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Updates concerning the geometry: versioning system, new V11hybrid version, bug fixes...
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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  **************************************************************************/
15
16 /* $Id$ */
17 ///////////////////////////////////////////////////////////////////////////////
18 //                                                                           //
19 //  Inner Traking System version PPR  asymmetric for the FMD                 //
20 //  This class contains the base procedures for the Inner Tracking System    //
21 //                                                                           //
22 // Authors: R. Barbera                                                       //
23 // version 10.                                                               //
24 // Created  January 15 2001.                                                 //
25 //                                                                           //
26 //  NOTE: THIS IS THE  ASYMMETRIC PPR geometry of the ITS for the PMD.       //
27 //                                                                           //
28 ///////////////////////////////////////////////////////////////////////////////
29
30 // See AliITSvPPRasymmFMD::StepManager().
31
32 #include <TClonesArray.h>
33 #include <TGeometry.h>
34 #include <TLorentzVector.h>
35 #include <TGeoMatrix.h>
36 #include <TGeoPhysicalNode.h>
37 #include <TArrayD.h>
38 #include <TArrayF.h>
39 #include <TString.h>
40 #include <TNode.h>
41 #include <TTUBE.h>
42 #include <TGeoManager.h>
43 #include <TGeoVolume.h>
44 #include <TVirtualMC.h>
45
46 #include "AliITS.h"
47 #include "AliITSDetTypeSim.h"
48 #include "AliITSgeom.h"
49 #include "AliITSgeomSDD.h"
50 #include "AliITSgeomSPD.h"
51 #include "AliITSgeomSSD.h"
52 #include "AliITShit.h"
53 #include "AliITSresponseSDD.h"
54 #include "AliITSCalibrationSDD.h"
55 #include "AliITSCalibrationSPD.h"
56 #include "AliITSCalibrationSSD.h"
57 #include "AliITSsegmentationSDD.h"
58 #include "AliITSsegmentationSPD.h"
59 #include "AliITSsegmentationSSD.h"
60 #include "AliITSvPPRasymmFMD.h"
61 #include "AliLog.h"
62 #include "AliMC.h"
63 #include "AliMagF.h"
64 #include "AliRun.h"
65 #include "AliTrackReference.h"
66
67
68 #define GEANTGEOMETRY kTRUE
69
70 ClassImp(AliITSvPPRasymmFMD)
71  
72 //______________________________________________________________________
73 AliITSvPPRasymmFMD::AliITSvPPRasymmFMD():
74 AliITS(),                    // Default AliITS Constructor
75 fGeomDetOut(kFALSE),         // Flag to write .det file out
76 fGeomDetIn(kFALSE),          // Flag to read .det file or directly from Geat.
77 fByThick(kTRUE),             // Flag to use services materials by thickness
78                              // ture, or mass false.
79 fMajorVersion(IsVersion()),  // Major version number == IsVersion
80 fMinorVersion(2),           // Minor version number
81 fEuclidGeomDet("$ALICE_ROOT/ITS/ITSgeometry_vPPRasymm2.det"),// file where detector transormation are define.
82 fRead("$ALICE_ROOT/ITS/ITSgeometry_vPPRasymm.det"),//! file name to read .det file
83 fWrite("$ALICE_ROOT/ITS/ITSgeometry_vPPRasymm2.det"),//! file name to write .det file
84 fDet1(200.0),      // thickness of detector in SPD layer 1 [microns]
85 fDet2(200.0),      // thickness of detector in SPD layer 2 [microns]
86 fChip1(150.0),     // thickness of chip in SPD layer 1 [microns]
87 fChip2(150.0),     // thickness of chip in SPD layer 2 [microns]
88 fRails(0),         // flag to switch rails on (=1) and off (=0)
89 fFluid(1),         // flag to switch between water (=1)& freon (=0)
90 fIDMother(0),      //! ITS Mother Volume id.
91 fIgm((AliITSVersion_t)fMajorVersion,fMinorVersion)//! Get access to decoding 
92                                                // and AliITSgeom init functions
93  {
94     //    Standard default constructor for the ITS version 10.
95     // Inputs:
96     //   none.
97     // Outputs:
98     //   none.
99     // Return:
100     //   none.
101     fIgm.SetGeometryName("");
102 }
103 //______________________________________________________________________
104 AliITSvPPRasymmFMD::AliITSvPPRasymmFMD(const Char_t *title):
105 AliITS(title),               // Standard AliITS Constructor
106 fGeomDetOut(kFALSE),         // Flag to write .det file out
107 fGeomDetIn(kFALSE),          // Flag to read .det file or directly from Geat.
108 fByThick(kTRUE),             // Flag to use services materials by thickness
109                              // ture, or mass false.
110 fMajorVersion(IsVersion()),  // Major version number == IsVersion
111 fMinorVersion(2),            // Minor version number
112 fEuclidGeomDet("$ALICE_ROOT/ITS/ITSgeometry_vPPRasymm2.det"),// file where detector transormation are define.
113 fRead("$ALICE_ROOT/ITS/ITSgeometry_vPPRasymm.det"),//! file name to read .det file
114 fWrite("$ALICE_ROOT/ITS/ITSgeometry_vPPRasymm2.det"),//! file name to write .det file
115 fDet1(200.0),      // thickness of detector in SPD layer 1 [microns]
116 fDet2(200.0),      // thickness of detector in SPD layer 2 [microns]
117 fChip1(150.0),     // thickness of chip in SPD layer 1 [microns]
118 fChip2(150.0),     // thickness of chip in SPD layer 2 [microns]
119 fRails(0),         // flag to switch rails on (=1) and off (=0)
120 fFluid(1),         // flag to switch between water (=1)& freon (=0)
121 fIDMother(0),      //! ITS Mother Volume id.
122 fIgm((AliITSVersion_t)fMajorVersion,fMinorVersion)//! Get access to decoding 
123                                                // and AliITSgeom init functions
124 {
125     //    Standard constructor for the ITS version 10.
126     // Inputs:
127     //   const Char_t * title  Arbitrary title
128     // Outputs:
129     //   none.
130     // Return:
131     //   none.
132     Int_t i;
133
134     fIgm.SetDecoding(kFALSE);// Use Alice compliant naming/numbering system
135     fIgm.SetTiming(kFALSE);// default no timing
136     fIgm.SetSegGeom(kFALSE);// use AliITSgeomS?D classes instead 
137                             // of segmentation AliITSsegmentationS?D class
138     fIgm.SetGeometryName("ITS PPR aymmetric services with course"
139                          " cables on cones");
140     // Set some AliITS class veriables.
141     fIdN = 6;
142     fIdName = new TString[fIdN];
143     fIdName[0] = "ITS1";
144     fIdName[1] = "ITS2";
145     fIdName[2] = "ITS3";
146     fIdName[3] = "ITS4";
147     fIdName[4] = "ITS5";
148     fIdName[5] = "ITS6";
149     fIdSens    = new Int_t[fIdN];
150     for(i=0;i<fIdN;i++) fIdSens[i] = 0;
151 }
152 //______________________________________________________________________
153 AliITSvPPRasymmFMD::AliITSvPPRasymmFMD(const char *name, const char *title):
154 AliITS(name,title),          // Extended AliITS Constructor
155 fGeomDetOut(kFALSE),         // Flag to write .det file out
156 fGeomDetIn(kFALSE),          // Flag to read .det file or directly from Geat.
157 fByThick(kTRUE),             // Flag to use services materials by thickness
158                              // ture, or mass false.
159 fMajorVersion(IsVersion()),  // Major version number == IsVersion
160 fMinorVersion(2),            // Minor version number
161 fEuclidGeomDet("$ALICE_ROOT/ITS/ITSgeometry_vPPRasymm2.det"),// file where detector transormation are define.
162 fRead("$ALICE_ROOT/ITS/ITSgeometry_vPPRasymm.det"),//! file name to read .det file
163 fWrite("$ALICE_ROOT/ITS/ITSgeometry_vPPRasymm2.det"),//! file name to write .det file
164 fDet1(200.0),      // thickness of detector in SPD layer 1 [microns]
165 fDet2(200.0),      // thickness of detector in SPD layer 2 [microns]
166 fChip1(150.0),     // thickness of chip in SPD layer 1 [microns]
167 fChip2(150.0),     // thickness of chip in SPD layer 2 [microns]
168 fRails(0),         // flag to switch rails on (=1) and off (=0)
169 fFluid(1),         // flag to switch between water (=1)& freon (=0)
170 fIDMother(0),      //! ITS Mother Volume id.
171 fIgm((AliITSVersion_t)fMajorVersion,fMinorVersion)//! Get access to decoding 
172                                                // and AliITSgeom init functions
173 {
174     //    Standard constructor for the ITS version 10.
175     // Inputs:
176     //   const char * name   Ignored, set to "ITS"
177     //   const char * title  Arbitrary title
178     // Outputs:
179     //   none.
180     // Return:
181     //   none.
182
183     Int_t i;
184
185     fIgm.SetDecoding(kFALSE);// Use Alice compliant naming/numbering system
186     fIgm.SetTiming(kFALSE);// default no timing
187     fIgm.SetSegGeom(kFALSE);// use AliITSgeomS?D classes instead 
188                             // of segmentation AliITSsegmentationS?D class
189     fIgm.SetGeometryName("ITS PPR aymmetric services with course"
190                          " cables on cones");
191     // Set some AliITS class veriables.
192     fIdN = 6;
193     fIdName = new TString[fIdN];
194     fIdName[0] = "ITS1";
195     fIdName[1] = "ITS2";
196     fIdName[2] = "ITS3";
197     fIdName[3] = "ITS4";
198     fIdName[4] = "ITS5";
199     fIdName[5] = "ITS6";
200     fIdSens    = new Int_t[fIdN];
201     for(i=0;i<fIdN;i++) fIdSens[i] = 0;
202
203     SetThicknessDet1();
204     SetThicknessDet2();
205     SetThicknessChip1();
206     SetThicknessChip2();
207     SetDensityServicesByThickness();
208 }
209 //______________________________________________________________________
210 AliITSvPPRasymmFMD::AliITSvPPRasymmFMD(const AliITSvPPRasymmFMD &source):
211 AliITS(source.GetName(),source.GetTitle()),// Extended AliITS Constructor
212 fGeomDetOut(source.GetWriteDet()),// Flag to write .det file out
213 fGeomDetIn(source.GetReadDet()),  // Flag to read .det file or directly 
214                                   // from Geat.
215 fByThick(source.IsDensityServicesByThickness()),// Flag to use services 
216                                                 // materials by thickness
217                                                 // ture, or mass false.
218 fMajorVersion(source.IsVersion()),  // Major version number == IsVersion
219 fMinorVersion(source.GetMinorVersion()),// Minor version number
220 fEuclidGeomDet(source.GetEuclidFile()),// file where detector transormation 
221                                        // are define.
222 fRead(source.GetReadDetFileName()),  //! file name to read .det file
223 fWrite(source.GetWriteDetFileName()),//! file name to write .det file
224 fDet1(source.GetThicknessDet1()),//thickness of detector in SPD layer 1[micron]
225 fDet2(source.GetThicknessDet2()),//thickness of detector in SPD layer 2[micron]
226 fChip1(source.GetThicknessChip1()),//thickness of chip in SPD layer 1 [microns]
227 fChip2(source.GetThicknessChip2()),//thickness of chip in SPD layer 2 [microns]
228 fRails(source.GetRails()),         // flag to switch rails on (=1) and off (=0)
229 fFluid(source.GetCoolingFluid()),// flag to switch between water (1)& freon (0)
230 fIDMother(source.GetMotherID()),      //! ITS Mother Volume id.
231 fIgm(source.GetGeomInit())//! Get access to decoding 
232                           // and AliITSgeom init functions
233 {
234     //     Copy Constructor for ITS version 10. This function is not to be
235     // used. If any other instance of this function, other than "this" is
236     // passed, an error message is returned.
237     // Inputs:
238     //   const AliITSvPPRasymmFMD &source This class
239     // Outputs:
240     //   none.
241     // Return:
242     //   an error message
243
244     if(&source == this) return;
245     Warning("Copy Constructor","Not allowed to copy AliITSvPPRasymmFMD");
246     return;
247 }
248 //______________________________________________________________________
249 AliITSvPPRasymmFMD& AliITSvPPRasymmFMD::operator=(const AliITSvPPRasymmFMD 
250                                                   &source){
251     //    Assignment operator for the ITS version 10. This function is not 
252     // to be used. If any other instance of this function, other than "this" 
253     // is passed, an error message is returned.
254     // Inputs:
255     //   const AliITSvPPRasymmFMD &source This class
256     // Outputs:
257     //   none.
258     // Return:
259     //   an error message
260
261     if(&source == this) return *this;
262     Warning("= operator","Not allowed to copy AliITSvPPRasymmFMD");
263     return *this; // return null pointer, copy not allowed.
264 }
265 //______________________________________________________________________
266 AliITSvPPRasymmFMD::~AliITSvPPRasymmFMD() {
267     //    Standard destructor for the ITS version 10.
268     // Inputs:
269     //   none.
270     // Outputs:
271     //   none.
272     // Return:
273     //   none.
274 }
275 //______________________________________________________________________
276 void AliITSvPPRasymmFMD::AddAlignableVolumes() const
277 {
278   //
279   // Creates entries for alignable volumes associating the symbolic volume
280   // name with the corresponding volume path.
281   // 
282   // Records in the alignable entries the transformation matrices converting
283   // TGeo local coordinates (in the RS of alignable volumes) to the tracking
284   // system
285   // For this, this function has to run before the misalignment because we
286   // are using the ideal positions in the AliITSgeom object.
287
288   AliInfo("Add ITS alignable volumes");
289
290   if (!gGeoManager) {
291     AliFatal("TGeoManager doesn't exist !");
292     return;
293   }
294
295   if( !gGeoManager->SetAlignableEntry("ITS","ALIC_1/ITSV_1") )
296     AliFatal("Unable to set alignable entry!!");    
297
298   Double_t al, *gtrans, rotMatrix[9];
299
300   TString strSPD = "ITS/SPD";
301   TString strSDD = "ITS/SDD";
302   TString strSSD = "ITS/SSD";
303   TString strStave = "/Stave";
304   TString strLadder = "/Ladder";
305   TString strSector = "/Sector";
306   TString strSensor = "/Sensor";
307   TString strEntryName1;
308   TString strEntryName2;
309   TString strEntryName3;
310
311   //===== SPD layer1 =====
312   {
313     TString str0 = "ALIC_1/ITSV_1/ITSD_1/IT12_1/I12B_";
314     TString str1 = "/I10B_";
315     TString str2 = "/I107_";
316   
317     TString sector;
318     TString stave;
319     TString module;
320
321     for(Int_t c1 = 1; c1<=10; c1++){
322
323       sector = str0;
324       sector += c1; // this is one full sector
325       strEntryName1 = strSPD;
326       strEntryName1 += 0;
327       strEntryName1 += strSector;
328       strEntryName1 += (c1-1);
329       if(!gGeoManager->SetAlignableEntry(strEntryName1.Data(),sector.Data()))
330         AliFatal("Unable to set alignable entry!!");    
331       //printf("%s   ==   %s\n",strEntryName1.Data(),sector.Data());
332       
333       for(Int_t c2 =1; c2<=2; c2++){
334         
335         stave = sector;
336         stave += str1;
337         stave += c2;
338         strEntryName2 = strEntryName1;
339         strEntryName2 += strStave;
340         strEntryName2 += (c2-1);
341         if(!gGeoManager->SetAlignableEntry(strEntryName2.Data(),stave.Data()))
342           AliFatal("Unable to set alignable entry!!");    
343         //printf("%s   ==   %s\n",strEntryName2.Data(),stave.Data()); // this is a stave
344
345         for(Int_t c3 =1; c3<=4; c3++){
346           
347           module = stave;
348           module += str2;
349           module += c3;
350           strEntryName3 = strEntryName2;
351           strEntryName3 += strLadder;
352           strEntryName3 += (c3-1);
353           if(!gGeoManager->SetAlignableEntry(strEntryName3.Data(),module.Data()))
354             AliFatal("Unable to set alignable entry!!");    
355           //printf("%s   ==   %s\n",strEntryName3.Data(),module.Data());
356
357           // Creates the TGeo Local to Tracking transformation matrix ...
358           TGeoPNEntry *alignableEntry = gGeoManager->GetAlignableEntry(strEntryName3.Data());
359           const char *path = alignableEntry->GetTitle();
360           if (!gGeoManager->cd(path))
361             AliFatal(Form("Volume path %s not valid!",path));
362           TGeoHMatrix* globMatrix = gGeoManager->GetCurrentMatrix();
363           gtrans = globMatrix->GetTranslation();
364           memcpy(&rotMatrix[0], globMatrix->GetRotationMatrix(), 9*sizeof(Double_t));
365           al = TMath::ATan2(rotMatrix[1],rotMatrix[0]);
366           TGeoHMatrix *matLtoT = new TGeoHMatrix;
367           matLtoT->SetDx( gtrans[0]*TMath::Cos(al)+gtrans[1]*TMath::Sin(al) ); // translation
368           al += TMath::Pi()/2;
369           //      matLtoT->SetDy( gtrans[0]*TMath::Cos(al)+gtrans[1]*TMath::Sin(al) );
370           // Not taking into account the shift w.r.t. sensitive volume
371           // correction with fChip1*0.0001/2. is due to the fact
372           // that the alignable volume is not the sensitive volume
373           //      matLtoT->SetDy( gtrans[0]*TMath::Cos(al)+gtrans[1]*TMath::Sin(al) - fChip1*0.0001/2.);
374           matLtoT->SetDy(-fChip1*0.0001/2.);
375           matLtoT->SetDz(-gtrans[2]);
376           rotMatrix[0]= 0;  rotMatrix[1]= 1;  rotMatrix[2]= 0; // + rotation
377           rotMatrix[3]=-1;  rotMatrix[4]= 0;  rotMatrix[5]= 0; // ! flip in y for the SPD1 only
378           rotMatrix[6]= 0;  rotMatrix[7]= 0;  rotMatrix[8]=-1;
379           TGeoRotation rot;
380           rot.SetMatrix(rotMatrix);
381           matLtoT->MultiplyLeft(&rot);
382           TGeoHMatrix *matTtoL = new TGeoHMatrix(matLtoT->Inverse());
383           delete matLtoT;
384           alignableEntry->SetMatrix(matTtoL);
385         }
386       }
387     }
388   }
389
390   //===== SPD layer2 =====
391   {
392     TString str0 = "ALIC_1/ITSV_1/ITSD_1/IT12_1/I12B_";
393     TString str1 = "/I20B_";
394     TString str2 = "/I1D7_";
395   
396     TString sector;
397     TString stave;
398     TString module;
399
400     for(Int_t c1 = 1; c1<=10; c1++){
401
402       sector = str0;
403       sector += c1; // this is one full sector
404       strEntryName1 = strSPD;
405       strEntryName1 += 1;
406       strEntryName1 += strSector;
407       strEntryName1 += (c1-1);
408       if(!gGeoManager->SetAlignableEntry(strEntryName1.Data(),sector.Data()))
409         AliFatal("Unable to set alignable entry!!");    
410       //printf("%s   ==   %s\n",strEntryName1.Data(),sector.Data());
411       
412       for(Int_t c2 =1; c2<=4; c2++){
413         
414         stave = sector;
415         stave += str1;
416         stave += c2;
417         strEntryName2 = strEntryName1;
418         strEntryName2 += strStave;
419         strEntryName2 += (c2-1);
420         if(!gGeoManager->SetAlignableEntry(strEntryName2.Data(),stave.Data()))
421           AliFatal("Unable to set alignable entry!!");    
422         //printf("%s   ==   %s\n",strEntryName2.Data(),stave.Data()); // this is a stave
423
424         for(Int_t c3 =1; c3<=4; c3++){
425           
426           module = stave;
427           module += str2;
428           module += c3;
429           strEntryName3 = strEntryName2;
430           strEntryName3 += strLadder;
431           strEntryName3 += (c3-1);
432           if(!gGeoManager->SetAlignableEntry(strEntryName3.Data(),module.Data()))
433             AliFatal("Unable to set alignable entry!!");
434           //printf("%s   ==   %s\n",strEntryName3.Data(),module.Data());
435
436           // Creates the TGeo Local to Tracking transformation matrix ...
437           TGeoPNEntry *alignableEntry = gGeoManager->GetAlignableEntry(strEntryName3.Data());
438           const char *path = alignableEntry->GetTitle();
439           if (!gGeoManager->cd(path))
440             AliFatal(Form("Volume path %s not valid!",path));
441           TGeoHMatrix* globMatrix = gGeoManager->GetCurrentMatrix();
442           gtrans = globMatrix->GetTranslation();
443           memcpy(&rotMatrix[0], globMatrix->GetRotationMatrix(), 9*sizeof(Double_t));
444           al = TMath::ATan2(rotMatrix[1],rotMatrix[0]) + TMath::Pi();
445           TGeoHMatrix *matLtoT = new TGeoHMatrix;
446           matLtoT->SetDx(-gtrans[0]*TMath::Cos(al)-gtrans[1]*TMath::Sin(al) ); // translation
447           al += TMath::Pi()/2;
448           //matLtoT->SetDy( gtrans[0]*TMath::Cos(al)+gtrans[1]*TMath::Sin(al) );
449           // not taking into account the shift w.r.t. sensitive volume
450           //      matLtoT->SetDy( gtrans[0]*TMath::Cos(al)+gtrans[1]*TMath::Sin(al) + fChip2*0.0001/2.);
451           matLtoT->SetDy(-fChip2*0.0001/2.);
452           matLtoT->SetDz(-gtrans[2]);
453           rotMatrix[0]= 0;  rotMatrix[1]= 1;  rotMatrix[2]= 0; // + rotation
454           rotMatrix[3]= 1;  rotMatrix[4]= 0;  rotMatrix[5]= 0;
455           rotMatrix[6]= 0;  rotMatrix[7]= 0;  rotMatrix[8]=-1;
456           TGeoRotation rot;
457           rot.SetMatrix(rotMatrix);
458           matLtoT->MultiplyLeft(&rot);
459           TGeoHMatrix *matTtoL = new TGeoHMatrix(matLtoT->Inverse());
460           delete matLtoT;
461           alignableEntry->SetMatrix(matTtoL);
462         }
463       }
464     }
465   }
466
467   //===== SDD layer1 =====
468   {
469     TString str0 = "ALIC_1/ITSV_1/ITSD_1/IT34_1/I004_";
470     TString str1 = "/I302_";
471
472     TString ladder;
473     TString wafer;
474
475     for(Int_t c1 = 1; c1<=14; c1++){
476
477       ladder = str0;
478       ladder += c1; // the set of wafers from one ladder
479       strEntryName1 = strSDD;
480       strEntryName1 += 2;
481       strEntryName1 +=strLadder;
482       strEntryName1 += (c1-1);
483       if(!gGeoManager->SetAlignableEntry(strEntryName1.Data(),ladder.Data()))
484         AliFatal("Unable to set alignable entry!!");    
485       //printf("%s    ==    %s\n",strEntryName1.Data(),ladder.Data());
486
487       for(Int_t c2 =1; c2<=6; c2++){
488
489         wafer = ladder;
490         wafer += str1;
491         wafer += c2;    // one wafer
492         strEntryName2 = strEntryName1;
493         strEntryName2 += strSensor;
494         strEntryName2 += (c2-1);
495         if(!gGeoManager->SetAlignableEntry(strEntryName2.Data(),wafer.Data()))
496           AliFatal("Unable to set alignable entry!!");    
497         //printf("%s    ==    %s\n",strEntryName2.Data(),wafer.Data());
498
499         // Creates the TGeo Local to Tracking transformation matrix ...
500         TGeoPNEntry *alignableEntry = gGeoManager->GetAlignableEntry(strEntryName2.Data());
501         const char *path = alignableEntry->GetTitle();
502         if (!gGeoManager->cd(path))
503           AliFatal(Form("Volume path %s not valid!",path));
504         TGeoHMatrix* globMatrix = gGeoManager->GetCurrentMatrix();
505         gtrans = globMatrix->GetTranslation();
506         memcpy(&rotMatrix[0], globMatrix->GetRotationMatrix(), 9*sizeof(Double_t));
507         al = TMath::ATan2(rotMatrix[1],rotMatrix[0]) + TMath::Pi();
508         TGeoHMatrix *matLtoT = new TGeoHMatrix;
509         matLtoT->SetDx(-gtrans[0]*TMath::Cos(al)-gtrans[1]*TMath::Sin(al) ); // translation
510         al += TMath::Pi()/2;
511         //      matLtoT->SetDy( gtrans[0]*TMath::Cos(al)+gtrans[1]*TMath::Sin(al) );
512         matLtoT->SetDy( 0 );
513         matLtoT->SetDz(-gtrans[2]);
514         rotMatrix[0]=0;  rotMatrix[1]=1;  rotMatrix[2]=0; // + rotation
515         rotMatrix[3]=1;  rotMatrix[4]=0;  rotMatrix[5]=0;
516         rotMatrix[6]=0;  rotMatrix[7]=0;  rotMatrix[8]=-1;
517         TGeoRotation rot;
518         rot.SetMatrix(rotMatrix);
519         matLtoT->MultiplyLeft(&rot);
520         TGeoHMatrix *matTtoL = new TGeoHMatrix(matLtoT->Inverse());
521         delete matLtoT;
522         alignableEntry->SetMatrix(matTtoL);
523       }
524     }
525   }
526
527   //===== SDD layer2 =====
528   {
529     TString str0 = "ALIC_1/ITSV_1/ITSD_1/IT34_1/I005_";
530     TString str1 = "/I402_";
531
532     TString ladder;
533     TString wafer;
534
535     for(Int_t c1 = 1; c1<=22; c1++){
536
537       ladder = str0;
538       ladder += c1; // the set of wafers from one ladder
539       strEntryName1 = strSDD;
540       strEntryName1 += 3;
541       strEntryName1 +=strLadder;
542       strEntryName1 += (c1-1);
543       if(!gGeoManager->SetAlignableEntry(strEntryName1.Data(),ladder.Data()))
544         AliFatal("Unable to set alignable entry!!");    
545       //printf("%s    ==    %s\n",strEntryName1.Data(),ladder.Data());
546
547       for(Int_t c2 =1; c2<=8; c2++){
548
549         wafer = ladder;
550         wafer += str1;
551         wafer += c2;    // one wafer
552         strEntryName2 = strEntryName1;
553         strEntryName2 += strSensor;
554         strEntryName2 += (c2-1);
555         if(!gGeoManager->SetAlignableEntry(strEntryName2.Data(),wafer.Data()))
556           AliFatal("Unable to set alignable entry!!");    
557         //printf("%s    ==    %s\n",strEntryName2.Data(),wafer.Data());
558
559         // Creates the TGeo Local to Tracking transformation matrix ...
560         TGeoPNEntry *alignableEntry = gGeoManager->GetAlignableEntry(strEntryName2.Data());
561         const char *path = alignableEntry->GetTitle();
562         if (!gGeoManager->cd(path))
563           AliFatal(Form("Volume path %s not valid!",path));
564         TGeoHMatrix* globMatrix = gGeoManager->GetCurrentMatrix();
565         gtrans = globMatrix->GetTranslation();
566         memcpy(&rotMatrix[0], globMatrix->GetRotationMatrix(), 9*sizeof(Double_t));
567         al = TMath::ATan2(rotMatrix[1],rotMatrix[0]) + TMath::Pi();
568         TGeoHMatrix *matLtoT = new TGeoHMatrix;
569         matLtoT->SetDx(-gtrans[0]*TMath::Cos(al)-gtrans[1]*TMath::Sin(al) ); // translation
570         al += TMath::Pi()/2;
571         //      matLtoT->SetDy( gtrans[0]*TMath::Cos(al)+gtrans[1]*TMath::Sin(al) );
572         matLtoT->SetDy( 0 );
573         matLtoT->SetDz(-gtrans[2]);
574         rotMatrix[0]=0;  rotMatrix[1]=1;  rotMatrix[2]=0; // + rotation
575         rotMatrix[3]=1;  rotMatrix[4]=0;  rotMatrix[5]=0;
576         rotMatrix[6]=0;  rotMatrix[7]=0;  rotMatrix[8]=-1;
577         TGeoRotation rot;
578         rot.SetMatrix(rotMatrix);
579         matLtoT->MultiplyLeft(&rot);
580         TGeoHMatrix *matTtoL = new TGeoHMatrix(matLtoT->Inverse());
581         delete matLtoT;
582         alignableEntry->SetMatrix(matTtoL);
583       }
584     }
585   }
586
587   //===== SSD layer1 =====
588   {
589     TString str0 = "ALIC_1/ITSV_1/ITSD_1/IT56_1/I565_";
590     TString str1 = "/I562_";
591
592     TString ladder;
593     TString wafer;
594
595     for(Int_t c1 = 1; c1<=34; c1++){
596
597       ladder = str0;
598       ladder += c1; // the set of wafers from one ladder
599       strEntryName1 = strSSD;
600       strEntryName1 += 4;
601       strEntryName1 +=strLadder;
602       strEntryName1 += (c1-1);
603       if(!gGeoManager->SetAlignableEntry(strEntryName1.Data(),ladder.Data()))
604         AliFatal("Unable to set alignable entry!!");    
605       //printf("%s    ==    %s\n",strEntryName1.Data(),ladder.Data());
606
607       for(Int_t c2 = 1; c2<=22; c2++){
608
609         wafer = ladder;
610         wafer += str1;
611         wafer += c2;     // one wafer
612         strEntryName2 = strEntryName1;
613         strEntryName2 += strSensor;
614         strEntryName2 += (c2-1);
615         if(!gGeoManager->SetAlignableEntry(strEntryName2.Data(),wafer.Data()))
616           AliFatal("Unable to set alignable entry!!");    
617         //printf("%s    ==    %s\n",strEntryName2.Data(),wafer.Data());
618
619         // Creates the TGeo Local to Tracking transformation matrix ...
620         TGeoPNEntry *alignableEntry = gGeoManager->GetAlignableEntry(strEntryName2.Data());
621         const char *path = alignableEntry->GetTitle();
622         if (!gGeoManager->cd(path))
623           AliFatal(Form("Volume path %s not valid!",path));
624         TGeoHMatrix* globMatrix = gGeoManager->GetCurrentMatrix();
625         gtrans = globMatrix->GetTranslation();
626         memcpy(&rotMatrix[0], globMatrix->GetRotationMatrix(), 9*sizeof(Double_t));
627         al = TMath::ATan2(rotMatrix[1],rotMatrix[0]) + TMath::Pi();
628         TGeoHMatrix *matLtoT = new TGeoHMatrix;
629         matLtoT->SetDx(-gtrans[0]*TMath::Cos(al)-gtrans[1]*TMath::Sin(al) ); // translation
630         al += TMath::Pi()/2;
631         //      matLtoT->SetDy( gtrans[0]*TMath::Cos(al)+gtrans[1]*TMath::Sin(al) );
632         matLtoT->SetDy( 0 );
633         matLtoT->SetDz(-gtrans[2]);
634         rotMatrix[0]=0;  rotMatrix[1]=1;  rotMatrix[2]=0; // + rotation
635         rotMatrix[3]=1;  rotMatrix[4]=0;  rotMatrix[5]=0;
636         rotMatrix[6]=0;  rotMatrix[7]=0;  rotMatrix[8]=-1;
637         TGeoRotation rot;
638         rot.SetMatrix(rotMatrix);
639         matLtoT->MultiplyLeft(&rot);
640         TGeoHMatrix *matTtoL = new TGeoHMatrix(matLtoT->Inverse());
641         delete matLtoT;
642         alignableEntry->SetMatrix(matTtoL);
643       }
644     }
645   }
646
647   //===== SSD layer2 =====
648   {
649     TString str0 = "ALIC_1/ITSV_1/ITSD_1/IT56_1/I569_";
650     TString str1 = "/I566_";
651
652     TString ladder;
653     TString wafer;
654
655     for(Int_t c1 = 1; c1<=38; c1++){
656
657       ladder = str0;
658       ladder += c1; // the set of wafers from one ladder
659       strEntryName1 = strSSD;
660       strEntryName1 += 5;
661       strEntryName1 +=strLadder;
662       strEntryName1 += (c1-1);
663       if(!gGeoManager->SetAlignableEntry(strEntryName1.Data(),ladder.Data()))
664         AliFatal("Unable to set alignable entry!!");    
665       //printf("%s    ==    %s\n",strEntryName1.Data(),ladder.Data());
666
667       for(Int_t c2 = 1; c2<=25; c2++){
668
669         wafer = ladder;
670         wafer += str1;
671         wafer += c2;     // one wafer
672         strEntryName2 = strEntryName1;
673         strEntryName2 += strSensor;
674         strEntryName2 += (c2-1);
675         if(!gGeoManager->SetAlignableEntry(strEntryName2.Data(),wafer.Data()))
676           AliFatal("Unable to set alignable entry!!");    
677         //printf("%s    ==    %s\n",strEntryName2.Data(),wafer.Data());
678
679         // Creates the TGeo Local to Tracking transformation matrix ...
680         TGeoPNEntry *alignableEntry = gGeoManager->GetAlignableEntry(strEntryName2.Data());
681         const char *path = alignableEntry->GetTitle();
682         if (!gGeoManager->cd(path))
683           AliFatal(Form("Volume path %s not valid!",path));
684         TGeoHMatrix* globMatrix = gGeoManager->GetCurrentMatrix();
685         gtrans = globMatrix->GetTranslation();
686         memcpy(&rotMatrix[0], globMatrix->GetRotationMatrix(), 9*sizeof(Double_t));
687         al = TMath::ATan2(rotMatrix[1],rotMatrix[0]) + TMath::Pi();
688         TGeoHMatrix *matLtoT = new TGeoHMatrix;
689         matLtoT->SetDx(-gtrans[0]*TMath::Cos(al)-gtrans[1]*TMath::Sin(al) ); // translation
690         al += TMath::Pi()/2;
691         //      matLtoT->SetDy( gtrans[0]*TMath::Cos(al)+gtrans[1]*TMath::Sin(al) );
692         matLtoT->SetDy( 0 );
693         matLtoT->SetDz(-gtrans[2]);
694         rotMatrix[0]=0;  rotMatrix[1]=1;  rotMatrix[2]=0; // + rotation
695         rotMatrix[3]=1;  rotMatrix[4]=0;  rotMatrix[5]=0;
696         rotMatrix[6]=0;  rotMatrix[7]=0;  rotMatrix[8]=-1;
697         TGeoRotation rot;
698         rot.SetMatrix(rotMatrix);
699         matLtoT->MultiplyLeft(&rot);
700         TGeoHMatrix *matTtoL = new TGeoHMatrix(matLtoT->Inverse());
701         delete matLtoT;
702         alignableEntry->SetMatrix(matTtoL);
703       }
704     }
705   }
706 }
707 //______________________________________________________________________
708 void AliITSvPPRasymmFMD::BuildGeometry(){
709     //    Geometry builder for the ITS version 10. Event Display geometry.
710     // Inputs:
711     //   none.
712     // Outputs:
713     //   none.
714     // Return:
715     //   none.
716
717     TNode *node, *top;
718     
719     const Int_t kColorITS=kYellow;
720     //
721     top = gAlice->GetGeometry()->GetNode("alice");
722
723
724     new TTUBE("S_layer1","Layer1 of ITS","void",
725               3.8095,3.8095+1.03*9.36/100.,14.35);
726     top->cd();
727     node = new TNode("Layer1","Layer1","S_layer1",0,0,0,"");
728     node->SetLineColor(kColorITS);
729     fNodes->Add(node);
730
731     new TTUBE("S_layer2","Layer2 of ITS","void",7.,7.+1.03*9.36/100.,14.35);
732     top->cd();
733     node = new TNode("Layer2","Layer2","S_layer2",0,0,0,"");
734     node->SetLineColor(kColorITS);
735     fNodes->Add(node);
736
737     new TTUBE("S_layer3","Layer3 of ITS","void",15.,15.+0.94*9.36/100.,25.1);
738     top->cd();
739     node = new TNode("Layer3","Layer3","S_layer3",0,0,0,"");
740     node->SetLineColor(kColorITS);
741     fNodes->Add(node);
742
743     new TTUBE("S_layer4","Layer4 of ITS","void",24.1,24.1+0.95*9.36/100.,32.1);
744     top->cd();
745     node = new TNode("Layer4","Layer4","S_layer4",0,0,0,"");
746     node->SetLineColor(kColorITS);
747     fNodes->Add(node);
748
749     new TTUBE("S_layer5","Layer5 of ITS","void",
750               38.5,38.5+0.91*9.36/100.,49.405);
751     top->cd();
752     node = new TNode("Layer5","Layer5","S_layer5",0,0,0,"");
753     node->SetLineColor(kColorITS);
754     fNodes->Add(node);
755
756     new TTUBE("S_layer6","Layer6 of ITS","void",
757               43.5765,43.5765+0.87*9.36/100.,55.27);
758     top->cd();
759     node = new TNode("Layer6","Layer6","S_layer6",0,0,0,"");
760     node->SetLineColor(kColorITS);
761     fNodes->Add(node);
762 }
763 //______________________________________________________________________
764 void AliITSvPPRasymmFMD::CreateGeometry(){
765     //    This routine defines and Creates the geometry for version 10 of 
766     // the ITS.
767     // Inputs:
768     //   none.
769     // Outputs:
770     //   none.
771     // Return:
772     //   none.
773
774     //Begin_Html
775     /*
776       <img src="picts/ITS/ITS_full_vPPRasymm.jpg">
777       </pre>
778       <br clear=left>
779       <font size=+2 color=red>
780       <p>This shows the full ITS geometry.
781       </font>
782       <img src="picts/ITS/ITS_SPD_Barrel_vPPRasymm.jpg">
783       </pre>
784       < br clear=left>
785       <font size=+2 color=red>
786       <p>This shows the full SPD Barrel of the ITS geometry.
787       </font>
788       <img src="picts/ITS/ITS_SDD_Barrel_vPPRasymm.jpg">
789       </pre>
790       <br clear=left>
791       <font size=+2 color=red>
792       <p>This shows the full SDD Barrel of the ITS geometry.
793       </font>
794       <img src="picts/ITS/ITS_SSD_Barrel_vPPRasymm.jpg">
795       </pre>
796       <br clear=left>
797       <font size=+2 color=red>
798       <p>This shows the full SSD Barrel of the ITS geometry.
799       </font>
800     */
801     //End_Html
802     //INNER RADII OF THE SILICON LAYERS 
803     // Float_t rl[6]    = { 3.8095,7.,15.,24.,38.1,43.5765 };   
804     //THICKNESSES OF LAYERS (in % radiation length)
805     Float_t drl[6]   = { 1.03,1.03,0.94,0.95,0.91,0.87 };   
806     //HALF LENGTHS OF LAYERS  
807     // Float_t dzl[6]   = { 14.35,14.35,25.1,32.1,49.405,55.27 };
808     //LENGTHS OF END-LADDER BOXES (ALL INCLUDED)
809     // Float_t dzb[6]   = { 12.4,12.4,13.5,15.,7.5,7.5 };   
810     //THICKNESSES OF END-LADDER BOXES (ALL INCLUDED)
811     // Float_t drb[6]   = { rl[1]-rl[0],0.2,5.,5.,4.,4. };
812
813
814     Float_t dits[100], rlim, zmax;
815     // Float_t zpos;
816     // Float_t pcits[50]
817     Float_t ztpc;
818     Int_t idrotm[1999], i;
819     Float_t dgh[100];
820
821
822     // Define some variables for SPD
823
824     Float_t dits1[3], di101[3], di107[3], di10b[3], di106[3];// for layer 1 
825     Float_t di103[3], di10a[3], di102[3];                    // for layer 1
826     Float_t dits2[3], di1d1[3], di1d7[3], di20b[3], di1d6[3];// for layer 2
827     Float_t di1d3[3], di20a[3], di1d2[3];                    // for layer 2  
828     Float_t di108[3], di104[3];                              // for both layers
829
830     Float_t ddet1=200.;     // total detector thickness on layer 1 (micron)
831     Float_t dchip1=200.;    // total chip thickness on layer 1 (micron)
832   
833     Float_t ddet2=200.;     // total detector thickness on layer 2 (micron)
834     Float_t dchip2=200.;    // total chip thickness on layer 2 (micron)
835
836     Float_t dbus=300.;      // total bus thickness on both layers (micron)
837
838     // These constant character strings are set by cvs during commit
839     // do not change them unless you know what you are doing!
