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Overflow evaluating the requirement with a where clause on associated type #87755

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bugaevc opened this issue Aug 4, 2021 · 2 comments
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A-associated-items Area: Associated items (types, constants & functions) A-GATs Area: Generic associated types (GATs) GATs-triaged Issues using the `generic_associated_types` feature that have been triaged S-bug-has-test Status: This bug is tracked inside the repo by a `known-bug` test.

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@bugaevc
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bugaevc commented Aug 4, 2021

I tried this code (playground):

#![feature(generic_associated_types)]

use std::fmt::Debug;

trait Foo {
    type Ass where Self::Ass: Debug;
}

#[derive(Debug)]
struct Bar;

impl Foo for Bar {
    type Ass = Bar;
}

Note that while it doesn't use GATs, it requires feature(generic_associated_types) for the where clause on the associated type to be allowed.

I expected to see this happen: this should build without errors.

Instead, this happened:

error[E0275]: overflow evaluating the requirement `<Bar as Foo>::Ass == _`
  --> src/lib.rs:12:5
   |
12 |     type Ass = Bar;
   |     ^^^^^^^^^^^^^^^

For more information about this error, try `rustc --explain E0275`.

Error E0275 explanation uses this example:

trait Foo {}

struct Bar<T>(T);

impl<T> Foo for T where Bar<T>: Foo {}

where indeed there's a recursive requirement that can't be checked in a small number of steps. Not so in my example: there's no recursion; Bar clearly implements Debug (and Foo).

@rustbot modify labels: +A-associated-items +F-generic_associated_types

@bugaevc bugaevc added the C-bug Category: This is a bug. label Aug 4, 2021
@rustbot rustbot added A-associated-items Area: Associated items (types, constants & functions) F-generic_associated_types `#![feature(generic_associated_types)]` a.k.a. GATs labels Aug 4, 2021
@jackh726
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jackh726 commented Sep 3, 2021

Effectively a duplicate of #80807, but obviously a bit different since the where clause here is on the associated type

(note, I'm going to leave some notes here from me playing with this, some directly related, some indirectly)

This is difficult. The general idea of why this is a problem is:

To prove that <Bar as Foo>::Ass: Sized
We try to project <Bar as Foo>::Ass
We first select the impl impl Foo for Bar
To confirm, we require that ::Ass: Debug
So, we try to project <Bar as Foo>::Ass, which is a cycle
So, we register the obligation <Bar as Foo>::Ass -> _#0t
Later, we can't overwrite <Bar as Foo>::Ass, because of here

Effectively reverting #80246 does fix this, but then impl-wf-cycle-1.rs regresses (and only that) because

We try to project <(_#0t,) as Grault>::A
So, we have to select an impl for <(_#0t,) as Grault>
We find DefId(0:12 ~ impl_wf_cycle_1[2856]::{impl#3})
To confirm, we try to prove <<(_#1t,) as Grault>::A as Baz>
We try to project <<(_#1t,) as Grault>::A, completing the cycle

I'm not convinced that #80246 is the right fix. It solves impl-wf-cycle-1.rs by failing a bit earlier than the above cycle, but so far I haven't had any luck with alternative fixes.

I do have a branch (https://github.com/jackh726/rust/tree/projection-recursion) that first tries to normalize a canonicalized projection type, but this isn't really correct as-is because we rely on being able to recover from a cycle. Also, it would be nice to be able to return "canonical obligations", instead of having to fully solve a canonical normalization. But something along this line detecting when we end up with a cycle where we effectively can't make any progress is probably the right answer.

Another alternative I've thought about is in match_impl. The is the bit of code that is responsible for picking the substitution for an impl that matches.

match_impl details

Let's start by imagining
impl<T, U> Foo for Vec<T> where T: Iterator<Item = U> {}
And there is an impl

impl Iterator for Bar {
    type Item = ()
}

If we then had the predicate <Vec<Bar> as Foo>
We try to match against the impl <Vec<T> as Foo>

First, we create fresh substs [?0, ?1]
Then, we subst and create <Vec<?0> as Foo>
When we equate, we get ?0 = Bar

Later, we try to confirm the impl with substs [?0, ?1]
We see the predicate <T as Iterator>::Item == U
We substitute: <?0 as Iterator>::Item == ?1
We register that obligation

Later, when we try to solve that obligation:
We resolve ?0 to Bar
We normalize <Bar as Iterator>::Item to ()
We equate ?1 to ()
No problems, so obligation is proven

The idea is to either 1) not create fresh inference vars for parts of the impl_trait_ref that we have specified or 2) detect when an impl matches, but when we've made no "progress" and report a cycle error, i.e. all inference vars only resolve to other inference vars (though, I wonder if we need an exception here for when those vars appear in where clauses)

Another solution would be to have the impl_or_trait_obligations code let us assume that Self::Assoc normalizes to the associated type defined on the current impl (but this is "coinductive" and may have some interaction with specialization). This also requires us to "stop" after we see a matching predicate in the param_env (which we already do for object candidates)

Finally, we could potentially delay normalization in impl_or_trait_obligations, but this is potentially difficult and wouldn't necessarily fix the problem.

