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RayTracingStudyWithRegistrationTest Class Reference

#include <RayTracingStudyTest.h>

Inheritance diagram for RayTracingStudyWithRegistrationTest:
[legend]

Public Types

typedef DataFileName DataFileParameterType
 

Public Member Functions

 RayTracingStudyWithRegistrationTest (const InputParameters &parameters)
 
virtual void initialSetup () override
 
virtual void residualSetup () override
 
virtual void jacobianSetup () override
 
virtual void meshChanged () override
 
virtual void timestepSetup () override
 
virtual void initialize () override
 
virtual void finalize () override
 
virtual void execute () override
 Executes the study (generates and propagates Rays)
 
virtual void segmentSubdomainSetup (const SubdomainID subdomain, const THREAD_ID tid, const RayID ray_id)
 Setup for on subdomain change or subdomain AND ray change during ray tracing.
 
virtual void reinitSegment (const Elem *elem, const Point &start, const Point &end, const Real length, THREAD_ID tid)
 Reinitialize objects for a Ray segment for ray tracing.
 
virtual void postOnSegment (const THREAD_ID tid, const std::shared_ptr< Ray > &ray)
 Called at the end of a Ray segment.
 
virtual void preTrace (const THREAD_ID, const std::shared_ptr< Ray > &)
 Called at the beginning of a trace for a ray.
 
void executeStudy ()
 Method for executing the study so that it can be called out of the standard UO execute()
 
unsigned long long int endingProcessorCrossings () const
 Total number of processor crossings for Rays that finished on this processor.
 
unsigned int endingMaxProcessorCrossings () const
 Max number of total processor crossings for Rays that finished on this processor.
 
unsigned long long int totalProcessorCrossings () const
 Total number of processor crossings.
 
unsigned int maxProcessorCrossings () const
 Max number of processor crossings for all Rays.
 
unsigned long long int endingIntersections () const
 Total number of Ray/element intersections for Rays that finished on this processor.
 
unsigned int endingMaxIntersections () const
 Max number of intersections for Rays that finished on this processor.
 
unsigned long long int totalIntersections () const
 Total number of Ray/element intersections.
 
unsigned int maxIntersections () const
 Max number of intersections for a Ray.
 
unsigned int maxTrajectoryChanges () const
 Max number of trajectory changes for a Ray.
 
Real endingDistance () const
 Total amount of distance traveled by the rays that end on this processor.
 
Real totalDistance () const
 Total distance traveled by all Rays.
 
unsigned long long int localTraceRayResult (const int result) const
 
const ParallelRayStudy & parallelRayStudy () const
 
Real rayMaxDistance () const
 Max distance any Ray can travel.
 
Real executionTime ()
 Duration for execute() in seconds.
 
Real executionTimeNano ()
 Duration for execute() in nanoseconds.
 
Real generationTime () const
 Duration for creation of all Rays in seconds.
 
Real propagationTime () const
 Duration for creation of all Rays in seconds.
 
bool tolerateFailure () const
 Whether or not to tolerate failure.
 
bool bankRaysOnCompletion () const
 Whether or not to bank Rays on completion.
 
bool rayDependentSubdomainSetup () const
 Whether or not to use Ray dependent subdomain setup.
 
RayDataIndex registerRayData (const std::string &name)
 Register a value to be filled in the data on a Ray with a given name.
 
std::vector< RayDataIndex > registerRayData (const std::vector< std::string > &names)
 Register values to be filled in the data on a Ray with a given name.
 
RayDataIndex getRayDataIndex (const std::string &name, const bool graceful=false) const
 Gets the index associated with a registered value in the Ray data.
 
std::vector< RayDataIndex > getRayDataIndices (const std::vector< std::string > &names, const bool graceful=false) const
 Gets the indices associated with registered values in the Ray data.
 
const std::string & getRayDataName (const RayDataIndex index) const
 Gets the name associated with a registered value in the Ray data.
 
std::vector< std::string > getRayDataNames (const std::vector< RayDataIndex > &indices) const
 Gets the names associated with registered values in the Ray data.
 
std::size_t rayDataSize () const
 The registered size of values in the Ray data.
 
bool hasRayData () const
 Whether or not any Ray data are registered.
 
const std::vector< std::string > & rayDataNames () const
 The Ray data names.
 
RayDataIndex registerRayAuxData (const std::string &name)
 Register a value to be filled in the aux data on a Ray with a given name.
 
std::vector< RayDataIndex > registerRayAuxData (const std::vector< std::string > &names)
 Register values to be filled in the aux data on a Ray with a given name.
 
RayDataIndex getRayAuxDataIndex (const std::string &name, const bool graceful=false) const
 Gets the index associated with a registered value in the Ray aux data.
 
std::vector< RayDataIndex > getRayAuxDataIndices (const std::vector< std::string > &names, const bool graceful=false) const
 Gets the indices associated with registered values in the Ray aux data.
 
const std::string & getRayAuxDataName (const RayDataIndex index) const
 Gets the name associated with a registered value in the Ray aux data.
 
std::vector< std::string > getRayAuxDataNames (const std::vector< RayDataIndex > &indices) const
 Gets the names associated with registered values in the Ray aux data.
 
std::size_t rayAuxDataSize () const
 The registered size of values in the Ray aux data.
 
bool hasRayAuxData () const
 Whether or not any Ray aux data are registered.
 
const std::vector< std::string > & rayAuxDataNames () const
 The Ray aux data names.
 
bool hasRayKernels (const THREAD_ID tid)
 Whether or not there are currently any active RayKernel objects.
 
void getRayKernels (std::vector< RayKernelBase * > &result, SubdomainID id, THREAD_ID tid)
 Fills the active RayKernels associated with this study and a block into result.
 
template<typename T >
void getRayKernels (std::vector< T * > &result, THREAD_ID tid)
 Fills the active RayKernels associated with this study into result.
 
void getRayKernels (std::vector< RayKernelBase * > &result, SubdomainID id, THREAD_ID tid, RayID ray_id)
 Fills the active RayKernels associeted with this study, block, and potentially Ray into result.
 
void getRayBCs (std::vector< RayBoundaryConditionBase * > &result, BoundaryID id, THREAD_ID tid)
 Fills the active RayBCs associated with this study and a boundary into result.
 
template<typename T >
void getRayBCs (std::vector< T * > &result, const std::vector< BoundaryID > &ids, THREAD_ID tid)
 Fills the active RayBCs associated with this study and boundaries result.
 
template<typename T >
void getRayBCs (std::vector< T * > &result, THREAD_ID tid)
 Fills the active RayBCs associated with this study into result.
 
virtual void getRayBCs (std::vector< RayBoundaryConditionBase * > &result, const std::vector< TraceRayBndElement > &bnd_elems, THREAD_ID tid, RayID ray_id)
 Fills the active RayBCs associated with thie study, boundary elements, and potentially Ray into result.
 
const std::vector< RayKernelBase * > & currentRayKernels (THREAD_ID tid) const
 Gets the current RayKernels for a thread, which are set in segmentSubdomainSetup()
 
const BoundingBox & boundingBox () const
 Get the nodal bounding box for the domain.
 
const BoundingBox & looseBoundingBox () const
 Get the loose nodal bounding box for the domain.
 
Real domainMaxLength () const
 Get the inflated maximum length across the domain.
 
Real totalVolume () const
 Get the current total volume of the domain.
 
bool isRectangularDomain () const
 Whether or not the domain is rectangular (if it is prefectly encompassed by its bounding box)
 
bool hasInternalSidesets () const
 Whether or not the local mesh has internal sidesets that have RayBCs on them.
 
const std::vector< std::vector< BoundaryID > > & getInternalSidesets (const Elem *elem) const
 Get the internal sidesets (that have RayBC(s)) for each side for a given element.
 
const std::set< BoundaryID > & getInternalSidesets () const
 Gets the internal sidesets (that have RayBCs) within the local domain.
 
bool sideIsNonPlanar (const Elem *elem, const unsigned short s) const
 Whether or not the side \s on elem elem is non-planar.
 
bool hasSameLevelActiveElems () const
 Whether or not the mesh has active elements of the same level.
 
void moveRayToBufferDuringTrace (std::shared_ptr< Ray > &ray, const THREAD_ID tid, const AcquireMoveDuringTraceKey &)
 INTERNAL method for moving a Ray into the buffer during tracing.
 
MeshBase & meshBase () const
 Access to the libMesh MeshBase.
 
MooseMesh & mesh ()
 
virtual const Point & getSideNormal (const Elem *elem, const unsigned short side, const THREAD_ID tid)
 Get the outward normal for a given element side.
 
virtual const Point * getElemNormals (const Elem *, const THREAD_ID)
 Gets the outward normals for a given element.
 
RayData getBankedRayData (const RayID ray_id, const RayDataIndex index) const
 Gets the data value for a banked ray with a given ID.
 
RayData getBankedRayAuxData (const RayID ray_id, const RayDataIndex index) const
 Gets the data value for a banked ray with a given ID.
 
RayID registeredRayID (const std::string &name, const bool graceful=false) const
 Gets the ID of a registered ray.
 
const std::string & registeredRayName (const RayID ray_id) const
 Gets the name of a registered ray.
 
bool useRayRegistration () const
 Whether or not ray registration is being used.
 
bool dataOnCacheTraces () const
 Whether or not to store the Ray data on the cached Ray traces.
 
bool auxDataOnCacheTraces () const
 Whether or not to store the Ray aux data on the cached Ray traces.
 
bool segmentsOnCacheTraces () const
 Whether or not to cache individual element segments when _cache_traces = true.
 
virtual bool shouldCacheTrace (const std::shared_ptr< Ray > &) const
 Virtual that allows for selection in if a Ray should be cached or not (only used when _cache_traces).
 
TraceData & initThreadedCachedTrace (const std::shared_ptr< Ray > &ray, THREAD_ID tid)
 Initialize a Ray in the threaded cached trace map to be filled with segments.
 
const std::vector< TraceData > & getCachedTraces () const
 Get the cached trace data structure.
 
Real subdomainHmax (const SubdomainID subdomain_id) const
 Get the cached hmax for all elements in a subdomain.
 
virtual void onCompleteRay (const std::shared_ptr< Ray > &ray)
 Entry point for acting on a ray when it is completed (shouldContinue() == false)
 
void verifyUniqueRayIDs (const std::vector< std::shared_ptr< Ray > >::const_iterator begin, const std::vector< std::shared_ptr< Ray > >::const_iterator end, const bool global, const std::string &error_suffix) const
 Verifies that the Rays in the given range have unique Ray IDs.
 
void verifyUniqueRays (const std::vector< std::shared_ptr< Ray > >::const_iterator begin, const std::vector< std::shared_ptr< Ray > >::const_iterator end, const std::string &error_suffix)
 Verifies that the Rays in the given range are unique.
 
bool currentlyPropagating () const
 Whether or not the study is propagating (tracing Rays)
 
bool currentlyGenerating () const
 Whether or not the study is generating.
 
bool verifyRays () const
 Whether or not to verify if Rays have valid information before being traced.
 
bool verifyTraceIntersections () const
 Whether or not trace verification is enabled in devel/dbg modes.
 
bool sideIsIncoming (const Elem *const elem, const unsigned short side, const Point &direction, const THREAD_ID tid)
 Whether or not side is incoming on element elem in direction direction.
 
bool warnNonPlanar () const
 Whether or not to produce a warning when interacting with a non-planar mesh.
 
ParallelStudy< std::shared_ptr< Ray >, Ray > * parallelStudy ()
 The underlying parallel study: used for the context for calling the packed range routines.
 
const libMesh::Elem & elemSide (const libMesh::Elem &elem, const unsigned int s, const THREAD_ID tid=0)
 Get an element's side pointer without excessive memory allocation.
 
virtual Real spatialValue (const Point &) const
 
virtual const std::vector< Point > spatialPoints () const
 
void setPrimaryThreadCopy (UserObject *primary)
 
UserObject * primaryThreadCopy ()
 
SubProblem & getSubProblem () const
 
bool shouldDuplicateInitialExecution () const
 
void gatherSum (T &value)
 
void gatherMax (T &value)
 
void gatherMin (T &value)
 
void gatherProxyValueMax (T1 &proxy, T2 &value)
 
void gatherProxyValueMin (T1 &proxy, T2 &value)
 
std::set< UserObjectName > getDependObjects () const
 
const std::set< std::string > & getRequestedItems () override
 
const std::set< std::string > & getSuppliedItems () override
 
unsigned int systemNumber () const
 
virtual bool needThreadedCopy () const
 
virtual bool enabled () const
 
std::shared_ptr< MooseObject > getSharedPtr ()
 
std::shared_ptr< const MooseObject > getSharedPtr () const
 
bool isKokkosObject () const
 
MooseApp & getMooseApp () const
 
const std::string & type () const
 
const std::string & name () const
 
std::string typeAndName () const
 
MooseObjectParameterName uniqueParameterName (const std::string &parameter_name) const
 
MooseObjectName uniqueName () const
 
const InputParameters & parameters () const
 
const hit::Node * getHitNode () const
 
bool hasBase () const
 
const std::string & getBase () const
 
const T & getParam (const std::string &name) const
 
std::vector< std::pair< T1, T2 > > getParam (const std::string &param1, const std::string &param2) const
 
const T * queryParam (const std::string &name) const
 
const T & getRenamedParam (const std::string &old_name, const std::string &new_name) const
 
T getCheckedPointerParam (const std::string &name, const std::string &error_string="") const
 
bool isParamValid (const std::string &name) const
 
bool isParamSetByUser (const std::string &name) const
 
void connectControllableParams (const std::string &parameter, const std::string &object_type, const std::string &object_name, const std::string &object_parameter) const
 
void paramError (const std::string &param, Args... args) const
 
void paramWarning (const std::string &param, Args... args) const
 
void paramWarning (const std::string &param, Args... args) const
 
void paramInfo (const std::string &param, Args... args) const
 
std::string messagePrefix (const bool hit_prefix=true) const
 
std::string errorPrefix (const std::string &) const
 
void mooseError (Args &&... args) const
 
void mooseDocumentedError (const std::string &repo_name, const unsigned int issue_num, Args &&... args) const
 
void mooseErrorNonPrefixed (Args &&... args) const
 
void mooseWarning (Args &&... args) const
 
void mooseWarning (Args &&... args) const
 
void mooseWarningNonPrefixed (Args &&... args) const
 
void mooseWarningNonPrefixed (Args &&... args) const
 
void mooseDeprecated (Args &&... args) const
 
void mooseDeprecated (Args &&... args) const
 
void mooseDeprecatedNoTrace (Args &&... args) const
 
void mooseInfo (Args &&... args) const
 
void callMooseError (std::string msg, const bool with_prefix, const hit::Node *node=nullptr, const bool show_trace=true) const
 
std::string getDataFileName (const std::string &param) const
 
std::string getDataFileNameByName (const std::string &relative_path) const
 
std::string getDataFilePath (const std::string &relative_path) const
 
virtual void customSetup (const ExecFlagType &)
 
const ExecFlagEnum & getExecuteOnEnum () const
 
UserObjectName getUserObjectName (const std::string &param_name) const
 
const T & getUserObject (const std::string &param_name, bool is_dependency=true) const
 
const T & getUserObjectByName (const UserObjectName &object_name, bool is_dependency=true) const
 
const UserObjectBase & getUserObjectBase (const std::string &param_name, bool is_dependency=true) const
 
const UserObjectBase & getUserObjectBaseByName (const UserObjectName &object_name, bool is_dependency=true) const
 
const std::vector< MooseVariableScalar * > & getCoupledMooseScalarVars ()
 
const std::set< TagID > & getScalarVariableCoupleableVectorTags () const
 
const std::set< TagID > & getScalarVariableCoupleableMatrixTags () const
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialProperty (const std::string &name, MaterialData &material_data, const unsigned int state=0)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialProperty (const std::string &name, const unsigned int state=0)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialProperty (const std::string &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialProperty (const std::string &name, MaterialData &material_data, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialProperty (const std::string &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialProperty (const std::string &name, const unsigned int state=0)
 
const ADMaterialProperty< T > & getADMaterialProperty (const std::string &name, MaterialData &material_data)
 
const ADMaterialProperty< T > & getADMaterialProperty (const std::string &name)
 
const ADMaterialProperty< T > & getADMaterialProperty (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOld (const std::string &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOld (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOld (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOlder (const std::string &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOlder (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOlder (const std::string &name)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialPropertyByName (const MaterialPropertyName &name, MaterialData &material_data, const unsigned int state)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialPropertyByName (const MaterialPropertyName &name, MaterialData &material_data, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const ADMaterialProperty< T > & getADMaterialPropertyByName (const MaterialPropertyName &name, MaterialData &material_data)
 
const ADMaterialProperty< T > & getADMaterialPropertyByName (const MaterialPropertyName &name)
 
const ADMaterialProperty< T > & getADMaterialPropertyByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOldByName (const MaterialPropertyName &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOldByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOldByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOlderByName (const MaterialPropertyName &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOlderByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOlderByName (const MaterialPropertyName &name)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialPropertyByName (const std::string &prop_name_in)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialPropertyOldByName (const std::string &prop_name)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialPropertyOlderByName (const std::string &prop_name)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialProperty (const std::string &name)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialPropertyOld (const std::string &name)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialPropertyOlder (const std::string &name)
 
std::pair< const MaterialProperty< T > *, std::set< SubdomainID > > getBlockMaterialProperty (const MaterialPropertyName &name)
 
std::pair< Moose::Kokkos::MaterialProperty< T, dimension >, std::set< SubdomainID > > getKokkosBlockMaterialProperty (const MaterialPropertyName &name)
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialProperty (const std::string &name)
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialProperty ()
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialPropertyByName (const std::string &prop_name)
 
const MaterialProperty< T > & getZeroMaterialProperty (Ts... args)
 
std::set< SubdomainID > getMaterialPropertyBlocks (const std::string &name)
 
std::vector< SubdomainName > getMaterialPropertyBlockNames (const std::string &name)
 
std::set< BoundaryID > getMaterialPropertyBoundaryIDs (const std::string &name)
 
std::vector< BoundaryName > getMaterialPropertyBoundaryNames (const std::string &name)
 
void checkBlockAndBoundaryCompatibility (std::shared_ptr< MaterialBase > discrete)
 
std::unordered_map< SubdomainID, std::vector< MaterialBase * > > buildRequiredMaterials (bool allow_stateful=true)
 
void statefulPropertiesAllowed (bool)
 
virtual bool getMaterialPropertyCalled () const
 
virtual const std::unordered_set< unsigned int > & getMatPropDependencies () const
 
virtual void resolveOptionalProperties ()
 
const GenericMaterialProperty< T, is_ad > & getPossiblyConstantGenericMaterialPropertyByName (const MaterialPropertyName &prop_name, MaterialData &material_data, const unsigned int state)
 
bool isImplicit ()
 
Moose::StateArg determineState () const
 
virtual void threadJoin (const UserObject &) override
 
virtual void threadJoin (const UserObject &) override
 
virtual void subdomainSetup () override
 
virtual void subdomainSetup () override
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
const GenericOptionalMaterialProperty< T, is_ad > & getGenericOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const GenericOptionalMaterialProperty< T, is_ad > & getGenericOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const OptionalMaterialProperty< T > & getOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const OptionalMaterialProperty< T > & getOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const OptionalADMaterialProperty< T > & getOptionalADMaterialProperty (const std::string &name)
 
const OptionalADMaterialProperty< T > & getOptionalADMaterialProperty (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOld (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOld (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOlder (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOlder (const std::string &name)
 
MaterialBase & getMaterial (const std::string &name)
 
MaterialBase & getMaterial (const std::string &name)
 
MaterialBase & getMaterialByName (const std::string &name, bool no_warn=false)
 
MaterialBase & getMaterialByName (const std::string &name, bool no_warn=false)
 
bool hasMaterialProperty (const std::string &name)
 
bool hasMaterialProperty (const std::string &name)
 
bool hasMaterialPropertyByName (const std::string &name)
 
bool hasMaterialPropertyByName (const std::string &name)
 
bool hasADMaterialProperty (const std::string &name)
 
bool hasADMaterialProperty (const std::string &name)
 
bool hasADMaterialPropertyByName (const std::string &name)
 
bool hasADMaterialPropertyByName (const std::string &name)
 
bool hasKokkosMaterialProperty (const std::string &name)
 
bool hasKokkosMaterialProperty (const std::string &name)
 
bool hasKokkosMaterialPropertyByName (const std::string &name)
 
bool hasKokkosMaterialPropertyByName (const std::string &name)
 
bool hasGenericMaterialProperty (const std::string &name)
 
bool hasGenericMaterialProperty (const std::string &name)
 
bool hasGenericMaterialPropertyByName (const std::string &name)
 
bool hasGenericMaterialPropertyByName (const std::string &name)
 
const Function & getFunction (const std::string &name) const
 
const Function & getFunctionByName (const FunctionName &name) const
 
bool hasFunction (const std::string &param_name) const
 
bool hasFunctionByName (const FunctionName &name) const
 
Moose::Kokkos::Function getKokkosFunction (const std::string &name) const
 
const T & getKokkosFunction (const std::string &name) const
 
Moose::Kokkos::Function getKokkosFunctionByName (const FunctionName &name) const
 
const T & getKokkosFunctionByName (const FunctionName &name) const
 
bool hasKokkosFunction (const std::string &param_name) const
 
bool hasKokkosFunctionByName (const FunctionName &name) const
 
bool isDefaultPostprocessorValue (const std::string &param_name, const unsigned int index=0) const
 
bool hasPostprocessor (const std::string &param_name, const unsigned int index=0) const
 
bool hasPostprocessorByName (const PostprocessorName &name) const
 
std::size_t coupledPostprocessors (const std::string &param_name) const
 
const PostprocessorName & getPostprocessorName (const std::string &param_name, const unsigned int index=0) const
 
const VectorPostprocessorValue & getVectorPostprocessorValue (const std::string &param_name, const std::string &vector_name) const
 
const VectorPostprocessorValue & getVectorPostprocessorValue (const std::string &param_name, const std::string &vector_name, bool needs_broadcast) const
 
const VectorPostprocessorValue & getVectorPostprocessorValueByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
const VectorPostprocessorValue & getVectorPostprocessorValueByName (const VectorPostprocessorName &name, const std::string &vector_name, bool needs_broadcast) const
 
const VectorPostprocessorValue & getVectorPostprocessorValueOld (const std::string &param_name, const std::string &vector_name) const
 
const VectorPostprocessorValue & getVectorPostprocessorValueOld (const std::string &param_name, const std::string &vector_name, bool needs_broadcast) const
 
const VectorPostprocessorValue & getVectorPostprocessorValueOldByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
const VectorPostprocessorValue & getVectorPostprocessorValueOldByName (const VectorPostprocessorName &name, const std::string &vector_name, bool needs_broadcast) const
 
const ScatterVectorPostprocessorValue & getScatterVectorPostprocessorValue (const std::string &param_name, const std::string &vector_name) const
 
const ScatterVectorPostprocessorValue & getScatterVectorPostprocessorValueByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
const ScatterVectorPostprocessorValue & getScatterVectorPostprocessorValueOld (const std::string &param_name, const std::string &vector_name) const
 
const ScatterVectorPostprocessorValue & getScatterVectorPostprocessorValueOldByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
bool hasVectorPostprocessor (const std::string &param_name, const std::string &vector_name) const
 
bool hasVectorPostprocessor (const std::string &param_name) const
 
bool hasVectorPostprocessorByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
bool hasVectorPostprocessorByName (const VectorPostprocessorName &name) const
 
const VectorPostprocessorName & getVectorPostprocessorName (const std::string &param_name) const
 
T & getSampler (const std::string &name)
 
Sampler & getSampler (const std::string &name)
 
T & getSamplerByName (const SamplerName &name)
 
Sampler & getSamplerByName (const SamplerName &name)
 
virtual void meshDisplaced ()
 
PerfGraph & perfGraph ()
 
const PostprocessorValue & getPostprocessorValue (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValue & getPostprocessorValue (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValue & getPostprocessorValueOld (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValue & getPostprocessorValueOld (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValue & getPostprocessorValueOlder (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValue & getPostprocessorValueOlder (const std::string &param_name, const unsigned int index=0) const
 
virtual const PostprocessorValue & getPostprocessorValueByName (const PostprocessorName &name) const
 
virtual const PostprocessorValue & getPostprocessorValueByName (const PostprocessorName &name) const
 
const PostprocessorValue & getPostprocessorValueOldByName (const PostprocessorName &name) const
 
const PostprocessorValue & getPostprocessorValueOldByName (const PostprocessorName &name) const
 
const PostprocessorValue & getPostprocessorValueOlderByName (const PostprocessorName &name) const
 
const PostprocessorValue & getPostprocessorValueOlderByName (const PostprocessorName &name) const
 
bool isVectorPostprocessorDistributed (const std::string &param_name) const
 
bool isVectorPostprocessorDistributed (const std::string &param_name) const
 
bool isVectorPostprocessorDistributedByName (const VectorPostprocessorName &name) const
 
bool isVectorPostprocessorDistributedByName (const VectorPostprocessorName &name) const
 
const Distribution & getDistribution (const std::string &name) const
 
const T & getDistribution (const std::string &name) const
 
const Distribution & getDistribution (const std::string &name) const
 
const T & getDistribution (const std::string &name) const
 
const Distribution & getDistributionByName (const DistributionName &name) const
 
const T & getDistributionByName (const std::string &name) const
 
const Distribution & getDistributionByName (const DistributionName &name) const
 
const T & getDistributionByName (const std::string &name) const
 
const Parallel::Communicator & comm () const
 
processor_id_type n_processors () const
 
processor_id_type processor_id () const
 
std::shared_ptr< Ray > acquireRayDuringTrace (const THREAD_ID tid, const AcquireMoveDuringTraceKey &)
 INTERNAL methods for acquiring a Ray during a trace in RayKernels and RayBCs.
 
std::shared_ptr< Ray > acquireRayInternal (const RayID id, const std::size_t data_size, const std::size_t aux_data_size, const bool reset, const AcquireRayInternalKey &)
 
TraceRay & traceRay (const THREAD_ID tid)
 Gets the threaded TraceRay object for tid.
 
const TraceRay & traceRay (const THREAD_ID tid) const
 

Static Public Member Functions

static InputParameters validParams ()
 
static void callMooseError (MooseApp *const app, const InputParameters &params, std::string msg, const bool with_prefix, const hit::Node *node, const bool show_trace=true)
 
static void sort (typename std::vector< T > &vector)
 
static void sortDFS (typename std::vector< T > &vector)
 
static void cyclicDependencyError (CyclicDependencyException< T2 > &e, const std::string &header, NameFunc &&name_func)
 
static void cyclicDependencyError (CyclicDependencyException< T2 > &e, const std::string &header)
 

Public Attributes

 usingCombinedWarningSolutionWarnings
 
const ConsoleStream _console
 

Static Public Attributes

static const std::string type_param
 
static const std::string name_param
 
static const std::string unique_name_param
 
static const std::string app_param
 
static const std::string moose_base_param
 
static const std::string kokkos_object_param
 
static constexpr PropertyValue::id_type default_property_id
 
static constexpr PropertyValue::id_type zero_property_id
 
static constexpr auto SYSTEM
 
static constexpr auto NAME
 

Protected Member Functions

void generateRays () override
 Subclasses should override this to determine how to generate Rays.
 
virtual void preExecuteStudy ()
 Entry point before study execution.
 
virtual void postExecuteStudy ()
 Entry point after study execution.
 
