/[svn]/linuxsampler/trunk/src/engines/sfz/sfz.h
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Contents of /linuxsampler/trunk/src/engines/sfz/sfz.h

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Revision 2235 - (show annotations) (download) (as text)
Wed Aug 10 19:40:39 2011 UTC (12 years, 8 months ago) by iliev
File MIME type: text/x-c++hdr
File size: 24421 byte(s)
* sfz engine: implemented opcodes egN_amplitude_onccX,
  egN_volume, egN_volume_onccX, egN_cutoff, egN_cutoff_onccX,
  egN_pitch, egN_pitch_onccX, egN_resonance, egN_resonance_onccX

1 /***************************************************************************
2 * *
3 * LinuxSampler - modular, streaming capable sampler *
4 * *
5 * Copyright (C) 2008 Anders Dahnielson <anders@dahnielson.com> *
6 * Copyright (C) 2009 - 2011 Anders Dahnielson and Grigor Iliev *
7 * *
8 * This program is free software; you can redistribute it and/or modify *
9 * it under the terms of the GNU General Public License as published by *
10 * the Free Software Foundation; either version 2 of the License, or *
11 * (at your option) any later version. *
12 * *
13 * This program is distributed in the hope that it will be useful, *
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
16 * GNU General Public License for more details. *
17 * *
18 * You should have received a copy of the GNU General Public License *
19 * along with this program; if not, write to the Free Software *
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, *
21 * MA 02111-1307 USA *
22 ***************************************************************************/
23
24 #ifndef LIBSFZ_SFZ_H
25 #define LIBSFZ_SFZ_H
26
27 #include <fstream>
28 #include <iostream>
29 #include <vector>
30 #include <string>
31 #include <stdexcept>
32
33 #include "../common/SampleFile.h"
34 #include "../common/SampleManager.h"
35 #include "../../common/ArrayList.h"
36
37 #define TRIGGER_ATTACK ((unsigned char) (1 << 0)) // 0x01
38 #define TRIGGER_RELEASE ((unsigned char) (1 << 1)) // 0x02
39 #define TRIGGER_FIRST ((unsigned char) (1 << 2)) // 0x04
40 #define TRIGGER_LEGATO ((unsigned char) (1 << 3)) // 0x08
41
42 namespace sfz
43 {
44 // Forward declarations
45 class Articulation;
46 class Region;
47 class Group;
48 class Instrument;
49 class File;
50 class LookupTable;
51 class SampleManager;
52
53 class Sample : public LinuxSampler::SampleFileBase<Region> {
54 private:
55 int End;
56 long TotalFrames;
57
58 public:
59 Sample(String File, bool DontClose = false, uint offset = 0, int end = -2 /* -2 means unspecified */)
60 : LinuxSampler::SampleFileBase<Region>(File, DontClose)
61 {
62 Offset = offset;
63 End = end;
64
65 long tfc = LinuxSampler::SampleFileBase<Region>::GetTotalFrameCount();
66 if (Offset >= tfc) {
67 std::cerr << "Offset for file '" << this->GetFile() << "' too long (" << Offset << ")" << std::endl;
68 Offset = 0;
69 }
70
71 if (End == -2 || End > tfc) TotalFrames = tfc;
72 else if (End == -1 || End < Offset) TotalFrames = 0;
73 else TotalFrames = End;
74 }
75 virtual ~Sample() { }
76
77 virtual long GetTotalFrameCount() { return TotalFrames; }
78
79 friend class SampleManager;
80 };
81
82 // Enumerations
83 enum sw_vel_t { VEL_CURRENT, VEL_PREVIOUS };
84 enum off_mode_t { OFF_FAST, OFF_NORMAL };
85 enum loop_mode_t { NO_LOOP, ONE_SHOT, LOOP_CONTINUOUS, LOOP_SUSTAIN, LOOP_UNSET };
86 enum curve_t { GAIN, POWER };
87 enum filter_t { LPF_1P, HPF_1P, BPF_1P, BRF_1P, APF_1P,
88 LPF_2P, HPF_2P, BPF_2P, BRF_2P, PKF_2P,
89 LPF_4P, HPF_4P,
90 LPF_6P, HPF_6P };
91
92 typedef unsigned char trigger_t;
93 typedef unsigned char uint8_t;
94
95 class SampleManager : public LinuxSampler::SampleManager<Sample, Region> {
96 public:
97 Sample* FindSample(std::string samplePath, uint offset, int end);
98
99 protected:
100 virtual void OnSampleInUse(Sample* pSample) {
101 pSample->Open();
102 }
103
104 virtual void OnSampleInNotUse(Sample* pSample) {
105 pSample->Close();
106 }
107 };
108
109 class CC {
110 public:
111 uint8_t Controller; ///< MIDI controller number.
