예제 #1
0
        public void ReadShouldBlockUntilAllBytesRequestedAreReceived()
        {
            using (var server = new FakeTcpServer(FakeServerPort))
            {
                var count = 0;

                var test = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl);

                var resultTask = test.ReadAsync(4).ContinueWith(t =>
                {
                    Interlocked.Increment(ref count);
                    return(t.Result);
                });

                Console.WriteLine("Sending first 3 bytes...");
                var sendInitialBytes = server.SendDataAsync(new byte[] { 0, 0, 0 }).Wait(TimeSpan.FromSeconds(10));
                Assert.That(sendInitialBytes, Is.True, "First 3 bytes should have been sent.");

                Console.WriteLine("Ensuring task blocks...");
                var unblocked = resultTask.Wait(TimeSpan.FromMilliseconds(500));
                Assert.That(unblocked, Is.False, "Wait should return false.");
                Assert.That(resultTask.IsCompleted, Is.False, "Task should still be running, blocking.");
                Assert.That(count, Is.EqualTo(0), "Should still block even though bytes have been received.");

                Console.WriteLine("Sending last byte...");
                var sendLastByte = server.SendDataAsync(new byte[] { 0 }).Wait(TimeSpan.FromSeconds(10));
                Assert.That(sendLastByte, Is.True, "Last byte should have sent.");

                Console.WriteLine("Ensuring task unblocks...");
                resultTask.Wait(TimeSpan.FromMilliseconds(500));
                Assert.That(resultTask.IsCompleted, Is.True, "Task should have completed.");
                Assert.That(count, Is.EqualTo(1), "Task ContinueWith should have executed.");
                Assert.That(resultTask.Result.Length, Is.EqualTo(4), "Result of task should be 4 bytes.");
            }
        }
예제 #2
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        public async Task ReadShouldIgnoreMessageWithUnknownCorrelationId()
        {
            const int correlationId = 99;
            var       receivedData  = false;

            var mockLog = new MemoryLog();

            var config   = new ConnectionConfiguration(onRead: (e, buffer, elapsed) => receivedData = true);
            var endpoint = Endpoint.Resolve(TestConfig.ServerUri(), TestConfig.InfoLog);

            using (var server = new FakeTcpServer(TestConfig.InfoLog, endpoint.IP.Port))
                using (var socket = new TcpSocket(endpoint, config, mockLog))
                    using (var conn = new Connection(socket, config, log: mockLog))
                    {
                        //send correlation message
                        server.SendDataAsync(CreateCorrelationMessage(correlationId)).Wait(TimeSpan.FromSeconds(5));

                        //wait for connection
                        await TaskTest.WaitFor(() => server.ConnectionEventcount > 0);

                        Assert.That(server.ConnectionEventcount, Is.EqualTo(1));

                        await TaskTest.WaitFor(() => receivedData);

                        // shortly after receivedData, but still after
                        await TaskTest.WaitFor(() => mockLog.LogEvents.Any(e => e.Item1 == LogLevel.Warn && e.Item2.Message == $"Unexpected response from {endpoint} with correlation id {correlationId} (not in request queue)."));
                    }
        }
예제 #3
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        public async Task SendAsyncShouldNotAllowResponseToTimeoutWhileAwaitingKafkaToEstableConnection()
        {
            var endpoint = Endpoint.Resolve(TestConfig.ServerUri(), TestConfig.InfoLog);

            using (var socket = new TcpSocket(endpoint, log: TestConfig.InfoLog))
                using (var conn = new Connection(socket, new ConnectionConfiguration(requestTimeout: TimeSpan.FromSeconds(1000)), log: TestConfig.InfoLog))
                {
                    Console.WriteLine("SendAsync blocked by reconnection attempts...");
                    var taskResult = conn.SendAsync(new MetadataRequest(), CancellationToken.None);

                    Console.WriteLine("Task result should be WaitingForActivation...");
                    Assert.That(taskResult.IsFaulted, Is.False);
                    Assert.That(taskResult.Status, Is.EqualTo(TaskStatus.WaitingForActivation));

                    Console.WriteLine("Starting server to establish connection...");
                    using (var server = new FakeTcpServer(TestConfig.InfoLog, endpoint.IP.Port))
                    {
                        server.OnClientConnected += () => Console.WriteLine("Client connected...");
                        server.OnBytesReceived   += b =>
                        {
                            var request = KafkaDecoder.DecodeHeader(b);
                            AsyncContext.Run(async() => await server.SendDataAsync(MessageHelper.CreateMetadataResponse(request.CorrelationId, "Test")));
                        };

                        await Task.WhenAny(taskResult, Task.Delay(TimeSpan.FromSeconds(10)));

                        Assert.That(taskResult.IsFaulted, Is.False);
                        Assert.That(taskResult.IsCanceled, Is.False);
                        await taskResult;
                        Assert.That(taskResult.Status, Is.EqualTo(TaskStatus.RanToCompletion));
                    }
                }
        }
예제 #4
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        public async void SendAsyncShouldNotAllowResponseToTimeoutWhileAwaitingKafkaToEstableConnection()
        {
            using (var socket = new KafkaTcpSocket(_log, _kafkaEndpoint))
                using (var conn = new KafkaConnection(socket, TimeSpan.FromMilliseconds(1000000), log: _log))
                {
                    Console.WriteLine("SendAsync blocked by reconnection attempts...");
                    var taskResult = conn.SendAsync(new MetadataRequest());

                    taskResult.ContinueWith(t => taskResult = t).Wait(TimeSpan.FromSeconds(1));

                    Console.WriteLine("Task result should be WaitingForActivation...");
                    Assert.That(taskResult.IsFaulted, Is.False);
                    Assert.That(taskResult.Status, Is.EqualTo(TaskStatus.WaitingForActivation));

                    Console.WriteLine("Starting server to establish connection...");
                    using (var server = new FakeTcpServer(8999))
                    {
                        server.OnClientConnected += () => Console.WriteLine("Client connected...");
                        server.OnBytesReceived   += (b) =>
                        {
                            server.SendDataAsync(MessageHelper.CreateMetadataResponse(1, "Test"));
                        };

                        await taskResult;

                        Assert.That(taskResult.IsFaulted, Is.False);
                        Assert.That(taskResult.IsCanceled, Is.False);
                        Assert.That(taskResult.Status, Is.EqualTo(TaskStatus.RanToCompletion));
                    }
                }
        }
        public async Task KafkaConnectionShouldLogDisconnectAndRecover()
        {
            var mockLog = new Mock <IKafkaLog>();
            var log     = new DefaultTraceLog(LogLevel.Error);

            using (var server = new FakeTcpServer(log, 8999))
                using (var socket = new KafkaTcpSocket(log, _kafkaEndpoint, _maxRetry))
                    using (var conn = new KafkaConnection(socket, log: mockLog.Object))
                    {
                        var disconnected = 0;
                        socket.OnServerDisconnected += () => Interlocked.Increment(ref disconnected);

