/[svn]/libgig/trunk/src/gig.h
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revision 858 by persson, Sat May 6 11:29:29 2006 UTC revision 2044 by persson, Sun Jan 10 12:58:51 2010 UTC
# Line 1  Line 1 
1  /***************************************************************************  /***************************************************************************
2   *                                                                         *   *                                                                         *
3   *   libgig - C++ cross-platform Gigasampler format file loader library    *   *   libgig - C++ cross-platform Gigasampler format file access library    *
4   *                                                                         *   *                                                                         *
5   *   Copyright (C) 2003-2005 by Christian Schoenebeck                      *   *   Copyright (C) 2003-2010 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 29  Line 29 
29  #if WORDS_BIGENDIAN  #if WORDS_BIGENDIAN
30  # define LIST_TYPE_3PRG 0x33707267  # define LIST_TYPE_3PRG 0x33707267
31  # define LIST_TYPE_3EWL 0x3365776C  # define LIST_TYPE_3EWL 0x3365776C
32  # define CHUNK_ID_SMPL  0x736D706C  # define LIST_TYPE_3GRI 0x33677269
33    # define LIST_TYPE_3GNL 0x33676E6C
34  # define CHUNK_ID_3GIX  0x33676978  # define CHUNK_ID_3GIX  0x33676978
35  # define CHUNK_ID_3EWA  0x33657761  # define CHUNK_ID_3EWA  0x33657761
36  # define CHUNK_ID_3LNK  0x336C6E6B  # define CHUNK_ID_3LNK  0x336C6E6B
37  # define CHUNK_ID_3EWG  0x33657767  # define CHUNK_ID_3EWG  0x33657767
38  # define CHUNK_ID_EWAV  0x65776176  # define CHUNK_ID_EWAV  0x65776176
39    # define CHUNK_ID_3GNM  0x33676E6D
40    # define CHUNK_ID_EINF  0x65696E66
41    # define CHUNK_ID_3CRC  0x33637263
42  #else  // little endian  #else  // little endian
43  # define LIST_TYPE_3PRG 0x67727033  # define LIST_TYPE_3PRG 0x67727033
44  # define LIST_TYPE_3EWL 0x6C776533  # define LIST_TYPE_3EWL 0x6C776533
45  # define CHUNK_ID_SMPL  0x6C706D73  # define LIST_TYPE_3GRI 0x69726733
46    # define LIST_TYPE_3GNL 0x6C6E6733
47  # define CHUNK_ID_3GIX  0x78696733  # define CHUNK_ID_3GIX  0x78696733
48  # define CHUNK_ID_3EWA  0x61776533  # define CHUNK_ID_3EWA  0x61776533
49  # define CHUNK_ID_3LNK  0x6B6E6C33  # define CHUNK_ID_3LNK  0x6B6E6C33
50  # define CHUNK_ID_3EWG  0x67776533  # define CHUNK_ID_3EWG  0x67776533
51  # define CHUNK_ID_EWAV  0x76617765  # define CHUNK_ID_EWAV  0x76617765
52    # define CHUNK_ID_3GNM  0x6D6E6733
53    # define CHUNK_ID_EINF  0x666E6965
54    # define CHUNK_ID_3CRC  0x63726333
55  #endif // WORDS_BIGENDIAN  #endif // WORDS_BIGENDIAN
56    
57  /** Gigasampler specific classes and definitions */  /** Gigasampler specific classes and definitions */
# Line 204  namespace gig { Line 212  namespace gig {
212          dimension_none              = 0x00, ///< Dimension not in use.          dimension_none              = 0x00, ///< Dimension not in use.
213          dimension_samplechannel     = 0x80, ///< If used sample has more than one channel (thus is not mono).          dimension_samplechannel     = 0x80, ///< If used sample has more than one channel (thus is not mono).
214          dimension_layer             = 0x81, ///< For layering of up to 8 instruments (and eventually crossfading of 2 or 4 layers).          dimension_layer             = 0x81, ///< For layering of up to 8 instruments (and eventually crossfading of 2 or 4 layers).
215          dimension_velocity          = 0x82, ///< Key Velocity (this is the only dimension where the ranges can exactly be defined).          dimension_velocity          = 0x82, ///< Key Velocity (this is the only dimension in gig2 where the ranges can exactly be defined).
216          dimension_channelaftertouch = 0x83, ///< Channel Key Pressure          dimension_channelaftertouch = 0x83, ///< Channel Key Pressure
217          dimension_releasetrigger    = 0x84, ///< Special dimension for triggering samples on releasing a key.          dimension_releasetrigger    = 0x84, ///< Special dimension for triggering samples on releasing a key.
