mirror of
https://github.com/revng/revng
synced 2026-06-21 14:07:57 +00:00
7ba01f513b
The collection points of several ABI analyses where incorrect. Several analyses that should have collected data only from entry points were collecting data from any node in the graph.
360 lines
12 KiB
C++
360 lines
12 KiB
C++
//
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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/IR/BasicBlock.h"
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#include "llvm/IR/Function.h"
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#include "llvm/IR/InstIterator.h"
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#include "llvm/IR/Instruction.h"
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#include "llvm/IR/Instructions.h"
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#include "llvm/Support/Casting.h"
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#include "llvm/Support/raw_ostream.h"
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#include "revng/ABI/RegisterState.h"
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#include "revng/ADT/ZipMapIterator.h"
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#include "revng/EarlyFunctionAnalysis/ABIAnalysis.h"
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#include "revng/EarlyFunctionAnalysis/Common.h"
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#include "revng/Model/Binary.h"
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#include "revng/Support/Assert.h"
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#include "revng/Support/Debug.h"
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#include "revng/Support/IRHelpers.h"
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#include "revng/Support/MetaAddress.h"
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#include "Analyses.h"
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using namespace llvm;
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static Logger<> ABIAnalysesLog("abi-analyses");
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namespace ABIAnalyses {
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using RegisterState = abi::RegisterState::Values;
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template void
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ABIAnalyses::ABIAnalysesResults::dump<Logger<true>>(Logger<true> &,
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const char *) const;
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struct PartialAnalysisResults {
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// Per function analysis
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RegisterStateMap UAOF;
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RegisterStateMap DRAOF;
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// Per call site analysis
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std::map<std::pair<BasicBlockID, BasicBlock *>, RegisterStateMap> URVOFC;
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std::map<std::pair<BasicBlockID, BasicBlock *>, RegisterStateMap> RAOFC;
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std::map<std::pair<BasicBlockID, BasicBlock *>, RegisterStateMap> DRVOFC;
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// Per return analysis
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std::map<std::pair<BasicBlockID, BasicBlock *>, RegisterStateMap> URVOF;
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// Debug methods
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void dump() const debug_function { dump(dbg, ""); }
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template<typename T>
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void dump(T &Output, const char *Prefix) const;
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};
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// Print the analysis results
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template<typename T>
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void PartialAnalysisResults::dump(T &Output, const char *Prefix) const {
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Output << Prefix << "UsedArgumentsOfFunction:\n";
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for (auto &[GV, State] : UAOF) {
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Output << Prefix << " " << GV->getName().str() << " = "
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<< abi::RegisterState::getName(State).str() << '\n';
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}
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Output << Prefix << "DeadRegisterArgumentsOfFunction:\n";
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for (auto &[GV, State] : DRAOF) {
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Output << Prefix << " " << GV->getName().str() << " = "
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<< abi::RegisterState::getName(State).str() << '\n';
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}
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Output << Prefix << "UsedReturnValuesOfFunctionCall:\n";
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for (auto &[Key, StateMap] : URVOFC) {
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Output << Prefix << " " << Key.second->getName().str() << '\n';
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for (auto &[GV, State] : StateMap) {
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Output << Prefix << " " << GV->getName().str() << " = "
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<< abi::RegisterState::getName(State).str() << '\n';
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}
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}
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Output << Prefix << "RegisterArgumentsOfFunctionCall:\n";
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for (auto &[Key, StateMap] : RAOFC) {
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Output << Prefix << " " << Key.second->getName().str() << '\n';
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for (auto &[GV, State] : StateMap) {
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Output << Prefix << " " << GV->getName().str() << " = "
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<< abi::RegisterState::getName(State).str() << '\n';
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}
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}
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Output << Prefix << "DeadReturnValuesOfFunctionCall:\n";
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for (auto &[Key, StateMap] : DRVOFC) {
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Output << Prefix << " " << Key.second->getName().str() << '\n';
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for (auto &[GV, State] : StateMap) {
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Output << Prefix << " " << GV->getName().str() << " = "
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<< abi::RegisterState::getName(State).str() << '\n';
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}
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}
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Output << Prefix << "UsedReturnValuesOfFunction:\n";
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for (auto &[Key, StateMap] : URVOF) {
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Output << Prefix << " " << Key.second->getName().str() << '\n';
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for (auto &[GV, State] : StateMap) {
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Output << Prefix << " " << GV->getName().str() << " = "
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<< abi::RegisterState::getName(State).str() << '\n';
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}
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}
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}
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RegisterState combine(RegisterState LH, RegisterState RH) {
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switch (LH) {
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case RegisterState::Yes:
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switch (RH) {
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case RegisterState::Yes:
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case RegisterState::YesOrDead:
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case RegisterState::Maybe:
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return RegisterState::Yes;
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case RegisterState::No:
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case RegisterState::NoOrDead:
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case RegisterState::Dead:
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case RegisterState::Contradiction:
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return RegisterState::Contradiction;
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case RegisterState::Count:
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case RegisterState::Invalid:
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revng_abort();
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}
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break;
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case RegisterState::YesOrDead:
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switch (RH) {
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case RegisterState::Yes:
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return RegisterState::Yes;
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case RegisterState::Maybe:
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case RegisterState::YesOrDead:
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return RegisterState::YesOrDead;
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case RegisterState::Dead:
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case RegisterState::NoOrDead:
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return RegisterState::Dead;
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case RegisterState::No:
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case RegisterState::Contradiction:
