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use crate::general::{
AbstractGroupAbelian, AbstractRingCommutative, Additive, Multiplicative, Operator,
};
pub trait AbstractModule<
OpGroup: Operator = Additive,
OpAdd: Operator = Additive,
OpMul: Operator = Multiplicative,
>: AbstractGroupAbelian<OpGroup>
{
type AbstractRing: AbstractRingCommutative<OpAdd, OpMul>;
fn multiply_by(&self, r: Self::AbstractRing) -> Self;
}
impl<
N: AbstractRingCommutative<Additive, Multiplicative> + num::Num + crate::general::ClosedNeg,
> AbstractModule<Additive, Additive, Multiplicative> for num_complex::Complex<N>
{
type AbstractRing = N;
#[inline]
fn multiply_by(&self, r: N) -> Self {
self.clone() * r
}
}
macro_rules! impl_abstract_module(
($($T:ty),*) => {
$(impl AbstractModule for $T {
type AbstractRing = $T;
#[inline]
fn multiply_by(&self, r: $T) -> Self {
self.clone() * r
}
})*
}
);
impl_abstract_module!(i8, i16, i32, i64, isize, f32, f64);