218          dimension_keyboard          = 0x85, ///< Dimension for keyswitching          dimension_keyboard          = 0x85, ///< Dimension for keyswitching
219          dimension_roundrobin        = 0x86, ///< Different samples triggered each time a note is played, dimension regions selected in sequence          dimension_roundrobin        = 0x86, ///< Different samples triggered each time a note is played, dimension regions selected in sequence
220          dimension_random            = 0x87, ///< Different samples triggered each time a note is played, random order          dimension_random            = 0x87, ///< Different samples triggered each time a note is played, random order
221            dimension_smartmidi         = 0x88, ///< For MIDI tools like legato and repetition mode
222            dimension_roundrobinkeyboard = 0x89, ///< Different samples triggered each time a note is played, any key advances the counter
223          dimension_modwheel          = 0x01, ///< Modulation Wheel (MIDI Controller 1)          dimension_modwheel          = 0x01, ///< Modulation Wheel (MIDI Controller 1)
224          dimension_breath            = 0x02, ///< Breath Controller (Coarse, MIDI Controller 2)          dimension_breath            = 0x02, ///< Breath Controller (Coarse, MIDI Controller 2)
225          dimension_foot              = 0x04, ///< Foot Pedal (Coarse, MIDI Controller 4)          dimension_foot              = 0x04, ///< Foot Pedal (Coarse, MIDI Controller 4)
# Line 316  namespace gig { Line 326  namespace gig {
326      class Instrument;      class Instrument;
327      class Sample;      class Sample;
328      class Region;      class Region;
329        class Group;
330    
331      /** Encapsulates articulation information of a dimension region.      /** @brief Encapsulates articulation information of a dimension region.
332       *       *
333       *  Every Gigasampler Instrument has at least one dimension region       *  Every Gigasampler Instrument has at least one dimension region
334       *  (exactly then when it has no dimension defined).       *  (exactly then when it has no dimension defined).
# Line 331  namespace gig { Line 342  namespace gig {
342       */       */
343      class DimensionRegion : protected DLS::Sampler {      class DimensionRegion : protected DLS::Sampler {
344          public:          public:
345              uint8_t            VelocityUpperLimit;            ///< Defines the upper velocity value limit of a velocity split (only if an user defined limit was set, thus a value not equal to 128/NumberOfSplits, else this value is 0).              uint8_t            VelocityUpperLimit;            ///< Defines the upper velocity value limit of a velocity split (only if an user defined limit was set, thus a value not equal to 128/NumberOfSplits, else this value is 0). Only for gig2, otherwise the DimensionUpperLimts are used instead.
346              Sample*            pSample;                       ///< Points to the Sample which is assigned to the dimension region.              Sample*            pSample;                       ///< Points to the Sample which is assigned to the dimension region.
347              // Sample Amplitude EG/LFO              // Sample Amplitude EG/LFO
348              uint16_t           EG1PreAttack;                  ///< Preattack value of the sample amplitude EG (0 - 1000 permille).              uint16_t           EG1PreAttack;                  ///< Preattack value of the sample amplitude EG (0 - 1000 permille).
# Line 383  namespace gig { Line 394  namespace gig {
394              // Filter              // Filter
395              bool               VCFEnabled;                    ///< If filter should be used.              bool               VCFEnabled;                    ///< If filter should be used.
396              vcf_type_t         VCFType;                       ///< Defines the general filter characteristic (lowpass, highpass, bandpass, etc.).              vcf_type_t         VCFType;                       ///< Defines the general filter characteristic (lowpass, highpass, bandpass, etc.).
397              vcf_cutoff_ctrl_t  VCFCutoffController;           ///< Specifies which external controller has influence on the filter cutoff frequency.              vcf_cutoff_ctrl_t  VCFCutoffController;           ///< Specifies which external controller has influence on the filter cutoff frequency. @deprecated Don't alter directly, use SetVCFCutoffController() instead!
398              bool               VCFCutoffControllerInvert;     ///< Inverts values coming from the defined cutoff controller              bool               VCFCutoffControllerInvert;     ///< Inverts values coming from the defined cutoff controller
399              uint8_t            VCFCutoff;                     ///< Max. cutoff frequency.              uint8_t            VCFCutoff;                     ///< Max. cutoff frequency.
400              curve_type_t       VCFVelocityCurve;              ///< Defines a transformation curve for the incoming velocity values, affecting the VCF.              curve_type_t       VCFVelocityCurve;              ///< Defines a transformation curve for the incoming velocity values, affecting the VCF. @deprecated Don't alter directly, use SetVCFVelocityCurve() instead!
401              uint8_t            VCFVelocityScale;              ///< (0-127) Amount velocity controls VCF cutoff frequency (only if no other VCF cutoff controller is defined, otherwise this is the minimum cutoff).              uint8_t            VCFVelocityScale;              ///< (0-127) Amount velocity controls VCF cutoff frequency (only if no other VCF cutoff controller is defined, otherwise this is the minimum cutoff). @deprecated Don't alter directly, use SetVCFVelocityScale() instead!
402              uint8_t            VCFVelocityDynamicRange;       ///< 0x04 = lowest, 0x00 = highest              uint8_t            VCFVelocityDynamicRange;       ///< 0x04 = lowest, 0x00 = highest . @deprecated Don't alter directly, use SetVCFVelocityDynamicRange() instead!
403              uint8_t            VCFResonance;                  ///< Firm internal filter resonance weight.              uint8_t            VCFResonance;                  ///< Firm internal filter resonance weight.
404              bool               VCFResonanceDynamic;           ///< If <i>true</i>: Increases the resonance Q according to changes of controllers that actually control the VCF cutoff frequency (EG2, ext. VCF MIDI controller).              bool               VCFResonanceDynamic;           ///< If <i>true</i>: Increases the resonance Q according to changes of controllers that actually control the VCF cutoff frequency (EG2, ext. VCF MIDI controller).
