migrate the book

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AF 2023-05-03 12:05:38 +00:00
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book

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[book]
authors = ["Alisa Feistel"]
language = "en"
multilingual = false
src = "src"
title = "Monads in Rust"
[build]
build-dir = "book"
create-missing = false
[output.html]
default-theme = "navy"
mathjax-support = true
git-repository-url = "https://gitea.parrrate.ru/PTV/radn-rs"
edit-url-template = "https://gitea.parrrate.ru/PTV/radn-rs/_edit/main/book/{path}"

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# Summary
[Introduction](./ch00/s00-introduction.md)
- [Background](./ch01/s00-background.md)
- [Implementation](./ch02/s00-implementation.md)
- [Usage]()
- [Current Implementation Concerns](./ch04/s00-concerns.md)
- [Alternative Monad Traits](./ch04/s01-alternatives.md)
- [Lifetimes](./ch04/s02-lifetimes.md)
- [Stackless](./ch04/s03-stackless.md)
- [Covariance](./ch04/s04-covariance.md)

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# Introduction

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# Background

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# Implementation

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# Concerns (questions) with the current implementaion
## There exist alternative `Functor` implementations
See the [relevant subchapter](s01-alternatives.md)
## It might be better to have a per-lifetime trait for `Functor`s
See the [relevant subchapter](s02-lifetimes.md)
## `Stackless` is kind of bad
See the [relevant subchapter](s03-stackless.md)
## `WeakFunctor::F<'a, A>` is not (yet) covariant over the lifetime `'a`
See the [relevant subchapter](s04-covariance.md)
## Can `WeakFunctor` be an associated type of a `Functor` instead of its supertype?

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# Atlernatives to `Functor` trait
## `_`-`FnOnce` category functors (current)
Copied for reference. All following examples are in the same `Functor`-`Applicative`-`Monad` format
without extra (sub)traits like `WeakFunctor`, `Pure`, `ApplicativeLA2`, etc. .
```rust
trait Functor {
type F<'a, A: 'a>: 'a
where
Self: 'a;
fn fmap<'a, A: 'a, B: 'a>(
f: impl 'a + FnOnce(A) -> B, fa: Self::F<'a, A>,
) -> Self::F<'a, B>
where
Self: 'a;
}
fn fmap<'a, T: 'a + Functor, A: 'a, B: 'a>(
f: impl 'a + FnOnce(A) -> B,
) -> impl FnOnce(T::F<'a, A>) -> T::F<'a, B> {
|fa| T::fmap(f, fa)
}
```
## `Clone`-`Fn` category functors
This is probably the closest representation to what Haskell views as a category of its types.
```rust
trait Functor: Clone {
type F<'a, A: 'a + Clone>: 'a + Clone
where
Self: 'a;
fn fmap<'a, A: 'a + Clone, B: 'a + Clone>(
f: impl 'a + Clone + Fn(A) -> B, fa: Self::F<'a, A>,
) -> Self::F<'a, B>
where
Self: 'a;
}
fn fmap<'a, T: 'a + Functor, A: 'a + Clone, B: 'a + Clone>(
f: impl 'a + Clone + Fn(A) -> B,
) -> impl 'a + Clone + Fn(T::F<'a, A>) -> T::F<'a, B> {
move |fa| T::fmap(f.clone(), fa)
}
```
## `Clone`-`FnMut` category functors
We view use of `FnMut` for category's morphisms as somewhat controversial[^e].
* Use of direct/indirect mutable references is, arguably, counter-functional[^e].
* `Clone+FnMut` is, generally, nonsensical[^e].
* Due to that, morphisms category isn't a subcategory, so can't be wrapped.
* Not being to wrap morphisms makes implementation of one specific `Applicative` method,
sequential application (`<*>` in Haskell, `seq` in RADN) *difficult*.
```rust
trait Functor: Clone {
type F<'a, A: 'a + Clone>: 'a + Clone
where
Self: 'a;
fn fmap<'a, A: 'a + Clone, B: 'a + Clone>(
f: impl 'a + FnMut(A) -> B, fa: Self::F<'a, A>,
) -> Self::F<'a, B>
where
Self: 'a;
}
```
[^e]: elaborate?
## `Copy`-`Fn` category functors
```rust
trait Functor: Copy {
type F<'a, A: 'a + Copy>: 'a + Copy
where
Self: 'a;
fn fmap<'a, A: 'a + Copy, B: 'a + Copy>(
f: impl 'a + Copy + Fn(A) -> B, fa: Self::F<'a, A>,
) -> Self::F<'a, B>
where
Self: 'a;
}
fn fmap<'a, T: 'a + Functor, A: 'a + Copy, B: 'a + Copy>(
f: impl 'a + Copy + Fn(A) -> B,
) -> impl 'a + Copy + Fn(T::F<'a, A>) -> T::F<'a, B> {
move |fa| T::fmap(f, fa)
}
```

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# Making lifetimes a parameter of a trait instead of that of the GAT
Current:
```rust
pub trait WeakFunctor {
type F<'a, A: 'a>: 'a
where
Self: 'a;
}
```
Proposed:
```rust
pub trait WeakFunctor<'a>: 'a {
type F<A: 'a>: 'a;
}
```

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# `Stackless<'a>` isn't covariant
Current hypothesis is that this comes from `EvalTree<'a>` being invariant over `'a`
due to `FnOnce` being invariant over its output,
which in turn comes from present typesysten limitations.

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## `CovariantFunctor` not (yet) included in `Monad`
## Specific case: `Stackless<'a>` isn't covariant
See the [relevant subchapter](s03-stackless.md)