mirror of
https://github.com/MoleskiCoder/EightBit.git
synced 2024-12-22 09:30:32 +00:00
"Modernise" the 6502 emulator a little. Not complete, but does successfully complete Klaus Dormann tests.
Signed-off-by: Adrian.Conlon <adrian.conlon@gmail.com>
This commit is contained in:
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d3c0494fb3
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8c81a27224
@ -103,63 +103,163 @@ namespace EightBit {
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uint8_t FetchByte();
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uint8_t FetchByte();
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void FetchWord(register16_t& output);
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void FetchWord(register16_t& output);
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void Address_ZeroPage(register16_t& output);
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#pragma region 6502 addressing modes
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void Address_ZeroPageX(register16_t& output);
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void Address_ZeroPageY(register16_t& output);
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void Address_IndexedIndirectX(register16_t& output);
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void Address_IndexedIndirectY_Read(register16_t& output);
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void Address_IndexedIndirectY_Write(register16_t& output);
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void Address_Absolute(register16_t& output);
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void Address_AbsoluteXIndirect(register16_t& output);
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void Address_AbsoluteX_Read(register16_t& output);
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void Address_AbsoluteX_Write(register16_t& output);
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void Address_AbsoluteY_Read(register16_t& output);
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void Address_AbsoluteY_Write(register16_t& output);
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void Address_ZeroPageIndirect(register16_t& output);
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uint8_t ReadByte_Immediate();
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#pragma region Addresses
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int8_t ReadByte_ImmediateDisplacement();
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uint8_t ReadByte_ZeroPage();
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uint8_t ReadByte_ZeroPageX();
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uint8_t ReadByte_ZeroPageY();
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uint8_t ReadByte_Absolute();
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uint8_t ReadByte_AbsoluteX();
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uint8_t ReadByte_AbsoluteY();
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uint8_t ReadByte_IndexedIndirectX();
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uint8_t ReadByte_IndirectIndexedY();
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uint8_t ReadByte_ZeroPageIndirect();
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void WriteByte_ZeroPage(uint8_t value);
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void Address_Absolute() {
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void WriteByte_Absolute(uint8_t value);
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FetchWord(m_memptr);
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void WriteByte_AbsoluteX(uint8_t value);
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}
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void WriteByte_AbsoluteY(uint8_t value);
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void WriteByte_ZeroPageX(uint8_t value);
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void WriteByte_ZeroPageY(uint8_t value);
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void WriteByte_IndirectIndexedY(uint8_t value);
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void WriteByte_IndexedIndirectX(uint8_t value);
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void WriteByte_ZeroPageIndirect(uint8_t value);
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void DEC(uint16_t offset);
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void Address_ZeroPage() {
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m_memptr.low = FetchByte();
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m_memptr.high = 0;
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}
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uint8_t ROR(uint8_t data);
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void Address_ZeroPageIndirect() {
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void ROR(uint16_t offset);
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Address_ZeroPage();
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m_memory.ADDRESS() = m_memptr;
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GetWord(m_memptr);
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}
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uint8_t LSR(uint8_t data);
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void Address_Indirect() {
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void LSR(uint16_t offset);
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Address_Absolute();
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m_memory.ADDRESS() = m_memptr;
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GetWord(m_memptr);
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}
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void Address_IndirectX() {
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Address_Absolute();
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m_memory.ADDRESS().word = m_memptr.word + X();
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GetWord(m_memptr);
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}
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void Address_ZeroPageX() {
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Address_ZeroPage();
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m_memptr.low += X();
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}
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void Address_ZeroPageY() {
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Address_ZeroPage();
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m_memptr.low += Y();
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}
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void Address_AbsoluteX() {
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Address_Absolute();
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m_memptr.word += X();
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}
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void Address_AbsoluteY() {
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Address_Absolute();
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m_memptr.word += Y();
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}
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void Address_IndexedIndirectX() {
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Address_ZeroPageX();
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m_memory.ADDRESS() = m_memptr;
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GetWord(m_memptr);
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}
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void Address_IndirectIndexedY() {
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Address_ZeroPageIndirect();
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m_memptr.word += Y();
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}
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#pragma endregion Addresses
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#pragma region References
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uint8_t& AM_A() {
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return A();
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}
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uint8_t& AM_X() {
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return X();
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}
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uint8_t& AM_Y() {
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return Y();
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}
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uint8_t& AM_Immediate() {
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FetchByte();
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return m_memory.reference();
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}
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uint8_t& AM_Absolute() {
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Address_Absolute();
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m_memory.ADDRESS() = m_memptr;
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return m_memory.reference();
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}
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uint8_t& AM_ZeroPage() {
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Address_ZeroPage();
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m_memory.ADDRESS() = m_memptr;
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return m_memory.reference();
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}
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uint8_t& AM_ZeroPageIndirect() {
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Address_ZeroPageIndirect();
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m_memory.ADDRESS() = m_memptr;
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return m_memory.reference();
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}