112 short int Curve;
113 float Influence; ///< Controller Value.
114 float Smooth; ///< The speed of parameter change in milliseconds
115
116 CC(uint8_t Controller = 0, float Influence = 0.0f, short int Curve = -1, float Smooth = 0) {
117 this->Controller = Controller;
118 this->Influence = Influence;
119 this->Curve = Curve;
120 this->Smooth = Smooth;
121 }
122
123 CC(const CC& cc) { Copy(cc); }
124 void operator=(const CC& cc) { Copy(cc); }
125
126 void Copy(const CC& cc) {
127 Controller = cc.Controller;
128 Influence = cc.Influence;
129 Curve = cc.Curve;
130 Smooth = cc.Smooth;
131 }
132 };
133
134 /////////////////////////////////////////////////////////////
135 // class Exception
136
137 class Exception :
138 public std::runtime_error
139 {
140 public:
141 Exception(const std::string& msg) :
142 runtime_error(msg)
143 {
144 }
145
146 std::string Message()
147 {
148 return what();
149 }
150
151 void PrintMessage()
152 {
153 std::cerr << what() << std::endl << std::flush;
154 }
155 };
156
157 /////////////////////////////////////////////////////////////
158 // class optional
159
160 // Handy class nicked from LinuxSampler...
161 // Copyright (C) 2003, 2004 by Benno Senoner and Christian Schoenebeck
162 // Copyright (C) 2005, 2006 Christian Schoenebeck
163
164 class optional_base
165 {
166 public:
167 class nothing_t { public: nothing_t() {} };
168 static const nothing_t nothing;
169 };
170
171 template<class T>
172 class optional :
173 public optional_base
174 {
175 public:
176 optional()
177 {
178 initialized = false;
179 }
180
181 optional(T data)
182 {
183 this->data = data;
184 initialized = true;
185 }
186
187 optional(nothing_t)
188 {
189 initialized = false;
190 }
191
192 template <class T_inner>
193 optional(T_inner data)
194 {
195 this->data = T(data);
196 initialized = true;
197 }
198
199 const T& get() const throw (Exception)
200 {
201 if (!initialized) throw Exception("optional variable not initialized");
202 return data;
203 }
204
205 T& get() throw (Exception)
206 {
207 if (!initialized) throw Exception("optional variable not initialized");
208 return data;
209 }
210
211 void unset()
212 {
213 initialized = false;
214 }
215
216 optional& operator =(const optional& arg) throw (Exception)
217 {
218 if (!arg.initialized) {
219 initialized = false;
220 } else {
221 this->data = arg.data;
222 initialized = true;
223 }
224 return *this;
225 }
226
227 optional& operator =(const T& arg)
228 {
229 this->data = arg;
230 initialized = true;
231 return *this;
232 }
233
234 const T& operator *() const throw (Exception) { return get(); }
235 T& operator *() throw (Exception) { return get(); }
236
237 const T* operator ->() const throw (Exception)
238 {
239 if (!initialized) throw Exception("optional variable not initialized");
240 return &data;
241 }
242
243 T* operator ->() throw (Exception)
244 {
245 if (!initialized) throw Exception("optional variable not initialized");
246 return &data;
247 }
248
249 operator bool() const { return initialized; }
250 bool operator !() const { return !initialized; }
251
252 protected:
253 T data;
254 bool initialized;
255 };
256
257 /////////////////////////////////////////////////////////////
258 // class Articulation
259
260 // Articulation containing all performance parameters for synthesis
261 class Articulation
262 {
263 public:
264 Articulation();
265 virtual ~Articulation();
266 };
267
268 class EGNode
269 {
270 public:
271 float time;
272 float level;
273 float shape;
274 float curve;
275 LinuxSampler::ArrayList<CC> time_oncc;
276 LinuxSampler::ArrayList<CC> level_oncc;
277
278 EGNode();
