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#include "warpcore.h"
#include "warp.h"
#include <utility>
using namespace Warp;
std::string WarpUUID::ToString() const
{
char *str = BNWARPUUIDGetString(&uuid);
std::string result = str;
BNFreeString(str);
return result;
}
Target::Target(BNWARPTarget *target)
{
m_object = target;
}
Ref<Target> Target::FromPlatform(const BinaryNinja::Platform &platform)
{
BNWARPTarget *result = BNWARPGetTarget(platform.m_object);
if (!result)
return nullptr;
return new Target(result);
}
Constraint::Constraint(ConstraintGUID guid, std::optional<int64_t> offset)
{
this->guid = guid;
this->offset = offset;
}
Constraint Constraint::FromAPIObject(BNWARPConstraint *constraint)
{
auto offset = constraint->offset == INT64_MAX ? std::nullopt : std::optional(constraint->offset);
return {constraint->guid, offset};
}
FunctionComment::FunctionComment(std::string text, int64_t offset)
{
this->text = std::move(text);
this->offset = offset;
}
FunctionComment FunctionComment::FromAPIObject(BNWARPFunctionComment *comment)
{
return {comment->text, comment->offset};
}
Function::Function(BNWARPFunction *function)
{
m_object = function;
}
FunctionGUID Function::GetGUID() const
{
return BNWARPFunctionGetGUID(m_object);
}
std::string Function::GetSymbolName() const
{
char *name = BNWARPFunctionGetSymbolName(m_object);
std::string result = name;
BNFreeString(name);
return result;
}
BinaryNinja::Ref<BinaryNinja::Symbol> Function::GetSymbol(const BinaryNinja::Function &function) const
{
BNSymbol *symbol = BNWARPFunctionGetSymbol(m_object, function.m_object);
if (!symbol)
return nullptr;
return new BinaryNinja::Symbol(symbol);
}
BinaryNinja::Ref<BinaryNinja::Type> Function::GetType(const BinaryNinja::Function &function) const
{
BNType *type = BNWARPFunctionGetType(m_object, function.m_object);
if (!type)
return nullptr;
return new BinaryNinja::Type(type);
}
std::vector<Constraint> Function::GetConstraints() const
{
size_t count;
BNWARPConstraint *constraints = BNWARPFunctionGetConstraints(m_object, &count);
std::vector<Constraint> result;
result.reserve(count);
for (int i = 0; i < count; i++)
result.push_back(Constraint::FromAPIObject(&constraints[i]));
BNWARPFreeConstraintList(constraints, count);
return result;
}
std::vector<FunctionComment> Function::GetComments() const
{
size_t count;
BNWARPFunctionComment *comments = BNWARPFunctionGetComments(m_object, &count);
std::vector<FunctionComment> result;
result.reserve(count);
for (int i = 0; i < count; i++)
result.push_back(FunctionComment::FromAPIObject(&comments[i]));
BNWARPFreeFunctionCommentList(comments, count);
return result;
}
Ref<Function> Function::Get(const BinaryNinja::Function &function)
{
BNWARPFunction *result = BNWARPGetFunction(function.m_object);
if (!result)
return nullptr;
return new Function(result);
}
Ref<Function> Function::GetMatched(const BinaryNinja::Function &function)
{
BNWARPFunction *result = BNWARPGetMatchedFunction(function.m_object);
if (!result)
return nullptr;
return new Function(result);
}
void Function::Apply(const BinaryNinja::Function &function) const
{
BNWARPFunctionApply(m_object, function.m_object);
}
void Function::RemoveMatch(const BinaryNinja::Function &function)
{
BNWARPFunctionApply(nullptr, function.m_object);
}
Container::Container(BNWARPContainer *container)
{
m_object = container;
}
std::vector<Ref<Container> > Container::All()
