1use std::borrow::Cow;
4use std::path::PathBuf;
5
6use rustc_ast::token::{self, InvisibleOrigin, MetaVarKind, Token};
7use rustc_ast_pretty::pprust;
8use rustc_errors::codes::*;
9use rustc_errors::{
10 Applicability, Diag, DiagArgValue, DiagCtxtHandle, Diagnostic, EmissionGuarantee, IntoDiagArg,
11 Level, Subdiagnostic, SuggestionStyle, msg,
12};
13use rustc_macros::{Diagnostic, Subdiagnostic};
14use rustc_span::edition::{Edition, LATEST_STABLE_EDITION};
15use rustc_span::{Ident, Span, Symbol};
16
17#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for AmbiguousPlus
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AmbiguousPlus { span: __binding_0, suggestion: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("ambiguous `+` in a type")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
18#[diag("ambiguous `+` in a type")]
19pub(crate) struct AmbiguousPlus {
20 #[primary_span]
21 pub span: Span,
22 #[subdiagnostic]
23 pub suggestion: AddParen,
24}
25
26#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for BadTypePlus
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BadTypePlus { span: __binding_0, sub: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected a path on the left-hand side of `+`")));
diag.code(E0178);
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
27#[diag("expected a path on the left-hand side of `+`", code = E0178)]
28pub(crate) struct BadTypePlus {
29 #[primary_span]
30 pub span: Span,
31 #[subdiagnostic]
32 pub sub: BadTypePlusSub,
33}
34
35#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for AddParen {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
AddParen { lo: __binding_0, hi: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_0 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_1 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_0));
suggestions.push((__binding_1, __code_1));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try adding parentheses")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
36#[multipart_suggestion("try adding parentheses", applicability = "machine-applicable")]
37pub(crate) struct AddParen {
38 #[suggestion_part(code = "(")]
39 pub lo: Span,
40 #[suggestion_part(code = ")")]
41 pub hi: Span,
42}
43
44#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for BadTypePlusSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
BadTypePlusSub::AddParen { suggestion: __binding_0 } => {
__binding_0.add_to_diag(diag);
let mut sub_args = rustc_errors::DiagArgMap::default();
}
BadTypePlusSub::ForgotParen { span: __binding_0 } => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("perhaps you forgot parentheses?")),
&sub_args);
diag.span_label(__binding_0, __message);
}
BadTypePlusSub::ExpectPath { span: __binding_0 } => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected a path")),
&sub_args);
diag.span_label(__binding_0, __message);
}
}
}
}
};Subdiagnostic)]
45pub(crate) enum BadTypePlusSub {
46 AddParen {
47 #[subdiagnostic]
48 suggestion: AddParen,
49 },
50 #[label("perhaps you forgot parentheses?")]
51 ForgotParen {
52 #[primary_span]
53 span: Span,
54 },
55 #[label("expected a path")]
56 ExpectPath {
57 #[primary_span]
58 span: Span,
59 },
60}
61
62#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for BadQPathStage2
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BadQPathStage2 { span: __binding_0, wrap: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing angle brackets in associated item path")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
63#[diag("missing angle brackets in associated item path")]
64pub(crate) struct BadQPathStage2 {
65 #[primary_span]
66 pub span: Span,
67 #[subdiagnostic]
68 pub wrap: WrapType,
69}
70
71#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
TraitImplModifierInInherentImpl where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
TraitImplModifierInInherentImpl {
span: __binding_0,
modifier: __binding_1,
modifier_name: __binding_2,
modifier_span: __binding_3,
self_ty: __binding_4 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("inherent impls cannot be {$modifier_name}")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("only trait implementations may be annotated with `{$modifier}`")));
;
diag.arg("modifier", __binding_1);
diag.arg("modifier_name", __binding_2);
diag.span(__binding_0);
diag.span_label(__binding_3,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$modifier_name} because of this")));
diag.span_label(__binding_4,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("inherent impl for this type")));
diag
}
}
}
}
};Diagnostic)]
72#[diag("inherent impls cannot be {$modifier_name}")]
73#[note("only trait implementations may be annotated with `{$modifier}`")]
74pub(crate) struct TraitImplModifierInInherentImpl {
75 #[primary_span]
76 pub span: Span,
77 pub modifier: &'static str,
78 pub modifier_name: &'static str,
79 #[label("{$modifier_name} because of this")]
80 pub modifier_span: Span,
81 #[label("inherent impl for this type")]
82 pub self_ty: Span,
83}
84
85#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for WrapType {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
WrapType { lo: __binding_0, hi: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_2 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("<"))
});
let __code_3 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(">"))
});
suggestions.push((__binding_0, __code_2));
suggestions.push((__binding_1, __code_3));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("types that don't start with an identifier need to be surrounded with angle brackets in qualified paths")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
86#[multipart_suggestion(
87 "types that don't start with an identifier need to be surrounded with angle brackets in qualified paths",
88 applicability = "machine-applicable"
89)]
90pub(crate) struct WrapType {
91 #[suggestion_part(code = "<")]
92 pub lo: Span,
93 #[suggestion_part(code = ">")]
94 pub hi: Span,
95}
96
97#[derive(const _: () =
{
impl<'_sess, 'a, G> rustc_errors::Diagnostic<'_sess, G> for
IncorrectSemicolon<'a> where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
IncorrectSemicolon {
span: __binding_0, show_help: __binding_1, name: __binding_2
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected item, found `;`")));
let __code_4 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.arg("name", __binding_2);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove this semicolon")),
__code_4, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
if __binding_1 {
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$name} declarations are not followed by a semicolon")));
}
diag
}
}
}
}
};Diagnostic)]
98#[diag("expected item, found `;`")]
99pub(crate) struct IncorrectSemicolon<'a> {
100 #[primary_span]
101 #[suggestion(
102 "remove this semicolon",
103 style = "verbose",
104 code = "",
105 applicability = "machine-applicable"
106 )]
107 pub span: Span,
108 #[help("{$name} declarations are not followed by a semicolon")]
109 pub show_help: bool,
110 pub name: &'a str,
111}
112
113#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
IncorrectUseOfAwait where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
IncorrectUseOfAwait { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("incorrect use of `await`")));
let __code_5 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`await` is not a method call, remove the parentheses")),
__code_5, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
114#[diag("incorrect use of `await`")]
115pub(crate) struct IncorrectUseOfAwait {
116 #[primary_span]
117 #[suggestion(
118 "`await` is not a method call, remove the parentheses",
119 style = "verbose",
120 code = "",
121 applicability = "machine-applicable"
122 )]
123 pub span: Span,
124}
125
126#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
IncorrectUseOfUse where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
IncorrectUseOfUse { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("incorrect use of `use`")));
let __code_6 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`use` is not a method call, try removing the parentheses")),
__code_6, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
127#[diag("incorrect use of `use`")]
128pub(crate) struct IncorrectUseOfUse {
129 #[primary_span]
130 #[suggestion(
131 "`use` is not a method call, try removing the parentheses",
132 style = "verbose",
133 code = "",
134 applicability = "machine-applicable"
135 )]
136 pub span: Span,
137}
138
139#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for AwaitSuggestion {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
AwaitSuggestion {
removal: __binding_0,
dot_await: __binding_1,
question_mark: __binding_2 } => {
let mut suggestions = Vec::new();
let __code_7 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
let __code_8 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(".await{0}", __binding_2))
});
suggestions.push((__binding_0, __code_7));
suggestions.push((__binding_1, __code_8));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`await` is a postfix operation")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
140#[multipart_suggestion("`await` is a postfix operation", applicability = "machine-applicable")]
141pub(crate) struct AwaitSuggestion {
142 #[suggestion_part(code = "")]
143 pub removal: Span,
144 #[suggestion_part(code = ".await{question_mark}")]
145 pub dot_await: Span,
146 pub question_mark: &'static str,
147}
148
149#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for IncorrectAwait
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
IncorrectAwait { span: __binding_0, suggestion: __binding_1
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("incorrect use of `await`")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
150#[diag("incorrect use of `await`")]
151pub(crate) struct IncorrectAwait {
152 #[primary_span]
153 pub span: Span,
154 #[subdiagnostic]
155 pub suggestion: AwaitSuggestion,
156}
157
158#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for InInTypo where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InInTypo { span: __binding_0, sugg_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected iterable, found keyword `in`")));
let __code_9 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the duplicated `in`")),
__code_9, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
159#[diag("expected iterable, found keyword `in`")]
160pub(crate) struct InInTypo {
161 #[primary_span]
162 pub span: Span,
163 #[suggestion(
164 "remove the duplicated `in`",
165 code = "",
166 style = "verbose",
167 applicability = "machine-applicable"
168 )]
169 pub sugg_span: Span,
170}
171
172#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidVariableDeclaration where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidVariableDeclaration {
span: __binding_0, sub: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid variable declaration")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
173#[diag("invalid variable declaration")]
174pub(crate) struct InvalidVariableDeclaration {
175 #[primary_span]
176 pub span: Span,
177 #[subdiagnostic]
178 pub sub: InvalidVariableDeclarationSub,
179}
180
181#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for InvalidVariableDeclarationSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
InvalidVariableDeclarationSub::SwitchMutLetOrder(__binding_0)
=> {
let __code_10 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("let mut"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("switch the order of `mut` and `let`")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_10, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
InvalidVariableDeclarationSub::MissingLet(__binding_0) => {
let __code_11 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("let mut"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing keyword")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_11, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
InvalidVariableDeclarationSub::UseLetNotAuto(__binding_0) =>
{
let __code_12 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("let"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("write `let` instead of `auto` to introduce a new variable")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_12, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
InvalidVariableDeclarationSub::UseLetNotVar(__binding_0) =>
{
let __code_13 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("let"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("write `let` instead of `var` to introduce a new variable")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_13, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
182pub(crate) enum InvalidVariableDeclarationSub {
183 #[suggestion(
184 "switch the order of `mut` and `let`",
185 style = "verbose",
186 applicability = "maybe-incorrect",
187 code = "let mut"
188 )]
189 SwitchMutLetOrder(#[primary_span] Span),
190 #[suggestion(
191 "missing keyword",
192 applicability = "machine-applicable",
193 style = "verbose",
194 code = "let mut"
195 )]
196 MissingLet(#[primary_span] Span),
197 #[suggestion(
198 "write `let` instead of `auto` to introduce a new variable",
199 style = "verbose",
200 applicability = "machine-applicable",
201 code = "let"
202 )]
203 UseLetNotAuto(#[primary_span] Span),
204 #[suggestion(
205 "write `let` instead of `var` to introduce a new variable",
206 style = "verbose",
207 applicability = "machine-applicable",
208 code = "let"
209 )]
210 UseLetNotVar(#[primary_span] Span),
211}
212
213#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
SwitchRefBoxOrder where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
SwitchRefBoxOrder { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("switch the order of `ref` and `box`")));
let __code_14 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("box ref"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("swap them")),
__code_14, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
214#[diag("switch the order of `ref` and `box`")]
215pub(crate) struct SwitchRefBoxOrder {
216 #[primary_span]
217 #[suggestion(
218 "swap them",
219 applicability = "machine-applicable",
220 style = "verbose",
221 code = "box ref"
222 )]
223 pub span: Span,
224}
225
226#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidComparisonOperator where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidComparisonOperator {
span: __binding_0, invalid: __binding_1, sub: __binding_2 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid comparison operator `{$invalid}`")));
;
diag.arg("invalid", __binding_1);
diag.span(__binding_0);
diag.subdiagnostic(__binding_2);
diag
}
}
}
}
};Diagnostic)]
227#[diag("invalid comparison operator `{$invalid}`")]
228pub(crate) struct InvalidComparisonOperator {
229 #[primary_span]
230 pub span: Span,
231 pub invalid: String,
232 #[subdiagnostic]
233 pub sub: InvalidComparisonOperatorSub,
234}
235
236#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for InvalidComparisonOperatorSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
InvalidComparisonOperatorSub::Correctable {
span: __binding_0,
invalid: __binding_1,
correct: __binding_2 } => {
let __code_15 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_2))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("invalid".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_1,
&mut diag.long_ty_path));
sub_args.insert("correct".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_2,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`{$invalid}` is not a valid comparison operator, use `{$correct}`")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_15, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
InvalidComparisonOperatorSub::Spaceship(__binding_0) => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`<=>` is not a valid comparison operator, use `std::cmp::Ordering`")),
&sub_args);
diag.span_label(__binding_0, __message);
}
}
}
}
};Subdiagnostic)]
237pub(crate) enum InvalidComparisonOperatorSub {
238 #[suggestion(
239 "`{$invalid}` is not a valid comparison operator, use `{$correct}`",
240 style = "verbose",
241 applicability = "machine-applicable",
242 code = "{correct}"
243 )]
244 Correctable {
245 #[primary_span]
246 span: Span,
247 invalid: String,
248 correct: String,
249 },
250 #[label("`<=>` is not a valid comparison operator, use `std::cmp::Ordering`")]
251 Spaceship(#[primary_span] Span),
252}
253
254#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidLogicalOperator where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidLogicalOperator {
span: __binding_0, incorrect: __binding_1, sub: __binding_2
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`{$incorrect}` is not a logical operator")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unlike in e.g., Python and PHP, `&&` and `||` are used for logical operators")));
;
diag.arg("incorrect", __binding_1);
diag.span(__binding_0);
diag.subdiagnostic(__binding_2);
diag
}
}
}
}
};Diagnostic)]
255#[diag("`{$incorrect}` is not a logical operator")]
256#[note("unlike in e.g., Python and PHP, `&&` and `||` are used for logical operators")]
257pub(crate) struct InvalidLogicalOperator {
258 #[primary_span]
259 pub span: Span,
260 pub incorrect: String,
261 #[subdiagnostic]
262 pub sub: InvalidLogicalOperatorSub,
263}
264
265#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for InvalidLogicalOperatorSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
InvalidLogicalOperatorSub::Conjunction(__binding_0) => {
let __code_16 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("&&"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `&&` to perform logical conjunction")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_16, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
InvalidLogicalOperatorSub::Disjunction(__binding_0) => {
let __code_17 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("||"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `||` to perform logical disjunction")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_17, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
266pub(crate) enum InvalidLogicalOperatorSub {
267 #[suggestion(
268 "use `&&` to perform logical conjunction",
269 style = "verbose",
270 applicability = "machine-applicable",
271 code = "&&"
272 )]
273 Conjunction(#[primary_span] Span),
274 #[suggestion(
275 "use `||` to perform logical disjunction",
276 style = "verbose",
277 applicability = "machine-applicable",
278 code = "||"
279 )]
280 Disjunction(#[primary_span] Span),
281}
282
283#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
TildeAsUnaryOperator where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
TildeAsUnaryOperator(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`~` cannot be used as a unary operator")));
let __code_18 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("!"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `!` to perform bitwise not")),
__code_18, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
284#[diag("`~` cannot be used as a unary operator")]
285pub(crate) struct TildeAsUnaryOperator(
286 #[primary_span]
287 #[suggestion(
288 "use `!` to perform bitwise not",
289 style = "verbose",
290 applicability = "machine-applicable",
291 code = "!"
292 )]
293 pub Span,
294);
295
296#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
NotAsNegationOperator where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
NotAsNegationOperator {
negated: __binding_0,
negated_desc: __binding_1,
sub: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected {$negated_desc} after identifier")));
;
diag.arg("negated_desc", __binding_1);
diag.span(__binding_0);
diag.subdiagnostic(__binding_2);
diag
}
}
}
}
};Diagnostic)]
297#[diag("unexpected {$negated_desc} after identifier")]
298pub(crate) struct NotAsNegationOperator {
299 #[primary_span]
300 pub negated: Span,
301 pub negated_desc: String,
302 #[subdiagnostic]
303 pub sub: NotAsNegationOperatorSub,
304}
305
306#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for NotAsNegationOperatorSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
NotAsNegationOperatorSub::SuggestNotDefault(__binding_0) =>
{
let __code_19 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("!"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `!` to perform logical negation or bitwise not")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_19, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
NotAsNegationOperatorSub::SuggestNotBitwise(__binding_0) =>
{
let __code_20 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("!"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `!` to perform bitwise not")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_20, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
NotAsNegationOperatorSub::SuggestNotLogical(__binding_0) =>
{
let __code_21 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("!"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `!` to perform logical negation")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_21, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
307pub(crate) enum NotAsNegationOperatorSub {
308 #[suggestion(
309 "use `!` to perform logical negation or bitwise not",
310 style = "verbose",
311 applicability = "machine-applicable",
312 code = "!"
313 )]
314 SuggestNotDefault(#[primary_span] Span),
315
316 #[suggestion(
317 "use `!` to perform bitwise not",
318 style = "verbose",
319 applicability = "machine-applicable",
320 code = "!"
321 )]
322 SuggestNotBitwise(#[primary_span] Span),
323
324 #[suggestion(
325 "use `!` to perform logical negation",
326 style = "verbose",
327 applicability = "machine-applicable",
328 code = "!"
329 )]
330 SuggestNotLogical(#[primary_span] Span),
331}
332
333#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MalformedLoopLabel where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MalformedLoopLabel {
span: __binding_0, suggestion: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("malformed loop label")));
let __code_22 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("\'"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use the correct loop label format")),
__code_22, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
334#[diag("malformed loop label")]
335pub(crate) struct MalformedLoopLabel {
336 #[primary_span]
337 pub span: Span,
338 #[suggestion(
339 "use the correct loop label format",
340 applicability = "machine-applicable",
341 code = "'",
342 style = "verbose"
343 )]
344 pub suggestion: Span,
345}
346
347#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
LifetimeInBorrowExpression where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
LifetimeInBorrowExpression {
span: __binding_0, lifetime_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("borrow expressions cannot be annotated with lifetimes")));
let __code_23 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the lifetime annotation")),
__code_23, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("annotated with lifetime here")));
diag
}
}
}
}
};Diagnostic)]
348#[diag("borrow expressions cannot be annotated with lifetimes")]
349pub(crate) struct LifetimeInBorrowExpression {
350 #[primary_span]
351 pub span: Span,
352 #[suggestion(
353 "remove the lifetime annotation",
354 applicability = "machine-applicable",
355 code = "",
356 style = "verbose"
357 )]
358 #[label("annotated with lifetime here")]
359 pub lifetime_span: Span,
360}
361
362#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FieldExpressionWithGeneric where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FieldExpressionWithGeneric(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("field expressions cannot have generic arguments")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
363#[diag("field expressions cannot have generic arguments")]
364pub(crate) struct FieldExpressionWithGeneric(#[primary_span] pub Span);
365
366#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MacroInvocationWithQualifiedPath where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MacroInvocationWithQualifiedPath(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("macros cannot use qualified paths")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
367#[diag("macros cannot use qualified paths")]
368pub(crate) struct MacroInvocationWithQualifiedPath(#[primary_span] pub Span);
369
370#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedTokenAfterLabel where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedTokenAfterLabel {
span: __binding_0,
remove_label: __binding_1,
enclose_in_block: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `while`, `for`, `loop` or `{\"{\"}` after a label")));
let __code_24 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `while`, `for`, `loop` or `{\"{\"}` after a label")));
if let Some(__binding_1) = __binding_1 {
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider removing the label")),
__code_24, rustc_errors::Applicability::Unspecified,
rustc_errors::SuggestionStyle::ShowAlways);
}
if let Some(__binding_2) = __binding_2 {
diag.subdiagnostic(__binding_2);
}
diag
}
}
}
}
};Diagnostic)]
371#[diag("expected `while`, `for`, `loop` or `{\"{\"}` after a label")]
372pub(crate) struct UnexpectedTokenAfterLabel {
373 #[primary_span]
374 #[label("expected `while`, `for`, `loop` or `{\"{\"}` after a label")]
375 pub span: Span,
376 #[suggestion("consider removing the label", style = "verbose", code = "")]
377 pub remove_label: Option<Span>,
378 #[subdiagnostic]
379 pub enclose_in_block: Option<UnexpectedTokenAfterLabelSugg>,
380}
381
382#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for UnexpectedTokenAfterLabelSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
UnexpectedTokenAfterLabelSugg {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_25 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{{ "))
});
let __code_26 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" }}"))
});
suggestions.push((__binding_0, __code_25));
suggestions.push((__binding_1, __code_26));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider enclosing expression in a block")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
383#[multipart_suggestion(
384 "consider enclosing expression in a block",
385 applicability = "machine-applicable"
386)]
387pub(crate) struct UnexpectedTokenAfterLabelSugg {
388 #[suggestion_part(code = "{{ ")]
389 pub left: Span,
390 #[suggestion_part(code = " }}")]
391 pub right: Span,
392}
393
394#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
RequireColonAfterLabeledExpression where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
RequireColonAfterLabeledExpression {
span: __binding_0,
label: __binding_1,
label_end: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("labeled expression must be followed by `:`")));
let __code_27 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(": "))
})].into_iter();
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("labels are used before loops and blocks, allowing e.g., `break 'label` to them")));
;
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the label")));
diag.span_suggestions_with_style(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add `:` after the label")),
__code_27, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
395#[diag("labeled expression must be followed by `:`")]
396#[note("labels are used before loops and blocks, allowing e.g., `break 'label` to them")]
397pub(crate) struct RequireColonAfterLabeledExpression {
398 #[primary_span]
399 pub span: Span,
400 #[label("the label")]
401 pub label: Span,
402 #[suggestion(
403 "add `:` after the label",
404 style = "verbose",
405 applicability = "machine-applicable",
406 code = ": "
407 )]
408 pub label_end: Span,
409}
410
411#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
DoCatchSyntaxRemoved where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
DoCatchSyntaxRemoved { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("found removed `do catch` syntax")));
let __code_28 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("try"))
})].into_iter();
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("following RFC #2388, the new non-placeholder syntax is `try`")));
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("replace with the new syntax")),
__code_28, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
412#[diag("found removed `do catch` syntax")]
413#[note("following RFC #2388, the new non-placeholder syntax is `try`")]
414pub(crate) struct DoCatchSyntaxRemoved {
415 #[primary_span]
416 #[suggestion(
417 "replace with the new syntax",
418 applicability = "machine-applicable",
419 code = "try",
420 style = "verbose"
421 )]
422 pub span: Span,
423}
424
425#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FloatLiteralRequiresIntegerPart where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FloatLiteralRequiresIntegerPart {
span: __binding_0, suggestion: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("float literals must have an integer part")));
let __code_29 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("0"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("must have an integer part")),
__code_29, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
426#[diag("float literals must have an integer part")]
427pub(crate) struct FloatLiteralRequiresIntegerPart {
428 #[primary_span]
429 pub span: Span,
430 #[suggestion(
431 "must have an integer part",
432 applicability = "machine-applicable",
433 code = "0",
434 style = "verbose"
435 )]
436 pub suggestion: Span,
437}
438
439#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MissingSemicolonBeforeArray where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MissingSemicolonBeforeArray {
open_delim: __binding_0, semicolon: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `;`, found `[`")));
let __code_30 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(";"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider adding `;` here")),
__code_30, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
440#[diag("expected `;`, found `[`")]
441pub(crate) struct MissingSemicolonBeforeArray {
442 #[primary_span]
443 pub open_delim: Span,
444 #[suggestion(
445 "consider adding `;` here",
446 style = "verbose",
447 applicability = "maybe-incorrect",
448 code = ";"
449 )]
450 pub semicolon: Span,
451}
452
453#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for MissingDotDot
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MissingDotDot {
token_span: __binding_0, sugg_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `..`, found `...`")));
let __code_31 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(".."))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `..` to fill in the rest of the fields")),
__code_31, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
454#[diag("expected `..`, found `...`")]
455pub(crate) struct MissingDotDot {
456 #[primary_span]
457 pub token_span: Span,
458 #[suggestion(
459 "use `..` to fill in the rest of the fields",
460 applicability = "maybe-incorrect",
461 code = "..",
462 style = "verbose"
463 )]
464 pub sugg_span: Span,
465}
466
467#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidBlockMacroSegment where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidBlockMacroSegment {
span: __binding_0, context: __binding_1, wrap: __binding_2 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("cannot use a `block` macro fragment here")));
;
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the `block` fragment is within this context")));
diag.subdiagnostic(__binding_2);
diag
}
}
}
}
};Diagnostic)]
468#[diag("cannot use a `block` macro fragment here")]
469pub(crate) struct InvalidBlockMacroSegment {
470 #[primary_span]
471 pub span: Span,
472 #[label("the `block` fragment is within this context")]
473 pub context: Span,
474 #[subdiagnostic]
475 pub wrap: WrapInExplicitBlock,
476}
477
478#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for WrapInExplicitBlock {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
WrapInExplicitBlock { lo: __binding_0, hi: __binding_1 } =>
{
let mut suggestions = Vec::new();
let __code_32 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{{ "))
});
let __code_33 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" }}"))
});
suggestions.push((__binding_0, __code_32));
suggestions.push((__binding_1, __code_33));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("wrap this in another block")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
479#[multipart_suggestion("wrap this in another block", applicability = "machine-applicable")]
480pub(crate) struct WrapInExplicitBlock {
481 #[suggestion_part(code = "{{ ")]
482 pub lo: Span,
483 #[suggestion_part(code = " }}")]
484 pub hi: Span,
485}
486
487#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
IfExpressionMissingThenBlock where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
IfExpressionMissingThenBlock {
if_span: __binding_0,
missing_then_block_sub: __binding_1,
let_else_sub: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("this `if` expression is missing a block after the condition")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
if let Some(__binding_2) = __binding_2 {
diag.subdiagnostic(__binding_2);
}
diag
}
}
}
}
};Diagnostic)]
488#[diag("this `if` expression is missing a block after the condition")]
489pub(crate) struct IfExpressionMissingThenBlock {
490 #[primary_span]
491 pub if_span: Span,
492 #[subdiagnostic]
493 pub missing_then_block_sub: IfExpressionMissingThenBlockSub,
494 #[subdiagnostic]
495 pub let_else_sub: Option<IfExpressionLetSomeSub>,
496}
497
498#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for IfExpressionMissingThenBlockSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
IfExpressionMissingThenBlockSub::UnfinishedCondition(__binding_0)
=> {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("this binary operation is possibly unfinished")),
&sub_args);
diag.span_help(__binding_0, __message);
}
IfExpressionMissingThenBlockSub::AddThenBlock(__binding_0)
=> {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add a block here")),
&sub_args);
diag.span_help(__binding_0, __message);
}
}
}
}
};Subdiagnostic)]
499pub(crate) enum IfExpressionMissingThenBlockSub {
500 #[help("this binary operation is possibly unfinished")]
501 UnfinishedCondition(#[primary_span] Span),
502 #[help("add a block here")]
503 AddThenBlock(#[primary_span] Span),
504}
505
506#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
TernaryOperator where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
TernaryOperator {
span: __binding_0, sugg: __binding_1, no_sugg: __binding_2 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("Rust has no ternary operator")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.subdiagnostic(__binding_1);
}
if __binding_2 {
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use an `if-else` expression instead")));
}
diag
}
}
}
}
};Diagnostic)]
507#[diag("Rust has no ternary operator")]
508pub(crate) struct TernaryOperator {
509 #[primary_span]
510 pub span: Span,
511 #[subdiagnostic]
513 pub sugg: Option<TernaryOperatorSuggestion>,
514 #[help("use an `if-else` expression instead")]
516 pub no_sugg: bool,
517}
518
519#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for TernaryOperatorSuggestion {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
TernaryOperatorSuggestion {
before_cond: __binding_0,
question: __binding_1,
colon: __binding_2,
end: __binding_3 } => {
let mut suggestions = Vec::new();
let __code_34 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("if "))
});
let __code_35 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{{"))
});
let __code_36 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("}} else {{"))
});
let __code_37 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" }}"))
});
suggestions.push((__binding_0, __code_34));
suggestions.push((__binding_1, __code_35));
suggestions.push((__binding_2, __code_36));
suggestions.push((__binding_3, __code_37));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use an `if-else` expression instead")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic, #[automatically_derived]
impl ::core::marker::Copy for TernaryOperatorSuggestion { }Copy, #[automatically_derived]
impl ::core::clone::Clone for TernaryOperatorSuggestion {
#[inline]
fn clone(&self) -> TernaryOperatorSuggestion {
let _: ::core::clone::AssertParamIsClone<Span>;
*self
}
}Clone)]
520#[multipart_suggestion(
521 "use an `if-else` expression instead",
522 applicability = "maybe-incorrect",
523 style = "verbose"
524)]
525pub(crate) struct TernaryOperatorSuggestion {
526 #[suggestion_part(code = "if ")]
527 pub before_cond: Span,
528 #[suggestion_part(code = "{{")]
529 pub question: Span,
530 #[suggestion_part(code = "}} else {{")]
531 pub colon: Span,
532 #[suggestion_part(code = " }}")]
533 pub end: Span,
534}
535
536#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for IfExpressionLetSomeSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
IfExpressionLetSomeSub { if_span: __binding_0 } => {
let __code_38 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the `if` if you meant to write a `let...else` statement")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_38, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
537#[suggestion(
538 "remove the `if` if you meant to write a `let...else` statement",
539 applicability = "maybe-incorrect",
540 code = "",
541 style = "verbose"
542)]
543pub(crate) struct IfExpressionLetSomeSub {
544 #[primary_span]
545 pub if_span: Span,
546}
547
548#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
IfExpressionMissingCondition where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
IfExpressionMissingCondition {
if_span: __binding_0, block_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing condition for `if` expression")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected condition here")));
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if this block is the condition of the `if` expression, then it must be followed by another block")));
diag
}
}
}
}
};Diagnostic)]
549#[diag("missing condition for `if` expression")]
550pub(crate) struct IfExpressionMissingCondition {
551 #[primary_span]
552 #[label("expected condition here")]
553 pub if_span: Span,
554 #[label(
555 "if this block is the condition of the `if` expression, then it must be followed by another block"
556 )]
557 pub block_span: Span,
558}
559
560#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedExpressionFoundLet where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedExpressionFoundLet {
span: __binding_0,
reason: __binding_1,
missing_let: __binding_2,
comparison: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected expression, found `let` statement")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("only supported directly in conditions of `if` and `while` expressions")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
if let Some(__binding_2) = __binding_2 {
diag.subdiagnostic(__binding_2);
}
if let Some(__binding_3) = __binding_3 {
diag.subdiagnostic(__binding_3);
}
diag
}
}
}
}
};Diagnostic)]
561#[diag("expected expression, found `let` statement")]
562#[note("only supported directly in conditions of `if` and `while` expressions")]
563pub(crate) struct ExpectedExpressionFoundLet {
564 #[primary_span]
565 pub span: Span,
566 #[subdiagnostic]
567 pub reason: ForbiddenLetReason,
568 #[subdiagnostic]
569 pub missing_let: Option<MaybeMissingLet>,
570 #[subdiagnostic]
571 pub comparison: Option<MaybeComparison>,
572}
573
574#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
LetChainMissingLet where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
LetChainMissingLet {
span: __binding_0,
label_span: __binding_1,
rhs_span: __binding_2,
sug_span: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("let-chain with missing `let`")));
let __code_39 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("let "))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `let` expression, found assignment")));
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("let expression later in the condition")));
diag.span_suggestions_with_style(__binding_3,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add `let` before the expression")),
__code_39, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
575#[diag("let-chain with missing `let`")]
576pub(crate) struct LetChainMissingLet {
577 #[primary_span]
578 pub span: Span,
579 #[label("expected `let` expression, found assignment")]
580 pub label_span: Span,
581 #[label("let expression later in the condition")]
582 pub rhs_span: Span,
583 #[suggestion(
584 "add `let` before the expression",
585 applicability = "maybe-incorrect",
586 code = "let ",
587 style = "verbose"
588 )]
589 pub sug_span: Span,
590}
591
592#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for OrInLetChain
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
OrInLetChain { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`||` operators are not supported in let chain conditions")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
593#[diag("`||` operators are not supported in let chain conditions")]
594pub(crate) struct OrInLetChain {
595 #[primary_span]
596 pub span: Span,
597}
598
599#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for MaybeMissingLet {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
MaybeMissingLet { span: __binding_0 } => {
let mut suggestions = Vec::new();
let __code_40 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("let "))
});
suggestions.push((__binding_0, __code_40));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("you might have meant to continue the let-chain")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic, #[automatically_derived]
impl ::core::clone::Clone for MaybeMissingLet {
#[inline]
fn clone(&self) -> MaybeMissingLet {
let _: ::core::clone::AssertParamIsClone<Span>;
*self
}
}Clone, #[automatically_derived]
impl ::core::marker::Copy for MaybeMissingLet { }Copy)]
600#[multipart_suggestion(
601 "you might have meant to continue the let-chain",
602 applicability = "maybe-incorrect",
603 style = "verbose"
604)]
605pub(crate) struct MaybeMissingLet {
606 #[suggestion_part(code = "let ")]
607 pub span: Span,
608}
609
610#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for MaybeComparison {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
MaybeComparison { span: __binding_0 } => {
let mut suggestions = Vec::new();
let __code_41 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("="))
});
suggestions.push((__binding_0, __code_41));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("you might have meant to compare for equality")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic, #[automatically_derived]
impl ::core::clone::Clone for MaybeComparison {
#[inline]
fn clone(&self) -> MaybeComparison {
let _: ::core::clone::AssertParamIsClone<Span>;
*self
}
}Clone, #[automatically_derived]
impl ::core::marker::Copy for MaybeComparison { }Copy)]
611#[multipart_suggestion(
612 "you might have meant to compare for equality",
613 applicability = "maybe-incorrect",
614 style = "verbose"
615)]
616pub(crate) struct MaybeComparison {
617 #[suggestion_part(code = "=")]
618 pub span: Span,
619}
620
621#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedEqForLetExpr where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedEqForLetExpr {
span: __binding_0, sugg_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `=`, found `==`")));
let __code_42 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("="))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider using `=` here")),
__code_42, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
622#[diag("expected `=`, found `==`")]
623pub(crate) struct ExpectedEqForLetExpr {
624 #[primary_span]
625 pub span: Span,
626 #[suggestion(
627 "consider using `=` here",
628 applicability = "maybe-incorrect",
629 code = "=",
630 style = "verbose"
631 )]
632 pub sugg_span: Span,
633}
634
635#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedElseBlock where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedElseBlock {
first_tok_span: __binding_0,
first_tok: __binding_1,
else_span: __binding_2,
condition_start: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `{\"{\"}`, found {$first_tok}")));
let __code_43 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("if "))
})].into_iter();
;
diag.arg("first_tok", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected an `if` or a block after this `else`")));
diag.span_suggestions_with_style(__binding_3,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add an `if` if this is the condition of a chained `else if` statement")),
__code_43, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
636#[diag("expected `{\"{\"}`, found {$first_tok}")]
637pub(crate) struct ExpectedElseBlock {
638 #[primary_span]
639 pub first_tok_span: Span,
640 pub first_tok: String,
641 #[label("expected an `if` or a block after this `else`")]
642 pub else_span: Span,
643 #[suggestion(
644 "add an `if` if this is the condition of a chained `else if` statement",
645 applicability = "maybe-incorrect",
646 code = "if ",
647 style = "verbose"
648 )]
649 pub condition_start: Span,
650}
651
652#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedStructField where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedStructField {
span: __binding_0,
token: __binding_1,
ident_span: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected one of `,`, `:`, or `{\"}\"}`, found `{$token}`")));
;
diag.arg("token", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected one of `,`, `:`, or `{\"}\"}`")));
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("while parsing this struct field")));
diag
}
}
}
}
};Diagnostic)]
653#[diag("expected one of `,`, `:`, or `{\"}\"}`, found `{$token}`")]
654pub(crate) struct ExpectedStructField {
655 #[primary_span]
656 #[label("expected one of `,`, `:`, or `{\"}\"}`")]
657 pub span: Span,
658 pub token: Cow<'static, str>,
659 #[label("while parsing this struct field")]
660 pub ident_span: Span,
661}
662
663#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
OuterAttributeNotAllowedOnIfElse where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
OuterAttributeNotAllowedOnIfElse {
last: __binding_0,
branch_span: __binding_1,
ctx_span: __binding_2,
ctx: __binding_3,
attributes: __binding_4 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("outer attributes are not allowed on `if` and `else` branches")));
let __code_44 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.arg("ctx", __binding_3);
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the attributes are attached to this branch")));
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the branch belongs to this `{$ctx}`")));
diag.span_suggestions_with_style(__binding_4,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the attributes")),
__code_44, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
664#[diag("outer attributes are not allowed on `if` and `else` branches")]
665pub(crate) struct OuterAttributeNotAllowedOnIfElse {
666 #[primary_span]
667 pub last: Span,
668
669 #[label("the attributes are attached to this branch")]
670 pub branch_span: Span,
671
672 #[label("the branch belongs to this `{$ctx}`")]
673 pub ctx_span: Span,
674 pub ctx: String,
675
676 #[suggestion(
677 "remove the attributes",
678 applicability = "machine-applicable",
679 code = "",
680 style = "verbose"
681 )]
682 pub attributes: Span,
683}
684
685#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MissingInInForLoop where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MissingInInForLoop { span: __binding_0, sub: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing `in` in `for` loop")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.subdiagnostic(__binding_1);
}
diag
}
}
}
}
};Diagnostic)]
686#[diag("missing `in` in `for` loop")]
687pub(crate) struct MissingInInForLoop {
688 #[primary_span]
689 pub span: Span,
690 #[subdiagnostic]
691 pub sub: Option<MissingInInForLoopSub>,
692}
693
694#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for MissingInInForLoopSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
MissingInInForLoopSub::InNotOf(__binding_0) => {
let __code_45 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("in"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try using `in` here instead")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_45, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
MissingInInForLoopSub::InNotEq(__binding_0) => {
let __code_46 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("in"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try using `in` here instead")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_46, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
MissingInInForLoopSub::AddIn(__binding_0) => {
let __code_47 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" in "))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try adding `in` here")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_47, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
695pub(crate) enum MissingInInForLoopSub {
696 #[suggestion(
699 "try using `in` here instead",
700 style = "verbose",
701 applicability = "maybe-incorrect",
702 code = "in"
703 )]
704 InNotOf(#[primary_span] Span),
705 #[suggestion(
707 "try using `in` here instead",
708 style = "verbose",
709 applicability = "maybe-incorrect",
710 code = "in"
711 )]
712 InNotEq(#[primary_span] Span),
713 #[suggestion(
714 "try adding `in` here",
715 style = "verbose",
716 applicability = "maybe-incorrect",
717 code = " in "
718 )]
719 AddIn(#[primary_span] Span),
720}
721
722#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MissingExpressionInForLoop where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MissingExpressionInForLoop { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing expression to iterate on in `for` loop")));
let __code_48 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("/* expression */ "))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try adding an expression to the `for` loop")),
__code_48, rustc_errors::Applicability::HasPlaceholders,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
723#[diag("missing expression to iterate on in `for` loop")]
724pub(crate) struct MissingExpressionInForLoop {
725 #[primary_span]
726 #[suggestion(
727 "try adding an expression to the `for` loop",
728 code = "/* expression */ ",
729 applicability = "has-placeholders",
730 style = "verbose"
731 )]
732 pub span: Span,
733}
734
735#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
LoopElseNotSupported where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
LoopElseNotSupported {
span: __binding_0,
loop_kind: __binding_1,
loop_kw: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`{$loop_kind}...else` loops are not supported")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider moving this `else` clause to a separate `if` statement and use a `bool` variable to control if it should run")));
;
diag.arg("loop_kind", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`else` is attached to this loop")));
diag
}
}
}
}
};Diagnostic)]
736#[diag("`{$loop_kind}...else` loops are not supported")]
737#[note(
738 "consider moving this `else` clause to a separate `if` statement and use a `bool` variable to control if it should run"
739)]
740pub(crate) struct LoopElseNotSupported {
741 #[primary_span]
742 pub span: Span,
743 pub loop_kind: &'static str,
744 #[label("`else` is attached to this loop")]
745 pub loop_kw: Span,
746}
747
748#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MissingCommaAfterMatchArm where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MissingCommaAfterMatchArm { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `,` following `match` arm")));
let __code_49 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(","))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing a comma here to end this `match` arm")),
__code_49, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
749#[diag("expected `,` following `match` arm")]
750pub(crate) struct MissingCommaAfterMatchArm {
751 #[primary_span]
752 #[suggestion(
753 "missing a comma here to end this `match` arm",
754 applicability = "machine-applicable",
755 code = ",",
756 style = "verbose"
757 )]
758 pub span: Span,
759}
760
761#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for CatchAfterTry
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
CatchAfterTry { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("keyword `catch` cannot follow a `try` block")));
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try using `match` on the result of the `try` block instead")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
762#[diag("keyword `catch` cannot follow a `try` block")]
763#[help("try using `match` on the result of the `try` block instead")]
764pub(crate) struct CatchAfterTry {
765 #[primary_span]
766 pub span: Span,
767}
768
769#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
CommaAfterBaseStruct where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
CommaAfterBaseStruct { span: __binding_0, comma: __binding_1
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("cannot use a comma after the base struct")));
let __code_50 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the base struct must always be the last field")));
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove this comma")),
__code_50, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
770#[diag("cannot use a comma after the base struct")]
771#[note("the base struct must always be the last field")]
772pub(crate) struct CommaAfterBaseStruct {
773 #[primary_span]
774 pub span: Span,
775 #[suggestion(
776 "remove this comma",
777 style = "verbose",
778 applicability = "machine-applicable",
779 code = ""
780 )]
781 pub comma: Span,
782}
783
784#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for EqFieldInit
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
EqFieldInit { span: __binding_0, eq: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `:`, found `=`")));
let __code_51 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(":"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("replace equals symbol with a colon")),
__code_51, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
785#[diag("expected `:`, found `=`")]
786pub(crate) struct EqFieldInit {
787 #[primary_span]
788 pub span: Span,
789 #[suggestion(
790 "replace equals symbol with a colon",
791 applicability = "machine-applicable",
792 code = ":",
793 style = "verbose"
794 )]
795 pub eq: Span,
796}
797
798#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for DotDotDot
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
DotDotDot { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected token: `...`")));
let __code_52 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(".."))
