use crate::{ops, Dir2, Dir3, Dir3A, Quat, Rot2, Vec2, Vec3, Vec3A, Vec4};
use core::{
fmt::Debug,
ops::{Add, Div, Mul, Neg, Sub},
};
pub trait VectorSpace:
Mul<f32, Output = Self>
+ Div<f32, Output = Self>
+ Add<Self, Output = Self>
+ Sub<Self, Output = Self>
+ Neg
+ Default
+ Debug
+ Clone
+ Copy
{
const ZERO: Self;
#[inline]
fn lerp(self, rhs: Self, t: f32) -> Self {
self * (1. - t) + rhs * t
}
}
impl VectorSpace for Vec4 {
const ZERO: Self = Vec4::ZERO;
}
impl VectorSpace for Vec3 {
const ZERO: Self = Vec3::ZERO;
}
impl VectorSpace for Vec3A {
const ZERO: Self = Vec3A::ZERO;
}
impl VectorSpace for Vec2 {
const ZERO: Self = Vec2::ZERO;
}
impl VectorSpace for f32 {
const ZERO: Self = 0.0;
}
pub trait NormedVectorSpace: VectorSpace {
fn norm(self) -> f32;
#[inline]
fn norm_squared(self) -> f32 {
self.norm() * self.norm()
}
#[inline]
fn distance(self, rhs: Self) -> f32 {
(rhs - self).norm()
}
#[inline]
fn distance_squared(self, rhs: Self) -> f32 {
(rhs - self).norm_squared()
}
}
impl NormedVectorSpace for Vec4 {
#[inline]
fn norm(self) -> f32 {
self.length()
}
#[inline]
fn norm_squared(self) -> f32 {
self.length_squared()
}
}
impl NormedVectorSpace for Vec3 {
#[inline]
fn norm(self) -> f32 {
self.length()
}
#[inline]
fn norm_squared(self) -> f32 {
self.length_squared()
}
}
impl NormedVectorSpace for Vec3A {
#[inline]
fn norm(self) -> f32 {
self.length()
}
#[inline]
fn norm_squared(self) -> f32 {
self.length_squared()
}
}
impl NormedVectorSpace for Vec2 {
#[inline]
fn norm(self) -> f32 {
self.length()
}
#[inline]
fn norm_squared(self) -> f32 {
self.length_squared()
}
}
impl NormedVectorSpace for f32 {
#[inline]
fn norm(self) -> f32 {
self.abs()
}
#[inline]
fn norm_squared(self) -> f32 {
self * self
}
}
pub trait StableInterpolate: Clone {
fn interpolate_stable(&self, other: &Self, t: f32) -> Self;
fn interpolate_stable_assign(&mut self, other: &Self, t: f32) {
*self = self.interpolate_stable(other, t);
}
fn smooth_nudge(&mut self, target: &Self, decay_rate: f32, delta: f32) {
self.interpolate_stable_assign(target, 1.0 - ops::exp(-decay_rate * delta));
}
}
impl<V> StableInterpolate for V
where
V: NormedVectorSpace,
{
#[inline]
fn interpolate_stable(&self, other: &Self, t: f32) -> Self {
self.lerp(*other, t)
}
}
impl StableInterpolate for Rot2 {
#[inline]
fn interpolate_stable(&self, other: &Self, t: f32) -> Self {
self.slerp(*other, t)
}
}
impl StableInterpolate for Quat {
#[inline]
fn interpolate_stable(&self, other: &Self, t: f32) -> Self {
self.slerp(*other, t)
}
}
impl StableInterpolate for Dir2 {
#[inline]
fn interpolate_stable(&self, other: &Self, t: f32) -> Self {
self.slerp(*other, t)
}
}
impl StableInterpolate for Dir3 {
#[inline]
fn interpolate_stable(&self, other: &Self, t: f32) -> Self {
self.slerp(*other, t)
}
}
impl StableInterpolate for Dir3A {
#[inline]
fn interpolate_stable(&self, other: &Self, t: f32) -> Self {
self.slerp(*other, t)
}
}
macro_rules! impl_stable_interpolate_tuple {
(($T:ident, $n:tt)) => {
impl_stable_interpolate_tuple! {
@impl
#[cfg_attr(any(docsrs, docsrs_dep), doc(fake_variadic))]
#[cfg_attr(
any(docsrs, docsrs_dep),
doc = "This trait is implemented for tuples up to 11 items long."
)]
($T, $n)
}
};
($(($T:ident, $n:tt)),*) => {
impl_stable_interpolate_tuple! {
@impl
#[cfg_attr(any(docsrs, docsrs_dep), doc(hidden))]
$(($T, $n)),*
}
};
(@impl $(#[$($meta:meta)*])* $(($T:ident, $n:tt)),*) => {
$(#[$($meta)*])*
impl<$($T: StableInterpolate),*> StableInterpolate for ($($T,)*) {
fn interpolate_stable(&self, other: &Self, t: f32) -> Self {
(
$(
<$T as StableInterpolate>::interpolate_stable(&self.$n, &other.$n, t),
)*
)
}
}
};
}
impl_stable_interpolate_tuple!((T, 0));
impl_stable_interpolate_tuple!((T0, 0), (T1, 1));
impl_stable_interpolate_tuple!((T0, 0), (T1, 1), (T2, 2));
impl_stable_interpolate_tuple!((T0, 0), (T1, 1), (T2, 2), (T3, 3));
impl_stable_interpolate_tuple!((T0, 0), (T1, 1), (T2, 2), (T3, 3), (T4, 4));
impl_stable_interpolate_tuple!((T0, 0), (T1, 1), (T2, 2), (T3, 3), (T4, 4), (T5, 5));
impl_stable_interpolate_tuple!(
(T0, 0),
(T1, 1),
(T2, 2),
(T3, 3),
(T4, 4),
(T5, 5),
(T6, 6)
);
impl_stable_interpolate_tuple!(
(T0, 0),
(T1, 1),
(T2, 2),
(T3, 3),
(T4, 4),
(T5, 5),
(T6, 6),
(T7, 7)
);
impl_stable_interpolate_tuple!(
(T0, 0),
(T1, 1),
(T2, 2),
(T3, 3),
(T4, 4),
(T5, 5),
(T6, 6),
(T7, 7),
(T8, 8)
);
impl_stable_interpolate_tuple!(
(T0, 0),
(T1, 1),
(T2, 2),
(T3, 3),
(T4, 4),
(T5, 5),
(T6, 6),
(T7, 7),
(T8, 8),
(T9, 9)
);
impl_stable_interpolate_tuple!(
(T0, 0),
(T1, 1),
(T2, 2),
(T3, 3),
(T4, 4),
(T5, 5),
(T6, 6),
(T7, 7),
(T8, 8),
(T9, 9),
(T10, 10)
);