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Add new tests showing multiple lifetime parameters in use
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// Copyright 2012 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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// Test that a type which is covariant with respect to its region
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// parameter yields an error when used in a contravariant way.
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//
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// Note: see variance-regions-*.rs for the tests that check that the
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// variance inference works in the first place.
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// `S` is contravariant with respect to both parameters.
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struct S<'a, 'b> {
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f: &'a int,
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g: &'b int,
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}
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fn use_<'short,'long>(c: S<'long, 'short>,
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s: &'short int,
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l: &'long int,
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_where:Option<&'short &'long ()>) {
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let _: S<'long, 'short> = c; // OK
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let _: S<'short, 'short> = c; // OK
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// Test whether S<_,'short> <: S<_,'long>. Since
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// 'short <= 'long, this would be true if the Contravariant type were
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// covariant with respect to its parameter 'a.
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let _: S<'long, 'long> = c; //~ ERROR mismatched types
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//~^ ERROR cannot infer an appropriate lifetime
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}
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fn main() {}
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@ -14,8 +14,8 @@
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// Note: see variance-regions-*.rs for the tests that check that the
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// variance inference works in the first place.
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// This is covariant with respect to 'a, meaning that
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// Covariant<'foo> <: Covariant<'static> because
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// This is contravariant with respect to 'a, meaning that
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// Contravariant<'foo> <: Contravariant<'static> because
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// 'foo <= 'static
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struct Contravariant<'a> {
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f: &'a int
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124
src/test/run-pass/regions-mock-tcx.rs
Normal file
124
src/test/run-pass/regions-mock-tcx.rs
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@ -0,0 +1,124 @@
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// Copyright 2012 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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// Test a sample usage pattern for regions. Makes use of the
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// following features:
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//
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// - Multiple lifetime parameters
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// - Arenas
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extern mod extra;
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use extra::arena;
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use extra::arena::Arena;
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use std::hashmap::HashMap;
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use std::cast;
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use std::libc;
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use std::mem;
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type Type<'tcx> = &'tcx TypeStructure<'tcx>;
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#[deriving(Eq)]
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enum TypeStructure<'tcx> {
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TypeInt,
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TypeFunction(Type<'tcx>, Type<'tcx>),
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}
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struct TypeContext<'tcx, 'ast> {
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ty_arena: &'tcx Arena,
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types: ~[Type<'tcx>],
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type_table: HashMap<NodeId, Type<'tcx>>,
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ast_arena: &'ast Arena,
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ast_counter: uint,
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}
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impl<'tcx,'ast> TypeContext<'tcx, 'ast> {
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fn new(ty_arena: &'tcx Arena, ast_arena: &'ast Arena)
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-> TypeContext<'tcx, 'ast> {
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TypeContext { ty_arena: ty_arena,
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types: ~[],
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type_table: HashMap::new(),
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ast_arena: ast_arena,
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ast_counter: 0 }
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}
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fn add_type(&mut self, s: TypeStructure<'tcx>) -> Type<'tcx> {
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for &ty in self.types.iter() {
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if *ty == s {
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return ty;
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}
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}
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let ty = self.ty_arena.alloc(|| s);
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self.types.push(ty);
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ty
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}
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fn set_type(&mut self, id: NodeId, ty: Type<'tcx>) -> Type<'tcx> {
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self.type_table.insert(id, ty);
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ty
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}
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fn ast(&mut self, a: AstKind<'ast>) -> Ast<'ast> {
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let id = self.ast_counter;
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self.ast_counter += 1;
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self.ast_arena.alloc(|| AstStructure { id: NodeId {id:id}, kind: a })
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}
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}
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#[deriving(Eq, IterBytes)]
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struct NodeId {
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id: uint
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}
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type Ast<'ast> = &'ast AstStructure<'ast>;
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struct AstStructure<'ast> {
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id: NodeId,
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kind: AstKind<'ast>
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}
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enum AstKind<'ast> {
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ExprInt,
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ExprVar(uint),
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ExprLambda(Ast<'ast>),
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// ...
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}
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fn compute_types<'tcx,'ast>(tcx: &mut TypeContext<'tcx,'ast>,
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ast: Ast<'ast>) -> Type<'tcx>
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{
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match ast.kind {
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ExprInt | ExprVar(_) => {
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let ty = tcx.add_type(TypeInt);
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tcx.set_type(ast.id, ty)
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}
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ExprLambda(ast) => {
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let arg_ty = tcx.add_type(TypeInt);
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let body_ty = compute_types(tcx, ast);
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let lambda_ty = tcx.add_type(TypeFunction(arg_ty, body_ty));
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tcx.set_type(ast.id, lambda_ty)
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}
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// ...
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}
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}
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pub fn main() {
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let ty_arena = arena::Arena::new();
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let ast_arena = arena::Arena::new();
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let mut tcx = TypeContext::new(&ty_arena, &ast_arena);
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let ast = tcx.ast(ExprInt);
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let ty = compute_types(&mut tcx, ast);
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assert_eq!(*ty, TypeInt);
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}
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