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

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Revision 2902 - (hide annotations) (download)
Tue May 3 14:00:16 2016 UTC (7 years, 11 months ago) by schoenebeck
File size: 48195 byte(s)
* Reload instrument script automatically after being modified by an
  instrument editor.
* Bumped version (2.0.0.svn8).

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 2902 * Copyright (C) 2005 - 2016 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    
26     #include "InstrumentResourceManager.h"
27 iliev 2012 #include "EngineChannel.h"
28     #include "Engine.h"
29 schoenebeck 53
30 schoenebeck 1424 #include "../../common/global_private.h"
31 schoenebeck 1375 #include "../../plugins/InstrumentEditorFactory.h"
32 schoenebeck 1212
33 schoenebeck 53 namespace LinuxSampler { namespace gig {
34    
35 schoenebeck 517 // some data needed for the libgig callback function
36     struct progress_callback_arg_t {
37 schoenebeck 947 InstrumentResourceManager* pManager;
38     InstrumentManager::instrument_id_t* pInstrumentKey;
39 schoenebeck 517 };
40    
41 schoenebeck 1212 // we use this to react on events concerning an instrument on behalf of an instrument editor
42     class InstrumentEditorProxy : public InstrumentConsumer {
43     public:
44     virtual void ResourceToBeUpdated(::gig::Instrument* pResource, void*& pUpdateArg) {
45     //TODO: inform the instrument editor about the pending update
46     }
47    
48     virtual void ResourceUpdated(::gig::Instrument* pOldResource, ::gig::Instrument* pNewResource, void* pUpdateArg) {
49     //TODO:: inform the instrument editor about finished update
50     }
51    
52     virtual void OnResourceProgress(float fProgress) {
53     //TODO: inform the instrument editor about the progress of an update
54     }
55    
56     // the instrument we borrowed on behalf of the editor
57     ::gig::Instrument* pInstrument;
58 schoenebeck 1653 // the instrument editor we work on behalf
59     InstrumentEditor* pEditor;
60 schoenebeck 1212 };
61    
62 schoenebeck 517 /**
63     * Callback function which will be called by libgig during loading of
64     * instruments to inform about the current progress. Or to be more
65     * specific; it will be called during the GetInstrument() call.
66     *
67     * @param pProgress - contains current progress value, pointer to the
68     * InstrumentResourceManager instance and
69     * instrument ID
70     */
71     void InstrumentResourceManager::OnInstrumentLoadingProgress(::gig::progress_t* pProgress) {
72 persson 2837 dmsg(7,("gig::InstrumentResourceManager: progress %f%%", pProgress->factor));
73 schoenebeck 517 progress_callback_arg_t* pArg = static_cast<progress_callback_arg_t*>(pProgress->custom);
74     // we randomly schedule 90% for the .gig file loading and the remaining 10% later for sample caching
75     const float localProgress = 0.9f * pProgress->factor;
76     pArg->pManager->DispatchResourceProgressEvent(*pArg->pInstrumentKey, localProgress);
77     }
78    
79 schoenebeck 947 String InstrumentResourceManager::GetInstrumentName(instrument_id_t ID) {
80 schoenebeck 970 Lock();
81     ::gig::Instrument* pInstrument = Resource(ID, false);
82     String res = (pInstrument) ? pInstrument->pInfo->Name : "";
83     Unlock();
84     return res;
85 schoenebeck 947 }
86    
87 schoenebeck 1321 String InstrumentResourceManager::GetInstrumentDataStructureName(instrument_id_t ID) {
88 schoenebeck 1212 return ::gig::libraryName();
89     }
90    
91 schoenebeck 1321 String InstrumentResourceManager::GetInstrumentDataStructureVersion(instrument_id_t ID) {
92 schoenebeck 1212 return ::gig::libraryVersion();
93     }
94    
95 schoenebeck 1525 std::vector<InstrumentResourceManager::instrument_id_t> InstrumentResourceManager::GetInstrumentFileContent(String File) throw (InstrumentManagerException) {
96     ::RIFF::File* riff = NULL;
97     ::gig::File* gig = NULL;
98     try {
99     std::vector<instrument_id_t> result;
100     riff = new ::RIFF::File(File);
101     gig = new ::gig::File(riff);
102     gig->SetAutoLoad(false); // avoid time consuming samples scanning
103     for (int i = 0; gig->GetInstrument(i); i++) {
104     instrument_id_t id;
105     id.FileName = File;
106     id.Index = i;
107     result.push_back(id);
108     }
109     if (gig) delete gig;
110     if (riff) delete riff;
111     return result;
112     } catch (::RIFF::Exception e) {
113     if (gig) delete gig;
114     if (riff) delete riff;
115     throw InstrumentManagerException(e.Message);
116     } catch (...) {
117     if (gig) delete gig;
118     if (riff) delete riff;
119     throw InstrumentManagerException("Unknown exception while trying to parse '" + File + "'");
120     }
121     }
122    
123     InstrumentResourceManager::instrument_info_t InstrumentResourceManager::GetInstrumentInfo(instrument_id_t ID) throw (InstrumentManagerException) {
124 iliev 1771 Lock();
125     ::gig::Instrument* pInstrument = Resource(ID, false);
126     bool loaded = (pInstrument != NULL);
127     if (!loaded) Unlock();
128    
129 schoenebeck 1525 ::RIFF::File* riff = NULL;
130     ::gig::File* gig = NULL;
131     try {
132 persson 2326 if (!loaded) {
133 iliev 1771 riff = new ::RIFF::File(ID.FileName);
134     gig = new ::gig::File(riff);
135     gig->SetAutoLoad(false); // avoid time consuming samples scanning
136     pInstrument = gig->GetInstrument(ID.Index);
137     }
138 schoenebeck 1852
139 schoenebeck 1525 if (!pInstrument) throw InstrumentManagerException("There is no instrument " + ToString(ID.Index) + " in " + ID.FileName);
140 iliev 1771
141 schoenebeck 1525 instrument_info_t info;
142 iliev 1771 for (int i = 0; i < 128; i++) { info.KeyBindings[i] = info.KeySwitchBindings[i] = 0; }
143    
144     ::gig::File* pFile = (::gig::File*) pInstrument->GetParent();
145    
146     if (pFile->pVersion) {
147     info.FormatVersion = ToString(pFile->pVersion->major);
148     info.Product = pFile->pInfo->Product;
149     info.Artists = pFile->pInfo->Artists;
150 schoenebeck 1525 }
151 iliev 1771
152 schoenebeck 1525 info.InstrumentName = pInstrument->pInfo->Name;
153 iliev 1771
154     ::gig::Region* pRegion = pInstrument->GetFirstRegion();
155     while (pRegion) {
156     int low = pRegion->KeyRange.low;
157     int high = pRegion->KeyRange.high;
158     if (low < 0 || low > 127 || high < 0 || high > 127 || low > high) {
159     std::cerr << "Invalid key range: " << low << " - " << high << std::endl;
160     } else {
161     for (int i = low; i <= high; i++) info.KeyBindings[i] = 1;
162     }
163 persson 1797
164 iliev 1771 pRegion = pInstrument->GetNextRegion();
165     }
166 persson 1797
167 iliev 1774 if (loaded) { // retrieve keyswitching only if the instrument is fully loaded.
