pub struct MultiPoint<T = f64>(pub Vec<Point<T>>)
where
T: CoordNum;Expand description
A collection of Points. Can
be created from a Vec of Points, or from an
Iterator which yields Points. Iterating over this
object yields the component Points.
§Semantics
The interior and the boundary are the union of the
interior and the boundary of the constituent points. In
particular, the boundary of a MultiPoint is always
empty.
§Examples
Iterating over a MultiPoint yields the Points inside.
use geo_types::{MultiPoint, Point};
let points: MultiPoint<_> = vec![(0., 0.), (1., 2.)].into();
for point in points {
println!("Point x = {}, y = {}", point.x(), point.y());
}Tuple Fields§
§0: Vec<Point<T>>Implementations§
Source§impl<T> MultiPoint<T>where
T: CoordNum,
impl<T> MultiPoint<T>where
T: CoordNum,
Sourcepub fn new(value: Vec<Point<T>>) -> MultiPoint<T>
pub fn new(value: Vec<Point<T>>) -> MultiPoint<T>
Returns a MultiPoint with the given Points as elements
Sourcepub fn empty() -> MultiPoint<T>
pub fn empty() -> MultiPoint<T>
Returns an empty MultiPoint
pub fn len(&self) -> usize
pub fn is_empty(&self) -> bool
pub fn iter(&self) -> impl Iterator<Item = &Point<T>>
pub fn iter_mut(&mut self) -> impl Iterator<Item = &mut Point<T>>
Trait Implementations§
Source§impl<T> AbsDiffEq for MultiPoint<T>
impl<T> AbsDiffEq for MultiPoint<T>
Source§fn abs_diff_eq(
&self,
other: &MultiPoint<T>,
epsilon: <MultiPoint<T> as AbsDiffEq>::Epsilon,
) -> bool
fn abs_diff_eq( &self, other: &MultiPoint<T>, epsilon: <MultiPoint<T> as AbsDiffEq>::Epsilon, ) -> bool
Equality assertion with an absolute limit.
§Examples
use geo_types::MultiPoint;
use geo_types::point;
let a = MultiPoint::new(vec![point![x: 0., y: 0.], point![x: 10., y: 10.]]);
let b = MultiPoint::new(vec![point![x: 0., y: 0.], point![x: 10.001, y: 10.]]);
approx::abs_diff_eq!(a, b, epsilon=0.1);Source§fn default_epsilon() -> <MultiPoint<T> as AbsDiffEq>::Epsilon
fn default_epsilon() -> <MultiPoint<T> as AbsDiffEq>::Epsilon
Source§fn abs_diff_ne(&self, other: &Rhs, epsilon: Self::Epsilon) -> bool
fn abs_diff_ne(&self, other: &Rhs, epsilon: Self::Epsilon) -> bool
AbsDiffEq::abs_diff_eq.Source§impl<T> Area<T> for MultiPoint<T>where
T: CoordNum,
impl<T> Area<T> for MultiPoint<T>where
T: CoordNum,
fn signed_area(&self) -> T
fn unsigned_area(&self) -> T
Source§impl<T> BoundingRect<T> for MultiPoint<T>where
T: CoordNum,
impl<T> BoundingRect<T> for MultiPoint<T>where
T: CoordNum,
Source§impl<F: BoolOpsNum + 'static> Buffer for MultiPoint<F>
impl<F: BoolOpsNum + 'static> Buffer for MultiPoint<F>
type Scalar = F
Source§fn buffer_with_style(
&self,
style: BufferStyle<Self::Scalar>,
) -> MultiPolygon<Self::Scalar>
fn buffer_with_style( &self, style: BufferStyle<Self::Scalar>, ) -> MultiPolygon<Self::Scalar>
Source§impl<T> Centroid for MultiPoint<T>where
T: GeoFloat,
impl<T> Centroid for MultiPoint<T>where
T: GeoFloat,
Source§fn centroid(&self) -> Self::Output
fn centroid(&self) -> Self::Output
The Centroid of a MultiPoint is the mean of all Points
§Example
use geo::Centroid;
use geo::{MultiPoint, Point};
let empty: Vec<Point> = Vec::new();
let empty_multi_points: MultiPoint<_> = empty.into();
assert_eq!(empty_multi_points.centroid(), None);
let points: MultiPoint<_> = vec![(5., 1.), (1., 3.), (3., 2.)].into();
assert_eq!(points.centroid(), Some(Point::new(3., 2.)));type Output = Option<Point<T>>
Source§impl<T> ChamberlainDuquetteArea<T> for MultiPoint<T>where
T: CoordFloat,
impl<T> ChamberlainDuquetteArea<T> for MultiPoint<T>where
T: CoordFloat,
fn chamberlain_duquette_signed_area(&self) -> T
fn chamberlain_duquette_unsigned_area(&self) -> T
Source§impl<T> Clone for MultiPoint<T>
impl<T> Clone for MultiPoint<T>
