[go: up one dir, main page]

glam/u8/
u8vec4.rs

1// Generated from vec.rs.tera template. Edit the template, not the generated file.
2
3#[cfg(not(feature = "scalar-math"))]
4use crate::BVec4A;
5use crate::{
6    BVec4, I16Vec4, I64Vec4, I8Vec4, IVec4, U16Vec4, U64Vec4, U8Vec2, U8Vec3, USizeVec4, UVec4,
7};
8
9use core::fmt;
10use core::iter::{Product, Sum};
11use core::{f32, ops::*};
12
13/// Creates a 4-dimensional vector.
14#[inline(always)]
15#[must_use]
16pub const fn u8vec4(x: u8, y: u8, z: u8, w: u8) -> U8Vec4 {
17    U8Vec4::new(x, y, z, w)
18}
19
20/// A 4-dimensional vector.
21#[cfg_attr(not(target_arch = "spirv"), derive(Hash))]
22#[derive(Clone, Copy, PartialEq, Eq)]
23#[cfg_attr(feature = "cuda", repr(align(4)))]
24#[cfg_attr(not(target_arch = "spirv"), repr(C))]
25#[cfg_attr(target_arch = "spirv", repr(simd))]
26pub struct U8Vec4 {
27    pub x: u8,
28    pub y: u8,
29    pub z: u8,
30    pub w: u8,
31}
32
33impl U8Vec4 {
34    /// All zeroes.
35    pub const ZERO: Self = Self::splat(0);
36
37    /// All ones.
38    pub const ONE: Self = Self::splat(1);
39
40    /// All `u8::MIN`.
41    pub const MIN: Self = Self::splat(u8::MIN);
42
43    /// All `u8::MAX`.
44    pub const MAX: Self = Self::splat(u8::MAX);
45
46    /// A unit vector pointing along the positive X axis.
47    pub const X: Self = Self::new(1, 0, 0, 0);
48
49    /// A unit vector pointing along the positive Y axis.
50    pub const Y: Self = Self::new(0, 1, 0, 0);
51
52    /// A unit vector pointing along the positive Z axis.
53    pub const Z: Self = Self::new(0, 0, 1, 0);
54
55    /// A unit vector pointing along the positive W axis.
56    pub const W: Self = Self::new(0, 0, 0, 1);
57
58    /// The unit axes.
59    pub const AXES: [Self; 4] = [Self::X, Self::Y, Self::Z, Self::W];
60
61    /// Creates a new vector.
62    #[inline(always)]
63    #[must_use]
64    pub const fn new(x: u8, y: u8, z: u8, w: u8) -> Self {
65        Self { x, y, z, w }
66    }
67
68    /// Creates a vector with all elements set to `v`.
69    #[inline]
70    #[must_use]
71    pub const fn splat(v: u8) -> Self {
72        Self {
73            x: v,
74
75            y: v,
76
77            z: v,
78
79            w: v,
80        }
81    }
82
83    /// Returns a vector containing each element of `self` modified by a mapping function `f`.
84    #[inline]
85    #[must_use]
86    pub fn map<F>(self, f: F) -> Self
87    where
88        F: Fn(u8) -> u8,
89    {
90        Self::new(f(self.x), f(self.y), f(self.z), f(self.w))
91    }
92
93    /// Creates a vector from the elements in `if_true` and `if_false`, selecting which to use
94    /// for each element of `self`.
95    ///
96    /// A true element in the mask uses the corresponding element from `if_true`, and false
97    /// uses the element from `if_false`.
98    #[inline]
99    #[must_use]
100    pub fn select(mask: BVec4, if_true: Self, if_false: Self) -> Self {
101        Self {
102            x: if mask.test(0) { if_true.x } else { if_false.x },
103            y: if mask.test(1) { if_true.y } else { if_false.y },
104            z: if mask.test(2) { if_true.z } else { if_false.z },
105            w: if mask.test(3) { if_true.w } else { if_false.w },
106        }
107    }
108
109    /// Creates a new vector from an array.
110    #[inline]
111    #[must_use]
112    pub const fn from_array(a: [u8; 4]) -> Self {
113        Self::new(a[0], a[1], a[2], a[3])
114    }
115
116    /// `[x, y, z, w]`
117    #[inline]
118    #[must_use]
119    pub const fn to_array(&self) -> [u8; 4] {
120        [self.x, self.y, self.z, self.w]
121    }
122
123    /// Creates a vector from the first 4 values in `slice`.
124    ///
125    /// # Panics
126    ///
127    /// Panics if `slice` is less than 4 elements long.
128    #[inline]
129    #[must_use]
130    pub const fn from_slice(slice: &[u8]) -> Self {
131        assert!(slice.len() >= 4);
132        Self::new(slice[0], slice[1], slice[2], slice[3])
133    }
134
135    /// Writes the elements of `self` to the first 4 elements in `slice`.
136    ///
137    /// # Panics
138    ///
139    /// Panics if `slice` is less than 4 elements long.
140    #[inline]
141    pub fn write_to_slice(self, slice: &mut [u8]) {
142        slice[..4].copy_from_slice(&self.to_array());
143    }
144
145    /// Creates a 3D vector from the `x`, `y` and `z` elements of `self`, discarding `w`.
146    ///
147    /// Truncation to [`U8Vec3`] may also be performed by using [`self.xyz()`][crate::swizzles::Vec4Swizzles::xyz()].
148    #[inline]
149    #[must_use]
150    pub fn truncate(self) -> U8Vec3 {
151        use crate::swizzles::Vec4Swizzles;
152        self.xyz()
153    }
154
155    /// Creates a 4D vector from `self` with the given value of `x`.
156    #[inline]
157    #[must_use]
158    pub fn with_x(mut self, x: u8) -> Self {
159        self.x = x;
160        self
161    }
162
163    /// Creates a 4D vector from `self` with the given value of `y`.
164    #[inline]
165    #[must_use]
166    pub fn with_y(mut self, y: u8) -> Self {
167        self.y = y;
168        self
169    }
170
171    /// Creates a 4D vector from `self` with the given value of `z`.
172    #[inline]
173    #[must_use]
174    pub fn with_z(mut self, z: u8) -> Self {
175        self.z = z;
176        self
177    }
178
179    /// Creates a 4D vector from `self` with the given value of `w`.
180    #[inline]
181    #[must_use]
182    pub fn with_w(mut self, w: u8) -> Self {
183        self.w = w;
184        self
185    }
186
187    /// Computes the dot product of `self` and `rhs`.
188    #[inline]
189    #[must_use]
190    pub fn dot(self, rhs: Self) -> u8 {
191        (self.x * rhs.x) + (self.y * rhs.y) + (self.z * rhs.z) + (self.w * rhs.w)
192    }
193
194    /// Returns a vector where every component is the dot product of `self` and `rhs`.
195    #[inline]
196    #[must_use]
197    pub fn dot_into_vec(self, rhs: Self) -> Self {
198        Self::splat(self.dot(rhs))
199    }
200
201    /// Returns a vector containing the minimum values for each element of `self` and `rhs`.
202    ///
203    /// In other words this computes `[self.x.min(rhs.x), self.y.min(rhs.y), ..]`.
204    #[inline]
205    #[must_use]
206    pub fn min(self, rhs: Self) -> Self {
207        Self {
208            x: self.x.min(rhs.x),
209            y: self.y.min(rhs.y),
210            z: self.z.min(rhs.z),
211            w: self.w.min(rhs.w),
212        }
213    }
214
215    /// Returns a vector containing the maximum values for each element of `self` and `rhs`.
216    ///
217    /// In other words this computes `[self.x.max(rhs.x), self.y.max(rhs.y), ..]`.
218    #[inline]
219    #[must_use]
220    pub fn max(self, rhs: Self) -> Self {
221        Self {
222            x: self.x.max(rhs.x),
223            y: self.y.max(rhs.y),
224            z: self.z.max(rhs.z),
225            w: self.w.max(rhs.w),
226        }
227    }
228
229    /// Component-wise clamping of values, similar to [`u8::clamp`].
230    ///
231    /// Each element in `min` must be less-or-equal to the corresponding element in `max`.
232    ///
233    /// # Panics
234    ///
235    /// Will panic if `min` is greater than `max` when `glam_assert` is enabled.
236    #[inline]
237    #[must_use]
238    pub fn clamp(self, min: Self, max: Self) -> Self {
239        glam_assert!(min.cmple(max).all(), "clamp: expected min <= max");
240        self.max(min).min(max)
241    }
242
243    /// Returns the horizontal minimum of `self`.
244    ///
245    /// In other words this computes `min(x, y, ..)`.
246    #[inline]
247    #[must_use]
248    pub fn min_element(self) -> u8 {
249        self.x.min(self.y.min(self.z.min(self.w)))
250    }
251
252    /// Returns the horizontal maximum of `self`.
253    ///
254    /// In other words this computes `max(x, y, ..)`.
255    #[inline]
256    #[must_use]
257    pub fn max_element(self) -> u8 {
258        self.x.max(self.y.max(self.z.max(self.w)))
259    }
260
261    /// Returns the index of the first minimum element of `self`.
