source: Sophya/trunk/AddOn/TAcq/brviscalc.cc@ 3958

Last change on this file since 3958 was 3957, checked in by ansari, 15 years ago

Correction petit bug passage arguments ds vismfib.cc, Reza 02/03/2011

File size: 25.8 KB
Line 
1//----------------------------------------------------------------
2// Projet BAORadio - (C) LAL/IRFU 2008-2010
3// Classes de threads de calcul de visibilites pour BAORadio
4//----------------------------------------------------------------
5
6#include <stdlib.h>
7#include <string.h>
8#include <unistd.h>
9#include <fstream>
10#include <signal.h>
11
12#include "pexceptions.h"
13#include "fioarr.h"
14#include "fitsarrhand.h"
15#include "matharr.h"
16#include "arrctcast.h"
17#include "timestamp.h"
18#include "ctimer.h"
19
20#include "brviscalc.h"
21
22
23//---------------------------------------------------------------------
24// Classe de traitement - calcul de visibilite pour n fibres
25//---------------------------------------------------------------------
26
27/* --Methode-- */
28BRVisibilityCalculator::BRVisibilityCalculator(RAcqMemZoneMgr& memgr, string outpath, uint_4 nmean, size_t nthr)
29 : BRBaseProcessor(memgr), paralex_(*this, nthr), nparthr_(nthr),
30 outpath_(outpath), nmean_(nmean), nbcalc_(1), calcid_(0),
31 vpdata_(2*memgr.NbFibres()), vpdatar_(2*memgr.NbFibres())
32 // , dtfos_(outpath+"visdt.fits", Fits_Create), visdt_(dtfos_, 1024, true);
33{
34 SetFFTData();
35 DefineRank(1,0);
36 SetPPFOutput();
37
38 uint_4 maxnpairs = (2*memgr_.NbFibres()+1)*memgr_.NbFibres();
39 chanids_.SetSize(2*memgr_.NbFibres());
40 chanpairnumall_.SetSize(maxnpairs);
41 chanpairsall_.SetSize(maxnpairs,2);
42 for(size_t i=0; i<2*memgr_.NbFibres(); i++) {
43 vpdata_[i]=NULL; vpdatar_[i]=NULL;
44 }
45 // Pas necessaire - appele par DefineRank- SelectPairs();
46
47 // visdt_.AddFloatColumn("mfc");
48 visdt_.AddDoubleColumn("mfc");
49 visdt_.AddDoubleColumn("mtt");
50 visdt_.AddIntegerColumn("jfreq");
51 visdt_.AddIntegerColumn("numch");
52 visdt_.AddFloatColumn("vre");
53 visdt_.AddFloatColumn("vim");
54 ActivateVisDTable();
55
56 if (nmean_ < 1) nmean_=memgr_.NbPaquets();
57 if (nmean_ < 1) nmean_=1;
58
59 cout << " BRVisibilityCalculator::/Info nmean=" << nmean_ << endl;
60
61 totnbpaq_=0;
62 numfile_=0;
63 nb_flop_=0.;
64 moyfc_=moytt_=0.;
65
66 fgallfibok=NULL;
67 fgcktt_=false;
68 setNameId("viscalc", 0);
69}
70
71/* --Methode-- */
72BRVisibilityCalculator::~BRVisibilityCalculator()
73{
74 if (totnbpaq_<1) return;
75 if (fgvisdt_) {
76 cout << " ~BRVisibilityCalculator - Visibility Datatable : " << endl;
77 cout << visdt_;
78
79 string filename;
80 filename = outpath_+"visdt.ppf";
81 if (nbcalc_>1) {
82 char sbuff[32];
83 sprintf(sbuff,"visdt_%d.ppf",(int)calcid_);
84 filename = outpath_+sbuff;
85 }
86 POutPersist po(filename);
87 po << visdt_;
88 }
89 if (calcid_ == 0) {
90 if (fgcktt_) {
91 cout << " BRVisibilityCalculator - Check TimeTag done: TotNPaqProc= " << totnbpaq_ << endl;
92 for(size_t fib=0; fib<(size_t)memgr_.NbFibres(); fib++) {
93 cout << " BRTTCheck-Fiber[" << fib << "] NBadTT=" << vbadtt_[fib] << " NDiffTT>5="
94 << vndiff5tt_[fib] << " NotSameTT=" << vnsamett_[fib] << endl;
95 }
96 POutPersist pott(outpath_+"ttfcmtx.ppf");
97 pott << PPFNameTag("FC") << fcmtx_;
98 pott << PPFNameTag("TT") << ttmtx_;
99 }
100 }
101}
102
103/* --Methode-- */
104void BRVisibilityCalculator::DefineRank(uint_4 nbc, uint_4 cid, uint_4 pair1, uint_4 nbpairs, bool fgpimp)
105{
106 if ((nbc>6)||(cid>=nbc))
107 throw ParmError("BRVisibilityCalculator::DefineRank() NbCalc > 6 !");
