| 1 | /** | 
| 2 | * \file src/CaloLevel0.cpp | 
| 3 | * \author Emiliano Mocchiutti | 
| 4 | **/ | 
| 5 | // | 
| 6 | // C/C++ headers | 
| 7 | // | 
| 8 | #include <sstream> | 
| 9 | #include <fstream> | 
| 10 | // | 
| 11 | // ROOT headers | 
| 12 | // | 
| 13 | #include <TTree.h> | 
| 14 | #include <TBranch.h> | 
| 15 | #include <TFile.h> | 
| 16 | #include <TObject.h> | 
| 17 | // | 
| 18 | // YODA headers | 
| 19 | // | 
| 20 | #include <PamelaRun.h> | 
| 21 | #include <physics/calorimeter/CalorimeterEvent.h> | 
| 22 | #include <CalibCalPedEvent.h> | 
| 23 | // | 
| 24 | // | 
| 25 | // | 
| 26 | #include <GLTables.h> | 
| 27 | // | 
| 28 | // this package headers | 
| 29 | // | 
| 30 | #include <delay.h> | 
| 31 | #include <CaloLevel0.h> | 
| 32 | // | 
| 33 | // | 
| 34 | // Declaration of the core fortran routines | 
| 35 | // | 
| 36 | #define calol2cm calol2cm_ | 
| 37 | extern "C" int calol2cm(); | 
| 38 | #define calol2tr calol2tr_ | 
| 39 | extern "C" int calol2tr(); | 
| 40 | // | 
| 41 | using namespace std; | 
| 42 | // | 
| 43 | // | 
| 44 | // Public methods | 
| 45 | // | 
| 46 |  | 
| 47 | CaloLevel0::~CaloLevel0(){ | 
| 48 | if ( de ) delete de; | 
| 49 | delete this; | 
| 50 | } | 
| 51 |  | 
| 52 | CaloLevel0::CaloLevel0(){ | 
| 53 | // | 
| 54 | extern struct FlCaLevel1 clevel1_; | 
| 55 | extern struct FlCaLevel2 clevel2_; | 
| 56 | clevel1 = &clevel1_; | 
| 57 | clevel2 = &clevel2_; | 
| 58 | // | 
| 59 | //  extern struct FlEventi eventi_; | 
| 60 | //   extern struct FlGruppo gruppo_; | 
| 61 | //   extern struct FlGruppo2 gruppo2_; | 
| 62 | //   extern struct FlGruppo4 gruppo4_; | 
| 63 | //   extern struct FlTaglioen taglioen_; | 
| 64 | //   extern struct FlAngolo angolo_; | 
| 65 | //   extern struct FlWhere where_; | 
| 66 | //   extern struct FlGeneral general_; | 
| 67 | //   extern struct FlCh ch_; | 
| 68 | //   extern struct FlCalofit calofit_; | 
| 69 | //   extern struct FlPawcd pawcd_; | 
| 70 | //   extern struct FlQuestd questd_; | 
| 71 | //   eventi = &eventi_; | 
| 72 | //   gruppo = &gruppo_; | 
| 73 | //   gruppo2 = &gruppo2_; | 
| 74 | //   gruppo4 = &gruppo4_; | 
| 75 | //   taglioen = &taglioen_; | 
| 76 | //   angolo = &angolo_; | 
| 77 | //   where = &where_; | 
| 78 | //   general = &general_; | 
| 79 | //   ch = &ch_; | 
| 80 | //   calofit = &calofit_; | 
| 81 | //   pawcd = &pawcd_; | 
| 82 | //   questd = &questd_; | 
| 83 | // | 
| 84 | trkseqno = 0; | 
| 85 | ClearStructs(); | 
| 86 | // | 
| 87 | memset(dexy, 0, 2*22*96*sizeof(Float_t)); | 
| 88 | memset(dexyc, 0, 2*22*96*sizeof(Float_t)); | 
| 89 | memset(mip, 0, 2*22*96*sizeof(Float_t)); | 
| 90 | memset(base, 0, 2*22*6*sizeof(Float_t)); | 
| 91 | memset(sbase, 0, 2*22*6*sizeof(Float_t)); | 
| 92 | memset(obadmask, 0, 2*22*96*sizeof(Int_t)); | 
| 93 | memset(obadpulsemask, 0, 2*22*6*sizeof(Int_t)); | 
| 94 | memset(ctprecor, 0, 2*22*6*sizeof(Float_t)); | 
| 95 | memset(ctsicor, 0, 2*22*9*sizeof(Float_t)); | 
| 96 | memset(ctneigcor, 0, 2*22*6*sizeof(Float_t)); | 
| 97 | calopar1 = true; | 
| 98 | calopar2 = true; | 
| 99 | calopar3 = true; | 
| 100 | calopar4 = true; | 
| 101 | calopar5 = true; | 
| 102 | crosst = true; | 
| 103 | ftcalopar1 = 0; | 
| 104 | ttcalopar1 = 0; | 
| 105 | ftcalopar2 = 0; | 
| 106 | ttcalopar2 = 0; | 
| 107 | ftcalopar3 = 0; | 
| 108 | ttcalopar3 = 0; | 
| 109 | ftcalopar4 = 0; | 
| 110 | ttcalopar4 = 0; | 
| 111 | ftcalopar5 = 0; | 
| 112 | ttcalopar5 = 0; | 
| 113 | } | 
| 114 |  | 
| 115 | void CaloLevel0::SetCrossTalk(Bool_t ct){ | 
| 116 | crosst = ct; | 
| 117 | } | 
| 118 |  | 
| 119 | void CaloLevel0::SetCrossTalkType(Bool_t ct){ | 
| 120 | ctground = ct; | 
| 121 | } | 
| 122 |  | 
| 123 | void CaloLevel0::SetCrossTalkType(Int_t ct){ | 
| 124 | if ( ct == 0 ) ctground = true; | 
| 125 | if ( ct == 1 ){ | 
| 126 | ctground = false; | 
| 127 | noselfct = false; | 
| 128 | }; | 
| 129 | if ( ct == 2 ){ | 
| 130 | ctground = false; | 
| 131 | noselfct = true; | 
| 132 | }; | 
| 133 | } | 
| 134 |  | 
| 135 | void CaloLevel0::SetVerbose(Bool_t ct){ | 
| 136 | verbose = ct; | 
| 137 | } | 
| 138 |  | 
| 139 | /** | 
| 140 | * Initialize CaloLevel0 object | 
| 141 | **/ | 
| 142 | void CaloLevel0::ProcessingInit(TSQLServer *dbc, UInt_t hs, Int_t &sgnl, TTree *l0tree, Bool_t isdeb, Bool_t isverb){ | 
| 143 | if ( !dbc->IsConnected() ) throw -116; | 
| 144 | this->InitDo(dbc,hs,sgnl,l0tree,isdeb,isverb); | 
| 145 | } | 
| 146 |  | 
| 147 | /** | 
| 148 | * Initialize CaloLevel0 object | 
| 149 | **/ | 
| 150 | void CaloLevel0::ProcessingInit(GL_TABLES *glt, UInt_t hs, Int_t &sgnl, TTree *l0tree, Bool_t isdeb, Bool_t isverb){ | 
| 151 | // | 
| 152 | const TString host = glt->CGetHost(); | 
| 153 | const TString user = glt->CGetUser(); | 
| 154 | const TString psw = glt->CGetPsw(); | 
| 155 | TSQLServer *dbc = TSQLServer::Connect(host.Data(),user.Data(),psw.Data()); | 
| 156 | if ( !dbc->IsConnected() ) throw -116; | 
| 157 | this->InitDo(dbc,hs,sgnl,l0tree,isdeb,isverb); | 
| 158 | dbc->Close(); | 
| 159 | delete dbc; | 
| 160 | } | 
| 161 |  | 
| 162 |  | 
| 163 | void CaloLevel0::InitDo(TSQLServer *dbc, UInt_t hs, Int_t &sgnl, TTree *l0tree, Bool_t isdeb, Bool_t isverb){ | 
| 164 | stringstream myquery; | 
| 165 | myquery.str(""); | 
| 166 | myquery << "SET time_zone='+0:00'"; | 
| 167 | dbc->Query(myquery.str().c_str()); | 
| 168 | // | 
| 169 | debug = isdeb; | 
| 170 | verbose = isverb; | 
| 171 | // | 
| 172 | l0tr=(TTree*)l0tree; | 
| 173 | de = new pamela::calorimeter::CalorimeterEvent(); | 
| 174 | l0calo = (TBranch*)l0tr->GetBranch("Calorimeter"); | 
| 175 | l0tr->SetBranchAddress("Calorimeter", &de); | 
| 176 | // | 
| 177 | trkseqno = 0; | 
| 178 | ClearStructs(); | 
| 179 | // | 
| 180 | GL_CALO_CALIB *glcalo = new GL_CALO_CALIB(); | 
| 181 | // | 
| 182 | sgnl = 0; | 
| 183 | UInt_t uptime = 0; | 
| 184 | // | 
| 185 | for (Int_t s = 0; s < 4; s++){ | 
| 186 | idcalib[s] = 0; | 
| 187 | fromtime[s] = 0; | 
| 188 | totime[s] = 0; | 
| 189 | calibno[s] = 0; | 
| 190 | ClearCalibVals(s); | 
| 191 | // | 
| 192 | sgnl = glcalo->Query_GL_CALO_CALIB(hs,uptime,s,dbc); | 
| 193 | if ( sgnl < 0 ){ | 
| 194 | if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); | 
| 195 | return; | 
| 196 | }; | 
| 197 | // | 
| 198 | idcalib[s] = glcalo->ID_ROOT_L0; | 
| 199 | fromtime[s] = glcalo->FROM_TIME; | 
| 200 | if ( glcalo->TO_TIME < hs ){ // calibration is corrupted and we are using the one that preceed the good one | 
| 201 | totime[s] = uptime; | 
| 202 | } else { | 
| 203 | totime[s] = glcalo->TO_TIME; | 
| 204 | }; | 
| 205 | calibno[s] = glcalo->EV_ROOT; | 
| 206 | // | 
| 207 | if ( totime[s] == 0 ){ | 
| 208 | if ( verbose ) printf(" CALORIMETER - WARNING: data with no associated calibration\n"); | 
| 209 | ClearCalibVals(s); | 
| 210 | sgnl = 100; | 
| 211 | }; | 
| 212 | }; | 
| 213 | // | 
| 214 | // determine path and name and entry of the calibration file | 
| 215 | // | 
| 216 | GL_ROOT *glroot = new GL_ROOT(); | 
| 217 | if ( verbose ) printf("\n"); | 
| 218 | for (Int_t s = 0; s < 4; s++){ | 
| 219 | if ( verbose ) printf(" ** SECTION %i **\n",s); | 
| 220 | if ( totime[s] > 0 ){ | 
| 221 | // | 
| 222 | sgnl = glroot->Query_GL_ROOT(idcalib[s],dbc); | 
| 223 | if ( sgnl < 0 ){ | 
| 224 | if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); | 
| 225 | return; | 
| 226 | }; | 
| 227 | // | 
| 228 | stringstream name; | 
| 229 | name.str(""); | 
| 230 | name << glroot->PATH.Data() << "/"; | 
| 231 | name << glroot->NAME.Data(); | 
| 232 | // | 
| 233 | fcalname[s] = (TString)name.str().c_str(); | 
| 234 | if ( verbose ) printf(" - runheader at time %u. From time %u to time %u \n   use file %s \n   calibration at entry %i \n\n",hs,fromtime[s],totime[s],fcalname[s].Data(),calibno[s]); | 
| 235 | } else { | 
| 236 | if ( verbose ) printf(" - runheader at time %u. NO CALIBRATION INCLUDE THE RUNHEADER! ",hs); | 
| 237 | }; | 
| 238 | sgnl = LoadCalib(s); | 
| 239 | if ( sgnl ) break; | 
| 240 | }; | 
| 241 | // | 
| 242 | delete glcalo; | 
| 243 | delete glroot; | 
| 244 | // | 
| 245 | return; | 
| 246 | // | 
| 247 | } | 
| 248 |  | 
| 249 | Int_t CaloLevel0::ChkCalib(GL_TABLES *glt, UInt_t atime){ | 
| 250 | Int_t sgnl = 0; | 
| 251 | for ( Int_t s = 0; s < 4; s++){ | 
| 252 | if ( atime > totime[s] ){ | 
| 253 | sgnl = Update(glt,atime,s); | 
| 254 | if ( sgnl < 0 ) return(sgnl); | 
| 255 | }; | 
| 256 | }; | 
| 257 | return(sgnl); | 
| 258 | } | 
| 259 |  | 
| 260 | Int_t CaloLevel0::ChkParam(TSQLServer *dbc, UInt_t runheader, Bool_t mechal){ | 
| 261 | Int_t sig = this->ChkParamDo(dbc,runheader,mechal); | 
| 262 | return(sig); | 
| 263 | } | 
| 264 |  | 
| 265 | Int_t CaloLevel0::ChkParam(GL_TABLES *glt, UInt_t runheader, Bool_t mechal){ | 
| 266 | const TString host = glt->CGetHost(); | 
| 267 | const TString user = glt->CGetUser(); | 
| 268 | const TString psw = glt->CGetPsw(); | 
| 269 | TSQLServer *dbc = TSQLServer::Connect(host.Data(),user.Data(),psw.Data()); | 
| 270 | if ( !dbc->IsConnected() ) throw -116; | 
| 271 | stringstream myquery; | 
| 272 | myquery.str(""); | 
| 273 | myquery << "SET time_zone='+0:00'"; | 
| 274 | dbc->Query(myquery.str().c_str()); | 
| 275 | // | 
| 276 | Int_t sig = this->ChkParamDo(dbc,runheader,mechal); | 
| 277 | dbc->Close(); | 
| 278 | delete dbc; | 
| 279 | return(sig); | 
| 280 | } | 
| 281 |  | 
| 282 | Int_t CaloLevel0::ChkParamDo(TSQLServer *dbc, UInt_t runheader, Bool_t mechal){ | 
| 283 | // | 
| 284 | stringstream calfile; | 
| 285 | stringstream bmfile; | 
| 286 | stringstream aligfile; | 
| 287 | Int_t error = 0; | 
| 288 | FILE *f = 0; | 
| 289 | ifstream badfile; | 
| 290 | GL_PARAM *glparam = new GL_PARAM(); | 
| 291 | // | 
| 292 | if ( calopar1 || ( ttcalopar1 != 0 && ttcalopar1 < runheader ) ){ | 
| 293 | // | 
| 294 | if ( debug ) printf(" calopar1 %i ftcalopar1 %u ttcalopar1 %u runheader %u \n",calopar1,ftcalopar1,ttcalopar1,runheader); | 
| 295 | // | 
| 296 | if ( calopar1 ){ | 
| 297 | // | 
| 298 | // determine where I can find calorimeter ADC to MIP conversion file | 
| 299 | // | 
| 300 | if ( verbose ) printf(" Querying DB for calorimeter parameters files...\n"); | 
| 301 | // | 
| 302 | error = 0; | 
| 303 | error = glparam->Query_GL_PARAM(runheader,101,dbc); | 
| 304 | if ( error < 0 ) return(error); | 
| 305 | // | 
| 306 | calfile.str(""); | 
| 307 | calfile << glparam->PATH.Data() << "/"; | 
