Commit 0a55d72f authored by Mark Friedrichs's avatar Mark Friedrichs
Browse files

Removed unused accessors; set missing initializations in AmoebaVdwForce

parent bc961dd3
...@@ -126,12 +126,12 @@ public: ...@@ -126,12 +126,12 @@ public:
/** /**
* Get the dielectric offset (nm) used in OBC * Get the dielectric offset (nm) used in OBC
*/ */
double getDielectricOffset() const; //double getDielectricOffset() const;
/** /**
* Set the dielectric offset (nm) used in OBC * Set the dielectric offset (nm) used in OBC
*/ */
void setDielectricOffset(double dielectricOffset); //void setDielectricOffset(double dielectricOffset);
/** /**
* Get the flag signalling whether the cavity term should be included * Get the flag signalling whether the cavity term should be included
......
...@@ -165,7 +165,7 @@ public: ...@@ -165,7 +165,7 @@ public:
* *
* @param the B-spline order parameter * @param the B-spline order parameter
*/ */
void setPmeBSplineOrder(int inputBSplineOrder); //void setPmeBSplineOrder(int inputBSplineOrder);
/** /**
* Get the PME grid dimensions * Get the PME grid dimensions
...@@ -265,14 +265,14 @@ public: ...@@ -265,14 +265,14 @@ public:
* *
* @return iteration method to be used for calculating the mutual induced dipole * @return iteration method to be used for calculating the mutual induced dipole
*/ */
MutualInducedIterationMethod getMutualInducedIterationMethod( void ) const; //MutualInducedIterationMethod getMutualInducedIterationMethod( void ) const;
/** /**
* Set the iteration method to be used for calculating the mutual induced dipoles * Set the iteration method to be used for calculating the mutual induced dipoles
* *
* @param iteration method to be used for calculating the mutual induced dipole * @param iteration method to be used for calculating the mutual induced dipole
*/ */
void setMutualInducedIterationMethod( MutualInducedIterationMethod inputMutualInducedIterationMethod ); //void setMutualInducedIterationMethod( MutualInducedIterationMethod inputMutualInducedIterationMethod );
/** /**
* Get the max number of iterations to be used in calculating the mutual induced dipoles * Get the max number of iterations to be used in calculating the mutual induced dipoles
...@@ -307,28 +307,29 @@ public: ...@@ -307,28 +307,29 @@ public:
* *
* @return scaling distance cutoff * @return scaling distance cutoff
*/ */
double getScalingDistanceCutoff( void ) const; //double getScalingDistanceCutoff( void ) const;
/** /**
* Set the scaling distance cutoff * Set the scaling distance cutoff
* *
* @param scaling distance cutoff * @param scaling distance cutoff
*/ */
void setScalingDistanceCutoff( double inputScalingDistanceCutoff ); //void setScalingDistanceCutoff( double inputScalingDistanceCutoff );
/** /**
* Get the electric constant * Get the electric constant
* @return the electric constant * @return the electric constant
*/ */
double getElectricConstant( void ) const; //double getElectricConstant( void ) const;
/** /**
* Set the electric constant * Set the electric constant
* *
* @param the electric constant * @param the electric constant
*/ */
void setElectricConstant( double inputElectricConstant ); //void setElectricConstant( double inputElectricConstant );
/** /**
* Get the error tolerance for Ewald summation. This corresponds to the fractional error in the forces * Get the error tolerance for Ewald summation. This corresponds to the fractional error in the forces
* which is acceptable. This value is used to select the reciprocal space cutoff and separation * which is acceptable. This value is used to select the reciprocal space cutoff and separation
......
...@@ -118,7 +118,7 @@ public: ...@@ -118,7 +118,7 @@ public:
/** /**
* Set epsilon combining rule * Set epsilon combining rule
* *
* @param epsilonCombiningRule epsilon combining rule: 'ARITHMETIC', 'GEOMETRIC'. 'CUBIC-MEAN' * @param epsilonCombiningRule epsilon combining rule: 'ARITHMETIC', 'GEOMETRIC'. 'HARMONIC', 'HHG'
*/ */
void setEpsilonCombiningRule( const std::string& epsilonCombiningRule ); void setEpsilonCombiningRule( const std::string& epsilonCombiningRule );
...@@ -193,9 +193,12 @@ private: ...@@ -193,9 +193,12 @@ private:
class VdwInfo; class VdwInfo;
int usePBC; int usePBC;
int useNeighborList; double cutoff; int useNeighborList;
double cutoff;
std::string sigmaCombiningRule; std::string sigmaCombiningRule;
std::string epsilonCombiningRule; std::string epsilonCombiningRule;
std::vector< std::vector<int> > exclusions; std::vector< std::vector<int> > exclusions;
// Retarded visual studio compiler complains about being unable to // Retarded visual studio compiler complains about being unable to
......
...@@ -57,14 +57,14 @@ void AmoebaGeneralizedKirkwoodForce::setParticleParameters(int index, double cha ...@@ -57,14 +57,14 @@ void AmoebaGeneralizedKirkwoodForce::setParticleParameters(int index, double cha
particles[index].radius = radius; particles[index].radius = radius;
particles[index].scalingFactor = scalingFactor; particles[index].scalingFactor = scalingFactor;
} }
/*
double AmoebaGeneralizedKirkwoodForce::getDielectricOffset() const { double AmoebaGeneralizedKirkwoodForce::getDielectricOffset() const {
return dielectricOffset; return dielectricOffset;
} }
void AmoebaGeneralizedKirkwoodForce::setDielectricOffset(double inputDielectricOffset ) { void AmoebaGeneralizedKirkwoodForce::setDielectricOffset(double inputDielectricOffset ) {
dielectricOffset = inputDielectricOffset; dielectricOffset = inputDielectricOffset;
} } */
int AmoebaGeneralizedKirkwoodForce::getIncludeCavityTerm() const { int AmoebaGeneralizedKirkwoodForce::getIncludeCavityTerm() const {
return includeCavityTerm; return includeCavityTerm;
......
