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ead118d8 1/*
2
3This program reads the DAQ data files passed as argument using the monitoring library.
4
ead118d8 5The program reports about its processing progress.
6
7Messages on stdout are exported to DAQ log system.
8
9DA for ZDC standalone pedestal runs
10
11Contact: Chiara.Oppedisano@to.infn.it
12Link:
13Run Type: STANDALONE_LASER_RUN
442e1b18 14DA Type: LDC
ead118d8 15Number of events needed: no constraint (tipically ~10^3)
19419b67 16Input Files: ZDCPedestal.dat
ead118d8 17Output Files: ZDCLaser.dat
18Trigger Types Used: Standalone Trigger
19
20*/
78beff0d 21#define PEDDATA_FILE "ZDCPedestal.dat"
218f916a 22#define MAPDATA_FILE "ZDCChMapping.dat"
65448375 23#define LASHISTO_FILE "ZDCLaserHisto.root"
218f916a 24#define LASDATA_FILE "ZDCLaserCalib.dat"
ead118d8 25
26#include <stdio.h>
27#include <stdlib.h>
28#include <Riostream.h>
29
30// DATE
31#include <event.h>
32#include <monitor.h>
33#include <daqDA.h>
34
35//ROOT
65448375 36#include <TROOT.h>
37#include <TPluginManager.h>
ead118d8 38#include <TH1F.h>
39#include <TF1.h>
40#include <TFile.h>
442e1b18 41#include <TFitter.h>
65448375 42#include "TMinuitMinimizer.h"
ead118d8 43
44//AliRoot
45#include <AliRawReaderDate.h>
442e1b18 46#include <AliRawEventHeaderBase.h>
ead118d8 47#include <AliZDCRawStream.h>
48
49
50/* Main routine
51 Arguments: list of DATE raw data files
52*/
53int main(int argc, char **argv) {
442e1b18 54
65448375 55 gROOT->GetPluginManager()->AddHandler("TVirtualStreamerInfo",
56 "*",
57 "TStreamerInfo",
58 "RIO",
59 "TStreamerInfo()");
60
61 TMinuitMinimizer m;
62 gROOT->GetPluginManager()->AddHandler("ROOT::Math::Minimizer", "Minuit","TMinuitMinimizer",
63 "Minuit", "TMinuitMinimizer(const char *)");
64 TVirtualFitter::SetDefaultFitter("Minuit");
ead118d8 65
66 int status = 0;
9d0b658a 67 int const kNChannels = 24;
27afc0c8 68 int const kNScChannels = 32;
8700404e 69 Int_t kFirstADCGeo=0, kLastADCGeo=3;
19419b67 70
71 Int_t ich=0;
72 Int_t adcMod[2*kNChannels], adcCh[2*kNChannels], sigCode[2*kNChannels];
73 Int_t det[2*kNChannels], sec[2*kNChannels];
74 for(Int_t y=0; y<2*kNChannels; y++){
75 adcMod[y]=adcCh[y]=sigCode[y]=det[y]=sec[y]=0;
76 }
ead118d8 77
78 /* log start of process */
9d0b658a 79 printf("\n ZDC LASER program started\n");
ead118d8 80
81 /* check that we got some arguments = list of files */
82 if (argc<2) {
83 printf("Wrong number of arguments\n");
84 return -1;
85 }
86
87 // --- Histograms for LASER runs
88 // 20 signal channels + 2 reference PTMs
89 //
90 TH1F::AddDirectory(0);
bd94dbdd 91 // --- Histos for reference PMTs (high gain chains)
19419b67 92 TH1F *hPMRefChg = new TH1F("hPMRefChg","hPMRefChg", 100,0.,1000.);
93 TH1F *hPMRefAhg = new TH1F("hPMRefAhg","hPMRefAhg", 100,0.,1000.);
9d0b658a 94 TH1F *hPMRefClg = new TH1F("hPMRefClg","hPMRefClg", 100,0.,4000.);
95 TH1F *hPMRefAlg = new TH1F("hPMRefAlg","hPMRefAlg", 100,0.,4000.);
78beff0d 96 //
9d0b658a 97 // --- Histos for detector PMTs
98 TH1F *hZNChg[5], *hZPChg[5], *hZNAhg[5], *hZPAhg[5], *hZEMhg[2];
99 TH1F *hZNClg[5], *hZPClg[5], *hZNAlg[5], *hZPAlg[5], *hZEMlg[2];
100 char hnamZNChg[20], hnamZPChg[20], hnamZNAhg[20], hnamZPAhg[20];
101 char hnamZNClg[20], hnamZPClg[20], hnamZNAlg[20], hnamZPAlg[20];
102 char hnamZEMhg[20], hnamZEMlg[20];
bd94dbdd 103 for(Int_t j=0; j<5; j++){
9d0b658a 104 sprintf(hnamZNChg,"ZNChg-tow%d",j);
105 sprintf(hnamZPChg,"ZPChg-tow%d",j);
106 sprintf(hnamZNAhg,"ZNAhg-tow%d",j);
107 sprintf(hnamZPAhg,"ZPAhg-tow%d",j);
108 //
19419b67 109 hZNChg[j] = new TH1F(hnamZNChg, hnamZNChg, 100, 0., 1000.);
110 hZPChg[j] = new TH1F(hnamZPChg, hnamZPChg, 100, 0., 1000.);
