]> git.uio.no Git - u/mrichter/AliRoot.git/blame - FMD/AliFMD.cxx
Minor fix
[u/mrichter/AliRoot.git] / FMD / AliFMD.cxx
CommitLineData
4c039060 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
88cb7938 15/* $Id$ */
c2fc1258 16/** @file AliFMD.cxx
17 @author Christian Holm Christensen <cholm@nbi.dk>
18 @date Sun Mar 26 17:59:18 2006
19 @brief Implementation of AliFMD base class
20*/
e802be3e 21//____________________________________________________________________
4347b38f 22//
37c4363a 23// Forward Multiplicity Detector based on Silicon wafers. This class
9f662337 24// is the driver for especially simulation.
25//
26// The Forward Multiplicity Detector consists of 3 sub-detectors FMD1,
27// FMD2, and FMD3, each of which has 1 or 2 rings of silicon sensors.
37c4363a 28//
29// This is the base class for all FMD manager classes.
30//
4347b38f 31// The actual code is done by various separate classes. Below is
32// diagram showing the relationship between the various FMD classes
1a1fdef7 33// that handles the simulation
4347b38f 34//
35//
36// +----------+ +----------+
1a1fdef7 37// | AliFMDv1 | | AliFMDv0 |
4347b38f 38// +----------+ +----------+
1a1fdef7 39// | | +-----------------+
40// +----+--------------+ +--| AliFMDDigitizer |
41// | | +-----------------+
42// | +---------------------+ |
4ac75127 43// | +--| AliFMDBaseDigitizer |<--+
1a1fdef7 44// V 1 | +---------------------+ |
45// +--------+<>--+ | +------------------+
46// | AliFMD | +--| AliFMDSDigitizer |
47// +--------+<>--+ +------------------+
9f662337 48// 1 | +---------------------+
49// +--| AliFMDReconstructor |
50// +---------------------+
4347b38f 51//
52// * AliFMD
53// This defines the interface for the various parts of AliROOT that
1a1fdef7 54// uses the FMD, like AliFMDSimulator, AliFMDDigitizer,
55// AliFMDReconstructor, and so on.
56//
57// * AliFMDv0
58// This is a concrete implementation of the AliFMD interface.
59// It is the responsibility of this class to create the FMD
60// geometry.
4347b38f 61//
62// * AliFMDv1
63// This is a concrete implementation of the AliFMD interface.
64// It is the responsibility of this class to create the FMD
65// geometry, process hits in the FMD, and serve hits and digits to
66// the various clients.
67//
1a1fdef7 68// * AliFMDSimulator
69// This is the base class for the FMD simulation tasks. The
70// simulator tasks are responsible to implment the geoemtry, and
71// process hits.
4347b38f 72//
9f662337 73// * AliFMDReconstructor
74// This is a concrete implementation of the AliReconstructor that
75// reconstructs pseudo-inclusive-multiplicities from digits (raw or
76// from simulation)
37c4363a 77//
9f662337 78// Calibration and geometry parameters are managed by separate
79// singleton managers. These are AliFMDGeometry and
80// AliFMDParameters. Please refer to these classes for more
81// information on these.
37c4363a 82//
fe4da5cc 83
56b1929b 84// These files are not in the same directory, so there's no reason to
85// ask the preprocessor to search in the current directory for these
86// files by including them with `#include "..."'
f7a1cc68 87#include <TBrowser.h> // ROOT_TBrowser
56b1929b 88#include <TClonesArray.h> // ROOT_TClonesArray
f7a1cc68 89#include <TGeoGlobalMagField.h> // ROOT_TGeoGlobalMagField
90#include <TGeoManager.h> // ROOT_TGeoManager
1a1fdef7 91#include <TRotMatrix.h> // ROOT_TRotMatrix
56b1929b 92#include <TTree.h> // ROOT_TTree
02a27b50 93#include <TVector2.h> // ROOT_TVector2
f7a1cc68 94#include <TVirtualMC.h> // ROOT_TVirtualMC
95#include <cmath> // __CMATH__
56b1929b 96
97#include <AliRunDigitizer.h> // ALIRUNDIGITIZER_H
98#include <AliLoader.h> // ALILOADER_H
99#include <AliRun.h> // ALIRUN_H
100#include <AliMC.h> // ALIMC_H
02a27b50 101#include <AliMagF.h> // ALIMAGF_H
f95a63c4 102// #include <AliLog.h> // ALILOG_H
103#include "AliFMDDebug.h" // Better debug macros
e802be3e 104#include "AliFMD.h" // ALIFMD_H
02a27b50 105#include "AliFMDDigit.h" // ALIFMDDIGIT_H
106#include "AliFMDSDigit.h" // ALIFMDSDIGIT_H
e802be3e 107#include "AliFMDHit.h" // ALIFMDHIT_H
1a1fdef7 108#include "AliFMDGeometry.h" // ALIFMDGEOMETRY_H
109#include "AliFMDDetector.h" // ALIFMDDETECTOR_H
110#include "AliFMDRing.h" // ALIFMDRING_H
e802be3e 111#include "AliFMDDigitizer.h" // ALIFMDDIGITIZER_H
ef8e8623 112#include "AliFMDHitDigitizer.h" // ALIFMDSDIGITIZER_H
42f1b2f5 113// #define USE_SSDIGITIZER
ef8e8623 114//#ifdef USE_SSDIGITIZER
115//# include "AliFMDSSDigitizer.h" // ALIFMDSDIGITIZER_H
116//#endif