262    #[doc(alias = "argmin")]
263    #[inline]
264    #[must_use]
265    pub fn min_position(self) -> usize {
266        let mut min = self.x;
267        let mut index = 0;
268        if self.y < min {
269            min = self.y;
270            index = 1;
271        }
272        if self.z < min {
273            min = self.z;
274            index = 2;
275        }
276        if self.w < min {
277            index = 3;
278        }
279        index
280    }
281
282    /// Returns the index of the first maximum element of `self`.
283    #[doc(alias = "argmax")]
284    #[inline]
285    #[must_use]
286    pub fn max_position(self) -> usize {
287        let mut max = self.x;
288        let mut index = 0;
289        if self.y > max {
290            max = self.y;
291            index = 1;
292        }
293        if self.z > max {
294            max = self.z;
295            index = 2;
296        }
297        if self.w > max {
298            index = 3;
299        }
300        index
301    }
302
303    /// Returns the sum of all elements of `self`.
304    ///
305    /// In other words, this computes `self.x + self.y + ..`.
306    #[inline]
307    #[must_use]
308    pub fn element_sum(self) -> u8 {
309        self.x + self.y + self.z + self.w
310    }
311
312    /// Returns the product of all elements of `self`.
313    ///
314    /// In other words, this computes `self.x * self.y * ..`.
315    #[inline]
316    #[must_use]
317    pub fn element_product(self) -> u8 {
318        self.x * self.y * self.z * self.w
319    }
320
321    /// Returns a vector mask containing the result of a `==` comparison for each element of
322    /// `self` and `rhs`.
323    ///
324    /// In other words, this computes `[self.x == rhs.x, self.y == rhs.y, ..]` for all
325    /// elements.
326    #[inline]
327    #[must_use]
328    pub fn cmpeq(self, rhs: Self) -> BVec4 {
329        BVec4::new(
330            self.x.eq(&rhs.x),
331            self.y.eq(&rhs.y),
332            self.z.eq(&rhs.z),
333            self.w.eq(&rhs.w),
334        )
335    }
336
337    /// Returns a vector mask containing the result of a `!=` comparison for each element of
338    /// `self` and `rhs`.
339    ///
340    /// In other words this computes `[self.x != rhs.x, self.y != rhs.y, ..]` for all
341    /// elements.
342    #[inline]
343    #[must_use]
344    pub fn cmpne(self, rhs: Self) -> BVec4 {
345        BVec4::new(
346            self.x.ne(&rhs.x),
347            self.y.ne(&rhs.y),
348            self.z.ne(&rhs.z),
349            self.w.ne(&rhs.w),
350        )
351    }
352
353    /// Returns a vector mask containing the result of a `>=` comparison for each element of
354    /// `self` and `rhs`.
355    ///
356    /// In other words this computes `[self.x >= rhs.x, self.y >= rhs.y, ..]` for all
357    /// elements.
358    #[inline]
359    #[must_use]
360    pub fn cmpge(self, rhs: Self) -> BVec4 {
361        BVec4::new(
362            self.x.ge(&rhs.x),
363            self.y.ge(&rhs.y),
364            self.z.ge(&rhs.z),
365            self.w.ge(&rhs.w),
366        )
367    }
368
369    /// Returns a vector mask containing the result of a `>` comparison for each element of
370    /// `self` and `rhs`.
371    ///
372    /// In other words this computes `[self.x > rhs.x, self.y > rhs.y, ..]` for all
373    /// elements.
374    #[inline]
375    #[must_use]
376    pub fn cmpgt(self, rhs: Self) -> BVec4 {
377        BVec4::new(
378            self.x.gt(&rhs.x),
379            self.y.gt(&rhs.y),
380            self.z.gt(&rhs.z),
381            self.w.gt(&rhs.w),
382        )
383    }
384
385    /// Returns a vector mask containing the result of a `<=` comparison for each element of
386    /// `self` and `rhs`.
387    ///
388    /// In other words this computes `[self.x <= rhs.x, self.y <= rhs.y, ..]` for all
389    /// elements.
390    #[inline]
391    #[must_use]
392    pub fn cmple(self, rhs: Self) -> BVec4 {
393        BVec4::new(
394            self.x.le(&rhs.x),
395            self.y.le(&rhs.y),
396            self.z.le(&rhs.z),
397            self.w.le(&rhs.w),
398        )
399    }
400
401    /// Returns a vector mask containing the result of a `<` comparison for each element of
402    /// `self` and `rhs`.
403    ///
404    /// In other words this computes `[self.x < rhs.x, self.y < rhs.y, ..]` for all
405    /// elements.
406    #[inline]
407    #[must_use]
408    pub fn cmplt(self, rhs: Self) -> BVec4 {
409        BVec4::new(
410            self.x.lt(&rhs.x),
411            self.y.lt(&rhs.y),
412            self.z.lt(&rhs.z),
413            self.w.lt(&rhs.w),
414        )
415    }
416
417    /// Computes the squared length of `self`.
418    #[doc(alias = "magnitude2")]
419    #[inline]
420    #[must_use]
421    pub fn length_squared(self) -> u8 {
422        self.dot(self)
423    }
424
425    /// Computes the [manhattan distance] between two points.
426    ///
427    /// # Overflow
428    /// This method may overflow if the result is greater than [`u8::MAX`].
429    ///
430    /// See also [`checked_manhattan_distance`][U8Vec4::checked_manhattan_distance].
431    ///
432    /// [manhattan distance]: https://en.wikipedia.org/wiki/Taxicab_geometry
433    #[inline]
434    #[must_use]
435    pub fn manhattan_distance(self, other: Self) -> u8 {
436        self.x.abs_diff(other.x)
437            + self.y.abs_diff(other.y)
438            + self.z.abs_diff(other.z)
439            + self.w.abs_diff(other.w)
440    }
441
442    /// Computes the [manhattan distance] between two points.
443    ///
444    /// This will returns [`None`] if the result is greater than [`u8::MAX`].
445    ///
446    /// [manhattan distance]: https://en.wikipedia.org/wiki/Taxicab_geometry
447    #[inline]
448    #[must_use]
449    pub fn checked_manhattan_distance(self, other: Self) -> Option<u8> {
450        let d = self.x.abs_diff(other.x);
451        let d = d.checked_add(self.y.abs_diff(other.y))?;
452        let d = d.checked_add(self.z.abs_diff(other.z))?;
453        d.checked_add(self.w.abs_diff(other.w))
454    }
455
456    /// Computes the [chebyshev distance] between two points.
457    ///
458    /// [chebyshev distance]: https://en.wikipedia.org/wiki/Chebyshev_distance
459    #[inline]
460    #[must_use]
461    pub fn chebyshev_distance(self, other: Self) -> u8 {
462        // Note: the compiler will eventually optimize out the loop
463        [
464            self.x.abs_diff(other.x),
465            self.y.abs_diff(other.y),
466            self.z.abs_diff(other.z),
467            self.w.abs_diff(other.w),
468        ]
469        .into_iter()
470        .max()
471        .unwrap()
472    }
473
474    /// Casts all elements of `self` to `f32`.
475    #[inline]
476    #[must_use]
477    pub fn as_vec4(&self) -> crate::Vec4 {
478        crate::Vec4::new(self.x as f32, self.y as f32, self.z as f32, self.w as f32)
479    }
480
481    /// Casts all elements of `self` to `f64`.
482    #[inline]
483    #[must_use]
484    pub fn as_dvec4(&self) -> crate::DVec4 {
485        crate::DVec4::new(self.x as f64, self.y as f64, self.z as f64, self.w as f64)
486    }
487
488    /// Casts all elements of `self` to `i8`.
489    #[inline]
490    #[must_use]
491    pub fn as_i8vec4(&self) -> crate::I8Vec4 {
492        crate::I8Vec4::new(self.x as i8, self.y as i8, self.z as i8, self.w as i8)
493    }
494
495    /// Casts all elements of `self` to `i16`.
496    #[inline]
497    #[must_use]
498    pub fn as_i16vec4(&self) -> crate::I16Vec4 {
499        crate::I16Vec4::new(self.x as i16, self.y as i16, self.z as i16, self.w as i16)
500    }
501
502    /// Casts all elements of `self` to `u16`.
503    #[inline]
504    #[must_use]
505    pub fn as_u16vec4(&self) -> crate::U16Vec4 {
506        crate::U16Vec4::new(self.x as u16, self.y as u16, self.z as u16, self.w as u16)
507    }
508
509    /// Casts all elements of `self` to `i32`.
510    #[inline]
511    #[must_use]
512    pub fn as_ivec4(&self) -> crate::IVec4 {
513        crate::IVec4::new(self.x as i32, self.y as i32, self.z as i32, self.w as i32)
514    }
515
516    /// Casts all elements of `self` to `u32`.
517    #[inline]
518    #[must_use]
519    pub fn as_uvec4(&self) -> crate::UVec4 {
520        crate::UVec4::new(self.x as u32, self.y as u32, self.z as u32, self.w as u32)
521    }
522
523    /// Casts all elements of `self` to `i64`.
524    #[inline]
525    #[must_use]
526    pub fn as_i64vec4(&self) -> crate::I64Vec4 {
527        crate::I64Vec4::new(self.x as i64, self.y as i64, self.z as i64, self.w as i64)
528    }
529
530    /// Casts all elements of `self` to `u64`.
