use crate::{swizzles::*, DMat2, Mat3, UnitVec2, Vec2};
use auto_ops_det::{impl_op_ex, impl_op_ex_commutative};
#[cfg(not(target_arch = "spirv"))]
use core::fmt;
use core::iter::{Product, Sum};
use core::ops::{self, Add, Mul, Neg};
use crate::nums::*;
union UnionCastFfi {
simd: crate::f32::simd_alias::Mat2,
ffi: Mat2,
}
impl From<crate::f32::simd_alias::Mat2> for Mat2 {
#[inline]
fn from(simd: crate::f32::simd_alias::Mat2) -> Self {
unsafe { UnionCastFfi { simd }.ffi }
}
}
impl From<Mat2> for crate::f32::simd_alias::Mat2 {
#[inline]
fn from(ffi: Mat2) -> Self {
unsafe { UnionCastFfi { ffi }.simd }
}
}
#[inline]
pub const fn mat2(x_axis: Vec2, y_axis: Vec2) -> Mat2 {
Mat2::from_cols(x_axis, y_axis)
}
#[derive(Clone, Copy)]
#[repr(transparent)]
pub struct Mat2(pub(crate) super::C128);
impl Mat2 {
pub const ZERO: Self = Self::from_cols(Vec2::ZERO, Vec2::ZERO);
pub const IDENTITY: Self = Self::from_cols(Vec2::X, Vec2::Y);
pub const NAN: Self = Self::from_cols(Vec2::NAN, Vec2::NAN);
#[allow(clippy::too_many_arguments)]
#[inline]
const fn new(m00: f32, m01: f32, m10: f32, m11: f32) -> Self {
Self(super::C128(m00, m01, m10, m11))
}
#[inline]
pub const fn from_cols(x_axis: Vec2, y_axis: Vec2) -> Self {
Self(super::C128(x_axis.x, x_axis.y, y_axis.x, y_axis.y))
}
#[inline]
pub const fn from_cols_array(m: &[f32; 4]) -> Self {
Self::new(m[0], m[1], m[2], m[3])
}
#[inline]
pub fn to_cols_array(&self) -> [f32; 4] {
[self.x_axis.x, self.x_axis.y, self.y_axis.x, self.y_axis.y]
}
#[inline]
pub const fn from_cols_array_2d(m: &[[f32; 2]; 2]) -> Self {
Self::from_cols(Vec2::from_array(m[0]), Vec2::from_array(m[1]))
}
#[inline]
pub fn to_cols_array_2d(&self) -> [[f32; 2]; 2] {
[self.x_axis.to_array(), self.y_axis.to_array()]
}
#[doc(alias = "scale")]
#[inline]
pub fn from_diagonal(diagonal: Vec2) -> Self {
Self::new(diagonal.x, 0.0, 0.0, diagonal.y)
}
#[inline]
pub fn from_scale_angle(scale: Vec2, angle: f32) -> Self {
let (sin, cos) = angle.sin_cosf();
Self::new(cos * scale.x, sin * scale.x, -sin * scale.y, cos * scale.y)
}
#[inline]
pub fn from_angle(angle: f32) -> Self {
let (sin, cos) = angle.sin_cosf();
Self::new(cos, sin, -sin, cos)
}
#[inline]
pub fn from_mat3(m: Mat3) -> Self {
Self::from_cols(m.x_axis.xy(), m.y_axis.xy())
}
#[inline]
pub const fn from_cols_slice(slice: &[f32]) -> Self {
Self::new(slice[0], slice[1], slice[2], slice[3])
}
#[inline]
pub fn write_cols_to_slice(self, slice: &mut [f32]) {
slice[0] = self.x_axis.x;
slice[1] = self.x_axis.y;
slice[2] = self.y_axis.x;
slice[3] = self.y_axis.y;
}
#[inline]
pub fn col(&self, index: usize) -> Vec2 {
match index {
0 => self.x_axis,
1 => self.y_axis,
_ => panic!("index out of bounds"),
}
}
#[inline]
pub fn col_mut(&mut self, index: usize) -> &mut Vec2 {
match index {
0 => &mut self.x_axis,
1 => &mut self.y_axis,
_ => panic!("index out of bounds"),
}
}
#[inline]
pub fn row(&self, index: usize) -> Vec2 {
match index {
0 => Vec2::new(self.x_axis.x, self.y_axis.x),
1 => Vec2::new(self.x_axis.y, self.y_axis.y),
_ => panic!("index out of bounds"),
}
}
#[inline]
pub fn is_finite(&self) -> bool {
self.x_axis.is_finite() && self.y_axis.is_finite()
}
#[inline]
pub fn is_nan(&self) -> bool {
self.x_axis.is_nan() || self.y_axis.is_nan()
}
#[must_use]
#[inline]
pub fn transpose(&self) -> Self {
crate::f32::simd_alias::Mat2::from(*self).transpose().into()
}
#[inline]
pub fn determinant(&self) -> f32 {
crate::f32::simd_alias::Mat2::from(*self).determinant()
}
#[must_use]
#[inline]
