| 64 |
memset(mip, 0, 2*22*96*sizeof(Float_t)); |
memset(mip, 0, 2*22*96*sizeof(Float_t)); |
| 65 |
memset(base, 0, 2*22*6*sizeof(Float_t)); |
memset(base, 0, 2*22*6*sizeof(Float_t)); |
| 66 |
memset(sbase, 0, 2*22*6*sizeof(Float_t)); |
memset(sbase, 0, 2*22*6*sizeof(Float_t)); |
| 67 |
|
memset(obadmask, 0, 2*22*96*sizeof(Int_t)); |
| 68 |
|
memset(obadpulsemask, 0, 2*22*6*sizeof(Int_t)); |
| 69 |
|
memset(ctprecor, 0, 2*22*6*sizeof(Float_t)); |
| 70 |
|
memset(ctneigcor, 0, 2*22*6*sizeof(Float_t)); |
| 71 |
calopar1 = true; |
calopar1 = true; |
| 72 |
calopar2 = true; |
calopar2 = true; |
| 73 |
calopar3 = true; |
calopar3 = true; |
| 82 |
|
|
| 83 |
void CaloLevel0::SetCrossTalk(Bool_t ct){ |
void CaloLevel0::SetCrossTalk(Bool_t ct){ |
| 84 |
crosst = ct; |
crosst = ct; |
| 85 |
}; |
} |
| 86 |
|
|
| 87 |
|
void CaloLevel0::SetCrossTalkType(Bool_t ct){ |
| 88 |
|
ctground = ct; |
| 89 |
|
} |
| 90 |
|
|
| 91 |
void CaloLevel0::SetVerbose(Bool_t ct){ |
void CaloLevel0::SetVerbose(Bool_t ct){ |
| 92 |
verbose = ct; |
verbose = ct; |
| 93 |
}; |
} |
| 94 |
|
|
| 95 |
/** |
/** |
| 96 |
* Initialize CaloLevel0 object |
* Initialize CaloLevel0 object |
| 307 |
fread(&tmp,sizeof(clevel1->xalig),1,f); |
fread(&tmp,sizeof(clevel1->xalig),1,f); |
| 308 |
fread(&tmp,sizeof(clevel1->yalig),1,f); |
fread(&tmp,sizeof(clevel1->yalig),1,f); |
| 309 |
fread(&tmp,sizeof(clevel1->zalig),1,f); |
fread(&tmp,sizeof(clevel1->zalig),1,f); |
| 310 |
|
// clevel1->zalig = -265.82; |
| 311 |
// |
// |
| 312 |
}; |
}; |
| 313 |
fread(&clevel1->emin,sizeof(clevel1->emin),1,f); |
fread(&clevel1->emin,sizeof(clevel1->emin),1,f); |
| 373 |
return(0); |
return(0); |
| 374 |
} |
} |
| 375 |
|
|
| 376 |
|
Int_t CaloLevel0::CalcCrossTalkCorr(GL_TABLES *glt, UInt_t runheader){ |
| 377 |
|
// |
| 378 |
void CaloLevel0::FindBaseRaw(Int_t l, Int_t m, Int_t pre){ |
if ( ctground ) return(0); |
| 379 |
Float_t minstrip = 100000.; |
// |
| 380 |
Float_t rms = 0.; |
const TString host = glt->CGetHost(); |
| 381 |
base[l][m][pre] = 0.; |
const TString user = glt->CGetUser(); |
| 382 |
for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ |
const TString psw = glt->CGetPsw(); |
| 383 |
if ( calgood[l][m][e] == 0. && obadmask[l][m][e] == 0 && dexy[l][m][e]-calped[l][m][e] < minstrip && dexy[l][m][e] > 0.) { |
TSQLServer *dbc = TSQLServer::Connect(host.Data(),user.Data(),psw.Data()); |
| 384 |
minstrip = dexy[l][m][e]-calped[l][m][e]; |
if ( !dbc->IsConnected() ) throw -116; |
| 385 |
rms = calthr[l][m][pre]; |
stringstream myquery; |
| 386 |
|
myquery.str(""); |
| 387 |
|
myquery << "SET time_zone='+0:00'"; |
| 388 |
|
dbc->Query(myquery.str().c_str()); |
| 389 |
|
// |
| 390 |
|
stringstream bmfile; |
| 391 |
|
Int_t error = 0; |
| 392 |
|
ifstream badfile; |
| 393 |
|
GL_PARAM *glparam = new GL_PARAM(); |
| 394 |
|
// |
| 395 |
|
// determine where I can find file with offline bad pulser mask |
| 396 |
|
// |
| 397 |
|
error = 0; |
| 398 |
|
error = glparam->Query_GL_PARAM(runheader,105,dbc); |
| 399 |
|
if ( error < 0 ) return(error); |
| 400 |
|
// |
| 401 |
|
bmfile.str(""); |
| 402 |
|
bmfile << glparam->PATH.Data() << "/"; |
| 403 |
|
bmfile << glparam->NAME.Data(); |
| 404 |
|
// |
| 405 |
|
if ( verbose ) printf("\n Using bad pulser offline mask file: \n %s \n\n",bmfile.str().c_str()); |
| 406 |
|
badfile.open(bmfile.str().c_str()); |
| 407 |
|
if ( !badfile ){ |
| 408 |
|
if ( verbose ) printf(" CALORIMETER - ERROR: no bad pulser offline mask file!\n"); |
| 409 |
|
return(-115); |
| 410 |
|
}; |
| 411 |
|
// |
| 412 |
|
Bool_t isdone = false; |
| 413 |
|
Int_t bad = 0; |
| 414 |
|
Int_t view = 1; |
| 415 |
|
Int_t pre = 0; |
| 416 |
|
Int_t plane = 21; |
| 417 |
|
while ( !isdone ) { |
| 418 |
|
badfile >> bad; |
| 419 |
|
obadpulsemask[view][plane][pre] = bad; |
| 420 |
|
if ( debug && bad ) printf(" SETTING view %i plane %i pre %i BAD = %i \n",view,plane,pre,bad); |
| 421 |
|
pre++; |
| 422 |
|
if ( pre > 5 ){ |
| 423 |
|