@jackh726
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GATs issue triage: not blocking. Not strictly a GATs issue; you can run into similar problems with a where clause on the trait itself. Unfortunate, but a larger class of issues.

@jackh726 jackh726 added the GATs-triaged Issues using the `generic_associated_types` feature that have been triaged label Oct 16, 2021
@jackh726 jackh726 added the S-bug-has-test Status: This bug is tracked inside the repo by a `known-bug` test. label Mar 12, 2022
bors added a commit to rust-lang-ci/rust that referenced this issue Sep 13, 2022
…er-errors

Stabilize generic associated types

Closes rust-lang#44265

r? `@nikomatsakis`

# ⚡ Status of the discussion ⚡

* [x] There have been several serious concerns raised, [summarized here](rust-lang#96709 (comment)).
* [x] There has also been a [deep-dive comment](rust-lang#96709 (comment)) explaining some of the "patterns of code" that are enabled by GATs, based on use-cases posted to this thread or on the tracking issue.
* [x] We have modeled some aspects of GATs in [a-mir-formality](https://github.com/nikomatsakis/a-mir-formality) to give better confidence in how they will be resolved in the future. [You can read a write-up here](https://github.com/rust-lang/types-team/blob/master/minutes/2022-07-08-implied-bounds-and-wf-checking.md).
* [x] The major points of the discussion have been [summarized on the GAT initiative repository](https://rust-lang.github.io/generic-associated-types-initiative/mvp.html).
* [x] [FCP has been proposed](rust-lang#96709 (comment)) and we are awaiting final decisions and discussion amidst the relevant team members.

# Stabilization proposal

This PR proposes the stabilization of `#![feature(generic_associated_types)]`. While there a number of future additions to be made and bugs to be fixed (both discussed below), properly doing these will require significant language design and will ultimately likely be backwards-compatible. Given the overwhelming desire to have some form of generic associated types (GATs) available on stable and the stability of the "simple" uses, stabilizing the current subset of GAT features is almost certainly the correct next step.

Tracking issue: rust-lang#44265
Initiative: https://rust-lang.github.io/generic-associated-types-initiative/
RFC: https://github.com/rust-lang/rfcs/blob/master/text/1598-generic_associated_types.md
Version: 1.65 (2022-08-22 => beta, 2022-11-03 => stable).

## Motivation

There are a myriad of potential use cases for GATs. Stabilization unblocks probable future language features (e.g. async functions in traits), potential future standard library features (e.g. a `LendingIterator` or some form of `Iterator` with a lifetime generic), and a plethora of user use cases (some of which can be seen just by scrolling through the tracking issue and looking at all the issues linking to it).

There are a myriad of potential use cases for GATs. First, there are many users that have chosen to not use GATs primarily because they are not stable (some of which can be seen just by scrolling through the tracking issue and looking at all the issues linking to it). Second, while language feature desugaring isn't *blocked* on stabilization, it gives more confidence on using the feature. Likewise, library features like `LendingIterator` are not necessarily blocked on stabilization to be implemented unstably; however few, if any, public-facing APIs actually use unstable features.

This feature has a long history of design, discussion, and developement - the RFC was first introduced roughly 6 years ago. While there are still a number of features left to implement and bugs left to fix, it's clear that it's unlikely those will have backwards-incompatibility concerns. Additionally, the bugs that do exist do not strongly impede the most-common use cases.

## What is stabilized

The primary language feature stabilized here is the ability to have generics on associated types, as so. Additionally, where clauses on associated types will now be accepted, regardless if the associated type is generic or not.

```rust
trait ATraitWithGATs {
    type Assoc<'a, T> where T: 'a;
}

trait ATraitWithoutGATs<'a, T> {
    type Assoc where T: 'a;
}
```

When adding an impl for a trait with generic associated types, the generics for the associated type are copied as well. Note that where clauses are allowed both after the specified type and before the equals sign; however, the latter is a warn-by-default deprecation.

```rust
struct X;
struct Y;

impl ATraitWithGATs for X {
    type Assoc<'a, T> = &'a T
      where T: 'a;
}
impl ATraitWithGATs for Y {
    type Assoc<'a, T>
      where T: 'a
    = &'a T;
}
```

To use a GAT in a function, generics are specified on the associated type, as if it was a struct or enum. GATs can also be specified in trait bounds:

```rust
fn accepts_gat<'a, T>(t: &'a T) -> T::Assoc<'a, T>
  where for<'x> T: ATraitWithGATs<Assoc<'a, T> = &'a T> {
    ...
}
```

GATs can also appear in trait methods. However, depending on how they are used, they may confer where clauses on the associated type definition. More information can be found [here](rust-lang#87479). Briefly, where clauses are required when those bounds can be proven in the methods that *construct* the GAT or other associated types that use the GAT in the trait. This allows impls to have maximum flexibility in the types defined for the associated type.

