Check bounds when looking up type parameters
A mismatched type with more type parameters than the expected one causes `typeck` looking up out of the bound of type parameter vector, which leads to ICE. Closes #13466
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@ -242,16 +242,17 @@ fn lookup_vtable(vcx: &VtableContext,
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// bounds to see if they include the trait we are looking for.
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let vtable_opt = match ty::get(ty).sty {
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ty::ty_param(param_ty {idx: n, ..}) => {
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let type_param_bounds: &[@ty::TraitRef] =
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vcx.param_env
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.type_param_bounds
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.get(n)
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.trait_bounds
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.as_slice();
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lookup_vtable_from_bounds(vcx, span,
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type_param_bounds,
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param_numbered(n),
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trait_ref)
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let env_bounds = &vcx.param_env.type_param_bounds;
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if env_bounds.len() > n {
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let type_param_bounds: &[@ty::TraitRef] =
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env_bounds.get(n).trait_bounds.as_slice();
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lookup_vtable_from_bounds(vcx, span,
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type_param_bounds,
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param_numbered(n),
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trait_ref)
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} else {
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None
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}
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}
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ty::ty_self(_) => {
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@ -393,8 +393,9 @@ pub fn ty_to_str(cx: &ctxt, typ: t) -> ~str {
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ty_param(param_ty {idx: id, def_id: did}) => {
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let ident = match cx.ty_param_defs.borrow().find(&did.node) {
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Some(def) => token::get_ident(def.ident).get().to_str(),
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// This should not happen...
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None => format!("BUG[{:?}]", id)
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// This can only happen when a type mismatch error happens and
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// the actual type has more type parameters than the expected one.
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None => format!("<generic \\#{}>", id)
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};
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if !cx.sess.verbose() {
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ident
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22
src/test/compile-fail/issue-13466.rs
Normal file
22
src/test/compile-fail/issue-13466.rs
Normal file
@ -0,0 +1,22 @@
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// Copyright 2014 The Rust Project Developers. See the COPYRIGHT
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// file at the top-level directory of this distribution and at
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// http://rust-lang.org/COPYRIGHT.
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//
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// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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// Regression test for #13466
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pub fn main() {
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// The expected arm type `Option<T>` has one type parameter, while
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// the actual arm `Result<T, E>` has two. typeck should not be
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// tricked into looking up a non-existing second type parameter.
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let _x: uint = match Some(1u) {
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//~^ ERROR mismatched types: expected `uint` but found `<generic #0>`
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Ok(u) => u, //~ ERROR mismatched types: expected `std::option::Option<uint>`
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Err(e) => fail!(e) //~ ERROR mismatched types: expected `std::option::Option<uint>`
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};
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}
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