TUnit is a next-generation testing framework for C# that outpaces traditional frameworks with source-generated tests, parallel execution by default, and Native AOT support. Built on the modern Microsoft.Testing.Platform, TUnit delivers faster test runs, better developer experience, and unmatched flexibility.
Feature | Traditional Frameworks | TUnit |
---|---|---|
Test Discovery | ❌ Runtime reflection | ✅ Compile-time generation |
Execution Speed | ❌ Sequential by default | ✅ Parallel by default |
Modern .NET | ✅ Full Native AOT & trimming | |
Test Dependencies | ❌ Not supported | ✅ [DependsOn] chains |
Resource Management | ❌ Manual lifecycle | ✅ Intelligent cleanup |
⚡ Parallel by Default - Tests run concurrently with intelligent dependency management
🎯 Compile-Time Discovery - Know your test structure before runtime
🔧 Modern .NET Ready - Native AOT, trimming, and latest .NET features
🎭 Extensible - Customize data sources, attributes, and test behavior
🚀 New to TUnit? Start with our Getting Started Guide
🔄 Migrating? See our Migration Guides
🎯 Advanced Features? Explore Data-Driven Testing, Test Dependencies, and Parallelism Control
dotnet new install TUnit.Templates
dotnet new TUnit -n "MyTestProject"
dotnet add package TUnit --prerelease
📖 📚 Complete Documentation & Guides - Everything you need to master TUnit
🚀 Performance & Modern Platform
|
🎯 Advanced Test Control
|
📊 Rich Data & Assertions
|
🔧 Developer Experience
|
[Test]
public async Task User_Creation_Should_Set_Timestamp()
{
// Arrange
var userService = new UserService();
// Act
var user = await userService.CreateUserAsync("john.doe@example.com");
// Assert - TUnit's fluent assertions
await Assert.That(user.CreatedAt)
.IsEqualTo(DateTime.Now)
.Within(TimeSpan.FromMinutes(1));
await Assert.That(user.Email)
.IsEqualTo("john.doe@example.com");
}
[Test]
[Arguments("user1@test.com", "ValidPassword123")]
[Arguments("user2@test.com", "AnotherPassword456")]
[Arguments("admin@test.com", "AdminPass789")]
public async Task User_Login_Should_Succeed(string email, string password)
{
var result = await authService.LoginAsync(email, password);
await Assert.That(result.IsSuccess).IsTrue();
}
// Matrix testing - tests all combinations
[Test]
[MatrixDataSource]
public async Task Database_Operations_Work(
[Matrix("Create", "Update", "Delete")] string operation,
[Matrix("User", "Product", "Order")] string entity)
{
await Assert.That(await ExecuteOperation(operation, entity))
.IsTrue();
}
[Before(Class)]
public static async Task SetupDatabase(ClassHookContext context)
{
await DatabaseHelper.InitializeAsync();
}
[Test, DisplayName("Register a new account")]
[MethodDataSource(nameof(GetTestUsers))]
public async Task Register_User(string username, string password)
{
// Test implementation
}
[Test, DependsOn(nameof(Register_User))]
[Retry(3)] // Retry on failure
public async Task Login_With_Registered_User(string username, string password)
{
// This test runs after Register_User completes
}
[Test]
[ParallelLimit<LoadTestParallelLimit>] // Custom parallel control
[Repeat(100)] // Run 100 times
public async Task Load_Test_Homepage()
{
// Performance testing
}
// Custom attributes
[Test, WindowsOnly, RetryOnHttpError(5)]
public async Task Windows_Specific_Feature()
{
// Platform-specific test with custom retry logic
}
public class LoadTestParallelLimit : IParallelLimit
{
public int Limit => 10; // Limit to 10 concurrent executions
}
// Custom conditional execution
public class WindowsOnlyAttribute : SkipAttribute
{
public WindowsOnlyAttribute() : base("Windows only test") { }
public override Task<bool> ShouldSkip(TestContext testContext)
=> Task.FromResult(!OperatingSystem.IsWindows());
}
// Custom retry logic
public class RetryOnHttpErrorAttribute : RetryAttribute
