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391 lines
14 KiB
C++
391 lines
14 KiB
C++
//===--- Module.cpp - Swift Language Module Implementation ----------------===//
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//
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// This source file is part of the Swift.org open source project
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//
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// Copyright (c) 2014 - 2015 Apple Inc. and the Swift project authors
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// Licensed under Apache License v2.0 with Runtime Library Exception
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//
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// See http://swift.org/LICENSE.txt for license information
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// See http://swift.org/CONTRIBUTORS.txt for the list of Swift project authors
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//
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//===----------------------------------------------------------------------===//
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//
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// This file implements the Module class and subclasses.
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//
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//===----------------------------------------------------------------------===//
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#include "swift/AST/Diagnostics.h"
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#include "swift/AST/Module.h"
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#include "swift/AST/ModuleLoader.h"
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#include "swift/AST/NameLookup.h"
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#include "swift/AST/AST.h"
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#include "swift/AST/PrintOptions.h"
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#include "clang/Basic/Module.h"
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#include "llvm/ADT/DenseMap.h"
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#include "llvm/ADT/DenseSet.h"
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#include "llvm/ADT/TinyPtrVector.h"
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#include "llvm/ADT/SmallPtrSet.h"
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#include "llvm/Support/raw_ostream.h"
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using namespace swift;
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//===----------------------------------------------------------------------===//
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// Builtin Module Name lookup
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//===----------------------------------------------------------------------===//
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namespace {
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/// BuiltinModuleCache - This is the type of the cache for the BuiltinModule.
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/// This is lazily created on its first use an hangs off
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/// Module::LookupCachePimpl.
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class BuiltinModuleCache {
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/// The cache of identifiers we've already looked up. We use a
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/// single hashtable for both types and values as a minor
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/// optimization; this prevents us from having both a builtin type
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/// and a builtin value with the same name, but that's okay.
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llvm::DenseMap<Identifier, ValueDecl*> Cache;
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public:
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void lookupValue(Identifier Name, NLKind LookupKind, BuiltinModule &M,
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SmallVectorImpl<ValueDecl*> &Result);
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};
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} // end anonymous namespace.
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static BuiltinModuleCache &getBuiltinCachePimpl(void *&Ptr) {
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// FIXME: This leaks. Sticking this into ASTContext isn't enough because then
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// the DenseMap will leak.
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if (Ptr == 0)
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Ptr = new BuiltinModuleCache();
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return *(BuiltinModuleCache*)Ptr;
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}
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void BuiltinModuleCache::lookupValue(Identifier Name, NLKind LookupKind,
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BuiltinModule &M,
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SmallVectorImpl<ValueDecl*> &Result) {
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// Only qualified lookup ever finds anything in the builtin module.
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if (LookupKind != NLKind::QualifiedLookup) return;
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ValueDecl *&Entry = Cache[Name];
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if (Entry == 0)
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if (Type Ty = getBuiltinType(M.Ctx, Name.str()))
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Entry = new (M.Ctx) TypeAliasDecl(SourceLoc(), Name, SourceLoc(),
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TypeLoc::withoutLoc(Ty),
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M.Ctx.TheBuiltinModule,
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MutableArrayRef<TypeLoc>());
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if (Entry == 0)
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Entry = getBuiltinValue(M.Ctx, Name);
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if (Entry)
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Result.push_back(Entry);
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}
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//===----------------------------------------------------------------------===//
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// Normal Module Name Lookup
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//===----------------------------------------------------------------------===//
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namespace {
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/// TUModuleCache - This is the type of the cache for the TranslationUnit.
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/// This is lazily created on its first use an hangs off
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/// Module::LookupCachePimpl.
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class TUModuleCache {
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llvm::DenseMap<Identifier, TinyPtrVector<ValueDecl*>> TopLevelValues;
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void doPopulateCache(ArrayRef<Decl*> decls, bool onlyOperators);
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public:
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typedef Module::AccessPathTy AccessPathTy;
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TUModuleCache(const TranslationUnit &TU);
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void lookupValue(AccessPathTy AccessPath, Identifier Name,
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NLKind LookupKind, TranslationUnit &TU,
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SmallVectorImpl<ValueDecl*> &Result);
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void lookupVisibleDecls(AccessPathTy AccessPath,
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VisibleDeclConsumer &Consumer,
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NLKind LookupKind,
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const TranslationUnit &TU);
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};
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} // end anonymous namespace.
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static TUModuleCache &getTUCachePimpl(void *&Ptr, const TranslationUnit &TU) {
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// FIXME: This leaks. Sticking this into ASTContext isn't enough because then
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// the DenseMap will leak.
