/[svn]/linuxsampler/trunk/src/engines/sfz/sfz.cpp
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revision 2115 by persson, Thu Aug 12 15:36:15 2010 UTC revision 3291 by persson, Sat Jun 24 12:56:44 2017 UTC
# Line 3  Line 3 
3   *   LinuxSampler - modular, streaming capable sampler                     *   *   LinuxSampler - modular, streaming capable sampler                     *
4   *                                                                         *   *                                                                         *
5   *   Copyright (C) 2008 Anders Dahnielson <anders@dahnielson.com>          *   *   Copyright (C) 2008 Anders Dahnielson <anders@dahnielson.com>          *
6   *   Copyright (C) 2009 - 2010 Anders Dahnielson and Grigor Iliev          *   *   Copyright (C) 2009 - 2016 Anders Dahnielson and Grigor Iliev          *
7   *                                                                         *   *                                                                         *
8   *   This program is free software; you can redistribute it and/or modify  *   *   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  *   *   it under the terms of the GNU General Public License as published by  *
# Line 31  Line 31 
31    
32  #include "../../common/File.h"  #include "../../common/File.h"
33  #include "../../common/Path.h"  #include "../../common/Path.h"
 #include "../../common/global_private.h"  
34  #include "LookupTable.h"  #include "LookupTable.h"
35    #include "../../common/global_private.h"
36    
37  namespace sfz  namespace sfz
38  {  {
39        template <typename T> T check(std::string name, T min, T max, T val) {
40            if (val < min) {
41                std::cerr << "sfz: The value of opcode '" << name;
42                std::cerr << "' is below the minimum allowed value (min=" << min << "): " << val << std::endl;
43                val = min;
44            }
45            if (val > max) {
46                std::cerr << "sfz: The value of opcode '" << name;
47                std::cerr << "' is above the maximum allowed value (max=" << max << "): " << val << std::endl;
48                val = max;
49            }
50            
51            return val;
52        }
53    
54      Sample* SampleManager::FindSample(std::string samplePath) {      Sample* SampleManager::FindSample(std::string samplePath, uint offset, int end) {
55          std::map<Sample*, std::set<Region*> >::iterator it = sampleMap.begin();          std::map<Sample*, std::set<Region*> >::iterator it = sampleMap.begin();
56          for (; it != sampleMap.end(); it++) {          for (; it != sampleMap.end(); it++) {
57              if (it->first->GetFile() == samplePath) return it->first;              if (it->first->GetFile() == samplePath) {
58                    /* Because the start of the sample is cached in RAM we treat
59                     * same sample with different offset as different samples
60                     * // TODO: Ignore offset when the whole sample is cached in RAM?
61                     */
62                    if (it->first->Offset == offset && it->first->End == end) return it->first;
63                }
64          }          }
65    
66          return NULL;          return NULL;
67      }      }
68    
69      /////////////////////////////////////////////////////////////      /////////////////////////////////////////////////////////////
70      // class optional      // class Script
71    
72      const optional_base::nothing_t optional_base::nothing;      Script::Script(LinuxSampler::Path path) : m_path(path) {
73        }
74    
75        Script::Script(String path) : m_path(LinuxSampler::Path::fromUnknownFS(path)) {
76        }
77    
78        Script::~Script() {
79        }
80    
81        String Script::Name() const {
82            return m_path.getName();
83        }
84    
85        Script::Language_t Script::Language() {
86            return LANGUAGE_NKSP;
87        }
88    
89        String Script::GetSourceCode() {
90            std::ifstream f(m_path.toNativeFSPath().c_str());
91            std::string s;
92            // reserve required space on string object
93            f.seekg(0, std::ios::end);
94            s.reserve(f.tellg());
95            f.seekg(0, std::ios::beg);
96            // read entire content from file and assign it to string object
97            s.assign((std::istreambuf_iterator<char>(f)),
98                      std::istreambuf_iterator<char>());
99            return s;
100        }
101    
102      /////////////////////////////////////////////////////////////      /////////////////////////////////////////////////////////////
103      // class Articulation      // class Articulation
# Line 89  namespace sfz Line 137  namespace sfz
137    
138      Sample* Region::GetSample(bool create)      Sample* Region::GetSample(bool create)
139      {      {
140          if(pSample == NULL && create) {          if (pSample == NULL && create) {
141              Sample* sf = GetInstrument()->GetSampleManager()->FindSample(sample);              uint i = offset ? *offset : 0;
142                Sample* sf = GetInstrument()->GetSampleManager()->FindSample(sample, i, end);
143              if (sf != NULL) pSample = sf; // Reuse already created sample              if (sf != NULL) pSample = sf; // Reuse already created sample
144              else pSample = new Sample(sample);              else pSample = new Sample(sample, false, i, end);
145              GetInstrument()->GetSampleManager()->AddSampleConsumer(pSample, this);              GetInstrument()->GetSampleManager()->AddSampleConsumer(pSample, this);
146          }          }
147          return pSample;          return pSample;
# Line 149  namespace sfz Line 198  namespace sfz
198      }      }
199    
200      bool Region::HasLoop() {      bool Region::HasLoop() {
201          bool b = loop_mode == ::sfz::LOOP_CONTINUOUS || loop_mode == ::sfz::LOOP_SUSTAIN; // TODO: ONE_SHOT mode          bool b = loop_mode == LOOP_UNSET ? pSample->GetLoops() :
202          return b && GetLoopStart() && GetLoopEnd() && GetLoopEnd() > GetLoopStart();              (loop_mode == LOOP_CONTINUOUS || loop_mode == LOOP_SUSTAIN);
203            return b && GetLoopEnd() > GetLoopStart();
204      }      }
205    
206      uint Region::GetLoopStart() {      uint Region::GetLoopStart() {
207          return (!loop_start) ? 0 : *loop_start; // TODO: use sample loop when loop_start not defined          return (!loop_start) ? pSample->GetLoopStart() : *loop_start;
208      }      }
209    
210      uint Region::GetLoopEnd() {      uint Region::GetLoopEnd() {
211          return (!loop_end) ? 0 : *loop_end; // TODO: use sample loop when loop_end not defined          return (!loop_end) ? pSample->GetLoopEnd() : *loop_end;
212      }      }
213    
214      uint Region::GetLoopCount() {      uint Region::GetLoopCount() {
# Line 173  namespace sfz Line 223  namespace sfz
223          this->name = name;          this->name = name;
224          this->pSampleManager = pSampleManager ? pSampleManager : this;          this->pSampleManager = pSampleManager ? pSampleManager : this;
225          pLookupTable = 0;          pLookupTable = 0;
226            
227            // The first 6 curves are defined internally (actually 7 with the one at index 0)
228            Curve c;
229            for (int i = 0; i < 128; i++) c.v[i] = i / 127.0f;
230            curves.add(c); curves.add(c); curves.add(c); curves.add(c);
231            curves.add(c); curves.add(c); curves.add(c);
232            ///////
233      }      }
234    
235      Instrument::~Instrument()      Instrument::~Instrument()
# Line 228  namespace sfz Line 285  namespace sfz
285      }      }
286    
287      /////////////////////////////////////////////////////////////      /////////////////////////////////////////////////////////////
288      // class Group      // class ContainerDefinition
289    
290      Group::Group() :      ContainerDefinition::ContainerDefinition(section_type type)
         id(0)  
291      {      {
292          Reset();          Reset();
293            level = type;
294      }      }
295    
296      Group::~Group()      ContainerDefinition::~ContainerDefinition()
297      {      {
298      }      }
299    
300      void      void
301      Group::Reset()      ContainerDefinition::Reset()
302      {      {
303          // This is where all the default values are set.          // This is where all the default values are set.
304    
# Line 277  namespace sfz Line 334  namespace sfz
334          off_mode = OFF_FAST;          off_mode = OFF_FAST;
335    
336          // sample player          // sample player
337          count.unset();          count = optional<int>::nothing;
338          delay.unset(); delay_random.unset();          delay = optional<float>::nothing;
339          delay_beats.unset(); stop_beats.unset();          delay_random = optional<float>::nothing;
340          delay_samples.unset();          delay_beats = optional<int>::nothing;
341          end.unset();          stop_beats = optional<int>::nothing;
342          loop_crossfade.unset();          delay_samples = optional<int>::nothing;
343          offset.unset(); offset_random.unset();          end = 0;
344          loop_mode = NO_LOOP;          loop_crossfade = optional<float>::nothing;
345          loop_start.unset(); loop_end.unset();          offset = optional<uint>::nothing;
346          sync_beats.unset(); sync_offset.unset();          offset_random = optional<int>::nothing;
347            loop_mode = LOOP_UNSET;
348            loop_start = optional<int>::nothing;
349            loop_end = optional<int>::nothing;
350            sync_beats = optional<int>::nothing;
351            sync_offset = optional<int>::nothing;
352    
353          // amplifier          // amplifier
354          volume = 0;          volume = 0;
355            volume_oncc.clear();
356            volume_curvecc.clear();
357            volume_smoothcc.clear();
358            volume_stepcc.clear();
359            amplitude = 100;
360          pan = 0;          pan = 0;
361            pan_oncc.clear();
362            pan_curvecc.clear();
363            pan_smoothcc.clear();
364            pan_stepcc.clear();
365          width = 100;          width = 100;
366          position = 0;          position = 0;
367          amp_keytrack = 0;          amp_keytrack = 0;
# Line 316  namespace sfz Line 387  namespace sfz
387          bend_up = 200;          bend_up = 200;
388          bend_down = -200;          bend_down = -200;
389          bend_step = 1;          bend_step = 1;
390            
391            pitch_oncc.clear();
392            pitch_smoothcc.clear();
393            pitch_curvecc.clear();
394            pitch_stepcc.clear();
395    
396          // filter          // filter
397          fil_type = LPF_2P;          fil_type = LPF_2P;
398          cutoff.unset();          cutoff = optional<float>::nothing;
399          cutoff_chanaft = 0;          cutoff_chanaft = 0;
400          cutoff_polyaft = 0;          cutoff_polyaft = 0;
401          resonance = 0;          resonance = 0;
# Line 329  namespace sfz Line 405  namespace sfz
405          fil_random = 0;          fil_random = 0;
406    
407          fil2_type = LPF_2P;          fil2_type = LPF_2P;
408          cutoff2.unset();          cutoff2 = optional<float>::nothing;
409          cutoff2_chanaft = 0;          cutoff2_chanaft = 0;
410          cutoff2_polyaft = 0;          cutoff2_polyaft = 0;
411          resonance2 = 0;          resonance2 = 0;
# Line 337  namespace sfz Line 413  namespace sfz
413          fil2_keycenter = 60;          fil2_keycenter = 60;
414          fil2_veltrack = 0;          fil2_veltrack = 0;
415          fil2_random = 0;          fil2_random = 0;
416            
417            cutoff_oncc.clear();
418            cutoff_smoothcc.clear();
419            cutoff_curvecc.clear();
420            cutoff_stepcc.clear();
421            cutoff2_oncc.clear();
422            cutoff2_smoothcc.clear();
423            cutoff2_curvecc.clear();
424            cutoff2_stepcc.clear();
425            
426            resonance_oncc.clear();
427            resonance_smoothcc.clear();
428            resonance_curvecc.clear();
429            resonance_stepcc.clear();
430            resonance2_oncc.clear();
431            resonance2_smoothcc.clear();
432            resonance2_curvecc.clear();
433            resonance2_stepcc.clear();
434    
435          // per voice equalizer          // per voice equalizer
436          eq1_freq = 50;          eq1_freq = 50;
# Line 378  namespace sfz Line 472  namespace sfz
472              gain_oncc.set(i, 0);              gain_oncc.set(i, 0);
473              xfin_locc.set(i, 0);              xfin_locc.set(i, 0);
474              xfin_hicc.set(i, 0);              xfin_hicc.set(i, 0);
475              xfout_locc.set(i, 127);              xfout_locc.set(i, 0);
476              xfout_hicc.set(i, 127);              xfout_hicc.set(i, 0);
   
             // filter  
             cutoff_oncc.set(i, 0);  
             cutoff_smoothcc.set(i, 0);  
             cutoff_stepcc.set(i, 0);  
             cutoff_curvecc.set(i, 0);  
             resonance_oncc.set(i, 0);  
             resonance_smoothcc.set(i, 0);  
             resonance_stepcc.set(i, 0);  
             resonance_curvecc.set(i, 0);  
   
             cutoff2_oncc.set(i, 0);  
             cutoff2_smoothcc.set(i, 0);  
             cutoff2_stepcc.set(i, 0);  
             cutoff2_curvecc.set(i, 0);  
             resonance2_oncc.set(i, 0);  
             resonance2_smoothcc.set(i, 0);  
             resonance2_stepcc.set(i, 0);  
             resonance2_curvecc.set(i, 0);  
477    
478              // per voice equalizer              // per voice equalizer
479              eq1_freq_oncc.set(i, 0);              eq1_freq_oncc.set(i, 0);
# Line 413  namespace sfz Line 488  namespace sfz
488          }          }
489    
490          eg.clear();          eg.clear();
491            lfos.clear();
492    
493          // deprecated          // deprecated
494          ampeg_delay    = 0;          ampeg_delay    = 0;
# Line 420  namespace sfz Line 496  namespace sfz
496          ampeg_attack   = 0;          ampeg_attack   = 0;
497          ampeg_hold     = 0;          ampeg_hold     = 0;
498          ampeg_decay    = 0;          ampeg_decay    = 0;
499          ampeg_sustain  = 100; // in percentage          ampeg_sustain  = -1; // in percentage
500          ampeg_release  = 0;          ampeg_release  = 0;
501    
502            ampeg_vel2delay   = 0;
503            ampeg_vel2attack  = 0;
504            ampeg_vel2hold    = 0;
505            ampeg_vel2decay   = 0;
506            ampeg_vel2sustain = 0;
507            ampeg_vel2release = 0;
508            
509            ampeg_delaycc.clear();
510            ampeg_startcc.clear();
511            ampeg_attackcc.clear();
512            ampeg_holdcc.clear();
513            ampeg_decaycc.clear();
514            ampeg_sustaincc.clear();
515            ampeg_releasecc.clear();
516    
517          fileg_delay    = 0;          fileg_delay    = 0;
518          fileg_start    = 0; //in percentage          fileg_start    = 0; //in percentage
519          fileg_attack   = 0;          fileg_attack   = 0;
# Line 431  namespace sfz Line 522  namespace sfz
522          fileg_sustain  = 100; // in percentage          fileg_sustain  = 100; // in percentage
523          fileg_release  = 0;          fileg_release  = 0;
524    
525            fileg_vel2delay   = 0;
526            fileg_vel2attack  = 0;
527            fileg_vel2hold    = 0;
528            fileg_vel2decay   = 0;
529            fileg_vel2sustain = 0;
530            fileg_vel2release = 0;
531            fileg_depth       = 0;
532            
533            fileg_delay_oncc.clear();
534            fileg_start_oncc.clear();
535            fileg_attack_oncc.clear();
536            fileg_hold_oncc.clear();
537            fileg_decay_oncc.clear();
538            fileg_sustain_oncc.clear();
539            fileg_release_oncc.clear();
540            fileg_depth_oncc.clear();
541    
542          pitcheg_delay    = 0;          pitcheg_delay    = 0;
543          pitcheg_start    = 0; //in percentage          pitcheg_start    = 0; //in percentage
544          pitcheg_attack   = 0;          pitcheg_attack   = 0;
# Line 438  namespace sfz Line 546  namespace sfz
546          pitcheg_decay    = 0;          pitcheg_decay    = 0;
547          pitcheg_sustain  = 100; // in percentage          pitcheg_sustain  = 100; // in percentage
548          pitcheg_release  = 0;          pitcheg_release  = 0;
549            pitcheg_depth    = 0;
550    
551            pitcheg_vel2delay   = 0;
552            pitcheg_vel2attack  = 0;
553            pitcheg_vel2hold    = 0;
554            pitcheg_vel2decay   = 0;
555            pitcheg_vel2sustain = 0;
556            pitcheg_vel2release = 0;
557            
558            pitcheg_delay_oncc.clear();
559            pitcheg_start_oncc.clear();
560            pitcheg_attack_oncc.clear();
561            pitcheg_hold_oncc.clear();
562            pitcheg_decay_oncc.clear();
563            pitcheg_sustain_oncc.clear();
564            pitcheg_release_oncc.clear();
565            pitcheg_depth_oncc.clear();
566    
567          amplfo_delay     = 0;          amplfo_delay     = 0;
568          amplfo_fade      = 0;          amplfo_fade      = 0;
569          amplfo_freq      = 0;          amplfo_freq      = -1; /* -1 is used to determine whether the LFO was initialized */
570          amplfo_depth     = 0;          amplfo_depth     = 0;
571            amplfo_delay_oncc.clear();
572            amplfo_fade_oncc.clear();
573            amplfo_depthcc.clear();
574            amplfo_freqcc.clear();
575    
576          fillfo_delay     = 0;          fillfo_delay     = 0;
577          fillfo_fade      = 0;          fillfo_fade      = 0;
578          fillfo_freq      = 0;          fillfo_freq      = -1; /* -1 is used to determine whether the LFO was initialized */
579          fillfo_depth     = 0;          fillfo_depth     = 0;
580            fillfo_delay_oncc.clear();
581            fillfo_fade_oncc.clear();
582            fillfo_depthcc.clear();
583            fillfo_freqcc.clear();
584    
585          pitchlfo_delay   = 0;          pitchlfo_delay   = 0;
586          pitchlfo_fade    = 0;          pitchlfo_fade    = 0;
587          pitchlfo_freq    = 0;          pitchlfo_freq    = -1; /* -1 is used to determine whether the LFO was initialized */
588          pitchlfo_depth   = 0;          pitchlfo_depth   = 0;
589            pitchlfo_delay_oncc.clear();
590            pitchlfo_fade_oncc.clear();
591            pitchlfo_depthcc.clear();
592            pitchlfo_freqcc.clear();
593      }      }
594    
595      Region*      void ContainerDefinition::CopyValuesToDefinition(Definition* definition)
     Group::RegionFactory()  
596      {      {
597          // This is where the current group setting are copied to the new region.          // This is where the current settings are copied to the new definition.
   
