/[svn]/libgig/trunk/src/gig.cpp
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Diff of /libgig/trunk/src/gig.cpp

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revision 3442 by schoenebeck, Sat Dec 22 18:59:29 2018 UTC revision 3925 by schoenebeck, Mon Jun 14 12:15:51 2021 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) 2003-2018 by Christian Schoenebeck                      *   *   Copyright (C) 2003-2021 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 412  namespace { Line 412  namespace {
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 421  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 467  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 > 2 && BitDepth == 24) {              if (version > 2 && BitDepth == 24) {
478                  Dithered = ewav->ReadInt32();                  Dithered = ewav->ReadInt32();
# Line 476  namespace { Line 482  namespace {
482              ScanCompressedSample();              ScanCompressedSample();
483          }          }
484    
485          // we use a buffer for decompression and for truncating 24 bit samples to 16 bit          // we use a buffer for decompression only
486          if ((Compressed || BitDepth == 24) && !InternalDecompressionBuffer.Size) {          if (Compressed && !InternalDecompressionBuffer.Size) {
487              InternalDecompressionBuffer.pStart = new unsigned char[INITIAL_SAMPLE_BUFFER_SIZE];              InternalDecompressionBuffer.pStart = new unsigned char[INITIAL_SAMPLE_BUFFER_SIZE];
488              InternalDecompressionBuffer.Size   = INITIAL_SAMPLE_BUFFER_SIZE;              InternalDecompressionBuffer.Size   = INITIAL_SAMPLE_BUFFER_SIZE;
489          }          }
# Line 1500  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 1732  namespace { Line 1740  namespace {
1740              VCFType                         = vcf_type_lowpass;              VCFType                         = vcf_type_lowpass;
1741              memset(DimensionUpperLimits, 127, 8);              memset(DimensionUpperLimits, 127, 8);
1742          }          }
1743    
1744          // chunk for own format extensions, these will *NOT* work with Gigasampler/GigaStudio !          // chunk for own format extensions, these will *NOT* work with Gigasampler/GigaStudio !
1745          RIFF::Chunk* lsde = _3ewl->GetSubChunk(CHUNK_ID_LSDE);          RIFF::Chunk* lsde = _3ewl->GetSubChunk(CHUNK_ID_LSDE);
1746          if (lsde) { // format extension for EG behavior options          if (lsde) { // format extension for EG behavior options
1747                lsde->SetPos(0);
1748    
1749              eg_opt_t* pEGOpts[2] = { &EG1Options, &EG2Options };              eg_opt_t* pEGOpts[2] = { &EG1Options, &EG2Options };
1750              for (int i = 0; i < 2; ++i) { // NOTE: we reserved a 3rd byte for a potential future EG3 option              for (int i = 0; i < 2; ++i) { // NOTE: we reserved a 3rd byte for a potential future EG3 option
1751                  unsigned char byte = lsde->ReadUint8();                  unsigned char byte = lsde->ReadUint8();
# Line 1748  namespace { Line 1759  namespace {
1759          // format extension for sustain pedal up effect on release trigger samples          // format extension for sustain pedal up effect on release trigger samples
1760          if (lsde && lsde->GetSize() > 3) { // NOTE: we reserved the 3rd byte for a potential future EG3 option          if (lsde && lsde->GetSize() > 3) { // NOTE: we reserved the 3rd byte for a potential future EG3 option
1761              lsde->SetPos(3);              lsde->SetPos(3);
1762              SustainReleaseTrigger = static_cast<sust_rel_trg_t>(lsde->ReadUint8());              uint8_t byte = lsde->ReadUint8();
1763          } else SustainReleaseTrigger = sust_rel_trg_none;              SustainReleaseTrigger   = static_cast<sust_rel_trg_t>(byte & 0x03);
1764                NoNoteOffReleaseTrigger = byte >> 7;
1765            } else {
1766                SustainReleaseTrigger   = sust_rel_trg_none;
1767                NoNoteOffReleaseTrigger = false;
1768            }
1769            // format extension for LFOs' wave form, phase displacement and for
1770            // LFO3's flip phase
1771            if (lsde && lsde->GetSize() > 4) {
1772                lsde->SetPos(4);
1773                LFO1WaveForm = static_cast<lfo_wave_t>( lsde->ReadUint16() );
1774                LFO2WaveForm = static_cast<lfo_wave_t>( lsde->ReadUint16() );
1775                LFO3WaveForm = static_cast<lfo_wave_t>( lsde->ReadUint16() );
1776                lsde->ReadUint16(); // unused 16 bits, reserved for potential future use
1777                LFO1Phase = (double) GIG_EXP_DECODE( lsde->ReadInt32() );
1778                LFO2Phase = (double) GIG_EXP_DECODE( lsde->ReadInt32() );
1779                LFO3Phase = (double) GIG_EXP_DECODE( lsde->ReadInt32() );
1780                const uint32_t flags = lsde->ReadInt32();
1781                LFO3FlipPhase = flags & 1;
1782            } else {
1783                LFO1WaveForm = lfo_wave_sine;
1784                LFO2WaveForm = lfo_wave_sine;
1785                LFO3WaveForm = lfo_wave_sine;
1786                LFO1Phase = 0.0;
1787                LFO2Phase = 0.0;
1788                LFO3Phase = 0.0;
1789                LFO3FlipPhase = false;
1790            }
1791    
1792          pVelocityAttenuationTable = GetVelocityTable(VelocityResponseCurve,          pVelocityAttenuationTable = GetVelocityTable(VelocityResponseCurve,
1793                                                       VelocityResponseDepth,                                                       VelocityResponseDepth,
# Line 1875  namespace { Line 1913  namespace {
1913          SRLZ(EG1ControllerAttackInfluence);          SRLZ(EG1ControllerAttackInfluence);
1914          SRLZ(EG1ControllerDecayInfluence);          SRLZ(EG1ControllerDecayInfluence);
1915          SRLZ(EG1ControllerReleaseInfluence);          SRLZ(EG1ControllerReleaseInfluence);
1916            SRLZ(LFO1WaveForm);
1917          SRLZ(LFO1Frequency);          SRLZ(LFO1Frequency);
1918            SRLZ(LFO1Phase);
1919          SRLZ(LFO1InternalDepth);          SRLZ(LFO1InternalDepth);
1920          SRLZ(LFO1ControlDepth);          SRLZ(LFO1ControlDepth);
1921          SRLZ(LFO1Controller);          SRLZ(LFO1Controller);
# Line 1893  namespace { Line 1933  namespace {
1933          SRLZ(EG2ControllerAttackInfluence);          SRLZ(EG2ControllerAttackInfluence);
1934          SRLZ(EG2ControllerDecayInfluence);          SRLZ(EG2ControllerDecayInfluence);
1935          SRLZ(EG2ControllerReleaseInfluence);          SRLZ(EG2ControllerReleaseInfluence);
1936            SRLZ(LFO2WaveForm);
1937          SRLZ(LFO2Frequency);          SRLZ(LFO2Frequency);
1938            SRLZ(LFO2Phase);
1939          SRLZ(LFO2InternalDepth);          SRLZ(LFO2InternalDepth);
1940          SRLZ(LFO2ControlDepth);          SRLZ(LFO2ControlDepth);
1941          SRLZ(LFO2Controller);          SRLZ(LFO2Controller);
# Line 1901  namespace { Line 1943  namespace {
1943          SRLZ(LFO2Sync);          SRLZ(LFO2Sync);
1944          SRLZ(EG3Attack);          SRLZ(EG3Attack);
1945          SRLZ(EG3Depth);          SRLZ(EG3Depth);
1946            SRLZ(LFO3WaveForm);
1947          SRLZ(LFO3Frequency);          SRLZ(LFO3Frequency);
1948            SRLZ(LFO3Phase);
1949          SRLZ(LFO3InternalDepth);          SRLZ(LFO3InternalDepth);
1950          SRLZ(LFO3ControlDepth);          SRLZ(LFO3ControlDepth);
1951          SRLZ(LFO3Controller);          SRLZ(LFO3Controller);
1952            SRLZ(LFO3FlipPhase);
1953          SRLZ(LFO3Sync);          SRLZ(LFO3Sync);
1954          SRLZ(VCFEnabled);          SRLZ(VCFEnabled);
1955          SRLZ(VCFType);          SRLZ(VCFType);
# Line 1941  namespace { Line 1986  namespace {
1986          SRLZ(EG1Options);          SRLZ(EG1Options);
1987          SRLZ(EG2Options);          SRLZ(EG2Options);
1988          SRLZ(SustainReleaseTrigger);          SRLZ(SustainReleaseTrigger);
1989            SRLZ(NoNoteOffReleaseTrigger);
1990    
1991          // derived attributes from DLS::Sampler          // derived attributes from DLS::Sampler
1992          SRLZ(FineTune);          SRLZ(FineTune);
# Line 2251  namespace { Line 2297  namespace {
2297          // chunk for own format extensions, these will *NOT* work with          // chunk for own format extensions, these will *NOT* work with
2298          // Gigasampler/GigaStudio !          // Gigasampler/GigaStudio !
2299          RIFF::Chunk* lsde = pParentList->GetSubChunk(CHUNK_ID_LSDE);          RIFF::Chunk* lsde = pParentList->GetSubChunk(CHUNK_ID_LSDE);
2300          const int lsdeSize = 4; // NOTE: we reserved the 3rd byte for a potential future EG3 option          const int lsdeSize =
2301          if (!lsde) {              3 /* EG cancel options */ +
2302              // only add this "LSDE" chunk if either EG options or sustain              1 /* sustain pedal up on release trigger option */ +
2303              // release trigger option deviate from their default behaviour              8 /* LFOs' wave forms */ + 12 /* LFOs' phase */ + 4 /* flags (LFO3FlipPhase) */;
2304              eg_opt_t defaultOpt;          if (!lsde && UsesAnyGigFormatExtension()) {
2305              if (memcmp(&EG1Options, &defaultOpt, sizeof(eg_opt_t)) ||              // only add this "LSDE" chunk if there is some (format extension)
2306                  memcmp(&EG2Options, &defaultOpt, sizeof(eg_opt_t)) ||              // setting effective that would require our "LSDE" format extension
2307                  SustainReleaseTrigger)              // chunk to be stored
2308              {              lsde = pParentList->AddSubChunk(CHUNK_ID_LSDE, lsdeSize);
2309                  lsde = pParentList->AddSubChunk(CHUNK_ID_LSDE, lsdeSize);              // move LSDE chunk to the end of parent list
2310                  // move LSDE chunk to the end of parent list              pParentList->MoveSubChunk(lsde, (RIFF::Chunk*)NULL);
                 pParentList->MoveSubChunk(lsde, (RIFF::Chunk*)NULL);  
             }  
2311          }          }
2312          if (lsde) {          if (lsde) {
2313              if (lsde->GetNewSize() < lsdeSize)              if (lsde->GetNewSize() < lsdeSize)
# Line 2279  namespace { Line 2323  namespace {
2323                      (pEGOpts[i]->Decay2Cancel     ? (1<<3) : 0) |                      (pEGOpts[i]->Decay2Cancel     ? (1<<3) : 0) |
2324                      (pEGOpts[i]->ReleaseCancel    ? (1<<4) : 0);                      (pEGOpts[i]->ReleaseCancel    ? (1<<4) : 0);
2325              }              }
2326              // format extension for effect of sustain pedal up event on release trigger samples              // format extension for release trigger options
2327              pData[3] = static_cast<uint8_t>(SustainReleaseTrigger);              pData[3] = static_cast<uint8_t>(SustainReleaseTrigger) | (NoNoteOffReleaseTrigger ? (1<<7) : 0);
2328                // format extension for LFOs' wave form, phase displacement and for
2329                // LFO3's flip phase
2330                store16(&pData[4], LFO1WaveForm);
2331                store16(&pData[6], LFO2WaveForm);
2332                store16(&pData[8], LFO3WaveForm);
2333                //NOTE: 16 bits reserved here for potential future use !
