lib.rs 141.2 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::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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            let mut err = struct_span_err!(resolver.session,
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                             span,
                             E0437,
                             "type `{}` is not a member of trait `{}`",
                             type_,
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                             trait_);
            err.span_label(span, &format!("not a member of trait `Foo`"));
            err
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        }
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        ResolutionError::ConstNotMemberOfTrait(const_, trait_) => {
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            let mut err = struct_span_err!(resolver.session,
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                             span,
                             E0438,
                             "const `{}` is not a member of trait `{}`",
                             const_,
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                             trait_);
            err.span_label(span, &format!("not a member of trait `Foo`"));
            err
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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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            let mut err = struct_span_err!(resolver.session,
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                             span,
                             E0423,
                             "`{}` is the name of a struct or struct variant, but this expression \
                             uses it like a function name",
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                             path_name);
            err.span_label(span, &format!("struct called like a function"));
            err
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        }
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        ResolutionError::SelfNotAvailableInStaticMethod => {
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            let mut err = struct_span_err!(resolver.session,
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                             span,
                             E0424,
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                             "`self` is not available in a static method");
            err.span_label(span, &format!("not available in static method"));
            err.note(&format!("maybe a `self` argument is missing?"));
            err
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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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            let mut err = struct_span_err!(resolver.session,
                                           span,
                                           E0426,
                                           "use of undeclared label `{}`",
                                           name);
            err.span_label(span, &format!("undeclared label `{}`",&name));
            err
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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, _)) => format!("unresolved import `{}`", n),
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                None => "unresolved import".to_owned(),
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            };
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            let mut err = struct_span_err!(resolver.session, span, E0432, "{}", msg);
            if let Some((_, p)) = name {
                err.span_label(span, &p);
            }
            err
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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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            let mut err = struct_span_err!(resolver.session,
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                             span,
                             E0435,
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                             "attempt to use a non-constant value in a constant");
            err.span_label(span, &format!("non-constant used with constant"));
            err
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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 {
495
    span: Span,
496
    binding_mode: BindingMode,
497 498 499
}

// Map from the name in a pattern to its binding mode.
500
type BindingMap = FnvHashMap<ast::Ident, BindingInfo>;
501

502 503 504 505 506 507 508 509 510 511 512 513 514 515 516 517 518 519 520 521 522 523 524 525 526 527 528
#[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",
        }
    }
529 530
}

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Niko Matsakis 已提交
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#[derive(Copy, Clone, PartialEq, Eq, Hash, Debug)]
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Garming Sam 已提交
532
pub enum Namespace {
533
    TypeNS,
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    ValueNS,
535 536
}

537
impl<'a> Visitor for Resolver<'a> {
538
    fn visit_item(&mut self, item: &Item) {
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Alex Crichton 已提交
539
        self.resolve_item(item);
540
    }
541
    fn visit_arm(&mut self, arm: &Arm) {
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Alex Crichton 已提交
542
        self.resolve_arm(arm);
543
    }
544
    fn visit_block(&mut self, block: &Block) {
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Alex Crichton 已提交
545
        self.resolve_block(block);
546
    }
547
    fn visit_expr(&mut self, expr: &Expr) {
548
        self.resolve_expr(expr, None);
549
    }
550
    fn visit_local(&mut self, local: &Local) {
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Alex Crichton 已提交
551
        self.resolve_local(local);
552
    }
553
    fn visit_ty(&mut self, ty: &Ty) {
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554
        self.resolve_type(ty);
555
    }
556
    fn visit_poly_trait_ref(&mut self, tref: &ast::PolyTraitRef, m: &ast::TraitBoundModifier) {
557 558
        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
561
                self.record_def(tref.trait_ref.ref_id, err_path_resolution())
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            }
563
        }
564
        visit::walk_poly_trait_ref(self, tref, m);
565
    }
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    fn visit_variant(&mut self,
567
                     variant: &ast::Variant,
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                     generics: &Generics,
                     item_id: ast::NodeId) {
570 571 572
        if let Some(ref dis_expr) = variant.node.disr_expr {
            // resolve the discriminator expr as a constant
            self.with_constant_rib(|this| {
573
                this.visit_expr(dis_expr);
574 575 576
            });
        }

577
        // `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);
583
    }
584
    fn visit_foreign_item(&mut self, foreign_item: &ForeignItem) {
585
        let type_parameters = match foreign_item.node {
586
            ForeignItemKind::Fn(_, ref generics) => {
587
                HasTypeParameters(generics, ItemRibKind)
588
            }
589
            ForeignItemKind::Static(..) => NoTypeParameters,
590 591
        };
        self.with_type_parameter_rib(type_parameters, |this| {
592
            visit::walk_foreign_item(this, foreign_item);
593 594 595
        });
    }
    fn visit_fn(&mut self,
596 597 598
                function_kind: FnKind,
                declaration: &FnDecl,
                block: &Block,
599 600 601
                _: Span,
                node_id: NodeId) {
        let rib_kind = match function_kind {
602
            FnKind::ItemFn(_, generics, _, _, _, _) => {
603 604 605
                self.visit_generics(generics);
                ItemRibKind
            }
606
            FnKind::Method(_, sig, _) => {
607
                self.visit_generics(&sig.generics);
V
Vadim Petrochenkov 已提交
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                MethodRibKind(!sig.decl.has_self())
609
            }
610
            FnKind::Closure => ClosureRibKind(node_id),
611 612 613
        };
        self.resolve_function(rib_kind, declaration, block);
    }
614
}
615

616
pub type ErrorMessage = Option<(Span, String)>;
617

618
#[derive(Clone, PartialEq, Eq)]
619
pub enum ResolveResult<T> {
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620 621 622
    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.
623 624
}

625
impl<T> ResolveResult<T> {
626 627 628 629 630
    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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        }
632
    }
633 634 635 636 637 638 639

    fn success(self) -> Option<T> {
        match self {
            Success(t) => Some(t),
            _ => None,
        }
    }
640 641
}

642 643 644
enum FallbackSuggestion {
    NoSuggestion,
    Field,
645
    TraitItem,
646
    TraitMethod(String),
647 648
}

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649
#[derive(Copy, Clone)]
650
enum TypeParameters<'a, 'b> {
651
    NoTypeParameters,
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652
    HasTypeParameters(// Type parameters.
653
                      &'b Generics,
654

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655
                      // The kind of the rib used for type parameters.
656
                      RibKind<'a>),
657 658
}

659
// The rib kind controls the translation of local
660
// definitions (`Def::Local`) to upvars (`Def::Upvar`).
N
Niko Matsakis 已提交
661
#[derive(Copy, Clone, Debug)]
662
enum RibKind<'a> {
663 664
    // No translation needs to be applied.
    NormalRibKind,
665

666 667
    // We passed through a closure scope at the given node ID.
    // Translate upvars as appropriate.
668
    ClosureRibKind(NodeId /* func id */),
669

670
    // We passed through an impl or trait and are now in one of its
671
    // methods. Allow references to ty params that impl or trait
672 673
    // binds. Disallow any other upvars (including other ty params that are
    // upvars).
674 675 676
    //
    // The boolean value represents the fact that this method is static or not.
    MethodRibKind(bool),
677

678 679
    // We passed through an item scope. Disallow upvars.
    ItemRibKind,
680 681

    // We're in a constant item. Can't refer to dynamic stuff.
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    ConstantItemRibKind,
683

684 685
    // We passed through a module.
    ModuleRibKind(Module<'a>),
686 687

    // We passed through a `macro_rules!` statement with the given expansion
688
    MacroDefinition(Mark),
689 690
}

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Niko Matsakis 已提交
691
#[derive(Copy, Clone)]
F
Felix S. Klock II 已提交
692
enum UseLexicalScopeFlag {
693
    DontUseLexicalScope,
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694
    UseLexicalScope,
695 696
}

697
enum ModulePrefixResult<'a> {
698
    NoPrefixFound,
699
    PrefixFound(Module<'a>, usize),
700 701
}

702
/// One local scope.
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Jorge Aparicio 已提交
703
#[derive(Debug)]
704
struct Rib<'a> {
705
    bindings: FnvHashMap<ast::Ident, Def>,
706
    kind: RibKind<'a>,
B
Brian Anderson 已提交
707
}
708

709 710
impl<'a> Rib<'a> {
    fn new(kind: RibKind<'a>) -> Rib<'a> {
711
        Rib {
712
            bindings: FnvHashMap(),
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713
            kind: kind,
714
        }
715 716 717
    }
}

718 719 720
/// A definition along with the index of the rib it was found on
struct LocalDef {
    ribs: Option<(Namespace, usize)>,
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721
    def: Def,
722 723 724 725 726 727
}

impl LocalDef {
    fn from_def(def: Def) -> Self {
        LocalDef {
            ribs: None,
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            def: def,
729 730 731 732
        }
    }
}

733 734 735 736 737
enum LexicalScopeBinding<'a> {
    Item(&'a NameBinding<'a>),
    LocalDef(LocalDef),
}

738 739 740 741 742 743 744 745
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()),
        }
    }

746
    fn item(self) -> Option<&'a NameBinding<'a>> {
747
        match self {
748
            LexicalScopeBinding::Item(binding) => Some(binding),
749 750 751
            _ => None,
        }
    }
752 753 754 755

    fn module(self) -> Option<Module<'a>> {
        self.item().and_then(NameBinding::module)
    }
756 757
}

758
/// The link from a module up to its nearest parent node.
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Jorge Aparicio 已提交
759
#[derive(Clone,Debug)]
760
enum ParentLink<'a> {
761
    NoParentLink,
762 763
    ModuleParentLink(Module<'a>, Name),
    BlockParentLink(Module<'a>, NodeId),
764 765
}

766
/// One node in the tree of modules.
767 768
pub struct ModuleS<'a> {
    parent_link: ParentLink<'a>,
J
Jeffrey Seyfried 已提交
769
    def: Option<Def>,
770

771 772 773
    // 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>,
774

775
    resolutions: RefCell<FnvHashMap<(Name, Namespace), &'a RefCell<NameResolution<'a>>>>,
776

777
    no_implicit_prelude: Cell<bool>,
778

779
    glob_importers: RefCell<Vec<&'a ImportDirective<'a>>>,
780
    globs: RefCell<Vec<&'a ImportDirective<'a>>>,
781

J
Jeffrey Seyfried 已提交
782
    // Used to memoize the traits in this module for faster searches through all traits in scope.
783
    traits: RefCell<Option<Box<[(Name, &'a NameBinding<'a>)]>>>,
J
Jeffrey Seyfried 已提交
784

785 786 787
    // Whether this module is populated. If not populated, any attempt to
    // access the children must be preceded with a
    // `populate_module_if_necessary` call.
788
    populated: Cell<bool>,
789 790
}

791 792 793
pub type Module<'a> = &'a ModuleS<'a>;

impl<'a> ModuleS<'a> {
794
    fn new(parent_link: ParentLink<'a>, def: Option<Def>, external: bool) -> Self {
795
        ModuleS {
796
            parent_link: parent_link,
J
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797
            def: def,
798
            extern_crate_id: None,
799
            resolutions: RefCell::new(FnvHashMap()),
800
            no_implicit_prelude: Cell::new(false),
801
            glob_importers: RefCell::new(Vec::new()),
802
            globs: RefCell::new((Vec::new())),
J
Jeffrey Seyfried 已提交
803
            traits: RefCell::new(None),
804
            populated: Cell::new(!external),
805
        }
B
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806 807
    }

808
    fn for_each_child<F: FnMut(Name, Namespace, &'a NameBinding<'a>)>(&self, mut f: F) {
809
        for (&(name, ns), name_resolution) in self.resolutions.borrow().iter() {
810
            name_resolution.borrow().binding.map(|binding| f(name, ns, binding));
811 812 813
        }
    }

814
    fn def_id(&self) -> Option<DefId> {
J
Jeffrey Seyfried 已提交
815
        self.def.as_ref().map(Def::def_id)
816 817
    }

818
    // `self` resolves to the first module ancestor that `is_normal`.
819
    fn is_normal(&self) -> bool {
J
Jeffrey Seyfried 已提交
820
        match self.def {
821
            Some(Def::Mod(_)) => true,
822 823 824 825 826
            _ => false,
        }
    }

    fn is_trait(&self) -> bool {
J
Jeffrey Seyfried 已提交
827
        match self.def {
828
            Some(Def::Trait(_)) => true,
829
            _ => false,
830
        }
B
Brian Anderson 已提交
831
    }
V
Victor Berger 已提交
832 833
}

834
impl<'a> fmt::Debug for ModuleS<'a> {
835
    fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
836
        write!(f, "{:?}", self.def)
837 838 839
    }
}

840
// Records a possibly-private value, type, or module definition.
841
#[derive(Clone, Debug)]
842
pub struct NameBinding<'a> {
843
    kind: NameBindingKind<'a>,
844
    span: Span,
845
    vis: ty::Visibility,
846 847
}

