For the AndroidKeyStore API, allow entries to have their certificate chain replaced without destroying the underlying PrivateKey. Since entries are backed by unexportable private keys, requiring them to be supplied again doesn't make sense and is impossible. Change-Id: I629ce2a625315c8d8020a082892650ac5eba22ae
482 lines
17 KiB
Java
482 lines
17 KiB
Java
/*
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* Copyright (C) 2012 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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package android.security;
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import org.apache.harmony.xnet.provider.jsse.OpenSSLDSAPrivateKey;
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import org.apache.harmony.xnet.provider.jsse.OpenSSLEngine;
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import org.apache.harmony.xnet.provider.jsse.OpenSSLRSAPrivateKey;
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import android.util.Log;
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import java.io.ByteArrayInputStream;
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import java.io.IOException;
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import java.io.InputStream;
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import java.io.OutputStream;
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import java.security.InvalidKeyException;
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import java.security.Key;
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import java.security.KeyStoreException;
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import java.security.KeyStoreSpi;
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import java.security.NoSuchAlgorithmException;
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import java.security.PrivateKey;
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import java.security.UnrecoverableKeyException;
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import java.security.cert.Certificate;
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import java.security.cert.CertificateEncodingException;
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import java.security.cert.CertificateException;
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import java.security.cert.CertificateFactory;
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import java.security.cert.X509Certificate;
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import java.util.ArrayList;
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import java.util.Collection;
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import java.util.Collections;
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import java.util.Date;
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import java.util.Enumeration;
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import java.util.HashSet;
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import java.util.Iterator;
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import java.util.Set;
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/**
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* A java.security.KeyStore interface for the Android KeyStore. An instance of
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* it can be created via the {@link java.security.KeyStore#getInstance(String)
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* KeyStore.getInstance("AndroidKeyStore")} interface. This returns a
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* java.security.KeyStore backed by this "AndroidKeyStore" implementation.
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* <p>
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* This is built on top of Android's keystore daemon. The convention of alias
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* use is:
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* <p>
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* PrivateKeyEntry will have a Credentials.USER_PRIVATE_KEY as the private key,
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* Credentials.USER_CERTIFICATE as the first certificate in the chain (the one
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* that corresponds to the private key), and then a Credentials.CA_CERTIFICATE
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* entry which will have the rest of the chain concatenated in BER format.
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* <p>
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* TrustedCertificateEntry will just have a Credentials.CA_CERTIFICATE entry
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* with a single certificate.
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*
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* @hide
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*/
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public class AndroidKeyStore extends KeyStoreSpi {
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public static final String NAME = "AndroidKeyStore";
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private android.security.KeyStore mKeyStore;
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@Override
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public Key engineGetKey(String alias, char[] password) throws NoSuchAlgorithmException,
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UnrecoverableKeyException {
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if (!isKeyEntry(alias)) {
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return null;
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}
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final OpenSSLEngine engine = OpenSSLEngine.getInstance("keystore");
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try {
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return engine.getPrivateKeyById(Credentials.USER_PRIVATE_KEY + alias);
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} catch (InvalidKeyException e) {
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UnrecoverableKeyException t = new UnrecoverableKeyException("Can't get key");
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t.initCause(e);
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throw t;
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}
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}
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@Override
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public Certificate[] engineGetCertificateChain(String alias) {
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final X509Certificate leaf = (X509Certificate) engineGetCertificate(alias);
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if (leaf == null) {
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return null;
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}
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final Certificate[] caList;
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final byte[] caBytes = mKeyStore.get(Credentials.CA_CERTIFICATE + alias);
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if (caBytes != null) {
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final Collection<X509Certificate> caChain = toCertificates(caBytes);
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caList = new Certificate[caChain.size() + 1];
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final Iterator<X509Certificate> it = caChain.iterator();
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int i = 1;
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while (it.hasNext()) {
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caList[i++] = it.next();
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}
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} else {
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caList = new Certificate[1];
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}
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caList[0] = leaf;
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return caList;
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}
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@Override
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public Certificate engineGetCertificate(String alias) {
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byte[] certificate = mKeyStore.get(Credentials.USER_CERTIFICATE + alias);
