source: Sophya/trunk/ArchTOIPipe/ProcWSophya/PSB2ring.cc@ 2192

Last change on this file since 2192 was 1997, checked in by ansari, 23 years ago

Compil sur magique SGI-CC (2) - Reza 13/5/2002

File size: 6.9 KB
RevLine 
[1984]1// This may look like C code, but it's really -*- C++ -*-
2
3/////////////////////////////
4// PSB2ring.cc //
5/////////////////////////////
6
7/// This is a processor for ArchTOIPipe using the Sophya Library.
8/// An example of the use of it is in the file gph425_5.cc
9///
10/// The goal of this processor is to give Q and U rings
11// computed with either 3 timelines coming from the
12// two channels of 1 PSB and one of the channels of a second PSB,
13// or with the differences of the two channels of each PSB.
14// The first of these two cases can be used if one channel is out
15// or order, the second one is supposed to be better when all channels
16// work fine, since it fully uses the advantage of PSB's.
17// Both methods should give the same results when the 4 channels work ok.
18
19// Authors CR/NP, rcecile@in2p3.fr, ponthieu@isn.in2p3.fr
20//////////////////////////////////////////////////////////////////////////////////////
21
22#include <stdlib.h>
23#include <stdio.h>
24#include <math.h>
25#include <vector>
26//#include <strstream>
27#include "tmatrix.h"
28#include "tvector.h"
29#include "vector3d.h"
30#include "ctimer.h"
31#include "PSB2ring.h"
32
33#define UNSEEN_HEALPIX (-1.6375e30)
34
35
36// Constructor
37PSB2ring::PSB2ring(SphereHEALPix<r_8>* ringQ,
38 SphereHEALPix<r_8>* ringU,
39 SphereHEALPix<r_8>* ringQW,
40 SphereHEALPix<r_8>* ringUW,
41 const vector<r_8>& table_angle,
42 int_4 wsz)
43 : ringq(ringQ), ringu(ringU), ringqw(ringQW), ringuw(ringUW), TableFP_(table_angle)
44{
45 SetWSize(wsz);
46 totsncount_ = 0;
47
48 if( ringq->NbPixels()<1) {
49 cout << "PSB2ring::PSB2ring : bad number of pixel in ringQ "
50 << ringq->NbPixels() << endl;
51 throw ParmError("PSB2ring::PSB2ring : bad number of pixel in ringQ");
52 }
53 if( ringu->NbPixels()<1) {
54 cout << "PSB2ring::PSB2ring : bad number of pixel in ringU "
55 << ringu->NbPixels()
56 << endl;
57 throw ParmError("PSB2ring::PSB2ring : bad number of pixel in ringU");
58 }
59
60 if( ringqw->NbPixels()<1) {
61 cout << "PSB2ring::PSB2ring : bad number of pixel in ringQW "
62 << ringqw->NbPixels() << endl;
63 throw ParmError("PSB2ring::PSB2ring : bad number of pixel in ringQW");
64 }
65 if( ringuw->NbPixels()<1) {
66 cout << "PSB2ring::PSB2ring : bad number of pixel in ringUW "
67 << ringuw->NbPixels() << endl;
68 throw ParmError("PSB2ring::PSB2ring : bad number of pixel in ringUW");
69 }
70
71 if( ringq->NbPixels() != ringu->NbPixels())
72 throw(ParmError("PSB2ring::PSB2ring : rings don't have the same size!!"));
73
74 Npix_ = ringq->NbPixels();
75 int nlat = ringq->SizeIndex();
76 if(nlat != ringqw->SizeIndex()) ringqw->Resize(nlat);
77 if(nlat != ringuw->SizeIndex()) ringuw->Resize(nlat);
78 cout << "RINGS of " <<ringu->NbPixels() << " pixels" << endl;
79
80 ringq->SetPixels(0.);
81 ringu->SetPixels(0.);
82 ringqw->SetPixels(0);
83 ringuw->SetPixels(0);
84}
85
86// Destructor
87PSB2ring::~PSB2ring()
88{
89}
90
91void PSB2ring::PrintStatus(ostream& os)
92{
93 os << "____________________________________________" << endl
94 << " PSB2ring::PrintStatus() - wsize= "<<wsize_<< endl;
95 TOIProcessor::PrintStatus(os);
96 os << " ProcessedSampleCount=" << ProcessedSampleCount() << endl;
97 os << "____________________________________________" << endl;
98}
99
100void PSB2ring::init()
101{
102 cout << "PSB2ring::init" << endl;
103
[1997]104 int i;
[1984]105 // on branche les TOIs des 4 bolos (l'un peut etre "vide")
[1997]106 for(i=0; i < 4; i++)// if (PSB_ok[i] > 0)
[1984]107 {
108 char str[80];
109 sprintf(str,"Bolo%d",i);
