INTEGRATION: CWS mav05 (1.1.2); FILE ADDED
2003/07/22 15:10:39 mav 1.1.2.1: #i15929# new storage api testing
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odk/examples/java/Storage/Test08.java
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odk/examples/java/Storage/Test08.java
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package storagetesting;
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import com.sun.star.uno.XInterface;
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import com.sun.star.lang.XMultiServiceFactory;
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import com.sun.star.lang.XSingleServiceFactory;
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import com.sun.star.bridge.XUnoUrlResolver;
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import com.sun.star.uno.UnoRuntime;
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import com.sun.star.uno.XInterface;
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import com.sun.star.embed.*;
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import storagetesting.TestHelper;
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import storagetesting.StorageTest;
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public class Test08 implements StorageTest {
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XMultiServiceFactory m_xMSF;
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XSingleServiceFactory m_xStorageFactory;
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TestHelper m_aTestHelper;
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public Test08( XMultiServiceFactory xMSF, XSingleServiceFactory xStorageFactory )
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{
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m_xMSF = xMSF;
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m_xStorageFactory = xStorageFactory;
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m_aTestHelper = new TestHelper( "Test08: " );
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}
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public boolean test()
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{
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try
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{
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// create temporary storage based on arbitrary medium
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// after such a storage is closed it is lost
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Object oTempStorage = m_xStorageFactory.createInstance();
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XStorage xTempStorage = (XStorage) UnoRuntime.queryInterface( XStorage.class, oTempStorage );
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if ( xTempStorage == null )
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{
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m_aTestHelper.Error( "Can't create temporary storage representation!" );
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return false;
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}
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// set the global password for the root storage
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XEncryptionProtectedSource xTempStorageEncryption =
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(XEncryptionProtectedSource) UnoRuntime.queryInterface( XEncryptionProtectedSource.class, xTempStorage );
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if ( xTempStorageEncryption == null )
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{
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m_aTestHelper.Message( "Optional interface XEncryptionProtectedSource is not implemented, feature can not be tested!" );
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return true;
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}
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byte pPass1[] = { 1, 2, 3 };
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byte pPass2[] = { 3, 2, 1 };
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try {
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xTempStorageEncryption.setEncryptionKey( pPass1 );
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}
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catch( Exception e )
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{
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m_aTestHelper.Error( "Can't set a common encryption key for the storage, exception:" + e );
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return false;
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}
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// open a new substorage
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XStorage xTempSubStorage = m_aTestHelper.openSubStorage( xTempStorage,
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"SubStorage1",
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ElementModes.ELEMENT_WRITE );
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if ( xTempSubStorage == null )
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{
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m_aTestHelper.Error( "Can't create substorage!" );
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return false;
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}
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// open a new substream, set "MediaType" and "Compressed" properties to it and write some bytes
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// the stream will be encrypted with common password
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byte pBytes1[] = { 1, 1, 1, 1, 1 };
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if ( !m_aTestHelper.WBToSubstrOfEncr( xTempSubStorage, "SubStream1", "MediaType1", true, pBytes1, true ) )
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return false;
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// open a new substream, set "MediaType" and "Compressed" properties to it and write some bytes
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// the stream will not be encrypted
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byte pBytes2[] = { 2, 2, 2, 2, 2 };
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if ( !m_aTestHelper.WBToSubstrOfEncr( xTempSubStorage, "SubStream2", "MediaType2", false, pBytes2, false ) )
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return false;
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// open a new substream, set "MediaType" and "Compressed" properties to it and write some bytes
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// the stream will be compressed with own password
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byte pBytes3[] = { 3, 3, 3, 3, 3 };
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// open a new substream, set "MediaType" and "Compressed" properties to it and write some bytes
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// the stream will not be encrypted
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if ( !m_aTestHelper.WriteBytesToEncrSubstream( xTempSubStorage, "SubStream3", "MediaType3", false, pBytes3, pPass2 ) )
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return false;
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// set "MediaType" property for storages and check that "IsRoot" and "OpenMode" properties are set correctly
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if ( !m_aTestHelper.setStorageTypeAndCheckProps( xTempStorage,
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"MediaType4",
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true,
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ElementModes.ELEMENT_READWRITE ) )
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return false;
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// set "MediaType" property for storages and check that "IsRoot" and "OpenMode" properties are set correctly
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if ( !m_aTestHelper.setStorageTypeAndCheckProps( xTempSubStorage,
