Commit Graph

34169 Commits

Author SHA1 Message Date
Oli Scherer
958a02247a Use the more informative generic type inference failure error on method calls on raw pointers 2024-03-20 15:53:06 +00:00
bors
200e3f7995 Auto merge of #122037 - oli-obk:more_new_intrinsics, r=Nilstrieb
Move more intrinsics to rustc_intrinsic

cc https://github.com/rust-lang/rust/issues/63585
2024-03-19 13:10:01 +00:00
bors
f296c162d8 Auto merge of #122021 - oli-obk:delangitemification, r=compiler-errors
Use hir::Node helper methods instead of repeating the same impl multiple times

I wanted to do something entirely different and stumbled upon a bunch of cleanups
2024-03-19 11:05:45 +00:00
Oli Scherer
a8f71cf289 Remove all checks of IntrinsicDef::must_be_overridden except for the actual overrides in codegen 2024-03-19 09:19:58 +00:00
Oli Scherer
e91084180e Make span_bug panic site useful again 2024-03-19 09:19:12 +00:00
Oli Scherer
3e5c468662 Make ptr_guaranteed_cmp a rustc_intrinsic and favor its body over backends implementing it 2024-03-19 09:17:40 +00:00
Oli Scherer
7f9830b16c Make const_eval_select a rustc_intrinsic 2024-03-19 09:12:58 +00:00
bors
8579a1856a Auto merge of #119212 - w-utter:pretty-print-const-expr, r=compiler-errors
Fix representation when printing abstract consts

Previously, when printing a const generic expr, it would only display it as `{{const expr}}`. This allows for a more legible representation when printing these out.

I also zipped the types with their constants for abstract consts that contain function calls when using type annotations, eg: `foo(S: usize, true: bool) -> usize` insteaad of `foo(S, true): fn(usize, bool) -> usize` for conciseness.
2024-03-19 09:04:41 +00:00
bors
196ff446d2 Auto merge of #122493 - lukas-code:sized-constraint, r=lcnr
clean up `Sized` checking

This PR cleans up `sized_constraint` and related functions to make them simpler and faster. This should not make more or less code compile, but it can change error output in some rare cases.

## enums and unions are `Sized`, even if they are not WF

The previous code has some special handling for enums, which made them sized if and only if the last field of each variant is sized. For example given this definition (which is not WF)
```rust
enum E<T1: ?Sized, T2: ?Sized, U1: ?Sized, U2: ?Sized> {
    A(T1, T2),
    B(U1, U2),
}
```
the enum was sized if and only if `T2` and `U2` are sized, while `T1` and `T2` were ignored for `Sized` checking. After this PR this enum will always be sized.

Unsized enums are not a thing in Rust and removing this special case allows us to return an `Option<Ty>` from `sized_constraint`, rather than a `List<Ty>`.

Similarly, the old code made an union defined like this
```rust
union Union<T: ?Sized, U: ?Sized> {
    head: T,
    tail: U,
}
```
sized if and only if `U` is sized, completely ignoring `T`. This just makes no sense at all and now this union is always sized.

## apply the "perf hack" to all (non-error) types, instead of just type parameters

This "perf hack" skips evaluating `sized_constraint(adt): Sized` if `sized_constraint(adt): Sized` exactly matches a predicate defined on `adt`, for example:

```rust
// `Foo<T>: Sized` iff `T: Sized`, but we know `T: Sized` from a predicate of `Foo`
struct Foo<T /*: Sized */>(T);
```

Previously this was only applied to type parameters and now it is applied to every type. This means that for example this type is now always sized:

```rust
// Note that this definition is WF, but the type `S<T>` not WF in the global/empty ParamEnv
struct S<T>([T]) where [T]: Sized;
```

I don't anticipate this to affect compile time of any real-world program, but it makes the code a bit nicer and it also makes error messages a bit more consistent if someone does write such a cursed type.

## tuples are sized if the last type is sized

The old solver already has this behavior and this PR also implements it for the new solver and `is_trivially_sized`. This makes it so that tuples work more like a struct defined like this:

```rust
struct TupleN<T1, T2, /* ... */ Tn: ?Sized>(T1, T2, /* ... */ Tn);
```

This might improve the compile time of programs with large tuples a little, but is mostly also a consistency fix.

## `is_trivially_sized` for more types

This function is used post-typeck code (borrowck, const eval, codegen) to skip evaluating `T: Sized` in some cases. It will now return `true` in more cases, most notably `UnsafeCell<T>` and `ManuallyDrop<T>` where `T.is_trivially_sized`.

