BornAgain  1.19.0
Simulate and fit neutron and x-ray scattering at grazing incidence
DistributionCosine Class Reference

Cosine distribution. More...

Inheritance diagram for DistributionCosine:
[legend]
Collaboration diagram for DistributionCosine:
[legend]

Public Member Functions

 DistributionCosine ()
 
 DistributionCosine (const std::vector< double > P)
 
 DistributionCosine (double mean, double sigma)
 
void accept (INodeVisitor *visitor) const final
 Calls the INodeVisitor's visit method. More...
 
DistributionCosine * clone () const final
 
int copyNumber (const INode *node) const
 Returns copyNumber of child, which takes into account existence of children with same name. More...
 
ParameterPool * createParameterTree () const
 Creates new parameter pool, with all local parameters and those of its children. More...
 
std::string displayName () const
 Returns display name, composed from the name of node and it's copy number. More...
 
virtual std::vector< double > equidistantPoints (size_t nbr_samples, double sigma_factor, const RealLimits &limits=RealLimits()) const
 generate list of sample values More...
 
virtual std::vector< double > equidistantPointsInRange (size_t nbr_samples, double xmin, double xmax) const
 Returns equidistant interpolation points from xmin to xmax. More...
 
std::vector< ParameterSample > equidistantSamples (size_t nbr_samples, double sigma_factor=0., const RealLimits &limits=RealLimits()) const
 Returns equidistant samples, using intrinsic parameters, weighted with probabilityDensity(). More...
 
std::vector< ParameterSample > equidistantSamplesInRange (size_t nbr_samples, double xmin, double xmax) const
 Returns equidistant samples from xmin to xmax, weighted with probabilityDensity(). More...
 
virtual std::vector< const INode * > getChildren () const
 Returns a vector of children. More...
 
double getMean () const final
 Returns the distribution-specific mean. More...
 
const std::string & getName () const
 
double getSigma () const
 
bool isDelta () const final
 Returns true if the distribution is in the limit case of a Dirac delta distribution. More...
 
virtual void onChange ()
 Action to be taken in inherited class when a parameter has changed. More...
 
RealParameter * parameter (const std::string &name) const
 Returns parameter with given 'name'. More...
 
ParameterPool * parameterPool () const
 Returns pointer to the parameter pool. More...
 
std::string parametersToString () const
 Returns multiline string representing available parameters. More...
 
INode * parent ()
 
const INode * parent () const
 
double probabilityDensity (double x) const final
 Returns the distribution-specific probability density for value x. More...
 
std::vector< const INode * > progeny () const
 Returns a vector of all descendants. More...
 
void registerChild (INode *node)
 
RealParameter & registerParameter (const std::string &name, double *parpointer)
 
void registerVector (const std::string &base_name, kvector_t *p_vec, const std::string &units="nm")
 
void removeParameter (const std::string &name)
 
void removeVector (const std::string &base_name)
 
void setName (const std::string &name)
 
void setParameterValue (const std::string &name, double value)
 
virtual void setParent (const INode *newParent)
 
virtual void setUnits (const std::string &units)
 Sets distribution units. More...
 
void setVectorValue (const std::string &base_name, kvector_t value)
 
virtual void transferToCPP ()
 Used for Python overriding of clone (see swig/tweaks.py) More...
 
virtual std::string treeToString () const
 Returns multiline string representing tree structure below the node. More...
 

Static Public Member Functions

static std::string XComponentName (const std::string &base_name)
 
static std::string YComponentName (const std::string &base_name)
 
static std::string ZComponentName (const std::string &base_name)
 

Protected Member Functions

void adjustMinMaxForLimits (double &xmin, double &xmax, const RealLimits &limits) const
 modifies xmin and xmax if they are outside of limits More...
 
std::vector< ParameterSample > generateSamplesFromValues (const std::vector< double > &sample_values) const
 Returns weighted samples from given interpolation points and probabilityDensity(). More...
 

Protected Attributes

const size_t m_NP
 
std::vector< double > m_P
 

Private Attributes

const double & m_mean
 
std::string m_name
 
const INode * m_parent {nullptr}
 
std::unique_ptr< ParameterPool > m_pool
 parameter pool (kind of pointer-to-implementation) More...
 
const double & m_sigma
 

Detailed Description

Cosine distribution.

Definition at line 226 of file Distributions.h.

Constructor & Destructor Documentation

◆ DistributionCosine() [1/3]

DistributionCosine::DistributionCosine ( const std::vector< double >  P)

Definition at line 333 of file Distributions.cpp.