Real computeTotalVolume ()
 Helper function for computing the total domain volume.
 
std::vector< RayKernelBase * > & currentRayKernelsWrite (THREAD_ID tid)
 Gets the writeable current RayKernels for a thread.
 
void reserveRayBuffer (const std::size_t size)
 Reserve size entires in the Ray buffer.
 
bool sameLevelActiveElems () const
 Determine whether or not the mesh currently has active elements that are all the same level.
 
virtual void buildSegmentQuadrature (const Point &start, const Point &end, const Real length, std::vector< Point > &points, std::vector< Real > &weights) const
 Builds quadrature points for a given segment using the _segment_qrule.
 
const std::vector< std::shared_ptr< Ray > > & rayBank () const
 Get the Ray bank.
 
std::shared_ptr< Ray > getBankedRay (const RayID ray_id) const
 Gets the Ray with the ID ray_id from the Ray bank.
 
void resetUniqueRayIDs ()
 Resets the generation of unique RayIDs via generateUniqueRayID() to the beginning of the range.
 
void resetReplicatedRayIDs ()
 Resets the generation of unique replicated RayIDs accessed via generateReplicatedRayID().
 
std::vector< RayTracingObject * > getRayTracingObjects ()
 Gets all of the currently active RayTracingObjects.
 
virtual RayID generateUniqueRayID (const THREAD_ID tid)
 Generates a unique RayID to be used for a Ray.
 
RayID generateReplicatedRayID ()
 Generates a Ray ID that is replicated across all processors.
 
void moveRayToBuffer (std::shared_ptr< Ray > &ray)
 Moves a ray to the buffer to be traced during generateRays().
 
void moveRaysToBuffer (std::vector< std::shared_ptr< Ray > > &rays)
 Moves rays to the buffer to be traced during generateRays().
 
virtual void addPostprocessorDependencyHelper (const PostprocessorName &name) const override
 
virtual void addVectorPostprocessorDependencyHelper (const VectorPostprocessorName &name) const override
 
virtual void addUserObjectDependencyHelper (const UserObjectBase &uo) const override
 
void addReporterDependencyHelper (const ReporterName &reporter_name) override
 
void flagInvalidSolutionInternal (const InvalidSolutionID invalid_solution_id) const
 
InvalidSolutionID registerInvalidSolutionInternal (const std::string &message, const bool warning) const
 
const ReporterContextBase & getReporterContextBaseByName (const ReporterName &reporter_name) const
 
const ReporterName & getReporterName (const std::string &param_name) const
 
T & declareRestartableData (const std::string &data_name, Args &&... args)
 
ManagedValue< T > declareManagedRestartableDataWithContext (const std::string &data_name, void *context, Args &&... args)
 
const T & getRestartableData (const std::string &data_name) const
 
T & declareRestartableDataWithContext (const std::string &data_name, void *context, Args &&... args)
 
T & declareRecoverableData (const std::string &data_name, Args &&... args)
 
T & declareRestartableDataWithObjectName (const std::string &data_name, const std::string &object_name, Args &&... args)
 
T & declareRestartableDataWithObjectNameWithContext (const std::string &data_name, const std::string &object_name, void *context, Args &&... args)
 
std::string restartableName (const std::string &data_name) const
 
const T & getMeshProperty (const std::string &data_name, const std::string &prefix)
 
const T & getMeshProperty (const std::string &data_name)
 
bool hasMeshProperty (const std::string &data_name, const std::string &prefix) const
 
bool hasMeshProperty (const std::string &data_name, const std::string &prefix) const
 
bool hasMeshProperty (const std::string &data_name) const
 
bool hasMeshProperty (const std::string &data_name) const
 
std::string meshPropertyName (const std::string &data_name) const
 
PerfID registerTimedSection (const std::string &section_name, const unsigned int level) const
 
PerfID registerTimedSection (const std::string &section_name, const unsigned int level, const std::string &live_message, const bool print_dots=true) const
 
std::string timedSectionName (const std::string &section_name) const
 
bool isCoupledScalar (const std::string &var_name, unsigned int i=0) const
 
unsigned int coupledScalarComponents (const std::string &var_name) const
 
unsigned int coupledScalar (const std::string &var_name, unsigned int comp=0) const
 
libMesh::Order coupledScalarOrder (const std::string &var_name, unsigned int comp=0) const
 
const VariableValue & coupledScalarValue (const std::string &var_name, unsigned int comp=0) const
 
const ADVariableValue & adCoupledScalarValue (const std::string &var_name, unsigned int comp=0) const
 
const GenericVariableValue< is_ad > & coupledGenericScalarValue (const std::string &var_name, unsigned int comp=0) const
 
const GenericVariableValue< false > & coupledGenericScalarValue (const std::string &var_name, const unsigned int comp) const
 
const GenericVariableValue< true > & coupledGenericScalarValue (const std::string &var_name, const unsigned int comp) const
 
const VariableValue & coupledVectorTagScalarValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
const VariableValue & coupledMatrixTagScalarValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
const VariableValue & coupledScalarValueOld (const std::string &var_name, unsigned int comp=0) const
 
const VariableValue & coupledScalarValueOlder (const std::string &var_name, unsigned int comp=0) const
 
const VariableValue & coupledScalarDot (const std::string &var_name, unsigned int comp=0) const
 
const ADVariableValue & adCoupledScalarDot (const std::string &var_name, unsigned int comp=0) const
 
const VariableValue & coupledScalarDotDot (const std::string &var_name, unsigned int comp=0) const
 
const VariableValue & coupledScalarDotOld (const std::string &var_name, unsigned int comp=0) const
 
const VariableValue & coupledScalarDotDotOld (const std::string &var_name, unsigned int comp=0) const
 
const VariableValue & coupledScalarDotDu (const std::string &var_name, unsigned int comp=0) const
 
const VariableValue & coupledScalarDotDotDu (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagScalarValueByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagScalarValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledScalarValue (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledScalarValueOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledScalarValueOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledScalarDot (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::Scalar< const Real > kokkosCoupledScalarDotDu (const std::string &var_name, unsigned int comp=0) const
 
const MooseVariableScalar * getScalarVar (const std::string &var_name, unsigned int comp) const
 
virtual void checkMaterialProperty (const std::string &name, const unsigned int state)
 
virtual void getKokkosMaterialPropertyHook (const std::string &, const unsigned int)
 
void markMatPropRequested (const std::string &)
 
MaterialPropertyName getMaterialPropertyName (const std::string &name) const
 
void checkExecutionStage ()
 
const T & getReporterValue (const std::string &param_name, const std::size_t time_index=0)
 
const T & getReporterValue (const std::string &param_name, ReporterMode mode, const std::size_t time_index=0)
 
const T & getReporterValue (const std::string &param_name, const std::size_t time_index=0)
 
const T & getReporterValue (const std::string &param_name, ReporterMode mode, const std::size_t time_index=0)
 
const T & getReporterValueByName (const ReporterName &reporter_name, const std::size_t time_index=0)
 
const T & getReporterValueByName (const ReporterName &reporter_name, ReporterMode mode, const std::size_t time_index=0)
 
const T & getReporterValueByName (const ReporterName &reporter_name, const std::size_t time_index=0)
 
const T & getReporterValueByName (const ReporterName &reporter_name, ReporterMode mode, const std::size_t time_index=0)
 
bool hasReporterValue (const std::string &param_name) const
 
bool hasReporterValue (const std::string &param_name) const
 
bool hasReporterValue (const std::string &param_name) const
 
bool hasReporterValue (const std::string &param_name) const
 
bool hasReporterValueByName (const ReporterName &reporter_name) const
 
bool hasReporterValueByName (const ReporterName &reporter_name) const
 
bool hasReporterValueByName (const ReporterName &reporter_name) const
 
bool hasReporterValueByName (const ReporterName &reporter_name) const
 
const GenericMaterialProperty< T, is_ad > * defaultGenericMaterialProperty (const std::string &name)
 
const GenericMaterialProperty< T, is_ad > * defaultGenericMaterialProperty (const std::string &name)
 
const MaterialProperty< T > * defaultMaterialProperty (const std::string &name)
 
const MaterialProperty< T > * defaultMaterialProperty (const std::string &name)
 
const ADMaterialProperty< T > * defaultADMaterialProperty (const std::string &name)
 
const ADMaterialProperty< T > * defaultADMaterialProperty (const std::string &name)
 
std::shared_ptr< Ray > acquireRay ()
 User APIs for constructing Rays within the RayTracingStudy.
 
std::shared_ptr< Ray > acquireUnsizedRay ()
 Acquire a Ray from the pool of Rays within generateRays(), without resizing the data (sizes the data to zero).
 
std::shared_ptr< Ray > acquireReplicatedRay ()
 Acquire a Ray from the pool of Rays within generateRays() in a replicated fashion.
 
std::shared_ptr< Ray > acquireCopiedRay (const Ray &ray)
 Acquires a Ray that that is copied from another Ray within generateRays().
 
std::shared_ptr< Ray > acquireRegisteredRay (const std::string &name)
 Acquires a Ray with a given name within generateRays().
 

Static Protected Member Functions

static std::string meshPropertyName (const std::string &data_name, const std::string &prefix)
 

Protected Attributes

MooseMesh & _mesh
 The Mesh.
 
const Parallel::Communicator & _comm
 The Communicator.
 
const processor_id_type _pid
 The rank of this processor (this actually takes time to lookup - so just do it once)
 
const bool _ray_kernel_coverage_check
 Whether or not to perform coverage checks on RayKernels.
 
const bool _warn_non_planar
 Whether not to warn if non-planar faces are found.
 
const bool _use_ray_registration
 Whether or not to use Ray registration.
 
const bool _use_internal_sidesets
 Whether or not to use the internal sidesets in ray tracing.
 
const bool _tolerate_failure
 Whether or not to tolerate a Ray Tracing failure.
 
const bool _bank_rays_on_completion
 Whether or not to bank rays on completion.
 
const bool _ray_dependent_subdomain_setup
 Whether or not subdomain setup is dependent on the Ray.
 
bool _always_cache_traces
 Whether or not to cache traces on every trace execution.
 
const bool _data_on_cache_traces
 Whether or not to store the Ray data on the cache traces.
 
const bool _aux_data_on_cache_traces
 Whether or not to store the Ray aux data on the cache traces.
 
const bool _segments_on_cache_traces
 Whether or not to cache individual element segments when caching.
 
const Real _ray_max_distance
 Max distance a Ray can travel before being killed (can change)
 
const bool _verify_rays
 Whether or not to verify if Rays have valid information before being traced.
 
const bool _verify_trace_intersections
 Whether or not to verify the trace intersections in devel and dbg modes.
 
const Moose::CoordinateSystemType & _coord_sys
 
const THREAD_ID _tid
 
SubProblem & _subproblem
 
FEProblemBase & _fe_problem
 
SystemBase & _sys
 
Assembly & _assembly
 
const bool _duplicate_initial_execution
 
std::set< std::string > _depend_uo
 
const bool & _enabled
 
MooseApp & _app
 
Factory & _factory
 
ActionFactory & _action_factory
 
const std::string & _type
 
const std::string & _name
 
const InputParameters & _pars
 
const ExecFlagEnum & _execute_enum
 
const ExecFlagType & _current_execute_flag
 
MooseApp & _restartable_app
 
const std::string _restartable_system_name
 
const THREAD_ID _restartable_tid
 
const bool _restartable_read_only
 
FEProblemBase & _mci_feproblem
 
FEProblemBase & _mdi_feproblem
 
MooseApp & _pg_moose_app
 
const std::string _prefix
 
FEProblemBase & _sc_fe_problem
 
const THREAD_ID _sc_tid
 
const Real & _real_zero
 
const VariableValue & _scalar_zero
 
const Point & _point_zero
 
const InputParameters & _mi_params
 
const std::string _mi_name
 
const MooseObjectName _mi_moose_object_name
 
FEProblemBase & _mi_feproblem
 
SubProblem & _mi_subproblem
 
const THREAD_ID _mi_tid
 
const bool _is_kokkos_object
 
const Moose::MaterialDataType _material_data_type
 
MaterialData & _material_data
 
bool _stateful_allowed
 
bool _get_material_property_called
 
std::vector< std::unique_ptr< PropertyValue > > _default_properties
 
std::unordered_set< unsigned int > _material_property_dependencies
 
const MaterialPropertyName _get_suffix
 
const bool _use_interpolated_state
 
const InputParameters & _ti_params
 
FEProblemBase & _ti_feproblem
 
bool _is_implicit
 
Real & _t
 
const Real & _t_old
 
int & _t_step
 
Real & _dt
 
Real & _dt_old
 
bool _is_transient
 
const Parallel::Communicator & _communicator
 

Static Protected Attributes

static const std::string _interpolated_old
 
static const std::string _interpolated_older
 

Private Member Functions

void coverageChecks ()
 Perform coverage checks (coverage of RayMaterials and RayKernels, if enabled)
 
void dependencyChecks ()
 Perform checks to see if the listed dependencies in the RayTracingObjects exist.
 
void verifyDependenciesExist (const std::vector< RayTracingObject * > &rtos)
 Verifies that the dependencies exist for a set of RayTracingObjects.
 
void traceableMeshChecks ()
 Check for if all of the element types in the mesh are supported by ray tracing.
 
void periodicBoundaryChecks ()
 Check for overlapping PeriodicRayBC boundaries and check for cases in which ghosting may not be sufficient with distributed mesh for overlapping periodic boundaries.
 
void internalSidesetSetup ()
 Does the setup for internal sidesets.
 
void nonPlanarSideSetup ()
 Sets up the caching of whether or not each element side is non-planar, which is stored in _non_planar_sides.
 
void localElemIndexSetup ()
 Sets up the _elem_index_helper, which is used for obtaining a contiguous index for all elements that this processor knows about.
 
void registeredRaySetup ()
 Sets up the maps from Ray to associated RayTracingObjects if _use_ray_registration.
 
void zeroAuxVariables ()
 Zero the AuxVariables that the registered AuxRayKernels contribute to.
 
void subdomainHMaxSetup ()
 Caches the hmax for all elements in each subdomain.
 
RayDataIndex registerRayDataInternal (const std::string &name, const bool aux)
 Internal method for registering Ray data or Ray aux data with a name.
 
std::vector< RayDataIndex > registerRayDataInternal (const std::vector< std::string > &names, const bool aux)
 Internal method for registering Ray data or Ray aux data with names.
 
RayDataIndex getRayDataIndexInternal (const std::string &name, const bool aux, const bool graceful) const
 Internal method for getting the index of Ray data or Ray aux data.
 
std::vector< RayDataIndex > getRayDataIndicesInternal (const std::vector< std::string > &names, const bool aux, const bool graceful) const
 Internal method for getting the indicies of Ray data or Ray aux data.
 
const std::string & getRayDataNameInternal (const RayDataIndex index, const bool aux) const
 Internal method for getting the name of Ray data or Ray aux data.
 
RayData getBankedRayDataInternal (const RayID ray_id, const RayDataIndex index, const bool aux) const
 Internal method for getting the value (replicated across all processors) in a Ray's data or aux data from the Ray banks.
 
RayID registerRay (const std::string &name)
 Registers a Ray with a given name.
 
const Moose::FunctionBase * getKokkosFunctionByNameHelper (const FunctionName &name) const
 
const UserObjectBase & getUserObjectFromFEProblem (const UserObjectName &object_name, const THREAD_ID tid=0) const
 
const T & castUserObject (const UserObjectBase &uo_base, const std::string &param_name="") const
 
void mooseObjectError (const std::string &param_name, std::stringstream &oss) const
 
const std::string & userObjectType (const UserObjectBase &uo) const
 
const std::string & userObjectName (const UserObjectBase &uo) const
 
const PostprocessorName & getPostprocessorNameInternal (const std::string &param_name, const unsigned int index, const bool allow_default_value=true) const
 
bool isDefaultPostprocessorValueByName (const PostprocessorName &name) const
 
PostprocessorValue getDefaultPostprocessorValueByName (const PostprocessorName &name) const
 
void checkParam (const std::string &param_name, const unsigned int index=std::numeric_limits< unsigned int >::max()) const
 
bool postprocessorsAdded () const
 
const VectorPostprocessorValue & getVectorPostprocessorByNameHelper (const VectorPostprocessorName &name, const std::string &vector_name, bool broadcast, std::size_t t_index) const
 
const VectorPostprocessorContext< VectorPostprocessorValue > & getVectorPostprocessorContextByNameHelper (const VectorPostprocessorName &name, const std::string &vector_name) const
 
bool vectorPostprocessorsAdded () const
 
bool reportersAdded () const
 
void possiblyCheckHasReporter (const ReporterName &reporter_name, const std::string &param_name="") const
 
RestartableDataValue & registerRestartableDataOnApp (std::unique_ptr< RestartableDataValue > data, THREAD_ID tid) const
 
void registerRestartableNameWithFilterOnApp (const std::string &name, Moose::RESTARTABLE_FILTER filter)
 
RestartableData< T > & declareRestartableDataHelper (const std::string &data_name, void *context, Args &&... args) const
 
virtual std::string meshPropertyPrefix (const std::string &data_name) const
 
const RestartableDataValue & getMeshPropertyInternal (const std::string &data_name, const std::string &prefix) const
 
void mooseErrorInternal (Args &&... args) const
 
const VariableValue * getDefaultValue (const std::string &var_name) const
 
const ADVariableValue * getADDefaultValue (const std::string &var_name) const
 
void checkVar (const std::string &var_name) const
 
void validateExecutionerType (const std::string &name, const std::string &fn_name) const
 
Moose::Kokkos::Variable kokkosCoupledVectorTagScalarVariable (const std::string &var_name, const std::string &tag_name, unsigned int comp) const
 
Moose::MaterialDataType getMaterialDataType (const std::set< BoundaryID > &boundary_ids) const
 
unsigned int getMaxQps () const
 
void addConsumedPropertyName (const MooseObjectName &obj_name, const std::string &prop_name)
 
const PostprocessorValue & getPostprocessorValueInternal (const std::string &param_name, unsigned int index, std::size_t t_index) const
 
const PostprocessorValue & getPostprocessorValueInternal (const std::string &param_name, unsigned int index, std::size_t t_index) const
 
const PostprocessorValue & getPostprocessorValueByNameInternal (const PostprocessorName &name, std::size_t t_index) const
 
const PostprocessorValue & getPostprocessorValueByNameInternal (const PostprocessorName &name, std::size_t t_index) const
 
void possiblyCheckHasVectorPostprocessor (const std::string &param_name, const std::string &vector_name) const
 
void possiblyCheckHasVectorPostprocessor (const std::string &param_name, const std::string &vector_name) const
 
void possiblyCheckHasVectorPostprocessorByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
void possiblyCheckHasVectorPostprocessorByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 

Static Private Member Functions

static const hit::Node * getHitNode (const InputParameters &params)
 
static std::string messagePrefix (const InputParameters &params, const bool hit_prefix)
 

Private Attributes

std::vector< libMesh::ElemSideBuilder > _threaded_elem_side_builders
 Threaded helpers for building element sides without extraneous allocation.
 
std::chrono::steady_clock::time_point _execution_start_time
 Timing.
 
std::chrono::steady_clock::duration _execution_time
 
std::chrono::steady_clock::duration _generation_time
 
std::chrono::steady_clock::duration _propagation_time
 
std::unordered_map< std::string, RayDataIndex > _ray_data_map
 The map from Ray data names to index.
 
std::unordered_map< std::string, RayDataIndex > _ray_aux_data_map
 The map from Ray aux data names to index.
 
std::vector< std::string > _ray_data_names
 The names for each Ray data entry.
 
std::vector< std::string > _ray_aux_data_names
 The names for each Ray aux data entry.
 
std::unordered_map< std::string, RayID > & _registered_ray_map
 Map from registered Ray name to ID.
 
std::vector< std::string > & _reverse_registered_ray_map
 Map from registered Ray ID to name.
 
std::vector< TraceData > _cached_traces
 Storage for the cached traces.
 
std::vector< std::vector< TraceData > > _threaded_cached_traces
 The threaded storage for cached traces.
 
std::vector< std::size_t > _num_cached
 Number of currently cached objects for Jacobian/residual for each thread.
 
std::set< BoundaryID > _internal_sidesets
 The BoundaryIDs on the local mesh that have internal RayBCs.
 
std::vector< std::vector< std::vector< BoundaryID > > > _internal_sidesets_map
 Internal sideset data, if internal sidesets exist (indexed with getLocalElemIndex())
 
bool _has_non_planar_sides
 Whether or not the local mesh has elements with non-planar sides.
 
std::vector< std::vector< unsigned short > > _non_planar_sides
 Non planar side data, which is for quick checking if an elem side is non-planar We use unsigned short here to avoid a std::vector<bool>; 0 = false, otherwise true.
 
bool _has_same_level_active_elems
 Whether or not the mesh has active elements of the same level.
 
libMesh::BoundingBox _b_box
 Nodal bounding box for the domain.
 
libMesh::BoundingBox _loose_b_box
 Loose nodal bounding box for the domain.
 
Real _domain_max_length
 An inflated max distance for the domain.
 