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return RegisterState::Contradiction;
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case RegisterState::Count:
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case RegisterState::Invalid:
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revng_abort();
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}
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break;
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case RegisterState::No:
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switch (RH) {
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case RegisterState::No:
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case RegisterState::NoOrDead:
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case RegisterState::Maybe:
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return RegisterState::No;
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case RegisterState::Yes:
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case RegisterState::YesOrDead:
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case RegisterState::Dead:
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case RegisterState::Contradiction:
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return RegisterState::Contradiction;
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case RegisterState::Count:
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case RegisterState::Invalid:
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revng_abort();
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}
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break;
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case RegisterState::NoOrDead:
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switch (RH) {
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case RegisterState::No:
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return RegisterState::No;
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case RegisterState::Maybe:
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case RegisterState::NoOrDead:
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return RegisterState::NoOrDead;
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case RegisterState::Dead:
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case RegisterState::YesOrDead:
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return RegisterState::Dead;
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case RegisterState::Yes:
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case RegisterState::Contradiction:
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return RegisterState::Contradiction;
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case RegisterState::Count:
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case RegisterState::Invalid:
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revng_abort();
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}
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break;
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case RegisterState::Dead:
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switch (RH) {
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case RegisterState::Dead:
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case RegisterState::Maybe:
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case RegisterState::NoOrDead:
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case RegisterState::YesOrDead:
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return RegisterState::Dead;
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case RegisterState::No:
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case RegisterState::Yes:
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case RegisterState::Contradiction:
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return RegisterState::Contradiction;
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case RegisterState::Count:
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case RegisterState::Invalid:
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revng_abort();
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}
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break;
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case RegisterState::Maybe:
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return RH;
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case RegisterState::Contradiction:
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return RegisterState::Contradiction;
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case RegisterState::Count:
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case RegisterState::Invalid:
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revng_abort();
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}
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}
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void finalizeReturnValues(ABIAnalysesResults &ABIResults) {
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for (auto &[PC, RSMap] : ABIResults.ReturnValuesRegisters) {
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for (auto &[CSV, RS] : RSMap) {
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if (!ABIResults.FinalReturnValuesRegisters.contains(CSV))
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ABIResults.FinalReturnValuesRegisters[CSV] = RegisterState::Maybe;
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ABIResults.FinalReturnValuesRegisters
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[CSV] = combine(ABIResults.FinalReturnValuesRegisters[CSV], RS);
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}
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}
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}
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// Run the ABI analyses on the outlined function F. This function must have all
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// the original function calls replaced with a basic block starting with a call
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// to `precall_hook` followed by a summary of the side effects of the function
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// followed by a call to `postcall_hook` and a basic block terminating
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// instruction.
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ABIAnalysesResults analyzeOutlinedFunction(Function *F,
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const GeneratedCodeBasicInfo &GCBI,
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Function *PreCallSiteHook,
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Function *PostCallSiteHook,
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Function *RetHook) {
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namespace UAOF = UsedArgumentsOfFunction;
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namespace DRAOF = DeadRegisterArgumentsOfFunction;
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namespace RAOFC = RegisterArgumentsOfFunctionCall;
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namespace URVOFC = UsedReturnValuesOfFunctionCall;
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namespace DRVOFC = DeadReturnValuesOfFunctionCall;
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namespace URVOF = UsedReturnValuesOfFunction;
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ABIAnalysesResults FinalResults;
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PartialAnalysisResults Results;
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// Initial population of partial results
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// TODO: merge the following analyses in a single one
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Results.UAOF = UAOF::analyze(&F->getEntryBlock(), GCBI);
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Results.DRAOF = DRAOF::analyze(&F->getEntryBlock(), GCBI);
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for (auto &I : instructions(F)) {
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BasicBlock *BB = I.getParent();
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if (auto *Call = dyn_cast<CallInst>(&I)) {
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BasicBlockID PC;
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if (isCallTo(Call, PreCallSiteHook) || isCallTo(Call, PostCallSiteHook)
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|| isCallTo(Call, RetHook)) {
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PC = BasicBlockID::fromValue(Call->getArgOperand(0));
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revng_assert(PC.isValid());
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}
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if (isCallTo(Call, PreCallSiteHook)) {
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Results.RAOFC[{ PC, BB }] = RAOFC::analyze(BB, GCBI);
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} else if (isCallTo(Call, PostCallSiteHook)) {
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// TODO: merge the following analyses in a single one
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Results.URVOFC[{ PC, BB }] = URVOFC::analyze(BB, GCBI);
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Results.DRVOFC[{ PC, BB }] = DRVOFC::analyze(BB, GCBI);
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} else if (isCallTo(Call, RetHook)) {
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Results.URVOF[{ PC, BB }] = URVOF::analyze(BB, GCBI);
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}
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}
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}
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if (ABIAnalysesLog.isEnabled()) {
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ABIAnalysesLog << "Dumping ABIAnalyses results for function "
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<< F->getName() << ":\n";
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Results.dump(ABIAnalysesLog, " ");
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ABIAnalysesLog << DoLog;
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}
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// Finalize results. Combine UAOF and DRAOF.