})].into_iter();
let __code_53 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("..="))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `..` for an exclusive range")),
__code_52, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("or `..=` for an inclusive range")),
__code_53, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
799#[diag("unexpected token: `...`")]
800pub(crate) struct DotDotDot {
801 #[primary_span]
802 #[suggestion(
803 "use `..` for an exclusive range",
804 applicability = "maybe-incorrect",
805 code = "..",
806 style = "verbose"
807 )]
808 #[suggestion(
809 "or `..=` for an inclusive range",
810 applicability = "maybe-incorrect",
811 code = "..=",
812 style = "verbose"
813 )]
814 pub span: Span,
815}
816
817#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
LeftArrowOperator where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
LeftArrowOperator { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected token: `<-`")));
let __code_54 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("< -"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you meant to write a comparison against a negative value, add a space in between `<` and `-`")),
__code_54, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
818#[diag("unexpected token: `<-`")]
819pub(crate) struct LeftArrowOperator {
820 #[primary_span]
821 #[suggestion(
822 "if you meant to write a comparison against a negative value, add a space in between `<` and `-`",
823 applicability = "maybe-incorrect",
824 code = "< -",
825 style = "verbose"
826 )]
827 pub span: Span,
828}
829
830#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for RemoveLet
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
RemoveLet { span: __binding_0, suggestion: __binding_1 } =>
{
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected pattern, found `let`")));
let __code_55 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the unnecessary `let` keyword")),
__code_55, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
831#[diag("expected pattern, found `let`")]
832pub(crate) struct RemoveLet {
833 #[primary_span]
834 pub span: Span,
835 #[suggestion(
836 "remove the unnecessary `let` keyword",
837 applicability = "machine-applicable",
838 code = "",
839 style = "verbose"
840 )]
841 pub suggestion: Span,
842}
843
844#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for UseEqInstead
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UseEqInstead { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `==`")));
let __code_56 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("="))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try using `=` instead")),
__code_56, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
845#[diag("unexpected `==`")]
846pub(crate) struct UseEqInstead {
847 #[primary_span]
848 #[suggestion(
849 "try using `=` instead",
850 style = "verbose",
851 applicability = "machine-applicable",
852 code = "="
853 )]
854 pub span: Span,
855}
856
857#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UseEmptyBlockNotSemi where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UseEmptyBlockNotSemi { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected { \"`{}`\" }, found `;`")));
let __code_57 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{{}}"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try using { \"`{}`\" } instead")),
__code_57, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::HideCodeAlways);
diag
}
}
}
}
};Diagnostic)]
858#[diag("expected { \"`{}`\" }, found `;`")]
859pub(crate) struct UseEmptyBlockNotSemi {
860 #[primary_span]
861 #[suggestion(
862 r#"try using { "`{}`" } instead"#,
863 style = "hidden",
864 applicability = "machine-applicable",
865 code = "{{}}"
866 )]
867 pub span: Span,
868}
869
870#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ComparisonInterpretedAsGeneric where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ComparisonInterpretedAsGeneric {
comparison: __binding_0,
r#type: __binding_1,
args: __binding_2,
suggestion: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`<` is interpreted as a start of generic arguments for `{$type}`, not a comparison")));
;
diag.arg("type", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("not interpreted as comparison")));
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("interpreted as generic arguments")));
diag.subdiagnostic(__binding_3);
diag
}
}
}
}
};Diagnostic)]
871#[diag("`<` is interpreted as a start of generic arguments for `{$type}`, not a comparison")]
872pub(crate) struct ComparisonInterpretedAsGeneric {
873 #[primary_span]
874 #[label("not interpreted as comparison")]
875 pub comparison: Span,
876 pub r#type: String,
877 #[label("interpreted as generic arguments")]
878 pub args: Span,
879 #[subdiagnostic]
880 pub suggestion: ComparisonInterpretedAsGenericSugg,
881}
882
883#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for
ComparisonInterpretedAsGenericSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ComparisonInterpretedAsGenericSugg {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_58 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_59 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_58));
suggestions.push((__binding_1, __code_59));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try comparing the cast value")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
884#[multipart_suggestion("try comparing the cast value", applicability = "machine-applicable")]
885pub(crate) struct ComparisonInterpretedAsGenericSugg {
886 #[suggestion_part(code = "(")]
887 pub left: Span,
888 #[suggestion_part(code = ")")]
889 pub right: Span,
890}
891
892#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ShiftInterpretedAsGeneric where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ShiftInterpretedAsGeneric {
shift: __binding_0,
r#type: __binding_1,
args: __binding_2,
suggestion: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`<<` is interpreted as a start of generic arguments for `{$type}`, not a shift")));
;
diag.arg("type", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("not interpreted as shift")));
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("interpreted as generic arguments")));
diag.subdiagnostic(__binding_3);
diag
}
}
}
}
};Diagnostic)]
893#[diag("`<<` is interpreted as a start of generic arguments for `{$type}`, not a shift")]
894pub(crate) struct ShiftInterpretedAsGeneric {
895 #[primary_span]
896 #[label("not interpreted as shift")]
897 pub shift: Span,
898 pub r#type: String,
899 #[label("interpreted as generic arguments")]
900 pub args: Span,
901 #[subdiagnostic]
902 pub suggestion: ShiftInterpretedAsGenericSugg,
903}
904
905#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for ShiftInterpretedAsGenericSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ShiftInterpretedAsGenericSugg {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_60 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_61 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_60));
suggestions.push((__binding_1, __code_61));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try shifting the cast value")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
906#[multipart_suggestion("try shifting the cast value", applicability = "machine-applicable")]
907pub(crate) struct ShiftInterpretedAsGenericSugg {
908 #[suggestion_part(code = "(")]
909 pub left: Span,
910 #[suggestion_part(code = ")")]
911 pub right: Span,
912}
913
914#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FoundExprWouldBeStmt where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FoundExprWouldBeStmt {
span: __binding_0,
token: __binding_1,
suggestion: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected expression, found `{$token}`")));
;
diag.arg("token", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected expression")));
diag.subdiagnostic(__binding_2);
diag
}
}
}
}
};Diagnostic)]
915#[diag("expected expression, found `{$token}`")]
916pub(crate) struct FoundExprWouldBeStmt {
917 #[primary_span]
918 #[label("expected expression")]
919 pub span: Span,
920 pub token: Cow<'static, str>,
921 #[subdiagnostic]
922 pub suggestion: ExprParenthesesNeeded,
923}
924
925#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for ExprParenthesesNeeded {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ExprParenthesesNeeded {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_62 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_63 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_62));
suggestions.push((__binding_1, __code_63));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("parentheses are required to parse this as an expression")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
926#[multipart_suggestion(
927 "parentheses are required to parse this as an expression",
928 applicability = "machine-applicable"
929)]
930pub(crate) struct ExprParenthesesNeeded {
931 #[suggestion_part(code = "(")]
932 left: Span,
933 #[suggestion_part(code = ")")]
934 right: Span,
935}
936
937impl ExprParenthesesNeeded {
938 pub(crate) fn surrounding(s: Span) -> Self {
939 ExprParenthesesNeeded { left: s.shrink_to_lo(), right: s.shrink_to_hi() }
940 }
941}
942
943#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FrontmatterExtraCharactersAfterClose where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FrontmatterExtraCharactersAfterClose { span: __binding_0 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("extra characters after frontmatter close are not allowed")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
944#[diag("extra characters after frontmatter close are not allowed")]
945pub(crate) struct FrontmatterExtraCharactersAfterClose {
946 #[primary_span]
947 pub span: Span,
948}
949
950#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FrontmatterInvalidInfostring where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FrontmatterInvalidInfostring { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid infostring for frontmatter")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("frontmatter infostrings must be a single identifier immediately following the opening")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
951#[diag("invalid infostring for frontmatter")]
952#[note("frontmatter infostrings must be a single identifier immediately following the opening")]
953pub(crate) struct FrontmatterInvalidInfostring {
954 #[primary_span]
955 pub span: Span,
956}
957
958#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FrontmatterInvalidOpeningPrecedingWhitespace where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FrontmatterInvalidOpeningPrecedingWhitespace {
span: __binding_0, note_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid preceding whitespace for frontmatter opening")));
;
diag.span(__binding_0);
diag.span_note(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("frontmatter opening should not be preceded by whitespace")));
diag
}
}
}
}
};Diagnostic)]
959#[diag("invalid preceding whitespace for frontmatter opening")]
960pub(crate) struct FrontmatterInvalidOpeningPrecedingWhitespace {
961 #[primary_span]
962 pub span: Span,
963 #[note("frontmatter opening should not be preceded by whitespace")]
964 pub note_span: Span,
965}
966
967#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FrontmatterUnclosed where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FrontmatterUnclosed {
span: __binding_0, note_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unclosed frontmatter")));
;
diag.span(__binding_0);
diag.span_note(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("frontmatter opening here was not closed")));
diag
}
}
}
}
};Diagnostic)]
968#[diag("unclosed frontmatter")]
969pub(crate) struct FrontmatterUnclosed {
970 #[primary_span]
971 pub span: Span,
972 #[note("frontmatter opening here was not closed")]
973 pub note_span: Span,
974}
975
976#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FrontmatterInvalidClosingPrecedingWhitespace where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FrontmatterInvalidClosingPrecedingWhitespace {
span: __binding_0, note_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid preceding whitespace for frontmatter close")));
;
diag.span(__binding_0);
diag.span_note(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("frontmatter close should not be preceded by whitespace")));
diag
}
}
}
}
};Diagnostic)]
977#[diag("invalid preceding whitespace for frontmatter close")]
978pub(crate) struct FrontmatterInvalidClosingPrecedingWhitespace {
979 #[primary_span]
980 pub span: Span,
981 #[note("frontmatter close should not be preceded by whitespace")]
982 pub note_span: Span,
983}
984
985#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FrontmatterLengthMismatch where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FrontmatterLengthMismatch {
span: __binding_0,
opening: __binding_1,
close: __binding_2,
len_opening: __binding_3,
len_close: __binding_4 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("frontmatter close does not match the opening")));
;
diag.arg("len_opening", __binding_3);
diag.arg("len_close", __binding_4);
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the opening here has {$len_opening} dashes...")));
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("...while the close has {$len_close} dashes")));
diag
}
}
}
}
};Diagnostic)]
986#[diag("frontmatter close does not match the opening")]
987pub(crate) struct FrontmatterLengthMismatch {
988 #[primary_span]
989 pub span: Span,
990 #[label("the opening here has {$len_opening} dashes...")]
991 pub opening: Span,
992 #[label("...while the close has {$len_close} dashes")]
993 pub close: Span,
994 pub len_opening: usize,
995 pub len_close: usize,
996}
997
998#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FrontmatterTooManyDashes where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FrontmatterTooManyDashes { len_opening: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("too many `-` symbols: frontmatter openings may be delimited by up to 255 `-` symbols, but found {$len_opening}")));
;
diag.arg("len_opening", __binding_0);
diag
}
}
}
}
};Diagnostic)]
999#[diag(
1000 "too many `-` symbols: frontmatter openings may be delimited by up to 255 `-` symbols, but found {$len_opening}"
1001)]
1002pub(crate) struct FrontmatterTooManyDashes {
1003 pub len_opening: usize,
1004}
1005
1006#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
BareCrFrontmatter where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BareCrFrontmatter { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("bare CR not allowed in frontmatter")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
1007#[diag("bare CR not allowed in frontmatter")]
1008pub(crate) struct BareCrFrontmatter {
1009 #[primary_span]
1010 pub span: Span,
1011}
1012
1013#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
LeadingPlusNotSupported where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
LeadingPlusNotSupported {
span: __binding_0,
remove_plus: __binding_1,
add_parentheses: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("leading `+` is not supported")));
let __code_64 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `+`")));
if let Some(__binding_1) = __binding_1 {
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try removing the `+`")),
__code_64, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
if let Some(__binding_2) = __binding_2 {
diag.subdiagnostic(__binding_2);
}
diag
}
}
}
}
};Diagnostic)]
1014#[diag("leading `+` is not supported")]
1015pub(crate) struct LeadingPlusNotSupported {
1016 #[primary_span]
1017 #[label("unexpected `+`")]
1018 pub span: Span,
1019 #[suggestion(
1020 "try removing the `+`",
1021 style = "verbose",
1022 code = "",
1023 applicability = "machine-applicable"
1024 )]
1025 pub remove_plus: Option<Span>,
1026 #[subdiagnostic]
1027 pub add_parentheses: Option<ExprParenthesesNeeded>,
1028}
1029
1030#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ParenthesesWithStructFields where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ParenthesesWithStructFields {
span: __binding_0,
braces_for_struct: __binding_1,
no_fields_for_fn: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid `struct` delimiters or `fn` call arguments")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag.subdiagnostic(__binding_2);
diag
}
}
}
}
};Diagnostic)]
1031#[diag("invalid `struct` delimiters or `fn` call arguments")]
1032pub(crate) struct ParenthesesWithStructFields {
1033 #[primary_span]
1034 pub span: Span,
1035 #[subdiagnostic]
1036 pub braces_for_struct: BracesForStructLiteral,
1037 #[subdiagnostic]
1038 pub no_fields_for_fn: NoFieldsForFnCall,
1039}
1040
1041#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for BracesForStructLiteral {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
BracesForStructLiteral {
r#type: __binding_0, first: __binding_1, second: __binding_2
} => {
let mut suggestions = Vec::new();
let __code_65 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" {{ "))
});
let __code_66 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" }}"))
});
suggestions.push((__binding_1, __code_65));
suggestions.push((__binding_2, __code_66));
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("type".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_0,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if `{$type}` is a struct, use braces as delimiters")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1042#[multipart_suggestion(
1043 "if `{$type}` is a struct, use braces as delimiters",
1044 applicability = "maybe-incorrect"
1045)]
1046pub(crate) struct BracesForStructLiteral {
1047 pub r#type: String,
1048 #[suggestion_part(code = " {{ ")]
1049 pub first: Span,
1050 #[suggestion_part(code = " }}")]
1051 pub second: Span,
1052}
1053
1054#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for NoFieldsForFnCall {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
NoFieldsForFnCall { r#type: __binding_0, fields: __binding_1
} => {
let mut suggestions = Vec::new();
let __code_67 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
for __binding_1 in __binding_1 {
suggestions.push((__binding_1, __code_67.clone()));
}
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("type".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_0,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if `{$type}` is a function, use the arguments directly")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1055#[multipart_suggestion(
1056 "if `{$type}` is a function, use the arguments directly",
1057 applicability = "maybe-incorrect"
1058)]
1059pub(crate) struct NoFieldsForFnCall {
1060 pub r#type: String,
1061 #[suggestion_part(code = "")]
1062 pub fields: Vec<Span>,
1063}
1064
1065#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
LabeledLoopInBreak where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
LabeledLoopInBreak { span: __binding_0, sub: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("parentheses are required around this expression to avoid confusion with a labeled break expression")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
1066#[diag(
1067 "parentheses are required around this expression to avoid confusion with a labeled break expression"
1068)]
1069pub(crate) struct LabeledLoopInBreak {
1070 #[primary_span]
1071 pub span: Span,
1072 #[subdiagnostic]
1073 pub sub: WrapInParentheses,
1074}
1075
1076#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for WrapInParentheses {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
WrapInParentheses::Expression {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_68 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_69 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_68));
suggestions.push((__binding_1, __code_69));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("wrap the expression in parentheses")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
WrapInParentheses::MacroArgs {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_70 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_71 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_70));
suggestions.push((__binding_1, __code_71));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use parentheses instead of braces for this macro")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1077pub(crate) enum WrapInParentheses {
1078 #[multipart_suggestion(
1079 "wrap the expression in parentheses",
1080 applicability = "machine-applicable"
1081 )]
1082 Expression {
1083 #[suggestion_part(code = "(")]
1084 left: Span,
1085 #[suggestion_part(code = ")")]
1086 right: Span,
1087 },
1088 #[multipart_suggestion(
1089 "use parentheses instead of braces for this macro",
1090 applicability = "machine-applicable"
1091 )]
1092 MacroArgs {
1093 #[suggestion_part(code = "(")]
1094 left: Span,
1095 #[suggestion_part(code = ")")]
1096 right: Span,
1097 },
1098}
1099
1100#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ArrayBracketsInsteadOfBraces where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ArrayBracketsInsteadOfBraces {
span: __binding_0, sub: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("this is a block expression, not an array")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
1101#[diag("this is a block expression, not an array")]
1102pub(crate) struct ArrayBracketsInsteadOfBraces {
1103 #[primary_span]
1104 pub span: Span,
1105 #[subdiagnostic]
1106 pub sub: ArrayBracketsInsteadOfBracesSugg,
1107}
1108
1109#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for ArrayBracketsInsteadOfBracesSugg
{
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ArrayBracketsInsteadOfBracesSugg {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_72 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("["))
});
let __code_73 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("]"))
});
suggestions.push((__binding_0, __code_72));
suggestions.push((__binding_1, __code_73));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("to make an array, use square brackets instead of curly braces")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1110#[multipart_suggestion(
1111 "to make an array, use square brackets instead of curly braces",
1112 applicability = "maybe-incorrect"
1113)]
1114pub(crate) struct ArrayBracketsInsteadOfBracesSugg {
1115 #[suggestion_part(code = "[")]
1116 pub left: Span,
1117 #[suggestion_part(code = "]")]
1118 pub right: Span,
1119}
1120
1121#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for AttrInUseTree
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AttrInUseTree { attr_span: __binding_0, sub: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes are not allowed inside imports")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.subdiagnostic(__binding_1);
}
diag
}
}
}
}
};Diagnostic)]
1122#[diag("attributes are not allowed inside imports")]
1123pub(crate) struct AttrInUseTree {
1124 #[primary_span]
1125 pub attr_span: Span,
1126 #[subdiagnostic]
1127 pub sub: Option<AttrInUseTreeSugg>,
1128}
1129
1130#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for AttrInUseTreeSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
AttrInUseTreeSugg {
use_lo: __binding_0,
attr_span: __binding_1,
tree_span: __binding_2,
code: __binding_3 } => {
let mut suggestions = Vec::new();
let __code_74 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_3))
});
let __code_75 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
let __code_76 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
suggestions.push((__binding_0, __code_74));
suggestions.push((__binding_1, __code_75));
suggestions.push((__binding_2, __code_76));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("move the import to its own item")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::Unspecified,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
1131#[multipart_suggestion("move the import to its own item", style = "verbose")]
1132pub(crate) struct AttrInUseTreeSugg {
1133 #[suggestion_part(code = "{code}")]
1134 pub use_lo: Span,
1135 #[suggestion_part(code = "")]
1136 pub attr_span: Span,
1137 #[suggestion_part(code = "")]
1138 pub tree_span: Span,
1139 pub code: String,
1140}
1141
1142#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MatchArmBodyWithoutBraces where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MatchArmBodyWithoutBraces {
statements: __binding_0,
arrow: __binding_1,
num_statements: __binding_2,
sub: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`match` arm body without braces")));
;
diag.arg("num_statements", __binding_2);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$num_statements ->\n [one] this statement is not surrounded by a body\n *[other] these statements are not surrounded by a body\n }")));
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("while parsing the `match` arm starting here")));
diag.subdiagnostic(__binding_3);
diag
}
}
}
}
};Diagnostic)]
1143#[diag("`match` arm body without braces")]
1144pub(crate) struct MatchArmBodyWithoutBraces {
1145 #[primary_span]
1146 #[label(
1147 "{$num_statements ->
1148 [one] this statement is not surrounded by a body
1149 *[other] these statements are not surrounded by a body
1150 }"
1151 )]
1152 pub statements: Span,
1153 #[label("while parsing the `match` arm starting here")]
1154 pub arrow: Span,
1155 pub num_statements: usize,
1156 #[subdiagnostic]
1157 pub sub: MatchArmBodyWithoutBracesSugg,
1158}
1159
1160#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InclusiveRangeExtraEquals where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InclusiveRangeExtraEquals { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `=` after inclusive range")));
let __code_77 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("..="))
})].into_iter();
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("inclusive ranges end with a single equals sign (`..=`)")));
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `..=` instead")),
__code_77, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
1161#[diag("unexpected `=` after inclusive range")]
1162#[note("inclusive ranges end with a single equals sign (`..=`)")]
1163pub(crate) struct InclusiveRangeExtraEquals {
1164 #[primary_span]
1165 #[suggestion(
1166 "use `..=` instead",
1167 style = "verbose",
1168 code = "..=",
1169 applicability = "maybe-incorrect"
1170 )]
1171 pub span: Span,
1172}
1173
1174#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InclusiveRangeMatchArrow where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InclusiveRangeMatchArrow {
arrow: __binding_0, span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `>` after inclusive range")));
let __code_78 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(".. ="))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("this is parsed as an inclusive range `..=`")));
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add a space between the pattern and `=>`")),
__code_78, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
1175#[diag("unexpected `>` after inclusive range")]
1176pub(crate) struct InclusiveRangeMatchArrow {
1177 #[primary_span]
1178 pub arrow: Span,
1179 #[label("this is parsed as an inclusive range `..=`")]
1180 #[suggestion(
1181 "add a space between the pattern and `=>`",
1182 style = "verbose",
1183 code = ".. =",
1184 applicability = "machine-applicable"
1185 )]
1186 pub span: Span,
1187}
1188
1189#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InclusiveRangeNoEnd where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InclusiveRangeNoEnd { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("inclusive range with no end")));
let __code_79 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(".."))
