| 35 |
// |
// |
| 36 |
} |
} |
| 37 |
|
|
| 38 |
|
void CaloEnergy::Delete(){ |
| 39 |
|
Clear(); |
| 40 |
|
delete this; |
| 41 |
|
} |
| 42 |
|
|
| 43 |
|
void CaloEnergy::UseLevel2(){ |
| 44 |
|
if ( clong ){ |
| 45 |
|
delete clong; |
| 46 |
|
clong = new CaloLong(L2); |
| 47 |
|
clong->SplitInto(0,22); |
| 48 |
|
}; |
| 49 |
|
if ( cp ) delete cp; |
| 50 |
|
cp = NULL; |
| 51 |
|
} |
| 52 |
|
|
| 53 |
void CaloEnergy::UseCaloPreSampler(){ |
void CaloEnergy::UseCaloPreSampler(){ |
| 54 |
// |
// |
| 55 |
// use the presampler setting forcefitmode to 1000 means to force the DV routine to find the track inside the calorimeter using the "shower" approach developed for electrons |
// use the presampler setting forcefitmode to 1000 means to force the DV routine to find the track inside the calorimeter using the "shower" approach developed for electrons |
| 61 |
// cp->ForceCaloFit(); |
// cp->ForceCaloFit(); |
| 62 |
// cp->SetDebug(true); |
// cp->SetDebug(true); |
| 63 |
// cp->Process(); |
// cp->Process(); |
| 64 |
if ( clong ) clong->SetCaloLevel2Pointer(cp->GetLevel2Pointer()); |
if ( clong ) clong->SetCaloLevel2Pointer(cp->GetCaloLevel2Pointer()); |
| 65 |
} |
} |
| 66 |
|
|
| 67 |
|
|
| 70 |
fLong = true; |
fLong = true; |
| 71 |
if ( !clong ){ |
if ( !clong ){ |
| 72 |
clong = new CaloLong(L2); |
clong = new CaloLong(L2); |
| 73 |
if ( cp ) clong->SetCaloLevel2Pointer(cp->GetLevel2Pointer()); |
if ( cp ) clong->SetCaloLevel2Pointer(cp->GetCaloLevel2Pointer()); |
| 74 |
clong->SplitInto(0,22); |
clong->SplitInto(0,22); |
| 75 |
}; |
}; |
| 76 |
// |
// |
| 94 |
// |
// |
| 95 |
indep = false; |
indep = false; |
| 96 |
// |
// |
| 97 |
|
fAllpl = true; |
| 98 |
fLong = false; |
fLong = false; |
| 99 |
fPl = 1; |
fPl = 1; |
| 100 |
fRad = -1; |
fRad = -1; |
| 102 |
clong = NULL; |
clong = NULL; |
| 103 |
x0max = -1.; |
x0max = -1.; |
| 104 |
// |
// |
| 105 |
|
multicol = false; |
| 106 |
|
// |
| 107 |
this->DefineGeometry(); |
this->DefineGeometry(); |
| 108 |
fXosel =true; |
fXosel =true; |
| 109 |
fXesel = true; |
fXesel = true; |
| 118 |
fYomin = 1000; |
fYomin = 1000; |
| 119 |
fYemin = 1000; |
fYemin = 1000; |
| 120 |
// |
// |
| 121 |
|
this->UseCaloPreSampler(); // use it by default, to go back to "standard" mode use CaloEnergy::UseLevel2(). |
| 122 |
|
// |
| 123 |
} |
} |
|
|
|
|
void CaloEnergy::SetMinimumContainment(TString section, Int_t plane){ |
|
|
section.ToUpper(); |
|
|
if ( section.Contains("XO") ) fXomin = plane; |
|
|
if ( section.Contains("XE") ) fXemin = plane; |
|
|
if ( section.Contains("YO") ) fYomin = plane; |
|
|
if ( section.Contains("YE") ) fYemin = plane; |
|
|
} |
|
|
|
|
|
void CaloEnergy::SetMinimumContainment(Int_t plane){ |
|
|
this->SetMinimumContainment("XEXOYEYO",plane); |
|
|
} |
|
|
|
|
|
Int_t CaloEnergy::GetMinimumContainment(TString section){ |
|
|
section.ToUpper(); |
|
|
if ( section.Contains("XO") ) return(fXomin); |
|
|
if ( section.Contains("XE") ) return(fXemin); |
|
|
if ( section.Contains("YE") ) return(fYemin); |
|
|
if ( section.Contains("YO") ) return(fYomin); |
|
|
printf(" ERROR: section not recognized \n"); |
|
|
return(-1000); |
|
|
} |
|
|
|
|
|
void CaloEnergy::SetConversionFactor(TString section, Float_t conv){ |
|
|
section.ToUpper(); |
|
|
if ( section.Contains("XO") ) fConv_rxo = conv; |
|
|
if ( section.Contains("XE") ) fConv_rxe = conv; |
|
|
if ( section.Contains("YO") ) fConv_ryo = conv; |
|
|
if ( section.Contains("YE") ) fConv_rye = conv; |
|
|
} |
|
|
|
|
|
void CaloEnergy::SetConversionFactor(Float_t conv){ |
|
|
this->SetConversionFactor("XEXOYEYO",conv); |
|
|
} |
|
|
|
|
|
Float_t CaloEnergy::GetConversionFactor(TString section){ |
|
|
section.ToUpper(); |
|
|
if ( section.Contains("XO") ) return(fConv_rxo); |
|
|
if ( section.Contains("XE") ) return(fConv_rxe); |
|
|
if ( section.Contains("YO") ) return(fConv_ryo); |
|
|
if ( section.Contains("YE") ) return(fConv_rye); |
|
|
printf(" ERROR: section not recognized \n"); |
|
|
return(-1000.); |
|
|
} |
|
|
|
|
|
Int_t CaloEnergy::GetMaxplane(TString section){ |
|
|
section.ToUpper(); |
|
|
if ( section.Contains("XO") ) return fMax_planexo; |
|
|
if ( section.Contains("XE") ) return fMax_planexe; |
|
|
if ( section.Contains("YO") ) return fMax_planeyo; |
|
|
if ( section.Contains("YE") ) return fMax_planeye; |
|
|
return(-1); |
|
|
} |
|
|
|
|
|
Float_t CaloEnergy::GetEnergyAtMaxplane(TString section){ |
|
|
section.ToUpper(); |
|
|
if ( section.Contains("XO") ) return xomax_en; |
|
|
if ( section.Contains("XE") ) return xemax_en; |
|
|
if ( section.Contains("YO") ) return yomax_en; |
|
|
if ( section.Contains("YE") ) return yemax_en; |
|
|
return(-1); |
|
|
} |
|
|
|
|
|
Float_t CaloEnergy::GetMaxEnergy(TString section){ |
|
|
section.ToUpper(); |
|
|
if ( fLong ){ |
|
|
this->Process(section); |
|
|
return fXOen_maxplane; |
|
|
} else { |
|
|
if ( section.Contains("XO") ) return fXOen_maxplane; |
|
|
if ( section.Contains("XE") ) return fXEen_maxplane; |
|
|
if ( section.Contains("YO") ) return fYOen_maxplane; |
|
|
if ( section.Contains("YE") ) return fYEen_maxplane; |
|
|
}; |
|
|
return(-1); |
|
|
} |
|
|
|
|
|
Float_t CaloEnergy::GetMaxEnergy(){ |
|
|
if ( fLong ){ |
|
|
if ( debug ) printf(" oh! call process! with asntr %s and sntr %s \n",asntr.Data(),sntr.Data()); |
|
|
this->Process(asntr); |
|
|
}; |
|
|
return((fXEen_maxplane+fYOen_maxplane+fYEen_maxplane+fXOen_maxplane)); |
|
|
} |
|
|
|
|
| 124 |
void CaloEnergy::DefineGeometry(){ |
void CaloEnergy::DefineGeometry(){ |
| 125 |
// |
// |
| 126 |
// Use CaloStrip to determine once the position of border strips for each section |
