lib.rs 141.6 KB
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// Copyright 2012-2015 The Rust Project Developers. See the COPYRIGHT
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// file at the top-level directory of this distribution and at
// http://rust-lang.org/COPYRIGHT.
//
// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
// option. This file may not be copied, modified, or distributed
// except according to those terms.

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#![crate_name = "rustc_resolve"]
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#![unstable(feature = "rustc_private", issue = "27812")]
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#![crate_type = "dylib"]
#![crate_type = "rlib"]
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#![doc(html_logo_url = "https://www.rust-lang.org/logos/rust-logo-128x128-blk-v2.png",
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      html_favicon_url = "https://doc.rust-lang.org/favicon.ico",
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      html_root_url = "https://doc.rust-lang.org/nightly/")]
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#![cfg_attr(not(stage0), deny(warnings))]
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#![feature(associated_consts)]
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#![feature(borrow_state)]
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#![feature(rustc_diagnostic_macros)]
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#![feature(rustc_private)]
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#![feature(staged_api)]
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#[macro_use]
extern crate log;
#[macro_use]
extern crate syntax;
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extern crate syntax_pos;
extern crate rustc_errors as errors;
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extern crate arena;
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#[macro_use]
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extern crate rustc;

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use self::Namespace::*;
use self::ResolveResult::*;
use self::FallbackSuggestion::*;
use self::TypeParameters::*;
use self::RibKind::*;
use self::UseLexicalScopeFlag::*;
use self::ModulePrefixResult::*;
use self::ParentLink::*;

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use rustc::hir::map::Definitions;
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use rustc::hir::{self, PrimTy, TyBool, TyChar, TyFloat, TyInt, TyUint, TyStr};
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use rustc::session::Session;
use rustc::lint;
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use rustc::hir::def::*;
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use rustc::hir::def_id::{CRATE_DEF_INDEX, DefId};
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use rustc::ty;
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use rustc::hir::{Freevar, FreevarMap, TraitCandidate, TraitMap, GlobMap};
use rustc::util::nodemap::{NodeMap, NodeSet, FnvHashMap, FnvHashSet};
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use syntax::ext::hygiene::Mark;
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use syntax::ast::{self, FloatTy};
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use syntax::ast::{CRATE_NODE_ID, Name, NodeId, CrateNum, IntTy, UintTy};
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use syntax::parse::token::{self, keywords};
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use syntax::util::lev_distance::find_best_match_for_name;
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use syntax::visit::{self, FnKind, Visitor};
use syntax::ast::{Arm, BindingMode, Block, Crate, Expr, ExprKind};
use syntax::ast::{FnDecl, ForeignItem, ForeignItemKind, Generics};
use syntax::ast::{Item, ItemKind, ImplItem, ImplItemKind};
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use syntax::ast::{Local, Mutability, Pat, PatKind, Path};
use syntax::ast::{PathSegment, PathParameters, QSelf, TraitItemKind, TraitRef, Ty, TyKind};
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use syntax_pos::Span;
use errors::DiagnosticBuilder;

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use std::collections::{HashMap, HashSet};
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use std::cell::{Cell, RefCell};
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use std::fmt;
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use std::mem::replace;
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use resolve_imports::{ImportDirective, NameResolution};
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// NB: This module needs to be declared first so diagnostics are
// registered before they are used.
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mod diagnostics;
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mod check_unused;
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mod build_reduced_graph;
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mod resolve_imports;
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mod assign_ids;
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enum SuggestionType {
    Macro(String),
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    Function(token::InternedString),
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    NotFound,
}

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/// Candidates for a name resolution failure
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struct SuggestedCandidates {
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    name: String,
    candidates: Vec<Path>,
}

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enum ResolutionError<'a> {
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    /// error E0401: can't use type parameters from outer function
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    TypeParametersFromOuterFunction,
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    /// error E0402: cannot use an outer type parameter in this context
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    OuterTypeParameterContext,
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    /// error E0403: the name is already used for a type parameter in this type parameter list
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    NameAlreadyUsedInTypeParameterList(Name, &'a Span),
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    /// error E0404: is not a trait
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    IsNotATrait(&'a str),
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    /// error E0405: use of undeclared trait name
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    UndeclaredTraitName(&'a str, SuggestedCandidates),
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    /// error E0407: method is not a member of trait
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    MethodNotMemberOfTrait(Name, &'a str),
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    /// error E0437: type is not a member of trait
    TypeNotMemberOfTrait(Name, &'a str),
    /// error E0438: const is not a member of trait
    ConstNotMemberOfTrait(Name, &'a str),
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    /// error E0408: variable `{}` from pattern #{} is not bound in pattern #{}
    VariableNotBoundInPattern(Name, usize, usize),
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    /// error E0409: variable is bound with different mode in pattern #{} than in pattern #1
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    VariableBoundWithDifferentMode(Name, usize, Span),
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    /// error E0411: use of `Self` outside of an impl or trait
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    SelfUsedOutsideImplOrTrait,
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    /// error E0412: use of undeclared
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    UseOfUndeclared(&'a str, &'a str, SuggestedCandidates),
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    /// error E0415: identifier is bound more than once in this parameter list
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    IdentifierBoundMoreThanOnceInParameterList(&'a str),
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    /// error E0416: identifier is bound more than once in the same pattern
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    IdentifierBoundMoreThanOnceInSamePattern(&'a str),
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    /// error E0422: does not name a struct
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    DoesNotNameAStruct(&'a str),
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    /// error E0423: is a struct variant name, but this expression uses it like a function name
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    StructVariantUsedAsFunction(&'a str),
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    /// error E0424: `self` is not available in a static method
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    SelfNotAvailableInStaticMethod,
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    /// error E0425: unresolved name
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    UnresolvedName {
        path: &'a str,
        message: &'a str,
        context: UnresolvedNameContext<'a>,
        is_static_method: bool,
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        is_field: bool,
        def: Def,
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    },
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    /// error E0426: use of undeclared label
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    UndeclaredLabel(&'a str),
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    /// error E0429: `self` imports are only allowed within a { } list
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    SelfImportsOnlyAllowedWithin,
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    /// error E0430: `self` import can only appear once in the list
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    SelfImportCanOnlyAppearOnceInTheList,
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    /// error E0431: `self` import can only appear in an import list with a non-empty prefix
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    SelfImportOnlyInImportListWithNonEmptyPrefix,
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    /// error E0432: unresolved import
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    UnresolvedImport(Option<(&'a str, &'a str)>),
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    /// error E0433: failed to resolve
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    FailedToResolve(&'a str),
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    /// error E0434: can't capture dynamic environment in a fn item
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    CannotCaptureDynamicEnvironmentInFnItem,
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    /// error E0435: attempt to use a non-constant value in a constant
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    AttemptToUseNonConstantValueInConstant,
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    /// error E0530: X bindings cannot shadow Ys
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    BindingShadowsSomethingUnacceptable(&'a str, Name, &'a NameBinding<'a>),
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    /// error E0531: unresolved pattern path kind `name`
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    PatPathUnresolved(&'a str, &'a Path),
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    /// error E0532: expected pattern path kind, found another pattern path kind
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    PatPathUnexpected(&'a str, &'a str, &'a Path),
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}

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/// Context of where `ResolutionError::UnresolvedName` arose.
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#[derive(Clone, PartialEq, Eq, Debug)]
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enum UnresolvedNameContext<'a> {
    /// `PathIsMod(parent)` indicates that a given path, used in
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    /// expression context, actually resolved to a module rather than
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    /// a value. The optional expression attached to the variant is the
    /// the parent of the erroneous path expression.
    PathIsMod(Option<&'a Expr>),
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    /// `Other` means we have no extra information about the context
    /// of the unresolved name error. (Maybe we could eliminate all
    /// such cases; but for now, this is an information-free default.)
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    Other,
}

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fn resolve_error<'b, 'a: 'b, 'c>(resolver: &'b Resolver<'a>,
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                                 span: syntax_pos::Span,
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                                 resolution_error: ResolutionError<'c>) {
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    resolve_struct_error(resolver, span, resolution_error).emit();
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}

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fn resolve_struct_error<'b, 'a: 'b, 'c>(resolver: &'b Resolver<'a>,
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                                        span: syntax_pos::Span,
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                                        resolution_error: ResolutionError<'c>)
                                        -> DiagnosticBuilder<'a> {
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    if !resolver.emit_errors {
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        return resolver.session.diagnostic().struct_dummy();
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    }
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    match resolution_error {
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        ResolutionError::TypeParametersFromOuterFunction => {
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            let mut err = struct_span_err!(resolver.session,
                                           span,
                                           E0401,
                                           "can't use type parameters from outer function; \
                                           try using a local type parameter instead");
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            err.span_label(span, &format!("use of type variable from outer function"));
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            err
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        }
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        ResolutionError::OuterTypeParameterContext => {
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            struct_span_err!(resolver.session,
                             span,
                             E0402,
                             "cannot use an outer type parameter in this context")
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        }
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        ResolutionError::NameAlreadyUsedInTypeParameterList(name, first_use_span) => {
             let mut err = struct_span_err!(resolver.session,
                                            span,
                                            E0403,
                                            "the name `{}` is already used for a type parameter \
                                            in this type parameter list",
                                            name);
             err.span_label(span, &format!("already used"));
             err.span_label(first_use_span.clone(), &format!("first use of `{}`", name));
             err

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        }
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        ResolutionError::IsNotATrait(name) => {
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            let mut err = struct_span_err!(resolver.session,
                                           span,
                                           E0404,
                                           "`{}` is not a trait",
                                           name);
            err.span_label(span, &format!("not a trait"));
            err
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        }
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        ResolutionError::UndeclaredTraitName(name, candidates) => {
            let mut err = struct_span_err!(resolver.session,
                                           span,
                                           E0405,
                                           "trait `{}` is not in scope",
                                           name);
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            show_candidates(&mut err, &candidates);
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            err.span_label(span, &format!("`{}` is not in scope", name));
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            err
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        }
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        ResolutionError::MethodNotMemberOfTrait(method, trait_) => {
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            let mut err = struct_span_err!(resolver.session,
                                           span,
                                           E0407,
                                           "method `{}` is not a member of trait `{}`",
                                           method,
                                           trait_);
            err.span_label(span, &format!("not a member of `{}`", trait_));
            err
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        }
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        ResolutionError::TypeNotMemberOfTrait(type_, trait_) => {
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            struct_span_err!(resolver.session,
                             span,
                             E0437,
                             "type `{}` is not a member of trait `{}`",
                             type_,
                             trait_)
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        }
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        ResolutionError::ConstNotMemberOfTrait(const_, trait_) => {
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            struct_span_err!(resolver.session,
                             span,
                             E0438,
                             "const `{}` is not a member of trait `{}`",
                             const_,
                             trait_)
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        }
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        ResolutionError::VariableNotBoundInPattern(variable_name, from, to) => {
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            struct_span_err!(resolver.session,
                             span,
                             E0408,
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                             "variable `{}` from pattern #{} is not bound in pattern #{}",
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                             variable_name,
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                             from,
                             to)
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        }
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        ResolutionError::VariableBoundWithDifferentMode(variable_name,
                                                        pattern_number,
                                                        first_binding_span) => {
            let mut err = struct_span_err!(resolver.session,
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                             span,
                             E0409,
                             "variable `{}` is bound with different mode in pattern #{} than in \
                              pattern #1",
                             variable_name,
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                             pattern_number);
            err.span_label(span, &format!("bound in different ways"));
            err.span_label(first_binding_span, &format!("first binding"));
            err
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        }
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        ResolutionError::SelfUsedOutsideImplOrTrait => {
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            let mut err = struct_span_err!(resolver.session,
                                           span,
                                           E0411,
                                           "use of `Self` outside of an impl or trait");
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            err.span_label(span, &format!("used outside of impl or trait"));
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            err
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        }
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        ResolutionError::UseOfUndeclared(kind, name, candidates) => {
            let mut err = struct_span_err!(resolver.session,
                                           span,
                                           E0412,
                                           "{} `{}` is undefined or not in scope",
                                           kind,
                                           name);
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            show_candidates(&mut err, &candidates);
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            err.span_label(span, &format!("undefined or not in scope"));
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            err
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        }
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        ResolutionError::IdentifierBoundMoreThanOnceInParameterList(identifier) => {
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            let mut err = struct_span_err!(resolver.session,
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                             span,
                             E0415,
                             "identifier `{}` is bound more than once in this parameter list",
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                             identifier);
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            err.span_label(span, &format!("used as parameter more than once"));
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            err
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        }
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        ResolutionError::IdentifierBoundMoreThanOnceInSamePattern(identifier) => {
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            let mut err = struct_span_err!(resolver.session,
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                             span,
                             E0416,
                             "identifier `{}` is bound more than once in the same pattern",
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                             identifier);
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            err.span_label(span, &format!("used in a pattern more than once"));
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            err
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        }
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        ResolutionError::DoesNotNameAStruct(name) => {
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            let mut err = struct_span_err!(resolver.session,
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                             span,
                             E0422,
                             "`{}` does not name a structure",
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                             name);
            err.span_label(span, &format!("not a structure"));
            err
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        }
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        ResolutionError::StructVariantUsedAsFunction(path_name) => {
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            struct_span_err!(resolver.session,
                             span,
                             E0423,
                             "`{}` is the name of a struct or struct variant, but this expression \
                             uses it like a function name",
                             path_name)
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        }
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        ResolutionError::SelfNotAvailableInStaticMethod => {
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            struct_span_err!(resolver.session,
                             span,
                             E0424,
                             "`self` is not available in a static method. Maybe a `self` \
                             argument is missing?")
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        }
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        ResolutionError::UnresolvedName { path, message: msg, context, is_static_method,
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                                          is_field, def } => {
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            let mut err = struct_span_err!(resolver.session,
                                           span,
                                           E0425,
                                           "unresolved name `{}`{}",
                                           path,
                                           msg);
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            match context {
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                UnresolvedNameContext::Other => {
                    if msg.is_empty() && is_static_method && is_field {
                        err.help("this is an associated function, you don't have access to \
                                  this type's fields or methods");
                    }
                }
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                UnresolvedNameContext::PathIsMod(parent) => {
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                    err.help(&match parent.map(|parent| &parent.node) {
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                        Some(&ExprKind::Field(_, ident)) => {
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                            format!("to reference an item from the `{module}` module, \
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                                     use `{module}::{ident}`",
                                    module = path,
                                    ident = ident.node)
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                        }
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                        Some(&ExprKind::MethodCall(ident, _, _)) => {
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                            format!("to call a function from the `{module}` module, \
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                                     use `{module}::{ident}(..)`",
                                    module = path,
                                    ident = ident.node)
                        }
                        _ => {
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                            format!("{def} `{module}` cannot be used as an expression",
                                    def = def.kind_name(),
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                                    module = path)
                        }
                    });
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                }
            }
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            err
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        }
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        ResolutionError::UndeclaredLabel(name) => {
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            struct_span_err!(resolver.session,
                             span,
                             E0426,
                             "use of undeclared label `{}`",
                             name)
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        }
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        ResolutionError::SelfImportsOnlyAllowedWithin => {
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            struct_span_err!(resolver.session,
                             span,
                             E0429,
                             "{}",
                             "`self` imports are only allowed within a { } list")
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        }
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        ResolutionError::SelfImportCanOnlyAppearOnceInTheList => {
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            struct_span_err!(resolver.session,
                             span,
                             E0430,
                             "`self` import can only appear once in the list")
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        }
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        ResolutionError::SelfImportOnlyInImportListWithNonEmptyPrefix => {
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            struct_span_err!(resolver.session,
                             span,
                             E0431,
                             "`self` import can only appear in an import list with a \
                              non-empty prefix")
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        }
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        ResolutionError::UnresolvedImport(name) => {
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            let msg = match name {
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                Some((n, p)) => format!("unresolved import `{}`{}", n, p),
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                None => "unresolved import".to_owned(),
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            };
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            struct_span_err!(resolver.session, span, E0432, "{}", msg)
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        }
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        ResolutionError::FailedToResolve(msg) => {
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            let mut err = struct_span_err!(resolver.session, span, E0433,
                                           "failed to resolve. {}", msg);
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            err.span_label(span, &msg);
            err
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        }
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        ResolutionError::CannotCaptureDynamicEnvironmentInFnItem => {
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            struct_span_err!(resolver.session,
                             span,
                             E0434,
                             "{}",
                             "can't capture dynamic environment in a fn item; use the || { ... } \
                              closure form instead")
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        }
        ResolutionError::AttemptToUseNonConstantValueInConstant => {
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            struct_span_err!(resolver.session,
                             span,
                             E0435,
                             "attempt to use a non-constant value in a constant")
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        }
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        ResolutionError::BindingShadowsSomethingUnacceptable(what_binding, name, binding) => {
            let shadows_what = PathResolution::new(binding.def().unwrap()).kind_name();
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            let mut err = struct_span_err!(resolver.session,
                                           span,
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                                           E0530,
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                                           "{}s cannot shadow {}s", what_binding, shadows_what);
            err.span_label(span, &format!("cannot be named the same as a {}", shadows_what));
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            let participle = if binding.is_import() { "imported" } else { "defined" };
            let msg = &format!("a {} `{}` is {} here", shadows_what, name, participle);
            err.span_label(binding.span, msg);
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            err
        }
        ResolutionError::PatPathUnresolved(expected_what, path) => {
            struct_span_err!(resolver.session,
                             span,
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                             E0531,
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                             "unresolved {} `{}`",
                             expected_what,
                             path.segments.last().unwrap().identifier)
        }
        ResolutionError::PatPathUnexpected(expected_what, found_what, path) => {
            struct_span_err!(resolver.session,
                             span,
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                             E0532,
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                             "expected {}, found {} `{}`",
                             expected_what,
                             found_what,
                             path.segments.last().unwrap().identifier)
        }
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    }
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}

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#[derive(Copy, Clone)]
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struct BindingInfo {
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    span: Span,
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    binding_mode: BindingMode,
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}