})].into_iter();
diag.code(E0586);
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("inclusive ranges must be bounded at the end (`..=b` or `a..=b`)")));
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `..` instead")),
__code_79, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
1190#[diag("inclusive range with no end", code = E0586)]
1191#[note("inclusive ranges must be bounded at the end (`..=b` or `a..=b`)")]
1192pub(crate) struct InclusiveRangeNoEnd {
1193 #[primary_span]
1194 #[suggestion(
1195 "use `..` instead",
1196 code = "..",
1197 applicability = "machine-applicable",
1198 style = "verbose"
1199 )]
1200 pub span: Span,
1201}
1202
1203#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for MatchArmBodyWithoutBracesSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
MatchArmBodyWithoutBracesSugg::AddBraces {
left: __binding_0,
right: __binding_1,
num_statements: __binding_2 } => {
let mut suggestions = Vec::new();
let __code_80 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{{ "))
});
let __code_81 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" }}"))
});
suggestions.push((__binding_0, __code_80));
suggestions.push((__binding_1, __code_81));
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("num_statements".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_2,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("surround the {$num_statements ->\n [one] statement\n *[other] statements\n } with a body")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
MatchArmBodyWithoutBracesSugg::UseComma {
semicolon: __binding_0 } => {
let __code_82 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(","))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("replace `;` with `,` to end a `match` arm expression")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_82, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
1204pub(crate) enum MatchArmBodyWithoutBracesSugg {
1205 #[multipart_suggestion(
1206 "surround the {$num_statements ->
1207 [one] statement
1208 *[other] statements
1209 } with a body",
1210 applicability = "machine-applicable"
1211 )]
1212 AddBraces {
1213 #[suggestion_part(code = "{{ ")]
1214 left: Span,
1215 #[suggestion_part(code = " }}")]
1216 right: Span,
1217 num_statements: usize,
1218 },
1219 #[suggestion(
1220 "replace `;` with `,` to end a `match` arm expression",
1221 code = ",",
1222 applicability = "machine-applicable",
1223 style = "verbose"
1224 )]
1225 UseComma {
1226 #[primary_span]
1227 semicolon: Span,
1228 },
1229}
1230
1231#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
StructLiteralNotAllowedHere where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
StructLiteralNotAllowedHere {
span: __binding_0, sub: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("struct literals are not allowed here")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
1232#[diag("struct literals are not allowed here")]
1233pub(crate) struct StructLiteralNotAllowedHere {
1234 #[primary_span]
1235 pub span: Span,
1236 #[subdiagnostic]
1237 pub sub: StructLiteralNotAllowedHereSugg,
1238}
1239
1240#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for StructLiteralNotAllowedHereSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
StructLiteralNotAllowedHereSugg {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_83 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_84 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_83));
suggestions.push((__binding_1, __code_84));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("surround the struct literal with parentheses")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1241#[multipart_suggestion(
1242 "surround the struct literal with parentheses",
1243 applicability = "machine-applicable"
1244)]
1245pub(crate) struct StructLiteralNotAllowedHereSugg {
1246 #[suggestion_part(code = "(")]
1247 pub left: Span,
1248 #[suggestion_part(code = ")")]
1249 pub right: Span,
1250}
1251
1252#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidLiteralSuffixOnTupleIndex where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidLiteralSuffixOnTupleIndex {
span: __binding_0, suffix: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("suffixes on a tuple index are invalid")));
;
diag.arg("suffix", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid suffix `{$suffix}`")));
diag
}
}
}
}
};Diagnostic)]
1253#[diag("suffixes on a tuple index are invalid")]
1254pub(crate) struct InvalidLiteralSuffixOnTupleIndex {
1255 #[primary_span]
1256 #[label("invalid suffix `{$suffix}`")]
1257 pub span: Span,
1258 pub suffix: Symbol,
1259}
1260
1261#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
NonStringAbiLiteral where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
NonStringAbiLiteral { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("non-string ABI literal")));
let __code_85 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("\"C\""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("specify the ABI with a string literal")),
__code_85, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
1262#[diag("non-string ABI literal")]
1263pub(crate) struct NonStringAbiLiteral {
1264 #[primary_span]
1265 #[suggestion(
1266 "specify the ABI with a string literal",
1267 code = "\"C\"",
1268 applicability = "maybe-incorrect",
1269 style = "verbose"
1270 )]
1271 pub span: Span,
1272}
1273
1274#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MismatchedClosingDelimiter where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MismatchedClosingDelimiter {
spans: __binding_0,
delimiter: __binding_1,
unmatched: __binding_2,
opening_candidate: __binding_3,
unclosed: __binding_4 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("mismatched closing delimiter: `{$delimiter}`")));
;
diag.arg("delimiter", __binding_1);
diag.span(__binding_0.clone());
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("mismatched closing delimiter")));
if let Some(__binding_3) = __binding_3 {
diag.span_label(__binding_3,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("closing delimiter possibly meant for this")));
}
if let Some(__binding_4) = __binding_4 {
diag.span_label(__binding_4,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unclosed delimiter")));
}
diag
}
}
}
}
};Diagnostic)]
1275#[diag("mismatched closing delimiter: `{$delimiter}`")]
1276pub(crate) struct MismatchedClosingDelimiter {
1277 #[primary_span]
1278 pub spans: Vec<Span>,
1279 pub delimiter: String,
1280 #[label("mismatched closing delimiter")]
1281 pub unmatched: Span,
1282 #[label("closing delimiter possibly meant for this")]
1283 pub opening_candidate: Option<Span>,
1284 #[label("unclosed delimiter")]
1285 pub unclosed: Option<Span>,
1286}
1287
1288#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
IncorrectVisibilityRestriction where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
IncorrectVisibilityRestriction {
span: __binding_0, inner_str: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("incorrect visibility restriction")));
let __code_86 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("in {0}", __binding_1))
})].into_iter();
diag.code(E0704);
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("some possible visibility restrictions are:\n `pub(crate)`: visible only on the current crate\n `pub(super)`: visible only in the current module's parent\n `pub(in path::to::module)`: visible only on the specified path")));
;
diag.arg("inner_str", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("make this visible only to module `{$inner_str}` with `in`")),
__code_86, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
1289#[diag("incorrect visibility restriction", code = E0704)]
1290#[help(
1291 "some possible visibility restrictions are:
1292 `pub(crate)`: visible only on the current crate
1293 `pub(super)`: visible only in the current module's parent
1294 `pub(in path::to::module)`: visible only on the specified path"
1295)]
1296pub(crate) struct IncorrectVisibilityRestriction {
1297 #[primary_span]
1298 #[suggestion(
1299 "make this visible only to module `{$inner_str}` with `in`",
1300 code = "in {inner_str}",
1301 applicability = "machine-applicable",
1302 style = "verbose"
1303 )]
1304 pub span: Span,
1305 pub inner_str: String,
1306}
1307
1308#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
IncorrectImplRestriction where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
IncorrectImplRestriction {
span: __binding_0, inner_str: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("incorrect `impl` restriction")));
let __code_87 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("in {0}", __binding_1))
})].into_iter();
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("some possible `impl` restrictions are:\n `impl(crate)`: can only be implemented in the current crate\n `impl(super)`: can only be implemented in the parent module\n `impl(self)`: can only be implemented in current module\n `impl(in path::to::module)`: can only be implemented in the specified path")));
;
diag.arg("inner_str", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("help: use `in` to restrict implementations to the path `{$inner_str}`")),
__code_87, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
diag
}
}
}
}
};Diagnostic)]
1309#[diag("incorrect `impl` restriction")]
1310#[help(
1311 "some possible `impl` restrictions are:
1312 `impl(crate)`: can only be implemented in the current crate
1313 `impl(super)`: can only be implemented in the parent module
1314 `impl(self)`: can only be implemented in current module
1315 `impl(in path::to::module)`: can only be implemented in the specified path"
1316)]
1317pub(crate) struct IncorrectImplRestriction {
1318 #[primary_span]
1319 #[suggestion(
1320 "help: use `in` to restrict implementations to the path `{$inner_str}`",
1321 code = "in {inner_str}",
1322 applicability = "machine-applicable"
1323 )]
1324 pub span: Span,
1325 pub inner_str: String,
1326}
1327
1328#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
IncorrectMutRestriction where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
IncorrectMutRestriction {
span: __binding_0, inner_str: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("incorrect `mut` restriction")));
let __code_88 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("in {0}", __binding_1))
})].into_iter();
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("some possible `mut` restrictions are:\n `mut(crate)`: can only be mutated in the current crate\n `mut(super)`: can only be mutated in the parent module\n `mut(self)`: can only be mutated in current module\n `mut(in path::to::module)`: can only be mutated in the specified path")));
;
diag.arg("inner_str", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("help: use `in` to restrict mutations to the path `{$inner_str}`")),
__code_88, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
diag
}
}
}
}
};Diagnostic)]
1329#[diag("incorrect `mut` restriction")]
1330#[help(
1331 "some possible `mut` restrictions are:
1332 `mut(crate)`: can only be mutated in the current crate
1333 `mut(super)`: can only be mutated in the parent module
1334 `mut(self)`: can only be mutated in current module
1335 `mut(in path::to::module)`: can only be mutated in the specified path"
1336)]
1337pub(crate) struct IncorrectMutRestriction {
1338 #[primary_span]
1339 #[suggestion(
1340 "help: use `in` to restrict mutations to the path `{$inner_str}`",
1341 code = "in {inner_str}",
1342 applicability = "machine-applicable"
1343 )]
1344 pub span: Span,
1345 pub inner_str: String,
1346}
1347
1348#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AssignmentElseNotAllowed where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AssignmentElseNotAllowed { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("<assignment> ... else {\"{\"} ... {\"}\"} is not allowed")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
1349#[diag("<assignment> ... else {\"{\"} ... {\"}\"} is not allowed")]
1350pub(crate) struct AssignmentElseNotAllowed {
1351 #[primary_span]
1352 pub span: Span,
1353}
1354
1355#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedStatementAfterOuterAttr where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedStatementAfterOuterAttr { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected statement after outer attribute")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
1356#[diag("expected statement after outer attribute")]
1357pub(crate) struct ExpectedStatementAfterOuterAttr {
1358 #[primary_span]
1359 pub span: Span,
1360}
1361
1362#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AttrWithoutWherePredicates where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AttrWithoutWherePredicates { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attribute without where predicates")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes are only permitted when preceding predicates")));
diag
}
}
}
}
};Diagnostic)]
1363#[diag("attribute without where predicates")]
1364pub(crate) struct AttrWithoutWherePredicates {
1365 #[primary_span]
1366 #[label("attributes are only permitted when preceding predicates")]
1367 pub span: Span,
1368}
1369
1370#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
DocCommentDoesNotDocumentAnything where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
DocCommentDoesNotDocumentAnything {
span: __binding_0, missing_comma: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("found a documentation comment that doesn't document anything")));
let __code_89 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(","))
})].into_iter();
diag.code(E0585);
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("doc comments must come before what they document, if a comment was intended use `//`")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing comma here")),
__code_89, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
diag
}
}
}
}
};Diagnostic)]
1371#[diag("found a documentation comment that doesn't document anything", code = E0585)]
1372#[help("doc comments must come before what they document, if a comment was intended use `//`")]
1373pub(crate) struct DocCommentDoesNotDocumentAnything {
1374 #[primary_span]
1375 pub span: Span,
1376 #[suggestion(
1377 "missing comma here",
1378 code = ",",
1379 applicability = "machine-applicable",
1380 style = "verbose"
1381 )]
1382 pub missing_comma: Option<Span>,
1383}
1384
1385#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ConstLetMutuallyExclusive where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ConstLetMutuallyExclusive { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`const` and `let` are mutually exclusive")));
let __code_90 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("const"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove `let`")),
__code_90, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
1386#[diag("`const` and `let` are mutually exclusive")]
1387pub(crate) struct ConstLetMutuallyExclusive {
1388 #[primary_span]
1389 #[suggestion(
1390 "remove `let`",
1391 code = "const",
1392 applicability = "maybe-incorrect",
1393 style = "verbose"
1394 )]
1395 pub span: Span,
1396}
1397
1398#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidExpressionInLetElse where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidExpressionInLetElse {
span: __binding_0, operator: __binding_1, sugg: __binding_2
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("a `{$operator}` expression cannot be directly assigned in `let...else`")));
;
diag.arg("operator", __binding_1);
diag.span(__binding_0);
diag.subdiagnostic(__binding_2);
diag
}
}
}
}
};Diagnostic)]
1399#[diag("a `{$operator}` expression cannot be directly assigned in `let...else`")]
1400pub(crate) struct InvalidExpressionInLetElse {
1401 #[primary_span]
1402 pub span: Span,
1403 pub operator: &'static str,
1404 #[subdiagnostic]
1405 pub sugg: WrapInParentheses,
1406}
1407
1408#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidCurlyInLetElse where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidCurlyInLetElse { span: __binding_0, sugg: __binding_1
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("right curly brace `{\"}\"}` before `else` in a `let...else` statement not allowed")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
1409#[diag("right curly brace `{\"}\"}` before `else` in a `let...else` statement not allowed")]
1410pub(crate) struct InvalidCurlyInLetElse {
1411 #[primary_span]
1412 pub span: Span,
1413 #[subdiagnostic]
1414 pub sugg: WrapInParentheses,
1415}
1416
1417#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
CompoundAssignmentExpressionInLet where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
CompoundAssignmentExpressionInLet {
span: __binding_0, suggestion: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("can't reassign to an uninitialized variable")));
let __code_91 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you meant to overwrite, remove the `let` binding")));
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("initialize the variable")),
__code_91, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
1418#[diag("can't reassign to an uninitialized variable")]
1419#[help("if you meant to overwrite, remove the `let` binding")]
1420pub(crate) struct CompoundAssignmentExpressionInLet {
1421 #[primary_span]
1422 pub span: Span,
1423 #[suggestion(
1424 "initialize the variable",
1425 style = "verbose",
1426 code = "",
1427 applicability = "maybe-incorrect"
1428 )]
1429 pub suggestion: Span,
1430}
1431
1432#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
SuffixedLiteralInAttribute where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
SuffixedLiteralInAttribute { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("suffixed literals are not allowed in attributes")));
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("instead of using a suffixed literal (`1u8`, `1.0f32`, etc.), use an unsuffixed version (`1`, `1.0`, etc.)")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
1433#[diag("suffixed literals are not allowed in attributes")]
1434#[help(
1435 "instead of using a suffixed literal (`1u8`, `1.0f32`, etc.), use an unsuffixed version (`1`, `1.0`, etc.)"
1436)]
1437pub(crate) struct SuffixedLiteralInAttribute {
1438 #[primary_span]
1439 pub span: Span,
1440}
1441
1442#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidMetaItem where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidMetaItem {
span: __binding_0,
descr: __binding_1,
quote_ident_sugg: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected unsuffixed literal, found {$descr}")));
;
diag.arg("descr", __binding_1);
diag.span(__binding_0);
if let Some(__binding_2) = __binding_2 {
diag.subdiagnostic(__binding_2);
}
diag
}
}
}
}
};Diagnostic)]
1443#[diag("expected unsuffixed literal, found {$descr}")]
1444pub(crate) struct InvalidMetaItem {
1445 #[primary_span]
1446 pub span: Span,
1447 pub descr: String,
1448 #[subdiagnostic]
1449 pub quote_ident_sugg: Option<InvalidMetaItemQuoteIdentSugg>,
1450}
1451
1452#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for InvalidMetaItemQuoteIdentSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
InvalidMetaItemQuoteIdentSugg {
before: __binding_0, after: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_92 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("\""))
});
let __code_93 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("\""))
});
suggestions.push((__binding_0, __code_92));
suggestions.push((__binding_1, __code_93));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("surround the identifier with quotation marks to make it into a string literal")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1453#[multipart_suggestion(
1454 "surround the identifier with quotation marks to make it into a string literal",
1455 applicability = "machine-applicable"
1456)]
1457pub(crate) struct InvalidMetaItemQuoteIdentSugg {
1458 #[suggestion_part(code = "\"")]
1459 pub before: Span,
1460 #[suggestion_part(code = "\"")]
1461 pub after: Span,
1462}
1463
1464#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for SuggEscapeIdentifier {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
SuggEscapeIdentifier {
span: __binding_0, ident_name: __binding_1 } => {
let __code_94 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("r#"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("ident_name".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_1,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("escape `{$ident_name}` to use it as an identifier")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_94, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
1465#[suggestion(
1466 "escape `{$ident_name}` to use it as an identifier",
1467 style = "verbose",
1468 applicability = "maybe-incorrect",
1469 code = "r#"
1470)]
1471pub(crate) struct SuggEscapeIdentifier {
1472 #[primary_span]
1473 pub span: Span,
1474 pub ident_name: String,
1475}
1476
1477#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for SuggRemoveComma {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
SuggRemoveComma { span: __binding_0 } => {
let __code_95 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove this comma")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_95, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
1478#[suggestion(
1479 "remove this comma",
1480 applicability = "machine-applicable",
1481 code = "",
1482 style = "verbose"
1483)]
1484pub(crate) struct SuggRemoveComma {
1485 #[primary_span]
1486 pub span: Span,
1487}
1488
1489#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for SuggAddMissingLetStmt {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
SuggAddMissingLetStmt { span: __binding_0 } => {
let __code_96 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("let "))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("you might have meant to introduce a new binding")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_96, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
1490#[suggestion(
1491 "you might have meant to introduce a new binding",
1492 style = "verbose",
1493 applicability = "maybe-incorrect",
1494 code = "let "
1495)]
1496pub(crate) struct SuggAddMissingLetStmt {
1497 #[primary_span]
1498 pub span: Span,
1499}
1500
1501#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for ExpectedIdentifierFound {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ExpectedIdentifierFound::ReservedIdentifier(__binding_0) =>
{
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found reserved identifier")),
&sub_args);
diag.span_label(__binding_0, __message);
}
ExpectedIdentifierFound::Keyword(__binding_0) => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found keyword")),
&sub_args);
diag.span_label(__binding_0, __message);
}
ExpectedIdentifierFound::ReservedKeyword(__binding_0) => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found reserved keyword")),
&sub_args);
diag.span_label(__binding_0, __message);
}
ExpectedIdentifierFound::DocComment(__binding_0) => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found doc comment")),
&sub_args);
diag.span_label(__binding_0, __message);
}
ExpectedIdentifierFound::MetaVar(__binding_0) => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found metavariable")),
&sub_args);
diag.span_label(__binding_0, __message);
}
ExpectedIdentifierFound::Other(__binding_0) => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier")),
&sub_args);
diag.span_label(__binding_0, __message);
}
}
}
}
};Subdiagnostic)]
1502pub(crate) enum ExpectedIdentifierFound {
1503 #[label("expected identifier, found reserved identifier")]
1504 ReservedIdentifier(#[primary_span] Span),
1505 #[label("expected identifier, found keyword")]
1506 Keyword(#[primary_span] Span),
1507 #[label("expected identifier, found reserved keyword")]
1508 ReservedKeyword(#[primary_span] Span),
1509 #[label("expected identifier, found doc comment")]
1510 DocComment(#[primary_span] Span),
1511 #[label("expected identifier, found metavariable")]
1512 MetaVar(#[primary_span] Span),
1513 #[label("expected identifier")]
1514 Other(#[primary_span] Span),
1515}
1516
1517impl ExpectedIdentifierFound {
1518 pub(crate) fn new(token_descr: Option<TokenDescription>, span: Span) -> Self {
1519 (match token_descr {
1520 Some(TokenDescription::ReservedIdentifier) => {
1521 ExpectedIdentifierFound::ReservedIdentifier
1522 }
1523 Some(TokenDescription::Keyword) => ExpectedIdentifierFound::Keyword,
1524 Some(TokenDescription::ReservedKeyword) => ExpectedIdentifierFound::ReservedKeyword,
1525 Some(TokenDescription::DocComment) => ExpectedIdentifierFound::DocComment,
1526 Some(TokenDescription::MetaVar(_)) => ExpectedIdentifierFound::MetaVar,
1527 None => ExpectedIdentifierFound::Other,
1528 })(span)
1529 }
1530}
1531
1532pub(crate) struct ExpectedIdentifier {
1533 pub span: Span,
1534 pub token: Token,
1535 pub suggest_raw: Option<SuggEscapeIdentifier>,
1536 pub suggest_remove_comma: Option<SuggRemoveComma>,
1537 pub help_cannot_start_number: Option<HelpIdentifierStartsWithNumber>,
1538}
1539
1540impl<'a, G: EmissionGuarantee> Diagnostic<'a, G> for ExpectedIdentifier {
1541 #[track_caller]
1542 fn into_diag(self, dcx: DiagCtxtHandle<'a>, level: Level) -> Diag<'a, G> {
1543 let token_descr = TokenDescription::from_token(&self.token);
1544
1545 let mut add_token = true;
1546 let mut diag = Diag::new(
1547 dcx,
1548 level,
1549 match token_descr {
1550 Some(TokenDescription::ReservedIdentifier) => {
1551 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found reserved identifier `{$token}`"))msg!("expected identifier, found reserved identifier `{$token}`")
1552 }
1553 Some(TokenDescription::Keyword) => {
1554 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found keyword `{$token}`"))msg!("expected identifier, found keyword `{$token}`")
1555 }
1556 Some(TokenDescription::ReservedKeyword) => {
1557 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found reserved keyword `{$token}`"))msg!("expected identifier, found reserved keyword `{$token}`")
1558 }
1559 Some(TokenDescription::DocComment) => {
1560 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found doc comment `{$token}`"))msg!("expected identifier, found doc comment `{$token}`")
1561 }
1562 Some(TokenDescription::MetaVar(_)) => {
1563 add_token = false;
1564 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found metavariable"))msg!("expected identifier, found metavariable")
1565 }
1566 None => rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found `{$token}`"))msg!("expected identifier, found `{$token}`"),
1567 },
1568 );
1569 diag.span(self.span);
1570 if add_token {
1571 diag.arg("token", pprust::token_to_string(&self.token));
1572 }
1573
1574 if let Some(sugg) = self.suggest_raw {
1575 sugg.add_to_diag(&mut diag);
1576 }
1577
1578 ExpectedIdentifierFound::new(token_descr, self.span).add_to_diag(&mut diag);
1579
1580 if let Some(sugg) = self.suggest_remove_comma {
1581 sugg.add_to_diag(&mut diag);
1582 }
1583
1584 if let Some(help) = self.help_cannot_start_number {
1585 help.add_to_diag(&mut diag);
1586 }
1587
1588 diag
1589 }
1590}
1591
1592#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for HelpIdentifierStartsWithNumber {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
HelpIdentifierStartsWithNumber { num_span: __binding_0 } =>
{
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("identifiers cannot start with a number")),
&sub_args);
diag.span_help(__binding_0, __message);
}
}
}
}
};Subdiagnostic)]
1593#[help("identifiers cannot start with a number")]
1594pub(crate) struct HelpIdentifierStartsWithNumber {
1595 #[primary_span]
1596 pub num_span: Span,
1597}
1598
1599pub(crate) struct ExpectedSemi {
1600 pub span: Span,
1601 pub token: Token,
1602 pub unexpected_token_label: Option<Span>,
1603 pub sugg: ExpectedSemiSugg,
1604}
1605
1606impl<'a, G: EmissionGuarantee> Diagnostic<'a, G> for ExpectedSemi {
1607 #[track_caller]
1608 fn into_diag(self, dcx: DiagCtxtHandle<'a>, level: Level) -> Diag<'a, G> {
1609 let token_descr = TokenDescription::from_token(&self.token);
1610
1611 let mut add_token = true;
1612 let mut diag = Diag::new(
1613 dcx,
1614 level,
1615 match token_descr {
1616 Some(TokenDescription::ReservedIdentifier) => {
1617 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `;`, found reserved identifier `{$token}`"))msg!("expected `;`, found reserved identifier `{$token}`")
1618 }
1619 Some(TokenDescription::Keyword) => {
1620 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `;`, found keyword `{$token}`"))msg!("expected `;`, found keyword `{$token}`")
1621 }
1622 Some(TokenDescription::ReservedKeyword) => {
1623 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `;`, found reserved keyword `{$token}`"))msg!("expected `;`, found reserved keyword `{$token}`")
1624 }
1625 Some(TokenDescription::DocComment) => {
1626 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `;`, found doc comment `{$token}`"))msg!("expected `;`, found doc comment `{$token}`")
1627 }
1628 Some(TokenDescription::MetaVar(_)) => {
1629 add_token = false;
1630 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `;`, found metavariable"))msg!("expected `;`, found metavariable")
1631 }
1632 None => rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `;`, found `{$token}`"))msg!("expected `;`, found `{$token}`"),
1633 },
1634 );
1635 diag.span(self.span);
1636 if add_token {
1637 diag.arg("token", pprust::token_to_string(&self.token));
1638 }
1639
1640 if let Some(unexpected_token_label) = self.unexpected_token_label {
1641 diag.span_label(unexpected_token_label, rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected token"))msg!("unexpected token"));
1642 }
1643
1644 self.sugg.add_to_diag(&mut diag);
1645
1646 diag
1647 }
1648}
1649
1650#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for ExpectedSemiSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ExpectedSemiSugg::ChangeToSemi(__binding_0) => {
let __code_97 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(";"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("change this to `;`")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_97, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::HideCodeInline);
}
ExpectedSemiSugg::AddSemi(__binding_0) => {
let __code_98 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(";"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add `;` here")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_98, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::HideCodeInline);
}
}
}
}
};Subdiagnostic)]
1651pub(crate) enum ExpectedSemiSugg {
1652 #[suggestion(
1653 "change this to `;`",
1654 code = ";",
1655 applicability = "machine-applicable",
1656 style = "short"
1657 )]
1658 ChangeToSemi(#[primary_span] Span),
1659 #[suggestion("add `;` here", code = ";", applicability = "machine-applicable", style = "short")]
1660 AddSemi(#[primary_span] Span),
1661}
1662
1663#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
StructLiteralBodyWithoutPath where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
StructLiteralBodyWithoutPath {
span: __binding_0, sugg: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("struct literal body without path")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
1664#[diag("struct literal body without path")]
1665pub(crate) struct StructLiteralBodyWithoutPath {
1666 #[primary_span]
1667 pub span: Span,
1668 #[subdiagnostic]
1669 pub sugg: StructLiteralBodyWithoutPathSugg,
1670}
1671
1672#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for StructLiteralBodyWithoutPathSugg
{
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
StructLiteralBodyWithoutPathSugg {
before: __binding_0, after: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_99 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{{ SomeStruct "))
});
let __code_100 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" }}"))
});
suggestions.push((__binding_0, __code_99));
suggestions.push((__binding_1, __code_100));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("you might have forgotten to add the struct literal inside the block")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::HasPlaceholders,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1673#[multipart_suggestion(
1674 "you might have forgotten to add the struct literal inside the block",
1675 applicability = "has-placeholders"
1676)]
1677pub(crate) struct StructLiteralBodyWithoutPathSugg {
1678 #[suggestion_part(code = "{{ SomeStruct ")]
1679 pub before: Span,
1680 #[suggestion_part(code = " }}")]
1681 pub after: Span,
1682}
1683
1684#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnmatchedAngleBrackets where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnmatchedAngleBrackets {
span: __binding_0, num_extra_brackets: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$num_extra_brackets ->\n [one] unmatched angle bracket\n *[other] unmatched angle brackets\n }")));
let __code_101 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.arg("num_extra_brackets", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$num_extra_brackets ->\n [one] remove extra angle bracket\n *[other] remove extra angle brackets\n }")),
__code_101, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
1685#[diag(
1686 "{$num_extra_brackets ->
1687 [one] unmatched angle bracket
1688 *[other] unmatched angle brackets
1689 }"
1690)]
1691pub(crate) struct UnmatchedAngleBrackets {
1692 #[primary_span]
1693 #[suggestion(
1694 "{$num_extra_brackets ->
1695 [one] remove extra angle bracket
1696 *[other] remove extra angle brackets
1697 }",
1698 code = "",
1699 applicability = "machine-applicable",
1700 style = "verbose"
1701 )]
1702 pub span: Span,
1703 pub num_extra_brackets: usize,
1704}
1705
1706#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
GenericParamsWithoutAngleBrackets where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
GenericParamsWithoutAngleBrackets {
span: __binding_0, sugg: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("generic parameters without surrounding angle brackets")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
1707#[diag("generic parameters without surrounding angle brackets")]
1708pub(crate) struct GenericParamsWithoutAngleBrackets {
1709 #[primary_span]
1710 pub span: Span,
1711 #[subdiagnostic]
1712 pub sugg: GenericParamsWithoutAngleBracketsSugg,
1713}
1714
1715#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for
GenericParamsWithoutAngleBracketsSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
GenericParamsWithoutAngleBracketsSugg {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_102 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("<"))
});
let __code_103 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(">"))
});
suggestions.push((__binding_0, __code_102));
suggestions.push((__binding_1, __code_103));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("surround the type parameters with angle brackets")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1716#[multipart_suggestion(
1717 "surround the type parameters with angle brackets",
1718 applicability = "machine-applicable"
1719)]
1720pub(crate) struct GenericParamsWithoutAngleBracketsSugg {
1721 #[suggestion_part(code = "<")]
1722 pub left: Span,
1723 #[suggestion_part(code = ">")]
1724 pub right: Span,
1725}
1726
1727#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ComparisonOperatorsCannotBeChained where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ComparisonOperatorsCannotBeChained {
span: __binding_0,
suggest_turbofish: __binding_1,
help_turbofish: __binding_2,
chaining_sugg: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("comparison operators cannot be chained")));
let __code_104 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("::"))
})].into_iter();
;
diag.span(__binding_0.clone());
if let Some(__binding_1) = __binding_1 {
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `::<...>` instead of `<...>` to specify lifetime, type, or const arguments")),
__code_104, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
if __binding_2 {
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `::<...>` instead of `<...>` to specify lifetime, type, or const arguments")));
}
if __binding_2 {
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("or use `(...)` if you meant to specify fn arguments")));
}
if let Some(__binding_3) = __binding_3 {
diag.subdiagnostic(__binding_3);
}
diag
}
}
}
}
};Diagnostic)]
1728#[diag("comparison operators cannot be chained")]
1729pub(crate) struct ComparisonOperatorsCannotBeChained {
1730 #[primary_span]
1731 pub span: Vec<Span>,
1732 #[suggestion(
1733 "use `::<...>` instead of `<...>` to specify lifetime, type, or const arguments",
1734 style = "verbose",
1735 code = "::",
1736 applicability = "maybe-incorrect"
1737 )]
1738 pub suggest_turbofish: Option<Span>,
1739 #[help("use `::<...>` instead of `<...>` to specify lifetime, type, or const arguments")]
1740 #[help("or use `(...)` if you meant to specify fn arguments")]
1741 pub help_turbofish: bool,
1742 #[subdiagnostic]
1743 pub chaining_sugg: Option<ComparisonOperatorsCannotBeChainedSugg>,
1744}
1745
1746#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for
ComparisonOperatorsCannotBeChainedSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ComparisonOperatorsCannotBeChainedSugg::SplitComparison {
span: __binding_0, middle_term: __binding_1 } => {
let __code_105 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" && {0}", __binding_1))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("split the comparison into two")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_105, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
ComparisonOperatorsCannotBeChainedSugg::Parenthesize {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_106 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_107 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_106));
suggestions.push((__binding_1, __code_107));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("parenthesize the comparison")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1747pub(crate) enum ComparisonOperatorsCannotBeChainedSugg {
1748 #[suggestion(
1749 "split the comparison into two",
1750 style = "verbose",
1751 code = " && {middle_term}",
1752 applicability = "maybe-incorrect"
1753 )]
1754 SplitComparison {
1755 #[primary_span]
1756 span: Span,
1757 middle_term: String,
1758 },