168 persson 1797
169     // only return keyswitch range if keyswitching is used
170     bool hasKeyswitches = false;
171     for (::gig::Region* pRegion = pInstrument->GetFirstRegion() ;
172     pRegion && !hasKeyswitches ;
173     pRegion = pInstrument->GetNextRegion()) {
174     for (int i = 0 ; i < pRegion->Dimensions ; i++) {
175     if (pRegion->pDimensionDefinitions[i].dimension == ::gig::dimension_keyboard) {
176     hasKeyswitches = true;
177     break;
178     }
179     }
180 iliev 1774 }
181 persson 1797
182     if (hasKeyswitches) {
183     int low = pInstrument->DimensionKeyRange.low;
184     int high = pInstrument->DimensionKeyRange.high;
185     if (low < 0 || low > 127 || high < 0 || high > 127 || low > high) {
186     std::cerr << "Invalid keyswitch range: " << low << " - " << high << std::endl;
187     } else {
188     for (int i = low; i <= high; i++) info.KeySwitchBindings[i] = 1;
189     }
190     }
191 iliev 1771 }
192    
193     if (loaded) Unlock();
194    
195 schoenebeck 1525 if (gig) delete gig;
196     if (riff) delete riff;
197     return info;
198     } catch (::RIFF::Exception e) {
199 iliev 1771 if (loaded) Unlock();
200 schoenebeck 1525 if (gig) delete gig;
201     if (riff) delete riff;
202     throw InstrumentManagerException(e.Message);
203     } catch (...) {
204 iliev 1771 if (loaded) Unlock();
205 schoenebeck 1525 if (gig) delete gig;
206     if (riff) delete riff;
207     throw InstrumentManagerException("Unknown exception while trying to parse '" + ID.FileName + "'");
208     }
209     }
210    
211 schoenebeck 2687 InstrumentEditor* InstrumentResourceManager::LaunchInstrumentEditor(LinuxSampler::EngineChannel* pEngineChannel, instrument_id_t ID, void* pUserData) throw (InstrumentManagerException) {
212 schoenebeck 1321 const String sDataType = GetInstrumentDataStructureName(ID);
213     const String sDataVersion = GetInstrumentDataStructureVersion(ID);
214 schoenebeck 1212 // find instrument editors capable to handle given instrument
215     std::vector<String> vEditors =
216     InstrumentEditorFactory::MatchingEditors(sDataType, sDataVersion);
217     if (!vEditors.size())
218     throw InstrumentManagerException(
219     "There is no instrument editor capable to handle this instrument"
220     );
221     // simply use the first editor in the result set
222     dmsg(1,("Found matching editor '%s' for instrument ('%s', %d) having data structure ('%s','%s')\n",
223     vEditors[0].c_str(), ID.FileName.c_str(), ID.Index, sDataType.c_str(), sDataVersion.c_str()));
224     InstrumentEditor* pEditor = InstrumentEditorFactory::Create(vEditors[0]);
225 schoenebeck 1321 // register for receiving notifications from the instrument editor
226 schoenebeck 1212 pEditor->AddListener(this);
227     // create a proxy that reacts on notification on behalf of the editor
228     InstrumentEditorProxy* pProxy = new InstrumentEditorProxy;
229     // borrow the instrument on behalf of the instrument editor
230     ::gig::Instrument* pInstrument = Borrow(ID, pProxy);
231     // remember the proxy and instrument for this instrument editor
232     pProxy->pInstrument = pInstrument;
233 schoenebeck 1653 pProxy->pEditor = pEditor;
234 schoenebeck 1212 InstrumentEditorProxiesMutex.Lock();
235 schoenebeck 1653 InstrumentEditorProxies.add(pProxy);
236 schoenebeck 1212 InstrumentEditorProxiesMutex.Unlock();
237     // launch the instrument editor for the given instrument
238 schoenebeck 2687 pEditor->Launch(pEngineChannel, pInstrument, sDataType, sDataVersion, pUserData);
239 schoenebeck 1659
240     // register the instrument editor as virtual MIDI device as well ...
241     VirtualMidiDevice* pVirtualMidiDevice =
242     dynamic_cast<VirtualMidiDevice*>(pEditor);
243     if (!pVirtualMidiDevice) {
244     std::cerr << "Instrument editor not a virtual MIDI device\n" << std::flush;
245 schoenebeck 1868 return pEditor;
246 schoenebeck 1659 }
247     // NOTE: for now connect the virtual MIDI keyboard of the instrument editor (if any) with all engine channels that have the same instrument as the editor was opened for ( other ideas ? )
248     Lock();
249 iliev 2012 std::set<EngineChannel*> engineChannels =
250 schoenebeck 1659 GetEngineChannelsUsing(pInstrument, false/*don't lock again*/);
251 iliev 2012 std::set<EngineChannel*>::iterator iter = engineChannels.begin();
252     std::set<EngineChannel*>::iterator end = engineChannels.end();
253     for (; iter != end; ++iter) (static_cast<AbstractEngineChannel*>(*iter))->Connect(pVirtualMidiDevice);
254 schoenebeck 1659 Unlock();
255 schoenebeck 1868
256     return pEditor;
257 schoenebeck 1212 }
258    
259     /**
260     * Will be called by the respective instrument editor once it left its
261     * Main() loop. That way we can handle cleanup before its thread finally
262     * dies.