279 EGNode(const EGNode& egNode) { Copy(egNode); }
280 void operator=(const EGNode& egNode) { Copy(egNode); }
281 void Copy(const EGNode& egNode);
282 };
283
284 class EG
285 {
286 public:
287 LinuxSampler::ArrayList<EGNode> node;
288 int sustain;
289 int loop;
290 int loop_count;
291 float amplitude;
292 float volume;
293 float cutoff;
294 int pitch; // -9600 to 9600 cents
295 float resonance; // 0 to 40 dB
296
297 LinuxSampler::ArrayList<CC> amplitude_oncc;
298 LinuxSampler::ArrayList<CC> volume_oncc;
299 LinuxSampler::ArrayList<CC> cutoff_oncc; // -9600 to 9600 cents
300 LinuxSampler::ArrayList<CC> pitch_oncc;
301 LinuxSampler::ArrayList<CC> resonance_oncc; // 0 to 40 dB
302
303 EG();
304 EG(const EG& eg) { Copy(eg); }
305 void operator=(const EG& eg) { Copy(eg); }
306 void Copy(const EG& eg);
307 };
308
309 class LFO
310 {
311 public:
312 float delay; // 0 to 100 seconds
313 float freq; // 0 to 20 Hz
314 float fade; // 0 to 100 seconds
315 float phase; // 0 to 360 degrees
316 uint wave; // 0 to 4294967296
317 float volume; // -144 to 6 dB
318 int pitch; // -9600 to 9600 cents
319 int cutoff; // -9600 to 9600 cents
320 float resonance; // 0 to 40 dB
321 float pan; // -100 to 100 %
322
323 LinuxSampler::ArrayList<CC> delay_oncc; // 0 to 100 seconds
324 LinuxSampler::ArrayList<CC> freq_oncc; // 0 to 20 Hz
325 LinuxSampler::ArrayList<CC> freq_smoothcc; // 0 to ? milliseconds
326 LinuxSampler::ArrayList<CC> fade_oncc; // 0 to 100 seconds
327 LinuxSampler::ArrayList<CC> phase_oncc; // 0 to 360 degrees
328 LinuxSampler::ArrayList<CC> volume_oncc; // -144 to 6 dB
329 LinuxSampler::ArrayList<CC> volume_smoothcc; // 0 to ? milliseconds
330 LinuxSampler::ArrayList<CC> pitch_oncc;
331 LinuxSampler::ArrayList<CC> pitch_smoothcc; // 0 to ? milliseconds
332 LinuxSampler::ArrayList<CC> pan_oncc; // -100 to 100 %
333 LinuxSampler::ArrayList<CC> pan_smoothcc; // 0 to ? milliseconds
334 LinuxSampler::ArrayList<CC> cutoff_oncc; // -9600 to 9600 cents
335 LinuxSampler::ArrayList<CC> cutoff_smoothcc; // 0 to ? milliseconds
336 LinuxSampler::ArrayList<CC> resonance_oncc; // 0 to 40 dB
337 LinuxSampler::ArrayList<CC> resonance_smoothcc; // 0 to ? milliseconds
338
339 LFO();
340 LFO(const LFO& lfo) { Copy(lfo); }
341 void operator=(const LFO& lfo) { Copy(lfo); }
342 void Copy(const LFO& lfo);
343 };
344
345 // Fixed size array with copy-on-write semantics
346 template<class T>
347 class Array
348 {
349 private:
350 struct Rep {
351 int refcount;
352 T a[128];
353
354 Rep() : refcount(1) { }
355 static void release(Rep* rep) {
356 if (!--rep->refcount) delete rep;
357 }
358 } *ptr;
359 public:
360 Array() : ptr(0) { }
361 ~Array() { Rep::release(ptr); }
362
363 Array& operator=(const Array& array) {
364 if (this != &array) {
365 ptr = array.ptr;
366 if (ptr) ptr->refcount++;
367 }
368 return *this;
369 }
370
371 const T& operator[](int i) const { return ptr->a[i]; }
372
373 void set(int i, const T& v) {
374 if (!ptr) {
375 ptr = new Rep;
376 } else if (ptr->refcount > 1 && ptr->a[i] != v) {
377 Rep* newptr = new Rep(*ptr);
378 newptr->refcount = 1;
379 Rep::release(ptr);
380 ptr = newptr;
381 }
382 ptr->a[i] = v;
383 }
384 };
385
386 /////////////////////////////////////////////////////////////
387 // class Definition
388
389 // Base definition used by groups and regions
390 class Definition
391 {
392 public:
393 Definition();
394 virtual ~Definition();
395
396 // sample definition
397 std::string sample;
398
399 // input controls
400 int lochan; int hichan;
401 int lokey; int hikey;
402 int lovel; int hivel;
403 Array<int> locc; Array<int> hicc;
