//
const int knADCData1=12, knADCData2=12;
const int knADCData3=12, knADCData4=12;
+ //
UInt_t lADCHeader1;
UInt_t lADCHeader2;
UInt_t lADCHeader3;
UInt_t lADCHeader4;
+ //
UInt_t lADCData1[2*knADCData1];
UInt_t lADCData2[2*knADCData2];
UInt_t lADCData3[2*knADCData3];
//printf("\t AliZDC::Digits2Raw -> TreeD has %d entries\n",(Int_t) treeD->GetEntries());
// Reading channel map
- printf("\n\t Reading ADC mapping from OCDB\n");
+ //printf("\n\t Reading ADC mapping from OCDB\n");
AliZDCChMap * chMap = GetChMap();
const int nCh = knADCData1+knADCData2+knADCData3+knADCData4;
Int_t mapADC[nCh][4];
mapADC[i][1] = chMap->GetADCChannel(i);
mapADC[i][2] = chMap->GetDetector(i);
mapADC[i][3] = chMap->GetSector(i);
+ // Ch. debug
+ //printf(" mapADC[%d] = (%d %d %d %d)\n", i,
+ // mapADC[i][0],mapADC[i][1],mapADC[i][2],mapADC[i][3]);
}
// *** Fill data array
UInt_t lADCDataOvFlwHG = 0;
UInt_t lADCDataOvFlwLG = 0;
//
- for(Int_t i=0; i<knADCData1 ; i++){
- lADCDataValue1[i] = 0;
- }
- for(Int_t i=0; i<knADCData2 ; i++){
- lADCDataValue2[i] = 0;
- }
- for(Int_t i=0; i<knADCData3 ; i++){
- lADCDataValue3[i] = 0;
- }
- for(Int_t i=0; i<knADCData4 ; i++){
- lADCDataValue4[i] = 0;
- }
+ for(Int_t i=0; i<2*knADCData1 ; i++) lADCDataValue1[i] = 0;
+ for(Int_t i=0; i<2*knADCData2 ; i++) lADCDataValue2[i] = 0;
+ for(Int_t i=0; i<2*knADCData3 ; i++) lADCDataValue3[i] = 0;
+ for(Int_t i=0; i<2*knADCData4 ; i++) lADCDataValue4[i] = 0;
//
UInt_t lADCDataChannel = 0;
treeD->GetEntry(iDigit);
if(!pdigit) continue;
//digit.Print("");
-
+
// *** ADC data
// Scan of the map to assign the correct ADC module-channel
for(Int_t k=0; k<nCh; k++){
+ if(iDigit<knADCData1+knADCData2){
if(digit.GetSector(0)==mapADC[k][2] && digit.GetSector(1)==mapADC[k][3]){
- lADCDataGEO = mapADC[k][0];
- lADCDataChannel = mapADC[k][1];
+ lADCDataGEO = (UInt_t) mapADC[k][0];
+ lADCDataChannel = (UInt_t) mapADC[k][1];
break;
}
+ }
+ else{
+ if(digit.GetSector(0)==mapADC[k][2] && digit.GetSector(1)==mapADC[k][3]){
+ lADCDataGEO = (UInt_t) mapADC[k][0];
+ lADCDataChannel = (UInt_t) mapADC[k][1];
+ if(k>knADCData1+knADCData2) break;
+ }
+ }
}
-
- if(lADCDataGEO==0){ // *** In-time signals - 1st ADC module
- // High gain ADC ch.
+ // Ch. debug
+ //printf(" det %d sec %d -> lADCDataGEO %d lADCDataChannel %d\n",
+ // digit.GetSector(0),digit.GetSector(1),lADCDataGEO,lADCDataChannel);
+
+ if(lADCDataGEO==0){
+ Int_t indHG = iDigit;
+ Int_t indLG = indHG+knADCData1;
+ // High gain ADC ch.
