mirror of
https://github.com/moparisthebest/open-keychain
synced 2024-11-23 17:22:16 -05:00
fix more unit tests (syntax)
This commit is contained in:
parent
3fce6d8a12
commit
e00ce86de9
@ -46,6 +46,7 @@ import org.sufficientlysecure.keychain.service.CertifyActionsParcel.CertifyActio
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import org.sufficientlysecure.keychain.service.SaveKeyringParcel;
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import org.sufficientlysecure.keychain.service.SaveKeyringParcel.Algorithm;
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import org.sufficientlysecure.keychain.service.SaveKeyringParcel.ChangeUnlockParcel;
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import org.sufficientlysecure.keychain.service.input.CryptoInputParcel;
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import org.sufficientlysecure.keychain.util.InputData;
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import org.sufficientlysecure.keychain.util.Passphrase;
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import org.sufficientlysecure.keychain.util.ProgressScaler;
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@ -152,8 +153,8 @@ public class CertifyOperationTest {
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@Test
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public void testCertifyId() throws Exception {
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CertifyOperation op = operationWithFakePassphraseCache(
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mStaticRing1.getMasterKeyId(), mStaticRing1.getMasterKeyId(), mKeyPhrase1);
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CertifyOperation op = new CertifyOperation(Robolectric.application,
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new ProviderHelper(Robolectric.application), null, null);
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{
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CanonicalizedPublicKeyRing ring = new ProviderHelper(Robolectric.application)
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@ -165,7 +166,7 @@ public class CertifyOperationTest {
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CertifyActionsParcel actions = new CertifyActionsParcel(mStaticRing1.getMasterKeyId());
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actions.add(new CertifyAction(mStaticRing2.getMasterKeyId(),
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mStaticRing2.getPublicKey().getUnorderedUserIds()));
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CertifyResult result = op.certify(actions, null);
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CertifyResult result = op.certify(actions, new CryptoInputParcel(mKeyPhrase1), null);
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Assert.assertTrue("certification must succeed", result.success());
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@ -180,8 +181,8 @@ public class CertifyOperationTest {
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@Test
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public void testCertifyAttribute() throws Exception {
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CertifyOperation op = operationWithFakePassphraseCache(
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mStaticRing1.getMasterKeyId(), mStaticRing1.getMasterKeyId(), mKeyPhrase1);
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CertifyOperation op = new CertifyOperation(Robolectric.application,
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new ProviderHelper(Robolectric.application), null, null);
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{
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CanonicalizedPublicKeyRing ring = new ProviderHelper(Robolectric.application)
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@ -193,7 +194,7 @@ public class CertifyOperationTest {
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CertifyActionsParcel actions = new CertifyActionsParcel(mStaticRing1.getMasterKeyId());
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actions.add(new CertifyAction(mStaticRing2.getMasterKeyId(), null,
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mStaticRing2.getPublicKey().getUnorderedUserAttributes()));
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CertifyResult result = op.certify(actions, null);
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CertifyResult result = op.certify(actions, new CryptoInputParcel(mKeyPhrase1), null);
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Assert.assertTrue("certification must succeed", result.success());
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@ -209,14 +210,14 @@ public class CertifyOperationTest {
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@Test
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public void testCertifySelf() throws Exception {
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CertifyOperation op = operationWithFakePassphraseCache(
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mStaticRing1.getMasterKeyId(), mStaticRing1.getMasterKeyId(), mKeyPhrase1);
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CertifyOperation op = new CertifyOperation(Robolectric.application,
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new ProviderHelper(Robolectric.application), null, null);
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CertifyActionsParcel actions = new CertifyActionsParcel(mStaticRing1.getMasterKeyId());
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actions.add(new CertifyAction(mStaticRing1.getMasterKeyId(),
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mStaticRing2.getPublicKey().getUnorderedUserIds()));
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CertifyResult result = op.certify(actions, null);
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CertifyResult result = op.certify(actions, new CryptoInputParcel(mKeyPhrase1), null);
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Assert.assertFalse("certification with itself must fail!", result.success());
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Assert.assertTrue("error msg must be about self certification",
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@ -226,7 +227,8 @@ public class CertifyOperationTest {
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@Test
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public void testCertifyNonexistent() throws Exception {
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CertifyOperation op = operationWithFakePassphraseCache(null, null, mKeyPhrase1);
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CertifyOperation op = new CertifyOperation(Robolectric.application,
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new ProviderHelper(Robolectric.application), null, null);
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{
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CertifyActionsParcel actions = new CertifyActionsParcel(mStaticRing1.getMasterKeyId());
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@ -234,7 +236,7 @@ public class CertifyOperationTest {
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uids.add("nonexistent");
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actions.add(new CertifyAction(1234L, uids));
