source: Sophya/trunk/SophyaPI/PIext/nomskymapadapter.cc@ 2952

Last change on this file since 2952 was 2933, checked in by ansari, 19 years ago

Suppression de toute reference a FITS (en particulier NObjMgrAdapter::ReadFits/SaveFits supprime) dans le module PIext - Makefile et smakefile refait , Reza 3 Avril 2006

File size: 11.1 KB
Line 
1#include "sopnamsp.h"
2#include "machdefs.h"
3#include <stdlib.h>
4#include <math.h>
5#include <typeinfo>
6#include <iostream>
7#include <string>
8#include <complex>
9
10#include "datatype.h"
11
12#include "nomskymapadapter.h"
13#include "skymap.h"
14#include "pitvmaad.h"
15#include "complexios.h"
16
17// Valeur par defaut pour la projection MolleWeide, en dehors de la sphere
18static double _prjmol_defval = 0.;
19void Set_Project_Mol_DefVal(double def)
20{
21 _prjmol_defval = def;
22 return;
23}
24
25// Classe array adapter pour localMap
26template <class T>
27class LocalMapArrAdapter : public P2DArrayAdapter {
28public:
29 LocalMapArrAdapter(LocalMap<T>* lm, bool d=false) :
30 P2DArrayAdapter(lm->SizeX(), lm->SizeY())
31 { ad = d; map = lm; }
32
33 virtual ~LocalMapArrAdapter() { if (ad) delete map; }
34 virtual double Value(int ix, int iy) { return((*map)(ix, iy)); }
35
36protected :
37 bool ad;
38 LocalMap<T>* map;
39};
40
41/* --Methode-- */
42DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
43double LocalMapArrAdapter< complex<float> >::Value(int ix, int iy)
44{
45double re,im;
46re = (*map)(iy, ix).real();
47im = (*map)(iy, ix).imag();
48return(sqrt(re*re+im*im));
49}
50/* --Methode-- */
51DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
52double LocalMapArrAdapter< complex<double> >::Value(int ix, int iy)
53{
54double re,im;
55re = (*map)(iy, ix).real();
56im = (*map)(iy, ix).imag();
57return(sqrt(re*re+im*im));
58}
59
60//----------------------------------------------------------------
61// Class Adaptateur d'objet (Pour NamedObjMgr) d'objet PixelMap<T>
62//----------------------------------------------------------------
63
64
65/* --Methode-- */
66template <class T>
67NOMAdapter_PixelMap<T>::NOMAdapter_PixelMap(PixelMap<T> * o)
68 : NObjMgrAdapter(o)
69{
70mMap = o;
71}
72
73/* --Methode-- */
74template <class T>
75NOMAdapter_PixelMap<T>::~NOMAdapter_PixelMap()
76{
77}
78
79/* --Methode-- */
80template <class T>
81NObjMgrAdapter* NOMAdapter_PixelMap<T>::Clone(AnyDataObj* o)
82{
83PixelMap<T>* m = dynamic_cast<PixelMap<T> *>(o);
84if (m) return ( new NOMAdapter_PixelMap<T>(m) );
85return ( new NObjMgrAdapter(o) );
86}
87
88/* --Methode-- */
89template <class T>
90string NOMAdapter_PixelMap<T>::GetDataObjType()
91{
92string type = "PixelMap< ";
93LocalMap<T>* lm = dynamic_cast< LocalMap<T> * >(mMap);
94if (lm != NULL) type = "LocalMap< ";
95SphereThetaPhi<T>* st = dynamic_cast< SphereThetaPhi<T> * >(mMap);
96if (st != NULL) type = "SphereThetaPhi< ";
97SphereHEALPix<T>* sg = dynamic_cast< SphereHEALPix<T> * >(mMap);
98if (sg != NULL) type = "SphereHEALPix< ";
99SphereECP<T>* se = dynamic_cast< SphereECP<T> * >(mMap);
100if (se != NULL) type = "SphereECP< ";
101
102// type += DecodeTypeIdName(typeid(T).name());