I'm anticipating that this change will improve compile time for some real world programs.
2024-03-19 04:21:14 +00:00
bors
21d94a3d2c Auto merge of #122055 - compiler-errors:stabilize-atb, r=oli-obk
Stabilize associated type bounds (RFC 2289)

This PR stabilizes associated type bounds, which were laid out in [RFC 2289]. This gives us a shorthand to express nested type bounds that would otherwise need to be expressed with nested `impl Trait` or broken into several `where` clauses.

### What are we stabilizing?

We're stabilizing the associated item bounds syntax, which allows us to put bounds in associated type position within other bounds, i.e. `T: Trait<Assoc: Bounds...>`. See [RFC 2289] for motivation.

In all position, the associated type bound syntax expands into a set of two (or more) bounds, and never anything else (see "How does this differ[...]" section for more info).

Associated type bounds are stabilized in four positions:
* **`where` clauses (and APIT)** - This is equivalent to breaking up the bound into two (or more) `where` clauses. For example, `where T: Trait<Assoc: Bound>` is equivalent to `where T: Trait, <T as Trait>::Assoc: Bound`.
* **Supertraits** - Similar to above, `trait CopyIterator: Iterator<Item: Copy> {}`. This is almost equivalent to breaking up the bound into two (or more) `where` clauses; however, the bound on the associated item is implied whenever the trait is used. See #112573/#112629.
* **Associated type item bounds** - This allows constraining the *nested* rigid projections that are associated with a trait's associated types. e.g. `trait Trait { type Assoc: Trait2<Assoc2: Copy>; }`.
* **opaque item bounds (RPIT, TAIT)** - This allows constraining associated types that are associated with the opaque without having to *name* the opaque. For example, `impl Iterator<Item: Copy>` defines an iterator whose item is `Copy` without having to actually name that item bound.

The latter three are not expressible in surface Rust (though for associated type item bounds, this will change in #120752, which I don't believe should block this PR), so this does represent a slight expansion of what can be expressed in trait bounds.

### How does this differ from the RFC?

Compared to the RFC, the current implementation *always* desugars associated type bounds to sets of `ty::Clause`s internally. Specifically, it does *not* introduce a position-dependent desugaring as laid out in [RFC 2289], and in particular:
* It does *not* desugar to anonymous associated items in associated type item bounds.
* It does *not* desugar to nested RPITs in RPIT bounds, nor nested TAITs in TAIT bounds.

This position-dependent desugaring laid out in the RFC existed simply to side-step limitations of the trait solver, which have mostly been fixed in #120584. The desugaring laid out in the RFC also added unnecessary complication to the design of the feature, and introduces its own limitations to, for example:
* Conditionally lowering to nested `impl Trait` in certain positions such as RPIT and TAIT means that we inherit the limitations of RPIT/TAIT, namely lack of support for higher-ranked opaque inference. See this code example: https://github.com/rust-lang/rust/pull/120752#issuecomment-1979412531.
* Introducing anonymous associated types makes traits no longer object safe, since anonymous associated types are not nameable, and all associated types must be named in `dyn` types.

This last point motivates why this PR is *not* stabilizing support for associated type bounds in `dyn` types, e.g, `dyn Assoc<Item: Bound>`. Why? Because `dyn` types need to have *concrete* types for all associated items, this would necessitate a distinct lowering for associated type bounds, which seems both complicated and unnecessary compared to just requiring the user to write `impl Trait` themselves. See #120719.

### Implementation history:

Limited to the significant behavioral changes and fixes and relevant PRs, ping me if I left something out--
* #57428
* #108063
* #110512
* #112629
* #120719
* #120584

Closes #52662

[RFC 2289]: https://rust-lang.github.io/rfcs/2289-associated-type-bounds.html
2024-03-19 00:04:09 +00:00
Lukas Markeffsky
99efae342e address nits 2024-03-18 22:28:29 +01:00
Matthias Krüger
3c3b398b35
Rollup merge of #122701 - compiler-errors:allocator-suspend, r=oli-obk
Detect allocator for box in `must_not_suspend` lint

I don't expect this to happen in practice, but better to check than not.