// Map from the name in a pattern to its binding mode.
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type BindingMap = HashMap<ast::Ident, BindingInfo>;
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#[derive(Copy, Clone, PartialEq, Eq, Debug)]
enum PatternSource {
    Match,
    IfLet,
    WhileLet,
    Let,
    For,
    FnParam,
}

impl PatternSource {
    fn is_refutable(self) -> bool {
        match self {
            PatternSource::Match | PatternSource::IfLet | PatternSource::WhileLet => true,
            PatternSource::Let | PatternSource::For | PatternSource::FnParam  => false,
        }
    }
    fn descr(self) -> &'static str {
        match self {
            PatternSource::Match => "match binding",
            PatternSource::IfLet => "if let binding",
            PatternSource::WhileLet => "while let binding",
            PatternSource::Let => "let binding",
            PatternSource::For => "for binding",
            PatternSource::FnParam => "function parameter",
        }
    }
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}

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#[derive(Copy, Clone, PartialEq, Eq, Hash, Debug)]
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pub enum Namespace {
518
    TypeNS,
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    ValueNS,
520 521
}

522
impl<'a> Visitor for Resolver<'a> {
523
    fn visit_item(&mut self, item: &Item) {
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        self.resolve_item(item);
525
    }
526
    fn visit_arm(&mut self, arm: &Arm) {
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        self.resolve_arm(arm);
528
    }
529
    fn visit_block(&mut self, block: &Block) {
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        self.resolve_block(block);
531
    }
532
    fn visit_expr(&mut self, expr: &Expr) {
533
        self.resolve_expr(expr, None);
534
    }
535
    fn visit_local(&mut self, local: &Local) {
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        self.resolve_local(local);
537
    }
538
    fn visit_ty(&mut self, ty: &Ty) {
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        self.resolve_type(ty);
540
    }
541
    fn visit_poly_trait_ref(&mut self, tref: &ast::PolyTraitRef, m: &ast::TraitBoundModifier) {
542 543
        match self.resolve_trait_reference(tref.trait_ref.ref_id, &tref.trait_ref.path, 0) {
            Ok(def) => self.record_def(tref.trait_ref.ref_id, def),
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            Err(_) => {
                // error already reported
546
                self.record_def(tref.trait_ref.ref_id, err_path_resolution())
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            }
548
        }
549
        visit::walk_poly_trait_ref(self, tref, m);
550
    }
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    fn visit_variant(&mut self,
552
                     variant: &ast::Variant,
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                     generics: &Generics,
                     item_id: ast::NodeId) {
555 556 557
        if let Some(ref dis_expr) = variant.node.disr_expr {
            // resolve the discriminator expr as a constant
            self.with_constant_rib(|this| {
558
                this.visit_expr(dis_expr);
559 560 561
            });
        }

562
        // `visit::walk_variant` without the discriminant expression.
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        self.visit_variant_data(&variant.node.data,
                                variant.node.name,
                                generics,
                                item_id,
                                variant.span);
568
    }
569
    fn visit_foreign_item(&mut self, foreign_item: &ForeignItem) {
570
        let type_parameters = match foreign_item.node {
571
            ForeignItemKind::Fn(_, ref generics) => {
572
                HasTypeParameters(generics, ItemRibKind)
573
            }
574
            ForeignItemKind::Static(..) => NoTypeParameters,
575 576
        };
        self.with_type_parameter_rib(type_parameters, |this| {
577
            visit::walk_foreign_item(this, foreign_item);
578 579 580
        });
    }
    fn visit_fn(&mut self,
581 582 583
                function_kind: FnKind,
                declaration: &FnDecl,
                block: &Block,
584 585 586
                _: Span,
                node_id: NodeId) {
        let rib_kind = match function_kind {
587
            FnKind::ItemFn(_, generics, _, _, _, _) => {
588 589 590
                self.visit_generics(generics);
                ItemRibKind
            }
591
            FnKind::Method(_, sig, _) => {
592
                self.visit_generics(&sig.generics);
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Vadim Petrochenkov 已提交
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                MethodRibKind(!sig.decl.has_self())
594
            }
595
            FnKind::Closure => ClosureRibKind(node_id),
596 597 598
        };
        self.resolve_function(rib_kind, declaration, block);
    }
599
}
600

601
pub type ErrorMessage = Option<(Span, String)>;
602

603
#[derive(Clone, PartialEq, Eq)]
604
pub enum ResolveResult<T> {
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    Failed(ErrorMessage), // Failed to resolve the name, optional helpful error message.
    Indeterminate, // Couldn't determine due to unresolved globs.
    Success(T), // Successfully resolved the import.
608 609
}

610
impl<T> ResolveResult<T> {
611 612 613 614 615
    fn and_then<U, F: FnOnce(T) -> ResolveResult<U>>(self, f: F) -> ResolveResult<U> {
        match self {
            Failed(msg) => Failed(msg),
            Indeterminate => Indeterminate,
            Success(t) => f(t),
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        }
617
    }
618 619 620 621 622 623 624

    fn success(self) -> Option<T> {
        match self {
            Success(t) => Some(t),
            _ => None,
        }
    }
625 626
}

627 628 629
enum FallbackSuggestion {
    NoSuggestion,
    Field,
630
    TraitItem,
631
    TraitMethod(String),
632 633
}

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#[derive(Copy, Clone)]
635
enum TypeParameters<'a, 'b> {
636
    NoTypeParameters,
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    HasTypeParameters(// Type parameters.
638
                      &'b Generics,
639

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                      // The kind of the rib used for type parameters.
641
                      RibKind<'a>),
642 643
}

644
// The rib kind controls the translation of local
645
// definitions (`Def::Local`) to upvars (`Def::Upvar`).
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Niko Matsakis 已提交
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#[derive(Copy, Clone, Debug)]
647
enum RibKind<'a> {
648 649
    // No translation needs to be applied.
    NormalRibKind,
650

651 652
    // We passed through a closure scope at the given node ID.
    // Translate upvars as appropriate.
653
    ClosureRibKind(NodeId /* func id */),
654

655
    // We passed through an impl or trait and are now in one of its
656
    // methods. Allow references to ty params that impl or trait
657 658
    // binds. Disallow any other upvars (including other ty params that are
    // upvars).
659 660 661
    //
    // The boolean value represents the fact that this method is static or not.
    MethodRibKind(bool),
662

663 664
    // We passed through an item scope. Disallow upvars.
    ItemRibKind,
665 666

    // We're in a constant item. Can't refer to dynamic stuff.
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    ConstantItemRibKind,
668

669 670
    // We passed through a module.
    ModuleRibKind(Module<'a>),
671 672

    // We passed through a `macro_rules!` statement with the given expansion
673
    MacroDefinition(Mark),
674 675
}

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#[derive(Copy, Clone)]
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Felix S. Klock II 已提交
677
enum UseLexicalScopeFlag {
678
    DontUseLexicalScope,
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    UseLexicalScope,
680 681
}

682
enum ModulePrefixResult<'a> {
683
    NoPrefixFound,
684
    PrefixFound(Module<'a>, usize),
685 686
}

687
/// One local scope.
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#[derive(Debug)]
689
struct Rib<'a> {
690
    bindings: HashMap<ast::Ident, Def>,
691
    kind: RibKind<'a>,
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692
}
693

694 695
impl<'a> Rib<'a> {
    fn new(kind: RibKind<'a>) -> Rib<'a> {
696
        Rib {
697
            bindings: HashMap::new(),
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            kind: kind,
699
        }
700 701 702
    }
}

703 704 705
/// A definition along with the index of the rib it was found on
struct LocalDef {
    ribs: Option<(Namespace, usize)>,
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    def: Def,
707 708 709 710 711 712
}

impl LocalDef {
    fn from_def(def: Def) -> Self {
        LocalDef {
            ribs: None,
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            def: def,
714 715 716 717
        }
    }
}

718 719 720 721 722
enum LexicalScopeBinding<'a> {
    Item(&'a NameBinding<'a>),
    LocalDef(LocalDef),
}

723 724 725 726 727 728 729 730
impl<'a> LexicalScopeBinding<'a> {
    fn local_def(self) -> LocalDef {
        match self {
            LexicalScopeBinding::LocalDef(local_def) => local_def,
            LexicalScopeBinding::Item(binding) => LocalDef::from_def(binding.def().unwrap()),
        }
    }

731
    fn item(self) -> Option<&'a NameBinding<'a>> {
732
        match self {
733
            LexicalScopeBinding::Item(binding) => Some(binding),
734 735 736
            _ => None,
        }
    }
737 738 739 740

    fn module(self) -> Option<Module<'a>> {
        self.item().and_then(NameBinding::module)
    }
741 742
}

743
/// The link from a module up to its nearest parent node.
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#[derive(Clone,Debug)]
745
enum ParentLink<'a> {
746
    NoParentLink,
747 748
    ModuleParentLink(Module<'a>, Name),
    BlockParentLink(Module<'a>, NodeId),
749 750
}

751
/// One node in the tree of modules.
752 753
pub struct ModuleS<'a> {
    parent_link: ParentLink<'a>,
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    def: Option<Def>,
755

756 757 758
    // If the module is an extern crate, `def` is root of the external crate and `extern_crate_id`
    // is the NodeId of the local `extern crate` item (otherwise, `extern_crate_id` is None).
    extern_crate_id: Option<NodeId>,
759

760
    resolutions: RefCell<HashMap<(Name, Namespace), &'a RefCell<NameResolution<'a>>>>,
761
    unresolved_imports: RefCell<Vec<&'a ImportDirective<'a>>>,
762

763
    no_implicit_prelude: Cell<bool>,
764

765
    glob_importers: RefCell<Vec<(Module<'a>, &'a ImportDirective<'a>)>>,
766
    globs: RefCell<Vec<&'a ImportDirective<'a>>>,
767

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    // Used to memoize the traits in this module for faster searches through all traits in scope.
769
    traits: RefCell<Option<Box<[(Name, &'a NameBinding<'a>)]>>>,
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771 772 773
    // Whether this module is populated. If not populated, any attempt to
    // access the children must be preceded with a
    // `populate_module_if_necessary` call.
774
    populated: Cell<bool>,
775 776

    arenas: &'a ResolverArenas<'a>,
777 778
}

779 780 781
pub type Module<'a> = &'a ModuleS<'a>;

impl<'a> ModuleS<'a> {
782 783 784 785
    fn new(parent_link: ParentLink<'a>,
           def: Option<Def>,
           external: bool,
           arenas: &'a ResolverArenas<'a>) -> Self {
786
        ModuleS {
787
            parent_link: parent_link,
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788
            def: def,
789
            extern_crate_id: None,
790
            resolutions: RefCell::new(HashMap::new()),
791
            unresolved_imports: RefCell::new(Vec::new()),
792
            no_implicit_prelude: Cell::new(false),
793
            glob_importers: RefCell::new(Vec::new()),
794
            globs: RefCell::new((Vec::new())),
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795
            traits: RefCell::new(None),
796
            populated: Cell::new(!external),
797
            arenas: arenas
798
        }
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    }

801
    fn for_each_child<F: FnMut(Name, Namespace, &'a NameBinding<'a>)>(&self, mut f: F) {
802
        for (&(name, ns), name_resolution) in self.resolutions.borrow().iter() {
803
            name_resolution.borrow().binding.map(|binding| f(name, ns, binding));
804 805 806
        }
    }

807
    fn def_id(&self) -> Option<DefId> {
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808
        self.def.as_ref().map(Def::def_id)
809 810
    }

811
    // `self` resolves to the first module ancestor that `is_normal`.
812
    fn is_normal(&self) -> bool {
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813
        match self.def {
814
            Some(Def::Mod(_)) => true,
815 816 817 818 819
            _ => false,
        }
    }

    fn is_trait(&self) -> bool {
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Jeffrey Seyfried 已提交
820
        match self.def {
821
            Some(Def::Trait(_)) => true,
822
            _ => false,
823
        }
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824
    }
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825 826
}

827
impl<'a> fmt::Debug for ModuleS<'a> {
828
    fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
829
        write!(f, "{:?}", self.def)
830 831 832
    }
}

833
// Records a possibly-private value, type, or module definition.
834
#[derive(Clone, Debug)]
835
pub struct NameBinding<'a> {
836
    kind: NameBindingKind<'a>,
837
    span: Span,
838
    vis: ty::Visibility,
839 840
}

841 842 843 844 845 846 847 848 849 850
pub trait ToNameBinding<'a> {
    fn to_name_binding(self) -> NameBinding<'a>;
}

impl<'a> ToNameBinding<'a> for NameBinding<'a> {
    fn to_name_binding(self) -> NameBinding<'a> {
        self
    }
}

851
#[derive(Clone, Debug)]
852
enum NameBindingKind<'a> {
853
    Def(Def),
854
    Module(Module<'a>),
855 856
    Import {
        binding: &'a NameBinding<'a>,
857
        directive: &'a ImportDirective<'a>,
858
    },
859 860
}

861 862 863
#[derive(Clone, Debug)]
struct PrivacyError<'a>(Span, Name, &'a NameBinding<'a>);

864
impl<'a> NameBinding<'a> {
865
    fn module(&self) -> Option<Module<'a>> {
866 867 868 869
        match self.kind {
            NameBindingKind::Module(module) => Some(module),
            NameBindingKind::Def(_) => None,
            NameBindingKind::Import { binding, .. } => binding.module(),
870 871 872
        }
    }

873
    fn def(&self) -> Option<Def> {
874 875 876 877
        match self.kind {
            NameBindingKind::Def(def) => Some(def),
            NameBindingKind::Module(module) => module.def,
            NameBindingKind::Import { binding, .. } => binding.def(),
878
        }
879
    }
880

881 882 883 884 885 886 887 888 889 890 891 892 893 894
    fn is_pseudo_public(&self) -> bool {
        self.pseudo_vis() == ty::Visibility::Public
    }

    // We sometimes need to treat variants as `pub` for backwards compatibility
    fn pseudo_vis(&self) -> ty::Visibility {
        if self.is_variant() { ty::Visibility::Public } else { self.vis }
    }

    fn is_variant(&self) -> bool {
        match self.kind {
            NameBindingKind::Def(Def::Variant(..)) => true,
            _ => false,
        }
895 896
    }

897
    fn is_extern_crate(&self) -> bool {
898
        self.module().and_then(|module| module.extern_crate_id).is_some()
899
    }
900 901 902 903 904 905 906

    fn is_import(&self) -> bool {
        match self.kind {
            NameBindingKind::Import { .. } => true,
            _ => false,
        }
    }
907 908 909 910 911 912 913 914 915 916 917 918 919 920

    fn is_glob_import(&self) -> bool {
        match self.kind {
            NameBindingKind::Import { directive, .. } => directive.is_glob(),
            _ => false,
        }
    }

    fn is_importable(&self) -> bool {
        match self.def().unwrap() {
            Def::AssociatedConst(..) | Def::Method(..) | Def::AssociatedTy(..) => false,
            _ => true,
        }
    }
921 922
}

923
/// Interns the names of the primitive types.
F
Felix S. Klock II 已提交
924
struct PrimitiveTypeTable {
925
    primitive_types: HashMap<Name, PrimTy>,
926
}
927

928
impl PrimitiveTypeTable {
K
Kevin Butler 已提交
929
    fn new() -> PrimitiveTypeTable {
C
corentih 已提交
930 931 932 933
        let mut table = PrimitiveTypeTable { primitive_types: HashMap::new() };

        table.intern("bool", TyBool);
        table.intern("char", TyChar);
934 935
        table.intern("f32", TyFloat(FloatTy::F32));
        table.intern("f64", TyFloat(FloatTy::F64));
936 937 938 939 940
        table.intern("isize", TyInt(IntTy::Is));
        table.intern("i8", TyInt(IntTy::I8));
        table.intern("i16", TyInt(IntTy::I16));
        table.intern("i32", TyInt(IntTy::I32));
        table.intern("i64", TyInt(IntTy::I64));
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corentih 已提交
941
        table.intern("str", TyStr);
942 943 944 945 946
        table.intern("usize", TyUint(UintTy::Us));
        table.intern("u8", TyUint(UintTy::U8));
        table.intern("u16", TyUint(UintTy::U16));
        table.intern("u32", TyUint(UintTy::U32));
        table.intern("u64", TyUint(UintTy::U64));
K
Kevin Butler 已提交
947 948 949 950

        table
    }

951
    fn intern(&mut self, string: &str, primitive_type: PrimTy) {
952
        self.primitive_types.insert(token::intern(string), primitive_type);
953 954 955
    }
}

956
/// The main resolver class.
957
pub struct Resolver<'a> {
E
Eduard Burtescu 已提交
958
    session: &'a Session,
959

960
    pub definitions: Definitions,
961

962 963
    // Maps the node id of a statement to the expansions of the `macro_rules!`s
    // immediately above the statement (if appropriate).
964
    macros_at_scope: HashMap<NodeId, Vec<Mark>>,
965

966
    graph_root: Module<'a>,
967

968 969
    prelude: Option<Module<'a>>,

970
    trait_item_map: FnvHashMap<(Name, DefId), bool /* is static method? */>,
971

972
    structs: FnvHashMap<DefId, Vec<Name>>,
973

974
    // The number of imports that are currently unresolved.
975
    unresolved_imports: usize,
976 977

    // The module that represents the current item scope.
978
    current_module: Module<'a>,
979 980

    // The current set of local scopes, for values.
981
    // FIXME #4948: Reuse ribs to avoid allocation.
982
    value_ribs: Vec<Rib<'a>>,
983 984

    // The current set of local scopes, for types.
985
    type_ribs: Vec<Rib<'a>>,
986

987
    // The current set of local scopes, for labels.
988
    label_ribs: Vec<Rib<'a>>,
989

990
    // The trait that the current context can refer to.
991 992 993 994
    current_trait_ref: Option<(DefId, TraitRef)>,

    // The current self type if inside an impl (used for better errors).
    current_self_type: Option<Ty>,
995

996
    // The idents for the primitive types.
E
Eduard Burtescu 已提交
997
    primitive_type_table: PrimitiveTypeTable,
998

