/[svn]/libgig/trunk/src/gig.cpp
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revision 2557 by schoenebeck, Sat May 17 23:31:20 2014 UTC revision 3488 by schoenebeck, Thu Feb 28 17:49:07 2019 UTC
# Line 2  Line 2 
2   *                                                                         *   *                                                                         *
3   *   libgig - C++ cross-platform Gigasampler format file access library    *   *   libgig - C++ cross-platform Gigasampler format file access library    *
4   *                                                                         *   *                                                                         *
5   *   Copyright (C) 2003-2014 by Christian Schoenebeck                      *   *   Copyright (C) 2003-2019 by Christian Schoenebeck                      *
6   *                              <cuse@users.sourceforge.net>               *   *                              <cuse@users.sourceforge.net>               *
7   *                                                                         *   *                                                                         *
8   *   This library is free software; you can redistribute it and/or modify  *   *   This library is free software; you can redistribute it and/or modify  *
# Line 24  Line 24 
24  #include "gig.h"  #include "gig.h"
25    
26  #include "helper.h"  #include "helper.h"
27    #include "Serialization.h"
28    
29  #include <algorithm>  #include <algorithm>
30  #include <math.h>  #include <math.h>
31  #include <iostream>  #include <iostream>
32  #include <assert.h>  #include <assert.h>
33    
34    /// libgig's current file format version (for extending the original Giga file
35    /// format with libgig's own custom data / custom features).
36    #define GIG_FILE_EXT_VERSION    2
37    
38  /// Initial size of the sample buffer which is used for decompression of  /// Initial size of the sample buffer which is used for decompression of
39  /// compressed sample wave streams - this value should always be bigger than  /// compressed sample wave streams - this value should always be bigger than
40  /// the biggest sample piece expected to be read by the sampler engine,  /// the biggest sample piece expected to be read by the sampler engine,
# Line 51  Line 56 
56  #define GIG_EG_CTR_DECAY_INFLUENCE_ENCODE(x)    ((x & 0x03) << 3)  #define GIG_EG_CTR_DECAY_INFLUENCE_ENCODE(x)    ((x & 0x03) << 3)
57  #define GIG_EG_CTR_RELEASE_INFLUENCE_ENCODE(x)  ((x & 0x03) << 5)  #define GIG_EG_CTR_RELEASE_INFLUENCE_ENCODE(x)  ((x & 0x03) << 5)
58    
59  namespace gig {  #define SRLZ(member) \
60        archive->serializeMember(*this, member, #member);
 // *************** progress_t ***************  
 // *  
   
     progress_t::progress_t() {  
         callback    = NULL;  
         custom      = NULL;  
         __range_min = 0.0f;  
         __range_max = 1.0f;  
     }  
   
     // private helper function to convert progress of a subprocess into the global progress  
     static void __notify_progress(progress_t* pProgress, float subprogress) {  
         if (pProgress && pProgress->callback) {  
             const float totalrange    = pProgress->__range_max - pProgress->__range_min;  
             const float totalprogress = pProgress->__range_min + subprogress * totalrange;  
             pProgress->factor         = totalprogress;  
             pProgress->callback(pProgress); // now actually notify about the progress  
         }  
     }  
   
     // private helper function to divide a progress into subprogresses  
     static void __divide_progress(progress_t* pParentProgress, progress_t* pSubProgress, float totalTasks, float currentTask) {  
         if (pParentProgress && pParentProgress->callback) {  
             const float totalrange    = pParentProgress->__range_max - pParentProgress->__range_min;  
             pSubProgress->callback    = pParentProgress->callback;  
             pSubProgress->custom      = pParentProgress->custom;  
             pSubProgress->__range_min = pParentProgress->__range_min + totalrange * currentTask / totalTasks;  
             pSubProgress->__range_max = pSubProgress->__range_min + totalrange / totalTasks;  
         }  
     }  
61    
62    namespace gig {
63    
64  // *************** Internal functions for sample decompression ***************  // *************** Internal functions for sample decompression ***************
65  // *  // *
# Line 123  namespace { Line 99  namespace {
99      void Decompress16(int compressionmode, const unsigned char* params,      void Decompress16(int compressionmode, const unsigned char* params,
100                        int srcStep, int dstStep,                        int srcStep, int dstStep,
101                        const unsigned char* pSrc, int16_t* pDst,                        const unsigned char* pSrc, int16_t* pDst,
102                        unsigned long currentframeoffset,                        file_offset_t currentframeoffset,
103                        unsigned long copysamples)                        file_offset_t copysamples)
104      {      {
105          switch (compressionmode) {          switch (compressionmode) {
106              case 0: // 16 bit uncompressed              case 0: // 16 bit uncompressed
# Line 160  namespace { Line 136  namespace {
136    
137      void Decompress24(int compressionmode, const unsigned char* params,      void Decompress24(int compressionmode, const unsigned char* params,
138                        int dstStep, const unsigned char* pSrc, uint8_t* pDst,                        int dstStep, const unsigned char* pSrc, uint8_t* pDst,
139                        unsigned long currentframeoffset,                        file_offset_t currentframeoffset,
140                        unsigned long copysamples, int truncatedBits)                        file_offset_t copysamples, int truncatedBits)
141      {      {
142          int y, dy, ddy, dddy;          int y, dy, ddy, dddy;
143    
# Line 297  namespace { Line 273  namespace {
273       * steps.       * steps.
274       *       *
275       * Once the whole data was processed by __calculateCRC(), one should       * Once the whole data was processed by __calculateCRC(), one should
276       * call __encodeCRC() to get the final CRC result.       * call __finalizeCRC() to get the final CRC result.
277       *       *
278       * @param buf     - pointer to data the CRC shall be calculated of       * @param buf     - pointer to data the CRC shall be calculated of
279       * @param bufSize - size of the data to be processed       * @param bufSize - size of the data to be processed
280       * @param crc     - variable the CRC sum shall be stored to       * @param crc     - variable the CRC sum shall be stored to
281       */       */
282      static void __calculateCRC(unsigned char* buf, int bufSize, uint32_t& crc) {      static void __calculateCRC(unsigned char* buf, size_t bufSize, uint32_t& crc) {
283          for (int i = 0 ; i < bufSize ; i++) {          for (size_t i = 0 ; i < bufSize ; i++) {
284              crc = __CRCTable[(crc ^ buf[i]) & 0xff] ^ (crc >> 8);              crc = __CRCTable[(crc ^ buf[i]) & 0xff] ^ (crc >> 8);
285          }          }
286      }      }
# Line 314  namespace { Line 290  namespace {
290       *       *
291       * @param crc - variable previously passed to __calculateCRC()       * @param crc - variable previously passed to __calculateCRC()
292       */       */
293      inline static uint32_t __encodeCRC(const uint32_t& crc) {      inline static void __finalizeCRC(uint32_t& crc) {
294          return crc ^ 0xffffffff;          crc ^= 0xffffffff;
295      }      }
296    
297    
# Line 343  namespace { Line 319  namespace {
319    
320    
321    
322    // *************** leverage_ctrl_t ***************
323    // *
324    
325        void leverage_ctrl_t::serialize(Serialization::Archive* archive) {
326            SRLZ(type);
327            SRLZ(controller_number);
328        }
329    
330    
331    
332    // *************** crossfade_t ***************
333    // *
334    
335        void crossfade_t::serialize(Serialization::Archive* archive) {
336            SRLZ(in_start);
337            SRLZ(in_end);
338            SRLZ(out_start);
339            SRLZ(out_end);
340        }
341    
342    
343    
344    // *************** eg_opt_t ***************
345    // *
346    
347        eg_opt_t::eg_opt_t() {
348            AttackCancel     = true;
349            AttackHoldCancel = true;
350            Decay1Cancel     = true;
351            Decay2Cancel     = true;
352            ReleaseCancel    = true;
353        }
354    
355        void eg_opt_t::serialize(Serialization::Archive* archive) {
356            SRLZ(AttackCancel);
357            SRLZ(AttackHoldCancel);
358            SRLZ(Decay1Cancel);
359            SRLZ(Decay2Cancel);
360            SRLZ(ReleaseCancel);
361        }
362    
363    
364    
365  // *************** Sample ***************  // *************** Sample ***************
366  // *  // *
367    
368      unsigned int Sample::Instances = 0;      size_t       Sample::Instances = 0;
369      buffer_t     Sample::InternalDecompressionBuffer;      buffer_t     Sample::InternalDecompressionBuffer;
370    
371      /** @brief Constructor.      /** @brief Constructor.
# Line 366  namespace { Line 385  namespace {
385       *                         ('wvpl') list chunk       *                         ('wvpl') list chunk
386       * @param fileNo         - number of an extension file where this sample       * @param fileNo         - number of an extension file where this sample
387       *                         is located, 0 otherwise       *                         is located, 0 otherwise
388         * @param index          - wave pool index of sample (may be -1 on new sample)
389       */       */
390      Sample::Sample(File* pFile, RIFF::List* waveList, unsigned long WavePoolOffset, unsigned long fileNo) : DLS::Sample((DLS::File*) pFile, waveList, WavePoolOffset) {      Sample::Sample(File* pFile, RIFF::List* waveList, file_offset_t WavePoolOffset, unsigned long fileNo, int index)
391            : DLS::Sample((DLS::File*) pFile, waveList, WavePoolOffset)
392        {
393          static const DLS::Info::string_length_t fixedStringLengths[] = {          static const DLS::Info::string_length_t fixedStringLengths[] = {
394              { CHUNK_ID_INAM, 64 },              { CHUNK_ID_INAM, 64 },
395              { 0, 0 }              { 0, 0 }
# Line 377  namespace { Line 399  namespace {
399          FileNo = fileNo;          FileNo = fileNo;
400    
401          __resetCRC(crc);          __resetCRC(crc);
402            // if this is not a new sample, try to get the sample's already existing
403            // CRC32 checksum from disk, this checksum will reflect the sample's CRC32
404            // checksum of the time when the sample was consciously modified by the
405            // user for the last time (by calling Sample::Write() that is).
406            if (index >= 0) { // not a new file ...
407                try {
408                    uint32_t crc = pFile->GetSampleChecksumByIndex(index);
409                    this->crc = crc;
410                } catch (...) {}
411            }
412    
413          pCk3gix = waveList->GetSubChunk(CHUNK_ID_3GIX);          pCk3gix = waveList->GetSubChunk(CHUNK_ID_3GIX);
414          if (pCk3gix) {          if (pCk3gix) {
415                pCk3gix->SetPos(0);
416    
417              uint16_t iSampleGroup = pCk3gix->ReadInt16();              uint16_t iSampleGroup = pCk3gix->ReadInt16();
418              pGroup = pFile->GetGroup(iSampleGroup);              pGroup = pFile->GetGroup(iSampleGroup);
419          } else { // '3gix' chunk missing          } else { // '3gix' chunk missing
# Line 389  namespace { Line 423  namespace {
423    
424          pCkSmpl = waveList->GetSubChunk(CHUNK_ID_SMPL);          pCkSmpl = waveList->GetSubChunk(CHUNK_ID_SMPL);
425          if (pCkSmpl) {          if (pCkSmpl) {
426                pCkSmpl->SetPos(0);
427    
428              Manufacturer  = pCkSmpl->ReadInt32();              Manufacturer  = pCkSmpl->ReadInt32();
429              Product       = pCkSmpl->ReadInt32();              Product       = pCkSmpl->ReadInt32();
430              SamplePeriod  = pCkSmpl->ReadInt32();              SamplePeriod  = pCkSmpl->ReadInt32();
# Line 435  namespace { Line 471  namespace {
471          Dithered          = false;          Dithered          = false;
472          TruncatedBits     = 0;          TruncatedBits     = 0;
473          if (Compressed) {          if (Compressed) {
474                ewav->SetPos(0);
475    
476              uint32_t version = ewav->ReadInt32();              uint32_t version = ewav->ReadInt32();
477              if (version == 3 && BitDepth == 24) {              if (version > 2 && BitDepth == 24) {
478                  Dithered = ewav->ReadInt32();                  Dithered = ewav->ReadInt32();
479                  ewav->SetPos(Channels == 2 ? 84 : 64);                  ewav->SetPos(Channels == 2 ? 84 : 64);
480                  TruncatedBits = ewav->ReadInt32();                  TruncatedBits = ewav->ReadInt32();
# Line 509  namespace { Line 547  namespace {
547          const int iReadAtOnce = 32*1024;          const int iReadAtOnce = 32*1024;
548          char* buf = new char[iReadAtOnce * orig->FrameSize];          char* buf = new char[iReadAtOnce * orig->FrameSize];
549          Sample* pOrig = (Sample*) orig; //HACK: remove constness for now          Sample* pOrig = (Sample*) orig; //HACK: remove constness for now
550          unsigned long restorePos = pOrig->GetPos();          file_offset_t restorePos = pOrig->GetPos();
551          pOrig->SetPos(0);          pOrig->SetPos(0);
552          SetPos(0);          SetPos(0);
553          for (unsigned long n = pOrig->Read(buf, iReadAtOnce); n;          for (file_offset_t n = pOrig->Read(buf, iReadAtOnce); n;
554                             n = pOrig->Read(buf, iReadAtOnce))                             n = pOrig->Read(buf, iReadAtOnce))
555          {          {
556              Write(buf, n);              Write(buf, n);
# Line 528  namespace { Line 566  namespace {
566       * Usually there is absolutely no need to call this method explicitly.       * Usually there is absolutely no need to call this method explicitly.
567       * It will be called automatically when File::Save() was called.       * It will be called automatically when File::Save() was called.
568       *       *
569         * @param pProgress - callback function for progress notification
570       * @throws DLS::Exception if FormatTag != DLS_WAVE_FORMAT_PCM or no sample data       * @throws DLS::Exception if FormatTag != DLS_WAVE_FORMAT_PCM or no sample data
571       *                        was provided yet       *                        was provided yet
572       * @throws gig::Exception if there is any invalid sample setting       * @throws gig::Exception if there is any invalid sample setting
573       */       */
574      void Sample::UpdateChunks() {      void Sample::UpdateChunks(progress_t* pProgress) {
575          // first update base class's chunks          // first update base class's chunks
576          DLS::Sample::UpdateChunks();          DLS::Sample::UpdateChunks(pProgress);
577    
578          // make sure 'smpl' chunk exists          // make sure 'smpl' chunk exists
579          pCkSmpl = pWaveList->GetSubChunk(CHUNK_ID_SMPL);          pCkSmpl = pWaveList->GetSubChunk(CHUNK_ID_SMPL);
# Line 596  namespace { Line 635  namespace {
635      void Sample::ScanCompressedSample() {      void Sample::ScanCompressedSample() {
636          //TODO: we have to add some more scans here (e.g. determine compression rate)          //TODO: we have to add some more scans here (e.g. determine compression rate)
637          this->SamplesTotal = 0;          this->SamplesTotal = 0;
638          std::list<unsigned long> frameOffsets;          std::list<file_offset_t> frameOffsets;
639    
640          SamplesPerFrame = BitDepth == 24 ? 256 : 2048;          SamplesPerFrame = BitDepth == 24 ? 256 : 2048;
641          WorstCaseFrameSize = SamplesPerFrame * FrameSize + Channels; // +Channels for compression flag          WorstCaseFrameSize = SamplesPerFrame * FrameSize + Channels; // +Channels for compression flag
# Line 612  namespace { Line 651  namespace {
651                  const int mode_l = pCkData->ReadUint8();                  const int mode_l = pCkData->ReadUint8();
652                  const int mode_r = pCkData->ReadUint8();                  const int mode_r = pCkData->ReadUint8();
653                  if (mode_l > 5 || mode_r > 5) throw gig::Exception("Unknown compression mode");                  if (mode_l > 5 || mode_r > 5) throw gig::Exception("Unknown compression mode");
654                  const unsigned long frameSize = bytesPerFrame[mode_l] + bytesPerFrame[mode_r];                  const file_offset_t frameSize = bytesPerFrame[mode_l] + bytesPerFrame[mode_r];
655    
656                  if (pCkData->RemainingBytes() <= frameSize) {                  if (pCkData->RemainingBytes() <= frameSize) {
657                      SamplesInLastFrame =                      SamplesInLastFrame =
# Line 631  namespace { Line 670  namespace {
670    
671                  const int mode = pCkData->ReadUint8();                  const int mode = pCkData->ReadUint8();
672                  if (mode > 5) throw gig::Exception("Unknown compression mode");                  if (mode > 5) throw gig::Exception("Unknown compression mode");
673                  const unsigned long frameSize = bytesPerFrame[mode];                  const file_offset_t frameSize = bytesPerFrame[mode];
674    
675                  if (pCkData->RemainingBytes() <= frameSize) {                  if (pCkData->RemainingBytes() <= frameSize) {
676                      SamplesInLastFrame =                      SamplesInLastFrame =
# Line 647  namespace { Line 686  namespace {
686    
687          // Build the frames table (which is used for fast resolving of a frame's chunk offset)          // Build the frames table (which is used for fast resolving of a frame's chunk offset)
688          if (FrameTable) delete[] FrameTable;          if (FrameTable) delete[] FrameTable;
689          FrameTable = new unsigned long[frameOffsets.size()];          FrameTable = new file_offset_t[frameOffsets.size()];
690          std::list<unsigned long>::iterator end  = frameOffsets.end();          std::list<file_offset_t>::iterator end  = frameOffsets.end();
691          std::list<unsigned long>::iterator iter = frameOffsets.begin();          std::list<file_offset_t>::iterator iter = frameOffsets.begin();
692          for (int i = 0; iter != end; i++, iter++) {          for (int i = 0; iter != end; i++, iter++) {
693              FrameTable[i] = *iter;              FrameTable[i] = *iter;
694          }          }
# Line 690  namespace { Line 729  namespace {
729       *                      the cached sample data in bytes       *                      the cached sample data in bytes
730       * @see                 ReleaseSampleData(), Read(), SetPos()       * @see                 ReleaseSampleData(), Read(), SetPos()
731       */       */
732      buffer_t Sample::LoadSampleData(unsigned long SampleCount) {      buffer_t Sample::LoadSampleData(file_offset_t SampleCount) {
733          return LoadSampleDataWithNullSamplesExtension(SampleCount, 0); // 0 amount of NullSamples          return LoadSampleDataWithNullSamplesExtension(SampleCount, 0); // 0 amount of NullSamples
734      }      }
735    
# Line 749  namespace { Line 788  namespace {
788       *                           size of the cached sample data in bytes       *                           size of the cached sample data in bytes
789       * @see                      ReleaseSampleData(), Read(), SetPos()       * @see                      ReleaseSampleData(), Read(), SetPos()
790       */       */
791      buffer_t Sample::LoadSampleDataWithNullSamplesExtension(unsigned long SampleCount, uint NullSamplesCount) {      buffer_t Sample::LoadSampleDataWithNullSamplesExtension(file_offset_t SampleCount, uint NullSamplesCount) {
792          if (SampleCount > this->SamplesTotal) SampleCount = this->SamplesTotal;          if (SampleCount > this->SamplesTotal) SampleCount = this->SamplesTotal;
793          if (RAMCache.pStart) delete[] (int8_t*) RAMCache.pStart;          if (RAMCache.pStart) delete[] (int8_t*) RAMCache.pStart;
794          unsigned long allocationsize = (SampleCount + NullSamplesCount) * this->FrameSize;          file_offset_t allocationsize = (SampleCount + NullSamplesCount) * this->FrameSize;
795          SetPos(0); // reset read position to begin of sample          SetPos(0); // reset read position to begin of sample
796          RAMCache.pStart            = new int8_t[allocationsize];          RAMCache.pStart            = new int8_t[allocationsize];
797          RAMCache.Size              = Read(RAMCache.pStart, SampleCount) * this->FrameSize;          RAMCache.Size              = Read(RAMCache.pStart, SampleCount) * this->FrameSize;
# Line 816  namespace { Line 855  namespace {
855       * FormatTag must be DLS_WAVE_FORMAT_PCM. Trying to resize samples with       * FormatTag must be DLS_WAVE_FORMAT_PCM. Trying to resize samples with
856       * other formats will fail!       * other formats will fail!