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for (auto &[Left, Right] : zipmap_range(Results.UAOF, Results.DRAOF)) {
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auto *CSV = Left == nullptr ? Right->first : Left->first;
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RegisterState LV = Left == nullptr ? RegisterState::Maybe : Left->second;
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RegisterState RV = Right == nullptr ? RegisterState::Maybe : Right->second;
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FinalResults.ArgumentsRegisters[CSV] = combine(LV, RV);
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}
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// Add RAOFC.
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for (auto &[Key, RSMap] : Results.RAOFC) {
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BasicBlockID PC = Key.first;
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revng_assert(PC.isValid());
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FinalResults.CallSites[PC] = ABIAnalysesResults::CallSiteResults();
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for (auto &[CSV, RS] : RSMap)
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FinalResults.CallSites[PC].ArgumentsRegisters[CSV] = RS;
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}
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// Combine URVOFC and DRVOFC.
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for (auto &[Key, _] : Results.URVOFC) {
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auto PC = Key.first;
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for (auto &[Left, Right] :
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zipmap_range(Results.URVOFC[Key], Results.DRVOFC[Key])) {
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auto *CSV = Left == nullptr ? Right->first : Left->first;
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RegisterState LV = Left == nullptr ? RegisterState::Maybe : Left->second;
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RegisterState RV = Right == nullptr ? RegisterState::Maybe :
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Right->second;
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FinalResults.CallSites[PC].ReturnValuesRegisters[CSV] = combine(LV, RV);
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}
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}
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// Add URVOF.
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for (auto &[Key, RSMap] : Results.URVOF) {
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auto PC = Key.first;
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for (auto &[CSV, RS] : RSMap)
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FinalResults.ReturnValuesRegisters[PC][CSV] = RS;
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}
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return FinalResults;
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}
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template<typename T>
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void ABIAnalysesResults::dump(T &Output, const char *Prefix) const {
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Output << Prefix << "Arguments:\n";
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for (auto &[GV, State] : ArgumentsRegisters) {
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Output << Prefix << " " << GV->getName().str() << " = "
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<< abi::RegisterState::getName(State).str() << '\n';
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}
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Output << Prefix << "Call site:\n";
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for (auto &[PC, StateMap] : CallSites) {
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Output << Prefix << " " << PC.toString() << '\n';
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Output << Prefix << " "
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<< " "
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<< "Arguments:\n";
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for (auto &[GV, State] : StateMap.ArgumentsRegisters) {
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Output << Prefix << " " << GV->getName().str() << " = "
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<< abi::RegisterState::getName(State).str() << '\n';
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}
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Output << Prefix << " "
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<< " "
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<< "Return values:\n";
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for (auto &[GV, State] : StateMap.ReturnValuesRegisters) {
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Output << Prefix << " " << GV->getName().str() << " = "
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<< abi::RegisterState::getName(State).str() << '\n';
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}
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}
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Output << Prefix << "Return values:\n";
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for (auto &[PC, StateMap] : ReturnValuesRegisters) {
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for (auto &[GV, State] : StateMap) {
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Output << Prefix << " " << GV->getName().str() << " = "
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<< abi::RegisterState::getName(State).str() << '\n';
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}
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}
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Output << Prefix << "Final Return values:\n";
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for (auto &[GV, State] : FinalReturnValuesRegisters) {
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Output << Prefix << " " << GV->getName().str() << " = "
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<< abi::RegisterState::getName(State).str() << '\n';
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}
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}
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} // namespace ABIAnalyses
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