1759 #[multipart_suggestion("parenthesize the comparison", applicability = "maybe-incorrect")]
1760 Parenthesize {
1761 #[suggestion_part(code = "(")]
1762 left: Span,
1763 #[suggestion_part(code = ")")]
1764 right: Span,
1765 },
1766}
1767
1768#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
QuestionMarkInType where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
QuestionMarkInType { span: __binding_0, sugg: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid `?` in type")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`?` is only allowed on expressions, not types")));
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
1769#[diag("invalid `?` in type")]
1770pub(crate) struct QuestionMarkInType {
1771 #[primary_span]
1772 #[label("`?` is only allowed on expressions, not types")]
1773 pub span: Span,
1774 #[subdiagnostic]
1775 pub sugg: QuestionMarkInTypeSugg,
1776}
1777
1778#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for QuestionMarkInTypeSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
QuestionMarkInTypeSugg {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_108 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("Option<"))
});
let __code_109 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(">"))
});
suggestions.push((__binding_0, __code_108));
suggestions.push((__binding_1, __code_109));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you meant to express that the type might not contain a value, use the `Option` wrapper type")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1779#[multipart_suggestion(
1780 "if you meant to express that the type might not contain a value, use the `Option` wrapper type",
1781 applicability = "machine-applicable"
1782)]
1783pub(crate) struct QuestionMarkInTypeSugg {
1784 #[suggestion_part(code = "Option<")]
1785 pub left: Span,
1786 #[suggestion_part(code = ">")]
1787 pub right: Span,
1788}
1789
1790#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ParenthesesInForHead where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ParenthesesInForHead { span: __binding_0, sugg: __binding_1
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected parentheses surrounding `for` loop head")));
;
diag.span(__binding_0.clone());
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
1791#[diag("unexpected parentheses surrounding `for` loop head")]
1792pub(crate) struct ParenthesesInForHead {
1793 #[primary_span]
1794 pub span: Vec<Span>,
1795 #[subdiagnostic]
1796 pub sugg: ParenthesesInForHeadSugg,
1797}
1798
1799#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for ParenthesesInForHeadSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ParenthesesInForHeadSugg {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_110 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" "))
});
let __code_111 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" "))
});
suggestions.push((__binding_0, __code_110));
suggestions.push((__binding_1, __code_111));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove parentheses in `for` loop")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1800#[multipart_suggestion("remove parentheses in `for` loop", applicability = "machine-applicable")]
1801pub(crate) struct ParenthesesInForHeadSugg {
1802 #[suggestion_part(code = " ")]
1803 pub left: Span,
1804 #[suggestion_part(code = " ")]
1805 pub right: Span,
1806}
1807
1808#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ParenthesesInMatchPat where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ParenthesesInMatchPat { span: __binding_0, sugg: __binding_1
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected parentheses surrounding `match` arm pattern")));
;
diag.span(__binding_0.clone());
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
1809#[diag("unexpected parentheses surrounding `match` arm pattern")]
1810pub(crate) struct ParenthesesInMatchPat {
1811 #[primary_span]
1812 pub span: Vec<Span>,
1813 #[subdiagnostic]
1814 pub sugg: ParenthesesInMatchPatSugg,
1815}
1816
1817#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for ParenthesesInMatchPatSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ParenthesesInMatchPatSugg {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_112 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
let __code_113 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
suggestions.push((__binding_0, __code_112));
suggestions.push((__binding_1, __code_113));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove parentheses surrounding the pattern")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1818#[multipart_suggestion(
1819 "remove parentheses surrounding the pattern",
1820 applicability = "machine-applicable"
1821)]
1822pub(crate) struct ParenthesesInMatchPatSugg {
1823 #[suggestion_part(code = "")]
1824 pub left: Span,
1825 #[suggestion_part(code = "")]
1826 pub right: Span,
1827}
1828
1829#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
DocCommentOnParamType where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
DocCommentOnParamType { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("documentation comments cannot be applied to a function parameter's type")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("doc comments are not allowed here")));
diag
}
}
}
}
};Diagnostic)]
1830#[diag("documentation comments cannot be applied to a function parameter's type")]
1831pub(crate) struct DocCommentOnParamType {
1832 #[primary_span]
1833 #[label("doc comments are not allowed here")]
1834 pub span: Span,
1835}
1836
1837#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AttributeOnParamType where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AttributeOnParamType { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes cannot be applied to a function parameter's type")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes are not allowed here")));
diag
}
}
}
}
};Diagnostic)]
1838#[diag("attributes cannot be applied to a function parameter's type")]
1839pub(crate) struct AttributeOnParamType {
1840 #[primary_span]
1841 #[label("attributes are not allowed here")]
1842 pub span: Span,
1843}
1844
1845#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AttributeOnType where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AttributeOnType { span: __binding_0, fix_span: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes cannot be applied to types")));
let __code_114 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes are not allowed here")));
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove attribute from here")),
__code_114, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::CompletelyHidden);
diag
}
}
}
}
};Diagnostic)]
1846#[diag("attributes cannot be applied to types")]
1847pub(crate) struct AttributeOnType {
1848 #[primary_span]
1849 #[label("attributes are not allowed here")]
1850 pub span: Span,
1851 #[suggestion(
1852 "remove attribute from here",
1853 code = "",
1854 applicability = "machine-applicable",
1855 style = "tool-only"
1856 )]
1857 pub fix_span: Span,
1858}
1859
1860#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AttributeOnGenericArg where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AttributeOnGenericArg {
span: __binding_0, fix_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes cannot be applied to generic arguments")));
let __code_115 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes are not allowed here")));
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove attribute from here")),
__code_115, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::CompletelyHidden);
diag
}
}
}
}
};Diagnostic)]
1861#[diag("attributes cannot be applied to generic arguments")]
1862pub(crate) struct AttributeOnGenericArg {
1863 #[primary_span]
1864 #[label("attributes are not allowed here")]
1865 pub span: Span,
1866 #[suggestion(
1867 "remove attribute from here",
1868 code = "",
1869 applicability = "machine-applicable",
1870 style = "tool-only"
1871 )]
1872 pub fix_span: Span,
1873}
1874
1875#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AttributeOnEmptyType where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AttributeOnEmptyType { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes cannot be applied here")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes are not allowed here")));
diag
}
}
}
}
};Diagnostic)]
1876#[diag("attributes cannot be applied here")]
1877pub(crate) struct AttributeOnEmptyType {
1878 #[primary_span]
1879 #[label("attributes are not allowed here")]
1880 pub span: Span,
1881}
1882
1883#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
PatternMethodParamWithoutBody where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
PatternMethodParamWithoutBody {
span: __binding_0, target: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("patterns aren't allowed in {$target}")));
let __code_116 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("_"))
})].into_iter();
diag.code(E0642);
;
diag.arg("target", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("give this argument a name or use an underscore to ignore it")),
__code_116, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
1884#[diag("patterns aren't allowed in {$target}", code = E0642)]
1885pub(crate) struct PatternMethodParamWithoutBody {
1886 #[primary_span]
1887 #[suggestion(
1888 "give this argument a name or use an underscore to ignore it",
1889 code = "_",
1890 applicability = "machine-applicable",
1891 style = "verbose"
1892 )]
1893 pub span: Span,
1894 pub target: &'static str,
1895}
1896
1897#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
SelfParamNotFirst where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
SelfParamNotFirst { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `self` parameter in function")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("must be the first parameter of an associated function")));
diag
}
}
}
}
};Diagnostic)]
1898#[diag("unexpected `self` parameter in function")]
1899pub(crate) struct SelfParamNotFirst {
1900 #[primary_span]
1901 #[label("must be the first parameter of an associated function")]
1902 pub span: Span,
1903}
1904
1905#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ConstGenericWithoutBraces where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ConstGenericWithoutBraces {
span: __binding_0, sugg: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expressions must be enclosed in braces to be used as const generic arguments")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
1906#[diag("expressions must be enclosed in braces to be used as const generic arguments")]
1907pub(crate) struct ConstGenericWithoutBraces {
1908 #[primary_span]
1909 pub span: Span,
1910 #[subdiagnostic]
1911 pub sugg: ConstGenericWithoutBracesSugg,
1912}
1913
1914#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for ConstGenericWithoutBracesSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ConstGenericWithoutBracesSugg {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_117 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{{ "))
});
let __code_118 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" }}"))
});
suggestions.push((__binding_0, __code_117));
suggestions.push((__binding_1, __code_118));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("enclose the `const` expression in braces")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1915#[multipart_suggestion(
1916 "enclose the `const` expression in braces",
1917 applicability = "machine-applicable"
1918)]
1919pub(crate) struct ConstGenericWithoutBracesSugg {
1920 #[suggestion_part(code = "{{ ")]
1921 pub left: Span,
1922 #[suggestion_part(code = " }}")]
1923 pub right: Span,
1924}
1925
1926#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedConstParamDeclaration where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedConstParamDeclaration {
span: __binding_0, sugg: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `const` parameter declaration")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected a `const` expression, not a parameter declaration")));
if let Some(__binding_1) = __binding_1 {
diag.subdiagnostic(__binding_1);
}
diag
}
}
}
}
};Diagnostic)]
1927#[diag("unexpected `const` parameter declaration")]
1928pub(crate) struct UnexpectedConstParamDeclaration {
1929 #[primary_span]
1930 #[label("expected a `const` expression, not a parameter declaration")]
1931 pub span: Span,
1932 #[subdiagnostic]
1933 pub sugg: Option<UnexpectedConstParamDeclarationSugg>,
1934}
1935
1936#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for
UnexpectedConstParamDeclarationSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
UnexpectedConstParamDeclarationSugg::AddParam {
impl_generics: __binding_0,
incorrect_decl: __binding_1,
snippet: __binding_2,
ident: __binding_3 } => {
let mut suggestions = Vec::new();
let __code_119 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("<{0}>", __binding_2))
});
let __code_120 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_3))
});
suggestions.push((__binding_0, __code_119));
suggestions.push((__binding_1, __code_120));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`const` parameters must be declared for the `impl`")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
UnexpectedConstParamDeclarationSugg::AppendParam {
impl_generics_end: __binding_0,
incorrect_decl: __binding_1,
snippet: __binding_2,
ident: __binding_3 } => {
let mut suggestions = Vec::new();
let __code_121 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(", {0}", __binding_2))
});
let __code_122 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_3))
});
suggestions.push((__binding_0, __code_121));
suggestions.push((__binding_1, __code_122));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`const` parameters must be declared for the `impl`")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
1937pub(crate) enum UnexpectedConstParamDeclarationSugg {
1938 #[multipart_suggestion(
1939 "`const` parameters must be declared for the `impl`",
1940 applicability = "machine-applicable"
1941 )]
1942 AddParam {
1943 #[suggestion_part(code = "<{snippet}>")]
1944 impl_generics: Span,
1945 #[suggestion_part(code = "{ident}")]
1946 incorrect_decl: Span,
1947 snippet: String,
1948 ident: String,
1949 },
1950 #[multipart_suggestion(
1951 "`const` parameters must be declared for the `impl`",
1952 applicability = "machine-applicable"
1953 )]
1954 AppendParam {
1955 #[suggestion_part(code = ", {snippet}")]
1956 impl_generics_end: Span,
1957 #[suggestion_part(code = "{ident}")]
1958 incorrect_decl: Span,
1959 snippet: String,
1960 ident: String,
1961 },
1962}
1963
1964#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedConstInGenericParam where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedConstInGenericParam {
span: __binding_0, to_remove: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected lifetime, type, or constant, found keyword `const`")));
let __code_123 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the `const` keyword is only needed in the definition of the type")),
__code_123, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
diag
}
}
}
}
};Diagnostic)]
1965#[diag("expected lifetime, type, or constant, found keyword `const`")]
1966pub(crate) struct UnexpectedConstInGenericParam {
1967 #[primary_span]
1968 pub span: Span,
1969 #[suggestion(
1970 "the `const` keyword is only needed in the definition of the type",
1971 style = "verbose",
1972 code = "",
1973 applicability = "maybe-incorrect"
1974 )]
1975 pub to_remove: Option<Span>,
1976}
1977
1978#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AsyncMoveOrderIncorrect where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsyncMoveOrderIncorrect { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the order of `move` and `async` is incorrect")));
let __code_124 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("async move"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try switching the order")),
__code_124, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
1979#[diag("the order of `move` and `async` is incorrect")]
1980pub(crate) struct AsyncMoveOrderIncorrect {
1981 #[primary_span]
1982 #[suggestion(
1983 "try switching the order",
1984 style = "verbose",
1985 code = "async move",
1986 applicability = "maybe-incorrect"
1987 )]
1988 pub span: Span,
1989}
1990
1991#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AsyncUseOrderIncorrect where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsyncUseOrderIncorrect { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the order of `use` and `async` is incorrect")));
let __code_125 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("async use"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try switching the order")),
__code_125, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
1992#[diag("the order of `use` and `async` is incorrect")]
1993pub(crate) struct AsyncUseOrderIncorrect {
1994 #[primary_span]
1995 #[suggestion(
1996 "try switching the order",
1997 style = "verbose",
1998 code = "async use",
1999 applicability = "maybe-incorrect"
2000 )]
2001 pub span: Span,
2002}
2003
2004#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
DoubleColonInBound where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
DoubleColonInBound { span: __binding_0, between: __binding_1
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `:` followed by trait or lifetime")));
let __code_126 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(": "))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use single colon")),
__code_126, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2005#[diag("expected `:` followed by trait or lifetime")]
2006pub(crate) struct DoubleColonInBound {
2007 #[primary_span]
2008 pub span: Span,
2009 #[suggestion(
2010 "use single colon",
2011 code = ": ",
2012 applicability = "machine-applicable",
2013 style = "verbose"
2014 )]
2015 pub between: Span,
2016}
2017
2018#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FnPtrWithGenerics where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FnPtrWithGenerics { span: __binding_0, sugg: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("function pointer types may not have generic parameters")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.subdiagnostic(__binding_1);
}
diag
}
}
}
}
};Diagnostic)]
2019#[diag("function pointer types may not have generic parameters")]
2020pub(crate) struct FnPtrWithGenerics {
2021 #[primary_span]
2022 pub span: Span,
2023 #[subdiagnostic]
2024 pub sugg: Option<FnPtrWithGenericsSugg>,
2025}
2026
2027#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for MisplacedReturnType {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
MisplacedReturnType {
fn_params_end: __binding_0,
snippet: __binding_1,
ret_ty_span: __binding_2 } => {
let mut suggestions = Vec::new();
let __code_127 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" {0}", __binding_1))
});
let __code_128 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
suggestions.push((__binding_0, __code_127));
suggestions.push((__binding_2, __code_128));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("place the return type after the function parameters")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
2028#[multipart_suggestion(
2029 "place the return type after the function parameters",
2030 style = "verbose",
2031 applicability = "maybe-incorrect"
2032)]
2033pub(crate) struct MisplacedReturnType {
2034 #[suggestion_part(code = " {snippet}")]
2035 pub fn_params_end: Span,
2036 pub snippet: String,
2037 #[suggestion_part(code = "")]
2038 pub ret_ty_span: Span,
2039}
2040
2041#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for FnPtrWithGenericsSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
FnPtrWithGenericsSugg {
left: __binding_0,
snippet: __binding_1,
right: __binding_2,
arity: __binding_3,
for_param_list_exists: __binding_4 } => {
let mut suggestions = Vec::new();
let __code_129 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_1))
});
let __code_130 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
suggestions.push((__binding_0, __code_129));
suggestions.push((__binding_2, __code_130));
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("arity".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_3,
&mut diag.long_ty_path));
sub_args.insert("for_param_list_exists".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_4,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider moving the lifetime {$arity ->\n [one] parameter\n *[other] parameters\n } to {$for_param_list_exists ->\n [true] the\n *[false] a\n } `for` parameter list")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
2042#[multipart_suggestion(
2043 "consider moving the lifetime {$arity ->
2044 [one] parameter
2045 *[other] parameters
2046 } to {$for_param_list_exists ->
2047 [true] the
2048 *[false] a
2049 } `for` parameter list",
2050 applicability = "maybe-incorrect"
2051)]
2052pub(crate) struct FnPtrWithGenericsSugg {
2053 #[suggestion_part(code = "{snippet}")]
2054 pub left: Span,
2055 pub snippet: String,
2056 #[suggestion_part(code = "")]
2057 pub right: Span,
2058 pub arity: usize,
2059 pub for_param_list_exists: bool,
2060}
2061
2062pub(crate) struct FnTraitMissingParen {
2063 pub span: Span,
2064}
2065
2066impl Subdiagnostic for FnTraitMissingParen {
2067 fn add_to_diag<G: EmissionGuarantee>(self, diag: &mut Diag<'_, G>) {
2068 diag.span_label(self.span, rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`Fn` bounds require arguments in parentheses"))msg!("`Fn` bounds require arguments in parentheses"));
2069 diag.span_suggestion_short(
2070 self.span.shrink_to_hi(),
2071 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try adding parentheses"))msg!("try adding parentheses"),
2072 "()",
2073 Applicability::MachineApplicable,
2074 );
2075 }
2076}
2077
2078#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedIfWithIf where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedIfWithIf(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `if` in the condition expression")));
let __code_131 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" "))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the `if`")),
__code_131, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2079#[diag("unexpected `if` in the condition expression")]
2080pub(crate) struct UnexpectedIfWithIf(
2081 #[primary_span]
2082 #[suggestion(
2083 "remove the `if`",
2084 applicability = "machine-applicable",
2085 code = " ",
2086 style = "verbose"
2087 )]
2088 pub Span,
2089);
2090
2091#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for FnTypoWithImpl
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FnTypoWithImpl { fn_span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("you might have meant to write `impl` instead of `fn`")));
let __code_132 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("impl"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("replace `fn` with `impl` here")),
__code_132, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2092#[diag("you might have meant to write `impl` instead of `fn`")]
2093pub(crate) struct FnTypoWithImpl {
2094 #[primary_span]
2095 #[suggestion(
2096 "replace `fn` with `impl` here",
2097 applicability = "maybe-incorrect",
2098 code = "impl",
2099 style = "verbose"
2100 )]
2101 pub fn_span: Span,
2102}
2103
2104#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedFnPathFoundFnKeyword where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedFnPathFoundFnKeyword { fn_token_span: __binding_0 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found keyword `fn`")));
let __code_133 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("Fn"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `Fn` to refer to the trait")),
__code_133, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2105#[diag("expected identifier, found keyword `fn`")]
2106pub(crate) struct ExpectedFnPathFoundFnKeyword {
2107 #[primary_span]
2108 #[suggestion(
2109 "use `Fn` to refer to the trait",
2110 applicability = "machine-applicable",
2111 code = "Fn",
2112 style = "verbose"
2113 )]
2114 pub fn_token_span: Span,
2115}
2116
2117#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
PathFoundCVariadicParams where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
PathFoundCVariadicParams { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`Trait(...)` syntax does not support c_variadic parameters")));
let __code_134 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the `...`")),
__code_134, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
diag
}
}
}
}
};Diagnostic)]
2118#[diag("`Trait(...)` syntax does not support c_variadic parameters")]
2119pub(crate) struct PathFoundCVariadicParams {
2120 #[primary_span]
2121 #[suggestion("remove the `...`", applicability = "machine-applicable", code = "")]
2122 pub span: Span,
2123}
2124
2125#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
PathFoundAttributeInParams where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
PathFoundAttributeInParams { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`Trait(...)` syntax does not support attributes in parameters")));
let __code_135 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the attributes")),
__code_135, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
diag
}
}
}
}
};Diagnostic)]
2126#[diag("`Trait(...)` syntax does not support attributes in parameters")]
2127pub(crate) struct PathFoundAttributeInParams {
2128 #[primary_span]
2129 #[suggestion("remove the attributes", applicability = "machine-applicable", code = "")]
2130 pub span: Span,
2131}
2132
2133#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
PathSingleColon where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
PathSingleColon { span: __binding_0, suggestion: __binding_1
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("path separator must be a double colon")));
let __code_136 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(":"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use a double colon instead")),
__code_136, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2134#[diag("path separator must be a double colon")]
2135pub(crate) struct PathSingleColon {
2136 #[primary_span]
2137 pub span: Span,
2138
2139 #[suggestion(
2140 "use a double colon instead",
2141 applicability = "machine-applicable",
2142 code = ":",
2143 style = "verbose"
2144 )]
2145 pub suggestion: Span,
2146}
2147
2148#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
PathTripleColon where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
PathTripleColon { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("path separator must be a double colon")));
let __code_137 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use a double colon instead")),
__code_137, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2149#[diag("path separator must be a double colon")]
2150pub(crate) struct PathTripleColon {
2151 #[primary_span]
2152 #[suggestion(
2153 "use a double colon instead",
2154 applicability = "maybe-incorrect",
2155 code = "",
2156 style = "verbose"
2157 )]
2158 pub span: Span,
2159}
2160
2161#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for ColonAsSemi
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ColonAsSemi { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("statements are terminated with a semicolon")));
let __code_138 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(";"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use a semicolon instead")),
__code_138, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2162#[diag("statements are terminated with a semicolon")]
2163pub(crate) struct ColonAsSemi {
2164 #[primary_span]
2165 #[suggestion(
2166 "use a semicolon instead",
2167 applicability = "machine-applicable",
2168 code = ";",
2169 style = "verbose"
2170 )]
2171 pub span: Span,
2172}
2173
2174#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
WhereClauseBeforeTupleStructBody where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
WhereClauseBeforeTupleStructBody {
span: __binding_0,
name: __binding_1,
body: __binding_2,
sugg: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("where clauses are not allowed before tuple struct bodies")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected where clause")));
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("while parsing this tuple struct")));
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the struct body")));
if let Some(__binding_3) = __binding_3 {
diag.subdiagnostic(__binding_3);
}
diag
}
}
}
}
};Diagnostic)]
2175#[diag("where clauses are not allowed before tuple struct bodies")]
2176pub(crate) struct WhereClauseBeforeTupleStructBody {
2177 #[primary_span]
2178 #[label("unexpected where clause")]
2179 pub span: Span,
2180 #[label("while parsing this tuple struct")]
2181 pub name: Span,
2182 #[label("the struct body")]
2183 pub body: Span,
2184 #[subdiagnostic]
2185 pub sugg: Option<WhereClauseBeforeTupleStructBodySugg>,
2186}
2187
2188#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for
WhereClauseBeforeTupleStructBodySugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
WhereClauseBeforeTupleStructBodySugg {
left: __binding_0, snippet: __binding_1, right: __binding_2
} => {
let mut suggestions = Vec::new();
let __code_139 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_1))
});
let __code_140 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
suggestions.push((__binding_0, __code_139));
suggestions.push((__binding_2, __code_140));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("move the body before the where clause")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
2189#[multipart_suggestion(
2190 "move the body before the where clause",
2191 applicability = "machine-applicable"
2192)]
2193pub(crate) struct WhereClauseBeforeTupleStructBodySugg {
2194 #[suggestion_part(code = "{snippet}")]
2195 pub left: Span,
2196 pub snippet: String,
2197 #[suggestion_part(code = "")]
2198 pub right: Span,
2199}
2200
2201#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for AsyncFnIn2015
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsyncFnIn2015 { span: __binding_0, help: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`async fn` is not permitted in Rust 2015")));
diag.code(E0670);
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("to use `async fn`, switch to Rust 2018 or later")));
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
2202#[diag("`async fn` is not permitted in Rust 2015", code = E0670)]
2203pub(crate) struct AsyncFnIn2015 {
2204 #[primary_span]
2205 #[label("to use `async fn`, switch to Rust 2018 or later")]
2206 pub span: Span,
2207 #[subdiagnostic]
2208 pub help: HelpUseLatestEdition,
2209}
2210
2211#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for AsyncBlockIn2015 {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
AsyncBlockIn2015 { span: __binding_0 } => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`async` blocks are only allowed in Rust 2018 or later")),
&sub_args);
diag.span_label(__binding_0, __message);
}
}
}
}
};Subdiagnostic)]
2212#[label("`async` blocks are only allowed in Rust 2018 or later")]
2213pub(crate) struct AsyncBlockIn2015 {
2214 #[primary_span]
2215 pub span: Span,
2216}
2217
2218#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AsyncMoveBlockIn2015 where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsyncMoveBlockIn2015 { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`async move` blocks are only allowed in Rust 2018 or later")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2219#[diag("`async move` blocks are only allowed in Rust 2018 or later")]
2220pub(crate) struct AsyncMoveBlockIn2015 {
2221 #[primary_span]
2222 pub span: Span,
2223}
2224
2225#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AsyncUseBlockIn2015 where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsyncUseBlockIn2015 { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`async use` blocks are only allowed in Rust 2018 or later")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2226#[diag("`async use` blocks are only allowed in Rust 2018 or later")]
2227pub(crate) struct AsyncUseBlockIn2015 {
2228 #[primary_span]
2229 pub span: Span,
2230}
2231
2232#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AsyncBoundModifierIn2015 where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsyncBoundModifierIn2015 {
span: __binding_0, help: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`async` trait bounds are only allowed in Rust 2018 or later")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
2233#[diag("`async` trait bounds are only allowed in Rust 2018 or later")]
2234pub(crate) struct AsyncBoundModifierIn2015 {
2235 #[primary_span]
2236 pub span: Span,
2237 #[subdiagnostic]
2238 pub help: HelpUseLatestEdition,
2239}
2240
2241#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
LetChainPre2024 where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
LetChainPre2024 { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("let chains are only allowed in Rust 2024 or later")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2242#[diag("let chains are only allowed in Rust 2024 or later")]
2243pub(crate) struct LetChainPre2024 {
2244 #[primary_span]
2245 pub span: Span,
2246}
2247
2248#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
SelfArgumentPointer where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
SelfArgumentPointer { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("cannot pass `self` by raw pointer")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("cannot pass `self` by raw pointer")));
diag
}
}
}
}
};Diagnostic)]
2249#[diag("cannot pass `self` by raw pointer")]
2250pub(crate) struct SelfArgumentPointer {
2251 #[primary_span]
2252 #[label("cannot pass `self` by raw pointer")]
2253 pub span: Span,
2254}
2255
2256#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedTokenAfterDot where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedTokenAfterDot {
span: __binding_0, actual: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected token: {$actual}")));
;
diag.arg("actual", __binding_1);
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2257#[diag("unexpected token: {$actual}")]
2258pub(crate) struct UnexpectedTokenAfterDot {
2259 #[primary_span]
2260 pub span: Span,
2261 pub actual: String,
2262}
2263
2264#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
VisibilityNotFollowedByItem where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
VisibilityNotFollowedByItem {
span: __binding_0, vis: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("visibility `{$vis}` is not followed by an item")));
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("you likely meant to define an item, e.g., `{$vis} fn foo() {\"{}\"}`")));
;
diag.arg("vis", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the visibility")));
diag
}
}
}
}
};Diagnostic)]
2265#[diag("visibility `{$vis}` is not followed by an item")]
2266#[help("you likely meant to define an item, e.g., `{$vis} fn foo() {\"{}\"}`")]
2267pub(crate) struct VisibilityNotFollowedByItem {
2268 #[primary_span]
2269 #[label("the visibility")]
2270 pub span: Span,
2271 pub vis: String,
2272}
2273
2274#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
DefaultNotFollowedByItem where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
DefaultNotFollowedByItem { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`default` is not followed by an item")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("only `fn`, `const`, `type`, or `impl` items may be prefixed by `default`")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the `default` qualifier")));
diag
}
}
}
}
};Diagnostic)]
2275#[diag("`default` is not followed by an item")]
2276#[note("only `fn`, `const`, `type`, or `impl` items may be prefixed by `default`")]
2277pub(crate) struct DefaultNotFollowedByItem {
2278 #[primary_span]
2279 #[label("the `default` qualifier")]
2280 pub span: Span,
2281}
2282
2283#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FinalNotFollowedByItem where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FinalNotFollowedByItem { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`final` is not followed by an item")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("only associated functions in traits may be prefixed by `final`")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the `final` qualifier")));
diag
}
}
}
}
};Diagnostic)]
2284#[diag("`final` is not followed by an item")]
2285#[note("only associated functions in traits may be prefixed by `final`")]
2286pub(crate) struct FinalNotFollowedByItem {
2287 #[primary_span]
2288 #[label("the `final` qualifier")]
2289 pub span: Span,
2290}
2291
2292#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MissingKeywordForItemDefinition where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MissingKeywordForItemDefinition::Enum {
span: __binding_0,
insert_span: __binding_1,
ident: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing `enum` for enum definition")));
let __code_141 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("enum "))
})].into_iter();
;
diag.arg("ident", __binding_2);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add `enum` here to parse `{$ident}` as an enum")),
__code_141, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
MissingKeywordForItemDefinition::EnumOrStruct {
span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing `enum` or `struct` for enum or struct definition")));
;
diag.span(__binding_0);
diag
}
MissingKeywordForItemDefinition::Struct {
span: __binding_0,
insert_span: __binding_1,
ident: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing `struct` for struct definition")));
let __code_142 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("struct "))
})].into_iter();
;
diag.arg("ident", __binding_2);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add `struct` here to parse `{$ident}` as a struct")),
__code_142, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
MissingKeywordForItemDefinition::Function {
span: __binding_0,
insert_span: __binding_1,
ident: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing `fn` for function definition")));
let __code_143 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("fn "))
})].into_iter();
;
diag.arg("ident", __binding_2);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add `fn` here to parse `{$ident}` as a function")),