263     *
264     * @param pSender - instrument editor that stops execution
265     */
266     void InstrumentResourceManager::OnInstrumentEditorQuit(InstrumentEditor* pSender) {
267     dmsg(1,("InstrumentResourceManager: instrument editor quit, doing cleanup\n"));
268 schoenebeck 1659
269     ::gig::Instrument* pInstrument = NULL;
270     InstrumentEditorProxy* pProxy = NULL;
271     int iProxyIndex = -1;
272    
273     // first find the editor proxy entry for this editor
274 persson 2427 {
275     LockGuard lock(InstrumentEditorProxiesMutex);
276     for (int i = 0; i < InstrumentEditorProxies.size(); i++) {
277     InstrumentEditorProxy* pCurProxy =
278     dynamic_cast<InstrumentEditorProxy*>(
279     InstrumentEditorProxies[i]
280     );
281     if (pCurProxy->pEditor == pSender) {
282     pProxy = pCurProxy;
283     iProxyIndex = i;
284     pInstrument = pCurProxy->pInstrument;
285     }
286 schoenebeck 1653 }
287 schoenebeck 1212 }
288 persson 1455
289 schoenebeck 1659 if (!pProxy) {
290     std::cerr << "Eeeek, could not find instrument editor proxy, "
291     "this is a bug!\n" << std::flush;
292     return;
293     }
294    
295     // now unregister editor as not being available as a virtual MIDI device anymore
296     VirtualMidiDevice* pVirtualMidiDevice =
297     dynamic_cast<VirtualMidiDevice*>(pSender);
298     if (pVirtualMidiDevice) {
299     Lock();
300     // NOTE: see note in LaunchInstrumentEditor()
301 iliev 2012 std::set<EngineChannel*> engineChannels =
302 schoenebeck 1659 GetEngineChannelsUsing(pInstrument, false/*don't lock again*/);
303 iliev 2012 std::set<EngineChannel*>::iterator iter = engineChannels.begin();
304     std::set<EngineChannel*>::iterator end = engineChannels.end();
305 schoenebeck 1659 for (; iter != end; ++iter) (*iter)->Disconnect(pVirtualMidiDevice);
306     Unlock();
307     } else {
308     std::cerr << "Could not unregister editor as not longer acting as "
309     "virtual MIDI device. Wasn't it registered?\n"
310     << std::flush;
311     }
312    
313     // finally delete proxy entry and hand back instrument
314     if (pInstrument) {
315 persson 2427 {
316     LockGuard lock(InstrumentEditorProxiesMutex);
317     InstrumentEditorProxies.remove(iProxyIndex);
318     }
319 schoenebeck 1659
320     HandBack(pInstrument, pProxy);
321     delete pProxy;
322     }
323    
324 persson 1455 // Note that we don't need to free the editor here. As it
325     // derives from Thread, it will delete itself when the thread
326     // dies.
327 schoenebeck 1212 }
328    
329 schoenebeck 1662 #if 0 // currently unused :
330 schoenebeck 1653 /**
331     * Try to inform the respective instrument editor(s), that a note on
332     * event just occured. This method is called by the MIDI thread. If any
333     * obstacles are in the way (e.g. if a wait for an unlock would be
334     * required) we give up immediately, since the RT safeness of the MIDI
335     * thread has absolute priority.
336     */
337     void InstrumentResourceManager::TrySendNoteOnToEditors(uint8_t Key, uint8_t Velocity, ::gig::Instrument* pInstrument) {
338     const bool bGotLock = InstrumentEditorProxiesMutex.Trylock(); // naively assumes RT safe implementation
339     if (!bGotLock) return; // hell, forget it, not worth the hassle
340     for (int i = 0; i < InstrumentEditorProxies.size(); i++) {
341     InstrumentEditorProxy* pProxy =
342     dynamic_cast<InstrumentEditorProxy*>(
343     InstrumentEditorProxies[i]
344     );
345     if (pProxy->pInstrument == pInstrument)
346 schoenebeck 1659 pProxy->pEditor->SendNoteOnToDevice(Key, Velocity);
347 schoenebeck 1653 }
348     InstrumentEditorProxiesMutex.Unlock(); // naively assumes RT safe implementation
349     }
350    
351     /**
352     * Try to inform the respective instrument editor(s), that a note off
353     * event just occured. This method is called by the MIDI thread. If any
354     * obstacles are in the way (e.g. if a wait for an unlock would be
355     * required) we give up immediately, since the RT safeness of the MIDI
356     * thread has absolute priority.
357     */
358     void InstrumentResourceManager::TrySendNoteOffToEditors(uint8_t Key, uint8_t Velocity, ::gig::Instrument* pInstrument) {
359     const bool bGotLock = InstrumentEditorProxiesMutex.Trylock(); // naively assumes RT safe implementation
360     if (!bGotLock) return; // hell, forget it, not worth the hassle
361     for (int i = 0; i < InstrumentEditorProxies.size(); i++) {
362     InstrumentEditorProxy* pProxy =
363     dynamic_cast<InstrumentEditorProxy*>(
364     InstrumentEditorProxies[i]
365     );
366     if (pProxy->pInstrument == pInstrument)
367 schoenebeck 1659 pProxy->pEditor->SendNoteOffToDevice(Key, Velocity);
368 schoenebeck 1653 }
369     InstrumentEditorProxiesMutex.Unlock(); // naively assumes RT safe implementation
370     }
371 schoenebeck 1662 #endif // unused
372 schoenebeck 1653
373 schoenebeck 1321 void InstrumentResourceManager::OnSamplesToBeRemoved(std::set<void*> Samples, InstrumentEditor* pSender) {
374     if (Samples.empty()) {
375     std::cerr << "gig::InstrumentResourceManager: WARNING, "
376     "OnSamplesToBeRemoved() called with empty list, this "
377     "is a bug!\n" << std::flush;
378     return;
379     }
380     // TODO: ATM we assume here that all samples are from the same file
381     ::gig::Sample* pFirstSample = (::gig::Sample*) *Samples.begin();
382     ::gig::File* pCriticalFile = dynamic_cast< ::gig::File*>(pFirstSample->GetParent());
383     // completely suspend all engines that use that same file
384     SuspendEnginesUsing(pCriticalFile);
385     }
386    
387     void InstrumentResourceManager::OnSamplesRemoved(InstrumentEditor* pSender) {
388     // resume all previously, completely suspended engines
389     // (we don't have to un-cache the removed samples here, since that is
390     // automatically done by the gig::Sample destructor)
391     ResumeAllEngines();
392     }
393    
394     void InstrumentResourceManager::OnDataStructureToBeChanged(void* pStruct, String sStructType, InstrumentEditor* pSender) {
395 schoenebeck 2902 dmsg(5,("gig::InstrumentResourceManager::OnDataStructureToBeChanged(%s)\n", sStructType.c_str()));
396 schoenebeck 1321 //TODO: remove code duplication
397     if (sStructType == "gig::File") {
398     // completely suspend all engines that use that file
399     ::gig::File* pFile = (::gig::File*) pStruct;
400     SuspendEnginesUsing(pFile);
401     } else if (sStructType == "gig::Instrument") {
