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/*************************************************************************** |
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* * |
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* LinuxSampler - modular, streaming capable sampler * |
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* * |
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* Copyright (C) 2003, 2004 by Benno Senoner and Christian Schoenebeck * |
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* Copyright (C) 2005 - 2007 Christian Schoenebeck * |
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* * |
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* This library is free software; you can redistribute it and/or modify * |
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* it under the terms of the GNU General Public License as published by * |
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* the Free Software Foundation; either version 2 of the License, or * |
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* (at your option) any later version. * |
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* * |
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* This library is distributed in the hope that it will be useful, * |
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* but WITHOUT ANY WARRANTY; without even the implied warranty of * |
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * |
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* GNU General Public License for more details. * |
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* * |
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* You should have received a copy of the GNU General Public License * |
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* along with this library; if not, write to the Free Software * |
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, * |
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* MA 02111-1307 USA * |
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***************************************************************************/ |
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|
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#include <sstream> |
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|
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#include "Sampler.h" |
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|
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#include "common/global_private.h" |
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#include "engines/EngineFactory.h" |
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#include "engines/EngineChannelFactory.h" |
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#include "plugins/InstrumentEditorFactory.h" |
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#include "drivers/audio/AudioOutputDeviceFactory.h" |
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#include "drivers/midi/MidiInputDeviceFactory.h" |
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#include "drivers/midi/MidiInstrumentMapper.h" |
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|
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namespace LinuxSampler { |
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|
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// ****************************************************************** |
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// * SamplerChannel |
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|
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SamplerChannel::SamplerChannel(Sampler* pS) { |
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pSampler = pS; |
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pEngineChannel = NULL; |
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pAudioOutputDevice = NULL; |
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pMidiInputDevice = NULL; |
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iMidiPort = 0; |
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midiChannel = midi_chan_all; |
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iIndex = -1; |
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} |
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|
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SamplerChannel::~SamplerChannel() { |
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if (pEngineChannel) { |
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Engine* engine = pEngineChannel->GetEngine(); |
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if (pAudioOutputDevice) pAudioOutputDevice->Disconnect(engine); |
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|
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MidiInputPort* pMidiInputPort = (pEngineChannel) ? pEngineChannel->GetMidiInputPort() : __GetMidiInputDevicePort(GetMidiInputChannel()); |
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if (pMidiInputPort) pMidiInputPort->Disconnect(pEngineChannel); |
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if (pEngineChannel) { |
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if (pAudioOutputDevice) pEngineChannel->DisconnectAudioOutputDevice(); |
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EngineChannelFactory::Destroy(pEngineChannel); |
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|
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// reconnect engine if it still exists |
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const std::set<Engine*>& engines = EngineFactory::EngineInstances(); |
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if (engines.find(engine) != engines.end()) pAudioOutputDevice->Connect(engine); |
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} |
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} |
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} |
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|
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void SamplerChannel::SetEngineType(String EngineType) throw (Exception) { |
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dmsg(2,("SamplerChannel: Assigning engine type...")); |
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|
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if (pEngineChannel) { |
