]> git.uio.no Git - u/mrichter/AliRoot.git/blobdiff - ZDC/ZDCEMDda.cxx
- fixing problem with offset subtraction
[u/mrichter/AliRoot.git] / ZDC / ZDCEMDda.cxx
index e295304f3e3806905a8368d9ba1eca3c8470738b..9d92b4622c53cbd715969587572dd6a80a43ea98 100644 (file)
@@ -9,7 +9,7 @@ The program reports about its processing progress.
 
 Messages on stdout are exported to DAQ log system.
 
-DA for ZDC standalone pedestal runs
+DA for ZDC standalone CALIBRATION_EMD runs
 
 Contact: Chiara.Oppedisano@to.infn.it
 Link: 
@@ -21,6 +21,10 @@ Output Files: ZDCEMDCalib.dat, ZDCChMapping.dat
 Trigger Types Used: Standalone Trigger
 
 */
+#define PEDDATA_FILE  "ZDCPedestal.dat"
+#define MAPDATA_FILE  "ZDCChMapping.dat"
+#define ENCALIBDATA_FILE   "ZDCEnergyCalib.dat"
+#define TOWCALIBDATA_FILE  "ZDCTowerCalib.dat"
 
 #include <stdio.h>
 #include <Riostream.h>
@@ -32,13 +36,15 @@ Trigger Types Used: Standalone Trigger
 #include <monitor.h>
 
 //ROOT
-#include <TRandom.h>
+#include <TROOT.h>
+#include <TPluginManager.h>
 #include <TH1F.h>
 #include <TH2F.h>
 #include <TProfile.h>
 #include <TF1.h>
 #include <TFile.h>
 #include <TFitter.h>
+#include "TMinuitMinimizer.h"
 
 //AliRoot
 #include <AliRawReaderDate.h>
@@ -52,10 +58,22 @@ Trigger Types Used: Standalone Trigger
 */
 int main(int argc, char **argv) {
   
-  TFitter *minuitFit = new TFitter(4);
-  TVirtualFitter::SetFitter(minuitFit);
+
+  gROOT->GetPluginManager()->AddHandler("TVirtualStreamerInfo",
+                                       "*",
+                                       "TStreamerInfo",
+                                       "RIO",
+                                       "TStreamerInfo()"); 
+
+  TMinuitMinimizer m; 
+  gROOT->GetPluginManager()->AddHandler("ROOT::Math::Minimizer", "Minuit","TMinuitMinimizer",
+      "Minuit", "TMinuitMinimizer(const char *)");
+  TVirtualFitter::SetDefaultFitter("Minuit");
 
   int status = 0;
+  // No. of ZDC cabled ch.
+  int const kNChannels = 24;
+  int const kNScChannels = 32;
 
   /* log start of process */
   printf("ZDC EMD program started\n");  
@@ -66,12 +84,11 @@ int main(int argc, char **argv) {
     return -1;
   }
   
-  //
   // --- Preparing histos for EM dissociation spectra
   //
   TH1F* histoEMDRaw[4];
   TH1F* histoEMDCorr[4];
-
+  //
   char namhistr[50], namhistc[50];
   for(Int_t i=0; i<4; i++) {
      if(i==0){
@@ -94,6 +111,25 @@ int main(int argc, char **argv) {
      histoEMDCorr[i] = new TH1F(namhistc,namhistc,100,0.,4000.);
   }
 