| 308 | calfile << glparam->NAME.Data(); | 
| 309 | // | 
| 310 | if ( verbose ) printf("\n Using ADC to MIP conversion file: \n %s \n",calfile.str().c_str()); | 
| 311 | f = fopen(calfile.str().c_str(),"rb"); | 
| 312 | if ( !f ){ | 
| 313 | if ( verbose ) printf(" CALORIMETER - ERROR: no ADC to MIP file!\n"); | 
| 314 | return(-105); | 
| 315 | }; | 
| 316 | // | 
| 317 | for (Int_t m = 0; m < 2 ; m++ ){ | 
| 318 | for (Int_t k = 0; k < 22; k++ ){ | 
| 319 | for (Int_t l = 0; l < 96; l++ ){ | 
| 320 | fread(&mip[m][k][l],sizeof(mip[m][k][l]),1,f); | 
| 321 | if ( debug ) printf(" %f \n",mip[m][k][l]); | 
| 322 | }; | 
| 323 | }; | 
| 324 | }; | 
| 325 | fclose(f); | 
| 326 | }; | 
| 327 | // | 
| 328 | calopar1 = false; | 
| 329 | // | 
| 330 | // flight extra corrections: | 
| 331 | // | 
| 332 | if ( verbose ) printf(" Querying DB for calorimeter flight ADC to MIP files...\n"); | 
| 333 | // | 
| 334 | error = 0; | 
| 335 | error = glparam->Query_GL_PARAM(runheader,110,dbc); | 
| 336 | if ( error < 0 ) return(error); | 
| 337 | // | 
| 338 | calfile.str(""); | 
| 339 | calfile << glparam->PATH.Data() << "/"; | 
| 340 | calfile << glparam->NAME.Data(); | 
| 341 | ftcalopar1 = glparam->FROM_TIME; | 
| 342 | ttcalopar1 = glparam->TO_TIME; | 
| 343 | // | 
| 344 | if ( verbose ) printf("\n Using ADC to MIP special conversion file: \n %s \n",calfile.str().c_str()); | 
| 345 | ifstream spfile; | 
| 346 | spfile.open(calfile.str().c_str()); | 
| 347 | if ( !spfile ){ | 
| 348 | if ( verbose ) printf(" CALORIMETER - ERROR: no special calibration file!\n"); | 
| 349 | return(-123); | 
| 350 | }; | 
| 351 | // | 
| 352 | Int_t vview = 0; | 
| 353 | Int_t vplane = 0; | 
| 354 | Int_t vstrip = 0; | 
| 355 | Float_t vval = 0.; | 
| 356 | while ( spfile >> vview && spfile >> vplane && spfile >> vstrip && spfile >> vval){ | 
| 357 | if ( debug ) printf(" Setting ADC to MIP conversion factor: view %i plane %i strip %i mip %f  \n",vview,vplane,vstrip,vval); | 
| 358 | mip[vview][vplane][vstrip] = vval; | 
| 359 | }; | 
| 360 | // | 
| 361 | }; | 
| 362 | // | 
| 363 | // | 
| 364 | if ( calopar2 || ( ttcalopar2 != 0 && ttcalopar2 < runheader ) ){ | 
| 365 | // | 
| 366 | if ( debug ) printf(" calopar2 %i ftcalopar2 %u ttcalopar2 %u runheader %u \n",calopar2,ftcalopar2,ttcalopar2,runheader); | 
| 367 | calopar2 = false; | 
| 368 | // | 
| 369 | // determine where I can find calorimeter alignment file | 
| 370 | // | 
| 371 | // | 
| 372 | error = 0; | 
| 373 | error = glparam->Query_GL_PARAM(runheader,102,dbc); | 
| 374 | if ( error < 0 ) return(error); | 
| 375 | // | 
| 376 | aligfile.str(""); | 
| 377 | aligfile << glparam->PATH.Data() << "/"; | 
| 378 | aligfile << glparam->NAME.Data(); | 
| 379 | ftcalopar2 = glparam->FROM_TIME; | 
| 380 | ttcalopar2 = glparam->TO_TIME; | 
| 381 | // | 
| 382 | if ( verbose ) printf("\n Using parameter file: \n %s \n",aligfile.str().c_str()); | 
| 383 | f = fopen(aligfile.str().c_str(),"rb"); | 
| 384 | if ( !f ){ | 
| 385 | if ( verbose ) printf(" CALORIMETER - ERROR: no parameter file!\n"); | 
| 386 | return(-106); | 
| 387 | }; | 
| 388 | // | 
| 389 | if ( !mechal ){ | 
| 390 | // | 
| 391 | fread(&clevel1->xalig,sizeof(clevel1->xalig),1,f); | 
| 392 | if ( debug ) printf(" xalig = %f \n",clevel1->xalig); | 
| 393 | fread(&clevel1->yalig,sizeof(clevel1->yalig),1,f); | 
| 394 | if ( debug ) printf(" yalig = %f \n",clevel1->yalig); | 
| 395 | fread(&clevel1->zalig,sizeof(clevel1->zalig),1,f); | 
| 396 | if ( debug ) printf(" zalig = %f \n",clevel1->zalig); | 
| 397 | } else { | 
| 398 | if ( verbose ) printf("\n Using MECHANICAL alignement parameters \n"); | 
| 399 | // | 
| 400 | CaloStrip cs = CaloStrip(); | 
| 401 | cs.UseMechanicalAlig(); | 
| 402 | clevel1->xalig = cs.GetXalig(); | 
| 403 | if ( debug ) printf(" xalig = %f \n",clevel1->xalig); | 
| 404 | clevel1->yalig = cs.GetYalig(); | 
| 405 | if ( debug ) printf(" yalig = %f \n",clevel1->yalig); | 
| 406 | clevel1->zalig = cs.GetZalig(); | 
| 407 | if ( debug ) printf(" zalig = %f \n",clevel1->zalig); | 
| 408 | // | 
| 409 | Float_t tmp = 0; | 
| 410 | fread(&tmp,sizeof(clevel1->xalig),1,f); | 
| 411 | fread(&tmp,sizeof(clevel1->yalig),1,f); | 
| 412 | fread(&tmp,sizeof(clevel1->zalig),1,f); | 
| 413 | //      clevel1->zalig = -265.82; | 
| 414 | // | 
| 415 | }; | 
| 416 | fread(&clevel1->emin,sizeof(clevel1->emin),1,f); | 
| 417 | if ( debug ) printf(" signal threshold = %f \n",clevel1->emin); | 
| 418 | // | 
| 419 | fclose(f); | 
| 420 | }; | 
| 421 | // | 
| 422 | // Load offline bad strip mask | 
| 423 | // | 
| 424 | if ( calopar3 || ( ttcalopar3 != 0 && ttcalopar3 < runheader ) ){ | 
| 425 | if ( debug ) printf(" calopar3 %i ftcalopar3 %u ttcalopar3 %u runheader %u \n",calopar3,ftcalopar3,ttcalopar3,runheader); | 
| 426 | calopar3 = false; | 
| 427 | // | 
| 428 | // determine where I can find calorimeter alignment file | 
| 429 | // | 
| 430 | // | 
| 431 | error = 0; | 
| 432 | error = glparam->Query_GL_PARAM(runheader,103,dbc); | 
| 433 | if ( error < 0 ) return(error); | 
| 434 | // | 
| 435 | bmfile.str(""); | 
| 436 | bmfile << glparam->PATH.Data() << "/"; | 
| 437 | bmfile << glparam->NAME.Data(); | 
| 438 | ftcalopar3 = glparam->FROM_TIME; | 
| 439 | ttcalopar3 = glparam->TO_TIME; | 
| 440 | // | 
| 441 | if ( verbose ) printf("\n Using bad strip offline mask file: \n %s \n\n",bmfile.str().c_str()); | 
| 442 | badfile.open(bmfile.str().c_str()); | 
| 443 | if ( !badfile ){ | 
| 444 | if ( verbose ) printf(" CALORIMETER - ERROR: no bad strip offline mask file!\n"); | 
| 445 | return(-115); | 
| 446 | }; | 
| 447 | // | 
| 448 | Bool_t isdone = false; | 
| 449 | Int_t bad = 0; | 
| 450 | Int_t view = 1; | 
| 451 | Int_t strip = 0; | 
| 452 | Int_t plane = 21; | 
| 453 | while ( !isdone ) { | 
| 454 | badfile >> bad; | 
| 455 | obadmask[view][plane][strip] = bad; | 
| 456 | if ( debug && bad ) printf(" SETTING view %i plane %i strip %i  BAD = %i \n",view,plane,strip,bad); | 
| 457 | strip++; | 
| 458 | if ( strip > 95 ){ | 
| 459 | strip = 0; | 
| 460 | plane--; | 
| 461 | if ( plane < 0 ){ | 
| 462 | plane = 21; | 
| 463 | view--; | 
| 464 | }; | 
| 465 | if ( view < 0 ) isdone = true; | 
| 466 | }; | 
| 467 | }; | 
| 468 | // | 
| 469 | badfile.close(); | 
| 470 | }; | 
| 471 | // | 
| 472 | // calopar4 | 
| 473 | // | 
| 474 | if ( calopar4 || ( ttcalopar4 != 0 && ttcalopar4 < runheader ) ){ | 
| 475 | // | 
| 476 | if ( debug ) printf(" calopar4 %i ftcalopar4 %u ttcalopar4 %u runheader %u \n",calopar4,ftcalopar4,ttcalopar4,runheader); | 
| 477 | // | 
| 478 | calopar4 = false; | 
| 479 | // | 
| 480 | // flight extra corrections: | 
| 481 | // | 
| 482 | if ( verbose ) printf(" Querying DB for calorimeter max rms file...\n"); | 
| 483 | // | 
| 484 | error = 0; | 
| 485 | error = glparam->Query_GL_PARAM(runheader,109,dbc); | 
| 486 | if ( error < 0 ) return(error); | 
| 487 | // | 
| 488 | calfile.str(""); | 
| 489 | calfile << glparam->PATH.Data() << "/"; | 
| 490 | calfile << glparam->NAME.Data(); | 
| 491 | ftcalopar4 = glparam->FROM_TIME; | 
| 492 | ttcalopar4 = glparam->TO_TIME; | 
| 493 | // | 
| 494 | if ( verbose ) printf("\n Using calorimeter max rms file: \n %s \n",calfile.str().c_str()); | 
| 495 | ifstream spfile; | 
| 496 | spfile.open(calfile.str().c_str()); | 
| 497 | if ( !spfile ){ | 
| 498 | if ( verbose ) printf(" CALORIMETER - ERROR: no max rms file!\n"); | 
| 499 | return(-124); | 
| 500 | }; | 
| 501 | // | 
| 502 | Int_t vview = 0; | 
| 503 | Int_t vplane = 0; | 
| 504 | Int_t vval = 0; | 
| 505 | for (Int_t l=0; l<2; l++){ | 
| 506 | for (Int_t m=0; m<22; m++){ | 
| 507 | maxrms[l][m] = 26; | 
| 508 | }; | 
| 509 | }; | 
| 510 | while ( spfile >> vview && spfile >> vplane && spfile >> vval){ | 
| 511 | if ( debug ) printf(" Setting view %i plane %i max rms %i  \n",vview,vplane,vval); | 
| 512 | maxrms[vview][vplane] = vval; | 
| 513 | }; | 
| 514 | spfile.close(); | 
| 515 | // | 
| 516 | }; | 
| 517 | // | 
| 518 | // calopar5 | 
| 519 | // | 
| 520 | if ( calopar5 || ( ttcalopar5 != 0 && ttcalopar5 < runheader ) ){ | 
| 521 | // | 
| 522 | if ( debug ) printf(" calopar5 %i ftcalopar5 %u ttcalopar5 %u runheader %u \n",calopar5,ftcalopar5,ttcalopar5,runheader); | 
| 523 | // | 
| 524 | calopar5 = false; | 
| 525 | // | 
| 526 | // flight extra corrections: | 
| 527 | // | 
| 528 | if ( verbose ) printf(" Querying DB for calorimeter noise to signal threshold file...\n"); | 
| 529 | // | 
| 530 | error = 0; | 
| 531 | error = glparam->Query_GL_PARAM(runheader,111,dbc); | 
| 532 | if ( error < 0 ) return(error); | 
| 533 | // | 
| 534 | calfile.str(""); | 
| 535 | calfile << glparam->PATH.Data() << "/"; | 
| 536 | calfile << glparam->NAME.Data(); | 
| 537 | ftcalopar5 = glparam->FROM_TIME; | 
| 538 | ttcalopar5 = glparam->TO_TIME; | 
| 539 | // | 
| 540 | if ( verbose ) printf("\n Using calorimeter noise to signal threshold file: \n %s \n",calfile.str().c_str()); | 
| 541 | ifstream spfile; | 
| 542 | spfile.open(calfile.str().c_str()); | 
| 543 | if ( !spfile ){ | 
| 544 | if ( verbose ) printf(" CALORIMETER - ERROR: no noise to signal threshold file!\n"); | 
| 545 | return(-125); | 
| 546 | }; | 
| 547 | // | 
| 548 | Int_t vview = 0; | 
| 549 | Int_t vplane = 0; | 
| 550 | Int_t vstrip = 0; | 
| 551 | Float_t vval = 0.; | 
| 552 | for (Int_t l=0; l<2; l++){ | 
| 553 | for (Int_t m=0; m<22; m++){ | 
| 554 | for (Int_t n=0; n<96; n++){ | 
| 555 | memin[l][m][n] = 0.7; | 
| 556 | }; | 
| 557 | }; | 
| 558 | }; | 
| 559 | while ( spfile >> vview && spfile >> vplane && spfile >> vstrip && spfile >> vval){ | 
| 560 | if ( vstrip == -1 ){ | 
| 561 | for (Int_t ll=0; ll<96; ll++){ | 
| 562 | if ( debug ) printf(" Setting view %i plane %i strip %i noise to signal ratio %f  \n",vview,vplane,ll,vval); | 
| 563 | memin[vview][vplane][ll] = vval; | 
| 564 | }; | 
| 565 | } else { | 
| 566 | if ( debug ) printf(" Setting view %i plane %i strip %i noise to signal ratio %f  \n",vview,vplane,vstrip,vval); | 
| 567 | memin[vview][vplane][vstrip] = vval; | 
| 568 | }; | 
| 569 | }; | 
| 570 | spfile.close(); | 
| 571 | // | 
| 572 | }; | 
| 573 | // | 
| 574 | // | 
| 575 | delete glparam; | 
| 576 | // | 
| 577 | return(0); | 
| 578 | } | 
| 579 |  | 
| 580 | Int_t CaloLevel0::CalcCrossTalkCorr(TSQLServer *dbc, UInt_t runheader, Bool_t ctusetable){ | 
| 581 | Int_t sig = CalcCrossTalkCorrDo(dbc,runheader,ctusetable); | 
| 582 | return(sig); | 