pre = 0; |
| 424 |
|
plane--; |
| 425 |
|
if ( plane < 0 ){ |
| 426 |
|
plane = 21; |
| 427 |
|
view--; |
| 428 |
|
}; |
| 429 |
|
if ( view < 0 ) isdone = true; |
| 430 |
|
}; |
| 431 |
|
}; |
| 432 |
|
// |
| 433 |
|
delete glparam; |
| 434 |
|
badfile.close(); |
| 435 |
|
// |
| 436 |
|
// Let's start with cross-talk correction calculation |
| 437 |
|
// |
| 438 |
|
GL_CALOPULSE_CALIB *glp = new GL_CALOPULSE_CALIB(); |
| 439 |
|
Float_t adcp[2][22][96]; |
| 440 |
|
Float_t adcpcal[2][22][96]; |
| 441 |
|
memset(adcp , 0, 2*22*96*sizeof(Float_t)); |
| 442 |
|
memset(adcpcal , 0, 2*22*96*sizeof(Float_t)); |
| 443 |
|
// |
| 444 |
|
UInt_t pampli = 0; |
| 445 |
|
for (Int_t s=0; s<4; s++){ |
| 446 |
|
// |
| 447 |
|
// Save into matrix adcp the values of the highest pulse calibration (pulse amplitude = 2) |
| 448 |
|
// |
| 449 |
|
pampli = 2; |
| 450 |
|
error = 0; |
| 451 |
|
error = glp->Query_GL_CALOPULSE_CALIB(runheader,s,pampli,dbc); |
| 452 |
|
if ( error < 0 ){ |
| 453 |
|
if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); |
| 454 |
|
return(error); |
| 455 |
|
}; |
| 456 |
|
// |
| 457 |
|
UInt_t idcalib = glp->ID_ROOT_L0; |
| 458 |
|
UInt_t fromtime = glp->FROM_TIME; |
| 459 |
|
UInt_t calibno = glp->EV_ROOT; |
| 460 |
|
// |
| 461 |
|
// determine path and name and entry of the calibration file |
| 462 |
|
// |
| 463 |
|
GL_ROOT *glroot = new GL_ROOT(); |
| 464 |
|
if ( verbose ) printf("\n"); |
| 465 |
|
if ( verbose ) printf(" ** SECTION %i **\n",s); |
| 466 |
|
// |
| 467 |
|
error = 0; |
| 468 |
|
error = glroot->Query_GL_ROOT(idcalib,dbc); |
| 469 |
|
if ( error < 0 ){ |
| 470 |
|
if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); |
| 471 |
|
return(error); |
| 472 |
|
}; |
| 473 |
|
// |
| 474 |
|
stringstream name; |
| 475 |
|
name.str(""); |
| 476 |
|
name << glroot->PATH.Data() << "/"; |
| 477 |
|
name << glroot->NAME.Data(); |
| 478 |
|
// |
| 479 |
|
TString fcalname = (TString)name.str().c_str(); |
| 480 |
|
ifstream myfile; |
| 481 |
|
myfile.open(fcalname.Data()); |
| 482 |
|
if ( !myfile ){ |
| 483 |
|
return(-107); |
| 484 |
|
}; |
| 485 |
|
myfile.close(); |
| 486 |
|
// |
| 487 |
|
TFile *File = new TFile(fcalname.Data()); |
| 488 |
|
if ( !File ) return(-108); |
| 489 |
|
TTree *tr = (TTree*)File->Get("CalibCalPulse2"); |
| 490 |
|
if ( !tr ) return(-119); |
| 491 |
|
// |
| 492 |
|
TBranch *calo = tr->GetBranch("CalibCalPulse2"); |
| 493 |
|
// |
| 494 |
|
pamela::CalibCalPulse2Event *ce = 0; |
| 495 |
|
tr->SetBranchAddress("CalibCalPulse2", &ce); |
| 496 |
|
// |
| 497 |
|
Long64_t ncalibs = calo->GetEntries(); |
| 498 |
|
// |
| 499 |
|
if ( !ncalibs ) return(-110); |
| 500 |
|
// |
| 501 |
|
calo->GetEntry(calibno); |
| 502 |
|
if ( verbose ) printf(" PULSE2 using entry %u from file %s",calibno,fcalname.Data()); |
| 503 |
|
// |
| 504 |
|
// retrieve calibration table |
| 505 |
|
// |
| 506 |
|
if ( ce->pstwerr[s] && ce->pperror[s] == 0 && ce->unpackError == 0 ){ |
| 507 |
|
for ( Int_t d=0 ; d<11 ;d++ ){ |
| 508 |
|
for ( Int_t j=0; j<96 ;j++){ |
| 509 |
|
if ( s == 2 ){ |
| 510 |
|
adcp[0][2*d+1][j] = ce->calpuls[3][d][j]; |
| 511 |
|
}; |
| 512 |
|
if ( s == 3 ){ |
| 513 |
|
adcp[0][2*d][j] = ce->calpuls[1][d][j]; |
| 514 |
|
}; |
| 515 |
|
if ( s == 0 ){ |
| 516 |
|
adcp[1][2*d][j] = ce->calpuls[0][d][j]; |
| 517 |
|
}; |
| 518 |
|
if ( s == 1 ){ |
| 519 |
|
adcp[1][2*d+1][j] = ce->calpuls[2][d][j]; |
| 520 |
|
}; |
| 521 |
}; |
}; |
| 522 |
|
}; |
| 523 |
|
} else { |
| 524 |
|
if ( verbose ) printf(" CALORIMETER - ERROR: problems finding a good calibration in this file! \n\n "); |
| 525 |
|
return(-111); |
| 526 |
|
}; |
| 527 |
|
// |
| 528 |
|
File->Close(); |
| 529 |
|
delete glroot; |
| 530 |
|
// |
| 531 |
|
// Save into matrix adcpcal the calibrated values of the pulse calibration (subtraction of pulse amplitude = 0 relative to the pulse2 calibration used) |
| 532 |
|
// |
| 533 |
|
pampli = 0; |
| 534 |
|
error = 0; |
| 535 |
|