334  : IDistribution1D({"DistributionCosine",
335  "class_tooltip",
336  {{"Mean", "", "para_tooltip", -INF, +INF, 0},
337  {"Sigma", "", "para_tooltip", -INF, +INF, 0}}},
338  P)
339  , m_mean(m_P[0])
340  , m_sigma(m_P[1])
341 {
342  if (m_sigma < 0.0)
343  throw std::runtime_error("DistributionCosine: sigma<0");
344 }
const double INF
Definition: INode.h:25
const double & m_sigma
const double & m_mean
IDistribution1D(const NodeMeta &meta, const std::vector< double > &PValues)
std::vector< double > m_P
Definition: INode.h:89

References INF.

◆ DistributionCosine() [2/3]

DistributionCosine::DistributionCosine ( double  mean,
double  sigma 
)

Definition at line 346 of file Distributions.cpp.

347  : DistributionCosine(std::vector<double>{mean, sigma})
348 {
349 }

◆ DistributionCosine() [3/3]

DistributionCosine::DistributionCosine ( )

Definition at line 351 of file Distributions.cpp.

351 : DistributionCosine(0., 1.) {}

Referenced by clone().

Member Function Documentation

◆ accept()

void DistributionCosine::accept ( INodeVisitor *  visitor) const
inlinefinalvirtual

Calls the INodeVisitor's visit method.

Implements INode.

Definition at line 244 of file Distributions.h.

244 { visitor->visit(this); }
virtual void visit(const BasicLattice2D *)
Definition: INodeVisitor.h:151

◆ adjustMinMaxForLimits()

void IDistribution1D::adjustMinMaxForLimits ( double &  xmin,
double &  xmax,
const RealLimits &  limits 
) const
protectedinherited

modifies xmin and xmax if they are outside of limits

Definition at line 84 of file Distributions.cpp.

86 {
87  if (limits.hasLowerLimit() && xmin < limits.lowerLimit())
88  xmin = limits.lowerLimit();
89  if (limits.hasUpperLimit() && xmax > limits.upperLimit())
90  xmax = limits.upperLimit();
91  if (xmin > xmax) {
92  std::ostringstream ostr;
93  ostr << "IDistribution1D::adjustMinMaxForLimits() -> Error. Can't' adjust ";
94  ostr << "xmin:" << xmin << " xmax:" << xmax << " for given limits " << limits << std::endl;
95  throw std::runtime_error(ostr.str());
96  }
97 }
bool hasUpperLimit() const
if has upper limit
Definition: RealLimits.cpp:57
double upperLimit() const
Returns upper limit.
Definition: RealLimits.cpp:62
double lowerLimit() const
Returns lower limit.
Definition: RealLimits.cpp:40
bool hasLowerLimit() const
if has lower limit
Definition: RealLimits.cpp:35

References RealLimits::hasLowerLimit(), RealLimits::hasUpperLimit(), RealLimits::lowerLimit(), and RealLimits::upperLimit().

Referenced by DistributionGate::equidistantPoints(), DistributionLorentz::equidistantPoints(), DistributionGaussian::equidistantPoints(), DistributionLogNormal::equidistantPoints(), equidistantPoints(), and DistributionTrapezoid::equidistantPoints().

Here is the call graph for this function:

◆ clone()

DistributionCosine* DistributionCosine::clone ( ) const
inlinefinalvirtual

Implements IDistribution1D.

Definition at line 232 of file Distributions.h.

232 { return new DistributionCosine(m_mean, m_sigma); }

References DistributionCosine(), m_mean, and m_sigma.

Here is the call graph for this function:

◆ copyNumber()

int INode::copyNumber ( const INode *  node) const
inherited

Returns copyNumber of child, which takes into account existence of children with same name.

Definition at line 94 of file INode.cpp.

95 {
96  if (node->parent() != this)
97  return -1;
98 
99  int result(-1), count(0);
100  for (auto child : getChildren()) {
101 
102  if (child == nullptr)
103  throw std::runtime_error("INode::copyNumber() -> Error. Nullptr as child.");
104 
105  if (child == node)
106  result = count;
107 
108  if (child->getName() == node->getName())
109  ++count;
110  }
111 
112  return count > 1 ? result : -1;
113 }
const INode * parent() const
Definition: INode.cpp:84
virtual std::vector< const INode * > getChildren() const
Returns a vector of children.
Definition: INode.cpp:63
const std::string & getName() const

References INode::getChildren(), IParametricComponent::getName(), and INode::parent().

Referenced by INode::displayName().

Here is the call graph for this function:

◆ createParameterTree()

ParameterPool * INode::createParameterTree ( ) const
virtualinherited

Creates new parameter pool, with all local parameters and those of its children.