111 hZNAhg[j] = new TH1F(hnamZNAhg, hnamZNAhg, 100, 0., 1000.);
112 hZPAhg[j] = new TH1F(hnamZPAhg, hnamZPAhg, 100, 0., 1000.);
9d0b658a 113 //
114 sprintf(hnamZNClg,"ZNClg-tow%d",j);
115 sprintf(hnamZPClg,"ZPClg-tow%d",j);
116 sprintf(hnamZNAlg,"ZNAlg-tow%d",j);
117 sprintf(hnamZPAlg,"ZPAlg-tow%d",j);
bd94dbdd 118 //
9d0b658a 119 hZNClg[j] = new TH1F(hnamZNClg, hnamZNClg, 100, 0., 4000.);
120 hZPClg[j] = new TH1F(hnamZPClg, hnamZPClg, 100, 0., 4000.);
121 hZNAlg[j] = new TH1F(hnamZNAlg, hnamZNAlg, 100, 0., 4000.);
122 hZPAlg[j] = new TH1F(hnamZPAlg, hnamZPAlg, 100, 0., 4000.);
123 //
124 if(j<2){
125 sprintf(hnamZEMhg,"ZEM%dhg",j);
126 sprintf(hnamZEMlg,"ZEM%dlg",j);
127 //
19419b67 128 hZEMhg[j] = new TH1F(hnamZEMhg, hnamZEMhg, 100, 0., 1000.);
9d0b658a 129 hZEMlg[j] = new TH1F(hnamZEMlg, hnamZEMlg, 100, 0., 4000.);
130 }
bd94dbdd 131 }
ead118d8 132
133 /* open result file */
134 FILE *fp=NULL;
135 fp=fopen("./result.txt","a");
136 if (fp==NULL) {
137 printf("Failed to open file\n");
138 return -1;
139 }
9d0b658a 140 /* report progress */
141 daqDA_progressReport(10);
78beff0d 142
143 // *** To analyze LASER events you MUST have a pedestal data file!!!
9d0b658a 144 // *** -> check if a pedestal run has been analyzed
78beff0d 145 int read = 0;
9d0b658a 146 read = daqDA_DB_getFile(PEDDATA_FILE, PEDDATA_FILE);
78beff0d 147 if(read){
148 printf("\t ERROR!!! ZDCPedestal.dat file NOT FOUND in DAQ db!!!\n");
149 return -1;
150 }
151 else printf("\t ZDCPedestal.dat file retrieved from DAQ db\n");
152
153 FILE *filePed = fopen(PEDDATA_FILE,"r");
154 if (filePed==NULL) {
155 printf("\t ERROR!!! Can't open ZDCPedestal.dat file!!!\n");
156 return -1;
157 }
158
159 // 144 = 48 in-time + 48 out-of-time + 48 correlations
9d0b658a 160 Float_t readValues[2][6*kNChannels];
161 Float_t MeanPedhg[kNChannels], MeanPedlg[kNChannels];
162 Float_t CorrCoeff0[2*kNChannels], CorrCoeff1[2*kNChannels];
78beff0d 163 // ***************************************************
164 // Unless we have a narrow correlation to fit we
165 // don't fit and store in-time vs. out-of-time
166 // histograms -> mean pedstal subtracted!!!!!!
167 // ***************************************************
78beff0d 168 //
9d0b658a 169 for(int jj=0; jj<6*kNChannels; jj++){
78beff0d 170 for(int ii=0; ii<2; ii++){
171 fscanf(filePed,"%f",&readValues[ii][jj]);
172 }
9d0b658a 173 if(jj<kNChannels){
174 MeanPedhg[jj] = readValues[0][jj];
175 //printf("\t MeanPedhg[%d] = %1.1f\n",jj, MeanPedhg[jj]);
78beff0d 176 }
9d0b658a 177 else if(jj>=kNChannels && jj<2*kNChannels){
178 MeanPedlg[jj-kNChannels] = readValues[0][jj];
179 //printf("\t MeanPedlg[%d] = %1.1f\n",jj-kNChannels, MeanPedlg[jj-kNChannels]);
78beff0d 180 }
9d0b658a 181 else if(jj>4*kNChannels){
182 CorrCoeff0[jj-4*kNChannels] = readValues[0][jj];
183 CorrCoeff1[jj-4*kNChannels] = readValues[1][jj];;
78beff0d 184 }
78beff0d 185 }
9d0b658a 186
187 FILE *mapFile4Shuttle;
ead118d8 188
189 /* report progress */
9d0b658a 190 daqDA_progressReport(20);
ead118d8 191
192
193 /* init some counters */
194 int nevents_physics=0;
195 int nevents_total=0;
196
d3f256ca 197 struct eventHeaderStruct *event;
198 eventTypeType eventT;
199
ead118d8 200 /* read the data files */
201 int n;
9d0b658a 202 for(n=1;n<argc;n++) {
ead118d8 203
204 status=monitorSetDataSource( argv[n] );
205 if (status!=0) {
206 printf("monitorSetDataSource() failed : %s\n",monitorDecodeError(status));
207 return -1;
208 }
209
210 /* report progress */
211 /* in this example, indexed on the number of files */
9d0b658a 212 daqDA_progressReport(20+70*n/argc);
ead118d8 213
214 /* read the file */
215 for(;;) {
