/[PAMELA software]/DarthVader/OrbitalInfo/src/OrbitalInfoCore.cpp
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Annotation of /DarthVader/OrbitalInfo/src/OrbitalInfoCore.cpp

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Revision 1.51 - (hide annotations) (download)
Tue Nov 15 09:58:30 2011 UTC (13 years, 3 months ago) by pam-mep
Branch: MAIN
Changes since 1.50: +1 -1 lines
bug with Sij fixed

1 mocchiut 1.1 // C/C++ headers
2     //
3     #include <fstream>
4     #include <string.h>
5     #include <iostream>
6     #include <cstring>
7     #include <stdio.h>
8     //
9     // ROOT headers
10     //
11 mocchiut 1.44 //#include <TCanvas.h>
12     //#include <TH2F.h> //for test only. Vitaly.
13     //#include <TF1.h>
14    
15 mocchiut 1.1 #include <TTree.h>
16     #include <TClassEdit.h>
17     #include <TObject.h>
18     #include <TList.h>
19 mocchiut 1.5 #include <TArrayI.h>
20 mocchiut 1.1 #include <TSystem.h>
21     #include <TSystemDirectory.h>
22     #include <TString.h>
23     #include <TFile.h>
24     #include <TClass.h>
25     #include <TSQLServer.h>
26     #include <TSQLRow.h>
27     #include <TSQLResult.h>
28     //
29 mocchiut 1.8 // RunInfo header
30     //
31     #include <RunInfo.h>
32     #include <GLTables.h>
33     //
34 mocchiut 1.1 // YODA headers
35     //
36     #include <PamelaRun.h>
37     #include <PscuHeader.h>
38     #include <PscuEvent.h>
39     #include <EventHeader.h>
40 mocchiut 1.15 #include <mcmd/McmdEvent.h>
41     #include <mcmd/McmdRecord.h>
42 mocchiut 1.1 //
43     // This program headers
44     //
45     #include <OrbitalInfo.h>
46 mocchiut 1.7 #include <OrbitalInfoVerl2.h>
47 mocchiut 1.1 #include <OrbitalInfoCore.h>
48 mocchiut 1.15 #include <InclinationInfo.h>
49 mocchiut 1.1
50 mocchiut 1.40
51 mocchiut 1.1 using namespace std;
52    
53     //
54     // CORE ROUTINE
55     //
56     //
57 mocchiut 1.25 int OrbitalInfoCore(UInt_t run, TFile *file, GL_TABLES *glt, Int_t OrbitalInfoargc, char *OrbitalInfoargv[]){
58 mocchiut 1.15 //
59 mocchiut 1.1 Int_t i = 0;
60 mocchiut 1.25 TString host = glt->CGetHost();
61     TString user = glt->CGetUser();
62     TString psw = glt->CGetPsw();
63     TSQLServer *dbc = TSQLServer::Connect(host.Data(),user.Data(),psw.Data());
64 mocchiut 1.1 //
65 mocchiut 1.26 stringstream myquery;
66     myquery.str("");
67     myquery << "SET time_zone='+0:00'";
68     dbc->Query(myquery.str().c_str());
69     //
70 mocchiut 1.16 TString processFolder = Form("OrbitalInfoFolder_%u",run);
71 mocchiut 1.1 //
72     // Set these to true to have a very verbose output.
73     //
74     Bool_t debug = false;
75     //
76     Bool_t verbose = false;
77 mocchiut 1.30 //
78 mocchiut 1.31 Bool_t standalone = false;
79 mocchiut 1.30 //
80 mocchiut 1.1 if ( OrbitalInfoargc > 0 ){
81     i = 0;
82     while ( i < OrbitalInfoargc ){
83     if ( !strcmp(OrbitalInfoargv[i],"-processFolder") ) {
84     if ( OrbitalInfoargc < i+1 ){
85     throw -3;
86     };
87     processFolder = (TString)OrbitalInfoargv[i+1];
88     i++;
89     };
90     if ( (!strcmp(OrbitalInfoargv[i],"--debug")) || (!strcmp(OrbitalInfoargv[i],"-g")) ) {
91     verbose = true;
92 mocchiut 1.15 debug = true;
93 mocchiut 1.1 };
94     if ( (!strcmp(OrbitalInfoargv[i],"--verbose")) || (!strcmp(OrbitalInfoargv[i],"-v")) ) {
95     verbose = true;
96     };
97 mocchiut 1.30 if ( (!strcmp(OrbitalInfoargv[i],"--standalone")) ) {
98     standalone = true;
99     };
100     if ( (!strcmp(OrbitalInfoargv[i],"--calculate-pitch")) ) {
101     standalone = false;
102     };
103 mocchiut 1.1 i++;
104     };
105     };
106     //
107     const char* outDir = gSystem->DirName(gSystem->DirName(file->GetPath()));
108     //
109     TTree *OrbitalInfotr = 0;
110 mocchiut 1.5 UInt_t nevents = 0;
111 mocchiut 1.15 UInt_t neventsm = 0;
112 mocchiut 1.1 //
113     // variables needed to reprocess data
114     //
115 mocchiut 1.6 Long64_t maxsize = 10000000000LL;
116     TTree::SetMaxTreeSize(maxsize);
117     //
118 mocchiut 1.1 TString OrbitalInfoversion;
119     ItoRunInfo *runinfo = 0;
120 mocchiut 1.5 TArrayI *runlist = 0;
121 mocchiut 1.1 TTree *OrbitalInfotrclone = 0;
122     Bool_t reproc = false;
123     Bool_t reprocall = false;
124     UInt_t nobefrun = 0;
125     UInt_t noaftrun = 0;
126     UInt_t numbofrun = 0;
127     stringstream ftmpname;
128     TString fname;
129 mocchiut 1.5 UInt_t totfileentries = 0;
130 mocchiut 1.15 UInt_t idRun = 0;
131     //
132     // My variables. Vitaly.
133     //
134 mocchiut 1.44 // UInt_t oi = 0;
135 mocchiut 1.15 Int_t tmpSize = 0;
136 mocchiut 1.1 //
137     // variables needed to handle error signals
138     //
139     Int_t code = 0;
140     Int_t sgnl;
141     //
142     // OrbitalInfo classes
143     //
144     OrbitalInfo *orbitalinfo = new OrbitalInfo();
145     OrbitalInfo *orbitalinfoclone = new OrbitalInfo();
146 mocchiut 1.44
147 mocchiut 1.1 //
148     // define variables for opening and reading level0 file
149     //
150     TFile *l0File = 0;
151     TTree *l0tr = 0;
152 mocchiut 1.37 // TTree *l0trm = 0;
153     TChain *ch = 0;
154 mocchiut 1.2 // EM: open also header branch
155     TBranch *l0head = 0;
156     pamela::EventHeader *eh = 0;
157     pamela::PscuHeader *ph = 0;
158 mocchiut 1.15 pamela::McmdEvent *mcmdev = 0;
159     pamela::McmdRecord *mcmdrc = 0;
160 mocchiut 1.2 // end EM
161 mocchiut 1.15
162     // pamela::RunHeaderEvent *reh = new pamela::RunHeaderEvent;
163     // pamela::EventHeader *eH = new pamela::EventHeader;
164    
165 mocchiut 1.1 //
166     // Define other basic variables
167     //
168     UInt_t procev = 0;
169     stringstream file2;
170     stringstream file3;
171     stringstream qy;
172     Int_t totevent = 0;
173 mocchiut 1.5 UInt_t atime = 0;
174     UInt_t re = 0;
175 mocchiut 1.15 UInt_t ik = 0;
176 mocchiut 1.7
177     // Position
178     Float_t lon, lat, alt;
179    
180     //
181     // IGRF stuff
182     //
183 mocchiut 1.40 Float_t dimo = 0.0; // dipole moment (computed from dat files)
184     Float_t bnorth, beast, bdown, babs;
185     Float_t xl; // L value
186     Float_t icode; // code value for L accuracy (see fortran code)
187     Float_t bab1; // What's the difference with babs?
188     Float_t stps = 0.005; // step size for field line tracing
189     Float_t bdel = 0.01; // required accuracy
190     Float_t bequ; // equatorial b value (also called b_0)
191     Bool_t value = 0; // false if bequ is not the minimum b value
192     Float_t rr0; // equatorial radius normalized to earth radius
193 mocchiut 1.7
194 mocchiut 1.1 //
195     // Working filename
196     //
197     TString outputfile;
198     stringstream name;
199     name.str("");
200     name << outDir << "/";
201     //
202     // temporary file and folder
203     //
204     TFile *tempfile = 0;
205     TTree *tempOrbitalInfo = 0;
206     stringstream tempname;
207     stringstream OrbitalInfofolder;
208 mocchiut 1.23 Bool_t myfold = false;
209 mocchiut 1.1 tempname.str("");
210     tempname << outDir;
211     tempname << "/" << processFolder.Data();
212     OrbitalInfofolder.str("");
213     OrbitalInfofolder << tempname.str().c_str();
214     tempname << "/OrbitalInfotree_run";
215     tempname << run << ".root";
216 mocchiut 1.40 UInt_t totnorun = 0;
217 mocchiut 1.1 //
218     // DB classes
219     //
220     GL_ROOT *glroot = new GL_ROOT();
221 mocchiut 1.5 GL_TIMESYNC *dbtime = 0;
222 mocchiut 1.7 GL_TLE *gltle = new GL_TLE();
223 mocchiut 1.15 //
224     //Quaternions classes
225     //
226     Quaternions *L_QQ_Q_l_lower = new Quaternions();
227     InclinationInfo *RYPang_lower = new InclinationInfo();
228     Quaternions *L_QQ_Q_l_upper = new Quaternions();
229     InclinationInfo *RYPang_upper = new InclinationInfo();
230    
231     cEci eCi;
232    
233 mocchiut 1.7 // Initialize fortran routines!!!
