/[svn]/linuxsampler/trunk/src/engines/gig/Engine.cpp
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Annotation of /linuxsampler/trunk/src/engines/gig/Engine.cpp

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Revision 769 - (hide annotations) (download)
Sat Sep 3 11:14:30 2005 UTC (18 years, 7 months ago) by schoenebeck
File size: 66671 byte(s)
* fixed endless loop which occured on MIDI control change
  and pitch bend events

1 schoenebeck 53 /***************************************************************************
2     * *
3     * LinuxSampler - modular, streaming capable sampler *
4     * *
5 schoenebeck 56 * Copyright (C) 2003, 2004 by Benno Senoner and Christian Schoenebeck *
6 schoenebeck 411 * Copyright (C) 2005 Christian Schoenebeck *
7 schoenebeck 53 * *
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 <sstream>
25     #include "DiskThread.h"
26     #include "Voice.h"
27 schoenebeck 285 #include "EGADSR.h"
28 schoenebeck 420 #include "../EngineFactory.h"
29 schoenebeck 53
30     #include "Engine.h"
31    
32     namespace LinuxSampler { namespace gig {
33    
34 schoenebeck 411 InstrumentResourceManager Engine::instruments;
35 schoenebeck 53
36 schoenebeck 411 std::map<AudioOutputDevice*,Engine*> Engine::engines;
37    
38 schoenebeck 412 /**
39     * Get a gig::Engine object for the given gig::EngineChannel and the
40     * given AudioOutputDevice. All engine channels which are connected to
41     * the same audio output device will use the same engine instance. This
42     * method will be called by a gig::EngineChannel whenever it's
43     * connecting to a audio output device.
44     *
45     * @param pChannel - engine channel which acquires an engine object
46     * @param pDevice - the audio output device \a pChannel is connected to
47     */
48 schoenebeck 411 Engine* Engine::AcquireEngine(LinuxSampler::gig::EngineChannel* pChannel, AudioOutputDevice* pDevice) {
49 schoenebeck 412 Engine* pEngine = NULL;
50     // check if there's already an engine for the given audio output device
51 schoenebeck 411 if (engines.count(pDevice)) {
52 schoenebeck 412 dmsg(4,("Using existing gig::Engine.\n"));
53 persson 438 pEngine = engines[pDevice];
54 schoenebeck 412 } else { // create a new engine (and disk thread) instance for the given audio output device
55     dmsg(4,("Creating new gig::Engine.\n"));
56 schoenebeck 420 pEngine = (Engine*) EngineFactory::Create("gig");
57 schoenebeck 411 pEngine->Connect(pDevice);
58 persson 438 engines[pDevice] = pEngine;
59 schoenebeck 411 }
60 schoenebeck 412 // register engine channel to the engine instance
61 schoenebeck 460 pEngine->engineChannels.add(pChannel);
62     // remember index in the ArrayList
63     pChannel->iEngineIndexSelf = pEngine->engineChannels.size() - 1;
64 schoenebeck 412 dmsg(4,("This gig::Engine has now %d EngineChannels.\n",pEngine->engineChannels.size()));
65 schoenebeck 411 return pEngine;
66     }
67    
68 schoenebeck 412 /**
69     * Once an engine channel is disconnected from an audio output device,
70     * it wil immediately call this method to unregister itself from the
71     * engine instance and if that engine instance is not used by any other
72     * engine channel anymore, then that engine instance will be destroyed.
73     *
74     * @param pChannel - engine channel which wants to disconnect from it's
75     * engine instance
76     * @param pDevice - audio output device \a pChannel was connected to
77     */
78 schoenebeck 411 void Engine::FreeEngine(LinuxSampler::gig::EngineChannel* pChannel, AudioOutputDevice* pDevice) {
79 schoenebeck 412 dmsg(4,("Disconnecting EngineChannel from gig::Engine.\n"));
80 schoenebeck 411 Engine* pEngine = engines[pDevice];
81 schoenebeck 412 // unregister EngineChannel from the Engine instance
82     pEngine->engineChannels.remove(pChannel);
83     // if the used Engine instance is not used anymore, then destroy it
84     if (pEngine->engineChannels.empty()) {
85     pDevice->Disconnect(pEngine);
86     engines.erase(pDevice);
87     delete pEngine;
88     dmsg(4,("Destroying gig::Engine.\n"));
89     }
90     else dmsg(4,("This gig::Engine has now %d EngineChannels.\n",pEngine->engineChannels.size()));
91 schoenebeck 411 }
92    
93 schoenebeck 473 /**
94     * Constructor
95     */
96 schoenebeck 53 Engine::Engine() {
97     pAudioOutputDevice = NULL;
98     pDiskThread = NULL;
99     pEventGenerator = NULL;
100 schoenebeck 554 pSysexBuffer = new RingBuffer<uint8_t>(CONFIG_SYSEX_BUFFER_SIZE, 0);
101     pEventQueue = new RingBuffer<Event>(CONFIG_MAX_EVENTS_PER_FRAGMENT, 0);
102     pEventPool = new Pool<Event>(CONFIG_MAX_EVENTS_PER_FRAGMENT);
103     pVoicePool = new Pool<Voice>(CONFIG_MAX_VOICES);
104 schoenebeck 271 pVoiceStealingQueue = new RTList<Event>(pEventPool);
105 schoenebeck 460 pGlobalEvents = new RTList<Event>(pEventPool);
106 schoenebeck 271 for (RTList<Voice>::Iterator iterVoice = pVoicePool->allocAppend(); iterVoice == pVoicePool->last(); iterVoice = pVoicePool->allocAppend()) {
107     iterVoice->SetEngine(this);
108 schoenebeck 53 }
109     pVoicePool->clear();
110    
111     ResetInternal();
112 schoenebeck 659 ResetScaleTuning();
113 schoenebeck 53 }
114    
115 schoenebeck 473 /**
116     * Destructor
117     */
118 schoenebeck 53 Engine::~Engine() {
119     if (pDiskThread) {
120 senkov 329 dmsg(1,("Stopping disk thread..."));
121 schoenebeck 53 pDiskThread->StopThread();
122     delete pDiskThread;
123 senkov 329 dmsg(1,("OK\n"));
124 schoenebeck 53 }
125     if (pEventQueue) delete pEventQueue;
126     if (pEventPool) delete pEventPool;
127 schoenebeck 411 if (pVoicePool) {
128     pVoicePool->clear();
129     delete pVoicePool;
130     }
131 schoenebeck 53 if (pEventGenerator) delete pEventGenerator;
132 schoenebeck 250 if (pVoiceStealingQueue) delete pVoiceStealingQueue;
133 schoenebeck 411 if (pSysexBuffer) delete pSysexBuffer;
134 schoenebeck 420 EngineFactory::Destroy(this);
135 schoenebeck 53 }
136    
137     void Engine::Enable() {
138     dmsg(3,("gig::Engine: enabling\n"));
139     EngineDisabled.PushAndUnlock(false, 2); // set condition object 'EngineDisabled' to false (wait max. 2s)
140 schoenebeck 64 dmsg(3,("gig::Engine: enabled (val=%d)\n", EngineDisabled.GetUnsafe()));
141 schoenebeck 53 }
142    
143     void Engine::Disable() {
144     dmsg(3,("gig::Engine: disabling\n"));
145     bool* pWasDisabled = EngineDisabled.PushAndUnlock(true, 2); // wait max. 2s
146     if (!pWasDisabled) dmsg(3,("gig::Engine warning: Timeout waiting to disable engine.\n"));
147     }
148    
149     void Engine::DisableAndLock() {
150     dmsg(3,("gig::Engine: disabling\n"));
151     bool* pWasDisabled = EngineDisabled.Push(true, 2); // wait max. 2s
152     if (!pWasDisabled) dmsg(3,("gig::Engine warning: Timeout waiting to disable engine.\n"));
153     }
154    
155     /**
156     * Reset all voices and disk thread and clear input event queue and all
157     * control and status variables.
158     */
159     void Engine::Reset() {
160     DisableAndLock();
161     ResetInternal();
162 schoenebeck 659 ResetScaleTuning();
163 schoenebeck 53 Enable();
164     }
165    
166     /**
167     * Reset all voices and disk thread and clear input event queue and all
168     * control and status variables. This method is not thread safe!
169     */
170     void Engine::ResetInternal() {
171     ActiveVoiceCount = 0;
172     ActiveVoiceCountMax = 0;
173    
174 schoenebeck 250 // reset voice stealing parameters
175     pVoiceStealingQueue->clear();
176 schoenebeck 649 itLastStolenVoice = RTList<Voice>::Iterator();
177     itLastStolenVoiceGlobally = RTList<Voice>::Iterator();
178     iuiLastStolenKey = RTList<uint>::Iterator();
179     iuiLastStolenKeyGlobally = RTList<uint>::Iterator();
180     pLastStolenChannel = NULL;
181 schoenebeck 250
182 schoenebeck 53 // reset all voices
183 schoenebeck 271 for (RTList<Voice>::Iterator iterVoice = pVoicePool->allocAppend(); iterVoice == pVoicePool->last(); iterVoice = pVoicePool->allocAppend()) {
184     iterVoice->Reset();
185 schoenebeck 53 }
186     pVoicePool->clear();
187    
188     // reset disk thread
189     if (pDiskThread) pDiskThread->Reset();
190    
191     // delete all input events
192     pEventQueue->init();
193 persson 438 }
194 schoenebeck 53
195 schoenebeck 473 /**
196 schoenebeck 659 * Reset to normal, chromatic scale (means equal tempered).