Source§fn clone(&self) -> MultiPoint<T>
fn clone(&self) -> MultiPoint<T>
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source. Read moreSource§impl<F: GeoFloat> ClosestPoint<F> for MultiPoint<F>
impl<F: GeoFloat> ClosestPoint<F> for MultiPoint<F>
Source§fn closest_point(&self, p: &Point<F>) -> Closest<F>
fn closest_point(&self, p: &Point<F>) -> Closest<F>
self and p.Source§impl<T> ConcaveHull for MultiPoint<T>
impl<T> ConcaveHull for MultiPoint<T>
Source§impl<T> Contains<GeometryCollection<T>> for MultiPoint<T>where
T: GeoFloat,
impl<T> Contains<GeometryCollection<T>> for MultiPoint<T>where
T: GeoFloat,
fn contains(&self, target: &GeometryCollection<T>) -> bool
Source§impl<T> Contains<LineString<T>> for MultiPoint<T>where
T: GeoFloat,
impl<T> Contains<LineString<T>> for MultiPoint<T>where
T: GeoFloat,
fn contains(&self, target: &LineString<T>) -> bool
Source§impl<T> Contains<MultiLineString<T>> for MultiPoint<T>where
T: GeoFloat,
impl<T> Contains<MultiLineString<T>> for MultiPoint<T>where
T: GeoFloat,
fn contains(&self, target: &MultiLineString<T>) -> bool
Source§impl<T> Contains<MultiPoint<T>> for Geometry<T>where
T: GeoFloat,
impl<T> Contains<MultiPoint<T>> for Geometry<T>where
T: GeoFloat,
fn contains(&self, multi_point: &MultiPoint<T>) -> bool
Source§impl<T> Contains<MultiPoint<T>> for GeometryCollection<T>where
T: GeoFloat,
impl<T> Contains<MultiPoint<T>> for GeometryCollection<T>where
T: GeoFloat,
fn contains(&self, target: &MultiPoint<T>) -> bool
Source§impl<T> Contains<MultiPoint<T>> for Line<T>where
T: GeoNum,
impl<T> Contains<MultiPoint<T>> for Line<T>where
T: GeoNum,
fn contains(&self, multi_point: &MultiPoint<T>) -> bool
Source§impl<T> Contains<MultiPoint<T>> for LineString<T>where
T: GeoFloat,
impl<T> Contains<MultiPoint<T>> for LineString<T>where
T: GeoFloat,
fn contains(&self, target: &MultiPoint<T>) -> bool
Source§impl<T> Contains<MultiPoint<T>> for MultiLineString<T>where
T: GeoFloat,
impl<T> Contains<MultiPoint<T>> for MultiLineString<T>where
T: GeoFloat,
fn contains(&self, target: &MultiPoint<T>) -> bool
Source§impl<T: GeoNum> Contains<MultiPoint<T>> for MultiPolygon<T>
impl<T: GeoNum> Contains<MultiPoint<T>> for MultiPolygon<T>
fn contains(&self, rhs: &MultiPoint<T>) -> bool
Source§impl<T> Contains<MultiPoint<T>> for Point<T>where
T: CoordNum,
impl<T> Contains<MultiPoint<T>> for Point<T>where
T: CoordNum,
fn contains(&self, multi_point: &MultiPoint<T>) -> bool
Source§impl<T> Contains<MultiPoint<T>> for Polygon<T>where
T: GeoNum,
impl<T> Contains<MultiPoint<T>> for Polygon<T>where
T: GeoNum,
fn contains(&self, mp: &MultiPoint<T>) -> bool
Source§impl<T> Contains<MultiPoint<T>> for Rect<T>where
T: GeoFloat,
impl<T> Contains<MultiPoint<T>> for Rect<T>where
T: GeoFloat,
fn contains(&self, target: &MultiPoint<T>) -> bool
Source§impl<T> Contains<MultiPoint<T>> for Triangle<T>where
T: GeoFloat,
impl<T> Contains<MultiPoint<T>> for Triangle<T>where
T: GeoFloat,
fn contains(&self, target: &MultiPoint<T>) -> bool
Source§impl<T> Contains<MultiPolygon<T>> for MultiPoint<T>where
T: GeoFloat,
impl<T> Contains<MultiPolygon<T>> for MultiPoint<T>where
T: GeoFloat,
fn contains(&self, target: &MultiPolygon<T>) -> bool
Source§impl<T> Contains for MultiPoint<T>where
T: CoordNum,
impl<T> Contains for MultiPoint<T>where
T: CoordNum,
fn contains(&self, multi_point: &MultiPoint<T>) -> bool
Source§impl<T> CoordinatePosition for MultiPoint<T>where
T: GeoNum,
impl<T> CoordinatePosition for MultiPoint<T>where
T: GeoNum,
Source§impl<T: CoordNum> CoordsIter for MultiPoint<T>
impl<T: CoordNum> CoordsIter for MultiPoint<T>
Source§fn coords_count(&self) -> usize
fn coords_count(&self) -> usize
Return the number of coordinates in the MultiPoint.