402     // completely suspend all engines that use that instrument
403     ::gig::Instrument* pInstrument = (::gig::Instrument*) pStruct;
404     SuspendEnginesUsing(pInstrument);
405     } else if (sStructType == "gig::Region") {
406     // only advice the engines to suspend the given region, so they'll
407     // only ignore that region (and probably already other suspended
408     // ones), but beside that continue normal playback
409     ::gig::Region* pRegion = (::gig::Region*) pStruct;
410     ::gig::Instrument* pInstrument =
411     (::gig::Instrument*) pRegion->GetParent();
412     Lock();
413 iliev 2012 std::set<Engine*> engines =
414 schoenebeck 1321 GetEnginesUsing(pInstrument, false/*don't lock again*/);
415 iliev 2012 std::set<Engine*>::iterator iter = engines.begin();
416     std::set<Engine*>::iterator end = engines.end();
417 schoenebeck 1321 for (; iter != end; ++iter) (*iter)->Suspend(pRegion);
418     Unlock();
419     } else if (sStructType == "gig::DimensionRegion") {
420     // only advice the engines to suspend the given DimensionRegions's
421     // parent region, so they'll only ignore that region (and probably
422     // already other suspended ones), but beside that continue normal
423     // playback
424     ::gig::DimensionRegion* pDimReg =
425     (::gig::DimensionRegion*) pStruct;
426     ::gig::Region* pRegion = pDimReg->GetParent();
427     ::gig::Instrument* pInstrument =
428     (::gig::Instrument*) pRegion->GetParent();
429     Lock();
430 iliev 2012 std::set<Engine*> engines =
431 schoenebeck 1321 GetEnginesUsing(pInstrument, false/*don't lock again*/);
432 iliev 2012 std::set<Engine*>::iterator iter = engines.begin();
433     std::set<Engine*>::iterator end = engines.end();
434 schoenebeck 1321 for (; iter != end; ++iter) (*iter)->Suspend(pRegion);
435     Unlock();
436 schoenebeck 2902 } else if (sStructType == "gig::Script") {
437     // no need to suspend anything here, since the sampler is
438     // processing a translated VM representation of the original script
439     // source code, not accessing the source code itself during playback
440     ::gig::Script* pScript = (::gig::Script*) pStruct;
441     // remember the original source code of the script, since the script
442     // resource manager uses the source code as key
443     pendingScriptUpdatesMutex.Lock();
444     pendingScriptUpdates[pScript] = pScript->GetScriptAsText();
445     pendingScriptUpdatesMutex.Unlock();
446 schoenebeck 1321 } else {
447     std::cerr << "gig::InstrumentResourceManager: ERROR, unknown data "
448     "structure '" << sStructType << "' requested to be "
449     "suspended by instrument editor. This is a bug!\n"
450     << std::flush;
451     //TODO: we should inform the instrument editor that something seriously went wrong
452     }
453     }
454    
455     void InstrumentResourceManager::OnDataStructureChanged(void* pStruct, String sStructType, InstrumentEditor* pSender) {
456 schoenebeck 2902 dmsg(5,("gig::InstrumentResourceManager::OnDataStructureChanged(%s)\n", sStructType.c_str()));
457 schoenebeck 1321 //TODO: remove code duplication
458     if (sStructType == "gig::File") {
459     // resume all previously suspended engines
460     ResumeAllEngines();
461     } else if (sStructType == "gig::Instrument") {
462     // resume all previously suspended engines
463     ResumeAllEngines();
464 schoenebeck 1852 } else if (sStructType == "gig::Sample") {
465     // we're assuming here, that OnDataStructureToBeChanged() with
466     // "gig::File" was called previously, so we won't resume anything
467     // here, but just re-cache the given sample
468     Lock();
469     ::gig::Sample* pSample = (::gig::Sample*) pStruct;
470     ::gig::File* pFile = (::gig::File*) pSample->GetParent();
471     UncacheInitialSamples(pSample);
472     // now re-cache ...
473     std::vector< ::gig::Instrument*> instruments =
474     GetInstrumentsCurrentlyUsedOf(pFile, false/*don't lock again*/);
475     for (int i = 0; i < instruments.size(); i++) {
476     if (SampleReferencedByInstrument(pSample, instruments[i])) {
477 iliev 2012 std::set<EngineChannel*> engineChannels =
478 schoenebeck 1852 GetEngineChannelsUsing(instruments[i], false/*don't lock again*/);
479 iliev 2012 std::set<EngineChannel*>::iterator iter = engineChannels.begin();
480     std::set<EngineChannel*>::iterator end = engineChannels.end();
481 schoenebeck 1852 for (; iter != end; ++iter)
482     CacheInitialSamples(pSample, *iter);
483     }
484     }
485     Unlock();
486 schoenebeck 1321 } else if (sStructType == "gig::Region") {
487     // advice the engines to resume the given region, that is to
488     // using it for playback again
489     ::gig::Region* pRegion = (::gig::Region*) pStruct;
490     ::gig::Instrument* pInstrument =
491     (::gig::Instrument*) pRegion->GetParent();
492     Lock();
493 iliev 2012 std::set<Engine*> engines =
494 schoenebeck 1321 GetEnginesUsing(pInstrument, false/*don't lock again*/);
495 iliev 2012 std::set<Engine*>::iterator iter = engines.begin();
496     std::set<Engine*>::iterator end = engines.end();
497 schoenebeck 1321 for (; iter != end; ++iter) (*iter)->Resume(pRegion);
498     Unlock();
499     } else if (sStructType == "gig::DimensionRegion") {
500     // advice the engines to resume the given DimensionRegion's parent
501     // region, that is to using it for playback again
502     ::gig::DimensionRegion* pDimReg =
503     (::gig::DimensionRegion*) pStruct;
504     ::gig::Region* pRegion = pDimReg->GetParent();
505     ::gig::Instrument* pInstrument =
506     (::gig::Instrument*) pRegion->GetParent();
507     Lock();
508 iliev 2012 std::set<Engine*> engines =
509 schoenebeck 1321 GetEnginesUsing(pInstrument, false/*don't lock again*/);
510 iliev 2012 std::set<Engine*>::iterator iter = engines.begin();
511     std::set<Engine*>::iterator end = engines.end();
512 schoenebeck 1321 for (; iter != end; ++iter) (*iter)->Resume(pRegion);
513     Unlock();
514 schoenebeck 2902 } else if (sStructType == "gig::Script") {
515     // inform all engine channels which are using this script, that
516     // they need to reload (parse) the script's source code text
517     ::gig::Script* pScript = (::gig::Script*) pStruct;
518     pendingScriptUpdatesMutex.Lock();
519     if (pendingScriptUpdates.count(pScript)) {
520     const String& code = pendingScriptUpdates[pScript];
521     std::set<EngineChannel*> channels = GetEngineChannelsUsingScriptSourceCode(code, true/*lock*/);
