use alloc::boxed::Box;
use alloc::vec::Vec;
use alloc::string::String;
use alloc::string::ToString;
use alloc::collections::BTreeMap;
use core::mem;
use core::str::FromStr;
use itertools::{Either, Itertools};
use crate::rustc_abi::{CVariadicStatus, CanonAbi, ExternAbi, InterruptKind};
use crate::rustc_ast::visit::{AssocCtxt, BoundKind, FnCtxt, FnKind, Visitor, walk_list};
use crate::rustc_ast::*;
use crate::rustc_ast_pretty::pprust::{self, State};
use crate::rustc_attr_parsing::validate_attr;
use crate::rustc_data_structures::fx::FxIndexMap;
use crate::rustc_errors::{DiagCtxtHandle, Diagnostic, LintBuffer};
use crate::rustc_feature::Features;
use crate::rustc_lint_defs::builtin::{
DEPRECATED_WHERE_CLAUSE_LOCATION, MISSING_ABI, MISSING_UNSAFE_ON_EXTERN,
PATTERNS_IN_FNS_WITHOUT_BODY, UNUSED_VISIBILITIES,
};
use crate::rustc_session::Session;
use crate::rustc_session::diagnostics::feature_err;
use crate::rustc_span::{Ident, Span, Symbol, kw, sym};
use crate::rustc_target::spec::{AbiMap, AbiMapping};
use crate::rustc_ast_passes::diagnostics::{self, AbiCustomCannotBeCold, AbiCustomMustBeNaked, TildeConstReason};
enum SelfSemantic {
Yes,
No,
}
enum SplatSemantic {
Yes,
NoClosures(Span),
NoAbiCall { span: Span, abi: Symbol },
}
impl SplatSemantic {
fn from_fn_kind(fk: &FnKind<'_>) -> Self {
match fk {
FnKind::Fn(_, _, f) => Self::from_extern(f.sig.header.ext),
FnKind::Closure(_, _, _, expr) => SplatSemantic::NoClosures(expr.span),
}
}
fn from_extern(ext: Extern) -> Self {
match ext {
Extern::None => SplatSemantic::Yes,
Extern::Implicit(_) => SplatSemantic::Yes,
Extern::Explicit(abi_str, span) => match abi_str.symbol_unescaped {
sym::rust_dash_call => {
SplatSemantic::NoAbiCall { span, abi: abi_str.symbol_unescaped }
}
_ => SplatSemantic::Yes,
},
}
}
}
enum TraitOrImpl {
Trait { vis: Span, constness: Const },
TraitImpl { constness: Const, polarity: ImplPolarity, trait_ref_span: Span },
Impl { constness: Const },
}
impl TraitOrImpl {
fn constness(&self) -> Option<Span> {
match self {
Self::Trait { constness: Const::Yes(span), .. }
| Self::Impl { constness: Const::Yes(span), .. }
| Self::TraitImpl { constness: Const::Yes(span), .. } => Some(*span),
_ => None,
}
}
}
enum AllowDefault {
Yes,
No,
}
impl AllowDefault {
fn when(b: bool) -> Self {
if b { Self::Yes } else { Self::No }
}
}
enum AllowFinal {
Yes,
No,
}
impl AllowFinal {
fn when(b: bool) -> Self {
if b { Self::Yes } else { Self::No }
}
}
struct AstValidator<'a> {
sess: &'a Session,
features: &'a Features,
extern_mod_span: Option<Span>,
outer_trait_or_trait_impl: Option<TraitOrImpl>,
has_proc_macro_decls: bool,
outer_impl_trait_span: Option<Span>,
disallow_tilde_const: Option<TildeConstReason>,
extern_mod_safety: Option<Safety>,
extern_mod_abi: Option<ExternAbi>,
lint_node_id: NodeId,
is_sdylib_interface: bool,
lint_buffer: &'a mut LintBuffer,
}
impl<'a> AstValidator<'a> {
fn with_in_trait_or_impl(
&mut self,
in_trait_or_impl: Option<TraitOrImpl>,
f: impl FnOnce(&mut Self),
) {
let old = mem::replace(&mut self.outer_trait_or_trait_impl, in_trait_or_impl);
f(self);
self.outer_trait_or_trait_impl = old;
}
fn with_in_trait(&mut self, vis: Span, constness: Const, f: impl FnOnce(&mut Self)) {
let old = mem::replace(
&mut self.outer_trait_or_trait_impl,
Some(TraitOrImpl::Trait { vis, constness }),
);
f(self);
self.outer_trait_or_trait_impl = old;
}
fn with_in_extern_mod(
&mut self,
extern_mod_safety: Safety,
abi: Option<ExternAbi>,
f: impl FnOnce(&mut Self),
) {
let old_safety = mem::replace(&mut self.extern_mod_safety, Some(extern_mod_safety));
let old_abi = mem::replace(&mut self.extern_mod_abi, abi);
f(self);
self.extern_mod_safety = old_safety;
self.extern_mod_abi = old_abi;
}
fn with_tilde_const(
&mut self,
disallowed: Option<TildeConstReason>,
f: impl FnOnce(&mut Self),
) {
let old = mem::replace(&mut self.disallow_tilde_const, disallowed);
f(self);
self.disallow_tilde_const = old;
}
fn check_type_alias_where_clause_location(
&mut self,
ty_alias: &TyAlias,
) -> Result<(), diagnostics::WhereClauseBeforeTypeAlias> {
if ty_alias.ty.is_none() || !ty_alias.generics.where_clause.has_where_token {
return Ok(());
}
let span = ty_alias.generics.where_clause.span;
let sugg = if !ty_alias.generics.where_clause.predicates.is_empty()
|| !ty_alias.after_where_clause.has_where_token
{
let mut state = State::new();
let mut needs_comma = !ty_alias.after_where_clause.predicates.is_empty();
if !ty_alias.after_where_clause.has_where_token {
state.space();
state.word_space("where");
} else if !needs_comma {
state.space();
}
for p in &ty_alias.generics.where_clause.predicates {
if needs_comma {
state.word_space(",");
}
needs_comma = true;
state.print_where_predicate(p);
}
diagnostics::WhereClauseBeforeTypeAliasSugg::Move {
left: span,
snippet: state.s.eof(),
right: ty_alias.after_where_clause.span.shrink_to_hi(),
}
} else {
diagnostics::WhereClauseBeforeTypeAliasSugg::Remove { span }
};
Err(diagnostics::WhereClauseBeforeTypeAlias { span, sugg })
}
fn with_impl_trait(&mut self, outer_span: Option<Span>, f: impl FnOnce(&mut Self)) {
let old = mem::replace(&mut self.outer_impl_trait_span, outer_span);
f(self);
self.outer_impl_trait_span = old;
}
fn walk_ty(&mut self, t: &Ty) {
match &t.kind {
TyKind::ImplTrait(_, bounds) => {
self.with_impl_trait(Some(t.span), |this| visit::walk_ty(this, t));
let mut use_bounds = bounds
.iter()
.filter_map(|bound| match bound {
GenericBound::Use(_, span) => Some(span),
_ => None,
})
.copied();
if let Some(bound1) = use_bounds.next()
&& let Some(bound2) = use_bounds.next()
{
self.dcx().emit_err(diagnostics::DuplicatePreciseCapturing { bound1, bound2 });
}
}
TyKind::TraitObject(..) => self
.with_tilde_const(Some(TildeConstReason::TraitObject), |this| {
visit::walk_ty(this, t)
}),
_ => visit::walk_ty(self, t),
}
}
fn dcx(&self) -> DiagCtxtHandle<'a> {
self.sess.dcx()
}
fn visibility_not_permitted(
&self,
vis: &Visibility,
note: diagnostics::VisibilityNotPermittedNote,
) {
if let VisibilityKind::Inherited = vis.kind {
return;
}
self.dcx().emit_err(diagnostics::VisibilityNotPermitted {
span: vis.span,
note,
remove_qualifier_sugg: vis.span,
});
}
fn check_decl_no_pat(decl: &FnDecl, mut report_err: impl FnMut(Span, Option<Ident>, bool)) {
for Param { pat, .. } in &decl.inputs {
match pat.kind {
PatKind::Missing | PatKind::Ident(BindingMode::NONE, _, None) | PatKind::Wild => {}
PatKind::Ident(BindingMode::MUT, ident, None) => {
report_err(pat.span, Some(ident), true)
}
_ => report_err(pat.span, None, false),
}
}
}
fn check_impl_fn_not_const(&self, constness: Const, parent_constness: Const) {
let Const::Yes(span) = constness else {
return;
};
let span = self.sess.source_map().span_extend_while_whitespace(span);
let Const::Yes(parent_constness) = parent_constness else {
return;
};
self.dcx().emit_err(diagnostics::ImplFnConst { span, parent_constness });
}
fn check_trait_fn_not_const(&self, constness: Const, parent: &TraitOrImpl) {
let Const::Yes(span) = constness else {
return;
};
let const_trait_impl = self.features.const_trait_impl();
let make_impl_const_sugg = if const_trait_impl
&& let TraitOrImpl::TraitImpl {
constness: Const::No,
polarity: ImplPolarity::Positive,
trait_ref_span,
..