__code_143, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
MissingKeywordForItemDefinition::Method {
span: __binding_0,
insert_span: __binding_1,
ident: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing `fn` for method definition")));
let __code_144 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("fn "))
})].into_iter();
;
diag.arg("ident", __binding_2);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add `fn` here to parse `{$ident}` as a method")),
__code_144, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
MissingKeywordForItemDefinition::Ambiguous {
span: __binding_0, subdiag: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing `fn` or `struct` for function or struct definition")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.subdiagnostic(__binding_1);
}
diag
}
}
}
}
};Diagnostic)]
2293pub(crate) enum MissingKeywordForItemDefinition {
2294 #[diag("missing `enum` for enum definition")]
2295 Enum {
2296 #[primary_span]
2297 span: Span,
2298 #[suggestion(
2299 "add `enum` here to parse `{$ident}` as an enum",
2300 style = "verbose",
2301 applicability = "maybe-incorrect",
2302 code = "enum "
2303 )]
2304 insert_span: Span,
2305 ident: Ident,
2306 },
2307 #[diag("missing `enum` or `struct` for enum or struct definition")]
2308 EnumOrStruct {
2309 #[primary_span]
2310 span: Span,
2311 },
2312 #[diag("missing `struct` for struct definition")]
2313 Struct {
2314 #[primary_span]
2315 span: Span,
2316 #[suggestion(
2317 "add `struct` here to parse `{$ident}` as a struct",
2318 style = "verbose",
2319 applicability = "maybe-incorrect",
2320 code = "struct "
2321 )]
2322 insert_span: Span,
2323 ident: Ident,
2324 },
2325 #[diag("missing `fn` for function definition")]
2326 Function {
2327 #[primary_span]
2328 span: Span,
2329 #[suggestion(
2330 "add `fn` here to parse `{$ident}` as a function",
2331 style = "verbose",
2332 applicability = "maybe-incorrect",
2333 code = "fn "
2334 )]
2335 insert_span: Span,
2336 ident: Ident,
2337 },
2338 #[diag("missing `fn` for method definition")]
2339 Method {
2340 #[primary_span]
2341 span: Span,
2342 #[suggestion(
2343 "add `fn` here to parse `{$ident}` as a method",
2344 style = "verbose",
2345 applicability = "maybe-incorrect",
2346 code = "fn "
2347 )]
2348 insert_span: Span,
2349 ident: Ident,
2350 },
2351 #[diag("missing `fn` or `struct` for function or struct definition")]
2352 Ambiguous {
2353 #[primary_span]
2354 span: Span,
2355 #[subdiagnostic]
2356 subdiag: Option<AmbiguousMissingKwForItemSub>,
2357 },
2358}
2359
2360#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for AmbiguousMissingKwForItemSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
AmbiguousMissingKwForItemSub::SuggestMacro {
span: __binding_0, snippet: __binding_1 } => {
let __code_145 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}!", __binding_1))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you meant to call a macro, try")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_145, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
AmbiguousMissingKwForItemSub::HelpMacro => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you meant to call a macro, remove the `pub` and add a trailing `!` after the identifier")),
&sub_args);
diag.help(__message);
}
}
}
}
};Subdiagnostic)]
2361pub(crate) enum AmbiguousMissingKwForItemSub {
2362 #[suggestion(
2363 "if you meant to call a macro, try",
2364 applicability = "maybe-incorrect",
2365 code = "{snippet}!",
2366 style = "verbose"
2367 )]
2368 SuggestMacro {
2369 #[primary_span]
2370 span: Span,
2371 snippet: String,
2372 },
2373 #[help(
2374 "if you meant to call a macro, remove the `pub` and add a trailing `!` after the identifier"
2375 )]
2376 HelpMacro,
2377}
2378
2379#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MissingFnParams where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MissingFnParams { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing parameters for function definition")));
let __code_146 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("()"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add a parameter list")),
__code_146, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2380#[diag("missing parameters for function definition")]
2381pub(crate) struct MissingFnParams {
2382 #[primary_span]
2383 #[suggestion(
2384 "add a parameter list",
2385 code = "()",
2386 applicability = "machine-applicable",
2387 style = "verbose"
2388 )]
2389 pub span: Span,
2390}
2391
2392#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidPathSepInFnDefinition where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidPathSepInFnDefinition { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid path separator in function definition")));
let __code_147 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove invalid path separator")),
__code_147, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2393#[diag("invalid path separator in function definition")]
2394pub(crate) struct InvalidPathSepInFnDefinition {
2395 #[primary_span]
2396 #[suggestion(
2397 "remove invalid path separator",
2398 code = "",
2399 applicability = "machine-applicable",
2400 style = "verbose"
2401 )]
2402 pub span: Span,
2403}
2404
2405#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MissingTraitInTraitImpl where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MissingTraitInTraitImpl {
span: __binding_0, for_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing trait in a trait impl")));
let __code_148 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" Trait "))
})].into_iter();
let __code_149 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add a trait here")),
__code_148, rustc_errors::Applicability::HasPlaceholders,
rustc_errors::SuggestionStyle::ShowAlways);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("for an inherent impl, drop this `for`")),
__code_149, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2406#[diag("missing trait in a trait impl")]
2407pub(crate) struct MissingTraitInTraitImpl {
2408 #[primary_span]
2409 #[suggestion(
2410 "add a trait here",
2411 code = " Trait ",
2412 applicability = "has-placeholders",
2413 style = "verbose"
2414 )]
2415 pub span: Span,
2416 #[suggestion(
2417 "for an inherent impl, drop this `for`",
2418 code = "",
2419 applicability = "maybe-incorrect",
2420 style = "verbose"
2421 )]
2422 pub for_span: Span,
2423}
2424
2425#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MissingForInTraitImpl where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MissingForInTraitImpl { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing `for` in a trait impl")));
let __code_150 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" for "))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add `for` here")),
__code_150, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2426#[diag("missing `for` in a trait impl")]
2427pub(crate) struct MissingForInTraitImpl {
2428 #[primary_span]
2429 #[suggestion(
2430 "add `for` here",
2431 style = "verbose",
2432 code = " for ",
2433 applicability = "machine-applicable"
2434 )]
2435 pub span: Span,
2436}
2437
2438#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedTraitInTraitImplFoundType where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedTraitInTraitImplFoundType { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected a trait, found type")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2439#[diag("expected a trait, found type")]
2440pub(crate) struct ExpectedTraitInTraitImplFoundType {
2441 #[primary_span]
2442 pub span: Span,
2443}
2444
2445#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExtraImplKeywordInTraitImpl where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExtraImplKeywordInTraitImpl {
extra_impl_kw: __binding_0, impl_trait_span: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `impl` keyword")));
let __code_151 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the extra `impl`")),
__code_151, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::HideCodeInline);
diag.span_note(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("this is parsed as an `impl Trait` type, but a trait is expected at this position")));
diag
}
}
}
}
};Diagnostic)]
2446#[diag("unexpected `impl` keyword")]
2447pub(crate) struct ExtraImplKeywordInTraitImpl {
2448 #[primary_span]
2449 #[suggestion(
2450 "remove the extra `impl`",
2451 code = "",
2452 applicability = "maybe-incorrect",
2453 style = "short"
2454 )]
2455 pub extra_impl_kw: Span,
2456 #[note("this is parsed as an `impl Trait` type, but a trait is expected at this position")]
2457 pub impl_trait_span: Span,
2458}
2459
2460#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
BoundsNotAllowedOnTraitAliases where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BoundsNotAllowedOnTraitAliases { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("bounds are not allowed on trait aliases")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2461#[diag("bounds are not allowed on trait aliases")]
2462pub(crate) struct BoundsNotAllowedOnTraitAliases {
2463 #[primary_span]
2464 pub span: Span,
2465}
2466
2467#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
TraitAliasCannotBeAuto where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
TraitAliasCannotBeAuto { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("trait aliases cannot be `auto`")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("trait aliases cannot be `auto`")));
diag
}
}
}
}
};Diagnostic)]
2468#[diag("trait aliases cannot be `auto`")]
2469pub(crate) struct TraitAliasCannotBeAuto {
2470 #[primary_span]
2471 #[label("trait aliases cannot be `auto`")]
2472 pub span: Span,
2473}
2474
2475#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
TraitAliasCannotBeUnsafe where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
TraitAliasCannotBeUnsafe { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("trait aliases cannot be `unsafe`")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("trait aliases cannot be `unsafe`")));
diag
}
}
}
}
};Diagnostic)]
2476#[diag("trait aliases cannot be `unsafe`")]
2477pub(crate) struct TraitAliasCannotBeUnsafe {
2478 #[primary_span]
2479 #[label("trait aliases cannot be `unsafe`")]
2480 pub span: Span,
2481}
2482
2483#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
TraitAliasCannotBeImplRestricted where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
TraitAliasCannotBeImplRestricted { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("trait aliases cannot be `impl`-restricted")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("trait aliases cannot be `impl`-restricted")));
diag
}
}
}
}
};Diagnostic)]
2484#[diag("trait aliases cannot be `impl`-restricted")]
2485pub(crate) struct TraitAliasCannotBeImplRestricted {
2486 #[primary_span]
2487 #[label("trait aliases cannot be `impl`-restricted")]
2488 pub span: Span,
2489}
2490
2491#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AssociatedStaticItemNotAllowed where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AssociatedStaticItemNotAllowed { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("associated `static` items are not allowed")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2492#[diag("associated `static` items are not allowed")]
2493pub(crate) struct AssociatedStaticItemNotAllowed {
2494 #[primary_span]
2495 pub span: Span,
2496}
2497
2498#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExternCrateNameWithDashes where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExternCrateNameWithDashes {
span: __binding_0, sugg: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("crate name using dashes are not valid in `extern crate` statements")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("dash-separated idents are not valid")));
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
2499#[diag("crate name using dashes are not valid in `extern crate` statements")]
2500pub(crate) struct ExternCrateNameWithDashes {
2501 #[primary_span]
2502 #[label("dash-separated idents are not valid")]
2503 pub span: Span,
2504 #[subdiagnostic]
2505 pub sugg: ExternCrateNameWithDashesSugg,
2506}
2507
2508#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for ExternCrateNameWithDashesSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ExternCrateNameWithDashesSugg { dashes: __binding_0 } => {
let mut suggestions = Vec::new();
let __code_152 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("_"))
});
for __binding_0 in __binding_0 {
suggestions.push((__binding_0, __code_152.clone()));
}
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if the original crate name uses dashes you need to use underscores in the code")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
2509#[multipart_suggestion(
2510 "if the original crate name uses dashes you need to use underscores in the code",
2511 applicability = "machine-applicable"
2512)]
2513pub(crate) struct ExternCrateNameWithDashesSugg {
2514 #[suggestion_part(code = "_")]
2515 pub dashes: Vec<Span>,
2516}
2517
2518#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExternItemCannotBeConst where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExternItemCannotBeConst {
ident_span: __binding_0, const_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("extern items cannot be `const`")));
let __code_153 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("static "))
})].into_iter();
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("for more information, visit https://doc.rust-lang.org/std/keyword.extern.html")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try using a static value")),
__code_153, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
diag
}
}
}
}
};Diagnostic)]
2519#[diag("extern items cannot be `const`")]
2520#[note("for more information, visit https://doc.rust-lang.org/std/keyword.extern.html")]
2521pub(crate) struct ExternItemCannotBeConst {
2522 #[primary_span]
2523 pub ident_span: Span,
2524 #[suggestion(
2525 "try using a static value",
2526 code = "static ",
2527 applicability = "machine-applicable",
2528 style = "verbose"
2529 )]
2530 pub const_span: Option<Span>,
2531}
2532
2533#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ConstGlobalCannotBeMutable where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ConstGlobalCannotBeMutable {
ident_span: __binding_0, const_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("const globals cannot be mutable")));
let __code_154 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("static"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("cannot be mutable")));
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("you might want to declare a static instead")),
__code_154, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2534#[diag("const globals cannot be mutable")]
2535pub(crate) struct ConstGlobalCannotBeMutable {
2536 #[primary_span]
2537 #[label("cannot be mutable")]
2538 pub ident_span: Span,
2539 #[suggestion(
2540 "you might want to declare a static instead",
2541 code = "static",
2542 style = "verbose",
2543 applicability = "maybe-incorrect"
2544 )]
2545 pub const_span: Span,
2546}
2547
2548#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MissingConstType where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MissingConstType {
span: __binding_0, kind: __binding_1, colon: __binding_2 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing type for `{$kind}` item")));
let __code_155 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0} <type>",
__binding_2))
})].into_iter();
;
diag.arg("kind", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("provide a type for the item")),
__code_155, rustc_errors::Applicability::HasPlaceholders,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2549#[diag("missing type for `{$kind}` item")]
2550pub(crate) struct MissingConstType {
2551 #[primary_span]
2552 #[suggestion(
2553 "provide a type for the item",
2554 code = "{colon} <type>",
2555 style = "verbose",
2556 applicability = "has-placeholders"
2557 )]
2558 pub span: Span,
2559
2560 pub kind: &'static str,
2561 pub colon: &'static str,
2562}
2563
2564#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
EnumStructMutuallyExclusive where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
EnumStructMutuallyExclusive { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`enum` and `struct` are mutually exclusive")));
let __code_156 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("enum"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("replace `enum struct` with")),
__code_156, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2565#[diag("`enum` and `struct` are mutually exclusive")]
2566pub(crate) struct EnumStructMutuallyExclusive {
2567 #[primary_span]
2568 #[suggestion(
2569 "replace `enum struct` with",
2570 code = "enum",
2571 style = "verbose",
2572 applicability = "machine-applicable"
2573 )]
2574 pub span: Span,
2575}
2576
2577#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedTokenAfterStructName where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedTokenAfterStructName::ReservedIdentifier {
span: __binding_0, token: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found reserved identifier `{$token}`")));
;
diag.arg("token", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")));
diag
}
UnexpectedTokenAfterStructName::Keyword {
span: __binding_0, token: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found keyword `{$token}`")));
;
diag.arg("token", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")));
diag
}
UnexpectedTokenAfterStructName::ReservedKeyword {
span: __binding_0, token: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found reserved keyword `{$token}`")));
;
diag.arg("token", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")));
diag
}
UnexpectedTokenAfterStructName::DocComment {
span: __binding_0, token: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found doc comment `{$token}`")));
;
diag.arg("token", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")));
diag
}
UnexpectedTokenAfterStructName::MetaVar { span: __binding_0
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found metavar")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")));
diag
}
UnexpectedTokenAfterStructName::Other {
span: __binding_0, token: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found `{$token}`")));
;
diag.arg("token", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")));
diag
}
}
}
}
};Diagnostic)]
2578pub(crate) enum UnexpectedTokenAfterStructName {
2579 #[diag(
2580 "expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found reserved identifier `{$token}`"
2581 )]
2582 ReservedIdentifier {
2583 #[primary_span]
2584 #[label("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")]
2585 span: Span,
2586 token: Cow<'static, str>,
2587 },
2588 #[diag("expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found keyword `{$token}`")]
2589 Keyword {
2590 #[primary_span]
2591 #[label("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")]
2592 span: Span,
2593 token: Cow<'static, str>,
2594 },
2595 #[diag(
2596 "expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found reserved keyword `{$token}`"
2597 )]
2598 ReservedKeyword {
2599 #[primary_span]
2600 #[label("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")]
2601 span: Span,
2602 token: Cow<'static, str>,
2603 },
2604 #[diag(
2605 "expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found doc comment `{$token}`"
2606 )]
2607 DocComment {
2608 #[primary_span]
2609 #[label("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")]
2610 span: Span,
2611 token: Cow<'static, str>,
2612 },
2613 #[diag("expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found metavar")]
2614 MetaVar {
2615 #[primary_span]
2616 #[label("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")]
2617 span: Span,
2618 },
2619 #[diag("expected `where`, `{\"{\"}`, `(`, or `;` after struct name, found `{$token}`")]
2620 Other {
2621 #[primary_span]
2622 #[label("expected `where`, `{\"{\"}`, `(`, or `;` after struct name")]
2623 span: Span,
2624 token: Cow<'static, str>,
2625 },
2626}
2627
2628impl UnexpectedTokenAfterStructName {
2629 pub(crate) fn new(span: Span, orig_token: Token) -> Self {
2630 let token = pprust::token_to_string(&orig_token);
2631 match TokenDescription::from_token(&orig_token) {
2632 Some(TokenDescription::ReservedIdentifier) => Self::ReservedIdentifier { span, token },
2633 Some(TokenDescription::Keyword) => Self::Keyword { span, token },
2634 Some(TokenDescription::ReservedKeyword) => Self::ReservedKeyword { span, token },
2635 Some(TokenDescription::DocComment) => Self::DocComment { span, token },
2636 Some(TokenDescription::MetaVar(_)) => Self::MetaVar { span },
2637 None => Self::Other { span, token },
2638 }
2639 }
2640}
2641
2642#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedSelfInGenericParameters where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedSelfInGenericParameters { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected keyword `Self` in generic parameters")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("you cannot use `Self` as a generic parameter because it is reserved for associated items")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2643#[diag("unexpected keyword `Self` in generic parameters")]
2644#[note("you cannot use `Self` as a generic parameter because it is reserved for associated items")]
2645pub(crate) struct UnexpectedSelfInGenericParameters {
2646 #[primary_span]
2647 pub span: Span,
2648}
2649
2650#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedDefaultValueForLifetimeInGenericParameters where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedDefaultValueForLifetimeInGenericParameters {
span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected default lifetime parameter")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("lifetime parameters cannot have default values")));
diag
}
}
}
}
};Diagnostic)]
2651#[diag("unexpected default lifetime parameter")]
2652pub(crate) struct UnexpectedDefaultValueForLifetimeInGenericParameters {
2653 #[primary_span]
2654 #[label("lifetime parameters cannot have default values")]
2655 pub span: Span,
2656}
2657
2658#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MultipleWhereClauses where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MultipleWhereClauses {
span: __binding_0,
previous: __binding_1,
between: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("cannot define duplicate `where` clauses on an item")));
let __code_157 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(","))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("previous `where` clause starts here")));
diag.span_suggestions_with_style(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider joining the two `where` clauses into one")),
__code_157, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
2659#[diag("cannot define duplicate `where` clauses on an item")]
2660pub(crate) struct MultipleWhereClauses {
2661 #[primary_span]
2662 pub span: Span,
2663 #[label("previous `where` clause starts here")]
2664 pub previous: Span,
2665 #[suggestion(
2666 "consider joining the two `where` clauses into one",
2667 style = "verbose",
2668 code = ",",
2669 applicability = "maybe-incorrect"
2670 )]
2671 pub between: Span,
2672}
2673
2674#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedNonterminal where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedNonterminal::Item(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected an item keyword")));
;
diag.span(__binding_0);
diag
}
UnexpectedNonterminal::Statement(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected a statement")));
;
diag.span(__binding_0);
diag
}
UnexpectedNonterminal::Ident {
span: __binding_0, token: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected ident, found `{$token}`")));
;
diag.arg("token", __binding_1);
diag.span(__binding_0);
diag
}
UnexpectedNonterminal::Lifetime {
span: __binding_0, token: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected a lifetime, found `{$token}`")));
;
diag.arg("token", __binding_1);
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2675pub(crate) enum UnexpectedNonterminal {
2676 #[diag("expected an item keyword")]
2677 Item(#[primary_span] Span),
2678 #[diag("expected a statement")]
2679 Statement(#[primary_span] Span),
2680 #[diag("expected ident, found `{$token}`")]
2681 Ident {
2682 #[primary_span]
2683 span: Span,
2684 token: Cow<'static, str>,
2685 },
2686 #[diag("expected a lifetime, found `{$token}`")]
2687 Lifetime {
2688 #[primary_span]
2689 span: Span,
2690 token: Cow<'static, str>,
2691 },
2692}
2693
2694#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
TopLevelOrPatternNotAllowed where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
TopLevelOrPatternNotAllowed::LetBinding {
span: __binding_0, sub: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`let` bindings require top-level or-patterns in parentheses")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.subdiagnostic(__binding_1);
}
diag
}
TopLevelOrPatternNotAllowed::FunctionParameter {
span: __binding_0, sub: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("function parameters require top-level or-patterns in parentheses")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.subdiagnostic(__binding_1);
}
diag
}
}
}
}
};Diagnostic)]
2695pub(crate) enum TopLevelOrPatternNotAllowed {
2696 #[diag("`let` bindings require top-level or-patterns in parentheses")]
2697 LetBinding {
2698 #[primary_span]
2699 span: Span,
2700 #[subdiagnostic]
2701 sub: Option<TopLevelOrPatternNotAllowedSugg>,
2702 },
2703 #[diag("function parameters require top-level or-patterns in parentheses")]
2704 FunctionParameter {
2705 #[primary_span]
2706 span: Span,
2707 #[subdiagnostic]
2708 sub: Option<TopLevelOrPatternNotAllowedSugg>,
2709 },
2710}
2711
2712#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
CannotBeRawIdent where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
CannotBeRawIdent { span: __binding_0, ident: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`{$ident}` cannot be a raw identifier")));
;
diag.arg("ident", __binding_1);
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2713#[diag("`{$ident}` cannot be a raw identifier")]
2714pub(crate) struct CannotBeRawIdent {
2715 #[primary_span]
2716 pub span: Span,
2717 pub ident: Symbol,
2718}
2719
2720#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
CannotBeRawLifetime where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
CannotBeRawLifetime { span: __binding_0, ident: __binding_1
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`{$ident}` cannot be a raw lifetime")));
;
diag.arg("ident", __binding_1);
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2721#[diag("`{$ident}` cannot be a raw lifetime")]
2722pub(crate) struct CannotBeRawLifetime {
2723 #[primary_span]
2724 pub span: Span,
2725 pub ident: Symbol,
2726}
2727
2728#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
KeywordLifetime where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
KeywordLifetime { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("lifetimes cannot use keyword names")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2729#[diag("lifetimes cannot use keyword names")]
2730pub(crate) struct KeywordLifetime {
2731 #[primary_span]
2732 pub span: Span,
2733}
2734
2735#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for KeywordLabel
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
KeywordLabel { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("labels cannot use keyword names")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2736#[diag("labels cannot use keyword names")]
2737pub(crate) struct KeywordLabel {
2738 #[primary_span]
2739 pub span: Span,
2740}
2741
2742#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for CrDocComment
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
CrDocComment { span: __binding_0, block: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("bare CR not allowed in {$block ->\n [true] block doc-comment\n *[false] doc-comment\n }")));
;
diag.arg("block", __binding_1);
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2743#[diag(
2744 "bare CR not allowed in {$block ->
2745 [true] block doc-comment
2746 *[false] doc-comment
2747 }"
2748)]
2749pub(crate) struct CrDocComment {
2750 #[primary_span]
2751 pub span: Span,
2752 pub block: bool,
2753}
2754
2755#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
NoDigitsLiteral where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
NoDigitsLiteral { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("no valid digits found for number")));
diag.code(E0768);
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2756#[diag("no valid digits found for number", code = E0768)]
2757pub(crate) struct NoDigitsLiteral {
2758 #[primary_span]
2759 pub span: Span,
2760}
2761
2762#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidDigitLiteral where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidDigitLiteral { span: __binding_0, base: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid digit for a base {$base} literal")));
;
diag.arg("base", __binding_1);
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2763#[diag("invalid digit for a base {$base} literal")]
2764pub(crate) struct InvalidDigitLiteral {
2765 #[primary_span]
2766 pub span: Span,
2767 pub base: u32,
2768}
2769
2770#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
EmptyExponentFloat where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
EmptyExponentFloat { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected at least one digit in exponent")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2771#[diag("expected at least one digit in exponent")]
2772pub(crate) struct EmptyExponentFloat {
2773 #[primary_span]
2774 pub span: Span,
2775}
2776
2777#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FloatLiteralUnsupportedBase where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FloatLiteralUnsupportedBase {
span: __binding_0, base: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$base} float literal is not supported")));
;
diag.arg("base", __binding_1);
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2778#[diag("{$base} float literal is not supported")]
2779pub(crate) struct FloatLiteralUnsupportedBase {
2780 #[primary_span]
2781 pub span: Span,
2782 pub base: &'static str,
2783}
2784
2785#[derive(const _: () =
{
impl<'_sess, 'a, G> rustc_errors::Diagnostic<'_sess, G> for
UnknownPrefix<'a> where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnknownPrefix {
span: __binding_0, prefix: __binding_1, sugg: __binding_2 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("prefix `{$prefix}` is unknown")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("prefixed identifiers and literals are reserved since Rust 2021")));
;
diag.arg("prefix", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unknown prefix")));
if let Some(__binding_2) = __binding_2 {
diag.subdiagnostic(__binding_2);
}
diag
}
}
}
}
};Diagnostic)]
2786#[diag("prefix `{$prefix}` is unknown")]
2787#[note("prefixed identifiers and literals are reserved since Rust 2021")]
2788pub(crate) struct UnknownPrefix<'a> {
2789 #[primary_span]
2790 #[label("unknown prefix")]
2791 pub span: Span,
2792 pub prefix: &'a str,
2793 #[subdiagnostic]
2794 pub sugg: Option<UnknownPrefixSugg>,
2795}
2796
2797#[derive(const _: () =
{
impl<'a> rustc_errors::Subdiagnostic for MacroExpandsToAdtField<'a> {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
MacroExpandsToAdtField { adt_ty: __binding_0 } => {
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("adt_ty".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_0,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("macros cannot expand to {$adt_ty} fields")),
&sub_args);
diag.note(__message);
}
}
}
}
};Subdiagnostic)]
2798#[note("macros cannot expand to {$adt_ty} fields")]
2799pub(crate) struct MacroExpandsToAdtField<'a> {
2800 pub adt_ty: &'a str,
2801}
2802
2803#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for UnknownPrefixSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
UnknownPrefixSugg::UseBr(__binding_0) => {
let __code_158 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("br"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `br` for a raw byte string")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_158, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
UnknownPrefixSugg::UseCr(__binding_0) => {
let __code_159 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("cr"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `cr` for a raw C-string")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_159, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
UnknownPrefixSugg::Whitespace(__binding_0) => {
let __code_160 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" "))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider inserting whitespace here")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_160, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
UnknownPrefixSugg::MeantStr {
start: __binding_0, end: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_161 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("\""))
});
let __code_162 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("\""))
});
suggestions.push((__binding_0, __code_161));
suggestions.push((__binding_1, __code_162));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you meant to write a string literal, use double quotes")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
2804pub(crate) enum UnknownPrefixSugg {
2805 #[suggestion(
2806 "use `br` for a raw byte string",
2807 code = "br",
2808 applicability = "maybe-incorrect",
2809 style = "verbose"
2810 )]
2811 UseBr(#[primary_span] Span),
2812 #[suggestion(
2813 "use `cr` for a raw C-string",
2814 code = "cr",
2815 applicability = "maybe-incorrect",
2816 style = "verbose"
2817 )]
2818 UseCr(#[primary_span] Span),
2819 #[suggestion(
2820 "consider inserting whitespace here",
2821 code = " ",
2822 applicability = "maybe-incorrect",
2823 style = "verbose"
2824 )]
2825 Whitespace(#[primary_span] Span),
2826 #[multipart_suggestion(
2827 "if you meant to write a string literal, use double quotes",
2828 applicability = "maybe-incorrect",
2829 style = "verbose"
2830 )]
2831 MeantStr {
2832 #[suggestion_part(code = "\"")]
2833 start: Span,
2834 #[suggestion_part(code = "\"")]
2835 end: Span,
2836 },
2837}
2838
2839#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ReservedMultihash where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ReservedMultihash { span: __binding_0, sugg: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("reserved multi-hash token is forbidden")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("sequences of two or more # are reserved for future use since Rust 2024")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.subdiagnostic(__binding_1);
}
diag
}
}
}
}
};Diagnostic)]
2840#[diag("reserved multi-hash token is forbidden")]
2841#[note("sequences of two or more # are reserved for future use since Rust 2024")]
2842pub(crate) struct ReservedMultihash {
2843 #[primary_span]
2844 pub span: Span,
2845 #[subdiagnostic]
2846 pub sugg: Option<GuardedStringSugg>,
2847}
2848#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for ReservedString
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ReservedString { span: __binding_0, sugg: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid string literal")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unprefixed guarded string literals are reserved for future use since Rust 2024")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.subdiagnostic(__binding_1);
}
diag
}
}
}
}
};Diagnostic)]
2849#[diag("invalid string literal")]
2850#[note("unprefixed guarded string literals are reserved for future use since Rust 2024")]
2851pub(crate) struct ReservedString {
2852 #[primary_span]
2853 pub span: Span,
2854 #[subdiagnostic]
2855 pub sugg: Option<GuardedStringSugg>,
2856}
2857#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for GuardedStringSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
GuardedStringSugg(__binding_0) => {
let __code_163 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" "))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider inserting whitespace here")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_163, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
2858#[suggestion(
2859 "consider inserting whitespace here",
2860 code = " ",
2861 applicability = "maybe-incorrect",
2862 style = "verbose"
2863)]
2864pub(crate) struct GuardedStringSugg(#[primary_span] pub Span);
2865
2866#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for TooManyHashes
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
TooManyHashes { span: __binding_0, num: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("too many `#` symbols: raw strings may be delimited by up to 255 `#` symbols, but found {$num}")));
;
diag.arg("num", __binding_1);
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2867#[diag(
2868 "too many `#` symbols: raw strings may be delimited by up to 255 `#` symbols, but found {$num}"
2869)]
2870pub(crate) struct TooManyHashes {
2871 #[primary_span]
2872 pub span: Span,
2873 pub num: u32,
2874}
2875
2876#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnknownTokenStart where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnknownTokenStart {
span: __binding_0,
escaped: __binding_1,
sugg: __binding_2,
null: __binding_3,
repeat: __binding_4,
invisible: __binding_5 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unknown start of token: {$escaped}")));
;
diag.arg("escaped", __binding_1);
diag.span(__binding_0);
if let Some(__binding_2) = __binding_2 {
diag.subdiagnostic(__binding_2);
}
if __binding_3 {
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("source files must contain UTF-8 encoded text, unexpected null bytes might occur when a different encoding is used")));
}
if let Some(__binding_4) = __binding_4 {
diag.subdiagnostic(__binding_4);
}
if __binding_5 {
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invisible characters like '{$escaped}' are not usually visible in text editors")));
}
diag
}
}
}
}
};Diagnostic)]
2877#[diag("unknown start of token: {$escaped}")]
2878pub(crate) struct UnknownTokenStart {