+   // --- Preparing histos for tower inter-calibration
+  //
+  TH1F* histZNCtow[4]; TH1F* histZPCtow[4];
+  TH1F* histZNAtow[4]; TH1F* histZPAtow[4];
+  //
+  char namhistznc[50], namhistzpc[50];
+  char namhistzna[50], namhistzpa[50];
+  for(Int_t i=0; i<4; i++) {
+     sprintf(namhistznc,"ZNC-tow%d",i+1);
+     sprintf(namhistzpc,"ZPC-tow%d",i+1);
+     sprintf(namhistzna,"ZNA-tow%d",i+1);
+     sprintf(namhistzpa,"ZPA-tow%d",i+1);
+     //
+     histZNCtow[i] = new TH1F(namhistznc,namhistznc,100,0.,4000.);
+     histZPCtow[i] = new TH1F(namhistzpc,namhistzpc,100,0.,4000.);
+     histZNAtow[i] = new TH1F(namhistzna,namhistzna,100,0.,4000.);
+     histZPAtow[i] = new TH1F(namhistzpa,namhistzpa,100,0.,4000.);
+  }
+  
   /* open result file */
   FILE *fp=NULL;
   fp=fopen("./result.txt","a");
@@ -103,32 +139,47 @@ int main(int argc, char **argv) {
   }
   
   FILE *mapFile4Shuttle;
-  const char *mapfName = "ZDCChMapping.dat";
 
-  /* define data source : this is argument 1 */  
-  status = monitorSetDataSource( argv[1] );
-  if(status!=0) {
-    printf("monitorSetDataSource() failed : %s\n",monitorDecodeError(status));
+  // *** To analyze EMD events you MUST have a pedestal data file!!!
+  // *** -> check if a pedestal run has been analyzed
+  int read = 0;
+  read = daqDA_DB_getFile(PEDDATA_FILE,PEDDATA_FILE);
+  if(read){
+    printf("\t ERROR!!! ZDCPedestal.dat file NOT FOUND in DAQ db!!!\n");
     return -1;
   }
-
-
-  /* declare monitoring program */
-  status = monitorDeclareMp( __FILE__ );
-  if (status!=0) {
-    printf("monitorDeclareMp() failed : %s\n",monitorDecodeError(status));
+  else printf("\t ZDCPedestal.dat file retrieved from DAQ db\n");
+  
+  FILE *filePed = fopen(PEDDATA_FILE,"r");
+  if (filePed==NULL) {
+    printf("\t ERROR!!! Can't open ZDCPedestal.dat file!!!\n");
     return -1;
   }
 
+  // 144 = 48 in-time + 48 out-of-time + 48 correlations
+  Float_t readValues[2][3*2*kNChannels];
+  Float_t MeanPed[2*kNChannels];
+  Float_t CorrCoeff0[2*kNChannels], CorrCoeff1[2*kNChannels];
+  // ***************************************************
+  //   Unless we have a narrow correlation to fit we
+  //   don't fit and store in-time vs. out-of-time
+  //   histograms -> mean pedstal subtracted!!!!!!
+  // ***************************************************
+  //
+  for(int jj=0; jj<6*kNChannels; jj++){
+    for(int ii=0; ii<2; ii++){
+       fscanf(filePed,"%f",&readValues[ii][jj]);
+    }
+    if(jj<kNChannels && jj<2*kNChannels){
+      MeanPed[jj] = readValues[0][jj];
+      //printf("\t MeanPedhg[%d] = %1.1f\n",jj, MeanPedhg[jj]);
+    }
+    else if(jj>2*kNChannels && jj>4*kNChannels){
+      CorrCoeff0[jj-4*kNChannels] = readValues[0][jj]; 
+      CorrCoeff1[jj-4*kNChannels] = readValues[1][jj];;
+    }
+  }
 
-  /* define wait event timeout - 1s max */
-  monitorSetNowait();
-  monitorSetNoWaitNetworkTimeout(1000);
-  
-
-  /* log start of process */
-  printf("ZDC EMD monitoring program started\n");  
-  
   /* report progress */
   daqDA_progressReport(10);
 
@@ -137,6 +188,9 @@ int main(int argc, char **argv) {
   int nevents_physics=0;
   int nevents_total=0;
 
+  struct eventHeaderStruct *event;
+  eventTypeType eventT;
+
   /* read the data files */
   int n;
   for(n=1;n<argc;n++){
@@ -153,8 +207,6 @@ int main(int argc, char **argv) {
 
     /* read the file */
     for(;;){
-      struct eventHeaderStruct *event;
-      eventTypeType eventT;
 