{
public RetryOnHttpErrorAttribute(int times) : base(times) { }
public override Task<bool> ShouldRetry(TestInformation testInformation,
Exception exception, int currentRetryCount)
=> Task.FromResult(exception is HttpRequestException { StatusCode: HttpStatusCode.ServiceUnavailable });
}
[Test]
[Arguments(1, 2, 3)]
[Arguments(5, 10, 15)]
public async Task Calculate_Sum(int a, int b, int expected)
{
await Assert.That(Calculator.Add(a, b))
.IsEqualTo(expected);
} Fast, isolated, and reliable |
[Test, DependsOn(nameof(CreateUser))]
public async Task Login_After_Registration()
{
// Runs after CreateUser completes
var result = await authService.Login(user);
await Assert.That(result.IsSuccess).IsTrue();
} Stateful workflows made simple |
[Test]
[ParallelLimit<LoadTestLimit>]
[Repeat(1000)]
public async Task API_Handles_Concurrent_Requests()
{
await Assert.That(await httpClient.GetAsync("/api/health"))
.HasStatusCode(HttpStatusCode.OK);
} Built-in performance testing |
Tests are discovered at build time, not runtime - enabling faster discovery, better IDE integration, and precise resource lifecycle management.
Built for concurrency from day one with [DependsOn]
for test chains, [ParallelLimit]
for resource control, and intelligent scheduling.
The DataSourceGenerator<T>
pattern and custom attribute system let you extend TUnit's capabilities without modifying core framework code.
- 📚 Official Documentation - Comprehensive guides, tutorials, and API reference
- 💬 GitHub Discussions - Get help and share ideas
- 🐛 Issue Tracking - Report bugs and request features
- 📢 Release Notes - Stay updated with latest improvements
TUnit works seamlessly across all major .NET development environments:
✅ Fully supported - No additional configuration needed for latest versions
⚙️ Earlier versions: Enable "Use testing platform server mode" in Tools > Manage Preview Features
✅ Fully supported
⚙️ Setup: Enable "Testing Platform support" in Settings > Build, Execution, Deployment > Unit Testing > VSTest
✅ Fully supported
⚙️ Setup: Install C# Dev Kit and enable "Use Testing Platform Protocol"
✅ Full CLI support - Works with dotnet test
, dotnet run
, and direct executable execution
Package | Use Case |
---|---|
TUnit |
⭐ Start here - Complete testing framework (includes Core + Engine + Assertions) |
TUnit.Core |
📚 Test libraries and shared components (no execution engine) |
TUnit.Engine |
🚀 Test execution engine and adapter (for test projects) |
TUnit.Assertions |
✅ Standalone assertions (works with any test framework) |
TUnit.Playwright |
🎭 Playwright integration with automatic lifecycle management |
Coming from NUnit or xUnit? TUnit maintains familiar syntax while adding modern capabilities:
// Enhanced with TUnit's advanced features
[Test]
[Arguments("value1")]
[Arguments("value2")]
[Retry(3)]
[ParallelLimit<CustomLimit>]
public async Task Modern_TUnit_Test(string value) { }
📖 Need help migrating? Check our detailed Migration Guides with step-by-step instructions for xUnit, NUnit, and MSTest.
The API is mostly stable, but may have some changes based on feedback or issues before v1.0 release.
# Create a new test project with examples
dotnet new install TUnit.Templates && dotnet new TUnit -n "MyAwesomeTests"
# Or add to existing project
dotnet add package TUnit --prerelease
Optimized execution Parallel by default Zero reflection overhead |
Native AOT support Latest .NET features Source generation |
Compile-time checks Rich IDE integration Intelligent debugging |
Test dependencies Custom attributes Extensible architecture |
📖 Learn More: tunit.dev | 💬 Get Help: GitHub Discussions | ⭐ Show Support: Star on GitHub
TUnit is actively developed and production-ready. Join our growing community of developers who've made the switch!