Fixes #122643
2024-03-18 22:24:41 +01:00
Matthias Krüger
e906205607
Rollup merge of #122687 - lcnr:normalizes-to-emit-nested-goals, r=compiler-errors
`NormalizesTo`: return nested goals to caller

Fixes the regression of `paperclip-core`. see https://hackmd.io/IsVAafiOTAaPIFcUxRJufw for more details.

r? ```@compiler-errors```
2024-03-18 22:24:39 +01:00
Matthias Krüger
980248605a
Rollup merge of #122158 - estebank:feature-sugg, r=WaffleLapkin
Provide structured suggestion for `#![feature(foo)]`

```
error: `S2<'_>` is forbidden as the type of a const generic parameter
  --> $DIR/lifetime-in-const-param.rs:5:23
   |
LL | struct S<'a, const N: S2>(&'a ());
   |                       ^^
   |
   = note: the only supported types are integers, `bool` and `char`
help: add `#![feature(adt_const_params)]` to the crate attributes to enable more complex and user defined types
   |
LL + #![feature(adt_const_params)]
   |
```

Fix #55941.
2024-03-18 22:24:38 +01:00
Matthias Krüger
b19c67c0fc
Rollup merge of #122060 - clubby789:stabilize-imported-main, r=lcnr
Stabilize `imported_main`

FCP: https://github.com/rust-lang/rust/issues/28937#issuecomment-1977822831
Docs: https://github.com/rust-lang/reference/pull/1461
2024-03-18 22:24:37 +01:00
Matthias Krüger
2d3dcfaade
Rollup merge of #121823 - Nadrieril:never-witnesses, r=compiler-errors
never patterns: suggest `!` patterns on non-exhaustive matches

When a match is non-exhaustive we now suggest never patterns whenever it makes sense.

r? ``@compiler-errors``
2024-03-18 22:24:36 +01:00
Matthias Krüger
05f763344d
Rollup merge of #121258 - fmease:assoc-const-eq-reject-overly-generic-tys, r=compiler-errors
Reject overly generic assoc const binding types

Split off from #119385 to make #119385 easier to review.

---

In the *instantiated* type of assoc const bindings

1. reject **early-bound generic params**
   * Provide a rich error message instead of ICE'ing ([#108271](https://github.com/rust-lang/rust/issues/108271)).
   * This is a temporary and semi-artificial restriction until the arrival of *generic const generics*.
   * It's quite possible that rustc could already perfectly support this subset of generic const generics if we just removed some checks (some `.no_bound_vars().expect(…)`) but even if that was the case, I'd rather gate it behind a new feature flag. Reporting an error instead of ICE'ing is a good first step towards an eventual feature gate error.
2. reject **escaping late-bound generic params**
   * They lead to ICEs before & I'm pretty sure that they remain incorrect even in a world with *generic const generics*

---

Together with #118668 & #119385, this supersedes #118360.
Fixes #108271.
2024-03-18 22:24:36 +01:00
Oli Scherer
69c4e813fe Use hir::Node helper methods instead of repeat the same impl multiple times
There already were inconsistencies, so this ensures we don't introduce subtle surprising bugs
2024-03-18 18:12:45 +00:00
Oli Scherer
419d205dad Deduplicate associated_body and body_id
They match on almost the same patterns, which is fishy.

Also turn `associated_body` into a method and do some cleanups nearby the call sites
2024-03-18 18:12:32 +00:00
Michael Goulet
0db06bf004 Detect allocator for box in must_not_suspend lint 2024-03-18 14:12:28 -04:00
lcnr
0b29b71a2f cleanup + review 2024-03-18 18:13:25 +01:00
lcnr
7c5a99b6a8 improve comments 2024-03-18 18:13:25 +01:00
Esteban Küber
6c31f6ce12 Provide structured suggestion for #![feature(foo)]
```
error: `S2<'_>` is forbidden as the type of a const generic parameter
  --> $DIR/lifetime-in-const-param.rs:5:23
   |
LL | struct S<'a, const N: S2>(&'a ());
   |                       ^^
   |
   = note: the only supported types are integers, `bool` and `char`
help: add `#![feature(adt_const_params)]` to the crate attributes to enable more complex and user defined types
   |
LL + #![feature(adt_const_params)]
   |
```

Fix #55941.
2024-03-18 16:08:58 +00:00
Matthias Krüger
9011e67c91
Rollup merge of #122689 - Jarcho:missing_try, r=compiler-errors
Add missing `try_visit` calls in visitors.
2024-03-18 16:27:11 +01:00
Matthias Krüger
72e2c7c45a
Rollup merge of #122680 - lqd:nested-await-args, r=compiler-errors
Do not eat nested expressions' results in `MayContainYieldPoint` format args visitor

#121563 unintentionally changed the `MayContainYieldPoint` format args visitor behavior, now missing yield points in nested expressions, as seen in #122674.

