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	 bdc4480914
			
		
	
	
		bdc4480914
		
			
		
	
	
	
	
		
			
			Clairify `ast::PatKind::Struct` presese of `..` by using an enum instead of a bool
The bool is mainly used for when a `..` is present, but it is also set on recovery to avoid errors. The doc comment not describes both of these cases.
See cee794ee98/compiler/rustc_parse/src/parser/pat.rs (L890-L897) for the only place this is constructed.
r? ``@compiler-errors``
		
	
			
		
			
				
	
	
		
			682 lines
		
	
	
		
			22 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			682 lines
		
	
	
		
			22 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
| use crate::base::ExtCtxt;
 | |
| use rustc_ast::ptr::P;
 | |
| use rustc_ast::{self as ast, AttrVec, BlockCheckMode, Expr, LocalKind, PatKind, UnOp};
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| use rustc_ast::{attr, token, util::literal};
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| use rustc_span::source_map::Spanned;
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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 thin_vec::{thin_vec, ThinVec};
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| 
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| impl<'a> ExtCtxt<'a> {
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|     pub fn path(&self, span: Span, strs: Vec<Ident>) -> ast::Path {
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|         self.path_all(span, false, strs, vec![])
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|     }
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|     pub fn path_ident(&self, span: Span, id: Ident) -> ast::Path {
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|         self.path(span, vec![id])
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|     }
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|     pub fn path_global(&self, span: Span, strs: Vec<Ident>) -> ast::Path {
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|         self.path_all(span, true, strs, vec![])
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|     }
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|     pub fn path_all(
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|         &self,
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|         span: Span,
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|         global: bool,
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|         mut idents: Vec<Ident>,
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|         args: Vec<ast::GenericArg>,
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|     ) -> ast::Path {
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|         assert!(!idents.is_empty());
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|         let add_root = global && !idents[0].is_path_segment_keyword();
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|         let mut segments = ThinVec::with_capacity(idents.len() + add_root as usize);
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|         if add_root {
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|             segments.push(ast::PathSegment::path_root(span));
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|         }
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|         let last_ident = idents.pop().unwrap();
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|         segments.extend(
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|             idents.into_iter().map(|ident| ast::PathSegment::from_ident(ident.with_span_pos(span))),
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|         );
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|         let args = if !args.is_empty() {
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|             let args = args.into_iter().map(ast::AngleBracketedArg::Arg).collect();
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|             Some(ast::AngleBracketedArgs { args, span }.into())
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|         } else {
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|             None
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|         };
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|         segments.push(ast::PathSegment {
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|             ident: last_ident.with_span_pos(span),
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|             id: ast::DUMMY_NODE_ID,
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|             args,
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|         });
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|         ast::Path { span, segments, tokens: None }
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|     }
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| 
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|     pub fn ty_mt(&self, ty: P<ast::Ty>, mutbl: ast::Mutability) -> ast::MutTy {
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|         ast::MutTy { ty, mutbl }
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|     }
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| 
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|     pub fn ty(&self, span: Span, kind: ast::TyKind) -> P<ast::Ty> {
