Files
revng-revng/lib/Pipeline/LLVMContainer.cpp
Giacomo Vercesi 11f1e532c6 Implement dirty bit on Container
Add a `Dirty` boolean to the `ContainerBase` class. This will be set to
true when the container mutates itself (e.g. remove, mergeBack, clear).
The dirty bit is reset when running `PipelineManager.store`.
2025-04-03 15:59:18 +02:00

327 lines
11 KiB
C++

/// \file LLVMContainer.cpp
/// A llvm container is a container which uses a llvm module as a backend, and
/// can be customized with downstream kinds that specify which global objects in
/// it are which target.
//
// This file is distributed under the MIT License. See LICENSE.md for details.
//
#include <memory>
#include "llvm/ADT/StringRef.h"
#include "llvm/Bitcode/BitcodeWriter.h"
#include "llvm/IR/Constant.h"
#include "llvm/IR/Constants.h"
#include "llvm/IR/DebugInfoMetadata.h"
#include "llvm/IR/GlobalVariable.h"
#include "llvm/IR/LLVMContext.h"
#include "llvm/IR/Module.h"
#include "llvm/IR/Type.h"
#include "llvm/IR/Verifier.h"
#include "llvm/IRReader/IRReader.h"
#include "llvm/Linker/Linker.h"
#include "llvm/Transforms/Utils/Cloning.h"
#include "llvm/Transforms/Utils/ValueMapper.h"
#include "revng/Pipeline/LLVMContainer.h"
#include "revng/Pipeline/LLVMKind.h"
#include "revng/Support/FunctionTags.h"
#include "revng/Support/IRHelpers.h"
#include "revng/Support/ModuleStatistics.h"
#include "revng/Support/ZstdStream.h"
const char pipeline::LLVMContainer::ID = '0';
using namespace pipeline;
void pipeline::makeGlobalObjectsArray(llvm::Module &Module,
llvm::StringRef GlobalArrayName) {
auto *IntegerTy = llvm::IntegerType::get(Module.getContext(),
Module.getDataLayout()
.getPointerSizeInBits());
llvm::SmallVector<llvm::Constant *, 10> Globals;
for (auto &Global : Module.globals())
Globals.push_back(llvm::ConstantExpr::getPtrToInt(&Global, IntegerTy));
for (auto &Global : Module.functions())
if (not Global.isIntrinsic())
Globals.push_back(llvm::ConstantExpr::getPtrToInt(&Global, IntegerTy));
auto *GlobalArrayType = llvm::ArrayType::get(IntegerTy, Globals.size());
auto *Initializer = llvm::ConstantArray::get(GlobalArrayType, Globals);
new llvm::GlobalVariable(Module,
GlobalArrayType,
false,
llvm::GlobalValue::LinkageTypes::ExternalLinkage,
Initializer,
GlobalArrayName);
}
std::unique_ptr<ContainerBase>
LLVMContainer::cloneFiltered(const TargetsList &Targets) const {
using InspectorT = LLVMKind;
auto ToClone = InspectorT::functions(Targets, *this->self());
auto ToClonedNotOwned = InspectorT::untrackedFunctions(*this->self());
const auto Filter = [&ToClone, &ToClonedNotOwned](const auto &GlobalSym) {
if (not llvm::isa<llvm::Function>(GlobalSym))
return true;
const auto &F = llvm::cast<llvm::Function>(GlobalSym);
return ToClone.contains(F) or ToClonedNotOwned.contains(F);
};
llvm::ValueToValueMapTy Map;
revng::verify(Module.get());
auto Cloned = llvm::CloneModule(*Module, Map, Filter);
for (auto &Function : Module->functions()) {
auto *Other = Cloned->getFunction(Function.getName());
if (not Other)
continue;
Other->clearMetadata();
MetadataBackup SavedMetadata(&Function);
SavedMetadata.restoreIn(Other);
}
return std::make_unique<ThisType>(this->name(),
this->TheContext,
std::move(Cloned));
}
using LinkageRestoreMap = std::map<std::string,
llvm::GlobalValue::LinkageTypes>;