848 849 850 851 852 853 854 855 856 857
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
    }
}

858
#[derive(Clone, Debug)]
859
enum NameBindingKind<'a> {
860
    Def(Def),
861
    Module(Module<'a>),
862 863
    Import {
        binding: &'a NameBinding<'a>,
864
        directive: &'a ImportDirective<'a>,
865
    },
866 867
}

868 869 870
#[derive(Clone, Debug)]
struct PrivacyError<'a>(Span, Name, &'a NameBinding<'a>);

871
impl<'a> NameBinding<'a> {
872
    fn module(&self) -> Option<Module<'a>> {
873 874 875 876
        match self.kind {
            NameBindingKind::Module(module) => Some(module),
            NameBindingKind::Def(_) => None,
            NameBindingKind::Import { binding, .. } => binding.module(),
877 878 879
        }
    }

880
    fn def(&self) -> Option<Def> {
881 882 883 884
        match self.kind {
            NameBindingKind::Def(def) => Some(def),
            NameBindingKind::Module(module) => module.def,
            NameBindingKind::Import { binding, .. } => binding.def(),
885
        }
886
    }
887

888 889 890 891 892 893 894 895 896 897
    // 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,
        }
898 899
    }

900
    fn is_extern_crate(&self) -> bool {
901
        self.module().and_then(|module| module.extern_crate_id).is_some()
902
    }
903 904 905 906 907 908 909

    fn is_import(&self) -> bool {
        match self.kind {
            NameBindingKind::Import { .. } => true,
            _ => false,
        }
    }
910 911 912 913 914 915 916 917 918 919 920 921 922 923

    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,
        }
    }
924 925
}

926
/// Interns the names of the primitive types.
F
Felix S. Klock II 已提交
927
struct PrimitiveTypeTable {
928
    primitive_types: FnvHashMap<Name, PrimTy>,
929
}
930

931
impl PrimitiveTypeTable {
K
Kevin Butler 已提交
932
    fn new() -> PrimitiveTypeTable {
933
        let mut table = PrimitiveTypeTable { primitive_types: FnvHashMap() };
C
corentih 已提交
934 935 936

        table.intern("bool", TyBool);
        table.intern("char", TyChar);
937 938
        table.intern("f32", TyFloat(FloatTy::F32));
        table.intern("f64", TyFloat(FloatTy::F64));
939 940 941 942 943
        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));
C
corentih 已提交
944
        table.intern("str", TyStr);
945 946 947 948 949
        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
950 951 952 953

        table
    }

954
    fn intern(&mut self, string: &str, primitive_type: PrimTy) {
955
        self.primitive_types.insert(token::intern(string), primitive_type);
956 957 958
    }
}

959
/// The main resolver class.
960
pub struct Resolver<'a> {
E
Eduard Burtescu 已提交
961
    session: &'a Session,
962

963
    pub definitions: Definitions,
964

965 966
    // Maps the node id of a statement to the expansions of the `macro_rules!`s
    // immediately above the statement (if appropriate).
967
    macros_at_scope: FnvHashMap<NodeId, Vec<Mark>>,
968

969
    graph_root: Module<'a>,
970

971 972
    prelude: Option<Module<'a>>,

973
    trait_item_map: FnvHashMap<(Name, DefId), bool /* is static method? */>,
974

975
    structs: FnvHashMap<DefId, Vec<Name>>,
976

977 978 979 980
    // All imports known to succeed or fail.
    determined_imports: Vec<&'a ImportDirective<'a>>,

    // All non-determined imports.
981
    indeterminate_imports: Vec<&'a ImportDirective<'a>>,
982 983

    // The module that represents the current item scope.
984
    current_module: Module<'a>,
985

986 987 988 989
    // The visibility of `pub(self)` items in the current scope.
    // Equivalently, the visibility required for an item to be accessible from the current scope.
    current_vis: ty::Visibility,

990
    // The current set of local scopes, for values.
991
    // FIXME #4948: Reuse ribs to avoid allocation.
992
    value_ribs: Vec<Rib<'a>>,
993 994

    // The current set of local scopes, for types.
995
    type_ribs: Vec<Rib<'a>>,
996

997
    // The current set of local scopes, for labels.
998
    label_ribs: Vec<Rib<'a>>,
999

1000
    // The trait that the current context can refer to.
1001 1002 1003 1004
    current_trait_ref: Option<(DefId, TraitRef)>,

    // The current self type if inside an impl (used for better errors).
    current_self_type: Option<Ty>,
1005

1006
    // The idents for the primitive types.
E
Eduard Burtescu 已提交
1007
    primitive_type_table: PrimitiveTypeTable,
1008

1009 1010
    pub def_map: DefMap,
    pub freevars: FreevarMap,
1011
    freevars_seen: NodeMap<NodeMap<usize>>,
1012 1013
    pub export_map: ExportMap,
    pub trait_map: TraitMap,
1014

1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028
    // 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`.
1029
    module_map: NodeMap<Module<'a>>,
1030

1031 1032 1033 1034 1035
    // 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,

1036
    pub make_glob_map: bool,
1037 1038
    // Maps imports to the names of items actually imported (this actually maps
    // all imports, but only glob imports are actually interesting).
1039
    pub glob_map: GlobMap,
1040

1041 1042
    used_imports: FnvHashSet<(NodeId, Namespace)>,
    used_crates: FnvHashSet<CrateNum>,
1043
    pub maybe_unused_trait_imports: NodeSet,
G
Garming Sam 已提交
1044

1045
    privacy_errors: Vec<PrivacyError<'a>>,
1046 1047 1048 1049

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

1050
pub struct ResolverArenas<'a> {
1051
    modules: arena::TypedArena<ModuleS<'a>>,
1052
    local_modules: RefCell<Vec<Module<'a>>>,
1053
    name_bindings: arena::TypedArena<NameBinding<'a>>,
1054
    import_directives: arena::TypedArena<ImportDirective<'a>>,
1055
    name_resolutions: arena::TypedArena<RefCell<NameResolution<'a>>>,
1056 1057 1058
}

impl<'a> ResolverArenas<'a> {
1059
    fn alloc_module(&'a self, module: ModuleS<'a>) -> Module<'a> {
1060 1061 1062 1063 1064 1065 1066 1067
        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()
1068 1069 1070 1071
    }
    fn alloc_name_binding(&'a self, name_binding: NameBinding<'a>) -> &'a NameBinding<'a> {
        self.name_bindings.alloc(name_binding)
    }
1072 1073
    fn alloc_import_directive(&'a self, import_directive: ImportDirective<'a>)
                              -> &'a ImportDirective {
1074 1075
        self.import_directives.alloc(import_directive)
    }
1076 1077 1078
    fn alloc_name_resolution(&'a self) -> &'a RefCell<NameResolution<'a>> {
        self.name_resolutions.alloc(Default::default())
    }
1079 1080
}

1081
impl<'a> ty::NodeIdTree for Resolver<'a> {
1082
    fn is_descendant_of(&self, node: NodeId, ancestor: NodeId) -> bool {
1083
        let ancestor = self.definitions.local_def_id(ancestor);
1084
        let mut module = *self.module_map.get(&node).unwrap();
J
Jeffrey Seyfried 已提交
1085
        while module.def_id() != Some(ancestor) {
1086 1087 1088 1089 1090 1091
            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
1092
        true
1093 1094 1095
    }
}

1096 1097 1098 1099 1100 1101 1102 1103 1104
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 =
1105 1106 1107 1108 1109
                    ResolutionError::UnresolvedName {
                        path: path_name,
                        message: "",
                        context: UnresolvedNameContext::Other,
                        is_static_method: false,
G
ggomez 已提交
1110 1111
                        is_field: false,
                        def: Def::Err,
1112
                    };
1113 1114 1115 1116 1117 1118
                resolve_error(self, path.span, error);
                Def::Err
            }
        }
    }

1119 1120 1121 1122
    fn get_resolution(&mut self, id: NodeId) -> Option<PathResolution> {
        self.def_map.get(&id).cloned()
    }

1123
    fn record_resolution(&mut self, id: NodeId, def: Def) {
1124
        self.def_map.insert(id, PathResolution::new(def));
1125
    }
1126 1127

    fn definitions(&mut self) -> Option<&mut Definitions> {
1128
        Some(&mut self.definitions)
1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143
    }
}

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
1144
        self.name
1145 1146 1147
    }
}

1148
impl<'a> Resolver<'a> {
1149
    pub fn new(session: &'a Session, make_glob_map: MakeGlobMap, arenas: &'a ResolverArenas<'a>)
1150
               -> Resolver<'a> {
1151
        let root_def_id = DefId::local(CRATE_DEF_INDEX);
1152
        let graph_root =
1153
            ModuleS::new(NoParentLink, Some(Def::Mod(root_def_id)), false);
1154
        let graph_root = arenas.alloc_module(graph_root);
1155 1156
        let mut module_map = NodeMap();
        module_map.insert(CRATE_NODE_ID, graph_root);
K
Kevin Butler 已提交
1157 1158 1159 1160

        Resolver {
            session: session,

1161
            definitions: Definitions::new(),
1162
            macros_at_scope: FnvHashMap(),
1163

K
Kevin Butler 已提交
1164 1165
            // The outermost module has def ID 0; this is not reflected in the
            // AST.
1166
            graph_root: graph_root,
1167
            prelude: None,
K
Kevin Butler 已提交
1168

1169 1170
            trait_item_map: FnvHashMap(),
            structs: FnvHashMap(),
K
Kevin Butler 已提交
1171

1172
            determined_imports: Vec::new(),
1173
            indeterminate_imports: Vec::new(),
K
Kevin Butler 已提交
1174

1175
            current_module: graph_root,
1176
            current_vis: ty::Visibility::Restricted(ast::CRATE_NODE_ID),
1177 1178
            value_ribs: vec![Rib::new(ModuleRibKind(graph_root))],
            type_ribs: vec![Rib::new(ModuleRibKind(graph_root))],
1179
            label_ribs: Vec::new(),
K
Kevin Butler 已提交
1180 1181 1182 1183 1184 1185

            current_trait_ref: None,
            current_self_type: None,

            primitive_type_table: PrimitiveTypeTable::new(),

1186
            def_map: NodeMap(),
1187 1188
            freevars: NodeMap(),
            freevars_seen: NodeMap(),
1189 1190
            export_map: NodeMap(),
            trait_map: NodeMap(),
1191
            module_map: module_map,
K
Kevin Butler 已提交
1192 1193

            emit_errors: true,
1194
            make_glob_map: make_glob_map == MakeGlobMap::Yes,
1195
            glob_map: NodeMap(),
G
Garming Sam 已提交
1196

1197 1198
            used_imports: FnvHashSet(),
            used_crates: FnvHashSet(),
S
Seo Sanghyeon 已提交
1199 1200
            maybe_unused_trait_imports: NodeSet(),

1201
            privacy_errors: Vec::new(),
1202 1203 1204 1205 1206

            arenas: arenas,
        }
    }

1207
    pub fn arenas() -> ResolverArenas<'a> {
1208 1209
        ResolverArenas {
            modules: arena::TypedArena::new(),
1210
            local_modules: RefCell::new(Vec::new()),
1211
            name_bindings: arena::TypedArena::new(),
1212
            import_directives: arena::TypedArena::new(),
1213
            name_resolutions: arena::TypedArena::new(),
K
Kevin Butler 已提交
1214 1215
        }
    }
1216

1217 1218 1219
    /// Entry point to crate resolution.
    pub fn resolve_crate(&mut self, krate: &Crate) {
        self.current_module = self.graph_root;
1220
        self.current_vis = ty::Visibility::Restricted(ast::CRATE_NODE_ID);
1221 1222 1223 1224 1225 1226
        visit::walk_crate(self, krate);

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

1227 1228
    fn new_module(&self, parent_link: ParentLink<'a>, def: Option<Def>, external: bool)
                  -> Module<'a> {
1229
        self.arenas.alloc_module(ModuleS::new(parent_link, def, external))
1230 1231
    }

1232
    fn new_extern_crate_module(&self, parent_link: ParentLink<'a>, def: Def, local_node_id: NodeId)
1233
                               -> Module<'a> {
1234
        let mut module = ModuleS::new(parent_link, Some(def), false);
1235
        module.extern_crate_id = Some(local_node_id);
1236 1237 1238
        self.arenas.modules.alloc(module)
    }

1239 1240 1241 1242
    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 }
    }

1243
    fn record_use(&mut self, name: Name, ns: Namespace, binding: &'a NameBinding<'a>) {
1244 1245 1246 1247 1248
        // 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);
        }

1249 1250 1251
        if let NameBindingKind::Import { directive, .. } = binding.kind {
            self.used_imports.insert((directive.id, ns));
            self.add_to_glob_map(directive.id, name);
1252
        }
1253
    }
1254