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|         P(ast::Ty { id: ast::DUMMY_NODE_ID, span, kind, tokens: None })
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|     }
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| 
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|     pub fn ty_infer(&self, span: Span) -> P<ast::Ty> {
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|         self.ty(span, ast::TyKind::Infer)
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|     }
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| 
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|     pub fn ty_path(&self, path: ast::Path) -> P<ast::Ty> {
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|         self.ty(path.span, ast::TyKind::Path(None, path))
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|     }
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| 
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|     // Might need to take bounds as an argument in the future, if you ever want
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|     // to generate a bounded existential trait type.
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|     pub fn ty_ident(&self, span: Span, ident: Ident) -> P<ast::Ty> {
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|         self.ty_path(self.path_ident(span, ident))
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|     }
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| 
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|     pub fn anon_const(&self, span: Span, kind: ast::ExprKind) -> ast::AnonConst {
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|         ast::AnonConst {
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|             id: ast::DUMMY_NODE_ID,
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|             value: P(ast::Expr {
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|                 id: ast::DUMMY_NODE_ID,
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|                 kind,
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|                 span,
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|                 attrs: AttrVec::new(),
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|                 tokens: None,
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|             }),
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|         }
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|     }
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| 
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|     pub fn const_ident(&self, span: Span, ident: Ident) -> ast::AnonConst {
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|         self.anon_const(span, ast::ExprKind::Path(None, self.path_ident(span, ident)))
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|     }
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| 
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|     pub fn ty_ref(
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|         &self,
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|         span: Span,
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|         ty: P<ast::Ty>,
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|         lifetime: Option<ast::Lifetime>,
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|         mutbl: ast::Mutability,
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|     ) -> P<ast::Ty> {
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|         self.ty(span, ast::TyKind::Ref(lifetime, self.ty_mt(ty, mutbl)))
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|     }
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| 
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|     pub fn ty_ptr(&self, span: Span, ty: P<ast::Ty>, mutbl: ast::Mutability) -> P<ast::Ty> {
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|         self.ty(span, ast::TyKind::Ptr(self.ty_mt(ty, mutbl)))
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|     }
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| 
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|     pub fn typaram(
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|         &self,
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|         span: Span,
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|         ident: Ident,
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|         bounds: ast::GenericBounds,
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|         default: Option<P<ast::Ty>>,
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|     ) -> ast::GenericParam {
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|         ast::GenericParam {
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|             ident: ident.with_span_pos(span),
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|             id: ast::DUMMY_NODE_ID,
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|             attrs: AttrVec::new(),
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|             bounds,
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|             kind: ast::GenericParamKind::Type { default },
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|             is_placeholder: false,
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|             colon_span: None,
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|         }
