[2615] | 1 | #include "sopnamsp.h"
|
---|
[764] | 2 | #include "smathconst.h"
|
---|
| 3 | #include <complex>
|
---|
[809] | 4 | #include "fiondblock.h"
|
---|
[2322] | 5 | #include <iostream>
|
---|
[764] | 6 |
|
---|
[3836] | 7 | #define SPHERETHETAPHI_CC_BFILE // avoid extern template declarations
|
---|
| 8 | #include "spherethetaphi.h"
|
---|
[764] | 9 |
|
---|
[3836] | 10 |
|
---|
[2303] | 11 | /*!
|
---|
| 12 | \class SOPHYA::SphereThetaPhi
|
---|
| 13 | \ingroup SkyMap
|
---|
[2808] | 14 |
|
---|
| 15 | \brief Spherical map with equal latitude (iso-theta) rings
|
---|
| 16 |
|
---|
| 17 |
|
---|
[2303] | 18 | Class implementing spherical maps, with equal latitude (iso-theta) rings
|
---|
| 19 | pixelisation scheme - with template data types (double, float, complex, ...)
|
---|
| 20 |
|
---|
| 21 | sphere splitted with respect to theta, phi : each hemisphere is
|
---|
| 22 | splitted into (m-1) parallels (equator does not enter into account).
|
---|
| 23 | This operation defines m slices, each of which is splitted into
|
---|
| 24 | equidistant meridians. This splitting is realized in such a way that
|
---|
| 25 | all pixels have the same area and are as square as possible.
|
---|
| 26 |
|
---|
| 27 | One begins with the hemisphere with positive z, starting from the pole
|
---|
| 28 | toward the equator. The first pixel is the polar cap ; it is circular
|
---|
| 29 | and centered on theta=0.
|
---|
| 30 | */
|
---|
| 31 |
|
---|
[764] | 32 | //***************************************************************
|
---|
| 33 | //++
|
---|
| 34 | // Class SphereThetaPhi
|
---|
| 35 | //
|
---|
| 36 | //
|
---|
| 37 | // include spherethetaphi.h
|
---|
| 38 | //--
|
---|
| 39 | //++
|
---|
| 40 | //
|
---|
| 41 | // Links Parents
|
---|
| 42 | //
|
---|
| 43 | // SphericalMap
|
---|
| 44 | //--
|
---|
| 45 |
|
---|
| 46 | /* --Methode-- */
|
---|
| 47 | //++
|
---|
| 48 | // Titre Constructors
|
---|
| 49 | //--
|
---|
| 50 | //++
|
---|
| 51 |
|
---|
| 52 | template <class T>
|
---|
| 53 | SphereThetaPhi<T>::SphereThetaPhi()
|
---|
[980] | 54 | : NPhi_(), TNphi_(), Theta_(), pixels_()
|
---|
[764] | 55 |
|
---|
| 56 | //--
|
---|
| 57 | {
|
---|
| 58 | InitNul();
|
---|
| 59 | }
|
---|
| 60 |
|
---|
| 61 |
|
---|
| 62 | /* --Methode-- */
|
---|
| 63 |
|
---|
[2960] | 64 | /*!
|
---|
| 65 | \brief Constructor with specification of number of slices (in a hemisphere)
|
---|
| 66 | \param m is the number of slices in theta on an hemisphere (the polar cap
|
---|
| 67 | forms the first slice).
|
---|
| 68 | */
|
---|
[764] | 69 | template <class T>
|
---|
| 70 | SphereThetaPhi<T>::SphereThetaPhi(int_4 m)
|
---|
| 71 | {
|
---|
| 72 | InitNul();
|
---|
| 73 | Pixelize(m);
|
---|
| 74 | }
|
---|
| 75 |
|
---|
[2960] | 76 | //! Copy constructor (shares the pixel data if share==true)
|
---|
[764] | 77 | template <class T>
|
---|
| 78 | SphereThetaPhi<T>::SphereThetaPhi(const SphereThetaPhi<T>& s, bool share)
|
---|
[908] | 79 | : NPhi_(s.NPhi_, share), TNphi_(s.TNphi_, share), Theta_(s.Theta_, share),
|
---|
| 80 | pixels_(s.pixels_ , share)
|
---|
[764] | 81 | {
|
---|
[908] | 82 |
|
---|
[764] | 83 | NTheta_= s.NTheta_;
|
---|
| 84 | NPix_ = s.NPix_;
|
---|
[908] | 85 | Omega_ = s.Omega_;
|
---|
[2885] | 86 | if(s.mInfo_) this->mInfo_= new DVList(*s.mInfo_);
|
---|
[908] | 87 | }
|
---|
[764] | 88 |
|
---|
[2960] | 89 | //! Copy constructor (shares the pixel data)
|
---|
[908] | 90 | template <class T>
|
---|
| 91 | SphereThetaPhi<T>::SphereThetaPhi(const SphereThetaPhi<T>& s)
|
---|
| 92 | : NPhi_(s.NPhi_), TNphi_(s.TNphi_), Theta_(s.Theta_), pixels_(s.pixels_)
|
---|
| 93 | {
|
---|
| 94 |
|
---|
| 95 | NTheta_= s.NTheta_;
|
---|
| 96 | NPix_ = s.NPix_;
|
---|
[764] | 97 | Omega_ = s.Omega_;
|
---|
[2885] | 98 | if(s.mInfo_) this->mInfo_= new DVList(*s.mInfo_);
|
---|
[764] | 99 | }
|
---|
| 100 |
|
---|
| 101 | //++
|
---|
| 102 | // Titre Destructor
|
---|
| 103 | //--
|
---|
| 104 | //++
|
---|
| 105 | template <class T>
|
---|
| 106 | SphereThetaPhi<T>::~SphereThetaPhi()
|
---|
| 107 |
|
---|
| 108 | //--
|
---|
| 109 | {}
|
---|
| 110 |
|
---|
| 111 | template <class T>
|
---|
| 112 | void SphereThetaPhi<T>::InitNul()
|
---|
| 113 | //
|
---|
| 114 | {
|
---|
| 115 | NTheta_= 0;
|
---|
| 116 | NPix_ = 0;
|
---|
| 117 | // pixels_.Reset(); Pas de reset par InitNul (en cas de share) - Reza 20/11/99 $CHECK$
|
---|
| 118 | }
|
---|
| 119 |
|
---|
| 120 |
|
---|
[2960] | 121 | //! re-pixelize the sphere if (m > 0)
|
---|
[764] | 122 | template <class T>
|
---|
| 123 | void SphereThetaPhi<T>::Resize(int_4 m)
|
---|
| 124 | {
|
---|
[2960] | 125 | if ((m <= 0) && (NTheta_ > 0) ) {
|
---|
| 126 | cout << "SphereThetaPhi<T>::Resize(m) with m<=0 - NOT resized" << endl;
|
---|
| 127 | return;
|
---|
| 128 | }
|
---|
[764] | 129 | InitNul();
|
---|
| 130 | Pixelize(m);
|
---|
