1#![allow(rustc::usage_of_ty_tykind)]
4
5use std::borrow::Cow;
6use std::debug_assert_matches;
7use std::ops::{ControlFlow, Range};
8
9use hir::def::{CtorKind, DefKind};
10use rustc_abi::{FIRST_VARIANT, FieldIdx, NumScalableVectors, ScalableElt, VariantIdx};
11use rustc_errors::{ErrorGuaranteed, MultiSpan};
12use rustc_hir as hir;
13use rustc_hir::LangItem;
14use rustc_hir::def_id::DefId;
15use rustc_macros::{StableHash, TyDecodable, TyEncodable, TypeFoldable, extension};
16use rustc_span::{DUMMY_SP, Span, Symbol, kw, sym};
17use rustc_type_ir::TyKind::*;
18use rustc_type_ir::solve::SizedTraitKind;
19use rustc_type_ir::walk::TypeWalker;
20use rustc_type_ir::{
21 self as ir, BoundVar, CollectAndApply, MayBeErased, TypeVisitableExt, elaborate,
22};
23use tracing::instrument;
24use ty::util::IntTypeExt;
25
26use super::GenericParamDefKind;
27use crate::infer::canonical::Canonical;
28use crate::traits::ObligationCause;
29use crate::ty::InferTy::*;
30use crate::ty::{
31 self, AdtDef, Const, Discr, GenericArg, GenericArgs, GenericArgsRef, List, ParamEnv, Region,
32 Ty, TyCtxt, TypeSuperVisitable, TypeVisitable, TypeVisitor, UintTy, ValTree,
33};
34
35#[rustc_diagnostic_item = "TyKind"]
37pub type TyKind<'tcx> = ir::TyKind<TyCtxt<'tcx>>;
38pub type TypeAndMut<'tcx> = ir::TypeAndMut<TyCtxt<'tcx>>;
39pub type AliasTy<'tcx> = ir::AliasTy<TyCtxt<'tcx>>;
40pub type AliasTyKind<'tcx> = ir::AliasTyKind<TyCtxt<'tcx>>;
41pub type Alias<'tcx, K> = ir::Alias<TyCtxt<'tcx>, K>;
42pub type ProjectionAliasTy<'tcx> = ir::ProjectionAliasTy<TyCtxt<'tcx>>;
43pub type InherentAliasTy<'tcx> = ir::InherentAliasTy<TyCtxt<'tcx>>;
44pub type OpaqueAliasTy<'tcx> = ir::OpaqueAliasTy<TyCtxt<'tcx>>;
45pub type FreeAliasTy<'tcx> = ir::FreeAliasTy<TyCtxt<'tcx>>;
46pub type FnSig<'tcx> = ir::FnSig<TyCtxt<'tcx>>;
47pub type FnSigKind<'tcx> = ir::FnSigKind<TyCtxt<'tcx>>;
48pub type Binder<'tcx, T> = ir::Binder<TyCtxt<'tcx>, T>;
49pub type EarlyBinder<'tcx, T> = ir::EarlyBinder<TyCtxt<'tcx>, T>;
50pub type Unnormalized<'tcx, T> = ir::Unnormalized<TyCtxt<'tcx>, T>;
51pub type TypingMode<'tcx, S = MayBeErased> = ir::TypingMode<TyCtxt<'tcx>, S>;
52pub type TypingModeEqWrapper<'tcx> = ir::TypingModeEqWrapper<TyCtxt<'tcx>>;
53pub type Placeholder<'tcx, T> = ir::Placeholder<TyCtxt<'tcx>, T>;
54pub type PlaceholderRegion<'tcx> = ir::PlaceholderRegion<TyCtxt<'tcx>>;
55pub type PlaceholderType<'tcx> = ir::PlaceholderType<TyCtxt<'tcx>>;
56pub type PlaceholderConst<'tcx> = ir::PlaceholderConst<TyCtxt<'tcx>>;
57pub type BoundTy<'tcx> = ir::BoundTy<TyCtxt<'tcx>>;
58pub type BoundConst<'tcx> = ir::BoundConst<TyCtxt<'tcx>>;
59pub type BoundRegion<'tcx> = ir::BoundRegion<TyCtxt<'tcx>>;
60pub type BoundVariableKind<'tcx> = ir::BoundVariableKind<TyCtxt<'tcx>>;
61pub type BoundRegionKind<'tcx> = ir::BoundRegionKind<TyCtxt<'tcx>>;
62pub type BoundTyKind<'tcx> = ir::BoundTyKind<TyCtxt<'tcx>>;
63
64pub trait Article {
65 fn article(&self) -> &'static str;
66}
67
68impl<'tcx> Article for TyKind<'tcx> {
69 fn article(&self) -> &'static str {
71 match self {
72 Int(_) | Float(_) | Array(_, _) => "an",
73 Adt(def, _) if def.is_enum() => "an",
74 Error(_) => "a",
77 _ => "a",
78 }
79 }
80}
81
82impl<'tcx> CoroutineArgsExt<'tcx> for ty::CoroutineArgs<TyCtxt<'tcx>> {
#[doc = " Coroutine has not been resumed yet."]
const UNRESUMED: usize = 0;
#[doc = " Coroutine has returned or is completed."]
const RETURNED: usize = 1;
#[doc = " Coroutine has been poisoned."]
const POISONED: usize = 2;
#[doc =
" Number of variants to reserve in coroutine state. Corresponds to"]
#[doc =
" `UNRESUMED` (beginning of a coroutine) and `RETURNED`/`POISONED`"]
#[doc = " (end of a coroutine) states."]
const RESERVED_VARIANTS: usize = 3;
const UNRESUMED_NAME: &'static str = "Unresumed";
const RETURNED_NAME: &'static str = "Returned";
const POISONED_NAME: &'static str = "Panicked";
#[doc = " The valid variant indices of this coroutine."]
#[inline]
fn variant_range(&self, def_id: DefId, tcx: TyCtxt<'tcx>)
-> Range<VariantIdx> {
FIRST_VARIANT..tcx.coroutine_layout(def_id,
self.args).unwrap().variant_fields.next_index()
}
#[doc =
" The discriminant for the given variant. Panics if the `variant_index` is"]
#[doc = " out of range."]
#[inline]
fn discriminant_for_variant(&self, def_id: DefId, tcx: TyCtxt<'tcx>,
variant_index: VariantIdx) -> Discr<'tcx> {
if !self.variant_range(def_id, tcx).contains(&variant_index) {
::core::panicking::panic("assertion failed: self.variant_range(def_id, tcx).contains(&variant_index)")
};
Discr {
val: variant_index.as_usize() as u128,
ty: self.discr_ty(tcx),
}
}
#[doc =
" The set of all discriminants for the coroutine, enumerated with their"]
#[doc = " variant indices."]
#[inline]
fn discriminants(self, def_id: DefId, tcx: TyCtxt<'tcx>)
-> impl Iterator<Item = (VariantIdx, Discr<'tcx>)> {
self.variant_range(def_id,
tcx).map(move |index|
{
(index,
Discr {
val: index.as_usize() as u128,
ty: self.discr_ty(tcx),
})
})
}
#[doc =
" Calls `f` with a reference to the name of the enumerator for the given"]
#[doc = " variant `v`."]
fn variant_name(v: VariantIdx) -> Cow<'static, str> {
match v.as_usize() {
Self::UNRESUMED => Cow::from(Self::UNRESUMED_NAME),
Self::RETURNED => Cow::from(Self::RETURNED_NAME),
Self::POISONED => Cow::from(Self::POISONED_NAME),
_ =>
Cow::from(::alloc::__export::must_use({
::alloc::fmt::format(format_args!("Suspend{0}",
v.as_usize() - Self::RESERVED_VARIANTS))
})),
}
}
#[doc = " The type of the state discriminant used in the coroutine type."]
#[inline]
fn discr_ty(&self, tcx: TyCtxt<'tcx>) -> Ty<'tcx> { tcx.types.u32 }
#[doc =
" This returns the types of the MIR locals which had to be stored across suspension points."]
#[doc =
" It is calculated in rustc_mir_transform::coroutine::StateTransform."]
#[doc = " All the types here must be in the tuple in CoroutineInterior."]
#[doc = ""]
#[doc =
" The locals are grouped by their variant number. Note that some locals may"]
#[doc = " be repeated in multiple variants."]
#[inline]
fn state_tys(self, def_id: DefId, tcx: TyCtxt<'tcx>)
-> impl Iterator<Item : Iterator<Item = Ty<'tcx>>> {
let layout = tcx.coroutine_layout(def_id, self.args).unwrap();
layout.variant_fields.iter().map(move |variant|
{
variant.iter().map(move |field|
{
if tcx.is_async_drop_in_place_coroutine(def_id) {
layout.field_tys[*field].ty
} else {
ty::EarlyBinder::bind(tcx,
layout.field_tys[*field].ty).instantiate(tcx,
self.args).skip_norm_wip()
}
})
})
}
#[doc =
" This is the types of the fields of a coroutine which are not stored in a"]
#[doc = " variant."]
#[inline]
fn prefix_tys(self) -> &'tcx List<Ty<'tcx>> { self.upvar_tys() }
}#[extension(pub trait CoroutineArgsExt<'tcx>)]
83impl<'tcx> ty::CoroutineArgs<TyCtxt<'tcx>> {
84 const UNRESUMED: usize = 0;
86 const RETURNED: usize = 1;
88 const POISONED: usize = 2;
90 const RESERVED_VARIANTS: usize = 3;
94
95 const UNRESUMED_NAME: &'static str = "Unresumed";
96 const RETURNED_NAME: &'static str = "Returned";
97 const POISONED_NAME: &'static str = "Panicked";
98
99 #[inline]
101 fn variant_range(&self, def_id: DefId, tcx: TyCtxt<'tcx>) -> Range<VariantIdx> {
102 FIRST_VARIANT..tcx.coroutine_layout(def_id, self.args).unwrap().variant_fields.next_index()
104 }
105
106 #[inline]
109 fn discriminant_for_variant(
110 &self,
111 def_id: DefId,
112 tcx: TyCtxt<'tcx>,
113 variant_index: VariantIdx,
114 ) -> Discr<'tcx> {
115 assert!(self.variant_range(def_id, tcx).contains(&variant_index));
118 Discr { val: variant_index.as_usize() as u128, ty: self.discr_ty(tcx) }
119 }
120
121 #[inline]
124 fn discriminants(
125 self,
126 def_id: DefId,
127 tcx: TyCtxt<'tcx>,
128 ) -> impl Iterator<Item = (VariantIdx, Discr<'tcx>)> {
129 self.variant_range(def_id, tcx).map(move |index| {
130 (index, Discr { val: index.as_usize() as u128, ty: self.discr_ty(tcx) })
131 })
132 }
133
134 fn variant_name(v: VariantIdx) -> Cow<'static, str> {
137 match v.as_usize() {
138 Self::UNRESUMED => Cow::from(Self::UNRESUMED_NAME),
139 Self::RETURNED => Cow::from(Self::RETURNED_NAME),
140 Self::POISONED => Cow::from(Self::POISONED_NAME),
141 _ => Cow::from(format!("Suspend{}", v.as_usize() - Self::RESERVED_VARIANTS)),
142 }
143 }
144
145 #[inline]
147 fn discr_ty(&self, tcx: TyCtxt<'tcx>) -> Ty<'tcx> {
148 tcx.types.u32
149 }
150
151 #[inline]
158 fn state_tys(
159 self,
160 def_id: DefId,
161 tcx: TyCtxt<'tcx>,
162 ) -> impl Iterator<Item: Iterator<Item = Ty<'tcx>>> {
163 let layout = tcx.coroutine_layout(def_id, self.args).unwrap();
164 layout.variant_fields.iter().map(move |variant| {
165 variant.iter().map(move |field| {
166 if tcx.is_async_drop_in_place_coroutine(def_id) {
167 layout.field_tys[*field].ty
168 } else {
169 ty::EarlyBinder::bind(tcx, layout.field_tys[*field].ty)
170 .instantiate(tcx, self.args)
171 .skip_norm_wip()
172 }
173 })
174 })
175 }
176
177 #[inline]
180 fn prefix_tys(self) -> &'tcx List<Ty<'tcx>> {
181 self.upvar_tys()
182 }
183}
184
185#[derive(#[automatically_derived]
impl<'tcx> ::core::fmt::Debug for UpvarArgs<'tcx> {
#[inline]
fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
match self {
UpvarArgs::Closure(__self_0) =>
::core::fmt::Formatter::debug_tuple_field1_finish(f,
"Closure", &__self_0),
UpvarArgs::Coroutine(__self_0) =>
::core::fmt::Formatter::debug_tuple_field1_finish(f,
"Coroutine", &__self_0),
UpvarArgs::CoroutineClosure(__self_0) =>
::core::fmt::Formatter::debug_tuple_field1_finish(f,
"CoroutineClosure", &__self_0),
}
}
}Debug, #[automatically_derived]
impl<'tcx> ::core::marker::Copy for UpvarArgs<'tcx> { }Copy, #[automatically_derived]
impl<'tcx> ::core::clone::Clone for UpvarArgs<'tcx> {
#[inline]
fn clone(&self) -> UpvarArgs<'tcx> {
let _: ::core::clone::AssertParamIsClone<GenericArgsRef<'tcx>>;
let _: ::core::clone::AssertParamIsClone<GenericArgsRef<'tcx>>;
let _: ::core::clone::AssertParamIsClone<GenericArgsRef<'tcx>>;
*self
}
}Clone, const _: () =
{
impl<'tcx> ::rustc_data_structures::stable_hash::StableHash for
UpvarArgs<'tcx> {
#[inline]
fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
__hcx: &mut __Hcx,
__hasher:
&mut ::rustc_data_structures::stable_hash::StableHasher) {
::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
match *self {
UpvarArgs::Closure(ref __binding_0) => {
{ __binding_0.stable_hash(__hcx, __hasher); }
}
UpvarArgs::Coroutine(ref __binding_0) => {
{ __binding_0.stable_hash(__hcx, __hasher); }
}
UpvarArgs::CoroutineClosure(ref __binding_0) => {
{ __binding_0.stable_hash(__hcx, __hasher); }
}
}
}
}
};StableHash, const _: () =
{
impl<'tcx>
::rustc_middle::ty::TypeFoldable<::rustc_middle::ty::TyCtxt<'tcx>>
for UpvarArgs<'tcx> {
fn try_fold_with<__F: ::rustc_middle::ty::FallibleTypeFolder<::rustc_middle::ty::TyCtxt<'tcx>>>(self,