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uint8_t& AM_AbsoluteX() {
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Address_AbsoluteX();
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m_memory.ADDRESS() = m_memptr;
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return m_memory.reference();
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}
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uint8_t& AM_AbsoluteY() {
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Address_AbsoluteY();
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m_memory.ADDRESS() = m_memptr;
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return m_memory.reference();
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}
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uint8_t& AM_ZeroPageX() {
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Address_ZeroPageX();
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m_memory.ADDRESS() = m_memptr;
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return m_memory.reference();
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}
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uint8_t& AM_ZeroPageY() {
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Address_ZeroPageY();
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m_memory.ADDRESS() = m_memptr;
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return m_memory.reference();
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}
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uint8_t& AM_IndexedIndirectX() {
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Address_IndexedIndirectX();
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m_memory.ADDRESS() = m_memptr;
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return m_memory.reference();
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}
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uint8_t& AM_IndirectIndexedY() {
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Address_IndirectIndexedY();
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m_memory.ADDRESS() = m_memptr;
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return m_memory.reference();
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}
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#pragma endregion References
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#pragma endregion 6502 addressing modes
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void DEC(uint8_t& output);
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void ROR(uint8_t& output);
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void LSR(uint8_t& output);
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void BIT_immediate(uint8_t data);
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void BIT(uint8_t data);
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void BIT(uint8_t data);
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void TSB(uint16_t address);
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void TSB(uint8_t& output);
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void TRB(uint16_t address);
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void TRB(uint8_t& output);
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void INC(uint16_t offset);
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void INC(uint8_t& output);
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void ROL(uint16_t offset);
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void ROL(uint8_t& output);
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uint8_t ROL(uint8_t data);
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void ASL(uint16_t offset);
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void ASL(uint8_t& output);
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uint8_t ASL(uint8_t data);
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void ORA(uint8_t data);
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void ORA(uint8_t data);
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@ -184,8 +284,8 @@ namespace EightBit {
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void ADC_b(uint8_t data);
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void ADC_b(uint8_t data);
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void ADC_d(uint8_t data);
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void ADC_d(uint8_t data);
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void RMB(uint16_t address, uint8_t flag);
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void RMB(uint8_t& output, uint8_t flag);
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void SMB(uint16_t address, uint8_t flag);
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void SMB(uint8_t& output, uint8_t flag);
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void Branch(int8_t displacement);
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void Branch(int8_t displacement);
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void Branch();
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void Branch();
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@ -455,6 +555,8 @@ namespace EightBit {
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uint8_t s; // stack pointer
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uint8_t s; // stack pointer
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uint8_t p; // processor status
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uint8_t p; // processor status
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register16_t m_memptr;
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std::array<Instruction, 0x100> instructions;
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std::array<Instruction, 0x100> instructions;
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ProcessorType level;
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ProcessorType level;
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File diff suppressed because it is too large
Load Diff
@ -34,19 +34,6 @@ namespace EightBit {
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protected:
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protected:
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IntelProcessor(Memory& memory);
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IntelProcessor(Memory& memory);
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static void clearFlag(uint8_t& f, int flag) { f &= ~flag; }
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static void setFlag(uint8_t& f, int flag) { f |= flag; }
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static void setFlag(uint8_t& f, int flag, int condition) { setFlag(f, flag, condition != 0); }
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static void setFlag(uint8_t& f, int flag, uint32_t condition) { setFlag(f, flag, condition != 0); }
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static void setFlag(uint8_t& f, int flag, bool condition) { condition ? setFlag(f, flag) : clearFlag(f, flag); }
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static void clearFlag(uint8_t& f, int flag, int condition) { clearFlag(f, flag, condition != 0); }
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static void clearFlag(uint8_t& f, int flag, uint32_t condition) { clearFlag(f, flag, condition != 0); }
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static void clearFlag(uint8_t& f, int flag, bool condition) { condition ? clearFlag(f, flag) : setFlag(f, flag); }
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//
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template<class T> static void adjustSign(uint8_t& f, uint8_t value) {
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template<class T> static void adjustSign(uint8_t& f, uint8_t value) {
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setFlag(f, T::SF, value & T::SF);
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setFlag(f, T::SF, value & T::SF);
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}
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}
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@ -56,6 +56,17 @@ namespace EightBit {
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void reset();
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void reset();
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protected:
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protected:
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static void clearFlag(uint8_t& f, int flag) { f &= ~flag; }
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static void setFlag(uint8_t& f, int flag) { f |= flag; }
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static void setFlag(uint8_t& f, int flag, int condition) { setFlag(f, flag, condition != 0); }
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static void setFlag(uint8_t& f, int flag, uint32_t condition) { setFlag(f, flag, condition != 0); }
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static void setFlag(uint8_t& f, int flag, bool condition) { condition ? setFlag(f, flag) : clearFlag(f, flag); }
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static void clearFlag(uint8_t& f, int flag, int condition) { clearFlag(f, flag, condition != 0); }
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static void clearFlag(uint8_t& f, int flag, uint32_t condition) { clearFlag(f, flag, condition != 0); }
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static void clearFlag(uint8_t& f, int flag, bool condition) { condition ? clearFlag(f, flag) : setFlag(f, flag); }
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Processor(Memory& memory);
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Processor(Memory& memory);
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Memory& m_memory;
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Memory& m_memory;
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