/[svn]/linuxsampler/trunk/src/engines/sfz/SfzSignalUnitRack.cpp
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Revision 2229 - (hide annotations) (download)
Thu Aug 4 19:02:36 2011 UTC (12 years, 8 months ago) by iliev
File size: 20752 byte(s)
* sfz engine: implemented opcodes ampeg_delayccN, ampeg_startccN,
  ampeg_attackccN, ampeg_holdccN, ampeg_decayccN, ampeg_sustainccN,
  ampeg_releaseccN, egN_timeX_onccY, egN_levelX_onccY
* sfz engine: lfoN_* and egN_* opcodes defined
  in group sections are now taken into account

1 iliev 2218 /***************************************************************************
2     * *
3     * LinuxSampler - modular, streaming capable sampler *
4     * *
5     * Copyright (C) 2011 Grigor Iliev *
6     * *
7     * This program is free software; you can redistribute it and/or modify *
8     * it under the terms of the GNU General Public License as published by *
9     * the Free Software Foundation; either version 2 of the License, or *
10     * (at your option) any later version. *
11     * *
12     * This program is distributed in the hope that it will be useful, *
13     * but WITHOUT ANY WARRANTY; without even the implied warranty of *
14     * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
15     * GNU General Public License for more details. *
16     * *
17     * You should have received a copy of the GNU General Public License *
18     * along with this program; if not, write to the Free Software *
19     * Foundation, Inc., 59 Temple Place, Suite 330, Boston, *
20     * MA 02111-1307 USA *
21     ***************************************************************************/
22    
23     #include "SfzSignalUnitRack.h"
24     #include "Voice.h"
25 iliev 2221 #include <SF.h>
26 iliev 2218
27     namespace LinuxSampler { namespace sfz {
28    
29     SfzSignalUnit::SfzSignalUnit(SfzSignalUnitRack* rack): SignalUnit(rack), pVoice(rack->pVoice) {
30    
31     }
32    
33     double SfzSignalUnit::GetSampleRate() {
34     return pVoice->GetSampleRate() / CONFIG_DEFAULT_SUBFRAGMENT_SIZE;
35     }
36    
37 iliev 2229 float SfzSignalUnit::GetInfluence(ArrayList< ::sfz::CC>& cc) {
38     float f = 0;
39     for (int i = 0; i < cc.size(); i++) {
40     int val = pVoice->GetControllerValue(cc[i].Controller);
41     f += (val / 127.0f) * cc[i].Influence;
42     }
43     return f;
44 iliev 2218 }
45    
46 iliev 2220
47 iliev 2218 void EGv2Unit::Trigger() {
48 iliev 2229 egInfo = *pEGInfo;
49     for (int i = 0; i < egInfo.node.size(); i++) {
50     float f = GetInfluence(egInfo.node[i].level_oncc);
51     egInfo.node[i].level = std::min(egInfo.node[i].level + f, 1.0f);
52    
53     f = GetInfluence(egInfo.node[i].time_oncc);
54     egInfo.node[i].time = std::min(egInfo.node[i].time + f, 100.0f);
55     }
56     EG.trigger(egInfo, GetSampleRate(), pVoice->MIDIVelocity);
57 iliev 2218 }
58 iliev 2219
59 iliev 2220
60     void PitchEGUnit::Trigger() {
61     ::sfz::Region* const pRegion = pVoice->pRegion;
62     depth = pRegion->pitcheg_depth;
63    