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|     }
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| 
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|     pub fn trait_ref(&self, path: ast::Path) -> ast::TraitRef {
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|         ast::TraitRef { path, ref_id: ast::DUMMY_NODE_ID }
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|     }
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| 
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|     pub fn poly_trait_ref(&self, span: Span, path: ast::Path) -> ast::PolyTraitRef {
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|         ast::PolyTraitRef {
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|             bound_generic_params: ThinVec::new(),
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|             trait_ref: self.trait_ref(path),
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|             span,
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|         }
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|     }
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| 
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|     pub fn trait_bound(&self, path: ast::Path, is_const: bool) -> ast::GenericBound {
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|         ast::GenericBound::Trait(
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|             self.poly_trait_ref(path.span, path),
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|             ast::TraitBoundModifiers {
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|                 polarity: ast::BoundPolarity::Positive,
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|                 constness: if is_const {
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|                     ast::BoundConstness::Maybe(DUMMY_SP)
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|                 } else {
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|                     ast::BoundConstness::Never
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|                 },
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|             },
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|         )
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|     }
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| 
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|     pub fn lifetime(&self, span: Span, ident: Ident) -> ast::Lifetime {
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|         ast::Lifetime { id: ast::DUMMY_NODE_ID, ident: ident.with_span_pos(span) }
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|     }
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| 
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|     pub fn lifetime_static(&self, span: Span) -> ast::Lifetime {
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|         self.lifetime(span, Ident::new(kw::StaticLifetime, span))
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|     }
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| 
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|     pub fn stmt_expr(&self, expr: P<ast::Expr>) -> ast::Stmt {
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|         ast::Stmt { id: ast::DUMMY_NODE_ID, span: expr.span, kind: ast::StmtKind::Expr(expr) }
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|     }
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| 
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|     pub fn stmt_let_pat(&self, sp: Span, pat: P<ast::Pat>, ex: P<ast::Expr>) -> ast::Stmt {
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|         let local = P(ast::Local {
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|             pat,
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|             ty: None,
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|             id: ast::DUMMY_NODE_ID,
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|             kind: LocalKind::Init(ex),
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|             span: sp,
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|             attrs: AttrVec::new(),
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|             tokens: None,
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|         });
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|         self.stmt_local(local, sp)
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|     }
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| 
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|     pub fn stmt_let(&self, sp: Span, mutbl: bool, ident: Ident, ex: P<ast::Expr>) -> ast::Stmt {
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|         self.stmt_let_ty(sp, mutbl, ident, None, ex)
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|     }
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| 
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|     pub fn stmt_let_ty(
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|         &self,
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|         sp: Span,
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|         mutbl: bool,
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|         ident: Ident,
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|         ty: Option<P<ast::Ty>>,