234     Int_t ltp2 = 0;
235     Int_t ltp3 = 0;
236     Int_t uno = 1;
237 pam-fi 1.41 const char *niente = " ";
238 mocchiut 1.7 GL_PARAM *glparam = new GL_PARAM();
239 mocchiut 1.10 GL_PARAM *glparam2 = new GL_PARAM();
240 mocchiut 1.44
241 mocchiut 1.30 //
242 mocchiut 1.44 // Orientation variables. Vitaly
243 mocchiut 1.30 //
244     UInt_t evfrom = 0;
245     UInt_t jumped = 0;
246     Int_t itr = -1;
247     Double_t A1;
248     Double_t A2;
249     Double_t A3;
250     Double_t Px = 0;
251     Double_t Py = 0;
252     Double_t Pz = 0;
253     TTree *ttof = 0;
254     ToFLevel2 *tof = new ToFLevel2();
255     OrientationInfo *PO = new OrientationInfo();
256     Int_t nz = 6;
257     Float_t zin[6];
258     Int_t nevtofl2 = 0;
259 mocchiut 1.44 if ( verbose ) cout<<"Reading quaternions external file"<<endl;
260     cout.setf(ios::fixed,ios::floatfield);
261     /******Reading recovered quaternions...*********/
262     vector<Double_t> recqtime;
263     vector<Float_t> recq0;
264     vector<Float_t> recq1;
265     vector<Float_t> recq2;
266     vector<Float_t> recq3;
267     Float_t Norm = 1;
268     Int_t parerror=glparam->Query_GL_PARAM(1,303,dbc); // parameters stored in DB in GL_PRAM table
269 mocchiut 1.45 ifstream in((glparam->PATH+glparam->NAME).Data(),ios::in);
270 mocchiut 1.44 if ( parerror<0 ) {
271     code = parerror;
272     goto closeandexit;
273     };
274     while(!in.eof()){
275     recqtime.resize(recqtime.size()+1);
276     Int_t sizee = recqtime.size();
277     recq0.resize(sizee);
278     recq1.resize(sizee);
279     recq2.resize(sizee);
280     recq3.resize(sizee);
281     in>>recqtime[sizee-1];
282     in>>recq0[sizee-1];
283     in>>recq1[sizee-1];
284     in>>recq2[sizee-1];
285     in>>recq3[sizee-1];
286     in>>Norm;
287     }
288     if ( verbose ) cout<<"We have read recovered data"<<endl;
289    
290    
291     parerror=glparam->Query_GL_PARAM(1,301,dbc); // parameters stored in DB in GL_PRAM table
292 mocchiut 1.7 if ( parerror<0 ) {
293     code = parerror;
294     goto closeandexit;
295     };
296     ltp2 = (Int_t)(glparam->PATH+glparam->NAME).Length();
297     if ( verbose ) printf(" Reading Earth's Magnetic Field parameter file: %s \n",(glparam->PATH+glparam->NAME).Data());
298     //
299     parerror=glparam2->Query_GL_PARAM(1,302,dbc); // parameters stored in DB in GL_PRAM table
300     if ( parerror<0 ) {
301     code = parerror;
302     goto closeandexit;
303     };
304     ltp3 = (Int_t)(glparam2->PATH+glparam2->NAME).Length();
305     if ( verbose ) printf(" Reading Earth's Magnetic Field parameter file: %s \n",(glparam2->PATH+glparam2->NAME).Data());
306     //
307     initize_((char *)niente,&uno,(char *)(glparam->PATH+glparam->NAME).Data(),&ltp2,(char *)(glparam2->PATH+glparam2->NAME).Data(),&ltp3);
308     //
309     // End IGRF stuff//
310     //
311 mocchiut 1.30 for (Int_t ip=0;ip<nz;ip++){
312     zin[ip] = tof->GetZTOF(tof->GetToFPlaneID(ip));
313     };
314     //
315     if ( !standalone ){
316     //
317     // Does it contain the Tracker tree?
318     //
319     ttof = (TTree*)file->Get("ToF");
320     if ( !ttof ) {
321     if ( verbose ) printf(" OrbitalInfo - ERROR: no tof tree\n");
322     code = -900;
323     goto closeandexit;
324     };
325     ttof->SetBranchAddress("ToFLevel2",&tof);
326     nevtofl2 = ttof->GetEntries();
327     };
328 mocchiut 1.1 //
329     // Let's start!
330     //
331     // 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
332     // if run != 0 we must process only that run but first we have to check if the tree MyDetector2 already exist in the file
333     // if it exists we are reprocessing data and we must delete that entries, if not we must create it.
334     //
335 mocchiut 1.5 if ( run == 0 ) reproc = true;
336 mocchiut 1.1 //
337     //
338     // Output file is "outputfile"
339     //
340     if ( !file->IsOpen() ){
341     //printf(" OrbitalInfo - ERROR: cannot open file for writing\n");
342     throw -901;
343     };
344     //
345     // Retrieve GL_RUN variables from the level2 file
346     //
347     OrbitalInfoversion = OrbitalInfoInfo(false); // we should decide how to handle versioning system
348     //
349     // create an interface to RunInfo called "runinfo"
350     //
351     runinfo = new ItoRunInfo(file);
352     //
353     // open "Run" tree in level2 file, if not existing return an error (sngl != 0)
354     //
355     sgnl = 0;
356     sgnl = runinfo->Update(run, "ORB", OrbitalInfoversion);
357     //sgnl = runinfo->Read(run);
358    
359     if ( sgnl ){
360     //printf("OrbitalInfo - ERROR: RunInfo exited with non-zero status\n");
361     code = sgnl;
362     goto closeandexit;
363     } else {
364     sgnl = 0;
365     };
366     //
367     // number of events in the file BEFORE the first event of our run
368     //
369     nobefrun = runinfo->GetFirstEntry();
370     //
371     // total number of events in the file
372     //
373     totfileentries = runinfo->GetFileEntries();
374     //
375     // first file entry AFTER the last event of our run
376     //
377     noaftrun = runinfo->GetLastEntry() + 1;
378     //
379     // number of run to be processed
380     //
381     numbofrun = runinfo->GetNoRun();
382 mocchiut 1.40 totnorun = runinfo->GetRunEntries();
383 mocchiut 1.1 //
384     // Try to access the OrbitalInfo tree in the file, if it exists we are reprocessing data if not we are processing a new run
385     //
386     OrbitalInfotrclone = (TTree*)file->Get("OrbitalInfo");
387     //
388     if ( !OrbitalInfotrclone ){
389     //
390     // tree does not exist, we are not reprocessing
391     //
392     reproc = false;
393 mocchiut 1.5 if ( run == 0 ){
394 mocchiut 1.1 if (verbose) printf(" OrbitalInfo - WARNING: you are reprocessing data but OrbitalInfo tree does not exist!\n");
395     }
396 mocchiut 1.5 if ( runinfo->IsReprocessing() && run != 0 ) {
397 mocchiut 1.1 if (verbose) printf(" OrbitalInfo - WARNING: it seems you are not reprocessing data but OrbitalInfo\n versioning information already exists in RunInfo.\n");
398     }
399     } else {
400     //
401     // tree exists, we are reprocessing data. Are we reprocessing a single run or all the file?
402     //
403 mocchiut 1.6 OrbitalInfotrclone->SetAutoSave(900000000000000LL);
404 mocchiut 1.1 reproc = true;
405     //
406     //
407     if (verbose) printf("\n Preparing the pre-processing...\n");
408     //
409 mocchiut 1.22 if ( run == 0 || totnorun == 1 ){
410 mocchiut 1.1 //
411     // we are reprocessing all the file
412     // 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
413     //
414     reprocall = true;
415     //
416     if (verbose) printf("\n OrbitalInfo - WARNING: Reprocessing all runs\n");
417     //
418     } else {
419     //
420     // 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
421     //
422     reprocall = false;
423     //
424 mocchiut 1.5 if (verbose) printf("\n OrbitalInfo - WARNING: Reprocessing run number %u \n",run);
425 mocchiut 1.1 //
426     // copying old tree to a new file
427     //
428 mocchiut 1.23 gSystem->MakeDirectory(OrbitalInfofolder.str().c_str());
429     myfold = true;
430 mocchiut 1.1 tempfile = new TFile(tempname.str().c_str(),"RECREATE");
431     tempOrbitalInfo = OrbitalInfotrclone->CloneTree(-1,"fast");
432     tempOrbitalInfo->SetName("OrbitalInfo-old");
433     tempfile->Write();
434     tempfile->Close();
435     }
436     //
437     // Delete the old tree from old file and memory
438     //
439     OrbitalInfotrclone->Delete("all");
440     //
441     if (verbose) printf(" ...done!\n");
442     //
443     };
444     //
445     // create mydetector tree mydect
446     //
447     file->cd();
448     OrbitalInfotr = new TTree("OrbitalInfo-new","PAMELA OrbitalInfo data");
449 mocchiut 1.6 OrbitalInfotr->SetAutoSave(900000000000000LL);
450 mocchiut 1.30 orbitalinfo->Set();//ELENA **TEMPORANEO?**
451 mocchiut 1.1 OrbitalInfotr->Branch("OrbitalInfo","OrbitalInfo",&orbitalinfo);
452     //
453     if ( reproc && !reprocall ){
454     //
455     // open new file and retrieve also tree informations
456     //
457     tempfile = new TFile(tempname.str().c_str(),"READ");
458     OrbitalInfotrclone = (TTree*)tempfile->Get("OrbitalInfo-old");
459 mocchiut 1.6 OrbitalInfotrclone->SetAutoSave(900000000000000LL);
460 mocchiut 1.1 OrbitalInfotrclone->SetBranchAddress("OrbitalInfo",&orbitalinfoclone);
461     //
462     if ( nobefrun > 0 ){
463     if (verbose){
464 mocchiut 1.7 printf("\n Pre-processing: copying events from the old tree before the processed run\n");
465     printf(" Copying %u events in the file which are before the beginning of the run %u \n",nobefrun,run);
466     printf(" Start copying at event number 0, end copying at event number %u \n",nobefrun);
467 mocchiut 1.1 }
468     for (UInt_t j = 0; j < nobefrun; j++){
469     //
470 mocchiut 1.43 if ( OrbitalInfotrclone->GetEntry(j) <= 0 ) throw -36;
471 mocchiut 1.1 //
472     // copy orbitalinfoclone to mydec
473     //
474 mocchiut 1.3 orbitalinfo->Clear();
475 mocchiut 1.5 //
476 mocchiut 1.1 memcpy(&orbitalinfo,&orbitalinfoclone,sizeof(orbitalinfoclone));
477     //
478     // Fill entry in the new tree
479     //
480     OrbitalInfotr->Fill();
481     //
482     };
483     if (verbose) printf(" Finished successful copying!\n");
484     };
485     };
486     //
487 mocchiut 1.44 //
488 mocchiut 1.1 // Get the list of run to be processed, if only one run has to be processed the list will contain one entry only.
489     //
490     runlist = runinfo->GetRunList();
491     //
492     // Loop over the run to be processed
493     //
494     for (UInt_t irun=0; irun < numbofrun; irun++){
495     //
496     // retrieve the first run ID to be processed using the RunInfo list
497     //
498 mocchiut 1.15
499 mocchiut 1.1 idRun = runlist->At(irun);
500     if (verbose){
501     printf("\n\n\n ####################################################################### \n");
502     printf(" PROCESSING RUN NUMBER %i \n",(int)idRun);
503     printf(" ####################################################################### \n\n\n");
504     }
505     //
506 mocchiut 1.5 runinfo->ID_ROOT_L0 = 0;
507 mocchiut 1.1 //
508     // store in the runinfo class the GL_RUN variables for our run
509     //
510     sgnl = 0;
511     sgnl = runinfo->GetRunInfo(idRun);
512     if ( sgnl ){
513 mocchiut 1.5 if ( debug ) printf("\n OrbitalInfo - ERROR: RunInfo exited with non-zero status\n");
514 mocchiut 1.1 code = sgnl;
515     goto closeandexit;
516     } else {
517     sgnl = 0;
518     };
519     //
520     // now you can access that variables using the RunInfo class this way runinfo->ID_REG_RUN
521     //
522 mocchiut 1.5 if ( runinfo->ID_ROOT_L0 == 0 ){
523     if ( debug ) printf("\n OrbitalInfo - ERROR: no run with ID_RUN = %u \n\n Exiting... \n\n",idRun);
524 mocchiut 1.1 code = -5;
525     goto closeandexit;
526     };
527     //
528 mocchiut 1.5 // prepare the timesync for the db
529     //
530     dbtime = new GL_TIMESYNC(runinfo->ID_ROOT_L0,"ID",dbc);
531 mocchiut 1.15
532 mocchiut 1.5 //
533 mocchiut 1.1 // Search in the DB the path and name of the LEVEL0 file to be processed.
