26#include "llvm/Config/llvm-config.h"
62#if !defined(_MSC_VER) && !defined(__MINGW32__)
71#define DEBUG_TYPE "thinlto"
100 " to save optimized bitcode\n");
108 GVSummaryList, [](
const std::unique_ptr<GlobalValueSummary> &Summary) {
109 auto Linkage = Summary->linkage();
113 if (StrongDefForLinker != GVSummaryList.end())
114 return StrongDefForLinker->get();
118 GVSummaryList, [](
const std::unique_ptr<GlobalValueSummary> &Summary) {
119 auto Linkage = Summary->linkage();
123 if (FirstDefForLinker == GVSummaryList.end())
125 return FirstDefForLinker->get();
135 return GVSummaryList.size() > 1;
138 for (
auto &
I : Index) {
139 if (HasMultipleCopies(
I.second.SummaryList))
140 PrevailingCopy[
I.first] =
148 for (
auto &M : Modules) {
149 LLVM_DEBUG(
dbgs() <<
"Adding module " << M->getName() <<
" to ModuleMap\n");
151 "Expect unique Buffer Identifier");
152 ModuleMap[M->getName()] = M.get();
158 bool ClearDSOLocalOnDeclarations) {
168 : DiagnosticInfo(
DK_Linker, Severity), Msg(DiagMsg) {}
169 void print(DiagnosticPrinter &DP)
const override { DP << Msg; }
175 bool BrokenDebugInfo =
false;
178 if (BrokenDebugInfo) {
180 "Invalid debug info found, debug info will be stripped",
DS_Warning));
189 auto &
Mod =
Input->getSingleBitcodeModule();
192 Lazy ?
Mod.getLazyModule(Context,
194 :
Mod.parseModule(Context);
197 SMDiagnostic Err = SMDiagnostic(Mod.getModuleIdentifier(),
198 SourceMgr::DK_Error, EIB.message());
199 Err.print(
"ThinLTO", errs());
205 return std::move(*ModuleOrErr);
212 bool ClearDSOLocalOnDeclarations) {
213 auto Loader = [&](
StringRef Identifier) {
214 auto &
Input = ModuleMap[Identifier];
223 SMDiagnostic Err = SMDiagnostic(TheModule.getModuleIdentifier(),
224 SourceMgr::DK_Error, EIB.message());
225 Err.print(
"ThinLTO", errs());
234 unsigned OptLevel,
bool Freestanding,
236 std::optional<PGOOptions> PGOOpt;
250 std::unique_ptr<TargetLibraryInfoImpl> TLII(
253 TLII->disableAllFunctions();
257 PB.registerModuleAnalyses(
MAM);
258 PB.registerCGSCCAnalyses(
CGAM);
259 PB.registerFunctionAnalyses(
FAM);
260 PB.registerLoopAnalyses(
LAM);
284 MPM.
addPass(
PB.buildThinLTODefaultPipeline(OL, Index));
292 for (
const auto &Sym : File.symbols()) {
306 for (
const auto &Sym : File.symbols()) {
307 if (PreservedSymbols.
count(Sym.getName()) && !Sym.getIRName().empty())
317 const Triple &TheTriple) {
320 GUIDPreservedSymbols);
321 return GUIDPreservedSymbols;
341 return std::make_unique<SmallVectorMemoryBuffer>(
347class ModuleCacheEntry {
348 SmallString<128> EntryPath;
355 StringRef CachePath,
const ModuleSummaryIndex &Index, StringRef ModuleID,
356 const FunctionImporter::ImportMapTy &ImportList,
358 const std::map<GlobalValue::GUID, GlobalValue::LinkageTypes> &ResolvedODR,
360 bool Freestanding,
const TargetMachineBuilder &TMBuilder) {
361 if (CachePath.
empty())
364 if (!
Index.modulePaths().count(ModuleID))
369 [](uint32_t V) { return V == 0; }))
373 llvm::lto::Config Conf;
383 ResolvedODR, DefinedGVSummaries);
391 StringRef getEntryPath() {
return EntryPath; }
394 ErrorOr<std::unique_ptr<MemoryBuffer>> tryLoadingBuffer() {
395 if (EntryPath.empty())
396 return std::error_code();
397 SmallString<64> ResultPath;
403 *FDOrErr, EntryPath, -1,
false);
409 void write(
const MemoryBuffer &OutputBuffer) {
410 if (EntryPath.empty())
414 EntryPath, [&OutputBuffer](llvm::raw_ostream &OS) ->
llvm::Error {
425static std::unique_ptr<MemoryBuffer>
433 bool DisableCodeGen,
StringRef SaveTempsDir,
434 bool Freestanding,
unsigned OptLevel,
unsigned count,
435 bool DebugPassManager) {
437 bool SingleModule = (ModuleMap.
size() == 1);
441 bool ClearDSOLocalOnDeclarations =
442 TM.getTargetTriple().isOSBinFormatELF() &&
447 promoteModule(TheModule, Index, ClearDSOLocalOnDeclarations);
458 if (!ExportList.
empty() || !GUIDPreservedSymbols.
empty()) {
468 ClearDSOLocalOnDeclarations);
479 optimizeModule(TheModule, TM, OptLevel, Freestanding, DebugPassManager,
484 if (DisableCodeGen) {
493 return std::make_unique<SmallVectorMemoryBuffer>(
507 StringMap<std::map<GlobalValue::GUID, GlobalValue::LinkageTypes>>
514 const auto &Prevailing = PrevailingCopy.
find(GUID);
516 if (Prevailing == PrevailingCopy.
end())
518 return Prevailing->second == S;
521 auto recordNewLinkage = [&](
StringRef ModuleIdentifier,
524 ResolvedODR[ModuleIdentifier][GUID] = NewLinkage;
530 GUIDPreservedSymbols);
535 const Triple &TheTriple) {
536 if (TMBuilder.