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|         ex: P<ast::Expr>,
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|     ) -> ast::Stmt {
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|         let pat = if mutbl {
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|             self.pat_ident_binding_mode(sp, ident, ast::BindingAnnotation::MUT)
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|         } else {
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|             self.pat_ident(sp, ident)
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|         };
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|         let local = P(ast::Local {
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|             pat,
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|             ty,
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|             id: ast::DUMMY_NODE_ID,
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|             kind: LocalKind::Init(ex),
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|             span: sp,
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|             attrs: AttrVec::new(),
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|             tokens: None,
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|         });
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|         self.stmt_local(local, sp)
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|     }
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| 
 | |
|     /// Generates `let _: Type;`, which is usually used for type assertions.
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|     pub fn stmt_let_type_only(&self, span: Span, ty: P<ast::Ty>) -> ast::Stmt {
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|         let local = P(ast::Local {
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|             pat: self.pat_wild(span),
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|             ty: Some(ty),
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|             id: ast::DUMMY_NODE_ID,
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|             kind: LocalKind::Decl,
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|             span,
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|             attrs: AttrVec::new(),
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|             tokens: None,
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|         });
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|         self.stmt_local(local, span)
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|     }
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| 
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|     pub fn stmt_local(&self, local: P<ast::Local>, span: Span) -> ast::Stmt {
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|         ast::Stmt { id: ast::DUMMY_NODE_ID, kind: ast::StmtKind::Local(local), span }
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|     }
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| 
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|     pub fn stmt_item(&self, sp: Span, item: P<ast::Item>) -> ast::Stmt {
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|         ast::Stmt { id: ast::DUMMY_NODE_ID, kind: ast::StmtKind::Item(item), span: sp }
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|     }
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| 
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|     pub fn block_expr(&self, expr: P<ast::Expr>) -> P<ast::Block> {
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|         self.block(
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|             expr.span,
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|             thin_vec![ast::Stmt {
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|                 id: ast::DUMMY_NODE_ID,
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|                 span: expr.span,
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|                 kind: ast::StmtKind::Expr(expr),
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|             }],
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|         )
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|     }
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|     pub fn block(&self, span: Span, stmts: ThinVec<ast::Stmt>) -> P<ast::Block> {
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|         P(ast::Block {
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|             stmts,
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|             id: ast::DUMMY_NODE_ID,
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|             rules: BlockCheckMode::Default,
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|             span,
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|             tokens: None,
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|             could_be_bare_literal: false,
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|         })
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|     }
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| 
 | |
|     pub fn expr(&self, span: Span, kind: ast::ExprKind) -> P<ast::Expr> {
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|         P(ast::Expr { id: ast::DUMMY_NODE_ID, kind, span, attrs: AttrVec::new(), tokens: None })
