| [831] | 1 | //
|
|---|
| 2 | // ********************************************************************
|
|---|
| 3 | // * License and Disclaimer *
|
|---|
| 4 | // * *
|
|---|
| 5 | // * The Geant4 software is copyright of the Copyright Holders of *
|
|---|
| 6 | // * the Geant4 Collaboration. It is provided under the terms and *
|
|---|
| 7 | // * conditions of the Geant4 Software License, included in the file *
|
|---|
| 8 | // * LICENSE and available at http://cern.ch/geant4/license . These *
|
|---|
| 9 | // * include a list of copyright holders. *
|
|---|
| 10 | // * *
|
|---|
| 11 | // * Neither the authors of this software system, nor their employing *
|
|---|
| 12 | // * institutes,nor the agencies providing financial support for this *
|
|---|
| 13 | // * work make any representation or warranty, express or implied, *
|
|---|
| 14 | // * regarding this software system or assume any liability for its *
|
|---|
| 15 | // * use. Please see the license in the file LICENSE and URL above *
|
|---|
| 16 | // * for the full disclaimer and the limitation of liability. *
|
|---|
| 17 | // * *
|
|---|
| 18 | // * This code implementation is the result of the scientific and *
|
|---|
| 19 | // * technical work of the GEANT4 collaboration. *
|
|---|
| 20 | // * By using, copying, modifying or distributing the software (or *
|
|---|
| 21 | // * any work based on the software) you agree to acknowledge its *
|
|---|
| 22 | // * use in resulting scientific publications, and indicate your *
|
|---|
| 23 | // * acceptance of all terms of the Geant4 Software license. *
|
|---|
| 24 | // ********************************************************************
|
|---|
| 25 | //
|
|---|
| 26 | //
|
|---|
| [1337] | 27 | // $Id: G4Polyhedra.cc,v 1.43 2010/06/16 08:24:14 gcosmo Exp $
|
|---|
| 28 | // GEANT4 tag $Name: geant4-09-04-beta-01 $
|
|---|
| [831] | 29 | //
|
|---|
| 30 | //
|
|---|
| 31 | // --------------------------------------------------------------------
|
|---|
| 32 | // GEANT 4 class source file
|
|---|
| 33 | //
|
|---|
| 34 | //
|
|---|
| 35 | // G4Polyhedra.cc
|
|---|
| 36 | //
|
|---|
| 37 | // Implementation of a CSG polyhedra, as an inherited class of G4VCSGfaceted.
|
|---|
| 38 | //
|
|---|
| 39 | // To be done:
|
|---|
| 40 | // * Cracks: there are probably small cracks in the seams between the
|
|---|
| 41 | // phi face (G4PolyPhiFace) and sides (G4PolyhedraSide) that are not
|
|---|
| 42 | // entirely leakproof. Also, I am not sure all vertices are leak proof.
|
|---|
| 43 | // * Many optimizations are possible, but not implemented.
|
|---|
| 44 | // * Visualization needs to be updated outside of this routine.
|
|---|
| 45 | //
|
|---|
| 46 | // Utility classes:
|
|---|
| 47 | // * G4EnclosingCylinder: I decided a quick check of geometry would be a
|
|---|
| 48 | // good idea (for CPU speed). If the quick check fails, the regular
|
|---|
| 49 | // full-blown G4VCSGfaceted version is invoked.
|
|---|
| 50 | // * G4ReduciblePolygon: Really meant as a check of input parameters,
|
|---|
| 51 | // this utility class also "converts" the GEANT3-like PGON/PCON
|
|---|
| 52 | // arguments into the newer ones.
|
|---|
| 53 | // Both these classes are implemented outside this file because they are
|
|---|
| 54 | // shared with G4Polycone.
|
|---|
| 55 | //
|
|---|
| 56 | // --------------------------------------------------------------------
|
|---|
| 57 |
|
|---|
| 58 | #include "G4Polyhedra.hh"
|
|---|
| 59 |
|
|---|
| 60 | #include "G4PolyhedraSide.hh"
|
|---|
| 61 | #include "G4PolyPhiFace.hh"
|
|---|
| 62 |
|
|---|
| 63 | #include "Randomize.hh"
|
|---|
| 64 |
|
|---|
| 65 | #include "G4Polyhedron.hh"
|
|---|
| 66 | #include "G4EnclosingCylinder.hh"
|
|---|
| 67 | #include "G4ReduciblePolygon.hh"
|
|---|
| 68 | #include "G4VPVParameterisation.hh"
|
|---|
| 69 |
|
|---|
| 70 | #include <sstream>
|
|---|
| 71 |
|
|---|
| 72 | using namespace CLHEP;
|
|---|
| 73 |
|
|---|
| 74 | //
|
|---|
| 75 | // Constructor (GEANT3 style parameters)
|
|---|
| 76 | //
|
|---|
| 77 | // GEANT3 PGON radii are specified in the distance to the norm of each face.
|
|---|
| 78 | //
|
|---|
| 79 | G4Polyhedra::G4Polyhedra( const G4String& name,
|
|---|
| 80 | G4double phiStart,
|
|---|
| 81 | G4double thePhiTotal,
|
|---|
| 82 | G4int theNumSide,
|
|---|
| 83 | G4int numZPlanes,
|
|---|
| 84 | const G4double zPlane[],
|
|---|
| 85 | const G4double rInner[],
|
|---|
| 86 | const G4double rOuter[] )
|
|---|
| 87 | : G4VCSGfaceted( name ), genericPgon(false)
|
|---|
| 88 | {
|
|---|
| 89 | if (theNumSide <= 0)
|
|---|
| 90 | {
|
|---|
| 91 | G4cerr << "ERROR - G4Polyhedra::G4Polyhedra(): " << GetName() << G4endl
|
|---|
| 92 | << " No sides specified !"
|
|---|
| 93 | << G4endl;
|
|---|
| 94 | G4Exception("G4Polyhedra::G4Polyhedra()", "InvalidSetup",
|
|---|
| 95 | FatalException, "Solid must have at least one side.");
|
|---|
| 96 | }
|
|---|
| 97 |
|
|---|
| 98 | //
|
|---|
| 99 | // Calculate conversion factor from G3 radius to G4 radius
|
|---|
| 100 | //
|
|---|
| 101 | G4double phiTotal = thePhiTotal;
|
|---|
| 102 | if ( (phiTotal <=0) || (phiTotal >= twopi*(1-DBL_EPSILON)) )
|
|---|
| 103 | { phiTotal = twopi; }
|
|---|
| 104 | G4double convertRad = std::cos(0.5*phiTotal/theNumSide);
|
|---|
| 105 |
|
|---|
| 106 | //
|
|---|
| 107 | // Some historical stuff
|
|---|
| 108 | //
|
|---|
| 109 | original_parameters = new G4PolyhedraHistorical;
|
|---|
| 110 |
|
|---|
| 111 | original_parameters->numSide = theNumSide;
|
|---|
| 112 | original_parameters->Start_angle = phiStart;
|
|---|
| 113 | original_parameters->Opening_angle = phiTotal;
|
|---|
| 114 | original_parameters->Num_z_planes = numZPlanes;
|
|---|
| 115 | original_parameters->Z_values = new G4double[numZPlanes];
|
|---|
| 116 | original_parameters->Rmin = new G4double[numZPlanes];
|
|---|
| 117 | original_parameters->Rmax = new G4double[numZPlanes];
|
|---|
| 118 |
|
|---|
| 119 | G4int i;
|
|---|
| 120 | for (i=0; i<numZPlanes; i++)
|
|---|
| 121 | {
|
|---|
| 122 | if (( i < numZPlanes-1) && ( zPlane[i] == zPlane[i+1] ))
|
|---|
| 123 | {
|
|---|
| 124 | if( (rInner[i] > rOuter[i+1])
|
|---|
| 125 | ||(rInner[i+1] > rOuter[i]) )
|
|---|
| 126 | {
|
|---|
| 127 | DumpInfo();
|
|---|
| 128 | G4cerr << "ERROR - G4Polyhedra::G4Polyhedra()"
|
|---|
| 129 | << G4endl
|
|---|
| 130 | << " Segments are not contiguous !" << G4endl
|
|---|
