250 lines
7.6 KiB
Java
250 lines
7.6 KiB
Java
package eu.siacs.conversations.crypto.axolotl;
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import android.util.Base64;
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import android.util.Log;
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import java.security.InvalidAlgorithmParameterException;
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import java.security.InvalidKeyException;
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import java.security.NoSuchAlgorithmException;
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import java.security.NoSuchProviderException;
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import java.security.SecureRandom;
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import java.util.HashMap;
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import java.util.List;
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import java.util.Map;
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import javax.crypto.BadPaddingException;
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import javax.crypto.Cipher;
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import javax.crypto.IllegalBlockSizeException;
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import javax.crypto.KeyGenerator;
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import javax.crypto.NoSuchPaddingException;
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import javax.crypto.SecretKey;
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import javax.crypto.spec.IvParameterSpec;
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import javax.crypto.spec.SecretKeySpec;
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import eu.siacs.conversations.Config;
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import eu.siacs.conversations.xml.Element;
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import eu.siacs.conversations.xmpp.jid.Jid;
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public class XmppAxolotlMessage {
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public static final String CONTAINERTAG = "encrypted";
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public static final String HEADER = "header";
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public static final String SOURCEID = "sid";
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public static final String KEYTAG = "key";
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public static final String REMOTEID = "rid";
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public static final String IVTAG = "iv";
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public static final String PAYLOAD = "payload";
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private static final String KEYTYPE = "AES";
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private static final String CIPHERMODE = "AES/GCM/NoPadding";
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private static final String PROVIDER = "BC";
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private byte[] innerKey;
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private byte[] ciphertext = null;
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private byte[] iv = null;
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private final Map<Integer, byte[]> keys;
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private final Jid from;
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private final int sourceDeviceId;
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public static class XmppAxolotlPlaintextMessage {
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private final String plaintext;
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private final String fingerprint;
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public XmppAxolotlPlaintextMessage(String plaintext, String fingerprint) {
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this.plaintext = plaintext;
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this.fingerprint = fingerprint;
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}
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public String getPlaintext() {
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return plaintext;
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}
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public String getFingerprint() {
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return fingerprint;
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}
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}
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public static class XmppAxolotlKeyTransportMessage {
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private final String fingerprint;
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private final byte[] key;
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private final byte[] iv;
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public XmppAxolotlKeyTransportMessage(String fingerprint, byte[] key, byte[] iv) {
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this.fingerprint = fingerprint;
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this.key = key;
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this.iv = iv;
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}
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public String getFingerprint() {
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return fingerprint;
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}
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public byte[] getKey() {
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return key;
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}
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public byte[] getIv() {
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return iv;
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}
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}
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private XmppAxolotlMessage(final Element axolotlMessage, final Jid from) throws IllegalArgumentException {
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this.from = from;
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Element header = axolotlMessage.findChild(HEADER);
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this.sourceDeviceId = Integer.parseInt(header.getAttribute(SOURCEID));
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List<Element> keyElements = header.getChildren();
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this.keys = new HashMap<>(keyElements.size());
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for (Element keyElement : keyElements) {
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switch (keyElement.getName()) {
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case KEYTAG:
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try {
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Integer recipientId = Integer.parseInt(keyElement.getAttribute(REMOTEID));
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byte[] key = Base64.decode(keyElement.getContent(), Base64.DEFAULT);
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this.keys.put(recipientId, key);
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} catch (NumberFormatException e) {
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throw new IllegalArgumentException(e);
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}
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break;
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case IVTAG:
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if (this.iv != null) {
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throw new IllegalArgumentException("Duplicate iv entry");
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}
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iv = Base64.decode(keyElement.getContent(), Base64.DEFAULT);
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break;
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default:
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Log.w(Config.LOGTAG, "Unexpected element in header: " + keyElement.toString());
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break;
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}
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}
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Element payloadElement = axolotlMessage.findChild(PAYLOAD);
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if (payloadElement != null) {
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ciphertext = Base64.decode(payloadElement.getContent(), Base64.DEFAULT);
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}
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}
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public XmppAxolotlMessage(Jid from, int sourceDeviceId) {
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this.from = from;
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this.sourceDeviceId = sourceDeviceId;
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this.keys = new HashMap<>();