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|     }
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| 
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|     pub fn expr_path(&self, path: ast::Path) -> P<ast::Expr> {
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|         self.expr(path.span, ast::ExprKind::Path(None, path))
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|     }
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| 
 | |
|     pub fn expr_ident(&self, span: Span, id: Ident) -> P<ast::Expr> {
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|         self.expr_path(self.path_ident(span, id))
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|     }
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|     pub fn expr_self(&self, span: Span) -> P<ast::Expr> {
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|         self.expr_ident(span, Ident::with_dummy_span(kw::SelfLower))
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|     }
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| 
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|     pub fn expr_field(&self, span: Span, expr: P<Expr>, field: Ident) -> P<ast::Expr> {
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|         self.expr(span, ast::ExprKind::Field(expr, field))
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|     }
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| 
 | |
|     pub fn expr_binary(
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|         &self,
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|         sp: Span,
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|         op: ast::BinOpKind,
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|         lhs: P<ast::Expr>,
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|         rhs: P<ast::Expr>,
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|     ) -> P<ast::Expr> {
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|         self.expr(sp, ast::ExprKind::Binary(Spanned { node: op, span: sp }, lhs, rhs))
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|     }
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| 
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|     pub fn expr_deref(&self, sp: Span, e: P<ast::Expr>) -> P<ast::Expr> {
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|         self.expr(sp, ast::ExprKind::Unary(UnOp::Deref, e))
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|     }
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| 
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|     pub fn expr_addr_of(&self, sp: Span, e: P<ast::Expr>) -> P<ast::Expr> {
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|         self.expr(sp, ast::ExprKind::AddrOf(ast::BorrowKind::Ref, ast::Mutability::Not, e))
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|     }
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| 
 | |
|     pub fn expr_paren(&self, sp: Span, e: P<ast::Expr>) -> P<ast::Expr> {
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|         self.expr(sp, ast::ExprKind::Paren(e))
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|     }
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| 
 | |
|     pub fn expr_call(
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|         &self,
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|         span: Span,
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|         expr: P<ast::Expr>,
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|         args: ThinVec<P<ast::Expr>>,
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|     ) -> P<ast::Expr> {
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|         self.expr(span, ast::ExprKind::Call(expr, args))
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|     }
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|     pub fn expr_call_ident(
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|         &self,
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|         span: Span,
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|         id: Ident,
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|         args: ThinVec<P<ast::Expr>>,
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|     ) -> P<ast::Expr> {
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|         self.expr(span, ast::ExprKind::Call(self.expr_ident(span, id), args))
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|     }
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|     pub fn expr_call_global(
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|         &self,
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|         sp: Span,
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|         fn_path: Vec<Ident>,
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|         args: ThinVec<P<ast::Expr>>,
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|     ) -> P<ast::Expr> {
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|         let pathexpr = self.expr_path(self.path_global(sp, fn_path));
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|         self.expr_call(sp, pathexpr, args)
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|     }
 | |
|     pub fn expr_block(&self, b: P<ast::Block>) -> P<ast::Expr> {
 | |
|         self.expr(b.span, ast::ExprKind::Block(b, None))