To take a relatively simple example:

```rust
trait Iterable {
    type Item<'a>;
    type Iterator<'a>: Iterator<Item = Self::Item<'a>>;

    fn iter<'x>(&'x self) -> Self::Iterator<'x>;
    //^ We know that `Self: 'a` for `Iterator<'a>`, so we require that bound on `Iterator`
    //  `Iterator` uses `Self::Item`, so we also require a `Self: 'a` on `Item` too
}
```

A couple well-explained examples are available in a previous [blog post](https://blog.rust-lang.org/2021/08/03/GATs-stabilization-push.html).

## What isn't stabilized/implemented

### Universal type/const quantification

Currently, you can write a bound like `X: for<'a> Trait<Assoc<'a> = &'a ()>`. However, you cannot currently write `for<T> X: Trait<Assoc<T> = T>` or `for<const N> X: Trait<Assoc<N> = [usize; N]>`.

Here is an example where this is needed:

```rust
trait Foo {}

trait Trait {
    type Assoc<F: Foo>;
}

trait Trait2: Sized {
    fn foo<F: Foo, T: Trait<Assoc<F> = F>>(_t: T);
}
```

In the above example, the *caller* must specify `F`, which is likely not what is desired.

### Object-safe GATs

Unlike non-generic associated types, traits with GATs are not currently object-safe. In other words the following are not allowed:

```rust
trait Trait {
    type Assoc<'a>;
}

fn foo(t: &dyn for<'a> Trait<Assoc<'a> = &'a ()>) {}
         //^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ not allowed

let ty: Box<dyn for<'a> Trait<Assoc<'a> = &'a ()>>;
          //^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ not allowed
```

### Higher-kinded types

You cannot write currently (and there are no current plans to implement this):

```rust
struct Struct<'a> {}

fn foo(s: for<'a> Struct<'a>) {}
```

## Tests

There are many tests covering GATs that can be found in  `src/test/ui/generic-associated-types`. Here, I'll list (in alphanumeric order) tests highlight some important behavior or contain important patterns.

- `./parse/*`: Parsing of GATs in traits and impls, and the trait path with GATs
- `./collections-project-default.rs`: Interaction with associated type defaults
- `./collections.rs`: The `Collection` pattern
- `./const-generics-gat-in-trait-return-type-*.rs`: Const parameters
- `./constraint-assoc-type-suggestion.rs`: Emit correct syntax in suggestion
- `./cross-crate-bounds.rs`: Ensure we handles bounds across crates the same
- `./elided-in-expr-position.rs`: Disallow lifetime elision in return position
- `./gat-in-trait-path-undeclared-lifetime.rs`: Ensure we error on undeclared lifetime in trait path
- `./gat-in-trait-path.rs`: Base trait path case
- `./gat-trait-path-generic-type-arg.rs`: Don't allow shadowing of parameters
- `./gat-trait-path-parenthesised-args.rs`: Don't allow paranthesized args in trait path
- `./generic-associated-types-where.rs`: Ensure that we require where clauses from trait to be met on impl
- `./impl_bounds.rs`: Check that the bounds on GATs in an impl are checked
- `./issue-76826.rs`: `Windows` pattern
- `./issue-78113-lifetime-mismatch-dyn-trait-box.rs`: Implicit 'static diagnostics
- `./issue-84931.rs`: Ensure that we have a where clause on GAT to ensure trait parameter lives long enough
- `./issue-87258_a.rs`: Unconstrained opaque type with TAITs
- `./issue-87429-2.rs`: Ensure we can use bound vars in the bounds
- `./issue-87429-associated-type-default.rs`: Ensure bounds hold with associated type defaults, for both trait and impl
- `./issue-87429-specialization.rs`: Check that bounds hold under specialization
- `./issue-88595.rs`: Under the outlives lint, we require a bound for both trait and GAT lifetime when trait lifetime is used in function
- `./issue-90014.rs`: Lifetime bounds are checked with TAITs
- `./issue-91139.rs`: Under migrate mode, but not NLL, we don't capture implied bounds from HRTB lifetimes used in a function and GATs
- `./issue-91762.rs`: We used to too eagerly pick param env candidates when normalizing with GATs. We now require explicit parameters specified.
- `./issue-95305.rs`: Disallow lifetime elision in trait paths
- `./iterable.rs`: `Iterable` pattern
- `./method-unsatified-assoc-type-predicate.rs`: Print predicates with GATs correctly in method resolve error
- `./missing_lifetime_const.rs`: Ensure we must specify lifetime args (not elidable)
- `./missing-where-clause-on-trait.rs`: Ensure we don't allow stricter bounds on impl than trait
- `./parameter_number_and_kind_impl.rs`: Ensure paramters on GAT in impl match GAT in trait
- `./pointer_family.rs`: `PointerFamily` pattern
- `./projection-bound-cycle.rs`: Don't allow invalid cycles to prove bounds
- `./self-outlives-lint.rs`: Ensures that an e.g. `Self: 'a` is written on the traits GAT if that bound can be implied from the GAT usage in the trait
- `./shadowing.rs`: Don't allow lifetime shadowing in params
- `./streaming_iterator.rs`: `StreamingIterator`(`LendingIterator`) pattern
- `./trait-objects.rs`: Disallow trait objects for traits with GATs
- `./variance_constraints.rs`: Require that GAT substs be invariant

## Remaining bugs and open issues

A full list of remaining open issues can be found at: https://github.com/rust-lang/rust/labels/F-generic_associated_types

There are some `known-bug` tests in-tree at `src/test/ui/generic-associated-types/bugs`.