ead118d8 216
217 /* get next event */
218 status=monitorGetEventDynamic((void **)&event);
219 if (status==MON_ERR_EOF) break; /* end of monitoring file has been reached */
220 if (status!=0) {
221 printf("monitorGetEventDynamic() failed : %s\n",monitorDecodeError(status));
222 return -1;
223 }
224
225 /* retry if got no event */
226 if (event==NULL) {
227 break;
228 }
229
442e1b18 230 // Initalize raw-data reading and decoding
231 AliRawReader *reader = new AliRawReaderDate((void*)event);
232 reader->Select("ZDC");
233 // --- Reading event header
78beff0d 234 //UInt_t evtype = reader->GetType();
235 //printf("\n\t ZDCLASERda -> ev. type %d\n",evtype);
236 //printf("\t ZDCLASERda -> run # %d\n",reader->GetRunNumber());
442e1b18 237 //
238 AliZDCRawStream *rawStreamZDC = new AliZDCRawStream(reader);
239
240
241 /* use event - here, just write event id to result file */
242 eventT=event->eventType;
19419b67 243
27afc0c8 244 Int_t iScCh=0;
245 Int_t scMod[kNScChannels], scCh[kNScChannels], scSigCode[kNScChannels];
246 Int_t scDet[kNScChannels], scSec[kNScChannels];
247 for(Int_t y=0; y<kNScChannels; y++){
248 scMod[y]=scCh[y]=scSigCode[y]=scDet[y]=scSec[y]=0;
249 }
250 //
251 Int_t modNum=-1, modType=-1;
252
442e1b18 253 if(eventT==START_OF_DATA){
254
27afc0c8 255 rawStreamZDC->SetSODReading(kTRUE);
256
9d0b658a 257 // --------------------------------------------------------
258 // --- Writing ascii data file for the Shuttle preprocessor
259 mapFile4Shuttle = fopen(MAPDATA_FILE,"w");
442e1b18 260 if(!rawStreamZDC->Next()) printf(" \t No raw data found!! \n");
261 else{
27afc0c8 262 while((rawStreamZDC->Next())){
263 if(rawStreamZDC->IsHeaderMapping()){ // mapping header
264 modNum = rawStreamZDC->GetADCModule();
265 modType = rawStreamZDC->GetModType();
266 }
267 if(rawStreamZDC->IsChMapping()){
268 if(modType==1){ // ADC mapping ----------------------
269 adcMod[ich] = rawStreamZDC->GetADCModFromMap(ich);
270 adcCh[ich] = rawStreamZDC->GetADCChFromMap(ich);
271 sigCode[ich] = rawStreamZDC->GetADCSignFromMap(ich);
272 det[ich] = rawStreamZDC->GetDetectorFromMap(ich);
273 sec[ich] = rawStreamZDC->GetTowerFromMap(ich);
274 //
275 fprintf(mapFile4Shuttle,"\t%d\t%d\t%d\t%d\t%d\t%d\n",
276 ich,adcMod[ich],adcCh[ich],sigCode[ich],det[ich],sec[ich]);
277 //
278 //printf(" Mapping in DA -> %d ADC: mod %d ch %d, code %d det %d, sec %d\n",
279 // ich,adcMod[ich],adcCh[ich],sigCode[ich],det[ich],sec[ich]);
280 //
281 ich++;
282 }
283 else if(modType==2){ //VME scaler mapping --------------------
284 scMod[iScCh] = rawStreamZDC->GetScalerModFromMap(iScCh);
285 scCh[iScCh] = rawStreamZDC->GetScalerChFromMap(iScCh);
286 scSigCode[iScCh] = rawStreamZDC->GetScalerSignFromMap(iScCh);
287 scDet[iScCh] = rawStreamZDC->GetScDetectorFromMap(iScCh);
288 scSec[iScCh] = rawStreamZDC->GetScTowerFromMap(iScCh);
289 //
290 fprintf(mapFile4Shuttle,"\t%d\t%d\t%d\t%d\t%d\t%d\n",
291 iScCh,scMod[iScCh],scCh[iScCh],scSigCode[iScCh],scDet[iScCh],scSec[iScCh]);
292 //
293 //printf(" Mapping in DA -> %d Scaler: mod %d ch %d, code %d det %d, sec %d\n",
294 // iScCh,scMod[iScCh],scCh[iScCh],scSigCode[iScCh],scDet[iScCh],scSec[iScCh]);
295 //
296 iScCh++;
297 }
442e1b18 298 }
299 }
300 }
442e1b18 301 fclose(mapFile4Shuttle);
9d0b658a 302 }// SOD event
ead118d8 303
d3f256ca 304 else if(eventT==PHYSICS_EVENT){
9d0b658a 305 // --- Reading data header
442e1b18 306 reader->ReadHeader();
ead118d8 307 const AliRawDataHeader* header = reader->GetDataHeader();
308 if(header) {
309 UChar_t message = header->GetAttributes();
a5747d8f 310 if((message & 0x30) == 0x30){ // DEDICATED LASER RUN
442e1b18 311 //printf("\t STANDALONE_LASER_RUN raw data found\n");