| 131 | }
|
---|
| 132 |
|
---|
[2960] | 133 | //! Clone or share the SphereThetaPhi object \b a
|
---|
[908] | 134 | template<class T>
|
---|
| 135 | void SphereThetaPhi<T>::CloneOrShare(const SphereThetaPhi<T>& a)
|
---|
| 136 | {
|
---|
| 137 |
|
---|
[980] | 138 | NTheta_= a.NTheta_;
|
---|
| 139 | NPix_ = a.NPix_;
|
---|
| 140 | Omega_ = a.Omega_;
|
---|
| 141 | NPhi_.CloneOrShare(a.NPhi_);
|
---|
| 142 | TNphi_.CloneOrShare(a.TNphi_);
|
---|
| 143 | Theta_.CloneOrShare(a.Theta_);
|
---|
| 144 | pixels_.CloneOrShare(a.pixels_);
|
---|
[2885] | 145 | if (this->mInfo_) {delete this->mInfo_; this->mInfo_ = NULL;}
|
---|
| 146 | if (a.mInfo_) this->mInfo_ = new DVList(*(a.mInfo_));
|
---|
[908] | 147 | }
|
---|
[2960] | 148 | //! Share the pixel data with object \b a
|
---|
[1419] | 149 | template<class T>
|
---|
| 150 | void SphereThetaPhi<T>::Share(const SphereThetaPhi<T>& a)
|
---|
| 151 | {
|
---|
[908] | 152 |
|
---|
[1419] | 153 | NTheta_= a.NTheta_;
|
---|
| 154 | NPix_ = a.NPix_;
|
---|
| 155 | Omega_ = a.Omega_;
|
---|
| 156 | NPhi_.Share(a.NPhi_);
|
---|
| 157 | TNphi_.Share(a.TNphi_);
|
---|
| 158 | Theta_.Share(a.Theta_);
|
---|
| 159 | pixels_.Share(a.pixels_);
|
---|
[2885] | 160 | if (this->mInfo_) {delete this->mInfo_; this->mInfo_ = NULL;}
|
---|
| 161 | if (a.mInfo_) this->mInfo_ = new DVList(*(a.mInfo_));
|
---|
[1419] | 162 | }
|
---|
| 163 |
|
---|
[980] | 164 | ////////////////////////// methodes de copie/share
|
---|
[2960] | 165 | //! Perform data copy or shares the data
|
---|
[908] | 166 | template<class T>
|
---|
| 167 | SphereThetaPhi<T>& SphereThetaPhi<T>::Set(const SphereThetaPhi<T>& a)
|
---|
[980] | 168 | {
|
---|
[908] | 169 | if (this != &a)
|
---|
| 170 | {
|
---|
[980] | 171 |
|
---|
| 172 |
|
---|
| 173 | if (a.NbPixels() < 1)
|
---|
| 174 | throw RangeCheckError("SphereThetaPhi<T>::Set(a ) - Array a not allocated ! ");
|
---|
| 175 | if (NbPixels() < 1) CloneOrShare(a);
|
---|
| 176 | else CopyElt(a);
|
---|
[2885] | 177 | if (this->mInfo_) delete this->mInfo_;
|
---|
| 178 | this->mInfo_ = NULL;
|
---|
| 179 | if (a.mInfo_) this->mInfo_ = new DVList(*(a.mInfo_));
|
---|
[908] | 180 | }
|
---|
| 181 | return(*this);
|
---|
[980] | 182 | }
|
---|
[908] | 183 |
|
---|
[2960] | 184 | //! Perform data copy or shares the data
|
---|
[980] | 185 | template<class T>
|
---|
| 186 | SphereThetaPhi<T>& SphereThetaPhi<T>::CopyElt(const SphereThetaPhi<T>& a)
|
---|
| 187 | {
|
---|
| 188 | if (NbPixels() < 1)
|
---|
| 189 | throw RangeCheckError("SphereThetaPhi<T>::CopyElt(const SphereThetaPhi<T>& ) - Not Allocated Array ! ");
|
---|
| 190 | if (NbPixels() != a.NbPixels())
|
---|
| 191 | throw(SzMismatchError("SphereThetaPhi<T>::CopyElt(const SphereThetaPhi<T>&) SizeMismatch")) ;
|
---|
[908] | 192 |
|
---|
[980] | 193 | NTheta_= a.NTheta_;
|
---|
| 194 | NPix_ = a.NPix_;
|
---|
| 195 | Omega_ = a.Omega_;
|
---|
[3572] | 196 | for (int_4 k=0; k< NPix_; k++) pixels_(k) = a.pixels_(k);
|
---|
| 197 | for (size_t k=0; k< a.NPhi_.Size(); k++) NPhi_(k) = a.NPhi_(k);
|
---|
| 198 | for (size_t k=0; k< a.TNphi_.Size(); k++) TNphi_(k) = a.TNphi_(k);
|
---|
| 199 | for (size_t k=0; k< a.Theta_.Size(); k++) Theta_(k) = a.Theta_(k);
|
---|
[980] | 200 | return(*this);
|
---|
[908] | 201 |
|
---|
[980] | 202 | }
|
---|
| 203 |
|
---|
[764] | 204 | /* --Methode-- */
|
---|
[2960] | 205 | //! Return total number of pixels
|
---|
[764] | 206 | template <class T>
|
---|
| 207 | int_4 SphereThetaPhi<T>::NbPixels() const
|
---|
| 208 | {
|
---|
| 209 | return(NPix_);
|
---|
| 210 | }
|
---|
| 211 |
|
---|
| 212 | /* --Methode-- */
|
---|
[2960] | 213 | //! Return value of pixel with index k
|
---|
[764] | 214 | template <class T>
|
---|
| 215 | T& SphereThetaPhi<T>::PixVal(int_4 k)
|
---|
| 216 | {
|
---|
| 217 | if((k < 0) || (k >= NPix_))
|
---|
| 218 | {
|
---|
| 219 | throw RangeCheckError("SphereThetaPhi::PIxVal Pixel index out of range");
|
---|
| 220 | }
|
---|
| 221 | return pixels_(k);
|
---|
| 222 | }
|
---|
| 223 |
|
---|
[2960] | 224 | //! Return value of pixel with index k
|
---|
[764] | 225 | template <class T>
|
---|
| 226 | T const& SphereThetaPhi<T>::PixVal(int_4 k) const
|
---|
| 227 | {
|
---|
| 228 | if((k < 0) || (k >= NPix_))
|
---|
| 229 | {
|
---|
| 230 | throw RangeCheckError("SphereThetaPhi::PIxVal Pixel index out of range");
|
---|
| 231 | }
|
---|
| 232 | return *(pixels_.Data()+k);
|
---|
| 233 | }
|
---|
| 234 |
|
---|
| 235 | /* --Methode-- */
|
---|
[2960] | 236 | //! Return true if teta,phi in map
|
---|
[764] | 237 | template <class T>
|
---|
| 238 | bool SphereThetaPhi<T>::ContainsSph(double /*theta*/, double /*phi*/) const
|
---|
| 239 | {
|
---|
| 240 | return(true);
|
---|
| 241 | }
|
---|
| 242 |
|
---|
| 243 | /* --Methode-- */
|
---|
[2960] | 244 | //! Return index of the pixel corresponding to direction (theta, phi).