534     //
535 mocchiut 1.5 glroot->Query_GL_ROOT(runinfo->ID_ROOT_L0,dbc);
536 mocchiut 1.1 //
537     ftmpname.str("");
538     ftmpname << glroot->PATH.Data() << "/";
539     ftmpname << glroot->NAME.Data();
540     fname = ftmpname.str().c_str();
541 mocchiut 1.15 ftmpname.str("");
542 mocchiut 1.1 //
543 mocchiut 1.40 // print nout informations
544 mocchiut 1.1 //
545 mocchiut 1.5 totevent = runinfo->NEVENTS;
546 mocchiut 1.30 evfrom = runinfo->EV_FROM;
547 mocchiut 1.15 //cout<<"totevents = "<<totevent<<"\n";
548 mocchiut 1.1 if (verbose){
549     printf("\n LEVEL0 data file: %s \n",fname.Data());
550 mocchiut 1.5 printf(" RUN HEADER absolute time is: %u \n",runinfo->RUNHEADER_TIME);
551     printf(" RUN TRAILER absolute time is: %u \n",runinfo->RUNTRAILER_TIME);
552 mocchiut 1.15 printf(" %i events to be processed for run %u: from %i to %i \n\n",totevent,idRun,runinfo->EV_FROM+1,runinfo->EV_FROM+totevent);
553 mocchiut 1.1 }//
554 mocchiut 1.27 //
555 mocchiut 1.28 // if ( !totevent ) goto closeandexit;
556 mocchiut 1.1 // Open Level0 file
557     l0File = new TFile(fname.Data());
558     if ( !l0File ) {
559 mocchiut 1.5 if ( debug ) printf(" OrbitalInfo - ERROR: problems opening Level0 file\n");
560 mocchiut 1.1 code = -6;
561     goto closeandexit;
562     };
563     l0tr = (TTree*)l0File->Get("Physics");
564     if ( !l0tr ) {
565 mocchiut 1.5 if ( debug ) printf(" OrbitalInfo - ERROR: no Physics tree in Level0 file\n");
566 mocchiut 1.1 l0File->Close();
567     code = -7;
568     goto closeandexit;
569     };
570 mocchiut 1.2 // EM: open header branch as well
571     l0head = l0tr->GetBranch("Header");
572     if ( !l0head ) {
573 mocchiut 1.5 if ( debug ) printf(" OrbitalInfo - ERROR: no Header branch in Level0 tree\n");
574 mocchiut 1.2 l0File->Close();
575     code = -8;
576     goto closeandexit;
577     };
578     l0tr->SetBranchAddress("Header", &eh);
579     // end EM
580 mocchiut 1.5 nevents = l0head->GetEntries();
581 mocchiut 1.1 //
582 mocchiut 1.28 if ( nevents < 1 && totevent ) {
583 mocchiut 1.5 if ( debug ) printf(" OrbitalInfo - ERROR: Level0 file is empty\n\n");
584 mocchiut 1.1 l0File->Close();
585     code = -11;
586     goto closeandexit;
587     };
588 mocchiut 1.20 //
589 mocchiut 1.28 if ( runinfo->EV_TO > nevents-1 && totevent ) {
590 mocchiut 1.5 if ( debug ) printf(" OrbitalInfo - ERROR: too few entries in the registry tree\n");
591 mocchiut 1.1 l0File->Close();
592     code = -12;
593     goto closeandexit;
594     };
595     //
596 mocchiut 1.44 // TTree *tp = (TTree*)l0File->Get("RunHeader");
597     // tp->SetBranchAddress("Header", &eH);
598     // tp->SetBranchAddress("RunHeader", &reh);
599     // tp->GetEntry(0);
600     // ph = eH->GetPscuHeader();
601     // ULong_t TimeSync = reh->LAST_TIME_SYNC_INFO;
602     // ULong_t ObtSync = reh->OBT_TIME_SYNC;
603     // if ( debug ) printf(" 1 TimeSync %lu ObtSync %lu DeltaOBT %lu\n",TimeSync,ObtSync,TimeSync-ObtSync);
604     //
605 mocchiut 1.15 ULong_t TimeSync = (ULong_t)dbtime->GetTimesync();
606     ULong_t ObtSync = (ULong_t)(dbtime->GetObt0()/1000);
607     ULong_t DeltaOBT = TimeSync - ObtSync;
608    
609     if ( debug ) printf(" 2 TimeSync %lu ObtSync %lu DeltaOBT %lu\n",(ULong_t)(dbtime->GetTimesync()/1000),(ULong_t)dbtime->GetObt0(),TimeSync-ObtSync);
610 mocchiut 1.37 //
611     // Read MCMDs from up to 11 files, 5 before and 5 after the present one in order to have some kind of inclination information
612     //
613     ch = new TChain("Mcmd","Mcmd");
614     //
615     // look in the DB to find the closest files to this run
616     //
617     TSQLResult *pResult = 0;
618     TSQLRow *Row = 0;
619     stringstream myquery;
620     UInt_t l0fid[10];
621     Int_t i = 0;
622     memset(l0fid,0,10*sizeof(Int_t));
623     //
624     myquery.str("");
625     myquery << "select ID_ROOT_L0 from GL_RUN where RUNHEADER_TIME<=" << runinfo->RUNHEADER_TIME << " group by ID_ROOT_L0 order by RUNHEADER_TIME desc limit 5;";
626     //
627     pResult = dbc->Query(myquery.str().c_str());
628     //
629     i = 9;
630     if( pResult ){
631     //
632     Row = pResult->Next();
633     //
634     while ( Row ){
635     //
636     // store infos and exit
637     //
638     l0fid[i] = (UInt_t)atoll(Row->GetField(0));
639     i--;
640     Row = pResult->Next();
641     //
642     };
643     pResult->Delete();
644     };
645     //
646     myquery.str("");
647     myquery << "select ID_ROOT_L0 from GL_RUN where RUNHEADER_TIME>" << runinfo->RUNHEADER_TIME << " group by ID_ROOT_L0 order by RUNHEADER_TIME asc limit 5;";
648     //
649     pResult = dbc->Query(myquery.str().c_str());
650     //
651     i = 0;
652     if( pResult ){
653     //
654     Row = pResult->Next();
655     //
656     while ( Row ){
657     //
658     // store infos and exit
659     //
660     l0fid[i] = (UInt_t)atoll(Row->GetField(0));
661     i++;
662     Row = pResult->Next();
663     //
664     };
665     pResult->Delete();
666     };
667     //
668     i = 0;
669     UInt_t previd = 0;
670     while ( i < 10 ){
671     if ( l0fid[i] && previd != l0fid[i] ){
672     previd = l0fid[i];
673     myquery.str("");
674     myquery << "select PATH,NAME from GL_ROOT where ID=" << l0fid[i] << " ;";
675     //
676     pResult = dbc->Query(myquery.str().c_str());
677     //
678     if( pResult ){
679     //
680     Row = pResult->Next();
681     //
682     if ( debug ) printf(" Using inclination informations from file: %s \n",(((TString)gSystem->ExpandPathName(Row->GetField(0)))+"/"+(TString)Row->GetField(1)).Data());
683     ch->Add(((TString)gSystem->ExpandPathName(Row->GetField(0)))+"/"+(TString)Row->GetField(1));
684     //
685     pResult->Delete();
686     };
687     };
688     i++;
689     };
690     //
691     // l0trm = (TTree*)l0File->Get("Mcmd");
692     // ch->ls();
693     ch->SetBranchAddress("Mcmd",&mcmdev);
694     // printf(" entries %llu \n", ch->GetEntries());
695     // l0trm = ch->GetTree();
696     // neventsm = l0trm->GetEntries();
697     neventsm = ch->GetEntries();
698     if ( debug ) printf(" entries %u \n", neventsm);
699 mocchiut 1.18 // neventsm = 0;
700 mocchiut 1.15 //
701     if (neventsm == 0){
702 mocchiut 1.18 if ( debug ) printf("InclinationInfo - WARNING: No quaternions in this File");
703     // l0File->Close();
704     code = 900;
705     // goto closeandexit;
706 mocchiut 1.15 }
707     //
708    
709 mocchiut 1.37 // l0trm->SetBranchAddress("Mcmd", &mcmdev);
710 mocchiut 1.18 // l0trm->SetBranchAddress("Header", &eh);
711 mocchiut 1.15 //
712     //
713     //
714 mocchiut 1.44
715     // UInt_t mctren = 0;
716     // UInt_t mcreen = 0;
717 mocchiut 1.15 UInt_t numrec = 0;
718     //
719     Double_t upperqtime = 0;
720     Double_t lowerqtime = 0;
721    
722 mocchiut 1.44 // Double_t incli = 0;
723     // oi = 0;
724     // UInt_t ooi = 0;
725 mocchiut 1.15 //
726 mocchiut 1.44 // init quaternions information from mcmd-packets
727 mocchiut 1.15 //
728     Bool_t isf = true;
729 mocchiut 1.44 // Int_t fgh = 0;
730    
731     vector<Float_t> q0;
732     vector<Float_t> q1;
733     vector<Float_t> q2;
734     vector<Float_t> q3;
735     vector<Double_t> qtime;
736     vector<Float_t> qPitch;
737     vector<Float_t> qRoll;
738     vector<Float_t> qYaw;
739     vector<Int_t> qmode;
740    
741     Int_t nt = 0;
742    
743     //init sine-function interpolation
744    
745     //cout<<"Sine coeficient initialisation..."<<endl;
746     vector<Sine> q0sine;
747     vector<Sine> q1sine;
748     vector<Sine> q2sine;
749     vector<Sine> q3sine;
750     vector<Sine> Yawsine;
751    
752     /*TH2F* q0testing = new TH2F();
753     TH2F* q1testing = new TH2F();
754     TH2F* q2testing = new TH2F();
755     TH2F* q3testing = new TH2F();
756     TH2F* Pitchtesting = new TH2F();
757     */
758     UInt_t must = 0;
759    
760 mocchiut 1.15 //
761 mocchiut 1.1 // run over all the events of the run
762     //
763     if (verbose) printf("\n Ready to start! \n\n Processed events: \n\n");
764     //
765 mocchiut 1.44 //
766 mocchiut 1.5 for ( re = runinfo->EV_FROM; re < (runinfo->EV_FROM+runinfo->NEVENTS); re++){
767 mocchiut 1.1 //
768 mocchiut 1.5 if ( procev%1000 == 0 && procev > 0 && verbose ) printf(" %iK \n",procev/1000);
769 mocchiut 1.15 if ( debug ) printf(" %i \n",procev);
770 mocchiut 1.1 //
771 mocchiut 1.43 if ( l0head->GetEntry(re) <= 0 ) throw -36;
772 mocchiut 1.1 //
773     // absolute time of this event
774     //
775 mocchiut 1.5 ph = eh->GetPscuHeader();
776 mocchiut 1.15 atime = dbtime->DBabsTime(ph->GetOrbitalTime());
777 mocchiut 1.40 if ( debug ) printf(" %i absolute time \n",procev);
778 mocchiut 1.1 //
779     // paranoid check
780     //
781 mocchiut 1.34 if ( (atime > (runinfo->RUNTRAILER_TIME+1)) || (atime < (runinfo->RUNHEADER_TIME-1)) ) {
782 mocchiut 1.1 if (verbose) printf(" OrbitalInfo - WARNING: event at time outside the run time window, skipping it\n");
783 mocchiut 1.30 jumped++;
784 mocchiut 1.44 // debug = true;
785 mocchiut 1.7 continue;
786     }
787 mocchiut 1.30
788     //
789     // retrieve tof informations
790     //
791     if ( !reprocall ){
792     itr = nobefrun + (re - evfrom - jumped);
793     //itr = re-(46438+200241);
794     } else {
795     itr = runinfo->GetFirstEntry() + (re - evfrom - jumped);
796     };
797     //
798     if ( !standalone ){
799     if ( itr > nevtofl2 ){
800     if ( verbose ) printf(" OrbitalInfo - ERROR: no tof events with entry = %i in Level2 file\n",itr);
801     if ( debug ) printf(" nobefrun %u re %u evfrom %u jumped %u reprocall %i \n",nobefrun,re,evfrom,jumped,reprocall);
802     l0File->Close();
803     code = -901;
804     goto closeandexit;
805     };
806     //
807     tof->Clear();
808     //
809 mocchiut 1.43 if ( ttof->GetEntry(itr) <= 0 ) throw -36;
810 mocchiut 1.30 //
811     };
812 mocchiut 1.1 //
813     procev++;
814     //
815     // start processing
816     //
817 mocchiut 1.40 if ( debug ) printf(" %i start processing \n",procev);
818 mocchiut 1.3 orbitalinfo->Clear();
819 mocchiut 1.5 //
820 mocchiut 1.30 OrbitalInfoTrkVar *t_orb = new OrbitalInfoTrkVar();
821     if( !(orbitalinfo->OrbitalInfoTrk) ) orbitalinfo->OrbitalInfoTrk = new TClonesArray("OrbitalInfoTrkVar",2);
822     TClonesArray &tor = *orbitalinfo->OrbitalInfoTrk;
823     //
824 mocchiut 1.15 // Fill OBT, pkt_num and absTime
825     //
826 mocchiut 1.2 orbitalinfo->pkt_num = ph->GetCounter();
827     orbitalinfo->OBT = ph->GetOrbitalTime();
828 mocchiut 1.15 orbitalinfo->absTime = atime;
829 mocchiut 1.40 if ( debug ) printf(" %i pktnum obt abstime \n",procev);
830 mocchiut 1.15 //
831     // Propagate the orbit from the tle time to atime, using SGP(D)4.