522     pendingScriptUpdates.erase(pScript);
523     std::set<EngineChannel*>::iterator iter = channels.begin();
524     std::set<EngineChannel*>::iterator end = channels.end();
525     for (; iter != end; ++iter) (*iter)->reloadScript(pScript);
526     }
527     pendingScriptUpdatesMutex.Unlock();
528 schoenebeck 1321 } else {
529     std::cerr << "gig::InstrumentResourceManager: ERROR, unknown data "
530     "structure '" << sStructType << "' requested to be "
531     "resumed by instrument editor. This is a bug!\n"
532     << std::flush;
533     //TODO: we should inform the instrument editor that something seriously went wrong
534     }
535     }
536    
537     void InstrumentResourceManager::OnSampleReferenceChanged(void* pOldSample, void* pNewSample, InstrumentEditor* pSender) {
538     // uncache old sample in case it's not used by anybody anymore
539     if (pOldSample) {
540     Lock();
541     ::gig::Sample* pSample = (::gig::Sample*) pOldSample;
542     ::gig::File* pFile = (::gig::File*) pSample->GetParent();
543 schoenebeck 1852 bool bSampleStillInUse = false;
544 schoenebeck 1321 std::vector< ::gig::Instrument*> instruments =
545     GetInstrumentsCurrentlyUsedOf(pFile, false/*don't lock again*/);
546 schoenebeck 1852 for (int i = 0; i < instruments.size(); i++) {
547     if (SampleReferencedByInstrument(pSample, instruments[i])) {
548     bSampleStillInUse = true;
549     break;
550     }
551     }
552     if (!bSampleStillInUse) UncacheInitialSamples(pSample);
553 schoenebeck 1321 Unlock();
554     }
555     // make sure new sample reference is cached
556     if (pNewSample) {
557     Lock();
558     ::gig::Sample* pSample = (::gig::Sample*) pNewSample;
559     ::gig::File* pFile = (::gig::File*) pSample->GetParent();
560     // get all engines that use that same gig::File
561 iliev 2012 std::set<Engine*> engines = GetEnginesUsing(pFile, false/*don't lock again*/);
562     std::set<Engine*>::iterator iter = engines.begin();
563     std::set<Engine*>::iterator end = engines.end();
564 schoenebeck 1321 for (; iter != end; ++iter)
565     CacheInitialSamples(pSample, *iter);
566     Unlock();
567     }
568     }
569    
570 schoenebeck 53 ::gig::Instrument* InstrumentResourceManager::Create(instrument_id_t Key, InstrumentConsumer* pConsumer, void*& pArg) {
571 schoenebeck 1321 // get gig file from internal gig file manager
572 persson 2185 ::gig::File* pGig = Gigs.Borrow(Key.FileName, reinterpret_cast<GigConsumer*>(Key.Index)); // conversion kinda hackish :/
573 schoenebeck 53
574 schoenebeck 517 // we pass this to the progress callback mechanism of libgig
575     progress_callback_arg_t callbackArg;
576     callbackArg.pManager = this;
577     callbackArg.pInstrumentKey = &Key;
578    
579     ::gig::progress_t progress;
580     progress.callback = OnInstrumentLoadingProgress;
581     progress.custom = &callbackArg;
582    
583 schoenebeck 947 dmsg(1,("Loading gig instrument ('%s',%d)...",Key.FileName.c_str(),Key.Index));
584     ::gig::Instrument* pInstrument = pGig->GetInstrument(Key.Index, &progress);
585 schoenebeck 53 if (!pInstrument) {
586     std::stringstream msg;
587 schoenebeck 947 msg << "There's no instrument with index " << Key.Index << ".";
588 schoenebeck 1212 throw InstrumentManagerException(msg.str());
589 schoenebeck 53 }
590     pGig->GetFirstSample(); // just to force complete instrument loading
591     dmsg(1,("OK\n"));
592    
593 persson 2326 uint maxSamplesPerCycle = GetMaxSamplesPerCycle(pConsumer);
594    
595 schoenebeck 53 // cache initial samples points (for actually needed samples)
596     dmsg(1,("Caching initial samples..."));
597 schoenebeck 517 uint iRegion = 0; // just for progress calculation
598 schoenebeck 53 ::gig::Region* pRgn = pInstrument->GetFirstRegion();
599     while (pRgn) {
600 schoenebeck 517 // we randomly schedule 90% for the .gig file loading and the remaining 10% now for sample caching
601     const float localProgress = 0.9f + 0.1f * (float) iRegion / (float) pInstrument->Regions;
602 schoenebeck 947 DispatchResourceProgressEvent(Key, localProgress);
603    
604 schoenebeck 354 if (pRgn->GetSample() && !pRgn->GetSample()->GetCache().Size) {
605 schoenebeck 53 dmsg(2,("C"));
606 persson 2326 CacheInitialSamples(pRgn->GetSample(), maxSamplesPerCycle);
607 schoenebeck 53 }
608     for (uint i = 0; i < pRgn->DimensionRegions; i++) {
609 persson 2326 CacheInitialSamples(pRgn->pDimensionRegions[i]->pSample, maxSamplesPerCycle);
610 schoenebeck 53 }
611    
612     pRgn = pInstrument->GetNextRegion();
613 schoenebeck 517 iRegion++;
614 schoenebeck 53 }
615     dmsg(1,("OK\n"));
616 schoenebeck 517 DispatchResourceProgressEvent(Key, 1.0f); // done; notify all consumers about progress 100%
617 schoenebeck 53
618     // we need the following for destruction later
619     instr_entry_t* pEntry = new instr_entry_t;
620 schoenebeck 947 pEntry->ID.FileName = Key.FileName;
621     pEntry->ID.Index = Key.Index;
622 persson 2326 pEntry->pFile = pGig;
623 persson 438
624 persson 2326 // and we save this to check if we need to reallocate for an engine with higher value of 'MaxSamplesPerSecond'
625     pEntry->MaxSamplesPerCycle = maxSamplesPerCycle;
626 schoenebeck 2275
627 schoenebeck 53 pArg = pEntry;
628    
629     return pInstrument;
630     }
631    
632 persson 2326 void InstrumentResourceManager::Destroy(::gig::Instrument* pResource, void* pArg) {
633 schoenebeck 53 instr_entry_t* pEntry = (instr_entry_t*) pArg;
634 schoenebeck 947 // we don't need the .gig file here anymore
635 persson 2326 Gigs.HandBack(pEntry->pFile, reinterpret_cast<GigConsumer*>(pEntry->ID.Index)); // conversion kinda hackish :/
636 schoenebeck 53 delete pEntry;
637     }
638    
639 iliev 2012 void InstrumentResourceManager::DeleteRegionIfNotUsed(::gig::DimensionRegion* pRegion, region_info_t* pRegInfo) {
640     // TODO: we could delete Region and Instrument here if they have become unused
641 persson 1038 }
642 schoenebeck 2275
643 iliev 2012 void InstrumentResourceManager::DeleteSampleIfNotUsed(::gig::Sample* pSample, region_info_t* pRegInfo) {
644     ::gig::File* gig = pRegInfo->file;
645     ::RIFF::File* riff = static_cast< ::RIFF::File*>(pRegInfo->pArg);
646     if (gig) {
647     gig->DeleteSample(pSample);
648     if (!gig->GetFirstSample()) {
649     dmsg(2,("No more samples in use - freeing gig\n"));
650     delete gig;
651     delete riff;
652 persson 1038 }
653     }
654     }
655    
656     /**
657 schoenebeck 1321 * Just a wrapper around the other @c CacheInitialSamples() method.
