#pragma once #include #include "Chip.h" #include "Bus.h" #include "Register.h" #include "EightBitCompilerDefinitions.h" namespace EightBit { class Processor : public Chip { public: // b: number of bits representing the number in x // x: sign extend this b-bit number to r static int8_t signExtend(int b, uint8_t x); ~Processor() {}; auto& PC() noexcept { return m_pc; } auto& RESET() noexcept { return m_resetLine; } auto& HALT() noexcept { return m_haltLine; } auto& INT() noexcept { return m_intLine; } auto& IRQ() noexcept { return INT(); } // Synonym void powerOn() override; void reset() noexcept { lower(RESET()); } int run(int limit); virtual int step() = 0; virtual int execute(uint8_t opcode) = 0; auto cycles() const noexcept { return m_cycles; } virtual register16_t peekWord(register16_t address) = 0; virtual void pokeWord(register16_t address, register16_t value) = 0; protected: Processor(Bus& memory); auto& BUS() noexcept { return m_bus; } auto halted() noexcept { return lowered(HALT()); } auto halt() noexcept { --PC(); lower(HALT()); } auto proceed() noexcept { ++PC(); raise(HALT()); } virtual void handleRESET(); virtual void handleINT(); virtual void handleIRQ(); auto getBytePaged(const uint8_t page, const uint8_t offset) { return BUS().read(register16_t(offset, page)); } void setBytePaged(const uint8_t page, const uint8_t offset, const uint8_t value) { BUS().write(register16_t(offset, page), value); } auto fetchByte() { return BUS().read(PC()++); } virtual register16_t getWord() = 0; virtual void setWord(register16_t value) = 0; virtual register16_t getWordPaged(uint8_t page, uint8_t offset) = 0; virtual void setWordPaged(uint8_t page, uint8_t offset, register16_t value) = 0; virtual register16_t fetchWord() = 0; virtual void push(uint8_t value) = 0; virtual uint8_t pop() = 0; virtual void pushWord(register16_t value) = 0; virtual register16_t popWord() = 0; auto getWord(const register16_t address) { BUS().ADDRESS() = address; return getWord(); } void setWord(const register16_t address, const register16_t value) { BUS().ADDRESS() = address; return setWord(value); } void jump(const register16_t destination) noexcept { PC() = destination; } void call(const register16_t destination) { pushWord(PC()); jump(destination); } virtual void ret(); void resetCycles() noexcept { m_cycles = 0; } void addCycles(const int extra) noexcept { m_cycles += extra; } void addCycle() noexcept { ++m_cycles; } private: Bus& m_bus; int m_cycles = 0; register16_t m_pc; PinLevel m_intLine = Low; PinLevel m_haltLine = Low; PinLevel m_resetLine = Low; }; }