__folder: &mut __F) -> Result<Self, __F::Error> {
Ok(match self {
UpvarArgs::Closure(__binding_0) => {
UpvarArgs::Closure(::rustc_middle::ty::TypeFoldable::try_fold_with(__binding_0,
__folder)?)
}
UpvarArgs::Coroutine(__binding_0) => {
UpvarArgs::Coroutine(::rustc_middle::ty::TypeFoldable::try_fold_with(__binding_0,
__folder)?)
}
UpvarArgs::CoroutineClosure(__binding_0) => {
UpvarArgs::CoroutineClosure(::rustc_middle::ty::TypeFoldable::try_fold_with(__binding_0,
__folder)?)
}
})
}
fn fold_with<__F: ::rustc_middle::ty::TypeFolder<::rustc_middle::ty::TyCtxt<'tcx>>>(self,
__folder: &mut __F) -> Self {
match self {
UpvarArgs::Closure(__binding_0) => {
UpvarArgs::Closure(::rustc_middle::ty::TypeFoldable::fold_with(__binding_0,
__folder))
}
UpvarArgs::Coroutine(__binding_0) => {
UpvarArgs::Coroutine(::rustc_middle::ty::TypeFoldable::fold_with(__binding_0,
__folder))
}
UpvarArgs::CoroutineClosure(__binding_0) => {
UpvarArgs::CoroutineClosure(::rustc_middle::ty::TypeFoldable::fold_with(__binding_0,
__folder))
}
}
}
}
};TypeFoldable, const _: () =
{
impl<'tcx>
::rustc_middle::ty::TypeVisitable<::rustc_middle::ty::TyCtxt<'tcx>>
for UpvarArgs<'tcx> {
fn visit_with<__V: ::rustc_middle::ty::TypeVisitor<::rustc_middle::ty::TyCtxt<'tcx>>>(&self,
__visitor: &mut __V) -> __V::Result {
match *self {
UpvarArgs::Closure(ref __binding_0) => {
{
match ::rustc_middle::ty::VisitorResult::branch(::rustc_middle::ty::TypeVisitable::visit_with(__binding_0,
__visitor)) {
::core::ops::ControlFlow::Continue(()) => {}
::core::ops::ControlFlow::Break(r) => {
return ::rustc_middle::ty::VisitorResult::from_residual(r);
}
}
}
}
UpvarArgs::Coroutine(ref __binding_0) => {
{
match ::rustc_middle::ty::VisitorResult::branch(::rustc_middle::ty::TypeVisitable::visit_with(__binding_0,
__visitor)) {
::core::ops::ControlFlow::Continue(()) => {}
::core::ops::ControlFlow::Break(r) => {
return ::rustc_middle::ty::VisitorResult::from_residual(r);
}
}
}
}
UpvarArgs::CoroutineClosure(ref __binding_0) => {
{
match ::rustc_middle::ty::VisitorResult::branch(::rustc_middle::ty::TypeVisitable::visit_with(__binding_0,
__visitor)) {
::core::ops::ControlFlow::Continue(()) => {}
::core::ops::ControlFlow::Break(r) => {
return ::rustc_middle::ty::VisitorResult::from_residual(r);
}
}
}
}
}
<__V::Result as ::rustc_middle::ty::VisitorResult>::output()
}
}
};TypeVisitable)]
186pub enum UpvarArgs<'tcx> {
187 Closure(GenericArgsRef<'tcx>),
188 Coroutine(GenericArgsRef<'tcx>),
189 CoroutineClosure(GenericArgsRef<'tcx>),
190}
191
192impl<'tcx> UpvarArgs<'tcx> {
193 #[inline]
197 pub fn upvar_tys(self) -> &'tcx List<Ty<'tcx>> {
198 let tupled_tys = match self {
199 UpvarArgs::Closure(args) => args.as_closure().tupled_upvars_ty(),
200 UpvarArgs::Coroutine(args) => args.as_coroutine().tupled_upvars_ty(),
201 UpvarArgs::CoroutineClosure(args) => args.as_coroutine_closure().tupled_upvars_ty(),
202 };
203
204 match tupled_tys.kind() {
205 TyKind::Error(_) => ty::List::empty(),
206 TyKind::Tuple(..) => self.tupled_upvars_ty().tuple_fields(),
207 TyKind::Infer(_) => crate::util::bug::bug_fmt(format_args!("upvar_tys called before capture types are inferred"))bug!("upvar_tys called before capture types are inferred"),
208 ty => crate::util::bug::bug_fmt(format_args!("Unexpected representation of upvar types tuple {0:?}",
ty))bug!("Unexpected representation of upvar types tuple {:?}", ty),
209 }
210 }
211
212 #[inline]
213 pub fn tupled_upvars_ty(self) -> Ty<'tcx> {
214 match self {
215 UpvarArgs::Closure(args) => args.as_closure().tupled_upvars_ty(),
216 UpvarArgs::Coroutine(args) => args.as_coroutine().tupled_upvars_ty(),
217 UpvarArgs::CoroutineClosure(args) => args.as_coroutine_closure().tupled_upvars_ty(),
218 }
219 }
220}
221
222#[derive(#[automatically_derived]
impl<'tcx> ::core::marker::Copy for InlineConstArgs<'tcx> { }Copy, #[automatically_derived]
impl<'tcx> ::core::clone::Clone for InlineConstArgs<'tcx> {
#[inline]
fn clone(&self) -> InlineConstArgs<'tcx> {
let _: ::core::clone::AssertParamIsClone<GenericArgsRef<'tcx>>;
*self
}
}Clone, #[automatically_derived]
impl<'tcx> ::core::fmt::Debug for InlineConstArgs<'tcx> {
#[inline]
fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
::core::fmt::Formatter::debug_struct_field1_finish(f,
"InlineConstArgs", "args", &&self.args)
}
}Debug)]
237pub struct InlineConstArgs<'tcx> {
238 pub args: GenericArgsRef<'tcx>,
241}
242
243pub struct InlineConstArgsParts<'tcx, T> {
245 pub parent_args: &'tcx [GenericArg<'tcx>],
246 pub ty: T,
247}
248
249impl<'tcx> InlineConstArgs<'tcx> {
250 pub fn new(
252 tcx: TyCtxt<'tcx>,
253 parts: InlineConstArgsParts<'tcx, Ty<'tcx>>,
254 ) -> InlineConstArgs<'tcx> {
255 InlineConstArgs {
256 args: tcx.mk_args_from_iter(
257 parts.parent_args.iter().copied().chain(std::iter::once(parts.ty.into())),
258 ),
259 }
260 }
261
262 fn split(self) -> InlineConstArgsParts<'tcx, GenericArg<'tcx>> {
265 match self.args[..] {
266 [ref parent_args @ .., ty] => InlineConstArgsParts { parent_args, ty },
267 _ => crate::util::bug::bug_fmt(format_args!("inline const args missing synthetics"))bug!("inline const args missing synthetics"),
268 }
269 }
270
271 pub fn parent_args(self) -> &'tcx [GenericArg<'tcx>] {
273 self.split().parent_args
274 }
275
276 pub fn ty(self) -> Ty<'tcx> {
278 self.split().ty.expect_ty()
279 }
280}
281
282pub type PolyFnSig<'tcx> = Binder<'tcx, FnSig<'tcx>>;
283pub type CanonicalPolyFnSig<'tcx> = Canonical<'tcx, Binder<'tcx, FnSig<'tcx>>>;
284
285#[derive(#[automatically_derived]
impl ::core::clone::Clone for ParamTy {
#[inline]
fn clone(&self) -> ParamTy {
let _: ::core::clone::AssertParamIsClone<u32>;
let _: ::core::clone::AssertParamIsClone<Symbol>;
*self
}
}Clone, #[automatically_derived]
impl ::core::marker::Copy for ParamTy { }Copy, #[automatically_derived]
impl ::core::cmp::PartialEq for ParamTy {
#[inline]
fn eq(&self, other: &ParamTy) -> bool {
self.index == other.index && self.name == other.name
}
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for ParamTy {
#[inline]
#[doc(hidden)]
#[coverage(off)]
fn assert_fields_are_eq(&self) {
let _: ::core::cmp::AssertParamIsEq<u32>;
let _: ::core::cmp::AssertParamIsEq<Symbol>;
}
}Eq, #[automatically_derived]
impl ::core::cmp::PartialOrd for ParamTy {
#[inline]
fn partial_cmp(&self, other: &ParamTy)
-> ::core::option::Option<::core::cmp::Ordering> {
::core::option::Option::Some(::core::cmp::Ord::cmp(self, other))
}
}PartialOrd, #[automatically_derived]
impl ::core::cmp::Ord for ParamTy {
#[inline]
fn cmp(&self, other: &ParamTy) -> ::core::cmp::Ordering {
match ::core::cmp::Ord::cmp(&self.index, &other.index) {
::core::cmp::Ordering::Equal =>
::core::cmp::Ord::cmp(&self.name, &other.name),
cmp => cmp,
}
}
}Ord, #[automatically_derived]
impl ::core::hash::Hash for ParamTy {
#[inline]
fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
::core::hash::Hash::hash(&self.index, state);
::core::hash::Hash::hash(&self.name, state)
}
}Hash, const _: () =
{
impl<'tcx, __E: ::rustc_middle::ty::codec::TyEncoder<'tcx>>
::rustc_serialize::Encodable<__E> for ParamTy {
fn encode(&self, __encoder: &mut __E) {
match *self {
ParamTy { index: ref __binding_0, name: ref __binding_1 } =>
{
::rustc_serialize::Encodable::<__E>::encode(__binding_0,
__encoder);
::rustc_serialize::Encodable::<__E>::encode(__binding_1,
__encoder);
}
}
}
}
};TyEncodable, const _: () =
{
impl<'tcx, __D: ::rustc_middle::ty::codec::TyDecoder<'tcx>>
::rustc_serialize::Decodable<__D> for ParamTy {
fn decode(__decoder: &mut __D) -> Self {
ParamTy {
index: ::rustc_serialize::Decodable::decode(__decoder),
name: ::rustc_serialize::Decodable::decode(__decoder),
}
}
}
};TyDecodable)]
286#[derive(const _: () =
{
impl ::rustc_data_structures::stable_hash::StableHash for ParamTy {
#[inline]
fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
__hcx: &mut __Hcx,
__hasher:
&mut ::rustc_data_structures::stable_hash::StableHasher) {
match *self {
ParamTy { index: ref __binding_0, name: ref __binding_1 } =>
{
{ __binding_0.stable_hash(__hcx, __hasher); }
{ __binding_1.stable_hash(__hcx, __hasher); }
}
}
}
}
};StableHash)]
287pub struct ParamTy {
288 pub index: u32,
289 pub name: Symbol,
290}
291
292impl rustc_type_ir::inherent::ParamLike for ParamTy {
293 fn index(self) -> u32 {
294 self.index
295 }
296}
297
298impl<'tcx> ParamTy {
299 pub fn new(index: u32, name: Symbol) -> ParamTy {
300 ParamTy { index, name }
301 }
302
303 pub fn for_def(def: &ty::GenericParamDef) -> ParamTy {
304 ParamTy::new(def.index, def.name)
305 }
306
307 #[inline]
308 pub fn to_ty(self, tcx: TyCtxt<'tcx>) -> Ty<'tcx> {
309 Ty::new_param(tcx, self.index, self.name)
310 }
311
312 pub fn span_from_generics(self, tcx: TyCtxt<'tcx>, item_with_generics: DefId) -> Span {
313 let generics = tcx.generics_of(item_with_generics);
314 let type_param = generics.type_param(self, tcx);
315 tcx.def_span(type_param.def_id)
316 }
317}
318
319#[derive(#[automatically_derived]
impl ::core::marker::Copy for ParamConst { }Copy, #[automatically_derived]
impl ::core::clone::Clone for ParamConst {
#[inline]
fn clone(&self) -> ParamConst {
let _: ::core::clone::AssertParamIsClone<u32>;
let _: ::core::clone::AssertParamIsClone<Symbol>;
*self
}
}Clone, #[automatically_derived]
impl ::core::hash::Hash for ParamConst {
#[inline]
fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
::core::hash::Hash::hash(&self.index, state);
::core::hash::Hash::hash(&self.name, state)
}
}Hash, const _: () =
{
impl<'tcx, __E: ::rustc_middle::ty::codec::TyEncoder<'tcx>>
::rustc_serialize::Encodable<__E> for ParamConst {
fn encode(&self, __encoder: &mut __E) {
match *self {
ParamConst { index: ref __binding_0, name: ref __binding_1 }
=> {
::rustc_serialize::Encodable::<__E>::encode(__binding_0,
__encoder);
::rustc_serialize::Encodable::<__E>::encode(__binding_1,
__encoder);
}
}
}
}
};TyEncodable, const _: () =
{
impl<'tcx, __D: ::rustc_middle::ty::codec::TyDecoder<'tcx>>
::rustc_serialize::Decodable<__D> for ParamConst {
fn decode(__decoder: &mut __D) -> Self {
ParamConst {
index: ::rustc_serialize::Decodable::decode(__decoder),
name: ::rustc_serialize::Decodable::decode(__decoder),
}
}
}
};TyDecodable, #[automatically_derived]
impl ::core::cmp::Eq for ParamConst {
#[inline]
#[doc(hidden)]
#[coverage(off)]
fn assert_fields_are_eq(&self) {
let _: ::core::cmp::AssertParamIsEq<u32>;
let _: ::core::cmp::AssertParamIsEq<Symbol>;
}
}Eq, #[automatically_derived]
impl ::core::cmp::PartialEq for ParamConst {
