#include "stdafx.h" #include "Board.h" #include "Configuration.h" #include Board::Board(const Configuration& configuration) : m_configuration(configuration), m_memory(0xffff), m_cpu(EightBit::Intel8080(m_memory, m_ports)) { } void Board::initialise() { m_memory.clear(); auto romDirectory = m_configuration.getRomDirectory(); //m_memory.loadRam(romDirectory + "/TEST.COM", 0x100); // Microcosm //m_memory.loadRam(romDirectory + "/8080PRE.COM", 0x100); // Bartholomew preliminary m_memory.loadRam(romDirectory + "/8080EX1.COM", 0x100); // Cringle/Bartholomew //m_memory.loadRam(romDirectory + "/CPUTEST.COM", 0x100); // SuperSoft diagnostics m_memory.ADDRESS().word = 5; m_memory.reference() = 0xc9; // ret m_cpu.ExecutingInstruction.connect(std::bind(&Board::Cpu_ExecutingInstruction_Cpm, this, std::placeholders::_1)); if (m_configuration.isProfileMode()) { m_cpu.ExecutingInstruction.connect(std::bind(&Board::Cpu_ExecutingInstruction_Profile, this, std::placeholders::_1)); } if (m_configuration.isDebugMode()) { m_cpu.ExecutingInstruction.connect(std::bind(&Board::Cpu_ExecutingInstruction_Debug, this, std::placeholders::_1)); } m_cpu.initialise(); m_cpu.PC() = m_configuration.getStartAddress(); } void Board::Cpu_ExecutingInstruction_Cpm(const EightBit::Intel8080&) { auto pc = m_cpu.PC(); switch (pc.word) { case 0x0: // CP/M warm start m_cpu.halt(); if (m_configuration.isProfileMode()) { m_profiler.dump(); } break; case 0x5: // BDOS bdos(); break; default: break; } } void Board::bdos() { auto c = m_cpu.C(); switch (c) { case 0x2: { auto character = m_cpu.E(); std::cout << character; break; } case 0x9: for (uint16_t i = m_cpu.DE().word; m_memory.peek(i) != '$'; ++i) { std::cout << m_memory.peek(i); } break; } } void Board::Cpu_ExecutingInstruction_Profile(const EightBit::Intel8080& cpu) { const auto pc = m_cpu.PC(); m_profiler.addAddress(pc.word); m_profiler.addInstruction(m_memory.peek(pc.word)); } void Board::Cpu_ExecutingInstruction_Debug(const EightBit::Intel8080&) { std::cerr << EightBit::Disassembler::state(m_cpu) << "\t" << m_disassembler.disassemble(m_cpu) << '\n'; }