1 | #ifndef XASTROPACK_H
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2 | #define XASTROPACK_H
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3 |
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4 | #include "machdefs.h"
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5 | #include <string.h>
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6 | #include <string>
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7 |
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8 | #ifdef __cplusplus
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9 | extern "C" { /* extern "C" */
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10 | #endif
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11 | #include "XAstro/P_.h"
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12 | #include "XAstro/astro.h"
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13 | #ifdef __cplusplus
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14 | } /* extern "C" */
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15 | #endif
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16 |
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17 | enum TypAstroCoord {
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18 | TypCoordUndef = (unsigned long) (0),
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19 |
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20 | // Pour indiquer que les coordonnees sont en (heure=[0,24[,degre=[-90,90])
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21 | TypCoordHD = (unsigned long) (1 << 20),
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22 | // Pour indiquer que les coordonnees sont en (degre=[0,360[,degre=[-90,90])
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23 | TypCoordDD = (unsigned long) (1 << 21),
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24 | // Pour indiquer que les coordonnees sont en (radian=[0,2Pi[,radian=[-Pi/2,Pi/2])
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25 | TypCoordRR = (unsigned long) (1 << 22),
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26 |
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27 | // Coordonnees Equatoriales alpha,delta
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28 | TypCoordEq = (unsigned long) (1 << 0),
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29 | TypCoordEqStd = (unsigned long) ((1 << 0) | (1 << 20)),
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30 | // Coordonnees Galactiques gLong, gLat
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31 | TypCoordGal = (unsigned long) (1 << 1),
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32 | TypCoordGalStd = (unsigned long) ((1 << 1) | (1 << 21)),
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33 | // Coordonnees Horizontales azimuth,altitude
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34 | TypCoordHor = (unsigned long) (1 << 2),
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35 | TypCoordHorStd = (unsigned long) ((1 << 2) | (1 << 21)),
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36 | // Coordonnees Ecliptiques EclLong,EclLat
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37 | TypCoordEcl = (unsigned long) (1 << 3),
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38 | TypCoordEclStd = (unsigned long) ((1 << 3) | (1 << 21))
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39 | };
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40 |
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41 | double TrueJDfrMJD(double mjd);
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42 | double MJDfrTrueJD(double jd);
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43 | double MJDfrDate(double dy,int mn,int yr);
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44 | void DatefrMJD(double mjd,double *dy,int *mn,int *yr);
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45 | double YearfrMJD(double mjd);
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46 | double MJDfrYear(double yr);
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47 | void YDfrMJD(double mjd,double *dy,int *yr);
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48 | int IsLeapYear(int y);
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49 | int DayOrder(double mjd,int *dow);
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50 | int DaysInMonth(double mjd);
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51 | double MJDat0hFrMJD(double mjd);
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52 | double HfrMJD(double mjd);
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53 | double GSTfrUTC(double mjd0,double utc);
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54 | double UTCfrGST(double mjd0,double gst);
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55 | double GST0(double mjd0);
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56 | double LSTfrGST(double gst,double geolng);
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57 | double LSTfrMJD(double mjd,double geolng);
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58 | void Precess(double mjd1,double mjd2,double ra1,double dec1,double *ra2,double *dec2);
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59 | double AirmassfrAlt(double alt);
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60 | double HafrRaTS(double lst,double ra);
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61 | double RafrHaTS(double lst,double ha);
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62 | double HelioCorr(double jd,double ra,double dec);
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63 | void HMSfrHdec(double hd,int *h,int *mn,double *s);
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64 | double HdecfrHMS(int h,int mn,double s);
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65 | string ToStringHMS(int h,int mn,double s);
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66 | string ToStringHdec(double hd);
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67 | void EqtoGal(double mjd,double ra,double dec,double *glng,double *glat);
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68 | void GaltoEq(double mjd,double glng,double glat,double *ra,double *dec);
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69 | void EqHtoHor(double geolat,double ha,double dec,double *az,double *alt);
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70 | void HortoEqH(double geolat,double az,double alt,double *ha,double *dec);
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71 | void EqtoHor(double geolat,double lst,double ra,double dec,double *az,double *alt);
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72 | void HortoEq(double geolat,double lst,double az,double alt,double *ra,double *dec);
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73 | void EqtoEcl(double mjd,double ra,double dec,double *eclng,double *eclat);
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74 | void EcltoEq(double mjd,double eclng,double eclat,double *ra,double *dec);
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75 | void SunPos(double mjd,double *lsn,double *bsn);
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76 | void MoonPos(double mjd,double *lmn,double *bmn);
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77 | void PlanetPos(double mjd,int numplan,double *ecl,double *ecb,double *diamang);
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78 | void JupiterPos(double mjd,double *ecl,double *ecb,double *diamang);
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79 | void SaturnPos(double mjd,double *ecl,double *ecb,double *diamang);
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80 | int CoordConvertToStd(TypAstroCoord typ,double& coord1,double& coord2);
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81 |
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82 | /*!
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83 | \brief Pour remettre la valeur "val" dans la dynamique [0.,range[.
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84 | Si "vmax" different de "range", c'est la borne superieure
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85 | qui peut etre atteinte
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86 | (si elle est depassee, on soustrait "range").
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87 | \verbatim
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88 | r>0 vmax>0
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89 | r=24. vmax=24. -> mets dans [ 0,+24[ borne sup exclue
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90 | r=24. vmax=12. -> mets dans ]-12,+12] borne inf exclue
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91 | \endverbatim
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92 | */
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93 | inline void InRange(double *val,double range)
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94 | {*val-=range*floor(*val/range);}
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95 | inline void InRange(double *val,double range,double vmax)
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96 | {InRange(val,range); if(*val>vmax) *val-=range;}
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97 |
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98 | #endif
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