2017-03-11 00:29:38 +00:00
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namespace Signal.Test {
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class SessionBuilderTest : Gee.TestCase {
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Address alice_address;
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Address bob_address;
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public SessionBuilderTest() {
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base("SessionBuilder");
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add_test("basic_pre_key_v2", test_basic_pre_key_v2);
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add_test("basic_pre_key_v3", test_basic_pre_key_v3);
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add_test("bad_signed_pre_key_signature", test_bad_signed_pre_key_signature);
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add_test("repeat_bundle_message_v2", test_repeat_bundle_message_v2);
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}
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private Context global_context;
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public override void set_up() {
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try {
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global_context = new Context();
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2017-04-18 15:55:20 +00:00
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alice_address = new Address("+14151111111", 1);
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bob_address = new Address("+14152222222", 1);
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2017-03-11 00:29:38 +00:00
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} catch (Error e) {
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fail_if_reached(@"Unexpected error: $(e.message)");
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}
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}
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public override void tear_down() {
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global_context = null;
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alice_address = null;
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bob_address = null;
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}
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void test_basic_pre_key_v2() {
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try {
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/* Create Alice's data store and session builder */
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Store alice_store = setup_test_store_context(global_context);
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SessionBuilder alice_session_builder = alice_store.create_session_builder(bob_address);
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/* Create Bob's data store and pre key bundle */
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Store bob_store = setup_test_store_context(global_context);
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uint32 bob_local_registration_id = bob_store.local_registration_id;
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IdentityKeyPair bob_identity_key_pair = bob_store.identity_key_pair;
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ECKeyPair bob_pre_key_pair = global_context.generate_key_pair();
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PreKeyBundle bob_pre_key = create_pre_key_bundle(bob_local_registration_id, 1, 31337, bob_pre_key_pair.public, 0, null, null, bob_identity_key_pair.public);
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/*
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* Have Alice process Bob's pre key bundle, which should fail due to a
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* missing unsigned pre key.
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*/
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fail_if_not_error_code(() => alice_session_builder.process_pre_key_bundle(bob_pre_key), ErrorCode.INVALID_KEY);
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} catch(Error e) {
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fail_if_reached(@"Unexpected error: $(e.message)");
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}
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}
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void test_basic_pre_key_v3() {
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try {
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/* Create Alice's data store and session builder */
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Store alice_store = setup_test_store_context(global_context);
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SessionBuilder alice_session_builder = alice_store.create_session_builder(bob_address);
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/* Create Bob's data store and pre key bundle */
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Store bob_store = setup_test_store_context(global_context);
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uint32 bob_local_registration_id = bob_store.local_registration_id;
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ECKeyPair bob_pre_key_pair = global_context.generate_key_pair();
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ECKeyPair bob_signed_pre_key_pair = global_context.generate_key_pair();
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IdentityKeyPair bob_identity_key_pair = bob_store.identity_key_pair;
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uint8[] bob_signed_pre_key_signature = global_context.calculate_signature(bob_identity_key_pair.private, bob_signed_pre_key_pair.public.serialize());
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PreKeyBundle bob_pre_key = create_pre_key_bundle(bob_local_registration_id, 1, 31337, bob_pre_key_pair.public, 22, bob_signed_pre_key_pair.public, bob_signed_pre_key_signature, bob_identity_key_pair.public);
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/* Have Alice process Bob's pre key bundle */
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alice_session_builder.process_pre_key_bundle(bob_pre_key);
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/* Check that we can load the session state and verify its version */
