/[PAMELA software]/YodaProfiler/src/PamelaDBOperations.cpp
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Contents of /YodaProfiler/src/PamelaDBOperations.cpp

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Revision 1.13 - (show annotations) (download)
Fri Oct 20 11:11:12 2006 UTC (18 years, 4 months ago) by mocchiut
Branch: MAIN
Changes since 1.12: +229 -119 lines
GL_RESURS_OFFSET changed, added _RUNID_GEN table, unique run ID number implemented

1 //
2 #include <iomanip>
3 #include <sstream>
4 //
5 #include <iostream>
6 #include <string>
7 #include <fstream>
8 #include <list>
9 #include <errno.h>
10 //
11 #include <TFile.h>
12 #include <TSystem.h>
13 #include <TSQLResult.h>
14 #include <TSQLRow.h>
15 #include <TTree.h>
16 #include <TGraph.h>
17 #include <TDatime.h>
18 #include <TF1.h>
19 //
20 #include <EventHeader.h>
21 #include <PscuHeader.h>
22 #include <mcmd/McmdEvent.h>
23 #include <mcmd/McmdRecord.h>
24 #include <RunHeaderEvent.h>
25 #include <RunTrailerEvent.h>
26 #include <CalibCalPedEvent.h>
27 #include <CalibS4Event.h>
28 #include <CalibTrk1Event.h>
29 #include <CalibTrk2Event.h>
30 #include <varDump/VarDumpEvent.h>
31 #include <varDump/VarDumpRecord.h>
32 #include <physics/S4/S4Event.h>
33 //
34 #include <cTle.h>
35 #include <cEci.h>
36 #include <cJulian.h>
37
38 #include <PamelaDBOperations.h>
39 //
40 using namespace std;
41 using namespace pamela;
42
43 // Some function to work with cTle stuff.
44 bool compTLE(cTle* tle1, cTle *tle2);
45 float getTleJulian(cTle *);
46 string getTleDatetime(cTle*);
47
48 /**
49 * Constructor.
50 * @param host hostname for the SQL connection.
51 * @param user username for the SQL connection.
52 * @param password password for the SQL connection.
53 * @param filerawname The path and name to the raw file.
54 * @param filerootname The path and name of the raw file.
55 * @param boot file BOOT number.
56 * @param obt0 file obt0.
57 * @param tsync file timesync.
58 * @param debug debug flag.
59 * @param tlefilename ascii file with TLE 3 line elements.
60 */
61 PamelaDBOperations::PamelaDBOperations(TString host, TString user, TString password, TString filerawname, TString filerootname, UInt_t boot, UInt_t tsync, UInt_t obt0, Bool_t debug, TString tlefilename){
62 //
63 //
64 SetConnection(host,user,password);
65 //
66 SetDebugFlag(debug);
67 //
68 glrun = new GL_RUN();
69 //
70 if ( !boot ) SetNOBOOT(false);
71 SetBOOTnumber(boot);
72 SetTsync(tsync);
73 SetObt0(obt0);
74 //
75 SetTLEPath(tlefilename);
76 //
77 //
78 INSERT_RAW =!filerawname.IsNull();
79 if(INSERT_RAW)SetRawName(filerawname);
80 //
81 INSERT_ROOT = !filerootname.IsNull();
82 if( INSERT_ROOT ){
83 this->SetRootName(filerootname);
84 this->SetOrbitNo();
85 file = TFile::Open(this->GetRootName().Data());
86 };
87 //
88 this->SetID_RAW(0);
89 this->SetID_ROOT(0);
90
91 VALIDATE = false;
92
93 //
94 };
95
96 /**
97 * Destructor
98 */
99 void PamelaDBOperations::Close(){
100 if( conn && conn->IsConnected() ) conn->Close();
101 delete clean_time;
102 delete glrun;
103 delete this;
104 };
105
106 //
107 // SETTERS
108 //
109
110 //
111 // must be out of the constructor in order to FORCE the validation of the latest runs in case you run the validation together with the latest file
112 //
113 void PamelaDBOperations::CheckValidate(Long64_t olderthan){
114 clean_time = new TDatime();
115 if(olderthan >= 0){
116 VALIDATE = true;
117 UInt_t timelim = 0;
118 timelim = (UInt_t)clean_time->Convert() - olderthan;
119 clean_time->Set(timelim,false);
120 };
121 };
122
123 /**
124 * Open the DB connection
125 * @param host hostname for the SQL connection.
126 * @param user username for the SQL connection.
127 * @param password password for the SQL connection.
128 */
129 void PamelaDBOperations::SetConnection(TString host, TString user, TString password){
130 if ( IsDebug() ) printf(" Connecting using host = %s user = %s password = %s \n",host.Data(),user.Data(),password.Data());
131 conn = TSQLServer::Connect(host.Data(),user.Data(),password.Data());
132 };
133
134 /**
135 * Store the ID of the ROOT file.
136 * @param idr ID of the ROOT file
137 */
138 void PamelaDBOperations::SetID_ROOT(UInt_t idr){
139 idroot=idr;
140 };
141
142 /**
143 * Store the ID of the RAW file.
144 * @param idr ID of the RAW file
145 */
146 void PamelaDBOperations::SetID_RAW(UInt_t idr){
147 id=idr;
148 };
149
150 /**
151 * Set the debug flag
152 *
153 */
154 void PamelaDBOperations::SetDebugFlag(Bool_t dbg){
155 debug = dbg;
156 };
157
158 /**
159 * Store the BOOT number of the RAW file.
160 * @param boot BOOT number of the RAW file
161 */
162 void PamelaDBOperations::SetBOOTnumber(UInt_t boot){
163 BOOTNO=boot;
164 };
165
166 /**
167 * Store the time sync of the RAW file.
168 * @param boot time sync
169 */
170 void PamelaDBOperations::SetTsync(UInt_t ts){
171 tsync=ts;
172 };
173
174 /**
175 * Store the time sync of the RAW file.
176 * @param boot time sync
177 */
178 void PamelaDBOperations::SetObt0(UInt_t ts){
179 obt0=ts;
180 };
181
182 /**
183 * Store the RAW filename.
184 * @param str the RAW filename.
185 */
186 void PamelaDBOperations::SetRawName(TString str){
187 filerawname=str;
188 };
189
190 /**
191 * Store the ROOT filename.
192 * @param str the ROOT filename.
193 */
194 void PamelaDBOperations::SetRootName(TString str){
195 filerootname=str;
196 };
197
198 /**
199 * Store the downlink orbit number from filename.
200 */
201 void PamelaDBOperations::SetOrbitNo(){
202 dworbit = 0;
203 TString name = this->GetRootFile();
204 Int_t nlength = name.Length();
205 if ( nlength < 5 ) return;
206 TString dwo = 0;
207 for (Int_t i = 0; i<5; i++){
208 dwo.Append(name[i],1);
209 };
210 if ( dwo.IsDigit() ){
211 dworbit = (UInt_t)dwo.Atoi();
212 } else {
213 dwo="";
214 for (Int_t i = 8; i<13; i++){
215 dwo.Append(name[i],1);
216 };
217 if ( dwo.IsDigit() ) dworbit = (UInt_t)dwo.Atoi();
218 };
219 if ( IsDebug() ) printf(" Downlink orbit is %i (dwo = %s) \n",dworbit,dwo.Data());
220 return;
221 };
222
223
224
225 /**
226 * Store the NOBOOT flag.
227 * @param noboot true/false.
228 */
229 void PamelaDBOperations::SetNOBOOT(Bool_t noboot){
230 NOBOOT = noboot;
231 };
232
233 /**
234 * Store path to the TLE file.
235 */
236 void PamelaDBOperations::SetTLEPath(TString str){
237 tlefilename = str;
238 };
239
240 /**
241 * Store the olderthan variable
242 * @param olderthan
243 */
244 // void PamelaDBOperations::SetOlderThan(Long64_t oldthan){
245 // olderthan = oldthan;
246 // };
247
248 /**
249 * Retrieve the ID_RAW, if exists, returns NULL if does not exist.
250 */
251 Bool_t PamelaDBOperations::SetID_RAW(){
252 stringstream oss;
253 TSQLResult *result = 0;
254 TSQLRow *row = 0;
255 oss.str("");
256 oss << "SELECT ID FROM GL_RAW WHERE "
257 << " PATH = '" << this->GetRawPath().Data() << "' AND "
258 << " NAME = '" << this->GetRawFile().Data() << "' ";
259 result = conn->Query(oss.str().c_str());
260 if ( result == NULL ) throw -4;
261 row = result->Next();
262 if ( !row ) return(false);
263 delete result;
264 id = (UInt_t)atoll(row->GetField(0));
265 return(true);
266 }
267
268 /**
269 *
270 * Set the variables which have to be stored in the GL_RUN table and that do not depend on the RUN
271 *
272 */
273 void PamelaDBOperations::SetCommonGLRUN(UInt_t absth, UInt_t abstt){
274 glrun->SetBOOTNUMBER(BOOTNO);
275 glrun->SetRUNHEADER_TIME(absth);
276 glrun->SetRUNTRAILER_TIME(abstt);
277 glrun->SetID_ROOT_L2(0);
278 glrun->SetID_ROOT_L0(idroot);
279 glrun->SetVALIDATION(0);
280 };
281
282 /**
283 * Patch, look for upper limits to avoid processing retransmitted data
284 */
285 Int_t PamelaDBOperations::SetUpperLimits(){
286 UInt_t nevent = 0;
287 UInt_t pktlast = 0;
288 UInt_t obtlast = 0;
289 UInt_t t_pktlast = 0;
290 UInt_t t_obtlast = 0;
291 UInt_t upperpkt2 = 0;
292 ULong64_t upperobt2 = 0;
293 UInt_t zomp = 0;
294 UInt_t jump = 50000; // was 5000
295 EventCounter *code=0;
296 //
297 UInt_t deltapkt = 5000;
298 ULong64_t deltaobt = 50000;
299 //
300 // pcksList packetsNames;
301 // pcksList::iterator Iter;
302 // getPacketsNames(packetsNames);
303 //
304 pktfirst = 0;
305 obtfirst = 0;
306 //
307 TTree *T = 0;
308 T = (TTree*)file->Get("Physics");
309 if ( !T || T->IsZombie() ) throw -16;
310 EventHeader *eh = 0;
311 PscuHeader *ph = 0;
312 T->SetBranchAddress("Header", &eh);
313 nevent = T->GetEntries();
314 //
315 T->GetEntry(0);
316 ph = eh->GetPscuHeader();
317 pktfirst = ph->GetCounter();
318 obtfirst = ph->GetOrbitalTime();
319 //
320 // code = eh->GetCounter();
321 // UInt_t en = 0;
322 // for(Iter = packetsNames.begin(); Iter != packetsNames.end(); Iter++){
323 // en = code->Get(GetPacketType(*Iter));
324 // if ( en ) printf(" Packet type is %s, entries: %i \n",*Iter,en);
325 //};
326 //
327 T->GetEntry(nevent-1);
328 ph = eh->GetPscuHeader();
329 pktlast = ph->GetCounter();
330 obtlast = ph->GetOrbitalTime();
331 //
332 upperpkt = PKT(pktlast);
333 upperobt = OBT(obtlast);
334 upperentry = nevent-1;
335 //
336 if ( IsDebug() ) printf(" First entries are: OBT %llu pkt_num %i \n",obtfirst,pktfirst);
337 //
338 if ( IsDebug() ) printf(" Last entries are: OBT %llu pkt_num %i entry %i\n",upperobt,upperpkt,upperentry);
339 //
340 if ( (PKT(pktlast) < PKT(pktfirst) && OBT(obtlast) > OBT(obtfirst)) || (PKT(pktlast) > PKT(pktfirst) && OBT(obtlast) < OBT(obtfirst)) ) return(1);
341 //
342 if ( !nevent ) return(2);
343 //
344 if ( nevent < 2 ) return(4);
345 //
346 if ( (PKT(pktlast) < PKT(pktfirst) && OBT(obtlast) < OBT(obtfirst)) || (labs(PKT(pktlast)-PKT(pktfirst))<deltapkt && labs(OBT(obtlast)-OBT(obtfirst))<deltaobt) ){
347 //
348 // go back
349 zomp = nevent - 2;
350 //
351 while ( jump > 0 ){
352 //
353 t_pktlast = PKT(pktlast);
354 t_obtlast = OBT(obtlast);
355 //
356 for (UInt_t i = zomp; i>1; i-=jump){
357 //
358 if ( i >= 0 ) T->GetEntry(i);
359 ph = eh->GetPscuHeader();
360 upperpkt = PKT(ph->GetCounter());
361 upperobt = OBT(ph->GetOrbitalTime());
362 upperentry = i;
363 //
364 if ( (i-1) >= 0 ) T->GetEntry(i-1);
365 ph = eh->GetPscuHeader();
366 upperpkt2 = PKT(ph->GetCounter());
367 upperobt2 = OBT(ph->GetOrbitalTime());
368 //
369 if ( (t_pktlast < upperpkt && t_obtlast > upperobt) || (t_pktlast < upperpkt2 && t_obtlast > upperobt2) ) throw -13;
370 //
371 if ( t_pktlast < upperpkt && t_obtlast < upperobt && t_pktlast < upperpkt2 && t_obtlast < upperobt2 ){
372 zomp = i + jump + 1;
373 if ( zomp > nevent-2 ) zomp = nevent - 2;
374 if ( IsDebug() ) printf(" .-. jump %i zomp %i upperpkt %i pktlast %i upperobt %llu obtlast %u last entry is %i \n",jump,zomp,upperpkt,pktlast,upperobt,obtlast,i);
375 break;
376 };
377 //
378 t_pktlast = upperpkt;
379 t_obtlast = upperobt;
380 };
381 //
382 if ( jump == 1 ) jump = 0;
383 if ( jump == 10 ) jump = 1;
384 if ( jump == 100 ) jump = 10;
385 if ( jump == 1000 ) jump = 100;
386 if ( jump == 5000 ) jump = 1000;
387 if ( jump == 50000 ) jump = 5000;
388 //
389 };
390 //
391 };
392 //
393 // check if last runtrailer is within limits, if not extend limits (one should check for all packets but we need only runtrailer)
394 //
395 PacketType *pctp=0;
396 TTree *rh=(TTree*)file->Get("RunHeader");
397 if ( !rh || rh->IsZombie() ) throw -17;
398 TTree *rt=(TTree*)file->Get("RunTrailer");
399 if ( !rt || rt->IsZombie() ) throw -18;
400 //
401 rh->SetBranchAddress("RunHeader", &runh);
402 rh->SetBranchAddress("Header", &ehh);
403 //
404 rt->SetBranchAddress("RunTrailer", &runt);
405 rt->SetBranchAddress("Header", &eht);
406 //
407 rhev = rh->GetEntries();
408 rtev = rt->GetEntries();
409 UInt_t sobtt = 0;
410 UInt_t sobth = 0;
411 UInt_t spktt = 0;
412 UInt_t spkth = 0;
413 UInt_t pktt = 0;
414 ULong64_t obtt = 0;
415 UInt_t pkth = 0;
416 ULong64_t obth = 0;
417 //
418 T->GetEntry(upperentry);
419 code = eh->GetCounter();
420 Int_t lasttrail = code->Get(pctp->RunTrailer);
421 Int_t lasthead = code->Get(pctp->RunHeader);
422 if ( lasttrail < rtev ){
423 rt->GetEntry(lasttrail);
424 pht = eht->GetPscuHeader();
425 pktt = PKT(pht->GetCounter());
426 obtt = OBT(pht->GetOrbitalTime());
427 };
428 //
429 if ( lasthead < rhev ){
430 rh->GetEntry(lasthead);
431 phh = ehh->GetPscuHeader();
432 pkth = PKT(phh->GetCounter());
433 obth = OBT(phh->GetOrbitalTime());
434 };
435 //
436 if ( IsDebug() ) printf(" rhev before %i ph %i upperp %i oh %llu uppero %llu \n",rhev,pkth,upperpkt,obth,upperobt);
437 if ( pkth > upperpkt && obth > upperobt ){
438 if ( IsDebug() ) printf(" Upper limits extended to include last header: ph %i upperp %i oh %llu uppero %llu \n",pkth,upperpkt,obth,upperobt);
439 upperpkt = pkth;
440 upperobt = obth;
441 rhev = lasthead+1;
442 } else {
443 rhev = lasthead;
444 };
445 if ( IsDebug() ) printf(" rhev after %i ph %i upperp %i oh %llu uppero %llu \n",rhev,pkth,upperpkt,obth,upperobt);
446 //
447 if ( IsDebug() ) printf(" rtev beforev %i pt %i upperp %i ot %llu uppero %llu \n",rtev,pktt,upperpkt,obtt,upperobt);
448 if ( pktt > upperpkt && obtt > upperobt ){
449 if ( IsDebug() ) printf(" Upper limits extended to include last trailer: pt %i upperp %i ot %llu uppero %llu \n",pktt,upperpkt,obtt,upperobt);
450 upperpkt = pktt;
451 upperobt = obtt;
452 rtev = lasttrail+1;
453 } else {
454 rtev = lasttrail;
455 };
456 if ( IsDebug() ) printf(" rtev after %i pt %i upperp %i ot %llu uppero %llu \n",rtev,pktt,upperpkt,obtt,upperobt);
457 // goto kikko;
458 //
459 //
460 // Check if runtrailer/runheader are within lower limits
461 //
462 //
463 pkth = 0;
464 obth = 0;
465 spkth = 0;
466 sobth = 0;
467 for (Int_t k=0; k<rhev; k++){
468 if ( k > 0 ){
469 spkth = pkth;
470 sobth = obth;
471 };
472 rh->GetEntry(k);
473 phh = ehh->GetPscuHeader();
474 pkth = PKT(phh->GetCounter());
475 obth = OBT(phh->GetOrbitalTime());
476 //
477 // if ( IsDebug() ) printf(" k %i rhev before %i ph %u upperp %u oh %u uppero %u \n",k,rhev,pkth,spkth,obth,sobth);
478 //
479 if ( pkth < spkth && obth < sobth ){
480 if ( IsDebug() ) printf(" RH PROBLEMS determining the event repetition at the end of the file lasthead %i \n",rhev);
481 //
482 rhev = k-1;
483 rh->GetEntry(rhev);
484 pkth = spkth;
485 obth = sobth;
486 //
487 UInt_t evbefh = 0;
488 code = ehh->GetCounter();
489 evbefh = code->Get(pctp->Physics);
490 if ( evbefh >= 0 ){
491 T->GetEntry(evbefh);
492 ph = eh->GetPscuHeader();
493 t_pktlast = PKT(ph->GetCounter());
494 t_obtlast = OBT(ph->GetOrbitalTime());
495 if ( t_pktlast <= spkth && t_obtlast <= sobth ){ // jump
496 upperpkt = pkth;
497 upperobt = obth;
498 upperentry = evbefh-1;
499 } else {
500 while ( t_pktlast > spkth && t_obtlast > sobth && evbefh < nevent ){
501 evbefh++;
502 T->GetEntry(evbefh);
503 ph = eh->GetPscuHeader();
504 t_pktlast = PKT(ph->GetCounter());
505 t_obtlast = OBT(ph->GetOrbitalTime());
506 };
507 T->GetEntry(evbefh-1);
508 ph = eh->GetPscuHeader();
509 upperpkt = PKT(ph->GetCounter());
510 upperobt = OBT(ph->GetOrbitalTime());
511 upperentry = evbefh-1;
512 };
513 };
514 if ( IsDebug() ) printf(" rhev after %i ph %i upperp %i oh %llu uppero %llu \n",rhev,pkth,upperpkt,obth,upperobt);
515 goto kikko0;
516 };
517 };
518 kikko0:
519 //
520 //
521 //
522 pktt = 0;
523 obtt = 0;
524 spktt = 0;
525 sobtt = 0;
526 for (Int_t k=0; k<rtev; k++){
527 if ( k > 0 ){
528 spktt = pktt;
529 sobtt = obtt;
530 };
531 rt->GetEntry(k);
532 pht = eht->GetPscuHeader();
533 pktt = PKT(pht->GetCounter());
534 obtt = OBT(pht->GetOrbitalTime());
535 //
536 // if ( IsDebug() ) printf(" k %i rtev beforev %i pt %i upperp %i ot %llu uppero %llu \n",k,rtev,pktt,spktt,obtt,sobtt);
537 //
538 if ( pktt < spktt && obtt < sobtt ){
539 if ( IsDebug() ) printf(" RT PROBLEMS determining the event repetition at the end of the file lasttrail %i \n",rtev);
540 //
541 rtev = k-1;
542 rt->GetEntry(rtev);
543 pktt = spktt;
544 obtt = sobtt;
545 if ( IsDebug() ) printf(" lasttrail %i pt %i upperp %i ot %llu uppero %llu \n",rtev,pktt,upperpkt,obtt,upperobt);
546 //
547 UInt_t evbeft = 0;
548 code = eht->GetCounter();
549 evbeft = code->Get(pctp->Physics);
550 if ( evbeft >= 0 ){
551 T->GetEntry(evbeft);
552 ph = eh->GetPscuHeader();
553 t_pktlast = PKT(ph->GetCounter());
554 t_obtlast = OBT(ph->GetOrbitalTime());
555 if ( t_pktlast <= spktt && t_obtlast <= sobtt ){ // jump
556 upperpkt = pktt;
557 upperobt = obtt;
558 upperentry = evbeft-1;
559 } else {
560 while ( t_pktlast > spktt && t_obtlast > sobtt && evbeft < nevent ){
561 evbeft++;
562 T->GetEntry(evbeft);
563 ph = eh->GetPscuHeader();
564 t_pktlast = PKT(ph->GetCounter());
565 t_obtlast = OBT(ph->GetOrbitalTime());
566 };
567 T->GetEntry(evbeft-1);
568 ph = eh->GetPscuHeader();
569 upperpkt = PKT(ph->GetCounter());
570 upperobt = OBT(ph->GetOrbitalTime());
571 upperentry = evbeft-1;
572 };
573 };
574 if ( IsDebug() ) printf(" rtev after %i pt %i upperp %i ot %llu uppero %llu \n",rtev,pktt,upperpkt,obtt,upperobt);
575 goto kikko;
576 // break;
577 //
578 };
579 //
580 };
581 //
582 kikko:
583 //
584 T->GetEntry(upperentry);
585 code = eh->GetCounter();
586 lasttrail = code->Get(pctp->RunTrailer);
587 lasthead = code->Get(pctp->RunHeader);
588 if ( lasttrail < rtev ){
589 rt->GetEntry(lasttrail);
590 pht = eht->GetPscuHeader();
591 pktt = PKT(pht->GetCounter());
592 obtt = OBT(pht->GetOrbitalTime());
593 };
594 //
595 if ( lasthead < rhev ){
596 rh->GetEntry(lasthead);
597 phh = ehh->GetPscuHeader();
598 pkth = PKT(phh->GetCounter());
599 obth = OBT(phh->GetOrbitalTime());
600 };
601 //
602 if ( IsDebug() ) printf(" rhev before %i ph %i upperp %i oh %llu uppero %llu \n",rhev,pkth,upperpkt,obth,upperobt);
603 if ( pkth > upperpkt && obth > upperobt ){
604 if ( IsDebug() ) printf(" Upper limits extended to include last header: ph %i upperp %i oh %llu uppero %llu \n",pkth,upperpkt,obth,upperobt);
605 upperpkt = pkth;
606 upperobt = obth;
607 rhev = lasthead+1;
608 } else {
609 rhev = lasthead;
610 };
611 if ( IsDebug() ) printf(" rhev after %i ph %i upperp %i oh %llu uppero %llu \n",rhev,pkth,upperpkt,obth,upperobt);
612 //
613 if ( IsDebug() ) printf(" rtev beforev %i pt %i upperp %i ot %llu uppero %llu \n",rtev,pktt,upperpkt,obtt,upperobt);
614 if ( pktt > upperpkt && obtt > upperobt ){
615 if ( IsDebug() ) printf(" Upper limits extended to include last trailer: pt %i upperp %i ot %llu uppero %llu \n",pktt,upperpkt,obtt,upperobt);
616 upperpkt = pktt;
617 upperobt = obtt;
618 rtev = lasttrail+1;
619 } else {
620 rtev = lasttrail;
621 };
622 if ( IsDebug() ) printf(" rtev after %i pt %i upperp %i ot %llu uppero %llu \n",rtev,pktt,upperpkt,obtt,upperobt);
623 //
624 if ( IsDebug() ) printf(" Upper limits are: OBT %llu pkt_num %i upper entry %i \n",upperobt,upperpkt,upperentry);
625 //
626 return(0);
627 }
628
629 /**
630 *
631 * Trick to have unique RUN ID numbers even when runs are deleted and mysql deamon restarted.
