1use std::path::PathBuf;
2use std::rc::Rc;
3use std::sync::Arc;
4use std::{iter, mem, slice};
5
6use rustc_ast::mut_visit::*;
7use rustc_ast::tokenstream::TokenStream;
8use rustc_ast::visit::{AssocCtxt, Visitor, VisitorResult, try_visit, walk_list};
9use rustc_ast::{
10 self as ast, AssocItemKind, AstNodeWrapper, AttrArgs, AttrKind, AttrStyle, AttrVec,
11 DUMMY_NODE_ID, DelegationSource, DelegationSuffixes, ExprKind, ForeignItemKind, HasAttrs,
12 HasNodeId, Inline, ItemKind, MacStmtStyle, MetaItemInner, MetaItemKind, ModKind, NodeId,
13 PatKind, StmtKind, SyntheticAttr, TyKind, token,
14};
15use rustc_ast_pretty::pprust;
16use rustc_attr_parsing::parser::AllowExprMetavar;
17use rustc_attr_parsing::{
18 AttributeParser, AttributeSafety, CFG_TEMPLATE, EvalConfigResult, ShouldEmit,
19 eval_config_entry, parse_cfg, validate_attr,
20};
21use rustc_data_structures::Limit;
22use rustc_data_structures::flat_map_in_place::FlatMapInPlace;
23use rustc_data_structures::stack::ensure_sufficient_stack;
24use rustc_errors::PResult;
25use rustc_feature::Features;
26use rustc_hir::Target;
27use rustc_hir::def::MacroKinds;
28use rustc_parse::parser::{
29 AllowConstBlockItems, AttemptLocalParseRecovery, CommaRecoveryMode, ForceCollect, Parser,
30 RecoverColon, RecoverComma, Recovery, token_descr,
31};
32use rustc_session::diagnostics::feature_err;
33use rustc_session::lint::builtin::{UNUSED_ATTRIBUTES, UNUSED_DOC_COMMENTS};
34use rustc_span::hygiene::SyntaxContext;
35use rustc_span::{ErrorGuaranteed, FileName, Ident, LocalExpnId, Span, Symbol, sym};
36use smallvec::SmallVec;
37
38use crate::base::*;
39use crate::config::StripUnconfigured;
40use crate::diagnostics::{
41 EmptyDelegationMac, GlobDelegationOutsideImpls, GlobDelegationTraitlessQpath, IncompleteParse,
42 RecursionLimitReached, RemoveExprNotSupported, RemoveNodeNotSupported, UnsupportedKeyValue,
43 WrongFragmentKind,
44};
45use crate::mbe::diagnostics::annotate_err_with_kind;
46use crate::module::{
47 DirOwnership, ParsedExternalMod, mod_dir_path, mod_file_path_from_attr, parse_external_mod,
48};
49use crate::placeholders::{PlaceholderExpander, placeholder};
50use crate::stats::*;
51
52macro_rules! ast_fragments {
53 (
54 $($Kind:ident($AstTy:ty) {
55 $kind_name:expr;
56 $(one
57 fn $visit_ast:ident;
58 )?
59 $(many
60 fn $flat_map_ast_elt:ident;
61 fn $visit_ast_elt:ident($($args:tt)*);
62 )?
63 fn $make_ast:ident;
64 })*
65 ) => {
66 pub enum AstFragment {
69 OptExpr(Option<Box<ast::Expr>>),
70 MethodReceiverExpr(Box<ast::Expr>),
71 $($Kind($AstTy),)*
72 }
73
74 #[derive(Copy, Clone, Debug, PartialEq, Eq)]
76 pub enum AstFragmentKind {
77 OptExpr,
78 MethodReceiverExpr,
79 $($Kind,)*
80 }
81
82 impl AstFragmentKind {
83 pub fn name(self) -> &'static str {
84 match self {
85 AstFragmentKind::OptExpr => "expression",
86 AstFragmentKind::MethodReceiverExpr => "expression",
87 $(AstFragmentKind::$Kind => $kind_name,)*
88 }
89 }
90
91 fn make_from(self, result: Box<dyn MacResult + '_>) -> Option<AstFragment> {
92 match self {
93 AstFragmentKind::OptExpr =>
94 result.make_expr().map(Some).map(AstFragment::OptExpr),
95 AstFragmentKind::MethodReceiverExpr =>
96 result.make_expr().map(AstFragment::MethodReceiverExpr),
97 $(AstFragmentKind::$Kind => result.$make_ast().map(AstFragment::$Kind),)*
98 }
99 }
100 }
101
102 impl AstFragment {
103 fn add_placeholders(&mut self, placeholders: &[NodeId]) {
104 if placeholders.is_empty() {
105 return;
106 }
107 match self {
108 $($(AstFragment::$Kind(ast) => ast.extend(placeholders.iter().flat_map(|id| {
109 ${ignore($flat_map_ast_elt)}
110 placeholder(AstFragmentKind::$Kind, *id, None).$make_ast()
111 })),)?)*
112 _ => panic!("unexpected AST fragment kind")
113 }
114 }
115
116 pub(crate) fn make_opt_expr(self) -> Option<Box<ast::Expr>> {
117 match self {
118 AstFragment::OptExpr(expr) => expr,
119 _ => panic!("AstFragment::make_opt_expr called on the wrong kind of fragment"),
120 }
121 }
122
123 pub(crate) fn make_method_receiver_expr(self) -> Box<ast::Expr> {
124 match self {
125 AstFragment::MethodReceiverExpr(expr) => expr,
126 _ => panic!("AstFragment::make_method_receiver_expr called on the wrong kind of fragment"),
127 }
128 }
129
130 $(pub fn $make_ast(self) -> $AstTy {
131 match self {
132 AstFragment::$Kind(ast) => ast,
133 _ => panic!("AstFragment::{} called on the wrong kind of fragment", stringify!($make_ast)),
134 }
135 })*
136
137 fn make_ast<T: InvocationCollectorNode>(self) -> T::OutputTy {
138 T::fragment_to_output(self)
139 }
140
141 pub(crate) fn mut_visit_with(&mut self, vis: &mut impl MutVisitor) {
142 match self {
143 AstFragment::OptExpr(opt_expr) => {
144 if let Some(expr) = opt_expr.take() {
145 *opt_expr = vis.filter_map_expr(expr)
146 }
147 }
148 AstFragment::MethodReceiverExpr(expr) => vis.visit_method_receiver_expr(expr),
149 $($(AstFragment::$Kind(ast) => vis.$visit_ast(ast),)?)*
150 $($(AstFragment::$Kind(ast) =>
151 ast.flat_map_in_place(|ast| vis.$flat_map_ast_elt(ast, $($args)*)),)?)*
152 }
153 }
154
155 pub fn visit_with<'a, V: Visitor<'a>>(&'a self, visitor: &mut V) -> V::Result {
156 match self {
157 AstFragment::OptExpr(Some(expr)) => try_visit!(visitor.visit_expr(expr)),
158 AstFragment::OptExpr(None) => {}
159 AstFragment::MethodReceiverExpr(expr) => try_visit!(visitor.visit_method_receiver_expr(expr)),
160 $($(AstFragment::$Kind(ast) => try_visit!(visitor.$visit_ast(ast)),)?)*
161 $($(AstFragment::$Kind(ast) => walk_list!(visitor, $visit_ast_elt, &ast[..], $($args)*),)?)*
162 }
163 V::Result::output()
164 }
165 }
166
167 impl<'a, 'b> MacResult for crate::mbe::macro_rules::ParserAnyMacro<'a, 'b> {
168 $(fn $make_ast(self: Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
169 -> Option<$AstTy> {
170 Some(self.make(AstFragmentKind::$Kind).$make_ast())
171 })*
172 }
173 }
174}
175
176pub enum AstFragment {
OptExpr(Option<Box<ast::Expr>>),
MethodReceiverExpr(Box<ast::Expr>),
Expr(Box<ast::Expr>),
Pat(Box<ast::Pat>),
Ty(Box<ast::Ty>),
Stmts(SmallVec<[ast::Stmt; 1]>),
Items(SmallVec<[Box<ast::Item>; 1]>),
TraitItems(SmallVec<[Box<ast::AssocItem>; 1]>),
ImplItems(SmallVec<[Box<ast::AssocItem>; 1]>),
TraitImplItems(SmallVec<[Box<ast::AssocItem>; 1]>),
ForeignItems(SmallVec<[Box<ast::ForeignItem>; 1]>),
Arms(SmallVec<[ast::Arm; 1]>),
ExprFields(SmallVec<[ast::ExprField; 1]>),
PatFields(SmallVec<[ast::PatField; 1]>),
GenericParams(SmallVec<[ast::GenericParam; 1]>),
Params(SmallVec<[ast::Param; 1]>),
FieldDefs(SmallVec<[ast::FieldDef; 1]>),
Variants(SmallVec<[ast::Variant; 1]>),
WherePredicates(SmallVec<[ast::WherePredicate; 1]>),
Crate(ast::Crate),
}
pub enum AstFragmentKind {
OptExpr,
MethodReceiverExpr,
Expr,
Pat,
Ty,
Stmts,
Items,
TraitItems,
ImplItems,
TraitImplItems,
ForeignItems,
Arms,
ExprFields,
PatFields,
GenericParams,
Params,
FieldDefs,
Variants,
WherePredicates,
Crate,
}
#[automatically_derived]
impl ::core::marker::Copy for AstFragmentKind { }
#[automatically_derived]
#[doc(hidden)]
unsafe impl ::core::clone::TrivialClone for AstFragmentKind { }
#[automatically_derived]
impl ::core::clone::Clone for AstFragmentKind {
#[inline]
fn clone(&self) -> AstFragmentKind { *self }
}
#[automatically_derived]
impl ::core::fmt::Debug for AstFragmentKind {
#[inline]
fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
const __NAMES: &str =
"OptExprMethodReceiverExprExprPatTyStmtsItemsTraitItemsImplItemsTraitImplItemsForeignItemsArmsExprFieldsPatFieldsGenericParamsParamsFieldDefsVariantsWherePredicatesCrate";
const __OFFSET: [usize; 21] =
[0usize, 7usize, 25usize, 29usize, 32usize, 34usize, 39usize,
44usize, 54usize, 63usize, 77usize, 89usize, 93usize,
103usize, 112usize, 125usize, 131usize, 140usize, 148usize,
163usize, 168usize];
let __d = ::core::intrinsics::discriminant_value(self) as usize;
::core::fmt::Formatter::debug_c_like_enum_write_str(f, __NAMES,
&__OFFSET, __d)
}
}
#[automatically_derived]
impl ::core::marker::StructuralPartialEq for AstFragmentKind { }
#[automatically_derived]
impl ::core::cmp::PartialEq for AstFragmentKind {
#[inline]
fn eq(&self, other: &AstFragmentKind) -> bool {
let __self_discr = ::core::intrinsics::discriminant_value(self);
let __arg1_discr = ::core::intrinsics::discriminant_value(other);
__self_discr == __arg1_discr
}
}
#[automatically_derived]
impl ::core::cmp::Eq for AstFragmentKind {
#[inline]
#[doc(hidden)]
#[coverage(off)]
fn assert_fields_are_eq(&self) {}
}
impl AstFragmentKind {
pub fn name(self) -> &'static str {
match self {
AstFragmentKind::OptExpr => "expression",
AstFragmentKind::MethodReceiverExpr => "expression",
AstFragmentKind::Expr => "expression",
AstFragmentKind::Pat => "pattern",
AstFragmentKind::Ty => "type",
AstFragmentKind::Stmts => "statement",
AstFragmentKind::Items => "item",
AstFragmentKind::TraitItems => "trait item",
AstFragmentKind::ImplItems => "impl item",
AstFragmentKind::TraitImplItems => "impl item",
AstFragmentKind::ForeignItems => "foreign item",
AstFragmentKind::Arms => "match arm",
AstFragmentKind::ExprFields => "field expression",
AstFragmentKind::PatFields => "field pattern",
AstFragmentKind::GenericParams => "generic parameter",
AstFragmentKind::Params => "function parameter",
AstFragmentKind::FieldDefs => "field",
AstFragmentKind::Variants => "variant",
AstFragmentKind::WherePredicates => "where predicate",
AstFragmentKind::Crate => "crate",
}
}
fn make_from(self, result: Box<dyn MacResult + '_>)
-> Option<AstFragment> {
match self {
AstFragmentKind::OptExpr =>
result.make_expr().map(Some).map(AstFragment::OptExpr),
AstFragmentKind::MethodReceiverExpr =>
result.make_expr().map(AstFragment::MethodReceiverExpr),
AstFragmentKind::Expr =>
result.make_expr().map(AstFragment::Expr),
AstFragmentKind::Pat => result.make_pat().map(AstFragment::Pat),
AstFragmentKind::Ty => result.make_ty().map(AstFragment::Ty),
AstFragmentKind::Stmts =>
result.make_stmts().map(AstFragment::Stmts),
AstFragmentKind::Items =>
result.make_items().map(AstFragment::Items),
AstFragmentKind::TraitItems =>
result.make_trait_items().map(AstFragment::TraitItems),
AstFragmentKind::ImplItems =>
result.make_impl_items().map(AstFragment::ImplItems),
AstFragmentKind::TraitImplItems =>
result.make_trait_impl_items().map(AstFragment::TraitImplItems),
AstFragmentKind::ForeignItems =>
result.make_foreign_items().map(AstFragment::ForeignItems),
AstFragmentKind::Arms =>
result.make_arms().map(AstFragment::Arms),
AstFragmentKind::ExprFields =>
result.make_expr_fields().map(AstFragment::ExprFields),
AstFragmentKind::PatFields =>
result.make_pat_fields().map(AstFragment::PatFields),
AstFragmentKind::GenericParams =>
result.make_generic_params().map(AstFragment::GenericParams),
AstFragmentKind::Params =>
result.make_params().map(AstFragment::Params),
AstFragmentKind::FieldDefs =>
result.make_field_defs().map(AstFragment::FieldDefs),
AstFragmentKind::Variants =>
result.make_variants().map(AstFragment::Variants),
AstFragmentKind::WherePredicates =>
result.make_where_predicates().map(AstFragment::WherePredicates),
AstFragmentKind::Crate =>
result.make_crate().map(AstFragment::Crate),
}
}
}
impl AstFragment {
fn add_placeholders(&mut self, placeholders: &[NodeId]) {
if placeholders.is_empty() { return; }
match self {
AstFragment::Stmts(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::Stmts, *id, None).make_stmts()
})),
AstFragment::Items(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::Items, *id, None).make_items()
})),
AstFragment::TraitItems(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::TraitItems, *id,
None).make_trait_items()
})),
AstFragment::ImplItems(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::ImplItems, *id,
None).make_impl_items()
})),
AstFragment::TraitImplItems(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::TraitImplItems, *id,
None).make_trait_impl_items()
})),
AstFragment::ForeignItems(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::ForeignItems, *id,
None).make_foreign_items()
})),
AstFragment::Arms(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::Arms, *id, None).make_arms()
})),
AstFragment::ExprFields(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::ExprFields, *id,
None).make_expr_fields()
})),
AstFragment::PatFields(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::PatFields, *id,
None).make_pat_fields()
})),
AstFragment::GenericParams(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::GenericParams, *id,
None).make_generic_params()
})),
AstFragment::Params(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::Params, *id,
None).make_params()
})),
AstFragment::FieldDefs(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::FieldDefs, *id,
None).make_field_defs()
})),
AstFragment::Variants(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::Variants, *id,
None).make_variants()
})),
AstFragment::WherePredicates(ast) =>
ast.extend(placeholders.iter().flat_map(|id|
{
placeholder(AstFragmentKind::WherePredicates, *id,
None).make_where_predicates()
})),
_ => {
::core::panicking::panic_fmt(format_args!("unexpected AST fragment kind"));
}
}
}
pub(crate) fn make_opt_expr(self) -> Option<Box<ast::Expr>> {