#[inline]
fn eq(&self, other: &ParamConst) -> bool {
self.index == other.index && self.name == other.name
}
}PartialEq, #[automatically_derived]
impl ::core::cmp::Ord for ParamConst {
#[inline]
fn cmp(&self, other: &ParamConst) -> ::core::cmp::Ordering {
match ::core::cmp::Ord::cmp(&self.index, &other.index) {
::core::cmp::Ordering::Equal =>
::core::cmp::Ord::cmp(&self.name, &other.name),
cmp => cmp,
}
}
}Ord, #[automatically_derived]
impl ::core::cmp::PartialOrd for ParamConst {
#[inline]
fn partial_cmp(&self, other: &ParamConst)
-> ::core::option::Option<::core::cmp::Ordering> {
::core::option::Option::Some(::core::cmp::Ord::cmp(self, other))
}
}PartialOrd)]
320#[derive(const _: () =
{
impl ::rustc_data_structures::stable_hash::StableHash for ParamConst {
#[inline]
fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
__hcx: &mut __Hcx,
__hasher:
&mut ::rustc_data_structures::stable_hash::StableHasher) {
match *self {
ParamConst { index: ref __binding_0, name: ref __binding_1 }
=> {
{ __binding_0.stable_hash(__hcx, __hasher); }
{ __binding_1.stable_hash(__hcx, __hasher); }
}
}
}
}
};StableHash)]
321pub struct ParamConst {
322 pub index: u32,
323 pub name: Symbol,
324}
325
326impl rustc_type_ir::inherent::ParamLike for ParamConst {
327 fn index(self) -> u32 {
328 self.index
329 }
330}
331
332impl ParamConst {
333 pub fn new(index: u32, name: Symbol) -> ParamConst {
334 ParamConst { index, name }
335 }
336
337 pub fn for_def(def: &ty::GenericParamDef) -> ParamConst {
338 ParamConst::new(def.index, def.name)
339 }
340
341 #[allow(clippy :: suspicious_else_formatting)]
{
let __tracing_attr_span;
let __tracing_attr_guard;
if ::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() ||
{ false } {
__tracing_attr_span =
{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("find_const_ty_from_env",
"rustc_middle::ty::sty", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_middle/src/ty/sty.rs"),
::tracing_core::__macro_support::Option::Some(341u32),
::tracing_core::__macro_support::Option::Some("rustc_middle::ty::sty"),
::tracing_core::field::FieldSet::new(&["self", "env"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::SPAN)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let mut interest = ::tracing::subscriber::Interest::never();
if ::tracing::Level::DEBUG <=
::tracing::level_filters::STATIC_MAX_LEVEL &&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{ interest = __CALLSITE.interest(); !interest.is_never() }
&&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest) {
let meta = __CALLSITE.metadata();
::tracing::Span::new(meta,
&{
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = meta.fields().iter();
meta.fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&self)
as &dyn Value)),
(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&env)
as &dyn Value))])
})
} else {
let span =
::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
{};
span
}
};
__tracing_attr_guard = __tracing_attr_span.enter();
}
#[warn(clippy :: suspicious_else_formatting)]
{
#[allow(unknown_lints, unreachable_code, clippy ::
diverging_sub_expression, clippy :: empty_loop, clippy ::
let_unit_value, clippy :: let_with_type_underscore, clippy ::
needless_return, clippy :: unreachable)]
if false {
let __tracing_attr_fake_return: Ty<'tcx> = loop {};
return __tracing_attr_fake_return;
}
{
let mut candidates =
env.caller_bounds().iter().filter_map(|clause|
{
match clause.kind().skip_binder() {
ty::ClauseKind::ConstArgHasType(param_ct, ty) => {
if !!(param_ct, ty).has_escaping_bound_vars() {
::core::panicking::panic("assertion failed: !(param_ct, ty).has_escaping_bound_vars()")
};
match param_ct.kind() {
ty::ConstKind::Param(param_ct) if
param_ct.index == self.index => Some(ty),
_ => None,
}
}
_ => None,
}
});
let ty =
candidates.next().unwrap_or_else(||
{
crate::util::bug::bug_fmt(format_args!("cannot find `{0:?}` in param-env: {1:#?}",
self, env));
});
if !candidates.next().is_none() {
{
::core::panicking::panic_fmt(format_args!("did not expect duplicate `ConstParamHasTy` for `{0:?}` in param-env: {1:#?}",
self, env));
}
};
ty
}
}
}#[instrument(level = "debug")]
342 pub fn find_const_ty_from_env<'tcx>(self, env: ParamEnv<'tcx>) -> Ty<'tcx> {
343 let mut candidates = env.caller_bounds().iter().filter_map(|clause| {
344 match clause.kind().skip_binder() {
346 ty::ClauseKind::ConstArgHasType(param_ct, ty) => {
347 assert!(!(param_ct, ty).has_escaping_bound_vars());
348
349 match param_ct.kind() {
350 ty::ConstKind::Param(param_ct) if param_ct.index == self.index => Some(ty),
351 _ => None,
352 }
353 }
354 _ => None,
355 }
356 });
357
358 let ty = candidates.next().unwrap_or_else(|| {
365 bug!("cannot find `{self:?}` in param-env: {env:#?}");
366 });
367 assert!(
368 candidates.next().is_none(),
369 "did not expect duplicate `ConstParamHasTy` for `{self:?}` in param-env: {env:#?}"
370 );
371 ty
372 }
373}
374
375impl<'tcx> Ty<'tcx> {
377 #[allow(rustc::usage_of_ty_tykind)]
380 #[inline]
381 fn new(tcx: TyCtxt<'tcx>, st: TyKind<'tcx>) -> Ty<'tcx> {
382 tcx.mk_ty_from_kind(st)
383 }
384
385 #[inline]
386 pub fn new_infer(tcx: TyCtxt<'tcx>, infer: ty::InferTy) -> Ty<'tcx> {
387 Ty::new(tcx, TyKind::Infer(infer))
388 }
389
390 #[inline]
391 pub fn new_var(tcx: TyCtxt<'tcx>, v: ty::TyVid) -> Ty<'tcx> {
392 tcx.types
394 .ty_vars
395 .get(v.as_usize())
396 .copied()
397 .unwrap_or_else(|| Ty::new(tcx, Infer(TyVar(v))))
398 }
399
400 #[inline]
401 pub fn new_int_var(tcx: TyCtxt<'tcx>, v: ty::IntVid) -> Ty<'tcx> {
402 Ty::new_infer(tcx, IntVar(v))
403 }
404
405 #[inline]
406 pub fn new_float_var(tcx: TyCtxt<'tcx>, v: ty::FloatVid) -> Ty<'tcx> {
407 Ty::new_infer(tcx, FloatVar(v))
408 }
409
410 #[inline]
411 pub fn new_fresh(tcx: TyCtxt<'tcx>, n: u32) -> Ty<'tcx> {
412 tcx.types
414 .fresh_tys
415 .get(n as usize)
416 .copied()
417 .unwrap_or_else(|| Ty::new_infer(tcx, ty::FreshTy(n)))
418 }
419
420 #[inline]
421 pub fn new_fresh_int(tcx: TyCtxt<'tcx>, n: u32) -> Ty<'tcx> {
422 tcx.types
424 .fresh_int_tys
425 .get(n as usize)
426 .copied()
427 .unwrap_or_else(|| Ty::new_infer(tcx, ty::FreshIntTy(n)))
428 }
429
430 #[inline]
431 pub fn new_fresh_float(tcx: TyCtxt<'tcx>, n: u32) -> Ty<'tcx> {
432 tcx.types
434 .fresh_float_tys
435 .get(n as usize)
436 .copied()
437 .unwrap_or_else(|| Ty::new_infer(tcx, ty::FreshFloatTy(n)))
438 }
439
440 #[inline]
441 pub fn new_param(tcx: TyCtxt<'tcx>, index: u32, name: Symbol) -> Ty<'tcx> {
442 Ty::new(tcx, Param(ParamTy { index, name }))
443 }
444
445 #[inline]
446 pub fn new_bound(
447 tcx: TyCtxt<'tcx>,
448 index: ty::DebruijnIndex,
449 bound_ty: ty::BoundTy<'tcx>,
450 ) -> Ty<'tcx> {
451 if let ty::BoundTy { var, kind: ty::BoundTyKind::Anon } = bound_ty
453 && let Some(inner) = tcx.types.anon_bound_tys.get(index.as_usize())
454 && let Some(ty) = inner.get(var.as_usize()).copied()
455 {
456 ty
457 } else {
458 Ty::new(tcx, Bound(ty::BoundVarIndexKind::Bound(index), bound_ty))
459 }
460 }
461
462 #[inline]
463 pub fn new_canonical_bound(tcx: TyCtxt<'tcx>, var: BoundVar) -> Ty<'tcx> {
464 if let Some(ty) = tcx.types.anon_canonical_bound_tys.get(var.as_usize()).copied() {
466 ty
467 } else {
468 Ty::new(
469 tcx,
470 Bound(
471 ty::BoundVarIndexKind::Canonical,
472 ty::BoundTy { var, kind: ty::BoundTyKind::Anon },
473 ),
474 )
475 }
476 }
477
478 #[inline]
479 pub fn new_placeholder(tcx: TyCtxt<'tcx>, placeholder: ty::PlaceholderType<'tcx>) -> Ty<'tcx> {
480 Ty::new(tcx, Placeholder(placeholder))
481 }
482
483 #[inline]
484 pub fn new_alias(
485 tcx: TyCtxt<'tcx>,
486 is_rigid: ty::IsRigid,
487 alias_ty: ty::AliasTy<'tcx>,
488 ) -> Ty<'tcx> {
489 if truecfg!(debug_assertions) {
490 match alias_ty.kind {
491 ty::AliasTyKind::Projection { def_id } => {
492 if true {
{
match tcx.def_kind(def_id) {
DefKind::AssocTy => {}
ref left_val => {
::core::panicking::assert_matches_failed(left_val,
"DefKind::AssocTy", ::core::option::Option::None);
}
}
};
}debug_assert_matches!(tcx.def_kind(def_id), DefKind::AssocTy)
493 }
494 ty::AliasTyKind::Inherent { def_id } => {
495 if true {
{
match tcx.def_kind(def_id) {
DefKind::AssocTy => {}
ref left_val => {
::core::panicking::assert_matches_failed(left_val,
"DefKind::AssocTy", ::core::option::Option::None);
}
}
};
}debug_assert_matches!(tcx.def_kind(def_id), DefKind::AssocTy)
496 }
497 ty::AliasTyKind::Opaque { def_id } => {
498 if true {
{
match tcx.def_kind(def_id) {
DefKind::OpaqueTy => {}
ref left_val => {
::core::panicking::assert_matches_failed(left_val,
"DefKind::OpaqueTy", ::core::option::Option::None);
}
}
};
}debug_assert_matches!(tcx.def_kind(def_id), DefKind::OpaqueTy)
499 }
500 ty::AliasTyKind::Free { def_id } => {
501 if true {
{
match tcx.def_kind(def_id) {
DefKind::TyAlias => {}
ref left_val => {
::core::panicking::assert_matches_failed(left_val,
"DefKind::TyAlias", ::core::option::Option::None);
}
}
};
}debug_assert_matches!(tcx.def_kind(def_id), DefKind::TyAlias)
502 }
503 }
504 }
505 Ty::new(tcx, Alias(is_rigid, alias_ty))
506 }
507
508 #[inline]
509 pub fn new_pat(tcx: TyCtxt<'tcx>, base: Ty<'tcx>, pat: ty::Pattern<'tcx>) -> Ty<'tcx> {
510 Ty::new(tcx, Pat(base, pat))
511 }
512
513 #[inline]
514 pub fn new_field_representing_type(
515 tcx: TyCtxt<'tcx>,
516 base: Ty<'tcx>,
517 variant: VariantIdx,
518 field: FieldIdx,
519 ) -> Ty<'tcx> {
520 let Some(did) = tcx.lang_items().field_representing_type() else {
521 crate::util::bug::bug_fmt(format_args!("could not locate the `FieldRepresentingType` lang item"))bug!("could not locate the `FieldRepresentingType` lang item")
522 };
523 let def = tcx.adt_def(did);
524 let args = tcx.mk_args(&[
525 base.into(),
526 Const::new_value(
527 tcx,
528 ValTree::from_scalar_int(tcx, variant.as_u32().into()),
529 tcx.types.u32,
530 )
531 .into(),
532 Const::new_value(
533 tcx,
534 ValTree::from_scalar_int(tcx, field.as_u32().into()),
535 tcx.types.u32,
536 )
537 .into(),
538 ]);
539 Ty::new_adt(tcx, def, args)
540 }
541
542 #[inline]
543 #[allow(clippy :: suspicious_else_formatting)]
{
let __tracing_attr_span;
let __tracing_attr_guard;
if ::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() ||
{ false } {
__tracing_attr_span =
{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("new_opaque",
"rustc_middle::ty::sty", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_middle/src/ty/sty.rs"),
::tracing_core::__macro_support::Option::Some(543u32),
::tracing_core::__macro_support::Option::Some("rustc_middle::ty::sty"),