405              vcf_res_ctrl_t     VCFResonanceController;        ///< Specifies which external controller has influence on the filter resonance Q.              vcf_res_ctrl_t     VCFResonanceController;        ///< Specifies which external controller has influence on the filter resonance Q.
406              bool               VCFKeyboardTracking;           ///< If <i>true</i>: VCF cutoff frequence will be dependend to the note key position relative to the defined breakpoint value.              bool               VCFKeyboardTracking;           ///< If <i>true</i>: VCF cutoff frequence will be dependend to the note key position relative to the defined breakpoint value.
407              uint8_t            VCFKeyboardTrackingBreakpoint; ///< See VCFKeyboardTracking (0 - 127).              uint8_t            VCFKeyboardTrackingBreakpoint; ///< See VCFKeyboardTracking (0 - 127).
408              // Key Velocity Transformations              // Key Velocity Transformations
409              curve_type_t       VelocityResponseCurve;         ///< Defines a transformation curve to the incoming velocity values affecting amplitude (usually you don't have to interpret this parameter, use GetVelocityAttenuation() instead).              curve_type_t       VelocityResponseCurve;         ///< Defines a transformation curve to the incoming velocity values affecting amplitude (usually you don't have to interpret this parameter, use GetVelocityAttenuation() instead). @deprecated Don't alter directly, use SetVelocityResponseCurve() instead!
410              uint8_t            VelocityResponseDepth;         ///< Dynamic range of velocity affecting amplitude (0 - 4) (usually you don't have to interpret this parameter, use GetVelocityAttenuation() instead).              uint8_t            VelocityResponseDepth;         ///< Dynamic range of velocity affecting amplitude (0 - 4) (usually you don't have to interpret this parameter, use GetVelocityAttenuation() instead). @deprecated Don't alter directly, use SetVelocityResponseDepth() instead!
411              uint8_t            VelocityResponseCurveScaling;  ///< 0 - 127 (usually you don't have to interpret this parameter, use GetVelocityAttenuation() instead)              uint8_t            VelocityResponseCurveScaling;  ///< 0 - 127 (usually you don't have to interpret this parameter, use GetVelocityAttenuation() instead). @deprecated Don't alter directly, use SetVelocityResponseCurveScaling() instead!
412              curve_type_t       ReleaseVelocityResponseCurve;  ///< Defines a transformation curve to the incoming release veloctiy values affecting envelope times.              curve_type_t       ReleaseVelocityResponseCurve;  ///< Defines a transformation curve to the incoming release veloctiy values affecting envelope times. @deprecated Don't alter directly, use SetReleaseVelocityResponseCurve() instead!
413              uint8_t            ReleaseVelocityResponseDepth;  ///< Dynamic range of release velocity affecting envelope time (0 - 4).              uint8_t            ReleaseVelocityResponseDepth;  ///< Dynamic range of release velocity affecting envelope time (0 - 4). @deprecated Don't alter directly, use SetReleaseVelocityResponseDepth() instead!
414              uint8_t            ReleaseTriggerDecay;           ///< 0 - 8              uint8_t            ReleaseTriggerDecay;           ///< 0 - 8
415              // Mix / Layer              // Mix / Layer
416              crossfade_t        Crossfade;              crossfade_t        Crossfade;
# Line 415  namespace gig { Line 426  namespace gig {
426              bool               MSDecode;                      ///< Gigastudio flag: defines if Mid Side Recordings should be decoded.              bool               MSDecode;                      ///< Gigastudio flag: defines if Mid Side Recordings should be decoded.
427              uint16_t           SampleStartOffset;             ///< Number of samples the sample start should be moved (0 - 2000).              uint16_t           SampleStartOffset;             ///< Number of samples the sample start should be moved (0 - 2000).
428              double             SampleAttenuation;             ///< Sample volume (calculated from DLS::Sampler::Gain)              double             SampleAttenuation;             ///< Sample volume (calculated from DLS::Sampler::Gain)
429                uint8_t            DimensionUpperLimits[8];       ///< gig3: defines the upper limit of the dimension values for this dimension region
430    
431              // derived attributes from DLS::Sampler              // derived attributes from DLS::Sampler
432              DLS::Sampler::UnityNote;              DLS::Sampler::UnityNote;
# Line 427  namespace gig { Line 439  namespace gig {
439              double GetVelocityAttenuation(uint8_t MIDIKeyVelocity);              double GetVelocityAttenuation(uint8_t MIDIKeyVelocity);
440              double GetVelocityRelease(uint8_t MIDIKeyVelocity);              double GetVelocityRelease(uint8_t MIDIKeyVelocity);
441              double GetVelocityCutoff(uint8_t MIDIKeyVelocity);              double GetVelocityCutoff(uint8_t MIDIKeyVelocity);
442                void SetVelocityResponseCurve(curve_type_t curve);
443                void SetVelocityResponseDepth(uint8_t depth);
444                void SetVelocityResponseCurveScaling(uint8_t scaling);
445                void SetReleaseVelocityResponseCurve(curve_type_t curve);
446                void SetReleaseVelocityResponseDepth(uint8_t depth);
447                void SetVCFCutoffController(vcf_cutoff_ctrl_t controller);
448                void SetVCFVelocityCurve(curve_type_t curve);
449                void SetVCFVelocityDynamicRange(uint8_t range);
450                void SetVCFVelocityScale(uint8_t scaling);
451                Region* GetParent() const;
452                // derived methods
453                DLS::Sampler::AddSampleLoop;
454                DLS::Sampler::DeleteSampleLoop;
455              // overridden methods              // overridden methods
456                virtual void SetGain(int32_t gain);
457              virtual void UpdateChunks();              virtual void UpdateChunks();
458          protected:          protected:
459              uint8_t* VelocityTable; ///< For velocity dimensions with custom defined zone ranges only: used for fast converting from velocity MIDI value to dimension bit number.              uint8_t* VelocityTable; ///< For velocity dimensions with custom defined zone ranges only: used for fast converting from velocity MIDI value to dimension bit number.