match self {
AstFragment::OptExpr(expr) => expr,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::make_opt_expr called on the wrong kind of fragment"));
}
}
}
pub(crate) fn make_method_receiver_expr(self) -> Box<ast::Expr> {
match self {
AstFragment::MethodReceiverExpr(expr) => expr,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::make_method_receiver_expr called on the wrong kind of fragment"));
}
}
}
pub fn make_expr(self) -> Box<ast::Expr> {
match self {
AstFragment::Expr(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_expr"));
}
}
}
pub fn make_pat(self) -> Box<ast::Pat> {
match self {
AstFragment::Pat(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_pat"));
}
}
}
pub fn make_ty(self) -> Box<ast::Ty> {
match self {
AstFragment::Ty(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_ty"));
}
}
}
pub fn make_stmts(self) -> SmallVec<[ast::Stmt; 1]> {
match self {
AstFragment::Stmts(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_stmts"));
}
}
}
pub fn make_items(self) -> SmallVec<[Box<ast::Item>; 1]> {
match self {
AstFragment::Items(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_items"));
}
}
}
pub fn make_trait_items(self) -> SmallVec<[Box<ast::AssocItem>; 1]> {
match self {
AstFragment::TraitItems(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_trait_items"));
}
}
}
pub fn make_impl_items(self) -> SmallVec<[Box<ast::AssocItem>; 1]> {
match self {
AstFragment::ImplItems(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_impl_items"));
}
}
}
pub fn make_trait_impl_items(self) -> SmallVec<[Box<ast::AssocItem>; 1]> {
match self {
AstFragment::TraitImplItems(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_trait_impl_items"));
}
}
}
pub fn make_foreign_items(self) -> SmallVec<[Box<ast::ForeignItem>; 1]> {
match self {
AstFragment::ForeignItems(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_foreign_items"));
}
}
}
pub fn make_arms(self) -> SmallVec<[ast::Arm; 1]> {
match self {
AstFragment::Arms(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_arms"));
}
}
}
pub fn make_expr_fields(self) -> SmallVec<[ast::ExprField; 1]> {
match self {
AstFragment::ExprFields(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_expr_fields"));
}
}
}
pub fn make_pat_fields(self) -> SmallVec<[ast::PatField; 1]> {
match self {
AstFragment::PatFields(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_pat_fields"));
}
}
}
pub fn make_generic_params(self) -> SmallVec<[ast::GenericParam; 1]> {
match self {
AstFragment::GenericParams(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_generic_params"));
}
}
}
pub fn make_params(self) -> SmallVec<[ast::Param; 1]> {
match self {
AstFragment::Params(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_params"));
}
}
}
pub fn make_field_defs(self) -> SmallVec<[ast::FieldDef; 1]> {
match self {
AstFragment::FieldDefs(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_field_defs"));
}
}
}
pub fn make_variants(self) -> SmallVec<[ast::Variant; 1]> {
match self {
AstFragment::Variants(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_variants"));
}
}
}
pub fn make_where_predicates(self) -> SmallVec<[ast::WherePredicate; 1]> {
match self {
AstFragment::WherePredicates(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_where_predicates"));
}
}
}
pub fn make_crate(self) -> ast::Crate {
match self {
AstFragment::Crate(ast) => ast,
_ => {
::core::panicking::panic_fmt(format_args!("AstFragment::{0} called on the wrong kind of fragment",
"make_crate"));
}
}
}
fn make_ast<T: InvocationCollectorNode>(self) -> T::OutputTy {
T::fragment_to_output(self)
}
pub(crate) fn mut_visit_with(&mut self, vis: &mut impl MutVisitor) {
match self {
AstFragment::OptExpr(opt_expr) => {
if let Some(expr) = opt_expr.take() {
*opt_expr = vis.filter_map_expr(expr)
}
}
AstFragment::MethodReceiverExpr(expr) =>
vis.visit_method_receiver_expr(expr),
AstFragment::Expr(ast) => vis.visit_expr(ast),
AstFragment::Pat(ast) => vis.visit_pat(ast),
AstFragment::Ty(ast) => vis.visit_ty(ast),
AstFragment::Crate(ast) => vis.visit_crate(ast),
AstFragment::Stmts(ast) =>
ast.flat_map_in_place(|ast| vis.flat_map_stmt(ast)),
AstFragment::Items(ast) =>
ast.flat_map_in_place(|ast| vis.flat_map_item(ast)),
AstFragment::TraitItems(ast) =>
ast.flat_map_in_place(|ast|
vis.flat_map_assoc_item(ast, AssocCtxt::Trait)),
AstFragment::ImplItems(ast) =>
ast.flat_map_in_place(|ast|
vis.flat_map_assoc_item(ast,
AssocCtxt::Impl { of_trait: false })),
AstFragment::TraitImplItems(ast) =>
ast.flat_map_in_place(|ast|
vis.flat_map_assoc_item(ast,
AssocCtxt::Impl { of_trait: true })),
AstFragment::ForeignItems(ast) =>
ast.flat_map_in_place(|ast| vis.flat_map_foreign_item(ast)),
AstFragment::Arms(ast) =>
ast.flat_map_in_place(|ast| vis.flat_map_arm(ast)),
AstFragment::ExprFields(ast) =>
ast.flat_map_in_place(|ast| vis.flat_map_expr_field(ast)),
AstFragment::PatFields(ast) =>
ast.flat_map_in_place(|ast| vis.flat_map_pat_field(ast)),
AstFragment::GenericParams(ast) =>
ast.flat_map_in_place(|ast| vis.flat_map_generic_param(ast)),
AstFragment::Params(ast) =>
ast.flat_map_in_place(|ast| vis.flat_map_param(ast)),
AstFragment::FieldDefs(ast) =>
ast.flat_map_in_place(|ast| vis.flat_map_field_def(ast)),
AstFragment::Variants(ast) =>
ast.flat_map_in_place(|ast| vis.flat_map_variant(ast)),
AstFragment::WherePredicates(ast) =>
ast.flat_map_in_place(|ast|
vis.flat_map_where_predicate(ast)),
}
}
pub fn visit_with<'a, V: Visitor<'a>>(&'a self, visitor: &mut V)
-> V::Result {
match self {
AstFragment::OptExpr(Some(expr)) =>
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_expr(expr))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
},
AstFragment::OptExpr(None) => {}
AstFragment::MethodReceiverExpr(expr) =>
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_method_receiver_expr(expr))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
},
AstFragment::Expr(ast) =>
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_expr(ast))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
},
AstFragment::Pat(ast) =>
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_pat(ast))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
},
AstFragment::Ty(ast) =>
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_ty(ast))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
},
AstFragment::Crate(ast) =>
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_crate(ast))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
},
AstFragment::Stmts(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_stmt(elem))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::Items(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_item(elem))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::TraitItems(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_assoc_item(elem,
AssocCtxt::Trait)) {
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::ImplItems(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_assoc_item(elem,
AssocCtxt::Impl { of_trait: false })) {
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::TraitImplItems(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_assoc_item(elem,
AssocCtxt::Impl { of_trait: true })) {
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::ForeignItems(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_foreign_item(elem))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::Arms(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_arm(elem))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::ExprFields(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_expr_field(elem))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::PatFields(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_pat_field(elem))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::GenericParams(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_generic_param(elem))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::Params(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_param(elem))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::FieldDefs(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_field_def(elem))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::Variants(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_variant(elem))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
AstFragment::WherePredicates(ast) =>
for elem in &ast[..] {
match ::rustc_ast_ir::visit::VisitorResult::branch(visitor.visit_where_predicate(elem))
{
core::ops::ControlFlow::Continue(()) =>
(),
#[allow(unreachable_code)]
core::ops::ControlFlow::Break(r) => {
return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
}
};
},
}
V::Result::output()
}
}
impl<'a, 'b> MacResult for crate::mbe::macro_rules::ParserAnyMacro<'a, 'b> {
fn make_expr(self: Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<Box<ast::Expr>> {
Some(self.make(AstFragmentKind::Expr).make_expr())
}
fn make_pat(self: Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<Box<ast::Pat>> {
Some(self.make(AstFragmentKind::Pat).make_pat())
}
fn make_ty(self: Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<Box<ast::Ty>> {
Some(self.make(AstFragmentKind::Ty).make_ty())
}
fn make_stmts(self: Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[ast::Stmt; 1]>> {
Some(self.make(AstFragmentKind::Stmts).make_stmts())
}
fn make_items(self: Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[Box<ast::Item>; 1]>> {
Some(self.make(AstFragmentKind::Items).make_items())
}
fn make_trait_items(self:
Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[Box<ast::AssocItem>; 1]>> {
Some(self.make(AstFragmentKind::TraitItems).make_trait_items())
}
fn make_impl_items(self:
Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[Box<ast::AssocItem>; 1]>> {
Some(self.make(AstFragmentKind::ImplItems).make_impl_items())
}
fn make_trait_impl_items(self:
Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[Box<ast::AssocItem>; 1]>> {
Some(self.make(AstFragmentKind::TraitImplItems).make_trait_impl_items())
}
fn make_foreign_items(self:
Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[Box<ast::ForeignItem>; 1]>> {
Some(self.make(AstFragmentKind::ForeignItems).make_foreign_items())
}
fn make_arms(self: Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[ast::Arm; 1]>> {
Some(self.make(AstFragmentKind::Arms).make_arms())
}
fn make_expr_fields(self:
Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[ast::ExprField; 1]>> {
Some(self.make(AstFragmentKind::ExprFields).make_expr_fields())
}
fn make_pat_fields(self:
Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[ast::PatField; 1]>> {
Some(self.make(AstFragmentKind::PatFields).make_pat_fields())
}
fn make_generic_params(self:
Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[ast::GenericParam; 1]>> {
Some(self.make(AstFragmentKind::GenericParams).make_generic_params())
}
fn make_params(self: Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[ast::Param; 1]>> {
Some(self.make(AstFragmentKind::Params).make_params())
}
fn make_field_defs(self:
Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[ast::FieldDef; 1]>> {
Some(self.make(AstFragmentKind::FieldDefs).make_field_defs())
}
fn make_variants(self:
Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[ast::Variant; 1]>> {
Some(self.make(AstFragmentKind::Variants).make_variants())
}
fn make_where_predicates(self:
Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<SmallVec<[ast::WherePredicate; 1]>> {
Some(self.make(AstFragmentKind::WherePredicates).make_where_predicates())
}
fn make_crate(self: Box<crate::mbe::macro_rules::ParserAnyMacro<'a, 'b>>)
-> Option<ast::Crate> {
Some(self.make(AstFragmentKind::Crate).make_crate())
}
}ast_fragments! {
177 Expr(Box<ast::Expr>) {
178 "expression";
179 one fn visit_expr;
180 fn make_expr;
181 }
182 Pat(Box<ast::Pat>) {
183 "pattern";
184 one fn visit_pat;
185 fn make_pat;
186 }
187 Ty(Box<ast::Ty>) {
188 "type";
189 one fn visit_ty;
190 fn make_ty;
191 }
192 Stmts(SmallVec<[ast::Stmt; 1]>) {
193 "statement";
194 many fn flat_map_stmt; fn visit_stmt();
195 fn make_stmts;
196 }
197 Items(SmallVec<[Box<ast::Item>; 1]>) {
198 "item";
199 many fn flat_map_item; fn visit_item();
200 fn make_items;
201 }
202 TraitItems(SmallVec<[Box<ast::AssocItem>; 1]>) {
203 "trait item";
204 many fn flat_map_assoc_item; fn visit_assoc_item(AssocCtxt::Trait);
205 fn make_trait_items;
206 }
207 ImplItems(SmallVec<[Box<ast::AssocItem>; 1]>) {
208 "impl item";
209 many fn flat_map_assoc_item; fn visit_assoc_item(AssocCtxt::Impl { of_trait: false });
210 fn make_impl_items;
211 }
212 TraitImplItems(SmallVec<[Box<ast::AssocItem>; 1]>) {
213 "impl item";
214 many fn flat_map_assoc_item; fn visit_assoc_item(AssocCtxt::Impl { of_trait: true });
215 fn make_trait_impl_items;
216 }
217 ForeignItems(SmallVec<[Box<ast::ForeignItem>; 1]>) {
218 "foreign item";
219 many fn flat_map_foreign_item; fn visit_foreign_item();
220 fn make_foreign_items;
221 }
222 Arms(SmallVec<[ast::Arm; 1]>) {
223 "match arm";
224 many fn flat_map_arm; fn visit_arm();
225 fn make_arms;
226 }