| 131 | << " rMin[" << i << "] = " << rInner[i]
|
|---|
| 132 | << " -- rMax[" << i+1 << "] = " << rOuter[i+1] << G4endl
|
|---|
| 133 | << " rMin[" << i+1 << "] = " << rInner[i+1]
|
|---|
| 134 | << " -- rMax[" << i << "] = " << rOuter[i] << G4endl;
|
|---|
| 135 | G4Exception("G4Polyhedra::G4Polyhedra()","InvalidSetup",FatalException,
|
|---|
| 136 | "Cannot create a Polyhedra with no contiguous segments.");
|
|---|
| 137 | }
|
|---|
| 138 | }
|
|---|
| 139 | original_parameters->Z_values[i] = zPlane[i];
|
|---|
| 140 | original_parameters->Rmin[i] = rInner[i]/convertRad;
|
|---|
| 141 | original_parameters->Rmax[i] = rOuter[i]/convertRad;
|
|---|
| 142 | }
|
|---|
| 143 |
|
|---|
| 144 |
|
|---|
| 145 | //
|
|---|
| 146 | // Build RZ polygon using special PCON/PGON GEANT3 constructor
|
|---|
| 147 | //
|
|---|
| 148 | G4ReduciblePolygon *rz =
|
|---|
| 149 | new G4ReduciblePolygon( rInner, rOuter, zPlane, numZPlanes );
|
|---|
| 150 | rz->ScaleA( 1/convertRad );
|
|---|
| 151 |
|
|---|
| 152 | //
|
|---|
| 153 | // Do the real work
|
|---|
| 154 | //
|
|---|
| 155 | Create( phiStart, phiTotal, theNumSide, rz );
|
|---|
| 156 |
|
|---|
| 157 | delete rz;
|
|---|
| 158 | }
|
|---|
| 159 |
|
|---|
| 160 |
|
|---|
| 161 | //
|
|---|
| 162 | // Constructor (generic parameters)
|
|---|
| 163 | //
|
|---|
| 164 | G4Polyhedra::G4Polyhedra( const G4String& name,
|
|---|
| 165 | G4double phiStart,
|
|---|
| 166 | G4double phiTotal,
|
|---|
| 167 | G4int theNumSide,
|
|---|
| 168 | G4int numRZ,
|
|---|
| 169 | const G4double r[],
|
|---|
| 170 | const G4double z[] )
|
|---|
| 171 | : G4VCSGfaceted( name ), genericPgon(true)
|
|---|
| 172 | {
|
|---|
| 173 | G4ReduciblePolygon *rz = new G4ReduciblePolygon( r, z, numRZ );
|
|---|
| 174 |
|
|---|
| 175 | Create( phiStart, phiTotal, theNumSide, rz );
|
|---|
| 176 |
|
|---|
| 177 | // Set original_parameters struct for consistency
|
|---|
| 178 | //
|
|---|
| 179 | SetOriginalParameters();
|
|---|
| 180 |
|
|---|
| 181 | delete rz;
|
|---|
| 182 | }
|
|---|
| 183 |
|
|---|
| 184 |
|
|---|
| 185 | //
|
|---|
| 186 | // Create
|
|---|
| 187 | //
|
|---|
| 188 | // Generic create routine, called by each constructor
|
|---|
| 189 | // after conversion of arguments
|
|---|
| 190 | //
|
|---|
| 191 | void G4Polyhedra::Create( G4double phiStart,
|
|---|
| 192 | G4double phiTotal,
|
|---|
| 193 | G4int theNumSide,
|
|---|
| 194 | G4ReduciblePolygon *rz )
|
|---|
| 195 | {
|
|---|
| 196 | //
|
|---|
| 197 | // Perform checks of rz values
|
|---|
| 198 | //
|
|---|
| 199 | if (rz->Amin() < 0.0)
|
|---|
| 200 | {
|
|---|
| 201 | G4cerr << "ERROR - G4Polyhedra::Create() " << GetName() << G4endl
|
|---|
| 202 | << " All R values must be >= 0 !"
|
|---|
| 203 | << G4endl;
|
|---|
| 204 | G4Exception("G4Polyhedra::Create()", "InvalidSetup",
|
|---|
| 205 | FatalException, "Illegal input parameters.");
|
|---|
| 206 | }
|
|---|
| 207 |
|
|---|
| 208 | G4double rzArea = rz->Area();
|
|---|
| 209 | if (rzArea < -kCarTolerance)
|
|---|
| 210 | rz->ReverseOrder();
|
|---|
| 211 |
|
|---|
| 212 | else if (rzArea < -kCarTolerance)
|
|---|
| 213 | {
|
|---|
| 214 | G4cerr << "ERROR - G4Polyhedra::Create() " << GetName() << G4endl
|
|---|
| 215 | << " R/Z cross section is zero or near zero: "
|
|---|
| 216 | << rzArea << G4endl;
|
|---|
| 217 | G4Exception("G4Polyhedra::Create()", "InvalidSetup",
|
|---|
| 218 | FatalException, "Illegal input parameters.");
|
|---|
| 219 | }
|
|---|
| 220 |
|
|---|
| 221 | if ( (!rz->RemoveDuplicateVertices( kCarTolerance ))
|
|---|
| 222 | || (!rz->RemoveRedundantVertices( kCarTolerance )) )
|
|---|
| 223 | {
|
|---|
| 224 | G4cerr << "ERROR - G4Polyhedra::Create() " << GetName() << G4endl
|
|---|
| 225 | << " Too few unique R/Z values !"
|
|---|
| 226 | << G4endl;
|
|---|
| 227 | G4Exception("G4Polyhedra::Create()", "InvalidSetup",
|
|---|
| 228 | FatalException, "Illegal input parameters.");
|
|---|
| 229 | }
|
|---|
| 230 |
|
|---|
| 231 | if (rz->CrossesItself( 1/kInfinity ))
|
|---|
| 232 | {
|
|---|
| 233 | G4cerr << "ERROR - G4Polyhedra::Create() " << GetName() << G4endl
|
|---|
| 234 | << " R/Z segments cross !"
|
|---|
| 235 | << G4endl;
|
|---|
| 236 | G4Exception("G4Polyhedra::Create()", "InvalidSetup",
|
|---|
| 237 | FatalException, "Illegal input parameters.");
|
|---|
| 238 | }
|
|---|
| 239 |
|
|---|
| 240 | numCorner = rz->NumVertices();
|
|---|
| 241 |
|
|---|
| 242 |
|
|---|
| 243 | startPhi = phiStart;
|
|---|
| 244 | while( startPhi < 0 ) startPhi += twopi;
|
|---|
| 245 | //
|
|---|
| 246 | // Phi opening? Account for some possible roundoff, and interpret
|
|---|
| 247 | // nonsense value as representing no phi opening
|
|---|
| 248 | //
|
|---|
| 249 | if ( (phiTotal <= 0) || (phiTotal > twopi*(1-DBL_EPSILON)) )
|
|---|
| 250 | {
|
|---|
| 251 | phiIsOpen = false;
|
|---|
| 252 | endPhi = phiStart+twopi;
|
|---|
| 253 | }
|
|---|
| 254 | else
|
|---|
| 255 | {
|
|---|
| 256 | phiIsOpen = true;
|
|---|
| 257 |
|
|---|
| 258 | //
|
|---|
| 259 | // Convert phi into our convention
|
|---|
| 260 | //
|
|---|
| 261 | endPhi = phiStart+phiTotal;
|
|---|
| 262 | while( endPhi < startPhi ) endPhi += twopi;
|
|---|
| 263 | }
|
|---|
| 264 |
|
|---|
| 265 | //
|
|---|
| 266 | // Save number sides
|
|---|
| 267 | //
|
|---|
| 268 | numSide = theNumSide;
|
|---|
| 269 |
|
|---|
| 270 | //
|
|---|
| 271 | // Allocate corner array.
|
|---|
| 272 | //
|
|---|
| 273 | corners = new G4PolyhedraSideRZ[numCorner];
|
|---|
| 274 |
|
|---|
| 275 | //
|
|---|
| 276 | // Copy corners
|
|---|
| 277 | //
|
|---|
| 278 | G4ReduciblePolygonIterator iterRZ(rz);
|
|---|
| 279 |
|
|---|
| 280 | G4PolyhedraSideRZ *next = corners;
|
|---|
| 281 | iterRZ.Begin();
|
|---|
| 282 | do
|
|---|
| 283 | {
|
|---|
| 284 | next->r = iterRZ.GetA();
|
|---|
| 285 | next->z = iterRZ.GetB();
|
|---|
| 286 | } while( ++next, iterRZ.Next() );
|
|---|
| 287 |
|
|---|
| 288 | //
|
|---|
| 289 | // Allocate face pointer array
|
|---|
| 290 | //
|
|---|
| 291 | numFace = phiIsOpen ? numCorner+2 : numCorner;
|
|---|
| 292 | faces = new G4VCSGface*[numFace];
|
|---|
| 293 |
|
|---|
| 294 | //
|
|---|
| 295 | // Construct side faces
|
|---|
| 296 | //
|
|---|
| 297 | // To do so properly, we need to keep track of four successive RZ
|
|---|
| 298 | // corners.
|
|---|
| 299 | //
|
|---|
| 300 | // But! Don't construct a face if both points are at zero radius!