103type += DataTypeInfo<T>::getTypeName();
104type += " > ";
105return(type);
106}
107
108/* --Methode-- */
109template <class T>
110AnyDataObj* NOMAdapter_PixelMap<T>::CloneDataObj(bool share)
111{
112LocalMap<T>* lm = dynamic_cast< LocalMap<T> * >(mMap);
113if (lm != NULL) return( new LocalMap<T>(*lm, share) );
114SphereThetaPhi<T>* st = dynamic_cast< SphereThetaPhi<T> * >(mMap);
115if (st != NULL) return( new SphereThetaPhi<T>(*st, share) );
116SphereHEALPix<T>* sg = dynamic_cast< SphereHEALPix<T> * >(mMap);
117if (sg != NULL) return( new SphereHEALPix<T>(*sg, share) );
118SphereECP<T>* se = dynamic_cast< SphereECP<T> * >(mMap);
119if (se != NULL) return( new SphereECP<T>(*se, share) );
120return(NULL);
121}
122
123
124/* --Methode-- */
125template <class T>
126void NOMAdapter_PixelMap<T>::SavePPF(POutPersist& pos, string const & nom)
127{
128LocalMap<T>* lm = dynamic_cast< LocalMap<T> * >(mMap);
129if (lm != NULL) {
130 FIO_LocalMap<T> fio(lm);
131 fio.Write(pos, nom);
132 return;
133 }
134SphereThetaPhi<T>* st = dynamic_cast< SphereThetaPhi<T> * >(mMap);
135if (st != NULL) {
136 FIO_SphereThetaPhi<T> fio(st);
137 fio.Write(pos, nom);
138 return;
139 }
140SphereHEALPix<T>* sg = dynamic_cast< SphereHEALPix<T> * >(mMap);
141if (sg != NULL) {
142 FIO_SphereHEALPix<T> fio(sg);
143 fio.Write(pos, nom);
144 return;
145 }
146SphereECP<T>* se = dynamic_cast< SphereECP<T> * >(mMap);
147if (se != NULL) {
148 FIO_SphereECP<T> fio(se);
149 fio.Write(pos, nom);
150 return;
151 }
152string s = typeid(*mMap).name();
153cout << "NOMAdapter_PixelMap<T>::SavePPF() - Error : Not supported for " << s << endl;
154}
155
156/* --Methode-- */
157template <class T>
158void NOMAdapter_PixelMap<T>::Print(ostream& os)
159{
160string s = typeid(*mMap).name();
161T moy, sig;
162MeanSig(moy, sig);
163cout << "SkyMap Type: " << s << " NbPixels= " << mMap->NbPixels() << endl;
164cout << " Mean= " << moy << " Sig2= " << sig << endl;
165}
166
167// -- Fonction pour convertir un X,Y en Theta-Phi sur projection MolleWeide --
168char * _SphMollweideProj_XY2ThetaPhi(P2DArrayAdapter * aa, int ix, int iy);
169
170/* --Methode-- */
171template <class T>
172P2DArrayAdapter* NOMAdapter_PixelMap<T>::Get2DArray(string & opt)
173{
174LocalMap<T>* lm = dynamic_cast< LocalMap<T> * >(mMap);
175if (lm != NULL) return(new LocalMapArrAdapter<T>(lm, false));
176int nr = 250;
177int nc = 500;
178SphereECP<T>* se = dynamic_cast< SphereECP<T> * >(mMap);
179size_t olen = opt.length();
180if ((se != NULL) && (opt.find("ecparray") < olen)) {
181 // On veut la carte bi-dim complete de la sphere ECP
182 TMatrix<T> * mtxecp = new TMatrix<T>(se->GetPixelArray(), true); // on partage les donnees
183 POTMatrixAdapter<T> * potmtxecp = new POTMatrixAdapter<T>(mtxecp, true);
184 if (opt.find("ecpscaledeg") < olen) // Echelle angulaire en degre
185 potmtxecp->DefineXYCoordinates(se->MinPhi()*180./M_PI, se->MinTheta()*180./M_PI,
186 se->DeltaPhi()*180./M_PI, se->DeltaTheta()*180./M_PI);
187 else if (opt.find("ecpscalerad") < olen) // Echelle angulaire en radian
