mirror of
https://github.com/holub/mame
synced 2025-05-03 13:06:47 +03:00
540 lines
18 KiB
Java
540 lines
18 KiB
Java
package jportmidi;
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/* PortMidi is a general class intended for any Java program using
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the PortMidi library. It encapsulates JPortMidiApi with a more
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object-oriented interface. A single PortMidi object can manage
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up to one input stream and one output stream.
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This class is not safely callable from multiple threads. It
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is the client's responsibility to periodically call the Poll
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method which checks for midi input and handles it.
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*/
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import jportmidi.*;
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import jportmidi.JPortMidiApi.*;
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public class JPortMidi {
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// timecode to send message immediately
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public final int NOW = 0;
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// midi codes
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public final int MIDI_NOTE_OFF = 0x80;
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public final int MIDI_NOTE_ON = 0x90;
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public final int CTRL_ALL_OFF = 123;
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public final int MIDI_PITCH_BEND = 0xE0;
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public final int MIDI_CLOCK = 0xF8;
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public final int MIDI_CONTROL = 0xB0;
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public final int MIDI_PROGRAM = 0xC0;
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public final int MIDI_START = 0xFA;
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public final int MIDI_STOP = 0xFC;
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public final int MIDI_POLY_TOUCH = 0xA0;
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public final int MIDI_TOUCH = 0xD0;
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// error code -- cannot refresh device list while stream is open:
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public final int pmStreamOpen = -5000;
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public final int pmOutputNotOpen = -4999;
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// access to JPortMidiApi is through a single, global instance
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private static JPortMidiApi pm;
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// a reference count tracks how many objects have it open
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private static int pmRefCount = 0;
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private static int openCount = 0;
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public int error; // user can check here for error codes
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private PortMidiStream input;
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private PortMidiStream output;
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private PmEvent buffer;
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protected int timestamp; // remember timestamp from incoming messages
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protected boolean trace = false; // used to print midi msgs for debugging
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public JPortMidi() throws JPortMidiException {
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if (pmRefCount == 0) {
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pm = new JPortMidiApi();
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pmRefCount++;
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System.out.println("Calling Pm_Initialize");
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checkError(pm.Pm_Initialize());
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System.out.println("Called Pm_Initialize");
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}
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buffer = new PmEvent();
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}
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public boolean getTrace() { return trace; }
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// set the trace flag and return previous value
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public boolean setTrace(boolean flag) {
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boolean previous = trace;
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trace = flag;
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return previous;
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}
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// WARNING: you must not call this if any devices are open
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public void refreshDeviceLists()
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throws JPortMidiException
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{
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if (openCount > 0) {
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throw new JPortMidiException(pmStreamOpen,
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"RefreshDeviceLists called while stream is open");
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}
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checkError(pm.Pm_Terminate());
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checkError(pm.Pm_Initialize());
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}
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// there is no control over when/whether this is called, but it seems
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// to be a good idea to close things when this object is collected
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public void finalize() {
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if (input != null) {
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error = pm.Pm_Close(input);
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}
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if (input != null) {
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int rslt = pm.Pm_Close(output);
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// we may lose an error code from closing output, but don't
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// lose any real error from closing input...