840     const Char_t *cvsDate="$Date$";
841     const Char_t *cvsRevision="$Revision$";
842
843     ddet1 = GetThicknessDet1();
844     ddet2 = GetThicknessDet2();
845     dchip1 = GetThicknessChip1();
846     dchip2 = GetThicknessChip2();    
847
848     if(ddet1 < 100. || ddet1 > 300.) {
849       AliWarning("The detector thickness for layer 1 is outside ");
850       AliWarning("the range of [100,300] microns. The default value of 200 microns ");
851       AliWarning("will be used.");
852         ddet1=200.;
853     } // end if
854   
855     if(ddet2 < 100. || ddet2 > 300.) {
856       AliWarning("The detector thickness for layer 2 is outside ");
857       AliWarning("the range of [100,300] microns. The default value of 200 microns ");
858       AliWarning("will be used.");
859         ddet2=200.;
860     }// end if
861   
862     if(dchip1 < 100. || dchip1 > 300.) {
863       AliWarning("The chip thickness for layer 1 is outside");
864       AliWarning("the range of [100,300] microns. The default value of 200 microns");
865       AliWarning("will be used.");
866       dchip1=200.;
867     }// end if
868   
869     if(dchip2 < 100. || dchip2 > 300.) {
870       AliWarning("The chip thickness for layer 2 is outside");
871       AliWarning("the range of [100,300] microns. The default value of 200 microns");
872       AliWarning("will be used");
873       dchip2=200.;
874     }// end if
875
876     Int_t rails = 1;  // flag for rails (1 --> rails in; 0 --> rails out)
877
878     Int_t fluid = 1;  // flag for the cooling fluid (1 --> water; 0 --> freon)
879                       // This option is maintained for SDD and SSD only
880                       // For SPD the cooling liquid is C4F10
881     rails = GetRails();
882
883     fluid = GetCoolingFluid();
884
885     if(rails != 0 && rails != 1) {
886       AliWarning("The switch for rails is not set neither");
887       AliWarning("to 0 (rails out) nor to 1 (rails in). The default value of");
888       AliWarning("1 (rails in) will be used");
889       rails=1;
890     }// end if
891
892
893     AliDebug(1,Form("Detector thickness on layer 1 is set to %f microns",ddet1));
894     AliDebug(1,Form("Chip thickness on layer 1 is set to %f microns",dchip1));
895     AliDebug(1,Form("Detector thickness on layer 2 is set to %f microns",ddet2));
896     AliDebug(1,Form("Chip thickness on layer 2 is set to %f microns",dchip2));
897     if(rails == 0 ) {
898       AliDebug(1,"Rails are out.");
899     } else {
900       AliDebug(1,"Rails are in.");
901     }// end if
902
903     ddet1  = ddet1*0.0001/2.; // conversion from tot length in um to half in cm
904     ddet2  = ddet2*0.0001/2.; // conversion from tot length in um to half in cm
905     dchip1 = dchip1*0.0001/2.;// conversion from tot length in um to half in cm
906     dchip2 = dchip2*0.0001/2.;// conversion from tot length in um to half in cm
907     dbus   = dbus*0.0001/2.;  // conversion from tot length in um to half in cm
908
909     Float_t deltax, deltay; 
910
911     Int_t thickness = fMinorVersion/10;
912     Int_t option    = fMinorVersion - 10*thickness;
913
914
915     // Define some variables for SDD
916
917
918     Float_t sin30, cos30;
919
920     // SDD electronics+services main volumes
921     Float_t iI018dits[3], iI024dits[3], iI047dits[3], iI048dits[3];
922
923     // SDD detector ladder
924
925     Float_t iI302dits[3], iI402dits[3], iI004dits[3], iI005dits[3];
926     Float_t ySDDsep = 0.20;
927     Float_t ySDD;
928     Int_t   iSDD;
929     Float_t zSDDlay3[6] = { 18.55, 10.95, 3.70, -3.70,-11.20,-18.35};
930     Float_t zSDDlay4[8] = { 25.75, 18.60, 11.00, 3.70, -3.70,-11.20,
931                              -18.45,-26.05};
932
933     // ladder foot and end-ladder (frame and cooling)
934     Float_t iI028dits[3], iI420dits[3], iI421dits[3], iI422dits[6], iI423dits[3];
935     Float_t iI424dits[3], xI424, yI424;
936     Float_t iI425dits[3];
937     Int_t    indI425;
938     Float_t iI029dits[4], iI030dits[4], iI031dits[3], iI032dits[3];
939
940     // SDD ladder frame and cooling
941     Float_t iSDDCoolPipe[3] = {1.7000, -0.5500, 0.0000};
942     Float_t iI035dits[3], iI037dits[3], iI038dits[3];
943     Float_t iI039dits[3], xI039, yI039;
944     Float_t iI041dits[5];
945
946     // SDD hybrid, chips and capacitors
947     Float_t iI050dits[3], xI050, yI050;
948     Float_t iI052dits[3], xI052, yI052;
949     Float_t iI042dits[3], xI042, yI042;
950     Float_t xI042space = 0.17;
951     Float_t iI043dits[3], xI043, yI043;
952     Float_t xI043space = 0.17;
953     Float_t zchip, zChipSpace;
954     Float_t iI051dits[3], xI051, yI051, zI051, yI051space, xcap;
955     Int_t     ichip, icap;
956
957     // SDD microcables
958     Float_t iI044dits[4], xI044, yI044, volI044;
959     Float_t xHV, yHV, zHV, xLV, yLV, zLV;
960     Char_t   nameHV[5], nameLV[5];
961
962
963     // Define media off-set
964   
965     Int_t *idtmed = fIdtmed->GetArray()-199;
966
967   
968     // Rotation matrices
969   
970     // SPD - option 'a' (this is NOT the default so leave commented)
971   
972   
973     if (option == 1) {
974         AliMatrix(idrotm[201],90.0,90.0,90.0,180.0,0.0,0.0);
975         AliMatrix(idrotm[202],90.0,90.0,90.0,0.0,0.0,0.0);
976         AliMatrix(idrotm[203],90.0,350.0,90.0,260.0,0.0,0.0);
977         AliMatrix(idrotm[204],90.0,170.0,90.0,80.0,0.0,0.0);
978         AliMatrix(idrotm[205],90.0,10.0,90.0,100.0,0.0,0.0);
979         AliMatrix(idrotm[206],90.0,190.0,90.0,280.0,0.0,0.0);
980         AliMatrix(idrotm[207],90.0,342.0,90.0,72.0,0.0,0.0);
981         AliMatrix(idrotm[208],90.0,156.999893,90.0,246.999893,0.0,0.0);
982         AliMatrix(idrotm[209],90.0,147.999802,90.0,237.999893,0.0,0.0);
983         AliMatrix(idrotm[210],90.0,138.999802,90.0,228.999802,0.0,0.0);
984         AliMatrix(idrotm[211],90.0,129.999802,90.0,219.999802,0.0,0.0);
985         AliMatrix(idrotm[212],90.0,36.7896,90.0,126.789597,0.0,0.0);
986         AliMatrix(idrotm[213],90.0,343.579712,90.0,73.579697,0.0,0.0);
987         AliMatrix(idrotm[214],90.0,95.413696,90.0,185.413696,0.0,0.0);
988         AliMatrix(idrotm[215],90.0,5.4141,90.0,95.414101,0.0,0.0);
989         AliMatrix(idrotm[216],90.0,318.296906,90.0,48.296902,0.0,0.0);
990         AliMatrix(idrotm[217],90.0,67.000099,90.0,157.000107,0.0,0.0);
991         AliMatrix(idrotm[218],90.0,337.003998,90.0,67.003998,0.0,0.0);
992         AliMatrix(idrotm[219],90.0,247.000305,90.0,337.000305,0.0,0.0);
993         AliMatrix(idrotm[220],90.0,305.633514,90.0,35.633499,0.0,0.0);
994         AliMatrix(idrotm[221],90.0,58.000198,90.0,148.000198,0.0,0.0);
995         AliMatrix(idrotm[222],90.0,327.997101,90.0,57.997101,0.0,0.0 );
996         AliMatrix(idrotm[223],90.0,237.994202,90.0,327.994202,0.0,0.0);
997         AliMatrix(idrotm[224],90.0,296.627502,90.0,26.627399,0.0,0.0);
998         AliMatrix(idrotm[225],90.0,48.994099,90.0,138.994095,0.0,0.0);
999         AliMatrix(idrotm[226],90.0,318.990997,90.0,48.991001,0.0,0.0);
1000         AliMatrix(idrotm[227],90.0,228.988205,90.0,318.98819,0.0,0.0);
1001         AliMatrix(idrotm[228],90.0,287.621399,90.0,17.621401,0.0,0.0);
1002         AliMatrix(idrotm[229],90.0,39.988098,90.0,129.988098,0.0,0.0);
1003         AliMatrix(idrotm[230],90.0,309.984985,90.0,39.985001,0.0,0.0);
1004         AliMatrix(idrotm[231],90.0,327.2612,90.0,57.2612,0.0,0.0);
1005         AliMatrix(idrotm[232],90.0,237.261398,90.0,327.261414,0.0,0.0);
1006         AliMatrix(idrotm[233],90.0,252.000504,90.0,342.000488,0.0,0.0 );
1007         AliMatrix(idrotm[234],90.0,71.9991,90.0,161.9991,0.0,0.0);
1008         AliMatrix(idrotm[235],90.0,270.0,90.0,0.0,0.0,0.0);
1009         AliMatrix(idrotm[236],90.0,180.013702,90.0,270.013702,0.0,0.0);
1010         AliMatrix(idrotm[237],90.0,0.0,90.0,90.0,0.0,0.0);
1011         AliMatrix(idrotm[238],90.0,144.0,90.0,234.0,0.0,0.0);
1012         AliMatrix(idrotm[239],90.0,216.0,90.0,306.0,0.0,0.0);
1013         AliMatrix(idrotm[240],90.0,288.0,90.0,18.0,0.0,0.0);
1014         AliMatrix(idrotm[241],90.0,324.0,90.0,54.0,0.0,0.0);
1015         AliMatrix(idrotm[242],90.0,36.0,90.0,126.0,0.0,0.0);
1016         AliMatrix(idrotm[243],90.0,108.0,90.0,198.0,0.0,0.0);
1017         AliMatrix(idrotm[244],90.0,180.0,90.0,270.0,0.0,0.0);
1018         AliMatrix(idrotm[245],90.0,162.0,90.0,252.0,0.0,0.0);
1019         AliMatrix(idrotm[246],90.0,310.0,90.0,40.0,0.0,0.0);
1020         AliMatrix(idrotm[247],90.0,319.0,90.0,49.0,0.0,0.0);
1021         AliMatrix(idrotm[248],90.0,328.0,90.0,58.0,0.0,0.0);
1022         AliMatrix(idrotm[249],90.0,337.0,90.0,67.0,0.0,0.0);
1023         AliMatrix(idrotm[1003],90.0,73.5,90.0,163.5,0.0,0.0);
1024         AliMatrix(idrotm[1011],90.0,342.0,90.0,72.0,0.0,0.0);
1025         AliMatrix(idrotm[1039],90.0,72.0,90.0,162.0,0.0,0.0);
1026         AliMatrix(idrotm[1043],90.0,66.91,90.0,156.91,0.0,0.0);
1027         AliMatrix(idrotm[1065],90.0,144.0,90.0,234.0,0.0,0.0);
1028         AliMatrix(idrotm[1078],90.0,180.0,90.0,270.0,0.0,0.0);
1029         AliMatrix(idrotm[1088],90.0,57.41,90.0,147.41,0.0,0.0);
1030         AliMatrix(idrotm[1089],90.0,333.0,90.0,63.0,0.0,0.0);
1031         AliMatrix(idrotm[1090],90.0,351.0,90.0,81.0,0.0,0.0);
1032         AliMatrix(idrotm[1091],90.0,216.0,90.0,306.0,0.0,0.0);
1033         AliMatrix(idrotm[1092],90.0,27.0,90.0,117.0,0.0,0.0);
1034         AliMatrix(idrotm[1093],90.0,18.0,90.0,108.0,0.0,0.0);
1035         AliMatrix(idrotm[1094],90.0,9.0,90.0,99.0,0.0,0.0);
1036         AliMatrix(idrotm[1104],90.0,252.0,90.0,342.0,0.0,0.0);
1037         AliMatrix(idrotm[1106],90.0,36.0,90.0,126.0,0.0,0.0);
1038         AliMatrix(idrotm[1107],90.0,108.0,90.0,198.0,0.0,0.0);
1039         AliMatrix(idrotm[1108],90.0,324.0,90.0,54.0,180.0,0.0);
1040         AliMatrix(idrotm[1109],90.0,0.0,90.0,90.0,180.0,0.0);
1041         AliMatrix(idrotm[1110],90.0,36.0,90.0,126.0,180.0,0.0);
1042         AliMatrix(idrotm[1111],90.0,72.0,90.0,162.0,180.0,0.0);
1043         AliMatrix(idrotm[1112],90.0,108.0,90.0,198.0,180.0,0.0);
1044         AliMatrix(idrotm[1113],90.0,144.0,90.0,234.0,180.0,0.0);
1045         AliMatrix(idrotm[1114],90.0,180.0,90.0,270.0,180.0,0.0);
1046         AliMatrix(idrotm[1115],90.0,216.0,90.0,306.0,180.0,0.0);
1047         AliMatrix(idrotm[1116],90.0,252.0,90.0,342.0,180.0,0.0);
1048         AliMatrix(idrotm[1117],90.0,288.0,90.0,18.0,0.0,0.0);
1049         AliMatrix(idrotm[1118],90.0,288.0,90.0,18.0,180.0,0.0);
1050         AliMatrix(idrotm[1130],90.0,324.0,90.0,54.0,0.0,0.0);
1051     }// end if option == 1
1052
1053     // SPD - option 'b' (this is the default)
1054
1055     if (option == 2) {
1056         AliMatrix(idrotm[201],90.0,0.0,90.0,90.0,0.0,0.0);
1057         AliMatrix(idrotm[202],90.0,90.0,90.0,0.0,0.0,0.0);
1058         AliMatrix(idrotm[203],90.0,350.0,90.0,260.0,0.0,0.0);
1059         AliMatrix(idrotm[204],90.0,170.0,90.0,80.0,0.0,0.0);
1060         AliMatrix(idrotm[205],90.0,10.0,90.0,100.0,0.0,0.0);
1061         AliMatrix(idrotm[206],90.0,190.0,90.0,280.0,0.0,0.0);
1062         AliMatrix(idrotm[207],90.0,342.0,90.0,72.0,0.0,0.0);
1063         AliMatrix(idrotm[208],90.0,156.999893,90.0,246.999893,0.0,0.0);
1064         AliMatrix(idrotm[209],90.0,147.999802,90.0,237.999893,0.0,0.0);
1065         AliMatrix(idrotm[210],90.0,138.999802,90.0,228.999802,0.0,0.0);
1066         AliMatrix(idrotm[211],90.0,129.999802,90.0,219.999802,0.0,0.0);
1067         AliMatrix(idrotm[212],90.0,36.7896,90.0,126.789597,0.0,0.0);
1068         AliMatrix(idrotm[213],90.0,343.579712,90.0,73.579697,0.0,0.0);
1069         AliMatrix(idrotm[214],90.0,95.413696,90.0,185.413696,0.0,0.0);
1070         AliMatrix(idrotm[215],90.0,5.4141,90.0,95.414101,0.0,0.0);
1071         AliMatrix(idrotm[216],90.0,318.296906,90.0,48.296902,0.0,0.0);
1072         AliMatrix(idrotm[217],90.0,67.000099,90.0,157.000107,0.0,0.0);
1073         AliMatrix(idrotm[218],90.0,337.003998,90.0,67.003998,0.0,0.0);
1074         AliMatrix(idrotm[219],90.0,247.000305,90.0,337.000305,0.0,0.0);
1075         AliMatrix(idrotm[220],90.0,305.633514,90.0,35.633499,0.0,0.0);
1076
1077         AliMatrix(idrotm[221],90.0,58.000198,90.0,148.000198,0.0,0.0);
1078         AliMatrix(idrotm[222],90.0,327.997101,90.0,57.997101,0.0,0.0);
1079         AliMatrix(idrotm[223],90.0,237.994202,90.0,327.994202,0.0,0.0);
1080         AliMatrix(idrotm[224],90.0,296.627502,90.0,26.627399,0.0,0.0);
1081         AliMatrix(idrotm[225],90.0,48.994099,90.0,138.994095,0.0,0.0);
1082         AliMatrix(idrotm[226],90.0,318.990997,90.0,48.991001,0.0,0.0);
1083         AliMatrix(idrotm[227],90.0,228.988205,90.0,318.98819,0.0,0.0);
1084         AliMatrix(idrotm[228],90.0,287.621399,90.0,17.621401,0.0,0.0);
1085         AliMatrix(idrotm[229],90.0,39.988098,90.0,129.988098,0.0,0.0);
1086         AliMatrix(idrotm[230],90.0,309.984985,90.0,39.985001,0.0,0.0);
1087         AliMatrix(idrotm[231],90.0,327.2612,90.0,57.2612,0.0,0.0);
1088         AliMatrix(idrotm[232],90.0,237.261398,90.0,327.261414,0.0,0.0);
1089         AliMatrix(idrotm[233],90.0,252.000504,90.0,342.000488,0.0,0.0);
1090         AliMatrix(idrotm[234],90.0,71.9991,90.0,161.9991,0.0,0.0);
1091         AliMatrix(idrotm[235],90.0,270.0,90.0,0.0,0.0,0.0);
1092         AliMatrix(idrotm[236],90.0,180.013702,90.0,270.013702,0.0,0.0);
1093         AliMatrix(idrotm[237],90.0,90.0,90.0,180.0,0.0,0.0);
1094         AliMatrix(idrotm[238],90.0,180.0,90.0,270.0,0.0,0.0);
1095         AliMatrix(idrotm[239],90.0,162.0,90.0,252.0,0.0,0.0);
1096         AliMatrix(idrotm[240],90.0,310.0,90.0,40.0,0.0,0.0);
1097         AliMatrix(idrotm[241],90.0,319.0,90.0,49.0,0.0,0.0);
1098         AliMatrix(idrotm[242],90.0,328.0,90.0,58.0,0.0,0.0);
1099         AliMatrix(idrotm[243],90.0,337.0,90.0,67.0,0.0,0.0);
1100         AliMatrix(idrotm[244],90.0,216.0,90.0,306.0,0.0,0.0);
1101         AliMatrix(idrotm[245],90.0,36.0,90.0,126.0,0.0,0.0);
1102         AliMatrix(idrotm[246],90.0,108.0,90.0,198.0,0.0,0.0);
1103         AliMatrix(idrotm[247],90.0,144.0,90.0,234.0,0.0,0.0);
1104         AliMatrix(idrotm[248],90.0,288.0,90.0,18.0,0.0,0.0);
1105         AliMatrix(idrotm[249],90.0,324.0,90.0,54.0,0.0,0.0);  
1106         AliMatrix(idrotm[1003],90.0,73.5,90.0,163.5,0.0,0.0);
1107         AliMatrix(idrotm[1011],90.0,342.0,90.0,72.0,0.0,0.0);
1108         AliMatrix(idrotm[1039],90.0,72.0,90.0,162.0,0.0,0.0);
1109         AliMatrix(idrotm[1043],90.0,66.91,90.0,156.91,0.0,0.0);
1110         AliMatrix(idrotm[1065],90.0,144.0,90.0,234.0,0.0,0.0);
1111         AliMatrix(idrotm[1078],90.0,180.0,90.0,270.0,0.0,0.0);
1112         AliMatrix(idrotm[1088],90.0,57.41,90.0,147.41,0.0,0.0);
1113         AliMatrix(idrotm[1089],90.0,333.0,90.0,63.0,0.0,0.0);
1114         AliMatrix(idrotm[1090],90.0,351.0,90.0,81.0,0.0,0.0);
1115         AliMatrix(idrotm[1091],90.0,216.0,90.0,306.0,0.0,0.0);
1116         AliMatrix(idrotm[1092],90.0,27.0,90.0,117.0,0.0,0.0);
1117         AliMatrix(idrotm[1093],90.0,18.0,90.0,108.0,0.0,0.0);
1118         AliMatrix(idrotm[1094],90.0,9.0,90.0,99.0,0.0,0.0);
1119         AliMatrix(idrotm[1104],90.0,252.0,90.0,342.0,0.0,0.0);
1120         AliMatrix(idrotm[1106],90.0,36.0,90.0,126.0,0.0,0.0);
1121         AliMatrix(idrotm[1107],90.0,108.0,90.0,198.0,0.0,0.0);
1122         AliMatrix(idrotm[1108],90.0,324.0,90.0,54.0,180.0,0.0);
1123         AliMatrix(idrotm[1109],90.0,0.0,90.0,90.0,180.0,0.0);
1124         AliMatrix(idrotm[1110],90.0,36.0,90.0,126.0,180.0,0.0);
1125         AliMatrix(idrotm[1111],90.0,72.0,90.0,162.0,180.0,0.0);
1126         AliMatrix(idrotm[1112],90.0,108.0,90.0,198.0,180.0,0.0);
1127         AliMatrix(idrotm[1113],90.0,144.0,90.0,234.0,180.0,0.0);
1128         AliMatrix(idrotm[1114],90.0,180.0,90.0,270.0,180.0,0.0);
1129         AliMatrix(idrotm[1115],90.0,216.0,90.0,306.0,180.0,0.0);
1130         AliMatrix(idrotm[1116],90.0,252.0,90.0,342.0,180.0,0.0);
1131         AliMatrix(idrotm[1117],90.0,288.0,90.0,18.0,0.0,0.0);
1132         AliMatrix(idrotm[1118],90.0,288.0,90.0,18.0,180.0,0.0);
1133         AliMatrix(idrotm[1130],90.0,324.0,90.0,54.0,0.0,0.0);
1134     }// end if option==2
1135     
1136     // SDD
1137     AliMatrix(idrotm[301],0.0,0.0,90.0,90.0,90.0,180.0);  
1138     AliMatrix(idrotm[302],0.0,0.0,90.0,90.0,90.0,0.0);
1139     AliMatrix(idrotm[303],180.0,0.0,90.0,90.0,90.0,0.0); 
1140     AliMatrix(idrotm[304],180.0,0.0,90.0,90.0,90.0,180.0); 
1141     AliMatrix(idrotm[305],90.0,347.14,90.0,77.14,0.0,0.0); 
1142     AliMatrix(idrotm[306],90.0,321.43,90.0,51.43,0.0,0.0); 
1143     AliMatrix(idrotm[307],90.0,295.71,90.0,25.71,0.0,0.0);
1144     AliMatrix(idrotm[308],90.0,244.29,90.0,334.29,0.0,0.0);
1145     AliMatrix(idrotm[309],90.0,218.57,90.0,308.57,0.0,0.0);
1146     AliMatrix(idrotm[310],90.0,167.14,90.0,257.14,0.0,0.0);
1147     AliMatrix(idrotm[311],90.0,141.43,90.0,231.43,0.0,0.0);  
1148     AliMatrix(idrotm[312],90.0,0.0,0.0,0.0,90.0,270.0);
1149     AliMatrix(idrotm[313],90.0,115.71,90.0,205.71,0.0,0.0); 
1150     AliMatrix(idrotm[314],90.0,335.45,90.0,65.45,0.0,0.0); 
1151     AliMatrix(idrotm[315],90.0,319.09,90.0,49.09,0.0,0.0); 
1152     AliMatrix(idrotm[316],90.0,302.73,90.0,32.73,0.0,0.0); 
1153     AliMatrix(idrotm[317],90.0,286.36,90.0,16.36,0.0,0.0);
1154     AliMatrix(idrotm[318],90.0,270.0,90.0,360.0,0.0,0.0);
1155     AliMatrix(idrotm[319],90.0,253.64,90.0,343.64,0.0,0.0);
1156     AliMatrix(idrotm[320],90.0,237.27,90.0,327.27,0.0,0.0);
1157     AliMatrix(idrotm[321],90.0,12.86,90.0,102.86,0.0,0.0);  
1158     AliMatrix(idrotm[322],90.0,220.91,90.0,310.91,0.0,0.0);
1159     AliMatrix(idrotm[323],90.0,204.55,90.0,294.55,0.0,0.0); 
1160     AliMatrix(idrotm[324],90.0,188.18,90.0,278.18,0.0,0.0); 
1161     AliMatrix(idrotm[325],90.0,171.82,90.0,261.82,0.0,0.0); 
1162     AliMatrix(idrotm[326],90.0,155.45,90.0,245.45,0.0,0.0); 
1163     AliMatrix(idrotm[327],90.0,139.09,90.0,229.09,0.0,0.0);
1164     AliMatrix(idrotm[328],90.0,122.73,90.0,212.73,0.0,0.0);
1165     AliMatrix(idrotm[329],90.0,106.36,90.0,196.36,0.0,0.0);
1166     AliMatrix(idrotm[330],90.0,73.64,90.0,163.64,0.0,0.0);    
1167     AliMatrix(idrotm[331],90.0,40.91,90.0,130.91,0.0,0.0);  
1168     AliMatrix(idrotm[332],90.0,24.55,90.0,114.55,0.0,0.0);
1169     AliMatrix(idrotm[333],90.0,38.57,90.0,128.57,0.0,0.0); 
1170     AliMatrix(idrotm[334],90.0,351.82,90.0,81.82,0.0,0.0); 
1171     AliMatrix(idrotm[335],90.0,8.18,90.0,98.18,0.0,0.0); 
1172     AliMatrix(idrotm[336],90.0,64.29,90.0,154.29,0.0,0.0); 
1173     AliMatrix(idrotm[337],111.0,300.0,21.0,300.0,90.0,30.0);
1174     AliMatrix(idrotm[338],69.0,240.0,159.0,240.0,90.0,150.0);
1175     AliMatrix(idrotm[339],111.0,240.0,21.0,240.0,90.0,150.0);
1176     AliMatrix(idrotm[340],69.0,300.0,159.0,300.0,90.0,30.0);  
1177     AliMatrix(idrotm[341],128.0,0.0,38.0,0.0,90.0,270.0);  
1178     AliMatrix(idrotm[342],90.0,240.0,180.0,0.0,90.0,330.);
1179     AliMatrix(idrotm[343],90.0,120.0,180.0,0.0,90.0,210.0); 
1180     AliMatrix(idrotm[344],90.0,0.0,180.0,0.0,90.0,90.0); 
1181     AliMatrix(idrotm[345],90.0,180.0,90.0,90.0,0.0,0.0); 
1182     AliMatrix(idrotm[346],90.0,300.0,90.0,30.0,0.0,0.0); 
1183     AliMatrix(idrotm[347],90.0,240.0,90.0,150.0,0.0,0.0);
1184     AliMatrix(idrotm[348],90.0,180.0,0.0,0.0,90.0,270.0);
1185     AliMatrix(idrotm[349],90.0,235.0,90.0,145.0,0.0,0.0);
1186     AliMatrix(idrotm[350],90.0,90.0,90.0,180.0,0.0,0.0);  
1187     AliMatrix(idrotm[351],90.0,305.0,90.0,35.0,0.0,0.0);  
1188     AliMatrix(idrotm[352],0.0,0.0,90.0,0.0,90.0,90.0);
1189     AliMatrix(idrotm[353],90.0,60.0,90.0,150.0,0.0,0.0); 
1190     AliMatrix(idrotm[354],90.0,120.0,90.0,30.0,0.0,0.0); 
1191     AliMatrix(idrotm[355],90.0,180.0,90.0,90.0,180.0,0.0); 
1192     AliMatrix(idrotm[356],90.0,270.0,90.0,0.0,0.0,0.0); 
1193     AliMatrix(idrotm[366],90.0,57.27,90.0,147.27,0.0,0.0); 
1194     AliMatrix(idrotm[386],90.0,192.86,90.0,282.86,0.0,0.0);
1195
1196     // SSD
1197     AliMatrix(idrotm[501],90.0,148.24,90.0,238.24,0.0,0.0);
1198     AliMatrix(idrotm[503],90.0,137.65,90.0,227.65,0.0,0.0); 
1199     AliMatrix(idrotm[504],90.0,127.06,90.0,217.06,0.0,0.0);  
1200     AliMatrix(idrotm[505],90.0,116.47,90.0,206.47,0.0,0.0);  
1201     AliMatrix(idrotm[506],90.0,105.88,90.0,195.88,0.0,0.0);  
1202     AliMatrix(idrotm[507],90.0,95.29,90.0,185.29,0.0,0.0);  
1203     AliMatrix(idrotm[508],90.0,84.71,90.0,174.71,0.0,0.0);
1204     AliMatrix(idrotm[509],90.0,74.12,90.0,164.12,0.0,0.0);
1205     AliMatrix(idrotm[510],90.0,63.53,90.0,153.53,0.0,0.0);  
1206     AliMatrix(idrotm[511],90.0,52.94,90.0,142.94,0.0,0.0);
1207     AliMatrix(idrotm[512],90.0,42.35,90.0,132.35,0.0,0.0);
1208     AliMatrix(idrotm[513],90.0,31.76,90.0,121.76,0.0,0.0); 
1209     AliMatrix(idrotm[514],90.0,10.59,90.0,100.59,0.0,0.0);  
1210     AliMatrix(idrotm[515],90.0,349.41,90.0,79.41,0.0,0.0);  
1211     AliMatrix(idrotm[516],90.0,338.82,90.0,68.82,0.0,0.0);  
1212     AliMatrix(idrotm[517],90.0,328.24,90.0,58.24,0.0,0.0);  
1213     AliMatrix(idrotm[518],90.0,317.65,90.0,47.65,0.0,0.0);
1214     AliMatrix(idrotm[519],90.0,307.06,90.0,37.06,0.0,0.0);
1215     AliMatrix(idrotm[520],90.0,296.47,90.0,26.47,0.0,0.0);  
1216     AliMatrix(idrotm[521],90.0,285.88,90.0,15.88,0.0,0.0);
1217     AliMatrix(idrotm[522],90.0,275.29,90.0,5.29,0.0,0.0);
1218     AliMatrix(idrotm[523],90.0,264.71,90.0,354.71,0.0,0.0); 
1219     AliMatrix(idrotm[524],90.0,254.12,90.0,344.12,0.0,0.0);  
1220     AliMatrix(idrotm[525],90.0,243.53,90.0,333.53,0.0,0.0);  
1221     AliMatrix(idrotm[526],90.0,232.94,90.0,322.94,0.0,0.0);  
1222     AliMatrix(idrotm[527],90.0,222.35,90.0,312.35,0.0,0.0);  
1223     AliMatrix(idrotm[528],90.0,211.76,90.0,301.76,0.0,0.0);
1224     AliMatrix(idrotm[529],90.0,190.59,90.0,280.59,0.0,0.0);
1225     AliMatrix(idrotm[530],90.0,169.41,90.0,259.41,0.0,0.0);  
1226     AliMatrix(idrotm[531],90.0,158.82,90.0,248.82,0.0,0.0);
1227     AliMatrix(idrotm[532],90.0,360.0,90.0,90.0,0.0,0.0);
1228     AliMatrix(idrotm[533],90.0,180.0,90.0,270.0,0.0,0.0); 
1229     AliMatrix(idrotm[534],90.0,189.47,90.0,279.47,0.0,0.0);  
1230     AliMatrix(idrotm[535],90.0,198.95,90.0,288.95,0.0,0.0);  
1231     AliMatrix(idrotm[537],90.0,217.89,90.0,307.89,0.0,0.0);  
1232     AliMatrix(idrotm[538],90.0,227.37,90.0,317.37,0.0,0.0);
1233     AliMatrix(idrotm[539],90.0,236.84,90.0,326.84,0.0,0.0);
1234     AliMatrix(idrotm[540],90.0,246.32,90.0,336.32,0.0,0.0);  
1235     AliMatrix(idrotm[541],90.0,255.79,90.0,345.79,0.0,0.0);
1236     AliMatrix(idrotm[542],90.0,265.26,90.0,355.26,0.0,0.0);
1237     AliMatrix(idrotm[543],90.0,274.74,90.0,4.74,0.0,0.0); 
1238     AliMatrix(idrotm[544],90.0,284.21,90.0,14.21,0.0,0.0);  
1239     AliMatrix(idrotm[545],90.0,293.68,90.0,23.68,0.0,0.0);  
1240     AliMatrix(idrotm[546],90.0,303.16,90.0,33.16,0.0,0.0);  
1241     AliMatrix(idrotm[547],90.0,312.63,90.0,42.63,0.0,0.0);  
1242     AliMatrix(idrotm[548],90.0,322.11,90.0,52.11,0.0,0.0);
1243     AliMatrix(idrotm[549],90.0,331.58,90.0,61.58,0.0,0.0);
1244     AliMatrix(idrotm[550],90.0,341.05,90.0,71.05,0.0,0.0);  
1245     AliMatrix(idrotm[551],90.0,350.53,90.0,80.53,0.0,0.0);
1246     AliMatrix(idrotm[552],90.0,9.47,90.0,99.47,0.0,0.0);
1247     AliMatrix(idrotm[553],90.0,18.95,90.0,108.95,0.0,0.0); 
1248     AliMatrix(idrotm[555],90.0,37.89,90.0,127.89,0.0,0.0);  
1249     AliMatrix(idrotm[556],90.0,47.37,90.0,137.37,0.0,0.0);  
1250     AliMatrix(idrotm[557],90.0,56.84,90.0,146.84,0.0,0.0);  
1251     AliMatrix(idrotm[558],90.0,66.32,90.0,156.32,0.0,0.0);
1252     AliMatrix(idrotm[559],90.0,75.79,90.0,165.79,0.0,0.0);
1253     AliMatrix(idrotm[560],90.0,85.26,90.0,175.26,0.0,0.0);  
1254     AliMatrix(idrotm[561],90.0,94.74,90.0,184.74,0.0,0.0);
1255     AliMatrix(idrotm[562],90.0,104.21,90.0,194.21,0.0,0.0);
1256     AliMatrix(idrotm[563],90.0,113.68,90.0,203.68,0.0,0.0); 
1257     AliMatrix(idrotm[564],90.0,123.16,90.0,213.16,0.0,0.0);  
1258     AliMatrix(idrotm[565],90.0,132.63,90.0,222.63,0.0,0.0);  
1259     AliMatrix(idrotm[566],90.0,142.11,90.0,232.11,0.0,0.0);  
1260     AliMatrix(idrotm[567],90.0,151.58,90.0,241.58,0.0,0.0);  
1261     AliMatrix(idrotm[568],90.0,161.05,90.0,251.05,0.0,0.0);
1262     AliMatrix(idrotm[569],90.0,170.53,90.0,260.53,0.0,0.0);
1263     AliMatrix(idrotm[570],90.0,180.0,90.0,90.0,180.0,0.0);  
1264     AliMatrix(idrotm[571],90.0,0.0,0.0,0.0,90.0,270.0);
1265     AliMatrix(idrotm[572],90.0,180.0,0.0,0.0,90.0,270.0);
1266     AliMatrix(idrotm[573],90.0,180.0,90.0,90.0,0.0,0.0); 
1267     AliMatrix(idrotm[575],90.0,120.0,180.0,0.0,90.0,210.0);  
1268     AliMatrix(idrotm[576],65.71,300.0,90.0,30.0,24.29,120.0);  
1269     AliMatrix(idrotm[577],114.29,300.0,90.0,30.0,155.71,120.0);  
1270     AliMatrix(idrotm[579],65.71,240.0,90.0,150.0,24.29,60.0);
1271     AliMatrix(idrotm[580],114.29,240.0,90.0,150.0,155.71,60.0);  
1272     AliMatrix(idrotm[581],90.0,240.0,180.0,0.0,90.0,330.0);
1273     AliMatrix(idrotm[583],90.0,0.0,180.0,0.0,90.0,90.0); 
1274     AliMatrix(idrotm[584],90.0,180.0,180.0,0.0,90.0,90.0);  
1275     AliMatrix(idrotm[586],180.0,0.0,90.0,90.0,90.0,0.0);  
1276     AliMatrix(idrotm[618],90.0,201.18,90.0,291.18,0.0,0.0);
1277     AliMatrix(idrotm[620],90.0,28.42,90.0,118.42,0.0,0.0);  
1278     AliMatrix(idrotm[623],90.0,208.42,90.0,298.42,0.0,0.0);
1279     AliMatrix(idrotm[633],132.46,0.0,90.0,90.0,42.46,360.0);
1280     AliMatrix(idrotm[653],90.0,21.18,90.0,111.18,0.0,0.0);
1281
1282     // SDD cone
1283     AliMatrix(idrotm[846],90.0,300.0,90.0,30.0,0.0,0.0);
1284     AliMatrix(idrotm[851],90.0,305.0,90.0,35.0,0.0,0.0);
1285     AliMatrix(idrotm[853],90.0,60.0,90.0,150.0,0.0,0.0);
1286     AliMatrix(idrotm[856],90.0,0.0,90.0,90.0,180.0,0.0);
1287     AliMatrix(idrotm[857],90.0,5.0,90.0,95.0,180.0,0.0);
1288     AliMatrix(idrotm[858],90.0,65.0,90.0,155.0,180.0,0.0);
1289     AliMatrix(idrotm[859],90.0,305.0,90.0,35.0,180.0,0.0);
1290     AliMatrix(idrotm[860],90.0,245.0,90.0,335.0,180.0,0.0);
1291     AliMatrix(idrotm[861],90.0,185.0,90.0,275.0,180.0,0.0);
1292     AliMatrix(idrotm[862],90.0,125.0,90.0,215.0,180.0,0.0);
1293     AliMatrix(idrotm[863],90.0,257.5,90.0,347.5,180.0,0.0);
1294     AliMatrix(idrotm[864],90.0,227.5,90.0,317.5,180.0,0.0);
1295     AliMatrix(idrotm[865],90.0,197.5,90.0,287.5,180.0,0.0);
1296     AliMatrix(idrotm[867],90.0,167.5,90.0,257.5,180.0,0.0);
1297     AliMatrix(idrotm[868],90.0,287.5,90.0,17.5,0.0,0.0);  
1298     AliMatrix(idrotm[869],90.0,137.5,90.0,227.5,180.0,0.0);
1299     AliMatrix(idrotm[870],90.0,107.5,90.0,197.5,180.0,0.0);
1300     AliMatrix(idrotm[871],90.0,77.5,90.0,167.5,180.0,0.0);
1301     AliMatrix(idrotm[872],90.0,47.5,90.0,137.5,180.0,0.0);
1302     AliMatrix(idrotm[873],90.0,17.5,90.0,107.5,180.0,0.0);
1303     AliMatrix(idrotm[874],90.0,347.5,90.0,77.5,180.0,0.0);
1304     AliMatrix(idrotm[875],90.0,317.5,90.0,47.5,180.0,0.0);
1305     AliMatrix(idrotm[876],90.0,287.5,90.0,17.5,180.0,0.0);
1306     AliMatrix(idrotm[877],90.0,185.0,90.0,275.0,0.0,0.0);
1307     AliMatrix(idrotm[878],90.0,180.0,90.0,270.0,0.0,0.0);  
1308     AliMatrix(idrotm[879],90.0,125.0,90.0,215.0,0.0,0.0);
1309     AliMatrix(idrotm[880],90.0,65.0,90.0,155.0,0.0,0.0);
1310     AliMatrix(idrotm[881],90.0,5.0,90.0,95.0,0.0,0.0);
1311     AliMatrix(idrotm[882],90.0,245.0,90.0,335.0,0.0,0.0);
1312     AliMatrix(idrotm[883],90.0,47.5,90.0,137.5,0.0,0.0);
1313     AliMatrix(idrotm[884],90.0,77.5,90.0,167.5,0.0,0.0);
1314     AliMatrix(idrotm[885],90.0,107.5,90.0,197.5,0.0,0.0);
1315     AliMatrix(idrotm[887],90.0,137.5,90.0,227.5,0.0,0.0);
1316     AliMatrix(idrotm[888],90.0,167.5,90.0,257.5,0.0,0.0);
1317     AliMatrix(idrotm[889],90.0,197.5,90.0,287.5,0.0,0.0);
1318     AliMatrix(idrotm[890],90.0,227.5,90.0,317.5,0.0,0.0);
1319     AliMatrix(idrotm[891],90.0,347.5,90.0,77.5,0.0,0.0);
1320     AliMatrix(idrotm[892],90.0,317.5,90.0,47.5,0.0,0.0);
1321     AliMatrix(idrotm[893],90.0,257.5,90.0,347.5,0.0,0.0);
1322     AliMatrix(idrotm[894],90.0,270.0,0.0,0.0,90.0,180.0);
1323     AliMatrix(idrotm[895],90.0,286.36,0.0,0.0,90.0,196.36);
1324     AliMatrix(idrotm[896],90.0,302.73,0.0,0.0,90.0,212.73);
1325     AliMatrix(idrotm[897],90.0,319.09,0.0,0.0,90.0,229.09);
1326     AliMatrix(idrotm[898],90.0,17.5,90.0,107.5,0.0,0.0);
1327     AliMatrix(idrotm[899],90.0,335.45,0.0,0.0,90.0,245.45);
1328     AliMatrix(idrotm[900],90.0,351.82,0.0,0.0,90.0,261.82);
1329     AliMatrix(idrotm[901],90.0,8.18,0.0,0.0,90.0,278.18);
1330     AliMatrix(idrotm[902],90.0,24.55,0.0,0.0,90.0,294.55);
1331     AliMatrix(idrotm[903],90.0,40.91,0.0,0.0,90.0,310.91);
1332     AliMatrix(idrotm[904],90.0,57.27,0.0,0.0,90.0,327.27);
1333     AliMatrix(idrotm[905],90.0,73.64,0.0,0.0,90.0,343.64);
1334     AliMatrix(idrotm[906],90.0,90.0,0.0,0.0,90.0,360.0);
1335     AliMatrix(idrotm[907],90.0,106.36,0.0,0.0,90.0,16.36);
1336     AliMatrix(idrotm[908],90.0,122.73,0.0,0.0,90.0,32.73);
1337     AliMatrix(idrotm[909],90.0,139.09,0.0,0.0,90.0,49.09);
1338     AliMatrix(idrotm[910],90.0,155.45,0.0,0.0,90.0,65.45);
1339     AliMatrix(idrotm[911],90.0,171.82,0.0,0.0,90.0,81.82);
1340     AliMatrix(idrotm[912],90.0,188.18,0.0,0.0,90.0,98.18);
1341     AliMatrix(idrotm[913],90.0,204.55,0.0,0.0,90.0,114.55);
1342     AliMatrix(idrotm[914],90.0,220.91,0.0,0.0,90.0,130.91);
1343     AliMatrix(idrotm[915],90.0,237.27,0.0,0.0,90.0,147.27);
1344     AliMatrix(idrotm[916],90.0,253.64,0.0,0.0,90.0,163.64);
1345     AliMatrix(idrotm[917],90.0,295.71,0.0,0.0,90.0,205.71);
1346     AliMatrix(idrotm[918],90.0,321.43,0.0,0.0,90.0,231.43);
1347     AliMatrix(idrotm[919],90.0,347.14,0.0,0.0,90.0,257.14);
1348     AliMatrix(idrotm[920],90.0,12.86,0.0,0.0,90.0,282.86);
1349     AliMatrix(idrotm[921],90.0,38.57,0.0,0.0,90.0,308.57);
1350     AliMatrix(idrotm[922],90.0,64.29,0.0,0.0,90.0,334.29);
1351     AliMatrix(idrotm[923],90.0,115.71,0.0,0.0,90.0,25.71);
1352     AliMatrix(idrotm[924],90.0,141.43,0.0,0.0,90.0,51.43);
1353     AliMatrix(idrotm[925],90.0,167.14,0.0,0.0,90.0,77.14);
1354     AliMatrix(idrotm[926],90.0,192.86,0.0,0.0,90.0,102.86);
1355     AliMatrix(idrotm[927],90.0,218.57,0.0,0.0,90.0,128.57);
1356     AliMatrix(idrotm[928],90.0,244.29,0.0,0.0,90.0,154.29);
1357     AliMatrix(idrotm[929],90.0,120.0,90.0,210.0,0.0,0.0);
1358     AliMatrix(idrotm[930],90.0,240.0,90.0,330.0,0.0,0.0);
1359     AliMatrix(idrotm[931],90.0,60.0,90.0,150.0,180.0,0.0);
1360     AliMatrix(idrotm[932],90.0,120.0,90.0,210.0,180.0,0.0);
1361     AliMatrix(idrotm[933],90.0,180.0,90.0,270.0,180.0,0.0);
1362     AliMatrix(idrotm[934],90.0,240.0,90.0,330.0,180.0,0.0);
1363     AliMatrix(idrotm[935],90.0,300.0,90.0,30.0,180.0,0.0);
1364
1365     // SSD cone
1366     AliMatrix(idrotm[701],90.0,0.0,90.0,90.0,180.0,0.0);
1367     AliMatrix(idrotm[702],90.0,347.5,90.0,77.5,180.0,0.0);
1368     AliMatrix(idrotm[703],90.0,17.5,90.0,107.5,180.0,0.0);
1369     AliMatrix(idrotm[704],90.0,47.5,90.0,137.5,180.0,0.0);
1370     AliMatrix(idrotm[705],90.0,77.5,90.0,167.5,180.0,0.0);
1371     AliMatrix(idrotm[706],90.0,107.5,90.0,197.5,180.0,0.0);
1372     AliMatrix(idrotm[707],90.0,137.5,90.0,227.5,180.0,0.0);
1373     AliMatrix(idrotm[708],90.0,167.5,90.0,257.5,180.0,0.0);
1374     AliMatrix(idrotm[709],90.0,197.5,90.0,287.5,180.0,0.0);
1375     AliMatrix(idrotm[710],90.0,227.5,90.0,317.5,180.0,0.0);
1376     AliMatrix(idrotm[711],90.0,257.5,90.0,347.5,180.0,0.0);
1377     AliMatrix(idrotm[712],90.0,287.5,90.0,17.5,180.0,0.0);
1378     AliMatrix(idrotm[713],90.0,317.5,90.0,47.5,180.0,0.0);
1379     AliMatrix(idrotm[714],90.0,328.4,90.0,58.4,180.0,0.0);
1380     AliMatrix(idrotm[715],90.0,28.4,90.0,118.4,180.0,0.0);
1381     AliMatrix(idrotm[716],90.0,88.4,90.0,178.4,180.0,0.0);
1382     AliMatrix(idrotm[717],90.0,148.4,90.0,238.4,180.0,0.0);
1383     AliMatrix(idrotm[718],90.0,208.4,90.0,298.4,180.0,0.0);
1384     AliMatrix(idrotm[719],90.0,268.4,90.0,358.4,180.0,0.0);
1385     AliMatrix(idrotm[720],90.0,28.4,90.0,118.4,0.0,0.0);
1386     AliMatrix(idrotm[721],90.0,88.4,90.0,178.4,0.0,0.0);
1387     AliMatrix(idrotm[722],90.0,148.4,90.0,238.4,0.0,0.0);
1388     AliMatrix(idrotm[723],90.0,208.4,90.0,298.4,0.0,0.0);
1389     AliMatrix(idrotm[724],90.0,268.4,90.0,358.4,0.0,0.0);
1390     AliMatrix(idrotm[725],90.0,328.4,90.0,58.4,0.0,0.0);
1391     AliMatrix(idrotm[726],90.0,77.5,90.0,167.5,0.0,0.0);
1392     AliMatrix(idrotm[727],90.0,107.5,90.0,197.5,0.0,0.0);
1393     AliMatrix(idrotm[728],90.0,137.5,90.0,227.5,0.0,0.0);
1394     AliMatrix(idrotm[729],90.0,167.5,90.0,257.5,0.0,0.0);
1395     AliMatrix(idrotm[730],90.0,227.5,90.0,317.5,0.0,0.0);
1396     AliMatrix(idrotm[731],90.0,257.5,90.0,347.5,0.0,0.0);
1397     AliMatrix(idrotm[732],90.0,317.5,90.0,47.5,0.0,0.0);  
1398     AliMatrix(idrotm[733],90.0,197.5,90.0,287.5,0.0,0.0);
1399     AliMatrix(idrotm[734],90.0,347.5,90.0,77.5,0.0,0.0);
1400     AliMatrix(idrotm[735],90.0,47.5,90.0,137.5,0.0,0.0);
1401     AliMatrix(idrotm[768],90.0,287.5,90.0,17.5,0.0,0.0);
1402     AliMatrix(idrotm[798],90.0,17.5,90.0,107.5,0.0,0.0);
1403
1404     // Services
1405     AliMatrix(idrotm[200], 90., 0., 90., 90., 180., 0.);
1406
1407     // New reference frame: z--->  -z;   x ---> -x;   y ---> y
1408     AliMatrix(idrotm[199], 90.,180., 90.,90., 180.,0.);
1409
1410     //     CONVERT INTO CM (RL(SI)=9.36 CM)
1411     for (i = 0; i < 6; ++i) {
1412         drl[i] = drl[i] / 100. * 9.36;
1413     } // end for i
1414
1415     //     FIELD CAGE HALF LENGTH
1416     rlim  = 50.;
1417     zmax  = 74.;
1418     ztpc = 284.;
1419     // --- Define ghost volume containing the whole ITS (including services) 
1420     //     and fill it with air
1421
1422 //     dgh[0] = 0.;
1423 //     dgh[1] = 360.;
1424 //     dgh[2] = 16.;
1425 //     dgh[3] = -ztpc-5.-0.1;
1426 //     dgh[4] = 46;   
1427 //     dgh[5] = 85.;
1428 //     dgh[6] = -ztpc;
1429 //     dgh[7] = 46;   
1430 //     dgh[8] = 85.;
1431 //     dgh[9] = -ztpc;
1432 //     dgh[10] = 46;  
1433 //     dgh[11] = rlim+7.5;
1434 //     dgh[12] = -97.5;
1435 //     dgh[13] = 46;  
1436 //     dgh[14] = rlim+7.5;
1437 //     dgh[15] = -zmax;
1438 //     dgh[16] = 46;  
1439 //     dgh[17] = rlim+7.5;
1440 //     dgh[18] = -48;   
1441 //     dgh[19] = 6;
1442 //     dgh[20] = rlim+7.5;
1443 //     dgh[21] = -28.6;   
1444 //     dgh[22] = 6;
1445 //     dgh[23] = rlim+7.5;    
1446 //     dgh[24] = -27.6;  
1447 //     dgh[25] = 3.295;
1448 //     dgh[26] = rlim+7.5; 
1449 //     dgh[27] = 27.6;   
1450 //     dgh[28] = 3.295;
1451 //     dgh[29] = rlim+7.5;
1452 //     dgh[30] = 28.6;   
1453 //     dgh[31] = 6;
1454 //     dgh[32] = rlim+7.5;
1455 //     dgh[33] = 48;   
1456 //     dgh[34] = 6;
1457 //     dgh[35] = rlim+7.5;  
1458 //     dgh[36] = zmax;
1459 //     dgh[37] = 46;
1460 //     dgh[38] = rlim+7.5;
1461 //     dgh[39] = 97.5;
1462 //     dgh[40] = 46;  
1463 //     dgh[41] = rlim+7.5;
1464 //     dgh[42] = ztpc;
1465 //     dgh[43] = 62;     
1466 //     dgh[44] = 62+4.;  
1467 //     dgh[45] = ztpc;
1468 //     dgh[46] = 62;     
1469 //     dgh[47] = 85.;
1470 //     dgh[48] = ztpc+4.+0.1;
1471 //     dgh[49] = 62.0;//62.4;
1472 //     dgh[50] = 85.;
1473 //     gMC->Gsvolu("ITSV", "PCON", idtmed[205], dgh, 51);
1474     TGeoVolumeAssembly *itsV = gGeoManager->MakeVolumeAssembly("ITSV");
1475     const Int_t length=100;
1476     Char_t vstrng[length];
1477     if(fIgm.WriteVersionString(vstrng,length,(AliITSVersion_t)IsVersion(),
1478                                fMinorVersion,cvsDate,cvsRevision))
1479       itsV->SetTitle(vstrng);
1480     
1481     // --- Place the ghost volume in its mother volume (ALIC) and make it 
1482     //     invisible
1483     //    gMC->Gspos("ITSV", 1, "ALIC", 0., 0., 0., idrotm[199], "MANY");
1484     TGeoVolume *alic = gGeoManager->GetVolume("ALIC");
1485     if(alic==0) {
1486         Error("CreateGeometry","alic=0");
1487         return;
1488     } // end if
1489     // See idrotm[199] for angle definitions.
1490     alic->AddNode(itsV,1,new TGeoRotation("", 90.,180., 90.,90., 180.,0.));
1491
1492     // --- Define ghost volume containing the six layers and fill it with air 
1493   
1494     dgh[0] = 0.;
1495     dgh[1] = 360.;
1496     dgh[2] = 8.;
1497     dgh[3] = -zmax;  
1498     dgh[4] = 46.;
1499     dgh[5] = rlim;
1500     dgh[6] = -47.5;    
1501     dgh[7] = 6.005;
1502     dgh[8] = rlim;
1503     dgh[9] = -28.5;    
1504     dgh[10] = 6.005;
1505     dgh[11] = rlim;  
1506     dgh[12] = -27.5;   
1507     dgh[13] = 3.3;
1508     dgh[14] = rlim;
1509     dgh[15] = 27.5;    
1510     dgh[16] = 3.3;
1511     dgh[17] = rlim;
1512     dgh[18] = 28.5;    
1513     dgh[19] = 6.005;
1514     dgh[20] = rlim;
1515     dgh[21] = 47.5;    
1516     dgh[22] = 6.005;
1517     dgh[23] = rlim;
1518     dgh[24] = zmax;    
1519     dgh[25] = 46.;
1520     dgh[26] = rlim;
1521     gMC->Gsvolu("ITSD", "PCON", idtmed[205], dgh, 27);
1522
1523     // --- Place the ghost volume in its mother volume (ITSV) and make it 
1524     //     invisible
1525     gMC->Gspos("ITSD", 1, "ITSV", 0., 0., 0., 0, "ONLY");
1526     //gMC->Gsatt("ITSD", "SEEN", 0);
1527
1528     // --- Define SPD (option 'a') volumes ----------------------------
1529     // SPD - option 'a' 
1530     // (this is NOT the default)
1531     if (option == 1) {
1532         dits[0] = 3.7;
1533         dits[1] = 7.75;
1534         dits[2] = 26.1;
1535         gMC->Gsvolu("IT12", "TUBE", idtmed[254], dits, 3);
1536
1537         dits[0] = 3.7;
1538         dits[1] = 7.7;
1539         dits[2] = 24;
1540         dits[3] = 57;
1541         dits[4] = 100;
1542         gMC->Gsvolu("I12A", "TUBS", idtmed[254], dits, 5);    // sector
1543
1544         di10a[0] = 0.843;
1545         di10a[1] = ddet1+dchip1+dbus+0.0025;
1546         di10a[2] = 19.344;
1547         gMC->Gsvolu("I10A", "BOX ", idtmed[254], di10a, 3);    // mother volume
1548                                                                // on layer 1
1549         di20a[0] = 0.843;
1550         di20a[1] = ddet2+dchip2+dbus+0.0025;
1551         di20a[2] = 19.344;
1552         gMC->Gsvolu("I20A", "BOX ", idtmed[254], di20a, 3);    // mother volume
1553                                                                // on layer 2
1554         dits[0] = 1.3673;
1555         dits[1] = 0.01;
1556         dits[2] = 24;
1557         gMC->Gsvolu("I123", "BOX ", idtmed[253], dits, 3);
1558
1559         dits[0] = 0.06;
1560         dits[1] = 0.08;
1561         dits[2] = 24;
1562         dits[3] = -36.79;
1563         dits[4] = 21.834;
1564         gMC->Gsvolu("I121", "TUBS", idtmed[253], dits, 5);  
1565
1566         dits[0] = 0.1253;
1567         dits[1] = 0.01;
1568         dits[2] = 24;
1569         gMC->Gsvolu("I122", "BOX ", idtmed[253], dits, 3);
1570
1571         dits[0] = 0.04;
1572         dits[1] = 0.06 ;
1573         dits[2] = 24;
1574         dits[3] = 126.79;
1575         dits[4] = 270;
1576         gMC->Gsvolu("I120", "TUBS", idtmed[253], dits, 5);  
1577
1578         dits[0] = 0.1134;
1579         dits[1] = 0.01;
1580         dits[2] = 24;
1581         gMC->Gsvolu("I144", "BOX ", idtmed[253], dits, 3);  
1582
1583         dits[0] = 0.25;
1584         dits[1] = 0.06;
1585         dits[2] = 24;
1586         gMC->Gsvolu("I113", "BOX ", idtmed[254], dits, 3);  
1587
1588         dits[0] = 0.077;
1589         dits[1] = 0.01;
1590         dits[2] = 24;
1591         gMC->Gsvolu("I143", "BOX ", idtmed[253], dits, 3);   
1592
1593         dits[0] = 0.04;
1594         dits[1] = 0.06;
1595         dits[2] = 24;
1596         dits[3] = 0;
1597         dits[4] = 90;
1598         gMC->Gsvolu("I142", "TUBS", idtmed[253], dits, 5); 
1599
1600         dits[0] = 0.0695;
1601         dits[1] = 0.01;
1602         dits[2] = 24;
1603         gMC->Gsvolu("I141", "BOX ", idtmed[253], dits, 3);  
1604
1605         dits[0] = 0.06;
1606         dits[1] = 0.08;
1607         dits[2] = 24;
1608         dits[3] = 0;
1609         dits[4] = 108;
1610         gMC->Gsvolu("I140", "TUBS", idtmed[253], dits, 5);  
1611
1612         dits[0] = 0.1835;
1613         dits[1] = 0.01;
1614         dits[2] = 24;
1615         gMC->Gsvolu("I139", "BOX ", idtmed[253], dits, 3);
1616
1617         dits[0] = 0.1894 ;
1618         dits[1] = 0.01;
1619         dits[2] = 24;
1620         gMC->Gsvolu("I138", "BOX ", idtmed[253], dits, 3);  
1621
1622         dits[0] = 0.04;
1623         dits[1] = 0.06;
1624         dits[2] = 24;
1625         dits[3] = 0;
1626         dits[4] = 75.261;
1627         gMC->Gsvolu("I137", "TUBS", idtmed[253], dits, 5);  
1628
1629
1630         dits[0] = 1.3401;
1631         dits[1] = 0.01;
1632         dits[2] = 24;
1633         gMC->Gsvolu("I136", "BOX ", idtmed[253], dits, 3);  
1634
1635         dits[0] = 0.05;
1636         dits[1] = 0.07;
1637         dits[2] = 24;
1638         dits[3] = 0;
1639         dits[4] = 72.739;
1640         gMC->Gsvolu("I135", "TUBS", idtmed[253], dits, 5);  
1641
1642         dits[0] = 0.1193;
1643         dits[1] = 0.01;
1644         dits[2] = 24;
1645         gMC->Gsvolu("I134", "BOX ", idtmed[253], dits, 3);    
1646
1647         dits[0] = 0.163;
1648         dits[1] = 0.01;
1649         dits[2] = 24;
1650         gMC->Gsvolu("I133", "BOX ", idtmed[253], dits, 3);   
1651
1652         dits[0] = 0.04;
1653         dits[1] = 0.06;
1654         dits[2] = 24;
1655         dits[3] = 0;
1656         dits[4] = 157.633;
1657         gMC->Gsvolu("I132", "TUBS", idtmed[253], dits, 5); 
1658
1659         dits[0] = 0.2497;
1660         dits[1] = 0.01;
1661         dits[2] = 24;
1662         gMC->Gsvolu("I131", "BOX ", idtmed[253], dits, 3);
1663
1664         dits[0] = 0.06;
1665         dits[1] = 0.08;
1666         dits[2] = 24;
1667         dits[3] = 0;
1668         dits[4] = 148.633;
1669         gMC->Gsvolu("I130", "TUBS", idtmed[253], dits, 5); 
1670
1671         dits[0] = 0.292;
1672         dits[1] = 0.01;
1673         dits[2] = 24;
1674         gMC->Gsvolu("I129", "BOX ", idtmed[253], dits, 3);  
1675
1676         dits[0] = 0.163;
1677         dits[1] = 0.01;
1678         dits[2] = 24;
1679         gMC->Gsvolu("I128", "BOX ", idtmed[253], dits, 3);  
1680
1681         dits[0] = 0.04;
1682         dits[1] = 0.06;
1683         dits[2] = 24;
1684         dits[3] = 0;
1685         dits[4] = 161.297;
1686         gMC->Gsvolu("I126", "TUBS", idtmed[253], dits, 5);
1687
1688         dits[0] = 0.2433;
1689         dits[1] = 0.01;
1690         dits[2] = 24;
1691         gMC->Gsvolu("I125", "BOX ", idtmed[253], dits, 3);  
1692
1693         dits[0] = 0.06;
1694         dits[1] = 0.08;
1695         dits[2] = 24;
1696         dits[3] = 0;
1697         dits[4] = 42.883;
1698         gMC->Gsvolu("I124", "TUBS", idtmed[253], dits, 5);  
1699
1700         di103[0] = 0.793;
1701         di103[1] = ddet1+dchip1;
1702         di103[2] = 3.536;
1703         gMC->Gsvolu("I103", "BOX ", idtmed[254], di103, 3); // contains det 
1704                                                             // and chip layer 1
1705         dits[0] = 0.793;
1706         dits[1] = ddet1+dchip1+dbus+0.0025; 
1707         dits[2] = 2.5;
1708         gMC->Gsvolu("I105", "BOX ", idtmed[290], dits, 3);// end-ladder electr.