Here I'll categorize most of those that GAT bugs (or involve a pattern found more with GATs), but not those that include GATs but not a GAT issue in and of itself. (I also won't include issues directly for things listed elsewhere here.)

Using the concrete type of a GAT instead of the projection type can give errors, since lifetimes are chosen to be early-bound vs late-bound.
- rust-lang#85533
- rust-lang#87803

In certain cases, we can run into cycle or overflow errors. This is more generally a problem with associated types.
- rust-lang#87755
- rust-lang#87758

Bounds on an associatd type need to be proven by an impl, but where clauses need to be proven by the usage. This can lead to confusion when users write one when they mean the other.
- rust-lang#87831
- rust-lang#90573

We sometimes can't normalize closure signatures fully. Really an asociated types issue, but might happen a bit more frequently with GATs, since more obvious place for HRTB lifetimes.
- rust-lang#88382

When calling a function, we assign types to parameters "too late", after we already try (and fail) to normalize projections. Another associated types issue that might pop up more with GATs.
- rust-lang#88460
- rust-lang#96230

We don't fully have implied bounds for lifetimes appearing in GAT trait paths, which can lead to unconstrained type errors.
- rust-lang#88526

Suggestion for adding lifetime bounds can suggest unhelpful fixes (`T: 'a` instead of `Self: 'a`), but the next compiler error after making the suggested change is helpful.
- rust-lang#90816
- rust-lang#92096
- rust-lang#95268

We can end up requiring that `for<'a> I: 'a` when we really want `for<'a where I: 'a> I: 'a`. This can leave unhelpful errors than effectively can't be satisfied unless `I: 'static`. Requires bigger changes and not only GATs.
- rust-lang#91693

Unlike with non-generic associated types, we don't eagerly normalize with param env candidates. This is intended behavior (for now), to avoid accidentaly stabilizing picking arbitrary impls.
- rust-lang#91762

Some Iterator adapter patterns (namely `filter`) require Polonius or unsafe to work.
- rust-lang#92985

## Potential Future work

### Universal type/const quantification

No work has been done to implement this. There are also some questions around implied bounds.

###  Object-safe GATs

The intention is to make traits with GATs object-safe. There are some design work to be done around well-formedness rules and general implementation.

### GATified std lib types

It would be helpful to either introduce new std lib traits (like `LendingIterator`) or to modify existing ones (adding a `'a` generic to `Iterator::Item`). There also a number of other candidates, like `Index`/`IndexMut` and `Fn`/`FnMut`/`FnOnce`.

### Reduce the need for `for<'a>`

Seen [here](rust-lang/rfcs#1598 (comment)). One possible syntax:

```rust
trait Iterable {
    type Iter<'a>: Iterator<Item = Self::Item<'a>>;
}

fn foo<T>() where T: Iterable, T::Item<let 'a>: Display { } //note the `let`!
```

### Better implied bounds on higher-ranked things

Currently if we have a `type Item<'a> where self: 'a`, and a `for<'a> T: Iterator<Item<'a> = &'a ()`, this requires `for<'a> Self: 'a`. Really, we want `for<'a where T: 'a> ...`

There was some mentions of this all the back in the RFC thread [here](rust-lang/rfcs#1598 (comment)).

## Alternatives

### Make generics on associated type in bounds a binder

Imagine the bound `for<'a> T: Trait<Item<'a>= &'a ()>`. It might be that `for<'a>` is "too large" and it should instead be `T: Trait<for<'a> Item<'a>= &'a ()>`. Brought up in RFC thread [here](rust-lang/rfcs#1598 (comment)) and in a few places since.

Another related question: Is `for<'a>` the right syntax? Maybe `where<'a>`? Also originally found in RFC thread [here](rust-lang/rfcs#1598 (comment)).

### Stabilize lifetime GATs first

This has been brought up a few times. The idea is to only allow GATs with lifetime parameters to in initial stabilization. This was probably most useful prior to actual implementation. At this point, lifetimes, types, and consts are all implemented and work. It feels like an arbitrary split without strong reason.