         Region* region = new Region();  
   
         region->id = id++;  
598    
599          // sample definition          // sample definition
600          region->sample = sample;          definition->sample = sample;
601    
602          // input control          // input control
603          region->lochan = lochan;          definition->lochan = lochan;
604          region->hichan = hichan;          definition->hichan = hichan;
605          region->lokey = lokey;          definition->lokey = lokey;
606          region->hikey = hikey;          definition->hikey = hikey;
607          region->lovel = lovel;          definition->lovel = lovel;
608          region->hivel = hivel;          definition->hivel = hivel;
609          region->locc = locc;          definition->locc = locc;
610          region->hicc = hicc;          definition->hicc = hicc;
611          region->lobend = lobend;          definition->lobend = lobend;
612          region->hibend = hibend;          definition->hibend = hibend;
613          region->lobpm = lobpm;          definition->lobpm = lobpm;
614          region->hibpm = hibpm;          definition->hibpm = hibpm;
615          region->lochanaft = lochanaft;          definition->lochanaft = lochanaft;
616          region->hichanaft = hichanaft;          definition->hichanaft = hichanaft;
617          region->lopolyaft = lopolyaft;          definition->lopolyaft = lopolyaft;
618          region->hipolyaft = hipolyaft;          definition->hipolyaft = hipolyaft;
619          region->loprog = loprog;          definition->loprog = loprog;
620          region->hiprog = hiprog;          definition->hiprog = hiprog;
621          region->lorand = lorand;          definition->lorand = lorand;
622          region->hirand = hirand;          definition->hirand = hirand;
623          region->lotimer = lotimer;          definition->lotimer = lotimer;
624          region->hitimer = hitimer;          definition->hitimer = hitimer;
625          region->seq_length = seq_length;          definition->seq_length = seq_length;
626          region->seq_position = seq_position;          definition->seq_position = seq_position;
627          region->start_locc = start_locc;          definition->start_locc = start_locc;
628          region->start_hicc = start_hicc;          definition->start_hicc = start_hicc;
629          region->stop_locc = stop_locc;          definition->stop_locc = stop_locc;
630          region->stop_hicc = stop_hicc;          definition->stop_hicc = stop_hicc;
631          region->sw_lokey = sw_lokey;          definition->sw_lokey = sw_lokey;
632          region->sw_hikey = sw_hikey;          definition->sw_hikey = sw_hikey;
633          region->sw_last = sw_last;          definition->sw_last = sw_last;
634          region->sw_down = sw_down;          definition->sw_down = sw_down;
635          region->sw_up = sw_up;          definition->sw_up = sw_up;
636          region->sw_previous = sw_previous;          definition->sw_previous = sw_previous;
637          region->sw_vel = sw_vel;          definition->sw_vel = sw_vel;
638          region->trigger = trigger;          definition->trigger = trigger;
639          region->group = group;          definition->group = group;
640          region->off_by = off_by;          definition->off_by = off_by;
641          region->off_mode = off_mode;          definition->off_mode = off_mode;
642          region->on_locc = on_locc;          definition->on_locc = on_locc;
643          region->on_hicc = on_hicc;          definition->on_hicc = on_hicc;
644    
645          // sample player          // sample player
646          region->count = count;          definition->count = count;
647          region->delay = delay;          definition->delay = delay;
648          region->delay_random = delay_random;          definition->delay_random = delay_random;
649          region->delay_oncc = delay_oncc;          definition->delay_oncc = delay_oncc;
650          region->delay_beats = delay_beats;          definition->delay_beats = delay_beats;
651          region->stop_beats = stop_beats;          definition->stop_beats = stop_beats;
652          region->delay_samples = delay_samples;          definition->delay_samples = delay_samples;
653          region->delay_samples_oncc = delay_samples_oncc;          definition->delay_samples_oncc = delay_samples_oncc;
654          region->end = end;          definition->end = end;
655          region->loop_crossfade = loop_crossfade;          definition->loop_crossfade = loop_crossfade;
656          region->offset = offset;          definition->offset = offset;
657          region->offset_random = offset_random;          definition->offset_random = offset_random;
658          region->offset_oncc = offset_oncc;          definition->offset_oncc = offset_oncc;
659          region->loop_mode = loop_mode;          definition->loop_mode = loop_mode;
660          region->loop_start = loop_start;          definition->loop_start = loop_start;
661          region->loop_end = loop_end;          definition->loop_end = loop_end;
662          region->sync_beats = sync_beats;          definition->sync_beats = sync_beats;
663          region->sync_offset = sync_offset;          definition->sync_offset = sync_offset;
664    
665          // amplifier          // amplifier
666          region->volume = volume;          definition->volume = volume;
667          region->pan = pan;          definition->volume_oncc = volume_oncc;
668          region->width = width;          definition->volume_curvecc = volume_curvecc;
669          region->position = position;          definition->volume_smoothcc = volume_smoothcc;
670          region->amp_keytrack = amp_keytrack;          definition->volume_stepcc = volume_stepcc;
671          region->amp_keycenter = amp_keycenter;          definition->amplitude = amplitude;
672          region->amp_veltrack = amp_veltrack;          definition->pan = pan;
673          region->amp_velcurve = amp_velcurve;          definition->pan_oncc = pan_oncc;
674          region->amp_random = amp_random;          definition->pan_curvecc = pan_curvecc;
675          region->rt_decay = rt_decay;          definition->pan_smoothcc = pan_smoothcc;
676          region->gain_oncc = gain_oncc;          definition->pan_stepcc = pan_stepcc;
677          region->xfin_lokey = xfin_lokey;          definition->width = width;
678          region->xfin_hikey = xfin_hikey;          definition->position = position;
679          region->xfout_lokey = xfout_lokey;          definition->amp_keytrack = amp_keytrack;
680          region->xfout_hikey = xfout_hikey;          definition->amp_keycenter = amp_keycenter;
681          region->xf_keycurve = xf_keycurve;          definition->amp_veltrack = amp_veltrack;
682          region->xfin_lovel = xfin_lovel;          definition->amp_velcurve = amp_velcurve;
683          region->xfin_hivel = xfin_lovel;          definition->amp_random = amp_random;
684          region->xfout_lovel = xfout_lovel;          definition->rt_decay = rt_decay;
685          region->xfout_hivel = xfout_hivel;          definition->gain_oncc = gain_oncc;
686          region->xf_velcurve = xf_velcurve;          definition->xfin_lokey = xfin_lokey;
687          region->xfin_locc = xfin_locc;          definition->xfin_hikey = xfin_hikey;
688          region->xfin_hicc = xfin_hicc;          definition->xfout_lokey = xfout_lokey;
689          region->xfout_locc = xfout_locc;          definition->xfout_hikey = xfout_hikey;
690          region->xfout_hicc = xfout_hicc;          definition->xf_keycurve = xf_keycurve;
691          region->xf_cccurve = xf_cccurve;          definition->xfin_lovel = xfin_lovel;
692            definition->xfin_hivel = xfin_lovel;
693            definition->xfout_lovel = xfout_lovel;
694            definition->xfout_hivel = xfout_hivel;
695            definition->xf_velcurve = xf_velcurve;
696            definition->xfin_locc = xfin_locc;
697            definition->xfin_hicc = xfin_hicc;
698            definition->xfout_locc = xfout_locc;
699            definition->xfout_hicc = xfout_hicc;
700            definition->xf_cccurve = xf_cccurve;
701    
702          // pitch          // pitch
703          region->transpose = transpose;          definition->transpose = transpose;
704          region->tune = tune;          definition->tune = tune;
705          region->pitch_keycenter = pitch_keycenter;          definition->pitch_keycenter = pitch_keycenter;
706          region->pitch_keytrack = pitch_keytrack;          definition->pitch_keytrack = pitch_keytrack;
707          region->pitch_veltrack = pitch_veltrack;          definition->pitch_veltrack = pitch_veltrack;
708          region->pitch_random = pitch_random;          definition->pitch_random = pitch_random;
709          region->bend_up = bend_up;          definition->bend_up = bend_up;
710          region->bend_down = bend_down;          definition->bend_down = bend_down;
711          region->bend_step = bend_step;          definition->bend_step = bend_step;
712            
713            definition->pitch_oncc     = pitch_oncc;
714            definition->pitch_smoothcc = pitch_smoothcc;
715            definition->pitch_curvecc  = pitch_curvecc;
716            definition->pitch_stepcc   = pitch_stepcc;
717    
718          // filter          // filter
719          region->fil_type = fil_type;          definition->fil_type = fil_type;
720          region->cutoff = cutoff;          definition->cutoff = cutoff;
721          region->cutoff_oncc = cutoff_oncc;          definition->cutoff_oncc = cutoff_oncc;
722          region->cutoff_smoothcc = cutoff_smoothcc;          definition->cutoff_smoothcc = cutoff_smoothcc;
723          region->cutoff_stepcc = cutoff_stepcc;          definition->cutoff_stepcc = cutoff_stepcc;
724          region->cutoff_curvecc = cutoff_curvecc;          definition->cutoff_curvecc = cutoff_curvecc;
725          region->cutoff_chanaft = cutoff_chanaft;          definition->cutoff_chanaft = cutoff_chanaft;
726          region->cutoff_polyaft = cutoff_polyaft;          definition->cutoff_polyaft = cutoff_polyaft;
727          region->resonance = resonance;          definition->resonance = resonance;
728          region->resonance_oncc = resonance_oncc;          definition->resonance_oncc = resonance_oncc;
729          region->resonance_smoothcc = resonance_smoothcc;          definition->resonance_smoothcc = resonance_smoothcc;
730          region->resonance_stepcc = resonance_stepcc;          definition->resonance_stepcc = resonance_stepcc;
731          region->resonance_curvecc = resonance_curvecc;          definition->resonance_curvecc = resonance_curvecc;
732          region->fil_keytrack = fil_keytrack;          definition->fil_keytrack = fil_keytrack;
733          region->fil_keycenter = fil_keycenter;          definition->fil_keycenter = fil_keycenter;
734          region->fil_veltrack = fil_veltrack;          definition->fil_veltrack = fil_veltrack;
735          region->fil_random = fil_random;          definition->fil_random = fil_random;
736    
737          region->fil2_type = fil2_type;          definition->fil2_type = fil2_type;
738          region->cutoff2 = cutoff2;          definition->cutoff2 = cutoff2;
739          region->cutoff2_oncc = cutoff2_oncc;          definition->cutoff2_oncc = cutoff2_oncc;
740          region->cutoff2_smoothcc = cutoff2_smoothcc;          definition->cutoff2_smoothcc = cutoff2_smoothcc;
741          region->cutoff2_stepcc = cutoff2_stepcc;          definition->cutoff2_stepcc = cutoff2_stepcc;
742          region->cutoff2_curvecc = cutoff2_curvecc;          definition->cutoff2_curvecc = cutoff2_curvecc;
743          region->cutoff2_chanaft = cutoff2_chanaft;          definition->cutoff2_chanaft = cutoff2_chanaft;
744          region->cutoff2_polyaft = cutoff2_polyaft;          definition->cutoff2_polyaft = cutoff2_polyaft;
745          region->resonance2 = resonance2;          definition->resonance2 = resonance2;
746          region->resonance2_oncc = resonance2_oncc;          definition->resonance2_oncc = resonance2_oncc;
747          region->resonance2_smoothcc = resonance2_smoothcc;          definition->resonance2_smoothcc = resonance2_smoothcc;
748          region->resonance2_stepcc = resonance2_stepcc;          definition->resonance2_stepcc = resonance2_stepcc;
749          region->resonance2_curvecc = resonance2_curvecc;          definition->resonance2_curvecc = resonance2_curvecc;
750          region->fil2_keytrack = fil2_keytrack;          definition->fil2_keytrack = fil2_keytrack;
751          region->fil2_keycenter = fil2_keycenter;          definition->fil2_keycenter = fil2_keycenter;
752          region->fil2_veltrack = fil2_veltrack;          definition->fil2_veltrack = fil2_veltrack;
753          region->fil2_random = fil2_random;          definition->fil2_random = fil2_random;
754    
755          // per voice equalizer          // per voice equalizer
756          region->eq1_freq = eq1_freq;          definition->eq1_freq = eq1_freq;
757          region->eq2_freq = eq2_freq;          definition->eq2_freq = eq2_freq;
758          region->eq3_freq = eq3_freq;          definition->eq3_freq = eq3_freq;
759          region->eq1_freq_oncc = eq1_freq_oncc;          definition->eq1_freq_oncc = eq1_freq_oncc;
760          region->eq2_freq_oncc = eq2_freq_oncc;          definition->eq2_freq_oncc = eq2_freq_oncc;
761          region->eq3_freq_oncc = eq3_freq_oncc;          definition->eq3_freq_oncc = eq3_freq_oncc;
762          region->eq1_vel2freq = eq1_vel2freq;          definition->eq1_vel2freq = eq1_vel2freq;
763          region->eq2_vel2freq = eq2_vel2freq;          definition->eq2_vel2freq = eq2_vel2freq;
764          region->eq3_vel2freq = eq3_vel2freq;          definition->eq3_vel2freq = eq3_vel2freq;
765          region->eq1_bw = eq1_bw;          definition->eq1_bw = eq1_bw;
766          region->eq2_bw = eq2_bw;          definition->eq2_bw = eq2_bw;
767          region->eq3_bw = eq3_bw;          definition->eq3_bw = eq3_bw;
768          region->eq1_bw_oncc = eq1_bw_oncc;          definition->eq1_bw_oncc = eq1_bw_oncc;
769          region->eq2_bw_oncc = eq2_bw_oncc;          definition->eq2_bw_oncc = eq2_bw_oncc;
770          region->eq3_bw_oncc = eq3_bw_oncc;          definition->eq3_bw_oncc = eq3_bw_oncc;
771          region->eq1_gain = eq1_gain;          definition->eq1_gain = eq1_gain;
772          region->eq2_gain = eq2_gain;          definition->eq2_gain = eq2_gain;
773          region->eq3_gain = eq3_gain;          definition->eq3_gain = eq3_gain;
774          region->eq1_gain_oncc = eq1_gain_oncc;          definition->eq1_gain_oncc = eq1_gain_oncc;
775          region->eq2_gain_oncc = eq2_gain_oncc;          definition->eq2_gain_oncc = eq2_gain_oncc;
776          region->eq3_gain_oncc = eq3_gain_oncc;          definition->eq3_gain_oncc = eq3_gain_oncc;
777          region->eq1_vel2gain = eq1_vel2gain;          definition->eq1_vel2gain = eq1_vel2gain;
778          region->eq2_vel2gain = eq2_vel2gain;          definition->eq2_vel2gain = eq2_vel2gain;
779          region->eq3_vel2gain = eq3_vel2gain;          definition->eq3_vel2gain = eq3_vel2gain;
780    
781          // envelope generator          // envelope generator
782          region->eg = eg;          definition->eg = eg;
783    
784          // deprecated          // deprecated
785          region->ampeg_delay    = ampeg_delay;          definition->ampeg_delay    = ampeg_delay;
786          region->ampeg_start    = ampeg_start;          definition->ampeg_start    = ampeg_start;
787          region->ampeg_attack   = ampeg_attack;          definition->ampeg_attack   = ampeg_attack;
788          region->ampeg_hold     = ampeg_hold;          definition->ampeg_hold     = ampeg_hold;
789          region->ampeg_decay    = ampeg_decay;          definition->ampeg_decay    = ampeg_decay;
790          region->ampeg_sustain  = ampeg_sustain;          definition->ampeg_sustain  = ampeg_sustain;
791          region->ampeg_release  = ampeg_release;          definition->ampeg_release  = ampeg_release;
792    
793          region->fileg_delay    = fileg_delay;          definition->ampeg_vel2delay   = ampeg_vel2delay;
794          region->fileg_start    = fileg_start;          definition->ampeg_vel2attack  = ampeg_vel2attack;
795          region->fileg_attack   = fileg_attack;          definition->ampeg_vel2hold    = ampeg_vel2hold;
796          region->fileg_hold     = fileg_hold;          definition->ampeg_vel2decay   = ampeg_vel2decay;
797          region->fileg_decay    = fileg_decay;          definition->ampeg_vel2sustain = ampeg_vel2sustain;
798          region->fileg_sustain  = fileg_sustain;          definition->ampeg_vel2release = ampeg_vel2release;
799          region->fileg_release  = fileg_release;          
800            definition->ampeg_delaycc   = ampeg_delaycc;
801          region->pitcheg_delay    = pitcheg_delay;          definition->ampeg_startcc   = ampeg_startcc;
802          region->pitcheg_start    = pitcheg_start;          definition->ampeg_attackcc  = ampeg_attackcc;
803          region->pitcheg_attack   = pitcheg_attack;          definition->ampeg_holdcc    = ampeg_holdcc;
804          region->pitcheg_hold     = pitcheg_hold;          definition->ampeg_decaycc   = ampeg_decaycc;
805          region->pitcheg_decay    = pitcheg_decay;          definition->ampeg_sustaincc = ampeg_sustaincc;
806          region->pitcheg_sustain  = pitcheg_sustain;          definition->ampeg_releasecc = ampeg_releasecc;
807          region->pitcheg_release  = pitcheg_release;  
808            definition->fileg_delay    = fileg_delay;
809          region->amplfo_delay     = amplfo_delay;          definition->fileg_start    = fileg_start;
810          region->amplfo_fade      = amplfo_fade;          definition->fileg_attack   = fileg_attack;
811          region->amplfo_freq      = amplfo_freq;          definition->fileg_hold     = fileg_hold;
812          region->amplfo_depth     = amplfo_depth;          definition->fileg_decay    = fileg_decay;
813            definition->fileg_sustain  = fileg_sustain;
814          region->fillfo_delay     = fillfo_delay;          definition->fileg_release  = fileg_release;
815          region->fillfo_fade      = fillfo_fade;          definition->fileg_depth    = fileg_depth;
816          region->fillfo_freq      = fillfo_freq;  
817          region->fillfo_depth     = fillfo_depth;          definition->fileg_vel2delay   = fileg_vel2delay;
818            definition->fileg_vel2attack  = fileg_vel2attack;
819          region->pitchlfo_delay   = pitchlfo_delay;          definition->fileg_vel2hold    = fileg_vel2hold;
820          region->pitchlfo_fade    = pitchlfo_fade;          definition->fileg_vel2decay   = fileg_vel2decay;
821          region->pitchlfo_freq    = pitchlfo_freq;          definition->fileg_vel2sustain = fileg_vel2sustain;
822          region->pitchlfo_depth   = pitchlfo_depth;          definition->fileg_vel2release = fileg_vel2release;
823            
824          return region;          definition->fileg_delay_oncc   = fileg_delay_oncc;
825            definition->fileg_start_oncc   = fileg_start_oncc;
826            definition->fileg_attack_oncc  = fileg_attack_oncc;
827            definition->fileg_hold_oncc    = fileg_hold_oncc;
828            definition->fileg_decay_oncc   = fileg_decay_oncc;
829            definition->fileg_sustain_oncc = fileg_sustain_oncc;
830            definition->fileg_release_oncc = fileg_release_oncc;
831            definition->fileg_depth_oncc   = fileg_depth_oncc;
832    
833            definition->pitcheg_delay    = pitcheg_delay;
834            definition->pitcheg_start    = pitcheg_start;
835            definition->pitcheg_attack   = pitcheg_attack;
836            definition->pitcheg_hold     = pitcheg_hold;
837            definition->pitcheg_decay    = pitcheg_decay;
838            definition->pitcheg_sustain  = pitcheg_sustain;
839            definition->pitcheg_release  = pitcheg_release;
840            definition->pitcheg_depth    = pitcheg_depth;
841    
842            definition->pitcheg_vel2delay   = pitcheg_vel2delay;
843            definition->pitcheg_vel2attack  = pitcheg_vel2attack;
844            definition->pitcheg_vel2hold    = pitcheg_vel2hold;
845            definition->pitcheg_vel2decay   = pitcheg_vel2decay;
846            definition->pitcheg_vel2sustain = pitcheg_vel2sustain;
847            definition->pitcheg_vel2release = pitcheg_vel2release;
848            
849            definition->pitcheg_delay_oncc   = pitcheg_delay_oncc;
850            definition->pitcheg_start_oncc   = pitcheg_start_oncc;
851            definition->pitcheg_attack_oncc  = pitcheg_attack_oncc;
852            definition->pitcheg_hold_oncc    = pitcheg_hold_oncc;
853            definition->pitcheg_decay_oncc   = pitcheg_decay_oncc;