1709
1710         di104[0] = 0.843;
1711         di104[1] = dbus;
1712         di104[2] = 14.344;
1713         gMC->Gsvolu("I104", "BOX ", idtmed[275], di104, 3);// bus for both 
1714                                                            // layers
1715
1716         di1d3[0] = 0.793;
1717         di1d3[1] = ddet2+dchip2;
1718         di1d3[2] = 3.536;
1719         gMC->Gsvolu("I1D3", "BOX ", idtmed[254], di1d3, 3); // contains det 
1720                                                             // and chip layer 2
1721         dits[0] = 0.793;
1722         dits[0] = 0.06;
1723         dits[1] = 0.08;
1724         dits[2] = 24;
1725         dits[3] = 0;
1726         dits[4] = 80;
1727         gMC->Gsvolu("I112", "TUBS", idtmed[253], dits, 5);  
1728
1729         dits[0] = 0.04;
1730         dits[1] = 0.06;
1731         dits[2] = 24;
1732         dits[3] = 0;
1733         dits[4] = 80;
1734         gMC->Gsvolu("I111", "TUBS", idtmed[253], dits, 5);  
1735
1736         dits[0] = 0.15;
1737         dits[1] = 0.0146;
1738         dits[2] = 24;
1739         gMC->Gsvolu("I118", "BOX ", idtmed[273], dits, 3);  
1740
1741         dits[0] = 0.1315;
1742         dits[1] = 0.01;
1743         dits[2] = 24;
1744         gMC->Gsvolu("I110", "BOX ", idtmed[253], dits, 3);  
1745
1746         dits[0] = 0.025;
1747         dits[1] = 0.035;
1748         dits[2] = 24;
1749         dits[3] = 0;
1750         dits[4] = 180;
1751         gMC->Gsvolu("I114", "TUBS", idtmed[264], dits, 5);  
1752
1753         dits[0] = 0;
1754         dits[1] = 0.025;
1755         dits[2] = 24;
1756         dits[3] = 0;
1757         dits[4] = 180;
1758         gMC->Gsvolu("I115", "TUBS", idtmed[211], dits, 5); // set freon 
1759                                                            // as cooling 
1760                                                            // fluid      
1761         dits[0] = 0.063;
1762         dits[1] = 0.035;
1763         dits[2] = 24;
1764         gMC->Gsvolu("I116", "BOX ", idtmed[264], dits, 3);
1765
1766         di102[0] = 0.793;
1767         di102[1] = dchip1;
1768         di102[2] = 0.68;
1769         gMC->Gsvolu("I102", "BOX ", idtmed[201], di102, 3);   // chip layer 1
1770           
1771         di1d2[0] = 0.793;
1772         di1d2[1] = dchip2;
1773         di1d2[2] = 0.68;
1774         gMC->Gsvolu("I1D2", "BOX ", idtmed[201], di1d2, 3);   // chip   layer 2
1775
1776         di101[0] = 0.705;
1777         di101[1] = ddet1;
1778         di101[2] = 3.536;
1779         gMC->Gsvolu("I101", "BOX ", idtmed[250], di101, 3);// contains detector
1780                                                            // layer 1
1781         di1d1[0] = 0.705;
1782         di1d1[1] = ddet2;
1783         di1d1[2] = 3.536;
1784         gMC->Gsvolu("I1D1", "BOX ", idtmed[250], di1d1, 3);// contains detector
1785                                                            // layer 2
1786         dits[0] = 0.063;
1787         dits[1] = 0.025;
1788         dits[2] = 24;
1789         gMC->Gsvolu("I117", "BOX ", idtmed[211], dits, 3); // set freon
1790                                                                // as cooling
1791                                                                // fluid
1792
1793         dits1[0] = 0.64;
1794         dits1[1] = ddet1;
1795         dits1[2] = 3.48;
1796         gMC->Gsvolu("ITS1", "BOX ", idtmed[200], dits1, 3);// detector layer 1
1797
1798         dits2[0] = 0.64;
1799         dits2[1] = ddet2;
1800         dits2[2] = 3.48;
1801         gMC->Gsvolu("ITS2", "BOX ", idtmed[200], dits2, 3);// detector layer 2
1802
1803         dits[0] = 3.701;
1804         dits[1] = 7.699;
1805         dits[2] = 4;
1806         dits[3] = 57.1;
1807         dits[4] = 99.9;  
1808         gMC->Gsvolu("I650", "TUBS", idtmed[254], dits, 5);// was I150 in old
1809                                                            // geom.
1810
1811         dits[0] = 3.7;
1812         dits[1] = 7.75;
1813         dits[2] = 0.05;
1814         gMC->Gsvolu("I651", "TUBE", idtmed[296], dits, 3);  // services disk
1815         //Begin_Html
1816         /*
1817           <img src="http://www.Physics.ohio-state.edu/~nilsen/ITS/ITS_FMD_PMD_SPD_Geom.eps">
1818           </pre>
1819           <br clear=left>
1820           <font size=+2 color=blue>
1821           <p>SPD services volume cone with other forward detectors. Shown in
1822           brown are a posible cabling layout.
1823           </font>
1824         */
1825         //End_Html
1826         dits[0] = 0;
1827         dits[1] = 0.5;
1828         dits[2] = 1.5;
1829         gMC->Gsvolu("I676", "TUBE", idtmed[274], dits, 3); // was I176 in 
1830                                                             // old geom.
1831
1832         dits[0] = 0;
1833         dits[1] = 0.18;
1834         dits[2] = 0.8;
1835         gMC->Gsvolu("I673", "TUBE", idtmed[274], dits, 3); // was I173 in 
1836                                                            // old geom.
1837
1838         dits[0] = 0;
1839         dits[1] = 0.18;
1840         dits[2] = 3;
1841         gMC->Gsvolu("I671", "TUBE", idtmed[274], dits, 3); // was I171 in 
1842                                                            // old geom.
1843
1844         dits[0] = 0;
1845         dits[1] = 0.075;
1846         dits[2] = 0.8;
1847         gMC->Gsvolu("I669", "TUBE", idtmed[264], dits, 3); // was I169 in 
1848                                                            // old geom.
1849
1850         dits[0] = 3.5;
1851         dits[1] = 5.6;
1852         dits[2] = 0.55;
1853         dits[3] = 0;
1854         dits[4] = 38;
1855         gMC->Gsvolu("I667", "TUBS", idtmed[263], dits, 5); // was I167 in old geom.
1856
1857      dits[0] = 6.6;
1858      dits[1] = 7.6;
1859      dits[2] = 0.5;
1860      dits[3] = 0;
1861      dits[4] = 9;
1862      gMC->Gsvolu("I666", "TUBS", idtmed[263], dits, 5); // was I166 in old geom
1863
1864      dits[0] = 0.26;
1865      dits[1] = 0.32;
1866      dits[2] = 0.55;
1867      gMC->Gsvolu("I678", "TUBE", idtmed[263], dits, 3); // was I178 in old geom
1868
1869
1870      dits[0] = 0;
1871      dits[1] = 0.3;
1872      dits[2] = 1.5;
1873      gMC->Gsvolu("I677", "TUBE", idtmed[211], dits, 3); // set freon as cooling fluid
1874                                               // was I177 in old geom.    
1875  
1876      
1877      dits[0] = 0.07;
1878      dits[1] = 0.125;
1879      dits[2] = 0.3;
1880      gMC->Gsvolu("I675", "TUBE", idtmed[263], dits, 3); // was I175 in old geom
1881
1882
1883      dits[0] = 0;
1884      dits[1] = 0.1;
1885      dits[2] = 0.8;
1886      gMC->Gsvolu("I674", "TUBE", idtmed[211], dits, 3); // set freon as cooling fluid
1887      // was I174 in old geom.     
1888      
1889      
1890      dits[0] = 0;
1891      dits[1] = 0.1;
1892      dits[2] = 3;
1893      gMC->Gsvolu("I672", "TUBE", idtmed[211], dits, 3); // set freon as cooling fluid
1894      // was I172 in old geom.        
1895      
1896  
1897      dits[0] = 0;
1898      dits[1] = 0.0746;
1899      dits[2] = 0.8;
1900      gMC->Gsvolu("I670", "TUBE", idtmed[211], dits, 3); // set freon as cooling fluid
1901      // was I170 in old geom.     
1902     
1903      
1904      dits[0] = 3.7;
1905      dits[1] = 5.4;
1906      dits[2] = 0.35;
1907      dits[3] = 2;
1908      dits[4] = 36;
1909      gMC->Gsvolu("I668", "TUBS", idtmed[211], dits, 5); // set freon as cooling fluid
1910      // was I168 in old geom.
1911      
1912
1913
1914     }
1915
1916   // --- Define SPD (option 'b') volumes ----------------------------
1917   
1918   // SPD - option 'b' 
1919   // (this is the default)
1920
1921   if (option == 2) {
1922   
1923      dits[0] = 3.7;
1924      dits[1] = 7.75;
1925      dits[2] = 26.1;
1926      gMC->Gsvolu("IT12", "TUBE", idtmed[254], dits, 3);   
1927
1928      dits[0] = 3.7;
1929      dits[1] = 7.7;
1930      dits[2] = 24;
1931      dits[3] = 57;
1932      dits[4] = 100;
1933      gMC->Gsvolu("I12B", "TUBS", idtmed[254], dits, 5);   // sector
1934
1935      di10b[0] = 0.843;
1936      di10b[1] = ddet1+dchip1+dbus+0.0025;  
1937      di10b[2] = 19.344;
1938      gMC->Gsvolu("I10B", "BOX ", idtmed[254], di10b, 3);   // mother volume 
1939                                                                 // on layer 1
1940
1941      di20b[0] = 0.843;
1942      di20b[1] = ddet2+dchip2+dbus+0.0025;   
1943      di20b[2] = 19.344;
1944      gMC->Gsvolu("I20B", "BOX ", idtmed[254], di20b, 3);   // mother volume
1945                                                                 // layer 2
1946
1947      dits[0] = 1.3673;
1948      dits[1] = 0.01;
1949      dits[2] = 24;
1950      gMC->Gsvolu("I123", "BOX ", idtmed[253], dits, 3);
1951
1952      dits[0] = 0.06;
1953      dits[1] = 0.08;
1954      dits[2] = 24;
1955      dits[3] = -36.79;
1956      dits[4] = 21.834;
1957      gMC->Gsvolu("I121", "TUBS", idtmed[253], dits, 5);  
1958
1959      dits[0] = 0.1253;
1960      dits[1] = 0.01;
1961      dits[2] = 24;
1962      gMC->Gsvolu("I122", "BOX ", idtmed[253], dits, 3);  
1963
1964      dits[0] = 0.04;
1965      dits[1] = 0.06 ;
1966      dits[2] = 24;
1967      dits[3] = 126.79;
1968      dits[4] = 270;
1969      gMC->Gsvolu("I120", "TUBS", idtmed[253], dits, 5);  
1970
1971      dits[0] = 0.1134;
1972      dits[1] = 0.01;
1973      dits[2] = 24;
1974      gMC->Gsvolu("I144", "BOX ", idtmed[253], dits, 3);  
1975
1976      dits[0] = 0.25;
1977      dits[1] = 0.06;
1978      dits[2] = 24;
1979      gMC->Gsvolu("I113", "BOX ", idtmed[254], dits, 3);  
1980
1981      dits[0] = 0.077;
1982      dits[1] = 0.01;
1983      dits[2] = 24;
1984      gMC->Gsvolu("I143", "BOX ", idtmed[253], dits, 3);   
1985
1986      dits[0] = 0.04;
1987      dits[1] = 0.06;
1988      dits[2] = 24;
1989      dits[3] = 0;
1990      dits[4] = 90;
1991      gMC->Gsvolu("I142", "TUBS", idtmed[253], dits, 5); 
1992
1993      dits[0] = 0.0695;
1994      dits[1] = 0.01;
1995      dits[2] = 24;
1996      gMC->Gsvolu("I141", "BOX ", idtmed[253], dits, 3);  
1997
1998      dits[0] = 0.06;
1999      dits[1] = 0.08;
2000      dits[2] = 24;
2001      dits[3] = 0;
2002      dits[4] = 108;
2003      gMC->Gsvolu("I140", "TUBS", idtmed[253], dits, 5);  
2004
2005      dits[0] = 0.1835;
2006      dits[1] = 0.01;
2007      dits[2] = 24;
2008      gMC->Gsvolu("I139", "BOX ", idtmed[253], dits, 3);
2009
2010      dits[0] = 0.1894 ;
2011      dits[1] = 0.01;
2012      dits[2] = 24;
2013      gMC->Gsvolu("I138", "BOX ", idtmed[253], dits, 3);  
2014
2015      dits[0] = 0.04;
2016      dits[1] = 0.06;
2017      dits[2] = 24;
2018      dits[3] = 0;
2019      dits[4] = 75.261;
2020      gMC->Gsvolu("I137", "TUBS", idtmed[253], dits, 5);  
2021
2022      dits[0] = 1.3401;
2023      dits[1] = 0.01;
2024      dits[2] = 24;
2025      gMC->Gsvolu("I136", "BOX ", idtmed[253], dits, 3);  
2026
2027      dits[0] = 0.05;
2028      dits[1] = 0.07;
2029      dits[2] = 24;
2030      dits[3] = 0;
2031      dits[4] = 72.739;
2032      gMC->Gsvolu("I135", "TUBS", idtmed[253], dits, 5);  
2033
2034      dits[0] = 0.1193;
2035      dits[1] = 0.01;
2036      dits[2] = 24;
2037      gMC->Gsvolu("I134", "BOX ", idtmed[253], dits, 3);    
2038
2039      dits[0] = 0.163;
2040      dits[1] = 0.01;
2041      dits[2] = 24;
2042      gMC->Gsvolu("I133", "BOX ", idtmed[253], dits, 3);   
2043
2044      dits[0] = 0.04;
2045      dits[1] = 0.06;
2046      dits[2] = 24;
2047      dits[3] = 0;
2048      dits[4] = 157.633;
2049      gMC->Gsvolu("I132", "TUBS", idtmed[253], dits, 5); 
2050
2051      dits[0] = 0.2497;
2052      dits[1] = 0.01;
2053      dits[2] = 24;
2054      gMC->Gsvolu("I131", "BOX ", idtmed[253], dits, 3); 
2055
2056      dits[0] = 0.06;
2057      dits[1] = 0.08;
2058      dits[2] = 24;
2059      dits[3] = 0;
2060      dits[4] = 148.633;
2061      gMC->Gsvolu("I130", "TUBS", idtmed[253], dits, 5); 
2062
2063      dits[0] = 0.292;
2064      dits[1] = 0.01;
2065      dits[2] = 24;
2066      gMC->Gsvolu("I129", "BOX ", idtmed[253], dits, 3);  
2067
2068      dits[0] = 0.163;
2069      dits[1] = 0.01;
2070      dits[2] = 24;
2071      gMC->Gsvolu("I128", "BOX ", idtmed[253], dits, 3);  
2072
2073      dits[0] = 0.04;
2074      dits[1] = 0.06;
2075      dits[2] = 24;
2076      dits[3] = 0;
2077      dits[4] = 161.297;
2078      gMC->Gsvolu("I126", "TUBS", idtmed[253], dits, 5);
2079
2080      dits[0] = 0.2433;
2081      dits[1] = 0.01;
2082      dits[2] = 24;
2083      gMC->Gsvolu("I125", "BOX ", idtmed[253], dits, 3);  
2084
2085      dits[0] = 0.06;
2086      dits[1] = 0.08;
2087      dits[2] = 24;
2088      dits[3] = 0;
2089      dits[4] = 42.883;
2090      gMC->Gsvolu("I124", "TUBS", idtmed[253], dits, 5);  
2091
2092      dits[0] = 0.793;
2093      dits[1] = ddet1+dchip1+dbus+0.0025; 
2094      dits[2] = 2.5;
2095      gMC->Gsvolu("I105", "BOX ", idtmed[290], dits, 3);  
2096
2097      di107[0] = 0.793;
2098      di107[1] = ddet1+dchip1;
2099      di107[2] = 3.536;
2100      gMC->Gsvolu("I107", "BOX ", idtmed[254], di107, 3); // contains det and chip   
2101                                                          // layer 1
2102      dits[0] = 0.705;
2103      dits[1] = 0.01;
2104      dits[2] = 2.5;
2105      gMC->Gsvolu("I109", "BOX ", idtmed[275], dits, 3);  
2106
2107      di108[0] = 0.705;
2108      di108[1] = dbus;
2109      di108[2] = 14.344;
2110      gMC->Gsvolu("I108", "BOX ", idtmed[275], di108, 3); // bus for both layers 
2111
2112      di1d7[0] = 0.7975;
2113      di1d7[1] = ddet2+dchip2;   
2114      di1d7[2] = 3.536;
2115      gMC->Gsvolu("I1D7", "BOX ", idtmed[254], di1d7, 3); // contains det and chip
2116                                                          // layer 2
2117      dits[0] = 0.06;
2118      dits[1] = 0.08;
2119      dits[2] = 24;
2120      dits[3] = 0;
2121      dits[4] = 80;
2122      gMC->Gsvolu("I112", "TUBS", idtmed[253], dits, 5);  
2123
2124      dits[0] = 0.04;
2125      dits[1] = 0.06;
2126      dits[2] = 24;
2127      dits[3] = 0;
2128      dits[4] = 80;
2129      gMC->Gsvolu("I111", "TUBS", idtmed[253], dits, 5);  
2130
2131      dits[0] = 0.15;
2132      dits[1] = 0.0146;
2133      dits[2] = 24;
2134      gMC->Gsvolu("I118", "BOX ", idtmed[273], dits, 3);  
2135
2136      dits[0] = 0.1315;
2137      dits[1] = 0.01;
2138      dits[2] = 24;
2139      gMC->Gsvolu("I110", "BOX ", idtmed[253], dits, 3);  
2140
2141      dits[0] = 0.025;
2142      dits[1] = 0.035;
2143      dits[2] = 24;
2144      dits[3] = 0;
2145      dits[4] = 180;
2146      gMC->Gsvolu("I114", "TUBS", idtmed[264], dits, 5);  
2147
2148      dits[0] = 0;
2149      dits[1] = 0.025;
2150      dits[2] = 24;
2151      dits[3] = 0;
2152      dits[4] = 180;
2153      gMC->Gsvolu("I115", "TUBS", idtmed[211], dits, 5);  // set freon as cooling fluid
2154      
2155      
2156      dits[0] = 0.063;
2157      dits[1] = 0.035;
2158      dits[2] = 24;
2159      gMC->Gsvolu("I116", "BOX ", idtmed[264], dits, 3); 
2160
2161      di106[0] = 0.7975;
2162      di106[1] = dchip1;   
2163      di106[2] = 0.68;
2164      gMC->Gsvolu("I106", "BOX ", idtmed[201], di106, 3);   // chip layer 1
2165
2166      di1d6[0] = 0.7975;
2167      di1d6[1] = dchip2;   
2168      di1d6[2] = 0.68;
2169      gMC->Gsvolu("I1D6", "BOX ", idtmed[201], di1d6, 3);   // chip layer 2
2170
2171      di101[0] = 0.705;
2172      di101[1] = ddet1;
2173      di101[2] = 3.536;
2174      gMC->Gsvolu("I101", "BOX ", idtmed[250], di101, 3);  // contains detector
2175                                                           // layer 1
2176      di1d1[0] = 0.705;
2177      di1d1[1] = ddet2;   
2178      di1d1[2] = 3.536;
2179      gMC->Gsvolu("I1D1", "BOX ", idtmed[250], di1d1, 3);  // contains detector
2180                                                           // layer 2
2181    
2182
2183      dits[0] = 0.063;
2184      dits[1] = 0.025;
2185      dits[2] = 24;
2186      gMC->Gsvolu("I117", "BOX ", idtmed[211], dits, 3); // set freon as cooling fluid
2187     
2188
2189      dits1[0] = 0.64;
2190      dits1[1] = ddet1;
2191      dits1[2] = 3.48;
2192      gMC->Gsvolu("ITS1", "BOX ", idtmed[200], dits1, 3);   // detector layer 1
2193
2194      dits2[0] = 0.64;
2195      dits2[1] = ddet2;  
2196      dits2[2] = 3.48;
2197      gMC->Gsvolu("ITS2", "BOX ", idtmed[200], dits2, 3);   // detector layer 2
2198
2199      dits[0] = 3.701;
2200      dits[1] = 7.699;
2201      dits[2] = 4;
2202      dits[3] = 57.1;
2203      dits[4] = 99.9;  
2204      gMC->Gsvolu("I650", "TUBS", idtmed[254], dits, 5);  // was I150 in old geom.
2205
2206      dits[0] = 3.7;
2207      dits[1] = 7.75;
2208      dits[2] = 0.05;
2209      gMC->Gsvolu("I651", "TUBE", idtmed[296], dits, 3);  // services disk
2210  
2211      dits[0] = 0;
2212      dits[1] = 0.5;
2213      dits[2] = 1.5;
2214      gMC->Gsvolu("I676", "TUBE", idtmed[274], dits, 3); // was I176 in old geom.
2215
2216      dits[0] = 0;
2217      dits[1] = 0.18;
2218      dits[2] = 0.8;
2219      gMC->Gsvolu("I673", "TUBE", idtmed[274], dits, 3); // was I173 in old geom.
2220
2221      dits[0] = 0;
2222      dits[1] = 0.18;
2223      dits[2] = 3;
2224      gMC->Gsvolu("I671", "TUBE", idtmed[274], dits, 3); // was I171 in old geom.
2225
2226      dits[0] = 0;
2227      dits[1] = 0.075;
2228      dits[2] = 0.8;
2229      gMC->Gsvolu("I669", "TUBE", idtmed[264], dits, 3); // was I169 in old geom.
2230
2231      dits[0] = 3.5;
2232      dits[1] = 5.6;
2233      dits[2] = 0.55;
2234      dits[3] = 0;
2235      dits[4] = 38;
2236      gMC->Gsvolu("I667", "TUBS", idtmed[263], dits, 5); // was I167 in old geom.
2237
2238      dits[0] = 6.6;
2239      dits[1] = 7.6;
2240      dits[2] = 0.5;
2241      dits[3] = 0;
2242      dits[4] = 9;
2243      gMC->Gsvolu("I666", "TUBS", idtmed[263], dits, 5); // was I166 in old geom.
2244
2245      dits[0] = 0.26;
2246      dits[1] = 0.32;
2247      dits[2] = 0.55;
2248      gMC->Gsvolu("I678", "TUBE", idtmed[263], dits, 3); // was I178 in old geom.
2249
2250      dits[0] = 0;
2251      dits[1] = 0.3;
2252      dits[2] = 1.5;
2253      gMC->Gsvolu("I677", "TUBE", idtmed[211], dits, 3); //set freon as cooling fluid
2254      // was I177 in old geom.     
2255      
2256      dits[0] = 0.07;
2257      dits[1] = 0.125;
2258      dits[2] = 0.3;
2259      gMC->Gsvolu("I675", "TUBE", idtmed[263], dits, 3); // was I175 in old geom.
2260
2261
2262      dits[0] = 0;
2263      dits[1] = 0.1;
2264      dits[2] = 0.8;
2265      gMC->Gsvolu("I674", "TUBE", idtmed[211], dits, 3); //set freon as cooling fluid
2266      // was I174 in old geom.     
2267      
2268      
2269
2270      dits[0] = 0;
2271      dits[1] = 0.1;
2272      dits[2] = 3;
2273      gMC->Gsvolu("I672", "TUBE", idtmed[211], dits, 3); //set freon as cooling fluid
2274      // was I172 in old geom.     
2275      
2276
2277      dits[0] = 0;
2278      dits[1] = 0.0746;
2279      dits[2] = 0.8;
2280      gMC->Gsvolu("I670", "TUBE", idtmed[211], dits, 3); //set freon as cooling fluid
2281      // was I170 in old geom.     
2282
2283      dits[0] = 3.7;
2284      dits[1] = 5.4;
2285      dits[2] = 0.35;
2286      dits[3] = 2;
2287      dits[4] = 36;
2288      gMC->Gsvolu("I668", "TUBS", idtmed[211], dits, 5); //set freon as cooling fluid
2289      // was I168 in old geom.     
2290      
2291      
2292
2293   }
2294
2295   // --- Define SDD volumes ------------------------------------------
2296
2297   
2298   cos30 = cos(30.*3.14159/180.);
2299   sin30 = sin(30.*3.14159/180.);
2300
2301   Double_t maxRadius = 28.5;  
2302   dits[0] = 0;
2303   dits[1] = 360;
2304   dits[2] = 6;
2305   dits[3] = -34.6; 
2306   dits[4] = 23.49;
2307   dits[5] = maxRadius;
2308   dits[6] = -27.35; 
2309   dits[7] = 23.49;
2310   dits[8] = maxRadius;
2311   dits[9] = -27.35;  
2312   dits[10] = 14.59; 
2313   dits[11] = maxRadius;
2314   dits[12] = 27.35;   
2315   dits[13] = 14.59;
2316   dits[14] = maxRadius;
2317   dits[15] = 27.35;    
2318   dits[16] = 23.49;
2319   dits[17] = maxRadius;
2320   dits[18] = 34.6;  
2321   dits[19] = 23.49;
2322   dits[20] = maxRadius;
2323   gMC->Gsvolu("IT34", "PCON", idtmed[209], dits, 21);  
2324
2325   // block of the SDD electronics and related ladder frame 
2326   iI018dits[0] = 3.2;
2327   iI018dits[1] = 2;
2328   iI018dits[2] = 3.65;
2329   gMC->Gsvolu("I018", "BOX ", idtmed[209], iI018dits, 3);  
2330
2331   // block of the SDD end ladder 
2332   iI024dits[0] = 3.2;
2333   iI024dits[1] = 2;
2334   iI024dits[2] = 2.725;
2335   gMC->Gsvolu("I024", "BOX ", idtmed[209], iI024dits, 3);  
2336
2337   // ladder frame of layer 3 - F.T. March,7-2001
2338   iI047dits[0] = iI018dits[0];
2339   iI047dits[1] = iI018dits[1];
2340   iI047dits[2] = 6*iI018dits[2] + 2*iI024dits[2]; 
2341   gMC->Gsvolu("I047", "BOX ", idtmed[209], iI047dits, 3);  
2342
2343   // ladder frame of layer 4 - F.T. March,7-2001
2344   iI048dits[0] = iI018dits[0];
2345   iI048dits[1] = iI018dits[1];
2346   iI048dits[2] = 8*iI018dits[2] + 2*iI024dits[2]; 
2347   gMC->Gsvolu("I048", "BOX ", idtmed[209], iI048dits, 3);  
2348
2349
2350   // global SDD volume (sensitive + insensitive) 
2351   iI302dits[0] = 3.6250;
2352   iI302dits[1] = 0.0150;
2353   iI302dits[2] = 4.3794;
2354   gMC->Gsvolu("I302", "BOX ", idtmed[278], iI302dits, 3);
2355
2356   // Like for I302 - F.T. March,7-2001
2357   iI402dits[0] = 3.6250;
2358   iI402dits[1] = 0.0150;
2359   iI402dits[2] = 4.3794;
2360   gMC->Gsvolu("I402", "BOX ", idtmed[278], iI402dits, 3);  
2361
2362   // SDD ladder of layer 3 - F.T. March,7-2001
2363   iI004dits[0] = iI302dits[0]+0.005;
2364   iI004dits[1] = 2*iI302dits[1]+ySDDsep/2.;
2365   iI004dits[2] = TMath::Abs(zSDDlay3[0]);
2366   if (iI004dits[2] < TMath::Abs(zSDDlay3[5])) {
2367     iI004dits[2] = TMath::Abs(zSDDlay3[5]);
2368   }
2369   iI004dits[2] = iI004dits[2] + iI302dits[2];
2370   gMC->Gsvolu("I004", "BOX ", idtmed[209], iI004dits, 3);  
2371
2372   // SDD ladder of layer 4 - F.T. March,7-2001
2373   iI005dits[0] = iI402dits[0]+0.005;
2374   iI005dits[1] = 2*iI402dits[1]+ySDDsep/2.;
2375   iI005dits[2] = TMath::Abs(zSDDlay4[0]);
2376   if (iI005dits[2] < TMath::Abs(zSDDlay4[7])) {
2377     iI005dits[2] = TMath::Abs(zSDDlay4[7]);
2378   }
2379   iI005dits[2] = iI005dits[2] + iI402dits[2];
2380   gMC->Gsvolu("I005", "BOX ", idtmed[209], iI005dits, 3);  
2381
2382
2383   // -- block of the SDD ladder foot and end ladder
2384
2385   // ladder foot mother volume
2386   iI028dits[0] = 3.0000;
2387   iI028dits[1] = 0.4000;
2388   iI028dits[2] = 0.9000;
2389   gMC->Gsvolu("I028", "BOX ", idtmed[224], iI028dits, 3);  
2390
2391   // positioning-box #1 at SDD end-ladder - F.T. March,7-2001
2392   iI420dits[0] = 0.4500;
2393   iI420dits[1] = 0.4000;
2394   iI420dits[2] = 0.4500;
2395   gMC->Gsvolu("I420", "BOX ", idtmed[264], iI420dits, 3);  
2396
2397   // positioning-box #2 at SDD end-ladder - F.T. March,7-2001
2398   iI421dits[0] = 0.;
2399   iI421dits[1] = 0.25;
2400   iI421dits[2] = iI420dits[1];
2401   gMC->Gsvolu("I421", "TUBE", idtmed[209], iI421dits, 3);  
2402
2403   // reference ruby-sphere at SDD end-ladder - F.T. March,7-2001 
2404   iI422dits[0] = 0.0000;
2405   iI422dits[1] = 0.2000;
2406   iI422dits[2] = 0.0000;
2407   iI422dits[3] = 180.00;
2408   iI422dits[4] = 0.0000;
2409   iI422dits[5] = 360.00;
2410   gMC->Gsvolu("I422", "SPHE", idtmed[277], iI422dits, 6);  
2411
2412   // support for ruby-sphere (I422) - F.T. March,7-2001
2413   iI423dits[0] = 0.0000;
2414   iI423dits[1] = 0.1000;
2415   iI423dits[2] = (iI420dits[1]-iI422dits[1])/2.;
2416   gMC->Gsvolu("I423", "TUBE", idtmed[264], iI423dits, 3);  
2417
2418   // passage for HV microcables - F.T. March,7-2001
2419   iI424dits[0] = 1.5000;
2420   iI424dits[1] = 0.1500;
2421   iI424dits[2] = iI421dits[2];
2422   gMC->Gsvolu("I424", "BOX ", idtmed[209], iI424dits, 3);  
2423
2424   // HV microcables segment at the end ladder - F.T. March,7-2001
2425   iI425dits[0] = 1.350000;
2426   iI425dits[1] = 0.015250;
2427   iI425dits[2] = iI024dits[2];
2428   gMC->Gsvolu("I425", "BOX ", idtmed[279], iI425dits, 3);  
2429
2430   // lower edge of SDD ladder frame at end-ladder - part 1
2431   dits[0] = 0.2;
2432   dits[1] = 0.1815;
2433   dits[2] = iI024dits[2];
2434   dits[3] = 0.015;
2435   gMC->Gsvolu("I025", "TRD1", idtmed[208], dits, 4);  
2436
2437   // lower edge of SDD ladder frame at end-ladder - part 2
2438   dits[0] = 0.183;
2439   dits[1] = 0.165;
2440   dits[2] = iI024dits[2];
2441   dits[3] = 0.015;
2442   gMC->Gsvolu("I026", "TRD1", idtmed[208], dits, 4);  
2443
2444   // new: for the 1st top rod of the structure 
2445   // at the end-ladder - F.T. March,7-2001
2446   iI029dits[0] = 0.2;
2447   iI029dits[1] = 0.1815;
2448   iI029dits[2] = 1.0100;
2449   iI029dits[3] = 0.015;
2450   gMC->Gsvolu("I029", "TRD1", idtmed[208], iI029dits, 4);  
2451
2452   // new: for the 2nd top rod of the structure 
2453   // at the end-ladder - F.T. March,7-2001
2454   iI030dits[0] = 0.1830;
2455   iI030dits[1] = 0.1650;
2456   iI030dits[2] = 1.0100;
2457   iI030dits[3] = 0.0150;
2458   gMC->Gsvolu("I030", "TRD1", idtmed[208], iI030dits, 4);  
2459
2460   // inox cooling tubes for the end ladder - F.T. March,7-2001
2461   iI031dits[0] = 0.093;
2462   iI031dits[1] = 0.1;
2463   iI031dits[2] = iI024dits[2];
2464   gMC->Gsvolu("I031", "TUBE", idtmed[264], iI031dits, 3);  
2465
2466   if (fluid == 1) {
2467      // cooling water for the end ladder - F.T. March,7-2001
2468      iI032dits[0] = 0;
2469      iI032dits[1] = iI031dits[0];
2470      iI032dits[2] = iI024dits[2];
2471      gMC->Gsvolu("I032", "TUBE", idtmed[211], iI032dits, 3);  
2472   } else {
2473      // cooling freon for the end ladder - R.B. March,21-2001
2474      iI032dits[0] = 0;
2475      iI032dits[1] = iI031dits[0];
2476      iI032dits[2] = iI024dits[2];
2477      gMC->Gsvolu("I032", "TUBE", idtmed[212], iI032dits, 3);    
2478   }
2479   
2480   // -- block of the SDD ladder frame holding the electronics
2481
2482   // edge of the ladder frame - part 1
2483   dits[0] = 0.2;
2484   dits[1] = 0.182;
2485   dits[2] = 3.65;
2486   dits[3] = 0.015;
2487   gMC->Gsvolu("I019", "TRD1", idtmed[208], dits, 4);  
2488
2489   // edge of the ladder frame - part 2
2490   dits[0] = 0.183;
2491   dits[1] = 0.165;
2492   dits[2] = 3.65;
2493   dits[3] = 0.015;
2494   gMC->Gsvolu("I020", "TRD1", idtmed[208], dits, 4);  
2495
2496   // inclined segments of the ladder frame
2497   dits[0] = 2.23;
2498   dits[1] = 2.1;
2499   dits[2] = 0.05;
2500   dits[3] = 0.03;
2501   gMC->Gsvolu("I021", "TRD1", idtmed[208], dits, 4);  
2502
2503   // horiz.segments of the ladders, normal to ladder edges
2504   dits[0] = 2.1;
2505   dits[1] = 2;
2506   dits[2] = 0.06;
2507   dits[3] = 0.04;
2508   gMC->Gsvolu("I022", "TRD1", idtmed[208], dits, 4);  
2509
2510   // horiz.segments of the ladders, at 45 deg. to ladder edges
2511   dits[0] = 2.615;
2512   dits[1] = 2.465;
2513   dits[2] = 0.06;
2514   dits[3] = 0.04;
2515   gMC->Gsvolu("I023", "TRD1", idtmed[208], dits, 4);  
2516
2517   // supports of the ceramic pins holding the detectors
2518   dits[0] = 0.3;
2519   dits[1] = 0.05;
2520   dits[2] = 0.15;
2521   gMC->Gsvolu("I033", "BOX ", idtmed[208], dits, 3);  
2522
2523   // ceramic pins holding the detectors
2524   dits[0] = 0;
2525   dits[1] = 0.05;
2526   dits[2] = 0.225;
2527   gMC->Gsvolu("I034", "TUBE", idtmed[277], dits, 3);  
2528
2529   // holders of cooling tubes
2530   iI035dits[0] = 0.1;
2531   iI035dits[1] = 0.15;
2532   iI035dits[2] = 0.2;
2533   gMC->Gsvolu("I035", "TUBE", idtmed[208], iI035dits, 3);
2534
2535   // top holders of microcables
2536   dits[0] = 0.2;
2537   dits[1] = 0.01;
2538   dits[2] = 0.05;
2539   gMC->Gsvolu("I036", "BOX ", idtmed[208], dits, 3);  
2540
2541   // inox cooling tubes - F.T. March,7-2001
2542   iI037dits[0] = 0.093;
2543   iI037dits[1] = 0.1;
2544   iI037dits[2] = iI018dits[2];
2545   gMC->Gsvolu("I037", "TUBE", idtmed[264], iI037dits, 3);
2546
2547   if (fluid == 1) {
2548      // cooling water - F.T. March,7-2001
2549      iI038dits[0] = 0;
2550      iI038dits[1] = iI037dits[0];
2551      iI038dits[2] = iI018dits[2];
2552      gMC->Gsvolu("I038", "TUBE", idtmed[211], iI038dits, 3);  
2553   } else {
2554      // cooling freon - R.B. March,21-2001
2555      iI038dits[0] = 0;
2556      iI038dits[1] = iI037dits[0];
2557      iI038dits[2] = iI018dits[2];
2558      gMC->Gsvolu("I038", "TUBE", idtmed[212], iI038dits, 3);    
2559   }
2560   // -- block of the SDD electronics (heat bridge, chips, hybrid, anode microcable)
2561
2562   // SDD heat bridge - F.T. March,7-2001
2563   iI039dits[0] = 1.1000;
2564   iI039dits[1] = 0.0087;
2565   iI039dits[2] = 3.2500;
2566   gMC->Gsvolu("I039", "BOX ", idtmed[268], iI039dits, 3);  
2567
2568   // SDD clip part 1
2569   dits[0] = 0.25;
2570   dits[1] = 0.01;
2571   dits[2] = iI039dits[2];
2572   gMC->Gsvolu("I040", "BOX ", idtmed[268], dits, 3);  
2573
2574   // SDD clip part 2
2575   iI041dits[0] = 0.1;
2576   iI041dits[1] = 0.12;
2577   iI041dits[2] = iI039dits[2];
2578   iI041dits[3] = 90;
2579   iI041dits[4] = 320;
2580   gMC->Gsvolu("I041", "TUBS", idtmed[268], iI041dits, 5);  
2581
2582
2583   // SDD PASCAL - F.T. March,7-2001
2584   iI042dits[0] = 0.5000;
2585   iI042dits[1] = 0.0175;
2586   iI042dits[2] = 0.5000;
2587   gMC->Gsvolu("I042", "BOX ", idtmed[206], iI042dits, 3);  
2588
2589   // SDD AMBRA - F.T. March,7-2001
2590   iI043dits[0] = 0.3500;
2591   iI043dits[1] = 0.0175;
2592   iI043dits[2] = 0.5000;
2593   gMC->Gsvolu("I043", "BOX ", idtmed[206], iI043dits, 3);  
2594
2595   // SDD capacitors - F.T. March,7-2001
2596   iI051dits[0] = 0.1400;
2597   iI051dits[1] = 0.0350;
2598   iI051dits[2] = 0.0625;
2599   gMC->Gsvolu("I051", "BOX ", idtmed[276], iI051dits, 3);  
2600
2601   // SDD hybrid circuit - F.T. March,7-2001
2602   iI052dits[0] = 1.725000;
2603   iI052dits[1] = 0.003743;
2604   iI052dits[2] = iI039dits[2];
2605   gMC->Gsvolu("I052", "BOX ", idtmed[281], iI052dits, 3);
2606
2607   // SDD anode microcable : changed - F.T. March,7-2001
2608   iI044dits[0] = iI018dits[2];
2609   iI044dits[1] = iI039dits[2];
2610   iI044dits[2] = 0.00084;
2611   iI044dits[3] = (15.189149/(iI044dits[0]+iI044dits[1]))/2;
2612   gMC->Gsvolu("I044", "TRD1", idtmed[282], iI044dits, 4);  
2613   volI044 = ((2*iI044dits[0] + 2*iI044dits[1]) * 2*iI044dits[2])/2 * 2*iI044dits[3];
2614
2615   // SDD electronics box - F.T. March,7-2001
2616   iI050dits[1] = iI039dits[1]+iI052dits[1]+iI051dits[1]+iI044dits[2];
2617   iI050dits[0] = iI018dits[1]/cos(30.*3.14159/180.)-iI050dits[1]*sin(30.*3.14159/180.);
2618   iI050dits[2] = iI018dits[2];
2619   gMC->Gsvolu("I050", "BOX ", idtmed[209], iI050dits, 3);
2620
2621   // SDD sensitive volume
2622   dits[0] = 3.50850;
2623   dits[1] = 0.01499; // not 0.015 because it is included into I302 which is 0.015
2624   dits[2] = 3.76320;
2625   gMC->Gsvolu("ITS3", "BOX ", idtmed[200], dits, 3);  
2626
2627   // Like for ITS3 - F.T. March,7-2001
2628   dits[0] = 3.50850;
2629   dits[1] = 0.01499; // not 0.015 because it is included into I402 which is 0.015
2630   dits[2] = 3.76320;
2631   gMC->Gsvolu("ITS4", "BOX ", idtmed[200], dits, 3);  
2632
2633
2634   // --- Define SSD volumes ------------------------------------------
2635
2636     
2637   dits[0] = 0;
2638   dits[1] = 360;
2639   dits[2] = 6;
2640   dits[3] = -57.45;
2641   dits[4] = 43.6;
2642   dits[5] = 48;  
2643   dits[6] = -49.15; 
2644   dits[7] = 43.6;
2645   dits[8] = 48;  
2646   dits[9] = -49.15;  
2647   dits[10] = 36.9;
2648   dits[11] = 48;  
2649   dits[12] = 50.55;  
2650   dits[13] = 36.9;
2651   dits[14] = 48;  
2652   dits[15] = 50.55;  
2653   dits[16] = 43.6;
2654   dits[17] = 48;  
2655   dits[18] = 57.45;
2656   dits[19] = 43.6;
2657   dits[20] = 48;   
2658   //gMC->Gsvolu("IT56", "PCON", idtmed[220], dits, 21);  // SSD air 
2659   gMC->Gsvolu("IT56", "PCON", idtmed[204], dits, 21);    // air 
2660   
2661   dits[0] =  3.4;
2662   dits[1] = 1.955;
2663   dits[2] = 56.5; 
2664   gMC->Gsvolu("I570", "BOX ", idtmed[204], dits, 3);  
2665   
2666   dits[0] = 3.75;
2667   dits[1] = 0.045;
2668   dits[2] = 50.975;
2669   gMC->Gsvolu("I569", "BOX ", idtmed[204], dits, 3);  
2670   
2671   dits[0] = 3.4;
2672   dits[1] = 1.955;
2673   dits[2] = 47; 
2674   gMC->Gsvolu("I571", "BOX ", idtmed[204], dits, 3);  
2675   
2676   dits[0] = 3.75;
2677   dits[1] = 0.045;
2678   dits[2] = 43.3;  
2679   gMC->Gsvolu("I565", "BOX ", idtmed[204], dits, 3);  
2680   
2681   dits[0] = 3.4;
2682   dits[1] = 1.955;
2683   dits[2] = 3.15;
2684   gMC->Gsvolu("I553", "BOX ", idtmed[204], dits, 3);  
2685   
2686   dits[0] = 3.405;
2687   dits[1] = 1.955;
2688   dits[2] = 1.955;
2689   gMC->Gsvolu("I523", "BOX ", idtmed[204], dits, 3);  
2690   
2691   dits[0] = 3.75;
2692   dits[1] = 0.015;
2693   dits[2] = 2.1;
2694   gMC->Gsvolu("I566", "BOX ", idtmed[206], dits, 3); 
2695   
2696   dits[0] = 3.4;
2697   dits[1] = 1.955;
2698   dits[2] = 3.15;
2699   gMC->Gsvolu("I544", "BOX ", idtmed[204], dits, 3);  
2700   
2701   dits[0] = 3.41;
2702   dits[1] = 1.955;
2703   dits[2] = 1.955;
2704   gMC->Gsvolu("I516", "BOX ", idtmed[204], dits, 3);  
2705   
2706   dits[0] = 3.75;
2707   dits[1] = 0.015;
2708   dits[2] = 2.1;
2709   gMC->Gsvolu("I562", "BOX ", idtmed[206], dits, 3);   
2710   
2711   if (fluid == 1) {
2712      dits[0] = 0;
2713      dits[1] = 0.07;
2714      dits[2] = 3.15;
2715      gMC->Gsvolu("I559", "TUBE", idtmed[211], dits, 3);  // set water as cooling fluid
2716   } else {
2717      dits[0] = 0;
2718      dits[1] = 0.07;
2719      dits[2] = 3.15;
2720      gMC->Gsvolu("I559", "TUBE", idtmed[212], dits, 3);  // set freon as cooling fluid
2721   }
2722   
2723   dits[0] = 0.07;
2724   dits[1] = 0.1;
2725   dits[2] = 3.15;
2726   gMC->Gsvolu("I560", "TUBE", idtmed[210], dits, 3);  
2727   
2728   dits[0] = 0.225;
2729   dits[1] = 0.195;
2730   dits[2] = 3.15;
2731   dits[3] = 0.025;
2732   gMC->Gsvolu("I558", "TRD1", idtmed[203], dits, 4);  
2733   
2734   dits[0] = 0.25;
2735   dits[1] = 0.22;
2736   dits[2] = 3.15;
2737   dits[3] = 0.025;
2738   gMC->Gsvolu("I557", "TRD1", idtmed[203], dits, 4);  
2739   
2740   dits[0] = 2.17;
2741   dits[1] = 0.035;
2742   dits[2] = 0.05;
2743   gMC->Gsvolu("I556", "BOX ", idtmed[203], dits, 3);  
2744   
2745   dits[0] = 2 ;
2746   dits[1] = 0.035;
2747   dits[2] = 0.05;
2748   gMC->Gsvolu("I554", "BOX ", idtmed[203], dits, 3);  
2749   
2750   dits[0] = 2.675;
2751   dits[1] = 0.035;
2752   dits[2] = 0.05;
2753   gMC->Gsvolu("I555", "BOX ", idtmed[203], dits, 3); 
2754   
2755   dits[0] = 0.3;
2756   dits[1] = 0.15;
2757   dits[2] = 0.15;
2758   gMC->Gsvolu("I561", "BOX ", idtmed[203], dits, 3);  
2759   
2760   dits[0] = 0.025;
2761   dits[1] = 0.025;
2762   dits[2] = 0.05;
2763   gMC->Gsvolu("I519", "BOX ", idtmed[214], dits, 3);  
2764   
2765   dits[0] = 0.304;
2766   dits[1] = 0.0275;
2767   dits[2] = 0.432;
2768   gMC->Gsvolu("I521", "BOX ", idtmed[206], dits, 3);   
2769   
2770   dits[0] = 0.16;
2771   dits[1] = 0.08;
2772   dits[2] = 0.08;
2773   gMC->Gsvolu("I520", "BOX ", idtmed[214], dits, 3);  
2774   
2775   dits[0] = 3.4;
2776   dits[1] = 0.015;
2777   dits[2] = 0.525;
2778   gMC->Gsvolu("I518", "BOX ", idtmed[203], dits, 3);  
2779   
2780   dits[0] = 0.15;
2781   dits[1] = 0.105;
2782   dits[2] = 0.29;
2783   dits[3] = 0.08;
2784   gMC->Gsvolu("I522", "TRD1", idtmed[203], dits, 4);  
2785   
2786   dits[0] = 0.07;
2787   dits[1] = 0.1;
2788   dits[2] = 1.955;
2789   gMC->Gsvolu("I542", "TUBE", idtmed[210], dits, 3);  
2790   
2791   if (fluid == 1) {
2792      dits[0] = 0;
2793      dits[1] = 0.07;
2794      dits[2] = 1.955;
2795      gMC->Gsvolu("I541", "TUBE", idtmed[211], dits, 3);  // set water as cooling fluid 
2796   } else {
2797      dits[0] = 0;
2798      dits[1] = 0.07;
2799      dits[2] = 1.955;
2800      gMC->Gsvolu("I541", "TUBE", idtmed[212], dits, 3);  // set freon as cooling fluid
2801   }
2802   
2803   dits[0] = 0.3;
2804   dits[1] = 0.15;
2805   dits[2] = 0.15;
2806   gMC->Gsvolu("I543", "BOX ", idtmed[203], dits, 3);  
2807   
2808   dits[0] = 0.25;
2809   dits[1] = 0.22;
2810   dits[2] = 1.955;
2811   dits[3] = 0.025;
2812   gMC->Gsvolu("I537", "TRD1", idtmed[203], dits, 4); 
2813   
2814   dits[0] = 0.225;
2815   dits[1] = 0.195;
2816   dits[2] = 1.955;
2817   dits[4] = 0.025;
2818   gMC->Gsvolu("I538", "TRD1", idtmed[203], dits, 4);  
2819   
2820   dits[0] = 2.17;
2821   dits[1] = 0.035;
2822   dits[2] = 0.05;
2823   gMC->Gsvolu("I536", "BOX ", idtmed[203], dits, 3);  
2824   
2825   dits[0] = 2.675;
2826   dits[1] = 0.035;
2827   dits[2] = 0.05;
2828   gMC->Gsvolu("I535", "BOX ", idtmed[203], dits, 3);   
2829   
2830   dits[0] = 2;
2831   dits[1] = 0.035;
2832   dits[2] = 0.05;
2833   gMC->Gsvolu("I534", "BOX ", idtmed[203], dits, 3);  
2834   
2835   dits[0] = 0;
2836   dits[1] = 0.05;
2837   dits[2] = 0.17;
2838   gMC->Gsvolu("I540", "TUBE", idtmed[203], dits, 3);  
2839   
2840   dits[0] = 0;
2841   dits[1] = 0.05;
2842   dits[2] = 0.205;
2843   gMC->Gsvolu("I539", "TUBE", idtmed[203], dits, 3);  
2844   
2845   dits[0] = 3.65;
2846   dits[1] = 0.015;
2847   dits[2] = 2;
2848   gMC->Gsvolu("ITS6", "BOX ", idtmed[200], dits, 3);  
2849   
2850   if (fluid == 1) {
2851      dits[0] = 0;
2852      dits[1] = 0.07;
2853      dits[2] = 3.15;
2854      gMC->Gsvolu("I550", "TUBE", idtmed[211], dits, 3);  // set water as cooling fluid
2855   } else {
2856      dits[0] = 0;
2857      dits[1] = 0.07;
2858      dits[2] = 3.15;
2859      gMC->Gsvolu("I550", "TUBE", idtmed[212], dits, 3);  // set freon as cooling fluid
2860   }
2861   
2862   dits[0] = 0.07;
2863   dits[1] = 0.1;
2864   dits[2] = 3.15;
2865   gMC->Gsvolu("I551", "TUBE", idtmed[210], dits, 3);  
2866   
2867   dits[0] = 0.225;
2868   dits[1] = 0.195;
2869   dits[2] = 3.15;
2870   dits[3] = 0.025;
2871   gMC->Gsvolu("I549", "TRD1", idtmed[203], dits, 4); 
2872   
2873   dits[0] = 0.25;
2874   dits[1] = 0.22;
2875   dits[2] = 3.15;
2876   dits[3] = 0.025;
2877   gMC->Gsvolu("I548", "TRD1", idtmed[203], dits, 4);  
2878   
2879   dits[0] = 2.17;
2880   dits[1] = 0.035;
2881   dits[2] = 0.05;
2882   gMC->Gsvolu("I547", "BOX ", idtmed[203], dits, 3);  
2883   
2884   dits[0] = 2;
2885   dits[1] = 0.035;
2886   dits[2] = 0.05;
2887   gMC->Gsvolu("I545", "BOX ", idtmed[203], dits, 3);   
2888   
2889   dits[0] = 2.675;
2890   dits[1] = 0.035;
2891   dits[2] = 0.05;
2892   gMC->Gsvolu("I546", "BOX ", idtmed[203], dits, 3);  
2893   
2894   dits[0] = 0.3;
2895   dits[1] = 0.15;
2896   dits[2] = 0.15;
2897   gMC->Gsvolu("I552", "BOX ", idtmed[203], dits, 3);  
2898   
2899   dits[0] = 0.304;
2900   dits[1] = 0.0275;
2901   dits[2] = 0.4322;
2902   gMC->Gsvolu("I515", "BOX ", idtmed[206], dits, 3);  
2903   
2904   dits[0] = 0.025;
2905   dits[1] = 0.025;
2906   dits[2] = 0.05;
2907   gMC->Gsvolu("I513", "BOX ", idtmed[214], dits, 3);  
2908   
2909   dits[0] = 0.16;
2910   dits[1] = 0.08;
2911   dits[2] = 0.08;
2912   gMC->Gsvolu("I514", "BOX ", idtmed[214], dits, 3);  
2913   
2914   dits[0] = 3.4;
2915   dits[1] = 0.015;
2916   dits[2] = 0.525;
2917   gMC->Gsvolu("I512", "BOX ", idtmed[203], dits, 3);  
2918   
2919   dits[0] = 0.225;
2920   dits[1] = 0.195;
2921   dits[2] = 1.955;
2922   dits[3] = 0.025;
2923   gMC->Gsvolu("I528", "TRD1", idtmed[203], dits, 4); 
2924   
2925   dits[0] = 0.25;
2926   dits[1] = 0.22;
2927   dits[2] = 1.955;
2928   dits[3] = 0.025;
2929   gMC->Gsvolu("I527", "TRD1", idtmed[203], dits, 4);  
2930   
2931   dits[0] = 2.17;
2932   dits[1] = 0.035;
2933   dits[2] = 0.05;
2934   gMC->Gsvolu("I526", "BOX ", idtmed[203], dits, 3);  
2935   
2936   dits[0] = 2.675;
2937   dits[1] = 0.035;
2938   dits[2] = 0.05;
2939   gMC->Gsvolu("I525", "BOX ", idtmed[203], dits, 3);  
2940    
2941   dits[0] = 2;
2942   dits[1] = 0.035;
2943   dits[2] = 0.05;
2944   gMC->Gsvolu("I524", "BOX ", idtmed[203], dits, 3);  
2945    
2946   dits[0] = 0;
2947   dits[1] = 0.05;
2948   dits[2] = 0.205;
2949   gMC->Gsvolu("I529", "TUBE", idtmed[203], dits, 3);  
2950    
2951   dits[0] = 0;
2952   dits[1] = 0.05;
2953   dits[2] = 0.17;
2954   gMC->Gsvolu("I530", "TUBE", idtmed[203], dits, 3);  
2955    
2956   dits[0] = 0.15;
2957   dits[1] = 0.105;
2958   dits[2] = 0.29;
2959   dits[3] = 0.08;
2960   gMC->Gsvolu("I517", "TRD1", idtmed[203], dits, 4);  
2961   
2962   if (fluid == 1) {
2963      dits[0] = 0;
2964      dits[1] = 0.07;
2965      dits[2] = 1.955;
2966      gMC->Gsvolu("I531", "TUBE", idtmed[211], dits, 3);  // set water as cooling fluid
2967   } else {
2968      dits[0] = 0;
2969      dits[1] = 0.07;
2970      dits[2] = 1.955;
2971      gMC->Gsvolu("I531", "TUBE", idtmed[212], dits, 3);  // set freon as cooling fluid
2972   }
2973      
2974   dits[0] = 0.07;
2975   dits[1] = 0.1;
2976   dits[2] = 1.955;
2977   gMC->Gsvolu("I532", "TUBE", idtmed[210], dits, 3);  
2978  
2979   dits[0] = 0.3;
2980   dits[1] = 0.15;
2981   dits[2] = 0.15;
2982   gMC->Gsvolu("I533", "BOX ", idtmed[203], dits, 3);  
2983   
2984   dits[0] = 3.65;
2985   dits[1] = 0.015;
2986   dits[2] = 2;
2987   gMC->Gsvolu("ITS5", "BOX ", idtmed[200], dits, 3);  
2988
2989
2990
2991   // --- Define volumes of shield of SPD ----------------
2992
2993
2994   dits[0] = 8.37;
2995   dits[1] = 9.93;
2996   dits[2] = 25;
2997   gMC->Gsvolu("IC01", "TUBE", idtmed[289], dits, 3);   
2998
2999   dits[0] = 8.3;
3000   dits[1] = 9.995;
3001   dits[2] = 17.5/2.;
3002   gMC->Gsvolu("IC02", "TUBE", idtmed[289], dits, 3);    
3003   
3004  
3005   // --- Define volume of first cylinder between SPD and SDD --------------
3006   
3007   dits[0] = (21.-0.128)/2.;      
3008   dits[1] = 21./2.;
3009   dits[2] = 39.4;      
3010   gMC->Gsvolu("ICY1", "TUBE", idtmed[208], dits, 3);
3011          
3012   // --- Define volume of second cylinder between SDD and SSD --------------
3013
3014   dits[0] = (59.5-0.128)/2.;      
3015   dits[1] = 59.5/2.;
3016   dits[2] = 56.2;      // was 57
3017   gMC->Gsvolu("ICY2", "TUBE", idtmed[208], dits, 3);
3018
3019   // --- Define volumes of SDD cone ---------------------------------- 
3020
3021   dits[0] = 0;
3022   dits[1] = 360;
3023   dits[2] = 12;
3024   dits[3] = -59.7;
3025   dits[4] = 27;
3026   dits[5] = 28.6;
3027   dits[6] = -42.7;
3028   dits[7] = 10;
3029   dits[8] = 28.6;
3030   dits[9] = -34.65;
3031   dits[10] = 10;
3032   dits[11] = 28.6;
3033   dits[12] = -34.65;
3034   dits[13] = 10;
3035   dits[14] = 23.495;
3036   dits[15] = -23.7;
3037   dits[16] = 10;
3038   dits[17] = 23.495;
3039   dits[18] = -23.7;
3040   dits[19] = 10;
3041   dits[20] = 14.595;
3042   dits[21] = 23.7;
3043   dits[22] = 10;
3044   dits[23] = 14.595;
3045   dits[24] = 23.7;
3046   dits[25] = 10;
3047   dits[26] = 23.495;
3048   dits[27] = 34.65;
3049   dits[28] = 10;
3050   dits[29] = 23.495;
3051   dits[30] = 34.65;
3052   dits[31] = 10;
3053   dits[32] = 28.6;
3054   dits[33] = 42.7;
3055   dits[34] = 10;
3056   dits[35] = 28.6;
3057   dits[36] = 59.7;
3058   dits[37] = 27.2637;
3059   dits[38] = 28.6;             
3060   gMC->Gsvolu("IS02", "PCON", idtmed[204], dits, 39);
3061   
3062   dits[0] = 0;
3063   dits[1] = 360;
3064   dits[2] = 6;
3065   dits[3] = 38.65;
3066   dits[4] = 10.75;    
3067   dits[5] = 12.25;      
3068   dits[6] = 40.15;
3069   dits[7] = 10.75;
3070   dits[8] = 13.96;   
3071   dits[9] = 40.15;
3072   dits[10] = 12.46;  
3073   dits[11] = 13.96;
3074   dits[12] = 55.75;
3075   dits[13] = 27;
3076   dits[14] = 28.5;
3077   dits[15] = 55.75;
3078   dits[16] = 27;
3079   dits[17] = 28.5;
3080   dits[18] = 57.25;
3081   dits[19] = 27;
3082   dits[20] = 28.5;
3083 //  gMC->Gsvolu("I093", "PCON", idtmed[272], dits, 21);  // SDD cone
3084   gMC->Gsvolu("I093", "PCON", idtmed[287], dits, 21);  // SDD cone
3085
3086   // Redefined to make adding material for cables easier (FMD geometry)
3087   Double_t s1,s2,b1,b2;
3088   s1 = (dits[13]-dits[10])/(dits[12]-dits[9]); // Slope of conical section
3089   s2 = (dits[14]-dits[11])/(dits[12]-dits[9]); // Slope of conical section
3090   b1 = dits[13] - s1*dits[12]; // inside cone axis intersept
3091   b2 = dits[14] - s2*dits[12]; // outside cone axis intersept
3092   dits[0] = 0; //dits[0] = 0;
3093   dits[1] = 50; //dits[1] = 50;
3094   dits[2] = 4; //dits[2] = 3;
3095
3096   dits[4] = 14.0; //dits[4] = 14;            // r inner
3097   dits[5] = dits[4]; //dits[5] = 18.75;      // r outer
3098   dits[3] = (dits[4]-b2)/s2; //dits[3] = 39;  // Z
3099
3100   dits[7] = dits[4]; //dits[7] = 14;             // r inner
3101   dits[6] = (dits[7]-b1)/s1; //dits[6] = 46.7-3;  // Z
3102   dits[8] = s2*dits[6]+b2; //dits[8] = 18.75;     // r outer
3103
3104   dits[11] = 18.75; //dits[11] = 18.75;           // r outer
3105   dits[9] = (dits[11]-b2)/s2; //dits[9] = 51.45-3; // Z
3106   dits[10] = s1*dits[9]+b1; //dits[10] = 18.75;    // r inner
3107
3108   dits[13] = dits[11];         // r inner
3109   dits[14] = dits[11];         // r outer
3110   dits[12] = (dits[13]-b1)/s1;  // Z
3111 //  gMC->Gsvolu("I099", "PCON", idtmed[204], dits, 12); // SDD 3 cone hole
3112   gMC->Gsvolu("I099", "PCON", idtmed[285], dits, 15); // SDD 3 cone hole
3113
3114   dits[0] = 0; //dits[0] = 0;
3115   dits[1] = 25; //dits[1] = 25;
3116   dits[2] = 4; //dits[2] = 3;
3117
3118   dits[4] = 23.4; //dits[4] = 23.4;  // r inner
3119   dits[5] = dits[4]; //dits[5] = 26.4;  // r outer
3120   dits[3] = (dits[4]-b2)/s2; //dits[3] = 49;  // Z
3121
3122   dits[7] = dits[4]; //dits[7] = 23.4;  // r inner
3123   dits[6] = (dits[7]-b1)/s1; //dits[6] = 56.1-3;  // Z
3124   dits[8] = s2*dits[6]+b2; //dits[8] = 26.4;  // r outer
3125
3126   dits[11] = 26.4; //dits[11] = 26.4;  // r outer
3127   dits[9] = (dits[11]-b2)/s2; //dits[9] = 59.1-3;  // Z
3128   dits[10] = s1*dits[9]+b1; //dits[10] = 26.4;  // r inner
3129
3130   dits[13] = dits[11];         // r inner
3131   dits[14] = dits[11];         // r outer
3132   dits[12] = (dits[13]-b1)/s1;  // Z
3133 //  gMC->Gsvolu("I200", "PCON", idtmed[204], dits, 12); // SDD 4 cone hole
3134   gMC->Gsvolu("I200", "PCON", idtmed[285], dits, 15); // SDD 4 cone hole
3135     //Begin_Html
3136     /*
3137       <img src="http://www.Physics.ohio-state.edu/~nilsen/ITS/ITS_FMD_PMD_Geom.eps">
3138       </pre>
3139       <br clear=left>
3140       <font size=+2 color=blue>
3141       <p>SDD Support cone with other forward detectors. Shown in
3142           brown are a posible cabling layout.
