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#region Copyright notice and license
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// Copyright 2015 gRPC authors.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#endregion
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using System;
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using System.Collections.Concurrent;
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using System.Collections.Generic;
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using System.Diagnostics;
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using System.IO;
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using System.Linq;
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using System.Text.RegularExpressions;
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using System.Threading;
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using System.Threading.Tasks;
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using Google.Protobuf;
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using Grpc.Core;
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using Grpc.Core.Internal;
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using Grpc.Core.Logging;
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using Grpc.Core.Profiling;
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using Grpc.Core.Utils;
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using NUnit.Framework;
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using Grpc.Testing;
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namespace Grpc.IntegrationTesting
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{
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/// <summary>
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/// Helper methods to start client runners for performance testing.
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/// </summary>
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public class ClientRunners
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{
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static readonly ILogger Logger = GrpcEnvironment.Logger.ForType<ClientRunners>();
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// Profilers to use for clients.
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static readonly BlockingCollection<BasicProfiler> profilers = new BlockingCollection<BasicProfiler>();
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internal static void AddProfiler(BasicProfiler profiler)
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{
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GrpcPreconditions.CheckNotNull(profiler);
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profilers.Add(profiler);
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}
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/// <summary>
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/// Creates a started client runner.
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/// </summary>
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public static IClientRunner CreateStarted(ClientConfig config)
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{
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Logger.Debug("ClientConfig: {0}", config);
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if (config.AsyncClientThreads != 0)
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{
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Logger.Warning("ClientConfig.AsyncClientThreads is not supported for C#. Ignoring the value");
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}
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if (config.CoreLimit != 0)
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{
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Logger.Warning("ClientConfig.CoreLimit is not supported for C#. Ignoring the value");
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}
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if (config.CoreList.Count > 0)
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{
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Logger.Warning("ClientConfig.CoreList is not supported for C#. Ignoring the value");
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}
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var channels = CreateChannels(config.ClientChannels, config.ServerTargets, config.SecurityParams, config.ChannelArgs);
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return new ClientRunnerImpl(channels,
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config.ClientType,
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config.RpcType,
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config.OutstandingRpcsPerChannel,
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config.LoadParams,
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config.PayloadConfig,
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config.HistogramParams,
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() => GetNextProfiler());
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}
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private static List<Channel> CreateChannels(int clientChannels, IEnumerable<string> serverTargets, SecurityParams securityParams, IEnumerable<ChannelArg> channelArguments)
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{
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GrpcPreconditions.CheckArgument(clientChannels > 0, "clientChannels needs to be at least 1.");
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GrpcPreconditions.CheckArgument(serverTargets.Count() > 0, "at least one serverTarget needs to be specified.");
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var credentials = securityParams != null ? TestCredentials.CreateSslCredentials() : ChannelCredentials.Insecure;
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var channelOptions = new List<ChannelOption>();
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if (securityParams != null && securityParams.ServerHostOverride != "")
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{
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channelOptions.Add(new ChannelOption(ChannelOptions.SslTargetNameOverride, securityParams.ServerHostOverride));
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}
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foreach (var channelArgument in channelArguments)
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{
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channelOptions.Add(channelArgument.ToChannelOption());
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}
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var result = new List<Channel>();
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for (int i = 0; i < clientChannels; i++)
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{
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var target = serverTargets.ElementAt(i % serverTargets.Count());
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var channel = new Channel(target, credentials, channelOptions);
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result.Add(channel);
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}
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return result;
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}
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private static BasicProfiler GetNextProfiler()
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{
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BasicProfiler result = null;
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profilers.TryTake(out result);
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return result;
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}
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}
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internal class ClientRunnerImpl : IClientRunner
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{
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const double SecondsToNanos = 1e9;
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readonly List<Channel> channels;
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readonly ClientType clientType;
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readonly RpcType rpcType;
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readonly PayloadConfig payloadConfig;
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readonly Lazy<byte[]> cachedByteBufferRequest;