197     */
198     void Engine::ResetScaleTuning() {
199     memset(&ScaleTuning[0], 0x00, 12);
200     }
201    
202     /**
203 schoenebeck 473 * Connect this engine instance with the given audio output device.
204     * This method will be called when an Engine instance is created.
205     * All of the engine's data structures which are dependant to the used
206     * audio output device / driver will be (re)allocated and / or
207     * adjusted appropriately.
208     *
209     * @param pAudioOut - audio output device to connect to
210     */
211 schoenebeck 53 void Engine::Connect(AudioOutputDevice* pAudioOut) {
212     pAudioOutputDevice = pAudioOut;
213    
214     ResetInternal();
215    
216     // inform audio driver for the need of two channels
217     try {
218     pAudioOutputDevice->AcquireChannels(2); // gig engine only stereo
219     }
220     catch (AudioOutputException e) {
221     String msg = "Audio output device unable to provide 2 audio channels, cause: " + e.Message();
222     throw LinuxSamplerException(msg);
223     }
224 persson 438
225 schoenebeck 460 this->MaxSamplesPerCycle = pAudioOutputDevice->MaxSamplesPerCycle();
226     this->SampleRate = pAudioOutputDevice->SampleRate();
227 schoenebeck 225
228 schoenebeck 285 // FIXME: audio drivers with varying fragment sizes might be a problem here
229 schoenebeck 554 MaxFadeOutPos = MaxSamplesPerCycle - int(double(SampleRate) * CONFIG_EG_MIN_RELEASE_TIME) - 1;
230 schoenebeck 688 if (MaxFadeOutPos < 0) {
231     std::cerr << "gig::Engine: WARNING, CONFIG_EG_MIN_RELEASE_TIME "
232     << "too big for current audio fragment size & sampling rate! "
233 schoenebeck 690 << "May lead to click sounds if voice stealing chimes in!\n" << std::flush;
234 schoenebeck 688 // force volume ramp downs at the beginning of each fragment
235     MaxFadeOutPos = 0;
236     // lower minimum release time
237     const float minReleaseTime = (float) MaxSamplesPerCycle / (float) SampleRate;
238     for (RTList<Voice>::Iterator iterVoice = pVoicePool->allocAppend(); iterVoice == pVoicePool->last(); iterVoice = pVoicePool->allocAppend()) {
239 schoenebeck 738 iterVoice->EG1.CalculateFadeOutCoeff(minReleaseTime, SampleRate);
240 schoenebeck 688 }
241     pVoicePool->clear();
242     }
243 schoenebeck 285
244 schoenebeck 53 // (re)create disk thread
245     if (this->pDiskThread) {
246 senkov 329 dmsg(1,("Stopping disk thread..."));
247 schoenebeck 53 this->pDiskThread->StopThread();
248     delete this->pDiskThread;
249 senkov 329 dmsg(1,("OK\n"));
250 schoenebeck 53 }
251 schoenebeck 554 this->pDiskThread = new DiskThread(((pAudioOut->MaxSamplesPerCycle() << CONFIG_MAX_PITCH) << 1) + 6); //FIXME: assuming stereo
252 schoenebeck 53 if (!pDiskThread) {
253     dmsg(0,("gig::Engine new diskthread = NULL\n"));
254     exit(EXIT_FAILURE);
255     }
256    
257 schoenebeck 271 for (RTList<Voice>::Iterator iterVoice = pVoicePool->allocAppend(); iterVoice == pVoicePool->last(); iterVoice = pVoicePool->allocAppend()) {
258     iterVoice->pDiskThread = this->pDiskThread;
259 schoenebeck 53 dmsg(3,("d"));
260     }
261     pVoicePool->clear();
262    
263     // (re)create event generator
264     if (pEventGenerator) delete pEventGenerator;
265     pEventGenerator = new EventGenerator(pAudioOut->SampleRate());
266    
267     dmsg(1,("Starting disk thread..."));
268     pDiskThread->StartThread();
269     dmsg(1,("OK\n"));
270    
271 schoenebeck 271 for (RTList<Voice>::Iterator iterVoice = pVoicePool->allocAppend(); iterVoice == pVoicePool->last(); iterVoice = pVoicePool->allocAppend()) {
272     if (!iterVoice->pDiskThread) {
273 schoenebeck 53 dmsg(0,("Engine -> voice::trigger: !pDiskThread\n"));
274     exit(EXIT_FAILURE);
275     }
276     }
277     }
278    
279 schoenebeck 473 /**
280     * Clear all engine global event lists.
281     */
282 schoenebeck 412 void Engine::ClearEventLists() {
283 schoenebeck 460 pGlobalEvents->clear();
284 schoenebeck 412 }
285    
286 schoenebeck 53 /**
287 schoenebeck 460 * Copy all events from the engine's global input queue buffer to the
288     * engine's internal event list. This will be done at the beginning of
289     * each audio cycle (that is each RenderAudio() call) to distinguish
290     * all global events which have to be processed in the current audio
291     * cycle. These events are usually just SysEx messages. Every
292     * EngineChannel has it's own input event queue buffer and event list
293     * to handle common events like NoteOn, NoteOff and ControlChange
294     * events.
295 schoenebeck 412 *
296 schoenebeck 460 * @param Samples - number of sample points to be processed in the
297     * current audio cycle
298 schoenebeck 412 */
299 schoenebeck 460 void Engine::ImportEvents(uint Samples) {
300 schoenebeck 412 RingBuffer<Event>::NonVolatileReader eventQueueReader = pEventQueue->get_non_volatile_reader();
301     Event* pEvent;
302     while (true) {
303     // get next event from input event queue
304     if (!(pEvent = eventQueueReader.pop())) break;
305     // if younger event reached, ignore that and all subsequent ones for now
306     if (pEvent->FragmentPos() >= Samples) {
307     eventQueueReader--;
308     dmsg(2,("Younger Event, pos=%d ,Samples=%d!\n",pEvent->FragmentPos(),Samples));
309     pEvent->ResetFragmentPos();
310     break;
311     }
312     // copy event to internal event list
313 schoenebeck 460 if (pGlobalEvents->poolIsEmpty()) {
314 schoenebeck 412 dmsg(1,("Event pool emtpy!\n"));
315     break;
316     }
317 schoenebeck 460 *pGlobalEvents->allocAppend() = *pEvent;
318 schoenebeck 412 }
319     eventQueueReader.free(); // free all copied events from input queue
320 persson 438 }
321 schoenebeck 412
322     /**
323 schoenebeck 53 * Let this engine proceed to render the given amount of sample points. The
324     * calculated audio data of all voices of this engine will be placed into
325     * the engine's audio sum buffer which has to be copied and eventually be
326     * converted to the appropriate value range by the audio output class (e.g.
327     * AlsaIO or JackIO) right after.
328     *
329     * @param Samples - number of sample points to be rendered
330     * @returns 0 on success
331     */
332 schoenebeck 412 int Engine::RenderAudio(uint Samples) {
333 schoenebeck 53 dmsg(5,("RenderAudio(Samples=%d)\n", Samples));
334    
335 schoenebeck 412 // return if engine disabled
336 schoenebeck 53 if (EngineDisabled.Pop()) {
337     dmsg(5,("gig::Engine: engine disabled (val=%d)\n",EngineDisabled.GetUnsafe()));
338     return 0;
339     }
340    
341 schoenebeck 293 // update time of start and end of this audio fragment (as events' time stamps relate to this)
342     pEventGenerator->UpdateFragmentTime(Samples);
343    
344 schoenebeck 663 // We only allow a maximum of CONFIG_MAX_VOICES voices to be spawned
345     // in each audio fragment. All subsequent request for spawning new
346     // voices in the same audio fragment will be ignored.
347     VoiceSpawnsLeft = CONFIG_MAX_VOICES;
348    
349 schoenebeck 412 // get all events from the engine's global input event queue which belong to the current fragment
350     // (these are usually just SysEx messages)
351 schoenebeck 460 ImportEvents(Samples);
352 schoenebeck 412
353     // process engine global events (these are currently only MIDI System Exclusive messages)
354     {
355 schoenebeck 460 RTList<Event>::Iterator itEvent = pGlobalEvents->first();
356     RTList<Event>::Iterator end = pGlobalEvents->end();
357 schoenebeck 412 for (; itEvent != end; ++itEvent) {
358     switch (itEvent->Type) {
359     case Event::type_sysex:
360     dmsg(5,("Engine: Sysex received\n"));
361     ProcessSysex(itEvent);
362     break;
363     }
364     }
365 schoenebeck 53 }
366 schoenebeck 412
367     // reset internal voice counter (just for statistic of active voices)
368     ActiveVoiceCountTemp = 0;
369    
370 schoenebeck 466 // handle events on all engine channels
371 schoenebeck 460 for (int i = 0; i < engineChannels.size(); i++) {
372     if (!engineChannels[i]->pInstrument) continue; // ignore if no instrument loaded
373     ProcessEvents(engineChannels[i], Samples);
374 schoenebeck 466 }
375    
376     // render all 'normal', active voices on all engine channels
377     for (int i = 0; i < engineChannels.size(); i++) {
378     if (!engineChannels[i]->pInstrument) continue; // ignore if no instrument loaded
379 schoenebeck 460 RenderActiveVoices(engineChannels[i], Samples);
380 schoenebeck 412 }
381    
382 schoenebeck 460 // now that all ordinary voices on ALL engine channels are rendered, render new stolen voices
383     RenderStolenVoices(Samples);
384    
385     // handle cleanup on all engine channels for the next audio fragment
386     for (int i = 0; i < engineChannels.size(); i++) {
387     if (!engineChannels[i]->pInstrument) continue; // ignore if no instrument loaded
388     PostProcess(engineChannels[i]);
389     }
390    
391    
392     // empty the engine's event list for the next audio fragment
393     ClearEventLists();
394    
395     // reset voice stealing for the next audio fragment
396     pVoiceStealingQueue->clear();
397    
398 schoenebeck 412 // just some statistics about this engine instance
399     ActiveVoiceCount = ActiveVoiceCountTemp;
400     if (ActiveVoiceCount > ActiveVoiceCountMax) ActiveVoiceCountMax = ActiveVoiceCount;
401    
402 persson 630 FrameTime += Samples;
403    
404 schoenebeck 412 return 0;
405     }
406    
407 schoenebeck 473 /**
408     * Dispatch and handle all events in this audio fragment for the given
409     * engine channel.
