syntax: Remove traits `AttrMetaMethods`, `AttributeMethods`, and `AttrNestedMetaItemMethods`
867 lines
31 KiB
Rust
867 lines
31 KiB
Rust
// Copyright 2012-2014 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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use ast::{Block, Crate, Ident, Mac_, PatKind};
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use ast::{MacStmtStyle, Stmt, StmtKind, ItemKind};
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use ast;
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use ext::hygiene::Mark;
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use attr::{self, HasAttrs};
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use codemap::{dummy_spanned, ExpnInfo, NameAndSpan, MacroBang, MacroAttribute};
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use syntax_pos::{self, Span, ExpnId};
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use config::StripUnconfigured;
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use ext::base::*;
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use feature_gate::{self, Features};
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use fold;
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use fold::*;
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use parse::token::{intern, keywords};
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use ptr::P;
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use tokenstream::TokenTree;
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use util::small_vector::SmallVector;
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use visit;
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use visit::Visitor;
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use std_inject;
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// A trait for AST nodes and AST node lists into which macro invocations may expand.
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trait MacroGenerable: Sized {
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// Expand the given MacResult using its appropriate `make_*` method.
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fn make_with<'a>(result: Box<MacResult + 'a>) -> Option<Self>;
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// Fold this node or list of nodes using the given folder.
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fn fold_with<F: Folder>(self, folder: &mut F) -> Self;
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fn visit_with<V: Visitor>(&self, visitor: &mut V);
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// The user-friendly name of the node type (e.g. "expression", "item", etc.) for diagnostics.
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fn kind_name() -> &'static str;
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// Return a placeholder expansion to allow compilation to continue after an erroring expansion.
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fn dummy(span: Span) -> Self {
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Self::make_with(DummyResult::any(span)).unwrap()
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}
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}
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macro_rules! impl_macro_generable {
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($($ty:ty: $kind_name:expr, .$make:ident,
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$(.$fold:ident)* $(lift .$fold_elt:ident)*,
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$(.$visit:ident)* $(lift .$visit_elt:ident)*;)*) => { $(
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impl MacroGenerable for $ty {
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fn kind_name() -> &'static str { $kind_name }
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fn make_with<'a>(result: Box<MacResult + 'a>) -> Option<Self> { result.$make() }
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fn fold_with<F: Folder>(self, folder: &mut F) -> Self {
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$( folder.$fold(self) )*
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$( self.into_iter().flat_map(|item| folder. $fold_elt (item)).collect() )*
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}
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fn visit_with<V: Visitor>(&self, visitor: &mut V) {
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$( visitor.$visit(self) )*
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$( for item in self.as_slice() { visitor. $visit_elt (item) } )*
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}
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}
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)* }
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}
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impl_macro_generable! {
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P<ast::Expr>: "expression", .make_expr, .fold_expr, .visit_expr;
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P<ast::Pat>: "pattern", .make_pat, .fold_pat, .visit_pat;
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P<ast::Ty>: "type", .make_ty, .fold_ty, .visit_ty;
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SmallVector<ast::Stmt>: "statement", .make_stmts, lift .fold_stmt, lift .visit_stmt;
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SmallVector<P<ast::Item>>: "item", .make_items, lift .fold_item, lift .visit_item;
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SmallVector<ast::TraitItem>:
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"trait item", .make_trait_items, lift .fold_trait_item, lift .visit_trait_item;
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SmallVector<ast::ImplItem>:
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"impl item", .make_impl_items, lift .fold_impl_item, lift .visit_impl_item;
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}
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impl MacroGenerable for Option<P<ast::Expr>> {
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fn kind_name() -> &'static str { "expression" }
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fn make_with<'a>(result: Box<MacResult + 'a>) -> Option<Self> {
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result.make_expr().map(Some)
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}
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fn fold_with<F: Folder>(self, folder: &mut F) -> Self {
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self.and_then(|expr| folder.fold_opt_expr(expr))
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}
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fn visit_with<V: Visitor>(&self, visitor: &mut V) {
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self.as_ref().map(|expr| visitor.visit_expr(expr));
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}
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}
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pub fn expand_expr(expr: ast::Expr, fld: &mut MacroExpander) -> P<ast::Expr> {
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match expr.node {
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// expr_mac should really be expr_ext or something; it's the
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// entry-point for all syntax extensions.