BenchmarkDotNet v0.15.2, macOS Sonoma 14.7.6 (23H626) [Darwin 23.6.0]
Apple M1 (Virtual), 1 CPU, 3 logical and 3 physical cores
.NET SDK 9.0.301
[Host] : .NET 9.0.6 (9.0.625.26613), Arm64 RyuJIT AdvSIMD
.NET 9.0 : .NET 9.0.6 (9.0.625.26613), Arm64 RyuJIT AdvSIMD
Job=.NET 9.0 Runtime=.NET 9.0
Method | Mean | Error | StdDev | Median |
---|---|---|---|---|
Build_TUnit | 985.5 ms | 21.53 ms | 59.65 ms | 967.4 ms |
Build_NUnit | 809.3 ms | 15.56 ms | 17.29 ms | 805.2 ms |
Build_xUnit | 820.7 ms | 16.39 ms | 39.91 ms | 805.3 ms |
Build_MSTest | 864.5 ms | 16.86 ms | 27.23 ms | 855.9 ms |
BenchmarkDotNet v0.15.2, Linux Ubuntu 24.04.2 LTS (Noble Numbat)
AMD EPYC 7763, 1 CPU, 4 logical and 2 physical cores
.NET SDK 9.0.301
[Host] : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
.NET 9.0 : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
Job=.NET 9.0 Runtime=.NET 9.0
Method | Mean | Error | StdDev |
---|---|---|---|
Build_TUnit | 1.906 s | 0.0373 s | 0.0535 s |
Build_NUnit | 1.474 s | 0.0201 s | 0.0188 s |
Build_xUnit | 1.454 s | 0.0233 s | 0.0207 s |
Build_MSTest | 1.469 s | 0.0108 s | 0.0101 s |
BenchmarkDotNet v0.15.2, Windows 10 (10.0.20348.3807) (Hyper-V)
AMD EPYC 7763 2.44GHz, 1 CPU, 4 logical and 2 physical cores
.NET SDK 9.0.301
[Host] : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
.NET 9.0 : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
Job=.NET 9.0 Runtime=.NET 9.0
Method | Mean | Error | StdDev |
---|---|---|---|
Build_TUnit | 1.947 s | 0.0387 s | 0.0613 s |
Build_NUnit | 1.527 s | 0.0302 s | 0.0323 s |
Build_xUnit | 1.543 s | 0.0205 s | 0.0182 s |
Build_MSTest | 1.540 s | 0.0227 s | 0.0212 s |
Scenario: A single test that completes instantly (including spawning a new process and initialising the test framework)
BenchmarkDotNet v0.15.2, macOS Sonoma 14.7.6 (23H626) [Darwin 23.6.0]
Apple M1 (Virtual), 1 CPU, 3 logical and 3 physical cores
.NET SDK 9.0.301
[Host] : .NET 9.0.6 (9.0.625.26613), Arm64 RyuJIT AdvSIMD
.NET 9.0 : .NET 9.0.6 (9.0.625.26613), Arm64 RyuJIT AdvSIMD
Job=.NET 9.0 Runtime=.NET 9.0
Method | Mean | Error | StdDev | Median |
---|---|---|---|---|
TUnit_AOT | 76.60 ms | 0.963 ms | 0.854 ms | 76.29 ms |
TUnit | 492.74 ms | 9.761 ms | 24.127 ms | 484.71 ms |
NUnit | 705.17 ms | 7.395 ms | 6.918 ms | 705.32 ms |
xUnit | 715.31 ms | 11.031 ms | 9.779 ms | 713.68 ms |
MSTest | 621.57 ms | 6.970 ms | 5.442 ms | 620.46 ms |
BenchmarkDotNet v0.15.2, Linux Ubuntu 24.04.2 LTS (Noble Numbat)
AMD EPYC 7763, 1 CPU, 4 logical and 2 physical cores
.NET SDK 9.0.301
[Host] : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
.NET 9.0 : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
Job=.NET 9.0 Runtime=.NET 9.0