error = glp->Query_GL_CALOPULSE_CALIB(fromtime,s,pampli,dbc); |
| 536 |
|
if ( error < 0 ){ |
| 537 |
|
if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); |
| 538 |
|
return(error); |
| 539 |
}; |
}; |
| 540 |
if ( minstrip != 100000. ) { |
// |
| 541 |
Float_t strip6s = 0.; |
idcalib = glp->ID_ROOT_L0; |
| 542 |
for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ |
calibno = glp->EV_ROOT; |
| 543 |
if ( (dexy[l][m][e]-calped[l][m][e]) >= minstrip && (dexy[l][m][e]-calped[l][m][e]) <= (minstrip+rms) ) { |
// |
| 544 |
strip6s += 1.; |
// determine path and name and entry of the calibration file |
| 545 |
base[l][m][pre] += (dexy[l][m][e] - calped[l][m][e]); |
// |
| 546 |
|
glroot = new GL_ROOT(); |
| 547 |
|
if ( verbose ) printf("\n"); |
| 548 |
|
if ( verbose ) printf(" ** SECTION %i **\n",s); |
| 549 |
|
// |
| 550 |
|
error = 0; |
| 551 |
|
error = glroot->Query_GL_ROOT(idcalib,dbc); |
| 552 |
|
if ( error < 0 ){ |
| 553 |
|
if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); |
| 554 |
|
return(error); |
| 555 |
|
}; |
| 556 |
|
// |
| 557 |
|
name.str(""); |
| 558 |
|
name << glroot->PATH.Data() << "/"; |
| 559 |
|
name << glroot->NAME.Data(); |
| 560 |
|
// |
| 561 |
|
fcalname = (TString)name.str().c_str(); |
| 562 |
|
myfile.open(fcalname.Data()); |
| 563 |
|
if ( !myfile ){ |
| 564 |
|
return(-107); |
| 565 |
|
}; |
| 566 |
|
myfile.close(); |
| 567 |
|
// |
| 568 |
|
TFile *File1 = new TFile(fcalname.Data()); |
| 569 |
|
if ( !File1 ) return(-108); |
| 570 |
|
TTree *tr1 = (TTree*)File1->Get("CalibCalPulse1"); |
| 571 |
|
if ( !tr1 ) return(-120); |
| 572 |
|
// |
| 573 |
|
TBranch *calo1 = tr1->GetBranch("CalibCalPulse1"); |
| 574 |
|
// |
| 575 |
|
pamela::CalibCalPulse1Event *ce1 = 0; |
| 576 |
|
tr1->SetBranchAddress("CalibCalPulse1", &ce1); |
| 577 |
|
// |
| 578 |
|
ncalibs = calo1->GetEntries(); |
| 579 |
|
// |
| 580 |
|
if ( !ncalibs ) return(-110); |
| 581 |
|
// |
| 582 |
|
calo1->GetEntry(calibno); |
| 583 |
|
if ( verbose ) printf(" PULSE1 using entry %u from file %s",calibno,fcalname.Data()); |
| 584 |
|
// |
| 585 |
|
// retrieve calibration table |
| 586 |
|
// |
| 587 |
|
if ( ce1->pstwerr[s] && ce1->pperror[s] == 0 && ce1->unpackError == 0 ){ |
| 588 |
|
for ( Int_t d=0 ; d<11 ;d++ ){ |
| 589 |
|
for ( Int_t j=0; j<96 ;j++){ |
| 590 |
|
if ( s == 2 ){ |
| 591 |
|
adcpcal[0][2*d+1][j] = adcp[0][2*d+1][j] - ce1->calpuls[3][d][j]; |
| 592 |
|
}; |
| 593 |
|
if ( s == 3 ){ |
| 594 |
|
adcpcal[0][2*d][j] = adcp[0][2*d][j] - ce1->calpuls[1][d][j]; |
| 595 |
|
}; |
| 596 |
|
if ( s == 0 ){ |
| 597 |
|
adcpcal[1][2*d][j] = adcp[1][2*d][j] - ce1->calpuls[0][d][j]; |
| 598 |
|
}; |
| 599 |
|
if ( s == 1 ){ |
| 600 |
|
adcpcal[1][2*d+1][j] = adcp[1][2*d+1][j] - ce1->calpuls[2][d][j]; |
| 601 |
|
}; |
| 602 |
|
}; |
| 603 |
|
}; |
| 604 |
|
} else { |
| 605 |
|
if ( verbose ) printf(" CALORIMETER - ERROR: problems finding a good calibration in this file! \n\n "); |
| 606 |
|
return(-111); |
| 607 |
|
}; |
| 608 |
|
// |
| 609 |
|
File1->Close(); |
| 610 |
|
// |
| 611 |
|
delete glroot; |
| 612 |
|
// |
| 613 |
|
};// loop on the four sections |
| 614 |
|
// |
| 615 |
|
// |
| 616 |
|
delete glp; |
| 617 |
|
dbc->Close(); |
| 618 |
|
delete dbc; |
| 619 |
|
// |
| 620 |
|
// Ok, now we can try to calculate the cross-talk correction for each pre-amplifier |
| 621 |
|
// |
| 622 |
|
for ( Int_t v=0; v<2; v++){ |
| 623 |
|
if ( debug ) printf(" \n\n NEW VIEW \n"); |
| 624 |
|
for ( Int_t p=0; p<22; p++){ |
| 625 |
|
for ( Int_t npre=0; npre<6; npre++){ |
| 626 |
|
ctprecor[v][p][npre] = 1000.; |
| 627 |
|
ctneigcor[v][p][npre] = 1000.; |
| 628 |
|
Int_t str0=npre*16; |
| 629 |
|
Int_t str16= -1 + (1+npre)*16; |
| 630 |
|
// |
| 631 |
|
UInt_t neigc = 0; |
| 632 |
|
UInt_t farc = 0; |
| 633 |
|
UInt_t pulsc = 0; |
| 634 |
|
Float_t sigpulsed = 0.; |
| 635 |
|
Float_t neigbase = 0.; |
| 636 |
|
Float_t farbase = 0.; |
| 637 |
|
// |
| 638 |
|