531    #[inline]
532    #[must_use]
533    pub fn as_u64vec4(&self) -> crate::U64Vec4 {
534        crate::U64Vec4::new(self.x as u64, self.y as u64, self.z as u64, self.w as u64)
535    }
536
537    /// Casts all elements of `self` to `usize`.
538    #[inline]
539    #[must_use]
540    pub fn as_usizevec4(&self) -> crate::USizeVec4 {
541        crate::USizeVec4::new(
542            self.x as usize,
543            self.y as usize,
544            self.z as usize,
545            self.w as usize,
546        )
547    }
548
549    /// Returns a vector containing the wrapping addition of `self` and `rhs`.
550    ///
551    /// In other words this computes `Some([self.x + rhs.x, self.y + rhs.y, ..])` but returns `None` on any overflow.
552    #[inline]
553    #[must_use]
554    pub const fn checked_add(self, rhs: Self) -> Option<Self> {
555        let x = match self.x.checked_add(rhs.x) {
556            Some(v) => v,
557            None => return None,
558        };
559        let y = match self.y.checked_add(rhs.y) {
560            Some(v) => v,
561            None => return None,
562        };
563        let z = match self.z.checked_add(rhs.z) {
564            Some(v) => v,
565            None => return None,
566        };
567        let w = match self.w.checked_add(rhs.w) {
568            Some(v) => v,
569            None => return None,
570        };
571
572        Some(Self { x, y, z, w })
573    }
574
575    /// Returns a vector containing the wrapping subtraction of `self` and `rhs`.
576    ///
577    /// In other words this computes `Some([self.x - rhs.x, self.y - rhs.y, ..])` but returns `None` on any overflow.
578    #[inline]
579    #[must_use]
580    pub const fn checked_sub(self, rhs: Self) -> Option<Self> {
581        let x = match self.x.checked_sub(rhs.x) {
582            Some(v) => v,
583            None => return None,
584        };
585        let y = match self.y.checked_sub(rhs.y) {
586            Some(v) => v,
587            None => return None,
588        };
589        let z = match self.z.checked_sub(rhs.z) {
590            Some(v) => v,
591            None => return None,
592        };
593        let w = match self.w.checked_sub(rhs.w) {
594            Some(v) => v,
595            None => return None,
596        };
597
598        Some(Self { x, y, z, w })
599    }
600
601    /// Returns a vector containing the wrapping multiplication of `self` and `rhs`.
602    ///
603    /// In other words this computes `Some([self.x * rhs.x, self.y * rhs.y, ..])` but returns `None` on any overflow.
604    #[inline]
605    #[must_use]
606    pub const fn checked_mul(self, rhs: Self) -> Option<Self> {
607        let x = match self.x.checked_mul(rhs.x) {
608            Some(v) => v,
609            None => return None,
610        };
611        let y = match self.y.checked_mul(rhs.y) {
612            Some(v) => v,
613            None => return None,
614        };
615        let z = match self.z.checked_mul(rhs.z) {
616            Some(v) => v,
617            None => return None,
618        };
619        let w = match self.w.checked_mul(rhs.w) {
620            Some(v) => v,
621            None => return None,
622        };
623
624        Some(Self { x, y, z, w })
625    }
626
627    /// Returns a vector containing the wrapping division of `self` and `rhs`.
628    ///
629    /// In other words this computes `Some([self.x / rhs.x, self.y / rhs.y, ..])` but returns `None` on any division by zero.
630    #[inline]
631    #[must_use]
632    pub const fn checked_div(self, rhs: Self) -> Option<Self> {
633        let x = match self.x.checked_div(rhs.x) {
634            Some(v) => v,
635            None => return None,
636        };
637        let y = match self.y.checked_div(rhs.y) {
638            Some(v) => v,
639            None => return None,
640        };
641        let z = match self.z.checked_div(rhs.z) {
642            Some(v) => v,
643            None => return None,
644        };
645        let w = match self.w.checked_div(rhs.w) {
646            Some(v) => v,
647            None => return None,
648        };
649
650        Some(Self { x, y, z, w })
651    }
652
653    /// Returns a vector containing the wrapping addition of `self` and `rhs`.
654    ///
655    /// In other words this computes `[self.x.wrapping_add(rhs.x), self.y.wrapping_add(rhs.y), ..]`.
656    #[inline]
657    #[must_use]
658    pub const fn wrapping_add(self, rhs: Self) -> Self {
659        Self {
660            x: self.x.wrapping_add(rhs.x),
661            y: self.y.wrapping_add(rhs.y),
662            z: self.z.wrapping_add(rhs.z),
663            w: self.w.wrapping_add(rhs.w),
664        }
665    }
666
667    /// Returns a vector containing the wrapping subtraction of `self` and `rhs`.
668    ///
669    /// In other words this computes `[self.x.wrapping_sub(rhs.x), self.y.wrapping_sub(rhs.y), ..]`.
670    #[inline]
671    #[must_use]
672    pub const fn wrapping_sub(self, rhs: Self) -> Self {
673        Self {
674            x: self.x.wrapping_sub(rhs.x),
675            y: self.y.wrapping_sub(rhs.y),
676            z: self.z.wrapping_sub(rhs.z),
677            w: self.w.wrapping_sub(rhs.w),
678        }
679    }
680
681    /// Returns a vector containing the wrapping multiplication of `self` and `rhs`.
682    ///
683    /// In other words this computes `[self.x.wrapping_mul(rhs.x), self.y.wrapping_mul(rhs.y), ..]`.
684    #[inline]
685    #[must_use]
686    pub const fn wrapping_mul(self, rhs: Self) -> Self {
687        Self {
688            x: self.x.wrapping_mul(rhs.x),
689            y: self.y.wrapping_mul(rhs.y),
690            z: self.z.wrapping_mul(rhs.z),
691            w: self.w.wrapping_mul(rhs.w),
692        }
693    }
694
695    /// Returns a vector containing the wrapping division of `self` and `rhs`.
696    ///
697    /// In other words this computes `[self.x.wrapping_div(rhs.x), self.y.wrapping_div(rhs.y), ..]`.
698    #[inline]
699    #[must_use]
700    pub const fn wrapping_div(self, rhs: Self) -> Self {
701        Self {
702            x: self.x.wrapping_div(rhs.x),
703            y: self.y.wrapping_div(rhs.y),
704            z: self.z.wrapping_div(rhs.z),
705            w: self.w.wrapping_div(rhs.w),
706        }
707    }
708
709    /// Returns a vector containing the saturating addition of `self` and `rhs`.
710    ///
711    /// In other words this computes `[self.x.saturating_add(rhs.x), self.y.saturating_add(rhs.y), ..]`.
712    #[inline]
713    #[must_use]
714    pub const fn saturating_add(self, rhs: Self) -> Self {
715        Self {
716            x: self.x.saturating_add(rhs.x),
717            y: self.y.saturating_add(rhs.y),
718            z: self.z.saturating_add(rhs.z),
719            w: self.w.saturating_add(rhs.w),
720        }
721    }
722
723    /// Returns a vector containing the saturating subtraction of `self` and `rhs`.
724    ///
725    /// In other words this computes `[self.x.saturating_sub(rhs.x), self.y.saturating_sub(rhs.y), ..]`.
726    #[inline]
727    #[must_use]
728    pub const fn saturating_sub(self, rhs: Self) -> Self {
729        Self {
730            x: self.x.saturating_sub(rhs.x),
731            y: self.y.saturating_sub(rhs.y),
732            z: self.z.saturating_sub(rhs.z),
733            w: self.w.saturating_sub(rhs.w),
734        }
735    }
736
737    /// Returns a vector containing the saturating multiplication of `self` and `rhs`.
738    ///
739    /// In other words this computes `[self.x.saturating_mul(rhs.x), self.y.saturating_mul(rhs.y), ..]`.
740    #[inline]
741    #[must_use]
742    pub const fn saturating_mul(self, rhs: Self) -> Self {
743        Self {
744            x: self.x.saturating_mul(rhs.x),
745            y: self.y.saturating_mul(rhs.y),
746            z: self.z.saturating_mul(rhs.z),
747            w: self.w.saturating_mul(rhs.w),
748        }
749    }
750
751    /// Returns a vector containing the saturating division of `self` and `rhs`.
752    ///
753    /// In other words this computes `[self.x.saturating_div(rhs.x), self.y.saturating_div(rhs.y), ..]`.
754    #[inline]
755    #[must_use]
756    pub const fn saturating_div(self, rhs: Self) -> Self {
757        Self {
758            x: self.x.saturating_div(rhs.x),
759            y: self.y.saturating_div(rhs.y),
760            z: self.z.saturating_div(rhs.z),
761            w: self.w.saturating_div(rhs.w),
762        }
763    }
764
765    /// Returns a vector containing the wrapping addition of `self` and signed vector `rhs`.
766    ///
767    /// In other words this computes `Some([self.x + rhs.x, self.y + rhs.y, ..])` but returns `None` on any overflow.