2334                const int32_t lfo1Phase = (int32_t) GIG_EXP_ENCODE(LFO1Phase);
2335                const int32_t lfo2Phase = (int32_t) GIG_EXP_ENCODE(LFO2Phase);
2336                const int32_t lfo3Phase = (int32_t) GIG_EXP_ENCODE(LFO3Phase);
2337                store32(&pData[12], lfo1Phase);
2338                store32(&pData[16], lfo2Phase);
2339                store32(&pData[20], lfo3Phase);
2340                const int32_t flags = LFO3FlipPhase ? 1 : 0;
2341                store32(&pData[24], flags);
2342    
2343                // compile time sanity check: is our last store access here
2344                // consistent with the initial lsdeSize value assignment?
2345                static_assert(lsdeSize == 28, "Inconsistency in assumed 'LSDE' RIFF chunk size");
2346          }          }
2347      }      }
2348    
2349        /**
2350         * Returns @c true in case this DimensionRegion object uses any gig format
2351         * extension, that is whether this DimensionRegion object currently has any
2352         * setting effective that would require our "LSDE" RIFF chunk to be stored
2353         * to the gig file.
2354         *
2355         * Right now this is a private method. It is considerable though this method
2356         * to become (in slightly modified form) a public API method in future, i.e.
2357         * to allow instrument editors to visualize and/or warn the user of any
2358         * format extension being used. Right now this method really just serves to
2359         * answer the question whether an LSDE chunk is required, for the public API
2360         * purpose this method would also need to check whether any other setting
2361         * stored to the regular value '3ewa' chunk, is actually a format extension
2362         * as well.
2363         */
2364        bool DimensionRegion::UsesAnyGigFormatExtension() const {
2365            eg_opt_t defaultOpt;
2366            return memcmp(&EG1Options, &defaultOpt, sizeof(eg_opt_t)) ||
2367                   memcmp(&EG2Options, &defaultOpt, sizeof(eg_opt_t)) ||
2368                   SustainReleaseTrigger || NoNoteOffReleaseTrigger ||
2369                   LFO1WaveForm || LFO2WaveForm || LFO3WaveForm ||
2370                   LFO1Phase || LFO2Phase || LFO3Phase ||
2371                   LFO3FlipPhase;
2372        }
2373    
2374      double* DimensionRegion::GetReleaseVelocityTable(curve_type_t releaseVelocityResponseCurve, uint8_t releaseVelocityResponseDepth) {      double* DimensionRegion::GetReleaseVelocityTable(curve_type_t releaseVelocityResponseCurve, uint8_t releaseVelocityResponseDepth) {
2375          curve_type_t curveType = releaseVelocityResponseCurve;          curve_type_t curveType = releaseVelocityResponseCurve;
2376          uint8_t depth = releaseVelocityResponseDepth;          uint8_t depth = releaseVelocityResponseDepth;
# Line 3230  namespace { Line 3317  namespace {
3317    
3318          RIFF::Chunk* _3lnk = rgnList->GetSubChunk(CHUNK_ID_3LNK);          RIFF::Chunk* _3lnk = rgnList->GetSubChunk(CHUNK_ID_3LNK);
3319          if (_3lnk) {          if (_3lnk) {
3320                _3lnk->SetPos(0);
3321    
3322              DimensionRegions = _3lnk->ReadUint32();              DimensionRegions = _3lnk->ReadUint32();
3323              for (int i = 0; i < dimensionBits; i++) {              for (int i = 0; i < dimensionBits; i++) {
3324                  dimension_t dimension = static_cast<dimension_t>(_3lnk->ReadUint8());                  dimension_t dimension = static_cast<dimension_t>(_3lnk->ReadUint8());
# Line 3323  namespace { Line 3412  namespace {
3412          }          }
3413    
3414          File* pFile = (File*) GetParent()->GetParent();          File* pFile = (File*) GetParent()->GetParent();
3415          bool versiongt2 = pFile->pVersion && pFile->pVersion->major > 2;          const bool versiongt2 = pFile->pVersion && pFile->pVersion->major > 2;
3416          const int iMaxDimensions =  versiongt2 ? 8 : 5;          const int iMaxDimensions =  versiongt2 ? 8 : 5;
3417          const int iMaxDimensionRegions = versiongt2 ? 256 : 32;          const int iMaxDimensionRegions = versiongt2 ? 256 : 32;
3418    
# Line 3370  namespace { Line 3459  namespace {
3459              }              }
3460              store32(&pData[iWavePoolOffset + i * 4], iWaveIndex);              store32(&pData[iWavePoolOffset + i * 4], iWaveIndex);
3461          }          }
3462    
3463            // The following chunks are just added for compatibility with the
3464            // GigaStudio software, which would show a warning if these were
3465            // missing. However currently these chunks don't cover any useful
3466            // data. So if this gig file uses any of our own gig format
3467            // extensions which would cause this gig file to be unloadable
3468            // with GSt software anyway, then just skip these GSt compatibility
3469            // chunks here as well.
3470            if (versiongt2 && !UsesAnyGigFormatExtension()) {
3471                // add 3dnm list which always seems to be empty
3472                RIFF::List* _3dnm = pCkRegion->GetSubList(LIST_TYPE_3DNM);
3473                if (!_3dnm) _3dnm = pCkRegion->AddSubList(LIST_TYPE_3DNM);
3474    
3475                // add 3ddp chunk which always seems to have 16 bytes of 0xFF
3476                RIFF::Chunk* _3ddp = pCkRegion->GetSubChunk(CHUNK_ID_3DDP);
3477                if (!_3ddp) _3ddp =  pCkRegion->AddSubChunk(CHUNK_ID_3DDP, 16);
3478                uint8_t* pData = (uint8_t*) _3ddp->LoadChunkData();
3479                for (int i = 0; i < 16; i += 4) {
3480                    store32(&pData[i], 0xFFFFFFFF);
3481                }
3482    
3483                // move 3dnm and 3ddp to the end of the region list
3484                pCkRegion->MoveSubChunk(pCkRegion->GetSubList(LIST_TYPE_3DNM), (RIFF::Chunk*)NULL);
3485                pCkRegion->MoveSubChunk(pCkRegion->GetSubChunk(CHUNK_ID_3DDP), (RIFF::Chunk*)NULL);
3486            } else {
3487                // this is intended for the user switching from GSt >= 3 version
3488                // back to an older format version, delete GSt3 chunks ...
3489                RIFF::List* _3dnm = pCkRegion->GetSubList(LIST_TYPE_3DNM);
3490                if (_3dnm) pCkRegion->DeleteSubChunk(_3dnm);
3491    
3492                RIFF::Chunk* _3ddp = pCkRegion->GetSubChunk(CHUNK_ID_3DDP);
3493                if (_3ddp) pCkRegion->DeleteSubChunk(_3ddp);
3494            }
3495      }      }
3496    
3497      void Region::LoadDimensionRegions(RIFF::List* rgn) {      void Region::LoadDimensionRegions(RIFF::List* rgn) {
3498          RIFF::List* _3prg = rgn->GetSubList(LIST_TYPE_3PRG);          RIFF::List* _3prg = rgn->GetSubList(LIST_TYPE_3PRG);
3499          if (_3prg) {          if (_3prg) {
3500              int dimensionRegionNr = 0;              int dimensionRegionNr = 0;
3501              RIFF::List* _3ewl = _3prg->GetFirstSubList();              size_t i = 0;
3502              while (_3ewl) {              for (RIFF::List* _3ewl = _3prg->GetSubListAt(i); _3ewl;
3503                     _3ewl = _3prg->GetSubListAt(++i))
3504                {
3505                  if (_3ewl->GetListType() == LIST_TYPE_3EWL) {                  if (_3ewl->GetListType() == LIST_TYPE_3EWL) {
3506                      pDimensionRegions[dimensionRegionNr] = new DimensionRegion(this, _3ewl);                      pDimensionRegions[dimensionRegionNr] = new DimensionRegion(this, _3ewl);
3507                      dimensionRegionNr++;                      dimensionRegionNr++;
3508                  }                  }
                 _3ewl = _3prg->GetNextSubList();  
3509              }              }
3510              if (dimensionRegionNr == 0) throw gig::Exception("No dimension region found.");              if (dimensionRegionNr == 0) throw gig::Exception("No dimension region found.");
3511          }          }
# Line 3685  namespace { Line 3808  namespace {
3808       * @throws gig::Exception if requested zone could not be deleted       * @throws gig::Exception if requested zone could not be deleted
3809       */       */
3810      void Region::DeleteDimensionZone(dimension_t type, int zone) {      void Region::DeleteDimensionZone(dimension_t type, int zone) {
3811            if (!Dimensions)
3812                throw gig::Exception("Could not delete dimension zone, because there is no dimension at all.");
3813          dimension_def_t* oldDef = GetDimensionDefinition(type);          dimension_def_t* oldDef = GetDimensionDefinition(type);
3814          if (!oldDef)          if (!oldDef)
3815              throw gig::Exception("Could not delete dimension zone, no such dimension of given type");              throw gig::Exception("Could not delete dimension zone, no such dimension of given type");
# Line 3713  namespace { Line 3838  namespace {
3838          // requested by the arguments of this method call) to the temporary          // requested by the arguments of this method call) to the temporary
3839          // region, and don't use Region::CopyAssign() here for this task, since          // region, and don't use Region::CopyAssign() here for this task, since
3840          // it would also alter fast lookup helper variables here and there          // it would also alter fast lookup helper variables here and there
3841          dimension_def_t newDef;          dimension_def_t newDef = {};
3842          for (int i = 0; i < Dimensions; ++i) {          for (int i = 0; i < Dimensions; ++i) {
3843              dimension_def_t def = pDimensionDefinitions[i]; // copy, don't reference              dimension_def_t def = pDimensionDefinitions[i]; // copy, don't reference
3844              // is this the dimension requested by the method arguments? ...              // is this the dimension requested by the method arguments? ...
