source: Sophya/trunk/AddOn/TAcq/branap.cc@ 3982

Last change on this file since 3982 was 3979, checked in by ansari, 14 years ago

Ajout definition de fenetre en temps de traitement (appel a Process()) ds BRBaseProcessor et BRAnaParam, FileSequenceNumber (numero signalXXX.fits) pour chaque zone memoire dans RAcqMZAuxData / RAcqMemZoneMgr, Reza 04/05/2011

File size: 11.5 KB
Line 
1#include <stdlib.h>
2#include <string.h>
3
4#include "branap.h"
5#include "minifits.h"
6#include "strutilxx.h"
7#include "sopnamsp.h"
8
9//--------------------------------------------------------------
10// Projet BAORadio - (C) LAL/IRFU 2008-2010
11// Classe de gestion des parametres programmes d'analyse
12//--------------------------------------------------------------
13
14/* --Methode-- */
15BRAnaParam::BRAnaParam(uint_4 nmean, uint_4 nzon, uint_4 npaqz)
16{
17 outpath_="./";
18 fgfitsout_=false;
19 nmean_=nmean;
20 nbloc_=1;
21 imin_=imax_=0;
22 istep_=1;
23 rdsamefc_=true; // read paquets with same frame counter
24 freqmin_=freqmax_=0;
25 nbinfreq_=1;
26 paqsize_=16424;
27 nzones_=nzon;
28 npaqinzone_=npaqz;
29 fgdatafft_=false; fgforceraworfft_=false;
30 fgsinglechannel_=false; fgforcesingleortwochan_=false;
31 prtlevel_=0;
32 prtmodulo_=50000;
33 nbcalgrp_=1;
34 nthreads_=1;
35
36 spec_win_sz_=0;
37 spw_ext_sz_=0;
38 nbmax_specwfiles_=0;
39
40 vmin_=0.; vmax_=9e99;
41 nbands_=0; bandfirst_ = bandlast_ = 0;
42 fgdt_ = false;
43
44 fgfreqfilter_=false; //JEC 1/2/11
45
46 gainfile_="";
47
48 proctimeduration_=9.e9;
49 fgtimeselect_=false;
50}
51
52/* --Methode-- */
53int BRAnaParam::DecodeArgs(int narg, char* arg[])
54{
55 if ((narg>1)&&(strcmp(arg[1],"-h")==0)) return Usage(false);
56 if (narg<5) return Usage(true);
57
58 bool okarg=false;
59 int ka=1;
60 while (ka<(narg-1)) {
61 if (strcmp(arg[ka],"-act")==0) {
62 action_=arg[ka+1];
63 ka+=2;
64 }
65 else if (strcmp(arg[ka],"-out")==0) {
66 outpath_=arg[ka+1];
67 size_t lenp=outpath_.size();
68 if ((lenp>0)&&(outpath_[lenp-1]!='/')) outpath_+='/';
69 ka+=2;
70 }
71 else if (strcmp(arg[ka],"-fitsout")==0) {
72 fgfitsout_=true;
73 ka++;
74 }
75 else if (strcmp(arg[ka],"-nmean")==0) {
76 nmean_=atoi(arg[ka+1]);
77 ka+=2;
78 }
79 else if (strcmp(arg[ka],"-nbloc")==0) {
80 nbloc_=atoi(arg[ka+1]);
81 ka+=2;
82 }
83 else if (strcmp(arg[ka],"-freq")==0) {
84 sscanf(arg[ka+1],"%d,%d,%d",&freqmin_,&freqmax_,&nbinfreq_);
85 ka+=2;
86 }
87 else if (strcmp(arg[ka],"-zones")==0) {
88 int nzon=4;
89 int npaqz=128;
90 sscanf(arg[ka+1],"%d,%d",&nzon,&npaqz);
91 nzones_=nzon; npaqinzone_=npaqz;
92 ka+=2;
93 }
94 else if (strcmp(arg[ka],"-prt")==0) {
95 sscanf(arg[ka+1],"%d,%ld",&prtlevel_,&prtmodulo_);
96 ka+=2;
97 }
98 else if (strcmp(arg[ka],"-nthr")==0) {
99 nthreads_=atoi(arg[ka+1]);
100 ka+=2;
101 }
102 else if (strcmp(arg[ka],"-nvcal")==0) {
103 nbcalgrp_=atoi(arg[ka+1]);
104 ka+=2;
105 }
106 else if (strcmp(arg[ka],"-nosfc")==0) {
107 rdsamefc_=false;
108 ka++;
109 }
110 else if (strcmp(arg[ka],"-singlechan")==0) {
