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void scaleMeanToUnit(float C[170][360]){
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double mean = 0;
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int n = 0;
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for(int j=0; j< 170; j++){
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for(int k=0; k< 360; k++){
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if( C[j][k] >0){
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mean += C[j][k];
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n ++;
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}
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}
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}
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mean /= n;
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cout<<"mean " << mean<<" "<<n<<endl;
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for(int j=0; j< 170; j++){
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for(int k=0; k< 360; k++){
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if(C[j][k] >0){
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C[j][k] /= mean;
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}
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}
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}
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}
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void NormIetaToUnitTestBeamSMOnly(float C[170][360]){
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float mean_ieta[170] = {0};
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int nmean_ieta[170] = {0};
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float mean_ietaTT[170] = {0};
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int nmean_ietaTT[170] = {0};
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for(int j=0; j< 170; j++){
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int ieta = j-85;
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if( ieta >=0) ieta += 1;
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for(int k=0; k< 360; k++){
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int iphi = k;
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if( k==0) iphi = 360;
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int iSM = (iphi-1)/20+1;
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if( ieta<0) iSM += 18;
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int smTB = isTestBeamSM(iSM);
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if( smTB ==0) continue;
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//if( C[j][k] >0 ){
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if( C[j][k] >0.5 && C[j][k] < 1.5 ){
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mean_ieta[j] += C[j][k];
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nmean_ieta[j] ++;
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mean_ietaTT[j/5] += C[j][k];
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nmean_ietaTT[j/5] ++;
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}
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}
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}
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for(int j=0; j< 170; j++){
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mean_ieta[j] /= nmean_ieta[j];
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//cout<<" mean_ieta[" << j<<"] "<< mean_ieta[j] <<endl;
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}
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// for(int j=0; j< 34; j++){
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// mean_ietaTT[j] /= nmean_ietaTT[j];
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// cout<<" mean_ietaTT[" << j<<"] "<< mean_ietaTT[j] <<endl;
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// }
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for(int j=0; j< 170; j++){
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for(int k=0; k< 360; k++){
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if( C[j][k] >0 ){
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C[j][k] /= mean_ieta[j] ;
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}
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}
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}
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}
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void NormIetaAbsToUnitTestBeamSMOnly(float C[170][360]){
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float mean_ieta[170] = {0};
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int nmean_ieta[170] = {0};
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float mean_ietaTT[170] = {0};
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int nmean_ietaTT[170] = {0};
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for(int j=0; j< 170; j++){
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int ieta = j-85;
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if( ieta >=0) ieta += 1;
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for(int k=0; k< 360; k++){
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int iphi = k;
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if( k==0) iphi = 360;
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int iSM = (iphi-1)/20+1;
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if( ieta<0) iSM += 18;
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int smTB = isTestBeamSM(iSM);
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if( smTB ==0) continue;
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int ietaAbs = abs(ieta);
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//if( C[j][k] >0 ){
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if( C[j][k] >0.5 && C[j][k] < 1.5 ){
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mean_ieta[ietaAbs-1] += C[j][k];
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nmean_ieta[ietaAbs-1] ++;
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mean_ietaTT[j/5] += C[j][k];
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nmean_ietaTT[j/5] ++;
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}
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}
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}
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for(int j=0; j< 85; j++){
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mean_ieta[j] /= nmean_ieta[j];
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//cout<<" mean_ietaAbs[" << j<<"] "<< mean_ieta[j] <<endl;
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}
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// for(int j=0; j< 34; j++){
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// mean_ietaTT[j] /= nmean_ietaTT[j];
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// cout<<" mean_ietaTT[" << j<<"] "<< mean_ietaTT[j] <<endl;
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// }
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for(int j=0; j< 170; j++){
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int ieta = j-85;
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if( ieta >=0) ieta += 1;
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for(int k=0; k< 360; k++){
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int ietaAbs = abs(ieta);
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if( C[j][k] >0 ){
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C[j][k] /= mean_ieta[ietaAbs-1] ;
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}
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}