460              DimensionRegion(RIFF::List* _3ewl);              DimensionRegion(Region* pParent, RIFF::List* _3ewl);
461                DimensionRegion(RIFF::List* _3ewl, const DimensionRegion& src);
462             ~DimensionRegion();             ~DimensionRegion();
463              friend class Region;              friend class Region;
464          private:          private:
# Line 470  namespace gig { Line 497  namespace gig {
497              double*                  pVelocityAttenuationTable;  ///< Points to the velocity table corresponding to the velocity parameters of this DimensionRegion.              double*                  pVelocityAttenuationTable;  ///< Points to the velocity table corresponding to the velocity parameters of this DimensionRegion.
498              double*                  pVelocityReleaseTable;      ///< Points to the velocity table corresponding to the release velocity parameters of this DimensionRegion              double*                  pVelocityReleaseTable;      ///< Points to the velocity table corresponding to the release velocity parameters of this DimensionRegion
499              double*                  pVelocityCutoffTable;       ///< Points to the velocity table corresponding to the filter velocity parameters of this DimensionRegion              double*                  pVelocityCutoffTable;       ///< Points to the velocity table corresponding to the filter velocity parameters of this DimensionRegion
500                Region*                  pRegion;
501    
502              leverage_ctrl_t DecodeLeverageController(_lev_ctrl_t EncodedController);              leverage_ctrl_t DecodeLeverageController(_lev_ctrl_t EncodedController);
503              _lev_ctrl_t     EncodeLeverageController(leverage_ctrl_t DecodedController);              _lev_ctrl_t     EncodeLeverageController(leverage_ctrl_t DecodedController);
504                double* GetReleaseVelocityTable(curve_type_t releaseVelocityResponseCurve, uint8_t releaseVelocityResponseDepth);
505                double* GetCutoffVelocityTable(curve_type_t vcfVelocityCurve, uint8_t vcfVelocityDynamicRange, uint8_t vcfVelocityScale, vcf_cutoff_ctrl_t vcfCutoffController);
506              double* GetVelocityTable(curve_type_t curveType, uint8_t depth, uint8_t scaling);              double* GetVelocityTable(curve_type_t curveType, uint8_t depth, uint8_t scaling);
507              double* CreateVelocityTable(curve_type_t curveType, uint8_t depth, uint8_t scaling);              double* CreateVelocityTable(curve_type_t curveType, uint8_t depth, uint8_t scaling);
508      };      };
# Line 486  namespace gig { Line 516  namespace gig {
516       * will create the mandatory RIFF chunk which will hold the sample wave       * will create the mandatory RIFF chunk which will hold the sample wave
517       * data and / or resize the file so you will be able to Write() the       * data and / or resize the file so you will be able to Write() the
518       * sample data directly to disk.       * sample data directly to disk.
519         *
520         * @e Caution: for gig synthesis, most looping relevant information are
521         * retrieved from the respective DimensionRegon instead from the Sample
522         * itself. This was made for allowing different loop definitions for the
523         * same sample under different conditions.
524       */       */
525      class Sample : public DLS::Sample {      class Sample : public DLS::Sample {
526          public:          public:
             uint16_t       SampleGroup;  
527              uint32_t       Manufacturer;      ///< Specifies the MIDI Manufacturer's Association (MMA) Manufacturer code for the sampler intended to receive this file's waveform. If no particular manufacturer is to be specified, a value of 0 should be used.              uint32_t       Manufacturer;      ///< Specifies the MIDI Manufacturer's Association (MMA) Manufacturer code for the sampler intended to receive this file's waveform. If no particular manufacturer is to be specified, a value of 0 should be used.
528              uint32_t       Product;           ///< Specifies the MIDI model ID defined by the manufacturer corresponding to the Manufacturer field. If no particular manufacturer's product is to be specified, a value of 0 should be used.              uint32_t       Product;           ///< Specifies the MIDI model ID defined by the manufacturer corresponding to the Manufacturer field. If no particular manufacturer's product is to be specified, a value of 0 should be used.
529              uint32_t       SamplePeriod;      ///< Specifies the duration of time that passes during the playback of one sample in nanoseconds (normally equal to 1 / Samples Per Second, where Samples Per Second is the value found in the format chunk), don't bother to update this attribute, it won't be saved.              uint32_t       SamplePeriod;      ///< Specifies the duration of time that passes during the playback of one sample in nanoseconds (normally equal to 1 / Samples Per Second, where Samples Per Second is the value found in the format chunk), don't bother to update this attribute, it won't be saved.