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ast::ExprKind::Mac(mac) => {
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return expand_mac_invoc(mac, None, expr.attrs.into(), expr.span, fld);
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}
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_ => P(noop_fold_expr(expr, fld)),
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}
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}
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struct MacroScopePlaceholder;
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impl MacResult for MacroScopePlaceholder {
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fn make_items(self: Box<Self>) -> Option<SmallVector<P<ast::Item>>> {
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Some(SmallVector::one(P(ast::Item {
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ident: keywords::Invalid.ident(),
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attrs: Vec::new(),
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id: ast::DUMMY_NODE_ID,
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node: ast::ItemKind::Mac(dummy_spanned(ast::Mac_ {
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path: ast::Path { span: syntax_pos::DUMMY_SP, global: false, segments: Vec::new() },
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tts: Vec::new(),
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})),
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vis: ast::Visibility::Inherited,
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span: syntax_pos::DUMMY_SP,
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})))
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}
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}
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/// Expand a macro invocation. Returns the result of expansion.
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fn expand_mac_invoc<T>(mac: ast::Mac, ident: Option<Ident>, attrs: Vec<ast::Attribute>, span: Span,
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fld: &mut MacroExpander) -> T
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where T: MacroGenerable,
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{
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// It would almost certainly be cleaner to pass the whole macro invocation in,
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// rather than pulling it apart and marking the tts and the ctxt separately.
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let Mac_ { path, tts, .. } = mac.node;
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let mark = Mark::fresh();
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fn mac_result<'a>(path: &ast::Path, ident: Option<Ident>, tts: Vec<TokenTree>, mark: Mark,
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attrs: Vec<ast::Attribute>, call_site: Span, fld: &'a mut MacroExpander)
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-> Option<Box<MacResult + 'a>> {
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// Detect use of feature-gated or invalid attributes on macro invoations
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// since they will not be detected after macro expansion.
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for attr in attrs.iter() {
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feature_gate::check_attribute(&attr, &fld.cx.parse_sess.span_diagnostic,
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&fld.cx.parse_sess.codemap(),
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&fld.cx.ecfg.features.unwrap());
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}
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if path.segments.len() > 1 || path.global || !path.segments[0].parameters.is_empty() {
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fld.cx.span_err(path.span, "expected macro name without module separators");
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return None;
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}
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let extname = path.segments[0].identifier.name;
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let extension = if let Some(extension) = fld.cx.syntax_env.find(extname) {
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extension
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} else {
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let mut err = fld.cx.struct_span_err(path.span,
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&format!("macro undefined: '{}!'", &extname));
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fld.cx.suggest_macro_name(&extname.as_str(), &mut err);
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err.emit();
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return None;
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};
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let ident = ident.unwrap_or(keywords::Invalid.ident());
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let marked_tts = mark_tts(&tts, mark);
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match *extension {
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NormalTT(ref expandfun, exp_span, allow_internal_unstable) => {
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if ident.name != keywords::Invalid.name() {
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let msg =
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format!("macro {}! expects no ident argument, given '{}'", extname, ident);
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fld.cx.span_err(path.span, &msg);
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return None;
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}
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fld.cx.bt_push(ExpnInfo {
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call_site: call_site,
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callee: NameAndSpan {
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format: MacroBang(extname),
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span: exp_span,
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allow_internal_unstable: allow_internal_unstable,
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},
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});
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Some(expandfun.expand(fld.cx, call_site, &marked_tts))
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}
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IdentTT(ref expander, tt_span, allow_internal_unstable) => {
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if ident.name == keywords::Invalid.name() {
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fld.cx.span_err(path.span,
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&format!("macro {}! expects an ident argument", extname));
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return None;
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};
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fld.cx.bt_push(ExpnInfo {
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call_site: call_site,
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callee: NameAndSpan {
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format: MacroBang(extname),
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span: tt_span,
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allow_internal_unstable: allow_internal_unstable,
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}
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});
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Some(expander.expand(fld.cx, call_site, ident, marked_tts))
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}
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MacroRulesTT => {
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if ident.name == keywords::Invalid.name() {
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fld.cx.span_err(path.span,
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&format!("macro {}! expects an ident argument", extname));
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return None;
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};
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fld.cx.bt_push(ExpnInfo {
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call_site: call_site,
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callee: NameAndSpan {
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format: MacroBang(extname),
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span: None,
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// `macro_rules!` doesn't directly allow unstable
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// (this is orthogonal to whether the macro it creates allows it)
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allow_internal_unstable: false,
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}
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});
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let def = ast::MacroDef {
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ident: ident,
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id: ast::DUMMY_NODE_ID,
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span: call_site,
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imported_from: None,
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use_locally: true,
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body: marked_tts,
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export: attr::contains_name(&attrs, "macro_export"),
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allow_internal_unstable: attr::contains_name(&attrs, "allow_internal_unstable"),
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attrs: attrs,
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};
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fld.cx.insert_macro(def.clone());
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// macro_rules! has a side effect, but expands to nothing.