227 ExprFields(SmallVec<[ast::ExprField; 1]>) {
228 "field expression";
229 many fn flat_map_expr_field; fn visit_expr_field();
230 fn make_expr_fields;
231 }
232 PatFields(SmallVec<[ast::PatField; 1]>) {
233 "field pattern";
234 many fn flat_map_pat_field; fn visit_pat_field();
235 fn make_pat_fields;
236 }
237 GenericParams(SmallVec<[ast::GenericParam; 1]>) {
238 "generic parameter";
239 many fn flat_map_generic_param; fn visit_generic_param();
240 fn make_generic_params;
241 }
242 Params(SmallVec<[ast::Param; 1]>) {
243 "function parameter";
244 many fn flat_map_param; fn visit_param();
245 fn make_params;
246 }
247 FieldDefs(SmallVec<[ast::FieldDef; 1]>) {
248 "field";
249 many fn flat_map_field_def; fn visit_field_def();
250 fn make_field_defs;
251 }
252 Variants(SmallVec<[ast::Variant; 1]>) {
253 "variant";
254 many fn flat_map_variant; fn visit_variant();
255 fn make_variants;
256 }
257 WherePredicates(SmallVec<[ast::WherePredicate; 1]>) {
258 "where predicate";
259 many fn flat_map_where_predicate; fn visit_where_predicate();
260 fn make_where_predicates;
261 }
262 Crate(ast::Crate) {
263 "crate";
264 one fn visit_crate;
265 fn make_crate;
266 }
267}
268
269pub enum SupportsMacroExpansion {
270 No,
271 Yes { supports_inner_attrs: bool },
272}
273
274impl AstFragmentKind {
275 pub(crate) fn dummy(self, span: Span, guar: ErrorGuaranteed) -> AstFragment {
276 self.make_from(DummyResult::any(span, guar)).expect("couldn't create a dummy AST fragment")
277 }
278
279 pub fn supports_macro_expansion(self) -> SupportsMacroExpansion {
280 match self {
281 AstFragmentKind::OptExpr
282 | AstFragmentKind::Expr
283 | AstFragmentKind::MethodReceiverExpr
284 | AstFragmentKind::Stmts
285 | AstFragmentKind::Ty
286 | AstFragmentKind::Pat => SupportsMacroExpansion::Yes { supports_inner_attrs: false },
287 AstFragmentKind::Items
288 | AstFragmentKind::TraitItems
289 | AstFragmentKind::ImplItems
290 | AstFragmentKind::TraitImplItems
291 | AstFragmentKind::ForeignItems
292 | AstFragmentKind::Crate => SupportsMacroExpansion::Yes { supports_inner_attrs: true },
293 AstFragmentKind::Arms
294 | AstFragmentKind::ExprFields
295 | AstFragmentKind::PatFields
296 | AstFragmentKind::GenericParams
297 | AstFragmentKind::Params
298 | AstFragmentKind::FieldDefs
299 | AstFragmentKind::Variants
300 | AstFragmentKind::WherePredicates => SupportsMacroExpansion::No,
301 }
302 }
303
304 pub(crate) fn expect_from_annotatables(
305 self,
306 items: impl IntoIterator<Item = Annotatable>,
307 ) -> AstFragment {
308 let mut items = items.into_iter();
309 match self {
310 AstFragmentKind::Arms => {
311 AstFragment::Arms(items.map(Annotatable::expect_arm).collect())
312 }
313 AstFragmentKind::ExprFields => {
314 AstFragment::ExprFields(items.map(Annotatable::expect_expr_field).collect())
315 }
316 AstFragmentKind::PatFields => {
317 AstFragment::PatFields(items.map(Annotatable::expect_pat_field).collect())
318 }
319 AstFragmentKind::GenericParams => {
320 AstFragment::GenericParams(items.map(Annotatable::expect_generic_param).collect())
321 }
322 AstFragmentKind::Params => {
323 AstFragment::Params(items.map(Annotatable::expect_param).collect())
324 }
325 AstFragmentKind::FieldDefs => {
326 AstFragment::FieldDefs(items.map(Annotatable::expect_field_def).collect())
327 }
328 AstFragmentKind::Variants => {
329 AstFragment::Variants(items.map(Annotatable::expect_variant).collect())
330 }
331 AstFragmentKind::WherePredicates => AstFragment::WherePredicates(
332 items.map(Annotatable::expect_where_predicate).collect(),
333 ),
334 AstFragmentKind::Items => {
335 AstFragment::Items(items.map(Annotatable::expect_item).collect())
336 }
337 AstFragmentKind::ImplItems => {
338 AstFragment::ImplItems(items.map(Annotatable::expect_impl_item).collect())
339 }
340 AstFragmentKind::TraitImplItems => {
341 AstFragment::TraitImplItems(items.map(Annotatable::expect_impl_item).collect())
342 }
343 AstFragmentKind::TraitItems => {
344 AstFragment::TraitItems(items.map(Annotatable::expect_trait_item).collect())
345 }
346 AstFragmentKind::ForeignItems => {
347 AstFragment::ForeignItems(items.map(Annotatable::expect_foreign_item).collect())
348 }
349 AstFragmentKind::Stmts => {
350 AstFragment::Stmts(items.map(Annotatable::expect_stmt).collect())
351 }
352 AstFragmentKind::Expr => AstFragment::Expr(
353 items.next().expect("expected exactly one expression").expect_expr(),
354 ),
355 AstFragmentKind::MethodReceiverExpr => AstFragment::MethodReceiverExpr(
356 items.next().expect("expected exactly one expression").expect_expr(),
357 ),
358 AstFragmentKind::OptExpr => {
359 AstFragment::OptExpr(items.next().map(Annotatable::expect_expr))
360 }
361 AstFragmentKind::Crate => {
362 AstFragment::Crate(items.next().expect("expected exactly one crate").expect_crate())
363 }
364 AstFragmentKind::Pat | AstFragmentKind::Ty => {
365 {
::core::panicking::panic_fmt(format_args!("patterns and types aren\'t annotatable"));
}panic!("patterns and types aren't annotatable")
366 }
367 }
368 }
369}
370
371pub struct Invocation {
372 pub kind: InvocationKind,
373 pub fragment_kind: AstFragmentKind,
374 pub expansion_data: ExpansionData,
375}
376
377pub enum InvocationKind {
378 Bang {
379 mac: Box<ast::MacCall>,
380 span: Span,
381 },
382 Attr {
383 attr: ast::Attribute,
384 pos: usize,
386 item: Annotatable,
387 derives: Vec<ast::Path>,
389 },
390 Derive {
391 path: ast::Path,
392 is_const: bool,
393 item: Annotatable,
394 },
395 GlobDelegation {
396 item: Box<ast::AssocItem>,
397 of_trait: bool,
399 },
400}
401
402impl InvocationKind {
403 fn placeholder_visibility(&self) -> Option<ast::Visibility> {
404 match self {
410 InvocationKind::Attr { item: Annotatable::FieldDef(field), .. }
411 | InvocationKind::Derive { item: Annotatable::FieldDef(field), .. }
412 if field.ident.is_none() =>
413 {
414 Some(field.vis.clone())
415 }
416 _ => None,
417 }
418 }
419}
420
421impl Invocation {
422 pub fn span(&self) -> Span {
423 match &self.kind {
424 InvocationKind::Bang { span, .. } => *span,
425 InvocationKind::Attr { attr, .. } => attr.span,
426 InvocationKind::Derive { path, .. } => path.span,
427 InvocationKind::GlobDelegation { item, .. } => item.span,
428 }
429 }
430
431 fn span_mut(&mut self) -> &mut Span {
432 match &mut self.kind {
433 InvocationKind::Bang { span, .. } => span,
434 InvocationKind::Attr { attr, .. } => &mut attr.span,
435 InvocationKind::Derive { path, .. } => &mut path.span,
436 InvocationKind::GlobDelegation { item, .. } => &mut item.span,
437 }
438 }
439}
440
441pub struct MacroExpander<'a, 'b> {
442 pub cx: &'a mut ExtCtxt<'b>,
443 monotonic: bool, }
445
446impl<'a, 'b> MacroExpander<'a, 'b> {
447 pub fn new(cx: &'a mut ExtCtxt<'b>, monotonic: bool) -> Self {
448 MacroExpander { cx, monotonic }
449 }
450
451 pub fn expand_crate(&mut self, krate: ast::Crate) -> ast::Crate {
452 let file_path = match self.cx.source_map().span_to_filename(krate.spans.inner_span) {
453 FileName::Real(name) => name
454 .into_local_path()
455 .expect("attempting to resolve a file path in an external file"),
456 other => PathBuf::from(other.prefer_local_unconditionally().to_string()),
457 };
458 let dir_path = file_path.parent().unwrap_or(&file_path).to_owned();
459 self.cx.root_path = dir_path.clone();
460 self.cx.current_expansion.module = Rc::new(ModuleData {
461 mod_path: ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[Ident::with_dummy_span(self.cx.ecfg.crate_name)]))vec![Ident::with_dummy_span(self.cx.ecfg.crate_name)],
462 file_path_stack: ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[file_path]))vec![file_path],
463 dir_path,
464 });
465 let krate = self.fully_expand_fragment(AstFragment::Crate(krate)).make_crate();
466 {
match (&krate.id, &ast::CRATE_NODE_ID) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val,
&*right_val, ::core::option::Option::None);
}
}
}
};assert_eq!(krate.id, ast::CRATE_NODE_ID);
467 self.cx.trace_macros_diag();
468 krate
469 }
470
471 pub fn fully_expand_fragment(&mut self, input_fragment: AstFragment) -> AstFragment {
473 let orig_expansion_data = self.cx.current_expansion.clone();
474 let orig_force_mode = self.cx.force_mode;
475
476 let (mut fragment_with_placeholders, mut invocations) =
478 self.collect_invocations(input_fragment, &[]);
479
480 self.resolve_imports();
483
484 invocations.reverse();
489 let mut expanded_fragments = Vec::new();
490 let mut expanded_fragments_len = 0;
491 let mut undetermined_invocations = Vec::new();
492 let (mut progress, mut force) = (false, !self.monotonic);
493 loop {
494 let Some((invoc, ext)) = invocations.pop() else {
495 self.resolve_imports();
496 if undetermined_invocations.is_empty() {
497 break;
498 }
499 invocations = mem::take(&mut undetermined_invocations);
500 force = !progress;
501 progress = false;
502 if force && self.monotonic {
503 self.cx.dcx().span_delayed_bug(
504 invocations.last().unwrap().0.span(),
505 "expansion entered force mode without producing any errors",
506 );
507 }
508 continue;
509 };
510
511 let ext = match ext {
512 Some(ext) => ext,
513 None => {
514 let eager_expansion_root = if self.monotonic {
515 invoc.expansion_data.id
516 } else {
517 orig_expansion_data.id
518 };
519 match self.cx.resolver.resolve_macro_invocation(
520 &invoc,
521 eager_expansion_root,
522 force,
523 ) {
524 Ok(ext) => ext,
525 Err(Indeterminate) => {
526 undetermined_invocations.push((invoc, None));
528 continue;
529 }
530 }
531 }
532 };
533
534 let ExpansionData { depth, id: expn_id, .. } = invoc.expansion_data;
535 let depth = depth - orig_expansion_data.depth;
536 self.cx.current_expansion = invoc.expansion_data.clone();
537 self.cx.force_mode = force;
538
539 let fragment_kind = invoc.fragment_kind;
540 match self.expand_invoc(invoc, &ext.kind) {
541 ExpandResult::Ready(fragment) => {
542 let mut derive_invocations = Vec::new();
543 let derive_placeholders = self
544 .cx
545 .resolver
546 .take_derive_resolutions(expn_id)
547 .map(|derives| {
548 derive_invocations.reserve(derives.len());
549 derives
550 .into_iter()
551 .map(|DeriveResolution { path, item, exts: _, is_const }| {
552 let expn_id = LocalExpnId::fresh_empty();
556 derive_invocations.push((
557 Invocation {
558 kind: InvocationKind::Derive { path, item, is_const },
559 fragment_kind,
560 expansion_data: ExpansionData {
561 id: expn_id,
562 ..self.cx.current_expansion.clone()
563 },
564 },
565 None,
566 ));
567 NodeId::placeholder_from_expn_id(expn_id)
568 })
569 .collect::<Vec<_>>()
570 })
571 .unwrap_or_default();
572
573 let (expanded_fragment, collected_invocations) =
574 self.collect_invocations(fragment, &derive_placeholders);
575 derive_invocations.extend(collected_invocations);
579
580 progress = true;
581 if expanded_fragments.len() < depth {
582 expanded_fragments.push(Vec::new());
583 }
584 expanded_fragments[depth - 1].push((expn_id, expanded_fragment));
585 expanded_fragments_len += 1;
586 invocations.extend(derive_invocations.into_iter().rev());
587 }
588 ExpandResult::Retry(invoc) => {
589 if force {
590 self.cx.dcx().span_bug(
591 invoc.span(),
592 "expansion entered force mode but is still stuck",
593 );
594 } else {
595 undetermined_invocations.push((invoc, Some(ext)));
597 }
598 }
599 }
600 }
601
602 self.cx.current_expansion = orig_expansion_data;
603 self.cx.force_mode = orig_force_mode;
604
605 let mut placeholder_expander = PlaceholderExpander::with_capacity(expanded_fragments_len);
607 while let Some(expanded_fragments) = expanded_fragments.pop() {
608 for (expn_id, expanded_fragment) in expanded_fragments.into_iter().rev() {
609 placeholder_expander
610 .add(NodeId::placeholder_from_expn_id(expn_id), expanded_fragment);
611 }
612 }
613 fragment_with_placeholders.mut_visit_with(&mut placeholder_expander);
614 fragment_with_placeholders
615 }
616
617 fn resolve_imports(&mut self) {
618 if self.monotonic {
619 self.cx.resolver.resolve_imports();
620 }
621 }
622
623 fn collect_invocations(
628 &mut self,
629 mut fragment: AstFragment,
630 extra_placeholders: &[NodeId],
631 ) -> (AstFragment, Vec<(Invocation, Option<Arc<SyntaxExtension>>)>) {
632 self.cx.resolver.resolve_dollar_crates();
634
635 let mut invocations = {
636 let mut collector = InvocationCollector {
637 cx: self.cx,
643 invocations: Vec::new(),
644 monotonic: self.monotonic,
645 };
646 fragment.mut_visit_with(&mut collector);
647 fragment.add_placeholders(extra_placeholders);
648 collector.invocations
649 };
650
651 if self.monotonic {
652 self.cx
653 .resolver
654 .visit_ast_fragment_with_placeholders(self.cx.current_expansion.id, &fragment);
655
656 if self.cx.sess.opts.incremental.is_some() {
657 for (invoc, _) in invocations.iter_mut() {
658 let expn_id = invoc.expansion_data.id;
659 let parent_def = self.cx.resolver.invocation_parent(expn_id);
660 let span = invoc.span_mut();
661 *span = span.with_parent(Some(parent_def));
662 }
663 }
664 }
665
666 (fragment, invocations)
667 }
668
669 fn error_recursion_limit_reached(&mut self) -> ErrorGuaranteed {
670 let expn_data = self.cx.current_expansion.id.expn_data();
671 let suggested_limit = match self.cx.ecfg.recursion_limit {