# Line 497  namespace gig { Line 531  namespace gig {
531              uint32_t       FineTune;          ///< Specifies the fraction of a semitone up from the specified MIDI unity note field. A value of 0x80000000 means 1/2 semitone (50 cents) and a value of 0x00000000 means no fine tuning between semitones.              uint32_t       FineTune;          ///< Specifies the fraction of a semitone up from the specified MIDI unity note field. A value of 0x80000000 means 1/2 semitone (50 cents) and a value of 0x00000000 means no fine tuning between semitones.
532              smpte_format_t SMPTEFormat;       ///< Specifies the Society of Motion Pictures and Television E time format used in the following <i>SMPTEOffset</i> field. If a value of 0 is set, <i>SMPTEOffset</i> should also be set to 0.              smpte_format_t SMPTEFormat;       ///< Specifies the Society of Motion Pictures and Television E time format used in the following <i>SMPTEOffset</i> field. If a value of 0 is set, <i>SMPTEOffset</i> should also be set to 0.
533              uint32_t       SMPTEOffset;       ///< The SMPTE Offset value specifies the time offset to be used for the synchronization / calibration to the first sample in the waveform. This value uses a format of 0xhhmmssff where hh is a signed value that specifies the number of hours (-23 to 23), mm is an unsigned value that specifies the number of minutes (0 to 59), ss is an unsigned value that specifies the number of seconds (0 to 59) and ff is an unsigned value that specifies the number of frames (0 to -1).              uint32_t       SMPTEOffset;       ///< The SMPTE Offset value specifies the time offset to be used for the synchronization / calibration to the first sample in the waveform. This value uses a format of 0xhhmmssff where hh is a signed value that specifies the number of hours (-23 to 23), mm is an unsigned value that specifies the number of minutes (0 to 59), ss is an unsigned value that specifies the number of seconds (0 to 59) and ff is an unsigned value that specifies the number of frames (0 to -1).
534              uint32_t       Loops;             ///< Number of defined sample loops (so far only seen single loops in gig files - please report me if you encounter more!).              uint32_t       Loops;             ///< @e Caution: Use the respective field in the DimensionRegion instead of this one! (Intended purpose: Number of defined sample loops. So far only seen single loops in gig files - please report if you encounter more!)
535              uint32_t       LoopID;            ///< Specifies the unique ID that corresponds to one of the defined cue points in the cue point list (only if Loops > 0), as the Gigasampler format only allows one loop definition at the moment, this attribute isn't really useful for anything.              uint32_t       LoopID;            ///< Specifies the unique ID that corresponds to one of the defined cue points in the cue point list (only if Loops > 0), as the Gigasampler format only allows one loop definition at the moment, this attribute isn't really useful for anything.
536              loop_type_t    LoopType;          ///< The type field defines how the waveform samples will be looped (only if Loops > 0).              loop_type_t    LoopType;          ///< @e Caution: Use the respective field in the DimensionRegion instead of this one! (Intended purpose: The type field defines how the waveform samples will be looped.)
537              uint32_t       LoopStart;         ///< The start value specifies the offset (in sample points) in the waveform data of the first sample to be played in the loop (only if Loops > 0).              uint32_t       LoopStart;         ///< @e Caution: Use the respective field in the DimensionRegion instead of this one! (Intended purpose: The start value specifies the offset [in sample points] in the waveform data of the first sample to be played in the loop [only if Loops > 0].)
538              uint32_t       LoopEnd;           ///< The end value specifies the offset (in sample points) in the waveform data which represents the end of the loop (only if Loops > 0).              uint32_t       LoopEnd;           ///< @e Caution: Use the respective field in the DimensionRegion instead of this one! (Intended purpose: The end value specifies the offset [in sample points] in the waveform data which represents the end of the loop [only if Loops > 0].)
539              uint32_t       LoopSize;          ///< Length of the looping area (in sample points) which is equivalent to <i>LoopEnd - LoopStart</i>.              uint32_t       LoopSize;          ///< @e Caution: Use the respective fields in the DimensionRegion instead of this one! (Intended purpose: Length of the looping area [in sample points] which is equivalent to @code LoopEnd - LoopStart @endcode.)
540              uint32_t       LoopFraction;      ///< The fractional value specifies a fraction of a sample at which to loop (only if Loops > 0). This allows a loop to be fine tuned at a resolution greater than one sample. A value of 0 means no fraction, a value of 0x80000000 means 1/2 of a sample length. 0xFFFFFFFF is the smallest fraction of a sample that can be represented.              uint32_t       LoopFraction;      ///< The fractional value specifies a fraction of a sample at which to loop. This allows a loop to be fine tuned at a resolution greater than one sample. A value of 0 means no fraction, a value of 0x80000000 means 1/2 of a sample length. 0xFFFFFFFF is the smallest fraction of a sample that can be represented.
541              uint32_t       LoopPlayCount;     ///< Number of times the loop should be played (only if Loops > 0, a value of 0 = infinite).              uint32_t       LoopPlayCount;     ///< Number of times the loop should be played (a value of 0 = infinite).
542              bool           Compressed;        ///< If the sample wave is compressed (probably just interesting for instrument and sample editors, as this library already handles the decompression in it's sample access methods anyway).              bool           Compressed;        ///< If the sample wave is compressed (probably just interesting for instrument and sample editors, as this library already handles the decompression in it's sample access methods anyway).