857       *       *
858       * @param iNewSize - new sample wave data size in sample points (must be       * @param NewSize - new sample wave data size in sample points (must be
859       *                   greater than zero)       *                  greater than zero)
860       * @throws DLS::Excecption if FormatTag != DLS_WAVE_FORMAT_PCM       * @throws DLS::Excecption if FormatTag != DLS_WAVE_FORMAT_PCM
861       *                         or if \a iNewSize is less than 1       * @throws DLS::Exception if \a NewSize is less than 1 or unrealistic large
862       * @throws gig::Exception if existing sample is compressed       * @throws gig::Exception if existing sample is compressed
863       * @see DLS::Sample::GetSize(), DLS::Sample::FrameSize,       * @see DLS::Sample::GetSize(), DLS::Sample::FrameSize,
864       *      DLS::Sample::FormatTag, File::Save()       *      DLS::Sample::FormatTag, File::Save()
865       */       */
866      void Sample::Resize(int iNewSize) {      void Sample::Resize(file_offset_t NewSize) {
867          if (Compressed) throw gig::Exception("There is no support for modifying compressed samples (yet)");          if (Compressed) throw gig::Exception("There is no support for modifying compressed samples (yet)");
868          DLS::Sample::Resize(iNewSize);          DLS::Sample::Resize(NewSize);
869      }      }
870    
871      /**      /**
# Line 850  namespace { Line 889  namespace {
889       * @returns            the new sample position       * @returns            the new sample position
890       * @see                Read()       * @see                Read()
891       */       */
892      unsigned long Sample::SetPos(unsigned long SampleCount, RIFF::stream_whence_t Whence) {      file_offset_t Sample::SetPos(file_offset_t SampleCount, RIFF::stream_whence_t Whence) {
893          if (Compressed) {          if (Compressed) {
894              switch (Whence) {              switch (Whence) {
895                  case RIFF::stream_curpos:                  case RIFF::stream_curpos:
# Line 868  namespace { Line 907  namespace {
907              }              }
908              if (this->SamplePos > this->SamplesTotal) this->SamplePos = this->SamplesTotal;              if (this->SamplePos > this->SamplesTotal) this->SamplePos = this->SamplesTotal;
909    
910              unsigned long frame = this->SamplePos / 2048; // to which frame to jump              file_offset_t frame = this->SamplePos / 2048; // to which frame to jump
911              this->FrameOffset   = this->SamplePos % 2048; // offset (in sample points) within that frame              this->FrameOffset   = this->SamplePos % 2048; // offset (in sample points) within that frame
912              pCkData->SetPos(FrameTable[frame]);           // set chunk pointer to the start of sought frame              pCkData->SetPos(FrameTable[frame]);           // set chunk pointer to the start of sought frame
913              return this->SamplePos;              return this->SamplePos;
914          }          }
915          else { // not compressed          else { // not compressed
916              unsigned long orderedBytes = SampleCount * this->FrameSize;              file_offset_t orderedBytes = SampleCount * this->FrameSize;
917              unsigned long result = pCkData->SetPos(orderedBytes, Whence);              file_offset_t result = pCkData->SetPos(orderedBytes, Whence);
918              return (result == orderedBytes) ? SampleCount              return (result == orderedBytes) ? SampleCount
919                                              : result / this->FrameSize;                                              : result / this->FrameSize;
920          }          }
# Line 884  namespace { Line 923  namespace {
923      /**      /**
924       * Returns the current position in the sample (in sample points).       * Returns the current position in the sample (in sample points).
925       */       */
926      unsigned long Sample::GetPos() const {      file_offset_t Sample::GetPos() const {
927          if (Compressed) return SamplePos;          if (Compressed) return SamplePos;
928          else            return pCkData->GetPos() / FrameSize;          else            return pCkData->GetPos() / FrameSize;
929      }      }
# Line 923  namespace { Line 962  namespace {
962       * @returns                number of successfully read sample points       * @returns                number of successfully read sample points
963       * @see                    CreateDecompressionBuffer()       * @see                    CreateDecompressionBuffer()
964       */       */
965      unsigned long Sample::ReadAndLoop(void* pBuffer, unsigned long SampleCount, playback_state_t* pPlaybackState,      file_offset_t Sample::ReadAndLoop(void* pBuffer, file_offset_t SampleCount, playback_state_t* pPlaybackState,
966                                        DimensionRegion* pDimRgn, buffer_t* pExternalDecompressionBuffer) {                                        DimensionRegion* pDimRgn, buffer_t* pExternalDecompressionBuffer) {
967          unsigned long samplestoread = SampleCount, totalreadsamples = 0, readsamples, samplestoloopend;          file_offset_t samplestoread = SampleCount, totalreadsamples = 0, readsamples, samplestoloopend;
968          uint8_t* pDst = (uint8_t*) pBuffer;          uint8_t* pDst = (uint8_t*) pBuffer;
969    
970          SetPos(pPlaybackState->position); // recover position from the last time          SetPos(pPlaybackState->position); // recover position from the last time
# Line 963  namespace { Line 1002  namespace {
1002                                  // reading, swap all sample frames so it reflects                                  // reading, swap all sample frames so it reflects
1003                                  // backward playback                                  // backward playback
1004    
1005                                  unsigned long swapareastart       = totalreadsamples;                                  file_offset_t swapareastart       = totalreadsamples;
1006                                  unsigned long loopoffset          = GetPos() - loop.LoopStart;                                  file_offset_t loopoffset          = GetPos() - loop.LoopStart;
1007                                  unsigned long samplestoreadinloop = Min(samplestoread, loopoffset);                                  file_offset_t samplestoreadinloop = Min(samplestoread, loopoffset);
1008                                  unsigned long reverseplaybackend  = GetPos() - samplestoreadinloop;                                  file_offset_t reverseplaybackend  = GetPos() - samplestoreadinloop;
1009    
1010                                  SetPos(reverseplaybackend);                                  SetPos(reverseplaybackend);
1011    
# Line 1014  namespace { Line 1053  namespace {
1053                          // reading, swap all sample frames so it reflects                          // reading, swap all sample frames so it reflects
1054                          // backward playback                          // backward playback
1055    
1056                          unsigned long swapareastart       = totalreadsamples;                          file_offset_t swapareastart       = totalreadsamples;
1057                          unsigned long loopoffset          = GetPos() - loop.LoopStart;                          file_offset_t loopoffset          = GetPos() - loop.LoopStart;
1058                          unsigned long samplestoreadinloop = (this->LoopPlayCount) ? Min(samplestoread, pPlaybackState->loop_cycles_left * loop.LoopLength - loopoffset)                          file_offset_t samplestoreadinloop = (this->LoopPlayCount) ? Min(samplestoread, pPlaybackState->loop_cycles_left * loop.LoopLength - loopoffset)
1059                                                                                    : samplestoread;                                                                                    : samplestoread;
1060                          unsigned long reverseplaybackend  = loop.LoopStart + Abs((loopoffset - samplestoreadinloop) % loop.LoopLength);                          file_offset_t reverseplaybackend  = loop.LoopStart + Abs((loopoffset - samplestoreadinloop) % loop.LoopLength);
1061    
1062                          SetPos(reverseplaybackend);                          SetPos(reverseplaybackend);
1063    
# Line 1098  namespace { Line 1137  namespace {
1137       * @returns            number of successfully read sample points       * @returns            number of successfully read sample points
1138       * @see                SetPos(), CreateDecompressionBuffer()       * @see                SetPos(), CreateDecompressionBuffer()
1139       */       */
1140      unsigned long Sample::Read(void* pBuffer, unsigned long SampleCount, buffer_t* pExternalDecompressionBuffer) {      file_offset_t Sample::Read(void* pBuffer, file_offset_t SampleCount, buffer_t* pExternalDecompressionBuffer) {
1141          if (SampleCount == 0) return 0;          if (SampleCount == 0) return 0;
1142          if (!Compressed) {          if (!Compressed) {
1143              if (BitDepth == 24) {              if (BitDepth == 24) {
# Line 1113  namespace { Line 1152  namespace {
1152          else {          else {
1153              if (this->SamplePos >= this->SamplesTotal) return 0;              if (this->SamplePos >= this->SamplesTotal) return 0;
1154              //TODO: efficiency: maybe we should test for an average compression rate              //TODO: efficiency: maybe we should test for an average compression rate
1155              unsigned long assumedsize      = GuessSize(SampleCount),              file_offset_t assumedsize      = GuessSize(SampleCount),
1156                            remainingbytes   = 0,           // remaining bytes in the local buffer                            remainingbytes   = 0,           // remaining bytes in the local buffer
1157                            remainingsamples = SampleCount,                            remainingsamples = SampleCount,
1158                            copysamples, skipsamples,                            copysamples, skipsamples,
# Line 1136  namespace { Line 1175  namespace {
1175              remainingbytes = pCkData->Read(pSrc, assumedsize, 1);              remainingbytes = pCkData->Read(pSrc, assumedsize, 1);
1176    
1177              while (remainingsamples && remainingbytes) {              while (remainingsamples && remainingbytes) {
1178                  unsigned long framesamples = SamplesPerFrame;                  file_offset_t framesamples = SamplesPerFrame;
1179                  unsigned long framebytes, rightChannelOffset = 0, nextFrameOffset;                  file_offset_t framebytes, rightChannelOffset = 0, nextFrameOffset;
1180    
1181                  int mode_l = *pSrc++, mode_r = 0;                  int mode_l = *pSrc++, mode_r = 0;
1182    
# Line 1287  namespace { Line 1326  namespace {
1326       * @throws gig::Exception if sample is compressed       * @throws gig::Exception if sample is compressed
1327       * @see DLS::LoadSampleData()       * @see DLS::LoadSampleData()
1328       */       */
1329      unsigned long Sample::Write(void* pBuffer, unsigned long SampleCount) {      file_offset_t Sample::Write(void* pBuffer, file_offset_t SampleCount) {
1330          if (Compressed) throw gig::Exception("There is no support for writing compressed gig samples (yet)");          if (Compressed) throw gig::Exception("There is no support for writing compressed gig samples (yet)");
1331    
1332          // if this is the first write in this sample, reset the          // if this is the first write in this sample, reset the
# Line 1296  namespace { Line 1335  namespace {
1335              __resetCRC(crc);              __resetCRC(crc);
1336          }          }
1337          if (GetSize() < SampleCount) throw Exception("Could not write sample data, current sample size to small");          if (GetSize() < SampleCount) throw Exception("Could not write sample data, current sample size to small");
1338          unsigned long res;          file_offset_t res;
1339          if (BitDepth == 24) {          if (BitDepth == 24) {
1340              res = pCkData->Write(pBuffer, SampleCount * FrameSize, 1) / FrameSize;              res = pCkData->Write(pBuffer, SampleCount * FrameSize, 1) / FrameSize;
1341          } else { // 16 bit          } else { // 16 bit
# Line 1308  namespace { Line 1347  namespace {
1347          // if this is the last write, update the checksum chunk in the          // if this is the last write, update the checksum chunk in the
1348          // file          // file
1349          if (pCkData->GetPos() == pCkData->GetSize()) {          if (pCkData->GetPos() == pCkData->GetSize()) {
1350                __finalizeCRC(crc);
1351              File* pFile = static_cast<File*>(GetParent());              File* pFile = static_cast<File*>(GetParent());
1352              pFile->SetSampleChecksum(this, __encodeCRC(crc));              pFile->SetSampleChecksum(this, crc);
1353          }          }
1354          return res;          return res;
1355      }      }
# Line 1330  namespace { Line 1370  namespace {
1370       * @returns allocated decompression buffer       * @returns allocated decompression buffer
1371       * @see DestroyDecompressionBuffer()       * @see DestroyDecompressionBuffer()
1372       */       */
1373      buffer_t Sample::CreateDecompressionBuffer(unsigned long MaxReadSize) {      buffer_t Sample::CreateDecompressionBuffer(file_offset_t MaxReadSize) {
1374          buffer_t result;          buffer_t result;
1375          const double worstCaseHeaderOverhead =          const double worstCaseHeaderOverhead =
1376                  (256.0 /*frame size*/ + 12.0 /*header*/ + 2.0 /*compression type flag (stereo)*/) / 256.0;                  (256.0 /*frame size*/ + 12.0 /*header*/ + 2.0 /*compression type flag (stereo)*/) / 256.0;
1377          result.Size              = (unsigned long) (double(MaxReadSize) * 3.0 /*(24 Bit)*/ * 2.0 /*stereo*/ * worstCaseHeaderOverhead);          result.Size              = (file_offset_t) (double(MaxReadSize) * 3.0 /*(24 Bit)*/ * 2.0 /*stereo*/ * worstCaseHeaderOverhead);
1378          result.pStart            = new int8_t[result.Size];          result.pStart            = new int8_t[result.Size];
1379          result.NullExtensionSize = 0;          result.NullExtensionSize = 0;
1380          return result;          return result;
# Line 1368  namespace { Line 1408  namespace {
1408          return pGroup;          return pGroup;
1409      }      }
1410    
1411        /**
1412         * Returns the CRC-32 checksum of the sample's raw wave form data at the
1413         * time when this sample's wave form data was modified for the last time
1414         * by calling Write(). This checksum only covers the raw wave form data,
1415         * not any meta informations like i.e. bit depth or loop points. Since
1416         * this method just returns the checksum stored for this sample i.e. when
1417         * the gig file was loaded, this method returns immediately. So it does no
1418         * recalcuation of the checksum with the currently available sample wave
1419         * form data.
1420         *
1421         * @see VerifyWaveData()
1422         */
1423        uint32_t Sample::GetWaveDataCRC32Checksum() {
1424            return crc;
1425        }
1426    
1427        /**
1428         * Checks the integrity of this sample's raw audio wave data. Whenever a
1429         * Sample's raw wave data is intentionally modified (i.e. by calling
1430         * Write() and supplying the new raw audio wave form data) a CRC32 checksum
1431         * is calculated and stored/updated for this sample, along to the sample's
1432         * meta informations.
1433         *
1434         * Now by calling this method the current raw audio wave data is checked
1435         * against the already stored CRC32 check sum in order to check whether the
1436         * sample data had been damaged unintentionally for some reason. Since by
1437         * calling this method always the entire raw audio wave data has to be
1438         * read, verifying all samples this way may take a long time accordingly.
1439         * And that's also the reason why the sample integrity is not checked by
1440         * default whenever a gig file is loaded. So this method must be called
1441         * explicitly to fulfill this task.
1442         *
1443         * @param pActually - (optional) if provided, will be set to the actually
1444         *                    calculated checksum of the current raw wave form data,
1445         *                    you can get the expected checksum instead by calling
1446         *                    GetWaveDataCRC32Checksum()
1447         * @returns true if sample is OK or false if the sample is damaged
1448         * @throws Exception if no checksum had been stored to disk for this
1449         *         sample yet, or on I/O issues
1450         * @see GetWaveDataCRC32Checksum()
1451         */
1452        bool Sample::VerifyWaveData(uint32_t* pActually) {
1453            //File* pFile = static_cast<File*>(GetParent());
1454            uint32_t crc = CalculateWaveDataChecksum();
1455            if (pActually) *pActually = crc;
1456            return crc == this->crc;
1457        }
1458    
1459        uint32_t Sample::CalculateWaveDataChecksum() {
1460            const size_t sz = 20*1024; // 20kB buffer size
1461            std::vector<uint8_t> buffer(sz);
1462            buffer.resize(sz);
1463    
1464            const size_t n = sz / FrameSize;
1465            SetPos(0);
1466            uint32_t crc = 0;
1467            __resetCRC(crc);
1468            while (true) {
1469                file_offset_t nRead = Read(&buffer[0], n);
1470                if (nRead <= 0) break;
1471                __calculateCRC(&buffer[0], nRead * FrameSize, crc);
1472            }
1473            __finalizeCRC(crc);
1474            return crc;
1475        }
1476    
1477      Sample::~Sample() {      Sample::~Sample() {
1478          Instances--;          Instances--;
1479          if (!Instances && InternalDecompressionBuffer.Size) {          if (!Instances && InternalDecompressionBuffer.Size) {
# Line 1384  namespace { Line 1490  namespace {
1490  // *************** DimensionRegion ***************  // *************** DimensionRegion ***************
1491  // *  // *
1492    
1493      uint                               DimensionRegion::Instances       = 0;      size_t                             DimensionRegion::Instances       = 0;
1494      DimensionRegion::VelocityTableMap* DimensionRegion::pVelocityTables = NULL;      DimensionRegion::VelocityTableMap* DimensionRegion::pVelocityTables = NULL;
1495    
1496      DimensionRegion::DimensionRegion(Region* pParent, RIFF::List* _3ewl) : DLS::Sampler(_3ewl) {      DimensionRegion::DimensionRegion(Region* pParent, RIFF::List* _3ewl) : DLS::Sampler(_3ewl) {
# Line 1400  namespace { Line 1506  namespace {
1506    
1507          RIFF::Chunk* _3ewa = _3ewl->GetSubChunk(CHUNK_ID_3EWA);          RIFF::Chunk* _3ewa = _3ewl->GetSubChunk(CHUNK_ID_3EWA);
1508          if (_3ewa) { // if '3ewa' chunk exists          if (_3ewa) { // if '3ewa' chunk exists
1509                _3ewa->SetPos(0);
1510    
1511              _3ewa->ReadInt32(); // unknown, always == chunk size ?              _3ewa->ReadInt32(); // unknown, always == chunk size ?
1512              LFO3Frequency = (double) GIG_EXP_DECODE(_3ewa->ReadInt32());              LFO3Frequency = (double) GIG_EXP_DECODE(_3ewa->ReadInt32());
1513              EG3Attack     = (double) GIG_EXP_DECODE(_3ewa->ReadInt32());              EG3Attack     = (double) GIG_EXP_DECODE(_3ewa->ReadInt32());
# Line 1578  namespace { Line 1686  namespace {
1686              EG2Attack                       = 0.0;              EG2Attack                       = 0.0;
1687              EG2Decay1                       = 0.005;              EG2Decay1                       = 0.005;
1688              EG2Sustain                      = 1000;              EG2Sustain                      = 1000;
1689              EG2Release                      = 0.3;              EG2Release                      = 60;
1690              LFO2ControlDepth                = 0;              LFO2ControlDepth                = 0;
1691              LFO2Frequency                   = 1.0;              LFO2Frequency                   = 1.0;
1692              LFO2InternalDepth               = 0;              LFO2InternalDepth               = 0;
# Line 1632  namespace { Line 1740  namespace {
1740              VCFType                         = vcf_type_lowpass;              VCFType                         = vcf_type_lowpass;
1741              memset(DimensionUpperLimits, 127, 8);              memset(DimensionUpperLimits, 127, 8);
1742          }          }
1743            // chunk for own format extensions, these will *NOT* work with Gigasampler/GigaStudio !