672 Limit(0) => Limit(2),
673 limit => limit * 2,
674 };
675
676 let guar = self.cx.dcx().emit_err(RecursionLimitReached {
677 span: expn_data.call_site,
678 descr: expn_data.kind.descr(),
679 suggested_limit,
680 crate_name: self.cx.ecfg.crate_name,
681 });
682
683 self.cx.macro_error_and_trace_macros_diag();
684 guar
685 }
686
687 fn error_wrong_fragment_kind(
690 &mut self,
691 kind: AstFragmentKind,
692 mac: &ast::MacCall,
693 span: Span,
694 ) -> ErrorGuaranteed {
695 let name = pprust::path_to_string(&mac.path);
696 let guar = self.cx.dcx().emit_err(WrongFragmentKind { span, kind: kind.name(), name });
697 self.cx.macro_error_and_trace_macros_diag();
698 guar
699 }
700
701 fn expand_invoc(
702 &mut self,
703 invoc: Invocation,
704 ext: &SyntaxExtensionKind,
705 ) -> ExpandResult<AstFragment, Invocation> {
706 let recursion_limit = match self.cx.reduced_recursion_limit {
707 Some((limit, _)) => limit,
708 None => self.cx.ecfg.recursion_limit,
709 };
710
711 if !recursion_limit.value_within_limit(self.cx.current_expansion.depth) {
712 let guar = match self.cx.reduced_recursion_limit {
713 Some((_, guar)) => guar,
714 None => self.error_recursion_limit_reached(),
715 };
716
717 self.cx.reduced_recursion_limit = Some((recursion_limit / 2, guar));
719
720 return ExpandResult::Ready(invoc.fragment_kind.dummy(invoc.span(), guar));
721 }
722
723 let macro_stats = self.cx.sess.opts.unstable_opts.macro_stats;
724
725 let (fragment_kind, span) = (invoc.fragment_kind, invoc.span());
726 ExpandResult::Ready(match invoc.kind {
727 InvocationKind::Bang { mac, span } => {
728 if let SyntaxExtensionKind::Bang(expander) = ext {
729 match expander.expand(self.cx, span, mac.args.tokens.clone()) {
730 Ok(tok_result) => {
731 let fragment =
732 self.parse_ast_fragment(tok_result, fragment_kind, &mac.path, span);
733 if macro_stats {
734 update_bang_macro_stats(
735 self.cx,
736 fragment_kind,
737 span,
738 mac,
739 &fragment,
740 );
741 }
742 fragment
743 }
744 Err(guar) => return ExpandResult::Ready(fragment_kind.dummy(span, guar)),
745 }
746 } else if let Some(expander) = ext.as_legacy_bang() {
747 let tok_result = match expander.expand(self.cx, span, mac.args.tokens.clone()) {
748 ExpandResult::Ready(tok_result) => tok_result,
749 ExpandResult::Retry(_) => {
750 return ExpandResult::Retry(Invocation {
752 kind: InvocationKind::Bang { mac, span },
753 ..invoc
754 });
755 }
756 };
757 if let Some(fragment) = fragment_kind.make_from(tok_result) {
758 if macro_stats {
759 update_bang_macro_stats(self.cx, fragment_kind, span, mac, &fragment);
760 }
761 fragment
762 } else {
763 let guar = self.error_wrong_fragment_kind(fragment_kind, &mac, span);
764 fragment_kind.dummy(span, guar)
765 }
766 } else {
767 ::core::panicking::panic("internal error: entered unreachable code");unreachable!();
768 }
769 }
770 InvocationKind::Attr { attr, pos, mut item, derives } => {
771 if let Some(expander) = ext.as_attr() {
772 self.gate_proc_macro_attr_item(span, &item);
773 let tokens = match &item {
774 Annotatable::Crate(krate) => {
780 rustc_parse::fake_token_stream_for_crate(&self.cx.sess.psess, krate)
781 }
782 Annotatable::Item(item_inner)
783 if #[allow(non_exhaustive_omitted_patterns)] match attr.style {
AttrStyle::Inner => true,
_ => false,
}matches!(attr.style, AttrStyle::Inner)
784 && #[allow(non_exhaustive_omitted_patterns)] match item_inner.kind {
ItemKind::Mod(_, _,
ModKind::Unloaded | ModKind::Loaded(_, Inline::No { .. }, _)) => true,
_ => false,
}matches!(
785 item_inner.kind,
786 ItemKind::Mod(
787 _,
788 _,
789 ModKind::Unloaded
790 | ModKind::Loaded(_, Inline::No { .. }, _),
791 )
792 ) =>
793 {
794 rustc_parse::fake_token_stream_for_item(
795 &self.cx.sess.psess,
796 item_inner,
797 Some(&attr),
798 )
799 }
800 Annotatable::Item(item_inner) if item_inner.tokens.is_none() => {
801 rustc_parse::fake_token_stream_for_item(
802 &self.cx.sess.psess,
803 item_inner,
804 None,
805 )
806 }
807 Annotatable::Item(item_inner)
814 if #[allow(non_exhaustive_omitted_patterns)] match &item_inner.kind {
ItemKind::Fn(f) if !f.eii_impls.is_empty() => true,
_ => false,
}matches!(&item_inner.kind,
815 ItemKind::Fn(f) if !f.eii_impls.is_empty()) =>
816 {
817 rustc_parse::fake_token_stream_for_item(
818 &self.cx.sess.psess,
819 item_inner,
820 None,
821 )
822 }
823 Annotatable::ForeignItem(item_inner) if item_inner.tokens.is_none() => {
824 rustc_parse::fake_token_stream_for_foreign_item(
825 &self.cx.sess.psess,
826 item_inner,
827 )
828 }
829 _ => item.to_tokens(),
830 };
831 let attr_item = attr.get_normal_item();
832 let safety = attr_item.unsafety;
833 if let AttrArgs::Eq { .. } = attr_item.args {
834 self.cx.dcx().emit_err(UnsupportedKeyValue { span });
835 }
836 let inner_tokens = attr_item.args.inner_tokens();
837 match expander.expand_with_safety(self.cx, safety, span, inner_tokens, tokens) {
838 Ok(tok_result) => {
839 let fragment = self.parse_ast_fragment(
840 tok_result,
841 fragment_kind,
842 &attr_item.path,
843 span,
844 );
845 if macro_stats {
846 update_attr_macro_stats(
847 self.cx,
848 fragment_kind,
849 span,
850 &attr_item.path,
851 &attr,
852 item,
853 &fragment,
854 );
855 }
856 fragment
857 }
858 Err(guar) => return ExpandResult::Ready(fragment_kind.dummy(span, guar)),
859 }
860 } else if let SyntaxExtensionKind::LegacyAttr(expander) = ext {
861 match validate_attr::parse_meta(&self.cx.sess.psess, &attr) {
865 Ok(meta) => {
866 let item_clone = macro_stats.then(|| item.clone());
867 let items = match expander.expand(self.cx, span, &meta, item, false) {
868 ExpandResult::Ready(items) => items,
869 ExpandResult::Retry(item) => {
870 return ExpandResult::Retry(Invocation {
872 kind: InvocationKind::Attr { attr, pos, item, derives },
873 ..invoc
874 });
875 }
876 };
877 if #[allow(non_exhaustive_omitted_patterns)] match fragment_kind {
AstFragmentKind::Expr | AstFragmentKind::MethodReceiverExpr => true,
_ => false,
}matches!(
878 fragment_kind,
879 AstFragmentKind::Expr | AstFragmentKind::MethodReceiverExpr
880 ) && items.is_empty()
881 {
882 let guar = self.cx.dcx().emit_err(RemoveExprNotSupported { span });
883 fragment_kind.dummy(span, guar)
884 } else {
885 let fragment = fragment_kind.expect_from_annotatables(items);
886 if macro_stats {
887 update_attr_macro_stats(
888 self.cx,
889 fragment_kind,
890 span,
891 &meta.path,
892 &attr,
893 item_clone.unwrap(),
894 &fragment,
895 );
896 }
897 fragment
898 }
899 }
900 Err(err) => {
901 let _guar = err.emit();
902 fragment_kind.expect_from_annotatables(iter::once(item))
903 }
904 }
905 } else if let SyntaxExtensionKind::NonMacroAttr = ext {
906 self.cx.expanded_inert_attrs.mark(&attr);
908 item.visit_attrs(|attrs| attrs.insert(pos, attr));
909 fragment_kind.expect_from_annotatables(iter::once(item))
910 } else {
911 ::core::panicking::panic("internal error: entered unreachable code");unreachable!();
912 }
913 }
914 InvocationKind::Derive { path, item, is_const } => match ext {
915 SyntaxExtensionKind::Derive(expander)
916 | SyntaxExtensionKind::LegacyDerive(expander) => {
917 let meta = ast::MetaItem {
920 unsafety: ast::Safety::Default,
921 kind: MetaItemKind::Word,
922 span,
923 path,
924 };
925 let items = match expander.expand(self.cx, span, &meta, item, is_const) {
926 ExpandResult::Ready(items) => items,
927 ExpandResult::Retry(item) => {
928 return ExpandResult::Retry(Invocation {
930 kind: InvocationKind::Derive { path: meta.path, item, is_const },
931 ..invoc
932 });
933 }
934 };
935 let fragment = fragment_kind.expect_from_annotatables(items);
936 if macro_stats {
937 update_derive_macro_stats(
938 self.cx,
939 fragment_kind,
940 span,
941 &meta.path,
942 &fragment,
943 );
944 }
945 fragment
946 }
947 SyntaxExtensionKind::MacroRules(expander)
948 if expander.kinds().contains(MacroKinds::DERIVE) =>
949 {
950 if is_const {
951 let guar = self
952 .cx
953 .dcx()
954 .span_err(span, "macro `derive` does not support const derives");
955 return ExpandResult::Ready(fragment_kind.dummy(span, guar));
956 }
957 let body = item.to_tokens();
958 match expander.expand_derive(self.cx, span, &body) {
959 Ok(tok_result) => {
960 let fragment =
961 self.parse_ast_fragment(tok_result, fragment_kind, &path, span);
962 if macro_stats {
963 update_derive_macro_stats(
964 self.cx,
965 fragment_kind,
966 span,
967 &path,
968 &fragment,
969 );
970 }
971 fragment
972 }
973 Err(guar) => return ExpandResult::Ready(fragment_kind.dummy(span, guar)),
974 }
975 }
976 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
977 },
978 InvocationKind::GlobDelegation { item, of_trait } => {
979 let AssocItemKind::DelegationMac(deleg) = &item.kind else { ::core::panicking::panic("internal error: entered unreachable code")unreachable!() };
980 let suffixes = match ext {
981 SyntaxExtensionKind::GlobDelegation(expander) => match expander.expand(self.cx)
982 {
983 ExpandResult::Ready(suffixes) => suffixes,
984 ExpandResult::Retry(()) => {
985 return ExpandResult::Retry(Invocation {
987 kind: InvocationKind::GlobDelegation { item, of_trait },
988 ..invoc
989 });
990 }
991 },
992 SyntaxExtensionKind::Bang(..) => {
993 let msg = "expanded a dummy glob delegation";
994 let guar = self.cx.dcx().span_delayed_bug(span, msg);
995 return ExpandResult::Ready(fragment_kind.dummy(span, guar));
996 }
997 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
998 };
999
1000 type Node = AstNodeWrapper<Box<ast::AssocItem>, ImplItemTag>;
1001 let single_delegations = build_single_delegations::<Node>(
1002 self.cx,
1003 deleg,
1004 &item,
1005 &suffixes,
1006 item.span,
1007 DelegationSource::Glob,
1008 );
1009 fragment_kind.expect_from_annotatables(single_delegations.map(|item| {
1011 Annotatable::AssocItem(Box::new(item), AssocCtxt::Impl { of_trait })
1012 }))
1013 }
1014 })
1015 }
1016
1017 fn gate_proc_macro_attr_item(&self, span: Span, item: &Annotatable) {
1018 let kind = match item {
1019 Annotatable::Item(_)
1020 | Annotatable::AssocItem(..)
1021 | Annotatable::ForeignItem(_)
1022 | Annotatable::Crate(..) => return,
1023 Annotatable::Stmt(stmt) => {
1024 if stmt.is_item() {
1027 return;
1028 }
1029 "statements"
1030 }
1031 Annotatable::Expr(_) => "expressions",
1032 Annotatable::Arm(..)
1033 | Annotatable::ExprField(..)
1034 | Annotatable::PatField(..)
1035 | Annotatable::GenericParam(..)
1036 | Annotatable::Param(..)
1037 | Annotatable::FieldDef(..)
1038 | Annotatable::Variant(..)
1039 | Annotatable::WherePredicate(..) => { ::core::panicking::panic_fmt(format_args!("unexpected annotatable")); }panic!("unexpected annotatable"),
1040 };
1041 if self.cx.ecfg.features.proc_macro_hygiene() {
1042 return;
1043 }
1044 feature_err(
1045 self.cx.sess,
1046 sym::proc_macro_hygiene,
1047 span,
1048 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("custom attributes cannot be applied to {0}",
kind))
})format!("custom attributes cannot be applied to {kind}"),
1049 )
1050 .emit();
1051 }
1052
1053 fn parse_ast_fragment(
1054 &mut self,
1055 toks: TokenStream,
1056 kind: AstFragmentKind,
1057 path: &ast::Path,
1058 span: Span,
1059 ) -> AstFragment {
1060 let mut parser = self.cx.new_parser_from_tts(toks);
1061 match parse_ast_fragment(&mut parser, kind) {
1062 Ok(fragment) => {
1063 ensure_complete_parse(&parser, path, kind.name(), span);
1064 fragment
1065 }
1066 Err(mut err) => {
1067 if err.span.is_dummy() {
1068 err.span(span);
1069 }
1070 annotate_err_with_kind(&mut err, kind, span);
1071 let guar = err.emit();
1072 self.cx.macro_error_and_trace_macros_diag();
1073 kind.dummy(span, guar)
1074 }
1075 }
1076 }
1077}
1078
1079pub fn parse_ast_fragment<'a>(
1080 this: &mut Parser<'a>,
1081 kind: AstFragmentKind,
1082) -> PResult<'a, AstFragment> {
1083 Ok(match kind {
1084 AstFragmentKind::Items => {
1085 let mut items = SmallVec::new();
1086 while let Some(item) = this.parse_item(ForceCollect::No, AllowConstBlockItems::Yes)? {
1087 items.push(item);
1088 }
1089 AstFragment::Items(items)
1090 }
1091 AstFragmentKind::TraitItems => {
1092 let mut items = SmallVec::new();
1093 while let Some(item) = this.parse_trait_item(ForceCollect::No)? {
1094 items.extend(item);
1095 }
1096 AstFragment::TraitItems(items)
1097 }
1098 AstFragmentKind::ImplItems => {
1099 let mut items = SmallVec::new();
1100 while let Some(item) = this.parse_impl_item(ForceCollect::No)? {
1101 items.extend(item);
1102 }
1103 AstFragment::ImplItems(items)
1104 }
1105 AstFragmentKind::TraitImplItems => {
1106 let mut items = SmallVec::new();
1107 while let Some(item) = this.parse_impl_item(ForceCollect::No)? {
1108 items.extend(item);
1109 }
1110 AstFragment::TraitImplItems(items)
1111 }
1112 AstFragmentKind::ForeignItems => {
1113 let mut items = SmallVec::new();
1114 while let Some(item) = this.parse_foreign_item(ForceCollect::No)? {
1115 items.extend(item);
1116 }
1117 AstFragment::ForeignItems(items)
1118 }
1119 AstFragmentKind::Stmts => {
1120 let mut stmts = SmallVec::new();
1121 while this.token != token::Eof && this.token != token::CloseBrace {
1123 stmts.push(this.parse_full_stmt(AttemptLocalParseRecovery::Yes)?);
