mirror of
https://github.com/juce-framework/JUCE.git
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248 lines
9.7 KiB
C++
248 lines
9.7 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::universal_midi_packets
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{
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String StringUtils::getHexString (const View& view)
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{
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auto result = String::toHexString (*view.data());
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std::for_each (std::next (view.begin()), view.end(), [&] (uint32_t word)
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{
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result << ' ' << String::toHexString (word);
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});
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return result;
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}
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static String getUtilityMessageDescription (const PacketX1& p)
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{
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const auto word = p.front();
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switch ((uint8_t) Utils::getStatus (word))
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{
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case 0x0: return "NOOP";
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case 0x1: return "JR Clock " + String::toHexString ((word >> 0x10) & 0xff);
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case 0x2: return "JR Timestamp " + String::toHexString ((word >> 0x10) & 0xff);
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}
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jassertfalse;
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return {};
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}
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static String getPacketDescription (const PacketX1& p)
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{
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switch (Utils::getMessageType (p.front()))
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{
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case Utils::MessageKind::utility: return "Utility: " + getUtilityMessageDescription (p);
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case Utils::MessageKind::commonRealtime: return "System: " + SingleGroupMidi1ToBytestreamExtractor::fromUmp (p).getDescription();
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case Utils::MessageKind::channelVoice1: return "MIDI 1.0 Channel Voice: " + SingleGroupMidi1ToBytestreamExtractor::fromUmp (p).getDescription();
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case Utils::MessageKind::channelVoice2:
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case Utils::MessageKind::sysex7:
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case Utils::MessageKind::sysex8:
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case Utils::MessageKind::stream:
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break;
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}
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jassertfalse;
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return {};
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}
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static String getData64MessageDescription (const PacketX2& p)
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{
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const auto bytes = SysEx7::getDataBytes (p);
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String byteString;
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std::for_each (bytes.data.data(), bytes.data.data() + bytes.size, [&] (std::byte byte)
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{
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byteString << String::toHexString ((uint8_t) byte);
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});
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switch (SysEx7::Kind (Utils::getStatus (p.front())))
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{
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case SysEx7::Kind::complete: return "Full: " + byteString;
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case SysEx7::Kind::begin: return "Start: " + byteString;
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case SysEx7::Kind::continuation: return "Continue: " + byteString;
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case SysEx7::Kind::end: return "End: " + byteString;
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}
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jassertfalse;
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return {};
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}
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static String getMidi2ChannelVoiceDescription (const PacketX2& p)
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{
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const auto getNoteName = [&] { return MidiMessage::getMidiNoteName ((p[0] >> 0x8) & 0xff, true, true, 3); };
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const auto getByte3 = [&] { return String::toHexString ((p[0] >> 0x8) & 0xff); };
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const auto getByte4 = [&] { return String::toHexString ((p[0] >> 0x0) & 0xff); };
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const auto getVelocity = [&] { return String::toHexString ((p[1] >> 0x10) & 0xffff); };
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const auto getAttribute = [&] { return String::toHexString ((p[1] >> 0x00) & 0xffff); };
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const auto getChannel = [&] { return String::toHexString (p.getChannel()); };
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switch ((uint8_t) Utils::getStatus (p[0]))
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{
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case 0x0: return "Registered Per-Note Controller " + getByte4()
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+ " Channel " + getChannel()
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+ " Note " + getNoteName()
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+ " Data " + String::toHexString (p[1]);
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case 0x1: return "Assignable Per-Note Controller " + getByte4()
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+ " Channel " + getChannel()
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+ " Note " + getNoteName()
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+ " Data " + String::toHexString (p[1]);
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case 0x2: return "Registered Controller Bank " + getByte3()
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+ " Channel " + getChannel()
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+ " Index " + getByte4()
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+ " Data " + String::toHexString (p[1]);
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case 0x3: return "Assignable Controller Bank " + getByte3()
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+ " Channel " + getChannel()
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+ " Index " + getByte4()
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+ " Data " + String::toHexString (p[1]);
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case 0x4: return "Relative Registered Controller Bank " + getByte3()
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+ " Channel " + getChannel()
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+ " Index " + getByte4()
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+ " Data " + String::toHexString (p[1]);
