1 | #include "sopnamsp.h"
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2 | #include "machdefs.h"
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3 | #include <math.h>
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4 | #include <complex>
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5 |
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6 | #include "pexceptions.h"
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7 | #include "fiondblock.h"
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8 | #include "spherehealpix.h"
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9 | #include "strutil.h"
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10 |
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11 | extern "C"
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12 | {
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13 | #include <stdio.h>
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14 | #include <stdlib.h>
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15 | #include <unistd.h>
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16 | }
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17 |
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18 | using namespace SOPHYA;
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19 |
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20 | /*!
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21 | \class SOPHYA::SphereHEALPix
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22 | \ingroup SkyMap
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23 | \brief Spherical maps in HEALPix pixelisation scheme.
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24 |
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25 | Class implementing spherical maps, in the HEALPix pixelisation scheme,
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26 | with template data types (double, float, complex, ...)
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27 |
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28 |
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29 | \verbatim
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30 | Adapted from :
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31 | -----------------------------------------------------------------------
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32 | version 0.8.2 Aug97 TAC Eric Hivon, Kris Gorski
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33 | -----------------------------------------------------------------------
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34 |
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35 | the sphere is split in 12 diamond-faces containing nside**2 pixels each
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36 | the numbering of the pixels (in the nested scheme) is similar to
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37 | quad-cube
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38 | In each face the first pixel is in the lowest corner of the diamond
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39 | the faces are (x,y) coordinate on each face
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40 |
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41 | . . . . <--- North Pole
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42 | / \ / \ / \ / \ ^ ^
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43 | . 0 . 1 . 2 . 3 . <--- z = 2/3 \ /
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44 | \ / \ / \ / \ / y \ / x
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45 | 4 . 5 . 6 . 7 . 4 <--- equator \ /
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46 | / \ / \ / \ / \ \/
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47 | . 8 . 9 .10 .11 . <--- z = -2/3 (0,0) : lowest corner
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48 | \ / \ / \ / \ /
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49 | . . . . <--- South Pole
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50 | \endverbatim
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51 | phi:0 2Pi
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52 |
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53 | in the ring scheme pixels are numbered along the parallels
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54 | the first parallel is the one closest to the north pole and so on
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55 | on each parallel, pixels are numbered starting from the one closest
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56 | to phi = 0
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57 |
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58 | nside MUST be a power of 2 (<= 8192)
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59 |
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60 | */
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61 |
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62 | /* --Methode-- */
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63 |
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64 | //! Default constructor - optional pixelisation scheme parameter
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65 | template<class T>
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66 | SphereHEALPix<T>::SphereHEALPix(bool fgring) : fgring_(fgring), pixels_(),
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67 | sliceBeginIndex_(), sliceLenght_()
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68 |
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69 | {
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70 | InitNul();
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71 | }
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72 |
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73 | /*! \brief Constructor with specification of nside and optional pixelisation scheme
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74 |
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75 | \param <m> : "nside" of the Healpix algorithm
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76 | \param <fgring> : if true -> RING pixelisation (default), if not NESTED
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77 |
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78 | The total number of pixels will be Npix = 12*nside**2
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79 |
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80 | nside MUST be a power of 2 (<= 8192)
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81 | */
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82 |
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83 | template<class T>
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84 | SphereHEALPix<T>::SphereHEALPix(int_4 m, bool fgring)
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85 |
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86 | {
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87 | fgring_ = fgring;
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88 | InitNul();
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89 | Pixelize(m);
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90 | SetThetaSlices();
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91 | }
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92 | //! Copy constructor
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93 | template<class T>