2879 #[primary_span]
2880 pub span: Span,
2881 pub escaped: String,
2882 #[subdiagnostic]
2883 pub sugg: Option<TokenSubstitution>,
2884 #[help(
2885 "source files must contain UTF-8 encoded text, unexpected null bytes might occur when a different encoding is used"
2886 )]
2887 pub null: bool,
2888 #[subdiagnostic]
2889 pub repeat: Option<UnknownTokenRepeat>,
2890 #[help("invisible characters like '{$escaped}' are not usually visible in text editors")]
2891 pub invisible: bool,
2892}
2893
2894#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for TokenSubstitution {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
TokenSubstitution::DirectedQuotes {
span: __binding_0,
suggestion: __binding_1,
ascii_str: __binding_2,
ascii_name: __binding_3 } => {
let __code_164 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_1))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("ascii_str".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_2,
&mut diag.long_ty_path));
sub_args.insert("ascii_name".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_3,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("Unicode characters '“' (Left Double Quotation Mark) and '”' (Right Double Quotation Mark) look like '{$ascii_str}' ({$ascii_name}), but are not")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_164, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
TokenSubstitution::Other {
span: __binding_0,
suggestion: __binding_1,
ch: __binding_2,
u_name: __binding_3,
ascii_str: __binding_4,
ascii_name: __binding_5 } => {
let __code_165 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_1))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("ch".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_2,
&mut diag.long_ty_path));
sub_args.insert("u_name".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_3,
&mut diag.long_ty_path));
sub_args.insert("ascii_str".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_4,
&mut diag.long_ty_path));
sub_args.insert("ascii_name".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_5,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("Unicode character '{$ch}' ({$u_name}) looks like '{$ascii_str}' ({$ascii_name}), but it is not")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_165, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
2895pub(crate) enum TokenSubstitution {
2896 #[suggestion(
2897 "Unicode characters '“' (Left Double Quotation Mark) and '”' (Right Double Quotation Mark) look like '{$ascii_str}' ({$ascii_name}), but are not",
2898 code = "{suggestion}",
2899 applicability = "maybe-incorrect",
2900 style = "verbose"
2901 )]
2902 DirectedQuotes {
2903 #[primary_span]
2904 span: Span,
2905 suggestion: String,
2906 ascii_str: &'static str,
2907 ascii_name: &'static str,
2908 },
2909 #[suggestion(
2910 "Unicode character '{$ch}' ({$u_name}) looks like '{$ascii_str}' ({$ascii_name}), but it is not",
2911 code = "{suggestion}",
2912 applicability = "maybe-incorrect",
2913 style = "verbose"
2914 )]
2915 Other {
2916 #[primary_span]
2917 span: Span,
2918 suggestion: String,
2919 ch: String,
2920 u_name: &'static str,
2921 ascii_str: &'static str,
2922 ascii_name: &'static str,
2923 },
2924}
2925
2926#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for UnknownTokenRepeat {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
UnknownTokenRepeat { repeats: __binding_0 } => {
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("repeats".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_0,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("character appears {$repeats ->\n [one] once more\n *[other] {$repeats} more times\n }")),
&sub_args);
diag.note(__message);
}
}
}
}
};Subdiagnostic)]
2927#[note(
2928 "character appears {$repeats ->
2929 [one] once more
2930 *[other] {$repeats} more times
2931 }"
2932)]
2933pub(crate) struct UnknownTokenRepeat {
2934 pub repeats: usize,
2935}
2936
2937#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for UnescapeError
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnescapeError::InvalidUnicodeEscape {
span: __binding_0, surrogate: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid unicode character escape")));
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unicode escape must {$surrogate ->\n [true] not be a surrogate\n *[false] be at most 10FFFF\n }")));
;
diag.arg("surrogate", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid escape")));
diag
}
UnescapeError::EscapeOnlyChar {
span: __binding_0,
char_span: __binding_1,
escaped_sugg: __binding_2,
escaped_msg: __binding_3,
byte: __binding_4 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$byte ->\n [true] byte\n *[false] character\n } constant must be escaped: `{$escaped_msg}`")));
let __code_166 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_2))
})].into_iter();
;
diag.arg("escaped_msg", __binding_3);
diag.arg("byte", __binding_4);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("escape the character")),
__code_166, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
UnescapeError::BareCr {
span: __binding_0, double_quotes: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$double_quotes ->\n [true] bare CR not allowed in string, use `\\r` instead\n *[false] character constant must be escaped: `\\r`\n }")));
let __code_167 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("\\r"))
})].into_iter();
;
diag.arg("double_quotes", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("escape the character")),
__code_167, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
UnescapeError::BareCrRawString(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("bare CR not allowed in raw string")));
;
diag.span(__binding_0);
diag
}
UnescapeError::TooShortHexEscape(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("numeric character escape is too short")));
;
diag.span(__binding_0);
diag
}
UnescapeError::InvalidCharInEscape {
span: __binding_0, is_hex: __binding_1, ch: __binding_2 } =>
{
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid character in {$is_hex ->\n [true] numeric character\n *[false] unicode\n } escape: `{$ch}`")));
;
diag.arg("is_hex", __binding_1);
diag.arg("ch", __binding_2);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid character in {$is_hex ->\n [true] numeric character\n *[false] unicode\n } escape")));
diag
}
UnescapeError::LeadingUnderscoreUnicodeEscape {
span: __binding_0, ch: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid start of unicode escape: `_`")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid start of unicode escape")));
diag
}
UnescapeError::OverlongUnicodeEscape(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("overlong unicode escape")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("must have at most 6 hex digits")));
diag
}
UnescapeError::UnclosedUnicodeEscape(__binding_0,
__binding_1) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unterminated unicode escape")));
let __code_168 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("}}"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing a closing `{\"}\"}`")));
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("terminate the unicode escape")),
__code_168, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
UnescapeError::NoBraceInUnicodeEscape {
span: __binding_0, label: __binding_1, sub: __binding_2 } =>
{
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("incorrect unicode escape sequence")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("incorrect unicode escape sequence")));
}
diag.subdiagnostic(__binding_2);
diag
}
UnescapeError::UnicodeEscapeInByte(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unicode escape in byte string")));
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unicode escape sequences cannot be used as a byte or in a byte string")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unicode escape in byte string")));
diag
}
UnescapeError::EmptyUnicodeEscape(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("empty unicode escape")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("this escape must have at least 1 hex digit")));
diag
}
UnescapeError::ZeroChars(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("empty character literal")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("empty character literal")));
diag
}
UnescapeError::LoneSlash(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid trailing slash in literal")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid trailing slash in literal")));
diag
}
UnescapeError::UnskippedWhitespace {
span: __binding_0, char_span: __binding_1, ch: __binding_2 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("whitespace symbol '{$ch}' is not skipped")));
;
diag.arg("ch", __binding_2);
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("whitespace symbol '{$ch}' is not skipped")));
diag
}
UnescapeError::MultipleSkippedLinesWarning(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("multiple lines skipped by escaped newline")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("skipping everything up to and including this point")));
diag
}
UnescapeError::MoreThanOneChar {
span: __binding_0,
note: __binding_1,
suggestion: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("character literal may only contain one codepoint")));
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.subdiagnostic(__binding_1);
}
diag.subdiagnostic(__binding_2);
diag
}
UnescapeError::NulInCStr { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("null characters in C string literals are not supported")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
2938pub(crate) enum UnescapeError {
2939 #[diag("invalid unicode character escape")]
2940 #[help(
2941 "unicode escape must {$surrogate ->
2942 [true] not be a surrogate
2943 *[false] be at most 10FFFF
2944 }"
2945 )]
2946 InvalidUnicodeEscape {
2947 #[primary_span]
2948 #[label("invalid escape")]
2949 span: Span,
2950 surrogate: bool,
2951 },
2952 #[diag(
2953 "{$byte ->
2954 [true] byte
2955 *[false] character
2956 } constant must be escaped: `{$escaped_msg}`"
2957 )]
2958 EscapeOnlyChar {
2959 #[primary_span]
2960 span: Span,
2961 #[suggestion(
2962 "escape the character",
2963 applicability = "machine-applicable",
2964 code = "{escaped_sugg}",
2965 style = "verbose"
2966 )]
2967 char_span: Span,
2968 escaped_sugg: String,
2969 escaped_msg: String,
2970 byte: bool,
2971 },
2972 #[diag(
2973 r#"{$double_quotes ->
2974 [true] bare CR not allowed in string, use `\r` instead
2975 *[false] character constant must be escaped: `\r`
2976 }"#
2977 )]
2978 BareCr {
2979 #[primary_span]
2980 #[suggestion(
2981 "escape the character",
2982 applicability = "machine-applicable",
2983 code = "\\r",
2984 style = "verbose"
2985 )]
2986 span: Span,
2987 double_quotes: bool,
2988 },
2989 #[diag("bare CR not allowed in raw string")]
2990 BareCrRawString(#[primary_span] Span),
2991 #[diag("numeric character escape is too short")]
2992 TooShortHexEscape(#[primary_span] Span),
2993 #[diag(
2994 "invalid character in {$is_hex ->
2995 [true] numeric character
2996 *[false] unicode
2997 } escape: `{$ch}`"
2998 )]
2999 InvalidCharInEscape {
3000 #[primary_span]
3001 #[label(
3002 "invalid character in {$is_hex ->
3003 [true] numeric character
3004 *[false] unicode
3005 } escape"
3006 )]
3007 span: Span,
3008 is_hex: bool,
3009 ch: String,
3010 },
3011 #[diag("invalid start of unicode escape: `_`")]
3012 LeadingUnderscoreUnicodeEscape {
3013 #[primary_span]
3014 #[label("invalid start of unicode escape")]
3015 span: Span,
3016 ch: String,
3017 },
3018 #[diag("overlong unicode escape")]
3019 OverlongUnicodeEscape(
3020 #[primary_span]
3021 #[label("must have at most 6 hex digits")]
3022 Span,
3023 ),
3024 #[diag("unterminated unicode escape")]
3025 UnclosedUnicodeEscape(
3026 #[primary_span]
3027 #[label(r#"missing a closing `{"}"}`"#)]
3028 Span,
3029 #[suggestion(
3030 "terminate the unicode escape",
3031 code = "}}",
3032 applicability = "maybe-incorrect",
3033 style = "verbose"
3034 )]
3035 Span,
3036 ),
3037 #[diag("incorrect unicode escape sequence")]
3038 NoBraceInUnicodeEscape {
3039 #[primary_span]
3040 span: Span,
3041 #[label("incorrect unicode escape sequence")]
3042 label: Option<Span>,
3043 #[subdiagnostic]
3044 sub: NoBraceUnicodeSub,
3045 },
3046 #[diag("unicode escape in byte string")]
3047 #[help("unicode escape sequences cannot be used as a byte or in a byte string")]
3048 UnicodeEscapeInByte(
3049 #[primary_span]
3050 #[label("unicode escape in byte string")]
3051 Span,
3052 ),
3053 #[diag("empty unicode escape")]
3054 EmptyUnicodeEscape(
3055 #[primary_span]
3056 #[label("this escape must have at least 1 hex digit")]
3057 Span,
3058 ),
3059 #[diag("empty character literal")]
3060 ZeroChars(
3061 #[primary_span]
3062 #[label("empty character literal")]
3063 Span,
3064 ),
3065 #[diag("invalid trailing slash in literal")]
3066 LoneSlash(
3067 #[primary_span]
3068 #[label("invalid trailing slash in literal")]
3069 Span,
3070 ),
3071 #[diag("whitespace symbol '{$ch}' is not skipped")]
3072 UnskippedWhitespace {
3073 #[primary_span]
3074 span: Span,
3075 #[label("whitespace symbol '{$ch}' is not skipped")]
3076 char_span: Span,
3077 ch: String,
3078 },
3079 #[diag("multiple lines skipped by escaped newline")]
3080 MultipleSkippedLinesWarning(
3081 #[primary_span]
3082 #[label("skipping everything up to and including this point")]
3083 Span,
3084 ),
3085 #[diag("character literal may only contain one codepoint")]
3086 MoreThanOneChar {
3087 #[primary_span]
3088 span: Span,
3089 #[subdiagnostic]
3090 note: Option<MoreThanOneCharNote>,
3091 #[subdiagnostic]
3092 suggestion: MoreThanOneCharSugg,
3093 },
3094 #[diag("null characters in C string literals are not supported")]
3095 NulInCStr {
3096 #[primary_span]
3097 span: Span,
3098 },
3099}
3100
3101#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for MoreThanOneCharSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
MoreThanOneCharSugg::NormalizedForm {
span: __binding_0, ch: __binding_1, normalized: __binding_2
} => {
let __code_169 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_2))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("ch".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_1,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider using the normalized form `{$ch}` of this character")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_169, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
MoreThanOneCharSugg::RemoveNonPrinting {
span: __binding_0, ch: __binding_1 } => {
let __code_170 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_1))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("ch".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_1,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider removing the non-printing characters")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_170, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
MoreThanOneCharSugg::QuotesFull {
span: __binding_0, is_byte: __binding_1, sugg: __binding_2 }
=> {
let __code_171 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_2))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("is_byte".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_1,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you meant to write a {$is_byte ->\n [true] byte string\n *[false] string\n } literal, use double quotes")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_171, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
MoreThanOneCharSugg::Quotes {
start: __binding_0,
end: __binding_1,
is_byte: __binding_2,
prefix: __binding_3 } => {
let mut suggestions = Vec::new();
let __code_172 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}\"", __binding_3))
});
let __code_173 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("\""))
});
suggestions.push((__binding_0, __code_172));
suggestions.push((__binding_1, __code_173));
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("is_byte".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_2,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you meant to write a {$is_byte ->\n [true] byte string\n *[false] string\n } literal, use double quotes")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
3102pub(crate) enum MoreThanOneCharSugg {
3103 #[suggestion(
3104 "consider using the normalized form `{$ch}` of this character",
3105 code = "{normalized}",
3106 applicability = "machine-applicable",
3107 style = "verbose"
3108 )]
3109 NormalizedForm {
3110 #[primary_span]
3111 span: Span,
3112 ch: String,
3113 normalized: String,
3114 },
3115 #[suggestion(
3116 "consider removing the non-printing characters",
3117 code = "{ch}",
3118 applicability = "maybe-incorrect",
3119 style = "verbose"
3120 )]
3121 RemoveNonPrinting {
3122 #[primary_span]
3123 span: Span,
3124 ch: String,
3125 },
3126 #[suggestion(
3127 "if you meant to write a {$is_byte ->
3128 [true] byte string
3129 *[false] string
3130 } literal, use double quotes",
3131 code = "{sugg}",
3132 applicability = "machine-applicable",
3133 style = "verbose"
3134 )]
3135 QuotesFull {
3136 #[primary_span]
3137 span: Span,
3138 is_byte: bool,
3139 sugg: String,
3140 },
3141 #[multipart_suggestion(
3142 "if you meant to write a {$is_byte ->
3143 [true] byte string
3144 *[false] string
3145 } literal, use double quotes",
3146 applicability = "machine-applicable"
3147 )]
3148 Quotes {
3149 #[suggestion_part(code = "{prefix}\"")]
3150 start: Span,
3151 #[suggestion_part(code = "\"")]
3152 end: Span,
3153 is_byte: bool,
3154 prefix: &'static str,
3155 },
3156}
3157
3158#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for MoreThanOneCharNote {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
MoreThanOneCharNote::AllCombining {
span: __binding_0,
chr: __binding_1,
len: __binding_2,
escaped_marks: __binding_3 } => {
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("chr".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_1,
&mut diag.long_ty_path));
sub_args.insert("len".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_2,
&mut diag.long_ty_path));
sub_args.insert("escaped_marks".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_3,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("this `{$chr}` is followed by the combining {$len ->\n [one] mark\n *[other] marks\n } `{$escaped_marks}`")),
&sub_args);
diag.span_note(__binding_0, __message);
}
MoreThanOneCharNote::NonPrinting {
span: __binding_0, escaped: __binding_1 } => {
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("escaped".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_1,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("there are non-printing characters, the full sequence is `{$escaped}`")),
&sub_args);
diag.span_note(__binding_0, __message);
}
}
}
}
};Subdiagnostic)]
3159pub(crate) enum MoreThanOneCharNote {
3160 #[note(
3161 "this `{$chr}` is followed by the combining {$len ->
3162 [one] mark
3163 *[other] marks
3164 } `{$escaped_marks}`"
3165 )]
3166 AllCombining {
3167 #[primary_span]
3168 span: Span,
3169 chr: String,
3170 len: usize,
3171 escaped_marks: String,
3172 },
3173 #[note("there are non-printing characters, the full sequence is `{$escaped}`")]
3174 NonPrinting {
3175 #[primary_span]
3176 span: Span,
3177 escaped: String,
3178 },
3179}
3180
3181#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for NoBraceUnicodeSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
NoBraceUnicodeSub::Suggestion {
span: __binding_0, suggestion: __binding_1 } => {
let __code_174 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_1))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("format of unicode escape sequences uses braces")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_174, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
NoBraceUnicodeSub::Help => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("format of unicode escape sequences is `\\u{\"{...}\"}`")),
&sub_args);
diag.help(__message);
}
}
}
}
};Subdiagnostic)]
3182pub(crate) enum NoBraceUnicodeSub {
3183 #[suggestion(
3184 "format of unicode escape sequences uses braces",
3185 code = "{suggestion}",
3186 applicability = "maybe-incorrect",
3187 style = "verbose"
3188 )]
3189 Suggestion {
3190 #[primary_span]
3191 span: Span,
3192 suggestion: String,
3193 },
3194 #[help(r#"format of unicode escape sequences is `\u{"{...}"}`"#)]
3195 Help,
3196}
3197
3198#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for WrapInParens {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
WrapInParens { lo: __binding_0, hi: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_175 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_176 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_175));
suggestions.push((__binding_1, __code_176));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("wrap the pattern in parentheses")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
3199#[multipart_suggestion("wrap the pattern in parentheses", applicability = "machine-applicable")]
3200pub(crate) struct WrapInParens {
3201 #[suggestion_part(code = "(")]
3202 pub(crate) lo: Span,
3203 #[suggestion_part(code = ")")]
3204 pub(crate) hi: Span,
3205}
3206
3207#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for TopLevelOrPatternNotAllowedSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
TopLevelOrPatternNotAllowedSugg::RemoveLeadingVert {
span: __binding_0 } => {
let __code_177 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the `|`")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_177, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::CompletelyHidden);
}
TopLevelOrPatternNotAllowedSugg::WrapInParens {
span: __binding_0, suggestion: __binding_1 } => {
__binding_1.add_to_diag(diag);
let mut sub_args = rustc_errors::DiagArgMap::default();
}
}
}
}
};Subdiagnostic)]
3208pub(crate) enum TopLevelOrPatternNotAllowedSugg {
3209 #[suggestion(
3210 "remove the `|`",
3211 code = "",
3212 applicability = "machine-applicable",
3213 style = "tool-only"
3214 )]
3215 RemoveLeadingVert {
3216 #[primary_span]
3217 span: Span,
3218 },
3219 WrapInParens {
3220 #[primary_span]
3221 span: Span,
3222 #[subdiagnostic]
3223 suggestion: WrapInParens,
3224 },
3225}
3226
3227#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedVertVertBeforeFunctionParam where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedVertVertBeforeFunctionParam { span: __binding_0 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `||` before function parameter")));
let __code_178 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("alternatives in or-patterns are separated with `|`, not `||`")));
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the `||`")),
__code_178, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3228#[diag("unexpected `||` before function parameter")]
3229#[note("alternatives in or-patterns are separated with `|`, not `||`")]
3230pub(crate) struct UnexpectedVertVertBeforeFunctionParam {
3231 #[primary_span]
3232 #[suggestion(
3233 "remove the `||`",
3234 code = "",
3235 applicability = "machine-applicable",
3236 style = "verbose"
3237 )]
3238 pub span: Span,
3239}
3240
3241#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedVertVertInPattern where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedVertVertInPattern {
span: __binding_0, start: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected token `||` in pattern")));
let __code_179 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("|"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use a single `|` to separate multiple alternative patterns")),
__code_179, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
if let Some(__binding_1) = __binding_1 {
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("while parsing this or-pattern starting here")));
}
diag
}
}
}
}
};Diagnostic)]
3242#[diag("unexpected token `||` in pattern")]
3243pub(crate) struct UnexpectedVertVertInPattern {
3244 #[primary_span]
3245 #[suggestion(
3246 "use a single `|` to separate multiple alternative patterns",
3247 code = "|",
3248 applicability = "machine-applicable",
3249 style = "verbose"
3250 )]
3251 pub span: Span,
3252 #[label("while parsing this or-pattern starting here")]
3253 pub start: Option<Span>,
3254}
3255
3256#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for TrailingVertSuggestion {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
TrailingVertSuggestion {
span: __binding_0, token: __binding_1 } => {
let __code_180 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("token".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_1,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("a trailing `{$token}` is not allowed in an or-pattern")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_180, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::CompletelyHidden);
}
}
}
}
};Subdiagnostic)]
3257#[suggestion(
3258 "a trailing `{$token}` is not allowed in an or-pattern",
3259 code = "",
3260 applicability = "machine-applicable",
3261 style = "tool-only"
3262)]
3263pub(crate) struct TrailingVertSuggestion {
3264 #[primary_span]
3265 pub span: Span,
3266 pub token: Cow<'static, str>,
3267}
3268
3269#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
TrailingVertNotAllowed where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
TrailingVertNotAllowed {
span: __binding_0,
suggestion: __binding_1,
start: __binding_2,
token: __binding_3,
note_double_vert: __binding_4 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("a trailing `{$token}` is not allowed in an or-pattern")));
;
diag.arg("token", __binding_3);
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
if let Some(__binding_2) = __binding_2 {
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("while parsing this or-pattern starting here")));
}
if __binding_4 {
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("alternatives in or-patterns are separated with `|`, not `||`")));
}
diag
}
}
}
}
};Diagnostic)]
3270#[diag("a trailing `{$token}` is not allowed in an or-pattern")]
3271pub(crate) struct TrailingVertNotAllowed {
3272 #[primary_span]
3273 pub span: Span,
3274 #[subdiagnostic]
3275 pub suggestion: TrailingVertSuggestion,
3276 #[label("while parsing this or-pattern starting here")]
3277 pub start: Option<Span>,
3278 pub token: Cow<'static, str>,
3279 #[note("alternatives in or-patterns are separated with `|`, not `||`")]
3280 pub note_double_vert: bool,
3281}
3282
3283#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
DotDotDotRestPattern where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
DotDotDotRestPattern {
span: __binding_0,
suggestion: __binding_1,
var_args: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `...`")));
let __code_181 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(".."))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("not a valid pattern")));
if let Some(__binding_1) = __binding_1 {
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("for a rest pattern, use `..` instead of `...`")),
__code_181, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
if let Some(__binding_2) = __binding_2 {
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("only `extern \"C\"` and `extern \"C-unwind\"` functions may have a C variable argument list")));
}
diag
}
}
}
}
};Diagnostic)]
3284#[diag("unexpected `...`")]
3285pub(crate) struct DotDotDotRestPattern {
3286 #[primary_span]
3287 #[label("not a valid pattern")]
3288 pub span: Span,
3289 #[suggestion(
3290 "for a rest pattern, use `..` instead of `...`",
3291 style = "verbose",
3292 code = "..",
3293 applicability = "machine-applicable"
3294 )]
3295 pub suggestion: Option<Span>,
3296 #[note(
3297 "only `extern \"C\"` and `extern \"C-unwind\"` functions may have a C variable argument list"
3298 )]
3299 pub var_args: Option<()>,
3300}
3301
3302#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
PatternOnWrongSideOfAt where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
PatternOnWrongSideOfAt {
whole_span: __binding_0,
whole_pat: __binding_1,
pattern: __binding_2,
binding: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("pattern on wrong side of `@`")));
let __code_182 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_1))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("switch the order")),
__code_182, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("pattern on the left, should be on the right")));
diag.span_label(__binding_3,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("binding on the right, should be on the left")));
diag
}
}
}
}
};Diagnostic)]
3303#[diag("pattern on wrong side of `@`")]
3304pub(crate) struct PatternOnWrongSideOfAt {
3305 #[primary_span]
3306 #[suggestion(
3307 "switch the order",
3308 code = "{whole_pat}",
3309 applicability = "machine-applicable",
3310 style = "verbose"
3311 )]
3312 pub whole_span: Span,
3313 pub whole_pat: String,
3314 #[label("pattern on the left, should be on the right")]
3315 pub pattern: Span,
3316 #[label("binding on the right, should be on the left")]
3317 pub binding: Span,
3318}
3319
3320#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedBindingLeftOfAt where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedBindingLeftOfAt {
whole_span: __binding_0, lhs: __binding_1, rhs: __binding_2
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("left-hand side of `@` must be a binding")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("bindings are `x`, `mut x`, `ref x`, and `ref mut x`")));
;
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("interpreted as a pattern, not a binding")));
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("also a pattern")));
diag
}
}
}
}
};Diagnostic)]
3321#[diag("left-hand side of `@` must be a binding")]
3322#[note("bindings are `x`, `mut x`, `ref x`, and `ref mut x`")]
3323pub(crate) struct ExpectedBindingLeftOfAt {
3324 #[primary_span]
3325 pub whole_span: Span,
3326 #[label("interpreted as a pattern, not a binding")]
3327 pub lhs: Span,
3328 #[label("also a pattern")]
3329 pub rhs: Span,
3330}
3331
3332#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for ParenRangeSuggestion {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ParenRangeSuggestion { lo: __binding_0, hi: __binding_1 } =>
{
let mut suggestions = Vec::new();
let __code_183 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_184 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_183));
suggestions.push((__binding_1, __code_184));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add parentheses to clarify the precedence")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
3333#[multipart_suggestion(
3334 "add parentheses to clarify the precedence",
3335 applicability = "machine-applicable"
3336)]
3337pub(crate) struct ParenRangeSuggestion {
3338 #[suggestion_part(code = "(")]
3339 pub lo: Span,
3340 #[suggestion_part(code = ")")]
3341 pub hi: Span,
3342}
3343
3344#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AmbiguousRangePattern where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AmbiguousRangePattern {
span: __binding_0, suggestion: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the range pattern here has ambiguous interpretation")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
3345#[diag("the range pattern here has ambiguous interpretation")]
3346pub(crate) struct AmbiguousRangePattern {
3347 #[primary_span]
3348 pub span: Span,
3349 #[subdiagnostic]
3350 pub suggestion: ParenRangeSuggestion,
3351}
3352
3353#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedLifetimeInPattern where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedLifetimeInPattern {
span: __binding_0,
symbol: __binding_1,
suggestion: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected lifetime `{$symbol}` in pattern")));
let __code_185 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.arg("symbol", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the lifetime")),
__code_185, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3354#[diag("unexpected lifetime `{$symbol}` in pattern")]
3355pub(crate) struct UnexpectedLifetimeInPattern {
3356 #[primary_span]
3357 pub span: Span,
3358 pub symbol: Symbol,
3359 #[suggestion(
3360 "remove the lifetime",
3361 code = "",
3362 applicability = "machine-applicable",
3363 style = "verbose"
3364 )]
3365 pub suggestion: Span,
3366}
3367
3368#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidMutInPattern where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidMutInPattern::NestedIdent {
span: __binding_0, pat: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`mut` must be attached to each individual binding")));
let __code_186 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_1))
})].into_iter();
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`mut` may be followed by `variable` and `variable @ pattern`")));
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add `mut` to each binding")),
__code_186, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
InvalidMutInPattern::NonIdent { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`mut` must be followed by a named binding")));
let __code_187 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`mut` may be followed by `variable` and `variable @ pattern`")));
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the `mut` prefix")),
__code_187, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3369pub(crate) enum InvalidMutInPattern {
3370 #[diag("`mut` must be attached to each individual binding")]
3371 #[note("`mut` may be followed by `variable` and `variable @ pattern`")]
3372 NestedIdent {
3373 #[primary_span]
3374 #[suggestion(
3375 "add `mut` to each binding",
3376 code = "{pat}",
3377 applicability = "machine-applicable",
3378 style = "verbose"
3379 )]
3380 span: Span,
3381 pat: String,
3382 },
3383 #[diag("`mut` must be followed by a named binding")]
3384 #[note("`mut` may be followed by `variable` and `variable @ pattern`")]
3385 NonIdent {
3386 #[primary_span]
3387 #[suggestion(
3388 "remove the `mut` prefix",
3389 code = "",
3390 applicability = "machine-applicable",
3391 style = "verbose"
3392 )]
3393 span: Span,
3394 },
3395}
3396
3397#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
RepeatedMutInPattern where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
RepeatedMutInPattern {
span: __binding_0, suggestion: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`mut` on a binding may not be repeated")));
let __code_188 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the additional `mut`s")),
__code_188, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3398#[diag("`mut` on a binding may not be repeated")]
3399pub(crate) struct RepeatedMutInPattern {
3400 #[primary_span]
3401 pub span: Span,
3402 #[suggestion(
3403 "remove the additional `mut`s",
3404 code = "",
3405 applicability = "machine-applicable",
3406 style = "verbose"
3407 )]
3408 pub suggestion: Span,
3409}
3410
3411#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
DotDotDotRangeToPatternNotAllowed where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
DotDotDotRangeToPatternNotAllowed { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("range-to patterns with `...` are not allowed")));
let __code_189 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("..="))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `..=` instead")),
__code_189, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3412#[diag("range-to patterns with `...` are not allowed")]
3413pub(crate) struct DotDotDotRangeToPatternNotAllowed {
3414 #[primary_span]
3415 #[suggestion(
3416 "use `..=` instead",
3417 style = "verbose",
3418 code = "..=",
3419 applicability = "machine-applicable"
3420 )]
3421 pub span: Span,
3422}
3423
3424#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
EnumPatternInsteadOfIdentifier where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
EnumPatternInsteadOfIdentifier { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier, found enum pattern")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
3425#[diag("expected identifier, found enum pattern")]
3426pub(crate) struct EnumPatternInsteadOfIdentifier {
3427 #[primary_span]
3428 pub span: Span,
3429}
3430
3431#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AtDotDotInStructPattern where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AtDotDotInStructPattern {
span: __binding_0, remove: __binding_1, ident: __binding_2 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`@ ..` is not supported in struct patterns")));
let __code_190 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.arg("ident", __binding_2);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("bind to each field separately or, if you don't need them, just remove `{$ident} @`")),
__code_190, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3432#[diag("`@ ..` is not supported in struct patterns")]
3433pub(crate) struct AtDotDotInStructPattern {
3434 #[primary_span]
3435 pub span: Span,
3436 #[suggestion(
3437 "bind to each field separately or, if you don't need them, just remove `{$ident} @`",
3438 code = "",
3439 style = "verbose",
3440 applicability = "machine-applicable"
3441 )]
3442 pub remove: Span,
3443 pub ident: Ident,
3444}
3445
3446#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AtInStructPattern where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AtInStructPattern { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `@` in struct pattern")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("struct patterns use `field: pattern` syntax to bind to fields")));
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider replacing `new_name @ field_name` with `field_name: new_name` if that is what you intended")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
3447#[diag("unexpected `@` in struct pattern")]
3448#[note("struct patterns use `field: pattern` syntax to bind to fields")]
3449#[help(
3450 "consider replacing `new_name @ field_name` with `field_name: new_name` if that is what you intended"
3451)]
3452pub(crate) struct AtInStructPattern {
3453 #[primary_span]
3454 pub span: Span,
3455}
3456
3457#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
DotDotDotForRemainingFields where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
DotDotDotForRemainingFields {
span: __binding_0, token_str: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected field pattern, found `{$token_str}`")));
let __code_191 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(".."))