MCpu.empty())
538 TMBuilder.
TheTriple = std::move(TheTriple);
547 toString(InputOrError.takeError()));
549 auto TripleStr = (*InputOrError)->getTargetTriple();
550 Triple TheTriple(TripleStr);
554 else if (TMBuilder.TheTriple != TheTriple) {
555 if (!TMBuilder.TheTriple.isCompatibleWith(TheTriple))
561 Modules.emplace_back(std::move(*InputOrError));
565 PreservedSymbols.insert(Name);
572 PreservedSymbols.insert(Name);
586 std::string FeatureStr = Features.
getString();
588 std::unique_ptr<TargetMachine> TM(
591 assert(TM &&
"Cannot create target machine");
601 std::unique_ptr<ModuleSummaryIndex> CombinedIndex =
602 std::make_unique<ModuleSummaryIndex>(
false);
603 for (
auto &
Mod : Modules) {
604 auto &M =
Mod->getSingleBitcodeModule();
605 if (
Error Err = M.readSummary(*CombinedIndex,
Mod->getName())) {
608 std::move(Err),
errs(),
609 "error: can't create module summary index for buffer: ");
613 return CombinedIndex;
624 : ExportLists(ExportLists), GUIDPreservedSymbols(GUIDPreservedSymbols) {}
627 const auto &ExportList = ExportLists.
find(ModuleIdentifier);
628 return (ExportList != ExportLists.
end() && ExportList->second.
count(VI)) ||
629 GUIDPreservedSymbols.
count(VI.getGUID());
634 const DenseMap<GlobalValue::GUID, const GlobalValueSummary *> &PrevailingCopy;
635 IsPrevailing(
const DenseMap<GlobalValue::GUID, const GlobalValueSummary *>
637 : PrevailingCopy(PrevailingCopy) {}
640 const auto &Prevailing = PrevailingCopy.
find(GUID);
642 if (Prevailing == PrevailingCopy.
end())
644 return Prevailing->second == S;
668 auto ModuleCount = Index.modulePaths().size();
673 Index.collectDefinedGVSummariesPerModule(ModuleToDefinedGVSummaries);
693 IsPrevailing(PrevailingCopy), ImportLists,
702 ModuleToDefinedGVSummaries[ModuleIdentifier],
708 Index, IsExported(ExportLists, GUIDPreservedSymbols),
709 IsPrevailing(PrevailingCopy));
722 auto ModuleCount = Index.modulePaths().size();
726 Index.collectDefinedGVSummariesPerModule(ModuleToDefinedGVSummaries);
745 IsPrevailing(PrevailingCopy), ImportLists,
761 auto ModuleCount = Index.modulePaths().size();
766 Index.collectDefinedGVSummariesPerModule(ModuleToDefinedGVSummaries);
785 IsPrevailing(PrevailingCopy), ImportLists,
789 ModuleIdentifier, ModuleToDefinedGVSummaries,
790 ImportLists[ModuleIdentifier], ModuleToSummariesForIndex, DecSummaries);
799 auto ModuleCount = Index.modulePaths().size();
804 Index.collectDefinedGVSummariesPerModule(ModuleToDefinedGVSummaries);
823 IsPrevailing(PrevailingCopy), ImportLists,
832 ModuleIdentifier, ModuleToDefinedGVSummaries,
833 ImportLists[ModuleIdentifier], ModuleToSummariesForIndex, DecSummaries);
836 ModuleToSummariesForIndex))
838 " to save imports lists\n");
849 auto ModuleCount = Index.modulePaths().size();
853 auto GUIDPreservedSymbols =
860 Index.collectDefinedGVSummariesPerModule(ModuleToDefinedGVSummaries);
873 IsPrevailing(PrevailingCopy), ImportLists,
875 auto &ExportList = ExportLists[ModuleIdentifier];
879 if (ExportList.
empty() && GUIDPreservedSymbols.
empty())
890 Index, IsExported(ExportLists, GUIDPreservedSymbols),
891 IsPrevailing(PrevailingCopy));
898 ModuleToDefinedGVSummaries[ModuleIdentifier],
902 ModuleToDefinedGVSummaries[ModuleIdentifier]);
912 optimizeModule(TheModule, *TMBuilder.create(), OptLevel, Freestanding,
913 DebugPassManager,
nullptr);
922 auto ArchName = TMBuilder.TheTriple.getArchName();
925 Twine(
count) +
"." + ArchName +
".thinlto.o");
931 if (!CacheEntryPath.