ead118d8 312 }
313 else{
9d0b658a 314 printf("ZDCLASERda.cxx -> NO STANDALONE_LASER_RUN raw data found\n");
ead118d8 315 return -1;
316 }
317 }
442e1b18 318 else{
319 printf("\t ATTENTION! No Raw Data Header found!!!\n");
320 return -1;
321 }
322
7f4bde92 323 rawStreamZDC->SetSODReading(kTRUE);
324
ead118d8 325 if (!rawStreamZDC->Next()) printf(" \t No raw data found!! \n");
442e1b18 326 //
327 // ----- Setting ch. mapping -----
9d0b658a 328 for(Int_t jk=0; jk<2*kNChannels; jk++){
442e1b18 329 rawStreamZDC->SetMapADCMod(jk, adcMod[jk]);
330 rawStreamZDC->SetMapADCCh(jk, adcCh[jk]);
331 rawStreamZDC->SetMapADCSig(jk, sigCode[jk]);
332 rawStreamZDC->SetMapDet(jk, det[jk]);
333 rawStreamZDC->SetMapTow(jk, sec[jk]);
334 }
ead118d8 335 //
336 while(rawStreamZDC->Next()){
337 Int_t index=-1;
bd94dbdd 338 Int_t detector = rawStreamZDC->GetSector(0);
9d0b658a 339 Int_t sector = rawStreamZDC->GetSector(1);
bd94dbdd 340
8700404e 341 if(rawStreamZDC->IsADCDataWord() && !(rawStreamZDC->IsUnderflow()) &&
342 !(rawStreamZDC->IsOverflow()) && detector!=-1 &&
343 rawStreamZDC->GetADCModule()>=kFirstADCGeo && rawStreamZDC->GetADCModule()<=kLastADCGeo){
bd94dbdd 344
9d0b658a 345 if(sector!=5){ // Physics signals
19419b67 346 if(detector==1) index = sector; // *** ZNC
9d0b658a 347 else if(detector==2) index = sector+5; // *** ZPC
348 else if(detector==3) index = sector+9; // *** ZEM
349 else if(detector==4) index = sector+12;// *** ZNA
350 else if(detector==5) index = sector+17;// *** ZPA
bd94dbdd 351 }
352 else{ // Reference PMs
353 index = (detector-1)/3+22;
354 }
9d0b658a 355 //
356 if(index==-1) printf("ERROR in ZDCLASERda.cxx -> det %d quad %d res %d index %d ADC %d\n",
357 detector, sector, rawStreamZDC->GetADCGain(), index, rawStreamZDC->GetADCValue());
bd94dbdd 358
9d0b658a 359 Float_t Pedestal=0.;
19419b67 360 if(rawStreamZDC->GetADCGain()==0) Pedestal = MeanPedhg[index];
9d0b658a 361 else if(rawStreamZDC->GetADCGain()==1) Pedestal = MeanPedlg[index];
362 //
ead118d8 363 Float_t CorrADC = rawStreamZDC->GetADCValue() - Pedestal;
9d0b658a 364 //
365 //printf("\tdet %d sec %d res %d index %d ped %1.0f ADCcorr %1.0f\n",
366 // detector, sector, rawStreamZDC->GetADCGain(), index, Pedestal,CorrADC);
78beff0d 367
bd94dbdd 368 // **** Detector PMs
9d0b658a 369 if(sector!=5){
370 if(rawStreamZDC->GetADCGain()==0){ // --- High gain chain ---
371 // ---- side C
19419b67 372 if(detector==1) hZNChg[sector]->Fill(CorrADC);
9d0b658a 373 else if(detector==2) hZPChg[sector]->Fill(CorrADC);
374 // ---- side A
375 else if(detector==4) hZNAhg[sector]->Fill(CorrADC);
376 else if(detector==5) hZPAhg[sector]->Fill(CorrADC);
377 // ---- ZEM
378 else if(detector==3) hZEMhg[sector-1]->Fill(CorrADC);
379 }
380 else if(rawStreamZDC->GetADCGain()==1){ // --- Low gain chain ---
381 // ---- side C
19419b67 382 if(detector==1) hZNClg[sector]->Fill(CorrADC);
9d0b658a 383 else if(detector==2) hZPClg[sector]->Fill(CorrADC);
384 // ---- side A
385 else if(detector==4) hZNAlg[sector]->Fill(CorrADC);
386 else if(detector==5) hZPAlg[sector]->Fill(CorrADC);
387 // ---- ZEM
388 else if(detector==3) hZEMlg[sector-1]->Fill(CorrADC);
389 }
ead118d8 390 }
bd94dbdd 391 // **** Reference PMs
9d0b658a 392 else if(sector==5){
393 if(rawStreamZDC->GetADCGain()==0){ // --- High gain chain ---
394 // ---- PMRef chain side C
395 if(detector==1) hPMRefChg->Fill(CorrADC);
396 // ---- PMRef side A
397 else if(detector==4) hPMRefAhg->Fill(CorrADC);
398 }
399 else if(rawStreamZDC->GetADCGain()==1){ // --- Low gain chain ---
400 // ---- PMRef chain side C
401 if(detector==1) hPMRefClg->Fill(CorrADC);
402 // ---- PMRef side A
