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f16f149b 1/*
2
442e1b18 3This program reads the DAQ data files passed as argument using the monitoring library.
f16f149b 4
442e1b18 5It computes the average event size and populates local "./result.txt" file with the
6result.
f16f149b 7
442e1b18 8The program reports about its processing progress.
f16f149b 9
10Messages on stdout are exported to DAQ log system.
11
f9641c3b 12DA for ZDC standalone CALIBRATION_EMD runs
442e1b18 13
ea628de7 14Contact: Chiara.Oppedisano@to.infn.it
442e1b18 15Link:
ea628de7 16Run Type: STANDALONE_EMD_RUN
442e1b18 17DA Type: LDC
18Number of events needed: at least ~5*10^3
ea628de7 19Input Files: ZDCPedestal.dat
442e1b18 20Output Files: ZDCEMDCalib.dat, ZDCChMapping.dat
ea628de7 21Trigger Types Used: Standalone Trigger
f16f149b 22
23*/
78beff0d 24#define PEDDATA_FILE "ZDCPedestal.dat"
218f916a 25#define MAPDATA_FILE "ZDCChMapping.dat"
92fdeb0e 26#define ENCALIBDATA_FILE "ZDCEnergyCalib.dat"
f9641c3b 27#define TOWCALIBDATA_FILE "ZDCTowerCalib.dat"
f16f149b 28
29#include <stdio.h>
30#include <Riostream.h>
442e1b18 31#include <Riostream.h>
f16f149b 32
33// DATE
34#include <daqDA.h>
35#include <event.h>
36#include <monitor.h>
37
38//ROOT
f9641c3b 39#include <TROOT.h>
40#include <TPluginManager.h>
f16f149b 41#include <TH1F.h>
42#include <TH2F.h>
43#include <TProfile.h>
44#include <TF1.h>
45#include <TFile.h>
442e1b18 46#include <TFitter.h>
f9641c3b 47#include "TMinuitMinimizer.h"
f16f149b 48
49//AliRoot
50#include <AliRawReaderDate.h>
442e1b18 51#include <AliRawEventHeaderBase.h>
f16f149b 52#include <AliZDCRawStream.h>
53
54
55/* Main routine
56 Arguments:
57 1- monitoring data source
58*/
59int main(int argc, char **argv) {
60
f9641c3b 61
62 gROOT->GetPluginManager()->AddHandler("TVirtualStreamerInfo",
63 "*",
64 "TStreamerInfo",
65 "RIO",
66 "TStreamerInfo()");
67
68 TMinuitMinimizer m;
69 gROOT->GetPluginManager()->AddHandler("ROOT::Math::Minimizer", "Minuit","TMinuitMinimizer",
70 "Minuit", "TMinuitMinimizer(const char *)");
71 TVirtualFitter::SetDefaultFitter("Minuit");
442e1b18 72
73 int status = 0;
f9641c3b 74 // No. of ZDC cabled ch.
198f612a 75 int const kNModules = 10;
f9641c3b 76 int const kNChannels = 24;
27afc0c8 77 int const kNScChannels = 32;
8700404e 78 Int_t kFirstADCGeo=0, kLastADCGeo=3;
198f612a 79
80 Int_t iMod=-1;
81 Int_t modGeo[kNModules], modType[kNModules],modNCh[kNModules];
82 for(Int_t kl=0; kl<kNModules; kl++){
83 modGeo[kl]=modType[kl]=modNCh[kl]=0;
84 }
85
778b6939 86 Int_t ich=0;
87 Int_t adcMod[2*kNChannels], adcCh[2*kNChannels], sigCode[2*kNChannels];
88 Int_t det[2*kNChannels], sec[2*kNChannels];
89 for(Int_t y=0; y<2*kNChannels; y++){
90 adcMod[y]=adcCh[y]=sigCode[y]=det[y]=sec[y]=0;
91 }
198f612a 92
93 Int_t iScCh=0;
94 Int_t scMod[kNScChannels], scCh[kNScChannels], scSigCode[kNScChannels];
95 Int_t scDet[kNScChannels], scSec[kNScChannels];
96 for(Int_t y=0; y<kNScChannels; y++){
97 scMod[y]=scCh[y]=scSigCode[y]=scDet[y]=scSec[y]=0;
98 }
82dffa48 99
100 Int_t itdcCh=0;
101 Int_t tdcMod[kNScChannels], tdcCh[kNScChannels], tdcSigCode[kNScChannels];