854            definition->pitcheg_sustain_oncc = pitcheg_sustain_oncc;
855            definition->pitcheg_release_oncc = pitcheg_release_oncc;
856            definition->pitcheg_depth_oncc   = pitcheg_depth_oncc;
857    
858            definition->amplfo_delay     = amplfo_delay;
859            definition->amplfo_fade      = amplfo_fade;
860            definition->amplfo_freq      = amplfo_freq;
861            definition->amplfo_depth     = amplfo_depth;
862            
863            definition->amplfo_delay_oncc = amplfo_delay_oncc;
864            definition->amplfo_fade_oncc  = amplfo_fade_oncc;
865            definition->amplfo_depthcc   = amplfo_depthcc;
866            definition->amplfo_freqcc    = amplfo_freqcc;
867    
868            definition->fillfo_delay     = fillfo_delay;
869            definition->fillfo_fade      = fillfo_fade;
870            definition->fillfo_freq      = fillfo_freq;
871            definition->fillfo_depth     = fillfo_depth;
872            
873            definition->fillfo_delay_oncc = fillfo_delay_oncc;
874            definition->fillfo_fade_oncc  = fillfo_fade_oncc;
875            definition->fillfo_depthcc   = fillfo_depthcc;
876            definition->fillfo_freqcc    = fillfo_freqcc;
877    
878            definition->pitchlfo_delay   = pitchlfo_delay;
879            definition->pitchlfo_fade    = pitchlfo_fade;
880            definition->pitchlfo_freq    = pitchlfo_freq;
881            definition->pitchlfo_depth   = pitchlfo_depth;
882            
883            definition->pitchlfo_delay_oncc = pitchlfo_delay_oncc;
884            definition->pitchlfo_fade_oncc  = pitchlfo_fade_oncc;
885            definition->pitchlfo_depthcc = pitchlfo_depthcc;
886            definition->pitchlfo_freqcc  = pitchlfo_freqcc;
887            
888            definition->eg = eg;
889            definition->lfos = lfos;
890      }      }
891    
892      /////////////////////////////////////////////////////////////      /////////////////////////////////////////////////////////////
893      // class File      // class File
894    
895        const std::string File::MACRO_NAME_CHARS = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789_";
896        const std::string File::MACRO_VALUE_CHARS = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789_. /\\";
897    
898      File::File(std::string file, SampleManager* pSampleManager) :      File::File(std::string file, SampleManager* pSampleManager) :
899          _current_section(GROUP),          _current_section(GLOBAL),
900            id(0),
901          default_path(""),          default_path(""),
902          octave_offset(0),          octave_offset(0),
903          note_offset(0)          note_offset(0)
904      {      {
905          _instrument = new Instrument(LinuxSampler::Path::getBaseName(file), pSampleManager);          _instrument = new Instrument(LinuxSampler::Path::getBaseName(file), pSampleManager);
906          _current_group = new Group();          ContainerDefinition* defaultGlobalContainer = new ContainerDefinition(ContainerDefinition::GLOBAL);
907          pCurDef = _current_group;          _current_containers.push(defaultGlobalContainer);
908            pCurDef = defaultGlobalContainer;
909    
910            parseFile(file,pSampleManager);
911    
912            std::set<float*> velcurves;
913            for (int i = 0; i < _instrument->regions.size(); i++) {
914                ::sfz::Region* pRegion = _instrument->regions[i];
915                int low = pRegion->lokey;
916                int high = pRegion->hikey;
917                if (low != -1) { // lokey -1 means region doesn't play on note-on
918                    // hikey -1 is the same as no limit, except that it
919                    // also enables on_locc/on_hicc
920                    if (high == -1) high = 127;
921                    if (low < 0 || low > 127 || high < 0 || high > 127 || low > high) {
922                        std::cerr << "Invalid key range: " << low << " - " << high << std::endl;
923                    } else {
924                        for (int j = low; j <= high; j++) _instrument->KeyBindings[j] = true;
925                    }
926                }
927    
928                // get keyswitches
929                low = pRegion->sw_lokey;
930                if (low < 0) low = 0;
931                high = pRegion->sw_hikey;
932                if (high == -1) {
933                    // Key switches not defined, so nothing to do
934                } else if (low >= 0 && low <= 127 && high >= 0 && high <= 127 && high >= low) {
935                    for (int j = low; j <= high; j++) _instrument->KeySwitchBindings[j] = true;
936                } else {
937                    std::cerr << "Invalid key switch range: " << low << " - " << high << std::endl;
938                }
939    
940                // create velocity response curve
941    
942                // don't use copy-on-write here, instead change the actual
943                // unique buffers in memory
944                float* velcurve = const_cast<float*>(&pRegion->amp_velcurve[0]);
945                if (velcurves.insert(velcurve).second) {
946                    int prev = 0;
947                    float prevvalue = 0;
948                    for (int v = 0 ; v < 128 ; v++) {
949                        if (velcurve[v] >= 0) {
950                            float step = (velcurve[v] - prevvalue) / (v - prev);
951                            for ( ; prev < v ; prev++) {
952                                velcurve[prev] = prevvalue;
953                                prevvalue += step;
954                            }
955                        }
956                    }
957                    if (prev) {
958                        float step = (1 - prevvalue) / (127 - prev);
959                        for ( ; prev < 128 ; prev++) {
960                            velcurve[prev] = prevvalue;
961                            prevvalue += step;
962                        }
963                    } else {
964                        // default curve
965                        for (int v = 0 ; v < 128 ; v++) {
966                            velcurve[v] = v * v / (127.0 * 127.0);
967                        }
968                    }
969                }
970            }
971    
972            _instrument->pLookupTable = new LookupTable(_instrument);
973    
974            // create separate lookup tables for controller triggered
975            // regions, one for each CC
976            for (int i = 0 ; i < 128 ; i++) {
977                _instrument->pLookupTableCC[i] = new LookupTable(_instrument, i);
978            }
979            
980            for (int i = 0; i < _instrument->regions.size(); i++) {
981                Region* r = _instrument->regions[i];
982                
983                copyCurves(r->volume_curvecc, r->volume_oncc);
984                r->volume_curvecc.clear();
985                
986                copySmoothValues(r->volume_smoothcc, r->volume_oncc);
987                r->volume_smoothcc.clear();
988                
989                copyStepValues(r->volume_stepcc, r->volume_oncc);
990                r->volume_stepcc.clear();
991                
992                copyCurves(r->pitch_curvecc, r->pitch_oncc);
993                r->pitch_curvecc.clear();
994                
995                copySmoothValues(r->pitch_smoothcc, r->pitch_oncc);
996                r->pitch_smoothcc.clear();
997                
998                copyStepValues(r->pitch_stepcc, r->pitch_oncc);
999                r->pitch_stepcc.clear();
1000                
1001                copyCurves(r->pan_curvecc, r->pan_oncc);
1002                r->pan_curvecc.clear();
1003                
1004                copySmoothValues(r->pan_smoothcc, r->pan_oncc);
1005                r->pan_smoothcc.clear();
1006                
1007                copyStepValues(r->pan_stepcc, r->pan_oncc);
1008                r->pan_stepcc.clear();
1009                
1010                copyCurves(r->cutoff_curvecc, r->cutoff_oncc);
1011                r->cutoff_curvecc.clear();
1012                
1013                copySmoothValues(r->cutoff_smoothcc, r->cutoff_oncc);
1014                r->cutoff_smoothcc.clear();
1015                
1016                copyStepValues(r->cutoff_stepcc, r->cutoff_oncc);
1017                r->cutoff_stepcc.clear();
1018                
1019                copyCurves(r->cutoff2_curvecc, r->cutoff2_oncc);
1020                r->cutoff2_curvecc.clear();
1021                
1022                copySmoothValues(r->cutoff2_smoothcc, r->cutoff2_oncc);
1023                r->cutoff2_smoothcc.clear();
1024                
1025                copyStepValues(r->cutoff2_stepcc, r->cutoff2_oncc);
1026                r->cutoff2_stepcc.clear();
1027                
1028                copyCurves(r->resonance_curvecc, r->resonance_oncc);
1029                r->resonance_curvecc.clear();
1030                
1031                copySmoothValues(r->resonance_smoothcc, r->resonance_oncc);
1032                r->resonance_smoothcc.clear();
1033                
1034                copyStepValues(r->resonance_stepcc, r->resonance_oncc);
1035                r->resonance_stepcc.clear();
1036                
1037                copyCurves(r->resonance2_curvecc, r->resonance2_oncc);
1038                r->resonance2_curvecc.clear();
1039                
1040                copySmoothValues(r->resonance2_smoothcc, r->resonance2_oncc);
1041                r->resonance2_smoothcc.clear();
1042                
1043                copyStepValues(r->resonance2_stepcc, r->resonance2_oncc);
1044                r->resonance2_stepcc.clear();
1045                
1046                for (int j = 0; j < r->eg.size(); j++) {
1047                    copyCurves(r->eg[j].pan_curvecc, r->eg[j].pan_oncc);
1048                    r->eg[j].pan_curvecc.clear();
1049                }
1050                
1051                for (int j = 0; j < r->lfos.size(); j++) {
1052                    r->lfos[j].copySmoothValues();
1053                    r->lfos[j].copyStepValues();
1054                    
1055                    copySmoothValues(r->lfos[j].volume_smoothcc, r->lfos[j].volume_oncc);
1056                    r->lfos[j].volume_smoothcc.clear();
1057                    
1058                    copyStepValues(r->lfos[j].volume_stepcc, r->lfos[j].volume_oncc);
1059                    r->lfos[j].volume_stepcc.clear();
1060                    
1061                    copySmoothValues(r->lfos[j].freq_smoothcc, r->lfos[j].freq_oncc);
1062                    r->lfos[j].freq_smoothcc.clear();
1063                    
1064                    copyStepValues(r->lfos[j].freq_stepcc, r->lfos[j].freq_oncc);
1065                    r->lfos[j].freq_stepcc.clear();
1066                    
1067                    copySmoothValues(r->lfos[j].pitch_smoothcc, r->lfos[j].pitch_oncc);
1068                    r->lfos[j].pitch_smoothcc.clear();
1069                    
1070                    copyStepValues(r->lfos[j].pitch_stepcc, r->lfos[j].pitch_oncc);
1071                    r->lfos[j].pitch_stepcc.clear();
1072                    
1073                    copySmoothValues(r->lfos[j].pan_smoothcc, r->lfos[j].pan_oncc);
1074                    r->lfos[j].pan_smoothcc.clear();
1075                    
1076                    copyStepValues(r->lfos[j].pan_stepcc, r->lfos[j].pan_oncc);
1077                    r->lfos[j].pan_stepcc.clear();
1078                    
1079                    copySmoothValues(r->lfos[j].cutoff_smoothcc, r->lfos[j].cutoff_oncc);
1080                    r->lfos[j].cutoff_smoothcc.clear();
1081                    
1082                    copyStepValues(r->lfos[j].cutoff_stepcc, r->lfos[j].cutoff_oncc);
1083                    r->lfos[j].cutoff_stepcc.clear();
1084                    
1085                    copySmoothValues(r->lfos[j].resonance_smoothcc, r->lfos[j].resonance_oncc);
1086                    r->lfos[j].resonance_smoothcc.clear();
1087                    
1088                    copyStepValues(r->lfos[j].resonance_stepcc, r->lfos[j].resonance_oncc);
1089                    r->lfos[j].resonance_stepcc.clear();
1090                }
1091            }
1092        }
1093    
1094        void File::parseFile(std::string file, SampleManager* pSampleManager){
1095          enum token_type_t { HEADER, OPCODE };          enum token_type_t { HEADER, OPCODE };
1096          token_type_t token_type;          token_type_t token_type = (token_type_t) -1;
1097          std::string token_string;          std::string token_string;
1098    
1099          std::ifstream fs(file.c_str());          std::ifstream fs(file.c_str());
1100          currentDir = LinuxSampler::Path::stripLastName(file);          currentDir = LinuxSampler::Path::stripLastName(file);
1101          std::string token;          std::string token;
1102          std::string line;          std::string line;
1103            currentLine = 0;
1104    
1105          while (std::getline(fs, line))          while (std::getline(fs, line))
1106          {          {
1107                currentLine++;
1108              // COMMENT              // COMMENT
1109              std::string::size_type slash_index = line.find("//");              std::string::size_type slash_index = line.find("//");
1110              if (slash_index != std::string::npos)              if (slash_index != std::string::npos)
1111                  line.resize(slash_index);                  line.resize(slash_index);
1112    
1113                // #include
1114                if (line.find("#include ") == 0) {
1115                    size_t fname_start = line.find("\"");
1116                    if (fname_start == std::string::npos) continue;
1117    
1118                    size_t fname_end = line.find("\"", fname_start + 1);
1119                    if (fname_end == std::string::npos || fname_start == fname_end)
1120                        continue;
1121                    std::string fname = line.substr(fname_start + 1, fname_end - fname_start - 1);
1122    
1123                    if (!currentDir.empty() && !LinuxSampler::Path(fname).isAbsolute())
1124                        fname = currentDir + LinuxSampler::File::DirSeparator + fname;
1125    
1126                    std::string cd = currentDir; // backup current dir
1127                    int cl = currentLine;
1128                    parseFile(fname, pSampleManager);
1129                    currentDir = cd; // restore currentDir (since altered by parsefile())
1130                    currentLine = cl;
1131                    continue;
1132                }
1133                // #define
1134                else if (line.find("#define") == 0)
1135                {
1136                    
1137                    size_t varname_start = line.find_first_not_of("\t ", std::strlen("#define"));
1138                    size_t varname_end = line.find_first_of("\t ", varname_start + 1);
1139                    size_t value_start = line.find_first_not_of("\t ", varname_end + 1);
1140                    
1141                    std::string varname = line.substr(varname_start, varname_end - varname_start);
1142                    std::string value = line.substr(value_start, std::string::npos);
1143                    
1144                    if (varname.size() == 0 || value.size() == 0)
1145                    {
1146                        std::cerr << "sfz error: Malformed #define statement on line " << currentLine << std::endl;
1147                        continue;
1148                    }
1149                    
1150                    // Deal with DOS EOLs
1151                    if (value[value.size() - 1] == '\r')
1152                    {
1153                        value.erase(value.size() - 1);
1154                    }
1155                    
1156                    // Check varname
1157                    if (varname[0] != '$')
1158                    {
1159                        std::cerr << "sfz error: Macro name '" << varname;
1160                        std::cerr << "' doesn't start with '$'." << std::endl;
1161                        continue;
1162                    }
1163                    // Invalid chars
1164                    if (varname.find_first_not_of(MACRO_NAME_CHARS, 1) != std::string::npos)
1165                    {
1166                        std::cerr << "sfz error: Macro name '" << varname;
1167                        std::cerr << "' contains invalid characters." << std::endl;
1168                    }
1169                    
1170                    // Check value
1171                    // Match alphanumeric, underscore, and decimal point.
1172                    if (value.find_first_not_of(MACRO_VALUE_CHARS) != std::string::npos)
1173                    {
1174                        std::cerr << "sfz error: Macro value '" << value;
1175                        std::cerr << "' contains invalid characters." << std::endl;
1176                        continue;
1177                    }
1178                    
1179                    _defined_macros[varname] = value;
1180                    
1181                    continue;
1182                }
1183                // script=path/to/scriptfile
1184                else if (line.find("script") == 0) {
1185                    size_t eq = line.find_first_of("=");
1186                    if (eq == std::string::npos) {
1187                        std::cerr << "sfz error: opcode 'script' misses '=' character\n";
1188                        continue;
1189                    }
1190                    std::string value = trim( line.substr(eq+1, std::string::npos) );
1191                    if (value.empty()) {
1192                        std::cerr << "sfz error: empty path assigned to opcode 'script'\n";
1193                        continue;
1194                    }
1195                    LinuxSampler::Path path = LinuxSampler::Path::fromUnknownFS(value);
1196                    if (!currentDir.empty() && !path.isAbsolute())
1197                        path = LinuxSampler::Path::fromUnknownFS(currentDir) + path;
1198                    LinuxSampler::File file(path);
1199                    if (!file.Exist()) {
1200                        std::cerr << "sfz error: script file '" << value << "' does not exist\n";
1201                        continue;
1202                    }
1203                    if (!file.IsFile()) {
1204                        std::cerr << "sfz error: script '" << value << "' is not a file\n";
1205                        continue;
1206                    }
1207                    Script script(path);
1208                    _instrument->scripts.push_back(script);
1209    
1210                    continue;
1211                }
1212    
1213              // DEFINITION              // DEFINITION
1214              std::stringstream linestream(line);              std::stringstream linestream(line);
1215                int spaces = 0;
1216              while (linestream >> token)              while (linestream >> token)
1217              {              {
1218                  if (token[0] == '<' and token[token.size()-1] == '>')                  linestream >> std::noskipws;
1219                    if (token[0] == '<') {
1220                        std::string::size_type p = token.find('>', 1);
1221                        if (p != std::string::npos && p < (token.size() - 1)) {
1222                            linestream.seekg(p + 1 - token.size(), std::stringstream::cur);
1223                            token.erase(p + 1);
1224                        }
1225                    }
1226                    if (token[0] == '<' && token[token.size()-1] == '>')
1227                  {                  {
1228                      // HEAD                      // HEAD
1229                      if (!token_string.empty())                      if (!token_string.empty())
# Line 751  namespace sfz Line 1264  namespace sfz
1264                  else                  else
1265                  {                  {
1266                      // TAIL                      // TAIL
1267                      token_string.append(" ");                      token_string.append(spaces, ' ');
1268                      token_string.append(token);                      token_string.append(token);
1269                  }                  }
1270                    spaces = 0;
1271                    while (isspace(linestream.peek())) {
1272                        linestream.ignore();
1273                        spaces++;
1274                    }
1275              }              }
1276    
1277              // EOL              // EOL
# Line 771  namespace sfz Line 1289  namespace sfz
1289                  token_string.erase();                  token_string.erase();
1290              }              }
1291          }          }
   