|
---|
[764] | 245 | template <class T>
|
---|
| 246 | int_4 SphereThetaPhi<T>::PixIndexSph(double theta, double phi) const
|
---|
| 247 | {
|
---|
| 248 | double dphi;
|
---|
[2990] | 249 | int_4 i,k;
|
---|
[764] | 250 | bool fgzn = false;
|
---|
| 251 |
|
---|
| 252 | if((theta > Pi) || (theta < 0.)) return(-1);
|
---|
| 253 | if((phi < 0.) || (phi > DeuxPi)) return(-1);
|
---|
| 254 | if(theta > Pi*0.5) {fgzn = true; theta = Pi-theta;}
|
---|
| 255 |
|
---|
| 256 | // La bande d'indice kt est limitée par les valeurs de theta contenues dans
|
---|
| 257 | // Theta_[kt] et Theta_[kt+1]
|
---|
| 258 | for( i=1; i< NTheta_; i++ )
|
---|
| 259 | if( theta < Theta_(i) ) break;
|
---|
| 260 |
|
---|
| 261 | dphi= DeuxPi/(double)NPhi_(i-1);
|
---|
| 262 |
|
---|
| 263 | if (fgzn) k= NPix_-TNphi_(i)+(int_4)(phi/dphi);
|
---|
| 264 | else k= TNphi_(i-1)+(int_4)(phi/dphi);
|
---|
| 265 | return(k);
|
---|
| 266 | }
|
---|
| 267 |
|
---|
| 268 | /* --Methode-- */
|
---|
[2960] | 269 | //! Return (theta,phi) coordinates of middle of pixel with index k
|
---|
[764] | 270 | template <class T>
|
---|
| 271 | void SphereThetaPhi<T>::PixThetaPhi(int_4 k,double& theta,double& phi) const
|
---|
| 272 | {
|
---|
[2990] | 273 | int_4 i;
|
---|
[764] | 274 | bool fgzn = false;
|
---|
| 275 |
|
---|
| 276 | if((k < 0) || (k >= NPix_)) {theta = -99999.; phi = -99999.; return; }
|
---|
| 277 | if( k >= NPix_/2) {fgzn = true; k = NPix_-1-k;}
|
---|
| 278 |
|
---|
| 279 | // recupère l'indice i de la tranche qui contient le pixel k
|
---|
| 280 | for( i=0; i< NTheta_; i++ )
|
---|
| 281 | if( k < TNphi_(i+1) ) break;
|
---|
| 282 |
|
---|
| 283 | // angle theta
|
---|
| 284 | theta= 0.5*(Theta_(i)+Theta_(i+1));
|
---|
| 285 | if (fgzn) theta= Pi-theta;
|
---|
| 286 |
|
---|
| 287 | // angle phi
|
---|
| 288 | k -= TNphi_(i);
|
---|
| 289 | phi= DeuxPi/(double)NPhi_(i)*(double)(k+.5);
|
---|
| 290 | if (fgzn) phi= DeuxPi-phi;
|
---|
| 291 | }
|
---|
| 292 |
|
---|
[2960] | 293 | //! Setting pixel values to a constant
|
---|
[764] | 294 | template <class T>
|
---|
| 295 | T SphereThetaPhi<T>::SetPixels(T v)
|
---|
| 296 | {
|
---|
| 297 | pixels_.Reset(v);
|
---|
| 298 | return(v);
|
---|
| 299 | }
|
---|
| 300 |
|
---|
[2960] | 301 | /*!
|
---|
| 302 | \brief Pixel Solid angle (steradians)
|
---|
| 303 | All the pixels have the same solid angle. The dummy argument is
|
---|
| 304 | for compatibility with eventual pixelizations which would not
|
---|
| 305 | fulfil this requirement.
