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https://github.com/juce-framework/JUCE.git
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185 lines
6.3 KiB
C++
185 lines
6.3 KiB
C++
/*
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==============================================================================
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This file is part of the JUCE framework.
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Copyright (c) Raw Material Software Limited
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JUCE is an open source framework subject to commercial or open source
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licensing.
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By downloading, installing, or using the JUCE framework, or combining the
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JUCE framework with any other source code, object code, content or any other
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copyrightable work, you agree to the terms of the JUCE End User Licence
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Agreement, and all incorporated terms including the JUCE Privacy Policy and
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the JUCE Website Terms of Service, as applicable, which will bind you. If you
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do not agree to the terms of these agreements, we will not license the JUCE
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framework to you, and you must discontinue the installation or download
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process and cease use of the JUCE framework.
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JUCE End User Licence Agreement: https://juce.com/legal/juce-8-licence/
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JUCE Privacy Policy: https://juce.com/juce-privacy-policy
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JUCE Website Terms of Service: https://juce.com/juce-website-terms-of-service/
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Or:
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You may also use this code under the terms of the AGPLv3:
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https://www.gnu.org/licenses/agpl-3.0.en.html
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THE JUCE FRAMEWORK IS PROVIDED "AS IS" WITHOUT ANY WARRANTY, AND ALL
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WARRANTIES, WHETHER EXPRESSED OR IMPLIED, INCLUDING WARRANTY OF
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MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, ARE DISCLAIMED.
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==============================================================================
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*/
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namespace juce
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{
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MidiKeyboardState::MidiKeyboardState()
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{
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zerostruct (noteStates);
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}
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//==============================================================================
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void MidiKeyboardState::reset()
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{
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const ScopedLock sl (lock);
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zerostruct (noteStates);
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eventsToAdd.clear();
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}
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bool MidiKeyboardState::isNoteOn (const int midiChannel, const int n) const noexcept
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{
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jassert (midiChannel > 0 && midiChannel <= 16);
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return isPositiveAndBelow (n, 128)
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&& (noteStates[n] & (1 << (midiChannel - 1))) != 0;
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}
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bool MidiKeyboardState::isNoteOnForChannels (const int midiChannelMask, const int n) const noexcept
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{
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return isPositiveAndBelow (n, 128)
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&& (noteStates[n] & midiChannelMask) != 0;
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}
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void MidiKeyboardState::noteOn (const int midiChannel, const int midiNoteNumber, const float velocity)
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{
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jassert (midiChannel > 0 && midiChannel <= 16);
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jassert (isPositiveAndBelow (midiNoteNumber, 128));
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const ScopedLock sl (lock);
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if (isPositiveAndBelow (midiNoteNumber, 128))
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{
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const int timeNow = (int) Time::getMillisecondCounter();
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eventsToAdd.addEvent (MidiMessage::noteOn (midiChannel, midiNoteNumber, velocity), timeNow);
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eventsToAdd.clear (0, timeNow - 500);
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noteOnInternal (midiChannel, midiNoteNumber, velocity);
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}
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}
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void MidiKeyboardState::noteOnInternal (const int midiChannel, const int midiNoteNumber, const float velocity)
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{
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if (isPositiveAndBelow (midiNoteNumber, 128))
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{
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noteStates[midiNoteNumber] = static_cast<uint16> (noteStates[midiNoteNumber] | (1 << (midiChannel - 1)));
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listeners.call ([&] (Listener& l) { l.handleNoteOn (this, midiChannel, midiNoteNumber, velocity); });
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}
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}
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void MidiKeyboardState::noteOff (const int midiChannel, const int midiNoteNumber, const float velocity)
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{
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const ScopedLock sl (lock);
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if (isNoteOn (midiChannel, midiNoteNumber))
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{
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const int timeNow = (int) Time::getMillisecondCounter();
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eventsToAdd.addEvent (MidiMessage::noteOff (midiChannel, midiNoteNumber), timeNow);
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eventsToAdd.clear (0, timeNow - 500);
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noteOffInternal (midiChannel, midiNoteNumber, velocity);
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}
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}
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void MidiKeyboardState::noteOffInternal (const int midiChannel, const int midiNoteNumber, const float velocity)
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{
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if (isNoteOn (midiChannel, midiNoteNumber))
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{
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noteStates[midiNoteNumber] = static_cast<uint16> (noteStates[midiNoteNumber] & ~(1 << (midiChannel - 1)));
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listeners.call ([&] (Listener& l) { l.handleNoteOff (this, midiChannel, midiNoteNumber, velocity); });
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}
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}
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void MidiKeyboardState::allNotesOff (const int midiChannel)
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{
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const ScopedLock sl (lock);
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if (midiChannel <= 0)
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{
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for (int i = 1; i <= 16; ++i)
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allNotesOff (i);
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}
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else
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{
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for (int i = 0; i < 128; ++i)
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noteOff (midiChannel, i, 0.0f);
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}
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}
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void MidiKeyboardState::processNextMidiEvent (const MidiMessage& message)
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{
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if (message.isNoteOn())
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{
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noteOnInternal (message.getChannel(), message.getNoteNumber(), message.getFloatVelocity());
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}
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else if (message.isNoteOff())
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{
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noteOffInternal (message.getChannel(), message.getNoteNumber(), message.getFloatVelocity());
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}
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else if (message.isAllNotesOff())
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{
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for (int i = 0; i < 128; ++i)
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noteOffInternal (message.getChannel(), i, 0.0f);
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}
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}
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void MidiKeyboardState::processNextMidiBuffer (MidiBuffer& buffer,
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const int startSample,
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const int numSamples,
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const bool injectIndirectEvents)
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{
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const ScopedLock sl (lock);
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for (const auto metadata : buffer)
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processNextMidiEvent (metadata.getMessage());
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if (injectIndirectEvents)
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{
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const int firstEventToAdd = eventsToAdd.getFirstEventTime();
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const double scaleFactor = numSamples / (double) (eventsToAdd.getLastEventTime() + 1 - firstEventToAdd);
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for (const auto metadata : eventsToAdd)
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{
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const auto pos = jlimit (0, numSamples - 1, roundToInt ((metadata.samplePosition - firstEventToAdd) * scaleFactor));
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buffer.addEvent (metadata.getMessage(), startSample + pos);
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}
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}
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eventsToAdd.clear();
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}
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//==============================================================================
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void MidiKeyboardState::addListener (Listener* listener)
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{
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const ScopedLock sl (lock);
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listeners.add (listener);
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}
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void MidiKeyboardState::removeListener (Listener* listener)
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{
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const ScopedLock sl (lock);
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listeners.remove (listener);
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}
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} // namespace juce
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