mirror of https://github.com/AxioDL/amuse.git
204 lines
5.9 KiB
C++
204 lines
5.9 KiB
C++
#include "amuse/AudioGroupSampleDirectory.hpp"
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#include "amuse/Common.hpp"
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#include <string.h>
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namespace amuse
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{
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void AudioGroupSampleDirectory::Entry::swapBig()
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{
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m_sfxId = SBig(m_sfxId);
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m_sampleOff = SBig(m_sampleOff);
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m_unk = SBig(m_unk);
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m_sampleRate = SBig(m_sampleRate);
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m_numSamples = SBig(m_numSamples);
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m_loopStartSample = SBig(m_loopStartSample);
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m_loopLengthSamples = SBig(m_loopLengthSamples);
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m_adpcmParmOffset = SBig(m_adpcmParmOffset);
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}
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void AudioGroupSampleDirectory::ADPCMParms::swapBigDSP()
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{
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dsp.m_bytesPerFrame = SBig(dsp.m_bytesPerFrame);
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dsp.m_hist2 = SBig(dsp.m_hist2);
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dsp.m_hist1 = SBig(dsp.m_hist1);
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for (int i=0 ; i<8 ; ++i)
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{
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dsp.m_coefs[i][0] = SBig(dsp.m_coefs[i][0]);
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dsp.m_coefs[i][1] = SBig(dsp.m_coefs[i][1]);
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}
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}
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void AudioGroupSampleDirectory::ADPCMParms::swapBigVADPCM()
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{
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int16_t* allCoefs = reinterpret_cast<int16_t*>(vadpcm.m_coefs[0][0]);
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for (int i=0 ; i<128 ; ++i)
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allCoefs[i] = SBig(allCoefs[i]);
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}
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AudioGroupSampleDirectory::AudioGroupSampleDirectory(const unsigned char* data, GCNDataTag)
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{
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const unsigned char* cur = data;
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while (*reinterpret_cast<const uint32_t*>(cur) != 0xffffffff)
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{
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const AudioGroupSampleDirectory::Entry* ent =
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reinterpret_cast<const AudioGroupSampleDirectory::Entry*>(cur);
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std::pair<Entry, ADPCMParms>& store = m_entries[SBig(ent->m_sfxId)];
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store.first = *ent;
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store.first.swapBig();
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if (store.first.m_adpcmParmOffset)
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{
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const AudioGroupSampleDirectory::ADPCMParms* adpcm =
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reinterpret_cast<const AudioGroupSampleDirectory::ADPCMParms*>(data +
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store.first.m_adpcmParmOffset);
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store.second.dsp = adpcm->dsp;
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store.second.swapBigDSP();
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}
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cur += 32;
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}
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}
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struct MusyX1SdirEntry
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{
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uint16_t m_sfxId;
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uint32_t m_sampleOff;
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uint32_t m_pitchSampleRate;
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uint32_t m_numSamples;
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uint32_t m_loopStartSample;
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uint32_t m_loopLengthSamples;
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void swapBig()
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{
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m_sfxId = SBig(m_sfxId);
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m_sampleOff = SBig(m_sampleOff);
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m_pitchSampleRate = SBig(m_pitchSampleRate);
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m_numSamples = SBig(m_numSamples);
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m_loopStartSample = SBig(m_loopStartSample);
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m_loopLengthSamples = SBig(m_loopLengthSamples);
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}
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void setIntoMusyX2(AudioGroupSampleDirectory::Entry& ent) const
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{
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ent.m_sfxId = m_sfxId;
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ent.m_sampleOff = m_sampleOff;
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ent.m_unk = 0;
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ent.m_pitch = m_pitchSampleRate >> 24;
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ent.m_sampleRate = m_pitchSampleRate & 0xffff;
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ent.m_numSamples = m_numSamples;
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ent.m_loopStartSample = m_loopStartSample;
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ent.m_loopLengthSamples = m_loopLengthSamples;
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ent.m_adpcmParmOffset = 0;
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}
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};
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struct MusyX1AbsSdirEntry
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{
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uint16_t m_sfxId;
