1 | #ifndef MARS_MPointing
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2 | #define MARS_MPointing
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3 |
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4 | #ifndef ROOT_TArrayD
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5 | #include <TArrayD.h>
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6 | #endif
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7 |
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8 | #ifndef ROOT_TVector2
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9 | #include <TVector2.h>
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10 | #endif
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11 |
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12 | #ifndef ROOT_TVector3
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13 | #include <TVector3.h>
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14 | #endif
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15 |
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16 | #ifndef MARS_MParContainer
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17 | #include "MParContainer.h"
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18 | #endif
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19 |
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20 | // ---------------------------------------------------
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21 |
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22 | #define XY TVector2
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23 |
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24 | inline TVector2 Div(const TVector2 &v1, const TVector2 &v2)
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25 | {
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26 | return TVector2(v1.X()/v2.X(), v1.Y()/v2.Y());
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27 | }
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28 | inline TVector2 Mul(const TVector2 &v1, const TVector2 &v2)
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29 | {
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30 | return TVector2(v1.X()*v2.X(), v1.Y()*v2.Y());
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31 | }
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32 |
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33 | inline TVector2 operator-(const TVector2 &v) { return TVector2(-v.X(), -v.Y()); }
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34 |
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35 | class AltAz : public XY
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36 | {
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37 | public:
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38 | AltAz(double alt=0, double az=0) : XY(alt, az) {}
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39 |
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40 | double Alt() const { return fX; }
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41 | double Az() const { return fY; }
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42 |
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43 | void operator*=(double c) { fX*=c; fY*=c; }
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44 | void operator/=(double c) { fX*=c; fY*=c; }
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45 |
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46 | void Alt(double d) { fX=d; }
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47 | void Az(double d) { fY=d; }
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48 | void operator*=(const XY &c) { fX*=c.X(); fY*=c.Y(); }
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49 | void operator/=(const XY &c) { fX/=c.X(); fY/=c.Y(); }
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50 | void operator-=(const AltAz &c) { fX-=c.fX; fY-=c.fY; }
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51 | void operator+=(const AltAz &c) { fX+=c.fX; fY+=c.fY; }
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52 |
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53 | AltAz operator/(double c) const { return AltAz(fX/c, fY/c); }
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54 | AltAz operator*(double c) const { return AltAz(fX*c, fY*c); }
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55 | AltAz operator*(const XY &c) const { return AltAz(fX*c.X(), fY*c.Y()); }
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56 | AltAz operator/(const XY &c) const { return AltAz(fX/c.X(), fY/c.Y()); }
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57 | AltAz operator+(const AltAz &c) const { return AltAz(fX+c.fX, fY+c.fY); }
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58 | AltAz operator-(const AltAz &c) const { return AltAz(fX-c.fX, fY-c.fY); }
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59 | AltAz operator-() const { return AltAz(-fX, -fY); }
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60 |
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61 | ClassDef(AltAz, 0)
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62 | };
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63 |
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64 | class ZdAz : public XY
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65 | {
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66 | public:
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67 | ZdAz(double zd=0, double az=0) : XY(zd, az) {}
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68 | ZdAz(const ZdAz &c) : XY(c) {}
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69 |
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70 | void operator*=(double c) { fX*=c; fY*=c; }
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71 | void operator/=(double c) { fX*=c; fY*=c; }
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72 |
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73 | double Zd() const { return fX; }
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74 | double Az() const { return fY; }
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75 |
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76 | void Zd(double d) { fX=d; }
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77 | void Az(double d) { fY=d; }
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78 | void operator*=(const XY &c) { fX*=c.X(); fY*=c.Y(); }
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79 | void operator/=(const XY &c) { fX/=c.X(); fY/=c.Y(); }
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80 | void operator-=(const ZdAz &c) { fX-=c.fX; fY-=c.fY; }
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81 | void operator+=(const ZdAz &c) { fX+=c.fX; fY+=c.fY; }
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82 |
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83 | ZdAz operator/(double c) const { return ZdAz(fX/c, fY/c); }
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84 | ZdAz operator*(double c) const { return ZdAz(fX*c, fY*c); }
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85 | ZdAz operator*(const XY &c) const { return ZdAz(fX*c.X(), fY*c.Y()); }
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86 | ZdAz operator/(const XY &c) const { return ZdAz(fX/c.X(), fY/c.Y()); }
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87 | ZdAz operator+(const ZdAz &c) const { return ZdAz(fX+c.fX, fY+c.fY); }
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88 | ZdAz operator-(const ZdAz &c) const { return ZdAz(fX-c.fX, fY-c.fY); }
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89 | ZdAz operator-() const { return ZdAz(-fX, -fY); }
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90 |
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91 | // MSlewing only?!?