# Line 3724  namespace { Line 3849  namespace {
3849              }              }
3850              tempRgn->AddDimension(&def);              tempRgn->AddDimension(&def);
3851          }          }
3852            // silence clang sanitizer warning
3853            if (newDef.dimension == dimension_none)
3854                throw gig::Exception("Unexpected internal failure resolving dimension in DeleteDimensionZone() [this is a bug].");
3855    
3856          // find the dimension index in the tempRegion which is the dimension          // find the dimension index in the tempRegion which is the dimension
3857          // type passed to this method (paranoidly expecting different order)          // type passed to this method (paranoidly expecting different order)
# Line 3768  namespace { Line 3896  namespace {
3896          // now tempRegion's dimensions and DimensionRegions basically reflect          // now tempRegion's dimensions and DimensionRegions basically reflect
3897          // what we wanted to get for this actual Region here, so we now just          // what we wanted to get for this actual Region here, so we now just
3898          // delete and recreate the dimension in question with the new amount          // delete and recreate the dimension in question with the new amount
3899          // zones and then copy back from tempRegion                // zones and then copy back from tempRegion. we're actually deleting and
3900          DeleteDimension(oldDef);          // recreating all dimensions here, to avoid altering the precise order
3901          AddDimension(&newDef);          // of the dimensions (which would not be an error per se, but it would
3902            // cause usability issues with instrument editors)
3903            {
3904                std::vector<dimension_def_t> oldDefs;
3905                for (int i = 0; i < Dimensions; ++i)
3906                    oldDefs.push_back(pDimensionDefinitions[i]); // copy, don't reference
3907                for (int i = Dimensions - 1; i >= 0; --i)
3908                    DeleteDimension(&pDimensionDefinitions[i]);
3909                for (int i = 0; i < oldDefs.size(); ++i) {
3910                    dimension_def_t& def = oldDefs[i];
3911                    AddDimension(
3912                        (def.dimension == newDef.dimension) ? &newDef : &def
3913                    );
3914                }
3915            }
3916          for (int iSrc = 0; iSrc < 256; ++iSrc) {          for (int iSrc = 0; iSrc < 256; ++iSrc) {
3917              DimensionRegion* srcDimRgn = tempRgn->pDimensionRegions[iSrc];              DimensionRegion* srcDimRgn = tempRgn->pDimensionRegions[iSrc];
3918              if (!srcDimRgn) continue;              if (!srcDimRgn) continue;
# Line 3789  namespace { Line 3931  namespace {
3931          }          }
3932    
3933          // delete temporary region          // delete temporary region
3934            tempRgn->DeleteChunks();
3935          delete tempRgn;          delete tempRgn;
3936    
3937          UpdateVelocityTable();          UpdateVelocityTable();
# Line 3809  namespace { Line 3952  namespace {
3952       * @throws gig::Exception if requested zone could not be splitted       * @throws gig::Exception if requested zone could not be splitted
3953       */       */
3954      void Region::SplitDimensionZone(dimension_t type, int zone) {      void Region::SplitDimensionZone(dimension_t type, int zone) {
3955            if (!Dimensions)
3956                throw gig::Exception("Could not split dimension zone, because there is no dimension at all.");
3957          dimension_def_t* oldDef = GetDimensionDefinition(type);          dimension_def_t* oldDef = GetDimensionDefinition(type);
3958          if (!oldDef)          if (!oldDef)
3959              throw gig::Exception("Could not split dimension zone, no such dimension of given type");              throw gig::Exception("Could not split dimension zone, no such dimension of given type");
# Line 3835  namespace { Line 3980  namespace {
3980          // requested by the arguments of this method call) to the temporary          // requested by the arguments of this method call) to the temporary
3981          // region, and don't use Region::CopyAssign() here for this task, since          // region, and don't use Region::CopyAssign() here for this task, since
3982          // it would also alter fast lookup helper variables here and there          // it would also alter fast lookup helper variables here and there
3983          dimension_def_t newDef;          dimension_def_t newDef = {};
3984          for (int i = 0; i < Dimensions; ++i) {          for (int i = 0; i < Dimensions; ++i) {
3985              dimension_def_t def = pDimensionDefinitions[i]; // copy, don't reference              dimension_def_t def = pDimensionDefinitions[i]; // copy, don't reference
3986              // is this the dimension requested by the method arguments? ...              // is this the dimension requested by the method arguments? ...
# Line 3846  namespace { Line 3991  namespace {
3991              }              }
3992              tempRgn->AddDimension(&def);              tempRgn->AddDimension(&def);
3993          }          }
3994            // silence clang sanitizer warning
3995            if (newDef.dimension == dimension_none)
3996                throw gig::Exception("Unexpected internal failure resolving dimension in SplitDimensionZone() [this is a bug].");
3997    
3998          // find the dimension index in the tempRegion which is the dimension          // find the dimension index in the tempRegion which is the dimension
3999          // type passed to this method (paranoidly expecting different order)          // type passed to this method (paranoidly expecting different order)
# Line 3907  namespace { Line 4055  namespace {
4055          // now tempRegion's dimensions and DimensionRegions basically reflect          // now tempRegion's dimensions and DimensionRegions basically reflect
4056          // what we wanted to get for this actual Region here, so we now just          // what we wanted to get for this actual Region here, so we now just
4057          // delete and recreate the dimension in question with the new amount          // delete and recreate the dimension in question with the new amount
4058          // zones and then copy back from tempRegion                // zones and then copy back from tempRegion. we're actually deleting and
4059          DeleteDimension(oldDef);          // recreating all dimensions here, to avoid altering the precise order
4060          AddDimension(&newDef);          // of the dimensions (which would not be an error per se, but it would
4061            // cause usability issues with instrument editors)
4062            {
4063                std::vector<dimension_def_t> oldDefs;
4064                for (int i = 0; i < Dimensions; ++i)
4065                    oldDefs.push_back(pDimensionDefinitions[i]); // copy, don't reference
4066                for (int i = Dimensions - 1; i >= 0; --i)
4067                    DeleteDimension(&pDimensionDefinitions[i]);
4068                for (int i = 0; i < oldDefs.size(); ++i) {
4069                    dimension_def_t& def = oldDefs[i];
4070                    AddDimension(
4071                        (def.dimension == newDef.dimension) ? &newDef : &def
4072                    );
4073                }
4074            }
4075          for (int iSrc = 0; iSrc < 256; ++iSrc) {          for (int iSrc = 0; iSrc < 256; ++iSrc) {
4076              DimensionRegion* srcDimRgn = tempRgn->pDimensionRegions[iSrc];              DimensionRegion* srcDimRgn = tempRgn->pDimensionRegions[iSrc];
4077              if (!srcDimRgn) continue;              if (!srcDimRgn) continue;
# Line 3928  namespace { Line 4090  namespace {
4090          }          }
4091    
4092          // delete temporary region          // delete temporary region
4093            tempRgn->DeleteChunks();
4094          delete tempRgn;          delete tempRgn;
4095    
4096          UpdateVelocityTable();          UpdateVelocityTable();
# Line 4232  namespace { Line 4395  namespace {
4395          Layers = orig->Layers;          Layers = orig->Layers;
4396      }      }
4397    
4398        /**
4399         * Returns @c true in case this Region object uses any gig format
4400         * extension, that is e.g. whether any DimensionRegion object currently
4401         * has any setting effective that would require our "LSDE" RIFF chunk to
4402         * be stored to the gig file.
4403         *
4404         * Right now this is a private method. It is considerable though this method
4405         * to become (in slightly modified form) a public API method in future, i.e.
4406         * to allow instrument editors to visualize and/or warn the user of any gig
4407         * format extension being used. See also comments on
4408         * DimensionRegion::UsesAnyGigFormatExtension() for details about such a
4409         * potential public API change in future.
4410         */
4411        bool Region::UsesAnyGigFormatExtension() const {
4412            for (int i = 0; i < 256; i++) {
4413                if (pDimensionRegions[i]) {
4414                    if (pDimensionRegions[i]->UsesAnyGigFormatExtension())
4415                        return true;
4416                }
4417            }
4418            return false;
4419        }
4420    
4421    
4422  // *************** MidiRule ***************  // *************** MidiRule ***************
4423  // *  // *
# Line 4406  namespace { Line 4592  namespace {
4592          pGroup = group;          pGroup = group;
4593          pChunk = ckScri;          pChunk = ckScri;
4594          if (ckScri) { // object is loaded from file ...          if (ckScri) { // object is loaded from file ...
4595                ckScri->SetPos(0);
4596    
4597              // read header              // read header
4598              uint32_t headerSize = ckScri->ReadUint32();              uint32_t headerSize = ckScri->ReadUint32();
4599              Compression = (Compression_t) ckScri->ReadUint32();              Compression = (Compression_t) ckScri->ReadUint32();
4600              Encoding    = (Encoding_t) ckScri->ReadUint32();              Encoding    = (Encoding_t) ckScri->ReadUint32();
4601              Language    = (Language_t) ckScri->ReadUint32();              Language    = (Language_t) ckScri->ReadUint32();
4602              Bypass      = (Language_t) ckScri->ReadUint32() & 1;              Bypass      = ckScri->ReadUint32() & 1;
4603              crc         = ckScri->ReadUint32();              crc         = ckScri->ReadUint32();
4604              uint32_t nameSize = ckScri->ReadUint32();              uint32_t nameSize = ckScri->ReadUint32();
4605              Name.resize(nameSize, ' ');              Name.resize(nameSize, ' ');
4606              for (int i = 0; i < nameSize; ++i)              for (int i = 0; i < nameSize; ++i)
4607                  Name[i] = ckScri->ReadUint8();                  Name[i] = ckScri->ReadUint8();
4608                // check if an uuid was already stored along with this script
4609                if (headerSize >= 6*sizeof(int32_t) + nameSize + 16) { // yes ...
4610                    for (uint i = 0; i < 16; ++i) {
4611                        Uuid[i] = ckScri->ReadUint8();
4612                    }
4613                } else { // no uuid yet, generate one now ...
4614                    GenerateUuid();
4615                }
4616              // to handle potential future extensions of the header              // to handle potential future extensions of the header
4617              ckScri->SetPos(sizeof(int32_t) + headerSize);              ckScri->SetPos(sizeof(int32_t) + headerSize);
4618              // read actual script data              // read actual script data
# Line 4431  namespace { Line 4627  namespace {
4627              Bypass   = false;              Bypass   = false;
4628              crc      = 0;              crc      = 0;
4629              Name     = "Unnamed Script";              Name     = "Unnamed Script";
4630                GenerateUuid();
4631          }          }
4632      }      }
4633    
# Line 4458  namespace { Line 4655  namespace {
4655          memcpy(&data[0], &text[0], text.size());          memcpy(&data[0], &text[0], text.size());
4656      }      }
4657    
4658        /** @brief Remove all RIFF chunks associated with this Script object.
