// // ******************************************************************** // * License and Disclaimer * // * * // * The Geant4 software is copyright of the Copyright Holders of * // * the Geant4 Collaboration. It is provided under the terms and * // * conditions of the Geant4 Software License, included in the file * // * LICENSE and available at http://cern.ch/geant4/license . These * // * include a list of copyright holders. * // * * // * Neither the authors of this software system, nor their employing * // * institutes,nor the agencies providing financial support for this * // * work make any representation or warranty, express or implied, * // * regarding this software system or assume any liability for its * // * use. Please see the license in the file LICENSE and URL above * // * for the full disclaimer and the limitation of liability. * // * * // * This code implementation is the result of the scientific and * // * technical work of the GEANT4 collaboration. * // * By using, copying, modifying or distributing the software (or * // * any work based on the software) you agree to acknowledge its * // * use in resulting scientific publications, and indicate your * // * acceptance of all terms of the Geant4 Software license. * // ******************************************************************** // // G4ParticlePropertyData inline methods implementation // // Author: H.Kurashige, 9 June 2003 // -------------------------------------------------------------------- inline void G4ParticlePropertyData::SetVerboseLevel(G4int value) { verboseLevel = value; } inline G4int G4ParticlePropertyData::GetVerboseLevel() const { return verboseLevel; } inline G4int G4ParticlePropertyData::GetQuarkContent(G4int flavor) const { if ((flavor > 0) && (flavor <= NumberOfQuarkFlavor)) { return theQuarkContent[flavor - 1]; } return 0; } inline G4int G4ParticlePropertyData::GetAntiQuarkContent(G4int flavor) const { if ((flavor > 0) && (flavor < NumberOfQuarkFlavor)) { return theAntiQuarkContent[flavor - 1]; } return 0; } inline void G4ParticlePropertyData::SetPDGEncoding(G4int aEncoding) { thePDGEncoding = aEncoding; fPDGEncodingModified = true; theAntiPDGEncoding = -1 * aEncoding; fAntiPDGEncodingModified = true; } inline void G4ParticlePropertyData::SetAntiPDGEncoding(G4int aEncoding) { theAntiPDGEncoding = aEncoding; fAntiPDGEncodingModified = true; } inline void G4ParticlePropertyData::SetPDGMass(G4double newMass) { thePDGMass = newMass; fPDGMassModified = true; } inline void G4ParticlePropertyData::SetPDGWidth(G4double newWidth) { thePDGWidth = newWidth; fPDGWidthModified = true; } inline void G4ParticlePropertyData::SetPDGCharge(G4double newCharge) { thePDGCharge = newCharge; fPDGChargeModified = true; } inline void G4ParticlePropertyData::SetPDGiSpin(G4int newSpin) { thePDGiSpin = newSpin; fPDGiSpinModified = true; } inline void G4ParticlePropertyData::SetPDGiParity(G4int newParity) { thePDGiParity = newParity; fPDGiParityModified = true; } inline void G4ParticlePropertyData::SetPDGiConjugation(G4int newConjugation) { thePDGiConjugation = newConjugation; fPDGiConjugationModified = true; } inline void G4ParticlePropertyData::SetPDGiIsospin(G4int newIsospin) { thePDGiIsospin = newIsospin; fPDGiIsospinModified = true; } inline void G4ParticlePropertyData::SetPDGiIsospin3(G4int newIsospin3) { thePDGiIsospin3 = newIsospin3; fPDGiIsospin3Modified = true; } inline void G4ParticlePropertyData::SetPDGMagneticMoment(G4double mageticMoment) { thePDGMagneticMoment = mageticMoment; fPDGMagneticMomentModified = true; } inline void G4ParticlePropertyData::SetPDGiGParity(G4int newGParity) { thePDGiGParity = newGParity; fPDGiGParityModified = true; } inline void G4ParticlePropertyData::SetLeptonNumber(G4int newLeptonNumber) { theLeptonNumber = newLeptonNumber; fLeptonNumberModified = true; } inline void G4ParticlePropertyData::SetBaryonNumber(G4int newBaryonNumber) { theBaryonNumber = newBaryonNumber; fBaryonNumberModified = true; } inline void G4ParticlePropertyData::SetQuarkContent(G4int flavor, G4int newContent) { if ((flavor > 0) && (flavor <= NumberOfQuarkFlavor)) { theQuarkContent[flavor - 1] = newContent; fQuarkContentModified = true; } } inline void G4ParticlePropertyData::SetAntiQuarkContent(G4int flavor, G4int newContent) { if ((flavor > 0) && (flavor <= NumberOfQuarkFlavor)) { theAntiQuarkContent[flavor - 1] = newContent; fAntiQuarkContentModified = true; } } inline void G4ParticlePropertyData::SetPDGLifeTime(G4double newLifeTime) { thePDGLifeTime = newLifeTime; fPDGLifeTimeModified = true; }