if(digit.GetADCValue(0) > 2047) lADCDataOvFlwHG = 1;
- lADCDataValue1[iDigit] = digit.GetADCValue(0);
- lADCData1[iDigit] = lADCDataGEO << 27 | lADCDataChannel << 17 |
- lADCDataOvFlwHG << 12 | (lADCDataValue1[iDigit] & 0xfff);
+ lADCDataValue1[indHG] = digit.GetADCValue(0);
+ lADCData1[indHG] = lADCDataGEO << 27 | lADCDataChannel << 17 |
+ lADCDataOvFlwHG << 12 | (lADCDataValue1[indHG] & 0xfff);
// Low gain ADC ch.
if(digit.GetADCValue(1) > 2047) lADCDataOvFlwLG = 1;
- lADCDataValue1[iDigit+knADCData1] = digit.GetADCValue(1);
- lADCData1[iDigit+knADCData1] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
- lADCDataOvFlwLG << 12 | (lADCDataValue1[iDigit+knADCData1] & 0xfff);
+ lADCDataValue1[indLG] = digit.GetADCValue(1);
+ lADCData1[indLG] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
+ lADCDataOvFlwLG << 12 | (lADCDataValue1[indLG] & 0xfff);
+ // Ch. debug
+ //printf(" lADCDataGEO %d lADCDataValue1[%d] = %d lADCDataValue1[%d] = %d\n",
+ // lADCDataGEO,iDigit,lADCDataValue1[indLG],indLG,lADCDataValue1[indLG]);
}
- else if(lADCDataGEO==1){ // *** In-time signals - 2nd ADC module
- // High gain ADC ch.
- if(digit.GetADCValue(0) > 2047) lADCDataOvFlwHG = 1;
- lADCDataValue2[iDigit] = digit.GetADCValue(0);
- lADCData2[iDigit] = lADCDataGEO << 27 | lADCDataChannel << 17 |
- lADCDataOvFlwHG << 12 | (lADCDataValue2[iDigit] & 0xfff);
- // Low gain ADC ch.
- if(digit.GetADCValue(1) > 2047) lADCDataOvFlwLG = 1;
- lADCDataValue2[iDigit+knADCData1] = digit.GetADCValue(1);
- lADCData2[iDigit+knADCData1] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
- lADCDataOvFlwLG << 12 | (lADCDataValue2[iDigit+knADCData2] & 0xfff);
- }
- else if(lADCDataGEO==2){ // *** Out-of-time signals - 3rd ADC module
- // High gain ADC ch.
- if(digit.GetADCValue(0) > 2047) lADCDataOvFlwHG = 1;
- lADCDataValue3[iDigit] = digit.GetADCValue(0);
- lADCData3[iDigit] = lADCDataGEO << 27 | lADCDataChannel << 17 |
- lADCDataOvFlwHG << 12 | (lADCDataValue3[iDigit] & 0xfff);
- // Low gain ADC ch.
- if(digit.GetADCValue(1) > 2047) lADCDataOvFlwLG = 1;
- lADCDataValue3[iDigit+knADCData1] = digit.GetADCValue(1);
- lADCData3[iDigit+knADCData3] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
- lADCDataOvFlwLG << 12 | (lADCDataValue3[iDigit+knADCData3] & 0xfff);
+ else if(lADCDataGEO==1){
+ Int_t indHG = iDigit-knADCData1;
+ Int_t indLG = indHG+knADCData2;
+ // High gain ADC ch.
+ if(digit.GetADCValue(0) > 2047) lADCDataOvFlwHG = 1;
+ lADCDataValue2[indHG] = digit.GetADCValue(0);
+ lADCData2[indHG] = lADCDataGEO << 27 | lADCDataChannel << 17 |
+ lADCDataOvFlwHG << 12 | (lADCDataValue2[indHG] & 0xfff);
+ // Low gain ADC ch.
+ if(digit.GetADCValue(1) > 2047) lADCDataOvFlwLG = 1;
+ lADCDataValue2[indLG] = digit.GetADCValue(1);
+ lADCData2[indLG] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
+ lADCDataOvFlwLG << 12 | (lADCDataValue2[indLG] & 0xfff);
+ //Ch. debug
+ //printf(" lADCDataGEO %d lADCDataValue2[%d] = %d lADCDataValue2[%d] = %d\n",
+ // lADCDataGEO,indHG,lADCDataValue2[indHG],indLG,lADCDataValue2[indLG]);
}
- else if(lADCDataGEO==3){ // *** Out-of-time signals - 4rth ADC
- // High gain ADC ch.