})].into_iter();
;
diag.arg("token_str", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("to omit remaining fields, use `..`")),
__code_191, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3458#[diag("expected field pattern, found `{$token_str}`")]
3459pub(crate) struct DotDotDotForRemainingFields {
3460 #[primary_span]
3461 #[suggestion(
3462 "to omit remaining fields, use `..`",
3463 code = "..",
3464 style = "verbose",
3465 applicability = "machine-applicable"
3466 )]
3467 pub span: Span,
3468 pub token_str: Cow<'static, str>,
3469}
3470
3471#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedCommaAfterPatternField where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedCommaAfterPatternField { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `,`")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
3472#[diag("expected `,`")]
3473pub(crate) struct ExpectedCommaAfterPatternField {
3474 #[primary_span]
3475 pub span: Span,
3476}
3477
3478#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedExpressionInPattern where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedExpressionInPattern {
span: __binding_0, is_bound: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected {$is_bound ->\n [true] a pattern range bound\n *[false] a pattern\n }, found an expression")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("arbitrary expressions are not allowed in patterns: <https://doc.rust-lang.org/book/ch19-00-patterns.html>")));
;
diag.arg("is_bound", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("not a pattern")));
diag
}
}
}
}
};Diagnostic)]
3479#[diag(
3480 "expected {$is_bound ->
3481 [true] a pattern range bound
3482 *[false] a pattern
3483 }, found an expression"
3484)]
3485#[note(
3486 "arbitrary expressions are not allowed in patterns: <https://doc.rust-lang.org/book/ch19-00-patterns.html>"
3487)]
3488pub(crate) struct UnexpectedExpressionInPattern {
3489 #[primary_span]
3491 #[label("not a pattern")]
3492 pub span: Span,
3493 pub is_bound: bool,
3495}
3496
3497#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for UnexpectedExpressionInPatternSugg
{
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
UnexpectedExpressionInPatternSugg::CreateGuard {
ident_span: __binding_0,
pat_hi: __binding_1,
ident: __binding_2,
expr: __binding_3 } => {
let mut suggestions = Vec::new();
let __code_192 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_2))
});
let __code_193 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" if {1} == {0}",
__binding_3, __binding_2))
});
suggestions.push((__binding_0, __code_192));
suggestions.push((__binding_1, __code_193));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider moving the expression to a match arm guard")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowCode);
}
UnexpectedExpressionInPatternSugg::UpdateGuard {
ident_span: __binding_0,
guard_lo: __binding_1,
guard_hi: __binding_2,
guard_hi_paren: __binding_3,
ident: __binding_4,
expr: __binding_5 } => {
let mut suggestions = Vec::new();
let __code_194 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_4))
});
let __code_195 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_196 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{1} && {2} == {0}",
__binding_5, __binding_3, __binding_4))
});
suggestions.push((__binding_0, __code_194));
if let Some(__binding_1) = __binding_1 {
suggestions.push((__binding_1, __code_195));
}
suggestions.push((__binding_2, __code_196));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider moving the expression to the match arm guard")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowCode);
}
UnexpectedExpressionInPatternSugg::Const {
stmt_lo: __binding_0,
ident_span: __binding_1,
ident: __binding_2,
expr: __binding_3,
indentation: __binding_4 } => {
let mut suggestions = Vec::new();
let __code_197 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{2}const {1}: /* Type */ = {0};\n",
__binding_3, __binding_2, __binding_4))
});
let __code_198 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_2))
});
suggestions.push((__binding_0, __code_197));
suggestions.push((__binding_1, __code_198));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider extracting the expression into a `const`")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::HasPlaceholders,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
3498pub(crate) enum UnexpectedExpressionInPatternSugg {
3499 #[multipart_suggestion(
3500 "consider moving the expression to a match arm guard",
3501 applicability = "maybe-incorrect"
3502 )]
3503 CreateGuard {
3504 #[suggestion_part(code = "{ident}")]
3506 ident_span: Span,
3507 #[suggestion_part(code = " if {ident} == {expr}")]
3509 pat_hi: Span,
3510 ident: String,
3512 expr: String,
3514 },
3515
3516 #[multipart_suggestion(
3517 "consider moving the expression to the match arm guard",
3518 applicability = "maybe-incorrect"
3519 )]
3520 UpdateGuard {
3521 #[suggestion_part(code = "{ident}")]
3523 ident_span: Span,
3524 #[suggestion_part(code = "(")]
3526 guard_lo: Option<Span>,
3527 #[suggestion_part(code = "{guard_hi_paren} && {ident} == {expr}")]
3529 guard_hi: Span,
3530 guard_hi_paren: &'static str,
3532 ident: String,
3534 expr: String,
3536 },
3537
3538 #[multipart_suggestion(
3539 "consider extracting the expression into a `const`",
3540 applicability = "has-placeholders"
3541 )]
3542 Const {
3543 #[suggestion_part(code = "{indentation}const {ident}: /* Type */ = {expr};\n")]
3545 stmt_lo: Span,
3546 #[suggestion_part(code = "{ident}")]
3548 ident_span: Span,
3549 ident: String,
3551 expr: String,
3553 indentation: String,
3555 },
3556}
3557
3558#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnexpectedParenInRangePat where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnexpectedParenInRangePat {
span: __binding_0, sugg: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("range pattern bounds cannot have parentheses")));
;
diag.span(__binding_0.clone());
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
3559#[diag("range pattern bounds cannot have parentheses")]
3560pub(crate) struct UnexpectedParenInRangePat {
3561 #[primary_span]
3562 pub span: Vec<Span>,
3563 #[subdiagnostic]
3564 pub sugg: UnexpectedParenInRangePatSugg,
3565}
3566
3567#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for UnexpectedParenInRangePatSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
UnexpectedParenInRangePatSugg {
start_span: __binding_0, end_span: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_199 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
let __code_200 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
suggestions.push((__binding_0, __code_199));
suggestions.push((__binding_1, __code_200));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove these parentheses")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
3568#[multipart_suggestion("remove these parentheses", applicability = "machine-applicable")]
3569pub(crate) struct UnexpectedParenInRangePatSugg {
3570 #[suggestion_part(code = "")]
3571 pub start_span: Span,
3572 #[suggestion_part(code = "")]
3573 pub end_span: Span,
3574}
3575
3576#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ReturnTypesUseThinArrow where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ReturnTypesUseThinArrow {
span: __binding_0, suggestion: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("return types are denoted using `->`")));
let __code_201 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" -> "))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `->` instead")),
__code_201, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3577#[diag("return types are denoted using `->`")]
3578pub(crate) struct ReturnTypesUseThinArrow {
3579 #[primary_span]
3580 pub span: Span,
3581 #[suggestion(
3582 "use `->` instead",
3583 style = "verbose",
3584 code = " -> ",
3585 applicability = "machine-applicable"
3586 )]
3587 pub suggestion: Span,
3588}
3589
3590#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
NeedPlusAfterTraitObjectLifetime where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
NeedPlusAfterTraitObjectLifetime {
span: __binding_0, suggestion: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("lifetimes must be followed by `+` to form a trait object type")));
let __code_202 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" + /* Trait */"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider adding a trait bound after the potential lifetime bound")),
__code_202, rustc_errors::Applicability::HasPlaceholders,
rustc_errors::SuggestionStyle::ShowCode);
diag
}
}
}
}
};Diagnostic)]
3591#[diag("lifetimes must be followed by `+` to form a trait object type")]
3592pub(crate) struct NeedPlusAfterTraitObjectLifetime {
3593 #[primary_span]
3594 pub span: Span,
3595 #[suggestion(
3596 "consider adding a trait bound after the potential lifetime bound",
3597 code = " + /* Trait */",
3598 applicability = "has-placeholders"
3599 )]
3600 pub suggestion: Span,
3601}
3602
3603#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedMutOrConstInRawPointerType where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedMutOrConstInRawPointerType {
span: __binding_0, after_asterisk: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `mut` or `const` keyword in raw pointer type")));
let __code_203 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("mut "))
}),
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("const "))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add `mut` or `const` here")),
__code_203, rustc_errors::Applicability::HasPlaceholders,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3604#[diag("expected `mut` or `const` keyword in raw pointer type")]
3605pub(crate) struct ExpectedMutOrConstInRawPointerType {
3606 #[primary_span]
3607 pub span: Span,
3608 #[suggestion(
3609 "add `mut` or `const` here",
3610 code("mut ", "const "),
3611 applicability = "has-placeholders",
3612 style = "verbose"
3613 )]
3614 pub after_asterisk: Span,
3615}
3616
3617#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
LifetimeAfterMut where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
LifetimeAfterMut {
span: __binding_0,
suggest_lifetime: __binding_1,
snippet: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("lifetime must precede `mut`")));
let __code_204 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("&{0} mut", __binding_2))
})].into_iter();
;
diag.span(__binding_0);
if let Some(__binding_1) = __binding_1 {
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("place the lifetime before `mut`")),
__code_204, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
}
diag
}
}
}
}
};Diagnostic)]
3618#[diag("lifetime must precede `mut`")]
3619pub(crate) struct LifetimeAfterMut {
3620 #[primary_span]
3621 pub span: Span,
3622 #[suggestion(
3623 "place the lifetime before `mut`",
3624 code = "&{snippet} mut",
3625 applicability = "maybe-incorrect",
3626 style = "verbose"
3627 )]
3628 pub suggest_lifetime: Option<Span>,
3629 pub snippet: String,
3630}
3631
3632#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for DynAfterMut
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
DynAfterMut { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`mut` must precede `dyn`")));
let __code_205 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("&mut dyn"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("place `mut` before `dyn`")),
__code_205, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3633#[diag("`mut` must precede `dyn`")]
3634pub(crate) struct DynAfterMut {
3635 #[primary_span]
3636 #[suggestion(
3637 "place `mut` before `dyn`",
3638 code = "&mut dyn",
3639 applicability = "machine-applicable",
3640 style = "verbose"
3641 )]
3642 pub span: Span,
3643}
3644
3645#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FnPointerCannotBeConst where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FnPointerCannotBeConst {
span: __binding_0, suggestion: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("an `fn` pointer type cannot be `const`")));
let __code_206 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("allowed qualifiers are: `unsafe` and `extern`")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`const` because of this")));
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the `const` qualifier")),
__code_206, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3646#[diag("an `fn` pointer type cannot be `const`")]
3647#[note("allowed qualifiers are: `unsafe` and `extern`")]
3648pub(crate) struct FnPointerCannotBeConst {
3649 #[primary_span]
3650 #[label("`const` because of this")]
3651 pub span: Span,
3652 #[suggestion(
3653 "remove the `const` qualifier",
3654 code = "",
3655 applicability = "maybe-incorrect",
3656 style = "verbose"
3657 )]
3658 pub suggestion: Span,
3659}
3660
3661#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FnPointerCannotBeAsync where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FnPointerCannotBeAsync {
span: __binding_0, suggestion: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("an `fn` pointer type cannot be `async`")));
let __code_207 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("allowed qualifiers are: `unsafe` and `extern`")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`async` because of this")));
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the `async` qualifier")),
__code_207, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3662#[diag("an `fn` pointer type cannot be `async`")]
3663#[note("allowed qualifiers are: `unsafe` and `extern`")]
3664pub(crate) struct FnPointerCannotBeAsync {
3665 #[primary_span]
3666 #[label("`async` because of this")]
3667 pub span: Span,
3668 #[suggestion(
3669 "remove the `async` qualifier",
3670 code = "",
3671 applicability = "maybe-incorrect",
3672 style = "verbose"
3673 )]
3674 pub suggestion: Span,
3675}
3676
3677#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
NestedCVariadicType where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
NestedCVariadicType { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("C-variadic type `...` may not be nested inside another type")));
diag.code(E0743);
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
3678#[diag("C-variadic type `...` may not be nested inside another type", code = E0743)]
3679pub(crate) struct NestedCVariadicType {
3680 #[primary_span]
3681 pub span: Span,
3682}
3683
3684#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidCVariadicType where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidCVariadicType { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected `...`")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("only `extern \"C\"` and `extern \"C-unwind\"` functions may have a C variable argument list")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
3685#[diag("unexpected `...`")]
3686#[note(
3687 "only `extern \"C\"` and `extern \"C-unwind\"` functions may have a C variable argument list"
3688)]
3689pub(crate) struct InvalidCVariadicType {
3690 #[primary_span]
3691 pub span: Span,
3692}
3693
3694#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidDynKeyword where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidDynKeyword {
span: __binding_0, suggestion: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("invalid `dyn` keyword")));
let __code_208 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`dyn` is only needed at the start of a trait `+`-separated list")));
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove this keyword")),
__code_208, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3695#[diag("invalid `dyn` keyword")]
3696#[help("`dyn` is only needed at the start of a trait `+`-separated list")]
3697pub(crate) struct InvalidDynKeyword {
3698 #[primary_span]
3699 pub span: Span,
3700 #[suggestion(
3701 "remove this keyword",
3702 code = "",
3703 applicability = "machine-applicable",
3704 style = "verbose"
3705 )]
3706 pub suggestion: Span,
3707}
3708
3709#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for HelpUseLatestEdition {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
HelpUseLatestEdition::Cargo { edition: __binding_0 } => {
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("edition".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_0,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("set `edition = \"{$edition}\"` in `Cargo.toml`")),
&sub_args);
diag.help(__message);
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("for more on editions, read https://doc.rust-lang.org/edition-guide")),
&sub_args);
diag.note(__message);
}
HelpUseLatestEdition::Standalone { edition: __binding_0 } =>
{
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("edition".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_0,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("pass `--edition {$edition}` to `rustc`")),
&sub_args);
diag.help(__message);
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("for more on editions, read https://doc.rust-lang.org/edition-guide")),
&sub_args);
diag.note(__message);
}
}
}
}
};Subdiagnostic)]
3710pub(crate) enum HelpUseLatestEdition {
3711 #[help("set `edition = \"{$edition}\"` in `Cargo.toml`")]
3712 #[note("for more on editions, read https://doc.rust-lang.org/edition-guide")]
3713 Cargo { edition: Edition },
3714 #[help("pass `--edition {$edition}` to `rustc`")]
3715 #[note("for more on editions, read https://doc.rust-lang.org/edition-guide")]
3716 Standalone { edition: Edition },
3717}
3718
3719impl HelpUseLatestEdition {
3720 pub(crate) fn new() -> Self {
3721 let edition = LATEST_STABLE_EDITION;
3722 if rustc_session::utils::was_invoked_from_cargo() {
3723 Self::Cargo { edition }
3724 } else {
3725 Self::Standalone { edition }
3726 }
3727 }
3728}
3729
3730#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
BoxSyntaxRemoved where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BoxSyntaxRemoved { span: __binding_0, sugg: __binding_1 } =>
{
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`box_syntax` has been removed")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
3731#[diag("`box_syntax` has been removed")]
3732pub(crate) struct BoxSyntaxRemoved {
3733 #[primary_span]
3734 pub span: Span,
3735 #[subdiagnostic]
3736 pub sugg: AddBoxNew,
3737}
3738
3739#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for AddBoxNew {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
AddBoxNew { box_kw_and_lo: __binding_0, hi: __binding_1 } =>
{
let mut suggestions = Vec::new();
let __code_209 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("Box::new("))
});
let __code_210 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_209));
suggestions.push((__binding_1, __code_210));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `Box::new()` instead")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};Subdiagnostic)]
3740#[multipart_suggestion(
3741 "use `Box::new()` instead",
3742 applicability = "machine-applicable",
3743 style = "verbose"
3744)]
3745pub(crate) struct AddBoxNew {
3746 #[suggestion_part(code = "Box::new(")]
3747 pub box_kw_and_lo: Span,
3748 #[suggestion_part(code = ")")]
3749 pub hi: Span,
3750}
3751
3752#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
BoxPatternsRemoved where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BoxPatternsRemoved { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`box_patterns` has been removed")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
3753#[diag("`box_patterns` has been removed")]
3754pub(crate) struct BoxPatternsRemoved {
3755 #[primary_span]
3756 pub span: Span,
3757}
3758
3759#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
BadReturnTypeNotationOutput where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BadReturnTypeNotationOutput {
span: __binding_0, suggestion: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("return type not allowed with return type notation")));
let __code_211 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the return type")),
__code_211, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3760#[diag("return type not allowed with return type notation")]
3761pub(crate) struct BadReturnTypeNotationOutput {
3762 #[primary_span]
3763 pub span: Span,
3764 #[suggestion(
3765 "remove the return type",
3766 code = "",
3767 applicability = "maybe-incorrect",
3768 style = "verbose"
3769 )]
3770 pub suggestion: Span,
3771}
3772
3773#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
BadAssocTypeBounds where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BadAssocTypeBounds { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("bounds on associated types do not belong here")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("belongs in `where` clause")));
diag
}
}
}
}
};Diagnostic)]
3774#[diag("bounds on associated types do not belong here")]
3775pub(crate) struct BadAssocTypeBounds {
3776 #[primary_span]
3777 #[label("belongs in `where` clause")]
3778 pub span: Span,
3779}
3780
3781#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AttrAfterGeneric where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AttrAfterGeneric { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("trailing attribute after generic parameter")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes must go before parameters")));
diag
}
}
}
}
};Diagnostic)]
3782#[diag("trailing attribute after generic parameter")]
3783pub(crate) struct AttrAfterGeneric {
3784 #[primary_span]
3785 #[label("attributes must go before parameters")]
3786 pub span: Span,
3787}
3788
3789#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AttrWithoutGenerics where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AttrWithoutGenerics { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attribute without generic parameters")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes are only permitted when preceding parameters")));
diag
}
}
}
}
};Diagnostic)]
3790#[diag("attribute without generic parameters")]
3791pub(crate) struct AttrWithoutGenerics {
3792 #[primary_span]
3793 #[label("attributes are only permitted when preceding parameters")]
3794 pub span: Span,
3795}
3796
3797#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
WhereOnGenerics where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
WhereOnGenerics { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("generic parameters on `where` clauses are reserved for future use")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("currently unsupported")));
diag
}
}
}
}
};Diagnostic)]
3798#[diag("generic parameters on `where` clauses are reserved for future use")]
3799pub(crate) struct WhereOnGenerics {
3800 #[primary_span]
3801 #[label("currently unsupported")]
3802 pub span: Span,
3803}
3804
3805#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for GenericsInPath
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
GenericsInPath { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected generic arguments in path")));
;
diag.span(__binding_0.clone());
diag
}
}
}
}
};Diagnostic)]
3806#[diag("unexpected generic arguments in path")]
3807pub(crate) struct GenericsInPath {
3808 #[primary_span]
3809 pub span: Vec<Span>,
3810}
3811
3812#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
LifetimeInEqConstraint where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
LifetimeInEqConstraint {
span: __binding_0,
lifetime: __binding_1,
binding_label: __binding_2,
colon_sugg: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("lifetimes are not permitted in this context")));
let __code_212 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(": "))
})].into_iter();
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you meant to specify a trait object, write `dyn /* Trait */ + {$lifetime}`")));
;
diag.arg("lifetime", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("lifetime is not allowed here")));
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("this introduces an associated item binding")));
diag.span_suggestions_with_style(__binding_3,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("you might have meant to write a bound here")),
__code_212, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3813#[diag("lifetimes are not permitted in this context")]
3814#[help("if you meant to specify a trait object, write `dyn /* Trait */ + {$lifetime}`")]
3815pub(crate) struct LifetimeInEqConstraint {
3816 #[primary_span]
3817 #[label("lifetime is not allowed here")]
3818 pub span: Span,
3819 pub lifetime: Ident,
3820 #[label("this introduces an associated item binding")]
3821 pub binding_label: Span,
3822 #[suggestion(
3823 "you might have meant to write a bound here",
3824 style = "verbose",
3825 applicability = "maybe-incorrect",
3826 code = ": "
3827 )]
3828 pub colon_sugg: Span,
3829}
3830
3831#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ModifierLifetime where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ModifierLifetime { span: __binding_0, modifier: __binding_1
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`{$modifier}` may only modify trait bounds, not lifetime bounds")));
let __code_213 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.arg("modifier", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the `{$modifier}`")),
__code_213, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::CompletelyHidden);
diag
}
}
}
}
};Diagnostic)]
3832#[diag("`{$modifier}` may only modify trait bounds, not lifetime bounds")]
3833pub(crate) struct ModifierLifetime {
3834 #[primary_span]
3835 #[suggestion(
3836 "remove the `{$modifier}`",
3837 style = "tool-only",
3838 applicability = "maybe-incorrect",
3839 code = ""
3840 )]
3841 pub span: Span,
3842 pub modifier: &'static str,
3843}
3844
3845#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnderscoreLiteralSuffix where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnderscoreLiteralSuffix { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("underscore literal suffix is not allowed")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
3846#[diag("underscore literal suffix is not allowed")]
3847pub(crate) struct UnderscoreLiteralSuffix {
3848 #[primary_span]
3849 pub span: Span,
3850}
3851
3852#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedLabelFoundIdent where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedLabelFoundIdent {
span: __binding_0, start: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected a label, found an identifier")));
let __code_214 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("\'"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("labels start with a tick")),
__code_214, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3853#[diag("expected a label, found an identifier")]
3854pub(crate) struct ExpectedLabelFoundIdent {
3855 #[primary_span]
3856 pub span: Span,
3857 #[suggestion(
3858 "labels start with a tick",
3859 code = "'",
3860 applicability = "machine-applicable",
3861 style = "verbose"
3862 )]
3863 pub start: Span,
3864}
3865
3866#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InappropriateDefault where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InappropriateDefault {
span: __binding_0, article: __binding_1, descr: __binding_2
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$article} {$descr} cannot be `default`")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("only associated `fn`, `const`, and `type` items can be `default`")));
;
diag.arg("article", __binding_1);
diag.arg("descr", __binding_2);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`default` because of this")));
diag
}
}
}
}
};Diagnostic)]
3867#[diag("{$article} {$descr} cannot be `default`")]
3868#[note("only associated `fn`, `const`, and `type` items can be `default`")]
3869pub(crate) struct InappropriateDefault {
3870 #[primary_span]
3871 #[label("`default` because of this")]
3872 pub span: Span,
3873 pub article: &'static str,
3874 pub descr: &'static str,
3875}
3876
3877#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
RecoverImportAsUse where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
RecoverImportAsUse {
span: __binding_0, token_name: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected item, found {$token_name}")));
let __code_215 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("use"))
})].into_iter();
;
diag.arg("token_name", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("items are imported using the `use` keyword")),
__code_215, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3878#[diag("expected item, found {$token_name}")]
3879pub(crate) struct RecoverImportAsUse {
3880 #[primary_span]
3881 #[suggestion(
3882 "items are imported using the `use` keyword",
3883 code = "use",
3884 applicability = "machine-applicable",
3885 style = "verbose"
3886 )]
3887 pub span: Span,
3888 pub token_name: String,
3889}
3890
3891#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InappropriateFinal where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InappropriateFinal {
span: __binding_0, article: __binding_1, descr: __binding_2
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$article} {$descr} cannot be `final`")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("only associated functions in traits can be `final`")));
;
diag.arg("article", __binding_1);
diag.arg("descr", __binding_2);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`final` because of this")));
diag
}
}
}
}
};Diagnostic)]
3892#[diag("{$article} {$descr} cannot be `final`")]
3893#[note("only associated functions in traits can be `final`")]
3894pub(crate) struct InappropriateFinal {
3895 #[primary_span]
3896 #[label("`final` because of this")]
3897 pub span: Span,
3898 pub article: &'static str,
3899 pub descr: &'static str,
3900}
3901
3902#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
SingleColonImportPath where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
SingleColonImportPath { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `::`, found `:`")));
let __code_216 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("::"))
})].into_iter();
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("import paths are delimited using `::`")));
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use double colon")),
__code_216, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3903#[diag("expected `::`, found `:`")]
3904#[note("import paths are delimited using `::`")]
3905pub(crate) struct SingleColonImportPath {
3906 #[primary_span]
3907 #[suggestion(
3908 "use double colon",
3909 code = "::",
3910 applicability = "machine-applicable",
3911 style = "verbose"
3912 )]
3913 pub span: Span,
3914}
3915
3916#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for BadItemKind
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BadItemKind {
span: __binding_0,
descr: __binding_1,
ctx: __binding_2,
help: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$descr} is not supported in {$ctx}")));
;
diag.arg("descr", __binding_1);
diag.arg("ctx", __binding_2);
diag.span(__binding_0);
if __binding_3 {
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider moving the {$descr} out to a nearby module scope")));
}
diag
}
}
}
}
};Diagnostic)]
3917#[diag("{$descr} is not supported in {$ctx}")]
3918pub(crate) struct BadItemKind {
3919 #[primary_span]
3920 pub span: Span,
3921 pub descr: &'static str,
3922 pub ctx: &'static str,
3923 #[help("consider moving the {$descr} out to a nearby module scope")]
3924 pub help: bool,
3925}
3926
3927#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MacroRulesMissingBang where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MacroRulesMissingBang { span: __binding_0, hi: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `!` after `macro_rules`")));
let __code_217 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("!"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add a `!`")),
__code_217, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3928#[diag("expected `!` after `macro_rules`")]
3929pub(crate) struct MacroRulesMissingBang {
3930 #[primary_span]
3931 pub span: Span,
3932 #[suggestion("add a `!`", code = "!", applicability = "machine-applicable", style = "verbose")]
3933 pub hi: Span,
3934}
3935
3936#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MacroNameRemoveBang where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MacroNameRemoveBang { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("macro names aren't followed by a `!`")));
let __code_218 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the `!`")),
__code_218, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::HideCodeInline);
diag
}
}
}
}
};Diagnostic)]
3937#[diag("macro names aren't followed by a `!`")]
3938pub(crate) struct MacroNameRemoveBang {
3939 #[primary_span]
3940 #[suggestion(
3941 "remove the `!`",
3942 code = "",
3943 applicability = "machine-applicable",
3944 style = "short"
3945 )]
3946 pub span: Span,
3947}
3948
3949#[derive(const _: () =
{
impl<'_sess, 'a, G> rustc_errors::Diagnostic<'_sess, G> for
MacroRulesVisibility<'a> where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MacroRulesVisibility { span: __binding_0, vis: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("can't qualify macro_rules invocation with `{$vis}`")));
let __code_219 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("#[macro_export]"))
})].into_iter();
;
diag.arg("vis", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try exporting the macro")),
__code_219, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3950#[diag("can't qualify macro_rules invocation with `{$vis}`")]
3951pub(crate) struct MacroRulesVisibility<'a> {
3952 #[primary_span]
3953 #[suggestion(
3954 "try exporting the macro",
3955 code = "#[macro_export]",
3956 applicability = "maybe-incorrect",
3957 style = "verbose"
3958 )]
3959 pub span: Span,
3960 pub vis: &'a str,
3961}
3962
3963#[derive(const _: () =
{
impl<'_sess, 'a, G> rustc_errors::Diagnostic<'_sess, G> for
MacroInvocationVisibility<'a> where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MacroInvocationVisibility {
span: __binding_0, vis: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("can't qualify macro invocation with `pub`")));
let __code_220 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try adjusting the macro to put `{$vis}` inside the invocation")));
;
diag.arg("vis", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove the visibility")),
__code_220, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3964#[diag("can't qualify macro invocation with `pub`")]
3965#[help("try adjusting the macro to put `{$vis}` inside the invocation")]
3966pub(crate) struct MacroInvocationVisibility<'a> {
3967 #[primary_span]
3968 #[suggestion(
3969 "remove the visibility",
3970 code = "",
3971 applicability = "machine-applicable",
3972 style = "verbose"
3973 )]
3974 pub span: Span,
3975 pub vis: &'a str,
3976}
3977
3978#[derive(const _: () =
{
impl<'_sess, 'a, G> rustc_errors::Diagnostic<'_sess, G> for
NestedAdt<'a> where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
NestedAdt {
span: __binding_0,
item: __binding_1,
keyword: __binding_2,
kw_str: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`{$kw_str}` definition cannot be nested inside `{$keyword}`")));
let __code_221 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.arg("keyword", __binding_2);
diag.arg("kw_str", __binding_3);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("consider creating a new `{$kw_str}` definition instead of nesting")),
__code_221, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
3979#[diag("`{$kw_str}` definition cannot be nested inside `{$keyword}`")]
3980pub(crate) struct NestedAdt<'a> {
3981 #[primary_span]
3982 pub span: Span,
3983 #[suggestion(
3984 "consider creating a new `{$kw_str}` definition instead of nesting",
3985 code = "",
3986 applicability = "maybe-incorrect",
3987 style = "verbose"
3988 )]
3989 pub item: Span,
3990 pub keyword: &'a str,
3991 pub kw_str: Cow<'a, str>,
3992}
3993
3994#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FunctionBodyEqualsExpr where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FunctionBodyEqualsExpr {
span: __binding_0, sugg: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("function body cannot be `= expression;`")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
3995#[diag("function body cannot be `= expression;`")]
3996pub(crate) struct FunctionBodyEqualsExpr {
3997 #[primary_span]
3998 pub span: Span,
3999 #[subdiagnostic]
4000 pub sugg: FunctionBodyEqualsExprSugg,
4001}
4002
4003#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for FunctionBodyEqualsExprSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
FunctionBodyEqualsExprSugg {
eq: __binding_0, semi: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_222 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{{"))
});
let __code_223 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" }}"))
});
suggestions.push((__binding_0, __code_222));
suggestions.push((__binding_1, __code_223));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("surround the expression with `{\"{\"}` and `{\"}\"}` instead of `=` and `;`")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
4004#[multipart_suggestion(
4005 r#"surround the expression with `{"{"}` and `{"}"}` instead of `=` and `;`"#,
4006 applicability = "machine-applicable"
4007)]
4008pub(crate) struct FunctionBodyEqualsExprSugg {
4009 #[suggestion_part(code = "{{")]
4010 pub eq: Span,
4011 #[suggestion_part(code = " }}")]
4012 pub semi: Span,
4013}
4014
4015#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for BoxNotPat
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BoxNotPat {
span: __binding_0,
kw: __binding_1,
lo: __binding_2,
descr: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected pattern, found {$descr}")));
let __code_224 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("r#"))
})].into_iter();
;
diag.arg("descr", __binding_3);
diag.span(__binding_0);
diag.span_note(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`box` is a reserved keyword")));
diag.span_suggestions_with_style(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("escape `box` to use it as an identifier")),
__code_224, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
4016#[diag("expected pattern, found {$descr}")]
4017pub(crate) struct BoxNotPat {
4018 #[primary_span]
4019 pub span: Span,
4020 #[note("`box` is a reserved keyword")]
4021 pub kw: Span,
4022 #[suggestion(
4023 "escape `box` to use it as an identifier",
4024 code = "r#",
4025 applicability = "maybe-incorrect",
4026 style = "verbose"
4027 )]
4028 pub lo: Span,
4029 pub descr: String,
4030}
4031
4032#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for UnmatchedAngle
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnmatchedAngle { span: __binding_0, plural: __binding_1 } =>
{
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unmatched angle {$plural ->\n [true] brackets\n *[false] bracket\n }")));
let __code_225 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
})].into_iter();
;
diag.arg("plural", __binding_1);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("remove extra angle {$plural ->\n [true] brackets\n *[false] bracket\n }")),
__code_225, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
4033#[diag(
4034 "unmatched angle {$plural ->
4035 [true] brackets
4036 *[false] bracket
4037 }"
4038)]
4039pub(crate) struct UnmatchedAngle {
4040 #[primary_span]
4041 #[suggestion(
4042 "remove extra angle {$plural ->
4043 [true] brackets
4044 *[false] bracket
4045 }",
4046 code = "",
4047 applicability = "machine-applicable",
4048 style = "verbose"
4049 )]
4050 pub span: Span,
4051 pub plural: bool,
4052}
4053
4054#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
MissingPlusBounds where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
MissingPlusBounds {
span: __binding_0, hi: __binding_1, sym: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `+` between lifetime and {$sym}")));
let __code_226 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" +"))
})].into_iter();
;
diag.arg("sym", __binding_2);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add `+`")),
__code_226, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
4055#[diag("expected `+` between lifetime and {$sym}")]
4056pub(crate) struct MissingPlusBounds {
4057 #[primary_span]
4058 pub span: Span,
4059 #[suggestion("add `+`", code = " +", applicability = "maybe-incorrect", style = "verbose")]
4060 pub hi: Span,
4061 pub sym: Symbol,
4062}
4063
4064#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
IncorrectParensTraitBounds where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
IncorrectParensTraitBounds {
span: __binding_0, sugg: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("incorrect parentheses around trait bounds")));
;
diag.span(__binding_0.clone());
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
4065#[diag("incorrect parentheses around trait bounds")]
4066pub(crate) struct IncorrectParensTraitBounds {
4067 #[primary_span]
4068 pub span: Vec<Span>,
4069 #[subdiagnostic]
4070 pub sugg: IncorrectParensTraitBoundsSugg,
4071}
4072
4073#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for IncorrectParensTraitBoundsSugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
IncorrectParensTraitBoundsSugg {
wrong_span: __binding_0, new_span: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_227 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" "))
});
let __code_228 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
suggestions.push((__binding_0, __code_227));
suggestions.push((__binding_1, __code_228));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("fix the parentheses")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
4074#[multipart_suggestion("fix the parentheses", applicability = "machine-applicable")]
4075pub(crate) struct IncorrectParensTraitBoundsSugg {
4076 #[suggestion_part(code = " ")]
4077 pub wrong_span: Span,
4078 #[suggestion_part(code = "(")]
4079 pub new_span: Span,
4080}
4081
4082#[derive(const _: () =
{
impl<'_sess, 'a, G> rustc_errors::Diagnostic<'_sess, G> for
KwBadCase<'a> where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
KwBadCase {
span: __binding_0, kw: __binding_1, case: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("keyword `{$kw}` is written in the wrong case")));
let __code_229 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_1))
})].into_iter();
;
diag.arg("kw", __binding_1);
diag.arg("case", __binding_2);
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("write it in {$case}")),
__code_229, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
4083#[diag("keyword `{$kw}` is written in the wrong case")]
4084pub(crate) struct KwBadCase<'a> {
4085 #[primary_span]
4086 #[suggestion(
4087 "write it in {$case}",
4088 code = "{kw}",
4089 style = "verbose",
4090 applicability = "machine-applicable"
4091 )]
4092 pub span: Span,
4093 pub kw: &'a str,
4094 pub case: Case,
4095}
4096
4097pub(crate) enum Case {
4098 Upper,
4099 Lower,
4100 Mixed,
4101}
4102
4103impl IntoDiagArg for Case {
4104 fn into_diag_arg(self, path: &mut Option<PathBuf>) -> DiagArgValue {
4105 match self {
4106 Case::Upper => "uppercase",
4107 Case::Lower => "lowercase",
4108 Case::Mixed => "the correct case",
4109 }
4110 .into_diag_arg(path)
4111 }
4112}
4113
4114#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnknownBuiltinConstruct where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnknownBuiltinConstruct {
span: __binding_0, name: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unknown `builtin #` construct `{$name}`")));
;
diag.arg("name", __binding_1);
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4115#[diag("unknown `builtin #` construct `{$name}`")]
4116pub(crate) struct UnknownBuiltinConstruct {
4117 #[primary_span]
4118 pub span: Span,
4119 pub name: Ident,
4120}
4121
4122#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedBuiltinIdent where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedBuiltinIdent { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected identifier after `builtin #`")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4123#[diag("expected identifier after `builtin #`")]
4124pub(crate) struct ExpectedBuiltinIdent {
4125 #[primary_span]
4126 pub span: Span,
4127}
4128
4129#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
StaticWithGenerics where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
StaticWithGenerics { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("static items may not have generic parameters")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4130#[diag("static items may not have generic parameters")]
4131pub(crate) struct StaticWithGenerics {
4132 #[primary_span]
4133 pub span: Span,
4134}
4135
4136#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
WhereClauseBeforeConstBody where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
WhereClauseBeforeConstBody {
span: __binding_0,
name: __binding_1,
body: __binding_2,
sugg: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("where clauses are not allowed before const item bodies")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unexpected where clause")));
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("while parsing this const item")));
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the item body")));
if let Some(__binding_3) = __binding_3 {
diag.subdiagnostic(__binding_3);
}
diag
}
}
}
}
};Diagnostic)]
4137#[diag("where clauses are not allowed before const item bodies")]
4138pub(crate) struct WhereClauseBeforeConstBody {
4139 #[primary_span]
4140 #[label("unexpected where clause")]
4141 pub span: Span,
4142 #[label("while parsing this const item")]
4143 pub name: Span,
4144 #[label("the item body")]
4145 pub body: Span,
4146 #[subdiagnostic]
4147 pub sugg: Option<WhereClauseBeforeConstBodySugg>,
4148}
4149
4150#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for WhereClauseBeforeConstBodySugg {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
WhereClauseBeforeConstBodySugg {
left: __binding_0, snippet: __binding_1, right: __binding_2
} => {
let mut suggestions = Vec::new();
let __code_230 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("= {0} ", __binding_1))
});
let __code_231 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
suggestions.push((__binding_0, __code_230));
suggestions.push((__binding_2, __code_231));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("move the body before the where clause")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
4151#[multipart_suggestion(
4152 "move the body before the where clause",
4153 applicability = "machine-applicable"
4154)]
4155pub(crate) struct WhereClauseBeforeConstBodySugg {
4156 #[suggestion_part(code = "= {snippet} ")]
4157 pub left: Span,
4158 pub snippet: String,
4159 #[suggestion_part(code = "")]
4160 pub right: Span,
4161}
4162
4163#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
GenericArgsInPatRequireTurbofishSyntax where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
GenericArgsInPatRequireTurbofishSyntax {
span: __binding_0, suggest_turbofish: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("generic args in patterns require the turbofish syntax")));
let __code_232 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("::"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("use `::<...>` instead of `<...>` to specify lifetime, type, or const arguments")),
__code_232, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
4164#[diag("generic args in patterns require the turbofish syntax")]
4165pub(crate) struct GenericArgsInPatRequireTurbofishSyntax {
4166 #[primary_span]
4167 pub span: Span,
4168 #[suggestion(
4169 "use `::<...>` instead of `<...>` to specify lifetime, type, or const arguments",
4170 style = "verbose",
4171 code = "::",
4172 applicability = "maybe-incorrect"
4173 )]
4174 pub suggest_turbofish: Span,
4175}
4176
4177#[derive(const _: () =
{
impl<'_sess, 'a, G> rustc_errors::Diagnostic<'_sess, G> for
TransposeDynOrImpl<'a> where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
TransposeDynOrImpl {
span: __binding_0, kw: __binding_1, sugg: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`for<...>` expected after `{$kw}`, not before")));
;
diag.arg("kw", __binding_1);
diag.span(__binding_0);
diag.subdiagnostic(__binding_2);
diag
}
}
}
}
};Diagnostic)]
4178#[diag("`for<...>` expected after `{$kw}`, not before")]
4179pub(crate) struct TransposeDynOrImpl<'a> {
4180 #[primary_span]
4181 pub span: Span,
4182 pub kw: &'a str,
4183 #[subdiagnostic]
4184 pub sugg: TransposeDynOrImplSugg<'a>,
4185}
4186
4187#[derive(const _: () =
{
impl<'a> rustc_errors::Subdiagnostic for TransposeDynOrImplSugg<'a> {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
TransposeDynOrImplSugg {
removal_span: __binding_0,
insertion_span: __binding_1,
kw: __binding_2 } => {
let mut suggestions = Vec::new();
let __code_233 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
let __code_234 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0} ", __binding_2))
});
suggestions.push((__binding_0, __code_233));
suggestions.push((__binding_1, __code_234));
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("kw".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_2,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("move `{$kw}` before the `for<...>`")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
4188#[multipart_suggestion("move `{$kw}` before the `for<...>`", applicability = "machine-applicable")]
4189pub(crate) struct TransposeDynOrImplSugg<'a> {
4190 #[suggestion_part(code = "")]
4191 pub removal_span: Span,
4192 #[suggestion_part(code = "{kw} ")]
4193 pub insertion_span: Span,
4194 pub kw: &'a str,
4195}
4196
4197#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ArrayIndexInOffsetOf where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ArrayIndexInOffsetOf(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("array indexing not supported in offset_of")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4198#[diag("array indexing not supported in offset_of")]
4199pub(crate) struct ArrayIndexInOffsetOf(#[primary_span] pub Span);
4200
4201#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
InvalidOffsetOf where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
InvalidOffsetOf(__binding_0) => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("offset_of expects dot-separated field and variant names")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4202#[diag("offset_of expects dot-separated field and variant names")]
4203pub(crate) struct InvalidOffsetOf(#[primary_span] pub Span);
4204
4205#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for AsyncImpl
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsyncImpl { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`async` trait implementations are unsupported")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4206#[diag("`async` trait implementations are unsupported")]
4207pub(crate) struct AsyncImpl {
4208 #[primary_span]
4209 pub span: Span,
4210}
4211
4212#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for ExprRArrowCall
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExprRArrowCall { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`->` is not valid syntax for field accesses and method calls")));
let __code_235 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("."))
})].into_iter();
diag.help(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the `.` operator will automatically dereference the value, except if the value is a raw pointer")));
;
diag.span(__binding_0);
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("try using `.` instead")),
__code_235, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
4213#[diag("`->` is not valid syntax for field accesses and method calls")]
4214#[help(
4215 "the `.` operator will automatically dereference the value, except if the value is a raw pointer"
4216)]
4217pub(crate) struct ExprRArrowCall {
4218 #[primary_span]
4219 #[suggestion(
4220 "try using `.` instead",
4221 style = "verbose",
4222 applicability = "machine-applicable",
4223 code = "."
