1use rustc_abi::{FIRST_VARIANT, FieldIdx};
9use rustc_ast as ast;
10use rustc_ast::util::parser::ExprPrecedence;
11use rustc_data_structures::fx::{FxHashMap, FxHashSet};
12use rustc_data_structures::stack::ensure_sufficient_stack;
13use rustc_data_structures::unord::UnordMap;
14use rustc_errors::codes::*;
15use rustc_errors::{
16 Applicability, Diag, ErrorGuaranteed, MultiSpan, StashKey, Subdiagnostic, listify, pluralize,
17 struct_span_code_err,
18};
19use rustc_hir as hir;
20use rustc_hir::def::{CtorKind, DefKind, Res};
21use rustc_hir::def_id::DefId;
22use rustc_hir::lang_items::LangItem;
23use rustc_hir::{ExprKind, HirId, QPath, find_attr, is_range_literal};
24use rustc_hir_analysis::NoVariantNamed;
25use rustc_hir_analysis::diagnostics::NoFieldOnType;
26use rustc_hir_analysis::hir_ty_lowering::HirTyLowerer as _;
27use rustc_infer::infer::{self, DefineOpaqueTypes, InferOk, RegionVariableOrigin};
28use rustc_infer::traits::query::NoSolution;
29use rustc_middle::ty::adjustment::{Adjust, Adjustment, AllowTwoPhase};
30use rustc_middle::ty::error::{ExpectedFound, TypeError};
31use rustc_middle::ty::{self, AdtKind, GenericArgsRef, Ty, TypeVisitableExt, Unnormalized};
32use rustc_middle::{bug, span_bug};
33use rustc_session::diagnostics::{ExprParenthesesNeeded, feature_err};
34use rustc_span::edit_distance::find_best_match_for_name;
35use rustc_span::hygiene::DesugaringKind;
36use rustc_span::{Ident, Span, Spanned, Symbol, kw, sym};
37use rustc_trait_selection::infer::InferCtxtExt;
38use rustc_trait_selection::traits::{self, ObligationCauseCode, ObligationCtxt};
39use tracing::{debug, instrument, trace};
40
41use crate::Expectation::{self, ExpectCastableToType, ExpectHasType, NoExpectation};
42use crate::coercion::CoerceMany;
43use crate::diagnostics::{
44 AddressOfTemporaryTaken, BaseExpressionDoubleDot, BaseExpressionDoubleDotAddExpr,
45 BaseExpressionDoubleDotRemove, CantDereference, FieldMultiplySpecifiedInInitializer,
46 FunctionalRecordUpdateOnNonStruct, HelpUseLatestEdition, NakedAsmOutsideNakedFn,
47 NoFieldOnVariant, ReturnLikeStatementKind, ReturnStmtOutsideOfFnBody, StructExprNonExhaustive,
48 TypeMismatchFruTypo, YieldExprOutsideOfCoroutine,
49};
50use crate::op::contains_let_in_chain;
51use crate::{
52 BreakableCtxt, CoroutineTypes, Diverges, FnCtxt, GatherLocalsVisitor, Needs,
53 TupleArgumentsFlag, cast, fatally_break_rust, report_unexpected_variant_res, type_error_struct,
54};
55
56impl<'a, 'tcx> FnCtxt<'a, 'tcx> {
57 pub(crate) fn precedence(&self, expr: &hir::Expr<'_>) -> ExprPrecedence {
58 let has_attr = |id: HirId| -> bool {
59 self.tcx.hir_attrs(id).iter().any(hir::Attribute::is_prefix_attr_for_suggestions)
60 };
61
62 if is_range_literal(expr) {
66 return ExprPrecedence::Range;
67 }
68
69 expr.precedence(&has_attr)
70 }
71
72 pub(crate) fn check_expr_has_type_or_error(
76 &self,
77 expr: &'tcx hir::Expr<'tcx>,
78 expected_ty: Ty<'tcx>,
79 extend_err: impl FnOnce(&mut Diag<'_>),
80 ) -> Ty<'tcx> {
81 let mut ty = self.check_expr_with_expectation(expr, ExpectHasType(expected_ty));
82
83 if self.resolve_vars_with_obligations(ty).is_never()
86 && self.tcx.expr_guaranteed_to_constitute_read_for_never(expr)
87 {
88 if let Some(adjustments) = self.typeck_results.borrow().adjustments().get(expr.hir_id) {
89 let reported = self.dcx().span_delayed_bug(
90 expr.span,
91 "expression with never type wound up being adjusted",
92 );
93
94 return if let [Adjustment { kind: Adjust::NeverToAny, target }] = &adjustments[..] {
95 target.to_owned()
96 } else {
97 Ty::new_error(self.tcx(), reported)
98 };
99 }
100
101 let adj_ty = self.next_ty_var(expr.span);
102 self.apply_adjustments(
103 expr,
104 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[Adjustment { kind: Adjust::NeverToAny, target: adj_ty }]))vec![Adjustment { kind: Adjust::NeverToAny, target: adj_ty }],
105 );
106 ty = adj_ty;
107 }
108
109 if let Err(mut err) = self.demand_suptype_diag(expr.span, expected_ty, ty) {
110 let _ = self.emit_type_mismatch_suggestions(
111 &mut err,
112 expr.peel_drop_temps(),
113 ty,
114 expected_ty,
115 None,
116 None,
117 );
118 extend_err(&mut err);
119 err.emit();
120 }
121 ty
122 }
123
124 pub(super) fn check_expr_coercible_to_type(
128 &self,
129 expr: &'tcx hir::Expr<'tcx>,
130 expected: Ty<'tcx>,
131 expected_ty_expr: Option<&'tcx hir::Expr<'tcx>>,
132 ) -> Ty<'tcx> {
133 self.check_expr_coercible_to_type_or_error(expr, expected, expected_ty_expr, |_, _| {})
134 }
135
136 pub(crate) fn check_expr_coercible_to_type_or_error(
137 &self,
138 expr: &'tcx hir::Expr<'tcx>,
139 expected: Ty<'tcx>,
140 expected_ty_expr: Option<&'tcx hir::Expr<'tcx>>,
141 extend_err: impl FnOnce(&mut Diag<'_>, Ty<'tcx>),
142 ) -> Ty<'tcx> {
143 let ty = self.check_expr_with_hint(expr, expected);
144 match self.demand_coerce_diag(expr, ty, expected, expected_ty_expr, AllowTwoPhase::No) {
146 Ok(ty) => ty,
147 Err(mut err) => {
148 extend_err(&mut err, ty);
149 err.emit();
150 expected
154 }
155 }
156 }
157
158 pub(super) fn check_expr_with_hint(
163 &self,
164 expr: &'tcx hir::Expr<'tcx>,
165 expected: Ty<'tcx>,
166 ) -> Ty<'tcx> {
167 self.check_expr_with_expectation(expr, ExpectHasType(expected))
168 }
169
170 fn check_expr_with_expectation_and_needs(
173 &self,
174 expr: &'tcx hir::Expr<'tcx>,
175 expected: Expectation<'tcx>,
176 needs: Needs,
177 ) -> Ty<'tcx> {
178 let ty = self.check_expr_with_expectation(expr, expected);
179
180 if let Needs::MutPlace = needs {
183 self.convert_place_derefs_to_mutable(expr);
184 }
185
186 ty
187 }
188
189 pub(super) fn check_expr(&self, expr: &'tcx hir::Expr<'tcx>) -> Ty<'tcx> {
191 self.check_expr_with_expectation(expr, NoExpectation)
192 }
193
194 pub(super) fn check_expr_with_needs(
197 &self,
198 expr: &'tcx hir::Expr<'tcx>,
199 needs: Needs,
200 ) -> Ty<'tcx> {
201 self.check_expr_with_expectation_and_needs(expr, NoExpectation, needs)
202 }
203
204 #[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("check_expr_with_expectation",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(206u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&[{
const NAME:
::tracing::__macro_support::FieldName<{
::tracing::__macro_support::FieldName::len("expected")
}> =
::tracing::__macro_support::FieldName::new("expected");
NAME.as_str()
}], ::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};
meta.fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&::tracing::field::debug(&expected)
as &dyn ::tracing::field::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;
}
{ self.check_expr_with_expectation_and_args(expr, expected, None) }
}
}#[instrument(skip(self, expr), level = "debug")]
207 pub(super) fn check_expr_with_expectation(
208 &self,
209 expr: &'tcx hir::Expr<'tcx>,
210 expected: Expectation<'tcx>,
211 ) -> Ty<'tcx> {
212 self.check_expr_with_expectation_and_args(expr, expected, None)
213 }
214
215 pub(super) fn check_expr_with_expectation_and_args(
220 &self,
221 expr: &'tcx hir::Expr<'tcx>,
222 expected: Expectation<'tcx>,
223 call_expr_and_args: Option<(&'tcx hir::Expr<'tcx>, &'tcx [hir::Expr<'tcx>])>,
224 ) -> Ty<'tcx> {
225 if self.tcx().sess.verbose_internals() {
226 if let Ok(lint_str) = self.tcx.sess.source_map().span_to_snippet(expr.span) {
228 if !lint_str.contains('\n') {
229 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:229",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(229u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("expr text: {0}",
lint_str) as &dyn ::tracing::field::Value))])
});
} else { ; }
};debug!("expr text: {lint_str}");
230 } else {
231 let mut lines = lint_str.lines();
232 if let Some(line0) = lines.next() {
233 let remaining_lines = lines.count();
234 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:234",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(234u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("expr text: {0}",
line0) as &dyn ::tracing::field::Value))])
});
} else { ; }
};debug!("expr text: {line0}");
235 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:235",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(235u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("expr text: ...(and {0} more lines)",
remaining_lines) as &dyn ::tracing::field::Value))])
});
} else { ; }
};debug!("expr text: ...(and {remaining_lines} more lines)");
236 }
237 }
238 }
239 }
240
241 let is_try_block_generated_unit_expr = match expr.kind {
245 ExprKind::Call(_, [arg]) => {
246 expr.span.is_desugaring(DesugaringKind::TryBlock)
247 && arg.span.is_desugaring(DesugaringKind::TryBlock)
248 }
249 _ => false,
250 };
251
252 if !is_try_block_generated_unit_expr {
254 self.warn_if_unreachable(expr.hir_id, expr.span, "expression");
255 }
256
257 let old_diverges = self.diverges.replace(Diverges::Maybe);
260
261 if self.is_whole_body.replace(false) {
262 self.diverges.set(self.function_diverges_because_of_empty_arguments.get())
265 };
266
267 let ty = ensure_sufficient_stack(|| match &expr.kind {
268 hir::ExprKind::Path(
270 qpath @ (hir::QPath::Resolved(..) | hir::QPath::TypeRelative(..)),
271 ) => self.check_expr_path(qpath, expr, call_expr_and_args),
272 _ => self.check_expr_kind(expr, expected),
273 });
274 let ty = self.resolve_vars_if_possible(ty);
275
276 match expr.kind {
278 ExprKind::Block(..)
279 | ExprKind::If(..)
280 | ExprKind::Let(..)
281 | ExprKind::Loop(..)
282 | ExprKind::Match(..) => {}
283 ExprKind::Cast(_, _) => {}
286 ExprKind::Call(..) if expr.span.is_desugaring(DesugaringKind::TryBlock) => {}
290 ExprKind::Call(..) if expr.span.is_desugaring(DesugaringKind::Contract) => {}
292 ExprKind::Call(callee, _) => self.warn_if_unreachable(expr.hir_id, callee.span, "call"),
293 ExprKind::MethodCall(segment, ..) => {
294 self.warn_if_unreachable(expr.hir_id, segment.ident.span, "call")
295 }
296 _ => self.warn_if_unreachable(expr.hir_id, expr.span, "expression"),
297 }
298
299 if self.resolve_vars_with_obligations(ty).is_never()
304 && self.tcx.expr_guaranteed_to_constitute_read_for_never(expr)
305 {
306 self.diverges.set(self.diverges.get() | Diverges::always(expr.span));
307 }
308
309 self.write_ty(expr.hir_id, ty);
313
314 self.diverges.set(self.diverges.get() | old_diverges);
316
317 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:317",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(317u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("type of {0} is...",
self.tcx.hir_id_to_string(expr.hir_id)) as
&dyn ::tracing::field::Value))])
});
} else { ; }
};debug!("type of {} is...", self.tcx.hir_id_to_string(expr.hir_id));
318 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:318",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(318u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("... {0:?}, expected is {1:?}",
ty, expected) as &dyn ::tracing::field::Value))])
});
} else { ; }
};debug!("... {:?}, expected is {:?}", ty, expected);
319
320 ty
321 }
322
323 #[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("check_expr_kind",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(323u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&[{
const NAME:
::tracing::__macro_support::FieldName<{
::tracing::__macro_support::FieldName::len("expected")
}> =
::tracing::__macro_support::FieldName::new("expected");
NAME.as_str()
}], ::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};
meta.fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&::tracing::field::debug(&expected)
as &dyn ::tracing::field::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;
}
{
{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:329",
"rustc_hir_typeck::expr", ::tracing::Level::TRACE,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(329u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::TRACE <=
::tracing::level_filters::STATIC_MAX_LEVEL &&
::tracing::Level::TRACE <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("expr={0:#?}",
expr) as &dyn ::tracing::field::Value))])
});
} else { ; }
};
let tcx = self.tcx;
match expr.kind {
ExprKind::Lit(ref lit) =>
self.check_expr_lit(lit, expr.hir_id, expected),
ExprKind::Binary(op, lhs, rhs) =>
self.check_expr_binop(expr, op, lhs, rhs, expected),
ExprKind::Assign(lhs, rhs, span) => {
self.check_expr_assign(expr, expected, lhs, rhs, span)
}
ExprKind::AssignOp(op, lhs, rhs) => {
self.check_expr_assign_op(expr, op, lhs, rhs, expected)
}
ExprKind::Unary(unop, oprnd) =>
self.check_expr_unop(unop, oprnd, expected, expr),
ExprKind::AddrOf(kind, mutbl, oprnd) => {
self.check_expr_addr_of(kind, mutbl, oprnd, expected, expr)
}
ExprKind::Path(ref qpath) =>
self.check_expr_path(qpath, expr, None),
ExprKind::InlineAsm(asm) => {
self.deferred_asm_checks.borrow_mut().push((asm,
expr.hir_id));
self.check_expr_asm(asm, expr.span)
}
ExprKind::OffsetOf(container, fields) => {
self.check_expr_offset_of(container, fields, expr)
}
ExprKind::Break(destination, ref expr_opt) => {
self.check_expr_break(destination, expr_opt.as_deref(),
expr)
}
ExprKind::Continue(destination) =>
self.check_expr_continue(destination, expr),
ExprKind::Ret(ref expr_opt) =>
self.check_expr_return(expr_opt.as_deref(), expr),
ExprKind::Become(call) => self.check_expr_become(call, expr),
ExprKind::Let(let_expr) =>
self.check_expr_let(let_expr, expr.hir_id),
ExprKind::Loop(body, _, source, _) => {
self.check_expr_loop(body, source, expected, expr)
}
ExprKind::Match(discrim, arms, match_src) => {
self.check_expr_match(expr, discrim, arms, expected,
match_src)
}
ExprKind::Closure(closure) =>
self.check_expr_closure(closure, expr.span, expected),
ExprKind::Block(body, _) =>
self.check_expr_block(body, expected),
ExprKind::Call(callee, args) =>
self.check_expr_call(expr, callee, args, expected),
ExprKind::Use(used_expr, _) =>
self.check_expr_use(used_expr, expected),
ExprKind::MethodCall(segment, receiver, args, _) => {
self.check_expr_method_call(expr, segment, receiver, args,
expected)
}
ExprKind::Cast(e, t) => self.check_expr_cast(e, t, expr),
ExprKind::Type(e, t) => {
let ascribed_ty = self.lower_ty_saving_user_provided_ty(t);
let ty = self.check_expr_with_hint(e, ascribed_ty);
self.demand_eqtype(e.span, ascribed_ty, ty);
ascribed_ty
}
ExprKind::If(cond, then_expr, opt_else_expr) => {
self.check_expr_if(expr.hir_id, cond, then_expr,
opt_else_expr, expr.span, expected)
}
ExprKind::DropTemps(e) =>
self.check_expr_with_expectation(e, expected),
ExprKind::Array(args) =>
self.check_expr_array(args, expected, expr),
ExprKind::ConstBlock(ref block) =>
self.check_expr_const_block(block, expected),
ExprKind::Repeat(element, ref count) => {
self.check_expr_repeat(element, count, expected, expr)
}
ExprKind::Tup(elts) =>
self.check_expr_tuple(elts, expected, expr),
ExprKind::Struct(qpath, fields, ref base_expr) => {
self.check_expr_struct(expr, expected, qpath, fields,
base_expr)
}
ExprKind::Field(base, field) =>
self.check_expr_field(expr, base, field, expected),
ExprKind::Index(base, idx, brackets_span) => {
self.check_expr_index(base, idx, expr, brackets_span)
}
ExprKind::Yield(value, _) =>
self.check_expr_yield(value, expr),
ExprKind::UnsafeBinderCast(kind, inner_expr, ty) => {
self.check_expr_unsafe_binder_cast(expr.span, kind,
inner_expr, ty, expected)
}
ExprKind::Err(guar) => Ty::new_error(tcx, guar),
}
}
}
}#[instrument(skip(self, expr), level = "debug")]
324 fn check_expr_kind(
325 &self,
326 expr: &'tcx hir::Expr<'tcx>,
327 expected: Expectation<'tcx>,
328 ) -> Ty<'tcx> {
329 trace!("expr={:#?}", expr);
330
331 let tcx = self.tcx;
332 match expr.kind {
333 ExprKind::Lit(ref lit) => self.check_expr_lit(lit, expr.hir_id, expected),
334 ExprKind::Binary(op, lhs, rhs) => self.check_expr_binop(expr, op, lhs, rhs, expected),
335 ExprKind::Assign(lhs, rhs, span) => {
336 self.check_expr_assign(expr, expected, lhs, rhs, span)
337 }
338 ExprKind::AssignOp(op, lhs, rhs) => {
339 self.check_expr_assign_op(expr, op, lhs, rhs, expected)
340 }
341 ExprKind::Unary(unop, oprnd) => self.check_expr_unop(unop, oprnd, expected, expr),
342 ExprKind::AddrOf(kind, mutbl, oprnd) => {
343 self.check_expr_addr_of(kind, mutbl, oprnd, expected, expr)
344 }
345 ExprKind::Path(ref qpath) => self.check_expr_path(qpath, expr, None),
346 ExprKind::InlineAsm(asm) => {
347 self.deferred_asm_checks.borrow_mut().push((asm, expr.hir_id));
349 self.check_expr_asm(asm, expr.span)
350 }
351 ExprKind::OffsetOf(container, fields) => {
352 self.check_expr_offset_of(container, fields, expr)
353 }
354 ExprKind::Break(destination, ref expr_opt) => {
355 self.check_expr_break(destination, expr_opt.as_deref(), expr)
356 }
357 ExprKind::Continue(destination) => self.check_expr_continue(destination, expr),
358 ExprKind::Ret(ref expr_opt) => self.check_expr_return(expr_opt.as_deref(), expr),