| 583 | }; | 
| 584 |  | 
| 585 | Int_t CaloLevel0::CalcCrossTalkCorr(TSQLServer *dbc, UInt_t runheader){ | 
| 586 | Int_t sig = CalcCrossTalkCorrDo(dbc,runheader,true); | 
| 587 | return(sig); | 
| 588 | } | 
| 589 |  | 
| 590 | Int_t CaloLevel0::CalcCrossTalkCorr(GL_TABLES *glt, UInt_t runheader, Bool_t usetable){ | 
| 591 | const TString host = glt->CGetHost(); | 
| 592 | const TString user = glt->CGetUser(); | 
| 593 | const TString psw = glt->CGetPsw(); | 
| 594 | TSQLServer *dbc = TSQLServer::Connect(host.Data(),user.Data(),psw.Data()); | 
| 595 | if ( !dbc->IsConnected() ) throw -116; | 
| 596 | stringstream myquery; | 
| 597 | myquery.str(""); | 
| 598 | myquery << "SET time_zone='+0:00'"; | 
| 599 | dbc->Query(myquery.str().c_str()); | 
| 600 | // | 
| 601 | Int_t sig = CalcCrossTalkCorrDo(dbc,runheader,usetable); | 
| 602 | dbc->Close(); | 
| 603 | delete dbc; | 
| 604 | // | 
| 605 | return(sig); | 
| 606 | // | 
| 607 | }; | 
| 608 |  | 
| 609 | Int_t CaloLevel0::CalcCrossTalkCorr(GL_TABLES *glt, UInt_t runheader){ | 
| 610 | const TString host = glt->CGetHost(); | 
| 611 | const TString user = glt->CGetUser(); | 
| 612 | const TString psw = glt->CGetPsw(); | 
| 613 | TSQLServer *dbc = TSQLServer::Connect(host.Data(),user.Data(),psw.Data()); | 
| 614 | if ( !dbc->IsConnected() ) throw -116; | 
| 615 | stringstream myquery; | 
| 616 | myquery.str(""); | 
| 617 | myquery << "SET time_zone='+0:00'"; | 
| 618 | dbc->Query(myquery.str().c_str()); | 
| 619 | // | 
| 620 | Int_t sig = CalcCrossTalkCorrDo(dbc,runheader,true); | 
| 621 | dbc->Close(); | 
| 622 | delete dbc; | 
| 623 | // | 
| 624 | return(sig); | 
| 625 | // | 
| 626 | } | 
| 627 |  | 
| 628 | Int_t CaloLevel0::CalcCrossTalkCorrDo(TSQLServer *dbc, UInt_t runheader, Bool_t usetable){ | 
| 629 | // | 
| 630 | if ( ctground ) return(0); | 
| 631 | // | 
| 632 | Int_t error = 0; | 
| 633 | GL_PARAM *glparam = new GL_PARAM(); | 
| 634 | // | 
| 635 | // determine where I can find file with offline bad pulser mask | 
| 636 | // | 
| 637 | stringstream bmfile; | 
| 638 | error = 0; | 
| 639 | error = glparam->Query_GL_PARAM(runheader,105,dbc); | 
| 640 | if ( error < 0 ) return(error); | 
| 641 | // | 
| 642 | bmfile.str(""); | 
| 643 | bmfile << glparam->PATH.Data() << "/"; | 
| 644 | bmfile << glparam->NAME.Data(); | 
| 645 | // | 
| 646 | ifstream badfile; | 
| 647 | if ( verbose ) printf("\n Using bad pulser offline mask file: \n %s \n\n",bmfile.str().c_str()); | 
| 648 | badfile.open(bmfile.str().c_str()); | 
| 649 | if ( !badfile ){ | 
| 650 | if ( verbose ) printf(" CALORIMETER - ERROR: no bad pulser offline mask file!\n"); | 
| 651 | return(-115); | 
| 652 | }; | 
| 653 | // | 
| 654 | Bool_t isdone = false; | 
| 655 | Int_t bad = 0; | 
| 656 | Int_t view = 1; | 
| 657 | Int_t pre = 0; | 
| 658 | Int_t plane = 21; | 
| 659 | while ( !isdone ) { | 
| 660 | badfile >> bad; | 
| 661 | obadpulsemask[view][plane][pre] = bad; | 
| 662 | if ( debug && bad ) printf(" SETTING view %i plane %i pre %i  BAD = %i \n",view,plane,pre,bad); | 
| 663 | pre++; | 
| 664 | if ( pre > 5 ){ | 
| 665 | pre = 0; | 
| 666 | plane--; | 
| 667 | if ( plane < 0 ){ | 
| 668 | plane = 21; | 
| 669 | view--; | 
| 670 | }; | 
| 671 | if ( view < 0 ) isdone = true; | 
| 672 | }; | 
| 673 | }; | 
| 674 | // | 
| 675 | badfile.close(); | 
| 676 | if ( !usetable ){ | 
| 677 | // | 
| 678 | // Let's start with cross-talk correction calculation | 
| 679 | // | 
| 680 | GL_CALOPULSE_CALIB *glp = new GL_CALOPULSE_CALIB(); | 
| 681 | Float_t adcp[2][22][96]; | 
| 682 | Float_t adcpcal[2][22][96]; | 
| 683 | memset(adcp , 0, 2*22*96*sizeof(Float_t)); | 
| 684 | memset(adcpcal , 0, 2*22*96*sizeof(Float_t)); | 
| 685 | // | 
| 686 | UInt_t pampli = 0; | 
| 687 | for (Int_t s=0; s<4; s++){ | 
| 688 | // | 
| 689 | // Save into matrix adcp the values of the highest pulse calibration (pulse amplitude = 2) | 
| 690 | // | 
| 691 | pampli = 2; | 
| 692 | error = 0; | 
| 693 | error = glp->Query_GL_CALOPULSE_CALIB(runheader,s,pampli,dbc); | 
| 694 | if ( error < 0 ){ | 
| 695 | if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); | 
| 696 | return(error); | 
| 697 | }; | 
| 698 | // | 
| 699 | UInt_t idcalib = glp->ID_ROOT_L0; | 
| 700 | UInt_t fromtime = glp->FROM_TIME; | 
| 701 | UInt_t calibno = glp->EV_ROOT; | 
| 702 | // | 
| 703 | // determine path and name and entry of the calibration file | 
| 704 | // | 
| 705 | GL_ROOT *glroot = new GL_ROOT(); | 
| 706 | if ( verbose ) printf("\n"); | 
| 707 | if ( verbose ) printf(" ** SECTION %i **\n",s); | 
| 708 | // | 
| 709 | error = 0; | 
| 710 | error = glroot->Query_GL_ROOT(idcalib,dbc); | 
| 711 | if ( error < 0 ){ | 
| 712 | if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); | 
| 713 | return(error); | 
| 714 | }; | 
| 715 | // | 
| 716 | stringstream name; | 
| 717 | name.str(""); | 
| 718 | name << glroot->PATH.Data() << "/"; | 
| 719 | name << glroot->NAME.Data(); | 
| 720 | // | 
| 721 | TString fcalname = (TString)name.str().c_str(); | 
| 722 | ifstream myfile; | 
| 723 | myfile.open(fcalname.Data()); | 
| 724 | if ( !myfile ){ | 
| 725 | return(-107); | 
| 726 | }; | 
| 727 | myfile.close(); | 
| 728 | // | 
| 729 | TFile *File = new TFile(fcalname.Data()); | 
| 730 | if ( !File ) return(-108); | 
| 731 | TTree *tr = (TTree*)File->Get("CalibCalPulse2"); | 
| 732 | if ( !tr ) return(-119); | 
| 733 | // | 
| 734 | TBranch *calo = tr->GetBranch("CalibCalPulse2"); | 
| 735 | // | 
| 736 | pamela::CalibCalPulse2Event *ce = 0; | 
| 737 | tr->SetBranchAddress("CalibCalPulse2", &ce); | 
| 738 | // | 
| 739 | Long64_t ncalibs = calo->GetEntries(); | 
| 740 | // | 
| 741 | if ( !ncalibs ) return(-110); | 
| 742 | // | 
| 743 | calo->GetEntry(calibno); | 
| 744 | if ( verbose ) printf(" PULSE2 using entry %u from file %s",calibno,fcalname.Data()); | 
| 745 | // | 
| 746 | // retrieve calibration table | 
| 747 | // | 
| 748 | if ( ce->pstwerr[s] && ce->pperror[s] == 0 && ce->unpackError == 0 ){ | 
| 749 | for ( Int_t d=0 ; d<11 ;d++  ){ | 
| 750 | for ( Int_t j=0; j<96 ;j++){ | 
| 751 | if ( s == 2 ){ | 
| 752 | adcp[0][2*d+1][j] = ce->calpuls[3][d][j]; | 
| 753 | }; | 
| 754 | if ( s == 3 ){ | 
| 755 | adcp[0][2*d][j] = ce->calpuls[1][d][j]; | 
| 756 | }; | 
| 757 | if ( s == 0 ){ | 
| 758 | adcp[1][2*d][j] = ce->calpuls[0][d][j]; | 
| 759 | }; | 
| 760 | if ( s == 1 ){ | 
| 761 | adcp[1][2*d+1][j] = ce->calpuls[2][d][j]; | 
| 762 | }; | 
| 763 | }; | 
| 764 | }; | 
| 765 | } else { | 
| 766 | if ( verbose ) printf(" CALORIMETER - ERROR: problems finding a good calibration in this file! \n\n "); | 
| 767 | return(-111); | 
| 768 | }; | 
| 769 | // | 
| 770 | File->Close(); | 
| 771 | delete glroot; | 
| 772 | // | 
| 773 | // Save into matrix adcpcal the calibrated values of the pulse calibration (subtraction of pulse amplitude = 0 relative to the pulse2 calibration used) | 
| 774 | // | 
| 775 | pampli = 0; | 
| 776 | error = 0; | 
| 777 | error = glp->Query_GL_CALOPULSE_CALIB(fromtime,s,pampli,dbc); | 
| 778 | if ( error < 0 ){ | 
| 779 | if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); | 
| 780 | return(error); | 
| 781 | }; | 
| 782 | // | 
| 783 | idcalib = glp->ID_ROOT_L0; | 
| 784 | calibno = glp->EV_ROOT; | 
| 785 | // | 
| 786 | // determine path and name and entry of the calibration file | 
| 787 | // | 
| 788 | glroot = new GL_ROOT(); | 
| 789 | if ( verbose ) printf("\n"); | 
| 790 | if ( verbose ) printf(" ** SECTION %i **\n",s); | 
| 791 | // | 
| 792 | error = 0; | 
| 793 | error = glroot->Query_GL_ROOT(idcalib,dbc); | 
| 794 | if ( error < 0 ){ | 
| 795 | if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); | 
| 796 | return(error); | 
| 797 | }; | 
| 798 | // | 
| 799 | name.str(""); | 
| 800 | name << glroot->PATH.Data() << "/"; | 
| 801 | name << glroot->NAME.Data(); | 
| 802 | // | 
| 803 | fcalname = (TString)name.str().c_str(); | 
| 804 | myfile.open(fcalname.Data()); | 
| 805 | if ( !myfile ){ | 
| 806 | return(-107); | 
| 807 | }; | 
| 808 | myfile.close(); | 
| 809 | // | 
| 810 | TFile *File1 = new TFile(fcalname.Data()); | 
| 811 | if ( !File1 ) return(-108); | 
| 812 | TTree *tr1 = (TTree*)File1->Get("CalibCalPulse1"); | 
| 813 | if ( !tr1 ) return(-120); | 
| 814 | // | 
| 815 | TBranch *calo1 = tr1->GetBranch("CalibCalPulse1"); | 
| 816 | // | 
| 817 | pamela::CalibCalPulse1Event *ce1 = 0; | 
| 818 | tr1->SetBranchAddress("CalibCalPulse1", &ce1); | 
| 819 | // | 
| 820 | ncalibs = calo1->GetEntries(); | 
| 821 | // | 
| 822 | if ( !ncalibs ) return(-110); | 
| 823 | // | 
| 824 | calo1->GetEntry(calibno); | 
| 825 | if ( verbose ) printf(" PULSE1 using entry %u from file %s",calibno,fcalname.Data()); | 
| 826 | // | 
| 827 | // retrieve calibration table | 
| 828 | // | 
| 829 | if ( ce1->pstwerr[s] && ce1->pperror[s] == 0 && ce1->unpackError == 0 ){ | 
| 830 | for ( Int_t d=0 ; d<11 ;d++  ){ | 
| 831 | for ( Int_t j=0; j<96 ;j++){ | 
| 832 | if ( s == 2 ){ | 
| 833 | adcpcal[0][2*d+1][j] = adcp[0][2*d+1][j] - ce1->calpuls[3][d][j]; | 
| 834 | }; | 
| 835 | if ( s == 3 ){ | 
| 836 | adcpcal[0][2*d][j] = adcp[0][2*d][j] - ce1->calpuls[1][d][j]; | 
| 837 | }; | 
| 838 | if ( s == 0 ){ | 
| 839 | adcpcal[1][2*d][j] = adcp[1][2*d][j] - ce1->calpuls[0][d][j]; | 
| 840 | }; | 
| 841 | if ( s == 1 ){ | 
| 842 | adcpcal[1][2*d+1][j] = adcp[1][2*d+1][j] - ce1->calpuls[2][d][j]; | 
| 843 | }; | 
| 844 | }; | 
| 845 | }; | 
| 846 | } else { | 
| 847 | if ( verbose ) printf(" CALORIMETER - ERROR: problems finding a good calibration in this file! \n\n "); | 
| 848 | return(-111); | 
| 849 | }; | 
| 850 | // | 
| 851 | File1->Close(); | 
| 852 | // | 
| 853 | delete glroot; | 
| 854 | // | 
| 855 | };// loop on the four sections | 
| 856 | // | 
| 857 | // | 
| 858 | delete glp; | 
| 859 | // | 
| 860 | // Ok, now we can try to calculate the cross-talk correction for each pre-amplifier | 
| 861 | // | 
| 862 | for ( Int_t v=0; v<2; v++){ | 
| 863 | if ( debug ) printf(" \n\n NEW VIEW \n"); | 
| 864 | for ( Int_t p=0; p<22; p++){ | 
| 865 | for ( Int_t npre=0; npre<6; npre++){ | 
| 866 | ctprecor[v][p][npre] = 1000.; | 
| 867 | ctneigcor[v][p][npre] = 1000.; | 
| 868 | Int_t str0=npre*16; | 
| 869 | Int_t str16= -1 + (1+npre)*16; | 
| 870 | // | 
| 871 | UInt_t neigc = 0; | 
| 872 | UInt_t farc = 0; | 
| 873 | UInt_t pulsc = 0; | 
| 874 | Float_t sigpulsed = 0.; | 
| 875 | Float_t neigbase = 0.; | 
| 876 | Float_t farbase = 0.; | 
