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use crate::numeric::num::Num; use crate::numeric::sign::Signed; use crate::numeric::trig::Trig; use std::num::FpCategory; pub trait Float: Num + Signed + Trig + PartialOrd + Copy { fn is_finite(self) -> bool; fn is_infinite(self) -> bool; fn is_nan(self) -> bool; fn is_normal(self) -> bool; fn is_sign_positive(self) -> bool; fn is_sing_negative(self) -> bool; fn classify(self) -> FpCategory; fn recip(self) -> Self; fn floor(self) -> Self; fn ceil(self) -> Self; fn round(self) -> Self; fn trunc(self) -> Self; fn fract(self) -> Self; fn copysign(self, sign: Self) -> Self; fn mul_add(self, a: Self, b: Self) -> Self; fn div_euclid(self, rhs: Self) -> Self; fn rem_euclid(self, rhs: Self) -> Self; fn powi(self, n: i32) -> Self; fn powf(self, n: Self) -> Self; fn sqrt(self) -> Self; fn exp(self) -> Self; fn exp2(self) -> Self; fn ln(self) -> Self; fn log(self, base: Self) -> Self; fn log2(self) -> Self; fn log10(self) -> Self; fn cbrt(self) -> Self; fn hypot(self, rhs: Self) -> Self; fn exp_m1(self) -> Self; fn ln_1p(self) -> Self; } macro_rules! impl_float { ($($t:ty)*) => { $( impl Float for $t { fn is_sign_positive(self) -> bool { <$t>::is_sign_positive(self) } fn is_sing_negative(self) -> bool{ <$t>::is_sign_negative(self) } forward! { fn is_finite(self) -> bool; fn is_infinite(self) -> bool; fn is_nan(self) -> bool; fn is_normal(self) -> bool; fn classify(self) -> FpCategory; fn recip(self) -> Self; fn floor(self) -> Self; fn ceil(self) -> Self; fn round(self) -> Self; fn trunc(self) -> Self; fn fract(self) -> Self; fn copysign(self, sign: Self) -> Self; fn mul_add(self, a: Self, b: Self) -> Self; fn div_euclid(self, rhs: Self) -> Self; fn rem_euclid(self, rhs: Self) -> Self; fn powi(self, n: i32) -> Self; fn powf(self, n: Self) -> Self; fn sqrt(self) -> Self; fn exp(self) -> Self; fn exp2(self) -> Self; fn ln(self) -> Self; fn log(self, base: Self) -> Self; fn log2(self) -> Self; fn log10(self) -> Self; fn cbrt(self) -> Self; fn hypot(self, rhs: Self) -> Self; fn exp_m1(self) -> Self; fn ln_1p(self) -> Self; } } )* } } impl_float!(f32 f64);