02a27b50 117// #include "AliFMDGeometryBuilder.h"
e802be3e 118#include "AliFMDRawWriter.h" // ALIFMDRAWWRITER_H
faf80567 119#include "AliFMDRawReader.h" // ALIFMDRAWREADER_H
a91c42d1 120#include "AliTrackReference.h"
121#include "AliFMDStripIndex.h"
faf80567 122#include "AliFMDParameters.h"
123#include "AliFMDReconstructor.h"
88cb7938 124
4347b38f 125//____________________________________________________________________
925e6570 126ClassImp(AliFMD)
1a1fdef7 127#if 0
128 ; // This is to keep Emacs from indenting the next line
129#endif
7e54281f 130
4347b38f 131//____________________________________________________________________
132AliFMD::AliFMD()
90da4514 133 : AliDetector(),
134 fSDigits(0),
afddaa11 135 fNsdigits(0),
1a1fdef7 136 fDetailed(kTRUE),
b5ee4425 137 fUseOld(kFALSE),
138 fUseAssembly(kTRUE),
139 fBad(0)
fe4da5cc 140{
141 //
142 // Default constructor for class AliFMD
143 //
f95a63c4 144 AliFMDDebug(10, ("\tDefault CTOR"));
4ac75127 145 fHits = 0;
146 fDigits = 0;
147 fIshunt = 0;
54e415a8 148 fBad = new TClonesArray("AliFMDHit");
fe4da5cc 149}
dc8af42e 150
4347b38f 151//____________________________________________________________________
1a1fdef7 152AliFMD::AliFMD(const char *name, const char *title)
4347b38f 153 : AliDetector (name, title),
afddaa11 154 fSDigits(0),
155 fNsdigits(0),
1a1fdef7 156 fDetailed(kTRUE),
b5ee4425 157 fUseOld(kFALSE),
158 fUseAssembly(kFALSE),
54e415a8 159 fBad(0)
fe4da5cc 160{
161 //
162 // Standard constructor for Forward Multiplicity Detector
163 //
f95a63c4 164 AliFMDDebug(10, ("\tStandard CTOR"));
54e415a8 165 fBad = new TClonesArray("AliFMDHit");
54240c8d 166
fe4da5cc 167 // Initialise Hit array
4347b38f 168 HitsArray();
169 gAlice->GetMCApp()->AddHitList(fHits);
d1280e40 170
4347b38f 171 // (S)Digits for the detectors disk
172 DigitsArray();
173 SDigitsArray();
174
175 // CHC: What is this?
dc8af42e 176 fIshunt = 0;
e939a978 177 //PH SetMarkerColor(kRed);
178 //PH SetLineColor(kYellow);
fe4da5cc 179}
d28dcc0d 180
4347b38f 181//____________________________________________________________________
dc8af42e 182AliFMD::~AliFMD ()
d28dcc0d 183{
4347b38f 184 // Destructor for base class AliFMD
185 if (fHits) {
186 fHits->Delete();
187 delete fHits;
188 fHits = 0;
189 }
190 if (fDigits) {
191 fDigits->Delete();
192 delete fDigits;
193 fDigits = 0;
194 }
195 if (fSDigits) {
196 fSDigits->Delete();
197 delete fSDigits;
198 fSDigits = 0;
199 }
54e415a8 200 if (fBad) {
201 fBad->Delete();
202 delete fBad;
203 fBad = 0;
204 }
4347b38f 205}
206
56b1929b 207
4347b38f 208//====================================================================
209//
210// GEometry ANd Traking
211//
212//____________________________________________________________________
213void
214AliFMD::CreateGeometry()
215{
4347b38f 216 //
37c4363a 217 // Create the geometry of Forward Multiplicity Detector. The actual
9f662337 218 // construction of the geometry is delegated to the class
219 // AliFMDGeometryBuilder, invoked by the singleton manager
220 // AliFMDGeometry.
1a1fdef7 221 //
54e415a8 222 AliFMDGeometry* fmd = AliFMDGeometry::Instance();
54e415a8 223 fmd->SetDetailed(fDetailed);
224 fmd->UseAssembly(fUseAssembly);
225 fmd->Build();
4347b38f 226}
227
228//____________________________________________________________________
229void AliFMD::CreateMaterials()
230{
54e415a8 231 // Define the materials and tracking mediums needed by the FMD
232 // simulation. These mediums are made by sending the messages
233 // AliMaterial, AliMixture, and AliMedium to the passed AliModule
234 // object module. The defined mediums are
4347b38f 235 //
54e415a8 236 // FMD Si$ Silicon (active medium in sensors)
237 // FMD C$ Carbon fibre (support cone for FMD3 and vacuum pipe)
238 // FMD Al$ Aluminium (honeycomb support plates)
239 // FMD PCB$ Printed Circuit Board (FEE board with VA1_3)
240 // FMD Chip$ Electronics chips (currently not used)
241 // FMD Air$ Air (Air in the FMD)
242 // FMD Plastic$ Plastic (Support legs for the hybrid cards)
243 //
9f662337 244 // The geometry builder should really be the one that creates the
245 // materials, but the architecture of AliROOT makes that design
246 // akward. What should happen, was that the AliFMDGeometryBuilder
247 // made the mediums, and that this class retrives pointers from the
248 // TGeoManager, and registers the mediums here. Alas, it's not
249 // really that easy.
250 //
f95a63c4 251 AliFMDDebug(10, ("\tCreating materials"));
54e415a8 252 // Get pointer to geometry singleton object.