} = parent
{
Some(trait_ref_span.shrink_to_lo())
} else {
None
};
let map = self.sess.source_map();
let make_trait_const_sugg = if const_trait_impl
&& let &TraitOrImpl::Trait { vis, constness: ast::Const::No } = parent
{
Some(map.span_extend_while_whitespace(vis).shrink_to_hi())
} else {
None
};
let parent_constness = parent.constness();
self.dcx().emit_err(diagnostics::TraitFnConst {
span,
in_impl: matches!(parent, TraitOrImpl::TraitImpl { .. }),
const_context_label: parent_constness,
remove_const_sugg: (
map.span_extend_while_whitespace(span),
match parent_constness {
Some(_) => crate::rustc_errors::Applicability::MachineApplicable,
None => crate::rustc_errors::Applicability::MaybeIncorrect,
},
),
requires_multiple_changes: make_impl_const_sugg.is_some()
|| make_trait_const_sugg.is_some(),
make_impl_const_sugg,
make_trait_const_sugg,
});
}
fn check_async_fn_in_const_trait_or_impl(&self, sig: &FnSig, parent: &TraitOrImpl) {
let Some(const_keyword) = parent.constness() else { return };
let Some(CoroutineMarker { kind: CoroutineKind::Async, span: async_keyword, .. }) =
sig.header.coroutine_marker
else {
return;
};
let context = match parent {
TraitOrImpl::Trait { .. } => "trait",
TraitOrImpl::TraitImpl { .. } => "trait_impl",
TraitOrImpl::Impl { .. } => "impl",
};
self.dcx().emit_err(diagnostics::AsyncFnInConstTraitOrTraitImpl {
async_keyword,
context,
const_keyword,
});
}
fn check_fn_decl(
&self,
fn_decl: &FnDecl,
self_semantic: SelfSemantic,
splat_semantic: SplatSemantic,
) {
self.check_decl_num_args(fn_decl);
let c_variadic_span = self.check_decl_cvariadic_pos(fn_decl);
self.check_decl_splatting(fn_decl, c_variadic_span, splat_semantic);
self.check_decl_attrs(fn_decl);
self.check_decl_self_param(fn_decl, self_semantic);
}
fn check_decl_num_args(&self, fn_decl: &FnDecl) {
let max_num_args: usize = u16::MAX.into();
if fn_decl.inputs.len() > max_num_args {
let Param { span, .. } = fn_decl.inputs[0];
self.dcx().emit_fatal(diagnostics::FnParamTooMany { span, max_num_args });
}
}
fn check_decl_cvariadic_pos(&self, fn_decl: &FnDecl) -> Option<Span> {
let mut c_variadic_span = None;
match &*fn_decl.inputs {
[ps @ .., _] => {
for Param { ty, span, .. } in ps {
if let TyKind::CVarArgs = ty.kind {
c_variadic_span = Some(*span);
self.dcx().emit_err(diagnostics::FnParamCVarArgsNotLast { span: *span });
}
}
}
_ => {}
}
if let Some(Param { ty, span, .. }) = &fn_decl.inputs.last()
&& let TyKind::CVarArgs = ty.kind
{
c_variadic_span = Some(*span);
}
c_variadic_span
}
fn check_decl_splatting(
&self,
fn_decl: &FnDecl,
c_variadic_span: Option<Span>,
splat_semantic: SplatSemantic,
) {
let mut splatted_arg_spans: BTreeMap<u16, Vec<Span>> = fn_decl
.inputs
.iter()
.enumerate()
.filter_map(|(index, arg)| {
let splat_arg_spans: Vec<Span> = arg
.attrs
.iter()
.filter_map(|attr| attr.has_name(sym::rustc_splat).then_some(attr.span))
.collect();
if splat_arg_spans.is_empty() {
None
} else {
Some((u16::try_from(index).unwrap(), splat_arg_spans))
}
})
.collect();
let out_of_range_spans =
splatted_arg_spans.split_off(&u16::from(FnDecl::NO_SPLATTED_ARG_INDEX));
if !out_of_range_spans.is_empty() {
self.dcx().emit_err(diagnostics::InvalidSplattedArgs {
max_valid_splatted_arg_index: u16::from(FnDecl::MAX_VALID_SPLATTED_ARG_INDEX),
first_invalid_splatted_arg_index: *out_of_range_spans.keys().next().unwrap(),
spans: out_of_range_spans.values().flatten().copied().collect(),
});
}
if !splatted_arg_spans.is_empty() {
let splatted_spans = || splatted_arg_spans.values().flatten().copied().collect();
if splatted_arg_spans.len() > 1 {
self.dcx().emit_err(diagnostics::DuplicateSplattedArgs { spans: splatted_spans() });
}
if let Some(c_variadic_span) = c_variadic_span {
let mut splatted_spans = splatted_spans();
splatted_spans.push(c_variadic_span);
self.dcx().emit_err(diagnostics::CVarArgsAndSplat { spans: splatted_spans });
}
match splat_semantic {
SplatSemantic::NoClosures(closure_span) => {
let mut splatted_spans = splatted_spans();
splatted_spans.push(closure_span);
self.dcx()
.emit_err(diagnostics::SplatNotAllowedOnClosures { spans: splatted_spans });
}
SplatSemantic::NoAbiCall { span, abi } => {
let mut splatted_spans = splatted_spans();
splatted_spans.push(span);
self.dcx().emit_err(diagnostics::SplatNotAllowedOnAbiCall {
spans: splatted_spans,
abi,
});
}
SplatSemantic::Yes => {}
}
}
}
fn check_decl_attrs(&self, fn_decl: &FnDecl) {
use SyntheticAttr::*;
fn_decl
.inputs
.iter()
.flat_map(|i| i.attrs.as_ref())
.filter(|attr| match &attr.kind {
AttrKind::Normal(normal) => {
let arr = [
sym::allow,
sym::deny,
sym::expect,
sym::forbid,
sym::rustc_splat,
sym::warn,
];
!attr.has_any_name(&arr) && crate::rustc_attr_parsing::is_builtin_attr(&normal.item)
}
AttrKind::Synthetic(s) => match &**s {
CfgTrace(_) | CfgAttrTrace(_) => false,
},
AttrKind::DocComment(..) => true,
})
.for_each(|attr| {
if attr.is_doc_comment() {
self.dcx().emit_err(diagnostics::FnParamDocComment { span: attr.span });
} else {
self.dcx().emit_err(diagnostics::FnParamForbiddenAttr { span: attr.span });
}
});
}
fn check_decl_self_param(&self, fn_decl: &FnDecl, self_semantic: SelfSemantic) {
if let (SelfSemantic::No, [param, ..]) = (self_semantic, &*fn_decl.inputs) {
if param.is_self() {
self.dcx().emit_err(diagnostics::FnParamForbiddenSelf { span: param.span });
}
}
}
fn check_extern_fn_signature(
&self,
abi: ExternAbi,
ctxt: FnCtxt,
opt_function_name: Option<&Ident>, sig: &BorrowedFnSig<'_>,
) {
match AbiMap::from_target(&self.sess.target).canonize_abi(abi, false) {
AbiMapping::Direct(canon_abi) | AbiMapping::Deprecated(canon_abi) => {
match canon_abi {
CanonAbi::C
| CanonAbi::Rust
| CanonAbi::RustCold
| CanonAbi::RustPreserveNone
| CanonAbi::RustTail
| CanonAbi::Swift
| CanonAbi::Arm(_)
| CanonAbi::X86(_) => { }
CanonAbi::GpuKernel => {
self.reject_coroutine(abi, sig);
self.reject_return(abi, sig);
}
CanonAbi::Custom => {
self.reject_safe_fn(abi, ctxt, sig, opt_function_name.is_none());
self.reject_coroutine(abi, sig);
self.reject_params_or_return(abi, opt_function_name, sig);
}
CanonAbi::Interrupt(interrupt_kind) => {
self.reject_coroutine(abi, sig);
if let InterruptKind::X86 = interrupt_kind {
let inputs = &sig.decl.inputs;
let param_count = inputs.len();
if !matches!(param_count, 1 | 2) {
let mut spans: Vec<Span> =
inputs.iter().map(|arg| arg.span).collect();
if spans.is_empty() {
spans = vec![sig.span];
}
self.dcx()
.emit_err(diagnostics::AbiX86Interrupt { spans, param_count });
}
self.reject_return(abi, sig);
} else {
self.reject_params_or_return(abi, opt_function_name, sig);
}
}
}
}
AbiMapping::Invalid => { }
}
}
fn reject_safe_fn(
&self,
abi: ExternAbi,
ctxt: FnCtxt,
sig: &BorrowedFnSig<'_>,
is_fn_ptr: bool,
) {
let dcx = self.dcx();
match sig.header.safety {
Safety::Unsafe(_) => { }
Safety::Safe(safe_span) => {
if !is_fn_ptr {