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this.iv = generateIv();
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this.innerKey = generateKey();
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}
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public static XmppAxolotlMessage fromElement(Element element, Jid from) {
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return new XmppAxolotlMessage(element, from);
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}
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private static byte[] generateKey() {
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try {
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KeyGenerator generator = KeyGenerator.getInstance(KEYTYPE);
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generator.init(128);
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return generator.generateKey().getEncoded();
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} catch (NoSuchAlgorithmException e) {
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Log.e(Config.LOGTAG, e.getMessage());
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return null;
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}
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}
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private static byte[] generateIv() {
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SecureRandom random = new SecureRandom();
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byte[] iv = new byte[16];
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random.nextBytes(iv);
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return iv;
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}
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public void encrypt(String plaintext) throws CryptoFailedException {
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try {
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SecretKey secretKey = new SecretKeySpec(innerKey, KEYTYPE);
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IvParameterSpec ivSpec = new IvParameterSpec(iv);
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Cipher cipher = Cipher.getInstance(CIPHERMODE, PROVIDER);
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cipher.init(Cipher.ENCRYPT_MODE, secretKey, ivSpec);
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this.innerKey = secretKey.getEncoded();
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this.ciphertext = cipher.doFinal(plaintext.getBytes());
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} catch (NoSuchAlgorithmException | NoSuchPaddingException | InvalidKeyException
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| IllegalBlockSizeException | BadPaddingException | NoSuchProviderException
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| InvalidAlgorithmParameterException e) {
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throw new CryptoFailedException(e);
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}
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}
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public Jid getFrom() {
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return this.from;
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}
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public int getSenderDeviceId() {
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return sourceDeviceId;
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}
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public byte[] getCiphertext() {
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return ciphertext;
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}
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public void addDevice(XmppAxolotlSession session) {
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byte[] key = session.processSending(innerKey);
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if (key != null) {
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keys.put(session.getRemoteAddress().getDeviceId(), key);
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}
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}
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public byte[] getInnerKey() {
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return innerKey;
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}
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public byte[] getIV() {
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return this.iv;
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}
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public Element toElement() {
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Element encryptionElement = new Element(CONTAINERTAG, AxolotlService.PEP_PREFIX);
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Element headerElement = encryptionElement.addChild(HEADER);
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headerElement.setAttribute(SOURCEID, sourceDeviceId);
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for (Map.Entry<Integer, byte[]> keyEntry : keys.entrySet()) {
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Element keyElement = new Element(KEYTAG);
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keyElement.setAttribute(REMOTEID, keyEntry.getKey());
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keyElement.setContent(Base64.encodeToString(keyEntry.getValue(), Base64.DEFAULT));
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headerElement.addChild(keyElement);
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}
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headerElement.addChild(IVTAG).setContent(Base64.encodeToString(iv, Base64.DEFAULT));
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if (ciphertext != null) {
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Element payload = encryptionElement.addChild(PAYLOAD);
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payload.setContent(Base64.encodeToString(ciphertext, Base64.DEFAULT));
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}
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return encryptionElement;
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}
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private byte[] unpackKey(XmppAxolotlSession session, Integer sourceDeviceId) {
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byte[] encryptedKey = keys.get(sourceDeviceId);
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return (encryptedKey != null) ? session.processReceiving(encryptedKey) : null;
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}
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public XmppAxolotlKeyTransportMessage getParameters(XmppAxolotlSession session, Integer sourceDeviceId) {
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byte[] key = unpackKey(session, sourceDeviceId);
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return (key != null)
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? new XmppAxolotlKeyTransportMessage(session.getFingerprint(), key, getIV())
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: null;
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}
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public XmppAxolotlPlaintextMessage decrypt(XmppAxolotlSession session, Integer sourceDeviceId) throws CryptoFailedException {
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XmppAxolotlPlaintextMessage plaintextMessage = null;
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byte[] key = unpackKey(session, sourceDeviceId);
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if (key != null) {
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try {
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Cipher cipher = Cipher.getInstance(CIPHERMODE, PROVIDER);
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SecretKeySpec keySpec = new SecretKeySpec(key, KEYTYPE);
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IvParameterSpec ivSpec = new IvParameterSpec(iv);
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cipher.init(Cipher.DECRYPT_MODE, keySpec, ivSpec);
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String plaintext = new String(cipher.doFinal(ciphertext));
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plaintextMessage = new XmppAxolotlPlaintextMessage(plaintext, session.getFingerprint());
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} catch (NoSuchAlgorithmException | NoSuchPaddingException | InvalidKeyException
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| InvalidAlgorithmParameterException | IllegalBlockSizeException
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| BadPaddingException | NoSuchProviderException e) {
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throw new CryptoFailedException(e);
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}
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}
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return plaintextMessage;
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}
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}
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