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if (certificate != null) {
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return toCertificate(certificate);
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}
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certificate = mKeyStore.get(Credentials.CA_CERTIFICATE + alias);
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if (certificate != null) {
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return toCertificate(certificate);
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}
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return null;
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}
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private static X509Certificate toCertificate(byte[] bytes) {
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try {
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final CertificateFactory certFactory = CertificateFactory.getInstance("X.509");
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return (X509Certificate) certFactory
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.generateCertificate(new ByteArrayInputStream(bytes));
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} catch (CertificateException e) {
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Log.w(NAME, "Couldn't parse certificate in keystore", e);
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return null;
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}
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}
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@SuppressWarnings("unchecked")
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private static Collection<X509Certificate> toCertificates(byte[] bytes) {
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try {
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final CertificateFactory certFactory = CertificateFactory.getInstance("X.509");
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return (Collection<X509Certificate>) certFactory
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.generateCertificates(new ByteArrayInputStream(bytes));
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} catch (CertificateException e) {
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Log.w(NAME, "Couldn't parse certificates in keystore", e);
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return new ArrayList<X509Certificate>();
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}
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}
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private Date getModificationDate(String alias) {
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final long epochMillis = mKeyStore.getmtime(alias);
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if (epochMillis == -1L) {
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return null;
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}
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return new Date(epochMillis);
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}
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@Override
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public Date engineGetCreationDate(String alias) {
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Date d = getModificationDate(Credentials.USER_PRIVATE_KEY + alias);
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if (d != null) {
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return d;
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}
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d = getModificationDate(Credentials.USER_CERTIFICATE + alias);
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if (d != null) {
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return d;
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}
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return getModificationDate(Credentials.CA_CERTIFICATE + alias);
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}
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@Override
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public void engineSetKeyEntry(String alias, Key key, char[] password, Certificate[] chain)
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throws KeyStoreException {
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if ((password != null) && (password.length > 0)) {
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throw new KeyStoreException("entries cannot be protected with passwords");
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}
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if (key instanceof PrivateKey) {
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setPrivateKeyEntry(alias, (PrivateKey) key, chain);
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} else {
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throw new KeyStoreException("Only PrivateKeys are supported");
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}
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}
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private void setPrivateKeyEntry(String alias, PrivateKey key, Certificate[] chain)
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throws KeyStoreException {
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byte[] keyBytes = null;
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final String pkeyAlias;
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if (key instanceof OpenSSLRSAPrivateKey) {
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pkeyAlias = ((OpenSSLRSAPrivateKey) key).getPkeyAlias();
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} else if (key instanceof OpenSSLDSAPrivateKey) {
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pkeyAlias = ((OpenSSLDSAPrivateKey) key).getPkeyAlias();
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} else {
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pkeyAlias = null;
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}
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final boolean shouldReplacePrivateKey;
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if (pkeyAlias != null && pkeyAlias.startsWith(Credentials.USER_PRIVATE_KEY)) {
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final String keySubalias = pkeyAlias.substring(Credentials.USER_PRIVATE_KEY.length());
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if (!alias.equals(keySubalias)) {
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throw new KeyStoreException("Can only replace keys with same alias: " + alias
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+ " != " + keySubalias);
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}
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shouldReplacePrivateKey = false;
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} else {
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// Make sure the PrivateKey format is the one we support.
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final String keyFormat = key.getFormat();
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if ((keyFormat == null) || (!"PKCS#8".equals(keyFormat))) {
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throw new KeyStoreException(
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"Only PrivateKeys that can be encoded into PKCS#8 are supported");
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}
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// Make sure we can actually encode the key.
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keyBytes = key.getEncoded();
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if (keyBytes == null) {
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throw new KeyStoreException("PrivateKey has no encoding");
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}
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shouldReplacePrivateKey = true;
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}
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// Make sure the chain exists since this is a PrivateKey
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if ((chain == null) || (chain.length == 0)) {
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throw new KeyStoreException("Must supply at least one Certificate with PrivateKey");
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}
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// Do chain type checking.
