#ifndef LLVM_DEBUGINFO_SYMBOLIZE_SYMBOLIZE_H
#define LLVM_DEBUGINFO_SYMBOLIZE_SYMBOLIZE_H
#include "llvm/ADT/StringMap.h"
#include "llvm/ADT/ilist_node.h"
#include "llvm/ADT/simple_ilist.h"
#include "llvm/DebugInfo/DIContext.h"
#include "llvm/DebugInfo/Symbolize/DIFetcher.h"
#include "llvm/Object/Binary.h"
#include "llvm/Support/Error.h"
#include <algorithm>
#include <cstdint>
#include <map>
#include <memory>
#include <string>
#include <utility>
#include <vector>
namespace llvm {
namespace object {
class ELFObjectFileBase;
class MachOObjectFile;
class ObjectFile;
struct SectionedAddress;
}
namespace symbolize {
class SymbolizableModule;
using namespace object;
using FunctionNameKind = DILineInfoSpecifier::FunctionNameKind;
using FileLineInfoKind = DILineInfoSpecifier::FileLineInfoKind;
class CachedBinary;
class LLVMSymbolizer {
public:
struct Options {
FunctionNameKind PrintFunctions = FunctionNameKind::LinkageName;
FileLineInfoKind PathStyle = FileLineInfoKind::AbsoluteFilePath;
bool UseSymbolTable = true;
bool Demangle = true;
bool RelativeAddresses = false;
bool UntagAddresses = false;
bool UseDIA = false;
std::string DefaultArch;
std::vector<std::string> DsymHints;
std::string FallbackDebugPath;
std::string DWPName;
std::vector<std::string> DebugFileDirectory;
size_t MaxCacheSize =
sizeof(size_t) == 4
? 512 * 1024 * 1024
: static_cast<size_t>(4ULL * 1024 * 1024 * 1024) ;
};
LLVMSymbolizer();
LLVMSymbolizer(const Options &Opts);
~LLVMSymbolizer();
Expected<DILineInfo> symbolizeCode(const ObjectFile &Obj,
object::SectionedAddress ModuleOffset);
Expected<DILineInfo> symbolizeCode(const std::string &ModuleName,
object::SectionedAddress ModuleOffset);
Expected<DILineInfo> symbolizeCode(ArrayRef<uint8_t> BuildID,
object::SectionedAddress ModuleOffset);
Expected<DIInliningInfo>
symbolizeInlinedCode(const ObjectFile &Obj,
object::SectionedAddress ModuleOffset);
Expected<DIInliningInfo>
symbolizeInlinedCode(const std::string &ModuleName,
object::SectionedAddress ModuleOffset);
Expected<DIInliningInfo>
symbolizeInlinedCode(ArrayRef<uint8_t> BuildID,
object::SectionedAddress ModuleOffset);
Expected<DIGlobal> symbolizeData(const ObjectFile &Obj,
object::SectionedAddress ModuleOffset);
Expected<DIGlobal> symbolizeData(const std::string &ModuleName,
object::SectionedAddress ModuleOffset);
Expected<DIGlobal> symbolizeData(ArrayRef<uint8_t> BuildID,
object::SectionedAddress ModuleOffset);
Expected<std::vector<DILocal>>
symbolizeFrame(const ObjectFile &Obj, object::SectionedAddress ModuleOffset);
Expected<std::vector<DILocal>>
symbolizeFrame(const std::string &ModuleName,
object::SectionedAddress ModuleOffset);
Expected<std::vector<DILocal>>
symbolizeFrame(ArrayRef<uint8_t> BuildID,
object::SectionedAddress ModuleOffset);
void flush();
void pruneCache();
static std::string
DemangleName(const std::string &Name,
const SymbolizableModule *DbiModuleDescriptor);
void addDIFetcher(std::unique_ptr<DIFetcher> Fetcher) {
DIFetchers.push_back(std::move(Fetcher));
}
private:
using ObjectPair = std::pair<const ObjectFile *, const ObjectFile *>;
template <typename T>
Expected<DILineInfo>
symbolizeCodeCommon(const T &ModuleSpecifier,
object::SectionedAddress ModuleOffset);
template <typename T>
Expected<DIInliningInfo>
symbolizeInlinedCodeCommon(const T &ModuleSpecifier,
object::SectionedAddress ModuleOffset);
template <typename T>
Expected<DIGlobal> symbolizeDataCommon(const T &ModuleSpecifier,
object::SectionedAddress ModuleOffset);
template <typename T>
Expected<std::vector<DILocal>>
symbolizeFrameCommon(const T &ModuleSpecifier,
object::SectionedAddress ModuleOffset);
Expected<SymbolizableModule *>
getOrCreateModuleInfo(const std::string &ModuleName);
Expected<SymbolizableModule *> getOrCreateModuleInfo(const ObjectFile &Obj);
Expected<SymbolizableModule *>
getOrCreateModuleInfo(ArrayRef<uint8_t> BuildID);
Expected<SymbolizableModule *>
createModuleInfo(const ObjectFile *Obj, std::unique_ptr<DIContext> Context,
StringRef ModuleName);
ObjectFile *lookUpDsymFile(const std::string &Path,
const MachOObjectFile *ExeObj,
const std::string &ArchName);
ObjectFile *lookUpDebuglinkObject(const std::string &Path,
const ObjectFile *Obj,
const std::string &ArchName);
ObjectFile *lookUpBuildIDObject(const std::string &Path,
const ELFObjectFileBase *Obj,
const std::string &ArchName);
bool findDebugBinary(const std::string &OrigPath,
const std::string &DebuglinkName, uint32_t CRCHash,
std::string &Result);
bool getOrFindDebugBinary(const ArrayRef<uint8_t> BuildID,
std::string &Result);
Expected<ObjectPair> getOrCreateObjectPair(const std::string &Path,
const std::string &ArchName);
Expected<ObjectFile *> getOrCreateObject(const std::string &Path,
const std::string &ArchName);
void recordAccess(CachedBinary &Bin);
std::map<std::string, std::unique_ptr<SymbolizableModule>, std::less<>>
Modules;
StringMap<std::string> BuildIDPaths;
std::map<std::pair<std::string, std::string>, ObjectPair>
ObjectPairForPathArch;
std::map<std::string, CachedBinary> BinaryForPath;
simple_ilist<CachedBinary> LRUBinaries;
size_t CacheSize = 0;
std::map<std::pair<std::string, std::string>, std::unique_ptr<ObjectFile>>
ObjectForUBPathAndArch;
Options Opts;
SmallVector<std::unique_ptr<DIFetcher>> DIFetchers;
};
class CachedBinary : public ilist_node<CachedBinary> {
public:
CachedBinary() = default;
CachedBinary(OwningBinary<Binary> Bin) : Bin(std::move(Bin)) {}
OwningBinary<Binary> &operator*() { return Bin; }
OwningBinary<Binary> *operator->() { return &Bin; }
void pushEvictor(std::function<void()> Evictor);
void evict() {
if (Evictor)
Evictor();
}
size_t size() { return Bin.getBinary()->getData().size(); }
private:
OwningBinary<Binary> Bin;
std::function<void()> Evictor;
};
Optional<ArrayRef<uint8_t>> getBuildID(const ELFObjectFileBase *Obj);
} }
#endif