rollup merge of #18868: nikomatsakis/issue-17388-unbound-path-assoc-type
This fixes #17388. Note that we don't check type parameters in trait-references and so on, so we accept some nonsense (I opened https://github.com/rust-lang/rust/issues/18865). (It may be easier to just add support for `T::Foo` and deprecate the qpath code until we can implement it more robustly using the trait lookup infrastructure, not sure.)
This commit is contained in:
commit
655eb44df3
16 changed files with 119 additions and 187 deletions
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@ -633,6 +633,7 @@ enum TraitReferenceType {
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TraitDerivation, // trait T : SomeTrait { ... }
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TraitBoundingTypeParameter, // fn f<T:SomeTrait>() { ... }
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TraitObject, // Box<for<'a> SomeTrait>
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TraitQPath, // <T as SomeTrait>::
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}
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impl NameBindings {
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@ -4532,6 +4533,7 @@ impl<'a> Resolver<'a> {
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TraitImplementation => "implement",
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TraitDerivation => "derive",
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TraitObject => "reference",
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TraitQPath => "extract an associated type from",
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};
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let msg = format!("attempt to {} a nonexistent trait `{}`", usage_str, path_str);
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@ -4969,65 +4971,8 @@ impl<'a> Resolver<'a> {
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}
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TyQPath(ref qpath) => {
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self.resolve_type(&*qpath.for_type);
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let current_module = self.current_module.clone();
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let module_path: Vec<_> =
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qpath.trait_name
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.segments
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.iter()
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.map(|ps| ps.identifier.name)
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.collect();
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match self.resolve_module_path(
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current_module,
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module_path.as_slice(),
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UseLexicalScope,
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qpath.trait_name.span,
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PathSearch) {
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Success((ref module, _)) if module.kind.get() ==
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TraitModuleKind => {
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match self.resolve_definition_of_name_in_module(
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(*module).clone(),
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qpath.item_name.name,
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TypeNS) {
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ChildNameDefinition(def, lp) |
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ImportNameDefinition(def, lp) => {
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match def {
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DefAssociatedTy(trait_type_id) => {
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let def = DefAssociatedTy(
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trait_type_id);
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self.record_def(ty.id, (def, lp));
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}
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_ => {
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self.resolve_error(
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ty.span,
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"not an associated type");
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}
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}
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}
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NoNameDefinition => {
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self.resolve_error(ty.span,
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"unresolved associated \
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type");
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}
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}
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}
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Success(..) => self.resolve_error(ty.span, "not a trait"),
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Indeterminate => {
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self.session.span_bug(ty.span,
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"indeterminate result when \
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resolving associated type")
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}
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Failed(error) => {
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let (span, help) = match error {
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Some((span, msg)) => (span, format!("; {}", msg)),
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None => (ty.span, String::new()),
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};
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self.resolve_error(span,
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format!("unresolved trait: {}",
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help).as_slice())
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}
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}
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self.resolve_type(&*qpath.self_type);
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self.resolve_trait_reference(ty.id, &*qpath.trait_ref, TraitQPath);
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}
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TyClosure(ref c) | TyProc(ref c) => {
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@ -100,6 +100,10 @@ impl<'tcx> Substs<'tcx> {
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regions_is_noop && self.types.is_empty()
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}
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pub fn type_for_def(&self, ty_param_def: &ty::TypeParameterDef) -> Ty<'tcx> {
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*self.types.get(ty_param_def.space, ty_param_def.index)
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}
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pub fn has_regions_escaping_depth(&self, depth: uint) -> bool {
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self.types.iter().any(|&t| ty::type_escapes_depth(t, depth)) || {
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match self.regions {
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@ -25,6 +25,7 @@ use std::rc::Rc;
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use std::slice::Items;
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use syntax::ast;
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use syntax::codemap::{Span, DUMMY_SP};
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use util::common::ErrorReported;
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pub use self::fulfill::FulfillmentContext;
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pub use self::select::SelectionContext;
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@ -95,10 +96,6 @@ pub enum ObligationCauseCode<'tcx> {
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FieldSized,
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}
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// An error has already been reported to the user, so no need to continue checking.
