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Auto merge of #123240 - compiler-errors:assert-args-compat, r=<try>
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Assert that args are actually compatible with their generics, rather than just their count

Right now we just check that the number of args is right, rather than actually checking the kinds. Uplift a helper fn that I wrote from trait selection to do just that. Found a couple bugs along the way.

r? `@lcnr` or `@fmease` (or anyone really lol)
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bors committed Apr 2, 2024
2 parents dd5e502 + e50622c commit d47b6f5
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Showing 10 changed files with 151 additions and 114 deletions.
44 changes: 27 additions & 17 deletions compiler/rustc_hir_analysis/src/hir_ty_lowering/object_safety.rs
Expand Up @@ -7,9 +7,10 @@ use rustc_hir as hir;
use rustc_hir::def::{DefKind, Res};
use rustc_hir::def_id::DefId;
use rustc_lint_defs::builtin::UNUSED_ASSOCIATED_TYPE_BOUNDS;
use rustc_middle::ty::{self, Ty};
use rustc_middle::ty::fold::BottomUpFolder;
use rustc_middle::ty::{self, Ty, TyCtxt, TypeFoldable};
use rustc_middle::ty::{DynKind, ToPredicate};
use rustc_span::Span;
use rustc_span::{ErrorGuaranteed, Span};
use rustc_trait_selection::traits::error_reporting::report_object_safety_error;
use rustc_trait_selection::traits::{self, hir_ty_lowering_object_safety_violations};

Expand Down Expand Up @@ -267,12 +268,17 @@ impl<'tcx> dyn HirTyLowerer<'tcx> + '_ {
if arg == dummy_self.into() {
let param = &generics.params[index];
missing_type_params.push(param.name);
return Ty::new_misc_error(tcx).into();
Ty::new_misc_error(tcx).into()
} else if arg.walk().any(|arg| arg == dummy_self.into()) {
references_self = true;
return Ty::new_misc_error(tcx).into();
let guar = tcx.dcx().span_delayed_bug(
span,
"trait object trait bounds reference `Self`",
);
replace_dummy_self_with_error(tcx, arg, guar)
} else {
arg
}
arg
})
.collect();
let args = tcx.mk_args(&args);
Expand Down Expand Up @@ -327,18 +333,7 @@ impl<'tcx> dyn HirTyLowerer<'tcx> + '_ {
let guar = tcx
.dcx()
.span_delayed_bug(span, "trait object projection bounds reference `Self`");
let args: Vec<_> = b
.projection_ty
.args
.iter()
.map(|arg| {
if arg.walk().any(|arg| arg == dummy_self.into()) {
return Ty::new_error(tcx, guar).into();
}
arg
})
.collect();
b.projection_ty.args = tcx.mk_args(&args);
b.projection_ty = replace_dummy_self_with_error(tcx, b.projection_ty, guar);
}

ty::ExistentialProjection::erase_self_ty(tcx, b)
Expand Down Expand Up @@ -396,3 +391,18 @@ impl<'tcx> dyn HirTyLowerer<'tcx> + '_ {
Ty::new_dynamic(tcx, existential_predicates, region_bound, representation)
}
}

fn replace_dummy_self_with_error<'tcx, T: TypeFoldable<TyCtxt<'tcx>>>(
tcx: TyCtxt<'tcx>,
t: T,
guar: ErrorGuaranteed,
) -> T {
t.fold_with(&mut BottomUpFolder {
tcx,
ty_op: |ty| {
if ty == tcx.types.trait_object_dummy_self { Ty::new_error(tcx, guar) } else { ty }
},
lt_op: |lt| lt,
ct_op: |ct| ct,
})
}
115 changes: 93 additions & 22 deletions compiler/rustc_middle/src/ty/context.rs
Expand Up @@ -1954,33 +1954,104 @@ impl<'tcx> TyCtxt<'tcx> {
if pred.kind() != binder { self.mk_predicate(binder) } else { pred }
}

