source: trunk/source/persistency/gdml/src/G4STRead.cc @ 1243

Last change on this file since 1243 was 1228, checked in by garnier, 14 years ago

update geant4.9.3 tag

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25//
26// $Id: G4STRead.cc,v 1.4 2009/04/24 15:34:20 gcosmo Exp $
27// GEANT4 tag $Name: geant4-09-03 $
28//
29// class G4STRead Implementation
30//
31// History:
32// - Created.                                  Zoltan Torzsok, November 2007
33// -------------------------------------------------------------------------
34
35#include <fstream>
36
37#include "G4STRead.hh"
38
39#include "G4Material.hh"
40#include "G4Box.hh"
41#include "G4QuadrangularFacet.hh"
42#include "G4TriangularFacet.hh"
43#include "G4TessellatedSolid.hh"
44#include "G4LogicalVolume.hh"
45#include "G4PVPlacement.hh"
46
47void G4STRead::TessellatedRead(const std::string& line)
48{
49   if (tessellatedList.size()>0)
50   {
51     tessellatedList.back()->SetSolidClosed(true);
52       // Finish the previous solid at first!
53   }
54
55   std::istringstream stream(line.substr(2));
56   
57   G4String name;
58   stream >> name;
59   
60   G4TessellatedSolid* tessellated = new G4TessellatedSolid(name);
61   volumeMap[tessellated] =
62     new G4LogicalVolume(tessellated, solid_material, name+"_LV" , 0, 0, 0);
63   tessellatedList.push_back(tessellated);
64
65   G4cout << "G4STRead: Reading solid: " << name << G4endl;
66}
67
68void G4STRead::FacetRead(const std::string& line)
69{
70   if (tessellatedList.size()==0)
71   {
72     G4Exception("G4STRead::FacetRead()", "ReadError", FatalException,
73                 "A solid must be defined before defining a facet!");
74   }
75
76   if (line[2]=='3')  // Triangular facet
77   {
78      G4double x1,y1,z1;
79      G4double x2,y2,z2;
80      G4double x3,y3,z3;
81     
82      std::istringstream stream(line.substr(4));
83      stream >> x1 >> y1 >> z1 >> x2 >> y2 >> z2 >> x3 >> y3 >> z3;
84      tessellatedList.back()->
85        AddFacet(new G4TriangularFacet(G4ThreeVector(x1,y1,z1),
86                                       G4ThreeVector(x2,y2,z2),
87                                       G4ThreeVector(x3,y3,z3), ABSOLUTE));
88   }
89   else if (line[2]=='4')  // Quadrangular facet
90   {
91      G4double x1,y1,z1;
92      G4double x2,y2,z2;
93      G4double x3,y3,z3;
94      G4double x4,y4,z4;
95
96      std::istringstream stream(line.substr(4));
97      stream >> x1 >> y1 >> z1 >> x2 >> y2 >> z2
98             >> x3 >> y3 >> z3 >> x4 >> y4 >> z4;
99      tessellatedList.back()->
100        AddFacet(new G4QuadrangularFacet(G4ThreeVector(x1,y1,z1),
101                                         G4ThreeVector(x2,y2,z2),
102                                         G4ThreeVector(x3,y3,z3),
103                                         G4ThreeVector(x4,y4,z4), ABSOLUTE));
104   }
105   else
106   {
107     G4Exception("G4STRead::FacetRead()", "ReadError", FatalException,
108                 "Number of vertices per facet should be either 3 or 4!");
109   }
110}
111
112void G4STRead::PhysvolRead(const std::string& line)
113{
114   G4int level;
115   G4String name;
116   G4double r1,r2,r3;
117   G4double r4,r5,r6;
118   G4double r7,r8,r9;
119   G4double pX,pY,pZ;
120   G4double n1,n2,n3,n4,n5;
121
122   std::istringstream stream(line.substr(2));
123   stream >> level >> name >> r1 >> r2 >> r3 >> n1 >> r4 >> r5 >> r6
124          >> n2 >> r7 >> r8 >> r9 >> n3 >> pX >> pY >> pZ >> n4 >> n5;
125
126   name.resize(name.rfind("_"));
127
128   G4cout << "G4STRead: Placing tessellated solid: " << name << G4endl;
129
130   G4TessellatedSolid* tessellated = 0;
131
132   for (size_t i=0; i<tessellatedList.size(); i++)
133   {                                    // Find the volume for this physvol!
134      if (tessellatedList[i]->GetName() == G4String(name))
135      {
136         tessellated = tessellatedList[i];
137         break;
138      }
139   }
140
141   if (tessellated == 0)
142   {
143     G4String error_msg = "Referenced solid '" + name + "' not found!";
144     G4Exception("G4STRead::PhysvolRead()", "ReadError",
145                 FatalException, error_msg);
146   }
147   if (volumeMap.find(tessellated) == volumeMap.end())
148   {
149     G4String error_msg = "Referenced solid '" + name
150                        + "' is not associated with a logical volume!";
151     G4Exception("G4STRead::PhysvolRead()", "InvalidSetup",
