SELF_MappedScalar_3D_t Module


Uses

  • module~~self_mappedscalar_3d_t~~UsesGraph module~self_mappedscalar_3d_t SELF_MappedScalar_3D_t module~self_scalar_3d~2 SELF_Scalar_3D module~self_mappedscalar_3d_t->module~self_scalar_3d~2 module~self_lagrange~2 SELF_Lagrange module~self_mappedscalar_3d_t->module~self_lagrange~2 module~self_geometry_3d SELF_Geometry_3D module~self_mappedscalar_3d_t->module~self_geometry_3d module~self_tensor_3d SELF_Tensor_3D module~self_mappedscalar_3d_t->module~self_tensor_3d module~self_mesh_3d~2 SELF_Mesh_3D module~self_mappedscalar_3d_t->module~self_mesh_3d~2 iso_c_binding iso_c_binding module~self_mappedscalar_3d_t->iso_c_binding module~self_constants SELF_Constants module~self_mappedscalar_3d_t->module~self_constants FEQParse FEQParse module~self_mappedscalar_3d_t->FEQParse module~self_domaindecomposition SELF_DomainDecomposition module~self_mappedscalar_3d_t->module~self_domaindecomposition module~self_scalar_3d~2->iso_c_binding module~self_scalar_3d~2->module~self_constants module~self_scalar_3d_t SELF_Scalar_3D_t module~self_scalar_3d~2->module~self_scalar_3d_t module~self_lagrange~2->iso_c_binding module~self_lagrange~2->module~self_constants iso_fortran_env iso_fortran_env module~self_lagrange~2->iso_fortran_env module~self_lagrange_t SELF_Lagrange_t module~self_lagrange~2->module~self_lagrange_t module~self_geometry_3d->module~self_scalar_3d~2 module~self_geometry_3d->module~self_lagrange~2 module~self_geometry_3d->module~self_tensor_3d module~self_geometry_3d->module~self_mesh_3d~2 module~self_geometry_3d->module~self_constants module~self_supportroutines SELF_SupportRoutines module~self_geometry_3d->module~self_supportroutines module~self_data SELF_Data module~self_geometry_3d->module~self_data module~self_vector_3d~2 SELF_Vector_3D module~self_geometry_3d->module~self_vector_3d~2 module~self_tensor_3d_t SELF_Tensor_3D_t module~self_tensor_3d->module~self_tensor_3d_t module~self_mesh_3d_t SELF_Mesh_3D_t module~self_mesh_3d~2->module~self_mesh_3d_t module~self_constants->iso_c_binding module~self_constants->iso_fortran_env module~self_domaindecomposition_t SELF_DomainDecomposition_t module~self_domaindecomposition->module~self_domaindecomposition_t module~self_scalar_3d_t->module~self_lagrange~2 module~self_scalar_3d_t->iso_c_binding module~self_scalar_3d_t->module~self_constants module~self_scalar_3d_t->FEQParse module~self_scalar_3d_t->module~self_data module~self_hdf5 SELF_HDF5 module~self_scalar_3d_t->module~self_hdf5 module~self_datapool SELF_DataPool module~self_scalar_3d_t->module~self_datapool module~self_metadata SELF_Metadata module~self_scalar_3d_t->module~self_metadata HDF5 HDF5 module~self_scalar_3d_t->HDF5 module~self_supportroutines->module~self_constants module~self_supportroutines->iso_fortran_env module~self_data->module~self_lagrange~2 module~self_data->iso_c_binding module~self_data->module~self_constants module~self_data->FEQParse module~self_data->module~self_hdf5 module~self_data->module~self_metadata module~self_data->HDF5 module~self_lagrange_t->iso_c_binding module~self_lagrange_t->module~self_constants module~self_lagrange_t->module~self_supportroutines module~self_lagrange_t->iso_fortran_env module~self_lagrange_t->module~self_hdf5 module~self_quadrature SELF_Quadrature module~self_lagrange_t->module~self_quadrature module~self_lagrange_t->HDF5 module~self_vector_3d_t SELF_Vector_3D_t module~self_vector_3d~2->module~self_vector_3d_t module~self_tensor_3d_t->module~self_lagrange~2 module~self_tensor_3d_t->iso_c_binding module~self_tensor_3d_t->module~self_constants module~self_tensor_3d_t->FEQParse module~self_tensor_3d_t->module~self_data module~self_tensor_3d_t->module~self_hdf5 module~self_tensor_3d_t->module~self_datapool module~self_tensor_3d_t->module~self_metadata module~self_tensor_3d_t->HDF5 module~self_mesh_3d_t->module~self_lagrange~2 module~self_mesh_3d_t->iso_c_binding module~self_mesh_3d_t->module~self_constants module~self_mesh_3d_t->module~self_domaindecomposition module~self_mesh_3d_t->module~self_supportroutines module~self_mesh_3d_t->module~self_hdf5 module~self_mesh_3d_t->module~self_quadrature module~self_mesh_3d_t->HDF5 module~self_mesh SELF_Mesh module~self_mesh_3d_t->module~self_mesh module~self_domaindecomposition_t->module~self_lagrange~2 module~self_domaindecomposition_t->iso_c_binding module~self_domaindecomposition_t->module~self_constants module~self_domaindecomposition_t->module~self_supportroutines mpi mpi module~self_domaindecomposition_t->mpi module~self_hdf5->module~self_constants module~self_hdf5->iso_fortran_env module~self_hdf5->HDF5 module~self_hdf5->mpi module~self_datapool->module~self_constants module~self_quadrature->module~self_constants module~self_quadrature->iso_fortran_env module~self_metadata->module~self_hdf5 module~self_metadata->HDF5 module~self_vector_3d_t->module~self_lagrange~2 module~self_vector_3d_t->iso_c_binding module~self_vector_3d_t->module~self_constants module~self_vector_3d_t->FEQParse module~self_vector_3d_t->module~self_data module~self_vector_3d_t->module~self_hdf5 module~self_vector_3d_t->module~self_datapool module~self_vector_3d_t->module~self_metadata module~self_vector_3d_t->HDF5 module~self_mesh->iso_c_binding module~self_mesh->module~self_constants module~self_mesh->module~self_domaindecomposition