         std::set<float*> velcurves;  
         for (int i = 0; i < _instrument->regions.size(); i++) {  
             ::sfz::Region* pRegion = _instrument->regions[i];  
             int low = pRegion->lokey;  
             int high = pRegion->hikey;  
             if (low != -1) { // lokey -1 means region doesn't play on note-on  
                 // hikey -1 is the same as no limit, except that it  
                 // also enables on_locc/on_hicc  
                 if (high == -1) high = 127;  
                 if (low < 0 || low > 127 || high < 0 || high > 127 || low > high) {  
                     std::cerr << "Invalid key range: " << low << " - " << high << std::endl;  
                 } else {  
                     for (int j = low; j <= high; j++) _instrument->KeyBindings[j] = true;  
                 }  
             }  
   
             // get keyswitches  
             low = pRegion->sw_lokey;  
             if (low < 0) low = 0;  
             high = pRegion->sw_hikey;  
             if (high == -1) {  
                 // Key switches not defined, so nothing to do  
             } else if (low >= 0 && low <= 127 && high >= 0 && high <= 127 && high >= low) {  
                 for (int j = low; j <= high; j++) _instrument->KeySwitchBindings[j] = true;  
             } else {  
                 std::cerr << "Invalid key switch range: " << low << " - " << high << std::endl;  
             }  
   
             // create velocity response curve  
   
             // don't use copy-on-write here, instead change the actual  
             // unique buffers in memory  
             float* velcurve = const_cast<float*>(&pRegion->amp_velcurve[0]);  
             if (velcurves.insert(velcurve).second) {  
                 int prev = 0;  
                 float prevvalue = 0;  
                 for (int v = 0 ; v < 128 ; v++) {  
                     if (velcurve[v] >= 0) {  
                         float step = (velcurve[v] - prevvalue) / (v - prev);  
                         for ( ; prev < v ; prev++) {  
                             velcurve[prev] = prevvalue;  
                             prevvalue += step;  
                         }  
                     }  
                 }  
                 if (prev) {  
                     float step = (1 - prevvalue) / (127 - prev);  
                     for ( ; prev < 128 ; prev++) {  
                         velcurve[prev] = prevvalue;  
                         prevvalue += step;  
                     }  
                 } else {  
                     // default curve  
                     for (int v = 0 ; v < 128 ; v++) {  
                         velcurve[v] = v * v / (127.0 * 127.0);  
                     }  
                 }  
   
                 // apply amp_veltrack  
                 float offset = -pRegion->amp_veltrack;  
                 if (offset <= 0) offset += 100;  
                 for (int v = 0 ; v < 128 ; v++) {  
                     velcurve[v] = (offset + pRegion->amp_veltrack * velcurve[v]) / 100;  
                 }  
             }  
         }  
   
         _instrument->pLookupTable = new LookupTable(_instrument);  
   
         // create separate lookup tables for controller triggered  
         // regions, one for each CC  
         for (int i = 0 ; i < 128 ; i++) {  
             _instrument->pLookupTableCC[i] = new LookupTable(_instrument, i);  
         }  
1292      }      }
1293    
1294      File::~File()      File::~File()
1295      {      {
1296          delete _current_group;          for (int i = 0; i < _current_containers.size(); i++)
1297            {
1298                delete _current_containers.top();
1299                _current_containers.pop();
1300            }
1301          delete _instrument;          delete _instrument;
1302      }      }
1303    
# Line 859  namespace sfz Line 1306  namespace sfz
1306      {      {
1307          return _instrument;          return _instrument;
1308      }      }
1309        
1310        void File::copyCurves(LinuxSampler::ArrayList<CC>& curves, LinuxSampler::ArrayList<CC>& dest) {
1311            for (int i = 0; i < curves.size(); i++) {
1312                for (int j = 0; j < dest.size(); j++) {
1313                    if (curves[i].Controller == dest[j].Controller) {
1314                        dest[j].Curve = curves[i].Curve;
1315                    }
1316                }
1317            }
1318        }
1319        
1320        void File::copySmoothValues(LinuxSampler::ArrayList<CC>& smooths, LinuxSampler::ArrayList<CC>& dest) {
1321            for (int i = 0; i < smooths.size(); i++) {
1322                for (int j = 0; j < dest.size(); j++) {
1323                    if (smooths[i].Controller == dest[j].Controller) {
1324                        dest[j].Smooth = smooths[i].Smooth;
1325                    }
1326                }
1327            }
1328        }
1329        
1330        void File::copyStepValues(LinuxSampler::ArrayList<CC>& steps, LinuxSampler::ArrayList<CC>& dest) {
1331            for (int i = 0; i < steps.size(); i++) {
1332                for (int j = 0; j < dest.size(); j++) {
1333                    if (steps[i].Controller == dest[j].Controller) {
1334                        dest[j].Step = steps[i].Step;
1335                    }
1336                }
1337            }
1338        }
1339        
1340        int File::ToInt(const std::string& s) throw(LinuxSampler::Exception) {
1341            int i;
1342            std::istringstream iss(s);
1343            if(!(iss >> i)) {
1344                std::ostringstream oss;
1345                oss << "Line " << currentLine << ": Expected an integer";
1346                throw LinuxSampler::Exception(oss.str());
1347            }
1348            return i;
1349        }
1350    
1351        float File::ToFloat(const std::string& s) throw(LinuxSampler::Exception) {
1352            float i;
1353            std::istringstream iss(s);
1354            if(!(iss >> i)) {
1355                std::ostringstream oss;
1356                oss << "Line " << currentLine << ": Expected a floating-point number";
1357                throw LinuxSampler::Exception(oss.str());
1358            }
1359            return i;
1360        }
1361    
1362      void      void
1363      File::push_header(std::string token)      File::push_header(std::string token)
1364      {      {
1365          if (token == "<group>")          if (token == "<global>" ||
1366                token == "<master>" ||
1367                token == "<group>")
1368          {          {
1369              _current_section = GROUP;              ContainerDefinition::section_type level = ContainerDefinition::GLOBAL; // initialized only to avoid an irrelevant compiler warning
1370              _current_group->Reset();  
1371              pCurDef = _current_group;              if (token == "<global>")
1372                {
1373                    _current_section = GLOBAL;
1374                    level = ContainerDefinition::GLOBAL;
1375                }
1376                else if (token == "<master>")
1377                {
1378                    _current_section = MASTER;
1379                    level = ContainerDefinition::MASTER;
1380                }
1381                else if (token == "<group>")
1382                {
1383                    _current_section = GROUP;
1384                    level = ContainerDefinition::GROUP;
1385                }
1386    
1387                ContainerDefinition* newContainer = new ContainerDefinition(level);
1388                
1389                while (_current_containers.size() > 0 && _current_containers.top()->level <= level)
1390                {
1391                    delete _current_containers.top();
1392                    _current_containers.pop();
1393                }
1394                
1395                //If the new header is a <global>, there won't be anything left in _current_containers
1396                //to copy from.
1397                if (_current_containers.size() > 0)
1398                {
1399                    _current_containers.top()->CopyValuesToDefinition(newContainer);
1400                }
1401                _current_containers.push(newContainer);
1402                pCurDef = newContainer;
1403          }          }
1404          else if (token == "<region>")          else if (token == "<region>")
1405          {          {
1406              _current_section = REGION;              _current_section = REGION;
1407              _current_region = _current_group->RegionFactory();              _current_region = new Region();
1408                _current_region->id = id++;
1409                _current_containers.top()->CopyValuesToDefinition(_current_region);
1410              pCurDef = _current_region;              pCurDef = _current_region;
1411              _instrument->regions.push_back(_current_region);              _instrument->regions.push_back(_current_region);
1412              _current_region->SetInstrument(_instrument);              _current_region->SetInstrument(_instrument);
# Line 884  namespace sfz Line 1418  namespace sfz
1418              octave_offset = 0;              octave_offset = 0;
1419              note_offset = 0;              note_offset = 0;
1420          }          }
1421            else if (token == "<curve>")
1422            {
1423                _current_section = CURVE;
1424                _instrument->curves.add(Curve());
1425                _current_curve = &_instrument->curves[_instrument->curves.size() - 1];
1426            }
1427          else          else
1428          {          {
1429              _current_section = UNKNOWN;              _current_section = UNKNOWN;
# Line 900  namespace sfz Line 1440  namespace sfz
1440          std::string::size_type delimiter_index = token.find('=');          std::string::size_type delimiter_index = token.find('=');
1441          std::string key = token.substr(0, delimiter_index);          std::string key = token.substr(0, delimiter_index);
1442          std::string value = token.substr(delimiter_index + 1);          std::string value = token.substr(delimiter_index + 1);
1443          int x, y;          int x, y, z;
1444            
1445            // Apply macros
1446            size_t macro_start = 0;
1447            size_t macro_end = 0;
1448            std::string macro_value;
1449            while ((macro_start = value.find("$", macro_start + macro_value.size())) != std::string::npos)
1450            {
1451                macro_end = value.find_first_not_of(MACRO_NAME_CHARS, macro_start + 1);
1452                size_t macro_len = macro_end - macro_start;
1453                std::string macro_name = value.substr(macro_start, macro_len);
1454                if (_defined_macros.count(macro_name) != 0)
1455                {
1456                    macro_value = _defined_macros[macro_name];
1457                    value.replace(macro_start, macro_len, macro_value);
1458                }
1459                else
1460                {
1461                    std::cerr << "Macro '" << macro_name << "' referenced on line ";
1462                    std::cerr << currentLine << " is undefined." << std::endl;
1463                    return;
1464                }
1465            }
1466            
1467            if (_current_section == CURVE) {
1468                if (sscanf(key.c_str(), "v%d", &x)) {
1469                    if (x < 0 || x > 127) {
1470                        std::cerr << "Invalid curve index: " << x << std::endl;
1471                    }
1472                    _current_curve->v[x] = check(key, 0.0f, 1.0f, ToFloat(value));
1473                } else {
1474                    std::cerr << "The opcode '" << key << "' in section <curve> is unsupported by libsfz!" << std::endl;
1475                }
1476                
1477                return;
1478            }
1479    
1480          // sample definition          // sample definition
1481          if ("sample" == key)          if ("sample" == key)
1482          {          {
1483              std::string path = default_path + value;              std::string path = default_path + value;
1484              #ifndef WIN32              #ifndef WIN32
1485              for (int i = 0; i < path.length(); i++) if( path[i] == '\\') path[i] = '/';              for (int i = 0; i < path.length(); i++) if (path[i] == '\\') path[i] = '/';
1486                bool absolute = path[0] == '/';
1487                #else
1488                bool absolute = path[0] == '/' || path[0] == '\\' ||
1489                    (path.length() >= 2 && isalpha(path[0]) && path[1] == ':');
1490              #endif              #endif
1491              path = currentDir + LinuxSampler::File::DirSeparator + path; // TODO: check for absolute path              if (!absolute) path = currentDir + LinuxSampler::File::DirSeparator + path;
   