Real _total_volume
 The total volume of the domain.
 
std::vector< TheWarehouse::QueryCache< AttribSubdomains > > _threaded_cache_ray_kernel
 Threaded cached subdomain query for RayKernelBase objects pertaining to this study.
 
std::vector< TheWarehouse::QueryCache< AttribBoundaries > > _threaded_cache_ray_bc
 Threaded cached boundary query for RayBC objects pertaining to this study.
 
std::vector< std::vector< std::set< const RayTracingObject * > > > _threaded_ray_object_registration
 Threaded storage for all of the RayTracingObjects associated with a single Ray.
 
std::vector< std::vector< RayKernelBase * > > _threaded_current_ray_kernels
 The current RayKernel objects for each thread.
 
std::vector< std::shared_ptr< TraceRay > > _threaded_trace_ray
 The TraceRay objects for each thread (they do the physical tracing)
 
std::vector< std::unique_ptr< libMesh::FEBase > > _threaded_fe_face
 Face FE used for computing face normals for each thread.
 
std::vector< std::unique_ptr< libMesh::QBase > > _threaded_q_face
 Face quadrature used for computing face normals for each thread.
 
std::vector< std::unordered_map< std::pair< const Elem *, unsigned short >, Point > > _threaded_cached_normals
 Threaded cache for side normals that have been computed already during tracing.
 
std::vector< std::shared_ptr< Ray > > _ray_bank
 Cumulative Ray bank - stored only when _bank_rays_on_completion.
 
std::vector< RayID > _threaded_next_ray_id
 Storage for the next available unique RayID, obtained via generateUniqueRayID()
 
RayID _replicated_next_ray_id
 Storage for the next available replicated RayID, obtained via generateReplicatedRayID()
 
const std::unique_ptr< ParallelRayStudy > _parallel_ray_study
 The study that used is to actually execute (trace) the Rays.
 
std::unique_ptr< libMesh::QBase > _segment_qrule
 Quadrature rule for laying points across a 1D ray segment.
 
unsigned long long int _ending_processor_crossings
 Total number of processor crossings for Rays that finished on this processor.
 
unsigned int _ending_max_processor_crossings
 Max number of total processor crossings for Rays that finished on this processor.
 
unsigned long long int _total_processor_crossings
 Total number of processor crossings.
 
unsigned int _max_processor_crossings
 Max number of processor crossings for all Rays.
 
unsigned long long int _ending_intersections
 Total number of Ray/element intersections for Rays that finished on this processor.
 
unsigned int _ending_max_intersections
 Max number of intersections for Rays that finished on this processor.
 
unsigned int _ending_max_trajectory_changes
 Max number of trajectory changes for Rays that finished on this processor.
 
unsigned long long int _total_intersections
 Total number of Ray/element intersections.
 
unsigned int _max_intersections
 Max number of intersections for a single Ray.
 
unsigned int _max_trajectory_changes
 Max number of trajectory changes for a single Ray.
 
Real _ending_distance
 Total distance traveled by Rays that end on this processor.
 
Real _total_distance
 Total distance traveled by all Rays.
 
std::vector< unsigned long long int > _local_trace_ray_results
 Cumulative results on this processor from the threaded TraceRay objects.
 
std::unordered_map< SubdomainID, Real > _subdomain_hmax
 The cached hmax for all elements in a subdomain.
 
bool _called_initial_setup
 Whether or not we've called initial setup - used to stop from late registration.
 
ElemIndexHelper _elem_index_helper
 Helper for defining a local contiguous index for each element.
 
Threads::spin_mutex _spin_mutex
 Spin mutex object for locks.
 
UserObject * _primary_thread_copy
 
std::set< std::string > _supplied_uo
 
const ParallelParamObject & _parent
 
const MooseBase & _si_moose_base
 
const FEProblemBase * _si_problem
 
ExecFlagEnum _empty_execute_enum
 
const MooseObject & _fni_object
 
const InputParameters & _fni_params
 
FEProblemBase & _fni_feproblem
 
const THREAD_ID _fni_tid
 
const MooseObject & _uoi_moose_object
 
const FEProblemBase & _uoi_feproblem
 
const THREAD_ID _uoi_tid
 
const MooseObject & _ppi_moose_object
 
const InputParameters & _ppi_params
 
const FEProblemBase & _ppi_feproblem
 
std::map< PostprocessorName, std::unique_ptr< PostprocessorValue > > _default_values
 
const bool _broadcast_by_default
 
const MooseObject & _vpi_moose_object
 
const FEProblemBase & _vpi_feproblem
 
const THREAD_ID _vpi_tid
 
const InputParameters & _ri_params
 
FEProblemBase & _ri_fe_problem_base
 
const ReporterData & _ri_reporter_data
 
const MooseObject & _ri_moose_object
 
const InputParameters & _dni_params
 
FEProblemBase & _dni_feproblem
 
const MooseObject *const _dni_moose_object_ptr
 
const InputParameters & _si_params
 
FEProblemBase & _si_feproblem
 
THREAD_ID _si_tid
 
const RestartableDataMapName _metaname
 
std::string _restartable_name
 
MooseApp & _meta_data_app
 
const MooseObject *const _meta_data_object
 
const InputParameters & _sc_parameters
 
const std::string & _sc_name
 
const bool _sc_is_implicit
 
std::unordered_map< std::string, std::vector< MooseVariableScalar * > > _coupled_scalar_vars
 
std::unordered_map< std::string, std::unique_ptr< VariableValue > > _default_value
 
std::unordered_map< std::string, std::unique_ptr< ADVariableValue > > _dual_default_value
 
std::vector< MooseVariableScalar * > _coupled_moose_scalar_vars
 
std::unordered_map< std::string, std::vector< MooseVariableFieldBase * > > _sc_coupled_vars
 
std::set< TagID > _sc_coupleable_vector_tags
 
std::set< TagID > _sc_coupleable_matrix_tags
 
const MooseObject & _mi_moose_object
 
const bool _mi_boundary_restricted
 
const std::set< SubdomainID > & _mi_block_ids
 
const std::set< BoundaryID > & _mi_boundary_ids
 
std::vector< std::unique_ptr< OptionalMaterialPropertyProxyBase< MaterialPropertyInterface > > > _optional_property_proxies
 
const std::string _ti_name
 

Detailed Description

Definition at line 37 of file RayTracingStudyTest.h.

Constructor & Destructor Documentation

◆ RayTracingStudyWithRegistrationTest()

RayTracingStudyWithRegistrationTest::RayTracingStudyWithRegistrationTest ( const InputParameters &  parameters)

Definition at line 244 of file RayTracingStudyTest.C.

246 : RayTracingStudy(params)
247{
248 if (getParam<bool>("registered_ray_id_missing"))
249 registeredRayID("foo");
250 if (getParam<bool>("registered_ray_name_missing"))
252}
Base class for Ray tracing studies that will generate Rays and then propagate all of them to terminat...
const std::string & registeredRayName(const RayID ray_id) const
Gets the name of a registered ray.
RayID registeredRayID(const std::string &name, const bool graceful=false) const
Gets the ID of a registered ray.

Member Function Documentation

◆ acquireCopiedRay()

std::shared_ptr< Ray > RayTracingStudy::acquireCopiedRay ( const Ray &  ray)
protectedinherited

Acquires a Ray that that is copied from another Ray within generateRays().

All of the information is copied except for the counters (intersections, processor crossings, etc), which are reset.

Definition at line 1834 of file RayTracingStudy.C.

1835{
1836 mooseAssert(currentlyGenerating(), "Can only use during generateRays()");
1837 return _parallel_ray_study->acquireParallelData(
1838 /* tid = */ 0, &ray, Ray::ConstructRayKey());
1839}
bool currentlyGenerating() const
Whether or not the study is generating.
const std::unique_ptr< ParallelRayStudy > _parallel_ray_study
The study that used is to actually execute (trace) the Rays.
Class that is used as a parameter to the public constructors/reset methods.
Definition Ray.h:100

Referenced by RepeatableRayStudyBaseTest::defineRays(), RepeatableRayStudyBase::generateRays(), and RayTracingStudyTest::generateRays().

◆ acquireRay()

std::shared_ptr< Ray > RayTracingStudy::acquireRay ( )
protectedinherited

User APIs for constructing Rays within the RayTracingStudy.

Rays can ONLY be constructed by users within the RayTracingStudy via the following methods. Acquire a Ray from the pool of Rays within generateRays().

A unique ID is generated and assigned to the acquired Ray. The data and aux data sizes are set according to the sizes required by the RayTracingStudy.

Definition at line 1770 of file RayTracingStudy.C.

1771{
1772 mooseAssert(currentlyGenerating(), "Can only use during generateRays()");
1773
1774 return _parallel_ray_study->acquireParallelData(
1775 /* tid = */ 0,
1776 this,
1777 generateUniqueRayID(/* tid = */ 0),
1778 rayDataSize(),
1780 /* reset = */ true,
1782}
std::size_t rayDataSize() const
The registered size of values in the Ray data.
std::size_t rayAuxDataSize() const
The registered size of values in the Ray aux data.
virtual RayID generateUniqueRayID(const THREAD_ID tid)
Generates a unique RayID to be used for a Ray.

Referenced by LotsOfRaysRayStudy::defineRay(), ViewFactorRayStudy::generateRays(), RayTracingStudyTest::generateRays(), StationaryRayStudyTest::generateRays(), TestReuseRaysStudy::generateRays(), TestTransientRaysStudy::generateRays(), and TestRay::generateRays().

◆ acquireRayDuringTrace()

std::shared_ptr< Ray > RayTracingStudy::acquireRayDuringTrace ( const THREAD_ID  tid,
const AcquireMoveDuringTraceKey &   
)
inherited

INTERNAL methods for acquiring a Ray during a trace in RayKernels and RayBCs.

You should not use these APIs directly. If you wish to acquire a Ray during generation during generateRays()), use the protected RayTracingStudy::acquire{}Ray() methods. If you wish to acquire a Ray during propagation in RayKernels and RayBC, use the protected RayKernelBase::acquireRay() and RayBoundaryConditionBase::acquireRay(), respectively.

Definition at line 1842 of file RayTracingStudy.C.

1843{
1844 mooseAssert(currentlyPropagating(), "Can only use during propagation");
1845 return _parallel_ray_study->acquireParallelData(tid,
1846 this,
1848 rayDataSize(),
1850 /* reset = */ true,
1852}
bool currentlyPropagating() const
Whether or not the study is propagating (tracing Rays)

Referenced by RayBoundaryConditionBase::acquireRay(), and RayKernelBase::acquireRay().

◆ acquireRayInternal()

std::shared_ptr< Ray > RayTracingStudy::acquireRayInternal ( const RayID  id,
const std::size_t  data_size,
const std::size_t  aux_data_size,
const bool  reset,
const AcquireRayInternalKey &   
)
inlineinherited

Definition at line 489 of file RayTracingStudy.h.

494 {
495 return _parallel_ray_study->acquireParallelData(
496 0, this, id, data_size, aux_data_size, reset, Ray::ConstructRayKey());
497 }

Referenced by libMesh::Parallel::Packing< std::shared_ptr< Ray > >::unpack().

◆ acquireRegisteredRay()

std::shared_ptr< Ray > RayTracingStudy::acquireRegisteredRay ( const std::string &  name)
protectedinherited

Acquires a Ray with a given name within generateRays().

Used when ray registration is enabled, that is, the private paramater '_use_ray_registration' == true.

This method must be called on all processors at the same time with the same name. This method can only be called on thread 0, which is why there is no thread argument.

Definition at line 1815 of file RayTracingStudy.C.

1816{
1817 mooseAssert(currentlyGenerating(), "Can only use during generateRays()");
1818
1819 // Either register a Ray or get an already registered Ray id
1820 const RayID id = registerRay(name);
1821
1822 // Acquire a Ray with the properly sized data initialized to zero
1823 return _parallel_ray_study->acquireParallelData(
1824 /* tid = */ 0,
1825 this,
1826 id,
1827 rayDataSize(),
1829 /* reset = */ true,
1831}
unsigned long int RayID
Type for a Ray's ID.
Definition Ray.h:44
const std::string & name() const
RayID registerRay(const std::string &name)
Registers a Ray with a given name.

Referenced by RepeatableRayStudy::defineRays(), RepeatableRayStudyBaseTest::defineRays(), and RayTracingStudyTest::generateRays().

◆ acquireReplicatedRay()

std::shared_ptr< Ray > RayTracingStudy::acquireReplicatedRay ( )
protectedinherited

Acquire a Ray from the pool of Rays within generateRays() in a replicated fashion.

That is, this method must be called on all processors at the same time and the ID of the resulting Ray is the same across all processors.

The data and aux data sizes are set according to the sizes required by the RayTracingStudy.

Definition at line 1799 of file RayTracingStudy.C.

1800{
1801 mooseAssert(currentlyGenerating(), "Can only use during generateRays()");
1802 libmesh_parallel_only(comm());
1803
1804 return _parallel_ray_study->acquireParallelData(
1805 /* tid = */ 0,
1806 this,
1808 rayDataSize(),
1810 /* reset = */ true,
1812}
RayID generateReplicatedRayID()
Generates a Ray ID that is replicated across all processors.
const Parallel::Communicator & comm() const

Referenced by ConeRayStudy::defineRays(), and TestPICRayStudy::generateRays().

◆ acquireUnsizedRay()

std::shared_ptr< Ray > RayTracingStudy::acquireUnsizedRay ( )
protectedinherited

Acquire a Ray from the pool of Rays within generateRays(), without resizing the data (sizes the data to zero).

A unique ID is generated and assigned to the acquired Ray.

Definition at line 1785 of file RayTracingStudy.C.

1786{
1787 mooseAssert(currentlyGenerating(), "Can only use during generateRays()");
1788
1789 return _parallel_ray_study->acquireParallelData(/* tid = */ 0,
1790 this,
1791 generateUniqueRayID(/* tid = */ 0),
1792 /* data_size = */ 0,
1793 /* aux_data_size = */ 0,
1794 /* reset = */ true,
1796}

Referenced by LotsOfRaysRayStudy::defineRay().

◆ auxDataOnCacheTraces()

bool RayTracingStudy::auxDataOnCacheTraces ( ) const
inlineinherited

Whether or not to store the Ray aux data on the cached Ray traces.

Definition at line 573 of file RayTracingStudy.h.

const bool _aux_data_on_cache_traces
Whether or not to store the Ray aux data on the cache traces.

Referenced by TraceRay::continueTraceOffProcessor(), TraceRay::onCompleteTrace(), TraceRay::onContinueTrace(), TraceRay::onTrajectoryChanged(), RayTracingMeshOutput::RayTracingMeshOutput(), and TraceRay::trace().

◆ bankRaysOnCompletion()

bool RayTracingStudy::bankRaysOnCompletion ( ) const
inlineinherited

Whether or not to bank Rays on completion.

Definition at line 214 of file RayTracingStudy.h.

214{ return _bank_rays_on_completion; }
const bool _bank_rays_on_completion
Whether or not to bank rays on completion.

Referenced by RayIntegralValue::initialize(), and RayDataValue::RayDataValue().

◆ boundingBox()

const BoundingBox & RayTracingStudy::boundingBox ( ) const
inlineinherited

Get the nodal bounding box for the domain.

Definition at line 422 of file RayTracingStudy.h.

422{ return _b_box; }
libMesh::BoundingBox _b_box
Nodal bounding box for the domain.

Referenced by TestRayDataStudy::auxDataValue(), TestRayDataStudy::dataValue(), LotsOfRaysRayStudy::defineRays(), and TraceRay::trace().

◆ buildSegmentQuadrature()

void RayTracingStudy::buildSegmentQuadrature ( const Point &  start,
const Point &  end,
const Real  length,
std::vector< Point > &  points,
std::vector< Real > &  weights 
) const
protectedvirtualinherited

Builds quadrature points for a given segment using the _segment_qrule.

Parameters
startStart point of the segment
endEnd point of the segment
lengthThe lengh of the start -> end segment
pointsPoints to fill into (should be sized ahead of time)
weightsWeights to fill into (should be sized ahead of time)

Definition at line 813 of file RayTracingStudy.C.

818{
819 points.resize(_segment_qrule->n_points());
820 weights.resize(_segment_qrule->n_points());
821
822 const Point diff = end - start;
823 const Point sum = end + start;
824 mooseAssert(MooseUtils::absoluteFuzzyEqual(length, diff.norm()), "Invalid length");
825
826 // The standard quadrature rule should be on x = [-1, 1]
827 // To scale the points, you...
828 // - Scale to size of the segment in 3D
829 // initial_scaled_qp = x_qp * 0.5 * (end - start) = 0.5 * x_qp * diff
830 // - Shift quadrature midpoint to segment midpoint
831 // final_qp = initial_scaled_qp + 0.5 * (end - start) = initial_scaled_qp + 0.5 * sum
832 // = 0.5 * (x_qp * diff + sum)
833 for (unsigned int qp = 0; qp < _segment_qrule->n_points(); ++qp)
834 {
835 points[qp] = 0.5 * (_segment_qrule->qp(qp)(0) * diff + sum);
836 weights[qp] = 0.5 * _segment_qrule->w(qp) * length;
837 }
838}
std::unique_ptr< libMesh::QBase > _segment_qrule
Quadrature rule for laying points across a 1D ray segment.

Referenced by RayTracingStudy::reinitSegment().

◆ computeTotalVolume()

Real RayTracingStudy::computeTotalVolume ( )
protectedinherited

Helper function for computing the total domain volume.

Definition at line 1490 of file RayTracingStudy.C.

1491{
1492 Real volume = 0;
1493 for (const auto & elem : *_mesh.getActiveLocalElementRange())
1494 volume += elem->volume();
1495 _communicator.sum(volume);
1496 return volume;
1497}
MooseMesh & _mesh
The Mesh.
const Parallel::Communicator & _communicator
Real volume(const MeshBase &mesh, unsigned int dim=libMesh::invalid_uint)
DIE A HORRIBLE DEATH HERE typedef LIBMESH_DEFAULT_SCALAR_TYPE Real

◆ coverageChecks()

void RayTracingStudy::coverageChecks ( )
privateinherited

Perform coverage checks (coverage of RayMaterials and RayKernels, if enabled)

Definition at line 318 of file RayTracingStudy.C.

319{
320 // Check for coverage of RayKernels on domain
322 {
323 std::vector<RayKernelBase *> ray_kernels;
324 getRayKernels(ray_kernels, 0);
325
326 std::set<SubdomainID> ray_kernel_blocks;
327 for (const auto & rk : ray_kernels)
328 ray_kernel_blocks.insert(rk->blockIDs().begin(), rk->blockIDs().end());
329
330 std::set<SubdomainID> missing;
331 std::set_difference(_mesh.meshSubdomains().begin(),
332 _mesh.meshSubdomains().end(),
333 ray_kernel_blocks.begin(),
334 ray_kernel_blocks.end(),
335 std::inserter(missing, missing.begin()));
336
337 if (!missing.empty() && !ray_kernel_blocks.count(Moose::ANY_BLOCK_ID))
338 {
339 std::ostringstream error;
340 error << "Subdomains { ";
341 std::copy(missing.begin(), missing.end(), std::ostream_iterator<SubdomainID>(error, " "));
342 error << "} do not have RayKernels defined!";
343
344 mooseError(error.str());
345 }
346 }
347}
void mooseError(Args &&... args) const
const std::set< SubdomainID > & meshSubdomains() const
void getRayKernels(std::vector< RayKernelBase * > &result, SubdomainID id, THREAD_ID tid)
Fills the active RayKernels associated with this study and a block into result.
const bool _ray_kernel_coverage_check
Whether or not to perform coverage checks on RayKernels.
const SubdomainID ANY_BLOCK_ID

Referenced by RayTracingStudy::initialSetup().

◆ currentlyGenerating()

bool RayTracingStudy::currentlyGenerating ( ) const
inlineinherited

◆ currentlyPropagating()

bool RayTracingStudy::currentlyPropagating ( ) const
inlineinherited

◆ currentRayKernels()

const std::vector< RayKernelBase * > & RayTracingStudy::currentRayKernels ( THREAD_ID  tid) const
inlineinherited

Gets the current RayKernels for a thread, which are set in segmentSubdomainSetup()

Definition at line 414 of file RayTracingStudy.h.

415 {
417 }
std::vector< std::vector< RayKernelBase * > > _threaded_current_ray_kernels
The current RayKernel objects for each thread.

Referenced by TraceRay::onCompleteTrace(), TraceRay::onSegment(), TraceRay::onSubdomainChanged(), RayTracingStudy::reinitSegment(), and TraceRay::trace().

◆ currentRayKernelsWrite()

std::vector< RayKernelBase * > & RayTracingStudy::currentRayKernelsWrite ( THREAD_ID  tid)
inlineprotectedinherited

Gets the writeable current RayKernels for a thread.

Allows for other ray studies to fill the current ray kernels in a custom manner

Definition at line 721 of file RayTracingStudy.h.

722 {
724 }

◆ dataOnCacheTraces()

bool RayTracingStudy::dataOnCacheTraces ( ) const
inlineinherited

Whether or not to store the Ray data on the cached Ray traces.

Definition at line 569 of file RayTracingStudy.h.

569{ return _data_on_cache_traces; }
const bool _data_on_cache_traces
Whether or not to store the Ray data on the cache traces.

Referenced by TraceRay::continueTraceOffProcessor(), TraceRay::onCompleteTrace(), TraceRay::onContinueTrace(), TraceRay::onTrajectoryChanged(), RayTracingMeshOutput::RayTracingMeshOutput(), and TraceRay::trace().

◆ dependencyChecks()

void RayTracingStudy::dependencyChecks ( )
privateinherited

Perform checks to see if the listed dependencies in the RayTracingObjects exist.

Definition at line 350 of file RayTracingStudy.C.

351{
352 std::vector<RayTracingObject *> ray_tracing_objects;
353
354 getRayKernels(ray_tracing_objects, 0);
355 verifyDependenciesExist(ray_tracing_objects);
356
357 getRayBCs(ray_tracing_objects, 0);
358 verifyDependenciesExist(ray_tracing_objects);
359}
void verifyDependenciesExist(const std::vector< RayTracingObject * > &rtos)
Verifies that the dependencies exist for a set of RayTracingObjects.
void getRayBCs(std::vector< RayBoundaryConditionBase * > &result, BoundaryID id, THREAD_ID tid)
Fills the active RayBCs associated with this study and a boundary into result.

Referenced by RayTracingStudy::initialSetup().

◆ domainMaxLength()

Real RayTracingStudy::domainMaxLength ( ) const
inlineinherited

Get the inflated maximum length across the domain.

Definition at line 433 of file RayTracingStudy.h.

433{ return _domain_max_length; }
Real _domain_max_length
An inflated max distance for the domain.

Referenced by TraceRay::exitsElem(), and TraceRay::trace().

◆ elemSide()

const libMesh::Elem & RayTracingStudy::elemSide ( const libMesh::Elem &  elem,
const unsigned int  s,
const THREAD_ID  tid = 0 
)
inlineinherited

Get an element's side pointer without excessive memory allocation.

Parameters
elemThe element to build a side for
sThe side to build
tidThe thread id
Returns
A pointer to the side element

Definition at line 689 of file RayTracingStudy.h.

690 {
691 return _threaded_elem_side_builders[tid](elem, s);
692 }
std::vector< libMesh::ElemSideBuilder > _threaded_elem_side_builders
Threaded helpers for building element sides without extraneous allocation.

Referenced by LotsOfRaysRayStudy::defineRays(), StationaryRayStudyTest::generateRays(), RayTracingStudy::nonPlanarSideSetup(), and ClaimRays::postClaimRay().

◆ endingDistance()

Real RayTracingStudy::endingDistance ( ) const
inlineinherited

Total amount of distance traveled by the rays that end on this processor.

Definition at line 168 of file RayTracingStudy.h.

168{ return _ending_distance; }
Real _ending_distance
Total distance traveled by Rays that end on this processor.

◆ endingIntersections()

unsigned long long int RayTracingStudy::endingIntersections ( ) const
inlineinherited

Total number of Ray/element intersections for Rays that finished on this processor.

Definition at line 147 of file RayTracingStudy.h.

147{ return _ending_intersections; }
unsigned long long int _ending_intersections
Total number of Ray/element intersections for Rays that finished on this processor.

◆ endingMaxIntersections()

unsigned int RayTracingStudy::endingMaxIntersections ( ) const
inlineinherited

Max number of intersections for Rays that finished on this processor.

Definition at line 151 of file RayTracingStudy.h.

unsigned int _ending_max_intersections
Max number of intersections for Rays that finished on this processor.