|
|---|
| 301 | //
|
|---|
| 302 | G4PolyhedraSideRZ *corner = corners,
|
|---|
| 303 | *prev = corners + numCorner-1,
|
|---|
| 304 | *nextNext;
|
|---|
| 305 | G4VCSGface **face = faces;
|
|---|
| 306 | do
|
|---|
| 307 | {
|
|---|
| 308 | next = corner+1;
|
|---|
| 309 | if (next >= corners+numCorner) next = corners;
|
|---|
| 310 | nextNext = next+1;
|
|---|
| 311 | if (nextNext >= corners+numCorner) nextNext = corners;
|
|---|
| 312 |
|
|---|
| 313 | if (corner->r < 1/kInfinity && next->r < 1/kInfinity) continue;
|
|---|
| 314 |
|
|---|
| 315 | //
|
|---|
| 316 | // We must decide here if we can dare declare one of our faces
|
|---|
| 317 | // as having a "valid" normal (i.e. allBehind = true). This
|
|---|
| 318 | // is never possible if the face faces "inward" in r *unless*
|
|---|
| 319 | // we have only one side
|
|---|
| 320 | //
|
|---|
| 321 | G4bool allBehind;
|
|---|
| 322 | if ((corner->z > next->z) && (numSide > 1))
|
|---|
| 323 | {
|
|---|
| 324 | allBehind = false;
|
|---|
| 325 | }
|
|---|
| 326 | else
|
|---|
| 327 | {
|
|---|
| 328 | //
|
|---|
| 329 | // Otherwise, it is only true if the line passing
|
|---|
| 330 | // through the two points of the segment do not
|
|---|
| 331 | // split the r/z cross section
|
|---|
| 332 | //
|
|---|
| 333 | allBehind = !rz->BisectedBy( corner->r, corner->z,
|
|---|
| 334 | next->r, next->z, kCarTolerance );
|
|---|
| 335 | }
|
|---|
| 336 |
|
|---|
| 337 | *face++ = new G4PolyhedraSide( prev, corner, next, nextNext,
|
|---|
| 338 | numSide, startPhi, endPhi-startPhi, phiIsOpen );
|
|---|
| 339 | } while( prev=corner, corner=next, corner > corners );
|
|---|
| 340 |
|
|---|
| 341 | if (phiIsOpen)
|
|---|
| 342 | {
|
|---|
| 343 | //
|
|---|
| 344 | // Construct phi open edges
|
|---|
| 345 | //
|
|---|
| 346 | *face++ = new G4PolyPhiFace( rz, startPhi, phiTotal/numSide, endPhi );
|
|---|
| 347 | *face++ = new G4PolyPhiFace( rz, endPhi, phiTotal/numSide, startPhi );
|
|---|
| 348 | }
|
|---|
| 349 |
|
|---|
| 350 | //
|
|---|
| 351 | // We might have dropped a face or two: recalculate numFace
|
|---|
| 352 | //
|
|---|
| 353 | numFace = face-faces;
|
|---|
| 354 |
|
|---|
| 355 | //
|
|---|
| 356 | // Make enclosingCylinder
|
|---|
| 357 | //
|
|---|
| 358 | enclosingCylinder =
|
|---|
| 359 | new G4EnclosingCylinder( rz, phiIsOpen, phiStart, phiTotal );
|
|---|
| 360 | }
|
|---|
| 361 |
|
|---|
| 362 |
|
|---|
| 363 | //
|
|---|
| 364 | // Fake default constructor - sets only member data and allocates memory
|
|---|
| 365 | // for usage restricted to object persistency.
|
|---|
| 366 | //
|
|---|
| 367 | G4Polyhedra::G4Polyhedra( __void__& a )
|
|---|
| 368 | : G4VCSGfaceted(a), genericPgon(false), corners(0),
|
|---|
| 369 | original_parameters(0), enclosingCylinder(0)
|
|---|
| 370 | {
|
|---|
| 371 | }
|
|---|
| 372 |
|
|---|
| 373 |
|
|---|
| 374 | //
|
|---|
| 375 | // Destructor
|
|---|
| 376 | //
|
|---|
| 377 | G4Polyhedra::~G4Polyhedra()
|
|---|
| 378 | {
|
|---|
| 379 | delete [] corners;
|
|---|
| 380 | if (original_parameters) delete original_parameters;
|
|---|
| 381 |
|
|---|
| 382 | delete enclosingCylinder;
|
|---|
| 383 | }
|
|---|
| 384 |
|
|---|
| 385 |
|
|---|
| 386 | //
|
|---|
| 387 | // Copy constructor
|
|---|
| 388 | //
|
|---|
| 389 | G4Polyhedra::G4Polyhedra( const G4Polyhedra &source )
|
|---|
| 390 | : G4VCSGfaceted( source )
|
|---|
| 391 | {
|
|---|
| 392 | CopyStuff( source );
|
|---|
| 393 | }
|
|---|
| 394 |
|
|---|
| 395 |
|
|---|
| 396 | //
|
|---|
| 397 | // Assignment operator
|
|---|
| 398 | //
|
|---|
| 399 | const G4Polyhedra &G4Polyhedra::operator=( const G4Polyhedra &source )
|
|---|
| 400 | {
|
|---|
| 401 | if (this == &source) return *this;
|
|---|
| 402 |
|
|---|
| 403 | G4VCSGfaceted::operator=( source );
|
|---|
| 404 |
|
|---|
| 405 | delete [] corners;
|
|---|
| 406 | if (original_parameters) delete original_parameters;
|
|---|
| 407 |
|
|---|
| 408 | delete enclosingCylinder;
|
|---|
| 409 |
|
|---|
| 410 | CopyStuff( source );
|
|---|
| 411 |
|
|---|
| 412 | return *this;
|
|---|
| 413 | }
|
|---|
| 414 |
|
|---|
| 415 |
|
|---|
| 416 | //
|
|---|
| 417 | // CopyStuff
|
|---|
| 418 | //
|
|---|
| 419 | void G4Polyhedra::CopyStuff( const G4Polyhedra &source )
|
|---|
| 420 | {
|
|---|
| 421 | //
|
|---|
| 422 | // Simple stuff
|
|---|
| 423 | //
|
|---|
| 424 | numSide = source.numSide;
|
|---|
| 425 | startPhi = source.startPhi;
|
|---|
| 426 | endPhi = source.endPhi;
|
|---|
| 427 | phiIsOpen = source.phiIsOpen;
|
|---|
| 428 | numCorner = source.numCorner;
|
|---|
| 429 | genericPgon= source.genericPgon;
|
|---|
| 430 |
|
|---|
| 431 | //
|
|---|
| 432 | // The corner array
|
|---|
| 433 | //
|
|---|
| 434 | corners = new G4PolyhedraSideRZ[numCorner];
|
|---|
| 435 |
|
|---|
| 436 | G4PolyhedraSideRZ *corn = corners,
|
|---|
| 437 | *sourceCorn = source.corners;
|
|---|
| 438 | do
|
|---|
| 439 | {
|
|---|
| 440 | *corn = *sourceCorn;
|
|---|
| 441 | } while( ++sourceCorn, ++corn < corners+numCorner );
|
|---|
| 442 |
|
|---|
| 443 | //
|
|---|
| 444 | // Original parameters
|
|---|
| 445 | //
|
|---|
| 446 | if (source.original_parameters)
|
|---|
| 447 | {
|
|---|
| 448 | original_parameters =
|
|---|
| 449 | new G4PolyhedraHistorical( *source.original_parameters );
|
|---|
| 450 | }
|
|---|
| 451 |
|
|---|
| 452 | //
|
|---|
| 453 | // Enclosing cylinder
|
|---|
| 454 | //
|
|---|
| 455 | enclosingCylinder = new G4EnclosingCylinder( *source.enclosingCylinder );
|
|---|
| 456 | }
|
|---|
| 457 |
|
|---|
| 458 |
|
|---|
| 459 | //
|
|---|
| 460 | // Reset
|
|---|
| 461 | //
|
|---|
| 462 | // Recalculates and reshapes the solid, given pre-assigned scaled
|
|---|
| 463 | // original_parameters.
|
|---|
| 464 | //
|
|---|
| 465 | G4bool G4Polyhedra::Reset()
|
|---|
| 466 | {
|
|---|
| 467 | if (genericPgon)
|
|---|
| 468 | {
|
|---|
| 469 | G4cerr << "Solid " << GetName() << " built using generic construct."