empty()) {
935 return std::string(OutputPath);
939 return std::string(OutputPath);
943 errs() <<
"remark: can't link or copy from cached entry '" << CacheEntryPath
944 <<
"' to '" << OutputPath <<
"'\n";
952 return std::string(OutputPath);
963 assert(ProducedBinaries.empty() &&
"The generator should not be reused");
964 if (SavedObjectsDirectoryPath.empty())
965 ProducedBinaries.resize(Modules.size());
972 ProducedBinaryFiles.resize(Modules.size());
979 for (
auto &
Mod : Modules) {
990 if (SavedObjectsDirectoryPath.empty())
993 ProducedBinaryFiles[
count] =
1005 if (!SaveTempsDir.empty()) {
1006 auto SaveTempPath = SaveTempsDir +
"index.bc";
1011 " to save optimized bitcode\n");
1018 auto ModuleCount = Modules.size();
1022 Index->collectDefinedGVSummariesPerModule(ModuleToDefinedGVSummaries);
1027 for (
const auto &M : Modules)
1029 GUIDPreservedSymbols);
1032 for (
const auto &M : Modules)
1042 Index->setWithWholeProgramVisibility();
1055 std::map<ValueInfo, std::vector<VTableSlotSummary>> LocalWPDTargetsMap;
1056 std::set<GlobalValue::GUID> ExportedGUIDs;
1069 IsPrevailing(PrevailingCopy), ImportLists,
1087 IsExported(ExportLists, GUIDPreservedSymbols),
1088 LocalWPDTargetsMap);
1090 *Index, IsExported(ExportLists, GUIDPreservedSymbols),
1091 IsPrevailing(PrevailingCopy));
1098 for (
auto &
Module : Modules) {
1100 ExportLists[ModuleIdentifier];
1101 ImportLists[ModuleIdentifier];
1102 ResolvedODR[ModuleIdentifier];
1103 ModuleToDefinedGVSummaries[ModuleIdentifier];
1106 std::vector<BitcodeModule *> ModulesVec;
1107 ModulesVec.reserve(Modules.size());
1108 for (
auto &
Mod : Modules)
1109 ModulesVec.push_back(&
Mod->getSingleBitcodeModule());
1115 TimeTraceScopeExit.release();
1120 for (
auto IndexCount : ModulesOrdering) {
1121 auto &
Mod = Modules[IndexCount];
1123 auto ModuleIdentifier =
Mod->getName();
1124 auto &ExportList = ExportLists[ModuleIdentifier];
1126 auto &DefinedGVSummaries = ModuleToDefinedGVSummaries[ModuleIdentifier];
1129 ModuleCacheEntry CacheEntry(CacheOptions.Path, *Index, ModuleIdentifier,
1130 ImportLists[ModuleIdentifier], ExportList,
1131 ResolvedODR[ModuleIdentifier],
1132 DefinedGVSummaries, OptLevel, Freestanding,
1134 auto CacheEntryPath = CacheEntry.getEntryPath();
1137 auto ErrOrBuffer = CacheEntry.tryLoadingBuffer();
1139 <<
" '" << CacheEntryPath <<
"' for buffer "
1140 <<
count <<
" " << ModuleIdentifier <<
"\n");
1144 if (SavedObjectsDirectoryPath.empty())
1145 ProducedBinaries[
count] = std::move(ErrOrBuffer.get());
1148 count, CacheEntryPath, *ErrOrBuffer.get());
1155 Context.enableDebugTypeODRUniquing();
1159 if (!DiagFileOrErr) {
1160 errs() <<
"Error: " <<
toString(DiagFileOrErr.takeError()) <<
"\n";
1172 auto &ImportList = ImportLists[ModuleIdentifier];
1175 *TheModule, *Index, ModuleMap, *TMBuilder.create(), ImportList,
1176 ExportList, GUIDPreservedSymbols,
1177 ModuleToDefinedGVSummaries[ModuleIdentifier], CacheOptions,
1178 DisableCodeGen, SaveTempsDir, Freestanding, OptLevel,
count,
1184 if (SavedObjectsDirectoryPath.empty()) {
1186 if (!CacheEntryPath.empty()) {
1193 auto ReloadedBufferOrErr = CacheEntry.tryLoadingBuffer();
1194 if (
auto EC = ReloadedBufferOrErr.getError()) {
1196 errs() <<
"remark: can't reload cached file '" << CacheEntryPath
1197 <<
"': " << EC.message() <<
"\n";
1211 pruneCache(CacheOptions.Path, CacheOptions.Policy, ProducedBinaries);
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
This file provides a bitcode writing pass.
#define LLVM_LIFETIME_BOUND
Provides passes for computing function attributes based on interprocedural analyses.
This file implements a simple parser to decode commandline option for remarks hotness threshold that ...
This is the interface to build a ModuleSummaryIndex for a module.
CGSCCAnalysisManager CGAM
if(auto Err=PB.parsePassPipeline(MPM, Passes)) return wrap(std MPM run * Mod
FunctionAnalysisManager FAM
ModuleAnalysisManager MAM
PassInstrumentationCallbacks PIC
PassBuilder PB(Machine, PassOpts->PTO, std::nullopt, &PIC)
This header defines classes/functions to handle pass execution timing information with interfaces for...
This file defines the make_scope_exit function, which executes user-defined cleanup logic at scope ex...
This header defines a class that provides bookkeeping for all standard (i.e in-tree) pass instrumenta...
