pub struct Compound<N: RealField + Copy> { /* private fields */ }
Expand description
A compound shape with an aabb bounding volume.
A compound shape is a shape composed of the union of several simpler shape. This is the main way of creating a concave shape from convex parts. Each parts can have its own delta transformation to shift or rotate it with regard to the other shapes.
Implementations§
Source§impl<N: RealField + Copy> Compound<N>
impl<N: RealField + Copy> Compound<N>
Sourcepub fn shapes(&self) -> &[(Isometry<N>, ShapeHandle<N>)]
pub fn shapes(&self) -> &[(Isometry<N>, ShapeHandle<N>)]
The shapes of this compound shape.
Sourcepub fn bvt(&self) -> &BVT<usize, AABB<N>>
pub fn bvt(&self) -> &BVT<usize, AABB<N>>
The optimization structure used by this compound shape.
Sourcepub fn bounding_volumes(&self) -> &[AABB<N>]
pub fn bounding_volumes(&self) -> &[AABB<N>]
The shapes bounding volumes.
Sourcepub fn aabb_at(&self, i: usize) -> &AABB<N>
pub fn aabb_at(&self, i: usize) -> &AABB<N>
The AABB of the i-th shape compositing this compound.
Sourcepub fn subshape_feature_id(&self, fid: FeatureId) -> (usize, FeatureId)
pub fn subshape_feature_id(&self, fid: FeatureId) -> (usize, FeatureId)
Transforms a FeatureId of this compound into a pair containing the index of the subshape containing this feature, and the corresponding FeatureId on this subshape.
Trait Implementations§
Source§impl<N: RealField + Copy> CompositeShape<N> for Compound<N>
impl<N: RealField + Copy> CompositeShape<N> for Compound<N>
Source§fn map_part_at(
&self,
i: usize,
m: &Isometry<N>,
f: &mut dyn FnMut(&Isometry<N>, &dyn Shape<N>),
)
fn map_part_at( &self, i: usize, m: &Isometry<N>, f: &mut dyn FnMut(&Isometry<N>, &dyn Shape<N>), )
Applies a transformation matrix and a function to each sub-shape of this concave
shape.
Source§fn map_part_and_preprocessor_at(
&self,
i: usize,
m: &Isometry<N>,
_prediction: &ContactPrediction<N>,
f: &mut dyn FnMut(&Isometry<N>, &dyn Shape<N>, &dyn ContactPreprocessor<N>),
)
fn map_part_and_preprocessor_at( &self, i: usize, m: &Isometry<N>, _prediction: &ContactPrediction<N>, f: &mut dyn FnMut(&Isometry<N>, &dyn Shape<N>, &dyn ContactPreprocessor<N>), )
Applies a transformation matrix and a function to each sub-shape of this concave
shape.
Source§impl<N: RealField + Copy> HasBoundingVolume<N, AABB<N>> for Compound<N>
impl<N: RealField + Copy> HasBoundingVolume<N, AABB<N>> for Compound<N>
Source§fn bounding_volume(&self, m: &Isometry<N>) -> AABB<N>
fn bounding_volume(&self, m: &Isometry<N>) -> AABB<N>
The bounding volume of
self
transformed by m
.Source§fn local_bounding_volume(&self) -> AABB<N>
fn local_bounding_volume(&self) -> AABB<N>
The bounding volume of
self
.Source§impl<N: RealField + Copy> HasBoundingVolume<N, BoundingSphere<N>> for Compound<N>
impl<N: RealField + Copy> HasBoundingVolume<N, BoundingSphere<N>> for Compound<N>
Source§fn bounding_volume(&self, m: &Isometry<N>) -> BoundingSphere<N>
fn bounding_volume(&self, m: &Isometry<N>) -> BoundingSphere<N>
The bounding volume of
self
transformed by m
.Source§fn local_bounding_volume(&self) -> BoundingSphere<N>
fn local_bounding_volume(&self) -> BoundingSphere<N>
The bounding volume of
self
.Source§impl<N: RealField + Copy> PointQuery<N> for Compound<N>
impl<N: RealField + Copy> PointQuery<N> for Compound<N>
Source§fn project_point(
&self,
m: &Isometry<N>,
point: &Point<N>,
solid: bool,
) -> PointProjection<N>
fn project_point( &self, m: &Isometry<N>, point: &Point<N>, solid: bool, ) -> PointProjection<N>
Projects a point on
self
transformed by m
.Source§fn project_point_with_feature(
&self,
_: &Isometry<N>,
_: &Point<N>,
) -> (PointProjection<N>, FeatureId)
fn project_point_with_feature( &self, _: &Isometry<N>, _: &Point<N>, ) -> (PointProjection<N>, FeatureId)
Projects a point on the boundary of
self
transformed by m
and retuns the id of the
feature the point was projected on.Source§impl<N: RealField + Copy> RayCast<N> for Compound<N>
impl<N: RealField + Copy> RayCast<N> for Compound<N>
Source§fn toi_with_ray(
&self,
m: &Isometry<N>,
ray: &Ray<N>,
max_toi: N,
solid: bool,
) -> Option<N>
fn toi_with_ray( &self, m: &Isometry<N>, ray: &Ray<N>, max_toi: N, solid: bool, ) -> Option<N>
Computes the time of impact between this transform shape and a ray.