1124 }
1125 AstFragment::Stmts(stmts)
1126 }
1127 AstFragmentKind::Expr => AstFragment::Expr(this.parse_expr()?),
1128 AstFragmentKind::MethodReceiverExpr => AstFragment::MethodReceiverExpr(this.parse_expr()?),
1129 AstFragmentKind::OptExpr => {
1130 if this.token != token::Eof {
1131 AstFragment::OptExpr(Some(this.parse_expr()?))
1132 } else {
1133 AstFragment::OptExpr(None)
1134 }
1135 }
1136 AstFragmentKind::Ty => AstFragment::Ty(this.parse_ty()?),
1137 AstFragmentKind::Pat => AstFragment::Pat(Box::new(this.parse_pat_allow_top_guard(
1138 None,
1139 RecoverComma::No,
1140 RecoverColon::Yes,
1141 CommaRecoveryMode::LikelyTuple,
1142 )?)),
1143 AstFragmentKind::Crate => AstFragment::Crate(this.parse_crate_mod()?),
1144 AstFragmentKind::Arms
1145 | AstFragmentKind::ExprFields
1146 | AstFragmentKind::PatFields
1147 | AstFragmentKind::GenericParams
1148 | AstFragmentKind::Params
1149 | AstFragmentKind::FieldDefs
1150 | AstFragmentKind::Variants
1151 | AstFragmentKind::WherePredicates => {
::core::panicking::panic_fmt(format_args!("unexpected AST fragment kind"));
}panic!("unexpected AST fragment kind"),
1152 })
1153}
1154
1155pub(crate) fn ensure_complete_parse<'a>(
1156 parser: &Parser<'a>,
1157 macro_path: &ast::Path,
1158 kind_name: &str,
1159 span: Span,
1160) {
1161 if parser.token != token::Eof {
1162 let descr = token_descr(&parser.token);
1163 let def_site_span = parser.token.span.with_ctxt(SyntaxContext::root());
1165
1166 let semi_span = parser.psess.source_map().next_point(span);
1167 let add_semicolon = match &parser.psess.source_map().span_to_snippet(semi_span) {
1168 Ok(snippet) if &snippet[..] != ";" && kind_name == "expression" => {
1169 Some(span.shrink_to_hi())
1170 }
1171 _ => None,
1172 };
1173
1174 let expands_to_match_arm = kind_name == "pattern" && parser.token == token::FatArrow;
1175
1176 parser.dcx().emit_err(IncompleteParse {
1177 span: def_site_span,
1178 descr,
1179 label_span: span,
1180 macro_path: pprust::path_to_string(macro_path),
1181 kind_name,
1182 expands_to_match_arm,
1183 add_semicolon,
1184 });
1185 }
1186}
1187
1188macro_rules! assign_id {
1211 ($self:ident, $id:expr, $closure:expr) => {{
1212 let old_id = $self.cx.current_expansion.lint_node_id;
1213 if $self.monotonic {
1214 debug_assert_eq!(*$id, ast::DUMMY_NODE_ID);
1215 let new_id = $self.cx.resolver.next_node_id();
1216 *$id = new_id;
1217 $self.cx.current_expansion.lint_node_id = new_id;
1218 }
1219 let ret = ($closure)();
1220 $self.cx.current_expansion.lint_node_id = old_id;
1221 ret
1222 }};
1223}
1224
1225enum AddSemicolon {
1226 Yes,
1227 No,
1228}
1229
1230trait InvocationCollectorNode: HasAttrs + HasNodeId + Sized {
1233 type OutputTy = SmallVec<[Self; 1]>;
1234 type ItemKind = ItemKind;
1235 const KIND: AstFragmentKind;
1236 fn to_annotatable(self) -> Annotatable;
1237 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy;
1238 fn descr() -> &'static str {
1239 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
1240 }
1241 fn walk_flat_map(self, _collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1242 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
1243 }
1244 fn walk(&mut self, _collector: &mut InvocationCollector<'_, '_>) {
1245 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
1246 }
1247 fn is_mac_call(&self) -> bool {
1248 false
1249 }
1250 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
1251 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
1252 }
1253 fn delegation(&self) -> Option<(&ast::DelegationMac, &ast::Item<Self::ItemKind>)> {
1254 None
1255 }
1256 fn delegation_item_kind(_deleg: Box<ast::Delegation>) -> Self::ItemKind {
1257 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
1258 }
1259 fn from_item(_item: ast::Item<Self::ItemKind>) -> Self {
1260 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
1261 }
1262 fn flatten_outputs(_outputs: impl Iterator<Item = Self::OutputTy>) -> Self::OutputTy {
1263 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
1264 }
1265 fn pre_flat_map_node_collect_attr(_cfg: &StripUnconfigured<'_>, _attr: &ast::Attribute) {}
1266 fn post_flat_map_node_collect_bang(_output: &mut Self::OutputTy, _add_semicolon: AddSemicolon) {
1267 }
1268 fn wrap_flat_map_node_walk_flat_map(
1269 node: Self,
1270 collector: &mut InvocationCollector<'_, '_>,
1271 walk_flat_map: impl FnOnce(Self, &mut InvocationCollector<'_, '_>) -> Self::OutputTy,
1272 ) -> Result<Self::OutputTy, Self> {
1273 Ok(walk_flat_map(node, collector))
1274 }
1275 fn expand_cfg_false(
1276 &mut self,
1277 collector: &mut InvocationCollector<'_, '_>,
1278 _pos: usize,
1279 span: Span,
1280 ) {
1281 collector.cx.dcx().emit_err(RemoveNodeNotSupported { span, descr: Self::descr() });
1282 }
1283
1284 fn declared_idents(&self) -> Vec<Ident> {
1287 ::alloc::vec::Vec::new()vec![]
1288 }
1289
1290 fn as_target(&self) -> Target;
1291}
1292
1293impl InvocationCollectorNode for Box<ast::Item> {
1294 const KIND: AstFragmentKind = AstFragmentKind::Items;
1295 fn to_annotatable(self) -> Annotatable {
1296 Annotatable::Item(self)
1297 }
1298 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1299 fragment.make_items()
1300 }
1301 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1302 walk_flat_map_item(collector, self)
1303 }
1304 fn is_mac_call(&self) -> bool {
1305 #[allow(non_exhaustive_omitted_patterns)] match self.kind {
ItemKind::MacCall(..) => true,
_ => false,
}matches!(self.kind, ItemKind::MacCall(..))
1306 }
1307 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
1308 match self.kind {
1309 ItemKind::MacCall(mac) => (mac, self.attrs, AddSemicolon::No),
1310 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1311 }
1312 }
1313 fn delegation(&self) -> Option<(&ast::DelegationMac, &ast::Item<Self::ItemKind>)> {
1314 match &self.kind {
1315 ItemKind::DelegationMac(deleg) => Some((deleg, self)),
1316 _ => None,
1317 }
1318 }
1319 fn delegation_item_kind(deleg: Box<ast::Delegation>) -> Self::ItemKind {
1320 ItemKind::Delegation(deleg)
1321 }
1322 fn from_item(item: ast::Item<Self::ItemKind>) -> Self {
1323 Box::new(item)
1324 }
1325 fn flatten_outputs(items: impl Iterator<Item = Self::OutputTy>) -> Self::OutputTy {
1326 items.flatten().collect()
1327 }
1328 fn wrap_flat_map_node_walk_flat_map(
1329 mut node: Self,
1330 collector: &mut InvocationCollector<'_, '_>,
1331 walk_flat_map: impl FnOnce(Self, &mut InvocationCollector<'_, '_>) -> Self::OutputTy,
1332 ) -> Result<Self::OutputTy, Self> {
1333 if !#[allow(non_exhaustive_omitted_patterns)] match node.kind {
ItemKind::Mod(..) => true,
_ => false,
}matches!(node.kind, ItemKind::Mod(..)) {
1334 return Ok(walk_flat_map(node, collector));
1335 }
1336
1337 let ItemKind::Mod(_, ident, ref mut mod_kind) = node.kind else { ::core::panicking::panic("internal error: entered unreachable code")unreachable!() };
1338 let ecx = &mut collector.cx;
1339 let (file_path, dir_path, dir_ownership) = match mod_kind {
1340 ModKind::Loaded(_, inline, _) => {
1341 let (dir_path, dir_ownership) = mod_dir_path(
1343 ecx.sess,
1344 ident,
1345 &node.attrs,
1346 &ecx.current_expansion.module,
1347 ecx.current_expansion.dir_ownership,
1348 *inline,
1349 );
1350 let file_path = match inline {
1353 Inline::Yes => None,
1354 Inline::No { .. } => mod_file_path_from_attr(ecx.sess, &node.attrs, &dir_path),
1355 };
1356 (file_path, dir_path, dir_ownership)
1357 }
1358 ModKind::Unloaded => {
1359 let old_attrs_len = node.attrs.len();
1361 let ParsedExternalMod {
1362 items,
1363 spans,
1364 file_path,
1365 dir_path,
1366 dir_ownership,
1367 had_parse_error,
1368 } = parse_external_mod(
1369 ecx.sess,
1370 ident,
1371 node.span,
1372 &ecx.current_expansion.module,
1373 ecx.current_expansion.dir_ownership,
1374 &mut node.attrs,
1375 );
1376
1377 if let Some(lint_store) = ecx.lint_store {
1378 lint_store.pre_expansion_lint(
1379 ecx.sess,
1380 ecx.ecfg.features,
1381 ecx.resolver.registered_lint_tools(),
1382 ecx.current_expansion.lint_node_id,
1383 &node.attrs,
1384 &items,
1385 ident.name,
1386 );
1387 }
1388
1389 *mod_kind = ModKind::Loaded(items, Inline::No { had_parse_error }, spans);
1390 if node.attrs.len() > old_attrs_len {
1391 return Err(node);
1395 }
1396 (Some(file_path), dir_path, dir_ownership)
1397 }
1398 };
1399
1400 let mut module = ecx.current_expansion.module.with_dir_path(dir_path);
1402 module.mod_path.push(ident);
1403 if let Some(file_path) = file_path {
1404 module.file_path_stack.push(file_path);
1405 }
1406
1407 let orig_module = mem::replace(&mut ecx.current_expansion.module, Rc::new(module));
1408 let orig_dir_ownership =
1409 mem::replace(&mut ecx.current_expansion.dir_ownership, dir_ownership);
1410
1411 let res = Ok(walk_flat_map(node, collector));
1412
1413 collector.cx.current_expansion.dir_ownership = orig_dir_ownership;
1414 collector.cx.current_expansion.module = orig_module;
1415 res
1416 }
1417
1418 fn declared_idents(&self) -> Vec<Ident> {
1419 if let ItemKind::Use(ut) = &self.kind {
1420 fn collect_use_tree_leaves(ut: &ast::UseTree, idents: &mut Vec<Ident>) {
1421 match &ut.kind {
1422 ast::UseTreeKind::Glob(_) => {}
1423 ast::UseTreeKind::Simple(_) => idents.push(ut.ident()),
1424 ast::UseTreeKind::Nested { items, .. } => {
1425 for (ut, _) in items {
1426 collect_use_tree_leaves(ut, idents);
1427 }
1428 }
1429 }
1430 }
1431 let mut idents = Vec::new();
1432 collect_use_tree_leaves(ut, &mut idents);
1433 idents
1434 } else {
1435 self.kind.ident().into_iter().collect()
1436 }
1437 }
1438
1439 fn as_target(&self) -> Target {
1440 Target::from_ast_item(self)
1441 }
1442}
1443
1444struct TraitItemTag;
1445impl InvocationCollectorNode for AstNodeWrapper<Box<ast::AssocItem>, TraitItemTag> {
1446 type OutputTy = SmallVec<[Box<ast::AssocItem>; 1]>;
1447 type ItemKind = AssocItemKind;
1448 const KIND: AstFragmentKind = AstFragmentKind::TraitItems;
1449 fn to_annotatable(self) -> Annotatable {
1450 Annotatable::AssocItem(self.wrapped, AssocCtxt::Trait)
1451 }
1452 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1453 fragment.make_trait_items()
1454 }
1455 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1456 walk_flat_map_assoc_item(collector, self.wrapped, AssocCtxt::Trait)
1457 }
1458 fn is_mac_call(&self) -> bool {
1459 #[allow(non_exhaustive_omitted_patterns)] match self.wrapped.kind {
AssocItemKind::MacCall(..) => true,
_ => false,
}matches!(self.wrapped.kind, AssocItemKind::MacCall(..))
1460 }
1461 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
1462 let item = self.wrapped;
1463 match item.kind {
1464 AssocItemKind::MacCall(mac) => (mac, item.attrs, AddSemicolon::No),
1465 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1466 }
1467 }
1468 fn delegation(&self) -> Option<(&ast::DelegationMac, &ast::Item<Self::ItemKind>)> {
1469 match &self.wrapped.kind {
1470 AssocItemKind::DelegationMac(deleg) => Some((deleg, &self.wrapped)),
1471 _ => None,
1472 }
1473 }
1474 fn delegation_item_kind(deleg: Box<ast::Delegation>) -> Self::ItemKind {
1475 AssocItemKind::Delegation(deleg)
1476 }
1477 fn from_item(item: ast::Item<Self::ItemKind>) -> Self {
1478 AstNodeWrapper::new(Box::new(item), TraitItemTag)
1479 }
1480 fn flatten_outputs(items: impl Iterator<Item = Self::OutputTy>) -> Self::OutputTy {
1481 items.flatten().collect()
1482 }
1483 fn as_target(&self) -> Target {
1484 Target::from_assoc_item_kind(&self.wrapped.kind, AssocCtxt::Trait)
1485 }
1486}
1487
1488struct ImplItemTag;
1489impl InvocationCollectorNode for AstNodeWrapper<Box<ast::AssocItem>, ImplItemTag> {
1490 type OutputTy = SmallVec<[Box<ast::AssocItem>; 1]>;
1491 type ItemKind = AssocItemKind;
1492 const KIND: AstFragmentKind = AstFragmentKind::ImplItems;
1493 fn to_annotatable(self) -> Annotatable {
1494 Annotatable::AssocItem(self.wrapped, AssocCtxt::Impl { of_trait: false })
1495 }
1496 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1497 fragment.make_impl_items()
1498 }
1499 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1500 walk_flat_map_assoc_item(collector, self.wrapped, AssocCtxt::Impl { of_trait: false })
1501 }
1502 fn is_mac_call(&self) -> bool {
1503 #[allow(non_exhaustive_omitted_patterns)] match self.wrapped.kind {
AssocItemKind::MacCall(..) => true,
_ => false,
}matches!(self.wrapped.kind, AssocItemKind::MacCall(..))