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X509Certificate[] x509chain = new X509Certificate[chain.length];
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for (int i = 0; i < chain.length; i++) {
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if (!"X.509".equals(chain[i].getType())) {
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throw new KeyStoreException("Certificates must be in X.509 format: invalid cert #"
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+ i);
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}
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if (!(chain[i] instanceof X509Certificate)) {
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throw new KeyStoreException("Certificates must be in X.509 format: invalid cert #"
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+ i);
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}
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x509chain[i] = (X509Certificate) chain[i];
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}
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final byte[] userCertBytes;
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try {
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userCertBytes = x509chain[0].getEncoded();
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} catch (CertificateEncodingException e) {
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throw new KeyStoreException("Couldn't encode certificate #1", e);
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}
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/*
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* If we have a chain, store it in the CA certificate slot for this
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* alias as concatenated DER-encoded certificates. These can be
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* deserialized by {@link CertificateFactory#generateCertificates}.
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*/
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final byte[] chainBytes;
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if (chain.length > 1) {
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/*
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* The chain is passed in as {user_cert, ca_cert_1, ca_cert_2, ...}
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* so we only need the certificates starting at index 1.
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*/
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final byte[][] certsBytes = new byte[x509chain.length - 1][];
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int totalCertLength = 0;
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for (int i = 0; i < certsBytes.length; i++) {
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try {
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certsBytes[i] = x509chain[i + 1].getEncoded();
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totalCertLength += certsBytes[i].length;
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} catch (CertificateEncodingException e) {
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throw new KeyStoreException("Can't encode Certificate #" + i, e);
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}
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}
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/*
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* Serialize this into one byte array so we can later call
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* CertificateFactory#generateCertificates to recover them.
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*/
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chainBytes = new byte[totalCertLength];
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int outputOffset = 0;
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for (int i = 0; i < certsBytes.length; i++) {
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final int certLength = certsBytes[i].length;
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System.arraycopy(certsBytes[i], 0, chainBytes, outputOffset, certLength);
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outputOffset += certLength;
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certsBytes[i] = null;
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}
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} else {
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chainBytes = null;
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}
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/*
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* Make sure we clear out all the appropriate types before trying to
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* write.
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*/
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if (shouldReplacePrivateKey) {
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Credentials.deleteAllTypesForAlias(mKeyStore, alias);
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} else {
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Credentials.deleteCertificateTypesForAlias(mKeyStore, alias);
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}
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if (shouldReplacePrivateKey
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&& !mKeyStore.importKey(Credentials.USER_PRIVATE_KEY + alias, keyBytes)) {
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Credentials.deleteAllTypesForAlias(mKeyStore, alias);
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throw new KeyStoreException("Couldn't put private key in keystore");
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} else if (!mKeyStore.put(Credentials.USER_CERTIFICATE + alias, userCertBytes)) {
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Credentials.deleteAllTypesForAlias(mKeyStore, alias);
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throw new KeyStoreException("Couldn't put certificate #1 in keystore");
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} else if (chainBytes != null
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&& !mKeyStore.put(Credentials.CA_CERTIFICATE + alias, chainBytes)) {
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Credentials.deleteAllTypesForAlias(mKeyStore, alias);
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throw new KeyStoreException("Couldn't put certificate chain in keystore");
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}
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}
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@Override
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public void engineSetKeyEntry(String alias, byte[] userKey, Certificate[] chain)
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throws KeyStoreException {
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throw new RuntimeException("Operation not supported because key encoding is unknown");
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}
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@Override
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public void engineSetCertificateEntry(String alias, Certificate cert) throws KeyStoreException {
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if (isKeyEntry(alias)) {
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throw new KeyStoreException("Entry exists and is not a trusted certificate");
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}
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final byte[] encoded;
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try {
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encoded = cert.getEncoded();
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} catch (CertificateEncodingException e) {
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throw new KeyStoreException(e);
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}
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if (!mKeyStore.put(Credentials.CA_CERTIFICATE + alias, encoded)) {
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throw new KeyStoreException("Couldn't insert certificate; is KeyStore initialized?");
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}
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}
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@Override
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public void engineDeleteEntry(String alias) throws KeyStoreException {
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if (!Credentials.deleteAllTypesForAlias(mKeyStore, alias)) {