403 else if(detector==4) hPMRefAlg->Fill(CorrADC);
404 }
405 }
bd94dbdd 406 }//IsADCDataWord()+NOunderflow+NOoverflow
ead118d8 407 //
408 }
409 //
410 nevents_physics++;
411 //
412 delete reader;
413 delete rawStreamZDC;
414
415 }//(if PHYSICS_EVENT)
ead118d8 416
d3f256ca 417 /* exit when last event received, no need to wait for TERM signal */
418 else if(eventT==END_OF_RUN) {
419 printf(" -> EOR event detected\n");
420 break;
421 }
422
423
424 nevents_total++;
ead118d8 425
426 }
d3f256ca 427
428 /* free resources */
429 free(event);
ead118d8 430 }
431
432 /* Analysis of the histograms */
433 //
19419b67 434 Int_t detector[2*kNChannels], quad[2*kNChannels];
9d0b658a 435 Int_t maxBin[2*kNChannels], nBin[2*kNChannels];
436 Float_t xMax[2*kNChannels], maxXval[2*kNChannels], xlow[2*kNChannels];
437 Float_t mean[2*kNChannels], sigma[2*kNChannels];
19419b67 438 for(Int_t t=0; t<2*kNChannels; t++){
439 detector[t] = quad[t] = 0;
440 maxBin[t] = nBin[t] = 0;
441 xMax[t] = maxXval[t] = xlow[t] = 0.;
442 mean[t] = sigma[t] = 0.;
443 }
9d0b658a 444 TF1 *fun[2*kNChannels];
19419b67 445 Int_t atLeastOneHisto=0;
6f427255 446
9d0b658a 447 // ******** High gain chain ********
bd94dbdd 448 for(Int_t k=0; k<5; k++){
449 // --- ZNC
19419b67 450 detector[k] = 1;
9d0b658a 451 quad[k] = k;
452 maxBin[k] = hZNChg[k]->GetMaximumBin();
453 nBin[k] = (hZNChg[k]->GetXaxis())->GetNbins();
454 xMax[k] = (hZNChg[k]->GetXaxis())->GetXmax();
bd94dbdd 455 if(nBin[k]!=0) maxXval[k] = maxBin[k]*xMax[k]/nBin[k];
bd94dbdd 456 if(maxXval[k]-150.<0.) xlow[k]=0.;
457 else xlow[k] = maxXval[k]-150.;
19419b67 458 // checking if at least one histo is fitted
459 if(hZNChg[k]->GetEntries() != 0){
460 atLeastOneHisto=1;
461 //
462 hZNChg[k]->Fit("gaus","Q","",xlow[k],maxXval[k]+150.);
463 fun[k] = hZNChg[k]->GetFunction("gaus");
464 mean[k] = (Float_t) (fun[k]->GetParameter(1));
465 sigma[k] = (Float_t) (fun[k]->GetParameter(2));
466 }
bd94dbdd 467 // --- ZPC
19419b67 468 detector[k+5] = 2;
9d0b658a 469 quad[k+5] = k;
470 maxBin[k+5] = hZPChg[k]->GetMaximumBin();
471 nBin[k+5] = (hZPChg[k]->GetXaxis())->GetNbins();
472 xMax[k+5] = (hZPChg[k]->GetXaxis())->GetXmax();
bd94dbdd 473 if(nBin[k+5]!=0) maxXval[k+5] = maxBin[k+5]*xMax[k+5]/nBin[k+5];
bd94dbdd 474 if(maxXval[k+5]-150.<0.) xlow[k+5]=0.;
475 else xlow[k+5] = maxXval[k+5]-150.;
19419b67 476 if(hZPChg[k]->GetEntries() != 0){
477 atLeastOneHisto=1;
478 //
479 hZPChg[k]->Fit("gaus","Q","",xlow[k+5],maxXval[k+5]+150.);
480 fun[k+5] = hZPChg[k]->GetFunction("gaus");
481 mean[k+5] = (Float_t) (fun[k+5]->GetParameter(1));
482 sigma[k+5] = (Float_t) (fun[k+5]->GetParameter(2));
483 }
9d0b658a 484 // --- ZEM1
485 if(k<2){
19419b67 486 detector[k+10] = 3;
9d0b658a 487 quad[k+10] = k+1;
488 maxBin[k+10] = hZEMhg[k]->GetMaximumBin();
489 nBin[k+10] = (hZEMhg[k]->GetXaxis())->GetNbins();
490 xMax[k+10] = (hZEMhg[k]->GetXaxis())->GetXmax();
491 if(nBin[k+10]!=0) maxXval[k+10] = maxBin[k+10]*xMax[k+10]/nBin[k+10];
492 if(maxXval[k+10]-150.<0.) xlow[k+10]=0.;
493 else xlow[k+10] = maxXval[k+10]-150.;
19419b67 494 if(hZEMhg[k]->GetEntries() != 0){
495 atLeastOneHisto=1;
496 //
497 hZEMhg[k]->Fit("gaus","Q","",xlow[k+10],maxXval[k+10]+150.);
498 fun[k+10] = hZEMhg[k]->GetFunction("gaus");
499 mean[k+10] = (Float_t) (fun[k+10]->GetParameter(1));
500 sigma[k+10] = (Float_t) (fun[k+10]->GetParameter(2));
501 }
9d0b658a 502 }
bd94dbdd 503 // --- ZNA
19419b67 504 detector[k+12] = 4;
9d0b658a 505 quad[k+12] = k;
506 maxBin[k+12] = hZNAhg[k]->GetMaximumBin();
507 nBin[k+12] = (hZNAhg[k]->GetXaxis())->GetNbins();
508 xMax[k+12] = (hZNAhg[k]->GetXaxis())->GetXmax();