3143       </font>
3144     */
3145     //End_Html
3146   dits[0] = 10.0;
3147   dits[1] = 10.5;
3148   dits[2] = 0.25;
3149   gMC->Gsvolu("I090", "TUBE", idtmed[224], dits, 3);  // SDD cylinder flange
3150
3151   dits[0] = 21.95;
3152   dits[1] = 22.95;    
3153   dits[2] = 1;
3154   gMC->Gsvolu("I098", "TUBE", idtmed[283], dits, 3);    // ladder support on layer 4
3155
3156   dits[0] = 13.1;    
3157   dits[1] = 14.1;    
3158   dits[2] = 1;
3159   gMC->Gsvolu("I097", "TUBE", idtmed[283], dits, 3);    // ladder support on layer 3
3160
3161   dits[0] = 1;
3162   dits[1] = 1;
3163   dits[2] = 7.74;
3164   gMC->Gsvolu("I202", "BOX ", idtmed[272], dits, 3);
3165
3166   dits[0] = 1;
3167   dits[1] = 1;
3168   dits[2] = 9.14;
3169   gMC->Gsvolu("I203", "BOX ", idtmed[272], dits, 3);
3170
3171   dits[0] = 21.95;
3172   dits[1] = 22.95;
3173   dits[2] = 1;
3174   gMC->Gsvolu("I095", "TUBE", idtmed[224], dits, 3);
3175
3176   dits[0] = 3;
3177   dits[1] = 2.7;
3178   dits[2] = 1;
3179   dits[3] = 0.63;
3180   gMC->Gsvolu("I096", "TRD1", idtmed[264], dits, 4);
3181
3182   dits[0] = 13.1;
3183   dits[1] = 14.1;
3184   dits[2] = 1;
3185   gMC->Gsvolu("I094", "TUBE", idtmed[224], dits, 3);
3186   
3187   
3188   // --- Define volumes of SSD cone ----------------------------------    
3189             
3190
3191   dits[0] = 0;
3192   dits[1] = 360;
3193   dits[2] = 12;
3194   dits[3] = -zmax;
3195   dits[4] = 46;         
3196   dits[5] = 49.25;       
3197   dits[6] = -61.2;
3198   dits[7] = 28.7;
3199   dits[8] = 49.25;       
3200   dits[9] = -57.5;
3201   dits[10] = 28.7;
3202   dits[11] = 49.25;      
3203   dits[12] = -57.5;
3204   dits[13] = 28.7;
3205   dits[14] = 43.5;
3206   dits[15] = -49.2;
3207   dits[16] = 28.7;
3208   dits[17] = 43.5;
3209   dits[18] = -49.2;
3210   dits[19] = 28.7;
3211   dits[20] = 36.85;
3212   dits[21] = 50.6;
3213   dits[22] = 28.7;
3214   dits[23] = 36.85;
3215   dits[24] = 50.6;
3216   dits[25] = 28.7;
3217   dits[26] = 43.5;
3218   dits[27] = 57.5;
3219   dits[28] = 28.7;
3220   dits[29] = 43.5;
3221   dits[30] = 57.5;
3222   dits[31] = 28.7;
3223   dits[32] = 49.25;      
3224   dits[33] = 61.2;
3225   dits[34] = 28.7;
3226   dits[35] = 49.25;      
3227   dits[36] = zmax;
3228   dits[37] = 46;      
3229   dits[38] = 49.25;      
3230   gMC->Gsvolu("IS01", "PCON", idtmed[204], dits, 39);   // SSD cone mother volume
3231   
3232   dits[0] = 0;
3233   dits[1] = 360;
3234   dits[2] = 6;
3235   dits[3] = -zmax;  
3236   dits[4] = 47.75;  
3237   dits[5] = 49.25;  
3238   dits[6] = -zmax+2.;  
3239   dits[7] = 47.75;  
3240   dits[8] = 49.25;   
3241   dits[9] = -71.2819;
3242   dits[10] = 46.75;   
3243   dits[11] = 49.0319;
3244   dits[12] = -57.25;   // was 58.5 
3245   dits[13] = 32.9681;
3246   dits[14] = 34.75;
3247   dits[15] = -57.25;   // was 58.5   
3248   dits[16] = 30;
3249   dits[17] = 34.75;
3250   dits[18] = -55.75;   // was 57 
3251   dits[19] = 30;     
3252   dits[20] = 32.25;    // was 31.5 
3253 //  gMC->Gsvolu("I212", "PCON", idtmed[272], dits, 21);  // SSD cone
3254   gMC->Gsvolu("I212", "PCON", idtmed[288], dits, 21);  // SSD cone
3255
3256   s1 = (dits[10]-dits[13])/(dits[9]-dits[12]); // Slope of conical section
3257   s2 = (dits[11]-dits[14])/(dits[9]-dits[12]); // Slope of conical section
3258   b1 = dits[13] - s1*dits[12]; // inside cone axis intersept
3259   b2 = dits[14] - s2*dits[12]; // outside cone axis intersept
3260   dits[0] = 0;
3261   dits[1] = 25;
3262   dits[2] = 4; //dits[2] = 5;
3263
3264   dits[4] = 45.50; //dits[4] = 45.5;  // r inner
3265   dits[5] = dits[4]; //dits[5] = 45.5;  // r outer
3266   dits[3] = (dits[4] - b1)/s1; //dits[3] = -zmax+3; // z
3267
3268   dits[8] = dits[4]; //dits[8] = 45.5;  // r outer
3269   dits[6] = (dits[8] - b2)/s2; //dits[6] = -69.7+3;; // z
3270   dits[7] = s1*dits[6] + b1; //dits[7] = 37;  // r inner
3271
3272   dits[10] = 37.00; //dits[10] = 37;  // r inner
3273   dits[9] = (dits[10]-b1)/s1; //dits[9] = -68.5+3;; // z
3274   dits[11] = s2*dits[9]+b2; //dits[11] = 45.5;  // r outer
3275
3276   dits[13] = dits[10]; //dits[13] = 37;  // r inner
3277   dits[14] = dits[13]; //dits[14] = 45.5;   // r outer
3278   dits[12] = (dits[14] - b2)/s2; //dits[12] = -68.5+4.8;; // z
3279 //  gMC->Gsvolu("I215", "PCON", idtmed[204], dits, 18);  // SSD cone hole 
3280   gMC->Gsvolu("I215", "PCON", idtmed[286], dits, 15);  // SSD cone hole 
3281     //Begin_Html
3282     /*
3283       <img src="http://www.Physics.ohio-state.edu/~nilsen/ITS/ITS_FMD_PMD_Geom.eps">
3284       </pre>
3285       <br clear=left>
3286       <font size=+2 color=blue>
3287       <p>SSD Support cone with other forward detectors. Shown in
3288           brown are a posible cabling layout.
3289       </font>
3290     */
3291     //End_Html
3292   
3293   dits[0] = 28.75;          
3294   dits[1] = 29.75;   
3295   dits[2] = 0.5;
3296   gMC->Gsvolu("I211", "TUBE", idtmed[224], dits, 3);   // SSD cylinder flange
3297   
3298   dits[0] = 35.8;   
3299   dits[1] = 36.8;   
3300   dits[2] = 1;
3301   gMC->Gsvolu("I217", "TUBE", idtmed[283], dits, 3);   // ladder support on layer 5 
3302   
3303   dits[0] = 41.4;  
3304   dits[1] = 42.4;  
3305   dits[2] = 1;
3306   gMC->Gsvolu("I219", "TUBE", idtmed[283], dits, 3);   // ladder support on layer 6
3307         
3308   dits[0] = 42.05+5.;       
3309   dits[1] = 42.55+5.;     
3310   dits[2] = 1.25;
3311   gMC->Gsvolu("I214", "TUBE", idtmed[224], dits, 3);   // layer 6 electronic support
3312                                                        // this will change after PPR
3313   dits[0] = 37.05+5.;   
3314   dits[1] = 37.55+5.;   
3315   dits[2] = 1.25;
3316   gMC->Gsvolu("I213", "TUBE", idtmed[224], dits, 3);   // layer 5 electronic support
3317                                                        // this will change after PPR
3318  
3319   dits[0] = 0;
3320   dits[1] = 3.2;
3321   dits[2] = 9;
3322   dits[3] = -14;
3323   dits[4] = 30.5;
3324   dits[5] = 33.5;
3325   dits[6] = -9.85;
3326   dits[7] = 30.5;
3327   dits[8] = 33.5;
3328   dits[9] = -9.85;
3329   dits[10] = 30.5;
3330   dits[11] = 43.45;
3331   dits[12] = -7.85;
3332   dits[13] = 30.5;
3333   dits[14] = 43.45;
3334   dits[15] = -7.85;
3335   dits[16] = 30.5;
3336   dits[17] = 36.5;
3337   dits[18] = -7;
3338   dits[19] = 30.5;
3339   dits[20] = 36.5;
3340   dits[21] = -4;
3341   dits[22] = 33.0173;
3342   dits[23] = 36.5;
3343   dits[24] = -4;
3344   dits[25] = 33.0173;
3345   dits[26] = 36.80;
3346   dits[27] = -2;
3347   dits[28] = 34.6955;
3348   dits[29] = 36.80;
3349   gMC->Gsvolu("I216", "PCON", idtmed[272], dits, 30); // supports (1-6) of the ladders
3350        
3351        
3352   // --- Place SPD (option 'a') volumes into their mother volume IT12
3353   
3354   // SPD - option 'a' 
3355   // (this is NOT the default)
3356
3357   if (option == 1) {
3358
3359      gMC->Gspos("I12A",5,"IT12",0.0,0.0,0.0,idrotm[238],"MANY");
3360      gMC->Gspos("I12A",6,"IT12",0.0,0.0,0.0,idrotm[236],"MANY");
3361      gMC->Gspos("I12A",7,"IT12",0.0,0.0,0.0,idrotm[239],"MANY");
3362      gMC->Gspos("I12A",8,"IT12",0.0,0.0,0.0,idrotm[233],"MANY");
3363      gMC->Gspos("I12A",9,"IT12",0.0,0.0,0.0,idrotm[240],"MANY");
3364      gMC->Gspos("I12A",10,"IT12",0.0,0.0,0.0,idrotm[241],"MANY");
3365      gMC->Gspos("I12A",2,"IT12",0.0,0.0,0.0,idrotm[242],"MANY");
3366      gMC->Gspos("I12A",3,"IT12",0.0,0.0,0.0,idrotm[234],"MANY");
3367      gMC->Gspos("I12A",4,"IT12",0.0,0.0,0.0,idrotm[243],"MANY");
3368      gMC->Gspos("I12A",1,"IT12",0.0,0.0,0.0,0,"MANY");
3369      deltax=((ddet1-0.01/2.)+(dchip1-0.015/2.))*TMath::Cos(270.*TMath::Pi()/180.);  // see definition of idrotm[244]
3370           deltay=((ddet1-0.01/2.)+(dchip1-0.015/2.))*TMath::Sin(270.*TMath::Pi()/180.);  // see definition of idrotm[244]
3371      gMC->Gspos("I10A",2,"I12A",0.203+deltax,3.8206+deltay,0.0,idrotm[244],"ONLY");       
3372      deltax=((ddet1-0.01/2.)+(dchip1-0.015/2.))*TMath::Cos(252.*TMath::Pi()/180.);  // see definition of idrotm[245]
3373           deltay=((ddet1-0.01/2.)+(dchip1-0.015/2.))*TMath::Sin(252.*TMath::Pi()/180.);  // see definition of idrotm[245]  
3374      gMC->Gspos("I10A",1,"I12A",1.4531+deltax,3.8152+deltay,0.0,idrotm[245],"ONLY");
3375      deltax=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Cos(40.*TMath::Pi()/180.);  // see definition of idrotm[246]
3376           deltay=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Sin(40.*TMath::Pi()/180.);  // see definition of idrotm[246]  
3377      gMC->Gspos("I20A",1,"I12A",3.0174+deltax,6.5143+deltay,0.0,idrotm[246],"ONLY");
3378      deltax=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Cos(49.*TMath::Pi()/180.);  // see definition of idrotm[247]
3379           deltay=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Sin(49.*TMath::Pi()/180.);  // see definition of idrotm[247] 
3380      gMC->Gspos("I20A",2,"I12A",1.9612+deltax,6.9062+deltay,0.0,idrotm[247],"ONLY");
3381      deltax=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Cos(58.*TMath::Pi()/180.);  // see definition of idrotm[248]
3382           deltay=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Sin(58.*TMath::Pi()/180.);  // see definition of idrotm[248] 
3383      gMC->Gspos("I20A",3,"I12A",0.8567+deltax,7.1279+deltay,0.0,idrotm[248],"ONLY");
3384      deltax=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Cos(67.*TMath::Pi()/180.);  // see definition of idrotm[249]
3385           deltay=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Sin(67.*TMath::Pi()/180.);  // see definition of idrotm[249] 
3386      gMC->Gspos("I20A",4,"I12A",-0.2689+deltax,7.1742+deltay,0.0,idrotm[249],"ONLY");
3387      gMC->Gspos("I123",2,"I12A",-0.2978,5.5196,0.0,idrotm[214],"ONLY");
3388      gMC->Gspos("I121",2,"I12A",-0.2385,4.1518,0.0,idrotm[213],"ONLY");
3389      gMC->Gspos("I122",2,"I12A",-0.2968,4.0207,0.0,idrotm[212],"ONLY");
3390      gMC->Gspos("I120",2,"I12A",-0.3672,3.9056,0.0,0,"ONLY");
3391      gMC->Gspos("I144",1,"I12A",-0.2538,3.8556,0.0,0,"ONLY");
3392      gMC->Gspos("I113",3,"I12A",0.1095,3.9056,0.0,0,"ONLY");
3393      gMC->Gspos("I143",1,"I12A",0.4365,3.8556,0.0,idrotm[236],"ONLY");
3394      gMC->Gspos("I142",1,"I12A",0.5136,3.9056,0.0,idrotm[235],"ONLY");
3395      gMC->Gspos("I141",1,"I12A",0.5636,3.9752,0.0,idrotm[201],"ONLY");
3396      gMC->Gspos("I140",1,"I12A",0.6336,4.0447,0.0,idrotm[234],"ONLY");
3397      gMC->Gspos("I139",1,"I12A",0.8297,4.0545,0.0,idrotm[207],"ONLY");
3398      gMC->Gspos("I113",5,"I12A",1.2575,3.9681,0.0,idrotm[207],"ONLY");
3399      gMC->Gspos("I138",1,"I12A",1.66,3.7848,0.0,idrotm[207],"ONLY");
3400      gMC->Gspos("I137",1,"I12A",1.8556,3.7738,0.0,idrotm[233],"ONLY");
3401      gMC->Gspos("I136",1,"I12A",2.6224,4.874,0.0,idrotm[232],"ONLY");
3402      gMC->Gspos("I135",1,"I12A",3.2967,6.0337,0.0,idrotm[231],"ONLY");
3403      gMC->Gspos("I134",1,"I12A",3.266,6.1636,0.0,idrotm[230],"ONLY");
3404      gMC->Gspos("I113",1,"I12A",2.9903,6.4144,0.0,idrotm[211],"ONLY");
3405      gMC->Gspos("I133",3,"I12A",2.7631,6.7627,0.0,idrotm[230],"ONLY");
3406      gMC->Gspos("I132",3,"I12A",2.62,6.8555,0.0,idrotm[229],"ONLY");
3407      gMC->Gspos("I131",3,"I12A",2.648,6.6023,0.0,idrotm[228],"ONLY");
3408      gMC->Gspos("I130",3,"I12A",2.6569,6.3431,0.0,idrotm[227],"ONLY");
3409      gMC->Gspos("I129",3,"I12A",2.3906,6.4819,0.0,idrotm[226],"ONLY");
3410      gMC->Gspos("I113",2,"I12A",1.9488,6.7998,0.0,idrotm[210],"ONLY");
3411      gMC->Gspos("I133",2,"I12A",1.6699,7.1085,0.0,idrotm[226],"ONLY");
3412      gMC->Gspos("I132",2,"I12A",1.5142,7.1777,0.0,idrotm[225],"ONLY");
3413      gMC->Gspos("I131",2,"I12A",1.5814,6.932,0.0,idrotm[224],"ONLY");
3414      gMC->Gspos("I130",2,"I12A",1.6308,6.6774,0.0,idrotm[223],"ONLY");
3415      gMC->Gspos("I129",2,"I12A",1.346,6.7728,0.0,idrotm[222],"ONLY");
3416      gMC->Gspos("I113",6,"I12A",0.8599,7.0176,0.0,idrotm[209],"ONLY");
3417      gMC->Gspos("I133",1,"I12A",0.5362,7.2789,0.0,idrotm[222],"ONLY");
3418      gMC->Gspos("I132",1,"I12A",0.3715,7.3228,0.0,idrotm[221],"ONLY");
3419      gMC->Gspos("I131",1,"I12A",0.4763,7.0907,0.0,idrotm[220],"ONLY");
3420      gMC->Gspos("I130",1,"I12A",0.5649,6.8469,0.0,idrotm[219],"ONLY");
3421      gMC->Gspos("I129",1,"I12A",0.2688,6.8966,0.0,idrotm[218],"ONLY");
3422      gMC->Gspos("I113",4,"I12A",-0.2497,7.0624,0.0,idrotm[208],"ONLY");
3423      gMC->Gspos("I128",1,"I12A",-0.6103,7.2698,0.0,idrotm[218],"ONLY");
3424      gMC->Gspos("I126",2,"I12A",-0.7799,7.2874,0.0,idrotm[217],"ONLY");
3425      gMC->Gspos("I125",2,"I12A",-0.6315,7.0883,0.0,idrotm[216],"ONLY");
3426      gMC->Gspos("I124",2,"I12A",-0.4965,6.8742,0.0,idrotm[215],"ONLY");
3427      gMC->Gspos("I103",3,"I10A",-0.05,-di10a[1]+2.*di104[1]+di103[1],-3.536,0,"ONLY");
3428      gMC->Gspos("I103",4,"I10A",-0.05,-di10a[1]+2.*di104[1]+di103[1],-10.708,0,"ONLY");
3429      gMC->Gspos("I103",1,"I10A",-0.05,-di10a[1]+2.*di104[1]+di103[1],10.708,0,"ONLY");
3430      gMC->Gspos("I103",2,"I10A",-0.05,-di10a[1]+2.*di104[1]+di103[1],3.536,0,"ONLY");
3431      gMC->Gspos("I105",1,"I10A",-0.05,0.01,-16.844,idrotm[237],"ONLY");
3432      gMC->Gspos("I105",2,"I10A",-0.05,0.01,16.844,0,"ONLY");
3433      gMC->Gspos("I104",1,"I10A",0.0,-di10a[1]+di104[1],0.0,0,"ONLY");
3434      gMC->Gspos("I1D3",3,"I20A",-0.05,-di20a[1]+2.*di104[1]+di1d3[1],-3.536,0,"ONLY");
3435      gMC->Gspos("I1D3",4,"I20A",-0.05,-di20a[1]+2.*di104[1]+di1d3[1],-10.708,0,"ONLY");
3436      gMC->Gspos("I1D3",1,"I20A",-0.05,-di20a[1]+2.*di104[1]+di1d3[1],10.708,0,"ONLY");
3437      gMC->Gspos("I1D3",2,"I20A",-0.05,-di20a[1]+2.*di104[1]+di1d3[1],3.536,0,"ONLY");
3438      gMC->Gspos("I105",3,"I20A",-0.05,0.01,-16.844,idrotm[237],"ONLY");
3439      gMC->Gspos("I105",4,"I20A",-0.05,0.01,16.844,0,"ONLY");
3440      gMC->Gspos("I104",2,"I20A",0.0,-di20a[1]+di104[1],0.0,0,"ONLY");
3441      gMC->Gspos("I112",2,"I113",0.25,0.02,0.0,idrotm[206],"ONLY");
3442      gMC->Gspos("I111",2,"I113",0.1318,-0.0008,0.0,idrotm[205],"ONLY");
3443      gMC->Gspos("I118",1,"I113",0.0,-0.0454,0.0,0,"ONLY");
3444      gMC->Gspos("I110",1,"I113",0.0,0.0492,0.0,0,"ONLY");
3445      gMC->Gspos("I114",1,"I113",0.063,0.0042,0.0,idrotm[202],"ONLY");
3446      gMC->Gspos("I115",1,"I113",0.063,0.0042,0.0,idrotm[202],"ONLY");
3447      gMC->Gspos("I115",2,"I113",-0.063,0.0042,0.0,idrotm[201],"ONLY");
3448      gMC->Gspos("I114",2,"I113",-0.063,0.0042,0.0,idrotm[201],"ONLY");
3449      gMC->Gspos("I116",1,"I113",0.0,0.0042,0.0,0,"ONLY");
3450      gMC->Gspos("I111",1,"I113",-0.1318,-0.0008,0.0,idrotm[204],"ONLY");
3451      gMC->Gspos("I112",1,"I113",-0.25,0.02,0.0,idrotm[203],"ONLY");
3452      gMC->Gspos("I101",1,"I103",-0.088,ddet1,0.0,0,"ONLY");
3453      gMC->Gspos("I102",1,"I103",0.0,-dchip1,-2.8,0,"ONLY");
3454      gMC->Gspos("I102",2,"I103",0.0,-dchip1,-1.4,0,"ONLY");
3455      gMC->Gspos("I102",3,"I103",0.0,-dchip1,0.0,0,"ONLY");
3456      gMC->Gspos("I102",4,"I103",0.0,-dchip1,1.4,0,"ONLY");
3457      gMC->Gspos("I102",5,"I103",0.0,-dchip1,2.8,0,"ONLY");
3458      gMC->Gspos("I1D1",1,"I1D3",-0.088,ddet2,0.0,0,"ONLY");
3459      gMC->Gspos("I1D2",1,"I1D3",0.0,-dchip2,-2.8,0,"ONLY");
3460      gMC->Gspos("I1D2",2,"I1D3",0.0,-dchip2,-1.4,0,"ONLY");
3461      gMC->Gspos("I1D2",3,"I1D3",0.0,-dchip2,0.0,0,"ONLY");
3462      gMC->Gspos("I1D2",4,"I1D3",0.0,-dchip2,1.4,0,"ONLY");
3463      gMC->Gspos("I1D2",5,"I1D3",0.0,-dchip2,2.8,0,"ONLY");
3464      gMC->Gspos("I117",1,"I116",0.0,0.0,0.0,0,"ONLY");
3465      gMC->Gspos("ITS1",1,"I101",0.0,0.0,0.0,0,"ONLY");
3466      gMC->Gspos("ITS2",1,"I1D1",0.0,0.0,0.0,0,"ONLY");
3467      gMC->Gspos("I651",1,"IT12",0.0,0.0,26.05,0,"ONLY");
3468      gMC->Gspos("I651",2,"IT12",0.0,0.0,-26.05,0,"ONLY");     
3469      gMC->Gspos("I650",16,"IT12",0.0,0.0,22.0,idrotm[1104],"MANY");
3470      gMC->Gspos("I650",20,"IT12",0.0,0.0,22.0,idrotm[1130],"MANY");
3471      gMC->Gspos("I650",18,"IT12",0.0,0.0,22.0,idrotm[1117],"MANY");
3472      gMC->Gspos("I650",1,"IT12",0.0,0.0,22.0,0,"MANY");
3473      gMC->Gspos("I650",4,"IT12",0.0,0.0,22.0,idrotm[1106],"MANY");
3474      gMC->Gspos("I650",6,"IT12",0.0,0.0,22.0,idrotm[1039],"MANY");
3475      gMC->Gspos("I650",8,"IT12",0.0,0.0,22.0,idrotm[1107],"MANY");
3476      gMC->Gspos("I650",10,"IT12",0.0,0.0,22.0,idrotm[1065],"MANY");
3477      gMC->Gspos("I650",12,"IT12",0.0,0.0,22.0,idrotm[1078],"MANY");
3478      gMC->Gspos("I650",14,"IT12",0.0,0.0,22.0,idrotm[1091],"MANY");
3479      gMC->Gspos("I650",19,"IT12",0.0,0.0,-22.0,idrotm[1108],"MANY");
3480      gMC->Gspos("I650",2,"IT12",0.0,0.0,-22.0,idrotm[1109],"MANY");
3481      gMC->Gspos("I650",3,"IT12",0.0,0.0,-22.0,idrotm[1110],"MANY");
3482      gMC->Gspos("I650",5,"IT12",0.0,0.0,-22.0,idrotm[1111],"MANY");
3483      gMC->Gspos("I650",7,"IT12",0.0,0.0,-22.0,idrotm[1112],"MANY");
3484      gMC->Gspos("I650",9,"IT12",0.0,0.0,-22.0,idrotm[1113],"MANY");
3485      gMC->Gspos("I650",11,"IT12",0.0,0.0,-22.0,idrotm[1114],"MANY");
3486      gMC->Gspos("I650",13,"IT12",0.0,0.0,-22.0,idrotm[1115],"MANY");
3487      gMC->Gspos("I650",15,"IT12",0.0,0.0,-22.0,idrotm[1116],"MANY");
3488      gMC->Gspos("I650",17,"IT12",0.0,0.0,-22.0,idrotm[1118],"MANY");
3489      gMC->Gspos("I666",1,"I650",0.0,0.0,0.25,idrotm[1003],"MANY");
3490      gMC->Gspos("I667",1,"I650",0.1102,0.9945,0.45,idrotm[1088],"ONLY");
3491      gMC->Gspos("I669",3,"I650",0.1883,4.0372,-3.2,0,"ONLY");
3492      gMC->Gspos("I671",3,"I650",0.1883,4.0372,0.6,0,"ONLY");
3493      gMC->Gspos("I669",2,"I650",1.3343,4.0609,-3.2,0,"ONLY");
3494      gMC->Gspos("I671",2,"I650",1.3343,4.0609,0.6,0,"ONLY");
3495      gMC->Gspos("I669",6,"I650",2.9567,6.1959,-3.2,idrotm[1089],"ONLY");
3496      gMC->Gspos("I671",6,"I650",2.9567,6.1959,0.6,idrotm[1089],"ONLY");
3497      gMC->Gspos("I669",5,"I650",1.9511,6.5822,-3.2,idrotm[1011],"ONLY");
3498      gMC->Gspos("I671",5,"I650",1.9511,6.5822,0.6,idrotm[1011],"ONLY");
3499      gMC->Gspos("I669",4,"I650",0.8974,6.8064,-3.2,idrotm[1090],"ONLY");
3500      gMC->Gspos("I671",4,"I650",0.8974,6.8064,0.6,idrotm[1090],"ONLY");
3501      gMC->Gspos("I669",1,"I650",-0.1784,6.863,-3.2,0,"ONLY");
3502      gMC->Gspos("I671",1,"I650",-0.1784,6.863,0.6,0,"ONLY");
3503      gMC->Gspos("I673",1,"I650",0.2173,4.8037,1.8,0,"ONLY");
3504      gMC->Gspos("I673",6,"I650",1.5093,4.5605,1.8,0,"ONLY");
3505      gMC->Gspos("I673",4,"I650",-0.173,6.2531,1.8,idrotm[1092],"ONLY");
3506      gMC->Gspos("I673",3,"I650",0.8073,6.2032,1.8,idrotm[1093],"ONLY");
3507      gMC->Gspos("I673",2,"I650",1.7678,6.0005,1.8,idrotm[1094],"ONLY");
3508      gMC->Gspos("I673",5,"I650",2.6847,5.6501,1.8,0,"ONLY");
3509      gMC->Gspos("I676",2,"I650",1.7618,5.2269,2.5,0,"ONLY");
3510      gMC->Gspos("I676",1,"I650",0.4018,5.5869,2.5,0,"ONLY");
3511      gMC->Gspos("I668",1,"I667",0.0,0.0,0.0,0,"ONLY");
3512      gMC->Gspos("I670",1,"I669",0.0,0.0,0.0,0,"ONLY");
3513      gMC->Gspos("I672",1,"I671",0.0,0.0,0.0,0,"ONLY");
3514      gMC->Gspos("I674",1,"I673",0.0,0.0,0.0,0,"MANY");
3515      gMC->Gspos("I675",1,"I673",0.0,0.0,-0.5,0,"ONLY");
3516      gMC->Gspos("I677",1,"I676",0.0,0.0,0.0,0,"MANY");
3517      gMC->Gspos("I678",1,"I676",0.0,0.0,-0.95,0,"ONLY");    
3518
3519   }
3520
3521
3522   // --- Place SPD (option 'b') volumes into their mother volume IT12
3523   
3524   // SPD - option 'b' 
3525   // (this is the default)
3526
3527   if (option == 2) {
3528
3529      gMC->Gspos("I12B",1,"IT12",0.0,0.0,0.0,0,"MANY");
3530      gMC->Gspos("I12B",8,"IT12",0.0,0.0,0.0,idrotm[233],"MANY");
3531      gMC->Gspos("I12B",7,"IT12",0.0,0.0,0.0,idrotm[244],"MANY");
3532      gMC->Gspos("I12B",6,"IT12",0.0,0.0,0.0,idrotm[236],"MANY");
3533      gMC->Gspos("I12B",2,"IT12",0.0,0.0,0.0,idrotm[245],"MANY");
3534      gMC->Gspos("I12B",3,"IT12",0.0,0.0,0.0,idrotm[234],"MANY");
3535      gMC->Gspos("I12B",4,"IT12",0.0,0.0,0.0,idrotm[246],"MANY");
3536      gMC->Gspos("I12B",5,"IT12",0.0,0.0,0.0,idrotm[247],"MANY");
3537      gMC->Gspos("I12B",9,"IT12",0.0,0.0,0.0,idrotm[248],"MANY");
3538      gMC->Gspos("I12B",10,"IT12",0.0,0.0,0.0,idrotm[249],"MANY");
3539      deltax=((ddet1-0.01/2.)+(dchip1-0.015/2.))*TMath::Cos(270.*TMath::Pi()/180.);  // see definition of idrotm[238]
3540           deltay=((ddet1-0.01/2.)+(dchip1-0.015/2.))*TMath::Sin(270.*TMath::Pi()/180.);  // see definition of idrotm[238]
3541      gMC->Gspos("I10B",2,"I12B",0.203+deltax,3.8206+deltay,0.0,idrotm[238],"ONLY");       
3542      deltax=((ddet1-0.01/2.)+(dchip1-0.015/2.))*TMath::Cos(252.*TMath::Pi()/180.);  // see definition of idrotm[239]
3543           deltay=((ddet1-0.01/2.)+(dchip1-0.015/2.))*TMath::Sin(252.*TMath::Pi()/180.);  // see definition of idrotm[239]  
3544      gMC->Gspos("I10B",1,"I12B",1.4531+deltax,3.8152+deltay,0.0,idrotm[239],"ONLY");
3545      deltax=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Cos(40.*TMath::Pi()/180.);  // see definition of idrotm[240]
3546           deltay=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Sin(40.*TMath::Pi()/180.);  // see definition of idrotm[240]  
3547      gMC->Gspos("I20B",1,"I12B",3.0174+deltax,6.5143+deltay,0.0,idrotm[240],"ONLY");
3548      deltax=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Cos(49.*TMath::Pi()/180.);  // see definition of idrotm[241]
3549           deltay=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Sin(49.*TMath::Pi()/180.);  // see definition of idrotm[241] 
3550      gMC->Gspos("I20B",2,"I12B",1.9612+deltax,6.9062+deltay,0.0,idrotm[241],"ONLY");
3551      deltax=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Cos(58.*TMath::Pi()/180.);  // see definition of idrotm[242]
3552           deltay=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Sin(58.*TMath::Pi()/180.);  // see definition of idrotm[242] 
3553      gMC->Gspos("I20B",3,"I12B",0.8567+deltax,7.1279+deltay,0.0,idrotm[242],"ONLY");
3554      deltax=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Cos(67.*TMath::Pi()/180.);  // see definition of idrotm[243]
3555           deltay=((ddet2-0.01/2.)+(dchip2-0.015/2.))*TMath::Sin(67.*TMath::Pi()/180.);  // see definition of idrotm[243] 
3556      gMC->Gspos("I20B",4,"I12B",-0.2689+deltax,7.1742+deltay,0.0,idrotm[243],"ONLY");
3557      gMC->Gspos("I123",1,"I12B",-0.2978,5.5196,0.0,idrotm[214],"ONLY");
3558      gMC->Gspos("I121",1,"I12B",-0.2385,4.1518,0.0,idrotm[213],"ONLY");
3559      gMC->Gspos("I122",1,"I12B",-0.2968,4.0207,0.0,idrotm[212],"ONLY");
3560      gMC->Gspos("I120",1,"I12B",-0.3672,3.9056,0.0,0,"ONLY");
3561      gMC->Gspos("I144",1,"I12B",-0.2538,3.8556,0.0,0,"ONLY");
3562      gMC->Gspos("I113",3,"I12B",0.1095,3.9056,0.0,0,"ONLY");
3563      gMC->Gspos("I143",1,"I12B",0.4365,3.8556,0.0,idrotm[236],"ONLY");
3564      gMC->Gspos("I142",1,"I12B",0.5136,3.9056,0.0,idrotm[235],"ONLY");
3565      gMC->Gspos("I141",1,"I12B",0.5636,3.9752,0.0,idrotm[237],"ONLY");
3566      gMC->Gspos("I140",1,"I12B",0.6336,4.0447,0.0,idrotm[234],"ONLY");
3567      gMC->Gspos("I139",1,"I12B",0.8297,4.0545,0.0,idrotm[207],"ONLY");
3568      gMC->Gspos("I113",5,"I12B",1.2575,3.9681,0.0,idrotm[207],"ONLY");
3569      gMC->Gspos("I138",1,"I12B",1.66,3.7848,0.0,idrotm[207],"ONLY");
3570      gMC->Gspos("I137",1,"I12B",1.8556,3.7738,0.0,idrotm[233],"ONLY");
3571      gMC->Gspos("I136",1,"I12B",2.6224,4.874,0.0,idrotm[232],"ONLY");
3572      gMC->Gspos("I135",1,"I12B",3.2967,6.0337,0.0,idrotm[231],"ONLY");
3573      gMC->Gspos("I134",1,"I12B",3.266,6.1636,0.0,idrotm[230],"ONLY");
3574      gMC->Gspos("I113",1,"I12B",2.9903,6.4144,0.0,idrotm[211],"ONLY");
3575      gMC->Gspos("I133",3,"I12B",2.7631,6.7627,0.0,idrotm[230],"ONLY");
3576      gMC->Gspos("I132",3,"I12B",2.62,6.8555,0.0,idrotm[229],"ONLY");
3577      gMC->Gspos("I131",3,"I12B",2.648,6.6023,0.0,idrotm[228],"ONLY");
3578      gMC->Gspos("I130",3,"I12B",2.6569,6.3431,0.0,idrotm[227],"ONLY");
3579      gMC->Gspos("I129",3,"I12B",2.3906,6.4819,0.0,idrotm[226],"ONLY");
3580      gMC->Gspos("I113",2,"I12B",1.9488,6.7998,0.0,idrotm[210],"ONLY");
3581      gMC->Gspos("I133",2,"I12B",1.6699,7.1085,0.0,idrotm[226],"ONLY");
3582      gMC->Gspos("I132",2,"I12B",1.5142,7.1777,0.0,idrotm[225],"ONLY");
3583      gMC->Gspos("I131",2,"I12B",1.5814,6.932,0.0,idrotm[224],"ONLY");
3584      gMC->Gspos("I130",2,"I12B",1.6308,6.6774,0.0,idrotm[223],"ONLY");
3585      gMC->Gspos("I129",2,"I12B",1.346,6.7728,0.0,idrotm[222],"ONLY");
3586      gMC->Gspos("I113",6,"I12B",0.8599,7.0176,0.0,idrotm[209],"ONLY");
3587      gMC->Gspos("I133",1,"I12B",0.5362,7.2789,0.0,idrotm[222],"ONLY");
3588      gMC->Gspos("I132",1,"I12B",0.3715,7.3228,0.0,idrotm[221],"ONLY");
3589      gMC->Gspos("I131",1,"I12B",0.4763,7.0907,0.0,idrotm[220],"ONLY");
3590      gMC->Gspos("I130",1,"I12B",0.5649,6.8469,0.0,idrotm[219],"ONLY");
3591      gMC->Gspos("I129",1,"I12B",0.2688,6.8966,0.0,idrotm[218],"ONLY");
3592      gMC->Gspos("I113",4,"I12B",-0.2497,7.0624,0.0,idrotm[208],"ONLY");
3593      gMC->Gspos("I128",1,"I12B",-0.6103,7.2698,0.0,idrotm[218],"ONLY");
3594      gMC->Gspos("I126",1,"I12B",-0.7799,7.2874,0.0,idrotm[217],"ONLY");
3595      gMC->Gspos("I125",1,"I12B",-0.6315,7.0883,0.0,idrotm[216],"ONLY");
3596      gMC->Gspos("I124",1,"I12B",-0.4965,6.8742,0.0,idrotm[215],"ONLY");
3597      gMC->Gspos("I105",3,"I10B",-0.05,-0.01,-16.844,idrotm[201],"ONLY");
3598      gMC->Gspos("I105",4,"I10B",-0.05,-0.01,16.844,0,"ONLY");
3599      gMC->Gspos("I107",2,"I10B",-0.0455,-di10b[1]+di107[1],3.536,0,"ONLY");
3600      gMC->Gspos("I107",1,"I10B",-0.0455,-di10b[1]+di107[1],10.708,0,"ONLY");
3601      gMC->Gspos("I107",4,"I10B",-0.0455,-di10b[1]+di107[1],-10.708,0,"ONLY");
3602      gMC->Gspos("I107",3,"I10B",-0.0455,-di10b[1]+di107[1],-3.536,0,"ONLY");
3603      gMC->Gspos("I109",1,"I10B",-0.138,0.015,-16.844,idrotm[201],"ONLY");
3604      gMC->Gspos("I109",2,"I10B",-0.138,0.015,16.844,0,"ONLY");
3605      gMC->Gspos("I108",1,"I10B",-0.138,-di10b[1]+2.*di107[1]+di108[1],0.0,0,"ONLY");
3606      gMC->Gspos("I105",1,"I20B",-0.05,-0.01,-16.844,idrotm[201],"ONLY");
3607      gMC->Gspos("I105",2,"I20B",-0.05,-0.01,16.844,0,"ONLY");
3608      gMC->Gspos("I1D7",2,"I20B",-0.0455,-di20b[1]+di1d7[1],3.536,0,"ONLY");
3609      gMC->Gspos("I1D7",1,"I20B",-0.0455,-di20b[1]+di1d7[1],10.708,0,"ONLY");
3610      gMC->Gspos("I1D7",4,"I20B",-0.0455,-di20b[1]+di1d7[1],-10.708,0,"ONLY");
3611      gMC->Gspos("I1D7",3,"I20B",-0.0455,-di20b[1]+di1d7[1],-3.536,0,"ONLY");
3612      gMC->Gspos("I109",3,"I20B",-0.138,0.015,-16.844,idrotm[201],"ONLY");
3613      gMC->Gspos("I109",4,"I20B",-0.138,0.015,16.844,0,"ONLY");
3614      gMC->Gspos("I108",2,"I20B",-0.138,-di20b[1]+2.*di1d7[1]+di108[1],0.0,0,"ONLY");
3615      gMC->Gspos("I112",2,"I113",0.25,0.02,0.0,idrotm[206],"ONLY");
3616      gMC->Gspos("I111",2,"I113",0.1318,-0.0008,0.0,idrotm[205],"ONLY");
3617      gMC->Gspos("I118",1,"I113",0.0,-0.0454,0.0,0,"ONLY");
3618      gMC->Gspos("I110",1,"I113",0.0,0.0492,0.0,0,"ONLY");
3619      gMC->Gspos("I114",1,"I113",0.063,0.0042,0.0,idrotm[202],"ONLY");
3620      gMC->Gspos("I115",1,"I113",0.063,0.0042,0.0,idrotm[202],"ONLY");
3621      gMC->Gspos("I115",2,"I113",-0.063,0.0042,0.0,idrotm[237],"ONLY");
3622      gMC->Gspos("I114",2,"I113",-0.063,0.0042,0.0,idrotm[237],"ONLY");
3623      gMC->Gspos("I116",1,"I113",0.0,0.0042,0.0,0,"ONLY");
3624      gMC->Gspos("I111",1,"I113",-0.1318,-0.0008,0.0,idrotm[204],"ONLY");
3625      gMC->Gspos("I112",1,"I113",-0.25,0.02,0.0,idrotm[203],"ONLY");
3626      gMC->Gspos("I106",1,"I107",0.0,-ddet1,-1.4,0,"ONLY");
3627      gMC->Gspos("I106",2,"I107",0.0,-ddet1,0.0,0,"ONLY");
3628      gMC->Gspos("I106",3,"I107",0.0,-ddet1,1.4,0,"ONLY");
3629      gMC->Gspos("I106",4,"I107",0.0,-ddet1,2.8,0,"ONLY");
3630      gMC->Gspos("I106",5,"I107",0.0,-ddet1,-2.8,0,"ONLY");
3631      gMC->Gspos("I101",1,"I107",0.0,dchip1,0.0,0,"ONLY");
3632      gMC->Gspos("I1D6",1,"I1D7",0.0,-ddet2,-1.4,0,"ONLY");
3633      gMC->Gspos("I1D6",2,"I1D7",0.0,-ddet2,0.0,0,"ONLY");
3634      gMC->Gspos("I1D6",3,"I1D7",0.0,-ddet2,1.4,0,"ONLY");
3635      gMC->Gspos("I1D6",4,"I1D7",0.0,-ddet2,2.8,0,"ONLY");
3636      gMC->Gspos("I1D6",5,"I1D7",0.0,-ddet2,-2.8,0,"ONLY");
3637      gMC->Gspos("I1D1",1,"I1D7",0.0,dchip2,0.0,0,"ONLY");
3638      gMC->Gspos("I117",1,"I116",0.0,0.0,0.0,0,"ONLY");
3639      gMC->Gspos("ITS1",1,"I101",0.0,0.0,0.0,0,"ONLY");
3640      gMC->Gspos("ITS2",1,"I1D1",0.0,0.0,0.0,0,"ONLY");
3641      gMC->Gspos("I651",1,"IT12",0.0,0.0,26.05,0,"ONLY");
3642      gMC->Gspos("I651",2,"IT12",0.0,0.0,-26.05,0,"ONLY");     
3643      gMC->Gspos("I650",16,"IT12",0.0,0.0,22.0,idrotm[1104],"MANY");
3644      gMC->Gspos("I650",20,"IT12",0.0,0.0,22.0,idrotm[1130],"MANY");
3645      gMC->Gspos("I650",18,"IT12",0.0,0.0,22.0,idrotm[1117],"MANY");
3646      gMC->Gspos("I650",1,"IT12",0.0,0.0,22.0,0,"MANY");
3647      gMC->Gspos("I650",4,"IT12",0.0,0.0,22.0,idrotm[1106],"MANY");
3648      gMC->Gspos("I650",6,"IT12",0.0,0.0,22.0,idrotm[1039],"MANY");
3649      gMC->Gspos("I650",8,"IT12",0.0,0.0,22.0,idrotm[1107],"MANY");
3650      gMC->Gspos("I650",10,"IT12",0.0,0.0,22.0,idrotm[1065],"MANY");
3651      gMC->Gspos("I650",12,"IT12",0.0,0.0,22.0,idrotm[1078],"MANY");
3652      gMC->Gspos("I650",14,"IT12",0.0,0.0,22.0,idrotm[1091],"MANY");
3653      gMC->Gspos("I650",19,"IT12",0.0,0.0,-22.0,idrotm[1108],"MANY");
3654      gMC->Gspos("I650",2,"IT12",0.0,0.0,-22.0,idrotm[1109],"MANY");
3655      gMC->Gspos("I650",3,"IT12",0.0,0.0,-22.0,idrotm[1110],"MANY");
3656      gMC->Gspos("I650",5,"IT12",0.0,0.0,-22.0,idrotm[1111],"MANY");
3657      gMC->Gspos("I650",7,"IT12",0.0,0.0,-22.0,idrotm[1112],"MANY");
3658      gMC->Gspos("I650",9,"IT12",0.0,0.0,-22.0,idrotm[1113],"MANY");
3659      gMC->Gspos("I650",11,"IT12",0.0,0.0,-22.0,idrotm[1114],"MANY");
3660      gMC->Gspos("I650",13,"IT12",0.0,0.0,-22.0,idrotm[1115],"MANY");
3661      gMC->Gspos("I650",15,"IT12",0.0,0.0,-22.0,idrotm[1116],"MANY");
3662      gMC->Gspos("I650",17,"IT12",0.0,0.0,-22.0,idrotm[1118],"MANY");
3663      gMC->Gspos("I666",1,"I650",0.0,0.0,0.25,idrotm[1003],"MANY");
3664      gMC->Gspos("I667",1,"I650",0.1102,0.9945,0.45,idrotm[1088],"ONLY");
3665      gMC->Gspos("I669",3,"I650",0.1883,4.0372,-3.2,0,"ONLY");
3666      gMC->Gspos("I671",3,"I650",0.1883,4.0372,0.6,0,"ONLY");
3667      gMC->Gspos("I669",2,"I650",1.3343,4.0609,-3.2,0,"ONLY");
3668      gMC->Gspos("I671",2,"I650",1.3343,4.0609,0.6,0,"ONLY");
3669      gMC->Gspos("I669",6,"I650",2.9567,6.1959,-3.2,idrotm[1089],"ONLY");
3670      gMC->Gspos("I671",6,"I650",2.9567,6.1959,0.6,idrotm[1089],"ONLY");
3671      gMC->Gspos("I669",5,"I650",1.9511,6.5822,-3.2,idrotm[1011],"ONLY");
3672      gMC->Gspos("I671",5,"I650",1.9511,6.5822,0.6,idrotm[1011],"ONLY");
3673      gMC->Gspos("I669",4,"I650",0.8974,6.8064,-3.2,idrotm[1090],"ONLY");
3674      gMC->Gspos("I671",4,"I650",0.8974,6.8064,0.6,idrotm[1090],"ONLY");
3675      gMC->Gspos("I669",1,"I650",-0.1784,6.863,-3.2,0,"ONLY");
3676      gMC->Gspos("I671",1,"I650",-0.1784,6.863,0.6,0,"ONLY");
3677      gMC->Gspos("I673",1,"I650",0.2173,4.8037,1.8,0,"ONLY");
3678      gMC->Gspos("I673",6,"I650",1.5093,4.5605,1.8,0,"ONLY");
3679      gMC->Gspos("I673",4,"I650",-0.173,6.2531,1.8,idrotm[1092],"ONLY");
3680      gMC->Gspos("I673",3,"I650",0.8073,6.2032,1.8,idrotm[1093],"ONLY");
3681      gMC->Gspos("I673",2,"I650",1.7678,6.0005,1.8,idrotm[1094],"ONLY");
3682      gMC->Gspos("I673",5,"I650",2.6847,5.6501,1.8,0,"ONLY");
3683      gMC->Gspos("I676",2,"I650",1.7618,5.2269,2.5,0,"ONLY");
3684      gMC->Gspos("I676",1,"I650",0.4018,5.5869,2.5,0,"ONLY");
3685      gMC->Gspos("I668",1,"I667",0.0,0.0,0.0,0,"ONLY");
3686      gMC->Gspos("I670",1,"I669",0.0,0.0,0.0,0,"ONLY");
3687      gMC->Gspos("I672",1,"I671",0.0,0.0,0.0,0,"ONLY");
3688      gMC->Gspos("I674",1,"I673",0.0,0.0,0.0,0,"MANY");
3689      gMC->Gspos("I675",1,"I673",0.0,0.0,-0.5,0,"ONLY");
3690      gMC->Gspos("I677",1,"I676",0.0,0.0,0.0,0,"MANY");
3691      gMC->Gspos("I678",1,"I676",0.0,0.0,-0.95,0,"ONLY");  
3692
3693   }
3694     
3695   // --- Place SDD volumes into their mother volume IT34
3696
3697   
3698   // -- position SDD detectors of ladder 3 / layer 3
3699
3700   gMC->Gspos("ITS3", 1,"I302",  0.0,      0.0,    0.0,    0,           "ONLY");
3701   ySDD = ySDDsep/2.+iI302dits[1];
3702   for (iSDD=0; iSDD<6; iSDD++) {
3703     gMC->Gspos("I302", iSDD+1, "I004",  0.0, ySDD,  zSDDlay3[iSDD], 0, "ONLY");
3704     ySDD = -ySDD;
3705   }
3706
3707   gMC->Gspos("I004", 1,"IT34", -3.2777,  14.3607, 0.0,   idrotm[321],"ONLY");
3708   gMC->Gspos("I004", 2,"IT34", -9.5581,  11.9855, 0.0,   idrotm[333],"ONLY");
3709   gMC->Gspos("I004", 3,"IT34",-13.2713,   6.3911, 0.0,   idrotm[336],"ONLY");
3710   gMC->Gspos("I004", 4,"IT34",-15.33,     0.0,    0.0,   idrotm[350],"ONLY");
3711   gMC->Gspos("I004", 5,"IT34",-13.2713,  -6.3911, 0.0,   idrotm[313],"ONLY");
3712   gMC->Gspos("I004", 6,"IT34", -9.5581, -11.9855, 0.0,   idrotm[311],"ONLY");
3713   gMC->Gspos("I004", 7,"IT34", -3.2777, -14.3607, 0.0,   idrotm[310],"ONLY");
3714   gMC->Gspos("I004", 8,"IT34",  3.4112, -14.9456, 0.0,   idrotm[386],"ONLY");
3715   gMC->Gspos("I004", 9,"IT34",  9.184,  -11.5164, 0.0,   idrotm[309],"ONLY");
3716   gMC->Gspos("I004",10,"IT34", 13.8119,  -6.6514, 0.0,   idrotm[308],"ONLY");
3717   gMC->Gspos("I004",11,"IT34", 14.73,     0.0,    0.0,   idrotm[356],"ONLY");
3718   gMC->Gspos("I004",12,"IT34", 13.8119,   6.6514, 0.0,   idrotm[307],"ONLY");
3719   gMC->Gspos("I004",13,"IT34",  9.184,   11.5164, 0.0,   idrotm[306],"ONLY");
3720   gMC->Gspos("I004",14,"IT34",  3.4113,  14.9456, 0.0,   idrotm[305],"ONLY");
3721
3722
3723   // -- position SDD detectors of ladder 4 / layer 4
3724