type Iter<'a> = Flatten<MapCoordsIter<'a, T, Iter<'a, Point<T>>, Point<T>>> where T: 'a
type ExteriorIter<'a> = <MultiPoint<T> as CoordsIter>::Iter<'a> where T: 'a
type Scalar = T
Source§fn coords_iter(&self) -> Self::Iter<'_>
fn coords_iter(&self) -> Self::Iter<'_>
Source§fn exterior_coords_iter(&self) -> Self::ExteriorIter<'_>
fn exterior_coords_iter(&self) -> Self::ExteriorIter<'_>
Source§impl<T> Debug for MultiPoint<T>where
T: CoordNum,
impl<T> Debug for MultiPoint<T>where
T: CoordNum,
Source§impl<F> Distance<F, &Geometry<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
impl<F> Distance<F, &Geometry<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
Source§fn distance(&self, a: &Geometry<F>, b: &MultiPoint<F>) -> F
fn distance(&self, a: &Geometry<F>, b: &MultiPoint<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F> Distance<F, &GeometryCollection<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
impl<F> Distance<F, &GeometryCollection<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
Source§fn distance(&self, a: &GeometryCollection<F>, b: &MultiPoint<F>) -> F
fn distance(&self, a: &GeometryCollection<F>, b: &MultiPoint<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F> Distance<F, &Line<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
impl<F> Distance<F, &Line<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
Source§fn distance(&self, a: &Line<F>, b: &MultiPoint<F>) -> F
fn distance(&self, a: &Line<F>, b: &MultiPoint<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F> Distance<F, &LineString<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
impl<F> Distance<F, &LineString<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
Source§fn distance(&self, a: &LineString<F>, b: &MultiPoint<F>) -> F
fn distance(&self, a: &LineString<F>, b: &MultiPoint<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F> Distance<F, &MultiLineString<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
impl<F> Distance<F, &MultiLineString<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
Source§fn distance(&self, a: &MultiLineString<F>, b: &MultiPoint<F>) -> F
fn distance(&self, a: &MultiLineString<F>, b: &MultiPoint<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Geometry<F>> for Euclidean
impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Geometry<F>> for Euclidean
Source§fn distance(&self, origin: &MultiPoint<F>, destination: &Geometry<F>) -> F
fn distance(&self, origin: &MultiPoint<F>, destination: &Geometry<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &GeometryCollection<F>> for Euclidean
impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &GeometryCollection<F>> for Euclidean
Source§fn distance(
&self,
iter_geometry: &MultiPoint<F>,
to_geometry: &GeometryCollection<F>,
) -> F
fn distance( &self, iter_geometry: &MultiPoint<F>, to_geometry: &GeometryCollection<F>, ) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Line<F>> for Euclidean
impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Line<F>> for Euclidean
Source§fn distance(&self, iter_geometry: &MultiPoint<F>, to_geometry: &Line<F>) -> F
fn distance(&self, iter_geometry: &MultiPoint<F>, to_geometry: &Line<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &LineString<F>> for Euclidean
impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &LineString<F>> for Euclidean
Source§fn distance(
&self,
iter_geometry: &MultiPoint<F>,
to_geometry: &LineString<F>,
) -> F
fn distance( &self, iter_geometry: &MultiPoint<F>, to_geometry: &LineString<F>, ) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &MultiLineString<F>> for Euclidean
impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &MultiLineString<F>> for Euclidean
Source§fn distance(
&self,
iter_geometry: &MultiPoint<F>,
to_geometry: &MultiLineString<F>,
) -> F
fn distance( &self, iter_geometry: &MultiPoint<F>, to_geometry: &MultiLineString<F>, ) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &MultiPoint<F>> for Euclidean
impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &MultiPoint<F>> for Euclidean
Source§fn distance(&self, origin: &MultiPoint<F>, destination: &MultiPoint<F>) -> F
fn distance(&self, origin: &MultiPoint<F>, destination: &MultiPoint<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &MultiPolygon<F>> for Euclidean
impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &MultiPolygon<F>> for Euclidean
Source§fn distance(
&self,
iter_geometry: &MultiPoint<F>,
to_geometry: &MultiPolygon<F>,
) -> F
fn distance( &self, iter_geometry: &MultiPoint<F>, to_geometry: &MultiPolygon<F>, ) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Point<F>> for Euclidean
impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Point<F>> for Euclidean
Source§fn distance(&self, iter_geometry: &MultiPoint<F>, to_geometry: &Point<F>) -> F
fn distance(&self, iter_geometry: &MultiPoint<F>, to_geometry: &Point<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Polygon<F>> for Euclidean
impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Polygon<F>> for Euclidean
Source§fn distance(&self, iter_geometry: &MultiPoint<F>, to_geometry: &Polygon<F>) -> F
fn distance(&self, iter_geometry: &MultiPoint<F>, to_geometry: &Polygon<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Rect<F>> for Euclidean
impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Rect<F>> for Euclidean
Source§fn distance(&self, iter_geometry: &MultiPoint<F>, to_geometry: &Rect<F>) -> F
fn distance(&self, iter_geometry: &MultiPoint<F>, to_geometry: &Rect<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Triangle<F>> for Euclidean
impl<F: GeoFloat> Distance<F, &MultiPoint<F>, &Triangle<F>> for Euclidean
Source§fn distance(
&self,
iter_geometry: &MultiPoint<F>,
to_geometry: &Triangle<F>,
) -> F
fn distance( &self, iter_geometry: &MultiPoint<F>, to_geometry: &Triangle<F>, ) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F> Distance<F, &MultiPolygon<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
impl<F> Distance<F, &MultiPolygon<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
Source§fn distance(&self, a: &MultiPolygon<F>, b: &MultiPoint<F>) -> F
fn distance(&self, a: &MultiPolygon<F>, b: &MultiPoint<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F> Distance<F, &Point<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
impl<F> Distance<F, &Point<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
Source§fn distance(&self, a: &Point<F>, b: &MultiPoint<F>) -> F
fn distance(&self, a: &Point<F>, b: &MultiPoint<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F> Distance<F, &Polygon<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
impl<F> Distance<F, &Polygon<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
Source§fn distance(&self, a: &Polygon<F>, b: &MultiPoint<F>) -> F
fn distance(&self, a: &Polygon<F>, b: &MultiPoint<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F> Distance<F, &Rect<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
impl<F> Distance<F, &Rect<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
Source§fn distance(&self, a: &Rect<F>, b: &MultiPoint<F>) -> F
fn distance(&self, a: &Rect<F>, b: &MultiPoint<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<F> Distance<F, &Triangle<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
impl<F> Distance<F, &Triangle<F>, &MultiPoint<F>> for Euclideanwhere
F: GeoFloat,
Source§fn distance(&self, a: &Triangle<F>, b: &MultiPoint<F>) -> F
fn distance(&self, a: &Triangle<F>, b: &MultiPoint<F>) -> F
Point to Point
is supported.
