1 | // Class for managing sky scanning
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2 | // R. Ansari , G. Le Meur 1998-2000
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3 | // DAPNIA/SPP (Saclay) / CEA LAL - IN2P3/CNRS (Orsay)
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4 |
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5 | #ifndef SCAN_H_SEEN
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6 | #define SCAN_H_SEEN
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7 |
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8 |
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9 | #include "ppersist.h"
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10 | #include <iostream.h>
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11 | #include "dvlist.h"
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12 | #include "ndatablock.h"
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13 |
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14 | namespace SOPHYA {
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15 |
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16 | class FIO_Scan;
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17 |
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18 | //! Storage and treatment of data for a scanning of a part of the sky with a set of given values for parameters (see constructor)
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19 |
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20 | class Scan : public AnyDataObj {
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21 | friend class FIO_Scan;
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22 | public :
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23 | /*
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24 | arguments du constructeur :
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25 | . ouverture (radians),
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26 | . un tableau de 3 reels (deux angles-en radians- definissant la direction de
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27 | l'axe de rotation du satellite + vitesse de rotation
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28 | en radians/s),
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29 | . frequence d'echantillonnage (Hz),
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30 | . instant final de prise de donnees (s),
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31 | deux arguments optionnels :
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32 | . instant initial pour la prise de donnees
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33 | . offset d'antenne en angle phi
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34 | */
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35 |
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36 | /*!
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37 | \verbatim
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38 | * Ouv = aperture angle (rad)
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39 | * Omega[3] = direction of rotation axis of the satellite (teta,phi)
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40 | and rotation velocity (rad/s)
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41 | * Fech = sampling frequency (Hz)
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42 | * T = total time of data acquistion (s)
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43 | * t0 = starting time (s)
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44 | * phi0 = offset of antenna (rad)
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45 | \endverbatim
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46 | */
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47 | Scan(float,float*,float,float,float,float);
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48 | Scan(const Scan&, bool share=false );
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49 | Scan() {
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50 | InitNull();
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51 | }
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52 | ~Scan();
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53 |
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54 | // ------------ Persistence handling
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55 |
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56 | // enum {classId = 0xF003 };
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57 | //int_4 ClassId() const { return classId; }
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58 |
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59 | //virtual void WriteSelf(POutPersist&) const;
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60 | //virtual void ReadSelf(PInPersist&);
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61 |
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62 | /*! Return the number of points in the scan */
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63 | int_4 NbPoints() const;
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64 | /*! Return total nomber of turns */
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65 | int_4 NbTours() const;
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66 | /*! Return nomber of points for 1 turn */
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67 | int_4 NbPts1Tr() const;
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68 | /*! Return index of pixel associated to time t */
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69 | int_4 ValueIndex(float) const;
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70 | /*! Return (teta,phi) coordinate of pixel related to time t */
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71 | void Direction(float, float& ,float& );
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72 | /*! Return (teta,phi) coordinates of pixel with index k */
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73 | void DirectionIndex(int_4,float& ,float& );
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74 | /*! Return value of pixel with index k */
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75 | r_8 & PixelValue(int_4 k) ;
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76 | /*! const version of previous method */
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77 | r_8 const & PixelValue(int_4 k) const;
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78 |
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79 | /* Surcharge de la parenthese a un indice entier : remplit ou/et renvoie */
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80 | /* la valeur du contenu du pixel d'indice k */
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81 |
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82 | inline r_8& operator()(int_4 k)
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83 | { return(PixelValue(k)) ; } ;
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84 | inline r_8 const & operator()(int_4 k) const
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85 | { return(PixelValue(k)) ; } ;
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86 | Scan& operator = (const Scan& s);
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87 | //++
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88 | DVList& Info()
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89 | //
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90 | // Renvoie une reference sur l'objet DVList Associe
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91 | //--
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92 | {
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93 | if (mInfo_ == NULL) mInfo_ = new DVList;
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94 | return(*mInfo_);
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95 | }
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96 |
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97 | const DVList* ptrInfo() const
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98 | {