let source_map = self.sess.psess.source_map();
let safe_span = source_map.span_until_non_whitespace(safe_span.to(sig.span));
dcx.emit_err(diagnostics::AbiCustomSafeForeignFunction {
span: sig.span,
safe_span,
});
}
}
Safety::Default => match ctxt {
FnCtxt::Foreign => { }
FnCtxt::Free | FnCtxt::Assoc(_) => {
dcx.emit_err(diagnostics::AbiCustomSafeFunction {
span: sig.span,
abi,
unsafe_span: sig.span.shrink_to_lo(),
});
}
},
}
}
fn reject_coroutine(&self, abi: ExternAbi, sig: &BorrowedFnSig<'_>) {
if let Some(coroutine_marker) = sig.header.coroutine_marker {
let coroutine_kind_span = self
.sess
.psess
.source_map()
.span_until_non_whitespace(coroutine_marker.span.to(sig.span));
self.dcx().emit_err(diagnostics::AbiCannotBeCoroutine {
span: sig.span,
abi,
coroutine_kind_span,
coroutine_kind_str: coroutine_marker.kind.as_str(),
});
}
}
fn reject_return(&self, abi: ExternAbi, sig: &BorrowedFnSig<'_>) {
if let FnRetTy::Ty(ref ret_ty) = sig.decl.output
&& match &ret_ty.kind {
TyKind::Never => false,
TyKind::Tup(tup) if tup.is_empty() => false,
_ => true,
}
{
self.dcx().emit_err(diagnostics::AbiMustNotHaveReturnType { span: ret_ty.span, abi });
}
}
fn reject_params_or_return(
&self,
abi: ExternAbi,
opt_function_name: Option<&Ident>, sig: &BorrowedFnSig<'_>,
) {
let mut spans: Vec<_> = sig.decl.inputs.iter().map(|p| p.span).collect();
let allowed_return = |ret_ty: &Ty| match &ret_ty.kind {
TyKind::Never if abi != ExternAbi::Custom => true,
TyKind::Tup(tup) if tup.is_empty() => true,
_ => false,
};
if let FnRetTy::Ty(ref ret_ty) = sig.decl.output
&& !allowed_return(ret_ty)
{
spans.push(ret_ty.span);
}
if !spans.is_empty() {
let header_span = sig.header.span().unwrap_or(sig.span.shrink_to_lo());
let suggestion_span = header_span.shrink_to_hi().to(sig.decl.output.span());
let padding = if header_span.is_empty() { "" } else { " " };
self.dcx().emit_err(diagnostics::AbiMustNotHaveParametersOrReturnType {
spans,
abi,
suggestion_span,
padding,
symbol: match opt_function_name {
Some(ident) => format!(" {}", ident.name),
None => String::new(),
},
});
}
}
fn check_item_safety(&self, span: Span, safety: Safety) {
match self.extern_mod_safety {
Some(extern_safety) => {
if matches!(safety, Safety::Unsafe(_) | Safety::Safe(_))
&& extern_safety == Safety::Default
{
self.dcx().emit_err(diagnostics::InvalidSafetyOnExtern {
item_span: span,
block: Some(self.current_extern_span().shrink_to_lo()),
});
}
}
None => {
if matches!(safety, Safety::Safe(_)) {
self.dcx().emit_err(diagnostics::InvalidSafetyOnItem { span });
}
}
}
}
fn check_fn_ptr_safety(&self, span: Span, safety: Safety) {
if let Safety::Safe(safe_span) = safety {
let remove_span = self.sess.source_map().span_until_non_whitespace(span);
self.dcx().emit_err(diagnostics::InvalidSafetyOnFnPtr {
span: safe_span,
safe_span: remove_span,
});
}
}
fn check_defaultness(
&self,
span: Span,
defaultness: Defaultness,
allow_default: AllowDefault,
allow_final: AllowFinal,
) {
match defaultness {
Defaultness::Default(def_span) if matches!(allow_default, AllowDefault::No) => {
let span = self.sess.source_map().guess_head_span(span);
self.dcx().emit_err(diagnostics::ForbiddenDefault { span, def_span });
}
Defaultness::Final(def_span) if matches!(allow_final, AllowFinal::No) => {
let span = self.sess.source_map().guess_head_span(span);
self.dcx().emit_err(diagnostics::ForbiddenFinal { span, def_span });
}
_ => (),
}
}
fn check_final_has_body(&self, item: &Item<AssocItemKind>, defaultness: Defaultness) {
if let AssocItemKind::Fn(f) = &item.kind
&& let Fn { body: None, .. } = &**f
&& let Defaultness::Final(def_span) = defaultness
{
let span = self.sess.source_map().guess_head_span(item.span);
self.dcx().emit_err(diagnostics::ForbiddenFinalWithoutBody { span, def_span });
}
}
fn ending_semi_or_hi(&self, sp: Span) -> Span {
let source_map = self.sess.source_map();
let end = source_map.end_point(sp);
if source_map.span_to_snippet(end).is_ok_and(|s| s == ";") {
end
} else {
sp.shrink_to_hi()
}
}
fn check_type_no_bounds(&self, bounds: &[GenericBound], ctx: &str) {
let span = match bounds {
[] => return,
[b0] => b0.span(),
[b0, .., bl] => b0.span().to(bl.span()),
};
self.dcx().emit_err(diagnostics::BoundInContext { span, ctx });
}
fn check_foreign_ty_genericless(&self, generics: &Generics, after_where_clause: &WhereClause) {
let cannot_have = |span, descr, remove_descr| {
self.dcx().emit_err(diagnostics::ExternTypesCannotHave {
span,
descr,
remove_descr,
block_span: self.current_extern_span(),
});
};
if !generics.params.is_empty() {
cannot_have(generics.span, "generic parameters", "generic parameters");
}
let check_where_clause = |where_clause: &WhereClause| {
if where_clause.has_where_token {
cannot_have(where_clause.span, "`where` clauses", "`where` clause");
}
};
check_where_clause(&generics.where_clause);
check_where_clause(&after_where_clause);
}
fn check_foreign_kind_bodyless(&self, ident: Ident, kind: &str, body_span: Option<Span>) {
let Some(body_span) = body_span else {
return;
};
self.dcx().emit_err(diagnostics::BodyInExtern {
span: ident.span,
body: body_span,
block: self.current_extern_span(),
kind,
});
}
fn check_foreign_fn_bodyless(&self, ident: Ident, body: Option<&Block>) {
let Some(body) = body else {
return;
};
self.dcx().emit_err(diagnostics::FnBodyInExtern {
span: ident.span,
body: body.span,
block: self.current_extern_span(),
});
}
fn current_extern_span(&self) -> Span {
self.sess.source_map().guess_head_span(self.extern_mod_span.unwrap())
}
fn check_foreign_fn_headerless(
&self,
FnHeader { safety: _, coroutine_marker, constness, ext }: FnHeader,
) {
let report_err = |span, kw| {
self.dcx().emit_err(diagnostics::FnQualifierInExtern {
span,
kw,
block: self.current_extern_span(),
});
};
match coroutine_marker {
Some(marker) => report_err(marker.span, marker.kind.as_str()),
None => (),
}
match constness {
Const::Yes(span) => report_err(span, "const"),
Const::No => (),
}
match ext {
Extern::None => (),
Extern::Implicit(span) | Extern::Explicit(_, span) => report_err(span, "extern"),
}
}
fn check_foreign_item_ascii_only(&self, ident: Ident) {
if !ident.as_str().is_ascii() {
self.dcx().emit_err(diagnostics::ExternItemAscii {
span: ident.span,
block: self.current_extern_span(),
});
}
}
fn check_extern_custom(&self, fk: FnKind<'_>, attrs: &AttrVec) {
let FnKind::Fn(fn_ctxt, _, Fn { sig, body: Some(_), .. }) = fk else {
return;
};
match fn_ctxt {
FnCtxt::Foreign => return,
FnCtxt::Free | FnCtxt::Assoc(_) => { }
}
let Extern::Explicit(StrLit { symbol_unescaped, .. }, ext_span) = sig.header.ext else {
return;
};
let Ok(ExternAbi::Custom) = ExternAbi::from_str(symbol_unescaped.as_str()) else {
return;
};
if !attr::contains_name(attrs, sym::naked) {
self.dcx().emit_err(AbiCustomMustBeNaked {
span: sig.span,
naked_span: sig.span.shrink_to_lo(),
