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	 eb65f15c78
			
		
	
	
		eb65f15c78
		
	
	
	
	
		
			
			Crate root is sufficiently different from `mod` items, at least at syntactic level. Also remove customization point for "`mod` item or crate root" from AST visitors.
		
			
				
	
	
		
			486 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			486 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
| use std::mem;
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| 
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| use rustc_ast::attr;
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| use rustc_ast::ptr::P;
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| use rustc_ast::visit::{self, Visitor};
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| use rustc_ast::{self as ast, NodeId};
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| use rustc_ast_pretty::pprust;
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| use rustc_expand::base::{ExtCtxt, ResolverExpand};
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| use rustc_expand::expand::{AstFragment, ExpansionConfig};
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| use rustc_session::Session;
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| use rustc_span::hygiene::AstPass;
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| use rustc_span::source_map::SourceMap;
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| use rustc_span::symbol::{kw, sym, Ident, Symbol};
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| use rustc_span::{Span, DUMMY_SP};
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| use smallvec::smallvec;
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| use std::cell::RefCell;
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| 
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| struct ProcMacroDerive {
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|     id: NodeId,
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|     trait_name: Symbol,
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|     function_name: Ident,
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|     span: Span,
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|     attrs: Vec<Symbol>,
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| }
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| 
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| enum ProcMacroDefType {
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|     Attr,
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|     Bang,
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| }
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| 
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| struct ProcMacroDef {
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|     id: NodeId,
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|     function_name: Ident,
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|     span: Span,
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|     def_type: ProcMacroDefType,
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| }
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| 
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| enum ProcMacro {
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|     Derive(ProcMacroDerive),
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|     Def(ProcMacroDef),
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| }
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| 
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| struct CollectProcMacros<'a> {
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|     sess: &'a Session,
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|     macros: Vec<ProcMacro>,
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|     in_root: bool,
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|     handler: &'a rustc_errors::Handler,
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|     source_map: &'a SourceMap,
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|     is_proc_macro_crate: bool,
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|     is_test_crate: bool,
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| }
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| 
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| pub fn inject(
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|     sess: &Session,
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|     resolver: &mut dyn ResolverExpand,
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|     mut krate: ast::Crate,
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|     is_proc_macro_crate: bool,
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|     has_proc_macro_decls: bool,
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|     is_test_crate: bool,
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|     num_crate_types: usize,
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|     handler: &rustc_errors::Handler,
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| ) -> ast::Crate {
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|     let ecfg = ExpansionConfig::default("proc_macro".to_string());
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|     let mut cx = ExtCtxt::new(sess, ecfg, resolver, None);
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| 
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|     let mut collect = CollectProcMacros {
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|         sess,
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|         macros: Vec::new(),
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|         in_root: true,
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|         handler,
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|         source_map: sess.source_map(),
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|         is_proc_macro_crate,
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|         is_test_crate,
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|     };
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| 
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|     if has_proc_macro_decls || is_proc_macro_crate {
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|         visit::walk_crate(&mut collect, &krate);
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|     }
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|     let macros = collect.macros;
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| 
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|     if !is_proc_macro_crate {
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|         return krate;
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|     }
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| 
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|     if num_crate_types > 1 {
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|         handler.err("cannot mix `proc-macro` crate type with others");
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|     }
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| 
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|     if is_test_crate {
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|         return krate;
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|     }
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| 
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|     let decls = mk_decls(&mut krate, &mut cx, ¯os);
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|     krate.items.push(decls);
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| 
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|     krate
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| }
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| 
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| impl<'a> CollectProcMacros<'a> {
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|     fn check_not_pub_in_root(&self, vis: &ast::Visibility, sp: Span) {
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|         if self.is_proc_macro_crate && self.in_root && vis.kind.is_pub() {
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|             self.handler.span_err(
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|                 sp,
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|                 "`proc-macro` crate types currently cannot export any items other \
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|                     than functions tagged with `#[proc_macro]`, `#[proc_macro_derive]`, \
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|                     or `#[proc_macro_attribute]`",
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|             );
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|         }
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|     }
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| 
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|     fn collect_custom_derive(&mut self, item: &'a ast::Item, attr: &'a ast::Attribute) {
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|         // Once we've located the `#[proc_macro_derive]` attribute, verify
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|         // that it's of the form `#[proc_macro_derive(Foo)]` or
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|         // `#[proc_macro_derive(Foo, attributes(A, ..))]`
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|         let list = match attr.meta_item_list() {
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|             Some(list) => list,
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|             None => return,
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|         };
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|         if list.len() != 1 && list.len() != 2 {