999 1000
    pub def_map: DefMap,
    pub freevars: FreevarMap,
1001
    freevars_seen: NodeMap<NodeMap<usize>>,
1002 1003
    pub export_map: ExportMap,
    pub trait_map: TraitMap,
1004

1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018
    // A map from nodes to modules, both normal (`mod`) modules and anonymous modules.
    // Anonymous modules are pseudo-modules that are implicitly created around items
    // contained within blocks.
    //
    // For example, if we have this:
    //
    //  fn f() {
    //      fn g() {
    //          ...
    //      }
    //  }
    //
    // There will be an anonymous module created around `g` with the ID of the
    // entry block for `f`.
1019
    module_map: NodeMap<Module<'a>>,
1020

1021 1022 1023 1024 1025
    // Whether or not to print error messages. Can be set to true
    // when getting additional info for error message suggestions,
    // so as to avoid printing duplicate errors
    emit_errors: bool,

1026
    pub make_glob_map: bool,
1027 1028
    // Maps imports to the names of items actually imported (this actually maps
    // all imports, but only glob imports are actually interesting).
1029
    pub glob_map: GlobMap,
1030

1031
    used_imports: HashSet<(NodeId, Namespace)>,
1032
    used_crates: HashSet<CrateNum>,
1033
    pub maybe_unused_trait_imports: NodeSet,
G
Garming Sam 已提交
1034

1035
    privacy_errors: Vec<PrivacyError<'a>>,
1036 1037 1038 1039

    arenas: &'a ResolverArenas<'a>,
}

1040
pub struct ResolverArenas<'a> {
1041
    modules: arena::TypedArena<ModuleS<'a>>,
1042
    local_modules: RefCell<Vec<Module<'a>>>,
1043
    name_bindings: arena::TypedArena<NameBinding<'a>>,
1044
    import_directives: arena::TypedArena<ImportDirective<'a>>,
1045
    name_resolutions: arena::TypedArena<RefCell<NameResolution<'a>>>,
1046 1047 1048
}

impl<'a> ResolverArenas<'a> {
1049
    fn alloc_module(&'a self, module: ModuleS<'a>) -> Module<'a> {
1050 1051 1052 1053 1054 1055 1056 1057
        let module = self.modules.alloc(module);
        if module.def_id().map(|def_id| def_id.is_local()).unwrap_or(true) {
            self.local_modules.borrow_mut().push(module);
        }
        module
    }
    fn local_modules(&'a self) -> ::std::cell::Ref<'a, Vec<Module<'a>>> {
        self.local_modules.borrow()
1058 1059 1060 1061
    }
    fn alloc_name_binding(&'a self, name_binding: NameBinding<'a>) -> &'a NameBinding<'a> {
        self.name_bindings.alloc(name_binding)
    }
1062 1063
    fn alloc_import_directive(&'a self, import_directive: ImportDirective<'a>)
                              -> &'a ImportDirective {
1064 1065
        self.import_directives.alloc(import_directive)
    }
1066 1067 1068
    fn alloc_name_resolution(&'a self) -> &'a RefCell<NameResolution<'a>> {
        self.name_resolutions.alloc(Default::default())
    }
1069 1070
}

1071
impl<'a> ty::NodeIdTree for Resolver<'a> {
1072
    fn is_descendant_of(&self, node: NodeId, ancestor: NodeId) -> bool {
1073
        let ancestor = self.definitions.local_def_id(ancestor);
1074
        let mut module = *self.module_map.get(&node).unwrap();
J
Jeffrey Seyfried 已提交
1075
        while module.def_id() != Some(ancestor) {
1076 1077 1078 1079 1080 1081
            let module_parent = match self.get_nearest_normal_module_parent(module) {
                Some(parent) => parent,
                None => return false,
            };
            module = module_parent;
        }
J
Jeffrey Seyfried 已提交
1082
        true
1083 1084 1085
    }
}

1086 1087 1088 1089 1090 1091 1092 1093 1094
impl<'a> hir::lowering::Resolver for Resolver<'a> {
    fn resolve_generated_global_path(&mut self, path: &hir::Path, is_value: bool) -> Def {
        let namespace = if is_value { ValueNS } else { TypeNS };
        match self.resolve_crate_relative_path(path.span, &path.segments, namespace) {
            Ok(binding) => binding.def().unwrap(),
            Err(true) => Def::Err,
            Err(false) => {
                let path_name = &format!("{}", path);
                let error =
1095 1096 1097 1098 1099
                    ResolutionError::UnresolvedName {
                        path: path_name,
                        message: "",
                        context: UnresolvedNameContext::Other,
                        is_static_method: false,
G
ggomez 已提交
1100 1101
                        is_field: false,
                        def: Def::Err,
1102
                    };
1103 1104 1105 1106 1107 1108
                resolve_error(self, path.span, error);
                Def::Err
            }
        }
    }

1109 1110 1111 1112
    fn get_resolution(&mut self, id: NodeId) -> Option<PathResolution> {
        self.def_map.get(&id).cloned()
    }

1113
    fn record_resolution(&mut self, id: NodeId, def: Def) {
1114
        self.def_map.insert(id, PathResolution::new(def));
1115
    }
1116 1117

    fn definitions(&mut self) -> Option<&mut Definitions> {
1118
        Some(&mut self.definitions)
1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133
    }
}

trait Named {
    fn name(&self) -> Name;
}

impl Named for ast::PathSegment {
    fn name(&self) -> Name {
        self.identifier.name
    }
}

impl Named for hir::PathSegment {
    fn name(&self) -> Name {
V
Vadim Petrochenkov 已提交
1134
        self.name
1135 1136 1137
    }
}

1138
impl<'a> Resolver<'a> {
1139
    pub fn new(session: &'a Session, make_glob_map: MakeGlobMap, arenas: &'a ResolverArenas<'a>)
1140
               -> Resolver<'a> {
1141
        let root_def_id = DefId::local(CRATE_DEF_INDEX);
1142
        let graph_root =
1143
            ModuleS::new(NoParentLink, Some(Def::Mod(root_def_id)), false, arenas);
1144
        let graph_root = arenas.alloc_module(graph_root);
1145 1146
        let mut module_map = NodeMap();
        module_map.insert(CRATE_NODE_ID, graph_root);
K
Kevin Butler 已提交
1147 1148 1149 1150

        Resolver {
            session: session,

1151
            definitions: Definitions::new(),
1152
            macros_at_scope: HashMap::new(),
1153

K
Kevin Butler 已提交
1154 1155
            // The outermost module has def ID 0; this is not reflected in the
            // AST.
1156
            graph_root: graph_root,
1157
            prelude: None,
K
Kevin Butler 已提交
1158

1159 1160
            trait_item_map: FnvHashMap(),
            structs: FnvHashMap(),
K
Kevin Butler 已提交
1161 1162 1163

            unresolved_imports: 0,

1164
            current_module: graph_root,
1165 1166
            value_ribs: vec![Rib::new(ModuleRibKind(graph_root))],
            type_ribs: vec![Rib::new(ModuleRibKind(graph_root))],
1167
            label_ribs: Vec::new(),
K
Kevin Butler 已提交
1168 1169 1170 1171 1172 1173

            current_trait_ref: None,
            current_self_type: None,

            primitive_type_table: PrimitiveTypeTable::new(),

1174
            def_map: NodeMap(),
1175 1176
            freevars: NodeMap(),
            freevars_seen: NodeMap(),
1177 1178
            export_map: NodeMap(),
            trait_map: NodeMap(),
1179
            module_map: module_map,
K
Kevin Butler 已提交
1180 1181

            emit_errors: true,
1182
            make_glob_map: make_glob_map == MakeGlobMap::Yes,
1183
            glob_map: NodeMap(),
G
Garming Sam 已提交
1184

S
Seo Sanghyeon 已提交
1185 1186 1187 1188
            used_imports: HashSet::new(),
            used_crates: HashSet::new(),
            maybe_unused_trait_imports: NodeSet(),

1189
            privacy_errors: Vec::new(),
1190 1191 1192 1193 1194

            arenas: arenas,
        }
    }

1195
    pub fn arenas() -> ResolverArenas<'a> {
1196 1197
        ResolverArenas {
            modules: arena::TypedArena::new(),
1198
            local_modules: RefCell::new(Vec::new()),
1199
            name_bindings: arena::TypedArena::new(),
1200
            import_directives: arena::TypedArena::new(),
1201
            name_resolutions: arena::TypedArena::new(),
K
Kevin Butler 已提交
1202 1203
        }
    }
1204

1205 1206 1207 1208 1209 1210 1211 1212 1213
    /// Entry point to crate resolution.
    pub fn resolve_crate(&mut self, krate: &Crate) {
        self.current_module = self.graph_root;
        visit::walk_crate(self, krate);

        check_unused::check_crate(self, krate);
        self.report_privacy_errors();
    }

1214 1215 1216
    fn new_module(&self, parent_link: ParentLink<'a>, def: Option<Def>, external: bool)
                  -> Module<'a> {
        self.arenas.alloc_module(ModuleS::new(parent_link, def, external, self.arenas))
1217 1218
    }

1219
    fn new_extern_crate_module(&self, parent_link: ParentLink<'a>, def: Def, local_node_id: NodeId)
1220
                               -> Module<'a> {
1221
        let mut module = ModuleS::new(parent_link, Some(def), false, self.arenas);
1222
        module.extern_crate_id = Some(local_node_id);
1223 1224 1225
        self.arenas.modules.alloc(module)
    }

1226 1227 1228 1229
    fn get_ribs<'b>(&'b mut self, ns: Namespace) -> &'b mut Vec<Rib<'a>> {
        match ns { ValueNS => &mut self.value_ribs, TypeNS => &mut self.type_ribs }
    }

1230
    fn record_use(&mut self, name: Name, ns: Namespace, binding: &'a NameBinding<'a>) {
1231 1232 1233 1234 1235
        // track extern crates for unused_extern_crate lint
        if let Some(DefId { krate, .. }) = binding.module().and_then(ModuleS::def_id) {
            self.used_crates.insert(krate);
        }

1236 1237 1238
        if let NameBindingKind::Import { directive, .. } = binding.kind {
            self.used_imports.insert((directive.id, ns));
            self.add_to_glob_map(directive.id, name);
1239
        }
1240
    }
1241

1242 1243 1244 1245
    fn add_to_glob_map(&mut self, id: NodeId, name: Name) {
        if self.make_glob_map {
            self.glob_map.entry(id).or_insert_with(FnvHashSet).insert(name);
        }
1246 1247
    }

1248
    /// Resolves the given module path from the given root `search_module`.
F
Felix S. Klock II 已提交
1249
    fn resolve_module_path_from_root(&mut self,
1250
                                     mut search_module: Module<'a>,
1251
                                     module_path: &[Name],
1252
                                     index: usize,
J
Jeffrey Seyfried 已提交
1253 1254
                                     span: Span)
                                     -> ResolveResult<Module<'a>> {
1255
        fn search_parent_externals(needle: Name, module: Module) -> Option<Module> {
1256 1257
            match module.resolve_name(needle, TypeNS, false) {
                Success(binding) if binding.is_extern_crate() => Some(module),
1258
                _ => match module.parent_link {
1259
                    ModuleParentLink(ref parent, _) => {
1260
                        search_parent_externals(needle, parent)
1261
                    }
C
corentih 已提交
1262 1263
                    _ => None,
                },
1264
            }
1265 1266
        }

1267
        let mut index = index;
A
Alex Crichton 已提交
1268
        let module_path_len = module_path.len();
1269 1270 1271 1272 1273

        // Resolve the module part of the path. This does not involve looking
        // upward though scope chains; we simply resolve names directly in
        // modules as we go.
        while index < module_path_len {
A
Alex Crichton 已提交
1274
            let name = module_path[index];
1275
            match self.resolve_name_in_module(search_module, name, TypeNS, false, true) {
1276
                Failed(None) => {
1277
                    let segment_name = name.as_str();
1278
                    let module_name = module_to_string(search_module);
1279
                    let msg = if "???" == &module_name {
C
corentih 已提交
1280
                        match search_parent_externals(name, &self.current_module) {
1281
                            Some(module) => {
1282
                                let path_str = names_to_string(module_path);
J
Jonas Schievink 已提交
1283 1284
                                let target_mod_str = module_to_string(&module);
                                let current_mod_str = module_to_string(&self.current_module);
1285 1286 1287 1288 1289 1290 1291

                                let prefix = if target_mod_str == current_mod_str {
                                    "self::".to_string()
                                } else {
                                    format!("{}::", target_mod_str)
                                };

1292
                                format!("Did you mean `{}{}`?", prefix, path_str)
C
corentih 已提交
1293 1294
                            }
                            None => format!("Maybe a missing `extern crate {}`?", segment_name),
1295
                        }
1296
                    } else {
C
corentih 已提交
1297
                        format!("Could not find `{}` in `{}`", segment_name, module_name)
1298
                    };
1299

1300
                    return Failed(Some((span, msg)));
1301
                }
1302
                Failed(err) => return Failed(err),
B
Brian Anderson 已提交
1303
                Indeterminate => {
C
corentih 已提交
1304 1305 1306
                    debug!("(resolving module path for import) module resolution is \
                            indeterminate: {}",
                           name);
B
Brian Anderson 已提交
1307
                    return Indeterminate;
1308
                }
1309
                Success(binding) => {
1310 1311
                    // Check to see whether there are type bindings, and, if
                    // so, whether there is a module within.
J
Jeffrey Seyfried 已提交
1312
                    if let Some(module_def) = binding.module() {
1313
                        self.check_privacy(name, binding, span);
1314 1315 1316 1317
                        search_module = module_def;
                    } else {
                        let msg = format!("Not a module `{}`", name);
                        return Failed(Some((span, msg)));
1318 1319 1320 1321
                    }
                }
            }

T
Tim Chevalier 已提交
1322
            index += 1;
1323 1324
        }

J
Jeffrey Seyfried 已提交
1325
        return Success(search_module);
1326 1327
    }

1328 1329
    /// Attempts to resolve the module part of an import directive or path
    /// rooted at the given module.
F
Felix S. Klock II 已提交
1330
    fn resolve_module_path(&mut self,
1331
                           module_path: &[Name],
1332
                           use_lexical_scope: UseLexicalScopeFlag,
J
Jeffrey Seyfried 已提交
1333
                           span: Span)
J
Jeffrey Seyfried 已提交
1334
                           -> ResolveResult<Module<'a>> {
1335
        if module_path.len() == 0 {
J
Jeffrey Seyfried 已提交
1336
            return Success(self.graph_root) // Use the crate root
1337
        }
1338

1339
        debug!("(resolving module path for import) processing `{}` rooted at `{}`",
1340
               names_to_string(module_path),
1341
               module_to_string(self.current_module));
1342

1343
        // Resolve the module prefix, if any.
1344
        let module_prefix_result = self.resolve_module_prefix(module_path, span);
1345

1346 1347
        let search_module;
        let start_index;
1348
        match module_prefix_result {
1349
            Failed(err) => return Failed(err),
B
Brian Anderson 已提交
1350
            Indeterminate => {
C
corentih 已提交
1351
                debug!("(resolving module path for import) indeterminate; bailing");
B
Brian Anderson 已提交
1352
                return Indeterminate;
1353
            }
1354 1355 1356 1357 1358 1359 1360 1361
            Success(NoPrefixFound) => {
                // There was no prefix, so we're considering the first element
                // of the path. How we handle this depends on whether we were
                // instructed to use lexical scope or not.
                match use_lexical_scope {
                    DontUseLexicalScope => {
                        // This is a crate-relative path. We will start the
                        // resolution process at index zero.
1362
                        search_module = self.graph_root;
1363 1364 1365 1366 1367 1368
                        start_index = 0;
                    }
                    UseLexicalScope => {
                        // This is not a crate-relative path. We resolve the
                        // first component of the path in the current lexical
                        // scope and then proceed to resolve below that.
1369
                        let ident = ast::Ident::with_empty_ctxt(module_path[0]);
1370 1371 1372 1373 1374 1375
                        match self.resolve_ident_in_lexical_scope(ident, TypeNS, true)
                                  .and_then(LexicalScopeBinding::module) {
                            None => return Failed(None),
                            Some(containing_module) => {
                                search_module = containing_module;
                                start_index = 1;
1376 1377 1378 1379 1380
                            }
                        }
                    }
                }
            }
E
Eduard Burtescu 已提交
1381
            Success(PrefixFound(ref containing_module, index)) => {
1382
                search_module = containing_module;
1383
                start_index = index;
1384 1385 1386
            }
        }

1387 1388 1389
        self.resolve_module_path_from_root(search_module,
                                           module_path,
                                           start_index,
J
Jeffrey Seyfried 已提交
1390
                                           span)
1391 1392
    }

1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406
    /// This resolves the identifier `ident` in the namespace `ns` in the current lexical scope.
    /// More specifically, we proceed up the hierarchy of scopes and return the binding for
    /// `ident` in the first scope that defines it (or None if no scopes define it).
    ///
    /// A block's items are above its local variables in the scope hierarchy, regardless of where
    /// the items are defined in the block. For example,
    /// ```rust
    /// fn f() {
    ///    g(); // Since there are no local variables in scope yet, this resolves to the item.
    ///    let g = || {};
    ///    fn g() {}
    ///    g(); // This resolves to the local variable `g` since it shadows the item.
    /// }
    /// ```
1407
    ///
1408 1409
    /// Invariant: This must only be called during main resolution, not during
    /// import resolution.
1410
    fn resolve_ident_in_lexical_scope(&mut self,
1411
                                      mut ident: ast::Ident,
1412 1413 1414
                                      ns: Namespace,
                                      record_used: bool)
                                      -> Option<LexicalScopeBinding<'a>> {
1415 1416 1417
        if ns == TypeNS {
            ident = ast::Ident::with_empty_ctxt(ident.name);
        }
1418