1744            RIFF::Chunk* lsde = _3ewl->GetSubChunk(CHUNK_ID_LSDE);
1745            if (lsde) { // format extension for EG behavior options
1746                lsde->SetPos(0);
1747    
1748                eg_opt_t* pEGOpts[2] = { &EG1Options, &EG2Options };
1749                for (int i = 0; i < 2; ++i) { // NOTE: we reserved a 3rd byte for a potential future EG3 option
1750                    unsigned char byte = lsde->ReadUint8();
1751                    pEGOpts[i]->AttackCancel     = byte & 1;
1752                    pEGOpts[i]->AttackHoldCancel = byte & (1 << 1);
1753                    pEGOpts[i]->Decay1Cancel     = byte & (1 << 2);
1754                    pEGOpts[i]->Decay2Cancel     = byte & (1 << 3);
1755                    pEGOpts[i]->ReleaseCancel    = byte & (1 << 4);
1756                }
1757            }
1758            // format extension for sustain pedal up effect on release trigger samples
1759            if (lsde && lsde->GetSize() > 3) { // NOTE: we reserved the 3rd byte for a potential future EG3 option
1760                lsde->SetPos(3);
1761                uint8_t byte = lsde->ReadUint8();
1762                SustainReleaseTrigger   = static_cast<sust_rel_trg_t>(byte & 0x03);
1763                NoNoteOffReleaseTrigger = byte >> 7;
1764            } else {
1765                SustainReleaseTrigger   = sust_rel_trg_none;
1766                NoNoteOffReleaseTrigger = false;
1767            }
1768    
1769          pVelocityAttenuationTable = GetVelocityTable(VelocityResponseCurve,          pVelocityAttenuationTable = GetVelocityTable(VelocityResponseCurve,
1770                                                       VelocityResponseDepth,                                                       VelocityResponseDepth,
# Line 1737  namespace { Line 1870  namespace {
1870          }          }
1871      }      }
1872    
1873        void DimensionRegion::serialize(Serialization::Archive* archive) {
1874            // in case this class will become backward incompatible one day,
1875            // then set a version and minimum version for this class like:
1876            //archive->setVersion(*this, 2);
1877            //archive->setMinVersion(*this, 1);
1878    
1879            SRLZ(VelocityUpperLimit);
1880            SRLZ(EG1PreAttack);
1881            SRLZ(EG1Attack);
1882            SRLZ(EG1Decay1);
1883            SRLZ(EG1Decay2);
1884            SRLZ(EG1InfiniteSustain);
1885            SRLZ(EG1Sustain);
1886            SRLZ(EG1Release);
1887            SRLZ(EG1Hold);
1888            SRLZ(EG1Controller);
1889            SRLZ(EG1ControllerInvert);
1890            SRLZ(EG1ControllerAttackInfluence);
1891            SRLZ(EG1ControllerDecayInfluence);
1892            SRLZ(EG1ControllerReleaseInfluence);
1893            SRLZ(LFO1Frequency);
1894            SRLZ(LFO1InternalDepth);
1895            SRLZ(LFO1ControlDepth);
1896            SRLZ(LFO1Controller);
1897            SRLZ(LFO1FlipPhase);
1898            SRLZ(LFO1Sync);
1899            SRLZ(EG2PreAttack);
1900            SRLZ(EG2Attack);
1901            SRLZ(EG2Decay1);
1902            SRLZ(EG2Decay2);
1903            SRLZ(EG2InfiniteSustain);
1904            SRLZ(EG2Sustain);
1905            SRLZ(EG2Release);
1906            SRLZ(EG2Controller);
1907            SRLZ(EG2ControllerInvert);
1908            SRLZ(EG2ControllerAttackInfluence);
1909            SRLZ(EG2ControllerDecayInfluence);
1910            SRLZ(EG2ControllerReleaseInfluence);
1911            SRLZ(LFO2Frequency);
1912            SRLZ(LFO2InternalDepth);
1913            SRLZ(LFO2ControlDepth);
1914            SRLZ(LFO2Controller);
1915            SRLZ(LFO2FlipPhase);
1916            SRLZ(LFO2Sync);
1917            SRLZ(EG3Attack);
1918            SRLZ(EG3Depth);
1919            SRLZ(LFO3Frequency);
1920            SRLZ(LFO3InternalDepth);
1921            SRLZ(LFO3ControlDepth);
1922            SRLZ(LFO3Controller);
1923            SRLZ(LFO3Sync);
1924            SRLZ(VCFEnabled);
1925            SRLZ(VCFType);
1926            SRLZ(VCFCutoffController);
1927            SRLZ(VCFCutoffControllerInvert);
1928            SRLZ(VCFCutoff);
1929            SRLZ(VCFVelocityCurve);
1930            SRLZ(VCFVelocityScale);
1931            SRLZ(VCFVelocityDynamicRange);
1932            SRLZ(VCFResonance);
1933            SRLZ(VCFResonanceDynamic);
1934            SRLZ(VCFResonanceController);
1935            SRLZ(VCFKeyboardTracking);
1936            SRLZ(VCFKeyboardTrackingBreakpoint);
1937            SRLZ(VelocityResponseCurve);
1938            SRLZ(VelocityResponseDepth);
1939            SRLZ(VelocityResponseCurveScaling);
1940            SRLZ(ReleaseVelocityResponseCurve);
1941            SRLZ(ReleaseVelocityResponseDepth);
1942            SRLZ(ReleaseTriggerDecay);
1943            SRLZ(Crossfade);
1944            SRLZ(PitchTrack);
1945            SRLZ(DimensionBypass);
1946            SRLZ(Pan);
1947            SRLZ(SelfMask);
1948            SRLZ(AttenuationController);
1949            SRLZ(InvertAttenuationController);
1950            SRLZ(AttenuationControllerThreshold);
1951            SRLZ(ChannelOffset);
1952            SRLZ(SustainDefeat);
1953            SRLZ(MSDecode);
1954            //SRLZ(SampleStartOffset);
1955            SRLZ(SampleAttenuation);
1956            SRLZ(EG1Options);
1957            SRLZ(EG2Options);
1958            SRLZ(SustainReleaseTrigger);
1959            SRLZ(NoNoteOffReleaseTrigger);
1960    
1961            // derived attributes from DLS::Sampler
1962            SRLZ(FineTune);
1963            SRLZ(Gain);
1964        }
1965    
1966      /**      /**
1967       * Updates the respective member variable and updates @c SampleAttenuation       * Updates the respective member variable and updates @c SampleAttenuation
1968       * which depends on this value.       * which depends on this value.
# Line 1752  namespace { Line 1978  namespace {
1978       *       *
1979       * Usually there is absolutely no need to call this method explicitly.       * Usually there is absolutely no need to call this method explicitly.
1980       * It will be called automatically when File::Save() was called.       * It will be called automatically when File::Save() was called.
1981         *
1982         * @param pProgress - callback function for progress notification
1983       */       */
1984      void DimensionRegion::UpdateChunks() {      void DimensionRegion::UpdateChunks(progress_t* pProgress) {
1985          // first update base class's chunk          // first update base class's chunk
1986          DLS::Sampler::UpdateChunks();          DLS::Sampler::UpdateChunks(pProgress);
1987    
1988          RIFF::Chunk* wsmp = pParentList->GetSubChunk(CHUNK_ID_WSMP);          RIFF::Chunk* wsmp = pParentList->GetSubChunk(CHUNK_ID_WSMP);
1989          uint8_t* pData = (uint8_t*) wsmp->LoadChunkData();          uint8_t* pData = (uint8_t*) wsmp->LoadChunkData();
# Line 1768  namespace { Line 1996  namespace {
1996          RIFF::Chunk* _3ewa = pParentList->GetSubChunk(CHUNK_ID_3EWA);          RIFF::Chunk* _3ewa = pParentList->GetSubChunk(CHUNK_ID_3EWA);
1997          if (!_3ewa) {          if (!_3ewa) {
1998              File* pFile = (File*) GetParent()->GetParent()->GetParent();              File* pFile = (File*) GetParent()->GetParent()->GetParent();
1999              bool version3 = pFile->pVersion && pFile->pVersion->major == 3;              bool versiongt2 = pFile->pVersion && pFile->pVersion->major > 2;
2000              _3ewa = pParentList->AddSubChunk(CHUNK_ID_3EWA, version3 ? 148 : 140);              _3ewa = pParentList->AddSubChunk(CHUNK_ID_3EWA, versiongt2 ? 148 : 140);
2001          }          }
2002          pData = (uint8_t*) _3ewa->LoadChunkData();          pData = (uint8_t*) _3ewa->LoadChunkData();
2003    
2004          // update '3ewa' chunk with DimensionRegion's current settings          // update '3ewa' chunk with DimensionRegion's current settings
2005    
2006          const uint32_t chunksize = _3ewa->GetNewSize();          const uint32_t chunksize = (uint32_t) _3ewa->GetNewSize();
2007          store32(&pData[0], chunksize); // unknown, always chunk size?          store32(&pData[0], chunksize); // unknown, always chunk size?
2008    
2009          const int32_t lfo3freq = (int32_t) GIG_EXP_ENCODE(LFO3Frequency);          const int32_t lfo3freq = (int32_t) GIG_EXP_ENCODE(LFO3Frequency);
# Line 2035  namespace { Line 2263  namespace {
2263          if (chunksize >= 148) {          if (chunksize >= 148) {
2264              memcpy(&pData[140], DimensionUpperLimits, 8);              memcpy(&pData[140], DimensionUpperLimits, 8);
2265          }          }
2266    
2267            // chunk for own format extensions, these will *NOT* work with
2268            // Gigasampler/GigaStudio !
2269            RIFF::Chunk* lsde = pParentList->GetSubChunk(CHUNK_ID_LSDE);
2270            const int lsdeSize = 4; // NOTE: we reserved the 3rd byte for a potential future EG3 option
2271            if (!lsde) {
2272                // only add this "LSDE" chunk if either EG options or release
2273                // trigger options deviate from their default behaviour
2274                eg_opt_t defaultOpt;
2275                if (memcmp(&EG1Options, &defaultOpt, sizeof(eg_opt_t)) ||
2276                    memcmp(&EG2Options, &defaultOpt, sizeof(eg_opt_t)) ||
2277                    SustainReleaseTrigger || NoNoteOffReleaseTrigger)
2278                {
2279                    lsde = pParentList->AddSubChunk(CHUNK_ID_LSDE, lsdeSize);
2280                    // move LSDE chunk to the end of parent list
2281                    pParentList->MoveSubChunk(lsde, (RIFF::Chunk*)NULL);
2282                }
2283            }
2284            if (lsde) {
2285                if (lsde->GetNewSize() < lsdeSize)
2286                    lsde->Resize(lsdeSize);
2287                // format extension for EG behavior options
2288                unsigned char* pData = (unsigned char*) lsde->LoadChunkData();
2289                eg_opt_t* pEGOpts[2] = { &EG1Options, &EG2Options };
2290                for (int i = 0; i < 2; ++i) { // NOTE: we reserved the 3rd byte for a potential future EG3 option
2291                    pData[i] =
2292                        (pEGOpts[i]->AttackCancel     ? 1 : 0) |
2293                        (pEGOpts[i]->AttackHoldCancel ? (1<<1) : 0) |
2294                        (pEGOpts[i]->Decay1Cancel     ? (1<<2) : 0) |
2295                        (pEGOpts[i]->Decay2Cancel     ? (1<<3) : 0) |
2296                        (pEGOpts[i]->ReleaseCancel    ? (1<<4) : 0);
2297                }
2298                // format extension for release trigger options
2299                pData[3] = static_cast<uint8_t>(SustainReleaseTrigger) | (NoNoteOffReleaseTrigger ? (1<<7) : 0);
2300            }
2301      }      }
2302    
2303      double* DimensionRegion::GetReleaseVelocityTable(curve_type_t releaseVelocityResponseCurve, uint8_t releaseVelocityResponseDepth) {      double* DimensionRegion::GetReleaseVelocityTable(curve_type_t releaseVelocityResponseCurve, uint8_t releaseVelocityResponseDepth) {
# Line 2074  namespace { Line 2337  namespace {
2337      // get the corresponding velocity table from the table map or create & calculate that table if it doesn't exist yet      // get the corresponding velocity table from the table map or create & calculate that table if it doesn't exist yet
2338      double* DimensionRegion::GetVelocityTable(curve_type_t curveType, uint8_t depth, uint8_t scaling)      double* DimensionRegion::GetVelocityTable(curve_type_t curveType, uint8_t depth, uint8_t scaling)
2339      {      {
2340            // sanity check input parameters
2341            // (fallback to some default parameters on ill input)
2342            switch (curveType) {
2343                case curve_type_nonlinear:
2344                case curve_type_linear:
2345                    if (depth > 4) {
2346                        printf("Warning: Invalid depth (0x%x) for velocity curve type (0x%x).\n", depth, curveType);
2347                        depth   = 0;
2348                        scaling = 0;
2349                    }
2350                    break;
2351                case curve_type_special:
2352                    if (depth > 5) {
2353                        printf("Warning: Invalid depth (0x%x) for velocity curve type 'special'.\n", depth);
2354                        depth   = 0;
2355                        scaling = 0;
2356                    }
2357                    break;
2358                case curve_type_unknown:
2359                default:
2360                    printf("Warning: Unknown velocity curve type (0x%x).\n", curveType);
2361                    curveType = curve_type_linear;
2362                    depth     = 0;
2363                    scaling   = 0;
2364                    break;
2365            }
2366    
2367          double* table;          double* table;
2368          uint32_t tableKey = (curveType<<16) | (depth<<8) | scaling;          uint32_t tableKey = (curveType<<16) | (depth<<8) | scaling;
2369          if (pVelocityTables->count(tableKey)) { // if key exists          if (pVelocityTables->count(tableKey)) { // if key exists
# Line 2449  namespace { Line 2739  namespace {
2739    
2740              // unknown controller type              // unknown controller type
2741              default:              default:
2742                  throw gig::Exception("Unknown leverage controller type.");                  decodedcontroller.type = leverage_ctrl_t::type_none;
2743                    decodedcontroller.controller_number = 0;
2744                    printf("Warning: Unknown leverage controller type (0x%x).\n", EncodedController);
2745                    break;
2746          }          }
2747          return decodedcontroller;          return decodedcontroller;
2748      }      }
# Line 2943  namespace { Line 3236  namespace {
3236          }          }
3237          Layers = 1;          Layers = 1;
3238          File* file = (File*) GetParent()->GetParent();          File* file = (File*) GetParent()->GetParent();
3239          int dimensionBits = (file->pVersion && file->pVersion->major == 3) ? 8 : 5;          int dimensionBits = (file->pVersion && file->pVersion->major > 2) ? 8 : 5;
3240    
3241          // Actual Loading          // Actual Loading
3242    
# Line 2953  namespace { Line 3246  namespace {
3246    
3247          RIFF::Chunk* _3lnk = rgnList->GetSubChunk(CHUNK_ID_3LNK);          RIFF::Chunk* _3lnk = rgnList->GetSubChunk(CHUNK_ID_3LNK);
3248          if (_3lnk) {          if (_3lnk) {
3249                _3lnk->SetPos(0);
3250    
3251              DimensionRegions = _3lnk->ReadUint32();              DimensionRegions = _3lnk->ReadUint32();
3252              for (int i = 0; i < dimensionBits; i++) {              for (int i = 0; i < dimensionBits; i++) {
3253                  dimension_t dimension = static_cast<dimension_t>(_3lnk->ReadUint8());                  dimension_t dimension = static_cast<dimension_t>(_3lnk->ReadUint8());
# Line 2987  namespace { Line 3282  namespace {
3282              UpdateVelocityTable();              UpdateVelocityTable();
3283    
3284              // jump to start of the wave pool indices (if not already there)              // jump to start of the wave pool indices (if not already there)
3285              if (file->pVersion && file->pVersion->major == 3)              if (file->pVersion && file->pVersion->major > 2)
3286                  _3lnk->SetPos(68); // version 3 has a different 3lnk structure                  _3lnk->SetPos(68); // version 3 has a different 3lnk structure
3287              else              else
3288                  _3lnk->SetPos(44);                  _3lnk->SetPos(44);
# Line 2996  namespace { Line 3291  namespace {
3291              if (file->GetAutoLoad()) {              if (file->GetAutoLoad()) {
3292                  for (uint i = 0; i < DimensionRegions; i++) {                  for (uint i = 0; i < DimensionRegions; i++) {
3293                      uint32_t wavepoolindex = _3lnk->ReadUint32();                      uint32_t wavepoolindex = _3lnk->ReadUint32();
3294                      if (file->pWavePoolTable) pDimensionRegions[i]->pSample = GetSampleFromWavePool(wavepoolindex);                      if (file->pWavePoolTable && pDimensionRegions[i])
3295                            pDimensionRegions[i]->pSample = GetSampleFromWavePool(wavepoolindex);
3296                  }                  }
3297                  GetSample(); // load global region sample reference                  GetSample(); // load global region sample reference
3298              }              }
# Line 3026  namespace { Line 3322  namespace {
3322       * Usually there is absolutely no need to call this method explicitly.       * Usually there is absolutely no need to call this method explicitly.
3323       * It will be called automatically when File::Save() was called.       * It will be called automatically when File::Save() was called.