188 potmtxecp->DefineXYCoordinates(se->MinPhi(), se->MinTheta(), se->DeltaPhi(), se->DeltaTheta());
189
190 return ( potmtxecp );
191}
192SphericalMap<T>* sm = dynamic_cast< SphericalMap<T> *>(mMap);
193if (sm != NULL) { nr = sqrt(0.75*mMap->NbPixels()); nc = 2*nr; }
194TMatrix<T> * mtx = new TMatrix<T>(nr, nc);
195Project_Mol(*mtx, (T)_prjmol_defval);
196POTMatrixAdapter<T> * potma = new POTMatrixAdapter<T>(mtx, true);
197potma->SetInfoStringFunction(_SphMollweideProj_XY2ThetaPhi);
198return ( potma );
199}
200
201/* --Methode-- */
202template <class T>
203NTupleInterface* NOMAdapter_PixelMap<T>::GetNTupleInterface(bool& adel)
204{
205adel = true;
206return( new NTupInt_PixelMap<T>(mMap) );
207}
208
209/* --Methode-- */
210template <class T>
211void NOMAdapter_PixelMap<T>::MeanSig(T& gmoy, T& gsig)
212{
213 gmoy=0.;
214 gsig = 0.;
215 T valok;
216 for(int k=0; k<mMap->NbPixels(); k++) {
217 valok = (*mMap)(k);
218 gmoy += valok; gsig += valok*valok;
219 }
220 gmoy /= (T)mMap->NbPixels();
221 gsig = gsig/(T)mMap->NbPixels() - gmoy*gmoy;
222
223}
224
225/* --Methode-- */
226template <class T>
227void NOMAdapter_PixelMap<T>::Project_Mol(TMatrix<T> & mtx, T defval)
228{
229 r_8 xa, yd, teta,phi, facteur;
230 int_4 l,c,k;
231 int_4 nl = mtx.NRows();
232 int_4 nc = mtx.NCols();
233 mtx = defval; // On met tout a defval
234// cout << " NRows= " << nl << " NCols= " << nc << endl;
235 for(l=0; l<nl; l++) {
236 yd = (r_8)(l+0.5)/(r_8)nl-0.5;
237 facteur=2.*M_PI/sin(acos((double)yd*2));
238 teta = (yd+0.5)*Pi;
239 // teta = (0.5-yd)*M_PI;
240 for(c=0; c<nc; c++) {
241 xa = (r_8)(c+0.5)/(r_8)nc-0.5;
242 phi = xa*facteur+M_PI;
243 if ( (phi <= 2*M_PI) && (phi >= 0.) ) {
244 k = mMap->PixIndexSph(teta, phi);
245 mtx(l,c) = (*mMap)(k);
246 }
247 }
248 }
249}
250
251static char m_buff[128];
252char * _SphMollweideProj_XY2ThetaPhi(P2DArrayAdapter * aa, int ix, int iy)
253{
254 r_8 xa, yd, teta,phi, facteur;
255 int_4 nl = aa->YSize();
256 int_4 nc = aa->XSize();
257 int l, c;
258 aa->IJ2xy(ix, iy, c, l);
259 yd = (r_8)(l+0.5)/(r_8)nl-0.5;
260 facteur=2.*M_PI/sin(acos((double)yd*2));
261 teta = (yd+0.5)*Pi;
262 xa = (r_8)(c+0.5)/(r_8)nc-0.5;
263 phi = xa*facteur+M_PI;
264 if ( (phi <= 2*M_PI) && (phi >= 0.) )
265 sprintf(m_buff,"(l,b=%5.1f,%5.1f)", phi*180./M_PI, 90.-teta*180./M_PI);
266 else
267 sprintf(m_buff,"(l,b=?,?)");
268
269 return (m_buff);
270}
271
272// -------------------------------------------------------------
273
274/* --Methode-- */
275template <class T>
276NTupInt_PixelMap<T>::NTupInt_PixelMap(PixelMap<T>* m)
277{
278mMap = m;
279}
280
281/* --Methode-- */
282template <class T>
283NTupInt_PixelMap<T>::~NTupInt_PixelMap()
284{
285}
286
287/* --Methode-- */
288template <class T>
289sa_size_t NTupInt_PixelMap<T>::NbLines() const
290{
291return( mMap->NbPixels() );
292}
293
294/* --Methode-- */
295template <class T>
296sa_size_t NTupInt_PixelMap<T>::NbColumns() const
297{
298return(8);
299}
300
301/* --Methode-- */
302template <class T>
303r_8* NTupInt_PixelMap<T>::GetLineD(sa_size_t n) const
304{
305int i;
306if ((n < 0) || (n >= (int)(mMap->NbPixels()) ))
307 for(i=0; i<8; i++) mRet[i] = 0.;
308else {