108 uint_4 maxnpairs = (2*memgr_.NbFibres()+1)*memgr_.NbFibres();
109 if ((pair1>=maxnpairs)||(nbpairs<1))
110 throw ParmError("BRVisibilityCalculator::DefineRank() (pair1>=maxnpairs)||(nbpairs<1) !");
111 maxnpairs-=pair1;
112 if (maxnpairs>nbpairs) maxnpairs=nbpairs;
113
114 nbcalc_=nbc;
115 calcid_=cid;
116 if (nbcalc_>1) {
117 uint_4 npairspth=maxnpairs/nbcalc_; // nb de paires par thread
118 if (calcid_==(nbcalc_-1))
119 SelectPairs(calcid_*npairspth+pair1, maxnpairs-calcid_*npairspth, fgpimp);
120 else
121 SelectPairs(calcid_*npairspth+pair1, npairspth, fgpimp);
122 MemZaction mmzas[10]={MemZA_ProcA,MemZA_ProcB,MemZA_ProcC,MemZA_ProcD,MemZA_ProcE,MemZA_ProcF,
123 MemZA_ProcG,MemZA_ProcH,MemZA_ProcI,MemZA_ProcJ};
124 SetMemZAction(mmzas[calcid_]);
125 setNameId("viscalc_grp", calcid_);
126 }
127 else SelectPairs(pair1,maxnpairs, fgpimp);
128 return ;
129}
130
131/* --Methode-- */
132uint_4 BRVisibilityCalculator::SelectPairs(uint_4 pair1, uint_4 nbpairs, bool fgpimp)
133{
134 BRPaquet paq(memgr_.PaqSize());
135 uint_4 maxnpairs = (2*memgr_.NbFibres()+1)*memgr_.NbFibres();
136
137 if (pair1 >= maxnpairs) pair1=maxnpairs-1;
138 if (nbpairs > maxnpairs-pair1) nbpairs=maxnpairs-pair1;
139
140 pairst_=pair1;
141 nbpairs_=nbpairs;
142 fgpimp_=fgpimp;
143
144 uint_4 nbvisicomp=0;
145 sa_size_t kpair=0;
146 for(size_t i=0; i<vpdata_.size(); i++) {
147 for(size_t j=i; j<vpdata_.size(); j++) {
148 kpair++;
149 if (kpair<(pairst_+1)) continue;
150 if (kpair>=(pairst_+nbpairs_+1)) break;
151 if (fgpimp_&&(i!=j)&&((i+j)%2==0)) continue; // calcul des visib avec numero pair-impair + autocorrel
152 nbvisicomp++;
153 }
154 }
155
156 vismtx_.SetSize(nbvisicomp, paq.DataSize()/4);
157
158 chanpairnum_.SetSize(nbvisicomp);
159 chanpairs_.SetSize(nbvisicomp,2);
160
161 return nbvisicomp;
162}
163
164/* --Methode-- */
165int BRVisibilityCalculator::SelectFreqBinning(uint_4 freq1, uint_4 freq2, uint_4 nbfreq)
166{
167 jf1_=freq1; jf2_=freq2;
168 if ((jf1_<1)||(jf1_>=vismtx_.NCols())) jf1_=1;
169 if ((jf2_<1)||(jf2_>=vismtx_.NCols())||(jf2_<jf1_)) jf2_=vismtx_.NCols()-1;
170 if (nbfreq<1) nbfreq=(jf2_-jf1_);
171 djf_=(jf2_-jf1_)/nbfreq;
172 if (djf_<1) djf_=1;
173 cout << " BRVisibilityCalculator::SelectFreqBinning/Info JF1=" << jf1_
174 << " JF2=" << jf2_ << " DJF=" << djf_ << endl;
175
176}
177
178/* --Methode-- */
179void BRVisibilityCalculator::UpdateChanIds()
180{
181
182 for(size_t i=0; i<memgr_.NbFibres(); i++) {
183 chanids_(2*i)=memgr_.FiberId(i)*2-1;
184 chanids_(2*i+1)=memgr_.FiberId(i)*2;
185 }
186 sa_size_t k=0; // numero de ligne dans la matrice des visibilites
187 for(size_t i=0; i<vpdata_.size(); i++) {
188 for(size_t j=i; j<vpdata_.size(); j++) {
189 chanpairnumall_(k)=chanids_(i)*CHANPAIRCONVFAC+chanids_(j);
190 chanpairsall_(k,0)=chanids_(i); chanpairsall_(k,1)=chanids_(j); k++;
191 }
192 }
193 sa_size_t kpair=0;
194 k=0; // numero de ligne dans la matrice des visibilites
195 for(size_t i=0; i<vpdata_.size(); i++) {
196 for(size_t j=i; j<vpdata_.size(); j++) {
197 kpair++;
198 if (kpair<(pairst_+1)) continue;
199 if (kpair>=(pairst_+nbpairs_+1)) break;
200 if (fgpimp_&&(i!=j)&&((i+j)%2==0)) continue; // calcul des visib avec numero pair-impair + autocorrel
201 chanpairnum_(k)=chanids_(i)*CHANPAIRCONVFAC+chanids_(j);
202 chanpairs_(k,0)=chanids_(i); chanpairs_(k,1)=chanids_(j); k++;
203 }
204 }
205
206 string filename;
207 filename = (outpath_+"chanum.")+OutFileExtension();
208 if (nbcalc_>1) {
209 char sbuff[32];
210 sprintf(sbuff,"chanum_%d.%s",(int)calcid_,OutFileExtension());
211 filename = outpath_+sbuff;