The walk can find a yield point in an expression but it was ignored.

r? ``@petrochenkov`` as the reviewer of #121563
cc ``@Jarcho`` as the author

Fixes #122674.
We're in the 1.77 release week. #121563 will land on 1.78 but beta is still 1.77.9: this PR will likely need to be backported soon after beta is cut.
2024-03-18 16:27:10 +01:00
Matthias Krüger
1ac0239bd2
Rollup merge of #122649 - cuviper:min-llvm-17, r=nikic
Update the minimum external LLVM to 17

With this change, we'll have stable support for LLVM 17 and 18.
For reference, the previous increase to LLVM 16 was #117947.
2024-03-18 16:27:09 +01:00
Matthias Krüger
3fa48ec849
Rollup merge of #122647 - RalfJung:box-to-raw-retag, r=oli-obk
add_retag: ensure box-to-raw-ptr casts are preserved for Miri

In https://github.com/rust-lang/rust/pull/122233 I added `retag_box_to_raw` not realizing that we can already do `addr_of_mut!(*bx)` to turn a box into a raw pointer without an intermediate reference. We just need to ensure this information is preserved past the ElaborateBoxDerefs pass.

r? ``@oli-obk``
2024-03-18 16:27:08 +01:00
Matthias Krüger
acc45ebf72
Rollup merge of #122588 - klensy:imported_source_file, r=michaelwoerister
less useless filter calls in imported_source_file

This reduces calls to `filter` greatly, giving 0.3% instructions win on some tests.
2024-03-18 16:27:08 +01:00
Matthias Krüger
87b5679ab0
Rollup merge of #122567 - erikdesjardins:noname, r=oli-obk
Remove fixme about LLVM basic block naming

~This may be a small perf win.~

Originally, this PR implemented the fixme, but it didn't have any measurable perf improvement.

r? ``@ghost``
2024-03-18 16:27:07 +01:00
Jason Newcomb
407b58cb77 Add missing try_visit calls in visitors. 2024-03-18 11:21:06 -04:00
lcnr
f26e1e8b63 NormalizesTo return nested goals 2024-03-18 15:53:16 +01:00
lcnr
33c274f658 move normalizes_to_hack to AliasRelate 2024-03-18 12:08:06 +01:00
Oli Scherer
adda9da604 Avoid various uses of Option<Span> in favor of using DUMMY_SP in the few cases that used None 2024-03-18 09:34:08 +00:00
Ralf Jung
bcf8015177 remove retag_box_to_raw, it is no longer needed 2024-03-18 10:32:25 +01:00
Ralf Jung
c96fa5e143 add_retag: ensure box-to-raw-ptr casts are preserved for Miri 2024-03-18 10:32:25 +01:00
Rémy Rakic
8beec62315 do not eat nested exprs result in format args visitor 2024-03-18 09:27:47 +00:00
Matthias Krüger
3fc3142df1
Rollup merge of #122656 - RalfJung:simplify-cfg, r=compiler-errors
simplify_cfg: rename some passes so that they make more sense

I was extremely confused by `SimplifyCfg::ElaborateDrops`, since it runs way later than drop elaboration. It is used e.g. in `mir-opt/retag.rs` even though that pass doesn't care about drop elaboration at all.

"Early opt" is also very confusing since that makes it sounds like it runs early during optimizations, i.e. on runtime MIR, but actually it runs way before that.

So I decided to rename
- early-opt -> post-analysis
- elaborate-drops -> pre-optimizations

I am open to other suggestions.
2024-03-18 06:58:50 +01:00
Matthias Krüger
86bb0bc41d
Rollup merge of #122654 - RalfJung:interpret-comment, r=matthiaskrgr
interpret/memory: explain why we use == on bool

This came up in https://github.com/rust-lang/rust/pull/122636.
2024-03-18 06:58:49 +01:00
Matthias Krüger
d9b47c1f2b
Rollup merge of #122639 - omahs:patch-2, r=estebank
Fix typos

Fix typos
2024-03-18 06:58:49 +01:00
bors
5608c7f9aa Auto merge of #121652 - estebank:move-in-loop-break-condition, r=Nadrieril
Detect when move of !Copy value occurs within loop and should likely not be cloned