1419
        // Walk backwards up the ribs in scope.
1420
        for i in (0 .. self.get_ribs(ns).len()).rev() {
1421
            if let Some(def) = self.get_ribs(ns)[i].bindings.get(&ident).cloned() {
1422 1423 1424 1425 1426
                // The ident resolves to a type parameter or local variable.
                return Some(LexicalScopeBinding::LocalDef(LocalDef {
                    ribs: Some((ns, i)),
                    def: def,
                }));
1427 1428
            }

1429
            if let ModuleRibKind(module) = self.get_ribs(ns)[i].kind {
1430
                let name = ident.name;
1431 1432 1433 1434
                let item = self.resolve_name_in_module(module, name, ns, true, record_used);
                if let Success(binding) = item {
                    // The ident resolves to an item.
                    return Some(LexicalScopeBinding::Item(binding));
1435
                }
1436

1437
                // We can only see through anonymous modules
1438
                if module.def.is_some() {
1439 1440 1441 1442 1443 1444 1445
                    return match self.prelude {
                        Some(prelude) if !module.no_implicit_prelude.get() => {
                            prelude.resolve_name(name, ns, false).success()
                                   .map(LexicalScopeBinding::Item)
                        }
                        _ => None,
                    };
1446
                }
1447
            }
1448 1449 1450 1451

            if let MacroDefinition(mac) = self.get_ribs(ns)[i].kind {
                // If an invocation of this macro created `ident`, give up on `ident`
                // and switch to `ident`'s source from the macro definition.
1452 1453 1454
                let (source_ctxt, source_macro) = ident.ctxt.source();
                if source_macro == mac {
                    ident.ctxt = source_ctxt;
1455 1456
                }
            }
1457
        }
1458

1459 1460 1461
        None
    }

1462
    /// Returns the nearest normal module parent of the given module.
1463
    fn get_nearest_normal_module_parent(&self, mut module: Module<'a>) -> Option<Module<'a>> {
1464
        loop {
1465
            match module.parent_link {
1466 1467 1468
                NoParentLink => return None,
                ModuleParentLink(new_module, _) |
                BlockParentLink(new_module, _) => {
1469
                    let new_module = new_module;
1470 1471
                    if new_module.is_normal() {
                        return Some(new_module);
1472
                    }
1473
                    module = new_module;
1474 1475 1476 1477 1478
                }
            }
        }
    }

1479 1480
    /// Returns the nearest normal module parent of the given module, or the
    /// module itself if it is a normal module.
1481 1482 1483
    fn get_nearest_normal_module_parent_or_self(&self, module: Module<'a>) -> Module<'a> {
        if module.is_normal() {
            return module;
1484
        }
1485 1486
        match self.get_nearest_normal_module_parent(module) {
            None => module,
1487
            Some(new_module) => new_module,
1488 1489 1490
        }
    }

1491
    /// Resolves a "module prefix". A module prefix is one or both of (a) `self::`;
1492
    /// (b) some chain of `super::`.
1493
    /// grammar: (SELF MOD_SEP ) ? (SUPER MOD_SEP) *
1494
    fn resolve_module_prefix(&mut self, module_path: &[Name], span: Span)
1495
                             -> ResolveResult<ModulePrefixResult<'a>> {
1496 1497
        // Start at the current module if we see `self` or `super`, or at the
        // top of the crate otherwise.
1498 1499 1500 1501 1502
        let mut i = match &*module_path[0].as_str() {
            "self" => 1,
            "super" => 0,
            _ => return Success(NoPrefixFound),
        };
1503 1504
        let mut containing_module =
            self.get_nearest_normal_module_parent_or_self(self.current_module);
1505 1506

        // Now loop through all the `super`s we find.
1507
        while i < module_path.len() && "super" == module_path[i].as_str() {
1508
            debug!("(resolving module prefix) resolving `super` at {}",
J
Jonas Schievink 已提交
1509
                   module_to_string(&containing_module));
1510
            match self.get_nearest_normal_module_parent(containing_module) {
1511 1512 1513 1514
                None => {
                    let msg = "There are too many initial `super`s.".into();
                    return Failed(Some((span, msg)));
                }
1515 1516 1517
                Some(new_module) => {
                    containing_module = new_module;
                    i += 1;
1518 1519 1520 1521
                }
            }
        }

1522
        debug!("(resolving module prefix) finished resolving prefix at {}",
J
Jonas Schievink 已提交
1523
               module_to_string(&containing_module));
1524 1525

        return Success(PrefixFound(containing_module, i));
1526 1527
    }

1528
    /// Attempts to resolve the supplied name in the given module for the
J
Jeffrey Seyfried 已提交
1529
    /// given namespace. If successful, returns the binding corresponding to
1530
    /// the name.
F
Felix S. Klock II 已提交
1531
    fn resolve_name_in_module(&mut self,
1532
                              module: Module<'a>,
1533
                              name: Name,
1534
                              namespace: Namespace,
1535
                              use_lexical_scope: bool,
1536
                              record_used: bool)
1537
                              -> ResolveResult<&'a NameBinding<'a>> {
1538
        debug!("(resolving name in module) resolving `{}` in `{}`", name, module_to_string(module));
1539

1540
        self.populate_module_if_necessary(module);
1541
        module.resolve_name(name, namespace, use_lexical_scope).and_then(|binding| {
1542
            if record_used {
1543
                self.record_use(name, namespace, binding);
1544
            }
1545 1546
            Success(binding)
        })
1547 1548 1549 1550
    }

    // AST resolution
    //
1551
    // We maintain a list of value ribs and type ribs.
1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566
    //
    // Simultaneously, we keep track of the current position in the module
    // graph in the `current_module` pointer. When we go to resolve a name in
    // the value or type namespaces, we first look through all the ribs and
    // then query the module graph. When we resolve a name in the module
    // namespace, we can skip all the ribs (since nested modules are not
    // allowed within blocks in Rust) and jump straight to the current module
    // graph node.
    //
    // Named implementations are handled separately. When we find a method
    // call, we consult the module node to find all of the implementations in
    // scope. This information is lazily cached in the module node. We then
    // generate a fake "implementation scope" containing all the
    // implementations thus found, for compatibility with old resolve pass.

1567
    fn with_scope<F>(&mut self, id: NodeId, f: F)
C
corentih 已提交
1568
        where F: FnOnce(&mut Resolver)
J
Jorge Aparicio 已提交
1569
    {
1570 1571
        let module = self.module_map.get(&id).cloned(); // clones a reference
        if let Some(module) = module {
1572 1573 1574 1575
            // Move down in the graph.
            let orig_module = ::std::mem::replace(&mut self.current_module, module);
            self.value_ribs.push(Rib::new(ModuleRibKind(module)));
            self.type_ribs.push(Rib::new(ModuleRibKind(module)));
1576

1577
            f(self);
1578

1579 1580 1581 1582 1583 1584
            self.current_module = orig_module;
            self.value_ribs.pop();
            self.type_ribs.pop();
        } else {
            f(self);
        }
1585 1586
    }

S
Seo Sanghyeon 已提交
1587 1588
    /// Searches the current set of local scopes for labels.
    /// Stops after meeting a closure.
1589
    fn search_label(&self, mut ident: ast::Ident) -> Option<Def> {
1590 1591 1592 1593 1594
        for rib in self.label_ribs.iter().rev() {
            match rib.kind {
                NormalRibKind => {
                    // Continue
                }
1595 1596 1597
                MacroDefinition(mac) => {
                    // If an invocation of this macro created `ident`, give up on `ident`
                    // and switch to `ident`'s source from the macro definition.
1598 1599 1600
                    let (source_ctxt, source_macro) = ident.ctxt.source();
                    if source_macro == mac {
                        ident.ctxt = source_ctxt;
1601 1602
                    }
                }
1603 1604
                _ => {
                    // Do not resolve labels across function boundary
C
corentih 已提交
1605
                    return None;
1606 1607
                }
            }
1608
            let result = rib.bindings.get(&ident).cloned();
S
Seo Sanghyeon 已提交
1609
            if result.is_some() {
C
corentih 已提交
1610
                return result;
1611 1612 1613 1614 1615
            }
        }
        None
    }

1616
    fn resolve_item(&mut self, item: &Item) {
1617
        let name = item.ident.name;
1618

C
corentih 已提交
1619
        debug!("(resolving item) resolving {}", name);
1620

1621
        match item.node {
1622 1623
            ItemKind::Enum(_, ref generics) |
            ItemKind::Ty(_, ref generics) |
1624
            ItemKind::Struct(_, ref generics) |
1625
            ItemKind::Fn(_, _, _, _, ref generics, _) => {
1626
                self.with_type_parameter_rib(HasTypeParameters(generics, ItemRibKind),
1627
                                             |this| visit::walk_item(this, item));
1628 1629
            }

1630
            ItemKind::DefaultImpl(_, ref trait_ref) => {
1631
                self.with_optional_trait_ref(Some(trait_ref), |_, _| {});
1632
            }
1633
            ItemKind::Impl(_, _, ref generics, ref opt_trait_ref, ref self_type, ref impl_items) =>
1634
                self.resolve_implementation(generics,
1635
                                            opt_trait_ref,
J
Jonas Schievink 已提交
1636
                                            &self_type,
1637
                                            item.id,
1638
                                            impl_items),
1639

1640
            ItemKind::Trait(_, ref generics, ref bounds, ref trait_items) => {
1641
                // Create a new rib for the trait-wide type parameters.
1642
                self.with_type_parameter_rib(HasTypeParameters(generics, ItemRibKind), |this| {
1643
                    let local_def_id = this.definitions.local_def_id(item.id);
1644
                    this.with_self_rib(Def::SelfTy(Some(local_def_id), None), |this| {
1645
                        this.visit_generics(generics);
1646
                        walk_list!(this, visit_ty_param_bound, bounds);
1647 1648

                        for trait_item in trait_items {
1649
                            match trait_item.node {
1650
                                TraitItemKind::Const(_, ref default) => {
1651 1652 1653 1654 1655
                                    // Only impose the restrictions of
                                    // ConstRibKind if there's an actual constant
                                    // expression in a provided default.
                                    if default.is_some() {
                                        this.with_constant_rib(|this| {
1656
                                            visit::walk_trait_item(this, trait_item)
1657 1658
                                        });
                                    } else {
1659
                                        visit::walk_trait_item(this, trait_item)
1660 1661
                                    }
                                }
1662
                                TraitItemKind::Method(ref sig, _) => {
1663 1664
                                    let type_parameters =
                                        HasTypeParameters(&sig.generics,
V
Vadim Petrochenkov 已提交
1665
                                                          MethodRibKind(!sig.decl.has_self()));
1666
                                    this.with_type_parameter_rib(type_parameters, |this| {
1667
                                        visit::walk_trait_item(this, trait_item)
1668
                                    });
1669
                                }
1670
                                TraitItemKind::Type(..) => {
1671
                                    this.with_type_parameter_rib(NoTypeParameters, |this| {
1672
                                        visit::walk_trait_item(this, trait_item)
1673
                                    });
1674
                                }
1675
                                TraitItemKind::Macro(_) => panic!("unexpanded macro in resolve!"),
1676 1677 1678
                            };
                        }
                    });
1679
                });
1680 1681
            }

1682
            ItemKind::Mod(_) | ItemKind::ForeignMod(_) => {
1683
                self.with_scope(item.id, |this| {
1684
                    visit::walk_item(this, item);
1685
                });
1686 1687
            }

1688
            ItemKind::Const(..) | ItemKind::Static(..) => {
A
Alex Crichton 已提交
1689
                self.with_constant_rib(|this| {
1690
                    visit::walk_item(this, item);
1691
                });
1692
            }
1693

1694
            ItemKind::Use(ref view_path) => {
1695
                match view_path.node {
1696
                    ast::ViewPathList(ref prefix, ref items) => {
1697 1698 1699 1700 1701
                        // Resolve prefix of an import with empty braces (issue #28388)
                        if items.is_empty() && !prefix.segments.is_empty() {
                            match self.resolve_crate_relative_path(prefix.span,
                                                                   &prefix.segments,
                                                                   TypeNS) {
1702 1703
                                Ok(binding) => {
                                    let def = binding.def().unwrap();
1704
                                    self.record_def(item.id, PathResolution::new(def));
1705
                                }
1706 1707
                                Err(true) => self.record_def(item.id, err_path_resolution()),
                                Err(false) => {
1708 1709 1710 1711
                                    resolve_error(self,
                                                  prefix.span,
                                                  ResolutionError::FailedToResolve(
                                                      &path_names_to_string(prefix, 0)));
1712
                                    self.record_def(item.id, err_path_resolution());
1713
                                }
1714 1715 1716 1717
                            }
                        }
                    }
                    _ => {}
W
we 已提交
1718 1719 1720
                }
            }

1721
            ItemKind::ExternCrate(_) => {
1722
                // do nothing, these are just around to be encoded
1723
            }
1724 1725

            ItemKind::Mac(_) => panic!("unexpanded macro in resolve!"),
1726 1727 1728
        }
    }

1729
    fn with_type_parameter_rib<'b, F>(&'b mut self, type_parameters: TypeParameters<'a, 'b>, f: F)
C
corentih 已提交
1730
        where F: FnOnce(&mut Resolver)
J
Jorge Aparicio 已提交
1731
    {
1732
        match type_parameters {
1733
            HasTypeParameters(generics, rib_kind) => {
1734
                let mut function_type_rib = Rib::new(rib_kind);
C
Chris Stankus 已提交
1735
                let mut seen_bindings = HashMap::new();
1736
                for type_parameter in &generics.ty_params {
1737
                    let name = type_parameter.ident.name;
1738
                    debug!("with_type_parameter_rib: {}", type_parameter.id);
1739

C
Chris Stankus 已提交
1740 1741
                    if seen_bindings.contains_key(&name) {
                        let span = seen_bindings.get(&name).unwrap();
1742 1743
                        resolve_error(self,
                                      type_parameter.span,
C
Chris Stankus 已提交
1744 1745
                                      ResolutionError::NameAlreadyUsedInTypeParameterList(name,
                                                                                          span));
1746
                    }
C
Chris Stankus 已提交
1747
                    seen_bindings.entry(name).or_insert(type_parameter.span);
1748

1749
                    // plain insert (no renaming)
1750
                    let def_id = self.definitions.local_def_id(type_parameter.id);
1751
                    let def = Def::TyParam(def_id);
1752
                    function_type_rib.bindings.insert(ast::Ident::with_empty_ctxt(name), def);
1753
                    self.record_def(type_parameter.id, PathResolution::new(def));
1754
                }
1755
                self.type_ribs.push(function_type_rib);
1756 1757
            }

B
Brian Anderson 已提交
1758
            NoTypeParameters => {
1759 1760 1761 1762
                // Nothing to do.
            }
        }

A
Alex Crichton 已提交
1763
        f(self);
1764

J
Jeffrey Seyfried 已提交
1765 1766
        if let HasTypeParameters(..) = type_parameters {
            self.type_ribs.pop();
1767 1768 1769
        }
    }

C
corentih 已提交
1770 1771
    fn with_label_rib<F>(&mut self, f: F)
        where F: FnOnce(&mut Resolver)
J
Jorge Aparicio 已提交
1772
    {
1773
        self.label_ribs.push(Rib::new(NormalRibKind));
A
Alex Crichton 已提交
1774
        f(self);
J
Jeffrey Seyfried 已提交
1775
        self.label_ribs.pop();
1776
    }
1777

C
corentih 已提交
1778 1779
    fn with_constant_rib<F>(&mut self, f: F)
        where F: FnOnce(&mut Resolver)
J
Jorge Aparicio 已提交
1780
    {
1781 1782
        self.value_ribs.push(Rib::new(ConstantItemRibKind));
        self.type_ribs.push(Rib::new(ConstantItemRibKind));
A
Alex Crichton 已提交
1783
        f(self);
J
Jeffrey Seyfried 已提交
1784 1785
        self.type_ribs.pop();
        self.value_ribs.pop();
1786 1787
    }

1788 1789 1790 1791
    fn resolve_function(&mut self,
                        rib_kind: RibKind<'a>,
                        declaration: &FnDecl,
                        block: &Block) {
1792
        // Create a value rib for the function.
1793
        self.value_ribs.push(Rib::new(rib_kind));
1794

1795
        // Create a label rib for the function.
1796
        self.label_ribs.push(Rib::new(rib_kind));
1797

1798 1799 1800
        // Add each argument to the rib.
        let mut bindings_list = HashMap::new();
        for argument in &declaration.inputs {
1801
            self.resolve_pattern(&argument.pat, PatternSource::FnParam, &mut bindings_list);
1802

J
Jonas Schievink 已提交
1803
            self.visit_ty(&argument.ty);
1804

1805 1806
            debug!("(resolving function) recorded argument");
        }
1807
        visit::walk_fn_ret_ty(self, &declaration.output);
1808

1809
        // Resolve the function body.
1810
        self.visit_block(block);
1811

1812
        debug!("(resolving function) leaving function");
1813

J
Jeffrey Seyfried 已提交
1814 1815
        self.label_ribs.pop();
        self.value_ribs.pop();
1816 1817
    }

F
Felix S. Klock II 已提交
1818
    fn resolve_trait_reference(&mut self,
N
Nick Cameron 已提交
1819
                               id: NodeId,
1820
                               trait_path: &Path,
1821
                               path_depth: usize)
1822
                               -> Result<PathResolution, ()> {
1823
        self.resolve_path(id, trait_path, path_depth, TypeNS).and_then(|path_res| {
1824 1825 1826 1827 1828 1829 1830 1831
            match path_res.base_def {
                Def::Trait(_) => {
                    debug!("(resolving trait) found trait def: {:?}", path_res);
                    return Ok(path_res);
                }
                Def::Err => return Err(true),
                _ => {}
            }
1832

1833 1834 1835 1836 1837 1838
            let mut err = resolve_struct_error(self, trait_path.span, {
                ResolutionError::IsNotATrait(&path_names_to_string(trait_path, path_depth))
            });

            // If it's a typedef, give a note
            if let Def::TyAlias(..) = path_res.base_def {
1839
                err.note(&format!("type aliases cannot be used for traits"));
1840
            }
1841 1842
            err.emit();
            Err(true)
1843 1844
        }).map_err(|error_reported| {
            if error_reported { return }
1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866