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|     }
 | |
|     pub fn field_imm(&self, span: Span, ident: Ident, e: P<ast::Expr>) -> ast::ExprField {
 | |
|         ast::ExprField {
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|             ident: ident.with_span_pos(span),
 | |
|             expr: e,
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|             span,
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|             is_shorthand: false,
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|             attrs: AttrVec::new(),
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|             id: ast::DUMMY_NODE_ID,
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|             is_placeholder: false,
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|         }
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|     }
 | |
|     pub fn expr_struct(
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|         &self,
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|         span: Span,
 | |
|         path: ast::Path,
 | |
|         fields: ThinVec<ast::ExprField>,
 | |
|     ) -> P<ast::Expr> {
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|         self.expr(
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|             span,
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|             ast::ExprKind::Struct(P(ast::StructExpr {
 | |
|                 qself: None,
 | |
|                 path,
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|                 fields,
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|                 rest: ast::StructRest::None,
 | |
|             })),
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|         )
 | |
|     }
 | |
|     pub fn expr_struct_ident(
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|         &self,
 | |
|         span: Span,
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|         id: Ident,
 | |
|         fields: ThinVec<ast::ExprField>,
 | |
|     ) -> P<ast::Expr> {
 | |
|         self.expr_struct(span, self.path_ident(span, id), fields)
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|     }
 | |
| 
 | |
|     pub fn expr_usize(&self, span: Span, n: usize) -> P<ast::Expr> {
 | |
|         let suffix = Some(ast::UintTy::Usize.name());
 | |
|         let lit = token::Lit::new(token::Integer, sym::integer(n), suffix);
 | |
|         self.expr(span, ast::ExprKind::Lit(lit))
 | |
|     }
 | |
| 
 | |
|     pub fn expr_u32(&self, span: Span, n: u32) -> P<ast::Expr> {
 | |
|         let suffix = Some(ast::UintTy::U32.name());
 | |
|         let lit = token::Lit::new(token::Integer, sym::integer(n), suffix);
 | |
|         self.expr(span, ast::ExprKind::Lit(lit))
 | |
|     }
 | |
| 
 | |
|     pub fn expr_bool(&self, span: Span, value: bool) -> P<ast::Expr> {
 | |
|         let lit = token::Lit::new(token::Bool, if value { kw::True } else { kw::False }, None);
 | |
|         self.expr(span, ast::ExprKind::Lit(lit))
 | |
|     }
 | |
| 
 | |
|     pub fn expr_str(&self, span: Span, s: Symbol) -> P<ast::Expr> {
 | |
|         let lit = token::Lit::new(token::Str, literal::escape_string_symbol(s), None);
 | |
|         self.expr(span, ast::ExprKind::Lit(lit))
 | |
|     }
 | |
| 
 | |
|     pub fn expr_char(&self, span: Span, ch: char) -> P<ast::Expr> {
 | |
|         let lit = token::Lit::new(token::Char, literal::escape_char_symbol(ch), None);
 | |
|         self.expr(span, ast::ExprKind::Lit(lit))
 | |
|     }
 | |
| 
 | |
|     pub fn expr_byte_str(&self, span: Span, bytes: Vec<u8>) -> P<ast::Expr> {
 | |
|         let lit = token::Lit::new(token::ByteStr, literal::escape_byte_str_symbol(&bytes), None);
 | |
|         self.expr(span, ast::ExprKind::Lit(lit))
 | |
|     }
 | |
| 
 | |
|     /// `[expr1, expr2, ...]`
 | |
|     pub fn expr_array(&self, sp: Span, exprs: ThinVec<P<ast::Expr>>) -> P<ast::Expr> {
 | |
|         self.expr(sp, ast::ExprKind::Array(exprs))
 | |
|     }
 | |
| 
 | |
|     /// `&[expr1, expr2, ...]`
 | |
|     pub fn expr_array_ref(&self, sp: Span, exprs: ThinVec<P<ast::Expr>>) -> P<ast::Expr> {
 | |
|         self.expr_addr_of(sp, self.expr_array(sp, exprs))
 | |
|     }
 | |
| 
 | |
|     pub fn expr_cast(&self, sp: Span, expr: P<ast::Expr>, ty: P<ast::Ty>) -> P<ast::Expr> {
 | |
|         self.expr(sp, ast::ExprKind::Cast(expr, ty))
 | |
|     }
 | |
| 
 | |
|     pub fn expr_some(&self, sp: Span, expr: P<ast::Expr>) -> P<ast::Expr> {
 | |
|         let some = self.std_path(&[sym::option, sym::Option, sym::Some]);
 | |
|         self.expr_call_global(sp, some, thin_vec![expr])
 | |
|     }
 | |
| 
 | |
|     pub fn expr_none(&self, sp: Span) -> P<ast::Expr> {
 | |
|         let none = self.std_path(&[sym::option, sym::Option, sym::None]);
 | |
|         self.expr_path(self.path_global(sp, none))
 | |
|     }
 | |
|     pub fn expr_tuple(&self, sp: Span, exprs: ThinVec<P<ast::Expr>>) -> P<ast::Expr> {
 | |
|         self.expr(sp, ast::ExprKind::Tup(exprs))
 | |
|     }
 | |
| 
 | |
|     pub fn expr_fail(&self, span: Span, msg: Symbol) -> P<ast::Expr> {
 | |
|         self.expr_call_global(
 | |
|             span,
 | |
|             [sym::std, sym::rt, sym::begin_panic].iter().map(|s| Ident::new(*s, span)).collect(),
 | |
|             thin_vec![self.expr_str(span, msg)],
 | |
|         )
 | |
|     }
 | |
| 
 | |
|     pub fn expr_unreachable(&self, span: Span) -> P<ast::Expr> {