359 ExprKind::Become(call) => self.check_expr_become(call, expr),
360 ExprKind::Let(let_expr) => self.check_expr_let(let_expr, expr.hir_id),
361 ExprKind::Loop(body, _, source, _) => {
362 self.check_expr_loop(body, source, expected, expr)
363 }
364 ExprKind::Match(discrim, arms, match_src) => {
365 self.check_expr_match(expr, discrim, arms, expected, match_src)
366 }
367 ExprKind::Closure(closure) => self.check_expr_closure(closure, expr.span, expected),
368 ExprKind::Block(body, _) => self.check_expr_block(body, expected),
369 ExprKind::Call(callee, args) => self.check_expr_call(expr, callee, args, expected),
370 ExprKind::Use(used_expr, _) => self.check_expr_use(used_expr, expected),
371 ExprKind::MethodCall(segment, receiver, args, _) => {
372 self.check_expr_method_call(expr, segment, receiver, args, expected)
373 }
374 ExprKind::Cast(e, t) => self.check_expr_cast(e, t, expr),
375 ExprKind::Type(e, t) => {
376 let ascribed_ty = self.lower_ty_saving_user_provided_ty(t);
377 let ty = self.check_expr_with_hint(e, ascribed_ty);
378 self.demand_eqtype(e.span, ascribed_ty, ty);
379 ascribed_ty
380 }
381 ExprKind::If(cond, then_expr, opt_else_expr) => {
382 self.check_expr_if(expr.hir_id, cond, then_expr, opt_else_expr, expr.span, expected)
383 }
384 ExprKind::DropTemps(e) => self.check_expr_with_expectation(e, expected),
385 ExprKind::Array(args) => self.check_expr_array(args, expected, expr),
386 ExprKind::ConstBlock(ref block) => self.check_expr_const_block(block, expected),
387 ExprKind::Repeat(element, ref count) => {
388 self.check_expr_repeat(element, count, expected, expr)
389 }
390 ExprKind::Tup(elts) => self.check_expr_tuple(elts, expected, expr),
391 ExprKind::Struct(qpath, fields, ref base_expr) => {
392 self.check_expr_struct(expr, expected, qpath, fields, base_expr)
393 }
394 ExprKind::Field(base, field) => self.check_expr_field(expr, base, field, expected),
395 ExprKind::Index(base, idx, brackets_span) => {
396 self.check_expr_index(base, idx, expr, brackets_span)
397 }
398 ExprKind::Yield(value, _) => self.check_expr_yield(value, expr),
399 ExprKind::UnsafeBinderCast(kind, inner_expr, ty) => {
400 self.check_expr_unsafe_binder_cast(expr.span, kind, inner_expr, ty, expected)
401 }
402 ExprKind::Err(guar) => Ty::new_error(tcx, guar),
403 }
404 }
405
406 fn check_expr_unop(
407 &self,
408 unop: hir::UnOp,
409 oprnd: &'tcx hir::Expr<'tcx>,
410 expected: Expectation<'tcx>,
411 expr: &'tcx hir::Expr<'tcx>,
412 ) -> Ty<'tcx> {
413 let tcx = self.tcx;
414 let expected_inner = match unop {
415 hir::UnOp::Not | hir::UnOp::Neg => expected,
416 hir::UnOp::Deref => NoExpectation,
417 };
418 let oprnd_t = self.check_expr_with_expectation(oprnd, expected_inner);
419
420 if let Err(guar) = oprnd_t.error_reported() {
421 return Ty::new_error(tcx, guar);
422 }
423
424 let oprnd_t = self.structurally_resolve_type(expr.span, oprnd_t);
425 match unop {
426 hir::UnOp::Deref => self.lookup_derefing(expr, oprnd, oprnd_t).unwrap_or_else(|| {
427 let mut err =
428 self.dcx().create_err(CantDereference { span: expr.span, ty: oprnd_t });
429 let sp = tcx.sess.source_map().start_point(expr.span).with_parent(None);
430 if let Some(sp) = tcx.sess.psess.ambiguous_block_expr_parse.borrow().get(&sp) {
431 err.subdiagnostic(ExprParenthesesNeeded::surrounding(*sp));
432 }
433 Ty::new_error(tcx, err.emit())
434 }),
435 hir::UnOp::Not => {
436 let result = self.check_user_unop(expr, oprnd_t, unop, expected_inner);
437 if oprnd_t.is_integral() || *oprnd_t.kind() == ty::Bool { oprnd_t } else { result }
439 }
440 hir::UnOp::Neg => {
441 let result = self.check_user_unop(expr, oprnd_t, unop, expected_inner);
442 if oprnd_t.is_numeric() { oprnd_t } else { result }
444 }
445 }
446 }
447
448 fn check_expr_addr_of(
449 &self,
450 kind: hir::BorrowKind,
451 mutbl: hir::Mutability,
452 oprnd: &'tcx hir::Expr<'tcx>,
453 expected: Expectation<'tcx>,
454 expr: &'tcx hir::Expr<'tcx>,
455 ) -> Ty<'tcx> {
456 let hint = expected.only_has_type(self).map_or(NoExpectation, |ty| {
457 match self.resolve_vars_with_obligations(ty).kind() {
458 ty::Ref(_, ty, _) | ty::RawPtr(ty, _) => {
459 if oprnd.is_syntactic_place_expr() {
460 ExpectHasType(*ty)
464 } else {
465 Expectation::rvalue_hint(self, *ty)
466 }
467 }
468 _ => NoExpectation,
469 }
470 });
471 let ty =
472 self.check_expr_with_expectation_and_needs(oprnd, hint, Needs::maybe_mut_place(mutbl));
473 if let Err(guar) = ty.error_reported() {
474 return Ty::new_error(self.tcx, guar);
475 }
476
477 match kind {
478 hir::BorrowKind::Raw => {
479 self.check_named_place_expr(oprnd);
480 Ty::new_ptr(self.tcx, ty, mutbl)
481 }
482 hir::BorrowKind::Ref | hir::BorrowKind::Pin => {
483 let region = self.next_region_var(RegionVariableOrigin::BorrowRegion(expr.span));
498 match kind {
499 hir::BorrowKind::Ref => Ty::new_ref(self.tcx, region, ty, mutbl),
500 hir::BorrowKind::Pin => Ty::new_pinned_ref(self.tcx, region, ty, mutbl),
501 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
502 }
503 }
504 }
505 }
506
507 fn check_named_place_expr(&self, oprnd: &'tcx hir::Expr<'tcx>) {
513 let is_named = oprnd.is_place_expr(|base| {
514 self.typeck_results
526 .borrow()
527 .adjustments()
528 .get(base.hir_id)
529 .is_some_and(|x| x.iter().any(|adj| #[allow(non_exhaustive_omitted_patterns)] match adj.kind {
Adjust::Deref(_) => true,
_ => false,
}matches!(adj.kind, Adjust::Deref(_))))
530 });
531 if !is_named {
532 self.dcx().emit_err(AddressOfTemporaryTaken { span: oprnd.span });
533 }
534 }
535
536 pub(crate) fn check_expr_path(
537 &self,
538 qpath: &'tcx hir::QPath<'tcx>,
539 expr: &'tcx hir::Expr<'tcx>,
540 call_expr_and_args: Option<(&'tcx hir::Expr<'tcx>, &'tcx [hir::Expr<'tcx>])>,
541 ) -> Ty<'tcx> {
542 let tcx = self.tcx;
543
544 if let Some((_, [arg])) = call_expr_and_args
545 && let QPath::Resolved(_, path) = qpath
546 && let Res::Def(_, def_id) = path.res
547 && let Some(lang_item) = tcx.lang_items().from_def_id(def_id)
548 {
549 let code = match lang_item {
550 LangItem::IntoFutureIntoFuture
551 if expr.span.is_desugaring(DesugaringKind::Await) =>
552 {
553 Some(ObligationCauseCode::AwaitableExpr(arg.hir_id))
554 }
555 LangItem::IntoIterIntoIter | LangItem::IteratorNext
556 if expr.span.is_desugaring(DesugaringKind::ForLoop) =>
557 {
558 Some(ObligationCauseCode::ForLoopIterator)
559 }
560 LangItem::TryTraitFromOutput
561 if expr.span.is_desugaring(DesugaringKind::TryBlock) =>
562 {
563 Some(ObligationCauseCode::QuestionMark)
565 }
566 LangItem::TryTraitBranch | LangItem::TryTraitFromResidual
567 if expr.span.is_desugaring(DesugaringKind::QuestionMark) =>
568 {
569 Some(ObligationCauseCode::QuestionMark)
570 }
571 _ => None,
572 };
573 if let Some(code) = code {
574 let args = self.fresh_args_for_item(expr.span, def_id);
575 self.add_required_obligations_with_code(expr.span, def_id, args, |_, _| {
576 code.clone()
577 });
578 return tcx.type_of(def_id).instantiate(tcx, args).skip_norm_wip();
579 }
580 }
581
582 let (res, opt_ty, segs) =
583 self.resolve_ty_and_res_fully_qualified_call(qpath, expr.hir_id, expr.span);
584 let ty = match res {
585 Res::Err => {
586 self.suggest_assoc_method_call(segs);
587 let e =
588 self.dcx().span_delayed_bug(qpath.span(), "`Res::Err` but no error emitted");
589 Ty::new_error(tcx, e)
590 }
591 Res::Def(DefKind::Variant, _) => {
592 let e = report_unexpected_variant_res(
593 tcx,
594 res,
595 Some(expr),
596 &[],
597 qpath,
598 expr.span,
599 E0533,
600 "value",
601 );
602 Ty::new_error(tcx, e)
603 }
604 _ => {
605 self.instantiate_value_path(
606 segs,
607 opt_ty,
608 res,
609 call_expr_and_args.map_or(expr.span, |(e, _)| e.span),
610 expr.span,
611 expr.hir_id,
612 )
613 .0
614 }
615 };
616
617 if let ty::FnDef(did, _) = *ty.kind() {
618 let fn_sig = ty.fn_sig(tcx);
619
620 if tcx.is_intrinsic(did, sym::transmute) {
621 let Some(from) = fn_sig.inputs().skip_binder().get(0) else {
622 ::rustc_middle::util::bug::span_bug_fmt(tcx.def_span(did),
format_args!("intrinsic fn `transmute` defined with no parameters"));span_bug!(
623 tcx.def_span(did),
624 "intrinsic fn `transmute` defined with no parameters"
625 );
626 };
627 let to = fn_sig.output().skip_binder();
628 self.deferred_transmute_checks.borrow_mut().push((*from, to, expr.hir_id));
633 }
634 if !tcx.features().unsized_fn_params() {
635 for i in 0..fn_sig.inputs().skip_binder().len() {
645 let span = call_expr_and_args
649 .and_then(|(_, args)| args.get(i))
650 .map_or(expr.span, |arg| arg.span);
651 let input = self.instantiate_binder_with_fresh_vars(
652 span,
653 infer::BoundRegionConversionTime::FnCall,
654 fn_sig.input(i),
655 );
656 self.require_type_is_sized_deferred(
657 input,
658 span,
659 ObligationCauseCode::SizedArgumentType(None),
660 );
661 }
662 }
663 let output = self.instantiate_binder_with_fresh_vars(
669 expr.span,
670 infer::BoundRegionConversionTime::FnCall,
671 fn_sig.output(),
672 );
673 self.require_type_is_sized_deferred(
674 output,
675 call_expr_and_args.map_or(expr.span, |(e, _)| e.span),
676 ObligationCauseCode::SizedCallReturnType,
677 );
678 }
679
680 let args = self.typeck_results.borrow().node_args(expr.hir_id);
683 self.add_wf_bounds(args, expr.span);
684
685 ty
686 }
687
688 fn check_expr_break(
689 &self,
690 destination: hir::Destination,
691 expr_opt: Option<&'tcx hir::Expr<'tcx>>,
692 expr: &'tcx hir::Expr<'tcx>,
693 ) -> Ty<'tcx> {
694 let tcx = self.tcx;
695 if let Ok(target_id) = destination.target_id {
696 let (e_ty, cause);
697 if let Some(e) = expr_opt {
698 let opt_coerce_to = {
701 let mut enclosing_breakables = self.enclosing_breakables.borrow_mut();
705 match enclosing_breakables.opt_find_breakable(target_id) {
706 Some(ctxt) => ctxt.coerce.as_ref().map(|coerce| coerce.expected_ty()),
707 None => {
708 return Ty::new_error_with_message(
710 tcx,
711 expr.span,
712 "break was outside loop, but no error was emitted",
713 );
714 }
715 }
716 };
717
718 let coerce_to = opt_coerce_to.unwrap_or_else(|| {
723 let guar = self.dcx().span_delayed_bug(
724 expr.span,
725 "illegal break with value found but no error reported",
726 );
727 self.set_tainted_by_errors(guar);
728 Ty::new_error(tcx, guar)
729 });
730
731 e_ty = self.check_expr_with_hint(e, coerce_to);
733 cause = self.misc(e.span);
734 } else {
735 e_ty = tcx.types.unit;
738 cause = self.misc(expr.span);
739 }
740
741 let mut enclosing_breakables = self.enclosing_breakables.borrow_mut();
745 let Some(ctxt) = enclosing_breakables.opt_find_breakable(target_id) else {
746 return Ty::new_error_with_message(
748 tcx,
749 expr.span,
750 "break was outside loop, but no error was emitted",
751 );
752 };
753
754 if let Some(ref mut coerce) = ctxt.coerce {
755 if let Some(e) = expr_opt {
756 coerce.coerce(self, &cause, e, e_ty);
757 } else {
758 if !e_ty.is_unit() {
::core::panicking::panic("assertion failed: e_ty.is_unit()")
};assert!(e_ty.is_unit());
759 let ty = coerce.expected_ty();
760 coerce.coerce_forced_unit(
761 self,
762 &cause,
763 |mut err| {
764 self.suggest_missing_semicolon(&mut err, expr, e_ty, false, false);
765 self.suggest_mismatched_types_on_tail(
766 &mut err, expr, ty, e_ty, target_id,
767 );
768 let error =
769 Some(TypeError::Sorts(ExpectedFound { expected: ty, found: e_ty }));
770 self.annotate_loop_expected_due_to_inference(err, expr, error);
771 if let Some(val) =
772 self.err_ctxt().ty_kind_suggestion(self.param_env, ty)
773 {
774 err.span_suggestion_verbose(
775 expr.span.shrink_to_hi(),
776 "give the `break` a value of the expected type",
777 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" {0}", val))
})format!(" {val}"),
778 Applicability::HasPlaceholders,
779 );
780 }
781 },
782 false,
783 );
784 }
785 } else {
786 if !(expr_opt.is_none() || self.tainted_by_errors().is_some()) {
::core::panicking::panic("assertion failed: expr_opt.is_none() || self.tainted_by_errors().is_some()")
};assert!(expr_opt.is_none() || self.tainted_by_errors().is_some());
794 }
795
796 ctxt.may_break |= !self.diverges.get().is_always();
800
801 tcx.types.never
803 } else {
804 let err = Ty::new_error_with_message(
809 self.tcx,
810 expr.span,
811 "break was outside loop, but no error was emitted",
812 );
813
814 if let Some(e) = expr_opt {
817 self.check_expr_with_hint(e, err);
818
819 if let ExprKind::Path(QPath::Resolved(_, path)) = e.kind {
822 if let [segment] = path.segments
823 && segment.ident.name == sym::rust
824 {
825 fatally_break_rust(self.tcx, expr.span);
826 }
827 }
828 }
829
830 err
832 }
833 }
834
835 fn check_expr_continue(
836 &self,
837 destination: hir::Destination,
838 expr: &'tcx hir::Expr<'tcx>,
839 ) -> Ty<'tcx> {
840 if let Ok(target_id) = destination.target_id {
841 if let hir::Node::Expr(hir::Expr { kind: ExprKind::Loop(..), .. }) =
842 self.tcx.hir_node(target_id)
843 {
844 self.tcx.types.never
845 } else {
846 let guar = self.dcx().span_delayed_bug(
849 expr.span,
850 "found `continue` not pointing to loop, but no error reported",
851 );
852 Ty::new_error(self.tcx, guar)
853 }
854 } else {
855 Ty::new_misc_error(self.tcx)
857 }
858 }
859
860 fn check_expr_return(
861 &self,
862 expr_opt: Option<&'tcx hir::Expr<'tcx>>,
863 expr: &'tcx hir::Expr<'tcx>,
864 ) -> Ty<'tcx> {
865 if self.ret_coercion.is_none() {
866 self.emit_return_outside_of_fn_body(expr, ReturnLikeStatementKind::Return);
867
868 if let Some(e) = expr_opt {
869 self.check_expr(e);
872 }
873 } else if let Some(e) = expr_opt {
874 if self.ret_coercion_span.get().is_none() {
875 self.ret_coercion_span.set(Some(e.span));
876 }
877 self.check_return_or_body_tail(e, true);
878 } else {
879 let mut coercion = self.ret_coercion.as_ref().unwrap().borrow_mut();
880 if self.ret_coercion_span.get().is_none() {
881 self.ret_coercion_span.set(Some(expr.span));
882 }
883 let cause = self.cause(expr.span, ObligationCauseCode::ReturnNoExpression);
884 if let Some((_, fn_decl)) = self.get_fn_decl(expr.hir_id) {
885 coercion.coerce_forced_unit(
886 self,
887 &cause,
888 |db| {
889 let span = fn_decl.output.span();
890 if let Ok(snippet) = self.tcx.sess.source_map().span_to_snippet(span) {
891 db.span_label(
892 span,
893 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("expected `{0}` because of this return type",
snippet))
})format!("expected `{snippet}` because of this return type"),
894 );
895 }
896 },
897 true,
898 );
899 } else {
900 coercion.coerce_forced_unit(self, &cause, |_| (), true);
901 }
902 }
903 self.tcx.types.never
904 }
905
906 fn check_expr_become(
907 &self,
908 call: &'tcx hir::Expr<'tcx>,
909 expr: &'tcx hir::Expr<'tcx>,
910 ) -> Ty<'tcx> {
911 match &self.ret_coercion {
912 Some(ret_coercion) => {
913 let ret_ty = ret_coercion.borrow().expected_ty();
914 let call_expr_ty = self.check_expr_with_hint(call, ret_ty);
915
916 self.demand_suptype(expr.span, ret_ty, call_expr_ty);
919 }
920 None => {
921 self.emit_return_outside_of_fn_body(expr, ReturnLikeStatementKind::Become);
922
923 self.check_expr(call);
926 }
927 }
928
929 self.tcx.types.never
930 }
931
932 pub(super) fn check_return_or_body_tail(
941 &self,
942 return_expr: &'tcx hir::Expr<'tcx>,
943 explicit_return: bool,
944 ) {
945 let ret_coercion = self.ret_coercion.as_ref().unwrap_or_else(|| {
946 ::rustc_middle::util::bug::span_bug_fmt(return_expr.span,
format_args!("check_return_expr called outside fn body"))span_bug!(return_expr.span, "check_return_expr called outside fn body")
947 });
948
949 let ret_ty = ret_coercion.borrow().expected_ty();
950 let return_expr_ty = self.check_expr_with_hint(return_expr, ret_ty);
951 let mut span = return_expr.span;
952 let mut hir_id = return_expr.hir_id;
953 if !explicit_return
956 && let ExprKind::Block(body, _) = return_expr.kind
957 && let Some(last_expr) = body.expr
958 {
959 span = last_expr.span;
960 hir_id = last_expr.hir_id;
961 }
962 ret_coercion.borrow_mut().coerce(
963 self,
964 &self.cause(span, ObligationCauseCode::ReturnValue(return_expr.hir_id)),
965 return_expr,
966 return_expr_ty,
967 );
968
969 if let Some(fn_sig) = self.fn_sig()
970 && fn_sig.output().has_opaque_types()
971 {
972 self.select_obligations_where_possible(|errors| {
975 self.point_at_return_for_opaque_ty_error(
976 errors,
977 hir_id,
978 span,
979 return_expr_ty,
980 return_expr.span,
981 );
982 });
983 }
984 }
985
986 fn emit_return_outside_of_fn_body(&self, expr: &hir::Expr<'_>, kind: ReturnLikeStatementKind) {
991 let mut err = ReturnStmtOutsideOfFnBody {
992 span: expr.span,
993 encl_body_span: None,
994 encl_fn_span: None,
995 statement_kind: kind,
996 };
997
998 let encl_item_id = self.tcx.hir_get_parent_item(expr.hir_id);
999
1000 if let hir::Node::Item(hir::Item {
1001 kind: hir::ItemKind::Fn { .. },
1002 span: encl_fn_span,
1003 ..