1255 1256 1257 1258
    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);
        }
1259 1260
    }

1261
    /// Resolves the given module path from the given root `search_module`.
F
Felix S. Klock II 已提交
1262
    fn resolve_module_path_from_root(&mut self,
1263
                                     mut search_module: Module<'a>,
1264
                                     module_path: &[Name],
1265
                                     index: usize,
1266
                                     span: Option<Span>)
J
Jeffrey Seyfried 已提交
1267
                                     -> ResolveResult<Module<'a>> {
1268 1269
        fn search_parent_externals<'a>(this: &mut Resolver<'a>, needle: Name, module: Module<'a>)
                                       -> Option<Module<'a>> {
1270
            match this.resolve_name_in_module(module, needle, TypeNS, false, None) {
1271
                Success(binding) if binding.is_extern_crate() => Some(module),
1272
                _ => match module.parent_link {
1273
                    ModuleParentLink(ref parent, _) => {
1274
                        search_parent_externals(this, needle, parent)
1275
                    }
C
corentih 已提交
1276 1277
                    _ => None,
                },
1278
            }
1279 1280
        }

1281
        let mut index = index;
A
Alex Crichton 已提交
1282
        let module_path_len = module_path.len();
1283 1284 1285 1286 1287

        // 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
1288
            let name = module_path[index];
1289
            match self.resolve_name_in_module(search_module, name, TypeNS, false, span) {
1290
                Failed(None) => {
1291
                    let segment_name = name.as_str();
1292
                    let module_name = module_to_string(search_module);
1293
                    let msg = if "???" == &module_name {
1294 1295
                        let current_module = self.current_module;
                        match search_parent_externals(self, name, current_module) {
1296
                            Some(module) => {
1297
                                let path_str = names_to_string(module_path);
J
Jonas Schievink 已提交
1298
                                let target_mod_str = module_to_string(&module);
1299
                                let current_mod_str = module_to_string(current_module);
1300 1301 1302 1303 1304 1305 1306

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

1307
                                format!("Did you mean `{}{}`?", prefix, path_str)
C
corentih 已提交
1308 1309
                            }
                            None => format!("Maybe a missing `extern crate {}`?", segment_name),
1310
                        }
1311
                    } else {
C
corentih 已提交
1312
                        format!("Could not find `{}` in `{}`", segment_name, module_name)
1313
                    };
1314

1315
                    return Failed(span.map(|span| (span, msg)));
1316
                }
1317
                Failed(err) => return Failed(err),
B
Brian Anderson 已提交
1318
                Indeterminate => {
C
corentih 已提交
1319 1320 1321
                    debug!("(resolving module path for import) module resolution is \
                            indeterminate: {}",
                           name);
B
Brian Anderson 已提交
1322
                    return Indeterminate;
1323
                }
1324
                Success(binding) => {
1325 1326
                    // Check to see whether there are type bindings, and, if
                    // so, whether there is a module within.
J
Jeffrey Seyfried 已提交
1327
                    if let Some(module_def) = binding.module() {
1328 1329 1330
                        search_module = module_def;
                    } else {
                        let msg = format!("Not a module `{}`", name);
1331
                        return Failed(span.map(|span| (span, msg)));
1332 1333 1334 1335
                    }
                }
            }

T
Tim Chevalier 已提交
1336
            index += 1;
1337 1338
        }

J
Jeffrey Seyfried 已提交
1339
        return Success(search_module);
1340 1341
    }

1342 1343
    /// 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
1344
    fn resolve_module_path(&mut self,
1345
                           module_path: &[Name],
1346
                           use_lexical_scope: UseLexicalScopeFlag,
1347
                           span: Option<Span>)
J
Jeffrey Seyfried 已提交
1348
                           -> ResolveResult<Module<'a>> {
1349
        if module_path.len() == 0 {
J
Jeffrey Seyfried 已提交
1350
            return Success(self.graph_root) // Use the crate root
1351
        }
1352

1353
        debug!("(resolving module path for import) processing `{}` rooted at `{}`",
1354
               names_to_string(module_path),
1355
               module_to_string(self.current_module));
1356

1357
        // Resolve the module prefix, if any.
1358
        let module_prefix_result = self.resolve_module_prefix(module_path, span);
1359

1360 1361
        let search_module;
        let start_index;
1362
        match module_prefix_result {
1363
            Failed(err) => return Failed(err),
B
Brian Anderson 已提交
1364
            Indeterminate => {
C
corentih 已提交
1365
                debug!("(resolving module path for import) indeterminate; bailing");
B
Brian Anderson 已提交
1366
                return Indeterminate;
1367
            }
1368 1369 1370 1371 1372 1373 1374 1375
            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.
1376
                        search_module = self.graph_root;
1377 1378 1379 1380 1381 1382
                        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.
1383
                        let ident = ast::Ident::with_empty_ctxt(module_path[0]);
1384
                        match self.resolve_ident_in_lexical_scope(ident, TypeNS, span)
1385 1386 1387 1388 1389
                                  .and_then(LexicalScopeBinding::module) {
                            None => return Failed(None),
                            Some(containing_module) => {
                                search_module = containing_module;
                                start_index = 1;
1390 1391 1392 1393 1394
                            }
                        }
                    }
                }
            }
E
Eduard Burtescu 已提交
1395
            Success(PrefixFound(ref containing_module, index)) => {
1396
                search_module = containing_module;
1397
                start_index = index;
1398 1399 1400
            }
        }

1401
        self.resolve_module_path_from_root(search_module, module_path, start_index, span)
1402 1403
    }

1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417
    /// 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.
    /// }
    /// ```
1418
    ///
1419 1420
    /// Invariant: This must only be called during main resolution, not during
    /// import resolution.
1421
    fn resolve_ident_in_lexical_scope(&mut self,
1422
                                      mut ident: ast::Ident,
1423
                                      ns: Namespace,
1424
                                      record_used: Option<Span>)
1425
                                      -> Option<LexicalScopeBinding<'a>> {
1426 1427 1428
        if ns == TypeNS {
            ident = ast::Ident::with_empty_ctxt(ident.name);
        }
1429

1430
        // Walk backwards up the ribs in scope.
1431
        for i in (0 .. self.get_ribs(ns).len()).rev() {
1432
            if let Some(def) = self.get_ribs(ns)[i].bindings.get(&ident).cloned() {
1433 1434 1435 1436 1437
                // The ident resolves to a type parameter or local variable.
                return Some(LexicalScopeBinding::LocalDef(LocalDef {
                    ribs: Some((ns, i)),
                    def: def,
                }));
1438 1439
            }

1440
            if let ModuleRibKind(module) = self.get_ribs(ns)[i].kind {
1441
                let name = ident.name;
1442 1443 1444 1445
                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));
1446
                }
1447

1448
                // We can only see through anonymous modules
1449
                if module.def.is_some() {
1450 1451
                    return match self.prelude {
                        Some(prelude) if !module.no_implicit_prelude.get() => {
1452
                            self.resolve_name_in_module(prelude, name, ns, false, None).success()
1453
                                .map(LexicalScopeBinding::Item)
1454 1455 1456
                        }
                        _ => None,
                    };
1457
                }
1458
            }
1459 1460 1461 1462

            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.
1463 1464 1465
                let (source_ctxt, source_macro) = ident.ctxt.source();
                if source_macro == mac {
                    ident.ctxt = source_ctxt;
1466 1467
                }
            }
1468
        }
1469

1470 1471 1472
        None
    }

1473
    /// Returns the nearest normal module parent of the given module.
1474
    fn get_nearest_normal_module_parent(&self, mut module: Module<'a>) -> Option<Module<'a>> {
1475
        loop {
1476
            match module.parent_link {
1477 1478 1479
                NoParentLink => return None,
                ModuleParentLink(new_module, _) |
                BlockParentLink(new_module, _) => {
1480
                    let new_module = new_module;
1481 1482
                    if new_module.is_normal() {
                        return Some(new_module);
1483
                    }
1484
                    module = new_module;
1485 1486 1487 1488 1489
                }
            }
        }
    }

1490 1491
    /// Returns the nearest normal module parent of the given module, or the
    /// module itself if it is a normal module.
1492 1493 1494
    fn get_nearest_normal_module_parent_or_self(&self, module: Module<'a>) -> Module<'a> {
        if module.is_normal() {
            return module;
1495
        }
1496 1497
        match self.get_nearest_normal_module_parent(module) {
            None => module,
1498
            Some(new_module) => new_module,
1499 1500 1501
        }
    }

1502
    /// Resolves a "module prefix". A module prefix is one or both of (a) `self::`;
1503
    /// (b) some chain of `super::`.
1504
    /// grammar: (SELF MOD_SEP ) ? (SUPER MOD_SEP) *
1505
    fn resolve_module_prefix(&mut self, module_path: &[Name], span: Option<Span>)
1506
                             -> ResolveResult<ModulePrefixResult<'a>> {
1507 1508
        // Start at the current module if we see `self` or `super`, or at the
        // top of the crate otherwise.
1509 1510 1511 1512 1513
        let mut i = match &*module_path[0].as_str() {
            "self" => 1,
            "super" => 0,
            _ => return Success(NoPrefixFound),
        };
1514 1515
        let mut containing_module =
            self.get_nearest_normal_module_parent_or_self(self.current_module);
1516 1517

        // Now loop through all the `super`s we find.
1518
        while i < module_path.len() && "super" == module_path[i].as_str() {
1519
            debug!("(resolving module prefix) resolving `super` at {}",
J
Jonas Schievink 已提交
1520
                   module_to_string(&containing_module));
1521
            match self.get_nearest_normal_module_parent(containing_module) {
1522 1523
                None => {
                    let msg = "There are too many initial `super`s.".into();
1524
                    return Failed(span.map(|span| (span, msg)));
1525
                }
1526 1527 1528
                Some(new_module) => {
                    containing_module = new_module;
                    i += 1;
1529 1530 1531 1532
                }
            }
        }

1533
        debug!("(resolving module prefix) finished resolving prefix at {}",
J
Jonas Schievink 已提交
1534
               module_to_string(&containing_module));
1535 1536

        return Success(PrefixFound(containing_module, i));
1537 1538
    }

1539 1540
    // AST resolution
    //
1541
    // We maintain a list of value ribs and type ribs.
1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556
    //
    // 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.

1557
    fn with_scope<F>(&mut self, id: NodeId, f: F)
C
corentih 已提交
1558
        where F: FnOnce(&mut Resolver)
J
Jorge Aparicio 已提交
1559
    {
1560 1561
        let module = self.module_map.get(&id).cloned(); // clones a reference
        if let Some(module) = module {
1562
            // Move down in the graph.
1563 1564
            let orig_module = replace(&mut self.current_module, module);
            let orig_vis = replace(&mut self.current_vis, ty::Visibility::Restricted(id));
1565 1566
            self.value_ribs.push(Rib::new(ModuleRibKind(module)));
            self.type_ribs.push(Rib::new(ModuleRibKind(module)));
1567

1568
            f(self);
1569

1570
            self.current_module = orig_module;
1571
            self.current_vis = orig_vis;
1572 1573 1574 1575 1576
            self.value_ribs.pop();
            self.type_ribs.pop();
        } else {
            f(self);
        }
1577 1578
    }

S
Seo Sanghyeon 已提交
1579 1580
    /// Searches the current set of local scopes for labels.
    /// Stops after meeting a closure.
1581
    fn search_label(&self, mut ident: ast::Ident) -> Option<Def> {
1582 1583 1584 1585 1586
        for rib in self.label_ribs.iter().rev() {
            match rib.kind {
                NormalRibKind => {
                    // Continue
                }
1587 1588 1589
                MacroDefinition(mac) => {
                    // If an invocation of this macro created `ident`, give up on `ident`
                    // and switch to `ident`'s source from the macro definition.
1590 1591 1592
                    let (source_ctxt, source_macro) = ident.ctxt.source();
                    if source_macro == mac {
                        ident.ctxt = source_ctxt;
1593 1594
                    }
                }
1595 1596
                _ => {
                    // Do not resolve labels across function boundary
C
corentih 已提交
1597
                    return None;
1598 1599
                }
            }
1600
            let result = rib.bindings.get(&ident).cloned();
S
Seo Sanghyeon 已提交
1601
            if result.is_some() {
C
corentih 已提交
1602
                return result;
1603 1604 1605 1606 1607
            }
        }
        None
    }

1608
    fn resolve_item(&mut self, item: &Item) {
1609
        let name = item.ident.name;
1610

