/[PAMELA software]/DarthVader/ToFLevel2/src/ToFCore.cpp
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Contents of /DarthVader/ToFLevel2/src/ToFCore.cpp

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Revision 1.20 - (show annotations) (download)
Mon Apr 30 15:46:30 2007 UTC (17 years, 10 months ago) by mocchiut
Branch: MAIN
CVS Tags: v3r04, v3r05, v3r03
Changes since 1.19: +26 -2 lines
Tof code upgraded, new tof calibration

1 //
2 // C/C++ headers
3 //
4 #include <fstream>
5 #include <string.h>
6 //
7 // ROOT headers
8 //
9 #include <TTree.h>
10 #include <TClassEdit.h>
11 #include <TObject.h>
12 #include <TList.h>
13 #include <TArrayI.h>
14 #include <TSystem.h>
15 #include <TSystemDirectory.h>
16 #include <TString.h>
17 #include <TFile.h>
18 #include <TClass.h>
19 #include <TCanvas.h>
20 #include <TH1.h>
21 #include <TH1F.h>
22 #include <TH2D.h>
23 #include <TLatex.h>
24 #include <TPad.h>
25 #include <TSQLServer.h>
26 #include <TSQLRow.h>
27 #include <TSQLResult.h>
28 #include <TClonesArray.h>
29 //
30 // RunInfo header
31 //
32 #include <RunInfo.h>
33 //
34 // YODA headers
35 //
36 #include <PamelaRun.h>
37 #include <physics/trigger/TriggerEvent.h>
38 #include <physics/tof/TofEvent.h>
39 //
40 // This program headers
41 //
42 #include <ToFCore.h>
43 #include <ToFLevel2.h>
44 #include <ToFVerl2.h>
45 //
46 //
47 // Declaration of the core fortran routines
48 //
49 #define tofl2com tofl2com_
50 extern "C" int tofl2com();
51 #define toftrk toftrk_
52 extern "C" int toftrk();
53 #define rdtofcal rdtofcal_
54 extern "C" int rdtofcal(char [], int *);
55
56 //
57 // Tracker classes headers and definitions
58 //
59 #include <TrkLevel2.h>
60 //
61 using namespace std;
62 //
63 //
64 // CORE ROUTINE
65 //
66 //
67 int ToFCore(UInt_t run, TFile *file, TSQLServer *dbc, Int_t ToFargc, char *ToFargv[]){
68 //
69 //
70 // Set these to true to have a very verbose output.
71 //
72 Bool_t verbose = false;
73 Bool_t debug = false;
74 //
75 TString processFolder = Form("ToFFolder_%u",run);
76 if ( ToFargc > 0 ){
77 Int_t i = 0;
78 while ( i < ToFargc ){
79 if ( !strcmp(ToFargv[i],"-processFolder") ) {
80 if ( ToFargc < i+1 ){
81 throw -3;
82 };
83 processFolder = (TString)ToFargv[i+1];
84 i++;
85 };
86 if ( !strcmp(ToFargv[i],"-v") || !strcmp(ToFargv[i],"--verbose") ) {
87 verbose = true;
88 };
89 if ( !strcmp(ToFargv[i],"-g") || !strcmp(ToFargv[i],"--debug") ) {
90 verbose = true;
91 debug = true;
92 };
93 i++;
94 };
95 };
96 //
97 //
98 // Output directory is the working directoy.