                        for (int connectionAttempt = 1; connectionAttempt < 4; connectionAttempt++)
                        {
                            await TaskTest.WaitFor(() => server.ConnectionEventcount == connectionAttempt);

                            Assert.That(server.ConnectionEventcount, Is.EqualTo(connectionAttempt));
                            server.SendDataAsync(CreateCorrelationMessage(1)).Wait(TimeSpan.FromSeconds(5));
                            await TaskTest.WaitFor(() => !conn.IsOnErrorState());

                            Assert.IsFalse(conn.IsOnErrorState());
                            mockLog.Verify(x => x.InfoFormat("Polling read thread has recovered: {0}", It.IsAny <object[]>()), Times.Exactly(connectionAttempt - 1));

                            server.DropConnection();
                            await TaskTest.WaitFor(() => conn.IsOnErrorState());

                            Assert.AreEqual(disconnected, connectionAttempt);
                            Assert.IsTrue(conn.IsOnErrorState());

                            mockLog.Verify(x => x.ErrorFormat("Exception occured in polling read thread {0}: {1}", It.IsAny <object[]>()), Times.Exactly(connectionAttempt));
                        }
                    }
        }
예제 #6
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        public void ReadShouldReconnectAfterLosingConnection()
        {
            using (var server = new FakeTcpServer(FakeServerPort))
            {
                var disconnects = 0;
                var connects    = 0;
                server.OnClientConnected    += () => Interlocked.Increment(ref connects);
                server.OnClientDisconnected += () => Interlocked.Increment(ref disconnects);
                var socket = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl);

                var resultTask = ReadFromSocketWithRetry(socket, 4);

                //wait till connected
                TaskTest.WaitFor(() => connects > 0);

                //drop connection
                server.DropConnection();
                TaskTest.WaitFor(() => disconnects > 0);
                Assert.That(disconnects, Is.EqualTo(1), "Server should have disconnected the client.");

                //wait for reconnection
                TaskTest.WaitFor(() => connects > 1);
                Assert.That(connects, Is.EqualTo(2), "Socket should have reconnected.");

                //send data and get result
                server.SendDataAsync(99.ToBytes());
                Assert.That(resultTask.Result.ToInt32(), Is.EqualTo(99), "Socket should have received the 4 bytes.");
            }
        }
예제 #7
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        public void WriteAndReadShouldBeAsyncronous()
        {
            var write    = new List <int>();
            var read     = new List <int>();
            var expected = new List <int> {
                1, 2, 3, 4, 5, 6, 7, 8, 9, 10
            };

            using (var server = new FakeTcpServer(FakeServerPort))
            {
                server.OnBytesReceived += data => write.AddRange(data.Batch(4).Select(x => x.ToArray().ToInt32()));

                var test = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl);

                var tasks = Enumerable.Range(1, 10)
                            .SelectMany(i => new[]
                {
                    test.WriteAsync(i.ToBytes()),
                    test.ReadAsync(4).ContinueWith(t => read.Add(t.Result.ToInt32())),
                    server.SendDataAsync(i.ToBytes())
                }).ToArray();

                Task.WaitAll(tasks);
                Assert.That(write.OrderBy(x => x), Is.EqualTo(expected));
                Assert.That(read.OrderBy(x => x), Is.EqualTo(expected));
            }
        }
예제 #8
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        public void ReadShouldStackReadRequestsAndReturnOneAtATime()
        {
            var endpoint = Endpoint.Resolve(TestConfig.ServerUri(), TestConfig.InfoLog);

            using (var server = new FakeTcpServer(TestConfig.InfoLog, endpoint.IP.Port))
            {
                var messages       = new[] { "test1", "test2", "test3", "test4" };
                var expectedLength = "test1".Length;

                var payload = new KafkaWriter().Write(messages);

                using (var socket = new TcpSocket(endpoint, log: TestConfig.WarnLog)) {
                    var tasks = messages.Select(x => socket.ReadAsync(x.Length, CancellationToken.None)).ToArray();

                    var send = server.SendDataAsync(payload.ToBytes());

                    Task.WaitAll(tasks);

                    foreach (var task in tasks)
                    {
                        Assert.That(task.Result.Length, Is.EqualTo(expectedLength));
                    }
                }
            }
        }
예제 #9
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        public void ReadShouldNotLoseDataFromStreamOverMultipleReads()
        {
            var endpoint = Endpoint.Resolve(TestConfig.ServerUri(), TestConfig.InfoLog);

            using (var server = new FakeTcpServer(TestConfig.InfoLog, endpoint.IP.Port))
                using (var test = new TcpSocket(endpoint, log: TestConfig.InfoLog))
                {
                    const int    firstMessage  = 99;
                    const string secondMessage = "testmessage";
                    var          bytes         = Encoding.UTF8.GetBytes(secondMessage);

                    var payload = new KafkaWriter()
                                  .Write(firstMessage)
                                  .Write(bytes, false);

                    //send the combined payload
                    var send = server.SendDataAsync(payload.ToBytesNoLength());

                    var firstResponse = test.ReadAsync(4, CancellationToken.None).Result.ToInt32();
                    Assert.That(firstResponse, Is.EqualTo(firstMessage));

                    var secondResponse = Encoding.ASCII.GetString(test.ReadAsync(secondMessage.Length, CancellationToken.None).Result);
                    Assert.That(secondResponse, Is.EqualTo(secondMessage));
                }
        }
        public async Task ReadShouldIgnoreMessageWithUnknownCorrelationId()
        {
            const int correlationId = 99;

            var mockLog = _kernel.GetMock <IKafkaLog>();

            using (var server = new FakeTcpServer(_log, 8999))
                using (var socket = new KafkaTcpSocket(mockLog.Object, _kafkaEndpoint, _maxRetry))
                    using (var conn = new KafkaConnection(socket, log: mockLog.Object))
                    {
                        var receivedData = false;
                        socket.OnBytesReceived += i => receivedData = true;

                        //send correlation message
                        server.SendDataAsync(CreateCorrelationMessage(correlationId)).Wait(TimeSpan.FromSeconds(5));

                        //wait for connection
                        await TaskTest.WaitFor(() => server.ConnectionEventcount > 0);

                        Assert.That(server.ConnectionEventcount, Is.EqualTo(1));

                        await TaskTest.WaitFor(() => receivedData);