::tracing_core::field::FieldSet::new(&["is_rigid", "def_id",
"args"], ::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::SPAN)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let mut interest = ::tracing::subscriber::Interest::never();
if ::tracing::Level::DEBUG <=
::tracing::level_filters::STATIC_MAX_LEVEL &&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{ interest = __CALLSITE.interest(); !interest.is_never() }
&&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest) {
let meta = __CALLSITE.metadata();
::tracing::Span::new(meta,
&{
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = meta.fields().iter();
meta.fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&is_rigid)
as &dyn Value)),
(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&def_id)
as &dyn Value)),
(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&args)
as &dyn Value))])
})
} else {
let span =
::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
{};
span
}
};
__tracing_attr_guard = __tracing_attr_span.enter();
}
#[warn(clippy :: suspicious_else_formatting)]
{
#[allow(unknown_lints, unreachable_code, clippy ::
diverging_sub_expression, clippy :: empty_loop, clippy ::
let_unit_value, clippy :: let_with_type_underscore, clippy ::
needless_return, clippy :: unreachable)]
if false {
let __tracing_attr_fake_return: Ty<'tcx> = loop {};
return __tracing_attr_fake_return;
}
{
Ty::new_alias(tcx, is_rigid,
AliasTy::new_from_args(tcx, ty::Opaque { def_id }, args))
}
}
}#[instrument(level = "debug", skip(tcx))]
544 pub fn new_opaque(
545 tcx: TyCtxt<'tcx>,
546 is_rigid: ty::IsRigid,
547 def_id: DefId,
548 args: GenericArgsRef<'tcx>,
549 ) -> Ty<'tcx> {
550 Ty::new_alias(tcx, is_rigid, AliasTy::new_from_args(tcx, ty::Opaque { def_id }, args))
551 }
552
553 pub fn new_error(tcx: TyCtxt<'tcx>, guar: ErrorGuaranteed) -> Ty<'tcx> {
555 Ty::new(tcx, Error(guar))
556 }
557
558 #[track_caller]
560 pub fn new_misc_error(tcx: TyCtxt<'tcx>) -> Ty<'tcx> {
561 Ty::new_error_with_message(tcx, DUMMY_SP, "TyKind::Error constructed but no error reported")
562 }
563
564 #[track_caller]
567 pub fn new_error_with_message<S: Into<MultiSpan>>(
568 tcx: TyCtxt<'tcx>,
569 span: S,
570 msg: impl Into<Cow<'static, str>>,
571 ) -> Ty<'tcx> {
572 let reported = tcx.dcx().span_delayed_bug(span, msg);
573 Ty::new(tcx, Error(reported))
574 }
575
576 #[inline]
577 pub fn new_int(tcx: TyCtxt<'tcx>, i: ty::IntTy) -> Ty<'tcx> {
578 use ty::IntTy::*;
579 match i {
580 Isize => tcx.types.isize,
581 I8 => tcx.types.i8,
582 I16 => tcx.types.i16,
583 I32 => tcx.types.i32,
584 I64 => tcx.types.i64,
585 I128 => tcx.types.i128,
586 }
587 }
588
589 #[inline]
590 pub fn new_uint(tcx: TyCtxt<'tcx>, ui: ty::UintTy) -> Ty<'tcx> {
591 use ty::UintTy::*;
592 match ui {
593 Usize => tcx.types.usize,
594 U8 => tcx.types.u8,
595 U16 => tcx.types.u16,
596 U32 => tcx.types.u32,
597 U64 => tcx.types.u64,
598 U128 => tcx.types.u128,
599 }
600 }
601
602 #[inline]
603 pub fn new_float(tcx: TyCtxt<'tcx>, f: ty::FloatTy) -> Ty<'tcx> {
604 use ty::FloatTy::*;
605 match f {
606 F16 => tcx.types.f16,
607 F32 => tcx.types.f32,
608 F64 => tcx.types.f64,
609 F128 => tcx.types.f128,
610 }
611 }
612
613 #[inline]
614 pub fn new_ref(
615 tcx: TyCtxt<'tcx>,
616 r: Region<'tcx>,
617 ty: Ty<'tcx>,
618 mutbl: ty::Mutability,
619 ) -> Ty<'tcx> {
620 Ty::new(tcx, Ref(r, ty, mutbl))
621 }
622
623 #[inline]
624 pub fn new_mut_ref(tcx: TyCtxt<'tcx>, r: Region<'tcx>, ty: Ty<'tcx>) -> Ty<'tcx> {
625 Ty::new_ref(tcx, r, ty, hir::Mutability::Mut)
626 }
627
628 #[inline]
629 pub fn new_imm_ref(tcx: TyCtxt<'tcx>, r: Region<'tcx>, ty: Ty<'tcx>) -> Ty<'tcx> {
630 Ty::new_ref(tcx, r, ty, hir::Mutability::Not)
631 }
632
633 pub fn new_pinned_ref(
634 tcx: TyCtxt<'tcx>,
635 r: Region<'tcx>,
636 ty: Ty<'tcx>,
637 mutbl: ty::Mutability,
638 ) -> Ty<'tcx> {
639 let pin = tcx.adt_def(tcx.require_lang_item(LangItem::Pin, DUMMY_SP));
640 Ty::new_adt(tcx, pin, tcx.mk_args(&[Ty::new_ref(tcx, r, ty, mutbl).into()]))
641 }
642
643 #[inline]
644 pub fn new_ptr(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>, mutbl: ty::Mutability) -> Ty<'tcx> {
645 Ty::new(tcx, ty::RawPtr(ty, mutbl))
646 }
647
648 #[inline]
649 pub fn new_mut_ptr(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>) -> Ty<'tcx> {
650 Ty::new_ptr(tcx, ty, hir::Mutability::Mut)
651 }
652
653 #[inline]
654 pub fn new_imm_ptr(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>) -> Ty<'tcx> {
655 Ty::new_ptr(tcx, ty, hir::Mutability::Not)
656 }
657
658 #[inline]
659 pub fn new_adt(tcx: TyCtxt<'tcx>, def: AdtDef<'tcx>, args: GenericArgsRef<'tcx>) -> Ty<'tcx> {
660 tcx.debug_assert_args_compatible(def.did(), args);
661 if truecfg!(debug_assertions) {
662 match tcx.def_kind(def.did()) {
663 DefKind::Struct | DefKind::Union | DefKind::Enum => {}
664 DefKind::Mod
665 | DefKind::Variant
666 | DefKind::Trait
667 | DefKind::TyAlias
668 | DefKind::ForeignTy
669 | DefKind::TraitAlias
670 | DefKind::AssocTy
671 | DefKind::TyParam
672 | DefKind::Fn
673 | DefKind::Const { .. }
674 | DefKind::ConstParam
675 | DefKind::Static { .. }
676 | DefKind::Ctor(..)
677 | DefKind::AssocFn
678 | DefKind::AssocConst { .. }
679 | DefKind::Macro(..)
680 | DefKind::ExternCrate
681 | DefKind::Use
682 | DefKind::ForeignMod
683 | DefKind::AnonConst
684 | DefKind::OpaqueTy
685 | DefKind::Field
686 | DefKind::LifetimeParam
687 | DefKind::GlobalAsm
688 | DefKind::Impl { .. }
689 | DefKind::Closure
690 | DefKind::SyntheticCoroutineBody => {
691 crate::util::bug::bug_fmt(format_args!("not an adt: {1:?} ({0:?})",
tcx.def_kind(def.did()), def))bug!("not an adt: {def:?} ({:?})", tcx.def_kind(def.did()))
692 }
693 }
694 }
695 Ty::new(tcx, Adt(def, args))
696 }
697
698 #[inline]
699 pub fn new_foreign(tcx: TyCtxt<'tcx>, def_id: DefId) -> Ty<'tcx> {
700 Ty::new(tcx, Foreign(def_id))
701 }
702
703 #[inline]
704 pub fn new_array(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>, n: u64) -> Ty<'tcx> {
705 Ty::new(tcx, Array(ty, ty::Const::from_target_usize(tcx, n)))
706 }
707
708 #[inline]
709 pub fn new_array_with_const_len(
710 tcx: TyCtxt<'tcx>,
711 ty: Ty<'tcx>,
712 ct: ty::Const<'tcx>,
713 ) -> Ty<'tcx> {
714 Ty::new(tcx, Array(ty, ct))
715 }
716
717 #[inline]
718 pub fn new_slice(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>) -> Ty<'tcx> {
719 Ty::new(tcx, Slice(ty))
720 }
721
722 #[inline]
723 pub fn new_tup(tcx: TyCtxt<'tcx>, ts: &[Ty<'tcx>]) -> Ty<'tcx> {
724 if ts.is_empty() { tcx.types.unit } else { Ty::new(tcx, Tuple(tcx.mk_type_list(ts))) }
725 }
726
727 pub fn new_tup_from_iter<I, T>(tcx: TyCtxt<'tcx>, iter: I) -> T::Output
728 where
729 I: Iterator<Item = T>,
730 T: CollectAndApply<Ty<'tcx>, Ty<'tcx>>,
731 {
732 T::collect_and_apply(iter, |ts| Ty::new_tup(tcx, ts))
733 }
734
735 #[inline]
736 pub fn new_fn_def(
737 tcx: TyCtxt<'tcx>,
738 def_id: DefId,
739 args: impl IntoIterator<Item: Into<GenericArg<'tcx>>>,
740 ) -> Ty<'tcx> {
741 if true {
{
match tcx.def_kind(def_id) {
DefKind::AssocFn | DefKind::Fn | DefKind::Ctor(_, CtorKind::Fn) =>
{}
ref left_val => {
::core::panicking::assert_matches_failed(left_val,
"DefKind::AssocFn | DefKind::Fn | DefKind::Ctor(_, CtorKind::Fn)",
::core::option::Option::None);
}
}
};
};debug_assert_matches!(
742 tcx.def_kind(def_id),
743 DefKind::AssocFn | DefKind::Fn | DefKind::Ctor(_, CtorKind::Fn)
744 );
745 let args = tcx.check_and_mk_args(def_id, args);
746 Ty::new(tcx, FnDef(def_id, args))
747 }
748
749 #[inline]
750 pub fn new_fn_ptr(tcx: TyCtxt<'tcx>, fty: PolyFnSig<'tcx>) -> Ty<'tcx> {
751 let (sig_tys, hdr) = fty.split();
752 Ty::new(tcx, FnPtr(sig_tys, hdr))
753 }
754
755 #[inline]
756 pub fn new_unsafe_binder(tcx: TyCtxt<'tcx>, b: Binder<'tcx, Ty<'tcx>>) -> Ty<'tcx> {
757 Ty::new(tcx, UnsafeBinder(b.into()))
758 }
759
760 #[inline]
761 pub fn new_dynamic(
762 tcx: TyCtxt<'tcx>,
763 obj: &'tcx List<ty::PolyExistentialPredicate<'tcx>>,
764 reg: ty::Region<'tcx>,
765 ) -> Ty<'tcx> {
766 if truecfg!(debug_assertions) {
767 let projection_count = obj
768 .projection_bounds()
769 .filter(|item| !tcx.generics_require_sized_self(item.item_def_id()))
770 .count();
771 let expected_count: usize = obj.principal_def_id().map_or(0, |principal_def_id| {
772 elaborate::supertraits(
774 tcx,
775 ty::Binder::dummy(ty::TraitRef::identity(tcx, principal_def_id)),
776 )
777 .map(|principal| {
778 tcx.associated_items(principal.def_id())
779 .in_definition_order()
780 .filter(|item| item.is_type() || item.is_type_const())
781 .filter(|item| !item.is_impl_trait_in_trait())
782 .filter(|item| !tcx.generics_require_sized_self(item.def_id))
783 .count()
784 })
785 .sum()
786 });
787 {
match (&projection_count, &expected_count) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val,
&*right_val,
::core::option::Option::Some(format_args!("expected {0:?} to have {1} projections, but it has {2}",
obj, expected_count, projection_count)));
}
}
}
};assert_eq!(
788 projection_count, expected_count,
789 "expected {obj:?} to have {expected_count} projections, \
790 but it has {projection_count}"
791 );
792 }
793 Ty::new(tcx, Dynamic(obj, reg))
794 }
795
796 #[inline]
797 pub fn new_projection_from_args(
798 tcx: TyCtxt<'tcx>,
799 is_rigid: ty::IsRigid,
800 item_def_id: DefId,
801 args: ty::GenericArgsRef<'tcx>,
802 ) -> Ty<'tcx> {
803 Ty::new_alias(
804 tcx,
805 is_rigid,
806 AliasTy::new_from_args(tcx, ty::Projection { def_id: item_def_id }, args),
807 )
808 }
809
810 #[inline]
811 pub fn new_projection(
812 tcx: TyCtxt<'tcx>,
813 is_rigid: ty::IsRigid,
814 item_def_id: DefId,
815 args: impl IntoIterator<Item: Into<GenericArg<'tcx>>>,
816 ) -> Ty<'tcx> {
817 Ty::new_alias(
818 tcx,
819 is_rigid,
820 AliasTy::new(tcx, ty::Projection { def_id: item_def_id }, args),
821 )
822 }
823
824 #[inline]
825 pub fn new_closure(
826 tcx: TyCtxt<'tcx>,
827 def_id: DefId,
828 closure_args: GenericArgsRef<'tcx>,
829 ) -> Ty<'tcx> {
830 tcx.debug_assert_args_compatible(def_id, closure_args);
831 Ty::new(tcx, Closure(def_id, closure_args))
832 }
833
834 #[inline]
835 pub fn new_coroutine_closure(
836 tcx: TyCtxt<'tcx>,
837 def_id: DefId,
838 closure_args: GenericArgsRef<'tcx>,
839 ) -> Ty<'tcx> {
840 tcx.debug_assert_args_compatible(def_id, closure_args);
841 Ty::new(tcx, CoroutineClosure(def_id, closure_args))
842 }
843
844 #[inline]
845 pub fn new_coroutine(
846 tcx: TyCtxt<'tcx>,
847 def_id: DefId,
848 coroutine_args: GenericArgsRef<'tcx>,
849 ) -> Ty<'tcx> {