1504 }
1505 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
1506 let item = self.wrapped;
1507 match item.kind {
1508 AssocItemKind::MacCall(mac) => (mac, item.attrs, AddSemicolon::No),
1509 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1510 }
1511 }
1512 fn delegation(&self) -> Option<(&ast::DelegationMac, &ast::Item<Self::ItemKind>)> {
1513 match &self.wrapped.kind {
1514 AssocItemKind::DelegationMac(deleg) => Some((deleg, &self.wrapped)),
1515 _ => None,
1516 }
1517 }
1518 fn delegation_item_kind(deleg: Box<ast::Delegation>) -> Self::ItemKind {
1519 AssocItemKind::Delegation(deleg)
1520 }
1521 fn from_item(item: ast::Item<Self::ItemKind>) -> Self {
1522 AstNodeWrapper::new(Box::new(item), ImplItemTag)
1523 }
1524 fn flatten_outputs(items: impl Iterator<Item = Self::OutputTy>) -> Self::OutputTy {
1525 items.flatten().collect()
1526 }
1527 fn as_target(&self) -> Target {
1528 Target::from_assoc_item_kind(&self.wrapped.kind, AssocCtxt::Impl { of_trait: false })
1529 }
1530}
1531
1532struct TraitImplItemTag;
1533impl InvocationCollectorNode for AstNodeWrapper<Box<ast::AssocItem>, TraitImplItemTag> {
1534 type OutputTy = SmallVec<[Box<ast::AssocItem>; 1]>;
1535 type ItemKind = AssocItemKind;
1536 const KIND: AstFragmentKind = AstFragmentKind::TraitImplItems;
1537 fn to_annotatable(self) -> Annotatable {
1538 Annotatable::AssocItem(self.wrapped, AssocCtxt::Impl { of_trait: true })
1539 }
1540 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1541 fragment.make_trait_impl_items()
1542 }
1543 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1544 walk_flat_map_assoc_item(collector, self.wrapped, AssocCtxt::Impl { of_trait: true })
1545 }
1546 fn is_mac_call(&self) -> bool {
1547 #[allow(non_exhaustive_omitted_patterns)] match self.wrapped.kind {
AssocItemKind::MacCall(..) => true,
_ => false,
}matches!(self.wrapped.kind, AssocItemKind::MacCall(..))
1548 }
1549 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
1550 let item = self.wrapped;
1551 match item.kind {
1552 AssocItemKind::MacCall(mac) => (mac, item.attrs, AddSemicolon::No),
1553 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1554 }
1555 }
1556 fn delegation(&self) -> Option<(&ast::DelegationMac, &ast::Item<Self::ItemKind>)> {
1557 match &self.wrapped.kind {
1558 AssocItemKind::DelegationMac(deleg) => Some((deleg, &self.wrapped)),
1559 _ => None,
1560 }
1561 }
1562 fn delegation_item_kind(deleg: Box<ast::Delegation>) -> Self::ItemKind {
1563 AssocItemKind::Delegation(deleg)
1564 }
1565 fn from_item(item: ast::Item<Self::ItemKind>) -> Self {
1566 AstNodeWrapper::new(Box::new(item), TraitImplItemTag)
1567 }
1568 fn flatten_outputs(items: impl Iterator<Item = Self::OutputTy>) -> Self::OutputTy {
1569 items.flatten().collect()
1570 }
1571 fn as_target(&self) -> Target {
1572 Target::from_assoc_item_kind(&self.wrapped.kind, AssocCtxt::Impl { of_trait: true })
1573 }
1574}
1575
1576impl InvocationCollectorNode for Box<ast::ForeignItem> {
1577 const KIND: AstFragmentKind = AstFragmentKind::ForeignItems;
1578 fn to_annotatable(self) -> Annotatable {
1579 Annotatable::ForeignItem(self)
1580 }
1581 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1582 fragment.make_foreign_items()
1583 }
1584 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1585 walk_flat_map_foreign_item(collector, self)
1586 }
1587 fn is_mac_call(&self) -> bool {
1588 #[allow(non_exhaustive_omitted_patterns)] match self.kind {
ForeignItemKind::MacCall(..) => true,
_ => false,
}matches!(self.kind, ForeignItemKind::MacCall(..))
1589 }
1590 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
1591 match self.kind {
1592 ForeignItemKind::MacCall(mac) => (mac, self.attrs, AddSemicolon::No),
1593 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1594 }
1595 }
1596 fn as_target(&self) -> Target {
1597 match &self.kind {
1598 ForeignItemKind::Static(_) => Target::ForeignStatic,
1599 ForeignItemKind::Fn(_) => Target::ForeignFn,
1600 ForeignItemKind::TyAlias(_) => Target::ForeignTy,
1601 ForeignItemKind::MacCall(_) => Target::MacroCall,
1602 }
1603 }
1604}
1605
1606impl InvocationCollectorNode for ast::Variant {
1607 const KIND: AstFragmentKind = AstFragmentKind::Variants;
1608 fn to_annotatable(self) -> Annotatable {
1609 Annotatable::Variant(self)
1610 }
1611 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1612 fragment.make_variants()
1613 }
1614 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1615 walk_flat_map_variant(collector, self)
1616 }
1617 fn as_target(&self) -> Target {
1618 Target::Variant
1619 }
1620}
1621
1622impl InvocationCollectorNode for ast::WherePredicate {
1623 const KIND: AstFragmentKind = AstFragmentKind::WherePredicates;
1624 fn to_annotatable(self) -> Annotatable {
1625 Annotatable::WherePredicate(self)
1626 }
1627 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1628 fragment.make_where_predicates()
1629 }
1630 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1631 walk_flat_map_where_predicate(collector, self)
1632 }
1633 fn as_target(&self) -> Target {
1634 Target::WherePredicate
1635 }
1636}
1637
1638impl InvocationCollectorNode for ast::FieldDef {
1639 const KIND: AstFragmentKind = AstFragmentKind::FieldDefs;
1640 fn to_annotatable(self) -> Annotatable {
1641 Annotatable::FieldDef(self)
1642 }
1643 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1644 fragment.make_field_defs()
1645 }
1646 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1647 walk_flat_map_field_def(collector, self)
1648 }
1649 fn as_target(&self) -> Target {
1650 Target::Field
1651 }
1652}
1653
1654impl InvocationCollectorNode for ast::PatField {
1655 const KIND: AstFragmentKind = AstFragmentKind::PatFields;
1656 fn to_annotatable(self) -> Annotatable {
1657 Annotatable::PatField(self)
1658 }
1659 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1660 fragment.make_pat_fields()
1661 }
1662 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1663 walk_flat_map_pat_field(collector, self)
1664 }
1665 fn as_target(&self) -> Target {
1666 Target::PatField
1667 }
1668}
1669
1670impl InvocationCollectorNode for ast::ExprField {
1671 const KIND: AstFragmentKind = AstFragmentKind::ExprFields;
1672 fn to_annotatable(self) -> Annotatable {
1673 Annotatable::ExprField(self)
1674 }
1675 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1676 fragment.make_expr_fields()
1677 }
1678 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1679 walk_flat_map_expr_field(collector, self)
1680 }
1681 fn as_target(&self) -> Target {
1682 Target::ExprField
1683 }
1684}
1685
1686impl InvocationCollectorNode for ast::Param {
1687 const KIND: AstFragmentKind = AstFragmentKind::Params;
1688 fn to_annotatable(self) -> Annotatable {
1689 Annotatable::Param(self)
1690 }
1691 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1692 fragment.make_params()
1693 }
1694 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1695 walk_flat_map_param(collector, self)
1696 }
1697 fn as_target(&self) -> Target {
1698 Target::Param
1699 }
1700}
1701
1702impl InvocationCollectorNode for ast::GenericParam {
1703 const KIND: AstFragmentKind = AstFragmentKind::GenericParams;
1704 fn to_annotatable(self) -> Annotatable {
1705 Annotatable::GenericParam(self)
1706 }
1707 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1708 fragment.make_generic_params()
1709 }
1710 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1711 walk_flat_map_generic_param(collector, self)
1712 }
1713 fn as_target(&self) -> Target {
1714 let mut has_default = false;
1715 Target::GenericParam {
1716 kind: match &self.kind {
1717 rustc_ast::GenericParamKind::Lifetime => {
1718 rustc_hir::target::GenericParamKind::Lifetime
1719 }
1720 rustc_ast::GenericParamKind::Type { default } => {
1721 has_default = default.is_some();
1722 rustc_hir::target::GenericParamKind::Type
1723 }
1724 rustc_ast::GenericParamKind::Const { default, .. } => {
1725 has_default = default.is_some();
1726 rustc_hir::target::GenericParamKind::Const
1727 }
1728 },
1729 has_default,
1730 }
1731 }
1732}
1733
1734impl InvocationCollectorNode for ast::Arm {
1735 const KIND: AstFragmentKind = AstFragmentKind::Arms;
1736 fn to_annotatable(self) -> Annotatable {
1737 Annotatable::Arm(self)
1738 }
1739 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1740 fragment.make_arms()
1741 }
1742 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1743 walk_flat_map_arm(collector, self)
1744 }
1745 fn as_target(&self) -> Target {
1746 Target::Arm
1747 }
1748}
1749
1750impl InvocationCollectorNode for ast::Stmt {
1751 const KIND: AstFragmentKind = AstFragmentKind::Stmts;
1752 fn to_annotatable(self) -> Annotatable {
1753 Annotatable::Stmt(Box::new(self))
1754 }
1755 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1756 fragment.make_stmts()
1757 }
1758 fn walk_flat_map(self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1759 walk_flat_map_stmt(collector, self)
1760 }
1761 fn is_mac_call(&self) -> bool {
1762 match &self.kind {
1763 StmtKind::MacCall(..) => true,
1764 StmtKind::Item(item) => #[allow(non_exhaustive_omitted_patterns)] match item.kind {
ItemKind::MacCall(..) => true,
_ => false,
}matches!(item.kind, ItemKind::MacCall(..)),
1765 StmtKind::Semi(expr) => #[allow(non_exhaustive_omitted_patterns)] match expr.kind {
ExprKind::MacCall(..) => true,
_ => false,
}matches!(expr.kind, ExprKind::MacCall(..)),
1766 StmtKind::Expr(..) => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1767 StmtKind::Let(..) | StmtKind::Empty => false,
1768 }
1769 }
1770 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
1771 let (add_semicolon, mac, attrs) = match self.kind {
1774 StmtKind::MacCall(mac) => {
1775 let ast::MacCallStmt { mac, style, attrs, .. } = *mac;
1776 (style == MacStmtStyle::Semicolon, mac, attrs)
1777 }
1778 StmtKind::Item(item) => match *item {
1779 ast::Item { kind: ItemKind::MacCall(mac), attrs, .. } => {
1780 (mac.args.need_semicolon(), mac, attrs)
1781 }
1782 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1783 },
1784 StmtKind::Semi(expr) => match *expr {
1785 ast::Expr { kind: ExprKind::MacCall(mac), attrs, .. } => {
1786 (mac.args.need_semicolon(), mac, attrs)
1787 }
1788 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1789 },
1790 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1791 };
1792 (mac, attrs, if add_semicolon { AddSemicolon::Yes } else { AddSemicolon::No })
1793 }
1794 fn delegation(&self) -> Option<(&ast::DelegationMac, &ast::Item<Self::ItemKind>)> {
1795 match &self.kind {
1796 StmtKind::Item(item) => match &item.kind {
1797 ItemKind::DelegationMac(deleg) => Some((deleg, item)),
1798 _ => None,
1799 },
1800 _ => None,
1801 }
1802 }
1803 fn delegation_item_kind(deleg: Box<ast::Delegation>) -> Self::ItemKind {
1804 ItemKind::Delegation(deleg)
1805 }
1806 fn from_item(item: ast::Item<Self::ItemKind>) -> Self {
1807 ast::Stmt { id: ast::DUMMY_NODE_ID, span: item.span, kind: StmtKind::Item(Box::new(item)) }
1808 }
1809 fn flatten_outputs(items: impl Iterator<Item = Self::OutputTy>) -> Self::OutputTy {
1810 items.flatten().collect()
1811 }
1812 fn post_flat_map_node_collect_bang(stmts: &mut Self::OutputTy, add_semicolon: AddSemicolon) {
1813 if #[allow(non_exhaustive_omitted_patterns)] match add_semicolon {
AddSemicolon::Yes => true,
_ => false,
}matches!(add_semicolon, AddSemicolon::Yes) {
1816 if let Some(stmt) = stmts.pop() {
1817 stmts.push(stmt.add_trailing_semicolon());
1818 }
1819 }
1820 }
1821 fn as_target(&self) -> Target {
1822 Target::Statement
1823 }
1824}
1825
1826impl InvocationCollectorNode for ast::Crate {
1827 type OutputTy = ast::Crate;
1828 const KIND: AstFragmentKind = AstFragmentKind::Crate;
1829 fn to_annotatable(self) -> Annotatable {
1830 Annotatable::Crate(self)
1831 }
1832 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1833 fragment.make_crate()
1834 }
1835 fn walk(&mut self, collector: &mut InvocationCollector<'_, '_>) {
1836 walk_crate(collector, self)
1837 }
1838 fn expand_cfg_false(
1839 &mut self,
1840 collector: &mut InvocationCollector<'_, '_>,
1841 pos: usize,
1842 _span: Span,
1843 ) {
1844 self.attrs.truncate(pos);
1847 self.items.truncate(collector.cx.num_standard_library_imports);
1849 }
1850 fn as_target(&self) -> Target {
1851 Target::Crate
1852 }
1853}
1854
1855impl InvocationCollectorNode for ast::Ty {
1856 type OutputTy = Box<ast::Ty>;
1857 const KIND: AstFragmentKind = AstFragmentKind::Ty;
1858 fn to_annotatable(self) -> Annotatable {
1859 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
1860 }
1861 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1862 fragment.make_ty()
1863 }
1864 fn walk(&mut self, collector: &mut InvocationCollector<'_, '_>) {
1865 if let ast::TyKind::ImplTrait(..) = self.kind {
1868 let name = Symbol::intern(&pprust::ty_to_string(self).replace('\n', " "));
1873 collector.cx.resolver.insert_impl_trait_name(self.id, name);
1874 }
1875 walk_ty(collector, self)
1876 }
1877 fn is_mac_call(&self) -> bool {
1878 #[allow(non_exhaustive_omitted_patterns)] match self.kind {
ast::TyKind::MacCall(..) => true,
_ => false,
}matches!(self.kind, ast::TyKind::MacCall(..))