                        //should log a warning and keep going
                        mockLog.Verify(x => x.WarnFormat(It.IsAny <string>(), It.Is <int>(o => o == correlationId)));
                    }
        }
예제 #11
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        public async Task KafkaConnectionShouldSkipPartiallyReadMessage()
        {
            var mockLog   = new MemoryLog();
            var bytesRead = 0;

            var config = new ConnectionConfiguration(onReadChunk: (e, size, remaining, read, elapsed) => Interlocked.Add(ref bytesRead, read));

            var endpoint = Endpoint.Resolve(TestConfig.ServerUri(), TestConfig.InfoLog);

            using (var server = new FakeTcpServer(TestConfig.InfoLog, endpoint.IP.Port))
                using (var socket = new TcpSocket(endpoint, config, TestConfig.InfoLog))
                    using (new Connection(socket, config, log: mockLog))
                    {
                        // send size
                        var size = 200;
                        await server.SendDataAsync(size.ToBytes());

                        var randomizer = Randomizer.CreateRandomizer();
                        var firstBytes = new byte[99];
                        for (var i = 0; i < firstBytes.Length; i++)
                        {
                            firstBytes[i] = randomizer.NextByte();
                        }

                        // send half of payload
                        await server.SendDataAsync(firstBytes);

                        await TaskTest.WaitFor(() => bytesRead == firstBytes.Length);

                        //Assert.That(mockLog.LogEvents.Count(e => e.Item1 == LogLevel.Warn && e.Item2.Message.StartsWith("Skipping")), Is.EqualTo(0));

                        server.DropConnection();

                        // send half of payload should be skipped
                        var lastBytes = new byte[size];
                        for (var i = 0; i < lastBytes.Length; i++)
                        {
                            lastBytes[i] = randomizer.NextByte();
                        }
                        await server.SendDataAsync(lastBytes);

                        await TaskTest.WaitFor(() => bytesRead >= size);

                        Assert.That(mockLog.LogEvents.Count(e => e.Item1 == LogLevel.Warn && e.Item2.Message.StartsWith($"Skipping {size - firstBytes.Length} bytes on")), Is.EqualTo(1));
                    }
        }
예제 #12
0
 public void ShouldDisposeEvenWhenTryingToSendWithoutExceptionThrown()
 {
     using (var server = new FakeTcpServer(TestConfig.WarnLog, TestConfig.ServerPort()))
     {
         server.SendDataAsync("test");
         Thread.Sleep(500);
     }
 }
 public void ShouldDisposeEvenWhenTryingToSendWithoutExceptionThrown()
 {
     using (var server = new FakeTcpServer(8999))
     {
         server.SendDataAsync("test");
         Thread.Sleep(500);
     }
 }
예제 #14
0
 public void ShouldDisposeEvenWhenTryingToSendWithoutExceptionThrown()
 {
     using (var server = new FakeTcpServer(Ilog, 8999))
     {
         server.SendDataAsync("test");
         Thread.Sleep(500);
     }
 }
        public void ReadShouldBeAbleToReceiveMoreThanOnceAsyncronously()
        {
            using (var server = new FakeTcpServer(_log, FakeServerPort))
                using (var test = new KafkaTcpSocket(_log, _fakeServerUrl, _maxRetry))
                {
                    const int firstMessage  = 99;
                    const int secondMessage = 100;

                    Console.WriteLine("Sending first message to receive...");
                    server.SendDataAsync(firstMessage.ToBytes());
                    var firstResponseTask = test.ReadAsync(4);

                    Console.WriteLine("Sending second message to receive...");
                    server.SendDataAsync(secondMessage.ToBytes());
                    var secondResponseTask = test.ReadAsync(4);

                    Assert.That(firstResponseTask.Result.ToInt32(), Is.EqualTo(firstMessage));
                    Assert.That(secondResponseTask.Result.ToInt32(), Is.EqualTo(secondMessage));
                }
        }
        public async Task ReadShouldBlockUntilAllBytesRequestedAreReceived()
        {
            using (var server = new FakeTcpServer(_log, FakeServerPort))
                using (var test = new KafkaTcpSocket(_log, _fakeServerUrl, _maxRetry))
                {
                    var sendCompleted = 0;
                    var bytesReceived = 0;

                    test.OnBytesReceived += i => Interlocked.Add(ref bytesReceived, i);

                    var resultTask = test.ReadAsync(4).ContinueWith(t =>
                    {
                        Interlocked.Increment(ref sendCompleted);
                        return(t.Result);
                    });

                    Console.WriteLine("Sending first 3 bytes...");
                    server.HasClientConnected.Wait(TimeSpan.FromMilliseconds(1000));
                    var sendInitialBytes = server.SendDataAsync(new byte[] { 0, 0, 0 }).Wait(TimeSpan.FromSeconds(10));
                    Assert.That(sendInitialBytes, Is.True, "First 3 bytes should have been sent.");

                    Console.WriteLine("Ensuring task blocks...");
                    await TaskTest.WaitFor(() => bytesReceived > 0);

                    Assert.That(resultTask.IsCompleted, Is.False, "Task should still be running, blocking.");
                    Assert.That(sendCompleted, Is.EqualTo(0), "Should still block even though bytes have been received.");
                    Assert.That(bytesReceived, Is.EqualTo(3), "Three bytes should have been received and we are waiting on the last byte.");

                    Console.WriteLine("Sending last byte...");
                    var sendLastByte = server.SendDataAsync(new byte[] { 0 }).Wait(TimeSpan.FromSeconds(10));
                    Assert.That(sendLastByte, Is.True, "Last byte should have sent.");

                    Console.WriteLine("Ensuring task unblocks...");
                    await TaskTest.WaitFor(() => resultTask.IsCompleted);

                    Assert.That(bytesReceived, Is.EqualTo(4), "Should have received 4 bytes.");
                    Assert.That(resultTask.IsCompleted, Is.True, "Task should have completed.");
                    Assert.That(sendCompleted, Is.EqualTo(1), "Task ContinueWith should have executed.");
                    Assert.That(resultTask.Result.Length, Is.EqualTo(4), "Result of task should be 4 bytes.");
                }
        }
예제 #17
0
        public async Task ReadShouldBlockUntilAllBytesRequestedAreReceived()
        {
            var sendCompleted = 0;
            var bytesReceived = 0;
            var config        = new ConnectionConfiguration(onReadChunk: (e, size, remaining, read, elapsed) => Interlocked.Add(ref bytesReceived, read));
            var endpoint      = Endpoint.Resolve(TestConfig.ServerUri(), TestConfig.InfoLog);

            using (var server = new FakeTcpServer(TestConfig.InfoLog, endpoint.IP.Port))
                using (var test = new TcpSocket(endpoint, config, TestConfig.InfoLog))
                {
                    var resultTask = test.ReadAsync(4, CancellationToken.None).ContinueWith(t =>
                    {
                        Interlocked.Increment(ref sendCompleted);
                        return(t.Result);
                    });