| 877 | // | 
| 878 | // 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 | 
| 879 | // moreover count the number of strips in each case | 
| 880 | // | 
| 881 | for (Int_t s=str0; s<=str16; s++){ | 
| 882 | if ( adcpcal[v][p][s] > 10000.){ | 
| 883 | sigpulsed = adcpcal[v][p][s]; | 
| 884 | pulsc++; | 
| 885 | if ( s > str0 ){ | 
| 886 | neigbase += adcpcal[v][p][s-1]; | 
| 887 | neigc++; | 
| 888 | farbase -= adcpcal[v][p][s-1]; | 
| 889 | farc--; | 
| 890 | }; | 
| 891 | if ( s < str16 ){ | 
| 892 | neigbase += adcpcal[v][p][s+1]; | 
| 893 | neigc++; | 
| 894 | farbase -= adcpcal[v][p][s+1]; | 
| 895 | farc--; | 
| 896 | }; | 
| 897 | } else { | 
| 898 | farc++; | 
| 899 | farbase += adcpcal[v][p][s]; | 
| 900 | }; | 
| 901 | }; | 
| 902 | // | 
| 903 | // Now calculate the corrections | 
| 904 | // | 
| 905 | Float_t avefarbase = 0.; | 
| 906 | if ( farc ) avefarbase = farbase/(Float_t)farc; | 
| 907 | Float_t aveneigbase = 0.; | 
| 908 | if ( neigc ) aveneigbase = neigbase/(Float_t)neigc; | 
| 909 | // | 
| 910 | if ( pulsc == 1 && farc && neigc ){ | 
| 911 | ctprecor[v][p][npre] = -avefarbase/(sigpulsed+fabs(avefarbase)); | 
| 912 | ctneigcor[v][p][npre] = fabs(aveneigbase-avefarbase)/(sigpulsed+fabs(avefarbase)); | 
| 913 | 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]); | 
| 914 | } else { | 
| 915 | // | 
| 916 | // did not find the pulsed strip or more than one pulsed strip found! | 
| 917 | // | 
| 918 | 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); | 
| 919 | // | 
| 920 | }; | 
| 921 | }; | 
| 922 | if ( debug ) printf(" \n ==================== \n"); | 
| 923 | }; | 
| 924 | }; | 
| 925 | } else { | 
| 926 | // | 
| 927 | // use pre-amply table | 
| 928 | // | 
| 929 | // | 
| 930 | // determine where I can find file with offline neighbour correction table | 
| 931 | // | 
| 932 | stringstream bmfile2; | 
| 933 | error = 0; | 
| 934 | error = glparam->Query_GL_PARAM(runheader,106,dbc); | 
| 935 | if ( error < 0 ) return(error); | 
| 936 | // | 
| 937 | bmfile2.str(""); | 
| 938 | bmfile2 << glparam->PATH.Data() << "/"; | 
| 939 | bmfile2 << glparam->NAME.Data(); | 
| 940 | // | 
| 941 | ifstream badfile2; | 
| 942 | if ( verbose ) printf("\n Using pre-amply neighbour crosstalk table file: \n %s \n\n",bmfile2.str().c_str()); | 
| 943 | badfile2.open(bmfile2.str().c_str()); | 
| 944 | if ( !badfile2 ){ | 
| 945 | if ( verbose ) printf(" CALORIMETER - ERROR: no pre-amply neighbour crosstalk table file!\n"); | 
| 946 | return(-121); | 
| 947 | }; | 
| 948 | // | 
| 949 | Int_t vview = 0; | 
| 950 | Int_t vplane = 0; | 
| 951 | Int_t vpre = 0; | 
| 952 | Float_t vcorr = 0.; | 
| 953 | while ( badfile2 >> vview && badfile2 >> vplane && badfile2 >> vpre && badfile2 >> vcorr){ | 
| 954 | if ( debug ) printf(" Pre-amply neighbour correction: view %i plane %i pre %i correction %f  \n",vview,vplane,vpre,vcorr); | 
| 955 | ctneigcor[vview][vplane][vpre] = vcorr; | 
| 956 | }; | 
| 957 | // | 
| 958 | // determine where I can find file with offline SECOND neighbour correction table | 
| 959 | // | 
| 960 | stringstream bmfile3; | 
| 961 | error = 0; | 
| 962 | error = glparam->Query_GL_PARAM(runheader,107,dbc); | 
| 963 | if ( error < 0 ) return(error); | 
| 964 | // | 
| 965 | bmfile3.str(""); | 
| 966 | bmfile3 << glparam->PATH.Data() << "/"; | 
| 967 | bmfile3 << glparam->NAME.Data(); | 
| 968 | // | 
| 969 | ifstream badfile3; | 
| 970 | if ( verbose ) printf("\n Using pre-amply second neighbour crosstalk table file: \n %s \n\n",bmfile3.str().c_str()); | 
| 971 | badfile3.open(bmfile3.str().c_str()); | 
| 972 | if ( !badfile3 ){ | 
| 973 | if ( verbose ) printf(" CALORIMETER - ERROR: no pre-amply second neighbour crosstalk table file!\n"); | 
| 974 | return(-122); | 
| 975 | }; | 
| 976 | // | 
| 977 | Int_t pview = 0; | 
| 978 | Int_t pplane = 0; | 
| 979 | Int_t ppre = 0; | 
| 980 | Float_t pcorr = 0.; | 
| 981 | while ( badfile3 >> pview && badfile3 >> pplane && badfile3 >> ppre && badfile3 >> pcorr){ | 
| 982 | if ( debug ) printf(" Pre-amply second neighbour correction: view %i plane %i pre %i correction %f  \n",pview,pplane,ppre,-pcorr); | 
| 983 | ctprecor[pview][pplane][ppre] = -pcorr; // data are saved as negatives in the file | 
| 984 | }; | 
| 985 | // | 
| 986 | // determine where to find the file containing the Silicon crosstalk correction table | 
| 987 | // | 
| 988 | stringstream bmfile4; | 
| 989 | error = 0; | 
| 990 | error = glparam->Query_GL_PARAM(runheader,108,dbc); | 
| 991 | if ( error < 0 ) return(error); | 
| 992 | // | 
| 993 | bmfile4.str(""); | 
| 994 | bmfile4 << glparam->PATH.Data() << "/"; | 
| 995 | bmfile4 << glparam->NAME.Data(); | 
| 996 | // | 
| 997 | ifstream badfile4; | 
| 998 | if ( verbose ) printf("\n Using Silicon crosstalk table file: \n %s \n\n",bmfile4.str().c_str()); | 
| 999 | badfile4.open(bmfile4.str().c_str()); | 
| 1000 | if ( !badfile4 ){ | 
| 1001 | if ( verbose ) printf(" CALORIMETER - ERROR: no Silicon crosstalk table file!\n"); | 
| 1002 | return(-125); | 
| 1003 | }; | 
| 1004 | // | 
| 1005 | Int_t spview = 0; | 
| 1006 | Int_t spplane = 0; | 
| 1007 | Int_t psil = 0; | 
| 1008 | Float_t spcorr = 0.; | 
| 1009 | memset(ctsicor, 0, 2*22*9*sizeof(Float_t)); | 
| 1010 | while ( badfile4 >> spview && badfile4 >> spplane && badfile4 >> psil && badfile4 >> spcorr){ | 
| 1011 | if ( debug ) printf(" Silicon correction: view %i plane %i silicon %i correction %f  \n",spview,spplane,psil,-spcorr); | 
| 1012 | ctsicor[spview][spplane][psil] = -spcorr; // data are saved as negatives in the file | 
| 1013 | }; | 
| 1014 | // | 
| 1015 | }; | 
| 1016 | // | 
| 1017 | delete glparam; | 
| 1018 | // | 
| 1019 | // Check the calculated corrections | 
| 1020 | // | 
| 1021 | Int_t opre=0; | 
| 1022 | Int_t ppre=0; | 
| 1023 | Bool_t found = false; | 
| 1024 | for ( Int_t v=0; v<2; v++){ | 
| 1025 | for ( Int_t p=0; p<22; p++){ | 
| 1026 | for ( Int_t npre=0; npre<6; npre++){ | 
| 1027 | if ( ctprecor[v][p][npre] == 1000. || ctneigcor[v][p][npre] == 1000. || obadpulsemask[v][p][npre] != 0 ){ | 
| 1028 | 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]); | 
| 1029 | if ( npre%2 ){ | 
| 1030 | opre = npre-1; | 
| 1031 | } else { | 
| 1032 | opre = npre+1; | 
| 1033 | }; | 
| 1034 | if ( ctprecor[v][p][opre] == 1000. || ctneigcor[v][p][opre] == 1000. || obadpulsemask[v][p][opre] != 0 ){ | 
| 1035 | ppre=0; | 
| 1036 | found = false; | 
| 1037 | while ( ppre < 6 ){ | 
| 1038 | if ( ctprecor[v][p][ppre] != 1000. && ctneigcor[v][p][ppre] != 1000. && !obadpulsemask[v][p][ppre] ){ | 
| 1039 | found = true; | 
| 1040 | ctprecor[v][p][npre] = ctprecor[v][p][ppre]; | 
| 1041 | ctneigcor[v][p][npre] = ctneigcor[v][p][ppre]; | 
| 1042 | break; | 
| 1043 | }; | 
| 1044 | ppre++; | 
| 1045 | }; | 
| 1046 | if ( !found ){ | 
| 1047 | 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); | 
| 1048 | ctprecor[v][p][npre] = 0.002; | 
| 1049 | ctneigcor[v][p][npre] = 0.002; | 
| 1050 | }; | 
| 1051 | } else { | 
| 1052 | ctprecor[v][p][npre] = ctprecor[v][p][opre]; | 
| 1053 | ctneigcor[v][p][npre] = ctneigcor[v][p][opre]; | 
| 1054 | }; | 
| 1055 | if ( debug ) printf("    AFTER: pre-correction: %f neighbour strips correction %f \n",ctprecor[v][p][npre],ctneigcor[v][p][npre]); | 
| 1056 | }; | 
| 1057 | }; | 
| 1058 | }; | 
| 1059 | }; | 
| 1060 | // | 
| 1061 | return(0); | 
| 1062 | } | 
| 1063 |  | 
| 1064 | void CaloLevel0::FindBaseCompress(Int_t l, Int_t m, Int_t pre){ | 
| 1065 | Int_t n = 0; | 
| 1066 | Float_t q = 0; | 
| 1067 | this->FindBaseCompress(l,m,pre,n,q); | 
| 1068 | } | 
| 1069 |  | 
| 1070 | void CaloLevel0::FindBaseCompress(Int_t l, Int_t m, Int_t pre, Int_t &nst, Float_t &qp){ | 
| 1071 | for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ | 
| 1072 | dexy[l][m][e] = dexyc[l][m][e]; | 
| 1073 | }; | 
| 1074 | this->FindBaseRaw(l,m,pre,nst,qp); | 
| 1075 | } | 
| 1076 |  | 
| 1077 | void CaloLevel0::FindBaseRaw(Int_t l, Int_t m, Int_t pre){ | 
| 1078 | Int_t n = 0; | 
| 1079 | Float_t q = 0; | 
| 1080 | this->FindBaseRaw(l,m,pre,n,q); | 
| 1081 | } | 
| 1082 |  | 
| 1083 | void CaloLevel0::FindBaseRaw(Int_t l, Int_t m, Int_t pre, Int_t &nst, Float_t &qp){ | 
| 1084 | // | 
| 1085 | Float_t minstrip = 100000.; | 
| 1086 | Float_t rms = 0.; | 
| 1087 | Int_t process = 0; | 
| 1088 | Int_t onlmask[16]; | 
| 1089 | memset(onlmask, 0, 16*sizeof(Int_t)); | 
| 1090 | // | 
| 1091 | while ( process < 2 ){ | 
| 1092 | // | 
| 1093 | minstrip = 100000.; | 
| 1094 | rms = 0.; | 
| 1095 | base[l][m][pre] = 0.; | 
| 1096 | qp = 0.; | 
| 1097 | // | 
| 1098 | Int_t spos = -1; | 
| 1099 | Int_t ee = 0; | 
| 1100 | for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ | 
| 1101 | 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. && onlmask[ee] == 0 ) { | 
| 1102 | minstrip = dexy[l][m][e]-calped[l][m][e]; | 
| 1103 | rms = calthr[l][m][pre]; | 
| 1104 | spos = ee; | 
| 1105 | }; | 
| 1106 | ee++; | 
| 1107 | qp += (dexy[l][m][e]-calped[l][m][e]-sbase[l][m][e]); | 
| 1108 | }; | 
| 1109 | // | 
| 1110 | if ( debug && l==0 ){ | 
| 1111 | 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); | 
| 1112 | }; | 
| 1113 | if ( minstrip != 100000. ) { | 
| 1114 | Float_t strip6s = 0.; | 
| 1115 | for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ | 
| 1116 | if ( (dexy[l][m][e]-calped[l][m][e]) >= minstrip && (dexy[l][m][e]-calped[l][m][e]) <= (minstrip+rms) ) { | 
| 1117 | strip6s += 1.; | 
| 1118 | base[l][m][pre] += (dexy[l][m][e] - calped[l][m][e]); | 
| 1119 | }; | 
| 1120 | // | 
| 1121 | //  compression | 
| 1122 | // | 
| 1123 | //      if ( abs((int)(dexy[l][m][e]-calped[l][m][e])) <= (minstrip+rms) ) { | 
| 1124 | //        dexyc[l][m][e] = 0.; | 
| 1125 | //      } else { | 
| 1126 | dexyc[l][m][e] = dexy[l][m][e]; | 
| 1127 | //    }; | 
| 1128 | }; | 
| 1129 | // | 
| 1130 | if ( strip6s == 1. && process < 1 ){ | 
| 1131 | onlmask[spos] = 1; | 
| 1132 | process++; | 
| 1133 | if ( debug ) printf(" Warning, only one strip to calculate baseline: minstrip %f rms %f spos %i l %i m %i pre %i \n",minstrip,rms,spos,l,m,pre); | 
| 1134 | continue; | 
| 1135 | }; | 
| 1136 | process += 2; | 
| 1137 | nst = (Int_t)strip6s; | 
| 1138 | // | 
| 1139 | if ( debug ){ | 
| 1140 | printf(" strip6s %f \n",strip6s); | 
| 1141 | }; | 
| 1142 | //        if ( strip6s >= 9. ){ | 
| 1143 | if ( (strip6s >= 2. && process == 2) || (strip6s >= 9. && process > 2) ){ | 
