forked from sin365/AxibugEmuOnline
554 lines
14 KiB
C#
554 lines
14 KiB
C#
using System.IO;
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namespace MyNes.Core
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{
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[WithExternalSound]
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internal abstract class Namcot106 : Board
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{
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private int irq_counter;
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private bool irq_enable;
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private bool disables_chr_ram_A;
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private bool disables_chr_ram_B;
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private bool enable_mirroring_switch;
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private bool enable_N106_sound;
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private int temp_nmt;
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private Namcot106Chnl[] sound_channels;
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private byte soundReg;
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public int enabledChannels;
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private int enabledChannels1;
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private int channelIndex;
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private byte temp_val;
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private byte temp_i;
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public byte[] EXRAM;
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private bool[] sound_channels_enable;
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private double soundOut;
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private int sound_out_div;
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internal override void HardReset()
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{
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base.HardReset();
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EXRAM = new byte[128];
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Switch08KPRG(PRG_ROM_08KB_Mask, PRGArea.AreaE000);
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enable_mirroring_switch = (enable_N106_sound = base.MapperNumber == 19);
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switch (SHA1.ToUpper())
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{
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case "97E7E61EECB73CB1EA0C15AE51E65EA56301A685":
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case "3D554F55411AB2DDD1A87E7583E643970DB784F3":
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case "7FA51058307DB50825C2D3A3A98C0DA554BC3C92":
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case "1C476C795CFC17E987C22FFD6F09BAF1396ED2C9":
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enable_mirroring_switch = false;
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enable_N106_sound = false;
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break;
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}
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if (enable_N106_sound)
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{
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sound_channels = new Namcot106Chnl[8];
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sound_channels_enable = new bool[8];
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for (int i = 0; i < 8; i++)
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{
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sound_channels[i] = new Namcot106Chnl(this);
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sound_channels[i].HardReset();
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}
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soundReg = 0;
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enabledChannels = 0;
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channelIndex = 0;
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APUApplyChannelsSettings();
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}
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}
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internal override void WriteEX(ref ushort address, ref byte data)
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{
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switch (address & 0xF800)
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{
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case 18432:
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if (soundReg >= 64)
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{
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switch (soundReg & 0x7F)
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{
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case 64:
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sound_channels[0].WriteA(ref data);
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break;
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case 66:
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sound_channels[0].WriteB(ref data);
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break;
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case 68:
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sound_channels[0].WriteC(ref data);
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break;
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case 70:
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sound_channels[0].WriteD(ref data);
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break;
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case 71:
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sound_channels[0].WriteE(ref data);
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break;
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case 72:
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sound_channels[1].WriteA(ref data);
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break;
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case 74:
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sound_channels[1].WriteB(ref data);
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break;
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case 76:
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sound_channels[1].WriteC(ref data);
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break;
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case 78:
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sound_channels[1].WriteD(ref data);
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break;
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case 79:
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sound_channels[1].WriteE(ref data);
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break;
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case 80:
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sound_channels[2].WriteA(ref data);
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break;
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case 82:
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sound_channels[2].WriteB(ref data);
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break;
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case 84:
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sound_channels[2].WriteC(ref data);
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break;
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case 86:
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sound_channels[2].WriteD(ref data);
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break;
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case 87:
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sound_channels[2].WriteE(ref data);
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break;
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case 88:
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sound_channels[3].WriteA(ref data);
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break;
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case 90:
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sound_channels[3].WriteB(ref data);
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break;
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case 92:
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sound_channels[3].WriteC(ref data);
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break;
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case 94:
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sound_channels[3].WriteD(ref data);
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break;
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case 95:
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sound_channels[3].WriteE(ref data);
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break;
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case 96:
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sound_channels[4].WriteA(ref data);
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break;
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case 98:
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sound_channels[4].WriteB(ref data);
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break;