1879 }
1880 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
1881 match self.kind {
1882 TyKind::MacCall(mac) => (mac, AttrVec::new(), AddSemicolon::No),
1883 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1884 }
1885 }
1886 fn as_target(&self) -> Target {
1887 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
1889 }
1890}
1891
1892impl InvocationCollectorNode for ast::Pat {
1893 type OutputTy = Box<ast::Pat>;
1894 const KIND: AstFragmentKind = AstFragmentKind::Pat;
1895 fn to_annotatable(self) -> Annotatable {
1896 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
1897 }
1898 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1899 fragment.make_pat()
1900 }
1901 fn walk(&mut self, collector: &mut InvocationCollector<'_, '_>) {
1902 walk_pat(collector, self)
1903 }
1904 fn is_mac_call(&self) -> bool {
1905 #[allow(non_exhaustive_omitted_patterns)] match self.kind {
PatKind::MacCall(..) => true,
_ => false,
}matches!(self.kind, PatKind::MacCall(..))
1906 }
1907 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
1908 match self.kind {
1909 PatKind::MacCall(mac) => (mac, AttrVec::new(), AddSemicolon::No),
1910 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1911 }
1912 }
1913 fn as_target(&self) -> Target {
1914 ::core::panicking::panic("not implemented");unimplemented!();
1915 }
1916}
1917
1918impl InvocationCollectorNode for ast::Expr {
1919 type OutputTy = Box<ast::Expr>;
1920 const KIND: AstFragmentKind = AstFragmentKind::Expr;
1921 fn to_annotatable(self) -> Annotatable {
1922 Annotatable::Expr(Box::new(self))
1923 }
1924 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1925 fragment.make_expr()
1926 }
1927 fn descr() -> &'static str {
1928 "an expression"
1929 }
1930 fn walk(&mut self, collector: &mut InvocationCollector<'_, '_>) {
1931 walk_expr(collector, self)
1932 }
1933 fn is_mac_call(&self) -> bool {
1934 #[allow(non_exhaustive_omitted_patterns)] match self.kind {
ExprKind::MacCall(..) => true,
_ => false,
}matches!(self.kind, ExprKind::MacCall(..))
1935 }
1936 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
1937 match self.kind {
1938 ExprKind::MacCall(mac) => (mac, self.attrs, AddSemicolon::No),
1939 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1940 }
1941 }
1942 fn as_target(&self) -> Target {
1943 Target::Expression
1944 }
1945}
1946
1947struct OptExprTag;
1948impl InvocationCollectorNode for AstNodeWrapper<Box<ast::Expr>, OptExprTag> {
1949 type OutputTy = Option<Box<ast::Expr>>;
1950 const KIND: AstFragmentKind = AstFragmentKind::OptExpr;
1951 fn to_annotatable(self) -> Annotatable {
1952 Annotatable::Expr(self.wrapped)
1953 }
1954 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1955 fragment.make_opt_expr()
1956 }
1957 fn walk_flat_map(mut self, collector: &mut InvocationCollector<'_, '_>) -> Self::OutputTy {
1958 walk_expr(collector, &mut self.wrapped);
1959 Some(self.wrapped)
1960 }
1961 fn is_mac_call(&self) -> bool {
1962 #[allow(non_exhaustive_omitted_patterns)] match self.wrapped.kind {
ast::ExprKind::MacCall(..) => true,
_ => false,
}matches!(self.wrapped.kind, ast::ExprKind::MacCall(..))
1963 }
1964 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
1965 let node = self.wrapped;
1966 match node.kind {
1967 ExprKind::MacCall(mac) => (mac, node.attrs, AddSemicolon::No),
1968 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1969 }
1970 }
1971 fn pre_flat_map_node_collect_attr(cfg: &StripUnconfigured<'_>, attr: &ast::Attribute) {
1972 cfg.maybe_emit_expr_attr_err(attr);
1973 }
1974 fn as_target(&self) -> Target {
1975 Target::Expression
1976 }
1977}
1978
1979struct MethodReceiverTag;
1982
1983impl InvocationCollectorNode for AstNodeWrapper<ast::Expr, MethodReceiverTag> {
1984 type OutputTy = AstNodeWrapper<Box<ast::Expr>, MethodReceiverTag>;
1985 const KIND: AstFragmentKind = AstFragmentKind::MethodReceiverExpr;
1986 fn descr() -> &'static str {
1987 "an expression"
1988 }
1989 fn to_annotatable(self) -> Annotatable {
1990 Annotatable::Expr(Box::new(self.wrapped))
1991 }
1992 fn fragment_to_output(fragment: AstFragment) -> Self::OutputTy {
1993 AstNodeWrapper::new(fragment.make_method_receiver_expr(), MethodReceiverTag)
1994 }
1995 fn walk(&mut self, collector: &mut InvocationCollector<'_, '_>) {
1996 walk_expr(collector, &mut self.wrapped)
1997 }
1998 fn is_mac_call(&self) -> bool {
1999 #[allow(non_exhaustive_omitted_patterns)] match self.wrapped.kind {
ast::ExprKind::MacCall(..) => true,
_ => false,
}matches!(self.wrapped.kind, ast::ExprKind::MacCall(..))
2000 }
2001 fn take_mac_call(self) -> (Box<ast::MacCall>, ast::AttrVec, AddSemicolon) {
2002 let node = self.wrapped;
2003 match node.kind {
2004 ExprKind::MacCall(mac) => (mac, node.attrs, AddSemicolon::No),
2005 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
2006 }
2007 }
2008 fn as_target(&self) -> Target {
2009 Target::Expression
2010 }
2011}
2012
2013fn build_single_delegations<'a, Node: InvocationCollectorNode>(
2014 ecx: &ExtCtxt<'_>,
2015 deleg: &'a ast::DelegationMac,
2016 item: &'a ast::Item<Node::ItemKind>,
2017 suffixes: &'a [(Ident, Option<Ident>)],
2018 item_span: Span,
2019 source: DelegationSource,
2020) -> impl Iterator<Item = ast::Item<Node::ItemKind>> + 'a {
2021 if true {
{
match (&source, &DelegationSource::Single) {
(left_val, right_val) => {
if *left_val == *right_val {
let kind = ::core::panicking::AssertKind::Ne;
::core::panicking::assert_failed(kind, &*left_val,
&*right_val, ::core::option::Option::None);
}
}
}
};
};debug_assert_ne!(source, DelegationSource::Single);
2022
2023 let from_glob = source == DelegationSource::Glob;
2024
2025 if suffixes.is_empty() {
2026 let kind = String::from(if from_glob { "glob" } else { "list" });
2029 ecx.dcx().emit_err(EmptyDelegationMac { span: item.span, kind });
2030 }
2031
2032 suffixes.iter().map(move |&(ident, rename)| {
2033 let mut path = deleg.prefix.clone();
2034 path.segments.push(ast::PathSegment { ident, id: ast::DUMMY_NODE_ID, args: None });
2035
2036 ast::Item {
2037 attrs: item.attrs.clone(),
2038 id: ast::DUMMY_NODE_ID,
2039 span: if from_glob { item_span } else { ident.span },
2040 vis: item.vis.clone(),
2041 kind: Node::delegation_item_kind(Box::new(ast::Delegation {
2042 id: ast::DUMMY_NODE_ID,
2043 qself: deleg.qself.clone(),
2044 path,
2045 ident: rename.unwrap_or(ident),
2046 rename,
2047 body: deleg.body.clone(),
2048 source,
2049 })),
2050 tokens: None,
2051 }
2052 })
2053}
2054
2055trait DummyAstNode {
2057 fn dummy() -> Self;
2058}
2059
2060impl DummyAstNode for ast::Crate {
2061 fn dummy() -> Self {
2062 ast::Crate {
2063 attrs: Default::default(),
2064 items: Default::default(),
2065 spans: Default::default(),
2066 id: DUMMY_NODE_ID,
2067 is_placeholder: Default::default(),
2068 }
2069 }
2070}
2071
2072impl DummyAstNode for ast::Ty {
2073 fn dummy() -> Self {
2074 ast::Ty { id: DUMMY_NODE_ID, kind: TyKind::Dummy, span: Default::default() }
2075 }
2076}
2077
2078impl DummyAstNode for ast::Pat {
2079 fn dummy() -> Self {
2080 ast::Pat { id: DUMMY_NODE_ID, kind: PatKind::Wild, span: Default::default() }
2081 }
2082}
2083
2084impl DummyAstNode for ast::Expr {
2085 fn dummy() -> Self {
2086 ast::Expr::dummy()
2087 }
2088}
2089
2090impl DummyAstNode for AstNodeWrapper<ast::Expr, MethodReceiverTag> {
2091 fn dummy() -> Self {
2092 AstNodeWrapper::new(ast::Expr::dummy(), MethodReceiverTag)
2093 }
2094}
2095
2096struct InvocationCollector<'a, 'b> {
2097 cx: &'a mut ExtCtxt<'b>,
2098 invocations: Vec<(Invocation, Option<Arc<SyntaxExtension>>)>,
2099 monotonic: bool,
2100}
2101
2102impl<'a, 'b> InvocationCollector<'a, 'b> {
2103 fn cfg(&self) -> StripUnconfigured<'_> {
2104 StripUnconfigured {
2105 sess: self.cx.sess,
2106 features: Some(self.cx.ecfg.features),
2107 config_tokens: false,
2108 lint_node_id: self.cx.current_expansion.lint_node_id,
2109 }
2110 }
2111
2112 fn collect(&mut self, fragment_kind: AstFragmentKind, kind: InvocationKind) -> AstFragment {
2113 let expn_id = LocalExpnId::fresh_empty();
2114 if #[allow(non_exhaustive_omitted_patterns)] match kind {
InvocationKind::GlobDelegation { .. } => true,
_ => false,
}matches!(kind, InvocationKind::GlobDelegation { .. }) {
2115 self.cx.resolver.register_glob_delegation(expn_id);
2118 }
2119 let vis = kind.placeholder_visibility();
2120 self.invocations.push((
2121 Invocation {
2122 kind,
2123 fragment_kind,
2124 expansion_data: ExpansionData {
2125 id: expn_id,
2126 depth: self.cx.current_expansion.depth + 1,
2127 ..self.cx.current_expansion.clone()
2128 },
2129 },
2130 None,
2131 ));
2132 placeholder(fragment_kind, NodeId::placeholder_from_expn_id(expn_id), vis)
2133 }
2134
2135 fn collect_bang(&mut self, mac: Box<ast::MacCall>, kind: AstFragmentKind) -> AstFragment {
2136 let span = mac.span();
2139 self.collect(kind, InvocationKind::Bang { mac, span })
2140 }
2141
2142 fn collect_attr(
2143 &mut self,
2144 (attr, pos, derives): (ast::Attribute, usize, Vec<ast::Path>),
2145 item: Annotatable,
2146 kind: AstFragmentKind,
2147 ) -> AstFragment {
2148 self.collect(kind, InvocationKind::Attr { attr, pos, item, derives })
2149 }
2150
2151 fn collect_glob_delegation(
2152 &mut self,
2153 item: Box<ast::AssocItem>,
2154 of_trait: bool,
2155 kind: AstFragmentKind,
2156 ) -> AstFragment {
2157 self.collect(kind, InvocationKind::GlobDelegation { item, of_trait })
2158 }
2159
2160 fn take_first_attr(
2164 &self,
2165 item: &mut impl HasAttrs,
2166 ) -> Option<(ast::Attribute, usize, Vec<ast::Path>)> {
2167 let mut attr = None;
2168
2169 let mut cfg_pos = None;
2170 let mut attr_pos = None;
2171 for (pos, attr) in item.attrs().iter().enumerate() {
2172 if let AttrKind::Normal(..) = attr.kind
2173 && !self.cx.expanded_inert_attrs.is_marked(attr)
2174 {
2175 let name = attr.name();
2176 if name == Some(sym::cfg) || name == Some(sym::cfg_attr) {
2177 cfg_pos = Some(pos); break;
2179 } else if attr_pos.is_none()
2180 && !name.is_some_and(rustc_feature::is_builtin_attr_name)
2181 {
2182 attr_pos = Some(pos); }
2184 }
2185 }
2186
2187 item.visit_attrs(|attrs| {
2188 attr = Some(match (cfg_pos, attr_pos) {
2189 (Some(pos), _) => (attrs.remove(pos), pos, Vec::new()),
2190 (_, Some(pos)) => {
2191 let attr = attrs.remove(pos);
2192 let following_derives = attrs[pos..]
2193 .iter()
2194 .filter(|a| a.has_name(sym::derive))
2195 .flat_map(|a| a.meta_item_list().unwrap_or_default())
2196 .filter_map(|meta_item_inner| match meta_item_inner {
2197 MetaItemInner::MetaItem(ast::MetaItem {
2198 kind: MetaItemKind::Word,
2199 path,
2200 ..
