Commit graph

152 commits

Author SHA1 Message Date
Michael Goulet
0f528a4c08 Uplift inspect into rustc_type_ir 2024-05-18 16:21:43 -04:00
Michael Goulet
05e0f8740a Uplift GenericArgKind, CanonicalVarValues, QueryInput
and make NestedGoals generic
2024-05-18 16:21:43 -04:00
Michael Goulet
138881b315 Uplift Goal to rustc_type_ir 2024-05-16 14:24:22 -04:00
Michael Goulet
2684655602 Make impls UpcastFrom, implement Upcast for UpcastFrom 2024-05-16 14:23:47 -04:00
Michael Goulet
11ec3eca74 Rename ToPredicate for Upcast 2024-05-16 14:23:47 -04:00
Michael Goulet
dbd2ca6478 Use a proper probe for shadowing impl 2024-05-13 23:58:33 -04:00
bors
34582118af Auto merge of #125076 - compiler-errors:alias-term, r=lcnr
Split out `ty::AliasTerm` from `ty::AliasTy`

Splitting out `AliasTerm` (for use in project and normalizes goals) and `AliasTy` (for use in `ty::Alias`)

r? lcnr
2024-05-13 22:20:43 +00:00
Michael Goulet
3bcdf3058e split out AliasTy -> AliasTerm 2024-05-13 11:59:42 -04:00
Nicholas Nethercote
4bf20b2b55 Remove extern crate rustc_middle from rustc_trait_selection. 2024-05-13 08:20:18 +10:00
lcnr
c66328f9ad structurally important functions to debug 2024-05-12 03:46:24 +00:00
lcnr
41ebd16266 solve: replace all debug with trace 2024-05-12 03:29:50 +00:00
Michael Goulet
382d0f73ad Record more kinds of things as impl where bounds 2024-05-02 21:56:14 -04:00
lcnr
c4e882fd99 shallow resolve in orphan check 2024-05-02 15:44:05 +00:00
Matthias Krüger
784316eadc
Rollup merge of #124511 - nnethercote:rm-extern-crates, r=fee1-dead
Remove many `#[macro_use] extern crate foo` items

This requires the addition of more `use` items, which often make the code more verbose. But they also make the code easier to read, because `#[macro_use]` obscures where macros are defined.

r? `@fee1-dead`
2024-04-30 15:04:08 +02:00
Michael Goulet
7cf1c547c2 Actually use probes when needed and stop relying on existing outer probes 2024-04-29 10:25:51 -04:00
Michael Goulet
5776aec662 Make names more accurate 2024-04-29 10:25:05 -04:00
Nicholas Nethercote
4814fd0a4b Remove extern crate rustc_macros from numerous crates. 2024-04-29 10:21:54 +10:00
lcnr
03878c682a hir typeck: look into nested goals
uses a `ProofTreeVisitor` to look into nested
goals when looking at the pending obligations
during hir typeck. Used by closure signature
inference, coercion, and for async functions.
2024-04-25 19:44:00 +00:00
zetanumbers
24a24ec6ba Add simple async drop glue generation
Explainer: https://zetanumbers.github.io/book/async-drop-design.html

https://github.com/rust-lang/rust/pull/121801
2024-04-16 20:45:07 +03:00
Michael Goulet
6f96d7d012 Don't rely on upvars being assigned just because coroutine-closure kind is assigned 2024-04-08 22:43:32 -04:00
Oli Scherer
84acfe86de Actually create ranged int types in the type system. 2024-04-08 12:02:19 +00:00
lcnr
9444ca354a do not ICE in forced ambiguity if we get an error 2024-04-05 00:04:38 +02:00
Michael Goulet
ff0c31e6b9 Programmatically convert some of the pat ctors 2024-03-22 11:13:29 -04:00
Matthias Krüger
1757cb5871
Rollup merge of #122829 - ShoyuVanilla:gen-block-impl-fused-iter, r=compiler-errors
Implement `FusedIterator` for `gen` block

cc #117078
2024-03-22 01:07:31 +01:00
Shoyu Vanilla
ae4c5c891e Implement FusedIterator for gen block 2024-03-22 02:02:34 +09:00
Michael Goulet
bca708b9fa Do binder folding eagerly in bound_coroutine_hidden_types
I refuse to fix this in the old solver; its lazy instantiation of
binders will be the end of me.
2024-03-19 11:52:45 -04:00
Michael Goulet
67f1c53c05 Don't ICE when encountering bound regions in generator interior type 2024-03-19 11:30:12 -04:00
Lukas Markeffsky
99efae342e address nits 2024-03-18 22:28:29 +01:00
Lukas Markeffsky
8fe99f57a4 remove unnecessary sized checks 2024-03-14 21:28:48 +01:00
Lukas Markeffsky
8ad94111ad clean up ADT sized constraint computation 2024-03-14 21:28:47 +01:00
Matthias Krüger
7997ef4eba
Rollup merge of #122238 - fee1-dead-contrib:builtin-impl-next-solver-dox, r=lcnr
Document some builtin impls in the next solver