768    #[inline]
769    #[must_use]
770    pub const fn checked_add_signed(self, rhs: I8Vec4) -> Option<Self> {
771        let x = match self.x.checked_add_signed(rhs.x) {
772            Some(v) => v,
773            None => return None,
774        };
775        let y = match self.y.checked_add_signed(rhs.y) {
776            Some(v) => v,
777            None => return None,
778        };
779        let z = match self.z.checked_add_signed(rhs.z) {
780            Some(v) => v,
781            None => return None,
782        };
783        let w = match self.w.checked_add_signed(rhs.w) {
784            Some(v) => v,
785            None => return None,
786        };
787
788        Some(Self { x, y, z, w })
789    }
790
791    /// Returns a vector containing the wrapping addition of `self` and signed vector `rhs`.
792    ///
793    /// In other words this computes `[self.x.wrapping_add_signed(rhs.x), self.y.wrapping_add_signed(rhs.y), ..]`.
794    #[inline]
795    #[must_use]
796    pub const fn wrapping_add_signed(self, rhs: I8Vec4) -> Self {
797        Self {
798            x: self.x.wrapping_add_signed(rhs.x),
799            y: self.y.wrapping_add_signed(rhs.y),
800            z: self.z.wrapping_add_signed(rhs.z),
801            w: self.w.wrapping_add_signed(rhs.w),
802        }
803    }
804
805    /// Returns a vector containing the saturating addition of `self` and signed vector `rhs`.
806    ///
807    /// In other words this computes `[self.x.saturating_add_signed(rhs.x), self.y.saturating_add_signed(rhs.y), ..]`.
808    #[inline]
809    #[must_use]
810    pub const fn saturating_add_signed(self, rhs: I8Vec4) -> Self {
811        Self {
812            x: self.x.saturating_add_signed(rhs.x),
813            y: self.y.saturating_add_signed(rhs.y),
814            z: self.z.saturating_add_signed(rhs.z),
815            w: self.w.saturating_add_signed(rhs.w),
816        }
817    }
818}
819
820impl Default for U8Vec4 {
821    #[inline(always)]
822    fn default() -> Self {
823        Self::ZERO
824    }
825}
826
827impl Div<U8Vec4> for U8Vec4 {
828    type Output = Self;
829    #[inline]
830    fn div(self, rhs: Self) -> Self {
831        Self {
832            x: self.x.div(rhs.x),
833            y: self.y.div(rhs.y),
834            z: self.z.div(rhs.z),
835            w: self.w.div(rhs.w),
836        }
837    }
838}
839
840impl Div<&U8Vec4> for U8Vec4 {
841    type Output = U8Vec4;
842    #[inline]
843    fn div(self, rhs: &U8Vec4) -> U8Vec4 {
844        self.div(*rhs)
845    }
846}
847
848impl Div<&U8Vec4> for &U8Vec4 {
849    type Output = U8Vec4;
850    #[inline]
851    fn div(self, rhs: &U8Vec4) -> U8Vec4 {
852        (*self).div(*rhs)
853    }
854}
855
856impl Div<U8Vec4> for &U8Vec4 {
857    type Output = U8Vec4;
858    #[inline]
859    fn div(self, rhs: U8Vec4) -> U8Vec4 {
860        (*self).div(rhs)
861    }
862}
863
864impl DivAssign<U8Vec4> for U8Vec4 {
865    #[inline]
866    fn div_assign(&mut self, rhs: Self) {
867        self.x.div_assign(rhs.x);
868        self.y.div_assign(rhs.y);
869        self.z.div_assign(rhs.z);
870        self.w.div_assign(rhs.w);
871    }
872}
873
874impl DivAssign<&U8Vec4> for U8Vec4 {
875    #[inline]
876    fn div_assign(&mut self, rhs: &U8Vec4) {
877        self.div_assign(*rhs)
878    }
879}
880
881impl Div<u8> for U8Vec4 {
882    type Output = Self;
883    #[inline]
884    fn div(self, rhs: u8) -> Self {
885        Self {
886            x: self.x.div(rhs),
887            y: self.y.div(rhs),
888            z: self.z.div(rhs),
889            w: self.w.div(rhs),
890        }
891    }
892}
893
894impl Div<&u8> for U8Vec4 {
895    type Output = U8Vec4;
896    #[inline]
897    fn div(self, rhs: &u8) -> U8Vec4 {
898        self.div(*rhs)
899    }
900}
901
902impl Div<&u8> for &U8Vec4 {
903    type Output = U8Vec4;
904    #[inline]
905    fn div(self, rhs: &u8) -> U8Vec4 {
906        (*self).div(*rhs)
907    }
908}
909
910impl Div<u8> for &U8Vec4 {
911    type Output = U8Vec4;
912    #[inline]
913    fn div(self, rhs: u8) -> U8Vec4 {
914        (*self).div(rhs)
915    }
916}
917
918impl DivAssign<u8> for U8Vec4 {
919    #[inline]
920    fn div_assign(&mut self, rhs: u8) {
921        self.x.div_assign(rhs);
922        self.y.div_assign(rhs);
923        self.z.div_assign(rhs);
924        self.w.div_assign(rhs);
925    }
926}
927
928impl DivAssign<&u8> for U8Vec4 {
929    #[inline]
930    fn div_assign(&mut self, rhs: &u8) {
931        self.div_assign(*rhs)
932    }
933}
934
935impl Div<U8Vec4> for u8 {
936    type Output = U8Vec4;
937    #[inline]
938    fn div(self, rhs: U8Vec4) -> U8Vec4 {
939        U8Vec4 {
940            x: self.div(rhs.x),
941            y: self.div(rhs.y),
942            z: self.div(rhs.z),
943            w: self.div(rhs.w),
944        }
945    }
946}
947
948impl Div<&U8Vec4> for u8 {
949    type Output = U8Vec4;
950    #[inline]
951    fn div(self, rhs: &U8Vec4) -> U8Vec4 {
952        self.div(*rhs)
953    }
954}
955
956impl Div<&U8Vec4> for &u8 {
957    type Output = U8Vec4;
958    #[inline]
959    fn div(self, rhs: &U8Vec4) -> U8Vec4 {
960        (*self).div(*rhs)
961    }
962}
963
964impl Div<U8Vec4> for &u8 {
965    type Output = U8Vec4;
966    #[inline]
967    fn div(self, rhs: U8Vec4) -> U8Vec4 {
968        (*self).div(rhs)
969    }
970}
971
972impl Mul<U8Vec4> for U8Vec4 {
973    type Output = Self;
974    #[inline]
975    fn mul(self, rhs: Self) -> Self {
976        Self {
977            x: self.x.mul(rhs.x),
978            y: self.y.mul(rhs.y),
979            z: self.z.mul(rhs.z),
980            w: self.w.mul(rhs.w),
981        }
982    }
983}
984
985impl Mul<&U8Vec4> for U8Vec4 {
986    type Output = U8Vec4;
987    #[inline]
988    fn mul(self, rhs: &U8Vec4) -> U8Vec4 {
989        self.mul(*rhs)
990    }
991}
992
993impl Mul<&U8Vec4> for &U8Vec4 {
994    type Output = U8Vec4;
995    #[inline]
996    fn mul(self, rhs: &U8Vec4) -> U8Vec4 {
997        (*self).mul(*rhs)
998    }
999}
1000
1001impl Mul<U8Vec4> for &U8Vec4 {
1002    type Output = U8Vec4;
1003    #[inline]
1004    fn mul(self, rhs: U8Vec4) -> U8Vec4 {
1005        (*self).mul(rhs)
1006    }
1007}
1008
1009impl MulAssign<U8Vec4> for U8Vec4 {
1010    #[inline]
1011    fn mul_assign(&mut self, rhs: Self) {
1012        self.x.mul_assign(rhs.x);
1013        self.y.mul_assign(rhs.y);
1014        self.z.mul_assign(rhs.z);
1015        self.w.mul_assign(rhs.w);
1016    }
1017}
1018
1019impl MulAssign<&U8Vec4> for U8Vec4 {
1020    #[inline]
1021    fn mul_assign(&mut self, rhs: &U8Vec4) {
1022        self.mul_assign(*rhs)
1023    }
1024}
1025
1026impl Mul<u8> for U8Vec4 {
1027    type Output = Self;
1028    #[inline]
1029    fn mul(self, rhs: u8) -> Self {
1030        Self {
1031            x: self.x.mul(rhs),
1032            y: self.y.mul(rhs),
1033            z: self.z.mul(rhs),
1034            w: self.w.mul(rhs),
1035        }
1036    }
1037}
1038
1039impl Mul<&u8> for U8Vec4 {
1040    type Output = U8Vec4;
1041    #[inline]
1042    fn mul(self, rhs: &u8) -> U8Vec4 {
1043        self.mul(*rhs)
1044    }
1045}
1046