Reimplemented from IParametricComponent.

Definition at line 126 of file INode.cpp.

127 {
128  std::unique_ptr<ParameterPool> result(new ParameterPool);
129 
130  for (const INode* child : progeny()) {
131  const std::string path = NodeUtils::nodePath(child, parent()) + "/";
132  child->parameterPool()->copyToExternalPool(path, result.get());
133  }
134 
135  return result.release();
136 }
Base class for tree-like structures containing parameterized objects.
Definition: INode.h:49
std::vector< const INode * > progeny() const
Returns a vector of all descendants.
Definition: INode.cpp:68
Container with parameters for IParametricComponent object.
Definition: ParameterPool.h:29
std::string nodePath(const INode *node, const INode *root=nullptr)
Returns path composed of node's displayName, with respect to root node.
Definition: NodeUtils.cpp:89

References NodeUtils::nodePath(), INode::parent(), and INode::progeny().

Referenced by ISimulation::runSimulation(), DepthProbeSimulation::validateParametrization(), OffSpecularSimulation::validateParametrization(), and SpecularSimulation::validateParametrization().

Here is the call graph for this function:

◆ displayName()

std::string INode::displayName ( ) const
inherited

Returns display name, composed from the name of node and it's copy number.

Definition at line 115 of file INode.cpp.

116 {
117  std::string result = getName();
118  if (m_parent) {
119  int index = m_parent->copyNumber(this);
120  if (index >= 0)
121  result = result + std::to_string(index);
122  }
123  return result;
124 }
const INode * m_parent
Definition: INode.h:83
int copyNumber(const INode *node) const
Returns copyNumber of child, which takes into account existence of children with same name.
Definition: INode.cpp:94

References INode::copyNumber(), IParametricComponent::getName(), and INode::m_parent.

Referenced by NodeUtils::nodePath().

Here is the call graph for this function:

◆ equidistantPoints()

std::vector< double > DistributionCosine::equidistantPoints ( size_t  nbr_samples,
double  sigma_factor,
const RealLimits &  limits = RealLimits() 
) const
virtual

generate list of sample values

Implements IDistribution1D.

Definition at line 362 of file Distributions.cpp.

364 {
365  if (sigma_factor <= 0.0 || sigma_factor > 2.0)
366  sigma_factor = 2.0;
367  double xmin = m_mean - sigma_factor * m_sigma * M_PI_2;
368  double xmax = m_mean + sigma_factor * m_sigma * M_PI_2;
369  adjustMinMaxForLimits(xmin, xmax, limits);
370  return equidistantPointsInRange(nbr_samples, xmin, xmax);
371 }
#define M_PI_2
Definition: Constants.h:45
void adjustMinMaxForLimits(double &xmin, double &xmax, const RealLimits &limits) const
modifies xmin and xmax if they are outside of limits
virtual std::vector< double > equidistantPointsInRange(size_t nbr_samples, double xmin, double xmax) const
Returns equidistant interpolation points from xmin to xmax.

References IDistribution1D::adjustMinMaxForLimits(), IDistribution1D::equidistantPointsInRange(), m_mean, M_PI_2, and m_sigma.

Here is the call graph for this function:

◆ equidistantPointsInRange()

std::vector< double > IDistribution1D::equidistantPointsInRange ( size_t  nbr_samples,
double  xmin,
double  xmax 
) const
virtualinherited

Returns equidistant interpolation points from xmin to xmax.

Definition at line 67 of file Distributions.cpp.

69 {
70  if (nbr_samples < 2 || DoubleEqual(xmin, xmax))
71  return {getMean()};
72  std::vector<double> result(nbr_samples);
73  for (size_t i = 0; i < nbr_samples; ++i)
74  result[i] = xmin + i * (xmax - xmin) / (nbr_samples - 1.0);
75  return result;
76 }
virtual double getMean() const =0
Returns the distribution-specific mean.

References IDistribution1D::getMean().

Referenced by DistributionGate::equidistantPoints(), DistributionLorentz::equidistantPoints(), DistributionGaussian::equidistantPoints(), DistributionLogNormal::equidistantPoints(), equidistantPoints(), DistributionTrapezoid::equidistantPoints(), and IDistribution1D::equidistantSamplesInRange().

Here is the call graph for this function:

◆ equidistantSamples()

std::vector< ParameterSample > IDistribution1D::equidistantSamples ( size_t  nbr_samples,
double  sigma_factor = 0.,
const RealLimits &  limits = RealLimits() 
) const
inherited

Returns equidistant samples, using intrinsic parameters, weighted with probabilityDensity().

Definition at line 40 of file Distributions.cpp.