404 int lobend; int hibend;
405 float lobpm; float hibpm;
406 int lochanaft; int hichanaft;
407 int lopolyaft; int hipolyaft;
408 int loprog; int hiprog;
409 float lorand; float hirand;
410 float lotimer; float hitimer;
411
412 int seq_length;
413 int seq_position;
414
415 Array<int> start_locc; Array<int> start_hicc;
416 Array<int> stop_locc; Array<int> stop_hicc;
417
418 int sw_lokey; int sw_hikey;
419 int sw_last;
420 int sw_down;
421 int sw_up;
422 int sw_previous;
423 sw_vel_t sw_vel;
424
425 trigger_t trigger;
426
427 uint group;
428 uint off_by;
429 off_mode_t off_mode;
430
431 Array<int> on_locc; Array<int> on_hicc;
432
433 // sample player
434 optional<int> count;
435 optional<float> delay; optional<float> delay_random; Array<optional<float> > delay_oncc;
436 optional<int> delay_beats; optional<int> stop_beats;
437 optional<int> delay_samples; Array<optional<int> > delay_samples_oncc;
438 optional<int> end;
439 optional<float> loop_crossfade;
440 optional<uint> offset; optional<int> offset_random; Array<optional<int> > offset_oncc;
441 loop_mode_t loop_mode;
442 optional<int> loop_start; optional<int> loop_end;
443 optional<int> sync_beats;
444 optional<int> sync_offset;
445
446 // amplifier
447 float volume;
448 float pan;
449 float width;
450 float position;
451 float amp_keytrack; int amp_keycenter; float amp_veltrack; Array<float> amp_velcurve; float amp_random;
452 float rt_decay;
453 Array<float> gain_oncc;
454 int xfin_lokey; int xfin_hikey;
455 int xfout_lokey; int xfout_hikey;
456 curve_t xf_keycurve;
457 int xfin_lovel; int xfin_hivel;
458 int xfout_lovel; int xfout_hivel;
459 curve_t xf_velcurve;
460 Array<int> xfin_locc; Array<int> xfin_hicc;
461 Array<int> xfout_locc; Array<int> xfout_hicc;
462 curve_t xf_cccurve;
463
464 // pitch
465 int transpose;
466 int tune;
467 int pitch_keycenter; int pitch_keytrack; int pitch_veltrack; int pitch_random;
468 int bend_up; int bend_down; int bend_step;
469
470 // filter
471 filter_t fil_type; filter_t fil2_type;
472 optional<float> cutoff; optional<float> cutoff2;
473 Array<int> cutoff_oncc; Array<int> cutoff2_oncc;
474 int cutoff_cc; // TODO: this is just a temporary fix to avoid
475 // looping through the cutoff_oncc array
476 Array<int> cutoff_smoothcc; Array<int> cutoff2_smoothcc;
477 Array<int> cutoff_stepcc; Array<int> cutoff2_stepcc;
478 Array<int> cutoff_curvecc; Array<int> cutoff2_curvecc;
479 int cutoff_chanaft; int cutoff2_chanaft;
480 int cutoff_polyaft; int cutoff2_polyaft;
481 float resonance; float resonance2;
482 Array<int> resonance_oncc; Array<int> resonance2_oncc;
483 Array<int> resonance_smoothcc; Array<int> resonance2_smoothcc;
484 Array<int> resonance_stepcc; Array<int> resonance2_stepcc;
485 Array<int> resonance_curvecc; Array<int> resonance2_curvecc;
486 int fil_keytrack; int fil2_keytrack;
487 int fil_keycenter; int fil2_keycenter;
488 int fil_veltrack; int fil2_veltrack;
489 int fil_random; int fil2_random;
490
491 // per voice equalizer
492 float eq1_freq; float eq2_freq; float eq3_freq;
493 Array<float> eq1_freq_oncc; Array<float> eq2_freq_oncc; Array<float> eq3_freq_oncc;
494 float eq1_vel2freq; float eq2_vel2freq; float eq3_vel2freq;
495 float eq1_bw; float eq2_bw; float eq3_bw;
496 Array<float> eq1_bw_oncc; Array<float> eq2_bw_oncc; Array<float> eq3_bw_oncc;
497 float eq1_gain; float eq2_gain; float eq3_gain;
498 Array<float> eq1_gain_oncc; Array<float> eq2_gain_oncc; Array<float> eq3_gain_oncc;
499 float eq1_vel2gain; float eq2_vel2gain; float eq3_vel2gain;
500
501 //Deprecated (from version 1)
502 float ampeg_delay, ampeg_start, ampeg_attack, ampeg_hold, ampeg_decay, ampeg_sustain, ampeg_release;