212 }
213 if (fgfitsout_) { // Ecriture au format FITS
214 FitsInOutFile foc(filename, FitsInOutFile::Fits_Create);
215 foc.SetNextExtensionName("chanids");
216 foc << chanids_;
217 foc.SetNextExtensionName("chanpairs");
218 foc << chanpairs_;
219 foc.SetNextExtensionName("chanpairnum");
220 foc << chanpairnum_;
221 foc.SetNextExtensionName("chanpairsall");
222 foc << chanpairsall_;
223 foc.SetNextExtensionName("chanpairnumall");
224 foc << chanpairnumall_;
225 }
226 else { // Format PPF
227 POutPersist poc(filename);
228 poc << PPFNameTag("chanids") << chanids_;
229 poc << PPFNameTag("chanpairs") << chanpairs_;
230 poc << PPFNameTag("chanpairnum") << chanpairnum_;
231 poc << PPFNameTag("chanpairsall") << chanpairsall_;
232 poc << PPFNameTag("chanpairnumall") << chanpairnumall_;
233 }
234 cout << "BRVisibilityCalculator[" << calcid_ << "]::UpdateChanIds() Channel Ids/Pairs saved to file "
235 << filename << endl;
236 cout << " ... NbVisib=NbChanPairs=" << chanpairs_.NRows() << " ChannelPairs= " ;
237 for(sa_size_t ir=0; ir<chanpairs_.NRows(); ir++) {
238 if (ir%10==0) cout << endl;
239 cout << "(" << chanpairs_(ir,0) << "," << chanpairs_(ir,1) << ") ";
240 }
241 cout << endl;
242 return;
243}
244
245/* --Methode-- */
246int BRVisibilityCalculator::ActivateTimeTagCheck(uint_8 maxnpaq)
247{
248 mindeltatt_=memgr_.PaqSize()/2;
249 if (mindeltatt_<1) mindeltatt_=1;
250 fcmtx_.SetSize(memgr_.NbFibres(), maxnpaq);
251 ttmtx_.SetSize(memgr_.NbFibres(), maxnpaq);
252 vlasttt_.resize(memgr_.NbFibres(), 0);
253 vbadtt_.resize(memgr_.NbFibres(), 0);
254 vnsamett_.resize(memgr_.NbFibres(), 0);
255 vndiff5tt_.resize(memgr_.NbFibres(), 0);
256
257 fgcktt_=true;
258 cout << " BRVisibilityCalculator::ActivateTimeTagCheck() - TT/Fc matrix NCols=" << maxnpaq
259 << " MinDeltaTT=" << mindeltatt_ << endl;
260
261 return 0;
262}
263
264
265/* --Methode-- */
266void BRVisibilityCalculator::run()
267{
268 cout << " BRVisibilityCalculator[" << calcid_ << "/" << nbcalc_
269 << "]::run() - Starting " << " NFibers=" << memgr_.NbFibres()
270 << " NChan=" << 2*memgr_.NbFibres() << " NPairs=" << nbpairs_ << " First:" << pairst_ << endl;
271
272 if (nparthr_ < 2) return BRBaseProcessor::run();
273 // Execution multithread parallele
274 setRC(1);
275 int rc=0;
276 try {
277 if ((nmean_%memgr_.NbPaquets())!=0) {
278 uint_4 mnmean = (nmean_/memgr_.NbPaquets()+1)*memgr_.NbPaquets();
279 cout << " BRVisibilityCalculator::run()/Info changing nmean=" << nmean_ << " to multiple of"
280 << " memgr_.NbPaquets() -> " << mnmean << endl;
281 nmean_=mnmean;
282 }
283 paralex_.SetParallelTask(*this);
284 cout << " BRVisibilityCalculator::run()/Info : starting ParallelExecutor with nThreads="
285 << paralex_.nThreads() << " ... " << endl;
286 paralex_.start();
287
288 fgallfibok = new bool[memgr_.NbPaquets()];
289
290 size_t paqsz=memgr_.PaqSize();
291 size_t procpaqsz=memgr_.ProcPaqSize();
292 bool fgrun=true;
293 while (fgrun) {
294 if (stop_) break;
295 if (memgr_.GetRunState() == MemZR_Stopped) break;
296 int mid = memgr_.FindMemZoneId(mmact_); // (MemZA_ProcA);
297 // Byte* buffg = memgr_.GetMemZone(mid);
298 // if (buffg == NULL) {
299 if (mid < 0) {
300 cout << "BRVisibilityCalculator[" << calcid_ << "]::run()/ERROR FindMemZoneId("
301 << (int)mmact_ << ") ->" << mid << ") -> NULL" << endl;
302 setRC(7); fgrun=false;
303 break;
304 }
305 cts_=memgr_.GetAuxData(mid)->FillTime(); // get associated date/time (DATEOBS)
306 if (totnbpaq_==0) UpdateChanIds(); // Appele ici pour etre sur que le thread de remplissage a mis l'info a jour.
