << ")"
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104 | << " FreqSize=" << FreqSizeMHz << " dfreq=dz= " << dfreq << " MHz" << endl;
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105 |
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106 | double mean, sigma;
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107 | MeanSigma(incube, mean, sigma);
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108 | cout << " InCube 3D- : Mean=" << mean << " Sigma=" << sigma << endl;
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109 |
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110 | cout << "applobe[2]: creating Four2DResponse and BeamEffect objects..." << endl;
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111 | H21Conversions conv;
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112 | conv.setFrequency(Freq0MHz);
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113 | double lambda = conv.getLambda();
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114 |
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115 | Four2DResponse fresp(2, DIAMETRE/lambda, DIAMETRE/lambda, lambda);
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116 | Four2DResponse* fresp_p=&fresp;
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117 | Four2DRespTable resptbl;
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118 | if (fgresptbl) {
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119 | cout << "applobe[2.b]: initializing Four2DRespTable from file" << resptblname << endl;
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120 | resptbl.readFromPPF(resptblname);
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121 | fresp_p=&resptbl;
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122 | }
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123 | else cout << " applobe[2.b]: Four2DResponse ( Diameter=" << DIAMETRE << " Lambda= " << lambda
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124 | << " DoL=" << DIAMETRE/lambda << " ) " << endl;
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125 | BeamEffect beam(*fresp_p);
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126 |
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127 | if (fgcorrbeam) {
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128 | double DoL = tbeamDoL;
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129 | double tbeamarcmin = RadianToDegree(1.22/DoL)*60.;
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130 | int typcb = 2;
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131 | // if (fgresptbl) typcb=22;
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132 | Four2DResponse tbeam(typcb, DoL, DoL );
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133 | cout << "applobe[3]: calling Correct2RefLobe() with target beam D/Lambda=" << DoL
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134 | << " -> arcmin " << tbeamarcmin << " TypDishResp=" << typcb << endl;
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135 | beam.Correct2RefLobe(tbeam, incube, dx, dy, Freq0MHz, dfreq);
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136 | }
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137 | else {
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138 | cout << "applobe[3]: calling ApplyLobe3D() ... " << endl;
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139 | beam.ApplyLobe3D(incube, dx, dy, Freq0MHz, dfreq);
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140 | }
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141 | TArray< r_4 > outcube;
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142 | if (fgresample) {
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143 | cout << "applobe[4]: calling ReSample(incube," << fresamp << "," << ",1.) ... " << endl;
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144 | outcube.Share(beam.ReSample(incube, fresamp, fresamp, 1.));
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145 | }
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146 | else outcube.Share(incube);
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147 |
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148 | outcube.Show();
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149 | MeanSigma(outcube, mean, sigma);
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150 | cout << " OutCube 3D- : Mean=" << mean << " Sigma=" << sigma << endl;
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151 |
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152 | // On sauve le cube de sortie
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153 | {
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154 | cout << " applobe[5]: Saving output cube to -> " << outname << endl;
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155 | POutPersist poc(outname);
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156 | poc << outcube;
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157 | }
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158 |
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159 | rc = 0;
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160 | }
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161 | catch (PThrowable& exc) {
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162 | cerr << " applobe.cc catched SOPHYA Exception " << exc.Msg() << endl;
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163 | rc = 77;
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164 | }
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165 | catch (std::exception& sex) {
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166 | cerr << "\n applobe.cc std::exception :"
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167 | << (string)typeid(sex).name() << "\n msg= "
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168 | << sex.what() << endl;
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169 | }
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170 | catch (...) {
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171 | cerr << " applobe.cc catched unknown (...) exception " << endl;
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172 | rc = 78;
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173 | }
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174 |
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175 | cout << ">>>> applobe[9] ------- FIN ----------- Rc=" << rc << endl;
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176 | return rc;
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177 | }
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178 |
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179 |
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