Struct CartesianSubDomain3F32
pub struct CartesianSubDomain3F32 {
pub voxels: Vec<CartesianVoxel3F32>,
/* private fields */
}
Expand description
Subdomain of CartesianCuboid3NewF32
The subdomain contains voxels
Fields§
§voxels: Vec<CartesianVoxel3F32>
All voxels contained in this subdomain
Trait Implementations§
§impl Clone for CartesianSubDomain3F32
impl Clone for CartesianSubDomain3F32
§fn clone(&self) -> CartesianSubDomain3F32
fn clone(&self) -> CartesianSubDomain3F32
Returns a copy of the value. Read more
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
Performs copy-assignment from
source
. Read more§impl Debug for CartesianSubDomain3F32
impl Debug for CartesianSubDomain3F32
§impl<'de> Deserialize<'de> for CartesianSubDomain3F32
impl<'de> Deserialize<'de> for CartesianSubDomain3F32
§fn deserialize<__D>(
__deserializer: __D,
) -> Result<CartesianSubDomain3F32, <__D as Deserializer<'de>>::Error>where
__D: Deserializer<'de>,
fn deserialize<__D>(
__deserializer: __D,
) -> Result<CartesianSubDomain3F32, <__D as Deserializer<'de>>::Error>where
__D: Deserializer<'de>,
Deserialize this value from the given Serde deserializer. Read more
§impl<C, I> Domain<C, CartesianSubDomain3F32, I> for CartesianCuboid3NewF32where
I: IntoIterator<Item = C>,
C: Position<Matrix<f32, Const<3>, Const<1>, ArrayStorage<f32, 3, 1>>>,
impl<C, I> Domain<C, CartesianSubDomain3F32, I> for CartesianCuboid3NewF32where
I: IntoIterator<Item = C>,
C: Position<Matrix<f32, Const<3>, Const<1>, ArrayStorage<f32, 3, 1>>>,
§fn decompose(
self,
n_subdomains: NonZero<usize>,
cells: I,
) -> Result<DecomposedDomain<<CartesianCuboid3NewF32 as Domain<C, CartesianSubDomain3F32, I>>::SubDomainIndex, CartesianSubDomain3F32, C>, DecomposeError>
fn decompose( self, n_subdomains: NonZero<usize>, cells: I, ) -> Result<DecomposedDomain<<CartesianCuboid3NewF32 as Domain<C, CartesianSubDomain3F32, I>>::SubDomainIndex, CartesianSubDomain3F32, C>, DecomposeError>
Much more research must be done to effectively write this function. We should be using more sophisticated functionality based on common known facts for minimizing surface area and number of neighbors. For more information also see
§type SubDomainIndex = usize
type SubDomainIndex = usize
Subdomains can be identified by their unique SubDomainIndex.
The backend uses this property to construct a mapping (graph) between subdomains.
§type VoxelIndex = [i64; 3]
type VoxelIndex = [i64; 3]
Similarly to the SubDomainIndex, voxels can be accessed by
their unique index. The backend will use this information to construct a mapping
(graph) between voxels inside their respective subdomains.
§impl IntoPy<Py<PyAny>> for CartesianSubDomain3F32
impl IntoPy<Py<PyAny>> for CartesianSubDomain3F32
§impl PyClass for CartesianSubDomain3F32
impl PyClass for CartesianSubDomain3F32
§impl PyTypeInfo for CartesianSubDomain3F32
impl PyTypeInfo for CartesianSubDomain3F32
§fn type_object_raw(py: Python<'_>) -> *mut PyTypeObject
fn type_object_raw(py: Python<'_>) -> *mut PyTypeObject
Returns the PyTypeObject instance for this type.
§fn type_object_bound(py: Python<'_>) -> Bound<'_, PyType>
fn type_object_bound(py: Python<'_>) -> Bound<'_, PyType>
Returns the safe abstraction over the type object.