307
308 for(size_t fib=0; fib<(size_t)memgr_.NbFibres(); fib++) {
309 fbuff_[fib] = memgr_.GetMemZone(mid,fib);
310 if (fbuff_[fib] == NULL) { // cela ne devrait pas arriver
311 cout << "BRVisibilityCalculator[" << calcid_ << "]::run()/ERROR memgr.GetMemZone(" << mid << "," << fib << ") -> NULL" << endl;
312 setRC(9); fgrun=false;
313 break;
314 }
315 if ((procpaqsz>0)&&((fprocbuff_[fib]=memgr_.GetProcMemZone(mid,fib))==NULL)) { // cela ne devrait pas arriver non plus
316 cout << "BRVisibilityCalculator[" << calcid_ << "]::run()/ERROR memgr.GetProcMemZone("
317 << mid << "," << fib << ") -> NULL" << endl;
318 setRC(9); fgrun=false;
319 break;
320 }
321 }
322
323 if (totnbpaq_%nmean_ == 0) {
324 if (totnbpaq_ > 0) {
325 moyfc_/=nmean_;
326 moytt_/=nmean_;
327 UpdateVisMtxInfo(); // add/update keywords in the Info DVList
328 // ATTENTION : Matrice visibilites non moyennee
329 char nfile[48];
330 if (nbcalc_==1)
331 sprintf(nfile,"vismtx%d.%s",numfile_,OutFileExtension());
332 else
333 sprintf(nfile,"vismtx_%d_%d.%s",(int)calcid_,numfile_,OutFileExtension());
334 string flnm=outpath_+nfile;
335 if (fgfitsout_) { // Ecriture au format FITS
336 FitsInOutFile fo(flnm, FitsInOutFile::Fits_Create);
337 TArray<r_4> arvismtx = ArrCastC2R(vismtx_);
338 arvismtx.Info()=vismtx_.Info();
339 fo << arvismtx;
340 }
341 else { // Format PPF
342 POutPersist po(flnm);
343 po << vismtx_;
344 }
345 if ((prtlev_>0)&&(numfile_%prtmodulo_==0)) {
346 cout << numfile_ << "-BRVisCalc[" << calcid_ << "/" << nbcalc_ << "]::run() NPaqProc="
347 << totnbpaq_ << " TotMegaFLOP=" << (uint_8)TotNbMegaFLOP() << " -> VisibMtx in " << flnm << endl;
348 }
349 if (fgvisdt_) FillVisibTable(moyfc_, moytt_);
350 numfile_++;
351 }
352 vismtx_ = complex<r_4>((r_4)0.,(r_4)0.);
353 moyfc_=moytt_=0.;
354 // first_tmstamp_.SetNow(); // Current date and time
355 first_tmstamp_=cts_; // Current date and time
356 }
357
358 for(size_t jp=0; jp<memgr_.NbPaquets(); jp++) { // boucle sur les paquets d'une zone
359 fgallfibok[jp]=fgokallfibers_=true;
360 for(size_t fib=0; fib<(size_t)memgr_.NbFibres(); fib++) {
361 vpaq_[fib].Set(fbuff_[fib]+jp*paqsz);
362 vfgok_[fib] = vpchk_[fib].Check(vpaq_[fib],curfc_[fib]);
363 if (!vfgok_[fib]) fgallfibok[jp]=fgokallfibers_=false;
364 if (procpaqsz>0) vprocpaq_[fib] = fprocbuff_[fib]+jp*procpaqsz;
365 }
366 if (fgokallfibers_) {
367 if (totprocnpaq_==0) {
368 for(size_t fib=0; fib<(size_t)memgr_.NbFibres(); fib++) {
369 fcfirst_[fib]=curfc_[fib];
370 ttfirst_[fib]=vpaq_[fib].TimeTag();
371 }
372 }
373 totprocnpaq_++;
374 moyfc_ += curfc_[0];
375 moytt_ += (vpaq_[0].TimeTag()-ttfirst_[0]);
376 if ((fgcktt_)&&(calcid_==0)) CheckTimeTag();
377 if (totnbpaq_%nmean_ == 0) {
378 first_fc_=curfc_[0];
379 first_tt_= (vpaq_[0].TimeTag()-ttfirst_[0]);
380 }
381 totnbpaq_++;
382 }
383 } // Fin de boucle sur les paquets
384
385 // Execution parallele pour calcul des visibilites par bandes de frequence
386 int rcpex=paralex_.execute();
387 if (rcpex!=0) cout << " BRVisibilityCalculator[" << calcid_ << "]::run() / Error Rc[paralex_.execute()]=" << rcpex << endl;
388
389 memgr_.FreeMemZone(mid, mmsta_); // (MemZS_ProcA);
390 } // Fin de boucle sur les zones a traiter
391 //------------------------------------
392 cout << " --------- END BRVisibilityCalculator[" << calcid_ << "]::run() , TotNbProcPaq=" << totprocnpaq_ << endl;
393 /*
394 for(size_t fib=0; fib<(size_t)memgr_.NbFibres(); fib++) vpchk_[fib].Print();
395 cout << " ------------------------------------ " << endl;
396 */
397 delete[] fgallfibok;
398 }
399 catch (std::exception& exc) {
400 cout << " BRVisibilityCalculator[" << calcid_ << "]::run()/catched std::exception " << exc.what() << endl;
401 setRC(98);
402 return;
403 }
404 catch(...) {
405 cout << " BRVisibilityCalculator[" << calcid_ << "]::run()/catched unknown ... exception " << endl;
406 setRC(99);
407 return;
408 }
409
410}
411
412/* --Methode-- */
413int BRVisibilityCalculator::Process()
414{
415 if (totnbpaq_==0) UpdateChanIds(); // Appele ici pour etre sur que le thread de remplissage a mis l'info a jour.