| 1144 | //if ( (strip6s >= 4. && process == 2) || (strip6s >= 9. && process > 2) ){ | 
| 1145 | Double_t arro = base[l][m][pre]/strip6s; | 
| 1146 | Float_t deci = 1000.*((float)arro - float(int(arro))); | 
| 1147 | if ( deci < 500. ) { | 
| 1148 | arro = double(int(arro)); | 
| 1149 | } else { | 
| 1150 | arro = 1. + double(int(arro)); | 
| 1151 | }; | 
| 1152 | base[l][m][pre] = arro; | 
| 1153 | // | 
| 1154 | // 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 | 
| 1155 | // | 
| 1156 | if ( debug && process > 2 ) printf(" AGH low strip value was discarded process %i strip6s %f minstrip %f rms %f spos %i\n",process,strip6s,minstrip,rms,spos); | 
| 1157 | if ( debug ) printf(" Calculated baseline: base %f sbase-0.02*qp %f \n",base[l][m][pre],(-qp*0.02+sbase[l][m][pre])); | 
| 1158 | // | 
| 1159 | if ( strip6s < 4 && base[l][m][pre] > (-0.015*qp+sbase[l][m][pre]) && sbase[l][m][pre] > 0. ){ | 
| 1160 | if ( debug ) printf(" Suspicious calculated baseline: base %f sbase-0.02*qp %f strip6s %i \n",base[l][m][pre],(-qp*0.02+sbase[l][m][pre]),(Int_t)strip6s); | 
| 1161 | base[l][m][pre] = 31000.; | 
| 1162 | for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ | 
| 1163 | dexyc[l][m][e] = dexy[l][m][e]; | 
| 1164 | }; | 
| 1165 | }; | 
| 1166 | } else { | 
| 1167 | base[l][m][pre] = 31000.; | 
| 1168 | for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ | 
| 1169 | dexyc[l][m][e] = dexy[l][m][e]; | 
| 1170 | }; | 
| 1171 | }; | 
| 1172 | } else { | 
| 1173 | process += 2; | 
| 1174 | base[l][m][pre] = 31000.; | 
| 1175 | for (Int_t e = pre*16; e < (pre+1)*16 ; e++){ | 
| 1176 | dexyc[l][m][e] = dexy[l][m][e]; | 
| 1177 | }; | 
| 1178 | }; | 
| 1179 | }; | 
| 1180 | } | 
| 1181 |  | 
| 1182 | Int_t CaloLevel0::Calibrate(Int_t ei){ | 
| 1183 | // | 
| 1184 | // get entry ei | 
| 1185 | // | 
| 1186 | l0calo->GetEntry(ei); | 
| 1187 | // | 
| 1188 | // if it was not a selftrigger event, could it ever been a selftrigger event? if so trigty = 3. | 
| 1189 | // | 
| 1190 | clevel2->nsatstrip = 0.; | 
| 1191 | Int_t val = 0; | 
| 1192 | Int_t del = 1100; | 
| 1193 | for (Int_t sec = 0; sec < 4; sec++){ | 
| 1194 | for (Int_t dsec = 0; dsec < 7; dsec++){ | 
| 1195 | val = (Int_t)de->calselftrig[sec][dsec]; | 
| 1196 | del = delay(val); | 
| 1197 | clevel2->selfdelay[sec][dsec] = del; | 
| 1198 | }; | 
| 1199 | }; | 
| 1200 | val = 0; | 
| 1201 | del = 1100; | 
| 1202 | if ( clevel2->trigty != 2. ){ | 
| 1203 | Bool_t ck = false; | 
| 1204 | for (Int_t sec = 0; sec < 4; sec++){ | 
| 1205 | val = (Int_t)de->calselftrig[sec][6]; | 
| 1206 | del = delay(val); | 
| 1207 | if ( del < 1100 ){ | 
| 1208 | clevel2->wartrig = 0.; | 
| 1209 | clevel2->trigty = 3.; | 
| 1210 | ck = true; | 
| 1211 | break; | 
| 1212 | }; | 
| 1213 | }; | 
| 1214 | if ( !ck ) clevel2->wartrig = 100.; | 
| 1215 | } else { | 
| 1216 | Bool_t ck = false; | 
| 1217 | for (Int_t sec = 0; sec < 4; sec++){ | 
| 1218 | val = (Int_t)de->calselftrig[sec][6]; | 
| 1219 | del = delay(val); | 
| 1220 | if ( del < 1100 ){ | 
| 1221 | clevel2->wartrig = 0.; | 
| 1222 | ck = true; | 
| 1223 | }; | 
| 1224 | }; | 
| 1225 | if ( !ck ) clevel2->wartrig = 100.; | 
| 1226 | }; | 
| 1227 | // | 
| 1228 | Int_t se = 5; | 
| 1229 | Int_t done = 0; | 
| 1230 | Int_t pre = -1; | 
| 1231 | Bool_t isCOMP = false; | 
| 1232 | Bool_t isFULL = false; | 
| 1233 | Bool_t isRAW = false; | 
| 1234 | Float_t ener; | 
| 1235 | Int_t doneb = 0; | 
| 1236 | Int_t donec = 0; | 
| 1237 | Int_t ck[2][22][6]; | 
| 1238 | memset(ck, 0, 2*22*6*sizeof(Int_t)); | 
| 1239 | Int_t ipre = 0; | 
| 1240 | //  Int_t ip[3] = {0}; | 
| 1241 | Int_t ip[3] = {0,0,0}; | 
| 1242 | Int_t ipp = 0; | 
| 1243 | Float_t base0, base1, base2; | 
| 1244 | base0 = 0.; | 
| 1245 | base1 = 0.; | 
| 1246 | base2 = 0.; | 
| 1247 | Float_t qpre[2][22][6]; | 
| 1248 | memset(qpre, 0, 2*22*6*sizeof(Float_t)); | 
| 1249 | Float_t ene[96]; | 
| 1250 | Int_t chdone[4] = {0,0,0,0}; | 
| 1251 | Int_t pe = 0; | 
| 1252 | // | 
| 1253 | Float_t ener0 = 0.; | 
| 1254 | Float_t cbase0 = 0.; | 
| 1255 | Bool_t pproblem = false; | 
| 1256 | Bool_t negbase = false; | 
| 1257 | // | 
| 1258 | Float_t tim = 0.; | 
| 1259 | Int_t plo = 0; | 
| 1260 | Int_t fbi = 0; | 
| 1261 | Int_t cle = 0; | 
| 1262 | // | 
| 1263 | // run over views and planes | 
| 1264 | // | 
| 1265 | for (Int_t l = 0; l < 2; l++){ | 
| 1266 | for (Int_t m = 0; m < 22; m++){ | 
| 1267 | // | 
| 1268 | // determine the section number | 
| 1269 | // | 
| 1270 | negbase = false; | 
| 1271 | se = 5; | 
| 1272 | if (l == 0 && m%2 == 0) se = 3; | 
| 1273 | if (l == 0 && m%2 != 0) se = 2; | 
| 1274 | if (l == 1 && m%2 != 0) se = 1; | 
| 1275 | if (l == 1 && m%2 == 0) se = 0; | 
| 1276 | // | 
| 1277 | // determine what kind of event we are going to analyze | 
| 1278 | // | 
| 1279 | isCOMP = false; | 
| 1280 | isFULL = false; | 
| 1281 | isRAW = false; | 
| 1282 | if ( de->stwerr[se] & (1 << 16) ) isCOMP = true; | 
| 1283 | if ( de->stwerr[se] & (1 << 17) ) isFULL = true; | 
| 1284 | if ( de->stwerr[se] & (1 << 3) ) isRAW = true; | 
| 1285 | if ( !chdone[se] ){ | 
| 1286 | // | 
| 1287 | // check for any error in the event | 
| 1288 | // | 
| 1289 | clevel2->crc[se] = 0; | 
| 1290 | if ( de->perror[se] == 132 ){ | 
| 1291 | clevel2->crc[se] = 1; | 
| 1292 | pe++; | 
| 1293 | }; | 
| 1294 | clevel2->perr[se] = 0; | 
| 1295 | if ( de->perror[se] != 0 ){ | 
| 1296 | clevel2->perr[se] = (Int_t)de->perror[se]; | 
| 1297 | pe++; | 
| 1298 | }; | 
| 1299 | clevel2->swerr[se] = 0; | 
| 1300 | for (Int_t j = 0; j < 7 ; j++){ | 
| 1301 | if ( (j != 3) && (de->stwerr[se] & (1 << j)) ){ | 
| 1302 | clevel2->swerr[se] = 1; | 
| 1303 | pe++; | 
| 1304 | }; | 
| 1305 | }; | 
| 1306 | chdone[se] = 1; | 
| 1307 | }; | 
| 1308 | if ( clevel2->crc[se] == 0 && (clevel1->good2 == 1 || clevel2->trigty >= 2) ){ | 
| 1309 | pre = -1; | 
| 1310 | // | 
| 1311 | for (Int_t nn = 0; nn < 96; nn++){ | 
| 1312 | //      ene[nn] = 0.; | 
| 1313 | dexy[l][m][nn] = de->dexy[l][m][nn] ; | 
| 1314 | dexyc[l][m][nn] = de->dexyc[l][m][nn] ; | 
| 1315 | }; | 
| 1316 | // | 
| 1317 | // run over preamplifiers | 
| 1318 | // | 
| 1319 | pre = -1; | 
| 1320 | cbase0 = 0.; | 
| 1321 | Int_t nstt[2]; | 
| 1322 | Float_t rqp[2]; | 
| 1323 | for (Int_t i = 0; i < 3; i++){ | 
| 1324 | nstt[0] = 1000; | 
| 1325 | nstt[1] = 1000; | 
| 1326 | rqp[0] = 0.; | 
| 1327 | rqp[1] = 0.; | 
| 1328 | for (Int_t j = 0; j < 2; j++){ | 
| 1329 | pre = j + i*2; | 
| 1330 | // | 
| 1331 | // baseline check and calculation | 
| 1332 | // | 
| 1333 | if ( !isRAW ){ | 
| 1334 | // | 
| 1335 | // if it is a compress event with fully transmitted pre try to calculate the baseline | 
| 1336 | // | 
| 1337 | if ( de->base[l][m][pre] != 0. && de->base[l][m][pre]<31000. ) { | 
| 1338 | base[l][m][pre] = de->base[l][m][pre] ; | 
| 1339 | } else { | 
| 1340 | FindBaseCompress(l,m,pre,nstt[j],rqp[j]); | 
| 1341 | }; | 
| 1342 | cbase0 += base[l][m][pre]; | 
| 1343 | } else { | 
| 1344 | // | 
| 1345 | // if it is a raw event calculate the baseline. | 
| 1346 | // | 
| 1347 | FindBaseRaw(l,m,pre,nstt[j],rqp[j]); | 
| 1348 | cbase0 += base[l][m][pre]; | 
| 1349 | }; | 
| 1350 | }; | 
| 1351 | // | 
| 1352 | // 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 | 
| 1353 | // | 
| 1354 | if ( nstt[0] < 4 && nstt[1] >= 4 && nstt[0] != 1000 && nstt[1] != 1000 ) base[l][m][pre-1] = 31000.; | 
| 1355 | if ( nstt[0] >= 4 && nstt[1] < 4 && nstt[0] != 1000 && nstt[1] != 1000 ) base[l][m][pre] = 31000.; | 
| 1356 | //      // | 
| 1357 | //      // 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 | 
| 1358 | //      // | 
| 1359 | //      if ( nstt[0] < 4 && nstt[1] < 4 ){ | 
| 1360 | //        if ( rqp[0] >= rqp[1] ) base[l][m][pre-1] = 31000.; | 
| 1361 | //        if ( rqp[0] < rqp[1] ) base[l][m][pre] = 31000.; | 
| 1362 | //      }; | 
| 1363 | }; | 
| 1364 | // | 
| 1365 | // run over strips | 
| 1366 | // | 
| 1367 | pre = -1; | 
| 1368 | ener0 = 0.; | 
| 1369 | for (Int_t i = 0 ; i < 3 ; i++){ | 
| 1370 | ip[i] = 0; | 
| 1371 | for (Int_t n = i*32 ; n < (i+1)*32 ; n++){ | 
| 1372 | if (n%16 == 0) { | 
| 1373 | done = 0; | 
| 1374 | doneb = 0; | 
| 1375 | donec = 0; | 
| 1376 | pre++; | 
| 1377 | ck[l][m][pre] = 0; | 
| 1378 | qpre[l][m][pre] = 0.; | 
| 1379 | }; | 
| 1380 | // | 
| 1381 | // baseline check and calculation | 
| 1382 | // | 
| 1383 | // no suitable new baseline, use old ones! | 
| 1384 | // | 
| 1385 | if ( !done ){ | 
| 1386 | if ( (base[l][m][pre] == 31000. || base[l][m][pre] == 0.) ){ | 
| 1387 | ck[l][m][pre] = 1; | 
| 1388 | if (pre%2 == 0) { | 
| 1389 | ip[i] = pre + 1; | 
| 1390 | } else { | 
| 1391 | ip[i] = pre - 1; | 
| 1392 | }; | 
| 1393 | if ( (base[l][m][ip[i]] == 31000. || base[l][m][ip[i]] == 0. || !crosst ) ){ | 
| 1394 | // | 
| 1395 | ck[l][m][pre] = 2; | 
| 1396 | if ( sbase[l][m][pre] == 31000. || sbase[l][m][pre] == 0. ) { | 
| 1397 | ck[l][m][pre] = 3; | 
| 1398 | }; | 
| 1399 | }; | 
| 1400 | }; | 
| 1401 | done = 1; | 
| 1402 | }; | 
| 1403 | // | 
| 1404 | // CALIBRATION ALGORITHM | 
| 1405 | // | 
| 1406 | if ( !doneb ){ | 
| 1407 | if ( debug ) printf(" ck[l][m][pre] is %i \n",ck[l][m][pre]); | 
| 1408 | switch (ck[l][m][pre]) { | 
| 1409 | case 0: | 
| 1410 | base0 = base[l][m][pre]; | 
| 1411 | base2 = calbase[l][m][pre]; | 
| 1412 | 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]); | 
| 1413 | break; | 
| 1414 | case 1: | 
| 1415 | base0 = base[l][m][ip[i]]; | 
| 1416 | base2 = calbase[l][m][ip[i]]; | 
| 1417 | 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]]); | 
| 1418 | break; | 
| 1419 | case 2: | 
| 1420 | base0 = sbase[l][m][pre]; | 
| 1421 | base2 = calbase[l][m][pre]; | 
| 1422 | 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]); | 
| 1423 | break; | 
| 1424 | case 3: | 
| 1425 | base0 = calbase[l][m][pre]; | 
| 1426 | base2 = calbase[l][m][pre]; | 
| 1427 | 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]); | 
| 1428 | break; | 
| 1429 | }; | 
| 1430 | base1 = calbase[l][m][pre]; | 
| 1431 | doneb = 1; | 
| 1432 | }; | 
| 1433 | ener = dexyc[l][m][n]; | 
| 1434 | ener0 += ener; | 
| 1435 | clevel1->estrip[n][m][l] = 0.; | 
| 1436 | if ( de->base[l][m][pre] < 0 ) negbase = true; | 
| 1437 | if ( base0>0 && base0 < 30000. ){ | 
| 1438 | // | 
| 1439 | // save the baseline only if the energy release is "small" | 
| 1440 | // | 
| 1441 | if ( !donec && (base0 + base1 - base2) != 0. && (n+1)%16==0 ){ | 
