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280 lines
8.6 KiB
C++
280 lines
8.6 KiB
C++
//===--- ImportCache.cpp - Caching the import graph -------------*- C++ -*-===//
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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 - 2019 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 https://swift.org/LICENSE.txt for license information
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// See https://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 defines interfaces for querying the module import graph in an
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// efficient manner.
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/ADT/DenseSet.h"
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#include "swift/AST/ASTContext.h"
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#include "swift/AST/ImportCache.h"
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#include "swift/AST/Module.h"
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using namespace swift;
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using namespace namelookup;
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ImportSet::ImportSet(ArrayRef<ModuleDecl::ImportedModule> topLevelImports,
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ArrayRef<ModuleDecl::ImportedModule> transitiveImports)
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: NumTopLevelImports(topLevelImports.size()),
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NumTransitiveImports(transitiveImports.size()) {
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auto buffer = getTrailingObjects<ModuleDecl::ImportedModule>();
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std::uninitialized_copy(topLevelImports.begin(), topLevelImports.end(),
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buffer);
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std::uninitialized_copy(transitiveImports.begin(), transitiveImports.end(),
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buffer + topLevelImports.size());
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#ifndef NDEBUG
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llvm::SmallDenseSet<ModuleDecl::ImportedModule, 8> unique;
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for (auto import : topLevelImports) {
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auto result = unique.insert(import).second;
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assert(result && "Duplicate imports in import set");
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}
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for (auto import : transitiveImports) {
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auto result = unique.insert(import).second;
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assert(result && "Duplicate imports in import set");
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}
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#endif
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}
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void ImportSet::Profile(
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llvm::FoldingSetNodeID &ID,
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ArrayRef<ModuleDecl::ImportedModule> topLevelImports) {
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ID.AddInteger(topLevelImports.size());
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for (auto import : topLevelImports) {
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ID.AddInteger(import.first.size());
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for (auto accessPathElt : import.first) {
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ID.AddPointer(accessPathElt.first.getAsOpaquePointer());
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}
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ID.AddPointer(import.second);
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}
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}
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static void collectExports(ModuleDecl::ImportedModule next,
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SmallVectorImpl<ModuleDecl::ImportedModule> &stack) {
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SmallVector<ModuleDecl::ImportedModule, 4> exports;
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next.second->getImportedModulesForLookup(exports);
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for (auto exported : exports) {
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if (next.first.empty())
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stack.push_back(exported);
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else if (exported.first.empty()) {
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exported.first = next.first;
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stack.push_back(exported);
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} else if (ModuleDecl::isSameAccessPath(next.first, exported.first)) {
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stack.push_back(exported);
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}
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}
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}
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ImportSet &
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ImportCache::getImportSet(ASTContext &ctx,
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ArrayRef<ModuleDecl::ImportedModule> imports) {
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SmallVector<ModuleDecl::ImportedModule, 4> topLevelImports;
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SmallVector<ModuleDecl::ImportedModule, 4> transitiveImports;
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llvm::SmallDenseSet<ModuleDecl::ImportedModule, 32> visited;
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for (auto next : imports) {
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if (!visited.insert(next).second)
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continue;
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topLevelImports.push_back(next);
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}
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void *InsertPos = nullptr;
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llvm::FoldingSetNodeID ID;
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ImportSet::Profile(ID, topLevelImports);
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if (ImportSet *result = ImportSets.FindNodeOrInsertPos(ID, InsertPos)) {
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if (ctx.Stats)
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ctx.Stats->getFrontendCounters().ImportSetFoldHit++;
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return *result;
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}
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if (ctx.Stats)
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ctx.Stats->getFrontendCounters().ImportSetFoldMiss++;
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SmallVector<ModuleDecl::ImportedModule, 4> stack;
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for (auto next : topLevelImports) {
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collectExports(next, stack);
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}
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while (!stack.empty()) {
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auto next = stack.pop_back_val();
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if (!visited.insert(next).second)
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continue;
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transitiveImports.push_back(next);
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collectExports(next, stack);
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}
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// Find the insert position again, in case the above traversal invalidated
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// the folding set via re-entrant calls to getImportSet() from
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// getImportedModulesForLookup().
