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pub trait Difference {
fn difference<Other>(&self, other: &Other) -> crate::Difference2d
where
Other: Clone + Into<crate::Shape2d>;
}
impl<T> Difference for T
where
T: Clone + Into<crate::Shape2d>,
{
fn difference<Other>(&self, other: &Other) -> crate::Difference2d
where
Other: Clone + Into<crate::Shape2d>,
{
let a = self.clone().into();
let b = other.clone().into();
crate::Difference2d::from_shapes([a, b])
}
}
pub trait Group {
fn group<Other>(&self, other: &Other) -> crate::Group
where
Other: Clone + Into<crate::Shape>;
}
impl<T> Group for T
where
T: Clone + Into<crate::Shape>,
{
fn group<Other>(&self, other: &Other) -> crate::Group
where
Other: Clone + Into<crate::Shape>,
{
let a = self.clone().into();
let b = other.clone().into();
crate::Group { a, b }
}
}
pub trait Sketch {
fn sketch(&self) -> crate::Sketch;
}
impl<T> Sketch for T
where
T: AsRef<[[f64; 2]]>,
{
fn sketch(&self) -> crate::Sketch {
crate::Sketch::from_points(self.as_ref().to_vec()).unwrap()
}
}
pub trait Sweep {
fn sweep(&self, path: [f64; 3]) -> crate::Sweep;
}
impl<T> Sweep for T
where
T: Clone + Into<crate::Shape2d>,
{
fn sweep(&self, path: [f64; 3]) -> crate::Sweep {
let shape = self.clone().into();
crate::Sweep::from_path(shape, path)
}
}
pub trait Transform {
fn rotate(&self, axis: [f64; 3], angle: crate::Angle) -> crate::Transform;
fn translate(&self, offset: [f64; 3]) -> crate::Transform;
}
impl<T> Transform for T
where
T: Clone + Into<crate::Shape>,
{
fn rotate(&self, axis: [f64; 3], angle: crate::Angle) -> crate::Transform {
let shape = self.clone().into();
crate::Transform {
shape,
axis,
angle,
offset: [0.; 3],
}
}
fn translate(&self, offset: [f64; 3]) -> crate::Transform {
let shape = self.clone().into();
crate::Transform {
shape,
axis: [1., 0., 0.],
angle: crate::Angle::from_rad(0.),
offset,
}
}
}