When encountering a move error on a value within a loop of any kind,
identify if the moved value belongs to a call expression that should not
be cloned and avoid the semantically incorrect suggestion. Also try to
suggest moving the call expression outside of the loop instead.

```
error[E0382]: use of moved value: `vec`
  --> $DIR/recreating-value-in-loop-condition.rs:6:33
   |
LL |     let vec = vec!["one", "two", "three"];
   |         --- move occurs because `vec` has type `Vec<&str>`, which does not implement the `Copy` trait
LL |     while let Some(item) = iter(vec).next() {
   |     ----------------------------^^^--------
   |     |                           |
   |     |                           value moved here, in previous iteration of loop
   |     inside of this loop
   |
note: consider changing this parameter type in function `iter` to borrow instead if owning the value isn't necessary
  --> $DIR/recreating-value-in-loop-condition.rs:1:17
   |
LL | fn iter<T>(vec: Vec<T>) -> impl Iterator<Item = T> {
   |    ----         ^^^^^^ this parameter takes ownership of the value
   |    |
   |    in this function
help: consider moving the expression out of the loop so it is only moved once
   |
LL ~     let mut value = iter(vec);
LL ~     while let Some(item) = value.next() {
   |
```

We use the presence of a `break` in the loop that would be affected by
the moved value as a heuristic for "shouldn't be cloned".

Fix https://github.com/rust-lang/rust/issues/121466.

---

*Point at continue and break that might be in the wrong place*

Sometimes move errors are because of a misplaced `continue`, but we didn't
surface that anywhere. Now when there are more than one set of nested loops
we show them out and point at the `continue` and `break` expressions within
that might need to go elsewhere.

```
error[E0382]: use of moved value: `foo`
  --> $DIR/nested-loop-moved-value-wrong-continue.rs:46:18
   |
LL |     for foo in foos {
   |         ---
   |         |
   |         this reinitialization might get skipped
   |         move occurs because `foo` has type `String`, which does not implement the `Copy` trait
...
LL |         for bar in &bars {
   |         ---------------- inside of this loop
...
LL |                 baz.push(foo);
   |                          --- value moved here, in previous iteration of loop
...
LL |         qux.push(foo);
   |                  ^^^ value used here after move
   |
note: verify that your loop breaking logic is correct
  --> $DIR/nested-loop-moved-value-wrong-continue.rs:41:17
   |
LL |     for foo in foos {
   |     ---------------
...
LL |         for bar in &bars {
   |         ----------------
...
LL |                 continue;
   |                 ^^^^^^^^ this `continue` advances the loop at line 33
help: consider moving the expression out of the loop so it is only moved once
   |
LL ~         let mut value = baz.push(foo);
LL ~         for bar in &bars {
LL |
 ...
LL |             if foo == *bar {
LL ~                 value;
   |
help: consider cloning the value if the performance cost is acceptable
   |
LL |                 baz.push(foo.clone());
   |                             ++++++++
```

Fix https://github.com/rust-lang/rust/issues/92531.
2024-03-18 02:10:34 +00:00
bors
62f98b44cc Auto merge of #122627 - RalfJung:collector-stack-space, r=compiler-errors
collector: move ensure_sufficient_stack out of the loop

According to the docs this call has some overhead to putting it inside the loop doesn't seem like a good idea.

r? `@oli-obk`
2024-03-18 00:03:56 +00:00
Esteban Küber
3b237d7d8a Move suggest_hoisting_call_outside_loop out of suggest_cloning 2024-03-17 21:52:12 +00:00
Esteban Küber
da2364d746 Move Visitor impl out to the mod level 2024-03-17 21:46:52 +00:00
Esteban Küber
78d29ad8d6 Point at continue and break that might be in the wrong place
Sometimes move errors are because of a misplaced `continue`, but we didn't
surface that anywhere. Now when there are more than one set of nested loops
we show them out and point at the `continue` and `break` expressions within
that might need to go elsewhere.

```
error[E0382]: use of moved value: `foo`
  --> $DIR/nested-loop-moved-value-wrong-continue.rs:46:18
   |
LL |     for foo in foos {
   |         ---
   |         |
   |         this reinitialization might get skipped
   |         move occurs because `foo` has type `String`, which does not implement the `Copy` trait
...
LL |         for bar in &bars {
   |         ---------------- inside of this loop
...
LL |                 baz.push(foo);
   |                          --- value moved here, in previous iteration of loop
...
LL |         qux.push(foo);
   |                  ^^^ value used here after move
   |
note: verify that your loop breaking logic is correct
  --> $DIR/nested-loop-moved-value-wrong-continue.rs:41:17
   |
LL |     for foo in foos {
   |     ---------------
...
LL |         for bar in &bars {
   |         ----------------
...
LL |                 continue;
   |                 ^^^^^^^^ this `continue` advances the loop at line 33
help: consider moving the expression out of the loop so it is only moved once
   |
LL ~         let mut value = baz.push(foo);
LL ~         for bar in &bars {
LL |
 ...
LL |             if foo == *bar {
LL ~                 value;
   |
help: consider cloning the value if the performance cost is acceptable
   |
LL |                 baz.push(foo.clone());
   |                             ++++++++
```

