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Grant Wuerker
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Jun 25, 2024
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// use self::option::Option | ||
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// trait Applicative | ||
// where Self: * -> * | ||
// { | ||
// fn pure<T>(t: T) -> Self<T> | ||
// } | ||
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// impl Applicative for Option { | ||
// fn pure<T>(t: T) -> Self<T> { | ||
// Option::Some(t) | ||
// } | ||
// } | ||
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// trait Monad: Applicative | ||
// where Self: * -> * | ||
// { | ||
// fn bind<T, F, U>(self: Self<T>) -> Self<U> where F: Fn<T, Self<U>> | ||
// } | ||
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// impl Monad for Option { | ||
// fn bind<T, F, U>(self: Self<T>) -> Self<U> where F: Fn<T, Self<U>> { | ||
// match self { | ||
// Self::Some(self) => F::exec(t: self) | ||
// Self::None => Self::None | ||
// } | ||
// } | ||
// } | ||
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// fn foo<F>(f: F) | ||
// where F: Fn(u8, u8, u8) -> u8 { | ||
// where F: Fn<{u8, u8, u8}, u8> | ||
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// } | ||
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// fn f(u8, u8, u8) -> u8 {} // (u8, u8, u8) -> u8 | ||
// fn g((u8, u8, u8)) -> u8 {} //((u8,u8,u8)) -> u8 | ||
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// fn main() { | ||
// f(1, 2, 3) // f.exec((1, 2, 3)) | ||
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// let x = (1, 2, 3) | ||
// f(x) | ||
// g(x) | ||
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// let args = {1, 2, 3} | ||
// args.push(1) | ||
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// let args = (1, 2, 3) | ||
// f (1, 2, 3) | ||
// f args | ||
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// let x = ((u8, u8, u8)) | ||
// let x = ((u8, u8, u8),) | ||
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// f(args..) // f(x, y) f ( | ||
// } | ||
// (u8, u8, u8) -> u8 | ||
// u8 -> u8 -> u8 -> u8 | ||
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// impl Fn<((u8, u8, u8)), u8> for G | ||
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// impl Fn<(u8, u8, u8), u8> for Foo { | ||
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// } | ||
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// trait Fn<T, U> where T: FnArgs { | ||
// fn exect(&self, t: T) -> U | ||
// } | ||
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// trait Fn<Arg, Ret, const Arity: usize> | ||
// where Arg: Tuple<Arity> | ||
// { | ||
// fn call(self, arg : Arg) -> Ret | ||
// } | ||
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// trait FnMut<T, U> where T: FnArgs { | ||
// fn exect(&mut self, t: T) -> U | ||
// } | ||
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// trait Tuple<const N: usize>; | ||
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// fn map<T, U,F>(t: T, f: F) -> U | ||
// where F: Fn(T) -> U {...} | ||
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// type MyFn = () | ||
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// impl<T, U> Fn<T, U> for Foo { | ||
// fn exec(&self, t: T) -> U { | ||
// t.element(0) | ||
// t.len() | ||
// } | ||
// } | ||
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// impl Fn<(u8, u8>, Option<u8>> for MyFn { | ||
// fn exec(t: (bool, bool)) -> Option<u8> { | ||
// let (a, b) = t | ||
// f(a, b) | ||
// } | ||
// } | ||
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// #test | ||
// fn my_test() { | ||
// let f: MyFn = () | ||
// let a = Option::Some(true).bind<_, _, _>(f) | ||
// let a: Option<u8> = Option::Some(true).bind(f) | ||
// } | ||
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// sub x y = x - y | ||
// f = sub 1 // f 2 == 1 - 2 | ||
// g = `sub` 1 // g 2 == 2 - 1 | ||
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// enum Result<T, E> { | ||
// Ok(T) | ||
// Err(E) | ||
// } | ||
// impl<E> Functor for Result<*, E> { // or Result<_, E> maybe? | ||