This does not cover all builtin impls, but ones that I were able to go over within a cycle.

r? `@lcnr`

Let me know if the place isn't correct for these, or if you'd like me to change how the impls are presented ^^
2024-03-14 15:44:32 +01:00
Deadbeef
69d781abef move impl documentation to their actual locations 2024-03-14 20:18:04 +08:00
Michael Goulet
2a1d4dd6e3 Don't ICE when non-self part of trait goal is constrained in new solver 2024-03-11 19:16:39 +00:00
bors
6cbf0926d5 Auto merge of #121728 - tgross35:f16-f128-step1-ty-updates, r=compiler-errors
Add stubs in IR and ABI for `f16` and `f128`

This is the very first step toward the changes in https://github.com/rust-lang/rust/pull/114607 and the [`f16` and `f128` RFC](https://rust-lang.github.io/rfcs/3453-f16-and-f128.html). It adds the types to `rustc_type_ir::FloatTy` and `rustc_abi::Primitive`, and just propagates those out as `unimplemented!` stubs where necessary.

These types do not parse yet so there is no feature gate, and it should be okay to use `unimplemented!`.

The next steps will probably be AST support with parsing and the feature gate.

r? `@compiler-errors`
cc `@Nilstrieb` suggested breaking the PR up in https://github.com/rust-lang/rust/pull/120645#issuecomment-1925900572
2024-03-01 03:36:11 +00:00
Trevor Gross
e3f63d9375 Add f16 and f128 to rustc_type_ir::FloatTy and rustc_abi::Primitive
Make changes necessary to support these types in the compiler.
2024-02-28 12:58:32 -05:00
Michael Goulet
118730b9a3 Add a couple helpers, make return types less confusing 2024-02-27 17:21:40 +00:00
Michael Goulet
a6727bad88 Support {async closure}: Fn in new solver 2024-02-27 17:21:39 +00:00
lcnr
eeeb9b4d31 add additional logging 2024-02-26 10:12:40 +01:00
Matthias Krüger
702225e290
Rollup merge of #120598 - compiler-errors:no-rigid-check, r=lcnr
No need to `validate_alias_bound_self_from_param_env` in `assemble_alias_bound_candidates`

We already fully normalize the self type before we reach `assemble_alias_bound_candidates`, so there's no reason to double check that a projection is truly rigid by checking param-env bounds.

I think this is also blocked on us making sure to always normalize opaques: #120549.

r? lcnr
2024-02-22 18:09:52 +01:00
Matthias Krüger
ab1fa19d08
Rollup merge of #121047 - compiler-errors:default-impls, r=lcnr
Do not assemble candidates for default impls

There is no reason (as far as I can tell?) that we should assemble an impl candidate for a default impl. This candidate itself does not prove that the impl holds, and any time that it *does* hold, there will be a more specializing non-default impl that also is assembled.

This is because `default impl<T> Foo for T {}` actually expands to `impl<T> Foo for T where T: Foo {}`. The only way to satisfy that where clause (without coinduction) is via *another* implementation that does hold -- precisely an impl that specializes it.

This should fix the specialization related regressions for #116494. That should lead to one root crate regression that doesn't have to do with specialization, which I think we can regress.

r? lcnr cc ``@rust-lang/types``

cc #31844
2024-02-13 22:51:57 +01:00
Michael Goulet
b4eee2e8b3 Do not assemble candidates for default impls 2024-02-13 19:20:13 +00:00
lcnr
3e3e207ad7 use alias-relate to structurally normalize in the solver 2024-02-13 05:08:51 +01:00
Matthias Krüger
cb0d74be28
Rollup merge of #120958 - ShoyuVanilla:remove-subst, r=oli-obk
Dejargonize `subst`

In favor of #110793, replace almost every occurence of `subst` and `substitution` from rustc codes, but they still remains in subtrees under `src/tools/` like clippy and test codes (I'd like to replace them after this)
2024-02-12 23:18:54 +01:00
Shoyu Vanilla
3856df059e Dejargnonize subst 2024-02-12 15:46:35 +09:00
Michael Goulet
5461fd4250 Gracefully handle non-WF alias in assemble_alias_bound_candidates_recur 2024-02-10 23:49:21 +00:00
bors
757b8efed4 Auto merge of #120712 - compiler-errors:async-closures-harmonize, r=oli-obk
Harmonize `AsyncFn` implementations, make async closures conditionally impl `Fn*` traits

This PR implements several changes to the built-in and libcore-provided implementations of `Fn*` and `AsyncFn*` to address two problems:
1. async closures do not implement the `Fn*` family traits, leading to breakage: https://crater-reports.s3.amazonaws.com/pr-120361/index.html
2. *references* to async closures do not implement `AsyncFn*`, as a consequence of the existing blanket impls of the shape `AsyncFn for F where F: Fn, F::Output: Future`.