253 AliFMDGeometry* geometry = AliFMDGeometry::Instance();
254 geometry->Init();
255#if 0
256 if (gGeoManager && gGeoManager->GetMedium("FMD Si$")) {
257 // We need to figure out the some stuff about the geometry
258 fmd->ExtractGeomInfo();
259 return;
260 }
261#endif
54e415a8 262 Int_t id;
263 Double_t a = 0;
264 Double_t z = 0;
265 Double_t density = 0;
266 Double_t radiationLength = 0;
267 Double_t absorbtionLength = 999;
f7a1cc68 268 Int_t fieldType = ((AliMagF*)TGeoGlobalMagField::Instance()->GetField())->Integ(); // Field type
269 Double_t maxField = ((AliMagF*)TGeoGlobalMagField::Instance()->GetField())->Max(); // Field max.
54e415a8 270 Double_t maxBending = 0; // Max Angle
271 Double_t maxStepSize = 0.001; // Max step size
272 Double_t maxEnergyLoss = 1; // Max Delta E
273 Double_t precision = 0.001; // Precision
274 Double_t minStepSize = 0.001; // Minimum step size
275
276 // Silicon
277 a = 28.0855;
278 z = 14.;
279 density = geometry->GetSiDensity();
280 radiationLength = 9.36;
281 maxBending = 1;
282 maxStepSize = .001;
283 precision = .001;
284 minStepSize = .001;
285 id = kSiId;
286 AliMaterial(id, "Si$", a, z, density, radiationLength, absorbtionLength);
287 AliMedium(kSiId, "Si$", id,1,fieldType,maxField,maxBending,
288 maxStepSize,maxEnergyLoss,precision,minStepSize);
289
290
291 // Carbon
292 a = 12.011;
293 z = 6.;
294 density = 2.265;
295 radiationLength = 18.8;
296 maxBending = 10;
297 maxStepSize = .01;
298 precision = .003;
299 minStepSize = .003;
300 id = kCarbonId;
301 AliMaterial(id, "Carbon$", a, z, density, radiationLength, absorbtionLength);
302 AliMedium(kCarbonId, "Carbon$", id,0,fieldType,maxField,maxBending,
303 maxStepSize,maxEnergyLoss,precision,minStepSize);
304
305 // Aluminum
306 a = 26.981539;
307 z = 13.;
308 density = 2.7;
309 radiationLength = 8.9;
310 id = kAlId;
311 AliMaterial(id, "Aluminum$",a,z, density, radiationLength, absorbtionLength);
312 AliMedium(kAlId, "Aluminum$", id, 0, fieldType, maxField, maxBending,
313 maxStepSize, maxEnergyLoss, precision, minStepSize);
314
315
316 // Copper
317 a = 63.546;
318 z = 29;
319 density = 8.96;
320 radiationLength = 1.43;
321 id = kCopperId;
322 AliMaterial(id, "Copper$",
323 a, z, density, radiationLength, absorbtionLength);
324 AliMedium(kCopperId, "Copper$", id, 0, fieldType, maxField, maxBending,
325 maxStepSize, maxEnergyLoss, precision, minStepSize);
326
327
328 // Silicon chip
329 {
330 Float_t as[] = { 12.0107, 14.0067, 15.9994,
331 1.00794, 28.0855, 107.8682 };
332 Float_t zs[] = { 6., 7., 8.,
333 1., 14., 47. };
334 Float_t ws[] = { 0.039730642, 0.001396798, 0.01169634,
335 0.004367771, 0.844665, 0.09814344903 };
336 density = 2.36436;
337 maxBending = 10;
338 maxStepSize = .01;
339 precision = .003;
340 minStepSize = .003;
341 id = kSiChipId;
342 AliMixture(id, "Si Chip$", as, zs, density, 6, ws);
343 AliMedium(kSiChipId, "Si Chip$", id, 0, fieldType, maxField, maxBending,
344 maxStepSize, maxEnergyLoss, precision, minStepSize);
345 }
346
347 // Kaption
348 {
349 Float_t as[] = { 1.00794, 12.0107, 14.010, 15.9994};
350 Float_t zs[] = { 1., 6., 7., 8.};
351 Float_t ws[] = { 0.026362, 0.69113, 0.07327, 0.209235};
352 density = 1.42;
353 maxBending = 1;
354 maxStepSize = .001;
355 precision = .001;
356 minStepSize = .001;
357 id = kKaptonId;
358 AliMixture(id, "Kaption$", as, zs, density, 4, ws);
359 AliMedium(kKaptonId, "Kaption$", id,0,fieldType,maxField,maxBending,
360 maxStepSize,maxEnergyLoss,precision,minStepSize);
361 }
362
363 // Air
364 {
365 Float_t as[] = { 12.0107, 14.0067, 15.9994, 39.948 };
366 Float_t zs[] = { 6., 7., 8., 18. };
367 Float_t ws[] = { 0.000124, 0.755267, 0.231781, 0.012827 };
368 density = .00120479;
369 maxBending = 1;
370 maxStepSize = .001;
371 precision = .001;
372 minStepSize = .001;
373 id = kAirId;
374 AliMixture(id, "Air$", as, zs, density, 4, ws);
375 AliMedium(kAirId, "Air$", id,0,fieldType,maxField,maxBending,
376 maxStepSize,maxEnergyLoss,precision,minStepSize);
377 }
378
379 // PCB
380 {
381 Float_t zs[] = { 14., 20., 13., 12.,
382 5., 22., 11., 19.,
383 26., 9., 8., 6.,
384 7., 1.};
385 Float_t as[] = { 28.0855, 40.078, 26.981538, 24.305,
386 10.811, 47.867, 22.98977, 39.0983,
387 55.845, 18.9984, 15.9994, 12.0107,
388 14.0067, 1.00794};
389 Float_t ws[] = { 0.15144894, 0.08147477, 0.04128158, 0.00904554,
390 0.01397570, 0.00287685, 0.00445114, 0.00498089,
391 0.00209828, 0.00420000, 0.36043788, 0.27529426,