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92 | double Ratio() const { return fX/fY; }
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93 | void Round();
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94 | void Abs();
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95 |
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96 | ClassDef(ZdAz, 0)
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97 | };
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98 |
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99 | class RaDec : public XY
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100 | {
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101 | public:
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102 | RaDec(double ra=0, double dec=0) : XY(ra, dec) {}
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103 |
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104 | double Ra() const { return fX; }
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105 | double Dec() const { return fY; }
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106 |
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107 | void operator*=(double c) { fX*=c; fY*=c; }
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108 | void operator/=(double c) { fX*=c; fY*=c; }
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109 |
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110 | void Ra(double x) { fX = x; }
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111 | void Dec(double y) { fY = y; }
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112 |
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113 | RaDec operator/(double c) const { return RaDec(fX/c, fY/c); }
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114 | RaDec operator*(double c) const { return RaDec(fX*c, fY*c); }
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115 | RaDec operator*(const XY &c) const { return RaDec(fX*c.X(), fY*c.Y()); }
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116 | RaDec operator+(const RaDec &c) const { return RaDec(fX+c.fX, fY+c.fY); }
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117 | RaDec operator-(const RaDec &c) const { return RaDec(fX-c.fX, fY-c.fY); }
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118 | RaDec operator-() const { return RaDec(-fX, -fY); }
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119 |
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120 | ClassDef(RaDec, 0)
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121 | };
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122 |
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123 | // ---------------------------------------------------
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124 |
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125 | class TMinuit;
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126 |
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127 | class MPointing : public MParContainer
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128 | {
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129 | private:
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130 | enum {
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131 | kIA, // [rad] Index Error in Elevation
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132 | kIE, // [rad] Index Error in Azimuth
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133 | kFLOP, // [rad] Vertical Sag
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134 | kAN, // [rad] Az-El Nonperpendicularity
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135 | kAW, // [rad] Left-Right Collimation Error
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136 | kNPAE, // [rad] Azimuth Axis Misalignment (N-S)
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137 | kCA, // [rad] Azimuth Axis Misalignment (E-W)
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138 | kTF, // [rad] Tube fluxture (sin)
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139 | kTX, // [rad] Tube fluxture (tan)
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140 | kECES, // [rad] Nasmyth rotator displacement, horizontal
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141 | kACES, // [rad] Nasmyth rotator displacement, vertical
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142 | kECEC, // [rad] Alt/Az Coude Displacement (N-S)
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143 | kACEC, // [rad] Alt/Az Coude Displacement (E-W)
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144 | kNRX, // [rad] Elevation Centering Error (sin)
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145 | kNRY, // [rad] Azimuth Centering Error (sin)
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146 | kCRX, // [rad] Elevation Centering Error (cos)
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147 | kCRY, // [rad] Azimuth Centering Error (cos)
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148 | kMAGIC1, // [rad] Magic Term (what is it?)
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149 | kMAGIC2, // [rad] Magic Term (what is it?)