632 * Entries in the _RUNID_GEN table are never deleted.
633 *
634 **/
635 UInt_t PamelaDBOperations::AssignRunID(){
636 //
637 TSQLResult *result = 0;
638 TSQLRow *row = 0;
639 UInt_t runid = 0;
640 //
641 stringstream oss;
642 //
643 oss.str("");
644 oss << "INSERT INTO _RUNID_GEN VALUES (NULL);";
645 result = conn->Query(oss.str().c_str());
646 if ( !result ) throw -10;
647 oss.str("");
648 oss << "SELECT ID FROM _RUNID_GEN ORDER BY ID DESC LIMIT 1;";
649 result = conn->Query(oss.str().c_str());
650 if ( !result ) throw -10;
651 //
652 row = result->Next();
653 //
654 if ( !row ) throw -28;
655 //
656 runid = (UInt_t)atoll(row->GetField(0));
657 //
658 return(runid);
659 };
660
661 //
662 // GETTERS
663 //
664
665 /**
666 *
667 * Returns the DB absolute time needed to associate calibrations to data
668 *
669 */
670 UInt_t PamelaDBOperations::GetAbsTime(UInt_t obt){
671 //
672 return(((UInt_t)(OBT(obt)/1000)+toffset));
673 //
674 };
675
676 /**
677 *
678 * List of packet types (just to make easily the loops)
679 *
680 */
681 const PacketType* PamelaDBOperations::GetPacketType(const char* type){
682 if ( !strcmp(type,"Pscu") ) return(PacketType::Pscu);
683 if ( !strcmp(type,"PhysEndRun") ) return(PacketType::PhysEndRun);
684 if ( !strcmp(type,"CalibCalPulse1") ) return(PacketType::CalibCalPulse1);
685 if ( !strcmp(type,"CalibCalPulse2") ) return(PacketType::CalibCalPulse2);
686 if ( !strcmp(type,"Physics") ) return(PacketType::Physics);
687 if ( !strcmp(type,"CalibTrkBoth") ) return(PacketType::CalibTrkBoth);
688 if ( !strcmp(type,"CalibTrk1") ) return(PacketType::CalibTrk1);
689 if ( !strcmp(type,"CalibTrk2") ) return(PacketType::CalibTrk2);
690 if ( !strcmp(type,"CalibTof") ) return(PacketType::CalibTof);
691 if ( !strcmp(type,"CalibS4") ) return(PacketType::CalibS4);
692 if ( !strcmp(type,"CalibCalPed") ) return(PacketType::CalibCalPed);
693 if ( !strcmp(type,"Calib1_Ac1") ) return(PacketType::Calib1_Ac1);
694 if ( !strcmp(type,"Calib2_Ac1") ) return(PacketType::Calib2_Ac1);
695 if ( !strcmp(type,"Calib1_Ac2") ) return(PacketType::Calib1_Ac2);
696 if ( !strcmp(type,"Calib2_Ac2") ) return(PacketType::Calib2_Ac2);
697 if ( !strcmp(type,"CalibCal") ) return(PacketType::CalibCal);
698 if ( !strcmp(type,"RunHeader") ) return(PacketType::RunHeader);
699 if ( !strcmp(type,"RunTrailer") ) return(PacketType::RunTrailer);
700 if ( !strcmp(type,"CalibHeader") ) return(PacketType::CalibHeader);
701 if ( !strcmp(type,"CalibTrailer") ) return(PacketType::CalibTrailer);
702 if ( !strcmp(type,"InitHeader") ) return(PacketType::InitHeader);
703 if ( !strcmp(type,"InitTrailer") ) return(PacketType::InitTrailer);
704 if ( !strcmp(type,"EventTrk") ) return(PacketType::EventTrk);
705 if ( !strcmp(type,"Log") ) return(PacketType::Log);
706 if ( !strcmp(type,"VarDump") ) return(PacketType::VarDump);
707 if ( !strcmp(type,"ArrDump") ) return(PacketType::ArrDump);
708 if ( !strcmp(type,"TabDump") ) return(PacketType::TabDump);
709 if ( !strcmp(type,"Tmtc") ) return(PacketType::Tmtc);
710 if ( !strcmp(type,"Mcmd") ) return(PacketType::Mcmd);
711 if ( !strcmp(type,"ForcedFECmd") ) return(PacketType::ForcedFECmd);
712 if ( !strcmp(type,"Ac1Init") ) return(PacketType::Ac1Init);
713 if ( !strcmp(type,"CalInit") ) return(PacketType::CalInit);
714 if ( !strcmp(type,"TrkInit") ) return(PacketType::TrkInit);
715 if ( !strcmp(type,"TofInit") ) return(PacketType::TofInit);
716 if ( !strcmp(type,"TrgInit") ) return(PacketType::TrgInit);
717 if ( !strcmp(type,"NdInit") ) return(PacketType::NdInit);
718 if ( !strcmp(type,"S4Init") ) return(PacketType::S4Init);
719 if ( !strcmp(type,"Ac2Init") ) return(PacketType::Ac2Init);
720 if ( !strcmp(type,"CalAlarm") ) return(PacketType::CalAlarm);
721 if ( !strcmp(type,"Ac1Alarm") ) return(PacketType::Ac1Alarm);
722 if ( !strcmp(type,"TrkAlarm") ) return(PacketType::TrkAlarm);
723 if ( !strcmp(type,"TrgAlarm") ) return(PacketType::TrgAlarm);
724 if ( !strcmp(type,"TofAlarm") ) return(PacketType::TofAlarm);
725 if ( !strcmp(type,"S4Alarm") ) return(PacketType::S4Alarm);
726 if ( !strcmp(type,"Ac2Alarm") ) return(PacketType::Ac2Alarm);
727 if ( !strcmp(type,"TsbT") ) return(PacketType::TsbT);
728 if ( !strcmp(type,"TsbB") ) return(PacketType::TsbB);
729 return(PacketType::Invalid);
730 };
731
732 //
733 // PRIVATE FUNCTIONS
734 //
735
736 // /**
737 // * Open the ROOT filename for reading
738 // */
739 // void PamelaDBOperations::OpenFile(){
740 // file = TFile::Open(this->GetRootName().Data());
741 // //
742
743 void PamelaDBOperations::CheckFile(){
744 if ( !file ) throw -12;
745 };
746
747
748 /**
749 * Check if LEVEL0 file and DB connection have really be opened
750 */
751 void PamelaDBOperations::CheckConnection(){
752 //
753 // check connection
754 //
755 if( !conn ) throw -1;
756 bool connect = conn->IsConnected();
757 if( !connect ) throw -1;
758 if ( !dworbit ) throw -27;
759 };
760
761 /**
762 * Return the correct packet number if we went back to zero
763 */
764 UInt_t PamelaDBOperations::PKT(UInt_t pkt_num){
765 //
766 // if ( IsDebug() ) printf(" pkt conversion: pkt_num is %u pktfirst is %u (pktfirst - (UInt_t)(16777212/2)) is %u \n",pkt_num,pktfirst,(pktfirst - (UInt_t)(16777212/2)));
767 //
768 if ( pkt_num < (pktfirst/2) && pktfirst > (16777214/2) ) return((pkt_num+16777215));
769 //
770 if ( pkt_num > pktfirst*2 && pkt_num > (16777214/2) ){
771 if ( (pkt_num-16777215) < 0 ){
772 return((16777215-pkt_num));
773 } else {
774 return((pkt_num-16777215));
775 };
776 };
777 //
778 return(pkt_num);
779 //
780 };
781
782 /**
783 * Return the correct On Board Time if we went back to zero
784 */
785 ULong64_t PamelaDBOperations::OBT(UInt_t obt){
786 //
787 if ( obt < (obtfirst/2) && obtfirst > (numeric_limits<UInt_t>::max()/2) ) return((ULong64_t)(obt+numeric_limits<UInt_t>::max()));
788 //
789 if ( obt > (obtfirst*2) && obt > (numeric_limits<UInt_t>::max()/2) ){
790 if ( (obt-numeric_limits<UInt_t>::max()) < 0 ){
791 return((ULong64_t)(numeric_limits<UInt_t>::max()-obt));
792 } else {
793 return((ULong64_t)(obt-numeric_limits<UInt_t>::max()));
794 };
795 };
796 //
797 return((ULong64_t)obt);
798 };
799
800 /**
801 *
802 * Fill the glrun class with infos about the run when we have both runtrailer and runheader
803 *
804 */
805 void PamelaDBOperations::FillClass(){
806 this->FillClass(false,false,0,0);
807 };
808
809 /**
810 *
811 * Fill the glrun class with infos about the run when we have both runtrailer and runheader
812 *
813 */
814 void PamelaDBOperations::FillClass(Bool_t mishead, Bool_t mistrail, UInt_t firstev, UInt_t lastev){
815 //
816 TTree *T = 0;
817 T = (TTree*)file->Get("Physics");
818 if ( !T || T->IsZombie() ) throw -16;
819 //
820 EventHeader *eh = 0;
821 PscuHeader *ph = 0;
822 T->SetBranchAddress("Header", &eh);
823 PacketType *pctp=0;
824 EventCounter *codt=0;
825 EventCounter *codh=0;
826 UInt_t firstObt = 0;
827 UInt_t lastObt = 0;
828 UInt_t firstPkt = 0;
829 UInt_t lastPkt = 0;
830 UInt_t rhtime = 0;
831 UInt_t rttime = 0;
832 if ( !mishead ){
833 codh = ehh->GetCounter();
834 firstev = codh->Get(pctp->Physics);
835 rhtime = this->GetAbsTime(phh->GetOrbitalTime());
836 glrun->Set_GL_RUNH(runh,phh);
837 firstObt = glrun->GetRUNHEADER_OBT();
838 firstPkt = glrun->GetRUNHEADER_PKT();
839 };
840 if ( !mistrail ){
841 codt = eht->GetCounter();
842 lastev = codt->Get(pctp->Physics)-1;
843 rttime = this->GetAbsTime(pht->GetOrbitalTime());
844 glrun->Set_GL_RUNT(runt,pht);
845 lastObt = glrun->GetRUNTRAILER_OBT();
846 lastPkt = glrun->GetRUNTRAILER_PKT();
847 };
848 //
849 if ( mishead && mistrail && lastev+1 == firstev ) throw -14; // run with no events, no runtrailer, no runheader... unsupported should never arrive here
850 //
851 if ( mishead ) {
852 glrun->Set_GL_RUNH0();
853 //
854 if ( lastev+1 == firstev ){
855 firstObt = lastObt;
856 firstPkt = lastPkt;
857 rhtime = rttime;
858 } else {
859 T->GetEntry(firstev);
860 ph = eh->GetPscuHeader();
861 firstObt = ph->GetOrbitalTime();
862 rhtime = this->GetAbsTime(firstObt);
863 firstPkt = ph->GetCounter();
864 };
865 //
866 glrun->SetRUNHEADER_PKT(firstPkt);
867 glrun->SetRUNHEADER_OBT(firstObt);
868 //
869 };
870 if ( mistrail ){
871 glrun->Set_GL_RUNT0();
872 //
873 if ( lastev+1 == firstev ){
874 lastObt = firstObt;
875 lastPkt = firstPkt;
876 rttime = rhtime;
877 } else {
878 T->GetEntry(lastev);
879 ph = eh->GetPscuHeader();
880 lastObt = ph->GetOrbitalTime();
881 rttime = this->GetAbsTime(lastObt);
882 lastPkt = ph->GetCounter();
883 };
884 //
885 glrun->SetRUNTRAILER_OBT(lastObt);
886 glrun->SetRUNTRAILER_PKT(lastPkt);
887 //
888 };
889 glrun->SetEV_FROM(firstev);
890 glrun->SetEV_TO(lastev);
891 glrun->SetNEVENTS(lastev-firstev+1);
892 //
893 this->SetCommonGLRUN(rhtime,rttime);
894 //
895 };
896
897 //
898 // PUBLIC FUNCTIONS
899 //
900
901 /**
902 * Insert a new row into GL_RAW table.