Used by

  • module~~self_mappedscalar_3d_t~~UsedByGraph module~self_mappedscalar_3d_t SELF_MappedScalar_3D_t module~self_mappedscalar_3d SELF_MappedScalar_3D module~self_mappedscalar_3d->module~self_mappedscalar_3d_t module~self_mappedscalar_3d~2 SELF_MappedScalar_3D module~self_mappedscalar_3d~2->module~self_mappedscalar_3d_t module~self_esatmo3d_t SELF_ESAtmo3D_t module~self_esatmo3d_t->module~self_mappedscalar_3d module~self_ecdgmodel3d~2 SELF_ECDGModel3D module~self_esatmo3d_t->module~self_ecdgmodel3d~2 module~self_dgmodel3d_t SELF_DGModel3D_t module~self_dgmodel3d_t->module~self_mappedscalar_3d module~self_points_t SELF_Points_t module~self_points_t->module~self_mappedscalar_3d module~self_points SELF_Points module~self_points->module~self_mappedscalar_3d module~self_points->module~self_points_t module~self_esatmo3d SELF_ESAtmo3D module~self_esatmo3d->module~self_esatmo3d_t module~self_amrcontroller_3d SELF_AMRController_3D module~self_amrcontroller_3d->module~self_dgmodel3d_t module~self_esatmo3d~2 SELF_ESAtmo3D module~self_esatmo3d~2->module~self_esatmo3d_t module~self_ecdgmodel3d_t SELF_ECDGModel3D_t module~self_esatmo3d~2->module~self_ecdgmodel3d_t module~self_dgmodel3d SELF_DGModel3D module~self_dgmodel3d->module~self_dgmodel3d_t module~self_dgmodel3d~2 SELF_DGModel3D module~self_dgmodel3d~2->module~self_dgmodel3d_t module~self_points~2 SELF_Points module~self_points~2->module~self_points_t module~self_ecdgmodel3d_t->module~self_dgmodel3d module~self_lineareuler3d_t self_LinearEuler3D_t module~self_lineareuler3d_t->module~self_dgmodel3d module~self_advection_diffusion_3d_t self_advection_diffusion_3d_t module~self_advection_diffusion_3d_t->module~self_dgmodel3d module~self_nulldgmodel3d_t self_NullDGModel3D_t module~self_nulldgmodel3d_t->module~self_dgmodel3d module~self_ecdgmodel3d~2->module~self_ecdgmodel3d_t module~self_lineareuler3d~2 self_LinearEuler3D module~self_lineareuler3d~2->module~self_lineareuler3d_t module~self_ecdgmodel3d SELF_ECDGModel3D module~self_ecdgmodel3d->module~self_ecdgmodel3d_t module~self_lineareuler3d self_LinearEuler3D module~self_lineareuler3d->module~self_lineareuler3d_t module~self_ecadvection3d SELF_ECAdvection3D module~self_ecadvection3d->module~self_ecdgmodel3d_t module~self_ecadvection3d_t SELF_ECAdvection3D_t module~self_ecadvection3d->module~self_ecadvection3d_t module~self_advection_diffusion_3d self_advection_diffusion_3d module~self_advection_diffusion_3d->module~self_advection_diffusion_3d_t module~self_advection_diffusion_3d~2 self_advection_diffusion_3d module~self_advection_diffusion_3d~2->module~self_advection_diffusion_3d_t module~self_nulldgmodel3d~2 self_NullDGModel3D module~self_nulldgmodel3d~2->module~self_nulldgmodel3d_t module~self_nulldgmodel3d self_NullDGModel3D module~self_nulldgmodel3d->module~self_nulldgmodel3d_t module~self_ecadvection3d_t->module~self_ecdgmodel3d~2 module~self_ecadvection3d~2 SELF_ECAdvection3D module~self_ecadvection3d~2->module~self_ecadvection3d_t