This file defines the 'Statistic' class, which is designed to be an easy way to expose various metric...
static void crossImportIntoModule(Module &TheModule, const ModuleSummaryIndex &Index, StringMap< lto::InputFile * > &ModuleMap, const FunctionImporter::ImportMapTy &ImportList, bool ClearDSOLocalOnDeclarations)
static void computeDeadSymbolsInIndex(ModuleSummaryIndex &Index, const DenseSet< GlobalValue::GUID > &GUIDPreservedSymbols)
static StringMap< lto::InputFile * > generateModuleMap(std::vector< std::unique_ptr< lto::InputFile > > &Modules)
static void initTMBuilder(TargetMachineBuilder &TMBuilder, const Triple &TheTriple)
static void resolvePrevailingInIndex(ModuleSummaryIndex &Index, StringMap< std::map< GlobalValue::GUID, GlobalValue::LinkageTypes > > &ResolvedODR, const DenseSet< GlobalValue::GUID > &GUIDPreservedSymbols, const DenseMap< GlobalValue::GUID, const GlobalValueSummary * > &PrevailingCopy)
Resolve prevailing symbols.
static void computePrevailingCopies(const ModuleSummaryIndex &Index, DenseMap< GlobalValue::GUID, const GlobalValueSummary * > &PrevailingCopy)
static void saveTempBitcode(const Module &TheModule, StringRef TempDir, unsigned count, StringRef Suffix)
static void verifyLoadedModule(Module &TheModule)
Verify the module and strip broken debug info.
static void addUsedSymbolToPreservedGUID(const lto::InputFile &File, DenseSet< GlobalValue::GUID > &PreservedGUID)
static std::unique_ptr< MemoryBuffer > ProcessThinLTOModule(Module &TheModule, ModuleSummaryIndex &Index, StringMap< lto::InputFile * > &ModuleMap, TargetMachine &TM, const FunctionImporter::ImportMapTy &ImportList, const FunctionImporter::ExportSetTy &ExportList, const DenseSet< GlobalValue::GUID > &GUIDPreservedSymbols, const GVSummaryMapTy &DefinedGlobals, const ThinLTOCodeGenerator::CachingOptions &CacheOptions, bool DisableCodeGen, StringRef SaveTempsDir, bool Freestanding, unsigned OptLevel, unsigned count, bool DebugPassManager)
static cl::opt< int > ThreadCount("threads", cl::init(0))
static std::unique_ptr< MemoryBuffer > codegenModule(Module &TheModule, TargetMachine &TM)
static void optimizeModule(Module &TheModule, TargetMachine &TM, unsigned OptLevel, bool Freestanding, bool DebugPassManager, ModuleSummaryIndex *Index)
static void computeGUIDPreservedSymbols(const lto::InputFile &File, const StringSet<> &PreservedSymbols, const Triple &TheTriple, DenseSet< GlobalValue::GUID > &GUIDs)
static std::unique_ptr< Module > loadModuleFromInput(lto::InputFile *Input, LLVMContext &Context, bool Lazy, bool IsImporting)
static const GlobalValueSummary * getFirstDefinitionForLinker(const GlobalValueSummaryList &GVSummaryList)
static void promoteModule(Module &TheModule, const ModuleSummaryIndex &Index, bool ClearDSOLocalOnDeclarations)
iterator find(const_arg_type_t< KeyT > Val)
Implements a dense probed hash-table based set.
This is the base abstract class for diagnostic reporting in the backend.
Base class for error info classes.
Lightweight error class with error context and mandatory checking.
static ErrorSuccess success()
Create a success value.
Tagged union holding either a T or a Error.
Error takeError()
Take ownership of the stored error.
reference get()
Returns a reference to the stored T value.
The map maintains the list of imports.
The function importer is automatically importing function from other modules based on the provided su...
LLVM_ABI Expected< bool > importFunctions(Module &M, const ImportMapTy &ImportList)
Import functions in Module M based on the supplied import list.
DenseSet< ValueInfo > ExportSetTy
The set contains an entry for every global value that the module exports.
Function and variable summary information to aid decisions and implementation of importing.
static LLVM_ABI GUID getGUIDAssumingExternalLinkage(StringRef GlobalName)
Return a 64-bit global unique ID constructed from the name of a global symbol.
uint64_t GUID
Declare a type to represent a global unique identifier for a global value.
static bool isAvailableExternallyLinkage(LinkageTypes Linkage)
static LLVM_ABI std::string getGlobalIdentifier(StringRef Name, GlobalValue::LinkageTypes Linkage, StringRef FileName)
Return the modified name for a global value suitable to be used as the key for a global lookup (e....
bool isWeakForLinker() const
LinkageTypes
An enumeration for the kinds of linkage for global values.
@ ExternalLinkage
Externally visible function.
This is an important class for using LLVM in a threaded context.
LLVM_ABI void diagnose(const DiagnosticInfo &DI)
Report a message to the currently installed diagnostic handler.
LLVM_ABI void setDiscardValueNames(bool Discard)
Set the Context runtime configuration to discard all value name (but GlobalValue).
This interface provides simple read-only access to a block of memory, and provides simple methods for...
static ErrorOr< std::unique_ptr< MemoryBuffer > > getOpenFile(sys::fs::file_t FD, const Twine &Filename, uint64_t FileSize, bool RequiresNullTerminator=true, bool IsVolatile=false, std::optional< Align > Alignment=std::nullopt)
Given an already-open file descriptor, read the file and return a MemoryBuffer.