832     //
833 mocchiut 1.40 if ( debug ) printf(" %i sgp4 \n",procev);
834 mocchiut 1.15 cCoordGeo coo;
835 mocchiut 1.40 Float_t jyear=0.;
836 mocchiut 1.7 //
837     if(atime >= gltle->GetToTime()) {
838 mocchiut 1.9 if ( !gltle->Query(atime, dbc) ){
839 mocchiut 1.15 //
840 mocchiut 1.9 // Compute the magnetic dipole moment.
841 mocchiut 1.15 //
842 mocchiut 1.40 if ( debug ) printf(" %i compute magnetic dipole moment \n",procev);
843 mocchiut 1.9 UInt_t year, month, day, hour, min, sec;
844 mocchiut 1.15 //
845 mocchiut 1.9 TTimeStamp t = TTimeStamp(atime, kTRUE);
846     t.GetDate(kTRUE, 0, &year, &month, &day);
847     t.GetTime(kTRUE, 0, &hour, &min, &sec);
848     jyear = (float) year
849     + (month*31.+ (float) day)/365.
850 mocchiut 1.44 + (hour*3600.+min*60.+(float)sec)/(24.*3600.*365.);
851 mocchiut 1.15 //
852 mocchiut 1.40 if ( debug ) printf(" %i compute magnetic dipole moment get dipole moment for year\n",procev);
853 mocchiut 1.9 feldcof_(&jyear, &dimo); // get dipole moment for year
854 mocchiut 1.40 if ( debug ) printf(" %i compute magnetic dipole moment end\n",procev);
855 mocchiut 1.9 } else {
856     code = -56;
857     goto closeandexit;
858     };
859 mocchiut 1.7 }
860 mocchiut 1.15 coo = getCoo(atime, gltle->GetFromTime(), gltle->GetTle());
861     //
862     cOrbit orbits(*gltle->GetTle());
863     //
864 mocchiut 1.18 if ( debug ) printf(" I am Here \n");
865     //
866 mocchiut 1.15 // synchronize with quaternions data
867     //
868 mocchiut 1.18 if ( isf && neventsm>0 ){
869 mocchiut 1.15 //
870     // First event
871     //
872     isf = false;
873     upperqtime = atime;
874     lowerqtime = runinfo->RUNHEADER_TIME;
875 mocchiut 1.44 for ( ik = 0; ik < neventsm; ik++){ //number of macrocommad packets
876 mocchiut 1.43 if ( ch->GetEntry(ik) <= 0 ) throw -36;
877 mocchiut 1.15 tmpSize = mcmdev->Records->GetEntries();
878     numrec = tmpSize;
879 mocchiut 1.44 for (Int_t j3 = 0;j3<tmpSize;j3++){ //number of subpackets
880 mocchiut 1.37 if ( debug ) printf(" ik %i j3 %i eh eh eh \n",ik,j3);
881 mocchiut 1.15 mcmdrc = (pamela::McmdRecord*)mcmdev->Records->At(j3);
882 mocchiut 1.38 if ( mcmdrc ){ // missing inclination bug [8RED 090116]
883 mocchiut 1.46 if ( debug ) printf(" pluto \n");
884 mocchiut 1.44 if ((int)mcmdrc->ID1 == 226 && mcmdrc->Mcmd_Block_crc_ok == 1){ //Check that it is Inclination Packet
885 mocchiut 1.47 L_QQ_Q_l_upper->fill(mcmdrc->McmdData);
886 mocchiut 1.38 for (UInt_t ui = 0; ui < 6; ui++){
887     if (ui>0){
888     if (L_QQ_Q_l_upper->time[ui]>L_QQ_Q_l_upper->time[0]){
889 mocchiut 1.46 if ( debug ) printf(" here1 %i \n",ui);
890 mocchiut 1.44 Double_t u_time = dbtime->DBabsTime((UInt_t)(L_QQ_Q_l_upper->time[ui]*1000-DeltaOBT*1000));
891     Int_t recSize = recqtime.size();
892     for(Int_t mu = nt;mu<recSize;mu++){
893     if(recqtime[mu]>lowerqtime && recqtime[mu]<u_time){
894     nt=mu;
895     Int_t sizeqmcmd = qtime.size();
896     inclresize(qtime,q0,q1,q2,q3,qmode,qRoll,qPitch,qYaw);
897     qtime[sizeqmcmd]=recqtime[mu];
898     q0[sizeqmcmd]=recq0[mu];
899     q1[sizeqmcmd]=recq1[mu];
900     q2[sizeqmcmd]=recq2[mu];
901     q3[sizeqmcmd]=recq3[mu];
902     qmode[sizeqmcmd]=-10;
903     orbits.getPosition((double) (qtime[sizeqmcmd] - gltle->GetFromTime())/60., &eCi);
904     RYPang_upper->TransAngle(eCi.getPos().m_x,eCi.getPos().m_y,eCi.getPos().m_z,eCi.getVel().m_x,eCi.getVel().m_y,eCi.getVel().m_z,recq0[mu],recq1[mu],recq2[mu],recq3[mu]);
905     qRoll[sizeqmcmd]=RYPang_upper->Kren;
906     qYaw[sizeqmcmd]=RYPang_upper->Ryskanie;
907     qPitch[sizeqmcmd]=RYPang_upper->Tangazh;
908     }
909     if(recqtime[mu]>=u_time){
910     Int_t sizeqmcmd = qtime.size();
911     inclresize(qtime,q0,q1,q2,q3,qmode,qRoll,qPitch,qYaw);
912     qtime[sizeqmcmd]=u_time;
913     q0[sizeqmcmd]=L_QQ_Q_l_upper->quat[ui][0];
914     q1[sizeqmcmd]=L_QQ_Q_l_upper->quat[ui][1];
915     q2[sizeqmcmd]=L_QQ_Q_l_upper->quat[ui][2];
916     q3[sizeqmcmd]=L_QQ_Q_l_upper->quat[ui][3];
917     qmode[sizeqmcmd]=holeq(lowerqtime,qtime[sizeqmcmd],L_QQ_Q_l_lower,L_QQ_Q_l_upper,ui);
918     lowerqtime = u_time;
919     orbits.getPosition((double) (u_time - gltle->GetFromTime())/60., &eCi);
920     RYPang_upper->TransAngle(eCi.getPos().m_x,eCi.getPos().m_y,eCi.getPos().m_z,eCi.getVel().m_x,eCi.getVel().m_y,eCi.getVel().m_z,L_QQ_Q_l_upper->quat[ui][0],L_QQ_Q_l_upper->quat[ui][1],L_QQ_Q_l_upper->quat[ui][2],L_QQ_Q_l_upper->quat[ui][3]);
921     qRoll[sizeqmcmd]=RYPang_upper->Kren;
922     qYaw[sizeqmcmd]=RYPang_upper->Ryskanie;
923     qPitch[sizeqmcmd]=RYPang_upper->Tangazh;
924     break;
925 mocchiut 1.38 }
926     }
927     }
928     }else{
929 mocchiut 1.46 if ( debug ) printf(" here2 %i \n",ui);
930 mocchiut 1.44 Double_t u_time = dbtime->DBabsTime((UInt_t)(L_QQ_Q_l_upper->time[0]*1000-DeltaOBT*1000));
931     if(lowerqtime>u_time)nt=0;
932     Int_t recSize = recqtime.size();
933     for(Int_t mu = nt;mu<recSize;mu++){
934     if(recqtime[mu]>lowerqtime && recqtime[mu]<u_time){
935     nt=mu;
936     Int_t sizeqmcmd = qtime.size();
937     inclresize(qtime,q0,q1,q2,q3,qmode,qRoll,qPitch,qYaw);
938     qtime[sizeqmcmd]=recqtime[mu];
939     q0[sizeqmcmd]=recq0[mu];
940     q1[sizeqmcmd]=recq1[mu];
941     q2[sizeqmcmd]=recq2[mu];
942     q3[sizeqmcmd]=recq3[mu];
943     qmode[sizeqmcmd]=-10;
944     orbits.getPosition((double) (qtime[sizeqmcmd] - gltle->GetFromTime())/60., &eCi);
945     RYPang_upper->TransAngle(eCi.getPos().m_x,eCi.getPos().m_y,eCi.getPos().m_z,eCi.getVel().m_x,eCi.getVel().m_y,eCi.getVel().m_z,recq0[mu],recq1[mu],recq2[mu],recq3[mu]);
946     qRoll[sizeqmcmd]=RYPang_upper->Kren;
947     qYaw[sizeqmcmd]=RYPang_upper->Ryskanie;
948     qPitch[sizeqmcmd]=RYPang_upper->Tangazh;
949     }
950     if(recqtime[mu]>=u_time){
951     Int_t sizeqmcmd = qtime.size();