309 double teta,phi;
310 mMap->PixThetaPhi(n, teta, phi);
311 mRet[0] = n; mRet[1] = mMap->PixVal(n);
312 mRet[2] = mRet[1]; mRet[3] = 0.;
313 mRet[4] = mRet[1]; mRet[5] = 0.;
314 mRet[6] = teta; mRet[7] = phi;
315 }
316return(mRet);
317}
318
319/* --Methode-- */
320template <class T>
321string NTupInt_PixelMap<T>::VarList_C(const char* nx) const
322{
323string nomx;
324if (nx) nomx = nx;
325else nomx = "_xh_";
326string vardec = "double i,k,val,real,imag,mod,phas,teta,phi; \n";
327vardec += "i = " + nomx + "[0]; k = " + nomx + "[0]; val = " + nomx + "[1]; \n";
328vardec += "real = " + nomx + "[2]; imag = " + nomx + "[3]; \n";
329vardec += "mod = " + nomx + "[4]; phas = " + nomx + "[5]; \n";
330vardec += "teta = " + nomx + "[6]; phi = " + nomx + "[7]; \n";
331return(vardec);
332}
333
334
335DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
336r_8* NTupInt_PixelMap< complex<float> >::GetLineD(sa_size_t n) const
337{
338int i;
339if ((n < 0) || (n >= (int)(mMap->NbPixels()) ))
340 for(i=0; i<8; i++) mRet[i] = 0.;
341else {
342 double teta,phi;
343 mMap->PixThetaPhi(n, teta, phi);
344 mRet[0] = n;
345 mRet[2] = mMap->PixVal(n).real(); mRet[3] = mMap->PixVal(n).imag();
346 mRet[1] = mRet[4] = sqrt(mRet[2]*mRet[2]+mRet[3]*mRet[3]);
347 mRet[5] = atan2(mRet[3], mRet[2]);
348 mRet[6] = teta; mRet[7] = phi;
349 }
350return(mRet);
351}
352
353DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
354r_8* NTupInt_PixelMap< complex<double> >::GetLineD(sa_size_t n) const
355{
356int i;
357if ((n < 0) || (n >= (int)(mMap->NbPixels()) ))
358 for(i=0; i<8; i++) mRet[i] = 0.;
359else {
360 double teta,phi;
361 mMap->PixThetaPhi(n, teta, phi);
362 mRet[0] = n;
363 mRet[2] = mMap->PixVal(n).real(); mRet[3] = mMap->PixVal(n).imag();
364 mRet[1] = mRet[4] = sqrt(mRet[2]*mRet[2]+mRet[3]*mRet[3]);
365 mRet[5] = atan2(mRet[3], mRet[2]);
366 mRet[6] = teta; mRet[7] = phi;
367 }
368return(mRet);
369}
370
371
372#ifdef __CXX_PRAGMA_TEMPLATES__
373#pragma define_template NOMAdapter_PixelMap<int_4>
374#pragma define_template NOMAdapter_PixelMap<r_4>
375#pragma define_template NOMAdapter_PixelMap<r_8>
376#pragma define_template NOMAdapter_PixelMap< complex<float> >
377#pragma define_template NOMAdapter_PixelMap< complex<double> >
378#pragma define_template NTupInt_PixelMap<int_4>
379#pragma define_template NTupInt_PixelMap<r_4>
380#pragma define_template NTupInt_PixelMap<r_8>
381#pragma define_template NTupInt_PixelMap< complex<float> >
382#pragma define_template NTupInt_PixelMap< complex<double> >
383#endif
384
385#if defined(ANSI_TEMPLATES)
386template class NOMAdapter_PixelMap<int_4>;
387template class NOMAdapter_PixelMap<r_4>;
388template class NOMAdapter_PixelMap<r_8>;
389template class NOMAdapter_PixelMap< complex<float> >;
390template class NOMAdapter_PixelMap< complex<double> >;
391template class NTupInt_PixelMap<int_4>;
392template class NTupInt_PixelMap<r_4>;
393template class NTupInt_PixelMap<r_8>;
394template class NTupInt_PixelMap< complex<float> >;
395template class NTupInt_PixelMap< complex<double> >;
396#endif
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