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|             self.handler.span_err(attr.span, "attribute must have either one or two arguments");
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|             return;
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|         }
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|         let trait_attr = match list[0].meta_item() {
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|             Some(meta_item) => meta_item,
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|             _ => {
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|                 self.handler.span_err(list[0].span(), "not a meta item");
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|                 return;
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|             }
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|         };
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|         let trait_ident = match trait_attr.ident() {
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|             Some(trait_ident) if trait_attr.is_word() => trait_ident,
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|             _ => {
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|                 self.handler.span_err(trait_attr.span, "must only be one word");
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|                 return;
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|             }
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|         };
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| 
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|         if !trait_ident.name.can_be_raw() {
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|             self.handler.span_err(
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|                 trait_attr.span,
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|                 &format!("`{}` cannot be a name of derive macro", trait_ident),
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|             );
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|         }
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| 
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|         let attributes_attr = list.get(1);
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|         let proc_attrs: Vec<_> = if let Some(attr) = attributes_attr {
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|             if !attr.has_name(sym::attributes) {
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|                 self.handler.span_err(attr.span(), "second argument must be `attributes`")
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|             }
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|             attr.meta_item_list()
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|                 .unwrap_or_else(|| {
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|                     self.handler
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|                         .span_err(attr.span(), "attribute must be of form: `attributes(foo, bar)`");
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|                     &[]
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|                 })
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|                 .iter()
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|                 .filter_map(|attr| {
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|                     let attr = match attr.meta_item() {
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|                         Some(meta_item) => meta_item,
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|                         _ => {
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|                             self.handler.span_err(attr.span(), "not a meta item");
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|                             return None;
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|                         }
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|                     };
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| 
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|                     let ident = match attr.ident() {
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|                         Some(ident) if attr.is_word() => ident,
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|                         _ => {
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|                             self.handler.span_err(attr.span, "must only be one word");
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|                             return None;
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|                         }
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|                     };
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|                     if !ident.name.can_be_raw() {
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|                         self.handler.span_err(
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|                             attr.span,
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|                             &format!("`{}` cannot be a name of derive helper attribute", ident),
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|                         );
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|                     }
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| 
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|                     Some(ident.name)
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|                 })
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|                 .collect()
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|         } else {
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|             Vec::new()
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|         };
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| 
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|         if self.in_root && item.vis.kind.is_pub() {
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|             self.macros.push(ProcMacro::Derive(ProcMacroDerive {
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|                 id: item.id,
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|                 span: item.span,
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|                 trait_name: trait_ident.name,
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|                 function_name: item.ident,
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|                 attrs: proc_attrs,
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|             }));
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|         } else {
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|             let msg = if !self.in_root {
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|                 "functions tagged with `#[proc_macro_derive]` must \
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|                  currently reside in the root of the crate"
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|             } else {
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|                 "functions tagged with `#[proc_macro_derive]` must be `pub`"
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|             };
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|             self.handler.span_err(self.source_map.guess_head_span(item.span), msg);
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|         }
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|     }
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| 
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|     fn collect_attr_proc_macro(&mut self, item: &'a ast::Item) {
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|         if self.in_root && item.vis.kind.is_pub() {
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|             self.macros.push(ProcMacro::Def(ProcMacroDef {
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|                 id: item.id,
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|                 span: item.span,
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|                 function_name: item.ident,
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|                 def_type: ProcMacroDefType::Attr,
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|             }));
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|         } else {
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|             let msg = if !self.in_root {
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|                 "functions tagged with `#[proc_macro_attribute]` must \
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|                  currently reside in the root of the crate"
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|             } else {
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|                 "functions tagged with `#[proc_macro_attribute]` must be `pub`"
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|             };
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|             self.handler.span_err(self.source_map.guess_head_span(item.span), msg);
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|         }
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|     }
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| 
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|     fn collect_bang_proc_macro(&mut self, item: &'a ast::Item) {
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|         if self.in_root && item.vis.kind.is_pub() {