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// If keep_macs is true, expands to a MacEager::items instead.
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if fld.keep_macs {
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Some(MacEager::items(SmallVector::one(P(ast::Item {
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ident: def.ident,
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attrs: def.attrs.clone(),
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id: ast::DUMMY_NODE_ID,
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node: ast::ItemKind::Mac(ast::Mac {
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span: def.span,
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node: ast::Mac_ {
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path: path.clone(),
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tts: def.body.clone(),
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}
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}),
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vis: ast::Visibility::Inherited,
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span: def.span,
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}))))
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} else {
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Some(Box::new(MacroScopePlaceholder))
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}
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}
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MultiDecorator(..) | MultiModifier(..) => {
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fld.cx.span_err(path.span,
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&format!("`{}` can only be used in attributes", extname));
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None
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}
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}
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}
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let opt_expanded = T::make_with(match mac_result(&path, ident, tts, mark, attrs, span, fld) {
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Some(result) => result,
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None => return T::dummy(span),
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});
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let expanded = if let Some(expanded) = opt_expanded {
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expanded
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} else {
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let msg = format!("non-{kind} macro in {kind} position: {name}",
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name = path.segments[0].identifier.name, kind = T::kind_name());
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fld.cx.span_err(path.span, &msg);
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return T::dummy(span);
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};
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let marked = expanded.fold_with(&mut Marker { mark: mark, expn_id: Some(fld.cx.backtrace()) });
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let configured = marked.fold_with(&mut fld.strip_unconfigured());
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fld.load_macros(&configured);
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let fully_expanded = if fld.single_step {
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configured
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} else {
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configured.fold_with(fld)
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};
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fld.cx.bt_pop();
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fully_expanded
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}
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// eval $e with a new exts frame.
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// must be a macro so that $e isn't evaluated too early.
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macro_rules! with_exts_frame {
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($extsboxexpr:expr,$macros_escape:expr,$e:expr) =>
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({$extsboxexpr.push_frame();
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$extsboxexpr.info().macros_escape = $macros_escape;
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let result = $e;
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$extsboxexpr.pop_frame();
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result
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})
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}
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// When we enter a module, record it, for the sake of `module!`
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pub fn expand_item(it: P<ast::Item>, fld: &mut MacroExpander)
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-> SmallVector<P<ast::Item>> {
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expand_annotatable(Annotatable::Item(it), fld)
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.into_iter().map(|i| i.expect_item()).collect()
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}
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// does this attribute list contain "macro_use" ?
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fn contains_macro_use(fld: &mut MacroExpander, attrs: &[ast::Attribute]) -> bool {
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for attr in attrs {
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let mut is_use = attr.check_name("macro_use");
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if attr.check_name("macro_escape") {
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let mut err =
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fld.cx.struct_span_warn(attr.span,
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"macro_escape is a deprecated synonym for macro_use");
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is_use = true;
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if let ast::AttrStyle::Inner = attr.node.style {
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err.help("consider an outer attribute, \
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#[macro_use] mod ...").emit();
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} else {
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err.emit();
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}
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};
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if is_use {
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if !attr.is_word() {
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fld.cx.span_err(attr.span, "arguments to macro_use are not allowed here");
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}
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return true;
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}
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}
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false
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}
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/// Expand a stmt
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fn expand_stmt(stmt: Stmt, fld: &mut MacroExpander) -> SmallVector<Stmt> {
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let (mac, style, attrs) = match stmt.node {
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StmtKind::Mac(mac) => mac.unwrap(),
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_ => return noop_fold_stmt(stmt, fld)
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};
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let mut fully_expanded: SmallVector<ast::Stmt> =
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expand_mac_invoc(mac, None, attrs.into(), stmt.span, fld);
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// If this is a macro invocation with a semicolon, then apply that
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// semicolon to the final statement produced by expansion.