                    Console.WriteLine("Sending first 3 bytes...");
                    server.HasClientConnected.Wait(TimeSpan.FromMilliseconds(1000));
                    var sendInitialBytes = server.SendDataAsync(new byte[] { 0, 0, 0 }).Wait(TimeSpan.FromSeconds(10));
                    Assert.That(sendInitialBytes, Is.True, "First 3 bytes should have been sent.");

                    Console.WriteLine("Ensuring task blocks...");
                    await TaskTest.WaitFor(() => bytesReceived > 0);

                    Assert.That(resultTask.IsCompleted, Is.False, "Task should still be running, blocking.");
                    Assert.That(sendCompleted, Is.EqualTo(0), "Should still block even though bytes have been received.");
                    Assert.That(bytesReceived, Is.EqualTo(3), "Three bytes should have been received and we are waiting on the last byte.");

                    Console.WriteLine("Sending last byte...");
                    var sendLastByte = server.SendDataAsync(new byte[] { 0 }).Wait(TimeSpan.FromSeconds(10));
                    Assert.That(sendLastByte, Is.True, "Last byte should have sent.");

                    Console.WriteLine("Ensuring task unblocks...");
                    await TaskTest.WaitFor(() => resultTask.IsCompleted);

                    Assert.That(bytesReceived, Is.EqualTo(4), "Should have received 4 bytes.");
                    Assert.That(resultTask.IsCompleted, Is.True, "Task should have completed.");
                    Assert.That(sendCompleted, Is.EqualTo(1), "Task ContinueWith should have executed.");
                    Assert.That(resultTask.Result.Length, Is.EqualTo(4), "Result of task should be 4 bytes.");
                }
        }
        public void ReadShouldBeAbleToReceiveMoreThanOnce()
        {
            using (var server = new FakeTcpServer(_log, FakeServerPort))
                using (var test = new KafkaTcpSocket(_log, _fakeServerUrl, _maxRetry))
                {
                    const int    firstMessage  = 99;
                    const string secondMessage = "testmessage";

                    Console.WriteLine("Sending first message to receive...");
                    server.SendDataAsync(firstMessage.ToBytes());

                    var firstResponse = test.ReadAsync(4).Result.ToInt32();
                    Assert.That(firstResponse, Is.EqualTo(firstMessage));

                    Console.WriteLine("Sending second message to receive...");
                    server.SendDataAsync(secondMessage);

                    var secondResponse = Encoding.ASCII.GetString(test.ReadAsync(secondMessage.Length).Result);
                    Assert.That(secondResponse, Is.EqualTo(secondMessage));
                }
        }
예제 #19
0
        public void ReadShouldBeAbleToReceiveMoreThanOnceAsyncronously()
        {
            var endpoint = Endpoint.Resolve(TestConfig.ServerUri(), TestConfig.InfoLog);

            using (var server = new FakeTcpServer(TestConfig.InfoLog, endpoint.IP.Port))
                using (var test = new TcpSocket(endpoint, log: TestConfig.InfoLog))
                {
                    const int firstMessage  = 99;
                    const int secondMessage = 100;

                    Console.WriteLine("Sending first message to receive...");
                    var send1             = server.SendDataAsync(firstMessage.ToBytes());
                    var firstResponseTask = test.ReadAsync(4, CancellationToken.None);

                    Console.WriteLine("Sending second message to receive...");
                    var send2 = server.SendDataAsync(secondMessage.ToBytes());
                    var secondResponseTask = test.ReadAsync(4, CancellationToken.None);

                    Assert.That(firstResponseTask.Result.ToInt32(), Is.EqualTo(firstMessage));
                    Assert.That(secondResponseTask.Result.ToInt32(), Is.EqualTo(secondMessage));
                }
        }
예제 #20
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        public void ReadShouldBeAbleToReceiveMoreThanOnce()
        {
            using (var server = new FakeTcpServer(8999))
            {
                const int    firstMessage  = 99;
                const string secondMessage = "testmessage";

                var test = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl);

                Console.WriteLine("Sending first message to receive...");
                server.SendDataAsync(firstMessage.ToBytes()).Wait(TimeSpan.FromSeconds(2));

                var firstResponse = test.ReadAsync(4).Result.ToInt32();
                Assert.That(firstResponse, Is.EqualTo(firstMessage));

                Console.WriteLine("Sending second message to receive...");
                server.SendDataAsync(secondMessage).Wait(TimeSpan.FromSeconds(2));

                var secondResponse = Encoding.ASCII.GetString(test.ReadAsync(secondMessage.Length).Result);
                Assert.That(secondResponse, Is.EqualTo(secondMessage));
            }
        }
예제 #21
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        public void ReadShouldBeAbleToReceiveMoreThanOnce()
        {
            var endpoint = Endpoint.Resolve(TestConfig.ServerUri(), TestConfig.InfoLog);

            using (var server = new FakeTcpServer(TestConfig.InfoLog, endpoint.IP.Port))
                using (var test = new TcpSocket(endpoint, log: TestConfig.InfoLog))
                {
                    const int    firstMessage  = 99;
                    const string secondMessage = "testmessage";

                    Console.WriteLine("Sending first message to receive...");
                    var send = server.SendDataAsync(firstMessage.ToBytes());

                    var firstResponse = test.ReadAsync(4, CancellationToken.None).Result.ToInt32();
                    Assert.That(firstResponse, Is.EqualTo(firstMessage));

                    Console.WriteLine("Sending second message to receive...");
                    server.SendDataAsync(secondMessage);

                    var secondResponse = Encoding.ASCII.GetString(test.ReadAsync(secondMessage.Length, CancellationToken.None).Result);
                    Assert.That(secondResponse, Is.EqualTo(secondMessage));
                }
        }
예제 #22
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        public async Task ShouldReconnectAfterLosingConnectionAndBeAbleToStartNewRead()
        {
            var log      = TestConfig.InfoLog;
            var endpoint = Endpoint.Resolve(TestConfig.ServerUri(), TestConfig.InfoLog);

            using (var server = new FakeTcpServer(TestConfig.InfoLog, endpoint.IP.Port))
            {
                var disconnects = 0;
                var connects    = 0;
                TaskCompletionSource <int> disconnectEvent = new TaskCompletionSource <int>();

                server.OnClientConnected    += () => Interlocked.Increment(ref connects);
                server.OnClientDisconnected += () => Interlocked.Increment(ref disconnects);
                var config = new ConnectionConfiguration(onDisconnected: (e, exception) => {
                    log.Info(() => LogEvent.Create("inside onDisconnected"));
                    disconnectEvent.TrySetResult(1);
                });
                using (var socket = new TcpSocket(endpoint, config, log)) {
                    //wait till connected
                    await TaskTest.WaitFor(() => connects > 0);

                    log.Info(() => LogEvent.Create("connects > 0"));
                    var readTask = socket.ReadAsync(4, CancellationToken.None);

                    log.Info(() => LogEvent.Create("Connected: Dropping connection..."));
                    server.DropConnection();