903 */
904 Int_t PamelaDBOperations::insertPamelaRawFile(){
905 //
906 stringstream oss;
907 //
908 Bool_t idr = this->SetID_RAW();
909 if ( idr ) return(1);
910 //
911 oss.str("");
912 oss << "INSERT INTO GL_RAW (PATH, NAME) VALUES ('"
913 << this->GetRawPath().Data() << "', '" << this->GetRawFile().Data() << "')";
914 if ( conn->Query(oss.str().c_str()) == 0 ) throw -4;
915 //
916 idr = this->SetID_RAW();
917 if ( !idr ) throw -11;
918 //
919 return(0);
920 }
921
922
923 /**
924 * Look for one timesync information in the file and
925 * fill the GL_TIMESYNC table. It will look for: 1) TS-MCMD 2) TS info in the RunHeader 3) TS info in the runtrailer, if none exists exit with error
926 */
927 Int_t PamelaDBOperations::insertPamelaGL_TIMESYNC(){
928 //
929 TSQLResult *result = 0;
930 TSQLRow *row = 0;
931 UInt_t t0 = 0;
932 //
933 stringstream oss;
934 //
935 if ( this->GetID_RAW() == 0 ) throw -11;
936 //
937 oss.str("");
938 oss << "SELECT OFFSET_DATE FROM GL_RESURS_OFFSET WHERE SPECIAL_FILE='"
939 << this->GetRawFile().Data() << "';";
940 if ( IsDebug() ) printf(" %s \n",oss.str().c_str());
941 result = conn->Query(oss.str().c_str());
942 if ( !result ) throw -10;
943 row = result->Next();
944 //
945 if ( !row ){
946 oss.str("");
947 oss << "SELECT OFFSET_DATE FROM GL_RESURS_OFFSET WHERE FROM_ORBIT< "
948 << dworbit << " order by FROM_ORBIT desc limit 1;";
949 if ( IsDebug() ) printf(" %s \n",oss.str().c_str());
950 result = conn->Query(oss.str().c_str());
951 if ( !result ) throw -10;
952 row = result->Next();
953 if ( !row ) throw -10;
954 };
955 //
956 t0 = (UInt_t)TDatime(row->GetField(0)).Convert();
957 /*
958 * Verify that the TIMESYNC have been not already processed
959 */
960 oss.str("");
961 oss << " SELECT COUNT(GL_TIMESYNC.ID),GL_TIMESYNC.OBT0,GL_TIMESYNC.TIMESYNC FROM GL_TIMESYNC "
962 << " LEFT JOIN GL_RAW "
963 << " ON GL_RAW.ID = GL_TIMESYNC.ID_RAW "
964 << " WHERE GL_TIMESYNC.ID_RAW = " << this->GetID_RAW()
965 << " GROUP BY GL_TIMESYNC.OBT0;";
966 if ( IsDebug() ) printf(" check for old timesync: query is \n %s \n",oss.str().c_str());
967 result = conn->Query(oss.str().c_str());
968 if (result == NULL) throw -10;
969 row = result->Next();
970 if ((row != NULL) && ((UInt_t)atoll(row->GetField(0)) > 0)){
971 toffset = (UInt_t)atoll(row->GetField(2)) - (UInt_t)(this->OBT((UInt_t)atoll(row->GetField(1)))/1000) + t0;
972 return(1);
973 };
974 //
975 TTree *T = 0;
976 Int_t signal = 0;
977 //
978 UInt_t nevent = 0;
979 UInt_t recEntries = 0;
980 //
981 UInt_t OBT = 0;
982 UInt_t TYPE = 0;
983 //
984 Double_t minimum = 0.;
985 Double_t maximum = 0.;
986 Double_t minimum2 = 0.;
987 Double_t maximum2 = 0.;
988 //
989 UInt_t TSYNC = 0;
990 //
991 pamela::McmdEvent *mc = 0;
992 pamela::McmdRecord *mcrc = 0;
993 TArrayC *mcmddata = 0;
994 //
995 minimum = numeric_limits<Double_t>::max();
996 maximum = numeric_limits<Double_t>::min();
997 minimum2 = numeric_limits<Double_t>::max();
998 maximum2 = numeric_limits<Double_t>::min();
999 //
1000 T = (TTree*)file->Get("Mcmd");
1001 if ( !T || T->IsZombie() ) throw -19;
1002 T->SetBranchAddress("Mcmd",&mc);
1003 //
1004 nevent = T->GetEntries();
1005 //
1006 // loop over events
1007 //
1008 Bool_t existsts = false;
1009 //
1010 for (UInt_t i=0; i<nevent;i++){
1011 //
1012 T->GetEntry(i);
1013 //
1014 recEntries = mc->Records->GetEntries();
1015 //
1016 for (UInt_t j = 0; j < recEntries; j++){
1017 mcrc = (pamela::McmdRecord*)mc->Records->At(j);
1018 mcmddata = mcrc->McmdData;
1019 //
1020 if (mcrc->ID1 == 0xE0){ // mcmd timesync
1021 //
1022 OBT = (Int_t)(mcrc->MCMD_RECORD_OBT);
1023 //
1024 TSYNC = (((UInt_t)mcmddata->At(0)<<24)&0xFF000000) + (((UInt_t)mcmddata->At(1)<<16)&0x00FF0000) + (((UInt_t)mcmddata->At(2)<<8)&0x0000FF00) + (((UInt_t)mcmddata->At(3))&0x000000FF);
1025 //
1026 TYPE = 55;//224;
1027 //
1028 if ( IsDebug() ) printf("mcmd tsync %i tsync %u obt %u \n",i,TSYNC,OBT);
1029 //
1030 if ( TSYNC && OBT ){
1031 existsts = true;
1032 goto eout;
1033 };
1034 //
1035 };
1036 };
1037 };
1038 if ( !existsts ) { // try with runheader and runtrailer
1039 //
1040 if ( IsDebug() ) printf(" No ts mcmd \n");
1041 signal = 2;
1042 //
1043 TTree *rh=(TTree*)file->Get("RunHeader");
1044 if ( !rh || rh->IsZombie() ) throw -17;
1045 TTree *rt=(TTree*)file->Get("RunTrailer");
1046 if ( !rt || rt->IsZombie() ) throw -18;
1047 //
1048 rh->SetBranchAddress("RunHeader", &runh);
1049 //
1050 rt->SetBranchAddress("RunTrailer", &runt);
1051 //
1052 Int_t nrhev = rh->GetEntries();
1053 Int_t nrtev = rt->GetEntries();
1054 if ( IsDebug() ) printf(" ou nevent %i rhev %i rtev %i \n",nevent,nrhev,nrtev);
1055 //
1056 if ( nrhev > 0 ){
1057 for (Int_t i=0; i<nrhev; i++){
1058 //
1059 rh->GetEntry(i);
1060 //
1061 TSYNC = runh->LAST_TIME_SYNC_INFO;
1062 OBT = runh->OBT_TIME_SYNC * 1000;
1063 //
1064 TYPE = 20;
1065 //
1066 if ( IsDebug() ) printf("runheader %i tsync %u obt %u \n",i,TSYNC,OBT);
1067 //
1068 if ( TSYNC && OBT ){
1069 existsts = true;
1070 goto eout;
1071 };
1072 };
1073 //
1074 };
1075 if ( nrtev > 0 ){
1076 //
1077 if ( IsDebug() ) printf(" No runheader \n");
1078 signal = 6;
1079 //
1080 for (Int_t i=0; i<nrtev; i++){
1081 //
1082 rt->GetEntry(i);
1083 //
1084 TSYNC = runt->LAST_TYME_SYNC_INFO;
1085 OBT = runt->OBT_TYME_SYNC * 1000;
1086 //
1087 TYPE = 21;
1088 //
1089 if ( IsDebug() ) printf("runtrailer %i tsync %u obt %u \n",i,TSYNC,OBT);
1090 //
1091 if ( TSYNC && OBT ){
1092 existsts = true;
1093 goto eout;
1094 };
1095 };
1096 //
1097 } else {
1098 if ( IsDebug() ) printf(" No runheader \n");
1099 };
1100 };
1101 //
1102 if ( !existsts ){ // try with inclination mcmd
1103 //
1104 if ( IsDebug() ) printf(" No runtrailer \n");
1105 signal = 14;
1106 //
1107 Double_t timesync = 0.;
1108 for (UInt_t i=0; i<nevent;i++){
1109 //
1110 T->GetEntry(i);
1111 //
1112 recEntries = mc->Records->GetEntries();
1113 // //
1114 for (UInt_t j = 0; j < recEntries; j++){
1115 mcrc = (pamela::McmdRecord*)mc->Records->At(j);
1116 mcmddata = mcrc->McmdData;
1117 //
1118 if (mcrc->ID1 == 0xE2){ // mcmd inclination
1119 timesync = 0.;
1120 timesync = (Double_t)(((((UInt_t)mcmddata->At(0) << 24) & 0xFF000000) + (((UInt_t)mcmddata->At(1) << 16) & 0x00FF0000) + (((UInt_t)mcmddata->At(2) << 8) & 0x0000FF00) + ((UInt_t)mcmddata->At(3) & 0x000000FF))/128.0);
1121 //
1122 if ( timesync > maximum2){
1123 maximum2 = timesync;
1124 OBT = (Int_t)(mcrc->MCMD_RECORD_OBT);
1125 };
1126 };
1127 //
1128 };
1129 };
1130 if ( maximum2 > numeric_limits<Double_t>::min() ){
1131 TSYNC = (UInt_t)(maximum2 + 0.5);
1132 TYPE = 666;
1133 if ( TSYNC && OBT ){
1134 existsts = true;
1135 goto eout;
1136 };
1137 };
1138 };
1139 //
1140 if ( !existsts && obt0 ){ // insert timesync by hand
1141 //
1142 if ( IsDebug() ) printf(" No incl mcmd \n");
1143 signal = 30;
1144 //
1145 OBT = obt0;
1146 TSYNC = tsync;
1147 TYPE = 999;
1148 existsts = true;
1149 goto eout;
1150 };
1151 //
1152 eout:
1153 //
1154 if ( !existsts ) throw -3;
1155 //
1156 oss.str("");
1157 oss << "INSERT INTO GL_TIMESYNC (ID_RAW,TYPE,OBT0,TIMESYNC) VALUES ('"
1158 << this->GetID_RAW() << "','"//224'"
1159 << dec << (UInt_t)TYPE << "','"
1160 << dec << (UInt_t)OBT << "','"
1161 << dec << (UInt_t)TSYNC << "');";
1162 conn->Query(oss.str().c_str());
1163 if ( IsDebug() ) printf(" Query the GL_TIMESYNC table to fill it:\n %s \n",oss.str().c_str());
1164 //
1165 toffset = (UInt_t)TSYNC - (UInt_t)(this->OBT(OBT)/1000) + t0;
1166 //
1167 delete result;
1168 return(signal);
1169 }
1170
1171 /**
1172 * Insert all the new rows into GL_ROOT.
1173 * The raw file indicates in the parameters should be already been stored in the database.
1174 */
1175 Int_t PamelaDBOperations::insertPamelaRootFile(){
1176 stringstream oss;
1177 TSQLResult *result = 0;
1178 TSQLRow *row = 0;
1179 UInt_t idtimesync = 0;
1180 //
1181 oss.str("");
1182 oss << " SELECT COUNT(GL_ROOT.ID_RAW),GL_RAW.ID,GL_ROOT.ID FROM GL_RAW "
1183 << " LEFT JOIN GL_ROOT "
1184 << " ON GL_RAW.ID = GL_ROOT.ID_RAW "
1185 << " WHERE GL_RAW.PATH = '" << this->GetRawPath().Data() << "' AND "
1186 << " GL_RAW.NAME = '" << this->GetRawFile().Data() << "' GROUP BY GL_RAW.ID ";
1187 result = conn->Query(oss.str().c_str());
1188 //
1189 if ( !result ) throw -12;
1190 //
1191 row = result->Next();
1192 //
1193 if ( !row ) throw -10;
1194 if ( row != NULL && (UInt_t)atoll(row->GetField(0))>0 ){
1195 idroot = (UInt_t)atoll(row->GetField(2));
1196 return(1);
1197 };
1198 //
1199 // determine which timesync has to be used
1200 //
1201 oss.str("");
1202 oss << "SELECT GL_TIMESYNC.ID FROM GL_TIMESYNC LEFT JOIN GL_RAW ON GL_RAW.ID = GL_TIMESYNC.ID_RAW ORDER BY GL_TIMESYNC.ID DESC LIMIT 1;";
1203 result = conn->Query(oss.str().c_str());
1204 //
1205 if ( !result ) throw -3;
1206 //
1207 row = result->Next();
1208 //
1209 if ( !row ) throw -3;
1210 idtimesync = (UInt_t)atoll(row->GetField(0));
1211 //
1212 oss.str("");
1213 oss << "INSERT INTO GL_ROOT (ID_RAW, ID_TIMESYNC,PATH, NAME) VALUES ('"
1214 << this->GetID_RAW() << "', '" << idtimesync << "', '" << this->GetRootPath().Data() << "', '" << this->GetRootFile().Data() << "')";
1215 //
1216 if (conn->Query(oss.str().c_str()) == 0) throw -4;
1217 //
1218 delete result;
1219 //
1220 oss.str("");
1221 oss << "SELECT ID FROM GL_ROOT WHERE ID_RAW=" << this->GetID_RAW() << ";";
1222 //
1223 result = conn->Query(oss.str().c_str());
1224 if ( !result ) throw -12;
1225 row = result->Next();
1226 this->SetID_ROOT((UInt_t)atoll(row->GetField(0)));
1227 //
1228 delete result;
1229 //
1230 return(0);
1231 }
1232
1233 /**
1234 * Assign the BOOT_NUMBER to the raw file.
1235 */
1236 Int_t PamelaDBOperations::assignBOOT_NUMBER(){
1237 stringstream oss;
1238 TSQLResult *result = 0;
1239 TSQLRow *row = 0;
1240 oss.str("");
1241 oss << "SELECT ID, BOOT_NUMBER FROM GL_RAW WHERE "
1242 << " PATH = '" << this->GetRawPath().Data() << "' AND "
1243 << " NAME = '" << this->GetRawFile().Data() << "' ";
1244 result = conn->Query(oss.str().c_str());
1245 //
1246 if ( !result ) throw -4;;
1247 row = result->Next();
1248 if ( !row ) return(16);
1249 if ( row->GetField(1) ){
1250 this->SetBOOTnumber((UInt_t)atoll(row->GetField(1)));
1251 return(1);
1252 };
1253 if ( !row->GetField(0) ) throw -26;
1254 //
1255 UInt_t idRaw = (UInt_t)atoll(row->GetField(0));
1256 //
1257 //
1258 //
1259 TTree *trDumpEv = 0;
1260 trDumpEv = (TTree*)file->Get("VarDump");
1261 if ( !trDumpEv || trDumpEv->IsZombie() ) throw -20;
1262 //
1263 VarDumpEvent *vde = 0;
1264 VarDumpRecord *vdr = 0;
1265 //
1266 trDumpEv->SetBranchAddress("VarDump", &vde);
1267 if ( trDumpEv->GetEntries() > 0 ){
1268 Bool_t found = false;
1269 for ( Int_t i = 0; i < trDumpEv->GetEntries(); i++){
1270 trDumpEv->GetEntry(i);
1271 vde->Records->GetEntries();
1272 if ( vde->Records->GetEntries()>0 ){
1273 found = true;
1274 goto fill;
1275 };
1276 };
1277 fill:
1278 if ( found ){
1279 //
1280 vdr = (VarDumpRecord*)vde->Records->At(6);
1281 //
1282 this->SetBOOTnumber((Int_t)vdr->VAR_VALUE);
1283 //
1284 } else {
1285 if ( !this->GetBOOTnumber() ) return(4);
1286 };
1287 } else {
1288 if ( !this->GetBOOTnumber() ) return(2);
1289 };
1290 //
1291 oss.str("");
1292 oss << " UPDATE GL_RAW "
1293 << " SET GL_RAW.BOOT_NUMBER = '" << dec << this->GetBOOTnumber() << "'"
1294 << " WHERE GL_RAW.ID = '" << idRaw << "'";
1295 conn->Query(oss.str().c_str());
1296 //
1297 delete result;
1298 return(0);
1299 };
1300
1301 /**
1302 * Scan runtrailer packet, fill the GL_RUN table and
1303 * check for missing and truncated runs
1304 */
1305 Int_t PamelaDBOperations::insertPamelaRUN(){
1306 Int_t signal = 0;
1307 //
1308 stringstream oss;
1309 oss.str("");
1310 //
1311 signal = this->SetUpperLimits();
1312 //
1313 // loop on runheader and runtrailer events
1314 //
1315 TTree *rh=(TTree*)file->Get("RunHeader");
1316 if ( !rh || rh->IsZombie() ) throw -17;
1317 TTree *rt=(TTree*)file->Get("RunTrailer");
1318 if ( !rt || rt->IsZombie() ) throw -18;
1319 //
1320 PacketType *pctp=0;
1321 EventCounter *cod=0;
1322 //
1323 rh->SetBranchAddress("RunHeader", &runh);
1324 rh->SetBranchAddress("Header", &ehh);
1325 //
1326 rt->SetBranchAddress("RunTrailer", &runt);
1327 rt->SetBranchAddress("Header", &eht);
1328 //
1329 UInt_t obtt = 0;
1330 UInt_t obth = 0;
1331 UInt_t pktt = 0;
1332 UInt_t pkth = 0;
1333 Int_t pth = -1;
1334 Int_t ptht = -1;
1335 Int_t evbeft = 0;
1336 Int_t evbefh = 0;
1337 //
1338 // no runtrailers in the file!
1339 //
1340 if ( !rtev ){
1341 if ( !upperentry ){
1342 if ( IsDebug() ) printf(" No physics events nor runs in the file \n");
1343 throw -8;
1344 } else {
1345 this->HandleRunFragments(true,true,0,upperentry);
1346 };
1347 } else {
1348 //
1349 for (Int_t ptt=0; ptt<rtev; ptt++){
1350 //
1351 rt->GetEntry(ptt);
1352 pht = eht->GetPscuHeader();
1353 pktt = pht->GetCounter();
1354 obtt = pht->GetOrbitalTime();
1355 //
1356 cod = eht->GetCounter();
1357 ptht = cod->Get(pctp->RunHeader) - 1;
1358 evbeft = cod->Get(pctp->Physics);
1359 //
1360 if ( !ptt && !(ptht+1) ){
1361 //
1362 if ( IsDebug() ) printf(" Piece of run at the beginning of the file %i %i %i \n",ptht,pth,ptt);
1363 //
1364 this->HandleRunFragments(true,false,0,(evbeft-1));
1365 //
1366 //
1367 } else if ( pth == ptht ){
1368 //
1369 if ( IsDebug() ) printf(" Missing header %i %i %i\n",ptht,pth,ptt);
1370 //
1371 if ( (ptt-1) < 0 ) throw -15; // should never arrive here!
1372 rt->GetEntry(ptt-1);
1373 cod = eht->GetCounter();
1374 evbefh = cod->Get(pctp->Physics);
1375 rt->GetEntry(ptt);
1376 pht = eht->GetPscuHeader();
1377 //
1378 if ( IsDebug() ) printf(" Try to find the beginning of a run which has only the runtrailer %i %i %i \n",ptht,pth,ptt);
1379 if ( IsDebug() ) printf(" ''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''' %i %i %i \n",pkth,obth,obtt);
1380 //
1381 this->HandleMissingHoT(true,false,evbefh,evbeft-1);
1382 //
1383 } else {
1384 //
1385 if ( IsDebug() ) printf(" Could be a good run, we have a runheader followed by a runtrailer %i %i %i\n",ptht,pth,ptt);
1386 //
1387 rh->GetEntry(ptht);
1388 phh = ehh->GetPscuHeader();
1389 pkth = phh->GetCounter();
1390 obth = phh->GetOrbitalTime();
1391 cod = ehh->GetCounter();
1392 evbefh = cod->Get(pctp->Physics);
1393 if ( IsDebug() ) printf(" ''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''' %i %i %i \n",pkth,obth,obtt);
1394 //
1395 // handle this run
1396 //
1397 this->HandleRun();
1398 //
1399 //
1400 //
1401 if ( PKT(pkth)>PKT(pktfirst) && OBT(obth)>OBT(obtfirst) && !ptt ){
1402 //
1403 if ( IsDebug() ) printf(" Piece of run at the beginning of the file WITH NO RUNTRAILER \n");
1404 //
1405 this->HandleRunFragments(true,true,0,(evbefh-1));
1406 //
1407 };
1408 //
1409 //
1410 if ( (ptht - pth) > 1 ){
1411 //
1412 if ( IsDebug() ) printf(" Missing runtrailers! \n");
1413 if ( IsDebug() ) printf(" Attention there is a jump in the runheader counter %i %i %i \n",ptht,pth,ptt);
1414 // is not the consecutive header
1415 while ( pth != ptht ){
1416 //
1417 // treat the header(s) in the middle and then go to the next header, repeat until you reach the correct header.
1418 //
1419 pth++;
1420 //
1421 rh->GetEntry(pth+1);
1422 phh = ehh->GetPscuHeader();
1423 pktt = phh->GetCounter();
1424 obtt = phh->GetOrbitalTime();
1425 cod = ehh->GetCounter();
1426 evbeft = cod->Get(pctp->Physics);
1427 rh->GetEntry(pth);
1428 phh = ehh->GetPscuHeader();
1429 cod = ehh->GetCounter();
1430 pkth = phh->GetCounter();
1431 obth = phh->GetOrbitalTime();
1432 evbefh = cod->Get(pctp->Physics);
1433 //
1434 if ( IsDebug() ) printf(" Try to find the end of a run which has only the runheader %i %i %i \n",ptht,pth,ptt);
1435 if ( IsDebug() ) printf(" ''''''''''''''''''''''''''''''''''''''''''''''''''''''''''' %i %i %i \n",pkth,obth,obtt);
1436 //
1437 this->HandleMissingHoT(false,true,evbefh,evbeft-1);
1438 //
1439 };
1440 //
1441 } else if ( !(ptht - pth) ){
1442 //
1443 if ( IsDebug() ) printf(" Missing runheader! \n");
1444 if ( IsDebug() ) printf(" Attention! the runheader counter did not changed %i %i %i \n",ptht,pth,ptt);
1445 if ( IsDebug() ) printf(" The run should have already been handled by HandleRun() \n");
1446 //
1447 } else {
1448 //
1449 // go on with next header
1450 //
1451 pth = ptht;
1452 };
1453 //
1454 };
1455 //
1456 if ( ptt+1 == rtev){
1457 ptht++;
1458 if ( ptht < rhev ){
1459 rh->GetEntry(ptht);
1460 phh = ehh->GetPscuHeader();
1461 pkth = phh->GetCounter();
1462 obth = phh->GetOrbitalTime();
1463 cod = ehh->GetCounter();
1464 evbefh = cod->Get(pctp->Physics);
1465 if ( IsDebug() ) printf(" Piece of run at the end of file %i %i %i \n",pkth,obth,obtt);
1466 if ( IsDebug() ) printf(" ''''''''''''''''''''''''''''''' %i %i %i \n",ptht,pth,ptt);
1467 if ( IsDebug() ) printf(" ''''''''''''''''''''''''''''''' %i \n",rhev);
1468 //
1469 this->HandleRunFragments(false,true,evbefh,upperentry);
1470 } else {
1471 //
1472 // check if we have a fragment with no header
1473 //
1474 if ( (UInt_t)evbeft < upperentry-1 ){
1475 if ( IsDebug() ) printf(" Piece of run at the end of the file with NO RUNHEADER!\n");
1476 //
1477 if ( (ptt-1) < 0 ) throw -15; // should never arrive here!