850 tcx.debug_assert_args_compatible(def_id, coroutine_args);
851 Ty::new(tcx, Coroutine(def_id, coroutine_args))
852 }
853
854 #[inline]
855 pub fn new_coroutine_witness(
856 tcx: TyCtxt<'tcx>,
857 def_id: DefId,
858 args: GenericArgsRef<'tcx>,
859 ) -> Ty<'tcx> {
860 if truecfg!(debug_assertions) {
861 tcx.debug_assert_args_compatible(tcx.typeck_root_def_id(def_id), args);
862 }
863 Ty::new(tcx, CoroutineWitness(def_id, args))
864 }
865
866 pub fn new_coroutine_witness_for_coroutine(
867 tcx: TyCtxt<'tcx>,
868 def_id: DefId,
869 coroutine_args: GenericArgsRef<'tcx>,
870 ) -> Ty<'tcx> {
871 tcx.debug_assert_args_compatible(def_id, coroutine_args);
872 let args =
881 ty::GenericArgs::for_item(tcx, tcx.typeck_root_def_id(def_id), |def, _| {
882 match def.kind {
883 ty::GenericParamDefKind::Lifetime => tcx.lifetimes.re_erased.into(),
884 ty::GenericParamDefKind::Type { .. }
885 | ty::GenericParamDefKind::Const { .. } => coroutine_args[def.index as usize],
886 }
887 });
888 Ty::new_coroutine_witness(tcx, def_id, args)
889 }
890
891 #[inline]
894 pub fn new_static_str(tcx: TyCtxt<'tcx>) -> Ty<'tcx> {
895 Ty::new_imm_ref(tcx, tcx.lifetimes.re_static, tcx.types.str_)
896 }
897
898 fn new_generic_adt(tcx: TyCtxt<'tcx>, wrapper_def_id: DefId, ty_param: Ty<'tcx>) -> Ty<'tcx> {
901 let adt_def = tcx.adt_def(wrapper_def_id);
902 let args = GenericArgs::for_item(tcx, wrapper_def_id, |param, args| match param.kind {
903 GenericParamDefKind::Lifetime | GenericParamDefKind::Const { .. } => crate::util::bug::bug_fmt(format_args!("impossible case reached"))bug!(),
904 GenericParamDefKind::Type { has_default, .. } => {
905 if param.index == 0 {
906 ty_param.into()
907 } else {
908 if !has_default { ::core::panicking::panic("assertion failed: has_default") };assert!(has_default);
909 tcx.type_of(param.def_id).instantiate(tcx, args).skip_norm_wip().into()
910 }
911 }
912 });
913 Ty::new_adt(tcx, adt_def, args)
914 }
915
916 #[inline]
917 pub fn new_lang_item(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>, item: LangItem) -> Option<Ty<'tcx>> {
918 let def_id = tcx.lang_items().get(item)?;
919 Some(Ty::new_generic_adt(tcx, def_id, ty))
920 }
921
922 #[inline]
923 pub fn new_diagnostic_item(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>, name: Symbol) -> Option<Ty<'tcx>> {
924 let def_id = tcx.get_diagnostic_item(name)?;
925 Some(Ty::new_generic_adt(tcx, def_id, ty))
926 }
927
928 #[inline]
929 pub fn new_box(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>) -> Ty<'tcx> {
930 let def_id = tcx.require_lang_item(LangItem::OwnedBox, DUMMY_SP);
931 Ty::new_generic_adt(tcx, def_id, ty)
932 }
933
934 #[inline]
935 pub fn new_option(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>) -> Ty<'tcx> {
936 let def_id = tcx.require_lang_item(LangItem::Option, DUMMY_SP);
937 Ty::new_generic_adt(tcx, def_id, ty)
938 }
939
940 #[inline]
941 pub fn new_maybe_uninit(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>) -> Ty<'tcx> {
942 let def_id = tcx.require_lang_item(LangItem::MaybeUninit, DUMMY_SP);
943 Ty::new_generic_adt(tcx, def_id, ty)
944 }
945
946 pub fn new_task_context(tcx: TyCtxt<'tcx>) -> Ty<'tcx> {
948 let context_did = tcx.require_lang_item(LangItem::Context, DUMMY_SP);
949 let context_adt_ref = tcx.adt_def(context_did);
950 let context_args = tcx.mk_args(&[tcx.lifetimes.re_erased.into()]);
951 let context_ty = Ty::new_adt(tcx, context_adt_ref, context_args);
952 Ty::new_mut_ref(tcx, tcx.lifetimes.re_erased, context_ty)
953 }
954}
955
956impl<'tcx> rustc_type_ir::inherent::Ty<TyCtxt<'tcx>> for Ty<'tcx> {
957 fn new_bool(tcx: TyCtxt<'tcx>) -> Self {
958 tcx.types.bool
959 }
960
961 fn new_u8(tcx: TyCtxt<'tcx>) -> Self {
962 tcx.types.u8
963 }
964
965 fn new_infer(tcx: TyCtxt<'tcx>, infer: ty::InferTy) -> Self {
966 Ty::new_infer(tcx, infer)
967 }
968
969 fn new_var(tcx: TyCtxt<'tcx>, vid: ty::TyVid) -> Self {
970 Ty::new_var(tcx, vid)
971 }
972
973 fn new_param(tcx: TyCtxt<'tcx>, param: ty::ParamTy) -> Self {
974 Ty::new_param(tcx, param.index, param.name)
975 }
976
977 fn new_placeholder(tcx: TyCtxt<'tcx>, placeholder: ty::PlaceholderType<'tcx>) -> Self {
978 Ty::new_placeholder(tcx, placeholder)
979 }
980
981 fn new_bound(
982 interner: TyCtxt<'tcx>,
983 debruijn: ty::DebruijnIndex,
984 var: ty::BoundTy<'tcx>,
985 ) -> Self {
986 Ty::new_bound(interner, debruijn, var)
987 }
988
989 fn new_anon_bound(tcx: TyCtxt<'tcx>, debruijn: ty::DebruijnIndex, var: ty::BoundVar) -> Self {
990 Ty::new_bound(tcx, debruijn, ty::BoundTy { var, kind: ty::BoundTyKind::Anon })
991 }
992
993 fn new_canonical_bound(tcx: TyCtxt<'tcx>, var: ty::BoundVar) -> Self {
994 Ty::new_canonical_bound(tcx, var)
995 }
996
997 fn new_alias(
998 interner: TyCtxt<'tcx>,
999 is_rigid: ty::IsRigid,
1000 alias_ty: ty::AliasTy<'tcx>,
1001 ) -> Self {
1002 Ty::new_alias(interner, is_rigid, alias_ty)
1003 }
1004
1005 fn new_error(interner: TyCtxt<'tcx>, guar: ErrorGuaranteed) -> Self {
1006 Ty::new_error(interner, guar)
1007 }
1008
1009 fn new_adt(
1010 interner: TyCtxt<'tcx>,
1011 adt_def: ty::AdtDef<'tcx>,
1012 args: ty::GenericArgsRef<'tcx>,
1013 ) -> Self {
1014 Ty::new_adt(interner, adt_def, args)
1015 }
1016
1017 fn new_foreign(interner: TyCtxt<'tcx>, def_id: DefId) -> Self {
1018 Ty::new_foreign(interner, def_id)
1019 }
1020
1021 fn new_dynamic(
1022 interner: TyCtxt<'tcx>,
1023 preds: &'tcx List<ty::PolyExistentialPredicate<'tcx>>,
1024 region: ty::Region<'tcx>,
1025 ) -> Self {
1026 Ty::new_dynamic(interner, preds, region)
1027 }
1028
1029 fn new_coroutine(
1030 interner: TyCtxt<'tcx>,
1031 def_id: DefId,
1032 args: ty::GenericArgsRef<'tcx>,
1033 ) -> Self {
1034 Ty::new_coroutine(interner, def_id, args)
1035 }
1036
1037 fn new_coroutine_closure(
1038 interner: TyCtxt<'tcx>,
1039 def_id: DefId,
1040 args: ty::GenericArgsRef<'tcx>,
1041 ) -> Self {
1042 Ty::new_coroutine_closure(interner, def_id, args)
1043 }
1044
1045 fn new_closure(interner: TyCtxt<'tcx>, def_id: DefId, args: ty::GenericArgsRef<'tcx>) -> Self {
1046 Ty::new_closure(interner, def_id, args)
1047 }
1048
1049 fn new_coroutine_witness(
1050 interner: TyCtxt<'tcx>,
1051 def_id: DefId,
1052 args: ty::GenericArgsRef<'tcx>,
1053 ) -> Self {
1054 Ty::new_coroutine_witness(interner, def_id, args)
1055 }
1056
1057 fn new_coroutine_witness_for_coroutine(
1058 interner: TyCtxt<'tcx>,
1059 def_id: DefId,
1060 coroutine_args: ty::GenericArgsRef<'tcx>,
1061 ) -> Self {
1062 Ty::new_coroutine_witness_for_coroutine(interner, def_id, coroutine_args)
1063 }
1064
1065 fn new_ptr(interner: TyCtxt<'tcx>, ty: Self, mutbl: hir::Mutability) -> Self {
1066 Ty::new_ptr(interner, ty, mutbl)
1067 }
1068
1069 fn new_ref(
1070 interner: TyCtxt<'tcx>,
1071 region: ty::Region<'tcx>,
1072 ty: Self,
1073 mutbl: hir::Mutability,
1074 ) -> Self {
1075 Ty::new_ref(interner, region, ty, mutbl)
1076 }
1077
1078 fn new_array_with_const_len(interner: TyCtxt<'tcx>, ty: Self, len: ty::Const<'tcx>) -> Self {
1079 Ty::new_array_with_const_len(interner, ty, len)
1080 }
1081
1082 fn new_slice(interner: TyCtxt<'tcx>, ty: Self) -> Self {
1083 Ty::new_slice(interner, ty)
1084 }
1085
1086 fn new_tup(interner: TyCtxt<'tcx>, tys: &[Ty<'tcx>]) -> Self {
1087 Ty::new_tup(interner, tys)
1088 }
1089
1090 fn new_tup_from_iter<It, T>(interner: TyCtxt<'tcx>, iter: It) -> T::Output
1091 where
1092 It: Iterator<Item = T>,
1093 T: CollectAndApply<Self, Self>,
1094 {
1095 Ty::new_tup_from_iter(interner, iter)
1096 }
1097
1098 fn tuple_fields(self) -> &'tcx ty::List<Ty<'tcx>> {
1099 self.tuple_fields()
1100 }
1101
1102 fn to_opt_closure_kind(self) -> Option<ty::ClosureKind> {
1103 self.to_opt_closure_kind()
1104 }
1105
1106 fn from_closure_kind(interner: TyCtxt<'tcx>, kind: ty::ClosureKind) -> Self {
1107 Ty::from_closure_kind(interner, kind)
1108 }
1109
1110 fn from_coroutine_closure_kind(
1111 interner: TyCtxt<'tcx>,
1112 kind: rustc_type_ir::ClosureKind,
1113 ) -> Self {
1114 Ty::from_coroutine_closure_kind(interner, kind)
1115 }
1116
1117 fn new_fn_def(interner: TyCtxt<'tcx>, def_id: DefId, args: ty::GenericArgsRef<'tcx>) -> Self {
1118 Ty::new_fn_def(interner, def_id, args)
1119 }
1120
1121 fn new_fn_ptr(interner: TyCtxt<'tcx>, sig: ty::Binder<'tcx, ty::FnSig<'tcx>>) -> Self {
1122 Ty::new_fn_ptr(interner, sig)
1123 }
1124
1125 fn new_pat(interner: TyCtxt<'tcx>, ty: Self, pat: ty::Pattern<'tcx>) -> Self {
1126 Ty::new_pat(interner, ty, pat)
1127 }
1128
1129 fn new_unsafe_binder(interner: TyCtxt<'tcx>, ty: ty::Binder<'tcx, Ty<'tcx>>) -> Self {
1130 Ty::new_unsafe_binder(interner, ty)
1131 }
1132
1133 fn new_unit(interner: TyCtxt<'tcx>) -> Self {
1134 interner.types.unit
1135 }
1136
1137 fn new_usize(interner: TyCtxt<'tcx>) -> Self {
1138 interner.types.usize
1139 }
1140
1141 fn discriminant_ty(self, interner: TyCtxt<'tcx>) -> Ty<'tcx> {
1142 self.discriminant_ty(interner)
1143 }
1144
1145 fn has_unsafe_fields(self) -> bool {
1146 Ty::has_unsafe_fields(self)
1147 }
1148}
1149
1150impl<'tcx> Ty<'tcx> {
1152 #[inline(always)]
1157 pub fn kind(self) -> &'tcx TyKind<'tcx> {
1158 self.0.0
1159 }
1160
1161 #[inline]
1162 pub fn is_unit(self) -> bool {
1163 match self.kind() {
1164 Tuple(tys) => tys.is_empty(),
1165 _ => false,
1166 }
1167 }
1168
1169 #[inline]
1171 pub fn is_usize(self) -> bool {
1172 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Uint(UintTy::Usize) => true,
_ => false,
}matches!(self.kind(), Uint(UintTy::Usize))
1173 }
1174
1175 #[inline]
1177 pub fn is_usize_like(self) -> bool {
1178 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Uint(UintTy::Usize) | Infer(IntVar(_)) => true,
_ => false,
}matches!(self.kind(), Uint(UintTy::Usize) | Infer(IntVar(_)))
1179 }
1180
1181 #[inline]
1182 pub fn is_never(self) -> bool {
1183 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Never => true,
_ => false,
}matches!(self.kind(), Never)
1184 }
1185
1186 #[inline]
1187 pub fn is_primitive(self) -> bool {
1188 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Bool | Char | Int(_) | Uint(_) | Float(_) => true,
_ => false,
}matches!(self.kind(), Bool | Char | Int(_) | Uint(_) | Float(_))
1189 }
1190
1191 #[inline]
1192 pub fn is_adt(self) -> bool {
1193 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Adt(..) => true,
_ => false,
}matches!(self.kind(), Adt(..))
1194 }
1195
1196 #[inline]
1197 pub fn is_ref(self) -> bool {
1198 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Ref(..) => true,
_ => false,
}matches!(self.kind(), Ref(..))