102 Int_t tdcDet[kNScChannels], tdcSec[kNScChannels];
103 for(Int_t y=0; y<kNScChannels; y++){
104 tdcMod[y]=tdcCh[y]=tdcSigCode[y]=tdcDet[y]=tdcSec[y]=-1;
105 }
442e1b18 106
107 /* log start of process */
108 printf("ZDC EMD program started\n");
109
110 /* check that we got some arguments = list of files */
111 if (argc<2) {
112 printf("Wrong number of arguments\n");
113 return -1;
114 }
115
f16f149b 116 // --- Preparing histos for EM dissociation spectra
117 //
118 TH1F* histoEMDRaw[4];
119 TH1F* histoEMDCorr[4];
e968a349 120 //
f16f149b 121 char namhistr[50], namhistc[50];
122 for(Int_t i=0; i<4; i++) {
123 if(i==0){
124 sprintf(namhistr,"ZN%d-EMDRaw",i+1);
125 sprintf(namhistc,"ZN%d-EMDCorr",i+1);
126 }
127 else if(i==1){
128 sprintf(namhistr,"ZP%d-EMDRaw",i);
129 sprintf(namhistc,"ZP%d-EMDCorr",i);
130 }
131 else if(i==2){
132 sprintf(namhistr,"ZN%d-EMDRaw",i);
133 sprintf(namhistc,"ZN%d-EMDCorr",i);
134 }
135 else if(i==3){
136 sprintf(namhistr,"ZP%d-EMDRaw",i-1);
137 sprintf(namhistc,"ZP%d-EMDCorr",i-1);
138 }
139 histoEMDRaw[i] = new TH1F(namhistr,namhistr,100,0.,4000.);
140 histoEMDCorr[i] = new TH1F(namhistc,namhistc,100,0.,4000.);
141 }
142
e968a349 143 // --- Preparing histos for tower inter-calibration
144 //
145 TH1F* histZNCtow[4]; TH1F* histZPCtow[4];
146 TH1F* histZNAtow[4]; TH1F* histZPAtow[4];
147 //
148 char namhistznc[50], namhistzpc[50];
149 char namhistzna[50], namhistzpa[50];
150 for(Int_t i=0; i<4; i++) {
151 sprintf(namhistznc,"ZNC-tow%d",i+1);
152 sprintf(namhistzpc,"ZPC-tow%d",i+1);
153 sprintf(namhistzna,"ZNA-tow%d",i+1);
154 sprintf(namhistzpa,"ZPA-tow%d",i+1);
155 //
156 histZNCtow[i] = new TH1F(namhistznc,namhistznc,100,0.,4000.);
157 histZPCtow[i] = new TH1F(namhistzpc,namhistzpc,100,0.,4000.);
158 histZNAtow[i] = new TH1F(namhistzna,namhistzna,100,0.,4000.);
159 histZPAtow[i] = new TH1F(namhistzpa,namhistzpa,100,0.,4000.);
160 }
161
f16f149b 162 /* open result file */
163 FILE *fp=NULL;
164 fp=fopen("./result.txt","a");
165 if (fp==NULL) {
166 printf("Failed to open file\n");
167 return -1;
168 }
169
442e1b18 170 FILE *mapFile4Shuttle;
218f916a 171
f9641c3b 172 // *** To analyze EMD events you MUST have a pedestal data file!!!
173 // *** -> check if a pedestal run has been analyzed
78beff0d 174 int read = 0;
218f916a 175 read = daqDA_DB_getFile(PEDDATA_FILE,PEDDATA_FILE);
78beff0d 176 if(read){
177 printf("\t ERROR!!! ZDCPedestal.dat file NOT FOUND in DAQ db!!!\n");
f16f149b 178 return -1;
179 }
78beff0d 180 else printf("\t ZDCPedestal.dat file retrieved from DAQ db\n");
181
182 FILE *filePed = fopen(PEDDATA_FILE,"r");
183 if (filePed==NULL) {
184 printf("\t ERROR!!! Can't open ZDCPedestal.dat file!!!\n");
f16f149b 185 return -1;
186 }
187
78beff0d 188 // 144 = 48 in-time + 48 out-of-time + 48 correlations
f9641c3b 189 Float_t readValues[2][3*2*kNChannels];
190 Float_t MeanPed[2*kNChannels];
191 Float_t CorrCoeff0[2*kNChannels], CorrCoeff1[2*kNChannels];
78beff0d 192 // ***************************************************
193 // Unless we have a narrow correlation to fit we
194 // don't fit and store in-time vs. out-of-time
195 // histograms -> mean pedstal subtracted!!!!!!
