HADOOP-13443. KMS should check the type of underlying keyprovider of KeyProviderExtension before falling back to default. Contributed by Anthony Young-Garner.
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@ -389,24 +389,39 @@ public class KeyProviderCryptoExtension extends
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}
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/**
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* Creates a <code>KeyProviderCryptoExtension</code> using a given
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* Creates a <code>KeyProviderCryptoExtension</code> using a given
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* {@link KeyProvider}.
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* <p/>
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* If the given <code>KeyProvider</code> implements the
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* If the given <code>KeyProvider</code> implements the
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* {@link CryptoExtension} interface the <code>KeyProvider</code> itself
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* will provide the extension functionality, otherwise a default extension
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* will provide the extension functionality.
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* If the given <code>KeyProvider</code> implements the
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* {@link KeyProviderExtension} interface and the KeyProvider being
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* extended by the <code>KeyProvider</code> implements the
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* {@link CryptoExtension} interface, the KeyProvider being extended will
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* provide the extension functionality. Otherwise, a default extension
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* implementation will be used.
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*
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* @param keyProvider <code>KeyProvider</code> to use to create the
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*
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* @param keyProvider <code>KeyProvider</code> to use to create the
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* <code>KeyProviderCryptoExtension</code> extension.
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* @return a <code>KeyProviderCryptoExtension</code> instance using the
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* given <code>KeyProvider</code>.
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*/
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public static KeyProviderCryptoExtension createKeyProviderCryptoExtension(
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KeyProvider keyProvider) {
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CryptoExtension cryptoExtension = (keyProvider instanceof CryptoExtension)
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? (CryptoExtension) keyProvider
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: new DefaultCryptoExtension(keyProvider);
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CryptoExtension cryptoExtension = null;
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if (keyProvider instanceof CryptoExtension) {
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cryptoExtension = (CryptoExtension) keyProvider;
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} else if (keyProvider instanceof KeyProviderExtension &&
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((KeyProviderExtension)keyProvider).getKeyProvider() instanceof
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KeyProviderCryptoExtension.CryptoExtension) {
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KeyProviderExtension keyProviderExtension =
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(KeyProviderExtension)keyProvider;
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cryptoExtension =
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(CryptoExtension)keyProviderExtension.getKeyProvider();
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} else {
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cryptoExtension = new DefaultCryptoExtension(keyProvider);
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}
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return new KeyProviderCryptoExtension(keyProvider, cryptoExtension);
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}
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@ -17,9 +17,13 @@
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*/
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package org.apache.hadoop.crypto.key;
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import java.io.IOException;
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import java.net.URI;
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import java.net.URISyntaxException;
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import java.security.GeneralSecurityException;
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import java.security.SecureRandom;
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import java.util.Arrays;
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import java.util.List;
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import javax.crypto.Cipher;
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import javax.crypto.spec.IvParameterSpec;
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@ -27,6 +31,7 @@ import javax.crypto.spec.SecretKeySpec;
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import org.apache.hadoop.conf.Configuration;
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import org.apache.hadoop.crypto.key.KeyProviderCryptoExtension.EncryptedKeyVersion;
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import org.junit.Assert;
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import org.junit.BeforeClass;
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import org.junit.Test;
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@ -132,4 +137,207 @@ public class TestKeyProviderCryptoExtension {
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assertArrayEquals("Wrong key material from decryptEncryptedKey",
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manualMaterial, apiMaterial);
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}
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@Test
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public void testNonDefaultCryptoExtensionSelectionWithCachingKeyProvider()
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throws Exception {
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Configuration config = new Configuration();
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KeyProvider localKp = new DummyCryptoExtensionKeyProvider(config);
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localKp = new CachingKeyProvider(localKp, 30000, 30000);
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EncryptedKeyVersion localEkv = getEncryptedKeyVersion(config, localKp);
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Assert.assertEquals("dummyFakeKey@1",
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localEkv.getEncryptionKeyVersionName());
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}
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@Test
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public void testDefaultCryptoExtensionSelectionWithCachingKeyProvider()
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throws Exception {
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Configuration config = new Configuration();
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KeyProvider localKp =
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new UserProvider.Factory().
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createProvider(new URI("user:///"), config);
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localKp = new CachingKeyProvider(localKp, 30000, 30000);
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EncryptedKeyVersion localEkv = getEncryptedKeyVersion(config, localKp);
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Assert.assertEquals(ENCRYPTION_KEY_NAME+"@0",
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localEkv.getEncryptionKeyVersionName());
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}
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@Test
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public void testNonDefaultCryptoExtensionSelectionOnKeyProviderExtension()
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throws Exception {
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Configuration config = new Configuration();
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KeyProvider localKp = new UserProvider.Factory().
