330 lines
8.4 KiB
C++
330 lines
8.4 KiB
C++
/*
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* Load_669.cpp
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* ------------
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* Purpose: 669 Composer / UNIS 669 module loader
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* Notes : <opinion humble="false">This is better than Schism's 669 loader</opinion> :)
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* (some of this code is "heavily inspired" by Storlek's code from Schism Tracker, and improvements have been made where necessary.)
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* Authors: Olivier Lapicque
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* 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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OPENMPT_NAMESPACE_BEGIN
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struct _669FileHeader
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{
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char magic[2]; // 'if' (0x6669, ha ha) or 'JN'
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char songMessage[108]; // Song Message
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uint8 samples; // number of samples (1-64)
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uint8 patterns; // number of patterns (1-128)
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uint8 restartPos;
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uint8 orders[128];
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uint8 tempoList[128];
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uint8 breaks[128];
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};
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MPT_BINARY_STRUCT(_669FileHeader, 497)
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struct _669Sample
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{
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char filename[13];
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uint32le length;
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uint32le loopStart;
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uint32le loopEnd;
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// Convert a 669 sample header to OpenMPT's internal sample header.
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void ConvertToMPT(ModSample &mptSmp) const
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{
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mptSmp.Initialize();
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mptSmp.nC5Speed = 8363;
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mptSmp.nLength = length;
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mptSmp.nLoopStart = loopStart;
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mptSmp.nLoopEnd = loopEnd;
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if(mptSmp.nLoopEnd > mptSmp.nLength && mptSmp.nLoopStart == 0)
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{
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mptSmp.nLoopEnd = 0;
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}
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if(mptSmp.nLoopEnd != 0)
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{
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mptSmp.uFlags = CHN_LOOP;
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mptSmp.SanitizeLoops();
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}
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}
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};
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MPT_BINARY_STRUCT(_669Sample, 25)
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static bool ValidateHeader(const _669FileHeader &fileHeader)
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{
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if((std::memcmp(fileHeader.magic, "if", 2) && std::memcmp(fileHeader.magic, "JN", 2))
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|| fileHeader.samples > 64
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|| fileHeader.restartPos >= 128
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|| fileHeader.patterns > 128)
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{
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return false;
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}
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for(std::size_t i = 0; i < CountOf(fileHeader.breaks); i++)
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{
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if(fileHeader.orders[i] >= 128 && fileHeader.orders[i] < 0xFE)
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return false;
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if(fileHeader.orders[i] < 128 && fileHeader.tempoList[i] == 0)
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return false;
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if(fileHeader.tempoList[i] > 15)
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return false;
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if(fileHeader.breaks[i] >= 64)
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return false;
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}
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return true;
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}
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static uint64 GetHeaderMinimumAdditionalSize(const _669FileHeader &fileHeader)
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{
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return fileHeader.samples * sizeof(_669Sample) + fileHeader.patterns * 1536u;
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}
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CSoundFile::ProbeResult CSoundFile::ProbeFileHeader669(MemoryFileReader file, const uint64 *pfilesize)
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{
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_669FileHeader fileHeader;
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if(!file.ReadStruct(fileHeader))
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{
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return ProbeWantMoreData;
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}
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if(!ValidateHeader(fileHeader))
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{
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return ProbeFailure;
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}
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return ProbeAdditionalSize(file, pfilesize, GetHeaderMinimumAdditionalSize(fileHeader));
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}
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bool CSoundFile::Read669(FileReader &file, ModLoadingFlags loadFlags)
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{
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_669FileHeader fileHeader;
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file.Rewind();
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if(!file.ReadStruct(fileHeader))
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{
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return false;
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}
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if(!ValidateHeader(fileHeader))
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{
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return false;
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}
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if(loadFlags == onlyVerifyHeader)
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{
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return true;
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}
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if(!file.CanRead(mpt::saturate_cast<FileReader::off_t>(GetHeaderMinimumAdditionalSize(fileHeader))))
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{
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return false;
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}
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InitializeGlobals(MOD_TYPE_669);
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m_nMinPeriod = 28 << 2;
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m_nMaxPeriod = 1712 << 3;
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m_nDefaultTempo.Set(78);
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m_nDefaultSpeed = 4;
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m_nChannels = 8;
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#ifdef MODPLUG_TRACEKR
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// 669 uses frequencies rather than periods, so linear slides mode will sound better in the higher octaves.
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m_SongFlags.set(SONG_LINEARSLIDES);
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#endif // MODPLUG_TRACKER
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m_modFormat.formatName = U_("Composer 669");
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m_modFormat.type = U_("669");
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m_modFormat.madeWithTracker = !memcmp(fileHeader.magic, "if", 2) ? UL_("Composer 669") : UL_("UNIS 669");
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m_modFormat.charset = mpt::Charset::CP437;
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m_nSamples = fileHeader.samples;
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for(SAMPLEINDEX smp = 1; smp <= m_nSamples; smp++)
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{
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_669Sample sampleHeader;
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file.ReadStruct(sampleHeader);
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// Since 669 files have very unfortunate magic bytes ("if") and can
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// hardly be validated, reject any file with far too big samples.
