// See LICENSE for license details. #ifndef __MEMIF_H #define __MEMIF_H #include #include typedef uint64_t reg_t; typedef int64_t sreg_t; typedef reg_t addr_t; class chunked_memif_t { public: virtual void read_chunk(addr_t taddr, size_t len, void* dst) = 0; virtual void write_chunk(addr_t taddr, size_t len, const void* src) = 0; virtual void clear_chunk(addr_t taddr, size_t len) = 0; virtual size_t chunk_align() = 0; virtual size_t chunk_max_size() = 0; }; class memif_t { public: memif_t(chunked_memif_t* _cmemif) : cmemif(_cmemif) {} virtual ~memif_t(){} // read and write byte arrays virtual void read(addr_t addr, size_t len, void* bytes); virtual void write(addr_t addr, size_t len, const void* bytes); // read and write 8-bit words virtual uint8_t read_uint8(addr_t addr); virtual int8_t read_int8(addr_t addr); virtual void write_uint8(addr_t addr, uint8_t val); virtual void write_int8(addr_t addr, int8_t val); // read and write 16-bit words virtual uint16_t read_uint16(addr_t addr); virtual int16_t read_int16(addr_t addr); virtual void write_uint16(addr_t addr, uint16_t val); virtual void write_int16(addr_t addr, int16_t val); // read and write 32-bit words virtual uint32_t read_uint32(addr_t addr); virtual int32_t read_int32(addr_t addr); virtual void write_uint32(addr_t addr, uint32_t val); virtual void write_int32(addr_t addr, int32_t val); // read and write 64-bit words virtual uint64_t read_uint64(addr_t addr); virtual int64_t read_int64(addr_t addr); virtual void write_uint64(addr_t addr, uint64_t val); virtual void write_int64(addr_t addr, int64_t val); protected: chunked_memif_t* cmemif; }; #endif // __MEMIF_H