C
corentih 已提交
1611
        debug!("(resolving item) resolving {}", name);
1612

1613
        match item.node {
1614 1615
            ItemKind::Enum(_, ref generics) |
            ItemKind::Ty(_, ref generics) |
1616
            ItemKind::Struct(_, ref generics) |
1617
            ItemKind::Union(_, ref generics) |
1618
            ItemKind::Fn(_, _, _, _, ref generics, _) => {
1619
                self.with_type_parameter_rib(HasTypeParameters(generics, ItemRibKind),
1620
                                             |this| visit::walk_item(this, item));
1621 1622
            }

1623
            ItemKind::DefaultImpl(_, ref trait_ref) => {
1624
                self.with_optional_trait_ref(Some(trait_ref), |_, _| {});
1625
            }
1626
            ItemKind::Impl(_, _, ref generics, ref opt_trait_ref, ref self_type, ref impl_items) =>
1627
                self.resolve_implementation(generics,
1628
                                            opt_trait_ref,
J
Jonas Schievink 已提交
1629
                                            &self_type,
1630
                                            item.id,
1631
                                            impl_items),
1632

1633
            ItemKind::Trait(_, ref generics, ref bounds, ref trait_items) => {
1634
                // Create a new rib for the trait-wide type parameters.
1635
                self.with_type_parameter_rib(HasTypeParameters(generics, ItemRibKind), |this| {
1636
                    let local_def_id = this.definitions.local_def_id(item.id);
1637
                    this.with_self_rib(Def::SelfTy(Some(local_def_id), None), |this| {
1638
                        this.visit_generics(generics);
1639
                        walk_list!(this, visit_ty_param_bound, bounds);
1640 1641

                        for trait_item in trait_items {
1642
                            match trait_item.node {
1643
                                TraitItemKind::Const(_, ref default) => {
1644 1645 1646 1647 1648
                                    // 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| {
1649
                                            visit::walk_trait_item(this, trait_item)
1650 1651
                                        });
                                    } else {
1652
                                        visit::walk_trait_item(this, trait_item)
1653 1654
                                    }
                                }
1655
                                TraitItemKind::Method(ref sig, _) => {
1656 1657
                                    let type_parameters =
                                        HasTypeParameters(&sig.generics,
V
Vadim Petrochenkov 已提交
1658
                                                          MethodRibKind(!sig.decl.has_self()));
1659
                                    this.with_type_parameter_rib(type_parameters, |this| {
1660
                                        visit::walk_trait_item(this, trait_item)
1661
                                    });
1662
                                }
1663
                                TraitItemKind::Type(..) => {
1664
                                    this.with_type_parameter_rib(NoTypeParameters, |this| {
1665
                                        visit::walk_trait_item(this, trait_item)
1666
                                    });
1667
                                }
1668
                                TraitItemKind::Macro(_) => panic!("unexpanded macro in resolve!"),
1669 1670 1671
                            };
                        }
                    });
1672
                });
1673 1674
            }

1675
            ItemKind::Mod(_) | ItemKind::ForeignMod(_) => {
1676
                self.with_scope(item.id, |this| {
1677
                    visit::walk_item(this, item);
1678
                });
1679 1680
            }

1681
            ItemKind::Const(..) | ItemKind::Static(..) => {
A
Alex Crichton 已提交
1682
                self.with_constant_rib(|this| {
1683
                    visit::walk_item(this, item);
1684
                });
1685
            }
1686

1687
            ItemKind::Use(ref view_path) => {
1688
                match view_path.node {
1689
                    ast::ViewPathList(ref prefix, ref items) => {
1690 1691 1692 1693 1694
                        // 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) {
1695 1696
                                Ok(binding) => {
                                    let def = binding.def().unwrap();
1697
                                    self.record_def(item.id, PathResolution::new(def));
1698
                                }
1699 1700
                                Err(true) => self.record_def(item.id, err_path_resolution()),
                                Err(false) => {
1701 1702 1703 1704
                                    resolve_error(self,
                                                  prefix.span,
                                                  ResolutionError::FailedToResolve(
                                                      &path_names_to_string(prefix, 0)));
1705
                                    self.record_def(item.id, err_path_resolution());
1706
                                }
1707 1708 1709 1710
                            }
                        }
                    }
                    _ => {}
W
we 已提交
1711 1712 1713
                }
            }

1714
            ItemKind::ExternCrate(_) => {
1715
                // do nothing, these are just around to be encoded
1716
            }
1717 1718

            ItemKind::Mac(_) => panic!("unexpanded macro in resolve!"),
1719 1720 1721
        }
    }

1722
    fn with_type_parameter_rib<'b, F>(&'b mut self, type_parameters: TypeParameters<'a, 'b>, f: F)
C
corentih 已提交
1723
        where F: FnOnce(&mut Resolver)
J
Jorge Aparicio 已提交
1724
    {
1725
        match type_parameters {
1726
            HasTypeParameters(generics, rib_kind) => {
1727
                let mut function_type_rib = Rib::new(rib_kind);
1728
                let mut seen_bindings = FnvHashMap();
1729
                for type_parameter in &generics.ty_params {
1730
                    let name = type_parameter.ident.name;
1731
                    debug!("with_type_parameter_rib: {}", type_parameter.id);
1732

C
Chris Stankus 已提交
1733 1734
                    if seen_bindings.contains_key(&name) {
                        let span = seen_bindings.get(&name).unwrap();
1735 1736
                        resolve_error(self,
                                      type_parameter.span,
C
Chris Stankus 已提交
1737 1738
                                      ResolutionError::NameAlreadyUsedInTypeParameterList(name,
                                                                                          span));
1739
                    }
C
Chris Stankus 已提交
1740
                    seen_bindings.entry(name).or_insert(type_parameter.span);
1741

1742
                    // plain insert (no renaming)
1743
                    let def_id = self.definitions.local_def_id(type_parameter.id);
1744
                    let def = Def::TyParam(def_id);
1745
                    function_type_rib.bindings.insert(ast::Ident::with_empty_ctxt(name), def);
1746
                    self.record_def(type_parameter.id, PathResolution::new(def));
1747
                }
1748
                self.type_ribs.push(function_type_rib);
1749 1750
            }

B
Brian Anderson 已提交
1751
            NoTypeParameters => {
1752 1753 1754 1755
                // Nothing to do.
            }
        }

A
Alex Crichton 已提交
1756
        f(self);
1757

J
Jeffrey Seyfried 已提交
1758 1759
        if let HasTypeParameters(..) = type_parameters {
            self.type_ribs.pop();
1760 1761 1762
        }
    }

C
corentih 已提交
1763 1764
    fn with_label_rib<F>(&mut self, f: F)
        where F: FnOnce(&mut Resolver)
J
Jorge Aparicio 已提交
1765
    {
1766
        self.label_ribs.push(Rib::new(NormalRibKind));
A
Alex Crichton 已提交
1767
        f(self);
J
Jeffrey Seyfried 已提交
1768
        self.label_ribs.pop();
1769
    }
1770

C
corentih 已提交
1771 1772
    fn with_constant_rib<F>(&mut self, f: F)
        where F: FnOnce(&mut Resolver)
J
Jorge Aparicio 已提交
1773
    {
1774 1775
        self.value_ribs.push(Rib::new(ConstantItemRibKind));
        self.type_ribs.push(Rib::new(ConstantItemRibKind));
A
Alex Crichton 已提交
1776
        f(self);
J
Jeffrey Seyfried 已提交
1777 1778
        self.type_ribs.pop();
        self.value_ribs.pop();
1779 1780
    }

1781 1782 1783 1784
    fn resolve_function(&mut self,
                        rib_kind: RibKind<'a>,
                        declaration: &FnDecl,
                        block: &Block) {
1785
        // Create a value rib for the function.
1786
        self.value_ribs.push(Rib::new(rib_kind));
1787

1788
        // Create a label rib for the function.
1789
        self.label_ribs.push(Rib::new(rib_kind));
1790

1791
        // Add each argument to the rib.
1792
        let mut bindings_list = FnvHashMap();
1793
        for argument in &declaration.inputs {
1794
            self.resolve_pattern(&argument.pat, PatternSource::FnParam, &mut bindings_list);
1795

J
Jonas Schievink 已提交
1796
            self.visit_ty(&argument.ty);
1797

1798 1799
            debug!("(resolving function) recorded argument");
        }
1800
        visit::walk_fn_ret_ty(self, &declaration.output);
1801

1802
        // Resolve the function body.
1803
        self.visit_block(block);
1804

1805
        debug!("(resolving function) leaving function");
1806

J
Jeffrey Seyfried 已提交
1807 1808
        self.label_ribs.pop();
        self.value_ribs.pop();
1809 1810
    }

F
Felix S. Klock II 已提交
1811
    fn resolve_trait_reference(&mut self,
N
Nick Cameron 已提交
1812
                               id: NodeId,
1813
                               trait_path: &Path,
1814
                               path_depth: usize)
1815
                               -> Result<PathResolution, ()> {
1816
        self.resolve_path(id, trait_path, path_depth, TypeNS).and_then(|path_res| {
1817 1818 1819 1820 1821 1822 1823 1824
            match path_res.base_def {
                Def::Trait(_) => {
                    debug!("(resolving trait) found trait def: {:?}", path_res);
                    return Ok(path_res);
                }
                Def::Err => return Err(true),
                _ => {}
            }
1825

1826 1827 1828 1829 1830 1831
            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 {
1832
                err.note(&format!("type aliases cannot be used for traits"));
1833
            }
1834 1835
            err.emit();
            Err(true)
1836 1837
        }).map_err(|error_reported| {
            if error_reported { return }
1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859

            // 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);
1860
        })
1861 1862
    }

1863 1864
    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
1865
    {
1866 1867 1868 1869 1870 1871 1872
        // 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
1873
    fn with_optional_trait_ref<T, F>(&mut self, opt_trait_ref: Option<&TraitRef>, f: F) -> T
1874
        where F: FnOnce(&mut Resolver, Option<DefId>) -> T
J
Jorge Aparicio 已提交
1875
    {
1876
        let mut new_val = None;
1877
        let mut new_id = None;
E
Eduard Burtescu 已提交
1878
        if let Some(trait_ref) = opt_trait_ref {
1879
            if let Ok(path_res) = self.resolve_trait_reference(trait_ref.ref_id,
C
corentih 已提交
1880 1881
                                                               &trait_ref.path,
                                                               0) {
1882 1883 1884 1885
                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());
1886 1887
            } else {
                self.record_def(trait_ref.ref_id, err_path_resolution());
1888
            }
1889
            visit::walk_trait_ref(self, trait_ref);
1890
        }
1891
        let original_trait_ref = replace(&mut self.current_trait_ref, new_val);
1892
        let result = f(self, new_id);
1893 1894 1895 1896
        self.current_trait_ref = original_trait_ref;
        result
    }

1897 1898 1899 1900 1901 1902
    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....)
1903
        self_type_rib.bindings.insert(keywords::SelfType.ident(), self_def);
1904 1905
        self.type_ribs.push(self_type_rib);
        f(self);
J
Jeffrey Seyfried 已提交
1906
        self.type_ribs.pop();
1907 1908
    }

F
Felix S. Klock II 已提交
1909
    fn resolve_implementation(&mut self,
1910 1911 1912
                              generics: &Generics,
                              opt_trait_reference: &Option<TraitRef>,
                              self_type: &Ty,
1913
                              item_id: NodeId,
1914
                              impl_items: &[ImplItem]) {
1915
        // If applicable, create a rib for the type parameters.
1916
        self.with_type_parameter_rib(HasTypeParameters(generics, ItemRibKind), |this| {
1917
            // Resolve the type parameters.
1918
            this.visit_generics(generics);
1919

1920
            // Resolve the trait reference, if necessary.
1921
            this.with_optional_trait_ref(opt_trait_reference.as_ref(), |this, trait_id| {
1922
                // Resolve the self type.
1923
                this.visit_ty(self_type);
1924

1925
                this.with_self_rib(Def::SelfTy(trait_id, Some(item_id)), |this| {
1926 1927
                    this.with_current_self_type(self_type, |this| {
                        for impl_item in impl_items {
1928
                            this.resolve_visibility(&impl_item.vis);
1929
                            match impl_item.node {
1930
                                ImplItemKind::Const(..) => {
1931
                                    // If this is a trait impl, ensure the const
1932
                                    // exists in trait
1933
                                    this.check_trait_item(impl_item.ident.name,
1934 1935
                                                          impl_item.span,
                                        |n, s| ResolutionError::ConstNotMemberOfTrait(n, s));
1936
                                    visit::walk_impl_item(this, impl_item);
1937
                                }
1938
                                ImplItemKind::Method(ref sig, _) => {
1939 1940
                                    // If this is a trait impl, ensure the method
                                    // exists in trait
1941
                                    this.check_trait_item(impl_item.ident.name,
1942 1943
                                                          impl_item.span,
                                        |n, s| ResolutionError::MethodNotMemberOfTrait(n, s));
1944 1945 1946 1947 1948