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fail_if_not(alice_store.contains_session(bob_address));
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SessionRecord loaded_record = alice_store.load_session(bob_address);
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fail_if_not_eq_int((int)loaded_record.state.session_version, 3);
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/* Encrypt an outgoing message to send to Bob */
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string original_message = "L'homme est condamné à être libre";
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SessionCipher alice_session_cipher = alice_store.create_session_cipher(bob_address);
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CiphertextMessage outgoing_message = alice_session_cipher.encrypt(original_message.data);
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fail_if_not_eq_int(outgoing_message.type, CiphertextType.PREKEY);
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/* Convert to an incoming message for Bob */
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PreKeySignalMessage incoming_message = global_context.deserialize_pre_key_signal_message(outgoing_message.serialized);
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/* Save the pre key and signed pre key in Bob's data store */
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PreKeyRecord bob_pre_key_record = new PreKeyRecord(bob_pre_key.pre_key_id, bob_pre_key_pair);
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bob_store.store_pre_key(bob_pre_key_record);
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SignedPreKeyRecord bob_signed_pre_key_record = new SignedPreKeyRecord(22, new DateTime.now_local().to_unix(), bob_signed_pre_key_pair, bob_signed_pre_key_signature);
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bob_store.store_signed_pre_key(bob_signed_pre_key_record);
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/* Create Bob's session cipher and decrypt the message from Alice */
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SessionCipher bob_session_cipher = bob_store.create_session_cipher(alice_address);
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/* Prepare the data for the callback test */
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//int callback_context = 1234;
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//bob_session_cipher.user_data =
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//bob_session_cipher.decryption_callback =
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uint8[] plaintext = bob_session_cipher.decrypt_pre_key_signal_message(incoming_message);
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/* Clean up callback data */
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bob_session_cipher.user_data = null;
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bob_session_cipher.decryption_callback = null;
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/* Verify Bob's session state and the decrypted message */
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fail_if_not(bob_store.contains_session(alice_address));
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SessionRecord alice_recipient_session_record = bob_store.load_session(alice_address);
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SessionState alice_recipient_session_state = alice_recipient_session_record.state;
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fail_if_not_eq_int((int)alice_recipient_session_state.session_version, 3);
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fail_if_null(alice_recipient_session_state.alice_base_key);
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fail_if_not_eq_uint8_arr(original_message.data, plaintext);
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/* Have Bob send a reply to Alice */
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CiphertextMessage bob_outgoing_message = bob_session_cipher.encrypt(original_message.data);
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fail_if_not_eq_int(bob_outgoing_message.type, CiphertextType.SIGNAL);
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/* Verify that Alice can decrypt it */
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SignalMessage bob_outgoing_message_copy = global_context.copy_signal_message(bob_outgoing_message);
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uint8[] alice_plaintext = alice_session_cipher.decrypt_signal_message(bob_outgoing_message_copy);
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fail_if_not_eq_uint8_arr(original_message.data, alice_plaintext);
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GLib.Test.message("Pre-interaction tests complete");
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/* Interaction tests */
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run_interaction(alice_store, bob_store);
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/* Cleanup state from previous tests that we need to replace */
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alice_store = null;
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bob_pre_key_pair = null;
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bob_signed_pre_key_pair = null;
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bob_identity_key_pair = null;
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bob_signed_pre_key_signature = null;
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bob_pre_key_record = null;
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bob_signed_pre_key_record = null;
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/* Create Alice's new session data */
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alice_store = setup_test_store_context(global_context);
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alice_session_builder = alice_store.create_session_builder(bob_address);
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alice_session_cipher = alice_store.create_session_cipher(bob_address);
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/* Create Bob's new pre key bundle */
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bob_pre_key_pair = global_context.generate_key_pair();
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bob_signed_pre_key_pair = global_context.generate_key_pair();
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bob_identity_key_pair = bob_store.identity_key_pair;
