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https://github.com/pgpainless/pgpainless.git
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This commit is contained in:
parent
04ada88188
commit
3f09fa0cc7
9 changed files with 163 additions and 103 deletions
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@ -59,6 +59,10 @@ public abstract class ImplementationFactory {
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public abstract PBESecretKeyDecryptor getPBESecretKeyDecryptor(Passphrase passphrase) throws PGPException;
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public PGPDigestCalculator getV4FingerprintCalculator() throws PGPException {
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return getPGPDigestCalculator(HashAlgorithm.SHA1);
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}
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public PGPDigestCalculator getPGPDigestCalculator(HashAlgorithm algorithm) throws PGPException {
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return getPGPDigestCalculator(algorithm.getAlgorithmId());
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}
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@ -41,6 +41,7 @@ import org.pgpainless.algorithm.SignatureType;
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import org.pgpainless.algorithm.SymmetricKeyAlgorithm;
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import org.pgpainless.implementation.ImplementationFactory;
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import org.pgpainless.key.generation.type.KeyType;
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import org.pgpainless.key.protection.SecretKeyRingProtector;
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import org.pgpainless.key.protection.UnlockSecretKey;
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import org.pgpainless.provider.ProviderFactory;
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import org.pgpainless.signature.subpackets.SignatureSubpacketGeneratorUtil;
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@ -52,13 +53,13 @@ public class KeyRingBuilder implements KeyRingBuilderInterface<KeyRingBuilder> {
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private final Charset UTF8 = Charset.forName("UTF-8");
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private PGPSignatureGenerator signatureGenerator;
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private PGPDigestCalculator digestCalculator;
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private PGPDigestCalculator keyFingerprintCalculator;
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private PBESecretKeyEncryptor secretKeyEncryptor;
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private KeySpec primaryKeySpec;
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private final List<KeySpec> subkeySpecs = new ArrayList<>();
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private final Set<String> userIds = new LinkedHashSet<>();
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private Passphrase passphrase = null;
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private Passphrase passphrase = Passphrase.emptyPassphrase();
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private Date expirationDate = null;
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@Override
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@ -126,13 +127,11 @@ public class KeyRingBuilder implements KeyRingBuilderInterface<KeyRingBuilder> {
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if (userIds.isEmpty()) {
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throw new IllegalStateException("At least one user-id is required.");
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}
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digestCalculator = buildDigestCalculator();
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keyFingerprintCalculator = ImplementationFactory.getInstance().getV4FingerprintCalculator();
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secretKeyEncryptor = buildSecretKeyEncryptor();
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PBESecretKeyDecryptor secretKeyDecryptor = buildSecretKeyDecryptor();
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if (passphrase != null) {
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passphrase.clear();
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}
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// Generate Primary Key
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PGPKeyPair certKey = generateKeyPair(primaryKeySpec);
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@ -171,8 +170,7 @@ public class KeyRingBuilder implements KeyRingBuilderInterface<KeyRingBuilder> {
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// "reassemble" secret key ring with modified primary key
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PGPSecretKey primarySecKey = new PGPSecretKey(
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privateKey,
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primaryPubKey, digestCalculator, true, secretKeyEncryptor);
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privateKey, primaryPubKey, keyFingerprintCalculator, true, secretKeyEncryptor);
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List<PGPSecretKey> secretKeyList = new ArrayList<>();
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secretKeyList.add(primarySecKey);
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while (secretKeys.hasNext()) {
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@ -190,7 +188,7 @@ public class KeyRingBuilder implements KeyRingBuilderInterface<KeyRingBuilder> {
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String primaryUserId = userIds.iterator().next();
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return new PGPKeyRingGenerator(
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SignatureType.POSITIVE_CERTIFICATION.getCode(), certKey,
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primaryUserId, digestCalculator,
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primaryUserId, keyFingerprintCalculator,
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hashedSubPackets, null, signer, secretKeyEncryptor);
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}
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@ -236,22 +234,20 @@ public class KeyRingBuilder implements KeyRingBuilderInterface<KeyRingBuilder> {
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private PBESecretKeyEncryptor buildSecretKeyEncryptor() {
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SymmetricKeyAlgorithm keyEncryptionAlgorithm = PGPainless.getPolicy().getSymmetricKeyEncryptionAlgorithmPolicy()
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.getDefaultSymmetricKeyAlgorithm();
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PBESecretKeyEncryptor encryptor = passphrase == null || passphrase.isEmpty() ?