111 fgsinglechannel_=true; fgforcesingleortwochan_ = true;
112 ka++;
113 }
114 else if (strcmp(arg[ka],"-twochan")==0) {
115 fgsinglechannel_=false; fgforcesingleortwochan_ = true;
116 ka++;
117 }
118 else if (strcmp(arg[ka],"-rawdata")==0) {
119 fgforceraworfft_=true; fgdatafft_ = false;
120 ka++;
121 }
122 else if (strcmp(arg[ka],"-fftdata")==0) {
123 fgforceraworfft_=true; fgdatafft_ = true;
124 ka++;
125 }
126 else if (strcmp(arg[ka],"-varcut")==0) {
127 sscanf(arg[ka+1],"%lg,%lg",&vmin_,&vmax_);
128 ka+=2;
129 }
130 else if (strcmp(arg[ka],"-nband")==0) {
131 sscanf(arg[ka+1],"%d,%d,%d",&nbands_,&bandfirst_,&bandlast_);
132 ka+=2;
133 }
134 else if (strcmp(arg[ka],"-filldt")==0) {
135 fgdt_=true;
136 ka++;
137 }
138 else if (strcmp(arg[ka],"-freqfilter")==0) {
139 fgfreqfilter_=true;
140 ka++;
141 }
142 //-tmproc hh:mm:ss,nseconds
143 else if (strcmp(arg[ka],"-tmproc")==0) {
144 int ah=0,am=0;
145 double as=0, als=0;
146 sscanf(arg[ka+1],"%d:%d:%lg,%lg",&ah,&am,&as,&als);
147 fgtimeselect_=true; proctimeduration_=als;
148 proctimestart_.SetHour(ah,am,as);
149 ka+=2;
150 }
151 else if (strcmp(arg[ka],"-gain")==0) {
152 gainfile_=arg[ka+1];
153 ka+=2;
154 }
155 else if (strcmp(arg[ka],"-tspwin")==0) {
156 int ai1=0,ai2=0,ai3=0;
157 sscanf(arg[ka+1],"%d,%d,%d",&ai1,&ai2,&ai3);
158 spec_win_sz_=ai1; spw_ext_sz_=ai2; nbmax_specwfiles_=ai3;
159 ka+=2;
160 }
161 else if (strcmp(arg[ka],"-in")==0) {
162 if ((narg-ka)<4) {
163 cout << " BRAnaParam::DecodeArgs() / Argument error " << endl;
164 return Usage(true);
165 }
166 sscanf(arg[ka+1],"%d,%d,%d",&imin_,&imax_,&istep_); ka+=2;
167 while(ka<(narg-1)) {
168 string inpath = arg[ka];
169 size_t lenp=inpath.size();
170 if (lenp<1) inpath="./";
171 if ((lenp>0)&&(inpath[lenp-1]!='/')) inpath+='/';
172 vector<string> fiblist;
173 string sa1 = arg[ka+1];
174 FillVStringFrString(sa1, fiblist, ',');
175 char dbuff[32];
176 for(size_t i=0; i<fiblist.size(); i++) {
177 sprintf(dbuff,"Fiber%d/",(int)atoi(fiblist[i].c_str()));
178 dirlist_.push_back(inpath+dbuff);
179 }
180 ka += 2;
181 }
182 okarg=true;
183 }
184 else ka++;
185 }
186
187 if (!okarg) {
188 cout << " BRAnaParam::DecodeArgs() / Argument error " << endl;
189 return Usage(true);
190 }
191 return 0;
192}
193
194/* --Methode-- */
195int BRAnaParam::Usage(bool fgshort)
196{
197 cout << " --- BRAnaParam : Reading/Processing BAORadio FITS files parameters " << endl;
198 cout << " Usage: prgname [-act ACT] [-out OutPath] [-fitsout] \n"
199 << " [-nmean NMean] [-zones NZones,nPaqinZone] \n"
200 << " [-nbloc NBloc] [-freq NumFreqMin,NumFreqMax,NBinFreq] \n"
201 << " [-prt lev,modulo] [-nvcal n] [-nthr n] [-nosfc]\n"
202 << " [-singlechan] [-twochan] [-fftdata] [-rawdata] \n"
203 << " [-freqfilter] [-gain filename] [-varcut min,max] [-nband nband,first,last] \n"
204 << " [-tmproc hh:mm:ss,nseconds] [-filldt] [-tspwin wsz,extsz,nfiles] \n"
205 << " -in Imin,Imax,Istep InPath FiberList [InPath2 FiberList2 InPath3 FiberList3 ...] \n" << endl;