543              uint32_t       TruncatedBits;     ///< For 24-bit compressed samples only: number of bits truncated during compression (0, 4 or 6)              uint32_t       TruncatedBits;     ///< For 24-bit compressed samples only: number of bits truncated during compression (0, 4 or 6)
544              bool           Dithered;          ///< For 24-bit compressed samples only: if dithering was used during compression with bit reduction              bool           Dithered;          ///< For 24-bit compressed samples only: if dithering was used during compression with bit reduction
# Line 524  namespace gig { Line 558  namespace gig {
558              unsigned long SetPos(unsigned long SampleCount, RIFF::stream_whence_t Whence = RIFF::stream_start);              unsigned long SetPos(unsigned long SampleCount, RIFF::stream_whence_t Whence = RIFF::stream_start);
559              unsigned long GetPos();              unsigned long GetPos();
560              unsigned long Read(void* pBuffer, unsigned long SampleCount, buffer_t* pExternalDecompressionBuffer = NULL);              unsigned long Read(void* pBuffer, unsigned long SampleCount, buffer_t* pExternalDecompressionBuffer = NULL);
561              unsigned long ReadAndLoop(void* pBuffer, unsigned long SampleCount, playback_state_t* pPlaybackState, buffer_t* pExternalDecompressionBuffer = NULL);              unsigned long ReadAndLoop(void* pBuffer, unsigned long SampleCount, playback_state_t* pPlaybackState, DimensionRegion* pDimRgn, buffer_t* pExternalDecompressionBuffer = NULL);
562              unsigned long Write(void* pBuffer, unsigned long SampleCount);              unsigned long Write(void* pBuffer, unsigned long SampleCount);
563                Group*        GetGroup() const;
564              virtual void  UpdateChunks();              virtual void  UpdateChunks();
565          protected:          protected:
566              static unsigned int  Instances;               ///< Number of instances of class Sample.              static unsigned int  Instances;               ///< Number of instances of class Sample.
567              static buffer_t      InternalDecompressionBuffer; ///< Buffer used for decompression as well as for truncation of 24 Bit -> 16 Bit samples.              static buffer_t      InternalDecompressionBuffer; ///< Buffer used for decompression as well as for truncation of 24 Bit -> 16 Bit samples.
568                Group*               pGroup;                  ///< pointer to the Group this sample belongs to (always not-NULL)
569              unsigned long        FrameOffset;             ///< Current offset (sample points) in current sample frame (for decompression only).              unsigned long        FrameOffset;             ///< Current offset (sample points) in current sample frame (for decompression only).
570              unsigned long*       FrameTable;              ///< For positioning within compressed samples only: stores the offset values for each frame.              unsigned long*       FrameTable;              ///< For positioning within compressed samples only: stores the offset values for each frame.
571              unsigned long        SamplePos;               ///< For compressed samples only: stores the current position (in sample points).              unsigned long        SamplePos;               ///< For compressed samples only: stores the current position (in sample points).
# Line 540  namespace gig { Line 576  namespace gig {
576              unsigned long        FileNo;                  ///< File number (> 0 when sample is stored in an extension file, 0 when it's in the gig)              unsigned long        FileNo;                  ///< File number (> 0 when sample is stored in an extension file, 0 when it's in the gig)
577              RIFF::Chunk*         pCk3gix;              RIFF::Chunk*         pCk3gix;
578              RIFF::Chunk*         pCkSmpl;              RIFF::Chunk*         pCkSmpl;
579                uint32_t             crc;                     ///< CRC-32 checksum of the raw sample data
580    
581              Sample(File* pFile, RIFF::List* waveList, unsigned long WavePoolOffset, unsigned long fileNo = 0);              Sample(File* pFile, RIFF::List* waveList, unsigned long WavePoolOffset, unsigned long fileNo = 0);
582             ~Sample();             ~Sample();
# Line 569  namespace gig { Line 606  namespace gig {
606              void ScanCompressedSample();              void ScanCompressedSample();
607              friend class File;              friend class File;
608              friend class Region;              friend class Region;
609                friend class Group; // allow to modify protected member pGroup
610      };      };
611    
612      // TODO: <3dnl> list not used yet - not important though (just contains optional descriptions for the dimensions)      // TODO: <3dnl> list not used yet - not important though (just contains optional descriptions for the dimensions)
# Line 576  namespace gig { Line 614  namespace gig {
614      class Region : public DLS::Region {      class Region : public DLS::Region {
615          public:          public:
616              unsigned int            Dimensions;               ///< Number of defined dimensions, do not alter!              unsigned int            Dimensions;               ///< Number of defined dimensions, do not alter!
617              dimension_def_t         pDimensionDefinitions[8]; ///< Defines the five (gig2) or eight (gig3) possible dimensions (the dimension's controller and number of bits/splits). Use AddDimension() and DeleteDimension() to create a new dimension ot delete an existing one.              dimension_def_t         pDimensionDefinitions[8]; ///< Defines the five (gig2) or eight (gig3) possible dimensions (the dimension's controller and number of bits/splits). Use AddDimension() and DeleteDimension() to create a new dimension or delete an existing one.
618              uint32_t                DimensionRegions;         ///< Total number of DimensionRegions this Region contains, do not alter!              uint32_t                DimensionRegions;         ///< Total number of DimensionRegions this Region contains, do not alter!