// Loop over the strip of the pre and sum all signal far away from pulsed strip, signal in the neighbour(s) strip(s) and save the pulsed signal |
| 639 |
|
// moreover count the number of strips in each case |
| 640 |
|
// |
| 641 |
|
for (Int_t s=str0; s<=str16; s++){ |
| 642 |
|
if ( adcpcal[v][p][s] > 10000.){ |
| 643 |
|
sigpulsed = adcpcal[v][p][s]; |
| 644 |
|
pulsc++; |
| 645 |
|
if ( s > str0 ){ |
| 646 |
|
neigbase += adcpcal[v][p][s-1]; |
| 647 |
|
neigc++; |
| 648 |
|
farbase -= adcpcal[v][p][s-1]; |
| 649 |
|
farc--; |
| 650 |
}; |
}; |
| 651 |
// |
if ( s < str16 ){ |
| 652 |
// compression |
neigbase += adcpcal[v][p][s+1]; |
| 653 |
// |
neigc++; |
| 654 |
if ( abs((int)(dexy[l][m][e]-calped[l][m][e])) <= (minstrip+rms) ) { |
farbase -= adcpcal[v][p][s+1]; |
| 655 |
dexyc[l][m][e] = 0.; |
farc--; |
|
} else { |
|
|
dexyc[l][m][e] = dexy[l][m][e]; |
|
| 656 |
}; |
}; |
| 657 |
|
} else { |
| 658 |
|
farc++; |
| 659 |
|
farbase += adcpcal[v][p][s]; |
| 660 |
|
}; |
| 661 |
}; |
}; |
| 662 |
if ( strip6s >= 9. ){ |
// |
| 663 |
Double_t arro = base[l][m][pre]/strip6s; |
// Now calculate the corrections |
| 664 |
Float_t deci = 1000.*((float)arro - float(int(arro))); |
// |
| 665 |
if ( deci < 500. ) { |
Float_t avefarbase = 0.; |
| 666 |
arro = double(int(arro)); |
if ( farc ) avefarbase = farbase/(Float_t)farc; |
| 667 |
} else { |
Float_t aveneigbase = 0.; |
| 668 |
arro = 1. + double(int(arro)); |
if ( neigc ) aveneigbase = neigbase/(Float_t)neigc; |
| 669 |
}; |
// |
| 670 |
base[l][m][pre] = arro; |
if ( pulsc == 1 && farc && neigc ){ |
| 671 |
|
ctprecor[v][p][npre] = -avefarbase/(sigpulsed+fabs(avefarbase)); |
| 672 |
|
ctneigcor[v][p][npre] = fabs(aveneigbase-avefarbase)/(sigpulsed+fabs(avefarbase)); |
| 673 |
|
if ( debug ) printf(" Cross-talk correction View %i Plane %i Pre %i : pre-correction: %f neighbour strips correction %f \n",v,p,npre,ctprecor[v][p][npre],ctneigcor[v][p][npre]); |
| 674 |
} else { |
} else { |
| 675 |
base[l][m][pre] = 31000.; |
// |
| 676 |
for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ |
// did not find the pulsed strip or more than one pulsed strip found! |
| 677 |
dexyc[l][m][e] = dexy[l][m][e]; |
// |
| 678 |
|
if ( debug ) printf(" Problems finding the cross-talk corrections: \n View %i Plane %i Pre %i number of pulsed strip %i \n Average faraway baseline %f number of strips %i Average neighbour baseline %f number of neighbour strips %i \n",v,p,npre,pulsc,avefarbase,farc,aveneigbase,neigc); |
| 679 |
|
// |
| 680 |
|
}; |
| 681 |
|
}; |
| 682 |
|
if ( debug ) printf(" \n ==================== \n"); |
| 683 |
|
}; |
| 684 |
|
}; |
| 685 |
|
// |
| 686 |
|
// Check the calculated corrections |
| 687 |
|
// |
| 688 |
|
Int_t opre=0; |
| 689 |
|
Int_t ppre=0; |
| 690 |
|
Bool_t found = false; |
| 691 |
|
for ( Int_t v=0; v<2; v++){ |
| 692 |
|
for ( Int_t p=0; p<22; p++){ |
| 693 |
|
for ( Int_t npre=0; npre<6; npre++){ |
| 694 |
|
if ( ctprecor[v][p][npre] == 1000. || ctneigcor[v][p][npre] == 1000. || obadpulsemask[v][p][npre] != 0 ){ |
| 695 |
|
if ( debug ) printf(" Cross-talk correction CHANGED for view %i Plane %i Pre %i\n BEFORE: pre-correction: %f neighbour strips correction %f \n",v,p,npre,ctprecor[v][p][npre],ctneigcor[v][p][npre]); |
| 696 |
|
if ( npre%2 ){ |
| 697 |
|
opre = npre-1; |
| 698 |
|
} else { |
| 699 |
|
opre = npre+1; |
| 700 |
|
}; |
| 701 |
|
if ( ctprecor[v][p][opre] == 1000. || ctneigcor[v][p][opre] == 1000. || obadpulsemask[v][p][opre] != 0 ){ |
| 702 |
|
ppre=0; |
| 703 |
|
found = false; |
| 704 |
|
while ( ppre < 6 ){ |
| 705 |
|
if ( ctprecor[v][p][ppre] != 1000. && ctneigcor[v][p][ppre] != 1000. && !obadpulsemask[v][p][ppre] ){ |
| 706 |
|
found = true; |
| 707 |
|
ctprecor[v][p][npre] = ctprecor[v][p][ppre]; |
| 708 |
|
ctneigcor[v][p][npre] = ctneigcor[v][p][ppre]; |
| 709 |
|
break; |
| 710 |
|
}; |
| 711 |
|
ppre++; |
| 712 |
|
}; |
| 713 |
|
if ( !found ){ |
| 714 |
|
