298 lines
11 KiB
C++
298 lines
11 KiB
C++
//===- ModuleDepCollector.cpp - Callbacks to collect deps -------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "clang/Tooling/DependencyScanning/ModuleDepCollector.h"
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#include "clang/Frontend/CompilerInstance.h"
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#include "clang/Lex/Preprocessor.h"
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#include "clang/Tooling/DependencyScanning/DependencyScanningWorker.h"
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#include "llvm/Support/StringSaver.h"
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using namespace clang;
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using namespace tooling;
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using namespace dependencies;
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CompilerInvocation ModuleDepCollector::makeInvocationForModuleBuildWithoutPaths(
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const ModuleDeps &Deps) const {
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// Make a deep copy of the original Clang invocation.
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CompilerInvocation CI(OriginalInvocation);
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// Remove options incompatible with explicit module build.
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CI.getFrontendOpts().Inputs.clear();
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CI.getFrontendOpts().OutputFile.clear();
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CI.getFrontendOpts().ProgramAction = frontend::GenerateModule;
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CI.getLangOpts()->ModuleName = Deps.ID.ModuleName;
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CI.getFrontendOpts().IsSystemModule = Deps.IsSystem;
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CI.getLangOpts()->ImplicitModules = false;
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// Report the prebuilt modules this module uses.
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for (const auto &PrebuiltModule : Deps.PrebuiltModuleDeps) {
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CI.getFrontendOpts().ModuleFiles.push_back(PrebuiltModule.PCMFile);
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CI.getFrontendOpts().ModuleMapFiles.push_back(PrebuiltModule.ModuleMapFile);
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}
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CI.getPreprocessorOpts().ImplicitPCHInclude.clear();
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return CI;
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}
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static std::vector<std::string>
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serializeCompilerInvocation(const CompilerInvocation &CI) {
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// Set up string allocator.
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llvm::BumpPtrAllocator Alloc;
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llvm::StringSaver Strings(Alloc);
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auto SA = [&Strings](const Twine &Arg) { return Strings.save(Arg).data(); };
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// Synthesize full command line from the CompilerInvocation, including "-cc1".
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SmallVector<const char *, 32> Args{"-cc1"};
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CI.generateCC1CommandLine(Args, SA);
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// Convert arguments to the return type.
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return std::vector<std::string>{Args.begin(), Args.end()};
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}
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std::vector<std::string> ModuleDeps::getCanonicalCommandLine(
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std::function<StringRef(ModuleID)> LookupPCMPath,
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std::function<const ModuleDeps &(ModuleID)> LookupModuleDeps) const {
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CompilerInvocation CI(Invocation);
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FrontendOptions &FrontendOpts = CI.getFrontendOpts();
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InputKind ModuleMapInputKind(FrontendOpts.DashX.getLanguage(),
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InputKind::Format::ModuleMap);
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FrontendOpts.Inputs.emplace_back(ClangModuleMapFile, ModuleMapInputKind);
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FrontendOpts.OutputFile = std::string(LookupPCMPath(ID));
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dependencies::detail::collectPCMAndModuleMapPaths(
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ClangModuleDeps, LookupPCMPath, LookupModuleDeps,
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FrontendOpts.ModuleFiles, FrontendOpts.ModuleMapFiles);
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return serializeCompilerInvocation(CI);
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}
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std::vector<std::string>
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ModuleDeps::getCanonicalCommandLineWithoutModulePaths() const {
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return serializeCompilerInvocation(Invocation);
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}
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void dependencies::detail::collectPCMAndModuleMapPaths(
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llvm::ArrayRef<ModuleID> Modules,
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std::function<StringRef(ModuleID)> LookupPCMPath,
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std::function<const ModuleDeps &(ModuleID)> LookupModuleDeps,
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std::vector<std::string> &PCMPaths, std::vector<std::string> &ModMapPaths) {
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llvm::StringSet<> AlreadyAdded;
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std::function<void(llvm::ArrayRef<ModuleID>)> AddArgs =
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[&](llvm::ArrayRef<ModuleID> Modules) {
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for (const ModuleID &MID : Modules) {
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if (!AlreadyAdded.insert(MID.ModuleName + MID.ContextHash).second)
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continue;
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const ModuleDeps &M = LookupModuleDeps(MID);
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// Depth first traversal.