       /* get next event */
       status=monitorGetEventDynamic((void **)&event);
@@ -183,75 +235,80 @@ int main(int argc, char **argv) {
       /* use event - here, just write event id to result file */
       eventT=event->eventType;
       
-      Int_t ich=0, adcMod[48], adcCh[48], sigCode[48], det[48], sec[48];
+      Int_t ich=0;
+      Int_t adcMod[2*kNChannels], adcCh[2*kNChannels], sigCode[2*kNChannels];
+      Int_t det[2*kNChannels], sec[2*kNChannels];
+      for(Int_t y=0; y<2*kNChannels; y++){
+        adcMod[y]=adcCh[y]=sigCode[y]=det[y]=sec[y]=0;
+      }
+      
+      Int_t iScCh=0;
+      Int_t scMod[kNScChannels], scCh[kNScChannels], scSigCode[kNScChannels];
+      Int_t scDet[kNScChannels], scSec[kNScChannels];
+      for(Int_t y=0; y<kNScChannels; y++){
+        scMod[y]=scCh[y]=scSigCode[y]=scDet[y]=scSec[y]=0;
+      }
+      //
+      Int_t modNum=-1, modType=-1;
+      
       if(eventT==START_OF_DATA){
                
+       rawStreamZDC->SetSODReading(kTRUE);
+       
+       // --------------------------------------------------------
+       // --- Writing ascii data file for the Shuttle preprocessor
+        mapFile4Shuttle = fopen(MAPDATA_FILE,"w");
        if(!rawStreamZDC->Next()) printf(" \t No raw data found!! \n");
         else{
-         while(rawStreamZDC->Next()){
-            if(rawStreamZDC->IsChMapping()){
-             adcMod[ich] = rawStreamZDC->GetADCModFromMap(ich);
-             adcCh[ich] = rawStreamZDC->GetADCChFromMap(ich);
-             sigCode[ich] = rawStreamZDC->GetADCSignFromMap(ich);
-             det[ich] = rawStreamZDC->GetDetectorFromMap(ich);
-             sec[ich] = rawStreamZDC->GetTowerFromMap(ich);
-             ich++;
+         while((rawStreamZDC->Next())){
+            if(rawStreamZDC->IsHeaderMapping()){ // mapping header
+              modNum = rawStreamZDC->GetADCModule();
+              modType = rawStreamZDC->GetModType();
+           }
+            if(rawStreamZDC->IsChMapping()){ 
+             if(modType==1){ // ADC mapping ----------------------
+               adcMod[ich]  = rawStreamZDC->GetADCModFromMap(ich);
+               adcCh[ich]   = rawStreamZDC->GetADCChFromMap(ich);
+               sigCode[ich] = rawStreamZDC->GetADCSignFromMap(ich);
+               det[ich]     = rawStreamZDC->GetDetectorFromMap(ich);
+               sec[ich]     = rawStreamZDC->GetTowerFromMap(ich);
+               //
+               fprintf(mapFile4Shuttle,"\t%d\t%d\t%d\t%d\t%d\t%d\n",
+                 ich,adcMod[ich],adcCh[ich],sigCode[ich],det[ich],sec[ich]);
+               //
+               //printf("  Mapping in DA -> %d ADC: mod %d ch %d, code %d det %d, sec %d\n",
+               //  ich,adcMod[ich],adcCh[ich],sigCode[ich],det[ich],sec[ich]);
+               //
+               ich++;
+             }
+             else if(modType==2){ //VME scaler mapping --------------------
+               scMod[iScCh]     = rawStreamZDC->GetScalerModFromMap(iScCh);
+               scCh[iScCh]      = rawStreamZDC->GetScalerChFromMap(iScCh);
+               scSigCode[iScCh] = rawStreamZDC->GetScalerSignFromMap(iScCh);
+               scDet[iScCh]     = rawStreamZDC->GetScDetectorFromMap(iScCh);
+               scSec[iScCh]    = rawStreamZDC->GetScTowerFromMap(iScCh);
+               //
+               fprintf(mapFile4Shuttle,"\t%d\t%d\t%d\t%d\t%d\t%d\n",
+                 iScCh,scMod[iScCh],scCh[iScCh],scSigCode[iScCh],scDet[iScCh],scSec[iScCh]);
+               //
+               //printf("  Mapping in DA -> %d Scaler: mod %d ch %d, code %d det %d, sec %d\n",
+               //  iScCh,scMod[iScCh],scCh[iScCh],scSigCode[iScCh],scDet[iScCh],scSec[iScCh]);
+               //
+               iScCh++;
+             }
            }
          }
        }
-       // --------------------------------------------------------
-       // --- Writing ascii data file for the Shuttle preprocessor
-        mapFile4Shuttle = fopen(mapfName,"w");
-        for(Int_t i=0; i<ich; i++){
-          fprintf(mapFile4Shuttle,"\t%d\t%d\t%d\t%d\t%d\t%d\n",i,
-            adcMod[i],adcCh[i],sigCode[i],det[i],sec[i]);
-          //
-          //printf("ZDCPEDESTALDA.cxx ->  ch.%d mod %d, ch %d, code %d det %d, sec %d\n",
-          //      i,adcMod[i],adcCh[i],sigCode[i],det[i],sec[i]);
-        }
         fclose(mapFile4Shuttle);
-      }
+      }// SOD event
     