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94 | SphereHEALPix<T>::SphereHEALPix(const SphereHEALPix<T>& s, bool share)
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95 | : pixels_(s.pixels_, share), sliceBeginIndex_(s.sliceBeginIndex_, share),
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96 | sliceLenght_(s.sliceLenght_, share)
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97 | //--
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98 | {
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99 | nSide_= s.nSide_;
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100 | nPix_ = s.nPix_;
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101 | omeg_ = s.omeg_;
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102 | fgring_ = s.fgring_;
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103 | if(s.mInfo_) this->mInfo_= new DVList(*s.mInfo_);
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104 | }
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105 | //++
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106 | template<class T>
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107 | SphereHEALPix<T>::SphereHEALPix(const SphereHEALPix<T>& s)
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108 | : pixels_(s.pixels_), sliceBeginIndex_(s.sliceBeginIndex_),
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109 | sliceLenght_(s.sliceLenght_)
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110 | // copy constructor
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111 | //--
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112 | {
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113 | nSide_= s.nSide_;
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114 | nPix_ = s.nPix_;
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115 | omeg_ = s.omeg_;
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116 | fgring_ = s.fgring_;
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117 | if(s.mInfo_) this->mInfo_= new DVList(*s.mInfo_);
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118 | // CloneOrShare(s);
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119 | }
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120 |
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121 | //! Clone if \b a is not temporary, share if temporary
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122 | /*! \sa NDataBlock::CloneOrShare(const NDataBlock<T>&) */
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123 | template<class T>
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124 | void SphereHEALPix<T>::CloneOrShare(const SphereHEALPix<T>& a)
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125 | {
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126 | nSide_= a.nSide_;
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127 | nPix_ = a.nPix_;
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128 | omeg_ = a.omeg_;
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129 | fgring_ = a.fgring_;
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130 | pixels_.CloneOrShare(a.pixels_);
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131 | sliceBeginIndex_.CloneOrShare(a.sliceBeginIndex_);
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132 | sliceLenght_.CloneOrShare(a.sliceLenght_);
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133 | if (this->mInfo_) {delete this->mInfo_; this->mInfo_ = NULL;}
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134 | if (a.mInfo_) this->mInfo_ = new DVList(*(a.mInfo_));
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135 | }
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136 |
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137 | //! Share data with a
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138 | template<class T>
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139 | void SphereHEALPix<T>::Share(const SphereHEALPix<T>& a)
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140 | {
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141 | nSide_= a.nSide_;
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142 | nPix_ = a.nPix_;
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143 | omeg_ = a.omeg_;
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144 | fgring_ = a.fgring_;
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145 | pixels_.Share(a.pixels_);
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146 | sliceBeginIndex_.Share(a.sliceBeginIndex_);
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147 | sliceLenght_.Share(a.sliceLenght_);
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148 | if (this->mInfo_) {delete this->mInfo_; this->mInfo_ = NULL;}
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149 | if (a.mInfo_) this->mInfo_ = new DVList(*(a.mInfo_));
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150 | }
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151 |
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152 | ////////////////////////// methodes de copie/share
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153 | template<class T>
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154 | SphereHEALPix<T>& SphereHEALPix<T>::Set(const SphereHEALPix<T>& a)
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155 | {
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156 | if (this != &a) {
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157 | if (a.NbPixels() < 1)
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158 | throw RangeCheckError("SphereHEALPix<T>::Set(a ) - SphereHEALPix a not allocated ! ");
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159 | if (NbPixels() < 1) CloneOrShare(a);
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160 | else CopyElt(a);
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161 |
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162 | if (this->mInfo_) delete this->mInfo_;
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163 | this->mInfo_ = NULL;
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164 | if (a.mInfo_) this->mInfo_ = new DVList(*(a.mInfo_));
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165 | }
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166 | return(*this);
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167 | }
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168 |
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169 | template<class T>
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170 | SphereHEALPix<T>& SphereHEALPix<T>::CopyElt(const SphereHEALPix<T>& a)
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171 | {
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172 | if (NbPixels() < 1)
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173 | throw RangeCheckError("SphereHEALPix<T>::CopyElt(a) - Not Allocated SphereHEALPix ! ");
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174 | if (NbPixels() != a.NbPixels())
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175 | throw(SzMismatchError("SphereHEALPix<T>::CopyElt(a) SizeMismatch")) ;
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176 | nSide_= a.nSide_;
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177 | nPix_ = a.nPix_;
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178 | omeg_ = a.omeg_;
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179 | if (fgring_ == a.fgring_)
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180 | for (int_4 k=0; k< nPix_; k++) pixels_(k) = a.pixels_(k);
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181 | else {