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AddArgs(M.ClangModuleDeps);
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PCMPaths.push_back(LookupPCMPath(MID).str());
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if (!M.ClangModuleMapFile.empty())
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ModMapPaths.push_back(M.ClangModuleMapFile);
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}
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};
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AddArgs(Modules);
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}
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void ModuleDepCollectorPP::FileChanged(SourceLocation Loc,
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FileChangeReason Reason,
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SrcMgr::CharacteristicKind FileType,
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FileID PrevFID) {
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if (Reason != PPCallbacks::EnterFile)
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return;
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// This has to be delayed as the context hash can change at the start of
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// `CompilerInstance::ExecuteAction`.
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if (MDC.ContextHash.empty()) {
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MDC.ContextHash = Instance.getInvocation().getModuleHash();
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MDC.Consumer.handleContextHash(MDC.ContextHash);
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}
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SourceManager &SM = Instance.getSourceManager();
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// Dependency generation really does want to go all the way to the
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// file entry for a source location to find out what is depended on.
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// We do not want #line markers to affect dependency generation!
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if (Optional<StringRef> Filename =
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SM.getNonBuiltinFilenameForID(SM.getFileID(SM.getExpansionLoc(Loc))))
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MDC.FileDeps.push_back(
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std::string(llvm::sys::path::remove_leading_dotslash(*Filename)));
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}
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void ModuleDepCollectorPP::InclusionDirective(
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SourceLocation HashLoc, const Token &IncludeTok, StringRef FileName,
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bool IsAngled, CharSourceRange FilenameRange, const FileEntry *File,
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StringRef SearchPath, StringRef RelativePath, const Module *Imported,
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SrcMgr::CharacteristicKind FileType) {
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if (!File && !Imported) {
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// This is a non-modular include that HeaderSearch failed to find. Add it
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// here as `FileChanged` will never see it.
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MDC.FileDeps.push_back(std::string(FileName));
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}
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handleImport(Imported);
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}
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void ModuleDepCollectorPP::moduleImport(SourceLocation ImportLoc,
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ModuleIdPath Path,
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const Module *Imported) {
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handleImport(Imported);
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}
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void ModuleDepCollectorPP::handleImport(const Module *Imported) {
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if (!Imported)
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return;
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const Module *TopLevelModule = Imported->getTopLevelModule();
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if (MDC.isPrebuiltModule(TopLevelModule))
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DirectPrebuiltModularDeps.insert(TopLevelModule);
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else
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DirectModularDeps.insert(TopLevelModule);
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}
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void ModuleDepCollectorPP::EndOfMainFile() {
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FileID MainFileID = Instance.getSourceManager().getMainFileID();
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MDC.MainFile = std::string(
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Instance.getSourceManager().getFileEntryForID(MainFileID)->getName());
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if (!Instance.getPreprocessorOpts().ImplicitPCHInclude.empty())
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MDC.FileDeps.push_back(Instance.getPreprocessorOpts().ImplicitPCHInclude);
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for (const Module *M : DirectModularDeps) {
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// A top-level module might not be actually imported as a module when
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// -fmodule-name is used to compile a translation unit that imports this
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// module. In that case it can be skipped. The appropriate header
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// dependencies will still be reported as expected.
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if (!M->getASTFile())
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continue;
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handleTopLevelModule(M);
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}
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MDC.Consumer.handleDependencyOutputOpts(*MDC.Opts);
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for (auto &&I : MDC.ModularDeps)
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MDC.Consumer.handleModuleDependency(I.second);
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for (auto &&I : MDC.FileDeps)
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MDC.Consumer.handleFileDependency(I);
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for (auto &&I : DirectPrebuiltModularDeps)
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MDC.Consumer.handlePrebuiltModuleDependency(PrebuiltModuleDep{I});
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}
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ModuleID ModuleDepCollectorPP::handleTopLevelModule(const Module *M) {
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assert(M == M->getTopLevelModule() && "Expected top level module!");
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// If this module has been handled already, just return its ID.