◆ endingMaxProcessorCrossings()

unsigned int RayTracingStudy::endingMaxProcessorCrossings ( ) const
inlineinherited

Max number of total processor crossings for Rays that finished on this processor.

Definition at line 134 of file RayTracingStudy.h.

unsigned int _ending_max_processor_crossings
Max number of total processor crossings for Rays that finished on this processor.

◆ endingProcessorCrossings()

unsigned long long int RayTracingStudy::endingProcessorCrossings ( ) const
inlineinherited

Total number of processor crossings for Rays that finished on this processor.

Definition at line 130 of file RayTracingStudy.h.

unsigned long long int _ending_processor_crossings
Total number of processor crossings for Rays that finished on this processor.

◆ execute()

void RayTracingStudy::execute ( )
overridevirtualinherited

Executes the study (generates and propagates Rays)

Implements GeneralUserObject.

Reimplemented in SingleTraceLineSourceTest.

Definition at line 312 of file RayTracingStudy.C.

313{
314 executeStudy();
315}
void executeStudy()
Method for executing the study so that it can be called out of the standard UO execute()

Referenced by SingleTraceLineSourceTest::execute().

◆ executeStudy()

void RayTracingStudy::executeStudy ( )
inherited

Method for executing the study so that it can be called out of the standard UO execute()

Definition at line 874 of file RayTracingStudy.C.

875{
876 TIME_SECTION("executeStudy", 2, "Executing Study");
877
878 mooseAssert(_called_initial_setup, "Initial setup not called");
879
880 // Reset ray start/complete timers
884
885 // Reset physical tracing stats
886 for (auto & val : _local_trace_ray_results)
887 val = 0;
888
889 // Reset crossing and intersection
897 _total_distance = 0;
898
899 // Zero the AuxVariables that our AuxRayKernels contribute to before they accumulate
901
903 for (auto & rto : getRayTracingObjects())
904 rto->preExecuteStudy();
905
906 _ray_bank.clear();
907
908 for (THREAD_ID tid = 0; tid < libMesh::n_threads(); ++tid)
909 {
910 _threaded_trace_ray[tid]->preExecute();
911 _threaded_cached_normals[tid].clear();
912 }
913
915 _execution_start_time = std::chrono::steady_clock::now();
916
917 _parallel_ray_study->preExecute();
918
919 {
920 {
921 auto generation_start_time = std::chrono::steady_clock::now();
922
923 TIME_SECTION("generateRays", 2, "Generating Rays");
924
925 generateRays();
926
927 _generation_time = std::chrono::steady_clock::now() - generation_start_time;
928 }
929
930 // At this point, nobody is working so this is good time to make sure
931 // Rays are unique across all processors in the working buffer
932 if (verifyRays())
933 {
934 verifyUniqueRays(_parallel_ray_study->workBuffer().begin(),
935 _parallel_ray_study->workBuffer().end(),
936 /* error_suffix = */ "after generateRays()");
937
938 verifyUniqueRayIDs(_parallel_ray_study->workBuffer().begin(),
939 _parallel_ray_study->workBuffer().end(),
940 /* global = */ true,
941 /* error_suffix = */ "after generateRays()");
942 }
943
945
946 {
947 TIME_SECTION("propagateRays", 2, "Propagating Rays");
948
949 const auto propagation_start_time = std::chrono::steady_clock::now();
950
951 _parallel_ray_study->execute();
952
953 _propagation_time = std::chrono::steady_clock::now() - propagation_start_time;
954 }
955 }
956
957 _execution_time = std::chrono::steady_clock::now() - _execution_start_time;
958
959 if (verifyRays())
960 {
961 verifyUniqueRays(_parallel_ray_study->workBuffer().begin(),
962 _parallel_ray_study->workBuffer().end(),
963 /* error_suffix = */ "after tracing completed");
964
965#ifndef NDEBUG
966 // Outside of debug, _ray_bank always holds all of the Rays that have ended on this processor
967 // We can use this as a global point to check for unique IDs for every Ray that has traced
969 _ray_bank.end(),
970 /* global = */ true,
971 /* error_suffix = */ "after tracing completed");
972#endif
973 }
974
975 // Update counters from the threaded trace objects
976 for (const auto & tr : _threaded_trace_ray)
977 for (std::size_t i = 0; i < _local_trace_ray_results.size(); ++i)
978 _local_trace_ray_results[i] += tr->results()[i];
979
980 // Update local ending counters
987 // ...and communicate the global values
994
995 // Throw a warning with the number of failed (tolerated) traces
997 {
999 _communicator.sum(failures);
1000 if (failures)
1002 type(), " '", name(), "': ", failures, " ray tracing failures were tolerated.\n");
1003 }
1004
1005 // Clear the current RayKernels
1006 for (THREAD_ID tid = 0; tid < libMesh::n_threads(); ++tid)
1008
1009 // Move the threaded cache trace information into the full cached trace vector
1010 // Here, we only clear the cached vectors so that we might not have to
1011 // reallocate on future traces
1012 std::size_t num_entries = 0;
1013 for (THREAD_ID tid = 0; tid < libMesh::n_threads(); ++tid)
1014 num_entries += _threaded_cached_traces[tid].size();
1015 _cached_traces.clear();
1016 _cached_traces.reserve(num_entries);
1017 for (THREAD_ID tid = 0; tid < libMesh::n_threads(); ++tid)
1018 {
1019 for (const auto & entry : _threaded_cached_traces[tid])
1020 _cached_traces.emplace_back(std::move(entry));
1021 _threaded_cached_traces[tid].clear();
1022 }
1023
1024 // Add any stragglers that contribute to the Jacobian or residual
1025 for (THREAD_ID tid = 0; tid < libMesh::n_threads(); ++tid)
1026 if (_num_cached[tid] != 0)
1027 {
1030 "Should not have cached values without Jacobian/residual computation");
1031
1034 else
1036
1037 _num_cached[tid] = 0;
1038 }
1039
1040 // AuxRayKernels may have modified AuxVariables
1043
1044 // Clear FE
1045 for (THREAD_ID tid = 0; tid < libMesh::n_threads(); ++tid)
1046 {
1049 }
1050
1052 for (auto & rto : getRayTracingObjects())
1053 rto->postExecuteStudy();
1054}
unsigned int THREAD_ID
for(PetscInt i=0;i< nvars;++i)
sideset clear()
virtual void addCachedResidual(const THREAD_ID tid) override
AuxiliarySystem & getAuxiliarySystem()
virtual void addCachedJacobian(const THREAD_ID tid) override
void clearActiveMaterialProperties(const THREAD_ID tid)
virtual void clearActiveElementalMooseVariables(const THREAD_ID tid) override
const bool & currentlyComputingResidual() const
const std::string & type() const
void mooseWarning(Args &&... args) const
std::vector< RayTracingObject * > getRayTracingObjects()
Gets all of the currently active RayTracingObjects.
std::vector< unsigned long long int > _local_trace_ray_results
Cumulative results on this processor from the threaded TraceRay objects.
const bool _tolerate_failure
Whether or not to tolerate a Ray Tracing failure.
std::chrono::steady_clock::duration _generation_time
void verifyUniqueRays(const std::vector< std::shared_ptr< Ray > >::const_iterator begin, const std::vector< std::shared_ptr< Ray > >::const_iterator end, const std::string &error_suffix)
Verifies that the Rays in the given range are unique.
std::vector< std::shared_ptr< Ray > > _ray_bank
Cumulative Ray bank - stored only when _bank_rays_on_completion.
std::chrono::steady_clock::duration _propagation_time
unsigned long long int _total_intersections
Total number of Ray/element intersections.
Real _total_distance
Total distance traveled by all Rays.
std::vector< std::unordered_map< std::pair< const Elem *, unsigned short >, Point > > _threaded_cached_normals
Threaded cache for side normals that have been computed already during tracing.
virtual void preExecuteStudy()
Entry point before study execution.
std::vector< TraceData > _cached_traces
Storage for the cached traces.
unsigned int _max_trajectory_changes
Max number of trajectory changes for a single Ray.
virtual void generateRays()=0
Subclasses should override this to determine how to generate Rays.
virtual void postExecuteStudy()
Entry point after study execution.
unsigned int _max_intersections
Max number of intersections for a single Ray.
void registeredRaySetup()
Sets up the maps from Ray to associated RayTracingObjects if _use_ray_registration.
void verifyUniqueRayIDs(const std::vector< std::shared_ptr< Ray > >::const_iterator begin, const std::vector< std::shared_ptr< Ray > >::const_iterator end, const bool global, const std::string &error_suffix) const
Verifies that the Rays in the given range have unique Ray IDs.
bool verifyRays() const
Whether or not to verify if Rays have valid information before being traced.
unsigned long long int _total_processor_crossings
Total number of processor crossings.
std::vector< std::vector< TraceData > > _threaded_cached_traces
The threaded storage for cached traces.
std::vector< std::shared_ptr< TraceRay > > _threaded_trace_ray
The TraceRay objects for each thread (they do the physical tracing)
std::chrono::steady_clock::duration _execution_time
unsigned int _ending_max_trajectory_changes
Max number of trajectory changes for Rays that finished on this processor.
bool _called_initial_setup
Whether or not we've called initial setup - used to stop from late registration.
unsigned int _max_processor_crossings
Max number of processor crossings for all Rays.
std::chrono::steady_clock::time_point _execution_start_time
Timing.
std::vector< std::size_t > _num_cached
Number of currently cached objects for Jacobian/residual for each thread.
void zeroAuxVariables()
Zero the AuxVariables that the registered AuxRayKernels contribute to.
const bool & currentlyComputingJacobian() const
NumericVector< Number > & solution()
void max(const T &r, T &o, Request &req) const
@ FAILED_TRACES
Definition TraceRay.h:71
FEProblemBase & _fe_problem
virtual void close()=0
unsigned int n_threads()

Referenced by RayTracingStudy::execute().

◆ executionTime()

Real RayTracingStudy::executionTime ( )
inlineinherited

Duration for execute() in seconds.

Definition at line 189 of file RayTracingStudy.h.

189{ return std::chrono::duration<Real>(_execution_time).count(); }

◆ executionTimeNano()

Real RayTracingStudy::executionTimeNano ( )
inlineinherited

Duration for execute() in nanoseconds.

Definition at line 193 of file RayTracingStudy.h.

194 {
195 return std::chrono::duration<Real, std::nano>(_execution_time).count();
196 }

◆ finalize()

virtual void RayTracingStudy::finalize ( )
inlineoverridevirtualinherited

Implements GeneralUserObject.

Definition at line 81 of file RayTracingStudy.h.

81{}

◆ generateRays()

void RayTracingStudyWithRegistrationTest::generateRays ( )
inlineoverrideprotectedvirtual

Subclasses should override this to determine how to generate Rays.

This will be called within execute() and makes up the "generation phase" of the algorithm.

Implements RayTracingStudy.

Definition at line 45 of file RayTracingStudyTest.h.

45{}

◆ generateReplicatedRayID()

RayID RayTracingStudy::generateReplicatedRayID ( )
protectedinherited

Generates a Ray ID that is replicated across all processors.

Definition at line 1753 of file RayTracingStudy.C.

1754{
1755 return _replicated_next_ray_id++;
1756}
RayID _replicated_next_ray_id
Storage for the next available replicated RayID, obtained via generateReplicatedRayID()

Referenced by RayTracingStudy::acquireReplicatedRay().

◆ generateUniqueRayID()

RayID RayTracingStudy::generateUniqueRayID ( const THREAD_ID  tid)
protectedvirtualinherited

Generates a unique RayID to be used for a Ray.

This is used internally when acquiring new Rays.

Definition at line 1728 of file RayTracingStudy.C.

1729{
1730 // Get the current ID to return
1731 const auto id = _threaded_next_ray_id[tid];
1732
1733 // Advance so that the next call has the correct ID
1735
1736 return id;
1737}
std::vector< RayID > _threaded_next_ray_id
Storage for the next available unique RayID, obtained via generateUniqueRayID()
processor_id_type n_processors() const

Referenced by RayTracingStudy::acquireRay(), RayTracingStudy::acquireRayDuringTrace(), and RayTracingStudy::acquireUnsizedRay().

◆ generationTime()

Real RayTracingStudy::generationTime ( ) const
inlineinherited

Duration for creation of all Rays in seconds.

Definition at line 200 of file RayTracingStudy.h.

200{ return std::chrono::duration<Real>(_generation_time).count(); }

Referenced by PerProcessorRayTracingResultsVectorPostprocessor::execute().

◆ getBankedRay()

std::shared_ptr< Ray > RayTracingStudy::getBankedRay ( const RayID  ray_id) const
protectedinherited

Gets the Ray with the ID ray_id from the Ray bank.

If the Ray with ray_id is not found across all processors, this will error.

This will ONLY return a valid Ray (not a null shared_ptr) on the processor that has the Ray.

Definition at line 1380 of file RayTracingStudy.C.

1381{
1382 // This is only a linear search - can be improved on with a map in the future
1383 // if this is used on a larger scale
1384 std::shared_ptr<Ray> ray;
1385 for (const std::shared_ptr<Ray> & possible_ray : rayBank())
1386 if (possible_ray->id() == ray_id)
1387 {
1388 ray = possible_ray;
1389 break;
1390 }
1391
1392 // Make sure one and only one processor has the Ray
1393 unsigned int have_ray = ray ? 1 : 0;
1394 _communicator.sum(have_ray);
1395 if (have_ray == 0)
1396 mooseError("Could not find a Ray with the ID ", ray_id, " in the Ray banks.");
1397
1398 // This should never happen... but let's make sure
1399 mooseAssert(have_ray == 1, "Multiple rays with the same ID were found in the Ray banks");
1400
1401 return ray;
1402}
const std::vector< std::shared_ptr< Ray > > & rayBank() const
Get the Ray bank.
if(subdm)

Referenced by RayTracingStudy::getBankedRayDataInternal().

◆ getBankedRayAuxData()

RayData RayTracingStudy::getBankedRayAuxData ( const RayID  ray_id,
const RayDataIndex  index 
) const
inherited

Gets the data value for a banked ray with a given ID.

This will return the value replicated across all processors

Definition at line 1424 of file RayTracingStudy.C.

1425{
1426 return getBankedRayDataInternal(ray_id, index, /* aux = */ true);
1427}
RayData getBankedRayDataInternal(const RayID ray_id, const RayDataIndex index, const bool aux) const
Internal method for getting the value (replicated across all processors) in a Ray's data or aux data ...

Referenced by RayDataValue::getValue().

◆ getBankedRayData()

RayData RayTracingStudy::getBankedRayData ( const RayID  ray_id,
const RayDataIndex  index 
) const
inherited

Gets the data value for a banked ray with a given ID.

This will return the value replicated across all processors

Definition at line 1418 of file RayTracingStudy.C.

1419{
1420 return getBankedRayDataInternal(ray_id, index, /* aux = */ false);
1421}

Referenced by RayDataValue::getValue(), and RayIntegralValue::getValue().

◆ getBankedRayDataInternal()

RayData RayTracingStudy::getBankedRayDataInternal ( const RayID  ray_id,
const RayDataIndex  index,
const bool  aux 
) const
privateinherited

Internal method for getting the value (replicated across all processors) in a Ray's data or aux data from the Ray banks.

Definition at line 1405 of file RayTracingStudy.C.

1408{
1409 // Will be a nullptr shared_ptr if this processor doesn't own the Ray
1410 const std::shared_ptr<Ray> ray = getBankedRay(ray_id);
1411
1412 Real value = ray ? (aux ? ray->auxData(index) : ray->data(index)) : 0;
1413 _communicator.sum(value);
1414 return value;
1415}
std::shared_ptr< Ray > getBankedRay(const RayID ray_id) const
Gets the Ray with the ID ray_id from the Ray bank.
Real value(unsigned n, unsigned alpha, unsigned beta, Real x)

Referenced by RayTracingStudy::getBankedRayAuxData(), and RayTracingStudy::getBankedRayData().

◆ getCachedTraces()

const std::vector< TraceData > & RayTracingStudy::getCachedTraces ( ) const
inlineinherited

◆ getElemNormals()

virtual const Point * RayTracingStudy::getElemNormals ( const Elem *  ,
const THREAD_ID   
)
inlinevirtualinherited

Gets the outward normals for a given element.

Returns a pointer to the normal for the zeroth side.

Reimplemented in BackfaceCullingStudyTest.

Definition at line 531 of file RayTracingStudy.h.

532 {
533 mooseError("Unimplemented element normal caching in ", type(), "::getElemNormals()");
534 }

Referenced by TraceRay::moveThroughNeighbor(), RayTracingStudyTest::RayTracingStudyTest(), and TraceRay::trace().

◆ getInternalSidesets() [1/2]

const std::set< BoundaryID > & RayTracingStudy::getInternalSidesets ( ) const
inlineinherited

Gets the internal sidesets (that have RayBCs) within the local domain.

Definition at line 459 of file RayTracingStudy.h.

459{ return _internal_sidesets; }
std::set< BoundaryID > _internal_sidesets
The BoundaryIDs on the local mesh that have internal RayBCs.

Referenced by ViewFactorRayStudy::initialSetup().

◆ getInternalSidesets() [2/2]

const std::vector< std::vector< BoundaryID > > & RayTracingStudy::getInternalSidesets ( const Elem *  elem) const
inherited

Get the internal sidesets (that have RayBC(s)) for each side for a given element.

This will be empty if the elem does not have any internal sidesets that have RayBC(s)

Definition at line 1500 of file RayTracingStudy.C.

1501{
1502 mooseAssert(_use_internal_sidesets, "Not using internal sidesets");
1503 mooseAssert(hasInternalSidesets(), "Processor does not have internal sidesets");
1504 mooseAssert(_internal_sidesets_map.size() > _elem_index_helper.getIndex(elem),
1505 "Internal sideset map not initialized");
1506
1507 const auto index = _elem_index_helper.getIndex(elem);
1508 return _internal_sidesets_map[index];
1509}
libMesh::dof_id_type getIndex(const libMesh::Elem *elem) const
Get the index associated with the element elem.
const bool _use_internal_sidesets
Whether or not to use the internal sidesets in ray tracing.
std::vector< std::vector< std::vector< BoundaryID > > > _internal_sidesets_map
Internal sideset data, if internal sidesets exist (indexed with getLocalElemIndex())
ElemIndexHelper _elem_index_helper
Helper for defining a local contiguous index for each element.
bool hasInternalSidesets() const
Whether or not the local mesh has internal sidesets that have RayBCs on them.

Referenced by TraceRay::applyOnInternalBoundary().

◆ getRayAuxDataIndex()

RayDataIndex RayTracingStudy::getRayAuxDataIndex ( const std::string &  name,
const bool  graceful = false 
) const
inherited

Gets the index associated with a registered value in the Ray aux data.

Parameters
nameThe value name to get the index of
gracefulWhether or not to exit gracefully if none is found (return INVALID_RAY_DATA_INDEX)
Returns
The index for the value

Definition at line 1213 of file RayTracingStudy.C.

1215{
1216 return getRayDataIndexInternal(name, /* aux = */ true, graceful);
1217}
RayDataIndex getRayDataIndexInternal(const std::string &name, const bool aux, const bool graceful) const
Internal method for getting the index of Ray data or Ray aux data.

Referenced by RayDataValue::initialize(), RayTracingStudyTest::RayTracingStudyTest(), and RayTracingMeshOutput::setupEquationSystem().

◆ getRayAuxDataIndices()

std::vector< RayDataIndex > RayTracingStudy::getRayAuxDataIndices ( const std::vector< std::string > &  names,
const bool  graceful = false 
) const
inherited

Gets the indices associated with registered values in the Ray aux data.

Parameters
namesThe value names to get the indices of
gracefulWhether or not to exit gracefully if none is found (index is filled with INVALID_RAY_DATA_INDEX)
Returns
The indices for the values

Definition at line 1220 of file RayTracingStudy.C.

1222{
1223 return getRayDataIndicesInternal(names, /* aux = */ true, graceful);
1224}
std::vector< RayDataIndex > getRayDataIndicesInternal(const std::vector< std::string > &names, const bool aux, const bool graceful) const
Internal method for getting the indicies of Ray data or Ray aux data.

◆ getRayAuxDataName()

const std::string & RayTracingStudy::getRayAuxDataName ( const RayDataIndex  index) const
inherited

Gets the name associated with a registered value in the Ray aux data.

Parameters
indexThe index to get the name of
Returns
The name associated with index

Definition at line 1227 of file RayTracingStudy.C.

1228{
1229 return getRayDataNameInternal(index, /* aux = */ true);
1230}
const std::string & getRayDataNameInternal(const RayDataIndex index, const bool aux) const
Internal method for getting the name of Ray data or Ray aux data.

Referenced by Ray::getInfo().

◆ getRayAuxDataNames()

std::vector< std::string > RayTracingStudy::getRayAuxDataNames ( const std::vector< RayDataIndex > &  indices) const
inherited

Gets the names associated with registered values in the Ray aux data.

Parameters
indicesThe indices to get the names of
Returns
The associated names

◆ getRayBCs() [1/4]

void RayTracingStudy::getRayBCs ( std::vector< RayBoundaryConditionBase * > &  result,
BoundaryID  id,
THREAD_ID  tid 
)
inherited

Fills the active RayBCs associated with this study and a boundary into result.

Definition at line 1291 of file RayTracingStudy.C.

1294{
1295 // If the cache doesn't have any attributes yet, it means that we haven't set
1296 // the conditions yet. We do this so that it can be generated on the fly on first use.
1297 if (!_threaded_cache_ray_bc[tid].numAttribs())
1298 {
1300 mooseError("Should not call getRayBCs() before initialSetup()");
1301
1303 .query()
1304 .condition<AttribRayTracingStudy>(this)
1305 .condition<AttribSystem>("RayBoundaryCondition")
1306 .condition<AttribThread>(tid);
1307 _threaded_cache_ray_bc[tid] = query.clone();
1308 }
1309
1310 _threaded_cache_ray_bc[tid].queryInto(result, std::make_tuple(id, false));
1311}
Attribute for the RayTracingStudy a RayTracingObject is associated with.
TheWarehouse & theWarehouse() const
std::vector< TheWarehouse::QueryCache< AttribBoundaries > > _threaded_cache_ray_bc
Threaded cached boundary query for RayBC objects pertaining to this study.
Query query()
query_obj query

Referenced by RayTracingStudy::dependencyChecks(), RayTracingStudy::getRayBCs(), ViewFactorRayStudy::initialSetup(), RayTracingStudy::internalSidesetSetup(), TraceRay::onBoundary(), RayTracingStudy::periodicBoundaryChecks(), and RayTracingStudyTest::RayTracingStudyTest().

◆ getRayBCs() [2/4]

void RayTracingStudy::getRayBCs ( std::vector< RayBoundaryConditionBase * > &  result,
const std::vector< TraceRayBndElement > &  bnd_elems,
THREAD_ID  tid,
RayID  ray_id 
)
virtualinherited

Fills the active RayBCs associated with thie study, boundary elements, and potentially Ray into result.

This is purposely virtual because it allows derived studies to optimize the retrieval of RayBCs during the trace in TraceRay.

Definition at line 1314 of file RayTracingStudy.C.

1318{
1319 // No Ray registration: no need to sift through objects
1321 {
1322 if (bnd_elems.size() == 1)
1323 getRayBCs(result, bnd_elems[0].bnd_id, tid);
1324 else
1325 {
1326 std::vector<BoundaryID> bnd_ids(bnd_elems.size());
1327 for (MooseIndex(bnd_elems.size()) i = 0; i < bnd_elems.size(); ++i)
1328 bnd_ids[i] = bnd_elems[i].bnd_id;
1329 getRayBCs(result, bnd_ids, tid);
1330 }
1331 }
1332 // Has Ray registration: only pick the objects associated with ray_id
1333 else
1334 {
1335 // Get all of the RayBCs on these boundaries
1336 std::vector<RayBoundaryConditionBase *> rbcs;
1337 if (bnd_elems.size() == 1)
1338 getRayBCs(rbcs, bnd_elems[0].bnd_id, tid);
1339 else
1340 {
1341 std::vector<BoundaryID> bnd_ids(bnd_elems.size());
1342 for (MooseIndex(bnd_elems.size()) i = 0; i < bnd_elems.size(); ++i)
1343 bnd_ids[i] = bnd_elems[i].bnd_id;
1344 getRayBCs(rbcs, bnd_ids, tid);
1345 }
1346
1347 // The RayTracingObjects associated with this ray
1348 mooseAssert(ray_id < _threaded_ray_object_registration[tid].size(), "Not in registration");
1349 const auto & ray_id_rtos = _threaded_ray_object_registration[tid][ray_id];
1350
1351 // The result is the union of all of the kernels and the objects associated with this Ray
1352 result.clear();
1353 for (auto rbc : rbcs)
1354 if (ray_id_rtos.count(rbc))
1355 result.push_back(rbc);
1356 }
1357}
unsigned int count
const bool _use_ray_registration
Whether or not to use Ray registration.
std::vector< std::vector< std::set< const RayTracingObject * > > > _threaded_ray_object_registration
Threaded storage for all of the RayTracingObjects associated with a single Ray.