                    //wait till Disconnected
                    log.Info(() => LogEvent.Create("Waiting for onDisconnected"));
                    await Task.WhenAny(disconnectEvent.Task, Task.Delay(100000));

                    Assert.IsTrue(disconnectEvent.Task.IsCompleted, "Server should have disconnected the client.");
                    Assert.ThrowsAsync <ConnectionException>(async() => await readTask);
                    await TaskTest.WaitFor(() => connects == 2, 6000);

                    log.Info(() => LogEvent.Create("connects == 2"));
                    Assert.That(connects, Is.EqualTo(2), "Socket should have reconnected.");

                    var readTask2 = socket.ReadAsync(4, CancellationToken.None);

                    log.Info(() => LogEvent.Create("sending data (99)"));
                    await server.SendDataAsync(99.ToBytes());

                    var result = await readTask2;
                    Assert.That(result.ToInt32(), Is.EqualTo(99), "Socket should have received the 4 bytes.");
                }
            }
        }
예제 #23
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        public void SendAsyncShouldWaitUntilClientIsConnected()
        {
            const int testData = 99;
            using (var server = new FakeTcpServer(Ilog, 8999))
            using (var client = new TcpClient())
            {
                server.SendDataAsync(testData.ToBytes());
                Thread.Sleep(1000);
                client.Connect(_fakeServerUrl.Host, _fakeServerUrl.Port);

                var buffer = new byte[4];
                client.GetStream().ReadAsync(buffer, 0, 4).Wait(TimeSpan.FromSeconds(5));

                Assert.That(buffer.ToInt32(), Is.EqualTo(testData));
            }
        }
        public void SendAsyncShouldWaitUntilClientIsConnected()
        {
            const int testData = 99;

            using (var server = new FakeTcpServer(8999))
                using (var client = new TcpClient())
                {
                    server.SendDataAsync(testData.ToBytes());
                    Thread.Sleep(1000);
                    client.Connect(_fakeServerUrl.Host, _fakeServerUrl.Port);

                    var buffer = new byte[4];
                    client.GetStream().ReadAsync(buffer, 0, 4).Wait(TimeSpan.FromSeconds(5));

                    Assert.That(buffer.ToInt32(), Is.EqualTo(testData));
                }
        }
예제 #25
0
        public async Task SendAsyncShouldWaitUntilClientIsConnected()
        {
            const int testData  = 99;
            var       serverUri = TestConfig.ServerUri();

            using (var server = new FakeTcpServer(TestConfig.WarnLog, serverUri.Port))
                using (var client = new TcpClient())
                {
                    var send = server.SendDataAsync(testData.ToBytes());
                    Thread.Sleep(1000);
                    await client.ConnectAsync(serverUri.Host, serverUri.Port);

                    var buffer = new byte[4];
                    client.GetStream().ReadAsync(buffer, 0, 4).Wait(TimeSpan.FromSeconds(5));

                    Assert.That(buffer.ToInt32(), Is.EqualTo(testData));
                }
        }
예제 #26
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        public async Task KafkaConnectionShouldLogDisconnectAndRecover([Values(3, 4)] int connectionAttempts)
        {
            var mockLog      = new MemoryLog();
            var disconnected = 0;
            var connected    = 0;

            var config = new ConnectionConfiguration(
                onDisconnected: (e, exception) => {
                Interlocked.Increment(ref disconnected);
            },
                onConnected: (e, attempt, elapsed) => {
                Interlocked.Increment(ref connected);
            });

            var endpoint = Endpoint.Resolve(TestConfig.ServerUri(), TestConfig.InfoLog);

            using (var server = new FakeTcpServer(TestConfig.InfoLog, endpoint.IP.Port))
                using (var socket = new TcpSocket(endpoint, config, TestConfig.InfoLog))
                    using (new Connection(socket, config, log: mockLog))
                    {
                        for (var connectionAttempt = 1; connectionAttempt <= connectionAttempts; connectionAttempt++)
                        {
                            var currentAttempt = connectionAttempt;
                            await TaskTest.WaitFor(() => server.ConnectionEventcount == currentAttempt);

                            Assert.That(server.ConnectionEventcount, Is.EqualTo(connectionAttempt));
                            await server.SendDataAsync(CreateCorrelationMessage(connectionAttempt));

                            TestConfig.InfoLog.Write(LogLevel.Info, () => LogEvent.Create($"Sent CONNECTION attempt {connectionAttempt}"));
                            await TaskTest.WaitFor(() => connected == disconnected, 200);

                            Assert.That(mockLog.LogEvents.Count(e => e.Item1 == LogLevel.Info && e.Item2.Message.StartsWith("Polling receive thread has recovered on ")), Is.EqualTo(currentAttempt - 1));

                            TestConfig.InfoLog.Write(LogLevel.Info, () => LogEvent.Create($"Dropping CONNECTION attempt {connectionAttempt}"));
                            server.DropConnection();
                            await TaskTest.WaitFor(() => disconnected == currentAttempt);

                            Assert.That(mockLog.LogEvents.Count(e => e.Item1 == LogLevel.Error && e.Item2.Message.StartsWith("Polling failure on")), Is.AtLeast(currentAttempt));
                        }
                    }
        }
예제 #27
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        public void ReadShouldIgnoreMessageWithUnknownCorrelationId()
        {
            const int correlationId = 99;

            var mockLog = _kernel.GetMock <IKafkaLog>();

            using (var server = new FakeTcpServer(8999))
                using (var socket = new KafkaTcpSocket(mockLog.Object, new Uri("http://localhost:8999")))
                    using (var conn = new KafkaConnection(socket, log: mockLog.Object))
                    {
                        //send correlation message
                        server.SendDataAsync(CreateCorrelationMessage(correlationId)).Wait(TimeSpan.FromSeconds(1));

                        //wait for connection
                        TaskTest.WaitFor(() => server.ConnectionEventcount > 0);
                        Assert.That(server.ConnectionEventcount, Is.EqualTo(1));

                        //should log an exception and keep going
                        mockLog.Verify(x => x.WarnFormat(It.IsAny <string>(), correlationId));
                    }
        }
예제 #28
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        public void ReadShouldNotLoseDataFromStreamOverMultipleReads()
        {
            using (var server = new FakeTcpServer(FakeServerPort))
            {
                const int    firstMessage  = 99;
                const string secondMessage = "testmessage";

                var payload = new WriteByteStream();
                payload.Pack(firstMessage.ToBytes(), secondMessage.ToBytes());

                var test = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl);