See specific implementations for details. Read moreSource§impl<T> EuclideanDistance<T> for MultiPoint<T>
impl<T> EuclideanDistance<T> for MultiPoint<T>
Source§fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, Geometry<T>> for MultiPoint<T>
impl<T> EuclideanDistance<T, Geometry<T>> for MultiPoint<T>
Source§fn euclidean_distance(&self, geom: &Geometry<T>) -> T
fn euclidean_distance(&self, geom: &Geometry<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, GeometryCollection<T>> for MultiPoint<T>
impl<T> EuclideanDistance<T, GeometryCollection<T>> for MultiPoint<T>
Source§fn euclidean_distance(&self, target: &GeometryCollection<T>) -> T
fn euclidean_distance(&self, target: &GeometryCollection<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, Line<T>> for MultiPoint<T>
impl<T> EuclideanDistance<T, Line<T>> for MultiPoint<T>
Source§fn euclidean_distance(&self, target: &Line<T>) -> T
fn euclidean_distance(&self, target: &Line<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, LineString<T>> for MultiPoint<T>
impl<T> EuclideanDistance<T, LineString<T>> for MultiPoint<T>
Source§fn euclidean_distance(&self, target: &LineString<T>) -> T
fn euclidean_distance(&self, target: &LineString<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiLineString<T>> for MultiPoint<T>
impl<T> EuclideanDistance<T, MultiLineString<T>> for MultiPoint<T>
Source§fn euclidean_distance(&self, target: &MultiLineString<T>) -> T
fn euclidean_distance(&self, target: &MultiLineString<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiPoint<T>> for Geometry<T>
impl<T> EuclideanDistance<T, MultiPoint<T>> for Geometry<T>
Source§fn euclidean_distance(&self, other: &MultiPoint<T>) -> T
fn euclidean_distance(&self, other: &MultiPoint<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiPoint<T>> for GeometryCollection<T>
impl<T> EuclideanDistance<T, MultiPoint<T>> for GeometryCollection<T>
Source§fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiPoint<T>> for Line<T>
impl<T> EuclideanDistance<T, MultiPoint<T>> for Line<T>
Source§fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiPoint<T>> for LineString<T>
impl<T> EuclideanDistance<T, MultiPoint<T>> for LineString<T>
Source§fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiPoint<T>> for MultiLineString<T>
impl<T> EuclideanDistance<T, MultiPoint<T>> for MultiLineString<T>
Source§fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiPoint<T>> for MultiPolygon<T>
impl<T> EuclideanDistance<T, MultiPoint<T>> for MultiPolygon<T>
Source§fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiPoint<T>> for Point<T>
impl<T> EuclideanDistance<T, MultiPoint<T>> for Point<T>
Source§fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiPoint<T>> for Polygon<T>
impl<T> EuclideanDistance<T, MultiPoint<T>> for Polygon<T>
Source§fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
fn euclidean_distance(&self, target: &MultiPoint<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiPoint<T>> for Rect<T>
impl<T> EuclideanDistance<T, MultiPoint<T>> for Rect<T>
Source§fn euclidean_distance(&self, other: &MultiPoint<T>) -> T
fn euclidean_distance(&self, other: &MultiPoint<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiPoint<T>> for Triangle<T>
impl<T> EuclideanDistance<T, MultiPoint<T>> for Triangle<T>
Source§fn euclidean_distance(&self, other: &MultiPoint<T>) -> T
fn euclidean_distance(&self, other: &MultiPoint<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, MultiPolygon<T>> for MultiPoint<T>
impl<T> EuclideanDistance<T, MultiPolygon<T>> for MultiPoint<T>
Source§fn euclidean_distance(&self, target: &MultiPolygon<T>) -> T
fn euclidean_distance(&self, target: &MultiPolygon<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, Point<T>> for MultiPoint<T>
impl<T> EuclideanDistance<T, Point<T>> for MultiPoint<T>
Source§fn euclidean_distance(&self, target: &Point<T>) -> T
fn euclidean_distance(&self, target: &Point<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, Polygon<T>> for MultiPoint<T>
impl<T> EuclideanDistance<T, Polygon<T>> for MultiPoint<T>
Source§fn euclidean_distance(&self, target: &Polygon<T>) -> T
fn euclidean_distance(&self, target: &Polygon<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, Rect<T>> for MultiPoint<T>
impl<T> EuclideanDistance<T, Rect<T>> for MultiPoint<T>
Source§fn euclidean_distance(&self, other: &Rect<T>) -> T
fn euclidean_distance(&self, other: &Rect<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<T> EuclideanDistance<T, Triangle<T>> for MultiPoint<T>
impl<T> EuclideanDistance<T, Triangle<T>> for MultiPoint<T>
Source§fn euclidean_distance(&self, other: &Triangle<T>) -> T
fn euclidean_distance(&self, other: &Triangle<T>) -> T
Euclidean.distance method from the Distance trait insteadSource§impl<'a, F: GeoFloat> From<&'a MultiPoint<F>> for PreparedGeometry<'a, &'a MultiPoint<F>, F>