§fn is_type_of_bound(object: &Bound<'_, PyAny>) -> bool
fn is_type_of_bound(object: &Bound<'_, PyAny>) -> bool
Checks if
object
is an instance of this type or a subclass of this type.§fn is_exact_type_of_bound(object: &Bound<'_, PyAny>) -> bool
fn is_exact_type_of_bound(object: &Bound<'_, PyAny>) -> bool
Checks if
object
is an instance of this type.§impl Serialize for CartesianSubDomain3F32
impl Serialize for CartesianSubDomain3F32
§fn serialize<__S>(
&self,
__serializer: __S,
) -> Result<<__S as Serializer>::Ok, <__S as Serializer>::Error>where
__S: Serializer,
fn serialize<__S>(
&self,
__serializer: __S,
) -> Result<<__S as Serializer>::Ok, <__S as Serializer>::Error>where
__S: Serializer,
Serialize this value into the given Serde serializer. Read more
§impl<C> SortCells<C> for CartesianSubDomain3F32
impl<C> SortCells<C> for CartesianSubDomain3F32
§type VoxelIndex = [i64; 3]
type VoxelIndex = [i64; 3]
An index which determines to which next smaller unit the cell should be assigned.
§fn get_voxel_index_of(
&self,
cell: &C,
) -> Result<<CartesianSubDomain3F32 as SortCells<C>>::VoxelIndex, BoundaryError>
fn get_voxel_index_of( &self, cell: &C, ) -> Result<<CartesianSubDomain3F32 as SortCells<C>>::VoxelIndex, BoundaryError>
If given a cell, we can sort this cell into the corresponding sub unit.
§impl SubDomain for CartesianSubDomain3F32
impl SubDomain for CartesianSubDomain3F32
§type VoxelIndex = [i64; 3]
type VoxelIndex = [i64; 3]
Individual Voxels inside each subdomain can be accessed by this index.
§fn get_neighbor_voxel_indices(
&self,
index: &<CartesianSubDomain3F32 as SubDomain>::VoxelIndex,
) -> Vec<<CartesianSubDomain3F32 as SubDomain>::VoxelIndex>
fn get_neighbor_voxel_indices( &self, index: &<CartesianSubDomain3F32 as SubDomain>::VoxelIndex, ) -> Vec<<CartesianSubDomain3F32 as SubDomain>::VoxelIndex>
Obtains the neighbor voxels of the specified voxel index. This function behaves similarly
to SortCells::get_voxel_index_of in that it also has to return
indices which are in other SubDomains.
§fn get_all_indices(
&self,
) -> Vec<<CartesianSubDomain3F32 as SubDomain>::VoxelIndex>
fn get_all_indices( &self, ) -> Vec<<CartesianSubDomain3F32 as SubDomain>::VoxelIndex>
Get all voxel indices of this SubDomain.
§impl SubDomainMechanics<Matrix<f32, Const<3>, Const<1>, ArrayStorage<f32, 3, 1>>, Matrix<f32, Const<3>, Const<1>, ArrayStorage<f32, 3, 1>>> for CartesianSubDomain3F32
impl SubDomainMechanics<Matrix<f32, Const<3>, Const<1>, ArrayStorage<f32, 3, 1>>, Matrix<f32, Const<3>, Const<1>, ArrayStorage<f32, 3, 1>>> for CartesianSubDomain3F32
§fn apply_boundary(
&self,
pos: &mut Matrix<f32, Const<3>, Const<1>, ArrayStorage<f32, 3, 1>>,
velocity: &mut Matrix<f32, Const<3>, Const<1>, ArrayStorage<f32, 3, 1>>,
) -> Result<(), BoundaryError>
fn apply_boundary( &self, pos: &mut Matrix<f32, Const<3>, Const<1>, ArrayStorage<f32, 3, 1>>, velocity: &mut Matrix<f32, Const<3>, Const<1>, ArrayStorage<f32, 3, 1>>, ) -> Result<(), BoundaryError>
If the subdomain has boundary conditions, this function will enforce them onto the cells.
For the future, we plan to replace this function to additionally obtain information
about the previous and current location of the cell.
impl DerefToPyAny for CartesianSubDomain3F32
Auto Trait Implementations§
impl Freeze for CartesianSubDomain3F32
impl RefUnwindSafe for CartesianSubDomain3F32
impl Send for CartesianSubDomain3F32
impl Sync for CartesianSubDomain3F32
impl Unpin for CartesianSubDomain3F32
impl UnwindSafe for CartesianSubDomain3F32
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but without any property checks. Always succeeds.§fn from_subset(element: &SS) -> SP
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