mirror of
https://github.com/revng/revng
synced 2026-06-21 14:07:57 +00:00
547 lines
20 KiB
C++
547 lines
20 KiB
C++
/// \file EnforceABI.cpp
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/// Promotes global variables CSV to function arguments or local variables,
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/// according to the ABI analysis.
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//
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// This file is distributed under the MIT License. See LICENSE.md for details.
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//
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#include "llvm/ADT/PostOrderIterator.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/IR/CFG.h"
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#include "llvm/IR/Constants.h"
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#include "llvm/IR/Function.h"
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#include "llvm/IR/GlobalVariable.h"
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#include "llvm/IR/IRBuilder.h"
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#include "llvm/IR/InstIterator.h"
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#include "llvm/IR/Metadata.h"
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#include "llvm/IR/Module.h"
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#include "llvm/IR/Verifier.h"
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#include "llvm/Support/raw_os_ostream.h"
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#include "llvm/Transforms/Utils/BasicBlockUtils.h"
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#include "revng/ABI/DefaultFunctionPrototype.h"
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#include "revng/ABI/FunctionType/Layout.h"
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#include "revng/ADT/LazySmallBitVector.h"
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#include "revng/ADT/SmallMap.h"
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#include "revng/BasicAnalyses/GeneratedCodeBasicInfo.h"
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#include "revng/EarlyFunctionAnalysis/CallEdge.h"
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#include "revng/EarlyFunctionAnalysis/ControlFlowGraphCache.h"
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#include "revng/FunctionIsolation/StructInitializers.h"
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#include "revng/Model/IRHelpers.h"
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#include "revng/Model/Register.h"
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#include "revng/Model/TypeDefinition.h"
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#include "revng/Pipeline/AllRegistries.h"
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#include "revng/Pipeline/Contract.h"
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#include "revng/Pipeline/ExecutionContext.h"
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#include "revng/Pipes/FunctionPass.h"
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#include "revng/Pipes/Kinds.h"
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#include "revng/Pipes/RootKind.h"
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#include "revng/Pipes/TaggedFunctionKind.h"
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#include "revng/Support/BlockType.h"
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#include "revng/Support/FunctionTags.h"
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#include "revng/Support/IRHelpers.h"
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#include "revng/Support/MetaAddress.h"
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#include "revng/Support/OpaqueFunctionsPool.h"
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using namespace llvm;
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class EnforceABI final : public pipeline::FunctionPassImpl {
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private:
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using UsedRegisters = abi::FunctionType::UsedRegisters;
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private:
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const model::Binary &Binary;
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llvm::Module &M;
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std::map<Function *, Function *> OldToNew;
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std::vector<Function *> OldFunctions;
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Function *FunctionDispatcher = nullptr;
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StructInitializers Initializers;
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ControlFlowGraphCache &Cache;
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pipeline::LoadExecutionContextPass &LECP;
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GeneratedCodeBasicInfo &GCBI;
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public:
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EnforceABI(llvm::ModulePass &Pass,
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const model::Binary &Binary,
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llvm::Module &M) :
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pipeline::FunctionPassImpl(Pass),
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Binary(Binary),
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M(M),
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Initializers(&M),
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Cache(getAnalysis<ControlFlowGraphCachePass>().get()),
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LECP(getAnalysis<pipeline::LoadExecutionContextPass>()),
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GCBI(getAnalysis<GeneratedCodeBasicInfoWrapperPass>().getGCBI()) {}
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~EnforceABI() final = default;
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public:
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bool prologue() final;
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bool runOnFunction(const model::Function &ModelFunction,
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llvm::Function &Function) final;
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bool epilogue() final;
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static void getAnalysisUsage(llvm::AnalysisUsage &AU);
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private:
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Function *getOrCreateNewFunction(Function &OldFunction,
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const UsedRegisters &UsedRegisters);
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Function *recreateFunction(Function &OldFunction,
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const UsedRegisters &UsedRegisters);
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void createPrologue(Function *NewFunction,
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const UsedRegisters &UsedRegisters);
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void handleRegularFunctionCall(const MetaAddress &CallerAddress,
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CallInst *Call);
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CallInst *generateCall(IRBuilder<> &Builder,
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MetaAddress Entry,
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FunctionCallee Callee,
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const efa::BasicBlock &CallSiteBlock,
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const efa::CallEdge &CallSite);
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};
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template<>
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char pipeline::FunctionPass<EnforceABI>::ID = 0;
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using Register = RegisterPass<pipeline::FunctionPass<EnforceABI>>;
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static Register X("enforce-abi", "Enforce ABI Pass", true, true);
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static Logger<> EnforceABILog("enforce-abi");
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bool EnforceABI::prologue() {
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FunctionDispatcher = M.getFunction("function_dispatcher");
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if (FunctionDispatcher != nullptr)