1047impl Mul<&u8> for &U8Vec4 {
1048    type Output = U8Vec4;
1049    #[inline]
1050    fn mul(self, rhs: &u8) -> U8Vec4 {
1051        (*self).mul(*rhs)
1052    }
1053}
1054
1055impl Mul<u8> for &U8Vec4 {
1056    type Output = U8Vec4;
1057    #[inline]
1058    fn mul(self, rhs: u8) -> U8Vec4 {
1059        (*self).mul(rhs)
1060    }
1061}
1062
1063impl MulAssign<u8> for U8Vec4 {
1064    #[inline]
1065    fn mul_assign(&mut self, rhs: u8) {
1066        self.x.mul_assign(rhs);
1067        self.y.mul_assign(rhs);
1068        self.z.mul_assign(rhs);
1069        self.w.mul_assign(rhs);
1070    }
1071}
1072
1073impl MulAssign<&u8> for U8Vec4 {
1074    #[inline]
1075    fn mul_assign(&mut self, rhs: &u8) {
1076        self.mul_assign(*rhs)
1077    }
1078}
1079
1080impl Mul<U8Vec4> for u8 {
1081    type Output = U8Vec4;
1082    #[inline]
1083    fn mul(self, rhs: U8Vec4) -> U8Vec4 {
1084        U8Vec4 {
1085            x: self.mul(rhs.x),
1086            y: self.mul(rhs.y),
1087            z: self.mul(rhs.z),
1088            w: self.mul(rhs.w),
1089        }
1090    }
1091}
1092
1093impl Mul<&U8Vec4> for u8 {
1094    type Output = U8Vec4;
1095    #[inline]
1096    fn mul(self, rhs: &U8Vec4) -> U8Vec4 {
1097        self.mul(*rhs)
1098    }
1099}
1100
1101impl Mul<&U8Vec4> for &u8 {
1102    type Output = U8Vec4;
1103    #[inline]
1104    fn mul(self, rhs: &U8Vec4) -> U8Vec4 {
1105        (*self).mul(*rhs)
1106    }
1107}
1108
1109impl Mul<U8Vec4> for &u8 {
1110    type Output = U8Vec4;
1111    #[inline]
1112    fn mul(self, rhs: U8Vec4) -> U8Vec4 {
1113        (*self).mul(rhs)
1114    }
1115}
1116
1117impl Add<U8Vec4> for U8Vec4 {
1118    type Output = Self;
1119    #[inline]
1120    fn add(self, rhs: Self) -> Self {
1121        Self {
1122            x: self.x.add(rhs.x),
1123            y: self.y.add(rhs.y),
1124            z: self.z.add(rhs.z),
1125            w: self.w.add(rhs.w),
1126        }
1127    }
1128}
1129
1130impl Add<&U8Vec4> for U8Vec4 {
1131    type Output = U8Vec4;
1132    #[inline]
1133    fn add(self, rhs: &U8Vec4) -> U8Vec4 {
1134        self.add(*rhs)
1135    }
1136}
1137
1138impl Add<&U8Vec4> for &U8Vec4 {
1139    type Output = U8Vec4;
1140    #[inline]
1141    fn add(self, rhs: &U8Vec4) -> U8Vec4 {
1142        (*self).add(*rhs)
1143    }
1144}
1145
1146impl Add<U8Vec4> for &U8Vec4 {
1147    type Output = U8Vec4;
1148    #[inline]
1149    fn add(self, rhs: U8Vec4) -> U8Vec4 {
1150        (*self).add(rhs)
1151    }
1152}
1153
1154impl AddAssign<U8Vec4> for U8Vec4 {
1155    #[inline]
1156    fn add_assign(&mut self, rhs: Self) {
1157        self.x.add_assign(rhs.x);
1158        self.y.add_assign(rhs.y);
1159        self.z.add_assign(rhs.z);
1160        self.w.add_assign(rhs.w);
1161    }
1162}
1163
1164impl AddAssign<&U8Vec4> for U8Vec4 {
1165    #[inline]
1166    fn add_assign(&mut self, rhs: &U8Vec4) {
1167        self.add_assign(*rhs)
1168    }
1169}
1170
1171impl Add<u8> for U8Vec4 {
1172    type Output = Self;
1173    #[inline]
1174    fn add(self, rhs: u8) -> Self {
1175        Self {
1176            x: self.x.add(rhs),
1177            y: self.y.add(rhs),
1178            z: self.z.add(rhs),
1179            w: self.w.add(rhs),
1180        }
1181    }
1182}
1183
1184impl Add<&u8> for U8Vec4 {
1185    type Output = U8Vec4;
1186    #[inline]
1187    fn add(self, rhs: &u8) -> U8Vec4 {
1188        self.add(*rhs)
1189    }
1190}
1191
1192impl Add<&u8> for &U8Vec4 {
1193    type Output = U8Vec4;
1194    #[inline]
1195    fn add(self, rhs: &u8) -> U8Vec4 {
1196        (*self).add(*rhs)
1197    }
1198}
1199
1200impl Add<u8> for &U8Vec4 {
1201    type Output = U8Vec4;
1202    #[inline]
1203    fn add(self, rhs: u8) -> U8Vec4 {
1204        (*self).add(rhs)
1205    }
1206}
1207
1208impl AddAssign<u8> for U8Vec4 {
1209    #[inline]
1210    fn add_assign(&mut self, rhs: u8) {
1211        self.x.add_assign(rhs);
1212        self.y.add_assign(rhs);
1213        self.z.add_assign(rhs);
1214        self.w.add_assign(rhs);
1215    }
1216}
1217
1218impl AddAssign<&u8> for U8Vec4 {
1219    #[inline]
1220    fn add_assign(&mut self, rhs: &u8) {
1221        self.add_assign(*rhs)
1222    }
1223}
1224
1225impl Add<U8Vec4> for u8 {
1226    type Output = U8Vec4;
1227    #[inline]
1228    fn add(self, rhs: U8Vec4) -> U8Vec4 {
1229        U8Vec4 {
1230            x: self.add(rhs.x),
1231            y: self.add(rhs.y),
1232            z: self.add(rhs.z),
1233            w: self.add(rhs.w),
1234        }
1235    }
1236}
1237
1238impl Add<&U8Vec4> for u8 {
1239    type Output = U8Vec4;
1240    #[inline]
1241    fn add(self, rhs: &U8Vec4) -> U8Vec4 {
1242        self.add(*rhs)
1243    }
1244}
1245
1246impl Add<&U8Vec4> for &u8 {
1247    type Output = U8Vec4;
1248    #[inline]
1249    fn add(self, rhs: &U8Vec4) -> U8Vec4 {
1250        (*self).add(*rhs)
1251    }
1252}
1253
1254impl Add<U8Vec4> for &u8 {
1255    type Output = U8Vec4;
1256    #[inline]
1257    fn add(self, rhs: U8Vec4) -> U8Vec4 {
1258        (*self).add(rhs)
1259    }
1260}
1261
1262impl Sub<U8Vec4> for U8Vec4 {
1263    type Output = Self;
1264    #[inline]
1265    fn sub(self, rhs: Self) -> Self {
1266        Self {
1267            x: self.x.sub(rhs.x),
1268            y: self.y.sub(rhs.y),
1269            z: self.z.sub(rhs.z),
1270            w: self.w.sub(rhs.w),
1271        }
1272    }
1273}
1274
1275impl Sub<&U8Vec4> for U8Vec4 {
1276    type Output = U8Vec4;
1277    #[inline]
1278    fn sub(self, rhs: &U8Vec4) -> U8Vec4 {
1279        self.sub(*rhs)
1280    }
1281}
1282
1283impl Sub<&U8Vec4> for &U8Vec4 {
1284    type Output = U8Vec4;
1285    #[inline]
1286    fn sub(self, rhs: &U8Vec4) -> U8Vec4 {
1287        (*self).sub(*rhs)
1288    }
1289}
1290
1291impl Sub<U8Vec4> for &U8Vec4 {
1292    type Output = U8Vec4;
1293    #[inline]
1294    fn sub(self, rhs: U8Vec4) -> U8Vec4 {
1295        (*self).sub(rhs)
1296    }
1297}
1298
1299impl SubAssign<U8Vec4> for U8Vec4 {
1300    #[inline]
1301    fn sub_assign(&mut self, rhs: U8Vec4) {
1302        self.x.sub_assign(rhs.x);
1303        self.y.sub_assign(rhs.y);
1304        self.z.sub_assign(rhs.z);
1305        self.w.sub_assign(rhs.w);
1306    }
1307}
1308
1309impl SubAssign<&U8Vec4> for U8Vec4 {
1310    #[inline]
1311    fn sub_assign(&mut self, rhs: &U8Vec4) {
1312        self.sub_assign(*rhs)
1313    }
1314}
1315
1316impl Sub<u8> for U8Vec4 {
1317    type Output = Self;
1318    #[inline]
1319    fn sub(self, rhs: u8) -> Self {
1320        Self {
1321            x: self.x.sub(rhs),
1322            y: self.y.sub(rhs),
1323            z: self.z.sub(rhs),
1324            w: self.w.sub(rhs),
1325        }
1326    }
1327}
1328
1329impl Sub<&u8> for U8Vec4 {
1330    type Output = U8Vec4;
1331    #[inline]
1332    fn sub(self, rhs: &u8) -> U8Vec4 {
1333        self.sub(*rhs)
1334    }
1335}
1336
1337impl Sub<&u8> for &U8Vec4 {
1338    type Output = U8Vec4;
1339    #[inline]
1340    fn sub(self, rhs: &u8) -> U8Vec4 {
1341        (*self).sub(*rhs)
1342    }
1343}
1344
1345impl Sub<u8> for &U8Vec4 {
1346    type Output = U8Vec4;
1347    #[inline]
1348    fn sub(self, rhs: u8) -> U8Vec4 {