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if style == MacStmtStyle::Semicolon {
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if let Some(stmt) = fully_expanded.pop() {
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fully_expanded.push(stmt.add_trailing_semicolon());
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}
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}
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fully_expanded
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}
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fn expand_pat(p: P<ast::Pat>, fld: &mut MacroExpander) -> P<ast::Pat> {
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match p.node {
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PatKind::Mac(_) => {}
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_ => return noop_fold_pat(p, fld)
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}
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p.and_then(|ast::Pat {node, span, ..}| {
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match node {
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PatKind::Mac(mac) => expand_mac_invoc(mac, None, Vec::new(), span, fld),
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_ => unreachable!()
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}
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})
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}
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fn expand_multi_modified(a: Annotatable, fld: &mut MacroExpander) -> SmallVector<Annotatable> {
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match a {
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Annotatable::Item(it) => match it.node {
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ast::ItemKind::Mac(..) => {
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if match it.node {
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ItemKind::Mac(ref mac) => mac.node.path.segments.is_empty(),
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_ => unreachable!(),
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} {
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return SmallVector::one(Annotatable::Item(it));
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}
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it.and_then(|it| match it.node {
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ItemKind::Mac(mac) =>
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expand_mac_invoc(mac, Some(it.ident), it.attrs, it.span, fld),
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_ => unreachable!(),
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})
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}
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ast::ItemKind::Mod(_) | ast::ItemKind::ForeignMod(_) => {
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let valid_ident =
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it.ident.name != keywords::Invalid.name();
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if valid_ident {
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fld.cx.mod_push(it.ident);
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}
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let macro_use = contains_macro_use(fld, &it.attrs);
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let result = with_exts_frame!(fld.cx.syntax_env,
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macro_use,
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noop_fold_item(it, fld));
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if valid_ident {
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fld.cx.mod_pop();
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}
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result
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},
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_ => noop_fold_item(it, fld),
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}.into_iter().map(|i| Annotatable::Item(i)).collect(),
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Annotatable::TraitItem(it) => {
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expand_trait_item(it.unwrap(), fld).into_iter().
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map(|it| Annotatable::TraitItem(P(it))).collect()
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}
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Annotatable::ImplItem(ii) => {
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expand_impl_item(ii.unwrap(), fld).into_iter().
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map(|ii| Annotatable::ImplItem(P(ii))).collect()
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}
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}
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}
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fn expand_annotatable(mut item: Annotatable, fld: &mut MacroExpander) -> SmallVector<Annotatable> {
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let mut multi_modifier = None;
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item = item.map_attrs(|mut attrs| {
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for i in 0..attrs.len() {