## History

* On 2016-04-30, [RFC opened](rust-lang/rfcs#1598)
* On 2017-09-02, RFC merged and [tracking issue opened](rust-lang#44265)
* On 2017-10-23, [Move Generics from MethodSig to TraitItem and ImplItem](rust-lang#44766)
* On 2017-12-01, [Generic Associated Types Parsing & Name Resolution](rust-lang#45904)
* On 2017-12-15, [https://github.com/rust-lang/rust/pull/46706](https://github.com/rust-lang/rust/pull/46706)
* On 2018-04-23, [Feature gate where clauses on associated types](rust-lang#49368)
* On 2018-05-10, [Extend tests for RFC1598 (GAT)](rust-lang#49423)
* On 2018-05-24, [Finish implementing GATs (Chalk)](rust-lang/chalk#134)
* On 2019-12-21, [Make GATs less ICE-prone](rust-lang#67160)
* On 2020-02-13, [fix lifetime shadowing check in GATs](rust-lang#68938)
* On 2020-06-20, [Projection bound validation](rust-lang#72788)
* On 2020-10-06, [Separate projection bounds and predicates](rust-lang#73905)
* On 2021-02-05, [Generic associated types in trait paths](rust-lang#79554)
* On 2021-02-06, [Trait objects do not work with generic associated types](rust-lang#81823)
* On 2021-04-28, [Make traits with GATs not object safe](rust-lang#84622)
* On 2021-05-11, [Improve diagnostics for GATs](rust-lang#82272)
* On 2021-07-16, [Make GATs no longer an incomplete feature](rust-lang#84623)
* On 2021-07-16, [Replace associated item bound vars with placeholders when projecting](rust-lang#86993)
* On 2021-07-26, [GATs: Decide whether to have defaults for `where Self: 'a`](rust-lang#87479)
* On 2021-08-25, [Normalize projections under binders](rust-lang#85499)
* On 2021-08-03, [The push for GATs stabilization](https://blog.rust-lang.org/2021/08/03/GATs-stabilization-push.html)
* On 2021-08-12, [Detect stricter constraints on gats where clauses in impls vs trait](rust-lang#88336)
* On 2021-09-20, [Proposal: Change syntax of where clauses on type aliases](rust-lang#89122)
* On 2021-11-06, [Implementation of GATs outlives lint](rust-lang#89970)
* On 2021-12-29. [Parse and suggest moving where clauses after equals for type aliases](rust-lang#92118)
* On 2022-01-15, [Ignore static lifetimes for GATs outlives lint](rust-lang#92865)
* On 2022-02-08, [Don't constrain projection predicates with inference vars in GAT substs](rust-lang#92917)
* On 2022-02-15, [Rework GAT where clause check](rust-lang#93820)
* On 2022-02-19, [Only mark projection as ambiguous if GAT substs are constrained](rust-lang#93892)
* On 2022-03-03, [Support GATs in Rustdoc](rust-lang#94009)
* On 2022-03-06, [Change location of where clause on GATs](rust-lang#90076)
* On 2022-05-04, [A shiny future with GATs blog post](https://jackh726.github.io/rust/2022/05/04/a-shiny-future-with-gats.html)
* On 2022-05-04, [Stabilization PR](rust-lang#96709)
calebcartwright pushed a commit to calebcartwright/rust that referenced this issue Jan 24, 2023
…er-errors

Stabilize generic associated types

Closes rust-lang#44265

r? `@nikomatsakis`

# ⚡ Status of the discussion ⚡

* [x] There have been several serious concerns raised, [summarized here](rust-lang#96709 (comment)).
* [x] There has also been a [deep-dive comment](rust-lang#96709 (comment)) explaining some of the "patterns of code" that are enabled by GATs, based on use-cases posted to this thread or on the tracking issue.
* [x] We have modeled some aspects of GATs in [a-mir-formality](https://github.com/nikomatsakis/a-mir-formality) to give better confidence in how they will be resolved in the future. [You can read a write-up here](https://github.com/rust-lang/types-team/blob/master/minutes/2022-07-08-implied-bounds-and-wf-checking.md).
* [x] The major points of the discussion have been [summarized on the GAT initiative repository](https://rust-lang.github.io/generic-associated-types-initiative/mvp.html).
* [x] [FCP has been proposed](rust-lang#96709 (comment)) and we are awaiting final decisions and discussion amidst the relevant team members.

# Stabilization proposal

This PR proposes the stabilization of `#![feature(generic_associated_types)]`. While there a number of future additions to be made and bugs to be fixed (both discussed below), properly doing these will require significant language design and will ultimately likely be backwards-compatible. Given the overwhelming desire to have some form of generic associated types (GATs) available on stable and the stability of the "simple" uses, stabilizing the current subset of GAT features is almost certainly the correct next step.

Tracking issue: rust-lang#44265
Initiative: https://rust-lang.github.io/generic-associated-types-initiative/
RFC: https://github.com/rust-lang/rfcs/blob/master/text/1598-generic_associated_types.md
Version: 1.65 (2022-08-22 => beta, 2022-11-03 => stable).

## Motivation

There are a myriad of potential use cases for GATs. Stabilization unblocks probable future language features (e.g. async functions in traits), potential future standard library features (e.g. a `LendingIterator` or some form of `Iterator` with a lifetime generic), and a plethora of user use cases (some of which can be seen just by scrolling through the tracking issue and looking at all the issues linking to it).