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#[deriving(Clone,Show)]
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pub struct ErrorReported;
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pub type Obligations<'tcx> = subst::VecPerParamSpace<Obligation<'tcx>>;
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pub type Selection<'tcx> = Vtable<'tcx, Obligation<'tcx>>;
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@ -17,7 +17,6 @@ use self::Candidate::*;
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use self::BuiltinBoundConditions::*;
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use self::EvaluationResult::*;
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use super::{ErrorReported};
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use super::{Obligation, ObligationCause};
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use super::{SelectionError, Unimplemented, Overflow,
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OutputTypeParameterMismatch};
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@ -38,6 +37,7 @@ use std::cell::RefCell;
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use std::collections::hash_map::HashMap;
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use std::rc::Rc;
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use syntax::ast;
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use util::common::ErrorReported;
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use util::ppaux::Repr;
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pub struct SelectionContext<'cx, 'tcx:'cx> {
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@ -18,9 +18,10 @@ use std::fmt;
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use std::rc::Rc;
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use syntax::ast;
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use syntax::codemap::Span;
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use util::common::ErrorReported;
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use util::ppaux::Repr;
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use super::{ErrorReported, Obligation, ObligationCause, VtableImpl,
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use super::{Obligation, ObligationCause, VtableImpl,
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VtableParam, VtableParamData, VtableImplData};
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///////////////////////////////////////////////////////////////////////////
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@ -207,7 +207,6 @@ fn ast_path_substs_for_ty<'tcx,AC,RS>(
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decl_def_id: ast::DefId,
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decl_generics: &ty::Generics<'tcx>,
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self_ty: Option<Ty<'tcx>>,
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associated_ty: Option<Ty<'tcx>>,
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path: &ast::Path)
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-> Substs<'tcx>
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where AC: AstConv<'tcx>, RS: RegionScope
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@ -243,7 +242,7 @@ fn ast_path_substs_for_ty<'tcx,AC,RS>(
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};
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create_substs_for_ast_path(this, rscope, path.span, decl_def_id,
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decl_generics, self_ty, types, regions, associated_ty)
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decl_generics, self_ty, types, regions)
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}
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fn create_substs_for_ast_path<'tcx,AC,RS>(
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@ -254,8 +253,7 @@ fn create_substs_for_ast_path<'tcx,AC,RS>(
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decl_generics: &ty::Generics<'tcx>,
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self_ty: Option<Ty<'tcx>>,
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types: Vec<Ty<'tcx>>,
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regions: Vec<ty::Region>,
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associated_ty: Option<Ty<'tcx>>)
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regions: Vec<ty::Region>)
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-> Substs<'tcx>
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where AC: AstConv<'tcx>, RS: RegionScope
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{
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@ -366,9 +364,9 @@ fn create_substs_for_ast_path<'tcx,AC,RS>(
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substs.types.push(
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AssocSpace,
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this.associated_type_binding(span,
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associated_ty,
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self_ty,
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decl_def_id,
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param.def_id))
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param.def_id));
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}
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return substs;
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@ -417,19 +415,17 @@ pub fn instantiate_poly_trait_ref<'tcx,AC,RS>(
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this: &AC,
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rscope: &RS,
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ast_trait_ref: &ast::PolyTraitRef,
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self_ty: Option<Ty<'tcx>>,
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associated_type: Option<Ty<'tcx>>)
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self_ty: Option<Ty<'tcx>>)
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-> Rc<ty::TraitRef<'tcx>>
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where AC: AstConv<'tcx>, RS: RegionScope
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{
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instantiate_trait_ref(this, rscope, &ast_trait_ref.trait_ref, self_ty, associated_type)
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instantiate_trait_ref(this, rscope, &ast_trait_ref.trait_ref, self_ty)
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}
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pub fn instantiate_trait_ref<'tcx,AC,RS>(this: &AC,
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rscope: &RS,
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ast_trait_ref: &ast::TraitRef,
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self_ty: Option<Ty<'tcx>>,