4659         *
4660         * At the moment Script::DeleteChunks() does nothing. It is
4661         * recommended to call this method explicitly though from deriving classes's
4662         * own overridden implementation of this method to avoid potential future
4663         * compatiblity issues.
4664         *
4665         * See DLS::Storage::DeleteChunks() for details.
4666         */
4667        void Script::DeleteChunks() {
4668        }
4669    
4670      /**      /**
4671       * Apply this script to the respective RIFF chunks. You have to call       * Apply this script to the respective RIFF chunks. You have to call
4672       * File::Save() to make changes persistent.       * File::Save() to make changes persistent.
# Line 4473  namespace { Line 4682  namespace {
4682          __calculateCRC(&data[0], data.size(), crc);          __calculateCRC(&data[0], data.size(), crc);
4683          __finalizeCRC(crc);          __finalizeCRC(crc);
4684          // make sure chunk exists and has the required size          // make sure chunk exists and has the required size
4685          const file_offset_t chunkSize = (file_offset_t) 7*sizeof(int32_t) + Name.size() + data.size();          const file_offset_t chunkSize =
4686                (file_offset_t) 7*sizeof(int32_t) + Name.size() + 16 + data.size();
4687          if (!pChunk) pChunk = pGroup->pList->AddSubChunk(CHUNK_ID_SCRI, chunkSize);          if (!pChunk) pChunk = pGroup->pList->AddSubChunk(CHUNK_ID_SCRI, chunkSize);
4688          else pChunk->Resize(chunkSize);          else pChunk->Resize(chunkSize);
4689          // fill the chunk data to be written to disk          // fill the chunk data to be written to disk
4690          uint8_t* pData = (uint8_t*) pChunk->LoadChunkData();          uint8_t* pData = (uint8_t*) pChunk->LoadChunkData();
4691          int pos = 0;          int pos = 0;
4692          store32(&pData[pos], uint32_t(6*sizeof(int32_t) + Name.size())); // total header size          store32(&pData[pos], uint32_t(6*sizeof(int32_t) + Name.size() + 16)); // total header size
4693          pos += sizeof(int32_t);          pos += sizeof(int32_t);
4694          store32(&pData[pos], Compression);          store32(&pData[pos], Compression);
4695          pos += sizeof(int32_t);          pos += sizeof(int32_t);
# Line 4495  namespace { Line 4705  namespace {
4705          pos += sizeof(int32_t);          pos += sizeof(int32_t);
4706          for (int i = 0; i < Name.size(); ++i, ++pos)          for (int i = 0; i < Name.size(); ++i, ++pos)
4707              pData[pos] = Name[i];              pData[pos] = Name[i];
4708            for (int i = 0; i < 16; ++i, ++pos)
4709                pData[pos] = Uuid[i];
4710          for (int i = 0; i < data.size(); ++i, ++pos)          for (int i = 0; i < data.size(); ++i, ++pos)
4711              pData[pos] = data[i];              pData[pos] = data[i];
4712      }      }
4713    
4714      /**      /**
4715         * Generate a new Universally Unique Identifier (UUID) for this script.
4716         */
4717        void Script::GenerateUuid() {
4718            DLS::dlsid_t dlsid;
4719            DLS::Resource::GenerateDLSID(&dlsid);
4720            Uuid[0]  = dlsid.ulData1       & 0xff;
4721            Uuid[1]  = dlsid.ulData1 >>  8 & 0xff;
4722            Uuid[2]  = dlsid.ulData1 >> 16 & 0xff;
4723            Uuid[3]  = dlsid.ulData1 >> 24 & 0xff;
4724            Uuid[4]  = dlsid.usData2       & 0xff;
4725            Uuid[5]  = dlsid.usData2 >>  8 & 0xff;
4726            Uuid[6]  = dlsid.usData3       & 0xff;
4727            Uuid[7]  = dlsid.usData3 >>  8 & 0xff;
4728            Uuid[8]  = dlsid.abData[0];
4729            Uuid[9]  = dlsid.abData[1];
4730            Uuid[10] = dlsid.abData[2];
4731            Uuid[11] = dlsid.abData[3];
4732            Uuid[12] = dlsid.abData[4];
4733            Uuid[13] = dlsid.abData[5];
4734            Uuid[14] = dlsid.abData[6];
4735            Uuid[15] = dlsid.abData[7];
4736        }
4737    
4738        /**
4739       * Move this script from its current ScriptGroup to another ScriptGroup       * Move this script from its current ScriptGroup to another ScriptGroup
4740       * given by @a pGroup.       * given by @a pGroup.
4741       *       *
# Line 4573  namespace { Line 4809  namespace {
4809          }          }
4810      }      }
4811    
4812        /** @brief Remove all RIFF chunks associated with this ScriptGroup object.
4813         *
4814         * At the moment ScriptGroup::DeleteChunks() does nothing. It is
4815         * recommended to call this method explicitly though from deriving classes's
4816         * own overridden implementation of this method to avoid potential future
4817         * compatiblity issues.
4818         *
4819         * See DLS::Storage::DeleteChunks() for details.
4820         */
4821        void ScriptGroup::DeleteChunks() {
4822        }
4823    
4824      /**      /**
4825       * Apply this script group to the respective RIFF chunks. You have to call       * Apply this script group to the respective RIFF chunks. You have to call
4826       * File::Save() to make changes persistent.       * File::Save() to make changes persistent.
# Line 4659  namespace { Line 4907  namespace {
4907          pScripts = new std::list<Script*>;          pScripts = new std::list<Script*>;
4908          if (!pList) return;          if (!pList) return;
4909    
4910          for (RIFF::Chunk* ck = pList->GetFirstSubChunk(); ck;          size_t i = 0;
4911               ck = pList->GetNextSubChunk())          for (RIFF::Chunk* ck = pList->GetSubChunkAt(i); ck;
4912                 ck = pList->GetSubChunkAt(++i))
4913          {          {
4914              if (ck->GetChunkID() == CHUNK_ID_SCRI) {              if (ck->GetChunkID() == CHUNK_ID_SCRI) {
4915                  pScripts->push_back(new Script(this, ck));                  pScripts->push_back(new Script(this, ck));
# Line 4697  namespace { Line 4946  namespace {
4946          if (lart) {          if (lart) {
4947              RIFF::Chunk* _3ewg = lart->GetSubChunk(CHUNK_ID_3EWG);              RIFF::Chunk* _3ewg = lart->GetSubChunk(CHUNK_ID_3EWG);
4948              if (_3ewg) {              if (_3ewg) {
4949                    _3ewg->SetPos(0);
4950    
4951                  EffectSend             = _3ewg->ReadUint16();                  EffectSend             = _3ewg->ReadUint16();
4952                  Attenuation            = _3ewg->ReadInt32();                  Attenuation            = _3ewg->ReadInt32();
4953                  FineTune               = _3ewg->ReadInt16();                  FineTune               = _3ewg->ReadInt16();
# Line 4738  namespace { Line 4989  namespace {
4989              if (!pRegions) pRegions = new RegionList;              if (!pRegions) pRegions = new RegionList;
4990              RIFF::List* lrgn = insList->GetSubList(LIST_TYPE_LRGN);              RIFF::List* lrgn = insList->GetSubList(LIST_TYPE_LRGN);
4991              if (lrgn) {              if (lrgn) {
4992                  RIFF::List* rgn = lrgn->GetFirstSubList();                  size_t i = 0;
4993                  while (rgn) {                  for (RIFF::List* rgn = lrgn->GetSubListAt(i); rgn;
4994                         rgn = lrgn->GetSubListAt(++i))
4995                    {
4996                      if (rgn->GetListType() == LIST_TYPE_RGN) {                      if (rgn->GetListType() == LIST_TYPE_RGN) {
4997                          __notify_progress(pProgress, (float) pRegions->size() / (float) Regions);                          if (pProgress)
4998                                __notify_progress(pProgress, (float) pRegions->size() / (float) Regions);
4999                          pRegions->push_back(new Region(this, rgn));                          pRegions->push_back(new Region(this, rgn));
5000                      }                      }
                     rgn = lrgn->GetNextSubList();  
5001                  }                  }
5002                  // Creating Region Key Table for fast lookup                  // Creating Region Key Table for fast lookup
5003                  UpdateRegionKeyTable();                  UpdateRegionKeyTable();
# Line 4754  namespace { Line 5007  namespace {
5007          // own gig format extensions          // own gig format extensions
5008          RIFF::List* lst3LS = insList->GetSubList(LIST_TYPE_3LS);          RIFF::List* lst3LS = insList->GetSubList(LIST_TYPE_3LS);
5009          if (lst3LS) {          if (lst3LS) {
5010                // script slots (that is references to instrument scripts)
5011              RIFF::Chunk* ckSCSL = lst3LS->GetSubChunk(CHUNK_ID_SCSL);              RIFF::Chunk* ckSCSL = lst3LS->GetSubChunk(CHUNK_ID_SCSL);
5012              if (ckSCSL) {              if (ckSCSL) {
5013                    ckSCSL->SetPos(0);
5014    
5015                  int headerSize = ckSCSL->ReadUint32();                  int headerSize = ckSCSL->ReadUint32();
5016                  int slotCount  = ckSCSL->ReadUint32();                  int slotCount  = ckSCSL->ReadUint32();
5017                  if (slotCount) {                  if (slotCount) {
# Line 4771  namespace { Line 5027  namespace {
5027                      }                      }
5028                  }                  }
5029              }              }
5030    
5031                // overridden script 'patch' variables
5032                RIFF::Chunk* ckSCPV = lst3LS->GetSubChunk(CHUNK_ID_SCPV);
5033                if (ckSCPV) {
5034                    ckSCPV->SetPos(0);
5035    
5036                    int nScripts = ckSCPV->ReadUint32();
5037                    for (int iScript = 0; iScript < nScripts; ++iScript) {
5038                        _UUID uuid;
5039                        for (int i = 0; i < 16; ++i)
5040                            uuid[i] = ckSCPV->ReadUint8();
5041                        uint slot = ckSCPV->ReadUint32();
5042                        ckSCPV->ReadUint32(); // unused, reserved 32 bit
5043                        int nVars = ckSCPV->ReadUint32();
5044                        for (int iVar = 0; iVar < nVars; ++iVar) {
5045                            uint8_t type = ckSCPV->ReadUint8();
5046                            ckSCPV->ReadUint8();  // unused, reserved byte
5047                            int blobSize = ckSCPV->ReadUint16();
5048                            RIFF::file_offset_t pos = ckSCPV->GetPos();
5049                            // assuming 1st bit is set in 'type', otherwise blob not
5050                            // supported for decoding
5051                            if (type & 1) {
5052                                String name, value;
5053                                int len = ckSCPV->ReadUint16();
5054                                for (int i = 0; i < len; ++i)
5055                                    name += (char) ckSCPV->ReadUint8();
5056                                len = ckSCPV->ReadUint16();
5057                                for (int i = 0; i < len; ++i)
5058                                    value += (char) ckSCPV->ReadUint8();
5059                                if (!name.empty()) // 'name' should never be empty, but just to be sure
5060                                    scriptVars[uuid][slot][name] = value;
5061                            }
5062                            // also for potential future extensions: seek forward
5063                            // according to blob size
5064                            ckSCPV->SetPos(pos + blobSize);
5065                        }
5066                    }
5067                }
5068          }          }
5069    
5070          __notify_progress(pProgress, 1.0f); // notify done          if (pProgress)
5071                __notify_progress(pProgress, 1.0f); // notify done
5072      }      }
5073    
5074      void Instrument::UpdateRegionKeyTable() {      void Instrument::UpdateRegionKeyTable() {
# Line 4861  namespace { Line 5156  namespace {
5156    
5157             RIFF::List* lst3LS = pCkInstrument->GetSubList(LIST_TYPE_3LS);             RIFF::List* lst3LS = pCkInstrument->GetSubList(LIST_TYPE_3LS);
5158             if (!lst3LS) lst3LS = pCkInstrument->AddSubList(LIST_TYPE_3LS);             if (!lst3LS) lst3LS = pCkInstrument->AddSubList(LIST_TYPE_3LS);
5159    
5160               // save script slots (that is references to instrument scripts)
5161             const int slotCount = (int) pScriptRefs->size();             const int slotCount = (int) pScriptRefs->size();
5162             const int headerSize = 3 * sizeof(uint32_t);             const int headerSize = 3 * sizeof(uint32_t);
5163             const int slotSize  = 2 * sizeof(uint32_t);             const int slotSize  = 2 * sizeof(uint32_t);
# Line 4885  namespace { Line 5182  namespace {
5182                 store32(&pData[pos], (*pScriptRefs)[i].bypass ? 1 : 0);                 store32(&pData[pos], (*pScriptRefs)[i].bypass ? 1 : 0);
5183                 pos += sizeof(uint32_t);                 pos += sizeof(uint32_t);
5184             }             }
5185    
5186               // save overridden script 'patch' variables ...