#[inline(always)]
pub(crate) fn check_and_mk_args(
pub fn check_args_compatible(self, def_id: DefId, args: &'tcx [ty::GenericArg<'tcx>]) -> bool {
self.check_args_compatible_inner(def_id, args, false)
}

fn check_args_compatible_inner(
self,
_def_id: DefId,
args: impl IntoIterator<Item: Into<GenericArg<'tcx>>>,
) -> GenericArgsRef<'tcx> {
let args = args.into_iter().map(Into::into);
#[cfg(debug_assertions)]
def_id: DefId,
args: &'tcx [ty::GenericArg<'tcx>],
nested: bool,
) -> bool {
let generics = self.generics_of(def_id);

// IATs themselves have a weird arg setup (self + own args), but nested items *in* IATs
// (namely: opaques, i.e. ATPITs) do not.
let own_args = if !nested
&& let DefKind::AssocTy = self.def_kind(def_id)
&& let DefKind::Impl { of_trait: false } = self.def_kind(self.parent(def_id))
{
let generics = self.generics_of(_def_id);
if generics.params.len() + 1 != args.len() {
return false;
}

let n = if let DefKind::AssocTy = self.def_kind(_def_id)
&& let DefKind::Impl { of_trait: false } = self.def_kind(self.parent(_def_id))
if !matches!(args[0].unpack(), ty::GenericArgKind::Type(_)) {
return false;
}

&args[1..]
} else {
if generics.count() != args.len() {
return false;
}

let (parent_args, own_args) = args.split_at(generics.parent_count);

if let Some(parent) = generics.parent
&& !self.check_args_compatible_inner(parent, parent_args, true)
{
// If this is an inherent projection.
generics.params.len() + 1
} else {
generics.count()
};
assert_eq!(
(n, Some(n)),
args.size_hint(),
"wrong number of generic parameters for {_def_id:?}: {:?}",
args.collect::<Vec<_>>(),
);
return false;
}

own_args
};

for (param, arg) in std::iter::zip(&generics.params, own_args) {
match (&param.kind, arg.unpack()) {
(ty::GenericParamDefKind::Type { .. }, ty::GenericArgKind::Type(_))
| (ty::GenericParamDefKind::Lifetime, ty::GenericArgKind::Lifetime(_))
| (ty::GenericParamDefKind::Const { .. }, ty::GenericArgKind::Const(_)) => {}
_ => return false,
}
}
self.mk_args_from_iter(args)

true
}

/// With `cfg(debug_assertions)`, assert that args are compatible with their generics,
/// and print out the args if not.
pub fn debug_assert_args_compatible(self, def_id: DefId, args: &'tcx [ty::GenericArg<'tcx>]) {
if cfg!(debug_assertions) {
if !self.check_args_compatible(def_id, args) {
if let DefKind::AssocTy = self.def_kind(def_id)
&& let DefKind::Impl { of_trait: false } = self.def_kind(self.parent(def_id))
{
bug!(
"args not compatible with generics for {}: args={:#?}, generics={:#?}",
self.def_path_str(def_id),
args,
// Make `[Self, GAT_ARGS...]` (this could be simplified)
self.mk_args_from_iter(
[self.types.self_param.into()].into_iter().chain(
self.generics_of(def_id)
.own_args(ty::GenericArgs::identity_for_item(self, def_id))
.iter()
.copied()
)
)
);
} else {
bug!(
"args not compatible with generics for {}: args={:#?}, generics={:#?}",
self.def_path_str(def_id),
args,
ty::GenericArgs::identity_for_item(self, def_id)
);
}
}
}
}

#[inline(always)]
pub(crate) fn check_and_mk_args(
self,
def_id: DefId,
args: impl IntoIterator<Item: Into<GenericArg<'tcx>>>,
) -> GenericArgsRef<'tcx> {
let args = self.mk_args_from_iter(args.into_iter().map(Into::into));
self.debug_assert_args_compatible(def_id, args);
args
}

#[inline]
Expand Down
26 changes: 4 additions & 22 deletions compiler/rustc_middle/src/ty/sty.rs
Expand Up @@ -1624,13 +1624,7 @@ impl<'tcx> Ty<'tcx> {