impl<'a, F: GeoFloat> From<&'a MultiPoint<F>> for PreparedGeometry<'a, &'a MultiPoint<F>, F>
Source§fn from(geometry: &'a MultiPoint<F>) -> Self
fn from(geometry: &'a MultiPoint<F>) -> Self
Source§impl<T, IP> From<IP> for MultiPoint<T>
impl<T, IP> From<IP> for MultiPoint<T>
Source§fn from(x: IP) -> MultiPoint<T>
fn from(x: IP) -> MultiPoint<T>
Convert a single Point (or something which can be converted to a
Point) into a one-member MultiPoint
Source§impl<F: GeoFloat> From<MultiPoint<F>> for PreparedGeometry<'static, MultiPoint<F>, F>
impl<F: GeoFloat> From<MultiPoint<F>> for PreparedGeometry<'static, MultiPoint<F>, F>
Source§fn from(geometry: MultiPoint<F>) -> Self
fn from(geometry: MultiPoint<F>) -> Self
Source§impl<T> From<MultiPoint<T>> for Geometry<T>where
T: CoordNum,
impl<T> From<MultiPoint<T>> for Geometry<T>where
T: CoordNum,
Source§fn from(x: MultiPoint<T>) -> Geometry<T>
fn from(x: MultiPoint<T>) -> Geometry<T>
Source§impl<T, IP> From<Vec<IP>> for MultiPoint<T>
impl<T, IP> From<Vec<IP>> for MultiPoint<T>
Source§fn from(v: Vec<IP>) -> MultiPoint<T>
fn from(v: Vec<IP>) -> MultiPoint<T>
Convert a Vec of Points (or Vec of things which can be converted
to a Point) into a MultiPoint.
Source§impl<T, IP> FromIterator<IP> for MultiPoint<T>
impl<T, IP> FromIterator<IP> for MultiPoint<T>
Source§fn from_iter<I>(iter: I) -> MultiPoint<T>where
I: IntoIterator<Item = IP>,
fn from_iter<I>(iter: I) -> MultiPoint<T>where
I: IntoIterator<Item = IP>,
Collect the results of a Point iterator into a MultiPoint
Source§impl GeodesicArea<f64> for MultiPoint
impl GeodesicArea<f64> for MultiPoint
Source§fn geodesic_perimeter(&self) -> f64
fn geodesic_perimeter(&self) -> f64
Source§fn geodesic_area_signed(&self) -> f64
fn geodesic_area_signed(&self) -> f64
Source§fn geodesic_area_unsigned(&self) -> f64
fn geodesic_area_unsigned(&self) -> f64
Source§impl<C: CoordNum> HasDimensions for MultiPoint<C>
impl<C: CoordNum> HasDimensions for MultiPoint<C>
Source§fn dimensions(&self) -> Dimensions
fn dimensions(&self) -> Dimensions
Rects are 2-dimensional, but it’s possible to create degenerate Rects which
have either 1 or 0 dimensions. Read moreSource§fn boundary_dimensions(&self) -> Dimensions
fn boundary_dimensions(&self) -> Dimensions
Geometry’s boundary, as used by OGC-SFA. Read moreSource§impl<T> Hash for MultiPoint<T>
impl<T> Hash for MultiPoint<T>
Source§impl<T> HaversineClosestPoint<T> for MultiPoint<T>where
T: GeoFloat + FromPrimitive,
impl<T> HaversineClosestPoint<T> for MultiPoint<T>where
T: GeoFloat + FromPrimitive,
fn haversine_closest_point(&self, from: &Point<T>) -> Closest<T>
Source§impl<T> InteriorPoint for MultiPoint<T>where
T: GeoFloat,
use geo::InteriorPoint;
use geo::{MultiPoint, Point};
let empty: Vec<Point> = Vec::new();
let empty_multi_points: MultiPoint<_> = empty.into();
assert_eq!(empty_multi_points.interior_point(), None);
let points: MultiPoint<_> = vec![(5., 1.), (1., 3.), (3., 2.)].into();
assert_eq!(points.interior_point(), Some(Point::new(3., 2.)));
impl<T> InteriorPoint for MultiPoint<T>where
T: GeoFloat,
use geo::InteriorPoint;
use geo::{MultiPoint, Point};
let empty: Vec<Point> = Vec::new();
let empty_multi_points: MultiPoint<_> = empty.into();
assert_eq!(empty_multi_points.interior_point(), None);
let points: MultiPoint<_> = vec![(5., 1.), (1., 3.), (3., 2.)].into();
assert_eq!(points.interior_point(), Some(Point::new(3., 2.)));Source§impl<T, G> Intersects<G> for MultiPoint<T>
impl<T, G> Intersects<G> for MultiPoint<T>
fn intersects(&self, rhs: &G) -> bool
Source§impl<T> Intersects<MultiPoint<T>> for Coord<T>
impl<T> Intersects<MultiPoint<T>> for Coord<T>
fn intersects(&self, rhs: &MultiPoint<T>) -> bool
Source§impl<T> Intersects<MultiPoint<T>> for Line<T>
impl<T> Intersects<MultiPoint<T>> for Line<T>
fn intersects(&self, rhs: &MultiPoint<T>) -> bool
Source§impl<T> Intersects<MultiPoint<T>> for LineString<T>where
T: GeoNum,
impl<T> Intersects<MultiPoint<T>> for LineString<T>where
T: GeoNum,
fn intersects(&self, rhs: &MultiPoint<T>) -> bool
Source§impl<T> Intersects<MultiPoint<T>> for Polygon<T>
impl<T> Intersects<MultiPoint<T>> for Polygon<T>
fn intersects(&self, rhs: &MultiPoint<T>) -> bool
Source§impl<T> Intersects<MultiPoint<T>> for Rect<T>
impl<T> Intersects<MultiPoint<T>> for Rect<T>
fn intersects(&self, rhs: &MultiPoint<T>) -> bool
Source§impl<T> Intersects<MultiPoint<T>> for Triangle<T>
impl<T> Intersects<MultiPoint<T>> for Triangle<T>
fn intersects(&self, rhs: &MultiPoint<T>) -> bool
Source§impl<'a, T> IntoIterator for &'a MultiPoint<T>where
T: CoordNum,
impl<'a, T> IntoIterator for &'a MultiPoint<T>where
T: CoordNum,
Source§impl<'a, T> IntoIterator for &'a mut MultiPoint<T>where
T: CoordNum,
impl<'a, T> IntoIterator for &'a mut MultiPoint<T>where
T: CoordNum,
Source§impl<T> IntoIterator for MultiPoint<T>where
T: CoordNum,
Iterate over the Points in this MultiPoint.