1478 rt->GetEntry(ptt-1);
1479 cod = eht->GetCounter();
1480 evbefh = cod->Get(pctp->Physics);
1481 rt->GetEntry(ptt);
1482 pht = eht->GetPscuHeader();
1483 this->HandleRunFragments(true,true,evbefh,upperentry);
1484 };
1485 };
1486 };
1487 //
1488 };
1489 };
1490 //
1491 return(signal);
1492 };
1493
1494 /**
1495 *
1496 * Check if the run has already been inserted
1497 *
1498 */
1499 Bool_t PamelaDBOperations::IsRunAlreadyInserted(){
1500 //
1501 TSQLResult *result = 0;
1502 TSQLRow *row = 0;
1503 //
1504 stringstream oss;
1505 oss.str("");
1506 //
1507 // the where clause is of the type: boot_number = _our_boot && (
1508 // ( runhead_time >= (_our_runhead_time-10) && runtrail_time <= (_our_runtrail_time+10) &&
1509 // ( runhead_obt >= _our_runheadobt || runhead_pkt >= _our_runheadpkt ) &&
1510 // ( runtrail_obt >= _our_runtrailobt || runtrail_pkt >= _our_runtrailpkt ) )
1511 // ||
1512 // ( runhead_time <= _our_runhead_time && runtrail_time >= _our_runtrail_time) &&
1513 // ( runhead_obt <= _our_runheadobt || runhead_pkt <= _our_runheadpkt ) &&
1514 // ( runtrail_obt <= _our_runtrailobt || runtrail_pkt <= _our_runtrailpkt ) )
1515 // )
1516 //
1517 oss << " SELECT ID,NEVENTS,TRK_CALIB_USED,PKT_COUNTER FROM GL_RUN WHERE "
1518 << " BOOT_NUMBER=" << this->GetBOOTnumber() << " AND ("
1519 << " (RUNHEADER_TIME>=" << (UInt_t)(glrun->GetRUNHEADER_TIME()-10) << " AND "
1520 << " RUNTRAILER_TIME<=" << (UInt_t)(glrun->GetRUNTRAILER_TIME()+10) << " AND ("
1521 << " RUNHEADER_OBT>=" << glrun->GetRUNHEADER_OBT() << " OR "
1522 << " RUNHEADER_PKT>=" << glrun->GetRUNHEADER_PKT() << ") AND ("
1523 << " RUNTRAILER_OBT<=" << glrun->GetRUNTRAILER_OBT() << " OR "
1524 << " RUNTRAILER_PKT<=" << glrun->GetRUNTRAILER_PKT() << ") ) OR "
1525 << " (RUNHEADER_TIME<=" << (UInt_t)glrun->GetRUNHEADER_TIME() << " AND "
1526 << " RUNTRAILER_TIME>=" << (UInt_t)glrun->GetRUNTRAILER_TIME() <<" AND ("
1527 << " RUNHEADER_OBT<=" << glrun->GetRUNHEADER_OBT() << " OR "
1528 << " RUNHEADER_PKT<=" << glrun->GetRUNHEADER_PKT() << ") AND ("
1529 << " RUNTRAILER_OBT>=" << glrun->GetRUNTRAILER_OBT() << " OR "
1530 << " RUNTRAILER_PKT>=" << glrun->GetRUNTRAILER_PKT() << ") ));";
1531 //
1532 if ( IsDebug() ) printf(" check if run has been inserted: query is \n %s \n",oss.str().c_str());
1533 result = conn->Query(oss.str().c_str());
1534 //
1535 if ( !result ) throw -4;
1536 //
1537 row = result->Next();
1538 //
1539 if ( !row ){
1540 if ( IsDebug() ) printf(" The run is new \n");
1541 if ( IsDebug() ) printf(" -> fill the DB \n");
1542 return(false); // the file has not been inserted in the DB, go on.
1543 };
1544 //
1545 Bool_t signal = true;
1546 //
1547 while ( row != NULL ){
1548 if ( IsDebug() ) printf(" A run exists with runheader and runtrailer time and packets compatible with this one \n");
1549 //
1550 // the run has already been inserted
1551 //
1552 // return(true); //<<<<<<<<<<<<<<<<<<<<<<<< patch follows, uncomment here
1553 //
1554 // PATCH!
1555 // we keep the processing run if (in order of growing importance) 1) we have the runtrailer while the old run doesn't have it 2) we have the runheader
1556 // while the old run doesn't have it 3) we have more events than the old run
1557 //
1558 if ( glrun->GetNEVENTS() > (UInt_t)atoll(row->GetField(1)) ){
1559 //
1560 if ( IsDebug() ) printf(" The new run has more events than the old one \n");
1561 oss.str("");
1562 oss << "DELETE FROM GL_RUN WHERE ID=" << row->GetField(0) <<";";
1563 if ( IsDebug() ) printf(" delete the run entry: query is \n %s \n",oss.str().c_str());
1564 conn->Query(oss.str().c_str());
1565 if ( signal ) signal = false;
1566 goto gonext;
1567 //
1568 } else if ( glrun->GetNEVENTS() < (UInt_t)atoll(row->GetField(1)) ){
1569 if ( IsDebug() ) printf(" The new run has less events than the old one \n");
1570 if ( IsDebug() ) printf(" The run is already inserted \n");
1571 goto gonext;
1572 };
1573 //
1574 if ( glrun->GetTRK_CALIB() && !(UInt_t)atoll(row->GetField(2)) ){
1575 //
1576 if ( IsDebug() ) printf(" The new run has the same number of events and the runheader the old one miss the runheader \n");
1577 //
1578 oss.str("");
1579 oss << "DELETE FROM GL_RUN WHERE ID=" << row->GetField(0) <<";";
1580 if ( IsDebug() ) printf(" delete the run entry: query is \n %s \n",oss.str().c_str());
1581 conn->Query(oss.str().c_str());
1582 //
1583 if ( signal ) signal = false;
1584 goto gonext;
1585 } else if ( !glrun->GetTRK_CALIB() && (UInt_t)atoll(row->GetField(2)) ){
1586 if ( IsDebug() ) printf(" The new run has the same number of events but miss the runheader the old has the runheader \n");
1587 if ( IsDebug() ) printf(" The run is already inserted \n");
1588 goto gonext;
1589 };
1590 //
1591 if ( glrun->GetPKT_COUNTER() && !(UInt_t)atoll(row->GetField(3)) ){
1592 //
1593 if ( IsDebug() ) printf(" The new run has the same number of events, the runheader and the runtrailer the old one miss the runtrailer \n");
1594 //
1595 oss.str("");
1596 oss << "DELETE FROM GL_RUN WHERE ID=" << row->GetField(0) <<";";
1597 if ( IsDebug() ) printf(" delete the run entry: query is \n %s \n",oss.str().c_str());
1598 conn->Query(oss.str().c_str());
1599 if ( signal ) signal = false;
1600 //
1601 };
1602 //
1603 gonext:
1604 // END PATCH!
1605 //
1606 row = result->Next();
1607 //
1608 };
1609 //
1610 delete result;
1611 //
1612 if ( signal && IsDebug() ) printf(" The run has already been inserted \n");
1613 return(signal);
1614 };
1615
1616 /**
1617 * Handle runs which seems to be good ones.
1618 **/
1619 void PamelaDBOperations::HandleRun(){
1620 ULong64_t chkpkt = 0;
1621 ULong64_t pktt = (ULong64_t)PKT(pht->GetCounter());
1622 ULong64_t pkth = (ULong64_t)PKT(phh->GetCounter());
1623 //
1624 chkpkt = pkth + (ULong64_t)runt->PKT_COUNTER + 1ULL + 1ULL;
1625 //
1626 if ( labs(chkpkt-pktt)<2 ){
1627 //
1628 if ( IsDebug() ) printf(" check %llu pktt %llu \n",chkpkt,pktt);
1629 //
1630 // it must be a good run, fill the db
1631 //
1632 this->FillClass();
1633 //
1634 if ( !IsRunAlreadyInserted() ){
1635 glrun->SetID(this->AssignRunID());
1636 glrun->SetID_RUN_FRAG(0);
1637 glrun->Fill_GL_RUN(conn);
1638 };
1639 } else {
1640 //
1641 if ( IsDebug() ) printf(" oh no! the distance between runheader and runtrailer seems wrong: check %llu pktt %llu \n",chkpkt,pktt);
1642 if ( IsDebug() ) printf(" try to recover run(s) without runheader and runtrailer between runheader and runtrailer\n");
1643 //
1644 this->HandleSuspiciousRun();
1645 //
1646 };
1647 //
1648 //
1649 return;
1650 };
1651
1652
1653 /**
1654 * Handle run fragments at the beginning or at the end of the file
1655 **/
1656 void PamelaDBOperations::HandleRunFragments(Bool_t mishead, Bool_t mistrail, UInt_t firstev, UInt_t lastev){
1657 //
1658 UInt_t rhfirstev = firstev;
1659 UInt_t rtlastev = lastev;
1660 Bool_t found = false;
1661 //
1662 TSQLResult *result = 0;
1663 TSQLRow *row = 0;
1664 //
1665 stringstream oss;
1666 oss.str("");
1667 //
1668 // is the piece of run good (no other packets inside)?
1669 //
1670 if ( !this->IsRunConsistent(mishead,mistrail,firstev,lastev)){
1671 //
1672 // if not, handle other pieces and continue with the first one
1673 //
1674 if ( IsDebug() ) printf("The run is not consistent, it contains non-physics packets! The run has been handled \n");
1675 //
1676 };
1677 //
1678 // we have now the good first piece of a run, fill the glrun object
1679 //
1680 if ( rhfirstev != firstev && !mishead ) mishead = true;
1681 if ( rtlastev != lastev && !mistrail ) mistrail = true;
1682 //
1683 this->FillClass(mishead,mistrail,firstev,lastev);
1684 //
1685 if ( IsDebug() ) printf("The run is good, is it the other piece in the GL_RUN_FRAGMENTS table?\n");
1686 //
1687 // can we find the other piece of the run in the GL_RUN_FRAGMENTS table?
1688 //
1689 if ( mishead && rhfirstev == firstev ) { // look for runheader (only when at the beginning of the file, if at the end and the runh is
1690 // missing it no way we can found a piece in the frag table
1691 //
1692 oss.str("");
1693 oss << " SELECT ID,TRK_CALIB_USED,RUNTRAILER_TIME,RUNTRAILER_OBT,RUNHEADER_PKT,RUNTRAILER_PKT FROM GL_RUN_FRAGMENTS WHERE "
1694 << " BOOT_NUMBER=" << this->GetBOOTnumber() << " AND "
1695 << " RUNHEADER_TIME <= " << (UInt_t)glrun->GetRUNHEADER_TIME()
1696 << " ORDER BY RUNHEADER_TIME DESC LIMIT 1;"; // DESC NOT ASC!!
1697 //
1698 if ( IsDebug() ) printf(" look for runheader in the fragments table: query is \n %s \n",oss.str().c_str());
1699 result = conn->Query(oss.str().c_str());
1700 //
1701 if ( !result ) throw -4;
1702 //
1703 row = result->Next();
1704 //
1705 if ( !row ){
1706 if ( IsDebug() ) printf(" the corresponding piece has NOT been found \n");
1707 found = false;
1708 } else {
1709 //
1710 found = false; // default value
1711 //
1712 if ( IsDebug() ) printf(" Found a possible candidate, checking if it is the good one... \n");
1713 //
1714 // if we have both runheader and runtrailer we can check with pkt_counter:
1715 //
1716 if ( !mistrail && (UInt_t)atoll(row->GetField(1)) != 0 ){
1717 ULong64_t chkpkt = 0;
1718 ULong64_t pktt = (ULong64_t)PKT(glrun->GetRUNTRAILER_PKT());
1719 ULong64_t pkth = (ULong64_t)PKT((UInt_t)atoll(row->GetField(4)));
1720 //
1721 chkpkt = pkth + (ULong64_t)glrun->GetPKT_COUNTER() + 1ULL + 1ULL;
1722 //
1723 if ( labs(chkpkt-pktt)<2 ){
1724 //
1725 if ( IsDebug() ) printf(" FOUND!!! check %llu pktt %llu \n",chkpkt,pktt);
1726 //
1727 found = true;
1728 //
1729 } else {
1730 //
1731 if ( IsDebug() ) printf(" The check with pkt counter failed: check %llu pktt %llu \n",chkpkt,pktt);
1732 //
1733 found = false;
1734 //
1735 };
1736 };
1737 if ( !found ){
1738 //
1739 // if we arrive here we were not able to decide if the two pieces matches using only the pkt counter information, we must check times and obts
1740 //
1741 ULong64_t chkpkt1 = 0;
1742 ULong64_t orunh1 = (ULong64_t)PKT(glrun->GetRUNHEADER_PKT());
1743 ULong64_t dbrunt1 = (ULong64_t)PKT((UInt_t)atoll(row->GetField(5)));
1744 chkpkt1 = labs(orunh1-dbrunt1);
1745 //
1746 ULong64_t chkpkt2 = 0;
1747 ULong64_t orunh2 = (ULong64_t)OBT(glrun->GetRUNHEADER_OBT());
1748 ULong64_t dbrunt2 = (ULong64_t)OBT((UInt_t)atoll(row->GetField(3)));
1749 chkpkt2 = labs(orunh2-dbrunt2);
1750 //
1751 ULong64_t chkpkt3 = 0;
1752 ULong64_t orunh3 = (ULong64_t)(glrun->GetRUNHEADER_TIME());
1753 ULong64_t dbrunt3 = (ULong64_t)((UInt_t)atoll(row->GetField(2)));
1754 chkpkt3 = labs(orunh3-dbrunt3);
1755 //
1756 if ( (chkpkt1 < 200 || chkpkt2 < 20000) && chkpkt3 < 20 ){
1757 // if ( chkpkt1 < 100 && chkpkt2 < 30000 && chkpkt3 < 30 ){
1758 //
1759 if ( IsDebug() ) printf(" FOUND!!! check1 %llu<200 cechk2 %llu<20000 check3 %llu<20 \n",chkpkt1,chkpkt2,chkpkt3);
1760 //
1761 found = true;
1762 //
1763 } else {
1764 //
1765 if ( IsDebug() ) printf(" Check failed: check1 %llu<200? cechk2 %llu<20000? check3 %llu<20? \n",chkpkt1,chkpkt2,chkpkt3);
1766 //
1767 found = false;
1768 //
1769 };
1770 };
1771 };
1772 //
1773 if ( found ){
1774 //
1775 // we have found the missing piece, glue the two together, merge the informations, fill the gl_run table (check first runs do not exists), delete entry in frag table
1776 //
1777 if ( IsDebug() ) printf(" now you can handle the piece of the run \n ");
1778 //
1779 GL_RUN *glrun1 = new GL_RUN();
1780 //
1781 UInt_t idfrag = (UInt_t)atoll(row->GetField(0));
1782 //
1783 oss.str("");
1784 oss << " ID="<<row->GetField(0)<<";";
1785 //
1786 glrun1->Query_GL_RUN_FRAGMENTS(oss.str().c_str(),conn); // here we have runheader infos
1787 //
1788 // merge infos
1789 //
1790 UInt_t apkt = PKT(glrun1->GetRUNTRAILER_PKT());
1791 ULong64_t aobt = OBT(glrun1->GetRUNTRAILER_OBT());
1792 UInt_t bpkt = PKT(glrun->GetRUNHEADER_PKT());
1793 ULong64_t bobt = OBT(glrun->GetRUNHEADER_OBT());
1794 if ( IsDebug() ) printf(" Check overlapping events: %i %i %llu %llu firstev is %i\n",apkt,bpkt,aobt,bobt,firstev);
1795 TTree *T= 0;
1796 T = (TTree*)file->Get("Physics");
1797 if ( !T || T->IsZombie() ) throw -16;
1798 EventHeader *eh = 0;
1799 PscuHeader *ph = 0;
1800 T->SetBranchAddress("Header", &eh);
1801 while ( apkt > bpkt && aobt > bobt && firstev < lastev ){
1802 T->GetEntry(firstev);
1803 ph = eh->GetPscuHeader();
1804 bpkt = PKT(ph->GetCounter());
1805 bobt = OBT(ph->GetOrbitalTime());
1806 firstev++;
1807 };
1808 if ( IsDebug() ) printf(" Check overlapping events done: %i %i %llu %llu firstev is %i\n",apkt,bpkt,aobt,bobt,firstev);
1809 //
1810 glrun1->SetPKT_COUNTER(glrun->GetPKT_COUNTER());
1811 glrun1->SetPKT_READY_COUNTER(glrun->GetPKT_READY_COUNTER());
1812 glrun1->SetRUNTRAILER_TIME(glrun->GetRUNTRAILER_TIME());
1813 glrun1->SetRUNTRAILER_OBT(glrun->GetRUNTRAILER_OBT());
1814 glrun1->SetRUNTRAILER_PKT(glrun->GetRUNTRAILER_PKT());
1815 //
1816 glrun->SetEV_FROM(firstev);
1817 glrun->SetNEVENTS(lastev-firstev+1);
1818 glrun->SetRUNHEADER_TIME(glrun1->GetRUNHEADER_TIME());
1819 glrun->SetRUNHEADER_OBT(glrun1->GetRUNHEADER_OBT());
1820 glrun->SetRUNHEADER_PKT(glrun1->GetRUNHEADER_PKT());
1821 glrun->SetCOMPILATIONTIMESTAMP(glrun1->GetCOMPILATIONTIMESTAMP());
1822 glrun->SetFAV_WRK_SCHEDULE(glrun1->GetFAV_WRK_SCHEDULE());
1823 glrun->SetEFF_WRK_SCHEDULE(glrun1->GetEFF_WRK_SCHEDULE());
1824 glrun->SetPRH_VAR_TRG_MODE_A(glrun1->GetPRH_VAR_TRG_MODE_A());
1825 glrun->SetPRH_VAR_TRG_MODE_B(glrun1->GetPRH_VAR_TRG_MODE_B());
1826 glrun->SetACQ_BUILD_INFO(glrun1->GetACQ_BUILD_INFO());
1827 glrun->SetACQ_VAR_INFO(glrun1->GetACQ_VAR_INFO());
1828 glrun->SetRM_ACQ_AFTER_CALIB(glrun1->GetRM_ACQ_AFTER_CALIB());
1829 glrun->SetRM_ACQ_SETTING_MODE(glrun1->GetRM_ACQ_SETTING_MODE());
1830 glrun->SetTRK_CALIB_USED(glrun1->GetTRK_CALIB_USED());
1831 glrun->SetCAL_DSP_MASK(glrun1->GetCAL_DSP_MASK());
1832 glrun->SetLAST_TIMESYNC(glrun1->GetLAST_TIMESYNC());
1833 glrun->SetOBT_TIMESYNC(glrun1->GetOBT_TIMESYNC());
1834 //
1835 if ( !IsRunAlreadyInserted() ){
1836 //
1837 glrun->SetID(this->AssignRunID());
1838 glrun->SetID_RUN_FRAG(glrun1->GetID());
1839 glrun->Fill_GL_RUN(conn);
1840 //
1841 // get id number
1842 //
1843 // oss.str("");
1844 // oss << " SELECT ID FROM GL_RUN WHERE BOOT_NUMBER="<<this->GetBOOTnumber()<<" AND "
1845 // << " RUNHEADER_OBT="<<glrun->GetRUNHEADER_OBT()<<" AND "
1846 // << " RUNTRAILER_OBT="<<glrun->GetRUNTRAILER_OBT()<<";";
1847 // //
1848 // if ( IsDebug() ) printf(" search for idrun0 , query is : \n%s\n",oss.str().c_str());
1849 // //
1850 // result = conn->Query(oss.str().c_str());
1851 // if ( !result ) throw -4;
1852 // row = result->Next();
1853 // //
1854 // UInt_t idrun0 = 0;
1855 // if ( !row ){
1856 // throw -10;
