source: Sophya/trunk/SophyaProg/PrgMap/map2cl.cc@ 3079

Last change on this file since 3079 was 2615, checked in by cmv, 21 years ago

using namespace sophya enleve de machdefs.h, nouveau sopnamsp.h cmv 10/09/2004

File size: 7.3 KB
Line 
1#include "sopnamsp.h"
2#include "machdefs.h" // Definitions specifiques SOPHYA
3
4#include <math.h>
5#include <iostream>
6
7#include "nbmath.h"
8#include "timing.h"
9
10#include "array.h"
11#include "skymap.h"
12#include "samba.h"
13#include "sambainit.h"
14#include "fitsspherehealpix.h"
15#include "fitstarray.h"
16
17
18/*!
19 \ingroup PrgMap
20 \file map2cl.cc
21 \brief \b map2cl: Computes power spectra (C(l)) on spherical maps.
22
23 \verbatim
24
25 csh> map2cl -h
26 SOPHYA Version 1.1 Revision 0 (V_Fev2001) -- Mar 9 2001 15:45:31 cxx
27
28 map2cl : Spherical harmonics analysis - HEALPix map -> Power spectrum C_l
29 Usage: map2cl [-float/-r4] [-lmax lval] [-thetacut dtdeg]
30 [-fitsin] [-fitsout] InFileName OutFileName
31 -float (-r4): single precision C_l and map (default = double)
32 -lmax lval: Maximum value for l index (default=255)
33 -thetacut dtdeg : Symmetric delta-theta cut (in degree) along equator
34 (default=0 -> no cut)
35 -iter_order lval : 1,2,3,4... order of an iterative analysis,
36 3rd order is usually optimal (default=0 -> standard analysis)
37 -keepalm : Save Alm's as a 2-D array (Matrix)
38 -fitsout: Select the FITS format for the output vector/alm's (default PPF format)
39 -fitsin : Select the FITS format for the input map (default PPF format)
40 InFileName : Input file name (HEALPix map)
41 OutFileName : Output file name (the C_l vector / and Alm's)
42
43 \endverbatim
44*/
45
46/* Nouvelle-Fonction */
47void Usage(bool fgerr)
48{
49 cout << endl;
50 if (fgerr) {
51 cout << " map2cl : Argument Error ! map2cl -h for usage " << endl;
52 exit(1);
53 }
54 else {
55 cout << " map2cl : Spherical harmonics analysis - HEALPix map -> Power spectrum C_l \n"
56 << " Usage: map2cl [-float/-r4] [-lmax lval] [-thetacut dtdeg] [-iter_order lval]\n"
57 << " [-keepalm AlmFileName] [-fitsin] [-fitsout] InFileName OutFileName \n"
58 << " -float (-r4): single precision C_l and map (default = double) \n"
59 << " -lmax lval: Maximum value for l index (default=255)\n"
60 << " -thetacut dtdeg : Symmetric delta-theta cut (in degree) along equator \n"
61 << " (default=0 -> no cut)\n"
62 << " -iter_order lval : 1,2,3,4... order of an iterative analysis\n"
63 << " 3rd order is usually optimal (default=0 -> standard analysis)\n"
64 << " -keepalm : Save Alm's as a 2-D complex array (Matrix<complex>) - only with PPF format \n"
65 << " -fitsout: Select the FITS format for the output files (Map/Alm) (default PPF format) \n"
66 << " -fitsin : Select the FITS format for the input map (default PPF format) \n"
67 << " InFileName : Input file name (HEALPix map) \n"
68 << " OutFileName : Output file name (the C_l vector) \n" << endl;
69 exit(0);
70 }
71}
72
73/* Nouvelle-Fonction */
74template <class T>
75class _Map2Cl {
76public :
77static void ComputeCl(string & infile, string & outfile, int lmax, double tcut,
78 int iterationOrder, bool fgfitsin, bool fgfitsout, bool keepalm)
79{
80 double deg2rad = M_PI/180.;
81 double minute2rad = M_PI/(180.*60.);
82
83 SphereHEALPix<T> sph;
84 if (fgfitsin) {
85 cout << "--- Reading Input FITS file " << infile << endl;
86 FitsInFile fii(infile);
87 fii >> sph;
88 }
89 else {
90 cout << "--- Reading Input PPF file " << infile << endl;
91 PInPersist ppi(infile);
92 ppi >> sph;
93 }
94
95 cout << " Input map : NbPixels= " << sph.NbPixels() << " NSide= "
96 << sph.SizeIndex() << " Resolution= "
97 << sqrt(sph.PixSolAngle(0))/minute2rad << " Arcminutes " << endl;
98
99 double ctcut = (tcut < 1.e-19) ? 0. : cos((90.-tcut)*deg2rad);
100 cout << "--- Calling DecomposeToCl() (lmax= " << lmax
101 << " cos_theta_cut= " << ctcut << " iter_order= " << iterationOrder << ") theta_cut=" << tcut << " deg" << endl;