1492              if(pCurDef) pCurDef->sample = path;              if(pCurDef) pCurDef->sample = path;
1493              return;              return;
1494          }          }
# Line 922  namespace sfz Line 1500  namespace sfz
1500              {              {
1501              case CONTROL:              case CONTROL:
1502                  default_path = value;                  default_path = value;
1503                    break;
1504                default:
1505                    ; // noop
1506              }              }
1507              return;              return;
1508          }          }
# Line 931  namespace sfz Line 1512  namespace sfz
1512              {              {
1513              case CONTROL:              case CONTROL:
1514                  octave_offset = ToInt(value);                  octave_offset = ToInt(value);
1515                    break;
1516                default:
1517                    ; // noop
1518              }              }
1519              return;              return;
1520          }          }
# Line 940  namespace sfz Line 1524  namespace sfz
1524              {              {
1525              case CONTROL:              case CONTROL:
1526                  note_offset = ToInt(value);                  note_offset = ToInt(value);
1527                    break;
1528                default:
1529                    ; // noop
1530              }              }
1531              return;              return;
1532          }          }
# Line 1018  namespace sfz Line 1605  namespace sfz
1605          else if ("loopstart" == key) pCurDef->loop_start = ToInt(value); // nonstandard          else if ("loopstart" == key) pCurDef->loop_start = ToInt(value); // nonstandard
1606          else if ("loop_end" == key) pCurDef->loop_end = ToInt(value);          else if ("loop_end" == key) pCurDef->loop_end = ToInt(value);
1607          else if ("loopend" == key) pCurDef->loop_end = ToInt(value); // nonstandard          else if ("loopend" == key) pCurDef->loop_end = ToInt(value); // nonstandard
1608            else if ("offset" == key) pCurDef->offset = ToInt(value);
1609          else if ("sync_beats" == key) pCurDef->sync_beats = ToInt(value);          else if ("sync_beats" == key) pCurDef->sync_beats = ToInt(value);
1610          else if ("sync_offset" == key) pCurDef->sync_offset = ToInt(value);          else if ("sync_offset" == key) pCurDef->sync_offset = ToInt(value);
1611    
1612          // amplifier          // amplifier
1613          else if ("volume"   == key) pCurDef->volume = ToFloat(value);          else if ("volume"   == key) pCurDef->volume = ToFloat(value);
1614            else if ("amplitude" == key) pCurDef->amplitude = ToFloat(value);
1615          else if ("pan"      == key) pCurDef->pan = ToFloat(value);          else if ("pan"      == key) pCurDef->pan = ToFloat(value);
1616          else if ("width"    == key) pCurDef->width = ToFloat(value);          else if ("width"    == key) pCurDef->width = ToFloat(value);
1617          else if ("position" == key) pCurDef->position = ToFloat(value);          else if ("position" == key) pCurDef->position = ToFloat(value);
# Line 1030  namespace sfz Line 1619  namespace sfz
1619          else if ("amp_keycenter" == key) pCurDef->amp_keycenter = parseKey(value);          else if ("amp_keycenter" == key) pCurDef->amp_keycenter = parseKey(value);
1620          else if ("amp_veltrack"  == key) pCurDef->amp_veltrack = ToFloat(value);          else if ("amp_veltrack"  == key) pCurDef->amp_veltrack = ToFloat(value);
1621          else if ("amp_random"  == key) pCurDef->amp_random = ToFloat(value);          else if ("amp_random"  == key) pCurDef->amp_random = ToFloat(value);
1622          else if ("rt_decay"    == key) pCurDef->rt_decay = ToFloat(value);          else if ("rt_decay" == key || "rtdecay" == key) pCurDef->rt_decay = ToFloat(value);
1623          else if ("xfin_lokey"  == key) pCurDef->xfin_lokey = parseKey(value);          else if ("xfin_lokey"  == key) pCurDef->xfin_lokey = parseKey(value);
1624          else if ("xfin_hikey"  == key) pCurDef->xfin_hikey = parseKey(value);          else if ("xfin_hikey"  == key) pCurDef->xfin_hikey = parseKey(value);
1625          else if ("xfout_lokey" == key) pCurDef->xfout_lokey = parseKey(value);          else if ("xfout_lokey" == key) pCurDef->xfout_lokey = parseKey(value);
# Line 1064  namespace sfz Line 1653  namespace sfz
1653          else if ("pitch_random" == key) pCurDef->pitch_random = ToInt(value);          else if ("pitch_random" == key) pCurDef->pitch_random = ToInt(value);
1654          else if ("bend_up" == key || "bendup" == key) pCurDef->bend_up = ToInt(value);          else if ("bend_up" == key || "bendup" == key) pCurDef->bend_up = ToInt(value);
1655          else if ("bend_down" == key || "benddown" == key) pCurDef->bend_down = ToInt(value);          else if ("bend_down" == key || "benddown" == key) pCurDef->bend_down = ToInt(value);
1656          else if ("bend_step" == key) pCurDef->bend_step = ToInt(value);          else if ("bend_step" == key || "bendstep" == key) pCurDef->bend_step = ToInt(value);
1657    
1658          // filter          // filter
1659          else if ("fil_type" == key || "filtype" == key)          else if ("fil_type" == key || "filtype" == key)
# Line 1103  namespace sfz Line 1692  namespace sfz
1692          }          }
1693          else if ("cutoff"  == key) pCurDef->cutoff = ToFloat(value);          else if ("cutoff"  == key) pCurDef->cutoff = ToFloat(value);
1694          else if ("cutoff2" == key) pCurDef->cutoff2 = ToFloat(value);          else if ("cutoff2" == key) pCurDef->cutoff2 = ToFloat(value);
1695          else if ("cutoff_chanaft"  == key) pCurDef->cutoff_chanaft = ToInt(value);          else if ("cutoff_chanaft"  == key) {
1696          else if ("cutoff2_chanaft" == key) pCurDef->cutoff2_chanaft = ToInt(value);              pCurDef->cutoff_chanaft = check(key, -9600, 9600, ToInt(value));
1697                pCurDef->cutoff_oncc.add( CC(128, check(key, -9600, 9600, ToInt(value))) );
1698            } else if ("cutoff2_chanaft" == key) pCurDef->cutoff2_chanaft = ToInt(value);
1699          else if ("cutoff_polyaft"  == key) pCurDef->cutoff_polyaft = ToInt(value);          else if ("cutoff_polyaft"  == key) pCurDef->cutoff_polyaft = ToInt(value);
1700          else if ("cutoff2_polyaft" == key) pCurDef->cutoff2_polyaft = ToInt(value);          else if ("cutoff2_polyaft" == key) pCurDef->cutoff2_polyaft = ToInt(value);
1701          else if ("resonance"  == key) pCurDef->resonance = ToFloat(value);          else if ("resonance"  == key) pCurDef->resonance = ToFloat(value);
# Line 1138  namespace sfz Line 1729  namespace sfz
1729          else if (sscanf(key.c_str(), "amp_velcurve_%d", &x)) {          else if (sscanf(key.c_str(), "amp_velcurve_%d", &x)) {
1730              pCurDef->amp_velcurve.set(x, ToFloat(value));              pCurDef->amp_velcurve.set(x, ToFloat(value));
1731          }          }
1732            
         // CCs  
         else if (key.find("cc") != std::string::npos)  
         {  
             std::string::size_type delimiter_index = key.find("cc");  
             std::string key_cc = key.substr(0, delimiter_index);  
             int num_cc = ToInt(key.substr(delimiter_index + 2));  
   
             // input controls  
             if ("lo" == key_cc) pCurDef->locc.set(num_cc, ToInt(value));  
             else if ("hi" == key_cc) pCurDef->hicc.set(num_cc, ToInt(value));  
             else if ("start_lo" == key_cc) pCurDef->start_locc.set(num_cc, ToInt(value));  
             else if ("start_hi" == key_cc) pCurDef->start_hicc.set(num_cc, ToInt(value));  
             else if ("stop_lo" == key_cc) pCurDef->stop_locc.set(num_cc, ToInt(value));  
             else if ("stop_hi" == key_cc) pCurDef->stop_hicc.set(num_cc, ToInt(value));  
             else if ("on_lo" == key_cc) pCurDef->on_locc.set(num_cc, ToInt(value));  
             else if ("on_hi" == key_cc) pCurDef->on_hicc.set(num_cc, ToInt(value));  
   
             // sample player  
             else if ("delay_on" == key_cc) pCurDef->delay_oncc.set(num_cc, ToFloat(value));  
             else if ("delay_samples_on" == key_cc) pCurDef->delay_samples_oncc.set(num_cc, ToInt(value));  
             else if ("offset_on" == key_cc) pCurDef->offset_oncc.set(num_cc, ToInt(value));  
   
             // amplifier  
             else if ("gain_on"  == key_cc || "gain_" == key_cc) pCurDef->gain_oncc.set(num_cc, ToFloat(value));  
             else if ("xfin_lo"  == key_cc) pCurDef->xfin_locc.set(num_cc, ToInt(value));  
             else if ("xfin_hi"  == key_cc) pCurDef->xfin_hicc.set(num_cc, ToInt(value));  
             else if ("xfout_lo" == key_cc) pCurDef->xfout_locc.set(num_cc, ToInt(value));  
             else if ("xfout_hi" == key_cc) pCurDef->xfout_hicc.set(num_cc, ToInt(value));  
   
             // filter  
             else if ("cutoff_on"  == key_cc || "cutoff_" == key_cc) pCurDef->cutoff_oncc.set(num_cc, ToInt(value));  
             else if ("cutoff2_on" == key_cc) pCurDef->cutoff2_oncc.set(num_cc, ToInt(value));  
             else if ("cutoff_smooth"  == key_cc) pCurDef->cutoff_smoothcc.set(num_cc, ToInt(value));  
             else if ("cutoff2_smooth" == key_cc) pCurDef->cutoff2_smoothcc.set(num_cc, ToInt(value));  
             else if ("cutoff_step"  == key_cc) pCurDef->cutoff_stepcc.set(num_cc, ToInt(value));  
             else if ("cutoff2_step" == key_cc) pCurDef->cutoff2_stepcc.set(num_cc, ToInt(value));  
             else if ("cutoff_curve" == key_cc) pCurDef->cutoff_curvecc.set(num_cc, ToInt(value));  
             else if ("cutoff2_curve" == key_cc) pCurDef->cutoff2_curvecc.set(num_cc, ToInt(value));  
             else if ("resonance_on" == key_cc) pCurDef->resonance_oncc.set(num_cc, ToInt(value));  
             else if ("resonance2_on" == key_cc) pCurDef->resonance2_oncc.set(num_cc, ToInt(value));  
             else if ("resonance_smooth" == key_cc) pCurDef->resonance_smoothcc.set(num_cc, ToInt(value));  
             else if ("resonance2_smooth" == key_cc) pCurDef->resonance2_smoothcc.set(num_cc, ToInt(value));  
             else if ("resonance_step" == key_cc) pCurDef->resonance_stepcc.set(num_cc, ToInt(value));  
             else if ("resonance2_step" == key_cc) pCurDef->resonance2_stepcc.set(num_cc, ToInt(value));  
             else if ("resonance_curve" == key_cc) pCurDef->resonance_curvecc.set(num_cc, ToInt(value));  
             else if ("resonance2_curve" == key_cc) pCurDef->resonance2_curvecc.set(num_cc, ToInt(value));  
   