// Use CaloStrip to determine once the position of border strips for each section |
| 127 |
// |
// |
|
// |
|
| 128 |
// fM = 2. + 0.096; // real position from cbar BUG the 0.096 is already taken into account in the border calculation made by Giovanna |
// fM = 2. + 0.096; // real position from cbar BUG the 0.096 is already taken into account in the border calculation made by Giovanna |
| 129 |
fM = 2. ; // real position from cbar |
fM = 2. ; // real position from cbar |
| 130 |
// fM1 = 2. - 0.122 - 0.096; // due to calculation of xe1 etc. BUG! this way we count from the silicon border not from the silicon sensitive area |
// fM1 = 2. - 0.122 - 0.096; // due to calculation of xe1 etc. BUG! this way we count from the silicon border not from the silicon sensitive area |
| 136 |
// view y plane 0 strip 0 |
// view y plane 0 strip 0 |
| 137 |
cs->Set(1,0,0); |
cs->Set(1,0,0); |
| 138 |
xe1= cs->GetY(); |
xe1= cs->GetY(); |
|
// z1= cs->GetZ(); |
|
| 139 |
// view y plane 0 strip 31 |
// view y plane 0 strip 31 |
| 140 |
cs->Set(1,0,31); |
cs->Set(1,0,31); |
| 141 |
xe2= cs->GetY(); |
xe2= cs->GetY(); |
| 151 |
// view y plane 0 strip 95 |
// view y plane 0 strip 95 |
| 152 |
cs->Set(1,0,95); |
cs->Set(1,0,95); |
| 153 |
xe6= cs->GetY(); |
xe6= cs->GetY(); |
|
|
|
|
// printf(" xe1 %f xe2 %f xe3 %f xe4 %f xe5 %f xe6 %f \n",xe1,xe2,xe3,xe4,xe5,xe6); |
|
|
|
|
| 154 |
// view x plane 0 strip 0 |
// view x plane 0 strip 0 |
| 155 |
cs->Set(0,0,0); |
cs->Set(0,0,0); |
| 156 |
yo1= cs->GetX(); |
yo1= cs->GetX(); |
|
// z2= cs->GetZ(); |
|
| 157 |
// view x plane 0 strip 31 |
// view x plane 0 strip 31 |
| 158 |
cs->Set(0,0,31); |
cs->Set(0,0,31); |
| 159 |
yo2= cs->GetX(); |
yo2= cs->GetX(); |
| 169 |
// view x plane 0 strip 95 |
// view x plane 0 strip 95 |
| 170 |
cs->Set(0,0,95); |
cs->Set(0,0,95); |
| 171 |
yo6= cs->GetX(); |
yo6= cs->GetX(); |
|
|
|
| 172 |
// view y plane 1 strip 0 |
// view y plane 1 strip 0 |
| 173 |
cs->Set(1,1,0); |
cs->Set(1,1,0); |
| 174 |
xo1= cs->GetY(); |
xo1= cs->GetY(); |
|
// z3= cs->GetZ(); |
|
| 175 |
// view y plane 1 strip 31 |
// view y plane 1 strip 31 |
| 176 |
cs->Set(1,1,31); |
cs->Set(1,1,31); |
| 177 |
xo2= cs->GetY(); |
xo2= cs->GetY(); |
| 186 |
xo5= cs->GetY(); |
xo5= cs->GetY(); |
| 187 |
// view y plane 1 strip 95 |
// view y plane 1 strip 95 |
| 188 |
cs->Set(1,1,95); |
cs->Set(1,1,95); |
| 189 |
xo6= cs->GetY(); |
xo6= cs->GetY(); |
|
|
|
| 190 |
// view x plane 1 strip 0 |
// view x plane 1 strip 0 |
| 191 |
cs->Set(0,1,0); |
cs->Set(0,1,0); |
| 192 |
ye1= cs->GetX(); |
ye1= cs->GetX(); |
|
// z4= cs->GetZ(); |
|
| 193 |
// view x plane 1 strip 31 |
// view x plane 1 strip 31 |
| 194 |
cs->Set(0,1,31); |
cs->Set(0,1,31); |
| 195 |
ye2= cs->GetX(); |
ye2= cs->GetX(); |
| 205 |
// view x plane 1 strip 95 |
// view x plane 1 strip 95 |
| 206 |
cs->Set(0,1,95); |
cs->Set(0,1,95); |
| 207 |
ye6= cs->GetX(); |
ye6= cs->GetX(); |
|
|
|
|
//printf(" ye1 %f ye2 %f ye3 %f ye4 %f ye5 %f ye6 %f \n",ye1,ye2,ye3,ye4,ye5,ye6); |
|
|
|
|
| 208 |
// |
// |
| 209 |
for (Int_t p = 0; p<22; p ++){ |
for (Int_t p = 0; p<22; p ++){ |
| 210 |
for (Int_t v = 0; v<2; v++ ){ |
for (Int_t v = 0; v<2; v++ ){ |
| 266 |
memset(en_yop,0,11*sizeof(Float_t)); |
memset(en_yop,0,11*sizeof(Float_t)); |
| 267 |
// |
// |
| 268 |
fColumn = -1; |
fColumn = -1; |
| 269 |
|
fColXE = -1; |
| 270 |
|
fColXO = -1; |
| 271 |
|
fColYE = -1; |
| 272 |
|
fColYO = -1; |
| 273 |
memset(encol,0,2*3*sizeof(Float_t)); |
memset(encol,0,2*3*sizeof(Float_t)); |
| 274 |
|
entot[0] = 0.; |
| 275 |
|
entot[1] = 0.; |
| 276 |
|
// |
| 277 |
|
X0pl = 0.76; |
| 278 |
// |
// |
| 279 |
} |
} |
| 280 |
|
|
| 309 |
printf(" fRad :.............. %i \n",fRad); |
printf(" fRad :.............. %i \n",fRad); |
| 310 |
printf(" fPl :.............. %i \n",fPl); |
printf(" fPl :.............. %i \n",fPl); |
| 311 |
printf(" fColumn :.............. %i \n",fColumn); |
printf(" fColumn :.............. %i \n",fColumn); |
| 312 |
|
printf(" multicol:.............. %i \n",multicol); |
| 313 |
|
printf(" encol x :.............. %f \n",this->GetEncol(0)); |
| 314 |
|
printf(" encol y :.............. %f \n",this->GetEncol(1)); |
| 315 |
|
printf(" entot x :.............. %f \n",this->GetEntot(0)); |
| 316 |
|
printf(" entot y :.............. %f \n",this->GetEntot(1)); |
| 317 |
|
printf(" fColXE :.............. %i \n",fColXE); |
| 318 |
|
printf(" fColXO :.............. %i \n",fColXO); |
| 319 |
|
printf(" fColYE :.............. %i \n",fColYE); |
| 320 |
|
printf(" fColYO :.............. %i \n",fColYO); |
| 321 |
printf(" fConv_rxe ............. %f \n",fConv_rxe); |
printf(" fConv_rxe ............. %f \n",fConv_rxe); |
| 322 |
printf(" fConv_rxo ............. %f \n",fConv_rxo); |
printf(" fConv_rxo ............. %f \n",fConv_rxo); |
| 323 |
printf(" fConv_ryo ............. %f \n",fConv_ryo); |
printf(" fConv_ryo ............. %f \n",fConv_ryo); |
| 332 |
printf(" fYEen_maxplane:........ %f \n",fYEen_maxplane); |
printf(" fYEen_maxplane:........ %f \n",fYEen_maxplane); |
| 333 |
printf(" fYOen_maxplane:........ %f \n",fYOen_maxplane); |
printf(" fYOen_maxplane:........ %f \n",fYOen_maxplane); |
| 334 |
printf(" x0max :.............. %f \n",x0max); |
printf(" x0max :.............. %f \n",x0max); |
| 335 |
|
printf(" X0pl :.............. %f \n",X0pl); |
| 336 |
printf(" debug :.............. %i \n",debug); |
printf(" debug :.............. %i \n",debug); |
| 337 |
|
|
| 338 |
printf("========================================================================\n"); |
printf("========================================================================\n"); |
| 339 |
// |