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OldFunctions.push_back(FunctionDispatcher);
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// TODO: make this lazy and push to runOnFunction
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// Recreate dynamic functions with arguments
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for (const model::DynamicFunction &FunctionModel :
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Binary.ImportedDynamicFunctions()) {
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// TODO: have an API to go from model to llvm::Function
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auto OldFunctionName = (Twine("dynamic_") + FunctionModel.OriginalName())
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.str();
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Function *OldFunction = M.getFunction(OldFunctionName);
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if (not OldFunction or OldFunction->isDeclaration())
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continue;
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OldFunctions.push_back(OldFunction);
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const auto *ProtoT = Binary.prototypeOrDefault(FunctionModel.prototype());
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revng_assert(ProtoT != nullptr);
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auto UsedRegisters = abi::FunctionType::usedRegisters(*ProtoT);
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Function *NewFunction = recreateFunction(*OldFunction, UsedRegisters);
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// EnforceABI currently does not support execution
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NewFunction->deleteBody();
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// Copy metadata
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NewFunction->copyMetadata(OldFunction, 0);
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OldToNew[OldFunction] = NewFunction;
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}
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return true;
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}
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bool EnforceABI::runOnFunction(const model::Function &FunctionModel,
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llvm::Function &OldFunction) {
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revng_assert(not FunctionModel.name().empty());
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auto OldFunctionName = getLLVMFunctionName(FunctionModel);
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OldFunctions.push_back(&OldFunction);
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// Recreate the function with the right prototype and the function prologue
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const auto *ProtoT = Binary.prototypeOrDefault(FunctionModel.prototype());
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revng_assert(ProtoT != nullptr);
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auto UsedRegisters = abi::FunctionType::usedRegisters(*ProtoT);
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Function *NewFunction = getOrCreateNewFunction(OldFunction, UsedRegisters);
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// Collect function calls
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SmallVector<CallInst *, 16> Calls;
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for (Instruction &I : llvm::instructions(NewFunction)) {
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if (auto *Call = dyn_cast<CallInst>(&I)) {
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// All the calls are still calling the old function
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Function *Callee = Call->getCalledFunction();
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// Mainly for dynamic functions
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bool Recreated = OldToNew.contains(Callee);
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if (Recreated or isCallToIsolatedFunction(Call)
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or Callee == FunctionDispatcher) {
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Calls.emplace_back(Call);
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}
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}
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}
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// Actually process function calls
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for (CallInst *Call : Calls)
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handleRegularFunctionCall(FunctionModel.Entry(), Call);
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return true;
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}
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bool EnforceABI::epilogue() {
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// Drop all the old functions, after we stole all of its blocks
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for (Function *OldFunction : OldFunctions)
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eraseFromParent(OldFunction);
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// Quick and dirty DCE
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for (auto [_, F] : OldToNew)
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if (not F->isDeclaration())
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EliminateUnreachableBlocks(*F, nullptr, false);
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revng::verify(&M);
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return true;
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}
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using UsedRegisters = abi::FunctionType::UsedRegisters;
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static std::pair<Type *, SmallVector<Type *, 8>>
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getLLVMReturnTypeAndArguments(llvm::Module *M, const UsedRegisters &Registers) {
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SmallVector<llvm::Type *, 8> ArgumentsTypes;
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SmallVector<llvm::Type *, 8> ReturnTypes;
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LLVMContext &Context = M->getContext();
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auto IntoLLVMType = [&Context](model::Register::Values V) -> llvm::Type * {
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return IntegerType::getIntNTy(Context, 8 * model::Register::getSize(V));
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};
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auto [ArgumentRegisters, ReturnValueRegisters] = Registers;
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std::ranges::copy(ArgumentRegisters | std::views::transform(IntoLLVMType),
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std::back_inserter(ArgumentsTypes));
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std::ranges::copy(ReturnValueRegisters | std::views::transform(IntoLLVMType),
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std::back_inserter(ReturnTypes));
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// Create the return type
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Type *ReturnType = Type::getVoidTy(Context);
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if (ReturnTypes.size() == 0)
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ReturnType = Type::getVoidTy(Context);
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else if (ReturnTypes.size() == 1)
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ReturnType = ReturnTypes[0];
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else
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ReturnType = StructType::get(Context, ReturnTypes, true);
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// Create new function
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return { ReturnType, ArgumentsTypes };
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}
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Function *
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EnforceABI::getOrCreateNewFunction(Function &OldFunction,
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const UsedRegisters &UsedRegisters) {
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// NOTE: all the model *must* be read above this line!
