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syntax: struct field attributes and cfg
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@ -538,6 +538,7 @@ pub struct FieldPat {
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/// The pattern the field is destructured to
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pub pat: P<Pat>,
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pub is_shorthand: bool,
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pub attrs: ThinVec<Attribute>,
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}
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#[derive(Clone, PartialEq, Eq, RustcEncodable, RustcDecodable, Hash, Debug, Copy)]
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@ -815,6 +816,7 @@ pub struct Field {
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pub expr: P<Expr>,
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pub span: Span,
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pub is_shorthand: bool,
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pub attrs: ThinVec<Attribute>,
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}
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pub type SpannedIdent = Spanned<Ident>;
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@ -18,7 +18,7 @@ use ast;
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use ast::{AttrId, Attribute, Name};
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use ast::{MetaItem, MetaItemKind, NestedMetaItem, NestedMetaItemKind};
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use ast::{Lit, Expr, Item, Local, Stmt, StmtKind};
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use codemap::{spanned, dummy_spanned, mk_sp};
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use codemap::{Spanned, spanned, dummy_spanned, mk_sp};
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use syntax_pos::{Span, BytePos, DUMMY_SP};
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use errors::Handler;
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use feature_gate::{Features, GatedCfg};
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@ -959,6 +959,13 @@ pub trait HasAttrs: Sized {
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fn map_attrs<F: FnOnce(Vec<ast::Attribute>) -> Vec<ast::Attribute>>(self, f: F) -> Self;
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}
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impl<T: HasAttrs> HasAttrs for Spanned<T> {
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fn attrs(&self) -> &[ast::Attribute] { self.node.attrs() }
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fn map_attrs<F: FnOnce(Vec<ast::Attribute>) -> Vec<ast::Attribute>>(self, f: F) -> Self {
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Spanned { node: self.node.map_attrs(f), span: self.span }
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}
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}
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impl HasAttrs for Vec<Attribute> {
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fn attrs(&self) -> &[Attribute] {
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&self
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@ -1012,26 +1019,31 @@ impl HasAttrs for StmtKind {
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}
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}
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macro_rules! derive_has_attrs_from_field {
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($($ty:path),*) => { derive_has_attrs_from_field!($($ty: .attrs),*); };
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($($ty:path : $(.$field:ident)*),*) => { $(
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impl HasAttrs for Stmt {
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fn attrs(&self) -> &[ast::Attribute] { self.node.attrs() }
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fn map_attrs<F: FnOnce(Vec<ast::Attribute>) -> Vec<ast::Attribute>>(self, f: F) -> Self {
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Stmt { id: self.id, node: self.node.map_attrs(f), span: self.span }
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}
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}
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macro_rules! derive_has_attrs {
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($($ty:path),*) => { $(
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impl HasAttrs for $ty {
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fn attrs(&self) -> &[Attribute] {
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self $(.$field)* .attrs()
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&self.attrs
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}
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fn map_attrs<F>(mut self, f: F) -> Self
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where F: FnOnce(Vec<Attribute>) -> Vec<Attribute>,
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{
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self $(.$field)* = self $(.$field)* .map_attrs(f);
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self.attrs = self.attrs.map_attrs(f);
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self
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}
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}
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)* }
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}
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derive_has_attrs_from_field! {
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Item, Expr, Local, ast::ForeignItem, ast::StructField, ast::ImplItem, ast::TraitItem, ast::Arm
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derive_has_attrs! {
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Item, Expr, Local, ast::ForeignItem, ast::StructField, ast::ImplItem, ast::TraitItem, ast::Arm,
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ast::Field, ast::FieldPat, ast::Variant_
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}
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derive_has_attrs_from_field! { Stmt: .node, ast::Variant: .node.attrs }
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@ -221,11 +221,21 @@ impl<'a> StripUnconfigured<'a> {
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}
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pub fn configure_expr_kind(&mut self, expr_kind: ast::ExprKind) -> ast::ExprKind {
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if let ast::ExprKind::Match(m, arms) = expr_kind {
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let arms = arms.into_iter().filter_map(|a| self.configure(a)).collect();
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ast::ExprKind::Match(m, arms)
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} else {
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expr_kind
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match expr_kind {
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ast::ExprKind::Match(m, arms) => {
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let arms = arms.into_iter().filter_map(|a| self.configure(a)).collect();
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ast::ExprKind::Match(m, arms)
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}
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ast::ExprKind::Struct(path, fields, base) => {
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let fields = fields.into_iter()
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.filter_map(|field| {
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self.visit_struct_field_attrs(field.attrs());
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self.configure(field)
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})
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.collect();
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ast::ExprKind::Struct(path, fields, base)
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}
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_ => expr_kind,
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}
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}
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@ -250,6 +260,51 @@ impl<'a> StripUnconfigured<'a> {
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pub fn configure_stmt(&mut self, stmt: ast::Stmt) -> Option<ast::Stmt> {