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}
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}
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void NormCrystalDeadFlag_v1(float C[170][360], int ndeadflagietaiphi[170][360]){
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float mean_deadflag[20] = {0};
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float nmean_deadflag[20] = {0};
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int ndeadCrystals = 0;
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for(int j=0; j< 170; j++){
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for(int k=0; k< 360; k++){
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if( C[j][k] <0){
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ndeadCrystals++;
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continue;
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}
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int ndeadflag = ndeadflagietaiphi[j][k];
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if( ndeadflag >=0){
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mean_deadflag[ndeadflag] += C[j][k];
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nmean_deadflag[ndeadflag] ++;
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}
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}
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}
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cout<<" NormCrystalDeadFlag ndeadCrystals: " << ndeadCrystals <<endl;
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for(int j=0; j<20; j++){
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if( nmean_deadflag[j] >0){
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mean_deadflag[j] /= nmean_deadflag[j];
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cout<<" mean_deadflag "<<j<<" "<< mean_deadflag[j]<< " "<< nmean_deadflag[j] <<endl;
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}
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}
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for(int j=0; j< 170; j++){
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for(int k=0; k< 360; k++){
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if( C[j][k] <0) continue;
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int ndeadflag = ndeadflagietaiphi[j][k];
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if( ndeadflag >=0){
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C[j][k] /= mean_deadflag[ndeadflag];
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}
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}
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}
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}
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void NormCrystalDeadFlag(float C[170][360]){
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float mean_deadflag[20] = {0};
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float nmean_deadflag[20] = {0};
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int ndeadCrystals = 0;
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for(int j=0; j< 170; j++){
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for(int k=0; k< 360; k++){
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if( C[j][k] <0){
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ndeadCrystals++;
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continue;
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}
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int ndeadflag = ndeadflag_ietaiphi[j][k];
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if( ndeadflag >=0){
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mean_deadflag[ndeadflag] += C[j][k];
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nmean_deadflag[ndeadflag] ++;
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}
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}
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}
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cout<<" NormCrystalDeadFlag ndeadCrystals: " << ndeadCrystals <<endl;
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for(int j=0; j<20; j++){
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if( nmean_deadflag[j] >0){
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mean_deadflag[j] /= nmean_deadflag[j];
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cout<<" mean_deadflag "<<j<<" "<< mean_deadflag[j]<< " "<< nmean_deadflag[j] <<endl;
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}
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}
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for(int j=0; j< 170; j++){
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for(int k=0; k< 360; k++){
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if( C[j][k] <0) continue;
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int ndeadflag = ndeadflag_ietaiphi[j][k];
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if( ndeadflag >=0){
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C[j][k] /= mean_deadflag[ndeadflag];
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}
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}
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}
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}
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void SetSMScale(float C[170][360],TH1F *hhtmp){
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float mean_ism[36] = {0};
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float nmean_ism[36]= {0};
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for(int j=0; j< 170; j++){
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for(int k=0; k< 360; k++){
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int ieta = j-85;
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if( j >=0) ieta += 1;
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int iphi = k;
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if( k==0) iphi = 360;
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int iSM = (iphi-1)/20+1;
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if( ieta<0) iSM += 18;
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if( C[j][k] >0 ){
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mean_ism[iSM-1 ] += C[j][k];
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nmean_ism[iSM-1] ++;
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}
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}
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}
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for(int j=0; j<36; j++){
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mean_ism[j] /= nmean_ism[j];
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/// cout<<"sm mean: " << j+1 <<" "<< mean_ism[j] <<" "<< nmean_ism[j]<<endl;
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}
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for(int j=0; j< 170; j++){
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for(int k=0; k< 360; k++){
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int ieta = j-85;
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if( j >=0) ieta += 1;
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int iphi = k;
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if( k==0) iphi = 360;
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int iSM = (iphi-1)/20+1;
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if( ieta<0) iSM += 18;
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if( C[j][k] >0 ){
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C[j][k] *= hhtmp->GetBinContent(iSM);