43 {
44  if (nbr_samples == 0)
45  throw std::runtime_error("IDistribution1D::generateSamples: "
46  "number of generated samples must be bigger than zero");
47  if (isDelta())
48  return {ParameterSample(getMean())};
49  return generateSamplesFromValues(equidistantPoints(nbr_samples, sigma_factor, limits));
50 }
std::vector< ParameterSample > generateSamplesFromValues(const std::vector< double > &sample_values) const
Returns weighted samples from given interpolation points and probabilityDensity().
virtual bool isDelta() const =0
Returns true if the distribution is in the limit case of a Dirac delta distribution.
virtual std::vector< double > equidistantPoints(size_t nbr_samples, double sigma_factor, const RealLimits &limits=RealLimits()) const =0
Returns equidistant interpolation points, with range computed in distribution-specific way from mean ...
A parameter value with a weight, as obtained when sampling from a distribution.

References IDistribution1D::equidistantPoints(), IDistribution1D::generateSamplesFromValues(), IDistribution1D::getMean(), and IDistribution1D::isDelta().

Here is the call graph for this function:

◆ equidistantSamplesInRange()

std::vector< ParameterSample > IDistribution1D::equidistantSamplesInRange ( size_t  nbr_samples,
double  xmin,
double  xmax 
) const
inherited

Returns equidistant samples from xmin to xmax, weighted with probabilityDensity().

Definition at line 55 of file Distributions.cpp.

56 {
57  if (nbr_samples == 0)
58  throw std::runtime_error("IDistribution1D::generateSamples: "
59  "number of generated samples must be bigger than zero");
60  if (isDelta())
61  return {ParameterSample(getMean())};
62  return generateSamplesFromValues(equidistantPointsInRange(nbr_samples, xmin, xmax));
63 }

References IDistribution1D::equidistantPointsInRange(), IDistribution1D::generateSamplesFromValues(), IDistribution1D::getMean(), and IDistribution1D::isDelta().

Here is the call graph for this function:

◆ generateSamplesFromValues()

std::vector< ParameterSample > IDistribution1D::generateSamplesFromValues ( const std::vector< double > &  sample_values) const
protectedinherited

Returns weighted samples from given interpolation points and probabilityDensity().

Definition at line 102 of file Distributions.cpp.

103 {
104  std::vector<ParameterSample> result;
105  double norm_factor = 0.0;
106  for (double value : sample_values) {
107  double pdf = probabilityDensity(value);
108  result.push_back(ParameterSample(value, pdf));
109  norm_factor += pdf;
110  }
111  if (norm_factor <= 0.0)
112  throw std::runtime_error("IDistribution1D::generateSamples: "
113  "total probability must be bigger than zero");
114  for (ParameterSample& sample : result)
115  sample.weight /= norm_factor;
116  return result;
117 }
virtual double probabilityDensity(double x) const =0
Returns the distribution-specific probability density for value x.

References IDistribution1D::probabilityDensity().

Referenced by IDistribution1D::equidistantSamples(), and IDistribution1D::equidistantSamplesInRange().

Here is the call graph for this function:

◆ getChildren()

◆ getMean()

double DistributionCosine::getMean ( ) const
inlinefinalvirtual

Returns the distribution-specific mean.

Implements IDistribution1D.

Definition at line 235 of file Distributions.h.

235 { return m_mean; }

References m_mean.

◆ getName()

◆ getSigma()

double DistributionCosine::getSigma ( ) const
inline

Definition at line 236 of file Distributions.h.

236 { return m_sigma; }

References m_sigma.

◆ isDelta()

bool DistributionCosine::isDelta ( ) const
finalvirtual

Returns true if the distribution is in the limit case of a Dirac delta distribution.

Implements IDistribution1D.

Definition at line 373 of file Distributions.cpp.

374 {
375  return m_sigma == 0.0;
376 }

References m_sigma.

◆ onChange()

◆ parameter()

RealParameter * IParametricComponent::parameter ( const std::string &  name) const
inherited

Returns parameter with given 'name'.

Definition at line 86 of file IParametricComponent.cpp.

87 {
88  return m_pool->parameter(name);
89 }
std::unique_ptr< ParameterPool > m_pool
parameter pool (kind of pointer-to-implementation)
QString const & name(EShape k)
Definition: particles.cpp:21

References IParametricComponent::m_pool, and RealSpace::Particles::name().

Referenced by DepthProbeSimulation::initialize(), SpecularSimulation::initialize(), Lattice3D::initialize(), IParticle::registerAbundance(), ParticleLayout::registerParticleDensity(), IParticle::registerPosition(), Layer::registerThickness(), Lattice2D::setRotationEnabled(), and DistributionLogNormal::setUnits().