3324       *       *
3325         * @param pProgress - callback function for progress notification
3326       * @throws gig::Exception if samples cannot be dereferenced       * @throws gig::Exception if samples cannot be dereferenced
3327       */       */
3328      void Region::UpdateChunks() {      void Region::UpdateChunks(progress_t* pProgress) {
3329          // in the gig format we don't care about the Region's sample reference          // in the gig format we don't care about the Region's sample reference
3330          // but we still have to provide some existing one to not corrupt the          // but we still have to provide some existing one to not corrupt the
3331          // file, so to avoid the latter we simply always assign the sample of          // file, so to avoid the latter we simply always assign the sample of
# Line 3036  namespace { Line 3333  namespace {
3333          pSample = pDimensionRegions[0]->pSample;          pSample = pDimensionRegions[0]->pSample;
3334    
3335          // first update base class's chunks          // first update base class's chunks
3336          DLS::Region::UpdateChunks();          DLS::Region::UpdateChunks(pProgress);
3337    
3338          // update dimension region's chunks          // update dimension region's chunks
3339          for (int i = 0; i < DimensionRegions; i++) {          for (int i = 0; i < DimensionRegions; i++) {
3340              pDimensionRegions[i]->UpdateChunks();              pDimensionRegions[i]->UpdateChunks(pProgress);
3341          }          }
3342    
3343          File* pFile = (File*) GetParent()->GetParent();          File* pFile = (File*) GetParent()->GetParent();
3344          bool version3 = pFile->pVersion && pFile->pVersion->major == 3;          bool versiongt2 = pFile->pVersion && pFile->pVersion->major > 2;
3345          const int iMaxDimensions =  version3 ? 8 : 5;          const int iMaxDimensions =  versiongt2 ? 8 : 5;
3346          const int iMaxDimensionRegions = version3 ? 256 : 32;          const int iMaxDimensionRegions = versiongt2 ? 256 : 32;
3347    
3348          // make sure '3lnk' chunk exists          // make sure '3lnk' chunk exists
3349          RIFF::Chunk* _3lnk = pCkRegion->GetSubChunk(CHUNK_ID_3LNK);          RIFF::Chunk* _3lnk = pCkRegion->GetSubChunk(CHUNK_ID_3LNK);
3350          if (!_3lnk) {          if (!_3lnk) {
3351              const int _3lnkChunkSize = version3 ? 1092 : 172;              const int _3lnkChunkSize = versiongt2 ? 1092 : 172;
3352              _3lnk = pCkRegion->AddSubChunk(CHUNK_ID_3LNK, _3lnkChunkSize);              _3lnk = pCkRegion->AddSubChunk(CHUNK_ID_3LNK, _3lnkChunkSize);
3353              memset(_3lnk->LoadChunkData(), 0, _3lnkChunkSize);              memset(_3lnk->LoadChunkData(), 0, _3lnkChunkSize);
3354    
3355              // move 3prg to last position              // move 3prg to last position
3356              pCkRegion->MoveSubChunk(pCkRegion->GetSubList(LIST_TYPE_3PRG), 0);              pCkRegion->MoveSubChunk(pCkRegion->GetSubList(LIST_TYPE_3PRG), (RIFF::Chunk*)NULL);
3357          }          }
3358    
3359          // update dimension definitions in '3lnk' chunk          // update dimension definitions in '3lnk' chunk
# Line 3075  namespace { Line 3372  namespace {
3372          }          }
3373    
3374          // update wave pool table in '3lnk' chunk          // update wave pool table in '3lnk' chunk
3375          const int iWavePoolOffset = version3 ? 68 : 44;          const int iWavePoolOffset = versiongt2 ? 68 : 44;
3376          for (uint i = 0; i < iMaxDimensionRegions; i++) {          for (uint i = 0; i < iMaxDimensionRegions; i++) {
3377              int iWaveIndex = -1;              int iWaveIndex = -1;
3378              if (i < DimensionRegions) {              if (i < DimensionRegions) {
# Line 3130  namespace { Line 3427  namespace {
3427          int step = 1;          int step = 1;
3428          for (int i = 0 ; i < veldim ; i++) step <<= pDimensionDefinitions[i].bits;          for (int i = 0 ; i < veldim ; i++) step <<= pDimensionDefinitions[i].bits;
3429          int skipveldim = (step << pDimensionDefinitions[veldim].bits) - step;          int skipveldim = (step << pDimensionDefinitions[veldim].bits) - step;
         int end = step * pDimensionDefinitions[veldim].zones;  
3430    
3431          // loop through all dimension regions for all dimensions except the velocity dimension          // loop through all dimension regions for all dimensions except the velocity dimension
3432          int dim[8] = { 0 };          int dim[8] = { 0 };
3433          for (int i = 0 ; i < DimensionRegions ; i++) {          for (int i = 0 ; i < DimensionRegions ; i++) {
3434                const int end = i + step * pDimensionDefinitions[veldim].zones;
3435    
3436                // create a velocity table for all cases where the velocity zone is zero
3437              if (pDimensionRegions[i]->DimensionUpperLimits[veldim] ||              if (pDimensionRegions[i]->DimensionUpperLimits[veldim] ||
3438                  pDimensionRegions[i]->VelocityUpperLimit) {                  pDimensionRegions[i]->VelocityUpperLimit) {
3439                  // create the velocity table                  // create the velocity table
# Line 3166  namespace { Line 3464  namespace {
3464                  }                  }
3465              }              }
3466    
3467                // jump to the next case where the velocity zone is zero
3468              int j;              int j;
3469              int shift = 0;              int shift = 0;
3470              for (j = 0 ; j < Dimensions ; j++) {              for (j = 0 ; j < Dimensions ; j++) {
# Line 3216  namespace { Line 3515  namespace {
3515    
3516          // check if max. amount of dimensions reached          // check if max. amount of dimensions reached
3517          File* file = (File*) GetParent()->GetParent();          File* file = (File*) GetParent()->GetParent();
3518          const int iMaxDimensions = (file->pVersion && file->pVersion->major == 3) ? 8 : 5;          const int iMaxDimensions = (file->pVersion && file->pVersion->major > 2) ? 8 : 5;
3519          if (Dimensions >= iMaxDimensions)          if (Dimensions >= iMaxDimensions)
3520              throw gig::Exception("Could not add new dimension, max. amount of " + ToString(iMaxDimensions) + " dimensions already reached");              throw gig::Exception("Could not add new dimension, max. amount of " + ToString(iMaxDimensions) + " dimensions already reached");
3521          // check if max. amount of dimension bits reached          // check if max. amount of dimension bits reached
# Line 3508  namespace { Line 3807  namespace {
3807          }          }
3808    
3809          // delete temporary region          // delete temporary region
3810            tempRgn->DeleteChunks();
3811          delete tempRgn;          delete tempRgn;
3812    
3813          UpdateVelocityTable();          UpdateVelocityTable();
# Line 3647  namespace { Line 3947  namespace {
3947          }          }
3948    
3949          // delete temporary region          // delete temporary region
3950            tempRgn->DeleteChunks();
3951          delete tempRgn;          delete tempRgn;
3952    
3953          UpdateVelocityTable();          UpdateVelocityTable();
3954      }      }
3955    
3956        /** @brief Change type of an existing dimension.
3957         *
3958         * Alters the dimension type of a dimension already existing on this
3959         * region. If there is currently no dimension on this Region with type
3960         * @a oldType, then this call with throw an Exception. Likewise there are
3961         * cases where the requested dimension type cannot be performed. For example
3962         * if the new dimension type shall be gig::dimension_samplechannel, and the
3963         * current dimension has more than 2 zones. In such cases an Exception is
3964         * thrown as well.
3965         *
3966         * @param oldType - identifies the existing dimension to be changed
3967         * @param newType - to which dimension type it should be changed to
3968         * @throws gig::Exception if requested change cannot be performed
3969         */
3970        void Region::SetDimensionType(dimension_t oldType, dimension_t newType) {
3971            if (oldType == newType) return;
3972            dimension_def_t* def = GetDimensionDefinition(oldType);
3973            if (!def)
3974                throw gig::Exception("No dimension with provided old dimension type exists on this region");
3975            if (newType == dimension_samplechannel && def->zones != 2)
3976                throw gig::Exception("Cannot change to dimension type 'sample channel', because existing dimension does not have 2 zones");
3977            if (GetDimensionDefinition(newType))
3978                throw gig::Exception("There is already a dimension with requested new dimension type on this region");
3979            def->dimension  = newType;
3980            def->split_type = __resolveSplitType(newType);
3981        }
3982    
3983      DimensionRegion* Region::GetDimensionRegionByBit(const std::map<dimension_t,int>& DimCase) {      DimensionRegion* Region::GetDimensionRegionByBit(const std::map<dimension_t,int>& DimCase) {
3984          uint8_t bits[8] = {};          uint8_t bits[8] = {};
3985          for (std::map<dimension_t,int>::const_iterator it = DimCase.begin();          for (std::map<dimension_t,int>::const_iterator it = DimCase.begin();
# Line 3713  namespace { Line 4041  namespace {
4041      DimensionRegion* Region::GetDimensionRegionByValue(const uint DimValues[8]) {      DimensionRegion* Region::GetDimensionRegionByValue(const uint DimValues[8]) {
4042          uint8_t bits;          uint8_t bits;
4043          int veldim = -1;          int veldim = -1;
4044          int velbitpos;          int velbitpos = 0;
4045          int bitpos = 0;          int bitpos = 0;
4046          int dimregidx = 0;          int dimregidx = 0;
4047          for (uint i = 0; i < Dimensions; i++) {          for (uint i = 0; i < Dimensions; i++) {
# Line 3743  namespace { Line 4071  namespace {
4071              }              }
4072              bitpos += pDimensionDefinitions[i].bits;              bitpos += pDimensionDefinitions[i].bits;
4073          }          }
4074          DimensionRegion* dimreg = pDimensionRegions[dimregidx];          DimensionRegion* dimreg = pDimensionRegions[dimregidx & 255];
4075            if (!dimreg) return NULL;
4076          if (veldim != -1) {          if (veldim != -1) {
4077              // (dimreg is now the dimension region for the lowest velocity)              // (dimreg is now the dimension region for the lowest velocity)
4078              if (dimreg->VelocityTable) // custom defined zone ranges              if (dimreg->VelocityTable) // custom defined zone ranges
4079                  bits = dimreg->VelocityTable[DimValues[veldim]];                  bits = dimreg->VelocityTable[DimValues[veldim] & 127];
4080              else // normal split type              else // normal split type
4081                  bits = uint8_t(DimValues[veldim] / pDimensionDefinitions[veldim].zone_size);                  bits = uint8_t((DimValues[veldim] & 127) / pDimensionDefinitions[veldim].zone_size);
4082    
4083              dimregidx |= bits << velbitpos;              const uint8_t limiter_mask = (1 << pDimensionDefinitions[veldim].bits) - 1;
4084              dimreg = pDimensionRegions[dimregidx];              dimregidx |= (bits & limiter_mask) << velbitpos;
4085                dimreg = pDimensionRegions[dimregidx & 255];
4086          }          }
4087          return dimreg;          return dimreg;
4088      }      }
4089    
4090        int Region::GetDimensionRegionIndexByValue(const uint DimValues[8]) {
4091            uint8_t bits;
4092            int veldim = -1;
4093            int velbitpos = 0;
4094            int bitpos = 0;
4095            int dimregidx = 0;
4096            for (uint i = 0; i < Dimensions; i++) {
4097                if (pDimensionDefinitions[i].dimension == dimension_velocity) {
4098                    // the velocity dimension must be handled after the other dimensions
4099                    veldim = i;
4100                    velbitpos = bitpos;
4101                } else {
4102                    switch (pDimensionDefinitions[i].split_type) {
4103                        case split_type_normal:
4104                            if (pDimensionRegions[0]->DimensionUpperLimits[i]) {
4105                                // gig3: all normal dimensions (not just the velocity dimension) have custom zone ranges
4106                                for (bits = 0 ; bits < pDimensionDefinitions[i].zones ; bits++) {
4107                                    if (DimValues[i] <= pDimensionRegions[bits << bitpos]->DimensionUpperLimits[i]) break;
4108                                }
4109                            } else {
4110                                // gig2: evenly sized zones
4111                                bits = uint8_t(DimValues[i] / pDimensionDefinitions[i].zone_size);
4112                            }
4113                            break;
4114                        case split_type_bit: // the value is already the sought dimension bit number
4115                            const uint8_t limiter_mask = (0xff << pDimensionDefinitions[i].bits) ^ 0xff;
4116                            bits = DimValues[i] & limiter_mask; // just make sure the value doesn't use more bits than allowed
4117                            break;
4118                    }
4119                    dimregidx |= bits << bitpos;
4120                }
4121                bitpos += pDimensionDefinitions[i].bits;
4122            }
4123            dimregidx &= 255;
4124            DimensionRegion* dimreg = pDimensionRegions[dimregidx];
4125            if (!dimreg) return -1;
4126            if (veldim != -1) {
4127                // (dimreg is now the dimension region for the lowest velocity)
4128                if (dimreg->VelocityTable) // custom defined zone ranges
4129                    bits = dimreg->VelocityTable[DimValues[veldim] & 127];
4130                else // normal split type
4131                    bits = uint8_t((DimValues[veldim] & 127) / pDimensionDefinitions[veldim].zone_size);
4132    
4133                const uint8_t limiter_mask = (1 << pDimensionDefinitions[veldim].bits) - 1;
4134                dimregidx |= (bits & limiter_mask) << velbitpos;
4135                dimregidx &= 255;
4136            }
4137            return dimregidx;
4138        }
4139    
4140      /**      /**
4141       * Returns the appropriate DimensionRegion for the given dimension bit       * Returns the appropriate DimensionRegion for the given dimension bit
4142       * numbers (zone index). You usually use <i>GetDimensionRegionByValue</i>       * numbers (zone index). You usually use <i>GetDimensionRegionByValue</i>
# Line 3795  namespace { Line 4175  namespace {
4175          if ((int32_t)WavePoolTableIndex == -1) return NULL;          if ((int32_t)WavePoolTableIndex == -1) return NULL;
4176          File* file = (File*) GetParent()->GetParent();          File* file = (File*) GetParent()->GetParent();
4177          if (!file->pWavePoolTable) return NULL;          if (!file->pWavePoolTable) return NULL;
4178          unsigned long soughtoffset = file->pWavePoolTable[WavePoolTableIndex];          if (WavePoolTableIndex + 1 > file->WavePoolCount) return NULL;
4179          unsigned long soughtfileno = file->pWavePoolTableHi[WavePoolTableIndex];          // for new files or files >= 2 GB use 64 bit wave pool offsets
4180          Sample* sample = file->GetFirstSample(pProgress);          if (file->pRIFF->IsNew() || (file->pRIFF->GetCurrentFileSize() >> 31)) {
4181          while (sample) {              // use 64 bit wave pool offsets (treating this as large file)
4182              if (sample->ulWavePoolOffset == soughtoffset &&              uint64_t soughtoffset =
4183                  sample->FileNo == soughtfileno) return static_cast<gig::Sample*>(sample);                  uint64_t(file->pWavePoolTable[WavePoolTableIndex]) |
4184              sample = file->GetNextSample();                  uint64_t(file->pWavePoolTableHi[WavePoolTableIndex]) << 32;
4185                Sample* sample = file->GetFirstSample(pProgress);
4186                while (sample) {
4187                    if (sample->ullWavePoolOffset == soughtoffset)
4188                        return static_cast<gig::Sample*>(sample);
4189                    sample = file->GetNextSample();
4190                }
4191            } else {
4192                // use extension files and 32 bit wave pool offsets
4193                file_offset_t soughtoffset = file->pWavePoolTable[WavePoolTableIndex];
4194                file_offset_t soughtfileno = file->pWavePoolTableHi[WavePoolTableIndex];
4195                Sample* sample = file->GetFirstSample(pProgress);
4196                while (sample) {
4197                    if (sample->ullWavePoolOffset == soughtoffset &&
4198                        sample->FileNo == soughtfileno) return static_cast<gig::Sample*>(sample);
4199                    sample = file->GetNextSample();
4200                }
4201          }          }
4202          return NULL;          return NULL;
4203      }      }
# Line 4023  namespace { Line 4419  namespace {
4419          }          }
4420      }      }
4421    
4422    // *************** Script ***************
4423    // *
4424    
4425        Script::Script(ScriptGroup* group, RIFF::Chunk* ckScri) {
4426            pGroup = group;
4427            pChunk = ckScri;
4428            if (ckScri) { // object is loaded from file ...
4429                ckScri->SetPos(0);
4430    
4431                // read header
4432                uint32_t headerSize = ckScri->ReadUint32();
4433                Compression = (Compression_t) ckScri->ReadUint32();
4434                Encoding    = (Encoding_t) ckScri->ReadUint32();
4435                Language    = (Language_t) ckScri->ReadUint32();
4436                Bypass      = (Language_t) ckScri->ReadUint32() & 1;
4437                crc         = ckScri->ReadUint32();
4438                uint32_t nameSize = ckScri->ReadUint32();
4439                Name.resize(nameSize, ' ');
4440                for (int i = 0; i < nameSize; ++i)
4441                    Name[i] = ckScri->ReadUint8();
4442                // to handle potential future extensions of the header
4443                ckScri->SetPos(sizeof(int32_t) + headerSize);
4444                // read actual script data
4445                uint32_t scriptSize = uint32_t(ckScri->GetSize() - ckScri->GetPos());
4446                data.resize(scriptSize);
4447                for (int i = 0; i < scriptSize; ++i)
4448                    data[i] = ckScri->ReadUint8();
4449            } else { // this is a new script object, so just initialize it as such ...
4450                Compression = COMPRESSION_NONE;
4451                Encoding = ENCODING_ASCII;
4452                Language = LANGUAGE_NKSP;
4453                Bypass   = false;
4454                crc      = 0;
4455                Name     = "Unnamed Script";
4456            }
4457        }
4458    
4459        Script::~Script() {
4460        }
4461    
4462        /**
4463         * Returns the current script (i.e. as source code) in text format.
4464         */
4465        String Script::GetScriptAsText() {
4466            String s;
4467            s.resize(data.size(), ' ');
4468            memcpy(&s[0], &data[0], data.size());
4469            return s;
4470        }
4471    
4472        /**
4473         * Replaces the current script with the new script source code text given
4474         * by @a text.
4475         *
4476         * @param text - new script source code
4477         */
4478        void Script::SetScriptAsText(const String& text) {
4479            data.resize(text.size());
4480            memcpy(&data[0], &text[0], text.size());
4481        }
4482    
4483        /** @brief Remove all RIFF chunks associated with this Script object.
4484         *
4485         * At the moment Script::DeleteChunks() does nothing. It is
4486         * recommended to call this method explicitly though from deriving classes's
4487         * own overridden implementation of this method to avoid potential future
4488         * compatiblity issues.
4489         *
4490         * See DLS::Storage::DeleteChunks() for details.
4491         */
4492        void Script::DeleteChunks() {
4493        }
4494    
4495        /**
4496         * Apply this script to the respective RIFF chunks. You have to call
4497         * File::Save() to make changes persistent.
4498         *
4499         * Usually there is absolutely no need to call this method explicitly.
4500         * It will be called automatically when File::Save() was called.
4501         *
4502         * @param pProgress - callback function for progress notification
4503         */
4504        void Script::UpdateChunks(progress_t* pProgress) {
4505            // recalculate CRC32 check sum
4506            __resetCRC(crc);
4507            __calculateCRC(&data[0], data.size(), crc);
4508            __finalizeCRC(crc);
4509            // make sure chunk exists and has the required size
4510            const file_offset_t chunkSize = (file_offset_t) 7*sizeof(int32_t) + Name.size() + data.size();
4511            if (!pChunk) pChunk = pGroup->pList->AddSubChunk(CHUNK_ID_SCRI, chunkSize);
4512            else pChunk->Resize(chunkSize);
4513            // fill the chunk data to be written to disk
4514            uint8_t* pData = (uint8_t*) pChunk->LoadChunkData();
4515            int pos = 0;
4516            store32(&pData[pos], uint32_t(6*sizeof(int32_t) + Name.size())); // total header size
4517            pos += sizeof(int32_t);
4518            store32(&pData[pos], Compression);
4519            pos += sizeof(int32_t);
4520            store32(&pData[pos], Encoding);
4521            pos += sizeof(int32_t);
4522            store32(&pData[pos], Language);
4523            pos += sizeof(int32_t);
4524            store32(&pData[pos], Bypass ? 1 : 0);
4525            pos += sizeof(int32_t);
4526            store32(&pData[pos], crc);
4527            pos += sizeof(int32_t);
4528            store32(&pData[pos], (uint32_t) Name.size());
4529            pos += sizeof(int32_t);
4530            for (int i = 0; i < Name.size(); ++i, ++pos)
4531                pData[pos] = Name[i];
4532            for (int i = 0; i < data.size(); ++i, ++pos)
4533                pData[pos] = data[i];
4534        }
4535    
4536        /**
4537         * Move this script from its current ScriptGroup to another ScriptGroup
4538         * given by @a pGroup.