3725   gMC->Gspos("ITS4", 1,"I402",  0.0,      0.000,  0.0,   0,"ONLY");
3726   ySDD = -(ySDDsep/2.+iI402dits[1]);
3727   for (iSDD=0; iSDD<8; iSDD++) {
3728     gMC->Gspos("I402", iSDD+1, "I005",  0.0, ySDD,  zSDDlay4[iSDD], 0, "ONLY");
3729     ySDD = -ySDD;
3730   }
3731   
3732   gMC->Gspos("I005", 1,"IT34", -3.3629,  23.3895,-0.15,  idrotm[335],"ONLY");
3733   gMC->Gspos("I005", 2,"IT34",-10.0447,  21.9949,-0.15,  idrotm[332],"ONLY");
3734   gMC->Gspos("I005", 3,"IT34",-15.4744,  17.8584,-0.15,  idrotm[331],"ONLY");
3735   gMC->Gspos("I005", 4,"IT34",-20.3415,  13.0727,-0.15,  idrotm[366],"ONLY");
3736   gMC->Gspos("I005", 5,"IT34",-22.6728,   6.6573,-0.15,  idrotm[330],"ONLY");
3737   gMC->Gspos("I005", 6,"IT34",-24.18,     0.0,   -0.15,  idrotm[350],"ONLY");
3738   gMC->Gspos("I005", 7,"IT34",-22.6728,  -6.6573,-0.15,  idrotm[329],"ONLY");
3739   gMC->Gspos("I005", 8,"IT34",-20.3415, -13.0727,-0.15,  idrotm[328],"ONLY");
3740   gMC->Gspos("I005", 9,"IT34",-15.4744, -17.8584,-0.15,  idrotm[327],"ONLY");
3741   gMC->Gspos("I005",10,"IT34",-10.0447, -21.9949,-0.15,  idrotm[326],"ONLY");
3742   gMC->Gspos("I005",11,"IT34", -3.3629, -23.3895,-0.15,  idrotm[325],"ONLY");
3743   gMC->Gspos("I005",12,"IT34",  3.4412, -23.9339,-0.15,  idrotm[324],"ONLY");
3744   gMC->Gspos("I005",13,"IT34",  9.8163, -21.4946,-0.15,  idrotm[323],"ONLY");
3745   gMC->Gspos("I005",14,"IT34", 15.8345, -18.274, -0.15,  idrotm[322],"ONLY");
3746   gMC->Gspos("I005",15,"IT34", 19.8788, -12.7753,-0.15,  idrotm[320],"ONLY");
3747   gMC->Gspos("I005",16,"IT34", 23.2005,  -6.8123,-0.15,  idrotm[319],"ONLY");
3748   gMC->Gspos("I005",17,"IT34", 23.63,     0.0,   -0.15,  idrotm[318],"ONLY");
3749   gMC->Gspos("I005",18,"IT34", 23.2005,   6.8123,-0.15,  idrotm[317],"ONLY");
3750   gMC->Gspos("I005",19,"IT34", 19.8788,  12.7753,-0.15,  idrotm[316],"ONLY");
3751   gMC->Gspos("I005",20,"IT34", 15.8345,  18.274, -0.15,  idrotm[315],"ONLY");
3752   gMC->Gspos("I005",21,"IT34",  9.8163,  21.4946,-0.15,  idrotm[314],"ONLY");
3753   gMC->Gspos("I005",22,"IT34",  3.4412,  23.9339,-0.15,  idrotm[334],"ONLY");
3754
3755
3756   // -- build block of the SDD ladder frame holding the electronics
3757
3758   gMC->Gspos("I019", 1,"I018", -1.9,     -1.735,  0.0, idrotm[344], "ONLY");
3759   gMC->Gspos("I019", 2,"I018",  1.987,   -1.5843, 0.0, idrotm[343], "ONLY");
3760   gMC->Gspos("I019", 3,"I018", -0.087,    1.7066, 0.0, idrotm[342], "ONLY");
3761
3762   gMC->Gspos("I020", 1,"I018", -1.9782,  -1.569,  0.0, idrotm[342], "ONLY");
3763   gMC->Gspos("I020", 2,"I018",  1.8824,  -1.735,  0.0, idrotm[344], "ONLY");
3764   gMC->Gspos("I020", 3,"I018",  0.0958,   1.6913, 0.0, idrotm[343], "ONLY");
3765
3766   gMC->Gspos("I021", 1,"I018",  1.0761,   0.0835, 2.6008, idrotm[340], "ONLY");
3767   gMC->Gspos("I021", 2,"I018", -1.0761,   0.0835,-2.8008, idrotm[339], "ONLY");
3768   gMC->Gspos("I021", 3,"I018", -1.0761,   0.0835,-1.0492, idrotm[338], "ONLY");
3769   gMC->Gspos("I021", 4,"I018",  1.0761,   0.0835,-2.8008, idrotm[337], "ONLY");
3770   gMC->Gspos("I021", 5,"I018",  1.0761,   0.0835,-1.0492, idrotm[340], "ONLY");
3771   gMC->Gspos("I021", 6,"I018", -1.0761,   0.0835, 0.8492, idrotm[339], "ONLY");
3772   gMC->Gspos("I021", 7,"I018", -1.0761,   0.0835, 2.6008, idrotm[338], "ONLY");
3773   gMC->Gspos("I021", 8,"I018",  1.0761,   0.0835, 0.8492, idrotm[337], "ONLY");
3774
3775   gMC->Gspos("I022", 1,"I018",  0.0,     -1.79,   3.55,   idrotm[312], "ONLY");
3776   gMC->Gspos("I022", 2,"I018",  0.0,     -1.79,  -0.1,    idrotm[312], "ONLY");
3777
3778   gMC->Gspos("I023", 1,"I018",  0.0,     -1.79,   1.725,  idrotm[341], "ONLY");
3779   gMC->Gspos("I023", 2,"I018",  0.0,     -1.79,  -1.925,  idrotm[341], "ONLY");
3780
3781   gMC->Gspos("I033", 1,"I018",  1.8,     -1.75,   1.35,   0,           "MANY");
3782   gMC->Gspos("I033", 2,"I018", -1.8,     -1.75,  -2.65,   idrotm[345], "MANY");
3783   gMC->Gspos("I033", 3,"I018", -1.8,     -1.75,   1.35,   idrotm[345], "MANY");
3784   gMC->Gspos("I033", 4,"I018",  1.8,     -1.75,  -2.65,   0,           "MANY");
3785
3786   gMC->Gspos("I034", 1,"I018",  1.6,     -1.775,  1.35,   idrotm[312], "ONLY");
3787   gMC->Gspos("I034", 2,"I018", -1.6,     -1.775, -2.65,   idrotm[348], "ONLY");
3788   gMC->Gspos("I034", 3,"I018", -1.6,     -1.775,  1.35,   idrotm[348], "ONLY");
3789   gMC->Gspos("I034", 4,"I018",  1.6,     -1.775, -2.65,   idrotm[312], "ONLY");
3790
3791   gMC->Gspos("I035", 1,"I018",  1.7,     -0.55, iI018dits[2]-iI035dits[2], 0, "MANY");
3792   gMC->Gspos("I035", 2,"I018", -1.7,     -0.55, iI018dits[2]-iI035dits[2], 0, "MANY");
3793
3794   gMC->Gspos("I036", 1,"I018",  0.3087,   1.7191, 3.56,   idrotm[346], "ONLY");
3795   gMC->Gspos("I036", 2,"I018",  0.3087,   1.7191,-0.11,   idrotm[346], "ONLY");
3796   gMC->Gspos("I036", 3,"I018", -0.3087,   1.7191,-0.11,   idrotm[347], "ONLY");
3797   gMC->Gspos("I036", 4,"I018", -0.3087,   1.7191, 3.56,   idrotm[347], "ONLY");
3798
3799   gMC->Gspos("I037", 1,"I018",  iSDDCoolPipe[0], iSDDCoolPipe[1], iSDDCoolPipe[2], 0 , "ONLY");
3800   gMC->Gspos("I037", 2,"I018", -iSDDCoolPipe[0], iSDDCoolPipe[1], iSDDCoolPipe[2], 0 , "ONLY");
3801
3802   gMC->Gspos("I038", 1,"I018",  iSDDCoolPipe[0], iSDDCoolPipe[1], iSDDCoolPipe[2], 0 , "ONLY");
3803   gMC->Gspos("I038", 2,"I018", -iSDDCoolPipe[0], iSDDCoolPipe[1], iSDDCoolPipe[2], 0 , "ONLY");
3804
3805   gMC->Gspos("I040", 1,"I018",  1.9204,  -0.7118, 0.0, idrotm[346],"ONLY");
3806   gMC->Gspos("I040", 2,"I018", -1.9204,  -0.7118, 0.0, idrotm[347],"ONLY");
3807   gMC->Gspos("I041", 1,"I018",  iSDDCoolPipe[0], iSDDCoolPipe[1], iSDDCoolPipe[2], idrotm[346], "ONLY");
3808   gMC->Gspos("I041", 2,"I018", -iSDDCoolPipe[0], iSDDCoolPipe[1], iSDDCoolPipe[2], idrotm[347], "ONLY");
3809
3810
3811   // -- build block of the SDD electronics (heat bridge, chips, hybrid, anode microcable)
3812
3813   xI050 = iSDDCoolPipe[0]+iSDDCoolPipe[1]*sin30+iI050dits[1]/cos30+iI041dits[1];
3814   yI050 = 0;
3815   xI039 = -iSDDCoolPipe[1]/cos30;
3816   yI039 = -iI050dits[1]+iI039dits[1];
3817   gMC->Gspos("I039", 1,"I050",  xI039, yI039, 0.0, 0, "ONLY");
3818   xI042 = xI039+iI039dits[0]-xI042space-iI042dits[0];
3819   yI042 = yI039+iI039dits[1]+iI042dits[1];
3820   xI043 = xI039-iI039dits[0]+xI043space+iI043dits[0];
3821   yI043 = yI039+iI039dits[1]+iI043dits[1];
3822   zChipSpace = iI042dits[2];
3823   if (zChipSpace < iI043dits[2]) {
3824     zChipSpace = iI043dits[2];
3825   }
3826   zChipSpace = zChipSpace * 2;
3827   yI051space = (2*iI039dits[2] - 4*zChipSpace)/5;
3828   zchip = -iI039dits[2] + yI051space + zChipSpace/2.;
3829   for (ichip=0; ichip<4; ichip++) { 
3830     gMC->Gspos("I042", ichip+1, "I050", xI042, yI042, zchip, 0, "ONLY");
3831     gMC->Gspos("I043", ichip+1, "I050", xI043, yI043, zchip, 0, "ONLY");
3832     zchip += zChipSpace + yI051space;
3833   }
3834   xcap = 2*iI039dits[0]/5.;
3835   yI051 = yI039+iI039dits[1]+iI051dits[1];
3836   zI051 = -iI039dits[2] + yI051space/3.;
3837   icap = 1;
3838   for (ichip=0; ichip<5; ichip++) { 
3839     xI051 = xI039-iI039dits[0]+xcap;
3840     gMC->Gspos("I051", icap++,"I050", xI051, yI051, zI051, 0, "ONLY");
3841     zI051 += yI051space/3.;
3842     gMC->Gspos("I051", icap++,"I050", xI051, yI051, zI051, 0, "ONLY");
3843     xI051 += xcap;
3844     gMC->Gspos("I051", icap++,"I050", xI051, yI051, zI051, 0, "ONLY");
3845     xI051 += xcap;
3846     gMC->Gspos("I051", icap++,"I050", xI051, yI051, zI051, 0, "ONLY");
3847     xI051 += xcap;
3848     gMC->Gspos("I051", icap++,"I050", xI051, yI051, zI051, 0, "ONLY");
3849     zI051 -= yI051space/3.;
3850     if (ichip == 0) {
3851       gMC->Gspos("I051", icap++,"I050", xI051, yI051, zI051, 0, "ONLY");
3852     }
3853     zI051 += zChipSpace + yI051space;
3854   }
3855   xI052 = -iI050dits[0]+iI052dits[0];
3856   yI052 = yI051+iI051dits[1]+iI052dits[1];
3857   gMC->Gspos("I052", 1,"I050", xI052, yI052, 0.0, 0, "ONLY");
3858   xI044 = iI050dits[0]-iI044dits[3];
3859   yI044 = yI052+iI052dits[1]+iI044dits[2];
3860   gMC->Gspos("I044", 1,"I050", xI044, yI044, 0.0, idrotm[301], "ONLY");
3861   gMC->Gspos("I050", 1,"I018",  xI050,  yI050,  0.0, idrotm[346],"ONLY");
3862   gMC->Gspos("I050", 2,"I018", -xI050,  yI050,  0.0, idrotm[347],"ONLY");
3863
3864
3865   // -- build block of the SDD ladder frame at the end ladders
3866
3867   gMC->Gspos("I021",12,"I024",  1.0761,   0.0836,-0.1242, idrotm[340], "ONLY");
3868   gMC->Gspos("I021",11,"I024", -1.0761,   0.0836,-0.1242, idrotm[338], "ONLY");
3869   gMC->Gspos("I021",13,"I024", -1.0761,   0.0836,-1.8758, idrotm[339], "ONLY");
3870   gMC->Gspos("I021",14,"I024",  1.0761,   0.0836,-1.8758, idrotm[337], "ONLY");
3871
3872   gMC->Gspos("I022", 3,"I024",  0.0,     -1.7899, 0.825,  idrotm[312], "ONLY");
3873
3874   gMC->Gspos("I023", 3,"I024",  0.0,     -1.7899,-1.0,    idrotm[341], "ONLY");
3875
3876   gMC->Gspos("I025", 1,"I024", -1.9,     -1.7349, 0.0,    idrotm[344], "ONLY");
3877   gMC->Gspos("I025", 2,"I024",  1.987,   -1.5842, 0.0,    idrotm[343], "ONLY");
3878
3879   gMC->Gspos("I026", 1,"I024", -1.9782,  -1.5689, 0.0,    idrotm[342], "ONLY");
3880   gMC->Gspos("I026", 2,"I024",  1.8824,  -1.7349, 0.0,    idrotm[344], "ONLY");
3881
3882   gMC->Gspos("I029", 1,"I024", -0.087,    1.7067, iI029dits[2]-iI024dits[2], idrotm[342], "ONLY");
3883
3884   gMC->Gspos("I030", 1,"I024",  0.0958,   1.6914, iI030dits[2]-iI024dits[2], idrotm[343], "ONLY");
3885
3886   gMC->Gspos("I031", 1,"I024",  iSDDCoolPipe[0], iSDDCoolPipe[1], iSDDCoolPipe[2], 0 ,"ONLY");
3887   gMC->Gspos("I031", 2,"I024", -iSDDCoolPipe[0], iSDDCoolPipe[1], iSDDCoolPipe[2], 0 ,"ONLY");
3888
3889   gMC->Gspos("I032", 1,"I024",  iSDDCoolPipe[0], iSDDCoolPipe[1], iSDDCoolPipe[2], 0 ,"ONLY");
3890   gMC->Gspos("I032", 2,"I024", -iSDDCoolPipe[0], iSDDCoolPipe[1], iSDDCoolPipe[2], 0 ,"ONLY");
3891
3892
3893   xI424 = iI028dits[0]/3.;
3894   yI424 = -iI028dits[1]+iI424dits[1];
3895   gMC->Gspos("I422", 1,"I421", 0.0, 0.0, 0.0, 0, "ONLY");
3896   gMC->Gspos("I423", 1,"I421", 0.0, 0.0, iI421dits[2]-iI423dits[2], 0, "ONLY");
3897   gMC->Gspos("I421", 1,"I420", 0.0, 0.0, 0.0, idrotm[312], "ONLY");
3898   gMC->Gspos("I420", 1,"I028", -iI028dits[0]/3., iI028dits[1]-iI420dits[1], 0.0, 0, "ONLY");
3899   gMC->Gspos("I424", 1,"I028", xI424, yI424, 0.0, 0, "ONLY");
3900   gMC->Gspos("I028", 1,"I024", 0.0, iI028dits[1]-iI024dits[1], iI024dits[2]-iI028dits[2], 0, "MANY");
3901
3902
3903   // -- build the SDD ladder 3
3904
3905   indI425 = 1;
3906   gMC->Gspos("I024", 1,"I047",  0.0,      0.0,   24.625, 0,           "ONLY");  
3907   gMC->Gspos("I018", 1,"I047",  0.0,      0.0,    3.65,  0,           "ONLY");
3908   gMC->Gspos("I018", 2,"I047",  0.0,      0.0,   10.95,  0,           "ONLY");
3909   gMC->Gspos("I018", 3,"I047",  0.0,      0.0,   18.25,  0,           "ONLY");
3910   gMC->Gspos("I018", 4,"I047",  0.0,      0.0,   -3.65,  0,           "ONLY");
3911   gMC->Gspos("I018", 5,"I047",  0.0,      0.0,  -10.95,  0,           "ONLY");
3912   gMC->Gspos("I018", 6,"I047",  0.0,      0.0,  -18.25,  0,           "ONLY");
3913   gMC->Gspos("I024", 2,"I047",  0.0,      0.0,  -24.625, idrotm[355], "ONLY");
3914   nameHV[0] = 'I';
3915   nameHV[1] = '3';
3916   nameHV[2] = '1';  
3917   nameHV[4] = '\0';
3918   for (iSDD=0; iSDD<3; iSDD++) {
3919     nameHV[3] = (Char_t)(48+iSDD+5);
3920     dits[0] = 1.350000;
3921     dits[1] = iI425dits[1];
3922     dits[2] = (iI047dits[2] - 2*iI024dits[2] - zSDDlay3[iSDD])/2.;
3923     gMC->Gsvolu(nameHV, "BOX ", idtmed[279], dits, 3);
3924     xHV = 0.0;
3925     yHV = -iI047dits[1] + (2*iSDD+1)*dits[1];
3926     zHV = iI047dits[2] - 2*iI024dits[2] - dits[2];
3927     gMC->Gspos(nameHV, 1,"I047", xHV, yHV,  zHV, 0, "ONLY");
3928     gMC->Gspos(nameHV, 2,"I047", xHV, yHV, -zHV, 0, "ONLY");
3929     gMC->Gspos("I425", indI425++,"I047",  xI424, yHV,   24.625, 0, "ONLY");
3930     gMC->Gspos("I425", indI425++,"I047", -xI424, yHV,  -24.625, 0, "ONLY");
3931   }
3932   nameLV[0] = 'I';
3933   nameLV[1] = '3';
3934   nameLV[2] = '1';  
3935   nameLV[4] = '\0';
3936   for (iSDD=0; iSDD<3; iSDD++) {
3937     nameLV[3] = (Char_t)(48+iSDD+1);
3938     dits[0] = 1.350000;
3939     dits[1] = 0.004423;
3940     dits[2] = (iI047dits[2] - (2*iSDD+1)*iI018dits[2] - iI039dits[2])/2.;
3941     gMC->Gsvolu(nameLV, "BOX ", idtmed[280], dits, 3);
3942     yLV = iI018dits[1] - dits[0]*cos30 - dits[1]*sin30;
3943     xLV = xI050 -
3944           TMath::Abs(yI050-yLV)*sin30/cos30 +
3945           (iI050dits[1]+(2*iSDD+1)*dits[1])/cos30;
3946     zLV = iI047dits[2] - dits[2];
3947     gMC->Gspos(nameLV, 1,"I047",  xLV, yLV,  zLV, idrotm[346], "ONLY");
3948     gMC->Gspos(nameLV, 2,"I047",  xLV, yLV, -zLV, idrotm[346], "ONLY");
3949     gMC->Gspos(nameLV, 3,"I047", -xLV, yLV,  zLV, idrotm[347], "ONLY");
3950     gMC->Gspos(nameLV, 4,"I047", -xLV, yLV, -zLV, idrotm[347], "ONLY");
3951   }
3952
3953
3954   // -- build the SDD ladder 4
3955
3956
3957   gMC->Gspos("I024", 3,"I048", -0.0001,   0.0,   31.925, 0,           "ONLY");
3958   gMC->Gspos("I018", 7,"I048", -0.0001,   0.0,   -3.65,  0,           "ONLY");
3959   gMC->Gspos("I018", 8,"I048", -0.0001,   0.0,    3.65,  0,           "ONLY");
3960   gMC->Gspos("I018", 9,"I048", -0.0001,   0.0,   10.95,  0,           "ONLY");
3961   gMC->Gspos("I018",10,"I048", -0.0001,   0.0,   18.25,  0,           "ONLY");
3962   gMC->Gspos("I018",11,"I048", -0.0001,   0.0,   25.55,  0,           "ONLY");
3963   gMC->Gspos("I018",12,"I048", -0.0001,   0.0,  -10.95,  0,           "ONLY");
3964   gMC->Gspos("I018",13,"I048", -0.0001,   0.0,  -18.25,  0,           "ONLY");
3965   gMC->Gspos("I018",14,"I048", -0.0001,   0.0,  -25.55,  0,           "ONLY");
3966   gMC->Gspos("I024", 4,"I048", -0.0001,   0.0,  -31.925, idrotm[355], "ONLY");
3967   nameHV[0] = 'I';
3968   nameHV[1] = '4';
3969   nameHV[2] = '1';  
3970   nameHV[4] = '\0';  
3971   for (iSDD=0; iSDD<4; iSDD++) {
3972     nameHV[3] = (Char_t)(48+iSDD+5);
3973     dits[0] = 1.350000;
3974     dits[1] = iI425dits[1];
3975     dits[2] = (iI048dits[2] - 2*iI024dits[2] - zSDDlay4[iSDD])/2.;
3976     gMC->Gsvolu(nameHV, "BOX ", idtmed[279], dits, 3);
3977     xHV = -0.0001;
3978     yHV = -iI048dits[1] + (2*iSDD+1)*dits[1];
3979     zHV = iI048dits[2] - 2*iI024dits[2] - dits[2];
3980     gMC->Gspos(nameHV, 1,"I048", xHV, yHV,  zHV, 0, "ONLY");
3981     gMC->Gspos(nameHV, 2,"I048", xHV, yHV, -zHV, 0, "ONLY");
3982     gMC->Gspos("I425", indI425++,"I048",  xI424, yHV,   31.925, 0, "ONLY");
3983     gMC->Gspos("I425", indI425++,"I048", -xI424, yHV,  -31.925, 0, "ONLY");
3984   }
3985   nameLV[0] = 'I';
3986   nameLV[1] = '4';
3987   nameLV[2] = '1';  
3988   nameLV[4] = '\0';
3989   for (iSDD=0; iSDD<4; iSDD++) {
3990     nameLV[3] = (Char_t)(48+iSDD+1);
3991     dits[0] = 1.350000;
3992     dits[1] = 0.004423;
3993     dits[2] = (iI048dits[2] - (2*iSDD+1)*iI018dits[2] - iI039dits[2])/2.;
3994     gMC->Gsvolu(nameLV, "BOX ", idtmed[280], dits, 3);
3995     yLV = iI018dits[1] - dits[0]*cos30 - dits[1]*sin30;
3996     xLV = xI050 -
3997           TMath::Abs(yI050-yLV)*sin30/cos30 +
3998           (iI050dits[1]+(2*iSDD+1)*dits[1])/cos30;
3999     zLV = iI048dits[2] - dits[2];
4000     gMC->Gspos(nameLV, 1,"I048",  xLV, yLV,  zLV, idrotm[346], "ONLY");
4001     gMC->Gspos(nameLV, 2,"I048",  xLV, yLV, -zLV, idrotm[346], "ONLY");
4002     gMC->Gspos(nameLV, 3,"I048", -xLV, yLV,  zLV, idrotm[347], "ONLY");
4003     gMC->Gspos(nameLV, 4,"I048", -xLV, yLV, -zLV, idrotm[347], "ONLY");
4004   }
4005
4006
4007   // -- build the SDD barrel (layers 3 and 4)
4008
4009   gMC->Gspos("I047", 1,"IT34", -3.7528,  16.4422, 0.0,   idrotm[321], "ONLY");
4010   gMC->Gspos("I047", 2,"IT34",-10.8892,  13.6547, 0.0,   idrotm[333], "ONLY");
4011   gMC->Gspos("I047", 3,"IT34",-15.1948,   7.3175, 0.0,   idrotm[336], "ONLY");
4012   gMC->Gspos("I047", 4,"IT34",-17.465,    0.0,    0.0,   idrotm[350], "ONLY");
4013   gMC->Gspos("I047", 5,"IT34",-15.1948,  -7.3174, 0.0,   idrotm[313], "ONLY");
4014   gMC->Gspos("I047", 6,"IT34",-10.8893, -13.6547, 0.0,   idrotm[311], "ONLY");
4015   gMC->Gspos("I047", 7,"IT34", -3.7528, -16.4422, 0.0,   idrotm[310], "ONLY");
4016   gMC->Gspos("I047", 8,"IT34",  3.8863, -17.0271, 0.0,   idrotm[386], "ONLY");
4017   gMC->Gspos("I047", 9,"IT34", 10.5152, -13.1856, 0.0,   idrotm[309], "ONLY");
4018   gMC->Gspos("I047",10,"IT34", 15.7354,  -7.5778, 0.0,   idrotm[308], "ONLY");
4019   gMC->Gspos("I047",11,"IT34", 16.865,    0.0,    0.0,   idrotm[356], "ONLY");
4020   gMC->Gspos("I047",12,"IT34", 15.7354,   7.5778, 0.0,   idrotm[307], "ONLY");
4021   gMC->Gspos("I047",13,"IT34", 10.5152,  13.1856, 0.0,   idrotm[306], "ONLY");
4022   gMC->Gspos("I047",14,"IT34",  3.8863,  17.0271, 0.0,   idrotm[305], "ONLY");
4023
4024   gMC->Gspos("I048", 1,"IT34", -3.6667,  25.5027, 0.0,   idrotm[335], "ONLY");
4025   gMC->Gspos("I048", 2,"IT34",-10.9317,  23.937,  0.0,   idrotm[332], "ONLY");
4026   gMC->Gspos("I048", 3,"IT34",-16.8725,  19.4719, 0.0,   idrotm[331], "ONLY");
4027   gMC->Gspos("I048", 4,"IT34",-22.1376,  14.227,  0.0,   idrotm[366], "ONLY");
4028   gMC->Gspos("I048", 5,"IT34",-24.7213,   7.2588, 0.0,   idrotm[330], "ONLY");
4029   gMC->Gspos("I048", 6,"IT34",-26.315,    0.0,    0.0,   idrotm[350], "ONLY");
4030   gMC->Gspos("I048", 7,"IT34",-24.7213,  -7.2588, 0.0,   idrotm[329], "ONLY");
4031   gMC->Gspos("I048", 8,"IT34",-22.1376, -14.227,  0.0,   idrotm[328], "ONLY");
4032   gMC->Gspos("I048", 9,"IT34",-16.8725, -19.4719, 0.0,   idrotm[327], "ONLY");
4033   gMC->Gspos("I048",10,"IT34",-10.9316, -23.937,  0.0,   idrotm[326], "ONLY");
4034   gMC->Gspos("I048",11,"IT34", -3.6667, -25.5027, 0.0,   idrotm[325], "ONLY");
4035   gMC->Gspos("I048",12,"IT34",  3.745,  -26.0472, 0.0,   idrotm[324], "ONLY");
4036   gMC->Gspos("I048",13,"IT34", 10.7032, -23.4367, 0.0,   idrotm[323], "ONLY");
4037   gMC->Gspos("I048",14,"IT34", 17.2327, -19.8876, 0.0,   idrotm[322], "ONLY");
4038   gMC->Gspos("I048",15,"IT34", 21.6749, -13.9296, 0.0,   idrotm[320], "ONLY");
4039   gMC->Gspos("I048",16,"IT34", 25.2491,  -7.4138, 0.0,   idrotm[319], "ONLY");
4040   gMC->Gspos("I048",17,"IT34", 25.765,    0.0,    0.0,   idrotm[318], "ONLY");
4041   gMC->Gspos("I048",18,"IT34", 25.2491,   7.4138, 0.0,   idrotm[317], "ONLY");
4042   gMC->Gspos("I048",19,"IT34", 21.6749,  13.9296, 0.0,   idrotm[316], "ONLY");
4043   gMC->Gspos("I048",20,"IT34", 17.2327,  19.8876, 0.0,   idrotm[315], "ONLY");
4044   gMC->Gspos("I048",21,"IT34", 10.7032,  23.4367, 0.0,   idrotm[314], "ONLY");
4045   gMC->Gspos("I048",22,"IT34", 3.745,    26.0472, 0.0,   idrotm[334], "ONLY");
4046
4047   
4048   // --- Place SSD volumes into their mother volume IT56  
4049
4050
4051   gMC->Gspos("I570",14,"IT56",-28.0681,-36.0619,-0.27,idrotm[566],"ONLY"); 
4052   gMC->Gspos("I570",15,"IT56",-21.677,-40.0556,-0.27,idrotm[567],"ONLY");
4053   gMC->Gspos("I570",16,"IT56",-14.838,-43.2217,-0.27,idrotm[568],"ONLY");
4054   gMC->Gspos("I570",17,"IT56",-7.4965,-44.9238,-0.27,idrotm[569],"ONLY");
4055   gMC->Gspos("I570",18,"IT56",-0.27,-45.6977,-0.27,idrotm[533],"ONLY");
4056   gMC->Gspos("I570",19,"IT56",7.4965,-44.9238,-0.27,idrotm[534],"ONLY");
4057   gMC->Gspos("I570",20,"IT56",14.838,-43.2217,-0.27,idrotm[535],"ONLY");
4058   gMC->Gspos("I570",21,"IT56",21.677,-40.0556,-0.27,idrotm[623],"ONLY");
4059   gMC->Gspos("I570",22,"IT56",28.0681,-36.0619,-0.27,idrotm[537],"ONLY");
4060   gMC->Gspos("I570",23,"IT56",33.5085,-30.8468,-0.27,idrotm[538],"ONLY");
4061   gMC->Gspos("I570",24,"IT56",38.2566,-24.9943,-0.27,idrotm[539],"ONLY");
4062   gMC->Gspos("I570",25,"IT56",41.7089,-18.2952,-0.27,idrotm[540],"ONLY");
4063   gMC->Gspos("I570",26,"IT56",44.2994,-11.2181,-0.27,idrotm[541],"ONLY");
4064   gMC->Gspos("I570",27,"IT56",45.3894,-3.7611,-0.27,idrotm[542],"ONLY");
4065   gMC->Gspos("I570",28,"IT56",45.5416,3.7737,-0.27,idrotm[543],"ONLY");
4066   gMC->Gspos("I570",29,"IT56",44.1513,11.1806,-0.27,idrotm[544],"ONLY");
4067   gMC->Gspos("I570",30,"IT56",41.8487,18.3566,-0.27,idrotm[545],"ONLY");
4068   gMC->Gspos("I570",31,"IT56",38.1287,24.9107,-0.27,idrotm[546],"ONLY");
4069   gMC->Gspos("I570",32,"IT56",33.6209,30.9502,-0.27,idrotm[547],"ONLY");
4070   gMC->Gspos("I570",33,"IT56",27.9743,35.9414,-0.27,idrotm[548],"ONLY");
4071   gMC->Gspos("I570",34,"IT56",21.7497,40.1899,-0.27,idrotm[549],"ONLY");
4072   gMC->Gspos("I570",35,"IT56",14.7884,43.0772,-0.27,idrotm[550],"ONLY");
4073   gMC->Gspos("I570",36,"IT56",7.5216,45.0744,-0.27,idrotm[551],"ONLY");
4074   gMC->Gspos("I570",37,"IT56",0.00,45.545,-0.27,0,"ONLY");
4075   gMC->Gspos("I570",38,"IT56",-7.5216,45.0744,-0.27,idrotm[552],"ONLY");
4076   gMC->Gspos("I570",1,"IT56",-14.7884,43.0772,-0.27,idrotm[553],"ONLY");
4077   gMC->Gspos("I570",2,"IT56",-21.7497,40.1899,-0.27,idrotm[620],"ONLY");
4078   gMC->Gspos("I570",3,"IT56",-27.9743,35.9414,-0.27,idrotm[555],"ONLY");
4079   gMC->Gspos("I570",4,"IT56",-33.6209,30.9502,-0.27,idrotm[556],"ONLY");
4080   gMC->Gspos("I570",5,"IT56",-38.1287,24.9108,-0.27,idrotm[557],"ONLY");
4081   gMC->Gspos("I570",6,"IT56",-41.8487,18.3566,-0.27,idrotm[558],"ONLY");
4082   gMC->Gspos("I570",7,"IT56",-44.1513,11.1806,-0.27,idrotm[559],"ONLY");
4083   gMC->Gspos("I570",8,"IT56",-45.5416,3.7737,-0.27,idrotm[560],"ONLY");
4084   gMC->Gspos("I570",9,"IT56",-45.3894,-3.7611,-0.27,idrotm[561],"ONLY");
4085   gMC->Gspos("I570",10,"IT56",-44.2994,-11.2181,-0.27,idrotm[562],"ONLY");
4086   gMC->Gspos("I570",11,"IT56",-41.7089,-18.2952,-0.27,idrotm[563],"ONLY");
4087   gMC->Gspos("I570",12,"IT56",-38.2566,-24.9943,-0.27,idrotm[564],"ONLY");
4088   gMC->Gspos("I570",13,"IT56",-33.5086,-30.8468,-0.27,idrotm[565],"ONLY");
4089   gMC->Gspos("I569",8,"IT56",-43.5484,3.6085,0.0,idrotm[560],"ONLY");
4090   gMC->Gspos("I569",9,"IT56",-43.3963,-3.5959,0.0,idrotm[561],"ONLY");
4091   gMC->Gspos("I569",10,"IT56",-42.3606,-10.7271,0.0,idrotm[562],"ONLY");
4092   gMC->Gspos("I569",11,"IT56",-39.8773,-17.4918,0.0,idrotm[563],"ONLY");
4093   gMC->Gspos("I569",12,"IT56",-36.5823,-23.9004,0.0,idrotm[564],"ONLY");
4094   gMC->Gspos("I569",13,"IT56",-32.0371,-29.4922,0.0,idrotm[565],"ONLY");
4095   gMC->Gspos("I569",14,"IT56",-26.8397,-34.4836,0.0,idrotm[566],"ONLY");
4096   gMC->Gspos("I569",15,"IT56",-20.7251,-38.2967,0.0,idrotm[567],"ONLY");
4097   gMC->Gspos("I569",16,"IT56",-14.1886,-41.33,0.0,idrotm[568],"ONLY");
4098   gMC->Gspos("I569",17,"IT56",-7.1673,-42.9511,0.0,idrotm[569],"ONLY");
4099   gMC->Gspos("I569",18,"IT56",0.0,-43.6977,0.0,idrotm[533],"ONLY");
4100   gMC->Gspos("I569",19,"IT56",7.1673,-42.9511,0.0,idrotm[534],"ONLY");
4101   gMC->Gspos("I569",20,"IT56",14.1886,-41.33,0.0,idrotm[535],"ONLY");
4102   gMC->Gspos("I569",21,"IT56",20.7251,-38.2967,0.0,idrotm[623],"ONLY");
4103   gMC->Gspos("I569",22,"IT56",26.8397,-34.4836,0.0,idrotm[537],"ONLY");
4104   gMC->Gspos("I569",23,"IT56",32.0371,-29.4922,0.0,idrotm[538],"ONLY");
4105   gMC->Gspos("I569",24,"IT56",36.5822,-23.9004,0.0,idrotm[539],"ONLY");
4106   gMC->Gspos("I569",25,"IT56",39.8773,-17.4918,0.0,idrotm[540],"ONLY");
4107   gMC->Gspos("I569",26,"IT56",42.3606,-10.7272,0.0,idrotm[541],"ONLY");
4108   gMC->Gspos("I569",27,"IT56",43.3963,-3.5959,0.0,idrotm[542],"ONLY");
4109   gMC->Gspos("I569",28,"IT56",43.5484,3.6085,0.0,idrotm[543],"ONLY");
4110   gMC->Gspos("I569",29,"IT56",42.2125,10.6897,0.0,idrotm[544],"ONLY");
4111   gMC->Gspos("I569",30,"IT56",40.0172,17.5532,0.0,idrotm[545],"ONLY");
4112   gMC->Gspos("I569",31,"IT56",36.4544,23.8169,0.0,idrotm[546],"ONLY");
4113   gMC->Gspos("I569",32,"IT56",32.1494,29.5956,0.0,idrotm[547],"ONLY");
4114   gMC->Gspos("I569",33,"IT56",26.7459,34.3631,0.0,idrotm[548],"ONLY");
4115   gMC->Gspos("I569",34,"IT56",20.7978,38.431,0.0,idrotm[549],"ONLY");
4116   gMC->Gspos("I569",35,"IT56",14.139,41.1856,0.0,idrotm[550],"ONLY");
4117   gMC->Gspos("I569",36,"IT56",7.1924,43.1017,0.0,idrotm[551],"ONLY");
4118   gMC->Gspos("I569",37,"IT56",0.0,43.545,0.0,0,"ONLY");
4119   gMC->Gspos("I569",38,"IT56",-7.1924,43.1017,0.0,idrotm[552],"ONLY");
4120   gMC->Gspos("I569",1,"IT56",-14.139,41.1856,0.0,idrotm[553],"ONLY");
4121   gMC->Gspos("I569",2,"IT56",-20.7978,38.431,0.0,idrotm[620],"ONLY");
4122   gMC->Gspos("I569",3,"IT56",-26.7459,34.3631,0.0,idrotm[555],"ONLY");
4123   gMC->Gspos("I569",4,"IT56",-32.1494,29.5956,0.0,idrotm[556],"ONLY");
4124   gMC->Gspos("I569",5,"IT56",-36.4544,23.8169,0.0,idrotm[557],"ONLY");
4125   gMC->Gspos("I569",6,"IT56",-40.0172,17.5532,0.0,idrotm[558],"ONLY");
4126   gMC->Gspos("I569",7,"IT56",-42.2125,10.6897,0.0,idrotm[559],"ONLY");
4127   gMC->Gspos("I571",15,"IT56",-21.2916,-34.387,0.0,idrotm[501],"ONLY");
4128   gMC->Gspos("I571",14,"IT56",-27.351,-30.0026,0.0,idrotm[503],"ONLY");
4129   gMC->Gspos("I571",13,"IT56",-32.2758,-24.3735,0.0,idrotm[504],"ONLY");
4130   gMC->Gspos("I571",12,"IT56",-36.3422,-18.0963,0.0,idrotm[505],"ONLY");
4131   gMC->Gspos("I571",11,"IT56",-38.901,-11.0683,0.0,idrotm[506],"ONLY");
4132   gMC->Gspos("I571",10,"IT56",-40.4252,-3.7459,0.0,idrotm[507],"ONLY");
4133   gMC->Gspos("I571",9,"IT56",-40.2725,3.7318,0.0,idrotm[508],"ONLY");
4134   gMC->Gspos("I571",8,"IT56",-39.0486,11.1103,0.0,idrotm[509],"ONLY");
4135   gMC->Gspos("I571",7,"IT56",-36.2049,18.0279,0.0,idrotm[510],"ONLY");
4136   gMC->Gspos("I571",6,"IT56",-32.3982,24.466,0.0,idrotm[511],"ONLY");
4137   gMC->Gspos("I571",5,"IT56",-27.2476,29.8892,0.0,idrotm[512],"ONLY");
4138   gMC->Gspos("I571",4,"IT56",-21.3723,34.5175,0.0,idrotm[513],"ONLY");
4139   gMC->Gspos("I571",3,"IT56",-14.6104,37.7138,0.0,idrotm[653],"ONLY");
4140   gMC->Gspos("I571",2,"IT56",-7.4599,39.9072,0.0,idrotm[514],"ONLY");
4141   gMC->Gspos("I571",1,"IT56",0.0,40.445,0.0,0,"ONLY");
4142   gMC->Gspos("I571",34,"IT56",7.46,39.9071,0.0,idrotm[515],"ONLY");
4143   gMC->Gspos("I571",33,"IT56",14.6104,37.7138,0.0,idrotm[516],"ONLY");
4144   gMC->Gspos("I571",32,"IT56",21.3723,34.5175,0.0,idrotm[517],"ONLY");
4145   gMC->Gspos("I571",31,"IT56",27.2476,29.8892,0.0,idrotm[518],"ONLY");
4146   gMC->Gspos("I571",30,"IT56",32.3983,24.466,0.0,idrotm[519],"ONLY");
4147   gMC->Gspos("I571",29,"IT56",36.2049,18.0279,0.0,idrotm[520],"ONLY");
4148   gMC->Gspos("I571",28,"IT56",39.0486,11.1103,0.0,idrotm[521],"ONLY");
4149   gMC->Gspos("I571",27,"IT56",40.2725,3.7318,0.0,idrotm[522],"ONLY");
4150   gMC->Gspos("I571",26,"IT56",40.4252,-3.746,0.0,idrotm[523],"ONLY");
4151   gMC->Gspos("I571",25,"IT56",38.901,-11.0683,0.0,idrotm[524],"ONLY");
4152   gMC->Gspos("I571",24,"IT56",36.3422,-18.0963,0.0,idrotm[525],"ONLY");
4153   gMC->Gspos("I571",23,"IT56",32.2758,-24.3736,0.0,idrotm[526],"ONLY");
4154   gMC->Gspos("I571",22,"IT56",27.351,-30.0026,0.0,idrotm[527],"ONLY");
4155   gMC->Gspos("I571",21,"IT56",21.2915,-34.387,0.0,idrotm[528],"ONLY");
4156   gMC->Gspos("I571",20,"IT56",14.6658,-37.8569,0.0,idrotm[618],"ONLY");
4157   gMC->Gspos("I571",19,"IT56",7.4317,-39.7563,0.0,idrotm[529],"ONLY");
4158   gMC->Gspos("I571",18,"IT56",0.0,-40.5984,0.0,idrotm[533],"ONLY");
4159   gMC->Gspos("I571",17,"IT56",-7.4318,-39.7563,0.0,idrotm[530],"ONLY");
4160   gMC->Gspos("I571",16,"IT56",-14.6659,-37.8569,0.0,idrotm[531],"ONLY");
4161   gMC->Gspos("I565",13,"IT56",-30.6798,-23.1683,0.0,idrotm[504],"ONLY");
4162   gMC->Gspos("I565",12,"IT56",-34.5519,-17.2048,0.0,idrotm[505],"ONLY");
4163   gMC->Gspos("I565",11,"IT56",-36.9774,-10.521,0.0,idrotm[506],"ONLY");
4164   gMC->Gspos("I565",10,"IT56",-38.4338,-3.5614,0.0,idrotm[507],"ONLY");
4165   gMC->Gspos("I565",9,"IT56",-38.281,3.5473,0.0,idrotm[508],"ONLY");
4166   gMC->Gspos("I565",8,"IT56",-37.1249,10.563,0.0,idrotm[509],"ONLY");
4167   gMC->Gspos("I565",7,"IT56",-34.4146,17.1364,0.0,idrotm[510],"ONLY");
4168   gMC->Gspos("I565",6,"IT56",-30.8022,23.2608,0.0,idrotm[511],"ONLY");
4169   gMC->Gspos("I565",5,"IT56",-25.9002,28.4112,0.0,idrotm[512],"ONLY");
4170   gMC->Gspos("I565",4,"IT56",-20.3195,32.817,0.0,idrotm[513],"ONLY");
4171   gMC->Gspos("I565",3,"IT56",-13.8879,35.8489,0.0,idrotm[653],"ONLY");
4172   gMC->Gspos("I565",2,"IT56",-7.0924,37.9412,0.0,idrotm[514],"ONLY");
4173   gMC->Gspos("I565",1,"IT56",0.0,38.445,0.0,0,"ONLY");
4174   gMC->Gspos("I565",34,"IT56",7.0925,37.9412,0.0,idrotm[515],"ONLY");
4175   gMC->Gspos("I565",33,"IT56",13.888,35.8489,0.0,idrotm[516],"ONLY");
4176   gMC->Gspos("I565",32,"IT56",20.3195,32.817,0.0,idrotm[517],"ONLY");
4177   gMC->Gspos("I565",31,"IT56",25.9002,28.4112,0.0,idrotm[518],"ONLY");
4178   gMC->Gspos("I565",30,"IT56",30.8022,23.2607,0.0,idrotm[519],"ONLY");
4179   gMC->Gspos("I565",29,"IT56",34.4146,17.1364,0.0,idrotm[520],"ONLY");
4180   gMC->Gspos("I565",28,"IT56",37.125,10.5629,0.0,idrotm[521],"ONLY");
4181   gMC->Gspos("I565",27,"IT56",38.281,3.5472,0.0,idrotm[522],"ONLY");
4182   gMC->Gspos("I565",26,"IT56",38.4338,-3.5614,0.0,idrotm[523],"ONLY");
4183   gMC->Gspos("I565",25,"IT56",36.9774,-10.521,0.0,idrotm[524],"ONLY");
4184   gMC->Gspos("I565",24,"IT56",34.5519,-17.2048,0.0,idrotm[525],"ONLY");
4185   gMC->Gspos("I565",23,"IT56",30.6798,-23.1683,0.0,idrotm[526],"ONLY");
4186   gMC->Gspos("I565",22,"IT56",26.0036,-28.5246,0.0,idrotm[527],"ONLY");
4187   gMC->Gspos("I565",21,"IT56",20.2387,-32.6866,0.0,idrotm[528],"ONLY");
4188   gMC->Gspos("I565",20,"IT56",13.9433,-35.992,0.0,idrotm[618],"ONLY");
4189   gMC->Gspos("I565",19,"IT56",7.0642,-37.7904,0.0,idrotm[529],"ONLY");
4190   gMC->Gspos("I565",18,"IT56",0.0,-38.5984,0.0,idrotm[533],"ONLY");
4191   gMC->Gspos("I565",17,"IT56",-7.0643,-37.7904,0.0,idrotm[530],"ONLY");
4192   gMC->Gspos("I565",16,"IT56",-13.9434,-35.992,0.0,idrotm[531],"ONLY");
4193   gMC->Gspos("I565",15,"IT56",-20.2387,-32.6866,0.0,idrotm[501],"ONLY");
4194   gMC->Gspos("I565",14,"IT56",-26.0036,-28.5246,0.0,idrotm[503],"ONLY");
4195   gMC->Gspos("I553",1,"I570",0.005,0.0,52.8453,0,"ONLY");
4196   gMC->Gspos("I523",1,"I570",0.0,0.0,46.9203+0.82,0,"ONLY");
4197   gMC->Gspos("I523",2,"I570",0.0,0.0,43.0103+0.82,0,"ONLY");
4198   gMC->Gspos("I523",3,"I570",0.0,0.0,39.1003+0.82,0,"ONLY");
4199   gMC->Gspos("I523",4,"I570",0.0,0.0,35.1903+0.82,0,"ONLY");
4200   gMC->Gspos("I523",5,"I570",0.0,0.0,31.2803+0.82,0,"ONLY");
4201   gMC->Gspos("I523",6,"I570",0.0,0.0,27.3703+0.82,0,"ONLY");
4202   gMC->Gspos("I523",7,"I570",0.0,0.0,23.4603+0.82,0,"ONLY");
4203   gMC->Gspos("I523",8,"I570",0.0,0.0,19.5503+0.82,0,"ONLY");
4204   gMC->Gspos("I523",9,"I570",0.0,0.0,15.6403+0.82,0,"ONLY");
4205   gMC->Gspos("I523",10,"I570",0.0,0.0,11.7303+0.82,0,"ONLY");
4206   gMC->Gspos("I523",11,"I570",0.0,0.0,7.8203+0.82,0,"ONLY");
4207   gMC->Gspos("I523",12,"I570",0.0,0.0,3.9103+0.82,0,"ONLY");
4208   gMC->Gspos("I523",13,"I570",0.0,0.0,0.0003+0.82,0,"ONLY");
4209   gMC->Gspos("I523",14,"I570",0.0,0.0,-3.9097+0.82,0,"ONLY");
4210   gMC->Gspos("I523",15,"I570",0.0,0.0,-7.8197+0.82,0,"ONLY");
4211   gMC->Gspos("I523",16,"I570",0.0,0.0,-11.7297+0.82,0,"ONLY");
4212   gMC->Gspos("I523",17,"I570",0.0,0.0,-15.6397+0.82,0,"ONLY");
4213   gMC->Gspos("I523",18,"I570",0.0,0.0,-19.5497+0.82,0,"ONLY");
4214   gMC->Gspos("I523",19,"I570",0.0,0.0,-23.4597+0.82,0,"ONLY");
4215   gMC->Gspos("I523",20,"I570",0.0,0.0,-27.3697+0.82,0,"ONLY");
4216   gMC->Gspos("I523",21,"I570",0.0,0.0,-31.2797+0.82,0,"ONLY");
4217   gMC->Gspos("I523",22,"I570",0.0,0.0,-35.1897+0.82,0,"ONLY");
4218   gMC->Gspos("I523",23,"I570",0.0,0.0,-39.0997+0.82,0,"ONLY");
4219   gMC->Gspos("I523",24,"I570",0.0,0.0,-43.0097+0.82,0,"ONLY");
4220   gMC->Gspos("I523",25,"I570",0.0,0.0,-46.9197+0.82,0,"ONLY");
4221   gMC->Gspos("I553",2,"I570",-0.005,0.0,-51.2047,idrotm[570],"ONLY");
4222   gMC->Gspos("I566",1,"I569",0.0,-0.03,46.9203,idrotm[532],"ONLY");
4223   gMC->Gspos("I566",2,"I569",0.0,0.03,43.0103,0,"ONLY");
4224   gMC->Gspos("I566",3,"I569",0.0,-0.03,39.1003,idrotm[532],"ONLY");
4225   gMC->Gspos("I566",4,"I569",0.0,0.03,35.1903,0,"ONLY");
4226   gMC->Gspos("I566",5,"I569",0.0,-0.03,31.2803,idrotm[532],"ONLY");
4227   gMC->Gspos("I566",6,"I569",0.0,0.03,27.3703,0,"ONLY");
4228   gMC->Gspos("I566",7,"I569",0.0,-0.03,23.4603,idrotm[532],"ONLY");
4229   gMC->Gspos("I566",8,"I569",0.0,0.03,19.5503,0,"ONLY");
4230   gMC->Gspos("I566",9,"I569",0.0,-0.03,15.6403,idrotm[532],"ONLY");
4231   gMC->Gspos("I566",10,"I569",0.0,0.03,11.7303,0,"ONLY");
4232   gMC->Gspos("I566",11,"I569",0.0,-0.03,7.8203,idrotm[532],"ONLY");
4233   gMC->Gspos("I566",12,"I569",0.0,0.03,3.9103,0,"ONLY");
4234   gMC->Gspos("I566",13,"I569",0.0,-0.03,0.0003,0,"ONLY");
4235   gMC->Gspos("I566",14,"I569",0.0,0.03,-3.9097,0,"ONLY");
4236   gMC->Gspos("I566",15,"I569",0.0,-0.03,-7.8197,idrotm[532],"ONLY");
4237   gMC->Gspos("I566",16,"I569",0.0,0.03,-11.7297,0,"ONLY");
4238   gMC->Gspos("I566",17,"I569",0.0,-0.03,-15.6397,0,"ONLY");
4239   gMC->Gspos("I566",18,"I569",0.0,0.03,-19.5497,0,"ONLY");
4240   gMC->Gspos("I566",19,"I569",0.0,-0.03,-23.4597,idrotm[532],"ONLY");
4241   gMC->Gspos("I566",20,"I569",0.0,0.03,-27.3697,0,"ONLY");
4242   gMC->Gspos("I566",21,"I569",0.0,-0.03,-31.2797,idrotm[532],"ONLY");
4243   gMC->Gspos("I566",22,"I569",0.0,0.03,-35.1897,0,"ONLY");
4244   gMC->Gspos("I566",23,"I569",0.0,-0.03,-39.0997,0,"ONLY");
4245   gMC->Gspos("I566",24,"I569",0.0,0.03,-43.0097,0,"ONLY");
4246   gMC->Gspos("I566",25,"I569",0.0,-0.03,-46.9197,idrotm[532],"ONLY");
4247   gMC->Gspos("I544",1,"I571",0.0101,0.0,43.125,0,"ONLY");
4248   gMC->Gspos("I516",20,"I571",0.0001,0.0,39.1-1.08,0,"ONLY");
4249   gMC->Gspos("I516",19,"I571",0.0001,0.0,35.19-1.08,0,"ONLY");
4250   gMC->Gspos("I516",18,"I571",0.0001,0.0,31.28-1.08,0,"ONLY");
4251   gMC->Gspos("I516",17,"I571",0.0001,0.0,27.37-1.08,0,"ONLY");
4252   gMC->Gspos("I516",16,"I571",0.0001,0.0,23.46-1.08,0,"ONLY");
4253   gMC->Gspos("I516",15,"I571",0.0001,0.0,19.55-1.08,0,"ONLY");