410     *
411     * @param pEngineChannel - engine channel on which events should be
412     * processed
413     * @param Samples - amount of sample points to be processed in
414     * this audio fragment cycle
415     */
416 schoenebeck 460 void Engine::ProcessEvents(EngineChannel* pEngineChannel, uint Samples) {
417 schoenebeck 412 // get all events from the engine channels's input event queue which belong to the current fragment
418     // (these are the common events like NoteOn, NoteOff, ControlChange, etc.)
419 schoenebeck 460 pEngineChannel->ImportEvents(Samples);
420 schoenebeck 53
421     // process events
422 schoenebeck 271 {
423 schoenebeck 460 RTList<Event>::Iterator itEvent = pEngineChannel->pEvents->first();
424     RTList<Event>::Iterator end = pEngineChannel->pEvents->end();
425 schoenebeck 271 for (; itEvent != end; ++itEvent) {
426     switch (itEvent->Type) {
427     case Event::type_note_on:
428     dmsg(5,("Engine: Note on received\n"));
429 schoenebeck 412 ProcessNoteOn((EngineChannel*)itEvent->pEngineChannel, itEvent);
430 schoenebeck 271 break;
431     case Event::type_note_off:
432     dmsg(5,("Engine: Note off received\n"));
433 schoenebeck 412 ProcessNoteOff((EngineChannel*)itEvent->pEngineChannel, itEvent);
434 schoenebeck 271 break;
435     case Event::type_control_change:
436     dmsg(5,("Engine: MIDI CC received\n"));
437 schoenebeck 412 ProcessControlChange((EngineChannel*)itEvent->pEngineChannel, itEvent);
438 schoenebeck 271 break;
439     case Event::type_pitchbend:
440     dmsg(5,("Engine: Pitchbend received\n"));
441 schoenebeck 412 ProcessPitchbend((EngineChannel*)itEvent->pEngineChannel, itEvent);
442 schoenebeck 271 break;
443     }
444 schoenebeck 53 }
445     }
446 schoenebeck 649
447     // reset voice stealing for the next engine channel (or next audio fragment)
448     itLastStolenVoice = RTList<Voice>::Iterator();
449     itLastStolenVoiceGlobally = RTList<Voice>::Iterator();
450     iuiLastStolenKey = RTList<uint>::Iterator();
451     iuiLastStolenKeyGlobally = RTList<uint>::Iterator();
452     pLastStolenChannel = NULL;
453 schoenebeck 460 }
454 schoenebeck 53
455 schoenebeck 473 /**
456     * Render all 'normal' voices (that is voices which were not stolen in
457     * this fragment) on the given engine channel.
458     *
459     * @param pEngineChannel - engine channel on which audio should be
460     * rendered
461     * @param Samples - amount of sample points to be rendered in
462     * this audio fragment cycle
463     */
464 schoenebeck 460 void Engine::RenderActiveVoices(EngineChannel* pEngineChannel, uint Samples) {
465 iliev 716 #if !CONFIG_PROCESS_MUTED_CHANNELS
466 schoenebeck 705 if (pEngineChannel->GetMute()) return; // skip if sampler channel is muted
467 iliev 716 #endif
468 schoenebeck 705
469 schoenebeck 460 RTList<uint>::Iterator iuiKey = pEngineChannel->pActiveKeys->first();
470     RTList<uint>::Iterator end = pEngineChannel->pActiveKeys->end();
471     while (iuiKey != end) { // iterate through all active keys
472     midi_key_info_t* pKey = &pEngineChannel->pMIDIKeyInfo[*iuiKey];
473     ++iuiKey;
474 schoenebeck 53
475 schoenebeck 460 RTList<Voice>::Iterator itVoice = pKey->pActiveVoices->first();
476     RTList<Voice>::Iterator itVoicesEnd = pKey->pActiveVoices->end();
477     for (; itVoice != itVoicesEnd; ++itVoice) { // iterate through all voices on this key
478     // now render current voice
479     itVoice->Render(Samples);
480     if (itVoice->IsActive()) ActiveVoiceCountTemp++; // still active
481     else { // voice reached end, is now inactive
482     FreeVoice(pEngineChannel, itVoice); // remove voice from the list of active voices
483 schoenebeck 53 }
484     }
485     }
486 schoenebeck 460 }
487 schoenebeck 53
488 schoenebeck 473 /**
489     * Render all stolen voices (only voices which were stolen in this
490     * fragment) on the given engine channel. Stolen voices are rendered
491     * after all normal voices have been rendered; this is needed to render
492     * audio of those voices which were selected for voice stealing until
493     * the point were the stealing (that is the take over of the voice)
494     * actually happened.
495     *
496     * @param pEngineChannel - engine channel on which audio should be
497     * rendered
498     * @param Samples - amount of sample points to be rendered in
499     * this audio fragment cycle
500     */
501 schoenebeck 460 void Engine::RenderStolenVoices(uint Samples) {
502     RTList<Event>::Iterator itVoiceStealEvent = pVoiceStealingQueue->first();
503     RTList<Event>::Iterator end = pVoiceStealingQueue->end();
504     for (; itVoiceStealEvent != end; ++itVoiceStealEvent) {
505     EngineChannel* pEngineChannel = (EngineChannel*) itVoiceStealEvent->pEngineChannel;
506     Pool<Voice>::Iterator itNewVoice =
507 schoenebeck 668 LaunchVoice(pEngineChannel, itVoiceStealEvent, itVoiceStealEvent->Param.Note.Layer, itVoiceStealEvent->Param.Note.ReleaseTrigger, false, false);
508 schoenebeck 460 if (itNewVoice) {
509     itNewVoice->Render(Samples);
510     if (itNewVoice->IsActive()) ActiveVoiceCountTemp++; // still active
511     else { // voice reached end, is now inactive
512     FreeVoice(pEngineChannel, itNewVoice); // remove voice from the list of active voices
513 schoenebeck 250 }
514     }
515 schoenebeck 460 else dmsg(1,("gig::Engine: ERROR, voice stealing didn't work out!\n"));
516 schoenebeck 473
517     // we need to clear the key's event list explicitly here in case key was never active
518     midi_key_info_t* pKey = &pEngineChannel->pMIDIKeyInfo[itVoiceStealEvent->Param.Note.Key];
519     pKey->VoiceTheftsQueued--;
520     if (!pKey->Active && !pKey->VoiceTheftsQueued) pKey->pEvents->clear();
521 schoenebeck 250 }
522 schoenebeck 460 }
523 schoenebeck 250
524 schoenebeck 473 /**
525     * Free all keys which have turned inactive in this audio fragment, from
526     * the list of active keys and clear all event lists on that engine
527     * channel.
528     *
529     * @param pEngineChannel - engine channel to cleanup
530     */
531 schoenebeck 460 void Engine::PostProcess(EngineChannel* pEngineChannel) {
532 schoenebeck 287 // free all keys which have no active voices left
533     {
534 schoenebeck 411 RTList<uint>::Iterator iuiKey = pEngineChannel->pActiveKeys->first();
535     RTList<uint>::Iterator end = pEngineChannel->pActiveKeys->end();
536 schoenebeck 287 while (iuiKey != end) { // iterate through all active keys
537 schoenebeck 411 midi_key_info_t* pKey = &pEngineChannel->pMIDIKeyInfo[*iuiKey];
538 schoenebeck 287 ++iuiKey;
539 schoenebeck 411 if (pKey->pActiveVoices->isEmpty()) FreeKey(pEngineChannel, pKey);
540 schoenebeck 554 #if CONFIG_DEVMODE
541 schoenebeck 563 else { // just a sanity check for debugging
542 schoenebeck 287 RTList<Voice>::Iterator itVoice = pKey->pActiveVoices->first();
543     RTList<Voice>::Iterator itVoicesEnd = pKey->pActiveVoices->end();
544     for (; itVoice != itVoicesEnd; ++itVoice) { // iterate through all voices on this key
545     if (itVoice->itKillEvent) {
546     dmsg(1,("gig::Engine: ERROR, killed voice survived !!!\n"));
547     }
548     }
549     }
550 schoenebeck 554 #endif // CONFIG_DEVMODE
551 schoenebeck 287 }
552     }
553 schoenebeck 460
554     // empty the engine channel's own event lists
555     pEngineChannel->ClearEventLists();
556 schoenebeck 412 }
557 schoenebeck 287
558 schoenebeck 53 /**
559 schoenebeck 244 * Will be called by the MIDI input device whenever a MIDI system
560     * exclusive message has arrived.