Fix #92531.
2024-03-17 21:32:26 +00:00
Esteban Küber
14473adf42 Detect when move of !Copy value occurs within loop and should likely not be cloned
When encountering a move error on a value within a loop of any kind,
identify if the moved value belongs to a call expression that should not
be cloned and avoid the semantically incorrect suggestion. Also try to
suggest moving the call expression outside of the loop instead.

```
error[E0382]: use of moved value: `vec`
  --> $DIR/recreating-value-in-loop-condition.rs:6:33
   |
LL |     let vec = vec!["one", "two", "three"];
   |         --- move occurs because `vec` has type `Vec<&str>`, which does not implement the `Copy` trait
LL |     while let Some(item) = iter(vec).next() {
   |     ----------------------------^^^--------
   |     |                           |
   |     |                           value moved here, in previous iteration of loop
   |     inside of this loop
   |
note: consider changing this parameter type in function `iter` to borrow instead if owning the value isn't necessary
  --> $DIR/recreating-value-in-loop-condition.rs:1:17
   |
LL | fn iter<T>(vec: Vec<T>) -> impl Iterator<Item = T> {
   |    ----         ^^^^^^ this parameter takes ownership of the value
   |    |
   |    in this function
help: consider moving the expression out of the loop so it is only moved once
   |
LL ~     let mut value = iter(vec);
LL ~     while let Some(item) = value.next() {
   |
```

We use the presence of a `break` in the loop that would be affected by
the moved value as a heuristic for "shouldn't be cloned".

Fix #121466.
2024-03-17 21:32:26 +00:00
Ralf Jung
23a4ad12ce simplify_cfg: rename some passes so that they make more sense 2024-03-17 19:59:15 +01:00
Ralf Jung
872781b226 interpret/memory: explain why we use == on bool 2024-03-17 19:32:03 +01:00
Matthias Krüger
1588d9bdc8
Rollup merge of #122636 - matthiaskrgr:compl3, r=compiler-errors
some minor code simplifications
2024-03-17 19:26:23 +01:00
Matthias Krüger
8e748c0a41
Rollup merge of #122578 - jieyouxu:guard-decorate, r=fee1-dead
Only invoke `decorate` if the diag can eventually be emitted

Lints can call [`trimmed_def_paths`](https://doc.rust-lang.org/nightly/nightly-rustc/rustc_middle/ty/print/fn.trimmed_def_paths.html#), such as through manual implementations of `LintDiagnostic` and calling `def_path_str`.

05a2be3def/compiler/rustc_lint/src/lints.rs (L1834-L1839)

The emission of a lint eventually relies on [`TyCtxt::node_lint`](https://doc.rust-lang.org/nightly/nightly-rustc/rustc_middle/ty/context/struct.TyCtxt.html#method.node_lint), which has a `decorate` closure which is responsible for decorating the diagnostic with "lint stuff". `node_lint` in turn relies on [`lint_level`](https://doc.rust-lang.org/nightly/nightly-rustc/rustc_middle/lint/fn.lint_level.html). Within `lint_level`, `decorate` is eventually called just before `Diag::emit` is called to decorate the diagnostic. However, if `-A warnings` or `--cap-lint=allow` are set, or if the unused_must_use lint is explicitly allowed, then `decorate` would be called, which would call `def_path_str`, but the diagnostic would never be emitted and hence would trigger the `must_produce_diag` ICE.

To avoid calling `decorate` when we don't eventually emit the diagnostic, we check that:

- if `--force-warn` is specified, then call `decorate`; otherwise
- if we can emit warnings (or higher), then call `decorate`.

Fixes #121774.
2024-03-17 19:26:22 +01:00
Josh Stone
29430554f6 Update the minimum external LLVM to 17 2024-03-17 10:11:04 -07:00