     if(eventT==PHYSICS_EVENT){
-      //
-      // *** To analyze EMD events you MUST have a pedestal data file!!!
-      // *** -> check if a pedestal run has been analyzied
-      FILE *filePed=NULL;
-      filePed=fopen("./ZDCPedestal.dat","r");
-      if (filePed==NULL) {
-        printf("\t ERROR!!! You MUST have a ZDCPedestal.dat file!!!\n");
-        return -1;
-      }
-      // 144 = 48 in-time + 48 out-of-time + 48 correlations
-      Float_t readValues[2][144], MeanPed[44], MeanPedWidth[44], 
-             MeanPedOOT[44], MeanPedWidthOOT[44],
-             CorrCoeff0[44], CorrCoeff1[44];
-      //
-      for(int jj=0; jj<144; jj++){
-        for(int ii=0; ii<2; ii++){
-           fscanf(filePed,"%f",&readValues[ii][jj]);
-        }
-       if(jj<48){
-         MeanPed[jj] = readValues[0][jj];
-         MeanPedWidth[jj] = readValues[1][jj];
-       }
-       else if(jj>48 && jj<96){
-         MeanPedOOT[jj-48] = readValues[0][jj];
-         MeanPedWidthOOT[jj-48] = readValues[1][jj];
-       }
-       else if(jj>144){
-         CorrCoeff0[jj-96] = readValues[0][jj]; 
-         CorrCoeff1[jj-96] = readValues[1][jj];;
-       }
-      }
-      //
-
-       // --- Reading data header
-        reader->ReadHeader();
+      // --- Reading data header
+      reader->ReadHeader();
       const AliRawDataHeader* header = reader->GetDataHeader();
       if(header){
          UChar_t message = header->GetAttributes();
-        if(message & 0x70){ // DEDICATED EMD RUN
+        if((message & 0x70) == 0x70){ // DEDICATED EMD RUN
            //printf("\t STANDALONE_EMD_RUN raw data found\n");
            continue;
         }
@@ -264,11 +321,13 @@ int main(int argc, char **argv) {
          printf("\t ATTENTION! No Raw Data Header found!!!\n");
          return -1;
       }
+      
+      rawStreamZDC->SetSODReading(kTRUE);
 