561     *
562     * @param pData - pointer to sysex data
563     * @param Size - lenght of sysex data (in bytes)
564     */
565     void Engine::SendSysex(void* pData, uint Size) {
566 schoenebeck 246 Event event = pEventGenerator->CreateEvent();
567     event.Type = Event::type_sysex;
568     event.Param.Sysex.Size = Size;
569 schoenebeck 412 event.pEngineChannel = NULL; // as Engine global event
570 schoenebeck 244 if (pEventQueue->write_space() > 0) {
571     if (pSysexBuffer->write_space() >= Size) {
572     // copy sysex data to input buffer
573     uint toWrite = Size;
574     uint8_t* pPos = (uint8_t*) pData;
575     while (toWrite) {
576     const uint writeNow = RTMath::Min(toWrite, pSysexBuffer->write_space_to_end());
577     pSysexBuffer->write(pPos, writeNow);
578     toWrite -= writeNow;
579     pPos += writeNow;
580    
581     }
582     // finally place sysex event into input event queue
583     pEventQueue->push(&event);
584     }
585 schoenebeck 554 else dmsg(1,("Engine: Sysex message too large (%d byte) for input buffer (%d byte)!",Size,CONFIG_SYSEX_BUFFER_SIZE));
586 schoenebeck 244 }
587     else dmsg(1,("Engine: Input event queue full!"));
588     }
589    
590     /**
591 schoenebeck 53 * Assigns and triggers a new voice for the respective MIDI key.
592     *
593 schoenebeck 411 * @param pEngineChannel - engine channel on which this event occured on
594 schoenebeck 271 * @param itNoteOnEvent - key, velocity and time stamp of the event
595 schoenebeck 53 */
596 schoenebeck 411 void Engine::ProcessNoteOn(EngineChannel* pEngineChannel, Pool<Event>::Iterator& itNoteOnEvent) {
597 iliev 716 #if !CONFIG_PROCESS_MUTED_CHANNELS
598     if (pEngineChannel->GetMute()) return; // skip if sampler channel is muted
599     #endif
600 persson 438
601 schoenebeck 354 const int key = itNoteOnEvent->Param.Note.Key;
602    
603     // Change key dimension value if key is in keyswitching area
604 schoenebeck 411 {
605     const ::gig::Instrument* pInstrument = pEngineChannel->pInstrument;
606     if (key >= pInstrument->DimensionKeyRange.low && key <= pInstrument->DimensionKeyRange.high)
607     pEngineChannel->CurrentKeyDimension = ((key - pInstrument->DimensionKeyRange.low) * 128) /
608     (pInstrument->DimensionKeyRange.high - pInstrument->DimensionKeyRange.low + 1);
609     }
610 schoenebeck 354
611 schoenebeck 411 midi_key_info_t* pKey = &pEngineChannel->pMIDIKeyInfo[key];
612 schoenebeck 354
613 schoenebeck 53 pKey->KeyPressed = true; // the MIDI key was now pressed down
614 persson 630 pKey->Velocity = itNoteOnEvent->Param.Note.Velocity;
615     pKey->NoteOnTime = FrameTime + itNoteOnEvent->FragmentPos(); // will be used to calculate note length
616 schoenebeck 53
617     // cancel release process of voices on this key if needed
618 schoenebeck 411 if (pKey->Active && !pEngineChannel->SustainPedal) {
619 schoenebeck 271 RTList<Event>::Iterator itCancelReleaseEvent = pKey->pEvents->allocAppend();
620     if (itCancelReleaseEvent) {
621     *itCancelReleaseEvent = *itNoteOnEvent; // copy event
622     itCancelReleaseEvent->Type = Event::type_cancel_release; // transform event type
623 schoenebeck 239 }
624     else dmsg(1,("Event pool emtpy!\n"));
625 schoenebeck 53 }
626    
627 schoenebeck 271 // move note on event to the key's own event list
628     RTList<Event>::Iterator itNoteOnEventOnKeyList = itNoteOnEvent.moveToEndOf(pKey->pEvents);
629    
630 schoenebeck 460 // allocate and trigger new voice(s) for the key
631     {
632     // first, get total amount of required voices (dependant on amount of layers)
633     ::gig::Region* pRegion = pEngineChannel->pInstrument->GetRegion(itNoteOnEventOnKeyList->Param.Note.Key);
634     if (pRegion) {
635     int voicesRequired = pRegion->Layers;
636     // now launch the required amount of voices
637     for (int i = 0; i < voicesRequired; i++)
638 schoenebeck 668 LaunchVoice(pEngineChannel, itNoteOnEventOnKeyList, i, false, true, true);
639 schoenebeck 460 }
640     }
641 persson 438
642 schoenebeck 473 // if neither a voice was spawned or postponed then remove note on event from key again
643     if (!pKey->Active && !pKey->VoiceTheftsQueued)
644     pKey->pEvents->free(itNoteOnEventOnKeyList);
645    
646 persson 438 pKey->RoundRobinIndex++;
647 schoenebeck 53 }
648    
649     /**
650     * Releases the voices on the given key if sustain pedal is not pressed.
651     * If sustain is pressed, the release of the note will be postponed until
652     * sustain pedal will be released or voice turned inactive by itself (e.g.
653     * due to completion of sample playback).
654     *
655 schoenebeck 411 * @param pEngineChannel - engine channel on which this event occured on
656 schoenebeck 271 * @param itNoteOffEvent - key, velocity and time stamp of the event
657 schoenebeck 53 */
658 schoenebeck 411 void Engine::ProcessNoteOff(EngineChannel* pEngineChannel, Pool<Event>::Iterator& itNoteOffEvent) {
659 iliev 716 #if !CONFIG_PROCESS_MUTED_CHANNELS
660 schoenebeck 705 if (pEngineChannel->GetMute()) return; // skip if sampler channel is muted
661 iliev 716 #endif
662 schoenebeck 705
663 schoenebeck 411 midi_key_info_t* pKey = &pEngineChannel->pMIDIKeyInfo[itNoteOffEvent->Param.Note.Key];
664 schoenebeck 53 pKey->KeyPressed = false; // the MIDI key was now released
665    
666     // release voices on this key if needed
667 schoenebeck 411 if (pKey->Active && !pEngineChannel->SustainPedal) {
668 schoenebeck 271 itNoteOffEvent->Type = Event::type_release; // transform event type
669 schoenebeck 242
670 persson 497 // move event to the key's own event list
671     RTList<Event>::Iterator itNoteOffEventOnKeyList = itNoteOffEvent.moveToEndOf(pKey->pEvents);
672 schoenebeck 271
673 persson 497 // spawn release triggered voice(s) if needed
674 persson 630 if (pKey->ReleaseTrigger) {
675 persson 497 // first, get total amount of required voices (dependant on amount of layers)
676     ::gig::Region* pRegion = pEngineChannel->pInstrument->GetRegion(itNoteOffEventOnKeyList->Param.Note.Key);
677     if (pRegion) {
678     int voicesRequired = pRegion->Layers;
679 persson 630
680     // MIDI note-on velocity is used instead of note-off velocity
681     itNoteOffEventOnKeyList->Param.Note.Velocity = pKey->Velocity;
682    
683 persson 497 // now launch the required amount of voices
684     for (int i = 0; i < voicesRequired; i++)
685 schoenebeck 668 LaunchVoice(pEngineChannel, itNoteOffEventOnKeyList, i, true, false, false); //FIXME: for the moment we don't perform voice stealing for release triggered samples
686 persson 497 }
687     pKey->ReleaseTrigger = false;
688 schoenebeck 460 }
689 persson 497
690     // if neither a voice was spawned or postponed then remove note off event from key again
691     if (!pKey->Active && !pKey->VoiceTheftsQueued)
692     pKey->pEvents->free(itNoteOffEventOnKeyList);
693 schoenebeck 242 }
694 schoenebeck 53 }
695    
696     /**
697 schoenebeck 738 * Moves pitchbend event from the general (input) event list to the engine
698     * channel's event list. It will actually processed later by the
699     * respective voice.
700 schoenebeck 53 *
701 schoenebeck 411 * @param pEngineChannel - engine channel on which this event occured on
702 schoenebeck 271 * @param itPitchbendEvent - absolute pitch value and time stamp of the event
703 schoenebeck 53 */
704 schoenebeck 411 void Engine::ProcessPitchbend(EngineChannel* pEngineChannel, Pool<Event>::Iterator& itPitchbendEvent) {
705     pEngineChannel->Pitch = itPitchbendEvent->Param.Pitch.Pitch; // store current pitch value
706 schoenebeck 53 }
707    
708     /**
709 schoenebeck 233 * Allocates and triggers a new voice. This method will usually be
710     * called by the ProcessNoteOn() method and by the voices itself
711     * (e.g. to spawn further voices on the same key for layered sounds).
712     *
713 schoenebeck 411 * @param pEngineChannel - engine channel on which this event occured on
714 schoenebeck 271 * @param itNoteOnEvent - key, velocity and time stamp of the event
715 schoenebeck 242 * @param iLayer - layer index for the new voice (optional - only
716     * in case of layered sounds of course)
717     * @param ReleaseTriggerVoice - if new voice is a release triggered voice
718     * (optional, default = false)
719 schoenebeck 250 * @param VoiceStealing - if voice stealing should be performed
720     * when there is no free voice
721     * (optional, default = true)
722 schoenebeck 668 * @param HandleKeyGroupConflicts - if voices should be killed due to a
723     * key group conflict
724 schoenebeck 250 * @returns pointer to new voice or NULL if there was no free voice or
725 schoenebeck 354 * if the voice wasn't triggered (for example when no region is
726     * defined for the given key).