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if (!strcasecmp(pEngineChannel->EngineName().c_str(), EngineType.c_str())) { |
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dmsg(2,("OK\n")); |
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return; |
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} |
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} |
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|
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// create new engine channel |
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EngineChannel* pNewEngineChannel = EngineChannelFactory::Create(EngineType); |
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if (!pNewEngineChannel) throw Exception("Unknown engine type"); |
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|
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//FIXME: hack to allow fast retrieval of engine channel's sampler channel index |
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pNewEngineChannel->iSamplerChannelIndex = Index(); |
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|
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// dereference midi input port. |
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MidiInputPort* pMidiInputPort = __GetMidiInputDevicePort(GetMidiInputPort()); |
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// disconnect old engine channel |
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if (pEngineChannel) { |
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Engine* engine = pEngineChannel->GetEngine(); |
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if (pAudioOutputDevice) pAudioOutputDevice->Disconnect(engine); |
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|
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if (pMidiInputPort) pMidiInputPort->Disconnect(pEngineChannel); |
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if (pAudioOutputDevice) pEngineChannel->DisconnectAudioOutputDevice(); |
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EngineChannelFactory::Destroy(pEngineChannel); |
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|
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// reconnect engine if it still exists |
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const std::set<Engine*>& engines = EngineFactory::EngineInstances(); |
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if (engines.find(engine) != engines.end()) pAudioOutputDevice->Connect(engine); |
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} |
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|
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// connect new engine channel |
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if (pAudioOutputDevice) { |
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pNewEngineChannel->Connect(pAudioOutputDevice); |
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pAudioOutputDevice->Connect(pNewEngineChannel->GetEngine()); |
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} |
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if (pMidiInputPort) pMidiInputPort->Connect(pNewEngineChannel, GetMidiInputChannel()); |
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pEngineChannel = pNewEngineChannel; |
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|
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// from now on get MIDI device and port from EngineChannel object |
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this->pMidiInputDevice = NULL; |
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this->iMidiPort = 0; |
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|
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pEngineChannel->StatusChanged(true); |
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fireEngineChanged(); |
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dmsg(2,("OK\n")); |
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} |
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|
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void SamplerChannel::SetAudioOutputDevice(AudioOutputDevice* pDevice) { |
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if(pAudioOutputDevice == pDevice) return; |
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|
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// disconnect old device |
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if (pAudioOutputDevice && pEngineChannel) { |
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Engine* engine = pEngineChannel->GetEngine(); |
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pAudioOutputDevice->Disconnect(engine); |
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|
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pEngineChannel->DisconnectAudioOutputDevice(); |
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|
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// reconnect engine if it still exists |
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const std::set<Engine*>& engines = EngineFactory::EngineInstances(); |
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if (engines.find(engine) != engines.end()) pAudioOutputDevice->Connect(engine); |
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} |
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|
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// connect new device |
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pAudioOutputDevice = pDevice; |
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if (pEngineChannel) { |
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pEngineChannel->Connect(pAudioOutputDevice); |
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pAudioOutputDevice->Connect(pEngineChannel->GetEngine()); |
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} |
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} |
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|
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void SamplerChannel::SetMidiInputDevice(MidiInputDevice* pDevice) { |
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SetMidiInput(pDevice, 0, GetMidiInputChannel()); |
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} |
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|
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void SamplerChannel::SetMidiInputPort(int MidiPort) { |