4539         *
4540         * @param pGroup - script's new group
4541         */
4542        void Script::SetGroup(ScriptGroup* pGroup) {
4543            if (this->pGroup == pGroup) return;
4544            if (pChunk)
4545                pChunk->GetParent()->MoveSubChunk(pChunk, pGroup->pList);
4546            this->pGroup = pGroup;
4547        }
4548    
4549        /**
4550         * Returns the script group this script currently belongs to. Each script
4551         * is a member of exactly one ScriptGroup.
4552         *
4553         * @returns current script group
4554         */
4555        ScriptGroup* Script::GetGroup() const {
4556            return pGroup;
4557        }
4558    
4559        /**
4560         * Make a (semi) deep copy of the Script object given by @a orig
4561         * and assign it to this object. Note: the ScriptGroup this Script
4562         * object belongs to remains untouched by this call.
4563         *
4564         * @param orig - original Script object to be copied from
4565         */
4566        void Script::CopyAssign(const Script* orig) {
4567            Name        = orig->Name;
4568            Compression = orig->Compression;
4569            Encoding    = orig->Encoding;
4570            Language    = orig->Language;
4571            Bypass      = orig->Bypass;
4572            data        = orig->data;
4573        }
4574    
4575        void Script::RemoveAllScriptReferences() {
4576            File* pFile = pGroup->pFile;
4577            for (int i = 0; pFile->GetInstrument(i); ++i) {
4578                Instrument* instr = pFile->GetInstrument(i);
4579                instr->RemoveScript(this);
4580            }
4581        }
4582    
4583    // *************** ScriptGroup ***************
4584    // *
4585    
4586        ScriptGroup::ScriptGroup(File* file, RIFF::List* lstRTIS) {
4587            pFile = file;
4588            pList = lstRTIS;
4589            pScripts = NULL;
4590            if (lstRTIS) {
4591                RIFF::Chunk* ckName = lstRTIS->GetSubChunk(CHUNK_ID_LSNM);
4592                ::LoadString(ckName, Name);
4593            } else {
4594                Name = "Default Group";
4595            }
4596        }
4597    
4598        ScriptGroup::~ScriptGroup() {
4599            if (pScripts) {
4600                std::list<Script*>::iterator iter = pScripts->begin();
4601                std::list<Script*>::iterator end  = pScripts->end();
4602                while (iter != end) {
4603                    delete *iter;
4604                    ++iter;
4605                }
4606                delete pScripts;
4607            }
4608        }
4609    
4610        /** @brief Remove all RIFF chunks associated with this ScriptGroup object.
4611         *
4612         * At the moment ScriptGroup::DeleteChunks() does nothing. It is
4613         * recommended to call this method explicitly though from deriving classes's
4614         * own overridden implementation of this method to avoid potential future
4615         * compatiblity issues.
4616         *
4617         * See DLS::Storage::DeleteChunks() for details.
4618         */
4619        void ScriptGroup::DeleteChunks() {
4620        }
4621    
4622        /**
4623         * Apply this script group to the respective RIFF chunks. You have to call
4624         * File::Save() to make changes persistent.
4625         *
4626         * Usually there is absolutely no need to call this method explicitly.
4627         * It will be called automatically when File::Save() was called.
4628         *
4629         * @param pProgress - callback function for progress notification
4630         */
4631        void ScriptGroup::UpdateChunks(progress_t* pProgress) {
4632            if (pScripts) {
4633                if (!pList)
4634                    pList = pFile->pRIFF->GetSubList(LIST_TYPE_3LS)->AddSubList(LIST_TYPE_RTIS);
4635    
4636                // now store the name of this group as <LSNM> chunk as subchunk of the <RTIS> list chunk
4637                ::SaveString(CHUNK_ID_LSNM, NULL, pList, Name, String("Unnamed Group"), true, 64);
4638    
4639                for (std::list<Script*>::iterator it = pScripts->begin();
4640                     it != pScripts->end(); ++it)
4641                {
4642                    (*it)->UpdateChunks(pProgress);
4643                }
4644            }
4645        }
4646    
4647        /** @brief Get instrument script.
4648         *
4649         * Returns the real-time instrument script with the given index.
4650         *
4651         * @param index - number of the sought script (0..n)
4652         * @returns sought script or NULL if there's no such script
4653         */
4654        Script* ScriptGroup::GetScript(uint index) {
4655            if (!pScripts) LoadScripts();
4656            std::list<Script*>::iterator it = pScripts->begin();
4657            for (uint i = 0; it != pScripts->end(); ++i, ++it)
4658                if (i == index) return *it;
4659            return NULL;
4660        }
4661    
4662        /** @brief Add new instrument script.
4663         *
4664         * Adds a new real-time instrument script to the file. The script is not
4665         * actually used / executed unless it is referenced by an instrument to be
4666         * used. This is similar to samples, which you can add to a file, without
4667         * an instrument necessarily actually using it.
4668         *
4669         * You have to call Save() to make this persistent to the file.
4670         *
4671         * @return new empty script object
4672         */
4673        Script* ScriptGroup::AddScript() {
4674            if (!pScripts) LoadScripts();
4675            Script* pScript = new Script(this, NULL);
4676            pScripts->push_back(pScript);
4677            return pScript;
4678        }
4679    
4680        /** @brief Delete an instrument script.
4681         *
4682         * This will delete the given real-time instrument script. References of
4683         * instruments that are using that script will be removed accordingly.
4684         *
4685         * You have to call Save() to make this persistent to the file.
4686         *
4687         * @param pScript - script to delete
4688         * @throws gig::Exception if given script could not be found
4689         */
4690        void ScriptGroup::DeleteScript(Script* pScript) {
4691            if (!pScripts) LoadScripts();
4692            std::list<Script*>::iterator iter =
4693                find(pScripts->begin(), pScripts->end(), pScript);
4694            if (iter == pScripts->end())
4695                throw gig::Exception("Could not delete script, could not find given script");
4696            pScripts->erase(iter);
4697            pScript->RemoveAllScriptReferences();
4698            if (pScript->pChunk)
4699                pScript->pChunk->GetParent()->DeleteSubChunk(pScript->pChunk);
4700            delete pScript;
4701        }
4702    
4703        void ScriptGroup::LoadScripts() {
4704            if (pScripts) return;
4705            pScripts = new std::list<Script*>;
4706            if (!pList) return;
4707    
4708            for (RIFF::Chunk* ck = pList->GetFirstSubChunk(); ck;
4709                 ck = pList->GetNextSubChunk())
4710            {
4711                if (ck->GetChunkID() == CHUNK_ID_SCRI) {
4712                    pScripts->push_back(new Script(this, ck));
4713                }
4714            }
4715        }
4716    
4717  // *************** Instrument ***************  // *************** Instrument ***************
4718  // *  // *
4719    
# Line 4039  namespace { Line 4730  namespace {
4730          EffectSend = 0;          EffectSend = 0;
4731          Attenuation = 0;          Attenuation = 0;
4732          FineTune = 0;          FineTune = 0;
4733          PitchbendRange = 0;          PitchbendRange = 2;
4734          PianoReleaseMode = false;          PianoReleaseMode = false;
4735          DimensionKeyRange.low = 0;          DimensionKeyRange.low = 0;
4736          DimensionKeyRange.high = 0;          DimensionKeyRange.high = 0;
4737          pMidiRules = new MidiRule*[3];          pMidiRules = new MidiRule*[3];
4738          pMidiRules[0] = NULL;          pMidiRules[0] = NULL;
4739            pScriptRefs = NULL;
4740    
4741          // Loading          // Loading
4742          RIFF::List* lart = insList->GetSubList(LIST_TYPE_LART);          RIFF::List* lart = insList->GetSubList(LIST_TYPE_LART);
4743          if (lart) {          if (lart) {
4744              RIFF::Chunk* _3ewg = lart->GetSubChunk(CHUNK_ID_3EWG);              RIFF::Chunk* _3ewg = lart->GetSubChunk(CHUNK_ID_3EWG);
4745              if (_3ewg) {              if (_3ewg) {
4746                    _3ewg->SetPos(0);
4747    
4748                  EffectSend             = _3ewg->ReadUint16();                  EffectSend             = _3ewg->ReadUint16();
4749                  Attenuation            = _3ewg->ReadInt32();                  Attenuation            = _3ewg->ReadInt32();
4750                  FineTune               = _3ewg->ReadInt16();                  FineTune               = _3ewg->ReadInt16();
# Line 4095  namespace { Line 4789  namespace {
4789                  RIFF::List* rgn = lrgn->GetFirstSubList();                  RIFF::List* rgn = lrgn->GetFirstSubList();
4790                  while (rgn) {                  while (rgn) {
4791                      if (rgn->GetListType() == LIST_TYPE_RGN) {                      if (rgn->GetListType() == LIST_TYPE_RGN) {
4792                          __notify_progress(pProgress, (float) pRegions->size() / (float) Regions);                          if (pProgress)
4793                                __notify_progress(pProgress, (float) pRegions->size() / (float) Regions);
4794                          pRegions->push_back(new Region(this, rgn));                          pRegions->push_back(new Region(this, rgn));
4795                      }                      }
4796                      rgn = lrgn->GetNextSubList();                      rgn = lrgn->GetNextSubList();
# Line 4105  namespace { Line 4800  namespace {
4800              }              }
4801          }          }
4802    
4803          __notify_progress(pProgress, 1.0f); // notify done          // own gig format extensions
4804            RIFF::List* lst3LS = insList->GetSubList(LIST_TYPE_3LS);
4805            if (lst3LS) {
4806                RIFF::Chunk* ckSCSL = lst3LS->GetSubChunk(CHUNK_ID_SCSL);
4807                if (ckSCSL) {
4808                    ckSCSL->SetPos(0);
4809    
4810                    int headerSize = ckSCSL->ReadUint32();
4811                    int slotCount  = ckSCSL->ReadUint32();
4812                    if (slotCount) {
4813                        int slotSize  = ckSCSL->ReadUint32();
4814                        ckSCSL->SetPos(headerSize); // in case of future header extensions
4815                        int unknownSpace = slotSize - 2*sizeof(uint32_t); // in case of future slot extensions
4816                        for (int i = 0; i < slotCount; ++i) {
4817                            _ScriptPooolEntry e;
4818                            e.fileOffset = ckSCSL->ReadUint32();
4819                            e.bypass     = ckSCSL->ReadUint32() & 1;
4820                            if (unknownSpace) ckSCSL->SetPos(unknownSpace, RIFF::stream_curpos); // in case of future extensions
4821                            scriptPoolFileOffsets.push_back(e);
4822                        }
4823                    }
4824                }
4825            }
4826    
4827            if (pProgress)
4828                __notify_progress(pProgress, 1.0f); // notify done
4829      }      }
4830    
4831      void Instrument::UpdateRegionKeyTable() {      void Instrument::UpdateRegionKeyTable() {
# Line 4114  namespace { Line 4834  namespace {
4834          RegionList::iterator end  = pRegions->end();          RegionList::iterator end  = pRegions->end();
4835          for (; iter != end; ++iter) {          for (; iter != end; ++iter) {
4836              gig::Region* pRegion = static_cast<gig::Region*>(*iter);              gig::Region* pRegion = static_cast<gig::Region*>(*iter);
4837              for (int iKey = pRegion->KeyRange.low; iKey <= pRegion->KeyRange.high; iKey++) {              const int low  = std::max(int(pRegion->KeyRange.low), 0);
4838                const int high = std::min(int(pRegion->KeyRange.high), 127);
4839                for (int iKey = low; iKey <= high; iKey++) {
4840                  RegionKeyTable[iKey] = pRegion;                  RegionKeyTable[iKey] = pRegion;
4841              }              }
4842          }          }
# Line 4125  namespace { Line 4847  namespace {
4847              delete pMidiRules[i];              delete pMidiRules[i];
4848          }          }
4849          delete[] pMidiRules;          delete[] pMidiRules;
4850            if (pScriptRefs) delete pScriptRefs;
4851      }      }
4852    
4853      /**      /**
# Line 4134  namespace { Line 4857  namespace {
4857       * Usually there is absolutely no need to call this method explicitly.       * Usually there is absolutely no need to call this method explicitly.
4858       * It will be called automatically when File::Save() was called.       * It will be called automatically when File::Save() was called.
4859       *       *
4860         * @param pProgress - callback function for progress notification
4861       * @throws gig::Exception if samples cannot be dereferenced       * @throws gig::Exception if samples cannot be dereferenced
4862       */       */
4863      void Instrument::UpdateChunks() {      void Instrument::UpdateChunks(progress_t* pProgress) {
4864          // first update base classes' chunks          // first update base classes' chunks
4865          DLS::Instrument::UpdateChunks();          DLS::Instrument::UpdateChunks(pProgress);
4866    
4867          // update Regions' chunks          // update Regions' chunks
4868          {          {
4869              RegionList::iterator iter = pRegions->begin();              RegionList::iterator iter = pRegions->begin();
4870              RegionList::iterator end  = pRegions->end();              RegionList::iterator end  = pRegions->end();
4871              for (; iter != end; ++iter)              for (; iter != end; ++iter)
4872                  (*iter)->UpdateChunks();                  (*iter)->UpdateChunks(pProgress);
4873          }          }
4874    
4875          // make sure 'lart' RIFF list chunk exists          // make sure 'lart' RIFF list chunk exists
# Line 4157  namespace { Line 4881  namespace {
4881              File* pFile = (File*) GetParent();              File* pFile = (File*) GetParent();
4882    
4883              // 3ewg is bigger in gig3, as it includes the iMIDI rules              // 3ewg is bigger in gig3, as it includes the iMIDI rules
4884              int size = (pFile->pVersion && pFile->pVersion->major == 3) ? 16416 : 12;              int size = (pFile->pVersion && pFile->pVersion->major > 2) ? 16416 : 12;
4885              _3ewg = lart->AddSubChunk(CHUNK_ID_3EWG, size);              _3ewg = lart->AddSubChunk(CHUNK_ID_3EWG, size);
4886              memset(_3ewg->LoadChunkData(), 0, size);              memset(_3ewg->LoadChunkData(), 0, size);
4887          }          }
# Line 4180  namespace { Line 4904  namespace {
4904                  pMidiRules[i]->UpdateChunks(pData);                  pMidiRules[i]->UpdateChunks(pData);
4905              }              }
4906          }          }
4907    
4908            // own gig format extensions
4909           if (ScriptSlotCount()) {
4910               // make sure we have converted the original loaded script file
4911               // offsets into valid Script object pointers
4912               LoadScripts();
4913    
4914               RIFF::List* lst3LS = pCkInstrument->GetSubList(LIST_TYPE_3LS);
4915               if (!lst3LS) lst3LS = pCkInstrument->AddSubList(LIST_TYPE_3LS);
4916               const int slotCount = (int) pScriptRefs->size();
4917               const int headerSize = 3 * sizeof(uint32_t);
4918               const int slotSize  = 2 * sizeof(uint32_t);
4919               const int totalChunkSize = headerSize + slotCount * slotSize;
4920               RIFF::Chunk* ckSCSL = lst3LS->GetSubChunk(CHUNK_ID_SCSL);
4921               if (!ckSCSL) ckSCSL = lst3LS->AddSubChunk(CHUNK_ID_SCSL, totalChunkSize);
4922               else ckSCSL->Resize(totalChunkSize);
4923               uint8_t* pData = (uint8_t*) ckSCSL->LoadChunkData();
4924               int pos = 0;
4925               store32(&pData[pos], headerSize);
4926               pos += sizeof(uint32_t);
4927               store32(&pData[pos], slotCount);
4928               pos += sizeof(uint32_t);
4929               store32(&pData[pos], slotSize);
4930               pos += sizeof(uint32_t);
4931               for (int i = 0; i < slotCount; ++i) {
4932                   // arbitrary value, the actual file offset will be updated in
4933                   // UpdateScriptFileOffsets() after the file has been resized
4934                   int bogusFileOffset = 0;
4935                   store32(&pData[pos], bogusFileOffset);
4936                   pos += sizeof(uint32_t);
4937                   store32(&pData[pos], (*pScriptRefs)[i].bypass ? 1 : 0);
4938                   pos += sizeof(uint32_t);
4939               }
4940           } else {
4941               // no script slots, so get rid of any LS custom RIFF chunks (if any)
4942               RIFF::List* lst3LS = pCkInstrument->GetSubList(LIST_TYPE_3LS);
4943               if (lst3LS) pCkInstrument->DeleteSubChunk(lst3LS);
4944           }
4945        }
4946    
4947        void Instrument::UpdateScriptFileOffsets() {
4948           // own gig format extensions
4949           if (pScriptRefs && pScriptRefs->size() > 0) {
4950               RIFF::List* lst3LS = pCkInstrument->GetSubList(LIST_TYPE_3LS);
4951               RIFF::Chunk* ckSCSL = lst3LS->GetSubChunk(CHUNK_ID_SCSL);
4952               const int slotCount = (int) pScriptRefs->size();
4953               const int headerSize = 3 * sizeof(uint32_t);
4954               ckSCSL->SetPos(headerSize);
4955               for (int i = 0; i < slotCount; ++i) {
4956                   uint32_t fileOffset = uint32_t(
4957                        (*pScriptRefs)[i].script->pChunk->GetFilePos() -
4958                        (*pScriptRefs)[i].script->pChunk->GetPos() -
4959                        CHUNK_HEADER_SIZE(ckSCSL->GetFile()->GetFileOffsetSize())
4960                   );
4961                   ckSCSL->WriteUint32(&fileOffset);
4962                   // jump over flags entry (containing the bypass flag)
4963                   ckSCSL->SetPos(sizeof(uint32_t), RIFF::stream_curpos);
4964               }
4965           }        
4966      }      }
4967    
4968      /**      /**
# Line 4234  namespace { Line 5017  namespace {
5017          RIFF::List* rgn = lrgn->AddSubList(LIST_TYPE_RGN);          RIFF::List* rgn = lrgn->AddSubList(LIST_TYPE_RGN);
5018          Region* pNewRegion = new Region(this, rgn);          Region* pNewRegion = new Region(this, rgn);
5019          pRegions->push_back(pNewRegion);          pRegions->push_back(pNewRegion);
5020          Regions = pRegions->size();          Regions = (uint32_t) pRegions->size();
5021          // update Region key table for fast lookup          // update Region key table for fast lookup
5022          UpdateRegionKeyTable();          UpdateRegionKeyTable();
5023          // done          // done
# Line 4249  namespace { Line 5032  namespace {
5032      }      }
5033    
5034      /**      /**
5035         * Move this instrument at the position before @arg dst.