4224 )]
4225 pub span: Span,
4226}
4227
4228#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
DotDotRangeAttribute where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
DotDotRangeAttribute { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("attributes are not allowed on range expressions starting with `..`")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4229#[diag("attributes are not allowed on range expressions starting with `..`")]
4230pub(crate) struct DotDotRangeAttribute {
4231 #[primary_span]
4232 pub span: Span,
4233}
4234
4235#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
BinderBeforeModifiers where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BinderBeforeModifiers {
binder_span: __binding_0, modifiers_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`for<...>` binder should be placed before trait bound modifiers")));
;
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("place the `for<...>` binder before any modifiers")));
diag
}
}
}
}
};Diagnostic)]
4236#[diag("`for<...>` binder should be placed before trait bound modifiers")]
4237pub(crate) struct BinderBeforeModifiers {
4238 #[primary_span]
4239 pub binder_span: Span,
4240 #[label("place the `for<...>` binder before any modifiers")]
4241 pub modifiers_span: Span,
4242}
4243
4244#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
BinderAndPolarity where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BinderAndPolarity {
polarity_span: __binding_0,
binder_span: __binding_1,
polarity: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`for<...>` binder not allowed with `{$polarity}` trait polarity modifier")));
;
diag.arg("polarity", __binding_2);
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("there is not a well-defined meaning for a higher-ranked `{$polarity}` trait")));
diag
}
}
}
}
};Diagnostic)]
4245#[diag("`for<...>` binder not allowed with `{$polarity}` trait polarity modifier")]
4246pub(crate) struct BinderAndPolarity {
4247 #[primary_span]
4248 pub polarity_span: Span,
4249 #[label("there is not a well-defined meaning for a higher-ranked `{$polarity}` trait")]
4250 pub binder_span: Span,
4251 pub polarity: &'static str,
4252}
4253
4254#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
PolarityAndModifiers where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
PolarityAndModifiers {
polarity_span: __binding_0,
modifiers_span: __binding_1,
polarity: __binding_2,
modifiers_concatenated: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`{$modifiers_concatenated}` trait not allowed with `{$polarity}` trait polarity modifier")));
;
diag.arg("polarity", __binding_2);
diag.arg("modifiers_concatenated", __binding_3);
diag.span(__binding_0);
diag.span_label(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("there is not a well-defined meaning for a `{$modifiers_concatenated} {$polarity}` trait")));
diag
}
}
}
}
};Diagnostic)]
4255#[diag("`{$modifiers_concatenated}` trait not allowed with `{$polarity}` trait polarity modifier")]
4256pub(crate) struct PolarityAndModifiers {
4257 #[primary_span]
4258 pub polarity_span: Span,
4259 #[label(
4260 "there is not a well-defined meaning for a `{$modifiers_concatenated} {$polarity}` trait"
4261 )]
4262 pub modifiers_span: Span,
4263 pub polarity: &'static str,
4264 pub modifiers_concatenated: String,
4265}
4266
4267#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
IncorrectTypeOnSelf where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
IncorrectTypeOnSelf {
span: __binding_0, move_self_modifier: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("type not allowed for shorthand `self` parameter")));
;
diag.span(__binding_0);
diag.subdiagnostic(__binding_1);
diag
}
}
}
}
};Diagnostic)]
4268#[diag("type not allowed for shorthand `self` parameter")]
4269pub(crate) struct IncorrectTypeOnSelf {
4270 #[primary_span]
4271 pub span: Span,
4272 #[subdiagnostic]
4273 pub move_self_modifier: MoveSelfModifier,
4274}
4275
4276#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for MoveSelfModifier {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
MoveSelfModifier {
removal_span: __binding_0,
insertion_span: __binding_1,
modifier: __binding_2 } => {
let mut suggestions = Vec::new();
let __code_236 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
let __code_237 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_2))
});
suggestions.push((__binding_0, __code_236));
suggestions.push((__binding_1, __code_237));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("move the modifiers on `self` to the type")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
4277#[multipart_suggestion(
4278 "move the modifiers on `self` to the type",
4279 applicability = "machine-applicable"
4280)]
4281pub(crate) struct MoveSelfModifier {
4282 #[suggestion_part(code = "")]
4283 pub removal_span: Span,
4284 #[suggestion_part(code = "{modifier}")]
4285 pub insertion_span: Span,
4286 pub modifier: String,
4287}
4288
4289#[derive(const _: () =
{
impl<'_sess, 'a, G> rustc_errors::Diagnostic<'_sess, G> for
AsmUnsupportedOperand<'a> where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsmUnsupportedOperand {
span: __binding_0,
symbol: __binding_1,
macro_name: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the `{$symbol}` operand cannot be used with `{$macro_name}!`")));
;
diag.arg("symbol", __binding_1);
diag.arg("macro_name", __binding_2);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("the `{$symbol}` operand is not meaningful for global-scoped inline assembly, remove it")));
diag
}
}
}
}
};Diagnostic)]
4290#[diag("the `{$symbol}` operand cannot be used with `{$macro_name}!`")]
4291pub(crate) struct AsmUnsupportedOperand<'a> {
4292 #[primary_span]
4293 #[label(
4294 "the `{$symbol}` operand is not meaningful for global-scoped inline assembly, remove it"
4295 )]
4296 pub(crate) span: Span,
4297 pub(crate) symbol: &'a str,
4298 pub(crate) macro_name: &'static str,
4299}
4300
4301#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AsmUnderscoreInput where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsmUnderscoreInput { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("_ cannot be used for input operands")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4302#[diag("_ cannot be used for input operands")]
4303pub(crate) struct AsmUnderscoreInput {
4304 #[primary_span]
4305 pub(crate) span: Span,
4306}
4307
4308#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for AsmSymNoPath
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsmSymNoPath { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected a path for argument to `sym`")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4309#[diag("expected a path for argument to `sym`")]
4310pub(crate) struct AsmSymNoPath {
4311 #[primary_span]
4312 pub(crate) span: Span,
4313}
4314
4315#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AsmRequiresTemplate where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsmRequiresTemplate { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("requires at least a template string argument")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4316#[diag("requires at least a template string argument")]
4317pub(crate) struct AsmRequiresTemplate {
4318 #[primary_span]
4319 pub(crate) span: Span,
4320}
4321
4322#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AsmExpectedComma where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsmExpectedComma { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected token: `,`")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected `,`")));
diag
}
}
}
}
};Diagnostic)]
4323#[diag("expected token: `,`")]
4324pub(crate) struct AsmExpectedComma {
4325 #[primary_span]
4326 #[label("expected `,`")]
4327 pub(crate) span: Span,
4328}
4329
4330#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AsmExpectedOther where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsmExpectedOther {
span: __binding_0, is_inline_asm: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected operand, {$is_inline_asm ->\n [false] options\n *[true] clobber_abi, options\n }, or additional template string")));
;
diag.arg("is_inline_asm", __binding_1);
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected operand, {$is_inline_asm ->\n [false] options\n *[true] clobber_abi, options\n }, or additional template string")));
diag
}
}
}
}
};Diagnostic)]
4331#[diag(
4332 "expected operand, {$is_inline_asm ->
4333 [false] options
4334 *[true] clobber_abi, options
4335 }, or additional template string"
4336)]
4337pub(crate) struct AsmExpectedOther {
4338 #[primary_span]
4339 #[label(
4340 "expected operand, {$is_inline_asm ->
4341 [false] options
4342 *[true] clobber_abi, options
4343 }, or additional template string"
4344 )]
4345 pub(crate) span: Span,
4346 pub(crate) is_inline_asm: bool,
4347}
4348
4349#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for NonABI where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
NonABI { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("at least one abi must be provided as an argument to `clobber_abi`")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4350#[diag("at least one abi must be provided as an argument to `clobber_abi`")]
4351pub(crate) struct NonABI {
4352 #[primary_span]
4353 pub(crate) span: Span,
4354}
4355
4356#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
AsmExpectedStringLiteral where G: rustc_errors::EmissionGuarantee
{
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
AsmExpectedStringLiteral { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected string literal")));
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("not a string literal")));
diag
}
}
}
}
};Diagnostic)]
4357#[diag("expected string literal")]
4358pub(crate) struct AsmExpectedStringLiteral {
4359 #[primary_span]
4360 #[label("not a string literal")]
4361 pub(crate) span: Span,
4362}
4363
4364#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ExpectedRegisterClassOrExplicitRegister where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ExpectedRegisterClassOrExplicitRegister { span: __binding_0
} => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected register class or explicit register")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4365#[diag("expected register class or explicit register")]
4366pub(crate) struct ExpectedRegisterClassOrExplicitRegister {
4367 #[primary_span]
4368 pub(crate) span: Span,
4369}
4370
4371#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
HiddenUnicodeCodepointsDiag where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
HiddenUnicodeCodepointsDiag {
label: __binding_0,
count: __binding_1,
span_label: __binding_2,
labels: __binding_3,
sub: __binding_4 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unicode codepoint changing visible direction of text present in {$label}")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("these kind of unicode codepoints change the way text flows on applications that support them, but can cause confusion because they change the order of characters on the screen")));
;
diag.arg("label", __binding_0);
diag.arg("count", __binding_1);
diag.span_label(__binding_2,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("this {$label} contains {$count ->\n [one] an invisible\n *[other] invisible\n } unicode text flow control {$count ->\n [one] codepoint\n *[other] codepoints\n }")));
if let Some(__binding_3) = __binding_3 {
diag.subdiagnostic(__binding_3);
}
diag.subdiagnostic(__binding_4);
diag
}
}
}
}
};Diagnostic)]
4372#[diag("unicode codepoint changing visible direction of text present in {$label}")]
4373#[note(
4374 "these kind of unicode codepoints change the way text flows on applications that support them, but can cause confusion because they change the order of characters on the screen"
4375)]
4376pub(crate) struct HiddenUnicodeCodepointsDiag {
4377 pub label: String,
4378 pub count: usize,
4379 #[label(
4380 "this {$label} contains {$count ->
4381 [one] an invisible
4382 *[other] invisible
4383 } unicode text flow control {$count ->
4384 [one] codepoint
4385 *[other] codepoints
4386 }"
4387 )]
4388 pub span_label: Span,
4389 #[subdiagnostic]
4390 pub labels: Option<HiddenUnicodeCodepointsDiagLabels>,
4391 #[subdiagnostic]
4392 pub sub: HiddenUnicodeCodepointsDiagSub,
4393}
4394
4395pub(crate) struct HiddenUnicodeCodepointsDiagLabels {
4396 pub spans: Vec<(char, Span)>,
4397}
4398
4399impl Subdiagnostic for HiddenUnicodeCodepointsDiagLabels {
4400 fn add_to_diag<G: EmissionGuarantee>(self, diag: &mut Diag<'_, G>) {
4401 for (c, span) in self.spans {
4402 diag.span_label(span, ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0:?}", c))
})format!("{c:?}"));
4403 }
4404 }
4405}
4406
4407pub(crate) enum HiddenUnicodeCodepointsDiagSub {
4408 Escape { spans: Vec<(char, Span)> },
4409 NoEscape { spans: Vec<(char, Span)>, is_doc_comment: bool },
4410}
4411
4412impl Subdiagnostic for HiddenUnicodeCodepointsDiagSub {
4414 fn add_to_diag<G: EmissionGuarantee>(self, diag: &mut Diag<'_, G>) {
4415 match self {
4416 HiddenUnicodeCodepointsDiagSub::Escape { spans } => {
4417 diag.multipart_suggestion_with_style(
4418 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if their presence wasn't intentional, you can remove them"))msg!("if their presence wasn't intentional, you can remove them"),
4419 spans.iter().map(|(_, span)| (*span, "".to_string())).collect(),
4420 Applicability::MachineApplicable,
4421 SuggestionStyle::HideCodeAlways,
4422 );
4423 diag.multipart_suggestion(
4424 rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you want to keep them but make them visible in your source code, you can escape them"))msg!("if you want to keep them but make them visible in your source code, you can escape them"),
4425 spans
4426 .into_iter()
4427 .map(|(c, span)| {
4428 let c = ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0:?}", c))
})format!("{c:?}");
4429 (span, c[1..c.len() - 1].to_string())
4430 })
4431 .collect(),
4432 Applicability::MachineApplicable,
4433 );
4434 }
4435 HiddenUnicodeCodepointsDiagSub::NoEscape { spans, is_doc_comment } => {
4436 diag.arg(
4440 "escaped",
4441 spans
4442 .into_iter()
4443 .map(|(c, _)| ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0:?}", c))
})format!("{c:?}"))
4444 .collect::<Vec<String>>()
4445 .join(", "),
4446 );
4447 diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if their presence wasn't intentional, you can remove them"))msg!("if their presence wasn't intentional, you can remove them"));
4448 if is_doc_comment {
4449 diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you need to keep them and make them explicit in source, rewrite this doc comment as a `#[doc = \"...\"]` attribute and use Unicode escapes such as {$escaped}"))msg!(r#"if you need to keep them and make them explicit in source, rewrite this doc comment as a `#[doc = "..."]` attribute and use Unicode escapes such as {$escaped}"#));
4450 } else {
4451 diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you want to keep them but make them visible in your source code, you can escape them: {$escaped}"))msg!("if you want to keep them but make them visible in your source code, you can escape them: {$escaped}"));
4452 }
4453 }
4454 }
4455 }
4456}
4457
4458#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
VarargsWithoutPattern where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
VarargsWithoutPattern { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("missing pattern for `...` argument")));
let __code_238 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("_: ..."))
})].into_iter();
;
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("name the argument, or use `_` to continue ignoring it")),
__code_238, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
diag
}
}
}
}
};Diagnostic)]
4459#[diag("missing pattern for `...` argument")]
4460pub(crate) struct VarargsWithoutPattern {
4461 #[suggestion(
4462 "name the argument, or use `_` to continue ignoring it",
4463 code = "_: ...",
4464 applicability = "machine-applicable"
4465 )]
4466 pub span: Span,
4467}
4468
4469#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ImplReuseInherentImpl where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ImplReuseInherentImpl { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("only trait impls can be reused")));
;
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4470#[diag("only trait impls can be reused")]
4471pub(crate) struct ImplReuseInherentImpl {
4472 #[primary_span]
4473 pub span: Span,
4474}
4475
4476#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
StructLiteralPlaceholderPath where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
StructLiteralPlaceholderPath { span: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("placeholder `_` is not allowed for the path in struct literals")));
let __code_239 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("/* Type */"))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("not allowed in struct literals")));
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("replace it with the correct type")),
__code_239, rustc_errors::Applicability::HasPlaceholders,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
4477#[diag("placeholder `_` is not allowed for the path in struct literals")]
4478pub(crate) struct StructLiteralPlaceholderPath {
4479 #[primary_span]
4480 #[label("not allowed in struct literals")]
4481 #[suggestion(
4482 "replace it with the correct type",
4483 applicability = "has-placeholders",
4484 code = "/* Type */",
4485 style = "verbose"
4486 )]
4487 pub span: Span,
4488}
4489
4490#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
StructLiteralWithoutPathLate where
G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
StructLiteralWithoutPathLate {
span: __binding_0, suggestion_span: __binding_1 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("struct literal body without path")));
let __code_240 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("/* Type */ "))
})].into_iter();
;
diag.span(__binding_0);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("struct name missing for struct literal")));
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("add the correct type")),
__code_240, rustc_errors::Applicability::HasPlaceholders,
rustc_errors::SuggestionStyle::ShowAlways);
diag
}
}
}
}
};Diagnostic)]
4491#[diag("struct literal body without path")]
4492pub(crate) struct StructLiteralWithoutPathLate {
4493 #[primary_span]
4494 #[label("struct name missing for struct literal")]
4495 pub span: Span,
4496 #[suggestion(
4497 "add the correct type",
4498 applicability = "has-placeholders",
4499 code = "/* Type */ ",
4500 style = "verbose"
4501 )]
4502 pub suggestion_span: Span,
4503}
4504
4505#[derive(#[automatically_derived]
impl ::core::clone::Clone for ForbiddenLetReason {
#[inline]
fn clone(&self) -> ForbiddenLetReason {
let _: ::core::clone::AssertParamIsClone<Span>;
*self
}
}Clone, #[automatically_derived]
impl ::core::marker::Copy for ForbiddenLetReason { }Copy, const _: () =
{
impl rustc_errors::Subdiagnostic for ForbiddenLetReason {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
ForbiddenLetReason::OtherForbidden => {}
ForbiddenLetReason::NotSupportedOr(__binding_0) => {
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`||` operators are not supported in let chain expressions")),
&sub_args);
diag.span_note(__binding_0, __message);
}
ForbiddenLetReason::NotSupportedParentheses(__binding_0) =>
{
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("`let`s wrapped in parentheses are not supported in a context with let chains")),
&sub_args);
diag.span_note(__binding_0, __message);
}
}
}
}
};Subdiagnostic)]
4507pub(crate) enum ForbiddenLetReason {
4508 OtherForbidden,
4510 #[note("`||` operators are not supported in let chain expressions")]
4512 NotSupportedOr(#[primary_span] Span),
4513 #[note("`let`s wrapped in parentheses are not supported in a context with let chains")]
4518 NotSupportedParentheses(#[primary_span] Span),
4519}
4520
4521#[derive(#[automatically_derived]
impl ::core::fmt::Debug for MisspelledKw {
#[inline]
fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
::core::fmt::Formatter::debug_struct_field3_finish(f, "MisspelledKw",
"similar_kw", &self.similar_kw, "span", &self.span,
"is_incorrect_case", &&self.is_incorrect_case)
}
}Debug, const _: () =
{
impl rustc_errors::Subdiagnostic for MisspelledKw {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
MisspelledKw {
similar_kw: __binding_0,
span: __binding_1,
is_incorrect_case: __binding_2 } => {
let __code_241 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_0))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("similar_kw".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_0,
&mut diag.long_ty_path));
sub_args.insert("is_incorrect_case".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_2,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$is_incorrect_case ->\n [true] write keyword `{$similar_kw}` in lowercase\n *[false] there is a keyword `{$similar_kw}` with a similar name\n }")),
&sub_args);
diag.span_suggestions_with_style(__binding_1, __message,
__code_241, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowAlways);
}
}
}
}
};rustc_macros::Subdiagnostic)]
4522#[suggestion(
4523 "{$is_incorrect_case ->
4524 [true] write keyword `{$similar_kw}` in lowercase
4525 *[false] there is a keyword `{$similar_kw}` with a similar name
4526 }",
4527 applicability = "machine-applicable",
4528 code = "{similar_kw}",
4529 style = "verbose"
4530)]
4531pub(crate) struct MisspelledKw {
4532 pub similar_kw: String,
4535 #[primary_span]
4536 pub span: Span,
4537 pub is_incorrect_case: bool,
4538}
4539
4540#[derive(#[automatically_derived]
impl ::core::clone::Clone for TokenDescription {
#[inline]
fn clone(&self) -> TokenDescription {
let _: ::core::clone::AssertParamIsClone<MetaVarKind>;
*self
}
}Clone, #[automatically_derived]
impl ::core::marker::Copy for TokenDescription { }Copy, #[automatically_derived]
impl ::core::fmt::Debug for TokenDescription {
#[inline]
fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
match self {
TokenDescription::ReservedIdentifier =>
::core::fmt::Formatter::write_str(f, "ReservedIdentifier"),
TokenDescription::Keyword =>
::core::fmt::Formatter::write_str(f, "Keyword"),
TokenDescription::ReservedKeyword =>
::core::fmt::Formatter::write_str(f, "ReservedKeyword"),
TokenDescription::DocComment =>
::core::fmt::Formatter::write_str(f, "DocComment"),
TokenDescription::MetaVar(__self_0) =>
::core::fmt::Formatter::debug_tuple_field1_finish(f,
"MetaVar", &__self_0),
}
}
}Debug, #[automatically_derived]
impl ::core::cmp::PartialEq for TokenDescription {
#[inline]
fn eq(&self, other: &TokenDescription) -> bool {
let __self_discr = ::core::intrinsics::discriminant_value(self);
let __arg1_discr = ::core::intrinsics::discriminant_value(other);
__self_discr == __arg1_discr &&
match (self, other) {
(TokenDescription::MetaVar(__self_0),
TokenDescription::MetaVar(__arg1_0)) =>
__self_0 == __arg1_0,
_ => true,
}
}
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for TokenDescription {
#[inline]
#[doc(hidden)]
#[coverage(off)]
fn assert_fields_are_eq(&self) {
let _: ::core::cmp::AssertParamIsEq<MetaVarKind>;
}
}Eq)]
4541pub(super) enum TokenDescription {
4542 ReservedIdentifier,
4543 Keyword,
4544 ReservedKeyword,
4545 DocComment,
4546
4547 MetaVar(MetaVarKind),
4552}
4553
4554impl TokenDescription {
4555 pub(super) fn from_token(token: &Token) -> Option<Self> {
4556 match token.kind {
4557 _ if token.is_special_ident() => Some(TokenDescription::ReservedIdentifier),
4558 _ if token.is_used_keyword() => Some(TokenDescription::Keyword),
4559 _ if token.is_unused_keyword() => Some(TokenDescription::ReservedKeyword),
4560 token::DocComment(..) => Some(TokenDescription::DocComment),
4561 token::OpenInvisible(InvisibleOrigin::MetaVar(kind)) => {
4562 Some(TokenDescription::MetaVar(kind))
4563 }
4564 _ => None,
4565 }
4566 }
4567}
4568
4569#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
BreakWithLabelAndLoop where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
BreakWithLabelAndLoop { sub: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("this labeled break expression is easy to confuse with an unlabeled break with a labeled value expression")));
;
diag.subdiagnostic(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4570#[diag(
4571 "this labeled break expression is easy to confuse with an unlabeled break with a labeled value expression"
4572)]
4573pub(crate) struct BreakWithLabelAndLoop {
4574 #[subdiagnostic]
4575 pub sub: BreakWithLabelAndLoopSub,
4576}
4577
4578#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for BreakWithLabelAndLoopSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
BreakWithLabelAndLoopSub {
left: __binding_0, right: __binding_1 } => {
let mut suggestions = Vec::new();
let __code_242 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("("))
});
let __code_243 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(")"))
});
suggestions.push((__binding_0, __code_242));
suggestions.push((__binding_1, __code_243));
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("wrap this expression in parentheses")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
4579#[multipart_suggestion("wrap this expression in parentheses", applicability = "machine-applicable")]
4580pub(crate) struct BreakWithLabelAndLoopSub {
4581 #[suggestion_part(code = "(")]
4582 pub left: Span,
4583 #[suggestion_part(code = ")")]
4584 pub right: Span,
4585}
4586
4587#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for RawPrefix
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
RawPrefix { label: __binding_0, suggestion: __binding_1 } =>
{
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("prefix `'r` is reserved")));
let __code_244 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" "))
})].into_iter();
;
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("reserved prefix")));
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("insert whitespace here to avoid this being parsed as a prefix in Rust 2021")),
__code_244, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
diag
}
}
}
}
};Diagnostic)]
4588#[diag("prefix `'r` is reserved")]
4589pub(crate) struct RawPrefix {
4590 #[label("reserved prefix")]
4591 pub label: Span,
4592 #[suggestion(
4593 "insert whitespace here to avoid this being parsed as a prefix in Rust 2021",
4594 code = " ",
4595 applicability = "machine-applicable"
4596 )]
4597 pub suggestion: Span,
4598}
4599
4600#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
UnicodeTextFlow where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
UnicodeTextFlow {
comment_span: __binding_0,
characters: __binding_1,
suggestions: __binding_2,
num_codepoints: __binding_3 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unicode codepoint changing visible direction of text present in comment")));
diag.note(rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("these kind of unicode codepoints change the way text flows on applications that support them, but can cause confusion because they change the order of characters on the screen")));
;
diag.arg("num_codepoints", __binding_3);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$num_codepoints ->\n [1] this comment contains an invisible unicode text flow control codepoint\n *[other] this comment contains invisible unicode text flow control codepoints\n }")));
for __binding_1 in __binding_1 {
diag.subdiagnostic(__binding_1);
}
if let Some(__binding_2) = __binding_2 {
diag.subdiagnostic(__binding_2);
}
diag
}
}
}
}
};Diagnostic)]
4601#[diag("unicode codepoint changing visible direction of text present in comment")]
4602#[note(
4603 "these kind of unicode codepoints change the way text flows on applications that support them, but can cause confusion because they change the order of characters on the screen"
4604)]
4605pub(crate) struct UnicodeTextFlow {
4606 #[label(
4607 "{$num_codepoints ->
4608 [1] this comment contains an invisible unicode text flow control codepoint
4609 *[other] this comment contains invisible unicode text flow control codepoints
4610 }"
4611 )]
4612 pub comment_span: Span,
4613 #[subdiagnostic]
4614 pub characters: Vec<UnicodeCharNoteSub>,
4615 #[subdiagnostic]
4616 pub suggestions: Option<UnicodeTextFlowSuggestion>,
4617
4618 pub num_codepoints: usize,
4619}
4620
4621#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for UnicodeCharNoteSub {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
UnicodeCharNoteSub { span: __binding_0, c_debug: __binding_1
} => {
let mut sub_args = rustc_errors::DiagArgMap::default();
sub_args.insert("c_debug".into(),
rustc_errors::IntoDiagArg::into_diag_arg(__binding_1,
&mut diag.long_ty_path));
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("{$c_debug}")),
&sub_args);
diag.span_label(__binding_0, __message);
}
}
}
}
};Subdiagnostic)]
4622#[label("{$c_debug}")]
4623pub(crate) struct UnicodeCharNoteSub {
4624 #[primary_span]
4625 pub span: Span,
4626 pub c_debug: String,
4627}
4628
4629#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for UnicodeTextFlowSuggestion {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
UnicodeTextFlowSuggestion { spans: __binding_0 } => {
let mut suggestions = Vec::new();
let __code_245 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
for __binding_0 in __binding_0 {
suggestions.push((__binding_0, __code_245.clone()));
}
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if their presence wasn't intentional, you can remove them")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::HideCodeAlways);
}
}
}
}
};Subdiagnostic)]
4630#[multipart_suggestion(
4631 "if their presence wasn't intentional, you can remove them",
4632 applicability = "machine-applicable",
4633 style = "hidden"
4634)]
4635pub(crate) struct UnicodeTextFlowSuggestion {
4636 #[suggestion_part(code = "")]
4637 pub spans: Vec<Span>,
4638}
4639
4640#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for ReservedPrefix
where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ReservedPrefix {
label: __binding_0,
suggestion: __binding_1,
prefix: __binding_2 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("prefix `{$prefix}` is unknown")));
let __code_246 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" "))
})].into_iter();
;
diag.arg("prefix", __binding_2);
diag.span_label(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("unknown prefix")));
diag.span_suggestions_with_style(__binding_1,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("insert whitespace here to avoid this being parsed as a prefix in Rust 2021")),
__code_246, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
diag
}
}
}
}
};Diagnostic)]
4641#[diag("prefix `{$prefix}` is unknown")]
4642pub(crate) struct ReservedPrefix {
4643 #[label("unknown prefix")]
4644 pub label: Span,
4645 #[suggestion(
4646 "insert whitespace here to avoid this being parsed as a prefix in Rust 2021",
4647 code = " ",
4648 applicability = "machine-applicable"
4649 )]
4650 pub suggestion: Span,
4651
4652 pub prefix: String,
4653}
4654
4655#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ReservedStringLint where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ReservedStringLint { suggestion: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("will be parsed as a guarded string in Rust 2024")));
let __code_247 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" "))
})].into_iter();
;
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("insert whitespace here to avoid this being parsed as a guarded string in Rust 2024")),
__code_247, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
diag
}
}
}
}
};Diagnostic)]
4656#[diag("will be parsed as a guarded string in Rust 2024")]
4657pub(crate) struct ReservedStringLint {
4658 #[suggestion(
4659 "insert whitespace here to avoid this being parsed as a guarded string in Rust 2024",
4660 code = " ",
4661 applicability = "machine-applicable"
4662 )]
4663 pub suggestion: Span,
4664}
4665
4666#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
ReservedMultihashLint where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
ReservedMultihashLint { suggestion: __binding_0 } => {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("reserved token in Rust 2024")));
let __code_248 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" "))
})].into_iter();
;
diag.span_suggestions_with_style(__binding_0,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("insert whitespace here to avoid this being parsed as a forbidden token in Rust 2024")),
__code_248, rustc_errors::Applicability::MachineApplicable,
rustc_errors::SuggestionStyle::ShowCode);
diag
}
}
}
}
};Diagnostic)]
4667#[diag("reserved token in Rust 2024")]
4668pub(crate) struct ReservedMultihashLint {
4669 #[suggestion(
4670 "insert whitespace here to avoid this being parsed as a forbidden token in Rust 2024",
4671 code = " ",
4672 applicability = "machine-applicable"
4673 )]
4674 pub suggestion: Span,
4675}
4676
4677#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for UseDoubleColonSuggestion {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
UseDoubleColonSuggestion { colon: __binding_0 } => {
let __code_249 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("::"))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you meant to write a path, use a double colon")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_249, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
4678#[suggestion(
4679 "if you meant to write a path, use a double colon",
4680 code = "::",
4681 applicability = "maybe-incorrect"
4682)]
4683pub(crate) struct UseDoubleColonSuggestion {
4684 #[primary_span]
4685 pub colon: Span,
4686}
4687
4688#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for UseRegularStructSuggestion {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
UseRegularStructSuggestion {
open: __binding_0,
close: __binding_1,
semicolon: __binding_2 } => {
let mut suggestions = Vec::new();
let __code_250 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" {{ "))
});
let __code_251 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(" }}"))
});
let __code_252 =
::alloc::__export::must_use({
::alloc::fmt::format(format_args!(""))
});
suggestions.push((__binding_0, __code_250));
suggestions.push((__binding_1, __code_251));
if let Some(__binding_2) = __binding_2 {
suggestions.push((__binding_2, __code_252));
}
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("if you meant to create a regular struct, use curly braces")),
&sub_args);
diag.multipart_suggestion_with_style(__message, suggestions,
rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
4689#[multipart_suggestion(
4690 "if you meant to create a regular struct, use curly braces",
4691 applicability = "maybe-incorrect"
4692)]
4693pub(crate) struct UseRegularStructSuggestion {
4694 #[suggestion_part(code = " {{ ")]
4695 pub open: Span,
4696 #[suggestion_part(code = " }}")]
4697 pub close: Span,
4698 #[suggestion_part(code = "")]
4699 pub semicolon: Option<Span>,
4700}
4701#[derive(const _: () =
{
impl<'_sess, G> rustc_errors::Diagnostic<'_sess, G> for
FoundPathInGenerics where G: rustc_errors::EmissionGuarantee {
#[track_caller]
fn into_diag(self, dcx: rustc_errors::DiagCtxtHandle<'_sess>,
level: rustc_errors::Level) -> rustc_errors::Diag<'_sess, G> {
match self {
FoundPathInGenerics { span: __binding_0, path: __binding_1 }
=> {
let mut diag =
rustc_errors::Diag::new(dcx, level,
rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("expected type parameter, found path `{$path}`")));
;
diag.arg("path", __binding_1);
diag.span(__binding_0);
diag
}
}
}
}
};Diagnostic)]
4702#[diag("expected type parameter, found path `{$path}`")]
4703pub(crate) struct FoundPathInGenerics {
4704 #[primary_span]
4705 pub span: Span,
4706 pub path: String,
4707}
4708#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for SuggestBindTypeParameter {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
SuggestBindTypeParameter { span: __binding_0 } => {
let __code_253 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("T: "))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("you might have meant to bind a type parameter to a trait")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_253, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
4709#[suggestion(
4710 "you might have meant to bind a type parameter to a trait",
4711 applicability = "maybe-incorrect",
4712 code = "T: "
4713)]
4714
4715pub(crate) struct SuggestBindTypeParameter {
4716 #[primary_span]
4717 pub span: Span,
4718}
4719
4720#[derive(const _: () =
{
impl rustc_errors::Subdiagnostic for SuggestIntroduceTypeParameter {
fn add_to_diag<__G>(self, diag: &mut rustc_errors::Diag<'_, __G>)
where __G: rustc_errors::EmissionGuarantee {
match self {
SuggestIntroduceTypeParameter {
span: __binding_0, parameters: __binding_1 } => {
let __code_254 =
[::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}", __binding_1))
})].into_iter();
let mut sub_args = rustc_errors::DiagArgMap::default();
let __message =
rustc_errors::format_diag_message(&rustc_errors::DiagMessage::Inline(std::borrow::Cow::Borrowed("alternatively, you might have meant to introduce type parameter")),
&sub_args);
diag.span_suggestions_with_style(__binding_0, __message,
__code_254, rustc_errors::Applicability::MaybeIncorrect,
rustc_errors::SuggestionStyle::ShowCode);
}
}
}
}
};Subdiagnostic)]
4721#[suggestion(
4722 "alternatively, you might have meant to introduce type parameter",
4723 applicability = "maybe-incorrect",
4724 code = "{parameters}"
4725)]
4726pub(crate) struct SuggestIntroduceTypeParameter {
4727 #[primary_span]
4728 pub span: Span,
4729 pub parameters: String,
4730}