152                 FatalException, error_msg);
153   }
154   const G4RotationMatrix rot(G4ThreeVector(r1,r2,r3),
155                              G4ThreeVector(r4,r5,r6),
156                              G4ThreeVector(r7,r8,r9));
157   const G4ThreeVector pos(pX,pY,pZ);
158
159   new G4PVPlacement(G4Transform3D(rot.inverse(),pos),
160                     volumeMap[tessellated], name+"_PV", world_volume, 0, 0);
161     // Note: INVERSE of rotation is needed!!!
162
163   G4double minx,miny,minz;
164   G4double maxx,maxy,maxz;
165   const G4VoxelLimits limits;
166
167   tessellated->CalculateExtent(kXAxis,limits,
168                G4AffineTransform(rot,pos),minx,maxx);
169   tessellated->CalculateExtent(kYAxis,limits,
170                G4AffineTransform(rot,pos),miny,maxy);
171   tessellated->CalculateExtent(kZAxis,limits,
172                G4AffineTransform(rot,pos),minz,maxz);
173
174   if (world_extent.x() < std::fabs(minx))
175     { world_extent.setX(std::fabs(minx)); }
176   if (world_extent.y() < std::fabs(miny))
177     { world_extent.setY(std::fabs(miny)); }
178   if (world_extent.z() < std::fabs(minz))
179     { world_extent.setZ(std::fabs(minz)); }
180   if (world_extent.x() < std::fabs(maxx))
181     { world_extent.setX(std::fabs(maxx)); }
182   if (world_extent.y() < std::fabs(maxy))
183     { world_extent.setY(std::fabs(maxy)); }
184   if (world_extent.z() < std::fabs(maxz))
185     { world_extent.setZ(std::fabs(maxz)); }
186}
187
188void G4STRead::ReadGeom(const G4String& name)
189{
190   G4cout << "G4STRead: Reading '" << name << "'..." << G4endl;
191
192   std::ifstream GeomFile(name);
193   
194   if (!GeomFile)
195   {
196      G4String error_msg = "Cannot open file: " + name;
197      G4Exception("G4STRead::ReadGeom()", "ReadError",
198                  FatalException, error_msg);
199   }
200
201   tessellatedList.clear();
202   volumeMap.clear();
203   std::string line;
204   
205   while (getline(GeomFile,line))
206   {
207      if (line[0] == 'f') { TessellatedRead(line); } else
208      if (line[0] == 'p') { FacetRead(line); }
209   }
210
211   if (tessellatedList.size()>0)   // Finish the last solid!
212   {
213      tessellatedList.back()->SetSolidClosed(true);
214   }
215
216   G4cout << "G4STRead: Reading '" << name << "' done." << G4endl;
217}
218
219void G4STRead::ReadTree(const G4String& name)
220{
221   G4cout << "G4STRead: Reading '" << name << "'..." << G4endl;
222
223   std::ifstream TreeFile(name);
224
225   if (!TreeFile)
226   {
227      G4String error_msg = "Cannot open file: " + name;
228      G4Exception("G4STRead::ReadTree()", "ReadError",
229                  FatalException, error_msg);
230   }
231
232   std::string line;
233   
234   while (getline(TreeFile,line))
235   {
236      if (line[0] == 'g')  { PhysvolRead(line); }
237   }
238
239   G4cout << "G4STRead: Reading '" << name << "' done." << G4endl;
240}
241
242G4LogicalVolume*
243G4STRead::Read(const G4String& name, G4Material* mediumMaterial,
244                                     G4Material* solidMaterial)
245{
246   if (mediumMaterial == 0)
247   {
248     G4Exception("G4STRead::Read()", "InvalidSetup", FatalException,
249                 "Pointer to medium material is not valid!");
250   }
251   if (solidMaterial == 0)
252   {
253     G4Exception("G4STRead::Read()", "InvalidSetup", FatalException,
254                 "Pointer to solid material is not valid!");
255   }
256
257   solid_material = solidMaterial;
258
259   world_box = new G4Box("TessellatedWorldBox",kInfinity,kInfinity,kInfinity);
260     // We don't know the extent of the world yet!
261   world_volume = new G4LogicalVolume(world_box, mediumMaterial,
262                                      "TessellatedWorldLV", 0, 0, 0);
263   world_extent = G4ThreeVector(0,0,0);
264
265   ReadGeom(name+".geom");
266   ReadTree(name+".tree");
267
268   // Now setting the world extent ...
269   //
270   if (world_box->GetXHalfLength() > world_extent.x())
271     { world_box->SetXHalfLength(world_extent.x()); }
272   if (world_box->GetYHalfLength() > world_extent.y())
273     { world_box->SetYHalfLength(world_extent.y()); }
274   if (world_box->GetZHalfLength() > world_extent.z())
275     { world_box->SetZHalfLength(world_extent.z()); }
276
277   return world_volume;
278}
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