                //send the combined payload
                server.SendDataAsync(payload.Payload());

                var firstResponse = test.ReadAsync(4).Result.ToInt32();
                Assert.That(firstResponse, Is.EqualTo(firstMessage));

                var secondResponse = Encoding.ASCII.GetString(test.ReadAsync(secondMessage.Length).Result);
                Assert.That(secondResponse, Is.EqualTo(secondMessage));
            }
        }
예제 #29
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        public async Task SendAsyncShouldUseStatictVersionInfo()
        {
            IRequestContext context  = null;
            var             endpoint = Endpoint.Resolve(TestConfig.ServerUri(), TestConfig.InfoLog);

            using (var server = new FakeTcpServer(TestConfig.InfoLog, endpoint.IP.Port))
                using (var socket = new TcpSocket(endpoint, log: TestConfig.InfoLog))
                    using (var conn = new Connection(socket, new ConnectionConfiguration(requestTimeout: TimeSpan.FromSeconds(1000), versionSupport: VersionSupport.Kafka10), log: TestConfig.InfoLog))
                    {
                        server.OnBytesReceived += data =>
                        {
                            context = KafkaDecoder.DecodeHeader(data);
                            var send = server.SendDataAsync(KafkaDecoder.EncodeResponseBytes(context, new FetchResponse()));
                        };

                        await conn.SendAsync(new FetchRequest(new FetchRequest.Topic("Foo", 0, 0)), CancellationToken.None);

                        await TaskTest.WaitFor(() => context != null);

                        Assert.That(context.ApiVersion.Value, Is.EqualTo(2));
                    }
        }
        public void ReadShouldNotLoseDataFromStreamOverMultipleReads()
        {
            using (var server = new FakeTcpServer(_log, FakeServerPort))
                using (var test = new KafkaTcpSocket(_log, _fakeServerUrl, _maxRetry))
                {
                    const int    firstMessage  = 99;
                    const string secondMessage = "testmessage";

                    var payload = new KafkaMessagePacker()
                                  .Pack(firstMessage)
                                  .Pack(secondMessage, StringPrefixEncoding.None);

                    //send the combined payload
                    server.SendDataAsync(payload.PayloadNoLength());

                    var firstResponse = test.ReadAsync(4).Result.ToInt32();
                    Assert.That(firstResponse, Is.EqualTo(firstMessage));

                    var secondResponse = Encoding.ASCII.GetString(test.ReadAsync(secondMessage.Length).Result);
                    Assert.That(secondResponse, Is.EqualTo(secondMessage));
                }
        }
        public async Task ShouldReconnectAfterLosingConnectionAndBeAbleToStartNewRead()
        {
            using (var server = new FakeTcpServer(_log, FakeServerPort))
            {
                var disconnects = 0;
                var connects    = 0;
                TaskCompletionSource <int> disconnectEvent = new TaskCompletionSource <int>();

                server.OnClientConnected    += () => Interlocked.Increment(ref connects);
                server.OnClientDisconnected += () => Interlocked.Increment(ref disconnects);
                var socket = new KafkaTcpSocket(_log, _fakeServerUrl, _maxRetry);
                socket.OnServerDisconnected += () => disconnectEvent.TrySetResult(1);

                //wait till connected
                await TaskTest.WaitFor(() => connects > 0);

                var readTask = socket.ReadAsync(4);

                server.DropConnection();

                //wait till Disconnected
                await Task.WhenAny(disconnectEvent.Task, Task.Delay(100000));

                Assert.IsTrue(disconnectEvent.Task.IsCompleted, "Server should have disconnected the client.");
                Assert.Throws <ServerDisconnectedException>(async() => await readTask);

                await TaskTest.WaitFor(() => connects == 2, 6000);

                Assert.That(connects, Is.EqualTo(2), "Socket should have reconnected.");

                var readTask2 = socket.ReadAsync(4);

                await server.SendDataAsync(99.ToBytes());

                var result = await readTask2;
                Assert.That(result.ToInt32(), Is.EqualTo(99), "Socket should have received the 4 bytes.");
            }
        }
        public void ReadShouldStackReadRequestsAndReturnOneAtATime()
        {
            using (var server = new FakeTcpServer(_log, FakeServerPort))
            {
                var messages       = new[] { "test1", "test2", "test3", "test4" };
                var expectedLength = "test1".Length;

                var payload = new KafkaMessagePacker().Pack(messages);

                var socket = new KafkaTcpSocket(new DefaultTraceLog(LogLevel.Warn), _fakeServerUrl, _maxRetry);

                var tasks = messages.Select(x => socket.ReadAsync(x.Length)).ToArray();

                server.SendDataAsync(payload.Payload());

                Task.WaitAll(tasks);

                foreach (var task in tasks)
                {
                    Assert.That(task.Result.Length, Is.EqualTo(expectedLength));
                }
            }
        }
예제 #33
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        public void ReadShouldBeAbleToReceiveMoreThanOnce()
        {
            using (var server = new FakeTcpServer(FakeServerPort))
            using (var test = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl))
            {
                const int firstMessage = 99;
                const string secondMessage = "testmessage";

                Console.WriteLine("Sending first message to receive...");
                server.SendDataAsync(firstMessage.ToBytes());

                var firstResponse = test.ReadAsync(4).Result.ToInt32();
                Assert.That(firstResponse, Is.EqualTo(firstMessage));

                Console.WriteLine("Sending second message to receive...");
                server.SendDataAsync(secondMessage);

                var secondResponse = Encoding.ASCII.GetString(test.ReadAsync(secondMessage.Length).Result);
                Assert.That(secondResponse, Is.EqualTo(secondMessage));
            }
        }
        public async Task ShouldReconnectAfterLosingConnectionAndBeAbleToStartNewRead()
        {
            using (var server = new FakeTcpServer(_log, FakeServerPort))
            {
                var disconnects = 0;
                var connects = 0;
                TaskCompletionSource<int> disconnectEvent = new TaskCompletionSource<int>();

                server.OnClientConnected += () => Interlocked.Increment(ref connects);
                server.OnClientDisconnected += () => Interlocked.Increment(ref disconnects);
                var socket = new KafkaTcpSocket(_log, _fakeServerUrl, _maxRetry);
                socket.OnServerDisconnected += () => disconnectEvent.TrySetResult(1);

                //wait till connected
                await TaskTest.WaitFor(() => connects > 0);
                var readTask = socket.ReadAsync(4);

                server.DropConnection();