1349        (*self).sub(rhs)
1350    }
1351}
1352
1353impl SubAssign<u8> for U8Vec4 {
1354    #[inline]
1355    fn sub_assign(&mut self, rhs: u8) {
1356        self.x.sub_assign(rhs);
1357        self.y.sub_assign(rhs);
1358        self.z.sub_assign(rhs);
1359        self.w.sub_assign(rhs);
1360    }
1361}
1362
1363impl SubAssign<&u8> for U8Vec4 {
1364    #[inline]
1365    fn sub_assign(&mut self, rhs: &u8) {
1366        self.sub_assign(*rhs)
1367    }
1368}
1369
1370impl Sub<U8Vec4> for u8 {
1371    type Output = U8Vec4;
1372    #[inline]
1373    fn sub(self, rhs: U8Vec4) -> U8Vec4 {
1374        U8Vec4 {
1375            x: self.sub(rhs.x),
1376            y: self.sub(rhs.y),
1377            z: self.sub(rhs.z),
1378            w: self.sub(rhs.w),
1379        }
1380    }
1381}
1382
1383impl Sub<&U8Vec4> for u8 {
1384    type Output = U8Vec4;
1385    #[inline]
1386    fn sub(self, rhs: &U8Vec4) -> U8Vec4 {
1387        self.sub(*rhs)
1388    }
1389}
1390
1391impl Sub<&U8Vec4> for &u8 {
1392    type Output = U8Vec4;
1393    #[inline]
1394    fn sub(self, rhs: &U8Vec4) -> U8Vec4 {
1395        (*self).sub(*rhs)
1396    }
1397}
1398
1399impl Sub<U8Vec4> for &u8 {
1400    type Output = U8Vec4;
1401    #[inline]
1402    fn sub(self, rhs: U8Vec4) -> U8Vec4 {
1403        (*self).sub(rhs)
1404    }
1405}
1406
1407impl Rem<U8Vec4> for U8Vec4 {
1408    type Output = Self;
1409    #[inline]
1410    fn rem(self, rhs: Self) -> Self {
1411        Self {
1412            x: self.x.rem(rhs.x),
1413            y: self.y.rem(rhs.y),
1414            z: self.z.rem(rhs.z),
1415            w: self.w.rem(rhs.w),
1416        }
1417    }
1418}
1419
1420impl Rem<&U8Vec4> for U8Vec4 {
1421    type Output = U8Vec4;
1422    #[inline]
1423    fn rem(self, rhs: &U8Vec4) -> U8Vec4 {
1424        self.rem(*rhs)
1425    }
1426}
1427
1428impl Rem<&U8Vec4> for &U8Vec4 {
1429    type Output = U8Vec4;
1430    #[inline]
1431    fn rem(self, rhs: &U8Vec4) -> U8Vec4 {
1432        (*self).rem(*rhs)
1433    }
1434}
1435
1436impl Rem<U8Vec4> for &U8Vec4 {
1437    type Output = U8Vec4;
1438    #[inline]
1439    fn rem(self, rhs: U8Vec4) -> U8Vec4 {
1440        (*self).rem(rhs)
1441    }
1442}
1443
1444impl RemAssign<U8Vec4> for U8Vec4 {
1445    #[inline]
1446    fn rem_assign(&mut self, rhs: Self) {
1447        self.x.rem_assign(rhs.x);
1448        self.y.rem_assign(rhs.y);
1449        self.z.rem_assign(rhs.z);
1450        self.w.rem_assign(rhs.w);
1451    }
1452}
1453
1454impl RemAssign<&U8Vec4> for U8Vec4 {
1455    #[inline]
1456    fn rem_assign(&mut self, rhs: &U8Vec4) {
1457        self.rem_assign(*rhs)
1458    }
1459}
1460
1461impl Rem<u8> for U8Vec4 {
1462    type Output = Self;
1463    #[inline]
1464    fn rem(self, rhs: u8) -> Self {
1465        Self {
1466            x: self.x.rem(rhs),
1467            y: self.y.rem(rhs),
1468            z: self.z.rem(rhs),
1469            w: self.w.rem(rhs),
1470        }
1471    }
1472}
1473
1474impl Rem<&u8> for U8Vec4 {
1475    type Output = U8Vec4;
1476    #[inline]
1477    fn rem(self, rhs: &u8) -> U8Vec4 {
1478        self.rem(*rhs)
1479    }
1480}
1481
1482impl Rem<&u8> for &U8Vec4 {
1483    type Output = U8Vec4;
1484    #[inline]
1485    fn rem(self, rhs: &u8) -> U8Vec4 {
1486        (*self).rem(*rhs)
1487    }
1488}
1489
1490impl Rem<u8> for &U8Vec4 {
1491    type Output = U8Vec4;
1492    #[inline]
1493    fn rem(self, rhs: u8) -> U8Vec4 {
1494        (*self).rem(rhs)
1495    }
1496}
1497
1498impl RemAssign<u8> for U8Vec4 {
1499    #[inline]
1500    fn rem_assign(&mut self, rhs: u8) {
1501        self.x.rem_assign(rhs);
1502        self.y.rem_assign(rhs);
1503        self.z.rem_assign(rhs);
1504        self.w.rem_assign(rhs);
1505    }
1506}
1507
1508impl RemAssign<&u8> for U8Vec4 {
1509    #[inline]
1510    fn rem_assign(&mut self, rhs: &u8) {
1511        self.rem_assign(*rhs)
1512    }
1513}
1514
1515impl Rem<U8Vec4> for u8 {
1516    type Output = U8Vec4;
1517    #[inline]
1518    fn rem(self, rhs: U8Vec4) -> U8Vec4 {
1519        U8Vec4 {
1520            x: self.rem(rhs.x),
1521            y: self.rem(rhs.y),
1522            z: self.rem(rhs.z),
1523            w: self.rem(rhs.w),
1524        }
1525    }
1526}
1527
1528impl Rem<&U8Vec4> for u8 {
1529    type Output = U8Vec4;
1530    #[inline]
1531    fn rem(self, rhs: &U8Vec4) -> U8Vec4 {
1532        self.rem(*rhs)
1533    }
1534}
1535
1536impl Rem<&U8Vec4> for &u8 {
1537    type Output = U8Vec4;
1538    #[inline]
1539    fn rem(self, rhs: &U8Vec4) -> U8Vec4 {
1540        (*self).rem(*rhs)
1541    }
1542}
1543
1544impl Rem<U8Vec4> for &u8 {
1545    type Output = U8Vec4;
1546    #[inline]
1547    fn rem(self, rhs: U8Vec4) -> U8Vec4 {
1548        (*self).rem(rhs)
1549    }
1550}
1551
1552#[cfg(not(target_arch = "spirv"))]
1553impl AsRef<[u8; 4]> for U8Vec4 {
1554    #[inline]
1555    fn as_ref(&self) -> &[u8; 4] {
1556        unsafe { &*(self as *const U8Vec4 as *const [u8; 4]) }
1557    }
1558}
1559
1560#[cfg(not(target_arch = "spirv"))]
1561impl AsMut<[u8; 4]> for U8Vec4 {
1562    #[inline]
1563    fn as_mut(&mut self) -> &mut [u8; 4] {
1564        unsafe { &mut *(self as *mut U8Vec4 as *mut [u8; 4]) }
1565    }
1566}
1567
1568impl Sum for U8Vec4 {
1569    #[inline]
1570    fn sum<I>(iter: I) -> Self
1571    where
1572        I: Iterator<Item = Self>,
1573    {
1574        iter.fold(Self::ZERO, Self::add)
1575    }
1576}
1577
1578impl<'a> Sum<&'a Self> for U8Vec4 {
1579    #[inline]
1580    fn sum<I>(iter: I) -> Self
1581    where
1582        I: Iterator<Item = &'a Self>,
1583    {
1584        iter.fold(Self::ZERO, |a, &b| Self::add(a, b))
1585    }
1586}
1587
1588impl Product for U8Vec4 {
1589    #[inline]
1590    fn product<I>(iter: I) -> Self
1591    where
1592        I: Iterator<Item = Self>,
1593    {
1594        iter.fold(Self::ONE, Self::mul)
1595    }
1596}
1597
1598impl<'a> Product<&'a Self> for U8Vec4 {
1599    #[inline]
1600    fn product<I>(iter: I) -> Self
1601    where
1602        I: Iterator<Item = &'a Self>,
1603    {
1604        iter.fold(Self::ONE, |a, &b| Self::mul(a, b))
1605    }
1606}
1607
1608impl Not for U8Vec4 {
1609    type Output = Self;
1610    #[inline]
1611    fn not(self) -> Self::Output {
1612        Self {
1613            x: self.x.not(),
1614            y: self.y.not(),
1615            z: self.z.not(),
1616            w: self.w.not(),
1617        }
1618    }
1619}
1620
1621impl BitAnd for U8Vec4 {
1622    type Output = Self;
1623    #[inline]
1624    fn bitand(self, rhs: Self) -> Self::Output {
1625        Self {
1626            x: self.x.bitand(rhs.x),
1627            y: self.y.bitand(rhs.y),
1628            z: self.z.bitand(rhs.z),
1629            w: self.w.bitand(rhs.w),
1630        }
1631    }
1632}
1633
1634impl BitOr for U8Vec4 {
1635    type Output = Self;
1636    #[inline]
1637    fn bitor(self, rhs: Self) -> Self::Output {
1638        Self {
1639            x: self.x.bitor(rhs.x),
1640            y: self.y.bitor(rhs.y),
1641            z: self.z.bitor(rhs.z),
1642            w: self.w.bitor(rhs.w),
1643        }
1644    }