619              DimensionRegion*        pDimensionRegions[256];   ///< Pointer array to the 32 (gig2) or 256 (gig3) possible dimension regions (reflects NULL for dimension regions not in use). Avoid to access the array directly and better use GetDimensionRegionByValue() instead, but of course in some cases it makes sense to use the array (e.g. iterating through all DimensionRegions). Use AddDimension() and DeleteDimension() to create a new dimension ot delete an existing one (which will create or delete the respective dimension region(s) automatically).              DimensionRegion*        pDimensionRegions[256];   ///< Pointer array to the 32 (gig2) or 256 (gig3) possible dimension regions (reflects NULL for dimension regions not in use). Avoid to access the array directly and better use GetDimensionRegionByValue() instead, but of course in some cases it makes sense to use the array (e.g. iterating through all DimensionRegions). Use AddDimension() and DeleteDimension() to create a new dimension or delete an existing one (which will create or delete the respective dimension region(s) automatically).
620              unsigned int            Layers;                   ///< Amount of defined layers (1 - 32). A value of 1 actually means no layering, a value > 1 means there is Layer dimension. The same information can of course also be obtained by accessing pDimensionDefinitions. Do not alter this value!              unsigned int            Layers;                   ///< Amount of defined layers (1 - 32). A value of 1 actually means no layering, a value > 1 means there is Layer dimension. The same information can of course also be obtained by accessing pDimensionDefinitions. Do not alter this value!
621    
622                // own methods
623              DimensionRegion* GetDimensionRegionByValue(const uint DimValues[8]);              DimensionRegion* GetDimensionRegionByValue(const uint DimValues[8]);
624              DimensionRegion* GetDimensionRegionByBit(const uint8_t DimBits[8]);              DimensionRegion* GetDimensionRegionByBit(const uint8_t DimBits[8]);
625              Sample*          GetSample();              Sample*          GetSample();
626              void             AddDimension(dimension_def_t* pDimDef);              void             AddDimension(dimension_def_t* pDimDef);
627              void             DeleteDimension(dimension_def_t* pDimDef);              void             DeleteDimension(dimension_def_t* pDimDef);
628                // overridden methods
629                virtual void     SetKeyRange(uint16_t Low, uint16_t High);
630              virtual void     UpdateChunks();              virtual void     UpdateChunks();
631          protected:          protected:
632              Region(Instrument* pInstrument, RIFF::List* rgnList);              Region(Instrument* pInstrument, RIFF::List* rgnList);
# Line 596  namespace gig { Line 637  namespace gig {
637              friend class Instrument;              friend class Instrument;
638      };      };
639    
640        /** Abstract base class for all MIDI rules. */
641        class MidiRule {
642            public:
643                virtual ~MidiRule() { }
644        };
645    
646        /** MIDI rule for triggering notes by control change events. */
647        class MidiRuleCtrlTrigger : public MidiRule {
648            public:
649                uint8_t ControllerNumber;   ///< MIDI controller number.
650                uint8_t Triggers;           ///< Number of triggers.
651                struct trigger_t {
652                    uint8_t TriggerPoint;   ///< The CC value to pass for the note to be triggered.
653                    bool    Descending;     ///< If the change in CC value should be downwards.
654                    uint8_t VelSensitivity; ///< How sensitive the velocity should be to the speed of the controller change.
655                    uint8_t Key;            ///< Key to trigger.
656                    bool    NoteOff;        ///< If a note off should be triggered instead of a note on.
657                    uint8_t Velocity;       ///< Velocity of the note to trigger. 255 means that velocity should depend on the speed of the controller change.
658                    bool    OverridePedal;  ///< If a note off should be triggered even if the sustain pedal is down.
659                } pTriggers[32];
660    
661            protected:
662                MidiRuleCtrlTrigger(RIFF::Chunk* _3ewg);
663                friend class Instrument;
664        };
665    
666      /** Provides all neccessary information for the synthesis of an <i>Instrument</i>. */      /** Provides all neccessary information for the synthesis of an <i>Instrument</i>. */
667      class Instrument : protected DLS::Instrument {      class Instrument : protected DLS::Instrument {
668          public:          public:
# Line 628  namespace gig { Line 695  namespace gig {
695              virtual void UpdateChunks();              virtual void UpdateChunks();
696              // own methods              // own methods
697              Region*   GetRegion(unsigned int Key);              Region*   GetRegion(unsigned int Key);
698                MidiRule* GetMidiRule(int i);
699          protected:          protected:
700              Region*   RegionKeyTable[128]; ///< fast lookup for the corresponding Region of a MIDI key              Region*   RegionKeyTable[128]; ///< fast lookup for the corresponding Region of a MIDI key
701    
# Line 635  namespace gig { Line 703  namespace gig {
703             ~Instrument();             ~Instrument();
704              void UpdateRegionKeyTable();              void UpdateRegionKeyTable();
705              friend class File;              friend class File;
706                friend class Region; // so Region can call UpdateRegionKeyTable()
707            private:
708                MidiRule** pMidiRules;
709        };
710    
711        /** @brief Group of Gigasampler objects
712         *
713         * Groups help to organize a huge collection of Gigasampler objects.
714         * Groups are not concerned at all for the synthesis, but they help
715         * sound library developers when working on complex instruments with an
716         * instrument editor (as long as that instrument editor supports it ;-).
717         *
718         * At the moment, it seems as only samples can be grouped together in
719         * the Gigasampler format yet. If this is false in the meantime, please
720         * tell us !