5187    
5188               // the actual 'scriptVars' member variable might contain variables of
5189               // scripts which are currently no longer assigned to any script slot
5190               // of this instrument, we need to get rid of these variables here to
5191               // prevent saving those persistently, however instead of touching the
5192               // member variable 'scriptVars' directly, rather strip a separate
5193               // copy such that the overridden values are not lost during an
5194               // instrument editor session (i.e. if script might be re-assigned)
5195               _VarsByScript vars = stripScriptVars();
5196               if (!vars.empty()) {
5197                   // determine total size required for 'SCPV' RIFF chunk, and the
5198                   // total amount of scripts being overridden (the latter is
5199                   // required because a script might be used on several script
5200                   // slots, hence vars.size() could then not be used here instead)
5201                   size_t totalChunkSize = 4;
5202                   size_t totalScriptsOverridden = 0;
5203                   for (const auto& script : vars) {
5204                       for (const auto& slot : script.second) {
5205                           totalScriptsOverridden++;
5206                           totalChunkSize += 16 + 4 + 4 + 4;
5207                           for (const auto& var : slot.second) {
5208                               totalChunkSize += 4 + 2 + var.first.length() +
5209                                                     2 + var.second.length();
5210                           }
5211                       }
5212                   }
5213    
5214                   // ensure 'SCPV' RIFF chunk exists (with required size)
5215                   RIFF::Chunk* ckSCPV = lst3LS->GetSubChunk(CHUNK_ID_SCPV);
5216                   if (!ckSCPV) ckSCPV = lst3LS->AddSubChunk(CHUNK_ID_SCPV, totalChunkSize);
5217                   else ckSCPV->Resize(totalChunkSize);
5218    
5219                   // store the actual data to 'SCPV' RIFF chunk
5220                   uint8_t* pData = (uint8_t*) ckSCPV->LoadChunkData();
5221                   int pos = 0;
5222                   store32(&pData[pos], (uint32_t) totalScriptsOverridden); // scripts count
5223                   pos += 4;
5224                   for (const auto& script : vars) {
5225                       for (const auto& slot : script.second) {
5226                           for (int i = 0; i < 16; ++i)
5227                               pData[pos+i] = script.first[i]; // uuid
5228                           pos += 16;
5229                           store32(&pData[pos], (uint32_t) slot.first); // slot index
5230                           pos += 4;
5231                           store32(&pData[pos], (uint32_t) 0); // unused, reserved 32 bit
5232                           pos += 4;
5233                           store32(&pData[pos], (uint32_t) slot.second.size()); // variables count
5234                           pos += 4;
5235                           for (const auto& var : slot.second) {
5236                               pData[pos++] = 1; // type
5237                               pData[pos++] = 0; // reserved byte
5238                               store16(&pData[pos], 2 + var.first.size() + 2 + var.second.size()); // blob size
5239                               pos += 2;
5240                               store16(&pData[pos], var.first.size()); // variable name length
5241                               pos += 2;
5242                               for (int i = 0; i < var.first.size(); ++i)
5243                                   pData[pos++] = var.first[i];
5244                               store16(&pData[pos], var.second.size()); // variable value length
5245                               pos += 2;
5246                               for (int i = 0; i < var.second.size(); ++i)
5247                                   pData[pos++] = var.second[i];
5248                           }
5249                       }
5250                   }
5251               } else {
5252                   // no script variable overridden by this instrument, so get rid
5253                   // of 'SCPV' RIFF chunk (if any)
5254                   RIFF::Chunk* ckSCPV = lst3LS->GetSubChunk(CHUNK_ID_SCPV);
5255                   if (ckSCPV) lst3LS->DeleteSubChunk(ckSCPV);
5256               }
5257         } else {         } else {
5258             // no script slots, so get rid of any LS custom RIFF chunks (if any)             // no script slots, so get rid of any LS custom RIFF chunks (if any)
5259             RIFF::List* lst3LS = pCkInstrument->GetSubList(LIST_TYPE_3LS);             RIFF::List* lst3LS = pCkInstrument->GetSubList(LIST_TYPE_3LS);
# Line 5309  namespace { Line 5678  namespace {
5678              scriptPoolFileOffsets.at(index).bypass = bBypass;              scriptPoolFileOffsets.at(index).bypass = bBypass;
5679      }      }
5680    
5681        /// type cast (by copy) uint8_t[16] -> std::array<uint8_t,16>
5682        inline std::array<uint8_t,16> _UUIDFromCArray(const uint8_t* pData) {
5683            std::array<uint8_t,16> uuid;
5684            memcpy(&uuid[0], pData, 16);
5685            return uuid;
5686        }
5687    
5688        /**
5689         * Returns true if this @c Instrument has any script slot which references
5690         * the @c Script identified by passed @p uuid.
5691         */
5692        bool Instrument::ReferencesScriptWithUuid(const _UUID& uuid) {
5693            const uint nSlots = ScriptSlotCount();
5694            for (uint iSlot = 0; iSlot < nSlots; ++iSlot)
5695                if (_UUIDFromCArray(&GetScriptOfSlot(iSlot)->Uuid[0]) == uuid)
5696                    return true;
5697            return false;
5698        }
5699    
5700        /** @brief Checks whether a certain script 'patch' variable value is set.
5701         *
5702         * Returns @c true if the initial value for the requested script variable is
5703         * currently overridden by this instrument.
5704         *
5705         * @remarks Real-time instrument scripts allow to declare special 'patch'
5706         * variables, which essentially behave like regular variables of their data
5707         * type, however their initial value may optionally be overridden on a per
5708         * instrument basis. That allows to share scripts between instruments while
5709         * still being able to fine tune certain aspects of the script for each
5710         * instrument individually.
5711         *
5712         * @note This is an own format extension which did not exist i.e. in the
5713         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5714         * Gigedit.
5715         *
5716         * @param slot - script slot index of the variable to be retrieved
5717         * @param variable - name of the 'patch' variable in that script
5718         */
5719        bool Instrument::IsScriptPatchVariableSet(int slot, String variable) {
5720            if (variable.empty()) return false;
5721            Script* script = GetScriptOfSlot(slot);
5722            if (!script) return false;
5723            const _UUID uuid = _UUIDFromCArray(&script->Uuid[0]);
5724            if (!scriptVars.count(uuid)) return false;
5725            const _VarsBySlot& slots = scriptVars.find(uuid)->second;
5726            if (slots.empty()) return false;
5727            if (slots.count(slot))
5728                return slots.find(slot)->second.count(variable);
5729            else
5730                return slots.begin()->second.count(variable);
5731        }
5732    
5733        /** @brief Get all overridden script 'patch' variables.
5734         *
5735         * Returns map of key-value pairs reflecting all patch variables currently
5736         * being overridden by this instrument for the given script @p slot, where
5737         * key is the variable name and value is the hereby currently overridden
5738         * value for that variable.
5739         *
5740         * @remarks Real-time instrument scripts allow to declare special 'patch'
5741         * variables, which essentially behave like regular variables of their data
5742         * type, however their initial value may optionally be overridden on a per
5743         * instrument basis. That allows to share scripts between instruments while
5744         * still being able to fine tune certain aspects of the script for each
5745         * instrument individually.
5746         *
5747         * @note This is an own format extension which did not exist i.e. in the
5748         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5749         * Gigedit.
5750         *
5751         * @param slot - script slot index of the variable to be retrieved
5752         */
5753        std::map<String,String> Instrument::GetScriptPatchVariables(int slot) {
5754            Script* script = GetScriptOfSlot(slot);
5755            if (!script) return std::map<String,String>();
5756            const _UUID uuid = _UUIDFromCArray(&script->Uuid[0]);
5757            if (!scriptVars.count(uuid)) return std::map<String,String>();
5758            const _VarsBySlot& slots = scriptVars.find(uuid)->second;
5759            if (slots.empty()) return std::map<String,String>();
5760            const _PatchVars& vars =
5761                (slots.count(slot)) ?
5762                    slots.find(slot)->second : slots.begin()->second;
5763            return vars;
5764        }
5765    
5766        /** @brief Get overridden initial value for 'patch' variable.
5767         *
5768         * Returns current initial value for the requested script variable being
5769         * overridden by this instrument.
5770         *
5771         * @remarks Real-time instrument scripts allow to declare special 'patch'
5772         * variables, which essentially behave like regular variables of their data
5773         * type, however their initial value may optionally be overridden on a per
5774         * instrument basis. That allows to share scripts between instruments while
5775         * still being able to fine tune certain aspects of the script for each
5776         * instrument individually.
5777         *
5778         * @note This is an own format extension which did not exist i.e. in the
5779         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5780         * Gigedit.