StringRef getBuffer() const
Class to hold module path string table and global value map, and encapsulate methods for operating on...
A Module instance is used to store all the information related to an LLVM module.
const Triple & getTargetTriple() const
Get the target triple which is a string describing the target host.
LLVMContext & getContext() const
Get the global data context.
StringRef getName() const
Get a short "name" for the module.
const std::string & getModuleIdentifier() const
Get the module identifier which is, essentially, the name of the module.
PIELevel::Level getPIELevel() const
Returns the PIE level (small or large model)
static LLVM_ABI const OptimizationLevel O3
Optimize for fast execution as much as possible.
static LLVM_ABI const OptimizationLevel O0
Disable as many optimizations as possible.
static LLVM_ABI const OptimizationLevel O2
Optimize for fast execution as much as possible without triggering significant incremental compile ti...
static LLVM_ABI const OptimizationLevel O1
Optimize quickly without destroying debuggability.
This class provides access to building LLVM's passes.
This class manages callbacks registration, as well as provides a way for PassInstrumentation to pass ...
LLVM_ATTRIBUTE_MINSIZE std::enable_if_t<!std::is_same_v< PassT, PassManager > > addPass(PassT &&Pass)
PreservedAnalyses run(IRUnitT &IR, AnalysisManagerT &AM, ExtraArgTs... ExtraArgs)
Run all of the passes in this manager over the given unit of IR.
Tunable parameters for passes in the default pipelines.
bool SLPVectorization
Tuning option to enable/disable slp loop vectorization, set based on opt level.
bool LoopVectorization
Tuning option to enable/disable loop vectorization, set based on opt level.
Analysis providing profile information.
Instances of this class encapsulate one diagnostic report, allowing printing to a raw_ostream as a ca...
SmallString - A SmallString is just a SmallVector with methods and accessors that make it work better...
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
This class provides an interface to register all the standard pass instrumentations and manages their...
StringMap - This is an unconventional map that is specialized for handling keys that are "strings",...
bool contains(StringRef Key) const
contains - Return true if the element is in the map, false otherwise.
size_type count(StringRef Key) const
count - Return 1 if the element is in the map, 0 otherwise.
StringRef - Represent a constant reference to a string, i.e.
constexpr bool empty() const
empty - Check if the string is empty.
StringSet - A wrapper for StringMap that provides set-like functionality.
Manages the enabling and disabling of subtarget specific features.
LLVM_ABI void getDefaultSubtargetFeatures(const Triple &Triple)
Adds the default features for the specified target triple.
LLVM_ABI std::string getString() const
Returns features as a string.
Analysis pass providing the TargetLibraryInfo.
Implementation of the target library information.
Primary interface to the complete machine description for the target machine.
Target - Wrapper for Target specific information.
TargetMachine * createTargetMachine(const Triple &TT, StringRef CPU, StringRef Features, const TargetOptions &Options, std::optional< Reloc::Model > RM, std::optional< CodeModel::Model > CM=std::nullopt, CodeGenOptLevel OL=CodeGenOptLevel::Default, bool JIT=false) const
createTargetMachine - Create a target specific machine implementation for the specified Triple.
LLVM_ABI void preserveSymbol(StringRef Name)
Adds to a list of all global symbols that must exist in the final generated code.
LLVM_ABI void run()
Process all the modules that were added to the code generator in parallel.
LLVM_ABI void crossReferenceSymbol(StringRef Name)
Adds to a list of all global symbols that are cross-referenced between ThinLTO files.
LLVM_ABI void addModule(StringRef Identifier, StringRef Data)
Add given module to the code generator.
auto async(Function &&F, Args &&...ArgList)
Asynchronous submission of a task to the pool.
Triple - Helper class for working with autoconf configuration names.
Twine - A lightweight data structure for efficiently representing the concatenation of temporary valu...
std::pair< iterator, bool > insert(const ValueT &V)
void insert_range(Range &&R)
size_type count(const_arg_type_t< ValueT > V) const
Return 1 if the specified key is in the set, 0 otherwise.
PassManager manages ModulePassManagers.
bool run(Module &M)
run - Execute all of the passes scheduled for execution.
A raw_ostream that writes to a file descriptor.
A raw_ostream that writes to an SmallVector or SmallString.
LLVM_ABI void optimize(Module &Module)
Perform post-importing ThinLTO optimizations.
LLVM_ABI std::unique_ptr< ModuleSummaryIndex > linkCombinedIndex()
Produce the combined summary index from all the bitcode files: "thin-link".
LLVM_ABI void crossModuleImport(Module &Module, ModuleSummaryIndex &Index, const lto::InputFile &File)
Perform cross-module importing for the module identified by ModuleIdentifier.
LLVM_ABI void emitImports(Module &Module, StringRef OutputName, ModuleSummaryIndex &Index, const lto::InputFile &File)
Compute and emit the imported files for module at ModulePath.
LLVM_ABI void internalize(Module &Module, ModuleSummaryIndex &Index, const lto::InputFile &File)
Perform internalization.
LLVM_ABI void gatherImportedSummariesForModule(Module &Module, ModuleSummaryIndex &Index, ModuleToSummariesForIndexTy &ModuleToSummariesForIndex, GVSummaryPtrSet &DecSummaries, const lto::InputFile &File)
Compute the list of summaries and the subset of declaration summaries needed for importing into modul...