pub fn inverse(&self) -> Self {
crate::f32::simd_alias::Mat2::from(*self).inverse().into()
}
#[inline]
pub fn mul_vec2(&self, rhs: Vec2) -> Vec2 {
crate::f32::simd_alias::Mat2::from(*self).mul_vec2(rhs)
}
#[inline]
pub fn mul_mat2(&self, rhs: &Self) -> Self {
crate::f32::simd_alias::Mat2::from(*self)
.mul_mat2(&crate::f32::simd_alias::Mat2::from(*rhs))
.into()
}
#[inline]
pub fn add_mat2(&self, rhs: &Self) -> Self {
crate::f32::simd_alias::Mat2::from(*self)
.add_mat2(&crate::f32::simd_alias::Mat2::from(*rhs))
.into()
}
#[inline]
pub fn sub_mat2(&self, rhs: &Self) -> Self {
crate::f32::simd_alias::Mat2::from(*self)
.sub_mat2(&crate::f32::simd_alias::Mat2::from(*rhs))
.into()
}
#[inline]
pub fn mul_scalar(&self, rhs: f32) -> Self {
crate::f32::simd_alias::Mat2::from(*self)
.mul_scalar(rhs)
.into()
}
#[inline]
pub fn abs_diff_eq(&self, rhs: Self, max_abs_diff: f32) -> bool {
self.x_axis.abs_diff_eq(rhs.x_axis, max_abs_diff)
&& self.y_axis.abs_diff_eq(rhs.y_axis, max_abs_diff)
}
#[inline]
pub fn as_dmat2(&self) -> DMat2 {
DMat2::from_cols(self.x_axis.as_dvec2(), self.y_axis.as_dvec2())
}
}
impl Default for Mat2 {
#[inline]
fn default() -> Self {
Self::IDENTITY
}
}
impl_op_ex!(+ |a: &Mat2, b:&Mat2| -> Mat2 { a.add_mat2(b) });
impl_op_ex!(+= |a: &mut Mat2, b:&Mat2| { *a = a.add_mat2(b); });
impl_op_ex!(-|a: &Mat2, b: &Mat2| -> Mat2 { a.sub_mat2(b) });
impl_op_ex!(-= |a: &mut Mat2, b:&Mat2| { *a = a.sub_mat2(b); });
impl Neg for Mat2 {
type Output = Self;
#[inline]
fn neg(self) -> Self::Output {
crate::f32::simd_alias::Mat2::neg(self.into()).into()
}
}
impl_op_ex!(*|a: &Mat2, b: &Mat2| -> Mat2 { a.mul_mat2(b) });
impl_op_ex!(*= |a: &mut Mat2, b:&Mat2| { *a = a.mul_mat2(b); });
impl_op_ex!(*|a: &Mat2, b: &Vec2| -> Vec2 { a.mul_vec2(*b) });
impl_op_ex!(*|a: &Mat2, b: &UnitVec2| -> Vec2 { a * b.as_vec2() });
impl_op_ex_commutative!(*|a: &Mat2, b: f32| -> Mat2 { a.mul_scalar(b) });
impl_op_ex!(*= |a: &mut Mat2, b:f32| { *a = a.mul_scalar(b); });
impl<'a> Sum<&'a Self> for Mat2 {
fn sum<I>(iter: I) -> Self
where
I: Iterator<Item = &'a Self>,
{
iter.fold(Self::ZERO, |a, &b| Self::add(a, b))
}
}
impl<'a> Product<&'a Self> for Mat2 {
fn product<I>(iter: I) -> Self
where
I: Iterator<Item = &'a Self>,
{
iter.fold(Self::IDENTITY, |a, &b| Self::mul(a, b))
}
}
impl PartialEq for Mat2 {
#[inline]
fn eq(&self, rhs: &Self) -> bool {
self.x_axis.eq(&rhs.x_axis) && self.y_axis.eq(&rhs.y_axis)
}
}
#[cfg(not(target_arch = "spirv"))]
impl AsRef<[f32; 4]> for Mat2 {
#[inline]
fn as_ref(&self) -> &[f32; 4] {
unsafe { &*(self as *const Self as *const [f32; 4]) }
}
}
#[cfg(not(target_arch = "spirv"))]
impl AsMut<[f32; 4]> for Mat2 {
#[inline]
fn as_mut(&mut self) -> &mut [f32; 4] {
unsafe { &mut *(self as *mut Self as *mut [f32; 4]) }
}
}
impl core::ops::Deref for Mat2 {
type Target = crate::deref::Cols2<Vec2>;
#[inline]
fn deref(&self) -> &Self::Target {
unsafe { &*(self as *const Self as *const Self::Target) }
}
}
impl core::ops::DerefMut for Mat2 {
#[inline]
fn deref_mut(&mut self) -> &mut Self::Target {
unsafe { &mut *(self as *mut Self as *mut Self::Target) }
}
}
#[cfg(not(target_arch = "spirv"))]
impl fmt::Debug for Mat2 {
fn fmt(&self, fmt: &mut fmt::Formatter<'_>) -> fmt::Result {
fmt.debug_struct(stringify!(Mat2))
.field("x_axis", &self.x_axis)
.field("y_axis", &self.y_axis)
.finish()
}
}
#[cfg(not(target_arch = "spirv"))]
impl fmt::Display for Mat2 {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
write!(f, "[{}, {}]", self.x_axis, self.y_axis)
}
}