◆ getRayBCs() [3/4]

template<typename T >
void RayTracingStudy::getRayBCs ( std::vector< T * > &  result,
const std::vector< BoundaryID > &  ids,
THREAD_ID  tid 
)
inlineinherited

Fills the active RayBCs associated with this study and boundaries result.

Definition at line 376 of file RayTracingStudy.h.

377 {
379 .query()
380 .condition<AttribRayTracingStudy>(this)
381 .condition<AttribSystem>("RayBoundaryCondition")
382 .condition<AttribBoundaries>(ids)
383 .condition<AttribThread>(tid)
384 .queryInto(result);
385 }

◆ getRayBCs() [4/4]

template<typename T >
void RayTracingStudy::getRayBCs ( std::vector< T * > &  result,
THREAD_ID  tid 
)
inlineinherited

Fills the active RayBCs associated with this study into result.

Definition at line 390 of file RayTracingStudy.h.

391 {
393 .query()
394 .condition<AttribRayTracingStudy>(this)
395 .condition<AttribSystem>("RayBoundaryCondition")
396 .condition<AttribThread>(tid)
397 .queryInto(result);
398 }

◆ getRayDataIndex()

RayDataIndex RayTracingStudy::getRayDataIndex ( const std::string &  name,
const bool  graceful = false 
) const
inherited

Gets the index associated with a registered value in the Ray data.

Parameters
nameThe value name to get the index of
gracefulWhether or not to exit gracefully if none is found (return INVALID_RAY_DATA_INDEX)
Returns
The index for the value

Definition at line 1182 of file RayTracingStudy.C.

1183{
1184 return getRayDataIndexInternal(name, /* aux = */ false, graceful);
1185}

Referenced by RayDataValue::initialize(), RayIntegralValue::initialize(), RayTracingStudyTest::RayTracingStudyTest(), and RayTracingMeshOutput::setupEquationSystem().

◆ getRayDataIndexInternal()

RayDataIndex RayTracingStudy::getRayDataIndexInternal ( const std::string &  name,
const bool  aux,
const bool  graceful 
) const
privateinherited

Internal method for getting the index of Ray data or Ray aux data.

Definition at line 1118 of file RayTracingStudy.C.

1121{
1122 Threads::spin_mutex::scoped_lock lock(_spin_mutex);
1123
1124 const auto & map = aux ? _ray_aux_data_map : _ray_data_map;
1125 const auto find = map.find(name);
1126 if (find != map.end())
1127 return find->second;
1128
1129 if (graceful)
1131
1132 const auto & other_map = aux ? _ray_data_map : _ray_aux_data_map;
1133 if (other_map.find(name) != other_map.end())
1134 mooseError("Ray data with name '",
1135 name,
1136 "' was not found.\n\n",
1137 "However, Ray ",
1138 (aux ? "non-aux" : "aux"),
1139 " data with said name was found.\n",
1140 "Did you mean to use ",
1141 (aux ? "getRayDataIndex()/getRayDataIndices()?"
1142 : "getRayAuxDataIndex()/getRayAuxDataIndices()"),
1143 "?");
1144
1145 mooseError("Unknown Ray ", (aux ? "aux " : ""), "data with name ", name);
1146}
std::unordered_map< std::string, RayDataIndex > _ray_aux_data_map
The map from Ray aux data names to index.
Threads::spin_mutex _spin_mutex
Spin mutex object for locks.
std::unordered_map< std::string, RayDataIndex > _ray_data_map
The map from Ray data names to index.
static const RayDataIndex INVALID_RAY_DATA_INDEX
Invalid index into a Ray's data.
Definition Ray.h:212
KOKKOS_INLINE_FUNCTION const T * find(const T &target, const T *const begin, const T *const end)

Referenced by RayTracingStudy::getRayAuxDataIndex(), RayTracingStudy::getRayDataIndex(), and RayTracingStudy::getRayDataIndicesInternal().

◆ getRayDataIndices()

std::vector< RayDataIndex > RayTracingStudy::getRayDataIndices ( const std::vector< std::string > &  names,
const bool  graceful = false 
) const
inherited

Gets the indices associated with registered values in the Ray data.

Parameters
namesThe value names to get the indices of
gracefulWhether or not to exit gracefully if none is found (index is filled with INVALID_RAY_DATA_INDEX)
Returns
The indices for the values

Definition at line 1188 of file RayTracingStudy.C.

1190{
1191 return getRayDataIndicesInternal(names, /* aux = */ false, graceful);
1192}

◆ getRayDataIndicesInternal()

std::vector< RayDataIndex > RayTracingStudy::getRayDataIndicesInternal ( const std::vector< std::string > &  names,
const bool  aux,
const bool  graceful 
) const
privateinherited

Internal method for getting the indicies of Ray data or Ray aux data.

Definition at line 1149 of file RayTracingStudy.C.

1152{
1153 std::vector<RayDataIndex> indices(names.size());
1154 for (std::size_t i = 0; i < names.size(); ++i)
1155 indices[i] = getRayDataIndexInternal(names[i], aux, graceful);
1156 return indices;
1157}

Referenced by RayTracingStudy::getRayAuxDataIndices(), and RayTracingStudy::getRayDataIndices().

◆ getRayDataName()

const std::string & RayTracingStudy::getRayDataName ( const RayDataIndex  index) const
inherited

Gets the name associated with a registered value in the Ray data.

Parameters
indexThe index to get the name of
Returns
The name associated with index

Definition at line 1195 of file RayTracingStudy.C.

1196{
1197 return getRayDataNameInternal(index, /* aux = */ false);
1198}

Referenced by Ray::getInfo(), and RayTracingStudyTest::RayTracingStudyTest().

◆ getRayDataNameInternal()

const std::string & RayTracingStudy::getRayDataNameInternal ( const RayDataIndex  index,
const bool  aux 
) const
privateinherited

Internal method for getting the name of Ray data or Ray aux data.

Definition at line 1160 of file RayTracingStudy.C.

1161{
1162 Threads::spin_mutex::scoped_lock lock(_spin_mutex);
1163
1164 if ((aux ? rayAuxDataSize() : rayDataSize()) < index)
1165 mooseError("Unknown Ray ", aux ? "aux " : "", "data with index ", index);
1166 return aux ? _ray_aux_data_names[index] : _ray_data_names[index];
1167}
std::vector< std::string > _ray_aux_data_names
The names for each Ray aux data entry.
std::vector< std::string > _ray_data_names
The names for each Ray data entry.

Referenced by RayTracingStudy::getRayAuxDataName(), and RayTracingStudy::getRayDataName().

◆ getRayDataNames()

std::vector< std::string > RayTracingStudy::getRayDataNames ( const std::vector< RayDataIndex > &  indices) const
inherited

Gets the names associated with registered values in the Ray data.

Parameters
indicesThe indices to get the names of
Returns
The associated names

◆ getRayKernels() [1/3]

void RayTracingStudy::getRayKernels ( std::vector< RayKernelBase * > &  result,
SubdomainID  id,
THREAD_ID  tid 
)
inherited

Fills the active RayKernels associated with this study and a block into result.

Definition at line 1241 of file RayTracingStudy.C.

1242{
1243 // If the cache doesn't have any attributes yet, it means that we haven't set
1244 // the conditions yet. We do this so that it can be generated on the fly on first use.
1245 if (!_threaded_cache_ray_kernel[tid].numAttribs())
1246 {
1248 mooseError("Should not call getRayKernels() before initialSetup()");
1249
1251 .query()
1252 .condition<AttribRayTracingStudy>(this)
1253 .condition<AttribSystem>("RayKernel")
1254 .condition<AttribThread>(tid);
1255 _threaded_cache_ray_kernel[tid] = query.clone();
1256 }
1257
1258 _threaded_cache_ray_kernel[tid].queryInto(result, id);
1259}
std::vector< TheWarehouse::QueryCache< AttribSubdomains > > _threaded_cache_ray_kernel
Threaded cached subdomain query for RayKernelBase objects pertaining to this study.

Referenced by RayTracingStudy::coverageChecks(), RayTracingStudy::dependencyChecks(), RayTracingStudy::getRayKernels(), RayTracingStudy::hasRayKernels(), RayTracingStudy::initialSetup(), RayTracingStudyTest::RayTracingStudyTest(), RayTracingStudy::segmentSubdomainSetup(), and RayTracingStudy::zeroAuxVariables().

◆ getRayKernels() [2/3]

void RayTracingStudy::getRayKernels ( std::vector< RayKernelBase * > &  result,
SubdomainID  id,
THREAD_ID  tid,
RayID  ray_id 
)
inherited

Fills the active RayKernels associeted with this study, block, and potentially Ray into result.

Definition at line 1262 of file RayTracingStudy.C.

1266{
1267 // No Ray registration: no need to sift through objects
1269 {
1270 getRayKernels(result, id, tid);
1271 }
1272 // Has Ray registration: only pick the objects associated with ray_id
1273 else
1274 {
1275 // Get all of the kernels on this block
1276 std::vector<RayKernelBase *> rkbs;
1277 getRayKernels(rkbs, id, tid);
1278
1279 // The RayTracingObjects associated with this ray
1280 const auto & ray_id_rtos = _threaded_ray_object_registration[tid][ray_id];
1281
1282 // The result is the union of all of the kernels and the objects associated with this Ray
1283 result.clear();
1284 for (auto rkb : rkbs)
1285 if (ray_id_rtos.count(rkb))
1286 result.push_back(rkb);
1287 }
1288}

◆ getRayKernels() [3/3]

template<typename T >
void RayTracingStudy::getRayKernels ( std::vector< T * > &  result,
THREAD_ID  tid 
)
inlineinherited

Fills the active RayKernels associated with this study into result.

Definition at line 354 of file RayTracingStudy.h.

355 {
357 .query()
358 .condition<AttribRayTracingStudy>(this)
359 .condition<AttribSystem>("RayKernel")
360 .condition<AttribThread>(tid)
361 .queryInto(result);
362 }

◆ getRayTracingObjects()

std::vector< RayTracingObject * > RayTracingStudy::getRayTracingObjects ( )
protectedinherited

Gets all of the currently active RayTracingObjects.

Definition at line 1360 of file RayTracingStudy.C.

1361{
1362 std::vector<RayTracingObject *> result;
1363 _fe_problem.theWarehouse().query().condition<AttribRayTracingStudy>(this).queryInto(result);
1364 return result;
1365}

Referenced by RayTracingStudy::executeStudy(), RayTracingStudy::initialSetup(), RayTracingStudy::jacobianSetup(), RayTracingStudy::registeredRaySetup(), RayTracingStudy::residualSetup(), and RayTracingStudy::timestepSetup().

◆ getSideNormal()

const Point & RayTracingStudy::getSideNormal ( const Elem *  elem,
const unsigned short  side,
const THREAD_ID  tid 
)
virtualinherited

Get the outward normal for a given element side.

Definition at line 1653 of file RayTracingStudy.C.

1654{
1655 std::unordered_map<std::pair<const Elem *, unsigned short>, Point> & cache =
1657
1658 // See if we've already cached this side normal
1659 const auto elem_side_pair = std::make_pair(elem, side);
1660 const auto search = cache.find(elem_side_pair);
1661
1662 // Haven't cached this side normal: compute it and then cache it
1663 if (search == cache.end())
1664 {
1665 _threaded_fe_face[tid]->reinit(elem, side);
1666 const auto & normal = _threaded_fe_face[tid]->get_normals()[0];
1667 cache.emplace(elem_side_pair, normal);
1668 return normal;
1669 }
1670
1671 // Have cached this side normal: simply return it
1672 return search->second;
1673}
std::vector< std::unique_ptr< libMesh::FEBase > > _threaded_fe_face
Face FE used for computing face normals for each thread.

Referenced by LotsOfRaysRayStudy::defineRays(), BackfaceCullingStudyTest::generateNormals(), ViewFactorRayStudy::generateRays(), TraceRay::getEdgeNeighbors(), TraceRay::getPointNeighbors(), TraceRay::getVertexNeighbors(), ReflectRayBC::onBoundary(), RayTracingStudy::sideIsIncoming(), and TraceRay::trace().

◆ hasInternalSidesets()

bool RayTracingStudy::hasInternalSidesets ( ) const
inlineinherited

Whether or not the local mesh has internal sidesets that have RayBCs on them.

NOTE: if useInternalSidesets() == false, this will be false even if the mesh does have internal sidesets

Definition at line 449 of file RayTracingStudy.h.

449{ return _internal_sidesets.size(); }

Referenced by TraceRay::applyOnInternalBoundary(), RayTracingStudy::getInternalSidesets(), and TraceRay::trace().

◆ hasRayAuxData()

bool RayTracingStudy::hasRayAuxData ( ) const
inlineinherited

Whether or not any Ray aux data are registered.

Definition at line 336 of file RayTracingStudy.h.

336{ return _ray_aux_data_names.size(); }

◆ hasRayData()

bool RayTracingStudy::hasRayData ( ) const
inlineinherited

Whether or not any Ray data are registered.

Definition at line 276 of file RayTracingStudy.h.

276{ return _ray_data_names.size(); }

Referenced by RayTracingMeshOutput::fillFields().

◆ hasRayKernels()

bool RayTracingStudy::hasRayKernels ( const THREAD_ID  tid)
inherited

Whether or not there are currently any active RayKernel objects.

Definition at line 1233 of file RayTracingStudy.C.

1234{
1235 std::vector<RayKernelBase *> result;
1236 getRayKernels(result, tid);
1237 return result.size();
1238}

Referenced by ViewFactorRayStudy::initialSetup(), and TraceRay::preExecute().

◆ hasSameLevelActiveElems()

bool RayTracingStudy::hasSameLevelActiveElems ( ) const
inlineinherited

Whether or not the mesh has active elements of the same level.

Use this over sameLevelActiveElems(), which is for internally setting _has_same_level_active_elems

Definition at line 475 of file RayTracingStudy.h.

bool _has_same_level_active_elems
Whether or not the mesh has active elements of the same level.

Referenced by TraceRay::applyOnInternalBoundary(), and TraceRay::trace().

◆ initialize()

virtual void RayTracingStudy::initialize ( )
inlineoverridevirtualinherited

Implements GeneralUserObject.

Definition at line 80 of file RayTracingStudy.h.

80{}

◆ initialSetup()

void RayTracingStudy::initialSetup ( )
overridevirtualinherited

Reimplemented from GeneralUserObject.

Reimplemented in ViewFactorRayStudy, and BackfaceCullingStudyTest.

Definition at line 225 of file RayTracingStudy.C.

226{
227 // Keep track of initialSetup call to avoid registration of various things
229
230 // Sets up a local index for each elem this proc knows about
232
233 // Check for RayKernel coverage
235
236 // Make sure the dependencies exist, if any
238
239 // Check for traceable element types
241
242 // Check for sane periodic boundaries
244
245 // Setup for internal sidesets
247
249
250 // Setup approximate hmax for each subdomain
252
253 // Call initial setup on all of the objects
254 for (auto & rto : getRayTracingObjects())
255 rto->initialSetup();
256
257 // Check for proper exec flags with RayKernels
258 std::vector<RayKernelBase *> ray_kernels;
259 getRayKernels(ray_kernels, 0);
260 for (const auto & rkb : ray_kernels)
261 if (dynamic_cast<RayKernel *>(rkb) && !_execute_enum.isValueSet(EXEC_PRE_KERNELS))
262 mooseError("This study has RayKernel objects that contribute to residuals and Jacobians.",
263 "\nIn this case, the study must use the execute_on = PRE_KERNELS");
264
265 // Build 1D quadrature rule for along a segment
266 _segment_qrule = QBase::build(
268}
const ExecFlagType EXEC_PRE_KERNELS
virtual const SystemBase & getSystemBase(const unsigned int sys_num) const
Base class for a ray kernel that contributes to the residual and/or Jacobian.
Definition RayKernel.h:34
void traceableMeshChecks()
Check for if all of the element types in the mesh are supported by ray tracing.
void nonPlanarSideSetup()
Sets up the caching of whether or not each element side is non-planar, which is stored in _non_planar...
virtual void initialSetup() override
void subdomainHMaxSetup()
Caches the hmax for all elements in each subdomain.
void localElemIndexSetup()
Sets up the _elem_index_helper, which is used for obtaining a contiguous index for all elements that ...
void internalSidesetSetup()
Does the setup for internal sidesets.
void coverageChecks()
Perform coverage checks (coverage of RayMaterials and RayKernels, if enabled)
void dependencyChecks()
Perform checks to see if the listed dependencies in the RayTracingObjects exist.
void periodicBoundaryChecks()
Check for overlapping PeriodicRayBC boundaries and check for cases in which ghosting may not be suffi...
const ExecFlagEnum & _execute_enum
unsigned int number() const
virtual libMesh::Order getMinQuadratureOrder()
SystemBase & _sys

Referenced by ViewFactorRayStudy::initialSetup().

◆ initThreadedCachedTrace()

TraceData & RayTracingStudy::initThreadedCachedTrace ( const std::shared_ptr< Ray > &  ray,
THREAD_ID  tid 
)
inherited

Initialize a Ray in the threaded cached trace map to be filled with segments.

Definition at line 1512 of file RayTracingStudy.C.

1513{
1514 mooseAssert(shouldCacheTrace(ray), "Not caching trace");
1515 mooseAssert(currentlyPropagating(), "Should only use while tracing");
1516
1517 _threaded_cached_traces[tid].emplace_back(ray);
1518 return _threaded_cached_traces[tid].back();
1519}
virtual bool shouldCacheTrace(const std::shared_ptr< Ray > &) const
Virtual that allows for selection in if a Ray should be cached or not (only used when _cache_traces).

Referenced by TraceRay::trace().

◆ internalSidesetSetup()

void RayTracingStudy::internalSidesetSetup ( )
privateinherited

Does the setup for internal sidesets.

This includes:

  • Setting if the local mesh has internal sidesets that have RayBCs and on which boundary (stored in _internal_sidesets)
  • Sets up the internal sideset mapping that maps element sides to the BoundaryIDs on said side that have internal sidesets that have RayBCs (stored in _internal_sidesets_map)

If _use_internal_sidesets == false, this will still check to make sure that the user does not have internal sidesets with RayBCs on them, and will report an error if so.

Definition at line 515 of file RayTracingStudy.C.

516{
517 // Even if we have _use_internal_sidesets == false, we will make sure the user didn't add RayBCs
518 // on internal boundaries
519
520 // Clear the data structures and size the map based on the elements that we know about
521 _internal_sidesets.clear();
524
525 // First, we are going to store all elements with internal sidesets (if any) that have active
526 // RayBCs on them as elem -> vector of (side, vector of boundary ids)
527 for (const auto & bnd_elem : *_mesh.getBoundaryElementRange())
528 {
529 Elem * elem = bnd_elem->_elem;
530 const unsigned int side = bnd_elem->_side;
531 const auto bnd_id = bnd_elem->_bnd_id;
532
533 // Not internal
534 const Elem * const neighbor = elem->neighbor_ptr(side);
535 if (!neighbor || neighbor == remote_elem)
536 continue;
537
538 // No RayBCs on this sideset
539 std::vector<RayBoundaryConditionBase *> result;
540 getRayBCs(result, bnd_id, 0);
541 if (result.empty())
542 continue;
543
544 if (neighbor->subdomain_id() == elem->subdomain_id())
545 mooseError("RayBCs exist on internal sidesets that are not bounded by a different",
546 "\nsubdomain on each side.",
547 "\n\nIn order to use RayBCs on internal sidesets, said sidesets must have",
548 "\na different subdomain on each side.");
549
550 // Mark that this boundary is an internal sideset with RayBC(s)
551 _internal_sidesets.insert(bnd_id);
552
553 // Get elem's entry in the internal sidset data structure
554 const auto index = _elem_index_helper.getIndex(elem);
555 auto & entry = _internal_sidesets_map[index];
556
557 // Initialize this elem's sides if they have not been already
558 if (entry.empty())
559 entry.resize(elem->n_sides(), std::vector<BoundaryID>());
560
561 // Add the internal boundary to the side entry
562 entry[side].push_back(bnd_id);
563 }
564
566 mooseError("RayBCs are defined on internal sidesets, but the study is not set to use ",
567 "internal sidesets during tracing.",
568 "\n\nSet the parameter use_internal_sidesets = true to enable this capability.");
569}
libMesh::dof_id_type maxIndex() const
Gets the maximum index generated using this object.

Referenced by RayTracingStudy::initialSetup(), and RayTracingStudy::meshChanged().

◆ isRectangularDomain()

bool RayTracingStudy::isRectangularDomain ( ) const
inherited

Whether or not the domain is rectangular (if it is prefectly encompassed by its bounding box)

Definition at line 1704 of file RayTracingStudy.C.

1705{
1706 Real bbox_volume = 1;
1707 for (unsigned int d = 0; d < _mesh.dimension(); ++d)
1708 bbox_volume *= std::abs(_b_box.max()(d) - _b_box.min()(d));
1709
1710 return MooseUtils::absoluteFuzzyEqual(bbox_volume, totalVolume(), TOLERANCE);
1711}
virtual unsigned int dimension() const
Real totalVolume() const
Get the current total volume of the domain.
const Point & max() const
const Point & min() const

Referenced by LotsOfRaysRayStudy::LotsOfRaysRayStudy(), and TraceRay::preExecute().

◆ jacobianSetup()

void RayTracingStudy::jacobianSetup ( )
overridevirtualinherited

Reimplemented from GeneralUserObject.

Definition at line 281 of file RayTracingStudy.C.

282{
283 for (THREAD_ID tid = 0; tid < libMesh::n_threads(); ++tid)
284 mooseAssert(_num_cached[tid] == 0, "Cached residuals/Jacobians not empty");
285
286 for (auto & rto : getRayTracingObjects())
287 rto->jacobianSetup();
288}
virtual void jacobianSetup() override

◆ localElemIndexSetup()

void RayTracingStudy::localElemIndexSetup ( )
privateinherited

Sets up the _elem_index_helper, which is used for obtaining a contiguous index for all elements that this processor knows about.

Said index is used for quickly accessing things like internal sidesets and checking if an element side is non-planar during tracing.

Definition at line 507 of file RayTracingStudy.C.

508{
509 // TODO: We could probably minimize this to local active elements followed by
510 // boundary point neighbors, but if using distibuted mesh it really shouldn't matter
511 _elem_index_helper.initialize(_mesh.getMesh().active_element_ptr_range());
512}
void initialize(const libMesh::SimpleRange< libMesh::MeshBase::element_iterator > elems)
Initializes the indices in a contiguous manner for the given element range.
MeshBase & getMesh()

Referenced by RayTracingStudy::initialSetup(), and RayTracingStudy::meshChanged().

◆ localTraceRayResult()

unsigned long long int RayTracingStudy::localTraceRayResult ( const int  result) const
inlineinherited

Definition at line 174 of file RayTracingStudy.h.

175 {
176 return _local_trace_ray_results[result];
177 }

Referenced by PerProcessorRayTracingResultsVectorPostprocessor::execute().

◆ looseBoundingBox()

const BoundingBox & RayTracingStudy::looseBoundingBox ( ) const
inlineinherited

Get the loose nodal bounding box for the domain.

BoundingBox::contains_point does not have a tolerance, so we need to stretch the box a little bit for some contains_point checks.

Definition at line 429 of file RayTracingStudy.h.

429{ return _loose_b_box; }
libMesh::BoundingBox _loose_b_box
Loose nodal bounding box for the domain.

Referenced by Ray::setStart(), and Ray::setStartingEndPoint().

◆ maxIntersections()

unsigned int RayTracingStudy::maxIntersections ( ) const
inlineinherited

Max number of intersections for a Ray.