            // find possible candidates
            let trait_name = trait_path.segments.last().unwrap().identifier.name;
            let candidates =
                self.lookup_candidates(
                    trait_name,
                    TypeNS,
                    |def| match def {
                        Def::Trait(_) => true,
                        _             => false,
                    },
                );

            // create error object
            let name = &path_names_to_string(trait_path, path_depth);
            let error =
                ResolutionError::UndeclaredTraitName(
                    name,
                    candidates,
                );

            resolve_error(self, trait_path.span, error);
1867
        })
1868 1869
    }

1870 1871
    fn with_current_self_type<T, F>(&mut self, self_type: &Ty, f: F) -> T
        where F: FnOnce(&mut Resolver) -> T
J
Jorge Aparicio 已提交
1872
    {
1873 1874 1875 1876 1877 1878 1879
        // Handle nested impls (inside fn bodies)
        let previous_value = replace(&mut self.current_self_type, Some(self_type.clone()));
        let result = f(self);
        self.current_self_type = previous_value;
        result
    }

C
corentih 已提交
1880
    fn with_optional_trait_ref<T, F>(&mut self, opt_trait_ref: Option<&TraitRef>, f: F) -> T
1881
        where F: FnOnce(&mut Resolver, Option<DefId>) -> T
J
Jorge Aparicio 已提交
1882
    {
1883
        let mut new_val = None;
1884
        let mut new_id = None;
E
Eduard Burtescu 已提交
1885
        if let Some(trait_ref) = opt_trait_ref {
1886
            if let Ok(path_res) = self.resolve_trait_reference(trait_ref.ref_id,
C
corentih 已提交
1887 1888
                                                               &trait_ref.path,
                                                               0) {
1889 1890 1891 1892
                assert!(path_res.depth == 0);
                self.record_def(trait_ref.ref_id, path_res);
                new_val = Some((path_res.base_def.def_id(), trait_ref.clone()));
                new_id = Some(path_res.base_def.def_id());
1893 1894
            } else {
                self.record_def(trait_ref.ref_id, err_path_resolution());
1895
            }
1896
            visit::walk_trait_ref(self, trait_ref);
1897
        }
1898
        let original_trait_ref = replace(&mut self.current_trait_ref, new_val);
1899
        let result = f(self, new_id);
1900 1901 1902 1903
        self.current_trait_ref = original_trait_ref;
        result
    }

1904 1905 1906 1907 1908 1909
    fn with_self_rib<F>(&mut self, self_def: Def, f: F)
        where F: FnOnce(&mut Resolver)
    {
        let mut self_type_rib = Rib::new(NormalRibKind);

        // plain insert (no renaming, types are not currently hygienic....)
1910
        self_type_rib.bindings.insert(keywords::SelfType.ident(), self_def);
1911 1912
        self.type_ribs.push(self_type_rib);
        f(self);
J
Jeffrey Seyfried 已提交
1913
        self.type_ribs.pop();
1914 1915
    }

F
Felix S. Klock II 已提交
1916
    fn resolve_implementation(&mut self,
1917 1918 1919
                              generics: &Generics,
                              opt_trait_reference: &Option<TraitRef>,
                              self_type: &Ty,
1920
                              item_id: NodeId,
1921
                              impl_items: &[ImplItem]) {
1922
        // If applicable, create a rib for the type parameters.
1923
        self.with_type_parameter_rib(HasTypeParameters(generics, ItemRibKind), |this| {
1924
            // Resolve the type parameters.
1925
            this.visit_generics(generics);
1926

1927
            // Resolve the trait reference, if necessary.
1928
            this.with_optional_trait_ref(opt_trait_reference.as_ref(), |this, trait_id| {
1929
                // Resolve the self type.
1930
                this.visit_ty(self_type);
1931

1932
                this.with_self_rib(Def::SelfTy(trait_id, Some(item_id)), |this| {
1933 1934
                    this.with_current_self_type(self_type, |this| {
                        for impl_item in impl_items {
1935
                            this.resolve_visibility(&impl_item.vis);
1936
                            match impl_item.node {
1937
                                ImplItemKind::Const(..) => {
1938
                                    // If this is a trait impl, ensure the const
1939
                                    // exists in trait
1940
                                    this.check_trait_item(impl_item.ident.name,
1941 1942
                                                          impl_item.span,
                                        |n, s| ResolutionError::ConstNotMemberOfTrait(n, s));
1943
                                    visit::walk_impl_item(this, impl_item);
1944
                                }
1945
                                ImplItemKind::Method(ref sig, _) => {
1946 1947
                                    // If this is a trait impl, ensure the method
                                    // exists in trait
1948
                                    this.check_trait_item(impl_item.ident.name,
1949 1950
                                                          impl_item.span,
                                        |n, s| ResolutionError::MethodNotMemberOfTrait(n, s));
1951 1952 1953 1954 1955

                                    // We also need a new scope for the method-
                                    // specific type parameters.
                                    let type_parameters =
                                        HasTypeParameters(&sig.generics,
V
Vadim Petrochenkov 已提交
1956
                                                          MethodRibKind(!sig.decl.has_self()));
1957
                                    this.with_type_parameter_rib(type_parameters, |this| {
1958
                                        visit::walk_impl_item(this, impl_item);
1959 1960
                                    });
                                }
1961
                                ImplItemKind::Type(ref ty) => {
1962
                                    // If this is a trait impl, ensure the type
1963
                                    // exists in trait
1964
                                    this.check_trait_item(impl_item.ident.name,
1965 1966
                                                          impl_item.span,
                                        |n, s| ResolutionError::TypeNotMemberOfTrait(n, s));
1967

1968 1969
                                    this.visit_ty(ty);
                                }
1970
                                ImplItemKind::Macro(_) => panic!("unexpanded macro in resolve!"),
1971
                            }
1972
                        }
1973
                    });
1974 1975
                });
            });
1976
        });
1977 1978
    }

1979
    fn check_trait_item<F>(&self, name: Name, span: Span, err: F)
C
corentih 已提交
1980 1981 1982 1983
        where F: FnOnce(Name, &str) -> ResolutionError
    {
        // If there is a TraitRef in scope for an impl, then the method must be in the
        // trait.
1984
        if let Some((did, ref trait_ref)) = self.current_trait_ref {
1985
            if !self.trait_item_map.contains_key(&(name, did)) {
1986
                let path_str = path_names_to_string(&trait_ref.path, 0);
J
Jonas Schievink 已提交
1987
                resolve_error(self, span, err(name, &path_str));
1988 1989 1990 1991
            }
        }
    }

E
Eduard Burtescu 已提交
1992
    fn resolve_local(&mut self, local: &Local) {
1993
        // Resolve the type.
1994
        walk_list!(self, visit_ty, &local.ty);
1995

1996
        // Resolve the initializer.
1997
        walk_list!(self, visit_expr, &local.init);
1998 1999

        // Resolve the pattern.
2000
        self.resolve_pattern(&local.pat, PatternSource::Let, &mut HashMap::new());
2001 2002
    }

J
John Clements 已提交
2003 2004 2005 2006
    // build a map from pattern identifiers to binding-info's.
    // this is done hygienically. This could arise for a macro
    // that expands into an or-pattern where one 'x' was from the
    // user and one 'x' came from the macro.
E
Eduard Burtescu 已提交
2007
    fn binding_mode_map(&mut self, pat: &Pat) -> BindingMap {
2008 2009 2010 2011 2012 2013 2014 2015 2016
        let mut binding_map = HashMap::new();

        pat.walk(&mut |pat| {
            if let PatKind::Ident(binding_mode, ident, ref sub_pat) = pat.node {
                if sub_pat.is_some() || match self.def_map.get(&pat.id) {
                    Some(&PathResolution { base_def: Def::Local(..), .. }) => true,
                    _ => false,
                } {
                    let binding_info = BindingInfo { span: ident.span, binding_mode: binding_mode };
2017
                    binding_map.insert(ident.node, binding_info);
2018 2019 2020
                }
            }
            true
2021
        });
2022 2023

        binding_map
2024 2025
    }

J
John Clements 已提交
2026 2027
    // check that all of the arms in an or-pattern have exactly the
    // same set of bindings, with the same binding modes for each.
F
Felix S. Klock II 已提交
2028
    fn check_consistent_bindings(&mut self, arm: &Arm) {
2029
        if arm.pats.is_empty() {
C
corentih 已提交
2030
            return;
2031
        }
J
Jonas Schievink 已提交
2032
        let map_0 = self.binding_mode_map(&arm.pats[0]);
D
Daniel Micay 已提交
2033
        for (i, p) in arm.pats.iter().enumerate() {
J
Jonas Schievink 已提交
2034
            let map_i = self.binding_mode_map(&p);
2035

2036
            for (&key, &binding_0) in &map_0 {
2037
                match map_i.get(&key) {
C
corentih 已提交
2038
                    None => {
2039 2040
                        let error = ResolutionError::VariableNotBoundInPattern(key.name, 1, i + 1);
                        resolve_error(self, p.span, error);
C
corentih 已提交
2041 2042 2043 2044 2045
                    }
                    Some(binding_i) => {
                        if binding_0.binding_mode != binding_i.binding_mode {
                            resolve_error(self,
                                          binding_i.span,
M
Mikhail Modin 已提交
2046 2047 2048 2049
                                          ResolutionError::VariableBoundWithDifferentMode(
                                              key.name,
                                              i + 1,
                                              binding_0.span));
C
corentih 已提交
2050
                        }
2051
                    }
2052 2053 2054
                }
            }

2055
            for (&key, &binding) in &map_i {
2056
                if !map_0.contains_key(&key) {
2057 2058
                    resolve_error(self,
                                  binding.span,
2059
                                  ResolutionError::VariableNotBoundInPattern(key.name, i + 1, 1));
2060 2061 2062
                }
            }
        }
2063 2064
    }

F
Felix S. Klock II 已提交
2065
    fn resolve_arm(&mut self, arm: &Arm) {
2066
        self.value_ribs.push(Rib::new(NormalRibKind));
2067

2068
        let mut bindings_list = HashMap::new();
2069
        for pattern in &arm.pats {
2070
            self.resolve_pattern(&pattern, PatternSource::Match, &mut bindings_list);
2071 2072
        }

2073 2074 2075 2076
        // This has to happen *after* we determine which
        // pat_idents are variants
        self.check_consistent_bindings(arm);

2077
        walk_list!(self, visit_expr, &arm.guard);
J
Jonas Schievink 已提交
2078
        self.visit_expr(&arm.body);
2079

J
Jeffrey Seyfried 已提交
2080
        self.value_ribs.pop();
2081 2082
    }

E
Eduard Burtescu 已提交
2083
    fn resolve_block(&mut self, block: &Block) {
2084
        debug!("(resolving block) entering block");
2085
        // Move down in the graph, if there's an anonymous module rooted here.
2086
        let orig_module = self.current_module;
2087
        let anonymous_module = self.module_map.get(&block.id).cloned(); // clones a reference
2088

2089
        let mut num_macro_definition_ribs = 0;
2090 2091
        if let Some(anonymous_module) = anonymous_module {
            debug!("(resolving block) found anonymous module, moving down");
2092 2093
            self.value_ribs.push(Rib::new(ModuleRibKind(anonymous_module)));
            self.type_ribs.push(Rib::new(ModuleRibKind(anonymous_module)));
2094 2095 2096
            self.current_module = anonymous_module;
        } else {
            self.value_ribs.push(Rib::new(NormalRibKind));
2097 2098 2099
        }

        // Descend into the block.
2100 2101
        for stmt in &block.stmts {
            if let Some(marks) = self.macros_at_scope.remove(&stmt.id) {
2102
                num_macro_definition_ribs += marks.len() as u32;
2103 2104
                for mark in marks {
                    self.value_ribs.push(Rib::new(MacroDefinition(mark)));
2105
                    self.label_ribs.push(Rib::new(MacroDefinition(mark)));
2106 2107 2108 2109 2110
                }
            }

            self.visit_stmt(stmt);
        }
2111 2112

        // Move back up.
J
Jeffrey Seyfried 已提交
2113
        self.current_module = orig_module;
2114
        for _ in 0 .. num_macro_definition_ribs {
2115
            self.value_ribs.pop();
2116
            self.label_ribs.pop();
2117
        }
2118
        self.value_ribs.pop();
J
Jeffrey Seyfried 已提交
2119 2120
        if let Some(_) = anonymous_module {
            self.type_ribs.pop();
G
Garming Sam 已提交
2121
        }
2122
        debug!("(resolving block) leaving block");
2123 2124
    }

F
Felix S. Klock II 已提交
2125
    fn resolve_type(&mut self, ty: &Ty) {
2126
        match ty.node {
2127
            TyKind::Path(ref maybe_qself, ref path) => {
2128
                // This is a path in the type namespace. Walk through scopes
2129
                // looking for it.
2130 2131
                if let Some(def) = self.resolve_possibly_assoc_item(ty.id, maybe_qself.as_ref(),
                                                                    path, TypeNS) {
2132
                    match def.base_def {
2133
                        Def::Mod(..) if def.depth == 0 => {
2134 2135 2136 2137 2138 2139 2140 2141 2142 2143
                            self.session.span_err(path.span, "expected type, found module");
                            self.record_def(ty.id, err_path_resolution());
                        }
                        _ => {
                            // Write the result into the def map.
                            debug!("(resolving type) writing resolution for `{}` (id {}) = {:?}",
                                   path_names_to_string(path, 0), ty.id, def);
                            self.record_def(ty.id, def);
                        }
                    }
2144 2145
                } else {
                    self.record_def(ty.id, err_path_resolution());
2146

2147 2148 2149 2150
                    // Keep reporting some errors even if they're ignored above.
                    if let Err(true) = self.resolve_path(ty.id, path, 0, TypeNS) {
                        // `resolve_path` already reported the error
                    } else {
2151 2152 2153 2154
                        let kind = if maybe_qself.is_some() {
                            "associated type"
                        } else {
                            "type name"
2155
                        };
2156

C
corentih 已提交
2157 2158 2159
                        let is_invalid_self_type_name = path.segments.len() > 0 &&
                                                        maybe_qself.is_none() &&
                                                        path.segments[0].identifier.name ==
2160
                                                        keywords::SelfType.name();
G
Guillaume Gomez 已提交
2161
                        if is_invalid_self_type_name {
2162 2163
                            resolve_error(self,
                                          ty.span,
2164
                                          ResolutionError::SelfUsedOutsideImplOrTrait);
2165
                        } else {
2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192
                            let segment = path.segments.last();
                            let segment = segment.expect("missing name in path");
                            let type_name = segment.identifier.name;

                            let candidates =
                                self.lookup_candidates(
                                    type_name,
                                    TypeNS,
                                    |def| match def {
                                        Def::Trait(_) |
                                        Def::Enum(_) |
                                        Def::Struct(_) |
                                        Def::TyAlias(_) => true,
                                        _               => false,
                                    },
                                );

                            // create error object
                            let name = &path_names_to_string(path, 0);
                            let error =
                                ResolutionError::UseOfUndeclared(
                                    kind,
                                    name,
                                    candidates,
                                );

                            resolve_error(self, ty.span, error);
G
Guillaume Gomez 已提交
2193
                        }
2194 2195
                    }
                }
2196
            }
2197
            _ => {}
2198
        }
2199
        // Resolve embedded types.
2200
        visit::walk_ty(self, ty);
2201 2202
    }

2203 2204 2205 2206 2207
    fn fresh_binding(&mut self,
                     ident: &ast::SpannedIdent,
                     pat_id: NodeId,
                     outer_pat_id: NodeId,
                     pat_src: PatternSource,
2208
                     bindings: &mut HashMap<ast::Ident, NodeId>)
2209 2210
                     -> PathResolution {
        // Add the binding to the local ribs, if it
2211 2212
        // doesn't already exist in the bindings map. (We
        // must not add it if it's in the bindings map
2213 2214
        // because that breaks the assumptions later
        // passes make about or-patterns.)
2215
        let mut def = Def::Local(self.definitions.local_def_id(pat_id), pat_id);
2216
        match bindings.get(&ident.node).cloned() {
2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235
            Some(id) if id == outer_pat_id => {
                // `Variant(a, a)`, error
                resolve_error(
                    self,
                    ident.span,
                    ResolutionError::IdentifierBoundMoreThanOnceInSamePattern(
                        &ident.node.name.as_str())
                );
            }
            Some(..) if pat_src == PatternSource::FnParam => {
                // `fn f(a: u8, a: u8)`, error
                resolve_error(
                    self,
                    ident.span,
                    ResolutionError::IdentifierBoundMoreThanOnceInParameterList(
                        &ident.node.name.as_str())
                );
            }
            Some(..) if pat_src == PatternSource::Match => {
2236 2237
                // `Variant1(a) | Variant2(a)`, ok
                // Reuse definition from the first `a`.
2238
                def = self.value_ribs.last_mut().unwrap().bindings[&ident.node];
2239 2240 2241 2242 2243 2244
            }
            Some(..) => {
                span_bug!(ident.span, "two bindings with the same name from \
                                       unexpected pattern source {:?}", pat_src);
            }
            None => {
2245
                // A completely fresh binding, add to the lists if it's valid.
2246
                if ident.node.name != keywords::Invalid.name() {
2247 2248
                    bindings.insert(ident.node, outer_pat_id);
                    self.value_ribs.last_mut().unwrap().bindings.insert(ident.node, def);
2249
                }
2250
            }
2251
        }
2252