1199 }
1200
1201 #[inline]
1202 pub fn is_ty_var(self) -> bool {
1203 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Infer(TyVar(_)) => true,
_ => false,
}matches!(self.kind(), Infer(TyVar(_)))
1204 }
1205
1206 #[inline]
1207 pub fn ty_vid(self) -> Option<ty::TyVid> {
1208 match self.kind() {
1209 &Infer(TyVar(vid)) => Some(vid),
1210 _ => None,
1211 }
1212 }
1213
1214 #[inline]
1215 pub fn float_vid(self) -> Option<ty::FloatVid> {
1216 match self.kind() {
1217 &Infer(FloatVar(vid)) => Some(vid),
1218 _ => None,
1219 }
1220 }
1221
1222 #[inline]
1223 pub fn is_ty_or_numeric_infer(self) -> bool {
1224 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Infer(_) => true,
_ => false,
}matches!(self.kind(), Infer(_))
1225 }
1226
1227 #[inline]
1228 pub fn is_phantom_data(self) -> bool {
1229 if let Adt(def, _) = self.kind() { def.is_phantom_data() } else { false }
1230 }
1231
1232 #[inline]
1233 pub fn is_bool(self) -> bool {
1234 *self.kind() == Bool
1235 }
1236
1237 #[inline]
1239 pub fn is_str(self) -> bool {
1240 *self.kind() == Str
1241 }
1242
1243 #[inline]
1245 pub fn is_imm_ref_str(self) -> bool {
1246 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
ty::Ref(_, inner, hir::Mutability::Not) if inner.is_str() => true,
_ => false,
}matches!(self.kind(), ty::Ref(_, inner, hir::Mutability::Not) if inner.is_str())
1247 }
1248
1249 #[inline]
1250 pub fn is_param(self, index: u32) -> bool {
1251 match self.kind() {
1252 ty::Param(data) => data.index == index,
1253 _ => false,
1254 }
1255 }
1256
1257 #[inline]
1258 pub fn is_slice(self) -> bool {
1259 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Slice(_) => true,
_ => false,
}matches!(self.kind(), Slice(_))
1260 }
1261
1262 #[inline]
1263 pub fn is_array_slice(self) -> bool {
1264 match self.kind() {
1265 Slice(_) => true,
1266 ty::RawPtr(ty, _) | Ref(_, ty, _) => #[allow(non_exhaustive_omitted_patterns)] match ty.kind() {
Slice(_) => true,
_ => false,
}matches!(ty.kind(), Slice(_)),
1267 _ => false,
1268 }
1269 }
1270
1271 #[inline]
1272 pub fn is_array(self) -> bool {
1273 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Array(..) => true,
_ => false,
}matches!(self.kind(), Array(..))
1274 }
1275
1276 #[inline]
1277 pub fn is_simd(self) -> bool {
1278 match self.kind() {
1279 Adt(def, _) => def.repr().simd(),
1280 _ => false,
1281 }
1282 }
1283
1284 #[inline]
1285 pub fn is_scalable_vector(self) -> bool {
1286 match self.kind() {
1287 Adt(def, _) => def.repr().scalable(),
1288 _ => false,
1289 }
1290 }
1291
1292 pub fn sequence_element_type(self, tcx: TyCtxt<'tcx>) -> Ty<'tcx> {
1293 match self.kind() {
1294 Array(ty, _) | Slice(ty) => *ty,
1295 Str => tcx.types.u8,
1296 _ => crate::util::bug::bug_fmt(format_args!("`sequence_element_type` called on non-sequence value: {0}",
self))bug!("`sequence_element_type` called on non-sequence value: {}", self),
1297 }
1298 }
1299
1300 pub fn scalable_vector_parts(
1301 self,
1302 tcx: TyCtxt<'tcx>,
1303 ) -> Option<(u16, Ty<'tcx>, NumScalableVectors)> {
1304 let Adt(def, args) = self.kind() else {
1305 return None;
1306 };
1307 let (num_vectors, vec_def) = match def.repr().scalable? {
1308 ScalableElt::ElementCount(_) => (NumScalableVectors::for_non_tuple(), *def),
1309 ScalableElt::Container => (
1310 NumScalableVectors::from_field_count(def.non_enum_variant().fields.len())?,
1311 def.non_enum_variant().fields[FieldIdx::ZERO]
1312 .ty(tcx, args)
1313 .skip_norm_wip()
1314 .ty_adt_def()?,
1315 ),
1316 };
1317 let Some(ScalableElt::ElementCount(element_count)) = vec_def.repr().scalable else {
1318 return None;
1319 };
1320 let variant = vec_def.non_enum_variant();
1321 {
match (&variant.fields.len(), &1) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val,
&*right_val, ::core::option::Option::None);
}
}
}
};assert_eq!(variant.fields.len(), 1);
1322 let field_ty = variant.fields[FieldIdx::ZERO].ty(tcx, args);
1323 Some((element_count, field_ty.skip_norm_wip(), num_vectors))
1324 }
1325
1326 pub fn simd_size_and_type(self, tcx: TyCtxt<'tcx>) -> (u64, Ty<'tcx>) {
1327 let Adt(def, args) = self.kind() else {
1328 crate::util::bug::bug_fmt(format_args!("`simd_size_and_type` called on invalid type"))bug!("`simd_size_and_type` called on invalid type")
1329 };
1330 if !def.repr().simd() {
{
::core::panicking::panic_fmt(format_args!("`simd_size_and_type` called on non-SIMD type"));
}
};assert!(def.repr().simd(), "`simd_size_and_type` called on non-SIMD type");
1331 let variant = def.non_enum_variant();
1332 {
match (&variant.fields.len(), &1) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val,
&*right_val, ::core::option::Option::None);
}
}
}
};assert_eq!(variant.fields.len(), 1);
1333 let field_ty = variant.fields[FieldIdx::ZERO].ty(tcx, args);
1334 let Array(f0_elem_ty, f0_len) = field_ty.skip_norm_wip().kind() else {
1335 crate::util::bug::bug_fmt(format_args!("Simd type has non-array field type {0:?}",
field_ty))bug!("Simd type has non-array field type {field_ty:?}")
1336 };
1337 (
1342 f0_len
1343 .try_to_target_usize(tcx)
1344 .expect("expected SIMD field to have definite array size"),
1345 *f0_elem_ty,
1346 )
1347 }
1348
1349 #[inline]
1350 pub fn is_mutable_ptr(self) -> bool {
1351 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
RawPtr(_, hir::Mutability::Mut) | Ref(_, _, hir::Mutability::Mut) => true,
_ => false,
}matches!(self.kind(), RawPtr(_, hir::Mutability::Mut) | Ref(_, _, hir::Mutability::Mut))
1352 }
1353
1354 #[inline]
1356 pub fn ref_mutability(self) -> Option<hir::Mutability> {
1357 match self.kind() {
1358 Ref(_, _, mutability) => Some(*mutability),
1359 _ => None,
1360 }
1361 }
1362
1363 #[inline]
1364 pub fn is_raw_ptr(self) -> bool {
1365 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
RawPtr(_, _) => true,
_ => false,
}matches!(self.kind(), RawPtr(_, _))
1366 }
1367
1368 #[inline]
1371 pub fn is_any_ptr(self) -> bool {
1372 self.is_ref() || self.is_raw_ptr() || self.is_fn_ptr()
1373 }
1374
1375 #[inline]
1376 pub fn is_box(self) -> bool {
1377 match self.kind() {
1378 Adt(def, _) => def.is_box(),
1379 _ => false,
1380 }
1381 }
1382
1383 #[inline]
1388 pub fn is_box_global(self, tcx: TyCtxt<'tcx>) -> bool {
1389 match self.kind() {
1390 Adt(def, args) if def.is_box() => {
1391 let Some(alloc) = args.get(1) else {
1392 return true;
1394 };
1395 alloc.expect_ty().ty_adt_def().is_some_and(|alloc_adt| {
1396 tcx.is_lang_item(alloc_adt.did(), LangItem::GlobalAlloc)
1397 })
1398 }
1399 _ => false,
1400 }
1401 }
1402
1403 pub fn boxed_ty(self) -> Option<Ty<'tcx>> {
1404 match self.kind() {
1405 Adt(def, args) if def.is_box() => Some(args.type_at(0)),
1406 _ => None,
1407 }
1408 }
1409
1410 pub fn pinned_ty(self) -> Option<Ty<'tcx>> {
1411 match self.kind() {
1412 Adt(def, args) if def.is_pin() => Some(args.type_at(0)),
1413 _ => None,
1414 }
1415 }
1416
1417 pub fn maybe_pinned_ref(
1426 self,
1427 ) -> Option<(Ty<'tcx>, ty::Pinnedness, ty::Mutability, Region<'tcx>)> {
1428 match self.kind() {
1429 Adt(def, args)
1430 if def.is_pin()
1431 && let &ty::Ref(region, ty, mutbl) = args.type_at(0).kind() =>
1432 {
1433 Some((ty, ty::Pinnedness::Pinned, mutbl, region))
1434 }
1435 &Ref(region, ty, mutbl) => Some((ty, ty::Pinnedness::Not, mutbl, region)),
1436 _ => None,
1437 }
1438 }
1439
1440 pub fn expect_boxed_ty(self) -> Ty<'tcx> {
1442 self.boxed_ty()
1443 .unwrap_or_else(|| crate::util::bug::bug_fmt(format_args!("`expect_boxed_ty` is called on non-box type {0:?}",
self))bug!("`expect_boxed_ty` is called on non-box type {:?}", self))
1444 }
1445
1446 #[inline]
1450 pub fn is_scalar(self) -> bool {
1451 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Bool | Char | Int(_) | Float(_) | Uint(_) | FnDef(..) | FnPtr(..) |
RawPtr(_, _) | Infer(IntVar(_) | FloatVar(_)) => true,
_ => false,
}matches!(
1452 self.kind(),
1453 Bool | Char
1454 | Int(_)
1455 | Float(_)
1456 | Uint(_)
1457 | FnDef(..)
1458 | FnPtr(..)
1459 | RawPtr(_, _)
1460 | Infer(IntVar(_) | FloatVar(_))
1461 )
1462 }
1463
1464 #[inline]
1466 pub fn is_floating_point(self) -> bool {
1467 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Float(_) | Infer(FloatVar(_)) => true,
_ => false,
}matches!(self.kind(), Float(_) | Infer(FloatVar(_)))
1468 }
1469
1470 #[inline]
1471 pub fn is_trait(self) -> bool {
1472 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Dynamic(_, _) => true,
_ => false,
}matches!(self.kind(), Dynamic(_, _))
1473 }
1474
1475 #[inline]
1476 pub fn is_enum(self) -> bool {
1477 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Adt(adt_def, _) if adt_def.is_enum() => true,
_ => false,
}matches!(self.kind(), Adt(adt_def, _) if adt_def.is_enum())
1478 }
1479
1480 #[inline]
1481 pub fn is_union(self) -> bool {
1482 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Adt(adt_def, _) if adt_def.is_union() => true,
_ => false,
}matches!(self.kind(), Adt(adt_def, _) if adt_def.is_union())
1483 }
1484
1485 #[inline]
1486 pub fn is_closure(self) -> bool {
1487 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Closure(..) => true,
_ => false,
}matches!(self.kind(), Closure(..))
1488 }
1489
1490 #[inline]
1491 pub fn is_coroutine(self) -> bool {
1492 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Coroutine(..) => true,
_ => false,
}matches!(self.kind(), Coroutine(..))
1493 }
1494
1495 #[inline]
1496 pub fn is_coroutine_closure(self) -> bool {
1497 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
CoroutineClosure(..) => true,
_ => false,
}matches!(self.kind(), CoroutineClosure(..))