// |
| 340 |
} |
} |
| 341 |
|
|
| 342 |
void CaloEnergy::Delete(){ |
void CaloEnergy::SetMinimumContainment(TString section, Int_t plane){ |
| 343 |
Clear(); |
section.ToUpper(); |
| 344 |
delete this; |
if ( section.Contains("XO") ) fXomin = plane; |
| 345 |
|
if ( section.Contains("XE") ) fXemin = plane; |
| 346 |
|
if ( section.Contains("YO") ) fYomin = plane; |
| 347 |
|
if ( section.Contains("YE") ) fYemin = plane; |
| 348 |
|
} |
| 349 |
|
|
| 350 |
|
void CaloEnergy::SetMinimumContainment(Int_t plane){ |
| 351 |
|
this->SetMinimumContainment("XEXOYEYO",plane); |
| 352 |
|
} |
| 353 |
|
|
| 354 |
|
void CaloEnergy::SetConversionFactor(TString section, Float_t conv){ |
| 355 |
|
section.ToUpper(); |
| 356 |
|
if ( section.Contains("XO") ) fConv_rxo = conv; |
| 357 |
|
if ( section.Contains("XE") ) fConv_rxe = conv; |
| 358 |
|
if ( section.Contains("YO") ) fConv_ryo = conv; |
| 359 |
|
if ( section.Contains("YE") ) fConv_rye = conv; |
| 360 |
|
} |
| 361 |
|
|
| 362 |
|
void CaloEnergy::SetConversionFactor(Float_t conv){ |
| 363 |
|
this->SetConversionFactor("XEXOYEYO",conv); |
| 364 |
|
} |
| 365 |
|
|
| 366 |
|
Int_t CaloEnergy::GetMinimumContainment(TString section){ |
| 367 |
|
section.ToUpper(); |
| 368 |
|
if ( section.Contains("XO") ) return(fXomin); |
| 369 |
|
if ( section.Contains("XE") ) return(fXemin); |
| 370 |
|
if ( section.Contains("YE") ) return(fYemin); |
| 371 |
|
if ( section.Contains("YO") ) return(fYomin); |
| 372 |
|
printf(" ERROR: section not recognized \n"); |
| 373 |
|
return(-1000); |
| 374 |
|
} |
| 375 |
|
|
| 376 |
|
Float_t CaloEnergy::GetConversionFactor(TString section){ |
| 377 |
|
section.ToUpper(); |
| 378 |
|
if ( section.Contains("XO") ) return(fConv_rxo); |
| 379 |
|
if ( section.Contains("XE") ) return(fConv_rxe); |
| 380 |
|
if ( section.Contains("YO") ) return(fConv_ryo); |
| 381 |
|
if ( section.Contains("YE") ) return(fConv_rye); |
| 382 |
|
printf(" ERROR: section not recognized \n"); |
| 383 |
|
return(-1000.); |
| 384 |
|
} |
| 385 |
|
|
| 386 |
|
Int_t CaloEnergy::GetMaxplane(TString section){ |
| 387 |
|
section.ToUpper(); |
| 388 |
|
if ( section.Contains("XO") ) return fMax_planexo; |
| 389 |
|
if ( section.Contains("XE") ) return fMax_planexe; |
| 390 |
|
if ( section.Contains("YO") ) return fMax_planeyo; |
| 391 |
|
if ( section.Contains("YE") ) return fMax_planeye; |
| 392 |
|
return(-1); |
| 393 |
|
} |
| 394 |
|
|
| 395 |
|
Int_t CaloEnergy::GetColumn(TString section){ |
| 396 |
|
section.ToUpper(); |
| 397 |
|
if ( section.Contains("XO") ) return fColXO; |
| 398 |
|
if ( section.Contains("XE") ) return fColXE; |
| 399 |
|
if ( section.Contains("YO") ) return fColYO; |
| 400 |
|
if ( section.Contains("YE") ) return fColYE; |
| 401 |
|
return(-1); |
| 402 |
|
} |
| 403 |
|
|
| 404 |
|
Float_t CaloEnergy::GetMipEnergyAtMaxplane(TString section){ |
| 405 |
|
printf(" WARNING: OBSOLETE METHOD, use GetMipEnergyAtMaxplane(TString) instead! \n"); |
| 406 |
|
return (this->GetEnergyAtMaxplane(section)); |
| 407 |
|
} |
| 408 |
|
|
| 409 |
|
Float_t CaloEnergy::GetEnergyAtMaxplane(TString section){ |
| 410 |
|
section.ToUpper(); |
| 411 |
|
if ( section.Contains("XO") ) return xomax_en; |
| 412 |
|
if ( section.Contains("XE") ) return xemax_en; |
| 413 |
|
if ( section.Contains("YO") ) return yomax_en; |
| 414 |
|
if ( section.Contains("YE") ) return yemax_en; |
| 415 |
|
return(-1); |
| 416 |
|
} |
| 417 |
|
|
| 418 |
|
Float_t CaloEnergy::GetMaxEnergy(TString section){ |
| 419 |
|
printf(" WARNING: OBSOLETE METHOD, use GetMipEnergy(TString) instead! \n"); |
| 420 |
|
return (this->GetMipEnergy(section)); |
| 421 |
|
} |
| 422 |
|
|
| 423 |
|
Float_t CaloEnergy::GetMipEnergy(TString section){ |
| 424 |
|
section.ToUpper(); |
| 425 |
|
if ( fLong ){ |
| 426 |
|
this->Process(section); |
| 427 |
|
return fXOen_maxplane; |
| 428 |
|
} else { |
| 429 |
|
if ( section.Contains("XO") ) return fXOen_maxplane; |
| 430 |
|
if ( section.Contains("XE") ) return fXEen_maxplane; |
| 431 |
|
if ( section.Contains("YO") ) return fYOen_maxplane; |
| 432 |
|
if ( section.Contains("YE") ) return fYEen_maxplane; |
| 433 |
|
}; |
| 434 |
|
return(-1); |
| 435 |
|
} |
| 436 |
|
|
| 437 |
|
Float_t CaloEnergy::GetEncol(Int_t i){ |
| 438 |
|
if ( fColumn > -1 && (((fXesel || fXosel)&&i==1) || ((fYesel || fYosel)&&i==0)) ){ |
| 439 |
|
Int_t t = -1; |
| 440 |
|
if ( i == 0 ){ |
| 441 |
|
if ( fColumn == 0 || fColumn == 3 || fColumn == 6 ) t = 0; |
| 442 |
|
if ( fColumn == 1 || fColumn == 4 || fColumn == 7 ) t = 1; |
| 443 |
|
if ( fColumn == 2 || fColumn == 5 || fColumn == 8 ) t = 2; |
| 444 |
|
} else { |
| 445 |
|
if ( fColumn == 0 || fColumn == 1 || fColumn == 2 ) t = 0; |
| 446 |
|
if ( fColumn == 3 || fColumn == 4 || fColumn == 5 ) t = 1; |
| 447 |
|
if ( fColumn == 6 || fColumn == 7 || fColumn == 8 ) t = 2; |
| 448 |
|
}; |
| 449 |
|
if ( debug ) printf(" encol: i %i t %i encol %f \n",i,t,encol[i][t]); |
| 450 |
|
return encol[i][t]; |
| 451 |
|
}; |
| 452 |
|
return(-1.); |
| 453 |
|
} |
| 454 |
|
|
| 455 |
|
Float_t CaloEnergy::GetMaxEnergy(){ |
| 456 |
|
printf(" WARNING: OBSOLETE METHOD, use GetMipEnergy() instead! \n"); |
| 457 |
|
return (this->GetMipEnergy()); |
| 458 |
|
} |
| 459 |
|
|
| 460 |
|
Float_t CaloEnergy::GetMipEnergy(){ |
| 461 |
|
if ( fLong ){ |
| 462 |
|
if ( debug ) printf(" oh! call process! with asntr %s and sntr %s \n",asntr.Data(),sntr.Data()); |
| 463 |
|
this->Process(asntr); |
| 464 |
|
}; |
| 465 |
|
return((fXEen_maxplane+fYOen_maxplane+fYEen_maxplane+fXOen_maxplane)); |
| 466 |
} |
} |
| 467 |
|
|
| 468 |
|
|
| 531 |
// |
// |
| 532 |