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self.configure(stmt)
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}
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pub fn configure_struct_expr_field(&mut self, field: ast::Field) -> Option<ast::Field> {
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if !self.features.map(|features| features.struct_field_attributes).unwrap_or(true) {
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if !field.attrs.is_empty() {
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let mut err = feature_err(&self.sess,
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"struct_field_attributes",
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field.span,
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GateIssue::Language,
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"attributes on struct literal fields are unstable");
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err.emit();
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}
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}
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self.configure(field)
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}
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pub fn configure_pat(&mut self, pattern: P<ast::Pat>) -> P<ast::Pat> {
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pattern.map(|mut pattern| {
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if let ast::PatKind::Struct(path, fields, etc) = pattern.node {
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let fields = fields.into_iter()
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.filter_map(|field| {
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self.visit_struct_field_attrs(field.attrs());
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self.configure(field)
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})
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.collect();
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pattern.node = ast::PatKind::Struct(path, fields, etc);
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}
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pattern
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})
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}
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fn visit_struct_field_attrs(&mut self, attrs: &[ast::Attribute]) {
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// flag the offending attributes
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for attr in attrs.iter() {
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if !self.features.map(|features| features.struct_field_attributes).unwrap_or(true) {
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let mut err = feature_err(
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&self.sess,
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"struct_field_attributes",
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attr.span,
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GateIssue::Language,
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"attributes on struct pattern or literal fields are unstable");
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err.emit();
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}
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}
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}
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}
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impl<'a> fold::Folder for StripUnconfigured<'a> {
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@ -299,6 +354,10 @@ impl<'a> fold::Folder for StripUnconfigured<'a> {
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// Interpolated AST will get configured once the surrounding tokens are parsed.
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mac
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}
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fn fold_pat(&mut self, pattern: P<ast::Pat>) -> P<ast::Pat> {
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fold::noop_fold_pat(self.configure_pat(pattern), self)
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}
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}
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fn is_cfg(attr: &ast::Attribute) -> bool {
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@ -699,7 +699,13 @@ impl<'a> AstBuilder for ExtCtxt<'a> {
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self.expr(b.span, ast::ExprKind::Block(b))
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}
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fn field_imm(&self, span: Span, name: Ident, e: P<ast::Expr>) -> ast::Field {
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ast::Field { ident: respan(span, name), expr: e, span: span, is_shorthand: false }
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ast::Field {
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ident: respan(span, name),
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expr: e,
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span: span,
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is_shorthand: false,
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attrs: ast::ThinVec::new(),
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}
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}
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fn expr_struct(&self, span: Span, path: ast::Path, fields: Vec<ast::Field>) -> P<ast::Expr> {
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self.expr(span, ast::ExprKind::Struct(path, fields, None))
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@ -679,6 +679,7 @@ impl<'a, 'b> Folder for InvocationCollector<'a, 'b> {
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}
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fn fold_pat(&mut self, pat: P<ast::Pat>) -> P<ast::Pat> {
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let pat = self.cfg.configure_pat(pat);
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match pat.node {
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PatKind::Mac(_) => {}
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_ => return noop_fold_pat(pat, self),
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@ -327,6 +327,9 @@ declare_features! (
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// The `unadjusted` ABI. Perma unstable.
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(active, abi_unadjusted, "1.16.0", None),
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// Allows attributes on struct literal fields.
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(active, struct_field_attributes, "1.16.0", Some(38814)),
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);
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declare_features! (
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@ -830,6 +830,7 @@ pub fn noop_fold_field<T: Folder>(f: Field, folder: &mut T) -> Field {
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expr: folder.fold_expr(f.expr),
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span: folder.new_span(f.span),
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is_shorthand: f.is_shorthand,
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attrs: fold_thin_attrs(f.attrs, folder),
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}
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}
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@ -1089,6 +1090,7 @@ pub fn noop_fold_pat<T: Folder>(p: P<Pat>, folder: &mut T) -> P<Pat> {
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ident: folder.fold_ident(f.node.ident),
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pat: folder.fold_pat(f.node.pat),
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is_shorthand: f.node.is_shorthand,
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attrs: fold_attrs(f.node.attrs.into(), folder).into()
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}}
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});
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PatKind::Struct(pth, fs, etc)
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@ -1946,6 +1946,7 @@ impl<'a> Parser<'a> {
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/// Parse ident (COLON expr)?