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if (ImportSet *result = ImportSets.FindNodeOrInsertPos(ID, InsertPos))
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return *result;
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void *mem = ctx.Allocate(
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sizeof(ImportSet) +
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sizeof(ModuleDecl::ImportedModule) * topLevelImports.size() +
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sizeof(ModuleDecl::ImportedModule) * transitiveImports.size(),
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alignof(ImportSet), AllocationArena::Permanent);
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auto *result = new (mem) ImportSet(topLevelImports, transitiveImports);
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ImportSets.InsertNode(result, InsertPos);
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return *result;
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}
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ImportSet &ImportCache::getImportSet(const DeclContext *dc) {
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dc = dc->getModuleScopeContext();
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auto *file = dyn_cast<FileUnit>(dc);
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auto *mod = dc->getParentModule();
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if (!file)
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dc = mod;
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auto &ctx = mod->getASTContext();
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auto found = ImportSetForDC.find(dc);
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if (found != ImportSetForDC.end()) {
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if (ctx.Stats)
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ctx.Stats->getFrontendCounters().ImportSetCacheHit++;
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return *found->second;
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}
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if (ctx.Stats)
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ctx.Stats->getFrontendCounters().ImportSetCacheMiss++;
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SmallVector<ModuleDecl::ImportedModule, 4> imports;
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imports.emplace_back(ModuleDecl::AccessPathTy(), mod);
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if (file) {
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ModuleDecl::ImportFilter importFilter;
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importFilter |= ModuleDecl::ImportFilterKind::Private;
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importFilter |= ModuleDecl::ImportFilterKind::ImplementationOnly;
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file->getImportedModules(imports, importFilter);
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}
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auto &result = getImportSet(ctx, imports);
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ImportSetForDC[dc] = &result;
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return result;
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}
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ArrayRef<ModuleDecl::AccessPathTy> ImportCache::allocateArray(
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ASTContext &ctx,
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SmallVectorImpl<ModuleDecl::AccessPathTy> &results) {
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if (results.empty())
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return ArrayRef<ModuleDecl::AccessPathTy>();
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else if (results.size() == 1 && results[0].empty())
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return {&EmptyAccessPath, 1};
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else
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return ctx.AllocateCopy(results);
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}
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ArrayRef<ModuleDecl::AccessPathTy>
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ImportCache::getAllVisibleAccessPaths(const ModuleDecl *mod,
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const DeclContext *dc) {
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dc = dc->getModuleScopeContext();
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auto &ctx = mod->getASTContext();
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auto key = std::make_pair(mod, dc);
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auto found = VisibilityCache.find(key);
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if (found != VisibilityCache.end()) {
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if (ctx.Stats)
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ctx.Stats->getFrontendCounters().ModuleVisibilityCacheHit++;
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return found->second;
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}
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if (ctx.Stats)
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ctx.Stats->getFrontendCounters().ModuleVisibilityCacheMiss++;
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SmallVector<ModuleDecl::AccessPathTy, 1> accessPaths;
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for (auto next : getImportSet(dc).getAllImports()) {
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// If we found 'mod', record the access path.
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if (next.second == mod) {
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// Make sure the list of access paths is unique.
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if (!llvm::is_contained(accessPaths, next.first))
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accessPaths.push_back(next.first);
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}
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}
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auto result = allocateArray(ctx, accessPaths);
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VisibilityCache[key] = result;
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return result;
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}
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ArrayRef<ModuleDecl::AccessPathTy>
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ImportCache::getAllAccessPathsNotShadowedBy(const ModuleDecl *mod,
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const ModuleDecl *other,
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const DeclContext *dc) {
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dc = dc->getModuleScopeContext();
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auto *currentMod = dc->getParentModule();
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auto &ctx = currentMod->getASTContext();
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// Fast path.
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if (currentMod == other)
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return ArrayRef<ModuleDecl::AccessPathTy>();
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auto key = std::make_tuple(mod, other, dc);
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auto found = ShadowCache.find(key);
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if (found != ShadowCache.end()) {
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if (ctx.Stats)
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ctx.Stats->getFrontendCounters().ModuleShadowCacheHit++;
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return found->second;
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}
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if (ctx.Stats)
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ctx.Stats->getFrontendCounters().ModuleShadowCacheMiss++;
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SmallVector<ModuleDecl::ImportedModule, 4> stack;
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llvm::SmallDenseSet<ModuleDecl::ImportedModule, 32> visited;
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stack.emplace_back(ModuleDecl::AccessPathTy(), currentMod);
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if (auto *file = dyn_cast<FileUnit>(dc)) {
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ModuleDecl::ImportFilter importFilter;
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importFilter |= ModuleDecl::ImportFilterKind::Private;
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importFilter |= ModuleDecl::ImportFilterKind::ImplementationOnly;
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file->getImportedModules(stack, importFilter);
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}
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SmallVector<ModuleDecl::AccessPathTy, 4> accessPaths;
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while (!stack.empty()) {
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auto next = stack.pop_back_val();
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// Don't visit a module more than once.
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if (!visited.insert(next).second)
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continue;
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// Don't visit the 'other' module's re-exports.
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if (next.second == other)
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continue;
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// If we found 'mod' via some access path, remember the access
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// path.
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if (next.second == mod) {
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// Make sure the list of access paths is unique.
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if (!llvm::is_contained(accessPaths, next.first))
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accessPaths.push_back(next.first);
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}
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collectExports(next, stack);
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}
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auto result = allocateArray(ctx, accessPaths);
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ShadowCache[key] = result;
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return result;
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}; |