if ( debug && ((fM1+0.122-0.244*(Float_t)fRad) < 0.) ) printf("Error: (fM1+0.122-0.244*(Float_t)fRad) < 0. fM1 %f fRad %i %f \n",fM1,fRad,(fM1+0.122-0.244*(Float_t)fRad)); |
if ( debug && ((fM1+0.122-0.244*(Float_t)fRad) < 0.) ) printf("Error: (fM1+0.122-0.244*(Float_t)fRad) < 0. fM1 %f fRad %i %f \n",fM1,fRad,(fM1+0.122-0.244*(Float_t)fRad)); |
| 533 |
// |
// |
| 534 |
|
// inclination factor (stolen from Daniele's code) |
| 535 |
|
// |
| 536 |
|
Float_t ytgx = 0; |
| 537 |
|
Float_t ytgy = 0; |
| 538 |
|
ytgx = 0.76 * cl2->tanx[0]; |
| 539 |
|
ytgy = 0.76 * cl2->tany[0]; |
| 540 |
|
X0pl = sqrt( pow(0.76,2.) + pow(ytgx,2.) + pow(ytgy,2.) ); |
| 541 |
|
// |
| 542 |
// sum energy plane by plane for each sections |
// sum energy plane by plane for each sections |
| 543 |
// |
// |
| 544 |
|
Float_t fen_xep[11]; |
| 545 |
|
Float_t fen_xop[11]; |
| 546 |
|
Float_t fen_yep[11]; |
| 547 |
|
Float_t fen_yop[11]; |
| 548 |
|
memset(fen_xep,0,11*sizeof(Float_t)); |
| 549 |
|
memset(fen_xop,0,11*sizeof(Float_t)); |
| 550 |
|
memset(fen_yep,0,11*sizeof(Float_t)); |
| 551 |
|
memset(fen_yop,0,11*sizeof(Float_t)); |
| 552 |
|
// |
| 553 |
for (Int_t i=0;i<11;i++){ |
for (Int_t i=0;i<11;i++){ |
| 554 |
for(strip=0; strip<96; strip++) { |
for(strip=0; strip<96; strip++) { |
| 555 |
|
fen_xep[i] += enstrip[1][2*i][strip]; |
| 556 |
|
fen_yop[i] += enstrip[0][2*i][strip]; |
| 557 |
|
fen_xop[i] += enstrip[1][(2*i)+1][strip]; |
| 558 |
|
fen_yep[i] += enstrip[0][(2*i)+1][strip]; |
| 559 |
if ( fRad < 0 ){ |
if ( fRad < 0 ){ |
| 560 |
// |
// |
| 561 |
// run over all the strips of the plane |
// run over all the strips of the plane |
| 568 |
// |
// |
| 569 |
// use only the strips inside a cylinder of given radius fRad |
// use only the strips inside a cylinder of given radius fRad |
| 570 |
// |
// |
| 571 |
if ( cl2->cibar[2*i][1] >= 1 && cl2->cibar[2*i][1] <= 96 && (strip >= (cl2->cibar[2*i][1]-1-fRad)) && (strip <= (cl2->cibar[2*i][1]-1+fRad)) ) en_xep[i] += enstrip[1][2*i][strip]; |
if ( cl2->cibar[2*i][1] >= 1 && cl2->cibar[2*i][1] <= 96 && |
| 572 |
if ( cl2->cibar[2*i][0] >= 1 && cl2->cibar[2*i][0] <= 96 && (strip >= (cl2->cibar[2*i][0]-1-fRad)) && (strip <= (cl2->cibar[2*i][0]-1+fRad)) ) en_yop[i] += enstrip[0][2*i][strip]; |
(strip >= (cl2->cibar[2*i][1]-1-fRad)) && (strip <= (cl2->cibar[2*i][1]-1+fRad)) ) en_xep[i] += enstrip[1][2*i][strip]; |
| 573 |
if ( cl2->cibar[(2*i)+1][1] >= 1 && cl2->cibar[(2*i)+1][1] <= 96 && (strip >= (cl2->cibar[(2*i)+1][1]-1-fRad)) && (strip <= (cl2->cibar[(2*i)+1][1]-1+fRad)) ) en_xop[i] += enstrip[1][(2*i)+1][strip]; |
|
| 574 |
if ( cl2->cibar[(2*i)+1][0] >= 1 && cl2->cibar[(2*i)+1][0] <= 96 && (strip >= (cl2->cibar[(2*i)+1][0]-1-fRad)) && (strip <= (cl2->cibar[(2*i)+1][0]-1+fRad)) ) en_yep[i] += enstrip[0][(2*i)+1][strip]; |
if ( cl2->cibar[2*i][0] >= 1 && cl2->cibar[2*i][0] <= 96 && |
| 575 |
|
(strip >= (cl2->cibar[2*i][0]-1-fRad)) && (strip <= (cl2->cibar[2*i][0]-1+fRad)) ) en_yop[i] += enstrip[0][2*i][strip]; |
| 576 |
|
|
| 577 |
|
if ( cl2->cibar[(2*i)+1][1] >= 1 && cl2->cibar[(2*i)+1][1] <= 96 && |
| 578 |
|
(strip >= (cl2->cibar[(2*i)+1][1]-1-fRad)) && (strip <= (cl2->cibar[(2*i)+1][1]-1+fRad)) ) en_xop[i] += enstrip[1][(2*i)+1][strip]; |
| 579 |
|
|
| 580 |
|
if ( cl2->cibar[(2*i)+1][0] >= 1 && cl2->cibar[(2*i)+1][0] <= 96 && |
| 581 |
|
(strip >= (cl2->cibar[(2*i)+1][0]-1-fRad)) && (strip <= (cl2->cibar[(2*i)+1][0]-1+fRad)) ) en_yep[i] += enstrip[0][(2*i)+1][strip]; |
| 582 |
}; |
}; |
| 583 |
}; |
}; |
| 584 |
|
if ( debug ) printf(" ex_xep[%i] %f cibar %i \n",i,en_xep[i],cl2->cibar[2*i][1]); |
| 585 |
|
if ( debug ) printf(" ex_xop[%i] %f cibar %i \n",i,en_xop[i],cl2->cibar[(2*i)+1][1]); |
| 586 |
|
if ( debug ) printf(" ex_yep[%i] %f cibar %i \n",i,en_yep[i],cl2->cibar[(2*i)+1][0]); |
| 587 |
|
if ( debug ) printf(" ex_yop[%i] %f cibar %i \n",i,en_yop[i],cl2->cibar[2*i][0]); |
| 588 |
energyxe += en_xep[i]; |
energyxe += en_xep[i]; |
| 589 |
energyyo += en_yop[i]; |
energyyo += en_yop[i]; |
| 590 |
energyxo += en_xop[i]; |
energyxo += en_xop[i]; |
| 598 |
Int_t yon = 0; |
Int_t yon = 0; |
| 599 |
Int_t xon = 0; |
Int_t xon = 0; |
| 600 |
Int_t yen = 0; |
Int_t yen = 0; |
| 601 |
|
Float_t en = 0.; |
| 602 |
// |
// |
| 603 |
if ( section.Contains("XE") ){ |
if ( section.Contains("XE") ){ |
| 604 |
yon++; |
yon++; |
| 605 |
xon++; |
xon++; |
| 606 |
yen++; |
yen++; |
| 607 |
for (Int_t ipl =0; ipl < 11; ipl ++) { |
for (Int_t ipl =0; ipl < 11; ipl ++) { |
| 608 |
if(en_xep[ipl] > xemax_en) { |
en = fen_xep[ipl]; |
| 609 |
xemax_en = en_xep[ipl]; |
if ( !fAllpl ) en = en_xep[ipl]; |
| 610 |
|
if(en > xemax_en) { |
| 611 |
|
xemax_en = en; |
| 612 |
fMax_planexe = ipl; |
fMax_planexe = ipl; |
| 613 |
}; |
}; |
| 614 |
}; |
}; |
| 618 |
xon++; |
xon++; |
| 619 |
yen++; |
yen++; |
| 620 |
for (Int_t ipl =0; ipl < 11; ipl ++) { |
for (Int_t ipl =0; ipl < 11; ipl ++) { |
| 621 |
if(en_yop[ipl] > yomax_en) { |
en = fen_yop[ipl]; |
| 622 |
yomax_en = en_yop[ipl]; |
if ( !fAllpl ) en = en_yop[ipl]; |
| 623 |
|
if(en > yomax_en) { |
| 624 |
|
yomax_en = en; |
| 625 |
fMax_planeyo = ipl; |
fMax_planeyo = ipl; |
| 626 |
}; |
}; |
| 627 |
}; |
}; |
| 630 |
if ( section.Contains("XO") ){ |
if ( section.Contains("XO") ){ |
| 631 |
yen++; |
yen++; |
| 632 |
for (Int_t ipl =0; ipl < 11; ipl ++) { |
for (Int_t ipl =0; ipl < 11; ipl ++) { |
| 633 |
if(en_xop[ipl] > xomax_en) { |
en = fen_xop[ipl]; |
| 634 |
xomax_en = en_xop[ipl]; |
if ( !fAllpl ) en = en_xop[ipl]; |
| 635 |
|
if(en > xomax_en) { |
| 636 |
|
xomax_en = en; |
| 637 |
fMax_planexo = ipl; |
fMax_planexo = ipl; |
| 638 |
}; |
}; |
| 639 |
}; |
}; |