721         *
722         * A sample is always assigned to exactly one Group. This also means
723         * there is always at least one Group in a .gig file, no matter if you
724         * created one yet or not.
725         */
726        class Group {
727            public:
728                String Name; ///< Stores the name of this Group.
729    
730                Sample* GetFirstSample();
731                Sample* GetNextSample();
732                void AddSample(Sample* pSample);
733            protected:
734                Group(File* file, RIFF::Chunk* ck3gnm);
735                virtual ~Group();
736                virtual void UpdateChunks();
737                void MoveAll();
738                friend class File;
739            private:
740                File*        pFile;
741                RIFF::Chunk* pNameChunk;
742      };      };
743    
     // TODO: <3gnm> chunk not added yet (just contains the names of the sample groups)  
744      /** Parses Gigasampler files and provides abstract access to the data. */      /** Parses Gigasampler files and provides abstract access to the data. */
745      class File : protected DLS::File {      class File : protected DLS::File {
746          public:          public:
747                static const DLS::version_t VERSION_2;
748                static const DLS::version_t VERSION_3;
749    
750              // derived attributes from DLS::Resource              // derived attributes from DLS::Resource
751              DLS::Resource::pInfo;              DLS::Resource::pInfo;
752              DLS::Resource::pDLSID;              DLS::Resource::pDLSID;
# Line 657  namespace gig { Line 763  namespace gig {
763              File(RIFF::File* pRIFF);              File(RIFF::File* pRIFF);
764              Sample*     GetFirstSample(progress_t* pProgress = NULL); ///< Returns a pointer to the first <i>Sample</i> object of the file, <i>NULL</i> otherwise.              Sample*     GetFirstSample(progress_t* pProgress = NULL); ///< Returns a pointer to the first <i>Sample</i> object of the file, <i>NULL</i> otherwise.
765              Sample*     GetNextSample();      ///< Returns a pointer to the next <i>Sample</i> object of the file, <i>NULL</i> otherwise.              Sample*     GetNextSample();      ///< Returns a pointer to the next <i>Sample</i> object of the file, <i>NULL</i> otherwise.
             Instrument* GetFirstInstrument(); ///< Returns a pointer to the first <i>Instrument</i> object of the file, <i>NULL</i> otherwise.  
766              Sample*     AddSample();              Sample*     AddSample();
767              void        DeleteSample(Sample* pSample);              void        DeleteSample(Sample* pSample);
768                Instrument* GetFirstInstrument(); ///< Returns a pointer to the first <i>Instrument</i> object of the file, <i>NULL</i> otherwise.
769              Instrument* GetNextInstrument();  ///< Returns a pointer to the next <i>Instrument</i> object of the file, <i>NULL</i> otherwise.              Instrument* GetNextInstrument();  ///< Returns a pointer to the next <i>Instrument</i> object of the file, <i>NULL</i> otherwise.
770              Instrument* GetInstrument(uint index, progress_t* pProgress = NULL);              Instrument* GetInstrument(uint index, progress_t* pProgress = NULL);
771              Instrument* AddInstrument();              Instrument* AddInstrument();
772              void        DeleteInstrument(Instrument* pInstrument);              void        DeleteInstrument(Instrument* pInstrument);
773                Group*      GetFirstGroup(); ///< Returns a pointer to the first <i>Group</i> object of the file, <i>NULL</i> otherwise.
774                Group*      GetNextGroup();  ///< Returns a pointer to the next <i>Group</i> object of the file, <i>NULL</i> otherwise.
775                Group*      GetGroup(uint index);
776                Group*      AddGroup();
777                void        DeleteGroup(Group* pGroup);
778                void        DeleteGroupOnly(Group* pGroup);
779                void        SetAutoLoad(bool b);
780                bool        GetAutoLoad();
781                virtual    ~File();
782                virtual void UpdateChunks();
783          protected:          protected:
784              // overridden protected methods from DLS::File              // overridden protected methods from DLS::File
785              virtual void LoadSamples();              virtual void LoadSamples();
786              virtual void LoadInstruments();              virtual void LoadInstruments();
787                virtual void LoadGroups();
788              // own protected methods              // own protected methods
789              virtual void LoadSamples(progress_t* pProgress);              virtual void LoadSamples(progress_t* pProgress);
790              virtual void LoadInstruments(progress_t* pProgress);              virtual void LoadInstruments(progress_t* pProgress);
791                void SetSampleChecksum(Sample* pSample, uint32_t crc);
792              friend class Region;              friend class Region;
793                friend class Sample;
794                friend class Group; // so Group can access protected member pRIFF
795            private:
796                std::list<Group*>*          pGroups;
797                std::list<Group*>::iterator GroupsIterator;
798                bool                        bAutoLoad;
799      };      };
800    
801      /** Will be thrown whenever a gig specific error occurs while trying to access a Gigasampler File. */      /**
802         * Will be thrown whenever a gig specific error occurs while trying to
803         * access a Gigasampler File. Note: In your application you should
804         * better catch for RIFF::Exception rather than this one, except you
805         * explicitly want to catch and handle gig::Exception, DLS::Exception
806         * and RIFF::Exception independently, which usually shouldn't be
807         * necessary though.
808         */
809      class Exception : public DLS::Exception {      class Exception : public DLS::Exception {
810          public:          public:
811              Exception(String Message);              Exception(String Message);

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