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182 | if (fgring_) for (int_4 k=0; k< nPix_; k++)
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183 | pixels_(k) = a.pixels_(ring2nest(nSide_, k));
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184 | else for (int_4 k=0; k< nPix_; k++)
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185 | pixels_(k) = a.pixels_(nest2ring(nSide_, k));
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186 | }
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187 | for (size_t k=0; k< a.sliceBeginIndex_.Size(); k++) sliceBeginIndex_(k) = a.sliceBeginIndex_(k);
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188 | for (size_t k=0; k< a.sliceLenght_.Size(); k++) sliceLenght_(k) = a.sliceLenght_(k);
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189 | return(*this);
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190 | }
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191 |
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192 | template<class T>
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193 | SphereHEALPix<T>::~SphereHEALPix()
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194 | {
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195 | }
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196 |
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197 | /*! \fn void SOPHYA::SphereHEALPix::Resize(int_4 m)
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198 | \param <m> "nside" of the HEALPix algorithm
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199 |
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200 | The total number of pixels will be Npix = 12*nside**2
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201 |
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202 | nside MUST be a power of 2 (<= 8192)
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203 | */
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204 | template<class T>
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205 | void SphereHEALPix<T>::Resize(int_4 m)
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206 | {
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207 | if ((m <= 0 && nSide_ > 0)) {
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208 | cout << "SphereHEALPix<T>::Resize(m) with m<=0, NOT resized" << endl;
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209 | return;
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210 | }
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211 | InitNul();
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212 | Pixelize(m);
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213 | SetThetaSlices();
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214 | }
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215 |
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216 |
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217 | //! return type of the map pixelisation : RING or NESTED
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218 | template<class T>
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219 | string SphereHEALPix<T>::TypeOfMap() const
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220 | {
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221 | if (fgring_) return string("RING");
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222 | else return string("NESTED");
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223 | }
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224 |
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225 | template<class T>
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226 | void SphereHEALPix<T>::Pixelize( int_4 m)
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227 | // prépare la pixelisation Gorski (m a la même signification
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228 | // que pour le constructeur)
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229 | {
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230 | if (m<=0 || m> 8192) {
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231 | cout << "SphereHEALPix<T>::Pixelize() m=" << m <<" out of range [0,8192]" << endl;
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232 | throw ParmError("SphereHEALPix<T>::Pixelize() m out of range");
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233 | }
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234 | // verifier que m est une puissance de deux
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235 | int x= m;
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236 | while (x%2==0) x/=2;
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237 | if(x != 1) {
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238 | cout << "SphereHEALPix<T>::Pixelize() m=" << m << " != 2^n " << endl;
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239 | throw ParmError("SphereHEALPix<T>::Pixelize() m!=2^n");
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240 | }
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241 |
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242 | // On memorise les arguments d'appel
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243 | nSide_= m;
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244 |
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245 | // Nombre total de pixels sur la sphere entiere
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246 | nPix_= 12*nSide_*nSide_;
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247 |
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248 | // pour le moment les tableaux qui suivent seront ranges dans l'ordre
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249 | // de l'indexation GORSKY "RING"
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250 | // on pourra ulterieurement changer de strategie et tirer profit
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251 | // de la dualite d'indexation GORSKY (RING et NEST) : tout dependra
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252 | // de pourquoi c'est faire
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253 |
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254 | // Creation et initialisation du vecteur des contenus des pixels
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255 | pixels_.ReSize(nPix_);
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256 | pixels_.Reset();
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257 |
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258 | // solid angle per pixel
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259 | omeg_= 4.0*Pi/nPix_;
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260 | }
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261 |
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262 | template<class T>
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263 | void SphereHEALPix<T>::InitNul()
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264 | //
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265 | // initialise à zéro les variables de classe
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266 | {
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267 | nSide_= 0;
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268 | nPix_ = 0;
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269 | omeg_ = 0.;
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270 | // pixels_.Reset(); - Il ne faut pas mettre les pixels a zero si share !