1498 }
1499
1500 #[inline]
1501 pub fn is_integral(self) -> bool {
1502 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Infer(IntVar(_)) | Int(_) | Uint(_) => true,
_ => false,
}matches!(self.kind(), Infer(IntVar(_)) | Int(_) | Uint(_))
1503 }
1504
1505 #[inline]
1506 pub fn is_fresh_ty(self) -> bool {
1507 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Infer(FreshTy(_)) => true,
_ => false,
}matches!(self.kind(), Infer(FreshTy(_)))
1508 }
1509
1510 #[inline]
1511 pub fn is_fresh(self) -> bool {
1512 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Infer(FreshTy(_) | FreshIntTy(_) | FreshFloatTy(_)) => true,
_ => false,
}matches!(self.kind(), Infer(FreshTy(_) | FreshIntTy(_) | FreshFloatTy(_)))
1513 }
1514
1515 #[inline]
1516 pub fn is_char(self) -> bool {
1517 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Char => true,
_ => false,
}matches!(self.kind(), Char)
1518 }
1519
1520 #[inline]
1521 pub fn is_numeric(self) -> bool {
1522 self.is_integral() || self.is_floating_point()
1523 }
1524
1525 #[inline]
1526 pub fn is_signed(self) -> bool {
1527 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Int(_) => true,
_ => false,
}matches!(self.kind(), Int(_))
1528 }
1529
1530 #[inline]
1531 pub fn is_ptr_sized_integral(self) -> bool {
1532 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Int(ty::IntTy::Isize) | Uint(ty::UintTy::Usize) => true,
_ => false,
}matches!(self.kind(), Int(ty::IntTy::Isize) | Uint(ty::UintTy::Usize))
1533 }
1534
1535 #[inline]
1536 pub fn has_concrete_skeleton(self) -> bool {
1537 !#[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Param(_) | Infer(_) | Error(_) => true,
_ => false,
}matches!(self.kind(), Param(_) | Infer(_) | Error(_))
1538 }
1539
1540 pub fn contains(self, other: Ty<'tcx>) -> bool {
1544 struct ContainsTyVisitor<'tcx>(Ty<'tcx>);
1545
1546 impl<'tcx> TypeVisitor<TyCtxt<'tcx>> for ContainsTyVisitor<'tcx> {
1547 type Result = ControlFlow<()>;
1548
1549 fn visit_ty(&mut self, t: Ty<'tcx>) -> Self::Result {
1550 if self.0 == t { ControlFlow::Break(()) } else { t.super_visit_with(self) }
1551 }
1552 }
1553
1554 let cf = self.visit_with(&mut ContainsTyVisitor(other));
1555 cf.is_break()
1556 }
1557
1558 pub fn contains_closure(self) -> bool {
1562 struct ContainsClosureVisitor;
1563
1564 impl<'tcx> TypeVisitor<TyCtxt<'tcx>> for ContainsClosureVisitor {
1565 type Result = ControlFlow<()>;
1566
1567 fn visit_ty(&mut self, t: Ty<'tcx>) -> Self::Result {
1568 if let ty::Closure(..) = t.kind() {
1569 ControlFlow::Break(())
1570 } else {
1571 t.super_visit_with(self)
1572 }
1573 }
1574 }
1575
1576 let cf = self.visit_with(&mut ContainsClosureVisitor);
1577 cf.is_break()
1578 }
1579
1580 pub fn find_async_drop_impl_coroutine<F: FnMut(Ty<'tcx>)>(
1585 self,
1586 tcx: TyCtxt<'tcx>,
1587 mut f: F,
1588 ) -> Ty<'tcx> {
1589 if !self.is_coroutine() {
::core::panicking::panic("assertion failed: self.is_coroutine()")
};assert!(self.is_coroutine());
1590 let mut cor_ty = self;
1591 let mut ty = cor_ty;
1592 loop {
1593 let ty::Coroutine(def_id, args) = ty.kind() else { return cor_ty };
1594 cor_ty = ty;
1595 f(ty);
1596 if !tcx.is_async_drop_in_place_coroutine(*def_id) {
1597 return cor_ty;
1598 }
1599 ty = args.first().unwrap().expect_ty();
1600 }
1601 }
1602
1603 pub fn builtin_deref(self, explicit: bool) -> Option<Ty<'tcx>> {
1608 match *self.kind() {
1609 _ if let Some(boxed) = self.boxed_ty() => Some(boxed),
1610 Ref(_, ty, _) => Some(ty),
1611 RawPtr(ty, _) if explicit => Some(ty),
1612 _ => None,
1613 }
1614 }
1615
1616 pub fn builtin_index(self) -> Option<Ty<'tcx>> {
1618 match self.kind() {
1619 Array(ty, _) | Slice(ty) => Some(*ty),
1620 _ => None,
1621 }
1622 }
1623
1624 #[allow(clippy :: suspicious_else_formatting)]
{
let __tracing_attr_span;
let __tracing_attr_guard;
if ::tracing::Level::TRACE <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::TRACE <=
::tracing::level_filters::LevelFilter::current() ||
{ false } {
__tracing_attr_span =
{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("fn_sig",
"rustc_middle::ty::sty", ::tracing::Level::TRACE,
::tracing_core::__macro_support::Option::Some("compiler/rustc_middle/src/ty/sty.rs"),
::tracing_core::__macro_support::Option::Some(1624u32),
::tracing_core::__macro_support::Option::Some("rustc_middle::ty::sty"),
::tracing_core::field::FieldSet::new(&["self"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::SPAN)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let mut interest = ::tracing::subscriber::Interest::never();
if ::tracing::Level::TRACE <=
::tracing::level_filters::STATIC_MAX_LEVEL &&
::tracing::Level::TRACE <=
::tracing::level_filters::LevelFilter::current() &&
{ interest = __CALLSITE.interest(); !interest.is_never() }
&&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest) {
let meta = __CALLSITE.metadata();
::tracing::Span::new(meta,
&{
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = meta.fields().iter();
meta.fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&self)
as &dyn Value))])
})
} else {
let span =
::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
{};
span
}
};
__tracing_attr_guard = __tracing_attr_span.enter();
}
#[warn(clippy :: suspicious_else_formatting)]
{
#[allow(unknown_lints, unreachable_code, clippy ::
diverging_sub_expression, clippy :: empty_loop, clippy ::
let_unit_value, clippy :: let_with_type_underscore, clippy ::
needless_return, clippy :: unreachable)]
if false {
let __tracing_attr_fake_return: PolyFnSig<'tcx> = loop {};
return __tracing_attr_fake_return;
}
{ self.kind().fn_sig(tcx) }
}
}#[tracing::instrument(level = "trace", skip(tcx))]
1625 pub fn fn_sig(self, tcx: TyCtxt<'tcx>) -> PolyFnSig<'tcx> {
1626 self.kind().fn_sig(tcx)
1627 }
1628
1629 #[inline]
1630 pub fn is_fn(self) -> bool {
1631 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
FnDef(..) | FnPtr(..) => true,
_ => false,
}matches!(self.kind(), FnDef(..) | FnPtr(..))
1632 }
1633
1634 #[inline]
1635 pub fn is_fn_ptr(self) -> bool {
1636 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
FnPtr(..) => true,
_ => false,
}matches!(self.kind(), FnPtr(..))
1637 }
1638
1639 #[inline]
1640 pub fn is_opaque(self) -> bool {
1641 #[allow(non_exhaustive_omitted_patterns)] match self.kind() {
Alias(_, ty::AliasTy { kind: ty::Opaque { .. }, .. }) => true,
_ => false,
}matches!(self.kind(), Alias(_, ty::AliasTy { kind: ty::Opaque { .. }, .. }))
1642 }
1643
1644 #[inline]
1645 pub fn ty_adt_def(self) -> Option<AdtDef<'tcx>> {
1646 match self.kind() {
1647 Adt(adt, _) => Some(*adt),
1648 _ => None,
1649 }
1650 }
1651
1652 #[inline]
1656 pub fn tuple_fields(self) -> &'tcx List<Ty<'tcx>> {
1657 match self.kind() {
1658 Tuple(args) => args,
1659 _ => crate::util::bug::bug_fmt(format_args!("tuple_fields called on non-tuple: {0:?}",
self))bug!("tuple_fields called on non-tuple: {self:?}"),
1660 }
1661 }
1662
1663 #[inline]
1665 pub fn opt_tuple_fields(self) -> Option<&'tcx List<Ty<'tcx>>> {
1666 match self.kind() {
1667 Tuple(args) => Some(args),
1668 _ => None,
1669 }
1670 }
1671
1672 #[inline]
1676 pub fn variant_range(self, tcx: TyCtxt<'tcx>) -> Option<Range<VariantIdx>> {
1677 match self.kind() {
1678 TyKind::Adt(adt, _) => Some(adt.variant_range()),
1679 TyKind::Coroutine(def_id, args) => {
1680 Some(args.as_coroutine().variant_range(*def_id, tcx))
1681 }
1682 TyKind::UnsafeBinder(bound_ty) => {
1683 tcx.instantiate_bound_regions_with_erased((*bound_ty).into()).variant_range(tcx)
1684 }
1685 _ => None,
1686 }
1687 }
1688
1689 #[inline]
1694 pub fn discriminant_for_variant(
1695 self,
1696 tcx: TyCtxt<'tcx>,
1697 variant_index: VariantIdx,
1698 ) -> Option<Discr<'tcx>> {
1699 match self.kind() {
1700 TyKind::Adt(adt, _) if adt.is_enum() => {
1701 Some(adt.discriminant_for_variant(tcx, variant_index))
1702 }
1703 TyKind::Coroutine(def_id, args) => {
1704 Some(args.as_coroutine().discriminant_for_variant(*def_id, tcx, variant_index))
1705 }
1706 TyKind::UnsafeBinder(bound_ty) => tcx
1707 .instantiate_bound_regions_with_erased((*bound_ty).into())
1708 .discriminant_for_variant(tcx, variant_index),
1709 _ => None,
1710 }
1711 }
1712
1713 pub fn discriminant_ty(self, tcx: TyCtxt<'tcx>) -> Ty<'tcx> {
1715 match self.kind() {
1716 ty::Adt(adt, _) if adt.is_enum() => adt.repr().discr_type().to_ty(tcx),
1717 ty::Coroutine(_, args) => args.as_coroutine().discr_ty(tcx),
1718
1719 ty::Param(_) | ty::Alias(..) | ty::Infer(ty::TyVar(_)) => {
1720 let assoc_items = tcx.associated_item_def_ids(
1721 tcx.require_lang_item(hir::LangItem::DiscriminantKind, DUMMY_SP),
1722 );
1723 Ty::new_projection_from_args(
1724 tcx,
1725 ty::IsRigid::No,
1726 assoc_items[0],
1727 tcx.mk_args(&[self.into()]),
1728 )
1729 }
1730
1731 ty::Pat(ty, _) => ty.discriminant_ty(tcx),
1732 ty::UnsafeBinder(bound_ty) => {
1733 tcx.instantiate_bound_regions_with_erased((*bound_ty).into()).discriminant_ty(tcx)
1734 }
1735
1736 ty::Bool
1737 | ty::Char
1738 | ty::Int(_)
1739 | ty::Uint(_)
1740 | ty::Float(_)
1741 | ty::Adt(..)
1742 | ty::Foreign(_)
1743 | ty::Str
1744 | ty::Array(..)
1745 | ty::Slice(_)
1746 | ty::RawPtr(_, _)
1747 | ty::Ref(..)
1748 | ty::FnDef(..)
1749 | ty::FnPtr(..)
1750 | ty::Dynamic(..)
1751 | ty::Closure(..)
1752 | ty::CoroutineClosure(..)
1753 | ty::CoroutineWitness(..)
1754 | ty::Never
1755 | ty::Tuple(_)
1756 | ty::Error(_)
1757 | ty::Infer(IntVar(_) | FloatVar(_)) => tcx.types.u8,
1758
1759 ty::Bound(..)
1760 | ty::Placeholder(_)
1761 | ty::Infer(FreshTy(_) | ty::FreshIntTy(_) | ty::FreshFloatTy(_)) => {
1762 crate::util::bug::bug_fmt(format_args!("`discriminant_ty` applied to unexpected type: {0:?}",
self))bug!("`discriminant_ty` applied to unexpected type: {:?}", self)
1763 }
1764 }
1765 }
1766
1767 pub fn ptr_metadata_ty_or_tail(
1770 self,
1771 tcx: TyCtxt<'tcx>,
1772 normalize: impl FnMut(Unnormalized<'tcx, Ty<'tcx>>) -> Ty<'tcx>,
1773 ) -> Result<Ty<'tcx>, Ty<'tcx>> {
1774 let tail = tcx.struct_tail_raw(self, &ObligationCause::dummy(), normalize, || {});
1775 match tail.kind() {
1776 ty::Infer(ty::IntVar(_) | ty::FloatVar(_))
1778 | ty::Uint(_)
1779 | ty::Int(_)
1780 | ty::Bool
1781 | ty::Float(_)
1782 | ty::FnDef(..)
1783 | ty::FnPtr(..)
1784 | ty::RawPtr(..)
1785 | ty::Char
1786 | ty::Ref(..)
1787 | ty::Coroutine(..)
1788 | ty::CoroutineWitness(..)
1789 | ty::Array(..)
1790 | ty::Closure(..)
1791 | ty::CoroutineClosure(..)
1792 | ty::Never
1793 | ty::Error(_) => Ok(tcx.types.unit),
1794 ty::Foreign(..) => Ok(tcx.types.unit),
1796 ty::Adt(..) => Ok(tcx.types.unit),
1799 ty::Tuple(..) => Ok(tcx.types.unit),
1802
1803 ty::Str | ty::Slice(_) => Ok(tcx.types.usize),
1804
1805 ty::Dynamic(_, _) => {
1806 let dyn_metadata = tcx.require_lang_item(LangItem::DynMetadata, DUMMY_SP);
1807 Ok(tcx.type_of(dyn_metadata).instantiate(tcx, &[tail.into()]).skip_norm_wip())
1808 }
1809
1810 ty::Param(_) | ty::Alias(..) => Err(tail),
1813
1814 ty::UnsafeBinder(_) => {
::core::panicking::panic_fmt(format_args!("not yet implemented: {0}",
format_args!("FIXME(unsafe_binder)")));
}todo!("FIXME(unsafe_binder)"),
1815
1816 ty::Infer(ty::TyVar(_))
1817 | ty::Pat(..)
1818 | ty::Bound(..)
1819 | ty::Placeholder(..)