503 float ampeg_vel2delay, ampeg_vel2attack, ampeg_vel2hold, ampeg_vel2decay, ampeg_vel2sustain, ampeg_vel2release;
504 LinuxSampler::ArrayList<CC> ampeg_delaycc, ampeg_startcc, ampeg_attackcc, ampeg_holdcc;
505 LinuxSampler::ArrayList<CC> ampeg_decaycc, ampeg_sustaincc, ampeg_releasecc;
506 float fileg_delay, fileg_start, fileg_attack, fileg_hold, fileg_decay, fileg_sustain, fileg_release;
507 float fileg_vel2delay, fileg_vel2attack, fileg_vel2hold, fileg_vel2decay, fileg_vel2sustain, fileg_vel2release;
508 float pitcheg_delay, pitcheg_start, pitcheg_attack, pitcheg_hold, pitcheg_decay, pitcheg_sustain, pitcheg_release;
509 float pitcheg_vel2delay, pitcheg_vel2attack, pitcheg_vel2hold, pitcheg_vel2decay, pitcheg_vel2sustain, pitcheg_vel2release;
510 int fileg_depth, pitcheg_depth;
511 float amplfo_delay, amplfo_fade, amplfo_freq, amplfo_depth;
512 float fillfo_delay, fillfo_fade, fillfo_freq, fillfo_depth;
513 float pitchlfo_delay, pitchlfo_fade, pitchlfo_freq;
514 int pitchlfo_depth;
515 Array<int> pitchlfo_depthcc;
516
517 LinuxSampler::ArrayList<CC> pitchlfo_freqcc; // 0 to 20 Hz
518 LinuxSampler::ArrayList<CC> fillfo_depthcc; // -1200 to 1200 cents
519 LinuxSampler::ArrayList<CC> fillfo_freqcc; // 0 to 20 Hz
520 LinuxSampler::ArrayList<CC> amplfo_depthcc; // -10 to 10 dB
521 LinuxSampler::ArrayList<CC> amplfo_freqcc; // 0 to 20 Hz
522
523 // envelope generators
524 LinuxSampler::ArrayList<EG> eg;
525
526 // low frequency oscillators
527 LinuxSampler::ArrayList<LFO> lfos;
528
529 LinuxSampler::ArrayList<CC> volume_oncc;
530 LinuxSampler::ArrayList<CC> volume_curvecc; // used only as temporary buffer during the parsing - values are then moved to volume_oncc
531 LinuxSampler::ArrayList<CC> volume_smoothcc; // used only as temporary buffer during the parsing - values are then moved to volume_oncc
532 };
533
534 class Query {
535 public:
536 uint8_t chan; // MIDI channel
537 uint8_t key; // MIDI note
538 uint8_t vel; // MIDI velocity
539 int bend; // MIDI pitch bend
540 uint8_t bpm; // host BPM
541 uint8_t chanaft; // MIDI channel pressure
542 uint8_t polyaft; // MIDI polyphonic aftertouch
543 uint8_t prog; // MIDI program change
544 float rand; // generated random number
545 trigger_t trig; // how it was triggered
546 uint8_t* cc; // all 128 CC values
547 float timer; // time since previous region in the group was triggered
548 bool* sw; // state of region key switches, 128 possible values
549 uint8_t last_sw_key; // last key pressed in the key switch range
550 uint8_t prev_sw_key; // previous note value
551
552 void search(const Instrument* pInstrument);
553 void search(const Instrument* pInstrument, int triggercc);
554 Region* next();
555 private:
556 LinuxSampler::ArrayList<Region*>* pRegionList;
557 int regionIndex;
558 };
559
560 /////////////////////////////////////////////////////////////
561 // class Region
562
563 /// Defines Region information of an Instrument
564 class Region :
565 public Definition
566 {
567 public:
568 Region();
569 virtual ~Region();
570
571 Sample* pSample;
572 Sample* GetSample(bool create = true);
573 void DestroySampleIfNotUsed();
574
575 Region* GetParent() { return this; }; // needed by EngineBase
576 Instrument* GetInstrument() { return pInstrument; }
577 void SetInstrument(Instrument* pInstrument) { this->pInstrument = pInstrument; }
578
579 bool HasLoop();
580 uint GetLoopStart();
581 uint GetLoopEnd();
582 uint GetLoopCount();
583
584 /// Return true if region is triggered by key. Region is
585 /// assumed to come from a search in the lookup table.