392 0.01415852, 0.03427566};
393 density = 1.8;
394 maxBending = 1;
395 maxStepSize = .001;
396 precision = .001;
397 minStepSize = .001;
398 id = kPcbId;
399 AliMixture(id, "PCB$", as, zs, density, 14, ws);
400 AliMedium(kPcbId, "PCB$", id,0,fieldType,maxField,maxBending,
401 maxStepSize,maxEnergyLoss,precision,minStepSize);
402 }
403
d98fbfa5 404 // Stainless steel
405 {
406 Float_t as[] = { 55.847, 51.9961, 58.6934, 28.0855 };
407 Float_t zs[] = { 26., 24., 28., 14. };
408 Float_t ws[] = { .715, .18, .1, .005 };
409 density = 7.88;
410 id = kSteelId;
411 AliMixture(id, "Steel$", as, zs, density, 4, ws);
412 AliMedium(kSteelId, "Steel$", id, 0, fieldType, maxField, maxBending,
413 maxStepSize, maxEnergyLoss, precision, minStepSize);
414 }
54e415a8 415 // Plastic
416 {
417 Float_t as[] = { 1.01, 12.01 };
418 Float_t zs[] = { 1., 6. };
419 Float_t ws[] = { 1., 1. };
420 density = 1.03;
421 maxBending = 10;
422 maxStepSize = .01;
423 precision = .003;
424 minStepSize = .003;
425 id = kPlasticId;
426 AliMixture(id, "Plastic$", as, zs, density, -2, ws);
427 AliMedium(kPlasticId, "Plastic$", id,0,fieldType,maxField,maxBending,
428 maxStepSize,maxEnergyLoss,precision,minStepSize);
429 }
d98fbfa5 430
d28dcc0d 431}
dc8af42e 432
40fa2e58 433//____________________________________________________________________
434void
435AliFMD::SetTrackingParameters(Int_t imed,
436 Float_t gamma,
437 Float_t electron,
438 Float_t neutral_hadron,
439 Float_t charged_hadron,
440 Float_t muon,
441 Float_t electron_bremstrahlung,
442 Float_t muon__bremstrahlung,
443 Float_t electron_delta,
444 Float_t muon_delta,
445 Float_t muon_pair,
446 Int_t annihilation,
447 Int_t bremstrahlung,
448 Int_t compton_scattering,
449 Int_t decay,
450 Int_t delta_ray,
451 Int_t hadronic,
452 Int_t energy_loss,
453 Int_t multiple_scattering,
454 Int_t pair_production,
455 Int_t photon_production,
456 Int_t rayleigh_scattering)
457{
c78f9fcf 458#if 0 // Disabled by request of FCA, kept for reference only
40fa2e58 459 if (!gMC) return;
460 TArrayI& idtmed = *(GetIdtmed());
461 Int_t iimed = idtmed[imed];
c78f9fcf 462 // gMC->Gstpar(iimed, "CUTGAM", gamma);
463 // gMC->Gstpar(iimed, "CUTELE", electron);
464 // gMC->Gstpar(iimed, "CUTNEU", neutral_hadron);
465 // gMC->Gstpar(iimed, "CUTHAD", charged_hadron);
466 // gMC->Gstpar(iimed, "CUTMUO", muon);
467 // gMC->Gstpar(iimed, "BCUTE", electron_bremstrahlung);
468 // gMC->Gstpar(iimed, "BCUTM", muon__bremstrahlung);
469 // gMC->Gstpar(iimed, "DCUTE", electron_delta);
470 // gMC->Gstpar(iimed, "DCUTM", muon_delta);
471 // gMC->Gstpar(iimed, "PPCUTM", muon_pair);
472 // gMC->Gstpar(iimed, "ANNI", Float_t(annihilation));
473 // gMC->Gstpar(iimed, "BREM", Float_t(bremstrahlung));
474 // gMC->Gstpar(iimed, "COMP", Float_t(compton_scattering));
475 // gMC->Gstpar(iimed, "DCAY", Float_t(decay));
476 // gMC->Gstpar(iimed, "DRAY", Float_t(delta_ray));
477 // gMC->Gstpar(iimed, "HADR", Float_t(hadronic));
478 // gMC->Gstpar(iimed, "LOSS", Float_t(energy_loss));
479 // gMC->Gstpar(iimed, "MULS", Float_t(multiple_scattering));
480 // gMC->Gstpar(iimed, "PAIR", Float_t(pair_production));
481 // gMC->Gstpar(iimed, "PHOT", Float_t(photon_production));
482 // gMC->Gstpar(iimed, "RAYL", Float_t(rayleigh_scattering));
483#endif
40fa2e58 484}
485
4347b38f 486//____________________________________________________________________
487void
488AliFMD::Init()
bf000c32 489{
9f662337 490 // Initialize the detector
491 //
f95a63c4 492 AliFMDDebug(1, ("Initialising FMD detector object"));
45855cd7 493 TVirtualMC* mc = TVirtualMC::GetMC();
494 AliFMDGeometry* fmd = AliFMDGeometry::Instance();
495 const TArrayI& actGeo = fmd->ActiveIds();
496 TArrayI actVmc(actGeo.fN);
497 for (Int_t i = 0; i < actGeo.fN; i++) {
498 TGeoVolume *sens = gGeoManager->GetVolume(actGeo[i]);
499 if (!sens) {
500 AliError(Form("No TGeo volume for sensitive volume ID=%d",actGeo[i]));
501 continue;
502 }
503 actVmc[i] = mc->VolId(sens->GetName());
504 AliFMDDebug(1, ("Active vol id # %d: %d changed to %d",
505 i, actGeo[i], actVmc[i]));
506 }
507 fmd->SetActive(actVmc.fArray, actVmc.fN);
d760ea03 508 // fmd->InitTransformations();
bf000c32 509}
dc8af42e 510
54240c8d 511//____________________________________________________________________
512void
513AliFMD::FinishEvent()
514{
9f662337 515 // Called at the end of the an event in simulations. If the debug
516 // level is high enough, then the `bad' hits are printed.