416 if (fgdataraw_) { // Donnees firmware RAW apres TF soft
417 for(size_t fib=0; fib<(size_t)memgr_.NbFibres(); fib++) {
418 vpdatar_[2*fib] = reinterpret_cast< complex<r_4>* > (vprocpaq_[fib]);
419 vpdatar_[2*fib+1] = reinterpret_cast< complex<r_4>* >(vprocpaq_[fib]+memgr_.ProcPaqSize()/2) ;
420 }
421 }
422 else { // donnees firmware FFT
423 for(size_t fib=0; fib<(size_t)memgr_.NbFibres(); fib++) {
424 vpdata_[2*fib] = vpaq_[fib].Data1C();
425 vpdata_[2*fib+1] = vpaq_[fib].Data2C();
426 }
427 }
428
429 if (totnbpaq_%nmean_ == 0) {
430 if (totnbpaq_ > 0) {
431 moyfc_/=nmean_;
432 moytt_/=nmean_;
433 UpdateVisMtxInfo(); // add/update keywords in the Info DVList
434 // ATTENTION : Matrice visibilites non moyennee
435 char nfile[48];
436 if (nbcalc_==1)
437 sprintf(nfile,"vismtx%d.%s",numfile_,OutFileExtension());
438 else
439 sprintf(nfile,"vismtx_%d_%d.%s",(int)calcid_,numfile_,OutFileExtension());
440 string flnm=outpath_+nfile;
441 if (fgfitsout_) { // Ecriture au format FITS
442 FitsInOutFile fo(flnm, FitsInOutFile::Fits_Create);
443 TArray<r_4> arvismtx = ArrCastC2R(vismtx_);
444 arvismtx.Info()=vismtx_.Info();
445 fo << arvismtx;
446 }
447 else { // Format PPF
448 POutPersist po(flnm);
449 po << vismtx_;
450 }
451 if ((prtlev_>0)&&(numfile_%prtmodulo_==0)) {
452 cout << numfile_ << "-BRVisCalc[" << calcid_ << "/" << nbcalc_ << "]::Process() NPaqProc="
453 << totnbpaq_ << " TotMegaFLOP=" << (uint_8)TotNbMegaFLOP() << " -> VisibMtx in " << flnm << endl;
454 }
455 if (fgvisdt_) FillVisibTable(moyfc_, moytt_);
456 numfile_++;
457 }
458 vismtx_ = complex<r_4>((r_4)0.,(r_4)0.);
459 moyfc_=moytt_=0.;
460 first_fc_=curfc_[0];
461 first_tt_= (vpaq_[0].TimeTag()-ttfirst_[0]);
462 // first_tmstamp_.SetNow(); // Current date and time
463 first_tmstamp_=cts_; // Current date and time
464 }
465
466// kpair=numero sequentiel de la paire: 0->(0,0), 1->(0,1), 2->(0,2), 3->(0,3), 4->(1,1), 5->(1,2) ...