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CertifyResult result = op.certify(actions, null);
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CertifyResult result = op.certify(actions, new CryptoInputParcel(mKeyPhrase1), null);
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Assert.assertFalse("certification of nonexistent key must fail", result.success());
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Assert.assertTrue("must contain error msg about not found",
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@ -246,7 +248,7 @@ public class CertifyOperationTest {
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actions.add(new CertifyAction(mStaticRing1.getMasterKeyId(),
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mStaticRing2.getPublicKey().getUnorderedUserIds()));
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CertifyResult result = op.certify(actions, null);
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CertifyResult result = op.certify(actions, new CryptoInputParcel(mKeyPhrase1), null);
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Assert.assertFalse("certification of nonexistent key must fail", result.success());
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Assert.assertTrue("must contain error msg about not found",
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@ -255,29 +257,4 @@ public class CertifyOperationTest {
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}
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private CertifyOperation operationWithFakePassphraseCache(
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final Long checkMasterKeyId, final Long checkSubKeyId, final Passphrase passphrase) {
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return new CertifyOperation(Robolectric.application,
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new ProviderHelper(Robolectric.application),
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null, null) {
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@Override
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public Passphrase getCachedPassphrase(long masterKeyId, long subKeyId)
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throws NoSecretKeyException {
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if (checkMasterKeyId != null) {
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Assert.assertEquals("requested passphrase should be for expected master key id",
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(long) checkMasterKeyId, masterKeyId);
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}
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if (checkSubKeyId != null) {
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Assert.assertEquals("requested passphrase should be for expected sub key id",
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(long) checkSubKeyId, subKeyId);
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}
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if (passphrase == null) {
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return null;
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}
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return passphrase;
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}
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};
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}
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}
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@ -138,7 +138,7 @@ public class PgpEncryptDecryptTest {
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InputData data = new InputData(in, in.available());
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PgpSignEncryptInputParcel b = new setSignatureTimestamp();
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PgpSignEncryptInputParcel b = new PgpSignEncryptInputParcel();
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b.setSymmetricPassphrase(mPassphrase);
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b.setSymmetricEncryptionAlgorithm(PGPEncryptedData.AES_128);
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@ -222,7 +222,7 @@ public class PgpEncryptDecryptTest {
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new ProviderHelper(Robolectric.application), null);
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InputData data = new InputData(in, in.available());
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PgpSignEncryptInputParcel b = new setSignatureTimestamp();
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PgpSignEncryptInputParcel b = new PgpSignEncryptInputParcel();
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b.setEncryptionMasterKeyIds(new long[]{ mStaticRing1.getMasterKeyId() });
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b.setSymmetricEncryptionAlgorithm(PGPEncryptedData.AES_128);
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@ -303,7 +303,7 @@ public class PgpEncryptDecryptTest {
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InputData data = new InputData(in, in.available());
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PgpSignEncryptInputParcel b = new setSignatureTimestamp();
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PgpSignEncryptInputParcel b = new PgpSignEncryptInputParcel();
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b.setEncryptionMasterKeyIds(new long[] {
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mStaticRing1.getMasterKeyId(),
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mStaticRing2.getMasterKeyId()
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@ -395,7 +395,7 @@ public class PgpEncryptDecryptTest {
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new ProviderHelper(Robolectric.application), null);
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InputData data = new InputData(in, in.available());
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PgpSignEncryptInputParcel b = new setSignatureTimestamp();
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PgpSignEncryptInputParcel b = new PgpSignEncryptInputParcel();
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b.setEncryptionMasterKeyIds(new long[] {
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mStaticRing1.getMasterKeyId(),
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@ -477,7 +477,7 @@ public class PgpEncryptDecryptTest {
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new ProviderHelper(Robolectric.application), null);
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InputData data = new InputData(in, in.available());
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PgpSignEncryptInputParcel b = new setSignatureTimestamp();
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PgpSignEncryptInputParcel b = new PgpSignEncryptInputParcel();
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b.setEncryptionMasterKeyIds(new long[]{ mStaticRing1.getMasterKeyId() });
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b.setSymmetricEncryptionAlgorithm(PGPEncryptedData.AES_128);
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@ -59,6 +59,7 @@ import org.sufficientlysecure.keychain.service.SaveKeyringParcel.Algorithm;
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import org.sufficientlysecure.keychain.operations.results.OperationResult.LogType;