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SetMidiInput(GetMidiInputDevice(), MidiPort, GetMidiInputChannel()); |
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} |
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|
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void SamplerChannel::SetMidiInputChannel(midi_chan_t MidiChannel) { |
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SetMidiInput(GetMidiInputDevice(), GetMidiInputPort(), MidiChannel); |
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} |
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|
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void SamplerChannel::SetMidiInput(MidiInputDevice* pDevice, int iMidiPort, midi_chan_t MidiChannel) { |
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if (!pDevice) throw Exception("No MIDI input device assigned."); |
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|
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// get old and new midi input port |
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MidiInputPort* pOldMidiInputPort = __GetMidiInputDevicePort(GetMidiInputPort()); |
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MidiInputPort* pNewMidiInputPort = pDevice->GetPort(iMidiPort); |
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|
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// disconnect old device port |
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if (pOldMidiInputPort && pEngineChannel) pOldMidiInputPort->Disconnect(pEngineChannel); |
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// remember new device, port and channel if not engine channel yet created |
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if (!pEngineChannel) { |
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this->pMidiInputDevice = pDevice; |
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this->iMidiPort = iMidiPort; |
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this->midiChannel = MidiChannel; |
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} |
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|
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// connect new device port |
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if (pNewMidiInputPort && pEngineChannel) pNewMidiInputPort->Connect(pEngineChannel, MidiChannel); |
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// Ooops. |
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if (pNewMidiInputPort == NULL) |
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throw Exception("There is no MIDI input port with index " + ToString(iMidiPort) + "."); |
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} |
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|
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EngineChannel* SamplerChannel::GetEngineChannel() { |
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return pEngineChannel; |
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} |
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|
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midi_chan_t SamplerChannel::GetMidiInputChannel() { |
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if (pEngineChannel) this->midiChannel = pEngineChannel->MidiChannel(); |
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return this->midiChannel; |
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} |
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|
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int SamplerChannel::GetMidiInputPort() { |
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MidiInputPort* pMidiInputPort = (pEngineChannel) ? pEngineChannel->GetMidiInputPort() : NULL; |
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if (pMidiInputPort) this->iMidiPort = (int) pMidiInputPort->GetPortNumber(); |
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return iMidiPort; |
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} |
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|
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AudioOutputDevice* SamplerChannel::GetAudioOutputDevice() { |
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return pAudioOutputDevice; |
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} |
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|
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MidiInputDevice* SamplerChannel::GetMidiInputDevice() { |
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if (pEngineChannel) |
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pMidiInputDevice = (pEngineChannel->GetMidiInputPort()) ? pEngineChannel->GetMidiInputPort()->GetDevice() : NULL; |
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return pMidiInputDevice; |
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} |
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|
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uint SamplerChannel::Index() { |
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if (iIndex >= 0) return iIndex; |
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|
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Sampler::SamplerChannelMap::iterator iter = pSampler->mSamplerChannels.begin(); |
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for (; iter != pSampler->mSamplerChannels.end(); iter++) { |
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if (iter->second == this) { |
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iIndex = iter->first; |
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return iIndex; |
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} |
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} |
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|
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throw Exception("Internal error: SamplerChannel index not found"); |
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} |
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|
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void SamplerChannel::AddEngineChangeListener(EngineChangeListener* l) { |
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llEngineChangeListeners.AddListener(l); |
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} |
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|