5781         *
5782         * @param slot - script slot index of the variable to be retrieved
5783         * @param variable - name of the 'patch' variable in that script
5784         */
5785        String Instrument::GetScriptPatchVariable(int slot, String variable) {
5786            std::map<String,String> vars = GetScriptPatchVariables(slot);
5787            return (vars.count(variable)) ? vars.find(variable)->second : "";
5788        }
5789    
5790        /** @brief Override initial value for 'patch' variable.
5791         *
5792         * Overrides initial value for the requested script variable for this
5793         * instrument with the passed value.
5794         *
5795         * @remarks Real-time instrument scripts allow to declare special 'patch'
5796         * variables, which essentially behave like regular variables of their data
5797         * type, however their initial value may optionally be overridden on a per
5798         * instrument basis. That allows to share scripts between instruments while
5799         * still being able to fine tune certain aspects of the script for each
5800         * instrument individually.
5801         *
5802         * @note This is an own format extension which did not exist i.e. in the
5803         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5804         * Gigedit.
5805         *
5806         * @param slot - script slot index of the variable to be set
5807         * @param variable - name of the 'patch' variable in that script
5808         * @param value - overridden initial value for that script variable
5809         * @throws gig::Exception if given script @p slot index is invalid or given
5810         *         @p variable name is empty
5811         */
5812        void Instrument::SetScriptPatchVariable(int slot, String variable, String value) {
5813            if (variable.empty())
5814                throw Exception("Variable name must not be empty");
5815            Script* script = GetScriptOfSlot(slot);
5816            if (!script)
5817                throw Exception("No script slot with index " + ToString(slot));
5818            const _UUID uuid = _UUIDFromCArray(&script->Uuid[0]);
5819            scriptVars[uuid][slot][variable] = value;
5820        }
5821    
5822        /** @brief Drop overridden initial value(s) for 'patch' variable(s).
5823         *
5824         * Reverts initial value(s) for requested script variable(s) back to their
5825         * default initial value(s) defined in the script itself.
5826         *
5827         * Both arguments of this method are optional. The most obvious use case of
5828         * this method would be passing a valid script @p slot index and a
5829         * (non-emtpy string as) @p variable name to this method, which would cause
5830         * that single variable to be unset for that specific script slot (on this
5831         * @c Instrument level).
5832         *
5833         * Not passing a value (or @c -1 for @p slot and/or empty string for
5834         * @p variable) means 'wildcard'. So accordingly absence of argument(s) will
5835         * cause all variables and/or for all script slots being unset. Hence this
5836         * method serves 2^2 = 4 possible use cases in total and accordingly covers
5837         * 4 different behaviours in one method.
5838         *
5839         * @remarks Real-time instrument scripts allow to declare special 'patch'
5840         * variables, which essentially behave like regular variables of their data
5841         * type, however their initial value may optionally be overridden on a per
5842         * instrument basis. That allows to share scripts between instruments while
5843         * still being able to fine tune certain aspects of the script for each
5844         * instrument individually.
5845         *
5846         * @note This is an own format extension which did not exist i.e. in the
5847         * GigaStudio 4 software. It will currently only work with LinuxSampler and
5848         * Gigedit.
5849         *
5850         * @param slot - script slot index of the variable to be unset
5851         * @param variable - name of the 'patch' variable in that script
5852         */
5853        void Instrument::UnsetScriptPatchVariable(int slot, String variable) {
5854            Script* script = GetScriptOfSlot(slot);
5855    
5856            // option 1: unset a particular variable of one particular script slot
5857            if (slot != -1 && !variable.empty()) {
5858                if (!script) return;
5859                const _UUID uuid = _UUIDFromCArray(&script->Uuid[0]);
5860                if (!scriptVars.count(uuid)) return;
5861                if (!scriptVars[uuid].count(slot)) return;
5862                if (scriptVars[uuid][slot].count(variable))
5863                    scriptVars[uuid][slot].erase(
5864                        scriptVars[uuid][slot].find(variable)
5865                    );
5866                if (scriptVars[uuid][slot].empty())
5867                    scriptVars[uuid].erase( scriptVars[uuid].find(slot) );
5868                if (scriptVars[uuid].empty())
5869                    scriptVars.erase( scriptVars.find(uuid) );
5870                return;
5871            }
5872    
5873            // option 2: unset all variables of all script slots
5874            if (slot == -1 && variable.empty()) {
5875                scriptVars.clear();
5876                return;
5877            }
5878    
5879            // option 3: unset all variables of one particular script slot only
5880            if (slot != -1) {
5881                if (!script) return;
5882                const _UUID uuid = _UUIDFromCArray(&script->Uuid[0]);
5883                if (scriptVars.count(uuid))
5884                    scriptVars.erase( scriptVars.find(uuid) );
5885                return;
5886            }
5887    
5888            // option 4: unset a particular variable of all script slots
5889            _VarsByScript::iterator itScript = scriptVars.begin();
5890            _VarsByScript::iterator endScript = scriptVars.end();
5891            while (itScript != endScript) {
5892                _VarsBySlot& slots = itScript->second;
5893                _VarsBySlot::iterator itSlot = slots.begin();
5894                _VarsBySlot::iterator endSlot = slots.end();
5895                while (itSlot != endSlot) {
5896                    _PatchVars& vars = itSlot->second;
5897                    if (vars.count(variable))
5898                        vars.erase( vars.find(variable) );
5899                    if (vars.empty())
5900                        slots.erase(itSlot++); // postfix increment to avoid iterator invalidation
5901                    else
5902                        ++itSlot;
5903                }
5904                if (slots.empty())
5905                    scriptVars.erase(itScript++); // postfix increment to avoid iterator invalidation
5906                else
5907                    ++itScript;
5908            }
5909        }
5910    
5911        /**
5912         * Returns stripped version of member variable @c scriptVars, where scripts
5913         * no longer referenced by this @c Instrument are filtered out, and so are
5914         * variables of meanwhile obsolete slots (i.e. a script still being
5915         * referenced, but previously overridden on a script slot which either no
5916         * longer exists or is hosting another script now).
5917         */
5918        Instrument::_VarsByScript Instrument::stripScriptVars() {
5919            _VarsByScript vars;
5920            _VarsByScript::const_iterator itScript = scriptVars.begin();
5921            _VarsByScript::const_iterator endScript = scriptVars.end();
5922            for (; itScript != endScript; ++itScript) {
5923                const _UUID& uuid = itScript->first;
5924                if (!ReferencesScriptWithUuid(uuid))
5925                    continue;
5926                const _VarsBySlot& slots = itScript->second;
5927                _VarsBySlot::const_iterator itSlot = slots.begin();
5928                _VarsBySlot::const_iterator endSlot = slots.end();
5929                for (; itSlot != endSlot; ++itSlot) {
5930                    Script* script = GetScriptOfSlot(itSlot->first);
5931                    if (!script) continue;
5932                    if (_UUIDFromCArray(&script->Uuid[0]) != uuid) continue;
5933                    if (itSlot->second.empty()) continue;
5934                    vars[uuid][itSlot->first] = itSlot->second;
5935                }
5936            }
5937            return vars;
5938        }
5939    
5940      /**      /**
5941       * 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
5942       * and assign it to this object.       * and assign it to this object.
# Line 5343  namespace { Line 5971  namespace {
5971          PianoReleaseMode = orig->PianoReleaseMode;          PianoReleaseMode = orig->PianoReleaseMode;
5972          DimensionKeyRange = orig->DimensionKeyRange;          DimensionKeyRange = orig->DimensionKeyRange;
5973          scriptPoolFileOffsets = orig->scriptPoolFileOffsets;          scriptPoolFileOffsets = orig->scriptPoolFileOffsets;
5974          pScriptRefs = orig->pScriptRefs;          // deep copy of pScriptRefs required (to avoid undefined behaviour)
5975            if (pScriptRefs) delete pScriptRefs;
5976            pScriptRefs = new std::vector<_ScriptPooolRef>;
5977            if (orig->pScriptRefs)
5978                *pScriptRefs = *orig->pScriptRefs;
5979            scriptVars = orig->scriptVars;
5980                    
5981          // free old midi rules          // free old midi rules
5982          for (int i = 0 ; pMidiRules[i] ; i++) {          for (int i = 0 ; pMidiRules[i] ; i++) {
# Line 5370  namespace { Line 6003  namespace {
6003          UpdateRegionKeyTable();          UpdateRegionKeyTable();
6004      }      }
6005    
6006        /**
6007         * Returns @c true in case this Instrument object uses any gig format
6008         * extension, that is e.g. whether any DimensionRegion object currently
6009         * has any setting effective that would require our "LSDE" RIFF chunk to
6010         * be stored to the gig file.
6011         *
6012         * Right now this is a private method. It is considerable though this method
6013         * to become (in slightly modified form) a public API method in future, i.e.
6014         * to allow instrument editors to visualize and/or warn the user of any gig
6015         * format extension being used. See also comments on
6016         * DimensionRegion::UsesAnyGigFormatExtension() for details about such a
6017         * potential public API change in future.
6018         */
6019        bool Instrument::UsesAnyGigFormatExtension() const {
6020            if (!pRegions) return false;
6021            if (!scriptVars.empty()) return true;
6022            RegionList::const_iterator iter = pRegions->begin();
6023            RegionList::const_iterator end  = pRegions->end();
6024            for (; iter != end; ++iter) {
6025                gig::Region* rgn = static_cast<gig::Region*>(*iter);
6026                if (rgn->UsesAnyGigFormatExtension())
6027                    return true;
6028            }
6029            return false;
6030        }
6031    
6032    
6033  // *************** Group ***************  // *************** Group ***************
6034  // *  // *
# Line 5386  namespace { Line 6045  namespace {
6045          ::LoadString(pNameChunk, Name);          ::LoadString(pNameChunk, Name);
6046      }      }
6047    
6048        /** @brief Destructor.
6049         *
6050         * Currently this destructor implementation does nothing.
6051         */
6052      Group::~Group() {      Group::~Group() {
6053          // remove the chunk associated with this group (if any)      }
6054          if (pNameChunk) pNameChunk->GetParent()->DeleteSubChunk(pNameChunk);  
6055        /** @brief Remove all RIFF chunks associated with this Group object.
6056         *
6057         * See DLS::Storage::DeleteChunks() for details.
6058         */
6059        void Group::DeleteChunks() {
6060            // handle own RIFF chunks
6061            if (pNameChunk) {
6062                pNameChunk->GetParent()->DeleteSubChunk(pNameChunk);
6063                pNameChunk = NULL;
6064            }
6065      }      }
6066    
6067      /** @brief Update chunks with current group settings.      /** @brief Update chunks with current group settings.