|
|---|
| 470 | << G4endl << "Not applicable to the generic construct !" << G4endl;
|
|---|
| 471 | G4Exception("G4Polyhedra::Reset()", "NotApplicableConstruct",
|
|---|
| 472 | JustWarning, "Parameters NOT resetted.");
|
|---|
| 473 | return 1;
|
|---|
| 474 | }
|
|---|
| 475 |
|
|---|
| 476 | //
|
|---|
| 477 | // Clear old setup
|
|---|
| 478 | //
|
|---|
| 479 | G4VCSGfaceted::DeleteStuff();
|
|---|
| 480 | delete [] corners;
|
|---|
| 481 | delete enclosingCylinder;
|
|---|
| 482 |
|
|---|
| 483 | //
|
|---|
| 484 | // Rebuild polyhedra
|
|---|
| 485 | //
|
|---|
| 486 | G4ReduciblePolygon *rz =
|
|---|
| 487 | new G4ReduciblePolygon( original_parameters->Rmin,
|
|---|
| 488 | original_parameters->Rmax,
|
|---|
| 489 | original_parameters->Z_values,
|
|---|
| 490 | original_parameters->Num_z_planes );
|
|---|
| 491 | Create( original_parameters->Start_angle,
|
|---|
| 492 | original_parameters->Opening_angle,
|
|---|
| 493 | original_parameters->numSide, rz );
|
|---|
| 494 | delete rz;
|
|---|
| 495 |
|
|---|
| 496 | return 0;
|
|---|
| 497 | }
|
|---|
| 498 |
|
|---|
| 499 |
|
|---|
| 500 | //
|
|---|
| 501 | // Inside
|
|---|
| 502 | //
|
|---|
| 503 | // This is an override of G4VCSGfaceted::Inside, created in order
|
|---|
| 504 | // to speed things up by first checking with G4EnclosingCylinder.
|
|---|
| 505 | //
|
|---|
| 506 | EInside G4Polyhedra::Inside( const G4ThreeVector &p ) const
|
|---|
| 507 | {
|
|---|
| 508 | //
|
|---|
| 509 | // Quick test
|
|---|
| 510 | //
|
|---|
| 511 | if (enclosingCylinder->MustBeOutside(p)) return kOutside;
|
|---|
| 512 |
|
|---|
| 513 | //
|
|---|
| 514 | // Long answer
|
|---|
| 515 | //
|
|---|
| 516 | return G4VCSGfaceted::Inside(p);
|
|---|
| 517 | }
|
|---|
| 518 |
|
|---|
| 519 |
|
|---|
| 520 | //
|
|---|
| 521 | // DistanceToIn
|
|---|
| 522 | //
|
|---|
| 523 | // This is an override of G4VCSGfaceted::Inside, created in order
|
|---|
| 524 | // to speed things up by first checking with G4EnclosingCylinder.
|
|---|
| 525 | //
|
|---|
| 526 | G4double G4Polyhedra::DistanceToIn( const G4ThreeVector &p,
|
|---|
| 527 | const G4ThreeVector &v ) const
|
|---|
| 528 | {
|
|---|
| 529 | //
|
|---|
| 530 | // Quick test
|
|---|
| 531 | //
|
|---|
| 532 | if (enclosingCylinder->ShouldMiss(p,v))
|
|---|
| 533 | return kInfinity;
|
|---|
| 534 |
|
|---|
| 535 | //
|
|---|
| 536 | // Long answer
|
|---|
| 537 | //
|
|---|
| 538 | return G4VCSGfaceted::DistanceToIn( p, v );
|
|---|
| 539 | }
|
|---|
| 540 |
|
|---|
| 541 |
|
|---|
| 542 | //
|
|---|
| 543 | // DistanceToIn
|
|---|
| 544 | //
|
|---|
| 545 | G4double G4Polyhedra::DistanceToIn( const G4ThreeVector &p ) const
|
|---|
| 546 | {
|
|---|
| 547 | return G4VCSGfaceted::DistanceToIn(p);
|
|---|
| 548 | }
|
|---|
| 549 |
|
|---|
| 550 |
|
|---|
| 551 | //
|
|---|
| 552 | // ComputeDimensions
|
|---|
| 553 | //
|
|---|
| 554 | void G4Polyhedra::ComputeDimensions( G4VPVParameterisation* p,
|
|---|
| 555 | const G4int n,
|
|---|
| 556 | const G4VPhysicalVolume* pRep )
|
|---|
| 557 | {
|
|---|
| 558 | p->ComputeDimensions(*this,n,pRep);
|
|---|
| 559 | }
|
|---|
| 560 |
|
|---|
| 561 |
|
|---|
| 562 | //
|
|---|
| 563 | // GetEntityType
|
|---|
| 564 | //
|
|---|
| 565 | G4GeometryType G4Polyhedra::GetEntityType() const
|
|---|
| 566 | {
|
|---|
| 567 | return G4String("G4Polyhedra");
|
|---|
| 568 | }
|
|---|
| 569 |
|
|---|
| 570 |
|
|---|
| 571 | //
|
|---|
| 572 | // Stream object contents to an output stream
|
|---|
| 573 | //
|
|---|
| 574 | std::ostream& G4Polyhedra::StreamInfo( std::ostream& os ) const
|
|---|
| 575 | {
|
|---|
| 576 | os << "-----------------------------------------------------------\n"
|
|---|
| 577 | << " *** Dump for solid - " << GetName() << " ***\n"
|
|---|
| 578 | << " ===================================================\n"
|
|---|
| 579 | << " Solid type: G4Polyhedra\n"
|
|---|
| 580 | << " Parameters: \n"
|
|---|
| 581 | << " starting phi angle : " << startPhi/degree << " degrees \n"
|
|---|
| 582 | << " ending phi angle : " << endPhi/degree << " degrees \n";
|
|---|
| 583 | G4int i=0;
|
|---|
| 584 | if (!genericPgon)
|
|---|
| 585 | {
|
|---|
| 586 | G4int numPlanes = original_parameters->Num_z_planes;
|
|---|
| 587 | os << " number of Z planes: " << numPlanes << "\n"
|
|---|
| 588 | << " Z values: \n";
|
|---|
| 589 | for (i=0; i<numPlanes; i++)
|
|---|
| 590 | {
|
|---|
| 591 | os << " Z plane " << i << ": "
|
|---|
| 592 | << original_parameters->Z_values[i] << "\n";
|
|---|
| 593 | }
|
|---|
| 594 | os << " Tangent distances to inner surface (Rmin): \n";
|
|---|
| 595 | for (i=0; i<numPlanes; i++)
|
|---|
| 596 | {
|
|---|
| 597 | os << " Z plane " << i << ": "
|
|---|
| 598 | << original_parameters->Rmin[i] << "\n";
|
|---|
| 599 | }
|
|---|
| 600 | os << " Tangent distances to outer surface (Rmax): \n";
|
|---|
| 601 | for (i=0; i<numPlanes; i++)
|
|---|
| 602 | {
|
|---|
| 603 | os << " Z plane " << i << ": "
|
|---|
| 604 | << original_parameters->Rmax[i] << "\n";
|
|---|
| 605 | }
|
|---|
| 606 | }
|
|---|
| 607 | os << " number of RZ points: " << numCorner << "\n"
|
|---|
| 608 | << " RZ values (corners): \n";
|
|---|
| 609 | for (i=0; i<numCorner; i++)
|
|---|
| 610 | {
|
|---|
| 611 | os << " "
|
|---|
| 612 | << corners[i].r << ", " << corners[i].z << "\n";
|
|---|
| 613 | }
|
|---|
| 614 | os << "-----------------------------------------------------------\n";
|
|---|
| 615 |
|
|---|
| 616 | return os;
|
|---|
| 617 | }
|
|---|
| 618 |
|
|---|
| 619 |
|
|---|
| 620 | //
|
|---|
| 621 | // GetPointOnPlane
|
|---|
| 622 | //
|
|---|
| 623 | // Auxiliary method for get point on surface
|
|---|
| 624 | //
|
|---|
| 625 | G4ThreeVector G4Polyhedra::GetPointOnPlane(G4ThreeVector p0, G4ThreeVector p1,
|
|---|
| 626 | G4ThreeVector p2, G4ThreeVector p3) const
|
|---|
| 627 | {
|
|---|
| 628 | G4double lambda1, lambda2, chose,aOne,aTwo;
|
|---|
| 629 | G4ThreeVector t, u, v, w, Area, normal;
|
|---|
| 630 | aOne = 1.;
|
|---|
| 631 | aTwo = 1.;
|
|---|
| 632 |
|
|---|
| 633 | t = p1 - p0;
|
|---|
| 634 | u = p2 - p1;
|
|---|
| 635 | v = p3 - p2;
|
|---|
| 636 | w = p0 - p3;
|
|---|
| 637 |
|
|---|
| 638 | chose = RandFlat::shoot(0.,aOne+aTwo);
|
|---|
| 639 | if( (chose>=0.) && (chose < aOne) )
|
|---|
| 640 | {
|
|---|
| 641 | lambda1 = RandFlat::shoot(0.,1.);
|
|---|
| 642 | lambda2 = RandFlat::shoot(0.,lambda1);
|
|---|
| 643 | return (p2+lambda1*v+lambda2*w);
|
|---|
| 644 | }
|
|---|
| 645 |
|
|---|
| 646 | lambda1 = RandFlat::shoot(0.,1.);
|
|---|
| 647 | lambda2 = RandFlat::shoot(0.,lambda1);