       if (!rawStreamZDC->Next()) printf(" \t No raw data found!! ");
       //
       // ----- Setting ch. mapping -----
-      for(Int_t jk=0; jk<48; jk++){
+      for(Int_t jk=0; jk<2*kNChannels; jk++){
         rawStreamZDC->SetMapADCMod(jk, adcMod[jk]);
         rawStreamZDC->SetMapADCCh(jk, adcCh[jk]);
         rawStreamZDC->SetMapADCSig(jk, sigCode[jk]);
@@ -283,37 +342,70 @@ int main(int argc, char **argv) {
       }
       //
       while(rawStreamZDC->Next()){
-        if(rawStreamZDC->IsADCDataWord()){
+       Int_t det = rawStreamZDC->GetSector(0);
+       Int_t quad = rawStreamZDC->GetSector(1);
+        
+       if(rawStreamZDC->IsADCDataWord() && !(rawStreamZDC->IsUnderflow())
+            && !(rawStreamZDC->IsOverflow()) && det!=-1
+            && (rawStreamZDC->GetADCGain() == 1)){ // Selecting LOW RES ch.s
+
+         //printf("  IsADCWord %d, IsUnderflow %d, IsOverflow %d\n",
+         //  rawStreamZDC->IsADCDataWord(),rawStreamZDC->IsUnderflow(),rawStreamZDC->IsOverflow());
+         
+         // Taking LOW RES channels -> ch.+kNChannels !!!!
          Int_t DetIndex=999, PedIndex=999;
-         if(rawStreamZDC->GetSector(0) == 1 || rawStreamZDC->GetSector(0) == 2){
-           DetIndex = rawStreamZDC->GetSector(0)-1;
-           PedIndex = (rawStreamZDC->GetSector(0)+1)+4*rawStreamZDC->GetSector(1);
-         }
-         else if(rawStreamZDC->GetSector(0) == 4 || rawStreamZDC->GetSector(0) == 5){
-           DetIndex = rawStreamZDC->GetSector(0)-2;
-           PedIndex = (rawStreamZDC->GetSector(0)-2)+4*rawStreamZDC->GetSector(1)+24;
-         }
-          //
-         if(rawStreamZDC->GetADCGain() == 1){ //EMD -> LR ADC
-           //
-           ZDCRawADC[DetIndex] += (Float_t) rawStreamZDC->GetADCValue();
+         // Not ZEM not PMRef && low gain chain
+         if((det!=3) && (quad!=5) && (rawStreamZDC->GetADCGain()==1)){ 
+           if(det == 1){
+             DetIndex = det-1;
+             PedIndex = quad+kNChannels; 
+           }
+           else if(det==2){
+             DetIndex = det-1;
+             PedIndex = quad+5+kNChannels;
+           }
+           else if(det == 4){
+             DetIndex = det-2;
+             PedIndex = quad+12+kNChannels;
+           }
+           else if(det == 5){
+             DetIndex = det-2;
+             PedIndex = quad+17+kNChannels;
+           }
            // Mean pedestal subtraction 
            Float_t Pedestal = MeanPed[PedIndex];
            // Pedestal subtraction from correlation with out-of-time signals
            //Float_t Pedestal = CorrCoeff0[PedIndex]+CorrCoeff1[PedIndex]*MeanPedOOT[PedIndex];
-           //
-           ZDCCorrADC[DetIndex] = (rawStreamZDC->GetADCValue()) - Pedestal;
-           ZDCCorrADCSum[DetIndex] += ZDCCorrADC[DetIndex];
-           //
-           /*printf("\t det %d quad %d res %d pedInd %d ADCCorr %d ZDCCorrADCSum[%d] = %d\n", 
-              rawStreamZDC->GetSector(0),rawStreamZDC->GetSector(1),
-              rawStreamZDC->GetADCGain(),PedIndex,  
-              (Int_t) (rawStreamZDC->GetADCValue() - Pedestal), DetIndex, 
-              (Int_t) ZDCCorrADCSum[DetIndex]);
-           */
-         }   
+            //
+           if(DetIndex!=999 || PedIndex!=999){ 
+             //
+             ZDCRawADC[DetIndex] += (Float_t) rawStreamZDC->GetADCValue();
+             //
+             //
+             ZDCCorrADC[DetIndex] = (rawStreamZDC->GetADCValue()) - Pedestal;
+             ZDCCorrADCSum[DetIndex] += ZDCCorrADC[DetIndex];
+             //
+             /*printf("\t det %d quad %d res %d pedInd %d detInd %d:"
+                "ADCCorr = %d, ZDCCorrADCSum = %d\n", 
+                det,quad,rawStreamZDC->GetADCGain(),PedIndex,DetIndex, 
+                (Int_t) ZDCCorrADC[DetIndex],(Int_t) ZDCCorrADCSum[DetIndex]);
+             */              
+           }
+           // Not common nor ref. PM && low gain chain
+           if((quad!=0) && (rawStreamZDC->GetADCGain()==1)){
+             Float_t corrADCval = (rawStreamZDC->GetADCValue()) - Pedestal;
+             if(det==1)      histZNCtow[quad]->Fill(corrADCval);
+             else if(det==2) histZPCtow[quad]->Fill(corrADCval);
+             else if(det==4) histZNAtow[quad]->Fill(corrADCval);
+             else if(det==5) histZPAtow[quad]->Fill(corrADCval);
+           }
+
+           if(DetIndex==999 || PedIndex==999) 
+               printf(" WARNING! Detector a/o pedestal index are WRONG!!!\n");
+         }
        }//IsADCDataWord()
-        //
+       
        }
        //
        nevents_physics++;
@@ -322,27 +414,19 @@ int main(int argc, char **argv) {
           histoEMDRaw[j]->Fill(ZDCRawADC[j]);
           histoEMDCorr[j]->Fill(ZDCCorrADCSum[j]);
        }
-    }
+    }//(if PHYSICS_EVENT)
     
