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revng-revng/lib/Model/RawBinaryView.cpp
Alessandro Di Federico 5820908675 Remove and ban \file
2025-12-16 17:41:55 +01:00

207 lines
6.4 KiB
C++

//
// This file is distributed under the MIT License. See LICENSE.md for details.
//
#include "revng/Model/RawBinaryView.h"
std::optional<llvm::ArrayRef<uint8_t>>
RawBinaryView::getByOffset(uint64_t Offset, uint64_t Size) const {
auto Sum = OverflowSafeInt(Offset) + Size;
if (not Sum or *Sum > Data.size())
return std::nullopt;
return Data.slice(Offset, Size);
}
std::optional<llvm::ArrayRef<uint8_t>>
RawBinaryView::getByAddress(MetaAddress Address, uint64_t Size) const {
auto Offset = addressToOffset(Address);
if (not Offset)
return std::nullopt;
return getByOffset(*Offset, Size);
}
std::optional<llvm::StringRef>
RawBinaryView::getStringByAddress(MetaAddress Address, uint64_t Size) const {
auto BytesOrNone = getByAddress(Address, Size);
if (not BytesOrNone.has_value())
return std::nullopt;
llvm::ArrayRef<uint8_t> Bytes = BytesOrNone.value();
return llvm::StringRef(reinterpret_cast<const char *>(Bytes.data()), Size);
}
std::optional<uint64_t> RawBinaryView::readInteger(MetaAddress Address,
uint64_t Size,
bool IsLittleEndian) const {
auto MaybeData = getByAddress(Address, Size);
if (not MaybeData)
return std::nullopt;
llvm::support::endianness Endianness;
if (IsLittleEndian) {
Endianness = llvm::support::little;
} else {
Endianness = llvm::support::big;
}
switch (Size) {
case 1:
return (*MaybeData)[0];
case 2:
return llvm::support::endian::read16(MaybeData->data(), Endianness);
case 4:
return llvm::support::endian::read32(MaybeData->data(), Endianness);
case 8:
return llvm::support::endian::read64(MaybeData->data(), Endianness);
default:
revng_abort("Unexpected read size");
}
}
std::optional<uint64_t> RawBinaryView::readInteger(MetaAddress Address,
uint64_t Size) const {
auto Architecture = Binary.Architecture();
bool IsLittleEndian = model::Architecture::isLittleEndian(Architecture);
return readInteger(Address, Size, IsLittleEndian);
}
std::optional<llvm::ArrayRef<uint8_t>>
RawBinaryView::getFromAddressOn(MetaAddress Address) const {
auto &&[Segment, OffsetInSegment] = findOffsetInSegment(Address, 0);
if (Segment == nullptr)
return std::nullopt;
auto StartOffset = OverflowSafeInt(Segment->StartOffset()) + OffsetInSegment;
auto Size = OverflowSafeInt(Segment->endOffset()) - StartOffset;
if (not Size or not StartOffset)
return std::nullopt;
return Data.slice(*StartOffset, *Size);
}
/// \note This function ignores the underlying data, it just performs address
/// translation.
std::optional<uint64_t> RawBinaryView::addressToOffset(MetaAddress Address,
uint64_t Size) const {
auto &&[Segment, OffsetInSegment] = findOffsetInSegment(Address, Size);
if (Segment == nullptr) {
return std::nullopt;
} else {
auto Offset = OverflowSafeInt(Segment->StartOffset()) + OffsetInSegment;
if (not Offset)
return std::nullopt;
return *Offset;
}
}
/// \return the Generic address corresponding to a certain offset, if there's
/// one and only one.
MetaAddress RawBinaryView::offsetToAddress(uint64_t Offset) const {
using namespace model;
const Segment *Match = nullptr;
for (const Segment &Segment : Binary.Segments()) {
if (Segment.StartOffset() <= Offset and Offset < Segment.endOffset()) {
if (Match != nullptr) {
// We have more than one match!
Match = nullptr;
break;
}
Match = &Segment;
}
}
if (Match != nullptr) {
auto OffsetInSegment = OverflowSafeInt(Offset) - Match->StartOffset();
if (OffsetInSegment) {
return Match->StartAddress() + *OffsetInSegment;
}
}
return MetaAddress::invalid();
}
[[nodiscard]] bool RawBinaryView::isReadOnly(MetaAddress Address,
uint64_t Size) const {
for (const model::Segment &Segment : Binary.Segments()) {
if (Segment.contains(Address, Size)) {
if (!Segment.IsWriteable()) {
return true;
}
}
}
return false;
}
using SegmentDataPair = std::pair<const model::Segment &,
llvm::ArrayRef<uint8_t>>;
cppcoro::generator<SegmentDataPair> RawBinaryView::segments() const {
for (const model::Segment &Segment : Binary.Segments()) {
auto MaybeData = getByOffset(Segment.StartOffset(), Segment.FileSize());
if (MaybeData)
co_yield SegmentDataPair(Segment, *MaybeData);
}
}
MaterializedValue RawBinaryView::load(const MetaAddress &Address,
unsigned LoadSize,
bool IsLittleEndian) const {
using llvm::APInt;
auto MaybeValue = readInteger(Address, LoadSize, IsLittleEndian);
bool IsMutable = not isReadOnly(Address, LoadSize);
if (MaybeValue) {
if (IsMutable)
return MaterializedValue::fromMutable(APInt(LoadSize * 8, *MaybeValue));
else
return MaterializedValue::fromConstant(APInt(LoadSize * 8, *MaybeValue));
} else {
return MaterializedValue::invalid();
}
}
std::pair<const model::Segment *, uint64_t>
RawBinaryView::findOffsetInSegment(MetaAddress Address, uint64_t Size) const {
const model::Segment *Match = nullptr;
for (const model::Segment &Segment : Binary.Segments()) {
if (Segment.contains(Address, Size)) {
if (Match != nullptr) {
// We have more than one match!
Match = nullptr;
break;
}
Match = &Segment;
}
}
if (Match != nullptr) {
auto Offset = OverflowSafeInt(Address.address())
- Match->StartAddress().address();
if (Offset)
return { Match, *Offset };
}
return { nullptr, 0 };
}
llvm::Error RawBinaryView::checkPrecondition(const model::Binary &Binary) {
llvm::SmallVector<llvm::Error, 0> Errors;
if (Binary.Binaries().size() != 1)
Errors.push_back(revng::createError("Binaries should contain exactly 1 "
"entry"));
for (const model::Segment &Segment : Binary.Segments()) {
if (not Segment.Binary().isValid())
Errors.push_back(revng::createError("Segment " + toString(Segment.key())
+ " does not reference a valid "
"entry in Binaries"));
}
return revng::joinErrors(Errors);
}