99 //
100 const char* outdir = gSystem->DirName(gSystem->DirName(file->GetPath()));
101 //
102 // Variables for level2
103 //
104 TTree *tracker = 0;
105 TTree *toft = 0;
106 UInt_t nevents = 0;
107 Long64_t maxsize = 10000000000LL;
108 TTree::SetMaxTreeSize(maxsize);
109 //
110 // variables needed to reprocess data
111 //
112 TString tofversion;
113 ItoRunInfo *runinfo = 0;
114 TArrayI *runlist = 0;
115 TTree *toftclone = 0;
116 Bool_t reproc = false;
117 Bool_t reprocall = false;
118 UInt_t nobefrun = 0;
119 UInt_t noaftrun = 0;
120 UInt_t numbofrun = 0;
121 stringstream ftmpname;
122 TString fname;
123 UInt_t totfileentries = 0;
124 UInt_t idRun = 0;
125 //
126 // variables needed to handle error signals
127 //
128 Int_t code = 0;
129 Int_t sgnl;
130 //
131 // tof level2 classes
132 //
133 ToFLevel2 *tof = new ToFLevel2();
134 ToFLevel2 *tofclone = new ToFLevel2();
135 //
136 // tracker level2 variables
137 //
138 TrkLevel2 *trk = new TrkLevel2();
139 Int_t nevtrkl2 = 0;
140 //
141 // define variables for opening and reading level0 file
142 //
143 TFile *l0File = 0;
144 TTree *l0tr = 0;
145 TBranch *l0head = 0;
146 TBranch *l0trig = 0;
147 TBranch *l0tof = 0;
148 pamela::EventHeader *eh = 0;
149 pamela::PscuHeader *ph = 0;
150 pamela::trigger::TriggerEvent *trig = 0;
151 pamela::tof::TofEvent *tofEvent = 0;
152 //
153 // Define other basic variables
154 //
155 UInt_t procev = 0;
156 stringstream file2;
157 stringstream file3;
158 stringstream qy;
159 Int_t itr = -1;
160 Int_t totevent = 0;
161 UInt_t atime = 0;
162 UInt_t re = 0;
163 UInt_t jumped = 0;
164 //
165 // Working filename
166 //
167 TString outputfile;
168 stringstream name;
169 name.str("");
170 name << outdir << "/";
171 //
172 // temporary file and folder
173 //
174 TFile *tempfile = 0;
175 TTree *temptof = 0;
176 stringstream tempname;
177 stringstream toffolder;
178 tempname.str("");
179 tempname << outdir;
180 tempname << "/" << processFolder.Data();
181 toffolder.str("");
182 toffolder << tempname.str().c_str();
183 gSystem->MakeDirectory(toffolder.str().c_str());
184 tempname << "/toftree_run";
185 tempname << run << ".root";
186 //
187 // variables needed to load magnetic field maps
188 //
189 Int_t ntrkentry = 0;
190 Int_t npmtentry = 0;
191 UInt_t tttrkpar1 = 0;
192 Bool_t trkpar1 = true;
193 UInt_t tttofpar1 = 0;
194 Bool_t tofpar1 = true;
195 //
196 // DB classes
197 //
198 GL_ROOT *glroot = new GL_ROOT();
199 GL_PARAM *glparam = new GL_PARAM();
200 GL_TIMESYNC *dbtime = 0;
201 //
202 // declaring external output and input structures
203 //
204 extern struct ToFInput tofinput_;
205 extern struct ToFOutput tofoutput_;
206 //
207 // Let's start!
208 //
209 //
210 // As a first thing we must check what we have to do: if run = 0 we must process all events in the file has been passed
211 // if run != 0 we must process only that run but first we have to check if the tree ToF already exist in the file
212 // if it exists we are reprocessing data and we must delete that entries, if not we must create it.
213 //
214 if ( run == 0 ) reproc = true;
215 //
216 //
217 // Output file is "outputfile"
218 //
219 if ( !file->IsOpen() ){
220 if ( verbose ) printf(" ToF - ERROR: cannot open file for writing\n");
221 throw -301;
222 };
223 //
224 // Does it contain the Tracker tree?