|
---|
| 306 | */
|
---|
[764] | 307 | template <class T>
|
---|
| 308 | double SphereThetaPhi<T>::PixSolAngle(int_4 /*dummy*/) const
|
---|
| 309 |
|
---|
| 310 | {
|
---|
| 311 | return Omega_;
|
---|
| 312 | }
|
---|
| 313 |
|
---|
| 314 | /* --Methode-- */
|
---|
[2960] | 315 | //! Return values of theta,phi which limit the pixel with index k
|
---|
[764] | 316 | template <class T>
|
---|
| 317 | void SphereThetaPhi<T>::Limits(int_4 k,double& tetMin,double& tetMax,double& phiMin,double& phiMax)
|
---|
| 318 | {
|
---|
[2990] | 319 | int_4 j;
|
---|
[764] | 320 | double dphi;
|
---|
| 321 | bool fgzn= false;
|
---|
| 322 |
|
---|
| 323 | if((k < 0) || (k >= NPix_)) {
|
---|
| 324 | tetMin= -99999.;
|
---|
| 325 | phiMin= -99999.;
|
---|
| 326 | tetMax= -99999.;
|
---|
| 327 | phiMax= -99999.;
|
---|
| 328 | return;
|
---|
| 329 | }
|
---|
| 330 |
|
---|
| 331 | // si on se trouve dans l'hémisphère Sud
|
---|
| 332 | if(k >= NPix_/2) {
|
---|
| 333 | fgzn= true;
|
---|
| 334 | k= NPix_-1-k;
|
---|
| 335 | }
|
---|
| 336 |
|
---|
| 337 | // on recupere l'indice i de la tranche qui contient le pixel k
|
---|
[2990] | 338 | int_4 i;
|
---|
[764] | 339 | for( i=0; i< NTheta_; i++ )
|
---|
| 340 | if(k < TNphi_(i+1)) break;
|
---|
| 341 |
|
---|
| 342 | // valeurs limites de theta dans l'hemisphere Nord
|
---|
| 343 | tetMin= Theta_(i);
|
---|
| 344 | tetMax= Theta_(i+1);
|
---|
| 345 | // valeurs limites de theta dans l'hemisphere Sud
|
---|
| 346 | if (fgzn) {
|
---|
| 347 | tetMin= Pi - Theta_(i+1);
|
---|
| 348 | tetMax= Pi - Theta_(i);
|
---|
| 349 | }
|
---|
| 350 |
|
---|
| 351 | // pixel correspondant dans l'hemisphere Nord
|
---|
| 352 | if (fgzn) k= TNphi_(i+1)-k+TNphi_(i)-1;
|
---|
| 353 |
|
---|
| 354 | // indice j de discretisation ( phi= j*dphi )
|
---|
| 355 | j= k-TNphi_(i);
|
---|
| 356 | dphi= DeuxPi/(double)NPhi_(i);
|
---|
| 357 |
|
---|
| 358 | // valeurs limites de phi
|
---|
| 359 | phiMin= dphi*(double)(j);
|
---|
| 360 | phiMax= dphi*(double)(j+1);
|
---|
| 361 | return;
|
---|
| 362 | }
|
---|
| 363 |
|
---|
| 364 | /* --Methode-- */
|
---|
[2960] | 365 | //! Return number of theta-slices on the sphere
|
---|
[764] | 366 | template <class T>
|
---|
| 367 | uint_4 SphereThetaPhi<T>::NbThetaSlices() const
|
---|
| 368 | {
|
---|
| 369 | if (NTheta_<=0)
|
---|
| 370 | {
|
---|
| 371 | throw PException(" sphere not pixelized, NbSlice=0 ");
|
---|
| 372 | }
|
---|
| 373 | return( 2*NTheta_);
|
---|
| 374 | }
|
---|
| 375 |
|
---|
| 376 | /* --Methode-- */
|
---|
[2960] | 377 | //! Return number of pixels along the phi-direction of the kt-th slice
|
---|
[764] | 378 | template <class T>
|
---|
| 379 | int_4 SphereThetaPhi<T>::NPhi(int_4 kt) const
|
---|
| 380 | {
|
---|
[2990] | 381 | int_4 nbpix;
|
---|
[764] | 382 | // verification
|
---|
| 383 | if((kt < 0) || (kt >= 2*NTheta_)) return(-1);
|
---|
| 384 |
|
---|
| 385 | // si on se trouve dans l'hemisphere Sud
|
---|
| 386 | if(kt >= NTheta_) {
|
---|
| 387 | kt= 2*NTheta_-1-kt;
|
---|
| 388 | }
|
---|
| 389 |
|
---|
| 390 | // nombre de pixels
|
---|
| 391 | nbpix= NPhi_(kt);
|
---|
| 392 | return(nbpix);
|
---|
| 393 | }
|
---|
| 394 |
|
---|
| 395 |
|
---|
| 396 | /* --Methode-- */
|
---|
[2960] | 397 | //! Return theta values which limit the slice kt
|
---|
[764] | 398 | template <class T>
|
---|
[2969] | 399 | void SphereThetaPhi<T>::Theta(int_4 kt,double& tetMin,double& tetMax) const
|
---|
[764] | 400 | {
|
---|
| 401 | bool fgzn= false;
|
---|
| 402 | // verification
|
---|
| 403 | if( (kt< 0) || (kt>= 2*NTheta_) ) {
|
---|
| 404 | tetMin= -99999.;
|
---|
| 405 | tetMax= -99999.;
|
---|
| 406 | return;
|
---|
| 407 | }
|
---|
| 408 |
|
---|
| 409 | // si on se trouve dans l'hemisphere Sud
|
---|
| 410 | if( kt >= NTheta_ ) {
|
---|
| 411 | fgzn= true;
|
---|
| 412 | kt= 2*NTheta_-1-kt;
|
---|
| 413 | }
|
---|
| 414 |
|
---|
| 415 | // valeurs limites de theta dans l'hemisphere Nord
|
---|
| 416 | tetMin= Theta_(kt);
|
---|
| 417 | tetMax= Theta_(kt+1);
|
---|
| 418 | // valeurs limites de theta dans l'hemisphere Sud
|
---|
| 419 | if (fgzn) {
|
---|
| 420 | tetMin= Pi - Theta_(kt+1);
|
---|
| 421 | tetMax= Pi - Theta_(kt);
|
---|
| 422 | }
|
---|
| 423 | }
|
---|
| 424 |
|
---|
| 425 | /* --Methode-- */
|
---|
[2960] | 426 | //! Return values of phi which limit the jp-th pixel of the kt-th slice