There are a myriad of potential use cases for GATs. First, there are many users that have chosen to not use GATs primarily because they are not stable (some of which can be seen just by scrolling through the tracking issue and looking at all the issues linking to it). Second, while language feature desugaring isn't *blocked* on stabilization, it gives more confidence on using the feature. Likewise, library features like `LendingIterator` are not necessarily blocked on stabilization to be implemented unstably; however few, if any, public-facing APIs actually use unstable features.

This feature has a long history of design, discussion, and developement - the RFC was first introduced roughly 6 years ago. While there are still a number of features left to implement and bugs left to fix, it's clear that it's unlikely those will have backwards-incompatibility concerns. Additionally, the bugs that do exist do not strongly impede the most-common use cases.

## What is stabilized

The primary language feature stabilized here is the ability to have generics on associated types, as so. Additionally, where clauses on associated types will now be accepted, regardless if the associated type is generic or not.

```rust
trait ATraitWithGATs {
    type Assoc<'a, T> where T: 'a;
}

trait ATraitWithoutGATs<'a, T> {
    type Assoc where T: 'a;
}
```

When adding an impl for a trait with generic associated types, the generics for the associated type are copied as well. Note that where clauses are allowed both after the specified type and before the equals sign; however, the latter is a warn-by-default deprecation.

```rust
struct X;
struct Y;

impl ATraitWithGATs for X {
    type Assoc<'a, T> = &'a T
      where T: 'a;
}
impl ATraitWithGATs for Y {
    type Assoc<'a, T>
      where T: 'a
    = &'a T;
}
```

To use a GAT in a function, generics are specified on the associated type, as if it was a struct or enum. GATs can also be specified in trait bounds:

```rust
fn accepts_gat<'a, T>(t: &'a T) -> T::Assoc<'a, T>
  where for<'x> T: ATraitWithGATs<Assoc<'a, T> = &'a T> {
    ...
}
```

GATs can also appear in trait methods. However, depending on how they are used, they may confer where clauses on the associated type definition. More information can be found [here](rust-lang#87479). Briefly, where clauses are required when those bounds can be proven in the methods that *construct* the GAT or other associated types that use the GAT in the trait. This allows impls to have maximum flexibility in the types defined for the associated type.

To take a relatively simple example:

```rust
trait Iterable {
    type Item<'a>;
    type Iterator<'a>: Iterator<Item = Self::Item<'a>>;

    fn iter<'x>(&'x self) -> Self::Iterator<'x>;
    //^ We know that `Self: 'a` for `Iterator<'a>`, so we require that bound on `Iterator`
    //  `Iterator` uses `Self::Item`, so we also require a `Self: 'a` on `Item` too
}
```

A couple well-explained examples are available in a previous [blog post](https://blog.rust-lang.org/2021/08/03/GATs-stabilization-push.html).

## What isn't stabilized/implemented

### Universal type/const quantification

Currently, you can write a bound like `X: for<'a> Trait<Assoc<'a> = &'a ()>`. However, you cannot currently write `for<T> X: Trait<Assoc<T> = T>` or `for<const N> X: Trait<Assoc<N> = [usize; N]>`.

Here is an example where this is needed:

```rust
trait Foo {}

trait Trait {
    type Assoc<F: Foo>;
}

trait Trait2: Sized {
    fn foo<F: Foo, T: Trait<Assoc<F> = F>>(_t: T);
}
```

In the above example, the *caller* must specify `F`, which is likely not what is desired.

### Object-safe GATs

Unlike non-generic associated types, traits with GATs are not currently object-safe. In other words the following are not allowed:

```rust
trait Trait {
    type Assoc<'a>;
}

fn foo(t: &dyn for<'a> Trait<Assoc<'a> = &'a ()>) {}
         //^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ not allowed

let ty: Box<dyn for<'a> Trait<Assoc<'a> = &'a ()>>;
          //^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ not allowed
```

### Higher-kinded types

You cannot write currently (and there are no current plans to implement this):

```rust
struct Struct<'a> {}

fn foo(s: for<'a> Struct<'a>) {}
```

## Tests

There are many tests covering GATs that can be found in  `src/test/ui/generic-associated-types`. Here, I'll list (in alphanumeric order) tests highlight some important behavior or contain important patterns.