225 //
226 tracker = (TTree*)file->Get("Tracker");
227 if ( !tracker ) {
228 if ( verbose ) printf(" TOF - ERROR: no tracker tree\n");
229 code = -302;
230 goto closeandexit;
231 };
232 //
233 // get tracker level2 data pointer
234 //
235 tracker->SetBranchAddress("TrkLevel2",&trk);
236 nevtrkl2 = tracker->GetEntries();
237 //
238 // Retrieve GL_RUN variables from the level2 file
239 //
240 tofversion = ToFInfo(false); // we should decide how to handle versioning system
241 //
242 // create an interface to RunInfo called "runinfo"
243 //
244 // ItoRunInfo= interface with RunInfo and GL_RUN
245 runinfo = new ItoRunInfo(file);
246 //
247 // open "Run" tree in level2 file, if not existing return an error (sngl != 0)
248 //
249 sgnl = 0;
250 sgnl = runinfo->Update(run, "TOF",tofversion);
251 if ( sgnl ){
252 if ( verbose ) printf(" TOF - ERROR: RunInfo exited with non-zero status\n");
253 code = sgnl;
254 goto closeandexit;
255 } else {
256 sgnl = 0;
257 };
258 //
259 // number of events in the file BEFORE the first event of our run
260 //
261 nobefrun = runinfo->GetFirstEntry();
262 //
263 // total number of events in the file
264 //
265 totfileentries = runinfo->GetFileEntries();
266 //
267 // first file entry AFTER the last event of our run
268 //
269 noaftrun = runinfo->GetLastEntry() + 1;
270 //
271 // number of run to be processed
272 //
273 numbofrun = runinfo->GetNoRun();
274 //
275 // Try to access the ToF tree in the file, if it exists we are reprocessing data if not we are processing a new run
276 //
277 toftclone = (TTree*)file->Get("ToF");
278 //
279 if ( !toftclone ){
280 //
281 // tree does not exist, we are not reprocessing
282 //
283 reproc = false;
284 if ( run == 0 && verbose ) printf(" ToF - WARNING: you are reprocessing data but ToF tree does not exist!\n");
285 if ( runinfo->IsReprocessing() && run != 0 && verbose ) printf(" ToF - WARNING: it seems you are not reprocessing data but ToF\n versioning information already exists in RunInfo.\n");
286
287 } else {
288 //
289 // tree exists, we are reprocessing data. Are we reprocessing a single run or all the file?
290 //
291 toftclone->SetAutoSave(900000000000000LL);
292 reproc = true;
293 //
294 // update versioning information
295 //
296 if ( verbose ) printf("\n Preparing the pre-processing...\n");
297 //
298 if ( run == 0 ){
299 //
300 // we are reprocessing all the file
301 // if we are reprocessing everything we don't need to copy any old event and we can just work with the new tree and delete the old one immediately
302 //
303 reprocall = true;
304 //
305 if ( verbose ) printf("\n ToF - WARNING: Reprocessing all runs\n");
306 //
307 } else {
308 //
309 // we are reprocessing a single run, we must copy to the new tree the events in the file which preceed the first event of the run
310 //
311 reprocall = false;
312 //
313 if ( verbose ) printf("\n ToF - WARNING: Reprocessing run number %u \n",run);
314 //
315 // copying old tree to a new file
316 //
317 tempfile = new TFile(tempname.str().c_str(),"RECREATE");
318 temptof = toftclone->CloneTree(-1,"fast");
319 temptof->SetName("ToF-old");
320 tempfile->Write();
321 tempfile->Close();
322 }
323 //
324 // Delete the old tree from old file and memory
325 //
326 toftclone->Delete("all");
327 //
328 if ( verbose ) printf(" ...done!\n");
329 //
330 };
331 //
332 // create ToF detector tree toft
333 //
334 file->cd();
335 toft = new TTree("ToF-new","PAMELA Level2 ToF data");
336 toft->SetAutoSave(900000000000000LL);
337 tof->Set();//ELENA **TEMPORANEO?**
338 toft->Branch("ToFLevel2","ToFLevel2",&tof);
339 //
340 if ( reproc && !reprocall ){
341 //
342 // open new file and retrieve all tree informations
343 //
344 tempfile = new TFile(tempname.str().c_str(),"READ");
345 toftclone = (TTree*)tempfile->Get("ToF-old");
346 toftclone->SetAutoSave(900000000000000LL);
347 toftclone->SetBranchAddress("ToFLevel2",&tofclone);
348 //
349 if ( nobefrun > 0 ){
350 if ( verbose ) printf("\n Pre-processing: copying events from the old tree before the processed run\n");
351 if ( verbose ) printf(" Copying %u events in the file which are before the beginning of the run %u \n",nobefrun,run);
352 if ( verbose ) printf(" Start copying at event number 0, end copying at event number %u \n",nobefrun);
353 for (UInt_t j = 0; j < nobefrun; j++){
354 //
355 toftclone->GetEntry(j);
356 //
357 // copy tofclone to tof
358 //
359 tof->Clear();
360 memcpy(&tof,&tofclone,sizeof(tofclone));
361 //
362 // Fill entry in the new tree
363 //
364 toft->Fill();
365 //
366 };
367 if ( verbose ) printf(" Finished successful copying!\n");
368 };
369 };
370 //
371 // Get the list of run to be processed, if only one run has to be processed the list will contain one entry only.