| 641 |
// |
// |
| 642 |
if ( section.Contains("YE") ){ |
if ( section.Contains("YE") ){ |
| 643 |
for (Int_t ipl =0; ipl < 11; ipl ++) { |
for (Int_t ipl =0; ipl < 11; ipl ++) { |
| 644 |
if(en_yep[ipl] > yemax_en) { |
en = fen_yep[ipl]; |
| 645 |
yemax_en = en_yep[ipl]; |
if ( !fAllpl ) en = en_yep[ipl]; |
| 646 |
|
if(en > yemax_en) { |
| 647 |
|
yemax_en = en; |
| 648 |
fMax_planeye = ipl; |
fMax_planeye = ipl; |
| 649 |
}; |
}; |
| 650 |
}; |
}; |
| 654 |
// |
// |
| 655 |
if ( x0max > 0. ){ |
if ( x0max > 0. ){ |
| 656 |
if ( debug ) printf(" CALCULATE MAX PLANE GIVEN X0 ASSUMING PERPENDICULAR TRACK \n"); |
if ( debug ) printf(" CALCULATE MAX PLANE GIVEN X0 ASSUMING PERPENDICULAR TRACK \n"); |
| 657 |
Int_t wpl = (Int_t)roundf(x0max/0.76); |
// Int_t wpl = (Int_t)roundf(x0max/0.76); |
| 658 |
|
Int_t wpl = (Int_t)roundf(x0max/X0pl); |
| 659 |
Bool_t isY = false; |
Bool_t isY = false; |
| 660 |
if ( ((x0max/0.76)-(Float_t)wpl) > 0. ) isY = true; |
// if ( ((x0max/0.76)-(Float_t)wpl) > 0. ) isY = true; |
| 661 |
|
if ( ((x0max/X0pl)-(Float_t)wpl) > 0. ) isY = true; |
| 662 |
xomax_en = 0.; |
xomax_en = 0.; |
| 663 |
yemax_en = 0.; |
yemax_en = 0.; |
| 664 |
xemax_en = 0.; |
xemax_en = 0.; |
| 699 |
if ( section.Contains("YO") ) yomax_en = 10.; |
if ( section.Contains("YO") ) yomax_en = 10.; |
| 700 |
}; |
}; |
| 701 |
}; |
}; |
| 702 |
if ( debug ) printf(" x0max %f x0max/0.76 %f wpl %i isY %i yomax_en %f xemax_en %f yemax_en %f xomax_en %f fMaxplane %i %i %i %i\n",x0max,(x0max/0.76),wpl,isY,yomax_en,xemax_en,yemax_en,xomax_en,fMax_planeyo,fMax_planexe,fMax_planeye,fMax_planexo); |
// if ( debug ) printf(" x0max %f x0max/0.76 %f wpl %i isY %i yomax_en %f xemax_en %f yemax_en %f xomax_en %f fMaxplane %i %i %i %i\n",x0max,(x0max/0.76),wpl,isY,yomax_en,xemax_en,yemax_en,xomax_en,fMax_planeyo,fMax_planexe,fMax_planeye,fMax_planexo); |
| 703 |
|
if ( debug ) printf(" x0max %f x0max/X0pl %f X0pl %f wpl %i isY %i yomax_en %f xemax_en %f yemax_en %f xomax_en %f fMaxplane %i %i %i %i\n",x0max,(x0max/X0pl),X0pl,wpl,isY,yomax_en,xemax_en,yemax_en,xomax_en,fMax_planeyo,fMax_planexe,fMax_planeye,fMax_planexo); |
| 704 |
}; |
}; |
| 705 |
// |
// |
| 706 |
Int_t nPl = fPl; |
Int_t nPl = fPl; |
| 792 |
// |
// |
| 793 |
if ( section.Contains("XO") ){ |
if ( section.Contains("XO") ){ |
| 794 |
// |
// |
| 795 |
// check event is inside XO acceptance |
// find the column hit in the first plane |
| 796 |
|
// |
| 797 |
|
Int_t ix = -1; |
| 798 |
|
Int_t iy = -1; |
| 799 |
|
if ( track_coordx[(2*0)+1][1] >= (-12.054+fM) && track_coordx[(2*0)+1][1] <= (-4.246-fM) ) ix = 0; |
| 800 |
|
if ( track_coordx[(2*0)+1][1] >= ( -4.004+fM) && track_coordx[(2*0)+1][1] <= ( 3.804-fM) ) ix = 1; |
| 801 |
|
if ( track_coordx[(2*0)+1][1] >= ( 4.046+fM) && track_coordx[(2*0)+1][1] <= (11.854-fM) ) ix = 2; |
| 802 |
|
if ( cl2->cbar[(2*0)+1][1] >= (xo1 + fM1) && cl2->cbar[(2*0)+1][1] <= (xo2 - fM1) ) iy = 0; |
| 803 |
|
if ( cl2->cbar[(2*0)+1][1] >= (xo3 + fM1) && cl2->cbar[(2*0)+1][1] <= (xo4 - fM1) ) iy = 1; |
| 804 |
|
if ( cl2->cbar[(2*0)+1][1] >= (xo5 + fM1) && cl2->cbar[(2*0)+1][1] <= (xo6 - fM1) ) iy = 2; |
| 805 |
|
if ( ix > -1 && iy > -1 ) fColXO = ix + iy*3; |
| 806 |
|
// |
| 807 |
|
// check event is inside XO acceptance, if multicol is false (SingleColumn mode) then the track must be contained in a column. |
| 808 |
// |
// |
| 809 |
for (Int_t i=0; i<11; i++) { |
for (Int_t i=0; i<11; i++) { |
| 810 |
if |
if (( |
| 811 |
( |
( track_coordx[(2*i)+1][1] >= (-12.054+fM) && track_coordx[(2*i)+1][1] <= (-4.246-fM) && (ix == 0 || multicol) ) || |
| 812 |
(((track_coordx[(2*i)+1][1]>=(-12.054+fM))&& |
( track_coordx[(2*i)+1][1] >= ( -4.004+fM) && track_coordx[(2*i)+1][1] <= ( 3.804-fM) && (ix == 1 || multicol) ) || |
| 813 |
(track_coordx[(2*i)+1][1]<=(-4.246-fM)))&& |
( track_coordx[(2*i)+1][1] >= ( 4.046+fM) && track_coordx[(2*i)+1][1] <= (11.854-fM) && (ix == 2 || multicol) ) |
| 814 |
(((cl2->cbar[(2*i)+1][1]>=xo1 + fM1)&& |
) && ( |
| 815 |
(cl2->cbar[(2*i)+1][1]<=xo2 - fM1 ))|| |
( cl2->cbar[(2*i)+1][1] >= (xo1 + fM1) && cl2->cbar[(2*i)+1][1] <= (xo2 - fM1) && (iy == 0 || multicol) ) || |
| 816 |
((cl2->cbar[(2*i)+1][1]>=xo3 + fM1)&& |
( cl2->cbar[(2*i)+1][1] >= (xo3 + fM1) && cl2->cbar[(2*i)+1][1] <= (xo4 - fM1) && (iy == 1 || multicol) ) || |
| 817 |
(cl2->cbar[(2*i)+1][1]<=xo4 - fM1 ))|| |
( cl2->cbar[(2*i)+1][1] >= (xo5 + fM1) && cl2->cbar[(2*i)+1][1] <= (xo6 - fM1) && (iy == 2 || multicol) ) |
| 818 |
((cl2->cbar[(2*i)+1][1]>=xo5 + fM1)&& |
)){ |
|
(cl2->cbar[(2*i)+1][1]<=xo6 - fM1 ))))|| |
|
|
|
|
|
(((track_coordx[(2*i)+1][1]>=(-4.004+fM))&& |
|
|
(track_coordx[(2*i)+1][1]<=(3.804-fM)))&& |
|
|
(((cl2->cbar[(2*i)+1][1]>=xo1 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][1]<=xo2 - fM1 ))|| |
|
|
((cl2->cbar[(2*i)+1][1]>=xo3 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][1]<=xo4 - fM1))|| |
|
|
((cl2->cbar[(2*i)+1][1]>=xo5 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][1]<=xo6 - fM1 ))))|| |
|
|
|
|
|
(((track_coordx[(2*i)+1][1]>=(4.046+fM))&& |
|
|
(track_coordx[(2*i)+1][1]<=(11.854-fM)))&& |
|
|
(((cl2->cbar[(2*i)+1][1]>=xo1 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][1]<=xo2 - fM1))|| |
|
|
((cl2->cbar[(2*i)+1][1]>=xo3 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][1]<=xo4 - fM1 ))|| |
|
|
((cl2->cbar[(2*i)+1][1]>=xo5 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][1]<=xo6 - fM1 )))) |
|
|
){ |
|
| 819 |
fXosel = true; |
fXosel = true; |
| 820 |
fXoout = i; |
fXoout = i; |
| 821 |
} else { |
} else { |
| 835 |
// event is contained (or partially contained) hence we can integrate energy up to the maximum and calculate the energy as measured by this section |