952     inclresize(qtime,q0,q1,q2,q3,qmode,qRoll,qPitch,qYaw);
953     qtime[sizeqmcmd]=u_time;
954     q0[sizeqmcmd]=L_QQ_Q_l_upper->quat[0][0];
955     q1[sizeqmcmd]=L_QQ_Q_l_upper->quat[0][1];
956     q2[sizeqmcmd]=L_QQ_Q_l_upper->quat[0][2];
957     q3[sizeqmcmd]=L_QQ_Q_l_upper->quat[0][3];
958     qmode[sizeqmcmd]=holeq(lowerqtime,qtime[sizeqmcmd],L_QQ_Q_l_lower,L_QQ_Q_l_upper,ui);
959     lowerqtime = u_time;
960     orbits.getPosition((double) (u_time - gltle->GetFromTime())/60., &eCi);
961     RYPang_upper->TransAngle(eCi.getPos().m_x,eCi.getPos().m_y,eCi.getPos().m_z,eCi.getVel().m_x,eCi.getVel().m_y,eCi.getVel().m_z,L_QQ_Q_l_upper->quat[0][0],L_QQ_Q_l_upper->quat[0][1],L_QQ_Q_l_upper->quat[0][2],L_QQ_Q_l_upper->quat[0][3]);
962     qRoll[sizeqmcmd]=RYPang_upper->Kren;
963     qYaw[sizeqmcmd]=RYPang_upper->Ryskanie;
964     qPitch[sizeqmcmd]=RYPang_upper->Tangazh;
965 mocchiut 1.15 CopyQ(L_QQ_Q_l_lower,L_QQ_Q_l_upper);
966 mocchiut 1.44 break;
967 mocchiut 1.15 }
968     }
969 mocchiut 1.44 }
970 mocchiut 1.38 }
971 mocchiut 1.15 }
972 mocchiut 1.44 }
973 mocchiut 1.46 if ( debug ) printf(" ciccio \n");
974 mocchiut 1.15 }
975 mocchiut 1.44 }
976 mocchiut 1.47
977     if(qtime.size()==0){
978 mocchiut 1.50 for(UInt_t my=0;my<recqtime.size();my++){
979 mocchiut 1.47 Int_t sizeqmcmd = qtime.size();
980     inclresize(qtime,q0,q1,q2,q3,qmode,qRoll,qPitch,qYaw);
981     qtime[sizeqmcmd]=recqtime[my];
982     q0[sizeqmcmd]=recq0[my];
983     q1[sizeqmcmd]=recq1[my];
984     q2[sizeqmcmd]=recq2[my];
985     q3[sizeqmcmd]=recq3[my];
986     qmode[sizeqmcmd]=-10;
987     orbits.getPosition((double) (qtime[sizeqmcmd] - gltle->GetFromTime())/60., &eCi);
988     RYPang_upper->TransAngle(eCi.getPos().m_x,eCi.getPos().m_y,eCi.getPos().m_z,eCi.getVel().m_x,eCi.getVel().m_y,eCi.getVel().m_z,recq0[my],recq1[my],recq2[my],recq3[my]);
989     qRoll[sizeqmcmd]=RYPang_upper->Kren;
990     qYaw[sizeqmcmd]=RYPang_upper->Ryskanie;
991     qPitch[sizeqmcmd]=RYPang_upper->Tangazh;
992     }
993     }
994    
995 mocchiut 1.46 if ( debug ) printf(" fuffi \n");
996 mocchiut 1.49
997     //sineparam(q0sine,qtime,q0,qRoll,qPitch,0.60);
998     //sineparam(q1sine,qtime,q1,qRoll,qPitch,0.82);
999     //sineparam(q2sine,qtime,q2,qRoll,qPitch,0.82);
1000     //sineparam(q3sine,qtime,q3,qRoll,qPitch,0.60);
1001     //sineparam(Yawsine,qtime,qYaw,qRoll,qPitch,4);
1002    
1003 mocchiut 1.46 if ( debug ) printf(" puffi \n");
1004 mocchiut 1.44 Double_t tmin = 9999999999.;
1005     Double_t tmax = 0.;
1006     for(UInt_t tre = 0;tre<qtime.size();tre++){
1007     if(qtime[tre]>tmax)tmax = qtime[tre];
1008     if(qtime[tre]<tmin)tmin = qtime[tre];
1009     }
1010 mocchiut 1.46 if ( debug ) printf(" gnfuffi \n");
1011    
1012 mocchiut 1.44 //q0testing->SetName("q0testing");
1013     //q1testing->SetName("q1testing");
1014     //q2testing->SetName("q2testing");
1015     //q3testing->SetName("q3testing");
1016 mocchiut 1.15
1017 mocchiut 1.44 // Int_t ss=10.*(tmax-tmin);
1018     //q0testing->SetBins(ss,tmin,tmax,1000,-1.,1.);
1019     //Pitchtesting->SetBins(ss,tmin,tmax,1000,-40.,40.);
1020    
1021     // for(Int_t tre = 0;tre<qtime.size();tre++){
1022     //cout<<"q0["<<tre<<" = "<<q0[tre]<<endl;
1023     //q0testing->Fill(qtime[tre],q0[tre]);
1024     //q1testing->Fill(qtime[tre],q1[tre]);
1025     //Pitchtesting->Fill(qtime[tre],qPitch[tre],100);
1026     //if(qmode[tre] == -10)Pitchtesting->Fill(qtime[tre],10,100);
1027     //q2testing->Fill(qtime[tre],q2[tre],100);
1028     //q3testing->Fill(qtime[tre],q3[tre],100);
1029     // }
1030 mocchiut 1.15
1031 mocchiut 1.44 //for(Int_t tre=0;tre<q0sine.size();tre++)cout<<q1sine[tre].A<<"*sin("<<q1sine[tre].b<<"x+"<<q1sine[tre].c<<")\t time start: "<<q1sine[tre].startPoint<<"\ttime end: "<<q1sine[tre].finishPoint<<endl;
1032     //for(Int_t tre=0;tre<q0sine.size();tre++)cout<<q1sine[tre].A<<"*sin("<<q1sine[tre].b<<"x+"<<q1sine[tre].c<<")\t time start: "<<q0sine[tre].startPoint<<"\ttime end: "<<q0sine[tre].finishPoint<<endl;
1033     } // if we processed first event
1034    
1035     //Filling Inclination information
1036     Double_t incli = 0;
1037 mocchiut 1.46 if ( qtime.size() > 1 ){
1038 mocchiut 1.44 for(UInt_t mu = must;mu<qtime.size()-1;mu++){
1039 mocchiut 1.46 if ( debug ) printf(" ??grfuffi %i sixe %i must %i \n",mu,qtime.size()-1,must);
1040 mocchiut 1.44 if(qtime[mu+1]>qtime[mu]){
1041 mocchiut 1.46 if ( debug ) printf(" grfuffi2 %i \n",mu);
1042 mocchiut 1.44 if(atime<=qtime[mu+1] && atime>=qtime[mu]){
1043     must = mu;
1044     incli = (qPitch[mu+1]-qPitch[mu])/(qtime[mu+1]-qtime[mu]);
1045     orbitalinfo->theta = incli*atime+qPitch[mu+1]-incli*qtime[mu+1];
1046     incli = (qRoll[mu+1]-qRoll[mu])/(qtime[mu+1]-qtime[mu]);
1047     orbitalinfo->etha = incli*atime+qRoll[mu+1]-incli*qtime[mu+1];
1048     incli = (qYaw[mu+1]-qYaw[mu])/(qtime[mu+1]-qtime[mu]);
1049     orbitalinfo->phi = incli*atime+qYaw[mu+1]-incli*qtime[mu+1];
1050    
1051     incli = (q0[mu+1]-q0[mu])/(qtime[mu+1]-qtime[mu]);
1052 mocchiut 1.49 orbitalinfo->q0 = incli*atime+q0[mu+1]-incli*qtime[mu+1];
1053 mocchiut 1.44 incli = (q1[mu+1]-q1[mu])/(qtime[mu+1]-qtime[mu]);
1054 mocchiut 1.49 orbitalinfo->q1 = incli*atime+q1[mu+1]-incli*qtime[mu+1];
1055 mocchiut 1.44 incli = (q2[mu+1]-q2[mu])/(qtime[mu+1]-qtime[mu]);
1056 mocchiut 1.49 orbitalinfo->q2 = incli*atime+q2[mu+1]-incli*qtime[mu+1];
1057 mocchiut 1.44 incli = (q3[mu+1]-q3[mu])/(qtime[mu+1]-qtime[mu]);
1058 mocchiut 1.49 orbitalinfo->q3 = incli*atime+q3[mu+1]-incli*qtime[mu+1];
1059 mocchiut 1.44
1060     orbitalinfo->TimeGap = qtime[mu+1]-qtime[mu];
1061     orbitalinfo->mode = qmode[mu+1];
1062 mocchiut 1.49 //if(qmode[mu+1]==-10) orbitalinfo->R10r = true;else orbitalinfo->R10r = false;
1063     //reserved for next versions Vitaly.
