/[svn]/linuxsampler/trunk/src/engines/sfz/SfzSignalUnitRack.h
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Fri Aug 19 15:51:18 2011 UTC (12 years, 8 months ago) by iliev
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File size: 16297 byte(s)
* sfz engine: implemented opcodes amplfo_delay_onccN,
  amplfo_fade_onccN, fillfo_delay_onccN, fillfo_fade_onccN,
  pitchlfo_delay_onccN, pitchlfo_fade_onccN

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     #ifndef __LS_SFZSIGNALUNITRACK_H__
24     #define __LS_SFZSIGNALUNITRACK_H__
25    
26     #include "../common/SignalUnitRack.h"
27     #include "EG.h"
28     #include "EGADSR.h"
29 iliev 2219 #include "../common/AbstractVoice.h"
30 iliev 2223 #include "../common/PulseLFO.h"
31     #include "../common/SawLFO.h"
32     #include "../common/SineLFO.h"
33 iliev 2218
34     namespace LinuxSampler { namespace sfz {
35 iliev 2238 const int MaxUnitCount = 200;
36     const int maxEgCount = 30; // Maximum number of v2 envelope generators
37     const int maxLfoCount = 30; // Maximum number of v2 LFOs
38 iliev 2218
39     class Voice;
40     class SfzSignalUnitRack;
41    
42     class SfzSignalUnit: public SignalUnit {
43     public:
44     Voice* pVoice;
45    
46     SfzSignalUnit(SfzSignalUnitRack* rack);
47     SfzSignalUnit(const SfzSignalUnit& Unit): SignalUnit(Unit.pRack) { Copy(Unit); }
48    
49     void Copy(const SfzSignalUnit& Unit) {
50     pVoice = Unit.pVoice;
51    
52     SignalUnit::Copy(Unit);
53     }
54    
55     double GetSampleRate();
56 iliev 2229 float GetInfluence(ArrayList< ::sfz::CC>& cc);
57 iliev 2218 };
58    
59 iliev 2224
60     class CCUnit: public CCSignalUnit {
61     public:
62     Voice* pVoice;
63    
64 iliev 2227 CCUnit(SfzSignalUnitRack* rack, Listener* l = NULL);
65 iliev 2224
66     virtual void Trigger();
67    
68     void SetCCs(::sfz::Array<int>& pCC);
69 iliev 2225 void SetCCs(ArrayList< ::sfz::CC>& cc);
70 iliev 2230
71 iliev 2232 virtual void AddSmoothCC(uint8_t Controller, float Influence, short int Curve, float Smooth);
72    
73 iliev 2248 int GetCurveCount();
74     ::sfz::Curve* GetCurve(int idx);
75 iliev 2232
76     double GetSampleRate();
77 iliev 2224 };
78    
79 iliev 2230 class CurveCCUnit: public CCUnit {
80     public:
81     CurveCCUnit(SfzSignalUnitRack* rack, Listener* l = NULL): CCUnit(rack, l) { }
82    
83 iliev 2232 virtual float Normalize(uint8_t val, short int curve = -1) {
84     if (curve == -1) return val / 127.0f;
85     return GetCurve(curve)->v[val];
86 iliev 2230 }
87     };
88 iliev 2224
89 iliev 2230
90 iliev 2232
91     class SmoothCCUnit: public CurveCCUnit {
92     protected:
93 iliev 2244 RTList<Smoother>* pSmoothers;
94 iliev 2232 public:
95 iliev 2244 SmoothCCUnit(SfzSignalUnitRack* rack, Listener* l = NULL): CurveCCUnit(rack, l), pSmoothers(NULL) { }
96     virtual ~SmoothCCUnit();
97 iliev 2232
98     virtual void AddSmoothCC(uint8_t Controller, float Influence, short int Curve, float Smooth);
99 iliev 2244 virtual void RemoveAllCCs() { CurveCCUnit::RemoveAllCCs(); pSmoothers->clear(); }
100     virtual void InitCCList(Pool<CC>* pCCPool, Pool<Smoother>* pSmootherPool);
101 iliev 2238
102 iliev 2244 void InitSmoothers(Pool<Smoother>* pSmootherPool);
103 iliev 2232 };
104    
105    
106 iliev 2236 class XFInCCUnit: public CCUnit {
107     public:
108     XFInCCUnit(SfzSignalUnitRack* rack, Listener* l = NULL): CCUnit(rack, l) { }
109    
110 iliev 2244 virtual bool Active() { return !pCtrls->isEmpty(); }
111 iliev 2236 virtual void Calculate();
112     virtual void SetCrossFadeCCs(::sfz::Array<int>& loCCs, ::sfz::Array<int>& hiCCs);
113     };
114    
115    
116     class XFOutCCUnit: public XFInCCUnit {
117     public:
118     XFOutCCUnit(SfzSignalUnitRack* rack, Listener* l = NULL): XFInCCUnit(rack, l) { }
119    
120     virtual void Calculate();
121     };
122    
123    
124 iliev 2218 template <class T>
125 iliev 2219 class EGUnit: public SfzSignalUnit {
126 iliev 2218 public:
127     ::sfz::EG* pEGInfo;
128     T EG;
129    
130     EGUnit(SfzSignalUnitRack* rack): SfzSignalUnit(rack), pEGInfo(NULL) { }
131 iliev 2219 EGUnit(const EGUnit& Unit): SfzSignalUnit(Unit) { Copy(Unit); }
132 iliev 2218 void operator=(const EGUnit& Unit) { Copy(Unit); }
133    
134     void Copy(const EGUnit& Unit) {
135     pEGInfo = Unit.pEGInfo;
136    
137     SfzSignalUnit::Copy(Unit);
138     }
139    
140     virtual bool Active() { return EG.active(); }
141 iliev 2220 virtual float GetLevel() { return DelayStage() ? 0 : EG.getLevel(); }
142 iliev 2218
143     virtual void EnterReleaseStage() { EG.update(EG::event_release, GetSampleRate()); }
144     virtual void CancelRelease() { EG.update(EG::event_cancel_release, GetSampleRate()); }
145    
146     virtual void Increment() {
147     if (DelayStage()) return;
148    
149     SfzSignalUnit::Increment();
150     if (!EG.active()) return;
151    
152     switch (EG.getSegmentType()) {
153     case EG::segment_lin:
154     EG.processLin();
155     break;
156     case EG::segment_exp:
157     EG.processExp();
158     break;
159     case EG::segment_end:
160     EG.getLevel();
161     break; // noop
162     case EG::segment_pow:
163     EG.processPow();
164     break;
165     }
166    
167     if (EG.active()) {
168     EG.increment(1);
169     if (!EG.toStageEndLeft()) EG.update(EG::event_stage_end, GetSampleRate());
170     }
171     }
172     };
173    
174     class EGv1Unit: public EGUnit<EGADSR> {
175     public:
176 iliev 2220 int depth;
177     EGv1Unit(SfzSignalUnitRack* rack): EGUnit<EGADSR>(rack), depth(0) { }
178 iliev 2218 };
179    
180     class EGv2Unit: public EGUnit< ::LinuxSampler::sfz::EG> {
181 iliev 2229 protected:
182     ::sfz::EG egInfo;
183 iliev 2218 public:
184 iliev 2235 CCUnit suAmpOnCC;
185     CCUnit suVolOnCC;
186     CCUnit suPitchOnCC;
187     CCUnit suCutoffOnCC;
188     CCUnit suResOnCC;
189 iliev 2237 CurveCCUnit suPanOnCC;
190 iliev 2235
191     EGv2Unit(SfzSignalUnitRack* rack);
192 iliev 2218 virtual void Trigger();
193     };
194    
195 iliev 2220 class PitchEGUnit: public EGv1Unit {
196     public:
197     PitchEGUnit(SfzSignalUnitRack* rack): EGv1Unit(rack) { }
198     virtual void Trigger();
199     };
200    
201 iliev 2222 class FilEGUnit: public EGv1Unit {
202     public:
203     FilEGUnit(SfzSignalUnitRack* rack): EGv1Unit(rack) { }
204     virtual void Trigger();
205     };
206    
207 iliev 2229 class AmpEGUnit: public EGv1Unit {
208     public:
209     AmpEGUnit(SfzSignalUnitRack* rack): EGv1Unit(rack) { }
210     virtual void Trigger();
211     };
212    
213 iliev 2223 class AbstractLfo {
214     public:
215     virtual float Render() = 0;
216     virtual void Update(const uint16_t& ExtControlValue) = 0;
217     virtual void Trigger(float Frequency, start_level_t StartLevel, uint16_t InternalDepth, uint16_t ExtControlDepth, bool FlipPhase, unsigned int SampleRate) = 0;
218 iliev 2225 virtual void SetPhase(float phase) = 0;
219 iliev 2227 virtual void SetFrequency(float Frequency, unsigned int SampleRate) = 0;
220 iliev 2223 };
221    
222     template <class T>
223     class LfoBase: public AbstractLfo, public T {
224     public:
225     LfoBase(float Max): T(Max) { }
226     virtual float Render() { return T::render(); }
227    
228     virtual void Update(const uint16_t& ExtControlValue) { T::update(ExtControlValue); }
229    
230     virtual void Trigger (
231     float Frequency, start_level_t StartLevel, uint16_t InternalDepth,