|
---|
[764] | 427 | template <class T>
|
---|
[2969] | 428 | void SphereThetaPhi<T>::Phi(int_4 kt,int_4 jp,double& phiMin,double& phiMax) const
|
---|
[764] | 429 | {
|
---|
| 430 | // verification
|
---|
| 431 | if((kt < 0) || (kt >= 2*NTheta_)) {
|
---|
| 432 | phiMin= -99999.;
|
---|
| 433 | phiMax= -99999.;
|
---|
| 434 | return;
|
---|
| 435 | }
|
---|
| 436 |
|
---|
| 437 | // si on se trouve dans l'hemisphere Sud
|
---|
| 438 | if(kt >= NTheta_) kt= 2*NTheta_-1-kt;
|
---|
| 439 |
|
---|
| 440 | // verifie si la tranche kt contient au moins jp pixels
|
---|
| 441 | if( (jp< 0) || (jp >= NPhi_(kt)) ) {
|
---|
| 442 | phiMin= -88888.;
|
---|
| 443 | phiMax= -88888.;
|
---|
| 444 | return;
|
---|
| 445 | }
|
---|
| 446 |
|
---|
| 447 | double dphi= DeuxPi/(double)NPhi_(kt);
|
---|
| 448 | phiMin= dphi*(double)(jp);
|
---|
| 449 | phiMax= dphi*(double)(jp+1);
|
---|
| 450 | return;
|
---|
| 451 | }
|
---|
| 452 |
|
---|
| 453 | /* --Methode-- */
|
---|
[2960] | 454 | //! Return pixel index with sequence index jp in the slice kt
|
---|
[764] | 455 | template <class T>
|
---|
| 456 | int_4 SphereThetaPhi<T>::Index(int_4 kt,int_4 jp) const
|
---|
| 457 | {
|
---|
[2990] | 458 | int_4 k;
|
---|
[764] | 459 | bool fgzn= false;
|
---|
| 460 |
|
---|
| 461 | // si on se trouve dans l'hemisphere Sud
|
---|
| 462 | if(kt >= NTheta_) {
|
---|
| 463 | fgzn= true;
|
---|
| 464 | kt= 2*NTheta_-1-kt;
|
---|
| 465 | }
|
---|
| 466 |
|
---|
| 467 | // si la tranche kt contient au moins i pixels
|
---|
| 468 | if( (jp>=0) && (jp<NPhi_(kt)) )
|
---|
| 469 | {
|
---|
| 470 | // dans l'hemisphere Sud
|
---|
| 471 | if (fgzn) k= NPix_-TNphi_(kt+1)+jp;
|
---|
| 472 | // dans l'hemisphere Nord
|
---|
| 473 | else k= TNphi_(kt)+jp;
|
---|
| 474 | }
|
---|
| 475 | else
|
---|
| 476 | {
|
---|
| 477 | k= 9999;
|
---|
| 478 | printf("\n la tranche %d ne contient pas un pixel de rang %d",kt,jp);
|
---|
| 479 | }
|
---|
| 480 | return(k);
|
---|
| 481 | }
|
---|
| 482 |
|
---|
| 483 | /* --Methode-- */
|
---|
[2960] | 484 | //! Return indices kt (theta) and jp (phi) of pixel with index k
|
---|
[764] | 485 | template <class T>
|
---|
| 486 | void SphereThetaPhi<T>::ThetaPhiIndex(int_4 k,int_4& kt,int_4& jp)
|
---|
| 487 | {
|
---|
| 488 | bool fgzn= false;
|
---|
| 489 | // si on se trouve dans l'hemisphere Sud
|
---|
| 490 | if(k >= NPix_/2)
|
---|
| 491 | {
|
---|
| 492 | fgzn= true;
|
---|
| 493 | k= NPix_-1-k;
|
---|
| 494 | }
|
---|
| 495 |
|
---|
| 496 | // on recupere l'indice kt de la tranche qui contient le pixel k
|
---|
[2990] | 497 | int_4 i;
|
---|
[764] | 498 | for(i = 0; i < NTheta_; i++)
|
---|
| 499 | if(k < TNphi_(i+1)) break;
|
---|
| 500 |
|
---|
| 501 | // indice kt de tranche
|
---|
| 502 | if (fgzn) kt= 2*NTheta_-1-i;
|
---|
| 503 | else kt= i;
|
---|
| 504 |
|
---|
| 505 | // indice jp de pixel
|
---|
| 506 | if (fgzn) jp= TNphi_(i+1)-k-1;
|
---|
| 507 | else jp= k-TNphi_(i);
|
---|
| 508 | }
|
---|
[2960] | 509 | /*!
|
---|
| 510 | \brief achieve the splitting into pixels
|
---|
| 511 | m has the same signification as for the constructor
|
---|
| 512 |
|
---|
| 513 | Each theta-slice of the north hemisphere will be spitted starting f
|
---|
| 514 | from phi=0 ...
|
---|
| 515 |
|
---|
| 516 | South hemisphere is scanned in the same direction according to phi
|
---|
| 517 | and from equator to the pole (the pixel following the last one of
|
---|
| 518 | the slice closest to the equator with z>0, is the pixel with lowest
|
---|
| 519 | phi of the slice closest of the equator with z<0).
|
---|
| 520 | */
|
---|
[764] | 521 | template <class T>
|
---|
| 522 | void SphereThetaPhi<T>::Pixelize(int_4 m)
|
---|
| 523 |
|
---|
| 524 | //--
|
---|
| 525 | {
|
---|
[2990] | 526 | int_4 ntotpix,j;
|
---|
[764] | 527 |
|
---|
| 528 | // Decodage et controle des arguments d'appel :
|
---|
[2960] | 529 | // au moins 2 et au plus 524288 bandes d'un hemisphere en theta
|
---|
[764] | 530 | if (m < 2) m = 2;
|
---|
[2960] | 531 | if (m > 524288) m = 524288;
|
---|
[764] | 532 |
|
---|
| 533 | // On memorise les arguments d'appel
|
---|
| 534 | NTheta_ = m;
|
---|
| 535 |
|
---|
| 536 | // On commence par decouper l'hemisphere z>0.
|
---|
| 537 | // Creation des vecteurs contenant :
|
---|
| 538 | // Les valeurs limites de theta (une valeur de plus que le nombre de bandes...)