64     // the length of the decay and release curves are dependent on the velocity
65     const double velrelease = 1 / pVoice->GetVelocityRelease(pVoice->MIDIVelocity);
66 iliev 2218
67 iliev 2220 // set the delay trigger
68     uiDelayTrigger = (pRegion->pitcheg_delay + pRegion->pitcheg_vel2delay * velrelease) * GetSampleRate();
69    
70     EG.trigger(uint(pRegion->pitcheg_start * 10),
71     std::max(0.0, pRegion->pitcheg_attack + pRegion->pitcheg_vel2attack * velrelease),
72     std::max(0.0, pRegion->pitcheg_hold + pRegion->pitcheg_vel2hold * velrelease),
73     std::max(0.0, pRegion->pitcheg_decay + pRegion->pitcheg_vel2decay * velrelease),
74     uint(std::min(std::max(0.0, 10 * (pRegion->pitcheg_sustain + pRegion->pitcheg_vel2sustain * velrelease)), 1000.0)),
75     std::max(0.0, pRegion->pitcheg_release + pRegion->pitcheg_vel2release * velrelease),
76     GetSampleRate());
77     }
78    
79 iliev 2222
80     void FilEGUnit::Trigger() {
81     ::sfz::Region* const pRegion = pVoice->pRegion;
82     depth = pRegion->fileg_depth;
83    
84     // the length of the decay and release curves are dependent on the velocity
85     const double velrelease = 1 / pVoice->GetVelocityRelease(pVoice->MIDIVelocity);
86 iliev 2220
87 iliev 2222 // set the delay trigger
88     uiDelayTrigger = (pRegion->fileg_delay + pRegion->fileg_vel2delay * velrelease) * GetSampleRate();
89    
90     EG.trigger(uint(pRegion->fileg_start * 10),
91     std::max(0.0, pRegion->fileg_attack + pRegion->fileg_vel2attack * velrelease),
92     std::max(0.0, pRegion->fileg_hold + pRegion->fileg_vel2hold * velrelease),
93     std::max(0.0, pRegion->fileg_decay + pRegion->fileg_vel2decay * velrelease),
94     uint(std::min(std::max(0.0, 10 * (pRegion->fileg_sustain + pRegion->fileg_vel2sustain * velrelease)), 1000.0)),
95     std::max(0.0, pRegion->fileg_release + pRegion->fileg_vel2release * velrelease),
96     GetSampleRate());
97     }
98    
99 iliev 2226
100 iliev 2229 void AmpEGUnit::Trigger() {
101     ::sfz::Region* const pRegion = pVoice->pRegion;
102    
103     // the length of the decay and release curves are dependent on the velocity
104     const double velrelease = 1 / pVoice->GetVelocityRelease(pVoice->MIDIVelocity);
105    
106     // set the delay trigger
107     float delay = pRegion->ampeg_delay + pRegion->ampeg_vel2delay * velrelease;
108     delay += GetInfluence(pRegion->ampeg_delaycc);
109     uiDelayTrigger = std::max(0.0f, delay) * GetSampleRate();
110    
111     float start = (pRegion->ampeg_start + GetInfluence(pRegion->ampeg_startcc)) * 10;
112    
113     float attack = pRegion->ampeg_attack + pRegion->ampeg_vel2attack * velrelease;
114     attack = std::max(0.0f, attack + GetInfluence(pRegion->ampeg_attackcc));
115    
116     float hold = pRegion->ampeg_hold + pRegion->ampeg_vel2hold * velrelease;
117     hold = std::max(0.0f, hold + GetInfluence(pRegion->ampeg_holdcc));
118    
119     float decay = pRegion->ampeg_decay + pRegion->ampeg_vel2decay * velrelease;
120     decay = std::max(0.0f, decay + GetInfluence(pRegion->ampeg_decaycc));
121    