232     uint16_t ExtControlDepth, bool FlipPhase, unsigned int SampleRate
233     ) {
234     T::trigger(Frequency, StartLevel, InternalDepth, ExtControlDepth, FlipPhase, SampleRate);
235     }
236 iliev 2225
237     virtual void SetPhase(float phase) { T::setPhase(phase); }
238 iliev 2227
239     virtual void SetFrequency(float Frequency, unsigned int SampleRate) {
240     T::setFrequency(Frequency, SampleRate);
241     }
242 iliev 2223 };
243    
244 iliev 2226 class LFOUnit;
245    
246     class FadeEGUnit: public EGUnit<EGADSR> {
247     public:
248     FadeEGUnit(SfzSignalUnitRack* rack): EGUnit<EGADSR>(rack) { }
249     virtual void Trigger() { }
250     virtual void EnterReleaseStage() { }
251     virtual void CancelRelease() { }
252    
253     friend class LFOUnit;
254     };
255    
256 iliev 2227 class LFOUnit: public SfzSignalUnit, public CCSignalUnit::Listener {
257 iliev 2219 public:
258 iliev 2226 ::sfz::LFO* pLfoInfo;
259 iliev 2223 AbstractLfo* pLFO;
260 iliev 2226 FadeEGUnit suFadeEG;
261 iliev 2233 SmoothCCUnit suDepthOnCC;
262     SmoothCCUnit suFreqOnCC;
263 iliev 2219
264 iliev 2227 LFOUnit(SfzSignalUnitRack* rack);
265 iliev 2226 LFOUnit(const LFOUnit& Unit);
266 iliev 2219 void operator=(const LFOUnit& Unit) { Copy(Unit); }
267    
268     void Copy(const LFOUnit& Unit) {
269 iliev 2227 pLfoInfo = Unit.pLfoInfo;
270 iliev 2226 suFadeEG = Unit.suFadeEG;
271 iliev 2219
272     SfzSignalUnit::Copy(Unit);
273     }
274    
275 iliev 2229 virtual bool Active() { return pLfoInfo->freq > 0; }
276 iliev 2219 virtual void Trigger();
277     virtual void Increment();
278     virtual float GetLevel() { return Level; }
279 iliev 2244
280     // CCSignalUnit::Listener interface implementation
281     virtual void ValueChanged(CCSignalUnit* pUnit);
282 iliev 2219 };
283 iliev 2218
284 iliev 2221 class LFOv1Unit: public LFOUnit {
285     public:
286     ::sfz::LFO lfoInfo;
287 iliev 2223 LfoBase<LFOSigned> lfo;
288 iliev 2221
289 iliev 2223 LFOv1Unit(SfzSignalUnitRack* rack): LFOUnit(rack), lfo(1200.0f) {
290     pLfoInfo = &lfoInfo; pLFO = &lfo;
291     }
292 iliev 2221
293     virtual void Trigger();
294     };
295    
296 iliev 2219 class LFOv2Unit: public LFOUnit {
297 iliev 2223 protected:
298     FixedArray<AbstractLfo*> lfos;
299     LfoBase<LFOSigned> lfo0; // triangle
300     LfoBase<SineLFO<range_signed> > lfo1; // sine
301     LfoBase<PulseLFO<range_unsigned, 750> > lfo2; // pulse 75%
302     LfoBase<SquareLFO<range_signed> > lfo3; // square
303     LfoBase<PulseLFO<range_unsigned, 250> > lfo4; // pulse 25%
304     LfoBase<PulseLFO<range_unsigned, 125> > lfo5; // pulse 12,5%
305     LfoBase<SawLFO<range_unsigned, true> > lfo6; // saw up
306     LfoBase<SawLFO<range_unsigned, false> > lfo7; // saw down
307    
308    
309 iliev 2219 public:
310 iliev 2233 SmoothCCUnit suVolOnCC;
311     SmoothCCUnit suPitchOnCC;
312     SmoothCCUnit suPanOnCC;
313     SmoothCCUnit suCutoffOnCC;
314     SmoothCCUnit suResOnCC;
315 iliev 2225
316 iliev 2223 LFOv2Unit(SfzSignalUnitRack* rack);
317 iliev 2219
318     virtual void Trigger();
319     };
320 iliev 2218
321 iliev 2221 class AmpLFOUnit: public LFOv1Unit {
322     public:
323     AmpLFOUnit(SfzSignalUnitRack* rack): LFOv1Unit(rack) { }
324    
325     virtual void Trigger();
326     };
327 iliev 2219
328 iliev 2221 class PitchLFOUnit: public LFOv1Unit {
329     public:
330 iliev 2233 PitchLFOUnit(SfzSignalUnitRack* rack): LFOv1Unit(rack) { }
331 iliev 2221
332     virtual void Trigger();
333     };
334 iliev 2219
335 iliev 2221 class FilLFOUnit: public LFOv1Unit {
336     public:
337     FilLFOUnit(SfzSignalUnitRack* rack): LFOv1Unit(rack) { }
338    
339     virtual void Trigger();
340     };
341    
342    