727 schoenebeck 233 */
728 schoenebeck 668 Pool<Voice>::Iterator Engine::LaunchVoice(EngineChannel* pEngineChannel, Pool<Event>::Iterator& itNoteOnEvent, int iLayer, bool ReleaseTriggerVoice, bool VoiceStealing, bool HandleKeyGroupConflicts) {
729 schoenebeck 669 int MIDIKey = itNoteOnEvent->Param.Note.Key;
730     midi_key_info_t* pKey = &pEngineChannel->pMIDIKeyInfo[MIDIKey];
731     ::gig::Region* pRegion = pEngineChannel->pInstrument->GetRegion(MIDIKey);
732 schoenebeck 233
733 schoenebeck 668 // if nothing defined for this key
734     if (!pRegion) return Pool<Voice>::Iterator(); // nothing to do
735    
736 schoenebeck 669 // only mark the first voice of a layered voice (group) to be in a
737     // key group, so the layered voices won't kill each other
738     int iKeyGroup = (iLayer == 0 && !ReleaseTriggerVoice) ? pRegion->KeyGroup : 0;
739    
740 schoenebeck 668 // handle key group (a.k.a. exclusive group) conflicts
741     if (HandleKeyGroupConflicts) {
742     if (iKeyGroup) { // if this voice / key belongs to a key group
743     uint** ppKeyGroup = &pEngineChannel->ActiveKeyGroups[iKeyGroup];
744     if (*ppKeyGroup) { // if there's already an active key in that key group
745     midi_key_info_t* pOtherKey = &pEngineChannel->pMIDIKeyInfo[**ppKeyGroup];
746     // kill all voices on the (other) key
747     RTList<Voice>::Iterator itVoiceToBeKilled = pOtherKey->pActiveVoices->first();
748     RTList<Voice>::Iterator end = pOtherKey->pActiveVoices->end();
749     for (; itVoiceToBeKilled != end; ++itVoiceToBeKilled) {
750     if (itVoiceToBeKilled->Type != Voice::type_release_trigger) {
751     itVoiceToBeKilled->Kill(itNoteOnEvent);
752     --VoiceSpawnsLeft; //FIXME: just a hack, we should better check in StealVoice() if the voice was killed due to key conflict
753     }
754     }
755     }
756     }
757     }
758    
759 schoenebeck 669 Voice::type_t VoiceType = Voice::type_normal;
760    
761     // get current dimension values to select the right dimension region
762     //TODO: for stolen voices this dimension region selection block is processed twice, this should be changed
763     //FIXME: controller values for selecting the dimension region here are currently not sample accurate
764     uint DimValues[8] = { 0 };
765     for (int i = pRegion->Dimensions - 1; i >= 0; i--) {
766     switch (pRegion->pDimensionDefinitions[i].dimension) {
767     case ::gig::dimension_samplechannel:
768     DimValues[i] = 0; //TODO: we currently ignore this dimension
769     break;
770     case ::gig::dimension_layer:
771     DimValues[i] = iLayer;
772     break;
773     case ::gig::dimension_velocity:
774     DimValues[i] = itNoteOnEvent->Param.Note.Velocity;
775     break;
776     case ::gig::dimension_channelaftertouch:
777     DimValues[i] = 0; //TODO: we currently ignore this dimension
778     break;
779     case ::gig::dimension_releasetrigger:
780     VoiceType = (ReleaseTriggerVoice) ? Voice::type_release_trigger : (!iLayer) ? Voice::type_release_trigger_required : Voice::type_normal;
781     DimValues[i] = (uint) ReleaseTriggerVoice;
782     break;
783     case ::gig::dimension_keyboard:
784     DimValues[i] = (uint) pEngineChannel->CurrentKeyDimension;
785     break;
786     case ::gig::dimension_roundrobin:
787     DimValues[i] = (uint) pEngineChannel->pMIDIKeyInfo[MIDIKey].RoundRobinIndex; // incremented for each note on
788     break;
789     case ::gig::dimension_random:
790     RandomSeed = RandomSeed * 1103515245 + 12345; // classic pseudo random number generator
791     DimValues[i] = (uint) RandomSeed >> (32 - pRegion->pDimensionDefinitions[i].bits); // highest bits are most random
792     break;
793     case ::gig::dimension_modwheel:
794     DimValues[i] = pEngineChannel->ControllerTable[1];
795     break;
796     case ::gig::dimension_breath:
797     DimValues[i] = pEngineChannel->ControllerTable[2];
798     break;
799     case ::gig::dimension_foot:
800     DimValues[i] = pEngineChannel->ControllerTable[4];
801     break;
802     case ::gig::dimension_portamentotime:
803     DimValues[i] = pEngineChannel->ControllerTable[5];
804     break;
805     case ::gig::dimension_effect1:
806     DimValues[i] = pEngineChannel->ControllerTable[12];
807     break;
808     case ::gig::dimension_effect2:
809     DimValues[i] = pEngineChannel->ControllerTable[13];
810     break;
811     case ::gig::dimension_genpurpose1:
812     DimValues[i] = pEngineChannel->ControllerTable[16];
813     break;
814     case ::gig::dimension_genpurpose2:
815     DimValues[i] = pEngineChannel->ControllerTable[17];
816     break;
817     case ::gig::dimension_genpurpose3:
818     DimValues[i] = pEngineChannel->ControllerTable[18];
819     break;
820     case ::gig::dimension_genpurpose4:
821     DimValues[i] = pEngineChannel->ControllerTable[19];
822     break;
823     case ::gig::dimension_sustainpedal:
824     DimValues[i] = pEngineChannel->ControllerTable[64];
825     break;
826     case ::gig::dimension_portamento:
827     DimValues[i] = pEngineChannel->ControllerTable[65];
828     break;
829     case ::gig::dimension_sostenutopedal:
830     DimValues[i] = pEngineChannel->ControllerTable[66];
831     break;
832     case ::gig::dimension_softpedal:
833     DimValues[i] = pEngineChannel->ControllerTable[67];
834     break;
835     case ::gig::dimension_genpurpose5:
836     DimValues[i] = pEngineChannel->ControllerTable[80];
837     break;
838     case ::gig::dimension_genpurpose6:
839     DimValues[i] = pEngineChannel->ControllerTable[81];
840     break;
841     case ::gig::dimension_genpurpose7:
842     DimValues[i] = pEngineChannel->ControllerTable[82];
843     break;
844     case ::gig::dimension_genpurpose8:
845     DimValues[i] = pEngineChannel->ControllerTable[83];
846     break;
847     case ::gig::dimension_effect1depth:
848     DimValues[i] = pEngineChannel->ControllerTable[91];
849     break;
850     case ::gig::dimension_effect2depth:
851     DimValues[i] = pEngineChannel->ControllerTable[92];
852     break;
853     case ::gig::dimension_effect3depth:
854     DimValues[i] = pEngineChannel->ControllerTable[93];
855     break;
856     case ::gig::dimension_effect4depth:
857     DimValues[i] = pEngineChannel->ControllerTable[94];
858     break;
859     case ::gig::dimension_effect5depth:
860     DimValues[i] = pEngineChannel->ControllerTable[95];
861     break;
862     case ::gig::dimension_none:
863     std::cerr << "gig::Engine::LaunchVoice() Error: dimension=none\n" << std::flush;
864     break;
865     default:
866     std::cerr << "gig::Engine::LaunchVoice() Error: Unknown dimension\n" << std::flush;
867     }
868     }
869     ::gig::DimensionRegion* pDimRgn = pRegion->GetDimensionRegionByValue(DimValues);
870    
871     // no need to continue if sample is silent
872     if (!pDimRgn->pSample || !pDimRgn->pSample->SamplesTotal) return Pool<Voice>::Iterator();
873    
874 schoenebeck 233 // allocate a new voice for the key
875 schoenebeck 271 Pool<Voice>::Iterator itNewVoice = pKey->pActiveVoices->allocAppend();
876     if (itNewVoice) {
877 schoenebeck 233 // launch the new voice
878 schoenebeck 669 if (itNewVoice->Trigger(pEngineChannel, itNoteOnEvent, pEngineChannel->Pitch, pDimRgn, VoiceType, iKeyGroup) < 0) {
879 schoenebeck 354 dmsg(4,("Voice not triggered\n"));
880 schoenebeck 271 pKey->pActiveVoices->free(itNewVoice);
881 schoenebeck 233 }
882 schoenebeck 239 else { // on success
883 schoenebeck 663 --VoiceSpawnsLeft;
884 schoenebeck 239 if (!pKey->Active) { // mark as active key
885     pKey->Active = true;
886 schoenebeck 411 pKey->itSelf = pEngineChannel->pActiveKeys->allocAppend();
887 schoenebeck 271 *pKey->itSelf = itNoteOnEvent->Param.Note.Key;
888 schoenebeck 239 }
889 schoenebeck 271 if (itNewVoice->KeyGroup) {
890 schoenebeck 668 uint** ppKeyGroup = &pEngineChannel->ActiveKeyGroups[itNewVoice->KeyGroup];
891 schoenebeck 271 *ppKeyGroup = &*pKey->itSelf; // put key as the (new) active key to its key group
892 schoenebeck 239 }
893 schoenebeck 271 if (itNewVoice->Type == Voice::type_release_trigger_required) pKey->ReleaseTrigger = true; // mark key for the need of release triggered voice(s)
894     return itNewVoice; // success
895 schoenebeck 233 }
896     }
897 schoenebeck 285 else if (VoiceStealing) {
898 schoenebeck 460 // try to steal one voice
899 schoenebeck 473 int result = StealVoice(pEngineChannel, itNoteOnEvent);
900     if (!result) { // voice stolen successfully
901     // put note-on event into voice-stealing queue, so it will be reprocessed after killed voice died
902     RTList<Event>::Iterator itStealEvent = pVoiceStealingQueue->allocAppend();
903     if (itStealEvent) {
904     *itStealEvent = *itNoteOnEvent; // copy event
905     itStealEvent->Param.Note.Layer = iLayer;
906     itStealEvent->Param.Note.ReleaseTrigger = ReleaseTriggerVoice;
907     pKey->VoiceTheftsQueued++;
908     }
909     else dmsg(1,("Voice stealing queue full!\n"));
910 schoenebeck 285 }
911     }
912    
913 schoenebeck 271 return Pool<Voice>::Iterator(); // no free voice or error
914 schoenebeck 233 }
915    
916     /**
917 schoenebeck 250 * Will be called by LaunchVoice() method in case there are no free
918     * voices left. This method will select and kill one old voice for
919     * voice stealing and postpone the note-on event until the selected
920     * voice actually died.