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"MediaType5",
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false,
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ElementModes.ELEMENT_WRITE ) )
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return false;
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// create temporary file
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String sTempFileURL = m_aTestHelper.CreateTempFile( m_xMSF );
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if ( sTempFileURL == null || sTempFileURL == "" )
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{
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m_aTestHelper.Error( "No valid temporary file was created!" );
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return false;
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}
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// create temporary storage based on a previously created temporary file
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Object pArgs[] = new Object[2];
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pArgs[0] = (Object) sTempFileURL;
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pArgs[1] = new Integer( ElementModes.ELEMENT_WRITE );
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Object oTempFileStorage = m_xStorageFactory.createInstanceWithArguments( pArgs );
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XStorage xTempFileStorage = (XStorage)UnoRuntime.queryInterface( XStorage.class, oTempFileStorage );
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if ( xTempFileStorage == null )
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{
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m_aTestHelper.Error( "Can't create storage based on temporary file!" );
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return false;
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}
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// copy xTempStorage to xTempFileStorage
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// xTempFileStorage will be automatically commited
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if ( !m_aTestHelper.copyStorage( xTempStorage, xTempFileStorage ) )
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return false;
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// dispose used storages to free resources
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if ( !m_aTestHelper.disposeStorage( xTempStorage ) || !m_aTestHelper.disposeStorage( xTempFileStorage ) )
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return false;
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// ================================================
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// now check all the written and copied information
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// ================================================
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// the temporary file must not be locked any more after storage disposing
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pArgs[1] = new Integer( ElementModes.ELEMENT_READ );
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Object oResultStorage = m_xStorageFactory.createInstanceWithArguments( pArgs );
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XStorage xResultStorage = (XStorage) UnoRuntime.queryInterface( XStorage.class, oResultStorage );
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if ( xResultStorage == null )
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{
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m_aTestHelper.Error( "Can't reopen storage based on temporary file!" );
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return false;
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}
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if ( !m_aTestHelper.checkStorageProperties( xResultStorage, "MediaType4", true, ElementModes.ELEMENT_READ ) )
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return false;
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// open existing substorage
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XStorage xResultSubStorage = m_aTestHelper.openSubStorage( xResultStorage,
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"SubStorage1",
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ElementModes.ELEMENT_READ );
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if ( xResultSubStorage == null )
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{
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m_aTestHelper.Error( "Can't open existing substorage!" );
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return false;
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}
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if ( !m_aTestHelper.checkStorageProperties( xResultSubStorage, "MediaType5", false, ElementModes.ELEMENT_READ ) )
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return false;
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// set the global password for the root storage
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XEncryptionProtectedSource xResultStorageEncryption =
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(XEncryptionProtectedSource) UnoRuntime.queryInterface( XEncryptionProtectedSource.class, xResultStorage );
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if ( xResultStorageEncryption == null )
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{
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m_aTestHelper.Error( "XEncryptionProtectedSource was successfully used already, so it must be supported!" );
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return false;
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}
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try {
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xResultStorageEncryption.setEncryptionKey( pPass2 );
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}
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catch( Exception e )
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{
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m_aTestHelper.Error( "Can't set a common encryption key for the storage, exception:" + e );
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return false;
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}
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if ( !m_aTestHelper.checkEncrStream( xResultSubStorage, "SubStream1", "MediaType1", pBytes1, pPass1 ) )
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return false;
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if ( !m_aTestHelper.checkStream( xResultSubStorage, "SubStream2", "MediaType2", pBytes2 ) )
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return false;
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// the common root storage password should allow to open this stream
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if ( !m_aTestHelper.checkStream( xResultSubStorage, "SubStream3", "MediaType3", pBytes3 ) )
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return false;
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// dispose used storages to free resources
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if ( !m_aTestHelper.disposeStorage( xResultStorage ) )
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return false;
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return true;
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}
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catch( Exception e )
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{
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m_aTestHelper.Error( "Exception: " + e );
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return false;
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}
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}
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}
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