|
---|
| 539 | // Theta_= new double[m+1];
|
---|
| 540 | Theta_.ReSize(m+1);
|
---|
| 541 |
|
---|
| 542 | // Le nombre de pixels en phi de chacune des bandes en theta
|
---|
| 543 | // NPhi_ = new int_4[m];
|
---|
[980] | 544 | // une taille de m suffit, mais je mets m+1 pour que les 3 tableaux aient
|
---|
| 545 | // la meme taille pour une manipulation plus faciles par la librairie
|
---|
| 546 | // cfitsio -- GLM (13-04-00)
|
---|
| 547 | NPhi_.ReSize(m+1);
|
---|
[764] | 548 |
|
---|
| 549 | // Le nombre/Deuxpi total des pixels contenus dans les bandes de z superieur a une
|
---|
| 550 | // bande donnee (mTPphi[m] contient le nombre de pixels total de l'hemisphere)
|
---|
| 551 | // TNphi_= new int_4[m+1];
|
---|
| 552 | TNphi_.ReSize(m+1);
|
---|
| 553 |
|
---|
| 554 | // Calcul du nombre total de pixels dans chaque bande pour optimiser
|
---|
| 555 | // le rapport largeur/hauteur des pixels
|
---|
| 556 |
|
---|
| 557 | //calotte polaire
|
---|
| 558 | TNphi_(0)= 0;
|
---|
| 559 | NPhi_(0) = 1;
|
---|
| 560 |
|
---|
| 561 | //bandes jusqu'a l'equateur
|
---|
| 562 | for(j = 1; j < m; j++)
|
---|
| 563 | {
|
---|
| 564 | TNphi_(j)= TNphi_(j-1)+NPhi_(j-1);
|
---|
| 565 | NPhi_(j) = (int_4)(.5+4.*(double)(m-.5)*sin(Pi*(double)j/(double)(2.*m-1.))) ;
|
---|
| 566 | }
|
---|
| 567 |
|
---|
| 568 | // Nombre total de pixels sur l'hemisphere
|
---|
| 569 | ntotpix = TNphi_(m-1)+NPhi_(m-1);
|
---|
| 570 | TNphi_(m)= ntotpix;
|
---|
| 571 | // et sur la sphere entiere
|
---|
| 572 | NPix_= 2*ntotpix;
|
---|
| 573 |
|
---|
| 574 | // Creation et initialisation du vecteur des contenus des pixels
|
---|
| 575 | pixels_.ReSize(NPix_);
|
---|
| 576 | pixels_.Reset();
|
---|
| 577 |
|
---|
| 578 | // Determination des limites des bandes en theta :
|
---|
| 579 | // omeg est l'angle solide couvert par chaque pixel,
|
---|
| 580 | // une bande donnee kt couvre un angle solide NPhi_[kt]*omeg
|
---|
| 581 | // egal a 2* Pi*(cos Theta_[kt]-cos Theta_[kt+1]). De meme, l'angle solide
|
---|
| 582 | //de la
|
---|
| 583 | // calotte allant du pole a la limite haute de la bande kt vaut
|
---|
| 584 | // 2* Pi*(1.-cos Theta_[kt+1])= TNphi_[kt]*omeg...
|
---|
| 585 |
|
---|
| 586 | double omeg2pi= 1./(double)ntotpix;
|
---|
| 587 | Omega_ = omeg2pi*DeuxPi;
|
---|
| 588 |
|
---|
| 589 | for(j=0; j <= m; j++)
|
---|
| 590 | {
|
---|
| 591 | Theta_(j)= acos(1.-(double)TNphi_(j)*omeg2pi);
|
---|
| 592 | }
|
---|
| 593 | }
|
---|
| 594 |
|
---|
[2968] | 595 | //! Return the theta angle for slice defined by \b index
|
---|
| 596 | template <class T>
|
---|
| 597 | r_8 SphereThetaPhi<T>::ThetaOfSlice(int_4 index) const
|
---|
| 598 | {
|
---|
| 599 | if(index < 0 || index >= 2*NTheta_)
|
---|
| 600 | throw RangeCheckError("SphereThetaPhi::ThetaOfSlice() index out of range");
|
---|
| 601 | double tet1, tet2;
|
---|
| 602 | Theta(index, tet1, tet2);
|
---|
| 603 | return 0.5*(tet1+tet2);
|
---|
| 604 | }
|
---|
[2960] | 605 |
|
---|
[2973] | 606 | //! Return true : All theta slices have a symmetric slice at Pi-Theta in SphereThetaPhi
|
---|
| 607 | template <class T>
|
---|
| 608 | bool SphereThetaPhi<T>::HasSymThetaSlice() const
|
---|
| 609 | {
|
---|
| 610 | return true;
|
---|
| 611 | }
|
---|
| 612 | //! Return the slice index for the symmetric slice at theta=Pi-ThetaOfSlice(idx)
|
---|
| 613 | template <class T>
|
---|
| 614 | int_4 SphereThetaPhi<T>::GetSymThetaSliceIndex(int_4 idx) const
|
---|
| 615 | {
|
---|
[3572] | 616 | if(idx < 0 || idx >= (int_4)NbThetaSlices())
|
---|
[2973] | 617 | throw RangeCheckError("SphereThetaPhi::GetSymThetaSliceIndex index out of range");
|
---|
| 618 | return (NbThetaSlices()-1-idx);
|
---|
| 619 | }
|
---|
| 620 |
|
---|
[2960] | 621 | /*!