Here is the call graph for this function:

◆ parameterPool()

ParameterPool* IParametricComponent::parameterPool ( ) const
inlineinherited

Returns pointer to the parameter pool.

Definition at line 39 of file IParametricComponent.h.

39 { return m_pool.get(); } // has non-const usages!

References IParametricComponent::m_pool.

Referenced by INode::INode(), IParametricComponent::IParametricComponent(), pyfmt2::argumentList(), SampleBuilderNode::borrow_builder_parameters(), SampleBuilderNode::reset(), and IDistribution1D::setUnits().

◆ parametersToString()

std::string IParametricComponent::parametersToString ( ) const
inherited

Returns multiline string representing available parameters.

Definition at line 43 of file IParametricComponent.cpp.

44 {
45  std::ostringstream result;
46  std::unique_ptr<ParameterPool> P_pool(createParameterTree());
47  result << *P_pool << "\n";
48  return result.str();
49 }
virtual ParameterPool * createParameterTree() const
Creates new parameter pool, with all local parameters and those of its children.

References IParametricComponent::createParameterTree().

Here is the call graph for this function:

◆ parent() [1/2]

INode * INode::parent ( )
inherited

Definition at line 89 of file INode.cpp.

90 {
91  return const_cast<INode*>(m_parent);
92 }

References INode::m_parent.

◆ parent() [2/2]

◆ probabilityDensity()

double DistributionCosine::probabilityDensity ( double  x) const
finalvirtual

Returns the distribution-specific probability density for value x.

Implements IDistribution1D.

Definition at line 353 of file Distributions.cpp.

354 {
355  if (m_sigma == 0.0)
356  return DoubleEqual(x, m_mean) ? 1.0 : 0.0;
357  if (std::abs(x - m_mean) > M_PI * m_sigma)
358  return 0.0;
359  return (1.0 + std::cos((x - m_mean) / m_sigma)) / (m_sigma * M_TWOPI);
360 }
#define M_TWOPI
Definition: Constants.h:54
#define M_PI
Definition: Constants.h:44

References m_mean, M_PI, m_sigma, and M_TWOPI.

◆ progeny()

std::vector< const INode * > INode::progeny ( ) const
inherited

Returns a vector of all descendants.

Definition at line 68 of file INode.cpp.

69 {
70  std::vector<const INode*> result;
71  result.push_back(this);
72  for (const auto* child : getChildren()) {
73  for (const auto* p : child->progeny())
74  result.push_back(p);
75  }
76  return result;
77 }

References INode::getChildren().

Referenced by INode::createParameterTree(), and ParticleDistribution::generateParticles().

Here is the call graph for this function:

◆ registerChild()

void INode::registerChild ( INode *  node)
inherited

Definition at line 57 of file INode.cpp.

58 {
59  ASSERT(node);
60  node->setParent(this);
61 }
#define ASSERT(condition)
Definition: Assert.h:31
virtual void setParent(const INode *newParent)
Definition: INode.cpp:79

References ASSERT, and INode::setParent().

Referenced by Beam::Beam(), Crystal::Crystal(), IDetector::IDetector(), Instrument::Instrument(), InterferenceFunction2DLattice::InterferenceFunction2DLattice(), InterferenceFunction2DParaCrystal::InterferenceFunction2DParaCrystal(), InterferenceFunction2DSuperLattice::InterferenceFunction2DSuperLattice(), InterferenceFunctionFinite2DLattice::InterferenceFunctionFinite2DLattice(), Particle::Particle(), ParticleDistribution::ParticleDistribution(), ParticleLayout::addAndRegisterAbstractParticle(), ParticleCoreShell::addAndRegisterCore(), MultiLayer::addAndRegisterInterface(), MultiLayer::addAndRegisterLayer(), ParticleCoreShell::addAndRegisterShell(), Layer::addLayout(), ParticleComposition::addParticlePointer(), ISimulation::initialize(), MesoCrystal::initialize(), Beam::operator=(), Instrument::operator=(), IParticle::rotate(), ParticleLayout::setAndRegisterInterferenceFunction(), ISimulation::setBackground(), InterferenceFunction1DLattice::setDecayFunction(), InterferenceFunction2DLattice::setDecayFunction(), Instrument::setDetector(), IDetector::setDetectorResolution(), Beam::setFootprintFactor(), Particle::setFormFactor(), InterferenceFunctionFinite3DLattice::setLattice(), InterferenceFunctionRadialParaCrystal::setProbabilityDistribution(), InterferenceFunction2DParaCrystal::setProbabilityDistributions(), ConvolutionDetectorResolution::setResolutionFunction(), IParticle::setRotation(), LayerInterface::setRoughness(), and InterferenceFunction2DSuperLattice::setSubstructureIFF().