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150 | kPX, // [rad] Starguider calibration fixed offset x
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151 | kPY, // [rad] Starguider calibration fixed offset y
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152 | kDX, // [rad] Starguider calibration additional offset dx
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153 | kDY, // [rad] Starguider calibration additional offset dy
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154 | kNumPar // Number of elements
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155 | };
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156 |
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157 |
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158 | Double_t fIe ; // [rad] Index Error in Elevation
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159 | Double_t fIa ; // [rad] Index Error in Azimuth
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160 | Double_t fFlop ; // [rad] Vertical Sag
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161 | Double_t fNpae ; // [rad] Az-El Nonperpendicularity
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162 | Double_t fCa ; // [rad] Left-Right Collimation Error
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163 | Double_t fAn ; // [rad] Azimuth Axis Misalignment (N-S)
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164 | Double_t fAw ; // [rad] Azimuth Axis Misalignment (E-W)
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165 | Double_t fTf ; // [rad] Tube fluxture (sin)
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166 | Double_t fTx ; // [rad] Tube fluxture (tan)
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167 | Double_t fNrx ; // [rad] Nasmyth rotator displacement, horizontal
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168 | Double_t fNry ; // [rad] Nasmyth rotator displacement, vertical
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169 | Double_t fCrx ; // [rad] Alt/Az Coude Displacement (N-S)
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170 | Double_t fCry ; // [rad] Alt/Az Coude Displacement (E-W)
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171 | Double_t fEces ; // [rad] Elevation Centering Error (sin)
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172 | Double_t fAces ; // [rad] Azimuth Centering Error (sin)
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173 | Double_t fEcec ; // [rad] Elevation Centering Error (cos)
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174 | Double_t fAcec ; // [rad] Azimuth Centering Error (cos)
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175 | Double_t fMagic1; // [rad] Magic Term (what is it?)
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176 | Double_t fMagic2; // [rad] Magic Term (what is it?)
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177 |
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178 | Double_t fPx; // [rad] Starguider calibration fixed offset x
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179 | Double_t fPy; // [rad] Starguider calibration fixed offset y
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180 | Double_t fDx; // [rad] Starguider calibration additional offset dx
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181 | Double_t fDy; // [rad] Starguider calibration additional offset dy
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182 |
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183 | Double_t **fCoeff; //!
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184 | TString *fNames; //!
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185 | TString *fDescr; //!
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186 |
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187 | TArrayD fError;
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188 |
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189 | void Init(const char *name=0, const char *title=0);
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190 |
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191 | void Clear(Option_t *o="")
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192 | {
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193 | for (int i=0; i<kNumPar; i++)
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194 | {
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195 | *fCoeff[i] = 0;
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196 | fError[i] = -1;
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197 | }
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198 | }
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199 |
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200 | static Double_t Sign(Double_t val, Double_t alt);
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201 | AltAz CalcAnAw(const AltAz &p, Int_t sign) const;
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202 |
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203 | public:
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204 | MPointing() : fError(kNumPar) { Init(); Clear(); }
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205 | MPointing(const char *name) : fError(kNumPar) { Init(); Clear(); Load(name); }
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206 | virtual ~MPointing() { delete [] fNames; delete [] fCoeff; delete [] fDescr; }
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207 |
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208 | Bool_t Load(const char *name);
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209 | Bool_t Save(const char *name);
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210 |
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211 | void Reset();
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212 |
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213 | ZdAz Correct(const ZdAz &zdaz) const;
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214 | AltAz Correct(const AltAz &aaz) const;
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215 | TVector3 Correct(const TVector3 &v) const;
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216 |
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217 | ZdAz CorrectBack(const ZdAz &zdaz) const;
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218 | AltAz CorrectBack(const AltAz &aaz) const;
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219 | TVector3 CorrectBack(const TVector3 &v) const;
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220 |
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221 | ZdAz operator()(const ZdAz &zdaz) const { return Correct(zdaz); }
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222 | AltAz operator()(const AltAz &aaz) const { return Correct(aaz); }
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223 | TVector3 operator()(const TVector3 &v) const { return Correct(v); }
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224 |
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225 | ZdAz operator()(const ZdAz &zdaz, void (*fcn)(ZdAz &zdaz, Double_t *par)) const
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226 | {
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227 | Double_t par[kNumPar];
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228 | GetParameters(par);
