#ifndef _LIBUNWINDSTACK_DWARF_MEMORY_H
#define _LIBUNWINDSTACK_DWARF_MEMORY_H
#include <stdint.h>
namespace unwindstack {
class Memory;
class DwarfMemory {
public:
DwarfMemory(Memory* memory) : memory_(memory) {}
virtual ~DwarfMemory() = default;
bool ReadBytes(void* dst, size_t num_bytes);
template <typename SignedType>
bool ReadSigned(uint64_t* value);
bool ReadULEB128(uint64_t* value);
bool ReadSLEB128(int64_t* value);
template <typename AddressType>
size_t GetEncodedSize(uint8_t encoding);
bool AdjustEncodedValue(uint8_t encoding, uint64_t* value);
template <typename AddressType>
bool ReadEncodedValue(uint8_t encoding, uint64_t* value);
uint64_t cur_offset() { return cur_offset_; }
void set_cur_offset(uint64_t cur_offset) { cur_offset_ = cur_offset; }
void set_pc_offset(int64_t offset) { pc_offset_ = offset; }
void clear_pc_offset() { pc_offset_ = INT64_MAX; }
void set_data_offset(uint64_t offset) { data_offset_ = offset; }
void clear_data_offset() { data_offset_ = static_cast<uint64_t>(-1); }
void set_func_offset(uint64_t offset) { func_offset_ = offset; }
void clear_func_offset() { func_offset_ = static_cast<uint64_t>(-1); }
void set_text_offset(uint64_t offset) { text_offset_ = offset; }
void clear_text_offset() { text_offset_ = static_cast<uint64_t>(-1); }
private:
Memory* memory_;
uint64_t cur_offset_ = 0;
int64_t pc_offset_ = INT64_MAX;
uint64_t data_offset_ = static_cast<uint64_t>(-1);
uint64_t func_offset_ = static_cast<uint64_t>(-1);
uint64_t text_offset_ = static_cast<uint64_t>(-1);
};
}
#endif