1004 })
1005 | hir::Node::TraitItem(hir::TraitItem {
1006 kind: hir::TraitItemKind::Fn(_, hir::TraitFn::Provided(_)),
1007 span: encl_fn_span,
1008 ..
1009 })
1010 | hir::Node::ImplItem(hir::ImplItem {
1011 kind: hir::ImplItemKind::Fn(..),
1012 span: encl_fn_span,
1013 ..
1014 }) = self.tcx.hir_node_by_def_id(encl_item_id.def_id)
1015 {
1016 let encl_body_owner_id = self.tcx.hir_enclosing_body_owner(expr.hir_id);
1020
1021 {
match (&encl_item_id.def_id, &encl_body_owner_id) {
(left_val, right_val) => {
if *left_val == *right_val {
let kind = ::core::panicking::AssertKind::Ne;
::core::panicking::assert_failed(kind, &*left_val,
&*right_val, ::core::option::Option::None);
}
}
}
};assert_ne!(encl_item_id.def_id, encl_body_owner_id);
1024
1025 let encl_body = self.tcx.hir_body_owned_by(encl_body_owner_id);
1026
1027 err.encl_body_span = Some(encl_body.value.span);
1028 err.encl_fn_span = Some(*encl_fn_span);
1029 }
1030
1031 self.dcx().emit_err(err);
1032 }
1033
1034 fn point_at_return_for_opaque_ty_error(
1035 &self,
1036 errors: &mut Vec<traits::FulfillmentError<'tcx>>,
1037 hir_id: HirId,
1038 span: Span,
1039 return_expr_ty: Ty<'tcx>,
1040 return_span: Span,
1041 ) {
1042 if span == return_span {
1044 return;
1045 }
1046 for err in errors {
1047 let cause = &mut err.obligation.cause;
1048 if let ObligationCauseCode::OpaqueReturnType(None) = cause.code() {
1049 let new_cause = self.cause(
1050 cause.span,
1051 ObligationCauseCode::OpaqueReturnType(Some((return_expr_ty, hir_id))),
1052 );
1053 *cause = new_cause;
1054 }
1055 }
1056 }
1057
1058 pub(crate) fn check_lhs_assignable(
1059 &self,
1060 lhs: &'tcx hir::Expr<'tcx>,
1061 code: ErrCode,
1062 op_span: Span,
1063 adjust_err: impl FnOnce(&mut Diag<'_>),
1064 ) {
1065 if lhs.is_syntactic_place_expr() {
1066 return;
1067 }
1068
1069 if contains_let_in_chain(lhs) {
1072 return;
1073 }
1074
1075 let mut err = self.dcx().struct_span_err(op_span, "invalid left-hand side of assignment");
1076 err.code(code);
1077 err.span_label(lhs.span, "cannot assign to this expression");
1078
1079 self.comes_from_while_condition(lhs.hir_id, |expr| {
1080 err.span_suggestion_verbose(
1081 expr.span.shrink_to_lo(),
1082 "you might have meant to use pattern destructuring",
1083 "let ",
1084 Applicability::MachineApplicable,
1085 );
1086 });
1087 self.check_for_missing_semi(lhs, &mut err);
1088
1089 adjust_err(&mut err);
1090
1091 err.emit();
1092 }
1093
1094 pub(crate) fn check_for_missing_semi(
1096 &self,
1097 expr: &'tcx hir::Expr<'tcx>,
1098 err: &mut Diag<'_>,
1099 ) -> bool {
1100 if let hir::ExprKind::Binary(binop, lhs, rhs) = expr.kind
1101 && let hir::BinOpKind::Mul = binop.node
1102 && self.tcx.sess.source_map().is_multiline(lhs.span.between(rhs.span))
1103 && rhs.is_syntactic_place_expr()
1104 {
1105 err.span_suggestion_verbose(
1110 lhs.span.shrink_to_hi(),
1111 "you might have meant to write a semicolon here",
1112 ";",
1113 Applicability::MachineApplicable,
1114 );
1115 return true;
1116 }
1117 false
1118 }
1119
1120 pub(super) fn comes_from_while_condition(
1124 &self,
1125 original_expr_id: HirId,
1126 then: impl FnOnce(&hir::Expr<'_>),
1127 ) {
1128 let mut parent = self.tcx.parent_hir_id(original_expr_id);
1129 loop {
1130 let node = self.tcx.hir_node(parent);
1131 match node {
1132 hir::Node::Expr(hir::Expr {
1133 kind:
1134 hir::ExprKind::Loop(
1135 hir::Block {
1136 expr:
1137 Some(hir::Expr {
1138 kind:
1139 hir::ExprKind::Match(expr, ..) | hir::ExprKind::If(expr, ..),
1140 ..
1141 }),
1142 ..
1143 },
1144 _,
1145 hir::LoopSource::While,
1146 _,
1147 ),
1148 ..
1149 }) => {
1150 if self.tcx.hir_parent_id_iter(original_expr_id).any(|id| id == expr.hir_id) {
1154 then(expr);
1155 }
1156 break;
1157 }
1158 hir::Node::Item(_)
1159 | hir::Node::ImplItem(_)
1160 | hir::Node::TraitItem(_)
1161 | hir::Node::Crate(_) => break,
1162 _ => {
1163 parent = self.tcx.parent_hir_id(parent);
1164 }
1165 }
1166 }
1167 }
1168
1169 fn check_expr_if(
1172 &self,
1173 expr_id: HirId,
1174 cond_expr: &'tcx hir::Expr<'tcx>,
1175 then_expr: &'tcx hir::Expr<'tcx>,
1176 opt_else_expr: Option<&'tcx hir::Expr<'tcx>>,
1177 sp: Span,
1178 orig_expected: Expectation<'tcx>,
1179 ) -> Ty<'tcx> {
1180 let cond_ty = self.check_expr_has_type_or_error(cond_expr, self.tcx.types.bool, |_| {});
1181
1182 self.warn_if_unreachable(
1183 cond_expr.hir_id,
1184 then_expr.span,
1185 "block in `if` or `while` expression",
1186 );
1187
1188 let cond_diverges = self.diverges.get();
1189 self.diverges.set(Diverges::Maybe);
1190
1191 let expected = orig_expected.try_structurally_resolve_and_adjust_for_branches(self);
1192 let then_ty = self.check_expr_with_expectation(then_expr, expected);
1193 let then_diverges = self.diverges.get();
1194 self.diverges.set(Diverges::Maybe);
1195
1196 let coerce_to_ty = expected.coercion_target_type(self, sp);
1203 let mut coerce = CoerceMany::with_capacity(coerce_to_ty, 2);
1204
1205 coerce.coerce(self, &self.misc(sp), then_expr, then_ty);
1206
1207 if let Some(else_expr) = opt_else_expr {
1208 let else_ty = self.check_expr_with_expectation(else_expr, expected);
1209 let else_diverges = self.diverges.get();
1210
1211 let tail_defines_return_position_impl_trait =
1212 self.return_position_impl_trait_from_match_expectation(orig_expected);
1213 let if_cause =
1214 self.if_cause(expr_id, else_expr, tail_defines_return_position_impl_trait);
1215
1216 coerce.coerce(self, &if_cause, else_expr, else_ty);
1217
1218 self.diverges.set(cond_diverges | then_diverges & else_diverges);
1220 } else {
1221 self.if_fallback_coercion(sp, cond_expr, then_expr, &mut coerce);
1222
1223 self.diverges.set(cond_diverges);
1225 }
1226
1227 let result_ty = coerce.complete(self);
1228 if let Err(guar) = cond_ty.error_reported() {
1229 Ty::new_error(self.tcx, guar)
1230 } else {
1231 result_ty
1232 }
1233 }
1234
1235 fn check_expr_assign(
1238 &self,
1239 expr: &'tcx hir::Expr<'tcx>,
1240 expected: Expectation<'tcx>,
1241 lhs: &'tcx hir::Expr<'tcx>,
1242 rhs: &'tcx hir::Expr<'tcx>,
1243 span: Span,
1244 ) -> Ty<'tcx> {
1245 let expected_ty = expected.only_has_type(self);
1246 if expected_ty == Some(self.tcx.types.bool) {
1247 let guar = self.expr_assign_expected_bool_error(expr, lhs, rhs, span);
1248 return Ty::new_error(self.tcx, guar);
1249 }
1250
1251 let lhs_ty = self.check_expr_with_needs(lhs, Needs::MutPlace);
1252
1253 let suggest_deref_binop = |err: &mut Diag<'_>, rhs_ty: Ty<'tcx>| {
1254 if let Some(lhs_deref_ty) = self.deref_once_mutably_for_diagnostic(lhs_ty) {
1255 let lhs_deref_ty_is_sized = self
1258 .infcx
1259 .type_implements_trait(
1260 self.tcx.require_lang_item(LangItem::Sized, span),
1261 [lhs_deref_ty],
1262 self.param_env,
1263 )
1264 .may_apply();
1265 if lhs_deref_ty_is_sized && self.may_coerce(rhs_ty, lhs_deref_ty) {
1266 err.span_suggestion_verbose(
1267 lhs.span.shrink_to_lo(),
1268 "consider dereferencing here to assign to the mutably borrowed value",
1269 "*",
1270 Applicability::MachineApplicable,
1271 );
1272 }
1273 }
1274 };
1275
1276 let rhs_ty = self.check_expr_with_hint(rhs, lhs_ty);
1279 if let Err(mut diag) =
1280 self.demand_coerce_diag(rhs, rhs_ty, lhs_ty, Some(lhs), AllowTwoPhase::No)
1281 {
1282 suggest_deref_binop(&mut diag, rhs_ty);
1283 diag.emit();
1284 }
1285
1286 self.check_lhs_assignable(lhs, E0070, span, |err| {
1287 if let Some(rhs_ty) = self.typeck_results.borrow().expr_ty_opt(rhs) {
1288 suggest_deref_binop(err, rhs_ty);
1289 }
1290 });
1291
1292 self.require_type_is_sized(lhs_ty, lhs.span, ObligationCauseCode::AssignmentLhsSized);
1293
1294 if let Err(guar) = (lhs_ty, rhs_ty).error_reported() {
1295 Ty::new_error(self.tcx, guar)
1296 } else {
1297 self.tcx.types.unit
1298 }
1299 }
1300
1301 fn expr_assign_expected_bool_error(
1305 &self,
1306 expr: &'tcx hir::Expr<'tcx>,
1307 lhs: &'tcx hir::Expr<'tcx>,
1308 rhs: &'tcx hir::Expr<'tcx>,
1309 span: Span,
1310 ) -> ErrorGuaranteed {
1311 let actual_ty = self.tcx.types.unit;
1312 let expected_ty = self.tcx.types.bool;
1313 let mut err = self.demand_suptype_diag(expr.span, expected_ty, actual_ty).unwrap_err();
1314 let lhs_ty = self.check_expr(lhs);
1315 let rhs_ty = self.check_expr(rhs);
1316 let refs_can_coerce = |lhs: Ty<'tcx>, rhs: Ty<'tcx>| {
1317 let lhs = Ty::new_imm_ref(self.tcx, self.tcx.lifetimes.re_erased, lhs.peel_refs());
1318 let rhs = Ty::new_imm_ref(self.tcx, self.tcx.lifetimes.re_erased, rhs.peel_refs());
1319 self.may_coerce(rhs, lhs)
1320 };
1321 let (applicability, eq) = if self.may_coerce(rhs_ty, lhs_ty) {
1322 (Applicability::MachineApplicable, true)
1323 } else if refs_can_coerce(rhs_ty, lhs_ty) {
1324 (Applicability::MaybeIncorrect, true)
1327 } else if let ExprKind::Binary(
1328 Spanned { node: hir::BinOpKind::And | hir::BinOpKind::Or, .. },
1329 _,
1330 rhs_expr,
1331 ) = lhs.kind
1332 {
1333 let actual_lhs = self.check_expr(rhs_expr);
1336 let may_eq = self.may_coerce(rhs_ty, actual_lhs) || refs_can_coerce(rhs_ty, actual_lhs);
1337 (Applicability::MaybeIncorrect, may_eq)
1338 } else if let ExprKind::Binary(
1339 Spanned { node: hir::BinOpKind::And | hir::BinOpKind::Or, .. },
1340 lhs_expr,
1341 _,
1342 ) = rhs.kind
1343 {
1344 let actual_rhs = self.check_expr(lhs_expr);
1347 let may_eq = self.may_coerce(actual_rhs, lhs_ty) || refs_can_coerce(actual_rhs, lhs_ty);
1348 (Applicability::MaybeIncorrect, may_eq)
1349 } else {
1350 (Applicability::MaybeIncorrect, false)
1351 };
1352
1353 if !lhs.is_syntactic_place_expr()
1354 && lhs.is_approximately_pattern()
1355 && !#[allow(non_exhaustive_omitted_patterns)] match lhs.kind {
hir::ExprKind::Lit(_) => true,
_ => false,
}matches!(lhs.kind, hir::ExprKind::Lit(_))
1356 {
1357 if let hir::Node::Expr(hir::Expr { kind: ExprKind::If { .. }, .. }) =
1359 self.tcx.parent_hir_node(expr.hir_id)
1360 {
1361 err.span_suggestion_verbose(
1362 expr.span.shrink_to_lo(),
1363 "you might have meant to use pattern matching",
1364 "let ",
1365 applicability,
1366 );
1367 };
1368 }
1369 if eq {
1370 err.span_suggestion_verbose(
1371 span.shrink_to_hi(),
1372 "you might have meant to compare for equality",
1373 '=',
1374 applicability,
1375 );
1376 }
1377
1378 err.emit_unless_delay(lhs_ty.references_error() || rhs_ty.references_error())
1381 }
1382
1383 pub(super) fn check_expr_let(
1384 &self,
1385 let_expr: &'tcx hir::LetExpr<'tcx>,
1386 hir_id: HirId,
1387 ) -> Ty<'tcx> {
1388 GatherLocalsVisitor::gather_from_let_expr(self, let_expr, hir_id);
1389
1390 let init = let_expr.init;
1392 self.warn_if_unreachable(init.hir_id, init.span, "block in `let` expression");
1393
1394 self.check_decl((let_expr, hir_id).into());
1396
1397 if let ast::Recovered::Yes(error_guaranteed) = let_expr.recovered {
1399 self.set_tainted_by_errors(error_guaranteed);
1400 Ty::new_error(self.tcx, error_guaranteed)
1401 } else {
1402 self.tcx.types.bool
1403 }
1404 }
1405
1406 fn check_expr_loop(
1407 &self,
1408 body: &'tcx hir::Block<'tcx>,
1409 source: hir::LoopSource,
1410 expected: Expectation<'tcx>,
1411 expr: &'tcx hir::Expr<'tcx>,
1412 ) -> Ty<'tcx> {
1413 let coerce = match source {
1414 hir::LoopSource::Loop => {
1416 let coerce_to = expected.coercion_target_type(self, body.span);
1417 Some(CoerceMany::new(coerce_to))
1418 }
1419
1420 hir::LoopSource::While | hir::LoopSource::ForLoop => None,
1421 };
1422
1423 let ctxt = BreakableCtxt {
1424 coerce,
1425 may_break: false, };
1427
1428 let (ctxt, ()) = self.with_breakable_ctxt(expr.hir_id, ctxt, || {
1429 self.check_block_no_value(body);
1430 });
1431
1432 if ctxt.may_break {
1433 self.diverges.set(Diverges::Maybe);
1436 } else {
1437 self.diverges.set(self.diverges.get() | Diverges::always(expr.span));
1438 }
1439
1440 if ctxt.coerce.is_none() && !ctxt.may_break {
1446 self.dcx().span_bug(body.span, "no coercion, but loop may not break");
1447 }
1448 ctxt.coerce.map(|c| c.complete(self)).unwrap_or_else(|| self.tcx.types.unit)
1449 }
1450
1451 fn check_expr_method_call(
1453 &self,
1454 expr: &'tcx hir::Expr<'tcx>,
1455 segment: &'tcx hir::PathSegment<'tcx>,
1456 rcvr: &'tcx hir::Expr<'tcx>,
1457 args: &'tcx [hir::Expr<'tcx>],
1458 expected: Expectation<'tcx>,
1459 ) -> Ty<'tcx> {
1460 let rcvr_t = self.check_expr(rcvr);
1461 let rcvr_t = self.resolve_vars_with_obligations(rcvr_t);
1462
1463 match self.lookup_method(rcvr_t, segment, segment.ident.span, expr, rcvr, args) {
1464 Ok(method) => {
1465 self.write_method_call_and_enforce_effects(expr.hir_id, expr.span, method);
1466
1467 let method_inputs = &method.sig.inputs()[1..];
1470 let method_tuple_args_flag =
1471 TupleArgumentsFlag::with_fn_sig_kind(method.sig.fn_sig_kind, true);
1472
1473 self.check_argument_types(
1474 segment.ident.span,
1475 expr,
1476 method_inputs,
1477 method.sig.output(),
1478 expected,
1479 args,
1480 method.sig.fn_sig_kind.c_variadic(),
1481 method_tuple_args_flag,
1482 Some(method.def_id),
1483 Some(method.args),
1484 );
1485
1486 self.check_call_abi(method.sig.abi(), expr.span);
1487
1488 method.sig.output()
1489 }
1490 Err(error) => {
1491 let guar = self.report_method_error(expr.hir_id, rcvr_t, error, expected, false);
1492
1493 let err_inputs = self.err_args(args.len(), guar);
1494 let err_output = Ty::new_error(self.tcx, guar);
1495
1496 self.check_argument_types(
1497 segment.ident.span,
1498 expr,
1499 &err_inputs,
1500 err_output,
1501 NoExpectation,
1502 args,
1503 false,
1504 TupleArgumentsFlag::DontTupleArguments,
1505 None,
1506 Some(GenericArgsRef::default()),
1507 );
1508
1509 err_output
1510 }
1511 }
1512 }
1513
1514 fn check_expr_use(
1516 &self,
1517 used_expr: &'tcx hir::Expr<'tcx>,
1518 expected: Expectation<'tcx>,
1519 ) -> Ty<'tcx> {
1520 self.check_expr_with_expectation(used_expr, expected)
1521 }
1522
1523 fn check_expr_cast(
1524 &self,
1525 e: &'tcx hir::Expr<'tcx>,
1526 t: &'tcx hir::Ty<'tcx>,
1527 expr: &'tcx hir::Expr<'tcx>,
1528 ) -> Ty<'tcx> {
1529 let t_cast = self.lower_ty_saving_user_provided_ty(t);
1532 let t_cast = self.resolve_vars_if_possible(t_cast);
1533 let t_expr = self.check_expr_with_expectation(e, ExpectCastableToType(t_cast));
1534 let t_expr = self.resolve_vars_if_possible(t_expr);
1535
1536 if let Err(guar) = (t_expr, t_cast).error_reported() {
1538 Ty::new_error(self.tcx, guar)
1539 } else {
1540 let mut deferred_cast_checks = self.deferred_cast_checks.borrow_mut();
1542 match cast::CastCheck::new(self, e, t_expr, t_cast, t.span, expr.span) {
1543 Ok(cast_check) => {