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uint32_t m_sampleOff;
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uint32_t m_unk;
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uint32_t m_pitchSampleRate;
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uint32_t m_numSamples;
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uint32_t m_loopStartSample;
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uint32_t m_loopLengthSamples;
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void swapBig()
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{
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m_sfxId = SBig(m_sfxId);
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m_sampleOff = SBig(m_sampleOff);
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m_unk = SBig(m_unk);
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m_pitchSampleRate = SBig(m_pitchSampleRate);
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m_numSamples = SBig(m_numSamples);
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m_loopStartSample = SBig(m_loopStartSample);
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m_loopLengthSamples = SBig(m_loopLengthSamples);
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}
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void setIntoMusyX2(AudioGroupSampleDirectory::Entry& ent) const
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{
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ent.m_sfxId = m_sfxId;
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ent.m_sampleOff = m_sampleOff;
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ent.m_unk = m_unk;
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ent.m_pitch = m_pitchSampleRate >> 24;
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ent.m_sampleRate = m_pitchSampleRate & 0xffff;
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ent.m_numSamples = m_numSamples;
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ent.m_loopStartSample = m_loopStartSample;
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ent.m_loopLengthSamples = m_loopLengthSamples;
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ent.m_adpcmParmOffset = 0;
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}
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};
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AudioGroupSampleDirectory::AudioGroupSampleDirectory(const unsigned char* data,
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const unsigned char* sampData,
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bool absOffs, N64DataTag)
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{
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const unsigned char* cur = data;
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if (absOffs)
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{
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while (*reinterpret_cast<const uint32_t*>(cur) != 0xffffffff)
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{
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MusyX1AbsSdirEntry ent = *reinterpret_cast<const MusyX1AbsSdirEntry*>(cur);
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ent.swapBig();
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std::pair<Entry, ADPCMParms>& store = m_entries[ent.m_sfxId];
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ent.setIntoMusyX2(store.first);
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memcpy(&store.second.vadpcm.m_coefs, sampData + ent.m_sampleOff, 256);
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store.second.swapBigVADPCM();
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cur += 28;
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}
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}
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else
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{
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while (*reinterpret_cast<const uint32_t*>(cur) != 0xffffffff)
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{
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MusyX1SdirEntry ent = *reinterpret_cast<const MusyX1SdirEntry*>(cur);
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ent.swapBig();
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std::pair<Entry, ADPCMParms>& store = m_entries[ent.m_sfxId];
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ent.setIntoMusyX2(store.first);
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memcpy(&store.second.vadpcm.m_coefs, sampData + ent.m_sampleOff, 256);
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store.second.swapBigVADPCM();
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cur += 24;
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}
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}
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}
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AudioGroupSampleDirectory::AudioGroupSampleDirectory(const unsigned char* data,
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bool absOffs, PCDataTag)
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{
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const unsigned char* cur = data;
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if (absOffs)
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{
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while (*reinterpret_cast<const uint32_t*>(cur) != 0xffffffff)
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{
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const MusyX1AbsSdirEntry* ent = reinterpret_cast<const MusyX1AbsSdirEntry*>(cur);
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std::pair<Entry, ADPCMParms>& store = m_entries[ent->m_sfxId];
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ent->setIntoMusyX2(store.first);
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cur += 28;
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}
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}
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else
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{
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while (*reinterpret_cast<const uint32_t*>(cur) != 0xffffffff)
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{
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const MusyX1SdirEntry* ent = reinterpret_cast<const MusyX1SdirEntry*>(cur);
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std::pair<Entry, ADPCMParms>& store = m_entries[ent->m_sfxId];
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ent->setIntoMusyX2(store.first);
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cur += 24;
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}
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}
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}
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}
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