We're switching from OpenSSL to BoringSSL which does not support DSA. Bug: 17409664 Change-Id: Id9b52666ba9ef234076105c925610b5b312988a5
468 lines
16 KiB
Java
468 lines
16 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 com.android.org.conscrypt.NativeCrypto;
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import android.content.Context;
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import android.text.TextUtils;
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import java.math.BigInteger;
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import java.security.NoSuchAlgorithmException;
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import java.security.PrivateKey;
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import java.security.cert.Certificate;
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import java.security.spec.AlgorithmParameterSpec;
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import java.security.spec.RSAKeyGenParameterSpec;
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import java.util.Date;
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import javax.security.auth.x500.X500Principal;
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/**
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* This provides the required parameters needed for initializing the
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* {@code KeyPairGenerator} that works with
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* <a href="{@docRoot}training/articles/keystore.html">Android KeyStore
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* facility</a>. The Android KeyStore facility is accessed through a
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* {@link java.security.KeyPairGenerator} API using the {@code AndroidKeyStore}
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* provider. The {@code context} passed in may be used to pop up some UI to ask
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* the user to unlock or initialize the Android KeyStore facility.
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* <p>
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* After generation, the {@code keyStoreAlias} is used with the
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* {@link java.security.KeyStore#getEntry(String, java.security.KeyStore.ProtectionParameter)}
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* interface to retrieve the {@link PrivateKey} and its associated
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* {@link Certificate} chain.
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* <p>
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* The KeyPair generator will create a self-signed certificate with the subject
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* as its X.509v3 Subject Distinguished Name and as its X.509v3 Issuer
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* Distinguished Name along with the other parameters specified with the
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* {@link Builder}.
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* <p>
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* The self-signed X.509 certificate may be replaced at a later time by a
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* certificate signed by a real Certificate Authority.
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*/
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public final class KeyPairGeneratorSpec implements AlgorithmParameterSpec {
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/*
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* These must be kept in sync with system/security/keystore/defaults.h
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*/
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/* EC */
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private static final int EC_DEFAULT_KEY_SIZE = 256;
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private static final int EC_MIN_KEY_SIZE = 192;
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private static final int EC_MAX_KEY_SIZE = 521;
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/* RSA */
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private static final int RSA_DEFAULT_KEY_SIZE = 2048;
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private static final int RSA_MIN_KEY_SIZE = 512;
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private static final int RSA_MAX_KEY_SIZE = 8192;
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private final Context mContext;
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private final String mKeystoreAlias;
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private final String mKeyType;
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private final int mKeySize;
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private final AlgorithmParameterSpec mSpec;
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private final X500Principal mSubjectDN;
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private final BigInteger mSerialNumber;
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private final Date mStartDate;
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private final Date mEndDate;
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private final int mFlags;
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/**
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* Parameter specification for the "{@code AndroidKeyPairGenerator}"
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* instance of the {@link java.security.KeyPairGenerator} API. The
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* {@code context} passed in may be used to pop up some UI to ask the user
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* to unlock or initialize the Android keystore facility.
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* <p>
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* After generation, the {@code keyStoreAlias} is used with the
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* {@link java.security.KeyStore#getEntry(String, java.security.KeyStore.ProtectionParameter)}
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* interface to retrieve the {@link PrivateKey} and its associated
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* {@link Certificate} chain.
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* <p>
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* The KeyPair generator will create a self-signed certificate with the
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* properties of {@code subjectDN} as its X.509v3 Subject Distinguished Name
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* and as its X.509v3 Issuer Distinguished Name, using the specified
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* {@code serialNumber}, and the validity date starting at {@code startDate}
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* and ending at {@code endDate}.
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*
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* @param context Android context for the activity
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* @param keyStoreAlias name to use for the generated key in the Android
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* keystore
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* @param keyType key algorithm to use (EC, RSA)
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* @param keySize size of key to generate
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* @param spec the underlying key type parameters
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* @param subjectDN X.509 v3 Subject Distinguished Name
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* @param serialNumber X509 v3 certificate serial number
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* @param startDate the start of the self-signed certificate validity period
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* @param endDate the end date of the self-signed certificate validity
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* period
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* @throws IllegalArgumentException when any argument is {@code null} or
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* {@code endDate} is before {@code startDate}.