1544 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:1544",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(1544u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("check_expr_cast: deferring cast from {0:?} to {1:?}: {2:?}",
t_cast, t_expr, cast_check) as
&dyn ::tracing::field::Value))])
});
} else { ; }
};debug!(
1545 "check_expr_cast: deferring cast from {:?} to {:?}: {:?}",
1546 t_cast, t_expr, cast_check,
1547 );
1548 deferred_cast_checks.push(cast_check);
1549 t_cast
1550 }
1551 Err(guar) => Ty::new_error(self.tcx, guar),
1552 }
1553 }
1554 }
1555
1556 fn check_expr_unsafe_binder_cast(
1557 &self,
1558 span: Span,
1559 kind: ast::UnsafeBinderCastKind,
1560 inner_expr: &'tcx hir::Expr<'tcx>,
1561 hir_ty: Option<&'tcx hir::Ty<'tcx>>,
1562 expected: Expectation<'tcx>,
1563 ) -> Ty<'tcx> {
1564 match kind {
1565 ast::UnsafeBinderCastKind::Wrap => {
1566 let ascribed_ty =
1567 hir_ty.map(|hir_ty| self.lower_ty_saving_user_provided_ty(hir_ty));
1568 let expected_ty = expected.only_has_type(self);
1569 let binder_ty = match (ascribed_ty, expected_ty) {
1570 (Some(ascribed_ty), Some(expected_ty)) => {
1571 self.demand_eqtype(inner_expr.span, expected_ty, ascribed_ty);
1572 expected_ty
1573 }
1574 (Some(ty), None) | (None, Some(ty)) => ty,
1575 (None, None) => self.next_ty_var(inner_expr.span),
1579 };
1580
1581 let binder_ty = self.structurally_resolve_type(inner_expr.span, binder_ty);
1582 let hint_ty = match *binder_ty.kind() {
1583 ty::UnsafeBinder(binder) => self.instantiate_binder_with_fresh_vars(
1584 inner_expr.span,
1585 infer::BoundRegionConversionTime::HigherRankedType,
1586 binder.into(),
1587 ),
1588 ty::Error(e) => Ty::new_error(self.tcx, e),
1589 _ => {
1590 let guar = self
1591 .dcx()
1592 .struct_span_err(
1593 hir_ty.map_or(span, |hir_ty| hir_ty.span),
1594 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`wrap_binder!()` can only wrap into unsafe binder, not {0}",
binder_ty.sort_string(self.tcx)))
})format!(
1595 "`wrap_binder!()` can only wrap into unsafe binder, not {}",
1596 binder_ty.sort_string(self.tcx)
1597 ),
1598 )
1599 .with_note("unsafe binders are the only valid output of wrap")
1600 .emit();
1601 Ty::new_error(self.tcx, guar)
1602 }
1603 };
1604
1605 self.check_expr_has_type_or_error(inner_expr, hint_ty, |_| {});
1606
1607 binder_ty
1608 }
1609 ast::UnsafeBinderCastKind::Unwrap => {
1610 let ascribed_ty =
1611 hir_ty.map(|hir_ty| self.lower_ty_saving_user_provided_ty(hir_ty));
1612 let hint_ty = ascribed_ty.unwrap_or_else(|| self.next_ty_var(inner_expr.span));
1613 let binder_ty = self.check_expr_has_type_or_error(inner_expr, hint_ty, |_| {});
1615
1616 let binder_ty = self.structurally_resolve_type(inner_expr.span, binder_ty);
1619 match *binder_ty.kind() {
1620 ty::UnsafeBinder(binder) => self.instantiate_binder_with_fresh_vars(
1621 inner_expr.span,
1622 infer::BoundRegionConversionTime::HigherRankedType,
1623 binder.into(),
1624 ),
1625 ty::Error(e) => Ty::new_error(self.tcx, e),
1626 _ => {
1627 let guar = self
1628 .dcx()
1629 .struct_span_err(
1630 hir_ty.map_or(inner_expr.span, |hir_ty| hir_ty.span),
1631 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("expected unsafe binder, found {0} as input of `unwrap_binder!()`",
binder_ty.sort_string(self.tcx)))
})format!(
1632 "expected unsafe binder, found {} as input of \
1633 `unwrap_binder!()`",
1634 binder_ty.sort_string(self.tcx)
1635 ),
1636 )
1637 .with_note("only an unsafe binder type can be unwrapped")
1638 .emit();
1639 Ty::new_error(self.tcx, guar)
1640 }
1641 }
1642 }
1643 }
1644 }
1645
1646 fn check_expr_array(
1647 &self,
1648 args: &'tcx [hir::Expr<'tcx>],
1649 expected: Expectation<'tcx>,
1650 expr: &'tcx hir::Expr<'tcx>,
1651 ) -> Ty<'tcx> {
1652 let element_ty = if !args.is_empty() {
1653 let coerce_to = expected
1654 .to_option(self)
1655 .and_then(|uty| {
1656 self.resolve_vars_with_obligations(uty)
1657 .builtin_index()
1658 .filter(|t| !self.resolve_vars_with_obligations(*t).is_ty_var())
1661 })
1662 .unwrap_or_else(|| self.next_ty_var(expr.span));
1663 let mut coerce = CoerceMany::with_capacity(coerce_to, args.len());
1664
1665 for e in args {
1666 let e_ty = self.check_expr_with_hint(e, coerce_to);
1672 let cause = self.misc(e.span);
1673 coerce.coerce(self, &cause, e, e_ty);
1674 }
1675 coerce.complete(self)
1676 } else {
1677 self.next_ty_var(expr.span)
1678 };
1679 let array_len = args.len() as u64;
1680 self.suggest_array_len(expr, array_len);
1681 Ty::new_array(self.tcx, element_ty, array_len)
1682 }
1683
1684 fn suggest_array_len(&self, expr: &'tcx hir::Expr<'tcx>, array_len: u64) {
1685 let parent_node = self.tcx.hir_parent_iter(expr.hir_id).find(|(_, node)| {
1686 !#[allow(non_exhaustive_omitted_patterns)] match node {
hir::Node::Expr(hir::Expr { kind: hir::ExprKind::AddrOf(..), .. }) =>
true,
_ => false,
}matches!(node, hir::Node::Expr(hir::Expr { kind: hir::ExprKind::AddrOf(..), .. }))
1687 });
1688 let Some((_, hir::Node::LetStmt(hir::LetStmt { ty: Some(ty), .. }))) = parent_node else {
1689 return;
1690 };
1691 if let hir::TyKind::Array(_, ct) = ty.peel_refs().kind {
1692 let span = ct.span;
1693 self.dcx().try_steal_modify_and_emit_err(
1694 span,
1695 StashKey::UnderscoreForArrayLengths,
1696 |err| {
1697 err.span_suggestion(
1698 span,
1699 "consider specifying the array length",
1700 array_len,
1701 Applicability::MaybeIncorrect,
1702 );
1703 },
1704 );
1705 }
1706 }
1707
1708 pub(super) fn check_expr_const_block(
1709 &self,
1710 block: &'tcx hir::ConstBlock,
1711 expected: Expectation<'tcx>,
1712 ) -> Ty<'tcx> {
1713 let body = self.tcx.hir_body(block.body);
1714
1715 let def_id = block.def_id;
1717 let fcx = FnCtxt::new(self, self.param_env, def_id);
1718
1719 let ty = fcx.check_expr_with_expectation(body.value, expected);
1720 fcx.require_type_is_sized(ty, body.value.span, ObligationCauseCode::SizedConstOrStatic);
1721 fcx.write_ty(block.hir_id, ty);
1722 ty
1723 }
1724
1725 fn check_expr_repeat(
1726 &self,
1727 element: &'tcx hir::Expr<'tcx>,
1728 count: &'tcx hir::ConstArg<'tcx>,
1729 expected: Expectation<'tcx>,
1730 expr: &'tcx hir::Expr<'tcx>,
1731 ) -> Ty<'tcx> {
1732 let tcx = self.tcx;
1733 let count_span = count.span;
1734 let count = self.try_structurally_resolve_const(
1735 count_span,
1736 self.normalize(
1737 count_span,
1738 Unnormalized::new_wip(self.lower_const_arg(count, tcx.types.usize)),
1739 ),
1740 );
1741
1742 if let Some(count) = count.try_to_target_usize(tcx) {
1743 self.suggest_array_len(expr, count);
1744 }
1745
1746 let uty = match expected {
1747 ExpectHasType(uty) => uty.builtin_index(),
1748 _ => None,
1749 };
1750
1751 let (element_ty, t) = match uty {
1752 Some(uty) => {
1753 self.check_expr_coercible_to_type(element, uty, None);
1754 (uty, uty)
1755 }
1756 None => {
1757 let ty = self.next_ty_var(element.span);
1758 let element_ty = self.check_expr_has_type_or_error(element, ty, |_| {});
1759 (element_ty, ty)
1760 }
1761 };
1762
1763 if let Err(guar) = element_ty.error_reported() {
1764 return Ty::new_error(tcx, guar);
1765 }
1766
1767 self.deferred_repeat_expr_checks.borrow_mut().push((element, element_ty, count));
1771
1772 let ty = Ty::new_array_with_const_len(tcx, t, count);
1773 self.register_wf_obligation(ty.into(), expr.span, ObligationCauseCode::WellFormed(None));
1774 ty
1775 }
1776
1777 fn check_expr_tuple(
1778 &self,
1779 elements: &'tcx [hir::Expr<'tcx>],
1780 expected: Expectation<'tcx>,
1781 expr: &'tcx hir::Expr<'tcx>,
1782 ) -> Ty<'tcx> {
1783 let mut expectations = expected
1784 .only_has_type(self)
1785 .and_then(|ty| self.resolve_vars_with_obligations(ty).opt_tuple_fields())
1786 .unwrap_or_default()
1787 .iter();
1788
1789 let elements = elements.iter().map(|e| {
1790 let ty = expectations.next().unwrap_or_else(|| self.next_ty_var(e.span));
1791 self.check_expr_coercible_to_type(e, ty, None);
1792 ty
1793 });
1794
1795 let tuple = Ty::new_tup_from_iter(self.tcx, elements);
1796
1797 if let Err(guar) = tuple.error_reported() {
1798 Ty::new_error(self.tcx, guar)
1799 } else {
1800 self.require_type_is_sized(
1801 tuple,
1802 expr.span,
1803 ObligationCauseCode::TupleInitializerSized,
1804 );
1805 tuple
1806 }
1807 }
1808
1809 fn check_expr_struct(
1810 &self,
1811 expr: &hir::Expr<'tcx>,
1812 expected: Expectation<'tcx>,
1813 qpath: &'tcx QPath<'tcx>,
1814 fields: &'tcx [hir::ExprField<'tcx>],
1815 base_expr: &'tcx hir::StructTailExpr<'tcx>,
1816 ) -> Ty<'tcx> {
1817 let (variant, adt_ty) = match self.check_struct_path(qpath, expr.hir_id) {
1819 Ok(data) => data,
1820 Err(guar) => {
1821 self.check_struct_fields_on_error(fields, base_expr);
1822 return Ty::new_error(self.tcx, guar);
1823 }
1824 };
1825
1826 let adt = adt_ty.ty_adt_def().expect("`check_struct_path` returned non-ADT type");
1828 if variant.field_list_has_applicable_non_exhaustive() {
1829 self.dcx()
1830 .emit_err(StructExprNonExhaustive { span: expr.span, what: adt.variant_descr() });
1831 }
1832
1833 self.check_expr_struct_fields(
1834 adt_ty,
1835 expected,
1836 expr,
1837 qpath.span(),
1838 variant,
1839 fields,
1840 base_expr,
1841 );
1842
1843 self.require_type_is_sized(adt_ty, expr.span, ObligationCauseCode::StructInitializerSized);
1844 adt_ty
1845 }
1846
1847 fn check_expr_struct_fields(
1848 &self,
1849 adt_ty: Ty<'tcx>,
1850 expected: Expectation<'tcx>,
1851 expr: &hir::Expr<'_>,
1852 path_span: Span,
1853 variant: &'tcx ty::VariantDef,
1854 hir_fields: &'tcx [hir::ExprField<'tcx>],
1855 base_expr: &'tcx hir::StructTailExpr<'tcx>,
1856 ) {
1857 let tcx = self.tcx;
1858
1859 let adt_ty = self.resolve_vars_with_obligations(adt_ty);
1860 let adt_ty_hint = expected.only_has_type(self).and_then(|expected| {
1861 self.fudge_inference_if_ok(|| {
1862 let ocx = ObligationCtxt::new(self);
1863 ocx.sup(&self.misc(path_span), self.param_env, expected, adt_ty)?;
1864 if !ocx.try_evaluate_obligations().is_empty() {
1865 return Err(TypeError::Mismatch);
1866 }
1867 Ok(self.resolve_vars_if_possible(adt_ty))
1868 })
1869 .ok()
1870 });
1871 if let Some(adt_ty_hint) = adt_ty_hint {
1872 self.demand_eqtype(path_span, adt_ty_hint, adt_ty);
1874 }
1875
1876 let ty::Adt(adt, args) = adt_ty.kind() else {
1877 ::rustc_middle::util::bug::span_bug_fmt(path_span,
format_args!("non-ADT passed to check_expr_struct_fields"));span_bug!(path_span, "non-ADT passed to check_expr_struct_fields");
1878 };
1879 let adt_kind = adt.adt_kind();
1880
1881 let mut remaining_fields = variant
1882 .fields
1883 .iter_enumerated()
1884 .map(|(i, field)| (field.ident(tcx).normalize_to_macros_2_0(), (i, field)))
1885 .collect::<UnordMap<_, _>>();
1886
1887 let mut seen_fields = FxHashMap::default();
1888
1889 let mut error_happened = false;
1890
1891 if variant.fields.len() != remaining_fields.len() {
1892 let guar =
1895 self.dcx().span_delayed_bug(expr.span, "struct fields have non-unique names");
1896 self.set_tainted_by_errors(guar);
1897 error_happened = true;
1898 }
1899
1900 for (idx, field) in hir_fields.iter().enumerate() {
1902 let ident = tcx.adjust_ident(field.ident, variant.def_id);
1903 let field_type = if let Some((i, v_field)) = remaining_fields.remove(&ident) {
1904 seen_fields.insert(ident, field.span);
1905 self.write_field_index(field.hir_id, i);
1906
1907 if adt_kind != AdtKind::Enum {
1911 tcx.check_stability(v_field.did, Some(field.hir_id), field.span, None);
1912 }
1913
1914 self.field_ty(field.span, v_field, args)
1915 } else {
1916 error_happened = true;
1917 let guar = if let Some(prev_span) = seen_fields.get(&ident) {
1918 self.dcx().emit_err(FieldMultiplySpecifiedInInitializer {
1919 span: field.ident.span,
1920 prev_span: *prev_span,
1921 ident,
1922 })
1923 } else {
1924 self.report_unknown_field(
1925 adt_ty,
1926 variant,
1927 expr,
1928 field,
1929 hir_fields,
1930 adt.variant_descr(),
1931 )
1932 };
1933
1934 Ty::new_error(tcx, guar)
1935 };
1936
1937 self.register_wf_obligation(
1941 field_type.into(),
1942 field.expr.span,
1943 ObligationCauseCode::WellFormed(None),
1944 );
1945
1946 let ty = self.check_expr_with_hint(field.expr, field_type);
1949 let diag = self.demand_coerce_diag(field.expr, ty, field_type, None, AllowTwoPhase::No);
1950
1951 if let Err(diag) = diag {
1952 if idx == hir_fields.len() - 1 {
1953 if remaining_fields.is_empty() {
1954 self.suggest_fru_from_range_and_emit(field, variant, args, diag);
1955 } else {
1956 diag.stash(field.span, StashKey::MaybeFruTypo);
1957 }
1958 } else {
1959 diag.emit();
1960 }
1961 }
1962 }
1963
1964 if adt_kind == AdtKind::Union && hir_fields.len() != 1 {
1966 {
self.dcx().struct_span_err(path_span,
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("union expressions should have exactly one field"))
})).with_code(E0784)
}struct_span_code_err!(
1967 self.dcx(),
1968 path_span,
1969 E0784,
1970 "union expressions should have exactly one field",
1971 )
1972 .emit();
1973 }
1974
1975 if error_happened {
1979 if let hir::StructTailExpr::Base(base_expr) = base_expr {
1980 self.check_expr(base_expr);
1981 }
1982 return;
1983 }
1984
1985 match *base_expr {
1986 hir::StructTailExpr::DefaultFields(span) => {
1987 let mut missing_mandatory_fields = Vec::new();
1988 let mut missing_optional_fields = Vec::new();
1989 for f in &variant.fields {
1990 let ident = self.tcx.adjust_ident(f.ident(self.tcx), variant.def_id);
1991 if let Some(_) = remaining_fields.remove(&ident) {
1992 if f.value.is_none() {
1993 missing_mandatory_fields.push(ident);
1994 } else {
1995 missing_optional_fields.push(ident);
1996 }
1997 }
1998 }
1999 if !self.tcx.features().default_field_values() {
2000 let sugg = self.tcx.crate_level_attribute_injection_span();
2001 self.dcx().emit_err(BaseExpressionDoubleDot {
2002 span: span.shrink_to_hi(),
2003 default_field_values_suggestion: if self.tcx.sess.is_nightly_build()
2006 && missing_mandatory_fields.is_empty()
2007 && !missing_optional_fields.is_empty()
2008 {
2009 Some(sugg)
2010 } else {
2011 None
2012 },
2013 add_expr: if !missing_mandatory_fields.is_empty()
2014 || !missing_optional_fields.is_empty()
2015 {
2016 Some(BaseExpressionDoubleDotAddExpr { span: span.shrink_to_hi() })
2017 } else {
2018 None
2019 },
2020 remove_dots: if missing_mandatory_fields.is_empty()
2021 && missing_optional_fields.is_empty()
2022 {
2023 Some(BaseExpressionDoubleDotRemove { span })
2024 } else {
2025 None
2026 },
2027 });
2028 return;
2029 }
