210 lines
4.3 KiB
C++
210 lines
4.3 KiB
C++
/*
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Copyright 2016-2020 Arisotura
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This file is part of melonDS.
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melonDS is free software: you can redistribute it and/or modify it under
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the terms of the GNU General Public License as published by the Free
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Software Foundation, either version 3 of the License, or (at your option)
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any later version.
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melonDS is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details.
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You should have received a copy of the GNU General Public License along
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with melonDS. If not, see http://www.gnu.org/licenses/.
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*/
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#ifndef SPU_H
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#define SPU_H
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#include "Savestate.h"
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namespace SPU
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{
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bool Init();
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void DeInit();
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void Reset();
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void Stop();
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void DoSavestate(Savestate* file);
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void SetBias(u16 bias);
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void Mix(u32 samples);
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void TrimOutput();
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void DrainOutput();
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void InitOutput();
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int GetOutputSize();
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void Sync(bool wait);
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int ReadOutput(s16* data, int samples);
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u8 Read8(u32 addr);
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u16 Read16(u32 addr);
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u32 Read32(u32 addr);
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void Write8(u32 addr, u8 val);
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void Write16(u32 addr, u16 val);
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void Write32(u32 addr, u32 val);
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class Channel
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{
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public:
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Channel(u32 num);
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~Channel();
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void Reset();
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void DoSavestate(Savestate* file);
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u32 Num;
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u32 Cnt;
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u32 SrcAddr;
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u16 TimerReload;
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u32 LoopPos;
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u32 Length;
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u8 Volume;
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u8 VolumeShift;
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u8 Pan;
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u32 Timer;
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s32 Pos;
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s16 CurSample;
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u16 NoiseVal;
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s32 ADPCMVal;
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s32 ADPCMIndex;
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s32 ADPCMValLoop;
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s32 ADPCMIndexLoop;
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u8 ADPCMCurByte;
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u32 FIFO[8];
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u32 FIFOReadPos;
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u32 FIFOWritePos;
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u32 FIFOReadOffset;
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u32 FIFOLevel;
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void FIFO_BufferData();
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template<typename T> T FIFO_ReadData();
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void SetCnt(u32 val)
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{
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u32 oldcnt = Cnt;
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Cnt = val & 0xFF7F837F;
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Volume = Cnt & 0x7F;
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if (Volume == 127) Volume++;
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const u8 volshift[4] = {4, 3, 2, 0};
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VolumeShift = volshift[(Cnt >> 8) & 0x3];
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Pan = (Cnt >> 16) & 0x7F;
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if (Pan == 127) Pan++;
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if ((val & (1<<31)) && !(oldcnt & (1<<31)))
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{
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Start();
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}
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}
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void SetSrcAddr(u32 val) { SrcAddr = val & 0x07FFFFFC; }
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void SetTimerReload(u32 val) { TimerReload = val & 0xFFFF; }
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void SetLoopPos(u32 val) { LoopPos = (val & 0xFFFF) << 2; }
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void SetLength(u32 val) { Length = (val & 0x001FFFFF) << 2; }
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void Start();
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void NextSample_PCM8();
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void NextSample_PCM16();
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void NextSample_ADPCM();
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void NextSample_PSG();
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void NextSample_Noise();
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template<u32 type> void Run(s32* buf, u32 samples);
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void DoRun(s32* buf, u32 samples)
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{
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for (u32 s = 0; s < samples; s++)
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buf[s] = 0;
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switch ((Cnt >> 29) & 0x3)
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{
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case 0: Run<0>(buf, samples); break;
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case 1: Run<1>(buf, samples); break;
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case 2: Run<2>(buf, samples); break;
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case 3:
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if (Num >= 14) Run<4>(buf, samples);
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else if (Num >= 8) Run<3>(buf, samples);
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break;
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}
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}
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void PanOutput(s32* inbuf, u32 samples, s32* leftbuf, s32* rightbuf);
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private:
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u32 (*BusRead32)(u32 addr);
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};
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class CaptureUnit
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{
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public:
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CaptureUnit(u32 num);
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~CaptureUnit();
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void Reset();
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void DoSavestate(Savestate* file);
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u32 Num;
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u8 Cnt;
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u32 DstAddr;
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u16 TimerReload;
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u32 Length;
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u32 Timer;
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s32 Pos;
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u32 FIFO[4];
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u32 FIFOReadPos;
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u32 FIFOWritePos;
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u32 FIFOWriteOffset;
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u32 FIFOLevel;
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void FIFO_FlushData();
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template<typename T> void FIFO_WriteData(T val);
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void SetCnt(u8 val)
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{
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if ((val & 0x80) && !(Cnt & 0x80))
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Start();
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val &= 0x8F;
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if (!(val & 0x80)) val &= ~0x01;
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Cnt = val;
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}
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void SetDstAddr(u32 val) { DstAddr = val & 0x07FFFFFC; }
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void SetTimerReload(u32 val) { TimerReload = val & 0xFFFF; }
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void SetLength(u32 val) { Length = val << 2; if (Length == 0) Length = 4; }
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void Start()
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{
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Timer = TimerReload;
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Pos = 0;
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FIFOReadPos = 0;
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FIFOWritePos = 0;
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FIFOWriteOffset = 0;
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FIFOLevel = 0;
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}
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void Run(s32 sample);
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private:
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void (*BusWrite32)(u32 addr, u32 val);
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};
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}
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#endif // SPU_H
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