...@@ -78,9 +78,10 @@ int AmoebaMultipoleForce::getPmeBSplineOrder( void ) const { ...@@ -78,9 +78,10 @@ int AmoebaMultipoleForce::getPmeBSplineOrder( void ) const {
return pmeBSplineOrder; return pmeBSplineOrder;
} }
/*
void AmoebaMultipoleForce::setPmeBSplineOrder(int inputBSplineOrder) { void AmoebaMultipoleForce::setPmeBSplineOrder(int inputBSplineOrder) {
pmeBSplineOrder = inputBSplineOrder; pmeBSplineOrder = inputBSplineOrder;
} } */
void AmoebaMultipoleForce::getPmeGridDimensions( std::vector<int>& gridDimension ) const { void AmoebaMultipoleForce::getPmeGridDimensions( std::vector<int>& gridDimension ) const {
if( gridDimension.size() < 3 ){ if( gridDimension.size() < 3 ){
...@@ -103,14 +104,14 @@ void AmoebaMultipoleForce::setPmeGridDimensions( const std::vector<int>& gridDim ...@@ -103,14 +104,14 @@ void AmoebaMultipoleForce::setPmeGridDimensions( const std::vector<int>& gridDim
pmeGridDimension[2] = gridDimension[2]; pmeGridDimension[2] = gridDimension[2];
return; return;
} }
/*
AmoebaMultipoleForce::MutualInducedIterationMethod AmoebaMultipoleForce::getMutualInducedIterationMethod( void ) const { AmoebaMultipoleForce::MutualInducedIterationMethod AmoebaMultipoleForce::getMutualInducedIterationMethod( void ) const {
return mutualInducedIterationMethod; return mutualInducedIterationMethod;
} }
void AmoebaMultipoleForce::setMutualInducedIterationMethod( AmoebaMultipoleForce::MutualInducedIterationMethod inputMutualInducedIterationMethod ) { void AmoebaMultipoleForce::setMutualInducedIterationMethod( AmoebaMultipoleForce::MutualInducedIterationMethod inputMutualInducedIterationMethod ) {
mutualInducedIterationMethod = inputMutualInducedIterationMethod; mutualInducedIterationMethod = inputMutualInducedIterationMethod;
} } */
int AmoebaMultipoleForce::getMutualInducedMaxIterations( void ) const { int AmoebaMultipoleForce::getMutualInducedMaxIterations( void ) const {
return mutualInducedMaxIterations; return mutualInducedMaxIterations;
...@@ -127,7 +128,7 @@ double AmoebaMultipoleForce::getMutualInducedTargetEpsilon( void ) const { ...@@ -127,7 +128,7 @@ double AmoebaMultipoleForce::getMutualInducedTargetEpsilon( void ) const {
void AmoebaMultipoleForce::setMutualInducedTargetEpsilon( double inputMutualInducedTargetEpsilon ) { void AmoebaMultipoleForce::setMutualInducedTargetEpsilon( double inputMutualInducedTargetEpsilon ) {
mutualInducedTargetEpsilon = inputMutualInducedTargetEpsilon; mutualInducedTargetEpsilon = inputMutualInducedTargetEpsilon;
} }
/*
double AmoebaMultipoleForce::getScalingDistanceCutoff( void ) const { double AmoebaMultipoleForce::getScalingDistanceCutoff( void ) const {
return scalingDistanceCutoff; return scalingDistanceCutoff;
} }
...@@ -142,7 +143,7 @@ double AmoebaMultipoleForce::getElectricConstant( void ) const { ...@@ -142,7 +143,7 @@ double AmoebaMultipoleForce::getElectricConstant( void ) const {
void AmoebaMultipoleForce::setElectricConstant( double inputElectricConstant ) { void AmoebaMultipoleForce::setElectricConstant( double inputElectricConstant ) {
electricConstant = inputElectricConstant; electricConstant = inputElectricConstant;
} } */
double AmoebaMultipoleForce::getEwaldErrorTolerance() const { double AmoebaMultipoleForce::getEwaldErrorTolerance() const {
return ewaldErrorTol; return ewaldErrorTol;
......
...@@ -38,7 +38,7 @@ using namespace OpenMM; ...@@ -38,7 +38,7 @@ using namespace OpenMM;
using std::string; using std::string;
using std::vector; using std::vector;
AmoebaVdwForce::AmoebaVdwForce() : usePBC(0), cutoff(1.0e+10), useNeighborList(0) { AmoebaVdwForce::AmoebaVdwForce() : sigmaCombiningRule("CUBIC-MEAN"), epsilonCombiningRule("HHG"), usePBC(0), cutoff(1.0e+10), useNeighborList(0) {
} }
int AmoebaVdwForce::addParticle(int ivIndex, int classIndex, double sigma, double epsilon, double reductionFactor ) { int AmoebaVdwForce::addParticle(int ivIndex, int classIndex, double sigma, double epsilon, double reductionFactor ) {
......
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