static void fixGlobals(llvm::Module &Module,
LinkageRestoreMap &LinkageRestore) {
using namespace llvm;
for (auto &Global : Module.global_objects()) {
// Turn globals with local linkage and external declarations into the
// equivalent of inline and record their original linking for it be
// restored later
if (Global.getLinkage() == GlobalValue::InternalLinkage
or Global.getLinkage() == GlobalValue::PrivateLinkage
or Global.getLinkage() == GlobalValue::AppendingLinkage
or (Global.getLinkage() == GlobalValue::ExternalLinkage
and not Global.isDeclaration())) {
LinkageRestore[Global.getName().str()] = Global.getLinkage();
Global.setLinkage(GlobalValue::LinkOnceODRLinkage);
}
}
}
void LLVMContainer::mergeBackImpl(ThisType &&OtherContainer) {
llvm::Module *ToMerge = &OtherContainer.getModule();
revng::verify(ToMerge);
// Collect statistics about modules
ModuleStatistics PreMergeStatistics;
ModuleStatistics ToMergeStatistics;
if (ModuleStatisticsLogger.isEnabled()) {
PreMergeStatistics = ModuleStatistics::analyze(*Module.get());
ToMergeStatistics = ModuleStatistics::analyze(*ToMerge);
}
auto BeforeEnumeration = this->enumerate();
auto ToMergeEnumeration = OtherContainer.enumerate();
// We must ensure that merge(Module1, Module2).enumerate() ==
// merge(Module1.enumerate(), Module2.enumerate())
//
// So we enumerate now to have it later.
auto ExpectedEnumeration = BeforeEnumeration;
ExpectedEnumeration.merge(ToMergeEnumeration);
LinkageRestoreMap LinkageRestore;
// All symbols internal and external symbols myst be transformed into weak
// symbols, so that when multiple with the same name exists, one is
// dropped.
fixGlobals(*ToMerge, LinkageRestore);
fixGlobals(*Module, LinkageRestore);
// Make a global array of all global objects so that they don't get dropped
std::string GlobalArray1 = "revng.AllSymbolsArrayLeft";
makeGlobalObjectsArray(*Module, GlobalArray1);
std::string GlobalArray2 = "revng.AllSymbolsArrayRight";
makeGlobalObjectsArray(*ToMerge, GlobalArray2);
// Drop certain LLVM named metadata
auto DropNamedMetadata = [](llvm::Module *M, llvm::StringRef Name) {
if (auto *MD = M->getNamedMetadata(Name))
MD->eraseFromParent();
};
// TODO: check it's identical to the existing one, if present in both
DropNamedMetadata(&*Module, "llvm.ident");
DropNamedMetadata(&*Module, "llvm.module.flags");
if (ToMerge->getDataLayout().isDefault())
ToMerge->setDataLayout(Module->getDataLayout());
if (Module->getDataLayout().isDefault())
Module->setDataLayout(ToMerge->getDataLayout());
llvm::Linker TheLinker(*ToMerge);
// Actually link
bool Failure = TheLinker.linkInModule(std::move(Module));
revng_assert(not Failure, "Linker failed");
// Restores the initial linkage for local functions
for (auto &Global : ToMerge->global_objects()) {
auto It = LinkageRestore.find(Global.getName().str());
if (It != LinkageRestore.end())
Global.setLinkage(It->second);
}
Module = std::move(OtherContainer.Module);
// Checks that module merging commutes w.r.t. enumeration, as specified in
// the first comment.
auto ActualEnumeration = this->enumerate();
revng_assert(ExpectedEnumeration.contains(ActualEnumeration));
revng_assert(ActualEnumeration.contains(ExpectedEnumeration));
// Remove the global arrays since they are no longer needed.