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271 | }
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272 |
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273 | /* --Methode-- */
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274 | /* Nombre de pixels du decoupage */
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275 | /*! \fn int_4 SOPHYA::SphereHEALPix::NbPixels() const
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276 |
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277 | Return number of pixels of the splitting
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278 | */
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279 | template<class T>
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280 | int_4 SphereHEALPix<T>::NbPixels() const
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281 | {
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282 | return(nPix_);
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283 | }
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284 |
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285 |
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286 | /*! \fn uint_4 SOPHYA::SphereHEALPix::NbThetaSlices() const
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287 |
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288 | \return number of slices in theta direction on the sphere
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289 | */
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290 | template<class T>
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291 | uint_4 SphereHEALPix<T>::NbThetaSlices() const
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292 | {
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293 | uint_4 nbslices = uint_4(4*nSide_-1);
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294 | if (nSide_<=0) {
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295 | nbslices = 0;
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296 | throw PException(" sphere not pixelized, NbSlice=0 ");
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297 | }
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298 | return nbslices;
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299 | }
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300 |
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301 | //! Return the theta angle for slice defined by \b index
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302 | template<class T>
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303 | r_8 SphereHEALPix<T>::ThetaOfSlice(int_4 index) const
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304 | {
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305 | uint_4 nbslices = uint_4(4*nSide_-1);
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306 | if (index<0 || index >= (int_4)nbslices)
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307 | throw RangeCheckError(" SphereHEALPix::ThetaOfSlice() index out of range");
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308 | r_8 theta, phi0;
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309 | PixThetaPhi(sliceBeginIndex_(index), theta, phi0);
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310 | return theta;
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311 | }
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312 |
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313 | //! Return true : All theta slices have a symmetric slice at Pi-Theta in SphereHEALPix
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314 | template <class T>
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315 | bool SphereHEALPix<T>::HasSymThetaSlice() const
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316 | {
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317 | return true;
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318 | }
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319 | //! Return the slice index for the symmetric slice at theta=Pi-ThetaOfSlice(idx)
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320 | template <class T>
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321 | int_4 SphereHEALPix<T>::GetSymThetaSliceIndex(int_4 idx) const
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322 | {
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323 | if(idx < 0 || idx >= (int_4)NbThetaSlices())
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324 | throw RangeCheckError("SphereHEALPix::GetSymThetaSliceIndex index out of range");
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325 | return (NbThetaSlices()-1-idx);
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326 | }
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327 |
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328 | /*! \fn void SOPHYA::SphereHEALPix::GetThetaSlice(int_4 index,r_8& theta,TVector<r_8>& phi,TVector<T>& value) const
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329 |
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330 | For a theta-slice with index 'index', return :
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331 |
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332 | the corresponding "theta"
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333 |
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334 | a vector containing the phi's of the pixels of the slice
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335 |
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336 | a vector containing the corresponding values of pixels
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337 | */
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338 | template<class T>
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339 | void SphereHEALPix<T>::GetThetaSlice(int_4 index,r_8& theta,TVector<r_8>& phi,TVector<T>& value) const