1857 // } else {
1858 // idrun0 = (UInt_t)atoll(row->GetField(0));
1859 // };
1860 //
1861 // glrun1->SetID_RUN_FRAG(idrun0);
1862 glrun1->SetID_RUN_FRAG(glrun->GetID());
1863 glrun1->Fill_GL_RUN(conn);
1864 //
1865 // oss.str("");
1866 // oss << " SELECT ID FROM GL_RUN WHERE ID_RUN_FRAG="<<idrun0<<" ;";
1867 // //
1868 // if ( IsDebug() ) printf(" search for idrun1 , query is : \n%s\n",oss.str().c_str());
1869 // //
1870 // result = conn->Query(oss.str().c_str());
1871 // if ( !result ) throw -4;
1872 // row = result->Next();
1873 // //
1874 // UInt_t idrun1 = 0;
1875 // if ( !row ){
1876 // throw -10;
1877 // } else {
1878 // idrun1 = (UInt_t)atoll(row->GetField(0));
1879 // };
1880 // //
1881 // oss.str("");
1882 // oss << " UPDATE GL_RUN SET ID_RUN_FRAG="<<idrun1<<" WHERE ID="<<idrun0<<" ;";
1883 // //
1884 // result = conn->Query(oss.str().c_str());
1885 // if ( !result ) throw -4;
1886 //
1887 };
1888 //
1889 delete glrun1;
1890 //
1891 // delete old entry in fragment table
1892 //
1893 oss.str("");
1894 //
1895 oss << " DELETE FROM GL_RUN_FRAGMENTS WHERE ID = " << idfrag << ";";
1896 //
1897 if ( IsDebug() ) printf(" Delete from frag table the old run :\n query is \n %s \n",oss.str().c_str());
1898 result = conn->Query(oss.str().c_str());
1899 if ( !result ) throw -4;
1900 //
1901 return;
1902 //
1903 };
1904 //
1905 };
1906 //
1907 if ( mistrail && rtlastev == lastev ) { // look for runtrailer (only when at the end of the file, if at the beginning and the runh is
1908 // missing it no way we can found a piece in the frag table
1909 //
1910 oss.str("");
1911 oss << " SELECT ID,PKT_COUNTER,RUNHEADER_TIME,RUNHEADER_OBT,RUNTRAILER_PKT,RUNHEADER_PKT FROM GL_RUN_FRAGMENTS WHERE "
1912 << " BOOT_NUMBER=" << this->GetBOOTnumber() << " AND "
1913 << " RUNTRAILER_TIME >= " << (UInt_t)glrun->GetRUNTRAILER_TIME()
1914 << " ORDER BY RUNTRAILER_TIME ASC LIMIT 1;";
1915 //
1916 if ( IsDebug() ) printf(" look for runtrailer in the fragments table: query is \n %s \n",oss.str().c_str());
1917 result = conn->Query(oss.str().c_str());
1918 //
1919 if ( !result ) throw -4;
1920 //
1921 row = result->Next();
1922 //
1923 if ( !row ){
1924 if ( IsDebug() ) printf(" the corresponding piece has NOT been found \n");
1925 found = false;
1926 } else {
1927 //
1928 found = false; // default value
1929 //
1930 if ( IsDebug() ) printf(" Found a possible candidate, checking if it is the good one... \n");
1931 //
1932 // if we have both runheader and runtrailer we can check with pkt_counter:
1933 //
1934 if ( !mishead && (UInt_t)atoll(row->GetField(1)) != 0 ){
1935 ULong64_t chkpkt = 0;
1936 ULong64_t pktt = (ULong64_t)PKT((UInt_t)atoll(row->GetField(4)));
1937 ULong64_t pkth = (ULong64_t)PKT(glrun->GetRUNHEADER_PKT());
1938 //
1939 chkpkt = pkth + (ULong64_t)((UInt_t)atoll(row->GetField(1))) + 1ULL + 1ULL;
1940 //
1941 if ( labs(chkpkt-pktt)<2 ){
1942 //
1943 if ( IsDebug() ) printf(" FOUND!!! check %llu pktt %llu \n",chkpkt,pktt);
1944 //
1945 found = true;
1946 //
1947 } else {
1948 //
1949 if ( IsDebug() ) printf(" The check with pkt counter failed: check %llu pktt %llu \n",chkpkt,pktt);
1950 //
1951 found = false;
1952 //
1953 };
1954 };
1955 if ( !found ){
1956 //
1957 // if we arrive here we were not able to decide if the two pieces matches using only the pkt counter information, we must check times and obts
1958 //
1959 ULong64_t chkpkt1 = 0;
1960 ULong64_t orunh1 = (ULong64_t)PKT(glrun->GetRUNTRAILER_PKT());
1961 ULong64_t dbrunt1 = (ULong64_t)PKT((UInt_t)atoll(row->GetField(5)));
1962 chkpkt1 = labs(orunh1-dbrunt1);
1963 //
1964 ULong64_t chkpkt2 = 0;
1965 ULong64_t orunh2 = (ULong64_t)OBT(glrun->GetRUNTRAILER_OBT());
1966 ULong64_t dbrunt2 = (ULong64_t)OBT((UInt_t)atoll(row->GetField(3)));
1967 chkpkt2 = labs(orunh2-dbrunt2);
1968 //
1969 ULong64_t chkpkt3 = 0;
1970 ULong64_t orunh3 = (ULong64_t)(glrun->GetRUNTRAILER_TIME());
1971 ULong64_t dbrunt3 = (ULong64_t)((UInt_t)atoll(row->GetField(2)));
1972 chkpkt3 = labs(orunh3-dbrunt3);
1973 //
1974 if ( (chkpkt1 < 200 || chkpkt2 < 20000) && chkpkt3 < 20 ){
1975 //
1976 if ( IsDebug() ) printf(" FOUND!!! check1 %llu<200 cechk2 %llu<20000 check3 %llu<20 \n",chkpkt1,chkpkt2,chkpkt3);
1977 //
1978 found = true;
1979 //
1980 } else {
1981 //
1982 if ( IsDebug() ) printf(" Check failed: check1 %llu<200? cechk2 %llu<20000? check3 %llu<20? \n",chkpkt1,chkpkt2,chkpkt3);
1983 //
1984 found = false;
1985 //
1986 };
1987 };
1988 };
1989 //
1990 if ( found ){
1991 //
1992 // we have found the missing piece, glue the two together, merge the informations, fill the gl_run table (check first runs do not exists), delete entry in frag table
1993 //
1994 if ( IsDebug() ) printf(" now you can handle the piece of the run \n ");
1995 //
1996 GL_RUN *glrun1 = new GL_RUN();
1997 //
1998 UInt_t idfrag = (UInt_t)atoll(row->GetField(0));
1999 //
2000 oss.str("");
2001 oss << " ID="<<row->GetField(0)<<";";
2002 //
2003 glrun1->Query_GL_RUN_FRAGMENTS(oss.str().c_str(),conn); // here we have runtrailer infos
2004 //
2005 // merge infos
2006 //
2007 UInt_t apkt = PKT(glrun->GetRUNTRAILER_PKT());
2008 ULong64_t aobt = OBT(glrun->GetRUNTRAILER_OBT());
2009 UInt_t bpkt = PKT(glrun1->GetRUNHEADER_PKT());
2010 ULong64_t bobt = OBT(glrun1->GetRUNHEADER_OBT());
2011 if ( IsDebug() ) printf(" Check overlapping events: %i %i %llu %llu lastev is %i\n",apkt,bpkt,aobt,bobt,lastev);
2012 TTree *T= 0;
2013 T = (TTree*)file->Get("Physics");
2014 if ( !T || T->IsZombie() ) throw -16;
2015 EventHeader *eh = 0;
2016 PscuHeader *ph = 0;
2017 T->SetBranchAddress("Header", &eh);
2018 while ( apkt > bpkt && aobt > bobt && lastev > 0 ){
2019 T->GetEntry(lastev);
2020 ph = eh->GetPscuHeader();
2021 apkt = PKT(ph->GetCounter());
2022 aobt = OBT(ph->GetOrbitalTime());
2023 lastev--;
2024 };
2025 if ( IsDebug() ) printf(" Check overlapping events done: %i %i %llu %llu lastev is %i\n",apkt,bpkt,aobt,bobt,lastev);
2026 //
2027 glrun->SetEV_TO(lastev);
2028 glrun->SetNEVENTS(lastev-firstev+1);
2029 glrun->SetPKT_COUNTER(glrun1->GetPKT_COUNTER());
2030 glrun->SetPKT_READY_COUNTER(glrun1->GetPKT_READY_COUNTER());
2031 glrun->SetRUNTRAILER_TIME(glrun1->GetRUNTRAILER_TIME());
2032 glrun->SetRUNTRAILER_OBT(glrun1->GetRUNTRAILER_OBT());
2033 glrun->SetRUNTRAILER_PKT(glrun1->GetRUNTRAILER_PKT());
2034 //
2035 glrun1->SetRUNHEADER_TIME(glrun->GetRUNHEADER_TIME());
2036 glrun1->SetRUNHEADER_OBT(glrun->GetRUNHEADER_OBT());
2037 glrun1->SetRUNHEADER_PKT(glrun->GetRUNHEADER_PKT());
2038 glrun1->SetCOMPILATIONTIMESTAMP(glrun->GetCOMPILATIONTIMESTAMP());
2039 glrun1->SetFAV_WRK_SCHEDULE(glrun->GetFAV_WRK_SCHEDULE());
2040 glrun1->SetEFF_WRK_SCHEDULE(glrun->GetEFF_WRK_SCHEDULE());
2041 glrun1->SetPRH_VAR_TRG_MODE_A(glrun->GetPRH_VAR_TRG_MODE_A());
2042 glrun1->SetPRH_VAR_TRG_MODE_B(glrun->GetPRH_VAR_TRG_MODE_B());
2043 glrun1->SetACQ_BUILD_INFO(glrun->GetACQ_BUILD_INFO());
2044 glrun1->SetACQ_VAR_INFO(glrun->GetACQ_VAR_INFO());
2045 glrun1->SetRM_ACQ_AFTER_CALIB(glrun->GetRM_ACQ_AFTER_CALIB());
2046 glrun1->SetRM_ACQ_SETTING_MODE(glrun->GetRM_ACQ_SETTING_MODE());
2047 glrun1->SetTRK_CALIB_USED(glrun->GetTRK_CALIB_USED());
2048 glrun1->SetCAL_DSP_MASK(glrun->GetCAL_DSP_MASK());
2049 glrun1->SetLAST_TIMESYNC(glrun->GetLAST_TIMESYNC());
2050 glrun1->SetOBT_TIMESYNC(glrun->GetOBT_TIMESYNC());
2051 //
2052 if ( !IsRunAlreadyInserted() ){
2053 //
2054 glrun->SetID(this->AssignRunID());
2055 //
2056 glrun->SetID_RUN_FRAG(glrun1->GetID());
2057 glrun->Fill_GL_RUN(conn);
2058 //
2059 // get id number
2060 //
2061 // oss.str("");
2062 // oss << " SELECT ID FROM GL_RUN WHERE BOOT_NUMBER="<<this->GetBOOTnumber()<<" AND "
2063 // << " RUNHEADER_OBT="<<glrun->GetRUNHEADER_OBT()<<" AND "
2064 // << " RUNTRAILER_OBT="<<glrun->GetRUNTRAILER_OBT()<<";";
2065 // //
2066 // if ( IsDebug() ) printf(" search for idrun0 , query is : \n%s\n",oss.str().c_str());
2067 // //
2068 // result = conn->Query(oss.str().c_str());
2069 // if ( !result ) throw -4;
2070 // row = result->Next();
2071 // //
2072 // UInt_t idrun0 = 0;
2073 // if ( !row ){
2074 // throw -10;
2075 // } else {
2076 // idrun0 = (UInt_t)atoll(row->GetField(0));
2077 // };
2078 // //
2079 // glrun1->SetID_RUN_FRAG(idrun0);
2080 //
2081 glrun1->SetID_RUN_FRAG(glrun->GetID());
2082 glrun1->Fill_GL_RUN(conn);
2083 //
2084 // oss.str("");
2085 // oss << " SELECT ID FROM GL_RUN WHERE ID_RUN_FRAG="<<idrun0<<" ;";
2086 // //
2087 // if ( IsDebug() ) printf(" search for idrun1 , query is : \n%s\n",oss.str().c_str());
2088 // //
2089 // result = conn->Query(oss.str().c_str());
2090 // if ( !result ) throw -4;
2091 // row = result->Next();
2092 // //
2093 // UInt_t idrun1 = 0;
2094 // if ( !row ){
2095 // throw -10;
2096 // } else {
2097 // idrun1 = (UInt_t)atoll(row->GetField(0));
2098 // };
2099 // //
2100 // oss.str("");
2101 // oss << " UPDATE GL_RUN SET ID_RUN_FRAG="<<idrun1<<" WHERE ID="<<idrun0<<" ;";
2102 // //
2103 // result = conn->Query(oss.str().c_str());
2104 // if ( !result ) throw -4;
2105 //
2106 };
2107 //
2108 delete glrun1;
2109 //
2110 // delete old entry in fragment table
2111 //
2112 oss.str("");
2113 //
2114 oss << " DELETE FROM GL_RUN_FRAGMENTS WHERE ID = " << idfrag << ";";
2115 //
2116 if ( IsDebug() ) printf(" Delete from frag table the old run :\n query is \n %s \n",oss.str().c_str());
2117 result = conn->Query(oss.str().c_str());
2118 if ( !result ) throw -4;
2119 //
2120 //
2121 return;
2122 //
2123 };
2124 //
2125 };
2126 //
2127 if ( !found ){
2128 //
2129 if ( IsDebug() ) printf(" not found, check if we have already processed the file \n ");
2130 //
2131 // not found, has this run already inserted in the GL_RUN or in the GL_RUN_FRAGMENTS table?
2132 //
2133 oss.str("");
2134 oss << " SELECT ID FROM GL_RUN WHERE "
2135 << " BOOT_NUMBER=" << this->GetBOOTnumber() << " AND ("
2136 << " (RUNHEADER_TIME>=" << (UInt_t)(glrun->GetRUNHEADER_TIME()-10) << " AND "
2137 << " RUNTRAILER_TIME<=" << (UInt_t)(glrun->GetRUNTRAILER_TIME()+10) << " AND ("
2138 << " RUNHEADER_OBT>=" << glrun->GetRUNHEADER_OBT() << " OR "
2139 << " RUNHEADER_PKT>=" << glrun->GetRUNHEADER_PKT() << ") AND ("
2140 << " RUNTRAILER_OBT<=" << glrun->GetRUNTRAILER_OBT() << " OR "
2141 << " RUNTRAILER_PKT<=" << glrun->GetRUNTRAILER_PKT() << ") ) OR "
2142 << " (RUNHEADER_TIME<=" << (UInt_t)glrun->GetRUNHEADER_TIME() << " AND "
2143 << " RUNTRAILER_TIME>=" << (UInt_t)glrun->GetRUNTRAILER_TIME() <<" AND ("
2144 << " RUNHEADER_OBT<=" << glrun->GetRUNHEADER_OBT() << " OR "
2145 << " RUNHEADER_PKT<=" << glrun->GetRUNHEADER_PKT() << ") AND ("
2146 << " RUNTRAILER_OBT>=" << glrun->GetRUNTRAILER_OBT() << " OR "
2147 << " RUNTRAILER_PKT>=" << glrun->GetRUNTRAILER_PKT() << ") ));";
2148 //
2149 if ( IsDebug() ) printf(" check if run has been inserted: query is \n %s \n",oss.str().c_str());
2150 result = conn->Query(oss.str().c_str());
2151 //
2152 if ( !result ) throw -4;
2153 //
2154 row = result->Next();
2155 //
2156 if ( !row ){
2157 //
2158 oss.str("");
2159 oss << " SELECT ID FROM GL_RUN_FRAGMENTS WHERE "
2160 << " BOOT_NUMBER=" << this->GetBOOTnumber() << " AND ("
2161 << " (RUNHEADER_TIME>=" << (UInt_t)(glrun->GetRUNHEADER_TIME()-10) << " AND "
2162 << " RUNTRAILER_TIME<=" << (UInt_t)(glrun->GetRUNTRAILER_TIME()+10) << " AND ("
2163 << " RUNHEADER_OBT>=" << glrun->GetRUNHEADER_OBT() << " OR "
2164 << " RUNHEADER_PKT>=" << glrun->GetRUNHEADER_PKT() << ") AND ("
2165 << " RUNTRAILER_OBT<=" << glrun->GetRUNTRAILER_OBT() << " OR "
2166 << " RUNTRAILER_PKT<=" << glrun->GetRUNTRAILER_PKT() << ") ) OR "
2167 << " (RUNHEADER_TIME<=" << (UInt_t)glrun->GetRUNHEADER_TIME() << " AND "
2168 << " RUNTRAILER_TIME>=" << (UInt_t)glrun->GetRUNTRAILER_TIME() <<" AND ("
2169 << " RUNHEADER_OBT<=" << glrun->GetRUNHEADER_OBT() << " OR "
2170 << " RUNHEADER_PKT<=" << glrun->GetRUNHEADER_PKT() << ") AND ("
2171 << " RUNTRAILER_OBT>=" << glrun->GetRUNTRAILER_OBT() << " OR "
2172 << " RUNTRAILER_PKT>=" << glrun->GetRUNTRAILER_PKT() << ") ));";
2173 //
2174 if ( IsDebug() ) printf(" check if run has been inserted: query is \n %s \n",oss.str().c_str());
2175 result = conn->Query(oss.str().c_str());
2176 //
2177 if ( !result ) throw -4;
2178 //
2179 row = result->Next();
2180 //
2181 if ( !row ){
2182 //
2183 // no, insert this run in the GL_RUN_FRAGMENTS table (check if exist before!)
2184 //
2185 if ( IsDebug() ) printf(" The run is new \n");
2186 if ( IsDebug() ) printf(" -> fill the GL_RUNFRAGMENTS table \n");
2187 //
2188 glrun->SetID(this->AssignRunID());
2189 glrun->SetID_RUN_FRAG(0);
2190 glrun->Fill_GL_RUN_FRAGMENTS(conn);
2191 //
2192 } else {
2193 if ( IsDebug() ) printf(" The run is already present in the fragment table \n");
2194 };
2195 } else {
2196 if ( IsDebug() ) printf(" The run is already present in the GL_RUN table \n");
2197 };
2198 };
2199 //
2200 return;
2201 };
2202
2203
2204 /**
2205 * Handle run without header or trailer
2206 **/
2207 void PamelaDBOperations::HandleMissingHoT(Bool_t mishead, Bool_t mistrail, UInt_t firstev, UInt_t lastev){
2208 //
2209 //
2210 // is the piece of run good (no other packets inside)?
2211 //
2212 if ( !this->IsRunConsistent(mishead,mistrail,firstev,lastev)){
2213 //
2214 // if not, handle other pieces and continue with the first one
2215 //
2216 if ( IsDebug() ) printf("The run is not consistent, it contains non-physics packets! The run has been handled \n");
2217 //
2218 } else {
2219 //
2220 this->FillClass(mishead,mistrail,firstev,lastev);
2221 //
2222 if ( !IsRunAlreadyInserted() ){
2223 glrun->SetID(this->AssignRunID());
2224 glrun->SetID_RUN_FRAG(0);
2225 glrun->Fill_GL_RUN(conn);
2226 };
2227 //
2228 };
2229 //
2230 return;
2231 };
2232
2233 /**
2234 *
2235 * check if we have non-physics packets inside the run
2236 *
2237 */
2238 Bool_t PamelaDBOperations::IsRunConsistent(Bool_t mishead, Bool_t mistrail, UInt_t &firstev, UInt_t &lastev){
2239 //
2240 EventCounter *code=0;
2241 //
2242 UInt_t nevent = 0;
2243 UInt_t checkfirst = 0;
2244 UInt_t checklast = 0;
2245 UInt_t firstentry = 0;
2246 UInt_t lastentry = 0;
2247 UInt_t firstTime = 0;
2248 UInt_t lastTime = 0;
2249 UInt_t firstPkt = 0;
2250 UInt_t lastPkt = 0;
2251 UInt_t firstObt = 0;
2252 UInt_t lastObt = 0;
2253 //
2254 pcksList packetsNames;
2255 pcksList::iterator Iter;
2256 getPacketsNames(packetsNames);
2257 //
2258 TTree *T= 0;
2259 T =(TTree*)file->Get("Physics");
2260 if ( !T || T->IsZombie() ) throw -16;
2261 EventHeader *eh = 0;
2262 PscuHeader *ph = 0;
2263 T->SetBranchAddress("Header", &eh);
2264 nevent = T->GetEntries();
2265 //
2266 //
2267 if ( firstev == lastev+1 ) { // no events inside the run!