196 // ***************************************************
78beff0d 197 //
f9641c3b 198 for(int jj=0; jj<6*kNChannels; jj++){
78beff0d 199 for(int ii=0; ii<2; ii++){
200 fscanf(filePed,"%f",&readValues[ii][jj]);
201 }
778b6939 202 if(jj<2*kNChannels){
78beff0d 203 MeanPed[jj] = readValues[0][jj];
778b6939 204 printf("\t MeanPed[%d] = %1.1f\n",jj, MeanPed[jj]);
78beff0d 205 }
778b6939 206 else if(jj>2*kNChannels){
f9641c3b 207 CorrCoeff0[jj-4*kNChannels] = readValues[0][jj];
208 CorrCoeff1[jj-4*kNChannels] = readValues[1][jj];;
78beff0d 209 }
78beff0d 210 }
f16f149b 211
442e1b18 212 /* report progress */
213 daqDA_progressReport(10);
214
215
f16f149b 216 /* init some counters */
217 int nevents_physics=0;
218 int nevents_total=0;
219
d3f256ca 220 struct eventHeaderStruct *event;
221 eventTypeType eventT;
222
442e1b18 223 /* read the data files */
224 int n;
225 for(n=1;n<argc;n++){
226
227 status=monitorSetDataSource( argv[n] );
f16f149b 228 if (status!=0) {
442e1b18 229 printf("monitorSetDataSource() failed : %s\n",monitorDecodeError(status));
230 return -1;
f16f149b 231 }
232
442e1b18 233 /* report progress */
234 /* in this example, indexed on the number of files */
235 daqDA_progressReport(10+80*n/argc);
236
237 /* read the file */
238 for(;;){
f16f149b 239
442e1b18 240 /* get next event */
241 status=monitorGetEventDynamic((void **)&event);
242 if(status==MON_ERR_EOF) break; /* end of monitoring file has been reached */
243 if(status!=0) {
244 printf("monitorGetEventDynamic() failed : %s\n",monitorDecodeError(status));
245 return -1;
246 }
f16f149b 247
442e1b18 248 /* retry if got no event */
249 if(event==NULL) {
250 break;
251 }
252
253 // Initalize raw-data reading and decoding
254 AliRawReader *reader = new AliRawReaderDate((void*)event);
255 reader->Select("ZDC");
256 // --- Reading event header
257 //UInt_t evtype = reader->GetType();
258 //printf("\n\t ZDCEMDda -> ev. type %d\n",evtype);
259 //printf("\t ZDCEMDda -> run # %d\n",reader->GetRunNumber());
260 //
261 AliZDCRawStream *rawStreamZDC = new AliZDCRawStream(reader);
262
263
264 /* use event - here, just write event id to result file */
265 eventT=event->eventType;
266
442e1b18 267 if(eventT==START_OF_DATA){
198f612a 268
27afc0c8 269 rawStreamZDC->SetSODReading(kTRUE);
270
f9641c3b 271 // --------------------------------------------------------
272 // --- Writing ascii data file for the Shuttle preprocessor
273 mapFile4Shuttle = fopen(MAPDATA_FILE,"w");
442e1b18 274 if(!rawStreamZDC->Next()) printf(" \t No raw data found!! \n");
275 else{
27afc0c8 276 while((rawStreamZDC->Next())){
277 if(rawStreamZDC->IsHeaderMapping()){ // mapping header
198f612a 278 iMod++;
279 modGeo[iMod] = rawStreamZDC->GetADCModule();
280 modType[iMod] = rawStreamZDC->GetModType();
281 modNCh[iMod] = rawStreamZDC->GetADCNChannels();
27afc0c8 282 }
283 if(rawStreamZDC->IsChMapping()){
