hummingbird
Solving the self-adjoint angular flux transport equation using spectral elements on Cartesian geometry
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Class List
Here are the classes, structs, unions and interfaces with brief descriptions:
 Nhummingbird
 CAngularQuadratureSetWrapper class that owns an angular QuadratureBase<Ordinate> of the type corresponding to the given AngularQuadSet
 CAngularTreatmentParamsParameters from the "angular_treatment" section of the input file
 CBankBaseBase class for banks that store objects of type T by integer ID and look them up by the name given in the JSON input file
 CBCBankBank holding the boundary conditions defined in the input file
 CCGProblemClass defining a Continuous Galerkin formulation of the SAAF transport equation
 CConstantVolumetricSourceDefines a constant-value, isotropic volumetric source
 CElementDefines a subset of the domain (an "element")
 CGaussChebyshevClass defines a Gauss-Chebyshev quadrature set, which approximates the integral of the form:
 CGaussLegendreDefines a Gauss-Legendre quadrature set on the interval [-1,1]
 CGaussLegendreChebyshevClass defines a Gauss-Legendre-Chebyshev quadrature set on the unit sphere, where a Gauss-Legendre quadrature set is used along the polar direction, and a Gauss-Chebyshev quadrature set is used along the azimuthal direction
 CGaussLegendreTrapezoidClass defines a Gauss-Legendre-Trapezoid rule on the unit sphere, where a Gauss-Legendre rule is used on the polar coordinate, and a trapezoid rule is used on the azimuthal
 CGaussLobattoLegendreClass defining a 1D Gauss-Legendre-Lobatto quadrature set on [-1,1]. The quadrature set approximates the integral using a set of weights ( \(w_k\)) and abscissas ( \(\xi_k\)):
 CGlobalForcingDataConvenience struct for hold the contribution for an entry in a single element to the global forcing vector
 CGlobalMatrixDataConvenience struct for holding the contribution for an entry in a single element to the global matrix
 CInputParamsAll parameters parsed from the input file
 CMaterialDefines a monoenergetic, constant-properties material
 CMaterialBankBank holding the materials defined in the input file
 CMeshClass defing a mesh
 CGmshReadStateIntermediate state accumulated while reading a gmsh file, shared across the section subroutines below
 CMeshParamsParameters from the "mesh" section of the input file
 CNodeA point in the mesh holding its coordinates, boundary info, and flux solution values
 COrdinateDefines a solid angle, or ordinate, in spherical geometry
 CParsedVolumetricSourceDefines a volumetric source defined by a parsed function passed by the user
 CProblemBaseBase class defining a formulation of the transport equation to be solved
 CProblemParamsParameters from the "problem" section of the input file
 CQuadratureBaseBase class for defining a quadrature set
 CQuadraturePairSimple struct holding a function value evaluated at the supplied abscissa value
 CResultsExports simulation results to a file
 CSegment1D line element defined by two boundary nodes, with interior nodes placed at Gauss-Lobatto-Legendre points
 CSEMProblemWrapper class that owns a ProblemBase of the type corresponding to the given FEFormulation
 CSimulationTracks the running state of a simulation across source iterations
 CSourceBankBank holding the volumetric sources defined in the input file
 CSourceBaseBase class for independent sources
 CSourceIterationParamsParameters from the "source_iteration" section of the input file
 CSpectralElementParamsParameters from the "spectral_elements" section of the input file
 Cte_exprA compiled expression
 Cte_fun_traits
 Cte_fun_traits< ReturnType(*)(Args...)>
 Cte_fun_traits< ReturnType(Args...)>
 Cte_is_closure
 Cte_is_closure< ReturnType(*)(const te_expr *, Args...)>
 Cte_is_closure< ReturnType(const te_expr *, Args...)>
 Cte_is_closure< te_arg_confun >
 Cte_parserMath formula parser
 Cstate
 Cte_string_less
 Cte_variableCustom variable or function that can be added to a te_parser