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@ -82,8 +82,8 @@ void CPU::update()
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void CPU::add() |
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{ |
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uint8_t opcode = consumeMemory(); |
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uint8_t immediate = consumeMemory(); |
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uint8_t opcode = read(m_pc++); |
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uint8_t immediate = read(m_pc++); |
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switch (opcode) { |
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case 0xc6: |
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// ADD A,d8
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@ -108,7 +108,7 @@ void CPU::add()
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void CPU::ld8() |
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{ |
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uint8_t opcode = consumeMemory(); |
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uint8_t opcode = read(m_pc++); |
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switch (opcode) { |
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case 0x3e: |
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m_wait_cycles += 8; |
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@ -121,7 +121,7 @@ void CPU::ld8()
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void CPU::ldh8() |
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{ |
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uint8_t opcode = consumeMemory(); |
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uint8_t opcode = read(m_pc++); |
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switch (opcode) { |
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case 0xe0: |
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// LD ($ff00 + n),A == LDH (n),A
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@ -133,7 +133,7 @@ void CPU::ldh8()
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// LD A,($ff00 + n) == LDH A,(n)
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// Put value at address (0xff00 + next byte in memory) into A:
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m_wait_cycles += 12; |
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m_a = readFf(); |
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m_a = readFf(immediate8()); |
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break; |
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default: |
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VERIFY_NOT_REACHED(); |
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@ -142,20 +142,20 @@ void CPU::ldh8()
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void CPU::ld16() |
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{ |
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uint8_t opcode = consumeMemory(); |
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uint8_t opcode = read(m_pc++); |
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switch (opcode) { |
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case 0x01: { |
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m_wait_cycles += 12; |
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setBc(immediate16()); |
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write(bc(), immediate16()); |
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break; |
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} |
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case 0x11: |
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m_wait_cycles += 12; |
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setDe(immediate16()); |
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write(de(), immediate16()); |
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break; |
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case 0x21: |
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m_wait_cycles += 12; |
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setHl(immediate16()); |
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write(hl(), immediate16()); |
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break; |
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case 0x31: { |
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m_wait_cycles += 12; |
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@ -185,7 +185,7 @@ void CPU::ld16()
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void CPU::jp16() |
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{ |
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uint8_t opcode = consumeMemory(); |
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uint8_t opcode = read(m_pc++); |
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switch (opcode) { |
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case 0xc3: |
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m_wait_cycles += 16; |
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@ -203,35 +203,22 @@ uint8_t CPU::peekMemory(int32_t offset) const
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return Emu::the().readMemory(m_pc + offset); |
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} |
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uint8_t CPU::consumeMemory() |
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void CPU::write(uint32_t address, uint32_t value) |
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{ |
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return Emu::the().readMemory(m_pc++); |
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Emu::the().writeMemory(address, value); |
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} |
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void CPU::writeFf(uint32_t value) |
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{ |
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Emu::the().writeMemory(immediate8() | (0xff << 8), value); |
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} |
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uint32_t CPU::readFf() |
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uint32_t CPU::read(uint32_t address) |
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{ |
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return Emu::the().readMemory(immediate8() | (0xff << 8)); |
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return Emu::the().readMemory(address); |
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} |
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void CPU::setBc(uint32_t value) |
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{ |
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m_b = value >> 8; |
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m_c = value; |
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} |
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void CPU::setDe(uint32_t value) |
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void CPU::writeFf(uint32_t value) |
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{ |
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m_d = value >> 8; |
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m_e = value; |
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Emu::the().writeMemory(read(m_pc++) | (0xff << 8), value); |
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} |
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void CPU::setHl(uint32_t value) |
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uint32_t CPU::readFf(uint32_t address) |
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{ |
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m_h = value >> 8; |
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m_l = value; |
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return Emu::the().readMemory(address | (0xff << 8)); |
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} |
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