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pub fn parse_field(&mut self) -> PResult<'a, Field> {
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let attrs = self.parse_outer_attributes()?;
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let lo = self.span.lo;
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let hi;
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@ -1968,6 +1969,7 @@ impl<'a> Parser<'a> {
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span: mk_sp(lo, expr.span.hi),
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expr: expr,
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is_shorthand: is_shorthand,
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attrs: attrs.into(),
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})
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}
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@ -3436,6 +3438,7 @@ impl<'a> Parser<'a> {
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if self.check(&token::CloseDelim(token::Brace)) { break }
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}
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let attrs = self.parse_outer_attributes()?;
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let lo = self.span.lo;
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let hi;
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@ -3493,9 +3496,13 @@ impl<'a> Parser<'a> {
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};
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fields.push(codemap::Spanned { span: mk_sp(lo, hi),
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node: ast::FieldPat { ident: fieldname,
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pat: subpat,
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is_shorthand: is_shorthand }});
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node: ast::FieldPat {
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ident: fieldname,
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pat: subpat,
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is_shorthand: is_shorthand,
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attrs: attrs.into(),
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}
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});
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}
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return Ok((fields, etc));
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}
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@ -427,6 +427,7 @@ pub fn walk_pat<'a, V: Visitor<'a>>(visitor: &mut V, pattern: &'a Pat) {
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PatKind::Struct(ref path, ref fields, _) => {
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visitor.visit_path(path, pattern.id);
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for field in fields {
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walk_list!(visitor, visit_attribute, field.node.attrs.iter());
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visitor.visit_ident(field.span, field.node.ident);
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visitor.visit_pat(&field.node.pat)
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}
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@ -659,6 +660,7 @@ pub fn walk_expr<'a, V: Visitor<'a>>(visitor: &mut V, expression: &'a Expr) {
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ExprKind::Struct(ref path, ref fields, ref optional_base) => {
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visitor.visit_path(path, expression.id);
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for field in fields {
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walk_list!(visitor, visit_attribute, field.attrs.iter());
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visitor.visit_ident(field.ident.span, field.ident.node);
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visitor.visit_expr(&field.expr)
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}
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@ -1550,6 +1550,7 @@ impl<'a> TraitDef<'a> {
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ident: ident.unwrap(),
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pat: pat,
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is_shorthand: false,
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attrs: ast::ThinVec::new(),
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},
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}
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})
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20
src/test/compile-fail/struct-field-attr-feature-gate.rs
Normal file
20
src/test/compile-fail/struct-field-attr-feature-gate.rs
Normal file
@ -0,0 +1,20 @@
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// Copyright 2017 The Rust Project Developers. See the COPYRIGHT
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// file at the top-level directory of this distribution and at
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// http://rust-lang.org/COPYRIGHT.
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//
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// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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struct Foo {
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present: (),
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}
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fn main() {
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let foo = Foo { #[cfg(all())] present: () };
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//~^ ERROR attributes on struct pattern or literal fields are unstable
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let Foo { #[cfg(all())] present: () } = foo;
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//~^ ERROR attributes on struct pattern or literal fields are unstable
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}
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30
src/test/compile-fail/struct-field-cfg.rs
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30
src/test/compile-fail/struct-field-cfg.rs
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@ -0,0 +1,30 @@
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// Copyright 2017 The Rust Project Developers. See the COPYRIGHT
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// file at the top-level directory of this distribution and at
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// http://rust-lang.org/COPYRIGHT.
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//
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// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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#![feature(struct_field_attributes)]
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struct Foo {
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present: (),
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}
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fn main() {
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let foo = Foo { #[cfg(all())] present: () };
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let _ = Foo { #[cfg(any())] present: () };
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//~^ ERROR missing field `present` in initializer of `Foo`
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let _ = Foo { present: (), #[cfg(any())] absent: () };
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let _ = Foo { present: (), #[cfg(all())] absent: () };
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//~^ ERROR struct `Foo` has no field named `absent`
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let Foo { #[cfg(all())] present: () } = foo;
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let Foo { #[cfg(any())] present: () } = foo;
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//~^ ERROR pattern does not mention field `present`
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let Foo { present: (), #[cfg(any())] absent: () } = foo;
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let Foo { present: (), #[cfg(all())] absent: () } = foo;
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//~^ ERROR struct `Foo` does not have a field named `absent`
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}
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