198f612a 284 if(modType[iMod]==1){ // ADC mapping ----------------------
27afc0c8 285 adcMod[ich] = rawStreamZDC->GetADCModFromMap(ich);
286 adcCh[ich] = rawStreamZDC->GetADCChFromMap(ich);
287 sigCode[ich] = rawStreamZDC->GetADCSignFromMap(ich);
288 det[ich] = rawStreamZDC->GetDetectorFromMap(ich);
289 sec[ich] = rawStreamZDC->GetTowerFromMap(ich);
27afc0c8 290 ich++;
291 }
198f612a 292 else if(modType[iMod]==2){ //VME scaler mapping --------------------
27afc0c8 293 scMod[iScCh] = rawStreamZDC->GetScalerModFromMap(iScCh);
294 scCh[iScCh] = rawStreamZDC->GetScalerChFromMap(iScCh);
295 scSigCode[iScCh] = rawStreamZDC->GetScalerSignFromMap(iScCh);
296 scDet[iScCh] = rawStreamZDC->GetScDetectorFromMap(iScCh);
198f612a 297 scSec[iScCh] = rawStreamZDC->GetScTowerFromMap(iScCh);
27afc0c8 298 iScCh++;
299 }
82dffa48 300 else if(modType[iMod]==6 && modGeo[iMod]==4){ // ZDC TDC mapping --------------------
301 tdcMod[itdcCh] = rawStreamZDC->GetTDCModFromMap(itdcCh);
302 tdcCh[itdcCh] = rawStreamZDC->GetTDCChFromMap(itdcCh);
303 tdcSigCode[itdcCh] = rawStreamZDC->GetTDCSignFromMap(itdcCh);
304 itdcCh++;
305 }
442e1b18 306 }
198f612a 307 }
308 // Writing data on output FXS file
198f612a 309 for(Int_t is=0; is<2*kNChannels; is++){
310 fprintf(mapFile4Shuttle,"\t%d\t%d\t%d\t%d\t%d\t%d\n",
311 is,adcMod[is],adcCh[is],sigCode[is],det[is],sec[is]);
312 //printf(" EMD DA -> %d ADC: mod %d ch %d, code %d det %d, sec %d\n",
313 // is,adcMod[is],adcCh[is],sigCode[is],det[is],sec[is]);
314 }
315 for(Int_t is=0; is<kNScChannels; is++){
316 fprintf(mapFile4Shuttle,"\t%d\t%d\t%d\t%d\t%d\t%d\n",
317 is,scMod[is],scCh[is],scSigCode[is],scDet[is],scSec[is]);
318 //printf(" EMD DA -> %d Scaler: mod %d ch %d, code %d det %d, sec %d\n",
319 // is,scMod[is],scCh[is],scSigCode[is],scDet[is],scSec[is]);
442e1b18 320 }
82dffa48 321 for(Int_t is=0; is<kNScChannels; is++){
322 fprintf(mapFile4Shuttle,"\t%d\t%d\t%d\t%d\n",
323 is,tdcMod[is],tdcCh[is],tdcSigCode[is]);
324 //if(tdcMod[is]!=-1) printf(" Mapping DA -> %d TDC: mod %d ch %d, code %d\n",
325 // is,tdcMod[is],tdcCh[is],tdcSigCode[is]);
326 }
e3ddb73e 327 for(Int_t is=0; is<kNModules; is++){
328 fprintf(mapFile4Shuttle,"\t%d\t%d\t%d\n",
329 modGeo[is],modType[is],modNCh[is]);
330 //printf(" EMD DA -> Module mapping: geo %d type %d #ch %d\n",
331 // modGeo[is],modType[is],modNCh[is]);
332 }
198f612a 333
442e1b18 334 }
442e1b18 335 fclose(mapFile4Shuttle);
27afc0c8 336 }// SOD event
f16f149b 337
338 if(eventT==PHYSICS_EVENT){
78beff0d 339 // --- Reading data header
340 reader->ReadHeader();
f16f149b 341 const AliRawDataHeader* header = reader->GetDataHeader();
342 if(header){
ea628de7 343 UChar_t message = header->GetAttributes();
a5747d8f 344 if((message & 0x70) == 0x70){ // DEDICATED EMD RUN
442e1b18 345 //printf("\t STANDALONE_EMD_RUN raw data found\n");
ea628de7 346 continue;
347 }
348 else{
