Files
natsdotnet/tests/NATS.Server.Benchmark.Tests/CorePubSub/MultiPubSubTests.cs
Joseph Doherty 1d4b87e5f9 docs: refresh benchmark comparison with increased message counts
Increase message counts across all 14 benchmark test files to reduce
run-to-run variance (e.g. PubSub 16B: 10K→50K, FanOut: 10K→15K,
SinglePub: 100K→500K, JS tests: 5K→25K). Rewrite benchmarks_comparison.md
with fresh numbers from two-batch runs. Key changes: multi 4x4 reached
parity (1.01x), fan-out improved to 0.84x, TLS pub/sub shows 4.70x .NET
advantage, previous small-count anomalies corrected.
2026-03-13 17:52:03 -04:00

125 lines
4.3 KiB
C#

using NATS.Client.Core;
using NATS.Server.Benchmark.Tests.Harness;
using NATS.Server.Benchmark.Tests.Infrastructure;
using Xunit.Abstractions;
namespace NATS.Server.Benchmark.Tests.CorePubSub;
[Collection("Benchmark-Core")]
public class MultiPubSubTests(CoreServerPairFixture fixture, ITestOutputHelper output)
{
[Fact]
[Trait("Category", "Benchmark")]
public async Task MultiPubSub4x4_128B()
{
const int payloadSize = 128;
const int messagesPerPublisher = 5_000;
const int pubCount = 4;
const int subCount = 4;
var dotnetResult = await RunMultiPubSub("Multi 4Px4S (128B)", "DotNet", payloadSize, messagesPerPublisher, pubCount, subCount, fixture.CreateDotNetClient);
if (fixture.GoAvailable)
{
var goResult = await RunMultiPubSub("Multi 4Px4S (128B)", "Go", payloadSize, messagesPerPublisher, pubCount, subCount, fixture.CreateGoClient);
BenchmarkResultWriter.WriteComparison(output, goResult, dotnetResult);
}
else
{
BenchmarkResultWriter.WriteSingle(output, dotnetResult);
}
}
private static async Task<BenchmarkResult> RunMultiPubSub(
string name, string serverType, int payloadSize, int messagesPerPublisher,
int pubCount, int subCount, Func<NatsConnection> createClient)
{
var payload = new byte[payloadSize];
var totalMessages = messagesPerPublisher * pubCount;
var runId = Guid.NewGuid().ToString("N")[..8];
var subjects = Enumerable.Range(0, pubCount).Select(i => $"bench.multi.{serverType.ToLowerInvariant()}.{runId}.{i}").ToArray();
// Create subscribers — one per subject
var subClients = new NatsConnection[subCount];
var subs = new INatsSub<byte[]>[subCount];
var subTasks = new Task[subCount];
var totalReceived = 0;
var tcs = new TaskCompletionSource(TaskCreationOptions.RunContinuationsAsynchronously);
for (var i = 0; i < subCount; i++)
{
subClients[i] = createClient();
await subClients[i].ConnectAsync();
subs[i] = await subClients[i].SubscribeCoreAsync<byte[]>(subjects[i % subjects.Length]);
}
// Flush to ensure all subscriptions are propagated
foreach (var client in subClients)
await client.PingAsync();
// Start reading
for (var i = 0; i < subCount; i++)
{
var sub = subs[i];
subTasks[i] = Task.Run(async () =>
{
await foreach (var _ in sub.Msgs.ReadAllAsync())
{
if (Interlocked.Increment(ref totalReceived) >= totalMessages)
{
tcs.TrySetResult();
return;
}
}
});
}
// Create publishers
var pubClients = new NatsConnection[pubCount];
for (var i = 0; i < pubCount; i++)
{
pubClients[i] = createClient();
await pubClients[i].ConnectAsync();
}
var sw = System.Diagnostics.Stopwatch.StartNew();
var pubTasks = new Task[pubCount];
for (var p = 0; p < pubCount; p++)
{
var client = pubClients[p];
var subject = subjects[p];
pubTasks[p] = Task.Run(async () =>
{
for (var i = 0; i < messagesPerPublisher; i++)
await client.PublishAsync(subject, payload);
});
}
await Task.WhenAll(pubTasks);
// Flush all publishers
foreach (var client in pubClients)
await client.PingAsync();
using var cts = new CancellationTokenSource(TimeSpan.FromSeconds(120));
await tcs.Task.WaitAsync(cts.Token);
sw.Stop();
foreach (var sub in subs)
await sub.UnsubscribeAsync();
foreach (var client in subClients)
await client.DisposeAsync();
foreach (var client in pubClients)
await client.DisposeAsync();
return new BenchmarkResult
{
Name = name,
ServerType = serverType,
TotalMessages = totalMessages,
TotalBytes = (long)totalMessages * payloadSize,
Duration = sw.Elapsed,
};
}
}