509 if(nBin[k+12]!=0) maxXval[k+12] = maxBin[k+12]*xMax[k+12]/nBin[k+12];
510 if(maxXval[k+12]-150.<0.) xlow[k+12]=0.;
511 else xlow[k+12] = maxXval[k+12]-150.;
19419b67 512 if(hZNAhg[k]->GetEntries() != 0){
513 atLeastOneHisto=1;
514 //
515 hZNAhg[k]->Fit("gaus","Q","",xlow[k+12],maxXval[k+12]+150.);
516 fun[k+12] = hZNAhg[k]->GetFunction("gaus");
517 mean[k+12] = (Float_t) (fun[k+12]->GetParameter(1));
518 sigma[k+12] = (Float_t) (fun[k+12]->GetParameter(2));
519 }
bd94dbdd 520 // --- ZPA
19419b67 521 detector[k+17] = 4;
9d0b658a 522 quad[k+17] = 5;
523 maxBin[k+17] = hZPAhg[k]->GetMaximumBin();
524 nBin[k+17] = (hZPAhg[k]->GetXaxis())->GetNbins();
525 xMax[k+17] = (hZPAhg[k]->GetXaxis())->GetXmax();
526 if(nBin[k+17]!=0) maxXval[k+17] = maxBin[k+17]*xMax[k+17]/nBin[k+17];
527 if(maxXval[k+17]-150.<0.) xlow[k+17]=0.;
528 else xlow[k+17] = maxXval[k+17]-150.;
19419b67 529 if(hZPAhg[k]->GetEntries() != 0){
530 atLeastOneHisto=1;
531 //
532 hZPAhg[k]->Fit("gaus","Q","",xlow[k+17],maxXval[k+17]+150.);
533 fun[k+17] = hZPAhg[k]->GetFunction("gaus");
534 mean[k+17] = (Float_t) (fun[k+17]->GetParameter(1));
535 sigma[k+17] = (Float_t) (fun[k+17]->GetParameter(2));
536 }
bd94dbdd 537 }
bd94dbdd 538 // ~~~~~~~~ PM Ref side C ~~~~~~~~
19419b67 539 detector[22] = 1;
9d0b658a 540 quad[22] = 5;
541 maxBin[22] = hPMRefChg->GetMaximumBin();
542 nBin[22] = (hPMRefChg->GetXaxis())->GetNbins();
543 xMax[22] = (hPMRefChg->GetXaxis())->GetXmax();
544 if(nBin[22]!=0) maxXval[22] = maxBin[22]*xMax[22]/nBin[22];
545 if(maxXval[22]-150.<0.) xlow[22]=0.;
19419b67 546 else xlow[22] = maxXval[22]-150.;
547 if(hPMRefChg->GetEntries() != 0){
548 atLeastOneHisto=1;
549 //
550 hPMRefChg->Fit("gaus","Q","",xlow[22],maxXval[22]+150.);
551 fun[22] = hPMRefChg->GetFunction("gaus");
552 mean[22] = (Float_t) (fun[22]->GetParameter(1));
553 sigma[22] = (Float_t) (fun[22]->GetParameter(2));
554 }
9d0b658a 555 // ~~~~~~~~ PM Ref side A ~~~~~~~~
19419b67 556 detector[23] = 4;
9d0b658a 557 quad[23] = 5;
558 maxBin[23] = hPMRefAhg->GetMaximumBin();
559 nBin[23] = (hPMRefAhg->GetXaxis())->GetNbins();
560 xMax[23] = (hPMRefAhg->GetXaxis())->GetXmax();
561 if(nBin[23]!=0) maxXval[23] = maxBin[23]*xMax[23]/nBin[23];
562 if(maxXval[23]-100.<0.) xlow[23]=0.;
19419b67 563 else xlow[23] = maxXval[23]-150.;
564 if(hPMRefAhg->GetEntries() != 0){
565 atLeastOneHisto=1;
566 //
567 hPMRefAhg->Fit("gaus","Q","",xlow[23],maxXval[23]+100.);
568 fun[23] = hPMRefAhg->GetFunction("gaus");
569 mean[23] = (Float_t) (fun[23]->GetParameter(1));
570 sigma[23] = (Float_t) (fun[23]->GetParameter(2));
571 }
6f427255 572
9d0b658a 573 // ******** Low gain chain ********
574 Int_t kOffset = 24;
575 for(Int_t k=0; k<5; k++){
576 // --- ZNC
19419b67 577 detector[k+kOffset] = 1;
9d0b658a 578 quad[k+kOffset] = k;
579 maxBin[k+kOffset] = hZNClg[k]->GetMaximumBin();
580 nBin[k+kOffset] = (hZNClg[k]->GetXaxis())->GetNbins();
581 xMax[k+kOffset] = (hZNClg[k]->GetXaxis())->GetXmax();
582 if(nBin[k+kOffset]!=0) maxXval[k+kOffset] = maxBin[k+kOffset]*xMax[k+kOffset]/nBin[k+kOffset];
583 if(maxXval[k+kOffset]-150.<0.) xlow[k+kOffset]=0.;
584 else xlow[k+kOffset] = maxXval[k+kOffset]-150.;
19419b67 585 if(hZNClg[k]->GetEntries() != 0){
586 atLeastOneHisto=1;
587 //
588 hZNClg[k]->Fit("gaus","Q","",xlow[k+kOffset],maxXval[k+kOffset]+150.);
589 fun[k+kOffset] = hZNClg[k]->GetFunction("gaus");
590 mean[k+kOffset] = (Float_t) (fun[k+kOffset]->GetParameter(1));
591 sigma[k+kOffset] = (Float_t) (fun[k+kOffset]->GetParameter(2));
592 }
9d0b658a 593 // --- ZPC
19419b67 594 detector[k+kOffset+5] = 2;
9d0b658a 595 quad[k+kOffset+5] = k;
596 maxBin[k+kOffset+5] = hZPClg[k]->GetMaximumBin();