2253
        PathResolution::new(def)
2254
    }
2255

2256
    fn resolve_pattern_path<ExpectedFn>(&mut self,
2257 2258 2259 2260 2261 2262
                                        pat_id: NodeId,
                                        qself: Option<&QSelf>,
                                        path: &Path,
                                        namespace: Namespace,
                                        expected_fn: ExpectedFn,
                                        expected_what: &str)
2263 2264
        where ExpectedFn: FnOnce(Def) -> bool
    {
2265 2266 2267
        let resolution = if let Some(resolution) = self.resolve_possibly_assoc_item(pat_id,
                                                                        qself, path, namespace) {
            if resolution.depth == 0 {
2268
                if expected_fn(resolution.base_def) || resolution.base_def == Def::Err {
2269
                    resolution
2270
                } else {
2271 2272 2273 2274 2275 2276
                    resolve_error(
                        self,
                        path.span,
                        ResolutionError::PatPathUnexpected(expected_what,
                                                           resolution.kind_name(), path)
                    );
2277 2278
                    err_path_resolution()
                }
2279 2280 2281 2282
            } else {
                // Not fully resolved associated item `T::A::B` or `<T as Tr>::A::B`
                // or `<T>::A::B`. If `B` should be resolved in value namespace then
                // it needs to be added to the trait map.
2283 2284 2285 2286
                if namespace == ValueNS {
                    let item_name = path.segments.last().unwrap().identifier.name;
                    let traits = self.get_traits_containing_item(item_name);
                    self.trait_map.insert(pat_id, traits);
2287
                }
2288
                resolution
2289
            }
2290 2291 2292 2293 2294 2295 2296 2297 2298
        } else {
            if let Err(false) = self.resolve_path(pat_id, path, 0, namespace) {
                resolve_error(
                    self,
                    path.span,
                    ResolutionError::PatPathUnresolved(expected_what, path)
                );
            }
            err_path_resolution()
2299
        };
2300

2301 2302 2303 2304 2305 2306 2307 2308
        self.record_def(pat_id, resolution);
    }

    fn resolve_pattern(&mut self,
                       pat: &Pat,
                       pat_src: PatternSource,
                       // Maps idents to the node ID for the
                       // outermost pattern that binds them.
2309
                       bindings: &mut HashMap<ast::Ident, NodeId>) {
2310
        // Visit all direct subpatterns of this pattern.
2311 2312 2313 2314 2315 2316
        let outer_pat_id = pat.id;
        pat.walk(&mut |pat| {
            match pat.node {
                PatKind::Ident(bmode, ref ident, ref opt_pat) => {
                    // First try to resolve the identifier as some existing
                    // entity, then fall back to a fresh binding.
2317 2318 2319
                    let binding = self.resolve_ident_in_lexical_scope(ident.node, ValueNS, false)
                                      .and_then(LexicalScopeBinding::item);
                    let resolution = binding.and_then(NameBinding::def).and_then(|def| {
2320 2321
                        let always_binding = !pat_src.is_refutable() || opt_pat.is_some() ||
                                             bmode != BindingMode::ByValue(Mutability::Immutable);
2322
                        match def {
2323 2324 2325
                            Def::Struct(..) | Def::Variant(..) |
                            Def::Const(..) | Def::AssociatedConst(..) if !always_binding => {
                                // A constant, unit variant, etc pattern.
2326 2327
                                self.record_use(ident.node.name, ValueNS, binding.unwrap());
                                Some(PathResolution::new(def))
2328
                            }
2329 2330 2331
                            Def::Struct(..) | Def::Variant(..) |
                            Def::Const(..) | Def::AssociatedConst(..) | Def::Static(..) => {
                                // A fresh binding that shadows something unacceptable.
2332
                                resolve_error(
2333
                                    self,
2334 2335
                                    ident.span,
                                    ResolutionError::BindingShadowsSomethingUnacceptable(
2336
                                        pat_src.descr(), ident.node.name, binding.unwrap())
2337
                                );
2338
                                None
2339
                            }
2340
                            Def::Local(..) | Def::Upvar(..) | Def::Fn(..) | Def::Err => {
2341 2342
                                // These entities are explicitly allowed
                                // to be shadowed by fresh bindings.
2343
                                None
2344 2345 2346 2347
                            }
                            def => {
                                span_bug!(ident.span, "unexpected definition for an \
                                                       identifier in pattern {:?}", def);
2348
                            }
2349
                        }
2350
                    }).unwrap_or_else(|| {
2351
                        self.fresh_binding(ident, pat.id, outer_pat_id, pat_src, bindings)
2352
                    });
2353 2354

                    self.record_def(pat.id, resolution);
2355 2356
                }

2357 2358 2359
                PatKind::TupleStruct(ref path, _, _) => {
                    self.resolve_pattern_path(pat.id, None, path, ValueNS, |def| {
                        match def {
2360
                            Def::Struct(..) | Def::Variant(..) => true,
2361
                            _ => false,
2362
                        }
2363 2364 2365
                    }, "variant or struct");
                }

2366 2367
                PatKind::Path(ref qself, ref path) => {
                    self.resolve_pattern_path(pat.id, qself.as_ref(), path, ValueNS, |def| {
2368 2369
                        match def {
                            Def::Struct(..) | Def::Variant(..) |
2370
                            Def::Const(..) | Def::AssociatedConst(..) => true,
2371
                            _ => false,
2372
                        }
2373
                    }, "variant, struct or constant");
2374 2375
                }

2376 2377 2378 2379
                PatKind::Struct(ref path, _, _) => {
                    self.resolve_pattern_path(pat.id, None, path, TypeNS, |def| {
                        match def {
                            Def::Struct(..) | Def::Variant(..) |
2380
                            Def::TyAlias(..) | Def::AssociatedTy(..) => true,
2381 2382 2383
                            _ => false,
                        }
                    }, "variant, struct or type alias");
2384
                }
2385 2386

                _ => {}
2387
            }
2388
            true
2389
        });
2390

2391
        visit::walk_pat(self, pat);
2392 2393
    }

2394 2395 2396
    /// Handles paths that may refer to associated items
    fn resolve_possibly_assoc_item(&mut self,
                                   id: NodeId,
2397
                                   maybe_qself: Option<&QSelf>,
2398
                                   path: &Path,
J
Jeffrey Seyfried 已提交
2399
                                   namespace: Namespace)
2400
                                   -> Option<PathResolution> {
2401 2402
        let max_assoc_types;

2403
        match maybe_qself {
2404 2405
            Some(qself) => {
                if qself.position == 0 {
2406 2407 2408
                    // FIXME: Create some fake resolution that can't possibly be a type.
                    return Some(PathResolution {
                        base_def: Def::Mod(self.definitions.local_def_id(ast::CRATE_NODE_ID)),
2409
                        depth: path.segments.len(),
2410
                    });
2411 2412 2413 2414 2415 2416 2417 2418
                }
                max_assoc_types = path.segments.len() - qself.position;
                // Make sure the trait is valid.
                let _ = self.resolve_trait_reference(id, path, max_assoc_types);
            }
            None => {
                max_assoc_types = path.segments.len();
            }
2419 2420 2421
        }

        let mut resolution = self.with_no_errors(|this| {
2422
            this.resolve_path(id, path, 0, namespace).ok()
2423 2424 2425 2426 2427 2428
        });
        for depth in 1..max_assoc_types {
            if resolution.is_some() {
                break;
            }
            self.with_no_errors(|this| {
2429 2430 2431 2432 2433 2434
                let partial_resolution = this.resolve_path(id, path, depth, TypeNS).ok();
                if let Some(Def::Mod(..)) = partial_resolution.map(|r| r.base_def) {
                    // Modules cannot have associated items
                } else {
                    resolution = partial_resolution;
                }
2435 2436
            });
        }
2437
        resolution
2438 2439
    }

2440
    /// Skips `path_depth` trailing segments, which is also reflected in the
2441
    /// returned value. See `hir::def::PathResolution` for more info.
J
Jeffrey Seyfried 已提交
2442
    fn resolve_path(&mut self, id: NodeId, path: &Path, path_depth: usize, namespace: Namespace)
2443
                    -> Result<PathResolution, bool /* true if an error was reported */ > {
2444 2445
        debug!("resolve_path(id={:?} path={:?}, path_depth={:?})", id, path, path_depth);

2446
        let span = path.span;
C
corentih 已提交
2447
        let segments = &path.segments[..path.segments.len() - path_depth];
2448

2449
        let mk_res = |def| PathResolution { base_def: def, depth: path_depth };
2450

2451
        if path.global {
2452 2453
            let binding = self.resolve_crate_relative_path(span, segments, namespace);
            return binding.map(|binding| mk_res(binding.def().unwrap()));
2454 2455
        }

2456
        // Try to find a path to an item in a module.
2457
        let last_ident = segments.last().unwrap().identifier;
V
Cleanup  
Vadim Petrochenkov 已提交
2458 2459 2460 2461 2462 2463 2464
        // Resolve a single identifier with fallback to primitive types
        let resolve_identifier_with_fallback = |this: &mut Self, record_used| {
            let def = this.resolve_identifier(last_ident, namespace, record_used);
            match def {
                None | Some(LocalDef{def: Def::Mod(..), ..}) if namespace == TypeNS =>
                    this.primitive_type_table
                        .primitive_types
2465
                        .get(&last_ident.name)
V
Cleanup  
Vadim Petrochenkov 已提交
2466 2467 2468 2469
                        .map_or(def, |prim_ty| Some(LocalDef::from_def(Def::PrimTy(*prim_ty)))),
                _ => def
            }
        };
2470

2471 2472 2473 2474 2475 2476 2477
        if segments.len() == 1 {
            // In `a(::assoc_item)*` `a` cannot be a module. If `a` does resolve to a module we
            // don't report an error right away, but try to fallback to a primitive type.
            // So, we are still able to successfully resolve something like
            //
            // use std::u8; // bring module u8 in scope
            // fn f() -> u8 { // OK, resolves to primitive u8, not to std::u8
V
Cleanup  
Vadim Petrochenkov 已提交
2478 2479
            //     u8::max_value() // OK, resolves to associated function <u8>::max_value,
            //                     // not to non-existent std::u8::max_value
2480 2481 2482 2483
            // }
            //
            // Such behavior is required for backward compatibility.
            // The same fallback is used when `a` resolves to nothing.
2484 2485
            let def = resolve_identifier_with_fallback(self, true).ok_or(false);
            return def.and_then(|def| self.adjust_local_def(def, span).ok_or(true)).map(mk_res);
N
Nick Cameron 已提交
2486
        }
2487

V
Cleanup  
Vadim Petrochenkov 已提交
2488
        let unqualified_def = resolve_identifier_with_fallback(self, false);
2489 2490 2491
        let qualified_binding = self.resolve_module_relative_path(span, segments, namespace);
        match (qualified_binding, unqualified_def) {
            (Ok(binding), Some(ref ud)) if binding.def().unwrap() == ud.def => {
N
Nick Cameron 已提交
2492 2493
                self.session
                    .add_lint(lint::builtin::UNUSED_QUALIFICATIONS,
C
corentih 已提交
2494 2495
                              id,
                              span,
N
Nick Cameron 已提交
2496 2497 2498
                              "unnecessary qualification".to_string());
            }
            _ => {}
2499
        }
N
Nick Cameron 已提交
2500

2501
        qualified_binding.map(|binding| mk_res(binding.def().unwrap()))
2502 2503
    }

2504
    // Resolve a single identifier
F
Felix S. Klock II 已提交
2505
    fn resolve_identifier(&mut self,
2506
                          identifier: ast::Ident,
2507
                          namespace: Namespace,
2508
                          record_used: bool)
2509
                          -> Option<LocalDef> {
2510
        if identifier.name == keywords::Invalid.name() {
2511
            return None;
2512 2513
        }

2514 2515
        self.resolve_ident_in_lexical_scope(identifier, namespace, record_used)
            .map(LexicalScopeBinding::local_def)
2516 2517 2518
    }

    // Resolve a local definition, potentially adjusting for closures.
2519
    fn adjust_local_def(&mut self, local_def: LocalDef, span: Span) -> Option<Def> {
2520
        let ribs = match local_def.ribs {
C
corentih 已提交
2521 2522 2523
            Some((TypeNS, i)) => &self.type_ribs[i + 1..],
            Some((ValueNS, i)) => &self.value_ribs[i + 1..],
            _ => &[] as &[_],
2524 2525 2526
        };
        let mut def = local_def.def;
        match def {
2527
            Def::Upvar(..) => {
2528
                span_bug!(span, "unexpected {:?} in bindings", def)
2529
            }
2530
            Def::Local(_, node_id) => {
2531 2532
                for rib in ribs {
                    match rib.kind {
2533
                        NormalRibKind | ModuleRibKind(..) | MacroDefinition(..) => {
2534 2535 2536 2537
                            // Nothing to do. Continue.
                        }
                        ClosureRibKind(function_id) => {
                            let prev_def = def;
2538
                            let node_def_id = self.definitions.local_def_id(node_id);
2539

C
corentih 已提交
2540 2541 2542
                            let seen = self.freevars_seen
                                           .entry(function_id)
                                           .or_insert_with(|| NodeMap());
2543
                            if let Some(&index) = seen.get(&node_id) {
2544
                                def = Def::Upvar(node_def_id, node_id, index, function_id);
2545 2546
                                continue;
                            }
C
corentih 已提交
2547 2548 2549
                            let vec = self.freevars
                                          .entry(function_id)
                                          .or_insert_with(|| vec![]);
2550
                            let depth = vec.len();
C
corentih 已提交
2551 2552 2553 2554
                            vec.push(Freevar {
                                def: prev_def,
                                span: span,
                            });
2555

2556
                            def = Def::Upvar(node_def_id, node_id, depth, function_id);
2557 2558
                            seen.insert(node_id, depth);
                        }
2559
                        ItemRibKind | MethodRibKind(_) => {
2560 2561 2562
                            // This was an attempt to access an upvar inside a
                            // named function item. This is not allowed, so we
                            // report an error.
C
corentih 已提交
2563 2564 2565
                            resolve_error(self,
                                          span,
                                          ResolutionError::CannotCaptureDynamicEnvironmentInFnItem);
2566 2567 2568 2569
                            return None;
                        }
                        ConstantItemRibKind => {
                            // Still doesn't deal with upvars
C
corentih 已提交
2570 2571 2572
                            resolve_error(self,
                                          span,
                                          ResolutionError::AttemptToUseNonConstantValueInConstant);
2573 2574 2575 2576 2577
                            return None;
                        }
                    }
                }
            }
2578
            Def::TyParam(..) | Def::SelfTy(..) => {
2579 2580
                for rib in ribs {
                    match rib.kind {
2581
                        NormalRibKind | MethodRibKind(_) | ClosureRibKind(..) |
2582
                        ModuleRibKind(..) | MacroDefinition(..) => {
2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604
                            // Nothing to do. Continue.
                        }
                        ItemRibKind => {
                            // This was an attempt to use a type parameter outside
                            // its scope.

                            resolve_error(self,
                                          span,
                                          ResolutionError::TypeParametersFromOuterFunction);
                            return None;
                        }
                        ConstantItemRibKind => {
                            // see #9186
                            resolve_error(self, span, ResolutionError::OuterTypeParameterContext);
                            return None;
                        }
                    }
                }
            }
            _ => {}
        }
        return Some(def);
2605 2606
    }

2607
    // resolve a "module-relative" path, e.g. a::b::c
F
Felix S. Klock II 已提交
2608
    fn resolve_module_relative_path(&mut self,
2609
                                    span: Span,
2610
                                    segments: &[ast::PathSegment],
2611
                                    namespace: Namespace)
2612 2613
                                    -> Result<&'a NameBinding<'a>,
                                              bool /* true if an error was reported */> {
C
corentih 已提交
2614 2615 2616 2617 2618 2619
        let module_path = segments.split_last()
                                  .unwrap()
                                  .1
                                  .iter()
                                  .map(|ps| ps.identifier.name)
                                  .collect::<Vec<_>>();
2620

2621
        let containing_module;
2622
        match self.resolve_module_path(&module_path, UseLexicalScope, span) {
2623 2624 2625 2626
            Failed(err) => {
                let (span, msg) = match err {
                    Some((span, msg)) => (span, msg),
                    None => {
2627
                        let msg = format!("Use of undeclared type or module `{}`",
2628
                                          names_to_string(&module_path));
2629
                        (span, msg)
2630 2631
                    }
                };
2632

J
Jonas Schievink 已提交
2633
                resolve_error(self, span, ResolutionError::FailedToResolve(&msg));
2634
                return Err(true);
2635
            }
2636
            Indeterminate => return Err(false),
J
Jeffrey Seyfried 已提交
2637
            Success(resulting_module) => {
2638 2639 2640 2641
                containing_module = resulting_module;
            }
        }

2642
        let name = segments.last().unwrap().identifier.name;
2643
        let result = self.resolve_name_in_module(containing_module, name, namespace, false, true);
2644
        result.success().map(|binding| {
2645
            self.check_privacy(name, binding, span);
2646
            binding
2647
        }).ok_or(false)
2648 2649
    }

2650 2651
    /// Invariant: This must be called only during main resolution, not during
    /// import resolution.
2652 2653 2654 2655 2656 2657
    fn resolve_crate_relative_path<T>(&mut self, span: Span, segments: &[T], namespace: Namespace)
                                      -> Result<&'a NameBinding<'a>,
                                                bool /* true if an error was reported */>
        where T: Named,
    {
        let module_path = segments.split_last().unwrap().1.iter().map(T::name).collect::<Vec<_>>();
2658
        let root_module = self.graph_root;
2659

2660
        let containing_module;
2661
        match self.resolve_module_path_from_root(root_module,
2662
                                                 &module_path,
2663
                                                 0,
J
Jeffrey Seyfried 已提交
2664
                                                 span) {
2665 2666 2667 2668 2669
            Failed(err) => {
                let (span, msg) = match err {
                    Some((span, msg)) => (span, msg),
                    None => {
                        let msg = format!("Use of undeclared module `::{}`",
2670
                                          names_to_string(&module_path));
2671
                        (span, msg)
2672 2673 2674
                    }
                };

J
Jonas Schievink 已提交
2675
                resolve_error(self, span, ResolutionError::FailedToResolve(&msg));
2676
                return Err(true);
2677 2678
            }

2679
            Indeterminate => return Err(false),
2680

J
Jeffrey Seyfried 已提交
2681
            Success(resulting_module) => {
2682 2683 2684 2685
                containing_module = resulting_module;
            }
        }