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if (Ptr == 0)
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Ptr = new TUModuleCache(TU);
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return *(TUModuleCache*)Ptr;
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}
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static void freeTUCachePimpl(void *&Ptr) {
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delete (TUModuleCache*)Ptr;
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Ptr = 0;
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}
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void TUModuleCache::doPopulateCache(ArrayRef<Decl*> decls, bool onlyOperators) {
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for (Decl *D : decls) {
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if (ValueDecl *VD = dyn_cast<ValueDecl>(D))
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if (onlyOperators ? VD->getName().isOperator() : !VD->getName().empty())
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TopLevelValues[VD->getName()].push_back(VD);
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if (NominalTypeDecl *NTD = dyn_cast<NominalTypeDecl>(D))
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doPopulateCache(NTD->getMembers(), true);
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if (ExtensionDecl *ED = dyn_cast<ExtensionDecl>(D))
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doPopulateCache(ED->getMembers(), true);
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}
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}
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/// Populate our cache on the first name lookup.
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TUModuleCache::TUModuleCache(const TranslationUnit &TU) {
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doPopulateCache(TU.Decls, false);
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}
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void TUModuleCache::lookupValue(AccessPathTy AccessPath, Identifier Name,
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NLKind LookupKind, TranslationUnit &TU,
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SmallVectorImpl<ValueDecl*> &Result) {
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// TODO: ImportDecls cannot specified namespaces or individual entities
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// yet, so everything is just a lookup at the top-level.
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assert(AccessPath.size() <= 1 && "Don't handle this yet");
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// If this import is specific to some named type or decl ("import swift.int")
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// then filter out any lookups that don't match.
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if (AccessPath.size() == 1 && AccessPath[0].first != Name)
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return;
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auto I = TopLevelValues.find(Name);
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if (I == TopLevelValues.end()) return;
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Result.reserve(I->second.size());
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for (ValueDecl *Elt : I->second)
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Result.push_back(Elt);
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}
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void TUModuleCache::lookupVisibleDecls(AccessPathTy AccessPath,
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VisibleDeclConsumer &Consumer,
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NLKind LookupKind,
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const TranslationUnit &TU) {
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// TODO: ImportDecls cannot specified namespaces or individual entities
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// yet, so everything is just a lookup at the top-level.
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assert(AccessPath.size() <= 1 && "Don't handle this yet");
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// TODO: If this import is specific to some named type or decl ("import swift.int")
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// then filter out any lookups that don't match.
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for (auto &tlv : TopLevelValues) {
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for (ValueDecl *vd : tlv.second)
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Consumer.foundDecl(vd);
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}
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}
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//===----------------------------------------------------------------------===//
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// Module Implementation
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//===----------------------------------------------------------------------===//
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/// lookupValue - Look up a (possibly overloaded) value set at top-level scope
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/// (but with the specified access path, which may come from an import decl)
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/// within the current module. This does a simple local lookup, not
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/// recursively looking through imports.
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void Module::lookupValue(AccessPathTy AccessPath, Identifier Name,
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NLKind LookupKind,
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SmallVectorImpl<ValueDecl*> &Result) {
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if (BuiltinModule *BM = dyn_cast<BuiltinModule>(this)) {
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assert(AccessPath.empty() && "builtin module's access path always empty!");
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return getBuiltinCachePimpl(LookupCachePimpl)
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.lookupValue(Name, LookupKind, *BM, Result);
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}
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if (auto TU = dyn_cast<TranslationUnit>(this)) {
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// Look in the translation unit.
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return getTUCachePimpl(LookupCachePimpl, *TU)
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.lookupValue(AccessPath, Name, LookupKind, *TU, Result);
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}
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return cast<LoadedModule>(this)->lookupValue(AccessPath, Name, LookupKind,
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Result);
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}
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/// lookupVisibleDecls - Find ValueDecls in the module and pass them to the
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/// given consumer object.
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void Module::lookupVisibleDecls(AccessPathTy AccessPath,
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VisibleDeclConsumer &Consumer,
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NLKind LookupKind) const {
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if (auto BM = dyn_cast<BuiltinModule>(this)) {
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// TODO Look through the Builtin module.
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(void)BM;
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return;
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}
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if (auto TU = dyn_cast<TranslationUnit>(this)) {
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return getTUCachePimpl(LookupCachePimpl, *TU)
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.lookupVisibleDecls(AccessPath, Consumer, LookupKind, *TU);
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}
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// TODO: Visit clang modules using Clang's Sema::LookupVisibleDecls.
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// Importing every single Clang decl as a Swift decl currently makes
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// everything horrendously slow.
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return;
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}
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namespace {
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// Returns Nothing on error, Optional(nullptr) if no operator decl found, or
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// Optional(decl) if decl was found.
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template<typename OP_DECL>
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Optional<OP_DECL *> lookupOperatorDeclForName(Module *M,
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SourceLoc Loc,
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Identifier Name,
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llvm::StringMap<OP_DECL *> TranslationUnit::*OP_MAP)
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{
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if (auto loadedModule = dyn_cast<LoadedModule>(M))
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return loadedModule->lookupOperator<OP_DECL>(Name);
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auto *TU = dyn_cast<TranslationUnit>(M);
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if (!TU)
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return nullptr;
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// Look for an operator declaration in the current module.
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auto found = (TU->*OP_MAP).find(Name.get());
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if (found != (TU->*OP_MAP).end())
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return found->getValue();
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// Look for imported operator decls.