| 1442 | if ( qpre[l][m][pre] < 200. ) sbase[l][m][pre] = base0 + base1 - base2; | 
| 1443 | donec = 1; | 
| 1444 | }; | 
| 1445 | if ( ener > 0. ){ | 
| 1446 | clevel1->estrip[n][m][l] = (ener - calped[l][m][n] - base0 - base1 + base2)/mip[l][m][n] ; | 
| 1447 | // | 
| 1448 | // OK, now in estrip we have the energy deposit in MIP of all the strips for this event (at the end of loops of course) | 
| 1449 | // | 
| 1450 | if ( clevel1->estrip[n][m][l] > 0. ) qpre[l][m][pre] += clevel1->estrip[n][m][l]; | 
| 1451 | // | 
| 1452 | // | 
| 1453 | }; | 
| 1454 | }; | 
| 1455 | }; | 
| 1456 | }; | 
| 1457 | // | 
| 1458 | // check if there were problems with 5.7 or glitches in the power supply | 
| 1459 | // | 
| 1460 | if ( ((ener0 == 0. && cbase0 == 0.) || negbase ) && !pproblem && clevel2->perr[se] == 0){ | 
| 1461 | if ( verbose ) printf(" L0 entry %i : calorimeter power problems! event marked as bad perr %f swerr %X view %i plane %i \n",ei,de->perror[se],de->stwerr[se],l,m); | 
| 1462 | pproblem = true; | 
| 1463 | pe++; | 
| 1464 | }; | 
| 1465 | // | 
| 1466 | } else { | 
| 1467 | for (Int_t nn = 0; nn < 96; nn++){ | 
| 1468 | clevel1->estrip[nn][m][l] = 0.; | 
| 1469 | }; | 
| 1470 | }; | 
| 1471 | }; | 
| 1472 | }; | 
| 1473 | // | 
| 1474 | // run over views and planes to apply crosstalk corrections | 
| 1475 | // | 
| 1476 | for (Int_t l = 0; l < 2; l++){ | 
| 1477 | for (Int_t m = 0; m < 22; m++){ | 
| 1478 | // | 
| 1479 | // determine the section number | 
| 1480 | // | 
| 1481 | se = 5; | 
| 1482 | if (l == 0 && m%2 == 0) se = 3; | 
| 1483 | if (l == 0 && m%2 != 0) se = 2; | 
| 1484 | if (l == 1 && m%2 != 0) se = 1; | 
| 1485 | if (l == 1 && m%2 == 0) se = 0; | 
| 1486 | // | 
| 1487 | // check for any error in the event | 
| 1488 | // | 
| 1489 | if ( clevel2->crc[se] == 0 && (clevel1->good2 == 1 || clevel2->trigty >= 2) ){ | 
| 1490 | // | 
| 1491 | // Cross-talk corrections | 
| 1492 | // | 
| 1493 | if ( crosst ){ | 
| 1494 | // | 
| 1495 | // energy on silicon ladders | 
| 1496 | // | 
| 1497 | Float_t qsi[3]; | 
| 1498 | qsi[0] = qpre[l][m][0]+qpre[l][m][1]; | 
| 1499 | qsi[1] = qpre[l][m][2]+qpre[l][m][3]; | 
| 1500 | qsi[2] = qpre[l][m][4]+qpre[l][m][5]; | 
| 1501 | // | 
| 1502 | for ( pre = 1; pre < 6; pre += 2 ){ | 
| 1503 | Int_t ladder = (pre - 1)/2; | 
| 1504 | // | 
| 1505 | // If the noselfct flag is set the strip doesn't suffer the self crosstalk due to electronics so we must subtract some energy | 
| 1506 | // | 
| 1507 | if ( noselfct ){ | 
| 1508 | for (Int_t j = ladder*32 ; j < (ladder+1)*32 ; j++){ | 
| 1509 | ipre = j/16 ; | 
| 1510 | if ( clevel1->estrip[j][m][l] != 0. ) clevel1->estrip[j][m][l] -=  clevel1->estrip[j][m][l] * ctprecor[l][m][ipre]; | 
| 1511 | }; | 
| 1512 | }; | 
| 1513 | // | 
| 1514 | // Using the neighbour pre baseline | 
| 1515 | // | 
| 1516 | if (ck[l][m][pre] == 1 || ck[l][m][pre-1] == 1){ | 
| 1517 | // | 
| 1518 | // pre-amplifier effect on baseline when using the neighbour pre (ck=1) | 
| 1519 | // | 
| 1520 | if (ck[l][m][pre] == 1){ | 
| 1521 | ipre = pre; | 
| 1522 | ipp = pre - 1; | 
| 1523 | } else { | 
| 1524 | ipre = pre - 1; | 
| 1525 | ipp = pre; | 
| 1526 | }; | 
| 1527 | Int_t it = 0; | 
| 1528 | Float_t nqpre = 0.; | 
| 1529 | // | 
| 1530 | if ( debug ) printf(" CK1 Limit for while: 0.07 \n"); | 
| 1531 | for (Int_t j = ipre*16 ; j < (ipre+1)*16 ; j++){ | 
| 1532 | if ( !ctground ){ | 
| 1533 | if ( clevel1->estrip[j][m][l] != 0. ) clevel1->estrip[j][m][l] += - qpre[l][m][ipp] * ctprecor[l][m][ipp]; | 
| 1534 | } else { | 
| 1535 | if ( clevel1->estrip[j][m][l] != 0. ) clevel1->estrip[j][m][l] += - qpre[l][m][ipp] * 0.00478; | 
| 1536 | }; | 
| 1537 | if ( clevel1->estrip[j][m][l] > 0. ) nqpre += clevel1->estrip[j][m][l] ; | 
| 1538 | }; | 
| 1539 | qpre[l][m][ipre] = nqpre; | 
| 1540 | nqpre = 0.; | 
| 1541 | Float_t deltaqpre = qpre[l][m][ipre]; | 
| 1542 | // | 
| 1543 | // these values are empirically determined, usually the routine converge due to deltaqsi and the latest applied correction is based on less than 1 mip | 
| 1544 | // | 
| 1545 | while ( it < 10 && deltaqpre > 0.07 ){ | 
| 1546 | nqpre = 0.; | 
| 1547 | for (Int_t j = ipre*16 ; j < (ipre+1)*16 ; j++){ | 
| 1548 | if ( !ctground ){ | 
| 1549 | if ( debug ) printf(" CK1 pre correction: iteration %i deltaqpre %f  ctprecor %f  TOTAL CORRECTION %f \n",it,deltaqpre,ctprecor[l][m][ipre],deltaqpre * ctprecor[l][m][ipre]); | 
| 1550 | if ( clevel1->estrip[j][m][l] != 0. ) clevel1->estrip[j][m][l] += deltaqpre * ctprecor[l][m][ipre]; | 
| 1551 | } else { | 
| 1552 | if ( clevel1->estrip[j][m][l] != 0. ) clevel1->estrip[j][m][l] += deltaqpre * 0.00478; | 
| 1553 | }; | 
| 1554 | if ( clevel1->estrip[j][m][l] > 0. ) nqpre += clevel1->estrip[j][m][l] ; | 
| 1555 | }; | 
| 1556 | if ( ctground ) it = 100; | 
| 1557 | it++; | 
| 1558 | deltaqpre = nqpre - qpre[l][m][ipre]; | 
| 1559 | if ( debug ) printf(" CK1 BEFORE: qpre %f \n",qpre[l][m][ipre]); | 
| 1560 | qpre[l][m][ipre] = nqpre; | 
| 1561 | if ( debug ) printf(" CK1 AFTER: qpre %f \n",qpre[l][m][ipre]); | 
| 1562 | }; | 
| 1563 | // | 
| 1564 | }; | 
| 1565 | // | 
| 1566 | // No baseline calculation due to high energy release | 
| 1567 | // | 
| 1568 | if (ck[l][m][pre] == 2 && ck[l][m][pre-1] == 2){ | 
| 1569 | // | 
| 1570 | // y^ | 
| 1571 | //  | | 
| 1572 | //  |    6 7 8 | 
| 1573 | //  |    3 4 5 | 
| 1574 | //  |    0 1 2 | 
| 1575 | //  | --------------------------------------> x | 
| 1576 | // | 
| 1577 | Int_t si1 = 0; | 
| 1578 | Int_t si2 = 0; | 
| 1579 | Int_t si3 = 0; | 
| 1580 | if ( l == 0 ){ | 
| 1581 | if ( ladder == 0 ){ | 
| 1582 | si1 = 0; | 
| 1583 | si2 = 3; | 
| 1584 | si3 = 6; | 
| 1585 | }; | 
| 1586 | if ( ladder == 1 ){ | 
| 1587 | si1 = 1; | 
| 1588 | si2 = 4; | 
| 1589 | si3 = 7; | 
| 1590 | }; | 
| 1591 | if ( ladder == 2 ){ | 
| 1592 | si1 = 2; | 
| 1593 | si2 = 5; | 
| 1594 | si3 = 8; | 
| 1595 | }; | 
| 1596 | } else { | 
| 1597 | if ( ladder == 0 ){ | 
| 1598 | si1 = 0; | 
| 1599 | si2 = 1; | 
| 1600 | si3 = 2; | 
| 1601 | }; | 
| 1602 | if ( ladder == 1 ){ | 
| 1603 | si1 = 3; | 
| 1604 | si2 = 4; | 
| 1605 | si3 = 5; | 
| 1606 | }; | 
| 1607 | if ( ladder == 2 ){ | 
| 1608 | si1 = 6; | 
| 1609 | si2 = 7; | 
| 1610 | si3 = 8; | 
| 1611 | }; | 
| 1612 | }; | 
| 1613 | // | 
| 1614 | // Find the energy distribution along the considered plane looking at the two sandwiching plane of the other view. | 
| 1615 | // | 
| 1616 | Float_t sied[3] = {0.,0.,0.}; | 
| 1617 | Int_t othv = !l; | 
| 1618 | Int_t othpl1 = m - 1; | 
| 1619 | Int_t othpl2 = m + 1; | 
| 1620 | Float_t oprof[3] = {0.,0.,0.}; | 
| 1621 | for(Int_t s=0; s<3; s++){ | 
| 1622 | for(Int_t t=(s*32); t<32*(s + 1); t++){ | 
| 1623 | if ( othpl1 > -1 ) { | 
| 1624 | oprof[s] += clevel1->estrip[othv][othpl1][t]; | 
| 1625 | }; | 
| 1626 | if ( othpl2 < 22 ) { | 
| 1627 | oprof[s] += clevel1->estrip[othv][othpl2][t]; | 
| 1628 | }; | 
| 1629 | }; | 
| 1630 | }; | 
| 1631 | Float_t otote = fabs(oprof[0]) + fabs(oprof[1]) + fabs(oprof[2]); | 
| 1632 | for(Int_t g=0; g<3; g++){ | 
| 1633 | if ( otote > 0. ){ | 
| 1634 | sied[g] = fabs(oprof[g])/otote; | 
| 1635 | } else { | 
| 1636 | sied[g] = 1./3.; | 
| 1637 | }; | 
| 1638 | }; | 
| 1639 | // | 
| 1640 | // | 
| 1641 | // | 
| 1642 | Int_t it = 0; | 
| 1643 | Int_t jpre = 0; | 
| 1644 | Float_t nqsi = 0.; | 
| 1645 | Float_t snqsi = qsi[ladder]; | 
| 1646 | Float_t nqpre[2] = {0.,0.}; | 
| 1647 | Float_t deltaqsi = qsi[ladder]; | 
| 1648 | Float_t deltaqpre[2]; | 
| 1649 | deltaqpre[0] = qpre[l][m][pre-1]; | 
| 1650 | deltaqpre[1] = qpre[l][m][pre]; | 
| 1651 | // | 
| 1652 | if ( debug ) printf(" Limit for while: 0.07 it < 10 \n"); | 
| 1653 | // | 
| 1654 | // these values are empirically determined, usually the routine converge due to deltaqsi and the latest applied correction is based on less than 1 mip | 
| 1655 | // | 
| 1656 | while ( it < 10 && (deltaqsi > 0.07 || deltaqpre[0] > 0.07 || deltaqpre[1] > 0.07) ){ | 
| 1657 | nqsi = 0.; | 
| 1658 | nqpre[0] = 0.; | 
| 1659 | nqpre[1] = 0.; | 
| 1660 | for (Int_t j = ladder*32 ; j < (ladder+1)*32 ; j++){ | 
| 1661 | ipre = 0; | 
| 1662 | if ( j > (ladder*32)+15 ) ipre = 1; | 
| 1663 | jpre = j/16 ; | 
| 1664 | // | 
| 1665 | // Silicon effect on the baseline when using the same pre previous baseline (ck = 2) + pre-amply effect | 
| 1666 | // | 
| 1667 | if ( !ctground ){ | 
| 1668 | if ( debug ) printf(" silicon correction: iteration %i deltaqsi[%i] %f ctsicor %f %f %f sied %f %f %f si %i %i %i TOTAL CORRECTION %f \n",it,ladder,deltaqsi,ctsicor[l][m][si1],ctsicor[l][m][si2],ctsicor[l][m][si3],sied[0],sied[1],sied[2],si1,si2,si3,deltaqsi * (ctsicor[l][m][si1] * sied[0] + ctsicor[l][m][si2] * sied[1] + ctsicor[l][m][si3] * sied[2])); | 
| 1669 | if ( debug ) printf(" pre correction: iteration %i deltaqpre[0] %f deltaqpre[1] %f ctprecor %f  TOTAL CORRECTION %f \n",it,deltaqpre[0],deltaqpre[1],ctprecor[l][m][jpre],deltaqpre[ipre] * ctprecor[l][m][jpre]); | 
| 1670 | if ( clevel1->estrip[j][m][l] != 0. ) clevel1->estrip[j][m][l] +=  (deltaqsi * (ctsicor[l][m][si1] * sied[0] + ctsicor[l][m][si2] * sied[1] + ctsicor[l][m][si3] * sied[2])/mip[l][m][j]) + deltaqpre[ipre] * ctprecor[l][m][jpre]; | 
| 1671 | } else { | 
| 1672 | if ( clevel1->estrip[j][m][l] != 0. ) clevel1->estrip[j][m][l] +=  0. + qpre[l][m][jpre] * 0.00478; // no correction | 
| 1673 | }; | 
| 1674 | if ( clevel1->estrip[j][m][l] > 0. ) nqsi += clevel1->estrip[j][m][l] ; | 
| 1675 | if ( clevel1->estrip[j][m][l] > 0. ) nqpre[ipre] += clevel1->estrip[j][m][l] ; | 
| 1676 | }; | 
| 1677 | if ( ctground ) it = 100; | 
| 1678 | deltaqsi = nqsi-snqsi; | 
| 1679 | snqsi = nqsi; | 
| 1680 | it++; | 
| 1681 | deltaqpre[0] = nqpre[0] - qpre[l][m][pre-1]; | 
| 1682 | deltaqpre[1] = nqpre[1] - qpre[l][m][pre]; | 
| 1683 | if ( debug ) printf(" BEFORE: qpre 0 %f qpre 1 %f \n",qpre[l][m][pre-1],qpre[l][m][pre]); | 
| 1684 | qpre[l][m][pre-1] = nqpre[0]; | 
| 1685 | qpre[l][m][pre] = nqpre[1]; | 
| 1686 | if ( debug ) printf(" AFTER: qpre 0 %f qpre 1 %f \n",qpre[l][m][pre-1],qpre[l][m][pre]); | 
| 1687 | }; | 
| 1688 | // | 
| 1689 | // | 
| 1690 | // | 
| 1691 | //            for (Int_t j = ladder*32 ; j < (ladder+1)*32 ; j++){ | 
| 1692 | //              ipre = j/16 ; | 
| 1693 | //              // | 
| 1694 | //              // pre-amplifier effect on baseline when using the same pre previous event baseline (ck=2) | 