921     *
922 schoenebeck 411 * @param pEngineChannel - engine channel on which this event occured on
923 schoenebeck 285 * @param itNoteOnEvent - key, velocity and time stamp of the event
924 schoenebeck 473 * @returns 0 on success, a value < 0 if no active voice could be picked for voice stealing
925 schoenebeck 250 */
926 schoenebeck 473 int Engine::StealVoice(EngineChannel* pEngineChannel, Pool<Event>::Iterator& itNoteOnEvent) {
927 schoenebeck 663 if (VoiceSpawnsLeft <= 0) {
928 schoenebeck 554 dmsg(1,("Max. voice thefts per audio fragment reached (you may raise CONFIG_MAX_VOICES).\n"));
929 schoenebeck 473 return -1;
930 schoenebeck 460 }
931 schoenebeck 271 if (!pEventPool->poolIsEmpty()) {
932 schoenebeck 250
933 schoenebeck 460 RTList<Voice>::Iterator itSelectedVoice;
934 schoenebeck 250
935     // Select one voice for voice stealing
936 schoenebeck 554 switch (CONFIG_VOICE_STEAL_ALGO) {
937 schoenebeck 250
938     // try to pick the oldest voice on the key where the new
939     // voice should be spawned, if there is no voice on that
940 schoenebeck 563 // key, or no voice left to kill, then procceed with
941 schoenebeck 250 // 'oldestkey' algorithm
942 schoenebeck 460 case voice_steal_algo_oldestvoiceonkey: {
943     midi_key_info_t* pSelectedKey = &pEngineChannel->pMIDIKeyInfo[itNoteOnEvent->Param.Note.Key];
944 schoenebeck 563 itSelectedVoice = pSelectedKey->pActiveVoices->first();
945     // proceed iterating if voice was created in this fragment cycle
946 schoenebeck 663 while (itSelectedVoice && !itSelectedVoice->IsStealable()) ++itSelectedVoice;
947 schoenebeck 563 // if we haven't found a voice then proceed with algorithm 'oldestkey'
948 schoenebeck 663 if (itSelectedVoice && itSelectedVoice->IsStealable()) break;
949 schoenebeck 250 } // no break - intentional !
950    
951     // try to pick the oldest voice on the oldest active key
952 schoenebeck 563 // from the same engine channel
953 schoenebeck 460 // (caution: must stay after 'oldestvoiceonkey' algorithm !)
954 schoenebeck 250 case voice_steal_algo_oldestkey: {
955 schoenebeck 649 // if we already stole in this fragment, try to proceed on same key
956 schoenebeck 460 if (this->itLastStolenVoice) {
957     itSelectedVoice = this->itLastStolenVoice;
958 schoenebeck 649 do {
959     ++itSelectedVoice;
960 schoenebeck 663 } while (itSelectedVoice && !itSelectedVoice->IsStealable()); // proceed iterating if voice was created in this fragment cycle
961 schoenebeck 649 // found a "stealable" voice ?
962 schoenebeck 663 if (itSelectedVoice && itSelectedVoice->IsStealable()) {
963 schoenebeck 649 // remember which voice we stole, so we can simply proceed on next voice stealing
964     this->itLastStolenVoice = itSelectedVoice;
965 schoenebeck 460 break; // selection succeeded
966 schoenebeck 250 }
967     }
968 schoenebeck 649 // get (next) oldest key
969     RTList<uint>::Iterator iuiSelectedKey = (this->iuiLastStolenKey) ? ++this->iuiLastStolenKey : pEngineChannel->pActiveKeys->first();
970     while (iuiSelectedKey) {
971     midi_key_info_t* pSelectedKey = &pEngineChannel->pMIDIKeyInfo[*iuiSelectedKey];
972 schoenebeck 659 itSelectedVoice = pSelectedKey->pActiveVoices->first();
973 schoenebeck 649 // proceed iterating if voice was created in this fragment cycle
974 schoenebeck 663 while (itSelectedVoice && !itSelectedVoice->IsStealable()) ++itSelectedVoice;
975 schoenebeck 649 // found a "stealable" voice ?
976 schoenebeck 663 if (itSelectedVoice && itSelectedVoice->IsStealable()) {
977 schoenebeck 649 // remember which voice on which key we stole, so we can simply proceed on next voice stealing
978     this->iuiLastStolenKey = iuiSelectedKey;
979     this->itLastStolenVoice = itSelectedVoice;
980     break; // selection succeeded
981     }
982     ++iuiSelectedKey; // get next oldest key
983     }
984 schoenebeck 250 break;
985     }
986    
987     // don't steal anything
988     case voice_steal_algo_none:
989     default: {
990     dmsg(1,("No free voice (voice stealing disabled)!\n"));
991 schoenebeck 473 return -1;
992 schoenebeck 250 }
993     }
994    
995 schoenebeck 563 // if we couldn't steal a voice from the same engine channel then
996     // steal oldest voice on the oldest key from any other engine channel
997 schoenebeck 649 // (the smaller engine channel number, the higher priority)
998 schoenebeck 663 if (!itSelectedVoice || !itSelectedVoice->IsStealable()) {
999 schoenebeck 649 EngineChannel* pSelectedChannel;
1000     int iChannelIndex;
1001     // select engine channel
1002     if (pLastStolenChannel) {
1003     pSelectedChannel = pLastStolenChannel;
1004     iChannelIndex = pSelectedChannel->iEngineIndexSelf;
1005     } else { // pick the engine channel followed by this engine channel
1006     iChannelIndex = (pEngineChannel->iEngineIndexSelf + 1) % engineChannels.size();
1007     pSelectedChannel = engineChannels[iChannelIndex];
1008     }
1009 schoenebeck 663
1010     // if we already stole in this fragment, try to proceed on same key
1011     if (this->itLastStolenVoiceGlobally) {
1012     itSelectedVoice = this->itLastStolenVoiceGlobally;
1013     do {
1014     ++itSelectedVoice;
1015     } while (itSelectedVoice && !itSelectedVoice->IsStealable()); // proceed iterating if voice was created in this fragment cycle
1016     }
1017    
1018     #if CONFIG_DEVMODE
1019     EngineChannel* pBegin = pSelectedChannel; // to detect endless loop
1020     #endif // CONFIG_DEVMODE
1021    
1022     // did we find a 'stealable' voice?
1023     if (itSelectedVoice && itSelectedVoice->IsStealable()) {
1024     // remember which voice we stole, so we can simply proceed on next voice stealing
1025     this->itLastStolenVoiceGlobally = itSelectedVoice;
1026     } else while (true) { // iterate through engine channels
1027 schoenebeck 649 // get (next) oldest key
1028 schoenebeck 663 RTList<uint>::Iterator iuiSelectedKey = (this->iuiLastStolenKeyGlobally) ? ++this->iuiLastStolenKeyGlobally : pSelectedChannel->pActiveKeys->first();
1029     this->iuiLastStolenKeyGlobally = RTList<uint>::Iterator(); // to prevent endless loop (see line above)
1030 schoenebeck 649 while (iuiSelectedKey) {
1031 schoenebeck 663 midi_key_info_t* pSelectedKey = &pSelectedChannel->pMIDIKeyInfo[*iuiSelectedKey];
1032 schoenebeck 649 itSelectedVoice = pSelectedKey->pActiveVoices->first();
1033     // proceed iterating if voice was created in this fragment cycle
1034 schoenebeck 663 while (itSelectedVoice && !itSelectedVoice->IsStealable()) ++itSelectedVoice;
1035 schoenebeck 649 // found a "stealable" voice ?