372 //
373 runlist = runinfo->GetRunList();
374 //
375 // Loop over the run to be processed
376 //
377 for (UInt_t irun=0; irun < numbofrun; irun++){
378 //
379 // retrieve the first run ID to be processed using the RunInfo list
380 //
381 idRun = runlist->At(irun);
382 if ( verbose ) printf("\n\n\n ####################################################################### \n");
383 if ( verbose ) printf(" PROCESSING RUN NUMBER %u \n",idRun);
384 if ( verbose ) printf(" ####################################################################### \n\n\n");
385 //
386 runinfo->ID_ROOT_L0 = 0;
387 //
388 // store in the runinfo class the GL_RUN variables for our run
389 //
390 sgnl = 0;
391 sgnl = runinfo->GetRunInfo(idRun);
392 if ( sgnl ){
393 if ( verbose ) printf(" TOF - ERROR: RunInfo exited with non-zero status\n");
394 code = sgnl;
395 goto closeandexit;
396 } else {
397 sgnl = 0;
398 };
399 //
400 // now you can access that variables using the RunInfo class this way runinfo->ID_ROOT_L0
401 //
402 if ( runinfo->ID_ROOT_L0 == 0 ){
403 if ( verbose ) printf("\n TOF - ERROR: no run with ID_RUN = %u \n\n Exiting... \n\n",idRun);
404 code = -5;
405 goto closeandexit;
406 };
407 //
408 // prepare the timesync for the db
409 //
410 if ( !dbc->IsConnected() ) throw -314;
411 dbtime = new GL_TIMESYNC(runinfo->ID_ROOT_L0,"ID",dbc);
412 //
413 // Search in the DB the path and name of the LEVEL0 file to be processed.
414 //
415 if ( !dbc->IsConnected() ) throw -314;
416 glroot->Query_GL_ROOT(runinfo->ID_ROOT_L0,dbc);
417 //
418 ftmpname.str("");
419 ftmpname << glroot->PATH.Data() << "/";
420 ftmpname << glroot->NAME.Data();
421 fname = ftmpname.str().c_str();
422 //
423 // print out informations
424 //
425 totevent = runinfo->NEVENTS;
426 if ( verbose ) printf("\n LEVEL0 data file: %s \n",fname.Data());
427 if ( verbose ) printf(" RUN HEADER absolute time is: %u \n",runinfo->RUNHEADER_TIME);
428 if ( verbose ) printf(" RUN TRAILER absolute time is: %u \n",runinfo->RUNTRAILER_TIME);
429 if ( verbose ) printf(" %i events to be processed for run %u: from %i to %i \n\n",totevent,idRun,runinfo->EV_FROM,runinfo->EV_FROM+totevent);
430 //
431 // Open Level0 file
432 //
433 l0File = new TFile(fname.Data());
434 if ( !l0File ) {
435 if ( verbose ) printf(" TOF - ERROR: problems opening Level0 file\n");
436 code = -6;
437 goto closeandexit;
438 };
439 l0tr = (TTree*)l0File->Get("Physics");
440 if ( !l0tr ) {
441 if ( verbose ) printf(" TOF - ERROR: no Physics tree in Level0 file\n");
442 l0File->Close();
443 code = -7;
444 goto closeandexit;
445 };
446 l0head = l0tr->GetBranch("Header");
447 if ( !l0head ) {
448 if ( verbose ) printf(" TOF - ERROR: no Header branch in Level0 tree\n");
449 l0File->Close();
450 code = -8;
451 goto closeandexit;
452 };
453 l0trig = l0tr->GetBranch("Trigger");
454 if ( !l0trig ) {
455 if ( verbose ) printf(" TOF - ERROR: no Trigger branch in Level0 tree\n");
456 l0File->Close();
457 code = -300;
458 goto closeandexit;
459 };
460 l0tof = l0tr->GetBranch("Tof");
461 if ( !l0tof ) {
