|  | @@ -7,6 +7,9 @@ use core::f64;
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				|  |  |  
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				|  |  |  use {Num, NumCast, ToPrimitive};
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				|  |  |  
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				|  |  | +#[cfg(all(not(feature = "std"), feature = "libm"))]
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				|  |  | +use libm::{F32Ext, F64Ext};
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				|  |  | +
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				|  |  |  /// Generic trait for floating point numbers that works with `no_std`.
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				|  |  |  ///
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				|  |  |  /// This trait implements a subset of the `Float` trait.
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				|  | @@ -897,8 +900,8 @@ impl FloatCore for f64 {
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				|  |  |  
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				|  |  |  /// Generic trait for floating point numbers
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				|  |  |  ///
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				|  |  | -/// This trait is only available with the `std` feature.
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				|  |  | -#[cfg(feature = "std")]
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				|  |  | +/// This trait is only available with the `std` feature, or with the `libm` feature otherwise.
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				|  |  | +#[cfg(any(feature = "std", feature = "libm"))]
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				|  |  |  pub trait Float: Num + Copy + NumCast + PartialOrd + Neg<Output = Self> {
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				|  |  |      /// Returns the `NaN` value.
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				|  |  |      ///
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				|  | @@ -1806,7 +1809,7 @@ pub trait Float: Num + Copy + NumCast + PartialOrd + Neg<Output = Self> {
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				|  |  |  }
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				|  |  |  
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				|  |  |  #[cfg(feature = "std")]
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				|  |  | -macro_rules! float_impl {
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				|  |  | +macro_rules! float_impl_std {
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				|  |  |      ($T:ident $decode:ident) => {
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				|  |  |          impl Float for $T {
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				|  |  |              constant! {
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				|  | @@ -1884,6 +1887,85 @@ macro_rules! float_impl {
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				|  |  |      };
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				|  |  |  }
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				|  |  |  
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				|  |  | +#[cfg(all(not(feature = "std"), feature = "libm"))]
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				|  |  | +macro_rules! float_impl_libm {
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				|  |  | +    ($T:ident $decode:ident $LibmImpl:ident) => {
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				|  |  | +        impl Float for $T {
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				|  |  | +            constant! {
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				|  |  | +                nan() -> $T::NAN;
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				|  |  | +                infinity() -> $T::INFINITY;
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				|  |  | +                neg_infinity() -> $T::NEG_INFINITY;
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				|  |  | +                neg_zero() -> -0.0;
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				|  |  | +                min_value() -> $T::MIN;
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				|  |  | +                min_positive_value() -> $T::MIN_POSITIVE;
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				|  |  | +                epsilon() -> $T::EPSILON;
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				|  |  | +                max_value() -> $T::MAX;
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				|  |  | +            }
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				|  |  | +
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				|  |  | +            #[inline]
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				|  |  | +            #[allow(deprecated)]
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				|  |  | +            fn abs_sub(self, other: Self) -> Self {
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				|  |  | +                <$T as $LibmImpl>::fdim(self, other)
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				|  |  | +            }
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				|  |  | +
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				|  |  | +            #[inline]
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				|  |  | +            fn integer_decode(self) -> (u64, i16, i8) {
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				|  |  | +                $decode(self)
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				|  |  | +            }
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				|  |  | +
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				|  |  | +            forward! {
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				|  |  | +                FloatCore::is_nan(self) -> bool;
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				|  |  | +                FloatCore::is_infinite(self) -> bool;
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				|  |  | +                FloatCore::is_finite(self) -> bool;
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				|  |  | +                FloatCore::is_normal(self) -> bool;
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				|  |  | +                FloatCore::classify(self) -> FpCategory;
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				|  |  | +                $LibmImpl::floor(self) -> Self;
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				|  |  | +                $LibmImpl::ceil(self) -> Self;
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				|  |  | +                $LibmImpl::round(self) -> Self;
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				|  |  | +                $LibmImpl::trunc(self) -> Self;
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				|  |  | +                $LibmImpl::fract(self) -> Self;
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				|  |  | +                $LibmImpl::abs(self) -> Self;
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				|  |  | +                FloatCore::signum(self) -> Self;
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				|  |  | +                FloatCore::is_sign_positive(self) -> bool;