});
}
if let Some(cold) = attr::find_by_name(attrs, sym::cold) {
self.dcx().emit_err(AbiCustomCannotBeCold {
span: sig.span,
abi_span: ext_span,
cold_span: cold.span,
});
}
}
fn check_c_variadic_type(&self, fk: FnKind<'_>, attrs: &AttrVec) {
let variadic_param = match fk.decl().inputs.last() {
Some(param) if matches!(param.ty.kind, TyKind::CVarArgs) => param,
_ => return,
};
let FnKind::Fn(fn_ctxt, _, Fn { sig, .. }) = fk else {
unreachable!("C variable argument list cannot be used in closures")
};
if let Const::Yes(_) = sig.header.constness
&& !self.features.enabled(sym::const_c_variadic)
{
let msg = format!("c-variadic const function definitions are unstable");
feature_err(&self.sess, sym::const_c_variadic, sig.span, msg).emit();
}
if let Some(coroutine_marker) = sig.header.coroutine_marker {
self.dcx().emit_err(diagnostics::CoroutineAndCVariadic {
spans: vec![coroutine_marker.span, variadic_param.span],
coroutine_kind: coroutine_marker.kind.as_str(),
coroutine_span: coroutine_marker.span,
variadic_span: variadic_param.span,
});
}
match fn_ctxt {
FnCtxt::Foreign => return,
FnCtxt::Free | FnCtxt::Assoc(_) => {
if let PatKind::Missing = variadic_param.pat.kind {
self.dcx()
.emit_err(diagnostics::VarargsWithoutPattern { span: variadic_param.span });
}
match self.sess.target.supports_c_variadic_definitions() {
CVariadicStatus::NotSupported => {
self.dcx().emit_err(diagnostics::CVariadicNotSupported {
variadic_span: variadic_param.span,
target: &*self.sess.target.llvm_target,
});
return;
}
CVariadicStatus::Unstable { feature } if !self.features.enabled(feature) => {
let msg =
format!("C-variadic function definitions on this target are unstable");
feature_err(&self.sess, feature, variadic_param.span, msg).emit();
return;
}
CVariadicStatus::Unstable { .. } | CVariadicStatus::Stable => {
}
}
match sig.header.ext {
Extern::Implicit(_) => {
if !matches!(sig.header.safety, Safety::Unsafe(_)) {
self.dcx().emit_err(diagnostics::CVariadicMustBeUnsafe {
span: variadic_param.span,
unsafe_span: sig.safety_span(),
});
}
}
Extern::Explicit(StrLit { symbol_unescaped, .. }, _) => {
let Ok(abi) = ExternAbi::from_str(symbol_unescaped.as_str()) else {
return;
};
self.check_c_variadic_abi(abi, attrs, variadic_param.span, sig);
if !matches!(sig.header.safety, Safety::Unsafe(_)) {
self.dcx().emit_err(diagnostics::CVariadicMustBeUnsafe {
span: variadic_param.span,
unsafe_span: sig.safety_span(),
});
}
}
Extern::None => {
let err = diagnostics::CVariadicNoExtern { span: variadic_param.span };
self.dcx().emit_err(err);
}
}
}
}
}
fn check_c_variadic_abi(
&self,
abi: ExternAbi,
attrs: &AttrVec,
dotdotdot_span: Span,
sig: &FnSig,
) {
if attr::contains_name(attrs, sym::naked) {
match abi.supports_c_variadic() {
CVariadicStatus::Stable => {
}
CVariadicStatus::Unstable { feature } => {
if !self.features.enabled(feature) {
let msg = format!(
"C-variadic functions with the {abi} calling convention are unstable"
);
feature_err(&self.sess, feature, sig.span, msg).emit();
}
}
CVariadicStatus::NotSupported => {
self.dcx().emit_err(diagnostics::CVariadicBadNakedExtern {
span: dotdotdot_span,
abi: abi.as_str(),
extern_span: sig.extern_span(),
});
}
}
} else if !matches!(abi, ExternAbi::C { .. }) {
self.dcx().emit_err(diagnostics::CVariadicBadExtern {
span: dotdotdot_span,
abi: abi.as_str(),
extern_span: sig.extern_span(),
});
}
}
fn check_item_named(&self, ident: Ident, kind: &str) {
if ident.name != kw::Underscore {
return;
}
self.dcx().emit_err(diagnostics::ItemUnderscore { span: ident.span, kind });
}
fn check_nomangle_item_asciionly(&self, ident: Ident, item_span: Span) {
if ident.name.as_str().is_ascii() {
return;
}
let span = self.sess.source_map().guess_head_span(item_span);
self.dcx().emit_err(diagnostics::NoMangleAscii { span });
}
fn check_mod_file_item_asciionly(&self, ident: Ident) {
if ident.name.as_str().is_ascii() {
return;
}
self.dcx().emit_err(diagnostics::ModuleNonAscii { span: ident.span, name: ident.name });
}
fn deny_const_auto_traits(&self, constness: Const) {
if let Const::Yes(span) = constness {
self.dcx().emit_err(diagnostics::ConstAutoTrait { span });
}
}
fn deny_generic_params(&self, generics: &Generics, ident_span: Span) {
if !generics.params.is_empty() {
self.dcx()
.emit_err(diagnostics::AutoTraitGeneric { span: generics.span, ident: ident_span });
}
}
fn deny_super_traits(&self, bounds: &GenericBounds, ident: Span) {
if let [.., last] = &bounds[..] {
let span = bounds.iter().map(|b| b.span()).collect();
let removal = ident.shrink_to_hi().to(last.span());
self.dcx().emit_err(diagnostics::AutoTraitBounds { span, removal, ident });
}
}
fn deny_where_clause(&self, where_clause: &WhereClause, ident: Span) {
if !where_clause.predicates.is_empty() {
self.dcx().emit_err(diagnostics::AutoTraitBounds {
span: vec![where_clause.span],
removal: where_clause.span,
ident,
});
}
}
fn deny_items(&self, trait_items: &[Box<AssocItem>], ident_span: Span) {
if !trait_items.is_empty() {
let spans: Vec<_> = trait_items.iter().map(|i| i.kind.ident().unwrap().span).collect();
let total = trait_items.first().unwrap().span.to(trait_items.last().unwrap().span);
self.dcx().emit_err(diagnostics::AutoTraitItems { spans, total, ident: ident_span });
}
}
fn correct_generic_order_suggestion(&self, data: &AngleBracketedArgs) -> String {
let lt_sugg = data.args.iter().filter_map(|arg| match arg {
AngleBracketedArg::Arg(lt @ GenericArg::Lifetime(_)) => {
Some(pprust::to_string(|s| s.print_generic_arg(lt)))
}
_ => None,
});
let args_sugg = data.args.iter().filter_map(|a| match a {
AngleBracketedArg::Arg(GenericArg::Lifetime(_)) | AngleBracketedArg::Constraint(_) => {
None
}
AngleBracketedArg::Arg(arg) => Some(pprust::to_string(|s| s.print_generic_arg(arg))),
});
let constraint_sugg = data.args.iter().filter_map(|a| match a {
AngleBracketedArg::Arg(_) => None,
AngleBracketedArg::Constraint(c) => {
Some(pprust::to_string(|s| s.print_assoc_item_constraint(c)))
}
});
format!(
"<{}>",
lt_sugg.chain(args_sugg).chain(constraint_sugg).collect::<Vec<String>>().join(", ")
)
}
fn check_generic_args_before_constraints(&self, data: &AngleBracketedArgs) {
let is_arg = |arg: &AngleBracketedArg| matches!(arg, AngleBracketedArg::Arg(_));
let mut args = data.args.iter();
if args.all(is_arg) || args.all(|arg| !is_arg(arg)) {
return;
}
let (constraint_spans, arg_spans): (Vec<Span>, Vec<Span>) =
data.args.iter().partition_map(|arg| match arg {
AngleBracketedArg::Constraint(c) => Either::Left(c.span),
AngleBracketedArg::Arg(a) => Either::Right(a.span()),
});
let args_len = arg_spans.len();
let constraint_len = constraint_spans.len();
self.dcx().emit_err(diagnostics::ArgsBeforeConstraint {
arg_spans: arg_spans.clone(),
constraints: constraint_spans[0],
args: *arg_spans.last().unwrap(),
data: data.span,
