1 use crate::{CheckedMul, One};
2 use core::num::Wrapping;
3 use core::ops::Mul;
4
5 /// Binary operator for raising a value to a power.
6 pub trait Pow<RHS> {
7 /// The result after applying the operator.
8 type Output;
9
10 /// Returns `self` to the power `rhs`.
11 ///
12 /// # Examples
13 ///
14 /// ```
15 /// use num_traits::Pow;
16 /// assert_eq!(Pow::pow(10u32, 2u32), 100);
17 /// ```
pow(self, rhs: RHS) -> Self::Output18 fn pow(self, rhs: RHS) -> Self::Output;
19 }
20
21 macro_rules! pow_impl {
22 ($t:ty) => {
23 pow_impl!($t, u8);
24 pow_impl!($t, usize);
25
26 // FIXME: these should be possible
27 // pow_impl!($t, u16);
28 // pow_impl!($t, u32);
29 // pow_impl!($t, u64);
30 };
31 ($t:ty, $rhs:ty) => {
32 pow_impl!($t, $rhs, usize, pow);
33 };
34 ($t:ty, $rhs:ty, $desired_rhs:ty, $method:expr) => {
35 impl Pow<$rhs> for $t {
36 type Output = $t;
37 #[inline]
38 fn pow(self, rhs: $rhs) -> $t {
39 ($method)(self, <$desired_rhs>::from(rhs))
40 }
41 }
42
43 impl<'a> Pow<&'a $rhs> for $t {
44 type Output = $t;
45 #[inline]
46 fn pow(self, rhs: &'a $rhs) -> $t {
47 ($method)(self, <$desired_rhs>::from(*rhs))
48 }
49 }
50
51 impl<'a> Pow<$rhs> for &'a $t {
52 type Output = $t;
53 #[inline]
54 fn pow(self, rhs: $rhs) -> $t {
55 ($method)(*self, <$desired_rhs>::from(rhs))
56 }
57 }
58
59 impl<'a, 'b> Pow<&'a $rhs> for &'b $t {
60 type Output = $t;
61 #[inline]
62 fn pow(self, rhs: &'a $rhs) -> $t {
63 ($method)(*self, <$desired_rhs>::from(*rhs))
64 }
65 }
66 };
67 }
68
69 pow_impl!(u8, u8, u32, u8::pow);
70 pow_impl!(u8, u16, u32, u8::pow);
71 pow_impl!(u8, u32, u32, u8::pow);
72 pow_impl!(u8, usize);
73 pow_impl!(i8, u8, u32, i8::pow);
74 pow_impl!(i8, u16, u32, i8::pow);
75 pow_impl!(i8, u32, u32, i8::pow);
76 pow_impl!(i8, usize);
77 pow_impl!(u16, u8, u32, u16::pow);
78 pow_impl!(u16, u16, u32, u16::pow);
79 pow_impl!(u16, u32, u32, u16::pow);
80 pow_impl!(u16, usize);
81 pow_impl!(i16, u8, u32, i16::pow);
82 pow_impl!(i16, u16, u32, i16::pow);
83 pow_impl!(i16, u32, u32, i16::pow);
84 pow_impl!(i16, usize);
85 pow_impl!(u32, u8, u32, u32::pow);
86 pow_impl!(u32, u16, u32, u32::pow);
87 pow_impl!(u32, u32, u32, u32::pow);
88 pow_impl!(u32, usize);
89 pow_impl!(i32, u8, u32, i32::pow);
90 pow_impl!(i32, u16, u32, i32::pow);
91 pow_impl!(i32, u32, u32, i32::pow);
92 pow_impl!(i32, usize);
93 pow_impl!(u64, u8, u32, u64::pow);
94 pow_impl!(u64, u16, u32, u64::pow);
95 pow_impl!(u64, u32, u32, u64::pow);
96 pow_impl!(u64, usize);
97 pow_impl!(i64, u8, u32, i64::pow);
98 pow_impl!(i64, u16, u32, i64::pow);
99 pow_impl!(i64, u32, u32, i64::pow);
100 pow_impl!(i64, usize);
101
102 pow_impl!(u128, u8, u32, u128::pow);
103 pow_impl!(u128, u16, u32, u128::pow);
104 pow_impl!(u128, u32, u32, u128::pow);
105 pow_impl!(u128, usize);
106
107 pow_impl!(i128, u8, u32, i128::pow);
108 pow_impl!(i128, u16, u32, i128::pow);
109 pow_impl!(i128, u32, u32, i128::pow);
110 pow_impl!(i128, usize);
111
112 pow_impl!(usize, u8, u32, usize::pow);
113 pow_impl!(usize, u16, u32, usize::pow);
114 pow_impl!(usize, u32, u32, usize::pow);
115 pow_impl!(usize, usize);
116 pow_impl!(isize, u8, u32, isize::pow);
117 pow_impl!(isize, u16, u32, isize::pow);
118 pow_impl!(isize, u32, u32, isize::pow);
119 pow_impl!(isize, usize);
120 pow_impl!(Wrapping<u8>);
121 pow_impl!(Wrapping<i8>);
122 pow_impl!(Wrapping<u16>);
123 pow_impl!(Wrapping<i16>);
124 pow_impl!(Wrapping<u32>);
125 pow_impl!(Wrapping<i32>);