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bob_signed_pre_key_signature = global_context.calculate_signature(bob_identity_key_pair.private, bob_signed_pre_key_pair.public.serialize());
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bob_pre_key = create_pre_key_bundle(bob_local_registration_id, 1, 31338, bob_pre_key_pair.public, 23, bob_signed_pre_key_pair.public, bob_signed_pre_key_signature, bob_identity_key_pair.public);
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/* Save the new pre key and signed pre key in Bob's data store */
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bob_pre_key_record = new PreKeyRecord(bob_pre_key.pre_key_id, bob_pre_key_pair);
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bob_store.store_pre_key(bob_pre_key_record);
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bob_signed_pre_key_record = new SignedPreKeyRecord(23, new DateTime.now_local().to_unix(), bob_signed_pre_key_pair, bob_signed_pre_key_signature);
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bob_store.store_signed_pre_key(bob_signed_pre_key_record);
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/* Have Alice process Bob's pre key bundle */
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alice_session_builder.process_pre_key_bundle(bob_pre_key);
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/* Have Alice encrypt a message for Bob */
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outgoing_message = alice_session_cipher.encrypt(original_message.data);
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fail_if_not_eq_int(outgoing_message.type, CiphertextType.PREKEY);
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/* Have Bob try to decrypt the message */
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PreKeySignalMessage outgoing_message_copy = global_context.copy_pre_key_signal_message(outgoing_message);
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/* The decrypt should fail with a specific error */
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fail_if_not_error_code(() => bob_session_cipher.decrypt_pre_key_signal_message(outgoing_message_copy), ErrorCode.UNTRUSTED_IDENTITY);
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outgoing_message_copy = global_context.copy_pre_key_signal_message(outgoing_message);
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/* Save the identity key to Bob's store */
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bob_store.save_identity(alice_address, outgoing_message_copy.identity_key);
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/* Try the decrypt again, this time it should succeed */
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outgoing_message_copy = global_context.copy_pre_key_signal_message(outgoing_message);
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plaintext = bob_session_cipher.decrypt_pre_key_signal_message(outgoing_message_copy);
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fail_if_not_eq_uint8_arr(original_message.data, plaintext);
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/* Create a new pre key for Bob */
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ECPublicKey test_public_key = create_test_ec_public_key(global_context);
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IdentityKeyPair alice_identity_key_pair = alice_store.identity_key_pair;
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bob_pre_key = create_pre_key_bundle(bob_local_registration_id, 1, 31337, test_public_key, 23, bob_signed_pre_key_pair.public, bob_signed_pre_key_signature, alice_identity_key_pair.public);
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/* Have Alice process Bob's new pre key bundle, which should fail */
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fail_if_not_error_code(() => alice_session_builder.process_pre_key_bundle(bob_pre_key), ErrorCode.UNTRUSTED_IDENTITY);
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GLib.Test.message("Post-interaction tests complete");
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} catch(Error e) {
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fail_if_reached(@"Unexpected error: $(e.message)");
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}
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}
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void test_bad_signed_pre_key_signature() {
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try {
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/* Create Alice's data store and session builder */
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Store alice_store = setup_test_store_context(global_context);
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SessionBuilder alice_session_builder = alice_store.create_session_builder(bob_address);
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/* Create Bob's data store */
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Store bob_store = setup_test_store_context(global_context);
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/* Create Bob's regular and signed pre key pairs */
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ECKeyPair bob_pre_key_pair = global_context.generate_key_pair();
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ECKeyPair bob_signed_pre_key_pair = global_context.generate_key_pair();
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/* Create Bob's signed pre key signature */
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IdentityKeyPair bob_identity_key_pair = bob_store.identity_key_pair;
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uint8[] bob_signed_pre_key_signature = global_context.calculate_signature(bob_identity_key_pair.private, bob_signed_pre_key_pair.public.serialize());
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for (int i = 0; i < bob_signed_pre_key_signature.length * 8; i++) {
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uint8[] modified_signature = bob_signed_pre_key_signature[0:bob_signed_pre_key_signature.length];
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/* Intentionally corrupt the signature data */
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modified_signature[i/8] ^= (1 << ((uint8)i % 8));
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/* Create a pre key bundle */