constraint_spans: diagnostics::EmptyLabelManySpans(constraint_spans),
arg_spans2: diagnostics::EmptyLabelManySpans(arg_spans),
suggestion: self.correct_generic_order_suggestion(data),
constraint_len,
args_len,
});
}
fn visit_ty_common(&mut self, ty: &Ty) {
match &ty.kind {
TyKind::FnPtr(bfty) => {
self.check_fn_ptr_safety(bfty.decl_span, bfty.safety);
self.check_fn_decl(
&bfty.decl,
SelfSemantic::No,
SplatSemantic::from_extern(bfty.ext),
);
Self::check_decl_no_pat(&bfty.decl, |span, _, _| {
self.dcx().emit_err(diagnostics::PatternFnPointer { span });
});
if let Extern::Implicit(extern_span) = bfty.ext {
self.handle_missing_abi(extern_span, ty.id);
}
let ext = match bfty.ext {
Extern::None => None,
Extern::Implicit(_) => Some(ExternAbi::FALLBACK),
Extern::Explicit(str_lit, _) => {
ExternAbi::from_str(str_lit.symbol.as_str()).ok()
}
};
if let Some(extern_abi) = ext {
self.check_extern_fn_signature(
extern_abi,
FnCtxt::Free,
None,
&bfty.as_borrowed_fn_sig(),
);
}
}
TyKind::TraitObject(bounds, ..) => {
let mut any_lifetime_bounds = false;
for bound in bounds {
if let GenericBound::Outlives(lifetime) = bound {
if any_lifetime_bounds {
self.dcx().emit_err(diagnostics::TraitObjectBound {
span: lifetime.ident.span,
});
break;
}
any_lifetime_bounds = true;
}
}
}
TyKind::ImplTrait(_, bounds) => {
if let Some(outer_impl_trait_sp) = self.outer_impl_trait_span {
self.dcx().emit_err(diagnostics::NestedImplTrait {
span: ty.span,
outer: outer_impl_trait_sp,
inner: ty.span,
});
}
if !bounds.iter().any(|b| matches!(b, GenericBound::Trait(..))) {
self.dcx().emit_err(diagnostics::AtLeastOneTrait { span: ty.span });
}
}
_ => {}
}
}
fn handle_missing_abi(&mut self, span: Span, id: NodeId) {
if span.edition().at_least_edition_future() && self.features.explicit_extern_abis() {
self.dcx().emit_err(diagnostics::MissingAbi { span });
} else if self
.sess
.source_map()
.span_to_snippet(span)
.is_ok_and(|snippet| !snippet.starts_with("#["))
{
self.lint_buffer.buffer_lint(
MISSING_ABI,
id,
span,
diagnostics::MissingAbiSugg { span, default_abi: ExternAbi::FALLBACK },
)
}
}
fn visit_attrs_vis(&mut self, attrs: &AttrVec, vis: &Visibility) {
walk_list!(self, visit_attribute, attrs);
self.visit_vis(vis);
}
fn visit_attrs_vis_ident(&mut self, attrs: &AttrVec, vis: &Visibility, ident: &Ident) {
walk_list!(self, visit_attribute, attrs);
self.visit_vis(vis);
self.visit_ident(ident);
}
fn check_eii_impl_attrs(&self, attrs: &[Attribute], eii_impl: &Option<Box<EiiImpl>>) {
let Some(eii_impl) = eii_impl else {
return;
};
let allowed_attrs: &[Symbol] = &[
sym::allow,
sym::warn,
sym::deny,
sym::forbid,
sym::expect,
sym::doc,
sym::inline,
sym::cold,
sym::optimize,
sym::coverage,
sym::sanitize,
sym::must_use,
sym::deprecated,
];
for attr in attrs {
let AttrKind::Normal(normal) = &attr.kind else {
continue;
};
if attr.has_any_name(allowed_attrs) {
continue;
}
let attr_name = pprust::path_to_string(&normal.item.path);
self.dcx().emit_err(diagnostics::EiiImplAttributeNotSupported {
attr_span: attr.span,
attr_name: &attr_name,
eii_span: eii_impl.span,
eii_name: pprust::path_to_string(&eii_impl.eii_macro_path),
});
}
}
}
fn validate_generic_param_order(dcx: DiagCtxtHandle<'_>, generics: &[GenericParam], span: Span) {
let mut max_param: Option<ParamKindOrd> = None;
let mut out_of_order = FxIndexMap::default();
let mut param_idents = Vec::with_capacity(generics.len());
for (idx, param) in generics.iter().enumerate() {
let ident = param.ident;
let (kind, bounds, span) = (¶m.kind, ¶m.bounds, ident.span);
let (ord_kind, ident) = match ¶m.kind {
GenericParamKind::Lifetime => (ParamKindOrd::Lifetime, ident.to_string()),
GenericParamKind::Type { .. } => (ParamKindOrd::TypeOrConst, ident.to_string()),
GenericParamKind::Const { ty, .. } => {
let ty = pprust::ty_to_string(ty);
(ParamKindOrd::TypeOrConst, format!("const {ident}: {ty}"))
}
};
param_idents.push((kind, ord_kind, bounds, idx, ident));
match max_param {
Some(max_param) if max_param > ord_kind => {
let entry = out_of_order.entry(ord_kind).or_insert((max_param, vec![]));
entry.1.push(span);
}
Some(_) | None => max_param = Some(ord_kind),
};
}
if !out_of_order.is_empty() {
let mut ordered_params = "<".to_string();
param_idents.sort_by_key(|&(_, po, _, i, _)| (po, i));
let mut first = true;
for (kind, _, bounds, _, ident) in param_idents {
if !first {
ordered_params += ", ";
}
ordered_params += &ident;
if !bounds.is_empty() {
ordered_params += ": ";
ordered_params += &pprust::bounds_to_string(bounds);
}
match kind {
GenericParamKind::Type { default: Some(default) } => {
ordered_params += " = ";
ordered_params += &pprust::ty_to_string(default);
}
GenericParamKind::Type { default: None } => (),
GenericParamKind::Lifetime => (),
GenericParamKind::Const { ty: _, span: _, default: Some(default) } => {
ordered_params += " = ";
ordered_params += &pprust::expr_to_string(&default.value);
}
GenericParamKind::Const { ty: _, span: _, default: None } => (),
}
first = false;
}
ordered_params += ">";
for (param_ord, (max_param, spans)) in &out_of_order {
dcx.emit_err(diagnostics::OutOfOrderParams {
spans: spans.clone(),
sugg_span: span,
param_ord: param_ord.to_string(),
max_param: max_param.to_string(),
ordered_params: &ordered_params,
});
}
}
}
impl Visitor<'_> for AstValidator<'_> {
type Result = ();
fn visit_attribute(&mut self, attr: &Attribute) {
validate_attr::check_attr(&self.sess.psess, attr);
}
fn visit_ty(&mut self, ty: &Ty) {
self.visit_ty_common(ty);
self.walk_ty(ty)
}
fn visit_item(&mut self, item: &Item) {
if item.attrs.iter().any(|attr| attr.is_proc_macro_attr()) {
self.has_proc_macro_decls = true;
}
let previous_lint_node_id = mem::replace(&mut self.lint_node_id, item.id);
if let Some(ident) = item.kind.ident()
&& attr::contains_name(&item.attrs, sym::no_mangle)
{
self.check_nomangle_item_asciionly(ident, item.span);
}
match &item.kind {
ItemKind::Impl(Impl {
generics,
constness,
of_trait: Some(of_trait),
self_ty,
items,
}) => {
let TraitImplHeader { safety, polarity, defaultness: _, trait_ref: t } = &**of_trait;
self.visit_attrs_vis(&item.attrs, &item.vis);
self.visibility_not_permitted(
&item.vis,
diagnostics::VisibilityNotPermittedNote::TraitImpl,
);
if let TyKind::Dummy = self_ty.kind {
self.dcx().emit_fatal(diagnostics::ObsoleteAuto { span: item.span });
}
if let (&Safety::Unsafe(span), &ImplPolarity::Negative(sp)) = (safety, polarity) {
self.dcx().emit_err(diagnostics::UnsafeNegativeImpl {
span: sp.to(t.path.span),
negative: sp,
r#unsafe: span,
});
}
let disallowed = matches!(constness, Const::No)
.then(|| TildeConstReason::TraitImpl { span: item.span });
self.with_tilde_const(disallowed, |this| this.visit_generics(generics));
self.visit_trait_ref(t);
self.visit_ty(self_ty);
self.with_in_trait_or_impl(
Some(TraitOrImpl::TraitImpl {
constness: *constness,
polarity: *polarity,