1036 schoenebeck 663 if (itSelectedVoice && itSelectedVoice->IsStealable()) {
1037 schoenebeck 649 // remember which voice on which key on which engine channel we stole, so we can simply proceed on next voice stealing
1038     this->iuiLastStolenKeyGlobally = iuiSelectedKey;
1039     this->itLastStolenVoiceGlobally = itSelectedVoice;
1040     this->pLastStolenChannel = pSelectedChannel;
1041 schoenebeck 665 goto stealable_voice_found; // selection succeeded
1042 schoenebeck 649 }
1043     ++iuiSelectedKey; // get next key on current engine channel
1044     }
1045     // get next engine channel
1046 schoenebeck 460 iChannelIndex = (iChannelIndex + 1) % engineChannels.size();
1047 schoenebeck 649 pSelectedChannel = engineChannels[iChannelIndex];
1048 schoenebeck 663
1049     #if CONFIG_DEVMODE
1050     if (pSelectedChannel == pBegin) {
1051     dmsg(1,("FATAL ERROR: voice stealing endless loop!\n"));
1052     dmsg(1,("VoiceSpawnsLeft=%d.\n", VoiceSpawnsLeft));
1053     dmsg(1,("Exiting.\n"));
1054     exit(-1);
1055     }
1056     #endif // CONFIG_DEVMODE
1057 schoenebeck 460 }
1058     }
1059    
1060 schoenebeck 665 // jump point if a 'stealable' voice was found
1061     stealable_voice_found:
1062    
1063 schoenebeck 563 #if CONFIG_DEVMODE
1064 schoenebeck 473 if (!itSelectedVoice->IsActive()) {
1065     dmsg(1,("gig::Engine: ERROR, tried to steal a voice which was not active !!!\n"));
1066     return -1;
1067     }
1068 schoenebeck 563 #endif // CONFIG_DEVMODE
1069 schoenebeck 287
1070 schoenebeck 250 // now kill the selected voice
1071 schoenebeck 659 itSelectedVoice->Kill(itNoteOnEvent);
1072 schoenebeck 460
1073 schoenebeck 663 --VoiceSpawnsLeft;
1074 schoenebeck 473
1075     return 0; // success
1076 schoenebeck 250 }
1077 schoenebeck 473 else {
1078     dmsg(1,("Event pool emtpy!\n"));
1079     return -1;
1080     }
1081 schoenebeck 250 }
1082    
1083     /**
1084 schoenebeck 285 * Removes the given voice from the MIDI key's list of active voices.
1085     * This method will be called when a voice went inactive, e.g. because
1086     * it finished to playback its sample, finished its release stage or
1087     * just was killed.
1088 schoenebeck 53 *
1089 schoenebeck 411 * @param pEngineChannel - engine channel on which this event occured on
1090 schoenebeck 285 * @param itVoice - points to the voice to be freed
1091 schoenebeck 53 */
1092 schoenebeck 411 void Engine::FreeVoice(EngineChannel* pEngineChannel, Pool<Voice>::Iterator& itVoice) {
1093 schoenebeck 271 if (itVoice) {
1094 schoenebeck 411 midi_key_info_t* pKey = &pEngineChannel->pMIDIKeyInfo[itVoice->MIDIKey];
1095 schoenebeck 53
1096 schoenebeck 271 uint keygroup = itVoice->KeyGroup;
1097    
1098 schoenebeck 53 // free the voice object
1099 schoenebeck 271 pVoicePool->free(itVoice);
1100 schoenebeck 53
1101 schoenebeck 287 // if no other voices left and member of a key group, remove from key group
1102     if (pKey->pActiveVoices->isEmpty() && keygroup) {
1103 schoenebeck 411 uint** ppKeyGroup = &pEngineChannel->ActiveKeyGroups[keygroup];
1104 schoenebeck 287 if (*ppKeyGroup == &*pKey->itSelf) *ppKeyGroup = NULL; // remove key from key group
1105 schoenebeck 53 }
1106     }
1107 schoenebeck 285 else std::cerr << "Couldn't release voice! (!itVoice)\n" << std::flush;
1108 schoenebeck 53 }
1109    
1110     /**
1111 schoenebeck 287 * Called when there's no more voice left on a key, this call will
1112     * update the key info respectively.
1113     *
1114 schoenebeck 411 * @param pEngineChannel - engine channel on which this event occured on
1115 schoenebeck 287 * @param pKey - key which is now inactive
1116     */
1117 schoenebeck 411 void Engine::FreeKey(EngineChannel* pEngineChannel, midi_key_info_t* pKey) {
1118 schoenebeck 287 if (pKey->pActiveVoices->isEmpty()) {
1119     pKey->Active = false;
1120 schoenebeck 411 pEngineChannel->pActiveKeys->free(pKey->itSelf); // remove key from list of active keys
1121 schoenebeck 287 pKey->itSelf = RTList<uint>::Iterator();
1122     pKey->ReleaseTrigger = false;
1123     pKey->pEvents->clear();
1124     dmsg(3,("Key has no more voices now\n"));
1125     }
1126     else dmsg(1,("gig::Engine: Oops, tried to free a key which contains voices.\n"));
1127     }
1128    
1129     /**
1130 schoenebeck 53 * Reacts on supported control change commands (e.g. pitch bend wheel,
1131     * modulation wheel, aftertouch).
1132     *
1133 schoenebeck 411 * @param pEngineChannel - engine channel on which this event occured on
1134 schoenebeck 271 * @param itControlChangeEvent - controller, value and time stamp of the event
1135 schoenebeck 53 */
1136 schoenebeck 411 void Engine::ProcessControlChange(EngineChannel* pEngineChannel, Pool<Event>::Iterator& itControlChangeEvent) {
1137 schoenebeck 271 dmsg(4,("Engine::ContinuousController cc=%d v=%d\n", itControlChangeEvent->Param.CC.Controller, itControlChangeEvent->Param.CC.Value));
1138 schoenebeck 53
1139 schoenebeck 473 // update controller value in the engine channel's controller table
1140     pEngineChannel->ControllerTable[itControlChangeEvent->Param.CC.Controller] = itControlChangeEvent->Param.CC.Value;
1141    
1142 schoenebeck 769 switch (itControlChangeEvent->Param.CC.Controller) {
1143 schoenebeck 424 case 7: { // volume
1144     //TODO: not sample accurate yet
1145 schoenebeck 769 pEngineChannel->GlobalVolume = (float) itControlChangeEvent->Param.CC.Value / 127.0f;
1146 schoenebeck 660 pEngineChannel->bStatusChanged = true; // engine channel status has changed, so set notify flag
1147 schoenebeck 424 break;
1148     }
1149     case 10: { // panpot
1150     //TODO: not sample accurate yet
1151 schoenebeck 769 const int pan = (int) itControlChangeEvent->Param.CC.Value - 64;
1152 schoenebeck 424 pEngineChannel->GlobalPanLeft = 1.0f - float(RTMath::Max(pan, 0)) / 63.0f;
1153     pEngineChannel->GlobalPanRight = 1.0f - float(RTMath::Min(pan, 0)) / -64.0f;
1154     break;
1155     }
1156     case 64: { // sustain
1157 schoenebeck 769 if (itControlChangeEvent->Param.CC.Value >= 64 && !pEngineChannel->SustainPedal) {
1158 schoenebeck 53 dmsg(4,("PEDAL DOWN\n"));
1159 schoenebeck 411 pEngineChannel->SustainPedal = true;
1160 schoenebeck 53
1161 iliev 716 #if !CONFIG_PROCESS_MUTED_CHANNELS
1162 schoenebeck 705 if (pEngineChannel->GetMute()) return; // skip if sampler channel is muted
1163 iliev 716 #endif
1164 schoenebeck 705
1165 schoenebeck 53 // cancel release process of voices if necessary
1166 schoenebeck 411 RTList<uint>::Iterator iuiKey = pEngineChannel->pActiveKeys->first();
1167 schoenebeck 473 for (; iuiKey; ++iuiKey) {
1168     midi_key_info_t* pKey = &pEngineChannel->pMIDIKeyInfo[*iuiKey];
1169     if (!pKey->KeyPressed) {
1170     RTList<Event>::Iterator itNewEvent = pKey->pEvents->allocAppend();
1171     if (itNewEvent) {
1172 schoenebeck 769 *itNewEvent = *itControlChangeEvent; // copy event to the key's own event list
1173 schoenebeck 473 itNewEvent->Type = Event::type_cancel_release; // transform event type
1174 schoenebeck 53 }
1175 schoenebeck 473 else dmsg(1,("Event pool emtpy!\n"));
1176 schoenebeck 53 }
1177     }
1178     }
1179 schoenebeck 769 if (itControlChangeEvent->Param.CC.Value < 64 && pEngineChannel->SustainPedal) {
1180 schoenebeck 53 dmsg(4,("PEDAL UP\n"));
1181 schoenebeck 411 pEngineChannel->SustainPedal = false;
1182 schoenebeck 53
1183 iliev 716 #if !CONFIG_PROCESS_MUTED_CHANNELS
1184 schoenebeck 705 if (pEngineChannel->GetMute()) return; // skip if sampler channel is muted
1185 iliev 716 #endif
1186 schoenebeck 705
1187 schoenebeck 53 // release voices if their respective key is not pressed
1188 schoenebeck 411 RTList<uint>::Iterator iuiKey = pEngineChannel->pActiveKeys->first();
1189 schoenebeck 473 for (; iuiKey; ++iuiKey) {
1190     midi_key_info_t* pKey = &pEngineChannel->pMIDIKeyInfo[*iuiKey];
1191     if (!pKey->KeyPressed) {
1192     RTList<Event>::Iterator itNewEvent = pKey->pEvents->allocAppend();
1193     if (itNewEvent) {
1194 schoenebeck 769 *itNewEvent = *itControlChangeEvent; // copy event to the key's own event list
1195 schoenebeck 473 itNewEvent->Type = Event::type_release; // transform event type
1196 schoenebeck 53 }
1197 schoenebeck 473 else dmsg(1,("Event pool emtpy!\n"));
1198 schoenebeck 53 }
1199     }
1200     }
1201     break;
1202     }
1203    
1204    
1205 schoenebeck 473 // Channel Mode Messages
1206    
1207     case 120: { // all sound off
1208 schoenebeck 769 KillAllVoices(pEngineChannel, itControlChangeEvent);
1209 schoenebeck 473 break;
1210     }
1211     case 121: { // reset all controllers
1212     pEngineChannel->ResetControllers();
1213     break;
1214     }
1215     case 123: { // all notes off
1216 schoenebeck 769 ReleaseAllVoices(pEngineChannel, itControlChangeEvent);
1217 schoenebeck 473 break;
1218     }
1219     }
1220 schoenebeck 53 }
1221    
1222     /**
1223 schoenebeck 244 * Reacts on MIDI system exclusive messages.