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case 100:
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sound_channels[4].WriteC(ref data);
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break;
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case 102:
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sound_channels[4].WriteD(ref data);
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break;
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case 103:
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sound_channels[4].WriteE(ref data);
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break;
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case 104:
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sound_channels[5].WriteA(ref data);
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break;
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case 106:
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sound_channels[5].WriteB(ref data);
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break;
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case 108:
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sound_channels[5].WriteC(ref data);
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break;
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case 110:
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sound_channels[5].WriteD(ref data);
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break;
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case 111:
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sound_channels[5].WriteE(ref data);
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break;
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case 112:
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sound_channels[6].WriteA(ref data);
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break;
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case 114:
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sound_channels[6].WriteB(ref data);
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break;
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case 116:
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sound_channels[6].WriteC(ref data);
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break;
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case 118:
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sound_channels[6].WriteD(ref data);
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break;
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case 119:
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sound_channels[6].WriteE(ref data);
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break;
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case 120:
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sound_channels[7].WriteA(ref data);
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break;
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case 122:
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sound_channels[7].WriteB(ref data);
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break;
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case 124:
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sound_channels[7].WriteC(ref data);
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break;
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case 126:
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sound_channels[7].WriteD(ref data);
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break;
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case 127:
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sound_channels[7].WriteE(ref data);
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enabledChannels = (data & 0x70) >> 4;
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channelIndex = 0;
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enabledChannels1 = enabledChannels + 1;
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temp_i = 7;
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while (temp_i >= 0 && enabledChannels1 > 0)
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{
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sound_channels[temp_i].Enabled = true;
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enabledChannels1--;
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temp_i--;
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}
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break;
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}
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}
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EXRAM[soundReg & 0x7F] = data;
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if ((soundReg & 0x80) == 128)
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{
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soundReg = (byte)(((uint)(soundReg + 1) & 0x7Fu) | 0x80u);
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}
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break;
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case 20480:
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NesEmu.IRQFlags &= -9;
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irq_counter = (irq_counter & 0x7F00) | data;
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break;
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case 22528:
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NesEmu.IRQFlags &= -9;
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irq_counter = (irq_counter & 0xFF) | ((data & 0x7F) << 8);
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irq_enable = (data & 0x80) == 128;
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break;
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}
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}
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internal override void ReadEX(ref ushort address, out byte value)
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{
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switch (address & 0xF800)
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{
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case 18432:
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value = EXRAM[soundReg & 0x7F];
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if ((soundReg & 0x80) == 128)
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{
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soundReg = (byte)(((uint)(soundReg + 1) & 0x7Fu) | 0x80u);
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}
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break;
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case 20480:
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NesEmu.IRQFlags &= -9;
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value = (byte)((uint)irq_counter & 0xFFu);
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break;
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case 22528:
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NesEmu.IRQFlags &= -9;
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value = (byte)((irq_enable ? 128u : 0u) | (uint)((irq_counter & 0x7F00) >> 8));
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break;
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default:
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value = 0;
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break;
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}
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}
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internal override void WritePRG(ref ushort address, ref byte data)
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{
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switch (address & 0xF800)
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{
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case 32768:
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if (!disables_chr_ram_A)
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{
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Toggle01KCHR_RAM(data >= 224, CHRArea.Area0000);
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Switch01KCHR((data >= 224) ? (data - 224) : data, CHRArea.Area0000);
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}
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else
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{
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Toggle01KCHR_RAM(ram: false, CHRArea.Area0000);
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Switch01KCHR(data, CHRArea.Area0000);
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}
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break;
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case 34816:
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if (!disables_chr_ram_A)
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{
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Toggle01KCHR_RAM(data >= 224, CHRArea.Area0400);
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Switch01KCHR((data >= 224) ? (data - 224) : data, CHRArea.Area0400);
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}
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else
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{
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Toggle01KCHR_RAM(ram: false, CHRArea.Area0400);
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Switch01KCHR(data, CHRArea.Area0400);