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|             self.macros.push(ProcMacro::Def(ProcMacroDef {
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|                 id: item.id,
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|                 span: item.span,
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|                 function_name: item.ident,
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|                 def_type: ProcMacroDefType::Bang,
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|             }));
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|         } else {
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|             let msg = if !self.in_root {
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|                 "functions tagged with `#[proc_macro]` must \
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|                  currently reside in the root of the crate"
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|             } else {
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|                 "functions tagged with `#[proc_macro]` must be `pub`"
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|             };
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|             self.handler.span_err(self.source_map.guess_head_span(item.span), msg);
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|         }
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|     }
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| }
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| 
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| impl<'a> Visitor<'a> for CollectProcMacros<'a> {
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|     fn visit_item(&mut self, item: &'a ast::Item) {
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|         if let ast::ItemKind::MacroDef(..) = item.kind {
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|             if self.is_proc_macro_crate && self.sess.contains_name(&item.attrs, sym::macro_export) {
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|                 let msg =
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|                     "cannot export macro_rules! macros from a `proc-macro` crate type currently";
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|                 self.handler.span_err(self.source_map.guess_head_span(item.span), msg);
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|             }
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|         }
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| 
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|         // First up, make sure we're checking a bare function. If we're not then
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|         // we're just not interested in this item.
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|         //
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|         // If we find one, try to locate a `#[proc_macro_derive]` attribute on it.
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|         let is_fn = matches!(item.kind, ast::ItemKind::Fn(..));
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| 
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|         let mut found_attr: Option<&'a ast::Attribute> = None;
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| 
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|         for attr in &item.attrs {
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|             if self.sess.is_proc_macro_attr(&attr) {
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|                 if let Some(prev_attr) = found_attr {
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|                     let prev_item = prev_attr.get_normal_item();
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|                     let item = attr.get_normal_item();
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|                     let path_str = pprust::path_to_string(&item.path);
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|                     let msg = if item.path.segments[0].ident.name
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|                         == prev_item.path.segments[0].ident.name
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|                     {
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|                         format!(
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|                             "only one `#[{}]` attribute is allowed on any given function",
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|                             path_str,
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|                         )
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|                     } else {
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|                         format!(
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|                             "`#[{}]` and `#[{}]` attributes cannot both be applied
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|                             to the same function",
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|                             path_str,
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|                             pprust::path_to_string(&prev_item.path),
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|                         )
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|                     };
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| 
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|                     self.handler
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|                         .struct_span_err(attr.span, &msg)
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|                         .span_label(prev_attr.span, "previous attribute here")
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|                         .emit();
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| 
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|                     return;
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|                 }
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| 
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|                 found_attr = Some(attr);
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|             }
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|         }
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| 
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|         let attr = match found_attr {
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|             None => {
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|                 self.check_not_pub_in_root(&item.vis, self.source_map.guess_head_span(item.span));
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|                 let prev_in_root = mem::replace(&mut self.in_root, false);
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|                 visit::walk_item(self, item);
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|                 self.in_root = prev_in_root;
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|                 return;
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|             }
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|             Some(attr) => attr,
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|         };
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| 
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|         if !is_fn {
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|             let msg = format!(
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|                 "the `#[{}]` attribute may only be used on bare functions",
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|                 pprust::path_to_string(&attr.get_normal_item().path),
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|             );
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| 
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|             self.handler.span_err(attr.span, &msg);
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|             return;
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|         }
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| 
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|         if self.is_test_crate {
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|             return;
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|         }
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| 
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|         if !self.is_proc_macro_crate {
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|             let msg = format!(
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|                 "the `#[{}]` attribute is only usable with crates of the `proc-macro` crate type",
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|                 pprust::path_to_string(&attr.get_normal_item().path),
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|             );
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| 
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|             self.handler.span_err(attr.span, &msg);
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|             return;
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|         }
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| 
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|         if self.sess.check_name(attr, sym::proc_macro_derive) {
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|             self.collect_custom_derive(item, attr);
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|         } else if self.sess.check_name(attr, sym::proc_macro_attribute) {