                                    // We also need a new scope for the method-
                                    // specific type parameters.
                                    let type_parameters =
                                        HasTypeParameters(&sig.generics,
V
Vadim Petrochenkov 已提交
1949
                                                          MethodRibKind(!sig.decl.has_self()));
1950
                                    this.with_type_parameter_rib(type_parameters, |this| {
1951
                                        visit::walk_impl_item(this, impl_item);
1952 1953
                                    });
                                }
1954
                                ImplItemKind::Type(ref ty) => {
1955
                                    // If this is a trait impl, ensure the type
1956
                                    // exists in trait
1957
                                    this.check_trait_item(impl_item.ident.name,
1958 1959
                                                          impl_item.span,
                                        |n, s| ResolutionError::TypeNotMemberOfTrait(n, s));
1960

1961 1962
                                    this.visit_ty(ty);
                                }
1963
                                ImplItemKind::Macro(_) => panic!("unexpanded macro in resolve!"),
1964
                            }
1965
                        }
1966
                    });
1967 1968
                });
            });
1969
        });
1970 1971
    }

1972
    fn check_trait_item<F>(&self, name: Name, span: Span, err: F)
C
corentih 已提交
1973 1974 1975 1976
        where F: FnOnce(Name, &str) -> ResolutionError
    {
        // If there is a TraitRef in scope for an impl, then the method must be in the
        // trait.
1977
        if let Some((did, ref trait_ref)) = self.current_trait_ref {
1978
            if !self.trait_item_map.contains_key(&(name, did)) {
1979
                let path_str = path_names_to_string(&trait_ref.path, 0);
J
Jonas Schievink 已提交
1980
                resolve_error(self, span, err(name, &path_str));
1981 1982 1983 1984
            }
        }
    }

E
Eduard Burtescu 已提交
1985
    fn resolve_local(&mut self, local: &Local) {
1986
        // Resolve the type.
1987
        walk_list!(self, visit_ty, &local.ty);
1988

1989
        // Resolve the initializer.
1990
        walk_list!(self, visit_expr, &local.init);
1991 1992

        // Resolve the pattern.
1993
        self.resolve_pattern(&local.pat, PatternSource::Let, &mut FnvHashMap());
1994 1995
    }

J
John Clements 已提交
1996 1997 1998 1999
    // 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
2000
    fn binding_mode_map(&mut self, pat: &Pat) -> BindingMap {
2001
        let mut binding_map = FnvHashMap();
2002 2003 2004 2005 2006 2007 2008 2009

        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 };
2010
                    binding_map.insert(ident.node, binding_info);
2011 2012 2013
                }
            }
            true
2014
        });
2015 2016

        binding_map
2017 2018
    }

J
John Clements 已提交
2019 2020
    // 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
2021
    fn check_consistent_bindings(&mut self, arm: &Arm) {
2022
        if arm.pats.is_empty() {
C
corentih 已提交
2023
            return;
2024
        }
J
Jonas Schievink 已提交
2025
        let map_0 = self.binding_mode_map(&arm.pats[0]);
D
Daniel Micay 已提交
2026
        for (i, p) in arm.pats.iter().enumerate() {
J
Jonas Schievink 已提交
2027
            let map_i = self.binding_mode_map(&p);
2028

2029
            for (&key, &binding_0) in &map_0 {
2030
                match map_i.get(&key) {
C
corentih 已提交
2031
                    None => {
2032 2033
                        let error = ResolutionError::VariableNotBoundInPattern(key.name, 1, i + 1);
                        resolve_error(self, p.span, error);
C
corentih 已提交
2034 2035 2036 2037 2038
                    }
                    Some(binding_i) => {
                        if binding_0.binding_mode != binding_i.binding_mode {
                            resolve_error(self,
                                          binding_i.span,
M
Mikhail Modin 已提交
2039 2040 2041 2042
                                          ResolutionError::VariableBoundWithDifferentMode(
                                              key.name,
                                              i + 1,
                                              binding_0.span));
C
corentih 已提交
2043
                        }
2044
                    }
2045 2046 2047
                }
            }

2048
            for (&key, &binding) in &map_i {
2049
                if !map_0.contains_key(&key) {
2050 2051
                    resolve_error(self,
                                  binding.span,
2052
                                  ResolutionError::VariableNotBoundInPattern(key.name, i + 1, 1));
2053 2054 2055
                }
            }
        }
2056 2057
    }

F
Felix S. Klock II 已提交
2058
    fn resolve_arm(&mut self, arm: &Arm) {
2059
        self.value_ribs.push(Rib::new(NormalRibKind));
2060

2061
        let mut bindings_list = FnvHashMap();
2062
        for pattern in &arm.pats {
2063
            self.resolve_pattern(&pattern, PatternSource::Match, &mut bindings_list);
2064 2065
        }

2066 2067 2068 2069
        // This has to happen *after* we determine which
        // pat_idents are variants
        self.check_consistent_bindings(arm);

2070
        walk_list!(self, visit_expr, &arm.guard);
J
Jonas Schievink 已提交
2071
        self.visit_expr(&arm.body);
2072

J
Jeffrey Seyfried 已提交
2073
        self.value_ribs.pop();
2074 2075
    }

E
Eduard Burtescu 已提交
2076
    fn resolve_block(&mut self, block: &Block) {
2077
        debug!("(resolving block) entering block");
2078
        // Move down in the graph, if there's an anonymous module rooted here.
2079
        let orig_module = self.current_module;
2080
        let anonymous_module = self.module_map.get(&block.id).cloned(); // clones a reference
2081

2082
        let mut num_macro_definition_ribs = 0;
2083 2084
        if let Some(anonymous_module) = anonymous_module {
            debug!("(resolving block) found anonymous module, moving down");
2085 2086
            self.value_ribs.push(Rib::new(ModuleRibKind(anonymous_module)));
            self.type_ribs.push(Rib::new(ModuleRibKind(anonymous_module)));
2087 2088 2089
            self.current_module = anonymous_module;
        } else {
            self.value_ribs.push(Rib::new(NormalRibKind));
2090 2091 2092
        }

        // Descend into the block.
2093 2094
        for stmt in &block.stmts {
            if let Some(marks) = self.macros_at_scope.remove(&stmt.id) {
2095
                num_macro_definition_ribs += marks.len() as u32;
2096 2097
                for mark in marks {
                    self.value_ribs.push(Rib::new(MacroDefinition(mark)));
2098
                    self.label_ribs.push(Rib::new(MacroDefinition(mark)));
2099 2100 2101 2102 2103
                }
            }

            self.visit_stmt(stmt);
        }
2104 2105

        // Move back up.
J
Jeffrey Seyfried 已提交
2106
        self.current_module = orig_module;
2107
        for _ in 0 .. num_macro_definition_ribs {
2108
            self.value_ribs.pop();
2109
            self.label_ribs.pop();
2110
        }
2111
        self.value_ribs.pop();
J
Jeffrey Seyfried 已提交
2112 2113
        if let Some(_) = anonymous_module {
            self.type_ribs.pop();
G
Garming Sam 已提交
2114
        }
2115
        debug!("(resolving block) leaving block");
2116 2117
    }

F
Felix S. Klock II 已提交
2118
    fn resolve_type(&mut self, ty: &Ty) {
2119
        match ty.node {
2120
            TyKind::Path(ref maybe_qself, ref path) => {
2121
                // This is a path in the type namespace. Walk through scopes
2122
                // looking for it.
2123 2124
                if let Some(def) = self.resolve_possibly_assoc_item(ty.id, maybe_qself.as_ref(),
                                                                    path, TypeNS) {
2125
                    match def.base_def {
2126
                        Def::Mod(..) if def.depth == 0 => {
2127 2128 2129 2130 2131 2132 2133 2134 2135 2136
                            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);
                        }
                    }
2137 2138
                } else {
                    self.record_def(ty.id, err_path_resolution());
2139

2140 2141 2142 2143
                    // 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 {
2144 2145 2146 2147
                        let kind = if maybe_qself.is_some() {
                            "associated type"
                        } else {
                            "type name"
2148
                        };
2149

C
corentih 已提交
2150 2151 2152
                        let is_invalid_self_type_name = path.segments.len() > 0 &&
                                                        maybe_qself.is_none() &&
                                                        path.segments[0].identifier.name ==
2153
                                                        keywords::SelfType.name();
G
Guillaume Gomez 已提交
2154
                        if is_invalid_self_type_name {
2155 2156
                            resolve_error(self,
                                          ty.span,
2157
                                          ResolutionError::SelfUsedOutsideImplOrTrait);
2158
                        } else {
2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185
                            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
2186
                        }
2187 2188
                    }
                }
2189
            }
2190
            _ => {}
2191
        }
2192
        // Resolve embedded types.
2193
        visit::walk_ty(self, ty);
2194 2195
    }

2196 2197 2198 2199 2200
    fn fresh_binding(&mut self,
                     ident: &ast::SpannedIdent,
                     pat_id: NodeId,
                     outer_pat_id: NodeId,
                     pat_src: PatternSource,
2201
                     bindings: &mut FnvHashMap<ast::Ident, NodeId>)
2202 2203
                     -> PathResolution {
        // Add the binding to the local ribs, if it
2204 2205
        // doesn't already exist in the bindings map. (We
        // must not add it if it's in the bindings map
2206 2207
        // because that breaks the assumptions later
        // passes make about or-patterns.)
2208
        let mut def = Def::Local(self.definitions.local_def_id(pat_id), pat_id);
2209
        match bindings.get(&ident.node).cloned() {
2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228
            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 => {
2229 2230
                // `Variant1(a) | Variant2(a)`, ok
                // Reuse definition from the first `a`.
2231
                def = self.value_ribs.last_mut().unwrap().bindings[&ident.node];
2232 2233 2234 2235 2236 2237
            }
            Some(..) => {
                span_bug!(ident.span, "two bindings with the same name from \
                                       unexpected pattern source {:?}", pat_src);
            }
            None => {
2238
                // A completely fresh binding, add to the lists if it's valid.
2239
                if ident.node.name != keywords::Invalid.name() {
2240 2241
                    bindings.insert(ident.node, outer_pat_id);
                    self.value_ribs.last_mut().unwrap().bindings.insert(ident.node, def);
2242
                }
2243
            }
2244
        }
2245

2246
        PathResolution::new(def)
2247
    }
2248

2249
    fn resolve_pattern_path<ExpectedFn>(&mut self,
2250 2251 2252 2253 2254 2255
                                        pat_id: NodeId,
                                        qself: Option<&QSelf>,
                                        path: &Path,
                                        namespace: Namespace,
                                        expected_fn: ExpectedFn,
                                        expected_what: &str)
2256 2257
        where ExpectedFn: FnOnce(Def) -> bool
    {
2258 2259 2260
        let resolution = if let Some(resolution) = self.resolve_possibly_assoc_item(pat_id,
                                                                        qself, path, namespace) {
            if resolution.depth == 0 {
2261
                if expected_fn(resolution.base_def) || resolution.base_def == Def::Err {
2262
                    resolution
2263
                } else {
2264 2265 2266 2267 2268 2269
                    resolve_error(
                        self,
                        path.span,
                        ResolutionError::PatPathUnexpected(expected_what,
                                                           resolution.kind_name(), path)
                    );
2270 2271
                    err_path_resolution()
                }
2272 2273 2274 2275
            } 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.
2276 2277 2278 2279
                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);
2280
                }
2281
                resolution
2282
            }
2283 2284 2285 2286 2287 2288 2289 2290 2291
        } 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()
2292
        };
2293

2294 2295 2296 2297 2298 2299 2300 2301
        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.
2302
                       bindings: &mut FnvHashMap<ast::Ident, NodeId>) {
2303
        // Visit all direct subpatterns of this pattern.
2304 2305 2306 2307 2308 2309
        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.
2310
                    let binding = self.resolve_ident_in_lexical_scope(ident.node, ValueNS, None)
2311 2312
                                      .and_then(LexicalScopeBinding::item);
                    let resolution = binding.and_then(NameBinding::def).and_then(|def| {
2313 2314
                        let always_binding = !pat_src.is_refutable() || opt_pat.is_some() ||
                                             bmode != BindingMode::ByValue(Mutability::Immutable);
2315
                        match def {
2316 2317 2318
                            Def::Struct(..) | Def::Variant(..) |
                            Def::Const(..) | Def::AssociatedConst(..) if !always_binding => {
                                // A constant, unit variant, etc pattern.
2319 2320
                                self.record_use(ident.node.name, ValueNS, binding.unwrap());
                                Some(PathResolution::new(def))
2321
                            }
2322 2323 2324
                            Def::Struct(..) | Def::Variant(..) |
                            Def::Const(..) | Def::AssociatedConst(..) | Def::Static(..) => {
                                // A fresh binding that shadows something unacceptable.
2325
                                resolve_error(
2326
                                    self,
2327 2328
                                    ident.span,
                                    ResolutionError::BindingShadowsSomethingUnacceptable(
2329
                                        pat_src.descr(), ident.node.name, binding.unwrap())
2330
                                );
2331
                                None
2332
                            }
2333
                            Def::Local(..) | Def::Upvar(..) | Def::Fn(..) | Def::Err => {
2334 2335
                                // These entities are explicitly allowed
                                // to be shadowed by fresh bindings.
2336
                                None
2337 2338 2339 2340
                            }
                            def => {
                                span_bug!(ident.span, "unexpected definition for an \
                                                       identifier in pattern {:?}", def);
2341
                            }
2342
                        }
2343
                    }).unwrap_or_else(|| {
2344
                        self.fresh_binding(ident, pat.id, outer_pat_id, pat_src, bindings)
2345
                    });
2346 2347

                    self.record_def(pat.id, resolution);
2348 2349
                }

2350 2351 2352
                PatKind::TupleStruct(ref path, _, _) => {
                    self.resolve_pattern_path(pat.id, None, path, ValueNS, |def| {
                        match def {
2353
                            Def::Struct(..) | Def::Variant(..) => true,
2354
                            _ => false,
2355
                        }
2356 2357 2358
                    }, "variant or struct");
                }