2030 if variant.fields.is_empty() {
2031 let mut err = self.dcx().struct_span_err(
2032 span,
2033 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}` has no fields, `..` needs at least one default field in the struct definition",
adt_ty))
})format!(
2034 "`{adt_ty}` has no fields, `..` needs at least one default field in \
2035 the struct definition",
2036 ),
2037 );
2038 err.span_label(path_span, "this type has no fields");
2039 err.emit();
2040 }
2041 if !missing_mandatory_fields.is_empty() {
2042 let s = if missing_mandatory_fields.len() == 1 { "" } else { "s" }pluralize!(missing_mandatory_fields.len());
2043 let fields = listify(&missing_mandatory_fields, |f| ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}`", f))
})format!("`{f}`")).unwrap();
2044 self.dcx()
2045 .struct_span_err(
2046 span.shrink_to_lo(),
2047 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("missing field{0} {1} in initializer",
s, fields))
})format!("missing field{s} {fields} in initializer"),
2048 )
2049 .with_span_label(
2050 span.shrink_to_lo(),
2051 "fields that do not have a defaulted value must be provided explicitly",
2052 )
2053 .emit();
2054 return;
2055 }
2056 let fru_tys = match adt_ty.kind() {
2057 ty::Adt(adt, args) if adt.is_struct() => variant
2058 .fields
2059 .iter()
2060 .map(|f| self.normalize(span, f.ty(self.tcx, args)))
2061 .collect(),
2062 ty::Adt(adt, args) if adt.is_enum() => variant
2063 .fields
2064 .iter()
2065 .map(|f| self.normalize(span, f.ty(self.tcx, args)))
2066 .collect(),
2067 _ => {
2068 self.dcx().emit_err(FunctionalRecordUpdateOnNonStruct { span });
2069 return;
2070 }
2071 };
2072 self.typeck_results.borrow_mut().fru_field_types_mut().insert(expr.hir_id, fru_tys);
2073 }
2074 hir::StructTailExpr::Base(base_expr) => {
2075 let fru_tys = if self.tcx.features().type_changing_struct_update() {
2078 if adt.is_struct() {
2079 let fresh_args = self.fresh_args_for_item(base_expr.span, adt.did());
2081 let fru_tys = variant
2086 .fields
2087 .iter()
2088 .map(|f| {
2089 let fru_ty = self.normalize(
2090 expr.span,
2091 Unnormalized::new_wip(self.field_ty(
2092 base_expr.span,
2093 f,
2094 fresh_args,
2095 )),
2096 );
2097 let ident =
2098 self.tcx.adjust_ident(f.ident(self.tcx), variant.def_id);
2099 if let Some(_) = remaining_fields.remove(&ident) {
2100 let target_ty = self.field_ty(base_expr.span, f, args);
2101 let cause = self.misc(base_expr.span);
2102 match self.at(&cause, self.param_env).sup(
2103 DefineOpaqueTypes::Yes,
2108 target_ty,
2109 fru_ty,
2110 ) {
2111 Ok(InferOk { obligations, value: () }) => {
2112 self.register_predicates(obligations)
2113 }
2114 Err(_) => {
2115 ::rustc_middle::util::bug::span_bug_fmt(cause.span,
format_args!("subtyping remaining fields of type changing FRU failed: {2} != {3}: {0}::{1}",
variant.name, ident.name, target_ty, fru_ty));span_bug!(
2116 cause.span,
2117 "subtyping remaining fields of type changing FRU \
2118 failed: {target_ty} != {fru_ty}: {}::{}",
2119 variant.name,
2120 ident.name,
2121 );
2122 }
2123 }
2124 }
2125 self.resolve_vars_if_possible(fru_ty)
2126 })
2127 .collect();
2128 let fresh_base_ty = Ty::new_adt(self.tcx, *adt, fresh_args);
2147 self.check_expr_has_type_or_error(
2148 base_expr,
2149 self.resolve_vars_if_possible(fresh_base_ty),
2150 |_| {},
2151 );
2152 fru_tys
2153 } else {
2154 self.check_expr(base_expr);
2157 self.dcx()
2158 .emit_err(FunctionalRecordUpdateOnNonStruct { span: base_expr.span });
2159 return;
2160 }
2161 } else {
2162 self.check_expr_has_type_or_error(base_expr, adt_ty, |_| {
2163 let base_ty = self.typeck_results.borrow().expr_ty(base_expr);
2164 let same_adt = #[allow(non_exhaustive_omitted_patterns)] match (adt_ty.kind(),
base_ty.kind()) {
(ty::Adt(adt, _), ty::Adt(base_adt, _)) if adt == base_adt => true,
_ => false,
}matches!((adt_ty.kind(), base_ty.kind()),
2165 (ty::Adt(adt, _), ty::Adt(base_adt, _)) if adt == base_adt);
2166 if self.tcx.sess.is_nightly_build() && same_adt {
2167 feature_err(
2168 &self.tcx.sess,
2169 sym::type_changing_struct_update,
2170 base_expr.span,
2171 "type changing struct updating is experimental",
2172 )
2173 .emit();
2174 }
2175 });
2176 match adt_ty.kind() {
2177 ty::Adt(adt, args) if adt.is_struct() => variant
2178 .fields
2179 .iter()
2180 .map(|f| self.normalize(expr.span, f.ty(self.tcx, args)))
2181 .collect(),
2182 _ => {
2183 self.dcx().emit_err(FunctionalRecordUpdateOnNonStruct {
2184 span: base_expr.span,
2185 });
2186 return;
2187 }
2188 }
2189 };
2190 self.typeck_results.borrow_mut().fru_field_types_mut().insert(expr.hir_id, fru_tys);
2191 }
2192 rustc_hir::StructTailExpr::NoneWithError(guaranteed) => {
2193 self.infcx.set_tainted_by_errors(guaranteed);
2204 }
2205 rustc_hir::StructTailExpr::None => {
2206 if adt_kind != AdtKind::Union
2207 && !remaining_fields.is_empty()
2208 && !variant.field_list_has_applicable_non_exhaustive()
2210 {
2211 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:2211",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(2211u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&[{
const NAME:
::tracing::__macro_support::FieldName<{
::tracing::__macro_support::FieldName::len("remaining_fields")
}> =
::tracing::__macro_support::FieldName::new("remaining_fields");
NAME.as_str()
}], ::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&::tracing::field::debug(&remaining_fields)
as &dyn ::tracing::field::Value))])
});
} else { ; }
};debug!(?remaining_fields);
2212
2213 let private_fields: Vec<&ty::FieldDef> = variant
2216 .fields
2217 .iter()
2218 .filter(|field| {
2219 !field.vis.is_accessible_from(tcx.parent_module(expr.hir_id), tcx)
2220 })
2221 .collect();
2222
2223 if !private_fields.is_empty() {
2224 self.report_private_fields(
2225 adt_ty,
2226 path_span,
2227 expr.span,
2228 private_fields,
2229 hir_fields,
2230 );
2231 } else {
2232 self.report_missing_fields(
2233 adt_ty,
2234 path_span,
2235 expr.span,
2236 remaining_fields,
2237 variant,
2238 hir_fields,
2239 args,
2240 );
2241 }
2242 }
2243 }
2244 }
2245 }
2246
2247 fn check_struct_fields_on_error(
2248 &self,
2249 fields: &'tcx [hir::ExprField<'tcx>],
2250 base_expr: &'tcx hir::StructTailExpr<'tcx>,
2251 ) {
2252 for field in fields {
2253 self.check_expr(field.expr);
2254 }
2255 if let hir::StructTailExpr::Base(base) = *base_expr {
2256 self.check_expr(base);
2257 }
2258 }
2259
2260 fn report_missing_fields(
2272 &self,
2273 adt_ty: Ty<'tcx>,
2274 span: Span,
2275 full_span: Span,
2276 remaining_fields: UnordMap<Ident, (FieldIdx, &ty::FieldDef)>,
2277 variant: &'tcx ty::VariantDef,
2278 hir_fields: &'tcx [hir::ExprField<'tcx>],
2279 args: GenericArgsRef<'tcx>,
2280 ) {
2281 let len = remaining_fields.len();
2282
2283 let displayable_field_names: Vec<&str> =
2284 remaining_fields.items().map(|(ident, _)| ident.as_str()).into_sorted_stable_ord();
2285
2286 let mut truncated_fields_error = String::new();
2287 let remaining_fields_names = match &displayable_field_names[..] {
2288 [field1] => ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}`", field1))
})format!("`{field1}`"),
2289 [field1, field2] => ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}` and `{1}`", field1, field2))
})format!("`{field1}` and `{field2}`"),
2290 [field1, field2, field3] => ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}`, `{1}` and `{2}`", field1,
field2, field3))
})format!("`{field1}`, `{field2}` and `{field3}`"),
2291 _ => {
2292 truncated_fields_error =
2293 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" and {0} other field{1}", len - 3,
if len - 3 == 1 { "" } else { "s" }))
})format!(" and {} other field{}", len - 3, pluralize!(len - 3));
2294 displayable_field_names
2295 .iter()
2296 .take(3)
2297 .map(|n| ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}`", n))
})format!("`{n}`"))
2298 .collect::<Vec<_>>()
2299 .join(", ")
2300 }
2301 };
2302
2303 let mut err = {
self.dcx().struct_span_err(span,
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("missing field{0} {1}{2} in initializer of `{3}`",
if len == 1 { "" } else { "s" }, remaining_fields_names,
truncated_fields_error, adt_ty))
})).with_code(E0063)
}struct_span_code_err!(
2304 self.dcx(),
2305 span,
2306 E0063,
2307 "missing field{} {}{} in initializer of `{}`",
2308 pluralize!(len),
2309 remaining_fields_names,
2310 truncated_fields_error,
2311 adt_ty
2312 );
2313 err.span_label(span, ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("missing {0}{1}",
remaining_fields_names, truncated_fields_error))
})format!("missing {remaining_fields_names}{truncated_fields_error}"));
2314
2315 if remaining_fields.items().all(|(_, (_, field))| field.value.is_some())
2316 && self.tcx.sess.is_nightly_build()
2317 {
2318 let msg = ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("all remaining fields have default values, {0} use those values with `..`",
if self.tcx.features().default_field_values() {
"you can"
} else {
"if you added `#![feature(default_field_values)]` to your crate you could"
}))
})format!(
2319 "all remaining fields have default values, {you_can} use those values with `..`",
2320 you_can = if self.tcx.features().default_field_values() {
2321 "you can"
2322 } else {
2323 "if you added `#![feature(default_field_values)]` to your crate you could"
2324 },
2325 );
2326 if let Some(hir_field) = hir_fields.last() {
2327 err.span_suggestion_verbose(
2328 hir_field.span.shrink_to_hi(),
2329 msg,
2330 ", ..".to_string(),
2331 Applicability::MachineApplicable,
2332 );
2333 } else if hir_fields.is_empty() {
2334 err.span_suggestion_verbose(
2335 span.shrink_to_hi().with_hi(full_span.hi()),
2336 msg,
2337 " { .. }".to_string(),
2338 Applicability::MachineApplicable,
2339 );
2340 }
2341 }
2342
2343 if let Some(hir_field) = hir_fields.last() {
2344 self.suggest_fru_from_range_and_emit(hir_field, variant, args, err);
2345 } else {
2346 err.emit();
2347 }
2348 }
2349
2350 fn suggest_fru_from_range_and_emit(
2353 &self,
2354 last_expr_field: &hir::ExprField<'tcx>,
2355 variant: &ty::VariantDef,
2356 args: GenericArgsRef<'tcx>,
2357 mut err: Diag<'_>,
2358 ) {
2359 if is_range_literal(last_expr_field.expr)
2360 && let ExprKind::Struct(&qpath, [range_start, range_end], _) = last_expr_field.expr.kind
2361 && self.tcx.qpath_is_lang_item(qpath, LangItem::Range)
2362 && let variant_field =
2363 variant.fields.iter().find(|field| field.ident(self.tcx) == last_expr_field.ident)
2364 && let range_def_id = self.tcx.lang_items().range_struct()
2365 && variant_field
2366 .and_then(|field| field.ty(self.tcx, args).skip_norm_wip().ty_adt_def())
2367 .map(|adt| adt.did())
2368 != range_def_id
2369 {
2370 let expr = self
2374 .tcx
2375 .sess
2376 .source_map()
2377 .span_to_snippet(range_end.expr.span)
2378 .ok()
2379 .filter(|s| s.len() < 25 && !s.contains(|c: char| c.is_control()));
2380
2381 let fru_span = self
2382 .tcx
2383 .sess
2384 .source_map()
2385 .span_extend_while_whitespace(range_start.expr.span)
2386 .shrink_to_hi()
2387 .to(range_end.expr.span);
2388
2389 err.subdiagnostic(TypeMismatchFruTypo {
2390 expr_span: range_start.expr.span,
2391 fru_span,
2392 expr,
2393 });
2394
2395 self.dcx().try_steal_replace_and_emit_err(
2397 last_expr_field.span,
2398 StashKey::MaybeFruTypo,
2399 err,
2400 );
2401 } else {
2402 err.emit();
2403 }
2404 }
2405
2406 fn report_private_fields(
2418 &self,
2419 adt_ty: Ty<'tcx>,
2420 span: Span,
2421 expr_span: Span,
2422 private_fields: Vec<&ty::FieldDef>,
2423 used_fields: &'tcx [hir::ExprField<'tcx>],
2424 ) {
2425 let mut err =
2426 self.dcx().struct_span_err(
2427 span,
2428 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("cannot construct `{0}` with struct literal syntax due to private fields",
adt_ty))
})format!(
2429 "cannot construct `{adt_ty}` with struct literal syntax due to private fields",
2430 ),
2431 );
2432 let (used_private_fields, remaining_private_fields): (
2433 Vec<(Symbol, Span, bool)>,
2434 Vec<(Symbol, Span, bool)>,
2435 ) = private_fields
2436 .iter()
2437 .map(|field| {
2438 match used_fields.iter().find(|used_field| field.name == used_field.ident.name) {
2439 Some(used_field) => (field.name, used_field.span, true),
2440 None => (field.name, self.tcx.def_span(field.did), false),
2441 }
2442 })
2443 .partition(|field| field.2);
2444 err.span_labels(used_private_fields.iter().map(|(_, span, _)| *span), "private field");
2445
2446 if let ty::Adt(def, _) = adt_ty.kind() {
2447 if (def.did().is_local() || !used_fields.is_empty())
2448 && !remaining_private_fields.is_empty()
2449 {
2450 let names = if remaining_private_fields.len() > 6 {
2451 String::new()
2452 } else {
2453 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0} ",
listify(&remaining_private_fields,
|(name, _, _)|
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}`", name))
})).expect("expected at least one private field to report")))
})format!(
2454 "{} ",
2455 listify(&remaining_private_fields, |(name, _, _)| format!("`{name}`"))
2456 .expect("expected at least one private field to report")
2457 )
2458 };
2459 err.note(::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}private field{1} {3}that {2} not provided",
if used_fields.is_empty() { "" } else { "...and other " },
if remaining_private_fields.len() == 1 { "" } else { "s" },
if remaining_private_fields.len() == 1 {
"was"
} else { "were" }, names))
})format!(
2460 "{}private field{s} {names}that {were} not provided",
2461 if used_fields.is_empty() { "" } else { "...and other " },
2462 s = pluralize!(remaining_private_fields.len()),
2463 were = pluralize!("was", remaining_private_fields.len()),
2464 ));
2465 }
2466
2467 let def_id = def.did();
2468 let mut items = self
2469 .tcx
2470 .inherent_impls(def_id)
2471 .into_iter()
2472 .flat_map(|&i| self.tcx.associated_items(i).in_definition_order())
2473 .filter(|item| item.is_fn() && !item.is_method())
2475 .filter_map(|item| {
2476 let fn_sig = self
2478 .tcx
2479 .fn_sig(item.def_id)
2480 .instantiate(self.tcx, self.fresh_args_for_item(span, item.def_id))
2481 .skip_norm_wip();
2482 let ret_ty = self.tcx.instantiate_bound_regions_with_erased(fn_sig.output());
2483 if !self.can_eq(self.param_env, ret_ty, adt_ty) {
2484 return None;
2485 }
2486 let input_len = fn_sig.inputs().skip_binder().len();
2487 let name = item.name();
2488 let order = !name.as_str().starts_with("new");
2489 Some((order, name, input_len))
2490 })