4254   gMC->Gspos("I516",14,"I571",0.0001,0.0,15.64-1.08,0,"ONLY");
4255   gMC->Gspos("I516",13,"I571",0.0001,0.0,11.73-1.08,0,"ONLY");
4256   gMC->Gspos("I516",12,"I571",0.0001,0.0,7.82-1.08,0,"ONLY");
4257   gMC->Gspos("I516",11,"I571",0.0001,0.0,3.91-1.08,0,"ONLY");
4258   gMC->Gspos("I516",10,"I571",0.0001,0.0,0.0-1.08,0,"ONLY");
4259   gMC->Gspos("I516",9,"I571",0.0001,0.0,-3.91-1.08,0,"ONLY");
4260   gMC->Gspos("I516",8,"I571",0.0001,0.0,-7.82-1.08,0,"ONLY");
4261   gMC->Gspos("I516",7,"I571",0.0001,0.0,-11.73-1.08,0,"ONLY");
4262   gMC->Gspos("I516",6,"I571",0.0001,0.0,-15.64-1.08,0,"ONLY");
4263   gMC->Gspos("I516",5,"I571",0.0001,0.0,-19.55-1.08,0,"ONLY");
4264   gMC->Gspos("I516",4,"I571",0.0001,0.0,-23.46-1.08,0,"ONLY");
4265   gMC->Gspos("I516",3,"I571",0.0001,0.0,-27.37-1.08,0,"ONLY");
4266   gMC->Gspos("I516",2,"I571",0.0001,0.0,-31.28-1.08,0,"ONLY");
4267   gMC->Gspos("I516",1,"I571",0.0001,0.0,-35.19-1.08,0,"ONLY");
4268   gMC->Gspos("I544",2,"I571",-0.0099,0.0,-41.375,idrotm[570],"ONLY");
4269   gMC->Gspos("I562",1,"I565",0.0,0.03,41.1546,0,"ONLY");
4270   gMC->Gspos("I562",2,"I565",0.0,-0.03,37.2246,0,"ONLY");
4271   gMC->Gspos("I562",3,"I565",0.0,0.03,33.3146,0,"ONLY");
4272   gMC->Gspos("I562",4,"I565",0.0,-0.03,29.3846,0,"ONLY");
4273   gMC->Gspos("I562",5,"I565",0.0,0.03,25.4746,0,"ONLY");
4274   gMC->Gspos("I562",6,"I565",0.0,-0.03,21.5446,0,"ONLY");
4275   gMC->Gspos("I562",7,"I565",0.0,0.03,17.6346,0,"ONLY");
4276   gMC->Gspos("I562",8,"I565",0.0,-0.03,13.7046,0,"ONLY");
4277   gMC->Gspos("I562",9,"I565",0.0,0.03,9.7946,0,"ONLY");
4278   gMC->Gspos("I562",10,"I565",0.0,-0.03,5.8645,0,"ONLY");
4279   gMC->Gspos("I562",11,"I565",0.0,0.03,1.9546,0,"ONLY");
4280   gMC->Gspos("I562",12,"I565",0.0,-0.03,-1.9754,0,"ONLY");
4281   gMC->Gspos("I562",13,"I565",0.0,0.03,-5.8855,0,"ONLY");
4282   gMC->Gspos("I562",14,"I565",0.0,-0.03,-9.8154,0,"ONLY");
4283   gMC->Gspos("I562",15,"I565",0.0,0.03,-13.7254,0,"ONLY");
4284   gMC->Gspos("I562",16,"I565",0.0,-0.03,-17.6555,0,"ONLY");
4285   gMC->Gspos("I562",17,"I565",0.0,0.03,-21.5655,0,"ONLY");
4286   gMC->Gspos("I562",18,"I565",0.0,-0.03,-25.4954,0,"ONLY");
4287   gMC->Gspos("I562",19,"I565",0.0,0.03,-29.4054,0,"ONLY");
4288   gMC->Gspos("I562",20,"I565",0.0,-0.03,-33.3354,0,"ONLY");
4289   gMC->Gspos("I562",21,"I565",0.0,0.03,-37.2454,0,"ONLY");
4290   gMC->Gspos("I562",22,"I565",0.0,-0.03,-41.1554,0,"ONLY");
4291   gMC->Gspos("I559",1,"I553",2.25,-1.615,0.0,0,"ONLY");
4292   gMC->Gspos("I560",1,"I553",2.25,-1.615,0.0,0,"ONLY");
4293   gMC->Gspos("I560",2,"I553",-2.25,-1.615,0.0,idrotm[573],"ONLY");
4294   gMC->Gspos("I558",1,"I553",-1.7167,-1.52,0.0,idrotm[583],"ONLY");
4295   gMC->Gspos("I557",1,"I553",-1.8533,-1.341,0.0,idrotm[581],"ONLY");
4296   gMC->Gspos("I558",2,"I553",1.8367,-1.3122,0.0,idrotm[575],"ONLY");
4297   gMC->Gspos("I557",2,"I553",1.75,-1.52,0.0,idrotm[583],"ONLY");
4298   gMC->Gspos("I558",3,"I553",-0.12,1.6613,0.0,idrotm[581],"ONLY");
4299   gMC->Gspos("I557",3,"I553",0.1034,1.6901,0.0,idrotm[575],"ONLY");
4300   gMC->Gspos("I556",3,"I553",-1.031,0.2033,-2.203,idrotm[580],"ONLY");
4301   gMC->Gspos("I556",1,"I553",1.0311,0.2033,-0.287,idrotm[576],"ONLY");
4302   gMC->Gspos("I554",1,"I553",0.0,-1.58,0.71,0,"ONLY");
4303   gMC->Gspos("I555",1,"I553",-0.0072,-1.58,-1.2311,idrotm[633],"ONLY");
4304   gMC->Gspos("I556",2,"I553",1.0311,0.2033,-2.203,idrotm[577],"ONLY");
4305   gMC->Gspos("I556",4,"I553",-1.031,0.2033,-0.287,idrotm[579],"ONLY");
4306   gMC->Gspos("I559",2,"I553",-2.25,-1.615,0.0,idrotm[573],"ONLY");
4307   gMC->Gspos("I561",1,"I553",2.1,-1.615,-0.24,0,"MANY");
4308   gMC->Gspos("I561",2,"I553",-2.1,-1.615,-0.24,idrotm[573],"MANY");
4309   gMC->Gspos("I519",37,"I523",0.0001,-1.79,-0.99,idrotm[586],"ONLY");
4310   gMC->Gspos("I519",36,"I523",-3.2986,-1.79,-1.2943,0,"ONLY");
4311   gMC->Gspos("I519",35,"I523",-3.2986,-1.71,-1.2943,0,"ONLY");
4312   gMC->Gspos("I519",34,"I523",-3.2286,-1.71,-1.2943,0,"ONLY");
4313   gMC->Gspos("I519",33,"I523",-3.2286,-1.79,-1.2943,0,"ONLY");
4314   gMC->Gspos("I519",32,"I523",-3.1586,-1.79,-1.2943,0,"ONLY");
4315   gMC->Gspos("I519",31,"I523",-3.1586,-1.71,-1.2943,0,"ONLY");
4316   gMC->Gspos("I519",30,"I523",-1.3436,-1.71,-1.2943,0,"ONLY");
4317   gMC->Gspos("I519",29,"I523",-1.3436,-1.79,-1.2943,0,"ONLY");
4318   gMC->Gspos("I519",28,"I523",-1.2736,-1.79,-1.2943,0,"ONLY");
4319   gMC->Gspos("I519",27,"I523",-1.2736,-1.71,-1.2943,0,"ONLY");
4320   gMC->Gspos("I519",26,"I523",-1.2036,-1.71,-1.2943,0,"ONLY");
4321   gMC->Gspos("I519",25,"I523",-1.2036,-1.79,-1.2943,0,"ONLY");
4322   gMC->Gspos("I519",24,"I523",-1.0458,-1.79,-1.2943,0,"ONLY");
4323   gMC->Gspos("I519",23,"I523",-1.0458,-1.71,-1.2943,0,"ONLY");
4324   gMC->Gspos("I519",22,"I523",-0.9758,-1.71,-1.2943,0,"ONLY");
4325   gMC->Gspos("I519",21,"I523",-0.9758,-1.79,-1.2943,0,"ONLY");
4326   gMC->Gspos("I519",20,"I523",-0.9058,-1.79,-1.2943,0,"ONLY");
4327   gMC->Gspos("I519",19,"I523",-0.9058,-1.71,-1.2943,0,"ONLY");
4328   gMC->Gspos("I519",18,"I523",0.9092,-1.71,-1.2943,0,"ONLY");
4329   gMC->Gspos("I519",17,"I523",0.9092,-1.79,-1.2943,0,"ONLY");
4330   gMC->Gspos("I519",16,"I523",0.9792,-1.79,-1.2943,0,"ONLY");
4331   gMC->Gspos("I519",15,"I523",0.9792,-1.71,-1.2943,0,"ONLY");
4332   gMC->Gspos("I519",14,"I523",1.0492,-1.71,-1.2943,0,"ONLY");
4333   gMC->Gspos("I519",13,"I523",1.0492,-1.79,-1.2943,0,"ONLY");
4334   gMC->Gspos("I519",12,"I523",1.207,-1.79,-1.2943,0,"ONLY");
4335   gMC->Gspos("I519",11,"I523",1.207,-1.71,-1.2943,0,"ONLY");
4336   gMC->Gspos("I519",10,"I523",1.277,-1.71,-1.2943,0,"ONLY");
4337   gMC->Gspos("I519",9,"I523",1.277,-1.79,-1.2943,0,"ONLY");
4338   gMC->Gspos("I519",8,"I523",1.347,-1.79,-1.2943,0,"ONLY");
4339   gMC->Gspos("I519",7,"I523",1.347,-1.71,-1.2943,0,"ONLY");
4340   gMC->Gspos("I519",6,"I523",3.162,-1.71,-1.2943,0,"ONLY");
4341   gMC->Gspos("I519",5,"I523",3.162,-1.79,-1.2943,0,"ONLY");
4342   gMC->Gspos("I519",4,"I523",3.232,-1.79,-1.2943,0,"ONLY");
4343   gMC->Gspos("I519",3,"I523",3.232,-1.71,-1.2943,0,"ONLY");
4344   gMC->Gspos("I521",12,"I523",-2.8209,-1.7925,-0.982,0,"ONLY");
4345   gMC->Gspos("I521",11,"I523",-1.6895,-1.7925,-0.982,0,"ONLY");
4346   gMC->Gspos("I521",10,"I523",-0.5631,-1.7925,-0.982,0,"ONLY");
4347   gMC->Gspos("I521",9,"I523",0.5633,-1.7925,-0.982,0,"ONLY");
4348   gMC->Gspos("I521",8,"I523",1.6861,-1.7925,-0.982,0,"ONLY");
4349   gMC->Gspos("I521",7,"I523",2.8161,-1.7925,-0.982,0,"ONLY");
4350   gMC->Gspos("I519",2,"I523",3.302,-1.79,-1.2943,0,"ONLY");
4351   gMC->Gspos("I520",3,"I523",0.0001,-1.845,-1.19,0,"ONLY");
4352   gMC->Gspos("I520",2,"I523",-2.2499,-1.845,-1.19,0,"ONLY");
4353   gMC->Gspos("I521",6,"I523",-2.8209,-1.7075,-0.982,0,"ONLY");
4354   gMC->Gspos("I521",5,"I523",-1.6895,-1.7075,-0.982,0,"ONLY");
4355   gMC->Gspos("I521",4,"I523",-0.5631,-1.7075,-0.982,0,"ONLY");
4356   gMC->Gspos("I521",3,"I523",0.5633,-1.7075,-0.982,0,"ONLY");
4357   gMC->Gspos("I521",2,"I523",1.6861,-1.7075,-0.982,0,"ONLY");
4358   gMC->Gspos("I518",1,"I523",0.0001,-1.75,-1.065,0,"ONLY");
4359   gMC->Gspos("I519",1,"I523",3.302,-1.71,-1.2943,0,"ONLY");
4360   gMC->Gspos("I520",1,"I523",2.2501,-1.845,-1.19,0,"ONLY");
4361   gMC->Gspos("I521",1,"I523",2.8161,-1.7075,-0.982,0,"ONLY");
4362   gMC->Gspos("I522",1,"I523",2.2501,-1.655,-1.3,idrotm[583],"MANY");
4363   gMC->Gspos("I522",2,"I523",-2.2499,-1.655,-1.3,idrotm[583],"MANY");
4364   gMC->Gspos("I542",2,"I523",-2.2499,-1.615,0.0,idrotm[573],"ONLY");
4365   gMC->Gspos("I541",2,"I523",-2.2499,-1.615,0.0,idrotm[573],"ONLY");
4366   gMC->Gspos("I541",1,"I523",2.2501,-1.615,0.0,0,"ONLY");
4367   gMC->Gspos("I542",1,"I523",2.2501,-1.615,0.0,0,"ONLY");
4368   gMC->Gspos("I543",1,"I523",2.1001,-1.615,0.955,0,"MANY");
4369   gMC->Gspos("I543",2,"I523",-2.0999,-1.615,0.955,idrotm[573],"MANY");
4370   gMC->Gspos("I537",2,"I523",1.7501,-1.52,0.0,idrotm[583],"ONLY");
4371   gMC->Gspos("I538",2,"I523",1.8368,-1.3122,0.0,idrotm[575],"ONLY");
4372   gMC->Gspos("I537",3,"I523",0.1035,1.6901,0.0,idrotm[575],"ONLY");
4373   gMC->Gspos("I538",3,"I523",-0.1199,1.6612,0.0,idrotm[581],"ONLY");
4374   gMC->Gspos("I538",1,"I523",-1.7166,-1.52,0.0,idrotm[583],"ONLY");
4375   gMC->Gspos("I537",1,"I523",-1.8532,-1.341,0.0,idrotm[581],"ONLY");
4376   gMC->Gspos("I536",3,"I523",-1.031,0.2033,-1.008,idrotm[580],"ONLY");
4377   gMC->Gspos("I536",4,"I523",-1.031,0.2033,0.908,idrotm[579],"ONLY");
4378   gMC->Gspos("I535",1,"I523",-0.0072,-1.58,-0.0361,idrotm[633],"ONLY");
4379   gMC->Gspos("I536",2,"I523",1.0312,0.2033,-1.008,idrotm[577],"ONLY");
4380   gMC->Gspos("I536",1,"I523",1.0312,0.2033,0.908,idrotm[576],"ONLY");
4381   gMC->Gspos("I534",1,"I523",0.0001,-1.58,1.905,0,"ONLY");
4382   gMC->Gspos("I540",1,"I523",0.0001,-1.785,1.905,idrotm[571],"ONLY");
4383   gMC->Gspos("I539",1,"I523",1.8001,-1.75,-0.195,idrotm[571],"ONLY");
4384   gMC->Gspos("I539",2,"I523",-1.7999,-1.75,-0.195,idrotm[572],"ONLY");
4385   gMC->Gspos("ITS6",1,"I566",0.0,0.0,0.0,0,"ONLY");
4386   gMC->Gspos("I550",1,"I544",2.25,-1.615,0.0,0,"ONLY");
4387   gMC->Gspos("I551",1,"I544",2.25,-1.615,0.0,0,"ONLY");
4388   gMC->Gspos("I551",2,"I544",-2.25,-1.615,0.0,idrotm[573],"ONLY");
4389   gMC->Gspos("I550",2,"I544",-2.25,-1.615,0.0,idrotm[573],"ONLY");
4390   gMC->Gspos("I549",1,"I544",1.7167,-1.52,0.0,idrotm[583],"ONLY");
4391   gMC->Gspos("I548",1,"I544",1.8533,-1.341,0.0,idrotm[575],"ONLY");
4392   gMC->Gspos("I547",1,"I544",1.0311,0.2033,-0.287,idrotm[576],"ONLY");
4393   gMC->Gspos("I545",1,"I544",0.0,-1.58,0.71,0,"ONLY");
4394   gMC->Gspos("I547",2,"I544",1.0311,0.2033,-2.203,idrotm[577],"ONLY");
4395   gMC->Gspos("I546",1,"I544",-0.0073,-1.58,-1.2311,idrotm[633],"ONLY");
4396   gMC->Gspos("I547",4,"I544",-1.0311,0.2033,-0.287,idrotm[579],"ONLY");
4397   gMC->Gspos("I547",3,"I544",-1.0311,0.2033,-2.203,idrotm[580],"ONLY");
4398   gMC->Gspos("I548",2,"I544",-0.1033,1.6901,0.0,idrotm[581],"O]NLY");
4399   gMC->Gspos("I549",2,"I544",0.12,1.6613,0.0,idrotm[575],"ONLY");
4400   gMC->Gspos("I549",3,"I544",-1.8367,-1.3122,0.0,idrotm[581],"ONLY");
4401   gMC->Gspos("I548",3,"I544",-1.75,-1.52,0.0,idrotm[583],"ONLY");
4402   gMC->Gspos("I552",1,"I544",2.1,-1.615,-0.24,0,"MANY");
4403   gMC->Gspos("I552",2,"I544",-2.1,-1.615,-0.24,idrotm[573],"MANY");
4404   gMC->Gspos("I515",12,"I516",-1.6896,-1.7075,-0.9822,0,"ONLY");
4405   gMC->Gspos("I515",11,"I516",-1.6896,-1.7925,-0.9822,0,"ONLY");
4406   gMC->Gspos("I513",37,"I516",0.0,-1.79,-1.035,idrotm[586],"ONLY");
4407   gMC->Gspos("I513",1,"I516",-3.2987,-1.71,-1.2943,0,"ONLY");
4408   gMC->Gspos("I515",1,"I516",-2.816,-1.7075,-0.9822,0,"ONLY");
4409   gMC->Gspos("I514",1,"I516",-2.25,-1.845,-1.19,0,"ONLY");
4410   gMC->Gspos("I514",2,"I516",0.0,-1.845,-1.19,0,"ONLY");
4411   gMC->Gspos("I514",3,"I516",2.25,-1.845,-1.19,0,"ONLY");
4412   gMC->Gspos("I515",2,"I516",-2.816,-1.7925,-0.9822,0,"ONLY");
4413   gMC->Gspos("I513",2,"I516",-3.2987,-1.79,-1.2943,0,"ONLY");
4414   gMC->Gspos("I515",3,"I516",-0.5632,-1.7075,-0.9822,0,"ONLY");
4415   gMC->Gspos("I515",4,"I516",-0.5632,-1.7925,-0.9822,0,"ONLY");
4416   gMC->Gspos("I515",5,"I516",0.5632,-1.7925,-0.9822,0,"ONLY");
4417   gMC->Gspos("I515",6,"I516",0.5632,-1.7075,-0.9822,0,"ONLY");
4418   gMC->Gspos("I515",7,"I516",1.6896,-1.7075,-0.9822,0,"ONLY");
4419   gMC->Gspos("I515",8,"I516",1.6896,-1.7925,-0.9822,0,"ONLY");
4420   gMC->Gspos("I515",9,"I516",2.816,-1.7925,-0.9822,0,"ONLY");
4421   gMC->Gspos("I515",10,"I516",2.816,-1.7075,-0.9822,0,"ONLY");
4422   gMC->Gspos("I513",3,"I516",-3.2287,-1.79,-1.2943,0,"ONLY");
4423   gMC->Gspos("I513",4,"I516",-3.2287,-1.71,-1.2943,0,"ONLY");
4424   gMC->Gspos("I513",5,"I516",-3.1587,-1.71,-1.2943,0,"ONLY");
4425   gMC->Gspos("I513",6,"I516",-3.1587,-1.79,-1.2943,0,"ONLY");
4426   gMC->Gspos("I513",7,"I516",-1.3437,-1.79,-1.2943,0,"ONLY");
4427   gMC->Gspos("I513",8,"I516",-1.3437,-1.71,-1.2943,0,"ONLY");
4428   gMC->Gspos("I513",9,"I516",-1.2737,-1.71,-1.2943,0,"ONLY");
4429   gMC->Gspos("I513",10,"I516",-1.2737,-1.79,-1.2943,0,"ONLY");
4430   gMC->Gspos("I513",11,"I516",-1.2037,-1.79,-1.2943,0,"ONLY");
4431   gMC->Gspos("I513",12,"I516",-1.2037,-1.71,-1.2943,0,"ONLY");
4432   gMC->Gspos("I513",13,"I516",-1.046,-1.71,-1.2943,0,"ONLY");
4433   gMC->Gspos("I513",14,"I516",-1.046,-1.79,-1.2943,0,"ONLY");
4434   gMC->Gspos("I513",15,"I516",-0.976,-1.79,-1.2943,0,"ONLY");
4435   gMC->Gspos("I513",16,"I516",-0.976,-1.71,-1.2943,0,"ONLY");
4436   gMC->Gspos("I513",17,"I516",-0.906,-1.71,-1.2943,0,"ONLY");
4437   gMC->Gspos("I513",18,"I516",-0.906,-1.79,-1.2943,0,"ONLY");
4438   gMC->Gspos("I513",19,"I516",0.9091,-1.79,-1.2943,0,"ONLY");
4439   gMC->Gspos("I513",20,"I516",0.9091,-1.71,-1.2943,0,"ONLY");
4440   gMC->Gspos("I513",21,"I516",0.9791,-1.71,-1.2943,0,"ONLY");
4441   gMC->Gspos("I513",22,"I516",0.9791,-1.79,-1.2943,0,"ONLY");
4442   gMC->Gspos("I513",23,"I516",1.0491,-1.79,-1.2943,0,"ONLY");
4443   gMC->Gspos("I513",24,"I516",1.0491,-1.71,-1.2943,0,"ONLY");
4444   gMC->Gspos("I513",25,"I516",1.2068,-1.71,-1.2943,0,"ONLY");
4445   gMC->Gspos("I513",26,"I516",1.2068,-1.79,-1.2943,0,"ONLY");
4446   gMC->Gspos("I513",27,"I516",1.2768,-1.79,-1.2943,0,"ONLY");
4447   gMC->Gspos("I513",28,"I516",1.2768,-1.71,-1.2943,0,"ONLY");
4448   gMC->Gspos("I513",29,"I516",1.3469,-1.71,-1.2943,0,"ONLY");
4449   gMC->Gspos("I513",30,"I516",1.3469,-1.79,-1.2943,0,"ONLY");
4450   gMC->Gspos("I513",31,"I516",3.1619,-1.79,-1.2943,0,"ONLY");
4451   gMC->Gspos("I513",32,"I516",3.1619,-1.71,-1.2943,0,"ONLY");
4452   gMC->Gspos("I513",33,"I516",3.2319,-1.71,-1.2943,0,"ONLY");
4453   gMC->Gspos("I513",34,"I516",3.2319,-1.79,-1.2943,0,"ONLY");
4454   gMC->Gspos("I513",35,"I516",3.3019,-1.79,-1.2943,0,"ONLY");
4455   gMC->Gspos("I513",36,"I516",3.3019,-1.71,-1.2943,0,"ONLY");
4456   gMC->Gspos("I512",1,"I516",0.0,-1.75,-1.065,0,"ONLY");
4457   gMC->Gspos("I528",1,"I516",1.7167,-1.52,0.0,idrotm[583],"ONLY");
4458   gMC->Gspos("I527",1,"I516",1.8534,-1.341,0.0,idrotm[575],"ONLY");
4459   gMC->Gspos("I528",2,"I516",0.12,1.6613,0.0,idrotm[575],"ONLY");
4460   gMC->Gspos("I527",2,"I516",-0.1033,1.6901,0.0,idrotm[581],"ONLY");
4461   gMC->Gspos("I527",3,"I516",-1.75,-1.52,0.0,idrotm[583],"ONLY");
4462   gMC->Gspos("I528",3,"I516",-1.8367,-1.3122,0.0,idrotm[581],"ONLY");
4463   gMC->Gspos("I526",2,"I516",1.0311,0.2033,-1.008,idrotm[577],"ONLY");
4464   gMC->Gspos("I525",1,"I516",-0.0073,-1.58,-0.0361,idrotm[633],"ONLY");
4465   gMC->Gspos("I524",1,"I516",0.0,-1.58,1.905,0,"ONLY");
4466   gMC->Gspos("I526",1,"I516",1.0311,0.2033,0.908,idrotm[576],"ONLY");
4467   gMC->Gspos("I526",3,"I516",-1.0311,0.2033,0.908,idrotm[579],"ONLY");
4468   gMC->Gspos("I526",4,"I516",-1.0311,0.2033,-1.008,idrotm[580],"ONLY");
4469   gMC->Gspos("I529",1,"I516",1.8,-1.75,-0.195,idrotm[571],"ONLY");
4470   gMC->Gspos("I530",1,"I516",0.0,-1.785,1.905,idrotm[571],"ONLY");
4471   gMC->Gspos("I529",2,"I516",-1.8,-1.75,-0.195,idrotm[572],"ONLY");
4472   gMC->Gspos("I517",1,"I516",2.25,-1.655,-1.3,idrotm[583],"MANY");
4473   gMC->Gspos("I517",2,"I516",-2.25,-1.655,-1.3,idrotm[584],"MANY");
4474   gMC->Gspos("I531",2,"I516",-2.25,-1.615,0.0,idrotm[573],"ONLY");
4475   gMC->Gspos("I531",1,"I516",2.25,-1.615,0.0,0,"ONLY");
4476   gMC->Gspos("I532",1,"I516",2.25,-1.615,0.0,0,"ONLY");
4477   gMC->Gspos("I532",2,"I516",-2.25,-1.615,0.0,idrotm[573],"ONLY");
4478   gMC->Gspos("I533",1,"I516",2.1,-1.615,0.955,0,"MANY");
4479   gMC->Gspos("I533",2,"I516",-2.1,-1.615,0.955,idrotm[573],"MANY");
4480   gMC->Gspos("ITS5",1,"I562",0.0,0.0,0.0,0,"ONLY");
4481
4482   
4483   // --- Place volumes of shield between SPD and SDD 
4484
4485
4486   gMC->Gspos("IC01",1,"ITSD",0.0,0.0,0.0,0,"ONLY");
4487   gMC->Gspos("IC02",1,"ITSD",0.0,0.0,25.+8.75,0,"ONLY");  
4488   gMC->Gspos("IC02",2,"ITSD",0.0,0.0,-25.-8.75,idrotm[200],"ONLY");  
4489   //gMC->Gspos("IC03",1,"ITSD",0.0,0.0,25.+17.5+7.875,0,"ONLY");  
4490   //gMC->Gspos("IC03",2,"ITSD",0.0,0.0,-25.-17.5-7.875,idrotm[200],"ONLY");   
4491   
4492   
4493   // --- Place volumes of cylinders between SPD and SDD and SDD and SSD 
4494   
4495   gMC->Gspos("ICY1",1,"IS02",0.0,0.0,0.,0,"ONLY");    
4496   gMC->Gspos("ICY2",1,"IS01",0.0,0.0,0.,0,"ONLY");    
4497   
4498
4499   // --- Place volumes of SDD cone ---------------------------------- 
4500   
4501   
4502   gMC->Gspos("I093",1,"IS02",0.0,0.0,0.0,0,"MANY");
4503   gMC->Gspos("I093",2,"IS02",0.0,0.0,0.0,idrotm[856],"MANY");
4504   gMC->Gspos("I099",4,"IS02",0.0,0.0,0.0,idrotm[857],"MANY");
4505   gMC->Gspos("I099",3,"IS02",0.0,0.0,0.0,idrotm[858],"MANY");
4506   gMC->Gspos("I099",5,"IS02",0.0,0.0,0.0,idrotm[859],"MANY");
4507   gMC->Gspos("I099",6,"IS02",0.0,0.0,0.0,idrotm[860],"MANY");
4508   gMC->Gspos("I099",7,"IS02",0.0,0.0,0.0,idrotm[861],"MANY");
4509   gMC->Gspos("I099",2,"IS02",0.0,0.0,0.0,idrotm[862],"MANY");
4510   gMC->Gspos("I200",4,"IS02",0.0,0.0,0.0,idrotm[863],"MANY");
4511   gMC->Gspos("I200",3,"IS02",0.0,0.0,0.0,idrotm[864],"MANY");
4512   gMC->Gspos("I200",2,"IS02",0.0,0.0,0.0,idrotm[865],"MANY");
4513   gMC->Gspos("I200",13,"IS02",0.0,0.0,0.0,idrotm[867],"MANY");
4514   gMC->Gspos("I200",12,"IS02",0.0,0.0,0.0,idrotm[869],"MANY");
4515   gMC->Gspos("I200",11,"IS02",0.0,0.0,0.0,idrotm[870],"MANY");
4516   gMC->Gspos("I200",10,"IS02",0.0,0.0,0.0,idrotm[871],"MANY");
4517   gMC->Gspos("I200",9,"IS02",0.0,0.0,0.0,idrotm[872],"MANY");
4518   gMC->Gspos("I200",8,"IS02",0.0,0.0,0.0,idrotm[873],"MANY");
4519   gMC->Gspos("I200",7,"IS02",0.0,0.0,0.0,idrotm[874],"MANY");
4520   gMC->Gspos("I200",6,"IS02",0.0,0.0,0.0,idrotm[875],"MANY");
4521   gMC->Gspos("I200",5,"IS02",0.0,0.0,0.0,idrotm[876],"MANY");
4522   gMC->Gspos("I090",2,"IS02",0.0,0.0,-39.4,0,"ONLY");    
4523   gMC->Gspos("I090",1,"IS02",0.0,0.0,39.4,idrotm[856],"ONLY");  
4524   gMC->Gspos("I099",9,"IS02",0.0,0.0,0.0,idrotm[877],"ONLY");
4525   gMC->Gspos("I099",8,"IS02",0.0,0.0,0.0,idrotm[879],"ONLY");
4526   gMC->Gspos("I099",1,"IS02",0.0,0.0,0.0,idrotm[880],"ONLY");
4527   gMC->Gspos("I099",12,"IS02",0.0,0.0,0.0,idrotm[881],"ONLY");
4528   gMC->Gspos("I099",11,"IS02",0.0,0.0,0.0,idrotm[851],"ONLY");
4529   gMC->Gspos("I099",10,"IS02",0.0,0.0,0.0,idrotm[882],"ONLY");
4530   gMC->Gspos("I200",23,"IS02",0.0,0.0,0.0,idrotm[898],"ONLY");
4531   gMC->Gspos("I200",24,"IS02",0.0,0.0,0.0,idrotm[883],"ONLY");
4532   gMC->Gspos("I200",1,"IS02",0.0,0.0,0.0,idrotm[884],"ONLY");
4533   gMC->Gspos("I200",14,"IS02",0.0,0.0,0.0,idrotm[885],"ONLY");
4534   gMC->Gspos("I200",15,"IS02",0.0,0.0,0.0,idrotm[887],"ONLY");
4535   gMC->Gspos("I200",16,"IS02",0.0,0.0,0.0,idrotm[888],"ONLY");
4536   gMC->Gspos("I200",17,"IS02",0.0,0.0,0.0,idrotm[889],"ONLY");
4537   gMC->Gspos("I200",18,"IS02",0.0,0.0,0.0,idrotm[890],"ONLY");
4538   gMC->Gspos("I200",22,"IS02",0.0,0.0,0.0,idrotm[891],"ONLY");
4539   gMC->Gspos("I200",21,"IS02",0.0,0.0,0.0,idrotm[892],"ONLY");
4540   gMC->Gspos("I200",20,"IS02",0.0,0.0,0.0,idrotm[868],"ONLY");
4541   gMC->Gspos("I200",19,"IS02",0.0,0.0,0.0,idrotm[893],"ONLY");
4542   gMC->Gspos("I098",1,"IS02",0.0,0.0,33.6,0,"MANY");    
4543   gMC->Gspos("I097",1,"IS02",0.0,0.0,26.6,0,"MANY");    
4544   gMC->Gspos("I097",2,"IS02",0.0,0.0,-26.6,idrotm[856],"MANY");  
4545   gMC->Gspos("I098",2,"IS02",0.0,0.0,-33.6,idrotm[856],"MANY");  
4546   gMC->Gspos("I202",1,"IS02",12.1,0.0,33.84,0,"ONLY");
4547   gMC->Gspos("I202",6,"IS02",-6.05,-10.4789,33.84,idrotm[930],"ONLY");
4548   gMC->Gspos("I202",5,"IS02",-6.05,10.4789,33.84,idrotm[929],"ONLY");
4549   gMC->Gspos("I202",2,"IS02",12.1,0.0,-33.84,idrotm[856],"ONLY");
4550   gMC->Gspos("I202",3,"IS02",-6.05,10.4789,-33.84,idrotm[932],"ONLY");
4551   gMC->Gspos("I202",4,"IS02",-6.05,-10.4789,-33.84,idrotm[934],"ONLY");
4552   gMC->Gspos("I203",12,"IS02",21.8453,0.0,-42.24,idrotm[856],"ONLY");
4553   gMC->Gspos("I203",11,"IS02",10.9227,-18.9186,-42.24,idrotm[935],"ONLY");
4554   gMC->Gspos("I203",10,"IS02",10.9227,-18.9186,42.24,idrotm[846],"ONLY");
4555   gMC->Gspos("I203",9,"IS02",-10.9227,-18.9186,-42.24,idrotm[934],"ONLY");
4556   gMC->Gspos("I203",8,"IS02",-10.9227,-18.9186,42.24,idrotm[930],"ONLY");
4557   gMC->Gspos("I203",7,"IS02",-21.8453,0.0,-42.24,idrotm[933],"ONLY");
4558   gMC->Gspos("I203",6,"IS02",-21.8453,0.0,42.24,idrotm[878],"ONLY");
4559   gMC->Gspos("I203",5,"IS02",-10.9227,18.9186,-42.24,idrotm[932],"ONLY");
4560   gMC->Gspos("I203",4,"IS02",-10.9227,18.9186,42.24,idrotm[929],"ONLY");
4561   gMC->Gspos("I203",3,"IS02",10.9227,18.9186,-42.24,idrotm[931],"ONLY");
4562   gMC->Gspos("I203",2,"IS02",10.9227,18.9186,42.24,idrotm[853],"ONLY");
4563   gMC->Gspos("I203",1,"IS02",21.8453,0.0,42.24,0,"ONLY");
4564   gMC->Gspos("I095",1,"I098",0.0,0.0,0.0,0,"ONLY");
4565   gMC->Gspos("I096",23,"I098",22.77,0.0,0.0,idrotm[894],"MANY");
4566   gMC->Gspos("I096",14,"I098",22.3754,6.57,0.0,idrotm[895],"MANY");
4567   gMC->Gspos("I096",3,"I098",19.1553,12.3104,0.0,idrotm[896],"MANY");
4568   gMC->Gspos("I096",16,"I098",15.2714,17.6241,0.0,idrotm[897],"MANY");
4569   gMC->Gspos("I096",5,"I098",9.459,20.7123,0.0,idrotm[899],"MANY");
4570   gMC->Gspos("I096",18,"I098",3.3188,23.0826,0.0,idrotm[900],"MANY");
4571   gMC->Gspos("I096",7,"I098",-3.2405,22.5382,0.0,idrotm[901],"MANY");
4572   gMC->Gspos("I096",20,"I098",-9.6875,21.2126,0.0,idrotm[902],"MANY");
4573   gMC->Gspos("I096",9,"I098",-14.9112,17.2084,0.0,idrotm[903],"MANY");
4574   gMC->Gspos("I096",22,"I098",-19.618,12.6077,0.0,idrotm[904],"MANY");
4575   gMC->Gspos("I096",11,"I098",-21.8477,6.4151,0.0,idrotm[905],"MANY");
4576   gMC->Gspos("I096",24,"I098",-23.32,0.0,0.0,idrotm[906],"MANY");
4577   gMC->Gspos("I096",13,"I098",-21.8477,-6.4151,0.0,idrotm[907],"MANY");
4578   gMC->Gspos("I096",4,"I098",-19.618,-12.6077,0.0,idrotm[908],"MANY");
4579   gMC->Gspos("I096",15,"I098",-14.9112,-17.2084,0.0,idrotm[909],"MANY");
4580   gMC->Gspos("I096",6,"I098",-9.6875,-21.2126,0.0,idrotm[910],"MANY");
4581   gMC->Gspos("I096",17,"I098",-3.2405,-22.5382,0.0,idrotm[911],"MANY");
4582   gMC->Gspos("I096",8,"I098",3.3188,-23.0826,0.0,idrotm[912],"MANY");
4583   gMC->Gspos("I096",19,"I098",9.459,-20.7123,0.0,idrotm[913],"MANY");
4584   gMC->Gspos("I096",10,"I098",15.2714,-17.6241,0.0,idrotm[914],"MANY");
4585   gMC->Gspos("I096",21,"I098",19.1553,-12.3104,0.0,idrotm[915],"MANY");
4586   gMC->Gspos("I096",12,"I098",22.3754,-6.57,0.0,idrotm[916],"MANY");
4587   gMC->Gspos("I094",1,"I097",0.0,0.0,0.0,0,"ONLY");
4588   gMC->Gspos("I096",1,"I097",13.87,0.0,0.0,idrotm[894],"MANY");
4589   gMC->Gspos("I096",32,"I097",13.037,6.2783,0.0,idrotm[917],"MANY");
4590   gMC->Gspos("I096",25,"I097",8.6478,10.844,0.0,idrotm[918],"MANY");
4591   gMC->Gspos("I096",34,"I097",3.2199,14.1072,0.0,idrotm[919],"MANY");
4592   gMC->Gspos("I096",27,"I097",-3.0864,13.5223,0.0,idrotm[920],"MANY");
4593   gMC->Gspos("I096",36,"I097",-9.0219,11.3131,0.0,idrotm[921],"MANY");
4594   gMC->Gspos("I096",29,"I097",-12.4964,6.018,0.0,idrotm[922],"MANY");
4595   gMC->Gspos("I096",2,"I097",-14.47,0.0,0.0,idrotm[906],"MANY");
4596   gMC->Gspos("I096",31,"I097",-12.4964,-6.018,0.0,idrotm[923],"MANY");
4597   gMC->Gspos("I096",26,"I097",-9.0219,-11.3131,0.0,idrotm[924],"MANY");
4598   gMC->Gspos("I096",33,"I097",-3.0864,-13.5223,0.0,idrotm[925],"MANY");
4599   gMC->Gspos("I096",28,"I097",3.2199,-14.1072,0.0,idrotm[926],"MANY");
4600   gMC->Gspos("I096",35,"I097",8.6478,-10.844,0.0,idrotm[927],"MANY");
4601   gMC->Gspos("I096",30,"I097",13.037,-6.2783,0.0,idrotm[928],"MANY");
4602   
4603   
4604   // --- Place volumes of SSD cone ----------------------------------    
4605
4606     
4607   gMC->Gspos("I212",2,"IS01",0.0,0.0,0.0,idrotm[701],"MANY");
4608   gMC->Gspos("I212",1,"IS01",0.0,0.0,0.0,0,"MANY");
4609   gMC->Gspos("I211",1,"IS01",0.0,0.0,-56.5,0,"ONLY");
4610   gMC->Gspos("I217",1,"IS01",0.0,0.0,-44.4,0,"ONLY");             // this will change after PPR to be symmetric
4611   gMC->Gspos("I219",1,"IS01",0.0,0.0,-50.25,0,"ONLY");            // this will change after PPR to be symmetric
4612   gMC->Gspos("I211",2,"IS01",0.0,0.0,56.5,idrotm[701],"ONLY");   
4613   gMC->Gspos("I219",2,"IS01",0.0,0.0,51.65,idrotm[701],"ONLY");   // this will change after PPR to be symmetric
4614   gMC->Gspos("I217",2,"IS01",0.0,0.0,45.8,idrotm[701],"ONLY");    // this will change after PPR to be symmetric
4615   gMC->Gspos("I214",2,"IS01",0.0,0.0,67.25,idrotm[701],"ONLY");   
4616   gMC->Gspos("I213",2,"IS01",0.0,0.0,62.25,idrotm[701],"ONLY");  
4617   gMC->Gspos("I213",1,"IS01",0.0,0.0,-62.25,0,"ONLY");             
4618   gMC->Gspos("I214",1,"IS01",0.0,0.0,-67.25,0,"ONLY");           
4619   gMC->Gspos("I215",19,"IS01",0.0,0.0,0.0,idrotm[702],"MANY");
4620   gMC->Gspos("I215",21,"IS01",0.0,0.0,0.0,idrotm[703],"MANY");
4621   gMC->Gspos("I215",23,"IS01",0.0,0.0,0.0,idrotm[704],"MANY");
4622   gMC->Gspos("I215",24,"IS01",0.0,0.0,0.0,idrotm[705],"MANY");
4623   gMC->Gspos("I215",3,"IS01",0.0,0.0,0.0,idrotm[706],"MANY");
4624   gMC->Gspos("I215",5,"IS01",0.0,0.0,0.0,idrotm[707],"MANY");
4625   gMC->Gspos("I215",7,"IS01",0.0,0.0,0.0,idrotm[708],"MANY");
4626   gMC->Gspos("I215",9,"IS01",0.0,0.0,0.0,idrotm[709],"MANY");
4627   gMC->Gspos("I215",11,"IS01",0.0,0.0,0.0,idrotm[710],"MANY");
4628   gMC->Gspos("I215",13,"IS01",0.0,0.0,0.0,idrotm[711],"MANY");
4629   gMC->Gspos("I215",15,"IS01",0.0,0.0,0.0,idrotm[712],"MANY");
4630   gMC->Gspos("I215",17,"IS01",0.0,0.0,0.0,idrotm[713],"MANY");
4631   gMC->Gspos("I216",9,"IS01",0.0,0.0,45.5,idrotm[714],"ONLY");
4632   gMC->Gspos("I216",11,"IS01",0.0,0.0,45.5,idrotm[715],"ONLY");
4633   gMC->Gspos("I216",12,"IS01",0.0,0.0,45.5,idrotm[716],"ONLY");
4634   gMC->Gspos("I216",3,"IS01",0.0,0.0,45.5,idrotm[717],"ONLY");
4635   gMC->Gspos("I216",5,"IS01",0.0,0.0,45.5,idrotm[718],"ONLY");
4636   gMC->Gspos("I216",7,"IS01",0.0,0.0,45.5,idrotm[719],"ONLY");
4637   gMC->Gspos("I216",10,"IS01",0.0,0.0,-44,idrotm[720],"ONLY");
4638   gMC->Gspos("I216",1,"IS01",0.0,0.0,-44,idrotm[721],"ONLY");
4639   gMC->Gspos("I216",2,"IS01",0.0,0.0,-44,idrotm[722],"ONLY");
4640   gMC->Gspos("I216",4,"IS01",0.0,0.0,-44,idrotm[723],"ONLY");
4641   gMC->Gspos("I216",6,"IS01",0.0,0.0,-44,idrotm[724],"ONLY");
4642   gMC->Gspos("I216",8,"IS01",0.0,0.0,-44,idrotm[725],"ONLY");
4643   gMC->Gspos("I215",1,"IS01",0.0,0.0,0.0,idrotm[726],"MANY");
4644   gMC->Gspos("I215",2,"IS01",0.0,0.0,0.0,idrotm[727],"MANY");
4645   gMC->Gspos("I215",4,"IS01",0.0,0.0,0.0,idrotm[728],"MANY");
4646   gMC->Gspos("I215",6,"IS01",0.0,0.0,0.0,idrotm[729],"MANY");
4647   gMC->Gspos("I215",8,"IS01",0.0,0.0,0.0,idrotm[733],"MANY");
4648   gMC->Gspos("I215",10,"IS01",0.0,0.0,0.0,idrotm[730],"MANY");
4649   gMC->Gspos("I215",12,"IS01",0.0,0.0,0.0,idrotm[731],"MANY");
4650   gMC->Gspos("I215",14,"IS01",0.0,0.0,0.0,idrotm[768],"MANY");
4651   gMC->Gspos("I215",16,"IS01",0.0,0.0,0.0,idrotm[732],"MANY");
4652   gMC->Gspos("I215",18,"IS01",0.0,0.0,0.0,idrotm[734],"MANY");
4653   gMC->Gspos("I215",20,"IS01",0.0,0.0,0.0,idrotm[798],"MANY");
4654   gMC->Gspos("I215",22,"IS01",0.0,0.0,0.0,idrotm[735],"MANY");
4655            
4656                     
4657   // --- Place subdetectors' mother volumes and supports' mother volumes
4658   //     into ITS mother volume ITSD
4659     
4660   gMC->Gspos("IT12",1,"ITSD",0.0,0.0,0.0,0,"MANY");  // SPD mother volume
4661   gMC->Gspos("IT34",1,"ITSD",0.0,0.0,0.0,0,"MANY");  // SDD mother volume
4662   gMC->Gspos("IT56",1,"ITSD",0.0,0.0,0.0,0,"MANY");  // SSD mother volume
4663   gMC->Gspos("IS02",1,"ITSD",0.0,0.0,0.0,0,"MANY");  // SDD cones/supports
4664   gMC->Gspos("IS01",1,"ITSD",0.0,0.0,0.0,0,"MANY");  // SSD cones/supports
4665         
4666
4667   // ****************************  SERVICES  *********************************
4668   
4669
4670   // --- DEFINE CABLES AT THE END OF THE ITS CONES - COPPER PART
4671   //     UPPER PART
4672
4673   dgh[0] = 46.;    
4674   dgh[1] = 46.+1.0;  
4675   dgh[2] = 9.5;
4676   dgh[3] = 12.;
4677   dgh[4] = 168.;
4678   
4679   gMC->Gsvolu("I1CU", "TUBS", idtmed[213], dgh, 5);  
4680   gMC->Gspos("I1CU", 1, "ITSV", 0., 0., 83.5, 0, "ONLY");
4681   gMC->Gspos("I1CU", 2, "ITSV", 0., 0., -83.5, idrotm[200], "ONLY");
4682   
4683   // --- DEFINE CABLES AT THE END OF THE ITS CONES - COPPER PART
4684   //     LOWER PART
4685
4686   dgh[0] = 46.;    
4687   dgh[1] = 46.+1.0;  
4688   dgh[2] = 9.5;
4689   dgh[3] = 192.;
4690   dgh[4] = 348.;
4691   
4692   gMC->Gsvolu("I2CU", "TUBS", idtmed[213], dgh, 5);  
4693   gMC->Gspos("I2CU", 1, "ITSV", 0., 0., 83.5, 0, "ONLY");
4694   gMC->Gspos("I2CU", 2, "ITSV", 0., 0., -83.5, idrotm[200], "ONLY");
4695
4696
4697   // --- DEFINE CABLES AT THE END OF THE ITS CONES - CARBON PART
4698   //     UPPER PART
4699   
4700   dgh[0] = 46.+1.0;  
4701   dgh[1] = 46.+1.0+1.5;   
4702   dgh[2] = 9.5;
4703   dgh[3] = 12.;
4704   dgh[4] = 168.;
4705   
4706   gMC->Gsvolu("I1CC", "TUBS", idtmed[225], dgh, 5);  
4707   gMC->Gspos("I1CC", 1, "ITSV", 0., 0., 83.5, 0, "ONLY");
4708   gMC->Gspos("I1CC", 2, "ITSV", 0., 0., -83.5, idrotm[200], "ONLY");  
4709   
4710   // --- DEFINE CABLES AT THE END OF THE ITS CONES - CARBON PART
4711   //     LOWER PART
4712   
4713   dgh[0] = 46.+1.0;  
4714   dgh[1] = 46.+1.0+1.5;   
4715   dgh[2] = 9.5;
4716   dgh[3] = 192.;
4717   dgh[4] = 348.;
4718   
4719   gMC->Gsvolu("I2CC", "TUBS", idtmed[225], dgh, 5);  
4720   gMC->Gspos("I2CC", 1, "ITSV", 0., 0., 83.5, 0, "ONLY");
4721   gMC->Gspos("I2CC", 2, "ITSV", 0., 0., -83.5, idrotm[200], "ONLY");  
4722
4723
4724   // --- DEFINE PATCH PANELS AT THE END OF THE ITS CONES
4725   //     UPPER PART
4726   
4727   dgh[0] = 46.;  
4728   dgh[1] = 56.;
4729   dgh[2] = 2.25;
4730   dgh[3] = 12.;
4731   dgh[4] = 168.;
4732   
4733   gMC->Gsvolu("IPA1", "TUBS", idtmed[210], dgh, 5);  
4734   gMC->Gspos("IPA1", 1, "ITSV", 0., 0., 95.25, 0, "ONLY");  
4735   gMC->Gspos("IPA1", 2, "ITSV", 0., 0., -95.25, idrotm[200], "ONLY"); 
4736   
4737   // --- DEFINE PATCH PANELS AT THE END OF THE ITS CONES
4738   //     LOWER PART
4739   
4740   dgh[0] = 46.;  
4741   dgh[1] = 56.;
4742   dgh[2] = 2.25;
4743   dgh[3] = 192.;
4744   dgh[4] = 348.;
4745   
4746   gMC->Gsvolu("IPA2", "TUBS", idtmed[210], dgh, 5);  
4747   gMC->Gspos("IPA2", 1, "ITSV", 0., 0., 95.25, 0, "ONLY");  
4748   gMC->Gspos("IPA2", 2, "ITSV", 0., 0., -95.25, idrotm[200], "ONLY"); 
4749
4750
4751   // --- DEFINE CABLES/COOLING BELOW THE TPC ON THE ABSORBER SIDE - COPPER PART
4752   //     UPPER PART
4753   
4754   dgh[0] = (ztpc-97.5)/2.;
4755   dgh[1] = 46.2;     
4756   dgh[2] = 46.2+1.0;  
4757   dgh[3] = 62.3;     
4758   dgh[4] = 62.3+1.0;   
4759   dgh[5] = 12.;    
4760   dgh[6] = 168.;
4761   gMC->Gsvolu("ICU1", "CONS", idtmed[213], dgh, 7);    
4762   gMC->Gspos("ICU1", 1, "ITSV", 0., 0., 97.5+dgh[0], 0, "ONLY");   
4763   
4764   // --- DEFINE CABLES/COOLING BELOW THE TPC ON THE ABSORBER SIDE - COPPER PART
4765   //     LOWER PART
4766   
4767   dgh[0] = (ztpc-97.5)/2.;
4768   dgh[1] = 46.2;      
4769   dgh[2] = 46.2+1.0;  
4770   dgh[3] = 62.3;      
4771   dgh[4] = 62.3+1.0;  
4772   dgh[5] = 192.;    
4773   dgh[6] = 348.;
4774   gMC->Gsvolu("ICU2", "CONS", idtmed[213], dgh, 7);    
4775   gMC->Gspos("ICU2", 1, "ITSV", 0., 0., 97.5+dgh[0], 0, "ONLY");  
4776
4777
4778    // -- DEFINE CABLES/COOLING BELOW THE TPC ON THE ABSORBER SIDE - CARBON PART
4779    //     UPPER PART
4780   
4781   dgh[0] = (ztpc-97.5)/2.;
4782   dgh[1] = 46.2+1.0;      
4783   dgh[2] = 46.2+1.0+1.5;  
4784   dgh[3] = 62.3+1.0;      
4785   dgh[4] = 62.3+1.0+1.5;  
4786   dgh[5] = 12.;    
4787   dgh[6] = 168.;  
4788   gMC->Gsvolu("ICC1", "CONS", idtmed[225], dgh, 7);    
4789   gMC->Gspos("ICC1", 1, "ITSV", 0., 0., 97.5+dgh[0], 0, "ONLY");   
4790   
4791   // --- DEFINE CABLES/COOLING BELOW THE TPC ON THE ABSORBER SIDE - CARBON PART
4792   //     LOWER PART
4793   
4794   dgh[0] = (ztpc-97.5)/2.;
4795   dgh[1] = 46.2+1.0;    
4796   dgh[2] = 46.2+1.0+1.5;
4797   dgh[3] = 62.3+1.0;    
4798   dgh[4] = 62.3+1.0+1.5;
4799   dgh[5] = 192.;    
4800   dgh[6] = 348.;  
4801   gMC->Gsvolu("ICC2", "CONS", idtmed[225], dgh, 7);    
4802   gMC->Gspos("ICC2", 1, "ITSV", 0., 0., 97.5+dgh[0], 0, "ONLY");  
4803    
4804   // -- DEFINE CABLES/COOLING BEHIND THE TPC ON THE ABSORBER SIDE - COPPER PART
4805   //     UPPER PART
4806     
4807   dgh[0] = 62.; 
4808   dgh[1] = 74.5;
4809   dgh[2] = 0.5;
4810   dgh[3] = 12.;
4811   dgh[4] = 168.;
4812   gMC->Gsvolu("ICU3", "TUBS", idtmed[213], dgh, 5);    
4813   gMC->Gspos("ICU3", 1, "ITSV", 0., 0., ztpc+1.5+dgh[2], 0, "ONLY");  
4814
4815   // -- DEFINE CABLES/COOLING BEHIND THE TPC ON THE ABSORBER SIDE - COPPER PART
4816   //     LOWER PART
4817   
4818   dgh[0] = 62.;  
4819   dgh[1] = 74.5;
4820   dgh[2] = 0.5;
4821   dgh[3] = 192.;
4822   dgh[4] = 348.;
4823   gMC->Gsvolu("ICU4", "TUBS", idtmed[213], dgh, 5);    
4824   gMC->Gspos("ICU4", 1, "ITSV", 0., 0., ztpc+1.5+dgh[2], 0, "ONLY");
4825
4826   // -- DEFINE CABLES/COOLING BEHIND THE TPC ON THE ABSORBER SIDE - CARBON PART
4827   //    UPPER PART
4828
4829   dgh[0] = 62.1;  
4830   dgh[1] = 74.5;
4831   dgh[2] = 0.75;
4832   dgh[3] = 12.;
4833   dgh[4] = 168.;
4834   gMC->Gsvolu("ICC3", "TUBS", idtmed[225], dgh, 5);    
4835   gMC->Gspos("ICC3", 1, "ITSV", 0., 0., ztpc+dgh[2], 0, "ONLY");   
4836     
4837   // -- DEFINE CABLES/COOLING BEHIND THE TPC ON THE ABSORBER SIDE - CARBON PART
4838   //    LOWER PART
4839
4840   dgh[0] = 62.1;  
4841   dgh[1] = 74.5;
4842   dgh[2] = 0.75;
4843   dgh[3] = 192.;
4844   dgh[4] = 348.;
4845   gMC->Gsvolu("ICC4", "TUBS", idtmed[225], dgh, 5);    
4846   gMC->Gspos("ICC4", 1, "ITSV", 0., 0., ztpc+dgh[2], 0, "ONLY");  
4847   
4848   // --- DEFINE CABLES/COOLING BELOW THE TPC ON THE OTHER SIDE W.R.T.