// event is contained (or partially contained) hence we can integrate energy up to the maximum and calculate the energy as measured by this section |
| 836 |
// |
// |
| 837 |
if ( fXosel ){ |
if ( fXosel ){ |
| 838 |
for (Int_t iplm=0;iplm<=TMath::Min(10,(Int_t)(fMax_planexo+nPl)) ;iplm++){ |
for (Int_t iplm=0; iplm<=TMath::Min(10,(Int_t)(fMax_planexo+nPl)); iplm++){ |
| 839 |
fXOen_maxplane += en_xop[iplm]; |
fXOen_maxplane += en_xop[iplm]; |
| 840 |
if ( debug ) printf(" XO iplm %i fXOen_maxplane %f en_xop[iplm] %f\n",iplm,fXOen_maxplane,en_xop[iplm]); |
if ( debug ) printf(" XO iplm %i fXOen_maxplane %f en_xop[iplm] %f\n",iplm,fXOen_maxplane,en_xop[iplm]); |
| 841 |
}; |
}; |
| 842 |
fEnergyxo = fXOen_maxplane/fConv_rxo; |
fEnergyxo = fXOen_maxplane/fConv_rxo; |
| 843 |
|
// |
| 844 |
|
for (Int_t i=0;i<11;i++){ |
| 845 |
|
for(strip=0; strip<96; strip++) { |
| 846 |
|
// |
| 847 |
|
// run over all the strips of the plane |
| 848 |
|
// |
| 849 |
|
if ( strip >= 0 && strip < 32 ) encol[1][0] += enstrip[1][(2*i)+1][strip]; |
| 850 |
|
if ( strip >= 32 && strip < 64 ) encol[1][1] += enstrip[1][(2*i)+1][strip]; |
| 851 |
|
if ( strip >= 64 && strip < 96 ) encol[1][2] += enstrip[1][(2*i)+1][strip]; |
| 852 |
|
entot[1] += enstrip[1][(2*i)+1][strip]; |
| 853 |
|
// |
| 854 |
|
}; |
| 855 |
|
}; |
| 856 |
}; |
}; |
| 857 |
}; |
}; |
| 858 |
// |
// |
| 859 |
if ( section.Contains("XE") ){ |
if ( section.Contains("XE") ){ |
| 860 |
|
// |
| 861 |
|
// find the column hit in the first plane |
| 862 |
|
// |
| 863 |
|
Int_t ix = -1; |
| 864 |
|
Int_t iy = -1; |
| 865 |
|
if ( track_coordx[(2*0)][1] >= (-11.854+fM) && track_coordx[(2*0)][1] <= (-4.046-fM) ) ix = 0; |
| 866 |
|
if ( track_coordx[(2*0)][1] >= ( -3.804+fM) && track_coordx[(2*0)][1] <= ( 4.004-fM) ) ix = 1; |
| 867 |
|
if ( track_coordx[(2*0)][1] >= ( 4.246+fM) && track_coordx[(2*0)][1] <= (12.054-fM) ) ix = 2; |
| 868 |
|
if ( cl2->cbar[(2*0)][1] >= (xe1 + fM1) && cl2->cbar[(2*0)][1] <= (xe2 - fM1) ) iy = 0; |
| 869 |
|
if ( cl2->cbar[(2*0)][1] >= (xe3 + fM1) && cl2->cbar[(2*0)][1] <= (xe4 - fM1) ) iy = 1; |
| 870 |
|
if ( cl2->cbar[(2*0)][1] >= (xe5 + fM1) && cl2->cbar[(2*0)][1] <= (xe6 - fM1) ) iy = 2; |
| 871 |
|
if ( ix > -1 && iy > -1 ) fColXE = ix + iy*3; |
| 872 |
|
// |
| 873 |
|
// check event is inside XO acceptance |
| 874 |
|
// |
| 875 |
for (Int_t i=0; i<11; i++) { |
for (Int_t i=0; i<11; i++) { |
| 876 |
if |
if (( |
| 877 |
( |
( track_coordx[(2*i)][1] >= (-11.854+fM) && track_coordx[(2*i)][1] <= (-4.046-fM) && (ix == 0 || multicol) ) || |
| 878 |
(((track_coordx[2*i][1]>=(-11.854+fM))&& |
( track_coordx[(2*i)][1] >= ( -3.804+fM) && track_coordx[(2*i)][1] <= ( 4.004-fM) && (ix == 1 || multicol) ) || |
| 879 |
(track_coordx[2*i][1]<=(-4.046-fM)))&& |
( track_coordx[(2*i)][1] >= ( 4.246+fM) && track_coordx[(2*i)][1] <= (12.054-fM) && (ix == 2 || multicol) ) |
| 880 |
(((cl2->cbar[2*i][1]>=xe1 + fM1)&& |
) && ( |
| 881 |
(cl2->cbar[2*i][1]<=xe2 - fM1 ))|| |
( cl2->cbar[(2*i)][1] >= (xe1 + fM1) && cl2->cbar[(2*i)][1] <= (xe2 - fM1) && (iy == 0 || multicol) ) || |
| 882 |
((cl2->cbar[2*i][1]>=xe3 + fM1)&& |
( cl2->cbar[(2*i)][1] >= (xe3 + fM1) && cl2->cbar[(2*i)][1] <= (xe4 - fM1) && (iy == 1 || multicol) ) || |
| 883 |
(cl2->cbar[2*i][1]<=xe4 - fM1 ))|| |
( cl2->cbar[(2*i)][1] >= (xe5 + fM1) && cl2->cbar[(2*i)][1] <= (xe6 - fM1) && (iy == 2 || multicol) ) |
| 884 |
((cl2->cbar[2*i][1]>=xe5 + fM1)&& |
)){ |
|
(cl2->cbar[2*i][1]<=xe6 - fM1 ))))|| |
|
|
|
|
|
(((track_coordx[2*i][1]>=(-3.804+fM))&& |
|
|
(track_coordx[2*i][1]<=(4.004-fM)))&& |
|
|
(((cl2->cbar[2*i][1]>=xe1 + fM1)&& |
|
|
(cl2->cbar[2*i][1]<=xe2 - fM1 ))|| |
|
|
((cl2->cbar[2*i][1]>=xe3 + fM1)&& |
|
|
(cl2->cbar[2*i][1]<=xe4 - fM1))|| |
|
|
((cl2->cbar[2*i][1]>=xe5 + fM1)&& |
|
|
(cl2->cbar[2*i][1]<=xe6 - fM1 ))))|| |
|
|
|
|
|
(((track_coordx[2*i][1]>=(4.246+fM))&& |
|
|
(track_coordx[2*i][1]<=(12.054-fM)))&& |
|
|
(((cl2->cbar[2*i][1]>=xe1 + fM1)&& |
|
|
(cl2->cbar[2*i][1]<=xe2 - fM1))|| |
|
|
((cl2->cbar[2*i][1]>=xe3 + fM1)&& |
|
|
(cl2->cbar[2*i][1]<=xe4 - fM1 ))|| |
|
|
((cl2->cbar[2*i][1]>=xe5 + fM1)&& |
|
|
(cl2->cbar[2*i][1]<=xe6 - fM1 )))) |
|
|
){ |
|
| 885 |
fXesel = true; |
fXesel = true; |
| 886 |
fXeout = i; |
fXeout = i; |
| 887 |
} else { |
} else { |
| 889 |
break; |
break; |
| 890 |
}; |
}; |
| 891 |
}; |
}; |
| 892 |
|
// |
| 893 |
if ( !fXesel && fXeout >= fXemin && fXeout >= (Int_t)(fMax_planexe+nPl) ){ |
if ( !fXesel && fXeout >= fXemin && fXeout >= (Int_t)(fMax_planexe+nPl) ){ |
| 894 |
if ( debug ) printf(" XE: this event is only partially contained: fXeout %i fXemin %i fMax_planexe + nPl %i \n",fXeout,fXemin,(Int_t)(fMax_planexe+nPl)); |
if ( debug ) printf(" XE: this event is only partially contained: fXeout %i fXemin %i fMax_planexe + nPl %i \n",fXeout,fXemin,(Int_t)(fMax_planexe+nPl)); |
| 895 |
fPartsel = true; |
fPartsel = true; |
| 901 |
if ( debug ) printf(" XE iplm %i fXOen_maxplane %f en_xop[iplm] %f\n",iplm,fXEen_maxplane,en_xep[iplm]); |
if ( debug ) printf(" XE iplm %i fXOen_maxplane %f en_xop[iplm] %f\n",iplm,fXEen_maxplane,en_xep[iplm]); |
| 902 |
}; |
}; |
| 903 |
fEnergyxe = fXEen_maxplane/fConv_rxe; |
fEnergyxe = fXEen_maxplane/fConv_rxe; |
| 904 |
|
// |
| 905 |
|
for (Int_t i=0;i<11;i++){ |
| 906 |
|
for(strip=0; strip<96; strip++) { |
| 907 |
|
// |
| 908 |
|
// run over all the strips of the plane |
| 909 |
|
// |
| 910 |
|
if ( strip >= 0 && strip < 32 ) encol[1][0] += enstrip[1][(2*i)][strip]; |
| 911 |
|
if ( strip >= 32 && strip < 64 ) encol[1][1] += enstrip[1][(2*i)][strip]; |