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PreKeyBundle bob_pre_key = create_pre_key_bundle(bob_store.local_registration_id,1,31137,bob_pre_key_pair.public,22,bob_signed_pre_key_pair.public,modified_signature,bob_identity_key_pair.public);
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/* Process the bundle and make sure we fail with an invalid key error */
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fail_if_not_error_code(() => alice_session_builder.process_pre_key_bundle(bob_pre_key), ErrorCode.INVALID_KEY);
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}
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/* Create a correct pre key bundle */
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PreKeyBundle bob_pre_key = create_pre_key_bundle(bob_store.local_registration_id,1,31137,bob_pre_key_pair.public,22,bob_signed_pre_key_pair.public,bob_signed_pre_key_signature,bob_identity_key_pair.public);
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/* Process the bundle and make sure we do not fail */
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alice_session_builder.process_pre_key_bundle(bob_pre_key);
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} catch(Error e) {
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fail_if_reached(@"Unexpected error: $(e.message)");
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}
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}
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void test_repeat_bundle_message_v2() {
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try {
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/* Create Alice's data store and session builder */
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Store alice_store = setup_test_store_context(global_context);
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SessionBuilder alice_session_builder = alice_store.create_session_builder(bob_address);
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/* Create Bob's data store and pre key bundle */
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Store bob_store = setup_test_store_context(global_context);
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ECKeyPair bob_pre_key_pair = global_context.generate_key_pair();
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ECKeyPair bob_signed_pre_key_pair = global_context.generate_key_pair();
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uint8[] bob_signed_pre_key_signature = global_context.calculate_signature(bob_store.identity_key_pair.private, bob_signed_pre_key_pair.public.serialize());
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PreKeyBundle bob_pre_key = create_pre_key_bundle(bob_store.local_registration_id,1,31337,bob_pre_key_pair.public,0,null,null,bob_store.identity_key_pair.public);
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/* Add Bob's pre keys to Bob's data store */
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PreKeyRecord bob_pre_key_record = new PreKeyRecord(bob_pre_key.pre_key_id, bob_pre_key_pair);
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bob_store.store_pre_key(bob_pre_key_record);
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SignedPreKeyRecord bob_signed_pre_key_record = new SignedPreKeyRecord(22, new DateTime.now_local().to_unix(), bob_signed_pre_key_pair, bob_signed_pre_key_signature);
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bob_store.store_signed_pre_key(bob_signed_pre_key_record);
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/*
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* Have Alice process Bob's pre key bundle, which should fail due to a
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* missing signed pre key.
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*/
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fail_if_not_error_code(() => alice_session_builder.process_pre_key_bundle(bob_pre_key), ErrorCode.INVALID_KEY);
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} catch(Error e) {
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fail_if_reached(@"Unexpected error: $(e.message)");
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}
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}
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class Holder {
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public uint8[] data { get; private set; }
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public Holder(uint8[] data) {
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this.data = data;
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}
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}
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void run_interaction(Store alice_store, Store bob_store) throws Error {
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/* Create the session ciphers */
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SessionCipher alice_session_cipher = alice_store.create_session_cipher(bob_address);
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SessionCipher bob_session_cipher = bob_store.create_session_cipher(alice_address);
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/* Create a test message */
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string original_message = "smert ze smert";
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/* Simulate Alice sending a message to Bob */
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CiphertextMessage alice_message = alice_session_cipher.encrypt(original_message.data);
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fail_if_not_eq_int(alice_message.type, CiphertextType.SIGNAL);
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SignalMessage alice_message_copy = global_context.copy_signal_message(alice_message);
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uint8[] plaintext = bob_session_cipher.decrypt_signal_message(alice_message_copy);
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fail_if_not_eq_uint8_arr(original_message.data, plaintext);
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GLib.Test.message("Interaction complete: Alice -> Bob");
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/* Simulate Bob sending a message to Alice */
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CiphertextMessage bob_message = bob_session_cipher.encrypt(original_message.data);