- `./parse/*`: Parsing of GATs in traits and impls, and the trait path with GATs
- `./collections-project-default.rs`: Interaction with associated type defaults
- `./collections.rs`: The `Collection` pattern
- `./const-generics-gat-in-trait-return-type-*.rs`: Const parameters
- `./constraint-assoc-type-suggestion.rs`: Emit correct syntax in suggestion
- `./cross-crate-bounds.rs`: Ensure we handles bounds across crates the same
- `./elided-in-expr-position.rs`: Disallow lifetime elision in return position
- `./gat-in-trait-path-undeclared-lifetime.rs`: Ensure we error on undeclared lifetime in trait path
- `./gat-in-trait-path.rs`: Base trait path case
- `./gat-trait-path-generic-type-arg.rs`: Don't allow shadowing of parameters
- `./gat-trait-path-parenthesised-args.rs`: Don't allow paranthesized args in trait path
- `./generic-associated-types-where.rs`: Ensure that we require where clauses from trait to be met on impl
- `./impl_bounds.rs`: Check that the bounds on GATs in an impl are checked
- `./issue-76826.rs`: `Windows` pattern
- `./issue-78113-lifetime-mismatch-dyn-trait-box.rs`: Implicit 'static diagnostics
- `./issue-84931.rs`: Ensure that we have a where clause on GAT to ensure trait parameter lives long enough
- `./issue-87258_a.rs`: Unconstrained opaque type with TAITs
- `./issue-87429-2.rs`: Ensure we can use bound vars in the bounds
- `./issue-87429-associated-type-default.rs`: Ensure bounds hold with associated type defaults, for both trait and impl
- `./issue-87429-specialization.rs`: Check that bounds hold under specialization
- `./issue-88595.rs`: Under the outlives lint, we require a bound for both trait and GAT lifetime when trait lifetime is used in function
- `./issue-90014.rs`: Lifetime bounds are checked with TAITs
- `./issue-91139.rs`: Under migrate mode, but not NLL, we don't capture implied bounds from HRTB lifetimes used in a function and GATs
- `./issue-91762.rs`: We used to too eagerly pick param env candidates when normalizing with GATs. We now require explicit parameters specified.
- `./issue-95305.rs`: Disallow lifetime elision in trait paths
- `./iterable.rs`: `Iterable` pattern
- `./method-unsatified-assoc-type-predicate.rs`: Print predicates with GATs correctly in method resolve error
- `./missing_lifetime_const.rs`: Ensure we must specify lifetime args (not elidable)
- `./missing-where-clause-on-trait.rs`: Ensure we don't allow stricter bounds on impl than trait
- `./parameter_number_and_kind_impl.rs`: Ensure paramters on GAT in impl match GAT in trait
- `./pointer_family.rs`: `PointerFamily` pattern
- `./projection-bound-cycle.rs`: Don't allow invalid cycles to prove bounds
- `./self-outlives-lint.rs`: Ensures that an e.g. `Self: 'a` is written on the traits GAT if that bound can be implied from the GAT usage in the trait
- `./shadowing.rs`: Don't allow lifetime shadowing in params
- `./streaming_iterator.rs`: `StreamingIterator`(`LendingIterator`) pattern
- `./trait-objects.rs`: Disallow trait objects for traits with GATs
- `./variance_constraints.rs`: Require that GAT substs be invariant

## Remaining bugs and open issues

A full list of remaining open issues can be found at: https://github.com/rust-lang/rust/labels/F-generic_associated_types

There are some `known-bug` tests in-tree at `src/test/ui/generic-associated-types/bugs`.

Here I'll categorize most of those that GAT bugs (or involve a pattern found more with GATs), but not those that include GATs but not a GAT issue in and of itself. (I also won't include issues directly for things listed elsewhere here.)

Using the concrete type of a GAT instead of the projection type can give errors, since lifetimes are chosen to be early-bound vs late-bound.
- rust-lang#85533
- rust-lang#87803

In certain cases, we can run into cycle or overflow errors. This is more generally a problem with associated types.
- rust-lang#87755
- rust-lang#87758

Bounds on an associatd type need to be proven by an impl, but where clauses need to be proven by the usage. This can lead to confusion when users write one when they mean the other.
- rust-lang#87831
- rust-lang#90573

We sometimes can't normalize closure signatures fully. Really an asociated types issue, but might happen a bit more frequently with GATs, since more obvious place for HRTB lifetimes.
- rust-lang#88382

When calling a function, we assign types to parameters "too late", after we already try (and fail) to normalize projections. Another associated types issue that might pop up more with GATs.
- rust-lang#88460
- rust-lang#96230

We don't fully have implied bounds for lifetimes appearing in GAT trait paths, which can lead to unconstrained type errors.
- rust-lang#88526

Suggestion for adding lifetime bounds can suggest unhelpful fixes (`T: 'a` instead of `Self: 'a`), but the next compiler error after making the suggested change is helpful.
- rust-lang#90816
- rust-lang#92096
- rust-lang#95268

We can end up requiring that `for<'a> I: 'a` when we really want `for<'a where I: 'a> I: 'a`. This can leave unhelpful errors than effectively can't be satisfied unless `I: 'static`. Requires bigger changes and not only GATs.
- rust-lang#91693

Unlike with non-generic associated types, we don't eagerly normalize with param env candidates. This is intended behavior (for now), to avoid accidentaly stabilizing picking arbitrary impls.
- rust-lang#91762

Some Iterator adapter patterns (namely `filter`) require Polonius or unsafe to work.
- rust-lang#92985

## Potential Future work

### Universal type/const quantification

No work has been done to implement this. There are also some questions around implied bounds.

###  Object-safe GATs

The intention is to make traits with GATs object-safe. There are some design work to be done around well-formedness rules and general implementation.

### GATified std lib types

It would be helpful to either introduce new std lib traits (like `LendingIterator`) or to modify existing ones (adding a `'a` generic to `Iterator::Item`). There also a number of other candidates, like `Index`/`IndexMut` and `Fn`/`FnMut`/`FnOnce`.