658     *
659     * @param pSample - points to the sample to be cached
660     * @param pEngine - pointer to Gig Engine Channel which caused this call
661     * (may be NULL, in this case default amount of samples
662     * will be cached)
663     */
664 iliev 2012 void InstrumentResourceManager::CacheInitialSamples(::gig::Sample* pSample, EngineChannel* pEngineChannel) {
665     Engine* pEngine =
666 schoenebeck 1321 (pEngineChannel && pEngineChannel->GetEngine()) ?
667 iliev 2012 dynamic_cast<Engine*>(pEngineChannel->GetEngine()) : NULL;
668 schoenebeck 1321 CacheInitialSamples(pSample, pEngine);
669     }
670    
671     /**
672 schoenebeck 53 * Caches a certain size at the beginning of the given sample in RAM. If the
673     * sample is very short, the whole sample will be loaded into RAM and thus
674     * no disk streaming is needed for this sample. Caching an initial part of
675     * samples is needed to compensate disk reading latency.
676     *
677     * @param pSample - points to the sample to be cached
678 schoenebeck 1321 * @param pEngine - pointer to Gig Engine which caused this call
679     * (may be NULL, in this case default amount of samples
680     * will be cached)
681 schoenebeck 53 */
682 iliev 2012 void InstrumentResourceManager::CacheInitialSamples(::gig::Sample* pSample, AbstractEngine* pEngine) {
683 persson 2326 uint maxSamplesPerCycle =
684     (pEngine) ? pEngine->pAudioOutputDevice->MaxSamplesPerCycle() :
685     DefaultMaxSamplesPerCycle();
686     CacheInitialSamples(pSample, maxSamplesPerCycle);
687     }
688    
689     void InstrumentResourceManager::CacheInitialSamples(::gig::Sample* pSample, uint maxSamplesPerCycle) {
690 schoenebeck 420 if (!pSample) {
691 persson 438 dmsg(4,("gig::InstrumentResourceManager: Skipping sample (pSample == NULL)\n"));
692 schoenebeck 420 return;
693     }
694     if (!pSample->SamplesTotal) return; // skip zero size samples
695 persson 438
696 schoenebeck 554 if (pSample->SamplesTotal <= CONFIG_PRELOAD_SAMPLES) {
697 schoenebeck 53 // Sample is too short for disk streaming, so we load the whole
698 schoenebeck 554 // sample into RAM and place 'pAudioIO->FragmentSize << CONFIG_MAX_PITCH'
699 schoenebeck 53 // number of '0' samples (silence samples) behind the official buffer
700     // border, to allow the interpolator do it's work even at the end of
701 persson 438 // the sample.
702 schoenebeck 554 const uint neededSilenceSamples = (maxSamplesPerCycle << CONFIG_MAX_PITCH) + 3;
703 schoenebeck 420 const uint currentlyCachedSilenceSamples = pSample->GetCache().NullExtensionSize / pSample->FrameSize;
704     if (currentlyCachedSilenceSamples < neededSilenceSamples) {
705 persson 2837 dmsg(3,("Caching whole sample (sample name: \"%s\", sample size: %lu)\n", pSample->pInfo->Name.c_str(), pSample->SamplesTotal));
706 schoenebeck 420 ::gig::buffer_t buf = pSample->LoadSampleDataWithNullSamplesExtension(neededSilenceSamples);
707 persson 2837 dmsg(4,("Cached %lu Bytes, %lu silence bytes.\n", buf.Size, buf.NullExtensionSize));
708 schoenebeck 420 }
709 schoenebeck 53 }
710 schoenebeck 554 else { // we only cache CONFIG_PRELOAD_SAMPLES and stream the other sample points from disk
711     if (!pSample->GetCache().Size) pSample->LoadSampleData(CONFIG_PRELOAD_SAMPLES);
712 schoenebeck 53 }
713    
714     if (!pSample->GetCache().Size) std::cerr << "Unable to cache sample - maybe memory full!" << std::endl << std::flush;
715     }
716    
717 schoenebeck 1321 void InstrumentResourceManager::UncacheInitialSamples(::gig::Sample* pSample) {
718 persson 2837 dmsg(1,("Uncaching sample %p\n",(void*)pSample));
719 schoenebeck 1321 if (pSample->GetCache().Size) pSample->ReleaseSampleData();
720     }
721 schoenebeck 53
722 schoenebeck 1321 /**
723     * Returns a list with all instruments currently in use, that are part of
724     * the given file.