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if (error == pm.pmNoError) error = rslt;
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}
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pmRefCount--;
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if (pmRefCount == 0) {
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error = pm.Pm_Terminate();
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}
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}
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int checkError(int err) throws JPortMidiException
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{
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// note that Pm_Read and Pm_Write return positive result values
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// which are not errors, so compare with >=
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if (err >= pm.pmNoError) return err;
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if (err == pm.pmHostError) {
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throw new JPortMidiException(err, pm.Pm_GetHostErrorText());
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} else {
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throw new JPortMidiException(err, pm.Pm_GetErrorText(err));
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}
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}
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// ******** ACCESS TO TIME ***********
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public void timeStart(int resolution) throws JPortMidiException {
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checkError(pm.Pt_TimeStart(resolution));
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}
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public void timeStop() throws JPortMidiException {
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checkError(pm.Pt_TimeStop());
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}
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public int timeGet() {
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return pm.Pt_Time();
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}
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public boolean timeStarted() {
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return pm.Pt_TimeStarted();
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}
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// ******* QUERY DEVICE INFORMATION *********
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public int countDevices() throws JPortMidiException {
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return checkError(pm.Pm_CountDevices());
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}
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public int getDefaultInputDeviceID() throws JPortMidiException {
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return checkError(pm.Pm_GetDefaultInputDeviceID());
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}
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public int getDefaultOutputDeviceID() throws JPortMidiException {
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return checkError(pm.Pm_GetDefaultOutputDeviceID());
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}
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public String getDeviceInterf(int i) {
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return pm.Pm_GetDeviceInterf(i);
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}
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public String getDeviceName(int i) {
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return pm.Pm_GetDeviceName(i);
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}
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public boolean getDeviceInput(int i) {
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return pm.Pm_GetDeviceInput(i);
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}
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public boolean getDeviceOutput(int i) {
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return pm.Pm_GetDeviceOutput(i);
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}
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// ********** MIDI INTERFACE ************
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public boolean isOpenInput() {
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return input != null;
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}
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public void openInput(int inputDevice, int bufferSize)
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throws JPortMidiException
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{
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openInput(inputDevice, "", bufferSize);
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}
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public void openInput(int inputDevice, String inputDriverInfo, int bufferSize)
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throws JPortMidiException
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{
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if (isOpenInput()) pm.Pm_Close(input);
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else input = new PortMidiStream();
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if (trace) {
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System.out.println("openInput " + getDeviceName(inputDevice));
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}
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checkError(pm.Pm_OpenInput(input, inputDevice,
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inputDriverInfo, bufferSize));
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// if no exception, then increase count of open streams
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openCount++;
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}
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public boolean isOpenOutput() {
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return output != null;
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}
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public void openOutput(int outputDevice, int bufferSize, int latency)
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throws JPortMidiException
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{
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openOutput(outputDevice, "", bufferSize, latency);
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}
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public void openOutput(int outputDevice, String outputDriverInfo,
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int bufferSize, int latency) throws JPortMidiException {
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if (isOpenOutput()) pm.Pm_Close(output);
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else output = new PortMidiStream();
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if (trace) {
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System.out.println("openOutput " + getDeviceName(outputDevice));
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}
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checkError(pm.Pm_OpenOutput(output, outputDevice, outputDriverInfo,
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bufferSize, latency));
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// if no exception, then increase count of open streams
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openCount++;
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}
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public void setFilter(int filters) throws JPortMidiException {
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if (input == null) return; // no effect if input not open
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checkError(pm.Pm_SetFilter(input, filters));
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}
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public void setChannelMask(int mask) throws JPortMidiException {
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if (input == null) return; // no effect if input not open
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checkError(pm.Pm_SetChannelMask(input, mask));
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}
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public void abort() throws JPortMidiException {
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if (output == null) return; // no effect if output not open
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checkError(pm.Pm_Abort(output));
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}
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// In keeping with the idea that this class represents an input and output,
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// there are separate Close methods for input and output streams, avoiding
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// the need for clients to ever deal directly with a stream object
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public void closeInput() throws JPortMidiException {
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if (input == null) return; // no effect if input not open
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checkError(pm.Pm_Close(input));
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input = null;
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openCount--;
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}
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public void closeOutput() throws JPortMidiException {
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if (output == null) return; // no effect if output not open
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checkError(pm.Pm_Close(output));
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output = null;
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openCount--;
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}