# Line 5413  namespace { Line 6086  namespace {
6086    
6087          if (!pNameChunk && pFile->pVersion && pFile->pVersion->major > 2) {          if (!pNameChunk && pFile->pVersion && pFile->pVersion->major > 2) {
6088              // v3 has a fixed list of 128 strings, find a free one              // v3 has a fixed list of 128 strings, find a free one
6089              for (RIFF::Chunk* ck = _3gnl->GetFirstSubChunk() ; ck ; ck = _3gnl->GetNextSubChunk()) {              size_t i = 0;
6090                for (RIFF::Chunk* ck = _3gnl->GetSubChunkAt(i); ck; ck = _3gnl->GetSubChunkAt(++i)) {
6091                  if (strcmp(static_cast<char*>(ck->LoadChunkData()), "") == 0) {                  if (strcmp(static_cast<char*>(ck->LoadChunkData()), "") == 0) {
6092                      pNameChunk = ck;                      pNameChunk = ck;
6093                      break;                      break;
# Line 5659  namespace { Line 6333  namespace {
6333          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");
6334          if (SamplesIterator != pSamples->end() && *SamplesIterator == pSample) ++SamplesIterator; // avoid iterator invalidation          if (SamplesIterator != pSamples->end() && *SamplesIterator == pSample) ++SamplesIterator; // avoid iterator invalidation
6335          pSamples->erase(iter);          pSamples->erase(iter);
6336            pSample->DeleteChunks();
6337          delete pSample;          delete pSample;
6338    
6339          SampleList::iterator tmp = SamplesIterator;          SampleList::iterator tmp = SamplesIterator;
# Line 5690  namespace { Line 6365  namespace {
6365    
6366          if (!pSamples) pSamples = new SampleList;          if (!pSamples) pSamples = new SampleList;
6367    
         RIFF::File* file = pRIFF;  
   
6368          // just for progress calculation          // just for progress calculation
6369          int iSampleIndex  = 0;          int iSampleIndex  = 0;
6370          int iTotalSamples = WavePoolCount;          int iTotalSamples = WavePoolCount;
6371    
6372          // check if samples should be loaded from extension files          // just for assembling path of optional extension files to be read
6373          // (only for old gig files < 2 GB)          const std::string folder = parentPath(pRIFF->GetFileName());
6374          int lastFileNo = 0;          const std::string baseName = pathWithoutExtension(pRIFF->GetFileName());
6375          if (!file->IsNew() && !(file->GetCurrentFileSize() >> 31)) {  
6376              for (int i = 0 ; i < WavePoolCount ; i++) {          // the main gig file and the extension files (.gx01, ... , .gx98) may
6377                  if (pWavePoolTableHi[i] > lastFileNo) lastFileNo = pWavePoolTableHi[i];          // contain wave data (wave pool)
6378              }          std::vector<RIFF::File*> poolFiles;
6379          }          poolFiles.push_back(pRIFF);
6380          String name(pRIFF->GetFileName());  
6381          int nameLen = (int) name.length();          // get info about all extension files
6382          char suffix[6];          RIFF::Chunk* ckXfil = pRIFF->GetSubChunk(CHUNK_ID_XFIL);
6383          if (nameLen > 4 && name.substr(nameLen - 4) == ".gig") nameLen -= 4;          if (ckXfil) { // there are extension files (.gx01, ... , .gx98) ...
6384                const uint32_t n = ckXfil->ReadInt32();
6385          for (int fileNo = 0 ; ; ) {              for (int i = 0; i < n; i++) {
6386                    // read the filename and load the extension file
6387                    std::string name;
6388                    ckXfil->ReadString(name, 128);
6389                    std::string path = concatPath(folder, name);
6390                    RIFF::File* pExtFile = new RIFF::File(path);
6391                    // check that the dlsids match
6392                    RIFF::Chunk* ckDLSID = pExtFile->GetSubChunk(CHUNK_ID_DLID);
6393                    if (ckDLSID) {
6394                        ::DLS::dlsid_t idExpected;
6395                        idExpected.ulData1 = ckXfil->ReadInt32();
6396                        idExpected.usData2 = ckXfil->ReadInt16();
6397                        idExpected.usData3 = ckXfil->ReadInt16();
6398                        ckXfil->Read(idExpected.abData, 8, 1);
6399                        ::DLS::dlsid_t idFound;
6400                        ckDLSID->Read(&idFound.ulData1, 1, 4);
6401                        ckDLSID->Read(&idFound.usData2, 1, 2);
6402                        ckDLSID->Read(&idFound.usData3, 1, 2);
6403                        ckDLSID->Read(idFound.abData, 8, 1);
6404                        if (memcmp(&idExpected, &idFound, 16) != 0)
6405                            throw gig::Exception("dlsid mismatch for extension file: %s", path.c_str());
6406                    }
6407                    poolFiles.push_back(pExtFile);
6408                    ExtensionFiles.push_back(pExtFile);
6409                }
6410            }
6411    
6412            // check if a .gx99 (GigaPulse) file exists
6413            RIFF::Chunk* ckDoxf = pRIFF->GetSubChunk(CHUNK_ID_DOXF);
6414            if (ckDoxf) { // there is a .gx99 (GigaPulse) file ...
6415                std::string path = baseName + ".gx99";
6416                RIFF::File* pExtFile = new RIFF::File(path);
6417    
6418                // skip unused int and filename
6419                ckDoxf->SetPos(132, RIFF::stream_curpos);
6420    
6421                // check that the dlsids match
6422                RIFF::Chunk* ckDLSID = pExtFile->GetSubChunk(CHUNK_ID_DLID);
6423                if (ckDLSID) {
6424                    ::DLS::dlsid_t idExpected;
6425                    idExpected.ulData1 = ckDoxf->ReadInt32();
6426                    idExpected.usData2 = ckDoxf->ReadInt16();
6427                    idExpected.usData3 = ckDoxf->ReadInt16();
6428                    ckDoxf->Read(idExpected.abData, 8, 1);
6429                    ::DLS::dlsid_t idFound;
6430                    ckDLSID->Read(&idFound.ulData1, 1, 4);
6431                    ckDLSID->Read(&idFound.usData2, 1, 2);
6432                    ckDLSID->Read(&idFound.usData3, 1, 2);
6433                    ckDLSID->Read(idFound.abData, 8, 1);
6434                    if (memcmp(&idExpected, &idFound, 16) != 0)
6435                        throw gig::Exception("dlsid mismatch for GigaPulse file: %s", path.c_str());
6436                }
6437                poolFiles.push_back(pExtFile);
6438                ExtensionFiles.push_back(pExtFile);
6439            }
6440    
6441            // load samples from extension files (if required)
6442            for (int i = 0; i < poolFiles.size(); i++) {
6443                RIFF::File* file = poolFiles[i];
6444              RIFF::List* wvpl = file->GetSubList(LIST_TYPE_WVPL);              RIFF::List* wvpl = file->GetSubList(LIST_TYPE_WVPL);
6445              if (wvpl) {              if (wvpl) {
6446                  file_offset_t wvplFileOffset = wvpl->GetFilePos();                  file_offset_t wvplFileOffset = wvpl->GetFilePos() -
6447                  RIFF::List* wave = wvpl->GetFirstSubList();                                                 wvpl->GetPos(); // should be zero, but just to be sure
6448                  while (wave) {                  size_t i = 0;
6449                    for (RIFF::List* wave = wvpl->GetSubListAt(i); wave;
6450                         wave = wvpl->GetSubListAt(++i))
6451                    {
6452                      if (wave->GetListType() == LIST_TYPE_WAVE) {                      if (wave->GetListType() == LIST_TYPE_WAVE) {
6453                          // notify current progress                          // notify current progress
6454                          const float subprogress = (float) iSampleIndex / (float) iTotalSamples;                          if (pProgress) {
6455                          __notify_progress(pProgress, subprogress);                              const float subprogress = (float) iSampleIndex / (float) iTotalSamples;
6456                                __notify_progress(pProgress, subprogress);
6457                            }
6458    
6459                          file_offset_t waveFileOffset = wave->GetFilePos();                          file_offset_t waveFileOffset = wave->GetFilePos();
6460                          pSamples->push_back(new Sample(this, wave, waveFileOffset - wvplFileOffset, fileNo, iSampleIndex));                          pSamples->push_back(new Sample(this, wave, waveFileOffset - wvplFileOffset, i, iSampleIndex));
6461    
6462                          iSampleIndex++;                          iSampleIndex++;
6463                      }                      }
                     wave = wvpl->GetNextSubList();  
6464                  }                  }
6465                }
                 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;  
6466          }          }
6467    
6468          __notify_progress(pProgress, 1.0); // notify done          if (pProgress)
6469                __notify_progress(pProgress, 1.0); // notify done
6470      }      }
6471    
6472      Instrument* File::GetFirstInstrument() {      Instrument* File::GetFirstInstrument() {
# Line 5780  namespace { Line 6507  namespace {
6507          if (!pInstruments) {          if (!pInstruments) {
6508              // 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)
6509    
6510              // sample loading subtask              if (pProgress) {
6511              progress_t subprogress;                  // sample loading subtask
6512              __divide_progress(pProgress, &subprogress, 3.0f, 0.0f); // randomly schedule 33% for this subtask                  progress_t subprogress;
6513              __notify_progress(&subprogress, 0.0f);                  __divide_progress(pProgress, &subprogress, 3.0f, 0.0f); // randomly schedule 33% for this subtask
6514              if (GetAutoLoad())                  __notify_progress(&subprogress, 0.0f);
6515                  GetFirstSample(&subprogress); // now force all samples to be loaded                  if (GetAutoLoad())
6516              __notify_progress(&subprogress, 1.0f);                      GetFirstSample(&subprogress); // now force all samples to be loaded
6517                    __notify_progress(&subprogress, 1.0f);
6518              // instrument loading subtask  
6519              if (pProgress && pProgress->callback) {                  // instrument loading subtask
6520                  subprogress.__range_min = subprogress.__range_max;                  if (pProgress->callback) {
6521                  subprogress.__range_max = pProgress->__range_max; // schedule remaining percentage for this subtask                      subprogress.__range_min = subprogress.__range_max;
6522              }                      subprogress.__range_max = pProgress->__range_max; // schedule remaining percentage for this subtask
6523              __notify_progress(&subprogress, 0.0f);                  }
6524              LoadInstruments(&subprogress);                  __notify_progress(&subprogress, 0.0f);
6525              __notify_progress(&subprogress, 1.0f);                  LoadInstruments(&subprogress);
6526                    __notify_progress(&subprogress, 1.0f);
6527                } else {
6528                    // sample loading subtask
6529                    if (GetAutoLoad())
6530                        GetFirstSample(); // now force all samples to be loaded
6531    
6532                    // instrument loading subtask
6533                    LoadInstruments();
6534                }
6535          }          }
6536          if (!pInstruments) return NULL;          if (!pInstruments) return NULL;
6537          InstrumentsIterator = pInstruments->begin();          InstrumentsIterator = pInstruments->begin();
# Line 5944  namespace { Line 6680  namespace {
6680          InstrumentList::iterator iter = find(pInstruments->begin(), pInstruments->end(), (DLS::Instrument*) pInstrument);          InstrumentList::iterator iter = find(pInstruments->begin(), pInstruments->end(), (DLS::Instrument*) pInstrument);