586 bool OnKey(const Query& q);
587
588 /// Return an articulation for the current state
589 Articulation* GetArticulation(int bend, uint8_t bpm, uint8_t chanaft, uint8_t polyaft, uint8_t* cc);
590
591 // unique region id
592 int id;
593
594 private:
595 Instrument* pInstrument;
596 int seq_counter;
597 };
598
599 class Curve {
600 public:
601 float v[128];
602 Curve() { for (int i = 0; i < 128; i++) v[i] = 0; }
603 Curve(const Curve& curve) { Copy(curve); }
604 void operator=(const Curve& curve) { Copy(curve); }
605 void Copy(const Curve& curve) { for (int i = 0; i < 128; i++) v[i] = curve.v[i]; }
606 };
607
608 /////////////////////////////////////////////////////////////
609 // class Instrument
610
611 /// Provides all necessary information for the synthesis of an Instrument
612 class Instrument : public SampleManager
613 {
614 public:
615 Instrument(std::string name = "Unknown", SampleManager* pSampleManager = NULL);
616 virtual ~Instrument();
617
618 std::string GetName() { return name; }
619 SampleManager* GetSampleManager() { return pSampleManager; }
620
621 bool DestroyRegion(Region* pRegion);
622 bool HasKeyBinding(uint8_t key);
623 bool HasKeySwitchBinding(uint8_t key);
624
625 /// List of Regions belonging to this Instrument
626 std::vector<Region*> regions;
627 ::LinuxSampler::ArrayList<Curve> curves;
628
629 friend class File;
630 friend class Query;
631
632 private:
633 std::string name;
634 std::vector<bool> KeyBindings;
635 std::vector<bool> KeySwitchBindings;
636 SampleManager* pSampleManager;
637 LookupTable* pLookupTable;
638 LookupTable* pLookupTableCC[128];
639 };
640
641 /////////////////////////////////////////////////////////////
642 // class Group
643
644 /// A Group act just as a template containing Region default values
645 class Group :
646 public Definition
647 {
648 public:
649 Group();
650 virtual ~Group();
651
652 /// Reset Group to default values
653 void Reset();
654
655 /// Create a new Region
656 Region* RegionFactory();
657
658 // id counter
659 int id;
660
661 };
662
663 /////////////////////////////////////////////////////////////
664 // class File
665
666 /// Parses SFZ files and provides abstract access to the data
667 class File
668 {
669 public:
670 /// Load an existing SFZ file
671 File(std::string file, SampleManager* pSampleManager = NULL);
672 virtual ~File();
673
674 /// Returns a pointer to the instrument object
675 Instrument* GetInstrument();
676
677 private:
678 void push_header(std::string token);
679 void push_opcode(std::string token);
680 int parseKey(const std::string& value);
681 EG& eg(int x);
682 EGNode& egnode(int x, int y);
683 LFO& lfo(int x);
684 void copyCurves(LinuxSampler::ArrayList<CC>& curves, LinuxSampler::ArrayList<CC>& dest);
685 void copySmoothValues(LinuxSampler::ArrayList<CC>& smooths, LinuxSampler::ArrayList<CC>& dest);
686
687 std::string currentDir;
688 /// Pointer to the Instrument belonging to this file
689 Instrument* _instrument;
690
691 // state variables
692 enum section_t { UNKNOWN, GROUP, REGION, CONTROL, CURVE };
693 section_t _current_section;
694 Region* _current_region;
695 Group* _current_group;
696 Curve* _current_curve;
697 Definition* pCurDef;
698
699 // control header directives
700 std::string default_path;
701 int octave_offset;
702 int note_offset;
703 };
704
705 } // !namespace sfz
706
707 #endif // !LIBSFZ_SFZ_H

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