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340 | {
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341 | if (index<0 || index >= (int_4)NbThetaSlices())
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342 | throw RangeCheckError(" SphereHEALPix::GetThetaSlice() index out of range");
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343 |
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344 | int_4 iring= sliceBeginIndex_(index);
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345 | int_4 lring = sliceLenght_(index);
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346 |
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347 | phi.ReSize(lring);
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348 | value.ReSize(lring);
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349 |
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350 | double TH= 0.;
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351 | double FI= 0.;
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352 | if (fgring_) { // RING pixelisation scheme
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353 | for(int_4 kk = 0; kk < lring;kk++) {
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354 | PixThetaPhi(kk+iring,TH,FI);
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355 | phi(kk)= FI;
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356 | value(kk)= pixels_(kk+iring);
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357 | }
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358 | PixThetaPhi(iring, theta, FI);
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359 | }
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360 | else { // NESTED pixelisation scheme
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361 | for(int_4 kk = 0; kk < lring;kk++) {
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362 | int kkn = ring2nest(nSide_, kk+iring);
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363 | PixThetaPhi(kkn,TH,FI);
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364 | phi(kk)= FI;
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365 | value(kk)= pixels_(kkn);
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366 | }
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367 | PixThetaPhi(ring2nest(nSide_,iring), theta, FI);
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368 | }
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369 | // theta= TH;
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370 | }
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371 | /*! \fn void SOPHYA::SphereHEALPix::GetThetaSlice(int_4 sliceIndex,r_8& theta, r_8& phi0, TVector<int_4>& pixelIndices,TVector<T>& value) const
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372 |
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373 | For a theta-slice with index 'index', return :
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374 |
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375 | the corresponding "theta"
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376 |
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377 | the corresponding "phi" for first pixel of the slice
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378 |
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379 | a vector containing indices of the pixels of the slice
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380 |
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381 | (equally distributed in phi)
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382 |
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383 | a vector containing the corresponding values of pixels
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384 | */
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385 |
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386 | template<class T>
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387 | void SphereHEALPix<T>::GetThetaSlice(int_4 sliceIndex,r_8& theta, r_8& phi0,
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388 | TVector<int_4>& pixelIndices,TVector<T>& value) const
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389 |
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390 | {
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391 |
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392 | if (sliceIndex<0 || sliceIndex >= (int_4)NbThetaSlices())
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393 | throw RangeCheckError(" SphereHEALPix::GetThetaSlice() index out of range");
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394 | int_4 iring= sliceBeginIndex_(sliceIndex);
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395 | int_4 lring = sliceLenght_(sliceIndex);
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396 | pixelIndices.ReSize(lring);
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397 | value.ReSize(lring);
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398 |
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399 | if (fgring_) { // RING pixelisation scheme
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400 | for(int_4 kk = 0; kk < lring;kk++) {
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401 | pixelIndices(kk)= kk+iring;
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402 | value(kk)= pixels_(kk+iring);
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403 | }
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404 | PixThetaPhi(iring, theta, phi0);
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405 | }
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406 | else { // NESTED pixelisation scheme
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407 | for(int_4 kk = 0; kk < lring;kk++) {
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408 | int_4 kkn = ring2nest(nSide_, kk+iring);