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null : // unencrypted key pair, otherwise AES-256 encrypted
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if (!passphrase.isValid()) {
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throw new IllegalStateException("Passphrase was cleared.");
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}
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return passphrase.isEmpty() ? null : // unencrypted key pair, otherwise AES-256 encrypted
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ImplementationFactory.getInstance().getPBESecretKeyEncryptor(
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keyEncryptionAlgorithm, digestCalculator, passphrase);
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return encryptor;
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keyEncryptionAlgorithm, keyFingerprintCalculator, passphrase);
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}
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private PBESecretKeyDecryptor buildSecretKeyDecryptor() throws PGPException {
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PBESecretKeyDecryptor decryptor = passphrase == null || passphrase.isEmpty() ?
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null :
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ImplementationFactory.getInstance().getPBESecretKeyDecryptor(passphrase);
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return decryptor;
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if (!passphrase.isValid()) {
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throw new IllegalStateException("Passphrase was cleared.");
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}
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private PGPDigestCalculator buildDigestCalculator() throws PGPException {
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return ImplementationFactory.getInstance().getPGPDigestCalculator(HashAlgorithm.SHA1);
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return passphrase.isEmpty() ? null :
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ImplementationFactory.getInstance().getPBESecretKeyDecryptor(passphrase);
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}
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public static PGPKeyPair generateKeyPair(KeySpec spec)
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@ -269,4 +265,30 @@ public class KeyRingBuilder implements KeyRingBuilderInterface<KeyRingBuilder> {
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PGPKeyPair pgpKeyPair = ImplementationFactory.getInstance().getPGPKeyPair(type.getAlgorithm(), keyPair, new Date());
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return pgpKeyPair;
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}
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public static PGPSecretKey generatePGPSecretKey(KeySpec keySpec, @Nonnull Passphrase passphrase, boolean isPrimary)
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throws PGPException, InvalidAlgorithmParameterException, NoSuchAlgorithmException {
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PGPDigestCalculator keyFingerprintCalculator = ImplementationFactory.getInstance()
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.getV4FingerprintCalculator();
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PGPKeyPair keyPair = generateKeyPair(keySpec);
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SecretKeyRingProtector protector;
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synchronized (passphrase.lock) {
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if (!passphrase.isValid()) {
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throw new IllegalStateException("Passphrase has been cleared.");
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}
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if (!passphrase.isEmpty()) {
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protector = SecretKeyRingProtector.unlockSingleKeyWith(passphrase, keyPair.getKeyID());
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} else {
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protector = SecretKeyRingProtector.unprotectedKeys();
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}
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return new PGPSecretKey(
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keyPair.getPrivateKey(),
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keyPair.getPublicKey(),
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keyFingerprintCalculator,
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isPrimary,
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protector.getEncryptor(keyPair.getKeyID()));
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}
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}
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}
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@ -41,7 +41,6 @@ import org.pgpainless.algorithm.HashAlgorithm;
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import org.pgpainless.algorithm.KeyFlag;
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import org.pgpainless.algorithm.PublicKeyAlgorithm;
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import org.pgpainless.algorithm.SignatureType;
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import org.pgpainless.algorithm.SymmetricKeyAlgorithm;
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import org.pgpainless.implementation.ImplementationFactory;
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import org.pgpainless.key.OpenPgpFingerprint;
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import org.pgpainless.key.generation.KeyRingBuilder;
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@ -182,28 +181,27 @@ public class SecretKeyRingEditor implements SecretKeyRingEditorInterface {
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KeyFlag keyFlag,
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KeyFlag... additionalKeyFlags) throws PGPException, IOException {
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KeyFlag[] flags = concat(keyFlag, additionalKeyFlags);