725     *
726     * @param pFile - search criteria
727     * @param bLock - whether we should lock (mutex) the instrument manager
728     * during this call and unlock at the end of this call
729     */
730     std::vector< ::gig::Instrument*> InstrumentResourceManager::GetInstrumentsCurrentlyUsedOf(::gig::File* pFile, bool bLock) {
731     if (bLock) Lock();
732     std::vector< ::gig::Instrument*> result;
733     std::vector< ::gig::Instrument*> allInstruments = Resources(false/*don't lock again*/);
734     for (int i = 0; i < allInstruments.size(); i++)
735     if (
736     (::gig::File*) allInstruments[i]->GetParent()
737     == pFile
738     ) result.push_back(allInstruments[i]);
739     if (bLock) Unlock();
740     return result;
741     }
742 schoenebeck 53
743 schoenebeck 1321 /**
744 schoenebeck 1659 * Returns a list with all gig engine channels that are currently using
745 schoenebeck 2902 * the given real-time instrument script (provided as source code).
746     *
747     * @param pScript - search criteria
748     * @param bLock - whether we should lock (mutex) the instrument manager
749     * during this call and unlock at the end of this call
750     */
751     std::set<EngineChannel*> InstrumentResourceManager::GetEngineChannelsUsingScriptSourceCode(const String& code, bool bLock) {
752     if (bLock) Lock();
753     std::set<EngineChannel*> result;
754     std::set<InstrumentScriptConsumer*> consumers = scripts.ConsumersOf(code);
755     std::set<InstrumentScriptConsumer*>::iterator iter = consumers.begin();
756     std::set<InstrumentScriptConsumer*>::iterator end = consumers.end();
757     for (; iter != end; ++iter) {
758     EngineChannel* pEngineChannel = dynamic_cast<EngineChannel*>(*iter);
759     if (!pEngineChannel) continue;
760     result.insert(pEngineChannel);
761     }
762     if (bLock) Unlock();
763     return result;
764     }
765    
766     /**
767     * Returns a list with all gig engine channels that are currently using
768 schoenebeck 1659 * the given instrument.
769     *
770     * @param pInstrument - search criteria
771     * @param bLock - whether we should lock (mutex) the instrument manager
772     * during this call and unlock at the end of this call
773     */
774 iliev 2012 std::set<EngineChannel*> InstrumentResourceManager::GetEngineChannelsUsing(::gig::Instrument* pInstrument, bool bLock) {
775 schoenebeck 1659 if (bLock) Lock();
776 iliev 2012 std::set<EngineChannel*> result;
777 schoenebeck 1659 std::set<ResourceConsumer< ::gig::Instrument>*> consumers = ConsumersOf(pInstrument);
778     std::set<ResourceConsumer< ::gig::Instrument>*>::iterator iter = consumers.begin();
779     std::set<ResourceConsumer< ::gig::Instrument>*>::iterator end = consumers.end();
780     for (; iter != end; ++iter) {
781 iliev 2012 EngineChannel* pEngineChannel = dynamic_cast<EngineChannel*>(*iter);
782 schoenebeck 1659 if (!pEngineChannel) continue;
783     result.insert(pEngineChannel);
784     }
785     if (bLock) Unlock();
786     return result;
787     }
788    
789     /**
790 schoenebeck 1321 * Returns a list with all gig Engines that are currently using the given
791     * instrument.
792     *
793     * @param pInstrument - search criteria
794     * @param bLock - whether we should lock (mutex) the instrument manager
795     * during this call and unlock at the end of this call
796     */
797 iliev 2012 std::set<Engine*> InstrumentResourceManager::GetEnginesUsing(::gig::Instrument* pInstrument, bool bLock) {
798 schoenebeck 1321 if (bLock) Lock();
799 iliev 2012 std::set<Engine*> result;
800 schoenebeck 1321 std::set<ResourceConsumer< ::gig::Instrument>*> consumers = ConsumersOf(pInstrument);
801     std::set<ResourceConsumer< ::gig::Instrument>*>::iterator iter = consumers.begin();
802     std::set<ResourceConsumer< ::gig::Instrument>*>::iterator end = consumers.end();
803     for (; iter != end; ++iter) {
804 iliev 2012 EngineChannel* pEngineChannel = dynamic_cast<EngineChannel*>(*iter);
805 schoenebeck 1321 if (!pEngineChannel) continue;
806 iliev 2012 Engine* pEngine = dynamic_cast<Engine*>(pEngineChannel->GetEngine());
807 schoenebeck 1321 if (!pEngine) continue;
808     result.insert(pEngine);
809     }
810     if (bLock) Unlock();
811     return result;
812     }
813    
814     /**
815     * Returns a list with all gig Engines that are currently using an
816     * instrument that is part of the given instrument file.
817     *
818     * @param pFile - search criteria
819     * @param bLock - whether we should lock (mutex) the instrument manager
820     * during this call and unlock at the end of this call
821     */
822 iliev 2012 std::set<Engine*> InstrumentResourceManager::GetEnginesUsing(::gig::File* pFile, bool bLock) {
823 schoenebeck 1321 if (bLock) Lock();
824     // get all instruments (currently in usage) that use that same gig::File
825     std::vector< ::gig::Instrument*> instrumentsOfInterest =
826     GetInstrumentsCurrentlyUsedOf(pFile, false/*don't lock again*/);
827    
828     // get all engines that use that same gig::File
829 iliev 2012 std::set<Engine*> result;
830 schoenebeck 1321 {
831     for (int i = 0; i < instrumentsOfInterest.size(); i++) {
832     std::set<ResourceConsumer< ::gig::Instrument>*> consumers = ConsumersOf(instrumentsOfInterest[i]);
833     std::set<ResourceConsumer< ::gig::Instrument>*>::iterator iter = consumers.begin();
834     std::set<ResourceConsumer< ::gig::Instrument>*>::iterator end = consumers.end();
835     for (; iter != end; ++iter) {
836 iliev 2012 EngineChannel* pEngineChannel = dynamic_cast<EngineChannel*>(*iter);
837 schoenebeck 1321 if (!pEngineChannel) continue;
838 iliev 2012 Engine* pEngine = dynamic_cast<Engine*>(pEngineChannel->GetEngine());
839 schoenebeck 1321 if (!pEngine) continue;
840     // the unique, sorted container std::set makes
841     // sure we won't have duplicates
842     result.insert(pEngine);
843     }
844     }
845     }
846     if (bLock) Unlock();
847     return result;
848     }
849    
850     /**
851     * Returns @c true in case the given sample is referenced somewhere by the
852     * given instrument, @c false otherwise.