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}
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}
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}
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}
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void NormSMScaleToUnit(float C[170][360]){
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float mean_ism[36] = {0};
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float nmean_ism[36]= {0};
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301 |
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for(int j=0; j< 170; j++){
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for(int k=0; k< 360; k++){
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304 |
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int ieta = j-85;
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306 |
if( j >=0) ieta += 1;
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307 |
int iphi = k;
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308 |
if( k==0) iphi = 360;
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int iSM = (iphi-1)/20+1;
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if( ieta<0) iSM += 18;
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311 |
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312 |
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313 |
if( C[j][k] >0 ){
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mean_ism[iSM-1 ] += C[j][k];
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nmean_ism[iSM-1] ++;
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316 |
}
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}
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}
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for(int j=0; j<36; j++){
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mean_ism[j] /= nmean_ism[j];
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//cout<<"sm mean: " << j+1 <<" "<< mean_ism[j] <<" "<< nmean_ism[j]<<endl;
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}
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324 |
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for(int j=0; j< 170; j++){
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326 |
for(int k=0; k< 360; k++){
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327 |
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328 |
int ieta = j-85;
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if( j >=0) ieta += 1;
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330 |
int iphi = k;
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if( k==0) iphi = 360;
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int iSM = (iphi-1)/20+1;
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if( ieta<0) iSM += 18;
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if( C[j][k] >0 ){
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C[j][k] /= mean_ism[iSM-1];
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}
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}
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}
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}
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void readInterCalibConstEBSimple(const char *input,float C[170][360]){
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347 |
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348 |
ifstream txtin1(input,ios::in);
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349 |
if (txtin1.fail()){
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350 |
cout<<"error open file barrel.. " << input<<endl;
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351 |
exit(1);
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}
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353 |
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354 |
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355 |
int eta;
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356 |
int phi;
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357 |
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358 |
float cc;
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359 |
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360 |
int n =0;
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361 |
while(txtin1.good()){
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362 |
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363 |
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364 |
txtin1 >> eta >> phi >> cc;
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365 |
convxtalid(phi,eta);
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366 |
eta += 85;
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367 |
C[eta][phi] = cc;
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368 |
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369 |
n++;
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370 |
if( n>= 61200) break;
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371 |
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}
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373 |
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}
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375 |
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377 |
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378 |
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379 |
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380 |
void readInterCalibConstEBSimplev1(const char *input,float C[170][360]){
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381 |
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382 |
ifstream txtin1(input,ios::in);
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383 |
if (txtin1.fail()){
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384 |
cout<<"error open file barrel.. " << input<<endl;
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385 |
exit(1);
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386 |
}
|
387 |
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388 |
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389 |
int eta;
|
390 |
int phi;
|
391 |
|
392 |
float cc;
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393 |
double mean = 0;
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394 |
int ngood = 0;
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395 |
int n =0;
|
396 |
while(txtin1.good()){
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397 |
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398 |
txtin1 >> eta >> phi >> cc;
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399 |
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400 |
if( !(eta>=0 && eta <= 169 && phi >=0 && phi<=359)) {
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401 |
cout<<"wrong eta/phi " << eta<<" "<<phi <<endl;
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402 |
exit(1);
|
403 |
}
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404 |
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405 |
C[eta][phi] = cc;
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406 |
if( cc >0){
|
407 |
mean += cc;
|
408 |
ngood ++;
|
409 |
}
|
410 |
n++;
|
411 |
if( n>= 61200) break;
|
412 |
}
|
413 |
mean /= ngood;
|
414 |
cout<<"read ngood "<< ngood <<" mean: "<< mean<<endl;
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415 |
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416 |
for(int j=0; j<170; j++){
|
417 |
for(int k=0; k<360;k++){
|
418 |
if(C[j][k] >0) {
|
419 |
C[j][k] /= mean;
|
420 |
}
|
421 |
}
|
422 |
}
|
423 |
|
424 |
}
|
425 |
|
426 |
|
427 |
|
428 |
|