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import org.sufficientlysecure.keychain.operations.results.OperationResult.OperationLog;
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import org.sufficientlysecure.keychain.service.SaveKeyringParcel.ChangeUnlockParcel;
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import org.sufficientlysecure.keychain.service.input.CryptoInputParcel;
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import org.sufficientlysecure.keychain.support.KeyringTestingHelper;
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import org.sufficientlysecure.keychain.support.KeyringTestingHelper.RawPacket;
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import org.sufficientlysecure.keychain.util.Passphrase;
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@ -549,7 +550,10 @@ public class UncachedKeyringCanonicalizeTest {
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CanonicalizedSecretKey masterSecretKey = canonicalized.getSecretKey();
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masterSecretKey.unlock(new Passphrase());
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PGPPublicKey masterPublicKey = masterSecretKey.getPublicKey();
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CryptoInputParcel cryptoInput = new CryptoInputParcel();
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PGPSignature cert = PgpKeyOperation.generateSubkeyBindingSignature(
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PgpKeyOperation.getSignatureGenerator(masterSecretKey.getSecretKey(), cryptoInput),
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cryptoInput.getSignatureTime(),
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masterPublicKey, masterSecretKey.getPrivateKey(), masterSecretKey.getPrivateKey(),
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masterPublicKey, masterSecretKey.getKeyUsage(), 0);
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PGPPublicKey subPubKey = PGPPublicKey.addSubkeyBindingCertification(masterPublicKey, cert);
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@ -35,9 +35,12 @@ import org.spongycastle.util.Strings;
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import org.sufficientlysecure.keychain.operations.results.OperationResult;
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import org.sufficientlysecure.keychain.operations.results.PgpEditKeyResult;
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import org.sufficientlysecure.keychain.operations.results.OperationResult.OperationLog;
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import org.sufficientlysecure.keychain.pgp.PgpCertifyOperation.PgpCertifyResult;
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import org.sufficientlysecure.keychain.service.CertifyActionsParcel.CertifyAction;
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import org.sufficientlysecure.keychain.service.SaveKeyringParcel;
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import org.sufficientlysecure.keychain.service.SaveKeyringParcel.Algorithm;
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import org.sufficientlysecure.keychain.service.SaveKeyringParcel.ChangeUnlockParcel;
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import org.sufficientlysecure.keychain.service.input.CryptoInputParcel;
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import org.sufficientlysecure.keychain.support.KeyringTestingHelper;
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import org.sufficientlysecure.keychain.support.KeyringTestingHelper.RawPacket;
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import org.sufficientlysecure.keychain.util.Passphrase;
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@ -46,6 +49,7 @@ import org.sufficientlysecure.keychain.util.ProgressScaler;
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import java.io.ByteArrayInputStream;
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import java.security.Security;
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import java.util.ArrayList;
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import java.util.Date;
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import java.util.Iterator;
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import java.util.Random;
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@ -186,11 +190,11 @@ public class UncachedKeyringMergeTest {
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parcel.reset();
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parcel.mAddUserIds.add("flim");
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modifiedA = op.modifySecretKeyRing(secretRing, parcel, new Passphrase()).getRing();
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modifiedA = op.modifySecretKeyRing(secretRing, new CryptoInputParcel(), parcel).getRing();
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parcel.reset();
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parcel.mAddUserIds.add("flam");
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modifiedB = op.modifySecretKeyRing(secretRing, parcel, new Passphrase()).getRing();
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modifiedB = op.modifySecretKeyRing(secretRing, new CryptoInputParcel(), parcel).getRing();
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}
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{ // merge A into base
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@ -227,8 +231,8 @@ public class UncachedKeyringMergeTest {
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parcel.reset();
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parcel.mAddSubKeys.add(new SaveKeyringParcel.SubkeyAdd(
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Algorithm.RSA, 1024, null, KeyFlags.SIGN_DATA, 0L));
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modifiedA = op.modifySecretKeyRing(secretRing, parcel, new Passphrase()).getRing();
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modifiedB = op.modifySecretKeyRing(secretRing, parcel, new Passphrase()).getRing();
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modifiedA = op.modifySecretKeyRing(secretRing, new CryptoInputParcel(), parcel).getRing();
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modifiedB = op.modifySecretKeyRing(secretRing, new CryptoInputParcel(), parcel).getRing();
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subKeyIdA = KeyringTestingHelper.getSubkeyId(modifiedA, 2);
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subKeyIdB = KeyringTestingHelper.getSubkeyId(modifiedB, 2);
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@ -269,7 +273,7 @@ public class UncachedKeyringMergeTest {
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parcel.mRevokeSubKeys.add(KeyringTestingHelper.getSubkeyId(ringA, 1));
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CanonicalizedSecretKeyRing secretRing = new CanonicalizedSecretKeyRing(
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ringA.getEncoded(), false, 0);
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modified = op.modifySecretKeyRing(secretRing, parcel, new Passphrase()).getRing();
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modified = op.modifySecretKeyRing(secretRing, new CryptoInputParcel(), parcel).getRing();
