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2025-11-18 17:47:54 +01:00

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C++

//
// This file is distributed under the MIT License. See LICENSE.md for details.
//
#include "revng/EarlyFunctionAnalysis/ControlFlowGraph.h"
#include "revng/EarlyFunctionAnalysis/ControlFlowGraphCache.h"
#include "revng/Lift/LoadBinaryPass.h"
#include "revng/Model/Binary.h"
#include "revng/Model/NameBuilder.h"
#include "revng/PTML/Constants.h"
#include "revng/PTML/Doxygen.h"
#include "revng/PTML/Tag.h"
#include "revng/Pipeline/AllRegistries.h"
#include "revng/Pipeline/Pipe.h"
#include "revng/Pipeline/RegisterPipe.h"
#include "revng/Pipes/Kinds.h"
#include "revng/Pipes/ModelGlobal.h"
#include "revng/Support/YAMLTraits.h"
#include "revng/Yield/Assembly/DisassemblyHelper.h"
#include "revng/Yield/Function.h"
#include "revng/Yield/PTML.h"
#include "revng/Yield/Pipes/ProcessAssembly.h"
#include "revng/Yield/Pipes/YieldAssembly.h"
namespace revng::pipes {
void ProcessAssembly::run(pipeline::ExecutionContext &Context,
const BinaryFileContainer &SourceBinary,
const CFGMap &CFGMap,
FunctionAssemblyStringMap &Output) {
if (not SourceBinary.exists())
return;
// Access the model
const auto &Model = getModelFromContext(Context);
model::AssemblyNameBuilder NameBuilder = *Model;
// Access the binary
revng_assert(SourceBinary.path().has_value());
auto BufferOrError = llvm::MemoryBuffer::getFileOrSTDIN(*SourceBinary.path());
auto Buffer = cantFail(errorOrToExpected(std::move(BufferOrError)));
RawBinaryView BinaryView(*Model, Buffer->getBuffer());
// Define the helper object to store the disassembly pipeline.
// This allows it to only be created once.
DissassemblyHelper Helper;
ControlFlowGraphCache Cache(CFGMap);
for (const model::Function &Function :
getFunctionsAndCommit(Context, Output.name())) {
const auto &Metadata = Cache.getControlFlowGraph(Function.Entry());
auto Disassembled = Helper.disassemble(Function,
Metadata,
BinaryView,
*Model,
NameBuilder);
revng_assert(Disassembled.verify());
Output.insert_or_assign(Function.Entry(), toString(Disassembled));
}
}
} // namespace revng::pipes
namespace revng::pypeline::piperuns {
ProcessAssembly::ProcessAssembly(const class Model &Model,
llvm::StringRef Config,
llvm::StringRef DynamicConfig,
const BinariesContainer &BinariesContainer,
const CFGMap &CFG,
AssemblyInternalContainer &Output) :
Binary(*Model.get().get()), CFG(CFG), Output(Output), NameBuilder(Binary) {
Helper = std::make_unique<DissassemblyHelper>();
auto BinaryBuffer = BinariesContainer.getFile(0);
BinaryView = std::make_unique<RawBinaryView>(Binary,
llvm::StringRef{
BinaryBuffer.data(),
BinaryBuffer.size() });
};
ProcessAssembly::~ProcessAssembly() = default;
void ProcessAssembly::runOnFunction(const model::Function &TheFunction) {
ObjectID Object(TheFunction.Entry());
const auto &Metadata = CFG.getElement(Object);
TupleTree<yield::Function> &OutputFunction = Output.getElement(Object);
Helper->disassemble(TheFunction,
*Metadata,
*BinaryView,
Binary,
NameBuilder,
*OutputFunction);
}
} // namespace revng::pypeline::piperuns
namespace revng::pipes {
void YieldAssembly::run(pipeline::ExecutionContext &Context,
const FunctionAssemblyStringMap &Input,
FunctionAssemblyPTMLStringMap &Output) {
// Access the model
const auto &Model = getModelFromContext(Context);
model::CNameBuilder NameBuilder = *Model;
ptml::MarkupBuilder B;
for (const model::Function &Function :
getFunctionsAndCommit(Context, Output.name())) {
MetaAddress Address = Function.Entry();
llvm::StringRef YamlText = Input.at(Address);
auto MaybeFunction = TupleTree<yield::Function>::fromString(YamlText);
revng_assert(MaybeFunction && MaybeFunction->verify());
revng_assert((*MaybeFunction)->verify());
revng_assert((*MaybeFunction)->Entry() == Address);
const model::Architecture::Values A = Model->Architecture();
auto CommentIndicator = model::Architecture::getAssemblyCommentIndicator(A);
const model::Configuration &Configuration = Model->Configuration();
uint64_t LineWidth = Configuration.CommentLineWidth();
std::string R = ptml::functionComment(B,
Function,
*Model,
CommentIndicator,
0,
LineWidth,
NameBuilder);
R += yield::ptml::functionAssembly(B, **MaybeFunction, *Model);
R = B.getTag(ptml::tags::Div, std::move(R)).toString();
Output.insert_or_assign((*MaybeFunction)->Entry(), std::move(R));
}
}
} // end namespace revng::pipes
using namespace revng::pipes;
using namespace pipeline;
static RegisterDefaultConstructibleContainer<FunctionAssemblyStringMap> X1;
static RegisterDefaultConstructibleContainer<FunctionAssemblyPTMLStringMap> X2;
static pipeline::RegisterPipe<revng::pipes::ProcessAssembly> ProcessPipe;
static pipeline::RegisterPipe<revng::pipes::YieldAssembly> YieldPipe;
namespace revng::pypeline::piperuns {
void YieldAssembly::runOnFunction(const model::Function &TheFunction) {
MetaAddress Address = TheFunction.Entry();
ObjectID Object(Address);
const TupleTree<yield::Function> &Function = Input.getElement(Object);
revng_assert(Function.verify());
revng_assert(Function->verify());
revng_assert(Function->Entry() == Address);
const model::Architecture::Values A = Model.Architecture();
auto CommentIndicator = model::Architecture::getAssemblyCommentIndicator(A);
const model::Configuration &Configuration = Model.Configuration();
uint64_t LineWidth = Configuration.CommentLineWidth();
std::string R = ptml::functionComment(B,
TheFunction,
Model,
CommentIndicator,
0,
LineWidth,
NameBuilder);
R += yield::ptml::functionAssembly(B, *Function, Model);
R = B.getTag(ptml::tags::Div, std::move(R)).toString();
*Output.getOStream(Object) << R;
}
} // namespace revng::pypeline::piperuns