1064     /*if(qmode[mu+1]==-10 || qmode[mu+1]==0 || qmode[mu+1]==1 || qmode[mu+1]==3 || qmode[mu+1]==4 || qmode[mu+1]==6){
1065 mocchiut 1.44 //linear interpolation
1066     incli = (q0[mu+1]-q0[mu])/(qtime[mu+1]-qtime[mu]);
1067     orbitalinfo->q0 = incli*atime+q0[mu+1]-incli*qtime[mu+1];
1068     incli = (q1[mu+1]-q1[mu])/(qtime[mu+1]-qtime[mu]);
1069     orbitalinfo->q1 = incli*atime+q1[mu+1]-incli*qtime[mu+1];
1070     incli = (q2[mu+1]-q2[mu])/(qtime[mu+1]-qtime[mu]);
1071     orbitalinfo->q2 = incli*atime+q2[mu+1]-incli*qtime[mu+1];
1072     incli = (q3[mu+1]-q3[mu])/(qtime[mu+1]-qtime[mu]);
1073     orbitalinfo->q3 = incli*atime+q3[mu+1]-incli*qtime[mu+1];
1074     }else{
1075     //sine interpolation
1076     for(UInt_t mt=0;mt<q0sine.size();mt++){
1077     if(atime<=q0sine[mt].finishPoint && atime>=q0sine[mt].startPoint){
1078     if(!q0sine[mt].NeedFit)orbitalinfo->q0=q0sine[mt].A*sin(q0sine[mt].b*atime+q0sine[mt].c);else{
1079     incli = (q0[mu+1]-q0[mu])/(qtime[mu+1]-qtime[mu]);
1080     orbitalinfo->q0 = incli*atime+q0[mu+1]-incli*qtime[mu+1];
1081     }
1082     }
1083     if(atime<=q1sine[mt].finishPoint && atime>=q1sine[mt].startPoint){
1084     if(!q1sine[mt].NeedFit)orbitalinfo->q1=q1sine[mt].A*sin(q1sine[mt].b*atime+q1sine[mt].c);else{
1085     incli = (q1[mu+1]-q1[mu])/(qtime[mu+1]-qtime[mu]);
1086     orbitalinfo->q1 = incli*atime+q1[mu+1]-incli*qtime[mu+1];
1087     }
1088     }
1089     if(atime<=q2sine[mt].finishPoint && atime>=q2sine[mt].startPoint){
1090     if(!q2sine[mt].NeedFit)orbitalinfo->q2=q0sine[mt].A*sin(q2sine[mt].b*atime+q2sine[mt].c);else{
1091     incli = (q2[mu+1]-q2[mu])/(qtime[mu+1]-qtime[mu]);
1092     orbitalinfo->q2 = incli*atime+q2[mu+1]-incli*qtime[mu+1];
1093     }
1094     }
1095     if(atime<=q3sine[mt].finishPoint && atime>=q3sine[mt].startPoint){
1096     if(!q3sine[mt].NeedFit)orbitalinfo->q3=q0sine[mt].A*sin(q3sine[mt].b*atime+q3sine[mt].c);else{
1097     incli = (q3[mu+1]-q3[mu])/(qtime[mu+1]-qtime[mu]);
1098     orbitalinfo->q3 = incli*atime+q3[mu+1]-incli*qtime[mu+1];
1099     }
1100     }
1101     if(atime<=Yawsine[mt].finishPoint && atime>=Yawsine[mt].startPoint){
1102     if(!Yawsine[mt].NeedFit)orbitalinfo->phi=Yawsine[mt].A*sin(Yawsine[mt].b*atime+Yawsine[mt].c);else{
1103     incli = (qYaw[mu+1]-qYaw[mu])/(qtime[mu+1]-qtime[mu]);
1104     orbitalinfo->phi = incli*atime+qYaw[mu+1]-incli*qtime[mu+1];
1105     }
1106     }
1107     }
1108 mocchiut 1.49 }*/
1109 mocchiut 1.44 //q0testing->Fill(atime,orbitalinfo->q0,100);
1110     //q1testing->Fill(atime,orbitalinfo->q1,100);
1111     //Pitchtesting->Fill(atime,orbitalinfo->etha);
1112     //q2testing->Fill(atime,orbitalinfo->q2);
1113     //q3testing->Fill(atime,orbitalinfo->q3);
1114     break;
1115     }
1116 mocchiut 1.15 }
1117 mocchiut 1.44 }
1118 mocchiut 1.46 }
1119 mocchiut 1.30 //
1120     // ops no inclination information
1121     //
1122 mocchiut 1.44
1123 mocchiut 1.30 if ( orbitalinfo->q0< -999 || orbitalinfo->q1 < -999 || orbitalinfo->q2 < -999 || orbitalinfo->q3 < -999 || orbitalinfo->q0 != orbitalinfo->q0 || orbitalinfo->q1 != orbitalinfo->q1 || orbitalinfo->q2 != orbitalinfo->q2 || orbitalinfo->q3 != orbitalinfo->q3 ){
1124     orbitalinfo->mode = 10;
1125     orbitalinfo->q0 = -1000.;
1126     orbitalinfo->q1 = -1000.;
1127     orbitalinfo->q2 = -1000.;
1128     orbitalinfo->q3 = -1000.;
1129     orbitalinfo->etha = -1000.;
1130     orbitalinfo->phi = -1000.;
1131     orbitalinfo->theta = -1000.;
1132 mocchiut 1.15 };
1133 mocchiut 1.30 //
1134     // #########################################################################################################################
1135 mocchiut 1.15 //
1136     // fill orbital positions
1137     //
1138 mocchiut 1.7 // Build coordinates in the right range. We want to convert,
1139     // longitude from (0, 2*pi) to (-180deg, 180deg). Altitude is
1140     // in meters.
1141     lon = (coo.m_Lon > M_PI) ? rad2deg(coo.m_Lon - 2*M_PI) : rad2deg(coo.m_Lon);
1142     lat = rad2deg(coo.m_Lat);
1143     alt = coo.m_Alt;
1144 mocchiut 1.15 //
1145 mocchiut 1.7 if( lon<180 && lon>-180 && lat<90 && lat>-90 && alt>0 ){
1146 mocchiut 1.15 //
1147 mocchiut 1.7 orbitalinfo->lon = lon;
1148     orbitalinfo->lat = lat;
1149     orbitalinfo->alt = alt ;
1150 mocchiut 1.15 //
1151 mocchiut 1.7 // compute mag field components and L shell.
1152 mocchiut 1.15 //
1153 mocchiut 1.7 feldg_(&lat, &lon, &alt, &bnorth, &beast, &bdown, &babs);
1154     shellg_(&lat, &lon, &alt, &dimo, &xl, &icode, &bab1);
1155     findb0_(&stps, &bdel, &value, &bequ, &rr0);
1156 mocchiut 1.15 //
1157 mocchiut 1.7 orbitalinfo->Bnorth = bnorth;
1158     orbitalinfo->Beast = beast;
1159     orbitalinfo->Bdown = bdown;
1160     orbitalinfo->Babs = babs;
1161     orbitalinfo->BB0 = babs/bequ;
1162 mocchiut 1.15 orbitalinfo->L = xl;
1163 mocchiut 1.7 // Set Stormer vertical cutoff using L shell.
1164 mocchiut 1.33 orbitalinfo->cutoffsvl = 14.9/(xl*xl);
1165 mocchiut 1.15 //
1166     };
1167 pamelaprod 1.11 //
1168 mocchiut 1.40 if ( debug ) printf(" pitch angle \n");
1169     //
1170 mocchiut 1.30 // pitch angles
1171     //
1172 mocchiut 1.49 //if ( orbitalinfo->mode != 10 && orbitalinfo->mode != 5 && orbitalinfo->mode !=7 && orbitalinfo->mode != 9 ){
1173     if( orbitalinfo->TimeGap>0 && orbitalinfo->TimeGap<2000000){
1174 mocchiut 1.30 //
1175 mocchiut 1.49 Float_t Bx = -orbitalinfo->Bdown;
1176     Float_t By = orbitalinfo->Beast;
1177     Float_t Bz = orbitalinfo->Bnorth;
1178 mocchiut 1.30 //
1179     TMatrixD Fij = PO->ECItoGreenwich(PO->QuatoECI(orbitalinfo->q0,orbitalinfo->q1,orbitalinfo->q2,orbitalinfo->q3),orbitalinfo->absTime);
1180 mocchiut 1.49 TMatrixD Gij = PO->ColPermutation(Fij);
1181 mocchiut 1.30 TMatrixD Dij = PO->GreenwichtoGEO(orbitalinfo->lat,orbitalinfo->lon,Fij);
1182     TMatrixD Iij = PO->ColPermutation(Dij);
1183     //
1184 mocchiut 1.33 orbitalinfo->Iij.ResizeTo(Iij);
1185     orbitalinfo->Iij = Iij;
1186     //
1187 mocchiut 1.30 A1 = Iij(0,2);
1188     A2 = Iij(1,2);
1189     A3 = Iij(2,2);
1190 mocchiut 1.49 //
1191 mocchiut 1.33 // orbitalinfo->pamzenitangle = (Float_t)PO->GetPitchAngle(1,0,0,A1,A2,A3); // Angle between zenit and Pamela's main axiz
1192     // orbitalinfo->pamBangle = (Float_t)PO->GetPitchAngle(A1,A2,A3,Bx,By,Bz); // Angle between Pamela's main axiz and B
1193 mocchiut 1.30 //
1194     if ( !standalone && tof->ntrk() > 0 ){
1195     //
1196     Int_t nn = 0;
1197     for(Int_t nt=0; nt < tof->ntrk(); nt++){
1198     //
1199     ToFTrkVar *ptt = tof->GetToFTrkVar(nt);
1200     Double_t E11x = ptt->xtr_tof[0]; // tr->x[0];
1201     Double_t E11y = ptt->ytr_tof[0]; //tr->y[0];
1202     Double_t E11z = zin[0];
1203     Double_t E22x = ptt->xtr_tof[3];//tr->x[3];
1204     Double_t E22y = ptt->ytr_tof[3];//tr->y[3];
1205     Double_t E22z = zin[3];
1206 mocchiut 1.32 if ( (E11x < 100. && E11y < 100. && E22x < 100. && E22y < 100.) || ptt->trkseqno != -1 ){
1207 mocchiut 1.30 Double_t norm = sqrt(pow(E22x-E11x,2)+pow(E22y-E11y,2)+pow(E22z-E11z,2));
1208 mocchiut 1.44 // Double_t MyAzim = TMath::RadToDeg()*atan(TMath::Abs(E22y-E11y)/TMath::Abs(E22x-E11x));
1209     // if(E22x-E11x>=0 && E22y-E11y <0) MyAzim = 360. - MyAzim;
1210     // if(E22x-E11x>=0 && E22y-E11y >=0) MyAzim = MyAzim;
1211     // if(E22x-E11x<0 && E22y-E11y >0) MyAzim = 180. - MyAzim;
1212     // if(E22x-E11x<0 && E22y-E11y <0) MyAzim = 180. + MyAzim;
1213 mocchiut 1.30 Px = (E22x-E11x)/norm;
1214     Py = (E22y-E11y)/norm;
1215     Pz = (E22z-E11z)/norm;
1216     //
1217 mocchiut 1.33 t_orb->trkseqno = ptt->trkseqno;
1218     //
1219     TMatrixD Eij = PO->PamelatoGEO(Iij,Px,Py,Pz);
1220     t_orb->Eij.ResizeTo(Eij);
1221     t_orb->Eij = Eij;
1222     //
1223 pam-mep 1.51 TMatrixD Sij = PO->PamelatoGEO(Gij,Px,Py,Pz);
1224 mocchiut 1.33 t_orb->Sij.ResizeTo(Sij);
1225     t_orb->Sij = Sij;
1226 mocchiut 1.30 //
1227     t_orb->pitch = (Float_t)PO->GetPitchAngle(Eij(0,0),Eij(1,0),Eij(2,0),Bx,By,Bz);
1228 mocchiut 1.33 //
1229     //
1230     Double_t omega = PO->GetPitchAngle(Eij(0,0),Eij(1,0),Eij(2,0),cos(orbitalinfo->lon+TMath::Pi()/2)-sin(orbitalinfo->lon+TMath::Pi()/2),cos(orbitalinfo->lon+TMath::Pi()/2)+sin(orbitalinfo->lon+TMath::Pi()/2),1);
1231     //
1232     t_orb->cutoff = 59.3/(pow(orbitalinfo->L,2)*pow((1+sqrt(1-pow(orbitalinfo->L,-3/2)*cos(omega))),2));
1233     //
1234 mocchiut 1.36 if ( t_orb->pitch != t_orb->pitch ) t_orb->pitch = -1000.;
1235     if ( t_orb->cutoff != t_orb->cutoff ) t_orb->cutoff = -1000.;
1236     //
1237 mocchiut 1.33 if ( debug ) printf(" orbitalinfo->cutoffsvl %f vitaly %f \n",orbitalinfo->cutoffsvl,t_orb->cutoff);
1238 mocchiut 1.30 //
1239     new(tor[nn]) OrbitalInfoTrkVar(*t_orb);
1240     nn++;
1241     //
1242     t_orb->Clear();
1243     //
1244     };
1245     //
1246     };
1247     } else {
1248     if ( debug ) printf(" mmm... mode %u standalone %i ntrk %i \n",orbitalinfo->mode,standalone,tof->ntrk());
1249     };
1250     //
1251 mocchiut 1.35 } else {
1252     if ( !standalone && tof->ntrk() > 0 ){
1253     //
1254     Int_t nn = 0;
1255     for(Int_t nt=0; nt < tof->ntrk(); nt++){
1256     //
1257     ToFTrkVar *ptt = tof->GetToFTrkVar(nt);
1258     if ( ptt->trkseqno != -1 ){
1259     //
1260     t_orb->trkseqno = ptt->trkseqno;
1261     //
1262     t_orb->Eij = 0;
1263     //
1264     t_orb->Sij = 0;
1265     //
1266     t_orb->pitch = -1000.;
1267     //
1268     t_orb->cutoff = -1000.;
1269     //
1270     new(tor[nn]) OrbitalInfoTrkVar(*t_orb);
1271     nn++;
1272     //
1273     t_orb->Clear();
1274     //
1275     };
1276     //
1277     };
1278     };
1279 mocchiut 1.30 };
1280     //
1281 mocchiut 1.15 // Fill the class
1282 pamelaprod 1.11 //
1283 mocchiut 1.1 OrbitalInfotr->Fill();
1284 mocchiut 1.15 //
1285 mocchiut 1.30 delete t_orb;
1286     //
1287 mocchiut 1.15 }; // loop over the events in the run
1288 mocchiut 1.1 //
1289     // Here you may want to clear some variables before processing another run
1290     //
1291 mocchiut 1.44
1292     //gStyle->SetOptStat(000000);
1293     //gStyle->SetPalette(1);
1294    
1295     /*TCanvas* c1 = new TCanvas("c1","",1200,800);
1296     //c1->Divide(1,4);
1297     c1->cd(1);
1298     //q0testing->Draw("colz");
1299     //c1->cd(2);
1300     //q1testing->Draw("colz");
1301     //c1->cd(3);
1302     Pitchtesting->Draw("colz");
1303     //c1->cd(4);
1304     //q3testing->Draw("colz");
1305     c1->SaveAs("9.Rollhyst.png");
1306     delete c1;*/
1307    
1308 mocchiut 1.5 delete dbtime;
1309 mocchiut 1.18 if ( L_QQ_Q_l_upper ) delete L_QQ_Q_l_upper;
1310     if ( L_QQ_Q_l_lower ) delete L_QQ_Q_l_lower;
1311     if ( RYPang_upper ) delete RYPang_upper;
1312     if ( RYPang_lower ) delete RYPang_lower;
1313 mocchiut 1.1 }; // process all the runs
1314 mocchiut 1.15
1315 mocchiut 1.1 if (verbose) printf("\n Finished processing data \n");
1316     //
1317     closeandexit:
1318     //
1319     // 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.