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if let Some(extension) = fld.cx.syntax_env.find(intern(&attrs[i].name())) {
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match *extension {
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MultiModifier(..) | MultiDecorator(..) => {
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multi_modifier = Some((attrs.remove(i), extension));
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break;
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}
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_ => {}
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}
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}
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}
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attrs
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});
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match multi_modifier {
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None => expand_multi_modified(item, fld),
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Some((attr, extension)) => {
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attr::mark_used(&attr);
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fld.cx.bt_push(ExpnInfo {
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call_site: attr.span,
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callee: NameAndSpan {
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format: MacroAttribute(intern(&attr.name())),
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span: Some(attr.span),
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// attributes can do whatever they like, for now
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allow_internal_unstable: true,
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}
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});
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let modified = match *extension {
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MultiModifier(ref mac) => mac.expand(fld.cx, attr.span, &attr.node.value, item),
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MultiDecorator(ref mac) => {
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let mut items = Vec::new();
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mac.expand(fld.cx, attr.span, &attr.node.value, &item,
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&mut |item| items.push(item));
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items.push(item);
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items
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}
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_ => unreachable!(),
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};
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fld.cx.bt_pop();
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let configured = modified.into_iter().flat_map(|it| {
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it.fold_with(&mut fld.strip_unconfigured())
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}).collect::<SmallVector<_>>();
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configured.into_iter().flat_map(|it| expand_annotatable(it, fld)).collect()
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}
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}
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}
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fn expand_impl_item(ii: ast::ImplItem, fld: &mut MacroExpander)
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-> SmallVector<ast::ImplItem> {
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match ii.node {
|
|
ast::ImplItemKind::Macro(mac) => {
|
|
expand_mac_invoc(mac, None, ii.attrs, ii.span, fld)
|
|
}
|
|
_ => fold::noop_fold_impl_item(ii, fld)
|
|
}
|
|
}
|
|
|
|
fn expand_trait_item(ti: ast::TraitItem, fld: &mut MacroExpander)
|
|
-> SmallVector<ast::TraitItem> {
|
|
match ti.node {
|
|
ast::TraitItemKind::Macro(mac) => {
|
|
expand_mac_invoc(mac, None, ti.attrs, ti.span, fld)
|
|
}
|
|
_ => fold::noop_fold_trait_item(ti, fld)
|
|
}
|
|
}
|
|
|
|
pub fn expand_type(t: P<ast::Ty>, fld: &mut MacroExpander) -> P<ast::Ty> {
|
|
let t = match t.node.clone() {
|
|
ast::TyKind::Mac(mac) => {
|
|
expand_mac_invoc(mac, None, Vec::new(), t.span, fld)
|
|
}
|
|
_ => t
|
|
};
|
|
|
|
fold::noop_fold_ty(t, fld)
|
|
}
|
|
|
|
/// A tree-folder that performs macro expansion
|
|
pub struct MacroExpander<'a, 'b:'a> {
|
|
pub cx: &'a mut ExtCtxt<'b>,
|
|
pub single_step: bool,
|
|
pub keep_macs: bool,
|
|
}
|
|
|
|
impl<'a, 'b> MacroExpander<'a, 'b> {
|
|
pub fn new(cx: &'a mut ExtCtxt<'b>,
|
|
single_step: bool,
|
|
keep_macs: bool) -> MacroExpander<'a, 'b> {
|
|
MacroExpander {
|
|
cx: cx,
|
|
single_step: single_step,
|
|
keep_macs: keep_macs
|
|
}
|
|
}
|
|
|
|
fn strip_unconfigured(&mut self) -> StripUnconfigured {
|
|
StripUnconfigured {
|
|
config: &self.cx.cfg,
|
|
should_test: self.cx.ecfg.should_test,
|
|
sess: self.cx.parse_sess,
|
|
features: self.cx.ecfg.features,
|
|
}
|
|
}
|
|
|
|
fn load_macros<T: MacroGenerable>(&mut self, node: &T) {
|
|
struct MacroLoadingVisitor<'a, 'b: 'a>{
|
|
cx: &'a mut ExtCtxt<'b>,
|
|
at_crate_root: bool,
|
|
}
|
|
|
|
impl<'a, 'b> Visitor for MacroLoadingVisitor<'a, 'b> {
|
|