// fn map<A, B, F: Fn<A, B>>(self: Self<A>, _ f: F) -> Self<B> { | ||
// match self { | ||
// Result::Ok(a) => { | ||
// return Result::Ok(f(a)) | ||
// } | ||
// Result::Err(e) => { | ||
// return Result::Err(e) | ||
// } | ||
// } | ||
// } | ||
// } | ||
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// enum Res<E, T> { // Result<T, E> | ||
// Err(E) | ||
// Ok(T) | ||
// } | ||
// impl Functor for Res<MyError> { | ||
// fn map<A, B, F: Fn<A, B>>(self: Self<A>, _ f: F) -> Self<B> { | ||
// match self { | ||
// Result::Ok(a) => { | ||
// return Result::Ok(f(a)) | ||
// } | ||
// Result::Err(e) => { | ||
// return Result::Err(e) | ||
// } | ||
// } | ||
// } | ||
// } | ||
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// fn main() { | ||
// let r = foo() | ||
// r.map(|t| ...) | ||
// } | ||
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// enum Result1<E, T> | ||
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// Result<_, E> | ||
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// Flip (Result) | ||
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// ((+) `foldl` 0) [1..5] | ||
// ((`foldl` 0) [1..5]) (+) | ||
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// flip :: (a -> b -> c) -> b -> a -> c | ||
// f :: a -> b -> c -> d -> e | ||
// flip f :: b -> a -> c -> d -> e |
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use self::option::Option | ||
use super::num::Num | ||
use super::num::arith::HAdd | ||
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trait Tuple<const N: u8> { } | ||
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trait Fn<const Arity: u8, Args, Ret> where Args: Tuple<Arity> { | ||
fn exec(self, args: Args) -> Ret | ||
} | ||
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pub enum Option<T> { | ||
Some(T), | ||
None | ||
} | ||
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trait Applicative | ||
where Self: * -> * | ||
{ | ||
fn pure<T>(t: T) -> Self<T> | ||
} | ||
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impl Applicative for Option { | ||
fn pure<T>(t: T) -> Self<T> { | ||
Option::Some(t) | ||
} | ||
} | ||
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trait Monad: Applicative | ||
where Self: * -> * | ||
{ | ||
fn bind<Source, Target, Morph>(self: Self<Source>, morph: Morph) -> Self<Target> | ||
where Morph: Fn<1, (Source), Self<Target>>, (Source): Tuple<1> | ||
} | ||
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impl Monad for Option { | ||
fn bind<Source, Target, Morph>(self: Self<Source>, morph: Morph) -> Self<Target> | ||
where Morph: Fn<1, (Source), Self<Target>>, (Source): Tuple<1> | ||
{ | ||
match self { | ||
Self::Some(self) => morph.exec(args: (self, )) | ||
Self::None => Self::None | ||
} | ||
} | ||
} | ||
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struct BindAdd<N> { n: N } | ||
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impl<M: * -> *, N> Fn<1, (N), M<N>> for BindAdd<N> | ||
where M: Monad, N: HAdd<N, N>, (N): Tuple<1> | ||
{ | ||
fn exec(self, args: (N)) -> M<N> { | ||
M::pure(t: args.0.add(rhs: self.n)) | ||
} | ||
} | ||
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impl<M: * -> *, N> HAdd<N, M<N>> for M<N> | ||
where M: Monad, N: HAdd<N, N>, (N): Tuple<1> | ||
{ | ||
fn add(self, rhs: N) -> M<N> { | ||
self.bind<N, N, BindAdd<N>>(morph: BindAdd { n: rhs }) | ||
} | ||
} | ||
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// impl HAdd<u8, Option<u8>> for Option<u8> { | ||
// fn add(self, rhs: u8) -> Option<u8> { | ||
// self.bind<u8, u8, BindAdd<u8>>(morph: BindAdd { n: rhs }) | ||
// } | ||
// } | ||
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impl Tuple<1> for (u8) { } | ||
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fn test_monadd() { | ||
let a: Option<u8> = Option::Some(42) | ||
let b: u8 = 26 | ||
let c: Option<u8> = a.add(rhs: b) | ||
} | ||
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// type MyFn = () | ||
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// impl<T> Fn<1, (bool), Option<u8>> for MyFn { | ||
// fn exec(self, args: (bool)) -> Option<u8> { | ||
// Option::Some(0) | ||
// } | ||
// } | ||