2201 }) => Some(path),
2202 _ => None,
2203 })
2204 .collect();
2205
2206 (attr, pos, following_derives)
2207 }
2208 _ => return,
2209 });
2210 });
2211
2212 attr
2213 }
2214
2215 fn check_attributes(&self, attrs: &[ast::Attribute], call: &ast::MacCall) {
2218 use SyntheticAttr::*;
2219 let features = self.cx.ecfg.features;
2220 let mut attrs = attrs.iter().peekable();
2221 let mut span: Option<Span> = None;
2222 while let Some(attr) = attrs.next() {
2223 rustc_ast_passes::feature_gate::check_attribute(attr, self.cx.sess, features);
2224 validate_attr::check_attr(&self.cx.sess.psess, attr);
2225 AttributeParser::parse_limited_all(
2226 self.cx.sess,
2227 slice::from_ref(attr),
2228 None,
2229 Target::MacroCall,
2230 call.span(),
2231 self.cx.current_expansion.lint_node_id,
2232 Some(self.cx.ecfg.features),
2233 ShouldEmit::ErrorsAndLints { recovery: Recovery::Allowed },
2234 Some(self.cx.resolver.registered_attr_tools()),
2235 );
2236
2237 let current_span = if let Some(sp) = span { sp.to(attr.span) } else { attr.span };
2238 span = Some(current_span);
2239
2240 if attrs.peek().is_some_and(|next_attr| next_attr.doc_str().is_some()) {
2241 continue;
2242 }
2243
2244 if attr.doc_str_and_fragment_kind().is_some() {
2245 self.cx.sess.psess.buffer_lint(
2246 UNUSED_DOC_COMMENTS,
2247 current_span,
2248 self.cx.current_expansion.lint_node_id,
2249 crate::diagnostics::MacroCallUnusedDocComment { span: attr.span },
2250 );
2251 continue;
2252 }
2253
2254 match &attr.kind {
2255 AttrKind::Normal(normal)
2256 if rustc_attr_parsing::is_builtin_attr(&normal.item)
2257 && !AttributeParser::is_parsed_attribute(&attr.path()) =>
2258 {
2259 let attr_name = attr.name().unwrap();
2260 self.cx.sess.psess.buffer_lint(
2261 UNUSED_ATTRIBUTES,
2262 attr.span,
2263 self.cx.current_expansion.lint_node_id,
2264 crate::diagnostics::UnusedBuiltinAttribute {
2265 attr_name,
2266 macro_name: pprust::path_to_string(&call.path),
2267 invoc_span: call.path.span,
2268 attr_span: attr.span,
2269 },
2270 );
2271 }
2272 AttrKind::Normal(_) => {}
2273 AttrKind::Synthetic(CfgTrace(_) | CfgAttrTrace(_)) => {}
2274 AttrKind::DocComment(..) => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(), }
2276 }
2277 }
2278
2279 fn expand_cfg_true(
2280 &mut self,
2281 node: &mut impl InvocationCollectorNode,
2282 attr: ast::Attribute,
2283 pos: usize,
2284 ) -> EvalConfigResult {
2285 let Some(cfg) = AttributeParser::parse_single(
2286 self.cfg().sess,
2287 &attr,
2288 attr.span,
2289 self.cfg().lint_node_id,
2290 node.as_target(),
2291 self.cfg().features,
2292 ShouldEmit::ErrorsAndLints { recovery: Recovery::Allowed },
2293 parse_cfg,
2294 &CFG_TEMPLATE,
2295 AllowExprMetavar::Yes,
2296 AttributeSafety::Normal,
2297 ) else {
2298 return EvalConfigResult::True;
2300 };
2301
2302 let res = eval_config_entry(self.cfg().sess, &cfg);
2303 if res.as_bool() {
2304 let trace_attr = attr.convert_normal_to_synthetic(SyntheticAttr::CfgTrace(cfg));
2307 node.visit_attrs(|attrs| attrs.insert(pos, trace_attr));
2308 }
2309
2310 res
2311 }
2312
2313 fn expand_cfg_attr(&self, node: &mut impl HasAttrs, attr: &ast::Attribute, pos: usize) {
2314 node.visit_attrs(|attrs| {
2315 for cfg in self.cfg().expand_cfg_attr(attr, false).into_iter().rev() {
2318 attrs.insert(pos, cfg)
2319 }
2320 });
2321 }
2322
2323 fn flat_map_node<Node: InvocationCollectorNode<OutputTy: Default>>(
2324 &mut self,
2325 mut node: Node,
2326 ) -> Node::OutputTy {
2327 loop {
2328 return match self.take_first_attr(&mut node) {
2329 Some((attr, pos, derives)) => match attr.name() {
2330 Some(sym::cfg) => {
2331 let res = self.expand_cfg_true(&mut node, attr, pos);
2332 match res {
2333 EvalConfigResult::True => continue,
2334 EvalConfigResult::False { reason, reason_span } => {
2335 for ident in node.declared_idents() {
2336 self.cx.resolver.append_stripped_cfg_item(
2337 self.cx.current_expansion.lint_node_id,
2338 ident,
2339 reason.clone(),
2340 reason_span,
2341 )
2342 }
2343 }
2344 }
2345
2346 Default::default()
2347 }
2348 Some(sym::cfg_attr) => {
2349 self.expand_cfg_attr(&mut node, &attr, pos);
2350 continue;
2351 }
2352 _ => {
2353 Node::pre_flat_map_node_collect_attr(&self.cfg(), &attr);
2354 self.collect_attr((attr, pos, derives), node.to_annotatable(), Node::KIND)
2355 .make_ast::<Node>()
2356 }
2357 },
2358 None if node.is_mac_call() => {
2359 let (mac, attrs, add_semicolon) = node.take_mac_call();
2360 self.check_attributes(&attrs, &mac);
2361 let mut res = self.collect_bang(mac, Node::KIND).make_ast::<Node>();
2362 Node::post_flat_map_node_collect_bang(&mut res, add_semicolon);
2363 res
2364 }
2365 None if let Some((deleg, item)) = node.delegation() => {
2366 let DelegationSuffixes::List(suffixes) = &deleg.suffixes else {
2367 let traitless_qself =
2368 #[allow(non_exhaustive_omitted_patterns)] match &deleg.qself {
Some(qself) if qself.position == 0 => true,
_ => false,
}matches!(&deleg.qself, Some(qself) if qself.position == 0);
2369 let (item, of_trait) = match node.to_annotatable() {
2370 Annotatable::AssocItem(item, AssocCtxt::Impl { of_trait }) => {
2371 (item, of_trait)
2372 }
2373 ann @ (Annotatable::Item(_)
2374 | Annotatable::AssocItem(..)
2375 | Annotatable::Stmt(_)) => {
2376 let span = ann.span();
2377 self.cx.dcx().emit_err(GlobDelegationOutsideImpls { span });
2378 return Default::default();
2379 }
2380 _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
2381 };
2382 if traitless_qself {
2383 let span = item.span;
2384 self.cx.dcx().emit_err(GlobDelegationTraitlessQpath { span });
2385 return Default::default();
2386 }
2387 return self
2388 .collect_glob_delegation(item, of_trait, Node::KIND)
2389 .make_ast::<Node>();
2390 };
2391
2392 let single_delegations = build_single_delegations::<Node>(
2393 self.cx,
2394 deleg,
2395 item,
2396 suffixes,
2397 item.span,
2398 DelegationSource::List(LocalExpnId::fresh_empty()),
2399 );
2400 Node::flatten_outputs(single_delegations.map(|item| {
2401 let mut item = Node::from_item(item);
2402 {
let old_id = self.cx.current_expansion.lint_node_id;
if self.monotonic {
if true {
{
match (&*item.node_id_mut(), &ast::DUMMY_NODE_ID) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val,
&*right_val, ::core::option::Option::None);
}
}
}
};
};
let new_id = self.cx.resolver.next_node_id();
*item.node_id_mut() = new_id;
self.cx.current_expansion.lint_node_id = new_id;
}
let ret = (|| item.walk_flat_map(self))();
self.cx.current_expansion.lint_node_id = old_id;
ret
}assign_id!(self, item.node_id_mut(), || item.walk_flat_map(self))
2403 }))
2404 }
2405 None => {
2406 match Node::wrap_flat_map_node_walk_flat_map(node, self, |mut node, this| {
2407 {
let old_id = this.cx.current_expansion.lint_node_id;
if this.monotonic {
if true {
{
match (&*node.node_id_mut(), &ast::DUMMY_NODE_ID) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val,
&*right_val, ::core::option::Option::None);
}
}
}
};
};
let new_id = this.cx.resolver.next_node_id();
*node.node_id_mut() = new_id;
this.cx.current_expansion.lint_node_id = new_id;
}
let ret = (|| node.walk_flat_map(this))();
this.cx.current_expansion.lint_node_id = old_id;
ret
}assign_id!(this, node.node_id_mut(), || node.walk_flat_map(this))
2408 }) {
2409 Ok(output) => output,
2410 Err(returned_node) => {
2411 node = returned_node;
2412 continue;
2413 }
2414 }
2415 }
2416 };
2417 }
2418 }
2419
2420 fn visit_node<Node: InvocationCollectorNode<OutputTy: Into<Node>> + DummyAstNode>(
2421 &mut self,
2422 node: &mut Node,
2423 ) {
2424 loop {
2425 return match self.take_first_attr(node) {
2426 Some((attr, pos, derives)) => match attr.name() {
2427 Some(sym::cfg) => {
2428 let span = attr.span;
2429 if self.expand_cfg_true(node, attr, pos).as_bool() {
2430 continue;
2431 }
2432
2433 node.expand_cfg_false(self, pos, span);
2434 continue;
2435 }
2436 Some(sym::cfg_attr) => {
2437 self.expand_cfg_attr(node, &attr, pos);
2438 continue;
2439 }
2440 _ => {
2441 let n = mem::replace(node, Node::dummy());
2442 *node = self
2443 .collect_attr((attr, pos, derives), n.to_annotatable(), Node::KIND)
2444 .make_ast::<Node>()
2445 .into()
2446 }
2447 },
2448 None if node.is_mac_call() => {
2449 let n = mem::replace(node, Node::dummy());
2450 let (mac, attrs, _) = n.take_mac_call();
2451 self.check_attributes(&attrs, &mac);
2452
2453 *node = self.collect_bang(mac, Node::KIND).make_ast::<Node>().into()
2454 }
2455 None if node.delegation().is_some() => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
2456 None => {
2457 {
let old_id = self.cx.current_expansion.lint_node_id;
if self.monotonic {
if true {
{
match (&*node.node_id_mut(), &ast::DUMMY_NODE_ID) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val,
&*right_val, ::core::option::Option::None);
}
}
}
};
};
let new_id = self.cx.resolver.next_node_id();
*node.node_id_mut() = new_id;
self.cx.current_expansion.lint_node_id = new_id;
}
let ret = (|| node.walk(self))();
self.cx.current_expansion.lint_node_id = old_id;
ret
}assign_id!(self, node.node_id_mut(), || node.walk(self))
2458 }
2459 };
2460 }
2461 }
2462}
2463
2464impl<'a, 'b> MutVisitor for InvocationCollector<'a, 'b> {
2465 fn flat_map_item(&mut self, node: Box<ast::Item>) -> SmallVec<[Box<ast::Item>; 1]> {
2466 self.flat_map_node(node)
2467 }
2468
2469 fn flat_map_assoc_item(
2470 &mut self,
2471 node: Box<ast::AssocItem>,
2472 ctxt: AssocCtxt,
2473 ) -> SmallVec<[Box<ast::AssocItem>; 1]> {
2474 match ctxt {
2475 AssocCtxt::Trait => self.flat_map_node(AstNodeWrapper::new(node, TraitItemTag)),
2476 AssocCtxt::Impl { of_trait: false, .. } => {
2477 self.flat_map_node(AstNodeWrapper::new(node, ImplItemTag))
2478 }
2479 AssocCtxt::Impl { of_trait: true, .. } => {
2480 self.flat_map_node(AstNodeWrapper::new(node, TraitImplItemTag))
2481 }
2482 }
2483 }
2484
2485 fn flat_map_foreign_item(
2486 &mut self,
2487 node: Box<ast::ForeignItem>,
2488 ) -> SmallVec<[Box<ast::ForeignItem>; 1]> {
2489 self.flat_map_node(node)
2490 }
2491
2492 fn flat_map_variant(&mut self, node: ast::Variant) -> SmallVec<[ast::Variant; 1]> {
2493 self.flat_map_node(node)
2494 }
2495
2496 fn flat_map_where_predicate(
2497 &mut self,
2498 node: ast::WherePredicate,
2499 ) -> SmallVec<[ast::WherePredicate; 1]> {
2500 self.flat_map_node(node)
2501 }
2502
2503 fn flat_map_field_def(&mut self, node: ast::FieldDef) -> SmallVec<[ast::FieldDef; 1]> {
2504 self.flat_map_node(node)
2505 }
2506
2507 fn flat_map_pat_field(&mut self, node: ast::PatField) -> SmallVec<[ast::PatField; 1]> {
2508 self.flat_map_node(node)
2509 }
2510
2511 fn flat_map_expr_field(&mut self, node: ast::ExprField) -> SmallVec<[ast::ExprField; 1]> {
2512 self.flat_map_node(node)
2513 }
2514
2515 fn flat_map_param(&mut self, node: ast::Param) -> SmallVec<[ast::Param; 1]> {
2516 self.flat_map_node(node)
2517 }
2518
2519 fn flat_map_generic_param(
2520 &mut self,
2521 node: ast::GenericParam,
2522 ) -> SmallVec<[ast::GenericParam; 1]> {
2523 self.flat_map_node(node)
2524 }
2525
2526 fn flat_map_arm(&mut self, node: ast::Arm) -> SmallVec<[ast::Arm; 1]> {
2527 self.flat_map_node(node)
2528 }
2529
2530 fn flat_map_stmt(&mut self, node: ast::Stmt) -> SmallVec<[ast::Stmt; 1]> {
2531 if node.is_expr() {
2534 return match &node.kind {
2542 StmtKind::Expr(expr)
2543 if #[allow(non_exhaustive_omitted_patterns)] match **expr {
ast::Expr { kind: ExprKind::MacCall(..), .. } => true,
_ => false,
}matches!(**expr, ast::Expr { kind: ExprKind::MacCall(..), .. }) =>
2544 {
2545 self.cx.current_expansion.is_trailing_mac = true;
2546 let res = walk_flat_map_stmt(self, node);
2549 self.cx.current_expansion.is_trailing_mac = false;
2550 res
2551 }
2552 _ => walk_flat_map_stmt(self, node),
2553 };
2554 }
2555
2556 self.flat_map_node(node)
2557 }
2558
2559 fn visit_crate(&mut self, node: &mut ast::Crate) {
2560 self.visit_node(node)
2561 }
2562
2563 fn visit_ty(&mut self, node: &mut ast::Ty) {
2564 self.visit_node(node)
2565 }
2566
2567 fn visit_pat(&mut self, node: &mut ast::Pat) {
2568 self.visit_node(node)
2569 }
2570
2571 fn visit_expr(&mut self, node: &mut ast::Expr) {
2572 if let Some(attr) = node.attrs.first() {
2574 self.cfg().maybe_emit_expr_attr_err(attr);
2575 }
2576 ensure_sufficient_stack(|| self.visit_node(node))
2577 }
2578
2579 fn visit_method_receiver_expr(&mut self, node: &mut ast::Expr) {
2580 self.visit_node(AstNodeWrapper::from_mut(node, MethodReceiverTag))
2581 }
2582
2583 fn filter_map_expr(&mut self, node: Box<ast::Expr>) -> Option<Box<ast::Expr>> {
2584 self.flat_map_node(AstNodeWrapper::new(node, OptExprTag))
2585 }
2586
2587 fn visit_block(&mut self, node: &mut ast::Block) {
2588 let orig_dir_ownership = mem::replace(
2589 &mut self.cx.current_expansion.dir_ownership,
2590 DirOwnership::UnownedViaBlock,
2591 );
2592 walk_block(self, node);
2593 self.cx.current_expansion.dir_ownership = orig_dir_ownership;
2594 }
2595
2596 fn visit_id(&mut self, id: &mut NodeId) {
2597 if self.monotonic && *id == ast::DUMMY_NODE_ID {
2600 *id = self.cx.resolver.next_node_id();
2601 }
2602 }
2603}
2604
2605pub struct ExpansionConfig<'feat> {
2606 pub crate_name: Symbol,
2607 pub features: &'feat Features,
2608 pub recursion_limit: Limit,
2609 pub trace_mac: bool,
2610 pub should_test: bool,
2612 pub span_debug: bool,
2614 pub proc_macro_backtrace: bool,
2616}
2617
2618impl ExpansionConfig<'_> {
2619 pub fn default(crate_name: Symbol, features: &Features) -> ExpansionConfig<'_> {
2620 ExpansionConfig {
2621 crate_name,
2622 features,
2623 recursion_limit: Limit::new(1024),
2625 trace_mac: false,
2626 should_test: false,
2627 span_debug: false,
2628 proc_macro_backtrace: false,
2629 }
2630 }
2631}