1224     *
1225 schoenebeck 271 * @param itSysexEvent - sysex data size and time stamp of the sysex event
1226 schoenebeck 244 */
1227 schoenebeck 271 void Engine::ProcessSysex(Pool<Event>::Iterator& itSysexEvent) {
1228 schoenebeck 244 RingBuffer<uint8_t>::NonVolatileReader reader = pSysexBuffer->get_non_volatile_reader();
1229    
1230     uint8_t exclusive_status, id;
1231     if (!reader.pop(&exclusive_status)) goto free_sysex_data;
1232     if (!reader.pop(&id)) goto free_sysex_data;
1233     if (exclusive_status != 0xF0) goto free_sysex_data;
1234    
1235     switch (id) {
1236     case 0x41: { // Roland
1237 schoenebeck 493 dmsg(3,("Roland Sysex\n"));
1238 schoenebeck 244 uint8_t device_id, model_id, cmd_id;
1239     if (!reader.pop(&device_id)) goto free_sysex_data;
1240     if (!reader.pop(&model_id)) goto free_sysex_data;
1241     if (!reader.pop(&cmd_id)) goto free_sysex_data;
1242     if (model_id != 0x42 /*GS*/) goto free_sysex_data;
1243     if (cmd_id != 0x12 /*DT1*/) goto free_sysex_data;
1244    
1245     // command address
1246     uint8_t addr[3]; // 2 byte addr MSB, followed by 1 byte addr LSB)
1247     const RingBuffer<uint8_t>::NonVolatileReader checksum_reader = reader; // so we can calculate the check sum later
1248     if (reader.read(&addr[0], 3) != 3) goto free_sysex_data;
1249     if (addr[0] == 0x40 && addr[1] == 0x00) { // System Parameters
1250 schoenebeck 493 dmsg(3,("\tSystem Parameter\n"));
1251 schoenebeck 244 }
1252     else if (addr[0] == 0x40 && addr[1] == 0x01) { // Common Parameters
1253 schoenebeck 493 dmsg(3,("\tCommon Parameter\n"));
1254 schoenebeck 244 }
1255     else if (addr[0] == 0x40 && (addr[1] & 0xf0) == 0x10) { // Part Parameters (1)
1256 schoenebeck 493 dmsg(3,("\tPart Parameter\n"));
1257     switch (addr[2]) {
1258 schoenebeck 244 case 0x40: { // scale tuning
1259 schoenebeck 493 dmsg(3,("\t\tScale Tuning\n"));
1260 schoenebeck 244 uint8_t scale_tunes[12]; // detuning of all 12 semitones of an octave
1261     if (reader.read(&scale_tunes[0], 12) != 12) goto free_sysex_data;
1262     uint8_t checksum;
1263 schoenebeck 493 if (!reader.pop(&checksum)) goto free_sysex_data;
1264 schoenebeck 563 #if CONFIG_ASSERT_GS_SYSEX_CHECKSUM
1265     if (GSCheckSum(checksum_reader, 12)) goto free_sysex_data;
1266     #endif // CONFIG_ASSERT_GS_SYSEX_CHECKSUM
1267 schoenebeck 244 for (int i = 0; i < 12; i++) scale_tunes[i] -= 64;
1268     AdjustScale((int8_t*) scale_tunes);
1269 schoenebeck 493 dmsg(3,("\t\t\tNew scale applied.\n"));
1270 schoenebeck 244 break;
1271     }
1272     }
1273     }
1274     else if (addr[0] == 0x40 && (addr[1] & 0xf0) == 0x20) { // Part Parameters (2)
1275     }
1276     else if (addr[0] == 0x41) { // Drum Setup Parameters
1277     }
1278     break;
1279     }
1280     }
1281    
1282     free_sysex_data: // finally free sysex data
1283 schoenebeck 271 pSysexBuffer->increment_read_ptr(itSysexEvent->Param.Sysex.Size);
1284 schoenebeck 244 }
1285    
1286     /**
1287     * Calculates the Roland GS sysex check sum.
1288     *
1289     * @param AddrReader - reader which currently points to the first GS
1290     * command address byte of the GS sysex message in
1291     * question
1292     * @param DataSize - size of the GS message data (in bytes)
1293     */
1294     uint8_t Engine::GSCheckSum(const RingBuffer<uint8_t>::NonVolatileReader AddrReader, uint DataSize) {
1295     RingBuffer<uint8_t>::NonVolatileReader reader = AddrReader;
1296     uint bytes = 3 /*addr*/ + DataSize;
1297     uint8_t addr_and_data[bytes];
1298     reader.read(&addr_and_data[0], bytes);
1299     uint8_t sum = 0;
1300     for (uint i = 0; i < bytes; i++) sum += addr_and_data[i];
1301     return 128 - sum % 128;
1302     }
1303    
1304     /**
1305     * Allows to tune each of the twelve semitones of an octave.
1306     *
1307     * @param ScaleTunes - detuning of all twelve semitones (in cents)
1308     */
1309     void Engine::AdjustScale(int8_t ScaleTunes[12]) {
1310     memcpy(&this->ScaleTuning[0], &ScaleTunes[0], 12); //TODO: currently not sample accurate
1311     }
1312    
1313     /**
1314 schoenebeck 473 * Releases all voices on an engine channel. All voices will go into
1315     * the release stage and thus it might take some time (e.g. dependant to
1316     * their envelope release time) until they actually die.
1317     *
1318     * @param pEngineChannel - engine channel on which all voices should be released
1319     * @param itReleaseEvent - event which caused this releasing of all voices
1320     */
1321     void Engine::ReleaseAllVoices(EngineChannel* pEngineChannel, Pool<Event>::Iterator& itReleaseEvent) {
1322     RTList<uint>::Iterator iuiKey = pEngineChannel->pActiveKeys->first();
1323     while (iuiKey) {
1324     midi_key_info_t* pKey = &pEngineChannel->pMIDIKeyInfo[*iuiKey];
1325     ++iuiKey;
1326     // append a 'release' event to the key's own event list
1327     RTList<Event>::Iterator itNewEvent = pKey->pEvents->allocAppend();
1328     if (itNewEvent) {
1329     *itNewEvent = *itReleaseEvent; // copy original event (to the key's event list)
1330     itNewEvent->Type = Event::type_release; // transform event type
1331     }
1332     else dmsg(1,("Event pool emtpy!\n"));
1333     }
1334     }
1335    
1336     /**
1337     * Kills all voices on an engine channel as soon as possible. Voices
1338     * won't get into release state, their volume level will be ramped down
1339     * as fast as possible.
1340     *
1341     * @param pEngineChannel - engine channel on which all voices should be killed
1342     * @param itKillEvent - event which caused this killing of all voices
1343     */
1344     void Engine::KillAllVoices(EngineChannel* pEngineChannel, Pool<Event>::Iterator& itKillEvent) {
1345     RTList<uint>::Iterator iuiKey = pEngineChannel->pActiveKeys->first();
1346     RTList<uint>::Iterator end = pEngineChannel->pActiveKeys->end();
1347     while (iuiKey != end) { // iterate through all active keys
1348     midi_key_info_t* pKey = &pEngineChannel->pMIDIKeyInfo[*iuiKey];
1349     ++iuiKey;
1350     RTList<Voice>::Iterator itVoice = pKey->pActiveVoices->first();
1351     RTList<Voice>::Iterator itVoicesEnd = pKey->pActiveVoices->end();
1352     for (; itVoice != itVoicesEnd; ++itVoice) { // iterate through all voices on this key
1353     itVoice->Kill(itKillEvent);
1354 schoenebeck 663 --VoiceSpawnsLeft; //FIXME: just a temporary workaround, we should check the cause in StealVoice() instead
1355 schoenebeck 473 }
1356     }
1357     }
1358    
1359 schoenebeck 53 uint Engine::VoiceCount() {
1360     return ActiveVoiceCount;
1361     }
1362    
1363     uint Engine::VoiceCountMax() {
1364     return ActiveVoiceCountMax;
1365     }
1366    
1367     bool Engine::DiskStreamSupported() {
1368     return true;
1369     }
1370    
1371     uint Engine::DiskStreamCount() {
1372     return (pDiskThread) ? pDiskThread->ActiveStreamCount : 0;
1373     }
1374    
1375     uint Engine::DiskStreamCountMax() {
1376     return (pDiskThread) ? pDiskThread->ActiveStreamCountMax : 0;
1377     }
1378    
1379     String Engine::DiskStreamBufferFillBytes() {
1380     return pDiskThread->GetBufferFillBytes();
1381     }
1382    
1383     String Engine::DiskStreamBufferFillPercentage() {
1384     return pDiskThread->GetBufferFillPercentage();
1385     }
1386    
1387 senkov 112 String Engine::EngineName() {
1388 schoenebeck 475 return LS_GIG_ENGINE_NAME;
1389 senkov 112 }
1390    
1391 schoenebeck 53 String Engine::Description() {
1392     return "Gigasampler Engine";
1393     }
1394    
1395     String Engine::Version() {
1396 schoenebeck 769 String s = "$Revision: 1.53 $";
1397 schoenebeck 123 return s.substr(11, s.size() - 13); // cut dollar signs, spaces and CVS macro keyword
1398 schoenebeck 53 }
1399    
1400     }} // namespace LinuxSampler::gig

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