Source§fn toi_and_normal_with_ray(
&self,
m: &Isometry<N>,
ray: &Ray<N>,
max_toi: N,
solid: bool,
) -> Option<RayIntersection<N>>
fn toi_and_normal_with_ray( &self, m: &Isometry<N>, ray: &Ray<N>, max_toi: N, solid: bool, ) -> Option<RayIntersection<N>>
Computes the time of impact, and normal between this transformed shape and a ray.
Source§fn toi_and_normal_and_uv_with_ray(
&self,
m: &Isometry<N>,
ray: &Ray<N>,
max_toi: N,
solid: bool,
) -> Option<RayIntersection<N>>
fn toi_and_normal_and_uv_with_ray( &self, m: &Isometry<N>, ray: &Ray<N>, max_toi: N, solid: bool, ) -> Option<RayIntersection<N>>
Computes time of impact, normal, and texture coordinates (uv) between this transformed
shape and a ray.
Source§impl<N: RealField + Copy> Shape<N> for Compound<N>
impl<N: RealField + Copy> Shape<N> for Compound<N>
Source§fn local_aabb(&self) -> AABB<N>
fn local_aabb(&self) -> AABB<N>
The AABB of
self
.Source§fn bounding_sphere(&self, m: &Isometry<N>) -> BoundingSphere<N>
fn bounding_sphere(&self, m: &Isometry<N>) -> BoundingSphere<N>
The bounding sphere of
self
transformed by m
.Source§fn as_ray_cast(&self) -> Option<&dyn RayCast<N>>
fn as_ray_cast(&self) -> Option<&dyn RayCast<N>>
The
RayCast
implementation of self
.Source§fn as_point_query(&self) -> Option<&dyn PointQuery<N>>
fn as_point_query(&self) -> Option<&dyn PointQuery<N>>
The
PointQuery
implementation of self
.Source§fn as_composite_shape(&self) -> Option<&dyn CompositeShape<N>>
fn as_composite_shape(&self) -> Option<&dyn CompositeShape<N>>
The composite shape representation of
self
if applicable.Source§fn is_composite_shape(&self) -> bool
fn is_composite_shape(&self) -> bool
Whether
self
uses a composite shape-based representation.Source§fn tangent_cone_contains_dir(
&self,
feature: FeatureId,
m: &Isometry<N>,
_: Option<&[N]>,
dir: &Unit<Vector<N>>,
) -> bool
fn tangent_cone_contains_dir( &self, feature: FeatureId, m: &Isometry<N>, _: Option<&[N]>, dir: &Unit<Vector<N>>, ) -> bool
Check if if the feature
_feature
of the i-th
subshape of self
transformed by m
has a tangent
cone that contains dir
at the point pt
.Source§fn subshape_containing_feature(&self, feature: FeatureId) -> usize
fn subshape_containing_feature(&self, feature: FeatureId) -> usize
Returns the id of the subshape containing the specified feature. Read more
Source§fn local_bounding_sphere(&self) -> BoundingSphere<N>
fn local_bounding_sphere(&self) -> BoundingSphere<N>
The bounding sphere of
self
.Source§fn as_convex_polyhedron(&self) -> Option<&dyn ConvexPolyhedron<N>>
fn as_convex_polyhedron(&self) -> Option<&dyn ConvexPolyhedron<N>>
The convex polyhedron representation of
self
if applicable.Source§fn as_support_map(&self) -> Option<&dyn SupportMap<N>>
fn as_support_map(&self) -> Option<&dyn SupportMap<N>>
The support mapping of
self
if applicable.Source§fn as_deformable_shape(&self) -> Option<&dyn DeformableShape<N>>
fn as_deformable_shape(&self) -> Option<&dyn DeformableShape<N>>