2359 2360
                PatKind::Path(ref qself, ref path) => {
                    self.resolve_pattern_path(pat.id, qself.as_ref(), path, ValueNS, |def| {
2361 2362
                        match def {
                            Def::Struct(..) | Def::Variant(..) |
2363
                            Def::Const(..) | Def::AssociatedConst(..) => true,
2364
                            _ => false,
2365
                        }
2366
                    }, "variant, struct or constant");
2367 2368
                }

2369 2370 2371 2372
                PatKind::Struct(ref path, _, _) => {
                    self.resolve_pattern_path(pat.id, None, path, TypeNS, |def| {
                        match def {
                            Def::Struct(..) | Def::Variant(..) |
2373
                            Def::TyAlias(..) | Def::AssociatedTy(..) => true,
2374 2375 2376
                            _ => false,
                        }
                    }, "variant, struct or type alias");
2377
                }
2378 2379

                _ => {}
2380
            }
2381
            true
2382
        });
2383

2384
        visit::walk_pat(self, pat);
2385 2386
    }

2387 2388 2389
    /// Handles paths that may refer to associated items
    fn resolve_possibly_assoc_item(&mut self,
                                   id: NodeId,
2390
                                   maybe_qself: Option<&QSelf>,
2391
                                   path: &Path,
J
Jeffrey Seyfried 已提交
2392
                                   namespace: Namespace)
2393
                                   -> Option<PathResolution> {
2394 2395
        let max_assoc_types;

2396
        match maybe_qself {
2397 2398
            Some(qself) => {
                if qself.position == 0 {
2399 2400 2401
                    // 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)),
2402
                        depth: path.segments.len(),
2403
                    });
2404 2405 2406 2407 2408 2409 2410 2411
                }
                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();
            }
2412 2413 2414
        }

        let mut resolution = self.with_no_errors(|this| {
2415
            this.resolve_path(id, path, 0, namespace).ok()
2416 2417 2418 2419 2420 2421
        });
        for depth in 1..max_assoc_types {
            if resolution.is_some() {
                break;
            }
            self.with_no_errors(|this| {
2422 2423 2424 2425 2426 2427
                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;
                }
2428 2429
            });
        }
2430
        resolution
2431 2432
    }

2433
    /// Skips `path_depth` trailing segments, which is also reflected in the
2434
    /// returned value. See `hir::def::PathResolution` for more info.
J
Jeffrey Seyfried 已提交
2435
    fn resolve_path(&mut self, id: NodeId, path: &Path, path_depth: usize, namespace: Namespace)
2436
                    -> Result<PathResolution, bool /* true if an error was reported */ > {
2437 2438
        debug!("resolve_path(id={:?} path={:?}, path_depth={:?})", id, path, path_depth);

2439
        let span = path.span;
C
corentih 已提交
2440
        let segments = &path.segments[..path.segments.len() - path_depth];
2441

2442
        let mk_res = |def| PathResolution { base_def: def, depth: path_depth };
2443

2444
        if path.global {
2445 2446
            let binding = self.resolve_crate_relative_path(span, segments, namespace);
            return binding.map(|binding| mk_res(binding.def().unwrap()));
2447 2448
        }

2449
        // Try to find a path to an item in a module.
2450
        let last_ident = segments.last().unwrap().identifier;
V
Cleanup  
Vadim Petrochenkov 已提交
2451 2452 2453 2454 2455 2456 2457
        // 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
2458
                        .get(&last_ident.name)
V
Cleanup  
Vadim Petrochenkov 已提交
2459 2460 2461 2462
                        .map_or(def, |prim_ty| Some(LocalDef::from_def(Def::PrimTy(*prim_ty)))),
                _ => def
            }
        };
2463

2464 2465 2466 2467 2468 2469 2470
        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
2471 2472
            //     u8::max_value() // OK, resolves to associated function <u8>::max_value,
            //                     // not to non-existent std::u8::max_value
2473 2474 2475 2476
            // }
            //
            // Such behavior is required for backward compatibility.
            // The same fallback is used when `a` resolves to nothing.
2477
            let def = resolve_identifier_with_fallback(self, Some(span)).ok_or(false);
2478
            return def.and_then(|def| self.adjust_local_def(def, span).ok_or(true)).map(mk_res);
N
Nick Cameron 已提交
2479
        }
2480

2481
        let unqualified_def = resolve_identifier_with_fallback(self, None);
2482 2483 2484
        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
2485 2486
                self.session
                    .add_lint(lint::builtin::UNUSED_QUALIFICATIONS,
C
corentih 已提交
2487 2488
                              id,
                              span,
N
Nick Cameron 已提交
2489 2490 2491
                              "unnecessary qualification".to_string());
            }
            _ => {}
2492
        }
N
Nick Cameron 已提交
2493

2494
        qualified_binding.map(|binding| mk_res(binding.def().unwrap()))
2495 2496
    }

2497
    // Resolve a single identifier
F
Felix S. Klock II 已提交
2498
    fn resolve_identifier(&mut self,
2499
                          identifier: ast::Ident,
2500
                          namespace: Namespace,
2501
                          record_used: Option<Span>)
2502
                          -> Option<LocalDef> {
2503
        if identifier.name == keywords::Invalid.name() {
2504
            return None;
2505 2506
        }

2507 2508
        self.resolve_ident_in_lexical_scope(identifier, namespace, record_used)
            .map(LexicalScopeBinding::local_def)
2509 2510 2511
    }

    // Resolve a local definition, potentially adjusting for closures.
2512
    fn adjust_local_def(&mut self, local_def: LocalDef, span: Span) -> Option<Def> {
2513
        let ribs = match local_def.ribs {
C
corentih 已提交
2514 2515 2516
            Some((TypeNS, i)) => &self.type_ribs[i + 1..],
            Some((ValueNS, i)) => &self.value_ribs[i + 1..],
            _ => &[] as &[_],
2517 2518 2519
        };
        let mut def = local_def.def;
        match def {
2520
            Def::Upvar(..) => {
2521
                span_bug!(span, "unexpected {:?} in bindings", def)
2522
            }
2523
            Def::Local(_, node_id) => {
2524 2525
                for rib in ribs {
                    match rib.kind {
2526
                        NormalRibKind | ModuleRibKind(..) | MacroDefinition(..) => {
2527 2528 2529 2530
                            // Nothing to do. Continue.
                        }
                        ClosureRibKind(function_id) => {
                            let prev_def = def;
2531
                            let node_def_id = self.definitions.local_def_id(node_id);
2532

C
corentih 已提交
2533 2534 2535
                            let seen = self.freevars_seen
                                           .entry(function_id)
                                           .or_insert_with(|| NodeMap());
2536
                            if let Some(&index) = seen.get(&node_id) {
2537
                                def = Def::Upvar(node_def_id, node_id, index, function_id);
2538 2539
                                continue;
                            }
C
corentih 已提交
2540 2541 2542
                            let vec = self.freevars
                                          .entry(function_id)
                                          .or_insert_with(|| vec![]);
2543
                            let depth = vec.len();
C
corentih 已提交
2544 2545 2546 2547
                            vec.push(Freevar {
                                def: prev_def,
                                span: span,
                            });
2548

2549
                            def = Def::Upvar(node_def_id, node_id, depth, function_id);
2550 2551
                            seen.insert(node_id, depth);
                        }
2552
                        ItemRibKind | MethodRibKind(_) => {
2553 2554 2555
                            // 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
2556 2557 2558
                            resolve_error(self,
                                          span,
                                          ResolutionError::CannotCaptureDynamicEnvironmentInFnItem);
2559 2560 2561 2562
                            return None;
                        }
                        ConstantItemRibKind => {
                            // Still doesn't deal with upvars
C
corentih 已提交
2563 2564 2565
                            resolve_error(self,
                                          span,
                                          ResolutionError::AttemptToUseNonConstantValueInConstant);
2566 2567 2568 2569 2570
                            return None;
                        }
                    }
                }
            }
2571
            Def::TyParam(..) | Def::SelfTy(..) => {
2572 2573
                for rib in ribs {
                    match rib.kind {
2574
                        NormalRibKind | MethodRibKind(_) | ClosureRibKind(..) |
2575
                        ModuleRibKind(..) | MacroDefinition(..) => {
2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597
                            // 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);
2598 2599
    }

2600
    // resolve a "module-relative" path, e.g. a::b::c
F
Felix S. Klock II 已提交
2601
    fn resolve_module_relative_path(&mut self,
2602
                                    span: Span,
2603
                                    segments: &[ast::PathSegment],
2604
                                    namespace: Namespace)
2605 2606
                                    -> Result<&'a NameBinding<'a>,
                                              bool /* true if an error was reported */> {
C
corentih 已提交
2607 2608 2609 2610 2611 2612
        let module_path = segments.split_last()
                                  .unwrap()
                                  .1
                                  .iter()
                                  .map(|ps| ps.identifier.name)
                                  .collect::<Vec<_>>();
2613

2614
        let containing_module;
2615
        match self.resolve_module_path(&module_path, UseLexicalScope, Some(span)) {
2616 2617 2618 2619
            Failed(err) => {
                let (span, msg) = match err {
                    Some((span, msg)) => (span, msg),
                    None => {
2620
                        let msg = format!("Use of undeclared type or module `{}`",
2621
                                          names_to_string(&module_path));
2622
                        (span, msg)
2623 2624
                    }
                };
2625

J
Jonas Schievink 已提交
2626
                resolve_error(self, span, ResolutionError::FailedToResolve(&msg));
2627
                return Err(true);
2628
            }
2629
            Indeterminate => return Err(false),
J
Jeffrey Seyfried 已提交
2630
            Success(resulting_module) => {
2631 2632 2633 2634
                containing_module = resulting_module;
            }
        }

2635
        let name = segments.last().unwrap().identifier.name;
2636 2637
        let result =
            self.resolve_name_in_module(containing_module, name, namespace, false, Some(span));
2638
        result.success().ok_or(false)
2639 2640
    }

2641 2642
    /// Invariant: This must be called only during main resolution, not during
    /// import resolution.
2643 2644 2645 2646 2647 2648
    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<_>>();
2649
        let root_module = self.graph_root;
2650

2651
        let containing_module;
2652
        match self.resolve_module_path_from_root(root_module, &module_path, 0, Some(span)) {
2653 2654 2655 2656 2657
            Failed(err) => {
                let (span, msg) = match err {
                    Some((span, msg)) => (span, msg),
                    None => {
                        let msg = format!("Use of undeclared module `::{}`",
2658
                                          names_to_string(&module_path));
2659
                        (span, msg)
2660 2661 2662
                    }
                };

J
Jonas Schievink 已提交
2663
                resolve_error(self, span, ResolutionError::FailedToResolve(&msg));
2664
                return Err(true);
2665 2666
            }

2667
            Indeterminate => return Err(false),
2668

J
Jeffrey Seyfried 已提交
2669
            Success(resulting_module) => {
2670 2671 2672 2673
                containing_module = resulting_module;
            }
        }

2674
        let name = segments.last().unwrap().name();
2675 2676
        let result =
            self.resolve_name_in_module(containing_module, name, namespace, false, Some(span));
2677
        result.success().ok_or(false)
2678 2679
    }

C
corentih 已提交
2680 2681
    fn with_no_errors<T, F>(&mut self, f: F) -> T
        where F: FnOnce(&mut Resolver) -> T
J
Jorge Aparicio 已提交
2682
    {
2683
        self.emit_errors = false;
A
Alex Crichton 已提交
2684
        let rs = f(self);
2685 2686 2687 2688
        self.emit_errors = true;
        rs
    }