122     float sustain = pRegion->ampeg_sustain + pRegion->ampeg_vel2sustain * velrelease;
123     sustain = 10 * (sustain + GetInfluence(pRegion->ampeg_sustaincc));
124    
125     float release = pRegion->ampeg_release + pRegion->ampeg_vel2release * velrelease;
126     release = std::max(0.0f, release + GetInfluence(pRegion->ampeg_releasecc));
127    
128     EG.trigger (
129     uint(std::min(std::max(0.0f, start), 1000.0f)), attack, hold, decay,
130     uint(std::min(std::max(0.0f, sustain), 1000.0f)), release, GetSampleRate()
131     );
132     }
133    
134    
135 iliev 2227 LFOUnit::LFOUnit(SfzSignalUnitRack* rack)
136     : SfzSignalUnit(rack), pLfoInfo(NULL), pLFO(NULL),
137     suFadeEG(rack), suFreqOnCC(rack, this)
138     { }
139    
140     LFOUnit::LFOUnit(const LFOUnit& Unit)
141     : SfzSignalUnit(Unit), suFadeEG(static_cast<SfzSignalUnitRack*>(Unit.pRack)),
142     suFreqOnCC(static_cast<SfzSignalUnitRack*>(Unit.pRack), this)
143     {
144 iliev 2226 Copy(Unit);
145     }
146 iliev 2222
147 iliev 2219 void LFOUnit::Increment() {
148     if (DelayStage()) return;
149    
150     SignalUnit::Increment();
151    
152 iliev 2223 Level = pLFO->Render();
153 iliev 2226 if (suFadeEG.Active()) Level *= suFadeEG.GetLevel();
154 iliev 2219 }
155    
156     void LFOUnit::Trigger() {
157     //reset
158     Level = 0;
159    
160     // set the delay trigger
161 iliev 2220 uiDelayTrigger = pLfoInfo->delay * GetSampleRate();
162 iliev 2226 if(pLfoInfo->fade != 0 || !pLfoInfo->fade_oncc.empty()) {
163     float f = pLfoInfo->fade;
164 iliev 2229 f += GetInfluence(pLfoInfo->fade_oncc);
165 iliev 2226
166     if (f != 0) {
167     suFadeEG.uiDelayTrigger = pLfoInfo->delay * GetSampleRate();
168     suFadeEG.EG.trigger(0, f, 0, 0, 1000, 0, GetSampleRate());
169     }
170     }
171 iliev 2219 }
172    
173 iliev 2227 void LFOUnit::ValueChanged(CCSignalUnit* pUnit) {
174 iliev 2229 pLFO->SetFrequency(std::max(0.0f, suFreqOnCC.GetLevel() + pLfoInfo->freq), GetSampleRate());
175 iliev 2227 }
176    
177    
178 iliev 2221 void LFOv1Unit::Trigger() {
179     LFOUnit::Trigger();
180    
181     lfo.trigger (
182 iliev 2227 pLfoInfo->freq + suFreqOnCC.GetLevel(),
183 iliev 2221 start_level_mid,
184     1, 0, false, GetSampleRate()
185     );
186     lfo.update(0);
187     }
188    
189 iliev 2223
190     LFOv2Unit::LFOv2Unit(SfzSignalUnitRack* rack)
191     : LFOUnit(rack), lfos(8), lfo0(1200.0f), lfo1(1200.0f), lfo2(1200.0f),
192 iliev 2225 lfo3(1200.0f), lfo4(1200.0f), lfo5(1200.0f), lfo6(1200.0f), lfo7(1200.0f),
193     suPitchOnCC(rack)
194 iliev 2223 {
195     lfos.add(&lfo0);
196     lfos.add(&lfo1);
197     lfos.add(&lfo2);
198     lfos.add(&lfo3);
199     lfos.add(&lfo4);
200     lfos.add(&lfo5);
201     lfos.add(&lfo6);
202     lfos.add(&lfo7);
203     }
204    
205 iliev 2219 void LFOv2Unit::Trigger() {
206     LFOUnit::Trigger();
207    
208 iliev 2223 if (pLfoInfo->wave < 0 || pLfoInfo->wave >= lfos.size()) pLFO = &lfo0;
209     else pLFO = lfos[pLfoInfo->wave];
210    
211     pLFO->Trigger (