### Reduce the need for `for<'a>`

Seen [here](rust-lang/rfcs#1598 (comment)). One possible syntax:

```rust
trait Iterable {
    type Iter<'a>: Iterator<Item = Self::Item<'a>>;
}

fn foo<T>() where T: Iterable, T::Item<let 'a>: Display { } //note the `let`!
```

### Better implied bounds on higher-ranked things

Currently if we have a `type Item<'a> where self: 'a`, and a `for<'a> T: Iterator<Item<'a> = &'a ()`, this requires `for<'a> Self: 'a`. Really, we want `for<'a where T: 'a> ...`

There was some mentions of this all the back in the RFC thread [here](rust-lang/rfcs#1598 (comment)).

## Alternatives

### Make generics on associated type in bounds a binder

Imagine the bound `for<'a> T: Trait<Item<'a>= &'a ()>`. It might be that `for<'a>` is "too large" and it should instead be `T: Trait<for<'a> Item<'a>= &'a ()>`. Brought up in RFC thread [here](rust-lang/rfcs#1598 (comment)) and in a few places since.

Another related question: Is `for<'a>` the right syntax? Maybe `where<'a>`? Also originally found in RFC thread [here](rust-lang/rfcs#1598 (comment)).

### Stabilize lifetime GATs first

This has been brought up a few times. The idea is to only allow GATs with lifetime parameters to in initial stabilization. This was probably most useful prior to actual implementation. At this point, lifetimes, types, and consts are all implemented and work. It feels like an arbitrary split without strong reason.

## History

* On 2016-04-30, [RFC opened](rust-lang/rfcs#1598)
* On 2017-09-02, RFC merged and [tracking issue opened](rust-lang#44265)
* On 2017-10-23, [Move Generics from MethodSig to TraitItem and ImplItem](rust-lang#44766)
* On 2017-12-01, [Generic Associated Types Parsing & Name Resolution](rust-lang#45904)
* On 2017-12-15, [https://github.com/rust-lang/rust/pull/46706](https://github.com/rust-lang/rust/pull/46706)
* On 2018-04-23, [Feature gate where clauses on associated types](rust-lang#49368)
* On 2018-05-10, [Extend tests for RFC1598 (GAT)](rust-lang#49423)
* On 2018-05-24, [Finish implementing GATs (Chalk)](rust-lang/chalk#134)
* On 2019-12-21, [Make GATs less ICE-prone](rust-lang#67160)
* On 2020-02-13, [fix lifetime shadowing check in GATs](rust-lang#68938)
* On 2020-06-20, [Projection bound validation](rust-lang#72788)
* On 2020-10-06, [Separate projection bounds and predicates](rust-lang#73905)
* On 2021-02-05, [Generic associated types in trait paths](rust-lang#79554)
* On 2021-02-06, [Trait objects do not work with generic associated types](rust-lang#81823)
* On 2021-04-28, [Make traits with GATs not object safe](rust-lang#84622)
* On 2021-05-11, [Improve diagnostics for GATs](rust-lang#82272)
* On 2021-07-16, [Make GATs no longer an incomplete feature](rust-lang#84623)
* On 2021-07-16, [Replace associated item bound vars with placeholders when projecting](rust-lang#86993)
* On 2021-07-26, [GATs: Decide whether to have defaults for `where Self: 'a`](rust-lang#87479)
* On 2021-08-25, [Normalize projections under binders](rust-lang#85499)
* On 2021-08-03, [The push for GATs stabilization](https://blog.rust-lang.org/2021/08/03/GATs-stabilization-push.html)
* On 2021-08-12, [Detect stricter constraints on gats where clauses in impls vs trait](rust-lang#88336)
* On 2021-09-20, [Proposal: Change syntax of where clauses on type aliases](rust-lang#89122)
* On 2021-11-06, [Implementation of GATs outlives lint](rust-lang#89970)
* On 2021-12-29. [Parse and suggest moving where clauses after equals for type aliases](rust-lang#92118)
* On 2022-01-15, [Ignore static lifetimes for GATs outlives lint](rust-lang#92865)
* On 2022-02-08, [Don't constrain projection predicates with inference vars in GAT substs](rust-lang#92917)
* On 2022-02-15, [Rework GAT where clause check](rust-lang#93820)
* On 2022-02-19, [Only mark projection as ambiguous if GAT substs are constrained](rust-lang#93892)
* On 2022-03-03, [Support GATs in Rustdoc](rust-lang#94009)
* On 2022-03-06, [Change location of where clause on GATs](rust-lang#90076)
* On 2022-05-04, [A shiny future with GATs blog post](https://jackh726.github.io/rust/2022/05/04/a-shiny-future-with-gats.html)
* On 2022-05-04, [Stabilization PR](rust-lang#96709)
@fmease fmease added A-GATs Area: Generic associated types (GATs) and removed C-bug Category: This is a bug. F-generic_associated_types `#![feature(generic_associated_types)]` a.k.a. GATs labels Sep 24, 2024
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