102 // Decomposition de la carte en C_l
103 SphericalTransformServer<T> sphtr;
104 TVector<T> clvec;
105 TMatrix< complex<T> > almmtx;
106 if (keepalm) {
107 Alm<T> alm(lmax);
108 sphtr.DecomposeToAlm(sph, alm, lmax, ctcut, iterationOrder);
109 almmtx.SetSize(alm.Lmax()+1, alm.Lmax()+1);
110 for(int il=0; il<alm.Lmax()+1; il++)
111 for(int im=0; im<il; im++)
112 almmtx(il, im) = alm(il, im);
113 clvec = alm.powerSpectrum();
114 }
115 else {
116 clvec = sphtr.DecomposeToCl(sph, lmax, ctcut, iterationOrder);
117 }
118 T min, max;
119 double mean, sigma;
120 clvec.MinMax(min, max);
121 MeanSigma(clvec, mean, sigma);
122 cout << "--- Statistics on the computed C_l vector: Size=" << clvec.Size() << endl;
123 cout << " C_l.Min= " << min << " C_l.Max= " << max
124 << " C_l.Mean= " << mean << " C_l.Sigma= " << sigma << endl;
125
126 if (fgfitsout) {
127 FitsOutFile fio(outfile, FitsFile::clear);
128 cout << "--- Writing C_l vector to Output FITS file " << outfile << endl;
129 fio << clvec;
130 }
131 else {
132 POutPersist ppo(outfile);
133 if (keepalm) {
134 cout << "--- Writing C_l vector to Output PPF file " << outfile << endl;
135 ppo.PutObject(clvec, "Cl");
136 cout << "--- Writing Alm Matrix to Output PPF file " << outfile << endl;
137 ppo.PutObject(almmtx, "Alm");
138 }
139 else {
140 cout << "--- Writing C_l vector to Output PPF file " << outfile << endl;
141 ppo << clvec;
142 }
143 }
144}
145
146};
147
148/* Main-Program */
149int main(int narg, char *arg[])
150{
151 if ((narg > 1) && (strcmp(arg[1],"-h") == 0) ) Usage(false);
152
153 int lmax = 255;
154 int iterationOrder = 0;
155 double tcut = 0.;
156 string infile;
157 string outfile;
158 bool fgfitsin = false;
159 bool fgfitsout = false;
160 bool fgr4 = false;
161 bool fgkeepalm = false;
162 cout << " map2cl : Decoding command line options ... " << endl;
163
164 int ko=1;
165 for (int k=1; k<narg; k++) {
166 if (strcmp(arg[k], "-lmax") == 0) {
167 if (k == narg-1) Usage(true); // -lmax est suivi d'un argument
168 lmax = atoi(arg[k+1]); k++; // k++ pour sauter au suivant
169 }
170 else if (strcmp(arg[k], "-thetacut") == 0) {
171 if (k == narg-1) Usage(true); // -thetacut est suivi d'un argument
172 tcut = atof(arg[k+1]); k++; // k++ pour sauter au suivant
173 }
174 else if (strcmp(arg[k], "-iter_order") == 0) {
175 if (k == narg-1) Usage(true); // -iter_order est suivi d'un argument
176 iterationOrder = atof(arg[k+1]); k++; // k++ pour sauter au suivant
177 }
178 else if (strcmp(arg[k], "-fitsin") == 0) {
179 fgfitsin = true;
180 }
181 else if (strcmp(arg[k], "-fitsout") == 0) {
182 fgfitsout = true;
183 }
184 else if (strcmp(arg[k], "-keepalm") == 0) {
185 fgkeepalm = true;
186 }
187 else if ((strcmp(arg[k], "-float") == 0) || (strcmp(arg[k], "-r4") == 0) ) {
188 fgr4 = true;
189 }
190
191 else { ko = k; break; } // Debut des noms
192 }
193
194 if ((narg-ko) < 2) Usage(true);
195 infile = arg[ko];
196 outfile = arg[ko+1];
197
198 // Bloc try de gestion des exception
199 try {
200 InitTim();
201 SophyaInit();
202 if (fgr4) {
203 cout << " SphereHEALPix<r_4> --> Power spectrum C_l<r_4> (float)" << endl;
204 _Map2Cl<r_4>::ComputeCl(infile, outfile, lmax, tcut, iterationOrder,
205 fgfitsin, fgfitsout, fgkeepalm);
206 }
207 else {
208 cout << " SphereHEALPix<r_8> --> Power spectrum C_l<r_8> (double)" << endl;
209 _Map2Cl<r_8>::ComputeCl(infile, outfile, lmax, tcut, iterationOrder,
210 fgfitsin, fgfitsout, fgkeepalm);
211 }
212 }
213 catch (PThrowable & exc) { // Exceptions de SOPHYA
214 cerr << " map2cl: Catched Exception " << (string)typeid(exc).name()
215 << " - Msg= " << exc.Msg() << endl;
216 }
217 catch (...) { // Autres Exceptions
218 cerr << " map2cl: some other exception was caught ! " << endl;
219 }
220
221 PrtTim("End of map2cl ");
222 return(0);
223}
224
225
226
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