2268 if ( IsDebug() ) printf(" Checking but no events in the run! \n");
2269 // return true is correct
2270 return(true);
2271 //
2272 } else {
2273 //
2274 T->GetEntry(firstev);
2275 code = eh->GetCounter();
2276 checkfirst = 0;
2277 for(Iter = packetsNames.begin(); Iter != packetsNames.end(); Iter++){
2278 if ( strcmp(*Iter,"Physics") ) checkfirst += code->Get(GetPacketType(*Iter));
2279 };
2280 if ( IsDebug() ) printf(" Check first is %i firstev is %i\n",checkfirst,firstev);
2281 //
2282 T->GetEntry(lastev);
2283 code = eh->GetCounter();
2284 checklast = 0;
2285 for(Iter = packetsNames.begin(); Iter != packetsNames.end(); Iter++){
2286 if ( strcmp(*Iter,"Physics") ) checklast += code->Get(GetPacketType(*Iter));
2287 };
2288 if ( IsDebug() ) printf(" Check last is %i lastev is %i\n",checklast,lastev);
2289 //
2290 if ( checkfirst == checklast ){
2291 //
2292 if ( IsDebug() ) printf(" No packets but physics inside the run, I will consider it as good\n");
2293 //
2294 return(true);
2295 //
2296 } else {
2297 //
2298 if ( IsDebug() ) printf(" There are no-phyics packets inside the run!\n");
2299 //
2300 // HERE WE MUST HANDLE THAT RUNS AND GO BACK
2301 //
2302 if ( IsDebug() ) printf(" Never seen this case, try to handle it anyway, it was throw -95\n");
2303 //
2304 Bool_t emptyruns = false;
2305 UInt_t check = 0;
2306 UInt_t lastevtemp = lastev;
2307 UInt_t firstevno = firstev;
2308 //
2309 for (UInt_t i=firstev; i<=lastev; i++){
2310 //
2311 T->GetEntry(i);
2312 code = eh->GetCounter();
2313 //
2314 check = 0;
2315 //
2316 for(Iter = packetsNames.begin(); Iter != packetsNames.end(); Iter++){
2317 if ( strcmp(*Iter,"Physics") ) check += code->Get(GetPacketType(*Iter));
2318 };
2319 //
2320 if ( checkfirst < check || i == lastev ){
2321 //
2322 firstentry = firstevno;
2323 //
2324 if ( checkfirst < check ){
2325 lastentry = i-1;
2326 } else {
2327 lastentry = i;
2328 };
2329 //
2330 if ( IsDebug() ) printf(" Run between %i and %i entries\n",firstentry,lastentry);
2331 //
2332 glrun->SetEV_FROM(firstentry);
2333 glrun->SetEV_TO(lastentry);
2334 if ( lastentry == (firstentry-1) ){ // no physics packets inside physics run with no runheader no runtrailer
2335 if ( IsDebug() ) printf(" no physics packets inside physics run with no runheader no runtrailer\n");
2336 lastentry--;
2337 };
2338 glrun->SetNEVENTS(lastentry-firstentry+1);
2339 //
2340 glrun->Set_GL_RUNH0();
2341 glrun->Set_GL_RUNT0();
2342 //
2343 glrun->SetLAST_TIMESYNC(0);
2344 glrun->SetOBT_TIMESYNC(0);
2345 //
2346 T->GetEntry(firstentry);
2347 ph = eh->GetPscuHeader();
2348 firstObt = ph->GetOrbitalTime();
2349 firstTime = this->GetAbsTime(firstObt);
2350 firstPkt = ph->GetCounter();
2351 //
2352 T->GetEntry(lastentry);
2353 ph = eh->GetPscuHeader();
2354 lastObt = ph->GetOrbitalTime();
2355 lastTime = this->GetAbsTime(lastObt);
2356 lastPkt = ph->GetCounter();
2357 //
2358 glrun->SetRUNHEADER_PKT(firstPkt);
2359 glrun->SetRUNTRAILER_PKT(lastPkt);
2360 //
2361 glrun->SetRUNHEADER_OBT(firstObt);
2362 glrun->SetRUNTRAILER_OBT(lastObt);
2363 //
2364 if ( firstev == firstentry && !emptyruns && !mishead ){
2365 glrun->Set_GL_RUNH(runh,phh);
2366 firstTime = this->GetAbsTime(phh->GetOrbitalTime());
2367 if ( IsDebug() ) printf(" We have the runheader \n");
2368 };
2369 if ( lastev == i && !mistrail ){
2370 glrun->Set_GL_RUNT(runt,pht);
2371 lastTime = this->GetAbsTime(pht->GetOrbitalTime());
2372 if ( IsDebug() ) printf(" We have the runtrailer \n");
2373 };
2374 //
2375 if ( lastentry == (firstentry-2) ){ // no events in the run
2376 emptyruns = true;
2377 if ( IsDebug() ) printf(" No events in the run \n");
2378 lastTime = firstTime;
2379 if ( (UInt_t)firstTime == this->GetAbsTime(phh->GetOrbitalTime()) ){
2380 lastObt = glrun->RUNHEADER_OBT;
2381 lastPkt = glrun->RUNHEADER_PKT;
2382 } else {
2383 lastObt = firstObt;
2384 lastPkt = firstPkt;
2385 };
2386 glrun->SetRUNTRAILER_PKT(lastPkt);
2387 glrun->SetRUNTRAILER_OBT(lastObt);
2388 lastentry++;
2389 };
2390 //
2391 this->SetCommonGLRUN(firstTime,lastTime);
2392 //
2393 if ( !IsRunAlreadyInserted() ){
2394 glrun->SetID(this->AssignRunID());
2395 glrun->SetID_RUN_FRAG(0);
2396 glrun->Fill_GL_RUN(conn);
2397 };
2398 //
2399 firstevno = lastentry + 1;
2400 //
2401 checkfirst = check;
2402 //
2403 };
2404 //
2405 if ( check == checklast && i != lastev ){
2406 lastevtemp = i - 1;
2407 i = lastev - 1;
2408 };
2409 //
2410 };
2411 //
2412 lastev = lastevtemp;
2413 //
2414 return(false);
2415 //
2416 };
2417 };
2418 //
2419 return(false); // should never arrive here
2420 };
2421
2422 /**
2423 *
2424 * we end up here when we have a runheader and a runtrailer but they seems not belonging to the same run since the number of events does not coincide with the
2425 * number of event written in the runtrailer. We try to split into different runs scanning the physics events from the runheader to the runtrailer and
2426 * looking for non-physics packets inside.
2427 *
2428 */
2429 void PamelaDBOperations::HandleSuspiciousRun(){
2430 //
2431 PacketType *pctp=0;
2432 EventCounter *codt=0;
2433 EventCounter *codh=0;
2434 EventCounter *code=0;
2435 UInt_t firstev = 0;
2436 UInt_t lastev = 0;
2437 UInt_t nevent = 0;
2438 UInt_t checkfirst = 0;
2439 UInt_t checklast = 0;
2440 UInt_t firstentry = 0;
2441 UInt_t lastentry = 0;
2442 UInt_t firstTime = 0;
2443 UInt_t lastTime = 0;
2444 UInt_t firstPkt = 0;
2445 UInt_t lastPkt = 0;
2446 UInt_t firstObt = 0;
2447 UInt_t lastObt = 0;
2448 //
2449 pcksList packetsNames;
2450 pcksList::iterator Iter;
2451 getPacketsNames(packetsNames);
2452 //
2453 TTree *rh=0;
2454 rh = (TTree*)file->Get("RunHeader");
2455 if ( !rh || rh->IsZombie() ) throw -17;
2456 TTree *T=0;
2457 T =(TTree*)file->Get("Physics");
2458 if ( !T || T->IsZombie() ) throw -16;
2459 EventHeader *eh = 0;
2460 PscuHeader *ph = 0;
2461 T->SetBranchAddress("Header", &eh);
2462 nevent = T->GetEntries();
2463 //
2464 codt = eht->GetCounter();
2465 codh = ehh->GetCounter();
2466 firstev = codh->Get(pctp->Physics);
2467 lastev = codt->Get(pctp->Physics)-1;
2468 //
2469 if ( firstev == lastev+1 ) { // no events inside the run!
2470 if ( IsDebug() ) printf(" Checking but no events in the run! \n");
2471 //
2472 this->FillClass();
2473 if ( !IsRunAlreadyInserted() ){
2474 glrun->SetID(this->AssignRunID());
2475 glrun->SetID_RUN_FRAG(0);
2476 glrun->Fill_GL_RUN(conn);
2477 };
2478 //
2479 } else {
2480 //
2481 UInt_t nrunh = 0;
2482 UInt_t nrunh1 = 0;
2483 T->GetEntry(firstev);
2484 code = eh->GetCounter();
2485 checkfirst = 0;
2486 for(Iter = packetsNames.begin(); Iter != packetsNames.end(); Iter++){
2487 if ( strcmp(*Iter,"Physics") ) checkfirst += code->Get(GetPacketType(*Iter));
2488 if ( !strcmp(*Iter,"RunHeader") ) nrunh1++;
2489 };
2490 if ( IsDebug() ) printf(" Check first is %i \n",checkfirst);
2491 //
2492 T->GetEntry(lastev);
2493 code = eh->GetCounter();
2494 checklast = 0;
2495 for(Iter = packetsNames.begin(); Iter != packetsNames.end(); Iter++){
2496 if ( strcmp(*Iter,"Physics") ) checklast += code->Get(GetPacketType(*Iter));
2497 };
2498 if ( IsDebug() ) printf(" Check last is %i \n",checklast);
2499 //
2500 if ( checkfirst == checklast ){
2501 //
2502 if ( IsDebug() ) printf(" No packets but physics inside the run, I will consider it as good\n");
2503 //
2504 this->FillClass();
2505 if ( !IsRunAlreadyInserted() ){
2506 glrun->SetID(this->AssignRunID());
2507 glrun->SetID_RUN_FRAG(0);
2508 glrun->Fill_GL_RUN(conn);
2509 };
2510 //
2511 } else {
2512 //
2513 if ( IsDebug() ) printf(" There are no-physics packets inside the run, try to separate runs \n");
2514 //
2515 Bool_t emptyruns = false;
2516 UInt_t check = 0;
2517 UInt_t firstevno = firstev;
2518 //
2519 for (UInt_t i=firstev; i<=lastev; i++){
2520 //
2521 T->GetEntry(i);
2522 code = eh->GetCounter();
2523 //
2524 check = 0;
2525 //
2526 for(Iter = packetsNames.begin(); Iter != packetsNames.end(); Iter++){
2527 if ( strcmp(*Iter,"Physics") ) check += code->Get(GetPacketType(*Iter));
2528 if ( !strcmp(*Iter,"RunHeader") ) nrunh++;
2529 };
2530 //
2531 if ( checkfirst < check || i == lastev ){
2532 //
2533 firstentry = firstevno;
2534 //
2535 if ( checkfirst < check ){
2536 lastentry = i-1;
2537 } else {
2538 lastentry = i;
2539 };
2540 //
2541 if ( IsDebug() ) printf(" Run between %i and %i entries\n",firstentry,lastentry);
2542 //
2543 glrun->SetEV_FROM(firstentry);
2544 glrun->SetEV_TO(lastentry);
2545 if ( lastentry == (firstentry-1) ){ // no physics packets inside physics run with no runheader no runtrailer
2546 if ( IsDebug() ) printf(" no physics packets inside physics run with no runheader no runtrailer\n");
2547 lastentry--;
2548 };
2549 glrun->SetNEVENTS(lastentry-firstentry+1);
2550 //
2551 glrun->Set_GL_RUNH0();
2552 glrun->Set_GL_RUNT0();
2553 //
2554 glrun->SetLAST_TIMESYNC(0);
2555 glrun->SetOBT_TIMESYNC(0);
2556 //
2557 T->GetEntry(firstentry);
2558 ph = eh->GetPscuHeader();
2559 firstObt = ph->GetOrbitalTime();
2560 firstTime = this->GetAbsTime(firstObt);
2561 firstPkt = ph->GetCounter();
2562 //
2563 T->GetEntry(lastentry);
2564 ph = eh->GetPscuHeader();
2565 lastObt = ph->GetOrbitalTime();
2566 lastTime = this->GetAbsTime(lastObt);
2567 lastPkt = ph->GetCounter();
2568 //
2569 glrun->SetRUNHEADER_PKT(firstPkt);
2570 glrun->SetRUNTRAILER_PKT(lastPkt);
2571 //
2572 glrun->SetRUNHEADER_OBT(firstObt);
2573 glrun->SetRUNTRAILER_OBT(lastObt);
2574 //
2575 if ( (firstev == firstentry && !emptyruns) || nrunh == (nrunh1 + 1) ){
2576 rh->GetEntry(nrunh1-1);
2577 phh = ehh->GetPscuHeader();
2578 nrunh1++;
2579 glrun->Set_GL_RUNH(runh,phh);
2580 firstTime = this->GetAbsTime(phh->GetOrbitalTime());
2581 if ( IsDebug() ) printf(" We have the runheader \n");
2582 };
2583 if ( lastev == i && checkfirst == check ){
2584 glrun->Set_GL_RUNT(runt,pht);
2585 lastTime = this->GetAbsTime(pht->GetOrbitalTime());
2586 if ( IsDebug() ) printf(" We have the runtrailer \n");
2587 };
2588 //
2589 if ( lastentry == (firstentry-2) ){ // no events in the run
2590 emptyruns = true;
2591 if ( IsDebug() ) printf(" No events in the run \n");
2592 lastTime = firstTime;
2593 if ( (UInt_t)firstTime == this->GetAbsTime(phh->GetOrbitalTime()) ){
2594 lastObt = glrun->RUNHEADER_OBT;
2595 lastPkt = glrun->RUNHEADER_PKT;
2596 } else {
2597 lastObt = firstObt;
2598 lastPkt = firstPkt;
2599 };
2600 glrun->SetRUNTRAILER_PKT(lastPkt);
2601 glrun->SetRUNTRAILER_OBT(lastObt);
2602 lastentry++;
2603 };
2604 //
2605 this->SetCommonGLRUN(firstTime,lastTime);
2606 //
2607 if ( !IsRunAlreadyInserted() ){
2608 glrun->SetID(this->AssignRunID());
2609 glrun->SetID_RUN_FRAG(0);
2610 glrun->Fill_GL_RUN(conn);
2611 };
2612 //
2613 if ( i == lastev && checkfirst < check ){ // if the last event gives a wrong check...
2614 //
2615 firstentry = i;
2616 //
2617 lastentry = i;
2618 //
2619 if ( IsDebug() ) printf(" Run between %i and %i entries\n",firstentry,lastentry);
2620 //
2621 glrun->SetEV_FROM(firstentry);
2622 glrun->SetEV_TO(lastentry);
2623 glrun->SetNEVENTS(lastentry-firstentry+1);
2624 //
2625 glrun->Set_GL_RUNH0();
2626 //
2627 glrun->SetLAST_TIMESYNC(0);
2628 glrun->SetOBT_TIMESYNC(0);
2629 //
2630 T->GetEntry(firstentry);
2631 ph = eh->GetPscuHeader();
2632 firstObt = ph->GetOrbitalTime();
2633 firstTime = this->GetAbsTime(firstObt);
2634 firstPkt = ph->GetCounter();
2635 //
2636 glrun->SetRUNHEADER_PKT(firstPkt);
2637 //
2638 glrun->SetRUNHEADER_OBT(firstObt);
2639 //
2640 glrun->Set_GL_RUNT(runt,pht);
2641 lastTime = this->GetAbsTime(pht->GetOrbitalTime());
2642 if ( IsDebug() ) printf(" We have the runtrailer \n");
2643 //
2644 this->SetCommonGLRUN(firstTime,lastTime);
2645 //
2646 if ( !IsRunAlreadyInserted() ){
2647 glrun->SetID(this->AssignRunID());
2648 glrun->SetID_RUN_FRAG(0);
2649 glrun->Fill_GL_RUN(conn);
2650 };
2651 };
2652 //
2653 firstevno = lastentry + 1;
2654 //
2655 checkfirst = check;
2656 //
2657 };
2658 //
2659 if ( check == checklast && i != lastev ) i = lastev - 1; // >>>>>>>>>>>>>>>>>>>>>>
2660 //
2661 };
2662 };
2663 };
2664 //
2665 return;
2666 };
2667
2668
2669 /**
2670 * Scan calorimeter calibrations packets, fill the GL_CALO_CALIB table
2671 */
2672 Int_t PamelaDBOperations::insertCALO_CALIB(){
2673 //
2674 TSQLResult *result = 0;
2675 TSQLRow *row = 0;
2676 //
2677 stringstream oss;
2678 oss.str("");
2679 //
2680 CalibCalPedEvent *calibCalPed = 0;
2681 TTree *tr = 0;
2682 EventHeader *eh = 0;
2683 PscuHeader *ph = 0;
2684 //
2685 UInt_t nevents = 0;
2686 UInt_t fromtime = 0;
2687 UInt_t totime = 0;
2688 UInt_t obt = 0;
2689 UInt_t pkt = 0;
2690 //
2691 tr = (TTree*)file->Get("CalibCalPed");
2692 if ( !tr || tr->IsZombie() ) throw -21;
2693 //
2694 tr->SetBranchAddress("CalibCalPed", &calibCalPed);
2695 tr->SetBranchAddress("Header", &eh);
2696 nevents = tr->GetEntries();
2697 //
2698 if ( !nevents ) return(1);
2699 //
2700 for (UInt_t i=0; i < nevents; i++){
2701 tr->GetEntry(i);
2702 for (UInt_t section = 0; section < 4; section++){
2703 //
2704 if ( calibCalPed->cstwerr[section] ){
2705 valid = 1;
2706 if ( calibCalPed->cperror[section] ) valid = 0;
2707 ph = eh->GetPscuHeader();
2708 obt = ph->GetOrbitalTime();
2709 pkt = ph->GetCounter();
2710 fromtime = this->GetAbsTime(ph->GetOrbitalTime());
2711 if ( this->PKT(pkt) >= this->PKT(pktfirst) && this->OBT(obt) >= this->OBT(obtfirst) ){
2712 //
2713 if ( IsDebug() ) printf(" Calo calibration for section %i at time %i obt %i pkt %i \n",section,fromtime,obt,pkt);
2714 //
2715 // check if the calibration has already been inserted
2716 //
2717 oss.str("");
2718 oss << " SELECT ID FROM GL_CALO_CALIB WHERE "
2719 << " SECTION = "<< section << " AND "
2720 << " BOOT_NUMBER = "<< this->GetBOOTnumber() << " AND "
2721 << " OBT = "<< obt << " AND "
2722 << " PKT = "<< pkt << ";";
2723 //
2724 if ( IsDebug() ) printf(" Check if the calo calibration has already been inserted: query is \n %s \n",oss.str().c_str());
2725 result = conn->Query(oss.str().c_str());
2726 //
2727 if ( !result ) throw -4;
2728 //
2729 row = result->Next();
2730 //
2731 if ( row ){
2732 //
2733 if ( IsDebug() ) printf(" Calo calibration already inserted in the DB\n");
2734 //
2735 } else {
2736 //
2737 // we have to insert a new calibration, check where to place it
2738 //
2739 oss.str("");
2740 oss << " SELECT ID,TO_TIME FROM GL_CALO_CALIB WHERE "
2741 << " SECTION = "<< section << " AND "
2742 << " FROM_TIME < "<< fromtime << " AND "
2743 << " TO_TIME > "<< fromtime << ";";
2744 //
2745 if ( IsDebug() ) printf(" Check where to place the calo calibration: query is \n %s \n",oss.str().c_str());
2746 result = conn->Query(oss.str().c_str());
2747 //
2748 if ( !result ) throw -4;
2749 //
2750 row = result->Next();
2751 //
2752 if ( !row ){
2753 //
2754 // no calibrations in the db contain our calibration
2755 //
2756 if ( IsDebug() ) printf(" Calibration with fromtime lower than others to be inserted in the DB for section %i \n",section);
2757 if ( fromtime < 1150863400 ){
2758 if ( IsDebug() ) printf(" First PAMELA flight calibration at time %i \n",fromtime);
2759 fromtime = 0;// the first flight calibration was taken at about 1156429100 s, this line allow to analyze first runs in raw mode
2760 };
2761 //
2762 oss.str("");
2763 oss << " SELECT FROM_TIME FROM GL_CALO_CALIB WHERE "
2764 << " SECTION = "<< section << " AND "
2765 << " FROM_TIME > "<< fromtime << " ORDER BY FROM_TIME ASC LIMIT 1;";
2766 //
2767 if ( IsDebug() ) printf(" Check the upper limit for calibration: query is \n %s \n",oss.str().c_str());
2768 result = conn->Query(oss.str().c_str());
2769 //
2770 if ( !result ) throw -4;
2771 //
2772 row = result->Next();
2773 if ( !row ){
2774 totime = numeric_limits<UInt_t>::max();
2775 } else {
2776 totime = (UInt_t)atoll(row->GetField(0));
2777 };
2778 //
2779 } else {
2780 //
2781 // determine upper and lower limits and make space for the new calibration
2782 //
2783 totime = (UInt_t)atoll(row->GetField(1));
2784 //
2785 oss.str("");
2786 oss << " UPDATE GL_CALO_CALIB SET "
2787 << " TO_TIME = "<< fromtime << " WHERE " // NOTICE: to_time is equal to from_time of the calibration before, so the interval is: [from_time,to_time[
2788 << " ID = "<< row->GetField(0) << ";";
2789 //
2790 if ( IsDebug() ) printf(" Make space for the new calibration: query is \n %s \n",oss.str().c_str());
2791 result = conn->Query(oss.str().c_str());
2792 //
2793 if ( !result ) throw -4;
2794 //
2795 };
2796 //
2797 oss.str("");
2798 oss << " INSERT INTO GL_CALO_CALIB (ID,ID_ROOT_L0,EV_ROOT,FROM_TIME,TO_TIME,SECTION,OBT,PKT,BOOT_NUMBER,VALIDATION) "
2799 << " VALUES (NULL,' "
2800 << idroot << "','"
2801 << i << "','"
2802 << fromtime << "','"
2803 << totime << "','"
2804 << section << "','"
2805 << obt << "','"
2806 << pkt << "','"
2807 << this->GetBOOTnumber() << "','"
2808 << valid << "');";
2809 //
2810 if ( IsDebug() ) printf(" Insert the new calibration: query is \n %s \n",oss.str().c_str());
2811 //
2812 result = conn->Query(oss.str().c_str());