2689 2690
    // 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
2691
    // FIXME #34673: This needs testing.
2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705 2706 2707 2708 2709 2710 2711 2712 2713 2714 2715
    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,
    {
        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
    }

2716
    fn find_fallback_in_self_type(&mut self, name: Name) -> FallbackSuggestion {
2717
        fn extract_node_id(t: &Ty) -> Option<NodeId> {
2718
            match t.node {
2719 2720
                TyKind::Path(None, _) => Some(t.id),
                TyKind::Rptr(_, ref mut_ty) => extract_node_id(&mut_ty.ty),
2721 2722 2723 2724 2725 2726 2727
                // 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,
            }
        }

2728
        if let Some(node_id) = self.current_self_type.as_ref().and_then(extract_node_id) {
2729
            // Look for a field with the same name in the current self_type.
2730 2731 2732 2733 2734 2735 2736 2737
            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;
                            }
2738
                        }
2739
                    }
2740 2741
                    _ => {}
                }
2742
            }
2743 2744 2745
        }

        // Look for a method in the current trait.
2746
        if let Some((trait_did, ref trait_ref)) = self.current_trait_ref {
2747 2748
            if let Some(&is_static_method) = self.trait_item_map.get(&(name, trait_did)) {
                if is_static_method {
2749
                    return TraitMethod(path_names_to_string(&trait_ref.path, 0));
2750 2751
                } else {
                    return TraitItem;
2752 2753 2754 2755 2756 2757 2758
                }
            }
        }

        NoSuggestion
    }

2759
    fn find_best_match(&mut self, name: &str) -> SuggestionType {
2760
        if let Some(macro_name) = self.session.available_macros
2761
                                  .borrow().iter().find(|n| n.as_str() == name) {
2762 2763 2764
            return SuggestionType::Macro(format!("{}!", macro_name));
        }

2765 2766 2767
        let names = self.value_ribs
                    .iter()
                    .rev()
2768
                    .flat_map(|rib| rib.bindings.keys().map(|ident| &ident.name));
2769

2770
        if let Some(found) = find_best_match_for_name(names, name, None) {
J
Jonas Schievink 已提交
2771
            if name != found {
2772
                return SuggestionType::Function(found);
2773
            }
2774
        } SuggestionType::NotFound
2775 2776
    }

2777 2778
    fn resolve_labeled_block(&mut self, label: Option<ast::Ident>, id: NodeId, block: &Block) {
        if let Some(label) = label {
2779
            let def = Def::Label(id);
2780 2781 2782 2783 2784 2785 2786 2787 2788
            self.with_label_rib(|this| {
                this.label_ribs.last_mut().unwrap().bindings.insert(label, def);
                this.visit_block(block);
            });
        } else {
            self.visit_block(block);
        }
    }

2789
    fn resolve_expr(&mut self, expr: &Expr, parent: Option<&Expr>) {
P
Patrick Walton 已提交
2790 2791
        // First, record candidate traits for this expression if it could
        // result in the invocation of a method call.
2792 2793 2794

        self.record_candidate_traits_for_expr_if_necessary(expr);

2795
        // Next, resolve the node.
2796
        match expr.node {
2797
            ExprKind::Path(ref maybe_qself, ref path) => {
2798 2799
                // This is a local path in the value namespace. Walk through
                // scopes looking for it.
2800 2801
                if let Some(path_res) = self.resolve_possibly_assoc_item(expr.id,
                                                            maybe_qself.as_ref(), path, ValueNS) {
2802
                    // Check if struct variant
2803
                    let is_struct_variant = if let Def::Variant(_, variant_id) = path_res.base_def {
2804 2805 2806 2807 2808 2809
                        self.structs.contains_key(&variant_id)
                    } else {
                        false
                    };
                    if is_struct_variant {
                        let _ = self.structs.contains_key(&path_res.base_def.def_id());
2810
                        let path_name = path_names_to_string(path, 0);
2811

N
Nick Cameron 已提交
2812 2813
                        let mut err = resolve_struct_error(self,
                                        expr.span,
J
Jonas Schievink 已提交
2814
                                        ResolutionError::StructVariantUsedAsFunction(&path_name));
2815

C
corentih 已提交
2816
                        let msg = format!("did you mean to write: `{} {{ /* fields */ }}`?",
2817 2818
                                          path_name);
                        if self.emit_errors {
2819
                            err.help(&msg);
2820
                        } else {
N
Nick Cameron 已提交
2821
                            err.span_help(expr.span, &msg);
2822
                        }
N
Nick Cameron 已提交
2823
                        err.emit();
2824
                        self.record_def(expr.id, err_path_resolution());
2825
                    } else {
2826
                        // Write the result into the def map.
2827
                        debug!("(resolving expr) resolved `{}`",
2828
                               path_names_to_string(path, 0));
2829

2830 2831
                        // Partial resolutions will need the set of traits in scope,
                        // so they can be completed during typeck.
2832
                        if path_res.depth != 0 {
2833
                            let method_name = path.segments.last().unwrap().identifier.name;
2834
                            let traits = self.get_traits_containing_item(method_name);
2835 2836 2837
                            self.trait_map.insert(expr.id, traits);
                        }

2838
                        self.record_def(expr.id, path_res);
2839
                    }
2840 2841 2842 2843 2844
                } 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.)
2845
                    let path_name = path_names_to_string(path, 0);
2846
                    let type_res = self.with_no_errors(|this| {
J
Jeffrey Seyfried 已提交
2847
                        this.resolve_path(expr.id, path, 0, TypeNS)
2848
                    });
2849 2850

                    self.record_def(expr.id, err_path_resolution());
2851

2852
                    if let Ok(Def::Struct(..)) = type_res.map(|r| r.base_def) {
J
Jeffrey Seyfried 已提交
2853 2854
                        let error_variant =
                            ResolutionError::StructVariantUsedAsFunction(&path_name);
2855 2856 2857 2858 2859 2860
                        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 {
2861
                            err.help(&msg);
2862 2863 2864 2865 2866 2867 2868 2869 2870
                        } 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 {
2871
                            let mut method_scope = false;
2872
                            let mut is_static = false;
2873 2874
                            self.value_ribs.iter().rev().all(|rib| {
                                method_scope = match rib.kind {
2875 2876 2877 2878
                                    MethodRibKind(is_static_) => {
                                        is_static = is_static_;
                                        true
                                    }
2879 2880 2881 2882 2883
                                    ItemRibKind | ConstantItemRibKind => false,
                                    _ => return true, // Keep advancing
                                };
                                false // Stop advancing
                            });
2884

2885
                            if method_scope &&
2886
                                    &path_name[..] == keywords::SelfValue.name().as_str() {
C
corentih 已提交
2887 2888 2889
                                resolve_error(self,
                                              expr.span,
                                              ResolutionError::SelfNotAvailableInStaticMethod);
2890 2891
                            } else {
                                let last_name = path.segments.last().unwrap().identifier.name;
2892 2893
                                let (mut msg, is_field) =
                                    match self.find_fallback_in_self_type(last_name) {
2894 2895 2896
                                    NoSuggestion => {
                                        // limit search to 5 to reduce the number
                                        // of stupid suggestions
2897
                                        (match self.find_best_match(&path_name) {
2898 2899 2900 2901 2902
                                            SuggestionType::Macro(s) => {
                                                format!("the macro `{}`", s)
                                            }
                                            SuggestionType::Function(s) => format!("`{}`", s),
                                            SuggestionType::NotFound => "".to_string(),
2903 2904 2905 2906 2907 2908 2909 2910
                                        }, false)
                                    }
                                    Field => {
                                        (if is_static && method_scope {
                                            "".to_string()
                                        } else {
                                            format!("`self.{}`", path_name)
                                        }, true)
2911
                                    }
2912
                                    TraitItem => (format!("to call `self.{}`", path_name), false),
2913
                                    TraitMethod(path_str) =>
2914
                                        (format!("to call `{}::{}`", path_str, path_name), false),
2915 2916
                                };

2917
                                let mut context =  UnresolvedNameContext::Other;
G
ggomez 已提交
2918
                                let mut def = Def::Err;
2919
                                if !msg.is_empty() {
2920 2921
                                    msg = format!(". Did you mean {}?", msg);
                                } else {
2922
                                    // we display a help message if this is a module
2923 2924 2925 2926
                                    let name_path = path.segments.iter()
                                                        .map(|seg| seg.identifier.name)
                                                        .collect::<Vec<_>>();

2927
                                    match self.resolve_module_path(&name_path[..],
J
Jeffrey Seyfried 已提交
2928
                                                                   UseLexicalScope,
2929
                                                                   Some(expr.span)) {
G
ggomez 已提交
2930 2931 2932 2933
                                        Success(e) => {
                                            if let Some(def_type) = e.def {
                                                def = def_type;
                                            }
2934
                                            context = UnresolvedNameContext::PathIsMod(parent);
2935 2936 2937
                                        },
                                        _ => {},
                                    };
2938
                                }
2939

2940 2941
                                resolve_error(self,
                                              expr.span,
2942 2943 2944 2945 2946 2947
                                              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
2948
                                                  def: def,
2949
                                              });
2950
                            }
V
Vincent Belliard 已提交
2951
                        }
2952 2953 2954
                    }
                }

2955
                visit::walk_expr(self, expr);
2956 2957
            }

2958
            ExprKind::Struct(ref path, _, _) => {
2959 2960 2961
                // 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
2962
                match self.resolve_path(expr.id, path, 0, TypeNS) {
2963 2964 2965
                    Ok(definition) => self.record_def(expr.id, definition),
                    Err(true) => self.record_def(expr.id, err_path_resolution()),
                    Err(false) => {
2966
                        debug!("(resolving expression) didn't find struct def",);
2967

2968 2969
                        resolve_error(self,
                                      path.span,
2970
                                      ResolutionError::DoesNotNameAStruct(
J
Jonas Schievink 已提交
2971
                                                                &path_names_to_string(path, 0))
2972
                                     );
2973
                        self.record_def(expr.id, err_path_resolution());
2974 2975 2976
                    }
                }

2977
                visit::walk_expr(self, expr);
2978 2979
            }

2980
            ExprKind::Loop(_, Some(label)) | ExprKind::While(_, _, Some(label)) => {
2981
                self.with_label_rib(|this| {
2982
                    let def = Def::Label(expr.id);
2983

2984
                    {
2985
                        let rib = this.label_ribs.last_mut().unwrap();
2986
                        rib.bindings.insert(label.node, def);
2987
                    }
2988

2989
                    visit::walk_expr(this, expr);
2990
                })
2991 2992
            }

2993
            ExprKind::Break(Some(label)) | ExprKind::Continue(Some(label)) => {
2994
                match self.search_label(label.node) {
2995
                    None => {
2996
                        self.record_def(expr.id, err_path_resolution());
2997
                        resolve_error(self,
2998 2999
                                      label.span,
                                      ResolutionError::UndeclaredLabel(&label.node.name.as_str()))
3000
                    }
3001
                    Some(def @ Def::Label(_)) => {
3002
                        // Since this def is a label, it is never read.
3003
                        self.record_def(expr.id, PathResolution::new(def))
3004 3005
                    }
                    Some(_) => {
3006
                        span_bug!(expr.span, "label wasn't mapped to a label def!")
3007 3008 3009
                    }
                }
            }
3010 3011 3012 3013 3014

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

                self.value_ribs.push(Rib::new(NormalRibKind));
3015
                self.resolve_pattern(pattern, PatternSource::IfLet, &mut FnvHashMap());
3016 3017 3018 3019 3020 3021 3022 3023 3024
                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));
3025
                self.resolve_pattern(pattern, PatternSource::WhileLet, &mut FnvHashMap());
3026

3027
                self.resolve_labeled_block(label.map(|l| l.node), expr.id, block);
3028 3029 3030 3031 3032 3033 3034

                self.value_ribs.pop();
            }

            ExprKind::ForLoop(ref pattern, ref subexpression, ref block, label) => {
                self.visit_expr(subexpression);
                self.value_ribs.push(Rib::new(NormalRibKind));
3035
                self.resolve_pattern(pattern, PatternSource::For, &mut FnvHashMap());
3036

3037
                self.resolve_labeled_block(label.map(|l| l.node), expr.id, block);
3038 3039 3040 3041 3042

                self.value_ribs.pop();
            }

            ExprKind::Field(ref subexpression, _) => {
3043 3044
                self.resolve_expr(subexpression, Some(expr));
            }
3045
            ExprKind::MethodCall(_, ref types, ref arguments) => {
3046 3047 3048 3049 3050 3051 3052 3053 3054
                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);
                }
            }
3055

B
Brian Anderson 已提交
3056
            _ => {
3057
                visit::walk_expr(self, expr);
3058 3059 3060 3061
            }
        }
    }