Here is the call graph for this function:

◆ registerParameter()

RealParameter & IParametricComponent::registerParameter ( const std::string &  name,
double *  parpointer 
)
inherited

Definition at line 51 of file IParametricComponent.cpp.

52 {
53  return m_pool->addParameter(
54  new RealParameter(name, data, getName(), [&]() -> void { onChange(); }));
55 }
virtual void onChange()
Action to be taken in inherited class when a parameter has changed.
Wraps a parameter of type double.
Definition: RealParameter.h:31

References IParametricComponent::getName(), IParametricComponent::m_pool, RealSpace::Particles::name(), and IParametricComponent::onChange().

Referenced by BasicLattice2D::BasicLattice2D(), Beam::Beam(), CylindersInBABuilder::CylindersInBABuilder(), DetectionProperties::DetectionProperties(), HexagonalLattice2D::HexagonalLattice2D(), IInterferenceFunction::IInterferenceFunction(), INode::INode(), InterferenceFunction1DLattice::InterferenceFunction1DLattice(), InterferenceFunction2DParaCrystal::InterferenceFunction2DParaCrystal(), InterferenceFunctionHardDisk::InterferenceFunctionHardDisk(), InterferenceFunctionRadialParaCrystal::InterferenceFunctionRadialParaCrystal(), InterferenceFunctionTwin::InterferenceFunctionTwin(), Lattice2D::Lattice2D(), LayerRoughness::LayerRoughness(), MultiLayer::MultiLayer(), ParticleDistribution::ParticleDistribution(), PlainMultiLayerBySLDBuilder::PlainMultiLayerBySLDBuilder(), ResolutionFunction2DGaussian::ResolutionFunction2DGaussian(), ResonatorBuilder::ResonatorBuilder(), SquareLattice2D::SquareLattice2D(), TriangularRippleBuilder::TriangularRippleBuilder(), IParticle::registerAbundance(), ParticleLayout::registerParticleDensity(), Layer::registerThickness(), IParametricComponent::registerVector(), ParticleLayout::registerWeight(), and Lattice2D::setRotationEnabled().

Here is the call graph for this function:

◆ registerVector()

void IParametricComponent::registerVector ( const std::string &  base_name,
kvector_t *  p_vec,
const std::string &  units = "nm" 
)
inherited

Definition at line 57 of file IParametricComponent.cpp.

59 {
60  registerParameter(XComponentName(base_name), &((*p_vec)[0])).setUnit(units);
61  registerParameter(YComponentName(base_name), &((*p_vec)[1])).setUnit(units);
62  registerParameter(ZComponentName(base_name), &((*p_vec)[2])).setUnit(units);
63 }
static std::string XComponentName(const std::string &base_name)
static std::string ZComponentName(const std::string &base_name)
RealParameter & registerParameter(const std::string &name, double *parpointer)
static std::string YComponentName(const std::string &base_name)
RealParameter & setUnit(const std::string &name)
MVVM_MODEL_EXPORT std::string base_name(const std::string &path)
Provide the filename of a file path.
Definition: fileutils.cpp:78

References ModelView::Utils::base_name(), IParametricComponent::registerParameter(), RealParameter::setUnit(), IParametricComponent::XComponentName(), IParametricComponent::YComponentName(), and IParametricComponent::ZComponentName().

Referenced by Beam::Beam(), DetectionProperties::DetectionProperties(), InterferenceFunctionTwin::InterferenceFunctionTwin(), MultiLayer::MultiLayer(), Lattice3D::initialize(), and IParticle::registerPosition().

Here is the call graph for this function:

◆ removeParameter()

void IParametricComponent::removeParameter ( const std::string &  name)
inherited

Definition at line 91 of file IParametricComponent.cpp.

92 {
93  m_pool->removeParameter(name);
94 }

References IParametricComponent::m_pool, and RealSpace::Particles::name().

Referenced by IParticle::registerAbundance(), ParticleLayout::registerParticleDensity(), Layer::registerThickness(), IParametricComponent::removeVector(), and Lattice2D::setRotationEnabled().

Here is the call graph for this function:

◆ removeVector()

void IParametricComponent::removeVector ( const std::string &  base_name)
inherited

Definition at line 96 of file IParametricComponent.cpp.

References ModelView::Utils::base_name(), IParametricComponent::removeParameter(), IParametricComponent::XComponentName(), IParametricComponent::YComponentName(), and IParametricComponent::ZComponentName().

Referenced by IParticle::registerPosition().

