164 lines
6.0 KiB
Plaintext
164 lines
6.0 KiB
Plaintext
//
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// ********************************************************************
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// * DISCLAIMER *
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// * *
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// * The following disclaimer summarizes all the specific disclaimers *
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// * of contributors to this software. The specific disclaimers,which *
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// * govern, are listed with their locations in: *
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// * http://cern.ch/geant4/license *
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// * *
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// * Neither the authors of this software system, nor their employing *
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// * institutes,nor the agencies providing financial support for this *
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// * work make any representation or warranty, express or implied, *
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// * regarding this software system or assume any liability for its *
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// * use. *
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// * *
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// * This code implementation is the intellectual property of the *
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// * GEANT4 collaboration. *
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// * By copying, distributing or modifying the Program (or any work *
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// * based on the Program) you indicate your acceptance of this *
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// * statement, and all its terms. *
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// ********************************************************************
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//
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//
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// $Id: G4ParameterisedNavigation.icc,v 1.7 2002/05/15 10:23:39 gcosmo Exp $
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// GEANT4 tag $Name: geant4-05-00 $
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//
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//
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// class G4ParameterisedNavigation Inline implementation
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//
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// ********************************************************************
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// ********************************************************************
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// ParamVoxelLocate
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// ********************************************************************
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//
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inline
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G4SmartVoxelNode*
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G4ParameterisedNavigation::ParamVoxelLocate( G4SmartVoxelHeader* pHead,
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const G4ThreeVector& localPoint )
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{
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// If no parameterisation axis is specified, adopt default
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// location strategy as for placements
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//
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if ( pHead->GetParamAxis()==kUndefined )
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{
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fVoxelNode = G4VoxelNavigation::VoxelLocate(pHead,localPoint);
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}
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else
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{
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G4double targetHeaderMin, targetHeaderNodeWidth;
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G4int targetHeaderNoSlices, targetNodeNo;
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EAxis targetHeaderAxis;
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targetHeaderAxis = pHead->GetAxis();
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targetHeaderNoSlices = pHead->GetNoSlices();
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targetHeaderMin = pHead->GetMinExtent();
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targetHeaderNodeWidth = (pHead->GetMaxExtent()-targetHeaderMin)
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/ targetHeaderNoSlices;
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targetNodeNo = G4int ( (localPoint(targetHeaderAxis)-targetHeaderMin)
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/ targetHeaderNodeWidth );
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// Rounding protection
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//
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if ( targetNodeNo<0 )
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{
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targetNodeNo = 0;
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}
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else if ( targetNodeNo>=targetHeaderNoSlices )
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{
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targetNodeNo = targetHeaderNoSlices-1;
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}
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fVoxelAxis = targetHeaderAxis;
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fVoxelNoSlices = targetHeaderNoSlices;
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fVoxelSliceWidth = targetHeaderNodeWidth;
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fVoxelNodeNo = targetNodeNo;
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fVoxelHeader = pHead;
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fVoxelNode = pHead->GetSlice(targetNodeNo)->GetNode();
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}
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return fVoxelNode;
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}
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// ********************************************************************
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// LevelLocate
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// ********************************************************************
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//
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inline
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G4bool
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G4ParameterisedNavigation::LevelLocate( G4NavigationHistory& history,
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const G4VPhysicalVolume* blockedVol,
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const G4int blockedNum,
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const G4ThreeVector& globalPoint,
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const G4ThreeVector* globalDirection,
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const G4bool pLocatedOnEdge,
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G4ThreeVector& localPoint )
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{
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G4SmartVoxelHeader *motherVoxelHeader;
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G4SmartVoxelNode *motherVoxelNode;
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G4VPhysicalVolume *motherPhysical, *pPhysical;
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G4VPVParameterisation *pParam;
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G4LogicalVolume *motherLogical;
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G4VSolid *pSolid;
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G4ThreeVector samplePoint;
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G4int voxelNoDaughters, replicaNo;
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motherPhysical = history.GetTopVolume();
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motherLogical = motherPhysical->GetLogicalVolume();
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motherVoxelHeader = motherLogical->GetVoxelHeader();
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// Find the voxel containing the point
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//
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motherVoxelNode = ParamVoxelLocate(motherVoxelHeader,localPoint);
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voxelNoDaughters = motherVoxelNode->GetNoContained();
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if ( voxelNoDaughters==0 ) return false;
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pPhysical = motherLogical->GetDaughter(0);
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pParam = pPhysical->GetParameterisation();
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// Search replicated daughter volume
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//
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for ( register int sampleNo=voxelNoDaughters-1; sampleNo>=0; sampleNo-- )
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{
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replicaNo = motherVoxelNode->GetVolume(sampleNo);
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if ( (replicaNo!=blockedNum) || (pPhysical!=blockedVol) )
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{
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// Obtain solid (as it can vary) and obtain its parameters
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//
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pSolid = pParam->ComputeSolid(replicaNo, pPhysical);
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pSolid->ComputeDimensions(pParam, replicaNo, pPhysical);
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pParam->ComputeTransformation(replicaNo, pPhysical);
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// Setup volume with mother pointer
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//
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pPhysical->Setup(motherPhysical);
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history.NewLevel(pPhysical, kParameterised, replicaNo);
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samplePoint = history.GetTopTransform().TransformPoint(globalPoint);
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if ( !G4AuxiliaryNavServices::CheckPointOnSurface(pSolid,
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samplePoint, globalDirection,
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history.GetTopTransform(), pLocatedOnEdge) )
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{
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history.BackLevel();
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}
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else
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{
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// Enter this daughter
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//
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localPoint = samplePoint;
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// Set the correct copy number in physical
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//
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pPhysical->SetCopyNo(replicaNo);
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// Set the correct solid and material in Logical Volume
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//
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G4LogicalVolume *pLogical = pPhysical->GetLogicalVolume();
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pLogical->SetSolid(pSolid);
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pLogical->SetMaterial(pParam->ComputeMaterial(replicaNo, pPhysical));
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return true;
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}
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}
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}
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return false;
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}
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