mirror of
https://github.com/hrydgard/ppsspp.git
synced 2024-12-11 07:34:08 +00:00
b214a1a1da
This reverts commit a00b1855cb
.
Conflicts:
Core/HLE/FunctionWrappers.h
Core/HLE/sceCtrl.cpp
Core/HLE/sceKernelModule.cpp
259 lines
7.2 KiB
C++
259 lines
7.2 KiB
C++
// Copyright (c) 2012- PPSSPP Project.
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, version 2.0 or later versions.
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License 2.0 for more details.
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// A copy of the GPL 2.0 should have been included with the program.
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// If not, see http://www.gnu.org/licenses/
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// Official git repository and contact information can be found at
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// https://github.com/hrydgard/ppsspp and http://www.ppsspp.org/.
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// This is pretty much a stub implementation. Doesn't actually do anything, just tries to return values
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// to keep games happy anyway. So, no ATRAC3 music until someone has reverse engineered Atrac3+.
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#include "HLE.h"
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#include "../MIPS/MIPS.h"
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#include "sceKernel.h"
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#include "sceUtility.h"
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#define ATRAC_ERROR_API_FAIL 0x80630002
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#define ATRAC_ERROR_ALL_DATA_DECODED 0x80630024
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void sceAtracAddStreamData()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracAddStreamData(%i, %i)", PARAM(0), PARAM(1));
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RETURN(0);
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}
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void sceAtracDecodeData()
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{
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u32 atracID = PARAM(0);
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u32 outAddr = PARAM(1);
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u32 numSamplesAddr = PARAM(2);
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u32 finishFlagAddr = PARAM(3);
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u32 remainAddr = PARAM(4);
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ERROR_LOG(HLE, "FAKE sceAtracDecodeData(%i, %08x, %08x, %08x, %08x)", atracID, outAddr, numSamplesAddr, finishFlagAddr, remainAddr);
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Memory::Write_U16(0, outAddr); // Write a single 16-bit stereo
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Memory::Write_U16(0, outAddr + 2);
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Memory::Write_U32(1, numSamplesAddr);
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Memory::Write_U32(1, finishFlagAddr); // Lie that decoding is finished
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Memory::Write_U32(0, remainAddr); // Lie that decoding is finished
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RETURN(0);
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}
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void sceAtracEndEntry()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracEndEntry");
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RETURN(0);
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}
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void sceAtracGetAtracID()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracGetAtracID");
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RETURN(0);
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}
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void sceAtracGetBufferInfoForReseting()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracGetBufferInfoForReseting");
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RETURN(0);
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}
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void sceAtracGetBitrate()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracGetBitrate");
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RETURN(0);
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}
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void sceAtracGetChannel()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracGetChannel");
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RETURN(0);
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}
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void sceAtracGetLoopStatus()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracGetLoopStatus");
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RETURN(0);
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}
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void sceAtracGetInternalErrorInfo()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracGetInternalErrorInfo");
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RETURN(0);
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}
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void sceAtracGetMaxSample()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracGetMaxSample");
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RETURN(0);
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}
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void sceAtracGetNextDecodePosition()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracGetNextDecodePosition(%i, %08x)", PARAM(0), PARAM(1));
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u32 *outPos = (u32*)Memory::GetPointer(PARAM(1));
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*outPos = 1;
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RETURN(0);
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}
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void sceAtracGetNextSample()
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{
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u32 atracID = PARAM(0);
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u32 outN = PARAM(1);
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ERROR_LOG(HLE, "FAKE sceAtracGetNextSample(%i, %08x)", atracID, outN);
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Memory::Write_U32(0, outN);
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RETURN(0);
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}
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void sceAtracGetRemainFrame()
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{
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ERROR_LOG(HLE, "sceAtracGetRemainFrame(%i, %08x)",PARAM(0),PARAM(1));
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u32 *outPos = (u32*)Memory::GetPointer(PARAM(1));
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*outPos = 12;
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RETURN(0);
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}
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void sceAtracGetSecondBufferInfo()
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{
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ERROR_LOG(HLE, "sceAtracGetSecondBufferInfo(%i, %08x, %08x)",PARAM(0),PARAM(1),PARAM(2));
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u32 *outPos = (u32*)Memory::GetPointer(PARAM(1));
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u32 *outBytes = (u32*)Memory::GetPointer(PARAM(2));
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*outPos = 0;
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*outBytes = 0x10000;
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RETURN(0);
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}
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void sceAtracGetSoundSample()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracGetSoundSample(%i, %08x, %08x, %08x)",PARAM(0),PARAM(1),PARAM(2),PARAM(3));
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u32 *outEndSample = (u32*)Memory::GetPointer(PARAM(1));
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u32 *outLoopStartSample = (u32*)Memory::GetPointer(PARAM(2));
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u32 *outLoopEndSample = (u32*)Memory::GetPointer(PARAM(2));
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*outEndSample = 0x10000;
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*outLoopStartSample = -1;
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*outLoopEndSample = -1;
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RETURN(0);
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}
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void sceAtracGetStreamDataInfo()
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{
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u32 atracID = PARAM(0);
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u32 writePointerAddr = PARAM(1);
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u32 availableBytesAddr = PARAM(2);
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u32 readOffsetAddr = PARAM(3);
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ERROR_LOG(HLE, "FAKE sceAtracGetStreamDataInfo(%i, %08x, %08x, %08x)", atracID, writePointerAddr, availableBytesAddr, readOffsetAddr);
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Memory::Write_U32(0, readOffsetAddr);
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Memory::Write_U32(0, availableBytesAddr);
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Memory::Write_U32(0, writePointerAddr);
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RETURN(0);
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}
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void sceAtracReleaseAtracID()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracReleaseAtracID");
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RETURN(0);
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}
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void sceAtracResetPlayPosition()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracResetPlayPosition");
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RETURN(0);
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}
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void sceAtracSetHalfwayBuffer()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracSetHalfwayBuffer");
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RETURN(0);
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}
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void sceAtracSetSecondBuffer()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracSetSecondBuffer(%i, %08x, %i)", PARAM(0),PARAM(1),PARAM(2));
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RETURN(0);
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}
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void sceAtracSetData()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracSetData");
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RETURN(0);
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} //?