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readonly ThreadLocal<Histogram> threadLocalHistogram;
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readonly List<Task> runnerTasks;
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readonly CancellationTokenSource stoppedCts = new CancellationTokenSource();
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readonly TimeStats timeStats = new TimeStats();
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readonly AtomicCounter statsResetCount = new AtomicCounter();
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public ClientRunnerImpl(List<Channel> channels, ClientType clientType, RpcType rpcType, int outstandingRpcsPerChannel, LoadParams loadParams, PayloadConfig payloadConfig, HistogramParams histogramParams, Func<BasicProfiler> profilerFactory)
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{
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GrpcPreconditions.CheckArgument(outstandingRpcsPerChannel > 0, "outstandingRpcsPerChannel");
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GrpcPreconditions.CheckNotNull(histogramParams, "histogramParams");
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this.channels = new List<Channel>(channels);
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this.clientType = clientType;
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this.rpcType = rpcType;
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this.payloadConfig = payloadConfig;
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this.cachedByteBufferRequest = new Lazy<byte[]>(() => new byte[payloadConfig.BytebufParams.ReqSize]);
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this.threadLocalHistogram = new ThreadLocal<Histogram>(() => new Histogram(histogramParams.Resolution, histogramParams.MaxPossible), true);
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this.runnerTasks = new List<Task>();
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foreach (var channel in this.channels)
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{
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for (int i = 0; i < outstandingRpcsPerChannel; i++)
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{
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var timer = CreateTimer(loadParams, 1.0 / this.channels.Count / outstandingRpcsPerChannel);
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var optionalProfiler = profilerFactory();
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this.runnerTasks.Add(RunClientAsync(channel, timer, optionalProfiler));
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}
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}
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}
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public ClientStats GetStats(bool reset)
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{
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var histogramData = new HistogramData();
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foreach (var hist in threadLocalHistogram.Values)
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{
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hist.GetSnapshot(histogramData, reset);
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}
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var timeSnapshot = timeStats.GetSnapshot(reset);
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if (reset)
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{
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statsResetCount.Increment();
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}
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GrpcEnvironment.Logger.Info("[ClientRunnerImpl.GetStats] GC collection counts: gen0 {0}, gen1 {1}, gen2 {2}, (histogram reset count:{3}, seconds since reset: {4})",
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GC.CollectionCount(0), GC.CollectionCount(1), GC.CollectionCount(2), statsResetCount.Count, timeSnapshot.WallClockTime.TotalSeconds);
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return new ClientStats
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{
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Latencies = histogramData,
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TimeElapsed = timeSnapshot.WallClockTime.TotalSeconds,
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TimeUser = timeSnapshot.UserProcessorTime.TotalSeconds,
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TimeSystem = timeSnapshot.PrivilegedProcessorTime.TotalSeconds
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};
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}
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public async Task StopAsync()
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{
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stoppedCts.Cancel();
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foreach (var runnerTask in runnerTasks)
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{
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await runnerTask;
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}
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foreach (var channel in channels)
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{
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await channel.ShutdownAsync();
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}
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}
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private void RunUnary(Channel channel, IInterarrivalTimer timer, BasicProfiler optionalProfiler)
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{
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if (optionalProfiler != null)
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{
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Profilers.SetForCurrentThread(optionalProfiler);
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}
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bool profilerReset = false;
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var client = new BenchmarkService.BenchmarkServiceClient(channel);
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var request = CreateSimpleRequest();
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var stopwatch = new Stopwatch();
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while (!stoppedCts.Token.IsCancellationRequested)
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{
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// after the first stats reset, also reset the profiler.
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if (optionalProfiler != null && !profilerReset && statsResetCount.Count > 0)
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{
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optionalProfiler.Reset();
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profilerReset = true;
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}
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stopwatch.Restart();
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client.UnaryCall(request);
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stopwatch.Stop();
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// spec requires data point in nanoseconds.
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threadLocalHistogram.Value.AddObservation(stopwatch.Elapsed.TotalSeconds * SecondsToNanos);
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timer.WaitForNext();
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}
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}
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private async Task RunUnaryAsync(Channel channel, IInterarrivalTimer timer)
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{
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var client = new BenchmarkService.BenchmarkServiceClient(channel);
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var request = CreateSimpleRequest();
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var stopwatch = new Stopwatch();
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while (!stoppedCts.Token.IsCancellationRequested)
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{
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stopwatch.Restart();
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await client.UnaryCallAsync(request);
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stopwatch.Stop();
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// spec requires data point in nanoseconds.
