use super::*;
macro_rules! ty {
($($n:literal)*) => {
::paste::paste!(
pub type Deg<const A: u8, B> = Q<A, B, DegMode>;
$(
pub type [< Deg $n >]<T> = Q<$n, T, DegMode>;
)*
);
};
}
ty!(
0 1 2 3 4 5 6 7 8 9
10 11 12 13 14 15 16 17 18 19
20 21 22 23 24 25 26 27 28 29
30 31 32 33 34 35 36 37
);
#[repr(transparent)]
#[derive(Clone)]
#[derive(Copy)]
pub struct DegMode;
impl<const A: u8, B, C> TryFrom<Q<A, B, RadMode, C>> for Q<A, B, DegMode, C>
where
B: ops::Int,
B: ops::Prim,
C: Engine,
(): SupportedPrecision<A>,
(): SupportedInt<B>,
(): Supported<A, B> {
type Error = Error;
fn try_from(value: Q<A, B, RadMode, C>) -> ::core::result::Result<Self, Self::Error> {
value.to_deg()
}
}
impl<const A: u8, B, C> Q<A, B, DegMode, C>
where
B: ops::Int,
B: ops::Prim,
C: Engine,
(): SupportedPrecision<A>,
(): SupportedInt<B>,
(): Supported<A, B> {
#[inline]
pub fn tan(self) -> Result<Ratio<Q<A, B, DefaultMode, C>>> {
self.to_rad()?.tan()
}
#[inline]
pub fn sin(self) -> Result<Ratio<Q<A, B, DefaultMode, C>>> {
self.to_rad()?.sin()
}
#[inline]
pub fn cos(self) -> Result<Ratio<Q<A, B, DefaultMode, C>>> {
self.to_rad()?.cos()
}
#[inline]
pub fn to_rad(self) -> Result<Q<A, B, RadMode, C>> {
let ret: B = self.n;
let ret: B = C::to_rad(ret)?;
let ret: Q<A, B, RadMode, C> = ret.into();
Ok(ret)
}
}
#[cfg(test)]
#[allow(clippy::zero_prefixed_literal)]
mod test {
use super::*;
#[::rstest::rstest]
#[case(25_00.into(), 0_46.into())]
fn tan(#[case] angle: Deg2<u32>, #[case] expected: Q2<u32>) {
let ret: Q2<_> = angle.tan().unwrap();
assert_eq!(ret, expected);
}
#[::rstest::rstest]
#[case(25_00.into(), 0_42.into())]
fn sin(#[case] angle: Deg2<u32>, #[case] expected: Q2<u32>) {
let ret: Q2<_> = angle.sin().unwrap();
assert_eq!(ret, expected);
}
#[::rstest::rstest]
#[case(1_00.into(), 1_00.into())]
fn cos(#[case] angle: Deg2<u32>, #[case] expected: Q2<u32>) {
let ret: Q2<_> = angle.cos().unwrap();
assert_eq!(ret, expected);
}
}