LLVM_ABI void promote(Module &Module, ModuleSummaryIndex &Index, const lto::InputFile &File)
Perform promotion and renaming of exported internal functions, and additionally resolve weak and link...
LLVM_ABI std::string writeGeneratedObject(int count, StringRef CacheEntryPath, const MemoryBuffer &OutputBuffer)
Write temporary object file to SavedObjectDirectoryPath, write symlink to Cache directory if needed.
Interfaces for registering analysis passes, producing common pass manager configurations,...
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
ThinLTOCodeGeneratorImpl - Namespace used for ThinLTOCodeGenerator implementation details.
initializer< Ty > init(const Ty &Val)
LLVM_ABI StringLiteral getThinLTODefaultCPU(const Triple &TheTriple)
LLVM_ABI std::vector< int > generateModulesOrdering(ArrayRef< BitcodeModule * > R)
Produces a container ordering for optimal multi-threaded processing.
LLVM_ABI Expected< std::unique_ptr< ToolOutputFile > > setupLLVMOptimizationRemarks(LLVMContext &Context, StringRef RemarksFilename, StringRef RemarksPasses, StringRef RemarksFormat, bool RemarksWithHotness, std::optional< uint64_t > RemarksHotnessThreshold=0, int Count=-1)
Setup optimization remarks.
LLVM_ABI std::error_code closeFile(file_t &F)
Close the file object.
LLVM_ABI std::error_code create_hard_link(const Twine &to, const Twine &from)
Create a hard link from from to to, or return an error.
LLVM_ABI bool exists(const basic_file_status &status)
Does file exist?
@ OF_UpdateAtime
Force files Atime to be updated on access.
LLVM_ABI std::error_code remove(const Twine &path, bool IgnoreNonExisting=true)
Remove path.
LLVM_ABI Expected< file_t > openNativeFileForRead(const Twine &Name, OpenFlags Flags=OF_None, SmallVectorImpl< char > *RealPath=nullptr)
Opens the file with the given name in a read-only mode, returning its open file descriptor.
LLVM_ABI std::error_code create_directories(const Twine &path, bool IgnoreExisting=true, perms Perms=owner_all|group_all)
Create all the non-existent directories in path.
LLVM_ABI std::error_code copy_file(const Twine &From, const Twine &To)
Copy the contents of From to To.
LLVM_ABI bool is_directory(const basic_file_status &status)
Does status represent a directory?
LLVM_ABI void append(SmallVectorImpl< char > &path, const Twine &a, const Twine &b="", const Twine &c="", const Twine &d="")
Append to path.
This is an optimization pass for GlobalISel generic memory operations.
ThreadPoolStrategy heavyweight_hardware_concurrency(unsigned ThreadCount=0)
Returns a thread strategy for tasks requiring significant memory or other resources.
LLVM_ABI void logAllUnhandledErrors(Error E, raw_ostream &OS, Twine ErrorBanner={})
Log all errors (if any) in E to OS.
cl::opt< std::string > RemarksFormat("lto-pass-remarks-format", cl::desc("The format used for serializing remarks (default: YAML)"), cl::value_desc("format"), cl::init("yaml"))
bool all_of(R &&range, UnaryPredicate P)
Provide wrappers to std::all_of which take ranges instead of having to pass begin/end explicitly.
Printable print(const GCNRegPressure &RP, const GCNSubtarget *ST=nullptr, unsigned DynamicVGPRBlockSize=0)
std::unordered_set< GlobalValueSummary * > GVSummaryPtrSet
A set of global value summary pointers.
cl::opt< bool > LTODiscardValueNames("lto-discard-value-names", cl::desc("Strip names from Value during LTO (other than GlobalValue)."), cl::init(false), cl::Hidden)
std::vector< std::unique_ptr< GlobalValueSummary > > GlobalValueSummaryList
LLVM_ABI void WriteBitcodeToFile(const Module &M, raw_ostream &Out, bool ShouldPreserveUseListOrder=false, const ModuleSummaryIndex *Index=nullptr, bool GenerateHash=false, ModuleHash *ModHash=nullptr)
Write the specified module to the specified raw output stream.
detail::scope_exit< std::decay_t< Callable > > make_scope_exit(Callable &&F)
cl::opt< std::string > RemarksPasses("lto-pass-remarks-filter", cl::desc("Only record optimization remarks from passes whose " "names match the given regular expression"), cl::value_desc("regex"))
void handleAllErrors(Error E, HandlerTs &&... Handlers)
Behaves the same as handleErrors, except that by contract all errors must be handled by the given han...
SmallVectorImpl< T >::const_pointer c_str(SmallVectorImpl< T > &str)
DenseMap< GlobalValue::GUID, GlobalValueSummary * > GVSummaryMapTy
Map of global value GUID to its summary, used to identify values defined in a particular module,...
LLVM_ABI bool thinLTOPropagateFunctionAttrs(ModuleSummaryIndex &Index, function_ref< bool(GlobalValue::GUID, const GlobalValueSummary *)> isPrevailing)
Propagate function attributes for function summaries along the index's callgraph during thinlink.