6681          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");
6682          pInstruments->erase(iter);          pInstruments->erase(iter);
6683            pInstrument->DeleteChunks();
6684          delete pInstrument;          delete pInstrument;
6685      }      }
6686    
# Line 5956  namespace { Line 6693  namespace {
6693          RIFF::List* lstInstruments = pRIFF->GetSubList(LIST_TYPE_LINS);          RIFF::List* lstInstruments = pRIFF->GetSubList(LIST_TYPE_LINS);
6694          if (lstInstruments) {          if (lstInstruments) {
6695              int iInstrumentIndex = 0;              int iInstrumentIndex = 0;
6696              RIFF::List* lstInstr = lstInstruments->GetFirstSubList();              size_t i = 0;
6697              while (lstInstr) {              for (RIFF::List* lstInstr = lstInstruments->GetSubListAt(i);
6698                     lstInstr; lstInstr = lstInstruments->GetSubListAt(++i))
6699                {
6700                  if (lstInstr->GetListType() == LIST_TYPE_INS) {                  if (lstInstr->GetListType() == LIST_TYPE_INS) {
6701                      // notify current progress                      if (pProgress) {
6702                      const float localProgress = (float) iInstrumentIndex / (float) Instruments;                          // notify current progress
6703                      __notify_progress(pProgress, localProgress);                          const float localProgress = (float) iInstrumentIndex / (float) Instruments;
6704                            __notify_progress(pProgress, localProgress);
                     // divide local progress into subprogress for loading current Instrument  
                     progress_t subprogress;  
                     __divide_progress(pProgress, &subprogress, Instruments, iInstrumentIndex);  
6705    
6706                      pInstruments->push_back(new Instrument(this, lstInstr, &subprogress));                          // divide local progress into subprogress for loading current Instrument
6707                            progress_t subprogress;
6708                            __divide_progress(pProgress, &subprogress, Instruments, iInstrumentIndex);
6709    
6710                            pInstruments->push_back(new Instrument(this, lstInstr, &subprogress));
6711                        } else {
6712                            pInstruments->push_back(new Instrument(this, lstInstr));
6713                        }
6714    
6715                      iInstrumentIndex++;                      iInstrumentIndex++;
6716                  }                  }
                 lstInstr = lstInstruments->GetNextSubList();  
6717              }              }
6718              __notify_progress(pProgress, 1.0); // notify done              if (pProgress)
6719                    __notify_progress(pProgress, 1.0); // notify done
6720          }          }
6721      }      }
6722    
# Line 6203  namespace { Line 6946  namespace {
6946          }          }
6947          // now delete this group object          // now delete this group object
6948          pGroups->erase(iter);          pGroups->erase(iter);
6949            pGroup->DeleteChunks();
6950          delete pGroup;          delete pGroup;
6951      }      }
6952    
# Line 6224  namespace { Line 6968  namespace {
6968          // move all members of this group to another group          // move all members of this group to another group
6969          pGroup->MoveAll();          pGroup->MoveAll();
6970          pGroups->erase(iter);          pGroups->erase(iter);
6971            pGroup->DeleteChunks();
6972          delete pGroup;          delete pGroup;
6973      }      }
6974    
# Line 6234  namespace { Line 6979  namespace {
6979          if (lst3gri) {          if (lst3gri) {
6980              RIFF::List* lst3gnl = lst3gri->GetSubList(LIST_TYPE_3GNL);              RIFF::List* lst3gnl = lst3gri->GetSubList(LIST_TYPE_3GNL);
6981              if (lst3gnl) {              if (lst3gnl) {
6982                  RIFF::Chunk* ck = lst3gnl->GetFirstSubChunk();                  size_t i = 0;
6983                  while (ck) {                  for (RIFF::Chunk* ck = lst3gnl->GetSubChunkAt(i); ck;
6984                         ck = lst3gnl->GetSubChunkAt(++i))
6985                    {
6986                      if (ck->GetChunkID() == CHUNK_ID_3GNM) {                      if (ck->GetChunkID() == CHUNK_ID_3GNM) {
6987                          if (pVersion && pVersion->major > 2 &&                          if (pVersion && pVersion->major > 2 &&
6988                              strcmp(static_cast<char*>(ck->LoadChunkData()), "") == 0) break;                              strcmp(static_cast<char*>(ck->LoadChunkData()), "") == 0) break;
6989    
6990                          pGroups->push_back(new Group(this, ck));                          pGroups->push_back(new Group(this, ck));
6991                      }                      }
                     ck = lst3gnl->GetNextSubChunk();  
6992                  }                  }
6993              }              }
6994          }          }
# Line 6323  namespace { Line 7069  namespace {
7069              pScriptGroup->DeleteScript(pScriptGroup->GetScript(i));              pScriptGroup->DeleteScript(pScriptGroup->GetScript(i));
7070          if (pScriptGroup->pList)          if (pScriptGroup->pList)
7071              pScriptGroup->pList->GetParent()->DeleteSubChunk(pScriptGroup->pList);              pScriptGroup->pList->GetParent()->DeleteSubChunk(pScriptGroup->pList);
7072            pScriptGroup->DeleteChunks();
7073          delete pScriptGroup;          delete pScriptGroup;
7074      }      }
7075    
# Line 6331  namespace { Line 7078  namespace {
7078          pScriptGroups = new std::list<ScriptGroup*>;          pScriptGroups = new std::list<ScriptGroup*>;
7079          RIFF::List* lstLS = pRIFF->GetSubList(LIST_TYPE_3LS);          RIFF::List* lstLS = pRIFF->GetSubList(LIST_TYPE_3LS);
7080          if (lstLS) {          if (lstLS) {
7081              for (RIFF::List* lst = lstLS->GetFirstSubList(); lst;              size_t i = 0;
7082                   lst = lstLS->GetNextSubList())              for (RIFF::List* lst = lstLS->GetSubListAt(i); lst;
7083                     lst = lstLS->GetSubListAt(++i))
7084              {              {
7085                  if (lst->GetListType() == LIST_TYPE_RTIS) {                  if (lst->GetListType() == LIST_TYPE_RTIS) {
7086                      pScriptGroups->push_back(new ScriptGroup(this, lst));                      pScriptGroups->push_back(new ScriptGroup(this, lst));
# Line 6393  namespace { Line 7141  namespace {
7141              // INFO was added by Resource::UpdateChunks - make sure it              // INFO was added by Resource::UpdateChunks - make sure it
7142              // is placed first in file              // is placed first in file
7143              RIFF::Chunk* info = pRIFF->GetSubList(LIST_TYPE_INFO);              RIFF::Chunk* info = pRIFF->GetSubList(LIST_TYPE_INFO);
7144              RIFF::Chunk* first = pRIFF->GetFirstSubChunk();              RIFF::Chunk* first = pRIFF->GetSubChunkAt(0);
7145              if (first != info) {              if (first != info) {
7146                  pRIFF->MoveSubChunk(info, first);                  pRIFF->MoveSubChunk(info, first);
7147              }              }
# Line 6414  namespace { Line 7162  namespace {
7162              // v3: make sure the file has 128 3gnm chunks              // v3: make sure the file has 128 3gnm chunks
7163              // (before updating the Group chunks)              // (before updating the Group chunks)
7164              if (pVersion && pVersion->major > 2) {              if (pVersion && pVersion->major > 2) {
7165                  RIFF::Chunk* _3gnm = _3gnl->GetFirstSubChunk();                  size_t i = 0;
7166                  for (int i = 0 ; i < 128 ; i++) {                  for (RIFF::Chunk* _3gnm = _3gnl->GetSubChunkAt(i); i < 128;
7167                      if (i >= pGroups->size()) ::SaveString(CHUNK_ID_3GNM, _3gnm, _3gnl, "", "", true, 64);                       _3gnm = _3gnl->GetSubChunkAt(++i))
7168                      if (_3gnm) _3gnm = _3gnl->GetNextSubChunk();                  {
7169                        // create 128 empty placeholder strings which will either
7170                        // be filled by Group::UpdateChunks below or left empty.
7171                        ::SaveString(CHUNK_ID_3GNM, _3gnm, _3gnl, "", "", true, 64);
7172                  }                  }
7173              }              }
7174    
# Line 6586  namespace { Line 7337  namespace {
7337      }      }
7338    
7339      /**      /**
7340       * Enable / disable automatic loading. By default this properyt is       * Enable / disable automatic loading. By default this property is
7341       * enabled and all informations are loaded automatically. However       * enabled and every information is loaded automatically. However
7342       * loading all Regions, DimensionRegions and especially samples might       * loading all Regions, DimensionRegions and especially samples might
7343       * 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
7344       * be interested in retrieving very superficial informations like the       * be interested in retrieving very superficial informations like the
# Line 6595  namespace { Line 7346  namespace {
7346       * automatic loading to avoid very slow response times.       * automatic loading to avoid very slow response times.
7347       *       *
7348       * @e CAUTION: by disabling this property many pointers (i.e. sample       * @e CAUTION: by disabling this property many pointers (i.e. sample
7349       * references) and informations will have invalid or even undefined       * references) and attributes will have invalid or even undefined
7350       * data! This feature is currently only intended for retrieving very       * data! This feature is currently only intended for retrieving very
7351       * 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
7352       * details like synthesis informations or even to modify .gig files!       * details like synthesis information or even to modify .gig files!
7353       */       */
7354      void File::SetAutoLoad(bool b) {      void File::SetAutoLoad(bool b) {
7355          bAutoLoad = b;          bAutoLoad = b;
# Line 6612  namespace { Line 7363  namespace {
7363          return bAutoLoad;          return bAutoLoad;
7364      }      }
7365    
7366        /**
7367         * Returns @c true in case this gig File object uses any gig format
7368         * extension, that is e.g. whether any DimensionRegion object currently
7369         * has any setting effective that would require our "LSDE" RIFF chunk to
7370         * be stored to the gig file.
7371         *
7372         * Right now this is a private method. It is considerable though this method
7373         * to become (in slightly modified form) a public API method in future, i.e.
7374         * to allow instrument editors to visualize and/or warn the user of any gig
7375         * format extension being used. See also comments on
7376         * DimensionRegion::UsesAnyGigFormatExtension() for details about such a
7377         * potential public API change in future.
7378         */
7379        bool File::UsesAnyGigFormatExtension() const {
7380            if (!pInstruments) return false;
7381            InstrumentList::iterator iter = pInstruments->begin();
7382            InstrumentList::iterator end  = pInstruments->end();
7383            for (; iter != end; ++iter) {
7384                Instrument* pInstrument = static_cast<gig::Instrument*>(*iter);
7385                if (pInstrument->UsesAnyGigFormatExtension())
7386                    return true;
7387            }
7388            return false;
7389        }
7390    
7391    
7392  // *************** Exception ***************  // *************** Exception ***************

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