     nevents_total++;
 
-    /* free resources */
-    free(event);
-    
-    /* exit when last event received, no need to wait for TERM signal */
-    if (eventT==END_OF_RUN) {
-      printf("EOR event detected\n");
-      break;
-    }
-
    }
+
+   /* free resources */
+   free(event);
   }
     
   /* Analysis of the histograms */
   //
-  FILE *fileShuttle;
-  const char *fName = "ZDCPedestal.dat";
-  fileShuttle = fopen(fName,"w");
+  FILE *fileShuttle1 = fopen(ENCALIBDATA_FILE,"w");
   //
   Int_t BinMax[4];
   Float_t YMax[4];
@@ -350,6 +434,10 @@ int main(int argc, char **argv) {
   Float_t MeanFitVal[4];
   TF1 *fitfun[4];
   for(Int_t k=0; k<4; k++){
+     if(histoEMDCorr[k]->GetEntries() == 0){
+       printf("\n WARNING! Empty histos -> ending DA WITHOUT writing output\n\n");
+       return -1;
+     } 
      BinMax[k] = histoEMDCorr[k]->GetMaximumBin();
      YMax[k] = (histoEMDCorr[k]->GetXaxis())->GetXmax();
      NBinsx[k] = (histoEMDCorr[k]->GetXaxis())->GetNbins();
@@ -360,22 +448,59 @@ int main(int argc, char **argv) {
      //printf("\n\t Mean Value from gaussian fit = %f\n", MeanFitVal[k]);
   }
   //
-   Float_t CalibCoeff[6];
-  /*for(Int_t j=0; j<6; j++){
-     if(j<4) CalibCoeff[j] = MeanFitVal[j];
-     else  CalibCoeff[j] = 1.;
-     fprintf(fileShuttle,"\t%f\n",CalibCoeff[j]);
-  }
-  */
-  // --- For the moment we have sim data only for ZN1!!!
+  Float_t CalibCoeff[6];     
+  //Float_t icoeff[5];
+  //
   for(Int_t j=0; j<6; j++){
-     if(j==0) CalibCoeff[j] = MeanFitVal[j];
-     else if(j>0 && j<4) CalibCoeff[j] = CalibCoeff[0];
-     else  CalibCoeff[j] = 1.;
-     fprintf(fileShuttle,"\t%f\n",CalibCoeff[j]);
+     if(j<4){
+       CalibCoeff[j] = MeanFitVal[j];
+       fprintf(fileShuttle1,"\t%f\n",CalibCoeff[j]);
+     }
+     // ZEM energy calib. coeff. = 1
+     else if(j==4 || j==5){
+       CalibCoeff[j] = 1.; 
+       fprintf(fileShuttle1,"\t%f\n",CalibCoeff[j]);
+     }
   }
-  //                                                  
-  fclose(fileShuttle);
+  fclose(fileShuttle1);
+  FILE *fileShuttle2 = fopen(TOWCALIBDATA_FILE,"w");
+  Float_t meanvalznc[4], meanvalzpc[4], meanvalzna[4], meanvalzpa[4];
+  for(Int_t j=0; j<4; j++){
+     if(histZNCtow[j]->GetEntries() == 0){
