141 lines
3.9 KiB
C++
141 lines
3.9 KiB
C++
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/*
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* S3MTools.cpp
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* ------------
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* Purpose: Definition of S3M file structures and helper functions
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* Notes : (currently none)
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* Authors: OpenMPT Devs
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* The OpenMPT source code is released under the BSD license. Read LICENSE for more details.
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*/
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#include "stdafx.h"
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#include "Loaders.h"
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#include "S3MTools.h"
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#include "../common/mptStringBuffer.h"
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OPENMPT_NAMESPACE_BEGIN
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// Convert an S3M sample header to OpenMPT's internal sample header.
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void S3MSampleHeader::ConvertToMPT(ModSample &mptSmp, bool isST3) const
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{
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mptSmp.Initialize(MOD_TYPE_S3M);
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mptSmp.filename = mpt::String::ReadBuf(mpt::String::maybeNullTerminated, filename);
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if(sampleType == typePCM || sampleType == typeNone)
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{
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// Sample Length and Loops
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if(sampleType == typePCM)
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{
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mptSmp.nLength = length;
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mptSmp.nLoopStart = std::min(static_cast<SmpLength>(loopStart), mptSmp.nLength - 1);
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mptSmp.nLoopEnd = std::min(static_cast<SmpLength>(loopEnd), mptSmp.nLength);
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mptSmp.uFlags.set(CHN_LOOP, (flags & smpLoop) != 0);
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}
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if(mptSmp.nLoopEnd < 2 || mptSmp.nLoopStart >= mptSmp.nLoopEnd || mptSmp.nLoopEnd - mptSmp.nLoopStart < 1)
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{
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mptSmp.nLoopStart = mptSmp.nLoopEnd = 0;
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mptSmp.uFlags.reset();
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}
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} else if(sampleType == typeAdMel)
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{
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OPLPatch patch;
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std::memcpy(patch.data() + 0, mpt::as_raw_memory(length).data(), 4);
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std::memcpy(patch.data() + 4, mpt::as_raw_memory(loopStart).data(), 4);
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std::memcpy(patch.data() + 8, mpt::as_raw_memory(loopEnd).data(), 4);
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mptSmp.SetAdlib(true, patch);
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}
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// Volume / Panning
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mptSmp.nVolume = std::min(defaultVolume.get(), uint8(64)) * 4;
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// C-5 frequency
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mptSmp.nC5Speed = c5speed;
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if(isST3)
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{
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// ST3 ignores or clamps the high 16 bits depending on the instrument type
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if(sampleType == typeAdMel)
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mptSmp.nC5Speed &= 0xFFFF;
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else
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LimitMax(mptSmp.nC5Speed, uint16_max);
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}
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if(mptSmp.nC5Speed == 0)
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mptSmp.nC5Speed = 8363;
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else if(mptSmp.nC5Speed < 1024)
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mptSmp.nC5Speed = 1024;
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}
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// Convert OpenMPT's internal sample header to an S3M sample header.
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SmpLength S3MSampleHeader::ConvertToS3M(const ModSample &mptSmp)
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{
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SmpLength smpLength = 0;
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mpt::String::WriteBuf(mpt::String::maybeNullTerminated, filename) = mptSmp.filename;
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memcpy(magic, "SCRS", 4);
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if(mptSmp.uFlags[CHN_ADLIB])
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{
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memcpy(magic, "SCRI", 4);
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sampleType = typeAdMel;
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std::memcpy(mpt::as_raw_memory(length ).data(), mptSmp.adlib.data() + 0, 4);
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std::memcpy(mpt::as_raw_memory(loopStart).data(), mptSmp.adlib.data() + 4, 4);
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std::memcpy(mpt::as_raw_memory(loopEnd ).data(), mptSmp.adlib.data() + 8, 4);
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} else if(mptSmp.HasSampleData())
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{
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sampleType = typePCM;
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length = mpt::saturate_cast<uint32>(mptSmp.nLength);
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loopStart = mpt::saturate_cast<uint32>(mptSmp.nLoopStart);
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loopEnd = mpt::saturate_cast<uint32>(mptSmp.nLoopEnd);
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smpLength = length;
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flags = (mptSmp.uFlags[CHN_LOOP] ? smpLoop : 0);
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if(mptSmp.uFlags[CHN_16BIT])
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{
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flags |= smp16Bit;
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}
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if(mptSmp.uFlags[CHN_STEREO])
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{
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flags |= smpStereo;
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}
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} else
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{
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sampleType = typeNone;
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}
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defaultVolume = static_cast<uint8>(std::min(static_cast<uint16>(mptSmp.nVolume / 4), uint16(64)));
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if(mptSmp.nC5Speed != 0)
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{
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c5speed = mptSmp.nC5Speed;
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} else
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{
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c5speed = ModSample::TransposeToFrequency(mptSmp.RelativeTone, mptSmp.nFineTune);
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}
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return smpLength;
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}
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// Retrieve the internal sample format flags for this sample.
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SampleIO S3MSampleHeader::GetSampleFormat(bool signedSamples) const
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{
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if(pack == S3MSampleHeader::pADPCM && !(flags & S3MSampleHeader::smp16Bit) && !(flags & S3MSampleHeader::smpStereo))
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{
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// MODPlugin :(
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return SampleIO(SampleIO::_8bit, SampleIO::mono, SampleIO::littleEndian, SampleIO::ADPCM);
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} else
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{
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return SampleIO(
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(flags & S3MSampleHeader::smp16Bit) ? SampleIO::_16bit : SampleIO::_8bit,
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(flags & S3MSampleHeader::smpStereo) ? SampleIO::stereoSplit : SampleIO::mono,
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SampleIO::littleEndian,
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signedSamples ? SampleIO::signedPCM : SampleIO::unsignedPCM);
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}
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}
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OPENMPT_NAMESPACE_END
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