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99 | return mInfo_;
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100 | }
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101 |
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102 |
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103 |
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104 |
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105 |
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106 | private :
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107 |
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108 | //void Clear();
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109 | void InitNull();
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110 |
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111 | /* Acces to the DataBlock */
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112 | inline NDataBlock<r_8>& DataBlock() {return sPix_;}
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113 | inline const NDataBlock<r_8>& DataBlock() const {return sPix_;}
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114 |
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115 | inline void SetIntParams(int_4 NmaxPts, int_4 NmaxTrs, int_4 NPts1Tr)
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116 | {
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117 | NmaxPts_=NmaxPts;
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118 | NmaxTrs_=NmaxTrs;
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119 | NPts1Tr_=NPts1Tr;
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120 | }
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121 | inline void SetFloatParams(r_4 Ouverture, r_4 OmegaTeta, r_4 OmegaPhi,
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122 | r_4 OmegaRad, r_4 FrequenceEch, r_4 TempsFinal,
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123 | r_4 TempsInitial, r_4 PhiZero, r_8* Rota)
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124 | {
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125 | Ouverture_ = Ouverture;
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126 | OmegaTeta_ = OmegaTeta;
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127 | OmegaPhi_ = OmegaPhi;
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128 | OmegaRad_ = OmegaRad;
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129 | FrequenceEch_ = FrequenceEch;
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130 | TempsFinal_ = TempsFinal;
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131 | TempsInitial_ = TempsInitial;
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132 | PhiZero_ = PhiZero;
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133 | for (int k=0; k<9;k++) Rota_[k]=Rota[k];
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134 | }
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135 |
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136 | inline void GetFloatParams(r_4& Ouverture, r_4& OmegaTeta, r_4& OmegaPhi,
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137 | r_4& OmegaRad, r_4& FrequenceEch, r_4& TempsFinal,
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138 | r_4& TempsInitial, r_4& PhiZero, r_8* Rota) const
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139 | {
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140 | Ouverture = Ouverture_;
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141 | OmegaTeta = OmegaTeta_;
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142 | OmegaPhi = OmegaPhi_;
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143 | OmegaRad = OmegaRad_;
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144 | FrequenceEch = FrequenceEch_;
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145 | TempsFinal = TempsFinal_;
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146 | TempsInitial = TempsInitial_;
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147 | PhiZero = PhiZero_;
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148 | for (int k=0; k<9;k++) Rota[k]=Rota_[k];
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149 | }
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150 |
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151 |
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152 | int_4 NmaxPts_;
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153 | int_4 NmaxTrs_;
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154 | int_4 NPts1Tr_;
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155 | r_4 Ouverture_;
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156 | r_4 OmegaTeta_; /* direction de l'axe de rotation du satellite */
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157 | r_4 OmegaPhi_; /* (radians) */
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158 | r_4 OmegaRad_; /* vitesse de rotation du satellite (radians/s) */
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159 | r_4 FrequenceEch_; /* frequence d'echantillonnage (Hz)*/
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160 | r_4 TempsFinal_;
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161 | r_4 TempsInitial_;
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162 | r_4 PhiZero_; /* Offset antenne (radians) */
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163 | NDataBlock<r_8> sPix_; /* valeurs contenues dans chaque pixel */
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164 | //r_8* sPix_; /* valeurs contenues dans chaque pixel */
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165 | r_8 Rota_[9]; /* matrice de passage : [Xf]=[Rota][Xs] */
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166 | /* Xs : coordonnees dans un systeme lie au satellite*/
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167 | /* Xf : coordonnees dans un repere "fixe" */
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168 | DVList* mInfo_; // Infos (variables) attachees
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169 | };
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170 |
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171 | // ------------- Classe pour la gestion de persistance --
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172 | //! Delegated objects for persitance management
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173 |
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174 | class FIO_Scan : public PPersist
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175 | {
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176 |
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177 | public:
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178 |
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179 | FIO_Scan();
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180 | FIO_Scan(string const & filename);
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181 | FIO_Scan(const Scan& obj);
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182 | FIO_Scan(Scan* obj);
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183 | virtual ~FIO_Scan();
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184 | virtual AnyDataObj* DataObj();
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185 | inline operator Scan() {return(*dobj); }
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186 |
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187 | protected :
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188 |
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189 | virtual void ReadSelf(PInPersist&);
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190 | virtual void WriteSelf(POutPersist&) const;
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191 | Scan* dobj;
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192 | bool ownobj;
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193 | };
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194 |
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195 | } // namespace SOPHYA
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196 |
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197 | #endif /* SCAN_H_SEEN */
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