349 printf("\t NO STANDALONE_EMD_RUN raw data found\n");
350 return -1;
351 }
f16f149b 352 }
442e1b18 353 else{
354 printf("\t ATTENTION! No Raw Data Header found!!!\n");
355 return -1;
356 }
7f4bde92 357
358 rawStreamZDC->SetSODReading(kTRUE);
442e1b18 359
f16f149b 360 if (!rawStreamZDC->Next()) printf(" \t No raw data found!! ");
361 //
442e1b18 362 // ----- Setting ch. mapping -----
f9641c3b 363 for(Int_t jk=0; jk<2*kNChannels; jk++){
442e1b18 364 rawStreamZDC->SetMapADCMod(jk, adcMod[jk]);
365 rawStreamZDC->SetMapADCCh(jk, adcCh[jk]);
366 rawStreamZDC->SetMapADCSig(jk, sigCode[jk]);
367 rawStreamZDC->SetMapDet(jk, det[jk]);
368 rawStreamZDC->SetMapTow(jk, sec[jk]);
369 }
370 //
f16f149b 371 Float_t ZDCRawADC[4], ZDCCorrADC[4], ZDCCorrADCSum[4];
372 for(Int_t g=0; g<4; g++){
373 ZDCCorrADCSum[g] = 0.;
374 ZDCRawADC[g] = 0.;
375 }
376 //
377 while(rawStreamZDC->Next()){
f9641c3b 378 Int_t det = rawStreamZDC->GetSector(0);
379 Int_t quad = rawStreamZDC->GetSector(1);
380
381 if(rawStreamZDC->IsADCDataWord() && !(rawStreamZDC->IsUnderflow())
778b6939 382 && !(rawStreamZDC->IsOverflow()) && det!=-1 && det!=3
8700404e 383 && (rawStreamZDC->GetADCGain() == 1 && // Selecting LOW RES ch.s
384 rawStreamZDC->GetADCModule()>=kFirstADCGeo && rawStreamZDC->GetADCModule()<=kLastADCGeo)){
f9641c3b 385
e968a349 386 // Taking LOW RES channels -> ch.+kNChannels !!!!
ea628de7 387 Int_t DetIndex=999, PedIndex=999;
778b6939 388 // Not PMRef
389 if(quad!=5){
f9641c3b 390 if(det == 1){
391 DetIndex = det-1;
e968a349 392 PedIndex = quad+kNChannels;
f9641c3b 393 }
394 else if(det==2){
395 DetIndex = det-1;
396 PedIndex = quad+5+kNChannels;
397 }
398 else if(det == 4){
399 DetIndex = det-2;
400 PedIndex = quad+12+kNChannels;
401 }
402 else if(det == 5){
403 DetIndex = det-2;
404 PedIndex = quad+17+kNChannels;
405 }
e968a349 406 // Mean pedestal subtraction
407 Float_t Pedestal = MeanPed[PedIndex];
408 // Pedestal subtraction from correlation with out-of-time signals
409 //Float_t Pedestal = CorrCoeff0[PedIndex]+CorrCoeff1[PedIndex]*MeanPedOOT[PedIndex];
410 //
411 if(DetIndex!=999 || PedIndex!=999){
f9641c3b 412 //
413 ZDCRawADC[DetIndex] += (Float_t) rawStreamZDC->GetADCValue();
414 //
f9641c3b 415 //
416 ZDCCorrADC[DetIndex] = (rawStreamZDC->GetADCValue()) - Pedestal;
417 ZDCCorrADCSum[DetIndex] += ZDCCorrADC[DetIndex];
418 //
778b6939 419 /*printf("\t det %d quad %d res %d pedInd %d "
420 "Pedestal %1.0f -> ADCCorr = %d ZDCCorrADCSum = %d\n",
421 det,quad,rawStreamZDC->GetADCGain(),PedIndex,Pedestal,
422 (Int_t) ZDCCorrADC[DetIndex],(Int_t) ZDCCorrADCSum[DetIndex]);*/
423
e968a349 424 }
778b6939 425 // Not common PM
426 if(quad!=0){
e968a349 427 Float_t corrADCval = (rawStreamZDC->GetADCValue()) - Pedestal;
778b6939 428 if(det==1) histZNCtow[quad-1]->Fill(corrADCval);
429 else if(det==2) histZPCtow[quad-1]->Fill(corrADCval);
430 else if(det==4) histZNAtow[quad-1]->Fill(corrADCval);