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* @hide should be built with KeyPairGeneratorSpecBuilder
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*/
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public KeyPairGeneratorSpec(Context context, String keyStoreAlias, String keyType, int keySize,
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AlgorithmParameterSpec spec, X500Principal subjectDN, BigInteger serialNumber,
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Date startDate, Date endDate, int flags) {
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if (context == null) {
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throw new IllegalArgumentException("context == null");
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} else if (TextUtils.isEmpty(keyStoreAlias)) {
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throw new IllegalArgumentException("keyStoreAlias must not be empty");
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} else if (subjectDN == null) {
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throw new IllegalArgumentException("subjectDN == null");
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} else if (serialNumber == null) {
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throw new IllegalArgumentException("serialNumber == null");
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} else if (startDate == null) {
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throw new IllegalArgumentException("startDate == null");
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} else if (endDate == null) {
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throw new IllegalArgumentException("endDate == null");
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} else if (endDate.before(startDate)) {
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throw new IllegalArgumentException("endDate < startDate");
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}
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final int keyTypeInt = KeyStore.getKeyTypeForAlgorithm(keyType);
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if (keySize == -1) {
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keySize = getDefaultKeySizeForType(keyTypeInt);
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}
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checkCorrectParametersSpec(keyTypeInt, keySize, spec);
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checkValidKeySize(keyTypeInt, keySize);
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mContext = context;
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mKeystoreAlias = keyStoreAlias;
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mKeyType = keyType;
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mKeySize = keySize;
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mSpec = spec;
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mSubjectDN = subjectDN;
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mSerialNumber = serialNumber;
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mStartDate = startDate;
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mEndDate = endDate;
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mFlags = flags;
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}
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private static int getDefaultKeySizeForType(int keyType) {
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if (keyType == NativeCrypto.EVP_PKEY_EC) {
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return EC_DEFAULT_KEY_SIZE;
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} else if (keyType == NativeCrypto.EVP_PKEY_RSA) {
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return RSA_DEFAULT_KEY_SIZE;
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}
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throw new IllegalArgumentException("Invalid key type " + keyType);
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}
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private static void checkValidKeySize(int keyType, int keySize) {
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if (keyType == NativeCrypto.EVP_PKEY_EC) {
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if (keySize < EC_MIN_KEY_SIZE || keySize > EC_MAX_KEY_SIZE) {
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throw new IllegalArgumentException("EC keys must be >= " + EC_MIN_KEY_SIZE
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+ " and <= " + EC_MAX_KEY_SIZE);
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}
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} else if (keyType == NativeCrypto.EVP_PKEY_RSA) {
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if (keySize < RSA_MIN_KEY_SIZE || keySize > RSA_MAX_KEY_SIZE) {
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throw new IllegalArgumentException("RSA keys must be >= " + RSA_MIN_KEY_SIZE
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+ " and <= " + RSA_MAX_KEY_SIZE);
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}
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} else {
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throw new IllegalArgumentException("Invalid key type " + keyType);
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}
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}
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private static void checkCorrectParametersSpec(int keyType, int keySize,
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AlgorithmParameterSpec spec) {
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if (keyType == NativeCrypto.EVP_PKEY_RSA && spec != null) {
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if (spec instanceof RSAKeyGenParameterSpec) {
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RSAKeyGenParameterSpec rsaSpec = (RSAKeyGenParameterSpec) spec;
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if (keySize != -1 && keySize != rsaSpec.getKeysize()) {
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throw new IllegalArgumentException("RSA key size must match: " + keySize
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+ " vs " + rsaSpec.getKeysize());
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}
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} else {
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throw new IllegalArgumentException("RSA may only use RSAKeyGenParameterSpec");
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}
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}
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}
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/**
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* Gets the Android context used for operations with this instance.
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*/
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public Context getContext() {
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return mContext;
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}
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/**
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* Returns the alias that will be used in the {@code java.security.KeyStore}
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* in conjunction with the {@code AndroidKeyStore}.
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*/
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public String getKeystoreAlias() {
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return mKeystoreAlias;
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}
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/**
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* Returns the key type (e.g., "EC", "RSA") specified by this parameter.
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*/
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public String getKeyType() {
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return mKeyType;
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}
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/**
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* Returns the key size specified by this parameter. For instance, for RSA
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* this will return the modulus size and for EC it will return the field
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* size.
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*/
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public int getKeySize() {
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return mKeySize;
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}
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/**
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* Returns the {@link AlgorithmParameterSpec} that will be used for creation
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* of the key pair.
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*/
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public AlgorithmParameterSpec getAlgorithmParameterSpec() {
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return mSpec;
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}
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/**
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* Gets the subject distinguished name to be used on the X.509 certificate
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* that will be put in the {@link java.security.KeyStore}.
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*/
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public X500Principal getSubjectDN() {
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return mSubjectDN;
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}
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/**
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* Gets the serial number to be used on the X.509 certificate that will be
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* put in the {@link java.security.KeyStore}.
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*/
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public BigInteger getSerialNumber() {
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return mSerialNumber;
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}
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/**
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* Gets the start date to be used on the X.509 certificate that will be put
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* in the {@link java.security.KeyStore}.
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*/
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public Date getStartDate() {
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return mStartDate;
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}
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/**
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* Gets the end date to be used on the X.509 certificate that will be put in
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* the {@link java.security.KeyStore}.
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*/
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public Date getEndDate() {
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return mEndDate;
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}
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/**
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* @hide
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*/
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int getFlags() {
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return mFlags;
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}
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/**
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* Returns {@code true} if this parameter will require generated keys to be
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* encrypted in the {@link java.security.KeyStore}.
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*/
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public boolean isEncryptionRequired() {
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return (mFlags & KeyStore.FLAG_ENCRYPTED) != 0;
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}
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/**
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* Builder class for {@link KeyPairGeneratorSpec} objects.
