final XInputStream PipeIn = (XInputStream)
UnoRuntime.queryInterface(XInputStream.class,aPipe);
xdSmo.setOutputStream(PipeOut);
XActiveDataSink xmSi = (XActiveDataSink)
UnoRuntime.queryInterface(XActiveDataSink.class, mistream);
xmSi.setInputStream(PipeIn) ;
oObj = (XInterface) mostream;
// all data types for writing to an XDataInputStream
Vector data = new Vector() ;
data.add(new Boolean(true)) ;
data.add(new Byte((byte)123)) ;
data.add(new Character((char)1234)) ;
data.add(new Short((short)1234)) ;
data.add(new Integer(123456)) ;
data.add(new Float(1.234)) ;
data.add(new Double(1.23456)) ;
data.add("DataInputStream") ;
// information for writing to the pipe
byte[] byteData = new byte[] {
1, 2, 3, 4, 5, 6, 7, 8 } ;
log.println( "creating a new environment for object" );
TestEnvironment tEnv = new TestEnvironment( oObj );
tEnv.addObjRelation("StreamData", data);
tEnv.addObjRelation("ByteData", byteData);
tEnv.addObjRelation("OutputStream", aPipe);
tEnv.addObjRelation("Connectable", aConnect);
//add relation for io.XOutputStream
final XMultiServiceFactory msf = xMSF;
tEnv.addObjRelation("XOutputStream.StreamChecker",
new ifc.io._XOutputStream.StreamChecker() {
XInputStream xInStream = null;
public void resetStreams() {
if (xInStream != null) {
try {
xInStream.closeInput();
xInStream = null;
} catch(com.sun.star.io.IOException e) {
}
} else {
try {
PipeOut.closeOutput();
} catch(com.sun.star.io.IOException e) {
}
}
}
public XInputStream getInStream() {
resetStreams();
try {
Object oInStream = msf.createInstance(
"com.sun.star.io.MarkableInputStream");
xInStream = (XInputStream) UnoRuntime.queryInterface
(XInputStream.class, oInStream);
} catch(com.sun.star.uno.Exception e) {
return null;
}
XActiveDataSink xDataSink = (XActiveDataSink)
UnoRuntime.queryInterface(
XActiveDataSink.class, xInStream);
xDataSink.setInputStream(PipeIn);
return xInStream;
}
});