| 1695 | //              // | 
| 1696 | //              if ( !ctground ){ | 
| 1697 | //                if ( clevel1->estrip[j][m][l] != 0. ) clevel1->estrip[j][m][l] +=  qpre[l][m][ipre] * ctprecor[l][m][ipre]; | 
| 1698 | //              } else { | 
| 1699 | //                if ( clevel1->estrip[j][m][l] != 0. ) clevel1->estrip[j][m][l] +=  qpre[l][m][ipre] * 0.00478; | 
| 1700 | //              }; | 
| 1701 | //            }; | 
| 1702 | }; | 
| 1703 | }; | 
| 1704 | }; | 
| 1705 | }; | 
| 1706 | // | 
| 1707 | Int_t j4 = -4; | 
| 1708 | Int_t jjj = -3; | 
| 1709 | Int_t jj = -2; | 
| 1710 | Int_t jjpre = -1; | 
| 1711 | Int_t jjjpre = -1; | 
| 1712 | memset(ene, 0, 96*sizeof(Float_t)); | 
| 1713 | for (Int_t j = 0 ; j < 100 ; j++){ | 
| 1714 | jj++; | 
| 1715 | jjj++; | 
| 1716 | j4++; | 
| 1717 | if ( j < 96 ) ene[j] = clevel1->estrip[j][m][l]; | 
| 1718 | if ( crosst ){ | 
| 1719 | // | 
| 1720 | // "Real" crosstalk effect on the neighbour strips respect to the one which have seen the energy deposit | 
| 1721 | // | 
| 1722 | if ( jj >= 0 && jj < 96 ){ | 
| 1723 | if ( !ctground ){ | 
| 1724 | if ( jj%16 == 0 ) jjpre++; | 
| 1725 | if ( jj != 0 && jj != 32 && jj != 64 && ene[jj-1] != 0. ) ene[jj-1] += -clevel1->estrip[jj][m][l] * ctneigcor[l][m][jjpre]; | 
| 1726 | if ( jj != 31 && jj != 63 && jj != 95 && ene[jj+1] != 0. ) ene[jj+1] += -clevel1->estrip[jj][m][l] * ctneigcor[l][m][jjpre]; | 
| 1727 | } else { | 
| 1728 | if ( jj != 0 && jj != 32 && jj != 64 && ene[jj-1] != 0. ) ene[jj-1] += -clevel1->estrip[jj][m][l] * 0.01581; | 
| 1729 | if ( jj != 31 && jj != 63 && jj != 95 && ene[jj+1] != 0. ) ene[jj+1] += -clevel1->estrip[jj][m][l] * 0.01581; | 
| 1730 | }; | 
| 1731 | }; | 
| 1732 | if ( jjj >= 0 && jjj < 96 ){ | 
| 1733 | if ( !ctground ){ | 
| 1734 | if ( jjj%16 == 0 ) jjjpre++; | 
| 1735 | if ( jjj != 0 && jjj != 32 && jjj != 64 && clevel1->estrip[jjj-1][m][l] != 0. ) clevel1->estrip[jjj-1][m][l] +=  -ene[jjj] * ctneigcor[l][m][jjjpre]; | 
| 1736 | if ( jjj != 31 && jjj != 63 && jjj != 95 && clevel1->estrip[jjj+1][m][l] !=0. ) clevel1->estrip[jjj+1][m][l] +=  -ene[jjj] * ctneigcor[l][m][jjjpre]; | 
| 1737 | } else { | 
| 1738 | if ( jjj != 0 && jjj != 32 && jjj != 64 && clevel1->estrip[jjj-1][m][l] != 0. ) clevel1->estrip[jjj-1][m][l] +=  -ene[jjj] * 0.01581; | 
| 1739 | if ( jjj != 31 && jjj != 63 && jjj != 95 && clevel1->estrip[jjj+1][m][l] != 0. ) clevel1->estrip[jjj+1][m][l] +=  -ene[jjj] * 0.01581; | 
| 1740 | }; | 
| 1741 | }; | 
| 1742 | }; | 
| 1743 | if ( j4 >= 0 && j4 < 96 ){ | 
| 1744 | // | 
| 1745 | // CALOLEVEL1 CODING AND FILLING | 
| 1746 | // | 
| 1747 | // | 
| 1748 | // NOTICE: THE FOLLOWING LINE EXCLUDE ALL STRIPS FOR WHICH THE RMS*4 IS GREATER THAN 26 !!! <=============== IMPORTANT! =================> | 
| 1749 | // | 
| 1750 | if ( obadmask[l][m][j4] == 1 || clevel1->estrip[j4][m][l] <= clevel1->emin || clevel1->estrip[j4][m][l] <= memin[l][m][j4] || calrms[l][m][j4] > maxrms[l][m] ){ | 
| 1751 | clevel1->estrip[j4][m][l] = 0.; | 
| 1752 | }; | 
| 1753 | // | 
| 1754 | // code and save the energy for each strip in svstrip | 
| 1755 | // | 
| 1756 | if ( clevel1->estrip[j4][m][l] > clevel1->emin ){ | 
| 1757 | // | 
| 1758 | Float_t savel1 = clevel1->estrip[j4][m][l]; | 
| 1759 | //      if ( dexyc[l][m][j4] == 32767. ){ | 
| 1760 | if ( dexyc[l][m][j4] > 32000. ){ | 
| 1761 | savel1 += 5000.; | 
| 1762 | clevel2->nsatstrip += 1.; | 
| 1763 | }; | 
| 1764 | // | 
| 1765 | tim = 100000.; | 
| 1766 | plo = m; | 
| 1767 | fbi = 0; | 
| 1768 | if ( savel1 > 0.99995 ){ | 
| 1769 | tim = 10000.; | 
| 1770 | plo = m; | 
| 1771 | fbi = 1; | 
| 1772 | }; | 
| 1773 | if ( savel1 > 9.9995 ){ | 
| 1774 | tim = 1000.; | 
| 1775 | plo = 22 + m; | 
| 1776 | fbi = 1; | 
| 1777 | }; | 
| 1778 | if ( savel1 > 99.995 ){ | 
| 1779 | tim = 100.; | 
| 1780 | plo = 22 + m; | 
| 1781 | fbi = 0; | 
| 1782 | }; | 
| 1783 | if ( savel1 > 999.95 ){ | 
| 1784 | tim = 10.; | 
| 1785 | plo = 44 + m; | 
| 1786 | fbi = 0; | 
| 1787 | }; | 
| 1788 | if ( savel1 > 9999.5 ){ | 
| 1789 | tim = 1.; | 
| 1790 | plo = 66 + m; | 
| 1791 | fbi = 0; | 
| 1792 | }; | 
| 1793 | // | 
| 1794 | cle = (Int_t)lroundf(tim*savel1); | 
| 1795 | // | 
| 1796 | if ( l == 0 ){ | 
| 1797 | // | 
| 1798 | // +-PPSSmmmm.mmmm | 
| 1799 | // | 
| 1800 | svstrip[istrip] = fbi*1000000000 + plo*10000000 + j4*100000 + cle; | 
| 1801 | } else { | 
| 1802 | svstrip[istrip] = -(fbi*1000000000 + plo*10000000 + j4*100000 + cle); | 
| 1803 | }; | 
| 1804 | // | 
| 1805 | istrip++; | 
| 1806 | }; | 
| 1807 | }; | 
| 1808 | }; | 
| 1809 | // | 
| 1810 | }; | 
| 1811 | }; | 
| 1812 | // | 
| 1813 | // store goodness flag | 
| 1814 | // | 
| 1815 | if ( !pe  ){ | 
| 1816 | clevel2->good = 1; | 
| 1817 | } else { | 
| 1818 | clevel2->good = 0; | 
| 1819 | }; | 
| 1820 | // | 
| 1821 | // done | 
| 1822 | // | 
| 1823 | return(0); | 
| 1824 | } | 
| 1825 |  | 
| 1826 | void CaloLevel0::GetTrkVar(){ | 
| 1827 | calol2tr(); | 
| 1828 | } | 
| 1829 |  | 
| 1830 | void CaloLevel0::FillTrkVar(CaloLevel2 *ca, Int_t nutrk){ | 
| 1831 | // | 
| 1832 | CaloTrkVar *t_ca = new CaloTrkVar(); | 
| 1833 | // | 
| 1834 | t_ca->trkseqno = trkseqno; | 
| 1835 | t_ca->ncore = (Int_t)clevel2->ncore; | 
| 1836 | t_ca->qcore = clevel2->qcore; | 
| 1837 | t_ca->noint = (Int_t)clevel2->noint; | 
| 1838 | t_ca->ncyl = (Int_t)clevel2->ncyl; | 
| 1839 | t_ca->qcyl = clevel2->qcyl; | 
| 1840 | t_ca->qtrack = clevel2->qtrack; | 
| 1841 | t_ca->qtrackx = clevel2->qtrackx; | 
| 1842 | t_ca->qtracky = clevel2->qtracky; | 
| 1843 | t_ca->dxtrack = clevel2->dxtrack; | 
| 1844 | t_ca->dytrack = clevel2->dytrack; | 
| 1845 | t_ca->qlast = clevel2->qlast; | 
| 1846 | t_ca->nlast = (Int_t)clevel2->nlast; | 
| 1847 | t_ca->qpre = clevel2->qpre; | 
| 1848 | t_ca->npre = (Int_t)clevel2->npre; | 
| 1849 | t_ca->qpresh = clevel2->qpresh; | 
| 1850 | t_ca->npresh = (Int_t)clevel2->npresh; | 
| 1851 | t_ca->qtr = clevel2->qtr; | 
| 1852 | t_ca->ntr = (Int_t)clevel2->ntr; | 
| 1853 | t_ca->planetot = (Int_t)clevel2->planetot; | 
| 1854 | t_ca->qmean = clevel2->qmean; | 
| 1855 | t_ca->dX0l = clevel2->dX0l; | 
| 1856 | t_ca->qlow = clevel2->qlow; | 
| 1857 | t_ca->nlow = (Int_t)clevel2->nlow; | 
| 1858 | // | 
| 1859 | if ( trkseqno == -1 ){ | 
| 1860 | //    ca->impx = clevel2->impx; | 
| 1861 | //    ca->impy = clevel2->impy; | 
| 1862 | ca->tanx[1] = clevel2->tanx; | 
| 1863 | ca->tany[1] = clevel2->tany; | 
| 1864 | ca->elen = clevel2->elen; | 
| 1865 | ca->selen = clevel2->selen; | 
| 1866 | //    memcpy(ca->cibar,clevel2->cibar,sizeof(clevel2->cibar)); | 
| 1867 | //    memcpy(ca->cbar,clevel2->cbar,sizeof(clevel2->cbar)); | 
| 1868 | memcpy(t_ca->tibar,clevel2->cibar,sizeof(clevel2->cibar)); | 
| 1869 | memcpy(t_ca->tbar,clevel2->cbar,sizeof(clevel2->cbar)); | 
| 1870 | memcpy(ca->planemax,clevel2->planemax,sizeof(clevel2->planemax)); | 
| 1871 | memcpy(ca->selfdelay,clevel2->selfdelay,sizeof(clevel2->selfdelay)); | 
| 1872 | ca->varcfit[2] = clevel2->varcfit[0]; | 
| 1873 | ca->varcfit[3] = clevel2->varcfit[1]; | 
| 1874 | ca->npcfit[2] = clevel2->npcfit[0]; | 
| 1875 | ca->npcfit[3] = clevel2->npcfit[1]; | 
| 1876 | //    memcpy(ca->varcfit,clevel2->varcfit,sizeof(clevel2->varcfit)); | 
| 1877 | //    memcpy(ca->npcfit,clevel2->npcfit,sizeof(clevel2->npcfit)); | 
| 1878 | } else { | 
| 1879 | memcpy(t_ca->tibar,clevel2->tibar,sizeof(clevel2->tibar)); | 
| 1880 | memcpy(t_ca->tbar,clevel2->tbar,sizeof(clevel2->tbar)); | 
| 1881 | }; | 
| 1882 | // | 
| 1883 | // | 
| 1884 | if ( !(ca->CaloTrk) ) ca->CaloTrk = new TClonesArray("CaloTrkVar",1); //ELENA | 
| 1885 | TClonesArray &t = *ca->CaloTrk; | 
| 1886 | new(t[nutrk]) CaloTrkVar(*t_ca); | 
| 1887 | // | 
| 1888 | delete t_ca; | 
| 1889 | // | 
| 1890 | ClearTrkVar(); | 
| 1891 | } | 
| 1892 |  | 
| 1893 | void CaloLevel0::GetCommonVar(){ | 
| 1894 | calol2cm(); | 
| 1895 | } | 
| 1896 |  | 
| 1897 | void CaloLevel0::FillCommonVar(CaloLevel1 *c1, CaloLevel2 *ca){ | 
| 1898 | // | 
| 1899 | ca->good = clevel2->good; | 
| 1900 | if ( clevel2->trigty == 2. ){ | 
| 1901 | ca->selftrigger = 1; | 
| 1902 | } else { | 
| 1903 | ca->selftrigger = 0; | 
| 1904 | }; | 
| 1905 | // | 
| 1906 | ca->selftrigger += (Int_t)clevel2->wartrig; | 
| 1907 | // | 
| 1908 | memcpy(ca->perr,clevel2->perr,sizeof(clevel2->perr)); | 
| 1909 | memcpy(ca->swerr,clevel2->swerr,sizeof(clevel2->swerr)); | 
| 1910 | memcpy(ca->crc,clevel2->crc,sizeof(clevel2->crc)); | 
| 1911 | ca->nstrip = (Int_t)clevel2->nstrip; | 
| 1912 | ca->nsatstrip = (Int_t)clevel2->nsatstrip; | 
| 1913 | ca->qtot = clevel2->qtot; | 
| 1914 | //  ca->impx = clevel2->impx; | 
| 1915 | //  ca->impy = clevel2->impy; | 
| 1916 | ca->tanx[0] = clevel2->tanx; | 
| 1917 | ca->tany[0] = clevel2->tany; | 
| 1918 | ca->nx22 = (Int_t)clevel2->nx22; | 
| 1919 | ca->qx22 = clevel2->qx22; | 
| 1920 | ca->qmax = clevel2->qmax; | 
| 1921 | ca->elen = clevel2->elen; | 
| 1922 | ca->selen = clevel2->selen; | 
| 1923 | memcpy(ca->qq,clevel2->qq,sizeof(clevel2->qq)); | 
| 1924 | memcpy(ca->planemax,clevel2->planemax,sizeof(clevel2->planemax)); | 
| 1925 | memcpy(ca->selfdelay,clevel2->selfdelay,sizeof(clevel2->selfdelay)); | 
| 1926 | ca->varcfit[0] = clevel2->varcfit[0]; | 
| 1927 | ca->varcfit[1] = clevel2->varcfit[1]; | 
| 1928 | ca->npcfit[0] = clevel2->npcfit[0]; | 
| 1929 | ca->npcfit[1] = clevel2->npcfit[1]; | 
| 1930 | ca->fitmode[0] = clevel2->fmode[0]; | 
| 1931 | ca->fitmode[1] = clevel2->fmode[1]; | 
| 1932 | //  memcpy(ca->varcfit,clevel2->varcfit,sizeof(clevel2->varcfit)); | 
| 1933 | //  memcpy(ca->npcfit,clevel2->npcfit,sizeof(clevel2->npcfit)); | 
| 1934 | memcpy(ca->cibar,clevel2->cibar,sizeof(clevel2->cibar)); | 
| 1935 | memcpy(ca->cbar,clevel2->cbar,sizeof(clevel2->cbar)); | 
| 1936 | // | 
| 1937 | if ( c1 ){ | 
| 1938 | c1->istrip = istrip; | 
| 1939 | c1->estrip = TArrayI(istrip,svstrip); | 
| 1940 | }; | 
| 1941 | // | 
| 1942 | } | 
| 1943 |  | 
| 1944 | void CaloLevel0::ClearStructs(){ | 
| 1945 | ClearTrkVar(); | 
| 1946 | ClearCommonVar(); | 
| 1947 | } | 
| 1948 |  | 
| 1949 | void CaloLevel0::Delete(Option_t *t){ | 
| 1950 | if ( de ) delete de; | 
| 1951 | delete this; | 
| 1952 | } | 
| 1953 |  | 
| 1954 |  | 
| 1955 | void CaloLevel0::RunClose(){ | 
| 1956 | l0tr->Delete(); | 
| 1957 | ClearStructs(); | 
| 1958 | // | 
| 1959 | memset(dexy, 0, 2*22*96*sizeof(Float_t)); | 