431 else if(det==5) histZPAtow[quad-1]->Fill(corrADCval);
432 //
433 //printf("\t det %d tow %d fill histo w. value %1.0f\n",
434 // det,quad,corrADCval);
f9641c3b 435 }
e968a349 436
f9641c3b 437 if(DetIndex==999 || PedIndex==999)
778b6939 438 printf(" WARNING! Detector a/o pedestal index are WRONG!!!\n");
f9641c3b 439
778b6939 440 }//quad!=5
f16f149b 441 }//IsADCDataWord()
e968a349 442
f16f149b 443 }
444 //
445 nevents_physics++;
446 //
778b6939 447 delete reader;
448 delete rawStreamZDC;
449 //
f16f149b 450 for(Int_t j=0; j<4; j++){
451 histoEMDRaw[j]->Fill(ZDCRawADC[j]);
452 histoEMDCorr[j]->Fill(ZDCCorrADCSum[j]);
453 }
d3f256ca 454 }//(if PHYSICS_EVENT)
778b6939 455
456 /* exit when last event received, no need to wait for TERM signal */
457 else if(eventT==END_OF_RUN) {
458 printf(" -> EOR event detected\n");
459 break;
460 }
f16f149b 461
462 nevents_total++;
463
442e1b18 464 }
d3f256ca 465
466 /* free resources */
467 free(event);
f16f149b 468 }
442e1b18 469
f16f149b 470 /* Analysis of the histograms */
471 //
f9641c3b 472 FILE *fileShuttle1 = fopen(ENCALIBDATA_FILE,"w");
f16f149b 473 //
778b6939 474 Int_t BinMax[4]={0,0,0,0};
475 Float_t YMax[4]={0.,0.,0.,0.};
476 Int_t NBinsx[4]={0,0,0,0};
477 Float_t MeanFitVal[4]={0.,0.,0.,0.};
f16f149b 478 TF1 *fitfun[4];
479 for(Int_t k=0; k<4; k++){
f9641c3b 480 if(histoEMDCorr[k]->GetEntries() == 0){
481 printf("\n WARNING! Empty histos -> ending DA WITHOUT writing output\n\n");
482 return -1;
483 }
778b6939 484 //
f16f149b 485 BinMax[k] = histoEMDCorr[k]->GetMaximumBin();
778b6939 486 if(BinMax[k]<=6){
487 printf("\n WARNING! Something wrong with det %d histo -> ending DA WITHOUT writing output\n\n", k);
488 return -1;
489 }
490 //
f16f149b 491 YMax[k] = (histoEMDCorr[k]->GetXaxis())->GetXmax();
492 NBinsx[k] = (histoEMDCorr[k]->GetXaxis())->GetNbins();
778b6939 493 //printf("\n\t Det%d -> BinMax = %d, ChXMax = %f\n", k+1, BinMax[k], BinMax[k]*YMax[k]/NBinsx[k]);
f16f149b 494 histoEMDCorr[k]->Fit("gaus","Q","",BinMax[k]*YMax[k]/NBinsx[k]*0.7,BinMax[k]*YMax[k]/NBinsx[k]*1.25);
495 fitfun[k] = histoEMDCorr[k]->GetFunction("gaus");
496 MeanFitVal[k] = (Float_t) (fitfun[k]->GetParameter(1));
c38bc7ef 497 //printf("\n\t Mean Value from gaussian fit = %f\n", MeanFitVal[k]);
f16f149b 498 }
499 //
218f916a 500 Float_t CalibCoeff[6];
218f916a 501 //
f9641c3b 502 for(Int_t j=0; j<6; j++){
218f916a 503 if(j<4){
504 CalibCoeff[j] = MeanFitVal[j];
f9641c3b 505 fprintf(fileShuttle1,"\t%f\n",CalibCoeff[j]);
218f916a 506 }
f9641c3b 507 // ZEM energy calib. coeff. = 1
218f916a 508 else if(j==4 || j==5){
509 CalibCoeff[j] = 1.;
f9641c3b 510 fprintf(fileShuttle1,"\t%f\n",CalibCoeff[j]);
218f916a 511 }
f9641c3b 512 }
513 fclose(fileShuttle1);
e968a349 514
f9641c3b 515 FILE *fileShuttle2 = fopen(TOWCALIBDATA_FILE,"w");
778b6939 516 //Float_t meanvalznc[4], meanvalzpc[4], meanvalzna[4], meanvalzpa[4];