110 cout << str << endl;
111 declareInput(str);
112 }
113
114 // on branche le poinatge des 2 PSB
[1997]115 for(i=0; i < 2; i++)// if (PSB_ok[i] > 0)
[1984]116 {
117 char str[80];
118 sprintf(str,"theta_pointing%d",i);
119 cout << str << endl;
120 declareInput(str);
121 sprintf(str,"phi_pointing%d",i);
122 cout << str << endl;
123 declareInput(str);
124 }
125
126 declareOutput("out_toiQ");
127 declareOutput("out_toiU");
128
129 name = "PSB2ring";
130}
131
132void PSB2ring::run()
133{
134 int snb = getMinIn();
135 int sne = getMaxIn();
136
137 if (!checkInputTOIIndex(0) && !checkInputTOIIndex(1)) {
138 cerr << " PSB2ring::run() - Input TOIs (in1, in2 and in3, in4) not connected! "
139 << endl;
140 throw ParmError("PSB2ring::run() Input TOIs (in1, in2 and in3, in4) not connected!");
141 }
142
143 cout << " Bolo2ring::run() SNRange=" << snb << " - " << sne << endl;
144
145 for(int i=0; i<4; i++) //if (PSB_ok[i/2,i%2])
146 if( !checkInputTOIIndex(i) )
147 {
148 cerr << " PSB2ring::run() - Input TOIs not connected! ("
149 << i << ')' << endl;
150 throw ParmError("PSB2ring::run() - Input TOIs not connected!");
151 }
152
153 // pas de sortie a verifier
154
155 cout << "PSB2ring::run() - SNRange="<< snb << '-' << sne << endl;
156
157 try {
158
159 Timer tm("PSB2ring::run()");
160 cout << "****************************" << endl;
161 cout << "****************************" << endl;
162 cout << "4 bolos working and ordered" << endl;
163
164 // Generation des timelines
165 double v0,v1,v2,v3; // values of bolometers outputs
166 double l0, b0, l1, b1; // galactic coordinates
167 uint_8 vfg0,vfg1,vfg2,vfg3;
168 double Q,U;
169
170 for(int s=snb;s<=sne;s++) {
171
172 getData(0, s, v0, vfg0);
173 getData(1, s, v1, vfg1);
174 getData(2, s, v2, vfg2);
175 getData(3, s, v3, vfg3);
176
177 l0 = getData(4, s);
178 b0 = getData(5, s);
179 l1 = getData(6, s);
180 b1 = getData(7, s);
181
182 double theta0 = (90. - b0)/180 * 3.14159;
183 double phi0 = l0/180. * 3.14159;
184 double theta1 = (90. - b1)/180 * 3.14159;
185 double phi1 = l1/180 *3.14159;
186
187
188
189 // cout << " ********** Q(t) and U(t) finished *********** " << endl;
190
191 // cout << " ********** Projection on the ring ********* " << endl;
192
193 //Projection
194
195 if((vfg0 == 0) && (vfg1 == 0))
196 {
197 Q = v0 - v1;
198 int_4 pixelQ = ringq->PixIndexSph(theta0, phi0); // numero du pixel touche
199 ringqw->PixVal(pixelQ) += 1 ; // nombre de hits dans le pixel
200 ringq->PixVal(pixelQ) += Q ;
201 }
202
203 if((vfg2 == 0) && (vfg3 == 0))
204 {
205 U = v2 - v3;
206 int_4 pixelU = ringu->PixIndexSph(theta1, phi1);
207 ringuw->PixVal(pixelU) += 1 ;
208 ringu->PixVal(pixelU) += U ;
209 }
210
211 if (!(s%10000)) cout << s << " ****** filling rings ****** " << endl;
212
213 putData(0, s, Q);
214 putData(1, s, U);
215 }
216
217 // Moyennage des pixels
218 // comme on bosse directement avec des timelines de Q et U
219 // dans ce cas precis, on a juste a prendre la moyenne des valeurs
220 // qui tombent dans un pixel pour avoir la carte
221 // on ne doit inverser de matrice etc que dans le cas
222 // trois bolos.
223
224 for(int pix=0 ; pix < Npix_ ; pix++) {
225
226 if( ringqw->PixVal(pix) < 1.0 ) //pixel pas vu
227 ringq->PixVal(pix) = ringu->PixVal(pix) = UNSEEN_HEALPIX;
228 else
229 ringq->PixVal(pix) = ringq->PixVal(pix) / ringqw->PixVal(pix);
230
231 if( ringuw->PixVal(pix) < 1.0 )
232 ringu->PixVal(pix) = ringu->PixVal(pix) = UNSEEN_HEALPIX;
233 else
234 ringu->PixVal(pix) = ringu->PixVal(pix) / ringuw->PixVal(pix);
235
236 }
237 cout << " ********** rings filled ********* " << endl;
238 }
239
240
241 catch( PThrowable& exc )
242 {
243 cerr << " Exception: " << exc.Msg() << endl;
244 }
245}
246
247
248
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