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auto ModI = MDC.ModularDeps.insert({M, ModuleDeps{}});
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if (!ModI.second)
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return ModI.first->second.ID;
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ModuleDeps &MD = ModI.first->second;
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MD.ID.ModuleName = M->getFullModuleName();
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MD.ImportedByMainFile = DirectModularDeps.contains(M);
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MD.ImplicitModulePCMPath = std::string(M->getASTFile()->getName());
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MD.IsSystem = M->IsSystem;
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const FileEntry *ModuleMap = Instance.getPreprocessor()
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.getHeaderSearchInfo()
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.getModuleMap()
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.getModuleMapFileForUniquing(M);
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MD.ClangModuleMapFile = std::string(ModuleMap ? ModuleMap->getName() : "");
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serialization::ModuleFile *MF =
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MDC.Instance.getASTReader()->getModuleManager().lookup(M->getASTFile());
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MDC.Instance.getASTReader()->visitInputFiles(
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*MF, true, true, [&](const serialization::InputFile &IF, bool isSystem) {
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// __inferred_module.map is the result of the way in which an implicit
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// module build handles inferred modules. It adds an overlay VFS with
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// this file in the proper directory and relies on the rest of Clang to
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// handle it like normal. With explicitly built modules we don't need
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// to play VFS tricks, so replace it with the correct module map.
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if (IF.getFile()->getName().endswith("__inferred_module.map")) {
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MD.FileDeps.insert(ModuleMap->getName());
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return;
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}
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MD.FileDeps.insert(IF.getFile()->getName());
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});
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// Add direct prebuilt module dependencies now, so that we can use them when
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// creating a CompilerInvocation and computing context hash for this
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// ModuleDeps instance.
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addDirectPrebuiltModuleDeps(M, MD);
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MD.Invocation = MDC.makeInvocationForModuleBuildWithoutPaths(MD);
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MD.ID.ContextHash = MD.Invocation.getModuleHash();
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llvm::DenseSet<const Module *> AddedModules;
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addAllSubmoduleDeps(M, MD, AddedModules);
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return MD.ID;
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}
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void ModuleDepCollectorPP::addDirectPrebuiltModuleDeps(const Module *M,
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ModuleDeps &MD) {
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for (const Module *Import : M->Imports)
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if (Import->getTopLevelModule() != M->getTopLevelModule())
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if (MDC.isPrebuiltModule(Import))
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MD.PrebuiltModuleDeps.emplace_back(Import);
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}
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void ModuleDepCollectorPP::addAllSubmoduleDeps(
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const Module *M, ModuleDeps &MD,
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llvm::DenseSet<const Module *> &AddedModules) {
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addModuleDep(M, MD, AddedModules);
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for (const Module *SubM : M->submodules())
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addAllSubmoduleDeps(SubM, MD, AddedModules);
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}
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void ModuleDepCollectorPP::addModuleDep(
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const Module *M, ModuleDeps &MD,
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llvm::DenseSet<const Module *> &AddedModules) {
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for (const Module *Import : M->Imports) {
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if (Import->getTopLevelModule() != M->getTopLevelModule() &&
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!MDC.isPrebuiltModule(Import)) {
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ModuleID ImportID = handleTopLevelModule(Import->getTopLevelModule());
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if (AddedModules.insert(Import->getTopLevelModule()).second)
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MD.ClangModuleDeps.push_back(ImportID);
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}
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}
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}
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ModuleDepCollector::ModuleDepCollector(
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std::unique_ptr<DependencyOutputOptions> Opts, CompilerInstance &I,
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DependencyConsumer &C, CompilerInvocation &&OriginalCI)
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: Instance(I), Consumer(C), Opts(std::move(Opts)),
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OriginalInvocation(std::move(OriginalCI)) {}
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void ModuleDepCollector::attachToPreprocessor(Preprocessor &PP) {
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PP.addPPCallbacks(std::make_unique<ModuleDepCollectorPP>(Instance, *this));
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}
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void ModuleDepCollector::attachToASTReader(ASTReader &R) {}
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bool ModuleDepCollector::isPrebuiltModule(const Module *M) {
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std::string Name(M->getTopLevelModuleName());
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const auto &PrebuiltModuleFiles =
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Instance.getHeaderSearchOpts().PrebuiltModuleFiles;
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auto PrebuiltModuleFileIt = PrebuiltModuleFiles.find(Name);
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if (PrebuiltModuleFileIt == PrebuiltModuleFiles.end())
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return false;
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assert("Prebuilt module came from the expected AST file" &&
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PrebuiltModuleFileIt->second == M->getASTFile()->getName());
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return true;
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}
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