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// Poll should be called by client to process input messages (if any)
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public void poll() throws JPortMidiException {
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if (input == null) return; // does nothing until input is opened
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while (true) {
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int rslt = pm.Pm_Read(input, buffer);
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checkError(rslt);
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if (rslt == 0) return; // no more messages
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handleMidiIn(buffer);
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}
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}
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public void writeShort(int when, int msg) throws JPortMidiException {
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if (output == null)
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throw new JPortMidiException(pmOutputNotOpen,
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"Output stream not open");
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if (trace) {
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System.out.println("writeShort: " + Integer.toHexString(msg));
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}
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checkError(pm.Pm_WriteShort(output, when, msg));
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}
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public void writeSysEx(int when, byte msg[]) throws JPortMidiException {
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if (output == null)
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throw new JPortMidiException(pmOutputNotOpen,
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"Output stream not open");
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if (trace) {
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System.out.print("writeSysEx: ");
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for (int i = 0; i < msg.length; i++) {
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System.out.print(Integer.toHexString(msg[i]));
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}
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System.out.print("\n");
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}
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checkError(pm.Pm_WriteSysEx(output, when, msg));
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}
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public int midiChanMessage(int chan, int status, int data1, int data2) {
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return (((data2 << 16) & 0xFF0000) |
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((data1 << 8) & 0xFF00) |
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(status & 0xF0) |
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(chan & 0xF));
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}
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public int midiMessage(int status, int data1, int data2) {
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return ((((data2) << 16) & 0xFF0000) |
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(((data1) << 8) & 0xFF00) |
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((status) & 0xFF));
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}
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public void midiAllOff(int channel) throws JPortMidiException {
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midiAllOff(channel, NOW);
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}
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public void midiAllOff(int chan, int when) throws JPortMidiException {
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writeShort(when, midiChanMessage(chan, MIDI_CONTROL, CTRL_ALL_OFF, 0));
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}
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public void midiPitchBend(int chan, int value) throws JPortMidiException {
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midiPitchBend(chan, value, NOW);
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}
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public void midiPitchBend(int chan, int value, int when)
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throws JPortMidiException {
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writeShort(when,
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midiChanMessage(chan, MIDI_PITCH_BEND, value, value >> 7));
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}
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public void midiClock() throws JPortMidiException {
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midiClock(NOW);
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}
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public void midiClock(int when) throws JPortMidiException {
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writeShort(when, midiMessage(MIDI_CLOCK, 0, 0));
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}
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public void midiControl(int chan, int control, int value)
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throws JPortMidiException {
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midiControl(chan, control, value, NOW);
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}
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public void midiControl(int chan, int control, int value, int when)
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throws JPortMidiException {
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writeShort(when, midiChanMessage(chan, MIDI_CONTROL, control, value));
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}
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public void midiNote(int chan, int pitch, int vel)
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throws JPortMidiException {
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midiNote(chan, pitch, vel, NOW);
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}
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public void midiNote(int chan, int pitch, int vel, int when)
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throws JPortMidiException {
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writeShort(when, midiChanMessage(chan, MIDI_NOTE_ON, pitch, vel));
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}
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public void midiProgram(int chan, int program)
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throws JPortMidiException {
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midiProgram(chan, program, NOW);
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}
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public void midiProgram(int chan, int program, int when)
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throws JPortMidiException {
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writeShort(when, midiChanMessage(chan, MIDI_PROGRAM, program, 0));
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}
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public void midiStart()
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throws JPortMidiException {
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midiStart(NOW);
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}
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public void midiStart(int when)
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throws JPortMidiException {
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writeShort(when, midiMessage(MIDI_START, 0, 0));
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}
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public void midiStop()
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throws JPortMidiException {
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midiStop(NOW);
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}
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public void midiStop(int when)
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throws JPortMidiException {
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writeShort(when, midiMessage(MIDI_STOP, 0, 0));
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}
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public void midiPolyTouch(int chan, int key, int value)
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throws JPortMidiException {
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midiPolyTouch(chan, key, value, NOW);
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}
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public void midiPolyTouch(int chan, int key, int value, int when)
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throws JPortMidiException {
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writeShort(when, midiChanMessage(chan, MIDI_POLY_TOUCH, key, value));
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}
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public void midiTouch(int chan, int value)
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throws JPortMidiException {
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midiTouch(chan, value, NOW);
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}
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public void midiTouch(int chan, int value, int when)
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throws JPortMidiException {
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writeShort(when, midiChanMessage(chan, MIDI_TOUCH, value, 0));
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}
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// ****** now we implement the message handlers ******
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// an array for incoming sysex messages that can grow.