517 //
bf000c32 518 if (AliLog::GetDebugLevel("FMD", "AliFMD") < 10) return;
54e415a8 519 if (fBad && fBad->GetEntries() > 0) {
520 AliWarning((Form("EndEvent", "got %d 'bad' hits", fBad->GetEntries())));
521 TIter next(fBad);
522 AliFMDHit* hit;
bf000c32 523 while ((hit = static_cast<AliFMDHit*>(next()))) hit->Print("D");
54e415a8 524 fBad->Clear();
525 }
54240c8d 526}
527
528
dc8af42e 529
4347b38f 530//====================================================================
531//
532// Hit and Digit managment
533//
534//____________________________________________________________________
535void
536AliFMD::MakeBranch(Option_t * option)
537{
538 // Create Tree branches for the FMD.
37c4363a 539 //
540 // Options:
541 //
542 // H Make a branch of TClonesArray of AliFMDHit's
543 // D Make a branch of TClonesArray of AliFMDDigit's
544 // S Make a branch of TClonesArray of AliFMDSDigit's
545 //
4347b38f 546 const Int_t kBufferSize = 16000;
547 TString branchname(GetName());
548 TString opt(option);
549
550 if (opt.Contains("H", TString::kIgnoreCase)) {
551 HitsArray();
552 AliDetector::MakeBranch(option);
553 }
554 if (opt.Contains("D", TString::kIgnoreCase)) {
555 DigitsArray();
556 MakeBranchInTree(fLoader->TreeD(), branchname.Data(),
557 &fDigits, kBufferSize, 0);
558 }
559 if (opt.Contains("S", TString::kIgnoreCase)) {
560 SDigitsArray();
561 MakeBranchInTree(fLoader->TreeS(), branchname.Data(),
562 &fSDigits, kBufferSize, 0);
563 }
564}
565
566//____________________________________________________________________
567void
568AliFMD::SetTreeAddress()
569{
afddaa11 570 // Set branch address for the Hits, Digits, and SDigits Tree.
4347b38f 571 if (fLoader->TreeH()) HitsArray();
572 AliDetector::SetTreeAddress();
573
574 TTree *treeD = fLoader->TreeD();
575 if (treeD) {
576 DigitsArray();
577 TBranch* branch = treeD->GetBranch ("FMD");
578 if (branch) branch->SetAddress(&fDigits);
579 }
580
581 TTree *treeS = fLoader->TreeS();
582 if (treeS) {
583 SDigitsArray();
584 TBranch* branch = treeS->GetBranch ("FMD");
585 if (branch) branch->SetAddress(&fSDigits);
586 }
587}
588
4347b38f 589//____________________________________________________________________
590void
591AliFMD::SetHitsAddressBranch(TBranch *b)
b9a2d5e4 592{
37c4363a 593 // Set the TClonesArray to read hits into.
4347b38f 594 b->SetAddress(&fHits);
b9a2d5e4 595}
42f1b2f5 596//____________________________________________________________________
597void
598AliFMD::SetSDigitsAddressBranch(TBranch *b)
599{
600 // Set the TClonesArray to read hits into.
601 b->SetAddress(&fSDigits);
602}
b9a2d5e4 603
4347b38f 604//____________________________________________________________________
605void
606AliFMD::AddHit(Int_t track, Int_t *vol, Float_t *hits)
607{
608 // Add a hit to the hits tree
609 //
610 // The information of the two arrays are decoded as
611 //
612 // Parameters
613 // track Track #
614 // ivol[0] [UShort_t ] Detector #
615 // ivol[1] [Char_t ] Ring ID
616 // ivol[2] [UShort_t ] Sector #
617 // ivol[3] [UShort_t ] Strip #
618 // hits[0] [Float_t ] Track's X-coordinate at hit
619 // hits[1] [Float_t ] Track's Y-coordinate at hit
620 // hits[3] [Float_t ] Track's Z-coordinate at hit
621 // hits[4] [Float_t ] X-component of track's momentum
622 // hits[5] [Float_t ] Y-component of track's momentum
623 // hits[6] [Float_t ] Z-component of track's momentum
624 // hits[7] [Float_t ] Energy deposited by track
625 // hits[8] [Int_t ] Track's particle Id #
37c4363a 626 // hits[9] [Float_t ] Time when the track hit
627 //
628 //
69b696b9 629 AddHitByFields(track,
630 UShort_t(vol[0]), // Detector #
631 Char_t(vol[1]), // Ring ID
632 UShort_t(vol[2]), // Sector #
633 UShort_t(vol[3]), // Strip #
634 hits[0], // X
635 hits[1], // Y
636 hits[2], // Z
637 hits[3], // Px
638 hits[4], // Py
639 hits[5], // Pz
640 hits[6], // Energy loss
641 Int_t(hits[7]), // PDG
642 hits[8]); // Time
4347b38f 643}
644
645//____________________________________________________________________
54240c8d 646AliFMDHit*
69b696b9 647AliFMD::AddHitByFields(Int_t track,
648 UShort_t detector,
649 Char_t ring,
650 UShort_t sector,
651 UShort_t strip,
652 Float_t x,
653 Float_t y,
654 Float_t z,
655 Float_t px,
656 Float_t py,
657 Float_t pz,
658 Float_t edep,
659 Int_t pdg,
088f8e79 660 Float_t t,
661 Float_t l,
662 Bool_t stop)
b9a2d5e4 663{
4347b38f 664 // Add a hit to the list
dc8af42e 665 //
4347b38f 666 // Parameters:
667 //
668 // track Track #
669 // detector Detector # (1, 2, or 3)
670 // ring Ring ID ('I' or 'O')
671 // sector Sector # (For inner/outer rings: 0-19/0-39)
672 // strip Strip # (For inner/outer rings: 0-511/0-255)
673 // x Track's X-coordinate at hit
674 // y Track's Y-coordinate at hit
675 // z Track's Z-coordinate at hit
676 // px X-component of track's momentum
677 // py Y-component of track's momentum
678 // pz Z-component of track's momentum
679 // edep Energy deposited by track
680 // pdg Track's particle Id #
681 // t Time when the track hit
088f8e79 682 // l Track length through the material.