1320     //
1321     if ( !reprocall && reproc && code >= 0 ){
1322     if ( totfileentries > noaftrun ){
1323     if (verbose){
1324     printf("\n Post-processing: copying events from the old tree after the processed run\n");
1325     printf(" Copying %i events in the file which are after the end of the run %i \n",(int)(totfileentries-noaftrun),(int)run);
1326     printf(" Start copying at event number %i end copying at event number %i \n",(int)noaftrun,(int)totfileentries);
1327     }
1328     for (UInt_t j = noaftrun; j < totfileentries; j++ ){
1329     //
1330     // Get entry from old tree
1331     //
1332 mocchiut 1.43 if ( OrbitalInfotrclone->GetEntry(j) <= 0 ) throw -36;
1333 mocchiut 1.1 //
1334     // copy orbitalinfoclone to OrbitalInfo
1335     //
1336 mocchiut 1.3 orbitalinfo->Clear();
1337 mocchiut 1.5 //
1338 mocchiut 1.1 memcpy(&orbitalinfo,&orbitalinfoclone,sizeof(orbitalinfoclone));
1339     //
1340     // Fill entry in the new tree
1341     //
1342     OrbitalInfotr->Fill();
1343     };
1344     if (verbose) printf(" Finished successful copying!\n");
1345     };
1346     };
1347     //
1348     // Close files, delete old tree(s), write and close level2 file
1349     //
1350     if ( l0File ) l0File->Close();
1351     if ( tempfile ) tempfile->Close();
1352 mocchiut 1.23 if ( myfold ) gSystem->Unlink(tempname.str().c_str());
1353 mocchiut 1.5 //
1354 mocchiut 1.1 if ( runinfo ) runinfo->Close();
1355     if ( OrbitalInfotr ) OrbitalInfotr->SetName("OrbitalInfo");
1356 mocchiut 1.30 if ( tof ) tof->Delete();
1357     if ( ttof ) ttof->Delete();
1358     //
1359 mocchiut 1.1 if ( file ){
1360     file->cd();
1361     file->Write();
1362     };
1363     //
1364 mocchiut 1.23 if ( myfold ) gSystem->Unlink(OrbitalInfofolder.str().c_str());
1365 mocchiut 1.1 //
1366     // the end
1367     //
1368 mocchiut 1.25 if ( dbc ){
1369     dbc->Close();
1370     delete dbc;
1371     };
1372 mocchiut 1.1 if (verbose) printf("\n Exiting...\n");
1373     if(OrbitalInfotr)OrbitalInfotr->Delete();
1374 mocchiut 1.4 //
1375 mocchiut 1.30 if ( PO ) delete PO;
1376 mocchiut 1.4 if ( orbitalinfo ) delete orbitalinfo;
1377     if ( orbitalinfoclone ) delete orbitalinfoclone;
1378     if ( glroot ) delete glroot;
1379     if ( runinfo ) delete runinfo;
1380     //
1381 mocchiut 1.1 if(code < 0) throw code;
1382     return(code);
1383     }
1384    
1385 mocchiut 1.7
1386     //
1387     // Returns the cCoordGeo structure holding the geographical
1388     // coordinates for the event (see sgp4.h).
1389     //
1390     // atime is the abstime of the event in UTC unix time.
1391     // tletime is the time of the tle in UTC unix time.
1392     // tle is the previous and nearest tle (compared to atime).
1393     cCoordGeo getCoo(UInt_t atime, UInt_t tletime, cTle *tle)
1394     {
1395     cEci eci;
1396     cOrbit orbit(*tle);
1397     orbit.getPosition((double) (atime - tletime)/60., &eci);
1398    
1399     return eci.toGeo();
1400     }
1401 mocchiut 1.15
1402     // function of copyng of quatrnions classes
1403    
1404     void CopyQ(Quaternions *Q1, Quaternions *Q2){
1405     for(UInt_t i = 0; i < 6; i++){
1406     Q1->time[i]=Q2->time[i];
1407     for (UInt_t j = 0; j < 4; j++)Q1->quat[i][j]=Q2->quat[i][j];
1408     }
1409     return;
1410     }
1411    
1412     // functions of copyng InclinationInfo classes
1413    
1414     void CopyAng(InclinationInfo *A1, InclinationInfo *A2){
1415     A1->Tangazh = A2->Tangazh;
1416     A1->Ryskanie = A2->Ryskanie;
1417     A1->Kren = A2->Kren;
1418     return;
1419     }
1420    
1421     UInt_t holeq(Double_t lower,Double_t upper,Quaternions *Qlower, Quaternions *Qupper, UInt_t f){
1422    
1423     UInt_t hole = 10;
1424 mocchiut 1.40 Bool_t R10l = false; // Sign of R10 mode in lower quaternions array
1425     Bool_t R10u = false; // Sign of R10 mode in upper quaternions array
1426     Bool_t insm = false; // Sign that we inside quaternions array
1427     Bool_t mxtml = false; // Sign of mixt mode in lower quaternions array
1428     Bool_t mxtmu = false; // Sign of mixt mode in upper quaternions array
1429     Bool_t npasm = false; // Sign of normall pass between R10 and non R10 or between non R10 and R10
1430 mocchiut 1.15 UInt_t NCQl = 6; // Number of correct quaternions in lower array
1431     UInt_t NCQu = 6; // Number of correct quaternions in upper array
1432     if (f>0){
1433     insm = true;
1434     if(Qupper->time[f]-Qupper->time[f-1]==30) R10u = false;
1435     if(Qupper->time[f]-Qupper->time[f-1]<1) R10u = true;
1436     }else{
1437     insm = false;
1438     if((Qlower->time[5]-Qlower->time[0]<2)&&(Qlower->time[1]-Qlower->time[0]<2)) R10l = true;
1439     if((Qupper->time[5]-Qupper->time[0]<2)&&(Qupper->time[1]-Qupper->time[0]<2)) R10u = true;
1440     if((Qlower->time[5]-Qlower->time[0]==150)&&(Qlower->time[1]-Qlower->time[0]==30)) R10l = false;
1441     if((Qupper->time[5]-Qupper->time[0]==150)&&(Qupper->time[1]-Qupper->time[0]==30)) R10u = false;
1442     if((Qlower->time[5]-Qlower->time[0]<2)&&(Qlower->time[1]-Qlower->time[0]==30)){
1443     mxtml = true;
1444     for(UInt_t i = 1; i < 6; i++){
1445     if(Qlower->time[i]-Qlower->time[0]==30*i) NCQl=i;
1446     }
1447     }
1448     if((Qupper->time[5]-Qupper->time[0]<2)&&(Qupper->time[1]-Qupper->time[0]==30)){
1449     mxtmu = true;
1450     for(UInt_t i = 1; i < 6; i++){
1451     if(Qupper->time[i]-Qupper->time[0]==30*i) NCQu=i;
1452     }
1453     }
1454     }
1455    
1456     if(((upper-lower==1.5)||(upper-lower==3.)||(upper-lower==30.)||(upper-lower==31.5)||(upper-lower==33.)||(upper-lower==181.5)||(upper-lower==210.)||(upper-lower==211.5))&&!insm) npasm = true;
1457    
1458    
1459     if (R10u&&insm) hole=0; // best event R10
1460     if ((upper-lower<=5)&&(!insm)&&R10l&&R10u) hole = 1; // when first of 6 quaternions in array is correct
1461     if (((!R10u)&&insm)||((!insm)&&(!R10u)&&(!R10l)&&((upper-lower==210+(6-NCQl)*30)||(upper-lower==30)))) hole = 2; //non R10
1462     if (npasm&&(!insm)&&((R10l&&!R10u)||(R10u&&!R10l))) hole = 3; //normall pass from R10 to non R10 or from non R10 to R10
1463     if ((!npasm)&&(upper-lower<=300)&&(!insm)&&((R10l&&!R10u)||(R10u&&!R10l))) hole = 4; // eliminable hole between R10 and non R10 or between non R10 and R10
1464     if ((upper-lower>=300)&&(!insm)&&((R10l&&!R10u)||(R10u&&!R10l))) hole = 5; //uneliminable hole between R10 and non R10 or between non R10 and R10
1465     if ((upper-lower>5)&&(upper-lower<=300)&&R10u&&R10l) hole = 6; // eliminable hole inside R10
1466     if ((upper-lower>300)&&R10u&&R10l) hole = 7; //uneliminable hole inside R10
1467     if ((upper-lower>210)&&(upper-lower<=1200)&&(!R10u)&&(!R10l)) hole = 8; //eliminable hole inside non R10
1468     if ((upper-lower>1200)&&!R10u&&!R10l) hole = 9; // uneliminable hole inside non R10
1469     return hole;
1470     }
1471    
1472 mocchiut 1.44 void inclresize(vector<Double_t>& t,vector<Float_t>& q0,vector<Float_t>& q1,vector<Float_t>& q2,vector<Float_t>& q3,vector<Int_t>& mode,vector<Float_t>& Roll,vector<Float_t>& Pitch,vector<Float_t>& Yaw){
1473     Int_t sizee = t.size()+1;
1474     t.resize(sizee);
1475     q0.resize(sizee);
1476     q1.resize(sizee);
1477     q2.resize(sizee);
1478     q3.resize(sizee);
1479     mode.resize(sizee);
1480     Roll.resize(sizee);
1481     Pitch.resize(sizee);
1482     Yaw.resize(sizee);
1483     }
1484    
1485     //Find fitting sine functions for q0,q1,q2,q3 and Yaw-angle;
1486     void sineparam(vector<Sine>& qsine, vector<Double_t>& qtime, vector<Float_t>& q, vector<Float_t>& Roll, vector<Float_t>& Pitch, Float_t limsin){
1487     UInt_t mulast = 0;
1488     UInt_t munow = 0;
1489     UInt_t munext = 0;