2491 .collect::<Vec<_>>();
2492 items.sort_by_key(|(order, _, _)| *order);
2493 let suggestion = |name, args| {
2494 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("::{1}({0})",
std::iter::repeat_n("_", args).collect::<Vec<_>>().join(", "),
name))
})format!(
2495 "::{name}({})",
2496 std::iter::repeat_n("_", args).collect::<Vec<_>>().join(", ")
2497 )
2498 };
2499 match &items[..] {
2500 [] => {}
2501 [(_, name, args)] => {
2502 err.span_suggestion_verbose(
2503 span.shrink_to_hi().with_hi(expr_span.hi()),
2504 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("you might have meant to use the `{0}` associated function",
name))
})format!("you might have meant to use the `{name}` associated function"),
2505 suggestion(name, *args),
2506 Applicability::MaybeIncorrect,
2507 );
2508 }
2509 _ => {
2510 err.span_suggestions(
2511 span.shrink_to_hi().with_hi(expr_span.hi()),
2512 "you might have meant to use an associated function to build this type",
2513 items.iter().map(|(_, name, args)| suggestion(name, *args)),
2514 Applicability::MaybeIncorrect,
2515 );
2516 }
2517 }
2518 if let Some(default_trait) = self.tcx.get_diagnostic_item(sym::Default)
2519 && self
2520 .infcx
2521 .type_implements_trait(default_trait, [adt_ty], self.param_env)
2522 .may_apply()
2523 {
2524 err.multipart_suggestion(
2525 "consider using the `Default` trait",
2526 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[(span.shrink_to_lo(), "<".to_string()),
(span.shrink_to_hi().with_hi(expr_span.hi()),
" as std::default::Default>::default()".to_string())]))vec![
2527 (span.shrink_to_lo(), "<".to_string()),
2528 (
2529 span.shrink_to_hi().with_hi(expr_span.hi()),
2530 " as std::default::Default>::default()".to_string(),
2531 ),
2532 ],
2533 Applicability::MaybeIncorrect,
2534 );
2535 }
2536 }
2537
2538 err.emit();
2539 }
2540
2541 fn report_unknown_field(
2542 &self,
2543 ty: Ty<'tcx>,
2544 variant: &'tcx ty::VariantDef,
2545 expr: &hir::Expr<'_>,
2546 field: &hir::ExprField<'_>,
2547 skip_fields: &[hir::ExprField<'_>],
2548 kind_name: &str,
2549 ) -> ErrorGuaranteed {
2550 if let Err(guar) = variant.has_errors() {
2552 return guar;
2553 }
2554 let mut err = self.err_ctxt().type_error_struct_with_diag(
2555 field.ident.span,
2556 |actual| match ty.kind() {
2557 ty::Adt(adt, ..) if adt.is_enum() => {
self.dcx().struct_span_err(field.ident.span,
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0} `{1}::{2}` has no field named `{3}`",
kind_name, actual, variant.name, field.ident))
})).with_code(E0559)
}struct_span_code_err!(
2558 self.dcx(),
2559 field.ident.span,
2560 E0559,
2561 "{} `{}::{}` has no field named `{}`",
2562 kind_name,
2563 actual,
2564 variant.name,
2565 field.ident
2566 ),
2567 _ => {
self.dcx().struct_span_err(field.ident.span,
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0} `{1}` has no field named `{2}`",
kind_name, actual, field.ident))
})).with_code(E0560)
}struct_span_code_err!(
2568 self.dcx(),
2569 field.ident.span,
2570 E0560,
2571 "{} `{}` has no field named `{}`",
2572 kind_name,
2573 actual,
2574 field.ident
2575 ),
2576 },
2577 ty,
2578 );
2579
2580 let variant_ident_span = self.tcx.def_ident_span(variant.def_id).unwrap();
2581 match variant.ctor {
2582 Some((CtorKind::Fn, def_id)) => match ty.kind() {
2583 ty::Adt(adt, ..) if adt.is_enum() => {
2584 err.span_label(
2585 variant_ident_span,
2586 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}::{1}` defined here", ty,
variant.name))
})format!(
2587 "`{adt}::{variant}` defined here",
2588 adt = ty,
2589 variant = variant.name,
2590 ),
2591 );
2592 err.span_label(field.ident.span, "field does not exist");
2593 let fn_sig = self.tcx.fn_sig(def_id).instantiate_identity().skip_norm_wip();
2594 let inputs = fn_sig.inputs().skip_binder();
2595 let fields = ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("({0})",
inputs.iter().map(|i|
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("/* {0} */", i))
})).collect::<Vec<_>>().join(", ")))
})format!(
2596 "({})",
2597 inputs.iter().map(|i| format!("/* {i} */")).collect::<Vec<_>>().join(", ")
2598 );
2599 let (replace_span, sugg) = match expr.kind {
2600 hir::ExprKind::Struct(qpath, ..) => {
2601 (qpath.span().shrink_to_hi().with_hi(expr.span.hi()), fields)
2602 }
2603 _ => {
2604 (expr.span, ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{1}::{0}{2}", variant.name, ty,
fields))
})format!("{ty}::{variant}{fields}", variant = variant.name))
2605 }
2606 };
2607 err.span_suggestion_verbose(
2608 replace_span,
2609 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}::{1}` is a tuple {2}, use the appropriate syntax",
ty, variant.name, kind_name))
})format!(
2610 "`{adt}::{variant}` is a tuple {kind_name}, use the appropriate syntax",
2611 adt = ty,
2612 variant = variant.name,
2613 ),
2614 sugg,
2615 Applicability::HasPlaceholders,
2616 );
2617 }
2618 _ => {
2619 err.span_label(variant_ident_span, ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}` defined here", ty))
})format!("`{ty}` defined here"));
2620 err.span_label(field.ident.span, "field does not exist");
2621 let fn_sig = self.tcx.fn_sig(def_id).instantiate_identity().skip_norm_wip();
2622 let inputs = fn_sig.inputs().skip_binder();
2623 let fields = ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("({0})",
inputs.iter().map(|i|
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("/* {0} */", i))
})).collect::<Vec<_>>().join(", ")))
})format!(
2624 "({})",
2625 inputs.iter().map(|i| format!("/* {i} */")).collect::<Vec<_>>().join(", ")
2626 );
2627 err.span_suggestion_verbose(
2628 expr.span,
2629 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}` is a tuple {1}, use the appropriate syntax",
ty, kind_name))
})format!("`{ty}` is a tuple {kind_name}, use the appropriate syntax",),
2630 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}{1}", ty, fields))
})format!("{ty}{fields}"),
2631 Applicability::HasPlaceholders,
2632 );
2633 }
2634 },
2635 _ => {
2636 let available_field_names = self.available_field_names(variant, expr, skip_fields);
2638 if let Some(field_name) =
2639 find_best_match_for_name(&available_field_names, field.ident.name, None)
2640 && !(field.ident.name.as_str().parse::<usize>().is_ok()
2641 && field_name.as_str().parse::<usize>().is_ok())
2642 {
2643 err.span_label(field.ident.span, "unknown field");
2644 err.span_suggestion_verbose(
2645 field.ident.span,
2646 "a field with a similar name exists",
2647 field_name,
2648 Applicability::MaybeIncorrect,
2649 );
2650 } else {
2651 match ty.kind() {
2652 ty::Adt(adt, ..) => {
2653 if adt.is_enum() {
2654 err.span_label(
2655 field.ident.span,
2656 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}::{1}` does not have this field",
ty, variant.name))
})format!("`{}::{}` does not have this field", ty, variant.name),
2657 );
2658 } else {
2659 err.span_label(
2660 field.ident.span,
2661 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}` does not have this field",
ty))
})format!("`{ty}` does not have this field"),
2662 );
2663 }
2664 if available_field_names.is_empty() {
2665 err.note("all struct fields are already assigned");
2666 } else {
2667 err.note(::alloc::__export::must_use({
::alloc::fmt::format(format_args!("available fields are: {0}",
self.name_series_display(available_field_names)))
})format!(
2668 "available fields are: {}",
2669 self.name_series_display(available_field_names)
2670 ));
2671 }
2672 }
2673 _ => ::rustc_middle::util::bug::bug_fmt(format_args!("non-ADT passed to report_unknown_field"))bug!("non-ADT passed to report_unknown_field"),
2674 }
2675 };
2676 }
2677 }
2678 err.emit()
2679 }
2680
2681 fn available_field_names(
2682 &self,
2683 variant: &'tcx ty::VariantDef,
2684 expr: &hir::Expr<'_>,
2685 skip_fields: &[hir::ExprField<'_>],
2686 ) -> Vec<Symbol> {
2687 variant
2688 .fields
2689 .iter()
2690 .filter(|field| {
2691 skip_fields.iter().all(|&skip| skip.ident.name != field.name)
2692 && self.is_field_suggestable(field, expr.hir_id, expr.span)
2693 })
2694 .map(|field| field.name)
2695 .collect()
2696 }
2697
2698 fn name_series_display(&self, names: Vec<Symbol>) -> String {
2699 let limit = if names.len() == 6 { 6 } else { 5 };
2701 let mut display =
2702 names.iter().take(limit).map(|n| ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}`", n))
})format!("`{n}`")).collect::<Vec<_>>().join(", ");
2703 if names.len() > limit {
2704 display = ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0} ... and {1} others", display,
names.len() - limit))
})format!("{} ... and {} others", display, names.len() - limit);
2705 }
2706 display
2707 }
2708
2709 fn find_adt_field(
2713 &self,
2714 base_def: ty::AdtDef<'tcx>,
2715 ident: Ident,
2716 ) -> Option<(FieldIdx, &'tcx ty::FieldDef)> {
2717 if base_def.is_enum() {
2719 return None;
2720 }
2721
2722 for (field_idx, field) in base_def.non_enum_variant().fields.iter_enumerated() {
2723 if field.ident(self.tcx).normalize_to_macros_2_0() == ident {
2724 return Some((field_idx, field));
2726 }
2727 }
2728
2729 None
2730 }
2731
2732 fn check_expr_field(
2742 &self,
2743 expr: &'tcx hir::Expr<'tcx>,
2744 base: &'tcx hir::Expr<'tcx>,
2745 field: Ident,
2746 expected: Expectation<'tcx>,
2748 ) -> Ty<'tcx> {
2749 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:2749",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(2749u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("check_field(expr: {0:?}, base: {1:?}, field: {2:?})",
expr, base, field) as &dyn ::tracing::field::Value))])
});
} else { ; }
};debug!("check_field(expr: {:?}, base: {:?}, field: {:?})", expr, base, field);
2750 let base_ty = self.check_expr(base);
2751 let base_ty = self.structurally_resolve_type(base.span, base_ty);
2752
2753 let mut private_candidate = None;
2755
2756 let mut autoderef = self.autoderef(expr.span, base_ty);
2758 while let Some((deref_base_ty, _)) = autoderef.next() {
2759 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:2759",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(2759u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("deref_base_ty: {0:?}",
deref_base_ty) as &dyn ::tracing::field::Value))])
});
} else { ; }
};debug!("deref_base_ty: {:?}", deref_base_ty);
2760 match deref_base_ty.kind() {
2761 ty::Adt(base_def, args) if !base_def.is_enum() => {
2762 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:2762",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(2762u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("struct named {0:?}",
deref_base_ty) as &dyn ::tracing::field::Value))])
});
} else { ; }
};debug!("struct named {:?}", deref_base_ty);
2763 if let Err(guar) = base_def.non_enum_variant().has_errors() {
2765 return Ty::new_error(self.tcx(), guar);
2766 }
2767
2768 let (ident, def_scope) = self.tcx.adjust_ident_and_get_scope(
2769 field,
2770 base_def.did(),
2771 self.body_def_id,
2772 );
2773
2774 if let Some((idx, field)) = self.find_adt_field(*base_def, ident) {
2775 self.write_field_index(expr.hir_id, idx);
2776
2777 let adjustments = self.adjust_steps(&autoderef);
2778 if field.vis.is_accessible_from(def_scope, self.tcx) {
2779 self.apply_adjustments(base, adjustments);
2780 self.register_predicates(autoderef.into_obligations());
2781
2782 self.tcx.check_stability(field.did, Some(expr.hir_id), expr.span, None);
2783 return self.field_ty(expr.span, field, args);
2784 }
2785
2786 private_candidate = Some((adjustments, base_def.did()));
2788 }
2789 }
2790 ty::Tuple(tys) => {
2791 if let Ok(index) = field.as_str().parse::<usize>() {
2792 if field.name == sym::integer(index) {
2793 if let Some(&field_ty) = tys.get(index) {
2794 let adjustments = self.adjust_steps(&autoderef);
2795 self.apply_adjustments(base, adjustments);
2796 self.register_predicates(autoderef.into_obligations());
2797
2798 self.write_field_index(expr.hir_id, FieldIdx::from_usize(index));
2799 return field_ty;
2800 }
2801 }
2802 }
2803 }
2804 _ => {}
2805 }
2806 }
2807 let final_ty = self.structurally_resolve_type(autoderef.span(), autoderef.final_ty());
2813 if let ty::Error(_) = final_ty.kind() {
2814 return final_ty;
2815 }
2816
2817 if let Some((adjustments, did)) = private_candidate {
2818 self.apply_adjustments(base, adjustments);
2821 let guar = self.ban_private_field_access(
2822 expr,
2823 base_ty,
2824 field,
2825 did,
2826 expected.only_has_type(self),
2827 );
2828 return Ty::new_error(self.tcx(), guar);
2829 }
2830
2831 let guar = if self.method_exists_for_diagnostic(
2832 field,
2833 base_ty,
2834 expr.hir_id,
2835 expected.only_has_type(self),
2836 ) {
2837 self.ban_take_value_of_method(expr, base_ty, field)
2839 } else if !base_ty.is_primitive_ty() {
2840 self.ban_nonexisting_field(field, base, expr, base_ty)
2841 } else {
2842 let field_name = field.to_string();
2843 let mut err = {
let mut err =
{
self.dcx().struct_span_err(field.span,
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}` is a primitive type and therefore doesn\'t have fields",
base_ty))
})).with_code(E0610)
};
if base_ty.references_error() { err.downgrade_to_delayed_bug(); }
err
}type_error_struct!(
2844 self.dcx(),
2845 field.span,
2846 base_ty,
2847 E0610,
2848 "`{base_ty}` is a primitive type and therefore doesn't have fields",
2849 );
2850 let is_valid_suffix = |field: &str| {
2851 if field == "f32" || field == "f64" {
2852 return true;
2853 }
2854 let mut chars = field.chars().peekable();
2855 match chars.peek() {
2856 Some('e') | Some('E') => {
2857 chars.next();
2858 if let Some(c) = chars.peek()
2859 && !c.is_numeric()
2860 && *c != '-'
2861 && *c != '+'
2862 {
2863 return false;
2864 }
2865 while let Some(c) = chars.peek() {
2866 if !c.is_numeric() {
2867 break;
2868 }
2869 chars.next();
2870 }
2871 }
2872 _ => (),
2873 }
2874 let suffix = chars.collect::<String>();
2875 suffix.is_empty() || suffix == "f32" || suffix == "f64"
2876 };
2877 let maybe_partial_suffix = |field: &str| -> Option<&str> {
2878 let first_chars = ['f', 'l'];
2879 if field.len() >= 1
2880 && field.to_lowercase().starts_with(first_chars)
2881 && field[1..].chars().all(|c| c.is_ascii_digit())
2882 {
2883 if field.to_lowercase().starts_with(['f']) { Some("f32") } else { Some("f64") }
2884 } else {
2885 None
2886 }
2887 };
2888 if let ty::Infer(ty::IntVar(_)) = base_ty.kind()
2889 && let ExprKind::Lit(Spanned {
2890 node: ast::LitKind::Int(_, ast::LitIntType::Unsuffixed),
2891 ..