| 1960 | memset(dexyc, 0, 2*22*96*sizeof(Float_t)); | 
| 1961 | memset(base, 0, 2*22*6*sizeof(Float_t)); | 
| 1962 | memset(sbase, 0, 2*22*6*sizeof(Float_t)); | 
| 1963 | memset(ctprecor, 0, 2*22*6*sizeof(Float_t)); | 
| 1964 | memset(ctsicor, 0, 2*22*9*sizeof(Float_t)); | 
| 1965 | memset(ctneigcor, 0, 2*22*6*sizeof(Float_t)); | 
| 1966 | // | 
| 1967 | } | 
| 1968 |  | 
| 1969 | // | 
| 1970 | // Private methods | 
| 1971 | // | 
| 1972 |  | 
| 1973 | void CaloLevel0::ClearTrkVar(){ | 
| 1974 | clevel2->ncore = 0; | 
| 1975 | clevel2->qcore = 0.; | 
| 1976 | clevel2->noint = 0.; | 
| 1977 | clevel2->ncyl = 0.; | 
| 1978 | clevel2->qcyl = 0.; | 
| 1979 | clevel2->qtrack = 0.; | 
| 1980 | clevel2->qtrackx = 0.; | 
| 1981 | clevel2->qtracky = 0.; | 
| 1982 | clevel2->dxtrack = 0.; | 
| 1983 | clevel2->dytrack = 0.; | 
| 1984 | clevel2->qlast = 0.; | 
| 1985 | clevel2->nlast = 0.; | 
| 1986 | clevel2->qpre = 0.; | 
| 1987 | clevel2->npre = 0.; | 
| 1988 | clevel2->qpresh = 0.; | 
| 1989 | clevel2->npresh = 0.; | 
| 1990 | clevel2->qlow = 0.; | 
| 1991 | clevel2->nlow = 0.; | 
| 1992 | clevel2->qtr = 0.; | 
| 1993 | clevel2->ntr = 0.; | 
| 1994 | clevel2->planetot = 0.; | 
| 1995 | clevel2->qmean = 0.; | 
| 1996 | clevel2->dX0l = 0.; | 
| 1997 | clevel2->elen = 0.; | 
| 1998 | clevel2->selen = 0.; | 
| 1999 | memset(clevel1->al_p, 0, 5*2*sizeof(Double_t)); | 
| 2000 | memset(clevel2->tibar, 0, 2*22*sizeof(Int_t)); | 
| 2001 | memset(clevel2->tbar, 0, 2*22*sizeof(Float_t)); | 
| 2002 | } | 
| 2003 |  | 
| 2004 | void CaloLevel0::ClearCommonVar(){ | 
| 2005 | istrip = 0; | 
| 2006 | clevel2->trigty = -1.; | 
| 2007 | clevel2->wartrig = 0.; | 
| 2008 | clevel2->good = 0; | 
| 2009 | clevel2->nstrip = 0.; | 
| 2010 | clevel2->nsatstrip = 0.; | 
| 2011 | clevel2->qtot = 0.; | 
| 2012 | //  clevel2->impx = 0.; | 
| 2013 | //  clevel2->impy = 0.; | 
| 2014 | clevel2->tanx = 0.; // this is correct since it refers to the fortran structure | 
| 2015 | clevel2->tany = 0.; // this is correct since it refers to the fortran structure | 
| 2016 | clevel2->qmax = 0.; | 
| 2017 | clevel2->nx22 = 0.; | 
| 2018 | clevel2->qx22 = 0.; | 
| 2019 | memset(clevel2->perr, 0, 4*sizeof(Int_t)); | 
| 2020 | memset(clevel2->swerr, 0, 4*sizeof(Int_t)); | 
| 2021 | memset(clevel2->crc, 0, 4*sizeof(Int_t)); | 
| 2022 | memset(clevel2->qq, 0, 4*sizeof(Int_t)); | 
| 2023 | memset(clevel2->varcfit, 0, 4*sizeof(Float_t)); | 
| 2024 | memset(clevel2->npcfit, 0, 4*sizeof(Int_t)); | 
| 2025 | memset(clevel2->planemax, 0, 2*sizeof(Int_t)); | 
| 2026 | memset(clevel2->selfdelay, 0, 4*7*sizeof(Int_t)); | 
| 2027 | memset(clevel2->fmode, 0, 2*sizeof(Int_t)); | 
| 2028 | memset(clevel2->cibar, 0, 2*22*sizeof(Int_t)); | 
| 2029 | memset(clevel2->cbar, 0, 2*22*sizeof(Float_t)); | 
| 2030 | } | 
| 2031 |  | 
| 2032 | void CaloLevel0::ClearCalibVals(Int_t s){ | 
| 2033 | // | 
| 2034 | for ( Int_t d=0 ; d<11 ;d++  ){ | 
| 2035 | Int_t pre = -1; | 
| 2036 | for ( Int_t j=0; j<96 ;j++){ | 
| 2037 | if ( j%16 == 0 ) pre++; | 
| 2038 | if ( s == 2 ){ | 
| 2039 | calped[0][2*d+1][j] = 0.; | 
| 2040 | cstwerr[3] = 0.; | 
| 2041 | cperror[3] = 0.; | 
| 2042 | calgood[0][2*d+1][j] = 0.; | 
| 2043 | calthr[0][2*d+1][pre] = 0.; | 
| 2044 | calrms[0][2*d+1][j] = 0.; | 
| 2045 | calbase[0][2*d+1][pre] = 0.; | 
| 2046 | calvar[0][2*d+1][pre] = 0.; | 
| 2047 | }; | 
| 2048 | if ( s == 3 ){ | 
| 2049 | calped[0][2*d][j] = 0.; | 
| 2050 | cstwerr[1] = 0.; | 
| 2051 | cperror[1] = 0.; | 
| 2052 | calgood[0][2*d][j] = 0.; | 
| 2053 | calthr[0][2*d][pre] = 0.; | 
| 2054 | calrms[0][2*d][j] = 0.; | 
| 2055 | calbase[0][2*d][pre] = 0.; | 
| 2056 | calvar[0][2*d][pre] = 0.; | 
| 2057 | }; | 
| 2058 | if ( s == 0 ){ | 
| 2059 | calped[1][2*d][j] = 0.; | 
| 2060 | cstwerr[0] = 0.; | 
| 2061 | cperror[0] = 0.; | 
| 2062 | calgood[1][2*d][j] = 0.; | 
| 2063 | calthr[1][2*d][pre] = 0.; | 
| 2064 | calrms[1][2*d][j] = 0.; | 
| 2065 | calbase[1][2*d][pre] = 0.; | 
| 2066 | calvar[1][2*d][pre] = 0.; | 
| 2067 | }; | 
| 2068 | if ( s == 1 ){ | 
| 2069 | calped[1][2*d+1][j] = 0.; | 
| 2070 | cstwerr[2] = 0.; | 
| 2071 | cperror[2] = 0.; | 
| 2072 | calgood[1][2*d+1][j] = 0.; | 
| 2073 | calthr[1][2*d+1][pre] = 0.; | 
| 2074 | calrms[1][2*d+1][j] = 0.; | 
| 2075 | calbase[1][2*d+1][pre] = 0.; | 
| 2076 | calvar[1][2*d+1][pre] = 0.; | 
| 2077 | }; | 
| 2078 | }; | 
| 2079 | }; | 
| 2080 | return; | 
| 2081 | } | 
| 2082 |  | 
| 2083 | Int_t CaloLevel0::Update(GL_TABLES *glt, UInt_t atime, Int_t s){ | 
| 2084 | // | 
| 2085 | const TString host = glt->CGetHost(); | 
| 2086 | const TString user = glt->CGetUser(); | 
| 2087 | const TString psw = glt->CGetPsw(); | 
| 2088 | TSQLServer *dbc = TSQLServer::Connect(host.Data(),user.Data(),psw.Data()); | 
| 2089 | if ( !dbc->IsConnected() ) throw -116; | 
| 2090 | stringstream myquery; | 
| 2091 | myquery.str(""); | 
| 2092 | myquery << "SET time_zone='+0:00'"; | 
| 2093 | dbc->Query(myquery.str().c_str()); | 
| 2094 | Int_t sgnl = 0; | 
| 2095 | // | 
| 2096 | GL_CALO_CALIB *glcalo = new GL_CALO_CALIB(); | 
| 2097 | // | 
| 2098 | sgnl = 0; | 
| 2099 | // | 
| 2100 | idcalib[s] = 0; | 
| 2101 | fromtime[s] = 0; | 
| 2102 | totime[s] = 0; | 
| 2103 | calibno[s] = 0; | 
| 2104 | ClearCalibVals(s); | 
| 2105 | // | 
| 2106 | UInt_t uptime = 0; | 
| 2107 | // | 
| 2108 | sgnl = glcalo->Query_GL_CALO_CALIB(atime,uptime,s,dbc); | 
| 2109 | if ( sgnl < 0 ){ | 
| 2110 | if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); | 
| 2111 | return(sgnl); | 
| 2112 | }; | 
| 2113 | // | 
| 2114 | idcalib[s] = glcalo->ID_ROOT_L0; | 
| 2115 | fromtime[s] = glcalo->FROM_TIME; | 
| 2116 | if ( glcalo->TO_TIME < atime ){ // calibration is corrupted and we are using the one that preceed the good one | 
| 2117 | totime[s] = uptime; | 
| 2118 | } else { | 
| 2119 | totime[s] = glcalo->TO_TIME; | 
| 2120 | }; | 
| 2121 | //  totime[s] = glcalo->TO_TIME; | 
| 2122 | calibno[s] = glcalo->EV_ROOT; | 
| 2123 | // | 
| 2124 | if ( totime[s] == 0 ){ | 
| 2125 | if ( verbose ) printf(" CALORIMETER - WARNING: data with no associated calibration\n"); | 
| 2126 | ClearCalibVals(s); | 
| 2127 | sgnl = 100; | 
| 2128 | }; | 
| 2129 | // | 
| 2130 | // determine path and name and entry of the calibration file | 
| 2131 | // | 
| 2132 | GL_ROOT *glroot = new GL_ROOT(); | 
| 2133 | if ( verbose ) printf("\n"); | 
| 2134 | if ( verbose ) printf(" ** SECTION %i **\n",s); | 
| 2135 | // | 
| 2136 | sgnl = glroot->Query_GL_ROOT(idcalib[s],dbc); | 
| 2137 | if ( sgnl < 0 ){ | 
| 2138 | if ( verbose ) printf(" CALORIMETER - ERROR: error from GLTables\n"); | 
| 2139 | return(sgnl); | 
| 2140 | }; | 
| 2141 | // | 
| 2142 | stringstream name; | 
| 2143 | name.str(""); | 
| 2144 | name << glroot->PATH.Data() << "/"; | 
| 2145 | name << glroot->NAME.Data(); | 
| 2146 | // | 
| 2147 | fcalname[s] = (TString)name.str().c_str(); | 
| 2148 | if ( verbose ) printf(" - event at time %u. From time %u to time %u \n   use file %s \n   calibration at entry %i \n\n",atime,fromtime[s],totime[s],fcalname[s].Data(),calibno[s]); | 
| 2149 | // | 
| 2150 | sgnl = LoadCalib(s); | 
| 2151 | // | 
| 2152 | if ( sgnl != 0 ) return(sgnl); | 
| 2153 | delete glcalo; | 
| 2154 | delete glroot; | 
| 2155 | // | 
| 2156 | return(0); | 
| 2157 | // | 
| 2158 | } | 
| 2159 |  | 
| 2160 | Int_t CaloLevel0::LoadCalib(Int_t s){ | 
| 2161 | // | 
| 2162 | ifstream myfile; | 
| 2163 | myfile.open(fcalname[s].Data()); | 
| 2164 | if ( !myfile ){ | 
| 2165 | return(-107); | 
| 2166 | }; | 
| 2167 | myfile.close(); | 
| 2168 | // | 
| 2169 | TFile *File = new TFile(fcalname[s].Data()); | 
| 2170 | if ( !File ) return(-108); | 
| 2171 | TTree *tr = (TTree*)File->Get("CalibCalPed"); | 
| 2172 | if ( !tr ) return(-109); | 
| 2173 | // | 
| 2174 | TBranch *calo = tr->GetBranch("CalibCalPed"); | 
| 2175 | // | 
| 2176 | pamela::CalibCalPedEvent *ce = 0; | 
| 2177 | tr->SetBranchAddress("CalibCalPed", &ce); | 
| 2178 | // | 
| 2179 | Long64_t ncalibs = calo->GetEntries(); | 
| 2180 | // | 
| 2181 | if ( !ncalibs ) return(-110); | 
| 2182 | // | 
| 2183 | calo->GetEntry(calibno[s]); | 
| 2184 | // | 
| 2185 | if (ce->cstwerr[s] != 0 && ce->cperror[s] == 0 ) { | 
| 2186 | for ( Int_t d=0 ; d<11 ;d++  ){ | 
| 2187 | Int_t pre = -1; | 
| 2188 | for ( Int_t j=0; j<96 ;j++){ | 
| 2189 | if ( j%16 == 0 ) pre++; | 
| 2190 | if ( s == 2 ){ | 
| 2191 | calped[0][2*d+1][j] = ce->calped[3][d][j]; | 
| 2192 | cstwerr[3] = ce->cstwerr[3]; | 
| 2193 | cperror[3] = ce->cperror[3]; | 
| 2194 | calgood[0][2*d+1][j] = ce->calgood[3][d][j]; | 
| 2195 | calthr[0][2*d+1][pre] = ce->calthr[3][d][pre]; | 
| 2196 | calrms[0][2*d+1][j] = ce->calrms[3][d][j]; | 
| 2197 | calbase[0][2*d+1][pre] = ce->calbase[3][d][pre]; | 
| 2198 | calvar[0][2*d+1][pre] = ce->calvar[3][d][pre]; | 
| 2199 | }; | 
| 2200 | if ( s == 3 ){ | 
| 2201 | calped[0][2*d][j] = ce->calped[1][d][j]; | 
| 2202 | cstwerr[1] = ce->cstwerr[1]; | 
| 2203 | cperror[1] = ce->cperror[1]; | 
| 2204 | calgood[0][2*d][j] = ce->calgood[1][d][j]; | 
| 2205 | calthr[0][2*d][pre] = ce->calthr[1][d][pre]; | 
| 2206 | calrms[0][2*d][j] = ce->calrms[1][d][j]; | 
| 2207 | calbase[0][2*d][pre] = ce->calbase[1][d][pre]; | 
| 2208 | calvar[0][2*d][pre] = ce->calvar[1][d][pre]; | 
| 2209 | }; | 
| 2210 | if ( s == 0 ){ | 
| 2211 | calped[1][2*d][j] = ce->calped[0][d][j]; | 
| 2212 | cstwerr[0] = ce->cstwerr[0]; | 
| 2213 | cperror[0] = ce->cperror[0]; | 
| 2214 | calgood[1][2*d][j] = ce->calgood[0][d][j]; | 
| 2215 | calthr[1][2*d][pre] = ce->calthr[0][d][pre]; | 
| 2216 | calrms[1][2*d][j] = ce->calrms[0][d][j]; | 
| 2217 | calbase[1][2*d][pre] = ce->calbase[0][d][pre]; | 
| 2218 | calvar[1][2*d][pre] = ce->calvar[0][d][pre]; | 
| 2219 | }; | 
| 2220 | if ( s == 1 ){ | 
| 2221 | calped[1][2*d+1][j] = ce->calped[2][d][j]; | 
| 2222 | cstwerr[2] = ce->cstwerr[2]; | 
| 2223 | cperror[2] = ce->cperror[2]; | 
| 2224 | calgood[1][2*d+1][j] = ce->calgood[2][d][j]; | 
| 2225 | calthr[1][2*d+1][pre] = ce->calthr[2][d][pre]; | 
| 2226 | calrms[1][2*d+1][j] = ce->calrms[2][d][j]; | 
| 2227 | calbase[1][2*d+1][pre] = ce->calbase[2][d][pre]; | 
| 2228 | calvar[1][2*d+1][pre] = ce->calvar[2][d][pre]; | 
| 2229 | }; | 
| 2230 | }; | 
| 2231 | }; | 
| 2232 | } else { | 
| 2233 | if ( verbose ) printf(" CALORIMETER - ERROR: problems finding a good calibration in this file! \n\n "); | 
| 2234 | return(-111); | 
| 2235 | }; | 
| 2236 | File->Close(); | 
| 2237 | return(0); | 
| 2238 | } |