313 lines
14 KiB
C
313 lines
14 KiB
C
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/*
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==============================================================================
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This file is part of the JUCE library.
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Copyright (c) 2020 - Raw Material Software Limited
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JUCE is an open source library subject to commercial or open-source
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licensing.
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The code included in this file is provided under the terms of the ISC license
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http://www.isc.org/downloads/software-support-policy/isc-license. Permission
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To use, copy, modify, and/or distribute this software for any purpose with or
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without fee is hereby granted provided that the above copyright notice and
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this permission notice appear in all copies.
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JUCE IS PROVIDED "AS IS" WITHOUT ANY WARRANTY, AND ALL WARRANTIES, WHETHER
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EXPRESSED OR IMPLIED, INCLUDING MERCHANTABILITY AND FITNESS FOR PURPOSE, ARE
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DISCLAIMED.
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==============================================================================
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*/
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namespace juce
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{
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//==============================================================================
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/**
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Base class for an MPE-compatible musical device that can play sounds.
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This class extends MPESynthesiserBase by adding the concept of voices,
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each of which can play a sound triggered by a MPENote that can be modulated
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by MPE dimensions like pressure, pitchbend, and timbre, while the note is
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sounding.
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To create a synthesiser, you'll need to create a subclass of MPESynthesiserVoice
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which can play back one of these sounds at a time.
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Then you can use the addVoice() methods to give the synthesiser a set of voices
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it can use to play notes. If you only give it one voice it will be monophonic -
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the more voices it has, the more polyphony it'll have available.
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Then repeatedly call the renderNextBlock() method to produce the audio (inherited
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from MPESynthesiserBase). The voices will be started, stopped, and modulated
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automatically, based on the MPE/MIDI messages that the synthesiser receives.
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Before rendering, be sure to call the setCurrentPlaybackSampleRate() to tell it
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what the target playback rate is. This value is passed on to the voices so that
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they can pitch their output correctly.
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@see MPESynthesiserBase, MPESynthesiserVoice, MPENote, MPEInstrument
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@tags{Audio}
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*/
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class JUCE_API MPESynthesiser : public MPESynthesiserBase
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{
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public:
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//==============================================================================
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/** Constructor.
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You'll need to add some voices before it'll make any sound.
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@see addVoice
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*/
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MPESynthesiser();
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/** Constructor to pass to the synthesiser a custom MPEInstrument object
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to handle the MPE note state, MIDI channel assignment etc.
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(in case you need custom logic for this that goes beyond MIDI and MPE).
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The synthesiser will take ownership of this object.
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@see MPESynthesiserBase, MPEInstrument
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*/
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MPESynthesiser (MPEInstrument* instrumentToUse);
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/** Destructor. */
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~MPESynthesiser() override;
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//==============================================================================
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/** Deletes all voices. */
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void clearVoices();
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/** Returns the number of voices that have been added. */
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int getNumVoices() const noexcept { return voices.size(); }
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/** Returns one of the voices that have been added. */
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MPESynthesiserVoice* getVoice (int index) const;
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/** Adds a new voice to the synth.
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All the voices should be the same class of object and are treated equally.
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The object passed in will be managed by the synthesiser, which will delete
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it later on when no longer needed. The caller should not retain a pointer to the
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voice.
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*/
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void addVoice (MPESynthesiserVoice* newVoice);
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/** Deletes one of the voices. */
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void removeVoice (int index);
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/** Reduces the number of voices to newNumVoices.
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This will repeatedly call findVoiceToSteal() and remove that voice, until
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the total number of voices equals newNumVoices. If newNumVoices is greater than
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or equal to the current number of voices, this method does nothing.
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*/
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void reduceNumVoices (int newNumVoices);
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/** Release all MPE notes and turn off all voices.
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If allowTailOff is true, the voices will be allowed to fade out the notes gracefully
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(if they can do). If this is false, the notes will all be cut off immediately.
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This method is meant to be called by the user, for example to implement
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a MIDI panic button in a synth.
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*/
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virtual void turnOffAllVoices (bool allowTailOff);
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//==============================================================================
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/** If set to true, then the synth will try to take over an existing voice if
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it runs out and needs to play another note.
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The value of this boolean is passed into findFreeVoice(), so the result will
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depend on the implementation of this method.
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*/
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void setVoiceStealingEnabled (bool shouldSteal) noexcept { shouldStealVoices = shouldSteal; }
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/** Returns true if note-stealing is enabled. */
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bool isVoiceStealingEnabled() const noexcept { return shouldStealVoices; }
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//==============================================================================
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/** Tells the synthesiser what the sample rate is for the audio it's being used to render.
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This overrides the implementation in MPESynthesiserBase, to additionally
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propagate the new value to the voices so that they can use it to render the correct
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pitches.
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*/
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void setCurrentPlaybackSampleRate (double newRate) override;
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//==============================================================================
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/** Handle incoming MIDI events.
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This method will be called automatically according to the MIDI data passed
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into renderNextBlock(), but you can also call it yourself to manually
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inject MIDI events.
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This implementation forwards program change messages and non-MPE-related
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controller messages to handleProgramChange and handleController, respectively,
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and then simply calls through to MPESynthesiserBase::handleMidiEvent to deal
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with MPE-related MIDI messages used for MPE notes, zones etc.
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This method can be overridden further if you need to do custom MIDI
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handling on top of what is provided here.
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*/
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void handleMidiEvent (const MidiMessage&) override;
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/** Callback for MIDI controller messages. The default implementation
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provided here does nothing; override this method if you need custom
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MIDI controller handling on top of MPE.
