243 lines
11 KiB
Java
243 lines
11 KiB
Java
/*
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* Copyright 2018 Paul Schaub.
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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 org.pgpainless.pgpainless.decryption_verification;
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import java.io.IOException;
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import java.io.InputStream;
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import java.util.Collections;
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import java.util.HashMap;
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import java.util.HashSet;
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import java.util.Iterator;
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import java.util.Map;
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import java.util.Set;
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import java.util.logging.Level;
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import java.util.logging.Logger;
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import org.bouncycastle.openpgp.PGPCompressedData;
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import org.bouncycastle.openpgp.PGPEncryptedDataList;
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import org.bouncycastle.openpgp.PGPException;
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import org.bouncycastle.openpgp.PGPLiteralData;
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import org.bouncycastle.openpgp.PGPObjectFactory;
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import org.bouncycastle.openpgp.PGPOnePassSignature;
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import org.bouncycastle.openpgp.PGPOnePassSignatureList;
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import org.bouncycastle.openpgp.PGPPrivateKey;
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import org.bouncycastle.openpgp.PGPPublicKey;
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import org.bouncycastle.openpgp.PGPPublicKeyEncryptedData;
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import org.bouncycastle.openpgp.PGPPublicKeyRing;
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import org.bouncycastle.openpgp.PGPSecretKey;
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import org.bouncycastle.openpgp.PGPSecretKeyRingCollection;
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import org.bouncycastle.openpgp.PGPUtil;
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import org.bouncycastle.openpgp.operator.KeyFingerPrintCalculator;
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import org.bouncycastle.openpgp.operator.PGPContentVerifierBuilderProvider;
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import org.bouncycastle.openpgp.operator.PublicKeyDataDecryptorFactory;
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import org.bouncycastle.openpgp.operator.bc.BcKeyFingerprintCalculator;
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import org.bouncycastle.openpgp.operator.bc.BcPGPContentVerifierBuilderProvider;
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import org.bouncycastle.openpgp.operator.bc.BcPublicKeyDataDecryptorFactory;
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import org.pgpainless.pgpainless.algorithm.CompressionAlgorithm;
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import org.pgpainless.pgpainless.algorithm.SymmetricKeyAlgorithm;
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import org.pgpainless.pgpainless.key.SecretKeyRingProtector;
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public final class DecryptionStreamFactory {
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private static final Logger LOGGER = Logger.getLogger(DecryptionStreamFactory.class.getName());
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private static final Level LEVEL = Level.FINE;
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private final PGPSecretKeyRingCollection decryptionKeys;
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private final SecretKeyRingProtector decryptionKeyDecryptor;
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private final Set<PGPPublicKeyRing> verificationKeys = new HashSet<>();
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private final MissingPublicKeyCallback missingPublicKeyCallback;
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private final PainlessResult.Builder resultBuilder = PainlessResult.getBuilder();
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private final PGPContentVerifierBuilderProvider verifierBuilderProvider = new BcPGPContentVerifierBuilderProvider();
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private final KeyFingerPrintCalculator fingerCalc = new BcKeyFingerprintCalculator();
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private final Map<Long, PGPOnePassSignature> verifiableOnePassSignatures = new HashMap<>();
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private DecryptionStreamFactory(PGPSecretKeyRingCollection decryptionKeys,
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SecretKeyRingProtector decryptor,
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Set<PGPPublicKeyRing> verificationKeys,
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MissingPublicKeyCallback missingPublicKeyCallback) {
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this.decryptionKeys = decryptionKeys;
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this.decryptionKeyDecryptor = decryptor;
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this.verificationKeys.addAll(verificationKeys != null ? verificationKeys : Collections.emptyList());
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this.missingPublicKeyCallback = missingPublicKeyCallback;
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}
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public static DecryptionStream create(InputStream inputStream,
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PGPSecretKeyRingCollection decryptionKeys,
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SecretKeyRingProtector decryptor,
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Set<PGPPublicKeyRing> verificationKeys,
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MissingPublicKeyCallback missingPublicKeyCallback)
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throws IOException, PGPException {
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DecryptionStreamFactory factory = new DecryptionStreamFactory(decryptionKeys,
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decryptor,
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verificationKeys,
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missingPublicKeyCallback);
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PGPObjectFactory objectFactory = new PGPObjectFactory(
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PGPUtil.getDecoderStream(inputStream), new BcKeyFingerprintCalculator());
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return new DecryptionStream(factory.wrap(objectFactory), factory.resultBuilder);
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}
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private InputStream wrap(PGPObjectFactory objectFactory) throws IOException, PGPException {
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Object pgpObj;
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while ((pgpObj = objectFactory.nextObject()) != null) {
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if (pgpObj instanceof PGPEncryptedDataList) {
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LOGGER.log(LEVEL, "Encountered PGPEncryptedDataList");
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PGPEncryptedDataList encDataList = (PGPEncryptedDataList) pgpObj;
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InputStream nextStream = decrypt(encDataList);
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objectFactory = new PGPObjectFactory(PGPUtil.getDecoderStream(nextStream), fingerCalc);
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return wrap(objectFactory);
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}
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if (pgpObj instanceof PGPCompressedData) {
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PGPCompressedData compressedData = (PGPCompressedData) pgpObj;
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InputStream nextStream = compressedData.getDataStream();
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resultBuilder.setCompressionAlgorithm(CompressionAlgorithm.fromId(compressedData.getAlgorithm()));
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objectFactory = new PGPObjectFactory(PGPUtil.getDecoderStream(nextStream), fingerCalc);
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LOGGER.log(LEVEL, "Encountered PGPCompressedData: " +
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CompressionAlgorithm.fromId(compressedData.getAlgorithm()));
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return wrap(objectFactory);
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}
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if (pgpObj instanceof PGPOnePassSignatureList) {
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PGPOnePassSignatureList onePassSignatures = (PGPOnePassSignatureList) pgpObj;