{
size_t count;
BNWARPContainer **containers = BNWARPGetContainers(&count);
std::vector<Ref<Container> > result;
result.reserve(count);
for (int i = 0; i < count; i++)
result.push_back(new Container(BNWARPNewContainerReference(containers[i])));
BNWARPFreeContainerList(containers, count);
return result;
}
std::string Container::GetName() const
{
char *rawName = BNWARPContainerGetName(m_object);
std::string name = rawName;
BNFreeString(rawName);
return name;
}
std::vector<Source> Container::GetSources() const
{
size_t count;
BNWARPSource *sources = BNWARPContainerGetSources(m_object, &count);
std::vector<Source> result;
result.reserve(count);
for (int i = 0; i < count; i++)
result.emplace_back(sources[i]);
BNWARPFreeUUIDList(sources, count);
return result;
}
std::optional<Source> Container::AddSource(const std::string &sourcePath) const
{
Source source;
if (!BNWARPContainerAddSource(m_object, sourcePath.c_str(), source.RawMut()))
return std::nullopt;
return source;
}
bool Container::CommitSource(const Source &source) const
{
return BNWARPContainerCommitSource(m_object, source.Raw());
}
bool Container::IsSourceUncommitted(const Source &source) const
{
return BNWARPContainerIsSourceUncommitted(m_object, source.Raw());
}
bool Container::IsSourceWritable(const Source &source) const
{
return BNWARPContainerIsSourceWritable(m_object, source.Raw());
}
std::optional<std::string> Container::SourcePath(const Source &source) const
{
char *rawPath = BNWARPContainerGetSourcePath(m_object, source.Raw());
if (!rawPath)
return std::nullopt;
std::string path = rawPath;
BNFreeString(rawPath);
return path;
}
bool Container::AddFunctions(const Target &target, const Source &source, const std::vector<Ref<Function> > &functions) const
{
size_t count = functions.size();
BNWARPFunction **apiFunctions = new BNWARPFunction *[count];
for (size_t i = 0; i < count; i++)
apiFunctions[i] = functions[i]->m_object;
const bool result = BNWARPContainerAddFunctions(m_object, target.m_object, source.Raw(), apiFunctions, count);
delete[] apiFunctions;
return result;
}
bool Container::AddTypes(const BinaryNinja::BinaryView &view, const Source &source,
const std::vector<BinaryNinja::Ref<BinaryNinja::Type> > &types) const
{
size_t count = types.size();
BNType **apiTypes = new BNType *[count];
for (size_t i = 0; i < count; i++)
apiTypes[i] = types[i]->m_object;
const bool result = BNWARPContainerAddTypes(view.m_object, m_object, source.Raw(), apiTypes, count);
delete[] apiTypes;
return result;
}
bool Container::RemoveFunctions(const Target &target, const Source &source,
const std::vector<Ref<Function>> &functions) const
{
size_t count = functions.size();
BNWARPFunction **apiFunctions = new BNWARPFunction *[count];
for (size_t i = 0; i < count; i++)
apiFunctions[i] = functions[i]->m_object;
const bool result = BNWARPContainerRemoveFunctions(m_object, target.m_object, source.Raw(), apiFunctions, count);
delete[] apiFunctions;
return result;
}
bool Container::RemoveTypes(const Source &source, const std::vector<TypeGUID> &guids) const
{
size_t count = guids.size();
BNWARPTypeGUID* apiGuids = new BNWARPTypeGUID[count];
for (size_t i = 0; i < count; i++)
apiGuids[i] = *guids[i].Raw();
const bool result = BNWARPContainerRemoveTypes(m_object, source.Raw(), apiGuids, count);
delete[] apiGuids;
return result;
}
void Container::FetchFunctions(const Target &target, const std::vector<FunctionGUID> &guids) const