683 // stop Whether track was stopped or disappeared
4347b38f 684 //
685 TClonesArray& a = *(HitsArray());
686 // Search through the list of already registered hits, and see if we
687 // find a hit with the same parameters. If we do, then don't create
688 // a new hit, but rather update the energy deposited in the hit.
689 // This is done, so that a FLUKA based simulation will get the
690 // number of hits right, not just the enerrgy deposition.
ac4c3fbb 691 AliFMDHit* hit = 0;
4347b38f 692 for (Int_t i = 0; i < fNhits; i++) {
693 if (!a.At(i)) continue;
ac4c3fbb 694 hit = static_cast<AliFMDHit*>(a.At(i));
4347b38f 695 if (hit->Detector() == detector
696 && hit->Ring() == ring
697 && hit->Sector() == sector
698 && hit->Strip() == strip
699 && hit->Track() == track) {
f95a63c4 700 AliFMDDebug(1, ("already had a hit in FMD%d%c[%2d,%3d] for track # %d,"
8f6ee336 701 " adding energy (%f) to that hit (%f) -> %f",
702 detector, ring, sector, strip, track, edep, hit->Edep(),
703 hit->Edep() + edep));
4347b38f 704 hit->SetEdep(hit->Edep() + edep);
54240c8d 705 return hit;
4347b38f 706 }
707 }
708 // If hit wasn't already registered, do so know.
ac4c3fbb 709 hit = new (a[fNhits]) AliFMDHit(fIshunt, track, detector, ring, sector,
088f8e79 710 strip, x, y, z, px, py, pz, edep, pdg, t,
711 l, stop);
b2e6f0b0 712 // gMC->AddTrackReference(track, 12);
4347b38f 713 fNhits++;
a91c42d1 714
715 //Reference track
716
717 AliMC *mcApplication = (AliMC*)gAlice->GetMCApp();
718
6e2e6b50 719 AliTrackReference* trackRef = AddTrackReference(mcApplication->GetCurrentTrackNumber(), AliTrackReference::kFMD);
a91c42d1 720 UInt_t stripId = AliFMDStripIndex::Pack(detector,ring,sector,strip);
721 trackRef->SetUserId(stripId);
722
723
724
54240c8d 725 return hit;
b9a2d5e4 726}
fe4da5cc 727
4347b38f 728//____________________________________________________________________
729void
69b696b9 730AliFMD::AddDigit(Int_t* digits, Int_t*)
fe4da5cc 731{
4347b38f 732 // Add a digit to the Digit tree
733 //
734 // Paramters
fe4da5cc 735 //
4347b38f 736 // digits[0] [UShort_t] Detector #
737 // digits[1] [Char_t] Ring ID
738 // digits[2] [UShort_t] Sector #
739 // digits[3] [UShort_t] Strip #
740 // digits[4] [UShort_t] ADC Count
741 // digits[5] [Short_t] ADC Count, -1 if not used
742 // digits[6] [Short_t] ADC Count, -1 if not used
743 //
69b696b9 744 AddDigitByFields(UShort_t(digits[0]), // Detector #
745 Char_t(digits[1]), // Ring ID
746 UShort_t(digits[2]), // Sector #
747 UShort_t(digits[3]), // Strip #
748 UShort_t(digits[4]), // ADC Count1
749 Short_t(digits[5]), // ADC Count2
2aeec17d 750 Short_t(digits[6]), // ADC Count3
751 Short_t(digits[7]));
4347b38f 752}
753
754//____________________________________________________________________
755void
faf80567 756AliFMD::AddDigitByFields(UShort_t detector,
757 Char_t ring,
758 UShort_t sector,
759 UShort_t strip,
760 UShort_t count1,
761 Short_t count2,
762 Short_t count3,
763 Short_t count4,
1ecfdbd8 764 UShort_t nrefs,
765 Int_t* refs)
4347b38f 766{
767 // add a real digit - as coming from data
768 //
769 // Parameters
fe4da5cc 770 //
4347b38f 771 // detector Detector # (1, 2, or 3)
772 // ring Ring ID ('I' or 'O')
773 // sector Sector # (For inner/outer rings: 0-19/0-39)
774 // strip Strip # (For inner/outer rings: 0-511/0-255)
775 // count1 ADC count (a 10-bit word)
776 // count2 ADC count (a 10-bit word), or -1 if not used
777 // count3 ADC count (a 10-bit word), or -1 if not used
778 TClonesArray& a = *(DigitsArray());
779
faf80567 780 AliFMDDebug(15, ("Adding digit # %5d/%5d for FMD%d%c[%2d,%3d]"
781 "=(%d,%d,%d,%d) with %d tracks",
f95a63c4 782 fNdigits-1, a.GetEntriesFast(),
2aeec17d 783 detector, ring, sector, strip,
1ecfdbd8 784 count1, count2, count3, count4, nrefs));
785 new (a[fNdigits++])
786 AliFMDDigit(detector, ring, sector, strip,
787 count1, count2, count3, count4, nrefs, refs);
f95a63c4 788
4347b38f 789}
790
791//____________________________________________________________________
792void
793AliFMD::AddSDigit(Int_t* digits)
794{
795 // Add a digit to the SDigit tree
796 //
797 // Paramters
b9a2d5e4 798 //
4347b38f 799 // digits[0] [UShort_t] Detector #