2686
        let name = segments.last().unwrap().name();
J
Jeffrey Seyfried 已提交
2687
        let result = self.resolve_name_in_module(containing_module, name, namespace, false, true);
2688
        result.success().map(|binding| {
2689
            self.check_privacy(name, binding, span);
2690
            binding
2691
        }).ok_or(false)
2692 2693
    }

C
corentih 已提交
2694 2695
    fn with_no_errors<T, F>(&mut self, f: F) -> T
        where F: FnOnce(&mut Resolver) -> T
J
Jorge Aparicio 已提交
2696
    {
2697
        self.emit_errors = false;
A
Alex Crichton 已提交
2698
        let rs = f(self);
2699 2700 2701 2702
        self.emit_errors = true;
        rs
    }

2703 2704
    // Calls `f` with a `Resolver` whose current lexical scope is `module`'s lexical scope,
    // i.e. the module's items and the prelude (unless the module is `#[no_implicit_prelude]`).
J
Jeffrey Seyfried 已提交
2705
    // FIXME #34673: This needs testing.
2706 2707 2708 2709 2710 2711 2712 2713 2714 2715 2716 2717 2718 2719 2720 2721 2722 2723 2724 2725 2726 2727 2728 2729 2730
    pub fn with_module_lexical_scope<T, F>(&mut self, module: Module<'a>, f: F) -> T
        where F: FnOnce(&mut Resolver<'a>) -> T,
    {
        self.with_empty_ribs(|this| {
            this.value_ribs.push(Rib::new(ModuleRibKind(module)));
            this.type_ribs.push(Rib::new(ModuleRibKind(module)));
            f(this)
        })
    }

    fn with_empty_ribs<T, F>(&mut self, f: F) -> T
        where F: FnOnce(&mut Resolver<'a>) -> T,
    {
        use ::std::mem::replace;
        let value_ribs = replace(&mut self.value_ribs, Vec::new());
        let type_ribs = replace(&mut self.type_ribs, Vec::new());
        let label_ribs = replace(&mut self.label_ribs, Vec::new());

        let result = f(self);
        self.value_ribs = value_ribs;
        self.type_ribs = type_ribs;
        self.label_ribs = label_ribs;
        result
    }

2731
    fn find_fallback_in_self_type(&mut self, name: Name) -> FallbackSuggestion {
2732
        fn extract_node_id(t: &Ty) -> Option<NodeId> {
2733
            match t.node {
2734 2735
                TyKind::Path(None, _) => Some(t.id),
                TyKind::Rptr(_, ref mut_ty) => extract_node_id(&mut_ty.ty),
2736 2737 2738 2739 2740 2741 2742
                // This doesn't handle the remaining `Ty` variants as they are not
                // that commonly the self_type, it might be interesting to provide
                // support for those in future.
                _ => None,
            }
        }

2743
        if let Some(node_id) = self.current_self_type.as_ref().and_then(extract_node_id) {
2744
            // Look for a field with the same name in the current self_type.
2745 2746 2747 2748 2749 2750 2751 2752
            if let Some(resolution) = self.def_map.get(&node_id) {
                match resolution.base_def {
                    Def::Enum(did) | Def::TyAlias(did) |
                    Def::Struct(did) | Def::Variant(_, did) if resolution.depth == 0 => {
                        if let Some(fields) = self.structs.get(&did) {
                            if fields.iter().any(|&field_name| name == field_name) {
                                return Field;
                            }
2753
                        }
2754
                    }
2755 2756
                    _ => {}
                }
2757
            }
2758 2759 2760
        }

        // Look for a method in the current trait.
2761
        if let Some((trait_did, ref trait_ref)) = self.current_trait_ref {
2762 2763
            if let Some(&is_static_method) = self.trait_item_map.get(&(name, trait_did)) {
                if is_static_method {
2764
                    return TraitMethod(path_names_to_string(&trait_ref.path, 0));
2765 2766
                } else {
                    return TraitItem;
2767 2768 2769 2770 2771 2772 2773
                }
            }
        }

        NoSuggestion
    }

2774
    fn find_best_match(&mut self, name: &str) -> SuggestionType {
2775
        if let Some(macro_name) = self.session.available_macros
2776
                                  .borrow().iter().find(|n| n.as_str() == name) {
2777 2778 2779
            return SuggestionType::Macro(format!("{}!", macro_name));
        }

2780 2781 2782
        let names = self.value_ribs
                    .iter()
                    .rev()
2783
                    .flat_map(|rib| rib.bindings.keys().map(|ident| &ident.name));
2784

2785
        if let Some(found) = find_best_match_for_name(names, name, None) {
J
Jonas Schievink 已提交
2786
            if name != found {
2787
                return SuggestionType::Function(found);
2788
            }
2789
        } SuggestionType::NotFound
2790 2791
    }

2792 2793
    fn resolve_labeled_block(&mut self, label: Option<ast::Ident>, id: NodeId, block: &Block) {
        if let Some(label) = label {
2794
            let def = Def::Label(id);
2795 2796 2797 2798 2799 2800 2801 2802 2803
            self.with_label_rib(|this| {
                this.label_ribs.last_mut().unwrap().bindings.insert(label, def);
                this.visit_block(block);
            });
        } else {
            self.visit_block(block);
        }
    }

2804
    fn resolve_expr(&mut self, expr: &Expr, parent: Option<&Expr>) {
P
Patrick Walton 已提交
2805 2806
        // First, record candidate traits for this expression if it could
        // result in the invocation of a method call.
2807 2808 2809

        self.record_candidate_traits_for_expr_if_necessary(expr);

2810
        // Next, resolve the node.
2811
        match expr.node {
2812
            ExprKind::Path(ref maybe_qself, ref path) => {
2813 2814
                // This is a local path in the value namespace. Walk through
                // scopes looking for it.
2815 2816
                if let Some(path_res) = self.resolve_possibly_assoc_item(expr.id,
                                                            maybe_qself.as_ref(), path, ValueNS) {
2817
                    // Check if struct variant
2818
                    let is_struct_variant = if let Def::Variant(_, variant_id) = path_res.base_def {
2819 2820 2821 2822 2823 2824
                        self.structs.contains_key(&variant_id)
                    } else {
                        false
                    };
                    if is_struct_variant {
                        let _ = self.structs.contains_key(&path_res.base_def.def_id());
2825
                        let path_name = path_names_to_string(path, 0);
2826

N
Nick Cameron 已提交
2827 2828
                        let mut err = resolve_struct_error(self,
                                        expr.span,
J
Jonas Schievink 已提交
2829
                                        ResolutionError::StructVariantUsedAsFunction(&path_name));
2830

C
corentih 已提交
2831
                        let msg = format!("did you mean to write: `{} {{ /* fields */ }}`?",
2832 2833
                                          path_name);
                        if self.emit_errors {
2834
                            err.help(&msg);
2835
                        } else {
N
Nick Cameron 已提交
2836
                            err.span_help(expr.span, &msg);
2837
                        }
N
Nick Cameron 已提交
2838
                        err.emit();
2839
                        self.record_def(expr.id, err_path_resolution());
2840
                    } else {
2841
                        // Write the result into the def map.
2842
                        debug!("(resolving expr) resolved `{}`",
2843
                               path_names_to_string(path, 0));
2844

2845 2846
                        // Partial resolutions will need the set of traits in scope,
                        // so they can be completed during typeck.
2847
                        if path_res.depth != 0 {
2848
                            let method_name = path.segments.last().unwrap().identifier.name;
2849
                            let traits = self.get_traits_containing_item(method_name);
2850 2851 2852
                            self.trait_map.insert(expr.id, traits);
                        }

2853
                        self.record_def(expr.id, path_res);
2854
                    }
2855 2856 2857 2858 2859
                } else {
                    // Be helpful if the name refers to a struct
                    // (The pattern matching def_tys where the id is in self.structs
                    // matches on regular structs while excluding tuple- and enum-like
                    // structs, which wouldn't result in this error.)
2860
                    let path_name = path_names_to_string(path, 0);
2861
                    let type_res = self.with_no_errors(|this| {
J
Jeffrey Seyfried 已提交
2862
                        this.resolve_path(expr.id, path, 0, TypeNS)
2863
                    });
2864 2865

                    self.record_def(expr.id, err_path_resolution());
2866

2867
                    if let Ok(Def::Struct(..)) = type_res.map(|r| r.base_def) {
J
Jeffrey Seyfried 已提交
2868 2869
                        let error_variant =
                            ResolutionError::StructVariantUsedAsFunction(&path_name);
2870 2871 2872 2873 2874 2875
                        let mut err = resolve_struct_error(self, expr.span, error_variant);

                        let msg = format!("did you mean to write: `{} {{ /* fields */ }}`?",
                                          path_name);

                        if self.emit_errors {
2876
                            err.help(&msg);
2877 2878 2879 2880 2881 2882 2883 2884 2885
                        } else {
                            err.span_help(expr.span, &msg);
                        }
                        err.emit();
                    } else {
                        // Keep reporting some errors even if they're ignored above.
                        if let Err(true) = self.resolve_path(expr.id, path, 0, ValueNS) {
                            // `resolve_path` already reported the error
                        } else {
2886
                            let mut method_scope = false;
2887
                            let mut is_static = false;
2888 2889
                            self.value_ribs.iter().rev().all(|rib| {
                                method_scope = match rib.kind {
2890 2891 2892 2893
                                    MethodRibKind(is_static_) => {
                                        is_static = is_static_;
                                        true
                                    }
2894 2895 2896 2897 2898
                                    ItemRibKind | ConstantItemRibKind => false,
                                    _ => return true, // Keep advancing
                                };
                                false // Stop advancing
                            });
2899

2900
                            if method_scope &&
2901
                                    &path_name[..] == keywords::SelfValue.name().as_str() {
C
corentih 已提交
2902 2903 2904
                                resolve_error(self,
                                              expr.span,
                                              ResolutionError::SelfNotAvailableInStaticMethod);
2905 2906
                            } else {
                                let last_name = path.segments.last().unwrap().identifier.name;
2907 2908
                                let (mut msg, is_field) =
                                    match self.find_fallback_in_self_type(last_name) {
2909 2910 2911
                                    NoSuggestion => {
                                        // limit search to 5 to reduce the number
                                        // of stupid suggestions
2912
                                        (match self.find_best_match(&path_name) {
2913 2914 2915 2916 2917
                                            SuggestionType::Macro(s) => {
                                                format!("the macro `{}`", s)
                                            }
                                            SuggestionType::Function(s) => format!("`{}`", s),
                                            SuggestionType::NotFound => "".to_string(),
2918 2919 2920 2921 2922 2923 2924 2925
                                        }, false)
                                    }
                                    Field => {
                                        (if is_static && method_scope {
                                            "".to_string()
                                        } else {
                                            format!("`self.{}`", path_name)
                                        }, true)
2926
                                    }
2927
                                    TraitItem => (format!("to call `self.{}`", path_name), false),
2928
                                    TraitMethod(path_str) =>
2929
                                        (format!("to call `{}::{}`", path_str, path_name), false),
2930 2931
                                };

2932
                                let mut context =  UnresolvedNameContext::Other;
G
ggomez 已提交
2933
                                let mut def = Def::Err;
2934
                                if !msg.is_empty() {
2935 2936
                                    msg = format!(". Did you mean {}?", msg);
                                } else {
2937
                                    // we display a help message if this is a module
2938 2939 2940 2941
                                    let name_path = path.segments.iter()
                                                        .map(|seg| seg.identifier.name)
                                                        .collect::<Vec<_>>();

2942
                                    match self.resolve_module_path(&name_path[..],
J
Jeffrey Seyfried 已提交
2943 2944
                                                                   UseLexicalScope,
                                                                   expr.span) {
G
ggomez 已提交
2945 2946 2947 2948
                                        Success(e) => {
                                            if let Some(def_type) = e.def {
                                                def = def_type;
                                            }
2949
                                            context = UnresolvedNameContext::PathIsMod(parent);
2950 2951 2952
                                        },
                                        _ => {},
                                    };
2953
                                }
2954

2955 2956
                                resolve_error(self,
                                              expr.span,
2957 2958 2959 2960 2961 2962
                                              ResolutionError::UnresolvedName {
                                                  path: &path_name,
                                                  message: &msg,
                                                  context: context,
                                                  is_static_method: method_scope && is_static,
                                                  is_field: is_field,
G
ggomez 已提交
2963
                                                  def: def,
2964
                                              });
2965
                            }
V
Vincent Belliard 已提交
2966
                        }
2967 2968 2969
                    }
                }

2970
                visit::walk_expr(self, expr);
2971 2972
            }

2973
            ExprKind::Struct(ref path, _, _) => {
2974 2975 2976
                // Resolve the path to the structure it goes to. We don't
                // check to ensure that the path is actually a structure; that
                // is checked later during typeck.
J
Jeffrey Seyfried 已提交
2977
                match self.resolve_path(expr.id, path, 0, TypeNS) {
2978 2979 2980
                    Ok(definition) => self.record_def(expr.id, definition),
                    Err(true) => self.record_def(expr.id, err_path_resolution()),
                    Err(false) => {
2981
                        debug!("(resolving expression) didn't find struct def",);
2982

2983 2984
                        resolve_error(self,
                                      path.span,
2985
                                      ResolutionError::DoesNotNameAStruct(
J
Jonas Schievink 已提交
2986
                                                                &path_names_to_string(path, 0))
2987
                                     );
2988
                        self.record_def(expr.id, err_path_resolution());
2989 2990 2991
                    }
                }

2992
                visit::walk_expr(self, expr);
2993 2994
            }

2995
            ExprKind::Loop(_, Some(label)) | ExprKind::While(_, _, Some(label)) => {
2996
                self.with_label_rib(|this| {
2997
                    let def = Def::Label(expr.id);
2998

2999
                    {
3000
                        let rib = this.label_ribs.last_mut().unwrap();
3001
                        rib.bindings.insert(label.node, def);
3002
                    }
3003

3004
                    visit::walk_expr(this, expr);
3005
                })
3006 3007
            }

3008
            ExprKind::Break(Some(label)) | ExprKind::Continue(Some(label)) => {
3009
                match self.search_label(label.node) {
3010
                    None => {
3011
                        self.record_def(expr.id, err_path_resolution());
3012
                        resolve_error(self,
3013 3014
                                      label.span,
                                      ResolutionError::UndeclaredLabel(&label.node.name.as_str()))
3015
                    }
3016
                    Some(def @ Def::Label(_)) => {
3017
                        // Since this def is a label, it is never read.
3018
                        self.record_def(expr.id, PathResolution::new(def))
3019 3020
                    }
                    Some(_) => {
3021
                        span_bug!(expr.span, "label wasn't mapped to a label def!")
3022 3023 3024
                    }
                }
            }
3025 3026 3027 3028 3029

            ExprKind::IfLet(ref pattern, ref subexpression, ref if_block, ref optional_else) => {
                self.visit_expr(subexpression);

                self.value_ribs.push(Rib::new(NormalRibKind));
3030
                self.resolve_pattern(pattern, PatternSource::IfLet, &mut HashMap::new());
3031 3032 3033 3034 3035 3036 3037 3038 3039
                self.visit_block(if_block);
                self.value_ribs.pop();

                optional_else.as_ref().map(|expr| self.visit_expr(expr));
            }

            ExprKind::WhileLet(ref pattern, ref subexpression, ref block, label) => {
                self.visit_expr(subexpression);
                self.value_ribs.push(Rib::new(NormalRibKind));
3040
                self.resolve_pattern(pattern, PatternSource::WhileLet, &mut HashMap::new());
3041

3042
                self.resolve_labeled_block(label.map(|l| l.node), expr.id, block);
3043 3044 3045 3046 3047 3048 3049

                self.value_ribs.pop();
            }

            ExprKind::ForLoop(ref pattern, ref subexpression, ref block, label) => {
                self.visit_expr(subexpression);
                self.value_ribs.push(Rib::new(NormalRibKind));
3050
                self.resolve_pattern(pattern, PatternSource::For, &mut HashMap::new());
3051

3052
                self.resolve_labeled_block(label.map(|l| l.node), expr.id, block);
3053 3054 3055 3056 3057

                self.value_ribs.pop();
            }

            ExprKind::Field(ref subexpression, _) => {
3058 3059
                self.resolve_expr(subexpression, Some(expr));
            }
3060
            ExprKind::MethodCall(_, ref types, ref arguments) => {
3061 3062 3063 3064 3065 3066 3067 3068 3069
                let mut arguments = arguments.iter();
                self.resolve_expr(arguments.next().unwrap(), Some(expr));
                for argument in arguments {
                    self.resolve_expr(argument, None);
                }
                for ty in types.iter() {
                    self.visit_ty(ty);
                }
            }
3070

B
Brian Anderson 已提交
3071
            _ => {
3072
                visit::walk_expr(self, expr);
3073 3074 3075 3076
            }
        }
    }

E
Eduard Burtescu 已提交
3077
    fn record_candidate_traits_for_expr_if_necessary(&mut self, expr: &Expr) {
3078
        match expr.node {
3079
            ExprKind::Field(_, name) => {
3080 3081 3082 3083
                // FIXME(#6890): Even though you can't treat a method like a
                // field, we need to add any trait methods we find that match
                // the field name so that we can do some nice error reporting
                // later on in typeck.
3084
                let traits = self.get_traits_containing_item(name.node.name);
3085
                self.trait_map.insert(expr.id, traits);
3086
            }
3087
            ExprKind::MethodCall(name, _, _) => {
C
corentih 已提交
3088
                debug!("(recording candidate traits for expr) recording traits for {}",
3089
                       expr.id);
3090
                let traits = self.get_traits_containing_item(name.node.name);
3091
                self.trait_map.insert(expr.id, traits);
3092
            }
3093
            _ => {
3094 3095 3096 3097 3098
                // Nothing to do.
            }
        }
    }