if ( verbose ) printf(" WARNING: cannot find a good cross-talk correction for view %i plane %i pre %i \n Setting to default values 0.002 0.002\n",v,p,npre); |
| 715 |
|
ctprecor[v][p][npre] = 0.002; |
| 716 |
|
ctneigcor[v][p][npre] = 0.002; |
| 717 |
}; |
}; |
| 718 |
|
} else { |
| 719 |
|
ctprecor[v][p][npre] = ctprecor[v][p][opre]; |
| 720 |
|
ctneigcor[v][p][npre] = ctneigcor[v][p][opre]; |
| 721 |
|
}; |
| 722 |
|
if ( debug ) printf(" AFTER: pre-correction: %f neighbour strips correction %f \n",ctprecor[v][p][npre],ctneigcor[v][p][npre]); |
| 723 |
}; |
}; |
| 724 |
|
}; |
| 725 |
|
}; |
| 726 |
|
}; |
| 727 |
|
// |
| 728 |
|
return(0); |
| 729 |
|
} |
| 730 |
|
|
| 731 |
|
void CaloLevel0::FindBaseCompress(Int_t l, Int_t m, Int_t pre){ |
| 732 |
|
Int_t n = 0; |
| 733 |
|
Float_t q = 0; |
| 734 |
|
this->FindBaseCompress(l,m,pre,n,q); |
| 735 |
|
} |
| 736 |
|
|
| 737 |
|
void CaloLevel0::FindBaseCompress(Int_t l, Int_t m, Int_t pre, Int_t &nst, Float_t &qp){ |
| 738 |
|
for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ |
| 739 |
|
dexy[l][m][e] = dexyc[l][m][e]; |
| 740 |
|
}; |
| 741 |
|
this->FindBaseRaw(l,m,pre,nst,qp); |
| 742 |
|
} |
| 743 |
|
|
| 744 |
|
void CaloLevel0::FindBaseRaw(Int_t l, Int_t m, Int_t pre){ |
| 745 |
|
Int_t n = 0; |
| 746 |
|
Float_t q = 0; |
| 747 |
|
this->FindBaseRaw(l,m,pre,n,q); |
| 748 |
|
} |
| 749 |
|
|
| 750 |
|
void CaloLevel0::FindBaseRaw(Int_t l, Int_t m, Int_t pre, Int_t &nst, Float_t &qp){ |
| 751 |
|
// |
| 752 |
|
Float_t minstrip = 100000.; |
| 753 |
|
Float_t rms = 0.; |
| 754 |
|
base[l][m][pre] = 0.; |
| 755 |
|
qp = 0.; |
| 756 |
|
// |
| 757 |
|
for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ |
| 758 |
|
if ( calgood[l][m][e] == 0. && obadmask[l][m][e] == 0 && dexy[l][m][e]-calped[l][m][e] < minstrip && dexy[l][m][e] > 0.) { |
| 759 |
|
minstrip = dexy[l][m][e]-calped[l][m][e]; |
| 760 |
|
rms = calthr[l][m][pre]; |
| 761 |
|
}; |
| 762 |
|
qp += (dexy[l][m][e]-calped[l][m][e]-sbase[l][m][e]); |
| 763 |
|
}; |
| 764 |
|
// |
| 765 |
|
if ( debug && l==1 ){ |
| 766 |
|
printf("\n BASELINE CALCULATION for view %i pl %i pre %i: \n => minstrip %f rms %f \n => qp = %f \n",l,m,pre,minstrip,rms,qp); |
| 767 |
|
}; |
| 768 |
|
if ( minstrip != 100000. ) { |
| 769 |
|
Float_t strip6s = 0.; |
| 770 |
|
for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ |
| 771 |
|
if ( (dexy[l][m][e]-calped[l][m][e]) >= minstrip && (dexy[l][m][e]-calped[l][m][e]) <= (minstrip+rms) ) { |
| 772 |
|
strip6s += 1.; |
| 773 |
|
base[l][m][pre] += (dexy[l][m][e] - calped[l][m][e]); |
| 774 |
|
}; |
| 775 |
|
// |
| 776 |
|
// compression |
| 777 |
|
// |
| 778 |
|
if ( abs((int)(dexy[l][m][e]-calped[l][m][e])) <= (minstrip+rms) ) { |
| 779 |
|
dexyc[l][m][e] = 0.; |
| 780 |
|
} else { |
| 781 |
|
dexyc[l][m][e] = dexy[l][m][e]; |
| 782 |
|
}; |
| 783 |
|
}; |
| 784 |
|
// |
| 785 |
|
nst = (Int_t)strip6s; |
| 786 |
|
// |
| 787 |
|
if ( debug && l==1 ){ |
| 788 |
|
printf(" strip6s %f \n",strip6s); |
| 789 |
|
}; |
| 790 |
|
// if ( strip6s >= 9. ){ |
| 791 |
|
if ( strip6s >= 2. ){ |
| 792 |
|
Double_t arro = base[l][m][pre]/strip6s; |
| 793 |
|
Float_t deci = 1000.*((float)arro - float(int(arro))); |
| 794 |
|
if ( deci < 500. ) { |
| 795 |
|
arro = double(int(arro)); |
| 796 |
|
} else { |
| 797 |
|
arro = 1. + double(int(arro)); |
| 798 |
|
}; |
| 799 |
|
base[l][m][pre] = arro; |
| 800 |
|
// |
| 801 |
|
// if too few strips were used to determine the baseline check if it is comparable with the previous event, if not mark it as bad |
| 802 |
|
// |
| 803 |
|
if ( debug && l==1 ) printf(" Calculated baseline: base %f sbase*1.02 %f \n",base[l][m][pre],1.02*sbase[l][m][pre]); |
| 804 |
|
// |
| 805 |
|
if ( strip6s < 4 && base[l][m][pre] > 1.02*sbase[l][m][pre] && sbase[l][m][pre] > 0. ){ |
| 806 |
|
if ( debug ) printf(" Suspicious calculated baseline: base %f sbase*1.02 %f strip6s %i \n",base[l][m][pre],1.02*sbase[l][m][pre],(Int_t)strip6s); |
| 807 |
|
base[l][m][pre] = 31000.; |
| 808 |
|
}; |
| 809 |
} else { |
} else { |