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void sceAtracSetDataAndGetID()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracSetDataAndGetID(%08x, %i)", PARAM(0), PARAM(1));
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RETURN(1);
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}
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void sceAtracSetHalfwayBufferAndGetID()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracSetHalfwayBufferAndGetID");
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RETURN(0);
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}
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void sceAtracStartEntry()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracStartEntry");
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RETURN(0);
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}
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void sceAtracSetLoopNum()
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{
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ERROR_LOG(HLE, "UNIMPL sceAtracSetLoopNum(%i, %i)", PARAM(0), PARAM(1));
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RETURN(0);
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}
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const HLEFunction sceAtrac3plus[] =
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{
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{0x7db31251,sceAtracAddStreamData,"sceAtracAddStreamData"},
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{0x6a8c3cd5,sceAtracDecodeData,"sceAtracDecodeData"},
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{0xd5c28cc0,sceAtracEndEntry,"sceAtracEndEntry"},
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{0x780f88d1,sceAtracGetAtracID,"sceAtracGetAtracID"},
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{0xca3ca3d2,sceAtracGetBufferInfoForReseting,"sceAtracGetBufferInfoForReseting"},
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{0xa554a158,sceAtracGetBitrate,"sceAtracGetBitrate"},
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{0x31668baa,sceAtracGetChannel,"sceAtracGetChannel"},
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{0xfaa4f89b,sceAtracGetLoopStatus,"sceAtracGetLoopStatus"},
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{0xe88f759b,sceAtracGetInternalErrorInfo,"sceAtracGetInternalErrorInfo"},
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{0xd6a5f2f7,sceAtracGetMaxSample,"sceAtracGetMaxSample"},
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{0xe23e3a35,sceAtracGetNextDecodePosition,"sceAtracGetNextDecodePosition"},
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{0x36faabfb,sceAtracGetNextSample,"sceAtracGetNextSample"},
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{0x9ae849a7,sceAtracGetRemainFrame,"sceAtracGetRemainFrame"},
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{0x83e85ea0,sceAtracGetSecondBufferInfo,"sceAtracGetSecondBufferInfo"},
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{0xa2bba8be,sceAtracGetSoundSample,"sceAtracGetSoundSample"},
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{0x5d268707,sceAtracGetStreamDataInfo,"sceAtracGetStreamDataInfo"},
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{0x61eb33f5,sceAtracReleaseAtracID,"sceAtracReleaseAtracID"},
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{0x644e5607,sceAtracResetPlayPosition,"sceAtracResetPlayPosition"},
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{0x3f6e26b5,sceAtracSetHalfwayBuffer,"sceAtracSetHalfwayBuffer"},
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{0x83bf7afd,sceAtracSetSecondBuffer,"sceAtracSetSecondBuffer"},
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{0x0E2A73AB,sceAtracSetData,"sceAtracSetData"}, //?
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{0x7a20e7af,sceAtracSetDataAndGetID,"sceAtracSetDataAndGetID"},
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{0x0eb8dc38,sceAtracSetHalfwayBufferAndGetID,"sceAtracSetHalfwayBufferAndGetID"},
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{0xd1f59fdb,sceAtracStartEntry,"sceAtracStartEntry"},
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{0x868120b5,sceAtracSetLoopNum,"sceAtracSetLoopNum"},
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{0x132f1eca,0,"sceAtracReinit"},
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{0xeca32a99,0,"sceAtracIsSecondBufferNeeded"},
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{0x0fae370e,0,"sceAtracSetHalfwayBufferAndGetID"},
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{0x2DD3E298,0,"sceAtrac3plus_2DD3E298"},
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};
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void Register_sceAtrac3plus()
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{
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// Two names
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RegisterModule("sceATRAC3plus_Library", ARRAY_SIZE(sceAtrac3plus), sceAtrac3plus);
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RegisterModule("sceAtrac3plus", ARRAY_SIZE(sceAtrac3plus), sceAtrac3plus);
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}
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