467 sa_size_t kpair=0;
468 sa_size_t k=0; // numero de ligne dans la matrice des visibilites
469 for(size_t i=0; i<vpdata_.size(); i++) {
470 for(size_t j=i; j<vpdata_.size(); j++) {
471 kpair++;
472 if (kpair<(pairst_+1)) continue;
473 if (kpair>=(pairst_+nbpairs_+1)) break;
474 if (fgpimp_&&(i!=j)&&((i+j)%2==0)) continue; // calcul des visib avec numero pair-impair + autocorrel
475 TVector< complex<r_4> > vis = vismtx_.Row(k); k++;
476
477 if (fgdataraw_) { // Donnees firmware RAW apres TF soft
478 for(sa_size_t f=1; f<vis.Size(); f++) {
479 vis(f) += vpdatar_[i][f] * vpdatar_[j][f];
480 }
481 }
482 else { // donnees firmware FFT
483 for(sa_size_t f=1; f<vis.Size(); f++) {
484 vis(f) += complex<r_4>((r_4)vpdata_[i][f].realB(), (r_4)vpdata_[i][f].imagB()) *
485 complex<r_4>((r_4)vpdata_[j][f].realB(), -(r_4)vpdata_[j][f].imagB());
486 }
487 }
488 nb_flop_ += (8.*(r_8)(vis.Size()-1));
489 }
490 }
491
492 moyfc_ += curfc_[0];
493 moytt_ += (vpaq_[0].TimeTag()-ttfirst_[0]);
494 if ((fgcktt_)&&(calcid_==0)) CheckTimeTag();
495 totnbpaq_++;
496 return 0;
497}
498
499/* --Methode-- */
500void BRVisibilityCalculator::UpdateVisMtxInfo()
501{
502 string ikey,ikdesc;
503 ikey="DATEOBS"; ikdesc=" Date/Time corresponding to TimeTagFirst";
504 vismtx_.Info().SetS(ikey,first_tmstamp_.ToString());
505 vismtx_.Info().SetComment(ikey,ikdesc);
506 ikey="FirstFC"; ikdesc="First FrameCounter";
507 vismtx_.Info().SetI(ikey,first_fc_);
508 vismtx_.Info().SetComment(ikey,ikdesc);
509 ikey="FirstTT"; ikdesc="First TimeTag";
510 vismtx_.Info().SetI(ikey,first_tt_);
511 vismtx_.Info().SetComment(ikey,ikdesc);
512 ikey="LastFC"; ikdesc="Last FrameCounter";
513 vismtx_.Info().SetI(ikey,curfc_[0]);
514 vismtx_.Info().SetComment(ikey,ikdesc);
515 ikey="LastTT"; ikdesc="Last TimeTag";
516 vismtx_.Info().SetI(ikey,vpaq_[0].TimeTag()-ttfirst_[0]);
517 vismtx_.Info().SetComment(ikey,ikdesc);
518 ikey="MeanFC"; ikdesc="Mean FrameCounter";
519 vismtx_.Info().SetD(ikey,moyfc_);
520 vismtx_.Info().SetComment(ikey,ikdesc);
521 ikey="MeanTT"; ikdesc="Mean TimeTag";
522 vismtx_.Info().SetD(ikey,moytt_);
523 vismtx_.Info().SetComment(ikey,ikdesc);
524 ikey="NPAQSUM"; ikdesc="Number of paquets summed";
525 vismtx_.Info().SetI(ikey,nmean_);
526}
527
528
529/* --Methode-- */
530int BRVisibilityCalculator::execute(int tid)
531{
532 vector<TwoByteComplex*> pvpdata(2*memgr_.NbFibres());
533 vector< complex<r_4>* > pvpdatar(2*memgr_.NbFibres());
534 size_t paqsz=memgr_.PaqSize();
535 BRPaquet ppaq(paqsz);
536
537
538 sa_size_t fdelt = vismtx_.NCols()/nparthr_;
539 sa_size_t fdeb = tid*fdelt;
540 sa_size_t ffin = (tid+1)*fdelt;
541
542 if (fdeb<1) fdeb=1;
543 if ((ffin>vismtx_.NCols())||(tid==(nparthr_-1))) ffin=vismtx_.NCols();
544
545 for(size_t jp=0; jp<memgr_.NbPaquets(); jp++) { // boucle sur les paquets d'une zone
546 if (!fgallfibok[jp]) continue;
547 if (fgdataraw_) { // Donnees firmware RAW apres TF soft
548 size_t procpaqsz=memgr_.ProcPaqSize();
549 for(size_t fib=0; fib<(size_t)memgr_.NbFibres(); fib++) {
550 pvpdatar[2*fib] = reinterpret_cast< complex<r_4>* > (fprocbuff_[fib]+jp*procpaqsz);
551 pvpdatar[2*fib+1] = reinterpret_cast< complex<r_4>* >(vprocpaq_[fib]+jp*procpaqsz+procpaqsz/2) ;
552 }
553 }
554 else { // donnees firmware FFT
555 for(size_t fib=0; fib<(size_t)memgr_.NbFibres(); fib++) {
556 ppaq.Set(fbuff_[fib]+jp*paqsz);
557 pvpdata[2*fib] = ppaq.Data1C();
558 pvpdata[2*fib+1] = ppaq.Data2C();
559 }
560 }
561
562
563// kpair=numero sequentiel de la paire: 0->(0,0), 1->(0,1), 2->(0,2), 3->(0,3), 4->(1,1), 5->(1,2) ...