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* <p>
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* This will build a parameter spec for use with the <a href="{@docRoot}
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* training/articles/keystore.html">Android KeyStore facility</a>.
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* <p>
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* The required fields must be filled in with the builder.
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* <p>
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* Example:
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*
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* <pre class="prettyprint">
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* Calendar start = new Calendar();
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* Calendar end = new Calendar();
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* end.add(1, Calendar.YEAR);
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*
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* KeyPairGeneratorSpec spec =
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* new KeyPairGeneratorSpec.Builder(mContext).setAlias("myKey")
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* .setSubject(new X500Principal("CN=myKey")).setSerial(BigInteger.valueOf(1337))
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* .setStartDate(start.getTime()).setEndDate(end.getTime()).build();
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* </pre>
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*/
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public final static class Builder {
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private final Context mContext;
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private String mKeystoreAlias;
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private String mKeyType = "RSA";
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private int mKeySize = -1;
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private AlgorithmParameterSpec mSpec;
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private X500Principal mSubjectDN;
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private BigInteger mSerialNumber;
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private Date mStartDate;
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private Date mEndDate;
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private int mFlags;
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/**
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* Creates a new instance of the {@code Builder} with the given
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* {@code context}. The {@code context} passed in may be used to pop up
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* some UI to ask the user to unlock or initialize the Android KeyStore
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* facility.
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*/
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public Builder(Context context) {
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if (context == null) {
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throw new NullPointerException("context == null");
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}
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mContext = context;
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}
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/**
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* Sets the alias to be used to retrieve the key later from a
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* {@link java.security.KeyStore} instance using the
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* {@code AndroidKeyStore} provider.
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*/
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public Builder setAlias(String alias) {
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if (alias == null) {
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throw new NullPointerException("alias == null");
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}
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mKeystoreAlias = alias;
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return this;
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}
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/**
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* Sets the key type (e.g., EC, RSA) of the keypair to be created.
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*/
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public Builder setKeyType(String keyType) throws NoSuchAlgorithmException {
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if (keyType == null) {
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throw new NullPointerException("keyType == null");
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} else {
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try {
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KeyStore.getKeyTypeForAlgorithm(keyType);
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} catch (IllegalArgumentException e) {
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throw new NoSuchAlgorithmException("Unsupported key type: " + keyType);
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}
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}
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mKeyType = keyType;
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return this;
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}
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/**
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* Sets the key size for the keypair to be created. For instance, for a
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* key type of RSA this will set the modulus size and for a key type of
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* EC it will select a curve with a matching field size.
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*/
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public Builder setKeySize(int keySize) {
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if (keySize < 0) {
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throw new IllegalArgumentException("keySize < 0");
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}
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mKeySize = keySize;
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return this;
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}
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/**
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* Sets the algorithm-specific key generation parameters. For example, for RSA keys
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* this may be an instance of {@link java.security.spec.RSAKeyGenParameterSpec}.
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*/
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public Builder setAlgorithmParameterSpec(AlgorithmParameterSpec spec) {
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if (spec == null) {
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throw new NullPointerException("spec == null");
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}
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mSpec = spec;
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return this;
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}
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/**
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* Sets the subject used for the self-signed certificate of the
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* generated key pair.
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*/
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public Builder setSubject(X500Principal subject) {
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if (subject == null) {
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throw new NullPointerException("subject == null");
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}
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mSubjectDN = subject;
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return this;
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}
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/**
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* Sets the serial number used for the self-signed certificate of the
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* generated key pair.
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*/
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public Builder setSerialNumber(BigInteger serialNumber) {
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if (serialNumber == null) {
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throw new NullPointerException("serialNumber == null");
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}
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mSerialNumber = serialNumber;
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return this;
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}
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/**
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* Sets the start of the validity period for the self-signed certificate
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* of the generated key pair.
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*/
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public Builder setStartDate(Date startDate) {
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if (startDate == null) {
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throw new NullPointerException("startDate == null");
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}
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mStartDate = startDate;
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return this;
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}
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/**
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* Sets the end of the validity period for the self-signed certificate
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* of the generated key pair.
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*/
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public Builder setEndDate(Date endDate) {
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if (endDate == null) {
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throw new NullPointerException("endDate == null");
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}
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mEndDate = endDate;
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return this;
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}
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/**
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* Indicates that this key must be encrypted at rest on storage. Note
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* that enabling this will require that the user enable a strong lock
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* screen (e.g., PIN, password) before creating or using the generated
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* key is successful.
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*/
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public Builder setEncryptionRequired() {
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mFlags |= KeyStore.FLAG_ENCRYPTED;
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return this;
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}
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/**
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* Builds the instance of the {@code KeyPairGeneratorSpec}.
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*
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* @throws IllegalArgumentException if a required field is missing
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* @return built instance of {@code KeyPairGeneratorSpec}
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*/
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public KeyPairGeneratorSpec build() {
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return new KeyPairGeneratorSpec(mContext, mKeystoreAlias, mKeyType, mKeySize, mSpec,
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mSubjectDN, mSerialNumber, mStartDate, mEndDate, mFlags);
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}
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}
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}
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