462 if ( verbose ) printf(" TOF - ERROR: no ToF branch in Level0 tree\n");
463 l0File->Close();
464 code = -303;
465 goto closeandexit;
466 };
467 //
468 l0tr->SetBranchAddress("Trigger", &trig);
469 l0tr->SetBranchAddress("Tof", &tofEvent);
470 l0tr->SetBranchAddress("Header", &eh);
471 //
472 nevents = l0tof->GetEntries();
473 //
474 if ( nevents < 1 ) {
475 if ( verbose ) printf(" TOF - ERROR: Level0 file is empty\n\n");
476 l0File->Close();
477 code = -11;
478 goto closeandexit;
479 };
480 //
481 if ( runinfo->EV_TO > nevents-1 ) {
482 if ( verbose ) printf(" TOF - ERROR: too few entries in the registry tree\n");
483 l0File->Close();
484 code = -12;
485 goto closeandexit;
486 };
487 //
488 // Check if we have to load parameter files (or calibration associated to runs and not to events)
489 //
490 // for example let's assume that we could have different magnetic field maps for different runs:
491 //
492 if ( trkpar1 || ( tttrkpar1 != 0 && tttrkpar1 < runinfo->RUNHEADER_TIME ) ){
493 trkpar1 = false;
494 // read from DB infos about Magnetic filed maps
495 if ( !dbc->IsConnected() ) throw -314;
496 glparam->Query_GL_PARAM(runinfo->RUNHEADER_TIME,1,dbc); // parameters stored in DB in GL_PRAM table
497 tttrkpar1 = glparam->TO_TIME;
498 // ----------------------------
499 // Read the magnetic field
500 // ----------------------------
501 if ( verbose ) printf(" Reading magnetic field maps: \n");
502 trk->LoadField(glparam->PATH+glparam->NAME);
503 if ( verbose ) printf("\n");
504 };
505 //
506 if ( tofpar1 || ( tttofpar1 != 0 && tttofpar1 < runinfo->RUNHEADER_TIME ) ){
507 tofpar1 = false;
508 //
509 if ( !dbc->IsConnected() ) throw -314;
510 Int_t error=glparam->Query_GL_PARAM(runinfo->RUNHEADER_TIME,201,dbc); // parameters stored in DB in GL_PRAM table
511 if ( error<0 ) {
512 code = error;
513 goto closeandexit;
514 };
515 //
516 if ( verbose ) printf(" Reading ToF parameter file: %s \n",(glparam->PATH+glparam->NAME).Data());
517 //
518 tttofpar1 = glparam->TO_TIME;
519 Int_t nlen = (Int_t)(glparam->PATH+glparam->NAME).Length();
520 rdtofcal((char *)(glparam->PATH+glparam->NAME).Data(),&nlen);
521 //
522 };
523 //
524 // run over all the events of the run
525 //
526 if ( verbose ) printf("\n Ready to start! \n\n Processed events: \n\n");
527 //
528 jumped = 0;
529 //
530 for ( re = runinfo->EV_FROM; re < (runinfo->EV_FROM+runinfo->NEVENTS); re++){
531 //
532 if ( procev%1000 == 0 && procev > 0 && verbose ) printf(" %iK \n",procev/1000);
533 //
534 l0head->GetEntry(re);
535 //
536 // absolute time of this event
537 //
538 ph = eh->GetPscuHeader();
539 atime = dbtime->DBabsTime(ph->GetOrbitalTime());
540 //
541 tof->Clear();
542 Int_t pmt_id = 0;
543 ToFPMT *t_pmt = new ToFPMT();
544 if(!(tof->PMT))tof->PMT = new TClonesArray("ToFPMT",12); //ELENA
545 TClonesArray &tpmt = *tof->PMT;
546 ToFTrkVar *t_tof = new ToFTrkVar();
547 if(!(tof->ToFTrk))tof->ToFTrk = new TClonesArray("ToFTrkVar",2); //ELENA
548 TClonesArray &t = *tof->ToFTrk;
549 //
550 // paranoid check
551 //
552 if ( atime > runinfo->RUNTRAILER_TIME || atime < runinfo->RUNHEADER_TIME ) {