|
|---|
| 648 | return (p0+lambda1*t+lambda2*u);
|
|---|
| 649 | }
|
|---|
| 650 |
|
|---|
| 651 |
|
|---|
| 652 | //
|
|---|
| 653 | // GetPointOnTriangle
|
|---|
| 654 | //
|
|---|
| 655 | // Auxiliary method for get point on surface
|
|---|
| 656 | //
|
|---|
| 657 | G4ThreeVector G4Polyhedra::GetPointOnTriangle(G4ThreeVector p1,
|
|---|
| 658 | G4ThreeVector p2,
|
|---|
| 659 | G4ThreeVector p3) const
|
|---|
| 660 | {
|
|---|
| 661 | G4double lambda1,lambda2;
|
|---|
| 662 | G4ThreeVector v=p3-p1, w=p1-p2;
|
|---|
| 663 |
|
|---|
| 664 | lambda1 = RandFlat::shoot(0.,1.);
|
|---|
| 665 | lambda2 = RandFlat::shoot(0.,lambda1);
|
|---|
| 666 |
|
|---|
| 667 | return (p2 + lambda1*w + lambda2*v);
|
|---|
| 668 | }
|
|---|
| 669 |
|
|---|
| 670 |
|
|---|
| 671 | //
|
|---|
| 672 | // GetPointOnSurface
|
|---|
| 673 | //
|
|---|
| 674 | G4ThreeVector G4Polyhedra::GetPointOnSurface() const
|
|---|
| 675 | {
|
|---|
| [850] | 676 | if( !genericPgon ) // Polyhedra by faces
|
|---|
| 677 | {
|
|---|
| 678 | G4int j, numPlanes = original_parameters->Num_z_planes, Flag=0;
|
|---|
| 679 | G4double chose, totArea=0., Achose1, Achose2,
|
|---|
| 680 | rad1, rad2, sinphi1, sinphi2, cosphi1, cosphi2;
|
|---|
| 681 | G4double a, b, l2, rang, totalPhi, ksi,
|
|---|
| 682 | area, aTop=0., aBottom=0., zVal=0.;
|
|---|
| [831] | 683 |
|
|---|
| [850] | 684 | G4ThreeVector p0, p1, p2, p3;
|
|---|
| 685 | std::vector<G4double> aVector1;
|
|---|
| 686 | std::vector<G4double> aVector2;
|
|---|
| 687 | std::vector<G4double> aVector3;
|
|---|
| [831] | 688 |
|
|---|
| [850] | 689 | totalPhi= (phiIsOpen) ? (endPhi-startPhi) : twopi;
|
|---|
| 690 | ksi = totalPhi/numSide;
|
|---|
| 691 | G4double cosksi = std::cos(ksi/2.);
|
|---|
| 692 |
|
|---|
| 693 | // Below we generate the areas relevant to our solid
|
|---|
| 694 | //
|
|---|
| 695 | for(j=0; j<numPlanes-1; j++)
|
|---|
| 696 | {
|
|---|
| 697 | a = original_parameters->Rmax[j+1];
|
|---|
| 698 | b = original_parameters->Rmax[j];
|
|---|
| 699 | l2 = sqr(original_parameters->Z_values[j]
|
|---|
| 700 | -original_parameters->Z_values[j+1]) + sqr(b-a);
|
|---|
| 701 | area = std::sqrt(l2-sqr((a-b)*cosksi))*(a+b)*cosksi;
|
|---|
| 702 | aVector1.push_back(area);
|
|---|
| 703 | }
|
|---|
| 704 |
|
|---|
| 705 | for(j=0; j<numPlanes-1; j++)
|
|---|
| 706 | {
|
|---|
| 707 | a = original_parameters->Rmin[j+1];//*cosksi;
|
|---|
| 708 | b = original_parameters->Rmin[j];//*cosksi;
|
|---|
| 709 | l2 = sqr(original_parameters->Z_values[j]
|
|---|
| 710 | -original_parameters->Z_values[j+1]) + sqr(b-a);
|
|---|
| 711 | area = std::sqrt(l2-sqr((a-b)*cosksi))*(a+b)*cosksi;
|
|---|
| 712 | aVector2.push_back(area);
|
|---|
| 713 | }
|
|---|
| [831] | 714 |
|
|---|
| [850] | 715 | for(j=0; j<numPlanes-1; j++)
|
|---|
| 716 | {
|
|---|
| 717 | if(phiIsOpen == true)
|
|---|
| 718 | {
|
|---|
| 719 | aVector3.push_back(0.5*(original_parameters->Rmax[j]
|
|---|
| 720 | -original_parameters->Rmin[j]
|
|---|
| 721 | +original_parameters->Rmax[j+1]
|
|---|
| 722 | -original_parameters->Rmin[j+1])
|
|---|
| 723 | *std::fabs(original_parameters->Z_values[j+1]
|
|---|
| 724 | -original_parameters->Z_values[j]));
|
|---|
| 725 | }
|
|---|
| 726 | else { aVector3.push_back(0.); }
|
|---|
| 727 | }
|
|---|
| [831] | 728 |
|
|---|
| [850] | 729 | for(j=0; j<numPlanes-1; j++)
|
|---|
| [831] | 730 | {
|
|---|
| [850] | 731 | totArea += numSide*(aVector1[j]+aVector2[j])+2.*aVector3[j];
|
|---|
| [831] | 732 | }
|
|---|
| 733 |
|
|---|
| [850] | 734 | // Must include top and bottom areas
|
|---|
| 735 | //
|
|---|
| 736 | if(original_parameters->Rmax[numPlanes-1] != 0.)
|
|---|
| 737 | {
|
|---|
| 738 | a = original_parameters->Rmax[numPlanes-1];
|
|---|
| 739 | b = original_parameters->Rmin[numPlanes-1];
|
|---|
| 740 | l2 = sqr(a-b);
|
|---|
| 741 | aTop = std::sqrt(l2-sqr((a-b)*cosksi))*(a+b)*cosksi;
|
|---|
| 742 | }
|
|---|
| [831] | 743 |
|
|---|
| [850] | 744 | if(original_parameters->Rmax[0] != 0.)
|
|---|
| 745 | {
|
|---|
| 746 | a = original_parameters->Rmax[0];
|
|---|
| 747 | b = original_parameters->Rmin[0];
|
|---|
| 748 | l2 = sqr(a-b);
|
|---|
| 749 | aBottom = std::sqrt(l2-sqr((a-b)*cosksi))*(a+b)*cosksi;
|
|---|
| 750 | }
|
|---|
| [831] | 751 |
|
|---|
| [850] | 752 | Achose1 = 0.;
|
|---|
| 753 | Achose2 = numSide*(aVector1[0]+aVector2[0])+2.*aVector3[0];
|
|---|
| [831] | 754 |
|
|---|
| [850] | 755 | chose = RandFlat::shoot(0.,totArea+aTop+aBottom);
|
|---|
| 756 | if( (chose >= 0.) && (chose < aTop + aBottom) )
|
|---|
| [831] | 757 | {
|
|---|
| [850] | 758 | chose = RandFlat::shoot(startPhi,startPhi+totalPhi);
|
|---|
| 759 | rang = std::floor((chose-startPhi)/ksi-0.01);
|
|---|
| 760 | if(rang<0) { rang=0; }
|
|---|
| 761 | rang = std::fabs(rang);
|
|---|
| 762 | sinphi1 = std::sin(startPhi+rang*ksi);
|
|---|
| 763 | sinphi2 = std::sin(startPhi+(rang+1)*ksi);
|
|---|
| 764 | cosphi1 = std::cos(startPhi+rang*ksi);
|
|---|
| 765 | cosphi2 = std::cos(startPhi+(rang+1)*ksi);
|
|---|
| 766 | chose = RandFlat::shoot(0., aTop + aBottom);
|
|---|
| 767 | if(chose>=0. && chose<aTop)
|
|---|
| 768 | {
|
|---|
| 769 | rad1 = original_parameters->Rmin[numPlanes-1];
|
|---|
| 770 | rad2 = original_parameters->Rmax[numPlanes-1];
|
|---|
| 771 | zVal = original_parameters->Z_values[numPlanes-1];
|
|---|
| 772 | }
|
|---|
| 773 | else
|
|---|
| 774 | {
|
|---|
| 775 | rad1 = original_parameters->Rmin[0];
|
|---|
| 776 | rad2 = original_parameters->Rmax[0];
|
|---|
| 777 | zVal = original_parameters->Z_values[0];
|
|---|
| 778 | }
|
|---|
| 779 | p0 = G4ThreeVector(rad1*cosphi1,rad1*sinphi1,zVal);
|
|---|
| 780 | p1 = G4ThreeVector(rad2*cosphi1,rad2*sinphi1,zVal);
|
|---|
| 781 | p2 = G4ThreeVector(rad2*cosphi2,rad2*sinphi2,zVal);
|
|---|
| 782 | p3 = G4ThreeVector(rad1*cosphi2,rad1*sinphi2,zVal);
|
|---|
| 783 | return GetPointOnPlane(p0,p1,p2,p3);
|
|---|
| [831] | 784 | }
|
|---|
| [850] | 785 | else
|
|---|
| [831] | 786 | {
|
|---|
| [850] | 787 | for (j=0; j<numPlanes-1; j++)
|
|---|
| 788 | {
|
|---|
| 789 | if( ((chose >= Achose1) && (chose < Achose2)) || (j == numPlanes-2) )
|
|---|
| 790 | {
|
|---|
| 791 | Flag = j; break;
|
|---|
| 792 | }
|
|---|
| 793 | Achose1 += numSide*(aVector1[j]+aVector2[j])+2.*aVector3[j];
|
|---|
| 794 | Achose2 = Achose1 + numSide*(aVector1[j+1]+aVector2[j+1])
|
|---|
| 795 | + 2.*aVector3[j+1];
|
|---|
| [831] | 796 | }
|
|---|
| 797 | }
|
|---|
| 798 |
|
|---|
| [850] | 799 | // At this point we have chosen a subsection
|
|---|
| 800 | // between to adjacent plane cuts...