#[inline]
pub fn new_adt(tcx: TyCtxt<'tcx>, def: AdtDef<'tcx>, args: GenericArgsRef<'tcx>) -> Ty<'tcx> {
debug_assert_eq!(
tcx.generics_of(def.did()).count(),
args.len(),
"wrong number of args for ADT: {:#?} vs {:#?}",
tcx.generics_of(def.did()).params,
args
);
tcx.debug_assert_args_compatible(def.did(), args);
Ty::new(tcx, Adt(def, args))
}

Expand Down Expand Up @@ -1711,11 +1705,7 @@ impl<'tcx> Ty<'tcx> {
def_id: DefId,
closure_args: GenericArgsRef<'tcx>,
) -> Ty<'tcx> {
debug_assert_eq!(
closure_args.len(),
tcx.generics_of(tcx.typeck_root_def_id(def_id)).count() + 3,
"closure constructed with incorrect generic parameters"
);
tcx.debug_assert_args_compatible(def_id, closure_args);
Ty::new(tcx, Closure(def_id, closure_args))
}

Expand All @@ -1725,11 +1715,7 @@ impl<'tcx> Ty<'tcx> {
def_id: DefId,
closure_args: GenericArgsRef<'tcx>,
) -> Ty<'tcx> {
debug_assert_eq!(
closure_args.len(),
tcx.generics_of(tcx.typeck_root_def_id(def_id)).count() + 5,
"closure constructed with incorrect generic parameters"
);
tcx.debug_assert_args_compatible(def_id, closure_args);
Ty::new(tcx, CoroutineClosure(def_id, closure_args))
}

Expand All @@ -1739,11 +1725,7 @@ impl<'tcx> Ty<'tcx> {
def_id: DefId,
coroutine_args: GenericArgsRef<'tcx>,
) -> Ty<'tcx> {
debug_assert_eq!(
coroutine_args.len(),
tcx.generics_of(tcx.typeck_root_def_id(def_id)).count() + 6,
"coroutine constructed with incorrect number of generic parameters"
);
tcx.debug_assert_args_compatible(def_id, coroutine_args);
Ty::new(tcx, Coroutine(def_id, coroutine_args))
}

Expand Down
4 changes: 2 additions & 2 deletions compiler/rustc_trait_selection/src/solve/normalizes_to/mod.rs
@@ -1,4 +1,4 @@
use crate::traits::{check_args_compatible, specialization_graph};
use crate::traits::specialization_graph;

use super::assembly::structural_traits::AsyncCallableRelevantTypes;
use super::assembly::{self, structural_traits, Candidate};
Expand Down Expand Up @@ -247,7 +247,7 @@ impl<'tcx> assembly::GoalKind<'tcx> for NormalizesTo<'tcx> {
assoc_def.defining_node,
);

if !check_args_compatible(tcx, assoc_def.item, args) {
if !tcx.check_args_compatible(assoc_def.item.def_id, args) {
return error_response(
ecx,
"associated item has mismatched generic item arguments",
Expand Down
8 changes: 4 additions & 4 deletions compiler/rustc_trait_selection/src/traits/mod.rs
Expand Up @@ -61,12 +61,12 @@ pub use self::specialize::{
pub use self::structural_match::search_for_structural_match_violation;
pub use self::structural_normalize::StructurallyNormalizeExt;
pub use self::util::elaborate;
pub use self::util::{
check_args_compatible, supertrait_def_ids, supertraits, transitive_bounds,
transitive_bounds_that_define_assoc_item, SupertraitDefIds,
};
pub use self::util::{expand_trait_aliases, TraitAliasExpander};
pub use self::util::{get_vtable_index_of_object_method, impl_item_is_final, upcast_choices};
pub use self::util::{
supertrait_def_ids, supertraits, transitive_bounds, transitive_bounds_that_define_assoc_item,
SupertraitDefIds,
};
pub use self::util::{with_replaced_escaping_bound_vars, BoundVarReplacer, PlaceholderReplacer};

pub use rustc_infer::traits::*;
Expand Down
3 changes: 1 addition & 2 deletions compiler/rustc_trait_selection/src/traits/project.rs
Expand Up @@ -2,7 +2,6 @@