trait_ref_span: t.path.span,
}),
|this| {
walk_list!(
this,
visit_assoc_item,
items,
AssocCtxt::Impl { of_trait: true }
);
},
);
}
ItemKind::Impl(Impl { generics, of_trait: None, self_ty, items, constness }) => {
self.visit_attrs_vis(&item.attrs, &item.vis);
self.visibility_not_permitted(
&item.vis,
diagnostics::VisibilityNotPermittedNote::IndividualImplItems,
);
let disallowed = matches!(constness, ast::Const::No)
.then(|| TildeConstReason::Impl { span: item.span });
self.with_tilde_const(disallowed, |this| this.visit_generics(generics));
self.visit_ty(self_ty);
self.with_in_trait_or_impl(
Some(TraitOrImpl::Impl { constness: *constness }),
|this| {
walk_list!(
this,
visit_assoc_item,
items,
AssocCtxt::Impl { of_trait: false }
);
},
);
}
ItemKind::Fn(func) => {
let func: &Fn = &**func;
let Fn {
defaultness,
ident,
generics: _,
sig,
contract: _,
body,
define_opaque: _,
eii_impl,
} = func;
self.visit_attrs_vis_ident(&item.attrs, &item.vis, ident);
self.check_defaultness(item.span, *defaultness, AllowDefault::No, AllowFinal::No);
if let Some(eii) = eii_impl {
let EiiImpl { eii_macro_path, .. } = &**eii;
self.visit_path(eii_macro_path);
}
self.check_eii_impl_attrs(&item.attrs, eii_impl);
let is_intrinsic = item.attrs.iter().any(|a| a.has_name(sym::rustc_intrinsic));
if body.is_none() && !is_intrinsic && !self.is_sdylib_interface {
self.dcx().emit_err(diagnostics::FnWithoutBody {
span: item.span,
replace_span: self.ending_semi_or_hi(item.span),
extern_block_suggestion: match sig.header.ext {
Extern::None => None,
Extern::Implicit(start_span) => {
Some(diagnostics::ExternBlockSuggestion::Implicit {
start_span,
end_span: item.span.shrink_to_hi(),
})
}
Extern::Explicit(abi, start_span) => {
Some(diagnostics::ExternBlockSuggestion::Explicit {
start_span,
end_span: item.span.shrink_to_hi(),
abi: abi.symbol_unescaped,
})
}
},
});
}
let kind = FnKind::Fn(FnCtxt::Free, &item.vis, &*func);
self.visit_fn(kind, &item.attrs, item.span, item.id);
}
ItemKind::ForeignMod(ForeignMod { extern_span, abi, safety, .. }) => {
let old_item = mem::replace(&mut self.extern_mod_span, Some(item.span));
self.visibility_not_permitted(
&item.vis,
diagnostics::VisibilityNotPermittedNote::IndividualForeignItems,
);
if &Safety::Default == safety {
if item.span.at_least_rust_2024() {
self.dcx().emit_err(diagnostics::MissingUnsafeOnExtern {
span: item.span,
unsafe_span: item.span.shrink_to_lo(),
});
} else {
self.lint_buffer.buffer_lint(
MISSING_UNSAFE_ON_EXTERN,
item.id,
item.span,
diagnostics::MissingUnsafeOnExternLint {
suggestion: item.span.shrink_to_lo(),
},
);
}
}
if abi.is_none() {
self.handle_missing_abi(*extern_span, item.id);
}
let extern_abi = abi.and_then(|abi| ExternAbi::from_str(abi.symbol.as_str()).ok());
self.with_in_extern_mod(*safety, extern_abi, |this| {
visit::walk_item(this, item);
});
self.extern_mod_span = old_item;
}
ItemKind::Enum(_, _, def) => {
for variant in &def.variants {
self.visibility_not_permitted(
&variant.vis,
diagnostics::VisibilityNotPermittedNote::EnumVariant,
);
for field in variant.data.fields() {
self.visibility_not_permitted(
&field.vis,
diagnostics::VisibilityNotPermittedNote::EnumVariant,
);
}
}
self.with_tilde_const(Some(TildeConstReason::Enum { span: item.span }), |this| {
visit::walk_item(this, item)
});
}
ItemKind::Trait(tr) => {
let Trait { constness, is_auto, generics, ident, bounds, items, .. } = &**tr;
self.visit_attrs_vis_ident(&item.attrs, &item.vis, ident);
if *is_auto == IsAuto::Yes {
self.deny_const_auto_traits(*constness);
self.deny_generic_params(generics, ident.span);
self.deny_super_traits(bounds, ident.span);
self.deny_where_clause(&generics.where_clause, ident.span);
self.deny_items(items, ident.span);
}
let disallowed = matches!(constness, ast::Const::No)
.then(|| TildeConstReason::Trait { span: item.span });
self.with_tilde_const(disallowed, |this| {
this.visit_generics(generics);
walk_list!(this, visit_param_bound, bounds, BoundKind::SuperTraits)
});
self.with_in_trait(item.span, *constness, |this| {
walk_list!(this, visit_assoc_item, items, AssocCtxt::Trait);
});
}
ItemKind::TraitAlias(ta) => {
let TraitAlias { constness, generics, bounds, .. } = &**ta;
let disallowed = matches!(constness, ast::Const::No)
.then(|| TildeConstReason::Trait { span: item.span });
self.with_tilde_const(disallowed, |this| {
this.visit_generics(generics);
walk_list!(this, visit_param_bound, bounds, BoundKind::SuperTraits)
});
}
ItemKind::Mod(safety, ident, mod_kind) => {
if let &Safety::Unsafe(span) = safety {
self.dcx().emit_err(diagnostics::UnsafeItem { span, kind: "module" });
}
if !matches!(mod_kind, ModKind::Loaded(_, Inline::Yes, _))
&& !attr::contains_name(&item.attrs, sym::path)
{
self.check_mod_file_item_asciionly(*ident);
}
visit::walk_item(self, item)
}
ItemKind::Struct(.., vdata) => {
self.with_tilde_const(Some(TildeConstReason::Struct { span: item.span }), |this| {
let scalable_vector_attr =
item.attrs.iter().find(|attr| attr.has_name(sym::rustc_scalable_vector));
if let Some(attr) = scalable_vector_attr {
if !matches!(vdata, VariantData::Tuple(..)) {
this.dcx().emit_err(diagnostics::ScalableVectorNotTupleStruct {
span: item.span,
});
}
if !self.sess.target.arch.supports_scalable_vectors()
&& !self.sess.opts.actually_rustdoc
{
this.dcx()
.emit_err(diagnostics::ScalableVectorBadArch { span: attr.span });
}
}
visit::walk_item(this, item);
})
}
ItemKind::Union(.., vdata) => {
if vdata.fields().is_empty() {
self.dcx().emit_err(diagnostics::FieldlessUnion { span: item.span });
}
self.with_tilde_const(Some(TildeConstReason::Union { span: item.span }), |this| {
visit::walk_item(this, item)
});
}
ItemKind::Const(c) => {
let ConstItem { defaultness, ident, body, .. } = &**c;
self.check_defaultness(item.span, *defaultness, AllowDefault::No, AllowFinal::No);
if body.is_none() {
self.dcx().emit_err(diagnostics::ConstWithoutBody {
span: item.span,
replace_span: self.ending_semi_or_hi(item.span),
});
}
if ident.name == kw::Underscore
&& !matches!(item.vis.kind, VisibilityKind::Inherited)
&& ident.span.eq_ctxt(item.vis.span)
{
self.lint_buffer.buffer_lint(
UNUSED_VISIBILITIES,
item.id,
item.vis.span,
diagnostics::UnusedVisibility { span: item.vis.span },
)
}
visit::walk_item(self, item);
}
ItemKind::Static(st) => {
let StaticItem { expr, safety, eii_impl, .. } = &**st;
self.check_item_safety(item.span, *safety);
self.check_eii_impl_attrs(&item.attrs, eii_impl);
if matches!(safety, Safety::Unsafe(_)) {
self.dcx().emit_err(diagnostics::UnsafeStatic { span: item.span });
}
if expr.is_none() {
self.dcx().emit_err(diagnostics::StaticWithoutBody {
span: item.span,
replace_span: self.ending_semi_or_hi(item.span),
});
}
visit::walk_item(self, item);
}
ItemKind::TyAlias(ty_alias) => {
let ty_alias: &TyAlias = &**ty_alias;
let TyAlias { defaultness, bounds, after_where_clause, ty, .. } = ty_alias;