Method | Mean | Error | StdDev |
---|---|---|---|
TUnit_AOT | 27.43 ms | 0.720 ms | 2.123 ms |
TUnit | 841.40 ms | 16.480 ms | 20.842 ms |
NUnit | 1,327.90 ms | 13.999 ms | 12.409 ms |
xUnit | 1,377.63 ms | 23.742 ms | 22.209 ms |
MSTest | 1,155.44 ms | 16.044 ms | 13.397 ms |
BenchmarkDotNet v0.15.2, Windows 10 (10.0.20348.3807) (Hyper-V)
AMD EPYC 7763 2.44GHz, 1 CPU, 4 logical and 2 physical cores
.NET SDK 9.0.301
[Host] : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
.NET 9.0 : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
Job=.NET 9.0 Runtime=.NET 9.0
Method | Mean | Error | StdDev |
---|---|---|---|
TUnit_AOT | 57.82 ms | 2.033 ms | 5.996 ms |
TUnit | 893.03 ms | 17.751 ms | 24.885 ms |
NUnit | 1,379.52 ms | 26.623 ms | 24.903 ms |
xUnit | 1,398.45 ms | 27.564 ms | 25.783 ms |
MSTest | 1,193.22 ms | 17.625 ms | 15.624 ms |
Scenario: A test that takes 50ms to execute, repeated 100 times (including spawning a new process and initialising the test framework)
BenchmarkDotNet v0.15.2, macOS Sonoma 14.7.6 (23H626) [Darwin 23.6.0]
Apple M1 (Virtual), 1 CPU, 3 logical and 3 physical cores
.NET SDK 9.0.301
[Host] : .NET 9.0.6 (9.0.625.26613), Arm64 RyuJIT AdvSIMD
.NET 9.0 : .NET 9.0.6 (9.0.625.26613), Arm64 RyuJIT AdvSIMD
Job=.NET 9.0 Runtime=.NET 9.0
Method | Mean | Error | StdDev |
---|---|---|---|
TUnit_AOT | 222.5 ms | 10.64 ms | 31.38 ms |
TUnit | 653.2 ms | 17.06 ms | 50.31 ms |
NUnit | 14,196.7 ms | 283.25 ms | 603.63 ms |
xUnit | 14,443.3 ms | 284.09 ms | 547.35 ms |
MSTest | 14,197.1 ms | 278.44 ms | 441.63 ms |
BenchmarkDotNet v0.15.2, Linux Ubuntu 24.04.2 LTS (Noble Numbat)
AMD EPYC 7763, 1 CPU, 4 logical and 2 physical cores
.NET SDK 9.0.301
[Host] : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
.NET 9.0 : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
Job=.NET 9.0 Runtime=.NET 9.0
Method | Mean | Error | StdDev |
---|---|---|---|
TUnit_AOT | 73.51 ms | 0.596 ms | 0.466 ms |
TUnit | 875.38 ms | 16.457 ms | 18.292 ms |
NUnit | 6,250.63 ms | 13.107 ms | 11.619 ms |
xUnit | 6,406.84 ms | 23.505 ms | 21.986 ms |
MSTest | 6,237.51 ms | 12.386 ms | 11.586 ms |
BenchmarkDotNet v0.15.2, Windows 10 (10.0.20348.3807) (Hyper-V)
AMD EPYC 7763 2.44GHz, 1 CPU, 4 logical and 2 physical cores
.NET SDK 9.0.301
[Host] : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
.NET 9.0 : .NET 9.0.6 (9.0.625.26613), X64 RyuJIT AVX2
Job=.NET 9.0 Runtime=.NET 9.0
Method | Mean | Error | StdDev |
---|---|---|---|
TUnit_AOT | 113.0 ms | 2.25 ms | 3.82 ms |
TUnit | 949.7 ms | 18.96 ms | 18.62 ms |
NUnit | 7,526.4 ms | 46.63 ms | 38.94 ms |
xUnit | 7,604.0 ms | 28.48 ms | 25.25 ms |
MSTest | 7,458.8 ms | 26.15 ms | 24.46 ms |