| 912 |
|
if ( strip >= 64 && strip < 96 ) encol[1][2] += enstrip[1][(2*i)][strip]; |
| 913 |
|
entot[1] += enstrip[1][(2*i)][strip]; |
| 914 |
|
// |
| 915 |
|
}; |
| 916 |
|
}; |
| 917 |
}; |
}; |
| 918 |
}; |
}; |
| 919 |
// |
// |
| 920 |
if ( section.Contains("YE") ){ |
if ( section.Contains("YE") ){ |
| 921 |
|
// |
| 922 |
|
// find the column hit in the first plane |
| 923 |
|
// |
| 924 |
|
Int_t ix = -1; |
| 925 |
|
Int_t iy = -1; |
| 926 |
|
if ( track_coordy[(2*0)+1][0] >= (-12.154+fM) && track_coordy[(2*0)+1][0] <= (-4.346-fM) ) iy = 0; |
| 927 |
|
if ( track_coordy[(2*0)+1][0] >= ( -4.104+fM) && track_coordy[(2*0)+1][0] <= ( 3.704-fM) ) iy = 1; |
| 928 |
|
if ( track_coordy[(2*0)+1][0] >= ( 3.946+fM) && track_coordy[(2*0)+1][0] <= (11.754-fM) ) iy = 2; |
| 929 |
|
if ( cl2->cbar[(2*0)+1][0] >= (ye1 + fM1) && cl2->cbar[(2*0)+1][0] <= (ye2 - fM1) ) ix = 0; |
| 930 |
|
if ( cl2->cbar[(2*0)+1][0] >= (ye3 + fM1) && cl2->cbar[(2*0)+1][0] <= (ye4 - fM1) ) ix = 1; |
| 931 |
|
if ( cl2->cbar[(2*0)+1][0] >= (ye5 + fM1) && cl2->cbar[(2*0)+1][0] <= (ye6 - fM1) ) ix = 2; |
| 932 |
|
if ( ix > -1 && iy > -1 ) fColYE = ix + iy*3; |
| 933 |
|
// |
| 934 |
|
// check event is inside XO acceptance |
| 935 |
|
// |
| 936 |
for (Int_t i=0; i<11; i++) { |
for (Int_t i=0; i<11; i++) { |
| 937 |
if |
if (( |
| 938 |
( |
( track_coordy[(2*i)+1][0] >= (-12.154+fM) && track_coordy[(2*i)+1][0] <= (-4.346-fM) && (iy == 0 || multicol) ) || |
| 939 |
(((track_coordy[(2*i)+1][0]>=(-12.154+fM))&& |
( track_coordy[(2*i)+1][0] >= ( -4.104+fM) && track_coordy[(2*i)+1][0] <= ( 3.704-fM) && (iy == 1 || multicol) ) || |
| 940 |
(track_coordy[(2*i)+1][0]<=(-4.346-fM)))&& |
( track_coordy[(2*i)+1][0] >= ( 3.946+fM) && track_coordy[(2*i)+1][0] <= (11.754-fM) && (iy == 2 || multicol) ) |
| 941 |
(((cl2->cbar[(2*i)+1][0]>=ye1 + fM1)&& |
) && ( |
| 942 |
(cl2->cbar[(2*i)+1][0]<=ye2 - fM1 ))|| |
( cl2->cbar[(2*i)+1][0] >= (ye1 + fM1) && cl2->cbar[(2*i)+1][0] <= (ye2 - fM1) && (ix == 0 || multicol) ) || |
| 943 |
((cl2->cbar[(2*i)+1][0]>=ye3 + fM1)&& |
( cl2->cbar[(2*i)+1][0] >= (ye3 + fM1) && cl2->cbar[(2*i)+1][0] <= (ye4 - fM1) && (ix == 1 || multicol) ) || |
| 944 |
(cl2->cbar[(2*i)+1][0]<=ye4 - fM1 ))|| |
( cl2->cbar[(2*i)+1][0] >= (ye5 + fM1) && cl2->cbar[(2*i)+1][0] <= (ye6 - fM1) && (ix == 2 || multicol) ) |
| 945 |
((cl2->cbar[(2*i)+1][0]>=ye5 + fM1)&& |
)){ |
|
(cl2->cbar[(2*i)+1][0]<=ye6 - fM1 ))))|| |
|
|
|
|
|
(((track_coordy[(2*i)+1][0]>=(-4.104+fM))&& |
|
|
(track_coordy[(2*i)+1][0]<=(3.704-fM)))&& |
|
|
(((cl2->cbar[(2*i)+1][0]>=ye1 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][0]<=ye2 - fM1 ))|| |
|
|
((cl2->cbar[(2*i)+1][0]>=ye3 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][0]<=ye4 - fM1))|| |
|
|
((cl2->cbar[(2*i)+1][0]>=ye5 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][0]<=ye6 - fM1 ))))|| |
|
|
|
|
|
(((track_coordy[(2*i)+1][0]>=(3.946+fM))&& |
|
|
(track_coordy[(2*i)+1][0]<=(11.754-fM)))&& |
|
|
(((cl2->cbar[(2*i)+1][0]>=ye1 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][0]<=ye2 - fM1))|| |
|
|
((cl2->cbar[(2*i)+1][0]>=ye3 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][0]<=ye4 - fM1 ))|| |
|
|
((cl2->cbar[(2*i)+1][0]>=ye5 + fM1)&& |
|
|
(cl2->cbar[(2*i)+1][0]<=ye6 - fM1 )))) |
|
|
){ |
|
| 946 |
fYesel = true; |
fYesel = true; |
| 947 |
fYeout = i; |
fYeout = i; |
| 948 |
} else { |
} else { |
| 950 |
break; |
break; |
| 951 |
}; |
}; |
| 952 |
}; |
}; |
| 953 |
|
// |
| 954 |
if ( !fYesel && fYeout >= fYemin && fYeout >= (Int_t)(fMax_planeye+nPl) ){ |
if ( !fYesel && fYeout >= fYemin && fYeout >= (Int_t)(fMax_planeye+nPl) ){ |
| 955 |
if ( debug ) printf(" YE: this event is only partially contained: fYeout %i fYemin %i fMax_planeye + nPl %i \n",fYeout,fYemin,(Int_t)(fMax_planeye+nPl)); |
if ( debug ) printf(" YE: this event is only partially contained: fYeout %i fYemin %i fMax_planeye + nPl %i \n",fYeout,fYemin,(Int_t)(fMax_planeye+nPl)); |
| 956 |
fPartsel = true; |
fPartsel = true; |
| 959 |
if ( fYesel ){ |
if ( fYesel ){ |
| 960 |
for (Int_t iplm=0;iplm<=TMath::Min(10,(Int_t)(fMax_planeye+nPl)) ;iplm++) fYEen_maxplane += en_yep[iplm]; |
for (Int_t iplm=0;iplm<=TMath::Min(10,(Int_t)(fMax_planeye+nPl)) ;iplm++) fYEen_maxplane += en_yep[iplm]; |
| 961 |
fEnergyye = fYEen_maxplane/fConv_rye; |
fEnergyye = fYEen_maxplane/fConv_rye; |
| 962 |
|
// |
| 963 |
|
for (Int_t i=0;i<11;i++){ |
| 964 |
|
for(strip=0; strip<96; strip++) { |
| 965 |
|
// |
| 966 |
|
// run over all the strips of the plane |
| 967 |
|
// |
| 968 |
|
if ( strip >= 0 && strip < 32 ) encol[0][0] += enstrip[0][(2*i)+1][strip]; |
| 969 |
|
if ( strip >= 32 && strip < 64 ) encol[0][1] += enstrip[0][(2*i)+1][strip]; |
| 970 |
|
if ( strip >= 64 && strip < 96 ) encol[0][2] += enstrip[0][(2*i)+1][strip]; |
| 971 |
|
entot[0] += enstrip[0][(2*i)+1][strip]; |
| 972 |
|
// |
| 973 |
|
}; |
| 974 |
|
}; |
| 975 |
|
// |
| 976 |
}; |
}; |
| 977 |
}; |
}; |
| 978 |
// |
// |
| 979 |
if ( section.Contains("YO") ){ |
if ( section.Contains("YO") ){ |
| 980 |
|
// |
| 981 |
|
// find the column hit in the first plane |
| 982 |
|
// |
| 983 |
|
Int_t ix = -1; |
| 984 |
|
Int_t iy = -1; |
| 985 |
|
if ( track_coordy[(2*0)][0] >= (-11.954+fM) && track_coordy[(2*0)][0] <= (-4.146-fM) ) iy = 0; |
| 986 |
|
if ( track_coordy[(2*0)][0] >= ( -3.904+fM) && track_coordy[(2*0)][0] <= ( 3.904-fM) ) iy = 1; |
| 987 |
|
if ( track_coordy[(2*0)][0] >= ( 4.146+fM) && track_coordy[(2*0)][0] <= (11.954-fM) ) iy = 2; |
| 988 |
|
if ( cl2->cbar[(2*0)][0] >= (yo1 + fM1) && cl2->cbar[(2*0)][0] <= (yo2 - fM1) ) ix = 0; |
| 989 |
|