 | |
|         self.expr_fail(span, Symbol::intern("internal error: entered unreachable code"))
 | |
|     }
 | |
| 
 | |
|     pub fn expr_ok(&self, sp: Span, expr: P<ast::Expr>) -> P<ast::Expr> {
 | |
|         let ok = self.std_path(&[sym::result, sym::Result, sym::Ok]);
 | |
|         self.expr_call_global(sp, ok, thin_vec![expr])
 | |
|     }
 | |
| 
 | |
|     pub fn expr_try(&self, sp: Span, head: P<ast::Expr>) -> P<ast::Expr> {
 | |
|         let ok = self.std_path(&[sym::result, sym::Result, sym::Ok]);
 | |
|         let ok_path = self.path_global(sp, ok);
 | |
|         let err = self.std_path(&[sym::result, sym::Result, sym::Err]);
 | |
|         let err_path = self.path_global(sp, err);
 | |
| 
 | |
|         let binding_variable = Ident::new(sym::__try_var, sp);
 | |
|         let binding_pat = self.pat_ident(sp, binding_variable);
 | |
|         let binding_expr = self.expr_ident(sp, binding_variable);
 | |
| 
 | |
|         // `Ok(__try_var)` pattern
 | |
|         let ok_pat = self.pat_tuple_struct(sp, ok_path, thin_vec![binding_pat.clone()]);
 | |
| 
 | |
|         // `Err(__try_var)` (pattern and expression respectively)
 | |
|         let err_pat = self.pat_tuple_struct(sp, err_path.clone(), thin_vec![binding_pat]);
 | |
|         let err_inner_expr =
 | |
|             self.expr_call(sp, self.expr_path(err_path), thin_vec![binding_expr.clone()]);
 | |
|         // `return Err(__try_var)`
 | |
|         let err_expr = self.expr(sp, ast::ExprKind::Ret(Some(err_inner_expr)));
 | |
| 
 | |
|         // `Ok(__try_var) => __try_var`
 | |
|         let ok_arm = self.arm(sp, ok_pat, binding_expr);
 | |
|         // `Err(__try_var) => return Err(__try_var)`
 | |
|         let err_arm = self.arm(sp, err_pat, err_expr);
 | |
| 
 | |
|         // `match head { Ok() => ..., Err() => ... }`
 | |
|         self.expr_match(sp, head, thin_vec![ok_arm, err_arm])
 | |
|     }
 | |
| 
 | |
|     pub fn pat(&self, span: Span, kind: PatKind) -> P<ast::Pat> {
 | |
|         P(ast::Pat { id: ast::DUMMY_NODE_ID, kind, span, tokens: None })
 | |
|     }
 | |
|     pub fn pat_wild(&self, span: Span) -> P<ast::Pat> {
 | |
|         self.pat(span, PatKind::Wild)
 | |
|     }
 | |
|     pub fn pat_lit(&self, span: Span, expr: P<ast::Expr>) -> P<ast::Pat> {
 | |
|         self.pat(span, PatKind::Lit(expr))
 | |
|     }
 | |
|     pub fn pat_ident(&self, span: Span, ident: Ident) -> P<ast::Pat> {
 | |
|         self.pat_ident_binding_mode(span, ident, ast::BindingAnnotation::NONE)
 | |
|     }
 | |
| 
 | |
|     pub fn pat_ident_binding_mode(
 | |
|         &self,
 | |
|         span: Span,
 | |
|         ident: Ident,
 | |
|         ann: ast::BindingAnnotation,
 | |
|     ) -> P<ast::Pat> {
 | |
|         let pat = PatKind::Ident(ann, ident.with_span_pos(span), None);
 | |
|         self.pat(span, pat)
 | |
|     }
 | |
|     pub fn pat_path(&self, span: Span, path: ast::Path) -> P<ast::Pat> {
 | |
|         self.pat(span, PatKind::Path(None, path))
 | |
|     }
 | |
|     pub fn pat_tuple_struct(
 | |
|         &self,
 | |
|         span: Span,
 | |
|         path: ast::Path,
 | |
|         subpats: ThinVec<P<ast::Pat>>,
 | |
|     ) -> P<ast::Pat> {
 | |
|         self.pat(span, PatKind::TupleStruct(None, path, subpats))
 | |
|     }
 | |
|     pub fn pat_struct(
 | |
|         &self,
 | |
|         span: Span,
 | |
|         path: ast::Path,
 | |
|         field_pats: ThinVec<ast::PatField>,
 | |
|     ) -> P<ast::Pat> {
 | |
|         self.pat(span, PatKind::Struct(None, path, field_pats, ast::PatFieldsRest::None))
 | |
|     }
 | |
|     pub fn pat_tuple(&self, span: Span, pats: ThinVec<P<ast::Pat>>) -> P<ast::Pat> {
 | |
|         self.pat(span, PatKind::Tuple(pats))
 | |
|     }
 | |
| 
 | |
|     pub fn pat_some(&self, span: Span, pat: P<ast::Pat>) -> P<ast::Pat> {
 | |
|         let some = self.std_path(&[sym::option, sym::Option, sym::Some]);
 | |
|         let path = self.path_global(span, some);
 | |
|         self.pat_tuple_struct(span, path, thin_vec![pat])
 | |
|     }
 | |
| 
 | |
|     pub fn arm(&self, span: Span, pat: P<ast::Pat>, expr: P<ast::Expr>) -> ast::Arm {
 | |
|         ast::Arm {
 | |
|             attrs: AttrVec::new(),
 | |
|             pat,
 | |
|             guard: None,
 | |
|             body: Some(expr),
 | |
|             span,
 | |
|             id: ast::DUMMY_NODE_ID,
 | |
|             is_placeholder: false,
 | |
|         }
 | |
|     }
 | |
| 
 | |
|     pub fn arm_unreachable(&self, span: Span) -> ast::Arm {
 | |
|         self.arm(span, self.pat_wild(span), self.expr_unreachable(span))
 | |
|     }
 | |
| 
 | |
|     pub fn expr_match(&self, span: Span, arg: P<ast::Expr>, arms: ThinVec<ast::Arm>) -> P<Expr> {
 | |
|         self.expr(span, ast::ExprKind::Match(arg, arms))
 | |
|     }
 | |
| 
 | |
|     pub fn expr_if(
 | |
|         &self,
 | |
|         span: Span,
 | |
|         cond: P<ast::Expr>,
 | |
|         then: P<ast::Expr>,
 | |
|         els: Option<P<ast::Expr>>,
 | |
|     ) -> P<ast::Expr> {
 | |
|         let els = els.map(|x| self.expr_block(self.block_expr(x)));
 | |
|         self.expr(span, ast::ExprKind::If(cond, self.block_expr(then), els))
 | |
|     }
 | |
| 
 | |
|     pub fn lambda(&self, span: Span, ids: Vec<Ident>, body: P<ast::Expr>) -> P<ast::Expr> {
 | |
|         let fn_decl = self.fn_decl(
 | |
|             ids.iter().map(|id| self.param(span, *id, self.ty(span, ast::TyKind::Infer))).collect(),