|
|---|
| [831] | 801 |
|
|---|
| [850] | 802 | j = Flag;
|
|---|
| [831] | 803 |
|
|---|
| [850] | 804 | totArea = numSide*(aVector1[j]+aVector2[j])+2.*aVector3[j];
|
|---|
| 805 | chose = RandFlat::shoot(0.,totArea);
|
|---|
| [831] | 806 |
|
|---|
| [850] | 807 | if( (chose>=0.) && (chose<numSide*aVector1[j]) )
|
|---|
| 808 | {
|
|---|
| 809 | chose = RandFlat::shoot(startPhi,startPhi+totalPhi);
|
|---|
| 810 | rang = std::floor((chose-startPhi)/ksi-0.01);
|
|---|
| 811 | if(rang<0) { rang=0; }
|
|---|
| 812 | rang = std::fabs(rang);
|
|---|
| 813 | rad1 = original_parameters->Rmax[j];
|
|---|
| 814 | rad2 = original_parameters->Rmax[j+1];
|
|---|
| 815 | sinphi1 = std::sin(startPhi+rang*ksi);
|
|---|
| 816 | sinphi2 = std::sin(startPhi+(rang+1)*ksi);
|
|---|
| 817 | cosphi1 = std::cos(startPhi+rang*ksi);
|
|---|
| 818 | cosphi2 = std::cos(startPhi+(rang+1)*ksi);
|
|---|
| 819 | zVal = original_parameters->Z_values[j];
|
|---|
| [831] | 820 |
|
|---|
| [850] | 821 | p0 = G4ThreeVector(rad1*cosphi1,rad1*sinphi1,zVal);
|
|---|
| 822 | p1 = G4ThreeVector(rad1*cosphi2,rad1*sinphi2,zVal);
|
|---|
| [831] | 823 |
|
|---|
| [850] | 824 | zVal = original_parameters->Z_values[j+1];
|
|---|
| [831] | 825 |
|
|---|
| [850] | 826 | p2 = G4ThreeVector(rad2*cosphi2,rad2*sinphi2,zVal);
|
|---|
| 827 | p3 = G4ThreeVector(rad2*cosphi1,rad2*sinphi1,zVal);
|
|---|
| 828 | return GetPointOnPlane(p0,p1,p2,p3);
|
|---|
| 829 | }
|
|---|
| 830 | else if ( (chose >= numSide*aVector1[j])
|
|---|
| 831 | && (chose <= numSide*(aVector1[j]+aVector2[j])) )
|
|---|
| 832 | {
|
|---|
| 833 | chose = RandFlat::shoot(startPhi,startPhi+totalPhi);
|
|---|
| 834 | rang = std::floor((chose-startPhi)/ksi-0.01);
|
|---|
| 835 | if(rang<0) { rang=0; }
|
|---|
| 836 | rang = std::fabs(rang);
|
|---|
| 837 | rad1 = original_parameters->Rmin[j];
|
|---|
| 838 | rad2 = original_parameters->Rmin[j+1];
|
|---|
| 839 | sinphi1 = std::sin(startPhi+rang*ksi);
|
|---|
| 840 | sinphi2 = std::sin(startPhi+(rang+1)*ksi);
|
|---|
| 841 | cosphi1 = std::cos(startPhi+rang*ksi);
|
|---|
| 842 | cosphi2 = std::cos(startPhi+(rang+1)*ksi);
|
|---|
| 843 | zVal = original_parameters->Z_values[j];
|
|---|
| 844 |
|
|---|
| 845 | p0 = G4ThreeVector(rad1*cosphi1,rad1*sinphi1,zVal);
|
|---|
| 846 | p1 = G4ThreeVector(rad1*cosphi2,rad1*sinphi2,zVal);
|
|---|
| 847 |
|
|---|
| 848 | zVal = original_parameters->Z_values[j+1];
|
|---|
| [831] | 849 |
|
|---|
| [850] | 850 | p2 = G4ThreeVector(rad2*cosphi2,rad2*sinphi2,zVal);
|
|---|
| 851 | p3 = G4ThreeVector(rad2*cosphi1,rad2*sinphi1,zVal);
|
|---|
| 852 | return GetPointOnPlane(p0,p1,p2,p3);
|
|---|
| 853 | }
|
|---|
| 854 |
|
|---|
| 855 | chose = RandFlat::shoot(0.,2.2);
|
|---|
| 856 | if( (chose>=0.) && (chose < 1.) )
|
|---|
| 857 | {
|
|---|
| 858 | rang = startPhi;
|
|---|
| 859 | }
|
|---|
| 860 | else
|
|---|
| 861 | {
|
|---|
| 862 | rang = endPhi;
|
|---|
| 863 | }
|
|---|
| 864 |
|
|---|
| 865 | cosphi1 = std::cos(rang); rad1 = original_parameters->Rmin[j];
|
|---|
| 866 | sinphi1 = std::sin(rang); rad2 = original_parameters->Rmax[j];
|
|---|
| 867 |
|
|---|
| 868 | p0 = G4ThreeVector(rad1*cosphi1,rad1*sinphi1,
|
|---|
| 869 | original_parameters->Z_values[j]);
|
|---|
| 870 | p1 = G4ThreeVector(rad2*cosphi1,rad2*sinphi1,
|
|---|
| 871 | original_parameters->Z_values[j]);
|
|---|
| 872 |
|
|---|
| 873 | rad1 = original_parameters->Rmax[j+1];
|
|---|
| [831] | 874 | rad2 = original_parameters->Rmin[j+1];
|
|---|
| 875 |
|
|---|
| [850] | 876 | p2 = G4ThreeVector(rad1*cosphi1,rad1*sinphi1,
|
|---|
| 877 | original_parameters->Z_values[j+1]);
|
|---|
| 878 | p3 = G4ThreeVector(rad2*cosphi1,rad2*sinphi1,
|
|---|
| 879 | original_parameters->Z_values[j+1]);
|
|---|
| [831] | 880 | return GetPointOnPlane(p0,p1,p2,p3);
|
|---|
| 881 | }
|
|---|
| [850] | 882 | else // Generic polyhedra
|
|---|
| [831] | 883 | {
|
|---|
| [850] | 884 | return GetPointOnSurfaceGeneric();
|
|---|
| [831] | 885 | }
|
|---|
| 886 | }
|
|---|
| 887 |
|
|---|
| 888 | //
|
|---|
| 889 | // CreatePolyhedron
|
|---|
| 890 | //
|
|---|
| 891 | G4Polyhedron* G4Polyhedra::CreatePolyhedron() const
|
|---|
| 892 | {
|
|---|
| 893 | if (!genericPgon)
|
|---|
| 894 | {
|
|---|
| 895 | return new G4PolyhedronPgon( original_parameters->Start_angle,
|
|---|
| 896 | original_parameters->Opening_angle,
|
|---|
| 897 | original_parameters->numSide,
|
|---|
| 898 | original_parameters->Num_z_planes,
|
|---|
| 899 | original_parameters->Z_values,
|
|---|
| 900 | original_parameters->Rmin,
|
|---|
| 901 | original_parameters->Rmax);
|
|---|
| 902 | }
|
|---|
| 903 | else
|
|---|
| 904 | {
|
|---|
| 905 | // The following code prepares for:
|
|---|
| 906 | // HepPolyhedron::createPolyhedron(int Nnodes, int Nfaces,
|
|---|
| 907 | // const double xyz[][3],
|
|---|
| 908 | // const int faces_vec[][4])
|
|---|
| 909 | // Here is an extract from the header file HepPolyhedron.h:
|
|---|
| 910 | /**
|
|---|
| 911 | * Creates user defined polyhedron.
|
|---|
| 912 | * This function allows to the user to define arbitrary polyhedron.
|
|---|
| 913 | * The faces of the polyhedron should be either triangles or planar
|
|---|
| 914 | * quadrilateral. Nodes of a face are defined by indexes pointing to
|
|---|
| 915 | * the elements in the xyz array. Numeration of the elements in the
|
|---|
| 916 | * array starts from 1 (like in fortran). The indexes can be positive
|
|---|
| 917 | * or negative. Negative sign means that the corresponding edge is
|
|---|
| 918 | * invisible. The normal of the face should be directed to exterior
|
|---|
| 919 | * of the polyhedron.