if ( cl2->cbar[(2*0)][0] >= (yo3 + fM1) && cl2->cbar[(2*0)][0] <= (yo4 - fM1) ) ix = 1; |
| 990 |
|
if ( cl2->cbar[(2*0)][0] >= (yo5 + fM1) && cl2->cbar[(2*0)][0] <= (yo6 - fM1) ) ix = 2; |
| 991 |
|
if ( ix > -1 && iy > -1 ) fColYO = ix + iy*3; |
| 992 |
|
// |
| 993 |
|
// check event is inside XO acceptance |
| 994 |
|
// |
| 995 |
for (Int_t i=0; i<11; i++) { |
for (Int_t i=0; i<11; i++) { |
| 996 |
if ( debug ) printf(" i %i track_coordy[2*i][0] %f cl2->cbar[2*i][0] %f \n",i,track_coordy[2*i][0],cl2->cbar[2*i][0]); |
if (( |
| 997 |
if ( debug ) printf(" i %i fm %f fm1 %f yo1 %g yo2 %f yo3 %f yo4 %f yo5 %f yo6 %f \n",i,fM,fM1,yo1,yo2,yo3,yo4,yo5,yo6); |
( track_coordy[(2*i)][0] >= (-11.954+fM) && track_coordy[(2*i)][0] <= (-4.146-fM) && (iy == 0 || multicol) ) || |
| 998 |
if |
( track_coordy[(2*i)][0] >= ( -3.904+fM) && track_coordy[(2*i)][0] <= ( 3.904-fM) && (iy == 1 || multicol) ) || |
| 999 |
( |
( track_coordy[(2*i)][0] >= ( 4.146+fM) && track_coordy[(2*i)][0] <= (11.954-fM) && (iy == 2 || multicol) ) |
| 1000 |
(((track_coordy[2*i][0]>=(-11.954+fM))&& |
) && ( |
| 1001 |
(track_coordy[2*i][0]<=(-4.146-fM)))&& |
( cl2->cbar[(2*i)][0] >= (yo1 + fM1) && cl2->cbar[(2*i)][0] <= (yo2 - fM1) && (ix == 0 || multicol) ) || |
| 1002 |
(((cl2->cbar[2*i][0]>=yo1 + fM1)&& |
( cl2->cbar[(2*i)][0] >= (yo3 + fM1) && cl2->cbar[(2*i)][0] <= (yo4 - fM1) && (ix == 1 || multicol) ) || |
| 1003 |
(cl2->cbar[2*i][0]<=yo2 - fM1 ))|| |
( cl2->cbar[(2*i)][0] >= (yo5 + fM1) && cl2->cbar[(2*i)][0] <= (yo6 - fM1) && (ix == 2 || multicol) ) |
| 1004 |
((cl2->cbar[2*i][0]>=yo3 + fM1)&& |
)){ |
|
(cl2->cbar[2*i][0]<=yo4 - fM1 ))|| |
|
|
((cl2->cbar[2*i][0]>=yo5 + fM1)&& |
|
|
(cl2->cbar[2*i][0]<=yo6 - fM1 ))))|| |
|
|
|
|
|
(((track_coordy[2*i][0]>=(-3.904+fM))&& |
|
|
(track_coordy[2*i][0]<=(+3.904-fM)))&& |
|
|
(((cl2->cbar[2*i][0]>=yo1 + fM1)&& |
|
|
(cl2->cbar[2*i][0]<=yo2 - fM1 ))|| |
|
|
((cl2->cbar[2*i][0]>=yo3 + fM1)&& |
|
|
(cl2->cbar[2*i][0]<=yo4 - fM1))|| |
|
|
((cl2->cbar[2*i][0]>=yo5 + fM1)&& |
|
|
(cl2->cbar[2*i][0]<=yo6 - fM1 ))))|| |
|
|
|
|
|
(((track_coordy[2*i][0]>=(4.146+fM))&& |
|
|
(track_coordy[2*i][0]<=(11.954-fM)))&& |
|
|
(((cl2->cbar[2*i][0]>=yo1 + fM1)&& |
|
|
(cl2->cbar[2*i][0]<=yo2 - fM1))|| |
|
|
((cl2->cbar[2*i][0]>=yo3 + fM1)&& |
|
|
(cl2->cbar[2*i][0]<=yo4 - fM1 ))|| |
|
|
((cl2->cbar[2*i][0]>=yo5 + fM1)&& |
|
|
(cl2->cbar[2*i][0]<=yo6 - fM1 )))) |
|
|
){ |
|
| 1005 |
fYosel = true; |
fYosel = true; |
| 1006 |
fYoout = i; |
fYoout = i; |
| 1007 |
} else { |
} else { |
| 1009 |
break; |
break; |
| 1010 |
}; |
}; |
| 1011 |
}; |
}; |
| 1012 |
|
// |
| 1013 |
if ( !fYosel && fYoout >= fYomin && fYoout >= (Int_t)(fMax_planeyo+nPl) ){ |
if ( !fYosel && fYoout >= fYomin && fYoout >= (Int_t)(fMax_planeyo+nPl) ){ |
| 1014 |
if ( debug ) printf(" YO: this event is only partially contained: fYoout %i fYomin %i fMax_planeyo + nPl %i \n",fYoout,fYomin,(Int_t)(fMax_planeyo+nPl)); |
if ( debug ) printf(" YO: this event is only partially contained: fYoout %i fYomin %i fMax_planeyo + nPl %i \n",fYoout,fYomin,(Int_t)(fMax_planeyo+nPl)); |
| 1015 |
fPartsel = true; |
fPartsel = true; |
| 1018 |
if ( fYosel ){ |
if ( fYosel ){ |
| 1019 |
for (Int_t iplm=0;iplm<=TMath::Min(10,(Int_t)(fMax_planeyo+nPl)) ;iplm++) fYOen_maxplane += en_yop[iplm]; |
for (Int_t iplm=0;iplm<=TMath::Min(10,(Int_t)(fMax_planeyo+nPl)) ;iplm++) fYOen_maxplane += en_yop[iplm]; |
| 1020 |
fEnergyyo = fYOen_maxplane/fConv_ryo; |
fEnergyyo = fYOen_maxplane/fConv_ryo; |
| 1021 |
|
// |
| 1022 |
|
for (Int_t i=0;i<11;i++){ |
| 1023 |
|
for(strip=0; strip<96; strip++) { |
| 1024 |
|
// |
| 1025 |
|
// run over all the strips of the plane |
| 1026 |
|
// |
| 1027 |
|
if ( strip >= 0 && strip < 32 ) encol[0][0] += enstrip[0][(2*i)][strip]; |
| 1028 |
|
if ( strip >= 32 && strip < 64 ) encol[0][1] += enstrip[0][(2*i)][strip]; |
| 1029 |
|
if ( strip >= 64 && strip < 96 ) encol[0][2] += enstrip[0][(2*i)][strip]; |
| 1030 |
|
entot[0] += enstrip[0][(2*i)][strip]; |
| 1031 |
|
// |
| 1032 |
|
}; |
| 1033 |
|
}; |
| 1034 |
}; |
}; |
| 1035 |
}; |
}; |
| 1036 |
// |
// |
| 1056 |
fSel = true; |
fSel = true; |
| 1057 |
}; |
}; |
| 1058 |
fEnergy = (fXEen_maxplane+fYOen_maxplane+fYEen_maxplane+fXOen_maxplane)/fConv_rxo; |
fEnergy = (fXEen_maxplane+fYOen_maxplane+fYEen_maxplane+fXOen_maxplane)/fConv_rxo; |
| 1059 |
|
if ( fSel ){ |
| 1060 |
|
if ( fXesel ) fColumn = fColXE; |
| 1061 |
|
if ( fXosel ){ |
| 1062 |
|
if ( fColXO != fColumn && fColumn > -1 ){ |
| 1063 |
|
printf(" ERROR! mismatch in column number between different sections! fColumn %i fColXO %i \n",fColumn,fColXO); |
| 1064 |
|
} else { |
| 1065 |
|
fColumn = fColXO; |
| 1066 |
|
}; |
| 1067 |
|
}; |
| 1068 |
|
if ( fYesel ){ |
| 1069 |
|
if ( fColYE != fColumn && fColumn > -1 ){ |
| 1070 |
|
printf(" ERROR! mismatch in column number between different sections! fColumn %i fColYE %i \n",fColumn,fColYE); |
| 1071 |
|
} else { |
| 1072 |
|
fColumn = fColYE; |
| 1073 |
|
}; |
| 1074 |
|
}; |
| 1075 |
|
if ( fYosel ){ |
| 1076 |
|
if ( fColYO != fColumn && fColumn > -1 ){ |
| 1077 |
|
printf(" ERROR! mismatch in column number between different sections! fColumn %i fColYO %i \n",fColumn,fColYO); |
| 1078 |
|
} else { |
| 1079 |
|
fColumn = fColYO; |
| 1080 |
|
}; |
| 1081 |
|
}; |
| 1082 |
|
}; |
| 1083 |
}; |
}; |
| 1084 |
// |
// |
| 1085 |
if ( debug ) printf("sel %i indep %i fMax_plane %f conv_r %f en_maxplane %f encalo %f \n",fSel,indep,fMax_plane,fConv_rxo,fXOen_maxplane,fEnergy); |
if ( debug ) printf("sel %i indep %i fMax_plane %f conv_r %f en_maxplane %f encalo %f \n",fSel,indep,fMax_plane,fConv_rxo,fXOen_maxplane,fEnergy); |