343 iliev 2224 class EndpointUnit: public EndpointSignalUnit {
344 iliev 2236 private:
345     float xfCoeff; // crossfade coefficient
346 iliev 2237 float pitchVeltrackRatio;
347 iliev 2236
348 iliev 2218 public:
349     Voice* pVoice;
350 iliev 2237 XFInCCUnit suXFInCC;
351     XFOutCCUnit suXFOutCC;
352     SmoothCCUnit suPanOnCC;
353 iliev 2218
354     EndpointUnit(SfzSignalUnitRack* rack);
355    
356     virtual void Trigger();
357    
358     /** The endpoint should be active until the volume EG is active. */
359     virtual bool Active();
360    
361     virtual float GetVolume();
362     virtual float GetFilterCutoff();
363     virtual float GetPitch();
364     virtual float GetResonance();
365 iliev 2219 virtual float GetPan();
366 iliev 2218
367     SfzSignalUnitRack* const GetRack();
368 iliev 2219
369     virtual float CalculateResonance(float res) {
370     return GetResonance() + res;
371     }
372 iliev 2235
373     virtual float CalculateFilterCutoff(float cutoff);
374 iliev 2218 };
375    
376    
377     class SfzSignalUnitRack : public SignalUnitRack {
378     private:
379     EndpointUnit suEndpoint;
380 iliev 2229 AmpEGUnit suVolEG;
381 iliev 2222 FilEGUnit suFilEG;
382 iliev 2220 PitchEGUnit suPitchEG;
383 iliev 2218
384 iliev 2221 AmpLFOUnit suAmpLFO;
385     PitchLFOUnit suPitchLFO;
386     FilLFOUnit suFilLFO;
387    
388 iliev 2230 // SFZ v2
389    
390 iliev 2232 SmoothCCUnit suVolOnCC;
391 iliev 2230
392 iliev 2218 FixedArray<EGv2Unit*> EGs;
393    
394     // used for optimization - contains only the ones that are modulating volume
395     FixedArray<EGv2Unit*> volEGs;
396    
397     // used for optimization - contains only the ones that are modulating pitch
398     FixedArray<EGv2Unit*> pitchEGs;
399    
400 iliev 2235 // used for optimization - contains only the ones that are modulating filter cutoff
401     FixedArray<EGv2Unit*> filEGs;
402 iliev 2219
403 iliev 2237 // used for optimization - contains only the ones that are modulating resonance
404 iliev 2235 FixedArray<EGv2Unit*> resEGs;
405    
406 iliev 2237 // used for optimization - contains only the ones that are modulating pitch
407     FixedArray<EGv2Unit*> panEGs;
408 iliev 2235
409 iliev 2237
410 iliev 2219 FixedArray<LFOv2Unit*> LFOs;
411    
412 iliev 2233 // used for optimization - contains only the ones that are modulating volume
413     FixedArray<LFOv2Unit*> volLFOs;
414    
415 iliev 2225 // used for optimization - contains only the ones that are modulating pitch
416     FixedArray<LFOv2Unit*> pitchLFOs;
417    
418 iliev 2219 // used for optimization - contains only the ones that are modulating filter cutoff
419     FixedArray<LFOv2Unit*> filLFOs;
420    
421     // used for optimization - contains only the ones that are modulating resonance
422     FixedArray<LFOv2Unit*> resLFOs;
423    
424     // used for optimization - contains only the ones that are modulating pan
425     FixedArray<LFOv2Unit*> panLFOs;
426    
427 iliev 2218
428     public:
429     Voice* const pVoice;
430    
431     /**
432     * @param Voice The voice to which this rack belongs.
433     */
434     SfzSignalUnitRack(Voice* voice);
435     ~SfzSignalUnitRack();
436    
437     virtual EndpointSignalUnit* GetEndpointUnit();
438    
439     virtual void Trigger();
440     virtual void EnterFadeOutStage();
441    
442 iliev 2244 /** Called when the engine is set and the engine's pools are ready to use. */
443     void InitRTLists();
444    
445     /** Invoked when the voice gone inactive. */
446     void Reset();
447    
448 iliev 2218 friend class EndpointUnit;
449     };
450     }} // namespace LinuxSampler::sfz
451    
452     #endif /* __LS_SFZSIGNALUNITRACK_H__ */
453    

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