             // per voice equalizer  
             else if ("eq1_freq_on" == key_cc || "eq1_freq" == key_cc) pCurDef->eq1_freq_oncc.set(num_cc, ToInt(value));  
             else if ("eq2_freq_on" == key_cc || "eq2_freq" == key_cc) pCurDef->eq2_freq_oncc.set(num_cc, ToInt(value));  
             else if ("eq3_freq_on" == key_cc || "eq3_freq" == key_cc) pCurDef->eq3_freq_oncc.set(num_cc, ToInt(value));  
             else if ("eq1_bw_on" == key_cc || "eq1_bw" == key_cc) pCurDef->eq1_bw_oncc.set(num_cc, ToInt(value));  
             else if ("eq2_bw_on" == key_cc || "eq2_bw" == key_cc) pCurDef->eq2_bw_oncc.set(num_cc, ToInt(value));  
             else if ("eq3_bw_on" == key_cc || "eq3_bw" == key_cc) pCurDef->eq3_bw_oncc.set(num_cc, ToInt(value));  
             else if ("eq1_gain_on" == key_cc || "eq1_gain" == key_cc) pCurDef->eq1_gain_oncc.set(num_cc, ToInt(value));  
             else if ("eq2_gain_on" == key_cc || "eq2_gain" == key_cc) pCurDef->eq2_gain_oncc.set(num_cc, ToInt(value));  
             else if ("eq3_gain_on" == key_cc || "eq3_gain" == key_cc) pCurDef->eq3_gain_oncc.set(num_cc, ToInt(value));  
             else std::cerr << "The opcode '" << key << "' is unsupported by libsfz!" << std::endl;  
         }  
1733          // v2 envelope generators          // v2 envelope generators
1734          else if (sscanf(key.c_str(), "eg%d%n", &x, &y)) {          else if (sscanf(key.c_str(), "eg%d%n", &x, &y)) {
1735              const char* s = key.c_str() + y;              const char* s = key.c_str() + y;
1736              if (sscanf(s, "_time%d", &y)) egnode(x, y).time = ToFloat(value);              if (sscanf(s, "_time%d%n", &y, &z)) {
1737              else if (sscanf(s, "_level%d", &y)) egnode(x, y).level = ToFloat(value);                  const char* s2 = s + z;
1738                    if (strcmp(s2, "") == 0) egnode(x, y).time = check(key, 0.0f, 100.0f, ToFloat(value));
1739                    else if (sscanf(s2, "_oncc%d", &z)) egnode(x, y).time_oncc.add( CC(z, check(key, 0.0f, 100.0f, ToFloat(value))) );
1740                } else if (sscanf(s, "_level%d%n", &y, &z)) {
1741                    const char* s2 = s + z;
1742                    if (strcmp(s2, "") == 0) egnode(x, y).level = check(key, 0.0f, 1.0f, ToFloat(value));
1743                    else if (sscanf(s2, "_oncc%d", &z)) egnode(x, y).level_oncc.add( CC(z, check(key, 0.0f, 1.0f, ToFloat(value))) );
1744                }
1745              else if (sscanf(s, "_shape%d", &y)) egnode(x, y).shape = ToFloat(value);              else if (sscanf(s, "_shape%d", &y)) egnode(x, y).shape = ToFloat(value);
1746              else if (sscanf(s, "_curve%d", &y)) egnode(x, y).curve = ToFloat(value);              else if (sscanf(s, "_curve%d", &y)) egnode(x, y).curve = ToFloat(value);
1747              else if (strcmp(s, "_sustain") == 0) eg(x).sustain = ToInt(value);              else if (strcmp(s, "_sustain") == 0) eg(x).sustain = ToInt(value);
1748              else if (strcmp(s, "_loop") == 0) eg(x).loop = ToInt(value);              else if (strcmp(s, "_loop") == 0) eg(x).loop = ToInt(value);
1749              else if (strcmp(s, "_loop_count") == 0) eg(x).loop_count = ToInt(value);              else if (strcmp(s, "_loop_count") == 0) eg(x).loop_count = ToInt(value);
1750              else if (strcmp(s, "_amplitude") == 0) eg(x).amplitude = ToFloat(value);              else if (strcmp(s, "_amplitude") == 0) eg(x).amplitude = ToFloat(value);
1751                else if (sscanf(s, "_amplitude_oncc%d", &y)) eg(x).amplitude_oncc.add( CC(y, check(key, 0.0f, 100.0f, ToFloat(value))) );
1752                else if (strcmp(s, "_volume") == 0) eg(x).volume = check(key, -144.0f, 6.0f, ToFloat(value));
1753                else if (sscanf(s, "_volume_oncc%d", &y)) eg(x).volume_oncc.add( CC(y, check(key, -144.0f, 6.0f, ToFloat(value))) );
1754              else if (strcmp(s, "_cutoff") == 0) eg(x).cutoff = ToFloat(value);              else if (strcmp(s, "_cutoff") == 0) eg(x).cutoff = ToFloat(value);
1755                else if (sscanf(s, "_cutoff_oncc%d", &y)) eg(x).cutoff_oncc.add( CC(y, check(key, -9600, 9600, ToInt(value))) );
1756                else if (strcmp(s, "_pitch") == 0) eg(x).pitch = check(key, -9600, 9600, ToInt(value));
1757                else if (sscanf(s, "_pitch_oncc%d", &y)) eg(x).pitch_oncc.add( CC(y, check(key, -9600, 9600, ToInt(value))) );
1758                else if (strcmp(s, "_resonance") == 0) eg(x).resonance = check(key, 0.0f, 40.0f, ToFloat(value));
1759                else if (sscanf(s, "_resonance_oncc%d", &y)) eg(x).resonance_oncc.add( CC(y, check(key, 0.0f, 40.0f, ToFloat(value))) );
1760                else if (strcmp(s, "_pan") == 0) eg(x).pan = check(key, -100.0f, 100.0f, ToFloat(value));
1761                else if (strcmp(s, "_pan_curve") == 0) eg(x).pan_curve = check(key, 0, 30000, ToInt(value));
1762                else if (sscanf(s, "_pan_oncc%d", &y)) eg(x).pan_oncc.add( CC(y, check(key, -100.0f, 100.0f, ToFloat(value))) );
1763                else if (sscanf(s, "_pan_curvecc%d", &y)) eg(x).pan_curvecc.add( CC(y, 0.0f, check(key, 0, 30000, ToInt(value))) );
1764                else if (strcmp(s, "_eq1freq") == 0) eg(x).eq1freq = check(key, 0.0f, 30000.0f, ToFloat(value));
1765                else if (strcmp(s, "_eq2freq") == 0) eg(x).eq2freq = check(key, 0.0f, 30000.0f, ToFloat(value));
1766                else if (strcmp(s, "_eq3freq") == 0) eg(x).eq3freq = check(key, 0.0f, 30000.0f, ToFloat(value));
1767                else if (strcmp(s, "_eq1bw") == 0) eg(x).eq1bw = check(key, 0.001f, 4.0f, ToFloat(value));
1768                else if (strcmp(s, "_eq2bw") == 0) eg(x).eq2bw = check(key, 0.001f, 4.0f, ToFloat(value));
1769                else if (strcmp(s, "_eq3bw") == 0) eg(x).eq3bw = check(key, 0.001f, 4.0f, ToFloat(value));
1770                else if (strcmp(s, "_eq1gain") == 0) eg(x).eq1gain = check(key, -96.0f, 24.0f, ToFloat(value));
1771                else if (strcmp(s, "_eq2gain") == 0) eg(x).eq2gain = check(key, -96.0f, 24.0f, ToFloat(value));
1772                else if (strcmp(s, "_eq3gain") == 0) eg(x).eq3gain = check(key, -96.0f, 24.0f, ToFloat(value));
1773                else if (sscanf(s, "_eq1freq_oncc%d", &y)) eg(x).eq1freq_oncc.add( CC(y, check(key, 0.0f, 30000.0f, ToFloat(value))) );
1774                else if (sscanf(s, "_eq2freq_oncc%d", &y)) eg(x).eq2freq_oncc.add( CC(y, check(key, 0.0f, 30000.0f, ToFloat(value))) );
1775                else if (sscanf(s, "_eq3freq_oncc%d", &y)) eg(x).eq3freq_oncc.add( CC(y, check(key, 0.0f, 30000.0f, ToFloat(value))) );
1776                else if (sscanf(s, "_eq1bw_oncc%d", &y)) eg(x).eq1bw_oncc.add( CC(y, check(key, 0.001f, 4.0f, ToFloat(value))) );
1777                else if (sscanf(s, "_eq2bw_oncc%d", &y)) eg(x).eq2bw_oncc.add( CC(y, check(key, 0.001f, 4.0f, ToFloat(value))) );
1778                else if (sscanf(s, "_eq3bw_oncc%d", &y)) eg(x).eq3bw_oncc.add( CC(y, check(key, 0.001f, 4.0f, ToFloat(value))) );
1779                else if (sscanf(s, "_eq1gain_oncc%d", &y)) eg(x).eq1gain_oncc.add( CC(y, check(key, -96.0f, 24.0f, ToFloat(value))) );
1780                else if (sscanf(s, "_eq2gain_oncc%d", &y)) eg(x).eq2gain_oncc.add( CC(y, check(key, -96.0f, 24.0f, ToFloat(value))) );
1781                else if (sscanf(s, "_eq3gain_oncc%d", &y)) eg(x).eq3gain_oncc.add( CC(y, check(key, -96.0f, 24.0f, ToFloat(value))) );
1782              else std::cerr << "The opcode '" << key << "' is unsupported by libsfz!" << std::endl;              else std::cerr << "The opcode '" << key << "' is unsupported by libsfz!" << std::endl;
1783          }          }
1784    
# Line 1220  namespace sfz Line 1789  namespace sfz
1789          else if ("ampeg_hold"   == key) pCurDef->ampeg_hold = ToFloat(value);          else if ("ampeg_hold"   == key) pCurDef->ampeg_hold = ToFloat(value);
1790          else if ("ampeg_decay"   == key) pCurDef->ampeg_decay = ToFloat(value);          else if ("ampeg_decay"   == key) pCurDef->ampeg_decay = ToFloat(value);
1791          else if ("ampeg_sustain"   == key) pCurDef->ampeg_sustain = ToFloat(value);          else if ("ampeg_sustain"   == key) pCurDef->ampeg_sustain = ToFloat(value);
1792          else if ("ampeg_release"   == key) pCurDef->ampeg_release = ToFloat(value);          else if ("ampeg_release" == key) pCurDef->ampeg_release = ToFloat(value);
1793            else if ("ampeg_vel2delay" == key) pCurDef->ampeg_vel2delay = ToFloat(value);
1794            else if ("ampeg_vel2attack" == key) pCurDef->ampeg_vel2attack = ToFloat(value);
1795            else if ("ampeg_vel2hold" == key) pCurDef->ampeg_vel2hold = ToFloat(value);
1796            else if ("ampeg_vel2decay" == key) pCurDef->ampeg_vel2decay = ToFloat(value);
1797            else if ("ampeg_vel2sustain" == key) pCurDef->ampeg_vel2sustain = ToFloat(value);
1798            else if ("ampeg_vel2release" == key) pCurDef->ampeg_vel2release = ToFloat(value);
1799          else if ("fileg_delay"   == key) pCurDef->fileg_delay = ToFloat(value);          else if ("fileg_delay"   == key) pCurDef->fileg_delay = ToFloat(value);
1800          else if ("fileg_start"   == key) pCurDef->fileg_start = ToFloat(value);          else if ("fileg_start"   == key) pCurDef->fileg_start = ToFloat(value);
1801          else if ("fileg_attack"   == key) pCurDef->fileg_attack = ToFloat(value);          else if ("fileg_attack"   == key) pCurDef->fileg_attack = ToFloat(value);
# Line 1228  namespace sfz Line 1803  namespace sfz
1803          else if ("fileg_decay"   == key) pCurDef->fileg_decay = ToFloat(value);          else if ("fileg_decay"   == key) pCurDef->fileg_decay = ToFloat(value);
1804          else if ("fileg_sustain"   == key) pCurDef->fileg_sustain = ToFloat(value);          else if ("fileg_sustain"   == key) pCurDef->fileg_sustain = ToFloat(value);
1805          else if ("fileg_release"   == key) pCurDef->fileg_release = ToFloat(value);          else if ("fileg_release"   == key) pCurDef->fileg_release = ToFloat(value);
1806            else if ("fileg_depth"   == key) pCurDef->fileg_depth = check(key, -12000, 12000, ToInt(value));
1807            else if ("fileg_vel2delay"   == key) pCurDef->fileg_vel2delay = check(key, -100.0f, 100.0f, ToFloat(value));
1808            else if ("fileg_vel2attack"  == key) pCurDef->fileg_vel2attack = ToFloat(value);
1809            else if ("fileg_vel2hold"    == key) pCurDef->fileg_vel2hold = ToFloat(value);
1810            else if ("fileg_vel2decay"   == key) pCurDef->fileg_vel2decay = ToFloat(value);
1811            else if ("fileg_vel2sustain" == key) pCurDef->fileg_vel2sustain = ToFloat(value);
1812            else if ("fileg_vel2release" == key) pCurDef->fileg_vel2release = ToFloat(value);
1813          else if ("pitcheg_delay"   == key) pCurDef->pitcheg_delay = ToFloat(value);          else if ("pitcheg_delay"   == key) pCurDef->pitcheg_delay = ToFloat(value);
1814          else if ("pitcheg_start"   == key) pCurDef->pitcheg_start = ToFloat(value);          else if ("pitcheg_start"   == key) pCurDef->pitcheg_start = ToFloat(value);
1815          else if ("pitcheg_attack"   == key) pCurDef->pitcheg_attack = ToFloat(value);          else if ("pitcheg_attack"  == key) pCurDef->pitcheg_attack = ToFloat(value);
1816          else if ("pitcheg_hold"   == key) pCurDef->pitcheg_hold = ToFloat(value);          else if ("pitcheg_hold"    == key) pCurDef->pitcheg_hold = ToFloat(value);
1817          else if ("pitcheg_decay"   == key) pCurDef->pitcheg_decay = ToFloat(value);          else if ("pitcheg_decay"   == key) pCurDef->pitcheg_decay = ToFloat(value);
1818          else if ("pitcheg_sustain"   == key) pCurDef->pitcheg_sustain = ToFloat(value);          else if ("pitcheg_sustain" == key) pCurDef->pitcheg_sustain = ToFloat(value);
1819          else if ("pitcheg_release"   == key) pCurDef->pitcheg_release = ToFloat(value);          else if ("pitcheg_release" == key) pCurDef->pitcheg_release = ToFloat(value);
1820            else if ("pitcheg_depth"   == key) pCurDef->pitcheg_depth = check(key, -12000, 12000, ToInt(value));
1821            else if ("pitcheg_vel2delay"   == key) pCurDef->pitcheg_vel2delay = check(key, -100.0f, 100.0f, ToFloat(value));
1822            else if ("pitcheg_vel2attack"  == key) pCurDef->pitcheg_vel2attack = ToFloat(value);
1823            else if ("pitcheg_vel2hold"    == key) pCurDef->pitcheg_vel2hold = ToFloat(value);
1824            else if ("pitcheg_vel2decay"   == key) pCurDef->pitcheg_vel2decay = ToFloat(value);
1825            else if ("pitcheg_vel2sustain" == key) pCurDef->pitcheg_vel2sustain = ToFloat(value);
1826            else if ("pitcheg_vel2release" == key) pCurDef->pitcheg_vel2release = ToFloat(value);
1827            
1828    
1829          // v1 LFO          // v1 LFO
1830          else if ("amplfo_delay" == key) pCurDef->amplfo_delay = ToFloat(value);          else if ("amplfo_delay" == key) pCurDef->amplfo_delay = ToFloat(value);
1831          else if ("amplfo_fade" == key) pCurDef->amplfo_fade = ToFloat(value);          else if ("amplfo_fade" == key) pCurDef->amplfo_fade = ToFloat(value);
1832          else if ("amplfo_freq" == key) pCurDef->amplfo_freq = ToFloat(value);          else if ("amplfo_freq" == key) pCurDef->amplfo_freq = ToFloat(value);
1833            else if ("amplfo_freqchanaft" == key) pCurDef->amplfo_freqcc.add( CC(128, check(key, -200.0f, 200.0f, ToFloat(value))) );
1834          else if ("amplfo_depth" == key) pCurDef->amplfo_depth = ToFloat(value);          else if ("amplfo_depth" == key) pCurDef->amplfo_depth = ToFloat(value);
1835            else if ("amplfo_depthchanaft" == key) pCurDef->amplfo_depthcc.add( CC(128, check(key, -10.0f, 10.0f, ToFloat(value))) );
1836          else if ("fillfo_delay" == key) pCurDef->fillfo_delay = ToFloat(value);          else if ("fillfo_delay" == key) pCurDef->fillfo_delay = ToFloat(value);
1837          else if ("fillfo_fade" == key) pCurDef->fillfo_fade = ToFloat(value);          else if ("fillfo_fade" == key) pCurDef->fillfo_fade = ToFloat(value);
1838          else if ("fillfo_freq" == key) pCurDef->fillfo_freq = ToFloat(value);          else if ("fillfo_freq" == key) pCurDef->fillfo_freq = ToFloat(value);
1839            else if ("fillfo_freqchanaft" == key) pCurDef->fillfo_freqcc.add( CC(128, check(key, -200.0f, 200.0f, ToFloat(value))) );
1840          else if ("fillfo_depth" == key) pCurDef->fillfo_depth = ToFloat(value);          else if ("fillfo_depth" == key) pCurDef->fillfo_depth = ToFloat(value);
1841            else if ("fillfo_depthchanaft" == key) pCurDef->fillfo_depthcc.add( CC(128, check(key, -1200, 1200, ToInt(value))) );
1842          else if ("pitchlfo_delay" == key) pCurDef->pitchlfo_delay = ToFloat(value);          else if ("pitchlfo_delay" == key) pCurDef->pitchlfo_delay = ToFloat(value);
1843          else if ("pitchlfo_fade" == key) pCurDef->pitchlfo_fade = ToFloat(value);          else if ("pitchlfo_fade" == key) pCurDef->pitchlfo_fade = ToFloat(value);
1844          else if ("pitchlfo_freq" == key) pCurDef->pitchlfo_freq = ToFloat(value);          else if ("pitchlfo_freq" == key) pCurDef->pitchlfo_freq = ToFloat(value);
1845            else if ("pitchlfo_freqchanaft" == key) pCurDef->pitchlfo_freqcc.add( CC(128, check(key, -200.0f, 200.0f, ToFloat(value))) );
1846          else if ("pitchlfo_depth" == key) pCurDef->pitchlfo_depth = ToInt(value);          else if ("pitchlfo_depth" == key) pCurDef->pitchlfo_depth = ToInt(value);
1847            else if ("pitchlfo_depthchanaft" == key) pCurDef->pitchlfo_depthcc.add( CC(128, check(key, -1200, 1200, ToInt(value))) );
1848            
1849            
1850            // v2 LFO
1851            else if (sscanf(key.c_str(), "lfo%d%n", &x, &y)) {
1852                const char* s = key.c_str() + y;
1853                if (strcmp(s, "_freq") == 0) lfo(x).freq = check(key, 0.0f, 20.0f, ToFloat(value));