+       printf("\n WARNING! Empty histos -> ending DA WITHOUT writing output\n\n");
+       return -1;
+     } 
+     meanvalznc[j] = histZNCtow[j]->GetMean();
+     meanvalzpc[j] = histZPCtow[j]->GetMean();
+     meanvalzna[j] = histZNAtow[j]->GetMean();
+     meanvalzpa[j] = histZPAtow[j]->GetMean();
+     
+     // Note -> For the moment the inter-calibration coeff. are set to 1 
+     /*for(Int_t k=0; k<4; k++){  
+       icoeff[k] = 1.;
+       fprintf(fileShuttle2,"\t%f",icoeff[k]);
+       if(k==4) fprintf(fileShuttle2,"\n");
+     }*/
+  }
+  if(meanvalznc[1]!=0 && meanvalznc[2]!=0 && meanvalznc[3]!=0 && 
+     meanvalzpc[1]!=0 && meanvalzpc[2]!=0 && meanvalzpc[3]!=0 &&
+     meanvalzna[1]!=0 && meanvalzna[2]!=0 && meanvalzna[3]!=0 &&
+     meanvalzpa[1]!=0 && meanvalzpa[2]!=0 && meanvalzpa[3]!=0){
+    fprintf(fileShuttle2,"\t%f\t%f\t%f\t%f\n",
+       1.0,meanvalznc[0]/meanvalznc[1],meanvalznc[0]/meanvalznc[2],meanvalznc[0]/meanvalznc[3]);
+    fprintf(fileShuttle2,"\t%f\t%f\t%f\t%f\n",
+       1.0,meanvalzpc[0]/meanvalzpc[1],meanvalzpc[0]/meanvalzpc[2],meanvalzpc[0]/meanvalzpc[3]);
+    fprintf(fileShuttle2,"\t%f\t%f\t%f\t%f\n",
+       1.0,meanvalzna[0]/meanvalzna[1],meanvalzpc[0]/meanvalzna[2],meanvalzpc[0]/meanvalzna[3]);
+    fprintf(fileShuttle2,"\t%f\t%f\t%f\t%f\n",
+       1.0,meanvalzpa[0]/meanvalzpa[1],meanvalzpc[0]/meanvalzpa[2],meanvalzpc[0]/meanvalzpa[3]);
+  }
+  else{
+    printf("\n Tower intercalib. coeff. CAN'T be calculated (some mean values are ZERO)!!!\n\n");
+    return -1;
+  }
+  fclose(fileShuttle2);
   
   for(Int_t ij=0; ij<4; ij++){
     delete histoEMDRaw[ij];
@@ -395,13 +520,19 @@ int main(int argc, char **argv) {
   daqDA_progressReport(90);
 
   /* store the result file on FES */
-  status = daqDA_FES_storeFile(mapfName,"ZDCCHMAPPING_data");
+  status = daqDA_FES_storeFile(MAPDATA_FILE, "MAPPING");
+  if(status){
+    printf("Failed to export file : %d\n",status);
+    return -1;
+  }
+  //
+  status = daqDA_FES_storeFile(ENCALIBDATA_FILE, "EMDENERGYCALIB");
   if(status){
     printf("Failed to export file : %d\n",status);
     return -1;
   }
   //
-  status = daqDA_FES_storeFile(fName,"ZDCEMD_data");
+  status = daqDA_FES_storeFile(TOWCALIBDATA_FILE, "EMDTOWERCALIB");
   if(status){
     printf("Failed to export file : %d\n",status);
     return -1;