1645}
1646
1647impl BitXor for U8Vec4 {
1648    type Output = Self;
1649    #[inline]
1650    fn bitxor(self, rhs: Self) -> Self::Output {
1651        Self {
1652            x: self.x.bitxor(rhs.x),
1653            y: self.y.bitxor(rhs.y),
1654            z: self.z.bitxor(rhs.z),
1655            w: self.w.bitxor(rhs.w),
1656        }
1657    }
1658}
1659
1660impl BitAnd<u8> for U8Vec4 {
1661    type Output = Self;
1662    #[inline]
1663    fn bitand(self, rhs: u8) -> Self::Output {
1664        Self {
1665            x: self.x.bitand(rhs),
1666            y: self.y.bitand(rhs),
1667            z: self.z.bitand(rhs),
1668            w: self.w.bitand(rhs),
1669        }
1670    }
1671}
1672
1673impl BitOr<u8> for U8Vec4 {
1674    type Output = Self;
1675    #[inline]
1676    fn bitor(self, rhs: u8) -> Self::Output {
1677        Self {
1678            x: self.x.bitor(rhs),
1679            y: self.y.bitor(rhs),
1680            z: self.z.bitor(rhs),
1681            w: self.w.bitor(rhs),
1682        }
1683    }
1684}
1685
1686impl BitXor<u8> for U8Vec4 {
1687    type Output = Self;
1688    #[inline]
1689    fn bitxor(self, rhs: u8) -> Self::Output {
1690        Self {
1691            x: self.x.bitxor(rhs),
1692            y: self.y.bitxor(rhs),
1693            z: self.z.bitxor(rhs),
1694            w: self.w.bitxor(rhs),
1695        }
1696    }
1697}
1698
1699impl Shl<i8> for U8Vec4 {
1700    type Output = Self;
1701    #[inline]
1702    fn shl(self, rhs: i8) -> Self::Output {
1703        Self {
1704            x: self.x.shl(rhs),
1705            y: self.y.shl(rhs),
1706            z: self.z.shl(rhs),
1707            w: self.w.shl(rhs),
1708        }
1709    }
1710}
1711
1712impl Shr<i8> for U8Vec4 {
1713    type Output = Self;
1714    #[inline]
1715    fn shr(self, rhs: i8) -> Self::Output {
1716        Self {
1717            x: self.x.shr(rhs),
1718            y: self.y.shr(rhs),
1719            z: self.z.shr(rhs),
1720            w: self.w.shr(rhs),
1721        }
1722    }
1723}
1724
1725impl Shl<i16> for U8Vec4 {
1726    type Output = Self;
1727    #[inline]
1728    fn shl(self, rhs: i16) -> Self::Output {
1729        Self {
1730            x: self.x.shl(rhs),
1731            y: self.y.shl(rhs),
1732            z: self.z.shl(rhs),
1733            w: self.w.shl(rhs),
1734        }
1735    }
1736}
1737
1738impl Shr<i16> for U8Vec4 {
1739    type Output = Self;
1740    #[inline]
1741    fn shr(self, rhs: i16) -> Self::Output {
1742        Self {
1743            x: self.x.shr(rhs),
1744            y: self.y.shr(rhs),
1745            z: self.z.shr(rhs),
1746            w: self.w.shr(rhs),
1747        }
1748    }
1749}
1750
1751impl Shl<i32> for U8Vec4 {
1752    type Output = Self;
1753    #[inline]
1754    fn shl(self, rhs: i32) -> Self::Output {
1755        Self {
1756            x: self.x.shl(rhs),
1757            y: self.y.shl(rhs),
1758            z: self.z.shl(rhs),
1759            w: self.w.shl(rhs),
1760        }
1761    }
1762}
1763
1764impl Shr<i32> for U8Vec4 {
1765    type Output = Self;
1766    #[inline]
1767    fn shr(self, rhs: i32) -> Self::Output {
1768        Self {
1769            x: self.x.shr(rhs),
1770            y: self.y.shr(rhs),
1771            z: self.z.shr(rhs),
1772            w: self.w.shr(rhs),
1773        }
1774    }
1775}
1776
1777impl Shl<i64> for U8Vec4 {
1778    type Output = Self;
1779    #[inline]
1780    fn shl(self, rhs: i64) -> Self::Output {
1781        Self {
1782            x: self.x.shl(rhs),
1783            y: self.y.shl(rhs),
1784            z: self.z.shl(rhs),
1785            w: self.w.shl(rhs),
1786        }
1787    }
1788}
1789
1790impl Shr<i64> for U8Vec4 {
1791    type Output = Self;
1792    #[inline]
1793    fn shr(self, rhs: i64) -> Self::Output {
1794        Self {
1795            x: self.x.shr(rhs),
1796            y: self.y.shr(rhs),
1797            z: self.z.shr(rhs),
1798            w: self.w.shr(rhs),
1799        }
1800    }
1801}
1802
1803impl Shl<u8> for U8Vec4 {
1804    type Output = Self;
1805    #[inline]
1806    fn shl(self, rhs: u8) -> Self::Output {
1807        Self {
1808            x: self.x.shl(rhs),
1809            y: self.y.shl(rhs),
1810            z: self.z.shl(rhs),
1811            w: self.w.shl(rhs),
1812        }
1813    }
1814}
1815
1816impl Shr<u8> for U8Vec4 {
1817    type Output = Self;
1818    #[inline]
1819    fn shr(self, rhs: u8) -> Self::Output {
1820        Self {
1821            x: self.x.shr(rhs),
1822            y: self.y.shr(rhs),
1823            z: self.z.shr(rhs),
1824            w: self.w.shr(rhs),
1825        }
1826    }
1827}
1828
1829impl Shl<u16> for U8Vec4 {
1830    type Output = Self;
1831    #[inline]
1832    fn shl(self, rhs: u16) -> Self::Output {
1833        Self {
1834            x: self.x.shl(rhs),
1835            y: self.y.shl(rhs),
1836            z: self.z.shl(rhs),
1837            w: self.w.shl(rhs),
1838        }
1839    }
1840}
1841
1842impl Shr<u16> for U8Vec4 {
1843    type Output = Self;
1844    #[inline]
1845    fn shr(self, rhs: u16) -> Self::Output {
1846        Self {
1847            x: self.x.shr(rhs),
1848            y: self.y.shr(rhs),
1849            z: self.z.shr(rhs),
1850            w: self.w.shr(rhs),
1851        }
1852    }
1853}
1854
1855impl Shl<u32> for U8Vec4 {
1856    type Output = Self;
1857    #[inline]
1858    fn shl(self, rhs: u32) -> Self::Output {
1859        Self {
1860            x: self.x.shl(rhs),
1861            y: self.y.shl(rhs),
1862            z: self.z.shl(rhs),
1863            w: self.w.shl(rhs),
1864        }
1865    }
1866}
1867
1868impl Shr<u32> for U8Vec4 {
1869    type Output = Self;
1870    #[inline]
1871    fn shr(self, rhs: u32) -> Self::Output {
1872        Self {
1873            x: self.x.shr(rhs),
1874            y: self.y.shr(rhs),
1875            z: self.z.shr(rhs),
1876            w: self.w.shr(rhs),
1877        }
1878    }
1879}
1880
1881impl Shl<u64> for U8Vec4 {
1882    type Output = Self;
1883    #[inline]
1884    fn shl(self, rhs: u64) -> Self::Output {
1885        Self {
1886            x: self.x.shl(rhs),
1887            y: self.y.shl(rhs),
1888            z: self.z.shl(rhs),
1889            w: self.w.shl(rhs),
1890        }
1891    }
1892}
1893
1894impl Shr<u64> for U8Vec4 {
1895    type Output = Self;
1896    #[inline]
1897    fn shr(self, rhs: u64) -> Self::Output {
1898        Self {
1899            x: self.x.shr(rhs),
1900            y: self.y.shr(rhs),
1901            z: self.z.shr(rhs),
1902            w: self.w.shr(rhs),
1903        }
1904    }
1905}
1906
1907impl Shl<crate::IVec4> for U8Vec4 {
1908    type Output = Self;
1909    #[inline]
1910    fn shl(self, rhs: crate::IVec4) -> Self::Output {
1911        Self {
1912            x: self.x.shl(rhs.x),
1913            y: self.y.shl(rhs.y),
1914            z: self.z.shl(rhs.z),
1915            w: self.w.shl(rhs.w),
1916        }
1917    }
1918}
1919
1920impl Shr<crate::IVec4> for U8Vec4 {
1921    type Output = Self;
1922    #[inline]
1923    fn shr(self, rhs: crate::IVec4) -> Self::Output {
1924        Self {