E
Eduard Burtescu 已提交
3062
    fn record_candidate_traits_for_expr_if_necessary(&mut self, expr: &Expr) {
3063
        match expr.node {
3064
            ExprKind::Field(_, name) => {
3065 3066 3067 3068
                // 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.
3069
                let traits = self.get_traits_containing_item(name.node.name);
3070
                self.trait_map.insert(expr.id, traits);
3071
            }
3072
            ExprKind::MethodCall(name, _, _) => {
C
corentih 已提交
3073
                debug!("(recording candidate traits for expr) recording traits for {}",
3074
                       expr.id);
3075
                let traits = self.get_traits_containing_item(name.node.name);
3076
                self.trait_map.insert(expr.id, traits);
3077
            }
3078
            _ => {
3079 3080 3081 3082 3083
                // Nothing to do.
            }
        }
    }

S
Seo Sanghyeon 已提交
3084
    fn get_traits_containing_item(&mut self, name: Name) -> Vec<TraitCandidate> {
C
corentih 已提交
3085
        debug!("(getting traits containing item) looking for '{}'", name);
E
Eduard Burtescu 已提交
3086

S
Seo Sanghyeon 已提交
3087 3088 3089 3090
        fn add_trait_info(found_traits: &mut Vec<TraitCandidate>,
                          trait_def_id: DefId,
                          import_id: Option<NodeId>,
                          name: Name) {
3091
            debug!("(adding trait info) found trait {:?} for method '{}'",
C
corentih 已提交
3092 3093
                   trait_def_id,
                   name);
S
Seo Sanghyeon 已提交
3094 3095 3096 3097
            found_traits.push(TraitCandidate {
                def_id: trait_def_id,
                import_id: import_id,
            });
E
Eduard Burtescu 已提交
3098
        }
3099

3100
        let mut found_traits = Vec::new();
J
Jeffrey Seyfried 已提交
3101 3102 3103
        // 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
3104
                add_trait_info(&mut found_traits, trait_def_id, None, name);
E
Eduard Burtescu 已提交
3105
            }
J
Jeffrey Seyfried 已提交
3106
        }
3107

J
Jeffrey Seyfried 已提交
3108 3109
        let mut search_module = self.current_module;
        loop {
E
Eduard Burtescu 已提交
3110
            // Look for trait children.
3111
            let mut search_in_module = |this: &mut Self, module: Module<'a>| {
J
Jeffrey Seyfried 已提交
3112 3113 3114
                let mut traits = module.traits.borrow_mut();
                if traits.is_none() {
                    let mut collected_traits = Vec::new();
3115
                    module.for_each_child(|name, ns, binding| {
J
Jeffrey Seyfried 已提交
3116 3117
                        if ns != TypeNS { return }
                        if let Some(Def::Trait(_)) = binding.def() {
3118
                            collected_traits.push((name, binding));
J
Jeffrey Seyfried 已提交
3119 3120 3121
                        }
                    });
                    *traits = Some(collected_traits.into_boxed_slice());
3122
                }
J
Jeffrey Seyfried 已提交
3123

3124
                for &(trait_name, binding) in traits.as_ref().unwrap().iter() {
J
Jeffrey Seyfried 已提交
3125
                    let trait_def_id = binding.def().unwrap().def_id();
3126
                    if this.trait_item_map.contains_key(&(name, trait_def_id)) {
S
Seo Sanghyeon 已提交
3127 3128 3129
                        let mut import_id = None;
                        if let NameBindingKind::Import { directive, .. } = binding.kind {
                            let id = directive.id;
3130
                            this.maybe_unused_trait_imports.insert(id);
3131
                            this.add_to_glob_map(id, trait_name);
S
Seo Sanghyeon 已提交
3132 3133 3134
                            import_id = Some(id);
                        }
                        add_trait_info(&mut found_traits, trait_def_id, import_id, name);
J
Jeffrey Seyfried 已提交
3135 3136 3137
                    }
                }
            };
3138
            search_in_module(self, search_module);
3139

3140
            match search_module.parent_link {
3141
                NoParentLink | ModuleParentLink(..) => {
3142 3143 3144
                    if !search_module.no_implicit_prelude.get() {
                        self.prelude.map(|prelude| search_in_module(self, prelude));
                    }
3145 3146
                    break;
                }
E
Eduard Burtescu 已提交
3147
                BlockParentLink(parent_module, _) => {
3148
                    search_module = parent_module;
3149
                }
E
Eduard Burtescu 已提交
3150
            }
3151 3152
        }

E
Eduard Burtescu 已提交
3153
        found_traits
3154 3155
    }

3156 3157 3158 3159 3160 3161 3162 3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173 3174 3175
    /// 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() {
3176
            self.populate_module_if_necessary(in_module);
3177 3178 3179 3180 3181 3182 3183 3184 3185 3186

            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
3187
                        let ident = ast::Ident::with_empty_ctxt(name);
3188 3189 3190 3191 3192
                        let params = PathParameters::none();
                        let segment = PathSegment {
                            identifier: ident,
                            parameters: params,
                        };
3193
                        let span = name_binding.span;
3194 3195 3196 3197 3198 3199 3200 3201 3202 3203 3204 3205 3206 3207
                        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)
3208
                        if !in_module_is_extern || name_binding.vis == ty::Visibility::Public {
3209 3210 3211 3212 3213 3214 3215 3216 3217 3218 3219 3220
                            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();
3221
                            let ident = ast::Ident::with_empty_ctxt(name);
3222 3223 3224 3225 3226 3227 3228 3229
                            let params = PathParameters::none();
                            let segm = PathSegment {
                                identifier: ident,
                                parameters: params,
                            };
                            paths.push(segm);
                            paths
                        }
3230
                        _ => bug!(),
3231 3232
                    };

3233
                    if !in_module_is_extern || name_binding.vis == ty::Visibility::Public {
3234
                        // add the module to the lookup
3235
                        let is_extern = in_module_is_extern || name_binding.is_extern_crate();
3236 3237 3238
                        if !worklist.iter().any(|&(m, _, _)| m.def == module.def) {
                            worklist.push((module, path_segments, is_extern));
                        }
3239 3240 3241 3242 3243 3244 3245 3246 3247 3248 3249
                    }
                }
            })
        }

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

3250 3251
    fn record_def(&mut self, node_id: NodeId, resolution: PathResolution) {
        debug!("(recording def) recording {:?} for {}", resolution, node_id);
3252
        if let Some(prev_res) = self.def_map.insert(node_id, resolution) {
3253
            panic!("path resolved multiple times ({:?} before, {:?} now)", prev_res, resolution);
3254
        }
3255 3256
    }

3257
    fn resolve_visibility(&mut self, vis: &ast::Visibility) -> ty::Visibility {
3258
        let (path, id) = match *vis {
3259 3260 3261
            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),
3262
            ast::Visibility::Inherited => return self.current_vis,
3263 3264 3265
        };

        let segments: Vec<_> = path.segments.iter().map(|seg| seg.identifier.name).collect();
3266
        let mut path_resolution = err_path_resolution();
3267
        let vis = match self.resolve_module_path(&segments, DontUseLexicalScope, Some(path.span)) {
3268 3269
            Success(module) => {
                let def = module.def.unwrap();
3270
                path_resolution = PathResolution::new(def);
3271
                ty::Visibility::Restricted(self.definitions.as_local_node_id(def.def_id()).unwrap())
3272 3273 3274 3275 3276 3277 3278 3279 3280 3281
            }
            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
            }
        };
3282
        self.def_map.insert(id, path_resolution);
3283 3284 3285 3286 3287 3288 3289
        if !self.is_accessible(vis) {
            let msg = format!("visibilities can only be restricted to ancestor modules");
            self.session.span_err(path.span, &msg);
        }
        vis
    }

3290
    fn is_accessible(&self, vis: ty::Visibility) -> bool {
3291
        vis.is_at_least(self.current_vis, self)
3292 3293 3294 3295
    }

    fn report_privacy_errors(&self) {
        if self.privacy_errors.len() == 0 { return }
3296
        let mut reported_spans = FnvHashSet();
3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309
        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));
            }
        }
    }
3310

3311 3312 3313 3314 3315 3316 3317
    fn report_conflict(&self,
                       parent: Module,
                       name: Name,
                       ns: Namespace,
                       binding: &NameBinding,
                       old_binding: &NameBinding) {
        // Error on the second of two conflicting names
3318
        if old_binding.span.lo > binding.span.lo {
3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332 3333
            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"),
        };

3334
        let span = binding.span;
3335 3336 3337 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347
        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()) {
3348 3349 3350 3351 3352
            (true, true) => {
                let mut e = struct_span_err!(self.session, span, E0259, "{}", msg);
                e.span_label(span, &format!("`{}` was already imported", name));
                e
            },
C
crypto-universe 已提交
3353 3354 3355 3356 3357
            (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
            },
M
Mohit Agarwal 已提交
3358 3359 3360 3361 3362
            (true, _) | (_, true) => {
                let mut e = struct_span_err!(self.session, span, E0260, "{}", msg);
                e.span_label(span, &format!("`{}` already imported", name));
                e
            },
3363
            _ => match (old_binding.is_import(), binding.is_import()) {
T
trixnz 已提交
3364 3365 3366 3367 3368
                (false, false) => {
                    let mut e = struct_span_err!(self.session, span, E0428, "{}", msg);
                    e.span_label(span, &format!("already defined"));
                    e
                },
A
Adam Medziński 已提交
3369 3370 3371 3372 3373
                (true, true) => {
                    let mut e = struct_span_err!(self.session, span, E0252, "{}", msg);
                    e.span_label(span, &format!("already imported"));
                    e
                },
3374
                _ => {
3375 3376 3377
                    let mut e = struct_span_err!(self.session, span, E0255, "{}", msg);
                    e.span_label(span, &format!("`{}` was already imported", name));
                    e
3378
                }
3379 3380 3381
            },
        };

3382
        if old_binding.span != syntax_pos::DUMMY_SP {
3383
            err.span_label(old_binding.span, &format!("previous {} of `{}` here", noun, name));
3384 3385 3386 3387
        }
        err.emit();
    }
}
3388 3389 3390 3391 3392 3393 3394 3395 3396 3397

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("::")
        }
3398
        result.push_str(&name.as_str());
C
corentih 已提交
3399
    }
3400 3401 3402 3403
    result
}

fn path_names_to_string(path: &Path, depth: usize) -> String {
C
corentih 已提交
3404
    let names: Vec<ast::Name> = path.segments[..path.segments.len() - depth]
3405 3406 3407 3408 3409 3410
                                    .iter()
                                    .map(|seg| seg.identifier.name)
                                    .collect();
    names_to_string(&names[..])
}

3411 3412 3413 3414 3415 3416 3417 3418 3419 3420 3421 3422 3423 3424 3425 3426 3427 3428 3429 3430 3431 3432 3433
/// 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 {
3434
                session.help(
T
tiehuis 已提交
3435
                    &format!("you can import it into scope: `use {};`.",
3436 3437 3438
                        &path_strings[0]),
                );
            } else {
3439
                session.help("you can import several candidates \
3440 3441 3442 3443 3444
                    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 {
3445
                        session.help(
3446 3447 3448 3449
                            &format!("  and {} other candidates", count).to_string(),
                        );
                        break;
                    } else {
3450
                        session.help(
3451 3452 3453 3454 3455 3456 3457 3458
                            &format!("  `{}`", path_string).to_string(),
                        );
                    }
                }
            }
        }
    } else {
        // nothing found:
3459
        session.help(
3460 3461 3462 3463 3464 3465 3466
            &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()),
        );
    };
}

3467
/// A somewhat inefficient routine to obtain the name of a module.
3468
fn module_to_string(module: Module) -> String {
3469 3470
    let mut names = Vec::new();

3471
    fn collect_mod(names: &mut Vec<ast::Name>, module: Module) {
3472 3473 3474 3475
        match module.parent_link {
            NoParentLink => {}
            ModuleParentLink(ref module, name) => {
                names.push(name);
3476
                collect_mod(names, module);
3477 3478 3479
            }
            BlockParentLink(ref module, _) => {
                // danger, shouldn't be ident?
3480
                names.push(token::intern("<opaque>"));
3481
                collect_mod(names, module);
3482 3483 3484 3485 3486
            }
        }
    }
    collect_mod(&mut names, module);

3487
    if names.is_empty() {
3488 3489 3490 3491 3492
        return "???".to_string();
    }
    names_to_string(&names.into_iter().rev().collect::<Vec<ast::Name>>())
}

3493
fn err_path_resolution() -> PathResolution {
3494
    PathResolution::new(Def::Err)
3495 3496
}

N
Niko Matsakis 已提交
3497
#[derive(PartialEq,Copy, Clone)]
3498 3499
pub enum MakeGlobMap {
    Yes,
C
corentih 已提交
3500
    No,
3501 3502
}

3503
__build_diagnostic_array! { librustc_resolve, DIAGNOSTICS }