Here is the call graph for this function:

◆ setName()

void IParametricComponent::setName ( const std::string &  name)
inlineinherited

Definition at line 69 of file IParametricComponent.h.

69 { m_name = name; }

References IParametricComponent::m_name, and RealSpace::Particles::name().

Referenced by BasicLattice2D::BasicLattice2D(), Beam::Beam(), ConvolutionDetectorResolution::ConvolutionDetectorResolution(), Crystal::Crystal(), DetectionProperties::DetectionProperties(), DistributionHandler::DistributionHandler(), FormFactorCoreShell::FormFactorCoreShell(), FormFactorCrystal::FormFactorCrystal(), FormFactorDecoratorMaterial::FormFactorDecoratorMaterial(), FormFactorDecoratorPositionFactor::FormFactorDecoratorPositionFactor(), FormFactorDecoratorRotation::FormFactorDecoratorRotation(), FormFactorWeighted::FormFactorWeighted(), HexagonalLattice2D::HexagonalLattice2D(), IDetector::IDetector(), INode::INode(), Instrument::Instrument(), InterferenceFunction1DLattice::InterferenceFunction1DLattice(), InterferenceFunction2DLattice::InterferenceFunction2DLattice(), InterferenceFunction2DParaCrystal::InterferenceFunction2DParaCrystal(), InterferenceFunction2DSuperLattice::InterferenceFunction2DSuperLattice(), InterferenceFunction3DLattice::InterferenceFunction3DLattice(), InterferenceFunctionFinite2DLattice::InterferenceFunctionFinite2DLattice(), InterferenceFunctionFinite3DLattice::InterferenceFunctionFinite3DLattice(), InterferenceFunctionHardDisk::InterferenceFunctionHardDisk(), InterferenceFunctionNone::InterferenceFunctionNone(), InterferenceFunctionRadialParaCrystal::InterferenceFunctionRadialParaCrystal(), InterferenceFunctionTwin::InterferenceFunctionTwin(), ISampleBuilder::ISampleBuilder(), IsGISAXSDetector::IsGISAXSDetector(), Lattice3D::Lattice3D(), Layer::Layer(), LayerInterface::LayerInterface(), LayerRoughness::LayerRoughness(), MultiLayer::MultiLayer(), ParticleCoreShell::ParticleCoreShell(), ParticleDistribution::ParticleDistribution(), ParticleLayout::ParticleLayout(), RectangularDetector::RectangularDetector(), ResolutionFunction2DGaussian::ResolutionFunction2DGaussian(), SampleBuilderNode::SampleBuilderNode(), SphericalDetector::SphericalDetector(), SquareLattice2D::SquareLattice2D(), Layer::clone(), LayersWithAbsorptionBuilder::createSampleByIndex(), Basic2DParaCrystalBuilder::createSampleByIndex(), ParticleInVacuumBuilder::createSampleByIndex(), SimpleMagneticRotationBuilder::createSampleByIndex(), DepthProbeSimulation::initialize(), GISASSimulation::initialize(), OffSpecularSimulation::initialize(), SpecularSimulation::initialize(), SpecularDetector1D::initialize(), MesoCrystal::initialize(), Particle::initialize(), ParticleComposition::initialize(), Beam::operator=(), SampleBuilderNode::operator=(), SampleBuilderNode::reset(), and SampleBuilderNode::setSBN().

Here is the call graph for this function:

◆ setParameterValue()

void IParametricComponent::setParameterValue ( const std::string &  name,
double  value 
)
inherited

Definition at line 65 of file IParametricComponent.cpp.

66 {
67  if (name.find('*') == std::string::npos && name.find('/') == std::string::npos) {
68  m_pool->setParameterValue(name, value);
69  } else {
70  std::unique_ptr<ParameterPool> P_pool{createParameterTree()};
71  if (name.find('*') != std::string::npos)
72  P_pool->setMatchedParametersValue(name, value);
73  else
74  P_pool->setParameterValue(name, value);
75  }
76 }
int setMatchedParametersValue(const std::string &wildcards, double value)
Sets value of the nonzero parameters that match pattern ('*' allowed), or throws.

References IParametricComponent::createParameterTree(), IParametricComponent::m_pool, RealSpace::Particles::name(), and ParameterPool::setMatchedParametersValue().

Referenced by AsymRippleBuilder::buildSample(), and IParametricComponent::setVectorValue().

Here is the call graph for this function:

◆ setParent()

void INode::setParent ( const INode *  newParent)
virtualinherited

Reimplemented in SampleProvider.

Definition at line 79 of file INode.cpp.

80 {
81  m_parent = newParent;
82 }

References INode::m_parent.