212 iliev 2227 pLfoInfo->freq + suFreqOnCC.GetLevel(),
213 iliev 2219 start_level_mid,
214     1, 0, false, GetSampleRate()
215     );
216 iliev 2223 pLFO->Update(0);
217 iliev 2225
218 iliev 2229 float phase = pLfoInfo->phase + GetInfluence(pLfoInfo->phase_oncc);
219 iliev 2225 if (phase != 0) pLFO->SetPhase(phase);
220 iliev 2219 }
221 iliev 2221
222     void AmpLFOUnit::Trigger() {
223     ::sfz::Region* const pRegion = pVoice->pRegion;
224 iliev 2226 pLfoInfo->delay = pRegion->amplfo_delay;
225     pLfoInfo->freq = pRegion->amplfo_freq;
226     pLfoInfo->fade = pRegion->amplfo_fade;
227 iliev 2221 pLfoInfo->volume = pRegion->amplfo_depth;
228    
229     LFOv1Unit::Trigger();
230     }
231    
232     void PitchLFOUnit::Trigger() {
233     ::sfz::Region* const pRegion = pVoice->pRegion;
234     pLfoInfo->delay = pRegion->pitchlfo_delay;
235 iliev 2226 pLfoInfo->freq = pRegion->pitchlfo_freq;
236     pLfoInfo->fade = pRegion->pitchlfo_fade;
237 iliev 2221 pLfoInfo->pitch = pRegion->pitchlfo_depth;
238    
239     LFOv1Unit::Trigger();
240     }
241    
242     void FilLFOUnit::Trigger() {
243     ::sfz::Region* const pRegion = pVoice->pRegion;
244 iliev 2226 pLfoInfo->delay = pRegion->fillfo_delay;
245     pLfoInfo->freq = pRegion->fillfo_freq;
246     pLfoInfo->fade = pRegion->fillfo_fade;
247 iliev 2221 pLfoInfo->cutoff = pRegion->fillfo_depth;
248    
249     LFOv1Unit::Trigger();
250     }
251 iliev 2224
252 iliev 2227 CCUnit::CCUnit(SfzSignalUnitRack* rack, Listener* l): CCSignalUnit(rack, l) {
253     pVoice = NULL;
254     }
255 iliev 2224
256     void CCUnit::Trigger() {
257     for (int i = 0; i < Ctrls.size(); i++) {
258     Ctrls[i].Value = pVoice->GetControllerValue(Ctrls[i].Controller);
259     }
260     CCSignalUnit::Trigger();
261     }
262    
263     void CCUnit::SetCCs(::sfz::Array<int>& cc) {
264     RemoveAllCCs();
265     for (int i = 0; i < 128; i++) {
266     if (cc[i] != 0) AddCC(i, cc[i]);
267     }
268     }
269 iliev 2225
270     void CCUnit::SetCCs(ArrayList< ::sfz::CC>& cc) {
271     RemoveAllCCs();
272     for (int i = 0; i < cc.size(); i++) {
273     if (cc[i].Influence != 0) AddCC(cc[i].Controller, cc[i].Influence);
274     }
275     }
276 iliev 2218
277 iliev 2219
278 iliev 2218 EndpointUnit::EndpointUnit(SfzSignalUnitRack* rack): EndpointSignalUnit(rack) {
279    
280     }
281    
282     SfzSignalUnitRack* const EndpointUnit::GetRack() {
283     return static_cast<SfzSignalUnitRack* const>(pRack);
284     }
285    
286     void EndpointUnit::Trigger() {
287    
288     }
289    
290     bool EndpointUnit::Active() {
291     if (GetRack()->suVolEG.Active()) return true;
292    
293     bool b = false;
294     for (int i = 0; i < GetRack()->volEGs.size(); i++) {
295     if (GetRack()->volEGs[i]->Active()) { b = true; break; }
296     }
297    
298     return b;
299     }
300    
301     float EndpointUnit::GetVolume() {
302     float vol = GetRack()->suVolEG.Active() ? GetRack()->suVolEG.GetLevel() : 0;
303    
304     for (int i = 0; i < GetRack()->volEGs.size(); i++) {
305     EGv2Unit* eg = GetRack()->volEGs[i];