fn visit_mac(&mut self, _: &ast::Mac) {}
|
|
fn visit_item(&mut self, item: &ast::Item) {
|
|
if let ast::ItemKind::ExternCrate(..) = item.node {
|
|
// We need to error on `#[macro_use] extern crate` when it isn't at the
|
|
// crate root, because `$crate` won't work properly.
|
|
for def in self.cx.loader.load_crate(item, self.at_crate_root) {
|
|
self.cx.insert_macro(def);
|
|
}
|
|
} else {
|
|
let at_crate_root = ::std::mem::replace(&mut self.at_crate_root, false);
|
|
visit::walk_item(self, item);
|
|
self.at_crate_root = at_crate_root;
|
|
}
|
|
}
|
|
fn visit_block(&mut self, block: &ast::Block) {
|
|
let at_crate_root = ::std::mem::replace(&mut self.at_crate_root, false);
|
|
visit::walk_block(self, block);
|
|
self.at_crate_root = at_crate_root;
|
|
}
|
|
}
|
|
|
|
node.visit_with(&mut MacroLoadingVisitor {
|
|
at_crate_root: self.cx.syntax_env.is_crate_root(),
|
|
cx: self.cx,
|
|
});
|
|
}
|
|
}
|
|
|
|
impl<'a, 'b> Folder for MacroExpander<'a, 'b> {
|
|
fn fold_crate(&mut self, c: Crate) -> Crate {
|
|
self.cx.filename = Some(self.cx.parse_sess.codemap().span_to_filename(c.span));
|
|
noop_fold_crate(c, self)
|
|
}
|
|
|
|
fn fold_expr(&mut self, expr: P<ast::Expr>) -> P<ast::Expr> {
|
|
expr.and_then(|expr| expand_expr(expr, self))
|
|
}
|
|
|
|
fn fold_opt_expr(&mut self, expr: P<ast::Expr>) -> Option<P<ast::Expr>> {
|
|
expr.and_then(|expr| match expr.node {
|
|
ast::ExprKind::Mac(mac) =>
|
|
expand_mac_invoc(mac, None, expr.attrs.into(), expr.span, self),
|
|
_ => Some(expand_expr(expr, self)),
|
|
})
|
|
}
|
|
|
|
fn fold_pat(&mut self, pat: P<ast::Pat>) -> P<ast::Pat> {
|
|
expand_pat(pat, self)
|
|
}
|
|
|
|
fn fold_item(&mut self, item: P<ast::Item>) -> SmallVector<P<ast::Item>> {
|
|
use std::mem::replace;
|
|
let result;
|
|
if let ast::ItemKind::Mod(ast::Mod { inner, .. }) = item.node {
|
|
if item.span.contains(inner) {
|
|
self.push_mod_path(item.ident, &item.attrs);
|
|
result = expand_item(item, self);
|
|
self.pop_mod_path();
|
|
} else {
|
|
let filename = if inner != syntax_pos::DUMMY_SP {
|
|
Some(self.cx.parse_sess.codemap().span_to_filename(inner))
|
|
} else { None };
|
|
let orig_filename = replace(&mut self.cx.filename, filename);
|
|
let orig_mod_path_stack = replace(&mut self.cx.mod_path_stack, Vec::new());
|
|
result = expand_item(item, self);
|
|
self.cx.filename = orig_filename;
|
|
self.cx.mod_path_stack = orig_mod_path_stack;
|
|
}
|
|
} else {
|
|
result = expand_item(item, self);
|
|
}
|
|
result
|
|
}
|
|
|
|
fn fold_stmt(&mut self, stmt: ast::Stmt) -> SmallVector<ast::Stmt> {
|
|
expand_stmt(stmt, self)
|
|
}
|
|
|
|
fn fold_block(&mut self, block: P<Block>) -> P<Block> {
|
|
let was_in_block = ::std::mem::replace(&mut self.cx.in_block, true);
|
|
let result = with_exts_frame!(self.cx.syntax_env, false, noop_fold_block(block, self));
|
|
self.cx.in_block = was_in_block;
|
|
result
|
|
}
|
|
|
|
fn fold_trait_item(&mut self, i: ast::TraitItem) -> SmallVector<ast::TraitItem> {
|
|
expand_annotatable(Annotatable::TraitItem(P(i)), self)
|
|
.into_iter().map(|i| i.expect_trait_item()).collect()
|
|
}
|
|
|
|
fn fold_impl_item(&mut self, i: ast::ImplItem) -> SmallVector<ast::ImplItem> {
|
|
expand_annotatable(Annotatable::ImplItem(P(i)), self)
|
|
.into_iter().map(|i| i.expect_impl_item()).collect()
|
|
}
|
|
|
|
fn fold_ty(&mut self, ty: P<ast::Ty>) -> P<ast::Ty> {
|
|
expand_type(ty, self)
|
|
}
|
|
}
|
|
|
|
impl<'a, 'b> MacroExpander<'a, 'b> {
|
|
fn push_mod_path(&mut self, id: Ident, attrs: &[ast::Attribute]) {
|
|
let default_path = id.name.as_str();
|
|
let file_path = match ::attr::first_attr_value_str_by_name(attrs, "path") {
|
|
Some(d) => d,
|
|
None => default_path,
|
|
};
|
|
self.cx.mod_path_stack.push(file_path)
|
|
}
|
|
|
|
fn pop_mod_path(&mut self) {
|
|
self.cx.mod_path_stack.pop().unwrap();
|
|
}
|
|
}
|
|
|
|
pub struct ExpansionConfig<'feat> {
|
|
pub crate_name: String,
|
|
pub features: Option<&'feat Features>,
|
|
pub recursion_limit: usize,
|
|
pub trace_mac: bool,
|
|
pub should_test: bool, // If false, strip `#[test]` nodes
|
|
}
|
|
|
|
macro_rules! feature_tests {
|
|
($( fn $getter:ident = $field:ident, )*) => {
|
|
$(
|
|
pub fn $getter(&self) -> bool {
|
|
match self.features {
|
|
Some(&Features { $field: true, .. }) => true,
|
|
_ => false,
|
|
}
|
|
}
|
|
)*
|
|
}
|
|
}
|
|
|
|
impl<'feat> ExpansionConfig<'feat> {
|
|
pub fn default(crate_name: String) -> ExpansionConfig<'static> {
|
|
ExpansionConfig {
|
|
crate_name: crate_name,
|
|
features: None,
|
|
recursion_limit: 64,
|
|
trace_mac: false,
|
|
should_test: false,
|
|
}
|
|
}
|
|
|
|
feature_tests! {
|
|
fn enable_quotes = quote,
|
|
fn enable_asm = asm,
|
|
fn enable_log_syntax = log_syntax,
|
|
fn enable_concat_idents = concat_idents,
|
|
fn enable_trace_macros = trace_macros,
|
|
fn enable_allow_internal_unstable = allow_internal_unstable,
|
|
fn enable_custom_derive = custom_derive,
|
|
fn enable_pushpop_unsafe = pushpop_unsafe,
|
|
}
|
|
}
|
|
|
|
pub fn expand_crate(cx: &mut ExtCtxt,
|
|
user_exts: Vec<NamedSyntaxExtension>,
|
|
c: Crate) -> Crate {
|
|
let mut expander = MacroExpander::new(cx, false, false);
|
|
expand_crate_with_expander(&mut expander, user_exts, c)
|
|
}
|
|
|
|
// Expands crate using supplied MacroExpander - allows for
|
|
// non-standard expansion behaviour (e.g. step-wise).