 | |
|             ast::FnRetTy::Default(span),
 | |
|         );
 | |
| 
 | |
|         // FIXME -- We are using `span` as the span of the `|...|`
 | |
|         // part of the lambda, but it probably (maybe?) corresponds to
 | |
|         // the entire lambda body. Probably we should extend the API
 | |
|         // here, but that's not entirely clear.
 | |
|         self.expr(
 | |
|             span,
 | |
|             ast::ExprKind::Closure(Box::new(ast::Closure {
 | |
|                 binder: ast::ClosureBinder::NotPresent,
 | |
|                 capture_clause: ast::CaptureBy::Ref,
 | |
|                 constness: ast::Const::No,
 | |
|                 coroutine_kind: None,
 | |
|                 movability: ast::Movability::Movable,
 | |
|                 fn_decl,
 | |
|                 body,
 | |
|                 fn_decl_span: span,
 | |
|                 // FIXME(SarthakSingh31): This points to the start of the declaration block and
 | |
|                 // not the span of the argument block.
 | |
|                 fn_arg_span: span,
 | |
|             })),
 | |
|         )
 | |
|     }
 | |
| 
 | |
|     pub fn lambda0(&self, span: Span, body: P<ast::Expr>) -> P<ast::Expr> {
 | |
|         self.lambda(span, Vec::new(), body)
 | |
|     }
 | |
| 
 | |
|     pub fn lambda1(&self, span: Span, body: P<ast::Expr>, ident: Ident) -> P<ast::Expr> {
 | |
|         self.lambda(span, vec![ident], body)
 | |
|     }
 | |
| 
 | |
|     pub fn lambda_stmts_1(
 | |
|         &self,
 | |
|         span: Span,
 | |
|         stmts: ThinVec<ast::Stmt>,
 | |
|         ident: Ident,
 | |
|     ) -> P<ast::Expr> {
 | |
|         self.lambda1(span, self.expr_block(self.block(span, stmts)), ident)
 | |
|     }
 | |
| 
 | |
|     pub fn param(&self, span: Span, ident: Ident, ty: P<ast::Ty>) -> ast::Param {
 | |
|         let arg_pat = self.pat_ident(span, ident);
 | |
|         ast::Param {
 | |
|             attrs: AttrVec::default(),
 | |
|             id: ast::DUMMY_NODE_ID,
 | |
|             pat: arg_pat,
 | |
|             span,
 | |
|             ty,
 | |
|             is_placeholder: false,
 | |
|         }
 | |
|     }
 | |
| 
 | |
|     // `self` is unused but keep it as method for the convenience use.
 | |
|     pub fn fn_decl(&self, inputs: ThinVec<ast::Param>, output: ast::FnRetTy) -> P<ast::FnDecl> {
 | |
|         P(ast::FnDecl { inputs, output })
 | |
|     }
 | |
| 
 | |
|     pub fn item(
 | |
|         &self,
 | |
|         span: Span,
 | |
|         name: Ident,
 | |
|         attrs: ast::AttrVec,
 | |
|         kind: ast::ItemKind,
 | |
|     ) -> P<ast::Item> {
 | |
|         P(ast::Item {
 | |
|             ident: name,
 | |
|             attrs,
 | |
|             id: ast::DUMMY_NODE_ID,
 | |
|             kind,
 | |
|             vis: ast::Visibility {
 | |
|                 span: span.shrink_to_lo(),
 | |
|                 kind: ast::VisibilityKind::Inherited,
 | |
|                 tokens: None,
 | |
|             },
 | |
|             span,
 | |
|             tokens: None,
 | |
|         })
 | |
|     }
 | |
| 
 | |
|     pub fn item_static(
 | |
|         &self,
 | |
|         span: Span,
 | |
|         name: Ident,
 | |
|         ty: P<ast::Ty>,
 | |
|         mutability: ast::Mutability,
 | |
|         expr: P<ast::Expr>,
 | |
|     ) -> P<ast::Item> {
 | |
|         self.item(
 | |
|             span,
 | |
|             name,
 | |
|             AttrVec::new(),
 | |
|             ast::ItemKind::Static(ast::StaticItem { ty, mutability, expr: Some(expr) }.into()),
 | |
|         )
 | |
|     }
 | |
| 
 | |
|     pub fn item_const(
 | |
|         &self,
 | |
|         span: Span,
 | |
|         name: Ident,
 | |
|         ty: P<ast::Ty>,
 | |
|         expr: P<ast::Expr>,
 | |
|     ) -> P<ast::Item> {
 | |
|         let defaultness = ast::Defaultness::Final;
 | |
|         self.item(
 | |
|             span,
 | |
|             name,
 | |
|             AttrVec::new(),
 | |
|             ast::ItemKind::Const(
 | |
|                 ast::ConstItem {
 | |
|                     defaultness,
 | |
|                     // FIXME(generic_const_items): Pass the generics as a parameter.
 | |
|                     generics: ast::Generics::default(),
 | |
|                     ty,
 | |
|                     expr: Some(expr),
 | |
|                 }
 | |
|                 .into(),
 | |
|             ),
 | |
|         )
 | |
|     }
 | |
| 
 | |
|     // Builds `#[name]`.
 | |
|     pub fn attr_word(&self, name: Symbol, span: Span) -> ast::Attribute {
 | |
|         let g = &self.sess.parse_sess.attr_id_generator;
 | |
|         attr::mk_attr_word(g, ast::AttrStyle::Outer, name, span)
 | |
|     }
 | |
| 
 | |
|     // Builds `#[name = val]`.
 | |
|     //
 | |
|     // Note: `span` is used for both the identifier and the value.
 | |
|     pub fn attr_name_value_str(&self, name: Symbol, val: Symbol, span: Span) -> ast::Attribute {
 | |
|         let g = &self.sess.parse_sess.attr_id_generator;
 | |
|         attr::mk_attr_name_value_str(g, ast::AttrStyle::Outer, name, val, span)
 | |
|     }
 | |
| 
 | |
|     // Builds `#[outer(inner)]`.
 | |
|     pub fn attr_nested_word(&self, outer: Symbol, inner: Symbol, span: Span) -> ast::Attribute {
 | |
|         let g = &self.sess.parse_sess.attr_id_generator;
 | |
|         attr::mk_attr_nested_word(g, ast::AttrStyle::Outer, outer, inner, span)
 | |
|     }
 | |
| }
 |