if (auto *Global = Module->getGlobalVariable(GlobalArray1))
Global->eraseFromParent();
if (auto *Global = Module->getGlobalVariable(GlobalArray2))
Global->eraseFromParent();
llvm::DenseSet<llvm::Function *> ToErase;
auto MarkDuplicates = [&ToErase](const auto &Map) {
using Key = typename std::decay_t<decltype(Map)>::key_type;
Key LastKey;
llvm::Function *Leader = nullptr;
for (auto &[Key, F] : Map) {
if (Key != LastKey) {
Leader = F;
LastKey = Key;
} else {
revng_assert(F->getFunctionType() == Leader->getFunctionType());
F->replaceAllUsesWith(Leader);
ToErase.insert(F);
}
}
};
// Dedup based on UniquedByPrototype
{
using namespace llvm;
using Key = std::pair<FunctionTags::TagsSet, FunctionType *>;
std::multimap<Key, Function *> Map;
for (Function &F : FunctionTags::UniquedByPrototype.functions(&*Module)) {
Key TheKey = { FunctionTags::TagsSet::from(&F), F.getFunctionType() };
Map.emplace(TheKey, &F);
}
MarkDuplicates(Map);
}
// Dedup based on UniquedByMetadata
{
using namespace llvm;
using Key = std::pair<FunctionTags::TagsSet, MDNode *>;
std::multimap<Key, Function *> Map;
for (Function &F : FunctionTags::UniquedByMetadata.functions(&*Module)) {
MDNode *MD = F.getMetadata(FunctionTags::UniqueIDMDName);
revng_assert(MD->isUniqued());
Key TheKey = { FunctionTags::TagsSet::from(&F), MD };
Map.emplace(TheKey, &F);
}
MarkDuplicates(Map);
}
// Purge all unused non-target functions
// TODO: this should be transitive
for (llvm::Function &F : Module->functions())
if (not FunctionTags::Isolated.isTagOf(&F) and F.use_empty())
ToErase.insert(&F);
for (llvm::Function *F : ToErase)
F->eraseFromParent();
// Prune llvm.dbg.cu so that they grow exponentially due to multiple cloning
// + linking.
// Note: an alternative approach would be to pre-populate the
// ValueToValueMap used when we clone in a way that avoids cloning the
// metadata altogether. However, this would lead two distinct modules
// to share debug metadata, which are not always immutable.
auto *NamedMDNode = Module->getOrInsertNamedMetadata("llvm.dbg.cu");
pruneDICompileUnits(*Module);
revng::verify(ToMerge);
if (ModuleStatisticsLogger.isEnabled()) {
auto PostMergeStatistics = ModuleStatistics::analyze(*Module.get());
{
auto Stream = ModuleStatisticsLogger.getAsLLVMStream();
*Stream << "PreMergeStatistics:\n";
PreMergeStatistics.dump(*Stream, 1);
*Stream << "ToMergeStatistics:\n";
ToMergeStatistics.dump(*Stream, 1);
*Stream << "PostMergeStatistics (vs PreMergeStatistics):\n";
PreMergeStatistics.dump(*Stream, 1, &PreMergeStatistics);
*Stream << "PostMergeStatistics (vs ToMergeStatistics):\n";
PreMergeStatistics.dump(*Stream, 1, &ToMergeStatistics);
}
ModuleStatisticsLogger << DoLog;
}
}
llvm::Error LLVMContainer::extractOne(llvm::raw_ostream &OS,
const Target &Target) const {
TargetsList List({ Target });
auto Module = cloneFiltered(List);
return Module->serialize(OS);
}
llvm::Error LLVMContainer::serialize(llvm::raw_ostream &OS) const {
ZstdCompressedOstream CompressedOS(OS, 3);
llvm::WriteBitcodeToFile(getModule(), CompressedOS);
CompressedOS.flush();
return llvm::Error::success();
}
llvm::Error LLVMContainer::deserializeImpl(const llvm::MemoryBuffer &Buffer) {
llvm::SmallVector<char> DecompressedData = zstdDecompress(Buffer.getBuffer());
llvm::MemoryBufferRef Ref{
{ DecompressedData.data(), DecompressedData.size() }, "input"
};
auto MaybeModule = llvm::parseBitcodeFile(Ref, Module->getContext());
if (not MaybeModule) {
return MaybeModule.takeError();
}
std::string ErrorMessage;
llvm::raw_string_ostream Stream(ErrorMessage);
// NOLINTNEXTLINE
bool Failed = llvm::verifyModule(*MaybeModule.get(), &Stream);
if (Failed) {
Stream.flush();
return revng::createError(ErrorMessage);
}
Module = std::move(MaybeModule.get());
return llvm::Error::success();
}