|
|
pub fn expand_crate_with_expander(expander: &mut MacroExpander,
|
|
user_exts: Vec<NamedSyntaxExtension>,
|
|
mut c: Crate) -> Crate {
|
|
if std_inject::no_core(&c) {
|
|
expander.cx.crate_root = None;
|
|
} else if std_inject::no_std(&c) {
|
|
expander.cx.crate_root = Some("core");
|
|
} else {
|
|
expander.cx.crate_root = Some("std");
|
|
}
|
|
|
|
// User extensions must be added before expander.load_macros is called,
|
|
// so that macros from external crates shadow user defined extensions.
|
|
for (name, extension) in user_exts {
|
|
expander.cx.syntax_env.insert(name, extension);
|
|
}
|
|
|
|
let items = SmallVector::many(c.module.items);
|
|
expander.load_macros(&items);
|
|
c.module.items = items.into();
|
|
|
|
let err_count = expander.cx.parse_sess.span_diagnostic.err_count();
|
|
let mut ret = expander.fold_crate(c);
|
|
ret.exported_macros = expander.cx.exported_macros.clone();
|
|
|
|
if expander.cx.parse_sess.span_diagnostic.err_count() > err_count {
|
|
expander.cx.parse_sess.span_diagnostic.abort_if_errors();
|
|
}
|
|
|
|
ret
|
|
}
|
|
|
|
// A Marker adds the given mark to the syntax context and
|
|
// sets spans' `expn_id` to the given expn_id (unless it is `None`).
|
|
struct Marker { mark: Mark, expn_id: Option<ExpnId> }
|
|
|
|
impl Folder for Marker {
|
|
fn fold_ident(&mut self, mut ident: Ident) -> Ident {
|
|
ident.ctxt = ident.ctxt.apply_mark(self.mark);
|
|
ident
|
|
}
|
|
fn fold_mac(&mut self, mac: ast::Mac) -> ast::Mac {
|
|
noop_fold_mac(mac, self)
|
|
}
|
|
|
|
fn new_span(&mut self, mut span: Span) -> Span {
|
|
if let Some(expn_id) = self.expn_id {
|
|
span.expn_id = expn_id;
|
|
}
|
|
span
|
|
}
|
|
}
|
|
|
|
// apply a given mark to the given token trees. Used prior to expansion of a macro.
|
|
fn mark_tts(tts: &[TokenTree], m: Mark) -> Vec<TokenTree> {
|
|
noop_fold_tts(tts, &mut Marker{mark:m, expn_id: None})
|
|
}
|
|
|
|
|
|
#[cfg(test)]
|
|
mod tests {
|
|
use super::{expand_crate, ExpansionConfig};
|
|
use ast;
|
|
use ext::base::{ExtCtxt, DummyMacroLoader};
|
|
use parse;
|
|
use util::parser_testing::{string_to_parser};
|
|
use visit;
|
|
use visit::Visitor;
|
|
|
|
// a visitor that extracts the paths
|
|
// from a given thingy and puts them in a mutable
|
|
// array (passed in to the traversal)
|
|
#[derive(Clone)]
|
|
struct PathExprFinderContext {
|
|
path_accumulator: Vec<ast::Path> ,
|
|
}
|
|
|
|
impl Visitor for PathExprFinderContext {
|
|
fn visit_expr(&mut self, expr: &ast::Expr) {
|
|
if let ast::ExprKind::Path(None, ref p) = expr.node {
|
|
self.path_accumulator.push(p.clone());
|
|
}
|
|
visit::walk_expr(self, expr);
|
|
}
|
|
}
|
|
|
|
// these following tests are quite fragile, in that they don't test what
|
|
// *kind* of failure occurs.