4849   //     THE ABSORBER - COPPER PART - UPPER PART
4850   
4851   dgh[0] = 46.;      
4852   dgh[1] = 46.+1.0;  
4853   dgh[2] = (ztpc-97.5+1.5)/2.;
4854   dgh[3] = 12.;
4855   dgh[4] = 168.;
4856   gMC->Gsvolu("ICU5", "TUBS", idtmed[213], dgh, 5);   
4857   gMC->Gspos("ICU5", 1, "ITSV", 0., 0., -97.5-dgh[2], 0, "ONLY");  
4858   
4859   // --- DEFINE CABLES/COOLING BELOW THE TPC ON THE OTHER SIDE W.R.T.
4860   //     THE ABSORBER - COPPER PART - LOWER PART
4861   
4862   dgh[0] = 46.;  
4863   dgh[1] = 46.+1.0;  
4864   dgh[2] = (ztpc-97.5+1.5)/2.;
4865   dgh[3] = 192.;
4866   dgh[4] = 348.;  
4867   gMC->Gsvolu("ICU6", "TUBS", idtmed[213], dgh, 5);   
4868   gMC->Gspos("ICU6", 1, "ITSV", 0., 0., -97.5-dgh[2], 0, "ONLY");    
4869   
4870   // --- DEFINE CABLES/COOLING BELOW THE TPC ON THE OTHER SIDE W.R.T.
4871   //     THE ABSORBER - CARBON PART - UPPER PART
4872   
4873   dgh[0] = 46.+1.0;  
4874   dgh[1] = 46.+1.0+1.5; 
4875   dgh[2] = (ztpc-97.5)/2.;
4876   dgh[3] = 12.;
4877   dgh[4] = 168.;  
4878   gMC->Gsvolu("ICC5", "TUBS", idtmed[225], dgh, 5);   
4879   gMC->Gspos("ICC5", 1, "ITSV", 0., 0., -97.5-dgh[2], 0, "ONLY");   
4880   
4881   // --- DEFINE CABLES/COOLING BELOW THE TPC ON THE OTHER SIDE W.R.T.
4882   //     THE ABSORBER - CARBON PART - LOWER PART
4883   
4884   dgh[0] = 46.+1.0;   
4885   dgh[1] = 46.+1.0+1.5;  
4886   dgh[2] = (ztpc-97.5)/2.;
4887   dgh[3] = 192.;
4888   dgh[4] = 348.;  
4889   gMC->Gsvolu("ICC6", "TUBS", idtmed[225], dgh, 5);   
4890   gMC->Gspos("ICC6", 1, "ITSV", 0., 0., -97.5-dgh[2], 0, "ONLY");      
4891
4892   // --- DEFINE CABLES/COOLING BEHIND THE TPC ON OTHER SIDE W.R.T. THE ABSORBER
4893   //     COPPER PART - UPPER PART
4894     
4895   dgh[0] = 46.;   
4896   dgh[1] = 74.5;
4897   dgh[2] = 0.5;
4898   dgh[3] = 12.;
4899   dgh[4] = 168.;  
4900   gMC->Gsvolu("ICU7", "TUBS", idtmed[213], dgh, 5);   
4901   gMC->Gspos("ICU7", 1, "ITSV", 0., 0., -(ztpc+1.5+dgh[2]), 0, "ONLY");  
4902   
4903   // --- DEFINE CABLES/COOLING BEHIND THE TPC ON OTHER SIDE W.R.T. THE ABSORBER
4904   //     COPPER PART - LOWER PART
4905     
4906   dgh[0] = 46.; 
4907   dgh[1] = 74.5;
4908   dgh[2] = 0.5;
4909   dgh[3] = 192.;
4910   dgh[4] = 348.;   
4911   gMC->Gsvolu("ICU8", "TUBS", idtmed[213], dgh, 5);   
4912   gMC->Gspos("ICU8", 1, "ITSV", 0., 0., -(ztpc+1.5+dgh[2]), 0, "ONLY");      
4913     
4914   // --- DEFINE CABLES/COOLING BEHIND THE TPC ON OTHER SIDE W.R.T. THE ABSORBER
4915   //     CARBON PART - UPPER PART
4916   
4917   dgh[0] = 46.+1.0;  
4918   dgh[1] = 74.5;
4919   dgh[2] = 0.75;
4920   dgh[3] = 12.;
4921   dgh[4] = 168.;   
4922   gMC->Gsvolu("ICC7", "TUBS", idtmed[225], dgh, 5);   
4923   gMC->Gspos("ICC7", 1, "ITSV", 0., 0., -(ztpc+dgh[2]), 0, "ONLY"); 
4924   
4925   // --- DEFINE CABLES/COOLING BEHIND THE TPC ON OTHER SIDE W.R.T. THE ABSORBER
4926   //     CARBON PART - LOWER PART
4927   
4928   dgh[0] = 46.+1.0;  
4929   dgh[1] = 74.5;
4930   dgh[2] = 0.75;
4931   dgh[3] = 192.;
4932   dgh[4] = 348.;     
4933   gMC->Gsvolu("ICC8", "TUBS", idtmed[225], dgh, 5);   
4934   gMC->Gspos("ICC8", 1, "ITSV", 0., 0., -(ztpc+dgh[2]), 0, "ONLY");        
4935     
4936   // --- DEFINE HOOK TO THE TPC ON OTHER SIDE W.R.T. THE ABSORBER - UPPER PART
4937   
4938   dgh[0] = 74.5;
4939   dgh[1] = 79.5;
4940   dgh[2] = 2.5;
4941   dgh[3] = 12.;
4942   dgh[4] = 168.;    
4943   gMC->Gsvolu("IHK1", "TUBS", idtmed[264], dgh, 5);  
4944   gMC->Gspos("IHK1", 1, "ITSV", 0., 0., -ztpc-dgh[2], 0, "ONLY");   
4945   
4946   // --- DEFINE HOOK TO THE TPC ON OTHER SIDE W.R.T. THE ABSORBER - LOWER PART
4947   
4948   dgh[0] = 74.5;
4949   dgh[1] = 79.5;
4950   dgh[2] = 2.5;
4951   dgh[3] = 192.;
4952   dgh[4] = 348.;    
4953   gMC->Gsvolu("IHK2", "TUBS", idtmed[264], dgh, 5);  
4954   gMC->Gspos("IHK2", 1, "ITSV", 0., 0., -ztpc-dgh[2], 0, "ONLY");      
4955   
4956   // --- DEFINE RAILS BETWEEN THE ITS AND THE TPC
4957   
4958   if (rails == 1) {
4959   
4960      dgh[0] = 2.;          
4961      dgh[1] = 8.;           
4962      dgh[2] = 190.;         
4963      gMC->Gsvolu("IRA1", "BOX ", idtmed[268], dgh, 3);
4964      gMC->Gspos("IRA1", 1, "ITSV", 53.5, 0., -69.5, 0, "ONLY");   
4965      gMC->Gsvolu("IRA2", "BOX ", idtmed[268], dgh, 3);    
4966      gMC->Gspos("IRA2", 1, "ITSV", -53.5, 0., -69.5, 0, "ONLY");    
4967
4968      dgh[0] = 2.-0.5;// 0.5 was determined in such a way that the aluminum area is 20.9 cm^2      
4969      dgh[1] = 8.-0.5;// 0.5 was determined in such a way that the aluminum area is 20.9 cm^2       
4970      dgh[2] = 190.;         
4971      gMC->Gsvolu("IRA3", "BOX ", idtmed[205], dgh, 3);   
4972      gMC->Gspos("IRA3", 1, "IRA1", 0., 0., 0., 0, "ONLY");   
4973      gMC->Gsvolu("IRA4", "BOX ", idtmed[205], dgh, 3);     
4974      gMC->Gspos("IRA4", 1, "IRA2", 0., 0., 0., 0, "ONLY");    
4975
4976   }
4977
4978   // --- DEFINE CYLINDERS HOLDING RAILS BETWEEN THE ITS AND THE TPC
4979   
4980   dgh[0] = 56.9;    
4981   dgh[1] = 59.;
4982   dgh[2] = 0.6;    
4983   gMC->Gsvolu("ICYL", "TUBE", idtmed[210], dgh, 3);   
4984   gMC->Gspos("ICYL", 1, "ALIC", 0., 0., -74.1,idrotm[199], "ONLY");   
4985   gMC->Gspos("ICYL", 2, "ALIC", 0., 0., 74.1, 0, "ONLY"); 
4986
4987   // --- DEFINE SUPPORTS FOR RAILS ATTACHED TO THE CYLINDERS
4988
4989   dgh[0] = 0.;        
4990   dgh[1] = 3.;
4991   dgh[2] = 5.;// 5. comes from the fact that the volume has to be 567.6/2 cm^3
4992   gMC->Gsvolu("ISR1", "TUBE", idtmed[284], dgh, 3);   
4993   gMC->Gspos("ISR1", 1, "ITSV", 53.4292, 10.7053, 79.75, 0, "ONLY");    
4994   gMC->Gspos("ISR1", 2, "ITSV", 53.4292, -10.7053, 79.75, 0, "ONLY");   
4995   gMC->Gspos("ISR1", 3, "ITSV", -53.4292, 10.7053, 79.75, 0, "ONLY"); 
4996   gMC->Gspos("ISR1", 4, "ITSV", -53.4292, -10.7053, 79.75, 0, "ONLY");  
4997   gMC->Gspos("ISR1", 5, "ITSV", 53.4292, 10.7053, -79.75, 0, "ONLY");   
4998   gMC->Gspos("ISR1", 6, "ITSV", 53.4292, -10.7053, -79.75, 0, "ONLY");   
4999   gMC->Gspos("ISR1", 7, "ITSV", -53.4292, 10.7053, -79.75, 0, "ONLY"); 
5000   gMC->Gspos("ISR1", 8, "ITSV", -53.4292, -10.7053, -79.75, 0, "ONLY");
5001   
5002   // --- DEFINE SUPPORTS FOR RAILS ATTACHED TO THE ABSORBER
5003
5004   dgh[0] = 5.;        
5005   dgh[1] = 12.;         
5006   dgh[2] = 5.;         
5007   gMC->Gsvolu("ISR2", "BOX ", idtmed[210], dgh, 3);   
5008   gMC->Gspos("ISR2", 1, "ITSV", -53.5, 0., -125.5, idrotm[199], "MANY");
5009   gMC->Gsvolu("ISR3", "BOX ", idtmed[210], dgh, 3);   
5010   gMC->Gspos("ISR3", 1, "ITSV", 53.5, 0., -125.5, idrotm[199], "MANY");  
5011   
5012   dgh[0] = 5.-2.;        
5013   dgh[1] = 12.-2.;         
5014   dgh[2] = 5.;         
5015   gMC->Gsvolu("ISR4", "BOX ", idtmed[205], dgh, 3);   
5016   gMC->Gspos("ISR4", 1, "ISR2", 0., 0., 0., 0, "ONLY");     
5017   gMC->Gsvolu("ISR5", "BOX ", idtmed[205], dgh, 3);   
5018   gMC->Gspos("ISR5", 1, "ISR3", 0., 0., 0., 0, "ONLY");
5019   
5020   // --- DEFINE SUPPORTS TO ATTACH THE ITS TO THE TPC
5021   
5022   dgh[0] = 0.;        
5023   dgh[1] = 5.;         
5024   dgh[2] = 2.;         
5025   gMC->Gsvolu("ISR6", "TUBE", idtmed[210], dgh, 3);   
5026   gMC->Gspos("ISR6", 1, "ITSV", 0., 54., -77., idrotm[199], "MANY"); 
5027   gMC->Gspos("ISR6", 2, "ITSV", 0., 54., 77., idrotm[199], "MANY"); 
5028   gMC->Gspos("ISR6", 3, "ITSV", 0., -54., 77., idrotm[199], "MANY");                   
5029
5030   // --- Outputs the geometry tree in the EUCLID/CAD format 
5031   
5032   if (fEuclidOut) {
5033     gMC->WriteEuclid("ITSgeometry", "ITSV", 1, 5);
5034   }
5035
5036
5037   {
5038     if (!gGeoManager) {
5039       AliError("TGeoManager doesn't exist !");
5040       return;
5041     }
5042
5043     //======  Converting mother volumes of alignable objects
5044     //======  into TGeoAssemblies :
5045
5046     TObjArray *list = gGeoManager->GetListOfVolumes();
5047
5048     {
5049       char spdLaddName[20] = "I10B";
5050
5051       TGeoVolume *toTransform = gGeoManager->FindVolumeFast(spdLaddName);
5052       Int_t index = list->IndexOf(toTransform);
5053       do {
5054         TGeoVolume *transformed = 0; // this will be in fact TGeoVolumeAssembly
5055         if (toTransform)
5056           transformed = TGeoVolumeAssembly::MakeAssemblyFromVolume(toTransform);
5057         if (transformed)
5058           gGeoManager->ReplaceVolume(toTransform, transformed);
5059         index++;
5060         toTransform = (TGeoVolume*)list->At(index);
5061       }
5062       while (strcmp(spdLaddName,toTransform->GetName()) == 0);
5063     }
5064
5065     // SPD 2
5066     {
5067       char spdLaddName[20] = "I20B";
5068
5069       TGeoVolume *toTransform = gGeoManager->FindVolumeFast(spdLaddName);
5070       Int_t index = list->IndexOf(toTransform);
5071       do {
5072         TGeoVolume *transformed = 0; // this will be in fact TGeoVolumeAssembly
5073         if (toTransform)
5074           transformed = TGeoVolumeAssembly::MakeAssemblyFromVolume(toTransform);
5075         if (transformed)
5076           gGeoManager->ReplaceVolume(toTransform, transformed);
5077         index++;
5078         toTransform = (TGeoVolume*)list->At(index);
5079       }
5080       while (strcmp(spdLaddName, toTransform->GetName()) == 0);
5081     }
5082
5083     //---
5084
5085     // SPD 1
5086     {
5087       char spdLaddName[20] = "I107"; // "I107"
5088
5089       TGeoVolume *toTransform = gGeoManager->FindVolumeFast(spdLaddName);
5090       Int_t index = list->IndexOf(toTransform);
5091       do {
5092         TGeoVolume *transformed = 0; // this will be in fact TGeoVolumeAssembly
5093         if (toTransform)
5094           transformed = TGeoVolumeAssembly::MakeAssemblyFromVolume(toTransform);
5095         if (transformed)
5096           gGeoManager->ReplaceVolume(toTransform, transformed);
5097         index++;
5098         toTransform = (TGeoVolume*)list->At(index);
5099       }
5100       while (strcmp(spdLaddName,toTransform->GetName()) == 0);
5101     }
5102
5103     // SPD 2
5104     {
5105       char spdLaddName[20] = "I1D7"; // "I1D7"
5106
5107       TGeoVolume *toTransform = gGeoManager->FindVolumeFast(spdLaddName);
5108       Int_t index = list->IndexOf(toTransform);
5109       do {
5110         TGeoVolume *transformed = 0; // this will be in fact TGeoVolumeAssembly
5111         if (toTransform)
5112           transformed = TGeoVolumeAssembly::MakeAssemblyFromVolume(toTransform);
5113         if (transformed)
5114           gGeoManager->ReplaceVolume(toTransform, transformed);
5115         index++;
5116         toTransform = (TGeoVolume*)list->At(index);
5117       }
5118       while (strcmp(spdLaddName, toTransform->GetName()) == 0);
5119     }
5120
5121     // SDD 1
5122     {
5123       char sddLaddName[20] = "I004";// "I302"
5124
5125       TGeoVolume *toTransform = gGeoManager->FindVolumeFast(sddLaddName);
5126       Int_t index = list->IndexOf(toTransform);
5127       do {
5128         TGeoVolume *transformed = 0; // this will be in fact TGeoVolumeAssembly
5129         if (toTransform)
5130           transformed = TGeoVolumeAssembly::MakeAssemblyFromVolume(toTransform);
5131         if (transformed)
5132           gGeoManager->ReplaceVolume(toTransform, transformed);
5133         index++;
5134         toTransform = (TGeoVolume*)list->At(index);
5135       }
5136       while (strcmp(sddLaddName, toTransform->GetName()) == 0);
5137     }
5138
5139     // SDD 2
5140     {
5141       char sddLaddName[20] = "I005";// "I402"
5142
5143       TGeoVolume *toTransform = gGeoManager->FindVolumeFast(sddLaddName);
5144       Int_t index = list->IndexOf(toTransform);
5145       do {
5146         TGeoVolume *transformed = 0; // this will be in fact TGeoVolumeAssembly
5147         if (toTransform)
5148           transformed = TGeoVolumeAssembly::MakeAssemblyFromVolume(toTransform);
5149         if (transformed)
5150           gGeoManager->ReplaceVolume(toTransform, transformed);
5151         index++;
5152         toTransform = (TGeoVolume*)list->At(index);
5153       }
5154       while (strcmp(sddLaddName, toTransform->GetName()) == 0);
5155     }
5156
5157
5158     // SSD 1
5159     {
5160       char ssdLaddName[20] = "I565";// "I562"
5161
5162       TGeoVolume *toTransform = gGeoManager->FindVolumeFast(ssdLaddName);
5163       Int_t index = list->IndexOf(toTransform);
5164       do {
5165         TGeoVolume *transformed = 0; // this will be in fact TGeoVolumeAssembly
5166         if (toTransform)
5167           transformed = TGeoVolumeAssembly::MakeAssemblyFromVolume(toTransform);
5168         if (transformed)
5169           gGeoManager->ReplaceVolume(toTransform, transformed);
5170         index++;
5171         toTransform = (TGeoVolume*)list->At(index);
5172       }
5173       while (strcmp(ssdLaddName,toTransform->GetName()) == 0);
5174     }
5175
5176     // SSD 2
5177     {
5178       char ssdLaddName[20] = "I569";// "I566"
5179
5180       TGeoVolume *toTransform = gGeoManager->FindVolumeFast(ssdLaddName);
5181       Int_t index = list->IndexOf(toTransform);
5182       do {
5183         TGeoVolume *transformed = 0; // this will be in fact TGeoVolumeAssembly
5184         if (toTransform)
5185           transformed = TGeoVolumeAssembly::MakeAssemblyFromVolume(toTransform);
5186         if (transformed)
5187           gGeoManager->ReplaceVolume(toTransform, transformed);
5188         index++;
5189         toTransform = (TGeoVolume*)list->At(index);
5190       }
5191       while (strcmp(ssdLaddName, toTransform->GetName()) == 0);
5192     }
5193
5194
5195     //======  Converting some virtual volumes to assemblies in order
5196     //====== to avoid overlaps :
5197
5198     {
5199       char sddName[20] = "I047";
5200
5201       TGeoVolume *toTransform = gGeoManager->FindVolumeFast(sddName);
5202       Int_t index = list->IndexOf(toTransform);
5203       do {
5204         TGeoVolume *transformed = 0; // this will be in fact TGeoVolumeAssembly
5205         if (toTransform)
5206           transformed = TGeoVolumeAssembly::MakeAssemblyFromVolume(toTransform);
5207         if (transformed)
5208           gGeoManager->ReplaceVolume(toTransform, transformed);
5209         index++;
5210         toTransform = (TGeoVolume*)list->At(index);
5211       }
5212       while (strcmp(sddName, toTransform->GetName()) == 0);
5213     }
5214
5215     {
5216       char sddName[20] = "I048";
5217
5218       TGeoVolume *toTransform = gGeoManager->FindVolumeFast(sddName);
5219       Int_t index = list->IndexOf(toTransform);
5220       do {
5221         TGeoVolume *transformed = 0; // this will be in fact TGeoVolumeAssembly
5222         if (toTransform)
5223           transformed = TGeoVolumeAssembly::MakeAssemblyFromVolume(toTransform);
5224         if (transformed)
5225           gGeoManager->ReplaceVolume(toTransform, transformed);
5226         index++;
5227         toTransform = (TGeoVolume*)list->At(index);
5228       }
5229       while (strcmp(sddName, toTransform->GetName()) == 0);
5230     }
5231
5232     {
5233       char sddName[20] = "I018";
5234
5235       TGeoVolume *toTransform = gGeoManager->FindVolumeFast(sddName);
5236       Int_t index = list->IndexOf(toTransform);
5237       do {
5238         TGeoVolume *transformed = 0; // this will be in fact TGeoVolumeAssembly
5239         if (toTransform)
5240           transformed = TGeoVolumeAssembly::MakeAssemblyFromVolume(toTransform);
5241         if (transformed)
5242           gGeoManager->ReplaceVolume(toTransform, transformed);
5243         index++;
5244         toTransform = (TGeoVolume*)list->At(index);
5245       }
5246       while (strcmp(sddName, toTransform->GetName()) == 0);
5247     }
5248
5249
5250   }
5251
5252 }
5253 //______________________________________________________________________
5254 void AliITSvPPRasymmFMD::CreateMaterials(){
5255     // Create ITS materials
5256     //     This function defines the default materials used in the Geant
5257     // Monte Carlo simulations for the geometries AliITSv1, AliITSv3,
5258     // AliITSvPPRasymmFMD.
5259     // In general it is automatically replaced by
5260     // the CreateMaterials routine defined in AliITSv?. Should the function
5261     // CreateMaterials not exist for the geometry version you are using this
5262     // one is used. See the definition found in AliITSv5 or the other routine
5263     // for a complete definition.
5264     // Inputs:
5265     //   none.
5266     // Outputs:
5267     //   none.
5268     // Return:
5269     //   none.
5270
5271     Int_t   ifield = gAlice->Field()->Integ();
5272     Float_t fieldm = gAlice->Field()->Max();
5273
5274     Float_t tmaxfd = 0.1; // 1.0; // Degree
5275     Float_t stemax = 1.0; // cm
5276     Float_t deemax = 0.1; // 30.0; // Fraction of particle's energy 0<deemax<=1
5277     Float_t epsil  = 1.0E-4; // 1.0; // cm
5278     Float_t stmin  = 0.0; // cm "Default value used"
5279
5280     Float_t tmaxfdSi = 0.1; // .10000E+01; // Degree
5281     Float_t stemaxSi = 0.0075; //  .10000E+01; // cm
5282     Float_t deemaxSi = 0.1; // 0.30000E-02; // Fraction of particle's energy 0<deemax<=1
5283     Float_t epsilSi  = 1.0E-4;// .10000E+01;
5284     Float_t stminSi  = 0.0; // cm "Default value used"
5285
5286     Float_t tmaxfdAir = 0.1; // .10000E+01; // Degree
5287     Float_t stemaxAir = .10000E+01; // cm
5288     Float_t deemaxAir = 0.1; // 0.30000E-02; // Fraction of particle's energy 0<deemax<=1
5289     Float_t epsilAir  = 1.0E-4;// .10000E+01;
5290     Float_t stminAir  = 0.0; // cm "Default value used"
5291
5292     Float_t tmaxfdServ = 1.0; // 10.0; // Degree
5293     Float_t stemaxServ = 1.0; // 0.01; // cm
5294     Float_t deemaxServ = 0.5; // 0.1; // Fraction of particle's energy 0<deemax<=1
5295     Float_t epsilServ  = 1.0E-3; // 0.003; // cm
5296     Float_t stminServ  = 0.0; //0.003; // cm "Default value used"
5297
5298     // Freon PerFluorobuthane C4F10 see 
5299     // http://st-support-cooling-electronics.web.cern.ch/
5300     //        st-support-cooling-electronics/default.htm
5301     Float_t afre[2]  = { 12.011,18.9984032 };
5302     Float_t zfre[2]  = { 6., 9. };
5303     Float_t wfre[2]  = { 4.,10. };
5304     Float_t densfre  = 1.52;
5305
5306
5307     //CM55J
5308
5309     Float_t aCM55J[4]={12.0107,14.0067,15.9994,1.00794};
5310     Float_t zCM55J[4]={6.,7.,8.,1.};
5311     Float_t wCM55J[4]={0.908508078,0.010387573,0.055957585,0.025146765};
5312     Float_t dCM55J = 1.63;
5313
5314     //ALCM55J
5315
5316     Float_t aALCM55J[5]={12.0107,14.0067,15.9994,1.00794,26.981538};
5317     Float_t zALCM55J[5]={6.,7.,8.,1.,13.};
5318     Float_t wALCM55J[5]={0.817657902,0.0093488157,0.0503618265,0.0226320885,0.1};
5319     Float_t dALCM55J = 1.9866;
5320
5321     //Si Chips
5322
5323     Float_t aSICHIP[6]={12.0107,14.0067,15.9994,1.00794,28.0855,107.8682};
5324     Float_t zSICHIP[6]={6.,7.,8.,1.,14., 47.};
5325     Float_t wSICHIP[6]={0.039730642,0.001396798,0.01169634,0.004367771,0.844665,0.09814344903};
5326     Float_t dSICHIP = 2.36436;
5327
5328     //Inox
5329     
5330     Float_t aINOX[9]={12.0107,54.9380, 28.0855,30.9738,32.066,58.6928,55.9961,95.94,55.845};
5331     Float_t zINOX[9]={6.,25.,14.,15.,16., 28.,24.,42.,26.};
5332     Float_t wINOX[9]={0.0003,0.02,0.01,0.00045,0.0003,0.12,0.17,0.025,0.654};
5333     Float_t dINOX = 8.03;
5334
5335     //SDD HV microcable
5336
5337     Float_t aHVm[5]={12.0107,1.00794,14.0067,15.9994,26.981538};
5338     Float_t zHVm[5]={6.,1.,7.,8.,13.};
5339     Float_t wHVm[5]={0.520088819984,0.01983871336,0.0551367996,0.157399667056, 0.247536};
5340     Float_t dHVm = 1.6087;
5341
5342     //SDD LV+signal cable
5343
5344     Float_t aLVm[5]={12.0107,1.00794,14.0067,15.9994,26.981538};
5345     Float_t zLVm[5]={6.,1.,7.,8.,13.};
5346     Float_t wLVm[5]={0.21722436468,0.0082859922,0.023028867,0.06574077612, 0.68572};
5347     Float_t dLVm = 2.1035;
5348
5349     //SDD hybrid microcab
5350
5351     Float_t aHLVm[5]={12.0107,1.00794,14.0067,15.9994,26.981538};
5352     Float_t zHLVm[5]={6.,1.,7.,8.,13.};
5353     Float_t wHLVm[5]={0.24281879711,0.00926228815,0.02574224025,0.07348667449, 0.64869};
5354     Float_t dHLVm = 2.0502;
5355
5356     //SDD anode microcab
5357
5358     Float_t aALVm[5]={12.0107,1.00794,14.0067,15.9994,26.981538};
5359     Float_t zALVm[5]={6.,1.,7.,8.,13.};
5360     Float_t wALVm[5]={0.392653705471,0.0128595919215,0.041626868025,0.118832707289, 0.431909};
5361     Float_t dALVm = 2.0502;
5362
5363     //X7R capacitors
5364
5365     Float_t aX7R[7]={137.327,47.867,15.9994,58.6928,63.5460,118.710,207.2};
5366     Float_t zX7R[7]={56.,22.,8.,28.,29.,50.,82.};
5367     Float_t wX7R[7]={0.251639432,0.084755042,0.085975822,0.038244751,0.009471271,0.321736471,0.2081768};
5368     Float_t dX7R = 7.14567;
5369
5370     // AIR
5371
5372     Float_t aAir[4]={12.0107,14.0067,15.9994,39.948};
5373     Float_t zAir[4]={6.,7.,8.,18.};
5374     Float_t wAir[4]={0.000124,0.755267,0.231781,0.012827};
5375     Float_t dAir = 1.20479E-3;
5376
5377     // Water
5378
5379     Float_t aWater[2]={1.00794,15.9994};
5380     Float_t zWater[2]={1.,8.};
5381     Float_t wWater[2]={0.111894,0.888106};
5382     Float_t dWater   = 1.0;
5383
5384     // CERAMICS
5385   //     94.4% Al2O3 , 2.8% SiO2 , 2.3% MnO , 0.5% Cr2O3
5386     Float_t acer[5]  = { 26.981539,15.9994,28.0855,54.93805,51.9961 };
5387     Float_t zcer[5]  = {       13.,     8.,    14.,     25.,    24. };
5388     Float_t wcer[5]  = {.4443408,.5213375,.0130872,.0178135,.003421};
5389     Float_t denscer  = 3.6;
5390
5391     //G10FR4
5392
5393     Float_t zG10FR4[14] = {14.00,       20.00,  13.00,  12.00,  5.00,   22.00,  11.00,  19.00,  26.00,  9.00,   8.00,   6.00,   7.00,   1.00};
5394     Float_t aG10FR4[14] = {28.0855000,40.0780000,26.9815380,24.3050000,10.8110000,47.8670000,22.9897700,39.0983000,55.8450000,18.9984000,15.9994000,12.0107000,14.0067000,1.0079400};
5395     Float_t wG10FR4[14] = {0.15144894,0.08147477,0.04128158,0.00904554,0.01397570,0.00287685,0.00445114,0.00498089,0.00209828,0.00420000,0.36043788,0.27529426,0.01415852,0.03427566};
5396     Float_t densG10FR4= 1.8;
5397     
5398      //--- EPOXY  --- C18 H19 O3
5399       Float_t aEpoxy[3] = {15.9994, 1.00794, 12.0107} ; 
5400       Float_t zEpoxy[3] = {     8.,      1.,      6.} ; 
5401       Float_t wEpoxy[3] = {     3.,     19.,     18.} ; 
5402       Float_t dEpoxy = 1.8 ;
5403
5404       // rohacell: C9 H13 N1 O2
5405     Float_t arohac[4] = {12.01,  1.01, 14.010, 16.};
5406     Float_t zrohac[4] = { 6.,    1.,    7.,     8.};
5407     Float_t wrohac[4] = { 9.,   13.,    1.,     2.};
5408     Float_t drohac    = 0.05;
5409
5410     // If he/she means stainless steel (inox) + Aluminium and Zeff=15.3383 then
5411 //
5412 // %Al=81.6164 %inox=100-%Al
5413
5414     Float_t aInAl[5] = {27., 55.847,51.9961,58.6934,28.0855 };
5415     Float_t zInAl[5] = {13., 26.,24.,28.,14. };
5416     Float_t wInAl[5] = {.816164, .131443,.0330906,.0183836,.000919182};
5417     Float_t dInAl    = 3.075;
5418
5419     // Kapton
5420
5421     Float_t aKapton[4]={1.00794,12.0107, 14.010,15.9994};
5422     Float_t zKapton[4]={1.,6.,7.,8.};
5423     Float_t wKapton[4]={0.026362,0.69113,0.07327,0.209235};
5424     Float_t dKapton   = 1.42;
5425
5426     //SDD ruby sph.
5427     Float_t aAlOxide[2]  = { 26.981539,15.9994};
5428     Float_t zAlOxide[2]  = {       13.,     8.};
5429     Float_t wAlOxide[2]  = {0.4707, 0.5293};
5430     Float_t dAlOxide     = 3.97;
5431
5432     AliMaterial(1,"SI$",0.28086E+02,0.14000E+02,0.23300E+01,0.93600E+01,0.99900E+03);
5433     AliMedium(1,"SI$",1,0,ifield,fieldm,tmaxfdSi,stemaxSi,deemaxSi,epsilSi,stminSi);
5434
5435     AliMaterial(2,"SPD SI CHIP$",0.28086E+02,0.14000E+02,0.23300E+01,0.93600E+01,0.99900E+03);
5436     AliMedium(2,"SPD SI CHIP$",2,0,ifield,fieldm,tmaxfdSi,stemaxSi,deemaxSi,epsilSi,stminSi);
5437
5438     AliMaterial(3,"SPD SI BUS$",0.28086E+02,0.14000E+02,0.23300E+01,0.93600E+01,0.99900E+03);
5439     AliMedium(3,"SPD SI BUS$",3,0,ifield,fieldm,tmaxfdSi,stemaxSi,deemaxSi,epsilSi,stminSi);
5440
5441     AliMixture(4,"C (M55J)$",aCM55J,zCM55J,dCM55J,4,wCM55J);
5442     AliMedium(4,"C (M55J)$",4,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5443
5444     AliMixture(5,"AIR$",aAir,zAir,dAir,4,wAir);
5445     AliMedium(5,"AIR$",5,0,ifield,fieldm,tmaxfdAir,stemaxAir,deemaxAir,epsilAir,stminAir);
5446
5447     AliMixture(6,"GEN AIR$",aAir,zAir,dAir,4,wAir);
5448     AliMedium(6,"GEN AIR$",6,0,ifield,fieldm,tmaxfdAir,stemaxAir,deemaxAir,epsilAir,stminAir);
5449
5450     AliMixture(7,"SDD SI CHIP$",aSICHIP,zSICHIP,dSICHIP,6,wSICHIP);
5451     AliMedium(7,"SDD SI CHIP$",7,0,ifield,fieldm,tmaxfdSi,stemaxSi,deemaxSi,epsilSi,stminSi);
5452
5453     AliMixture(9,"SDD C (M55J)$",aCM55J,zCM55J,dCM55J,4,wCM55J);
5454     AliMedium(9,"SDD C (M55J)$",9,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5455
5456     AliMixture(10,"SDD AIR$",aAir,zAir,dAir,4,wAir);
5457     AliMedium(10,"SDD AIR$",10,0,ifield,fieldm,tmaxfdAir,stemaxAir,deemaxAir,epsilAir,stminAir);
5458
5459     AliMaterial(11,"AL$",0.26982E+02,0.13000E+02,0.26989E+01,0.89000E+01,0.99900E+03);
5460     AliMedium(11,"AL$",11,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5461
5462     AliMixture(12, "Water$",aWater,zWater,dWater,2,wWater);
5463     AliMedium(12,"WATER$",12,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5464
5465     AliMixture(13,"Freon$",afre,zfre,densfre,-2,wfre);
5466     AliMedium(13,"Freon$",13,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5467
5468     AliMaterial(14,"COPPER$",0.63546E+02,0.29000E+02,0.89600E+01,0.14300E+01,0.99900E+03);
5469     AliMedium(14,"COPPER$",14,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5470     AliMixture(15,"CERAMICS$",acer,zcer,denscer,5,wcer);
5471     AliMedium(15,"CERAMICS$",15,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5472
5473     AliMixture(20,"SSD C (M55J)$",aCM55J,zCM55J,dCM55J,4,wCM55J);
5474     AliMedium(20,"SSD C (M55J)$",20,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5475
5476     AliMixture(21,"SSD AIR$",aAir,zAir,dAir,4,wAir);
5477     AliMedium(21,"SSD AIR$",21,0,ifield,fieldm,tmaxfdAir,stemaxAir,deemaxAir,epsilAir,stminAir);
5478
5479     AliMixture(25,"G10FR4$",aG10FR4,zG10FR4,densG10FR4,14,wG10FR4);
5480     AliMedium(25,"G10FR4$",25,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5481
5482      AliMixture(26,"GEN C (M55J)$",aCM55J,zCM55J,dCM55J,4,wCM55J);
5483     AliMedium(26,"GEN C (M55J)$",26,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5484
5485     AliMixture(27,"GEN Air$",aAir,zAir,dAir,4,wAir);
5486     AliMedium(27,"GEN Air$",27,0,ifield,fieldm,tmaxfdAir,stemaxAir,deemaxAir,epsilAir,stminAir);
5487
5488     AliMaterial(51,"SPD SI$",0.28086E+02,0.14000E+02,0.23300E+01,0.93600E+01,0.99900E+03);
5489     AliMedium(51,"SPD SI$",51,0,ifield,fieldm,tmaxfdSi,stemaxSi,deemaxSi,epsilSi,stminSi);
5490
5491     AliMaterial(52,"SPD SI CHIP$",0.28086E+02,0.14000E+02,0.23300E+01,0.93600E+01,0.99900E+03);
5492     AliMedium(52,"SPD SI CHIP$",52,0,ifield,fieldm,tmaxfdSi,stemaxSi,deemaxSi,epsilSi,stminSi);
5493
5494     AliMaterial(53,"SPD SI BUS$",0.28086E+02,0.14000E+02,0.23300E+01,0.93600E+01,0.99900E+03);
5495     AliMedium(53,"SPD SI BUS$",53,0,ifield,fieldm,tmaxfdSi,stemaxSi,deemaxSi,epsilSi,stminSi);
5496
5497     AliMixture(54,"SPD C (M55J)$",aCM55J,zCM55J,dCM55J,4,wCM55J);
5498     AliMedium(54,"SPD C (M55J)$",54,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5499
5500     AliMixture(55,"SPD AIR$",aAir,zAir,dAir,4,wAir);
5501     AliMedium(55,"SPD AIR$",55,0,ifield,fieldm,tmaxfdAir,stemaxAir,deemaxAir,epsilAir,stminAir);
5502
5503     AliMixture(56, "SPD KAPTON(POLYCH2)", aKapton, zKapton, dKapton, 4, wKapton);
5504     AliMedium(56,"SPD KAPTON(POLYCH2)$",56,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5505
5506     AliMixture(61,"EPOXY$",aEpoxy,zEpoxy,dEpoxy,-3,wEpoxy);
5507     AliMedium(61,"EPOXY$",61,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5508
5509     AliMaterial(62,"SILICON$",0.28086E+02,0.14000E+02,0.23300E+01,0.93600E+01,0.99900E+03);
5510     AliMedium(62,"SILICON$",62,0,ifield,fieldm,tmaxfdSi,stemaxSi,deemaxSi,epsilSi,stminSi);
5511
5512     AliMixture(63, "KAPTONH(POLYCH2)", aKapton, zKapton, dKapton, 4, wKapton);
5513     AliMedium(63,"KAPTONH(POLYCH2)$",63,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5514
5515     AliMaterial(64,"ALUMINUM$",0.26982E+02,0.13000E+02,0.26989E+01,0.89000E+01,0.99900E+03);
5516     AliMedium(64,"ALUMINUM$",64,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5517
5518     AliMixture(65,"INOX$",aINOX,zINOX,dINOX,9,wINOX);
5519     AliMedium(65,"INOX$",65,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5520
5521     AliMixture(68,"ROHACELL$",arohac,zrohac,drohac,-4,wrohac);
5522     AliMedium(68,"ROHACELL$",68,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5523
5524      AliMixture(69,"SDD C AL (M55J)$",aALCM55J,zALCM55J,dALCM55J,5,wALCM55J);
5525     AliMedium(69,"SDD C AL (M55J)$",69,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5526   
5527     AliMixture(70, "SDDKAPTON (POLYCH2)", aKapton, zKapton, dKapton, 4, wKapton);
5528     AliMedium(70,"SDDKAPTON (POLYCH2)$",70,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5529
5530      AliMaterial(71,"ITS SANDW A$",0.12011E+02,0.60000E+01,0.2115E+00,0.17479E+03,0.99900E+03);
5531     AliMedium(71,"ITS SANDW A$",71,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5532
5533     AliMaterial(72,"ITS SANDW B$",0.12011E+02,0.60000E+01,0.27000E+00,0.18956E+03,0.99900E+03);
5534     AliMedium(72,"ITS SANDW B$",72,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5535
5536     AliMaterial(73,"ITS SANDW C$",0.12011E+02,0.60000E+01,0.41000E+00,0.90868E+02,0.99900E+03);
5537     AliMedium(73,"ITS SANDW C$",73,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5538
5539     AliMaterial(74,"HEAT COND GLUE$",0.12011E+02,0.60000E+01,0.1930E+01,0.22100E+02,0.99900E+03);
5540     AliMedium(74,"HEAT COND GLUE$",74,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5541
5542     AliMaterial(75,"ELASTO SIL$",0.28086E+02,0.14000E+02,0.23300E+01,0.93600E+01,0.99900E+03);
5543     AliMedium(75,"ELASTO SIL$",75,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5544
5545     // SPD bus (data from Petra Riedler)
5546     Float_t aSPDbus[5] = {1.00794,12.0107,14.01,15.9994,26.982 };
5547     Float_t zSPDbus[5] = {1.,6.,7.,8.,13.};
5548     Float_t wSPDbus[5] = {0.023523,0.318053,0.009776,0.078057,0.570591};
5549     Float_t dSPDbus    = 2.128505;
5550
5551     //   AliMaterial(76,"SPDBUS(AL+KPT+EPOX)$",0.19509E+02,0.96502E+01,0.19060E+01,0.15413E+02,0.99900E+03);
5552     AliMixture(76,"SPDBUS(AL+KPT+EPOX)$",aSPDbus,zSPDbus,dSPDbus,5,wSPDbus);
5553     AliMedium(76,"SPDBUS(AL+KPT+EPOX)$",76,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5554                
5555     AliMixture(77,"SDD X7R capacitors$",aX7R,zX7R,dX7R,7,wX7R);
5556     AliMedium(77,"SDD X7R capacitors$",77,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5557
5558     AliMixture(78,"SDD ruby sph. Al2O3$",aAlOxide,zAlOxide,dAlOxide,2,wAlOxide);
5559     AliMedium(78,"SDD ruby sph. Al2O3$",78,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5560
5561     AliMaterial(79,"SDD SI insensitive$",0.28086E+02,0.14000E+02,0.23300E+01,0.93600E+01,0.99900E+03);
5562     AliMedium(79,"SDD SI insensitive$",79,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5563
5564     AliMixture(80,"SDD HV microcable$",aHVm,zHVm,dHVm,5,wHVm);
5565     AliMedium(80,"SDD HV microcable$",80,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5566
5567     AliMixture(81,"SDD LV+signal cable$",aLVm,zLVm,dLVm,5,wLVm);
5568     AliMedium(81,"SDD LV+signal cable$",81,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5569
5570     AliMixture(82,"SDD hybrid microcab$",aHLVm, zHLVm,dHLVm,5,wHLVm);
5571     AliMedium(82,"SDD hybrid microcab$",82,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5572
5573     AliMixture(83,"SDD anode microcab$",aALVm,zALVm,dALVm,5,wALVm);
5574     AliMedium(83,"SDD anode microcab$",83,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5575     Float_t aDSring[4]={12.0107,      1.00794,     14.0067,      15.9994};
5576     Float_t zDSring[4]={ 6.,          1.,           7.,           8.};
5577     Float_t wDSring[4]={ 0.854323888, 0.026408778,  0.023050265,  0.096217069};
5578     Float_t dDSring = 0.2875;
5579     AliMixture(84,"SDD/SSD rings$",aDSring,zDSring,dDSring,4,wDSring);
5580     AliMedium(84,"SDD/SSD rings$",84,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5581
5582     AliMixture(85,"inox/alum$",aInAl,zInAl,dInAl,5,wInAl);
5583     AliMedium(85,"inox/alum$",85,0,ifield,fieldm,tmaxfd,stemax,deemax,epsil,stmin);
5584
5585     // special media to take into account services in the SDD and SSD 
5586     // cones for the FMD
5587     //Begin_Html
5588     /*
5589       <A HREF="http://www.Physics.ohio-state.edu/~nilsen/ITS/ITS_MatBudget_4B.xls">
5590       </pre>
5591       <br clear=left>
5592       <font size=+2 color=blue>
5593       <p> The Exel spread sheet from which these density number come from.