2892 }) = base.kind
2893 && !base.span.from_expansion()
2894 {
2895 if is_valid_suffix(&field_name) {
2896 err.span_suggestion_verbose(
2897 field.span.shrink_to_lo(),
2898 "if intended to be a floating point literal, consider adding a `0` after the period",
2899 '0',
2900 Applicability::MaybeIncorrect,
2901 );
2902 } else if let Some(correct_suffix) = maybe_partial_suffix(&field_name) {
2903 err.span_suggestion_verbose(
2904 field.span,
2905 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("if intended to be a floating point literal, consider adding a `0` after the period and a `{0}` suffix",
correct_suffix))
})format!("if intended to be a floating point literal, consider adding a `0` after the period and a `{correct_suffix}` suffix"),
2906 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("0{0}", correct_suffix))
})format!("0{correct_suffix}"),
2907 Applicability::MaybeIncorrect,
2908 );
2909 }
2910 }
2911 err.emit()
2912 };
2913
2914 Ty::new_error(self.tcx(), guar)
2915 }
2916
2917 fn suggest_await_on_field_access(
2918 &self,
2919 err: &mut Diag<'_>,
2920 field_ident: Ident,
2921 base: &'tcx hir::Expr<'tcx>,
2922 ty: Ty<'tcx>,
2923 ) {
2924 let Some(output_ty) = self.tcx.get_impl_future_output_ty(ty) else {
2925 err.span_label(field_ident.span, "unknown field");
2926 return;
2927 };
2928 let ty::Adt(def, _) = output_ty.kind() else {
2929 err.span_label(field_ident.span, "unknown field");
2930 return;
2931 };
2932 if def.is_enum() {
2934 err.span_label(field_ident.span, "unknown field");
2935 return;
2936 }
2937 if !def.non_enum_variant().fields.iter().any(|field| field.ident(self.tcx) == field_ident) {
2938 err.span_label(field_ident.span, "unknown field");
2939 return;
2940 }
2941 err.span_label(
2942 field_ident.span,
2943 "field not available in `impl Future`, but it is available in its `Output`",
2944 );
2945 match self.tcx.coroutine_kind(self.body_def_id) {
2946 Some(hir::CoroutineKind::Desugared(hir::CoroutineDesugaring::Async, _)) => {
2947 err.span_suggestion_verbose(
2948 base.span.shrink_to_hi(),
2949 "consider `await`ing on the `Future` to access the field",
2950 ".await",
2951 Applicability::MaybeIncorrect,
2952 );
2953 }
2954 _ => {
2955 let mut span: MultiSpan = base.span.into();
2956 span.push_span_label(self.tcx.def_span(self.body_def_id), "this is not `async`");
2957 err.span_note(
2958 span,
2959 "this implements `Future` and its output type has the field, \
2960 but the future cannot be awaited in a synchronous function",
2961 );
2962 }
2963 }
2964 }
2965
2966 fn ban_nonexisting_field(
2967 &self,
2968 ident: Ident,
2969 base: &'tcx hir::Expr<'tcx>,
2970 expr: &'tcx hir::Expr<'tcx>,
2971 base_ty: Ty<'tcx>,
2972 ) -> ErrorGuaranteed {
2973 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:2973",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(2973u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("ban_nonexisting_field: field={0:?}, base={1:?}, expr={2:?}, base_ty={3:?}",
ident, base, expr, base_ty) as
&dyn ::tracing::field::Value))])
});
} else { ; }
};debug!(
2974 "ban_nonexisting_field: field={:?}, base={:?}, expr={:?}, base_ty={:?}",
2975 ident, base, expr, base_ty
2976 );
2977 let mut err = self.no_such_field_err(ident, base_ty, expr);
2978
2979 match *base_ty.peel_refs().kind() {
2980 ty::Array(_, len) => {
2981 self.maybe_suggest_array_indexing(&mut err, base, ident, len);
2982 }
2983 ty::RawPtr(..) => {
2984 self.suggest_first_deref_field(&mut err, base, ident);
2985 }
2986 ty::Param(param_ty) => {
2987 err.span_label(ident.span, "unknown field");
2988 self.point_at_param_definition(&mut err, param_ty);
2989 }
2990 ty::Alias(_, ty::AliasTy { kind: ty::Opaque { .. }, .. }) => {
2991 self.suggest_await_on_field_access(&mut err, ident, base, base_ty.peel_refs());
2992 }
2993 _ => {
2994 err.span_label(ident.span, "unknown field");
2995 }
2996 }
2997
2998 self.suggest_fn_call(&mut err, base, base_ty, |output_ty| {
2999 if let ty::Adt(def, _) = output_ty.kind()
3000 && !def.is_enum()
3001 {
3002 def.non_enum_variant().fields.iter().any(|field| {
3003 field.ident(self.tcx) == ident
3004 && field.vis.is_accessible_from(expr.hir_id.owner.def_id, self.tcx)
3005 })
3006 } else if let ty::Tuple(tys) = output_ty.kind()
3007 && let Ok(idx) = ident.as_str().parse::<usize>()
3008 {
3009 idx < tys.len()
3010 } else {
3011 false
3012 }
3013 });
3014
3015 if ident.name == kw::Await {
3016 err.note("to `.await` a `Future`, switch to Rust 2018 or later");
3019 HelpUseLatestEdition::new().add_to_diag(&mut err);
3020 }
3021
3022 err.emit()
3023 }
3024
3025 fn ban_private_field_access(
3026 &self,
3027 expr: &hir::Expr<'tcx>,
3028 expr_t: Ty<'tcx>,
3029 field: Ident,
3030 base_did: DefId,
3031 return_ty: Option<Ty<'tcx>>,
3032 ) -> ErrorGuaranteed {
3033 let mut err = self.private_field_err(field, base_did);
3034
3035 if self.method_exists_for_diagnostic(field, expr_t, expr.hir_id, return_ty)
3037 && !self.expr_in_place(expr.hir_id)
3038 {
3039 self.suggest_method_call(
3040 &mut err,
3041 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("a method `{0}` also exists, call it with parentheses",
field))
})format!("a method `{field}` also exists, call it with parentheses"),
3042 field,
3043 expr_t,
3044 expr,
3045 None,
3046 );
3047 }
3048 err.emit()
3049 }
3050
3051 fn ban_take_value_of_method(
3052 &self,
3053 expr: &hir::Expr<'tcx>,
3054 expr_t: Ty<'tcx>,
3055 field: Ident,
3056 ) -> ErrorGuaranteed {
3057 let mut err = {
let mut err =
{
self.dcx().struct_span_err(field.span,
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("attempted to take value of method `{0}` on type `{1}`",
field, expr_t))
})).with_code(E0615)
};
if expr_t.references_error() { err.downgrade_to_delayed_bug(); }
err
}type_error_struct!(
3058 self.dcx(),
3059 field.span,
3060 expr_t,
3061 E0615,
3062 "attempted to take value of method `{field}` on type `{expr_t}`",
3063 );
3064 err.span_label(field.span, "method, not a field");
3065 let expr_is_call =
3066 if let hir::Node::Expr(hir::Expr { kind: ExprKind::Call(callee, _args), .. }) =
3067 self.tcx.parent_hir_node(expr.hir_id)
3068 {
3069 expr.hir_id == callee.hir_id
3070 } else {
3071 false
3072 };
3073 let expr_snippet =
3074 self.tcx.sess.source_map().span_to_snippet(expr.span).unwrap_or_default();
3075 let is_wrapped = expr_snippet.starts_with('(') && expr_snippet.ends_with(')');
3076 let after_open = expr.span.lo() + rustc_span::BytePos(1);
3077 let before_close = expr.span.hi() - rustc_span::BytePos(1);
3078
3079 if expr_is_call && is_wrapped {
3080 err.multipart_suggestion(
3081 "remove wrapping parentheses to call the method",
3082 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[(expr.span.with_hi(after_open), String::new()),
(expr.span.with_lo(before_close), String::new())]))vec![
3083 (expr.span.with_hi(after_open), String::new()),
3084 (expr.span.with_lo(before_close), String::new()),
3085 ],
3086 Applicability::MachineApplicable,
3087 );
3088 } else if !self.expr_in_place(expr.hir_id) {
3089 let span = if is_wrapped {
3091 expr.span.with_lo(after_open).with_hi(before_close)
3092 } else {
3093 expr.span
3094 };
3095 self.suggest_method_call(
3096 &mut err,
3097 "use parentheses to call the method",
3098 field,
3099 expr_t,
3100 expr,
3101 Some(span),
3102 );
3103 } else if let ty::RawPtr(ptr_ty, _) = expr_t.kind()
3104 && let ty::Adt(adt_def, _) = ptr_ty.kind()
3105 && let ExprKind::Field(base_expr, _) = expr.kind
3106 && let [variant] = &adt_def.variants().raw
3107 && variant.fields.iter().any(|f| f.ident(self.tcx) == field)
3108 {
3109 err.multipart_suggestion(
3110 "to access the field, dereference first",
3111 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[(base_expr.span.shrink_to_lo(), "(*".to_string()),
(base_expr.span.shrink_to_hi(), ")".to_string())]))vec![
3112 (base_expr.span.shrink_to_lo(), "(*".to_string()),
3113 (base_expr.span.shrink_to_hi(), ")".to_string()),
3114 ],
3115 Applicability::MaybeIncorrect,
3116 );
3117 } else {
3118 err.help("methods are immutable and cannot be assigned to");
3119 }
3120
3121 self.dcx().try_steal_replace_and_emit_err(field.span, StashKey::GenericInFieldExpr, err)
3123 }
3124
3125 fn point_at_param_definition(&self, err: &mut Diag<'_>, param: ty::ParamTy) {
3126 let generics = self.tcx.generics_of(self.body_def_id);
3127 let generic_param = generics.type_param(param, self.tcx);
3128 if let ty::GenericParamDefKind::Type { synthetic: true, .. } = generic_param.kind {
3129 return;
3130 }
3131 let param_def_id = generic_param.def_id;
3132 let param_hir_id = match param_def_id.as_local() {
3133 Some(x) => self.tcx.local_def_id_to_hir_id(x),
3134 None => return,
3135 };
3136 let param_span = self.tcx.hir_span(param_hir_id);
3137 let param_name = self.tcx.hir_ty_param_name(param_def_id.expect_local());
3138
3139 err.span_label(param_span, ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("type parameter \'{0}\' declared here",
param_name))
})format!("type parameter '{param_name}' declared here"));
3140 }
3141
3142 fn maybe_suggest_array_indexing(
3143 &self,
3144 err: &mut Diag<'_>,
3145 base: &hir::Expr<'_>,
3146 field: Ident,
3147 len: ty::Const<'tcx>,
3148 ) {
3149 err.span_label(field.span, "unknown field");
3150 if let (Some(len), Ok(user_index)) = (
3151 self.try_structurally_resolve_const(base.span, len).try_to_target_usize(self.tcx),
3152 field.as_str().parse::<u64>(),
3153 ) {
3154 let help = "instead of using tuple indexing, use array indexing";
3155 let applicability = if len < user_index {
3156 Applicability::MachineApplicable
3157 } else {
3158 Applicability::MaybeIncorrect
3159 };
3160 err.multipart_suggestion(
3161 help,
3162 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[(base.span.between(field.span), "[".to_string()),
(field.span.shrink_to_hi(), "]".to_string())]))vec![
3163 (base.span.between(field.span), "[".to_string()),
3164 (field.span.shrink_to_hi(), "]".to_string()),
3165 ],
3166 applicability,
3167 );
3168 }
3169 }
3170
3171 fn suggest_first_deref_field(&self, err: &mut Diag<'_>, base: &hir::Expr<'_>, field: Ident) {
3172 err.span_label(field.span, "unknown field");
3173 if base.span.from_expansion() || field.span.from_expansion() {
3174 return;
3175 }
3176 let val = if let Ok(base) = self.tcx.sess.source_map().span_to_snippet(base.span)
3177 && base.len() < 20
3178 {
3179 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}`", base))
})format!("`{base}`")
3180 } else {
3181 "the value".to_string()
3182 };
3183 err.multipart_suggestion(
3184 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0} is a raw pointer; try dereferencing it",
val))
})format!("{val} is a raw pointer; try dereferencing it"),
3185 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[(base.span.shrink_to_lo(), "(*".into()),
(base.span.between(field.span),
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")."))
}))]))vec![
3186 (base.span.shrink_to_lo(), "(*".into()),
3187 (base.span.between(field.span), format!(").")),
3188 ],
3189 Applicability::MaybeIncorrect,
3190 );
3191 }
3192
3193 fn no_such_field_err(
3194 &self,
3195 field: Ident,
3196 base_ty: Ty<'tcx>,
3197 expr: &hir::Expr<'tcx>,
3198 ) -> Diag<'_> {
3199 let span = field.span;
3200 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:3200",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(3200u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("no_such_field_err(span: {0:?}, field: {1:?}, expr_t: {2:?})",
span, field, base_ty) as &dyn ::tracing::field::Value))])
});
} else { ; }
};debug!("no_such_field_err(span: {:?}, field: {:?}, expr_t: {:?})", span, field, base_ty);
3201
3202 let mut err = self.dcx().create_err(NoFieldOnType { span, ty: base_ty, field });
3203 if base_ty.references_error() {
3204 err.downgrade_to_delayed_bug();
3205 }
3206
3207 if let Some(within_macro_span) = span.within_macro(expr.span, self.tcx.sess.source_map()) {
3208 err.span_label(within_macro_span, "due to this macro variable");
3209 }
3210
3211 if let Some(def_id) = base_ty.peel_refs().ty_adt_def().map(|d| d.did()) {
3213 for &impl_def_id in self.tcx.inherent_impls(def_id) {
3214 for item in self.tcx.associated_items(impl_def_id).in_definition_order() {
3215 if let ExprKind::Field(base_expr, _) = expr.kind
3216 && item.name() == field.name
3217 && #[allow(non_exhaustive_omitted_patterns)] match item.kind {
ty::AssocKind::Fn { has_self: false, .. } => true,
_ => false,
}matches!(item.kind, ty::AssocKind::Fn { has_self: false, .. })
3218 {
3219 err.span_label(field.span, "this is an associated function, not a method");
3220 err.note("found the following associated function; to be used as method, it must have a `self` parameter");
3221 let impl_ty =
3222 self.tcx.type_of(impl_def_id).instantiate_identity().skip_norm_wip();
3223 err.span_note(
3224 self.tcx.def_span(item.def_id),
3225 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("the candidate is defined in an impl for the type `{0}`",
impl_ty))
})format!("the candidate is defined in an impl for the type `{impl_ty}`"),
3226 );
3227
3228 let ty_str = match base_ty.peel_refs().kind() {
3229 ty::Adt(def, args) => self.tcx.def_path_str_with_args(def.did(), args),
3230 _ => base_ty.peel_refs().to_string(),
3231 };
3232 err.multipart_suggestion(
3233 "use associated function syntax instead",
3234 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[(base_expr.span, ty_str),
(base_expr.span.between(field.span), "::".to_string())]))vec![
3235 (base_expr.span, ty_str),
3236 (base_expr.span.between(field.span), "::".to_string()),
3237 ],
3238 Applicability::MaybeIncorrect,
3239 );
3240 return err;
3241 }
3242 }
3243 }
3244 }
3245
3246 let mod_id = self.tcx.parent_module(expr.hir_id).to_def_id();
3248 let (ty, unwrap) = if let ty::Adt(def, args) = base_ty.kind()
3249 && (self.tcx.is_diagnostic_item(sym::Result, def.did())
3250 || self.tcx.is_diagnostic_item(sym::Option, def.did()))
3251 && let Some(arg) = args.get(0)
3252 && let Some(ty) = arg.as_type()
3253 {
3254 (ty, "unwrap().")
3255 } else {
3256 (base_ty, "")
3257 };
3258 for found_fields in
3259 self.get_field_candidates_considering_privacy_for_diag(span, ty, mod_id, expr.hir_id)
3260 {
3261 let field_names = found_fields.iter().map(|field| field.0.name).collect::<Vec<_>>();
3262 let mut candidate_fields: Vec<_> = found_fields
3263 .into_iter()
3264 .filter_map(|candidate_field| {
3265 self.check_for_nested_field_satisfying_condition_for_diag(
3266 span,
3267 &|candidate_field, _| candidate_field == field,
3268 candidate_field,
3269 ::alloc::vec::Vec::new()vec![],
3270 mod_id,
3271 expr.hir_id,
3272 )
3273 })
3274 .map(|mut field_path| {
3275 field_path.pop();
3276 field_path.iter().map(|id| ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}.", id))
})format!("{}.", id)).collect::<String>()
3277 })
3278 .collect::<Vec<_>>();
3279 candidate_fields.sort();
3280
3281 let len = candidate_fields.len();
3282 if len > 0 && expr.span.eq_ctxt(field.span) {
3285 err.span_suggestions(
3286 field.span.shrink_to_lo(),
3287 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0} of the expressions\' fields {1} a field of the same name",
if len > 1 { "some" } else { "one" },
if len > 1 { "have" } else { "has" }))
})format!(
3288 "{} of the expressions' fields {} a field of the same name",
3289 if len > 1 { "some" } else { "one" },
3290 if len > 1 { "have" } else { "has" },
3291 ),
3292 candidate_fields.iter().map(|path| ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}{1}", unwrap, path))
})format!("{unwrap}{path}")),
3293 Applicability::MaybeIncorrect,
3294 );
3295 } else if let Some(field_name) =
3296 find_best_match_for_name(&field_names, field.name, None)
3297 && !(field.name.as_str().parse::<usize>().is_ok()
3298 && field_name.as_str().parse::<usize>().is_ok())
3299 {
3300 err.span_suggestion_verbose(
3301 field.span,
3302 "a field with a similar name exists",
3303 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{1}{0}", field_name, unwrap))
})format!("{unwrap}{}", field_name),
3304 Applicability::MaybeIncorrect,
3305 );
3306 } else if !field_names.is_empty() {
3307 let is = if field_names.len() == 1 { " is" } else { "s are" };
3308 err.note(
3309 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("available field{1}: {0}",
self.name_series_display(field_names), is))
})format!("available field{is}: {}", self.name_series_display(field_names),),
3310 );
3311 }
3312 }
3313 err
3314 }
3315
3316 fn private_field_err(&self, field: Ident, base_did: DefId) -> Diag<'_> {
3317 let struct_path = self.tcx().def_path_str(base_did);
3318 let kind_name = self.tcx().def_descr(base_did);
3319 {
self.dcx().struct_span_err(field.span,
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("field `{0}` of {1} `{2}` is private",
field, kind_name, struct_path))
})).with_code(E0616)
}struct_span_code_err!(
3320 self.dcx(),
3321 field.span,
3322 E0616,
3323 "field `{field}` of {kind_name} `{struct_path}` is private",
3324 )
3325 .with_span_label(field.span, "private field")
3326 }
3327
3328 pub(crate) fn get_field_candidates_considering_privacy_for_diag(
3329 &self,
3330 span: Span,
3331 base_ty: Ty<'tcx>,
3332 mod_id: DefId,
3333 hir_id: HirId,
3334 ) -> Vec<Vec<(Ident, Ty<'tcx>)>> {
3335 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_hir_typeck/src/expr.rs:3335",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(3335u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
__CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("get_field_candidates(span: {0:?}, base_t: {1:?}",
span, base_ty) as &dyn ::tracing::field::Value))])
});
} else { ; }
};debug!("get_field_candidates(span: {:?}, base_t: {:?}", span, base_ty);
3336
3337 let mut autoderef = self.autoderef(span, base_ty).silence_errors();
3338 let deref_chain: Vec<_> = autoderef.by_ref().collect();
3339
3340 if autoderef.reached_recursion_limit() {
3344 return ::alloc::vec::Vec::new()vec![];
3345 }
3346
3347 deref_chain
3348 .into_iter()
3349 .filter_map(move |(base_t, _)| {
3350 match base_t.kind() {
3351 ty::Adt(base_def, args) if !base_def.is_enum() => {
3352 let tcx = self.tcx;
3353 let fields = &base_def.non_enum_variant().fields;
3354 if fields.iter().all(|field| !field.vis.is_accessible_from(mod_id, tcx)) {
3358 return None;
3359 }
3360 return Some(
3361 fields
3362 .iter()
3363 .filter(move |field| {
3364 field.vis.is_accessible_from(mod_id, tcx)
3365 && self.is_field_suggestable(field, hir_id, span)
3366 })
3367 .take(100)
3369 .map(|field_def| {
3370 (
3371 field_def.ident(self.tcx).normalize_to_macros_2_0(),
3372 field_def.ty(self.tcx, args).skip_norm_wip(),
3373 )
3374 })