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SignatureSubpacketsUtil.assureKeyCanCarryFlags(PublicKeyAlgorithm.fromId(subkey.getPublicKey().getAlgorithm()));
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boolean isSigningKey = CollectionUtils.contains(flags, KeyFlag.SIGN_DATA) ||
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CollectionUtils.contains(flags, KeyFlag.CERTIFY_OTHER);
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if (!isSigningKey) {
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return addSubKey(subkey.getPublicKey(),
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bindingSignatureCallback,
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primaryKeyProtector,
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keyFlag,
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additionalKeyFlags);
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}
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PublicKeyAlgorithm subkeyAlgorithm = PublicKeyAlgorithm.fromId(subkey.getPublicKey().getAlgorithm());
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SignatureSubpacketsUtil.assureKeyCanCarryFlags(subkeyAlgorithm);
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PGPSecretKey primaryKey = secretKeyRing.getSecretKey();
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SubkeyBindingSignatureBuilder bindingSigBuilder = new SubkeyBindingSignatureBuilder(primaryKey, primaryKeyProtector);
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SubkeyBindingSignatureBuilder bindingSigBuilder =
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new SubkeyBindingSignatureBuilder(primaryKey, primaryKeyProtector);
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bindingSigBuilder.applyCallback(bindingSignatureCallback);
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bindingSigBuilder.getHashedSubpackets().setKeyFlags(flags);
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PrimaryKeyBindingSignatureBuilder backSigBuilder = new PrimaryKeyBindingSignatureBuilder(subkey, subkeyProtector);
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boolean isSigningKey = CollectionUtils.contains(flags, KeyFlag.SIGN_DATA) ||
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CollectionUtils.contains(flags, KeyFlag.CERTIFY_OTHER);
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if (isSigningKey) {
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// Add embedded back-signature made by subkey over primary key
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PrimaryKeyBindingSignatureBuilder backSigBuilder =
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new PrimaryKeyBindingSignatureBuilder(subkey, subkeyProtector);
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backSigBuilder.applyCallback(backSignatureCallback);
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PGPSignature backSig = backSigBuilder.build(primaryKey.getPublicKey());
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bindingSigBuilder.getHashedSubpackets().addEmbeddedSignature(backSig);
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}
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PGPSignature bindingSig = bindingSigBuilder.build(subkey.getPublicKey());
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subkey = KeyRingUtils.secretKeyPlusSignature(subkey, bindingSig);
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secretKeyRing = KeyRingUtils.secretKeysPlusSecretKey(secretKeyRing, subkey);
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@ -211,54 +209,10 @@ public class SecretKeyRingEditor implements SecretKeyRingEditorInterface {
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return this;
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}
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@Override
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public SecretKeyRingEditorInterface addSubKey(PGPPublicKey subkey,
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SelfSignatureSubpackets.Callback bindingSignatureCallback,
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SecretKeyRingProtector primaryKeyProtector,
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KeyFlag keyFlag,
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KeyFlag... additionalKeyFlags) throws PGPException {
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KeyFlag[] flags = concat(keyFlag, additionalKeyFlags);
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boolean isSigningKey = CollectionUtils.contains(flags, KeyFlag.SIGN_DATA) ||
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CollectionUtils.contains(flags, KeyFlag.CERTIFY_OTHER);
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if (isSigningKey) {
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throw new IllegalArgumentException("Cannot bind a signing capable subkey without access to the secret subkey.\n" +
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"Please use addSubKey(PGPSecretKey secretSubKey, [...]) instead.");
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}
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PGPSignature bindingSignature = createSubkeyBindingSignature(subkey, bindingSignatureCallback, primaryKeyProtector, flags);
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subkey = PGPPublicKey.addCertification(subkey, bindingSignature);
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secretKeyRing = KeyRingUtils.secretKeysPlusPublicKey(secretKeyRing, subkey);
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return this;
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}
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private PGPSignature createSubkeyBindingSignature(PGPPublicKey subkey,
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SelfSignatureSubpackets.Callback bindingSignatureCallback,
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SecretKeyRingProtector primaryKeyProtector,
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KeyFlag... keyFlags) throws PGPException {
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PGPSecretKey primaryKey = secretKeyRing.getSecretKey();
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SubkeyBindingSignatureBuilder builder = new SubkeyBindingSignatureBuilder(primaryKey, primaryKeyProtector);