553 if ( verbose ) printf(" TOF - WARNING: event at time outside the run time window, skipping it\n");
554 jumped++;
555 goto jumpev;
556 };
557 //
558 // retrieve tracker informations, the LEVEL2 entry which correspond to our event will be "itr"
559 //
560 if ( !reprocall ){
561 itr = nobefrun + (re - runinfo->EV_FROM -jumped);
562 } else {
563 itr = runinfo->GetFirstEntry() + (re - runinfo->EV_FROM -jumped);
564 };
565 if ( itr > nevtrkl2 ){ // nevtrkl2 tracker entry number
566 if ( verbose ) printf(" TOF - ERROR: no tracker events with entry = %i in Level2 file\n",itr);
567 l0File->Close();
568 code = -313;
569 goto closeandexit;
570 };
571 //
572 trk->Clear();
573 //
574 tracker->GetEntry(itr);
575 ///
576 //
577 l0tof->GetEntry(re);
578 l0trig->GetEntry(re);
579 ///
580 //
581 procev++;
582 //
583 // start processing
584 //
585 //
586 // Here we will use some procedure to calibrate our data and put some kind of informations in the cinput structure
587
588 for (Int_t gg=0; gg<4;gg++){
589 for (Int_t hh=0; hh<12;hh++){
590 tofinput_.tdc[hh][gg]=tofEvent->tdc[gg][hh];
591 tofinput_.adc[hh][gg]=tofEvent->adc[gg][hh];
592 };
593 };
594
595 for (Int_t hh=0; hh<5;hh++){
596 tofinput_.patterntrig[hh]=trig->patterntrig[hh];
597 };
598 //
599 // Here we have calibrated data, ready to be passed to the FORTRAN routine which will extract common and track-related variables.
600 //
601 npmtentry = 0;
602 //
603 ntrkentry = 0;
604 //
605 // Calculate tracks informations from ToF alone
606 //
607 tofl2com();
608 //
609 memcpy(tof->tof_j_flag,tofoutput_.tof_j_flag,6*sizeof(Int_t));
610 //
611 t_tof->trkseqno = -1;
612 //
613 // and now we must copy from the output structure to the level2 class:
614 //
615 t_tof->npmttdc = 0;
616 //
617 for (Int_t hh=0; hh<12;hh++){
618 for (Int_t kk=0; kk<4;kk++){
619 if ( tofoutput_.tofmask[hh][kk] != 0 ){
620 pmt_id = tof->GetPMTid(kk,hh);
621 t_tof->pmttdc.AddAt(pmt_id,t_tof->npmttdc);
622 t_tof->tdcflag.AddAt(tofoutput_.tdcflagtof[hh][kk],t_tof->npmttdc); // gf: Jan 09/07
623 t_tof->npmttdc++;
624 };
625 };
626 };
627 for (Int_t kk=0; kk<13;kk++){
628 t_tof->beta[kk] = tofoutput_.betatof_a[kk];
629 }
630 //
631 t_tof->npmtadc = 0;
632 for (Int_t hh=0; hh<12;hh++){
633 for (Int_t kk=0; kk<4;kk++){
634 if ( tofoutput_.adctof_c[hh][kk] < 1000 ){
635 t_tof->dedx.AddAt(tofoutput_.adctof_c[hh][kk],t_tof->npmtadc);
636 pmt_id = tof->GetPMTid(kk,hh);
637 t_tof->pmtadc.AddAt(pmt_id,t_tof->npmtadc);
638 t_tof->adcflag.AddAt(tofoutput_.adcflagtof[hh][kk],t_tof->npmtadc); // gf: Jan 09/07
639 t_tof->npmtadc++;
640 };
641 };
642 };
643 //
644 memcpy(t_tof->xtofpos,tofoutput_.xtofpos,sizeof(t_tof->xtofpos));
645 memcpy(t_tof->ytofpos,tofoutput_.ytofpos,sizeof(t_tof->ytofpos));
646 memcpy(t_tof->xtr_tof,tofoutput_.xtr_tof,sizeof(t_tof->xtr_tof));
647 memcpy(t_tof->ytr_tof,tofoutput_.ytr_tof,sizeof(t_tof->ytr_tof));
648 //
649
650 /*
651 cout<<"ToFCore tofl2com"<<endl;
652 cout<<tofoutput_.xtofpos[0]<<" "<<tofoutput_.xtofpos[1]<<" "<<tofoutput_.xtofpos[2]<<endl;
653 cout<<tofoutput_.ytofpos[0]<<" "<<tofoutput_.ytofpos[1]<<" "<<tofoutput_.ytofpos[2]<<endl;