3375 .collect::<Vec<_>>(),
3376 );
3377 }
3378 ty::Tuple(types) => {
3379 return Some(
3380 types
3381 .iter()
3382 .enumerate()
3383 .take(100)
3385 .map(|(i, ty)| (Ident::from_str(&i.to_string()), ty))
3386 .collect::<Vec<_>>(),
3387 );
3388 }
3389 _ => None,
3390 }
3391 })
3392 .collect()
3393 }
3394
3395 #[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("check_for_nested_field_satisfying_condition_for_diag",
"rustc_hir_typeck::expr", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_hir_typeck/src/expr.rs"),
::tracing_core::__macro_support::Option::Some(3397u32),
::tracing_core::__macro_support::Option::Some("rustc_hir_typeck::expr"),
::tracing_core::field::FieldSet::new(&[{
const NAME:
::tracing::__macro_support::FieldName<{
::tracing::__macro_support::FieldName::len("span")
}> =
::tracing::__macro_support::FieldName::new("span");
NAME.as_str()
},
{
const NAME:
::tracing::__macro_support::FieldName<{
::tracing::__macro_support::FieldName::len("candidate_name")
}> =
::tracing::__macro_support::FieldName::new("candidate_name");
NAME.as_str()
},
{
const NAME:
::tracing::__macro_support::FieldName<{
::tracing::__macro_support::FieldName::len("candidate_ty")
}> =
::tracing::__macro_support::FieldName::new("candidate_ty");
NAME.as_str()
},
{
const NAME:
::tracing::__macro_support::FieldName<{
::tracing::__macro_support::FieldName::len("field_path")
}> =
::tracing::__macro_support::FieldName::new("field_path");
NAME.as_str()
}], ::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};
meta.fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&::tracing::field::debug(&span)
as &dyn ::tracing::field::Value)),
(::tracing::__macro_support::Option::Some(&::tracing::field::debug(&candidate_name)
as &dyn ::tracing::field::Value)),
(::tracing::__macro_support::Option::Some(&::tracing::field::debug(&candidate_ty)
as &dyn ::tracing::field::Value)),
(::tracing::__macro_support::Option::Some(&::tracing::field::debug(&field_path)
as &dyn ::tracing::field::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: Option<Vec<Ident>> = loop {};
return __tracing_attr_fake_return;
}
{
if field_path.len() > 3 { return None; }
field_path.push(candidate_name);
if matches(candidate_name, candidate_ty) {
return Some(field_path);
}
for nested_fields in
self.get_field_candidates_considering_privacy_for_diag(span,
candidate_ty, mod_id, hir_id) {
for field in nested_fields {
if let Some(field_path) =
self.check_for_nested_field_satisfying_condition_for_diag(span,
matches, field, field_path.clone(), mod_id, hir_id) {
return Some(field_path);
}
}
}
None
}
}
}#[instrument(skip(self, matches, mod_id, hir_id), level = "debug")]
3398 pub(crate) fn check_for_nested_field_satisfying_condition_for_diag(
3399 &self,
3400 span: Span,
3401 matches: &impl Fn(Ident, Ty<'tcx>) -> bool,
3402 (candidate_name, candidate_ty): (Ident, Ty<'tcx>),
3403 mut field_path: Vec<Ident>,
3404 mod_id: DefId,
3405 hir_id: HirId,
3406 ) -> Option<Vec<Ident>> {
3407 if field_path.len() > 3 {
3408 return None;
3411 }
3412 field_path.push(candidate_name);
3413 if matches(candidate_name, candidate_ty) {
3414 return Some(field_path);
3415 }
3416 for nested_fields in self.get_field_candidates_considering_privacy_for_diag(
3417 span,
3418 candidate_ty,
3419 mod_id,
3420 hir_id,
3421 ) {
3422 for field in nested_fields {
3424 if let Some(field_path) = self.check_for_nested_field_satisfying_condition_for_diag(
3425 span,
3426 matches,
3427 field,
3428 field_path.clone(),
3429 mod_id,
3430 hir_id,
3431 ) {
3432 return Some(field_path);
3433 }
3434 }
3435 }
3436 None
3437 }
3438
3439 fn check_expr_index(
3440 &self,
3441 base: &'tcx hir::Expr<'tcx>,
3442 idx: &'tcx hir::Expr<'tcx>,
3443 expr: &'tcx hir::Expr<'tcx>,
3444 brackets_span: Span,
3445 ) -> Ty<'tcx> {
3446 let base_t = self.check_expr(base);
3447 let idx_t = self.check_expr(idx);
3448
3449 if base_t.references_error() {
3450 base_t
3451 } else if idx_t.references_error() {
3452 idx_t
3453 } else {
3454 let base_t = self.structurally_resolve_type(base.span, base_t);
3455 match self.lookup_indexing(expr, base, base_t, idx, idx_t) {
3456 Some((index_ty, element_ty)) => {
3457 self.demand_coerce(idx, idx_t, index_ty, None, AllowTwoPhase::No);
3459 self.select_obligations_where_possible(|errors| {
3460 self.point_at_index(errors, idx.span);
3461 });
3462 element_ty
3463 }
3464 None => {
3465 for (base_t, _) in self.autoderef(base.span, base_t).silence_errors() {
3468 if let Some((_, index_ty, element_ty)) =
3469 self.find_and_report_unsatisfied_index_impl(base, base_t)
3470 {
3471 self.demand_coerce(idx, idx_t, index_ty, None, AllowTwoPhase::No);
3472 return element_ty;
3473 }
3474 }
3475
3476 let mut err = {
let mut err =
{
self.dcx().struct_span_err(brackets_span,
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("cannot index into a value of type `{0}`",
base_t))
})).with_code(E0608)
};
if base_t.references_error() { err.downgrade_to_delayed_bug(); }
err
}type_error_struct!(
3477 self.dcx(),
3478 brackets_span,
3479 base_t,
3480 E0608,
3481 "cannot index into a value of type `{base_t}`",
3482 );
3483 if let ty::Tuple(types) = base_t.kind() {
3485 err.help(
3486 "tuples are indexed with a dot and a literal index: `tuple.0`, `tuple.1`, etc.",
3487 );
3488 if let ExprKind::Lit(lit) = idx.kind
3490 && let ast::LitKind::Int(i, ast::LitIntType::Unsuffixed) = lit.node
3491 && i.get() < types.len().try_into().expect("tuple length fits in u128")
3492 {
3493 err.span_suggestion(
3494 brackets_span,
3495 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("to access tuple element `{0}`, use",
i))
})format!("to access tuple element `{i}`, use"),
3496 ::alloc::__export::must_use({ ::alloc::fmt::format(format_args!(".{0}", i)) })format!(".{i}"),
3497 Applicability::MachineApplicable,
3498 );
3499 }
3500 }
3501
3502 if base_t.is_raw_ptr() && idx_t.is_integral() {
3503 err.multipart_suggestion(
3504 "consider using `wrapping_add` or `add` for indexing into raw pointer",
3505 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[(base.span.between(idx.span), ".wrapping_add(".to_owned()),
(idx.span.shrink_to_hi().until(expr.span.shrink_to_hi()),
")".to_owned())]))vec![
3506 (base.span.between(idx.span), ".wrapping_add(".to_owned()),
3507 (
3508 idx.span.shrink_to_hi().until(expr.span.shrink_to_hi()),
3509 ")".to_owned(),
3510 ),
3511 ],
3512 Applicability::MaybeIncorrect,
3513 );
3514 }
3515
3516 let reported = err.emit();
3517 Ty::new_error(self.tcx, reported)
3518 }
3519 }
3520 }
3521 }
3522
3523 fn find_and_report_unsatisfied_index_impl(
3531 &self,
3532 base_expr: &hir::Expr<'_>,
3533 base_ty: Ty<'tcx>,
3534 ) -> Option<(ErrorGuaranteed, Ty<'tcx>, Ty<'tcx>)> {
3535 let index_trait_def_id = self.tcx.lang_items().index_trait()?;
3536 let index_trait_output_def_id = self.tcx.get_diagnostic_item(sym::IndexOutput)?;
3537
3538 let mut relevant_impls = ::alloc::vec::Vec::new()vec![];
3539 self.tcx.for_each_relevant_impl(index_trait_def_id, base_ty, |impl_def_id| {
3540 relevant_impls.push(impl_def_id);
3541 });
3542 let [impl_def_id] = relevant_impls[..] else {
3543 return None;
3545 };
3546
3547 self.commit_if_ok(|snapshot| {
3548 let outer_universe = self.universe();
3549
3550 let ocx = ObligationCtxt::new_with_diagnostics(self);
3551 let impl_args = self.fresh_args_for_item(base_expr.span, impl_def_id);
3552 let impl_trait_ref =
3553 self.tcx.impl_trait_ref(impl_def_id).instantiate(self.tcx, impl_args);
3554 let cause = self.misc(base_expr.span);
3555
3556 let impl_trait_ref = ocx.normalize(&cause, self.param_env, impl_trait_ref);
3559 ocx.eq(&cause, self.param_env, base_ty, impl_trait_ref.self_ty())?;
3560
3561 let unnormalized_predicates =
3565 self.tcx.predicates_of(impl_def_id).instantiate(self.tcx, impl_args);
3566 ocx.register_obligations(traits::predicates_for_generics(
3567 |idx, span| {
3568 cause.clone().derived_cause(
3569 ty::Binder::dummy(ty::TraitPredicate {
3570 trait_ref: impl_trait_ref,
3571 polarity: ty::PredicatePolarity::Positive,
3572 }),
3573 |derived| {
3574 ObligationCauseCode::ImplDerived(Box::new(traits::ImplDerivedCause {
3575 derived,
3576 impl_or_alias_def_id: impl_def_id,
3577 impl_def_predicate_index: Some(idx),
3578 span,
3579 }))
3580 },
3581 )
3582 },
3583 |pred| ocx.normalize(&cause, self.param_env, pred),
3584 self.param_env,
3585 unnormalized_predicates,
3586 ));
3587
3588 let element_ty = ocx.normalize(
3591 &cause,
3592 self.param_env,
3593 Unnormalized::new(Ty::new_projection_from_args(
3594 self.tcx,
3595 ty::IsRigid::No,
3596 index_trait_output_def_id,
3597 impl_trait_ref.args,
3598 )),
3599 );
3600
3601 let true_errors = ocx.try_evaluate_obligations();
3602
3603 self.leak_check(outer_universe, Some(snapshot))?;
3607
3608 let ambiguity_errors = ocx.evaluate_obligations_error_on_ambiguity();
3610 if true_errors.is_empty() && !ambiguity_errors.is_empty() {
3611 return Err(NoSolution);
3612 }
3613
3614 Ok::<_, NoSolution>((
3617 self.err_ctxt().report_fulfillment_errors(true_errors),
3618 impl_trait_ref.args.type_at(1),
3619 element_ty,
3620 ))
3621 })
3622 .ok()
3623 }
3624
3625 fn point_at_index(&self, errors: &mut Vec<traits::FulfillmentError<'tcx>>, span: Span) {
3626 let mut seen_preds = FxHashSet::default();
3627 errors.sort_by_key(|error| error.root_obligation.recursion_depth);
3631 for error in errors {
3632 match (
3633 error.root_obligation.predicate.kind().skip_binder(),
3634 error.obligation.predicate.kind().skip_binder(),
3635 ) {
3636 (ty::PredicateKind::Clause(ty::ClauseKind::Trait(predicate)), _)
3637 if self.tcx.is_lang_item(predicate.trait_ref.def_id, LangItem::Index) =>
3638 {
3639 seen_preds.insert(error.obligation.predicate.kind().skip_binder());
3640 }
3641 (_, ty::PredicateKind::Clause(ty::ClauseKind::Trait(predicate)))
3642 if self.tcx.is_diagnostic_item(sym::SliceIndex, predicate.trait_ref.def_id) =>
3643 {
3644 seen_preds.insert(error.obligation.predicate.kind().skip_binder());
3645 }
3646 (root, pred) if seen_preds.contains(&pred) || seen_preds.contains(&root) => {}
3647 _ => continue,
3648 }
3649 error.obligation.cause.span = span;
3650 }
3651 }
3652
3653 fn check_expr_yield(
3654 &self,
3655 value: &'tcx hir::Expr<'tcx>,
3656 expr: &'tcx hir::Expr<'tcx>,
3657 ) -> Ty<'tcx> {
3658 match self.coroutine_types {
3659 Some(CoroutineTypes { resume_ty, yield_ty }) => {
3660 self.check_expr_coercible_to_type(value, yield_ty, None);
3661
3662 resume_ty
3663 }
3664 _ => {
3665 self.dcx().emit_err(YieldExprOutsideOfCoroutine { span: expr.span });
3666 self.check_expr(value);
3668 self.tcx.types.unit
3669 }
3670 }
3671 }
3672
3673 fn check_expr_asm_operand(&self, expr: &'tcx hir::Expr<'tcx>, is_input: bool) {
3674 let needs = if is_input { Needs::None } else { Needs::MutPlace };
3675 let ty = self.check_expr_with_needs(expr, needs);
3676 self.require_type_is_sized(ty, expr.span, ObligationCauseCode::InlineAsmSized);
3677
3678 if !is_input && !expr.is_syntactic_place_expr() {
3679 self.dcx()
3680 .struct_span_err(expr.span, "invalid asm output")
3681 .with_span_label(expr.span, "cannot assign to this expression")
3682 .emit();
3683 }
3684
3685 if is_input {
3693 let ty = self.structurally_resolve_type(expr.span, ty);
3694 match *ty.kind() {
3695 ty::FnDef(..) => {
3696 let fnptr_ty = Ty::new_fn_ptr(self.tcx, ty.fn_sig(self.tcx));
3697 self.demand_coerce(expr, ty, fnptr_ty, None, AllowTwoPhase::No);
3698 }
3699 ty::Ref(_, base_ty, mutbl) => {
3700 let ptr_ty = Ty::new_ptr(self.tcx, base_ty, mutbl);
3701 self.demand_coerce(expr, ty, ptr_ty, None, AllowTwoPhase::No);
3702 }
3703 _ => {}
3704 }
3705 }
3706 }
3707
3708 fn check_expr_asm(&self, asm: &'tcx hir::InlineAsm<'tcx>, span: Span) -> Ty<'tcx> {
3709 if let rustc_ast::AsmMacro::NakedAsm = asm.asm_macro {
3710 if !{
{
'done:
{
for i in
::rustc_hir::attrs::HasAttrs::get_attrs(self.body_def_id,
&self.tcx) {
#[allow(unused_imports)]
use rustc_hir::attrs::AttributeKind::*;
let i: &rustc_hir::Attribute = i;
match i {
rustc_hir::Attribute::Parsed(Naked(..)) => {
break 'done Some(());
}
rustc_hir::Attribute::Unparsed(..) =>
{}
#[deny(unreachable_patterns)]
_ => {}
}
}
None
}
}
}.is_some()find_attr!(self.tcx, self.body_def_id, Naked(..)) {
3711 self.tcx.dcx().emit_err(NakedAsmOutsideNakedFn { span });
3712 }
3713 }
3714
3715 let mut diverge = asm.asm_macro.diverges(asm.options);
3716
3717 for (op, _op_sp) in asm.operands {
3718 match *op {
3719 hir::InlineAsmOperand::In { expr, .. } => {
3720 self.check_expr_asm_operand(expr, true);
3721 }
3722 hir::InlineAsmOperand::Out { expr: Some(expr), .. }
3723 | hir::InlineAsmOperand::InOut { expr, .. } => {
3724 self.check_expr_asm_operand(expr, false);
3725 }
3726 hir::InlineAsmOperand::Out { expr: None, .. } => {}
3727 hir::InlineAsmOperand::SplitInOut { in_expr, out_expr, .. } => {
3728 self.check_expr_asm_operand(in_expr, true);
3729 if let Some(out_expr) = out_expr {
3730 self.check_expr_asm_operand(out_expr, false);
3731 }
3732 }
3733 hir::InlineAsmOperand::Const { ref anon_const } => {
3734 self.check_expr_const_block(anon_const, Expectation::NoExpectation);
3735 }
3736 hir::InlineAsmOperand::SymFn { expr } => {
3737 self.check_expr(expr);
3738 }
3739 hir::InlineAsmOperand::SymStatic { .. } => {}
3740 hir::InlineAsmOperand::Label { block } => {
3741 let previous_diverges = self.diverges.get();
3742
3743 let ty = self.check_expr_block(block, ExpectHasType(self.tcx.types.unit));
3745 if !ty.is_never() {
3746 self.demand_suptype(block.span, self.tcx.types.unit, ty);
3747 diverge = false;
3748 }
3749
3750 self.diverges.set(previous_diverges);
3752 }
3753 }
3754 }
3755
3756 if diverge { self.tcx.types.never } else { self.tcx.types.unit }
3757 }
3758
3759 fn check_expr_offset_of(
3760 &self,
3761 container: &'tcx hir::Ty<'tcx>,
3762 fields: &[Ident],
3763 expr: &'tcx hir::Expr<'tcx>,
3764 ) -> Ty<'tcx> {
3765 let mut current_container = self.lower_ty(container).normalized;
3766 let mut field_indices = Vec::with_capacity(fields.len());
3767 let mut fields = fields.into_iter();
3768
3769 while let Some(&field) = fields.next() {
3770 let container = self.structurally_resolve_type(expr.span, current_container);
3771
3772 match container.kind() {
3773 ty::Adt(container_def, args) if container_def.is_enum() => {
3774 let ident = self.tcx.adjust_ident(field, container_def.did());
3775
3776 if !self.tcx.features().offset_of_enum() {
3777 rustc_session::diagnostics::feature_err(
3778 &self.tcx.sess,
3779 sym::offset_of_enum,
3780 ident.span,
3781 "using enums in offset_of is experimental",
3782 )
3783 .emit();
3784 }
3785
3786 let Some((index, variant)) = container_def
3787 .variants()
3788 .iter_enumerated()
3789 .find(|(_, v)| v.ident(self.tcx).normalize_to_macros_2_0() == ident)
3790 else {
3791 self.dcx()
3792 .create_err(NoVariantNamed { span: ident.span, ident, ty: container })
3793 .with_span_label(field.span, "variant not found")
3794 .emit_unless_delay(container.references_error());
3795 break;
3796 };
3797 let Some(&subfield) = fields.next() else {
3798 {
let mut err =
{
self.dcx().struct_span_err(ident.span,
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}` is an enum variant; expected field at end of `offset_of`",
ident))
})).with_code(E0795)
};
if container.references_error() { err.downgrade_to_delayed_bug(); }
err
}type_error_struct!(
3799 self.dcx(),
3800 ident.span,
3801 container,
3802 E0795,
3803 "`{ident}` is an enum variant; expected field at end of `offset_of`",
3804 )
3805 .with_span_label(field.span, "enum variant")
3806 .emit();
3807 break;
3808 };
3809 let (subident, sub_def_scope) = self.tcx.adjust_ident_and_get_scope(
3810 subfield,
3811 variant.def_id,
3812 self.body_def_id,
3813 );
3814
3815 let Some((subindex, field)) = variant
3816 .fields
3817 .iter_enumerated()
3818 .find(|(_, f)| f.ident(self.tcx).normalize_to_macros_2_0() == subident)
3819 else {
3820 self.dcx()
3821 .create_err(NoFieldOnVariant {
3822 span: ident.span,
3823 container,
3824 ident,
3825 field: subfield,
3826 enum_span: field.span,
3827 field_span: subident.span,
3828 })
3829 .emit_unless_delay(container.references_error());
3830 break;
3831 };
3832
3833 let field_ty = self.field_ty(expr.span, field, args);
3834
3835 self.require_type_is_sized(
3838 field_ty,
3839 expr.span,
3840 ObligationCauseCode::FieldSized {
3841 adt_kind: AdtKind::Enum,
3842 span: self.tcx.def_span(field.did),
3843 last: false,
3844 },
3845 );
3846
3847 if field.vis.is_accessible_from(sub_def_scope, self.tcx) {
3848 self.tcx.check_stability(field.did, Some(expr.hir_id), expr.span, None);
3849 } else {
3850 self.private_field_err(ident, container_def.did()).emit();
3851 }
3852
3853 field_indices.push((current_container, index, subindex));
3856 current_container = field_ty;
3857
3858 continue;
3859 }
3860 ty::Adt(container_def, args) => {
3861 let (ident, def_scope) = self.tcx.adjust_ident_and_get_scope(
3862 field,
3863 container_def.did(),
3864 self.body_def_id,
3865 );
3866
3867 let fields = &container_def.non_enum_variant().fields;
3868 if let Some((index, field)) = fields
3869 .iter_enumerated()
3870 .find(|(_, f)| f.ident(self.tcx).normalize_to_macros_2_0() == ident)
3871 {
3872 let field_ty = self.field_ty(expr.span, field, args);
3873
3874 if self.tcx.features().offset_of_slice() {
3875 self.require_type_has_static_alignment(field_ty, expr.span);
3876 } else {
3877 self.require_type_is_sized(
3878 field_ty,
3879 expr.span,
3880 ObligationCauseCode::Misc,
3881 );
3882 }
3883
3884 if field.vis.is_accessible_from(def_scope, self.tcx) {
3885 self.tcx.check_stability(field.did, Some(expr.hir_id), expr.span, None);
3886 } else {
3887 self.private_field_err(ident, container_def.did()).emit();
3888 }
3889
3890 field_indices.push((current_container, FIRST_VARIANT, index));
3893 current_container = field_ty;
3894
3895 continue;
3896 }
3897 }
3898 ty::Tuple(tys) => {
3899 if let Ok(index) = field.as_str().parse::<usize>()
3900 && field.name == sym::integer(index)
3901 {
3902 if let Some(&field_ty) = tys.get(index) {
3903 if self.tcx.features().offset_of_slice() {
3904 self.require_type_has_static_alignment(field_ty, expr.span);
3905 } else {
3906 self.require_type_is_sized(
3907 field_ty,
3908 expr.span,
3909 ObligationCauseCode::Misc,
3910 );
3911 }
3912
3913 field_indices.push((current_container, FIRST_VARIANT, index.into()));
3914 current_container = field_ty;
3915
3916 continue;
3917 }
3918 }
3919 }
3920 _ => (),
3921 };
3922
3923 self.no_such_field_err(field, container, expr).emit();
3924
3925 break;
3926 }
3927
3928 self.typeck_results.borrow_mut().offset_of_data_mut().insert(expr.hir_id, field_indices);
3929
3930 self.tcx.types.usize
3931 }
3932}