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|             self.collect_attr_proc_macro(item);
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|         } else if self.sess.check_name(attr, sym::proc_macro) {
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|             self.collect_bang_proc_macro(item);
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|         };
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| 
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|         let prev_in_root = mem::replace(&mut self.in_root, false);
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|         visit::walk_item(self, item);
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|         self.in_root = prev_in_root;
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|     }
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| }
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| 
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| // Creates a new module which looks like:
 | |
| //
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| //      const _: () = {
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| //          extern crate proc_macro;
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| //
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| //          use proc_macro::bridge::client::ProcMacro;
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| //
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| //          #[rustc_proc_macro_decls]
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| //          #[allow(deprecated)]
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| //          static DECLS: &[ProcMacro] = &[
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| //              ProcMacro::custom_derive($name_trait1, &[], ::$name1);
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| //              ProcMacro::custom_derive($name_trait2, &["attribute_name"], ::$name2);
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| //              // ...
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| //          ];
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| //      }
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| fn mk_decls(
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|     ast_krate: &mut ast::Crate,
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|     cx: &mut ExtCtxt<'_>,
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|     macros: &[ProcMacro],
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| ) -> P<ast::Item> {
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|     // We're the ones filling in this Vec,
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|     // so it should be empty to start with
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|     assert!(ast_krate.proc_macros.is_empty());
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| 
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|     let expn_id = cx.resolver.expansion_for_ast_pass(
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|         DUMMY_SP,
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|         AstPass::ProcMacroHarness,
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|         &[sym::rustc_attrs, sym::proc_macro_internals],
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|         None,
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|     );
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|     let span = DUMMY_SP.with_def_site_ctxt(expn_id);
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| 
 | |
|     let proc_macro = Ident::new(sym::proc_macro, span);
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|     let krate = cx.item(span, proc_macro, Vec::new(), ast::ItemKind::ExternCrate(None));
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| 
 | |
|     let bridge = Ident::new(sym::bridge, span);
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|     let client = Ident::new(sym::client, span);
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|     let proc_macro_ty = Ident::new(sym::ProcMacro, span);
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|     let custom_derive = Ident::new(sym::custom_derive, span);
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|     let attr = Ident::new(sym::attr, span);
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|     let bang = Ident::new(sym::bang, span);
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| 
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|     let krate_ref = RefCell::new(ast_krate);
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| 
 | |
|     // We add NodeIds to 'krate.proc_macros' in the order
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|     // that we generate expressions. The position of each NodeId
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|     // in the 'proc_macros' Vec corresponds to its position
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|     // in the static array that will be generated
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|     let decls = {
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|         let local_path =
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|             |sp: Span, name| cx.expr_path(cx.path(sp.with_ctxt(span.ctxt()), vec![name]));
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|         let proc_macro_ty_method_path = |method| {
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|             cx.expr_path(cx.path(span, vec![proc_macro, bridge, client, proc_macro_ty, method]))
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|         };
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|         macros
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|             .iter()
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|             .map(|m| match m {
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|                 ProcMacro::Derive(cd) => {
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|                     krate_ref.borrow_mut().proc_macros.push(cd.id);
 | |
|                     cx.expr_call(
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|                         span,
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|                         proc_macro_ty_method_path(custom_derive),
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|                         vec![
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|                             cx.expr_str(cd.span, cd.trait_name),
 | |
|                             cx.expr_vec_slice(
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|                                 span,
 | |
|                                 cd.attrs
 | |
|                                     .iter()
 | |
|                                     .map(|&s| cx.expr_str(cd.span, s))
 | |
|                                     .collect::<Vec<_>>(),
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|                             ),
 | |
|                             local_path(cd.span, cd.function_name),
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|                         ],
 | |
|                     )
 | |
|                 }
 | |
|                 ProcMacro::Def(ca) => {
 | |
|                     krate_ref.borrow_mut().proc_macros.push(ca.id);
 | |
|                     let ident = match ca.def_type {
 | |
|                         ProcMacroDefType::Attr => attr,
 | |
|                         ProcMacroDefType::Bang => bang,
 | |
|                     };
 | |
| 
 | |
|                     cx.expr_call(
 | |
|                         span,
 | |
|                         proc_macro_ty_method_path(ident),
 | |
|                         vec![
 | |
|                             cx.expr_str(ca.span, ca.function_name.name),
 | |
|                             local_path(ca.span, ca.function_name),
 | |
|                         ],
 | |
|                     )
 | |
|                 }
 | |
|             })
 | |
|             .collect()
 | |
|     };
 | |
| 
 | |
|     let decls_static = cx
 | |
|         .item_static(
 | |
|             span,
 | |
|             Ident::new(sym::_DECLS, span),
 | |
|             cx.ty_rptr(
 | |
|                 span,
 | |
|                 cx.ty(
 | |
|                     span,
 | |
|                     ast::TyKind::Slice(
 | |
|                         cx.ty_path(cx.path(span, vec![proc_macro, bridge, client, proc_macro_ty])),
 | |
|                     ),
 | |
|                 ),
 | |
|                 None,
 | |
|                 ast::Mutability::Not,
 | |
|             ),
 | |
|             ast::Mutability::Not,
 | |
|             cx.expr_vec_slice(span, decls),
 | |
|         )
 | |
|         .map(|mut i| {
 | |
|             let attr = cx.meta_word(span, sym::rustc_proc_macro_decls);
 | |
|             i.attrs.push(cx.attribute(attr));
 | |
| 
 | |
|             let deprecated_attr = attr::mk_nested_word_item(Ident::new(sym::deprecated, span));
 | |
|             let allow_deprecated_attr =
 | |
|                 attr::mk_list_item(Ident::new(sym::allow, span), vec![deprecated_attr]);
 | |
|             i.attrs.push(cx.attribute(allow_deprecated_attr));
 | |
| 
 | |
|             i
 | |
|         });
 | |
| 
 | |
|     let block = cx.expr_block(
 | |
|         cx.block(span, vec![cx.stmt_item(span, krate), cx.stmt_item(span, decls_static)]),
 | |
|     );
 | |
| 
 | |
|     let anon_constant = cx.item_const(
 | |
|         span,
 | |
|         Ident::new(kw::Underscore, span),
 | |
|         cx.ty(span, ast::TyKind::Tup(Vec::new())),
 | |
|         block,
 | |
|     );
 | |
| 
 | |
|     // Integrate the new item into existing module structures.
 | |
|     let items = AstFragment::Items(smallvec![anon_constant]);
 | |
|     cx.monotonic_expander().fully_expand_fragment(items).make_items().pop().unwrap()
 | |
| }
 |