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LOGGER.log(LEVEL, "Encountered PGPOnePassSignatureList of size " + onePassSignatures.size());
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initOnePassSignatures(onePassSignatures);
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return wrap(objectFactory);
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}
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if (pgpObj instanceof PGPLiteralData) {
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LOGGER.log(LEVEL, "Found PGPLiteralData");
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PGPLiteralData literalData = (PGPLiteralData) pgpObj;
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InputStream literalDataInputStream = literalData.getInputStream();
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if (verifiableOnePassSignatures.isEmpty()) {
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LOGGER.log(LEVEL, "No OnePassSignatures found -> We are done");
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return literalDataInputStream;
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}
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return new SignatureVerifyingInputStream(literalDataInputStream,
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objectFactory, verifiableOnePassSignatures, resultBuilder);
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}
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}
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throw new PGPException("No Literal Data Packet found");
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}
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private InputStream decrypt(PGPEncryptedDataList encryptedDataList)
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throws PGPException {
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Iterator<?> iterator = encryptedDataList.getEncryptedDataObjects();
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if (!iterator.hasNext()) {
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throw new PGPException("Decryption failed - EncryptedDataList has no items");
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}
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PGPPrivateKey decryptionKey = null;
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PGPPublicKeyEncryptedData encryptedSessionKey = null;
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while (iterator.hasNext()) {
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PGPPublicKeyEncryptedData encryptedData = (PGPPublicKeyEncryptedData) iterator.next();
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long keyId = encryptedData.getKeyID();
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resultBuilder.addRecipientKeyId(keyId);
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LOGGER.log(LEVEL, "PGPEncryptedData is encrypted for key " + Long.toHexString(keyId));
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PGPSecretKey secretKey = decryptionKeys.getSecretKey(keyId);
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if (secretKey != null) {
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LOGGER.log(LEVEL, "Found respective secret key " + Long.toHexString(keyId));
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encryptedSessionKey = encryptedData;
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decryptionKey = secretKey.extractPrivateKey(decryptionKeyDecryptor.getDecryptor(keyId));
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resultBuilder.setDecryptionKeyId(keyId);
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}
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}
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if (decryptionKey == null) {
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throw new PGPException("Decryption failed - No suitable decryption key found");
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}
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PublicKeyDataDecryptorFactory keyDecryptor = new BcPublicKeyDataDecryptorFactory(decryptionKey);
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SymmetricKeyAlgorithm symmetricKeyAlgorithm = SymmetricKeyAlgorithm
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.fromId(encryptedSessionKey.getSymmetricAlgorithm(keyDecryptor));
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LOGGER.log(LEVEL, "Message is encrypted using " + symmetricKeyAlgorithm);
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resultBuilder.setSymmetricKeyAlgorithm(symmetricKeyAlgorithm);
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if (encryptedSessionKey.isIntegrityProtected()) {
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LOGGER.log(LEVEL, "Message is integrity protected");
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resultBuilder.setIntegrityProtected(true);
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} else {
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LOGGER.log(LEVEL, "Message is not integrity protected");
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resultBuilder.setIntegrityProtected(false);
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}
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InputStream decryptionStream = encryptedSessionKey.getDataStream(keyDecryptor);
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return decryptionStream;
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}
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private void initOnePassSignatures(PGPOnePassSignatureList onePassSignatureList) throws PGPException {
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Iterator<PGPOnePassSignature> iterator = onePassSignatureList.iterator();
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if (!iterator.hasNext()) {
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throw new PGPException("Verification failed - No OnePassSignatures found");
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}
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while (iterator.hasNext()) {
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PGPOnePassSignature signature = iterator.next();
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final long keyId = signature.getKeyID();
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resultBuilder.addSignatureKeyId(keyId);
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LOGGER.log(LEVEL, "Message contains OnePassSignature from " + Long.toHexString(keyId));
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// Find public key
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PGPPublicKey verificationKey = null;
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for (PGPPublicKeyRing publicKeyRing : verificationKeys) {
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verificationKey = publicKeyRing.getPublicKey(keyId);
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if (verificationKey != null) {
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LOGGER.log(LEVEL, "Found respective public key " + Long.toHexString(keyId));
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break;
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}
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}
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if (verificationKey == null) {
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LOGGER.log(Level.INFO, "No public key for signature of " + Long.toHexString(keyId) + " found.");
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if (missingPublicKeyCallback == null) {
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LOGGER.log(Level.INFO, "Skip signature of " + Long.toHexString(keyId));
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continue;
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}
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PGPPublicKey missingPublicKey = missingPublicKeyCallback.onMissingPublicKeyEncountered(keyId);
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if (missingPublicKey == null) {
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LOGGER.log(Level.INFO, "Skip signature of " + Long.toHexString(keyId));
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continue;
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}
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if (missingPublicKey.getKeyID() != keyId) {
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throw new IllegalArgumentException("KeyID of the provided public key differs from the signatures keyId. " +
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"The signature was created from " + Long.toHexString(keyId) + " while the provided key has ID " +
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Long.toHexString(missingPublicKey.getKeyID()));
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}
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verificationKey = missingPublicKey;
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}
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signature.init(verifierBuilderProvider, verificationKey);
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verifiableOnePassSignatures.put(keyId, signature);
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}
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}
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}
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