800 // digits[1] [Char_t] Ring ID
801 // digits[2] [UShort_t] Sector #
802 // digits[3] [UShort_t] Strip #
803 // digits[4] [Float_t] Total energy deposited
804 // digits[5] [UShort_t] ADC Count
805 // digits[6] [Short_t] ADC Count, -1 if not used
806 // digits[7] [Short_t] ADC Count, -1 if not used
807 //
83ad576a 808 AddSDigitByFields(UShort_t(digits[0]), // Detector #
809 Char_t(digits[1]), // Ring ID
810 UShort_t(digits[2]), // Sector #
811 UShort_t(digits[3]), // Strip #
812 Float_t(digits[4]), // Edep
813 UShort_t(digits[5]), // ADC Count1
814 Short_t(digits[6]), // ADC Count2
815 Short_t(digits[7]), // ADC Count3
816 Short_t(digits[8]), // ADC Count4
817 UShort_t(digits[9]), // N particles
818 UShort_t(digits[10])); // N primaries
4347b38f 819}
820
821//____________________________________________________________________
822void
b2e6f0b0 823AliFMD::AddSDigitByFields(UShort_t detector,
824 Char_t ring,
825 UShort_t sector,
826 UShort_t strip,
827 Float_t edep,
828 UShort_t count1,
829 Short_t count2,
830 Short_t count3,
831 Short_t count4,
832 UShort_t ntot,
833 UShort_t nprim,
1ecfdbd8 834 Int_t* refs)
4347b38f 835{
836 // add a summable digit
837 //
838 // Parameters
b9a2d5e4 839 //
4347b38f 840 // detector Detector # (1, 2, or 3)
841 // ring Ring ID ('I' or 'O')
842 // sector Sector # (For inner/outer rings: 0-19/0-39)
843 // strip Strip # (For inner/outer rings: 0-511/0-255)
844 // edep Total energy deposited
845 // count1 ADC count (a 10-bit word)
846 // count2 ADC count (a 10-bit word), or -1 if not used
847 // count3 ADC count (a 10-bit word), or -1 if not used
37c4363a 848 //
4347b38f 849 TClonesArray& a = *(SDigitsArray());
42f1b2f5 850 // AliFMDDebug(0, ("Adding sdigit # %d", fNsdigits));
4347b38f 851
1ecfdbd8 852 AliFMDDebug(15, ("Adding sdigit # %5d/%5d for FMD%d%c[%2d,%3d]"
853 "=(%d,%d,%d,%d) with %d tracks %d primaries %d (%p)",
854 fNsdigits-1, a.GetEntriesFast(),
855 detector, ring, sector, strip,
856 count1, count2, count3, count4, ntot, nprim, refs));
4347b38f 857 new (a[fNsdigits++])
2aeec17d 858 AliFMDSDigit(detector, ring, sector, strip, edep,
b2e6f0b0 859 count1, count2, count3, count4, ntot, nprim, refs);
fe4da5cc 860}
4347b38f 861
862//____________________________________________________________________
863void
864AliFMD::ResetSDigits()
d28dcc0d 865{
9f662337 866 // Reset number of digits and the digits array for this detector.
4347b38f 867 //
868 fNsdigits = 0;
869 if (fSDigits) fSDigits->Clear();
870}
871
872
873//____________________________________________________________________
874TClonesArray*
875AliFMD::HitsArray()
876{
877 // Initialize hit array if not already, and return pointer to it.
878 if (!fHits) {
879 fHits = new TClonesArray("AliFMDHit", 1000);
880 fNhits = 0;
881 }
882 return fHits;
883}
884
885//____________________________________________________________________
886TClonesArray*
887AliFMD::DigitsArray()
888{
889 // Initialize digit array if not already, and return pointer to it.
890 if (!fDigits) {
891 fDigits = new TClonesArray("AliFMDDigit", 1000);
892 fNdigits = 0;
893 }
894 return fDigits;
895}
896
897//____________________________________________________________________
898TClonesArray*
899AliFMD::SDigitsArray()
900{
901 // Initialize digit array if not already, and return pointer to it.
902 if (!fSDigits) {
903 fSDigits = new TClonesArray("AliFMDSDigit", 1000);
904 fNsdigits = 0;
905 }
906 return fSDigits;
907}
908
909//====================================================================
910//
911// Digitization
912//
913//____________________________________________________________________
914void
915AliFMD::Hits2Digits()
916{
37c4363a 917 // Create AliFMDDigit's from AliFMDHit's. This is done by making a
918 // AliFMDDigitizer, and executing that code.
919 //
ef8e8623 920 AliFMDHitDigitizer digitizer(this, AliFMDHitDigitizer::kDigits);
921 digitizer.Init();
922 digitizer.Exec("");
4347b38f 923}
924
925//____________________________________________________________________
926void
927AliFMD::Hits2SDigits()
928{
37c4363a 929 // Create AliFMDSDigit's from AliFMDHit's. This is done by creating
930 // an AliFMDSDigitizer object, and executing it.