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}
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break;
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case 36864:
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if (!disables_chr_ram_A)
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{
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Toggle01KCHR_RAM(data >= 224, CHRArea.Area0800);
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Switch01KCHR((data >= 224) ? (data - 224) : data, CHRArea.Area0800);
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}
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else
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{
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Toggle01KCHR_RAM(ram: false, CHRArea.Area0800);
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Switch01KCHR(data, CHRArea.Area0800);
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}
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break;
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case 38912:
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if (!disables_chr_ram_A)
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{
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Toggle01KCHR_RAM(data >= 224, CHRArea.Area0C00);
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Switch01KCHR((data >= 224) ? (data - 224) : data, CHRArea.Area0C00);
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}
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else
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{
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Toggle01KCHR_RAM(ram: false, CHRArea.Area0C00);
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Switch01KCHR(data, CHRArea.Area0C00);
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}
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break;
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case 40960:
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if (!disables_chr_ram_B)
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{
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Toggle01KCHR_RAM(data >= 224, CHRArea.Area1000);
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Switch01KCHR((data >= 224) ? (data - 224) : data, CHRArea.Area1000);
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}
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else
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{
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Toggle01KCHR_RAM(ram: false, CHRArea.Area1000);
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Switch01KCHR(data, CHRArea.Area1000);
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}
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break;
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case 43008:
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if (!disables_chr_ram_B)
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{
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Toggle01KCHR_RAM(data >= 224, CHRArea.Area1400);
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Switch01KCHR((data >= 224) ? (data - 224) : data, CHRArea.Area1400);
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}
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else
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{
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Toggle01KCHR_RAM(ram: false, CHRArea.Area1400);
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Switch01KCHR(data, CHRArea.Area1400);
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}
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break;
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case 45056:
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if (!disables_chr_ram_B)
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{
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Toggle01KCHR_RAM(data >= 224, CHRArea.Area1800);
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Switch01KCHR((data >= 224) ? (data - 224) : data, CHRArea.Area1800);
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}
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else
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{
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Toggle01KCHR_RAM(ram: false, CHRArea.Area1800);
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Switch01KCHR(data, CHRArea.Area1800);
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}
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break;
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case 47104:
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if (!disables_chr_ram_B)
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{
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Toggle01KCHR_RAM(data >= 224, CHRArea.Area1C00);
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Switch01KCHR((data >= 224) ? (data - 224) : data, CHRArea.Area1C00);
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}
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else
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{
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Toggle01KCHR_RAM(ram: false, CHRArea.Area1C00);
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Switch01KCHR(data, CHRArea.Area1C00);
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}
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break;
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case 49152:
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if (enable_mirroring_switch)
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{
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NMT_AREA_BLK_INDEX[0] = data;
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}
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break;
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case 51200:
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if (enable_mirroring_switch)
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{
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NMT_AREA_BLK_INDEX[1] = data;
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}
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break;
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case 53248:
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if (enable_mirroring_switch)
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{
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NMT_AREA_BLK_INDEX[2] = data;
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}
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break;
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case 55296:
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if (enable_mirroring_switch)
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{
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NMT_AREA_BLK_INDEX[3] = data;
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}
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break;
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case 57344:
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Switch08KPRG(data & 0x3F, PRGArea.Area8000);
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break;
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case 59392:
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Switch08KPRG(data & 0x3F, PRGArea.AreaA000);
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disables_chr_ram_A = (data & 0x40) == 64;
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disables_chr_ram_B = (data & 0x80) == 128;
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break;
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case 61440:
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Switch08KPRG(data & 0x3F, PRGArea.AreaC000);
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break;
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case 63488:
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soundReg = data;
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break;
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}
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}
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internal override void ReadNMT(ref ushort address, out byte data)
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{
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if (enable_mirroring_switch)
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{
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temp_nmt = NMT_AREA_BLK_INDEX[(address >> 10) & 3];
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if (temp_nmt >= 224)
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{
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data = NMT_RAM[(temp_nmt - 224) & 1][address & 0x3FF];
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}
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else
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{
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data = CHR_ROM[temp_nmt][address & 0x3FF];
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}
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}
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else
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{
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base.ReadNMT(ref address, out data);
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}
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}