LLVM_ABI void renameModuleForThinLTO(Module &M, const ModuleSummaryIndex &Index, bool ClearDSOLocalOnDeclarations, SetVector< GlobalValue * > *GlobalsToImport=nullptr)
Perform in-place global value handling on the given Module for exported local functions renamed and p...
LLVM_ABI ModuleSummaryIndex buildModuleSummaryIndex(const Module &M, std::function< BlockFrequencyInfo *(const Function &F)> GetBFICallback, ProfileSummaryInfo *PSI, std::function< const StackSafetyInfo *(const Function &F)> GetSSICallback=[](const Function &F) -> const StackSafetyInfo *{ return nullptr;})
Direct function to compute a ModuleSummaryIndex from a given module.
LLVM_ABI void reportAndResetTimings(raw_ostream *OutStream=nullptr)
If -time-passes has been specified, report the timings immediately and then reset the timers to zero.
LLVM_ABI bool hasWholeProgramVisibility(bool WholeProgramVisibilityEnabledInLTO)
AnalysisManager< LazyCallGraph::SCC, LazyCallGraph & > CGSCCAnalysisManager
The CGSCC analysis manager.
LLVM_ABI void writeIndexToFile(const ModuleSummaryIndex &Index, raw_ostream &Out, const ModuleToSummariesForIndexTy *ModuleToSummariesForIndex=nullptr, const GVSummaryPtrSet *DecSummaries=nullptr)
Write the specified module summary index to the given raw output stream, where it will be written in ...
AnalysisManager< Loop, LoopStandardAnalysisResults & > LoopAnalysisManager
The loop analysis manager.
LLVM_ABI void ComputeCrossModuleImport(const ModuleSummaryIndex &Index, const DenseMap< StringRef, GVSummaryMapTy > &ModuleToDefinedGVSummaries, function_ref< bool(GlobalValue::GUID, const GlobalValueSummary *)> isPrevailing, FunctionImporter::ImportListsTy &ImportLists, DenseMap< StringRef, FunctionImporter::ExportSetTy > &ExportLists)
Compute all the imports and exports for every module in the Index.
LLVM_ABI void thinLTOInternalizeAndPromoteInIndex(ModuleSummaryIndex &Index, function_ref< bool(StringRef, ValueInfo)> isExported, function_ref< bool(GlobalValue::GUID, const GlobalValueSummary *)> isPrevailing)
Update the linkages in the given Index to mark exported values as external and non-exported values as...
auto formatv(bool Validate, const char *Fmt, Ts &&...Vals)
LLVM_ABI void updatePublicTypeTestCalls(Module &M, bool WholeProgramVisibilityEnabledInLTO)
LLVM_ABI Error write(MCStreamer &Out, ArrayRef< std::string > Inputs, OnCuIndexOverflow OverflowOptValue)
PassManager< Module > ModulePassManager
Convenience typedef for a pass manager over modules.
bool timeTraceProfilerEnabled()
Is the time trace profiler enabled, i.e. initialized?
LLVM_ABI raw_ostream & dbgs()
dbgs() - This returns a reference to a raw_ostream for debugging messages.
LLVM_ABI void report_fatal_error(Error Err, bool gen_crash_diag=true)
LLVM_ABI Error writeToOutput(StringRef OutputFileName, std::function< Error(raw_ostream &)> Write)
This helper creates an output stream and then passes it to Write.
LLVM_ABI bool AreStatisticsEnabled()
Check if statistics are enabled.
std::map< std::string, GVSummaryMapTy, std::less<> > ModuleToSummariesForIndexTy
Map of a module name to the GUIDs and summaries we will import from that module.
cl::opt< bool > RemarksWithHotness("lto-pass-remarks-with-hotness", cl::desc("With PGO, include profile count in optimization remarks"), cl::Hidden)
LLVM_ABI void timeTraceProfilerEnd()
Manually end the last time section.
cl::opt< std::string > RemarksFilename("lto-pass-remarks-output", cl::desc("Output filename for pass remarks"), cl::value_desc("filename"))
LLVM_ABI void updateIndexWPDForExports(ModuleSummaryIndex &Summary, function_ref< bool(StringRef, ValueInfo)> isExported, std::map< ValueInfo, std::vector< VTableSlotSummary > > &LocalWPDTargetsMap)
Call after cross-module importing to update the recorded single impl devirt target names for any loca...
LLVM_ABI void thinLTOResolvePrevailingInIndex(const lto::Config &C, ModuleSummaryIndex &Index, function_ref< bool(GlobalValue::GUID, const GlobalValueSummary *)> isPrevailing, function_ref< void(StringRef, GlobalValue::GUID, GlobalValue::LinkageTypes)> recordNewLinkage, const DenseSet< GlobalValue::GUID > &GUIDPreservedSymbols)
Resolve linkage for prevailing symbols in the Index.
LLVM_ATTRIBUTE_VISIBILITY_DEFAULT AnalysisKey InnerAnalysisManagerProxy< AnalysisManagerT, IRUnitT, ExtraArgTs... >::Key
LLVM_ABI raw_fd_ostream & errs()
This returns a reference to a raw_ostream for standard error.
LLVM_ABI bool StripDebugInfo(Module &M)
Strip debug info in the module if it exists.
@ Mod
The access may modify the value stored in memory.
FunctionAddr VTableAddr uintptr_t uintptr_t Data
LLVM_ABI void PrintStatistics()
Print statistics to the file returned by CreateInfoOutputFile().