853     *
854     * @param pSample - sample reference
855     * @param pInstrument - instrument that might use that sample
856     */
857     bool InstrumentResourceManager::SampleReferencedByInstrument(::gig::Sample* pSample, ::gig::Instrument* pInstrument) {
858     for (
859     ::gig::Region* pRegion = pInstrument->GetFirstRegion();
860     pRegion; pRegion = pInstrument->GetNextRegion()
861     ) {
862     for (
863     int i = 0; i < pRegion->DimensionRegions &&
864     pRegion->pDimensionRegions[i]; i++
865     ) {
866     if (pRegion->pDimensionRegions[i]->pSample == pSample)
867     return true;
868     }
869     }
870     return false;
871     }
872    
873     /**
874     * Suspend all gig engines that use the given instrument. This means
875     * completely stopping playback on those engines and killing all their
876     * voices and disk streams. This method will block until all voices AND
877     * their disk streams are finally deleted and the engine turned into a
878     * complete idle loop.
879     *
880     * All @c SuspendEnginesUsing() methods only serve one thread by one and
881     * block all other threads until the current active thread called
882     * @c ResumeAllEngines() .
883     *
884     * @param pInstrument - search criteria
885     */
886     void InstrumentResourceManager::SuspendEnginesUsing(::gig::Instrument* pInstrument) {
887     // make sure no other thread suspends whole engines at the same time
888     suspendedEnginesMutex.Lock();
889     // get all engines that use that same gig::Instrument
890     suspendedEngines = GetEnginesUsing(pInstrument, true/*lock*/);
891     // finally, completely suspend all engines that use that same gig::Instrument
892 iliev 2012 std::set<Engine*>::iterator iter = suspendedEngines.begin();
893     std::set<Engine*>::iterator end = suspendedEngines.end();
894 schoenebeck 1321 for (; iter != end; ++iter) (*iter)->SuspendAll();
895     }
896    
897     /**
898     * Suspend all gig engines that use the given instrument file. This means
899     * completely stopping playback on those engines and killing all their
900     * voices and disk streams. This method will block until all voices AND
901     * their disk streams are finally deleted and the engine turned into a
902     * complete idle loop.
903     *
904     * All @c SuspendEnginesUsing() methods only serve one thread by one and
905     * block all other threads until the current active thread called
906     * @c ResumeAllEngines() .
907     *
908     * @param pFile - search criteria
909     */
910     void InstrumentResourceManager::SuspendEnginesUsing(::gig::File* pFile) {
911     // make sure no other thread suspends whole engines at the same time
912     suspendedEnginesMutex.Lock();
913     // get all engines that use that same gig::File
914     suspendedEngines = GetEnginesUsing(pFile, true/*lock*/);
915     // finally, completely suspend all engines that use that same gig::File
916 iliev 2012 std::set<Engine*>::iterator iter = suspendedEngines.begin();
917     std::set<Engine*>::iterator end = suspendedEngines.end();
918 schoenebeck 1321 for (; iter != end; ++iter) (*iter)->SuspendAll();
919     }
920    
921     /**
922     * MUST be called after one called one of the @c SuspendEnginesUsing()
923     * methods, to resume normal playback on all previously suspended engines.
924     * As it's only possible for one thread to suspend whole engines at the
925     * same time, this method doesn't take any arguments.
926     */
927     void InstrumentResourceManager::ResumeAllEngines() {
928     // resume all previously completely suspended engines
929     std::set<Engine*>::iterator iter = suspendedEngines.begin();
930     std::set<Engine*>::iterator end = suspendedEngines.end();
931     for (; iter != end; ++iter) (*iter)->ResumeAll();
932     // no more suspended engines ...
933     suspendedEngines.clear();
934     // allow another thread to suspend whole engines
935     suspendedEnginesMutex.Unlock();
936     }
937    
938    
939    
940 schoenebeck 53 // internal gig file manager
941    
942     ::gig::File* InstrumentResourceManager::GigResourceManager::Create(String Key, GigConsumer* pConsumer, void*& pArg) {
943     dmsg(1,("Loading gig file \'%s\'...", Key.c_str()));
944     ::RIFF::File* pRIFF = new ::RIFF::File(Key);
945     ::gig::File* pGig = new ::gig::File(pRIFF);
946     pArg = pRIFF;
947     dmsg(1,("OK\n"));
948     return pGig;
949     }
950    
951     void InstrumentResourceManager::GigResourceManager::Destroy(::gig::File* pResource, void* pArg) {
952 schoenebeck 2275 dmsg(1,("Freeing gig file '%s' from memory ...", pResource->GetFileName().c_str()));
953 persson 1038
954     // Delete as much as possible of the gig file. Some of the
955     // dimension regions and samples may still be in use - these
956     // will be deleted later by the HandBackDimReg function.
957     bool deleteFile = true;
958     ::gig::Instrument* nextInstrument;
959     for (::gig::Instrument* instrument = pResource->GetFirstInstrument() ;
960     instrument ;
961     instrument = nextInstrument) {
962     nextInstrument = pResource->GetNextInstrument();
963     bool deleteInstrument = true;
964     ::gig::Region* nextRegion;
965     for (::gig::Region *region = instrument->GetFirstRegion() ;
966     region ;
967     region = nextRegion) {
968     nextRegion = instrument->GetNextRegion();
969     bool deleteRegion = true;
970     for (int i = 0 ; i < region->DimensionRegions ; i++)
971     {
972     ::gig::DimensionRegion *d = region->pDimensionRegions[i];
973 iliev 2012 std::map< ::gig::DimensionRegion*, region_info_t>::iterator iter = parent->RegionInfo.find(d);
974     if (iter != parent->RegionInfo.end()) {
975     region_info_t& dimRegInfo = (*iter).second;
976 persson 1038 dimRegInfo.file = pResource;
977 iliev 2012 dimRegInfo.pArg = (::RIFF::File*)pArg;
978 persson 1038 deleteFile = deleteInstrument = deleteRegion = false;
979     }
980     }
981     if (deleteRegion) instrument->DeleteRegion(region);
982     }
983     if (deleteInstrument) pResource->DeleteInstrument(instrument);
984     }
985     if (deleteFile) {
986     delete pResource;
987     delete (::RIFF::File*) pArg;
988     } else {
989     dmsg(2,("keeping some samples that are in use..."));
990     ::gig::Sample* nextSample;
991     for (::gig::Sample* sample = pResource->GetFirstSample() ;
992     sample ;
993     sample = nextSample) {
994     nextSample = pResource->GetNextSample();
995     if (parent->SampleRefCount.find(sample) == parent->SampleRefCount.end()) {
996     pResource->DeleteSample(sample);
997     }
998     }
999     }
1000 schoenebeck 53 dmsg(1,("OK\n"));
1001     }
1002    
1003     }} // namespace LinuxSampler::gig

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