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153 lines
3.2 KiB
C++
153 lines
3.2 KiB
C++
//
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// Atari2600.cpp
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// ElectrEm
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//
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// Created by Thomas Harte on 14/07/2015.
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// Copyright © 2015 Thomas Harte. All rights reserved.
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//
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#include "Atari2600.hpp"
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#include <algorithm>
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#include <stdio.h>
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using namespace Atari2600;
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Machine::Machine()
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{
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reset();
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_timestamp = 0;
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_horizontalTimer = 0;
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_pixelPosition = 0;
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}
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void Machine::output_pixels(int count)
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{
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while(count--) {
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int x = _pixelPosition >> 2;
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bool mirrored = (x / 20) && !!(_playFieldControl&1);
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int index = mirrored ? (x%20) : 39 - x;
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int byte = 2 - (index >> 3);
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int bit = (index & 7)^((byte&1) ? 0 : 7);
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_playFieldPixel = (_playField[byte] >> bit)&1;
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// if(!(_pixelPosition&3))
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// fputc(_playFieldPixel && !_vblank ? '*' : ' ', stdout);
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_pixelPosition++;
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}
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}
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void Machine::perform_bus_operation(CPU6502::BusOperation operation, uint16_t address, uint8_t *value)
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{
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static int lines = 0;
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uint8_t returnValue = 0xff;
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_timestamp++;
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if (_horizontalTimer == 228) {
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_horizontalTimer = 0;
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_pixelPosition = 0;
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// printf("\n");
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lines++;
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}
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if (_horizontalTimer == 69) {
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output_pixels(1);
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}
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if (_horizontalTimer >= 70) {
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output_pixels(3);
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}
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_horizontalTimer += 3;
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// check for a ROM access
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if ((address&0x1000) && isReadOperation(operation)) {
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// if(operation == CPU6502::BusOperation::ReadOpcode) printf("[%04x]\n", address);
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returnValue &= _rom[address&_romMask];
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}
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// check for a RAM access
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if ((address&0x1280) == 0x80) {
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if(isReadOperation(operation)) {
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returnValue &= _ram[address&0x7f];
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} else {
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_ram[address&0x7f] = *value;
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}
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}
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// check for a TIA access
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if (!(address&0x1080)) {
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if(isReadOperation(operation)) {
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} else {
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switch(address & 0x3f) {
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case 0: {
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bool newVsync = !!(*value & 0x02);
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if (newVsync != _vsync) {
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_vsync = newVsync;
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}
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} break;
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case 1: {
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bool newVblank = !!(*value & 0x02);
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if (newVblank != _vblank) {
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_vblank = newVblank;
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}
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} break;
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case 2: {
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int pixelsToRun = 228 - _horizontalTimer;
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_piaTimerValue -= pixelsToRun;
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if (pixelsToRun > 160) pixelsToRun = 160;
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output_pixels(pixelsToRun);
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_horizontalTimer = 228;
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} break;
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case 3: _horizontalTimer = 0; break;
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case 0x0a: _playFieldControl = *value; break;
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case 0x0d: _playField[0] = *value; break;
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case 0x0e: _playField[1] = *value; break;
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case 0x0f: _playField[2] = *value; break;
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}
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}
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// printf("Uncaught TIA %04x\n", address);
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}
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// check for a PIA access
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if ((address&0x1280) == 0x280) {
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if(isReadOperation(operation)) {
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switch(address & 0xf) {
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case 0x04: returnValue &= _piaTimerValue >> _piaTimerShift; break;
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}
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} else {
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switch(address & 0x0f) {
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case 0x04: _piaTimerShift = 0; _piaTimerValue = *value << 0; break;
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case 0x05: _piaTimerShift = 3; _piaTimerValue = *value << 3; break;
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case 0x06: _piaTimerShift = 6; _piaTimerValue = *value << 6; break;
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case 0x07: _piaTimerShift = 10; _piaTimerValue = *value << 10; break;
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}
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}
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// printf("Uncaught PIA %04x\n", address);
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}
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if(isReadOperation(operation)) {
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*value = returnValue;
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}
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_piaTimerValue--;
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}
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void Machine::set_rom(size_t length, const uint8_t *data)
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{
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length = std::min((size_t)4096, length);
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memcpy(_rom, data, length);
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_romMask = length - 1;
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reset();
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}
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