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fail_if_not_eq_int(alice_message.type, CiphertextType.SIGNAL);
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SignalMessage bob_message_copy = global_context.copy_signal_message(bob_message);
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plaintext = alice_session_cipher.decrypt_signal_message(bob_message_copy);
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fail_if_not_eq_uint8_arr(original_message.data, plaintext);
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GLib.Test.message("Interaction complete: Bob -> Alice");
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/* Looping Alice -> Bob */
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for (int i = 0; i < 10; i++) {
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uint8[] looping_message = create_looping_message(i);
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CiphertextMessage alice_looping_message = alice_session_cipher.encrypt(looping_message);
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SignalMessage alice_looping_message_copy = global_context.copy_signal_message(alice_looping_message);
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uint8[] looping_plaintext = bob_session_cipher.decrypt_signal_message(alice_looping_message_copy);
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fail_if_not_eq_uint8_arr(looping_message, looping_plaintext);
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}
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GLib.Test.message("Interaction complete: Alice -> Bob (looping)");
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/* Looping Bob -> Alice */
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for (int i = 0; i < 10; i++) {
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uint8[] looping_message = create_looping_message(i);
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CiphertextMessage bob_looping_message = bob_session_cipher.encrypt(looping_message);
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SignalMessage bob_looping_message_copy = global_context.copy_signal_message(bob_looping_message);
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uint8[] looping_plaintext = alice_session_cipher.decrypt_signal_message(bob_looping_message_copy);
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fail_if_not_eq_uint8_arr(looping_message, looping_plaintext);
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}
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GLib.Test.message("Interaction complete: Bob -> Alice (looping)");
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/* Generate a shuffled list of encrypted messages for later use */
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Holder[] alice_ooo_plaintext = new Holder[10];
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Holder[] alice_ooo_ciphertext = new Holder[10];
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for (int i = 0; i < 10; i++) {
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alice_ooo_plaintext[i] = new Holder(create_looping_message(i));
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alice_ooo_ciphertext[i] = new Holder(alice_session_cipher.encrypt(alice_ooo_plaintext[i].data).serialized);
|
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|
}
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|
|
for (int i = 0; i < 10; i++) {
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|
|
uint32 s = Random.next_int() % 10;
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|
|
Holder tmp = alice_ooo_plaintext[s];
|
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|
|
alice_ooo_plaintext[s] = alice_ooo_plaintext[i];
|
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|
alice_ooo_plaintext[i] = tmp;
|
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|
|
tmp = alice_ooo_ciphertext[s];
|
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|
|
alice_ooo_ciphertext[s] = alice_ooo_ciphertext[i];
|
|
|
|
alice_ooo_ciphertext[i] = tmp;
|
|
|
|
}
|
|
|
|
GLib.Test.message("Shuffled Alice->Bob messages created");
|
|
|
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|
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|
|
/* Looping Alice -> Bob (repeated) */
|
|
|
|
for (int i = 0; i < 10; i++) {
|
|
|
|
uint8[] looping_message = create_looping_message(i);
|
|
|
|
CiphertextMessage alice_looping_message = alice_session_cipher.encrypt(looping_message);
|
|
|
|
SignalMessage alice_looping_message_copy = global_context.copy_signal_message(alice_looping_message);
|
|
|
|
uint8[] looping_plaintext = bob_session_cipher.decrypt_signal_message(alice_looping_message_copy);
|
|
|
|
fail_if_not_eq_uint8_arr(looping_message, looping_plaintext);
|
|
|
|
}
|
|
|
|
GLib.Test.message("Interaction complete: Alice -> Bob (looping, repeated)");
|
|
|
|
|
|
|
|
/* Looping Bob -> Alice (repeated) */
|
|
|
|
for (int i = 0; i < 10; i++) {
|
|
|
|
uint8[] looping_message = create_looping_message(i);
|
|
|
|
CiphertextMessage bob_looping_message = bob_session_cipher.encrypt(looping_message);
|
|
|
|
SignalMessage bob_looping_message_copy = global_context.copy_signal_message(bob_looping_message);
|
|
|
|
uint8[] looping_plaintext = alice_session_cipher.decrypt_signal_message(bob_looping_message_copy);
|
|
|
|
fail_if_not_eq_uint8_arr(looping_message, looping_plaintext);
|
|
|
|
}
|
|
|
|
GLib.Test.message("Interaction complete: Bob -> Alice (looping, repeated)");
|
|
|
|
|
|
|
|
/* Shuffled Alice -> Bob */
|
|
|
|
for (int i = 0; i < 10; i++) {
|
|
|
|
SignalMessage ooo_message_deserialized = global_context.deserialize_signal_message(alice_ooo_ciphertext[i].data);
|
|
|
|
uint8[] ooo_plaintext = bob_session_cipher.decrypt_signal_message(ooo_message_deserialized);
|
|
|
|
fail_if_not_eq_uint8_arr(alice_ooo_plaintext[i].data, ooo_plaintext);
|
|
|
|
}
|
|
|
|
GLib.Test.message("Interaction complete: Alice -> Bob (shuffled)");
|
|
|
|
}
|
|
|
|
|
|
|
|
uint8[] create_looping_message(int index) {
|
|
|
|
return (@"You can only desire based on what you know: $index").data;
|
|
|
|
}
|
|
|
|
|
|
|
|
/*
|
|
|
|
uint8[] create_looping_message_short(int index) {
|
|
|
|
return ("What do we mean by saying that existence precedes essence? " +
|
|
|
|
"We mean that man first of all exists, encounters himself, " +
|
|
|
|
@"surges up in the world--and defines himself aftward. $index").data;
|
|
|
|
}
|
|
|
|
*/
|
|
|
|
}
|
|
|
|
|
|
|
|
}
|