| 810 |
base[l][m][pre] = 31000.; |
base[l][m][pre] = 31000.; |
| 811 |
|
for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ |
| 812 |
|
dexyc[l][m][e] = dexy[l][m][e]; |
| 813 |
|
}; |
| 814 |
}; |
}; |
| 815 |
|
} else { |
| 816 |
|
base[l][m][pre] = 31000.; |
| 817 |
|
}; |
| 818 |
} |
} |
| 819 |
|
|
| 820 |
Int_t CaloLevel0::Calibrate(Int_t ei){ |
Int_t CaloLevel0::Calibrate(Int_t ei){ |
| 825 |
// |
// |
| 826 |
// if it was not a selftrigger event, could it ever been a selftrigger event? if so trigty = 3. |
// if it was not a selftrigger event, could it ever been a selftrigger event? if so trigty = 3. |
| 827 |
// |
// |
| 828 |
|
clevel2->nsatstrip = 0.; |
| 829 |
Int_t val = 0; |
Int_t val = 0; |
| 830 |
Int_t del = 1100; |
Int_t del = 1100; |
| 831 |
for (Int_t sec = 0; sec < 4; sec++){ |
for (Int_t sec = 0; sec < 4; sec++){ |
| 950 |
// |
// |
| 951 |
pre = -1; |
pre = -1; |
| 952 |
cbase0 = 0.; |
cbase0 = 0.; |
| 953 |
|
Int_t nstt[2]; |
| 954 |
|
Float_t rqp[2]; |
| 955 |
for (Int_t i = 0; i < 3; i++){ |
for (Int_t i = 0; i < 3; i++){ |
| 956 |
|
nstt[0] = 0; |
| 957 |
|
nstt[1] = 0; |
| 958 |
|
rqp[0] = 0.; |
| 959 |
|
rqp[1] = 0.; |
| 960 |
for (Int_t j = 0; j < 2; j++){ |
for (Int_t j = 0; j < 2; j++){ |
| 961 |
pre = j + i*2; |
pre = j + i*2; |
| 962 |
// |
// |
| 963 |
// baseline check and calculation |
// baseline check and calculation |
| 964 |
// |
// |
| 965 |
if ( !isRAW ) { |
if ( !isRAW ){ |
| 966 |
base[l][m][pre] = de->base[l][m][pre] ; |
// |
| 967 |
|
// if it is a compress event with fully transmitted pre try to calculate the baseline |
| 968 |
|
// |
| 969 |
|
if ( de->base[l][m][pre] != 0. && de->base[l][m][pre]<31000. ) { |
| 970 |
|
base[l][m][pre] = de->base[l][m][pre] ; |
| 971 |
|
} else { |
| 972 |
|
FindBaseCompress(l,m,pre,nstt[j],rqp[j]); |
| 973 |
|
}; |
| 974 |
cbase0 += base[l][m][pre]; |
cbase0 += base[l][m][pre]; |
| 975 |
} else { |
} else { |
| 976 |
// |
// |
| 977 |
// if it is a raw event and we haven't checked |
// if it is a raw event calculate the baseline. |
|
// yet, calculate the baseline. |
|
| 978 |
// |
// |
| 979 |
FindBaseRaw(l,m,pre); |
FindBaseRaw(l,m,pre,nstt[j],rqp[j]); |
| 980 |
cbase0 += base[l][m][pre]; |
cbase0 += base[l][m][pre]; |
| 981 |
}; |
}; |
| 982 |
}; |
}; |
| 983 |
|
// |
| 984 |
|
// if we are able to calculate the baseline with more than 3 strips on one pre and not in the other one choose the pre with more calculated strips |
| 985 |
|
// |
| 986 |
|
if ( nstt[0] < 4 && nstt[1] >= 4 ) base[l][m][pre-1] = 31000.; |
| 987 |
|
if ( nstt[0] >= 4 && nstt[1] < 4 ) base[l][m][pre] = 31000.; |
| 988 |
|
// // |
| 989 |
|
// // if we are NOT able to calculate the baseline with more than 3 strips on both pres take the baseline (if any) of the one which has less energy |
| 990 |
|
// // |
| 991 |
|
// if ( nstt[0] < 4 && nstt[1] < 4 ){ |
| 992 |
|
// if ( rqp[0] >= rqp[1] ) base[l][m][pre-1] = 31000.; |
| 993 |
|
// if ( rqp[0] < rqp[1] ) base[l][m][pre] = 31000.; |
| 994 |
|
// }; |
| 995 |
}; |
}; |
| 996 |
// |
// |
| 997 |
// run over strips |
// run over strips |
| 1041 |
case 0: |
case 0: |
| 1042 |
base0 = base[l][m][pre]; |
base0 = base[l][m][pre]; |
| 1043 |
base2 = calbase[l][m][pre]; |
base2 = calbase[l][m][pre]; |
| 1044 |
if ( debug ) printf(" base0 = base l m pre = %f base2 = calbase l m pre = %f \n",base[l][m][pre],calbase[l][m][pre]); |
if ( debug ) printf(" base0 = base l%i m%i pre%i = %f base2 = calbase l m pre = %f \n",l,m,pre,base[l][m][pre],calbase[l][m][pre]); |
| 1045 |
break; |
break; |
| 1046 |
case 1: |
case 1: |
| 1047 |
base0 = base[l][m][ip[i]]; |
base0 = base[l][m][ip[i]]; |
| 1048 |
base2 = calbase[l][m][ip[i]]; |
base2 = calbase[l][m][ip[i]]; |
| 1049 |
if ( debug ) printf(" base0 = base l m ip(i) = %f base2 = calbase l m ip(i) = %f \n",base[l][m][ip[i]],calbase[l][m][ip[i]]); |
if ( debug ) printf(" base0 = base l%i m%i ip(i)%i = %f base2 = calbase l m ip(i) = %f \n",l,m,ip[i],base[l][m][ip[i]],calbase[l][m][ip[i]]); |