564 sa_size_t kpair=0;
565 sa_size_t k=0; // numero de ligne dans la matrice des visibilites
566 for(size_t i=0; i<vpdata_.size(); i++) {
567 for(size_t j=i; j<vpdata_.size(); j++) {
568 kpair++;
569 if (kpair<(pairst_+1)) continue;
570 if (kpair>=(pairst_+nbpairs_+1)) break;
571 if (fgpimp_&&(i!=j)&&((i+j)%2==0)) continue; // calcul des visib avec numero pair-impair + autocorrel
572 TVector< complex<r_4> > vis = vismtx_.Row(k); k++;
573 if (fgdataraw_) { // Donnees firmware RAW apres TF soft
574 for(sa_size_t f=fdeb; f<ffin; f++) {
575 vis(f) += pvpdatar[i][f] * pvpdatar[j][f];
576 }
577 }
578 else { // donnees firmware FFT
579 for(sa_size_t f=fdeb; f<ffin; f++) {
580 vis(f) += complex<r_4>((r_4)pvpdata[i][f].realB(), (r_4)pvpdata[i][f].imagB()) *
581 complex<r_4>((r_4)pvpdata[j][f].realB(), -(r_4)pvpdata[j][f].imagB());
582 }
583 }
584 nb_flop_ += (8.*(r_8)(ffin-fdeb));
585 }
586 }
587
588 } // Fin de boucle sur les paquets
589
590 return 0;
591}
592
593/* --Methode-- */
594int BRVisibilityCalculator::FillVisibTable(double fcm, double ttm)
595{
596 double xnt[10];
597 xnt[0]=fcm; xnt[1]=ttm/1.25e8;
598
599 if (djf_<2) {
600 for(sa_size_t rv=0; rv<vismtx_.NRows(); rv++) {
601 for(sa_size_t jf=jf1_; jf<jf2_; jf++) {
602 xnt[2]=jf;
603 xnt[3]=chanpairnumall_(rv+pairst_);
604 xnt[4]=vismtx_(rv,jf).real()/(r_4)(nmean_);
605 xnt[5]=vismtx_(rv,jf).imag()/(r_4)(nmean_);
606 visdt_.AddRow(xnt);
607 }
608 }
609 }
610 else {
611 for(sa_size_t rv=0; rv<vismtx_.NRows(); rv++) {
612 for(sa_size_t jf=jf1_; jf<jf2_; jf+=djf_) {
613 r_4 moyreal=0.;
614 r_4 moyimag=0.;
615 sa_size_t jjfmx=jf+djf_;
616 if (jjfmx > vismtx_.NCols()) jjfmx=vismtx_.NCols();
617 for(sa_size_t jjf=jf; jjf<jjfmx; jjf++) {
618 moyreal+=vismtx_(rv,jjf).real();
619 moyimag+=vismtx_(rv,jjf).imag();
620 }
621 xnt[2]=jf+djf_/2;
622 xnt[3]=chanpairnumall_(rv+pairst_);
623 xnt[4]=moyreal/(r_4)(nmean_*djf_);
624 xnt[5]=moyimag/(r_4)(nmean_*djf_);
625 visdt_.AddRow(xnt);
626 }
627 }
628 }
629 return 0;
630}
631
632/* --Methode-- */
633int BRVisibilityCalculator::CheckTimeTag()
634{
635 if (totnbpaq_==0) {
636 for(size_t fib=0; fib<(size_t)memgr_.NbFibres(); fib++) {
637 vlasttt_[fib]=ttfirst_[fib];
638 if (ttmtx_.NCols()>0) {
639 fcmtx_(fib,totnbpaq_) = curfc_[fib];
640 ttmtx_(fib,totnbpaq_) = vlasttt_[fib];
641 }
642 }
643 return 0;
644 }
645 for(size_t fib=0; fib<(size_t)memgr_.NbFibres(); fib++) {
646 int_8 ld = (int_8)vpaq_[fib].TimeTag()-(int_8)vlasttt_[fib];
647 int_8 fd = (int_8)vpaq_[fib].TimeTag()-(int_8)ttfirst_[fib]-(int_8)vpaq_[0].TimeTag()+(int_8)ttfirst_[0];
648 /* if ( (ld < mindeltatt_) || (fd<-5) || (fd>5)) { vbadtt_[fib]++; vnsamett_[fib]++; }
649 else {
650 if (fd!=0) vnsamett_[fib]++;
651 }
652 */
653 if (ld < mindeltatt_) vbadtt_[fib]++;
654 else {
655 if (fd != 0) vnsamett_[fib]++;
656 if ((fd<-5)||(fd>5)) vndiff5tt_[fib]++;
657 }
658 vlasttt_[fib]=vpaq_[fib].TimeTag();
659 if (totnbpaq_<ttmtx_.NCols()) {
660 fcmtx_(fib,totnbpaq_) = curfc_[fib];
661 ttmtx_(fib,totnbpaq_) = vlasttt_[fib];
662 }
663 }
664 return 0;
665}
666
667//-------------------------------------------------------------------------------
668// Classe Groupe (ensemble) de Calculateur de Visibilites, tournant en parallele
669//-------------------------------------------------------------------------------
670
671/* --Methode-- */
672BRVisCalcGroup::BRVisCalcGroup(size_t nbcalc, RAcqMemZoneMgr& memgr, string outpath, uint_4 nmean,
673 uint_4 pair1, uint_4 nbpairs, bool fgpimp, size_t nthr)