Definition at line 159 of file RayTracingStudy.h.

159{ return _max_intersections; }

◆ maxProcessorCrossings()

unsigned int RayTracingStudy::maxProcessorCrossings ( ) const
inlineinherited

Max number of processor crossings for all Rays.

Definition at line 142 of file RayTracingStudy.h.

142{ return _max_processor_crossings; }

Referenced by RayTracingStudyResult::getValue().

◆ maxTrajectoryChanges()

unsigned int RayTracingStudy::maxTrajectoryChanges ( ) const
inlineinherited

Max number of trajectory changes for a Ray.

Definition at line 163 of file RayTracingStudy.h.

163{ return _max_trajectory_changes; }

◆ mesh()

MooseMesh & RayTracingStudy::mesh ( )
inlineinherited
Returns
A reference to the MooseMesh associated with this study.

Definition at line 520 of file RayTracingStudy.h.

520{ return _mesh; }

◆ meshBase()

MeshBase & RayTracingStudy::meshBase ( ) const
inlineinherited

◆ meshChanged()

void RayTracingStudy::meshChanged ( )
overridevirtualinherited

Reimplemented from GeneralUserObject.

Reimplemented in RepeatableRayStudyBase, and BackfaceCullingStudyTest.

Definition at line 298 of file RayTracingStudy.C.

299{
304
306
307 for (const auto & trace_ray : _threaded_trace_ray)
308 trace_ray->meshChanged();
309}
bool sameLevelActiveElems() const
Determine whether or not the mesh currently has active elements that are all the same level.
virtual void meshChanged() override

Referenced by RepeatableRayStudyBase::meshChanged().

◆ moveRaysToBuffer()

void RayTracingStudy::moveRaysToBuffer ( std::vector< std::shared_ptr< Ray > > &  rays)
protectedinherited

Moves rays to the buffer to be traced during generateRays().

This moves the rays into the buffer (with std::move), therefore all valid rays in rays will be nullptr after this call.

Definition at line 1618 of file RayTracingStudy.C.

1619{
1620 mooseAssert(currentlyGenerating(), "Can only use while generating");
1621#ifndef NDEBUG
1622 for (const std::shared_ptr<Ray> & ray : rays)
1623 {
1624 mooseAssert(ray, "Null ray");
1625 mooseAssert(ray->shouldContinue(), "Ray is not continuing");
1626 }
1627#endif
1628
1629 _parallel_ray_study->moveWorkToBuffer(rays, /* tid = */ 0);
1630}

Referenced by TestPICRayStudy::generateRays(), TestReuseRaysStudy::generateRays(), and TestTransientRaysStudy::generateRays().

◆ moveRayToBuffer()

void RayTracingStudy::moveRayToBuffer ( std::shared_ptr< Ray > &  ray)
protectedinherited

Moves a ray to the buffer to be traced during generateRays().

This moves the Ray into the buffer (with std::move), therefore ray will be nullptr after this call.

Definition at line 1608 of file RayTracingStudy.C.

1609{
1610 mooseAssert(currentlyGenerating(), "Can only use while generating");
1611 mooseAssert(ray, "Null ray");
1612 mooseAssert(ray->shouldContinue(), "Ray is not continuing");
1613
1614 _parallel_ray_study->moveWorkToBuffer(ray, /* tid = */ 0);
1615}

Referenced by ViewFactorRayStudy::generateRays(), RepeatableRayStudyBase::generateRays(), RayTracingStudyTest::generateRays(), StationaryRayStudyTest::generateRays(), TestReuseRaysStudy::generateRays(), and TestTransientRaysStudy::generateRays().

◆ moveRayToBufferDuringTrace()

void RayTracingStudy::moveRayToBufferDuringTrace ( std::shared_ptr< Ray > &  ray,
const THREAD_ID  tid,
const AcquireMoveDuringTraceKey &   
)
inherited

INTERNAL method for moving a Ray into the buffer during tracing.

You should not and cannot use this API. It is protected by the AcquireMoveDuringTraceKey, which is only constructable by RayKernelBase and RayBoundaryConditionBase.

Definition at line 1633 of file RayTracingStudy.C.

1636{
1637 mooseAssert(ray, "Null ray");
1638 mooseAssert(currentlyPropagating(), "Can only use while tracing");
1639
1640 _parallel_ray_study->moveWorkToBuffer(ray, tid);
1641}

Referenced by RayBoundaryConditionBase::moveRayToBuffer(), and RayKernelBase::moveRayToBuffer().

◆ nonPlanarSideSetup()

void RayTracingStudy::nonPlanarSideSetup ( )
privateinherited

Sets up the caching of whether or not each element side is non-planar, which is stored in _non_planar_sides.

This is done because this check is made within TraceRay, and determining whether or not a side is non planar is quite expensive and we don't want to call it mid-trace.

Definition at line 572 of file RayTracingStudy.C.

573{
574 _has_non_planar_sides = false;
575 bool warned = !_warn_non_planar;
576
577 // Nothing to do here for 2D or 1D
578 if (_mesh.dimension() != 3)
579 return;
580
581 // Clear the data structure and size it based on the elements that we know about
582 _non_planar_sides.clear();
584
585 for (const Elem * elem : _mesh.getMesh().active_element_ptr_range())
586 {
587 const auto index = _elem_index_helper.getIndex(elem);
588 auto & entry = _non_planar_sides[index];
589 entry.resize(elem->n_sides(), 0);
590
591 for (const auto s : elem->side_index_range())
592 {
593 const auto & side = elemSide(*elem, s);
594 if (side.n_vertices() < 4)
595 continue;
596
597 if (!side.has_affine_map())
598 {
599 entry[s] = 1;
601
602 if (!warned)
603 {
604 mooseWarning("The mesh contains non-planar faces.\n\n",
605 "Ray tracing on non-planar faces is an approximation and may fail.\n\n",
606 "Use at your own risk! You can disable this warning by setting the\n",
607 "parameter 'warn_non_planar' to false.");
608 warned = true;
609 }
610 }
611 }
612 }
613}
const libMesh::Elem & elemSide(const libMesh::Elem &elem, const unsigned int s, const THREAD_ID tid=0)
Get an element's side pointer without excessive memory allocation.
bool _has_non_planar_sides
Whether or not the local mesh has elements with non-planar sides.
std::vector< std::vector< unsigned short > > _non_planar_sides
Non planar side data, which is for quick checking if an elem side is non-planar We use unsigned short...
const bool _warn_non_planar
Whether not to warn if non-planar faces are found.
T & getMesh(MooseMesh &mesh)
function to cast mesh
Definition SCM.h:35

Referenced by RayTracingStudy::initialSetup(), and RayTracingStudy::meshChanged().

◆ onCompleteRay()

void RayTracingStudy::onCompleteRay ( const std::shared_ptr< Ray > &  ray)
virtualinherited

Entry point for acting on a ray when it is completed (shouldContinue() == false)

Reimplemented in TestRayDataStudy.

Definition at line 1057 of file RayTracingStudy.C.

1058{
1059 mooseAssert(currentlyPropagating(), "Should only be called during Ray propagation");
1060
1061 _ending_processor_crossings += ray->processorCrossings();
1063 std::max(_ending_max_processor_crossings, ray->processorCrossings());
1064 _ending_intersections += ray->intersections();
1065 _ending_max_intersections = std::max(_ending_max_intersections, ray->intersections());
1067 std::max(_ending_max_trajectory_changes, ray->trajectoryChanges());
1068 _ending_distance += ray->distance();
1069
1070#ifdef NDEBUG
1071 // In non-opt modes, we will always bank the Rays for debugging
1073#endif
1074 _ray_bank.emplace_back(ray);
1075}

Referenced by TestRayDataStudy::onCompleteRay(), and ParallelRayStudy::postExecuteChunk().

◆ parallelRayStudy()

const ParallelRayStudy & RayTracingStudy::parallelRayStudy ( ) const
inlineinherited

◆ parallelStudy()

ParallelStudy< std::shared_ptr< Ray >, Ray > * RayTracingStudy::parallelStudy ( )
inlineinherited

The underlying parallel study: used for the context for calling the packed range routines.

Definition at line 678 of file RayTracingStudy.h.

678{ return _parallel_ray_study.get(); }

Referenced by RayTracingStudyTest::generateRays(), and RepeatableRayStudyBase::verifyReplicatedRays().

◆ periodicBoundaryChecks()

void RayTracingStudy::periodicBoundaryChecks ( )
privateinherited

Check for overlapping PeriodicRayBC boundaries and check for cases in which ghosting may not be sufficient with distributed mesh for overlapping periodic boundaries.

Definition at line 400 of file RayTracingStudy.C.

401{
402 // Collect the PeriodicRayBCs
403 std::vector<const RayBoundaryConditionBase *> rbc_ptrs;
404 getRayBCs(rbc_ptrs, 0);
405 std::vector<const PeriodicRayBC *> prbc_ptrs;
406 for (const auto rbc_ptr : rbc_ptrs)
407 if (const auto prbc_ptr = dynamic_cast<const PeriodicRayBC *>(rbc_ptr))
408 prbc_ptrs.push_back(prbc_ptr);
409 if (prbc_ptrs.empty())
410 return;
411
412 // Collect each of the periodic boundaries
413 std::map<boundary_id_type,
414 std::tuple<const PeriodicRayBC *,
416 std::unordered_set<dof_id_type>>>
417 boundary_map;
418 for (const auto prbc_ptr : prbc_ptrs)
419 {
420 for (const auto & [bid, pb] : prbc_ptr->getPeriodicBoundaries())
421 {
422 const auto [it, inserted] = boundary_map.emplace(
423 std::piecewise_construct,
424 std::tuple{bid},
425 std::forward_as_tuple(prbc_ptr, pb.get(), std::unordered_set<dof_id_type>()));
426 if (!inserted)
427 prbc_ptr->mooseError("The periodic boundary '",
429 "' has been defined in both ",
430 prbc_ptr->typeAndName(),
431 " and ",
432 std::get<0>(it->second)->typeAndName());
433 }
434 }
435
436 // Because we don't have ghosting setup correctly yet, we need to check if any
437 // of the periodic boundaries are neighbors with distributed mesh. If the
438 // mesh is replicated, we don't need to check this. See #31280.
439 if (comm().size() == 1 || !_mesh.isDistributedMesh())
440 return;
441
442 // Collect all of the nodes that are on each periodic boundary
443 const auto & sideset_map = _mesh.getMesh().get_boundary_info().get_sideset_map();
444 for (const auto & [elem, side_bid_pair] : sideset_map)
445 {
446 const auto [side, bid] = side_bid_pair;
447 if (auto it = boundary_map.find(bid); it != boundary_map.end())
448 for (const auto n : elem->nodes_on_side(side))
449 std::get<2>(it->second).insert(elem->node_ref(n).id());
450 }
451
452 // Distributed meshes have distributed boundary information, so sync
453 for (auto & bid_tuple_pair : boundary_map)
454 comm().set_union(std::get<2>(bid_tuple_pair.second));
455
456 // Check for periodic boundaries that share nodes
457 std::map<std::pair<boundary_id_type, boundary_id_type>,
458 std::pair<const PeriodicRayBC *, const PeriodicRayBC *>>
459 warn_boundaries;
460 for (auto it = boundary_map.begin(); it != boundary_map.end(); ++it)
461 {
462 const auto & [bid, tup] = *it;
463 const auto [prbc_ptr, pb, node_ids] = tup;
464
465 for (auto other_it = std::next(it); other_it != boundary_map.end(); ++other_it)
466 {
467 const auto & [other_bid, other_tup] = *other_it;
468
469 // Don't check against boundaries that are paried together
470 if (pb->pairedboundary == other_bid)
471 continue;
472
473 const auto other_prbc_ptr = std::get<0>(other_tup);
474 const auto & other_node_ids = std::get<2>(other_tup);
475 for (const auto node_id : node_ids)
476 if (other_node_ids.count(node_id))
477 {
478 if (!warn_boundaries.count(std::make_pair(other_bid, bid)))
479 warn_boundaries.emplace(std::make_pair(bid, other_bid),
480 std::make_pair(prbc_ptr, other_prbc_ptr));
481 break;
482 }
483 }
484 }
485
486 if (warn_boundaries.size())
487 {
488 std::ostringstream oss;
489 oss << warn_boundaries.size()
490 << " ray tracing periodic boundaries were found to be neighbors:\n\n";
491 for (const auto & [bids_pair, prbc_ptrs_pair] : warn_boundaries)
492 {
493 const auto [bid, paired_bid] = bids_pair;
494 const auto [prbc_ptr, paired_prbc_ptr] = prbc_ptrs_pair;
495 oss << " '" << _mesh.getBoundaryString(bid) << "' (in " << prbc_ptr->typeAndName()
496 << ") <-> '" << _mesh.getBoundaryString(paired_bid) << "' (in "
497 << paired_prbc_ptr->typeAndName() << ")\n";
498 }
499 oss << "\nThe periodic propagation of rays at points where two or more periodic"
500 << "\nboundaries meet is not fully supported with a distributed mesh."
501 << "\n\nIf you encounter trace failures, you should use a replicated mesh.";
502 mooseWarning(oss.str());
503 }
504}
virtual bool isDistributedMesh() const
std::string getBoundaryString(const BoundaryID boundary_id) const
RayBC that enforces periodic boundaries.
processor_id_type size() const
const Elem & get(const ElemType type_in)
int8_t boundary_id_type

Referenced by RayTracingStudy::initialSetup().

◆ postExecuteStudy()

virtual void RayTracingStudy::postExecuteStudy ( )
inlineprotectedvirtualinherited

Entry point after study execution.

Reimplemented in ViewFactorRayStudy, RayTracingStudyTest, TestPICRayStudy, TestReuseRaysStudy, TestTransientRaysStudy, and TestRayLots.

Definition at line 709 of file RayTracingStudy.h.

709{}

Referenced by RayTracingStudy::executeStudy().

◆ postOnSegment()

void RayTracingStudy::postOnSegment ( const THREAD_ID  tid,
const std::shared_ptr< Ray > &  ray 
)
virtualinherited

Called at the end of a Ray segment.

Parameters
tidThread id
rayThe ray

Definition at line 841 of file RayTracingStudy.C.

842{
843 mooseAssert(currentlyPropagating(), "Should not call while not propagating");
845 mooseAssert(_num_cached[tid] == 0,
846 "Values should only be cached when computing Jacobian/residual");
847
848 // Fill into cached Jacobian/residuals if necessary
850 {
852
853 if (++_num_cached[tid] == 20)
854 {
855 Threads::spin_mutex::scoped_lock lock(_spin_mutex);
857 _num_cached[tid] = 0;
858 }
859 }
861 {
863
864 if (++_num_cached[tid] == 20)
865 {
866 Threads::spin_mutex::scoped_lock lock(_spin_mutex);
868 _num_cached[tid] = 0;
869 }
870 }
871}
virtual void cacheResidual(const THREAD_ID tid) override
virtual void cacheJacobian(const THREAD_ID tid) override

Referenced by TraceRay::trace().

◆ preExecuteStudy()

virtual void RayTracingStudy::preExecuteStudy ( )
inlineprotectedvirtualinherited

Entry point before study execution.

Reimplemented in ViewFactorRayStudy.

Definition at line 705 of file RayTracingStudy.h.

705{}

Referenced by RayTracingStudy::executeStudy().

◆ preTrace()

virtual void RayTracingStudy::preTrace ( const THREAD_ID  ,
const std::shared_ptr< Ray > &   
)
inlinevirtualinherited

Called at the beginning of a trace for a ray.

Parameters
tidThread id
rayThe ray

Definition at line 120 of file RayTracingStudy.h.

120{}

Referenced by TraceRay::trace().

◆ propagationTime()

Real RayTracingStudy::propagationTime ( ) const
inlineinherited

Duration for creation of all Rays in seconds.

Definition at line 204 of file RayTracingStudy.h.

204{ return std::chrono::duration<Real>(_propagation_time).count(); }

Referenced by PerProcessorRayTracingResultsVectorPostprocessor::execute().

◆ rayAuxDataNames()

const std::vector< std::string > & RayTracingStudy::rayAuxDataNames ( ) const
inlineinherited

The Ray aux data names.

Definition at line 340 of file RayTracingStudy.h.

340{ return _ray_aux_data_names; }

Referenced by RayTracingMeshOutput::setupEquationSystem().

◆ rayAuxDataSize()

std::size_t RayTracingStudy::rayAuxDataSize ( ) const
inlineinherited

◆ rayBank()

const std::vector< std::shared_ptr< Ray > > & RayTracingStudy::rayBank ( ) const
protectedinherited

Get the Ray bank.

This is the bank of Rays that have completed on this processor after an execution of the study.

This is only available when the private parameter _bank_rays_on_completion is set to true.

Definition at line 1368 of file RayTracingStudy.C.

1369{
1371 mooseError("The Ray bank is not available because the private parameter "
1372 "'_bank_rays_on_completion' is set to false.");
1374 mooseError("Cannot get the Ray bank during generation or propagation.");
1375
1376 return _ray_bank;
1377}

Referenced by RayTracingStudyTest::generateRays(), RayTracingStudy::getBankedRay(), RayTracingStudyTest::postExecuteStudy(), TestPICRayStudy::postExecuteStudy(), TestReuseRaysStudy::postExecuteStudy(), TestTransientRaysStudy::postExecuteStudy(), TestRayLots::postExecuteStudy(), and RayTracingStudyNoBankingTest::RayTracingStudyNoBankingTest().

◆ rayDataNames()

const std::vector< std::string > & RayTracingStudy::rayDataNames ( ) const
inlineinherited

◆ rayDataSize()

std::size_t RayTracingStudy::rayDataSize ( ) const
inlineinherited

◆ rayDependentSubdomainSetup()

bool RayTracingStudy::rayDependentSubdomainSetup ( ) const
inlineinherited

Whether or not to use Ray dependent subdomain setup.

Definition at line 219 of file RayTracingStudy.h.

const bool _ray_dependent_subdomain_setup
Whether or not subdomain setup is dependent on the Ray.

Referenced by TraceRay::trace().

◆ rayMaxDistance()

Real RayTracingStudy::rayMaxDistance ( ) const
inlineinherited

Max distance any Ray can travel.

Definition at line 184 of file RayTracingStudy.h.

184{ return _ray_max_distance; }
const Real _ray_max_distance
Max distance a Ray can travel before being killed (can change)

Referenced by TraceRay::trace().

◆ registeredRayID()

RayID RayTracingStudy::registeredRayID ( const std::string &  name,
const bool  graceful = false 
) const
inherited

Gets the ID of a registered ray.

Parameters
nameThe name of said ray
gracefulWhether or not to exit gracefully if none is found (with invalid_id)

Definition at line 1454 of file RayTracingStudy.C.

1455{
1456 Threads::spin_mutex::scoped_lock lock(_spin_mutex);
1457
1459 mooseError("Should not use registeredRayID() with Ray registration disabled");
1460
1461 const auto search = _registered_ray_map.find(name);
1462 if (search != _registered_ray_map.end())
1463 return search->second;
1464
1465 if (graceful)
1466 return Ray::INVALID_RAY_ID;
1467
1468 mooseError("Attempted to obtain ID of registered Ray ",
1469 name,
1470 ", but a Ray with said name is not registered.");
1471}
std::unordered_map< std::string, RayID > & _registered_ray_map
Map from registered Ray name to ID.
static const RayID INVALID_RAY_ID
Invalid Ray ID.
Definition Ray.h:214

Referenced by RayDataValue::getValue(), RayIntegralValue::initialize(), RayTracingStudyTest::RayTracingStudyTest(), RayTracingStudyWithRegistrationTest(), and RayTracingStudy::registeredRaySetup().

◆ registeredRayName()

const std::string & RayTracingStudy::registeredRayName ( const RayID  ray_id) const
inherited

Gets the name of a registered ray.

Parameters
ray_idThe ID of said ray

Definition at line 1474 of file RayTracingStudy.C.

1475{
1476 Threads::spin_mutex::scoped_lock lock(_spin_mutex);
1477
1479 mooseError("Should not use registeredRayName() with Ray registration disabled");
1480
1481 if (_reverse_registered_ray_map.size() > ray_id)
1482 return _reverse_registered_ray_map[ray_id];
1483
1484 mooseError("Attempted to obtain name of registered Ray with ID ",
1485 ray_id,
1486 ", but a Ray with said ID is not registered.");
1487}
std::vector< std::string > & _reverse_registered_ray_map
Map from registered Ray ID to name.

Referenced by Ray::getInfo(), RayTracingStudyTest::RayTracingStudyTest(), and RayTracingStudyWithRegistrationTest().

◆ registeredRaySetup()

void RayTracingStudy::registeredRaySetup ( )
privateinherited

Sets up the maps from Ray to associated RayTracingObjects if _use_ray_registration.

If ray registration is disabled, this makes sure no RayTracingObjects provided rays.

Definition at line 670 of file RayTracingStudy.C.

671{
672 // First, clear the objects associated with each Ray on each thread
673 const auto num_rays = _registered_ray_map.size();
674 for (auto & entry : _threaded_ray_object_registration)
675 {
676 entry.clear();
677 entry.resize(num_rays);
678 }
679
680 const auto rtos = getRayTracingObjects();
681
683 {
684 // All of the registered ray names - used when a RayTracingObject did not specify
685 // any Rays so it should be associated with all Rays.
686 std::vector<std::string> all_ray_names;
687 all_ray_names.reserve(_registered_ray_map.size());
688 for (const auto & pair : _registered_ray_map)
689 all_ray_names.push_back(pair.first);
690
691 for (auto & rto : rtos)
692 {
693 // The Ray names associated with this RayTracingObject
694 const auto & ray_names = rto->parameters().get<std::vector<std::string>>("rays");
695 // The registration for RayTracingObjects for the thread rto is on
696 const auto tid = rto->parameters().get<THREAD_ID>("_tid");
697 auto & registration = _threaded_ray_object_registration[tid];
698
699 // Register each Ray for this object in the registration
700 for (const auto & ray_name : (ray_names.empty() ? all_ray_names : ray_names))
701 {
702 const auto id = registeredRayID(ray_name, /* graceful = */ true);
703 if (ray_names.size() && id == Ray::INVALID_RAY_ID)
704 rto->paramError(
705 "rays", "Supplied ray '", ray_name, "' is not a registered Ray in ", typeAndName());
706 registration[id].insert(rto);
707 }
708 }
709 }
710 // Not using Ray registration
711 else
712 {
713 for (const auto & rto : rtos)
714 if (rto->parameters().get<std::vector<std::string>>("rays").size())
715 rto->paramError(
716 "rays",
717 "Rays cannot be supplied when the study does not require Ray registration.\n\n",
718 type(),
719 " does not require Ray registration.");
720 }
721}
const InputParameters & parameters() const
std::string typeAndName() const
void paramError(const std::string &param, Args... args) const

Referenced by RayTracingStudy::executeStudy().

◆ registerRay()

RayID RayTracingStudy::registerRay ( const std::string &  name)
privateinherited

Registers a Ray with a given name.

This is for internal use only and is an internal map for replicated Ray IDs -> names for easy access for studies that have a small number of rays to generate.

Parameters
nameThe name to register
Returns
The allocated ID for the registered ray

Definition at line 1430 of file RayTracingStudy.C.

1431{
1432 libmesh_parallel_only(comm());
1433
1434 Threads::spin_mutex::scoped_lock lock(_spin_mutex);
1435
1437 mooseError("Cannot use registerRay() with Ray registration disabled");
1438
1439 // This is parallel only for now. We could likely stagger the ID building like we do with
1440 // the unique IDs, but it would require a sync point which isn't there right now
1441 libmesh_parallel_only(comm());
1442
1443 const auto & it = _registered_ray_map.find(name);
1444 if (it != _registered_ray_map.end())
1445 return it->second;
1446
1447 const auto id = _reverse_registered_ray_map.size();
1448 _registered_ray_map.emplace(name, id);
1450 return id;
1451}

Referenced by RayTracingStudy::acquireRegisteredRay().

◆ registerRayAuxData() [1/2]

RayDataIndex RayTracingStudy::registerRayAuxData ( const std::string &  name)
inherited

Register a value to be filled in the aux data on a Ray with a given name.

Parameters
nameThe name to register
Returns
The Ray aux data index for the registered value

Note that this does not actually allocate the storage. It is simply a registration system to keep track of the values stored in the Ray aux data.

Definition at line 1201 of file RayTracingStudy.C.