| 1050 |
break; |
break; |
| 1051 |
case 2: |
case 2: |
| 1052 |
base0 = sbase[l][m][pre]; |
base0 = sbase[l][m][pre]; |
| 1053 |
base2 = calbase[l][m][pre]; |
base2 = calbase[l][m][pre]; |
| 1054 |
if ( debug ) printf(" base0 = sbase l m pre = %f base2 = calbase l m pre = %f \n",sbase[l][m][pre],calbase[l][m][pre]); |
if ( debug ) printf(" base0 = sbase l%i m%i pre%i = %f base2 = calbase l m pre = %f \n",l,m,pre,sbase[l][m][pre],calbase[l][m][pre]); |
| 1055 |
break; |
break; |
| 1056 |
case 3: |
case 3: |
| 1057 |
base0 = calbase[l][m][pre]; |
base0 = calbase[l][m][pre]; |
| 1058 |
base2 = calbase[l][m][pre]; |
base2 = calbase[l][m][pre]; |
| 1059 |
if ( debug ) printf(" base0 = calbase l m pre = %f base2 = calbase l m pre = %f \n",calbase[l][m][pre],calbase[l][m][pre]); |
if ( debug ) printf(" base0 = calbase l%i m%i pre%i = %f base2 = calbase l m pre = %f \n",l,m,pre,calbase[l][m][pre],calbase[l][m][pre]); |
| 1060 |
break; |
break; |
| 1061 |
}; |
}; |
| 1062 |
base1 = calbase[l][m][pre]; |
base1 = calbase[l][m][pre]; |
| 1091 |
ipre = ip[i] - 1; |
ipre = ip[i] - 1; |
| 1092 |
}; |
}; |
| 1093 |
for (Int_t j = ipre*16 ; j < (ipre+1)*16 ; j++){ |
for (Int_t j = ipre*16 ; j < (ipre+1)*16 ; j++){ |
| 1094 |
clevel1->estrip[j][m][l] += (qpre[ipre] - qpre[ip[i]]) * 0.00478; |
if ( !ctground ){ |
| 1095 |
|
clevel1->estrip[j][m][l] += (qpre[ipre] - qpre[ip[i]]) * ctprecor[l][m][ipre]; |
| 1096 |
|
} else { |
| 1097 |
|
clevel1->estrip[j][m][l] += (qpre[ipre] - qpre[ip[i]]) * 0.00478; |
| 1098 |
|
}; |
| 1099 |
}; |
}; |
| 1100 |
}; |
}; |
| 1101 |
if (ck == 2){ |
if (ck == 2){ |
| 1102 |
for (Int_t j = i*32 ; j < (i+1)*32 ; j++){ |
for (Int_t j = i*32 ; j < (i+1)*32 ; j++){ |
| 1103 |
ipre = j/16 + 1; |
ipre = j/16 + 1; |
| 1104 |
clevel1->estrip[j][m][l] += qpre[ipre] * 0.00478; |
if ( !ctground ){ |
| 1105 |
|
clevel1->estrip[j][m][l] += qpre[ipre] * ctprecor[l][m][ipre]; |
| 1106 |
|
} else { |
| 1107 |
|
clevel1->estrip[j][m][l] += qpre[ipre] * 0.00478; |
| 1108 |
|
}; |
| 1109 |
}; |
}; |
| 1110 |
}; |
}; |
| 1111 |
}; |
}; |
| 1120 |
Int_t j4 = -4; |
Int_t j4 = -4; |
| 1121 |
Int_t jjj = -3; |
Int_t jjj = -3; |
| 1122 |
Int_t jj = -2; |
Int_t jj = -2; |
| 1123 |
for (Int_t j = 0 ; j < 100 ; j++){ |
Int_t jjpre = -1; |
| 1124 |
|
Int_t jjjpre = -1; |
| 1125 |
|
for (Int_t j = 0 ; j < 100 ; j++){ |
| 1126 |
jj++; |
jj++; |
| 1127 |
jjj++; |
jjj++; |
| 1128 |
j4++; |
j4++; |
| 1129 |
if ( j < 96 ) ene[j] = clevel1->estrip[j][m][l]; |
if ( j < 96 ) ene[j] = clevel1->estrip[j][m][l]; |
| 1130 |
if ( crosst ){ |
if ( crosst ){ |
| 1131 |
if ( jj >= 0 && jj < 96 ){ |
if ( jj >= 0 && jj < 96 ){ |
| 1132 |
if ( jj != 0 && jj != 32 && jj != 64 ) ene[jj-1] += -clevel1->estrip[jj][m][l] * 0.01581; |
if ( !ctground ){ |
| 1133 |
if ( jj != 31 && jj != 63 && jj != 95 ) ene[jj+1] += -clevel1->estrip[jj][m][l] * 0.01581; |
if ( jj%16 == 0 ) jjpre++; |
| 1134 |
|
if ( jj != 0 && jj != 32 && jj != 64 ) ene[jj-1] += -clevel1->estrip[jj][m][l] * ctneigcor[l][m][jjpre]; |
| 1135 |
|
if ( jj != 31 && jj != 63 && jj != 95 ) ene[jj+1] += -clevel1->estrip[jj][m][l] * ctneigcor[l][m][jjpre]; |
| 1136 |
|
} else { |
| 1137 |
|
if ( jj != 0 && jj != 32 && jj != 64 ) ene[jj-1] += -clevel1->estrip[jj][m][l] * 0.01581; |
| 1138 |
|
if ( jj != 31 && jj != 63 && jj != 95 ) ene[jj+1] += -clevel1->estrip[jj][m][l] * 0.01581; |
| 1139 |
|
}; |
| 1140 |
}; |
}; |
| 1141 |
if ( jjj >= 0 && jjj < 96 ){ |
if ( jjj >= 0 && jjj < 96 ){ |
| 1142 |
if ( jjj != 0 && jjj != 32 && jjj != 64 ) clevel1->estrip[jjj-1][m][l] += -ene[jjj] * 0.01581; |
if ( !ctground ){ |
| 1143 |
if ( jjj != 31 && jjj != 63 && jjj != 95 ) clevel1->estrip[jjj+1][m][l] += -ene[jjj] * 0.01581; |
if ( jjj%16 == 0 ) jjjpre++; |
| 1144 |
|
if ( jjj != 0 && jjj != 32 && jjj != 64 ) clevel1->estrip[jjj-1][m][l] += -ene[jjj] * ctneigcor[l][m][jjjpre]; |
| 1145 |
|
if ( jjj != 31 && jjj != 63 && jjj != 95 ) clevel1->estrip[jjj+1][m][l] += -ene[jjj] * ctneigcor[l][m][jjjpre]; |