impl<T> IntoIterator for MultiPoint<T>where
T: CoordNum,
Iterate over the Points in this MultiPoint.
Source§impl<'a, T> IntoParallelIterator for &'a MultiPoint<T>
impl<'a, T> IntoParallelIterator for &'a MultiPoint<T>
Source§fn into_par_iter(self) -> <&'a MultiPoint<T> as IntoParallelIterator>::Iter
fn into_par_iter(self) -> <&'a MultiPoint<T> as IntoParallelIterator>::Iter
self into a parallel iterator. Read moreSource§impl<'a, T> IntoParallelIterator for &'a mut MultiPoint<T>
impl<'a, T> IntoParallelIterator for &'a mut MultiPoint<T>
Source§fn into_par_iter(self) -> <&'a mut MultiPoint<T> as IntoParallelIterator>::Iter
fn into_par_iter(self) -> <&'a mut MultiPoint<T> as IntoParallelIterator>::Iter
self into a parallel iterator. Read moreSource§impl<T> IntoParallelIterator for MultiPoint<T>
impl<T> IntoParallelIterator for MultiPoint<T>
Source§impl<T> KNearestConcaveHull for MultiPoint<T>
impl<T> KNearestConcaveHull for MultiPoint<T>
Source§impl<T: CoordNum, NT: CoordNum> MapCoords<T, NT> for MultiPoint<T>
impl<T: CoordNum, NT: CoordNum> MapCoords<T, NT> for MultiPoint<T>
Source§impl<T: CoordNum> MapCoordsInPlace<T> for MultiPoint<T>
impl<T: CoordNum> MapCoordsInPlace<T> for MultiPoint<T>
Source§impl<T> OutlierDetection<T> for MultiPoint<T>
impl<T> OutlierDetection<T> for MultiPoint<T>
Source§fn outliers(&self, k_neighbours: usize) -> Vec<T>
fn outliers(&self, k_neighbours: usize) -> Vec<T>
k_neighbours specifies the number of neighbours to use for local outlier
classification. The paper linked above (see p. 100) suggests a k_neighbours value of 10 - 20
as a lower bound for “real-world”
data. Read moreSource§fn prepared_detector(&self) -> PreparedDetector<'_, T>
fn prepared_detector(&self) -> PreparedDetector<'_, T>
PreparedDetector can efficiently recompute outliers with different k_neigbhours values.Source§fn generate_ensemble(&self, bounds: RangeInclusive<usize>) -> Vec<Vec<T>>
fn generate_ensemble(&self, bounds: RangeInclusive<usize>) -> Vec<Vec<T>>
k_neighbours values between bounds,
generating an ensemble of LOF scores, which may be aggregated using e.g. min, max, or mean Read moreSource§fn ensemble_min(&self, bounds: RangeInclusive<usize>) -> Vec<T>
fn ensemble_min(&self, bounds: RangeInclusive<usize>) -> Vec<T>
Source§fn ensemble_max(&self, bounds: RangeInclusive<usize>) -> Vec<T>
fn ensemble_max(&self, bounds: RangeInclusive<usize>) -> Vec<T>
Source§impl<T> PartialEq for MultiPoint<T>
impl<T> PartialEq for MultiPoint<T>
Source§impl<F: GeoFloat> Relate<F> for MultiPoint<F>
impl<F: GeoFloat> Relate<F> for MultiPoint<F>
Source§fn geometry_graph(&self, arg_index: usize) -> GeometryGraph<'_, F>
fn geometry_graph(&self, arg_index: usize) -> GeometryGraph<'_, F>
fn relate(&self, other: &impl Relate<F>) -> IntersectionMatrixwhere
Self: Sized,
Source§impl<T> RelativeEq for MultiPoint<T>where
T: CoordNum + RelativeEq<Epsilon = T>,
impl<T> RelativeEq for MultiPoint<T>where
T: CoordNum + RelativeEq<Epsilon = T>,
Source§fn relative_eq(
&self,
other: &MultiPoint<T>,
epsilon: <MultiPoint<T> as AbsDiffEq>::Epsilon,
max_relative: <MultiPoint<T> as AbsDiffEq>::Epsilon,
) -> bool
fn relative_eq( &self, other: &MultiPoint<T>, epsilon: <MultiPoint<T> as AbsDiffEq>::Epsilon, max_relative: <MultiPoint<T> as AbsDiffEq>::Epsilon, ) -> bool
Equality assertion within a relative limit.