LLVM_ABI void runWholeProgramDevirtOnIndex(ModuleSummaryIndex &Summary, std::set< GlobalValue::GUID > &ExportedGUIDs, std::map< ValueInfo, std::vector< VTableSlotSummary > > &LocalWPDTargetsMap)
Perform index-based whole program devirtualization on the Summary index.
LLVM_ABI bool pruneCache(StringRef Path, CachePruningPolicy Policy, const std::vector< std::unique_ptr< MemoryBuffer > > &Files={})
Peform pruning using the supplied policy, returns true if pruning occurred, i.e.
LLVM_ABI void thinLTOInternalizeModule(Module &TheModule, const GVSummaryMapTy &DefinedGlobals)
Internalize TheModule based on the information recorded in the summaries during global summary-based ...
auto count(R &&Range, const E &Element)
Wrapper function around std::count to count the number of times an element Element occurs in the give...
SingleThreadExecutor DefaultThreadPool
LLVM_ABI void gatherImportedSummariesForModule(StringRef ModulePath, const DenseMap< StringRef, GVSummaryMapTy > &ModuleToDefinedGVSummaries, const FunctionImporter::ImportMapTy &ImportList, ModuleToSummariesForIndexTy &ModuleToSummariesForIndex, GVSummaryPtrSet &DecSummaries)
Compute the set of summaries needed for a ThinLTO backend compilation of ModulePath.
std::string toString(const APInt &I, unsigned Radix, bool Signed, bool formatAsCLiteral=false, bool UpperCase=true, bool InsertSeparators=false)
DiagnosticSeverity
Defines the different supported severity of a diagnostic.
cl::opt< std::optional< uint64_t >, false, remarks::HotnessThresholdParser > RemarksHotnessThreshold("lto-pass-remarks-hotness-threshold", cl::desc("Minimum profile count required for an " "optimization remark to be output." " Use 'auto' to apply the threshold from profile summary."), cl::value_desc("uint or 'auto'"), cl::init(0), cl::Hidden)
auto find_if(R &&Range, UnaryPredicate P)
Provide wrappers to std::find_if which take ranges instead of having to pass begin/end explicitly.
LLVM_ABI std::string computeLTOCacheKey(const lto::Config &Conf, const ModuleSummaryIndex &Index, StringRef ModuleID, const FunctionImporter::ImportMapTy &ImportList, const FunctionImporter::ExportSetTy &ExportList, const std::map< GlobalValue::GUID, GlobalValue::LinkageTypes > &ResolvedODR, const GVSummaryMapTy &DefinedGlobals, const DenseSet< GlobalValue::GUID > &CfiFunctionDefs={}, const DenseSet< GlobalValue::GUID > &CfiFunctionDecls={})
Computes a unique hash for the Module considering the current list of export/import and other global ...
AnalysisManager< Function > FunctionAnalysisManager
Convenience typedef for the Function analysis manager.
LLVM_ABI std::error_code errorToErrorCode(Error Err)
Helper for converting an ECError to a std::error_code.
LLVM_ABI void computeDeadSymbolsWithConstProp(ModuleSummaryIndex &Index, const DenseSet< GlobalValue::GUID > &GUIDPreservedSymbols, function_ref< PrevailingType(GlobalValue::GUID)> isPrevailing, bool ImportEnabled)
Compute dead symbols and run constant propagation in combined index after that.
LLVM_ABI Error EmitImportsFiles(StringRef ModulePath, StringRef OutputFilename, const ModuleToSummariesForIndexTy &ModuleToSummariesForIndex)
Emit into OutputFilename the files module ModulePath will import from.
LLVM_ABI bool verifyModule(const Module &M, raw_ostream *OS=nullptr, bool *BrokenDebugInfo=nullptr)
Check a module for errors.
AnalysisManager< Module > ModuleAnalysisManager
Convenience typedef for the Module analysis manager.
LLVM_ABI TimeTraceProfilerEntry * timeTraceProfilerBegin(StringRef Name, StringRef Detail)
Manually begin a time section, with the given Name and Detail.
LLVM_ABI void updateVCallVisibilityInIndex(ModuleSummaryIndex &Index, bool WholeProgramVisibilityEnabledInLTO, const DenseSet< GlobalValue::GUID > &DynamicExportSymbols, const DenseSet< GlobalValue::GUID > &VisibleToRegularObjSymbols)
If whole program visibility asserted, then upgrade all public vcall visibility metadata on vtable def...
LLVM_ABI void thinLTOFinalizeInModule(Module &TheModule, const GVSummaryMapTy &DefinedGlobals, bool PropagateAttrs)
Based on the information recorded in the summaries during global summary-based analysis:
static const Target * lookupTarget(StringRef TripleStr, std::string &Error)
lookupTarget - Lookup a target based on a target triple.
Helper to gather options relevant to the target machine creation.
LLVM_ABI std::unique_ptr< TargetMachine > create() const
std::optional< Reloc::Model > RelocModel
CodeGenOptLevel CGOptLevel
Struct that holds a reference to a particular GUID in a global value summary.
std::vector< std::string > MAttrs
CodeGenOptLevel CGOptLevel
std::optional< Reloc::Model > RelocModel
bool Freestanding
Flag to indicate that the optimizer should not assume builtins are present on the target.