126 pow_impl!(Wrapping<u64>);
127 pow_impl!(Wrapping<i64>);
128 pow_impl!(Wrapping<u128>);
129 pow_impl!(Wrapping<i128>);
130 pow_impl!(Wrapping<usize>);
131 pow_impl!(Wrapping<isize>);
132
133 // FIXME: these should be possible
134 // pow_impl!(u8, u64);
135 // pow_impl!(i16, u64);
136 // pow_impl!(i8, u64);
137 // pow_impl!(u16, u64);
138 // pow_impl!(u32, u64);
139 // pow_impl!(i32, u64);
140 // pow_impl!(u64, u64);
141 // pow_impl!(i64, u64);
142 // pow_impl!(usize, u64);
143 // pow_impl!(isize, u64);
144
145 #[cfg(any(feature = "std", feature = "libm"))]
146 mod float_impls {
147 use super::Pow;
148 use crate::Float;
149
150 pow_impl!(f32, i8, i32, <f32 as Float>::powi);
151 pow_impl!(f32, u8, i32, <f32 as Float>::powi);
152 pow_impl!(f32, i16, i32, <f32 as Float>::powi);
153 pow_impl!(f32, u16, i32, <f32 as Float>::powi);
154 pow_impl!(f32, i32, i32, <f32 as Float>::powi);
155 pow_impl!(f64, i8, i32, <f64 as Float>::powi);
156 pow_impl!(f64, u8, i32, <f64 as Float>::powi);
157 pow_impl!(f64, i16, i32, <f64 as Float>::powi);
158 pow_impl!(f64, u16, i32, <f64 as Float>::powi);
159 pow_impl!(f64, i32, i32, <f64 as Float>::powi);
160 pow_impl!(f32, f32, f32, <f32 as Float>::powf);
161 pow_impl!(f64, f32, f64, <f64 as Float>::powf);
162 pow_impl!(f64, f64, f64, <f64 as Float>::powf);
163 }
164
165 /// Raises a value to the power of exp, using exponentiation by squaring.
166 ///
167 /// Note that `0⁰` (`pow(0, 0)`) returns `1`. Mathematically this is undefined.
168 ///
169 /// # Example
170 ///
171 /// ```rust
172 /// use num_traits::pow;
173 ///
174 /// assert_eq!(pow(2i8, 4), 16);
175 /// assert_eq!(pow(6u8, 3), 216);
176 /// assert_eq!(pow(0u8, 0), 1); // Be aware if this case affects you
177 /// ```
178 #[inline]
pow<T: Clone + One + Mul<T, Output = T>>(mut base: T, mut exp: usize) -> T179 pub fn pow<T: Clone + One + Mul<T, Output = T>>(mut base: T, mut exp: usize) -> T {
180 if exp == 0 {
181 return T::one();
182 }
183
184 while exp & 1 == 0 {
185 base = base.clone() * base;
186 exp >>= 1;
187 }
188 if exp == 1 {
189 return base;
190 }
191
192 let mut acc = base.clone();
193 while exp > 1 {
194 exp >>= 1;
195 base = base.clone() * base;
196 if exp & 1 == 1 {
197 acc = acc * base.clone();
198 }
199 }
200 acc
201 }
202
203 /// Raises a value to the power of exp, returning `None` if an overflow occurred.
204 ///
205 /// Note that `0⁰` (`checked_pow(0, 0)`) returns `Some(1)`. Mathematically this is undefined.
206 ///
207 /// Otherwise same as the `pow` function.
208 ///
209 /// # Example
210 ///
211 /// ```rust
212 /// use num_traits::checked_pow;
213 ///
214 /// assert_eq!(checked_pow(2i8, 4), Some(16));
215 /// assert_eq!(checked_pow(7i8, 8), None);
216 /// assert_eq!(checked_pow(7u32, 8), Some(5_764_801));
217 /// assert_eq!(checked_pow(0u32, 0), Some(1)); // Be aware if this case affect you
218 /// ```
219 #[inline]
checked_pow<T: Clone + One + CheckedMul>(mut base: T, mut exp: usize) -> Option<T>220 pub fn checked_pow<T: Clone + One + CheckedMul>(mut base: T, mut exp: usize) -> Option<T> {
221 if exp == 0 {
222 return Some(T::one());
223 }
224
225 while exp & 1 == 0 {
226 base = base.checked_mul(&base)?;
227 exp >>= 1;
228 }
229 if exp == 1 {
230 return Some(base);
231 }
232
233 let mut acc = base.clone();
234 while exp > 1 {
235 exp >>= 1;
236 base = base.checked_mul(&base)?;
237 if exp & 1 == 1 {
238 acc = acc.checked_mul(&base)?;
239 }
240 }
241 Some(acc)
242 }
243