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// impl Tuple<1> for (bool) { } | ||
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// #test | ||
// fn my_test() { | ||
// let f: MyFn = () | ||
// let a = Option::Some(true).bind<bool, u8, MyFn>(f) | ||
// } | ||
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// fn map<T, U,F>(t: T, f: F) -> U | ||
// where F: Fn(T) -> U {...} | ||
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// type MyFn = () | ||
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// impl<T, U> Fn<T, U> for Foo { | ||
// fn exec(&self, t: T) -> U { | ||
// t.element(0) | ||
// t.len() | ||
// } | ||
// } | ||
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// impl Fn<(u8, u8>, Option<u8>> for MyFn { | ||
// fn exec(t: (bool, bool)) -> Option<u8> { | ||
// let (a, b) = t | ||
// f(a, b) | ||
// } | ||
// } | ||
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// sub x y = x - y | ||
// f = sub 1 // f 2 == 1 - 2 | ||
// g = `sub` 1 // g 2 == 2 - 1 | ||
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// enum Result<T, E> { | ||
// Ok(T) | ||
// Err(E) | ||
// } | ||
// impl<E> Functor for Result<*, E> { // or Result<_, E> maybe? | ||
// fn map<A, B, F: Fn<A, B>>(self: Self<A>, _ f: F) -> Self<B> { | ||
// match self { | ||
// Result::Ok(a) => { | ||
// return Result::Ok(f(a)) | ||
// } | ||
// Result::Err(e) => { | ||
// return Result::Err(e) | ||
// } | ||
// } | ||
// } | ||
// } | ||
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// enum Res<E, T> { // Result<T, E> | ||
// Err(E) | ||
// Ok(T) | ||
// } | ||
// impl Functor for Res<MyError> { | ||
// fn map<A, B, F: Fn<A, B>>(self: Self<A>, _ f: F) -> Self<B> { | ||
// match self { | ||
// Result::Ok(a) => { | ||
// return Result::Ok(f(a)) | ||
// } | ||
// Result::Err(e) => { | ||
// return Result::Err(e) | ||
// } | ||
// } | ||
// } | ||
// } | ||
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// fn main() { | ||
// let r = foo() | ||
// r.map(|t| ...) | ||
// } | ||
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// enum Result1<E, T> | ||
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// Result<_, E> | ||
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// Flip (Result) | ||
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// ((+) `foldl` 0) [1..5] | ||
// ((`foldl` 0) [1..5]) (+) | ||
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// flip :: (a -> b -> c) -> b -> a -> c | ||
// f :: a -> b -> c -> d -> e | ||
// flip f :: b -> a -> c -> d -> e |
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Original file line number | Diff line number | Diff line change |
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@@ -1,4 +1,4 @@ | ||
enum Option<Inner> { | ||
pub enum Option<Inner> { | ||
Some(Inner), | ||
None | ||
} |
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@@ -1,19 +1,21 @@ | ||
// use ingot::num::arith::{Add, Sub, Mul, Div, Neg, Mod, Exp} | ||
use ingot::num::arith::{Add, Sub, Mul, Div, Neg, Mod, Pow} | ||
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// pub trait Num: Add + Sub + Mul + Div + Exp { } | ||
pub trait Num: Add + Sub + Mul + Div + Pow { } | ||
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// pub trait Complex<N>: Num + Neg { | ||
// fn re() -> N | ||
// fn im() -> N | ||
// } | ||
pub trait Complex<N>: Num + Neg { | ||
fn re() -> N | ||
fn im() -> N | ||
} | ||
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// pub trait Real: Num + Neg { } | ||
pub trait Real: Num + Neg { } | ||
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// pub trait Frac<N>: Num + Neg { | ||
// fn nu() -> N | ||
// fn de() -> N | ||
// } | ||
pub trait Frac<N>: Num + Neg { | ||
fn nu() -> N | ||
fn de() -> N | ||
} | ||
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// pub trait Int: Num + Mod + Neg { } | ||
pub trait Int: Num + Mod + Neg { } | ||
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// pub trait Nat: Num + Mod { } | ||
pub trait Nat: Num + Mod { } | ||
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impl Num for u8 { } |
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