1 | // Dominique YVON, CEA/DAPNIA/SPP 02/2000
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2 |
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3 | #include <iomanip.h>
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4 | #ifdef __MWERKS__
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5 | #include "macenvvariables.h"
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6 | #else
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7 | # define ERROR_LABEL -32768
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8 | #endif
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9 |
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10 | #include "makebolotimeline.h"
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11 |
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12 |
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13 | MakeBoloTimeline::MakeBoloTimeline(char file[], AbsLightSource& LSrc,
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14 | AbsLobeNoPolar& Lobe, SpectralResponse &Filter, Normalisation Norm)
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15 | :tool(&LSrc,&Lobe,&Filter), NormMethode(Norm)
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16 | {
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17 | #ifndef __MWERKS__
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18 | char* PATHResults=getenv("PATHResults");
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19 | #endif
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20 | char filecur[150];
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21 | // On remplit le ReadMe
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22 | sprintf(filecur,"%s%s.ReadMe", PATHResults,file);
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23 | cout<<filecur<<endl;
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24 | ofstream ReadMe(filecur,ios::out|ios::trunc);
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25 |
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26 | ReadMe<<" Fichier de timeline pour:"<<endl;
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27 | ReadMe<<" La source physique: "<<endl;
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28 | LSrc.print(ReadMe);
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29 | ReadMe<<" Le Lobe : "<<endl;
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30 | Lobe.print(ReadMe);
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31 | ReadMe<<" Le Filtre: "<<endl;
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32 | Filter.Print(ReadMe);
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33 | ReadMe<<endl;
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34 |
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35 | NormRJ=tool.NormKelvinRayleighJeans();
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36 | NormTCMB=tool.NormKelvinCMB();
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37 |
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38 | // ReadMe.setf(ios::scientific);
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39 | ReadMe<< setprecision(3);
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40 | ReadMe<<" Constantes de normalisation"<<endl;
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41 | ReadMe<<" RayleighJeans: "<<NormRJ<< " KelvinRJ/(W/m2)"<<endl;
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42 | ReadMe<<" TempeCMB: "<<NormTCMB<< " Kelvin CMB/(W/m2)"<<endl;
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43 |
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44 | ReadMe<<"Cette carte est en unit: ";
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45 | switch(NormMethode)
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46 | {
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47 | case TempeCMB:
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48 | { ReadMe<< "Kelvin CMB"<<endl;
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49 | break;
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50 | }
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51 | case RayleighJeans:
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52 | { ReadMe<< "Kelvin RayleighJeans"<<endl;
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53 | break;
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54 | }
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55 | default: ReadMe<< "Watt/m2 effectif de mirroir"<<endl;
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56 | }
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57 | ReadMe<<"Fichier ecrit selon le format"<<endl;
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58 | ReadMe<<"Radian\tRadian\tAbove Unit"<<endl;
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59 |
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60 | // J'espere que c'est assez
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61 | ReadMe.close();
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62 |
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63 | sprintf(filecur,"%s%s.dat", PATHResults,file);
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64 |
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65 | pMystr= new ofstream(filecur,ios::out|ios::trunc);
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66 | // pMystr->setf(ios::scientific);
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67 | (*pMystr)<<setprecision(5);
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68 | }
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69 |
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70 | void MakeBoloTimeline::addToStreamArchTOI(double theta,double phi)
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71 | { // Theta en heures, Phi en degres
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72 | if((theta==ERROR_LABEL)||(phi==ERROR_LABEL)) return;
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73 | double thetaRad=theta*15./180*M_PI;
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74 | double phiRad=phi/180.*M_PI;
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75 |
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76 | addToStream(theta,phi);
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77 | }
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78 |
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79 | void MakeBoloTimeline::addToStream(double theta,double phi)
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80 | { // theta et Phi en Radian.
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81 | switch (NormMethode)
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82 | {
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83 | case RayleighJeans:
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84 | { double TempeRJ= NormRJ*tool.compPixel(theta,phi);
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85 | (*pMystr)<<theta<<'\t'<<phi<<'\t'<<TempeRJ<<'\n';
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86 | return;
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87 | }
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88 | case TempeCMB:
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89 | { double tempeCMB= NormTCMB*tool.compPixel(theta,phi);
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90 | (*pMystr)<<theta<<'\t'<<phi<<'\t'<<tempeCMB<<'\n';
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91 | return;
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92 | }
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93 | default:
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94 | { double power=tool.compPixel(theta,phi);
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95 | (*pMystr)<<theta<<'\t'<<phi<<'\t'<<power<<'\n';
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96 | return;
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97 | }
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98 | }
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99 | }
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