931 //
ef8e8623 932 AliFMDHitDigitizer digitizer(this, AliFMDHitDigitizer::kSDigits);
933 digitizer.Init();
934 digitizer.Exec("");
4347b38f 935}
936
dc8af42e 937
4347b38f 938//____________________________________________________________________
939AliDigitizer*
940AliFMD::CreateDigitizer(AliRunDigitizer* manager) const
941{
942 // Create a digitizer object
42f1b2f5 943
944 /* This is what we probably _should_ do */
945 AliFMDBaseDigitizer* digitizer = 0;
946
947#ifdef USE_SSDIGITIZER
948 digitizer = new AliFMDSSDigitizer(manager);
949#else
950 /* This is what we actually do, and will work */
ef8e8623 951#if 0
42f1b2f5 952 AliInfo("SDigit->Digit conversion not really supported, "
953 "doing Hit->Digit conversion instead");
ef8e8623 954#endif
42f1b2f5 955 digitizer = new AliFMDDigitizer(manager);
956#endif
957 return digitizer;
958}
b9a2d5e4 959
4347b38f 960//====================================================================
961//
962// Raw data simulation
963//
964//__________________________________________________________________
965void
966AliFMD::Digits2Raw()
967{
37c4363a 968 // Turn digits into raw data.
969 //
e802be3e 970 // This uses the class AliFMDRawWriter to do the job. Please refer
971 // to that class for more information.
972 AliFMDRawWriter writer(this);
973 writer.Exec();
b9a2d5e4 974}
975
faf80567 976//====================================================================
977//
978// Raw data reading
979//
980//__________________________________________________________________
981Bool_t
982AliFMD::Raw2SDigits(AliRawReader* reader)
983{
984 // Turn digits into raw data.
985 //
986 // This uses the class AliFMDRawWriter to do the job. Please refer
987 // to that class for more information.
988 AliFMDParameters::Instance()->Init();
989 MakeTree("S");
990 MakeBranch("S");
991
992 TClonesArray* sdigits = SDigits();
993 AliFMDReconstructor rec;
994
995 // The two boolean arguments
996 // Make sdigits instead of digits
997 // Subtract the pedestal off the signal
998 rec.Digitize(reader, sdigits);
999 //
1000 // Bool_t ret = fmdReader.ReadAdcs(sdigits, kTRUE, kTRUE);
1001 // sdigits->ls();
1002 UShort_t ns = sdigits->GetEntriesFast();
1003 for (UShort_t i = 0; i < ns; i++)
1004 sdigits->At(i)->Print("pl");
1005
1006 AliFMDDebug(1, ("Got a total of %d SDigits", ns));
1007
1008 fLoader->TreeS()->Fill();
1009 ResetSDigits();
1010 fLoader->WriteSDigits("OVERWRITE");
1011
1012 return kTRUE;
1013}
1014
4347b38f 1015
1016//====================================================================
1017//
1018// Utility
1019//
1020//__________________________________________________________________
1021void
1022AliFMD::Browse(TBrowser* b)
1023{
37c4363a 1024 // Browse this object.
1025 //
f95a63c4 1026 AliFMDDebug(30, ("\tBrowsing the FMD"));
4347b38f 1027 AliDetector::Browse(b);
1a1fdef7 1028 b->Add(AliFMDGeometry::Instance());
4347b38f 1029}
1030
ee8a5fe6 1031//____________________________________________________________________
1032void
1033AliFMD::AddAlignableVolumes() const
1034{
1035 //
1036 // Create entries for alignable volumes associating the symbolic volume
1037 // name with the corresponding volume path. Needs to be syncronized with
1038 // eventual changes in the geometry.
1039 //
1040 // This code was made by Raffaele Grosso <rgrosso@mail.cern.ch>. I
1041 // (cholm) will probably want to change it. For one, I think it
1042 // should be the job of the geometry manager to deal with this.
901fdbcf 1043 AliInfo("Add FMD alignable volumes");
9de78b35 1044 AliFMDGeometry::Instance()->SetAlignableVolumes();
1045#if 0
ee8a5fe6 1046 for(size_t f = 1; f <= 3; f++){ // Detector 1,2,3
1047 for(size_t tb = 0; tb <2 ; tb++){ // Top/Bottom
1048 char stb = tb == 0 ? 'T' : 'B';
1049 unsigned min = tb == 0 ? 0 : 5;
1050
8b1c66f0 1051 TString halfVol(Form("/ALIC_1/F%dM%c_%d", f, stb, f));
ee8a5fe6 1052 TString halfSym(halfVol);
1053 if(!gGeoManager->SetAlignableEntry(halfSym.Data(),halfVol.Data()))
1054 AliFatal(Form("Alignable entry %s not created. "
1055 "Volume path %s not valid",
1056 halfSym.Data(),halfVol.Data()));
1057 for(size_t io = 0; io < 2; io++){ // inner, outer
1058 if (f==1 && io==1) continue; // Only one ring in FMD1
8b1c66f0 1059 if(tb == 1 && io==1) min=10;
1060 char sio = (io == 0 ? 'I' : 'O');
ee8a5fe6 1061 unsigned nio = (io == 0 ? 3 : 9);
1062 unsigned max = (io == 0 ? 5 : 10) + min;
1063
1064 for(size_t i = min; i < max; i++) { // Modules
1065 TString modVol(Form("%s/F%c%cV_7%d/F%cSE_%d", halfVol.Data(),
1066 sio, stb, nio, sio, i));
1067 TString modSym(modVol);
1068 if(!gGeoManager->SetAlignableEntry(modSym.Data(),modVol.Data()))
1069 AliFatal(Form("Alignable entry %s not created. "
1070 "Volume path %s not valid",
1071 modSym.Data(), modVol.Data()));
1072 }
1073 }
1074 }
1075 }
9de78b35 1076#endif
ee8a5fe6 1077}
4347b38f 1078//___________________________________________________________________
1079//
1080// EOF
1081//