autd3_rs_core/common/
angle.rs1#[allow(non_camel_case_types)]
2pub struct deg;
3
4#[allow(non_camel_case_types)]
5pub struct rad;
6
7#[repr(C)]
8#[derive(Clone, Copy, PartialEq)]
9pub struct Angle {
10 radian: f32,
11}
12
13impl core::fmt::Debug for Angle {
14 fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
15 write!(f, "{} rad", self.radian)
16 }
17}
18
19impl Angle {
20 pub const ZERO: Self = Self { radian: 0.0 };
21 pub const PI: Self = Self {
22 radian: core::f32::consts::PI,
23 };
24
25 #[must_use]
26 pub const fn from_rad(radian: f32) -> Self {
27 Self { radian }
28 }
29
30 #[must_use]
31 pub const fn from_deg(degree: f32) -> Self {
32 Self {
33 radian: degree.to_radians(),
34 }
35 }
36
37 #[must_use]
38 pub const fn rad(self) -> f32 {
39 self.radian
40 }
41
42 #[must_use]
43 pub const fn deg(self) -> f32 {
44 self.radian.to_degrees()
45 }
46}
47
48impl core::ops::Mul<deg> for f32 {
49 type Output = Angle;
50 fn mul(self, _rhs: deg) -> Self::Output {
51 Self::Output::from_deg(self)
52 }
53}
54
55impl core::ops::Mul<rad> for f32 {
56 type Output = Angle;
57 fn mul(self, _rhs: rad) -> Self::Output {
58 Self::Output::from_rad(self)
59 }
60}
61
62impl core::ops::Neg for Angle {
63 type Output = Angle;
64 fn neg(self) -> Self::Output {
65 Angle {
66 radian: -self.radian,
67 }
68 }
69}
70
71impl core::ops::Add<Angle> for Angle {
72 type Output = Angle;
73 fn add(self, rhs: Angle) -> Self::Output {
74 Angle {
75 radian: self.radian + rhs.radian,
76 }
77 }
78}
79
80impl core::ops::Sub<Angle> for Angle {
81 type Output = Angle;
82 fn sub(self, rhs: Angle) -> Self::Output {
83 Angle {
84 radian: self.radian - rhs.radian,
85 }
86 }
87}
88
89impl core::ops::Mul<f32> for Angle {
90 type Output = Angle;
91 fn mul(self, rhs: f32) -> Self::Output {
92 Angle {
93 radian: self.radian * rhs,
94 }
95 }
96}
97
98impl core::ops::Div<f32> for Angle {
99 type Output = Angle;
100 fn div(self, rhs: f32) -> Self::Output {
101 Angle {
102 radian: self.radian / rhs,
103 }
104 }
105}
106
107impl core::ops::Mul<Angle> for f32 {
108 type Output = Angle;
109 fn mul(self, rhs: Angle) -> Self::Output {
110 Angle {
111 radian: rhs.radian * self,
112 }
113 }
114}
115
116impl core::ops::AddAssign for Angle {
117 fn add_assign(&mut self, rhs: Angle) {
118 self.radian += rhs.radian;
119 }
120}
121
122impl core::ops::SubAssign for Angle {
123 fn sub_assign(&mut self, rhs: Angle) {
124 self.radian -= rhs.radian;
125 }
126}
127
128impl core::ops::MulAssign<f32> for Angle {
129 fn mul_assign(&mut self, rhs: f32) {
130 self.radian *= rhs;
131 }
132}
133
134impl core::ops::DivAssign<f32> for Angle {
135 fn div_assign(&mut self, rhs: f32) {
136 self.radian /= rhs;
137 }
138}
139
140#[cfg(test)]
141mod tests {
142 use super::*;
143
144 #[test]
145 fn dbg() {
146 assert_eq!(format!("{:?}", 1.0 * rad), "1 rad");
147 }
148
149 #[test]
150 fn ops() {
151 use approx::assert_abs_diff_eq;
152
153 let mut a = 1.0 * rad;
154 let b = 2.0 * rad;
155
156 assert_abs_diff_eq!((-a).rad(), -1.0);
157 assert_abs_diff_eq!((a + b).rad(), 3.0);
158 assert_abs_diff_eq!((a - b).rad(), -1.0);
159 assert_abs_diff_eq!((a * 2.0).rad(), 2.0);
160 assert_abs_diff_eq!((a / 2.0).rad(), 0.5);
161 assert_abs_diff_eq!((2.0 * a).rad(), 2.0);
162
163 a += b;
164 assert_abs_diff_eq!(a.rad(), 3.0);
165 a -= b;
166 assert_abs_diff_eq!(a.rad(), 1.0);
167 a *= 2.0;
168 assert_abs_diff_eq!(a.rad(), 2.0);
169 a /= 2.0;
170 assert_abs_diff_eq!(a.rad(), 1.0);
171 }
172}