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void SamplerChannel::RemoveEngineChangeListener(EngineChangeListener* l) { |
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llEngineChangeListeners.RemoveListener(l); |
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} |
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|
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void SamplerChannel::RemoveAllEngineChangeListeners() { |
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llEngineChangeListeners.RemoveAllListeners(); |
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} |
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|
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void SamplerChannel::fireEngineChanged() { |
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for (int i = 0; i < llEngineChangeListeners.GetListenerCount(); i++) { |
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llEngineChangeListeners.GetListener(i)->EngineChanged(Index()); |
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} |
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} |
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|
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MidiInputPort* SamplerChannel::__GetMidiInputDevicePort(int iMidiPort) { |
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MidiInputPort* pMidiInputPort = NULL; |
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MidiInputDevice* pMidiInputDevice = GetMidiInputDevice(); |
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if (pMidiInputDevice) |
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pMidiInputPort = pMidiInputDevice->GetPort(iMidiPort); |
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return pMidiInputPort; |
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} |
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|
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|
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|
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// ****************************************************************** |
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// * Sampler |
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|
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Sampler::Sampler() { |
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eventHandler.SetSampler(this); |
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} |
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|
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Sampler::~Sampler() { |
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Reset(); |
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} |
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|
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uint Sampler::SamplerChannels() { |
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return mSamplerChannels.size(); |
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} |
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|
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void Sampler::AddChannelCountListener(ChannelCountListener* l) { |
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llChannelCountListeners.AddListener(l); |
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} |
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|
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void Sampler::RemoveChannelCountListener(ChannelCountListener* l) { |
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llChannelCountListeners.RemoveListener(l); |
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} |
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|
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void Sampler::fireChannelCountChanged(int NewCount) { |
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for (int i = 0; i < llChannelCountListeners.GetListenerCount(); i++) { |
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llChannelCountListeners.GetListener(i)->ChannelCountChanged(NewCount); |
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} |
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} |
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|
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void Sampler::AddAudioDeviceCountListener(AudioDeviceCountListener* l) { |
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llAudioDeviceCountListeners.AddListener(l); |
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} |
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|
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void Sampler::RemoveAudioDeviceCountListener(AudioDeviceCountListener* l) { |
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llAudioDeviceCountListeners.RemoveListener(l); |
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} |
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|
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void Sampler::fireAudioDeviceCountChanged(int NewCount) { |
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for (int i = 0; i < llAudioDeviceCountListeners.GetListenerCount(); i++) { |
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llAudioDeviceCountListeners.GetListener(i)->AudioDeviceCountChanged(NewCount); |
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} |
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} |
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|
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void Sampler::AddMidiDeviceCountListener(MidiDeviceCountListener* l) { |
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llMidiDeviceCountListeners.AddListener(l); |
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} |
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|
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void Sampler::RemoveMidiDeviceCountListener(MidiDeviceCountListener* l) { |
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llMidiDeviceCountListeners.RemoveListener(l); |
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} |
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|
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void Sampler::fireMidiDeviceCountChanged(int NewCount) { |
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for (int i = 0; i < llMidiDeviceCountListeners.GetListenerCount(); i++) { |
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llMidiDeviceCountListeners.GetListener(i)->MidiDeviceCountChanged(NewCount); |