|
---|
| 622 | \brief return a Theta slice information
|
---|
| 623 | For a theta-slice with index 'index', return :
|
---|
| 624 | the corresponding "theta"
|
---|
| 625 | a vector containing the phi's of the pixels of the slice
|
---|
| 626 | a vector containing the corresponding values of pixels
|
---|
| 627 | */
|
---|
[764] | 628 | template <class T>
|
---|
| 629 | void SphereThetaPhi<T>::GetThetaSlice(int_4 index,r_8& theta, TVector<r_8>& phi, TVector<T>& value) const
|
---|
| 630 |
|
---|
| 631 | {
|
---|
| 632 |
|
---|
[3572] | 633 | if(index < 0 || index >= (int_4)NbThetaSlices())
|
---|
[2985] | 634 | throw RangeCheckError("SphereThetaPhi::GetThetaSlice(idx...) index out of range");
|
---|
[2968] | 635 |
|
---|
[764] | 636 |
|
---|
[2990] | 637 | int_4 iring= Index(index,0);
|
---|
| 638 | int_4 lring = NPhi(index);
|
---|
[764] | 639 |
|
---|
| 640 | phi.ReSize(lring);
|
---|
| 641 | value.ReSize(lring);
|
---|
| 642 | double Te= 0.;
|
---|
| 643 | double Fi= 0.;
|
---|
[2985] | 644 | PixThetaPhi(iring,Te,Fi);
|
---|
| 645 | double DFi = DeuxPi/(double)NPhi(index);
|
---|
[2990] | 646 | for(int_4 kk = 0; kk < lring; kk++) {
|
---|
[2985] | 647 | value(kk)= pixels_(kk+iring);
|
---|
| 648 | phi(kk)= Fi;
|
---|
| 649 | Fi += DFi;
|
---|
| 650 | }
|
---|
[764] | 651 | theta= Te;
|
---|
| 652 | }
|
---|
| 653 |
|
---|
[2960] | 654 | /*
|
---|
| 655 | \brief return information on a theta slice
|
---|
| 656 | For a theta-slice with index 'index', return :
|
---|
| 657 | the corresponding "theta"
|
---|
| 658 | the corresponding "phi" for first pixel of the slice
|
---|
| 659 | a vector containing the indices of the pixels of the slice
|
---|
| 660 | (equally distributed in phi)
|
---|
| 661 | a vector containing the corresponding values of pixels
|
---|
| 662 | */
|
---|
[764] | 663 | template <class T>
|
---|
| 664 | void SphereThetaPhi<T>::GetThetaSlice(int_4 index,r_8& theta, r_8& phi0,TVector<int_4>& pixelIndices, TVector<T>& value) const
|
---|
| 665 |
|
---|
| 666 | {
|
---|
| 667 |
|
---|
[3572] | 668 | if(index < 0 || index >= (int_4)NbThetaSlices())
|
---|
[2985] | 669 | throw RangeCheckError("SphereThetaPhi::GetThetaSlice(idx...) idx out of range");
|
---|
[764] | 670 |
|
---|
[2990] | 671 | int_4 iring= Index(index,0);
|
---|
| 672 | int_4 lring = NPhi(index);
|
---|
[764] | 673 |
|
---|
| 674 | pixelIndices.ReSize(lring);
|
---|
| 675 | value.ReSize(lring);
|
---|
[2990] | 676 | for(int_4 kk = 0; kk < lring; kk++) {
|
---|
[2985] | 677 | pixelIndices(kk)=kk+iring ;
|
---|
| 678 | value(kk)= pixels_(kk+iring);
|
---|
| 679 | }
|
---|
| 680 | PixThetaPhi(iring,theta,phi0);
|
---|
[764] | 681 | }
|
---|
| 682 |
|
---|
[2990] | 683 | //! return a pointer to the specified slice pixel data
|
---|
| 684 | template <class T>
|
---|
| 685 | T* SphereThetaPhi<T>::GetThetaSliceDataPtr(int_4 index)
|
---|
| 686 | {
|
---|
[3572] | 687 | if(index < 0 || index >= (int_4)NbThetaSlices())
|
---|
[2990] | 688 | throw RangeCheckError("SphereThetaPhi::GetThetaSliceDataPtr(idx) idx out of range");
|
---|
| 689 | return pixels_.Begin()+Index(index,0);
|
---|
| 690 | }
|
---|
[764] | 691 |
|
---|
| 692 |
|
---|
| 693 | template <class T>
|
---|
| 694 | void SphereThetaPhi<T>::print(ostream& os) const
|
---|
| 695 | {
|
---|
[2987] | 696 | this->Show(os);
|
---|
[2985] | 697 | os << "SphereThetaPhi<T> NTheta_= " << NTheta_ << " NPix_ = " << NPix_
|
---|
| 698 | << " Omega_ = " << Omega_ << endl;
|
---|
[2885] | 699 | if(this->mInfo_) os << " DVList Info= " << *(this->mInfo_) << endl;
|
---|
[764] | 700 |
|
---|
[2985] | 701 | os << "... NPhi_ Values : ";
|
---|
[2990] | 702 | int_4 i;
|
---|
[764] | 703 | for(i=0; i < NTheta_; i++)
|
---|
| 704 | {
|
---|
| 705 | if(i%5 == 0) os << endl;
|
---|
| 706 | os << NPhi_(i) <<", ";
|
---|
| 707 | }
|
---|
| 708 | os << endl;
|
---|
| 709 |
|
---|
[2985] | 710 | os << "... Theta_ Values : ";
|
---|
[764] | 711 | for(i=0; i < NTheta_+1; i++)
|
---|
| 712 | {
|
---|
| 713 | if(i%5 == 0) os << endl;
|
---|
| 714 | os << Theta_(i) <<", ";
|
---|
| 715 | }
|
---|
| 716 | os << endl;
|
---|
| 717 |
|
---|
[2985] | 718 | os << "... TNphi_ Values : ";
|
---|
[764] | 719 | for(i=0; i < NTheta_+1; i++)
|
---|
| 720 | {
|
---|
| 721 | if(i%5 == 0) os << endl;
|
---|
| 722 | os << TNphi_(i) <<", ";
|
---|
| 723 | }
|
---|
| 724 | os << endl;
|
---|
| 725 |
|
---|
[2985] | 726 | os << "... Pixel Values : ";
|
---|
[764] | 727 | for(i=0; i < NPix_; i++)
|
---|
| 728 | {
|
---|
| 729 | if(i%5 == 0) os << endl;
|
---|
| 730 | os << pixels_(i) <<", ";
|
---|
| 731 | }
|
---|
| 732 | os << endl;
|
---|
| 733 | }
|
---|
| 734 |
|
---|
[1419] | 735 | // ...... Operations de calcul ......