{
size_t count = guids.size();
BNWARPFunctionGUID *apiGuids = new BNWARPFunctionGUID[count];
for (size_t i = 0; i < count; i++)
apiGuids[i] = *guids[i].Raw();
BNWARPContainerFetchFunctions(m_object, target.m_object, apiGuids, count);
delete[] apiGuids;
}
std::vector<Source> Container::GetSourcesWithFunctionGUID(const Target& target, const FunctionGUID &guid) const
{
size_t count;
BNWARPSource *sources = BNWARPContainerGetSourcesWithFunctionGUID(m_object, target.m_object, guid.Raw(), &count);
std::vector<Source> result;
result.reserve(count);
for (int i = 0; i < count; i++)
result.emplace_back(sources[i]);
BNWARPFreeUUIDList(sources, count);
return result;
}
std::vector<Source> Container::GetSourcesWithTypeGUID(const TypeGUID &guid) const
{
size_t count;
BNWARPSource *sources = BNWARPContainerGetSourcesWithTypeGUID(m_object, guid.Raw(), &count);
std::vector<Source> result;
result.reserve(count);
for (int i = 0; i < count; i++)
result.emplace_back(sources[i]);
BNWARPFreeUUIDList(sources, count);
return result;
}
std::vector<Ref<Function> > Container::GetFunctionsWithGUID(const Target& target, const Source &source, const FunctionGUID &guid) const
{
size_t count;
BNWARPFunction **functions = BNWARPContainerGetFunctionsWithGUID(m_object, target.m_object, source.Raw(), guid.Raw(), &count);
std::vector<Ref<Function> > result;
result.reserve(count);
for (int i = 0; i < count; i++)
result.push_back(new Function(BNWARPNewFunctionReference(functions[i])));
BNWARPFreeFunctionList(functions, count);
return result;
}
BinaryNinja::Ref<BinaryNinja::Type> Container::GetTypeWithGUID(const BinaryNinja::Architecture &arch,
const Source &source, const TypeGUID &guid) const
{
BNType *type = BNWARPContainerGetTypeWithGUID(arch.m_object, m_object, source.Raw(), guid.Raw());
return new BinaryNinja::Type(type);
}
std::vector<TypeGUID> Container::GetTypeGUIDsWithName(const Source &source, const std::string &name) const
{
size_t count;
BNWARPTypeGUID *guids = BNWARPContainerGetTypeGUIDsWithName(m_object, source.Raw(), name.c_str(), &count);
std::vector<TypeGUID> result;
result.reserve(count);
for (int i = 0; i < count; i++)
result.emplace_back(guids[i]);
BNWARPFreeUUIDList(guids, count);
return result;
}
void Warp::RunMatcher(const BinaryNinja::BinaryView &view)
{
BNWARPRunMatcher(view.m_object);
}
bool IsInstructionVariant(const BinaryNinja::LowLevelILFunction &function, BinaryNinja::ExprId idx)
{
return BNWARPIsLiftedInstructionVariant(function.m_object, idx);
}
bool IsInstructionBlacklisted(const BinaryNinja::LowLevelILFunction &function, BinaryNinja::ExprId idx)
{
return BNWARPIsLiftedInstructionBlacklisted(function.m_object, idx);
}
bool IsInstructionComputedVariant(const BinaryNinja::LowLevelILFunction &function, BinaryNinja::ExprId idx)
{
return BNWARPIsLowLevelInstructionComputedVariant(function.m_object, idx);
}
std::optional<FunctionGUID> Warp::GetAnalysisFunctionGUID(const BinaryNinja::Function &function)
{
FunctionGUID guid;
if (!BNWARPGetAnalysisFunctionGUID(function.m_object, guid.RawMut()))
return std::nullopt;
return guid;
}
std::optional<BasicBlockGUID> Warp::GetBasicBlockGUID(const BinaryNinja::BasicBlock &basicBlock)
{
BasicBlockGUID guid;
if (!BNWARPGetBasicBlockGUID(basicBlock.m_object, guid.RawMut()))
return std::nullopt;
return guid;
}
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