self.check_defaultness(item.span, *defaultness, AllowDefault::No, AllowFinal::No);
if ty.is_none() {
self.dcx().emit_err(diagnostics::TyAliasWithoutBody {
span: item.span,
replace_span: self.ending_semi_or_hi(item.span),
});
}
self.check_type_no_bounds(bounds, "this context");
if self.features.checked_type_aliases() {
if let Err(err) = self.check_type_alias_where_clause_location(ty_alias) {
self.dcx().emit_err(err);
}
} else if after_where_clause.has_where_token {
self.dcx().emit_err(diagnostics::WhereClauseAfterTypeAlias {
span: after_where_clause.span,
help: self.sess.is_nightly_build(),
});
}
visit::walk_item(self, item);
}
_ => visit::walk_item(self, item),
}
self.lint_node_id = previous_lint_node_id;
}
fn visit_foreign_item(&mut self, fi: &ForeignItem) {
match &fi.kind {
ForeignItemKind::Fn(f) => {
let Fn { defaultness, ident, sig, body, .. } = &**f;
self.check_defaultness(fi.span, *defaultness, AllowDefault::No, AllowFinal::No);
self.check_foreign_fn_bodyless(*ident, body.as_deref());
self.check_foreign_fn_headerless(sig.header);
self.check_foreign_item_ascii_only(*ident);
self.check_extern_fn_signature(
self.extern_mod_abi.unwrap_or(ExternAbi::FALLBACK),
FnCtxt::Foreign,
Some(ident),
&sig.as_borrowed(),
);
if let Some(attr) = attr::find_by_name(fi.attrs(), sym::track_caller)
&& self.extern_mod_abi != Some(ExternAbi::Rust)
{
self.dcx().emit_err(diagnostics::RequiresRustAbi {
track_caller_span: attr.span,
extern_abi_span: self.current_extern_span(),
});
}
}
ForeignItemKind::TyAlias(ta) => {
let TyAlias { defaultness, ident, generics, after_where_clause, bounds, ty, .. } =
&**ta;
self.check_defaultness(fi.span, *defaultness, AllowDefault::No, AllowFinal::No);
self.check_foreign_kind_bodyless(*ident, "type", ty.as_ref().map(|b| b.span));
self.check_type_no_bounds(bounds, "`extern` blocks");
self.check_foreign_ty_genericless(generics, after_where_clause);
self.check_foreign_item_ascii_only(*ident);
}
ForeignItemKind::Static(st) => {
let StaticItem { ident, safety, expr, .. } = &**st;
self.check_item_safety(fi.span, *safety);
self.check_foreign_kind_bodyless(*ident, "static", expr.as_ref().map(|b| b.span));
self.check_foreign_item_ascii_only(*ident);
}
ForeignItemKind::MacCall(..) => {}
}
visit::walk_item(self, fi)
}
fn visit_generic_args(&mut self, generic_args: &GenericArgs) {
match generic_args {
GenericArgs::AngleBracketed(data) => {
self.check_generic_args_before_constraints(data);
for arg in &data.args {
match arg {
AngleBracketedArg::Arg(arg) => self.visit_generic_arg(arg),
AngleBracketedArg::Constraint(constraint) => {
self.with_impl_trait(None, |this| {
this.visit_assoc_item_constraint(constraint);
});
}
}
}
}
GenericArgs::Parenthesized(data) => {
walk_list!(self, visit_param, &data.inputs);
if let FnRetTy::Ty(ty) = &data.output {
self.with_impl_trait(None, |this| this.visit_ty(ty));
}
}
GenericArgs::ParenthesizedElided(_span) => {}
}
}
fn visit_generics(&mut self, generics: &Generics) {
let mut prev_param_default = None;
for param in &generics.params {
match param.kind {
GenericParamKind::Lifetime => (),
GenericParamKind::Type { default: Some(_), .. }
| GenericParamKind::Const { default: Some(_), .. } => {
prev_param_default = Some(param.ident.span);
}
GenericParamKind::Type { .. } | GenericParamKind::Const { .. } => {
if let Some(span) = prev_param_default {
self.dcx().emit_err(diagnostics::GenericDefaultTrailing { span });
break;
}
}
}
}
validate_generic_param_order(self.dcx(), &generics.params, generics.span);
walk_list!(self, visit_generic_param, &generics.params);
for predicate in &generics.where_clause.predicates {
match &predicate.kind {
WherePredicateKind::BoundPredicate(bound_pred) => {
if !bound_pred.bound_generic_params.is_empty() {
for bound in &bound_pred.bounds {
match bound {
GenericBound::Trait(t) => {
if !t.bound_generic_params.is_empty() {
self.dcx().emit_err(diagnostics::NestedLifetimes {
span: t.span,
});
}
}
GenericBound::Outlives(_) => {}
GenericBound::Use(..) => {}
}
}
}
}
WherePredicateKind::RegionPredicate(_) => {}
}
self.visit_where_predicate(predicate);
}
}
fn visit_param_bound(&mut self, bound: &GenericBound, ctxt: BoundKind) {
match bound {
GenericBound::Trait(trait_ref) => {
match (ctxt, trait_ref.modifiers.constness, trait_ref.modifiers.polarity) {
(
BoundKind::TraitObject,
BoundConstness::Always(_),
BoundPolarity::Positive,
) => {
self.dcx()
.emit_err(diagnostics::ConstBoundTraitObject { span: trait_ref.span });
}
(_, BoundConstness::Maybe(span), BoundPolarity::Positive)
if let Some(reason) = self.disallow_tilde_const =>
{
self.dcx().emit_err(diagnostics::TildeConstDisallowed { span, reason });
}
_ => {}
}
if let BoundPolarity::Negative(_) = trait_ref.modifiers.polarity
&& let Some(segment) = trait_ref.trait_ref.path.segments.last()
{
match segment.args.as_deref() {
Some(ast::GenericArgs::AngleBracketed(args)) => {
for arg in &args.args {
if let ast::AngleBracketedArg::Constraint(constraint) = arg {
self.dcx().emit_err(diagnostics::ConstraintOnNegativeBound {
span: constraint.span,
});
}
}
}
Some(ast::GenericArgs::Parenthesized(args)) => {
self.dcx().emit_err(
diagnostics::NegativeBoundWithParentheticalNotation {
span: args.span,
},
);
}
Some(ast::GenericArgs::ParenthesizedElided(_)) | None => {}
}
}
}
GenericBound::Outlives(_) => {}
GenericBound::Use(_, span) => match ctxt {
BoundKind::Impl => {}
BoundKind::Bound | BoundKind::TraitObject | BoundKind::SuperTraits => {
self.dcx().emit_err(diagnostics::PreciseCapturingNotAllowedHere {
loc: ctxt.descr(),
span: *span,
});
}
},
}
visit::walk_param_bound(self, bound)
}
fn visit_fn(&mut self, fk: FnKind<'_>, attrs: &AttrVec, span: Span, id: NodeId) {
let self_semantic = match fk.ctxt() {
Some(FnCtxt::Assoc(_)) => SelfSemantic::Yes,
_ => SelfSemantic::No,
};
let splat_semantic = SplatSemantic::from_fn_kind(&fk);
self.check_fn_decl(fk.decl(), self_semantic, splat_semantic);
if let Some(&FnHeader { safety, .. }) = fk.header() {
self.check_item_safety(span, safety);
}
if let FnKind::Fn(ctxt, _, fun) = fk {
let ext = match fun.sig.header.ext {
Extern::None => None,
Extern::Implicit(span) => Some((ExternAbi::FALLBACK, span)),
Extern::Explicit(str_lit, span) => {
ExternAbi::from_str(str_lit.symbol.as_str()).ok().map(|abi| (abi, span))
}
};
if let Some((extern_abi, extern_abi_span)) = ext {
self.check_extern_fn_signature(
extern_abi,
ctxt,
Some(&fun.ident),
&fun.sig.as_borrowed(),
);
if let Some(attr) = attr::find_by_name(attrs, sym::track_caller)
&& extern_abi != ExternAbi::Rust
{
self.dcx().emit_err(diagnostics::RequiresRustAbi {
track_caller_span: attr.span,
extern_abi_span,
});
}
}
}
self.check_extern_custom(fk, attrs);
self.check_c_variadic_type(fk, attrs);
if let Some(&FnHeader {
constness: Const::Yes(const_span),
coroutine_marker: Some(coroutine_marker),
..