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builder.applyCallback(bindingSignatureCallback);
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builder.getHashedSubpackets().setKeyFlags(keyFlags);
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PGPSignature signature = builder.build(subkey);
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return signature;
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}
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private PGPSecretKey generateSubKey(@Nonnull KeySpec keySpec,
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@Nonnull Passphrase subKeyPassphrase)
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throws PGPException, InvalidAlgorithmParameterException, NoSuchAlgorithmException {
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PGPDigestCalculator checksumCalculator = ImplementationFactory.getInstance()
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.getPGPDigestCalculator(defaultDigestHashAlgorithm);
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PBESecretKeyEncryptor subKeyEncryptor = subKeyPassphrase.isEmpty() ? null :
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ImplementationFactory.getInstance().getPBESecretKeyEncryptor(SymmetricKeyAlgorithm.AES_256, subKeyPassphrase);
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PGPKeyPair keyPair = KeyRingBuilder.generateKeyPair(keySpec);
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PGPSecretKey secretKey = new PGPSecretKey(keyPair.getPrivateKey(), keyPair.getPublicKey(),
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checksumCalculator, false, subKeyEncryptor);
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return secretKey;
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return KeyRingBuilder.generatePGPSecretKey(keySpec, subKeyPassphrase, false);
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}
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@Override
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@ -12,7 +12,6 @@ import javax.annotation.Nonnull;
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import javax.annotation.Nullable;
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import org.bouncycastle.openpgp.PGPException;
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import org.bouncycastle.openpgp.PGPPublicKey;
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import org.bouncycastle.openpgp.PGPSecretKey;
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import org.bouncycastle.openpgp.PGPSecretKeyRing;
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import org.bouncycastle.openpgp.PGPSignature;
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@ -59,7 +58,7 @@ public interface SecretKeyRingEditorInterface {
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* @return the builder
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*/
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SecretKeyRingEditorInterface addSubKey(@Nonnull KeySpec keySpec,
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@Nonnull Passphrase subKeyPassphrase,
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@Nullable Passphrase subKeyPassphrase,
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SecretKeyRingProtector secretKeyRingProtector)
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throws InvalidAlgorithmParameterException, NoSuchAlgorithmException, PGPException;
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@ -78,12 +77,6 @@ public interface SecretKeyRingEditorInterface {
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KeyFlag keyFlag,
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KeyFlag... additionalKeyFlags) throws PGPException, IOException;
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SecretKeyRingEditorInterface addSubKey(PGPPublicKey subkey,
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SelfSignatureSubpackets.Callback bindingSignatureCallback,
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SecretKeyRingProtector primaryKeyProtector,
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KeyFlag keyFlag,
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KeyFlag... additionalKeyFlags) throws PGPException;
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/**
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* Revoke the key ring.
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* The revocation will be a hard revocation, rendering the whole key invalid for any past or future signatures.
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@ -56,7 +56,7 @@ public class CachingSecretKeyRingProtector implements SecretKeyRingProtector, Se
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* @param keyId id of the key
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* @param passphrase passphrase
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*/
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public void addPassphrase(@Nonnull Long keyId, @Nullable Passphrase passphrase) {
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public void addPassphrase(@Nonnull Long keyId, @Nonnull Passphrase passphrase) {
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this.cache.put(keyId, passphrase);
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}
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@ -66,7 +66,7 @@ public class CachingSecretKeyRingProtector implements SecretKeyRingProtector, Se
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* @param keyRing key ring
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* @param passphrase passphrase
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*/
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public void addPassphrase(@Nonnull PGPKeyRing keyRing, @Nullable Passphrase passphrase) {
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public void addPassphrase(@Nonnull PGPKeyRing keyRing, @Nonnull Passphrase passphrase) {
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Iterator<PGPPublicKey> keys = keyRing.getPublicKeys();
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while (keys.hasNext()) {
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PGPPublicKey publicKey = keys.next();
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@ -80,11 +80,11 @@ public class CachingSecretKeyRingProtector implements SecretKeyRingProtector, Se