1202{
1203 return registerRayDataInternal(name, /* aux = */ true);
1204}
RayDataIndex registerRayDataInternal(const std::string &name, const bool aux)
Internal method for registering Ray data or Ray aux data with a name.

Referenced by RayTracingStudyTest::RayTracingStudyTest(), StationaryRayStudyTest::StationaryRayStudyTest(), TestRayDataStudy::TestRayDataStudy(), and TestRayLots::TestRayLots().

◆ registerRayAuxData() [2/2]

std::vector< RayDataIndex > RayTracingStudy::registerRayAuxData ( const std::vector< std::string > &  names)
inherited

Register values to be filled in the aux data on a Ray with a given name.

Parameters
namesThe names to register
Returns
The Ray aux data indices for the registered values

Note that this does not actually allocate the storage. It is simply a registration system to keep track of the values stored in the Ray aux data.

Definition at line 1207 of file RayTracingStudy.C.

1208{
1209 return registerRayDataInternal(names, /* aux = */ true);
1210}

◆ registerRayData() [1/2]

RayDataIndex RayTracingStudy::registerRayData ( const std::string &  name)
inherited

Register a value to be filled in the data on a Ray with a given name.

Parameters
nameThe name to register
Returns
The Ray data index for the registered value

Note that this does not actually allocate the storage. It is simply a registration system to keep track of the values stored in the Ray data.

Definition at line 1170 of file RayTracingStudy.C.

1171{
1172 return registerRayDataInternal(name, /* aux = */ false);
1173}

Referenced by RayTracingStudyTest::generateRays(), RayTracingStudyTest::RayTracingStudyTest(), StationaryRayStudyTest::StationaryRayStudyTest(), TestRayDataStudy::TestRayDataStudy(), and TestRayLots::TestRayLots().

◆ registerRayData() [2/2]

std::vector< RayDataIndex > RayTracingStudy::registerRayData ( const std::vector< std::string > &  names)
inherited

Register values to be filled in the data on a Ray with a given name.

Parameters
namesThe names to register
Returns
The Ray data indices for the registered value

Note that this does not actually allocate the storage. It is simply a registration system to keep track of the values stored in the Ray data.

Definition at line 1176 of file RayTracingStudy.C.

1177{
1178 return registerRayDataInternal(names, /* aux = */ false);
1179}

◆ registerRayDataInternal() [1/2]

RayDataIndex RayTracingStudy::registerRayDataInternal ( const std::string &  name,
const bool  aux 
)
privateinherited

Internal method for registering Ray data or Ray aux data with a name.

Definition at line 1078 of file RayTracingStudy.C.

1079{
1080 Threads::spin_mutex::scoped_lock lock(_spin_mutex);
1081
1083 mooseError("Cannot register Ray ", (aux ? "aux " : ""), "data after initialSetup()");
1084
1085 auto & map = aux ? _ray_aux_data_map : _ray_data_map;
1086 const auto find = map.find(name);
1087 if (find != map.end())
1088 return find->second;
1089
1090 auto & other_map = aux ? _ray_data_map : _ray_aux_data_map;
1091 if (other_map.find(name) != other_map.end())
1092 mooseError("Cannot register Ray aux data with name ",
1093 name,
1094 " because Ray ",
1095 (aux ? "(non-aux)" : "aux"),
1096 " data already exists with said name.");
1097
1098 // Add into the name -> index map
1099 map.emplace(name, map.size());
1100
1101 // Add into the index -> names vector
1102 auto & vector = aux ? _ray_aux_data_names : _ray_data_names;
1103 vector.push_back(name);
1104
1105 return map.size() - 1;
1106}

Referenced by RayTracingStudy::registerRayAuxData(), RayTracingStudy::registerRayAuxData(), RayTracingStudy::registerRayData(), RayTracingStudy::registerRayData(), and RayTracingStudy::registerRayDataInternal().

◆ registerRayDataInternal() [2/2]

std::vector< RayDataIndex > RayTracingStudy::registerRayDataInternal ( const std::vector< std::string > &  names,
const bool  aux 
)
privateinherited

Internal method for registering Ray data or Ray aux data with names.

Definition at line 1109 of file RayTracingStudy.C.

1110{
1111 std::vector<RayDataIndex> indices(names.size());
1112 for (std::size_t i = 0; i < names.size(); ++i)
1113 indices[i] = registerRayDataInternal(names[i], aux);
1114 return indices;
1115}

◆ reinitSegment()

void RayTracingStudy::reinitSegment ( const Elem *  elem,
const Point &  start,
const Point &  end,
const Real  length,
THREAD_ID  tid 
)
virtualinherited

Reinitialize objects for a Ray segment for ray tracing.

Parameters
elemThe elem the segment is in
startStart point of the segment
endEnd point of the segment
lengthThe length of the start -> end segment
tidThread id

Definition at line 777 of file RayTracingStudy.C.

779{
780 mooseAssert(MooseUtils::absoluteFuzzyEqual((start - end).norm(), length), "Invalid length");
781 mooseAssert(currentlyPropagating(), "Should not call while not propagating");
782
784
785 // If we have any variables or material properties that are active, we definitely need to reinit
788 // If not, make sure that the RayKernels have not requested a reinit (this could happen when a
789 // RayKernel doesn't have variables or materials but still does an integration and needs qps)
790 if (!reinit)
791 for (const RayKernelBase * rk : currentRayKernels(tid))
792 if (rk->needSegmentReinit())
793 {
794 reinit = true;
795 break;
796 }
797
798 if (reinit)
799 {
800 _fe_problem.prepare(elem, tid);
801
802 std::vector<Point> points;
803 std::vector<Real> weights;
804 buildSegmentQuadrature(start, end, length, points, weights);
805 _fe_problem.reinitElemPhys(elem, points, tid);
807
808 _fe_problem.reinitMaterials(elem->subdomain_id(), tid);
809 }
810}
void modifyArbitraryWeights(const std::vector< Real > &weights)
virtual void reinitElemPhys(const Elem *elem, const std::vector< Point > &phys_points_in_elem, const THREAD_ID tid) override
virtual void setCurrentSubdomainID(const Elem *elem, const THREAD_ID tid) override
void reinitMaterials(SubdomainID blk_id, const THREAD_ID tid, bool swap_stateful=true)
virtual void prepare(const Elem *elem, const THREAD_ID tid) override
virtual Assembly & assembly(const THREAD_ID tid, const unsigned int sys_num) override
bool hasActiveMaterialProperties(const THREAD_ID tid) const
Base object for the RayKernel syntax.
const std::vector< RayKernelBase * > & currentRayKernels(THREAD_ID tid) const
Gets the current RayKernels for a thread, which are set in segmentSubdomainSetup()
virtual void buildSegmentQuadrature(const Point &start, const Point &end, const Real length, std::vector< Point > &points, std::vector< Real > &weights) const
Builds quadrature points for a given segment using the _segment_qrule.
virtual bool hasActiveElementalMooseVariables(const THREAD_ID tid) const
auto norm(const T &a)

Referenced by TraceRay::onSegment().

◆ reserveRayBuffer()

void RayTracingStudy::reserveRayBuffer ( const std::size_t  size)
protectedinherited

Reserve size entires in the Ray buffer.

This can only be used within generateRays() and should be used when possible to reserve entires in the buffer before adding Rays via moveRay(s)ToBuffer.

Definition at line 1644 of file RayTracingStudy.C.

1645{
1646 if (!currentlyGenerating())
1647 mooseError("Can only reserve in Ray buffer during generateRays()");
1648
1649 _parallel_ray_study->reserveBuffer(size);
1650}

Referenced by ViewFactorRayStudy::generateRays(), RepeatableRayStudyBase::generateRays(), and RayTracingStudyTest::RayTracingStudyTest().

◆ resetReplicatedRayIDs()

void RayTracingStudy::resetReplicatedRayIDs ( )
protectedinherited

Resets the generation of unique replicated RayIDs accessed via generateReplicatedRayID().

Definition at line 1740 of file RayTracingStudy.C.

1741{
1742 libmesh_parallel_only(comm());
1743
1744 Threads::spin_mutex::scoped_lock lock(_spin_mutex);
1745
1746 mooseAssert(!currentlyGenerating() && !currentlyPropagating(),
1747 "Cannot be reset during generation or propagation");
1748
1750}

Referenced by RayTracingStudy::RayTracingStudy().

◆ resetUniqueRayIDs()

void RayTracingStudy::resetUniqueRayIDs ( )
protectedinherited

Resets the generation of unique RayIDs via generateUniqueRayID() to the beginning of the range.

Definition at line 1714 of file RayTracingStudy.C.

1715{
1716 libmesh_parallel_only(comm());
1717
1718 Threads::spin_mutex::scoped_lock lock(_spin_mutex);
1719
1720 mooseAssert(!currentlyGenerating() && !currentlyPropagating(),
1721 "Cannot be reset during generation or propagation");
1722
1723 for (THREAD_ID tid = 0; tid < libMesh::n_threads(); ++tid)
1725}
const processor_id_type _pid
The rank of this processor (this actually takes time to lookup - so just do it once)

Referenced by RayTracingStudy::RayTracingStudy().

◆ residualSetup()

void RayTracingStudy::residualSetup ( )
overridevirtualinherited

Reimplemented from GeneralUserObject.

Definition at line 271 of file RayTracingStudy.C.

272{
273 for (THREAD_ID tid = 0; tid < libMesh::n_threads(); ++tid)
274 mooseAssert(_num_cached[tid] == 0, "Cached residuals/Jacobians not empty");
275
276 for (auto & rto : getRayTracingObjects())
277 rto->residualSetup();
278}
virtual void residualSetup() override

◆ sameLevelActiveElems()

bool RayTracingStudy::sameLevelActiveElems ( ) const
protectedinherited

Determine whether or not the mesh currently has active elements that are all the same level.

Definition at line 1676 of file RayTracingStudy.C.

1677{
1678 unsigned int min_level = std::numeric_limits<unsigned int>::max();
1679 unsigned int max_level = std::numeric_limits<unsigned int>::min();
1680
1681 for (const auto & elem : *_mesh.getActiveLocalElementRange())
1682 {
1683 const auto level = elem->level();
1684 min_level = std::min(level, min_level);
1685 max_level = std::max(level, max_level);
1686 }
1687
1688 _communicator.min(min_level);
1689 _communicator.max(max_level);
1690
1691 return min_level == max_level;
1692}
void min(const T &r, T &o, Request &req) const

Referenced by RayTracingStudy::meshChanged().

◆ segmentsOnCacheTraces()

bool RayTracingStudy::segmentsOnCacheTraces ( ) const
inlineinherited

Whether or not to cache individual element segments when _cache_traces = true.

Definition at line 577 of file RayTracingStudy.h.

const bool _segments_on_cache_traces
Whether or not to cache individual element segments when caching.

Referenced by RayTracingMeshOutput::buildSegmentMesh(), RayTracingMeshOutput::neededNodes(), TraceRay::onContinueTrace(), TraceRay::onTrajectoryChanged(), RayTracingMeshOutput::RayTracingMeshOutput(), and RayTracingMeshOutput::startingIDs().

◆ segmentSubdomainSetup()

void RayTracingStudy::segmentSubdomainSetup ( const SubdomainID  subdomain,
const THREAD_ID  tid,
const RayID  ray_id 
)
virtualinherited

Setup for on subdomain change or subdomain AND ray change during ray tracing.

Parameters
subdomainThe subdomain changed to
tidThread id
ray_idID of the ray initiating the change

Definition at line 742 of file RayTracingStudy.C.

745{
746 mooseAssert(currentlyPropagating(), "Should not call while not propagating");
747
748 // Call subdomain setup on FE
749 _fe_problem.subdomainSetup(subdomain, tid);
750
751 std::set<MooseVariableFEBase *> needed_moose_vars;
752 std::unordered_set<unsigned int> needed_mat_props;
753
754 // Get RayKernels and their dependencies and call subdomain setup
755 getRayKernels(_threaded_current_ray_kernels[tid], subdomain, tid, ray_id);
756 for (auto & rkb : _threaded_current_ray_kernels[tid])
757 {
758 rkb->subdomainSetup();
759
760 const auto & mv_deps = rkb->getMooseVariableDependencies();
761 needed_moose_vars.insert(mv_deps.begin(), mv_deps.end());
762
763 const auto & mp_deps = rkb->getMatPropDependencies();
764 needed_mat_props.insert(mp_deps.begin(), mp_deps.end());
765 }
766
767 // Prepare aux vars
768 for (auto & var : needed_moose_vars)
769 if (var->kind() == Moose::VarKindType::VAR_AUXILIARY)
770 var->prepareAux();
771
772 _fe_problem.setActiveElementalMooseVariables(needed_moose_vars, tid);
773 _fe_problem.prepareMaterials(needed_mat_props, subdomain, tid);
774}
void prepareMaterials(const std::unordered_set< unsigned int > &consumer_needed_mat_props, const SubdomainID blk_id, const THREAD_ID tid)
virtual void setActiveElementalMooseVariables(const std::set< MooseVariableFEBase * > &moose_vars, const THREAD_ID tid) override
virtual void subdomainSetup(SubdomainID subdomain, const THREAD_ID tid)

Referenced by TraceRay::onSubdomainChanged().

◆ shouldCacheTrace()

virtual bool RayTracingStudy::shouldCacheTrace ( const std::shared_ptr< Ray > &  ) const
inlinevirtualinherited

Virtual that allows for selection in if a Ray should be cached or not (only used when _cache_traces).

Definition at line 583 of file RayTracingStudy.h.

584 {
586 }
bool _always_cache_traces
Whether or not to cache traces on every trace execution.

Referenced by RayTracingStudy::initThreadedCachedTrace(), and TraceRay::trace().

◆ sideIsIncoming()

bool RayTracingStudy::sideIsIncoming ( const Elem *const  elem,
const unsigned short  side,
const Point &  direction,
const THREAD_ID  tid 
)
inherited

Whether or not side is incoming on element elem in direction direction.

Definition at line 1759 of file RayTracingStudy.C.

1763{
1764 const auto & normal = getSideNormal(elem, side, tid);
1765 const auto dot = normal * direction;
1766 return dot < TraceRayTools::TRACE_TOLERANCE;
1767}
virtual const Point & getSideNormal(const Elem *elem, const unsigned short side, const THREAD_ID tid)
Get the outward normal for a given element side.
const Real TRACE_TOLERANCE
The standard tolerance to use in tracing.

Referenced by TraceRay::exitsElem(), TraceRay::findExternalBoundarySide(), TraceRay::onSegment(), ClaimRays::postClaimRay(), and TraceRay::trace().

◆ sideIsNonPlanar()

bool RayTracingStudy::sideIsNonPlanar ( const Elem *  elem,
const unsigned short  s 
) const
inlineinherited

Whether or not the side \s on elem elem is non-planar.

This is cached because checking whether or not a face is planar is costly

Definition at line 465 of file RayTracingStudy.h.

466 {
468 }

Referenced by TraceRay::exitsElem(), TraceRay::exitsElem(), ViewFactorRayStudy::generateRays(), ReflectRayBC::onBoundary(), TraceRay::onSegment(), TraceRay::possiblyAddToBoundaryElems(), Ray::setStart(), and TraceRay::trace().

◆ subdomainHmax()

Real RayTracingStudy::subdomainHmax ( const SubdomainID  subdomain_id) const
inherited

Get the cached hmax for all elements in a subdomain.

Used for scaling tolerances in ray tracing.

Definition at line 1695 of file RayTracingStudy.C.

1696{
1697 const auto find = _subdomain_hmax.find(subdomain_id);
1698 if (find == _subdomain_hmax.end())
1699 mooseError("Subdomain ", subdomain_id, " not found in subdomain hmax map");
1700 return find->second;
1701}
std::unordered_map< SubdomainID, Real > _subdomain_hmax
The cached hmax for all elements in a subdomain.

Referenced by RayTracingStudyTest::generateRays(), TraceRay::onSubdomainChanged(), TraceRay::subdomainHmax(), and RayTracingStudy::subdomainHMaxSetup().

◆ subdomainHMaxSetup()

void RayTracingStudy::subdomainHMaxSetup ( )
privateinherited

Caches the hmax for all elements in each subdomain.

Definition at line 616 of file RayTracingStudy.C.

617{
618 // Setup map with subdomain keys
619 _subdomain_hmax.clear();
620 for (const auto subdomain_id : _mesh.meshSubdomains())
621 _subdomain_hmax[subdomain_id] = std::numeric_limits<Real>::min();
622
623 // Set local max for each subdomain
624 for (const auto & elem : *_mesh.getActiveLocalElementRange())
625 {
626 auto & entry = _subdomain_hmax.at(elem->subdomain_id());
627 entry = std::max(entry, elem->hmax());
628 }
629
630 // Accumulate global max for each subdomain
632
633 if (getParam<bool>("warn_subdomain_hmax"))
634 {
635 const auto warn_prefix = type() + " '" + name() + "': ";
636 const auto warn_suffix =
637 "\n\nRay tracing uses an approximate element size for each subdomain to scale the\n"
638 "tolerances used in computing ray intersections. This warning suggests that the\n"
639 "approximate element size is not a good approximation. This is likely due to poor\n"
640 "element aspect ratios.\n\n"
641 "This warning is only output for the first element affected.\n"
642 "To disable this warning, set warn_subdomain_hmax = false.\n";
643
644 for (const auto & elem : *_mesh.getActiveLocalElementRange())
645 {
646 const auto hmin = elem->hmin();
647 const auto hmax = elem->hmax();
648 const auto max_hmax = subdomainHmax(elem->subdomain_id());
649
650 const auto hmax_rel = hmax / max_hmax;
651 if (hmax_rel < 1.e-2 || hmax_rel > 1.e2)
652 mooseDoOnce(mooseWarning(warn_prefix,
653 "Element hmax varies significantly from subdomain hmax.\n",
654 warn_suffix,
655 "First element affected:\n",
656 Moose::stringify(*elem)););
657
658 const auto h_rel = max_hmax / hmin;
659 if (h_rel > 1.e2)
660 mooseDoOnce(mooseWarning(warn_prefix,
661 "Element hmin varies significantly from subdomain hmax.\n",
662 warn_suffix,
663 "First element affected:\n",
664 Moose::stringify(*elem)););
665 }
666 }
667}
Real subdomainHmax(const SubdomainID subdomain_id) const
Get the cached hmax for all elements in a subdomain.
auto min(const L &left, const R &right)
std::string stringify(const T &t)

Referenced by RayTracingStudy::initialSetup(), and RayTracingStudy::meshChanged().

◆ timestepSetup()

void RayTracingStudy::timestepSetup ( )
overridevirtualinherited

Reimplemented from GeneralUserObject.

Definition at line 291 of file RayTracingStudy.C.

292{
293 for (auto & rto : getRayTracingObjects())
294 rto->timestepSetup();
295}
virtual void timestepSetup() override

◆ tolerateFailure()

bool RayTracingStudy::tolerateFailure ( ) const
inlineinherited

Whether or not to tolerate failure.

Definition at line 209 of file RayTracingStudy.h.

209{ return _tolerate_failure; }

Referenced by TraceRay::exitsElem(), TraceRay::onBoundary(), and TraceRay::trace().

◆ totalDistance()

Real RayTracingStudy::totalDistance ( ) const
inlineinherited

Total distance traveled by all Rays.

Definition at line 172 of file RayTracingStudy.h.

172{ return _total_distance; }

Referenced by RayTracingStudyResult::getValue().

◆ totalIntersections()

unsigned long long int RayTracingStudy::totalIntersections ( ) const
inlineinherited

Total number of Ray/element intersections.

Definition at line 155 of file RayTracingStudy.h.

155{ return _total_intersections; }

◆ totalProcessorCrossings()

unsigned long long int RayTracingStudy::totalProcessorCrossings ( ) const
inlineinherited

Total number of processor crossings.

Definition at line 138 of file RayTracingStudy.h.

Referenced by RayTracingStudyResult::getValue().

◆ totalVolume()

Real RayTracingStudy::totalVolume ( ) const
inlineinherited

Get the current total volume of the domain.

Definition at line 437 of file RayTracingStudy.h.

437{ return _total_volume; }
Real _total_volume
The total volume of the domain.

Referenced by RayTracingStudy::isRectangularDomain().

◆ traceableMeshChecks()

void RayTracingStudy::traceableMeshChecks ( )
privateinherited

Check for if all of the element types in the mesh are supported by ray tracing.

Definition at line 381 of file RayTracingStudy.C.

382{
383 for (const auto & elem : *_mesh.getActiveLocalElementRange())
384 {
386 {
388 mooseError("Element type ",
389 Utility::enum_to_string(elem->type()),
390 " is not supported in ray tracing with adaptivity");
391 }
392 else if (!TraceRayTools::isTraceableElem(elem))
393 mooseError("Element type ",
394 Utility::enum_to_string(elem->type()),
395 " is not supported in ray tracing");
396 }
397}
bool isOn()
Adaptivity & adaptivity()
bool isAdaptivityTraceableElem(const Elem *elem)
bool isTraceableElem(const Elem *elem)

Referenced by RayTracingStudy::initialSetup().

◆ traceRay() [1/2]

TraceRay & RayTracingStudy::traceRay ( const THREAD_ID  tid)
inlineinherited

Gets the threaded TraceRay object for tid.

Definition at line 647 of file RayTracingStudy.h.

647{ return *_threaded_trace_ray[tid]; }

Referenced by BackfaceCullingStudyTest::BackfaceCullingStudyTest().

◆ traceRay() [2/2]

const TraceRay & RayTracingStudy::traceRay ( const THREAD_ID  tid) const
inlineinherited

Definition at line 648 of file RayTracingStudy.h.

648{ return *_threaded_trace_ray[tid]; }

◆ useRayRegistration()

bool RayTracingStudy::useRayRegistration ( ) const
inlineinherited

Whether or not ray registration is being used.

Definition at line 564 of file RayTracingStudy.h.

564{ return _use_ray_registration; }

Referenced by Ray::getInfo(), RayIntegralValue::initialize(), and RayDataValue::RayDataValue().

◆ validParams()

InputParameters RayTracingStudyWithRegistrationTest::validParams ( )
static

Definition at line 232 of file RayTracingStudyTest.C.

233{
234 auto params = RayTracingStudy::validParams();
235
236 params.addParam<bool>(
237 "registered_ray_id_missing", false, "Tests registeredRayID() with an invalid id");
238 params.addParam<bool>(
239 "registered_ray_name_missing", false, "Tests registeredRayName() with an invalid name");
240
241 return params;
242}
static InputParameters validParams()

◆ verifyDependenciesExist()

void RayTracingStudy::verifyDependenciesExist ( const std::vector< RayTracingObject * > &  rtos)
privateinherited

Verifies that the dependencies exist for a set of RayTracingObjects.

Definition at line 362 of file RayTracingStudy.C.

363{
364 for (const auto & rto : rtos)
365 for (const auto & dep_name : rto->getRequestedItems())
366 {
367 bool found = false;
368 for (const auto & rto_search : rtos)
369 if (rto_search->name() == dep_name)
370 {
371 found = true;
372 break;
373 }
374
375 if (!found)
376 rto->paramError("depends_on", "The ", rto->getBase(), " '", dep_name, "' does not exist");
377 }
378}
const std::set< std::string > & getRequestedItems() override

Referenced by RayTracingStudy::dependencyChecks().

◆ verifyRays()

bool RayTracingStudy::verifyRays ( ) const
inlineinherited

Whether or not to verify if Rays have valid information before being traced.

Definition at line 654 of file RayTracingStudy.h.

654{ return _verify_rays; }
const bool _verify_rays
Whether or not to verify if Rays have valid information before being traced.

Referenced by RayKernelBase::changeRayStartDirection(), ClaimRays::claim(), RepeatableRayStudyBase::defineRaysInternal(), RayTracingStudy::executeStudy(), TraceRay::exitsElem(), Ray::setStart(), Ray::setStartingEndPoint(), and TraceRay::trace().

◆ verifyTraceIntersections()

bool RayTracingStudy::verifyTraceIntersections ( ) const
inlineinherited

Whether or not trace verification is enabled in devel/dbg modes.

Definition at line 659 of file RayTracingStudy.h.

const bool _verify_trace_intersections
Whether or not to verify the trace intersections in devel and dbg modes.

Referenced by TraceRay::exitsElem(), TraceRay::onSegment(), TraceRay::onTrajectoryChanged(), and TraceRay::trace().