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// If we don't do this, we will break invalidation tracking information.
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auto It = OldToNew.find(&OldFunction);
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if (It != OldToNew.end())
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return It->second;
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Function *NewFunction = recreateFunction(OldFunction, UsedRegisters);
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FunctionTags::ABIEnforced.addTo(NewFunction);
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if (not NewFunction->isDeclaration())
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createPrologue(NewFunction, UsedRegisters);
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OldToNew[&OldFunction] = NewFunction;
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return NewFunction;
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}
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Function *EnforceABI::recreateFunction(Function &OldFunction,
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const abi::FunctionType::UsedRegisters
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&Registers) {
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// Create new function
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auto [NewReturnType, NewArguments] = getLLVMReturnTypeAndArguments(&M,
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Registers);
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auto *Result = changeFunctionType(OldFunction, NewReturnType, NewArguments);
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revng_assert(Result->arg_size() == Registers.Arguments.size());
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for (size_t Index = 0; model::Register::Values Register : Registers.Arguments)
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Result->getArg(Index++)->setName(model::Register::getName(Register));
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return Result;
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}
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static GlobalVariable *tryGetCSV(Module *M, model::Register::Values Register) {
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auto Name = model::Register::getCSVName(Register);
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return M->getGlobalVariable(Name, true);
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}
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static Value *loadCSVOrUndef(IRBuilder<> &Builder,
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Module *M,
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model::Register::Values Register) {
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GlobalVariable *CSV = tryGetCSV(M, Register);
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if (CSV == nullptr) {
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auto Size = model::Register::getSize(Register);
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auto *Type = IntegerType::get(M->getContext(), Size * 8);
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return UndefValue::get(Type);
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} else {
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return createLoad(Builder, CSV);
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}
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}
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static std::pair<Type *, Constant *>
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getCSVOrUndef(Module *M, model::Register::Values Register) {
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GlobalVariable *CSV = tryGetCSV(M, Register);
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if (CSV == nullptr) {
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auto Size = model::Register::getSize(Register);
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auto *Type = IntegerType::get(M->getContext(), Size * 8);
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return { Type, UndefValue::get(PointerType::get(M->getContext(), 0)) };
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} else {
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return { CSV->getValueType(), CSV };
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}
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}
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void EnforceABI::createPrologue(Function *NewFunction,
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const abi::FunctionType::UsedRegisters
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&UsedRegisters) {
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SmallVector<Constant *, 8> ArgumentCSVs;
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SmallVector<std::pair<Type *, Constant *>, 8> ReturnCSVs;
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// We sort arguments by their CSV name
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auto [ArgumentRegisters, ReturnValueRegisters] = UsedRegisters;
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for (model::Register::Values Register : ArgumentRegisters)
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ArgumentCSVs.push_back(getCSVOrUndef(&M, Register).second);
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for (model::Register::Values Register : ReturnValueRegisters)
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ReturnCSVs.push_back(getCSVOrUndef(&M, Register));
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// Store arguments to CSVs
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BasicBlock &Entry = NewFunction->getEntryBlock();
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IRBuilder<> StoreBuilder(Entry.getTerminator());
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for (const auto &[TheArgument, CSV] : zip(NewFunction->args(), ArgumentCSVs))
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StoreBuilder.CreateStore(&TheArgument, CSV);
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// Build the return value
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if (ReturnCSVs.size() != 0) {
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for (BasicBlock &BB : *NewFunction) {
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if (auto *Return = dyn_cast<ReturnInst>(BB.getTerminator())) {
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IRBuilder<> Builder(Return);
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std::vector<Value *> ReturnValues;
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for (auto [Type, ReturnCSV] : ReturnCSVs)
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ReturnValues.push_back(Builder.CreateLoad(Type, ReturnCSV));
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if (ReturnValues.size() == 1)
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Builder.CreateRet(ReturnValues[0]);
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else
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Initializers.createReturn(Builder, ReturnValues);
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eraseFromParent(Return);