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associated_type: Option<Ty<'tcx>>)
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self_ty: Option<Ty<'tcx>>)
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-> Rc<ty::TraitRef<'tcx>>
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where AC: AstConv<'tcx>,
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RS: RegionScope
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@ -444,8 +440,8 @@ pub fn instantiate_trait_ref<'tcx,AC,RS>(this: &AC,
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ast_trait_ref.path.span,
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ast_trait_ref.ref_id) {
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def::DefTrait(trait_def_id) => {
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let trait_ref = Rc::new(ast_path_to_trait_ref(this, rscope, trait_def_id, self_ty,
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associated_type, &ast_trait_ref.path));
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let trait_ref = Rc::new(ast_path_to_trait_ref(this, rscope, trait_def_id,
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self_ty, &ast_trait_ref.path));
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this.tcx().trait_refs.borrow_mut().insert(ast_trait_ref.ref_id,
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trait_ref.clone());
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trait_ref
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@ -463,7 +459,6 @@ fn ast_path_to_trait_ref<'tcx,AC,RS>(
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rscope: &RS,
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trait_def_id: ast::DefId,
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self_ty: Option<Ty<'tcx>>,
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associated_type: Option<Ty<'tcx>>,
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path: &ast::Path)
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-> ty::TraitRef<'tcx>
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where AC: AstConv<'tcx>, RS: RegionScope
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@ -493,8 +488,7 @@ fn ast_path_to_trait_ref<'tcx,AC,RS>(
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&trait_def.generics,
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self_ty,
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types,
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regions,
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associated_type);
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regions);
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ty::TraitRef::new(trait_def_id, substs)
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}
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@ -517,7 +511,6 @@ pub fn ast_path_to_ty<'tcx, AC: AstConv<'tcx>, RS: RegionScope>(
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did,
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&generics,
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None,
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None,
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path);
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let ty = decl_ty.subst(tcx, &substs);
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TypeAndSubsts { substs: substs, ty: ty }
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@ -558,7 +551,7 @@ pub fn ast_path_to_ty_relaxed<'tcx,AC,RS>(
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Substs::new(VecPerParamSpace::params_from_type(type_params),
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VecPerParamSpace::params_from_type(region_params))
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} else {
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ast_path_substs_for_ty(this, rscope, did, &generics, None, None, path)
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ast_path_substs_for_ty(this, rscope, did, &generics, None, path)
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};
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let ty = decl_ty.subst(tcx, &substs);
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@ -726,7 +719,6 @@ fn mk_pointer<'tcx, AC: AstConv<'tcx>, RS: RegionScope>(
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rscope,
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trait_def_id,
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None,
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None,
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path);
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let empty_vec = [];
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let bounds = match *opt_bounds { None => empty_vec.as_slice(),
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@ -750,61 +742,37 @@ fn mk_pointer<'tcx, AC: AstConv<'tcx>, RS: RegionScope>(
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constr(ast_ty_to_ty(this, rscope, a_seq_ty))
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}
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fn associated_ty_to_ty<'tcx,AC,RS>(this: &AC,
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rscope: &RS,
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trait_path: &ast::Path,
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for_ast_type: &ast::Ty,
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trait_type_id: ast::DefId,
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span: Span)
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-> Ty<'tcx>
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where AC: AstConv<'tcx>, RS: RegionScope
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fn qpath_to_ty<'tcx,AC,RS>(this: &AC,
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rscope: &RS,
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ast_ty: &ast::Ty, // the TyQPath
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qpath: &ast::QPath)
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-> Ty<'tcx>
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where AC: AstConv<'tcx>, RS: RegionScope
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{
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debug!("associated_ty_to_ty(trait_path={}, for_ast_type={}, trait_type_id={})",
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trait_path.repr(this.tcx()),
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for_ast_type.repr(this.tcx()),
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trait_type_id.repr(this.tcx()));
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debug!("qpath_to_ty(ast_ty={})",
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ast_ty.repr(this.tcx()));
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// Find the trait that this associated type belongs to.