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* @param key key
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* @param passphrase passphrase
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*/
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public void addPassphrase(@Nonnull PGPPublicKey key, @Nullable Passphrase passphrase) {
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public void addPassphrase(@Nonnull PGPPublicKey key, @Nonnull Passphrase passphrase) {
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addPassphrase(key.getKeyID(), passphrase);
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}
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public void addPassphrase(@Nonnull OpenPgpFingerprint fingerprint, @Nullable Passphrase passphrase) {
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public void addPassphrase(@Nonnull OpenPgpFingerprint fingerprint, @Nonnull Passphrase passphrase) {
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addPassphrase(fingerprint.getKeyId(), passphrase);
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}
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@ -95,9 +95,10 @@ public class CachingSecretKeyRingProtector implements SecretKeyRingProtector, Se
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* @param keyId id of the key
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*/
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public void forgetPassphrase(@Nonnull Long keyId) {
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Passphrase passphrase = cache.get(keyId);
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Passphrase passphrase = cache.remove(keyId);
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if (passphrase != null) {
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passphrase.clear();
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cache.remove(keyId);
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}
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}
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/**
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@ -140,12 +141,13 @@ public class CachingSecretKeyRingProtector implements SecretKeyRingProtector, Se
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@Override
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public boolean hasPassphrase(Long keyId) {
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return cache.containsKey(keyId);
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Passphrase passphrase = cache.get(keyId);
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return passphrase != null && passphrase.isValid();
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}
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@Override
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public boolean hasPassphraseFor(Long keyId) {
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return cache.containsKey(keyId);
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return hasPassphrase(keyId);
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}
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@Override
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@ -64,12 +64,16 @@ public class PasswordBasedSecretKeyRingProtector implements SecretKeyRingProtect
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}
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public static PasswordBasedSecretKeyRingProtector forKey(PGPSecretKey key, Passphrase passphrase) {
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return forKeyId(key.getPublicKey().getKeyID(), passphrase);
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}
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public static PasswordBasedSecretKeyRingProtector forKeyId(long singleKeyId, Passphrase passphrase) {
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KeyRingProtectionSettings protectionSettings = KeyRingProtectionSettings.secureDefaultSettings();
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SecretKeyPassphraseProvider passphraseProvider = new SecretKeyPassphraseProvider() {
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@Override
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@Nullable
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@Override
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public Passphrase getPassphraseFor(Long keyId) {
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if (key.getKeyID() == keyId) {
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if (keyId == singleKeyId) {
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return passphrase;
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}
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return null;
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@ -77,7 +81,7 @@ public class PasswordBasedSecretKeyRingProtector implements SecretKeyRingProtect
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@Override
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public boolean hasPassphrase(Long keyId) {
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return keyId == key.getKeyID();
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return keyId == singleKeyId;
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}
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};
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return new PasswordBasedSecretKeyRingProtector(protectionSettings, passphraseProvider);
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@ -98,6 +98,10 @@ public interface SecretKeyRingProtector {
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return PasswordBasedSecretKeyRingProtector.forKey(key, passphrase);
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}
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static SecretKeyRingProtector unlockSingleKeyWith(Passphrase passphrase, long keyId) {
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return PasswordBasedSecretKeyRingProtector.forKeyId(keyId, passphrase);
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}
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/**
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* Protector for unprotected keys.