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409 | pixelIndices(kk)= kkn;
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410 | value(kk)= pixels_(kkn);
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411 | }
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412 | PixThetaPhi(ring2nest(nSide_,iring), theta, phi0);
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413 | }
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414 | }
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415 |
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416 | //! return a pointer to the specified slice pixel data in RING ordering, NULL in NESTED
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417 | template<class T>
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418 | T* SphereHEALPix<T>::GetThetaSliceDataPtr(int_4 sliceIndex)
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419 |
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420 | {
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421 | if (sliceIndex<0 || sliceIndex >= (int_4)NbThetaSlices())
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422 | throw RangeCheckError(" SphereHEALPix::GetThetaSliceDataPtr(): index out of range");
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423 | if (fgring_)
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424 | return pixels_.Begin()+sliceBeginIndex_(sliceIndex);
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425 | else return NULL;
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426 | }
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427 |
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428 | template<class T>
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429 | void SphereHEALPix<T>::SetThetaSlices()
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430 | {
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431 | sliceBeginIndex_.ReSize(4*nSide_-1);
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432 | sliceLenght_.ReSize(4*nSide_-1);
|
---|
433 | int_4 sliceIndex;
|
---|
434 | int_4 offp = 0;
|
---|
435 | for (sliceIndex=0; sliceIndex< nSide_-1; sliceIndex++) {
|
---|
436 | // sliceBeginIndex_(sliceIndex) = 2*sliceIndex*(sliceIndex+1);
|
---|
437 | sliceBeginIndex_(sliceIndex) = offp;
|
---|
438 | sliceLenght_(sliceIndex) = 4*(sliceIndex+1);
|
---|
439 | offp += sliceLenght_(sliceIndex);
|
---|
440 | }
|
---|
441 | for (sliceIndex= nSide_-1; sliceIndex< 3*nSide_; sliceIndex++) {
|
---|
442 | // sliceBeginIndex_(sliceIndex) = 2*nSide_*(2*sliceIndex-nSide_+1);
|
---|
443 | sliceBeginIndex_(sliceIndex) = offp;
|
---|
444 | sliceLenght_(sliceIndex) = 4*nSide_;
|
---|
445 | offp += sliceLenght_(sliceIndex);
|
---|
446 | }
|
---|
447 | for (sliceIndex= 3*nSide_; sliceIndex< 4*nSide_-1; sliceIndex++) {
|
---|
448 | int_4 nc= 4*nSide_-1-sliceIndex;
|
---|
449 | // sliceBeginIndex_(sliceIndex) = nPix_-2*nc*(nc+1);
|
---|
450 | sliceBeginIndex_(sliceIndex) = offp;
|
---|
451 | sliceLenght_(sliceIndex) = 4*nc;
|
---|
452 | offp += sliceLenght_(sliceIndex);
|
---|
453 | }
|
---|
454 | }
|
---|
455 |
|
---|
456 |
|
---|
457 |
|
---|
458 | //! \return value of the \b k th pixel
|
---|
459 | template<class T>
|
---|
460 | T& SphereHEALPix<T>::PixVal(int_4 k)
|
---|
461 |
|
---|
462 | {
|
---|
463 | if((k < 0) || (k >= nPix_))
|
---|
464 | throw RangeCheckError("SphereHEALPix::PixVal() Pixel index out of range");
|
---|
465 | return pixels_(k);
|
---|
466 | }
|
---|
467 |
|
---|
468 | //! \return value of the \b k th pixel
|
---|
469 | template<class T>
|
---|
470 | T const& SphereHEALPix<T>::PixVal(int_4 k) const
|
---|
471 |
|
---|
472 | {
|
---|
473 | if((k < 0) || (k >= nPix_))
|
---|
474 | throw RangeCheckError("SphereHEALPix::PIxVal Pixel index out of range");
|
---|
475 | return *(pixels_.Data()+k);
|
---|
476 | }
|
---|
477 |
|
---|
478 |
|
---|
479 | /*! \fn bool SOPHYA::SphereHEALPix::ContainsSph(double theta, double phi) const
|
---|
480 |
|
---|
481 | \return true if teta,phi in map
|
---|
482 | */
|
---|
483 | template<class T>
|
---|
484 | bool SphereHEALPix<T>::ContainsSph(double theta, double phi) const
|
---|
485 | {
|
---|
486 | return(true);
|
---|
487 | }
|
---|
488 |
|
---|
489 | /*! \fn int_4 SOPHYA::SphereHEALPix::PixIndexSph(double theta,double phi) const
|
---|
490 |
|
---|
491 | \return "RING" index of the pixel corresponding to direction (theta, phi).
|
---|
492 | */
|
---|
493 | template<class T>
|
---|
494 | int_4 SphereHEALPix<T>::PixIndexSph(double theta,double phi) const
|
---|
495 |
|
---|
496 | {
|
---|
497 | if (fgring_) return ang2pix_ring(nSide_,theta,phi);
|
---|
498 | else return ang2pix_nest(nSide_,theta,phi);
|
---|
499 | }
|
---|
500 |
|
---|
501 |
|
---|
502 | //! \return (theta,phi) coordinates of middle of pixel with "RING" index k
|
---|
503 | template<class T>
|
---|
504 | void SphereHEALPix<T>::PixThetaPhi(int_4 k,double& theta,double& phi) const
|
---|
505 | {
|
---|
506 | if (fgring_) pix2ang_ring(nSide_,k,theta,phi);
|
---|
507 | else pix2ang_nest(nSide_,k,theta,phi);
|
---|
508 | }
|
---|
509 |
|
---|
510 | //! Set all pixels to value v
|
---|
511 | template <class T>
|
---|
512 | T SphereHEALPix<T>::SetPixels(T v)
|
---|
513 | {
|
---|
514 | pixels_.Reset(v);
|
---|
515 | return(v);
|
---|
516 | }
|
---|
517 |
|
---|
518 |
|
---|
519 |
|
---|
520 | //! Conversion from NESTED index into RING index
|
---|
521 | template<class T>
|
---|
522 | int_4 SphereHEALPix<T>::NestToRing(int_4 k) const
|
---|
523 | {
|
---|
524 | return nest2ring(nSide_,k);
|
---|
525 | }
|
---|
526 |
|
---|
527 | //! Conversion from RING index into NESTED index
|
---|
528 | template<class T>
|
---|
529 | int_4 SphereHEALPix<T>::RingToNest(int_4 k) const
|
---|
530 | {
|
---|
531 | return ring2nest(nSide_,k);
|
---|
532 | }
|
---|
533 |
|
---|
534 | // ...... Operations de calcul ......