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internal override void WriteNMT(ref ushort address, ref byte data)
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{
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if (enable_mirroring_switch)
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{
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temp_nmt = NMT_AREA_BLK_INDEX[(address >> 10) & 3];
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if (temp_nmt >= 224)
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{
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NMT_RAM[(temp_nmt - 224) & 1][address & 0x3FF] = data;
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}
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}
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else
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{
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base.WriteNMT(ref address, ref data);
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}
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}
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internal override void OnCPUClock()
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{
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if (irq_enable)
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{
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if (irq_counter == 32767)
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{
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NesEmu.IRQFlags |= 8;
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irq_counter = 0;
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}
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else
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{
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irq_counter++;
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}
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}
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}
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internal override void OnAPUClockSingle()
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{
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if (sound_channels != null)
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{
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for (int i = 0; i < sound_channels.Length; i++)
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{
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sound_channels[i].ClockSingle();
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}
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}
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}
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internal override double APUGetSample()
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{
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soundOut = 0.0;
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sound_out_div = 0;
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if (enabledChannels > 0)
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{
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for (int i = 0; i < sound_channels.Length; i++)
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{
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if (sound_channels[i].Enabled && sound_channels_enable[i])
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{
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if (sound_channels[i].clocks > 0)
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{
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sound_channels[i].output = sound_channels[i].output_av / sound_channels[i].clocks;
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}
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sound_channels[i].clocks = (sound_channels[i].output_av = 0);
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soundOut += sound_channels[i].output;
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sound_out_div++;
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}
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}
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soundOut = soundOut / 8.0 / 225.0;
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}
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return soundOut;
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}
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internal override void APUApplyChannelsSettings()
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{
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base.APUApplyChannelsSettings();
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sound_channels_enable[0] = MyNesMain.RendererSettings.Audio_ChannelEnabled_NMT1;
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sound_channels_enable[1] = MyNesMain.RendererSettings.Audio_ChannelEnabled_NMT2;
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sound_channels_enable[2] = MyNesMain.RendererSettings.Audio_ChannelEnabled_NMT3;
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sound_channels_enable[3] = MyNesMain.RendererSettings.Audio_ChannelEnabled_NMT4;
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sound_channels_enable[4] = MyNesMain.RendererSettings.Audio_ChannelEnabled_NMT5;
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sound_channels_enable[5] = MyNesMain.RendererSettings.Audio_ChannelEnabled_NMT6;
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sound_channels_enable[6] = MyNesMain.RendererSettings.Audio_ChannelEnabled_NMT7;
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sound_channels_enable[7] = MyNesMain.RendererSettings.Audio_ChannelEnabled_NMT8;
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}
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internal override void WriteStateData(ref BinaryWriter stream)
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{
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base.WriteStateData(ref stream);
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stream.Write(irq_counter);
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stream.Write(irq_enable);
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stream.Write(disables_chr_ram_A);
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stream.Write(disables_chr_ram_B);
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stream.Write(enable_mirroring_switch);
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stream.Write(enable_N106_sound);
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stream.Write(temp_nmt);
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if (enable_N106_sound)
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{
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for (int i = 0; i < sound_channels.Length; i++)
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{
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sound_channels[i].SaveState(stream);
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}
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}
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stream.Write(soundReg);
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stream.Write(enabledChannels);
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stream.Write(enabledChannels1);
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stream.Write(channelIndex);
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stream.Write(temp_val);
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stream.Write(temp_i);
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stream.Write(EXRAM);
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}
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internal override void ReadStateData(ref BinaryReader stream)
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{
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base.ReadStateData(ref stream);
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irq_counter = stream.ReadInt32();
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irq_enable = stream.ReadBoolean();
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disables_chr_ram_A = stream.ReadBoolean();
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disables_chr_ram_B = stream.ReadBoolean();
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enable_mirroring_switch = stream.ReadBoolean();
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enable_N106_sound = stream.ReadBoolean();
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temp_nmt = stream.ReadInt32();
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if (enable_N106_sound)
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{
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for (int i = 0; i < sound_channels.Length; i++)
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{
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sound_channels[i].LoadState(stream);
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}
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}
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soundReg = stream.ReadByte();
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enabledChannels = stream.ReadInt32();
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enabledChannels1 = stream.ReadInt32();
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channelIndex = stream.ReadInt32();
|
|
temp_val = stream.ReadByte();
|
|
temp_i = stream.ReadByte();
|
|
stream.Read(EXRAM, 0, EXRAM.Length);
|
|
}
|
|
}
|
|
}
|