|
---|
[764] | 736 |
|
---|
[1419] | 737 |
|
---|
| 738 | //! Fill a SphereThetaPhi with a constant value \b a
|
---|
| 739 | template <class T>
|
---|
| 740 | SphereThetaPhi<T>& SphereThetaPhi<T>::SetT(T a)
|
---|
| 741 | {
|
---|
| 742 | if (NbPixels() < 1)
|
---|
| 743 | throw RangeCheckError("SphereThetaPhi<T>::SetT(T ) - SphereThetaPhi not dimensionned ! ");
|
---|
| 744 | pixels_ = a;
|
---|
| 745 | return (*this);
|
---|
| 746 | }
|
---|
| 747 |
|
---|
| 748 | /*! Add a constant value \b x to a SphereThetaPhi */
|
---|
| 749 | template <class T>
|
---|
| 750 | SphereThetaPhi<T>& SphereThetaPhi<T>::Add(T a)
|
---|
| 751 | {
|
---|
| 752 | if (NbPixels()< 1)
|
---|
| 753 | throw RangeCheckError("SphereThetaPhi<T>::Add(T ) - SphereThetaPhi not dimensionned ! ");
|
---|
| 754 | pixels_ += a;
|
---|
| 755 | return (*this);
|
---|
| 756 | }
|
---|
| 757 |
|
---|
| 758 | /*! Substract a constant value \b a to a SphereThetaPhi */
|
---|
| 759 | template <class T>
|
---|
[1624] | 760 | SphereThetaPhi<T>& SphereThetaPhi<T>::Sub(T a,bool fginv)
|
---|
[1419] | 761 | {
|
---|
| 762 | if (NbPixels()< 1)
|
---|
| 763 | throw RangeCheckError("SphereThetaPhi<T>::Sub(T ) - SphereThetaPhi not dimensionned ! ");
|
---|
[1624] | 764 | pixels_.Sub(a,fginv);
|
---|
[1419] | 765 | return (*this);
|
---|
| 766 | }
|
---|
| 767 |
|
---|
| 768 | /*! multiply a SphereThetaPhi by a constant value \b a */
|
---|
| 769 | template <class T>
|
---|
| 770 | SphereThetaPhi<T>& SphereThetaPhi<T>::Mul(T a)
|
---|
| 771 | {
|
---|
| 772 | if (NbPixels()< 1)
|
---|
| 773 | throw RangeCheckError("SphereThetaPhi<T>::Mul(T ) - SphereThetaPhi not dimensionned ! ");
|
---|
| 774 | pixels_ *= a;
|
---|
| 775 | return (*this);
|
---|
| 776 | }
|
---|
| 777 |
|
---|
| 778 | /*! divide a SphereThetaPhi by a constant value \b a */
|
---|
| 779 | template <class T>
|
---|
| 780 | SphereThetaPhi<T>& SphereThetaPhi<T>::Div(T a)
|
---|
| 781 | {
|
---|
| 782 | if (NbPixels()< 1)
|
---|
| 783 | throw RangeCheckError("SphereThetaPhi<T>::Div(T ) - SphereThetaPhi not dimensionned ! ");
|
---|
| 784 | pixels_ /= a;
|
---|
| 785 | return (*this);
|
---|
| 786 | }
|
---|
| 787 |
|
---|
| 788 | // >>>> Operations avec 2nd membre de type SphereThetaPhi
|
---|
| 789 | //! Add two SphereThetaPhi
|
---|
| 790 |
|
---|
| 791 | template <class T>
|
---|
| 792 | SphereThetaPhi<T>& SphereThetaPhi<T>::AddElt(const SphereThetaPhi<T>& a)
|
---|
| 793 | {
|
---|
| 794 | if (NbPixels()!= a.NbPixels())
|
---|
| 795 | {
|
---|
| 796 | throw(SzMismatchError("SphereThetaPhi<T>::AddElt(const SphereThetaPhi<T>&) SizeMismatch")) ;
|
---|
| 797 | }
|
---|
| 798 | pixels_ += a.pixels_;
|
---|
| 799 | return (*this);
|
---|
| 800 | }
|
---|
| 801 |
|
---|
| 802 | //! Substract two SphereThetaPhi
|
---|
| 803 | template <class T>
|
---|
| 804 | SphereThetaPhi<T>& SphereThetaPhi<T>::SubElt(const SphereThetaPhi<T>& a)
|
---|
| 805 | {
|
---|
| 806 | if (NbPixels()!= a.NbPixels())
|
---|
| 807 | {
|
---|
| 808 | throw(SzMismatchError("SphereThetaPhi<T>::SubElt(const SphereThetaPhi<T>&) SizeMismatch")) ;
|
---|
| 809 | }
|
---|
| 810 | pixels_ -= a.pixels_;
|
---|
| 811 | return (*this);
|
---|
| 812 | }
|
---|
| 813 |
|
---|
| 814 | //! Multiply two SphereThetaPhi (elements by elements)
|
---|
| 815 | template <class T>
|
---|
| 816 | SphereThetaPhi<T>& SphereThetaPhi<T>::MulElt(const SphereThetaPhi<T>& a)
|
---|
| 817 | {
|
---|
| 818 | if (NbPixels()!= a.NbPixels())
|
---|
| 819 | {
|
---|
[1551] | 820 | throw(SzMismatchError("SphereThetaPhi<T>::MulElt(const SphereThetaPhi<T>&) SizeMismatch")) ;
|
---|
[1419] | 821 | }
|
---|
| 822 | pixels_ *= a.pixels_;
|
---|
| 823 | return (*this);
|
---|
| 824 | }
|
---|
| 825 |
|
---|
[1551] | 826 | //! Divide two SphereThetaPhi (elements by elements) - No protection for divide by 0
|
---|
| 827 | template <class T>
|
---|
| 828 | SphereThetaPhi<T>& SphereThetaPhi<T>::DivElt(const SphereThetaPhi<T>& a)
|
---|
| 829 | {
|
---|
| 830 | if (NbPixels()!= a.NbPixels())
|
---|
| 831 | {
|
---|
| 832 | throw(SzMismatchError("SphereThetaPhi<T>::DivElt(const SphereThetaPhi<T>&) SizeMismatch")) ;
|
---|
| 833 | }
|
---|
| 834 | pixels_ /= a.pixels_;
|
---|
| 835 | return (*this);
|
---|
| 836 | }
|
---|
[1419] | 837 |
|
---|
| 838 |
|
---|
[1551] | 839 |
|
---|
[764] | 840 | #ifdef __CXX_PRAGMA_TEMPLATES__
|
---|
[2082] | 841 | #pragma define_template SphereThetaPhi<int_4>
|
---|
[764] | 842 | #pragma define_template SphereThetaPhi<r_8>
|
---|
| 843 | #pragma define_template SphereThetaPhi<r_4>
|
---|
| 844 | #pragma define_template SphereThetaPhi< complex<r_4> >
|
---|
| 845 | #pragma define_template SphereThetaPhi< complex<r_8> >
|
---|
| 846 | #endif
|
---|
| 847 | #if defined(ANSI_TEMPLATES) || defined(GNU_TEMPLATES)
|
---|
[2869] | 848 | namespace SOPHYA {
|
---|
[2082] | 849 | template class SphereThetaPhi<int_4>;
|
---|
[764] | 850 | template class SphereThetaPhi<r_8>;
|
---|
| 851 | template class SphereThetaPhi<r_4>;
|
---|
| 852 | template class SphereThetaPhi< complex<r_4> >;
|
---|
| 853 | template class SphereThetaPhi< complex<r_8> >;
|
---|
[2869] | 854 | }
|
---|
[764] | 855 | #endif
|
---|