In order to fix (1.), we implement `Fn` traits appropriately for async closures. It turns out that async closures can:
* always implement `FnOnce`, meaning that they're drop-in compatible with `FnOnce`-bound combinators like `Option::map`.
* conditionally implement `Fn`/`FnMut` if they have no captures, which means that existing usages of async closures should *probably* work without breakage (crater checking this: https://github.com/rust-lang/rust/pull/120712#issuecomment-1930587805).

In order to fix (2.), we make all of the built-in callables implement `AsyncFn*` via built-in impls, and instead adjust the blanket impls for `AsyncFn*` provided by libcore to match the blanket impls for `Fn*`.
2024-02-10 07:15:15 +00:00
Matthias Krüger
9ec287dec2
Rollup merge of #120584 - compiler-errors:u, r=lcnr
For a rigid projection, recursively look at the self type's item bounds to fix the `associated_type_bounds` feature

Given a deeply nested rigid projection like `<<<T as Trait1>::Assoc1 as Trait2>::Assoc2 as Trait3>::Assoc3`, this PR adjusts both trait solvers to look at the item bounds for all of `Assoc3`, `Assoc2`, and `Assoc1` in order to satisfy a goal. We do this because the item bounds for projections may contain relevant bounds for *other* nested projections when the `associated_type_bounds` (ATB) feature is enabled. For example:

```rust
#![feature(associated_type_bounds)]

trait Trait1 {
    type Assoc1: Trait2<Assoc2: Foo>;
    // Item bounds for `Assoc1` are:
    // `<Self as Trait1>::Assoc1: Trait2`
    // `<<Self as Trait1>::Assoc1 as Trait2>::Assoc2: Foo`
}

trait Trait2 {
    type Assoc2;
}

trait Foo {}

fn hello<T: Trait1>(x: <<T as Trait1>::Assoc1 as Trait2>::Assoc2) {
    fn is_foo(_: impl Foo) {}
    is_foo(x);
    // Currently fails with:
    // ERROR the trait bound `<<Self as Trait1>::Assoc1 as Trait2>::Assoc2: Foo` is not satisfied
}
```

This has been a long-standing place of brokenness for ATBs, and is also part of the reason why ATBs currently desugar so differently in various positions (i.e. sometimes desugaring to param-env bounds, sometimes desugaring to RPITs, etc). For example, in RPIT and TAIT position, `impl Foo<Bar: Baz>` currently desugars to `impl Foo<Bar = impl Baz>` because we do not currently take advantage of these nested item bounds if we desugared them into a single set of item bounds on the opaque. This is obviously both strange and unnecessary if we just take advantage of these bounds as we should.

## Approach

This PR repeatedly peels off each projection of a given goal's self type and tries to match its item bounds against a goal, repeating with the self type of the projection. This is pretty straightforward to implement in the new solver, only requiring us to loop on the self type of a rigid projection to discover inner rigid projections, and we also need to introduce an extra probe so we can normalize them.

In the old solver, we can do essentially the same thing, however we rely on the fact that projections *should* be normalized already. This is obviously not always the case -- however, in the case that they are not fully normalized, such as a projection which has both infer vars and, we bail out with ambiguity if we hit an infer var for the self type.

## Caveats

⚠️ In the old solver, this has the side-effect of actually stalling some higher-ranked trait goals of the form `for<'a> <?0 as Tr<'a>>: Tr2`. Because we stall them, they no longer are eagerly treated as error -- this cause some existing `known-bug` tests to go from fail -> pass.

I'm pretty unconvinced that this is a problem since we make code that we expect to pass in the *new* solver also pass in the *old* solver, though this obviously doesn't solve the *full* problem.

## And then also...

We also adjust the desugaring of ATB to always desugar to a regular associated bound, rather than sometimes to an impl Trait **except** for when the ATB is present in a `dyn Trait`. We need to lower `dyn Trait<Assoc: Bar>` to `dyn Trait<Assoc = impl Bar>` because object types need all of their associated types specified.

I would also be in favor of splitting out the ATB feature and/or removing support for object types in order to stabilize just the set of positions for which the ATB feature is consistent (i.e. always elaborates to a bound).
2024-02-10 00:58:36 +01:00
lcnr
5051637979 hide impls if trait bound is proven from env 2024-02-09 12:41:39 +01:00
lcnr
a913c243da add comment 2024-02-09 10:44:19 +01:00
Michael Goulet
7057188c54 make it recursive 2024-02-09 00:13:52 +00:00