654 cout<<tofoutput_.xtr_tof[0]<<" "<<tofoutput_.xtr_tof[1]<<" "<<tofoutput_.xtr_tof[2]<<" "<<tofoutput_.xtr_tof[3]<<" "<<tofoutput_.xtr_tof[4]<<" "<<tofoutput_.xtr_tof[5]<<endl;
655 cout<<tofoutput_.ytr_tof[0]<<" "<<tofoutput_.ytr_tof[1]<<" "<<tofoutput_.ytr_tof[2]<<" "<<tofoutput_.ytr_tof[3]<<" "<<tofoutput_.ytr_tof[4]<<" "<<tofoutput_.ytr_tof[5]<<endl;
656 */
657
658
659 new(t[ntrkentry]) ToFTrkVar(*t_tof);
660 ntrkentry++;
661 t_tof->Clear();
662 //
663 //
664 //
665 t_pmt->Clear();
666 //
667 for (Int_t hh=0; hh<12;hh++){
668 for (Int_t kk=0; kk<4;kk++){
669 if ( tofoutput_.tdc_c[hh][kk] < 4095 || tofEvent->adc[kk][hh] < 4095 ){
670 //
671 t_pmt->pmt_id = tof->GetPMTid(kk,hh);
672 t_pmt->tdc_tw = tofoutput_.tdc_c[hh][kk];
673 t_pmt->adc = tofEvent->adc[kk][hh];
674 //
675 new(tpmt[npmtentry]) ToFPMT(*t_pmt);
676 npmtentry++;
677 t_pmt->Clear();
678 };
679 };
680 };
681 //
682 // Calculate track-related variables
683 //
684 if ( trk->ntrk() > 0 ){
685 //
686 // We have at least one track
687 //
688 //
689 // Run over tracks
690 //
691 for(Int_t nt=0; nt < trk->ntrk(); nt++){
692 //
693 TrkTrack *ptt = trk->GetStoredTrack(nt);
694 //
695 // Copy the alpha vector in the input structure
696 //
697 for (Int_t e = 0; e < 5 ; e++){
698 tofinput_.al_pp[e] = ptt->al[e];
699 };
700 //
701 // Get tracker related variables for this track
702 //
703 toftrk();
704 //
705 // Copy values in the class from the structure (we need to use a temporary class to store variables).
706 //
707 t_tof->npmttdc = 0;
708 for (Int_t hh=0; hh<12;hh++){
709 for (Int_t kk=0; kk<4;kk++){
710 if ( tofoutput_.tofmask[hh][kk] != 0 ){
711 pmt_id = tof->GetPMTid(kk,hh);
712 t_tof->pmttdc.AddAt(pmt_id,t_tof->npmttdc);
713 t_tof->tdcflag.AddAt(tofoutput_.tdcflag[hh][kk],t_tof->npmttdc); // gf: Jan 09/07
714 t_tof->npmttdc++;
715 };
716 };
717 };
718 for (Int_t kk=0; kk<13;kk++){
719 t_tof->beta[kk] = tofoutput_.beta_a[kk];
720 };
721 //
722 t_tof->npmtadc = 0;
723 for (Int_t hh=0; hh<12;hh++){
724 for (Int_t kk=0; kk<4;kk++){
725 if ( tofoutput_.adc_c[hh][kk] < 1000 ){
726 t_tof->dedx.AddAt(tofoutput_.adc_c[hh][kk],t_tof->npmtadc);
727 pmt_id = tof->GetPMTid(kk,hh);
728 t_tof->pmtadc.AddAt(pmt_id,t_tof->npmtadc);
729 t_tof->adcflag.AddAt(tofoutput_.adcflag[hh][kk],t_tof->npmtadc); // gf: Jan 09/07
730 t_tof->npmtadc++;
731 };
732 };
733 };
734 //
735 memcpy(t_tof->xtofpos,tofoutput_.xtofpos,sizeof(t_tof->xtofpos));
736 memcpy(t_tof->ytofpos,tofoutput_.ytofpos,sizeof(t_tof->ytofpos));
737 memcpy(t_tof->xtr_tof,tofoutput_.xtr_tof,sizeof(t_tof->xtr_tof));
738 memcpy(t_tof->ytr_tof,tofoutput_.ytr_tof,sizeof(t_tof->ytr_tof));
739
740 /*
741 cout<<"ToFCore toftrk"<<endl;
742 cout<<tofoutput_.xtofpos[0]<<" "<<tofoutput_.xtofpos[1]<<" "<<tofoutput_.xtofpos[2]<<endl;
743 cout<<tofoutput_.ytofpos[0]<<" "<<tofoutput_.ytofpos[1]<<" "<<tofoutput_.ytofpos[2]<<endl;
744 cout<<tofoutput_.xtr_tof[0]<<" "<<tofoutput_.xtr_tof[1]<<" "<<tofoutput_.xtr_tof[2]<<" "<<tofoutput_.xtr_tof[3]<<" "<<tofoutput_.xtr_tof[4]<<" "<<tofoutput_.xtr_tof[5]<<endl;