The deformable shape representation of
self
if applicable.Source§fn as_deformable_shape_mut(&mut self) -> Option<&mut dyn DeformableShape<N>>
fn as_deformable_shape_mut(&mut self) -> Option<&mut dyn DeformableShape<N>>
The mutable deformable shape representation of
self
if applicable.Source§fn is_convex_polyhedron(&self) -> bool
fn is_convex_polyhedron(&self) -> bool
Whether
self
uses a convex polyhedron representation.Source§fn is_support_map(&self) -> bool
fn is_support_map(&self) -> bool
Whether
self
uses a support-mapping based representation.Source§fn is_deformable_shape(&self) -> bool
fn is_deformable_shape(&self) -> bool
Whether
self
uses a composite shape-based representation.Auto Trait Implementations§
impl<N> Freeze for Compound<N>
impl<N> !RefUnwindSafe for Compound<N>
impl<N> Send for Compound<N>
impl<N> Sync for Compound<N>
impl<N> Unpin for Compound<N>where
N: Unpin,
impl<N> !UnwindSafe for Compound<N>
Blanket Implementations§
Source§impl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
Source§fn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
Mutably borrows from an owned value. Read more
Source§impl<T> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
Source§impl<T> Downcast for Twhere
T: Any,
impl<T> Downcast for Twhere
T: Any,
Source§fn into_any(self: Box<T>) -> Box<dyn Any>
fn into_any(self: Box<T>) -> Box<dyn Any>
Convert
Box<dyn Trait>
(where Trait: Downcast
) to Box<dyn Any>
. Box<dyn Any>
can
then be further downcast
into Box<ConcreteType>
where ConcreteType
implements Trait
.Source§fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
Convert
Rc<Trait>
(where Trait: Downcast
) to Rc<Any>
. Rc<Any>
can then be
further downcast
into Rc<ConcreteType>
where ConcreteType
implements Trait
.Source§fn as_any(&self) -> &(dyn Any + 'static)
fn as_any(&self) -> &(dyn Any + 'static)
Convert
&Trait
(where Trait: Downcast
) to &Any
. This is needed since Rust cannot
generate &Any
’s vtable from &Trait
’s.Source§fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
Convert
&mut Trait
(where Trait: Downcast
) to &Any
. This is needed since Rust cannot
generate &mut Any
’s vtable from &mut Trait
’s.Source§impl<T> DowncastSync for T
impl<T> DowncastSync for T
Source§impl<SS, SP> SupersetOf<SS> for SPwhere
SS: SubsetOf<SP>,
impl<SS, SP> SupersetOf<SS> for SPwhere
SS: SubsetOf<SP>,
Source§fn to_subset(&self) -> Option<SS>
fn to_subset(&self) -> Option<SS>
The inverse inclusion map: attempts to construct
self
from the equivalent element of its
superset. Read moreSource§fn is_in_subset(&self) -> bool
fn is_in_subset(&self) -> bool
Checks if
self
is actually part of its subset T
(and can be converted to it).Source§fn to_subset_unchecked(&self) -> SS
fn to_subset_unchecked(&self) -> SS
Use with care! Same as
self.to_subset
but without any property checks. Always succeeds.Source§fn from_subset(element: &SS) -> SP
fn from_subset(element: &SS) -> SP
The inclusion map: converts
self
to the equivalent element of its superset.