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} |
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} |
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|
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void Sampler::AddVoiceCountListener(VoiceCountListener* l) { |
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llVoiceCountListeners.AddListener(l); |
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} |
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|
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void Sampler::RemoveVoiceCountListener(VoiceCountListener* l) { |
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llVoiceCountListeners.RemoveListener(l); |
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} |
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|
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void Sampler::fireVoiceCountChanged(int ChannelId, int NewCount) { |
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for (int i = 0; i < llVoiceCountListeners.GetListenerCount(); i++) { |
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llVoiceCountListeners.GetListener(i)->VoiceCountChanged(ChannelId, NewCount); |
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} |
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} |
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|
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void Sampler::AddStreamCountListener(StreamCountListener* l) { |
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llStreamCountListeners.AddListener(l); |
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} |
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|
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void Sampler::RemoveStreamCountListener(StreamCountListener* l) { |
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llStreamCountListeners.RemoveListener(l); |
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} |
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|
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void Sampler::fireStreamCountChanged(int ChannelId, int NewCount) { |
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for (int i = 0; i < llStreamCountListeners.GetListenerCount(); i++) { |
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llStreamCountListeners.GetListener(i)->StreamCountChanged(ChannelId, NewCount); |
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} |
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} |
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|
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void Sampler::AddBufferFillListener(BufferFillListener* l) { |
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llBufferFillListeners.AddListener(l); |
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} |
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|
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void Sampler::RemoveBufferFillListener(BufferFillListener* l) { |
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llBufferFillListeners.RemoveListener(l); |
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} |
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|
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void Sampler::fireBufferFillChanged(int ChannelId, String FillData) { |
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for (int i = 0; i < llBufferFillListeners.GetListenerCount(); i++) { |
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llBufferFillListeners.GetListener(i)->BufferFillChanged(ChannelId, FillData); |
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} |
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} |
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|
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void Sampler::AddTotalStreamCountListener(TotalStreamCountListener* l) { |
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llTotalStreamCountListeners.AddListener(l); |
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} |
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|
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void Sampler::RemoveTotalStreamCountListener(TotalStreamCountListener* l) { |
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llTotalStreamCountListeners.RemoveListener(l); |
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} |
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|
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void Sampler::fireTotalStreamCountChanged(int NewCount) { |
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for (int i = 0; i < llTotalStreamCountListeners.GetListenerCount(); i++) { |
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llTotalStreamCountListeners.GetListener(i)->TotalStreamCountChanged(NewCount); |
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} |
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} |
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|
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void Sampler::AddTotalVoiceCountListener(TotalVoiceCountListener* l) { |
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llTotalVoiceCountListeners.AddListener(l); |
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} |
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|
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void Sampler::RemoveTotalVoiceCountListener(TotalVoiceCountListener* l) { |
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llTotalVoiceCountListeners.RemoveListener(l); |
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} |
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|
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void Sampler::fireTotalVoiceCountChanged(int NewCount) { |
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for (int i = 0; i < llTotalVoiceCountListeners.GetListenerCount(); i++) { |
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llTotalVoiceCountListeners.GetListener(i)->TotalVoiceCountChanged(NewCount); |
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} |
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} |
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|
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void Sampler::AddFxSendCountListener(FxSendCountListener* l) { |