745 cout<<tofoutput_.ytr_tof[0]<<" "<<tofoutput_.ytr_tof[1]<<" "<<tofoutput_.ytr_tof[2]<<" "<<tofoutput_.ytr_tof[3]<<" "<<tofoutput_.ytr_tof[4]<<" "<<tofoutput_.ytr_tof[5]<<endl;
746 */
747
748 //
749 // Store the tracker track number in order to be sure to have shyncronized data during analysis
750 //
751 t_tof->trkseqno = nt;
752 //
753 // create a new object for this event with track-related variables
754 //
755 new(t[ntrkentry]) ToFTrkVar(*t_tof);
756 ntrkentry++;
757 t_tof->Clear();
758 //
759 }; // loop on all the tracks
760 };
761 //
762 tof->unpackError = tofEvent->unpackError;
763 //
764 // Fill the rootple
765 //
766 toft->Fill();
767 //
768 //
769 //
770 delete t_tof;
771 //
772 //
773 //
774 jumpev:
775 debug = false;
776 //
777 };
778 //
779 // Here you may want to clear some variables before processing another run
780 //
781 delete dbtime;
782 }; // process all the runs
783 //
784 if ( verbose ) printf("\n Finished processing data \n");
785 //
786 closeandexit:
787 //
788 // we have finished processing the run(s). If we processed a single run now we must copy all the events after our run from the old tree to the new one and delete the old tree.
789 //
790 if ( !reprocall && reproc && code >= 0 ){
791 if ( totfileentries > noaftrun ){
792 if ( verbose ) printf("\n Post-processing: copying events from the old tree after the processed run\n");
793 if ( verbose ) printf(" Copying %i events in the file which are after the end of the run %i \n",(int)(totfileentries-noaftrun),(int)run);
794 if ( verbose ) printf(" Start copying at event number %i end copying at event number %i \n",(int)noaftrun,(int)totfileentries);
795 for (UInt_t j = noaftrun; j < totfileentries; j++ ){
796 //
797 // Get entry from old tree
798 //
799 toftclone->GetEntry(j);
800 //
801 // copy tofclone to tof
802 //
803 tof->Clear();
804 memcpy(&tof,&tofclone,sizeof(tofclone));
805 //
806 // Fill entry in the new tree
807 //
808 toft->Fill();
809 };
810 if ( verbose ) printf(" Finished successful copying!\n");
811 };
812 };
813 //
814 // Close files, delete old tree(s), write and close level2 file
815 //
816 if ( l0File ) l0File->Close();
817 if ( tempfile ) tempfile->Close();
818 gSystem->Unlink(tempname.str().c_str());
819 if ( tracker ) tracker->Delete(); // delete tracker tree from memory only to avoid writing a copy to file!
820 //
821 if ( code < 0 && verbose ) printf("\n TOF - ERROR: an error occurred, try to save anyway...\n");
822 if ( verbose ) printf("\n Writing and closing rootple\n");
823 if ( runinfo ) runinfo->Close();
824 if ( toft ) toft->SetName("ToF");
825 if ( file ){
826 file->cd();
827 file->Write("ToF");
828 };
829 //
830 gSystem->Unlink(toffolder.str().c_str());
831 //
832 // the end
833 //
834 if ( verbose ) printf("\n Exiting...\n");
835 if(toft)toft->Delete();
836 //
837 if ( tof ) delete tof;
838 if ( tofclone ) delete tofclone;
839 if ( glroot ) delete glroot;
840 if ( runinfo ) delete runinfo;
841 //
842 if ( code < 0 ) throw code;
843 return(code);
844 }

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