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This method will be called automatically according to the midi data passed into
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renderNextBlock().
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*/
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virtual void handleController (int /*midiChannel*/,
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int /*controllerNumber*/,
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int /*controllerValue*/) {}
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/** Callback for MIDI program change messages. The default implementation
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provided here does nothing; override this method if you need to handle
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those messages.
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This method will be called automatically according to the midi data passed into
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renderNextBlock().
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*/
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virtual void handleProgramChange (int /*midiChannel*/,
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int /*programNumber*/) {}
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protected:
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//==============================================================================
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/** Attempts to start playing a new note.
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The default method here will find a free voice that is appropriate for
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playing the given MPENote, and use that voice to start playing the sound.
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If isNoteStealingEnabled returns true (set this by calling setNoteStealingEnabled),
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the synthesiser will use the voice stealing algorithm to find a free voice for
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the note (if no voices are free otherwise).
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This method will be called automatically according to the midi data passed into
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renderNextBlock(). Do not call it yourself, otherwise the internal MPE note state
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will become inconsistent.
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*/
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void noteAdded (MPENote newNote) override;
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/** Stops playing a note.
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This will be called whenever an MPE note is released (either by a note-off message,
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or by a sustain/sostenuto pedal release for a note that already received a note-off),
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and should therefore stop playing.
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This will find any voice that is currently playing finishedNote,
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turn its currently playing note off, and call its noteStopped callback.
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This method will be called automatically according to the midi data passed into
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renderNextBlock(). Do not call it yourself, otherwise the internal MPE note state
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will become inconsistent.
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*/
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void noteReleased (MPENote finishedNote) override;
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/** Will find any voice that is currently playing changedNote, update its
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currently playing note, and call its notePressureChanged method.
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This method will be called automatically according to the midi data passed into
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renderNextBlock(). Do not call it yourself.
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*/
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void notePressureChanged (MPENote changedNote) override;
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/** Will find any voice that is currently playing changedNote, update its
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currently playing note, and call its notePitchbendChanged method.
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This method will be called automatically according to the midi data passed into
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renderNextBlock(). Do not call it yourself.
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*/
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void notePitchbendChanged (MPENote changedNote) override;
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/** Will find any voice that is currently playing changedNote, update its
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currently playing note, and call its noteTimbreChanged method.
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This method will be called automatically according to the midi data passed into
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renderNextBlock(). Do not call it yourself.
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*/
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void noteTimbreChanged (MPENote changedNote) override;
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/** Will find any voice that is currently playing changedNote, update its
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currently playing note, and call its noteKeyStateChanged method.
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This method will be called automatically according to the midi data passed into
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renderNextBlock(). Do not call it yourself.
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*/
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void noteKeyStateChanged (MPENote changedNote) override;
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//==============================================================================
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/** This will simply call renderNextBlock for each currently active
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voice and fill the buffer with the sum.
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Override this method if you need to do more work to render your audio.
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*/
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void renderNextSubBlock (AudioBuffer<float>& outputAudio,
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int startSample,
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int numSamples) override;
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/** This will simply call renderNextBlock for each currently active
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voice and fill the buffer with the sum. (double-precision version)
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Override this method if you need to do more work to render your audio.
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*/
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void renderNextSubBlock (AudioBuffer<double>& outputAudio,
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int startSample,
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int numSamples) override;
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//==============================================================================
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/** Searches through the voices to find one that's not currently playing, and
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which can play the given MPE note.
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If all voices are active and stealIfNoneAvailable is false, this returns
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a nullptr. If all voices are active and stealIfNoneAvailable is true,
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this will call findVoiceToSteal() to find a voice.
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If you need to find a free voice for something else than playing a note
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(e.g. for deleting it), you can pass an invalid (default-constructed) MPENote.
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*/
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virtual MPESynthesiserVoice* findFreeVoice (MPENote noteToFindVoiceFor,
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bool stealIfNoneAvailable) const;
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/** Chooses a voice that is most suitable for being re-used to play a new
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note, or for being deleted by reduceNumVoices.
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The default method will attempt to find the oldest voice that isn't the
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bottom or top note being played. If that's not suitable for your synth,
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you can override this method and do something more cunning instead.
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If you pass a valid MPENote for the optional argument, then the note number
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of that note will be taken into account for finding the ideal voice to steal.
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If you pass an invalid (default-constructed) MPENote instead, this part of
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the algorithm will be ignored.
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*/
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virtual MPESynthesiserVoice* findVoiceToSteal (MPENote noteToStealVoiceFor = MPENote()) const;
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/** Starts a specified voice and tells it to play a particular MPENote.
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You should never need to call this, it's called internally by
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MPESynthesiserBase::instrument via the noteStarted callback,
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but is protected in case it's useful for some custom subclasses.
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*/
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void startVoice (MPESynthesiserVoice* voice, MPENote noteToStart);
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/** Stops a given voice and tells it to stop playing a particular MPENote
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(which should be the same note it is actually playing).
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You should never need to call this, it's called internally by
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MPESynthesiserBase::instrument via the noteReleased callback,
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but is protected in case it's useful for some custom subclasses.
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*/
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void stopVoice (MPESynthesiserVoice* voice, MPENote noteToStop, bool allowTailOff);
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//==============================================================================
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OwnedArray<MPESynthesiserVoice> voices;
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CriticalSection voicesLock;
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protected:
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//==============================================================================
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bool shouldStealVoices = false;
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uint32 lastNoteOnCounter = 0;
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JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (MPESynthesiser)
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};
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} // namespace juce
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