306     if (!eg->Active()) continue;
307     vol += eg->GetLevel() * (eg->pEGInfo->amplitude / 100.0f);
308 iliev 2229
309 iliev 2218 }
310    
311 iliev 2221 AmpLFOUnit* u = &(GetRack()->suAmpLFO);
312     vol *= u->Active() ? ::sf2::ToRatio((u->GetLevel() * u->pLfoInfo->volume) * 10.0) : 1;
313    
314 iliev 2218 return vol;
315     }
316    
317     float EndpointUnit::GetFilterCutoff() {
318 iliev 2221 float val;
319 iliev 2219
320 iliev 2221 FilLFOUnit* u = &(GetRack()->suFilLFO);
321     val = u->Active() ? RTMath::CentsToFreqRatioUnlimited(u->GetLevel() * u->pLfoInfo->cutoff) : 1;
322    
323 iliev 2222 FilEGUnit* u2 = &(GetRack()->suFilEG);
324     val *= u2->Active() ? RTMath::CentsToFreqRatioUnlimited(u2->GetLevel() * u2->depth) : 1;
325    
326 iliev 2219 for (int i = 0; i < GetRack()->filLFOs.size(); i++) {
327     LFOv2Unit* lfo = GetRack()->filLFOs[i];
328     if (!lfo->Active()) continue;
329    
330     float f = lfo->GetLevel() * lfo->pLfoInfo->cutoff;
331     val *= RTMath::CentsToFreqRatioUnlimited(f);
332     }
333    
334     return val;
335 iliev 2218 }
336    
337     float EndpointUnit::GetPitch() {
338 iliev 2221 double p;
339 iliev 2220 EGv1Unit* u = &(GetRack()->suPitchEG);
340 iliev 2221 p = u->Active() ? RTMath::CentsToFreqRatioUnlimited(u->GetLevel() * u->depth) : 1;
341    
342     PitchLFOUnit* u2 = &(GetRack()->suPitchLFO);
343 iliev 2224 CCSignalUnit* u3 = &(GetRack()->suPitchLFO.suDepthCC);
344     float f = u3->Active() ? u3->GetLevel() : 0;
345     p *= u2->Active() ? RTMath::CentsToFreqRatioUnlimited(u2->GetLevel() * (u2->pLfoInfo->pitch + f)) : 1;
346 iliev 2225
347     for (int i = 0; i < GetRack()->pitchLFOs.size(); i++) {
348     LFOv2Unit* lfo = GetRack()->pitchLFOs[i];
349     if (!lfo->Active()) continue;
350    
351     float f = lfo->suPitchOnCC.Active() ? lfo->suPitchOnCC.GetLevel() : 0;
352     p *= RTMath::CentsToFreqRatioUnlimited(lfo->GetLevel() * (lfo->pLfoInfo->pitch + f));
353     }
354    
355 iliev 2221 return p;
356 iliev 2218 }
357    
358     float EndpointUnit::GetResonance() {
359 iliev 2219 float val = 0;
360    
361     for (int i = 0; i < GetRack()->resLFOs.size(); i++) {
362     LFOv2Unit* lfo = GetRack()->resLFOs[i];
363     if (!lfo->Active()) continue;
364    
365     val += lfo->GetLevel() * lfo->pLfoInfo->resonance;
366     }
367    
368     return val;
369 iliev 2218 }
370    
371 iliev 2219 float EndpointUnit::GetPan() {
372     float pan = 0;
373    
374     for (int i = 0; i < GetRack()->panLFOs.size(); i++) {
375     LFOv2Unit* lfo = GetRack()->panLFOs[i];
376     if (!lfo->Active()) continue;
377    
378     pan += lfo->GetLevel() * lfo->pLfoInfo->pan;
379     }
380    
381     if(pan < -100) return -100;
382     if(pan > 100) return 100;
383    
384     return pan;
385     }
386 iliev 2218
387 iliev 2219
388 iliev 2218 SfzSignalUnitRack::SfzSignalUnitRack(Voice* voice)
389 iliev 2222 : SignalUnitRack(MaxUnitCount), pVoice(voice), suEndpoint(this), suVolEG(this), suFilEG(this), suPitchEG(this),
390 iliev 2219 EGs(maxEgCount), volEGs(maxEgCount), pitchEGs(maxEgCount),