Contents


Derived Types

type, public, extends(Scalar3D) :: MappedScalar3D_t

Components

TypeVisibilityAttributesNameInitial
integer, public :: M
integer, public :: N
real(kind=prec), public, pointer, contiguous, dimension(:,:,:,:,:):: avgBoundary
character(len=3), public :: backend ="cpu"
real(kind=prec), public, pointer, contiguous, dimension(:,:,:,:,:):: boundary
real(kind=prec), public, pointer, contiguous, dimension(:,:,:,:,:):: boundarynormal

High-water-mark backing store for the arrays above (AMR Stage 6b; see SELF_DataPool). The public members are pointers remapped onto the leading part of these pools at the exact logical shape, so every extent, stride and shape() stays exactly as before while Resize can reuse the storage across an adaptation epoch. Nothing should index the pools.

type(EquationParser), public, allocatable:: eqn(:)
real(kind=prec), public, pointer, contiguous, dimension(:,:,:,:,:):: extBoundary
type(SEMHex), public, pointer:: geometry=> null()
logical, public :: geometry_associated =.false.
real(kind=prec), public, pointer, contiguous, dimension(:,:,:,:,:):: interior
type(Lagrange), public, pointer:: interp
type(Metadata), public, allocatable:: meta(:)
real(kind=prec), public, allocatable, dimension(:,:,:,:,:):: mortarBuff
integer, public :: nElem
integer, public :: nVar
real(kind=prec), public, pointer, contiguous:: pool_avgBoundary(:)=> null()
real(kind=prec), public, pointer, contiguous:: pool_boundary(:)=> null()
real(kind=prec), public, pointer, contiguous:: pool_boundarynormal(:)=> null()
real(kind=prec), public, pointer, contiguous:: pool_extBoundary(:)=> null()
real(kind=prec), public, pointer, contiguous:: pool_interior(:)=> null()

Type-Bound Procedures

procedure, private :: ApplyFlip => ApplyFlip_MappedScalar3D_t
procedure, public :: AssociateGeometry => AssociateGeometry_MappedScalar3D_t
procedure, public :: AverageSides => AverageSides_Scalar3D_t
procedure, public :: BoundaryInterp => BoundaryInterp_Scalar3D_t
procedure, public :: DissociateGeometry => DissociateGeometry_MappedScalar3D_t
procedure, public :: Free => Free_Scalar3D_t
generic, public :: Gradient => Gradient_Scalar3D_t
generic, public :: GridInterp => GridInterp_Scalar3D_t
procedure, public :: Init => Init_Scalar3D_t
procedure, private :: MPIExchangeAsync => MPIExchangeAsync_MappedScalar3D_t
procedure, private :: MPIMortarExchangeAsync => MPIMortarExchangeAsync_MappedScalar3D_t
procedure, public :: MapArrays => MapArrays_Scalar3D_t
generic, public :: MappedDGGradient => MappedDGGradient_MappedScalar3D_t
procedure, private :: MappedDGGradient_MappedScalar3D_t
generic, public :: MappedGradient => MappedGradient_MappedScalar3D_t
procedure, private :: MappedGradient_MappedScalar3D_t
procedure, public :: MortarExchange => MortarExchange_MappedScalar3D_t
procedure, public :: Resize => Resize_MappedScalar3D_t
procedure, public :: SetDescription => SetDescription_DataObj
generic, public :: SetEquation => SetEquation_DataObj
procedure, public :: SetInteriorFromEquation => SetInteriorFromEquation_MappedScalar3D_t
procedure, public :: SetName => SetName_DataObj
procedure, public :: SetUnits => SetUnits_DataObj
procedure, public :: SideExchange => SideExchange_MappedScalar3D_t
procedure, public :: UpdateDevice => UpdateDevice_Scalar3D_t
procedure, public :: UpdateHost => UpdateHost_Scalar3D_t
generic, public :: WriteHDF5 => WriteHDF5_MPI_Scalar3D_t, WriteHDF5_Scalar3D_t