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				|  |  | +                FloatCore::is_sign_negative(self) -> bool;
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				|  |  | +                $LibmImpl::mul_add(self, a: Self, b: Self) -> Self;
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				|  |  | +                FloatCore::recip(self) -> Self;
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				|  |  | +                FloatCore::powi(self, n: i32) -> Self;
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				|  |  | +                $LibmImpl::powf(self, n: Self) -> Self;
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				|  |  | +                $LibmImpl::sqrt(self) -> Self;
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				|  |  | +                $LibmImpl::exp(self) -> Self;
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				|  |  | +                $LibmImpl::exp2(self) -> Self;
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				|  |  | +                $LibmImpl::ln(self) -> Self;
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				|  |  | +                $LibmImpl::log(self, base: Self) -> Self;
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				|  |  | +                $LibmImpl::log2(self) -> Self;
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				|  |  | +                $LibmImpl::log10(self) -> Self;
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				|  |  | +                FloatCore::to_degrees(self) -> Self;
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				|  |  | +                FloatCore::to_radians(self) -> Self;
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				|  |  | +                FloatCore::max(self, other: Self) -> Self;
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				|  |  | +                FloatCore::min(self, other: Self) -> Self;
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				|  |  | +                $LibmImpl::cbrt(self) -> Self;
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				|  |  | +                $LibmImpl::hypot(self, other: Self) -> Self;
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				|  |  | +                $LibmImpl::sin(self) -> Self;
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				|  |  | +                $LibmImpl::cos(self) -> Self;
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				|  |  | +                $LibmImpl::tan(self) -> Self;
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				|  |  | +                $LibmImpl::asin(self) -> Self;
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				|  |  | +                $LibmImpl::acos(self) -> Self;
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				|  |  | +                $LibmImpl::atan(self) -> Self;
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				|  |  | +                $LibmImpl::atan2(self, other: Self) -> Self;
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				|  |  | +                $LibmImpl::sin_cos(self) -> (Self, Self);
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				|  |  | +                $LibmImpl::exp_m1(self) -> Self;
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				|  |  | +                $LibmImpl::ln_1p(self) -> Self;
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				|  |  | +                $LibmImpl::sinh(self) -> Self;
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				|  |  | +                $LibmImpl::cosh(self) -> Self;
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				|  |  | +                $LibmImpl::tanh(self) -> Self;
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				|  |  | +                $LibmImpl::asinh(self) -> Self;
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				|  |  | +                $LibmImpl::acosh(self) -> Self;
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				|  |  | +                $LibmImpl::atanh(self) -> Self;
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				|  |  | +            }
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				|  |  | +        }
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				|  |  | +    };
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				|  |  | +}
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				|  |  | +
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				|  |  |  fn integer_decode_f32(f: f32) -> (u64, i16, i8) {
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				|  |  |      // Safety: this identical to the implementation of f32::to_bits(),
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				|  |  |      // which is only available starting at Rust 1.20
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				|  | @@ -1917,9 +1999,14 @@ fn integer_decode_f64(f: f64) -> (u64, i16, i8) {
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				|  |  |  }
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				|  |  |  
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				|  |  |  #[cfg(feature = "std")]
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				|  |  | -float_impl!(f32 integer_decode_f32);
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				|  |  | +float_impl_std!(f32 integer_decode_f32);
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				|  |  |  #[cfg(feature = "std")]
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				|  |  | -float_impl!(f64 integer_decode_f64);
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				|  |  | +float_impl_std!(f64 integer_decode_f64);
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				|  |  | +
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				|  |  | +#[cfg(all(not(feature = "std"), feature = "libm"))]
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				|  |  | +float_impl_libm!(f32 integer_decode_f32 F32Ext);
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				|  |  | +#[cfg(all(not(feature = "std"), feature = "libm"))]
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				|  |  | +float_impl_libm!(f64 integer_decode_f64 F64Ext);
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				|  |  |  
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				|  |  |  macro_rules! float_const_impl {
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				|  |  |      ($(#[$doc:meta] $constant:ident,)+) => (
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				|  | @@ -2002,7 +2089,7 @@ mod tests {
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				|  |  |          }
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				|  |  |      }
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				|  |  |  
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				|  |  | -    #[cfg(feature = "std")]
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				|  |  | +    #[cfg(any(feature = "std", feature = "libm"))]
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				|  |  |      #[test]
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				|  |  |      fn convert_deg_rad_std() {
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				|  |  |          for &(deg, rad) in &DEG_RAD_PAIRS {
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