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}
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{
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@ -295,8 +299,13 @@ public class UncachedKeyringMergeTest {
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CanonicalizedSecretKey secretKey = new CanonicalizedSecretKeyRing(
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ringB.getEncoded(), false, 0).getSecretKey();
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secretKey.unlock(new Passphrase());
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PgpCertifyOperation op = new PgpCertifyOperation();
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CertifyAction action = new CertifyAction(pubRing.getMasterKeyId(), publicRing.getPublicKey().getUnorderedUserIds());
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// sign all user ids
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modified = secretKey.certifyUserIds(publicRing, publicRing.getPublicKey().getUnorderedUserIds(), null, null);
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PgpCertifyResult result = op.certify(secretKey, publicRing, new OperationLog(), 0, action, null, new Date());
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Assert.assertTrue("certification must succeed", result.success());
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Assert.assertNotNull("certification must yield result", result.getCertifiedRing());
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modified = result.getCertifiedRing();
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}
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{
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@ -363,7 +372,7 @@ public class UncachedKeyringMergeTest {
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CanonicalizedSecretKeyRing secretRing = new CanonicalizedSecretKeyRing(
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ringA.getEncoded(), false, 0);
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modified = op.modifySecretKeyRing(secretRing, parcel, new Passphrase()).getRing();
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modified = op.modifySecretKeyRing(secretRing, new CryptoInputParcel(), parcel).getRing();
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}
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{
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@ -39,6 +39,7 @@ import org.sufficientlysecure.keychain.provider.ProviderHelper.NotFoundException
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import org.sufficientlysecure.keychain.service.CertifyActionsParcel;
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import org.sufficientlysecure.keychain.service.CertifyActionsParcel.CertifyAction;
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import org.sufficientlysecure.keychain.service.ContactSyncAdapterService;
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import org.sufficientlysecure.keychain.service.input.CryptoInputParcel;
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import org.sufficientlysecure.keychain.service.input.RequiredInputParcel;
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import org.sufficientlysecure.keychain.service.input.RequiredInputParcel.NfcSignOperationsBuilder;
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import org.sufficientlysecure.keychain.ui.util.KeyFormattingUtils;
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@ -63,7 +64,7 @@ public class CertifyOperation extends BaseOperation {
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super(context, providerHelper, progressable, cancelled);
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}
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public CertifyResult certify(CertifyActionsParcel parcel, String keyServerUri) {
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public CertifyResult certify(CertifyActionsParcel parcel, CryptoInputParcel cryptoInput, String keyServerUri) {
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OperationLog log = new OperationLog();
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log.add(LogType.MSG_CRT, 0);
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@ -78,13 +79,13 @@ public class CertifyOperation extends BaseOperation {
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log.add(LogType.MSG_CRT_UNLOCK, 1);
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certificationKey = secretKeyRing.getSecretKey();
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if (!parcel.mCryptoInput.hasPassphrase()) {
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if (!cryptoInput.hasPassphrase()) {
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return new CertifyResult(log, RequiredInputParcel.createRequiredPassphrase(
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certificationKey.getKeyId(), null));
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}
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// certification is always with the master key id, so use that one
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Passphrase passphrase = parcel.mCryptoInput.getPassphrase();
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Passphrase passphrase = cryptoInput.getPassphrase();
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if (!certificationKey.unlock(passphrase)) {
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log.add(LogType.MSG_CRT_ERROR_UNLOCK, 2);
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@ -104,7 +105,7 @@ public class CertifyOperation extends BaseOperation {
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int certifyOk = 0, certifyError = 0, uploadOk = 0, uploadError = 0;
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NfcSignOperationsBuilder allRequiredInput = new NfcSignOperationsBuilder(parcel.mCryptoInput.getSignatureTime());
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NfcSignOperationsBuilder allRequiredInput = new NfcSignOperationsBuilder(cryptoInput.getSignatureTime());
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// Work through all requested certifications
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for (CertifyAction action : parcel.mCertifyActions) {
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@ -128,7 +129,7 @@ public class CertifyOperation extends BaseOperation {
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PgpCertifyOperation op = new PgpCertifyOperation();
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PgpCertifyResult result = op.certify(certificationKey, publicRing,
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log, 2, action, parcel.getSignatureData(), parcel.mCryptoInput.getSignatureTime());
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log, 2, action, cryptoInput.getCryptoData(), cryptoInput.getSignatureTime());
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if (!result.success()) {
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certifyError += 1;
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@ -292,4 +292,9 @@ public class CanonicalizedSecretKey extends CanonicalizedPublicKey {
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return mPrivateKey;
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}
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// HACK, for TESTING ONLY!!