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llFxSendCountListeners.AddListener(l); |
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} |
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|
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void Sampler::RemoveFxSendCountListener(FxSendCountListener* l) { |
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llFxSendCountListeners.RemoveListener(l); |
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} |
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|
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void Sampler::fireFxSendCountChanged(int ChannelId, int NewCount) { |
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for (int i = 0; i < llFxSendCountListeners.GetListenerCount(); i++) { |
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llFxSendCountListeners.GetListener(i)->FxSendCountChanged(ChannelId, NewCount); |
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} |
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} |
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|
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void Sampler::EventHandler::EngineChanged(int ChannelId) { |
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EngineChannel* engineChannel = pSampler->GetSamplerChannel(ChannelId)->GetEngineChannel(); |
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if(engineChannel == NULL) return; |
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engineChannel->AddFxSendCountListener(this); |
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} |
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|
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void Sampler::EventHandler::FxSendCountChanged(int ChannelId, int NewCount) { |
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pSampler->fireFxSendCountChanged(ChannelId, NewCount); |
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} |
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|
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|
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SamplerChannel* Sampler::AddSamplerChannel() { |
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// if there's no sampler channel yet |
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if (!mSamplerChannels.size()) { |
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SamplerChannel* pChannel = new SamplerChannel(this); |
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mSamplerChannels[0] = pChannel; |
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fireChannelCountChanged(1); |
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pChannel->AddEngineChangeListener(&eventHandler); |
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return pChannel; |
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} |
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|
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// get the highest used sampler channel index |
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uint lastIndex = (--(mSamplerChannels.end()))->first; |
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|
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// check if we reached the index limit |
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if (lastIndex + 1 < lastIndex) { |
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// search for an unoccupied sampler channel index starting from 0 |
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for (uint i = 0; i < lastIndex; i++) { |
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if (mSamplerChannels.find(i) != mSamplerChannels.end()) continue; |
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// we found an unused index, so insert the new channel there |
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SamplerChannel* pChannel = new SamplerChannel(this); |
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mSamplerChannels[i] = pChannel; |
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fireChannelCountChanged(SamplerChannels()); |
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pChannel->AddEngineChangeListener(&eventHandler); |
419 |
return pChannel; |
420 |
} |
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throw Exception("Internal error: could not find unoccupied sampler channel index."); |
422 |
} |
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|
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// we have not reached the index limit so we just add the channel past the highest index |
425 |
SamplerChannel* pChannel = new SamplerChannel(this); |
426 |
mSamplerChannels[lastIndex + 1] = pChannel; |
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fireChannelCountChanged(SamplerChannels()); |
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pChannel->AddEngineChangeListener(&eventHandler); |
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return pChannel; |
430 |
} |
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|
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SamplerChannel* Sampler::GetSamplerChannel(uint uiSamplerChannel) { |
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return (mSamplerChannels.find(uiSamplerChannel) != mSamplerChannels.end()) ? mSamplerChannels[uiSamplerChannel] : NULL; |
434 |
} |
435 |
|
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std::map<uint, SamplerChannel*> Sampler::GetSamplerChannels() { |
437 |
return mSamplerChannels; |
438 |
} |
439 |
|
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void Sampler::RemoveSamplerChannel(SamplerChannel* pSamplerChannel) { |
441 |
SamplerChannelMap::iterator iterChan = mSamplerChannels.begin(); |
442 |
for (; iterChan != mSamplerChannels.end(); iterChan++) { |
443 |
if (iterChan->second == pSamplerChannel) { |
444 |
pSamplerChannel->RemoveAllEngineChangeListeners(); |
445 |
mSamplerChannels.erase(iterChan); |
446 |
delete pSamplerChannel; |
447 |
fireChannelCountChanged(SamplerChannels()); |
448 |
return; |
449 |
} |
450 |
} |
451 |
} |
452 |
|
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void Sampler::RemoveSamplerChannel(uint uiSamplerChannel) { |
454 |
SamplerChannel* pChannel = GetSamplerChannel(uiSamplerChannel); |
455 |
if (!pChannel) return; |
456 |
RemoveSamplerChannel(pChannel); |
457 |
} |
458 |
|
459 |
std::vector<String> Sampler::AvailableAudioOutputDrivers() { |
460 |
return AudioOutputDeviceFactory::AvailableDrivers(); |