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// The downside is that after getting a message, we
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private byte sysexBuffer[] = null;
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private int sysexBufferIndex = 0;
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void sysexBufferReset() {
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sysexBufferIndex = 0;
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if (sysexBuffer == null) sysexBuffer = new byte[256];
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}
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void sysexBufferCheck() {
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if (sysexBuffer.length < sysexBufferIndex + 4) {
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byte bigger[] = new byte[sysexBuffer.length * 2];
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for (int i = 0; i < sysexBufferIndex; i++) {
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bigger[i] = sysexBuffer[i];
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}
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sysexBuffer = bigger;
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}
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// now we have space to write some bytes
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}
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// call this to insert Sysex and EOX status bytes
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// call sysexBufferAppendBytes to insert anything else
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void sysexBufferAppendStatus(byte status) {
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sysexBuffer[sysexBufferIndex++] = status;
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}
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void sysexBufferAppendBytes(int msg, int len) {
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for (int i = 0; i < len; i++) {
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byte b = (byte) msg;
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if ((msg & 0x80) != 0) {
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if (b == 0xF7) { // end of sysex
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sysexBufferAppendStatus(b);
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sysex(sysexBuffer, sysexBufferIndex);
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return;
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}
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// recursively handle embedded real-time messages
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PmEvent buffer = new PmEvent();
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buffer.timestamp = timestamp;
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buffer.message = b;
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handleMidiIn(buffer);
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} else {
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sysexBuffer[sysexBufferIndex++] = b;
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}
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msg = msg >> 8;
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}
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}
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void sysexBegin(int msg) {
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sysexBufferReset(); // start from 0, we have at least 256 bytes now
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sysexBufferAppendStatus((byte) (msg & 0xFF)); // first byte is special
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sysexBufferAppendBytes(msg >> 8, 3); // process remaining bytes
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}
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public void handleMidiIn(PmEvent buffer)
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{
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if (trace) {
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System.out.println("handleMidiIn: " +
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Integer.toHexString(buffer.message));
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}
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// rather than pass timestamps to every handler, where typically
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// timestamps are ignored, just save the timestamp as a member
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// variable where methods can access it if they want it
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timestamp = buffer.timestamp;
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int status = buffer.message & 0xFF;
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if (status < 0x80) {
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sysexBufferCheck(); // make enough space
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sysexBufferAppendBytes(buffer.message, 4); // process 4 bytes
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return;
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}
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int command = status & 0xF0;
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int channel = status & 0x0F;
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int data1 = (buffer.message >> 8) & 0xFF;
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int data2 = (buffer.message >> 16) & 0xFF;
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switch (command) {
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case MIDI_NOTE_OFF:
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noteOff(channel, data1, data2); break;
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case MIDI_NOTE_ON:
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if (data2 > 0) {
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noteOn(channel, data1, data2); break;
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} else {
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noteOff(channel, data1);
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}
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break;
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case MIDI_CONTROL:
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control(channel, data1, data2); break;
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case MIDI_POLY_TOUCH:
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polyTouch(channel, data1, data2); break;
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case MIDI_TOUCH:
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touch(channel, data1); break;
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case MIDI_PITCH_BEND:
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pitchBend(channel, (data1 + (data2 << 7)) - 8192); break;
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case MIDI_PROGRAM:
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program(channel, data1); break;
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case 0xF0:
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switch (channel) {
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case 0: sysexBegin(buffer.message); break;
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case 1: mtcQuarterFrame(data1);
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case 2: songPosition(data1 + (data2 << 7)); break;
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case 3: songSelect(data1); break;
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case 4: /* unused */ break;
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case 5: /* unused */ break;
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case 6: tuneRequest(); break;
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case 7: sysexBufferAppendBytes(buffer.message, buffer.message); break;
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case 8: clock(); break;
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case 9: tick(); break;
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case 0xA: clockStart(); break;
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case 0xB: clockContinue(); break;
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case 0xC: clockStop(); break;
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case 0xD: /* unused */ break;
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case 0xE: activeSense(); break;
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case 0xF: reset(); break;
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}
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}
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}
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// the value ranges from +8181 to -8192. The interpretation is
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// synthesizer dependent. Often the range is +/- one whole step
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// (two semitones), but the range is usually adjustable within
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// the synthesizer.
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void pitchBend(int channel, int value) { return; }
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void control(int channel, int control, int value) { return; }
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void noteOn(int channel, int pitch, int velocity) { return; }
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// you can handle velocity in note-off if you want, but the default
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// is to drop the velocity and call the simpler NoteOff handler
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void noteOff(int channel, int pitch, int velocity) {
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noteOff(channel, pitch);
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}
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// if the subclass wants to implement NoteOff with velocity, it
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// should override the following to make sure all NoteOffs are handled
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void noteOff(int channel, int pitch) { return; }
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void program(int channel, int program) { return; }
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// the byte array may be bigger than the message, length tells how
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// many bytes in the array are part of the message
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void sysex(byte[] msg, int length) { return; }
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void polyTouch(int channel, int key, int value) { return; }
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void touch(int channel, int value) { return; }
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void mtcQuarterFrame(int value) { return; }
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// the value is a 14-bit integer representing 16th notes
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void songPosition(int value) { return; }
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void songSelect(int value) { return; }
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void tuneRequest() { return; }
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void clock() { return; } // represents 1/24th of a quarter note
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void tick() { return; } // represents 10ms
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void clockStart() { return; }
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void clockStop() { return; }
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void clockContinue() { return; }
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void activeSense() { return; }
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void reset() { return; }
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}
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