206 if (fgshort) {
207 cout << " prgname -h for detailed instructions" << endl;
208 return 5;
209 }
210 cout << " -act Action: cube3d or vis or viscktt or mspec \n"
211 << " cube3d: create 3D fits cubes \n"
212 << " vis: compute visibilites (vismfib program) \n"
213 << " viscktt: compute visibilities and check TimeTag/FrameCounter (vismfib program)\n"
214 << " mspec: compute and save mean spectra for each channel \n"
215 << " bproc: run BRBaseProcessor for debug/printing (use -prt) \n"
216 << " -out OutPath: Output directory name \n"
217 << " -fitsout : Force FITS format for output files \n"
218 << " -nmean NMean: Number of packet used for spectra/visibility computation \n"
219 << " -nbloc NBloc: Number of MemMgr blocs in output file\n"
220 << " -zones NZones,NbPaqinZone : Number of Zones and number of paquets in one zone (RAcqMemZoneMgr) \n"
221 << " -freq NumFreqMin,NumFreqMax,NBinFreq : Frequency zone and number of bins \n"
222 << " -prt lev,modulo : Print level (0,1,2...) and print counter modulo (10000, 50000 ...) \n"
223 << " -nvcal n : number of BRVisibilityCalculator objects running in parallel in BRVisCalcGroup (default=1) \n"
224 << " -nthr n : number of threads for parallel execution in BRVisibilityCalculator (default=1) \n"
225 << " -nosfc : Don't force reading with SAME FrameCounter \n"
226 << " -singlechan : Force one channel per fiber \n"
227 << " -twochan : Force two channels per fiber \n"
228 << " -rawdata : Force raw data mode (firmware raw) \n"
229 << " -fftdata : Force FFT data mode (firmware fft) \n"
230 << " -varcut min,max : min-max cut on variance \n"
231 << " -nband nband,first,last: numbers of freq. bands and first and last bands used for cuts \n"
232 << " -tmproc hh:mm:ss,nseconds : processing time window definition \n"
233 << " -filldt : force data table filling \n"
234 << " -freqfilter : force median filtering on the frequencies \n"
235 << " -gain filename : spectral response fits file name \n"
236 << " -tspwin wsz,extsz,nfiles : spectra time (paquet no) window (ex: -tspwin 120,4,5) \n"
237 << " wsz,extsz= window,extension size; nfiles= maximum number of windows saved \n"
238 << " -in : input files/directory definition : \n"
239 << " Imin,Imax,Istep: fits files signalII.fits Imin<=II<=Imax Istep=increment \n"
240 << " InPath: Input directerory fits files in InPath/FiberJJ directory \n"
241 << " FiberList: List of fiber numbers (JJ - Ex: 2,1,4 ) \n" << endl;
242 return 1;
243}
244
245/* --Fonction-- */
246int BRAnaParam::PaqSizeFromFits()
247{
248 uint_4 paqsz, npaqf;
249 char flnm[1024];
250 sprintf(flnm,"%s/signal%d.fits",dirlist_[0].c_str(),imin_);
251 bool fgdatafft_in_fits=false;
252 bool fgsinglechan_in_fits=false;
253 SOPHYA::TimeStamp tmstart;
254 int rc = DecodeMiniFitsHeader(flnm,paqsize_, npaqinfile_,fgdatafft_in_fits, fgsinglechan_in_fits,tmstart);
255 if (!fgforcesingleortwochan_) fgsinglechannel_=fgsinglechan_in_fits;
256 if (!fgforceraworfft_) fgdatafft_=fgdatafft_in_fits;
257 if (fgtimeselect_) {