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}
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}
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}
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}
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void EnforceABI::handleRegularFunctionCall(const MetaAddress &CallerAddress,
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CallInst *Call) {
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revng_assert(Call->getDebugLoc());
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// Identify the corresponding call site in the model
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Function *CallerFunction = Call->getParent()->getParent();
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const efa::ControlFlowGraph &FM = Cache.getControlFlowGraph(CallerFunction);
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const efa::BasicBlock *CallerBlock = FM.findBlock(GCBI, Call->getParent());
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revng_assert(CallerBlock != nullptr);
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// Find the CallEdge
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const efa::CallEdge *CallSite = nullptr;
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for (const auto &Edge : CallerBlock->Successors()) {
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using namespace efa::FunctionEdgeType;
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CallSite = dyn_cast<efa::CallEdge>(Edge.get());
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if (CallSite != nullptr)
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break;
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}
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revng_assert(CallSite != nullptr);
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// Get or create the called function
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Function *Callee = cast<Function>(skipCasts(Call->getCalledOperand()));
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bool IsDirect = (Callee != FunctionDispatcher);
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bool IsDynamic = not CallSite->DynamicFunction().empty();
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if (IsDynamic) {
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Callee = OldToNew.at(Callee);
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} else if (IsDirect) {
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MetaAddress CalleeAddress = CallSite->Destination().notInlinedAddress();
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const model::Function &ModelFunc = Binary.Functions().at(CalleeAddress);
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const auto *Prototype = Binary.prototypeOrDefault(ModelFunc.prototype());
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revng_assert(Prototype != nullptr);
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auto UsedRegisters = abi::FunctionType::usedRegisters(*Prototype);
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Callee = getOrCreateNewFunction(*Callee, UsedRegisters);
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}
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// Note that currently, in case of indirect call, we emit a call to a
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// placeholder function that will throw an exception. If exceptions are
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// correctly supported post enforce-abi, and the ABI data is correct, this
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// should work. However this is not very efficient.
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//
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// Alternatives:
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//
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// 1. Emit an inline dispatcher that calls all the compatible function (i.e.,
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// they take a subset of the call site's arguments and return a superset
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// of the call site's return values).
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// 2. We have a dedicated outlined dispatcher that takes all the arguments of
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// the call site, plus all the registers of the return values. Under the
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// assumption that each return value of the call site is either a return
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// value of the callee or is preserved by the callee, we can fill each
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// return value using the callee's return value or the argument
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// representing the value of that register before the call.
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// In case the call site expects a return value that is neither a return
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// value nor a preserved register or the callee, we exclude it from the
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/// switch.
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// Generate the call
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IRBuilder<> Builder(Call);
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CallInst *NewCall = generateCall(Builder,
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CallerAddress,
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Callee,
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*CallerBlock,
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*CallSite);
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NewCall->copyMetadata(*Call);
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NewCall->setAttributes(Call->getAttributes());
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// Set PC to the expected value
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GCBI.programCounterHandler()->setPC(Builder, CallerBlock->ID().start());
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// Drop the original call
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eraseFromParent(Call);
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}
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static FunctionCallee
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toFunctionPointer(IRBuilder<> &B, Value *V, FunctionType *FT) {
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Module *M = getModule(B.GetInsertBlock());
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const auto &DL = M->getDataLayout();
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IntegerType *IntPtrTy = DL.getIntPtrType(M->getContext());
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Value *Callee = B.CreateIntToPtr(V, FT->getPointerTo());
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return FunctionCallee(FT, Callee);
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}
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CallInst *EnforceABI::generateCall(IRBuilder<> &Builder,