| 1146 |
|
} else { |
| 1147 |
|
if ( jjj != 0 && jjj != 32 && jjj != 64 ) clevel1->estrip[jjj-1][m][l] += -ene[jjj] * 0.01581; |
| 1148 |
|
if ( jjj != 31 && jjj != 63 && jjj != 95 ) clevel1->estrip[jjj+1][m][l] += -ene[jjj] * 0.01581; |
| 1149 |
|
}; |
| 1150 |
}; |
}; |
| 1151 |
}; |
}; |
| 1152 |
if ( j4 >= 0 && j4 < 96 ){ |
if ( j4 >= 0 && j4 < 96 ){ |
| 1156 |
if ( obadmask[l][m][j4] == 1 || clevel1->estrip[j4][m][l] <= clevel1->emin || calrms[l][m][j4] > 26 ){ |
if ( obadmask[l][m][j4] == 1 || clevel1->estrip[j4][m][l] <= clevel1->emin || calrms[l][m][j4] > 26 ){ |
| 1157 |
clevel1->estrip[j4][m][l] = 0.; |
clevel1->estrip[j4][m][l] = 0.; |
| 1158 |
}; |
}; |
| 1159 |
// |
// |
| 1160 |
// code and save the energy for each strip in svstrip |
// code and save the energy for each strip in svstrip |
| 1161 |
// |
// |
| 1162 |
if ( clevel1->estrip[j4][m][l] > clevel1->emin ){ |
if ( clevel1->estrip[j4][m][l] > clevel1->emin ){ |
| 1163 |
// |
// |
| 1164 |
|
Float_t savel1 = clevel1->estrip[j4][m][l]; |
| 1165 |
|
if ( dexyc[l][m][j4] == 32767. ){ |
| 1166 |
|
savel1 += 5000.; |
| 1167 |
|
clevel2->nsatstrip += 1.; |
| 1168 |
|
}; |
| 1169 |
|
// |
| 1170 |
tim = 100000.; |
tim = 100000.; |
| 1171 |
plo = m; |
plo = m; |
| 1172 |
fbi = 0; |
fbi = 0; |
| 1173 |
if ( clevel1->estrip[j4][m][l] > 0.99995 ){ |
if ( savel1 > 0.99995 ){ |
| 1174 |
tim = 10000.; |
tim = 10000.; |
| 1175 |
plo = m; |
plo = m; |
| 1176 |
fbi = 1; |
fbi = 1; |
| 1177 |
}; |
}; |
| 1178 |
if ( clevel1->estrip[j4][m][l] > 9.9995 ){ |
if ( savel1 > 9.9995 ){ |
| 1179 |
tim = 1000.; |
tim = 1000.; |
| 1180 |
plo = 22 + m; |
plo = 22 + m; |
| 1181 |
fbi = 1; |
fbi = 1; |
| 1182 |
}; |
}; |
| 1183 |
if ( clevel1->estrip[j4][m][l] > 99.995 ){ |
if ( savel1 > 99.995 ){ |
| 1184 |
tim = 100.; |
tim = 100.; |
| 1185 |
plo = 22 + m; |
plo = 22 + m; |
| 1186 |
fbi = 0; |
fbi = 0; |
| 1187 |
}; |
}; |
| 1188 |
if ( clevel1->estrip[j4][m][l] > 999.95 ){ |
if ( savel1 > 999.95 ){ |
| 1189 |
tim = 10.; |
tim = 10.; |
| 1190 |
plo = 44 + m; |
plo = 44 + m; |
| 1191 |
fbi = 0; |
fbi = 0; |
| 1192 |
}; |
}; |
| 1193 |
if ( clevel1->estrip[j4][m][l] > 9999.5 ){ |
if ( savel1 > 9999.5 ){ |
| 1194 |
tim = 1.; |
tim = 1.; |
| 1195 |
plo = 66 + m; |
plo = 66 + m; |
| 1196 |
fbi = 0; |
fbi = 0; |
| 1197 |
}; |
}; |
| 1198 |
// |
// |
| 1199 |
cle = (Int_t)lroundf(tim*clevel1->estrip[j4][m][l]); |
cle = (Int_t)lroundf(tim*savel1); |
| 1200 |
// |
// |
| 1201 |
if ( l == 0 ){ |
if ( l == 0 ){ |
| 1202 |
// |
// |
| 1317 |
memcpy(ca->swerr,clevel2->swerr,sizeof(clevel2->swerr)); |
memcpy(ca->swerr,clevel2->swerr,sizeof(clevel2->swerr)); |
| 1318 |
memcpy(ca->crc,clevel2->crc,sizeof(clevel2->crc)); |
memcpy(ca->crc,clevel2->crc,sizeof(clevel2->crc)); |
| 1319 |
ca->nstrip = (Int_t)clevel2->nstrip; |
ca->nstrip = (Int_t)clevel2->nstrip; |
| 1320 |
|
ca->nsatstrip = (Int_t)clevel2->nsatstrip; |
| 1321 |
ca->qtot = clevel2->qtot; |
ca->qtot = clevel2->qtot; |
| 1322 |
// ca->impx = clevel2->impx; |
// ca->impx = clevel2->impx; |
| 1323 |
// ca->impy = clevel2->impy; |
// ca->impy = clevel2->impy; |
| 1362 |
memset(dexyc, 0, 2*22*96*sizeof(Float_t)); |
memset(dexyc, 0, 2*22*96*sizeof(Float_t)); |
| 1363 |
memset(base, 0, 2*22*6*sizeof(Float_t)); |
memset(base, 0, 2*22*6*sizeof(Float_t)); |
| 1364 |
memset(sbase, 0, 2*22*6*sizeof(Float_t)); |
memset(sbase, 0, 2*22*6*sizeof(Float_t)); |
| 1365 |
|
memset(ctprecor, 0, 2*22*6*sizeof(Float_t)); |
| 1366 |
|
memset(ctneigcor, 0, 2*22*6*sizeof(Float_t)); |
| 1367 |
// |
// |
| 1368 |
} |
} |
| 1369 |
|
|
| 1408 |
clevel2->wartrig = 0.; |
clevel2->wartrig = 0.; |
| 1409 |
clevel2->good = 0; |
clevel2->good = 0; |
| 1410 |
clevel2->nstrip = 0.; |
clevel2->nstrip = 0.; |
| 1411 |
|
clevel2->nsatstrip = 0.; |
| 1412 |
clevel2->qtot = 0.; |
clevel2->qtot = 0.; |
| 1413 |
// clevel2->impx = 0.; |
// clevel2->impx = 0.; |
| 1414 |
// clevel2->impy = 0.; |
// clevel2->impy = 0.; |