258 int year,month,day;
259 tmstart.GetDate(year,month,day);
260 proctimestart_.SetDate(year,month,day);
261 proctimeend_.Set(proctimestart_.ToDays()+proctimeduration_/86400.);
262 }
263 return rc;
264}
265
266/* --Fonction-- */
267ostream& BRAnaParam::Print(ostream& os)
268{
269 os << " BRAnaParam::Print() dirlist_.size()=" << dirlist_.size() << " Input directories: " << endl;
270 for(size_t k=0; k< dirlist_.size(); k++)
271 cout << k+1 << " : " << dirlist_[k] << endl;
272 cout << " IMin= " << imin_ << " IMax= " << imax_ << " IStep= " << istep_
273 << ((rdsamefc_)?" SameFrameCounter read mode":" AllOKPaquets read mode ") << endl;
274 if (fgtimeselect_) {
275 cout << " Processing time window, StartTime=" << proctimestart_ << " duration= " << proctimeduration_
276 << " EndTime=" << proctimeend_ << endl;
277 }
278 cout << " OutPath= " << outpath_ << (fgfitsout_?" force FITS output":" PPF output") << endl;
279 cout << " Action=" << action_ << " NMean=" << nmean_ << " NBloc=" << nbloc_ << endl;
280 cout << " FreqMin= " << freqmin_ << " FreqMax= " << freqmax_ << " NBinFreq= " << nbinfreq_ << endl;
281 cout<< ((fgdt_)?" Fill DadaTable ":" NO DataTable") << endl;
282 cout << " GainFileName=" << gainfile_ << " Variance: Min= " << vmin_ << " Max= " << vmax_
283 << " Bands: N=" << nbands_ << " First=" << bandfirst_ << " Last=" << bandlast_
284 << endl;
285 cout << " force frequence median filtering (action gain)" << endl;
286 cout << " Spectra TimeWindow (Nb.Paquets) Size=" << spec_win_sz_ << " ExtensionSize=" << spw_ext_sz_
287 << " MaxNbFile=" << nbmax_specwfiles_ << endl;
288 cout << " PaqSize=" << paqsize_ << " - NZones=" << nzones_ << " NPaqZone=" << npaqinzone_
289 << " PrtLevel=" << prtlevel_ << " PrtCntModulo=" << prtmodulo_ << endl;
290 cout << " AcqDataMode: " << ((fgdatafft_)?" Data_FFT " : " Data_Raw " )
291 << ((fgsinglechannel_)?" SingleChannel " : " TwoChannels " ) << endl;
292 cout << " NbVisibCalculator in Group: " << nbcalgrp_ << " with N//threads: " << nthreads_ << endl;
293
294
295 return os;
296}
297
298/* --Fonction-- */
299int BRAnaParam::DecodeMiniFitsHeader(const char* filename, uint_4& paqsz, uint_4& npaq,
300 bool& fgdatafft, bool& fgsinglechannel, SOPHYA::TimeStamp& tmstart)
301{
302 cout << " DecodeMiniFitsHeader - Opening file: " << filename << endl;
303 MiniFITSFile mff(filename, MF_Read);
304 string acqmode=mff.GetKeyValue("ACQMODE");
305 cout << "DecodeMiniFitsHeader()... Type=" << mff.DataTypeToString() << " NAxis1=" << mff.NAxis1()
306 << " NAxis2=" << mff.NAxis2() << " AcqMode=" << acqmode << endl;
307 paqsz = mff.NAxis1();
308 npaq = mff.NAxis2();
309 if (acqmode.substr(0,3)=="fft") fgdatafft=true;
310 if (acqmode.find("1c") < acqmode.length()) fgsinglechannel=true;
311 string fkvs=mff.GetKeyValue("DATEOBS");
312 if (fkvs.length()>0) tmstart.Set(fkvs);
313 fkvs=mff.GetKeyValue("TMSTART");
314 if (fkvs.length()>0) tmstart.Set(fkvs);
315 return 0;
316}
317
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