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case 0x5: return "Relative Assignable Controller Bank " + getByte3()
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+ " Channel " + getChannel()
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+ " Index " + getByte4()
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+ " Data " + String::toHexString (p[1]);
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case 0x6: return "Per-Note Pitch Bend Note " + getNoteName()
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+ " Channel " + getChannel()
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+ " Data " + String::toHexString (p[1]);
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case 0x8: return "Note Off " + getNoteName()
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+ " Channel " + getChannel()
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+ " Attribute Type " + getByte4()
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+ " Velocity " + getVelocity()
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+ " Attribute Data " + getAttribute();
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case 0x9: return "Note On " + getNoteName()
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+ " Channel " + getChannel()
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+ " Attribute Type " + getByte4()
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+ " Velocity " + getVelocity()
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+ " Attribute Data " + getAttribute();
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case 0xa: return "Poly Pressure Note " + getNoteName()
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+ " Channel " + getChannel()
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+ " Data " + String::toHexString (p[1]);
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case 0xb: return "Control Change " + getByte3()
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+ " Channel " + getChannel()
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+ " Data " + String::toHexString (p[1]);
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case 0xc: return "Program Change Options " + getByte4()
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+ " Channel " + getChannel()
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+ " Program " + String::toHexString ((p[1] >> 0x18) & 0xff)
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+ " Bank MSB " + String::toHexString ((p[1] >> 0x08) & 0xff)
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+ " Bank LSB " + String::toHexString ((p[1] >> 0x00) & 0xff);
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case 0xd: return "Channel Pressure " + String::toHexString (p[1])
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+ " Channel " + getChannel();
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case 0xe: return "Pitch Bend " + String::toHexString (p[1])
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+ " Channel " + getChannel();
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case 0xf: return "Per-Note Management Note " + getNoteName()
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+ " Channel " + getChannel()
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+ " Options " + getByte4();
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}
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jassertfalse;
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return {};
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}
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static String getPacketDescription (const PacketX2& p)
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{
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switch (Utils::getMessageType (p.front()))
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{
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case Utils::MessageKind::sysex7: return "Data 64-Bit: " + getData64MessageDescription (p);
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case Utils::MessageKind::channelVoice2: return "MIDI 2.0 Channel Voice: " + getMidi2ChannelVoiceDescription (p);
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case Utils::MessageKind::utility:
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case Utils::MessageKind::channelVoice1:
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case Utils::MessageKind::sysex8:
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case Utils::MessageKind::commonRealtime:
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case Utils::MessageKind::stream:
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break;
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}
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jassertfalse;
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return {};
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}
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static String getPacketDescription (const PacketX3&)
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{
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jassertfalse;
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return {};
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}
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static String getPacketDescription (const PacketX4& p)
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{
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switch (Utils::getMessageType (p[0]))
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{
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case Utils::MessageKind::sysex8: return "Data 128 Bit"; // TODO
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case Utils::MessageKind::stream: return "Stream Configuration"; // TODO
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case Utils::MessageKind::utility:
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case Utils::MessageKind::sysex7:
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case Utils::MessageKind::channelVoice1:
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case Utils::MessageKind::channelVoice2:
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case Utils::MessageKind::commonRealtime:
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break;
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}
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jassertfalse;
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return {};
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}
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String StringUtils::getDescription (const View& v)
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{
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const auto group = (String ("Group ") + String (Utils::getGroup (*v.data()))) + ' ';
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switch (v.size())
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{
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case 1:
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return group + getPacketDescription (PacketX1 { v[0] });
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case 2:
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return group + getPacketDescription (PacketX2 { v[0], v[1] });
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case 3:
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return group + getPacketDescription (PacketX3 { v[0], v[1], v[2] });
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case 4:
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return group + getPacketDescription (PacketX4 { v[0], v[1], v[2], v[3] });
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}
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jassertfalse;
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return {};
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}
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} // namespace juce::universal_midi_packets
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