1925            x: self.x.shr(rhs.x),
1926            y: self.y.shr(rhs.y),
1927            z: self.z.shr(rhs.z),
1928            w: self.w.shr(rhs.w),
1929        }
1930    }
1931}
1932
1933impl Shl<crate::UVec4> for U8Vec4 {
1934    type Output = Self;
1935    #[inline]
1936    fn shl(self, rhs: crate::UVec4) -> Self::Output {
1937        Self {
1938            x: self.x.shl(rhs.x),
1939            y: self.y.shl(rhs.y),
1940            z: self.z.shl(rhs.z),
1941            w: self.w.shl(rhs.w),
1942        }
1943    }
1944}
1945
1946impl Shr<crate::UVec4> for U8Vec4 {
1947    type Output = Self;
1948    #[inline]
1949    fn shr(self, rhs: crate::UVec4) -> Self::Output {
1950        Self {
1951            x: self.x.shr(rhs.x),
1952            y: self.y.shr(rhs.y),
1953            z: self.z.shr(rhs.z),
1954            w: self.w.shr(rhs.w),
1955        }
1956    }
1957}
1958
1959impl Index<usize> for U8Vec4 {
1960    type Output = u8;
1961    #[inline]
1962    fn index(&self, index: usize) -> &Self::Output {
1963        match index {
1964            0 => &self.x,
1965            1 => &self.y,
1966            2 => &self.z,
1967            3 => &self.w,
1968            _ => panic!("index out of bounds"),
1969        }
1970    }
1971}
1972
1973impl IndexMut<usize> for U8Vec4 {
1974    #[inline]
1975    fn index_mut(&mut self, index: usize) -> &mut Self::Output {
1976        match index {
1977            0 => &mut self.x,
1978            1 => &mut self.y,
1979            2 => &mut self.z,
1980            3 => &mut self.w,
1981            _ => panic!("index out of bounds"),
1982        }
1983    }
1984}
1985
1986impl fmt::Display for U8Vec4 {
1987    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1988        write!(f, "[{}, {}, {}, {}]", self.x, self.y, self.z, self.w)
1989    }
1990}
1991
1992impl fmt::Debug for U8Vec4 {
1993    fn fmt(&self, fmt: &mut fmt::Formatter<'_>) -> fmt::Result {
1994        fmt.debug_tuple(stringify!(U8Vec4))
1995            .field(&self.x)
1996            .field(&self.y)
1997            .field(&self.z)
1998            .field(&self.w)
1999            .finish()
2000    }
2001}
2002
2003impl From<[u8; 4]> for U8Vec4 {
2004    #[inline]
2005    fn from(a: [u8; 4]) -> Self {
2006        Self::new(a[0], a[1], a[2], a[3])
2007    }
2008}
2009
2010impl From<U8Vec4> for [u8; 4] {
2011    #[inline]
2012    fn from(v: U8Vec4) -> Self {
2013        [v.x, v.y, v.z, v.w]
2014    }
2015}
2016
2017impl From<(u8, u8, u8, u8)> for U8Vec4 {
2018    #[inline]
2019    fn from(t: (u8, u8, u8, u8)) -> Self {
2020        Self::new(t.0, t.1, t.2, t.3)
2021    }
2022}
2023
2024impl From<U8Vec4> for (u8, u8, u8, u8) {
2025    #[inline]
2026    fn from(v: U8Vec4) -> Self {
2027        (v.x, v.y, v.z, v.w)
2028    }
2029}
2030
2031impl From<(U8Vec3, u8)> for U8Vec4 {
2032    #[inline]
2033    fn from((v, w): (U8Vec3, u8)) -> Self {
2034        Self::new(v.x, v.y, v.z, w)
2035    }
2036}
2037
2038impl From<(u8, U8Vec3)> for U8Vec4 {
2039    #[inline]
2040    fn from((x, v): (u8, U8Vec3)) -> Self {
2041        Self::new(x, v.x, v.y, v.z)
2042    }
2043}
2044
2045impl From<(U8Vec2, u8, u8)> for U8Vec4 {
2046    #[inline]
2047    fn from((v, z, w): (U8Vec2, u8, u8)) -> Self {
2048        Self::new(v.x, v.y, z, w)
2049    }
2050}
2051
2052impl From<(U8Vec2, U8Vec2)> for U8Vec4 {
2053    #[inline]
2054    fn from((v, u): (U8Vec2, U8Vec2)) -> Self {
2055        Self::new(v.x, v.y, u.x, u.y)
2056    }
2057}
2058
2059impl TryFrom<I8Vec4> for U8Vec4 {
2060    type Error = core::num::TryFromIntError;
2061
2062    #[inline]
2063    fn try_from(v: I8Vec4) -> Result<Self, Self::Error> {
2064        Ok(Self::new(
2065            u8::try_from(v.x)?,
2066            u8::try_from(v.y)?,
2067            u8::try_from(v.z)?,
2068            u8::try_from(v.w)?,
2069        ))
2070    }
2071}
2072
2073impl TryFrom<I16Vec4> for U8Vec4 {
2074    type Error = core::num::TryFromIntError;
2075
2076    #[inline]
2077    fn try_from(v: I16Vec4) -> Result<Self, Self::Error> {
2078        Ok(Self::new(
2079            u8::try_from(v.x)?,
2080            u8::try_from(v.y)?,
2081            u8::try_from(v.z)?,
2082            u8::try_from(v.w)?,
2083        ))
2084    }
2085}
2086
2087impl TryFrom<U16Vec4> for U8Vec4 {
2088    type Error = core::num::TryFromIntError;
2089
2090    #[inline]
2091    fn try_from(v: U16Vec4) -> Result<Self, Self::Error> {
2092        Ok(Self::new(
2093            u8::try_from(v.x)?,
2094            u8::try_from(v.y)?,
2095            u8::try_from(v.z)?,
2096            u8::try_from(v.w)?,
2097        ))
2098    }
2099}
2100
2101impl TryFrom<IVec4> for U8Vec4 {
2102    type Error = core::num::TryFromIntError;
2103
2104    #[inline]
2105    fn try_from(v: IVec4) -> Result<Self, Self::Error> {
2106        Ok(Self::new(
2107            u8::try_from(v.x)?,
2108            u8::try_from(v.y)?,
2109            u8::try_from(v.z)?,
2110            u8::try_from(v.w)?,
2111        ))
2112    }
2113}
2114
2115impl TryFrom<UVec4> for U8Vec4 {
2116    type Error = core::num::TryFromIntError;
2117
2118    #[inline]
2119    fn try_from(v: UVec4) -> Result<Self, Self::Error> {
2120        Ok(Self::new(
2121            u8::try_from(v.x)?,
2122            u8::try_from(v.y)?,
2123            u8::try_from(v.z)?,
2124            u8::try_from(v.w)?,
2125        ))
2126    }
2127}
2128
2129impl TryFrom<I64Vec4> for U8Vec4 {
2130    type Error = core::num::TryFromIntError;
2131
2132    #[inline]
2133    fn try_from(v: I64Vec4) -> Result<Self, Self::Error> {
2134        Ok(Self::new(
2135            u8::try_from(v.x)?,
2136            u8::try_from(v.y)?,
2137            u8::try_from(v.z)?,
2138            u8::try_from(v.w)?,
2139        ))
2140    }
2141}
2142
2143impl TryFrom<U64Vec4> for U8Vec4 {
2144    type Error = core::num::TryFromIntError;
2145
2146    #[inline]
2147    fn try_from(v: U64Vec4) -> Result<Self, Self::Error> {
2148        Ok(Self::new(
2149            u8::try_from(v.x)?,
2150            u8::try_from(v.y)?,
2151            u8::try_from(v.z)?,
2152            u8::try_from(v.w)?,
2153        ))
2154    }
2155}
2156
2157impl TryFrom<USizeVec4> for U8Vec4 {
2158    type Error = core::num::TryFromIntError;
2159
2160    #[inline]
2161    fn try_from(v: USizeVec4) -> Result<Self, Self::Error> {
2162        Ok(Self::new(
2163            u8::try_from(v.x)?,
2164            u8::try_from(v.y)?,
2165            u8::try_from(v.z)?,
2166            u8::try_from(v.w)?,
2167        ))
2168    }
2169}
2170
2171impl From<BVec4> for U8Vec4 {
2172    #[inline]
2173    fn from(v: BVec4) -> Self {
2174        Self::new(u8::from(v.x), u8::from(v.y), u8::from(v.z), u8::from(v.w))
2175    }
2176}
2177
2178#[cfg(not(feature = "scalar-math"))]
2179impl From<BVec4A> for U8Vec4 {
2180    #[inline]
2181    fn from(v: BVec4A) -> Self {
2182        let bool_array: [bool; 4] = v.into();
2183        Self::new(
2184            u8::from(bool_array[0]),
2185            u8::from(bool_array[1]),
2186            u8::from(bool_array[2]),
2187            u8::from(bool_array[3]),
2188        )
2189    }
2190}