391 iliev 2221 suAmpLFO(this), suPitchLFO(this), suFilLFO(this),
392 iliev 2225 LFOs(maxLfoCount), pitchLFOs(maxLfoCount), filLFOs(maxLfoCount), resLFOs(maxLfoCount), panLFOs(maxLfoCount)
393 iliev 2218 {
394 iliev 2222 suEndpoint.pVoice = suVolEG.pVoice = suFilEG.pVoice = suPitchEG.pVoice = voice;
395 iliev 2221 suAmpLFO.pVoice = suPitchLFO.pVoice = suFilLFO.pVoice = voice;
396 iliev 2227 suPitchLFO.suDepthCC.pVoice = suPitchLFO.suFadeEG.pVoice = suPitchLFO.suFreqOnCC.pVoice = voice;
397     suFilLFO.suFadeEG.pVoice = suFilLFO.suFreqOnCC.pVoice = voice;
398     suAmpLFO.suFadeEG.pVoice = suAmpLFO.suFreqOnCC.pVoice = voice;
399 iliev 2218
400     for (int i = 0; i < EGs.capacity(); i++) {
401     EGs[i] = new EGv2Unit(this);
402     EGs[i]->pVoice = voice;
403     }
404 iliev 2219
405     for (int i = 0; i < LFOs.capacity(); i++) {
406     LFOs[i] = new LFOv2Unit(this);
407     LFOs[i]->pVoice = voice;
408 iliev 2226 LFOs[i]->suFadeEG.pVoice = voice;
409 iliev 2225 LFOs[i]->suPitchOnCC.pVoice = voice;
410 iliev 2227 LFOs[i]->suFreqOnCC.pVoice = voice;
411 iliev 2219 }
412 iliev 2218 }
413    
414     SfzSignalUnitRack::~SfzSignalUnitRack() {
415 iliev 2219 for (int i = 0; i < EGs.capacity(); i++) {
416 iliev 2218 delete EGs[i]; EGs[i] = NULL;
417     }
418 iliev 2219
419     for (int i = 0; i < LFOs.capacity(); i++) {
420     delete LFOs[i]; LFOs[i] = NULL;
421     }
422 iliev 2218 }
423    
424     void SfzSignalUnitRack::Trigger() {
425     EGs.clear();
426     volEGs.clear();
427     pitchEGs.clear();
428    
429 iliev 2219 LFOs.clear();
430 iliev 2225 pitchLFOs.clear();
431 iliev 2219 filLFOs.clear();
432     resLFOs.clear();
433     panLFOs.clear();
434    
435 iliev 2218 ::sfz::Region* const pRegion = pVoice->pRegion;
436    
437 iliev 2219 for (int i = 0; i < pRegion->eg.size(); i++) {
438 iliev 2218 if (pRegion->eg[i].node.size() == 0) continue;
439    
440     if(EGs.size() < EGs.capacity()) {
441     EGv2Unit eg(this);
442     eg.pEGInfo = &(pRegion->eg[i]);
443     EGs.increment()->Copy(eg);
444     } else { std::cerr << "Maximum number of EGs reached!" << std::endl; break; }
445    
446     if (pRegion->eg[i].amplitude > 0) {
447     if(volEGs.size() < volEGs.capacity()) volEGs.add(EGs[EGs.size() - 1]);
448     else std::cerr << "Maximum number of EGs reached!" << std::endl;
449     }
450     }
451    
452     if (pRegion->ampeg_sustain == -1) {
453     if (volEGs.size() > 0) pRegion->ampeg_sustain = 0;
454     else pRegion->ampeg_sustain = 100;
455     }
456    
457 iliev 2219 // LFO
458     for (int i = 0; i < pRegion->lfos.size(); i++) {
459     if (pRegion->lfos[i].freq == -1) continue; // Not initialized
460    
461     if(LFOs.size() < LFOs.capacity()) {
462     LFOv2Unit lfo(this);
463     lfo.pLfoInfo = &(pRegion->lfos[i]);
464     LFOs.increment()->Copy(lfo);
465 iliev 2225 LFOs[LFOs.size() - 1]->suPitchOnCC.SetCCs(pRegion->lfos[i].pitch_oncc);
466 iliev 2227 LFOs[LFOs.size() - 1]->suFreqOnCC.SetCCs(pRegion->lfos[i].freq_oncc);