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* This protector returns null for all {@link #getEncryptor(Long)}/{@link #getDecryptor(Long)} calls,
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@ -10,7 +10,7 @@ import java.util.Arrays;
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public class Passphrase {
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private final Object lock = new Object();
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public final Object lock = new Object();
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private final char[] chars;
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private boolean valid = true;
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@ -0,0 +1,77 @@
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// SPDX-FileCopyrightText: 2021 Paul Schaub <vanitasvitae@fsfe.org>
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//
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// SPDX-License-Identifier: Apache-2.0
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package org.pgpainless.key.modification;
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import static org.junit.jupiter.api.Assertions.assertEquals;
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import static org.junit.jupiter.api.Assertions.assertFalse;
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import static org.junit.jupiter.api.Assertions.assertTrue;
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import java.io.IOException;
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import java.security.InvalidAlgorithmParameterException;
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import java.security.NoSuchAlgorithmException;
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import java.util.Date;
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import java.util.List;
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import org.bouncycastle.bcpg.sig.NotationData;
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import org.bouncycastle.openpgp.PGPException;
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import org.bouncycastle.openpgp.PGPPublicKey;
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import org.bouncycastle.openpgp.PGPSecretKey;
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import org.bouncycastle.openpgp.PGPSecretKeyRing;
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import org.bouncycastle.openpgp.PGPSignature;
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import org.junit.JUtils;
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import org.junit.jupiter.api.Test;
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import org.pgpainless.PGPainless;
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import org.pgpainless.algorithm.EncryptionPurpose;
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import org.pgpainless.algorithm.KeyFlag;
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import org.pgpainless.key.OpenPgpV4Fingerprint;
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import org.pgpainless.key.generation.KeyRingBuilder;
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import org.pgpainless.key.generation.KeySpec;
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import org.pgpainless.key.generation.type.KeyType;
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import org.pgpainless.key.generation.type.xdh.XDHSpec;
|
||||
import org.pgpainless.key.info.KeyRingInfo;
|
||||
import org.pgpainless.key.protection.SecretKeyRingProtector;
|
||||
import org.pgpainless.signature.subpackets.SelfSignatureSubpackets;
|
||||
import org.pgpainless.signature.subpackets.SignatureSubpacketsUtil;
|
||||
import org.pgpainless.util.Passphrase;
|
||||
|
||||
public class AddSubkeyWithModifiedBindingSignatureSubpackets {
|
||||
|
||||
@Test
|
||||
public void bindEncryptionSubkeyAndModifyBindingSignatureHashedSubpackets() throws PGPException, InvalidAlgorithmParameterException, NoSuchAlgorithmException, IOException {
|
||||
SecretKeyRingProtector protector = SecretKeyRingProtector.unprotectedKeys();
|
||||
PGPSecretKeyRing secretKeys = PGPainless.generateKeyRing()
|
||||
.modernKeyRing("Alice <alice@pgpainless.org>", null);
|
||||
KeyRingInfo before = PGPainless.inspectKeyRing(secretKeys);
|
||||
|
||||
PGPSecretKey secretSubkey = KeyRingBuilder.generatePGPSecretKey(
|
||||
KeySpec.getBuilder(KeyType.XDH(XDHSpec._X25519), KeyFlag.ENCRYPT_COMMS).build(),
|
||||
Passphrase.emptyPassphrase(), false);
|
||||
|
||||
secretKeys = PGPainless.modifyKeyRing(secretKeys)
|
||||
.addSubKey(secretSubkey, new SelfSignatureSubpackets.Callback() {
|
||||
@Override
|
||||
public void modifyHashedSubpackets(SelfSignatureSubpackets hashedSubpackets) {
|
||||
hashedSubpackets.setKeyExpirationTime(true, 1000);
|
||||
hashedSubpackets.addNotationData(false, "test@test.test", "test");
|
||||
}
|
||||
}, null, SecretKeyRingProtector.unprotectedKeys(), protector, KeyFlag.ENCRYPT_COMMS)
|
||||
.done();
|
||||
|
||||
KeyRingInfo after = PGPainless.inspectKeyRing(secretKeys);
|
||||
|
||||
List<PGPPublicKey> encryptionKeys = after.getEncryptionSubkeys(EncryptionPurpose.COMMUNICATIONS);
|
||||
encryptionKeys.removeAll(before.getEncryptionSubkeys(EncryptionPurpose.COMMUNICATIONS));
|
||||
assertFalse(encryptionKeys.isEmpty());
|
||||
assertEquals(1, encryptionKeys.size());
|
||||
|
||||
PGPPublicKey newKey = encryptionKeys.get(0);
|
||||
JUtils.assertEquals(new Date().getTime() + 1000 * 1000, after.getSubkeyExpirationDate(new OpenPgpV4Fingerprint(newKey)).getTime(), 2000);
|
||||
assertTrue(newKey.getSignatures().hasNext());
|
||||
PGPSignature binding = newKey.getSignatures().next();
|
||||
List<NotationData> notations = SignatureSubpacketsUtil.getHashedNotationData(binding);
|
||||
assertEquals(1, notations.size());
|
||||
assertEquals("test@test.test", notations.get(0).getNotationName());
|
||||
}
|
||||
}
|
Loading…
Reference in a new issue