- if(digit.GetADCValue(0) > 2047) lADCDataOvFlwHG = 1;
- lADCDataValue4[iDigit] = digit.GetADCValue(0);
- lADCData4[iDigit] = lADCDataGEO << 27 | lADCDataChannel << 17 |
- lADCDataOvFlwHG << 12 | (lADCDataValue4[iDigit] & 0xfff);
- // Low gain ADC ch.
- if(digit.GetADCValue(1) > 2047) lADCDataOvFlwLG = 1;
- lADCDataValue4[iDigit+knADCData1] = digit.GetADCValue(1);
- lADCData4[iDigit+knADCData4] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
- lADCDataOvFlwLG << 12 | (lADCDataValue4[iDigit+knADCData4] & 0xfff);
- }
+ else if(lADCDataGEO==2){
+ Int_t indHG = iDigit-knADCData1-knADCData2;
+ Int_t indLG = indHG+knADCData3;
+ // High gain ADC ch.
+ if(digit.GetADCValue(0) > 2047) lADCDataOvFlwHG = 1;
+ lADCDataValue3[indHG] = digit.GetADCValue(0);
+ lADCData3[indHG] = lADCDataGEO << 27 | lADCDataChannel << 17 |
+ lADCDataOvFlwHG << 12 | (lADCDataValue3[indHG] & 0xfff);
+ // Low gain ADC ch.
+ if(digit.GetADCValue(1) > 2047) lADCDataOvFlwLG = 1;
+ lADCDataValue3[indLG] = digit.GetADCValue(1);
+ lADCData3[indLG] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
+ lADCDataOvFlwLG << 12 | (lADCDataValue3[indLG] & 0xfff);
+ //Ch. debug
+ //printf(" lADCDataGEO %d lADCDataValue3[%d] = %d lADCDataValue3[%d] = %d\n",
+ // lADCDataGEO,indHG,lADCDataValue3[indHG],indLG,lADCDataValue3[indLG]);
+ }
+ else if(lADCDataGEO==3){
+ Int_t indHG = iDigit-knADCData1-knADCData2-knADCData3;
+ Int_t indLG = indHG+knADCData4;
+ // High gain ADC ch.
+ if(digit.GetADCValue(0) > 2047) lADCDataOvFlwHG = 1;
+ lADCDataValue4[indHG] = digit.GetADCValue(0);
+ lADCData4[indHG] = lADCDataGEO << 27 | lADCDataChannel << 17 |
+ lADCDataOvFlwHG << 12 | (lADCDataValue4[indHG] & 0xfff);
+ // Low gain ADC ch.
+ if(digit.GetADCValue(1) > 2047) lADCDataOvFlwLG = 1;
+ lADCDataValue4[indLG] = digit.GetADCValue(1);
+ lADCData4[indLG] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
+ lADCDataOvFlwLG << 12 | (lADCDataValue4[indLG] & 0xfff);
+ // Ch. debug
+ //printf(" lADCDataGEO %d lADCDataValue4[%d] = %d lADCDataValue4[%d] = %d\n",
+ // lADCDataGEO,indHG,lADCDataValue4[indHG],indLG,lADCDataValue4[indLG]);
+ }
+
}
//
- /*
- for(Int_t i=0;i<knADCData1;i++) printf("\t ADCData1[%d] = %x\n",i,lADCData1[i]);
- for(Int_t i=0;i<knADCData2;i++) printf("\t ADCData2[%d] = %x\n",i,lADCData2[i]);
- for(Int_t i=0;i<knADCData1;i++) printf("\t ADCData3[%d] = %x\n",i,lADCData3[i]);
- for(Int_t i=0;i<knADCData2;i++) printf("\t ADCData4[%d] = %x\n",i,lADCData4[i]);
- */
-
+ /*for(Int_t i=0;i<2*knADCData1;i++) printf("\t ADCData1[%d] = %x\n",i,lADCData1[i]);
+ for(Int_t i=0;i<2*knADCData2;i++) printf("\t ADCData2[%d] = %x\n",i,lADCData2[i]);
+ for(Int_t i=0;i<2*knADCData3;i++) printf("\t ADCData3[%d] = %x\n",i,lADCData3[i]);
+ for(Int_t i=0;i<2*knADCData4;i++) printf("\t ADCData4[%d] = %x\n",i,lADCData4[i]);*/