◆ verifyUniqueRayIDs()

void RayTracingStudy::verifyUniqueRayIDs ( const std::vector< std::shared_ptr< Ray > >::const_iterator  begin,
const std::vector< std::shared_ptr< Ray > >::const_iterator  end,
const bool  global,
const std::string &  error_suffix 
) const
inherited

Verifies that the Rays in the given range have unique Ray IDs.

Parameters
beginThe beginning of the range of Rays to check
endThe end of the range of Rays to check
globalIf true, this will complete the verification across all processors
error_suffixEntry point for additional information in the error message

Definition at line 1522 of file RayTracingStudy.C.

1526{
1527 // Determine the unique set of Ray IDs on this processor,
1528 // and if not locally unique throw an error. Once we build this set,
1529 // we will send it to rank 0 to verify globally
1530 std::set<RayID> local_rays;
1531 for (const std::shared_ptr<Ray> & ray : as_range(begin, end))
1532 {
1533 mooseAssert(ray, "Null ray");
1534
1535 // Try to insert into the set; the second entry in the pair
1536 // will be false if it was not inserted
1537 if (!local_rays.insert(ray->id()).second)
1538 {
1539 for (const std::shared_ptr<Ray> & other_ray : as_range(begin, end))
1540 if (ray.get() != other_ray.get() && ray->id() == other_ray->id())
1541 mooseError("Multiple Rays exist with ID ",
1542 ray->id(),
1543 " on processor ",
1544 _pid,
1545 " ",
1546 error_suffix,
1547 "\n\nOffending Ray information:\n\n",
1548 ray->getInfo(),
1549 "\n",
1550 other_ray->getInfo());
1551 }
1552 }
1553
1554 // Send IDs from all procs to rank 0 and verify on rank 0
1555 if (global)
1556 {
1557 // Package our local IDs and send to rank 0
1558 std::map<processor_id_type, std::vector<RayID>> send_ids;
1559 if (local_rays.size())
1560 send_ids.emplace(std::piecewise_construct,
1561 std::forward_as_tuple(0),
1562 std::forward_as_tuple(local_rays.begin(), local_rays.end()));
1563 local_rays.clear();
1564
1565 // Mapping on rank 0 from ID -> processor ID
1566 std::map<RayID, processor_id_type> global_map;
1567
1568 // Verify another processor's IDs against the global map on rank 0
1569 const auto check_ids =
1570 [this, &global_map, &error_suffix](processor_id_type pid, const std::vector<RayID> & ids)
1571 {
1572 for (const RayID id : ids)
1573 {
1574 const auto emplace_pair = global_map.emplace(id, pid);
1575
1576 // Means that this ID already exists in the map
1577 if (!emplace_pair.second)
1578 mooseError("Ray with ID ",
1579 id,
1580 " exists on ranks ",
1581 emplace_pair.first->second,
1582 " and ",
1583 pid,
1584 "\n",
1585 error_suffix);
1586 }
1587 };
1588
1589 Parallel::push_parallel_vector_data(_communicator, send_ids, check_ids);
1590 }
1591}
uint8_t processor_id_type
SimpleRange< IndexType > as_range(const std::pair< IndexType, IndexType > &p)

Referenced by RayTracingStudy::executeStudy(), and RepeatableRayStudyBase::verifyReplicatedRays().

◆ verifyUniqueRays()

void RayTracingStudy::verifyUniqueRays ( const std::vector< std::shared_ptr< Ray > >::const_iterator  begin,
const std::vector< std::shared_ptr< Ray > >::const_iterator  end,
const std::string &  error_suffix 
)
inherited

Verifies that the Rays in the given range are unique.

That is, that there are not multiple shared_ptrs that point to the same Ray

Parameters
beginThe beginning of the range of Rays to check
endThe end of the range of Rays to check
error_suffixEntry point for additional information in the error message

Definition at line 1594 of file RayTracingStudy.C.

1597{
1598 std::set<const Ray *> rays;
1599 for (const std::shared_ptr<Ray> & ray : as_range(begin, end))
1600 if (!rays.insert(ray.get()).second) // false if not inserted into rays
1601 mooseError("Multiple shared_ptrs were found that point to the same Ray ",
1602 error_suffix,
1603 "\n\nOffending Ray:\n",
1604 ray->getInfo());
1605}

Referenced by RayTracingStudy::executeStudy().

◆ warnNonPlanar()

bool RayTracingStudy::warnNonPlanar ( ) const
inlineinherited

Whether or not to produce a warning when interacting with a non-planar mesh.

Definition at line 673 of file RayTracingStudy.h.

673{ return _warn_non_planar; }

◆ zeroAuxVariables()

void RayTracingStudy::zeroAuxVariables ( )
privateinherited

Zero the AuxVariables that the registered AuxRayKernels contribute to.

Definition at line 724 of file RayTracingStudy.C.

725{
726 std::set<std::string> vars_to_be_zeroed;
727 std::vector<RayKernelBase *> ray_kernels;
728 getRayKernels(ray_kernels, 0);
729 for (auto & rk : ray_kernels)
730 {
731 AuxRayKernel * aux_rk = dynamic_cast<AuxRayKernel *>(rk);
732 if (aux_rk)
733 vars_to_be_zeroed.insert(aux_rk->variable().name());
734 }
735
736 std::vector<std::string> vars_to_be_zeroed_vec(vars_to_be_zeroed.begin(),
737 vars_to_be_zeroed.end());
738 _fe_problem.getAuxiliarySystem().zeroVariables(vars_to_be_zeroed_vec);
739}
MooseVariableFE< Real > & variable()
Gets the variable this AuxRayKernel contributes to.
virtual void zeroVariables(std::vector< std::string > &vars_to_be_zeroed)

Referenced by RayTracingStudy::executeStudy().

Member Data Documentation

◆ _always_cache_traces

bool RayTracingStudy::_always_cache_traces
protectedinherited

Whether or not to cache traces on every trace execution.

Definition at line 883 of file RayTracingStudy.h.

Referenced by RayTracingStudy::shouldCacheTrace().

◆ _aux_data_on_cache_traces

const bool RayTracingStudy::_aux_data_on_cache_traces
protectedinherited

Whether or not to store the Ray aux data on the cache traces.

Definition at line 887 of file RayTracingStudy.h.

Referenced by RayTracingStudy::auxDataOnCacheTraces().

◆ _b_box

libMesh::BoundingBox RayTracingStudy::_b_box
privateinherited

Nodal bounding box for the domain.

Definition at line 1067 of file RayTracingStudy.h.

Referenced by RayTracingStudy::boundingBox(), RayTracingStudy::isRectangularDomain(), and RayTracingStudy::RayTracingStudy().

◆ _bank_rays_on_completion

const bool RayTracingStudy::_bank_rays_on_completion
protectedinherited

Whether or not to bank rays on completion.

Definition at line 878 of file RayTracingStudy.h.

Referenced by RayTracingStudy::bankRaysOnCompletion(), RayTracingStudy::onCompleteRay(), and RayTracingStudy::rayBank().

◆ _cached_traces

std::vector<TraceData> RayTracingStudy::_cached_traces
privateinherited

Storage for the cached traces.

Definition at line 1047 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::getCachedTraces().

◆ _called_initial_setup

bool RayTracingStudy::_called_initial_setup
privateinherited

Whether or not we've called initial setup - used to stop from late registration.

Definition at line 1139 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), RayTracingStudy::getRayBCs(), RayTracingStudy::getRayKernels(), RayTracingStudy::initialSetup(), and RayTracingStudy::registerRayDataInternal().

◆ _comm

const Parallel::Communicator& RayTracingStudy::_comm
protectedinherited

The Communicator.

Definition at line 863 of file RayTracingStudy.h.

Referenced by LotsOfRaysRayStudy::defineRays().

◆ _data_on_cache_traces

const bool RayTracingStudy::_data_on_cache_traces
protectedinherited

Whether or not to store the Ray data on the cache traces.

Definition at line 885 of file RayTracingStudy.h.

Referenced by RayTracingStudy::dataOnCacheTraces().

◆ _domain_max_length

Real RayTracingStudy::_domain_max_length
privateinherited

An inflated max distance for the domain.

Definition at line 1071 of file RayTracingStudy.h.

Referenced by RayTracingStudy::domainMaxLength().

◆ _elem_index_helper

ElemIndexHelper RayTracingStudy::_elem_index_helper
privateinherited

◆ _ending_distance

Real RayTracingStudy::_ending_distance
privateinherited

Total distance traveled by Rays that end on this processor.

Definition at line 1128 of file RayTracingStudy.h.

Referenced by RayTracingStudy::endingDistance(), RayTracingStudy::executeStudy(), and RayTracingStudy::onCompleteRay().

◆ _ending_intersections

unsigned long long int RayTracingStudy::_ending_intersections
privateinherited

Total number of Ray/element intersections for Rays that finished on this processor.

Definition at line 1115 of file RayTracingStudy.h.

Referenced by RayTracingStudy::endingIntersections(), RayTracingStudy::executeStudy(), and RayTracingStudy::onCompleteRay().

◆ _ending_max_intersections

unsigned int RayTracingStudy::_ending_max_intersections
privateinherited

Max number of intersections for Rays that finished on this processor.

Definition at line 1117 of file RayTracingStudy.h.

Referenced by RayTracingStudy::endingMaxIntersections(), RayTracingStudy::executeStudy(), and RayTracingStudy::onCompleteRay().

◆ _ending_max_processor_crossings

unsigned int RayTracingStudy::_ending_max_processor_crossings
privateinherited

Max number of total processor crossings for Rays that finished on this processor.

Definition at line 1108 of file RayTracingStudy.h.

Referenced by RayTracingStudy::endingMaxProcessorCrossings(), RayTracingStudy::executeStudy(), and RayTracingStudy::onCompleteRay().

◆ _ending_max_trajectory_changes

unsigned int RayTracingStudy::_ending_max_trajectory_changes
privateinherited

Max number of trajectory changes for Rays that finished on this processor.

Definition at line 1119 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::onCompleteRay().

◆ _ending_processor_crossings

unsigned long long int RayTracingStudy::_ending_processor_crossings
privateinherited

Total number of processor crossings for Rays that finished on this processor.

Definition at line 1106 of file RayTracingStudy.h.

Referenced by RayTracingStudy::endingProcessorCrossings(), RayTracingStudy::executeStudy(), and RayTracingStudy::onCompleteRay().

◆ _execution_start_time

std::chrono::steady_clock::time_point RayTracingStudy::_execution_start_time
privateinherited

Timing.

Definition at line 1025 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy().

◆ _execution_time

std::chrono::steady_clock::duration RayTracingStudy::_execution_time
privateinherited

◆ _generation_time

std::chrono::steady_clock::duration RayTracingStudy::_generation_time
privateinherited

◆ _has_non_planar_sides

bool RayTracingStudy::_has_non_planar_sides
privateinherited

Whether or not the local mesh has elements with non-planar sides.

Definition at line 1059 of file RayTracingStudy.h.

Referenced by RayTracingStudy::nonPlanarSideSetup(), and RayTracingStudy::sideIsNonPlanar().

◆ _has_same_level_active_elems

bool RayTracingStudy::_has_same_level_active_elems
privateinherited

Whether or not the mesh has active elements of the same level.

Definition at line 1064 of file RayTracingStudy.h.

Referenced by RayTracingStudy::hasSameLevelActiveElems(), and RayTracingStudy::meshChanged().

◆ _internal_sidesets

std::set<BoundaryID> RayTracingStudy::_internal_sidesets
privateinherited

The BoundaryIDs on the local mesh that have internal RayBCs.

Definition at line 1055 of file RayTracingStudy.h.

Referenced by RayTracingStudy::getInternalSidesets(), RayTracingStudy::hasInternalSidesets(), and RayTracingStudy::internalSidesetSetup().

◆ _internal_sidesets_map

std::vector<std::vector<std::vector<BoundaryID> > > RayTracingStudy::_internal_sidesets_map
privateinherited

Internal sideset data, if internal sidesets exist (indexed with getLocalElemIndex())

Definition at line 1057 of file RayTracingStudy.h.

Referenced by RayTracingStudy::getInternalSidesets(), and RayTracingStudy::internalSidesetSetup().

◆ _local_trace_ray_results

std::vector<unsigned long long int> RayTracingStudy::_local_trace_ray_results
privateinherited

Cumulative results on this processor from the threaded TraceRay objects.

Definition at line 1133 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::localTraceRayResult().

◆ _loose_b_box

libMesh::BoundingBox RayTracingStudy::_loose_b_box
privateinherited

Loose nodal bounding box for the domain.

Definition at line 1069 of file RayTracingStudy.h.

Referenced by RayTracingStudy::looseBoundingBox(), and RayTracingStudy::RayTracingStudy().

◆ _max_intersections

unsigned int RayTracingStudy::_max_intersections
privateinherited

Max number of intersections for a single Ray.

Definition at line 1123 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::maxIntersections().

◆ _max_processor_crossings

unsigned int RayTracingStudy::_max_processor_crossings
privateinherited

Max number of processor crossings for all Rays.

Definition at line 1112 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::maxProcessorCrossings().

◆ _max_trajectory_changes

unsigned int RayTracingStudy::_max_trajectory_changes
privateinherited

Max number of trajectory changes for a single Ray.

Definition at line 1125 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::maxTrajectoryChanges().

◆ _mesh

MooseMesh& RayTracingStudy::_mesh
protectedinherited

◆ _non_planar_sides

std::vector<std::vector<unsigned short> > RayTracingStudy::_non_planar_sides
privateinherited

Non planar side data, which is for quick checking if an elem side is non-planar We use unsigned short here to avoid a std::vector<bool>; 0 = false, otherwise true.

Definition at line 1062 of file RayTracingStudy.h.

Referenced by RayTracingStudy::nonPlanarSideSetup(), and RayTracingStudy::sideIsNonPlanar().

◆ _num_cached

std::vector<std::size_t> RayTracingStudy::_num_cached
privateinherited

Number of currently cached objects for Jacobian/residual for each thread.

Definition at line 1052 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), RayTracingStudy::jacobianSetup(), RayTracingStudy::postOnSegment(), and RayTracingStudy::residualSetup().

◆ _parallel_ray_study

const std::unique_ptr<ParallelRayStudy> RayTracingStudy::_parallel_ray_study
privateinherited

◆ _pid

const processor_id_type RayTracingStudy::_pid
protectedinherited

◆ _propagation_time

std::chrono::steady_clock::duration RayTracingStudy::_propagation_time
privateinherited

◆ _ray_aux_data_map

std::unordered_map<std::string, RayDataIndex> RayTracingStudy::_ray_aux_data_map
privateinherited

The map from Ray aux data names to index.

Definition at line 1034 of file RayTracingStudy.h.

Referenced by RayTracingStudy::getRayDataIndexInternal(), and RayTracingStudy::registerRayDataInternal().

◆ _ray_aux_data_names

std::vector<std::string> RayTracingStudy::_ray_aux_data_names
privateinherited

◆ _ray_bank

std::vector<std::shared_ptr<Ray> > RayTracingStudy::_ray_bank
privateinherited

Cumulative Ray bank - stored only when _bank_rays_on_completion.

Definition at line 1093 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), RayTracingStudy::onCompleteRay(), and RayTracingStudy::rayBank().

◆ _ray_data_map

std::unordered_map<std::string, RayDataIndex> RayTracingStudy::_ray_data_map
privateinherited

The map from Ray data names to index.

Definition at line 1032 of file RayTracingStudy.h.

Referenced by RayTracingStudy::getRayDataIndexInternal(), and RayTracingStudy::registerRayDataInternal().

◆ _ray_data_names

std::vector<std::string> RayTracingStudy::_ray_data_names
privateinherited

◆ _ray_dependent_subdomain_setup

const bool RayTracingStudy::_ray_dependent_subdomain_setup
protectedinherited

Whether or not subdomain setup is dependent on the Ray.

Definition at line 880 of file RayTracingStudy.h.

Referenced by RayTracingStudy::rayDependentSubdomainSetup().

◆ _ray_kernel_coverage_check

const bool RayTracingStudy::_ray_kernel_coverage_check
protectedinherited

Whether or not to perform coverage checks on RayKernels.

Definition at line 868 of file RayTracingStudy.h.

Referenced by RayTracingStudy::coverageChecks().

◆ _ray_max_distance

const Real RayTracingStudy::_ray_max_distance
protectedinherited

Max distance a Ray can travel before being killed (can change)

Definition at line 891 of file RayTracingStudy.h.

Referenced by RayTracingStudy::rayMaxDistance().

◆ _registered_ray_map

std::unordered_map<std::string, RayID>& RayTracingStudy::_registered_ray_map
privateinherited

Map from registered Ray name to ID.

Definition at line 1042 of file RayTracingStudy.h.

Referenced by RayTracingStudy::registeredRayID(), RayTracingStudy::registeredRaySetup(), and RayTracingStudy::registerRay().

◆ _replicated_next_ray_id

RayID RayTracingStudy::_replicated_next_ray_id
privateinherited

Storage for the next available replicated RayID, obtained via generateReplicatedRayID()

Definition at line 1097 of file RayTracingStudy.h.

Referenced by RayTracingStudy::generateReplicatedRayID(), and RayTracingStudy::resetReplicatedRayIDs().

◆ _reverse_registered_ray_map

std::vector<std::string>& RayTracingStudy::_reverse_registered_ray_map
privateinherited

Map from registered Ray ID to name.

Definition at line 1044 of file RayTracingStudy.h.

Referenced by RayTracingStudy::registeredRayName(), and RayTracingStudy::registerRay().

◆ _segment_qrule

std::unique_ptr<libMesh::QBase> RayTracingStudy::_segment_qrule
privateinherited

Quadrature rule for laying points across a 1D ray segment.

Definition at line 1103 of file RayTracingStudy.h.

Referenced by RayTracingStudy::buildSegmentQuadrature(), and RayTracingStudy::initialSetup().

◆ _segments_on_cache_traces

const bool RayTracingStudy::_segments_on_cache_traces
protectedinherited

Whether or not to cache individual element segments when caching.

Definition at line 889 of file RayTracingStudy.h.

Referenced by RayTracingStudy::segmentsOnCacheTraces().

◆ _spin_mutex

Threads::spin_mutex RayTracingStudy::_spin_mutex
mutableprivateinherited

◆ _subdomain_hmax

std::unordered_map<SubdomainID, Real> RayTracingStudy::_subdomain_hmax
privateinherited

The cached hmax for all elements in a subdomain.

Definition at line 1136 of file RayTracingStudy.h.

Referenced by RayTracingStudy::subdomainHmax(), and RayTracingStudy::subdomainHMaxSetup().

◆ _threaded_cache_ray_bc

std::vector<TheWarehouse::QueryCache<AttribBoundaries> > RayTracingStudy::_threaded_cache_ray_bc
privateinherited

Threaded cached boundary query for RayBC objects pertaining to this study.

Definition at line 1078 of file RayTracingStudy.h.

Referenced by RayTracingStudy::getRayBCs().

◆ _threaded_cache_ray_kernel

std::vector<TheWarehouse::QueryCache<AttribSubdomains> > RayTracingStudy::_threaded_cache_ray_kernel
privateinherited

Threaded cached subdomain query for RayKernelBase objects pertaining to this study.

Definition at line 1076 of file RayTracingStudy.h.

Referenced by RayTracingStudy::getRayKernels().

◆ _threaded_cached_normals

std::vector<std::unordered_map<std::pair<const Elem *, unsigned short>, Point> > RayTracingStudy::_threaded_cached_normals
privateinherited

Threaded cache for side normals that have been computed already during tracing.

Definition at line 1091 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::getSideNormal().

◆ _threaded_cached_traces

std::vector<std::vector<TraceData> > RayTracingStudy::_threaded_cached_traces
privateinherited

The threaded storage for cached traces.

Definition at line 1049 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::initThreadedCachedTrace().

◆ _threaded_current_ray_kernels

std::vector<std::vector<RayKernelBase *> > RayTracingStudy::_threaded_current_ray_kernels
privateinherited

◆ _threaded_elem_side_builders

std::vector<libMesh::ElemSideBuilder> RayTracingStudy::_threaded_elem_side_builders
privateinherited

Threaded helpers for building element sides without extraneous allocation.

Definition at line 1021 of file RayTracingStudy.h.

Referenced by RayTracingStudy::elemSide().

◆ _threaded_fe_face

std::vector<std::unique_ptr<libMesh::FEBase> > RayTracingStudy::_threaded_fe_face
privateinherited

Face FE used for computing face normals for each thread.

Definition at line 1086 of file RayTracingStudy.h.

Referenced by RayTracingStudy::getSideNormal(), and RayTracingStudy::RayTracingStudy().

◆ _threaded_next_ray_id

std::vector<RayID> RayTracingStudy::_threaded_next_ray_id
privateinherited

Storage for the next available unique RayID, obtained via generateUniqueRayID()

Definition at line 1095 of file RayTracingStudy.h.

Referenced by RayTracingStudy::generateUniqueRayID(), and RayTracingStudy::resetUniqueRayIDs().

◆ _threaded_q_face

std::vector<std::unique_ptr<libMesh::QBase> > RayTracingStudy::_threaded_q_face
privateinherited

Face quadrature used for computing face normals for each thread.

Definition at line 1088 of file RayTracingStudy.h.

Referenced by RayTracingStudy::RayTracingStudy().

◆ _threaded_ray_object_registration

std::vector<std::vector<std::set<const RayTracingObject *> > > RayTracingStudy::_threaded_ray_object_registration
privateinherited

Threaded storage for all of the RayTracingObjects associated with a single Ray.

Definition at line 1080 of file RayTracingStudy.h.

Referenced by RayTracingStudy::getRayBCs(), RayTracingStudy::getRayKernels(), and RayTracingStudy::registeredRaySetup().

◆ _threaded_trace_ray

std::vector<std::shared_ptr<TraceRay> > RayTracingStudy::_threaded_trace_ray
privateinherited

The TraceRay objects for each thread (they do the physical tracing)

Definition at line 1084 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), RayTracingStudy::meshChanged(), RayTracingStudy::RayTracingStudy(), RayTracingStudy::traceRay(), and RayTracingStudy::traceRay().

◆ _tolerate_failure

const bool RayTracingStudy::_tolerate_failure
protectedinherited

Whether or not to tolerate a Ray Tracing failure.

Definition at line 876 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::tolerateFailure().

◆ _total_distance

Real RayTracingStudy::_total_distance
privateinherited

Total distance traveled by all Rays.

Definition at line 1130 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::totalDistance().

◆ _total_intersections

unsigned long long int RayTracingStudy::_total_intersections
privateinherited

Total number of Ray/element intersections.

Definition at line 1121 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::totalIntersections().

◆ _total_processor_crossings

unsigned long long int RayTracingStudy::_total_processor_crossings
privateinherited

Total number of processor crossings.

Definition at line 1110 of file RayTracingStudy.h.

Referenced by RayTracingStudy::executeStudy(), and RayTracingStudy::totalProcessorCrossings().

◆ _total_volume

Real RayTracingStudy::_total_volume
privateinherited

The total volume of the domain.

Definition at line 1073 of file RayTracingStudy.h.

Referenced by RayTracingStudy::totalVolume().

◆ _use_internal_sidesets

const bool RayTracingStudy::_use_internal_sidesets
protectedinherited

Whether or not to use the internal sidesets in ray tracing.

Definition at line 874 of file RayTracingStudy.h.

Referenced by RayTracingStudy::getInternalSidesets(), and RayTracingStudy::internalSidesetSetup().

◆ _use_ray_registration

const bool RayTracingStudy::_use_ray_registration
protectedinherited

◆ _verify_rays

const bool RayTracingStudy::_verify_rays
protectedinherited

Whether or not to verify if Rays have valid information before being traced.

Definition at line 893 of file RayTracingStudy.h.

Referenced by RayTracingStudy::verifyRays().

◆ _verify_trace_intersections

const bool RayTracingStudy::_verify_trace_intersections
protectedinherited

Whether or not to verify the trace intersections in devel and dbg modes.

Definition at line 896 of file RayTracingStudy.h.

Referenced by RayTracingStudy::verifyTraceIntersections().

◆ _warn_non_planar

const bool RayTracingStudy::_warn_non_planar
protectedinherited

Whether not to warn if non-planar faces are found.

Definition at line 870 of file RayTracingStudy.h.

Referenced by RayTracingStudy::nonPlanarSideSetup(), and RayTracingStudy::warnNonPlanar().


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