2813 //
2814 if ( !result ) throw -4;
2815 //
2816 };
2817 //
2818 } else {
2819 //
2820 if ( IsDebug() ) printf(" Repetead calo calibration for section %i at time %i obt %i pkt %i \n",section,fromtime,obt,pkt);
2821 //
2822 };
2823 //
2824 };
2825 };
2826 };
2827 //
2828 return(0);
2829 };
2830
2831 /**
2832 * Fill the GL_TRK_CALIB table
2833 */
2834 void PamelaDBOperations::HandleTRK_CALIB(Bool_t pk1, Bool_t pk2){
2835 //
2836 TSQLResult *result = 0;
2837 TSQLRow *row = 0;
2838 //
2839 stringstream oss;
2840 oss.str("");
2841 //
2842 UInt_t totime = 0;
2843 //
2844 if ( !pk1 && !pk2 ){
2845 if ( IsDebug() ) printf(" Cannot handle trk calibration with both packet missing!\n");
2846 };
2847 //
2848 // check if the calibration has already been inserted
2849 //
2850 oss.str("");
2851 oss << " SELECT ID FROM GL_TRK_CALIB WHERE "
2852 << " BOOT_NUMBER = "<< this->GetBOOTnumber(); //
2853 oss << " AND ( ( ";
2854 if ( pk1 ){
2855 oss << " OBT1 = "<< obt1 << " AND "
2856 << " PKT1 = "<< pkt1
2857 << " ) OR ( ";
2858 } else {
2859 oss << " PKT1 = "<< pkt2-1
2860 << " ) OR ( ";
2861 };
2862 if ( pk2 ){
2863 oss << " OBT2 = "<< obt2 << " AND "
2864 << " PKT2 = "<< pkt2;
2865 } else {
2866 oss << " PKT2 = "<< pkt1+1;
2867 };
2868 oss << " ) );";
2869 //
2870 if ( IsDebug() ) printf(" Check if the trk calibration has already been inserted: query is \n %s \n",oss.str().c_str());
2871 result = conn->Query(oss.str().c_str());
2872 //
2873 if ( !result ) throw -4;
2874 //
2875 row = result->Next();
2876 //
2877 if ( row ){
2878 //
2879 if ( IsDebug() ) printf(" Trk calibration already inserted in the DB\n");
2880 //
2881 } else {
2882 //
2883 // we have to insert a new calibration, check where to place it
2884 //
2885 oss.str("");
2886 oss << " SELECT ID,TO_TIME FROM GL_TRK_CALIB WHERE "
2887 << " FROM_TIME < "<< fromtime << " AND "
2888 << " TO_TIME > "<< fromtime << ";";
2889 //
2890 if ( IsDebug() ) printf(" Check where to place the trk calibration: query is \n %s \n",oss.str().c_str());
2891 result = conn->Query(oss.str().c_str());
2892 //
2893 if ( !result ) throw -4;
2894 //
2895 row = result->Next();
2896 //
2897 if ( !row ){
2898 //
2899 // no calibrations in the db contain our calibration
2900 //
2901 if ( IsDebug() ) printf(" Calibration with fromtime lower than others to be inserted in the DB\n");
2902 if ( fromtime < 1150863400 ) fromtime = 0; // the first flight calibration was taken at about 1150863300 s, this line allows to analyze first runs in raw mode
2903 //
2904 oss.str("");
2905 oss << " SELECT FROM_TIME FROM GL_TRK_CALIB WHERE "
2906 << " FROM_TIME > "<< fromtime << " ORDER BY FROM_TIME ASC LIMIT 1;";
2907 //
2908 if ( IsDebug() ) printf(" Check the upper limit for calibration: query is \n %s \n",oss.str().c_str());
2909 result = conn->Query(oss.str().c_str());
2910 //
2911 if ( !result ) throw -4;
2912 //
2913 row = result->Next();
2914 if ( !row ){
2915 totime = numeric_limits<UInt_t>::max();
2916 } else {
2917 totime = (UInt_t)atoll(row->GetField(0));
2918 };
2919 //
2920 } else {
2921 //
2922 // determine upper and lower limits and make space for the new calibration
2923 //
2924 totime = (UInt_t)atoll(row->GetField(1));
2925 //
2926 oss.str("");
2927 oss << " UPDATE GL_TRK_CALIB SET "
2928 << " TO_TIME = "<< fromtime << " WHERE " // NOTICE: to_time is equal to from_time of the calibration before, so the interval is: [from_time,to_time[
2929 << " ID = "<< row->GetField(0) << ";";
2930 //
2931 if ( IsDebug() ) printf(" Make space for the new trk calibration: query is \n %s \n",oss.str().c_str());
2932 result = conn->Query(oss.str().c_str());
2933 //
2934 if ( !result ) throw -4;
2935 //
2936 };
2937 //
2938 oss.str("");
2939 oss << " INSERT INTO GL_TRK_CALIB (ID,ID_ROOT_L0,EV_ROOT_CALIBTRK1,EV_ROOT_CALIBTRK2,FROM_TIME,TO_TIME,OBT1,PKT1,OBT2,PKT2,BOOT_NUMBER,VALIDATION) "
2940 << " VALUES (NULL,' "
2941 << idroot << "',";
2942 //
2943 if ( !pk1 ){
2944 oss << "NULL,";
2945 } else {
2946 oss << "'"
2947 << t1 << "',";
2948 };
2949 //
2950 if ( !pk2 ){
2951 oss << "NULL,'";
2952 } else {
2953 oss << "'"
2954 << t2 << "','";
2955 };
2956 //
2957 oss << fromtime << "','"
2958 << totime << "','"
2959 << obt1 << "','"
2960 << pkt1 << "','"
2961 << obt2 << "','"
2962 << pkt2 << "','"
2963 << this->GetBOOTnumber() << "','"
2964 << valid << "');";
2965 //
2966 if ( IsDebug() ) printf(" Insert the new trk calibration: query is \n %s \n",oss.str().c_str());
2967 //
2968 result = conn->Query(oss.str().c_str());
2969 //
2970 if ( !result ) throw -4;
2971 //
2972 };
2973 //
2974 };
2975
2976 /**
2977 * Scan tracker calibrations packets, fill the GL_TRK_CALIB table
2978 */
2979 Int_t PamelaDBOperations::insertTRK_CALIB(){
2980 //
2981 CalibTrk1Event *caltrk1 = 0;
2982 CalibTrk2Event *caltrk2 = 0;
2983 TTree *tr1 = 0;
2984 TTree *tr2 = 0;
2985 EventHeader *eh1 = 0;
2986 PscuHeader *ph1 = 0;
2987 EventHeader *eh2 = 0;
2988 PscuHeader *ph2 = 0;
2989 //
2990 PacketType *pctp=0;
2991 EventCounter *codt2=0;
2992 //
2993 Int_t nevents1 = 0;
2994 Int_t nevents2 = 0;
2995 //
2996 fromtime = 0;
2997 //
2998 obt1 = 0;
2999 pkt1 = 0;
3000 obt2 = 0;
3001 pkt2 = 0;
3002 //
3003 tr1 = (TTree*)file->Get("CalibTrk1");
3004 if ( !tr1 || tr1->IsZombie() ) throw -22;
3005 tr2 = (TTree*)file->Get("CalibTrk2");
3006 if ( !tr2 || tr2->IsZombie() ) throw -23;
3007 //
3008 tr1->SetBranchAddress("CalibTrk1", &caltrk1);
3009 tr1->SetBranchAddress("Header", &eh1);
3010 nevents1 = tr1->GetEntries();
3011 tr2->SetBranchAddress("CalibTrk2", &caltrk2);
3012 tr2->SetBranchAddress("Header", &eh2);
3013 nevents2 = tr2->GetEntries();
3014 //
3015 if ( !nevents1 && !nevents2 ) return(1);
3016 //
3017 t2 = -1;
3018 Int_t pret2 = 0;
3019 Int_t t2t1cal = 0;
3020 //
3021 for (t1=0; t1 < nevents1; t1++){
3022 //
3023 pret2 = t2;
3024 tr1->GetEntry(t1);
3025 //
3026 ph1 = eh1->GetPscuHeader();
3027 obt1 = ph1->GetOrbitalTime();
3028 pkt1 = ph1->GetCounter();
3029 fromtime = this->GetAbsTime(ph1->GetOrbitalTime());
3030 //
3031 valid = 1;
3032 //
3033 if ( caltrk1->unpackError != 0 && caltrk1->good0 == 0 ) valid = 0;// CONDITIONS ON THE GOODNESS OF THE CALIBRATION PKT1
3034 //
3035 //
3036 if ( this->PKT(pkt1) >= this->PKT(pktfirst) && this->OBT(obt1) >= this->OBT(obtfirst) ){
3037 //
3038 if ( IsDebug() ) printf(" Trk calibration1 at time %i obt %i pkt %i \n",fromtime,obt1,pkt1);
3039 //
3040 // Do we have the second calibration packet?
3041 //
3042 while ( t2t1cal < t1+1 ){ // get the calibration packet2 that follows the packet1
3043 //
3044 t2++;
3045 //
3046 if ( t2 < nevents2 ){
3047 tr2->GetEntry(t2);
3048 codt2 = eh2->GetCounter();
3049 t2t1cal = codt2->Get(pctp->CalibTrk1);
3050 //
3051 ph2 = eh2->GetPscuHeader();
3052 obt2 = ph2->GetOrbitalTime();
3053 pkt2 = ph2->GetCounter();
3054 //
3055 if ( caltrk2->unpackError != 0 || caltrk2->good0 == 0 ) valid = 0; // CONDITIONS ON THE GOODNESS OF THE CALIBRATION PKT2
3056 //
3057 } else {
3058 //
3059 // running out of vector without finding the corresponding calibration, sig
3060 //
3061 pret2 = t2;
3062 obt2 = 0;
3063 pkt2 = pkt1+2;
3064 t2t1cal = t1+1;
3065 };
3066 if ( this->PKT(pkt2) < this->PKT(pktfirst) && this->OBT(obt2) < this->OBT(obtfirst) ){
3067 //
3068 // running out of vector without finding the corresponding calibration, sig
3069 //
3070 pret2 = t2;
3071 obt2 = 0;
3072 pkt2 = pkt1+2;
3073 t2t1cal = t1+1;
3074 };
3075 //
3076 };
3077 //
3078 if ( IsDebug() ) printf(" Found trk calibration2 at obt %i pkt %i t2 is %i \n",obt2,pkt2,t2);
3079 //
3080 // The calibration is good
3081 //
3082 if ( this->PKT(pkt2) == this->PKT(pkt1)+1 ){
3083 //
3084 if ( IsDebug() ) printf(" The trk calibration2 at obt %i pkt %i t2 is %i is good \n",obt2,pkt2,t2);
3085 //
3086 // Handle good calib
3087 //
3088 this->HandleTRK_CALIB(true,true);
3089 //
3090 // Check for missing calibtrk1
3091 //
3092 if ( t2 != pret2+1 ){
3093 //
3094 if ( IsDebug() ) printf(" Missing the trk calibration1! Next one at obt %i pkt %i t2 is %i pret2 is %i \n",obt2,pkt2,t2,pret2);
3095 //
3096 while ( t2 > pret2+1 ){
3097 //
3098 // handle missing calib1
3099 //
3100 pret2++;
3101 //
3102 obt1 = 0;
3103 pkt1 = 0;
3104 //
3105 tr2->GetEntry(pret2);
3106 ph2 = eh2->GetPscuHeader();
3107 obt2 = ph2->GetOrbitalTime();
3108 pkt2 = ph2->GetCounter();
3109 //
3110 fromtime = this->GetAbsTime(ph2->GetOrbitalTime());
3111 //
3112 valid = 0;
3113 this->HandleTRK_CALIB(false,true);
3114 //
3115 };
3116 //
3117 };
3118 //
3119 } else if ( this->PKT(pkt2) > this->PKT(pkt1)+1 ){
3120 //
3121 // Check for missing calibtrk2
3122 //
3123 if ( IsDebug() ) printf(" Missing the trk calibration2! Next one at obt %i pkt %i t2 is %i\n",obt2,pkt2,t2);
3124 t2 = pret2;
3125 //
3126 // handle missing calib2
3127 //
3128 obt2 = 0;
3129 pkt2 = 0;
3130 valid = 0;
3131 this->HandleTRK_CALIB(true,false);
3132 //
3133 };
3134 //
3135 } else {
3136 //
3137 if ( IsDebug() ) printf(" Repetead trk calibration1 at time %i obt %i pkt %i \n",fromtime,obt1,pkt1);
3138 //
3139 };
3140 //
3141 };
3142 //
3143 // we have one more calib pkt2 !
3144 //
3145 t2++;
3146 while ( t2 < nevents2 ){
3147 //
3148 // handle missing calib1
3149 //
3150 obt1 = 0;
3151 pkt1 = 0;
3152 //
3153 tr2->GetEntry(t2);
3154 ph2 = eh2->GetPscuHeader();
3155 obt2 = ph2->GetOrbitalTime();
3156 pkt2 = ph2->GetCounter();
3157 //
3158 fromtime = this->GetAbsTime(ph2->GetOrbitalTime());
3159 valid = 0;
3160 if ( this->PKT(pkt2) > this->PKT(pktfirst) || this->OBT(obt2) > this->OBT(obtfirst) ){
3161 //
3162 if ( IsDebug() ) printf(" Missing the trk calibration1! Next one at obt %i pkt %i t2 is %i\n",obt2,pkt2,t2);
3163 //
3164 this->HandleTRK_CALIB(false,true);
3165 //
3166 };
3167 //
3168 t2++;
3169 //
3170 };
3171 //
3172 return(0);
3173 };
3174
3175
3176 /**
3177 * Scan S4 calibrations packets, fill the GL_S4_CALIB table
3178 */
3179 Int_t PamelaDBOperations::insertS4_CALIB(){
3180 //
3181 TSQLResult *result = 0;
3182 TSQLRow *row = 0;
3183 //
3184 stringstream oss;
3185 oss.str("");
3186 //
3187 TTree *tr = 0;
3188 EventHeader *eh = 0;
3189 PscuHeader *ph = 0;
3190 //
3191 UInt_t nevents = 0;
3192 UInt_t fromtime = 0;
3193 UInt_t totime = 0;
3194 UInt_t obt = 0;
3195 UInt_t pkt = 0;
3196 //
3197 tr = (TTree*)file->Get("CalibS4");
3198 if ( !tr || tr->IsZombie() ) throw -24;
3199 //
3200 tr->SetBranchAddress("Header", &eh);
3201 //
3202 nevents = tr->GetEntries();
3203 //
3204 if ( !nevents ) return(1);
3205 //
3206 for (UInt_t i = 0; i < nevents; i++){
3207 //
3208 tr->GetEntry(i);
3209 //
3210 ph = eh->GetPscuHeader();
3211 obt = ph->GetOrbitalTime();
3212 pkt = ph->GetCounter();
3213 fromtime = this->GetAbsTime(ph->GetOrbitalTime());
3214 if ( this->PKT(pkt) >= this->PKT(pktfirst) && this->OBT(obt) >= this->OBT(obtfirst) ){
3215 //
3216 if ( IsDebug() ) printf(" S4 calibration at time %i obt %i pkt %i \n",fromtime,obt,pkt);
3217 //
3218 // check if the calibration has already been inserted
3219 //
3220 oss.str("");
3221 oss << " SELECT ID FROM GL_S4_CALIB WHERE "
3222 << " BOOT_NUMBER = "<< this->GetBOOTnumber() << " AND "
3223 << " OBT = "<< obt << " AND "
3224 << " PKT = "<< pkt << ";";
3225 //
3226 if ( IsDebug() ) printf(" Check if the S4 calibration has already been inserted: query is \n %s \n",oss.str().c_str());
3227 result = conn->Query(oss.str().c_str());
3228 //
3229 if ( !result ) throw -4;
3230 //
3231 row = result->Next();
3232 //
3233 if ( row ){
3234 //
3235 if ( IsDebug() ) printf(" S4 calibration already inserted in the DB\n");
3236 //
3237 } else {
3238 //
3239 // we have to insert a new calibration, check where to place it
3240 //
3241 oss.str("");
3242 oss << " SELECT ID,TO_TIME FROM GL_S4_CALIB WHERE "
3243 << " FROM_TIME < "<< fromtime << " AND "
3244 << " TO_TIME > "<< fromtime << ";";
3245 //
3246 if ( IsDebug() ) printf(" Check where to place the S4 calibration: query is \n %s \n",oss.str().c_str());
3247 result = conn->Query(oss.str().c_str());
3248 //
3249 if ( !result ) throw -4;
3250 //
3251 row = result->Next();
3252 //
3253 if ( !row ){
3254 //
3255 // no calibrations in the db contain our calibration
3256 //
3257 if ( IsDebug() ) printf(" Calibration with fromtime lower than others to be inserted in the DB \n");
3258 if ( fromtime < 1150863400 ){
3259 if ( IsDebug() ) printf(" First PAMELA flight calibration at time %i \n",fromtime);
3260 fromtime = 0;// the first flight calibration was taken at about 1156429100 s, this line allow to analyze first runs in raw mode
3261 };
3262 //
3263 oss.str("");
3264 oss << " SELECT FROM_TIME FROM GL_S4_CALIB WHERE "
3265 << " FROM_TIME > "<< fromtime << " ORDER BY FROM_TIME ASC LIMIT 1;";
3266 //
3267 if ( IsDebug() ) printf(" Check the upper limit for calibration: query is \n %s \n",oss.str().c_str());
3268 result = conn->Query(oss.str().c_str());
3269 //
3270 if ( !result ) throw -4;
3271 //
3272 row = result->Next();
3273 if ( !row ){
3274 totime = numeric_limits<UInt_t>::max();
3275 } else {
3276 totime = (UInt_t)atoll(row->GetField(0));
3277 };
3278 //
3279 } else {
3280 //
3281 // determine upper and lower limits and make space for the new calibration
3282 //
3283 totime = (UInt_t)atoll(row->GetField(1));
3284 //
3285 oss.str("");
3286 oss << " UPDATE GL_S4_CALIB SET "
3287 << " TO_TIME = "<< fromtime << " WHERE " // NOTICE: to_time is equal to from_time of the calibration before, so the interval is: [from_time,to_time[
3288 << " ID = "<< row->GetField(0) << ";";
3289 //
3290 if ( IsDebug() ) printf(" Make space for the new calibration: query is \n %s \n",oss.str().c_str());
3291 result = conn->Query(oss.str().c_str());
3292 //
3293 if ( !result ) throw -4;
3294 //
3295 };
3296 //
3297 oss.str("");
3298 oss << " INSERT INTO GL_S4_CALIB (ID,ID_ROOT_L0,EV_ROOT,FROM_TIME,TO_TIME,OBT,PKT,BOOT_NUMBER) "
3299 << " VALUES (NULL,' "
3300 << idroot << "','"
3301 << i << "','"
3302 << fromtime << "','"
3303 << totime << "','"
3304 << obt << "','"
3305 << pkt << "','"
3306 << this->GetBOOTnumber() << "');";
3307 //
3308 if ( IsDebug() ) printf(" Insert the new calibration: query is \n %s \n",oss.str().c_str());
3309 //
3310 result = conn->Query(oss.str().c_str());
3311 //
3312 if ( !result ) throw -4;
3313 //
3314 };
3315 //
3316 } else {
3317 //
3318 if ( IsDebug() ) printf(" Repetead S4 calibration at time %i obt %i pkt %i \n",fromtime,obt,pkt);
3319 //
3320 };
3321 //
3322 };
3323 //
3324 return(0);
3325 };
3326
3327 /**
3328 * Scan the fragment table and move old fragments to the GL_RUN table
3329 */
3330 Int_t PamelaDBOperations::CleanGL_RUN_FRAGMENTS(){
3331 //
3332 TSQLResult *result = 0;
3333 TSQLRow *row = 0;
3334 TSQLResult *result2 = 0;
3335 TSQLRow *row2 = 0;
3336 //
3337 UInt_t moved = 0;
3338 // UInt_t timelim = 0;
3339 // TDatime *time = new TDatime();
3340 //
3341 stringstream oss;
3342 oss.str("");
3343 //
3344 //
3345 // check if there are entries older than "olderthan" seconds from now
3346 //
3347 oss.str("");
3348 oss << " SELECT ID FROM GL_RUN_FRAGMENTS WHERE"
3349 << " INSERT_TIME <= '" << clean_time->AsSQLString() << "';";
3350 //
3351 if ( IsDebug() ) printf(" Select from GL_RUN_FRAGMENTS runs older than %s : query is \n %s \n",clean_time->AsSQLString(),oss.str().c_str());
3352 result = conn->Query(oss.str().c_str());
3353 //
3354 if ( result ){
3355 //
3356 row = result->Next();
3357 //
3358 while ( row ){
3359 //
3360 oss.str("");
3361 oss << " ID= "<< row->GetField(0);
3362 //
3363 glrun->Query_GL_RUN_FRAGMENTS(oss.str().c_str(),conn);
3364 //
3365 oss.str("");
3366 oss << " SELECT ID,NEVENTS,TRK_CALIB_USED,PKT_COUNTER FROM GL_RUN WHERE "
3367 << " BOOT_NUMBER=" << glrun->GetBOOT_NUMBER() << " AND ("
3368 << " (RUNHEADER_TIME>=" << (UInt_t)(glrun->GetRUNHEADER_TIME()-10) << " AND "
3369 << " RUNTRAILER_TIME<=" << (UInt_t)(glrun->GetRUNTRAILER_TIME()+10) << " AND ("
3370 << " RUNHEADER_OBT>=" << glrun->GetRUNHEADER_OBT() << " OR "
3371 << " RUNHEADER_PKT>=" << glrun->GetRUNHEADER_PKT() << ") AND ("
3372 << " RUNTRAILER_OBT<=" << glrun->GetRUNTRAILER_OBT() << " OR "
3373 << " RUNTRAILER_PKT<=" << glrun->GetRUNTRAILER_PKT() << ") ) OR "
3374 << " (RUNHEADER_TIME<=" << (UInt_t)glrun->GetRUNHEADER_TIME() << " AND "
3375 << " RUNTRAILER_TIME>=" << (UInt_t)glrun->GetRUNTRAILER_TIME() <<" AND ("
3376 << " RUNHEADER_OBT<=" << glrun->GetRUNHEADER_OBT() << " OR "
3377 << " RUNHEADER_PKT<=" << glrun->GetRUNHEADER_PKT() << ") AND ("
3378 << " RUNTRAILER_OBT>=" << glrun->GetRUNTRAILER_OBT() << " OR "
3379 << " RUNTRAILER_PKT>=" << glrun->GetRUNTRAILER_PKT() << ") ));";
3380 //
3381 if ( IsDebug() ) printf(" check if run has been inserted: query is \n %s \n",oss.str().c_str());
3382 result2 = conn->Query(oss.str().c_str());
3383 //
3384 if ( !result2 ) throw -4;
3385 //
3386 row2 = result2->Next();
3387 //
3388 if ( !row2 ){
3389 //
3390 if ( IsDebug() ) printf(" The run is new \n");
3391 if ( IsDebug() ) printf(" -> fill the DB \n");
3392 //
3393 // glrun->SetID(this->AssignRunID()); we use the old run number!