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threadLocalHistogram.Value.AddObservation(stopwatch.Elapsed.TotalSeconds * SecondsToNanos);
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await timer.WaitForNextAsync();
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}
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}
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private async Task RunStreamingPingPongAsync(Channel channel, IInterarrivalTimer timer)
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{
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var client = new BenchmarkService.BenchmarkServiceClient(channel);
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var request = CreateSimpleRequest();
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var stopwatch = new Stopwatch();
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using (var call = client.StreamingCall())
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{
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while (!stoppedCts.Token.IsCancellationRequested)
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{
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stopwatch.Restart();
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await call.RequestStream.WriteAsync(request);
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await call.ResponseStream.MoveNext();
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stopwatch.Stop();
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// spec requires data point in nanoseconds.
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threadLocalHistogram.Value.AddObservation(stopwatch.Elapsed.TotalSeconds * SecondsToNanos);
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await timer.WaitForNextAsync();
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}
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// finish the streaming call
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await call.RequestStream.CompleteAsync();
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Assert.IsFalse(await call.ResponseStream.MoveNext());
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}
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}
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private async Task RunGenericStreamingAsync(Channel channel, IInterarrivalTimer timer)
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{
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var request = cachedByteBufferRequest.Value;
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var stopwatch = new Stopwatch();
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var callDetails = new CallInvocationDetails<byte[], byte[]>(channel, GenericService.StreamingCallMethod, new CallOptions());
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using (var call = Calls.AsyncDuplexStreamingCall(callDetails))
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{
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while (!stoppedCts.Token.IsCancellationRequested)
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{
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stopwatch.Restart();
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await call.RequestStream.WriteAsync(request);
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await call.ResponseStream.MoveNext();
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stopwatch.Stop();
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// spec requires data point in nanoseconds.
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threadLocalHistogram.Value.AddObservation(stopwatch.Elapsed.TotalSeconds * SecondsToNanos);
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await timer.WaitForNextAsync();
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}
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// finish the streaming call
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await call.RequestStream.CompleteAsync();
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Assert.IsFalse(await call.ResponseStream.MoveNext());
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}
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}
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private Task RunClientAsync(Channel channel, IInterarrivalTimer timer, BasicProfiler optionalProfiler)
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{
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if (payloadConfig.PayloadCase == PayloadConfig.PayloadOneofCase.BytebufParams)
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{
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GrpcPreconditions.CheckArgument(clientType == ClientType.AsyncClient, "Generic client only supports async API");
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GrpcPreconditions.CheckArgument(rpcType == RpcType.Streaming, "Generic client only supports streaming calls");
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return RunGenericStreamingAsync(channel, timer);
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}
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GrpcPreconditions.CheckNotNull(payloadConfig.SimpleParams);
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if (clientType == ClientType.SyncClient)
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{
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GrpcPreconditions.CheckArgument(rpcType == RpcType.Unary, "Sync client can only be used for Unary calls in C#");
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// create a dedicated thread for the synchronous client
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return Task.Factory.StartNew(() => RunUnary(channel, timer, optionalProfiler), TaskCreationOptions.LongRunning);
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}
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else if (clientType == ClientType.AsyncClient)
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{
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switch (rpcType)
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{
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case RpcType.Unary:
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return RunUnaryAsync(channel, timer);
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case RpcType.Streaming:
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return RunStreamingPingPongAsync(channel, timer);
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}
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}
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throw new ArgumentException("Unsupported configuration.");
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}
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private SimpleRequest CreateSimpleRequest()
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{
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GrpcPreconditions.CheckNotNull(payloadConfig.SimpleParams);
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return new SimpleRequest
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{
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Payload = CreateZerosPayload(payloadConfig.SimpleParams.ReqSize),
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ResponseSize = payloadConfig.SimpleParams.RespSize
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};
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}
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private static Payload CreateZerosPayload(int size)
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{
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return new Payload { Body = ByteString.CopyFrom(new byte[size]) };
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}
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private static IInterarrivalTimer CreateTimer(LoadParams loadParams, double loadMultiplier)
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{
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switch (loadParams.LoadCase)
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{
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case LoadParams.LoadOneofCase.ClosedLoop:
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return new ClosedLoopInterarrivalTimer();
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case LoadParams.LoadOneofCase.Poisson:
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return new PoissonInterarrivalTimer(loadParams.Poisson.OfferedLoad * loadMultiplier);
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default:
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throw new ArgumentException("Unknown load type");
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}
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}
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}
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}
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