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let trait_did = match ty::impl_or_trait_item(this.tcx(),
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trait_type_id).container() {
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ty::ImplContainer(_) => {
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this.tcx().sess.span_bug(span,
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"associated_ty_to_ty(): impl associated \
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types shouldn't go through this \
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function")
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}
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ty::TraitContainer(trait_id) => trait_id,
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};
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let self_type = ast_ty_to_ty(this, rscope, &*qpath.self_type);
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let for_type = ast_ty_to_ty(this, rscope, for_ast_type);
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if !this.associated_types_of_trait_are_valid(for_type, trait_did) {
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this.tcx().sess.span_err(span,
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"this associated type is not \
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allowed in this context");
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return ty::mk_err()
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}
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debug!("qpath_to_ty: self_type={}", self_type.repr(this.tcx()));
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let trait_ref = ast_path_to_trait_ref(this,
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let trait_ref = instantiate_trait_ref(this,
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rscope,
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trait_did,
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None,
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Some(for_type),
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trait_path);
|
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&*qpath.trait_ref,
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Some(self_type));
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|
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debug!("associated_ty_to_ty(trait_ref={})",
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trait_ref.repr(this.tcx()));
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debug!("qpath_to_ty: trait_ref={}", trait_ref.repr(this.tcx()));
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|
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let trait_def = this.get_trait_def(trait_did);
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for type_parameter in trait_def.generics.types.iter() {
|
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if type_parameter.def_id == trait_type_id {
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debug!("associated_ty_to_ty(type_parameter={} substs={})",
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type_parameter.repr(this.tcx()),
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trait_ref.substs.repr(this.tcx()));
|
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return *trait_ref.substs.types.get(type_parameter.space,
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type_parameter.index)
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let trait_def = this.get_trait_def(trait_ref.def_id);
|
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|
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for ty_param_def in trait_def.generics.types.get_slice(AssocSpace).iter() {
|
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if ty_param_def.name == qpath.item_name.name {
|
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debug!("qpath_to_ty: corresponding ty_param_def={}", ty_param_def);
|
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return trait_ref.substs.type_for_def(ty_param_def);
|
||||
}
|
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}
|
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this.tcx().sess.span_bug(span,
|
||||
|
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this.tcx().sess.span_bug(ast_ty.span,
|
||||
"this associated type didn't get added \
|
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as a parameter for some reason")
|
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}
|
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|
|
@ -931,7 +899,6 @@ pub fn ast_ty_to_ty<'tcx, AC: AstConv<'tcx>, RS: RegionScope>(
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rscope,
|
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trait_def_id,
|
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None,
|
||||
None,
|
||||
path);
|
||||
let empty_bounds: &[ast::TyParamBound] = &[];
|
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let ast_bounds = match *bounds {
|
||||
|
|
@ -996,26 +963,7 @@ pub fn ast_ty_to_ty<'tcx, AC: AstConv<'tcx>, RS: RegionScope>(