§Examples
use geo_types::MultiPoint;
use geo_types::point;
let a = MultiPoint::new(vec![point![x: 0., y: 0.], point![x: 10., y: 10.]]);
let b = MultiPoint::new(vec![point![x: 0., y: 0.], point![x: 10.001, y: 10.]]);
approx::assert_relative_eq!(a, b, max_relative=0.1)Source§fn default_max_relative() -> <MultiPoint<T> as AbsDiffEq>::Epsilon
fn default_max_relative() -> <MultiPoint<T> as AbsDiffEq>::Epsilon
Source§fn relative_ne(
&self,
other: &Rhs,
epsilon: Self::Epsilon,
max_relative: Self::Epsilon,
) -> bool
fn relative_ne( &self, other: &Rhs, epsilon: Self::Epsilon, max_relative: Self::Epsilon, ) -> bool
RelativeEq::relative_eq.Source§impl<T: CoordNum> RemoveRepeatedPoints<T> for MultiPoint<T>
impl<T: CoordNum> RemoveRepeatedPoints<T> for MultiPoint<T>
Source§fn remove_repeated_points(&self) -> Self
fn remove_repeated_points(&self) -> Self
Create a MultiPoint with repeated points removed.
Source§fn remove_repeated_points_mut(&mut self)
fn remove_repeated_points_mut(&mut self)
Remove repeated points from a MultiPoint inplace.
Source§impl<T> TryFrom<Geometry<T>> for MultiPoint<T>where
T: CoordNum,
Convert a Geometry enum into its inner type.
impl<T> TryFrom<Geometry<T>> for MultiPoint<T>where
T: CoordNum,
Convert a Geometry enum into its inner type.
Fails if the enum case does not match the type you are trying to convert it to.
Source§impl<T> UlpsEq for MultiPoint<T>
impl<T> UlpsEq for MultiPoint<T>
Source§fn default_max_ulps() -> u32
fn default_max_ulps() -> u32
Source§fn ulps_eq(
&self,
other: &MultiPoint<T>,
epsilon: <MultiPoint<T> as AbsDiffEq>::Epsilon,
max_ulps: u32,
) -> bool
fn ulps_eq( &self, other: &MultiPoint<T>, epsilon: <MultiPoint<T> as AbsDiffEq>::Epsilon, max_ulps: u32, ) -> bool
Source§impl<F: GeoFloat> Validation for MultiPoint<F>
impl<F: GeoFloat> Validation for MultiPoint<F>
type Error = InvalidMultiPoint
Source§fn visit_validation<T>(
&self,
handle_validation_error: Box<dyn FnMut(Self::Error) -> Result<(), T> + '_>,
) -> Result<(), T>
fn visit_validation<T>( &self, handle_validation_error: Box<dyn FnMut(Self::Error) -> Result<(), T> + '_>, ) -> Result<(), T>
impl<T> Eq for MultiPoint<T>
impl<T> StructuralPartialEq for MultiPoint<T>where
T: CoordNum,
Auto Trait Implementations§
impl<T> Freeze for MultiPoint<T>
impl<T> RefUnwindSafe for MultiPoint<T>where
T: RefUnwindSafe,
impl<T> Send for MultiPoint<T>where
T: Send,
impl<T> Sync for MultiPoint<T>where
T: Sync,
impl<T> Unpin for MultiPoint<T>where
T: Unpin,
impl<T> UnwindSafe for MultiPoint<T>where
T: UnwindSafe,
Blanket Implementations§
Source§impl<T, M> AffineOps<T> for M
impl<T, M> AffineOps<T> for M
Source§fn affine_transform(&self, transform: &AffineTransform<T>) -> M
fn affine_transform(&self, transform: &AffineTransform<T>) -> M
transform immutably, outputting a new geometry.Source§fn affine_transform_mut(&mut self, transform: &AffineTransform<T>)
fn affine_transform_mut(&mut self, transform: &AffineTransform<T>)
transform to mutate self.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
Source§impl<T> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
Source§impl<'a, T, G> ConvexHull<'a, T> for Gwhere
T: GeoNum,
G: CoordsIter<Scalar = T>,
impl<'a, T, G> ConvexHull<'a, T> for Gwhere
T: GeoNum,
G: CoordsIter<Scalar = T>,
Source§impl<'a, T, G> Extremes<'a, T> for Gwhere
G: CoordsIter<Scalar = T>,
T: CoordNum,
impl<'a, T, G> Extremes<'a, T> for Gwhere
G: CoordsIter<Scalar = T>,
T: CoordNum,
Source§impl<T, G> HausdorffDistance<T> for Gwhere
T: GeoFloat,
G: CoordsIter<Scalar = T>,
impl<T, G> HausdorffDistance<T> for Gwhere
T: GeoFloat,
G: CoordsIter<Scalar = T>,
fn hausdorff_distance<Rhs>(&self, rhs: &Rhs) -> Twhere
Rhs: CoordsIter<Scalar = T>,
Source§impl<T> IntoEither for T
impl<T> IntoEither for T
Source§fn into_either(self, into_left: bool) -> Either<Self, Self>
fn into_either(self, into_left: bool) -> Either<Self, Self>
self into a Left variant of Either<Self, Self>
if into_left is true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read moreSource§fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