use std::ops::ControlFlow;

use super::check_args_compatible;
use super::specialization_graph;
use super::translate_args;
use super::util;
Expand Down Expand Up @@ -2030,7 +2029,7 @@ fn confirm_impl_candidate<'cx, 'tcx>(
} else {
ty.map_bound(|ty| ty.into())
};
if !check_args_compatible(tcx, assoc_ty.item, args) {
if !tcx.check_args_compatible(assoc_ty.item.def_id, args) {
let err = Ty::new_error_with_message(
tcx,
obligation.cause.span,
Expand Down
42 changes: 0 additions & 42 deletions compiler/rustc_trait_selection/src/traits/util.rs
Expand Up @@ -344,48 +344,6 @@ pub enum TupleArgumentsFlag {
No,
}

// Verify that the trait item and its implementation have compatible args lists
pub fn check_args_compatible<'tcx>(
tcx: TyCtxt<'tcx>,
assoc_item: ty::AssocItem,
args: ty::GenericArgsRef<'tcx>,
) -> bool {
fn check_args_compatible_inner<'tcx>(
tcx: TyCtxt<'tcx>,
generics: &'tcx ty::Generics,
args: &'tcx [ty::GenericArg<'tcx>],
) -> bool {
if generics.count() != args.len() {
return false;
}

let (parent_args, own_args) = args.split_at(generics.parent_count);

if let Some(parent) = generics.parent
&& let parent_generics = tcx.generics_of(parent)
&& !check_args_compatible_inner(tcx, parent_generics, parent_args)
{
return false;
}

for (param, arg) in std::iter::zip(&generics.params, own_args) {
match (&param.kind, arg.unpack()) {
(ty::GenericParamDefKind::Type { .. }, ty::GenericArgKind::Type(_))
| (ty::GenericParamDefKind::Lifetime, ty::GenericArgKind::Lifetime(_))
| (ty::GenericParamDefKind::Const { .. }, ty::GenericArgKind::Const(_)) => {}
_ => return false,
}
}

true
}

let generics = tcx.generics_of(assoc_item.def_id);
// Chop off any additional args (RPITIT) args
let args = &args[0..generics.count().min(args.len())];
check_args_compatible_inner(tcx, generics, args)
}

/// Executes `f` on `value` after replacing all escaping bound variables with placeholders
/// and then replaces these placeholders with the original bound variables in the result.
///
Expand Down
3 changes: 1 addition & 2 deletions compiler/rustc_ty_utils/src/opaque_types.rs
Expand Up @@ -7,7 +7,6 @@ use rustc_middle::ty::util::{CheckRegions, NotUniqueParam};
use rustc_middle::ty::{self, Ty, TyCtxt};
use rustc_middle::ty::{TypeSuperVisitable, TypeVisitable, TypeVisitor};
use rustc_span::Span;
use rustc_trait_selection::traits::check_args_compatible;

use crate::errors::{DuplicateArg, NotParam};

Expand Down Expand Up @@ -250,7 +249,7 @@ impl<'tcx> TypeVisitor<TyCtxt<'tcx>> for OpaqueTypeCollector<'tcx> {
ty::GenericArgs::identity_for_item(self.tcx, parent),
);

if check_args_compatible(self.tcx, assoc, impl_args) {
if self.tcx.check_args_compatible(assoc.def_id, impl_args) {
self.tcx
.type_of(assoc.def_id)
.instantiate(self.tcx, impl_args)
Expand Down
1 change: 1 addition & 0 deletions tests/ui/impl-trait/in-trait/span-bug-issue-121457.rs
Expand Up @@ -14,6 +14,7 @@ impl<'a, I: 'a + Iterable> Iterable for &'a I {
//~^ ERROR binding for associated type `Item` references lifetime `'missing`
//~| ERROR binding for associated type `Item` references lifetime `'missing`
//~| ERROR `()` is not an iterator
//~| WARNING impl trait in impl method signature does not match trait method signature
}

fn main() {}

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