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PGPSecretKey getSecretKey() {
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return mSecretKey;
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}
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}
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@ -1283,7 +1283,7 @@ public class PgpKeyOperation {
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}
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private static PGPSignatureGenerator getSignatureGenerator(
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static PGPSignatureGenerator getSignatureGenerator(
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PGPSecretKey secretKey, CryptoInputParcel cryptoInput) {
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PGPContentSignerBuilder builder;
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@ -42,17 +42,14 @@ public class CertifyActionsParcel implements Parcelable {
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public CertifyLevel mLevel;
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public ArrayList<CertifyAction> mCertifyActions = new ArrayList<>();
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public CryptoInputParcel mCryptoInput;
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public CertifyActionsParcel(CryptoInputParcel cryptoInput, long masterKeyId) {
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public CertifyActionsParcel(long masterKeyId) {
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mMasterKeyId = masterKeyId;
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mCryptoInput = cryptoInput != null ? cryptoInput : new CryptoInputParcel(new Date());
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mLevel = CertifyLevel.DEFAULT;
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}
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public CertifyActionsParcel(Parcel source) {
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mMasterKeyId = source.readLong();
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mCryptoInput = source.readParcelable(CertifyActionsParcel.class.getClassLoader());
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// just like parcelables, this is meant for ad-hoc IPC only and is NOT portable!
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mLevel = CertifyLevel.values()[source.readInt()];
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@ -66,16 +63,11 @@ public class CertifyActionsParcel implements Parcelable {
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@Override
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public void writeToParcel(Parcel destination, int flags) {
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destination.writeLong(mMasterKeyId);
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destination.writeParcelable(mCryptoInput, 0);
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destination.writeInt(mLevel.ordinal());
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destination.writeSerializable(mCertifyActions);
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}
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public Map<ByteBuffer, byte[]> getSignatureData() {
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return mCryptoInput.getCryptoData();
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}
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public static final Creator<CertifyActionsParcel> CREATOR = new Creator<CertifyActionsParcel>() {
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public CertifyActionsParcel createFromParcel(final Parcel source) {
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return new CertifyActionsParcel(source);
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@ -254,11 +254,12 @@ public class KeychainIntentService extends IntentService implements Progressable
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// Input
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CertifyActionsParcel parcel = data.getParcelable(CERTIFY_PARCEL);
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CryptoInputParcel cryptoInput = data.getParcelable(EXTRA_CRYPTO_INPUT);
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String keyServerUri = data.getString(UPLOAD_KEY_SERVER);
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// Operation
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CertifyOperation op = new CertifyOperation(this, providerHelper, this, mActionCanceled);
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CertifyResult result = op.certify(parcel, keyServerUri);
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CertifyResult result = op.certify(parcel, cryptoInput, keyServerUri);
|
||||
|
||||
// Result
|
||||
sendMessageToHandler(MessageStatus.OKAY, result);
|
||||
|
@ -321,9 +321,10 @@ public class CertifyKeyFragment extends CryptoOperationFragment
|
||||
Bundle data = new Bundle();
|
||||
{
|
||||
// fill values for this action
|
||||
CertifyActionsParcel parcel = new CertifyActionsParcel(cryptoInput, mSignMasterKeyId);
|
||||
CertifyActionsParcel parcel = new CertifyActionsParcel(mSignMasterKeyId);
|
||||
parcel.mCertifyActions.addAll(certifyActions);
|
||||
|
||||
data.putParcelable(KeychainIntentService.EXTRA_CRYPTO_INPUT, cryptoInput);
|
||||
data.putParcelable(KeychainIntentService.CERTIFY_PARCEL, parcel);
|
||||
if (mUploadKeyCheckbox.isChecked()) {
|
||||
String keyserver = Preferences.getPreferences(getActivity()).getPreferredKeyserver();
|
||||
|
Loading…
Reference in New Issue
Block a user