Subroutines

public subroutine ApplyFlip_MappedScalar3D_t(this, mesh)

Arguments

TypeIntentOptionalAttributesName
class(MappedScalar3D_t), intent(inout) :: this
type(Mesh3D), intent(inout) :: mesh

public subroutine AssociateGeometry_MappedScalar3D_t(this, geometry)

Arguments

TypeIntentOptionalAttributesName
class(MappedScalar3D_t), intent(inout) :: this
type(SEMHex), intent(in), target:: geometry

public subroutine DissociateGeometry_MappedScalar3D_t(this)

Arguments

TypeIntentOptionalAttributesName
class(MappedScalar3D_t), intent(inout) :: this

public subroutine MPIExchangeAsync_MappedScalar3D_t(this, mesh)

Arguments

TypeIntentOptionalAttributesName
class(MappedScalar3D_t), intent(inout) :: this
type(Mesh3D), intent(inout) :: mesh

public subroutine MPIMortarExchangeAsync_MappedScalar3D_t(this, mesh)

Posts the point-to-point messages required for mortar interfaces whose big and small elements reside on different ranks. The big-face rank sends its face trace to each remote small-face rank and receives each remote small-face trace; tags are built from the sub-face global side ids, following the conforming SideExchange tag convention.

Arguments

TypeIntentOptionalAttributesName
class(MappedScalar3D_t), intent(inout) :: this
type(Mesh3D), intent(inout) :: mesh

public subroutine MappedDGGradient_MappedScalar3D_t(this, df)

Calculates the gradient of a function using the weak form of the gradient and the average boundary state. This method will compute the average boundary state from the and attributes of

Arguments

TypeIntentOptionalAttributesName
class(MappedScalar3D_t), intent(in) :: this
real(kind=prec), intent(out) :: df(1:this%N+1,1:this%N+1,1:this%N+1,1:this%nelem,1:this%nvar,1:3)

public subroutine MappedGradient_MappedScalar3D_t(this, df)

Calculates the gradient of a function using the strong form of the gradient in mapped coordinates.

Arguments

TypeIntentOptionalAttributesName
class(MappedScalar3D_t), intent(in) :: this
real(kind=prec), intent(out) :: df(1:this%N+1,1:this%N+1,1:this%N+1,1:this%nelem,1:this%nvar,1:3)

public subroutine MortarExchange_MappedScalar3D_t(this, mesh)

Fills the extBoundary attribute on all faces that participate in a 2:1 nonconforming (mortar) interface.

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Arguments

TypeIntentOptionalAttributesName
class(MappedScalar3D_t), intent(inout) :: this
type(Mesh3D), intent(inout) :: mesh

public subroutine Resize_MappedScalar3D_t(this, interp, nVar, nElem)

Rebind to a new element count, reusing storage where it fits (AMR Stage 6b). The mortar staging buffer is sized by mesh%nMortars rather than nElem, and nMortars changes with the mesh independently of the element count, so it is invalidated here and lazily re-created at the correct size by the next mortar exchange.

Arguments

TypeIntentOptionalAttributesName
class(MappedScalar3D_t), intent(inout) :: this
type(Lagrange), intent(in), target:: interp
integer, intent(in) :: nVar
integer, intent(in) :: nElem

public subroutine SetInteriorFromEquation_MappedScalar3D_t(this, geometry, time)

Sets the this % interior attribute using the eqn attribute, geometry (for physical positions), and provided simulation time.

Arguments

TypeIntentOptionalAttributesName
class(MappedScalar3D_t), intent(inout) :: this
type(SEMHex), intent(in) :: geometry
real(kind=prec), intent(in) :: time

public subroutine SideExchange_MappedScalar3D_t(this, mesh)

Arguments

TypeIntentOptionalAttributesName
class(MappedScalar3D_t), intent(inout) :: this
type(Mesh3D), intent(inout) :: mesh