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llvm::DenseSet<OP_DECL*> importedOperators;
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for (auto &imported : TU->getImportedModules()) {
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Optional<OP_DECL *> maybeOp
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= lookupOperatorDeclForName(imported.second, Loc, Name, OP_MAP);
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if (!maybeOp)
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return Nothing;
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if (OP_DECL *op = *maybeOp)
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importedOperators.insert(op);
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}
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// If we found a single import, use it.
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if (importedOperators.empty()) {
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// Cache the mapping so we don't need to troll imports next time.
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(TU->*OP_MAP)[Name.get()] = nullptr;
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return nullptr;
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}
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if (importedOperators.size() == 1) {
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// Cache the mapping so we don't need to troll imports next time.
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OP_DECL *result = *importedOperators.begin();
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(TU->*OP_MAP)[Name.get()] = result;
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return result;
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}
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// Otherwise, check for conflicts.
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auto i = importedOperators.begin(), end = importedOperators.end();
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OP_DECL *first = *i;
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for (++i; i != end; ++i) {
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if ((*i)->conflictsWith(first)) {
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if (Loc.isValid()) {
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ASTContext &C = M->getASTContext();
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C.Diags.diagnose(Loc, diag::ambiguous_operator_decls);
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C.Diags.diagnose(first->getLoc(), diag::found_this_operator_decl);
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C.Diags.diagnose((*i)->getLoc(), diag::found_this_operator_decl);
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}
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return Nothing;
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}
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}
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// Cache the mapping so we don't need to troll imports next time.
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(TU->*OP_MAP)[Name.get()] = first;
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return first;
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}
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} // end anonymous namespace
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Optional<PrefixOperatorDecl *> Module::lookupPrefixOperator(Identifier name,
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SourceLoc diagLoc) {
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return lookupOperatorDeclForName(this, diagLoc, name,
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&TranslationUnit::PrefixOperators);
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}
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Optional<PostfixOperatorDecl *> Module::lookupPostfixOperator(Identifier name,
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SourceLoc diagLoc) {
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return lookupOperatorDeclForName(this, diagLoc, name,
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&TranslationUnit::PostfixOperators);
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}
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Optional<InfixOperatorDecl *> Module::lookupInfixOperator(Identifier name,
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SourceLoc diagLoc) {
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return lookupOperatorDeclForName(this, diagLoc, name,
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&TranslationUnit::InfixOperators);
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}
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//===----------------------------------------------------------------------===//
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// TranslationUnit Implementation
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//===----------------------------------------------------------------------===//
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void TranslationUnit::print(raw_ostream &os) {
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print(os, PrintOptions::printEverything());
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}
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void TranslationUnit::print(raw_ostream &os, const PrintOptions &options) {
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for (auto decl : Decls) {
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if (!decl->shouldPrintInContext())
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continue;
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decl->print(os, options);
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os << "\n";
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}
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}
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void TranslationUnit::clearLookupCache() {
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freeTUCachePimpl(LookupCachePimpl);
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}
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//===----------------------------------------------------------------------===//
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// LoadedModule Implementation
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//===----------------------------------------------------------------------===//
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void LoadedModule::lookupValue(AccessPathTy accessPath, Identifier name,
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NLKind lookupKind,
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SmallVectorImpl<ValueDecl*> &result) {
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auto owner = static_cast<ModuleLoader*>(LookupCachePimpl);
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return owner->lookupValue(this, accessPath, name, lookupKind, result);
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}
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OperatorDecl *LoadedModule::lookupOperator(Identifier name, DeclKind fixity) {
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auto owner = static_cast<ModuleLoader*>(LookupCachePimpl);
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return owner->lookupOperator(this, name, fixity);
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}
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template<>
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PrefixOperatorDecl *
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LoadedModule::lookupOperator<PrefixOperatorDecl>(Identifier name) {
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auto result = lookupOperator(name, DeclKind::PrefixOperator);
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return cast_or_null<PrefixOperatorDecl>(result);
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}
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template<>
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PostfixOperatorDecl *
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LoadedModule::lookupOperator<PostfixOperatorDecl>(Identifier name) {
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auto result = lookupOperator(name, DeclKind::PostfixOperator);
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return cast_or_null<PostfixOperatorDecl>(result);
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}
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template<>
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InfixOperatorDecl *
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LoadedModule::lookupOperator<InfixOperatorDecl>(Identifier name) {
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auto result = lookupOperator(name, DeclKind::InfixOperator);
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return cast_or_null<InfixOperatorDecl>(result);
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}
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//===----------------------------------------------------------------------===//
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// ClangModule Implementation
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//===----------------------------------------------------------------------===//
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ClangModule::ClangModule(ASTContext &ctx, ModuleLoader &owner, Component *comp,
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clang::Module *clangModule)
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: LoadedModule(DeclContextKind::ClangModule,
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ctx.getIdentifier(clangModule->Name),
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comp, ctx, owner),
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clangModule(clangModule)
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{
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// Clang modules are always well-formed.
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ASTStage = TypeChecked;
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}
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//===----------------------------------------------------------------------===//
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// ModuleLoader Implementation
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//===----------------------------------------------------------------------===//
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ModuleLoader::~ModuleLoader() {}
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