5594       </font></A>
5595     */
5596     //End_Html
5597
5598     //  AliMaterial(86,"AIRFMDSDD$",0.14610E+02,0.73000E+01,0.12050E-02,0.30423E+05,0.99900E+03);
5599     Float_t aA[13],zZ[13],wW[13],den;
5600     // From Pierluigi Barberis calculations of 2SPD+1SDD October 2 2002.
5601     zZ[0] = 1.0; aA[0] = 1.00794; // Hydrogen
5602     zZ[1] = 6.0; aA[1] = 12.011; // Carbon
5603     zZ[2] = 7.0; aA[2] = 14.00674; // Nitrogen
5604     zZ[3] = 8.0; aA[3] = 15.9994; // Oxigen
5605     zZ[4] = 14.0; aA[4] = 28.0855; // Silicon
5606     zZ[5] = 24.0; aA[5] = 51.9961; //Cromium
5607     zZ[6] = 25.0; aA[6] = 54.938049; // Manganese
5608     zZ[7] = 26.0; aA[7] = 55.845; // Iron
5609     zZ[8] = 28.0; aA[8] = 58.6934; // Nickle
5610     zZ[9] = 29.0; aA[9] = 63.546; // Copper
5611     zZ[10] = 13.0; aA[10] = 26.981539; // Alulminum
5612     zZ[11] = 47.0; aA[11] = 107.8682; // Silver
5613     zZ[12] = 27.0; aA[12] = 58.9332; // Cobolt
5614     wW[0] = 0.019965;
5615     wW[1] = 0.340961;
5616     wW[2] = 0.041225;
5617     wW[3] = 0.200352;
5618     wW[4] = 0.000386;
5619     wW[5] = 0.001467;
5620     wW[6] = 0.000155;
5621     wW[7] = 0.005113;
5622     wW[8] = 0.000993;
5623     wW[9] = 0.381262;
5624     wW[10] = 0.008121;
5625     wW[11] = 0.000000;
5626     wW[12] = 0.000000;
5627     if(fByThick){// New values seeITS_MatBudget_4B.xls
5628         den = 1.5253276; // g/cm^3  Cell O370
5629     }else{
5630         den = 2.58423412; // g/cm^3 Cell L370
5631     } // end if fByThick
5632     //den = 6161.7/(3671.58978);//g/cm^3 Volume does not exclude holes
5633     AliMixture(86,"AIRFMDSDD$",aA,zZ,den,+11,wW);
5634     AliMedium(86,"AIRFMDSDD$",86,0,ifield,fieldm,tmaxfdAir,stemaxAir,
5635               deemaxAir,epsilAir,stminAir);
5636
5637     //AliMaterial(87,"AIRFMDSSD$",0.14610E+02,0.73000E+01,0.12050E-02,0.30423E+05,0.99900E+03);
5638     // From Pierluigi Barberis calculations of SSD October 2 2002.
5639     wW[0] = 0.019777;
5640     wW[1] = 0.325901;
5641     wW[2] = 0.031848;
5642     wW[3] = 0.147668;
5643     wW[4] = 0.030609;
5644     wW[5] = 0.013993;
5645     wW[6] = 0.001479;
5646     wW[7] = 0.048792;
5647     wW[8] = 0.009477;
5648     wW[9] = 0.350697;
5649     wW[10] = 0.014546;
5650     wW[11] = 0.005213;
5651     wW[12] = 0.000000;
5652     if(fByThick){// New values seeITS_MatBudget_4B.xls
5653         den = 1.2464275; // g/cm^3   Cell O403
5654     }else{
5655         den = 1.28134409; // g/cm^3  Cell L403
5656     } // end if fByThick
5657     //den = 7666.3/(9753.553259); // volume does not exclude holes
5658     AliMixture(87,"AIRFMDSSD$",aA,zZ,den,+12,wW); 
5659     AliMedium(87,"AIRFMDSSD$",87,0,ifield,fieldm,tmaxfdAir,stemaxAir,
5660               deemaxAir,epsilAir,stminAir);
5661
5662     //AliMaterial(88,"ITS SANDW CFMDSDD$",0.12011E+02,0.60000E+01,0.41000E+00,0.90868E+02,0.99900E+03);
5663     // From Pierluigi Barberis calculations of 1SDD+Carbon fiber October 2 2002
5664     wW[0] = 0.016302;
5665     wW[1] = 0.461870;
5666     wW[2] = 0.033662;
5667     wW[3] = 0.163595;
5668     wW[4] = 0.000315;
5669     wW[5] = 0.001197;
5670     wW[6] = 0.000127;
5671     wW[7] = 0.004175;
5672     wW[8] = 0.000811;
5673     wW[9] = 0.311315;
5674     wW[10] = 0.006631;
5675     wW[11] = 0.000000;
5676     wW[12] = 0.000000;
5677     if(fByThick){// New values seeITS_MatBudget_4B.xls
5678         den = 1.9353276; // g/cm^3  Cell N370
5679     }else{
5680         den = 3.2788626; // g/cm^3 Cell F370
5681     } // end if fByThick
5682     //den = 7667.1/(3671.58978); // Volume does not excludeholes
5683     AliMixture(88,"ITS SANDW CFMDSDD$",aA,zZ,den,+11,wW); 
5684     AliMedium(88,"ITS SANDW CFMDSDD$",88,0,ifield,fieldm,tmaxfd,stemax,
5685               deemax,epsil,stmin);
5686
5687     //AliMaterial(89,"ITS SANDW CFMDSSD$",0.12011E+02,0.60000E+01,0.41000E+00,0.90868E+02,0.99900E+03);
5688     // From Pierluigi Barberis calculations of SSD+Carbon fiber October 2 2002.
5689     wW[0] = 0.014065;
5690     wW[1] = 0.520598;
5691     wW[2] = 0.022650;
5692     wW[3] = 0.105018;
5693     wW[4] = 0.021768;
5694     wW[5] = 0.009952;
5695     wW[6] = 0.001051;
5696     wW[7] = 0.034700;
5697     wW[8] = 0.006740;
5698     wW[9] = 0.249406;
5699     wW[10] = 0.010345;
5700     wW[11] = 0.0003707;
5701     wW[12] = 0.000000;
5702     if(fByThick){// New values seeITS_MatBudget_4B.xls
5703         den = 1.6564275; // g/cm^3  Cell N304
5704     }else{
5705         den = 1.7028296; // g/cm^3  Cell F304
5706     } // end if fByThick
5707     //den = 1166.5/(3671.58978); // Volume does not exclude holes
5708     AliMixture(89,"ITS SANDW CFMDSSD$",aA,zZ,den,+12,wW); 
5709     AliMedium(89,"ITS SANDW CFMDSSD$",89,0,ifield,fieldm,tmaxfd,stemax,
5710               deemax,epsil,stmin);
5711
5712     //AliMaterial(97,"SPD SERVICES$",0.12011E+02,0.60000E+01,0.41000E+00,0.90868E+02,0.99900E+03);
5713     // From Pierluigi Barberis calculations of 1SPD October 2 2002.
5714     wW[0] = 0.005970;
5715     wW[1] = 0.304704;
5716     wW[2] = 0.042510;
5717     wW[3] = 0.121715;
5718     wW[4] = 0.001118;
5719     wW[5] = 0.030948;
5720     wW[6] = 0.003270;
5721     wW[7] = 0.107910;
5722     wW[8] = 0.020960;
5723     wW[9] = 0.360895;
5724     wW[10] = 0.000000;
5725     wW[11] = 0.000000;
5726     wW[12] = 0.000000;
5727     if(fByThick){// New values seeITS_MatBudget_4B.xls
5728         den = 80.31136576; // g/cm^3 Cell H329
5729     }else{
5730         den = 87.13062; // g/cm^3  Cell G329
5731     } // end if fByThick
5732     //den = 1251.3/(0.05*2.0*TMath::Pi()*(7.75*7.75 - 3.7*3.7)); // g/cm^3
5733     AliMixture(97,"SPD SERVICES$",aA,zZ,den,+10,wW); 
5734     AliMedium(97,"SPD SERVICES$",97,0,ifield,fieldm,tmaxfd,stemax,
5735               deemax,epsil,stmin);
5736
5737
5738     // Special media
5739
5740     AliMaterial(90,"SPD shield$", 12.011, 6., 1.93/10. , 22.1*10., 999);
5741     AliMedium(90,"SPD shield$",90,0,ifield,fieldm,tmaxfdServ,stemaxServ,deemaxServ,epsilServ,stminServ);
5742
5743     // SPD End Ladder (data from Petra Riedler)
5744     Float_t aSPDel[5] = {1.00794,12.0107,14.01,15.9994,63.54 };
5745     Float_t zSPDel[5] = {1.,6.,7.,8.,29.};
5746     Float_t wSPDel[5] = {0.004092,0.107274,0.011438,0.032476,0.844719};
5747     Float_t dSPDel    = 3.903403;
5748
5749     //   AliMaterial(91, "SPD End ladder$", 47.0447, 21.7963, 3.6374, 4.4711, 999); 
5750     AliMixture(91,"SPD End ladder$",aSPDel,zSPDel,dSPDel,5,wSPDel);
5751     AliMedium(91,"SPD End ladder$",91,0,ifield,fieldm,tmaxfdServ,stemaxServ,deemaxServ,epsilServ,stminServ);
5752
5753     AliMaterial(92, "SPD cone$",28.0855, 14., 2.33, 9.36, 999);    
5754     AliMedium(92,"SPD cone$",92,0,ifield,fieldm,tmaxfdServ,stemaxServ,deemaxServ,epsilServ,stminServ);
5755     /*  Material with fractional Z not actually used
5756     AliMaterial(93, "SDD End ladder$", 69.9298, 29.8246, 0.3824, 36.5103, 999);
5757     AliMedium(93,"SDD End ladder$",93,0,ifield,fieldm,tmaxfdServ,stemaxServ,deemaxServ,epsilServ,stminServ);
5758     */
5759     AliMaterial(94, "SDD cone$",63.546, 29., 1.15, 1.265, 999);
5760     AliMedium(94,"SDD cone$",94,0,ifield,fieldm,tmaxfdServ,stemaxServ,deemaxServ,epsilServ,stminServ);
5761     /* Material with fractional Z not actually used
5762     AliMaterial(95, "SSD End ladder$", 32.0988, 15.4021, 0.68, 35.3238, 999); 
5763     AliMedium(95,"SSD End ladder$",95,0,ifield,fieldm,tmaxfdServ,stemaxServ,deemaxServ,epsilServ,stminServ);
5764     */
5765     AliMaterial(96, "SSD cone$",63.546, 29., 1.15, 1.265, 999);
5766     AliMedium(96,"SSD cone$",96,0,ifield,fieldm,tmaxfdServ,stemaxServ,deemaxServ,epsilServ,stminServ);
5767 }
5768 //______________________________________________________________________
5769 void AliITSvPPRasymmFMD::InitAliITSgeom(){
5770     //     Based on the geometry tree defined in Geant 3.21, this
5771     // routine initilizes the Class AliITSgeom from the Geant 3.21 ITS geometry
5772     // sturture.
5773     // Inputs:
5774     //   none.
5775     // Outputs:
5776     //   none.
5777     // Return:
5778     //   none.
5779     const Int_t knlayers = 6;
5780     const Int_t kndeep = 3;
5781     const AliITSDetector kidet[knlayers]={kSPD,kSPD,kSDD,kSDD,kSSD,kSSD};
5782     const TString knames[2][knlayers] = {
5783      {"/ALIC_1/ITSV_1/ITSD_1/IT12_1/I12A_%d/I10A_%d/I103_%d/I101_1/ITS1_1", // lay=1
5784       "/ALIC_1/ITSV_1/ITSD_1/IT12_1/I12A_%d/I20A_%d/I1D3_%d/I1D1_1/ITS2_1", // lay=2
5785       "/ALIC_1/ITSV_1/ITSD_1/IT34_1/I004_%d/I302_%d/ITS3_%d", // lay=3
5786       "/ALIC_1/ITSV_1/ITSD_1/IT34_1/I005_%d/I402_%d/ITS4_%d", // lay=4
5787       "/ALIC_1/ITSV_1/ITSD_1/IT56_1/I565_%d/I562_%d/ITS5_%d", // lay=5
5788       "/ALIC_1/ITSV_1/ITSD_1/IT56_1/I569_%d/I566_%d/ITS6_%d"},// lay=6
5789      {"/ALIC_1/ITSV_1/ITSD_1/IT12_1/I12B_%d/I10B_%d/I107_%d/I101_1/ITS1_1", // lay=1
5790       "/ALIC_1/ITSV_1/ITSD_1/IT12_1/I12B_%d/I20B_%d/I1D7_%d/I1D1_1/ITS2_1", // lay=2
5791       "/ALIC_1/ITSV_1/ITSD_1/IT34_1/I004_%d/I302_%d/ITS3_%d", // lay=3
5792       "/ALIC_1/ITSV_1/ITSD_1/IT34_1/I005_%d/I402_%d/ITS4_%d", // lay=4
5793       "/ALIC_1/ITSV_1/ITSD_1/IT56_1/I565_%d/I562_%d/ITS5_%d", // lay=5
5794       "/ALIC_1/ITSV_1/ITSD_1/IT56_1/I569_%d/I566_%d/ITS6_%d"}
5795     };
5796     const Int_t kitsGeomTreeCopys[knlayers][kndeep]= {{10, 2, 4},// lay=1
5797                                                      {10, 4, 4},// lay=2
5798                                                      {14, 6, 1},// lay=3
5799                                                      {22, 8, 1},// lay=4
5800                                                      {34,22, 1},// lay=5
5801                                                      {38,25, 1}};//lay=6
5802     Int_t       nlad[knlayers],ndet[knlayers];
5803     Int_t       mod,lay,lad=0,det=0,i,j,k,cp0,cp1,cp2;
5804     TString path,shapeName;
5805     TGeoHMatrix materix;
5806     Double_t trans[3]={3*0.0},rot[10]={9*0.0,1.0};
5807     TArrayD shapePar;
5808     TArrayF shapeParF;
5809     Bool_t shapeDefined[3]={kFALSE,kFALSE,kFALSE};
5810
5811     AliDebug(1,"Reading Geometry transformation directly from Modler.");
5812     mod = 0;
5813     for(i=0;i<knlayers;i++){
5814         k = 1;
5815         for(j=0;j<kndeep;j++) if(kitsGeomTreeCopys[i][j]!=0)
5816             k *= TMath::Abs(kitsGeomTreeCopys[i][j]);
5817         mod += k;
5818     } // end for i
5819
5820     SetITSgeom(0);
5821     nlad[0]=20;nlad[1]=40;nlad[2]=14;nlad[3]=22;nlad[4]=34;nlad[5]=38;
5822     ndet[0]= 4;ndet[1]= 4;ndet[2]= 6;ndet[3]= 8;ndet[4]=22;ndet[5]=25;
5823     AliITSgeom* geom = new AliITSgeom(0,6,nlad,ndet,mod);
5824     SetITSgeom(geom);
5825     mod = 0;
5826     for(lay=1;lay<=knlayers;lay++){
5827         for(cp0=1;cp0<=kitsGeomTreeCopys[lay-1][0];cp0++){
5828             for(cp1=1;cp1<=kitsGeomTreeCopys[lay-1][1];cp1++){
5829                 for(cp2=1;cp2<=kitsGeomTreeCopys[lay-1][2];cp2++){
5830                     path.Form(knames[fMinorVersion-1][lay-1].Data(),
5831                               cp0,cp1,cp2);
5832                     switch (lay){
5833                     case 1:{
5834                         det = cp2;
5835                         lad = cp1+2*(cp0-1);
5836                     }break;
5837                     case 2:{
5838                         det = cp2;
5839                         lad = cp1+4*(cp0-1);
5840                     } break;
5841                     case 3: case 4: case 5: case 6:{
5842                         det = cp1;
5843                         lad = cp0;
5844                     } break;
5845                     } // end switch
5846                          //AliInfo(Form("path=%s lay=%d lad=%d det=%d",
5847                          //             path.Data(),lay,lad,det));
5848                     gMC->GetTransformation(path.Data(),materix);
5849                     gMC->GetShape(path.Data(),shapeName,shapePar);
5850                     shapeParF.Set(shapePar.GetSize());
5851                     for(i=0;i<shapePar.GetSize();i++) shapeParF[i]=shapePar[i];
5852                     geom->CreateMatrix(mod,lay,lad,det,kidet[lay-1],trans,rot);
5853                     geom->SetTrans(mod,materix.GetTranslation());
5854                     geom->SetRotMatrix(mod,materix.GetRotationMatrix());
5855                     geom->GetGeomMatrix(mod)->SetPath(path.Data());
5856                     switch (lay){
5857                     case 1: case 2:
5858                         if(!shapeDefined[kSPD]){
5859                         geom->ReSetShape(kSPD,new AliITSgeomSPD425Short(
5860                                 shapeParF.GetSize(),shapeParF.GetArray()));
5861                         shapeDefined[kSPD] = kTRUE;
5862                     }break;
5863                     case 3: case 4:
5864                         if(!shapeDefined[kSDD]){
5865                         geom->ReSetShape(kSDD,new AliITSgeomSDD256(
5866                                 shapeParF.GetSize(),shapeParF.GetArray()));
5867                         shapeDefined[kSDD] = kTRUE;
5868                     }break;
5869                     case 5: case 6:
5870                         if(!shapeDefined[kSSD]){
5871                         geom->ReSetShape(kSSD,new AliITSgeomSSD75and275(
5872                                 shapeParF.GetSize(),shapeParF.GetArray()));
5873                         shapeDefined[kSSD] = kTRUE;
5874                     }break;
5875                     default:{
5876                     }break;
5877                     } // end switch
5878                     mod++;
5879                 } /// end for cp2
5880             } // end for cp1
5881         } // end for cp0
5882     } // end for lay
5883     return;
5884 }
5885 //______________________________________________________________________
5886 void AliITSvPPRasymmFMD::Init(){
5887     //     Initialise the ITS after it has been created.
5888     // Inputs:
5889     //   none.
5890     // Outputs:
5891     //   none.
5892     // Return:
5893     //   none.
5894
5895     AliDebug(1,Form("Init: Major version %d Minor version %d",fMajorVersion,
5896                  fMinorVersion));
5897     //
5898     /*  obsolete initialization of AliITSgeom from external "det" file
5899     if(fRead[0]=='\0') strncpy(fRead,fEuclidGeomDet,60);
5900     if(fWrite[0]=='\0') strncpy(fWrite,fEuclidGeomDet,60);
5901     AliITSgeom* geom = new AliITSgeom();
5902     SetITSgeom(geom);
5903     if(fGeomDetIn) GetITSgeom()->ReadNewFile(fRead);
5904     else this->InitAliITSgeom();
5905     */
5906     UpdateInternalGeometry();
5907     AliITS::Init();
5908     if(fGeomDetOut) GetITSgeom()->WriteNewFile(fWrite);
5909
5910     //
5911     fIDMother = gMC->VolId("ITSV"); // ITS Mother Volume ID.
5912 }
5913 //______________________________________________________________________
5914 void AliITSvPPRasymmFMD::SetDefaults(){
5915     // sets the default segmentation, response, digit and raw cluster classes
5916     // Inputs:
5917     //   none.
5918     // Outputs:
5919     //   none.
5920     // Return:
5921     //   none.
5922
5923     const Float_t kconv = 1.0e+04; // convert cm to microns
5924
5925     if(!fDetTypeSim){
5926         Warning("SetDefaults","Error fDetTypeSim not defined");
5927         return;
5928     }
5929
5930     AliITSgeomSPD  *s0;
5931     AliITSgeomSDD  *s1;
5932     AliITSgeomSSD  *s2;
5933     Int_t i;
5934     Float_t bx[256],bz[280];
5935
5936     fDetTypeSim->SetDefaults();
5937     
5938     //SPD
5939     s0 = (AliITSgeomSPD*) GetITSgeom()->GetShape(kSPD);
5940     // Get shape info. Do it this way for now.
5941     //AliITSCalibrationSPD* resp0=new AliITSCalibrationSPD();
5942     AliITSsegmentationSPD* seg0 = 
5943         (AliITSsegmentationSPD*)fDetTypeSim->GetSegmentationModel(0);
5944     seg0->SetDetSize(s0->GetDx()*2.*kconv, // base this on AliITSgeomSPD
5945                      s0->GetDz()*2.*kconv, // for now.
5946                      s0->GetDy()*2.*kconv); // x,z,y full width in microns.
5947     seg0->SetNPads(256,160);// Number of Bins in x and z
5948     for(i=000;i<256;i++) bx[i] =  50.0; // in x all are 50 microns.
5949     for(i=000;i<160;i++) bz[i] = 425.0; // most are 425 microns except below
5950     for(i=160;i<280;i++) bz[i] =   0.0; // Outside of detector.
5951     bz[ 31] = bz[ 32] = 625.0; // first chip boundry
5952     bz[ 63] = bz[ 64] = 625.0; // first chip boundry
5953     bz[ 95] = bz[ 96] = 625.0; // first chip boundry
5954     bz[127] = bz[128] = 625.0; // first chip boundry
5955     bz[160] = 425.0; // Set so that there is no zero pixel size for fNz.
5956     seg0->SetBinSize(bx,bz); // Based on AliITSgeomSPD for now.
5957     SetSegmentationModel(kSPD,seg0);
5958     // set digit and raw cluster classes to be used
5959     const char *kData0=(fDetTypeSim->GetCalibrationModel(
5960                             GetITSgeom()->GetStartSPD()))->DataType();
5961     if (strstr(kData0,"real")) fDetTypeSim->SetDigitClassName(kSPD,
5962                                                               "AliITSdigit");
5963     else fDetTypeSim->SetDigitClassName(kSPD,"AliITSdigitSPD");
5964     // SDD
5965     s1 = (AliITSgeomSDD*) GetITSgeom()->GetShape(kSDD);
5966     // Get shape info. Do it this way for now.
5967
5968     //AliITSCalibrationSDD* resp1=new AliITSCalibrationSDD("simulated");
5969     AliITSsegmentationSDD* seg1 = 
5970         (AliITSsegmentationSDD*)fDetTypeSim->GetSegmentationModel(1);
5971     seg1->SetDetSize(s1->GetDx()*kconv, // base this on AliITSgeomSDD
5972                      s1->GetDz()*2.*kconv, // for now.
5973                      s1->GetDy()*2.*kconv); // x,z,y full width in microns.
5974     seg1->SetNPads(256,256);// Use AliITSgeomSDD for now
5975     SetSegmentationModel(kSDD,seg1);
5976     const char *kData1=(fDetTypeSim->GetCalibrationModel(
5977                             GetITSgeom()->GetStartSDD()))->DataType();
5978     AliITSCalibrationSDD* rsp = 
5979         (AliITSCalibrationSDD*)fDetTypeSim->GetCalibrationModel(
5980             GetITSgeom()->GetStartSDD());
5981     const char *kopt=rsp->GetZeroSuppOption();
5982     if((!strstr(kopt,"2D")) && (!strstr(kopt,"1D")) || strstr(kData1,"real") ){
5983         fDetTypeSim->SetDigitClassName(kSDD,"AliITSdigit");
5984     } else fDetTypeSim->SetDigitClassName(kSDD,"AliITSdigitSDD");
5985     // SSD  Layer 5
5986
5987     s2 = (AliITSgeomSSD*) GetITSgeom()->GetShape(kSSD);
5988     // Get shape info. Do it this way for now.
5989
5990
5991     //SetCalibrationModel(GetITSgeom()->GetStartSSD(),
5992     // new AliITSCalibrationSSD("simulated"));
5993     AliITSsegmentationSSD* seg2 = 
5994         (AliITSsegmentationSSD*)fDetTypeSim->GetSegmentationModel(2);
5995     seg2->SetDetSize(s2->GetDx()*2.*kconv, // base this on AliITSgeomSSD
5996                      s2->GetDz()*2.*kconv, // for now.
5997                      s2->GetDy()*2.*kconv); // x,z,y full width in microns.
5998     seg2->SetPadSize(95.,0.); // strip x pitch in microns
5999     seg2->SetNPads(768,0); // number of strips on each side.
6000     seg2->SetAngles(0.0075,0.0275); // strip angels rad P and N side.
6001     seg2->SetAnglesLay5(0.0075,0.0275); // strip angels rad P and N side.
6002     seg2->SetAnglesLay6(0.0275,0.0075); // strip angels rad P and N side.
6003     SetSegmentationModel(kSSD,seg2); 
6004         const char *kData2=(fDetTypeSim->GetCalibrationModel(
6005                                 GetITSgeom()->GetStartSSD()))->DataType();
6006     if(strstr(kData2,"real") ) fDetTypeSim->SetDigitClassName(kSSD,
6007                                                               "AliITSdigit");
6008     else fDetTypeSim->SetDigitClassName(kSSD,"AliITSdigitSSD");
6009     if(fgkNTYPES>3){
6010         Warning("SetDefaults",
6011                 "Only the four basic detector types are initialised!");
6012     }// end if
6013     return;
6014 }
6015 //______________________________________________________________________
6016 void AliITSvPPRasymmFMD::DrawModule() const{
6017     //     Draw a shaded view of the FMD version 10.
6018     // Inputs:
6019     //   none.
6020     // Outputs:
6021     //   none.
6022     // Return:
6023     //   none.
6024
6025     // Set everything unseen
6026     gMC->Gsatt("*", "seen", -1);
6027     // 
6028     // Set ALIC mother visible
6029     gMC->Gsatt("ALIC","SEEN",0);
6030     //
6031     // Set the volumes visible
6032     gMC->Gsatt("ITSD","SEEN",0);
6033     gMC->Gsatt("ITS1","SEEN",1);
6034     gMC->Gsatt("ITS2","SEEN",1);
6035     gMC->Gsatt("ITS3","SEEN",1);
6036     gMC->Gsatt("ITS4","SEEN",1);
6037     gMC->Gsatt("ITS5","SEEN",1);
6038     gMC->Gsatt("ITS6","SEEN",1);
6039     //
6040     gMC->Gsatt("IPCB","SEEN",1);
6041     gMC->Gsatt("ICO2","SEEN",1);
6042     gMC->Gsatt("ICER","SEEN",0);
6043     gMC->Gsatt("ISI2","SEEN",0);
6044     gMC->Gsatt("IPLA","SEEN",0);
6045     gMC->Gsatt("ICO3","SEEN",0);
6046     gMC->Gsatt("IEPX","SEEN",0);
6047     gMC->Gsatt("ISI3","SEEN",1);
6048     gMC->Gsatt("ISUP","SEEN",0);
6049     gMC->Gsatt("ICHO","SEEN",0);
6050     gMC->Gsatt("ICMO","SEEN",0);
6051     gMC->Gsatt("ICMD","SEEN",0);
6052     gMC->Gsatt("ICCO","SEEN",1);
6053     gMC->Gsatt("ICCM","SEEN",0);
6054     gMC->Gsatt("ITMD","SEEN",0);
6055     gMC->Gsatt("ITTT","SEEN",1);
6056     //
6057     gMC->Gdopt("hide", "on");
6058     gMC->Gdopt("shad", "on");
6059     gMC->Gsatt("*", "fill", 7);
6060     gMC->SetClipBox(".");
6061     gMC->SetClipBox("*", 0, 300, -300, 300, -300, 300);
6062     gMC->DefaultRange();
6063     gMC->Gdraw("alic", 40, 30, 0, 11, 10, .07, .07);
6064     gMC->Gdhead(1111, "Inner Tracking System Version 1");
6065     gMC->Gdman(17, 6, "MAN");
6066 }
6067 /*
6068 //______________________________________________________________________
6069 void AliITSvPPRasymmFMD::StepManager(){
6070     //    Called for every step in the ITS, then calles the AliITShit class
6071     // creator with the information to be recoreded about that hit.
6072     //     The value of the macro ALIITSPRINTGEOM if set to 1 will allow the
6073     // printing of information to a file which can be used to create a .det
6074     // file read in by the routine CreateGeometry(). If set to 0 or any other
6075     // value except 1, the default behavior, then no such file is created nor
6076     // it the extra variables and the like used in the printing allocated.
6077     // Inputs:
6078     //   none.
6079     // Outputs:
6080     //   none.
6081     // Return:
6082     //   none.
6083
6084     Int_t         copy, id;
6085     TLorentzVector position, momentum;
6086     static TLorentzVector position0;
6087     static Int_t stat0=0;
6088
6089     if(!(this->IsActive())){
6090         return;
6091     } // end if !Active volume.
6092
6093     if(!(gMC->TrackCharge())) return;
6094
6095     id=gMC->CurrentVolID(copy);
6096
6097     Bool_t sensvol = kFALSE;
6098     for(Int_t kk=0;kk<6;kk++)if(id == fIdSens[kk])sensvol=kTRUE;
6099     if(sensvol && (gMC->IsTrackExiting())){
6100         copy = fTrackReferences->GetEntriesFast();
6101         TClonesArray &lTR = *fTrackReferences;
6102         // Fill TrackReference structure with this new TrackReference.
6103         new(lTR[copy]) AliTrackReference(gAlice->GetMCApp()->GetCurrentTrackNumber());
6104     } // if Outer ITS mother Volume
6105
6106
6107     Int_t   copy1,copy2;  
6108     Int_t   vol[5];
6109     TClonesArray &lhits = *fHits;
6110     //
6111     // Track status
6112     vol[3] = 0;
6113     vol[4] = 0;
6114     if(gMC->IsTrackInside())      vol[3] +=  1;
6115     if(gMC->IsTrackEntering())    vol[3] +=  2;
6116     if(gMC->IsTrackExiting())     vol[3] +=  4;
6117     if(gMC->IsTrackOut())         vol[3] +=  8;
6118     if(gMC->IsTrackDisappeared()) vol[3] += 16;
6119     if(gMC->IsTrackStop())        vol[3] += 32;
6120     if(gMC->IsTrackAlive())       vol[3] += 64;
6121     //
6122     // Fill hit structure.
6123     if(!(gMC->TrackCharge())) return;
6124     //
6125     // Only entering charged tracks
6126     if((id = gMC->CurrentVolID(copy)) == fIdSens[0]) {
6127         vol[0] = 1;
6128         id = gMC->CurrentVolOffID(2,copy);
6129         //detector copy in the ladder = 1<->4  (ITS1 < I101 < I103 < I10A)
6130         vol[1] = copy;
6131         gMC->CurrentVolOffID(3,copy1);
6132         //ladder copy in the module   = 1<->2  (I10A < I12A)
6133         gMC->CurrentVolOffID(4,copy2);
6134         //module copy in the layer    = 1<->10 (I12A < IT12)
6135         vol[2] = copy1+(copy2-1)*2;//# of ladders in one module  = 2
6136     } else if(id == fIdSens[1]){
6137         vol[0] = 2;
6138         id = gMC->CurrentVolOffID(2,copy);
6139         //detector copy in the ladder = 1<->4  (ITS2 < I1D1 < I1D3 < I20A)
6140         vol[1] = copy;
6141         gMC->CurrentVolOffID(3,copy1);
6142         //ladder copy in the module   = 1<->4  (I20A < I12A)
6143         gMC->CurrentVolOffID(4,copy2);
6144         //module copy in the layer    = 1<->10 (I12A < IT12)
6145         vol[2] = copy1+(copy2-1)*4;//# of ladders in one module  = 4
6146     } else if(id == fIdSens[2]){
6147         vol[0] = 3;
6148         id = gMC->CurrentVolOffID(1,copy);
6149         //detector copy in the ladder = 1<->6  (ITS3 < I302 < I004)
6150         vol[1] = copy;
6151         id = gMC->CurrentVolOffID(2,copy);
6152         //ladder copy in the layer    = 1<->14 (I004 < IT34)
6153         vol[2] = copy;
6154     } else if(id == fIdSens[3]){
6155         vol[0] = 4;
6156         id = gMC->CurrentVolOffID(1,copy);
6157         //detector copy in the ladder = 1<->8  (ITS4 < I402 < I005)
6158         vol[1] = copy;
6159         id = gMC->CurrentVolOffID(2,copy);
6160         //ladder copy in the layer    = 1<->22 (I005 < IT34))
6161         vol[2] = copy;
6162     }else if(id == fIdSens[4]){
6163         vol[0] = 5;
6164         id = gMC->CurrentVolOffID(1,copy);
6165         //detector copy in the ladder = 1<->22  (ITS5 < I562 < I565)
6166         vol[1] = copy;
6167         id = gMC->CurrentVolOffID(2,copy);
6168         //ladder copy in the layer    = 1<->34 (I565 < IT56)
6169         vol[2] = copy;
6170     }else if(id == fIdSens[5]){
6171         vol[0] = 6;
6172         id = gMC->CurrentVolOffID(1,copy);
6173         //detector copy in the ladder = 1<->25  (ITS6 < I566 < I569)
6174         vol[1] = copy;
6175         id = gMC->CurrentVolOffID(2,copy);
6176         //ladder copy in the layer = 1<->38 (I569 < IT56)
6177         vol[2] = copy;
6178     } else {
6179         return; // not an ITS volume?
6180     } // end if/else if (gMC->CurentVolID(copy) == fIdSens[i])
6181     //
6182     gMC->TrackPosition(position);
6183     gMC->TrackMomentum(momentum);
6184     vol[4] = stat0;
6185     if(gMC->IsTrackEntering()){
6186         position0 = position;
6187         stat0 = vol[3];
6188         return;
6189     } // end if IsEntering
6190     // Fill hit structure with this new hit.
6191     
6192     new(lhits[fNhits++]) AliITShit(fIshunt,gAlice->GetMCApp()->GetCurrentTrackNumber(),vol,
6193                                    gMC->Edep(),gMC->TrackTime(),position,
6194                                    position0,momentum);
6195
6196     position0 = position;
6197     stat0 = vol[3];
6198
6199     return;
6200 }
6201
6202 */
6203 //______________________________________________________________________
6204 void AliITSvPPRasymmFMD::StepManager(){
6205     //    Called for every step in the ITS, then calles the AliITShit class
6206     // creator with the information to be recoreded about that hit.
6207     //     The value of the macro ALIITSPRINTGEOM if set to 1 will allow the
6208     // printing of information to a file which can be used to create a .det
6209     // file read in by the routine CreateGeometry(). If set to 0 or any other
6210     // value except 1, the default behavior, then no such file is created nor
6211     // it the extra variables and the like used in the printing allocated.
6212     // Inputs:
6213     //   none.
6214     // Outputs:
6215     //   none.
6216     // Return:
6217     //   none.
6218
6219     if(!(this->IsActive())) return;
6220     if(!(gMC->TrackCharge())) return;
6221
6222     Int_t  copy, id,kk;
6223     Bool_t sensvol = kFALSE;
6224
6225     id = gMC->CurrentVolID(copy);
6226     for(kk=0;kk<fIdN;kk++)if(id == fIdSens[kk]){
6227         sensvol=kTRUE;
6228         break;
6229     } // end for if
6230     if(sensvol && (gMC->IsTrackExiting())){
6231         copy = fTrackReferences->GetEntriesFast();
6232         TClonesArray &lTR = *fTrackReferences;
6233         // Fill TrackReference structure with this new TrackReference.
6234         new(lTR[copy]) AliTrackReference(
6235             gAlice->GetMCApp()->GetCurrentTrackNumber());
6236     } // if Outer ITS mother Volume
6237     //if(!sensvol) return; // not an ITS tracking volume;
6238
6239     static TLorentzVector position, momentum; // Saves on calls to construtors
6240     static AliITShit hit;// Saves on calls to construtors
6241     Int_t   cpn0,cpn1,cpn2,status,mod;
6242     //TClonesArray &lhits = *(GetDetTypeSim()->GetHits());
6243     TClonesArray &lhits = *(Hits());
6244     //
6245     // Track status
6246     status = 0;
6247     if(gMC->IsTrackInside())      status +=  1;
6248     if(gMC->IsTrackEntering())    status +=  2;
6249     if(gMC->IsTrackExiting())     status +=  4;
6250     if(gMC->IsTrackOut())         status +=  8;
6251     if(gMC->IsTrackDisappeared()) status += 16;
6252     if(gMC->IsTrackStop())        status += 32;
6253     if(gMC->IsTrackAlive())       status += 64;
6254     //
6255     switch (kk){
6256     case 0:case 1: // SPD
6257         gMC->CurrentVolOffID(2,cpn2);
6258         gMC->CurrentVolOffID(3,cpn1);
6259         gMC->CurrentVolOffID(4,cpn0);
6260         break;
6261     case 2:case 3: // SDD
6262         cpn2 = 1;
6263         gMC->CurrentVolOffID(1,cpn1);
6264         gMC->CurrentVolOffID(2,cpn0);
6265         break;
6266     case 4:case 5: // SSD
6267         cpn2 = 1;
6268         gMC->CurrentVolOffID(1,cpn1);
6269         gMC->CurrentVolOffID(2,cpn0);
6270         break;
6271     default:
6272         Error("StepManager","Unknown volume kk=%d",kk);
6273         return; // not an ITS sensitive volume.
6274     } //
6275     fIgm.DecodeDetector(mod,kk+1,cpn0,cpn1,cpn2);
6276     //Info("StepManager","lay=%d mod=%d cpn0=%d cpn1=%d cpn2=%d",kk+1,mod,cpn0,cpn1,cpn2);
6277     Int_t lay,lad,det,cpy0,cpy1,cpy2;
6278     fIgm.DecodeDetectorLayers(mod,lay,lad,det);
6279     fIgm.RecodeDetector(mod,cpy0,cpy1,cpy2);
6280     printf("gMC: kk=%d cpn0=%d cpn1=%d cpn2=%d -> mod=%d -> "
6281            "lay=%d lad=%d det=%d -> cpn0=%d cpn1=%d cpn2=%d\n",
6282            kk,cpn0,cpn1,cpn2,mod,lay,lad,det,cpy0,cpy1,cpy2);
6283     //
6284     // Fill hit structure.
6285     //
6286     hit.SetModule(mod);
6287     hit.SetTrack(gAlice->GetMCApp()->GetCurrentTrackNumber());
6288     gMC->TrackPosition(position);
6289     gMC->TrackMomentum(momentum);
6290     hit.SetPosition(position);
6291     hit.SetTime(gMC->TrackTime());
6292     hit.SetMomentum(momentum);
6293     hit.SetStatus(status);
6294     hit.SetEdep(gMC->Edep());
6295     hit.SetShunt(GetIshunt());
6296     if(gMC->IsTrackEntering()){
6297         hit.SetStartPosition(position);
6298         hit.SetStartTime(gMC->TrackTime());
6299         hit.SetStartStatus(status);
6300         return; // don't save entering hit.
6301     } // end if IsEntering
6302     // Fill hit structure with this new hit.
6303     //Info("StepManager","Calling Copy Constructor");
6304     new(lhits[fNhits++]) AliITShit(hit); // Use Copy Construtor.
6305     // Save old position... for next hit.
6306     hit.SetStartPosition(position);
6307     hit.SetStartTime(gMC->TrackTime());
6308     hit.SetStartStatus(status);
6309     //
6310     /*
6311     Int_t idettype,ix,iz;
6312     Float_t lx,lz;
6313     Double_t g0[4],l0[4],g1[4];
6314     position.GetXYZT(g0);
6315     gMC->Gmtod(g0,l0,1); // flag=1 convert coordiantes
6316     gMC->Gdtom(l0,g1,1); // flag=1 convert coordinates
6317     switch(idettype=(Int_t)GetITSgeom()->GetModuleType(mod)){
6318     case kSPD:
6319         AliITSsegmentationSPD *segspd = (AliITSsegmentationSPD *)GetSegmentationModelByModule(mod);
6320         segspd->LocalToDet((Float_t)l0[0],(Float_t)l0[2],ix,iz);
6321         segspd->DetToLocal(ix,iz,lx,lz);
6322         break;
6323     case kSDD:
6324         AliITSsegmentationSDD *segsdd = (AliITSsegmentationSDD *)GetSegmentationModelByModule(mod);
6325         segsdd->LocalToDet((Float_t)l0[0],(Float_t)l0[2],ix,iz);
6326         segsdd->DetToLocal(ix,iz,lx,lz);
6327         break;
6328     case kSSD:
6329         AliITSsegmentationSSD *segssd = (AliITSsegmentationSSD *)GetSegmentationModelByModule(mod);
6330         segssd->LocalToDet((Float_t)l0[0],(Float_t)l0[2],ix,iz);
6331         segssd->DetToLocal(ix,iz,lx,lz);
6332         break;
6333     default:
6334         ix = iz = -1;
6335         lx = lz = 0.0;
6336         Warning("StepManager","Unknown module type id=%d mod=%d",
6337                 (Int_t)(GetITSgeom()->GetModuleType(mod)),mod);
6338     } // end if
6339     printf("    gMC: mod=%d g=%g %g %g %g -> "
6340                            "l=%g %g %g %g -> "
6341                            "g=%g %g %g %g -> "
6342                            "ix=%d iz=%d -> lx=%g lz=%g\n",
6343            mod,g0[0],g0[1],g0[2],g0[3],
6344                l0[0],l0[1],l0[2],l0[3],
6345                g1[0],g1[1],g1[2],g1[3],ix,iz,lx,lz);
6346     GetITSgeom()->GtoL(mod,g0,l0);
6347     GetITSgeom()->LtoG(mod,l0,g1);
6348     printf("ITSgeom: mod=%d g=%g %g %g %g -> "
6349                            "l=%g %g %g %g -> "
6350                            "g=%g %g %g %g -> "
6351                            "ix=%d iz=%d -> lx=%g lz=%g\n",
6352            mod,g0[0],g0[1],g0[2],g0[3],
6353                l0[0],l0[1],l0[2],l0[3],
6354                g1[0],g1[1],g1[2],g1[3],ix,iz,lx,lz);
6355     TGeoNode *cur = gGeoManager->GetCurrentNode();
6356     cur->MasterToLocal(g0,l0);
6357     cur->LocalToMaster(l0,g1);
6358     printf("   TGeo: mod=%d g=%g %g %g %g -> "
6359                            "l=%g %g %g %g -> "
6360                            "g=%g %g %g %g\n",
6361            mod,g0[0],g0[1],g0[2],g0[3],
6362                l0[0],l0[1],l0[2],l0[3],
6363                g1[0],g1[1],g1[2],g1[3]);
6364     printf("=====================\n");
6365     //
6366     */
6367     return;
6368 }
6369 //______________________________________________________________________
6370 void AliITSvPPRasymmFMD::PrintAscii(ostream *os)const{
6371     // Print out class data values in Ascii Form to output stream
6372     // Inputs:
6373     //   ostream *os   Output stream where Ascii data is to be writen
6374     // Outputs:
6375     //   none.
6376     // Return:
6377     //   none.
6378 #if defined __GNUC__
6379 #if __GNUC__ > 2
6380     ios::fmtflags fmt;
6381 #else
6382     Int_t fmt;
6383 #endif
6384 #else
6385 #if defined __ICC || defined __ECC || defined __xlC__
6386     ios::fmtflags fmt;
6387 #else
6388     Int_t fmt;
6389 #endif
6390 #endif
6391
6392     *os << fGeomDetOut << " " << fGeomDetIn << " " << fByThick << " ";
6393     *os << fMajorVersion << " " << fMinorVersion << " ";
6394     *os << "\"" << fEuclidGeomDet.Data() << "\"" << " ";
6395     *os << "\"" << fRead.Data() << "\"" << " ";
6396     *os << "\"" << fWrite.Data() << "\"" << " ";
6397     fmt = os->setf(ios::scientific); // set scientific floating point output
6398     *os << fDet1 << " "  << fDet2 << " " << fChip1 << " " << fChip2 << " ";
6399     *os << fRails << " " << fFluid << " " << fIDMother;
6400     os->flags(fmt); // reset back to old Formating.
6401     return;
6402 }
6403 //______________________________________________________________________
6404 void AliITSvPPRasymmFMD::ReadAscii(istream *is){
6405     // Read in class data values in Ascii Form to output stream
6406     // Inputs:
6407     //   istream *is   Input stream where Ascii data is to be read in from
6408     // Outputs:
6409     //   none.
6410     // Return:
6411     //   none.
6412     Char_t name[120];
6413
6414     *is >> fGeomDetOut >> fGeomDetIn >> fByThick;
6415     *is >> fMajorVersion >> fMinorVersion;
6416     *is >> name;
6417     fEuclidGeomDet = name;
6418     *is >> name;
6419     fRead = name;
6420     *is >> name;
6421     fWrite = name;
6422     *is >> fDet1 >> fDet2 >> fChip1 >> fChip2;
6423     *is >> fRails >> fFluid >> fIDMother;
6424     fIgm.SetVersion((AliITSVersion_t)fMajorVersion,fMinorVersion);
6425     fIgm.SetGeometryName("ITS PPR aymmetric services with course"
6426                          " cables on cones");
6427 }
6428 //______________________________________________________________________
6429 ostream &operator<<(ostream &os,const AliITSvPPRasymmFMD &s){
6430     // Standard output streaming function
6431     // Inputs:
6432     //   ostream            &os  output steam
6433     //   AliITSvPPRasymmFMD &s class to be streamed.
6434     // Output:
6435     //   none.
6436     // Return:
6437     //   ostream &os  The stream pointer
6438
6439     s.PrintAscii(&os);
6440     return os;
6441 }
6442 //______________________________________________________________________
6443 istream &operator>>(istream &is,AliITSvPPRasymmFMD &s){
6444     // Standard inputput streaming function
6445     // Inputs:
6446     //   istream            &is  input steam
6447     //   AliITSvPPRasymmFMD &s class to be streamed.
6448     // Output:
6449     //   none.
6450     // Return:
6451     //   ostream &os  The stream pointer
6452
6453     s.ReadAscii(&is);
6454     return is;
6455 }