467 iliev 2219 } else { std::cerr << "Maximum number of LFOs reached!" << std::endl; break; }
468    
469 iliev 2225 if (pRegion->lfos[i].pitch != 0 || !pRegion->lfos[i].pitch_oncc.empty()) {
470     if(pitchLFOs.size() < pitchLFOs.capacity()) pitchLFOs.add(LFOs[LFOs.size() - 1]);
471     else std::cerr << "Maximum number of LFOs reached!" << std::endl;
472     }
473    
474 iliev 2219 if (pRegion->lfos[i].cutoff != 0) {
475     if(filLFOs.size() < filLFOs.capacity()) filLFOs.add(LFOs[LFOs.size() - 1]);
476     else std::cerr << "Maximum number of LFOs reached!" << std::endl;
477     }
478    
479     if (pRegion->lfos[i].resonance != 0) {
480     if(resLFOs.size() < resLFOs.capacity()) resLFOs.add(LFOs[LFOs.size() - 1]);
481     else std::cerr << "Maximum number of LFOs reached!" << std::endl;
482     }
483    
484     if (pRegion->lfos[i].pan != 0) {
485     if(panLFOs.size() < panLFOs.capacity()) panLFOs.add(LFOs[LFOs.size() - 1]);
486     else std::cerr << "Maximum number of LFOs reached!" << std::endl;
487     }
488     }
489    
490 iliev 2224 suPitchLFO.suDepthCC.SetCCs(pRegion->pitchlfo_depthcc);
491 iliev 2227 suPitchLFO.suFreqOnCC.SetCCs(pRegion->pitchlfo_freqcc);
492 iliev 2224
493 iliev 2227 suFilLFO.suFreqOnCC.SetCCs(pRegion->fillfo_freqcc);
494    
495     suAmpLFO.suFreqOnCC.SetCCs(pRegion->amplfo_freqcc);
496    
497 iliev 2218 Units.clear();
498    
499     Units.add(&suVolEG);
500 iliev 2222 Units.add(&suFilEG);
501 iliev 2220 Units.add(&suPitchEG);
502 iliev 2227
503     Units.add(&suPitchLFO.suFreqOnCC); // Don't change order! (should be triggered before the LFO)
504 iliev 2221 Units.add(&suPitchLFO);
505 iliev 2224 Units.add(&suPitchLFO.suDepthCC);
506 iliev 2226 Units.add(&suPitchLFO.suFadeEG);
507 iliev 2227
508     Units.add(&suAmpLFO.suFreqOnCC); // Don't change order! (should be triggered before the LFO)
509 iliev 2221 Units.add(&suAmpLFO);
510 iliev 2226 Units.add(&suAmpLFO.suFadeEG);
511 iliev 2227
512     Units.add(&suFilLFO.suFreqOnCC); // Don't change order! (should be triggered before the LFO)
513 iliev 2221 Units.add(&suFilLFO);
514 iliev 2226 Units.add(&suFilLFO.suFadeEG);
515 iliev 2218
516 iliev 2219 for (int i = 0; i < EGs.size(); i++) {
517 iliev 2218 Units.add(EGs[i]);
518     }
519    
520 iliev 2219 for (int i = 0; i < LFOs.size(); i++) {
521 iliev 2227 Units.add(&(LFOs[i]->suFreqOnCC)); // Don't change order! (should be triggered before the LFO)
522 iliev 2219 Units.add(LFOs[i]);
523 iliev 2226 Units.add(&(LFOs[i]->suFadeEG));
524 iliev 2225 Units.add(&(LFOs[i]->suPitchOnCC));
525 iliev 2219 }
526    
527 iliev 2218 Units.add(&suEndpoint);
528    
529     SignalUnitRack::Trigger();
530     }
531    
532     EndpointSignalUnit* SfzSignalUnitRack::GetEndpointUnit() {
533     return &suEndpoint;
534     }
535    
536     void SfzSignalUnitRack::EnterFadeOutStage() {
537     suVolEG.EG.enterFadeOutStage();
538    
539     for (int i = 0; i < volEGs.size(); i++) {
540     volEGs[i]->EG.enterFadeOutStage();
541     }
542     }
543    
544     }} // namespace LinuxSampler::sfz

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