|
---|
535 |
|
---|
536 | //! Fill a SphereHEALPix with a constant value \b a
|
---|
537 | template <class T>
|
---|
538 | SphereHEALPix<T>& SphereHEALPix<T>::SetT(T a)
|
---|
539 | {
|
---|
540 | if (NbPixels() < 1)
|
---|
541 | throw RangeCheckError("SphereHEALPix<T>::SetT(T ) - SphereHEALPix not dimensionned ! ");
|
---|
542 | pixels_ = a;
|
---|
543 | return (*this);
|
---|
544 | }
|
---|
545 |
|
---|
546 | //! Add a constant value \b x to a SphereHEALPix
|
---|
547 | template <class T>
|
---|
548 | SphereHEALPix<T>& SphereHEALPix<T>::Add(T a)
|
---|
549 | {
|
---|
550 | cout << " c'est mon Add " << endl;
|
---|
551 | if (NbPixels() < 1)
|
---|
552 | throw RangeCheckError("SphereHEALPix<T>::Add(T ) - SphereHEALPix not dimensionned ! ");
|
---|
553 | // pixels_ += a;
|
---|
554 | pixels_.Add(a);
|
---|
555 | return (*this);
|
---|
556 | }
|
---|
557 |
|
---|
558 | /*! Substract a constant value \b a to a SphereHEALPix */
|
---|
559 | template <class T>
|
---|
560 | SphereHEALPix<T>& SphereHEALPix<T>::Sub(T a,bool fginv)
|
---|
561 | {
|
---|
562 | if (NbPixels() < 1)
|
---|
563 | throw RangeCheckError("SphereHEALPix<T>::Sub(T ) - SphereHEALPix not dimensionned ! ");
|
---|
564 | pixels_.Sub(a,fginv);
|
---|
565 | return (*this);
|
---|
566 | }
|
---|
567 |
|
---|
568 | /*! multiply a SphereHEALPix by a constant value \b a */
|
---|
569 | template <class T>
|
---|
570 | SphereHEALPix<T>& SphereHEALPix<T>::Mul(T a)
|
---|
571 | {
|
---|
572 | if (NbPixels() < 1)
|
---|
573 | throw RangeCheckError("SphereHEALPix<T>::Mul(T ) - SphereHEALPix not dimensionned ! ");
|
---|
574 | pixels_ *= a;
|
---|
575 | return (*this);
|
---|
576 | }
|
---|
577 |
|
---|
578 | /*! divide a SphereHEALPix by a constant value \b a */
|
---|
579 | template <class T>
|
---|
580 | SphereHEALPix<T>& SphereHEALPix<T>::Div(T a)
|
---|
581 | {
|
---|
582 | if (NbPixels() < 1)
|
---|
583 | throw RangeCheckError("SphereHEALPix<T>::Div(T ) - SphereHEALPix not dimensionned ! ");
|
---|
584 | pixels_ /= a;
|
---|
585 | return (*this);
|
---|
586 | }
|
---|
587 |
|
---|
588 | // >>>> Operations avec 2nd membre de type SphereHEALPix
|
---|
589 | //! Add two SphereHEALPix
|
---|
590 |
|
---|
591 | template <class T>
|
---|
592 | SphereHEALPix<T>& SphereHEALPix<T>::AddElt(const SphereHEALPix<T>& a)
|
---|
593 | {
|
---|
594 | if (NbPixels() != a.NbPixels() )
|
---|
595 | throw(SzMismatchError("SphereHEALPix<T>::AddElt(a) SizeMismatch")) ;
|
---|
596 | if (fgring_ != a.fgring_)
|
---|
597 | throw(ParmError("SphereHEALPix<T>::AddElt(a) different pixelisation RING<>NESTED")) ;
|
---|
598 |
|
---|
599 | pixels_ += a.pixels_;
|
---|
600 | return (*this);
|
---|
601 | }
|
---|
602 |
|
---|
603 | //! Substract two SphereHEALPix
|
---|
604 | template <class T>
|
---|
605 | SphereHEALPix<T>& SphereHEALPix<T>::SubElt(const SphereHEALPix<T>& a)
|
---|
606 | {
|
---|
607 | if (NbPixels() != a.NbPixels() )
|
---|
608 | throw(SzMismatchError("SphereHEALPix<T>::SubElt(a) SizeMismatch")) ;
|
---|
609 | if (fgring_ != a.fgring_)
|
---|