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MetaAddress Entry,
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FunctionCallee Callee,
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const efa::BasicBlock &CallSiteBlock,
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const efa::CallEdge &CallSite) {
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using model::NamedTypedRegister;
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using model::RawFunctionDefinition;
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revng_assert(Callee.getCallee() != nullptr);
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llvm::SmallVector<Value *, 8> Arguments;
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llvm::SmallVector<Constant *, 8> ReturnCSVs;
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auto *Prototype = getPrototype(Binary, Entry, CallSiteBlock.ID(), CallSite);
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revng_assert(Prototype != nullptr);
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auto Registers = abi::FunctionType::usedRegisters(*Prototype);
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bool IsIndirect = (Callee.getCallee() == FunctionDispatcher);
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if (IsIndirect) {
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// Create a new `indirect_placeholder` function with the specific function
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// type we need
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Value *PC = GCBI.programCounterHandler()->loadJumpablePC(Builder);
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auto [ReturnType, Arguments] = getLLVMReturnTypeAndArguments(&M, Registers);
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auto *NewType = FunctionType::get(ReturnType, Arguments, false);
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Callee = toFunctionPointer(Builder, PC, NewType);
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} else {
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BasicBlock *InsertBlock = Builder.GetInsertPoint()->getParent();
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revng_log(EnforceABILog,
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"Emitting call to " << getName(Callee.getCallee()) << " from "
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<< getName(InsertBlock));
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}
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//
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// Collect arguments and returns
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//
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for (model::Register::Values Register : Registers.Arguments)
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Arguments.push_back(loadCSVOrUndef(Builder, &M, Register));
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for (model::Register::Values Register : Registers.ReturnValues)
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ReturnCSVs.push_back(getCSVOrUndef(&M, Register).second);
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//
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// Produce the call
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//
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auto *Result = Builder.CreateCall(Callee, Arguments);
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revng_assert(Result->getDebugLoc());
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setStringMetadata(Result,
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PrototypeMDName,
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Binary.getDefinitionReference(Prototype->key()).toString());
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if (ReturnCSVs.size() != 1) {
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unsigned I = 0;
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for (Constant *ReturnCSV : ReturnCSVs) {
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Builder.CreateStore(Builder.CreateExtractValue(Result, { I }), ReturnCSV);
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I++;
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}
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} else {
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Builder.CreateStore(Result, ReturnCSVs[0]);
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}
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return Result;
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}
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void EnforceABI::getAnalysisUsage(llvm::AnalysisUsage &AU) {
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AU.addRequired<GeneratedCodeBasicInfoWrapperPass>();
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AU.addRequired<ControlFlowGraphCachePass>();
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AU.setPreservesAll();
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}
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struct EnforceABIPipe {
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static constexpr auto Name = "enforce-abi";
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std::vector<pipeline::ContractGroup> getContract() const {
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using namespace revng;
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using namespace pipeline;
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return { ContractGroup({ Contract(kinds::Isolated,
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1,
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kinds::ABIEnforced,
|
|
1,
|
|
InputPreservation::Erase),
|
|
Contract(kinds::CFG,
|
|
0,
|
|
kinds::ABIEnforced,
|
|
1,
|
|
InputPreservation::Preserve) }) };
|
|
}
|
|
|
|
void run(pipeline::ExecutionContext &Ctx,
|
|
const revng::pipes::CFGMap &CFGMap,
|
|
pipeline::LLVMContainer &ModuleContainer) {
|
|
llvm::legacy::PassManager Manager;
|
|
Manager.add(new pipeline::LoadExecutionContextPass(&Ctx,
|
|
ModuleContainer.name()));
|
|
Manager.add(new LoadModelWrapperPass(revng::getModelFromContext(Ctx)));
|
|
Manager.add(new ControlFlowGraphCachePass(CFGMap));
|
|
Manager.add(new pipeline::FunctionPass<EnforceABI>());
|
|
Manager.run(ModuleContainer.getModule());
|
|
}
|
|
|
|
llvm::Error checkPrecondition(const pipeline::Context &Ctx) const {
|
|
const auto &Model = *revng::getModelFromContext(Ctx);
|
|
|
|
if (!Model.DefaultPrototype().empty())
|
|
return llvm::Error::success();
|
|
|
|
for (const auto &Function : Model.Functions()) {
|
|
if (Function.Prototype().empty()) {
|
|
return llvm::createStringError(inconvertibleErrorCode(),
|
|
"Binary needs to either have a default "
|
|
"prototype, or a prototype for each "
|
|
"function.");
|
|
}
|
|
}
|
|
|
|
for (const auto &Function : Model.ImportedDynamicFunctions()) {
|
|
if (Function.Prototype().empty()) {
|
|
return llvm::createStringError(inconvertibleErrorCode(),
|
|
"Binary needs to either have a default "
|
|
"prototype, or a prototype for each "
|
|
"function.");
|
|
}
|
|
}
|
|
|
|
return llvm::Error::success();
|
|
}
|
|
};
|
|
|
|
static pipeline::RegisterPipe<EnforceABIPipe> Y;
|