5036         *
5037         * This method can be used to reorder the sequence of instruments in a
5038         * .gig file. This might be helpful especially on large .gig files which
5039         * contain a large number of instruments within the same .gig file. So
5040         * grouping such instruments to similar ones, can help to keep track of them
5041         * when working with such complex .gig files.
5042         *
5043         * When calling this method, this instrument will be removed from in its
5044         * current position in the instruments list and moved to the requested
5045         * target position provided by @param dst. You may also pass NULL as
5046         * argument to this method, in that case this intrument will be moved to the
5047         * very end of the .gig file's instrument list.
5048         *
5049         * You have to call Save() to make the order change persistent to the .gig
5050         * file.
5051         *
5052         * Currently this method is limited to moving the instrument within the same
5053         * .gig file. Trying to move it to another .gig file by calling this method
5054         * will throw an exception.
5055         *
5056         * @param dst - destination instrument at which this instrument will be
5057         *              moved to, or pass NULL for moving to end of list
5058         * @throw gig::Exception if this instrument and target instrument are not
5059         *                       part of the same file
5060         */
5061        void Instrument::MoveTo(Instrument* dst) {
5062            if (dst && GetParent() != dst->GetParent())
5063                throw Exception(
5064                    "gig::Instrument::MoveTo() can only be used for moving within "
5065                    "the same gig file."
5066                );
5067    
5068            File* pFile = (File*) GetParent();
5069    
5070            // move this instrument within the instrument list
5071            {
5072                File::InstrumentList& list = *pFile->pInstruments;
5073    
5074                File::InstrumentList::iterator itFrom =
5075                    std::find(list.begin(), list.end(), static_cast<DLS::Instrument*>(this));
5076    
5077                File::InstrumentList::iterator itTo =
5078                    std::find(list.begin(), list.end(), static_cast<DLS::Instrument*>(dst));
5079    
5080                list.splice(itTo, list, itFrom);
5081            }
5082    
5083            // move the instrument's actual list RIFF chunk appropriately
5084            RIFF::List* lstCkInstruments = pFile->pRIFF->GetSubList(LIST_TYPE_LINS);
5085            lstCkInstruments->MoveSubChunk(
5086                this->pCkInstrument,
5087                (RIFF::Chunk*) ((dst) ? dst->pCkInstrument : NULL)
5088            );
5089        }
5090    
5091        /**
5092       * Returns a MIDI rule of the instrument.       * Returns a MIDI rule of the instrument.
5093       *       *
5094       * The list of MIDI rules, at least in gig v3, always contains at       * The list of MIDI rules, at least in gig v3, always contains at
# Line 4311  namespace { Line 5151  namespace {
5151          pMidiRules[i] = 0;          pMidiRules[i] = 0;
5152      }      }
5153    
5154        void Instrument::LoadScripts() {
5155            if (pScriptRefs) return;
5156            pScriptRefs = new std::vector<_ScriptPooolRef>;
5157            if (scriptPoolFileOffsets.empty()) return;
5158            File* pFile = (File*) GetParent();
5159            for (uint k = 0; k < scriptPoolFileOffsets.size(); ++k) {
5160                uint32_t soughtOffset = scriptPoolFileOffsets[k].fileOffset;
5161                for (uint i = 0; pFile->GetScriptGroup(i); ++i) {
5162                    ScriptGroup* group = pFile->GetScriptGroup(i);
5163                    for (uint s = 0; group->GetScript(s); ++s) {
5164                        Script* script = group->GetScript(s);
5165                        if (script->pChunk) {
5166                            uint32_t offset = uint32_t(
5167                                script->pChunk->GetFilePos() -
5168                                script->pChunk->GetPos() -
5169                                CHUNK_HEADER_SIZE(script->pChunk->GetFile()->GetFileOffsetSize())
5170                            );
5171                            if (offset == soughtOffset)
5172                            {
5173                                _ScriptPooolRef ref;
5174                                ref.script = script;
5175                                ref.bypass = scriptPoolFileOffsets[k].bypass;
5176                                pScriptRefs->push_back(ref);
5177                                break;
5178                            }
5179                        }
5180                    }
5181                }
5182            }
5183            // we don't need that anymore
5184            scriptPoolFileOffsets.clear();
5185        }
5186    
5187        /** @brief Get instrument script (gig format extension).
5188         *
5189         * Returns the real-time instrument script of instrument script slot
5190         * @a index.
5191         *
5192         * @note This is an own format extension which did not exist i.e. in the
5193         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5194         * gigedit.
5195         *
5196         * @param index - instrument script slot index
5197         * @returns script or NULL if index is out of bounds
5198         */
5199        Script* Instrument::GetScriptOfSlot(uint index) {
5200            LoadScripts();
5201            if (index >= pScriptRefs->size()) return NULL;
5202            return pScriptRefs->at(index).script;
5203        }
5204    
5205        /** @brief Add new instrument script slot (gig format extension).
5206         *
5207         * Add the given real-time instrument script reference to this instrument,
5208         * which shall be executed by the sampler for for this instrument. The
5209         * script will be added to the end of the script list of this instrument.
5210         * The positions of the scripts in the Instrument's Script list are
5211         * relevant, because they define in which order they shall be executed by
5212         * the sampler. For this reason it is also legal to add the same script
5213         * twice to an instrument, for example you might have a script called
5214         * "MyFilter" which performs an event filter task, and you might have
5215         * another script called "MyNoteTrigger" which triggers new notes, then you
5216         * might for example have the following list of scripts on the instrument:
5217         *
5218         * 1. Script "MyFilter"
5219         * 2. Script "MyNoteTrigger"
5220         * 3. Script "MyFilter"
5221         *
5222         * Which would make sense, because the 2nd script launched new events, which
5223         * you might need to filter as well.
5224         *
5225         * There are two ways to disable / "bypass" scripts. You can either disable
5226         * a script locally for the respective script slot on an instrument (i.e. by
5227         * passing @c false to the 2nd argument of this method, or by calling
5228         * SetScriptBypassed()). Or you can disable a script globally for all slots
5229         * and all instruments by setting Script::Bypass.
5230         *
5231         * @note This is an own format extension which did not exist i.e. in the
5232         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5233         * gigedit.
5234         *
5235         * @param pScript - script that shall be executed for this instrument
5236         * @param bypass  - if enabled, the sampler shall skip executing this
5237         *                  script (in the respective list position)
5238         * @see SetScriptBypassed()
5239         */
5240        void Instrument::AddScriptSlot(Script* pScript, bool bypass) {
5241            LoadScripts();
5242            _ScriptPooolRef ref = { pScript, bypass };
5243            pScriptRefs->push_back(ref);
5244        }
5245    
5246        /** @brief Flip two script slots with each other (gig format extension).
5247         *
5248         * Swaps the position of the two given scripts in the Instrument's Script
5249         * list. The positions of the scripts in the Instrument's Script list are
5250         * relevant, because they define in which order they shall be executed by
5251         * the sampler.
5252         *
5253         * @note This is an own format extension which did not exist i.e. in the
5254         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5255         * gigedit.
5256         *
5257         * @param index1 - index of the first script slot to swap
5258         * @param index2 - index of the second script slot to swap
5259         */
5260        void Instrument::SwapScriptSlots(uint index1, uint index2) {
5261            LoadScripts();
5262            if (index1 >= pScriptRefs->size() || index2 >= pScriptRefs->size())
5263                return;
5264            _ScriptPooolRef tmp = (*pScriptRefs)[index1];
5265            (*pScriptRefs)[index1] = (*pScriptRefs)[index2];
5266            (*pScriptRefs)[index2] = tmp;
5267        }
5268    
5269        /** @brief Remove script slot.
5270         *
5271         * Removes the script slot with the given slot index.
5272         *
5273         * @param index - index of script slot to remove
5274         */
5275        void Instrument::RemoveScriptSlot(uint index) {
5276            LoadScripts();
5277            if (index >= pScriptRefs->size()) return;
5278            pScriptRefs->erase( pScriptRefs->begin() + index );
5279        }
5280    
5281        /** @brief Remove reference to given Script (gig format extension).
5282         *
5283         * This will remove all script slots on the instrument which are referencing
5284         * the given script.
5285         *
5286         * @note This is an own format extension which did not exist i.e. in the
5287         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5288         * gigedit.
5289         *
5290         * @param pScript - script reference to remove from this instrument
5291         * @see RemoveScriptSlot()
5292         */
5293        void Instrument::RemoveScript(Script* pScript) {
5294            LoadScripts();
5295            for (ssize_t i = pScriptRefs->size() - 1; i >= 0; --i) {
5296                if ((*pScriptRefs)[i].script == pScript) {
5297                    pScriptRefs->erase( pScriptRefs->begin() + i );
5298                }
5299            }
5300        }
5301    
5302        /** @brief Instrument's amount of script slots.
5303         *
5304         * This method returns the amount of script slots this instrument currently
5305         * uses.
5306         *
5307         * A script slot is a reference of a real-time instrument script to be
5308         * executed by the sampler. The scripts will be executed by the sampler in
5309         * sequence of the slots. One (same) script may be referenced multiple
5310         * times in different slots.
5311         *
5312         * @note This is an own format extension which did not exist i.e. in the
5313         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5314         * gigedit.
5315         */
5316        uint Instrument::ScriptSlotCount() const {
5317            return uint(pScriptRefs ? pScriptRefs->size() : scriptPoolFileOffsets.size());
5318        }
5319    
5320        /** @brief Whether script execution shall be skipped.
5321         *
5322         * Defines locally for the Script reference slot in the Instrument's Script
5323         * list, whether the script shall be skipped by the sampler regarding
5324         * execution.
5325         *
5326         * It is also possible to ignore exeuction of the script globally, for all
5327         * slots and for all instruments by setting Script::Bypass.
5328         *
5329         * @note This is an own format extension which did not exist i.e. in the
5330         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5331         * gigedit.
5332         *
5333         * @param index - index of the script slot on this instrument
5334         * @see Script::Bypass
5335         */
5336        bool Instrument::IsScriptSlotBypassed(uint index) {
5337            if (index >= ScriptSlotCount()) return false;
5338            return pScriptRefs ? pScriptRefs->at(index).bypass
5339                               : scriptPoolFileOffsets.at(index).bypass;
5340            
5341        }
5342    
5343        /** @brief Defines whether execution shall be skipped.
5344         *
5345         * You can call this method to define locally whether or whether not the
5346         * given script slot shall be executed by the sampler.
5347         *
5348         * @note This is an own format extension which did not exist i.e. in the
5349         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5350         * gigedit.
5351         *
5352         * @param index - script slot index on this instrument
5353         * @param bBypass - if true, the script slot will be skipped by the sampler
5354         * @see Script::Bypass
5355         */
5356        void Instrument::SetScriptSlotBypassed(uint index, bool bBypass) {
5357            if (index >= ScriptSlotCount()) return;
5358            if (pScriptRefs)
5359                pScriptRefs->at(index).bypass = bBypass;
5360            else
5361                scriptPoolFileOffsets.at(index).bypass = bBypass;
5362        }
5363    
5364      /**      /**
5365       * Make a (semi) deep copy of the Instrument object given by @a orig       * Make a (semi) deep copy of the Instrument object given by @a orig
5366       * and assign it to this object.       * and assign it to this object.
# Line 4344  namespace { Line 5394  namespace {
5394          PitchbendRange = orig->PitchbendRange;          PitchbendRange = orig->PitchbendRange;
5395          PianoReleaseMode = orig->PianoReleaseMode;          PianoReleaseMode = orig->PianoReleaseMode;
5396          DimensionKeyRange = orig->DimensionKeyRange;          DimensionKeyRange = orig->DimensionKeyRange;
5397            scriptPoolFileOffsets = orig->scriptPoolFileOffsets;
5398            pScriptRefs = orig->pScriptRefs;
5399                    
5400          // free old midi rules          // free old midi rules
5401          for (int i = 0 ; pMidiRules[i] ; i++) {          for (int i = 0 ; pMidiRules[i] ; i++) {
# Line 4386  namespace { Line 5438  namespace {
5438          ::LoadString(pNameChunk, Name);          ::LoadString(pNameChunk, Name);
5439      }      }
5440    
5441        /** @brief Destructor.
5442         *
5443         * Currently this destructor implementation does nothing.
5444         */
5445      Group::~Group() {      Group::~Group() {
5446          // remove the chunk associated with this group (if any)      }
5447          if (pNameChunk) pNameChunk->GetParent()->DeleteSubChunk(pNameChunk);  
5448        /** @brief Remove all RIFF chunks associated with this Group object.
5449         *
5450         * See DLS::Storage::DeleteChunks() for details.
5451         */
5452        void Group::DeleteChunks() {
5453            // handle own RIFF chunks
5454            if (pNameChunk) {
5455                pNameChunk->GetParent()->DeleteSubChunk(pNameChunk);
5456                pNameChunk = NULL;
5457            }
5458      }      }
5459    
5460      /** @brief Update chunks with current group settings.      /** @brief Update chunks with current group settings.
# Line 4398  namespace { Line 5464  namespace {
5464       *       *
5465       * Usually there is absolutely no need to call this method explicitly.       * Usually there is absolutely no need to call this method explicitly.
5466       * It will be called automatically when File::Save() was called.       * It will be called automatically when File::Save() was called.
5467         *
5468         * @param pProgress - callback function for progress notification
5469       */       */
5470      void Group::UpdateChunks() {      void Group::UpdateChunks(progress_t* pProgress) {
5471          // make sure <3gri> and <3gnl> list chunks exist          // make sure <3gri> and <3gnl> list chunks exist
5472          RIFF::List* _3gri = pFile->pRIFF->GetSubList(LIST_TYPE_3GRI);          RIFF::List* _3gri = pFile->pRIFF->GetSubList(LIST_TYPE_3GRI);
5473          if (!_3gri) {          if (!_3gri) {
# Line 4409  namespace { Line 5477  namespace {
5477          RIFF::List* _3gnl = _3gri->GetSubList(LIST_TYPE_3GNL);          RIFF::List* _3gnl = _3gri->GetSubList(LIST_TYPE_3GNL);
5478          if (!_3gnl) _3gnl = _3gri->AddSubList(LIST_TYPE_3GNL);          if (!_3gnl) _3gnl = _3gri->AddSubList(LIST_TYPE_3GNL);
5479    
5480          if (!pNameChunk && pFile->pVersion && pFile->pVersion->major == 3) {          if (!pNameChunk && pFile->pVersion && pFile->pVersion->major > 2) {
5481              // v3 has a fixed list of 128 strings, find a free one              // v3 has a fixed list of 128 strings, find a free one
5482              for (RIFF::Chunk* ck = _3gnl->GetFirstSubChunk() ; ck ; ck = _3gnl->GetNextSubChunk()) {              for (RIFF::Chunk* ck = _3gnl->GetFirstSubChunk() ; ck ; ck = _3gnl->GetNextSubChunk()) {
5483                  if (strcmp(static_cast<char*>(ck->LoadChunkData()), "") == 0) {                  if (strcmp(static_cast<char*>(ck->LoadChunkData()), "") == 0) {
# Line 4504  namespace { Line 5572  namespace {
5572          0, 3, 20030331 & 0xffff, 20030331 >> 16          0, 3, 20030331 & 0xffff, 20030331 >> 16
5573      };      };
5574    
5575        /// Reflects Gigasampler file format version 4.0 (2007-10-12).
5576        const DLS::version_t File::VERSION_4 = {
5577            0, 4, 20071012 & 0xffff, 20071012 >> 16
5578        };
5579    
5580      static const DLS::Info::string_length_t _FileFixedStringLengths[] = {      static const DLS::Info::string_length_t _FileFixedStringLengths[] = {
5581          { CHUNK_ID_IARL, 256 },          { CHUNK_ID_IARL, 256 },
5582          { CHUNK_ID_IART, 128 },          { CHUNK_ID_IART, 128 },
# Line 4529  namespace { Line 5602  namespace {
5602          bAutoLoad = true;          bAutoLoad = true;
5603          *pVersion = VERSION_3;          *pVersion = VERSION_3;
5604          pGroups = NULL;          pGroups = NULL;
5605            pScriptGroups = NULL;
5606          pInfo->SetFixedStringLengths(_FileFixedStringLengths);          pInfo->SetFixedStringLengths(_FileFixedStringLengths);
5607          pInfo->ArchivalLocation = String(256, ' ');          pInfo->ArchivalLocation = String(256, ' ');
5608    
# Line 4544  namespace { Line 5618  namespace {
5618      File::File(RIFF::File* pRIFF) : DLS::File(pRIFF) {      File::File(RIFF::File* pRIFF) : DLS::File(pRIFF) {
5619          bAutoLoad = true;          bAutoLoad = true;
5620          pGroups = NULL;          pGroups = NULL;
5621            pScriptGroups = NULL;
5622          pInfo->SetFixedStringLengths(_FileFixedStringLengths);          pInfo->SetFixedStringLengths(_FileFixedStringLengths);
5623      }      }
5624    
# Line 4557  namespace { Line 5632  namespace {
5632              }              }
5633              delete pGroups;              delete pGroups;
5634          }          }
5635            if (pScriptGroups) {
5636                std::list<ScriptGroup*>::iterator iter = pScriptGroups->begin();
5637                std::list<ScriptGroup*>::iterator end  = pScriptGroups->end();
5638                while (iter != end) {
5639                    delete *iter;
5640                    ++iter;
5641                }
5642                delete pScriptGroups;
5643            }
5644      }      }
5645    
5646      Sample* File::GetFirstSample(progress_t* pProgress) {      Sample* File::GetFirstSample(progress_t* pProgress) {
# Line 4589  namespace { Line 5673  namespace {
5673          return static_cast<gig::Sample*>( *it );          return static_cast<gig::Sample*>( *it );
5674      }      }
5675    
5676        /**
5677         * Returns the total amount of samples of this gig file.
5678         *
5679         * Note that this method might block for a long time in case it is required
5680         * to load the sample info for the first time.
5681         *
5682         * @returns total amount of samples
5683         */
5684        size_t File::CountSamples() {
5685            if (!pSamples) LoadSamples();
5686            if (!pSamples) return 0;
5687            return pSamples->size();
5688        }
5689    
5690      /** @brief Add a new sample.      /** @brief Add a new sample.
