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revng-revng/include/revng/BasicAnalyses/MaterializedValue.h
Ivan Krysak bc98e0079f Formatting: change PenaltyReturnTypeOnItsOwnLine
The new value is 21.
2023-07-02 13:20:49 +02:00

124 lines
3.7 KiB
C++

#pragma once
//
// This file is distributed under the MIT License. See LICENSE.md for details.
//
#include "revng/Support/Debug.h"
#include "revng/Support/MetaAddress.h"
/// Class representing either a constant value or an offset from a symbol
class MaterializedValue {
public:
class MemoryRange {
public:
MetaAddress Address;
unsigned Size = 0;
};
private:
bool IsValid = false;
std::optional<std::string> SymbolName;
llvm::APInt Value;
llvm::SmallVector<MemoryRange, 1> AffectedBy;
private:
MaterializedValue(const llvm::APInt &Value) : IsValid(true), Value(Value) {}
MaterializedValue(llvm::StringRef SymbolName, const llvm::APInt &Offset) :
IsValid(true), SymbolName(SymbolName.str()), Value(Offset) {}
public:
MaterializedValue() = default;
MaterializedValue(const MaterializedValue &) = default;
MaterializedValue(MaterializedValue &&) = default;
MaterializedValue &operator=(const MaterializedValue &) = default;
MaterializedValue &operator=(MaterializedValue &&) = default;
public:
static MaterializedValue invalid() { return MaterializedValue(); }
static MaterializedValue fromConstant(const llvm::APInt &API) {
return MaterializedValue(API);
}
static MaterializedValue fromConstant(llvm::ConstantInt *CI);
static MaterializedValue fromSymbol(llvm::StringRef SymbolName,
const llvm::APInt &Offset) {
return MaterializedValue(SymbolName, Offset);
}
static MaterializedValue apply(llvm::Instruction *Operation,
llvm::ArrayRef<MaterializedValue> Operands);
public:
template<typename T>
MaterializedValue load(T &MemoryOracle, unsigned Size) const {
// Cannot load symbols or invalid values
if (hasSymbol() or not IsValid)
return MaterializedValue::invalid();
return MemoryOracle.load(Value.getLimitedValue(), Size);
}
MaterializedValue byteSwap() const {
MaterializedValue Result = *this;
Result.Value = Value.byteSwap();
return Result;
}
public:
bool operator==(const MaterializedValue &Other) const {
auto MaxBitWidth = std::max(Value.getBitWidth(), Other.Value.getBitWidth());
auto ZExtValue = Value.zext(MaxBitWidth);
auto ZExtOther = Other.Value.zext(MaxBitWidth);
auto This = std::tie(IsValid, SymbolName, ZExtValue);
auto That = std::tie(Other.IsValid, Other.SymbolName, ZExtOther);
return This == That;
}
bool operator<(const MaterializedValue &Other) const {
auto MaxBitWidth = std::max(Value.getBitWidth(), Other.Value.getBitWidth());
if (Value.zext(MaxBitWidth).ult(Other.Value.zext(MaxBitWidth)))
return true;
auto This = std::tie(IsValid, SymbolName);
auto That = std::tie(Other.IsValid, Other.SymbolName);
return This < That;
}
const llvm::APInt &value() const {
revng_assert(isValid());
return Value;
}
bool isValid() const { return IsValid; }
bool hasSymbol() const { return SymbolName.has_value(); }
std::string symbolName() const {
revng_assert(isValid());
revng_assert(hasSymbol());
revng_assert(not llvm::StringRef(*SymbolName).contains('\0'));
return *SymbolName;
}
llvm::Constant *toConstant(llvm::LLVMContext &Context) const;
llvm::Constant *toConstant(llvm::Type *DestinationType) const;
void dump() const debug_function { dump(dbg); }
template<typename T>
void dump(T &Output) const {
if (not isValid()) {
Output << "(invalid)";
} else {
if (hasSymbol())
Output << symbolName().data() << "+";
llvm::SmallString<40> String;
value().toStringUnsigned(String, 16);
Output << "0x" << String.c_str();
}
}
};
using MaterializedValues = std::vector<MaterializedValue>;