+
// End of Block
- UInt_t lADCEndBlockGEO = lADCHeaderGEO1;
+ UInt_t lADCEndBlockGEO = 0;
// Event counter in ADC EOB -> getting no. of events in run from AliRunLoader
// get run loader
AliRunLoader* runLoader = fLoader->GetRunLoader();
sizeof(header),sizeof(lADCHeader1),sizeof(lADCData1),sizeof(lADCEndBlock));
printf("sizeof header = %d, ADCHeader2 = %d, ADCData2 = %d, ADCEndBlock = %d\n",
sizeof(header),sizeof(lADCHeader2),sizeof(lADCData2),sizeof(lADCEndBlock));
- */
- //
+ printf("sizeof header = %d, ADCHeader3 = %d, ADCData3 = %d, ADCEndBlock = %d\n",
+ sizeof(header),sizeof(lADCHeader1),sizeof(lADCData1),sizeof(lADCEndBlock));
+ printf("sizeof header = %d, ADCHeader4 = %d, ADCData4 = %d, ADCEndBlock = %d\n",
+ sizeof(header),sizeof(lADCHeader2),sizeof(lADCData2),sizeof(lADCEndBlock));*/
+
header.SetAttribute(0); // valid data
file->WriteBuffer((char*)(&header), sizeof(header));
-
// write the raw data and close the file
- file->WriteBuffer((char*) &lADCHeader1, sizeof (lADCHeader1));
- file->WriteBuffer((char*)(lADCData1), sizeof(lADCData1));
+ file->WriteBuffer((char*) &lADCHeader1, sizeof (lADCHeader1));
+ file->WriteBuffer((char*) &lADCData1, sizeof(lADCData1));
file->WriteBuffer((char*) &lADCEndBlock, sizeof(lADCEndBlock));
- file->WriteBuffer((char*) &lADCHeader2, sizeof (lADCHeader2));
- file->WriteBuffer((char*)(lADCData2), sizeof(lADCData2));
+ file->WriteBuffer((char*) &lADCHeader2, sizeof (lADCHeader2));
+ file->WriteBuffer((char*) (lADCData2), sizeof(lADCData2));
file->WriteBuffer((char*) &lADCEndBlock, sizeof(lADCEndBlock));
- file->WriteBuffer((char*) &lADCHeader3, sizeof (lADCHeader3));
- file->WriteBuffer((char*)(lADCData3), sizeof(lADCData3));
+ file->WriteBuffer((char*) &lADCHeader3, sizeof (lADCHeader3));
+ file->WriteBuffer((char*) (lADCData3), sizeof(lADCData3));
file->WriteBuffer((char*) &lADCEndBlock, sizeof(lADCEndBlock));
- file->WriteBuffer((char*) &lADCHeader4, sizeof (lADCHeader4));
- file->WriteBuffer((char*)(lADCData4), sizeof(lADCData4));
+ file->WriteBuffer((char*) &lADCHeader4, sizeof (lADCHeader4));
+ file->WriteBuffer((char*) (lADCData4), sizeof(lADCData4));
file->WriteBuffer((char*) &lADCEndBlock, sizeof(lADCEndBlock));
delete file;
Bool_t AliZDC::Raw2SDigits(AliRawReader* rawReader)
{
// Convert ZDC raw data to Sdigits
-
+ const int kNch = 48;
AliLoader* loader = (AliRunLoader::Instance())->GetLoader("ZDCLoader");
if(!loader) {
AliError("no ZDC loader found");
while(rawStream.Next()){
if(rawStream.IsADCDataWord()){
//For the moment only in-time SDigits are foreseen (1st 48 raw values)
- if(jcount < 48){
+ if(jcount < kNch){
for(Int_t j=0; j<2; j++) sector[j] = rawStream.GetSector(j);
rawADC = rawStream.GetADCValue();
resADC = rawStream.GetADCGain();