}) = fk.header()
{
self.dcx().emit_err(diagnostics::ConstAndCoroutine {
spans: vec![coroutine_marker.span, const_span],
const_span,
coroutine_span: coroutine_marker.span,
coroutine_kind: coroutine_marker.kind.as_str(),
span,
});
}
if let FnKind::Fn(
_,
_,
Fn {
sig: FnSig { header: FnHeader { ext: Extern::Implicit(extern_span), .. }, .. },
..
},
) = fk
{
self.handle_missing_abi(*extern_span, id);
}
if let FnKind::Fn(ctxt, _, Fn { body: None, sig, .. }) = fk {
Self::check_decl_no_pat(&sig.decl, |span, ident, mut_ident| {
if mut_ident && matches!(ctxt, FnCtxt::Assoc(_)) {
if let Some(ident) = ident {
let is_foreign = matches!(ctxt, FnCtxt::Foreign);
self.lint_buffer.dyn_buffer_lint(
PATTERNS_IN_FNS_WITHOUT_BODY,
id,
span,
move |dcx, level| {
let sub = diagnostics::PatternsInFnsWithoutBodySub { ident, span };
if is_foreign {
diagnostics::PatternsInFnsWithoutBody::Foreign { sub }
} else {
diagnostics::PatternsInFnsWithoutBody::Bodiless { sub }
}
.into_diag(dcx, level)
},
)
}
} else {
match ctxt {
FnCtxt::Foreign => {
self.dcx().emit_err(diagnostics::PatternInForeign { span })
}
_ => self.dcx().emit_err(diagnostics::PatternInBodiless { span }),
};
}
});
}
let tilde_const_allowed =
matches!(fk.header(), Some(FnHeader { constness: ast::Const::Yes(_), .. }))
|| matches!(fk.ctxt(), Some(FnCtxt::Assoc(_)))
&& self
.outer_trait_or_trait_impl
.as_ref()
.and_then(TraitOrImpl::constness)
.is_some();
let disallowed = (!tilde_const_allowed).then(|| match fk {
FnKind::Fn(_, _, f) => TildeConstReason::Function { ident: f.ident.span },
FnKind::Closure(..) => TildeConstReason::Closure,
});
self.with_tilde_const(disallowed, |this| visit::walk_fn(this, fk));
}
fn visit_assoc_item(&mut self, item: &AssocItem, ctxt: AssocCtxt) {
if let Some(ident) = item.kind.ident()
&& attr::contains_name(&item.attrs, sym::no_mangle)
{
self.check_nomangle_item_asciionly(ident, item.span);
}
let defaultness = item.kind.defaultness();
self.check_defaultness(
item.span,
defaultness,
AllowDefault::when(matches!(ctxt, AssocCtxt::Impl { .. })),
AllowFinal::when(
ctxt == AssocCtxt::Trait && matches!(item.kind, AssocItemKind::Fn(..)),
),
);
self.check_final_has_body(item, defaultness);
if let AssocCtxt::Impl { .. } = ctxt {
match &item.kind {
AssocItemKind::Const(c) => {
let ConstItem { body, .. } = &**c;
if body.is_none() {
self.dcx().emit_err(diagnostics::AssocConstWithoutBody {
span: item.span,
replace_span: self.ending_semi_or_hi(item.span),
});
}
}
AssocItemKind::Fn(f) => {
let Fn { body, .. } = &**f;
if body.is_none() && !self.is_sdylib_interface {
self.dcx().emit_err(diagnostics::AssocFnWithoutBody {
span: item.span,
replace_span: self.ending_semi_or_hi(item.span),
});
}
}
AssocItemKind::Type(ta) => {
let TyAlias { bounds, ty, .. } = &**ta;
if ty.is_none() {
self.dcx().emit_err(diagnostics::AssocTypeWithoutBody {
span: item.span,
replace_span: self.ending_semi_or_hi(item.span),
});
}
self.check_type_no_bounds(bounds, "`impl`s");
}
_ => {}
}
}
if let AssocItemKind::Type(ty_alias) = &item.kind
&& let Err(err) = self.check_type_alias_where_clause_location(ty_alias)
{
let sugg = match err.sugg {
diagnostics::WhereClauseBeforeTypeAliasSugg::Remove { .. } => None,
diagnostics::WhereClauseBeforeTypeAliasSugg::Move { snippet, right, .. } => {
Some((right, snippet))
}
};
let left_sp = self
.sess
.source_map()
.span_extend_prev_while(err.span, char::is_whitespace)
.unwrap_or(err.span);
self.lint_buffer.dyn_buffer_lint(
DEPRECATED_WHERE_CLAUSE_LOCATION,
item.id,
err.span,
move |dcx, level| {
let suggestion = match sugg {
Some((right_sp, sugg)) => {
diagnostics::DeprecatedWhereClauseLocationSugg::MoveToEnd {
left: left_sp,
right: right_sp,
sugg,
}
}
None => diagnostics::DeprecatedWhereClauseLocationSugg::RemoveWhere {
span: err.span,
},
};
diagnostics::DeprecatedWhereClauseLocation { suggestion }.into_diag(dcx, level)
},
);
}
match &self.outer_trait_or_trait_impl {
Some(parent @ (TraitOrImpl::Trait { .. } | TraitOrImpl::TraitImpl { .. })) => {
self.visibility_not_permitted(
&item.vis,
diagnostics::VisibilityNotPermittedNote::TraitImpl,
);
if let AssocItemKind::Fn(f) = &item.kind {
let Fn { sig, .. } = &**f;
self.check_trait_fn_not_const(sig.header.constness, parent);
self.check_async_fn_in_const_trait_or_impl(sig, parent);
}
}
Some(parent @ TraitOrImpl::Impl { constness }) => {
if let AssocItemKind::Fn(f) = &item.kind {
let Fn { sig, .. } = &**f;
self.check_impl_fn_not_const(sig.header.constness, *constness);
self.check_async_fn_in_const_trait_or_impl(sig, parent);
}
}
None => {}
}
if let AssocItemKind::Const(ci) = &item.kind {
self.check_item_named(ci.ident, "const");
}
let parent_is_const =
self.outer_trait_or_trait_impl.as_ref().and_then(TraitOrImpl::constness).is_some();
match &item.kind {
AssocItemKind::Fn(func)
if parent_is_const
|| ctxt == AssocCtxt::Trait
|| matches!(func.sig.header.constness, Const::Yes(_)) =>
{
self.visit_attrs_vis_ident(&item.attrs, &item.vis, &func.ident);
let kind = FnKind::Fn(FnCtxt::Assoc(ctxt), &item.vis, &*func);
self.visit_fn(kind, &item.attrs, item.span, item.id);
}
AssocItemKind::Type(_) => {
let disallowed = (!parent_is_const).then(|| match self.outer_trait_or_trait_impl {
Some(TraitOrImpl::Trait { .. }) => {
TildeConstReason::TraitAssocTy { span: item.span }
}
Some(TraitOrImpl::TraitImpl { .. }) => {
TildeConstReason::TraitImplAssocTy { span: item.span }
}
Some(TraitOrImpl::Impl { .. }) | None => {
TildeConstReason::InherentAssocTy { span: item.span }
}
});
self.with_tilde_const(disallowed, |this| {
this.with_in_trait_or_impl(None, |this| {
visit::walk_assoc_item(this, item, ctxt)
})
})
}
_ => self.with_in_trait_or_impl(None, |this| visit::walk_assoc_item(this, item, ctxt)),
}
}
fn visit_anon_const(&mut self, anon_const: &AnonConst) {
self.with_tilde_const(
Some(TildeConstReason::AnonConst { span: anon_const.value.span }),
|this| visit::walk_anon_const(this, anon_const),
)
}
}
pub fn check_crate(
sess: &Session,
features: &Features,
krate: &Crate,
is_sdylib_interface: bool,
lints: &mut LintBuffer,
) -> bool {
let mut validator = AstValidator {
sess,
features,
extern_mod_span: None,
outer_trait_or_trait_impl: None,
has_proc_macro_decls: false,
outer_impl_trait_span: None,
disallow_tilde_const: Some(TildeConstReason::Item),
extern_mod_safety: None,
extern_mod_abi: None,
lint_node_id: CRATE_NODE_ID,
is_sdylib_interface,
lint_buffer: lints,
};
visit::walk_crate(&mut validator, krate);
validator.has_proc_macro_decls
}