1854                else if (sscanf(s, "_freq_oncc%d", &y)) lfo(x).freq_oncc.add( CC(y, check(key, 0.0f, 20.0f, ToFloat(value))) );
1855                else if (sscanf(s, "_freq_smoothcc%d", &y)) lfo(x).freq_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1856                else if (sscanf(s, "_freq_stepcc%d", &y)) lfo(x).freq_stepcc.add( CC(y, 0, -1, 0, check(key, 0.0f, 20.0f, ToFloat(value))) );
1857                else if (strcmp(s, "_wave") == 0) lfo(x).wave = ToInt(value);
1858                else if (strcmp(s, "_delay") == 0) lfo(x).delay = check(key, 0.0f, 100.0f, ToFloat(value));
1859                else if (sscanf(s, "_delay_oncc%d", &y)) lfo(x).delay_oncc.add( CC(y, check(key, 0.0f, 100.0f, ToFloat(value))) );
1860                else if (strcmp(s, "_fade") == 0) lfo(x).fade = check(key, 0.0f, 100.0f, ToFloat(value));
1861                else if (sscanf(s, "_fade_oncc%d", &y)) lfo(x).fade_oncc.add( CC(y, check(key, 0.0f, 100.0f, ToFloat(value))) );
1862                else if (strcmp(s, "_phase") == 0) lfo(x).phase = check(key, 0.0f, 360.0f, ToFloat(value));
1863                else if (sscanf(s, "_phase_oncc%d", &y)) lfo(x).phase_oncc.add( CC(y, check(key, 0.0f, 360.0f, ToFloat(value))) );
1864                else if (strcmp(s, "_volume") == 0) lfo(x).volume = check(key, -144.0f, 6.0f, ToFloat(value));
1865                else if (sscanf(s, "_volume_oncc%d", &y)) lfo(x).volume_oncc.add( CC(y, check(key, -144.0f, 6.0f, ToFloat(value))) );
1866                else if (sscanf(s, "_volume_smoothcc%d", &y)) lfo(x).volume_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1867                else if (sscanf(s, "_volume_stepcc%d", &y)) lfo(x).volume_stepcc.add( CC(y, 0, -1, 0, check(key, -20.0f, 20.0f, ToFloat(value))) );
1868                else if (strcmp(s, "_pitch") == 0) lfo(x).pitch = check(key, -9600, 9600, ToInt(value));
1869                else if (sscanf(s, "_pitch_oncc%d", &y)) lfo(x).pitch_oncc.add( CC(y, check(key, -9600, 9600, ToInt(value))) );
1870                else if (sscanf(s, "_pitch_smoothcc%d", &y)) lfo(x).pitch_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1871                else if (sscanf(s, "_pitch_stepcc%d", &y)) lfo(x).pitch_stepcc.add( CC(y, 0, -1, 0, check(key, -9600, 9600, ToInt(value))) );
1872                else if (strcmp(s, "_cutoff") == 0) lfo(x).cutoff = check(key, -9600, 9600, ToInt(value));
1873                else if (sscanf(s, "_cutoff_oncc%d", &y)) lfo(x).cutoff_oncc.add( CC(y, check(key, -9600, 9600, ToInt(value))) );
1874                else if (sscanf(s, "_cutoff_smoothcc%d", &y)) lfo(x).cutoff_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1875                else if (sscanf(s, "_cutoff_stepcc%d", &y)) lfo(x).cutoff_stepcc.add( CC(y, 0, -1, 0, check(key, -9600, 9600, ToInt(value))) );
1876                else if (strcmp(s, "_resonance") == 0) lfo(x).resonance = check(key, 0.0f, 40.0f, ToFloat(value));
1877                else if (sscanf(s, "_resonance_oncc%d", &y)) lfo(x).resonance_oncc.add( CC(y, check(key, 0.0f, 40.0f, ToFloat(value))) );
1878                else if (sscanf(s, "_resonance_smoothcc%d", &y)) lfo(x).resonance_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1879                else if (sscanf(s, "_resonance_stepcc%d", &y)) lfo(x).resonance_stepcc.add( CC(y, 0, -1, 0, check(key, 0.0f, 40.0f, ToFloat(value))) );
1880                else if (strcmp(s, "_pan") == 0) lfo(x).pan = check(key, -100.0f, 100.0f, ToFloat(value));
1881                else if (sscanf(s, "_pan_oncc%d", &y)) lfo(x).pan_oncc.add( CC(y, check(key, -100.0f, 100.0f, ToFloat(value))) );
1882                else if (sscanf(s, "_pan_smoothcc%d", &y)) lfo(x).pan_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1883                else if (sscanf(s, "_pan_stepcc%d", &y)) lfo(x).pan_stepcc.add( CC(y, 0, -1, 0, check(key, -100.0f, 100.0f, ToFloat(value))) );
1884                else if (strcmp(s, "_eq1freq") == 0) lfo(x).eq1freq = check(key, 0.0f, 30000.0f, ToFloat(value));
1885                else if (strcmp(s, "_eq2freq") == 0) lfo(x).eq2freq = check(key, 0.0f, 30000.0f, ToFloat(value));
1886                else if (strcmp(s, "_eq3freq") == 0) lfo(x).eq3freq = check(key, 0.0f, 30000.0f, ToFloat(value));
1887                else if (strcmp(s, "_eq1bw") == 0) lfo(x).eq1bw = check(key, 0.001f, 4.0f, ToFloat(value));
1888                else if (strcmp(s, "_eq2bw") == 0) lfo(x).eq2bw = check(key, 0.001f, 4.0f, ToFloat(value));
1889                else if (strcmp(s, "_eq3bw") == 0) lfo(x).eq3bw = check(key, 0.001f, 4.0f, ToFloat(value));
1890                else if (strcmp(s, "_eq1gain") == 0) lfo(x).eq1gain = check(key, -96.0f, 24.0f, ToFloat(value));
1891                else if (strcmp(s, "_eq2gain") == 0) lfo(x).eq2gain = check(key, -96.0f, 24.0f, ToFloat(value));
1892                else if (strcmp(s, "_eq3gain") == 0) lfo(x).eq3gain = check(key, -96.0f, 24.0f, ToFloat(value));
1893                else if (sscanf(s, "_eq1freq_oncc%d", &y)) lfo(x).eq1freq_oncc.add( CC(y, check(key, 0.0f, 30000.0f, ToFloat(value))) );
1894                else if (sscanf(s, "_eq1freq_smoothcc%d", &y)) lfo(x).eq1freq_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1895                else if (sscanf(s, "_eq1freq_stepcc%d", &y)) lfo(x).eq1freq_stepcc.add( CC(y, 0, -1, 0, check(key, 0.0f, 4294967296.0f, ToFloat(value))) );
1896                else if (sscanf(s, "_eq2freq_oncc%d", &y)) lfo(x).eq2freq_oncc.add( CC(y, check(key, 0.0f, 30000.0f, ToFloat(value))) );
1897                else if (sscanf(s, "_eq2freq_smoothcc%d", &y)) lfo(x).eq2freq_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1898                else if (sscanf(s, "_eq2freq_stepcc%d", &y)) lfo(x).eq2freq_stepcc.add( CC(y, 0, -1, 0, check(key, 0.0f, 4294967296.0f, ToFloat(value))) );
1899                else if (sscanf(s, "_eq3freq_oncc%d", &y)) lfo(x).eq3freq_oncc.add( CC(y, check(key, 0.0f, 30000.0f, ToFloat(value))) );
1900                else if (sscanf(s, "_eq3freq_smoothcc%d", &y)) lfo(x).eq3freq_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1901                else if (sscanf(s, "_eq3freq_stepcc%d", &y)) lfo(x).eq3freq_stepcc.add( CC(y, 0, -1, 0, check(key, 0.0f, 4294967296.0f, ToFloat(value))) );
1902                else if (sscanf(s, "_eq1bw_oncc%d", &y)) lfo(x).eq1bw_oncc.add( CC(y, check(key, 0.001f, 4.0f, ToFloat(value))) );
1903                else if (sscanf(s, "_eq1bw_smoothcc%d", &y)) lfo(x).eq1bw_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1904                else if (sscanf(s, "_eq1bw_stepcc%d", &y)) lfo(x).eq1bw_stepcc.add( CC(y, 0, -1, 0, check(key, 0.0f, 4294967296.0f, ToFloat(value))) );
1905                else if (sscanf(s, "_eq2bw_oncc%d", &y)) lfo(x).eq2bw_oncc.add( CC(y, check(key, 0.001f, 4.0f, ToFloat(value))) );
1906                else if (sscanf(s, "_eq2bw_smoothcc%d", &y)) lfo(x).eq2bw_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1907                else if (sscanf(s, "_eq2bw_stepcc%d", &y)) lfo(x).eq2bw_stepcc.add( CC(y, 0, -1, 0, check(key, 0.0f, 4294967296.0f, ToFloat(value))) );
1908                else if (sscanf(s, "_eq3bw_oncc%d", &y)) lfo(x).eq3bw_oncc.add( CC(y, check(key, 0.001f, 4.0f, ToFloat(value))) );
1909                else if (sscanf(s, "_eq3bw_smoothcc%d", &y)) lfo(x).eq3bw_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1910                else if (sscanf(s, "_eq3bw_stepcc%d", &y)) lfo(x).eq3bw_stepcc.add( CC(y, 0, -1, 0, check(key, 0.0f, 4294967296.0f, ToFloat(value))) );
1911                else if (sscanf(s, "_eq1gain_oncc%d", &y)) lfo(x).eq1gain_oncc.add( CC(y, check(key, -96.0f, 24.0f, ToFloat(value))) );
1912                else if (sscanf(s, "_eq1gain_smoothcc%d", &y)) lfo(x).eq1gain_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1913                else if (sscanf(s, "_eq1gain_stepcc%d", &y)) lfo(x).eq1gain_stepcc.add( CC(y, 0, -1, 0, check(key, 0.0f, 4294967296.0f, ToFloat(value))) );
1914                else if (sscanf(s, "_eq2gain_oncc%d", &y)) lfo(x).eq2gain_oncc.add( CC(y, check(key, -96.0f, 24.0f, ToFloat(value))) );
1915                else if (sscanf(s, "_eq2gain_smoothcc%d", &y)) lfo(x).eq2gain_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1916                else if (sscanf(s, "_eq2gain_stepcc%d", &y)) lfo(x).eq2gain_stepcc.add( CC(y, 0, -1, 0, check(key, 0.0f, 4294967296.0f, ToFloat(value))) );
1917                else if (sscanf(s, "_eq3gain_oncc%d", &y)) lfo(x).eq3gain_oncc.add( CC(y, check(key, -96.0f, 24.0f, ToFloat(value))) );
1918                else if (sscanf(s, "_eq3gain_smoothcc%d", &y)) lfo(x).eq3gain_smoothcc.add( CC(y, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1919                else if (sscanf(s, "_eq3gain_stepcc%d", &y)) lfo(x).eq3gain_stepcc.add( CC(y, 0, -1, 0, check(key, 0.0f, 4294967296.0f, ToFloat(value))) );
1920                else std::cerr << "The opcode '" << key << "' is unsupported by libsfz!" << std::endl;
1921            }
1922            
1923            // CCs
1924            else if (key.find("cc") != std::string::npos)
1925            {
1926                std::string::size_type delimiter_index = key.find("cc");
1927                std::string key_cc = key.substr(0, delimiter_index);
1928                if (key_cc.size() > 3 && !strcmp(key_cc.c_str() + (key_cc.size() - 3), "_on")) {
1929                    key_cc = key_cc.substr(0, key_cc.size() - 3);
1930                }
1931                
1932                // Apply macros
1933                std::string num_cc_str = key.substr(delimiter_index + 2);
1934                
1935                if (num_cc_str[0] == '$')
1936                {
1937                    if (_defined_macros.count(num_cc_str) == 0)
1938                    {
1939                        std::cerr << "Macro '" << value << "' referenced on line ";
1940                        std::cerr << currentLine << " is undefined." << std::endl;
1941                        return;
1942                    }
1943                    
1944                    num_cc_str = _defined_macros[num_cc_str];
1945                }
1946    
1947                int num_cc = ToInt(num_cc_str);
1948                if (num_cc < 0 || num_cc > 127) {
1949                    std::cerr << "sfz: WARNING: CC " << num_cc << " of opcode '" << key;
1950                    std::cerr << "' is an invalid MIDI controller number." << std::endl;
1951                }
1952    
1953                // input controls
1954                if ("lo" == key_cc) pCurDef->locc.set(num_cc, ToInt(value));
1955                else if ("hi" == key_cc) pCurDef->hicc.set(num_cc, ToInt(value));
1956                else if ("start_lo" == key_cc) pCurDef->start_locc.set(num_cc, ToInt(value));
1957                else if ("start_hi" == key_cc) pCurDef->start_hicc.set(num_cc, ToInt(value));
1958                else if ("stop_lo" == key_cc) pCurDef->stop_locc.set(num_cc, ToInt(value));
1959                else if ("stop_hi" == key_cc) pCurDef->stop_hicc.set(num_cc, ToInt(value));
1960                else if ("on_lo" == key_cc) pCurDef->on_locc.set(num_cc, ToInt(value));
1961                else if ("on_hi" == key_cc) pCurDef->on_hicc.set(num_cc, ToInt(value));
1962    
1963                // sample player
1964                else if ("delay" == key_cc) pCurDef->delay_oncc.set(num_cc, ToFloat(value));
1965                else if ("delay_samples" == key_cc) pCurDef->delay_samples_oncc.set(num_cc, ToInt(value));
1966                else if ("offset" == key_cc) pCurDef->offset_oncc.set(num_cc, ToInt(value));
1967    
1968                // amplifier
1969                else if ("gain"  == key_cc || "gain_" == key_cc) pCurDef->gain_oncc.set(num_cc, ToFloat(value));
1970                else if ("xfin_lo"  == key_cc) pCurDef->xfin_locc.set(num_cc, ToInt(value));
1971                else if ("xfin_hi"  == key_cc) pCurDef->xfin_hicc.set(num_cc, ToInt(value));
1972                else if ("xfout_lo" == key_cc) pCurDef->xfout_locc.set(num_cc, ToInt(value));
1973                else if ("xfout_hi" == key_cc) pCurDef->xfout_hicc.set(num_cc, ToInt(value));
1974                
1975                // pitch
1976                else if ("pitch" == key_cc) pCurDef->pitch_oncc.add( CC(num_cc, check(key, -9600, 9600, ToInt(value))) );
1977                else if ("pitch_smooth" == key_cc) pCurDef->pitch_smoothcc.add( CC(num_cc, 0, -1, check(key, 0.0f, 100000.0f /* max? */, ToFloat(value))) );
1978                else if ("pitch_curve" == key_cc) pCurDef->pitch_curvecc.add( CC(num_cc, 0, check(key, 0, 30000, ToInt(value))) );
1979                else if ("pitch_step" == key_cc) pCurDef->pitch_stepcc.add( CC(num_cc, 0, -1, 0, check(key, 0, 1200, ToInt(value))) );
1980    
1981                // filter
1982                else if ("cutoff"  == key_cc || "cutoff_" == key_cc) {
1983                    pCurDef->cutoff_oncc.add( CC(num_cc, check(key, -9600, 9600, ToInt(value))) );
1984                } else if ("cutoff2" == key_cc) pCurDef->cutoff2_oncc.add( CC(num_cc, check(key, -9600, 9600, ToInt(value))) );
1985                else if ("cutoff_smooth"  == key_cc) pCurDef->cutoff_smoothcc.add( CC(num_cc, 0, -1, check(key, 0.0f, 100000.0f /* max? */, ToFloat(value))) );
1986                else if ("cutoff2_smooth" == key_cc) pCurDef->cutoff2_smoothcc.add( CC(num_cc, 0, -1, check(key, 0.0f, 100000.0f /* max? */, ToFloat(value))) );
1987                else if ("cutoff_step"  == key_cc) pCurDef->cutoff_stepcc.add( CC(num_cc, 0, -1, 0, check(key, -1200, 1200, ToInt(value))) );
1988                else if ("cutoff2_step" == key_cc) pCurDef->cutoff2_stepcc.add( CC(num_cc, 0, -1, 0, check(key, -1200, 1200, ToInt(value))) );
1989                else if ("cutoff_curve" == key_cc) pCurDef->cutoff_curvecc.add( CC(num_cc, 0, check(key, 0, 30000, ToInt(value))) );
1990                else if ("cutoff2_curve" == key_cc) pCurDef->cutoff2_curvecc.add( CC(num_cc, 0, check(key, 0, 30000, ToInt(value))) );
1991                else if ("resonance" == key_cc) pCurDef->resonance_oncc.add( CC(num_cc, check(key, 0.0f, 40.0f, ToFloat(value))) );
1992                else if ("resonance2" == key_cc) pCurDef->resonance2_oncc.add( CC(num_cc, check(key, 0.0f, 40.0f, ToFloat(value))) );
1993                else if ("resonance_smooth" == key_cc) pCurDef->resonance_smoothcc.add( CC(num_cc, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1994                else if ("resonance2_smooth" == key_cc) pCurDef->resonance2_smoothcc.add( CC(num_cc, 0, -1, check(key, 0, 100000 /* max? */, ToInt(value))) );
1995                else if ("resonance_step" == key_cc) pCurDef->resonance_stepcc.add( CC(num_cc, 0, -1, 0, check(key, 0.0f, 40.0f, ToFloat(value))) );
1996                else if ("resonance2_step" == key_cc) pCurDef->resonance2_stepcc.add( CC(num_cc, 0, -1, 0, check(key, 0.0f, 40.0f, ToFloat(value))) );
1997                else if ("resonance_curve" == key_cc) pCurDef->resonance_curvecc.add( CC(num_cc, 0.0f, check(key, 0, 30000, ToInt(value))) );
1998                else if ("resonance2_curve" == key_cc) pCurDef->resonance2_curvecc.add( CC(num_cc, 0.0f, check(key, 0, 30000, ToInt(value))) );
1999    
2000                // per voice equalizer
2001                else if ("eq1_freq" == key_cc) pCurDef->eq1_freq_oncc.set(num_cc, ToInt(value));
2002                else if ("eq2_freq" == key_cc) pCurDef->eq2_freq_oncc.set(num_cc, ToInt(value));
2003                else if ("eq3_freq" == key_cc) pCurDef->eq3_freq_oncc.set(num_cc, ToInt(value));
2004                else if ("eq1_bw" == key_cc) pCurDef->eq1_bw_oncc.set(num_cc, ToInt(value));
2005                else if ("eq2_bw" == key_cc) pCurDef->eq2_bw_oncc.set(num_cc, ToInt(value));
2006                else if ("eq3_bw" == key_cc) pCurDef->eq3_bw_oncc.set(num_cc, ToInt(value));
2007                else if ("eq1_gain" == key_cc) pCurDef->eq1_gain_oncc.set(num_cc, ToInt(value));
2008                else if ("eq2_gain" == key_cc) pCurDef->eq2_gain_oncc.set(num_cc, ToInt(value));
2009                else if ("eq3_gain" == key_cc) pCurDef->eq3_gain_oncc.set(num_cc, ToInt(value));
2010                
2011                else if ("ampeg_delay"   == key_cc) pCurDef->ampeg_delaycc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2012                else if ("ampeg_start"   == key_cc) pCurDef->ampeg_startcc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2013                else if ("ampeg_attack"  == key_cc) pCurDef->ampeg_attackcc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2014                else if ("ampeg_hold"    == key_cc) pCurDef->ampeg_holdcc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2015                else if ("ampeg_decay"   == key_cc) pCurDef->ampeg_decaycc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2016                else if ("ampeg_sustain" == key_cc) pCurDef->ampeg_sustaincc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2017                else if ("ampeg_release" == key_cc) pCurDef->ampeg_releasecc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2018                
2019                else if ("fileg_delay"   == key_cc) pCurDef->fileg_delay_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2020                else if ("fileg_start"   == key_cc) pCurDef->fileg_start_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2021                else if ("fileg_attack"  == key_cc) pCurDef->fileg_attack_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2022                else if ("fileg_hold"    == key_cc) pCurDef->fileg_hold_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2023                else if ("fileg_decay"   == key_cc) pCurDef->fileg_decay_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2024                else if ("fileg_sustain" == key_cc) pCurDef->fileg_sustain_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2025                else if ("fileg_release" == key_cc) pCurDef->fileg_release_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2026                else if ("fileg_depth"   == key_cc) pCurDef->fileg_depth_oncc.add( CC(num_cc, check(key, -12000, 12000, ToInt(value))) );
2027                
2028                else if ("pitcheg_delay"   == key_cc) pCurDef->pitcheg_delay_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2029                else if ("pitcheg_start"   == key_cc) pCurDef->pitcheg_start_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2030                else if ("pitcheg_attack"  == key_cc) pCurDef->pitcheg_attack_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2031                else if ("pitcheg_hold"    == key_cc) pCurDef->pitcheg_hold_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2032                else if ("pitcheg_decay"   == key_cc) pCurDef->pitcheg_decay_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2033                else if ("pitcheg_sustain" == key_cc) pCurDef->pitcheg_sustain_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2034                else if ("pitcheg_release" == key_cc) pCurDef->pitcheg_release_oncc.add( CC(num_cc, check(key, -100.0f, 100.0f, ToFloat(value))) );
2035                else if ("pitcheg_depth"   == key_cc) pCurDef->pitcheg_depth_oncc.add( CC(num_cc, check(key, -12000, 12000, ToInt(value))) );
2036                
2037                else if ("pitchlfo_delay" == key_cc) pCurDef->pitchlfo_delay_oncc.add( CC(num_cc, check(key, 0.0f, 100.0f, ToFloat(value))) );
2038                else if ("pitchlfo_fade" == key_cc) pCurDef->pitchlfo_fade_oncc.add( CC(num_cc, check(key, 0.0f, 100.0f, ToFloat(value))) );
2039                else if ("pitchlfo_depth" == key_cc) pCurDef->pitchlfo_depthcc.add( CC(num_cc, check(key, -1200, 1200, ToInt(value))) );
2040                else if ("pitchlfo_freq" == key_cc) pCurDef->pitchlfo_freqcc.add( CC(num_cc, check(key, -200.0f, 200.0f, ToFloat(value))) );
2041                else if ("fillfo_delay" == key_cc) pCurDef->fillfo_delay_oncc.add( CC(num_cc, check(key, 0.0f, 100.0f, ToFloat(value))) );
2042                else if ("fillfo_fade" == key_cc) pCurDef->fillfo_fade_oncc.add( CC(num_cc, check(key, 0.0f, 100.0f, ToFloat(value))) );
2043                else if ("fillfo_depth" == key_cc) pCurDef->fillfo_depthcc.add( CC(num_cc, check(key, -1200, 1200, ToInt(value))) );
2044                else if ("fillfo_freq" == key_cc) pCurDef->fillfo_freqcc.add( CC(num_cc, check(key, -200.0f, 200.0f, ToFloat(value))) );
2045                else if ("amplfo_delay" == key_cc) pCurDef->amplfo_delay_oncc.add( CC(num_cc, check(key, 0.0f, 100.0f, ToFloat(value))) );
2046                else if ("amplfo_fade" == key_cc) pCurDef->amplfo_fade_oncc.add( CC(num_cc, check(key, 0.0f, 100.0f, ToFloat(value))) );
2047                else if ("amplfo_depth" == key_cc) pCurDef->amplfo_depthcc.add( CC(num_cc, check(key, -10.0f, 10.0f, ToFloat(value))) );
2048                else if ("amplfo_freq" == key_cc) pCurDef->amplfo_freqcc.add( CC(num_cc, check(key, -200.0f, 200.0f, ToFloat(value))) );
2049                else if ("volume" == key_cc) pCurDef->volume_oncc.add( CC(num_cc, check(key, -144.0f, 100.0f, ToFloat(value))) );
2050                else if ("volume_curve" == key_cc) pCurDef->volume_curvecc.add( CC(num_cc, 0, check(key, 0, 30000, ToInt(value))) );
2051                else if ("volume_smooth" == key_cc) pCurDef->volume_smoothcc.add( CC(num_cc, 0, -1, check(key, 0.0f, 100000.0f /* max? */, ToFloat(value))) );
2052                else if ("volume_step" == key_cc) pCurDef->volume_stepcc.add( CC(num_cc, 0, -1, 0, check(key, -20.0f, 20.0f, ToFloat(value))) );
2053                else if ("pan" == key_cc) pCurDef->pan_oncc.add( CC(num_cc, check(key, -200.0f, 200.0f, ToFloat(value))) );
2054                else if ("pan_curve" == key_cc) pCurDef->pan_curvecc.add( CC(num_cc, 0, check(key, 0, 30000, ToInt(value))) );
2055                else if ("pan_smooth" == key_cc) pCurDef->pan_smoothcc.add( CC(num_cc, 0, -1, check(key, 0.0f, 100000.0f /* max? */, ToFloat(value))) );
2056                else if ("pan_step" == key_cc) pCurDef->pan_stepcc.add( CC(num_cc, 0, -1, 0, check(key, -100.0f, 100.0f, ToFloat(value))) );
2057                else if ("set_" == key_cc) _instrument->initialCCValues[num_cc] = (num_cc < 128) ? check(key, 0, 127, ToInt(value)) : ToInt(value);
2058                else std::cerr << "The opcode '" << key << "' is unsupported by libsfz!" << std::endl;
2059            }
2060    
2061          else {          else {
2062              std::cerr << "The opcode '" << key << "' is unsupported by libsfz!" << std::endl;              std::cerr << "The opcode '" << key << "' is unsupported by libsfz!" << std::endl;
# Line 1293  namespace sfz Line 2101  namespace sfz
2101    
2102      EGNode::EGNode() : time(0), level(0), shape(0), curve(0) {      EGNode::EGNode() : time(0), level(0), shape(0), curve(0) {
2103      }      }
2104        
2105        void EGNode::Copy(const EGNode& egNode) {
2106            time  = egNode.time;
2107            level = egNode.level;
2108            shape = egNode.shape;
2109            curve = egNode.curve;
2110            
2111            time_oncc = egNode.time_oncc;
2112            level_oncc = egNode.level_oncc;
2113        }
2114    
2115      EG::EG() :      EG::EG() :
2116          sustain(0), loop(0), loop_count(0),          sustain(0), loop(0), loop_count(0), amplitude(0), volume(-200), /* less than -144 dB is considered unset */
2117          amplitude(0), cutoff(0) {          cutoff(0), pitch(0), resonance(0), pan(0), pan_curve(-1)
2118        { }
2119        
2120        void EG::Copy(const EG& eg) {
2121            EqImpl::Copy(static_cast<const EqImpl>(eg));
2122            
2123            sustain    = eg.sustain;
2124            loop       = eg.loop;
2125            loop_count = eg.loop_count;
2126            amplitude  = eg.amplitude;
2127            volume     = eg.volume;
2128            cutoff     = eg.cutoff;
2129            pitch      = eg.pitch;
2130            resonance  = eg.resonance;
2131            pan        = eg.pan;
2132            pan_curve  = eg.pan_curve;
2133            node       = eg.node;
2134            
2135            amplitude_oncc = eg.amplitude_oncc;
2136            volume_oncc    = eg.volume_oncc;
2137            cutoff_oncc    = eg.cutoff_oncc;
2138            pitch_oncc     = eg.pitch_oncc;
2139            resonance_oncc = eg.resonance_oncc;
2140            pan_oncc       = eg.pan_oncc;
2141            pan_curvecc    = eg.pan_curvecc;
2142        }
2143        
2144        LFO::LFO():
2145            delay(0),
2146            freq(-1), /* -1 is used to determine whether the LFO was initialized */
2147            fade(0), phase(0), wave(0), volume(0), pitch(0), cutoff(0), resonance(0), pan(0)
2148        {
2149        }
2150    
2151        void LFO::Copy(const LFO& lfo) {
2152            EqSmoothStepImpl::Copy(static_cast<const EqSmoothStepImpl>(lfo));
2153            
2154            delay      = lfo.delay;
2155            freq       = lfo.freq;
2156            fade       = lfo.fade;
2157            phase      = lfo.phase;
2158            wave       = lfo.wave;
2159            volume     = lfo.volume;
2160            pitch      = lfo.pitch;
2161            cutoff     = lfo.cutoff;
2162            resonance  = lfo.resonance;
2163            pan        = lfo.pan;
2164            
2165            delay_oncc      = lfo.delay_oncc;
2166            freq_oncc       = lfo.freq_oncc;
2167            freq_smoothcc   = lfo.freq_smoothcc;
2168            freq_stepcc     = lfo.freq_stepcc;
2169            fade_oncc       = lfo.fade_oncc;
2170            phase_oncc      = lfo.phase_oncc;
2171            pitch_oncc      = lfo.pitch_oncc;
2172            pitch_smoothcc  = lfo.pitch_smoothcc;
2173            pitch_stepcc    = lfo.pitch_stepcc;
2174            volume_oncc     = lfo.volume_oncc;
2175            volume_smoothcc = lfo.volume_smoothcc;
2176            volume_stepcc   = lfo.volume_stepcc;
2177            pan_oncc        = lfo.pan_oncc;
2178            pan_smoothcc    = lfo.pan_smoothcc;
2179            pan_stepcc      = lfo.pan_stepcc;
2180            cutoff_oncc     = lfo.cutoff_oncc;
2181            cutoff_smoothcc = lfo.cutoff_smoothcc;
2182            cutoff_stepcc   = lfo.cutoff_stepcc;
2183            resonance_oncc     = lfo.resonance_oncc;
2184            resonance_smoothcc = lfo.resonance_smoothcc;
2185            resonance_stepcc   = lfo.resonance_stepcc;
2186        }
2187        
2188        EqImpl::EqImpl() {
2189            eq1freq = eq2freq = eq3freq = 0;
2190            eq1bw = eq2bw = eq3bw = 0;
2191            eq1gain = eq2gain = eq3gain = 0;
2192        }
2193        
2194        void EqImpl::Copy(const EqImpl& eq) {
2195            eq1freq = eq.eq1freq;
2196            eq2freq = eq.eq2freq;
2197            eq3freq = eq.eq3freq;
2198            eq1bw   = eq.eq1bw;
2199            eq2bw   = eq.eq2bw;
2200            eq3bw   = eq.eq3bw;
2201            eq1gain = eq.eq1gain;
2202            eq2gain = eq.eq2gain;
2203            eq3gain = eq.eq3gain;
2204            
2205            eq1freq_oncc = eq.eq1freq_oncc;
2206            eq2freq_oncc = eq.eq2freq_oncc;
2207            eq3freq_oncc = eq.eq3freq_oncc;
2208            eq1bw_oncc   = eq.eq1bw_oncc;
2209            eq2bw_oncc   = eq.eq2bw_oncc;
2210            eq3bw_oncc   = eq.eq3bw_oncc;
2211            eq1gain_oncc = eq.eq1gain_oncc;
2212            eq2gain_oncc = eq.eq2gain_oncc;
2213            eq3gain_oncc = eq.eq3gain_oncc;
2214        }
2215        
2216        bool EqImpl::HasEq() {
2217            return eq1freq || eq2freq || eq3freq || eq1bw || eq2bw || eq3bw ||
2218                   eq1gain || eq2gain || eq3gain || !eq1gain_oncc.empty() ||
2219                   !eq2gain_oncc.empty() || !eq3gain_oncc.empty() ||
2220                   !eq1freq_oncc.empty() || !eq2freq_oncc.empty() || !eq3freq_oncc.empty() ||
2221                   !eq1bw_oncc.empty() || !eq2bw_oncc.empty() || !eq3bw_oncc.empty();
2222        }
2223        
2224        void EqSmoothStepImpl::Copy(const EqSmoothStepImpl& eq) {
2225            EqImpl::Copy(eq);
2226            
2227            eq1freq_smoothcc = eq.eq1freq_smoothcc;
2228            eq2freq_smoothcc = eq.eq2freq_smoothcc;
2229            eq3freq_smoothcc = eq.eq3freq_smoothcc;
2230            eq1bw_smoothcc   = eq.eq1bw_smoothcc;
2231            eq2bw_smoothcc   = eq.eq2bw_smoothcc;
2232            eq3bw_smoothcc   = eq.eq3bw_smoothcc;
2233            eq1gain_smoothcc = eq.eq1gain_smoothcc;
2234            eq2gain_smoothcc = eq.eq2gain_smoothcc;
2235            eq3gain_smoothcc = eq.eq3gain_smoothcc;
2236            
2237            eq1freq_stepcc = eq.eq1freq_stepcc;
2238            eq2freq_stepcc = eq.eq2freq_stepcc;
2239            eq3freq_stepcc = eq.eq3freq_stepcc;
2240            eq1bw_stepcc   = eq.eq1bw_stepcc;
2241            eq2bw_stepcc   = eq.eq2bw_stepcc;
2242            eq3bw_stepcc   = eq.eq3bw_stepcc;
2243            eq1gain_stepcc = eq.eq1gain_stepcc;
2244            eq2gain_stepcc = eq.eq2gain_stepcc;
2245            eq3gain_stepcc = eq.eq3gain_stepcc;
2246        }
2247        
2248        void EqSmoothStepImpl::copySmoothValues() {
2249            File::copySmoothValues(eq1freq_smoothcc, eq1freq_oncc);
2250            eq1freq_smoothcc.clear();
2251            
2252            File::copySmoothValues(eq2freq_smoothcc, eq2freq_oncc);
2253            eq2freq_smoothcc.clear();
2254            
2255            File::copySmoothValues(eq3freq_smoothcc, eq3freq_oncc);
2256            eq3freq_smoothcc.clear();
2257            
2258            File::copySmoothValues(eq1bw_smoothcc, eq1bw_oncc);
2259            eq1bw_smoothcc.clear();
2260            
2261            File::copySmoothValues(eq2bw_smoothcc, eq2bw_oncc);
2262            eq2bw_smoothcc.clear();
2263            
2264            File::copySmoothValues(eq3bw_smoothcc, eq3bw_oncc);
2265            eq3bw_smoothcc.clear();
2266            
2267            File::copySmoothValues(eq1gain_smoothcc, eq1gain_oncc);
2268            eq1gain_smoothcc.clear();
2269            
2270            File::copySmoothValues(eq2gain_smoothcc, eq2gain_oncc);
2271            eq2gain_smoothcc.clear();
2272            
2273            File::copySmoothValues(eq3gain_smoothcc, eq3gain_oncc);
2274            eq3gain_smoothcc.clear();
2275        }
2276        
2277        void EqSmoothStepImpl::copyStepValues() {
2278            File::copyStepValues(eq1freq_stepcc, eq1freq_oncc);
2279            eq1freq_stepcc.clear();
2280            
2281            File::copyStepValues(eq2freq_stepcc, eq2freq_oncc);
2282            eq2freq_stepcc.clear();
2283            
2284            File::copyStepValues(eq3freq_stepcc, eq3freq_oncc);
2285            eq3freq_stepcc.clear();
2286            
2287            File::copyStepValues(eq1bw_stepcc, eq1bw_oncc);
2288            eq1bw_stepcc.clear();
2289            
2290            File::copyStepValues(eq2bw_stepcc, eq2bw_oncc);
2291            eq2bw_stepcc.clear();
2292            
2293            File::copyStepValues(eq3bw_stepcc, eq3bw_oncc);
2294            eq3bw_stepcc.clear();
2295            
2296            File::copyStepValues(eq1gain_stepcc, eq1gain_oncc);
2297            eq1gain_stepcc.clear();
2298            
2299            File::copyStepValues(eq2gain_stepcc, eq2gain_oncc);
2300            eq2gain_stepcc.clear();
2301            
2302            File::copyStepValues(eq3gain_stepcc, eq3gain_oncc);
2303            eq3gain_stepcc.clear();
2304      }      }
2305    
2306      EG& File::eg(int x) {      EG& File::eg(int x) {
# Line 1314  namespace sfz Line 2318  namespace sfz
2318          return e.node[y];          return e.node[y];
2319      }      }
2320    
2321        LFO& File::lfo(int x) {
2322            while (pCurDef->lfos.size() <= x) {
2323                pCurDef->lfos.add(LFO());
2324            }
2325            return pCurDef->lfos[x];
2326        }
2327    
2328  } // !namespace sfz  } // !namespace sfz

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