674 : tm_(false)
675{
676 if ((nbcalc<1)||(nbcalc>6))
677 throw ParmError("BRVisCalcGroup::BRVisCalcGroup NbCalc > 6 !");
678 for(size_t i=0; i<nbcalc; i++) {
679 BRVisibilityCalculator * viscp=new BRVisibilityCalculator(memgr, outpath, nmean, nthr);
680 viscp->DefineRank(nbcalc, i, pair1, nbpairs, fgpimp);
681 viscalcp_.push_back(viscp);
682 }
683}
684/* --Methode-- */
685BRVisCalcGroup::~BRVisCalcGroup()
686{
687 for(size_t i=0; i<viscalcp_.size(); i++)
688 delete viscalcp_[i];
689}
690/* --Methode-- */
691MemZStatus BRVisCalcGroup::SetMemZAction(MemZaction mmact)
692{
693 MemZaction mmzas[10]={MemZA_ProcA,MemZA_ProcB,MemZA_ProcC,MemZA_ProcD,MemZA_ProcE,MemZA_ProcF,
694 MemZA_ProcG,MemZA_ProcH,MemZA_ProcI,MemZA_ProcJ};
695 MemZStatus mmzss[10]={MemZS_ProcA,MemZS_ProcB,MemZS_ProcC,MemZS_ProcD,MemZS_ProcE,MemZS_ProcF,
696 MemZS_ProcG,MemZS_ProcH,MemZS_ProcI,MemZS_ProcJ};
697 size_t ia=9999;
698 for(int i=0; i<10; i++) {
699 if (mmact==mmzas[i]) { ia=i; break; }
700 }
701 if (ia>=10)
702 throw ParmError("BRVisCalcGroup::SetMemZAction() Bad MemZaction mmact !");
703 if ((ia+viscalcp_.size())>10)
704 throw ParmError("BRVisCalcGroup::SetMemZAction() MemZaction mmact too high !");
705 for(size_t i=0; i<viscalcp_.size(); i++) {
706 viscalcp_[i]->SetMemZAction(mmzas[ia]); ia++;
707 }
708 return mmzss[ia-1];
709}
710/* --Methode-- */
711int BRVisCalcGroup::SelectFreqBinning(uint_4 freq1, uint_4 freq2, uint_4 nbfreq)
712{
713 int rc=0;
714 for(size_t i=0; i<viscalcp_.size(); i++)
715 rc=viscalcp_[i]->SelectFreqBinning(freq1, freq2, nbfreq);
716 return rc;
717}
718/* --Methode-- */
719void BRVisCalcGroup::ActivateVisDTable(bool fgfdt)
720{
721 for(size_t i=0; i<viscalcp_.size(); i++)
722 viscalcp_[i]->ActivateVisDTable(fgfdt);
723}
724/* --Methode-- */
725void BRVisCalcGroup::SetFitsOutput()
726{
727 for(size_t i=0; i<viscalcp_.size(); i++)
728 viscalcp_[i]->SetFitsOutput();
729}
730/* --Methode-- */
731void BRVisCalcGroup::SetPPFOutput()
732{
733 for(size_t i=0; i<viscalcp_.size(); i++)
734 viscalcp_[i]->SetPPFOutput();
735}
736/* --Methode-- */
737void BRVisCalcGroup::SetPrintLevel(int lev, uint_8 prtmodulo)
738{
739 for(size_t i=0; i<viscalcp_.size(); i++)
740 viscalcp_[i]->SetPrintLevel(lev,prtmodulo);
741}
742/* --Methode-- */
743void BRVisCalcGroup::start()
744{
745 for(size_t i=0; i<viscalcp_.size(); i++)
746 viscalcp_[i]->start();
747 tm_.SplitQ();
748}
749/* --Methode-- */
750void BRVisCalcGroup::join()
751{
752 r_8 totflop=0.;
753 for(size_t i=0; i<viscalcp_.size(); i++) {
754 viscalcp_[i]->join();
755 // cout << " BRVisCalcGroup::join()/ VisibCalc[" << i << "]->TotNbMegaFLOP()="
756 // << viscalcp_[i]->TotNbFLOP()/1024e3 << endl;
757 totflop += viscalcp_[i]->TotNbFLOP();
758 }
759 tm_.SplitQ();
760 cout << " ----------------------------------------------------------" << endl;
761 cout << " BRVisCalcGroup::join() : Finished " << viscalcp_.size() << " VisibilityCalculator(s)" << endl;
762 cout << " ... Elaspsed time: " << tm_.PartialElapsedTimems()
763 << " ms (total:" << tm_.TotalElapsedTimems() << ")" << endl;
764 double mflopsrate=totflop/(r_8)tm_.PartialElapsedTimems()/(1024.);
765 cout << " ... TotalMegaFLOP= " << totflop/(1024.e3) << " @ "
766 << mflopsrate << " MFLOP/s" << " (=" << mflopsrate/(r_8)viscalcp_.size() << "/VisibCalcObject)" << endl;
767 cout << " ----------------------------------------------------------" << endl;
768 return;
769}
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