Referenced by INode::registerChild(), SampleProvider::setBuilder(), and SampleProvider::setParent().

◆ setUnits()

void IDistribution1D::setUnits ( const std::string &  units)
virtualinherited

Sets distribution units.

Reimplemented in DistributionLogNormal.

Definition at line 78 of file Distributions.cpp.

79 {
80  for (auto* par : parameterPool()->parameters())
81  par->setUnit(units);
82 }
ParameterPool * parameterPool() const
Returns pointer to the parameter pool.

References IParametricComponent::parameterPool().

Here is the call graph for this function:

◆ setVectorValue()

void IParametricComponent::setVectorValue ( const std::string &  base_name,
kvector_t  value 
)
inherited

Definition at line 78 of file IParametricComponent.cpp.

79 {
83 }
T z() const
Returns z-component in cartesian coordinate system.
Definition: BasicVector3D.h:67
T y() const
Returns y-component in cartesian coordinate system.
Definition: BasicVector3D.h:65
T x() const
Returns x-component in cartesian coordinate system.
Definition: BasicVector3D.h:63
void setParameterValue(const std::string &name, double value)

References ModelView::Utils::base_name(), IParametricComponent::setParameterValue(), BasicVector3D< T >::x(), IParametricComponent::XComponentName(), BasicVector3D< T >::y(), IParametricComponent::YComponentName(), BasicVector3D< T >::z(), and IParametricComponent::ZComponentName().

Here is the call graph for this function:

◆ transferToCPP()

virtual void ICloneable::transferToCPP ( )
inlinevirtualinherited

Used for Python overriding of clone (see swig/tweaks.py)

Definition at line 34 of file ICloneable.h.

◆ treeToString()

std::string INode::treeToString ( ) const
virtualinherited

Returns multiline string representing tree structure below the node.

Definition at line 52 of file INode.cpp.

53 {
54  return NodeUtils::nodeToString(this);
55 }
std::string nodeToString(const INode *node)
Returns multiline string representing tree structure starting from given node.
Definition: NodeUtils.cpp:81

References NodeUtils::nodeToString().

Here is the call graph for this function:

◆ XComponentName()

std::string IParametricComponent::XComponentName ( const std::string &  base_name)
staticinherited

Definition at line 103 of file IParametricComponent.cpp.

104 {
105  return base_name + "X";
106 }

References ModelView::Utils::base_name().

Referenced by Lattice3D::initialize(), IParticle::registerPosition(), IParametricComponent::registerVector(), IParametricComponent::removeVector(), IParametricComponent::setVectorValue(), and VectorParameterTranslator::translate().

Here is the call graph for this function:

◆ YComponentName()

std::string IParametricComponent::YComponentName ( const std::string &  base_name)
staticinherited

Definition at line 108 of file IParametricComponent.cpp.

109 {
110  return base_name + "Y";
111 }

References ModelView::Utils::base_name().

Referenced by IParametricComponent::registerVector(), IParametricComponent::removeVector(), IParametricComponent::setVectorValue(), and VectorParameterTranslator::translate().

Here is the call graph for this function:

◆ ZComponentName()

std::string IParametricComponent::ZComponentName ( const std::string &  base_name)
staticinherited

Definition at line 113 of file IParametricComponent.cpp.

114 {
115  return base_name + "Z";
116 }

References ModelView::Utils::base_name().

Referenced by IParametricComponent::registerVector(), IParametricComponent::removeVector(), IParametricComponent::setVectorValue(), and VectorParameterTranslator::translate().

Here is the call graph for this function:

Member Data Documentation

◆ m_mean

const double& DistributionCosine::m_mean
private

Definition at line 247 of file Distributions.h.

Referenced by clone(), equidistantPoints(), getMean(), and probabilityDensity().

◆ m_name

std::string IParametricComponent::m_name
privateinherited

◆ m_NP

const size_t INode::m_NP
protectedinherited

Definition at line 88 of file INode.h.

Referenced by INode::INode().

◆ m_P

std::vector<double> INode::m_P
protectedinherited

Definition at line 89 of file INode.h.

Referenced by INode::INode(), and IFootprintFactor::setWidthRatio().

◆ m_parent

const INode* INode::m_parent {nullptr}
privateinherited

Definition at line 83 of file INode.h.

Referenced by INode::displayName(), INode::parent(), and INode::setParent().

◆ m_pool

◆ m_sigma

const double& DistributionCosine::m_sigma
private

Definition at line 248 of file Distributions.h.

Referenced by clone(), equidistantPoints(), getSigma(), isDelta(), and probabilityDensity().


The documentation for this class was generated from the following files: