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

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Revision 2055 - (show annotations) (download)
Sat Jan 30 10:30:02 2010 UTC (14 years, 2 months ago) by persson
File size: 52468 byte(s)
* sfz engine: added support for v2 multiple stage envelope generators
* sfz engine: added a fine-tuned v1 envelope generator instead of
  using the one from the gig engine

1 /***************************************************************************
2 * *
3 * LinuxSampler - modular, streaming capable sampler *
4 * *
5 * Copyright (C) 2008 Anders Dahnielson <anders@dahnielson.com> *
6 * Copyright (C) 2009 - 2010 Anders Dahnielson and Grigor Iliev *
7 * *
8 * This program is free software; you can redistribute it and/or modify *
9 * it under the terms of the GNU General Public License as published by *
10 * the Free Software Foundation; either version 2 of the License, or *
11 * (at your option) any later version. *
12 * *
13 * This program is distributed in the hope that it will be useful, *
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
16 * GNU General Public License for more details. *
17 * *
18 * You should have received a copy of the GNU General Public License *
19 * along with this program; if not, write to the Free Software *
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, *
21 * MA 02111-1307 USA *
22 ***************************************************************************/
23
24 #include "sfz.h"
25
26 #include <iostream>
27 #include <sstream>
28 #include <cstdio>
29 #include <cstring>
30
31 #include "../../common/File.h"
32 #include "../../common/Path.h"
33 #include "../../common/global_private.h"
34
35 namespace sfz
36 {
37
38 Sample* SampleManager::FindSample(std::string samplePath) {
39 std::map<Sample*, std::set<Region*> >::iterator it = sampleMap.begin();
40 for (; it != sampleMap.end(); it++) {
41 if (it->first->GetFile() == samplePath) return it->first;
42 }
43
44 return NULL;
45 }
46
47 /////////////////////////////////////////////////////////////
48 // class optional
49
50 const optional_base::nothing_t optional_base::nothing;
51
52 /////////////////////////////////////////////////////////////
53 // class Articulation
54
55 Articulation::Articulation()
56 {
57 }
58
59 Articulation::~Articulation()
60 {
61 }
62
63 /////////////////////////////////////////////////////////////
64 // class Definition
65
66 Definition::Definition() :
67 locc(128), hicc(128), start_locc(128), start_hicc(128), stop_locc(128),
68 stop_hicc(128), on_locc(128), on_hicc(128), delay_oncc(128), delay_samples_oncc(128),
69 offset_oncc(128), amp_velcurve_(128), gain_oncc(128), xfin_locc(128), xfin_hicc(128),
70 xfout_locc(128), xfout_hicc(128), cutoff_oncc(128), cutoff2_oncc(128), cutoff_smoothcc(128),
71 cutoff2_smoothcc(128), cutoff_stepcc(128), cutoff2_stepcc(128), cutoff_curvecc(128),
72 cutoff2_curvecc(128), resonance_oncc(128), resonance2_oncc(128), resonance_smoothcc(128),
73 resonance2_smoothcc(128), resonance_stepcc(128), resonance2_stepcc(128),
74 resonance_curvecc(128), resonance2_curvecc(128), eq1_freq_oncc(128), eq2_freq_oncc(128),
75 eq3_freq_oncc(128), eq1_bw_oncc(128), eq2_bw_oncc(128), eq3_bw_oncc(128),
76 eq1_gain_oncc(128), eq2_gain_oncc(128), eq3_gain_oncc(128)
77
78 {
79 }
80
81 Definition::~Definition()
82 {
83 }
84
85 /////////////////////////////////////////////////////////////
86 // class Region
87
88 Region::Region()
89 {
90 pSample = NULL;
91 }
92
93 Region::~Region()
94 {
95 DestroySampleIfNotUsed();
96 }
97
98 Sample* Region::GetSample(bool create)
99 {
100 if(pSample == NULL && create) {
101 Sample* sf = GetInstrument()->GetSampleManager()->FindSample(sample);
102 if (sf != NULL) pSample = sf; // Reuse already created sample
103 else pSample = new Sample(sample);
104 GetInstrument()->GetSampleManager()->AddSampleConsumer(pSample, this);
105 }
106 return pSample;
107 }
108
109 void Region::DestroySampleIfNotUsed() {
110 if (pSample == NULL) return;
111 GetInstrument()->GetSampleManager()->RemoveSampleConsumer(pSample, this);
112 if (!GetInstrument()->GetSampleManager()->HasSampleConsumers(pSample)) {
113 GetInstrument()->GetSampleManager()->RemoveSample(pSample);
114 delete pSample;
115 pSample = NULL;
116 }
117 }
118
119 bool
120 Region::OnKey(uint8_t chan, uint8_t key, uint8_t vel,
121 int bend, uint8_t bpm, uint8_t chanaft, uint8_t polyaft,
122 uint8_t prog, float rand, trigger_t trig, uint8_t* cc,
123 float timer, uint8_t seq, bool* sw, uint8_t last_sw_key, uint8_t prev_sw_key)
124 {
125 // chan (MIDI channel)
126 // key (MIDI note)
127 // vel (MIDI velocity)
128
129 // bend (MIDI pitch bend)
130 // bpm (host BPM)
131 // chanaft (MIDI channel pressure)
132 // polyaft (MIDI polyphonic aftertouch)
133 // prog (MIDI program change)
134 // rand (generated random number)
135 // trigger (how it was triggered)
136 // cc (all 128 CC values)
137
138 // timer (time since previous region in the group was triggered)
139 // seq (the state of the region sequence counter)
140 // sw (the state of region key switches, 128 possible values)
141 // last_sw_key (the last key pressed in the key switch range)
142 // prev_sw_key (the previous note value)
143
144 bool is_triggered (
145 chan >= lochan && chan <= hichan &&
146 key >= lokey && key <= hikey &&
147 vel >= lovel && vel <= hivel &&
148 bend >= lobend && bend <= hibend &&
149 bpm >= lobpm && bpm <= hibpm &&
150 chanaft >= lochanaft && chanaft <= hichanaft &&
151 polyaft >= lopolyaft && polyaft <= hipolyaft &&
152 prog >= loprog && prog <= hiprog &&
153 rand >= lorand && rand <= hirand &&
154 timer >= lotimer && timer <= hitimer &&
155 seq == seq_position &&
156
157 ( (sw_lokey == -1 || sw_hikey == -1 || sw_last == -1) ||
158 ((sw_last >= sw_lokey && sw_last <= sw_hikey) ? (last_sw_key == sw_last) : true) ) &&
159
160 ( (sw_down == -1 || sw_lokey == -1 || sw_hikey == -1) ||
161 ((sw_down >= sw_lokey && sw_down <= sw_hikey) ? (sw[sw_down]) : true) ) &&
162
163 ( (sw_up == -1 || sw_lokey == -1 || sw_hikey == -1) ||
164 ((sw_up >= sw_lokey && sw_up <= sw_hikey) ? (!sw[sw_up]) : true) ) &&
165
166 ((sw_previous != -1) ? (prev_sw_key == sw_previous) : true) &&
167 ((trigger && trig) != 0)
168 );
169
170 if (!is_triggered)
171 return false;
172
173 for (int i = 0; i < 128; ++i)
174 {
175 if (locc[i] != -1 && hicc[i] != -1 && !(cc[i] >= locc[i] && cc[i] <= hicc[i]))
176 return false;
177 }
178
179 return true;
180 }
181
182 bool
183 Region::OnControl(uint8_t chan, uint8_t cont, uint8_t val,
184 int bend, uint8_t bpm, uint8_t chanaft, uint8_t polyaft,
185 uint8_t prog, float rand, trigger_t trig, uint8_t* cc,
186 float timer, uint8_t seq, bool* sw, uint8_t last_sw_key, uint8_t prev_sw_key)
187 {
188 // chan (MIDI channel)
189 // cont (MIDI controller)
190 // val (MIDI controller value)
191
192 // bend (MIDI pitch bend)
193 // bpm (host BPM)
194 // chanaft (MIDI channel pressure)
195 // polyaft (MIDI polyphonic aftertouch)
196 // prog (MIDI program change)
197 // rand (generated random number)
198 // trigger (how it was triggered)
199 // cc (all CC values)
200
201 // timer (time since previous region in the group was triggered)
202 // seq (the state of the region sequence counter)
203 // sw (the state of region key switches, 128 possible values)
204 // last_sw_key (the last key pressed in the key switch range)
205 // prev_sw_key (the previous note value)
206
207 bool is_triggered = (
208 chan >= lochan && chan <= hichan &&
209 ((val >= on_locc[cont] && val <= on_hicc[cont]) ||
210 (val >= start_locc[cont] && val <= start_hicc[cont])) &&
211 bend >= lobend && bend <= hibend &&
212 bpm >= lobpm && bpm <= hibpm &&
213 chanaft >= lochanaft && chanaft <= hichanaft &&
214 polyaft >= lopolyaft && polyaft <= hipolyaft &&
215 prog >= loprog && prog <= hiprog &&
216 rand >= lorand && rand <= hirand &&
217 timer >= lotimer && timer <= hitimer &&
218 seq == seq_position &&
219
220 ( (sw_lokey == -1 || sw_hikey == -1 || sw_last == -1) ||
221 ((sw_last >= sw_lokey && sw_last <= sw_hikey) ? (last_sw_key == sw_last) : true) ) &&
222
223 ( (sw_down == -1 || sw_lokey == -1 || sw_hikey == -1) ||
224 ((sw_down >= sw_lokey && sw_down <= sw_hikey) ? (sw[sw_down]) : true) ) &&
225
226 ( (sw_up == -1 || sw_lokey == -1 || sw_hikey == -1) ||
227 ((sw_up >= sw_lokey && sw_up <= sw_hikey) ? (!sw[sw_up]) : true) ) &&
228
229 ((sw_previous != -1) ? (prev_sw_key == sw_previous) : true) &&
230 ((trigger && trig) != 0)
231 );
232
233 if (!is_triggered)
234 return false;
235
236 for (int i = 0; i < 128; ++i)
237 {
238 if (locc[i] != -1 && hicc[i] != -1 && !(cc[i] >= locc[i] && cc[i] <= hicc[i]))
239 return false;
240 }
241
242 return true;
243 }
244
245 Articulation*
246 Region::GetArticulation(int bend, uint8_t bpm, uint8_t chanaft, uint8_t polyaft, uint8_t* cc)
247 {
248 return new Articulation(); //todo: implement GetArticulation()
249 }
250
251 bool Region::HasLoop() {
252 bool b = loop_mode == ::sfz::LOOP_CONTINUOUS || loop_mode == ::sfz::LOOP_SUSTAIN; // TODO: ONE_SHOT mode
253 return b && GetLoopStart() && GetLoopEnd() && GetLoopEnd() > GetLoopStart();
254 }
255
256 uint Region::GetLoopStart() {
257 return (!loop_start) ? 0 : *loop_start; // TODO: use sample loop when loop_start not defined
258 }
259
260 uint Region::GetLoopEnd() {
261 return (!loop_end) ? 0 : *loop_end; // TODO: use sample loop when loop_end not defined
262 }
263
264 uint Region::GetLoopCount() {
265 return (!count) ? 0 : *count;
266 }
267
268 /////////////////////////////////////////////////////////////
269 // class Instrument
270
271 Instrument::Instrument(std::string name, SampleManager* pSampleManager) : KeyBindings(128, false), KeySwitchBindings(128, false)
272 {
273 this->name = name;
274 this->pSampleManager = pSampleManager ? pSampleManager : this;
275 }
276
277 Instrument::~Instrument()
278 {
279 for(int i = 0; i < regions.size(); i++) {
280 delete (regions[i]);
281 }
282 regions.clear();
283 }
284
285 std::vector<Region*> Instrument::GetRegionsOnKey (
286 uint8_t chan, uint8_t key, uint8_t vel,
287 int bend, uint8_t bpm, uint8_t chanaft, uint8_t polyaft,
288 uint8_t prog, float rand, trigger_t trig, uint8_t* cc,
289 float timer, uint8_t seq, bool* sw, uint8_t last_sw_key, uint8_t prev_sw_key
290 ) {
291 std::vector<Region*> v;
292 for (int i = 0; i < regions.size(); i++) {
293 if (regions[i]->OnKey (
294 chan, key, vel, bend, bpm, chanaft, polyaft, prog,
295 rand, trig, cc, timer, seq, sw, last_sw_key, prev_sw_key)
296 ) { v.push_back(regions[i]); }
297 }
298
299 return v;
300 }
301
302 bool Instrument::DestroyRegion(Region* pRegion) {
303 for (std::vector<Region*>::iterator it = regions.begin(); it != regions.end(); it++) {
304 if(*it == pRegion) {
305 regions.erase(it);
306 delete pRegion;
307 return true;
308 }
309 }
310
311 return false;
312 }
313
314 bool Instrument::HasKeyBinding(uint8_t key) {
315 if (key > 127) return false;
316 return KeyBindings[key];
317 }
318
319 bool Instrument::HasKeySwitchBinding(uint8_t key) {
320 if (key > 127) return false;
321 return KeySwitchBindings[key];
322 }
323
324 /////////////////////////////////////////////////////////////
325 // class Group
326
327 Group::Group() :
328 id(0)
329 {
330 Reset();
331 }
332
333 Group::~Group()
334 {
335 }
336
337 void
338 Group::Reset()
339 {
340 // This is where all the default values are set.
341
342 // sample definition default
343 sample = "";
344
345 // input control
346 lochan = 1; hichan = 16;
347 lokey = 0; hikey = 127;
348 lovel = 0; hivel = 127;
349 lobend = -8192; hibend = 8192;
350 lobpm = 0; hibpm = 500;
351 lochanaft = 0; hichanaft = 127;
352 lopolyaft = 0; hipolyaft = 127;
353 loprog = 0; hiprog = 127;
354 lorand = 0.0; hirand = 1.0;
355 lotimer = 0.0; hitimer = 0.0;
356
357 seq_length = 1;
358 seq_position = 1;
359
360 sw_lokey = -1; sw_hikey = -1;
361 sw_last = -1;
362 sw_down = -1;
363 sw_up = -1;
364 sw_previous = -1;
365 sw_vel = VEL_CURRENT;
366
367 trigger = TRIGGER_ATTACK;
368
369 group = 0;
370 off_by.unset();
371 off_mode = OFF_FAST;
372
373 // sample player
374 count.unset();
375 delay.unset(); delay_random.unset();
376 delay_beats.unset(); stop_beats.unset();
377 delay_samples.unset();
378 end.unset();
379 loop_crossfade.unset();
380 offset.unset(); offset_random.unset();
381 loop_mode = NO_LOOP;
382 loop_start.unset(); loop_end.unset();
383 sync_beats.unset(); sync_offset.unset();
384
385 // amplifier
386 volume = 0;
387 pan = 0;
388 width = 100;
389 position = 0;
390 amp_keytrack = 0;
391 amp_keycenter = 60;
392 amp_veltrack = 100;
393 amp_random = 0;
394 rt_decay = 0;
395 xfin_lokey = 0; xfin_hikey = 0;
396 xfout_lokey = 127; xfout_hikey = 127;
397 xf_keycurve = POWER;
398 xfin_lovel = 0; xfin_hivel = 0;
399 xfout_lovel = 127; xfout_hivel = 127;
400 xf_velcurve = POWER;
401 xf_cccurve = POWER;
402
403 // pitch
404 transpose = 0;
405 tune = 0;
406 pitch_keycenter = 60;
407 pitch_keytrack = 100;
408 pitch_veltrack = 0;
409 pitch_random = 0;
410 bend_up = 200;
411 bend_down = -200;
412 bend_step = 1;
413
414 // filter
415 fil_type = LPF_2P;
416 cutoff.unset();
417 cutoff_chanaft = 0;
418 cutoff_polyaft = 0;
419 resonance = 0;
420 fil_keytrack = 0;
421 fil_keycenter = 60;
422 fil_veltrack = 0;
423 fil_random = 0;
424
425 fil2_type = LPF_2P;
426 cutoff2.unset();
427 cutoff2_chanaft = 0;
428 cutoff2_polyaft = 0;
429 resonance2 = 0;
430 fil2_keytrack = 0;
431 fil2_keycenter = 60;
432 fil2_veltrack = 0;
433 fil2_random = 0;
434
435 // per voice equalizer
436 eq1_freq = 50;
437 eq2_freq = 500;
438 eq3_freq = 5000;
439 eq1_vel2freq = 0;
440 eq2_vel2freq = 0;
441 eq3_vel2freq = 0;
442 eq1_bw = 1;
443 eq2_bw = 1;
444 eq3_bw = 1;
445 eq1_gain = 0;
446 eq2_gain = 0;
447 eq3_gain = 0;
448 eq1_vel2gain = 0;
449 eq2_vel2gain = 0;
450 eq3_vel2gain = 0;
451
452 // CCs
453 for (int i = 0; i < 128; ++i)
454 {
455 // input control
456 locc[i] = 0;
457 hicc[i] = 127;
458 start_locc[i] = -1;
459 start_hicc[i] = -1;
460 stop_locc[i] = -1;
461 stop_hicc[i] = -1;
462 on_locc[i] = -1;
463 on_hicc[i] = -1;
464
465 // sample player
466 delay_oncc[i].unset();
467 delay_samples_oncc[i].unset();
468 offset_oncc[i].unset();
469
470 // amplifier
471 amp_velcurve_[i] = 0; //fixme: 20 log (127^2 / i^2)
472 gain_oncc[i] = 0;
473 xfin_locc[i] = 0;
474 xfin_hicc[i] = 0;
475 xfout_locc[i] = 127;
476 xfout_hicc[i] = 127;
477
478 // filter
479 cutoff_oncc[i] = 0;
480 cutoff_smoothcc[i] = 0;
481 cutoff_stepcc[i] = 0;
482 cutoff_curvecc[i] = 0;
483 resonance_oncc[i] = 0;
484 resonance_smoothcc[i] = 0;
485 resonance_stepcc[i] = 0;
486 resonance_curvecc[i] = 0;
487
488 cutoff2_oncc[i] = 0;
489 cutoff2_smoothcc[i] = 0;
490 cutoff2_stepcc[i] = 0;
491 cutoff2_curvecc[i] = 0;
492 resonance2_oncc[i] = 0;
493 resonance2_smoothcc[i] = 0;
494 resonance2_stepcc[i] = 0;
495 resonance2_curvecc[i] = 0;
496
497 // per voice equalizer
498 eq1_freq_oncc[i] = 0;
499 eq2_freq_oncc[i] = 0;
500 eq3_freq_oncc[i] = 0;
501 eq1_bw_oncc[i] = 0;
502 eq2_bw_oncc[i] = 0;
503 eq3_bw_oncc[i] = 0;
504 eq1_gain_oncc[i] = 0;
505 eq2_gain_oncc[i] = 0;
506 eq3_gain_oncc[i] = 0;
507 }
508
509 eg.clear();
510
511 // deprecated
512 ampeg_delay = 0;
513 ampeg_start = 0; //in percentage
514 ampeg_attack = 0;
515 ampeg_hold = 0;
516 ampeg_decay = 0;
517 ampeg_sustain = 100; // in percentage
518 ampeg_release = 0;
519
520 fileg_delay = 0;
521 fileg_start = 0; //in percentage
522 fileg_attack = 0;
523 fileg_hold = 0;
524 fileg_decay = 0;
525 fileg_sustain = 100; // in percentage
526 fileg_release = 0;
527
528 pitcheg_delay = 0;
529 pitcheg_start = 0; //in percentage
530 pitcheg_attack = 0;
531 pitcheg_hold = 0;
532 pitcheg_decay = 0;
533 pitcheg_sustain = 100; // in percentage
534 pitcheg_release = 0;
535 }
536
537 Region*
538 Group::RegionFactory()
539 {
540 // This is where the current group setting are copied to the new region.
541
542 Region* region = new Region();
543
544 region->id = id++;
545
546 // sample definition
547 region->sample = sample;
548
549 // input control
550 region->lochan = lochan;
551 region->hichan = hichan;
552 region->lokey = lokey;
553 region->hikey = hikey;
554 region->lovel = lovel;
555 region->hivel = hivel;
556 region->locc = locc;
557 region->hicc = hicc;
558 region->lobend = lobend;
559 region->hibend = hibend;
560 region->lobpm = lobpm;
561 region->hibpm = hibpm;
562 region->lochanaft = lochanaft;
563 region->hichanaft = hichanaft;
564 region->lopolyaft = lopolyaft;
565 region->hipolyaft = hipolyaft;
566 region->loprog = loprog;
567 region->hiprog = hiprog;
568 region->lorand = lorand;
569 region->hirand = hirand;
570 region->lotimer = lotimer;
571 region->hitimer = hitimer;
572 region->seq_length = seq_length;
573 region->seq_position = seq_position;
574 region->start_locc = start_locc;
575 region->start_hicc = start_hicc;
576 region->stop_locc = stop_locc;
577 region->stop_hicc = stop_hicc;
578 region->sw_lokey = sw_lokey;
579 region->sw_hikey = sw_hikey;
580 region->sw_last = sw_last;
581 region->sw_down = sw_down;
582 region->sw_up = sw_up;
583 region->sw_previous = sw_previous;
584 region->sw_vel = sw_vel;
585 region->trigger = trigger;
586 region->group = group;
587 region->off_by = off_by;
588 region->off_mode = off_mode;
589 region->on_locc = on_locc;
590 region->on_hicc = on_hicc;
591
592 // sample player
593 region->count = count;
594 region->delay = delay;
595 region->delay_random = delay_random;
596 region->delay_oncc = delay_oncc;
597 region->delay_beats = delay_beats;
598 region->stop_beats = stop_beats;
599 region->delay_samples = delay_samples;
600 region->delay_samples_oncc = delay_samples_oncc;
601 region->end = end;
602 region->loop_crossfade = loop_crossfade;
603 region->offset = offset;
604 region->offset_random = offset_random;
605 region->offset_oncc = offset_oncc;
606 region->loop_mode = loop_mode;
607 region->loop_start = loop_start;
608 region->loop_end = loop_end;
609 region->sync_beats = sync_beats;
610 region->sync_offset = sync_offset;
611
612 // amplifier
613 region->volume = volume;
614 region->pan = pan;
615 region->width = width;
616 region->position = position;
617 region->amp_keytrack = amp_keytrack;
618 region->amp_keycenter = amp_keycenter;
619 region->amp_veltrack = amp_veltrack;
620 region->amp_velcurve_ = amp_velcurve_;
621 region->amp_random = amp_random;
622 region->rt_decay = rt_decay;
623 region->gain_oncc = gain_oncc;
624 region->xfin_lokey = xfin_lokey;
625 region->xfin_hikey = xfin_hikey;
626 region->xfout_lokey = xfout_lokey;
627 region->xfout_hikey = xfout_hikey;
628 region->xf_keycurve = xf_keycurve;
629 region->xfin_lovel = xfin_lovel;
630 region->xfin_hivel = xfin_lovel;
631 region->xfout_lovel = xfout_lovel;
632 region->xfout_hivel = xfout_hivel;
633 region->xf_velcurve = xf_velcurve;
634 region->xfin_locc = xfin_locc;
635 region->xfin_hicc = xfin_hicc;
636 region->xfout_locc = xfout_locc;
637 region->xfout_hicc = xfout_hicc;
638 region->xf_cccurve = xf_cccurve;
639
640 // pitch
641 region->transpose = transpose;
642 region->tune = tune;
643 region->pitch_keycenter = pitch_keycenter;
644 region->pitch_keytrack = pitch_keytrack;
645 region->pitch_veltrack = pitch_veltrack;
646 region->pitch_random = pitch_random;
647 region->bend_up = bend_up;
648 region->bend_down = bend_down;
649 region->bend_step = bend_step;
650
651 // filter
652 region->fil_type = fil_type;
653 region->cutoff = cutoff;
654 region->cutoff_oncc = cutoff_oncc;
655 region->cutoff_smoothcc = cutoff_smoothcc;
656 region->cutoff_stepcc = cutoff_stepcc;
657 region->cutoff_curvecc = cutoff_curvecc;
658 region->cutoff_chanaft = cutoff_chanaft;
659 region->cutoff_polyaft = cutoff_polyaft;
660 region->resonance = resonance;
661 region->resonance_oncc = resonance_oncc;
662 region->resonance_smoothcc = resonance_smoothcc;
663 region->resonance_stepcc = resonance_stepcc;
664 region->resonance_curvecc = resonance_curvecc;
665 region->fil_keytrack = fil_keytrack;
666 region->fil_keycenter = fil_keycenter;
667 region->fil_veltrack = fil_veltrack;
668 region->fil_random = fil_random;
669
670 region->fil2_type = fil2_type;
671 region->cutoff2 = cutoff2;
672 region->cutoff2_oncc = cutoff2_oncc;
673 region->cutoff2_smoothcc = cutoff2_smoothcc;
674 region->cutoff2_stepcc = cutoff2_stepcc;
675 region->cutoff2_curvecc = cutoff2_curvecc;
676 region->cutoff2_chanaft = cutoff2_chanaft;
677 region->cutoff2_polyaft = cutoff2_polyaft;
678 region->resonance2 = resonance2;
679 region->resonance2_oncc = resonance2_oncc;
680 region->resonance2_smoothcc = resonance2_smoothcc;
681 region->resonance2_stepcc = resonance2_stepcc;
682 region->resonance2_curvecc = resonance2_curvecc;
683 region->fil2_keytrack = fil2_keytrack;
684 region->fil2_keycenter = fil2_keycenter;
685 region->fil2_veltrack = fil2_veltrack;
686 region->fil2_random = fil2_random;
687
688 // per voice equalizer
689 region->eq1_freq = eq1_freq;
690 region->eq2_freq = eq2_freq;
691 region->eq3_freq = eq3_freq;
692 region->eq1_freq_oncc = eq1_freq_oncc;
693 region->eq2_freq_oncc = eq2_freq_oncc;
694 region->eq3_freq_oncc = eq3_freq_oncc;
695 region->eq1_vel2freq = eq1_vel2freq;
696 region->eq2_vel2freq = eq2_vel2freq;
697 region->eq3_vel2freq = eq3_vel2freq;
698 region->eq1_bw = eq1_bw;
699 region->eq2_bw = eq2_bw;
700 region->eq3_bw = eq3_bw;
701 region->eq1_bw_oncc = eq1_bw_oncc;
702 region->eq2_bw_oncc = eq2_bw_oncc;
703 region->eq3_bw_oncc = eq3_bw_oncc;
704 region->eq1_gain = eq1_gain;
705 region->eq2_gain = eq2_gain;
706 region->eq3_gain = eq3_gain;
707 region->eq1_gain_oncc = eq1_gain_oncc;
708 region->eq2_gain_oncc = eq2_gain_oncc;
709 region->eq3_gain_oncc = eq3_gain_oncc;
710 region->eq1_vel2gain = eq1_vel2gain;
711 region->eq2_vel2gain = eq2_vel2gain;
712 region->eq3_vel2gain = eq3_vel2gain;
713
714 // envelope generator
715 region->eg = eg;
716
717 // deprecated
718 region->ampeg_delay = ampeg_delay;
719 region->ampeg_start = ampeg_start;
720 region->ampeg_attack = ampeg_attack;
721 region->ampeg_hold = ampeg_hold;
722 region->ampeg_decay = ampeg_decay;
723 region->ampeg_sustain = ampeg_sustain;
724 region->ampeg_release = ampeg_release;
725
726 region->fileg_delay = fileg_delay;
727 region->fileg_start = fileg_start;
728 region->fileg_attack = fileg_attack;
729 region->fileg_hold = fileg_hold;
730 region->fileg_decay = fileg_decay;
731 region->fileg_sustain = fileg_sustain;
732 region->fileg_release = fileg_release;
733
734 region->pitcheg_delay = pitcheg_delay;
735 region->pitcheg_start = pitcheg_start;
736 region->pitcheg_attack = pitcheg_attack;
737 region->pitcheg_hold = pitcheg_hold;
738 region->pitcheg_decay = pitcheg_decay;
739 region->pitcheg_sustain = pitcheg_sustain;
740 region->pitcheg_release = pitcheg_release;
741
742 return region;
743 }
744
745 /////////////////////////////////////////////////////////////
746 // class File
747
748 File::File(std::string file, SampleManager* pSampleManager) :
749 _current_section(GROUP),
750 default_path(""),
751 octave_offset(0),
752 note_offset(0)
753 {
754 _instrument = new Instrument(LinuxSampler::Path::getBaseName(file), pSampleManager);
755 _current_group = new Group();
756 pCurDef = _current_group;
757 enum token_type_t { HEADER, OPCODE };
758 token_type_t token_type;
759 std::string token_string;
760
761 std::ifstream fs(file.c_str());
762 currentDir = LinuxSampler::Path::stripLastName(file);
763 std::string token;
764 std::string line;
765
766 while (std::getline(fs, line))
767 {
768 // COMMENT
769 std::string::size_type slash_index = line.find("//");
770 if (slash_index != std::string::npos)
771 line.resize(slash_index);
772
773 // DEFINITION
774 std::stringstream linestream(line);
775 while (linestream >> token)
776 {
777 if (token[0] == '<' and token[token.size()-1] == '>')
778 {
779 // HEAD
780 if (!token_string.empty())
781 {
782 switch (token_type)
783 {
784 case HEADER:
785 push_header(token_string);
786 break;
787 case OPCODE:
788 push_opcode(token_string);
789 break;
790 }
791 token_string.erase();
792 }
793 token_string.append(token);
794 token_type = HEADER;
795 }
796 else if (token.find('=') != std::string::npos)
797 {
798 // HEAD
799 if (!token_string.empty())
800 {
801 switch (token_type)
802 {
803 case HEADER:
804 push_header(token_string);
805 break;
806 case OPCODE:
807 push_opcode(token_string);
808 break;
809 }
810 token_string.erase();
811 }
812 token_string.append(token);
813 token_type = OPCODE;
814 }
815 else
816 {
817 // TAIL
818 token_string.append(" ");
819 token_string.append(token);
820 }
821 }
822
823 // EOL
824 if (!token_string.empty())
825 {
826 switch (token_type)
827 {
828 case HEADER:
829 push_header(token_string);
830 break;
831 case OPCODE:
832 push_opcode(token_string);
833 break;
834 }
835 token_string.erase();
836 }
837 }
838
839 for (int i = 0; i < _instrument->regions.size(); i++) {
840 ::sfz::Region* pRegion = _instrument->regions[i];
841 int low = pRegion->lokey;
842 int high = pRegion->hikey;
843 if (low < 0 || low > 127 || high < 0 || high > 127 || low > high) {
844 std::cerr << "Invalid key range: " << low << " - " << high << std::endl;
845 } else {
846 for (int j = low; j <= high; j++) _instrument->KeyBindings[j] = true;
847 }
848
849 // get keyswitches
850 low = pRegion->sw_lokey;
851 high = pRegion->sw_hikey;
852 if(low == -1 && high == -1) {
853 // Key switches not defined, so nothing to do
854 } else if(low >= 0 && low <= 127 && high >= 0 && high <= 127 && high >= low) {
855 for (int j = low; j <= high; j++) _instrument->KeySwitchBindings[j] = true;
856 } else {
857 std::cerr << "Invalid key switch range: " << low << " - " << high << std::endl;
858 }
859 }
860 }
861
862 File::~File()
863 {
864 delete _current_group;
865 delete _instrument;
866 }
867
868 Instrument*
869 File::GetInstrument()
870 {
871 return _instrument;
872 }
873
874 void
875 File::push_header(std::string token)
876 {
877 if (token == "<group>")
878 {
879 _current_section = GROUP;
880 _current_group->Reset();
881 pCurDef = _current_group;
882 }
883 else if (token == "<region>")
884 {
885 _current_section = REGION;
886 _current_region = _current_group->RegionFactory();
887 pCurDef = _current_region;
888 _instrument->regions.push_back(_current_region);
889 _current_region->SetInstrument(_instrument);
890 }
891 else if (token == "<control>")
892 {
893 _current_section = CONTROL;
894 default_path = "";
895 octave_offset = 0;
896 note_offset = 0;
897 }
898 else
899 {
900 _current_section = UNKNOWN;
901 std::cerr << "The header '" << token << "' is unsupported by libsfz!" << std::endl;
902 }
903 }
904
905 void
906 File::push_opcode(std::string token)
907 {
908 if (_current_section == UNKNOWN)
909 return;
910
911 std::string::size_type delimiter_index = token.find('=');
912 std::string key = token.substr(0, delimiter_index);
913 std::string value = token.substr(delimiter_index + 1);
914 int x, y;
915
916 // sample definition
917 if ("sample" == key)
918 {
919 std::string path = default_path + value;
920 #ifndef WIN32
921 for (int i = 0; i < path.length(); i++) if( path[i] == '\\') path[i] = '/';
922 #endif
923 path = currentDir + LinuxSampler::File::DirSeparator + path; // TODO: check for absolute path
924
925 if(pCurDef) pCurDef->sample = path;
926 return;
927 }
928
929 // control header directives
930 else if ("default_path" == key)
931 {
932 switch (_current_section)
933 {
934 case CONTROL:
935 default_path = value;
936 }
937 return;
938 }
939 else if ("octave_offset" == key)
940 {
941 switch (_current_section)
942 {
943 case CONTROL:
944 octave_offset = ToInt(value);
945 }
946 return;
947 }
948 else if ("note_offset" == key)
949 {
950 switch (_current_section)
951 {
952 case CONTROL:
953 note_offset = ToInt(value);
954 }
955 return;
956 }
957
958 // input controls
959 else if ("lochan" == key) pCurDef->lochan = ToInt(value);
960 else if ("hichan" == key) pCurDef->hichan = ToInt(value);
961 else if ("lokey" == key) pCurDef->lokey = ToInt(value) + note_offset + 12 * octave_offset;
962 else if ("hikey" == key) pCurDef->hikey = ToInt(value) + note_offset + 12 * octave_offset;
963 else if ("key" == key)
964 {
965 pCurDef->lokey = ToInt(value) + note_offset + 12 * octave_offset;
966 pCurDef->hikey = ToInt(value) + note_offset + 12 * octave_offset;
967 }
968 else if ("lovel" == key) pCurDef->lovel = ToInt(value);
969 else if ("hivel" == key) pCurDef->hivel = ToInt(value);
970 else if ("lobend" == key) pCurDef->lobend = ToInt(value);
971 else if ("hibend" == key) pCurDef->hibend = ToInt(value);
972 else if ("lobpm" == key) pCurDef->lobpm = ToInt(value);
973 else if ("hibpm" == key) pCurDef->hibpm = ToInt(value);
974 else if ("lochanaft" == key) pCurDef->lochanaft = ToInt(value);
975 else if ("hichanaft" == key) pCurDef->hichanaft = ToInt(value);
976 else if ("lopolyaft" == key) pCurDef->lopolyaft = ToInt(value);
977 else if ("hipolyaft" == key) pCurDef->hipolyaft = ToInt(value);
978 else if ("loprog" == key) pCurDef->loprog = ToInt(value);
979 else if ("hiprog" == key) pCurDef->hiprog = ToInt(value);
980 else if ("lorand" == key) pCurDef->lorand = ToFloat(value);
981 else if ("hirand" == key) pCurDef->hirand = ToFloat(value);
982 else if ("lotimer" == key) pCurDef->lotimer = ToFloat(value);
983 else if ("hitimer" == key) pCurDef->hitimer = ToFloat(value);
984 else if ("seq_length" == key) pCurDef->seq_length = ToInt(value);
985 else if ("seq_position" == key) pCurDef->seq_position = ToInt(value);
986 else if ("sw_lokey" == key) pCurDef->sw_lokey = ToInt(value) + note_offset + 12 * octave_offset;
987 else if ("sw_hikey" == key) pCurDef->sw_hikey = ToInt(value) + note_offset + 12 * octave_offset;
988 else if ("sw_last" == key) pCurDef->sw_last = ToInt(value) + note_offset + 12 * octave_offset;
989 else if ("sw_down" == key) pCurDef->sw_down = ToInt(value) + note_offset + 12 * octave_offset;
990 else if ("sw_up" == key) pCurDef->sw_up = ToInt(value) + note_offset + 12 * octave_offset;
991 else if ("sw_previous" == key) pCurDef->sw_previous = ToInt(value) + note_offset + 12 * octave_offset;
992 else if ("sw_vel" == key)
993 {
994 if (value == "current") pCurDef->sw_vel = VEL_CURRENT;
995 else if (value == "previous") pCurDef->sw_vel = VEL_PREVIOUS;
996 }
997 else if ("trigger" == key)
998 {
999 if (value == "attack") pCurDef->trigger = TRIGGER_ATTACK;
1000 else if (value == "release") pCurDef->trigger = TRIGGER_RELEASE;
1001 else if (value == "first") pCurDef->trigger = TRIGGER_FIRST;
1002 else if (value == "legato") pCurDef->trigger = TRIGGER_LEGATO;
1003 }
1004 else if ("group" == key) pCurDef->group = ToInt(value);
1005 else if ("off_by" == key) pCurDef->off_by = ToInt(value);
1006 else if ("off_mode" == key)
1007 {
1008 if (value == "fast") _current_group->off_mode = OFF_FAST;
1009 else if (value == "normal") _current_group->off_mode = OFF_NORMAL;
1010 }
1011
1012 // sample player
1013 else if ("count" == key) { pCurDef->count = ToInt(value); pCurDef->loop_mode = ONE_SHOT; }
1014 else if ("delay" == key) pCurDef->delay = ToFloat(value);
1015 else if ("delay_random" == key) pCurDef->delay_random = ToFloat(value);
1016 else if ("delay_beats" == key) pCurDef->delay_beats = ToInt(value);
1017 else if ("stop_beats" == key) pCurDef->stop_beats = ToInt(value);
1018 else if ("delay_samples" == key) pCurDef->delay_samples = ToInt(value);
1019 else if ("end" == key) pCurDef->end = ToInt(value);
1020 else if ("loop_crossfade" == key) pCurDef->loop_crossfade = ToFloat(value);
1021 else if ("offset_random" == key) pCurDef->offset_random = ToInt(value);
1022 else if ("loop_mode" == key)
1023 {
1024 if (value == "no_loop") pCurDef->loop_mode = NO_LOOP;
1025 else if (value == "one_shot") pCurDef->loop_mode = ONE_SHOT;
1026 else if (value == "loop_continuous") pCurDef->loop_mode = LOOP_CONTINUOUS;
1027 else if (value == "loop_sustain") pCurDef->loop_mode = LOOP_SUSTAIN;
1028 }
1029 else if ("loop_start" == key) pCurDef->loop_start = ToInt(value);
1030 else if ("loopstart" == key) pCurDef->loop_start = ToInt(value); // nonstandard
1031 else if ("loop_end" == key) pCurDef->loop_end = ToInt(value);
1032 else if ("loopend" == key) pCurDef->loop_end = ToInt(value); // nonstandard
1033 else if ("sync_beats" == key) pCurDef->sync_beats = ToInt(value);
1034 else if ("sync_offset" == key) pCurDef->sync_offset = ToInt(value);
1035
1036 // amplifier
1037 else if ("volume" == key) pCurDef->volume = ToFloat(value);
1038 else if ("pan" == key) pCurDef->pan = ToFloat(value);
1039 else if ("width" == key) pCurDef->width = ToFloat(value);
1040 else if ("position" == key) pCurDef->position = ToFloat(value);
1041 else if ("amp_keytrack" == key) pCurDef->amp_keytrack = ToFloat(value);
1042 else if ("amp_keycenter" == key) pCurDef->amp_keycenter = ToInt(value) + note_offset + 12 * octave_offset;
1043 else if ("amp_veltrack" == key) pCurDef->amp_veltrack = ToFloat(value);
1044 else if ("amp_random" == key) pCurDef->amp_random = ToFloat(value);
1045 else if ("rt_decay" == key) pCurDef->rt_decay = ToFloat(value);
1046 else if ("xfin_lokey" == key) pCurDef->xfin_lokey = ToInt(value) + note_offset + 12 * octave_offset;
1047 else if ("xfin_hikey" == key) pCurDef->xfin_hikey = ToInt(value) + note_offset + 12 * octave_offset;
1048 else if ("xfout_lokey" == key) pCurDef->xfout_lokey = ToInt(value) + note_offset + 12 * octave_offset;
1049 else if ("xfout_hikey" == key) pCurDef->xfout_hikey = ToInt(value) + note_offset + 12 * octave_offset;
1050 else if ("xf_keycurve" == key)
1051 {
1052 if (value == "gain") pCurDef->xf_keycurve = GAIN;
1053 else if (value == "power") pCurDef->xf_keycurve = POWER;
1054 }
1055 else if ("xfin_lovel" == key) pCurDef->xfin_lovel = ToInt(value);
1056 else if ("xfin_hivel" == key) pCurDef->xfin_hivel = ToInt(value);
1057 else if ("xfout_lovel" == key) pCurDef->xfout_lovel = ToInt(value);
1058 else if ("xfout_hivel" == key) pCurDef->xfout_hivel = ToInt(value);
1059 else if ("xf_velcurve" == key)
1060 {
1061 if (value == "gain") pCurDef->xf_velcurve = GAIN;
1062 else if (value == "power") pCurDef->xf_velcurve = POWER;
1063 }
1064 else if ("xf_cccurve" == key)
1065 {
1066 if (value == "gain") pCurDef->xf_cccurve = GAIN;
1067 else if (value == "power") pCurDef->xf_cccurve = POWER;
1068 }
1069
1070 // pitch
1071 else if ("transpose" == key) pCurDef->transpose = ToInt(value);
1072 else if ("tune" == key) pCurDef->tune = ToInt(value);
1073 else if ("pitch_keycenter" == key) pCurDef->pitch_keycenter = ToInt(value) + note_offset + 12 * octave_offset;
1074 else if ("pitch_keytrack" == key) pCurDef->pitch_keytrack = ToInt(value);
1075 else if ("pitch_veltrack" == key) pCurDef->pitch_veltrack = ToInt(value);
1076 else if ("pitch_random" == key) pCurDef->pitch_random = ToInt(value);
1077 else if ("bend_up" == key) pCurDef->bend_up = ToInt(value);
1078 else if ("bend_down" == key) pCurDef->bend_down = ToInt(value);
1079 else if ("bend_step" == key) pCurDef->bend_step = ToInt(value);
1080
1081 // filter
1082 else if ("fil_type" == key)
1083 {
1084 if (value == "lpf_1p") pCurDef->fil_type = LPF_1P;
1085 else if (value == "hpf_1p") pCurDef->fil_type = HPF_1P;
1086 else if (value == "bpf_1p") pCurDef->fil_type = BPF_1P;
1087 else if (value == "brf_1p") pCurDef->fil_type = BRF_1P;
1088 else if (value == "apf_1p") pCurDef->fil_type = APF_1P;
1089 else if (value == "lpf_2p") pCurDef->fil_type = LPF_2P;
1090 else if (value == "hpf_2p") pCurDef->fil_type = HPF_2P;
1091 else if (value == "bpf_2p") pCurDef->fil_type = BPF_2P;
1092 else if (value == "brf_2p") pCurDef->fil_type = BRF_2P;
1093 else if (value == "pkf_2p") pCurDef->fil_type = PKF_2P;
1094 else if (value == "lpf_4p") pCurDef->fil_type = LPF_4P;
1095 else if (value == "hpf_4p") pCurDef->fil_type = HPF_4P;
1096 else if (value == "lpf_6p") pCurDef->fil_type = LPF_6P;
1097 else if (value == "hpf_6p") pCurDef->fil_type = HPF_6P;
1098 }
1099 else if ("fil2_type" == key)
1100 {
1101 if (value == "lpf_1p") pCurDef->fil2_type = LPF_1P;
1102 else if (value == "hpf_1p") pCurDef->fil2_type = HPF_1P;
1103 else if (value == "bpf_1p") pCurDef->fil2_type = BPF_1P;
1104 else if (value == "brf_1p") pCurDef->fil2_type = BRF_1P;
1105 else if (value == "apf_1p") pCurDef->fil2_type = APF_1P;
1106 else if (value == "lpf_2p") pCurDef->fil2_type = LPF_2P;
1107 else if (value == "hpf_2p") pCurDef->fil2_type = HPF_2P;
1108 else if (value == "bpf_2p") pCurDef->fil2_type = BPF_2P;
1109 else if (value == "brf_2p") pCurDef->fil2_type = BRF_2P;
1110 else if (value == "pkf_2p") pCurDef->fil2_type = PKF_2P;
1111 else if (value == "lpf_4p") pCurDef->fil2_type = LPF_4P;
1112 else if (value == "hpf_4p") pCurDef->fil2_type = HPF_4P;
1113 else if (value == "lpf_6p") pCurDef->fil2_type = LPF_6P;
1114 else if (value == "hpf_6p") pCurDef->fil2_type = HPF_6P;
1115 }
1116 else if ("cutoff" == key) pCurDef->cutoff = ToFloat(value);
1117 else if ("cutoff2" == key) pCurDef->cutoff2 = ToFloat(value);
1118 else if ("cutoff_chanaft" == key) pCurDef->cutoff_chanaft = ToInt(value);
1119 else if ("cutoff2_chanaft" == key) pCurDef->cutoff2_chanaft = ToInt(value);
1120 else if ("cutoff_polyaft" == key) pCurDef->cutoff_polyaft = ToInt(value);
1121 else if ("cutoff2_polyaft" == key) pCurDef->cutoff2_polyaft = ToInt(value);
1122 else if ("resonance" == key) pCurDef->resonance = ToFloat(value);
1123 else if ("resonance2" == key) pCurDef->resonance2 = ToFloat(value);
1124 else if ("fil_keytrack" == key) pCurDef->fil_keytrack = ToInt(value);
1125 else if ("fil2_keytrack" == key) pCurDef->fil2_keytrack = ToInt(value);
1126 else if ("fil_keycenter" == key) pCurDef->fil_keycenter = ToInt(value) + note_offset + 12 * octave_offset;
1127 else if ("fil2_keycenter" == key) pCurDef->fil2_keycenter = ToInt(value) + note_offset + 12 * octave_offset;
1128 else if ("fil_veltrack" == key) pCurDef->fil_veltrack = ToInt(value);
1129 else if ("fil2_veltrack" == key) pCurDef->fil2_veltrack = ToInt(value);
1130 else if ("fil_random" == key) pCurDef->fil_random = ToInt(value);
1131 else if ("fil2_random" == key) pCurDef->fil2_random = ToInt(value);
1132
1133 // per voice equalizer
1134 else if ("eq1_freq" == key) pCurDef->eq1_freq = ToFloat(value);
1135 else if ("eq2_freq" == key) pCurDef->eq2_freq = ToFloat(value);
1136 else if ("eq3_freq" == key) pCurDef->eq3_freq = ToFloat(value);
1137 else if ("eq1_vel2freq" == key) pCurDef->eq1_vel2freq = ToFloat(value);
1138 else if ("eq2_vel2freq" == key) pCurDef->eq2_vel2freq = ToFloat(value);
1139 else if ("eq3_vel2freq" == key) pCurDef->eq3_vel2freq = ToFloat(value);
1140 else if ("eq1_bw" == key) pCurDef->eq1_bw = ToFloat(value);
1141 else if ("eq2_bw" == key) pCurDef->eq2_bw = ToFloat(value);
1142 else if ("eq3_bw" == key) pCurDef->eq3_bw = ToFloat(value);
1143 else if ("eq1_gain" == key) pCurDef->eq1_gain = ToFloat(value);
1144 else if ("eq2_gain" == key) pCurDef->eq2_gain = ToFloat(value);
1145 else if ("eq3_gain" == key) pCurDef->eq3_gain = ToFloat(value);
1146 else if ("eq1_vel2gain" == key) pCurDef->eq1_vel2gain = ToFloat(value);
1147 else if ("eq2_vel2gain" == key) pCurDef->eq2_vel2gain = ToFloat(value);
1148 else if ("eq3_vel2gain" == key) pCurDef->eq3_vel2gain = ToFloat(value);
1149
1150 //fixme: parse amp_velcurve_N
1151
1152 // CCs
1153 else if (key.find("cc") != std::string::npos)
1154 {
1155 std::string::size_type delimiter_index = key.find("cc");
1156 std::string key_cc = key.substr(0, delimiter_index);
1157 int num_cc = ToInt(key.substr(delimiter_index + 2));
1158
1159 // input controls
1160 if ("lo" == key_cc) pCurDef->locc[num_cc] = ToInt(value);
1161 else if ("hi" == key_cc) pCurDef->hicc[num_cc] = ToInt(value);
1162 else if ("start_lo" == key_cc) pCurDef->start_locc[num_cc] = ToInt(value);
1163 else if ("start_hi" == key_cc) pCurDef->start_hicc[num_cc] = ToInt(value);
1164 else if ("stop_lo" == key_cc) pCurDef->stop_locc[num_cc] = ToInt(value);
1165 else if ("stop_hi" == key_cc) pCurDef->stop_hicc[num_cc] = ToInt(value);
1166 else if ("on_lo" == key_cc) pCurDef->on_locc[num_cc] = ToInt(value);
1167 else if ("on_hi" == key_cc) pCurDef->on_hicc[num_cc] = ToInt(value);
1168
1169 // sample player
1170 else if ("delay_on" == key_cc) pCurDef->delay_oncc[num_cc] = ToFloat(value);
1171 else if ("delay_samples_on" == key_cc) pCurDef->delay_samples_oncc[num_cc] = ToInt(value);