S
Seo Sanghyeon 已提交
3099
    fn get_traits_containing_item(&mut self, name: Name) -> Vec<TraitCandidate> {
C
corentih 已提交
3100
        debug!("(getting traits containing item) looking for '{}'", name);
E
Eduard Burtescu 已提交
3101

S
Seo Sanghyeon 已提交
3102 3103 3104 3105
        fn add_trait_info(found_traits: &mut Vec<TraitCandidate>,
                          trait_def_id: DefId,
                          import_id: Option<NodeId>,
                          name: Name) {
3106
            debug!("(adding trait info) found trait {:?} for method '{}'",
C
corentih 已提交
3107 3108
                   trait_def_id,
                   name);
S
Seo Sanghyeon 已提交
3109 3110 3111 3112
            found_traits.push(TraitCandidate {
                def_id: trait_def_id,
                import_id: import_id,
            });
E
Eduard Burtescu 已提交
3113
        }
3114

3115
        let mut found_traits = Vec::new();
J
Jeffrey Seyfried 已提交
3116 3117 3118
        // Look for the current trait.
        if let Some((trait_def_id, _)) = self.current_trait_ref {
            if self.trait_item_map.contains_key(&(name, trait_def_id)) {
S
Seo Sanghyeon 已提交
3119
                add_trait_info(&mut found_traits, trait_def_id, None, name);
E
Eduard Burtescu 已提交
3120
            }
J
Jeffrey Seyfried 已提交
3121
        }
3122

J
Jeffrey Seyfried 已提交
3123 3124
        let mut search_module = self.current_module;
        loop {
E
Eduard Burtescu 已提交
3125
            // Look for trait children.
3126
            let mut search_in_module = |this: &mut Self, module: Module<'a>| {
J
Jeffrey Seyfried 已提交
3127 3128 3129
                let mut traits = module.traits.borrow_mut();
                if traits.is_none() {
                    let mut collected_traits = Vec::new();
3130
                    module.for_each_child(|name, ns, binding| {
J
Jeffrey Seyfried 已提交
3131 3132
                        if ns != TypeNS { return }
                        if let Some(Def::Trait(_)) = binding.def() {
3133
                            collected_traits.push((name, binding));
J
Jeffrey Seyfried 已提交
3134 3135 3136
                        }
                    });
                    *traits = Some(collected_traits.into_boxed_slice());
3137
                }
J
Jeffrey Seyfried 已提交
3138

3139
                for &(trait_name, binding) in traits.as_ref().unwrap().iter() {
J
Jeffrey Seyfried 已提交
3140
                    let trait_def_id = binding.def().unwrap().def_id();
3141
                    if this.trait_item_map.contains_key(&(name, trait_def_id)) {
S
Seo Sanghyeon 已提交
3142 3143 3144
                        let mut import_id = None;
                        if let NameBindingKind::Import { directive, .. } = binding.kind {
                            let id = directive.id;
3145
                            this.maybe_unused_trait_imports.insert(id);
3146
                            this.add_to_glob_map(id, trait_name);
S
Seo Sanghyeon 已提交
3147 3148 3149
                            import_id = Some(id);
                        }
                        add_trait_info(&mut found_traits, trait_def_id, import_id, name);
J
Jeffrey Seyfried 已提交
3150 3151 3152
                    }
                }
            };
3153
            search_in_module(self, search_module);
3154

3155
            match search_module.parent_link {
3156
                NoParentLink | ModuleParentLink(..) => {
3157 3158 3159
                    if !search_module.no_implicit_prelude.get() {
                        self.prelude.map(|prelude| search_in_module(self, prelude));
                    }
3160 3161
                    break;
                }
E
Eduard Burtescu 已提交
3162
                BlockParentLink(parent_module, _) => {
3163
                    search_module = parent_module;
3164
                }
E
Eduard Burtescu 已提交
3165
            }
3166 3167
        }

E
Eduard Burtescu 已提交
3168
        found_traits
3169 3170
    }

3171 3172 3173 3174 3175 3176 3177 3178 3179 3180 3181 3182 3183 3184 3185 3186 3187 3188 3189 3190
    /// When name resolution fails, this method can be used to look up candidate
    /// entities with the expected name. It allows filtering them using the
    /// supplied predicate (which should be used to only accept the types of
    /// definitions expected e.g. traits). The lookup spans across all crates.
    ///
    /// NOTE: The method does not look into imports, but this is not a problem,
    /// since we report the definitions (thus, the de-aliased imports).
    fn lookup_candidates<FilterFn>(&mut self,
                                   lookup_name: Name,
                                   namespace: Namespace,
                                   filter_fn: FilterFn) -> SuggestedCandidates
        where FilterFn: Fn(Def) -> bool {

        let mut lookup_results = Vec::new();
        let mut worklist = Vec::new();
        worklist.push((self.graph_root, Vec::new(), false));

        while let Some((in_module,
                        path_segments,
                        in_module_is_extern)) = worklist.pop() {
3191
            self.populate_module_if_necessary(in_module);
3192 3193 3194 3195 3196 3197 3198 3199 3200 3201

            in_module.for_each_child(|name, ns, name_binding| {

                // avoid imports entirely
                if name_binding.is_import() { return; }

                // collect results based on the filter function
                if let Some(def) = name_binding.def() {
                    if name == lookup_name && ns == namespace && filter_fn(def) {
                        // create the path
3202
                        let ident = ast::Ident::with_empty_ctxt(name);
3203 3204 3205 3206 3207
                        let params = PathParameters::none();
                        let segment = PathSegment {
                            identifier: ident,
                            parameters: params,
                        };
3208
                        let span = name_binding.span;
3209 3210 3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221 3222
                        let mut segms = path_segments.clone();
                        segms.push(segment);
                        let path = Path {
                            span: span,
                            global: true,
                            segments: segms,
                        };
                        // the entity is accessible in the following cases:
                        // 1. if it's defined in the same crate, it's always
                        // accessible (since private entities can be made public)
                        // 2. if it's defined in another crate, it's accessible
                        // only if both the module is public and the entity is
                        // declared as public (due to pruning, we don't explore
                        // outside crate private modules => no need to check this)
3223
                        if !in_module_is_extern || name_binding.vis == ty::Visibility::Public {
3224 3225 3226 3227 3228 3229 3230 3231 3232 3233 3234 3235
                            lookup_results.push(path);
                        }
                    }
                }

                // collect submodules to explore
                if let Some(module) = name_binding.module() {
                    // form the path
                    let path_segments = match module.parent_link {
                        NoParentLink => path_segments.clone(),
                        ModuleParentLink(_, name) => {
                            let mut paths = path_segments.clone();
3236
                            let ident = ast::Ident::with_empty_ctxt(name);
3237 3238 3239 3240 3241 3242 3243 3244
                            let params = PathParameters::none();
                            let segm = PathSegment {
                                identifier: ident,
                                parameters: params,
                            };
                            paths.push(segm);
                            paths
                        }
3245
                        _ => bug!(),
3246 3247
                    };

3248
                    if !in_module_is_extern || name_binding.vis == ty::Visibility::Public {
3249
                        // add the module to the lookup
3250
                        let is_extern = in_module_is_extern || name_binding.is_extern_crate();
3251 3252 3253
                        if !worklist.iter().any(|&(m, _, _)| m.def == module.def) {
                            worklist.push((module, path_segments, is_extern));
                        }
3254 3255 3256 3257 3258 3259 3260 3261 3262 3263 3264
                    }
                }
            })
        }

        SuggestedCandidates {
            name: lookup_name.as_str().to_string(),
            candidates: lookup_results,
        }
    }

3265 3266
    fn record_def(&mut self, node_id: NodeId, resolution: PathResolution) {
        debug!("(recording def) recording {:?} for {}", resolution, node_id);
3267
        if let Some(prev_res) = self.def_map.insert(node_id, resolution) {
3268
            panic!("path resolved multiple times ({:?} before, {:?} now)", prev_res, resolution);
3269
        }
3270 3271
    }

3272
    fn resolve_visibility(&mut self, vis: &ast::Visibility) -> ty::Visibility {
3273
        let (path, id) = match *vis {
3274 3275 3276 3277
            ast::Visibility::Public => return ty::Visibility::Public,
            ast::Visibility::Crate(_) => return ty::Visibility::Restricted(ast::CRATE_NODE_ID),
            ast::Visibility::Restricted { ref path, id } => (path, id),
            ast::Visibility::Inherited => {
3278 3279
                let current_module =
                    self.get_nearest_normal_module_parent_or_self(self.current_module);
3280 3281
                let id =
                    self.definitions.as_local_node_id(current_module.def_id().unwrap()).unwrap();
3282 3283 3284 3285 3286
                return ty::Visibility::Restricted(id);
            }
        };

        let segments: Vec<_> = path.segments.iter().map(|seg| seg.identifier.name).collect();
3287
        let mut path_resolution = err_path_resolution();
3288 3289 3290
        let vis = match self.resolve_module_path(&segments, DontUseLexicalScope, path.span) {
            Success(module) => {
                let def = module.def.unwrap();
3291
                path_resolution = PathResolution::new(def);
3292
                ty::Visibility::Restricted(self.definitions.as_local_node_id(def.def_id()).unwrap())
3293 3294 3295 3296 3297 3298 3299 3300 3301 3302
            }
            Failed(Some((span, msg))) => {
                self.session.span_err(span, &format!("failed to resolve module path. {}", msg));
                ty::Visibility::Public
            }
            _ => {
                self.session.span_err(path.span, "unresolved module path");
                ty::Visibility::Public
            }
        };
3303
        self.def_map.insert(id, path_resolution);
3304 3305 3306 3307 3308 3309 3310
        if !self.is_accessible(vis) {
            let msg = format!("visibilities can only be restricted to ancestor modules");
            self.session.span_err(path.span, &msg);
        }
        vis
    }

3311 3312
    fn is_accessible(&self, vis: ty::Visibility) -> bool {
        let current_module = self.get_nearest_normal_module_parent_or_self(self.current_module);
3313
        let node_id = self.definitions.as_local_node_id(current_module.def_id().unwrap()).unwrap();
3314
        vis.is_accessible_from(node_id, self)
3315 3316
    }

3317 3318
    fn check_privacy(&mut self, name: Name, binding: &'a NameBinding<'a>, span: Span) {
        if !self.is_accessible(binding.vis) {
3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332 3333 3334 3335 3336 3337 3338
            self.privacy_errors.push(PrivacyError(span, name, binding));
        }
    }

    fn report_privacy_errors(&self) {
        if self.privacy_errors.len() == 0 { return }
        let mut reported_spans = HashSet::new();
        for &PrivacyError(span, name, binding) in &self.privacy_errors {
            if !reported_spans.insert(span) { continue }
            if binding.is_extern_crate() {
                // Warn when using an inaccessible extern crate.
                let node_id = binding.module().unwrap().extern_crate_id.unwrap();
                let msg = format!("extern crate `{}` is private", name);
                self.session.add_lint(lint::builtin::INACCESSIBLE_EXTERN_CRATE, node_id, span, msg);
            } else {
                let def = binding.def().unwrap();
                self.session.span_err(span, &format!("{} `{}` is private", def.kind_name(), name));
            }
        }
    }
3339

3340 3341 3342 3343 3344 3345 3346
    fn report_conflict(&self,
                       parent: Module,
                       name: Name,
                       ns: Namespace,
                       binding: &NameBinding,
                       old_binding: &NameBinding) {
        // Error on the second of two conflicting names
3347
        if old_binding.span.lo > binding.span.lo {
3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362
            return self.report_conflict(parent, name, ns, old_binding, binding);
        }

        let container = match parent.def {
            Some(Def::Mod(_)) => "module",
            Some(Def::Trait(_)) => "trait",
            None => "block",
            _ => "enum",
        };

        let (participle, noun) = match old_binding.is_import() || old_binding.is_extern_crate() {
            true => ("imported", "import"),
            false => ("defined", "definition"),
        };

3363
        let span = binding.span;
3364 3365 3366 3367 3368 3369 3370 3371 3372 3373 3374 3375 3376 3377
        let msg = {
            let kind = match (ns, old_binding.module()) {
                (ValueNS, _) => "a value",
                (TypeNS, Some(module)) if module.extern_crate_id.is_some() => "an extern crate",
                (TypeNS, Some(module)) if module.is_normal() => "a module",
                (TypeNS, Some(module)) if module.is_trait() => "a trait",
                (TypeNS, _) => "a type",
            };
            format!("{} named `{}` has already been {} in this {}",
                    kind, name, participle, container)
        };

        let mut err = match (old_binding.is_extern_crate(), binding.is_extern_crate()) {
            (true, true) => struct_span_err!(self.session, span, E0259, "{}", msg),
C
crypto-universe 已提交
3378 3379 3380 3381 3382
            (true, _) | (_, true) if binding.is_import() || old_binding.is_import() => {
                let mut e = struct_span_err!(self.session, span, E0254, "{}", msg);
                e.span_label(span, &"already imported");
                e
            },
3383 3384 3385
            (true, _) | (_, true) => struct_span_err!(self.session, span, E0260, "{}", msg),
            _ => match (old_binding.is_import(), binding.is_import()) {
                (false, false) => struct_span_err!(self.session, span, E0428, "{}", msg),
A
Adam Medziński 已提交
3386 3387 3388 3389 3390
                (true, true) => {
                    let mut e = struct_span_err!(self.session, span, E0252, "{}", msg);
                    e.span_label(span, &format!("already imported"));
                    e
                },
3391
                _ => {
3392 3393 3394
                    let mut e = struct_span_err!(self.session, span, E0255, "{}", msg);
                    e.span_label(span, &format!("`{}` was already imported", name));
                    e
3395
                }
3396 3397 3398
            },
        };

3399
        if old_binding.span != syntax_pos::DUMMY_SP {
3400
            err.span_label(old_binding.span, &format!("previous {} of `{}` here", noun, name));
3401 3402 3403 3404
        }
        err.emit();
    }
}
3405 3406 3407 3408 3409 3410 3411 3412 3413 3414

fn names_to_string(names: &[Name]) -> String {
    let mut first = true;
    let mut result = String::new();
    for name in names {
        if first {
            first = false
        } else {
            result.push_str("::")
        }
3415
        result.push_str(&name.as_str());
C
corentih 已提交
3416
    }
3417 3418 3419 3420
    result
}

fn path_names_to_string(path: &Path, depth: usize) -> String {
C
corentih 已提交
3421
    let names: Vec<ast::Name> = path.segments[..path.segments.len() - depth]
3422 3423 3424 3425 3426 3427
                                    .iter()
                                    .map(|seg| seg.identifier.name)
                                    .collect();
    names_to_string(&names[..])
}

3428 3429 3430 3431 3432 3433 3434 3435 3436 3437 3438 3439 3440 3441 3442 3443 3444 3445 3446 3447 3448 3449 3450
/// When an entity with a given name is not available in scope, we search for
/// entities with that name in all crates. This method allows outputting the
/// results of this search in a programmer-friendly way
fn show_candidates(session: &mut DiagnosticBuilder,
                   candidates: &SuggestedCandidates) {

    let paths = &candidates.candidates;

    if paths.len() > 0 {
        // don't show more than MAX_CANDIDATES results, so
        // we're consistent with the trait suggestions
        const MAX_CANDIDATES: usize = 5;

        // we want consistent results across executions, but candidates are produced
        // by iterating through a hash map, so make sure they are ordered:
        let mut path_strings: Vec<_> = paths.into_iter()
                                            .map(|p| path_names_to_string(&p, 0))
                                            .collect();
        path_strings.sort();

        // behave differently based on how many candidates we have:
        if !paths.is_empty() {
            if paths.len() == 1 {
3451
                session.help(
T
tiehuis 已提交
3452
                    &format!("you can import it into scope: `use {};`.",
3453 3454 3455
                        &path_strings[0]),
                );
            } else {
3456
                session.help("you can import several candidates \
3457 3458 3459 3460 3461
                    into scope (`use ...;`):");
                let count = path_strings.len() as isize - MAX_CANDIDATES as isize + 1;

                for (idx, path_string) in path_strings.iter().enumerate() {
                    if idx == MAX_CANDIDATES - 1 && count > 1 {
3462
                        session.help(
3463 3464 3465 3466
                            &format!("  and {} other candidates", count).to_string(),
                        );
                        break;
                    } else {
3467
                        session.help(
3468 3469 3470 3471 3472 3473 3474 3475
                            &format!("  `{}`", path_string).to_string(),
                        );
                    }
                }
            }
        }
    } else {
        // nothing found:
3476
        session.help(
3477 3478 3479 3480 3481 3482 3483
            &format!("no candidates by the name of `{}` found in your \
            project; maybe you misspelled the name or forgot to import \
            an external crate?", candidates.name.to_string()),
        );
    };
}

3484
/// A somewhat inefficient routine to obtain the name of a module.
3485
fn module_to_string(module: Module) -> String {
3486 3487
    let mut names = Vec::new();

3488
    fn collect_mod(names: &mut Vec<ast::Name>, module: Module) {
3489 3490 3491 3492
        match module.parent_link {
            NoParentLink => {}
            ModuleParentLink(ref module, name) => {
                names.push(name);
3493
                collect_mod(names, module);
3494 3495 3496
            }
            BlockParentLink(ref module, _) => {
                // danger, shouldn't be ident?
3497
                names.push(token::intern("<opaque>"));
3498
                collect_mod(names, module);
3499 3500 3501 3502 3503
            }
        }
    }
    collect_mod(&mut names, module);

3504
    if names.is_empty() {
3505 3506 3507 3508 3509
        return "???".to_string();
    }
    names_to_string(&names.into_iter().rev().collect::<Vec<ast::Name>>())
}

3510
fn err_path_resolution() -> PathResolution {
3511
    PathResolution::new(Def::Err)
3512 3513
}

N
Niko Matsakis 已提交
3514
#[derive(PartialEq,Copy, Clone)]
3515 3516
pub enum MakeGlobMap {
    Yes,
C
corentih 已提交
3517
    No,
3518 3519
}

3520
__build_diagnostic_array! { librustc_resolve, DIAGNOSTICS }