f9641c3b 517 for(Int_t j=0; j<4; j++){
778b6939 518 /*if(histZNCtow[j]->GetEntries() == 0){
e968a349 519 printf("\n WARNING! Empty histos -> ending DA WITHOUT writing output\n\n");
520 return -1;
521 }
522 meanvalznc[j] = histZNCtow[j]->GetMean();
523 meanvalzpc[j] = histZPCtow[j]->GetMean();
524 meanvalzna[j] = histZNAtow[j]->GetMean();
778b6939 525 meanvalzpa[j] = histZPAtow[j]->GetMean();*/
e968a349 526
f9641c3b 527 // Note -> For the moment the inter-calibration coeff. are set to 1
144fb00e 528 for(Int_t k=0; k<5; k++){
778b6939 529 Float_t icoeff = 1.;
530 fprintf(fileShuttle2,"\t%f",icoeff);
144fb00e 531 if(k==5) fprintf(fileShuttle2,"\n");
778b6939 532 }
e968a349 533 }
778b6939 534 //
535 /*if(meanvalznc[1]!=0 && meanvalznc[2]!=0 && meanvalznc[3]!=0 &&
e968a349 536 meanvalzpc[1]!=0 && meanvalzpc[2]!=0 && meanvalzpc[3]!=0 &&
537 meanvalzna[1]!=0 && meanvalzna[2]!=0 && meanvalzna[3]!=0 &&
538 meanvalzpa[1]!=0 && meanvalzpa[2]!=0 && meanvalzpa[3]!=0){
539 fprintf(fileShuttle2,"\t%f\t%f\t%f\t%f\n",
540 1.0,meanvalznc[0]/meanvalznc[1],meanvalznc[0]/meanvalznc[2],meanvalznc[0]/meanvalznc[3]);
541 fprintf(fileShuttle2,"\t%f\t%f\t%f\t%f\n",
542 1.0,meanvalzpc[0]/meanvalzpc[1],meanvalzpc[0]/meanvalzpc[2],meanvalzpc[0]/meanvalzpc[3]);
543 fprintf(fileShuttle2,"\t%f\t%f\t%f\t%f\n",
544 1.0,meanvalzna[0]/meanvalzna[1],meanvalzpc[0]/meanvalzna[2],meanvalzpc[0]/meanvalzna[3]);
545 fprintf(fileShuttle2,"\t%f\t%f\t%f\t%f\n",
546 1.0,meanvalzpa[0]/meanvalzpa[1],meanvalzpc[0]/meanvalzpa[2],meanvalzpc[0]/meanvalzpa[3]);
547 }
548 else{
549 printf("\n Tower intercalib. coeff. CAN'T be calculated (some mean values are ZERO)!!!\n\n");
550 return -1;
778b6939 551 }*/
f9641c3b 552 fclose(fileShuttle2);
f16f149b 553
442e1b18 554 for(Int_t ij=0; ij<4; ij++){
555 delete histoEMDRaw[ij];
556 delete histoEMDCorr[ij];
557 }
558
559 //delete minuitFit;
560 TVirtualFitter::SetFitter(0);
f16f149b 561
562 /* write report */
563 fprintf(fp,"Run #%s, received %d physics events out of %d\n",getenv("DATE_RUN_NUMBER"),nevents_physics,nevents_total);
564
565 /* close result file */
566 fclose(fp);
442e1b18 567
568 /* report progress */
569 daqDA_progressReport(90);
570
571 /* store the result file on FES */
a8eaff64 572 status = daqDA_FES_storeFile(MAPDATA_FILE, "MAPPING");
442e1b18 573 if(status){
574 printf("Failed to export file : %d\n",status);
575 return -1;
576 }
577 //
a8eaff64 578 status = daqDA_FES_storeFile(ENCALIBDATA_FILE, "EMDENERGYCALIB");
f9641c3b 579 if(status){
580 printf("Failed to export file : %d\n",status);
581 return -1;
582 }
583 //
a8eaff64 584 status = daqDA_FES_storeFile(TOWCALIBDATA_FILE, "EMDTOWERCALIB");
442e1b18 585 if(status){
586 printf("Failed to export file : %d\n",status);
587 return -1;
588 }
f16f149b 589
442e1b18 590 /* report progress */
591 daqDA_progressReport(100);
f16f149b 592
593 return status;
594}