1820 | ty::Infer(ty::FreshTy(_) | ty::FreshIntTy(_) | ty::FreshFloatTy(_)) => crate::util::bug::bug_fmt(format_args!("`ptr_metadata_ty_or_tail` applied to unexpected type: {0:?} (tail = {1:?})",
self, tail))bug!(
1821 "`ptr_metadata_ty_or_tail` applied to unexpected type: {self:?} (tail = {tail:?})"
1822 ),
1823 }
1824 }
1825
1826 pub fn ptr_metadata_ty(
1829 self,
1830 tcx: TyCtxt<'tcx>,
1831 normalize: impl FnMut(Unnormalized<'tcx, Ty<'tcx>>) -> Ty<'tcx>,
1832 ) -> Ty<'tcx> {
1833 match self.ptr_metadata_ty_or_tail(tcx, normalize) {
1834 Ok(metadata) => metadata,
1835 Err(tail) => crate::util::bug::bug_fmt(format_args!("`ptr_metadata_ty` failed to get metadata for type: {0:?} (tail = {1:?})",
self, tail))bug!(
1836 "`ptr_metadata_ty` failed to get metadata for type: {self:?} (tail = {tail:?})"
1837 ),
1838 }
1839 }
1840
1841 #[track_caller]
1850 pub fn pointee_metadata_ty_or_projection(self, tcx: TyCtxt<'tcx>) -> Ty<'tcx> {
1851 let Some(pointee_ty) = self.builtin_deref(true) else {
1852 crate::util::bug::bug_fmt(format_args!("Type {0:?} is not a pointer or reference type",
self))bug!("Type {self:?} is not a pointer or reference type")
1853 };
1854 if pointee_ty.has_trivial_sizedness(tcx, SizedTraitKind::Sized) {
1855 tcx.types.unit
1856 } else {
1857 match pointee_ty.ptr_metadata_ty_or_tail(tcx, |x| x.skip_norm_wip()) {
1858 Ok(metadata_ty) => metadata_ty,
1859 Err(tail_ty) => {
1860 let metadata_def_id = tcx.require_lang_item(LangItem::Metadata, DUMMY_SP);
1861 Ty::new_projection(tcx, ty::IsRigid::No, metadata_def_id, [tail_ty])
1862 }
1863 }
1864 }
1865 }
1866
1867 pub fn to_opt_closure_kind(self) -> Option<ty::ClosureKind> {
1907 match self.kind() {
1908 Int(int_ty) => match int_ty {
1909 ty::IntTy::I8 => Some(ty::ClosureKind::Fn),
1910 ty::IntTy::I16 => Some(ty::ClosureKind::FnMut),
1911 ty::IntTy::I32 => Some(ty::ClosureKind::FnOnce),
1912 _ => crate::util::bug::bug_fmt(format_args!("cannot convert type `{0:?}` to a closure kind",
self))bug!("cannot convert type `{:?}` to a closure kind", self),
1913 },
1914
1915 Bound(..) | Placeholder(_) | Param(_) | Infer(_) => None,
1919
1920 Error(_) => Some(ty::ClosureKind::Fn),
1921
1922 _ => crate::util::bug::bug_fmt(format_args!("cannot convert type `{0:?}` to a closure kind",
self))bug!("cannot convert type `{:?}` to a closure kind", self),
1923 }
1924 }
1925
1926 pub fn from_closure_kind(tcx: TyCtxt<'tcx>, kind: ty::ClosureKind) -> Ty<'tcx> {
1929 match kind {
1930 ty::ClosureKind::Fn => tcx.types.i8,
1931 ty::ClosureKind::FnMut => tcx.types.i16,
1932 ty::ClosureKind::FnOnce => tcx.types.i32,
1933 }
1934 }
1935
1936 pub fn from_coroutine_closure_kind(tcx: TyCtxt<'tcx>, kind: ty::ClosureKind) -> Ty<'tcx> {
1949 match kind {
1950 ty::ClosureKind::Fn | ty::ClosureKind::FnMut => tcx.types.i16,
1951 ty::ClosureKind::FnOnce => tcx.types.i32,
1952 }
1953 }
1954
1955 #[allow(clippy :: suspicious_else_formatting)]
{
let __tracing_attr_span;
let __tracing_attr_guard;
if ::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() ||
{ false } {
__tracing_attr_span =
{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("has_trivial_sizedness",
"rustc_middle::ty::sty", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_middle/src/ty/sty.rs"),
::tracing_core::__macro_support::Option::Some(1964u32),
::tracing_core::__macro_support::Option::Some("rustc_middle::ty::sty"),
::tracing_core::field::FieldSet::new(&["self", "sizedness"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::SPAN)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let mut interest = ::tracing::subscriber::Interest::never();
if ::tracing::Level::DEBUG <=
::tracing::level_filters::STATIC_MAX_LEVEL &&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{ interest = __CALLSITE.interest(); !interest.is_never() }
&&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest) {
let meta = __CALLSITE.metadata();
::tracing::Span::new(meta,
&{
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = meta.fields().iter();
meta.fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&self)
as &dyn Value)),
(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&sizedness)
as &dyn Value))])
})
} else {
let span =
::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
{};
span
}
};
__tracing_attr_guard = __tracing_attr_span.enter();
}
#[warn(clippy :: suspicious_else_formatting)]
{
#[allow(unknown_lints, unreachable_code, clippy ::
diverging_sub_expression, clippy :: empty_loop, clippy ::
let_unit_value, clippy :: let_with_type_underscore, clippy ::
needless_return, clippy :: unreachable)]
if false {
let __tracing_attr_fake_return: bool = loop {};
return __tracing_attr_fake_return;
}
{
match self.kind() {
ty::Infer(ty::IntVar(_) | ty::FloatVar(_)) | ty::Uint(_) |
ty::Int(_) | ty::Bool | ty::Float(_) | ty::FnDef(..) |
ty::FnPtr(..) | ty::UnsafeBinder(_) | ty::RawPtr(..) |
ty::Char | ty::Ref(..) | ty::Coroutine(..) |
ty::CoroutineWitness(..) | ty::Array(..) | ty::Pat(..) |
ty::Closure(..) | ty::CoroutineClosure(..) | ty::Never |
ty::Error(_) => true,
ty::Str | ty::Slice(_) | ty::Dynamic(_, _) =>
match sizedness {
SizedTraitKind::Sized => false,
SizedTraitKind::MetaSized => true,
},
ty::Foreign(..) =>
match sizedness {
SizedTraitKind::Sized | SizedTraitKind::MetaSized => false,
},
ty::Tuple(tys) =>
tys.last().is_none_or(|ty|
ty.has_trivial_sizedness(tcx, sizedness)),
ty::Adt(def, args) =>
def.sizedness_constraint(tcx,
sizedness).is_none_or(|ty|
{
ty.instantiate(tcx,
args).skip_norm_wip().has_trivial_sizedness(tcx, sizedness)
}),
ty::Alias(..) | ty::Param(_) | ty::Placeholder(..) |
ty::Bound(..) => false,
ty::Infer(ty::TyVar(_)) => false,
ty::Infer(ty::FreshTy(_) | ty::FreshIntTy(_) |
ty::FreshFloatTy(_)) => {
crate::util::bug::bug_fmt(format_args!("`has_trivial_sizedness` applied to unexpected type: {0:?}",
self))
}
}
}
}
}#[instrument(skip(tcx), level = "debug")]
1965 pub fn has_trivial_sizedness(self, tcx: TyCtxt<'tcx>, sizedness: SizedTraitKind) -> bool {
1966 match self.kind() {
1967 ty::Infer(ty::IntVar(_) | ty::FloatVar(_))
1968 | ty::Uint(_)
1969 | ty::Int(_)
1970 | ty::Bool
1971 | ty::Float(_)
1972 | ty::FnDef(..)
1973 | ty::FnPtr(..)
1974 | ty::UnsafeBinder(_)
1975 | ty::RawPtr(..)
1976 | ty::Char
1977 | ty::Ref(..)
1978 | ty::Coroutine(..)
1979 | ty::CoroutineWitness(..)
1980 | ty::Array(..)
1981 | ty::Pat(..)
1982 | ty::Closure(..)
1983 | ty::CoroutineClosure(..)
1984 | ty::Never
1985 | ty::Error(_) => true,
1986
1987 ty::Str | ty::Slice(_) | ty::Dynamic(_, _) => match sizedness {
1988 SizedTraitKind::Sized => false,
1989 SizedTraitKind::MetaSized => true,
1990 },
1991
1992 ty::Foreign(..) => match sizedness {
1993 SizedTraitKind::Sized | SizedTraitKind::MetaSized => false,
1994 },
1995
1996 ty::Tuple(tys) => tys.last().is_none_or(|ty| ty.has_trivial_sizedness(tcx, sizedness)),
1997
1998 ty::Adt(def, args) => def.sizedness_constraint(tcx, sizedness).is_none_or(|ty| {
1999 ty.instantiate(tcx, args).skip_norm_wip().has_trivial_sizedness(tcx, sizedness)
2000 }),
2001
2002 ty::Alias(..) | ty::Param(_) | ty::Placeholder(..) | ty::Bound(..) => false,
2003
2004 ty::Infer(ty::TyVar(_)) => false,
2005
2006 ty::Infer(ty::FreshTy(_) | ty::FreshIntTy(_) | ty::FreshFloatTy(_)) => {
2007 bug!("`has_trivial_sizedness` applied to unexpected type: {:?}", self)
2008 }
2009 }
2010 }
2011
2012 pub fn is_trivially_pure_clone_copy(self) -> bool {
2021 match self.kind() {
2022 ty::Bool | ty::Char | ty::Never => true,
2023
2024 ty::Str | ty::Slice(..) | ty::Foreign(..) | ty::Dynamic(..) => false,
2026
2027 ty::Infer(ty::InferTy::FloatVar(_) | ty::InferTy::IntVar(_))
2028 | ty::Int(..)
2029 | ty::Uint(..)
2030 | ty::Float(..) => true,
2031
2032 ty::FnDef(..) => true,
2034
2035 ty::Array(element_ty, _len) => element_ty.is_trivially_pure_clone_copy(),
2036
2037 ty::Tuple(field_tys) => {
2039 field_tys.len() <= 3 && field_tys.iter().all(Self::is_trivially_pure_clone_copy)
2040 }
2041
2042 ty::Pat(ty, _) => ty.is_trivially_pure_clone_copy(),
2043
2044 ty::FnPtr(..) => false,
2047
2048 ty::Ref(_, _, hir::Mutability::Mut) => false,
2050
2051 ty::Ref(_, _, hir::Mutability::Not) | ty::RawPtr(..) => true,
2054
2055 ty::Coroutine(..) | ty::CoroutineWitness(..) => false,
2056
2057 ty::Adt(..) | ty::Closure(..) | ty::CoroutineClosure(..) => false,
2059
2060 ty::UnsafeBinder(_) => false,
2061
2062 ty::Alias(..) => false,
2064
2065 ty::Param(..) | ty::Placeholder(..) | ty::Bound(..) | ty::Infer(..) | ty::Error(..) => {
2066 false
2067 }
2068 }
2069 }
2070
2071 pub fn is_trivially_wf(self, tcx: TyCtxt<'tcx>) -> bool {
2072 match *self.kind() {
2073 ty::Bool
2074 | ty::Char
2075 | ty::Int(_)
2076 | ty::Uint(_)
2077 | ty::Float(_)
2078 | ty::Str
2079 | ty::Never
2080 | ty::Param(_)
2081 | ty::Placeholder(_)
2082 | ty::Bound(..) => true,
2083
2084 ty::Slice(ty) => {
2085 ty.is_trivially_wf(tcx) && ty.has_trivial_sizedness(tcx, SizedTraitKind::Sized)
2086 }
2087 ty::RawPtr(ty, _) => ty.is_trivially_wf(tcx),
2088
2089 ty::FnPtr(sig_tys, _) => {
2090 sig_tys.skip_binder().inputs_and_output.iter().all(|ty| ty.is_trivially_wf(tcx))
2091 }
2092 ty::Ref(_, ty, _) => ty.is_global() && ty.is_trivially_wf(tcx),
2093
2094 ty::Infer(infer) => match infer {
2095 ty::TyVar(_) => false,
2096 ty::IntVar(_) | ty::FloatVar(_) => true,
2097 ty::FreshTy(_) | ty::FreshIntTy(_) | ty::FreshFloatTy(_) => true,
2098 },
2099
2100 ty::Adt(_, _)
2101 | ty::Tuple(_)
2102 | ty::Array(..)
2103 | ty::Foreign(_)
2104 | ty::Pat(_, _)
2105 | ty::FnDef(..)
2106 | ty::UnsafeBinder(..)
2107 | ty::Dynamic(..)
2108 | ty::Closure(..)
2109 | ty::CoroutineClosure(..)
2110 | ty::Coroutine(..)
2111 | ty::CoroutineWitness(..)
2112 | ty::Alias(..)
2113 | ty::Error(_) => false,
2114 }
2115 }
2116
2117 pub fn primitive_symbol(self) -> Option<Symbol> {
2119 match self.kind() {
2120 ty::Bool => Some(sym::bool),
2121 ty::Char => Some(sym::char),
2122 ty::Float(f) => match f {
2123 ty::FloatTy::F16 => Some(sym::f16),
2124 ty::FloatTy::F32 => Some(sym::f32),
2125 ty::FloatTy::F64 => Some(sym::f64),
2126 ty::FloatTy::F128 => Some(sym::f128),
2127 },
2128 ty::Int(f) => match f {
2129 ty::IntTy::Isize => Some(sym::isize),
2130 ty::IntTy::I8 => Some(sym::i8),
2131 ty::IntTy::I16 => Some(sym::i16),
2132 ty::IntTy::I32 => Some(sym::i32),
2133 ty::IntTy::I64 => Some(sym::i64),
2134 ty::IntTy::I128 => Some(sym::i128),
2135 },
2136 ty::Uint(f) => match f {
2137 ty::UintTy::Usize => Some(sym::usize),
2138 ty::UintTy::U8 => Some(sym::u8),
2139 ty::UintTy::U16 => Some(sym::u16),
2140 ty::UintTy::U32 => Some(sym::u32),
2141 ty::UintTy::U64 => Some(sym::u64),
2142 ty::UintTy::U128 => Some(sym::u128),
2143 },
2144 ty::Str => Some(sym::str),
2145 _ => None,
2146 }
2147 }
2148
2149 pub fn is_c_void(self, tcx: TyCtxt<'_>) -> bool {
2150 match self.kind() {
2151 ty::Adt(adt, _) => tcx.is_lang_item(adt.did(), LangItem::CVoid),
2152 _ => false,
2153 }
2154 }
2155
2156 pub fn is_async_drop_in_place_coroutine(self, tcx: TyCtxt<'_>) -> bool {
2157 match self.kind() {
2158 ty::Coroutine(def, ..) => tcx.is_async_drop_in_place_coroutine(*def),
2159 _ => false,
2160 }
2161 }
2162
2163 pub fn is_known_rigid(self) -> bool {
2169 self.kind().is_known_rigid()
2170 }
2171
2172 pub fn walk(self) -> TypeWalker<TyCtxt<'tcx>> {
2183 TypeWalker::new(self.into())
2184 }
2185}
2186
2187impl<'tcx> rustc_type_ir::inherent::Tys<TyCtxt<'tcx>> for &'tcx ty::List<Ty<'tcx>> {
2188 fn inputs(self) -> &'tcx [Ty<'tcx>] {
2189 self.split_last().unwrap().1
2190 }
2191
2192 fn output(self) -> Ty<'tcx> {
2193 *self.split_last().unwrap().0
2194 }
2195}
2196
2197impl<'tcx> rustc_type_ir::inherent::Symbol<TyCtxt<'tcx>> for Symbol {
2198 fn is_kw_underscore_lifetime(self) -> bool {
2199 self == kw::UnderscoreLifetime
2200 }
2201}
2202
2203#[cfg(target_pointer_width = "64")]
2205mod size_asserts {
2206 use rustc_data_structures::static_assert_size;
2207
2208 use super::*;
2209 const _: [(); 32] = [(); ::std::mem::size_of::<TyKind<'_>>()];static_assert_size!(TyKind<'_>, 32);
2211 const _: [(); 40] =
[(); ::std::mem::size_of::<ty::WithCachedTypeInfo<TyKind<'_>>>()];static_assert_size!(ty::WithCachedTypeInfo<TyKind<'_>>, 40);
2212 }