1490     Bool_t increase = false;
1491     Bool_t decrease = false;
1492     Bool_t Max_is_defined = false;
1493     Bool_t Start_point_is_defined = false;
1494     Bool_t Period_is_defined = false;
1495     Bool_t Large_gap = false;
1496     Bool_t normal_way = true;
1497     Bool_t small_gap_on_ridge = false;
1498     Double_t t1 = 0;
1499     Double_t t1A = 0;
1500     Int_t sinesize = 0;
1501     Int_t nfi = 0;
1502     for(UInt_t mu = 0;mu<qtime.size();mu++){
1503 mocchiut 1.47 //cout<<"Roll["<<mu<<"] = "<<Roll[mu]<<endl;
1504     if(TMath::Abs(Roll[mu])<1. && TMath::Abs(Pitch[mu])<1. && TMath::Abs(q[mu])<limsin){
1505     //cout<<"q["<<mu<<endl<<"] = "<<q[mu]<<endl;
1506     if(mulast!=0 && munow!=0 && munext!=0){mulast=munow;munow=munext;munext=mu;}
1507 mocchiut 1.44 if(munext==0 && munow!=0)munext=mu;
1508     if(munow==0 && mulast!=0)munow=mu;
1509     if(mulast==0)mulast=mu;
1510 mocchiut 1.47
1511     //cout<<"mulast = "<<mulast<<"\tmunow = "<<munow<<"\tmunext = "<<munext<<endl;
1512     //Int_t ref;
1513     //cin>>ref;
1514     if(TMath::Abs(q[munow])>TMath::Abs(q[mulast]) && TMath::Abs(q[munow])>TMath::Abs(q[munext]) && q[mulast]*q[munext]>0 && qtime[munext]-qtime[mulast]>400)small_gap_on_ridge = true;
1515 mocchiut 1.44 if(munext>mulast && (qtime[munext]-qtime[mulast]>=2000 || qtime[munext]-qtime[mulast]<0)){if(Large_gap){normal_way = false;Large_gap = false;}else{Large_gap = true;normal_way = false;}}else normal_way = true;
1516 mocchiut 1.47 //if(normal_way)cout<<"Normal_Way"<<endl;
1517 mocchiut 1.44 if(Large_gap || small_gap_on_ridge){
1518     //cout<<"Large gap..."<<endl;
1519     //if(small_gap_on_ridge)cout<<"small gap..."<<endl;
1520 mocchiut 1.47 //cout<<"q["<<mulast<<"] = "<<q[mulast]<<"\tq["<<munow<<"] = "<<q[munow]<<"\tq["<<munext<<"] = "<<q[munext]<<endl;
1521     //cout<<"qtime["<<mulast<<"] = "<<qtime[mulast]<<"\tqtime["<<munow<<"] = "<<qtime[munow]<<"\tqtime["<<munext<<"] = "<<qtime[munext]<<endl;
1522 mocchiut 1.44 increase = false;
1523     decrease = false;
1524     if(nfi>0){
1525     qsine.resize(qsine.size()-1);
1526     sinesize = qsine.size();
1527 mocchiut 1.47 //cout<<"nfi was larger then zero"<<endl;
1528 mocchiut 1.44 }else{
1529 mocchiut 1.47 //cout<<"nfi was not larger then zero :( nfi = "<<nfi<<endl;
1530     //cout<<"qsine.size = "<<qsine.size()<<endl;
1531 mocchiut 1.44 if(!Period_is_defined){
1532 mocchiut 1.47 //cout<<"Period was defined"<<endl;
1533 mocchiut 1.44 if(qsine.size()>1){
1534     qsine[sinesize-1].b = qsine[sinesize-2].b;
1535     qsine[sinesize-1].c = qsine[sinesize-2].c;
1536     }else{
1537     qsine[sinesize-1].b = TMath::Pi()/1591.54;
1538     qsine[sinesize-1].c = qsine[sinesize-1].startPoint;
1539     }
1540     }
1541     if(!Max_is_defined){
1542 mocchiut 1.47 //cout<<"Max was already defined"<<endl;
1543 mocchiut 1.44 if(qsine.size()>1)qsine[sinesize-1].A = qsine[sinesize-2].A;else qsine[sinesize-1].A = limsin;
1544     }
1545     qsine[sinesize-1].NeedFit = true;
1546     }
1547     qsine[sinesize-1].finishPoint = qtime[munow];
1548 mocchiut 1.47 //cout<<"finish point before large gap = "<<qtime[munow]<<endl;
1549 mocchiut 1.44 nfi = 0;
1550     Max_is_defined = false;
1551     Start_point_is_defined = false;
1552     Period_is_defined = false;
1553     small_gap_on_ridge = false;
1554     }
1555 mocchiut 1.47 //cout<<"Slope "<<increase<<"\t"<<decrease<<endl;
1556     //cout<<"mulast = "<<mulast<<"\tmunow = "<<munow<<"\tmunext = "<<munext<<endl;
1557     if((munext>munow) && (munow>mulast) && normal_way){
1558 mocchiut 1.44 if(!increase && !decrease){
1559 mocchiut 1.47 //cout<<"Normal way have started"<<endl;
1560 mocchiut 1.44 qsine.resize(qsine.size()+1);
1561     sinesize = qsine.size();
1562     qsine[sinesize-1].startPoint=qtime[mulast];
1563     if(q[munext]>q[munow] && q[munow]>q[mulast]) increase = true;
1564     if(q[munext]<q[munow] && q[munow]<q[mulast]) decrease = true;
1565     }
1566     //if(TMath::Abs(q[munow])>TMath::Abs(q[mulast]) && TMath::Abs(q[munow])>TMath::Abs(q[munext]) && TMath::Abs(q[munow])>limsin && qtime[munow]-qtime[mulast]>=400 || qtime[munext]-qtime[munow]>=400){small_gap_on_ridge = true;mu--;continue;}
1567 mocchiut 1.47 if(TMath::Abs(q[munow])>TMath::Abs(q[mulast]) && TMath::Abs(q[munow])>TMath::Abs(q[munext]) && TMath::Abs(q[munow])>0.9*limsin && qtime[munow]-qtime[mulast]<400 && qtime[munext]-qtime[munow]<400){
1568 mocchiut 1.44 //cout<<"Max point is qtime = "<<qtime[munow]<<"\tq = "<<q[munow]<<endl;
1569     if(q[munow]>q[mulast]){
1570     increase = false;
1571     decrease = true;
1572     }
1573     if(q[munow]<q[mulast]){
1574     increase = true;
1575     decrease = false;
1576     }
1577     if(Max_is_defined && !Start_point_is_defined){
1578     Double_t qPer = qtime[munow]-t1A;
1579     if(qPer>1000){
1580     //cout<<"qsine["<<sinesize-1<<"] = "<<qPer<<" = "<<qtime[munow]<<" - "<<t1A<<"\tlim = "<<limsin<<endl;
1581     qsine[sinesize-1].b=TMath::Pi()/qPer;
1582     if(decrease)qsine[sinesize-1].c=-qsine[sinesize-1].b*t1A;
1583     if(increase)qsine[sinesize-1].c=-qsine[sinesize-1].b*(t1A-qPer);
1584     Period_is_defined = true;
1585     }
1586     }
1587     Max_is_defined = true;
1588     qsine[sinesize-1].A = TMath::Abs(q[munow]);
1589     if(Start_point_is_defined && Period_is_defined){
1590     qsine[sinesize-1].finishPoint = qtime[munow];
1591     nfi++;
1592     qsine[sinesize-1].NeedFit = false;
1593     Max_is_defined = false;
1594     Start_point_is_defined = false;
1595     Period_is_defined = false;
1596     qsine.resize(qsine.size()+1);
1597     sinesize = qsine.size();
1598     qsine[sinesize-1].startPoint = qtime[munow];
1599     }
1600     if(!Start_point_is_defined) t1A=qtime[munow];
1601     }
1602     //if((q[munow]>=0 && q[mulast]<=0) || (q[munow]<=0 && q[mulast]>=0))cout<<"cross zero point diference = "<<qtime[munext] - qtime[mulast]<<"\tqlast = "<<qtime[mulast]<<"\tqnow = "<<qtime[munow]<<"\tqnext = "<<qtime[munext]<<endl;
1603     if(((q[munow]>=0 && q[mulast]<=0) || (q[munow]<=0 && q[mulast]>=0)) && qtime[munow]-qtime[mulast]<2000 && qtime[munext]-qtime[munow]<2000){
1604     Double_t tcrosszero = 0;
1605     //cout<<"cross zero point...qtime = "<<qtime[munow]<<endl;
1606     if(q[munow]==0.) tcrosszero = qtime[munow];else
1607     if(q[mulast]==0.)tcrosszero = qtime[mulast];else{
1608     Double_t k_ = (q[munow]-q[mulast])/(qtime[munow]-qtime[mulast]);
1609     Double_t b_ = q[munow]-k_*qtime[munow];
1610     tcrosszero = -b_/k_;
1611     }
1612     if(Start_point_is_defined){
1613     //cout<<"Start Point allready defined"<<endl;
1614     Double_t qPer = tcrosszero - t1;
1615     qsine[sinesize-1].b = TMath::Pi()/qPer;
1616     //cout<<"qsine["<<sinesize-1<<"].b = "<<TMath::Pi()/qPer<<endl;
1617     Period_is_defined = true;
1618     Float_t x0 = 0;
1619     if(decrease)x0 = t1;
1620     if(increase)x0 = tcrosszero;
1621     qsine[sinesize-1].c = -qsine[sinesize-1].b*x0;
1622     if(Max_is_defined){
1623     //cout<<"Max was previous defined"<<endl;
1624     qsine[sinesize-1].finishPoint = qtime[munow];
1625     nfi++;
1626     qsine[sinesize-1].NeedFit = false;
1627     Max_is_defined = false;
1628     t1 = tcrosszero;
1629     Start_point_is_defined = true;
1630     Period_is_defined = false;
1631     qsine.resize(qsine.size()+1);
1632     sinesize = qsine.size();
1633     qsine[sinesize-1].startPoint = qtime[munow];
1634     }
1635     }else{
1636     t1 = tcrosszero;
1637     Start_point_is_defined = true;
1638     }
1639     }
1640     }
1641     }
1642     }
1643    
1644     //cout<<"FINISH SINE INTERPOLATION FUNCTION..."<<endl<<endl;
1645     }

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