|
|
|
|
fn test_ecfg() -> ExpansionConfig<'static> {
|
|
ExpansionConfig::default("test".to_string())
|
|
}
|
|
|
|
// make sure that macros can't escape fns
|
|
#[should_panic]
|
|
#[test] fn macros_cant_escape_fns_test () {
|
|
let src = "fn bogus() {macro_rules! z (() => (3+4));}\
|
|
fn inty() -> i32 { z!() }".to_string();
|
|
let sess = parse::ParseSess::new();
|
|
let crate_ast = parse::parse_crate_from_source_str(
|
|
"<test>".to_string(),
|
|
src,
|
|
Vec::new(), &sess).unwrap();
|
|
// should fail:
|
|
let mut loader = DummyMacroLoader;
|
|
let mut ecx = ExtCtxt::new(&sess, vec![], test_ecfg(), &mut loader);
|
|
expand_crate(&mut ecx, vec![], crate_ast);
|
|
}
|
|
|
|
// make sure that macros can't escape modules
|
|
#[should_panic]
|
|
#[test] fn macros_cant_escape_mods_test () {
|
|
let src = "mod foo {macro_rules! z (() => (3+4));}\
|
|
fn inty() -> i32 { z!() }".to_string();
|
|
let sess = parse::ParseSess::new();
|
|
let crate_ast = parse::parse_crate_from_source_str(
|
|
"<test>".to_string(),
|
|
src,
|
|
Vec::new(), &sess).unwrap();
|
|
let mut loader = DummyMacroLoader;
|
|
let mut ecx = ExtCtxt::new(&sess, vec![], test_ecfg(), &mut loader);
|
|
expand_crate(&mut ecx, vec![], crate_ast);
|
|
}
|
|
|
|
// macro_use modules should allow macros to escape
|
|
#[test] fn macros_can_escape_flattened_mods_test () {
|
|
let src = "#[macro_use] mod foo {macro_rules! z (() => (3+4));}\
|
|
fn inty() -> i32 { z!() }".to_string();
|
|
let sess = parse::ParseSess::new();
|
|
let crate_ast = parse::parse_crate_from_source_str(
|
|
"<test>".to_string(),
|
|
src,
|
|
Vec::new(), &sess).unwrap();
|
|
let mut loader = DummyMacroLoader;
|
|
let mut ecx = ExtCtxt::new(&sess, vec![], test_ecfg(), &mut loader);
|
|
expand_crate(&mut ecx, vec![], crate_ast);
|
|
}
|
|
|
|
fn expand_crate_str(crate_str: String) -> ast::Crate {
|
|
let ps = parse::ParseSess::new();
|
|
let crate_ast = panictry!(string_to_parser(&ps, crate_str).parse_crate_mod());
|
|
// the cfg argument actually does matter, here...
|
|
let mut loader = DummyMacroLoader;
|
|
let mut ecx = ExtCtxt::new(&ps, vec![], test_ecfg(), &mut loader);
|
|
expand_crate(&mut ecx, vec![], crate_ast)
|
|
}
|
|
|
|
#[test] fn macro_tokens_should_match(){
|
|
expand_crate_str(
|
|
"macro_rules! m((a)=>(13)) ;fn main(){m!(a);}".to_string());
|
|
}
|
|
|
|
// should be able to use a bound identifier as a literal in a macro definition:
|
|
#[test] fn self_macro_parsing(){
|
|
expand_crate_str(
|
|
"macro_rules! foo ((zz) => (287;));
|
|
fn f(zz: i32) {foo!(zz);}".to_string()
|
|
);
|
|
}
|
|
|
|
// create a really evil test case where a $x appears inside a binding of $x
|
|
// but *shouldn't* bind because it was inserted by a different macro....
|
|
// can't write this test case until we have macro-generating macros.
|
|
}
|