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229 | ZdAz za = zdaz;
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230 | fcn(za, par);
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231 | return za;
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232 | }
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233 |
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234 | AltAz operator()(const AltAz &aaz, void (*fcn)(AltAz &aaz, Double_t *par)) const
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235 | {
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236 | Double_t par[kNumPar];
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237 | GetParameters(par);
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238 | AltAz aa = aaz;
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239 | fcn(aa, par);
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240 | return aa;
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241 | }
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242 |
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243 | TVector3 operator()(const TVector3 &aaz, void (*fcn)(TVector3 &aaz, Double_t *par)) const
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244 | {
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245 | Double_t par[kNumPar];
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246 | GetParameters(par);
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247 | TVector3 v = aaz;
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248 | fcn(v, par);
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249 | return v;
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250 | }
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251 |
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252 | AltAz AddOffsets(const AltAz &aa) const;
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253 | ZdAz AddOffsets(const ZdAz &zdaz) const;
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254 | TVector3 AddOffsets(const TVector3 &v) const;
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255 |
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256 | AltAz SubtractOffsets(const AltAz &aa) const;
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257 | ZdAz SubtractOffsets(const ZdAz &zdaz) const;
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258 | TVector3 SubtractOffsets(const TVector3 &v) const;
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259 |
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260 | void SetParameters(const Double_t *par, Int_t n=kNumPar);
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261 | void GetParameters(Double_t *par, Int_t n=kNumPar) const;
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262 |
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263 | void SetParameters(const TArrayD &par)
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264 | {
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265 | SetParameters(par.GetArray(), par.GetSize());
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266 | }
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267 | void GetParameters(TArrayD &par) const
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268 | {
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269 | par.Set(kNumPar);
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270 | GetParameters(par.GetArray());
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271 | }
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272 | void GetError(TArrayD &par) const;
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273 |
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274 | Double_t &operator[](UInt_t i) { return *fCoeff[i]; }
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275 |
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276 | void SetMinuitParameters(TMinuit &m, Int_t n=-1) const;
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277 | void GetMinuitParameters(TMinuit &m, Int_t n=-1);
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278 | void PrintMinuitParameters(TMinuit &m, Int_t n=-1) const;
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279 |
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280 | const TString &GetVarName(int i) const { return fNames[i]; }
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281 | const TString &GetDescription(int i) const { return fDescr[i]; }
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282 |
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283 | /*
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284 | Double_t GetIe() const { return fIe; }
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285 | Double_t GetIa() const { return fIa; }
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286 | Double_t GetCa() const { return fCa; }
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287 | Double_t GetAn() const { return fAn; }
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288 | Double_t GetAw() const { return fAw; }
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289 | Double_t GetNrx() const { return fNrx; }
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290 | Double_t GetNry() const { return fNry; }
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291 | Double_t GetCrx() const { return fNrx; }
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292 | Double_t GetCry() const { return fNry; }
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293 | Double_t GetEces() const { return fEces; }
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294 | Double_t GetEcec() const { return fEcec; }
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295 | Double_t GetAces() const { return fAces; }
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296 | Double_t GetAcec() const { return fAcec; }
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297 | Double_t GetNpae() const { return fNpae; }
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298 | */
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299 |
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300 | TVector2 GetDxy() const;// { return TVector2(fDx, fDy)*TMath::RadToDeg(); }
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301 |
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302 | Double_t GetPx() const;// { return fPx*TMath::RadToDeg(); }
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303 | Double_t GetPy() const;// { return fPy*TMath::RadToDeg(); }
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304 |
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305 | Bool_t IsPxValid() const { return fError[kPX]>0; }
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306 | Bool_t IsPyValid() const { return fError[kPY]>0; }
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307 |
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308 | static const Int_t GetNumPar() { return kNumPar; }
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309 |
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310 | ClassDef(MPointing, 2) // Pointing Model for MAGIC
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311 | };
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312 |
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313 | #endif
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