5691       *       *
5692       * This will create a new Sample object for the gig file. You have to       * This will create a new Sample object for the gig file. You have to
# Line 4627  namespace { Line 5725  namespace {
5725          if (iter == pSamples->end()) throw gig::Exception("Could not delete sample, could not find given sample");          if (iter == pSamples->end()) throw gig::Exception("Could not delete sample, could not find given sample");
5726          if (SamplesIterator != pSamples->end() && *SamplesIterator == pSample) ++SamplesIterator; // avoid iterator invalidation          if (SamplesIterator != pSamples->end() && *SamplesIterator == pSample) ++SamplesIterator; // avoid iterator invalidation
5727          pSamples->erase(iter);          pSamples->erase(iter);
5728            pSample->DeleteChunks();
5729          delete pSample;          delete pSample;
5730    
5731          SampleList::iterator tmp = SamplesIterator;          SampleList::iterator tmp = SamplesIterator;
# Line 4664  namespace { Line 5763  namespace {
5763          int iSampleIndex  = 0;          int iSampleIndex  = 0;
5764          int iTotalSamples = WavePoolCount;          int iTotalSamples = WavePoolCount;
5765    
5766          // check if samples should be loaded from extension files          // just for assembling path of optional extension files to be read
5767          int lastFileNo = 0;          const std::string folder = parentPath(pRIFF->GetFileName());
5768          for (int i = 0 ; i < WavePoolCount ; i++) {          const std::string baseName = pathWithoutExtension(pRIFF->GetFileName());
5769              if (pWavePoolTableHi[i] > lastFileNo) lastFileNo = pWavePoolTableHi[i];  
5770          }          // the main gig file and the extension files (.gx01, ... , .gx98) may
5771          String name(pRIFF->GetFileName());          // contain wave data (wave pool)
5772          int nameLen = name.length();          std::vector<RIFF::File*> poolFiles;
5773          char suffix[6];          poolFiles.push_back(pRIFF);
5774          if (nameLen > 4 && name.substr(nameLen - 4) == ".gig") nameLen -= 4;  
5775            // get info about all extension files
5776          for (int fileNo = 0 ; ; ) {          RIFF::Chunk* ckXfil = pRIFF->GetSubChunk(CHUNK_ID_XFIL);
5777            if (ckXfil) { // there are extension files (.gx01, ... , .gx98) ...
5778                const uint32_t n = ckXfil->ReadInt32();
5779                for (int i = 0; i < n; i++) {
5780                    // read the filename and load the extension file
5781                    std::string name;
5782                    ckXfil->ReadString(name, 128);
5783                    std::string path = concatPath(folder, name);
5784                    RIFF::File* pExtFile = new RIFF::File(path);
5785                    // check that the dlsids match
5786                    RIFF::Chunk* ckDLSID = pExtFile->GetSubChunk(CHUNK_ID_DLID);
5787                    if (ckDLSID) {
5788                        ::DLS::dlsid_t idExpected;
5789                        idExpected.ulData1 = ckXfil->ReadInt32();
5790                        idExpected.usData2 = ckXfil->ReadInt16();
5791                        idExpected.usData3 = ckXfil->ReadInt16();
5792                        ckXfil->Read(idExpected.abData, 8, 1);
5793                        ::DLS::dlsid_t idFound;
5794                        ckDLSID->Read(&idFound.ulData1, 1, 4);
5795                        ckDLSID->Read(&idFound.usData2, 1, 2);
5796                        ckDLSID->Read(&idFound.usData3, 1, 2);
5797                        ckDLSID->Read(idFound.abData, 8, 1);
5798                        if (memcmp(&idExpected, &idFound, 16) != 0)
5799                            throw gig::Exception("dlsid mismatch for extension file: %s", path.c_str());
5800                    }
5801                    poolFiles.push_back(pExtFile);
5802                    ExtensionFiles.push_back(pExtFile);
5803                }
5804            }
5805    
5806            // check if a .gx99 (GigaPulse) file exists
5807            RIFF::Chunk* ckDoxf = pRIFF->GetSubChunk(CHUNK_ID_DOXF);
5808            if (ckDoxf) { // there is a .gx99 (GigaPulse) file ...
5809                std::string path = baseName + ".gx99";
5810                RIFF::File* pExtFile = new RIFF::File(path);
5811    
5812                // skip unused int and filename
5813                ckDoxf->SetPos(132, RIFF::stream_curpos);
5814    
5815                // check that the dlsids match
5816                RIFF::Chunk* ckDLSID = pExtFile->GetSubChunk(CHUNK_ID_DLID);
5817                if (ckDLSID) {
5818                    ::DLS::dlsid_t idExpected;
5819                    idExpected.ulData1 = ckDoxf->ReadInt32();
5820                    idExpected.usData2 = ckDoxf->ReadInt16();
5821                    idExpected.usData3 = ckDoxf->ReadInt16();
5822                    ckDoxf->Read(idExpected.abData, 8, 1);
5823                    ::DLS::dlsid_t idFound;
5824                    ckDLSID->Read(&idFound.ulData1, 1, 4);
5825                    ckDLSID->Read(&idFound.usData2, 1, 2);
5826                    ckDLSID->Read(&idFound.usData3, 1, 2);
5827                    ckDLSID->Read(idFound.abData, 8, 1);
5828                    if (memcmp(&idExpected, &idFound, 16) != 0)
5829                        throw gig::Exception("dlsid mismatch for GigaPulse file: %s", path.c_str());
5830                }
5831                poolFiles.push_back(pExtFile);
5832                ExtensionFiles.push_back(pExtFile);
5833            }
5834    
5835            // load samples from extension files (if required)
5836            for (int i = 0; i < poolFiles.size(); i++) {
5837                RIFF::File* file = poolFiles[i];
5838              RIFF::List* wvpl = file->GetSubList(LIST_TYPE_WVPL);              RIFF::List* wvpl = file->GetSubList(LIST_TYPE_WVPL);
5839              if (wvpl) {              if (wvpl) {
5840                  unsigned long wvplFileOffset = wvpl->GetFilePos();                  file_offset_t wvplFileOffset = wvpl->GetFilePos() -
5841                                                   wvpl->GetPos(); // should be zero, but just to be sure
5842                  RIFF::List* wave = wvpl->GetFirstSubList();                  RIFF::List* wave = wvpl->GetFirstSubList();
5843                  while (wave) {                  while (wave) {
5844                      if (wave->GetListType() == LIST_TYPE_WAVE) {                      if (wave->GetListType() == LIST_TYPE_WAVE) {
5845                          // notify current progress                          // notify current progress
5846                          const float subprogress = (float) iSampleIndex / (float) iTotalSamples;                          if (pProgress) {
5847                          __notify_progress(pProgress, subprogress);                              const float subprogress = (float) iSampleIndex / (float) iTotalSamples;
5848                                __notify_progress(pProgress, subprogress);
5849                            }
5850    
5851                          unsigned long waveFileOffset = wave->GetFilePos();                          file_offset_t waveFileOffset = wave->GetFilePos();
5852                          pSamples->push_back(new Sample(this, wave, waveFileOffset - wvplFileOffset, fileNo));                          pSamples->push_back(new Sample(this, wave, waveFileOffset - wvplFileOffset, i, iSampleIndex));
5853    
5854                          iSampleIndex++;                          iSampleIndex++;
5855                      }                      }
5856                      wave = wvpl->GetNextSubList();                      wave = wvpl->GetNextSubList();
5857                  }                  }
5858                }
                 if (fileNo == lastFileNo) break;  
   
                 // open extension file (*.gx01, *.gx02, ...)  
                 fileNo++;  
                 sprintf(suffix, ".gx%02d", fileNo);  
                 name.replace(nameLen, 5, suffix);  
                 file = new RIFF::File(name);  
                 ExtensionFiles.push_back(file);  
             } else break;  
5859          }          }
5860    
5861          __notify_progress(pProgress, 1.0); // notify done          if (pProgress)
5862                __notify_progress(pProgress, 1.0); // notify done
5863      }      }
5864    
5865      Instrument* File::GetFirstInstrument() {      Instrument* File::GetFirstInstrument() {
# Line 4721  namespace { Line 5876  namespace {
5876      }      }
5877    
5878      /**      /**
5879         * Returns the total amount of instruments of this gig file.
5880         *
5881         * Note that this method might block for a long time in case it is required
5882         * to load the instruments info for the first time.
5883         *
5884         * @returns total amount of instruments
5885         */
5886        size_t File::CountInstruments() {
5887            if (!pInstruments) LoadInstruments();
5888            if (!pInstruments) return 0;
5889            return pInstruments->size();
5890        }
5891    
5892        /**
5893       * Returns the instrument with the given index.       * Returns the instrument with the given index.
5894       *       *
5895       * @param index     - number of the sought instrument (0..n)       * @param index     - number of the sought instrument (0..n)
# Line 4731  namespace { Line 5900  namespace {
5900          if (!pInstruments) {          if (!pInstruments) {
5901              // TODO: hack - we simply load ALL samples here, it would have been done in the Region constructor anyway (ATM)              // TODO: hack - we simply load ALL samples here, it would have been done in the Region constructor anyway (ATM)
5902    
5903              // sample loading subtask              if (pProgress) {
5904              progress_t subprogress;                  // sample loading subtask
5905              __divide_progress(pProgress, &subprogress, 3.0f, 0.0f); // randomly schedule 33% for this subtask                  progress_t subprogress;
5906              __notify_progress(&subprogress, 0.0f);                  __divide_progress(pProgress, &subprogress, 3.0f, 0.0f); // randomly schedule 33% for this subtask
5907              if (GetAutoLoad())                  __notify_progress(&subprogress, 0.0f);
5908                  GetFirstSample(&subprogress); // now force all samples to be loaded                  if (GetAutoLoad())
5909              __notify_progress(&subprogress, 1.0f);                      GetFirstSample(&subprogress); // now force all samples to be loaded
5910                    __notify_progress(&subprogress, 1.0f);
5911              // instrument loading subtask  
5912              if (pProgress && pProgress->callback) {                  // instrument loading subtask
5913                  subprogress.__range_min = subprogress.__range_max;                  if (pProgress->callback) {
5914                  subprogress.__range_max = pProgress->__range_max; // schedule remaining percentage for this subtask                      subprogress.__range_min = subprogress.__range_max;
5915              }                      subprogress.__range_max = pProgress->__range_max; // schedule remaining percentage for this subtask
5916              __notify_progress(&subprogress, 0.0f);                  }
5917              LoadInstruments(&subprogress);                  __notify_progress(&subprogress, 0.0f);
5918              __notify_progress(&subprogress, 1.0f);                  LoadInstruments(&subprogress);
5919                    __notify_progress(&subprogress, 1.0f);
5920                } else {
5921                    // sample loading subtask
5922                    if (GetAutoLoad())
5923                        GetFirstSample(); // now force all samples to be loaded
5924    
5925                    // instrument loading subtask
5926                    LoadInstruments();
5927                }
5928          }          }
5929          if (!pInstruments) return NULL;          if (!pInstruments) return NULL;
5930          InstrumentsIterator = pInstruments->begin();          InstrumentsIterator = pInstruments->begin();
# Line 4839  namespace { Line 6017  namespace {
6017              mGroups[pFile->GetSample(i)->GetGroup()]->AddSample(s);              mGroups[pFile->GetSample(i)->GetGroup()]->AddSample(s);
6018              mSamples[pFile->GetSample(i)] = s;              mSamples[pFile->GetSample(i)] = s;
6019          }          }
6020            
6021            // clone script groups and their scripts
6022            for (int iGroup = 0; pFile->GetScriptGroup(iGroup); ++iGroup) {
6023                ScriptGroup* sg = pFile->GetScriptGroup(iGroup);
6024                ScriptGroup* dg = AddScriptGroup();
6025                dg->Name = "COPY" + ToString(iCallCount) + "_" + sg->Name;
6026                for (int iScript = 0; sg->GetScript(iScript); ++iScript) {
6027                    Script* ss = sg->GetScript(iScript);
6028                    Script* ds = dg->AddScript();
6029                    ds->CopyAssign(ss);
6030                }
6031            }
6032    
6033          //BUG: For some reason this method only works with this additional          //BUG: For some reason this method only works with this additional
6034          //     Save() call in between here.          //     Save() call in between here.
6035          //          //
# Line 4883  namespace { Line 6073  namespace {
6073          InstrumentList::iterator iter = find(pInstruments->begin(), pInstruments->end(), (DLS::Instrument*) pInstrument);          InstrumentList::iterator iter = find(pInstruments->begin(), pInstruments->end(), (DLS::Instrument*) pInstrument);
6074          if (iter == pInstruments->end()) throw gig::Exception("Could not delete instrument, could not find given instrument");          if (iter == pInstruments->end()) throw gig::Exception("Could not delete instrument, could not find given instrument");
6075          pInstruments->erase(iter);          pInstruments->erase(iter);
6076            pInstrument->DeleteChunks();
6077          delete pInstrument;          delete pInstrument;
6078      }      }
6079    
# Line 4898  namespace { Line 6089  namespace {
6089              RIFF::List* lstInstr = lstInstruments->GetFirstSubList();              RIFF::List* lstInstr = lstInstruments->GetFirstSubList();
6090              while (lstInstr) {              while (lstInstr) {
6091                  if (lstInstr->GetListType() == LIST_TYPE_INS) {                  if (lstInstr->GetListType() == LIST_TYPE_INS) {
6092                      // notify current progress                      if (pProgress) {
6093                      const float localProgress = (float) iInstrumentIndex / (float) Instruments;                          // notify current progress
6094                      __notify_progress(pProgress, localProgress);                          const float localProgress = (float) iInstrumentIndex / (float) Instruments;
6095                            __notify_progress(pProgress, localProgress);
                     // divide local progress into subprogress for loading current Instrument  
                     progress_t subprogress;  
                     __divide_progress(pProgress, &subprogress, Instruments, iInstrumentIndex);  
6096    
6097                      pInstruments->push_back(new Instrument(this, lstInstr, &subprogress));                          // divide local progress into subprogress for loading current Instrument
6098                            progress_t subprogress;
6099                            __divide_progress(pProgress, &subprogress, Instruments, iInstrumentIndex);
6100    
6101                            pInstruments->push_back(new Instrument(this, lstInstr, &subprogress));
6102                        } else {
6103                            pInstruments->push_back(new Instrument(this, lstInstr));
6104                        }
6105    
6106                      iInstrumentIndex++;                      iInstrumentIndex++;
6107                  }                  }
6108                  lstInstr = lstInstruments->GetNextSubList();                  lstInstr = lstInstruments->GetNextSubList();
6109              }              }
6110              __notify_progress(pProgress, 1.0); // notify done              if (pProgress)
6111                    __notify_progress(pProgress, 1.0); // notify done
6112          }          }
6113      }      }
6114    
# Line 4924  namespace { Line 6120  namespace {
6120          if (!_3crc) return;          if (!_3crc) return;
6121    
6122          // get the index of the sample          // get the index of the sample
6123          int iWaveIndex = -1;          int iWaveIndex = GetWaveTableIndexOf(pSample);
         File::SampleList::iterator iter = pSamples->begin();  
         File::SampleList::iterator end  = pSamples->end();  
         for (int index = 0; iter != end; ++iter, ++index) {  
             if (*iter == pSample) {  
                 iWaveIndex = index;  
                 break;  
             }  
         }  
6124          if (iWaveIndex < 0) throw gig::Exception("Could not update crc, could not find sample");          if (iWaveIndex < 0) throw gig::Exception("Could not update crc, could not find sample");
6125    
6126          // write the CRC-32 checksum to disk          // write the CRC-32 checksum to disk
6127          _3crc->SetPos(iWaveIndex * 8);          _3crc->SetPos(iWaveIndex * 8);
6128          uint32_t tmp = 1;          uint32_t one = 1;
6129          _3crc->WriteUint32(&tmp); // unknown, always 1?          _3crc->WriteUint32(&one); // always 1
6130          _3crc->WriteUint32(&crc);          _3crc->WriteUint32(&crc);
6131      }      }
6132    
6133        uint32_t File::GetSampleChecksum(Sample* pSample) {
6134            // get the index of the sample
6135            int iWaveIndex = GetWaveTableIndexOf(pSample);
6136            if (iWaveIndex < 0) throw gig::Exception("Could not retrieve reference crc of sample, could not resolve sample's wave table index");
6137    
6138            return GetSampleChecksumByIndex(iWaveIndex);
6139        }
6140    
6141        uint32_t File::GetSampleChecksumByIndex(int index) {
6142            if (index < 0) throw gig::Exception("Could not retrieve reference crc of sample, invalid wave pool index of sample");
6143    
6144            RIFF::Chunk* _3crc = pRIFF->GetSubChunk(CHUNK_ID_3CRC);
6145            if (!_3crc) throw gig::Exception("Could not retrieve reference crc of sample, no checksums stored for this file yet");
6146            uint8_t* pData = (uint8_t*) _3crc->LoadChunkData();
6147            if (!pData) throw gig::Exception("Could not retrieve reference crc of sample, no checksums stored for this file yet");
6148    
6149            // read the CRC-32 checksum directly from disk
6150            size_t pos = index * 8;
6151            if (pos + 8 > _3crc->GetNewSize())
6152                throw gig::Exception("Could not retrieve reference crc of sample, could not seek to required position in crc chunk");
6153    
6154            uint32_t one = load32(&pData[pos]); // always 1
6155            if (one != 1)
6156                throw gig::Exception("Could not retrieve reference crc of sample, because reference checksum table is damaged");
6157    
6158            return load32(&pData[pos+4]);
6159        }
6160    
6161        int File::GetWaveTableIndexOf(gig::Sample* pSample) {
6162            if (!pSamples) GetFirstSample(); // make sure sample chunks were scanned
6163            File::SampleList::iterator iter = pSamples->begin();
6164            File::SampleList::iterator end  = pSamples->end();
6165            for (int index = 0; iter != end; ++iter, ++index)
6166                if (*iter == pSample)
6167                    return index;
6168            return -1;
6169        }
6170    
6171        /**
6172         * Checks whether the file's "3CRC" chunk was damaged. This chunk contains
6173         * the CRC32 check sums of all samples' raw wave data.
6174         *
6175         * @return true if 3CRC chunk is OK, or false if 3CRC chunk is damaged
6176         */
6177        bool File::VerifySampleChecksumTable() {
6178            RIFF::Chunk* _3crc = pRIFF->GetSubChunk(CHUNK_ID_3CRC);
6179            if (!_3crc) return false;
6180            if (_3crc->GetNewSize() <= 0) return false;
6181            if (_3crc->GetNewSize() % 8) return false;
6182            if (!pSamples) GetFirstSample(); // make sure sample chunks were scanned
6183            if (_3crc->GetNewSize() != pSamples->size() * 8) return false;
6184    
6185            const file_offset_t n = _3crc->GetNewSize() / 8;
6186    
6187            uint32_t* pData = (uint32_t*) _3crc->LoadChunkData();
6188            if (!pData) return false;
6189    
6190            for (file_offset_t i = 0; i < n; ++i) {
6191                uint32_t one = pData[i*2];
6192                if (one != 1) return false;
6193            }
6194    
6195            return true;
6196        }
6197    
6198        /**
6199         * Recalculates CRC32 checksums for all samples and rebuilds this gig
6200         * file's checksum table with those new checksums. This might usually
6201         * just be necessary if the checksum table was damaged.
6202         *
6203         * @e IMPORTANT: The current implementation of this method only works
6204         * with files that have not been modified since it was loaded, because
6205         * it expects that no externally caused file structure changes are
6206         * required!
6207         *
6208         * Due to the expectation above, this method is currently protected
6209         * and actually only used by the command line tool "gigdump" yet.