self into a Left variant of Either<Self, Self>
if into_left(&self) returns true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read moreSource§impl<'data, I> IntoParallelRefIterator<'data> for I
impl<'data, I> IntoParallelRefIterator<'data> for I
Source§impl<'data, I> IntoParallelRefMutIterator<'data> for I
impl<'data, I> IntoParallelRefMutIterator<'data> for I
Source§type Iter = <&'data mut I as IntoParallelIterator>::Iter
type Iter = <&'data mut I as IntoParallelIterator>::Iter
Source§type Item = <&'data mut I as IntoParallelIterator>::Item
type Item = <&'data mut I as IntoParallelIterator>::Item
&'data mut T reference.Source§fn par_iter_mut(
&'data mut self,
) -> <I as IntoParallelRefMutIterator<'data>>::Iter
fn par_iter_mut( &'data mut self, ) -> <I as IntoParallelRefMutIterator<'data>>::Iter
self. Read moreSource§impl<T, G> MinimumRotatedRect<T> for G
impl<T, G> MinimumRotatedRect<T> for G
type Scalar = T
fn minimum_rotated_rect( &self, ) -> Option<Polygon<<G as MinimumRotatedRect<T>>::Scalar>>
Source§impl<T> Pointable for T
impl<T> Pointable for T
Source§impl<G, IP, IR, T> Rotate<T> for G
impl<G, IP, IR, T> Rotate<T> for G
Source§fn rotate_around_centroid(&self, degrees: T) -> G
fn rotate_around_centroid(&self, degrees: T) -> G
Source§fn rotate_around_centroid_mut(&mut self, degrees: T)
fn rotate_around_centroid_mut(&mut self, degrees: T)
Self::rotate_around_centroidSource§fn rotate_around_center(&self, degrees: T) -> G
fn rotate_around_center(&self, degrees: T) -> G
Source§fn rotate_around_center_mut(&mut self, degrees: T)
fn rotate_around_center_mut(&mut self, degrees: T)
Self::rotate_around_centerSource§fn rotate_around_point(&self, degrees: T, point: Point<T>) -> G
fn rotate_around_point(&self, degrees: T, point: Point<T>) -> G
Source§fn rotate_around_point_mut(&mut self, degrees: T, point: Point<T>)
fn rotate_around_point_mut(&mut self, degrees: T, point: Point<T>)
Self::rotate_around_pointSource§impl<T, IR, G> Scale<T> for Gwhere
T: CoordFloat,
IR: Into<Option<Rect<T>>>,
G: Clone + AffineOps<T> + BoundingRect<T, Output = IR>,
impl<T, IR, G> Scale<T> for Gwhere
T: CoordFloat,
IR: Into<Option<Rect<T>>>,
G: Clone + AffineOps<T> + BoundingRect<T, Output = IR>,
Source§fn scale(&self, scale_factor: T) -> G
fn scale(&self, scale_factor: T) -> G
Source§fn scale_xy(&self, x_factor: T, y_factor: T) -> G
fn scale_xy(&self, x_factor: T, y_factor: T) -> G
x_factor and
y_factor to distort the geometry’s aspect ratio. Read moreSource§fn scale_xy_mut(&mut self, x_factor: T, y_factor: T)
fn scale_xy_mut(&mut self, x_factor: T, y_factor: T)
scale_xy.Source§fn scale_around_point(
&self,
x_factor: T,
y_factor: T,
origin: impl Into<Coord<T>>,
) -> G
fn scale_around_point( &self, x_factor: T, y_factor: T, origin: impl Into<Coord<T>>, ) -> G
origin. Read moreSource§fn scale_around_point_mut(
&mut self,
x_factor: T,
y_factor: T,
origin: impl Into<Coord<T>>,
)
fn scale_around_point_mut( &mut self, x_factor: T, y_factor: T, origin: impl Into<Coord<T>>, )
scale_around_point.Source§impl<T, IR, G> Skew<T> for Gwhere
T: CoordFloat,
IR: Into<Option<Rect<T>>>,
G: Clone + AffineOps<T> + BoundingRect<T, Output = IR>,
impl<T, IR, G> Skew<T> for Gwhere
T: CoordFloat,
IR: Into<Option<Rect<T>>>,
G: Clone + AffineOps<T> + BoundingRect<T, Output = IR>,
Source§fn skew(&self, degrees: T) -> G
fn skew(&self, degrees: T) -> G
Source§fn skew_xy(&self, degrees_x: T, degrees_y: T) -> G
fn skew_xy(&self, degrees_x: T, degrees_y: T) -> G
Source§fn skew_xy_mut(&mut self, degrees_x: T, degrees_y: T)
fn skew_xy_mut(&mut self, degrees_x: T, degrees_y: T)
skew_xy.Source§fn skew_around_point(&self, xs: T, ys: T, origin: impl Into<Coord<T>>) -> G
fn skew_around_point(&self, xs: T, ys: T, origin: impl Into<Coord<T>>) -> G
origin, sheared by an
angle along the x and y dimensions. Read moreSource§fn skew_around_point_mut(&mut self, xs: T, ys: T, origin: impl Into<Coord<T>>)
fn skew_around_point_mut(&mut self, xs: T, ys: T, origin: impl Into<Coord<T>>)
skew_around_point.