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if(sampleHeader.length >= 0x4000000)
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return false;
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sampleHeader.ConvertToMPT(Samples[smp]);
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m_szNames[smp] = mpt::String::ReadBuf(mpt::String::maybeNullTerminated, sampleHeader.filename);
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}
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// Copy first song message line into song title
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m_songName = mpt::String::ReadBuf(mpt::String::spacePadded, fileHeader.songMessage, 36);
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// Song Message
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m_songMessage.ReadFixedLineLength(mpt::byte_cast<const std::byte*>(fileHeader.songMessage), 108, 36, 0);
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// Reading Orders
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ReadOrderFromArray(Order(), fileHeader.orders, MPT_ARRAY_COUNT(fileHeader.orders), 0xFF, 0xFE);
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if(Order()[fileHeader.restartPos] < fileHeader.patterns)
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Order().SetRestartPos(fileHeader.restartPos);
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// Set up panning
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for(CHANNELINDEX chn = 0; chn < 8; chn++)
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{
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ChnSettings[chn].Reset();
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ChnSettings[chn].nPan = (chn & 1) ? 0xD0 : 0x30;
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}
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// Reading Patterns
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Patterns.ResizeArray(fileHeader.patterns);
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for(PATTERNINDEX pat = 0; pat < fileHeader.patterns; pat++)
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{
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if(!(loadFlags & loadPatternData) || !Patterns.Insert(pat, 64))
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{
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file.Skip(64 * 8 * 3);
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continue;
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}
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static constexpr ModCommand::COMMAND effTrans[] =
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{
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CMD_PORTAMENTOUP, // Slide up (param * 80) Hz on every tick
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CMD_PORTAMENTODOWN, // Slide down (param * 80) Hz on every tick
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CMD_TONEPORTAMENTO, // Slide to note by (param * 40) Hz on every tick
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CMD_S3MCMDEX, // Add (param * 80) Hz to sample frequency
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CMD_VIBRATO, // Add (param * 669) Hz on every other tick
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CMD_SPEED, // Set ticks per row
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CMD_PANNINGSLIDE, // Extended UNIS 669 effect
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CMD_RETRIG, // Extended UNIS 669 effect
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};
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uint8 effect[8] = { 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF };
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for(ROWINDEX row = 0; row < 64; row++)
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{
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PatternRow m = Patterns[pat].GetRow(row);
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for(CHANNELINDEX chn = 0; chn < 8; chn++, m++)
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{
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const auto [noteInstr, instrVol, effParam] = file.ReadArray<uint8, 3>();
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uint8 note = noteInstr >> 2;
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uint8 instr = ((noteInstr & 0x03) << 4) | (instrVol >> 4);
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uint8 vol = instrVol & 0x0F;
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if(noteInstr < 0xFE)
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{
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m->note = note + 36 + NOTE_MIN;
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m->instr = instr + 1;
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effect[chn] = 0xFF;
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}
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if(noteInstr <= 0xFE)
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{
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m->volcmd = VOLCMD_VOLUME;
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m->vol = ((vol * 64 + 8) / 15);
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}
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if(effParam != 0xFF)
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{
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effect[chn] = effParam;
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}
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if((effParam & 0x0F) == 0 && effParam != 0x30)
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{
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// A param value of 0 resets the effect.
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effect[chn] = 0xFF;
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}
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if(effect[chn] == 0xFF)
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{
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continue;
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}
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m->param = effect[chn] & 0x0F;
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// Weird stuff happening in corehop.669 with effects > 8... they seem to do the same thing as if the high bit wasn't set, but the sample also behaves strangely.
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uint8 command = effect[chn] >> 4;
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if(command < static_cast<uint8>(CountOf(effTrans)))
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{
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m->command = effTrans[command];
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} else
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{
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m->command = CMD_NONE;
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continue;
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}
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// Fix some commands
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switch(command)
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{
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case 3:
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// D - frequency adjust
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#ifdef MODPLUG_TRACKER
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// Since we convert to S3M, the finetune command will not quite do what we intend to do (it can adjust the frequency upwards and downwards), so try to approximate it using a fine slide.
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m->command = CMD_PORTAMENTOUP;
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m->param |= 0xF0;
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#else
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m->param |= 0x20;
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#endif
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effect[chn] = 0xFF;
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break;
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case 4:
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// E - frequency vibrato - almost like an arpeggio, but does not arpeggiate by a given note but by a frequency amount.
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#ifdef MODPLUG_TRACKER
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m->command = CMD_ARPEGGIO;
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#endif
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m->param |= (m->param << 4);
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break;
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case 5:
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// F - set tempo
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// TODO: param 0 is a "super fast tempo" in Unis 669 mode (?)
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effect[chn] = 0xFF;
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break;
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case 6:
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// G - subcommands (extended)
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switch(m->param)
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{
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case 0:
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// balance fine slide left
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m->param = 0x4F;
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break;
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case 1:
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// balance fine slide right
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m->param = 0xF4;
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break;
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default:
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m->command = CMD_NONE;
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}
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break;
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}
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}
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}
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// Write pattern break
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if(fileHeader.breaks[pat] < 63)
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{
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Patterns[pat].WriteEffect(EffectWriter(CMD_PATTERNBREAK, 0).Row(fileHeader.breaks[pat]).RetryNextRow());
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}
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// And of course the speed...
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Patterns[pat].WriteEffect(EffectWriter(CMD_SPEED, fileHeader.tempoList[pat]).RetryNextRow());
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}
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if(loadFlags & loadSampleData)
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{
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// Reading Samples
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const SampleIO sampleIO(
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SampleIO::_8bit,
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SampleIO::mono,
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SampleIO::littleEndian,
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SampleIO::unsignedPCM);
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for(SAMPLEINDEX n = 1; n <= m_nSamples; n++)
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{
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sampleIO.ReadSample(Samples[n], file);
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}
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}
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return true;
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}
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OPENMPT_NAMESPACE_END
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