6210         *
6211         * @returns true if Save() is required to be called after this call,
6212         *          false if no further action is required
6213         */
6214        bool File::RebuildSampleChecksumTable() {
6215            // make sure sample chunks were scanned
6216            if (!pSamples) GetFirstSample();
6217    
6218            bool bRequiresSave = false;
6219    
6220            // make sure "3CRC" chunk exists with required size
6221            RIFF::Chunk* _3crc = pRIFF->GetSubChunk(CHUNK_ID_3CRC);
6222            if (!_3crc) {
6223                _3crc = pRIFF->AddSubChunk(CHUNK_ID_3CRC, pSamples->size() * 8);
6224                // the order of einf and 3crc is not the same in v2 and v3
6225                RIFF::Chunk* einf = pRIFF->GetSubChunk(CHUNK_ID_EINF);
6226                if (einf && pVersion && pVersion->major > 2) pRIFF->MoveSubChunk(_3crc, einf);
6227                bRequiresSave = true;
6228            } else if (_3crc->GetNewSize() != pSamples->size() * 8) {
6229                _3crc->Resize(pSamples->size() * 8);
6230                bRequiresSave = true;
6231            }
6232    
6233            if (bRequiresSave) { // refill CRC table for all samples in RAM ...
6234                uint32_t* pData = (uint32_t*) _3crc->LoadChunkData();
6235                {
6236                    File::SampleList::iterator iter = pSamples->begin();
6237                    File::SampleList::iterator end  = pSamples->end();
6238                    for (; iter != end; ++iter) {
6239                        gig::Sample* pSample = (gig::Sample*) *iter;
6240                        int index = GetWaveTableIndexOf(pSample);
6241                        if (index < 0) throw gig::Exception("Could not rebuild crc table for samples, wave table index of a sample could not be resolved");
6242                        pData[index*2]   = 1; // always 1
6243                        pData[index*2+1] = pSample->CalculateWaveDataChecksum();
6244                    }
6245                }
6246            } else { // no file structure changes necessary, so directly write to disk and we are done ...
6247                // make sure file is in write mode
6248                pRIFF->SetMode(RIFF::stream_mode_read_write);
6249                {
6250                    File::SampleList::iterator iter = pSamples->begin();
6251                    File::SampleList::iterator end  = pSamples->end();
6252                    for (; iter != end; ++iter) {
6253                        gig::Sample* pSample = (gig::Sample*) *iter;
6254                        int index = GetWaveTableIndexOf(pSample);
6255                        if (index < 0) throw gig::Exception("Could not rebuild crc table for samples, wave table index of a sample could not be resolved");
6256                        pSample->crc  = pSample->CalculateWaveDataChecksum();
6257                        SetSampleChecksum(pSample, pSample->crc);
6258                    }
6259                }
6260            }
6261    
6262            return bRequiresSave;
6263        }
6264    
6265      Group* File::GetFirstGroup() {      Group* File::GetFirstGroup() {
6266          if (!pGroups) LoadGroups();          if (!pGroups) LoadGroups();
6267          // there must always be at least one group          // there must always be at least one group
# Line 5018  namespace { Line 6338  namespace {
6338          }          }
6339          // now delete this group object          // now delete this group object
6340          pGroups->erase(iter);          pGroups->erase(iter);
6341            pGroup->DeleteChunks();
6342          delete pGroup;          delete pGroup;
6343      }      }
6344    
# Line 5039  namespace { Line 6360  namespace {
6360          // move all members of this group to another group          // move all members of this group to another group
6361          pGroup->MoveAll();          pGroup->MoveAll();
6362          pGroups->erase(iter);          pGroups->erase(iter);
6363            pGroup->DeleteChunks();
6364          delete pGroup;          delete pGroup;
6365      }      }
6366    
# Line 5052  namespace { Line 6374  namespace {
6374                  RIFF::Chunk* ck = lst3gnl->GetFirstSubChunk();                  RIFF::Chunk* ck = lst3gnl->GetFirstSubChunk();
6375                  while (ck) {                  while (ck) {
6376                      if (ck->GetChunkID() == CHUNK_ID_3GNM) {                      if (ck->GetChunkID() == CHUNK_ID_3GNM) {
6377                          if (pVersion && pVersion->major == 3 &&                          if (pVersion && pVersion->major > 2 &&
6378                              strcmp(static_cast<char*>(ck->LoadChunkData()), "") == 0) break;                              strcmp(static_cast<char*>(ck->LoadChunkData()), "") == 0) break;
6379    
6380                          pGroups->push_back(new Group(this, ck));                          pGroups->push_back(new Group(this, ck));
# Line 5069  namespace { Line 6391  namespace {
6391          }          }
6392      }      }
6393    
6394        /** @brief Get instrument script group (by index).
6395         *
6396         * Returns the real-time instrument script group with the given index.
6397         *
6398         * @param index - number of the sought group (0..n)
6399         * @returns sought script group or NULL if there's no such group
6400         */
6401        ScriptGroup* File::GetScriptGroup(uint index) {
6402            if (!pScriptGroups) LoadScriptGroups();
6403            std::list<ScriptGroup*>::iterator it = pScriptGroups->begin();
6404            for (uint i = 0; it != pScriptGroups->end(); ++i, ++it)
6405                if (i == index) return *it;
6406            return NULL;
6407        }
6408    
6409        /** @brief Get instrument script group (by name).
6410         *
6411         * Returns the first real-time instrument script group found with the given
6412         * group name. Note that group names may not necessarily be unique.
6413         *
6414         * @param name - name of the sought script group
6415         * @returns sought script group or NULL if there's no such group
6416         */
6417        ScriptGroup* File::GetScriptGroup(const String& name) {
6418            if (!pScriptGroups) LoadScriptGroups();
6419            std::list<ScriptGroup*>::iterator it = pScriptGroups->begin();
6420            for (uint i = 0; it != pScriptGroups->end(); ++i, ++it)
6421                if ((*it)->Name == name) return *it;
6422            return NULL;
6423        }
6424    
6425        /** @brief Add new instrument script group.
6426         *
6427         * Adds a new, empty real-time instrument script group to the file.
6428         *
6429         * You have to call Save() to make this persistent to the file.
6430         *
6431         * @return new empty script group
6432         */
6433        ScriptGroup* File::AddScriptGroup() {
6434            if (!pScriptGroups) LoadScriptGroups();
6435            ScriptGroup* pScriptGroup = new ScriptGroup(this, NULL);
6436            pScriptGroups->push_back(pScriptGroup);
6437            return pScriptGroup;
6438        }
6439    
6440        /** @brief Delete an instrument script group.
6441         *
6442         * This will delete the given real-time instrument script group and all its
6443         * instrument scripts it contains. References inside instruments that are
6444         * using the deleted scripts will be removed from the respective instruments
6445         * accordingly.
6446         *
6447         * You have to call Save() to make this persistent to the file.
6448         *
6449         * @param pScriptGroup - script group to delete
6450         * @throws gig::Exception if given script group could not be found
6451         */
6452        void File::DeleteScriptGroup(ScriptGroup* pScriptGroup) {
6453            if (!pScriptGroups) LoadScriptGroups();
6454            std::list<ScriptGroup*>::iterator iter =
6455                find(pScriptGroups->begin(), pScriptGroups->end(), pScriptGroup);
6456            if (iter == pScriptGroups->end())
6457                throw gig::Exception("Could not delete script group, could not find given script group");
6458            pScriptGroups->erase(iter);
6459            for (int i = 0; pScriptGroup->GetScript(i); ++i)
6460                pScriptGroup->DeleteScript(pScriptGroup->GetScript(i));
6461            if (pScriptGroup->pList)
6462                pScriptGroup->pList->GetParent()->DeleteSubChunk(pScriptGroup->pList);
6463            pScriptGroup->DeleteChunks();
6464            delete pScriptGroup;
6465        }
6466    
6467        void File::LoadScriptGroups() {
6468            if (pScriptGroups) return;
6469            pScriptGroups = new std::list<ScriptGroup*>;
6470            RIFF::List* lstLS = pRIFF->GetSubList(LIST_TYPE_3LS);
6471            if (lstLS) {
6472                for (RIFF::List* lst = lstLS->GetFirstSubList(); lst;
6473                     lst = lstLS->GetNextSubList())
6474                {
6475                    if (lst->GetListType() == LIST_TYPE_RTIS) {
6476                        pScriptGroups->push_back(new ScriptGroup(this, lst));
6477                    }
6478                }
6479            }
6480        }
6481    
6482      /**      /**
6483       * Apply all the gig file's current instruments, samples, groups and settings       * Apply all the gig file's current instruments, samples, groups and settings
6484       * to the respective RIFF chunks. You have to call Save() to make changes       * to the respective RIFF chunks. You have to call Save() to make changes
# Line 5077  namespace { Line 6487  namespace {
6487       * Usually there is absolutely no need to call this method explicitly.       * Usually there is absolutely no need to call this method explicitly.
6488       * It will be called automatically when File::Save() was called.       * It will be called automatically when File::Save() was called.
6489       *       *
6490         * @param pProgress - callback function for progress notification
6491       * @throws Exception - on errors       * @throws Exception - on errors
6492       */       */
6493      void File::UpdateChunks() {      void File::UpdateChunks(progress_t* pProgress) {
6494          bool newFile = pRIFF->GetSubList(LIST_TYPE_INFO) == NULL;          bool newFile = pRIFF->GetSubList(LIST_TYPE_INFO) == NULL;
6495    
6496          b64BitWavePoolOffsets = pVersion && pVersion->major == 3;          // update own gig format extension chunks
6497            // (not part of the GigaStudio 4 format)
6498            RIFF::List* lst3LS = pRIFF->GetSubList(LIST_TYPE_3LS);
6499            if (!lst3LS) {
6500                lst3LS = pRIFF->AddSubList(LIST_TYPE_3LS);
6501            }
6502            // Make sure <3LS > chunk is placed before <ptbl> chunk. The precise
6503            // location of <3LS > is irrelevant, however it should be located
6504            // before  the actual wave data
6505            RIFF::Chunk* ckPTBL = pRIFF->GetSubChunk(CHUNK_ID_PTBL);
6506            pRIFF->MoveSubChunk(lst3LS, ckPTBL);
6507    
6508            // This must be performed before writing the chunks for instruments,
6509            // because the instruments' script slots will write the file offsets
6510            // of the respective instrument script chunk as reference.
6511            if (pScriptGroups) {
6512                // Update instrument script (group) chunks.
6513                for (std::list<ScriptGroup*>::iterator it = pScriptGroups->begin();
6514                     it != pScriptGroups->end(); ++it)
6515                {
6516                    (*it)->UpdateChunks(pProgress);
6517                }
6518            }
6519    
6520            // in case no libgig custom format data was added, then remove the
6521            // custom "3LS " chunk again
6522            if (!lst3LS->CountSubChunks()) {
6523                pRIFF->DeleteSubChunk(lst3LS);
6524                lst3LS = NULL;
6525            }
6526    
6527          // first update base class's chunks          // first update base class's chunks
6528          DLS::File::UpdateChunks();          DLS::File::UpdateChunks(pProgress);
6529    
6530          if (newFile) {          if (newFile) {
6531              // INFO was added by Resource::UpdateChunks - make sure it              // INFO was added by Resource::UpdateChunks - make sure it
# Line 5111  namespace { Line 6551  namespace {
6551    
6552              // v3: make sure the file has 128 3gnm chunks              // v3: make sure the file has 128 3gnm chunks
6553              // (before updating the Group chunks)              // (before updating the Group chunks)
6554              if (pVersion && pVersion->major == 3) {              if (pVersion && pVersion->major > 2) {
6555                  RIFF::Chunk* _3gnm = _3gnl->GetFirstSubChunk();                  RIFF::Chunk* _3gnm = _3gnl->GetFirstSubChunk();
6556                  for (int i = 0 ; i < 128 ; i++) {                  for (int i = 0 ; i < 128 ; i++) {
6557                      if (i >= pGroups->size()) ::SaveString(CHUNK_ID_3GNM, _3gnm, _3gnl, "", "", true, 64);                      if (i >= pGroups->size()) ::SaveString(CHUNK_ID_3GNM, _3gnm, _3gnl, "", "", true, 64);
# Line 5122  namespace { Line 6562  namespace {
6562              std::list<Group*>::iterator iter = pGroups->begin();              std::list<Group*>::iterator iter = pGroups->begin();
6563              std::list<Group*>::iterator end  = pGroups->end();              std::list<Group*>::iterator end  = pGroups->end();
6564              for (; iter != end; ++iter) {              for (; iter != end; ++iter) {
6565                  (*iter)->UpdateChunks();                  (*iter)->UpdateChunks(pProgress);
6566              }              }
6567          }          }
6568    
# Line 5142  namespace { Line 6582  namespace {
6582          // Note that there are several fields with unknown use. These          // Note that there are several fields with unknown use. These
6583          // are set to zero.          // are set to zero.
6584    
6585          int sublen = pSamples->size() / 8 + 49;          int sublen = int(pSamples->size() / 8 + 49);
6586          int einfSize = (Instruments + 1) * sublen;          int einfSize = (Instruments + 1) * sublen;
6587    
6588          RIFF::Chunk* einf = pRIFF->GetSubChunk(CHUNK_ID_EINF);          RIFF::Chunk* einf = pRIFF->GetSubChunk(CHUNK_ID_EINF);
# Line 5215  namespace { Line 6655  namespace {
6655                  store32(&pData[(instrumentIdx + 1) * sublen + 24], nbloops);                  store32(&pData[(instrumentIdx + 1) * sublen + 24], nbloops);
6656                  // next 8 bytes unknown                  // next 8 bytes unknown
6657                  store32(&pData[(instrumentIdx + 1) * sublen + 36], instrumentIdx);                  store32(&pData[(instrumentIdx + 1) * sublen + 36], instrumentIdx);
6658                  store32(&pData[(instrumentIdx + 1) * sublen + 40], pSamples->size());                  store32(&pData[(instrumentIdx + 1) * sublen + 40], (uint32_t) pSamples->size());
6659                  // next 4 bytes unknown                  // next 4 bytes unknown
6660    
6661                  totnbregions += instrument->Regions;                  totnbregions += instrument->Regions;
# Line 5233  namespace { Line 6673  namespace {
6673              store32(&pData[24], totnbloops);              store32(&pData[24], totnbloops);
6674              // next 8 bytes unknown              // next 8 bytes unknown
6675              // next 4 bytes unknown, not always 0              // next 4 bytes unknown, not always 0
6676              store32(&pData[40], pSamples->size());              store32(&pData[40], (uint32_t) pSamples->size());
6677              // next 4 bytes unknown              // next 4 bytes unknown
6678          }          }
6679    
6680          // update 3crc chunk          // update 3crc chunk
6681    
6682          // The 3crc chunk contains CRC-32 checksums for the          // The 3crc chunk contains CRC-32 checksums for the
6683          // samples. The actual checksum values will be filled in          // samples. When saving a gig file to disk, we first update the 3CRC
6684          // later, by Sample::Write.          // chunk here (in RAM) with the old crc values which we read from the
6685            // 3CRC chunk when we opened the file (available with gig::Sample::crc
6686            // member variable). This step is required, because samples might have
6687            // been deleted by the user since the file was opened, which in turn
6688            // changes the order of the (i.e. old) checksums within the 3crc chunk.
6689            // If a sample was conciously modified by the user (that is if
6690            // Sample::Write() was called later on) then Sample::Write() will just
6691            // update the respective individual checksum(s) directly on disk and
6692            // leaves all other sample checksums untouched.
6693    
6694          RIFF::Chunk* _3crc = pRIFF->GetSubChunk(CHUNK_ID_3CRC);          RIFF::Chunk* _3crc = pRIFF->GetSubChunk(CHUNK_ID_3CRC);
6695          if (_3crc) {          if (_3crc) {
6696              _3crc->Resize(pSamples->size() * 8);              _3crc->Resize(pSamples->size() * 8);
6697          } else if (newFile) {          } else /*if (newFile)*/ {
6698              _3crc = pRIFF->AddSubChunk(CHUNK_ID_3CRC, pSamples->size() * 8);              _3crc = pRIFF->AddSubChunk(CHUNK_ID_3CRC, pSamples->size() * 8);
             _3crc->LoadChunkData();  
   
6699              // the order of einf and 3crc is not the same in v2 and v3              // the order of einf and 3crc is not the same in v2 and v3
6700              if (einf && pVersion && pVersion->major == 3) pRIFF->MoveSubChunk(_3crc, einf);              if (einf && pVersion && pVersion->major > 2) pRIFF->MoveSubChunk(_3crc, einf);
6701            }
6702            { // must be performed in RAM here ...
6703                uint32_t* pData = (uint32_t*) _3crc->LoadChunkData();
6704                if (pData) {
6705                    File::SampleList::iterator iter = pSamples->begin();
6706                    File::SampleList::iterator end  = pSamples->end();
6707                    for (int index = 0; iter != end; ++iter, ++index) {
6708                        gig::Sample* pSample = (gig::Sample*) *iter;
6709                        pData[index*2]   = 1; // always 1
6710                        pData[index*2+1] = pSample->crc;
6711                    }
6712                }
6713            }
6714        }
6715        
6716        void File::UpdateFileOffsets() {
6717            DLS::File::UpdateFileOffsets();
6718    
6719            for (Instrument* instrument = GetFirstInstrument(); instrument;
6720                 instrument = GetNextInstrument())
6721            {
6722                instrument->UpdateScriptFileOffsets();
6723          }          }
6724      }      }
6725    
6726      /**      /**
6727       * Enable / disable automatic loading. By default this properyt is       * Enable / disable automatic loading. By default this property is
6728       * enabled and all informations are loaded automatically. However       * enabled and every information is loaded automatically. However
6729       * loading all Regions, DimensionRegions and especially samples might       * loading all Regions, DimensionRegions and especially samples might
6730       * take a long time for large .gig files, and sometimes one might only       * take a long time for large .gig files, and sometimes one might only
6731       * be interested in retrieving very superficial informations like the       * be interested in retrieving very superficial informations like the
# Line 5265  namespace { Line 6733  namespace {
6733       * automatic loading to avoid very slow response times.       * automatic loading to avoid very slow response times.
6734       *       *
6735       * @e CAUTION: by disabling this property many pointers (i.e. sample       * @e CAUTION: by disabling this property many pointers (i.e. sample
6736       * references) and informations will have invalid or even undefined       * references) and attributes will have invalid or even undefined
6737       * data! This feature is currently only intended for retrieving very       * data! This feature is currently only intended for retrieving very
6738       * superficial informations in a very fast way. Don't use it to retrieve       * superficial information in a very fast way. Don't use it to retrieve
6739       * details like synthesis informations or even to modify .gig files!       * details like synthesis information or even to modify .gig files!
6740       */       */
6741      void File::SetAutoLoad(bool b) {      void File::SetAutoLoad(bool b) {
6742          bAutoLoad = b;          bAutoLoad = b;
# Line 5287  namespace { Line 6755  namespace {
6755  // *************** Exception ***************  // *************** Exception ***************
6756  // *  // *
6757    
6758      Exception::Exception(String Message) : DLS::Exception(Message) {      Exception::Exception() : DLS::Exception() {
6759        }
6760    
6761        Exception::Exception(String format, ...) : DLS::Exception() {
6762            va_list arg;
6763            va_start(arg, format);
6764            Message = assemble(format, arg);
6765            va_end(arg);
6766        }
6767    
6768        Exception::Exception(String format, va_list arg) : DLS::Exception() {
6769            Message = assemble(format, arg);
6770      }      }
6771    
6772      void Exception::PrintMessage() {      void Exception::PrintMessage() {

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