3394 glrun->SetID_RUN_FRAG(glrun->GetID());
3395 glrun->Fill_GL_RUN(conn);
3396 //
3397 // oss.str("");
3398 // oss << " SELECT ID FROM GL_RUN WHERE "
3399 // << " BOOT_NUMBER=" << glrun->GetBOOT_NUMBER() << " AND "
3400 // << " RUNHEADER_PKT=" << (UInt_t)glrun->GetRUNHEADER_PKT() << " AND "
3401 // << " RUNTRAILER_PKT=" << (UInt_t)glrun->GetRUNTRAILER_PKT() << " AND "
3402 // << " RUNHEADER_OBT=" << (UInt_t)glrun->GetRUNHEADER_OBT() << " AND "
3403 // << " RUNTRAILER_OBT=" << (UInt_t)glrun->GetRUNTRAILER_OBT() << "; ";
3404 // //
3405 // if ( IsDebug() ) printf(" Look for the ID of the inserted run: query is \n %s \n",oss.str().c_str());
3406 // result2 = conn->Query(oss.str().c_str());
3407 // //
3408 // if ( !result2 ) throw -4;
3409 // //
3410 // row2 = result2->Next();
3411 // //
3412 // if ( !row2 ) throw -25;
3413 // //
3414 // oss.str("");
3415 // oss << " UPDATE GL_RUN SET ID_RUN_FRAG = " << row2->GetField(0) << " WHERE ID = " << row2->GetField(0);
3416 // if ( IsDebug() ) printf(" Update the ID_RUN_FRAG of the inserted run: query is \n %s \n",oss.str().c_str());
3417 // result2 = conn->Query(oss.str().c_str());
3418 // //
3419 // if ( !result2 ) throw -4;
3420 //
3421 moved++;
3422 //
3423 } else {
3424 if ( IsDebug() ) printf(" The already exist in the GL_RUN table! \n");
3425 };
3426 if ( IsDebug() ) printf(" Delete run %s from the GL_RUN_FRAGMENTS table \n",row->GetField(0));
3427 //
3428 //
3429 oss.str("");
3430 oss << " DELETE from GL_RUN_FRAGMENTS where ID = " << row->GetField(0);
3431 if ( IsDebug() ) printf(" Clean the GL_RUN_FRAGMENTS table: query is \n %s \n",oss.str().c_str());
3432 result2 = conn->Query(oss.str().c_str());
3433 //
3434 if ( !result2 ) throw -4;
3435 //
3436 row = result->Next();
3437 };
3438 };
3439 if ( IsDebug() ) printf(" Moved %u runs\n",moved);
3440 return(0);
3441 };
3442
3443 /**
3444 * Check if runs are good, i.e. if the tracker calibration is correctly associated..
3445 */
3446 Int_t PamelaDBOperations::ValidateRuns(){
3447 //
3448 TSQLResult *result = 0;
3449 TSQLRow *row = 0;
3450 //
3451 stringstream oss;
3452 oss.str("");
3453 //
3454 // =======================================================
3455 // validate runs by checking missing calibrations
3456 // =======================================================
3457 UInt_t t_stop = 0;
3458 UInt_t t_start = 0;
3459 // --------------------------------------------------------------
3460 // 1) get the OBT of the last run inserted after clean-time limit
3461 // --------------------------------------------------------------
3462 oss.str("");
3463 oss << " SELECT * FROM GL_RUN WHERE INSERT_TIME <= '" << clean_time->AsSQLString()
3464 << "' ORDER BY RUNHEADER_TIME DESC LIMIT 1;";
3465 if ( IsDebug() ) printf(" Get start validation-time: query is \n %s \n",oss.str().c_str());
3466 result = conn->Query(oss.str().c_str());
3467 if ( !result ) throw -4;
3468 if ( !result->GetRowCount() ) {
3469 printf(" No runs to validate \n");
3470 return(1);
3471 }else{
3472 row = result->Next();
3473 t_start = (UInt_t)atoll(row->GetField(4));
3474 };
3475 // --------------------------------------------------------------
3476 // 2) get the OBT of the last validated run
3477 // --------------------------------------------------------------
3478 oss.str("");
3479 oss << " SELECT * FROM GL_RUN WHERE VALIDATION=1 AND RUNHEADER_TIME<="<< t_start
3480 <<" ORDER BY RUNHEADER_TIME DESC LIMIT 1;";
3481 if ( IsDebug() ) printf(" Get stop validation-time: query is \n %s \n",oss.str().c_str());
3482 result = conn->Query(oss.str().c_str());
3483 if ( !result ) throw -4;
3484 if ( result->GetRowCount() ){
3485 row = result->Next();
3486 t_stop = (UInt_t)atoll(row->GetField(4));
3487 };
3488 if ( IsDebug() ) printf("Validation interval: from time %i - to time %i \n\n",t_stop,t_start);
3489 // --------------------------------------------------------------
3490 // now retrieves runs to be validated
3491 // --------------------------------------------------------------
3492 oss.str("");
3493 oss << " SELECT * FROM GL_RUN WHERE RUNHEADER_TIME <=" << t_start;
3494 oss << " AND RUNHEADER_TIME >="<< t_stop;
3495 oss << " ORDER BY RUNHEADER_TIME DESC;";
3496 // if ( IsDebug() )
3497 if ( IsDebug() )printf(" Check runs for validation: query is \n %s \n",oss.str().c_str());
3498 result = conn->Query(oss.str().c_str());
3499 if ( !result ) throw -4;
3500 if ( !result->GetRowCount() ) printf(" No runs to validate \n");
3501 // printf("------------------------------------------------------------------------------- \n");
3502
3503 Int_t nrow = 0;
3504 GL_RUN* this_run = new GL_RUN();
3505 GL_RUN* next_run = new GL_RUN();
3506 Int_t nseq_max = 1000;
3507 // UInt_t* sequence = new UInt_t[100];
3508 vector<UInt_t> sequence(nseq_max);
3509 Int_t nseq = 0;
3510 Bool_t CHECK = false;
3511 Bool_t this_ONLINE = false;
3512 Bool_t next_ONLINE = false;
3513 UInt_t t1=0,t2=0;
3514 // ---------------------------------------------------------------------------------
3515 // - loop over runs, back in time,
3516 // - select sequences of runs close in time (less than 60 s apart),
3517 // which could be preceeded by a calibration
3518 // - check if there might be a missing calibration
3519 // ---------------------------------------------------------------------------------
3520 while(1){
3521
3522 row = result->Next();
3523 if( row == NULL ) break;
3524
3525 //------------
3526 //get run info
3527 //------------
3528 this_run->Set_GL_RUN(row);
3529
3530 Bool_t this_BAD = false;
3531 if(this_run->GetTRK_CALIB_USED() == 1 || this_run->GetTRK_CALIB_USED() == 2) this_ONLINE = true;
3532 else if (this_run->GetTRK_CALIB_USED() == 104) this_ONLINE = false;
3533 else{
3534 // printf("Missing or corrupted header!! \n");
3535 this_ONLINE = false;
3536 this_BAD = true;
3537 };
3538
3539 //-----------------------------------
3540 //compare with previous(next in time)
3541 //-----------------------------------
3542 CHECK = false;
3543 UInt_t interval=0;
3544
3545 if( nrow != 0){
3546
3547
3548 t1 = this_run->GetRUNTRAILER_TIME();
3549 t2 = next_run->GetRUNHEADER_TIME();
3550 interval = (t2-t1);
3551
3552 if(this_ONLINE && next_ONLINE){ // this: ON-LINE + next: ON-LINE
3553
3554 if( this_run->ID == next_run->ID_RUN_FRAG ) interval = 0; //=> run fragments
3555
3556 if( interval >= 60 )CHECK = true; //more than 60 s => there might be a calibration
3557
3558 if( !CHECK && this_run->VALIDATION ){
3559 for (Int_t irun = 0; irun < nseq; irun++)assignVALIDATION(sequence[irun],true);
3560 nseq=0;
3561 }
3562
3563 }else if( !this_ONLINE && next_ONLINE) { // this: DEFAULT + next:ON-LINE
3564
3565 CHECK = true;
3566
3567 }else if( !next_ONLINE ){ // this:ANY + next:DEFAULT
3568
3569 assignVALIDATION(next_run->ID,true);
3570 nseq=0;
3571 }
3572 }
3573
3574 //----------------------------
3575 //check run sequence for calib
3576 //----------------------------
3577 if( CHECK ){
3578 // check if calibration exists
3579 if ( IsDebug() )printf("DT %i ===> CHECK Missing calibration\n",interval);
3580 Bool_t MISSING = MissingTRK_CALIB(t1,t2);
3581 for (Int_t irun = 0; irun < nseq; irun++)assignVALIDATION(sequence[irun],!MISSING);
3582 nseq=0;
3583 };
3584 //--------------
3585 //store run info
3586 //--------------
3587 *next_run = *this_run;
3588 next_ONLINE = this_ONLINE;
3589 if( !this_BAD ){
3590 if(nseq < nseq_max){
3591 sequence[nseq] = this_run->ID;
3592 nseq++;
3593 }else printf("ValidateRuns ***WARNING*** : run sequence exceed assumed size (%i) \n",nseq_max);
3594 };
3595
3596 if ( IsDebug() ) printf("%i Run %i \n",nrow,this_run->ID);
3597 nrow++;
3598
3599 };
3600 delete this_run;
3601 delete next_run;
3602 //
3603 return(0);
3604 };
3605 /**
3606 * Check if there might be a missing tracker calibration in a given time interval
3607 * @param t1 From absolute time
3608 * @param t2 To absolute time
3609 * @return true if there might be a missing calibration
3610 */
3611 Bool_t PamelaDBOperations::MissingTRK_CALIB(UInt_t t1,UInt_t t2){
3612
3613 GL_TRK_CALIB* trkcalib = new GL_TRK_CALIB();
3614
3615 // get the closest VALIDATED calibration before the run start (t2)
3616 if ( trkcalib->Query_GL_TRK_CALIB(t2, conn) )return(true); //>>> missing
3617
3618 if ( trkcalib->TO_TIME < t2 ) return(true); //>>> missing
3619
3620 //==============================================================
3621 // Check is done first on the basis of time between calibration,
3622 // which should be equal to the time between ascending-nodes.
3623 //==============================================================
3624 if ( t2 - trkcalib->FROM_TIME > 5700) {
3625 if ( IsDebug() )printf("Long time between calib and run start %i :-( ==> there might be a missing calib \n",t2 - trkcalib->FROM_TIME);
3626 //==============================================================
3627 // there might be a missing calibration, due to:
3628 // - MM full
3629 // - corrupted packets
3630 // - loss of data
3631 // There is an exception in case a download was done during ascending node
3632 //==============================================================
3633 Bool_t DOWNLOAD = false;
3634 // check if the calib was skipped becouse of download .... DA FARE!!
3635 if(DOWNLOAD)return(false);
3636
3637 return(true); //>>> missing
3638
3639 };
3640
3641 //==============================================================
3642 // If the last calibration is close to the run less than this time,
3643 // it is enough to say that there are no missing calibrations
3644 //==============================================================
3645 // the long time interval bewteen runs might be due to download
3646 if ( IsDebug() )printf("Short time between calib and run start %i :-) ==> OK! \n",t2 - trkcalib->FROM_TIME);
3647 return(false);
3648
3649 };
3650 /**
3651 * Assign VALIDATION value to a GL_RUN entry
3652 * @param idrun Run ID
3653 * @param validation true/false
3654 */
3655 Int_t PamelaDBOperations::assignVALIDATION(UInt_t idrun, Bool_t validation){
3656 TSQLResult *result = 0;
3657 stringstream oss;
3658 oss.str("");
3659 oss << " UPDATE GL_RUN SET VALIDATION="<< (UInt_t)validation <<" WHERE ID= " << idrun << ";";
3660 //
3661 // if ( IsDebug() )
3662 // printf(" Set VALIDATION = %i for run %i \n",validation,idrun);
3663 if ( IsDebug() )printf(" Query: %s \n",oss.str().c_str());
3664 result = conn->Query(oss.str().c_str());
3665 if ( !result ) throw -4;
3666 return(0);
3667 }
3668
3669
3670
3671 // Insert TLEs from file tlefilename in the table GL_TLE in the db
3672 // opened by conn, sorting them by date from older to newer, if each
3673 // TLE has not been alread inserted.
3674 Int_t PamelaDBOperations::populateTLE()//(TSQLServer *conn, char *tleFile)
3675 {
3676 fstream tlefile(tlefilename, ios::in);
3677
3678 if ( !tlefile ) throw -7;
3679
3680 vector<cTle*> ctles;
3681 vector<cTle*>::iterator iter;
3682 int present = 0;
3683
3684 // Get three lines from tlefile, create a cTle object and put it
3685 // into ctles
3686 while(1) {
3687 cTle *tlef;
3688 string str1, str2, str3;
3689
3690 getline(tlefile, str1);
3691 if(tlefile.eof()) break;
3692
3693 getline(tlefile, str2);
3694 if(tlefile.eof()) break;
3695
3696 getline(tlefile, str3);
3697 if(tlefile.eof()) break;
3698
3699 // We now have three good lines for a cTle.
3700 tlef = new cTle(str1, str2, str3);
3701 ctles.push_back(tlef);
3702 }
3703
3704 tlefile.close();
3705
3706 // Sort by date
3707 sort(ctles.begin(), ctles.end(), compTLE);
3708
3709 // Now we insert each TLE into the db
3710 for(iter = ctles.begin(); iter != ctles.end(); iter++) {
3711 cTle *tle = *iter;
3712
3713 // Do nothing if it's already present in the db. Just increase
3714 // the counter present.
3715 if (! isTlePresent(tle))
3716 {
3717 int status = insertTle(tle);
3718
3719 // Insert query failed. Return 1.
3720 if(status == EXIT_FAILURE) {
3721
3722 if( IsDebug() ) {
3723 cerr << "Error: inserting TLE:" << endl
3724 << tle->getName() << endl
3725 << tle->getLine1() << endl
3726 << tle->getLine2() << endl;
3727 }
3728
3729 throw -4;
3730 return 1;
3731 }
3732
3733 }
3734 else
3735 present++;
3736
3737 }
3738
3739 int inserted = ctles.size() - present; // Number of inserted TLE.
3740 if ( IsDebug() )
3741 cout << "\nProcessed TLEs ranging from " << getTleDatetime(ctles[0]) << " to " << getTleDatetime(ctles[ctles.size()-1]) << "." << endl
3742 << inserted << " newly inserted TLEs out of " << ctles.size() << " processed." << endl;
3743
3744 ctles.clear();
3745
3746
3747 // Return 2 if no new TLE has been inserted. 0 otherwise.
3748 if(! inserted ) return 2;
3749 return 0;
3750 }
3751
3752
3753 // Insert tle in the table GL_TLE using the connection conn.
3754 int PamelaDBOperations::insertTle(cTle *tle)
3755 {
3756 stringstream oss;
3757 TSQLResult *result = 0;
3758
3759 oss.str("");
3760 oss << " INSERT INTO GL_TLE (TLE1, TLE2, TLE3, FROM_TIME)"
3761 << " VALUES ( '"
3762 << tle->getName() << "', '"
3763 << tle->getLine1() << "', '"
3764 << tle->getLine2() << "', '"
3765 << getTleDatetime(tle) << "')";
3766
3767 // cout << oss.str().c_str() << endl;
3768 result = conn->Query(oss.str().c_str());
3769 if (result == NULL)
3770 return EXIT_FAILURE;
3771
3772 return EXIT_SUCCESS;
3773 }
3774
3775
3776 // Return whether tle is already in the db connected by conn.
3777 bool PamelaDBOperations::isTlePresent(cTle *tle)
3778 {
3779 stringstream oss;
3780 TSQLResult *result = 0;
3781
3782 oss.str("");
3783 oss << "SELECT * FROM GL_TLE WHERE FROM_TIME = '"
3784 << getTleDatetime(tle) << "'";
3785
3786 result = conn->Query(oss.str().c_str());
3787 if (result == NULL) throw -4;
3788
3789 if (result->GetRowCount())
3790 return true;
3791 else
3792 return false;
3793 }
3794
3795
3796 // Return whether the first TLE is dated early than the second
3797 bool compTLE (cTle *tle1, cTle *tle2)
3798 {
3799 return getTleJulian(tle1) < getTleJulian(tle2);
3800 }
3801
3802
3803 // Return the date of the tle using the format (year-2000)*1e3 +
3804 // julian day. e.g. 6365 is the 31th Dec 2006.
3805 // It does *not* return a cJulian date.
3806 float getTleJulian(cTle *tle) {
3807 return tle->getField(cTle::FLD_EPOCHYEAR)*1e3 + tle->getField(cTle::FLD_EPOCHDAY);
3808 }
3809
3810
3811 // Return a string like YYYY-MM-DD hh:mm:ss, usable for mysql datetime
3812 // format.
3813 string getTleDatetime(cTle *tle)
3814 {
3815 int year, mon, day, hh, mm, ss;
3816 double dom; // day of month (is double!)
3817 stringstream date; // date in datetime format
3818
3819 // create a cJulian from the date in tle
3820 cJulian jdate = cJulian( 2000 + (int) tle->getField(cTle::FLD_EPOCHYEAR), tle->getField(cTle::FLD_EPOCHDAY));
3821
3822 // get year, month, day of month
3823 jdate.getComponent(&year, &mon, &dom);
3824
3825 // build a datetime YYYY-MM-DD hh:mm:ss
3826 date.str("");
3827 day = (int) floor(dom);
3828 hh = (int) floor( (dom - day) * 24);
3829 mm = (int) floor( ((dom - day) * 24 - hh) * 60);
3830 ss = (int) floor( ((((dom - day) * 24 - hh) * 60 - mm) * 60));
3831 // ms = (int) floor( (((((dom - day) * 24 - hh) * 60 - mm) * 60) - ss) * 1000);
3832
3833 date << year << "-" << mon << "-" << day << " " << hh << ":" << mm << ":" << ss;
3834
3835 return date.str();
3836 }

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