461 |
} |
462 |
|
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std::vector<String> Sampler::AvailableMidiInputDrivers() { |
464 |
return MidiInputDeviceFactory::AvailableDrivers(); |
465 |
} |
466 |
|
467 |
std::vector<String> Sampler::AvailableEngineTypes() { |
468 |
return EngineFactory::AvailableEngineTypes(); |
469 |
} |
470 |
|
471 |
AudioOutputDevice* Sampler::CreateAudioOutputDevice(String AudioDriver, std::map<String,String> Parameters) throw (Exception) { |
472 |
// create new device |
473 |
AudioOutputDevice* pDevice = AudioOutputDeviceFactory::Create(AudioDriver, Parameters); |
474 |
|
475 |
// add new audio device to the audio device list |
476 |
for (uint i = 0; ; i++) { // seek for a free place starting from the beginning |
477 |
if (!mAudioOutputDevices[i]) { |
478 |
mAudioOutputDevices[i] = pDevice; |
479 |
break; |
480 |
} |
481 |
} |
482 |
|
483 |
fireAudioDeviceCountChanged(AudioOutputDevices()); |
484 |
return pDevice; |
485 |
} |
486 |
|
487 |
uint Sampler::AudioOutputDevices() { |
488 |
return mAudioOutputDevices.size(); |
489 |
} |
490 |
|
491 |
uint Sampler::MidiInputDevices() { |
492 |
return mMidiInputDevices.size(); |
493 |
} |
494 |
|
495 |
std::map<uint, AudioOutputDevice*> Sampler::GetAudioOutputDevices() { |
496 |
return mAudioOutputDevices; |
497 |
} |
498 |
|
499 |
std::map<uint, MidiInputDevice*> Sampler::GetMidiInputDevices() { |
500 |
return mMidiInputDevices; |
501 |
} |
502 |
|
503 |
void Sampler::DestroyAudioOutputDevice(AudioOutputDevice* pDevice) throw (Exception) { |
504 |
AudioOutputDeviceMap::iterator iter = mAudioOutputDevices.begin(); |
505 |
for (; iter != mAudioOutputDevices.end(); iter++) { |
506 |
if (iter->second == pDevice) { |
507 |
// check if there are still sampler engines connected to this device |
508 |
for (uint i = 0; i < SamplerChannels(); i++) |
509 |
if (GetSamplerChannel(i)->GetAudioOutputDevice() == pDevice) throw Exception("Sampler channel " + ToString(i) + " is still connected to the audio output device."); |
510 |
|
511 |
// disable device |
512 |
pDevice->Stop(); |
513 |
|
514 |
// remove device from the device list |
515 |
mAudioOutputDevices.erase(iter); |
516 |
|
517 |
// destroy and free device from memory |
518 |
delete pDevice; |
519 |
|
520 |
fireAudioDeviceCountChanged(AudioOutputDevices()); |
521 |
break; |
522 |
} |
523 |
} |
524 |
} |
525 |
|
526 |
void Sampler::DestroyMidiInputDevice(MidiInputDevice* pDevice) throw (Exception) { |
527 |
MidiInputDeviceMap::iterator iter = mMidiInputDevices.begin(); |
528 |
for (; iter != mMidiInputDevices.end(); iter++) { |
529 |
if (iter->second == pDevice) { |
530 |
// check if there are still sampler engines connected to this device |
531 |
for (uint i = 0; i < SamplerChannels(); i++) |
532 |
if (GetSamplerChannel(i)->GetMidiInputDevice() == pDevice) throw Exception("Sampler channel " + ToString(i) + " is still connected to the midi input device."); |
533 |
|
534 |
// disable device |
535 |
pDevice->StopListen(); |
536 |
|
537 |
// remove device from the device list |
538 |
mMidiInputDevices.erase(iter); |
539 |
|
540 |
// destroy and free device from memory |
541 |
delete pDevice; |
542 |
|
543 |
fireMidiDeviceCountChanged(MidiInputDevices()); |
544 |
break; |
545 |
} |
546 |
} |
547 |
} |
548 |
|
549 |
MidiInputDevice* Sampler::CreateMidiInputDevice(String MidiDriver, std::map<String,String> Parameters) throw (Exception) { |
550 |
// create new device |
551 |
MidiInputDevice* pDevice = MidiInputDeviceFactory::Create(MidiDriver, Parameters, this); |
552 |
|
553 |
// add new device to the midi device list |
554 |
for (uint i = 0; ; i++) { // seek for a free place starting from the beginning |
555 |
if (!mMidiInputDevices[i]) { |
556 |
mMidiInputDevices[i] = pDevice; |
557 |
break; |
558 |
} |
559 |
} |
560 |
|
561 |
fireMidiDeviceCountChanged(MidiInputDevices()); |
562 |
return pDevice; |
563 |
} |
564 |
|
565 |
int Sampler::GetDiskStreamCount() { |
566 |
int count = 0; |
567 |
std::set<Engine*>::iterator it = EngineFactory::EngineInstances().begin(); |
568 |
|
569 |
for(; it != EngineFactory::EngineInstances().end(); it++) { |
570 |
count += (*it)->DiskStreamCount(); |
571 |
} |
572 |
|
573 |
return count; |
574 |
} |
575 |
|
576 |
int Sampler::GetVoiceCount() { |
577 |
int count = 0; |
578 |
std::set<Engine*>::iterator it = EngineFactory::EngineInstances().begin(); |
579 |
|
580 |
for(; it != EngineFactory::EngineInstances().end(); it++) { |
581 |
count += (*it)->VoiceCount(); |
582 |
} |
583 |
|
584 |
return count; |
585 |
} |
586 |
|
587 |
void Sampler::Reset() { |
588 |
// delete sampler channels |
589 |
try { |
590 |
while (true) { |
591 |
SamplerChannelMap::iterator iter = mSamplerChannels.begin(); |
592 |
if (iter == mSamplerChannels.end()) break; |
593 |
RemoveSamplerChannel(iter->second); |
594 |
} |
595 |
} |
596 |
catch(...) { |
597 |
std::cerr << "Sampler::Reset(): Exception occured while trying to delete all sampler channels, exiting.\n" << std::flush; |
598 |
exit(EXIT_FAILURE); |
599 |
} |
600 |
|
601 |
// delete midi input devices |
602 |
try { |
603 |
while (true) { |
604 |
MidiInputDeviceMap::iterator iter = mMidiInputDevices.begin(); |
605 |
if (iter == mMidiInputDevices.end()) break; |
606 |
DestroyMidiInputDevice(iter->second); |
607 |
} |
608 |
} |
609 |
catch(...) { |
610 |
std::cerr << "Sampler::Reset(): Exception occured while trying to delete all MIDI input devices, exiting.\n" << std::flush; |
611 |
exit(EXIT_FAILURE); |
612 |
} |
613 |
|
614 |
// delete audio output devices |
615 |
try { |
616 |
while (true) { |
617 |
AudioOutputDeviceMap::iterator iter = mAudioOutputDevices.begin(); |
618 |
if (iter == mAudioOutputDevices.end()) break; |
619 |
DestroyAudioOutputDevice(iter->second); |
620 |
} |
621 |
} |
622 |
catch(...) { |
623 |
std::cerr << "Sampler::Reset(): Exception occured while trying to delete all audio output devices, exiting.\n" << std::flush; |
624 |
exit(EXIT_FAILURE); |
625 |
} |
626 |
|
627 |
// delete MIDI instrument maps |
628 |
try { |
629 |
MidiInstrumentMapper::RemoveAllMaps(); |
630 |
} |
631 |
catch(...) { |
632 |
std::cerr << "Sampler::Reset(): Exception occured while trying to delete all MIDI instrument maps, exiting.\n" << std::flush; |
633 |
exit(EXIT_FAILURE); |
634 |
} |
635 |
|
636 |
// unload all instrument editor DLLs |
637 |
InstrumentEditorFactory::ClosePlugins(); |
638 |
} |
639 |
|
640 |
} // namespace LinuxSampler |