|
|---|
| 920 | *
|
|---|
| 921 | * @param Nnodes number of nodes
|
|---|
| 922 | * @param Nfaces number of faces
|
|---|
| 923 | * @param xyz nodes
|
|---|
| 924 | * @param faces_vec faces (quadrilaterals or triangles)
|
|---|
| 925 | * @return status of the operation - is non-zero in case of problem
|
|---|
| 926 | */
|
|---|
| 927 | G4int nNodes;
|
|---|
| 928 | G4int nFaces;
|
|---|
| 929 | typedef G4double double3[3];
|
|---|
| 930 | double3* xyz;
|
|---|
| 931 | typedef G4int int4[4];
|
|---|
| 932 | int4* faces_vec;
|
|---|
| 933 | if (phiIsOpen)
|
|---|
| 934 | {
|
|---|
| 935 | // Triangulate open ends. Simple ear-chopping algorithm...
|
|---|
| 936 | // I'm not sure how robust this algorithm is (J.Allison).
|
|---|
| 937 | //
|
|---|
| 938 | std::vector<G4bool> chopped(numCorner, false);
|
|---|
| 939 | std::vector<G4int*> triQuads;
|
|---|
| 940 | G4int remaining = numCorner;
|
|---|
| 941 | G4int iStarter = 0;
|
|---|
| 942 | while (remaining >= 3)
|
|---|
| 943 | {
|
|---|
| 944 | // Find unchopped corners...
|
|---|
| 945 | //
|
|---|
| 946 | G4int A = -1, B = -1, C = -1;
|
|---|
| 947 | G4int iStepper = iStarter;
|
|---|
| 948 | do
|
|---|
| 949 | {
|
|---|
| 950 | if (A < 0) { A = iStepper; }
|
|---|
| 951 | else if (B < 0) { B = iStepper; }
|
|---|
| 952 | else if (C < 0) { C = iStepper; }
|
|---|
| 953 | do
|
|---|
| 954 | {
|
|---|
| 955 | if (++iStepper >= numCorner) iStepper = 0;
|
|---|
| 956 | }
|
|---|
| 957 | while (chopped[iStepper]);
|
|---|
| 958 | }
|
|---|
| 959 | while (C < 0 && iStepper != iStarter);
|
|---|
| 960 |
|
|---|
| 961 | // Check triangle at B is pointing outward (an "ear").
|
|---|
| 962 | // Sign of z cross product determines...
|
|---|
| 963 |
|
|---|
| 964 | G4double BAr = corners[A].r - corners[B].r;
|
|---|
| 965 | G4double BAz = corners[A].z - corners[B].z;
|
|---|
| 966 | G4double BCr = corners[C].r - corners[B].r;
|
|---|
| 967 | G4double BCz = corners[C].z - corners[B].z;
|
|---|
| 968 | if (BAr * BCz - BAz * BCr < kCarTolerance)
|
|---|
| 969 | {
|
|---|
| 970 | G4int* tq = new G4int[3];
|
|---|
| 971 | tq[0] = A + 1;
|
|---|
| 972 | tq[1] = B + 1;
|
|---|
| 973 | tq[2] = C + 1;
|
|---|
| 974 | triQuads.push_back(tq);
|
|---|
| 975 | chopped[B] = true;
|
|---|
| 976 | --remaining;
|
|---|
| 977 | }
|
|---|
| 978 | else
|
|---|
| 979 | {
|
|---|
| 980 | do
|
|---|
| 981 | {
|
|---|
| 982 | if (++iStarter >= numCorner) { iStarter = 0; }
|
|---|
| 983 | }
|
|---|
| 984 | while (chopped[iStarter]);
|
|---|
| 985 | }
|
|---|
| 986 | }
|
|---|
| 987 |
|
|---|
| 988 | // Transfer to faces...
|
|---|
| 989 |
|
|---|
| 990 | nNodes = (numSide + 1) * numCorner;
|
|---|
| 991 | nFaces = numSide * numCorner + 2 * triQuads.size();
|
|---|
| 992 | faces_vec = new int4[nFaces];
|
|---|
| 993 | G4int iface = 0;
|
|---|
| 994 | G4int addition = numCorner * numSide;
|
|---|
| 995 | G4int d = numCorner - 1;
|
|---|
| 996 | for (G4int iEnd = 0; iEnd < 2; ++iEnd)
|
|---|
| 997 | {
|
|---|
| 998 | for (size_t i = 0; i < triQuads.size(); ++i)
|
|---|
| 999 | {
|
|---|
| 1000 | // Negative for soft/auxiliary/normally invisible edges...
|
|---|
| 1001 | //
|
|---|
| 1002 | G4int a, b, c;
|
|---|
| 1003 | if (iEnd == 0)
|
|---|
| 1004 | {
|
|---|
| 1005 | a = triQuads[i][0];
|
|---|
| 1006 | b = triQuads[i][1];
|
|---|
| 1007 | c = triQuads[i][2];
|
|---|
| 1008 | }
|
|---|
| 1009 | else
|
|---|
| 1010 | {
|
|---|
| 1011 | a = triQuads[i][0] + addition;
|
|---|
| 1012 | b = triQuads[i][2] + addition;
|
|---|
| 1013 | c = triQuads[i][1] + addition;
|
|---|
| 1014 | }
|
|---|
| 1015 | G4int ab = std::abs(b - a);
|
|---|
| 1016 | G4int bc = std::abs(c - b);
|
|---|
| 1017 | G4int ca = std::abs(a - c);
|
|---|
| 1018 | faces_vec[iface][0] = (ab == 1 || ab == d)? a: -a;
|
|---|
| 1019 | faces_vec[iface][1] = (bc == 1 || bc == d)? b: -b;
|
|---|
| 1020 | faces_vec[iface][2] = (ca == 1 || ca == d)? c: -c;
|
|---|
| 1021 | faces_vec[iface][3] = 0;
|
|---|
| 1022 | ++iface;
|
|---|
| 1023 | }
|
|---|
| 1024 | }
|
|---|
| 1025 |
|
|---|
| 1026 | // Continue with sides...
|
|---|
| 1027 |
|
|---|
| 1028 | xyz = new double3[nNodes];
|
|---|
| 1029 | const G4double dPhi = (endPhi - startPhi) / numSide;
|
|---|
| 1030 | G4double phi = startPhi;
|
|---|
| 1031 | G4int ixyz = 0;
|
|---|
| 1032 | for (G4int iSide = 0; iSide < numSide; ++iSide)
|
|---|
| 1033 | {
|
|---|
| 1034 | for (G4int iCorner = 0; iCorner < numCorner; ++iCorner)
|
|---|
| 1035 | {
|
|---|
| 1036 | xyz[ixyz][0] = corners[iCorner].r * std::cos(phi);
|
|---|
| 1037 | xyz[ixyz][1] = corners[iCorner].r * std::sin(phi);
|
|---|
| 1038 | xyz[ixyz][2] = corners[iCorner].z;
|
|---|
| 1039 | if (iCorner < numCorner - 1)
|
|---|
| 1040 | {
|
|---|
| 1041 | faces_vec[iface][0] = ixyz + 1;
|
|---|
| 1042 | faces_vec[iface][1] = ixyz + numCorner + 1;
|
|---|
| 1043 | faces_vec[iface][2] = ixyz + numCorner + 2;
|
|---|
| 1044 | faces_vec[iface][3] = ixyz + 2;
|
|---|
| 1045 | }
|
|---|
| 1046 | else
|
|---|
| 1047 | {
|
|---|
| 1048 | faces_vec[iface][0] = ixyz + 1;
|
|---|
| 1049 | faces_vec[iface][1] = ixyz + numCorner + 1;
|
|---|
| 1050 | faces_vec[iface][2] = ixyz + 2;
|
|---|
| 1051 | faces_vec[iface][3] = ixyz - numCorner + 2;
|
|---|
| 1052 | }
|
|---|
| 1053 | ++iface;
|
|---|
| 1054 | ++ixyz;
|
|---|
| 1055 | }
|
|---|
| 1056 | phi += dPhi;
|
|---|
| 1057 | }
|
|---|
| 1058 |
|
|---|
| 1059 | // Last corners...
|
|---|
| 1060 |
|
|---|
| 1061 | for (G4int iCorner = 0; iCorner < numCorner; ++iCorner)
|
|---|
| 1062 | {
|
|---|
| 1063 | xyz[ixyz][0] = corners[iCorner].r * std::cos(phi);
|
|---|
| 1064 | xyz[ixyz][1] = corners[iCorner].r * std::sin(phi);
|
|---|
| 1065 | xyz[ixyz][2] = corners[iCorner].z;
|
|---|
| 1066 | ++ixyz;
|
|---|
| 1067 | }
|
|---|
| 1068 | }
|
|---|
| 1069 | else // !phiIsOpen - i.e., a complete 360 degrees.