                //wait till Disconnected
                await Task.WhenAny(disconnectEvent.Task, Task.Delay(100000));
                Assert.IsTrue(disconnectEvent.Task.IsCompleted, "Server should have disconnected the client.");
                Assert.Throws<ServerDisconnectedException>(async () => await readTask);

                await TaskTest.WaitFor(() => connects == 2, 6000);
                Assert.That(connects, Is.EqualTo(2), "Socket should have reconnected.");

                var readTask2 = socket.ReadAsync(4);

                await server.SendDataAsync(99.ToBytes());
                var result = await readTask2;
                Assert.That(result.ToInt32(), Is.EqualTo(99), "Socket should have received the 4 bytes.");
            }
        }
예제 #35
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        public async Task KafkaConnectionShouldLogDisconnectAndRecover()
        {
            var mockLog =new Mock<IKafkaLog>();
            var log= new DefaultTraceLog(LogLevel.Error);
            using (var server = new FakeTcpServer(log, 8999))
            using (var socket = new KafkaTcpSocket(log, _kafkaEndpoint, _maxRetry))
            using (var conn = new KafkaConnection(socket, log: mockLog.Object))
            {
                var disconnected = 0;
                socket.OnServerDisconnected += () => Interlocked.Increment(ref disconnected);

                for (int connectionAttempt = 1; connectionAttempt < 4; connectionAttempt++)
                {

                    await TaskTest.WaitFor(() => server.ConnectionEventcount == connectionAttempt);
                    Assert.That(server.ConnectionEventcount, Is.EqualTo(connectionAttempt));
                    server.SendDataAsync(CreateCorrelationMessage(1)).Wait(TimeSpan.FromSeconds(5));
                    await TaskTest.WaitFor(() => !conn.IsOnErrorState());

                    Assert.IsFalse(conn.IsOnErrorState());
                    mockLog.Verify(x => x.InfoFormat("Polling read thread has recovered: {0}", It.IsAny<object[]>()), Times.Exactly(connectionAttempt-1));

                    server.DropConnection();
                    await TaskTest.WaitFor(() => conn.IsOnErrorState());
                    Assert.AreEqual(disconnected,connectionAttempt);
                    Assert.IsTrue(conn.IsOnErrorState());

                    mockLog.Verify(x => x.ErrorFormat("Exception occured in polling read thread {0}: {1}", It.IsAny<object[]>()), Times.Exactly(connectionAttempt ));
                }

            }
        }
예제 #36
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        public void WriteAndReadShouldBeAsynchronous()
        {
            var write = new List<int>();
            var read = new List<int>();
            var expected = new List<int> { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10 };

            using (var server = new FakeTcpServer(FakeServerPort))
            using (var test = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl))
            {
                server.OnBytesReceived += data => write.AddRange(data.Batch(4).Select(x => x.ToArray().ToInt32()));

                var tasks = Enumerable.Range(1, 10)
                    .SelectMany(i => new[]
                    {
                        test.WriteAsync(i.ToBytes().ToPayload()),
                        test.ReadAsync(4).ContinueWith(t => read.Add(t.Result.ToInt32())),
                        server.SendDataAsync(i.ToBytes())
                    }).ToArray();

                Task.WaitAll(tasks);
                Assert.That(write.OrderBy(x => x), Is.EqualTo(expected));
                Assert.That(read.OrderBy(x => x), Is.EqualTo(expected));
            }
        }
예제 #37
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        public void ReadShouldStackReadRequestsAndReturnOneAtATime()
        {
            using (var server = new FakeTcpServer(FakeServerPort))
            {
                var messages = new[] { "test1", "test2", "test3", "test4" };
                var expectedLength = "test1".Length;

                var payload = new KafkaMessagePacker().Pack(messages);

                var socket = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl);

                var tasks = messages.Select(x => socket.ReadAsync(x.Length)).ToArray();

                server.SendDataAsync(payload.Payload());

                Task.WaitAll(tasks);

                foreach (var task in tasks)
                {
                    Assert.That(task.Result.Length, Is.EqualTo(expectedLength));
                }
            }
        }
예제 #38
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        public void ReadShouldReconnectAfterLosingConnection()
        {
            using (var server = new FakeTcpServer(FakeServerPort))
            {
                var disconnects = 0;
                var connects = 0;
                server.OnClientConnected += () => Interlocked.Increment(ref connects);
                server.OnClientDisconnected += () => Interlocked.Increment(ref disconnects);
                var socket = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl);

                var resultTask = ReadFromSocketWithRetry(socket, 4);

                //wait till connected
                TaskTest.WaitFor(() => connects > 0);

                //drop connection
                server.DropConnection();
                TaskTest.WaitFor(() => disconnects > 0);
                Assert.That(disconnects, Is.EqualTo(1), "Server should have disconnected the client.");

                //wait for reconnection
                TaskTest.WaitFor(() => connects > 1);
                Assert.That(connects, Is.EqualTo(2), "Socket should have reconnected.");

                //send data and get result
                server.SendDataAsync(99.ToBytes());
                Assert.That(resultTask.Result.ToInt32(), Is.EqualTo(99), "Socket should have received the 4 bytes.");
            }

        }
예제 #39
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        public void ReadShouldNotLoseDataFromStreamOverMultipleReads()
        {
            using (var server = new FakeTcpServer(FakeServerPort))
            using (var test = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl))
            {
                const int firstMessage = 99;
                const string secondMessage = "testmessage";

                var payload = new KafkaMessagePacker()
                    .Pack(firstMessage)
                    .Pack(secondMessage, StringPrefixEncoding.None);

                //send the combined payload
                server.SendDataAsync(payload.PayloadNoLength());

                var firstResponse = test.ReadAsync(4).Result.ToInt32();
                Assert.That(firstResponse, Is.EqualTo(firstMessage));

                var secondResponse = Encoding.ASCII.GetString(test.ReadAsync(secondMessage.Length).Result);
                Assert.That(secondResponse, Is.EqualTo(secondMessage));
            }
        }
        public void WriteAndReadShouldBeAsynchronous()
        {
            //     for (int j = 0; j < 1000; j++)
            //     {
            var expected = new List<int> { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10 };
            var write = new ConcurrentBag<int>();
            var read = new ConcurrentBag<int>();

            AutoResetEvent allEventAreArrived = new AutoResetEvent(false);
            AutoResetEvent allrReadEventAreArrived = new AutoResetEvent(false);
            using (var server = new FakeTcpServer(_log, FakeServerPort))
            using (var test = new KafkaTcpSocket(_log, _fakeServerUrl, _maxRetry))
            {
                server.OnBytesReceived += data =>
                {
                    var d = data.Batch(4).Select(x => x.ToArray().ToInt32());
                    foreach (var item in d)
                    {
                        write.Add(item);
                    }

                    if (expected.Count == write.Count)
                    {
                        allEventAreArrived.Set();
                    }
                };
                var tasks = Enumerable.Range(1, 10)
                    .SelectMany(i => new[]
                        {
                            test.WriteAsync(i.ToBytes().ToPayload()),
                            test.ReadAsync(4).ContinueWith(t =>
                            {
                                read.Add(t.Result.ToInt32());
                                if (read.Count == expected.Count)
                                {
                                    allrReadEventAreArrived.Set();
                                }
                            }),
                            server.SendDataAsync(i.ToBytes())
                        }).ToArray();