1172 else if ("offset_on" == key_cc) pCurDef->offset_oncc[num_cc] = ToInt(value);
1173
1174 // amplifier
1175 else if ("gain_on" == key_cc) pCurDef->gain_oncc[num_cc] = ToFloat(value);
1176 else if ("xfin_lo" == key_cc) pCurDef->xfin_locc[num_cc] = ToInt(value);
1177 else if ("xfin_hi" == key_cc) pCurDef->xfin_hicc[num_cc] = ToInt(value);
1178 else if ("xfout_lo" == key_cc) pCurDef->xfout_locc[num_cc] = ToInt(value);
1179 else if ("xfout_hi" == key_cc) pCurDef->xfout_hicc[num_cc] = ToInt(value);
1180
1181 // filter
1182 else if ("cutoff_on" == key_cc) pCurDef->cutoff_oncc[num_cc] = ToInt(value);
1183 else if ("cutoff2_on" == key_cc) pCurDef->cutoff2_oncc[num_cc] = ToInt(value);
1184 else if ("cutoff_smooth" == key_cc) pCurDef->cutoff_smoothcc[num_cc] = ToInt(value);
1185 else if ("cutoff2_smooth" == key_cc) pCurDef->cutoff2_smoothcc[num_cc] = ToInt(value);
1186 else if ("cutoff_step" == key_cc) pCurDef->cutoff_stepcc[num_cc] = ToInt(value);
1187 else if ("cutoff2_step" == key_cc) pCurDef->cutoff2_stepcc[num_cc] = ToInt(value);
1188 else if ("cutoff_curve" == key_cc) pCurDef->cutoff_curvecc[num_cc] = ToInt(value);
1189 else if ("cutoff2_curve" == key_cc) pCurDef->cutoff2_curvecc[num_cc] = ToInt(value);
1190 else if ("resonance_on" == key_cc) pCurDef->resonance_oncc[num_cc] = ToInt(value);
1191 else if ("resonance2_on" == key_cc) pCurDef->resonance2_oncc[num_cc] = ToInt(value);
1192 else if ("resonance_smooth" == key_cc) pCurDef->resonance_smoothcc[num_cc] = ToInt(value);
1193 else if ("resonance2_smooth" == key_cc) pCurDef->resonance2_smoothcc[num_cc] = ToInt(value);
1194 else if ("resonance_step" == key_cc) pCurDef->resonance_stepcc[num_cc] = ToInt(value);
1195 else if ("resonance2_step" == key_cc) pCurDef->resonance2_stepcc[num_cc] = ToInt(value);
1196 else if ("resonance_curve" == key_cc) pCurDef->resonance_curvecc[num_cc] = ToInt(value);
1197 else if ("resonance2_curve" == key_cc) pCurDef->resonance2_curvecc[num_cc] = ToInt(value);
1198
1199 // per voice equalizer
1200 else if ("eq1_freq_on" == key_cc) pCurDef->eq1_freq_oncc[num_cc] = ToInt(value);
1201 else if ("eq2_freq_on" == key_cc) pCurDef->eq2_freq_oncc[num_cc] = ToInt(value);
1202 else if ("eq3_freq_on" == key_cc) pCurDef->eq3_freq_oncc[num_cc] = ToInt(value);
1203 else if ("eq1_bw_on" == key_cc) pCurDef->eq1_bw_oncc[num_cc] = ToInt(value);
1204 else if ("eq2_bw_on" == key_cc) pCurDef->eq2_bw_oncc[num_cc] = ToInt(value);
1205 else if ("eq3_bw_on" == key_cc) pCurDef->eq3_bw_oncc[num_cc] = ToInt(value);
1206 else if ("eq1_gain_on" == key_cc) pCurDef->eq1_gain_oncc[num_cc] = ToInt(value);
1207 else if ("eq2_gain_on" == key_cc) pCurDef->eq2_gain_oncc[num_cc] = ToInt(value);
1208 else if ("eq3_gain_on" == key_cc) pCurDef->eq3_gain_oncc[num_cc] = ToInt(value);
1209 else std::cerr << "The opcode '" << key << "' is unsupported by libsfz!" << std::endl;
1210 }
1211 // v2 envelope generators
1212 else if (sscanf(key.c_str(), "eg%d%n", &x, &y)) {
1213 const char* s = key.c_str() + y;
1214 if (sscanf(s, "_time%d", &y)) egnode(x, y).time = ToFloat(value);
1215 else if (sscanf(s, "_level%d", &y)) egnode(x, y).level = ToFloat(value);
1216 else if (sscanf(s, "_shape%d", &y)) egnode(x, y).shape = ToFloat(value);
1217 else if (sscanf(s, "_curve%d", &y)) egnode(x, y).curve = ToFloat(value);
1218 else if (strcmp(s, "_sustain") == 0) eg(x).sustain = ToInt(value);
1219 else if (strcmp(s, "_loop") == 0) eg(x).loop = ToInt(value);
1220 else if (strcmp(s, "_loop_count") == 0) eg(x).loop_count = ToInt(value);
1221 else if (strcmp(s, "_amplitude") == 0) eg(x).amplitude = ToFloat(value);
1222 else if (strcmp(s, "_cutoff") == 0) eg(x).cutoff = ToFloat(value);
1223 else std::cerr << "The opcode '" << key << "' is unsupported by libsfz!" << std::endl;
1224 }
1225
1226 // v1 envelope generators
1227 else if ("ampeg_delay" == key) pCurDef->ampeg_delay = ToFloat(value);
1228 else if ("ampeg_start" == key) pCurDef->ampeg_start = ToFloat(value);
1229 else if ("ampeg_attack" == key) pCurDef->ampeg_attack = ToFloat(value);
1230 else if ("ampeg_hold" == key) pCurDef->ampeg_hold = ToFloat(value);
1231 else if ("ampeg_decay" == key) pCurDef->ampeg_decay = ToFloat(value);
1232 else if ("ampeg_sustain" == key) pCurDef->ampeg_sustain = ToFloat(value);
1233 else if ("ampeg_release" == key) pCurDef->ampeg_release = ToFloat(value);
1234 else if ("fileg_delay" == key) pCurDef->fileg_delay = ToFloat(value);
1235 else if ("fileg_start" == key) pCurDef->fileg_start = ToFloat(value);
1236 else if ("fileg_attack" == key) pCurDef->fileg_attack = ToFloat(value);
1237 else if ("fileg_hold" == key) pCurDef->fileg_hold = ToFloat(value);
1238 else if ("fileg_decay" == key) pCurDef->fileg_decay = ToFloat(value);
1239 else if ("fileg_sustain" == key) pCurDef->fileg_sustain = ToFloat(value);
1240 else if ("fileg_release" == key) pCurDef->fileg_release = ToFloat(value);
1241 else if ("pitcheg_delay" == key) pCurDef->pitcheg_delay = ToFloat(value);
1242 else if ("pitcheg_start" == key) pCurDef->pitcheg_start = ToFloat(value);
1243 else if ("pitcheg_attack" == key) pCurDef->pitcheg_attack = ToFloat(value);
1244 else if ("pitcheg_hold" == key) pCurDef->pitcheg_hold = ToFloat(value);
1245 else if ("pitcheg_decay" == key) pCurDef->pitcheg_decay = ToFloat(value);
1246 else if ("pitcheg_sustain" == key) pCurDef->pitcheg_sustain = ToFloat(value);
1247 else if ("pitcheg_release" == key) pCurDef->pitcheg_release = ToFloat(value);
1248 else {
1249 std::cerr << "The opcode '" << key << "' is unsupported by libsfz!" << std::endl;
1250 }
1251 }
1252
1253 EGNode::EGNode() : time(0), level(0), shape(0), curve(0) {
1254 }
1255
1256 EG::EG() :
1257 sustain(0), loop(0), loop_count(0),
1258 amplitude(0), cutoff(0) {
1259 }
1260
1261 EG& File::eg(int x) {
1262 while (pCurDef->eg.size() <= x) {
1263 pCurDef->eg.add(EG());
1264 }
1265 return pCurDef->eg[x];
1266 }
1267
1268 EGNode& File::egnode(int x, int y) {
1269 EG& e = eg(x);
1270 while (e.node.size() <= y) {
1271 e.node.add(EGNode());
1272 }
1273 return e.node[y];
1274 }
1275
1276 } // !namespace sfz

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