|
|---|
| 1070 | {
|
|---|
| 1071 | nNodes = numSide * numCorner;
|
|---|
| 1072 | nFaces = numSide * numCorner;;
|
|---|
| 1073 | xyz = new double3[nNodes];
|
|---|
| 1074 | faces_vec = new int4[nFaces];
|
|---|
| 1075 | // const G4double dPhi = (endPhi - startPhi) / numSide;
|
|---|
| 1076 | const G4double dPhi = twopi / numSide; // !phiIsOpen endPhi-startPhi = 360 degrees.
|
|---|
| 1077 | G4double phi = startPhi;
|
|---|
| 1078 | G4int ixyz = 0, iface = 0;
|
|---|
| 1079 | for (G4int iSide = 0; iSide < numSide; ++iSide)
|
|---|
| 1080 | {
|
|---|
| 1081 | for (G4int iCorner = 0; iCorner < numCorner; ++iCorner)
|
|---|
| 1082 | {
|
|---|
| 1083 | xyz[ixyz][0] = corners[iCorner].r * std::cos(phi);
|
|---|
| 1084 | xyz[ixyz][1] = corners[iCorner].r * std::sin(phi);
|
|---|
| 1085 | xyz[ixyz][2] = corners[iCorner].z;
|
|---|
| 1086 | if (iSide < numSide - 1)
|
|---|
| 1087 | {
|
|---|
| 1088 | if (iCorner < numCorner - 1)
|
|---|
| 1089 | {
|
|---|
| 1090 | faces_vec[iface][0] = ixyz + 1;
|
|---|
| 1091 | faces_vec[iface][1] = ixyz + numCorner + 1;
|
|---|
| 1092 | faces_vec[iface][2] = ixyz + numCorner + 2;
|
|---|
| 1093 | faces_vec[iface][3] = ixyz + 2;
|
|---|
| 1094 | }
|
|---|
| 1095 | else
|
|---|
| 1096 | {
|
|---|
| 1097 | faces_vec[iface][0] = ixyz + 1;
|
|---|
| 1098 | faces_vec[iface][1] = ixyz + numCorner + 1;
|
|---|
| 1099 | faces_vec[iface][2] = ixyz + 2;
|
|---|
| 1100 | faces_vec[iface][3] = ixyz - numCorner + 2;
|
|---|
| 1101 | }
|
|---|
| 1102 | }
|
|---|
| 1103 | else // Last side joins ends...
|
|---|
| 1104 | {
|
|---|
| 1105 | if (iCorner < numCorner - 1)
|
|---|
| 1106 | {
|
|---|
| 1107 | faces_vec[iface][0] = ixyz + 1;
|
|---|
| 1108 | faces_vec[iface][1] = ixyz + numCorner - nFaces + 1;
|
|---|
| 1109 | faces_vec[iface][2] = ixyz + numCorner - nFaces + 2;
|
|---|
| 1110 | faces_vec[iface][3] = ixyz + 2;
|
|---|
| 1111 | }
|
|---|
| 1112 | else
|
|---|
| 1113 | {
|
|---|
| 1114 | faces_vec[iface][0] = ixyz + 1;
|
|---|
| 1115 | faces_vec[iface][1] = ixyz - nFaces + numCorner + 1;
|
|---|
| 1116 | faces_vec[iface][2] = ixyz - nFaces + 2;
|
|---|
| 1117 | faces_vec[iface][3] = ixyz - numCorner + 2;
|
|---|
| 1118 | }
|
|---|
| 1119 | }
|
|---|
| 1120 | ++ixyz;
|
|---|
| 1121 | ++iface;
|
|---|
| 1122 | }
|
|---|
| 1123 | phi += dPhi;
|
|---|
| 1124 | }
|
|---|
| 1125 | }
|
|---|
| 1126 | G4Polyhedron* polyhedron = new G4Polyhedron;
|
|---|
| 1127 | G4int problem = polyhedron->createPolyhedron(nNodes, nFaces, xyz, faces_vec);
|
|---|
| [1337] | 1128 | delete [] faces_vec;
|
|---|
| 1129 | delete [] xyz;
|
|---|
| [831] | 1130 | if (problem)
|
|---|
| 1131 | {
|
|---|
| 1132 | std::ostringstream oss;
|
|---|
| 1133 | oss << "Problem creating G4Polyhedron for: " << GetName();
|
|---|
| 1134 | G4Exception("G4Polyhedra::CreatePolyhedron()", "BadPolyhedron",
|
|---|
| 1135 | JustWarning, oss.str().c_str());
|
|---|
| 1136 | delete polyhedron;
|
|---|
| 1137 | return 0;
|
|---|
| 1138 | }
|
|---|
| 1139 | else
|
|---|
| 1140 | {
|
|---|
| 1141 | return polyhedron;
|
|---|
| 1142 | }
|
|---|
| 1143 | }
|
|---|
| 1144 | }
|
|---|
| 1145 |
|
|---|
| 1146 | //
|
|---|
| 1147 | // CreateNURBS
|
|---|
| 1148 | //
|
|---|
| 1149 | G4NURBS *G4Polyhedra::CreateNURBS() const
|
|---|
| 1150 | {
|
|---|
| 1151 | return 0;
|
|---|
| 1152 | }
|
|---|
| 1153 |
|
|---|
| 1154 |
|
|---|
| 1155 | //
|
|---|
| 1156 | // G4PolyhedraHistorical stuff
|
|---|
| 1157 | //
|
|---|
| 1158 | G4PolyhedraHistorical::G4PolyhedraHistorical()
|
|---|
| 1159 | : Z_values(0), Rmin(0), Rmax(0)
|
|---|
| 1160 | {
|
|---|
| 1161 | }
|
|---|
| 1162 |
|
|---|
| 1163 | G4PolyhedraHistorical::~G4PolyhedraHistorical()
|
|---|
| 1164 | {
|
|---|
| 1165 | delete [] Z_values;
|
|---|
| 1166 | delete [] Rmin;
|
|---|
| 1167 | delete [] Rmax;
|
|---|
| 1168 | }
|
|---|
| 1169 |
|
|---|
| 1170 | G4PolyhedraHistorical::
|
|---|
| 1171 | G4PolyhedraHistorical( const G4PolyhedraHistorical& source )
|
|---|
| 1172 | {
|
|---|
| 1173 | Start_angle = source.Start_angle;
|
|---|
| 1174 | Opening_angle = source.Opening_angle;
|
|---|
| 1175 | numSide = source.numSide;
|
|---|
| 1176 | Num_z_planes = source.Num_z_planes;
|
|---|
| 1177 |
|
|---|
| 1178 | Z_values = new G4double[Num_z_planes];
|
|---|
| 1179 | Rmin = new G4double[Num_z_planes];
|
|---|
| 1180 | Rmax = new G4double[Num_z_planes];
|
|---|
| 1181 |
|
|---|
| 1182 | for( G4int i = 0; i < Num_z_planes; i++)
|
|---|
| 1183 | {
|
|---|
| 1184 | Z_values[i] = source.Z_values[i];
|
|---|
| 1185 | Rmin[i] = source.Rmin[i];
|
|---|
| 1186 | Rmax[i] = source.Rmax[i];
|
|---|
| 1187 | }
|
|---|
| 1188 | }
|
|---|
| 1189 |
|
|---|
| 1190 | G4PolyhedraHistorical&
|
|---|
| 1191 | G4PolyhedraHistorical::operator=( const G4PolyhedraHistorical& right )
|
|---|
| 1192 | {
|
|---|
| 1193 | if ( &right == this ) return *this;
|
|---|
| 1194 |
|
|---|
| 1195 | if (&right)
|
|---|
| 1196 | {
|
|---|
| 1197 | Start_angle = right.Start_angle;
|
|---|
| 1198 | Opening_angle = right.Opening_angle;
|
|---|
| 1199 | numSide = right.numSide;
|
|---|
| 1200 | Num_z_planes = right.Num_z_planes;
|
|---|
| 1201 |
|
|---|
| 1202 | delete [] Z_values;
|
|---|
| 1203 | delete [] Rmin;
|
|---|
| 1204 | delete [] Rmax;
|
|---|
| 1205 | Z_values = new G4double[Num_z_planes];
|
|---|
| 1206 | Rmin = new G4double[Num_z_planes];
|
|---|
| 1207 | Rmax = new G4double[Num_z_planes];
|
|---|
| 1208 |
|
|---|
| 1209 | for( G4int i = 0; i < Num_z_planes; i++)
|
|---|
| 1210 | {
|
|---|
| 1211 | Z_values[i] = right.Z_values[i];
|
|---|
| 1212 | Rmin[i] = right.Rmin[i];
|
|---|
| 1213 | Rmax[i] = right.Rmax[i];
|
|---|
| 1214 | }
|
|---|
| 1215 | }
|
|---|
| 1216 | return *this;
|
|---|
| 1217 | }
|
|---|