597 nBin[k+kOffset+5] = (hZPClg[k]->GetXaxis())->GetNbins();
598 xMax[k+kOffset+5] = (hZPClg[k]->GetXaxis())->GetXmax();
599 if(nBin[k+kOffset+5]!=0) maxXval[k+kOffset+5] = maxBin[k+kOffset+5]*xMax[k+kOffset+5]/nBin[k+kOffset+5];
600 if(maxXval[k+kOffset+5]-150.<0.) xlow[k+kOffset+5]=0.;
601 else xlow[k+kOffset+5] = maxXval[k+kOffset+5]-150.;
19419b67 602 if(hZPClg[k]->GetEntries() != 0){
603 atLeastOneHisto=1;
604 //
605 hZPClg[k]->Fit("gaus","Q","",xlow[k+kOffset+5],maxXval[k+kOffset+5]+150.);
606 fun[k+kOffset+5] = hZPClg[k]->GetFunction("gaus");
607 mean[k+kOffset+5] = (Float_t) (fun[k+kOffset+5]->GetParameter(1));
608 sigma[k+kOffset+5] = (Float_t) (fun[k+kOffset+5]->GetParameter(2));
609 }
9d0b658a 610 // --- ZEM1
611 if(k+kOffset<2){
19419b67 612 detector[k+kOffset+10] = 3;
9d0b658a 613 quad[k+kOffset+10] = k+1;
614 maxBin[k+kOffset+10] = hZEMlg[k]->GetMaximumBin();
615 nBin[k+kOffset+10] = (hZEMlg[k]->GetXaxis())->GetNbins();
616 xMax[k+kOffset+10] = (hZEMlg[k]->GetXaxis())->GetXmax();
617 if(nBin[k+kOffset+10]!=0) maxXval[k+kOffset+10] = maxBin[k+kOffset+10]*xMax[k+kOffset+10]/nBin[k+kOffset+10];
618 if(maxXval[k+kOffset+10]-150.<0.) xlow[k+kOffset+10]=0.;
619 else xlow[k+kOffset+10] = maxXval[k+kOffset+10]-150.;
19419b67 620 if(hZEMlg[k]->GetEntries() != 0){
621 atLeastOneHisto=1;
622 //
623 hZEMlg[k]->Fit("gaus","Q","",xlow[k+kOffset+10],maxXval[k+kOffset+10]+150.);
624 fun[k+kOffset+10] = hZEMlg[k]->GetFunction("gaus");
625 mean[k+kOffset+10] = (Float_t) (fun[k+kOffset+10]->GetParameter(1));
626 sigma[k+kOffset+10] = (Float_t) (fun[k+kOffset+10]->GetParameter(2));
627 }
9d0b658a 628 }
629 // --- ZNA
19419b67 630 detector[k+kOffset+12] = 4;
9d0b658a 631 quad[k+kOffset+12] = k;
632 maxBin[k+kOffset+12] = hZNAlg[k]->GetMaximumBin();
633 nBin[k+kOffset+12] = (hZNAlg[k]->GetXaxis())->GetNbins();
634 xMax[k+kOffset+12] = (hZNAlg[k]->GetXaxis())->GetXmax();
635 if(nBin[k+kOffset+12]!=0) maxXval[k+kOffset+12] = maxBin[k+kOffset+12]*xMax[k+kOffset+12]/nBin[k+kOffset+12];
636 if(maxXval[k+kOffset+12]-150.<0.) xlow[k+kOffset+12]=0.;
637 else xlow[k+kOffset+12] = maxXval[k+kOffset+12]-150.;
19419b67 638 if(hZNAlg[k]->GetEntries() != 0){
639 atLeastOneHisto=1;
640 //
641 hZNAlg[k]->Fit("gaus","Q","",xlow[k+kOffset+12],maxXval[k+kOffset+12]+150.);
642 fun[k+kOffset+12] = hZNAlg[k]->GetFunction("gaus");
643 mean[k+kOffset+12] = (Float_t) (fun[k+kOffset+12]->GetParameter(1));
644 sigma[k+kOffset+12] = (Float_t) (fun[k+kOffset+12]->GetParameter(2));
645 }
9d0b658a 646 // --- ZPA
19419b67 647 detector[k+kOffset+17] = 5;
9d0b658a 648 quad[k+kOffset+17] = k;
649 maxBin[k+kOffset+17] = hZPAlg[k]->GetMaximumBin();
650 nBin[k+kOffset+17] = (hZPAlg[k]->GetXaxis())->GetNbins();
651 xMax[k+kOffset+17] = (hZPAlg[k]->GetXaxis())->GetXmax();
652 if(nBin[k+kOffset+17]!=0) maxXval[k+kOffset+17] = maxBin[k+kOffset+17]*xMax[k+kOffset+17]/nBin[k+kOffset+17];
653 if(maxXval[k+kOffset+17]-150.<0.) xlow[k+kOffset+17]=0.;
654 else xlow[k+kOffset+17] = maxXval[k+kOffset+17]-150.;
19419b67 655 if(hZPAlg[k]->GetEntries() != 0){
656 atLeastOneHisto=1;
657 //
658 hZPAlg[k]->Fit("gaus","Q","",xlow[k+kOffset+17],maxXval[k+kOffset+17]+150.);
659 fun[k+kOffset+17] = hZPAlg[k]->GetFunction("gaus");
660 mean[k+kOffset+17] = (Float_t) (fun[k+kOffset+17]->GetParameter(1));
661 sigma[k+kOffset+17] = (Float_t) (fun[k+kOffset+17]->GetParameter(2));
662 }
9d0b658a 663 }
664 // ~~~~~~~~ PM Ref side C ~~~~~~~~
19419b67 665 detector[46] = 1;
9d0b658a 666 quad[46] = 5;
667 maxBin[46] = hPMRefClg->GetMaximumBin();
668 nBin[46] = (hPMRefClg->GetXaxis())->GetNbins();
669 xMax[46] = (hPMRefClg->GetXaxis())->GetXmax();