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createProvider(new URI("user:///"), config);
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localKp = new DummyCachingCryptoExtensionKeyProvider(localKp, 30000, 30000);
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EncryptedKeyVersion localEkv = getEncryptedKeyVersion(config, localKp);
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Assert.assertEquals("dummyCachingFakeKey@1",
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localEkv.getEncryptionKeyVersionName());
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}
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private EncryptedKeyVersion getEncryptedKeyVersion(Configuration config,
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KeyProvider localKp)
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throws IOException, GeneralSecurityException {
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KeyProvider.Options localOptions = new KeyProvider.Options(config);
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localOptions.setCipher(CIPHER);
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localOptions.setBitLength(128);
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KeyVersion localEncryptionKey =
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localKp.createKey(ENCRYPTION_KEY_NAME,
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SecureRandom.getSeed(16), localOptions);
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KeyProviderCryptoExtension localKpExt =
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KeyProviderCryptoExtension.
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createKeyProviderCryptoExtension(localKp);
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return localKpExt.generateEncryptedKey(localEncryptionKey.getName());
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}
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/**
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* Dummy class to test that this key provider is chosen to
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* provide CryptoExtension services over the DefaultCryptoExtension.
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*/
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public class DummyCryptoExtensionKeyProvider extends KeyProvider
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implements KeyProviderCryptoExtension.CryptoExtension {
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private KeyProvider kp;
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private KeyVersion kv;
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private EncryptedKeyVersion ekv;
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public DummyCryptoExtensionKeyProvider(Configuration conf) {
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super(conf);
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conf = new Configuration();
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try {
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this.kp = new UserProvider.Factory().createProvider(
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new URI("user:///"), conf);
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this.kv = new KeyVersion(ENCRYPTION_KEY_NAME,
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"dummyFakeKey@1", new byte[16]);
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this.ekv = new EncryptedKeyVersion(ENCRYPTION_KEY_NAME,
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"dummyFakeKey@1", new byte[16], kv);
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} catch (URISyntaxException e) {
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fail(e.getMessage());
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} catch (IOException e) {
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fail(e.getMessage());
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}
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}
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@Override
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public void warmUpEncryptedKeys(String... keyNames) throws IOException {
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}
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@Override
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public void drain(String keyName) {
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}
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@Override
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public EncryptedKeyVersion generateEncryptedKey(String encryptionKeyName)
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throws IOException, GeneralSecurityException {
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return this.ekv;
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}
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@Override
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public KeyVersion decryptEncryptedKey(
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EncryptedKeyVersion encryptedKeyVersion)
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throws IOException, GeneralSecurityException {
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return kv;
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}
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@Override
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public KeyVersion getKeyVersion(String versionName)
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throws IOException {
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return this.kp.getKeyVersion(versionName);
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}
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@Override
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public List<String> getKeys() throws IOException {
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return this.kp.getKeys();
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}
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@Override
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public List<KeyVersion> getKeyVersions(String name)
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throws IOException {
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return this.kp.getKeyVersions(name);
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}
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@Override
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public Metadata getMetadata(String name)
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throws IOException {
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return this.kp.getMetadata(name);
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}
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@Override
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public KeyVersion createKey(String name, byte[] material,
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Options localOptions) throws IOException {
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return this.kp.createKey(name, material, localOptions);
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}
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@Override
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public void deleteKey(String name) throws IOException {
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this.kp.deleteKey(name);
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}
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@Override
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public KeyVersion rollNewVersion(String name,
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byte[] material) throws IOException {
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return this.kp.rollNewVersion(name, material);
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}
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@Override
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public void flush() throws IOException {
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this.kp.flush();
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}
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}
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/**
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* Dummy class to verify that CachingKeyProvider is used to
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* provide CryptoExtension services if the CachingKeyProvider itself
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* implements CryptoExtension.
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*/
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public class DummyCachingCryptoExtensionKeyProvider
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extends CachingKeyProvider
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implements KeyProviderCryptoExtension.CryptoExtension {
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private KeyProvider kp;
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private KeyVersion kv;
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private EncryptedKeyVersion ekv;
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public DummyCachingCryptoExtensionKeyProvider(KeyProvider keyProvider,
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long keyTimeoutMillis,
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long currKeyTimeoutMillis) {
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super(keyProvider, keyTimeoutMillis, currKeyTimeoutMillis);
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conf = new Configuration();
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try {
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this.kp = new UserProvider.Factory().createProvider(
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new URI("user:///"), conf);
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this.kv = new KeyVersion(ENCRYPTION_KEY_NAME,
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"dummyCachingFakeKey@1", new byte[16]);
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this.ekv = new EncryptedKeyVersion(ENCRYPTION_KEY_NAME,
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"dummyCachingFakeKey@1", new byte[16], kv);
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} catch (URISyntaxException e) {
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fail(e.getMessage());
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} catch (IOException e) {
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fail(e.getMessage());
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}
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}
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@Override
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public void warmUpEncryptedKeys(String... keyNames) throws IOException {
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}
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@Override
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public void drain(String keyName) {
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}
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@Override
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public EncryptedKeyVersion generateEncryptedKey(String encryptionKeyName)
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throws IOException, GeneralSecurityException {
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return this.ekv;
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}
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@Override
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public KeyVersion decryptEncryptedKey(
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EncryptedKeyVersion encryptedKeyVersion)
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throws IOException, GeneralSecurityException {
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return kv;
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}
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}
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}
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