Files
revng-revng/include/revng/EarlyFunctionAnalysis/FunctionSummaryOracle.h
Alessandro Di Federico 28a0fa5b7d DetectABI: run to fixed point and more
This commit switches the approach with which we run the ABI analyses: we
now run them until we reach a fixed point. This enables proper
interprocedural propagation of arguments and return values.

Basically, we now inject reads before call sites, so that, if a function
immediately calls another one, the arguments of the callee are
propagated to the caller.

This commit also updates the logic with which we propagate function
prototypes (and names) to callers. The main advantage of this, is that
function wrappers (in particular, PLT entries) now have the same name as
the function they wrap.
2023-12-12 10:05:22 +01:00

181 lines
5.8 KiB
C++

#pragma once
//
// This file is distributed under the MIT License. See LICENSE.md for details.
//
#include <set>
#include "revng/ADT/MutableSet.h"
#include "revng/EarlyFunctionAnalysis/ABIAnalysis.h"
#include "revng/EarlyFunctionAnalysis/BasicBlock.h"
#include "revng/Model/FunctionAttribute.h"
namespace llvm {
class Module;
}
namespace efa {
class FunctionSummaryOracle;
void importModel(llvm::Module &M,
GeneratedCodeBasicInfo &GCBI,
const model::Binary &Binary,
FunctionSummaryOracle &Oracle);
using AttributesSet = MutableSet<model::FunctionAttribute::Values>;
/// A summary of the analysis of a function.
///
/// For each function detected, the following information are included: function
/// attributes (inline, noreturn), which ABI registers are clobbered, its
/// control-flow graph, and an elected stack offset (to tell if the stack
/// pointer is restored at its original position).
struct FunctionSummary {
public:
AttributesSet Attributes;
std::set<llvm::GlobalVariable *> ClobberedRegisters;
// TODO: this field is populated in a different maneer from all the others,
// consider changing how this works
ABIAnalyses::ABIAnalysesResults ABIResults;
SortedVector<efa::BasicBlock> CFG;
std::optional<int64_t> ElectedFSO;
std::set<llvm::GlobalVariable *> WrittenRegisters;
public:
FunctionSummary(MutableSet<model::FunctionAttribute::Values> Attributes,
std::set<llvm::GlobalVariable *> ClobberedRegisters,
ABIAnalyses::ABIAnalysesResults ABIResults,
SortedVector<efa::BasicBlock> CFG,
std::optional<int64_t> ElectedFSO) :
Attributes(Attributes),
ClobberedRegisters(std::move(ClobberedRegisters)),
ABIResults(std::move(ABIResults)),
CFG(std::move(CFG)),
ElectedFSO(ElectedFSO) {}
FunctionSummary() = default;
FunctionSummary(const FunctionSummary &) = delete;
FunctionSummary &operator=(const FunctionSummary &) = delete;
FunctionSummary(FunctionSummary &&Other) = default;
FunctionSummary &operator=(FunctionSummary &&Other) = default;
bool operator==(const FunctionSummary &Other) const = default;
public:
void combine(const FunctionSummary &Other) {
ClobberedRegisters.insert(Other.ClobberedRegisters.begin(),
Other.ClobberedRegisters.end());
if (Other.Attributes.contains(model::FunctionAttribute::NoReturn))
Attributes.insert(model::FunctionAttribute::NoReturn);
}
bool containedOrEqual(const FunctionSummary &Other) const {
const auto NoReturn = model::FunctionAttribute::NoReturn;
if (Attributes.contains(NoReturn) && !Other.Attributes.contains(NoReturn))
return false;
return std::includes(Other.ClobberedRegisters.begin(),
Other.ClobberedRegisters.end(),
ClobberedRegisters.begin(),
ClobberedRegisters.end());
}
void dump() const debug_function { dump(dbg); }
template<typename T>
void dump(T &Output) const {
Output << "Dumping summary \n"
<< " Attributes: [";
for (model::FunctionAttribute::Values Attribute : Attributes)
Output << " " << model::FunctionAttribute::getName(Attribute).str();
Output << " ]\n";
Output << " ElectedFSO: " << (ElectedFSO.has_value() ? *ElectedFSO : -1)
<< "\n"
<< " Clobbered registers: [";
for (auto *Reg : ClobberedRegisters)
Output << " " << Reg->getName().str();
Output << " ]\n";
Output << " ABI info: \n";
ABIResults.dump(Output);
}
};
/// An oracle providing information about functions.
///
/// This oracle can be populated with analysis results. But even if it has not
/// been popoulated with any result, it will still provide conservative results
/// about the function.
class FunctionSummaryOracle {
private:
/// Call site-specific overrides
///
/// Key is composed by <FunctionEntryPoint, CallSiteBasicBlockAddress>
/// Value is composed by <FunctionSummary, IsTailCall>
using CallSiteDescriptor = std::pair<FunctionSummary, bool>;
std::map<std::pair<MetaAddress, BasicBlockID>, CallSiteDescriptor> CallSites;
/// Local functions
std::map<MetaAddress, FunctionSummary> LocalFunctions;
/// Dynamic functions
std::map<std::string, FunctionSummary> DynamicFunctions;
/// Default
FunctionSummary Default;
public:
const FunctionSummary &getDefault() const { return Default; }
const FunctionSummary &getLocalFunction(MetaAddress PC) const {
return LocalFunctions.at(PC);
}
FunctionSummary &getLocalFunction(MetaAddress PC) {
return LocalFunctions.at(PC);
}
/// \return a description of the call and boolean indicating whether the call
/// site is a tail call or not.
std::pair<const FunctionSummary *, bool>
getCallSite(MetaAddress Function,
BasicBlockID CallerBlockAddress,
MetaAddress CalledLocalFunction,
llvm::StringRef CalledSymbol) const;
public:
bool registerCallSite(MetaAddress Function,
BasicBlockID CallSite,
FunctionSummary &&New,
bool IsTailCall);
bool registerLocalFunction(MetaAddress PC, FunctionSummary &&New);
bool registerDynamicFunction(llvm::StringRef Name, FunctionSummary &&New);
void setDefault(FunctionSummary &&Summary) { Default = std::move(Summary); }
const FunctionSummary &getDynamicFunction(llvm::StringRef Name) const {
return DynamicFunctions.at(Name.str());
}
private:
std::pair<const FunctionSummary *, bool>
getCallSiteImpl(MetaAddress Function, BasicBlockID CallSite) const {
auto It = CallSites.find({ Function, CallSite });
if (It == CallSites.end())
return { nullptr, false };
else
return { &It->second.first, It->second.second };
}
};
} // namespace efa