                Task.WaitAll(tasks);
                Assert.IsTrue(allEventAreArrived.WaitOne(3000), "not Get all write event in time");
                Assert.IsTrue(allrReadEventAreArrived.WaitOne(3000), "not Get all  read event in time");
                var w = write.OrderBy(x => x);
                var r = read.OrderBy(x => x);

                for (int i = 0; i < expected.Count; i++)
                {
                    //  _log.InfoFormat("write was {0}  expected {1}", w.ElementAt(i), expected[i]);
                    Assert.That(w.ElementAt(i), Is.EqualTo(expected[i]));
                }
                for (int i = 0; i < expected.Count; i++)
                {
                    //     _log.InfoFormat("read was {0}  expected {1}", r.ElementAt(i), expected[i]);
                    Assert.That(r.ElementAt(i), Is.EqualTo(expected[i]));
                }
            }
            //   }
        }
예제 #41
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        public void ReadShouldIgnoreMessageWithUnknownCorrelationId()
        {
            const int correlationId = 99;

            var mockLog = _kernel.GetMock<IKafkaLog>();

            using (var server = new FakeTcpServer(8999))
            using (var socket = new KafkaTcpSocket(mockLog.Object, _kafkaEndpoint))
            using (var conn = new KafkaConnection(socket, log: mockLog.Object))
            {
                var receivedData = false;
                socket.OnBytesReceived += i => receivedData = true;

                //send correlation message
                server.SendDataAsync(CreateCorrelationMessage(correlationId)).Wait(TimeSpan.FromSeconds(5));

                //wait for connection
                TaskTest.WaitFor(() => server.ConnectionEventcount > 0);
                Assert.That(server.ConnectionEventcount, Is.EqualTo(1));

                TaskTest.WaitFor(() => receivedData);

                //should log a warning and keep going
                mockLog.Verify(x => x.WarnFormat(It.IsAny<string>(), It.Is<int>(o => o == correlationId)));
            }
        }
예제 #42
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        public void ReadShouldBlockUntilAllBytesRequestedAreReceived()
        {
            using (var server = new FakeTcpServer(FakeServerPort))
            using (var test = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl))
            {
                var sendCompleted = 0;
                var bytesReceived = 0;

                test.OnBytesReceived += i => Interlocked.Add(ref bytesReceived, i);

                var resultTask = test.ReadAsync(4).ContinueWith(t =>
                    {
                        Interlocked.Increment(ref sendCompleted);
                        return t.Result;
                    });

                Console.WriteLine("Sending first 3 bytes...");
                server.HasClientConnected.Wait(TimeSpan.FromMilliseconds(1000));
                var sendInitialBytes = server.SendDataAsync(new byte[] { 0, 0, 0 }).Wait(TimeSpan.FromSeconds(10));
                Assert.That(sendInitialBytes, Is.True, "First 3 bytes should have been sent.");

                Console.WriteLine("Ensuring task blocks...");
                TaskTest.WaitFor(() => bytesReceived > 0);
                Assert.That(resultTask.IsCompleted, Is.False, "Task should still be running, blocking.");
                Assert.That(sendCompleted, Is.EqualTo(0), "Should still block even though bytes have been received.");
                Assert.That(bytesReceived, Is.EqualTo(3), "Three bytes should have been received and we are waiting on the last byte.");

                Console.WriteLine("Sending last byte...");
                var sendLastByte = server.SendDataAsync(new byte[] { 0 }).Wait(TimeSpan.FromSeconds(10));
                Assert.That(sendLastByte, Is.True, "Last byte should have sent.");

                Console.WriteLine("Ensuring task unblocks...");
                TaskTest.WaitFor(() => resultTask.IsCompleted);
                Assert.That(bytesReceived, Is.EqualTo(4), "Should have received 4 bytes.");
                Assert.That(resultTask.IsCompleted, Is.True, "Task should have completed.");
                Assert.That(sendCompleted, Is.EqualTo(1), "Task ContinueWith should have executed.");
                Assert.That(resultTask.Result.Length, Is.EqualTo(4), "Result of task should be 4 bytes.");
            }
        }
예제 #43
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        public async void SendAsyncShouldNotAllowResponseToTimeoutWhileAwaitingKafkaToEstableConnection()
        {
            using (var socket = new KafkaTcpSocket(_log, _kafkaEndpoint))
            using (var conn = new KafkaConnection(socket, TimeSpan.FromMilliseconds(1000000), log: _log))
            {
                Console.WriteLine("SendAsync blocked by reconnection attempts...");
                var taskResult = conn.SendAsync(new MetadataRequest());

                taskResult.ContinueWith(t => taskResult = t).Wait(TimeSpan.FromSeconds(1));

                Console.WriteLine("Task result should be WaitingForActivation...");
                Assert.That(taskResult.IsFaulted, Is.False);
                Assert.That(taskResult.Status, Is.EqualTo(TaskStatus.WaitingForActivation));

                Console.WriteLine("Starting server to establish connection...");
                using (var server = new FakeTcpServer(8999))
                {
                    server.OnClientConnected += () => Console.WriteLine("Client connected...");
                    server.OnBytesReceived += (b) =>
                    {
                        server.SendDataAsync(MessageHelper.CreateMetadataResponse(1, "Test"));
                    };

                    await taskResult;

                    Assert.That(taskResult.IsFaulted, Is.False);
                    Assert.That(taskResult.IsCanceled, Is.False);
                    Assert.That(taskResult.Status, Is.EqualTo(TaskStatus.RanToCompletion));
                }
            }
        }
예제 #44
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        public void ReadShouldBeAbleToReceiveMoreThanOnceAsyncronously()
        {
            using (var server = new FakeTcpServer(FakeServerPort))
            using (var test = new KafkaTcpSocket(new DefaultTraceLog(), _fakeServerUrl))
            {
                const int firstMessage = 99;
                const int secondMessage = 100;

                Console.WriteLine("Sending first message to receive...");
                server.SendDataAsync(firstMessage.ToBytes());
                var firstResponseTask = test.ReadAsync(4);

                Console.WriteLine("Sending second message to receive...");
                server.SendDataAsync(secondMessage.ToBytes());
                var secondResponseTask = test.ReadAsync(4);

                Assert.That(firstResponseTask.Result.ToInt32(), Is.EqualTo(firstMessage));
                Assert.That(secondResponseTask.Result.ToInt32(), Is.EqualTo(secondMessage));
            }
        }