|
|||
}
|
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}
|
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ast::TyQPath(ref qpath) => {
|
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match tcx.def_map.borrow().get(&ast_ty.id) {
|
||||
None => {
|
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tcx.sess.span_bug(ast_ty.span,
|
||||
"unbound qualified path")
|
||||
}
|
||||
Some(&def::DefAssociatedTy(trait_type_id)) => {
|
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associated_ty_to_ty(this,
|
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rscope,
|
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&qpath.trait_name,
|
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&*qpath.for_type,
|
||||
trait_type_id,
|
||||
ast_ty.span)
|
||||
}
|
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Some(_) => {
|
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tcx.sess.span_err(ast_ty.span,
|
||||
"this qualified path does not name \
|
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an associated type");
|
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ty::mk_err()
|
||||
}
|
||||
}
|
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qpath_to_ty(this, rscope, ast_ty, &**qpath)
|
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}
|
||||
ast::TyFixedLengthVec(ref ty, ref e) => {
|
||||
match const_eval::eval_const_expr_partial(tcx, &**e) {
|
||||
|
|
@ -1411,7 +1359,7 @@ fn conv_ty_poly_trait_ref<'tcx, AC, RS>(
|
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|
||||
let main_trait_bound = match partitioned_bounds.trait_bounds.remove(0) {
|
||||
Some(trait_bound) => {
|
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Some(instantiate_poly_trait_ref(this, rscope, trait_bound, None, None))
|
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Some(instantiate_poly_trait_ref(this, rscope, trait_bound, None))
|
||||
}
|
||||
None => {
|
||||
this.tcx().sess.span_err(
|
||||
|
|
|
|||
|
|
@ -684,7 +684,11 @@ fn find_associated_type_in_generics<'tcx>(tcx: &ty::ctxt<'tcx>,
|
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ty: Option<Ty<'tcx>>,
|
||||
associated_type_id: ast::DefId,
|
||||
generics: &ty::Generics<'tcx>)
|
||||
-> Ty<'tcx> {
|
||||
-> Ty<'tcx>
|
||||
{
|
||||
debug!("find_associated_type_in_generics(ty={}, associated_type_id={}, generics={}",
|
||||
ty.repr(tcx), associated_type_id.repr(tcx), generics.repr(tcx));
|
||||
|
||||
let ty = match ty {
|
||||
None => {
|
||||
tcx.sess.span_bug(span,
|
||||
|
|
@ -703,20 +707,22 @@ fn find_associated_type_in_generics<'tcx>(tcx: &ty::ctxt<'tcx>,
|
|||
for type_parameter in generics.types.iter() {
|
||||
if type_parameter.def_id == associated_type_id
|
||||
&& type_parameter.associated_with == Some(param_id) {
|
||||
return ty::mk_param_from_def(tcx, type_parameter)
|
||||
return ty::mk_param_from_def(tcx, type_parameter);
|
||||
}
|
||||
}
|
||||
|
||||
tcx.sess.span_bug(span,
|
||||
"find_associated_type_in_generics(): didn't \
|
||||
find associated type anywhere in the generics \
|
||||
list")
|
||||
tcx.sess.span_err(
|
||||
span,
|
||||
format!("no suitable bound on `{}`",
|
||||
ty.user_string(tcx))[]);
|
||||
ty::mk_err()
|
||||
}
|
||||
_ => {
|
||||
tcx.sess.span_bug(span,
|
||||
"find_associated_type_in_generics(): self type \
|
||||
is not a parameter")
|
||||
|
||||
tcx.sess.span_err(
|
||||
span,
|
||||
"it is currently unsupported to access associated types except \
|
||||
through a type parameter; this restriction will be lifted in time");
|
||||
ty::mk_err()
|
||||
}
|
||||
}
|
||||
}
|
||||
|
|
@ -1155,7 +1161,7 @@ pub fn convert(ccx: &CrateCtxt, it: &ast::Item) {
|
|||
|
||||
for trait_ref in opt_trait_ref.iter() {
|
||||
astconv::instantiate_trait_ref(&icx, &ExplicitRscope, trait_ref,
|
||||
Some(selfty), None);
|
||||
Some(selfty));
|
||||
}
|
||||
},
|
||||
ast::ItemTrait(_, _, _, ref trait_methods) => {
|
||||
|
|
@ -1627,7 +1633,7 @@ fn ty_generics_for_trait<'a, 'tcx>(ccx: &CrateCtxt<'a, 'tcx>,
|
|||
ccx,
|
||||
subst::AssocSpace,
|
||||
&associated_type.ty_param,
|
||||
generics.types.len(subst::TypeSpace),
|
||||
generics.types.len(subst::AssocSpace),
|
||||
&ast_generics.where_clause,
|
||||
Some(local_def(trait_id)));
|
||||
ccx.tcx.ty_param_defs.borrow_mut().insert(associated_type.ty_param.id,
|
||||
|
|
@ -2019,7 +2025,6 @@ fn conv_param_bounds<'tcx,AC>(this: &AC,
|
|||
astconv::instantiate_poly_trait_ref(this,
|
||||
&ExplicitRscope,
|
||||
bound,
|
||||
Some(param_ty.to_ty(this.tcx())),
|
||||
Some(param_ty.to_ty(this.tcx())))
|
||||
})
|
||||
.collect();
|
||||
|
|
|
|||
|
|
@ -20,6 +20,10 @@ use syntax::ast;
|
|||
use syntax::visit;
|
||||
use syntax::visit::Visitor;
|
||||
|
||||
// An error has already been reported to the user, so no need to continue checking.
|
||||
#[deriving(Clone,Show)]
|
||||
pub struct ErrorReported;
|
||||
|
||||
pub fn time<T, U>(do_it: bool, what: &str, u: U, f: |U| -> T) -> T {
|
||||
local_data_key!(depth: uint);
|
||||
if !do_it { return f(u); }
|
||||
|
|
|
|||
Loading…
Add table
Add a link
Reference in a new issue