610 | throw(ParmError("SphereHEALPix<T>::SubElt(a) different pixelisation RING<>NESTED")) ;
|
---|
611 |
|
---|
612 | pixels_ -= a.pixels_;
|
---|
613 | return (*this);
|
---|
614 | }
|
---|
615 |
|
---|
616 | //! Multiply two SphereHEALPix (elements by elements)
|
---|
617 | template <class T>
|
---|
618 | SphereHEALPix<T>& SphereHEALPix<T>::MulElt(const SphereHEALPix<T>& a)
|
---|
619 | {
|
---|
620 | if (NbPixels() != a.NbPixels() )
|
---|
621 | throw(SzMismatchError("SphereHEALPix<T>::MulElt(a) SizeMismatch")) ;
|
---|
622 | if (fgring_ != a.fgring_)
|
---|
623 | throw(ParmError("SphereHEALPix<T>::MulElt(a) different pixelisation RING<>NESTED")) ;
|
---|
624 |
|
---|
625 | pixels_ *= a.pixels_;
|
---|
626 | return (*this);
|
---|
627 | }
|
---|
628 |
|
---|
629 | //! Divide two SphereHEALPix (elements by elements) - No protection for divide by 0
|
---|
630 | template <class T>
|
---|
631 | SphereHEALPix<T>& SphereHEALPix<T>::DivElt(const SphereHEALPix<T>& a)
|
---|
632 | {
|
---|
633 | if (NbPixels() != a.NbPixels() )
|
---|
634 | throw(SzMismatchError("SphereHEALPix<T>::DivElt(a) SizeMismatch")) ;
|
---|
635 | if (fgring_ != a.fgring_)
|
---|
636 | throw(ParmError("SphereHEALPix<T>::DivElt(a) different pixelisation RING<>NESTED")) ;
|
---|
637 | pixels_ /= a.pixels_;
|
---|
638 | return (*this);
|
---|
639 | }
|
---|
640 |
|
---|
641 |
|
---|
642 |
|
---|
643 |
|
---|
644 | template <class T>
|
---|
645 | void SphereHEALPix<T>::print(ostream& os) const
|
---|
646 | {
|
---|
647 | this->Show(os);
|
---|
648 | os << "SphereHEALPix<T>(" << TypeOfMap() << ") NSide= "
|
---|
649 | << nSide_ << " nPix_ = " << nPix_ << " omeg_ = " << omeg_ << endl;
|
---|
650 |
|
---|
651 | if(this->mInfo_) os << " DVList Info= " << *(this->mInfo_) << endl;
|
---|
652 | os << "... Pixel values : ";
|
---|
653 | for(int i=0; i < nPix_; i++)
|
---|
654 | {
|
---|
655 | if(i%5 == 0) os << endl;
|
---|
656 | os << pixels_(i) <<", ";
|
---|
657 | }
|
---|
658 | os << endl;
|
---|
659 |
|
---|
660 |
|
---|
661 | }
|
---|
662 |
|
---|
663 |
|
---|
664 |
|
---|
665 | //*******************************************************************
|
---|
666 |
|
---|
667 | #ifdef __CXX_PRAGMA_TEMPLATES__
|
---|
668 | #pragma define_template SphereHEALPix<uint_2>
|
---|
669 | #pragma define_template SphereHEALPix<int_4>
|
---|
670 | #pragma define_template SphereHEALPix<r_8>
|
---|
671 | #pragma define_template SphereHEALPix<r_4>
|
---|
672 | #pragma define_template SphereHEALPix< complex<r_4> >
|
---|
673 | #pragma define_template SphereHEALPix< complex<r_8> >
|
---|
674 | #endif
|
---|
675 | #if defined(ANSI_TEMPLATES) || defined(GNU_TEMPLATES)
|
---|
676 | namespace SOPHYA {
|
---|
677 | template class SphereHEALPix<uint_2>;
|
---|
678 | template class SphereHEALPix<int_4>;
|
---|
679 | template class SphereHEALPix<r_8>;
|
---|
680 | template class SphereHEALPix<r_4>;
|
---|
681 | template class SphereHEALPix< complex<r_4> >;
|
---|
682 | template class SphereHEALPix< complex<r_8> >;
|
---|
683 | }
|
---|
684 | #endif
|
---|
685 |
|
---|