670 if(nBin[46]!=0) maxXval[46] = maxBin[46]*xMax[46]/nBin[46];
671 if(maxXval[46]-150.<0.) xlow[46]=0.;
19419b67 672 else xlow[46] = maxXval[46]-150.;
673 if(hPMRefClg->GetEntries() != 0){
674 atLeastOneHisto=1;
675 //
676 hPMRefClg->Fit("gaus","Q","",xlow[46],maxXval[46]+150.);
677 fun[46] = hPMRefClg->GetFunction("gaus");
678 mean[46] = (Float_t) (fun[46]->GetParameter(1));
679 sigma[46] = (Float_t) (fun[46]->GetParameter(2));
680 }
bd94dbdd 681 // ~~~~~~~~ PM Ref side A ~~~~~~~~
19419b67 682 detector[47] = 4;
9d0b658a 683 quad[47] = 5;
684 maxBin[47] = hPMRefAlg->GetMaximumBin();
685 nBin[47] = (hPMRefAlg->GetXaxis())->GetNbins();
686 xMax[47] = (hPMRefAlg->GetXaxis())->GetXmax();
687 if(nBin[47]!=0) maxXval[47] = maxBin[47]*xMax[47]/nBin[47];
688 if(maxXval[47]-100.<0.) xlow[47]=0.;
19419b67 689 else xlow[47] = maxXval[47]-150.;
690 if(hPMRefAlg->GetEntries() != 0){
691 atLeastOneHisto=1;
692 //
693 hPMRefAlg->Fit("gaus","Q","",xlow[47],maxXval[47]+100.);
694 fun[47] = hPMRefAlg->GetFunction("gaus");
695 mean[47] = (Float_t) (fun[47]->GetParameter(1));
696 sigma[47] = (Float_t) (fun[47]->GetParameter(2));
697 }
698
699 if(atLeastOneHisto==0){
700 printf("\n WARNING! Empty LASER histos -> ending DA WITHOUT writing output\n\n");
701 return -1;
702 }
bd94dbdd 703
ead118d8 704 FILE *fileShuttle;
218f916a 705 fileShuttle = fopen(LASDATA_FILE,"w");
9d0b658a 706 for(Int_t i=0; i<2*kNChannels; i++){
19419b67 707 fprintf(fileShuttle,"\t%d\t%d\t%f\t%f\n",detector[i],quad[i],mean[i], sigma[i]);
bd94dbdd 708 }
ead118d8 709 //
710 fclose(fileShuttle);
65448375 711 /* report progress */
712 daqDA_progressReport(80);
713 //
714 TFile *histofile = new TFile(LASHISTO_FILE,"RECREATE");
715 histofile->cd();
716 for(int j=0; j<5; j++){
717 hZNChg[j]->Write();
718 hZPChg[j]->Write();
719 hZNAhg[j]->Write();
720 hZPAhg[j]->Write();
721 hZNClg[j]->Write();
722 hZPClg[j]->Write();
723 hZNAlg[j]->Write();
724 hZPAlg[j]->Write();
725 if(j<2){
726 hZEMhg[j]->Write();
727 hZEMlg[j]->Write();
728 }
729 }
730 hPMRefChg->Write();
731 hPMRefAhg->Write();
732 hPMRefClg->Write();
733 hPMRefAlg->Write();
734 //
735 histofile->Close();
ead118d8 736 //
bd94dbdd 737 for(Int_t j=0; j<5; j++){
9d0b658a 738 delete hZNChg[j];
739 delete hZPChg[j];
740 delete hZNAhg[j];
741 delete hZPAhg[j];
742 delete hZNClg[j];
743 delete hZPClg[j];
744 delete hZNAlg[j];
745 delete hZPAlg[j];
746 if(j<2){
747 delete hZEMhg[j];
748 delete hZEMlg[j];
749 }
bd94dbdd 750 }
9d0b658a 751 delete hPMRefChg;
752 delete hPMRefAhg;
753 delete hPMRefClg;
754 delete hPMRefAlg;
442e1b18 755
ead118d8 756 /* write report */
757 fprintf(fp,"Run #%s, received %d physics events out of %d\n",getenv("DATE_RUN_NUMBER"),nevents_physics,nevents_total);
758
759 /* close result file */
760 fclose(fp);
761
762 /* report progress */
763 daqDA_progressReport(90);
9d0b658a 764
ead118d8 765 /* store the result file on FES */
65448375 766 // [1] File with mapping
a8eaff64 767 status = daqDA_FES_storeFile(MAPDATA_FILE, "MAPPING");
442e1b18 768 if(status){
769 printf("Failed to export file : %d\n",status);
770 return -1;
771 }
772 //
65448375 773 // [2] File with laser data
a8eaff64 774 status = daqDA_FES_storeFile(LASDATA_FILE, "LASERDATA");
ead118d8 775 if(status){
776 printf("Failed to export file : %d\n",status);
777 return -1;
778 }
65448375 779 // [3] File with laser histos
a8eaff64 780 status = daqDA_FES_storeFile(LASHISTO_FILE, "LASERHISTOS");
65448375 781 if(status){
782 printf("Failed to export pedestal histos file to DAQ FES\n");
783 return -1;
784 }
ead118d8 785
786 /* report progress */
787 daqDA_progressReport(100);
788
ead118d8 789 return status;
790}