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throw new KeyStoreException("No such entry " + alias);
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}
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}
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private Set<String> getUniqueAliases() {
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final String[] rawAliases = mKeyStore.saw("");
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if (rawAliases == null) {
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return new HashSet<String>();
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}
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final Set<String> aliases = new HashSet<String>(rawAliases.length);
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for (String alias : rawAliases) {
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final int idx = alias.indexOf('_');
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if ((idx == -1) || (alias.length() <= idx)) {
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Log.e(NAME, "invalid alias: " + alias);
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continue;
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}
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aliases.add(new String(alias.substring(idx + 1)));
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}
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return aliases;
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}
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@Override
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public Enumeration<String> engineAliases() {
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return Collections.enumeration(getUniqueAliases());
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}
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@Override
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public boolean engineContainsAlias(String alias) {
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return mKeyStore.contains(Credentials.USER_PRIVATE_KEY + alias)
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|| mKeyStore.contains(Credentials.USER_CERTIFICATE + alias)
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|| mKeyStore.contains(Credentials.CA_CERTIFICATE + alias);
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}
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@Override
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public int engineSize() {
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return getUniqueAliases().size();
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}
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@Override
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public boolean engineIsKeyEntry(String alias) {
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return isKeyEntry(alias);
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}
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private boolean isKeyEntry(String alias) {
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return mKeyStore.contains(Credentials.USER_PRIVATE_KEY + alias);
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}
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@Override
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public boolean engineIsCertificateEntry(String alias) {
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return !isKeyEntry(alias) && mKeyStore.contains(Credentials.CA_CERTIFICATE + alias);
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}
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@Override
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public String engineGetCertificateAlias(Certificate cert) {
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if (cert == null) {
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return null;
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}
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final Set<String> nonCaEntries = new HashSet<String>();
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/*
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* First scan the PrivateKeyEntry types. The KeyStoreSpi documentation
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* says to only compare the first certificate in the chain which is
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* equivalent to the USER_CERTIFICATE prefix for the Android keystore
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* convention.
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*/
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final String[] certAliases = mKeyStore.saw(Credentials.USER_CERTIFICATE);
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for (String alias : certAliases) {
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final byte[] certBytes = mKeyStore.get(Credentials.USER_CERTIFICATE + alias);
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if (certBytes == null) {
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continue;
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}
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final Certificate c = toCertificate(certBytes);
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nonCaEntries.add(alias);
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if (cert.equals(c)) {
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return alias;
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}
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}
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/*
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* Look at all the TrustedCertificateEntry types. Skip all the
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* PrivateKeyEntry we looked at above.
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*/
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final String[] caAliases = mKeyStore.saw(Credentials.CA_CERTIFICATE);
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for (String alias : caAliases) {
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if (nonCaEntries.contains(alias)) {
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continue;
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}
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final byte[] certBytes = mKeyStore.get(Credentials.CA_CERTIFICATE + alias);
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if (certBytes == null) {
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continue;
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}
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final Certificate c = toCertificate(mKeyStore.get(Credentials.CA_CERTIFICATE + alias));
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if (cert.equals(c)) {
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return alias;
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}
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}
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return null;
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}
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@Override
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public void engineStore(OutputStream stream, char[] password) throws IOException,
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NoSuchAlgorithmException, CertificateException {
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throw new UnsupportedOperationException("Can not serialize AndroidKeyStore to OutputStream");
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}
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@Override
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public void engineLoad(InputStream stream, char[] password) throws IOException,
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NoSuchAlgorithmException, CertificateException {
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if (stream != null) {
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throw new IllegalArgumentException("InputStream not supported");
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}
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if (password != null) {
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throw new IllegalArgumentException("password not supported");
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}
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// Unfortunate name collision.
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mKeyStore = android.security.KeyStore.getInstance();
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}
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}
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