npx skills add ...
npx skills add dotnet/skills --skill generate-testability-wrappers
DO NOT USE when the target already consumes an injected interface or built-in abstraction such as IFileSystem or TimeProvider, even if the request says "generate a wrapper"; no new wrapper is needed. Use only when C# source calls an ambient/static dependency and no injectable seam exists: first-time TimeProvider, IHttpClientFactory, or System.IO.Abstractions adoption; minimal Environment/Console/Process wrappers; IProcessRunner; DI registration; or an ambient seam that preserves a static API. Exclude static detection (detect-static-dependencies), migration to an existing/registered abstraction (migrate-static-to-wrapper), one blocked behavior plus deterministic tests (testability-obstacle), and general interface design.
npx skills add dotnet/skills --skill generate-testability-wrappers
Generate wrapper interfaces, default implementations, and DI service registration code for untestable static dependencies. For statics that already have .NET built-in abstractions (TimeProvider, IHttpClientFactory), guide adoption of the built-in. For statics without built-in alternatives, generate custom minimal wrappers.
detect-static-dependencies and identifying which statics to wrapTimeProvider (.NET 8+) or System.IO.AbstractionsEnvironment.*, Console.*, or Process.*detect-static-dependencies)migrate-static-to-wrapper)If the target already consumes an injected interface or built-in abstraction, stop: do not add a second wrapper, project, registration, or test around that seam.
A missing DI package does not by itself force an ambient seam. For an instantiable class, prefer constructor injection and compose it explicitly or show the requested registration. Use Step 5 when the API is static and its signatures must stay static, or when the user explicitly forbids caller construction/DI changes.
| Input | Required | Description |
|---|---|---|
| Static category | Yes | Which category: time, filesystem, environment, network, console, process |
| Target framework | Yes | The TargetFramework from .csproj (affects which built-in abstractions exist) |
| Composition | No | Existing DI framework, explicit/manual construction, or immutable static API |
| Namespace | No | Target namespace for generated wrapper code |
Based on the category and target framework:
| Category | .NET 8+ | .NET 6-7 | .NET Framework |
|---|---|---|---|
| Time | TimeProvider (built-in) | TimeProvider via Microsoft.Bcl.TimeProvider NuGet | Custom ISystemClock |
| File system | System.IO.Abstractions (NuGet) | Same | Same |
| HTTP | IHttpClientFactory (built-in) | Same | Same |
| Environment | Custom IEnvironmentProvider | Same | Same |
| Console | Custom IConsole | Same | Same |
| Process | Custom IProcessRunner | Same | Same |
The table picks which abstraction. How it reaches the code under test is a separate axis:
Check for a host builder, IServiceCollection, existing registrations, and
construction sites. Do not infer "must remain static" merely because the project
currently has no container.
No wrapper code needed. Complete all four parts: production registration,
constructor injection, a FakeTimeProvider test, and the testing package.
FakeTimeProvider:The assertion must prove a time-dependent result after the fake is pinned or
advanced. Merely constructing FakeTimeProvider is not a test. When the project
has no container but the target is an instantiable class, inject
TimeProvider anyway and show explicit production construction with
TimeProvider.System; do not replace it with a custom static clock.
Before calling the adoption complete, verify the repository contains or the answer supplies every required artifact: the testing package reference, the production composition/registration, every affected constructor call, and a runnable fake-time test. A code fragment that omits one of those integration points is guidance, not a completed adoption.
Guide: install Microsoft.Bcl.TimeProvider NuGet. Same API as above.
No wrapper code needed. Register a typed client via
builder.Services.AddHttpClient<MyService>() and inject HttpClient directly
into the class constructor. Preserve cancellation by passing the caller's token
to the HTTP operation.
For tests, provide a complete fake HttpMessageHandler whose SendAsync
returns a deterministic HttpResponseMessage, construct HttpClient with that
handler, and exercise the typed client without network access. Compile and run
the focused test when the task asks for implementation; do not stop at a
schematic handler method.
When production uses a typed-client registration, test that same registration
pipeline: configure its primary handler in ServiceCollection, resolve the typed
client, and call it. A test that manually constructs HttpClient proves the class
but not the DI registration the task asked to adopt.
For categories without built-in abstractions, follow this template:
Only include methods that were actually detected in the codebase. Do NOT generate a wrapper for every possible member — wrap only what is used.
Prefer a stateless operation-shaped interface. For example, if a caller only
needs to start a process, wait, and return its exit code, expose one Run
operation rather than a stateful wrapper that leaks Process lifecycle.
Treat registration as a deliverable, not a sentence in the summary. Add it to the repository's existing registration surface when one exists. Otherwise show the exact compile-ready statement and identify where the caller should place it. Stateless delegating wrappers are singleton; if state must be retained, explain why a shorter lifetime is required.
Prefer the established System.IO.Abstractions NuGet package over custom wrappers:
IFileSystem into classes:MockFileSystem:Package-first adoption is exclusive: add both package references, use
IFileSystem in production, register or explicitly compose FileSystem, and
seed MockFileSystem before exercising the consumer. Do not also generate a
second custom filesystem interface, and do not present an unseeded mock whose
test could pass without proving the requested read/write behavior.
Use this pattern when the API must remain static or its released signatures cannot accept a dependency:
Key trade-offs: AsyncLocal<T> ensures parallel tests don't interfere; production cost is one null check per call; the static readonly field is essentially free.
Three properties this pattern must keep, because each has broken a real migration:
IDisposable that restores the previous value, so a test cannot leak a pinned time into the next one. A bare setter, or a manual try/finally at each call site, puts that burden on every test author.AsyncLocal<T>, never [ThreadStatic]. [ThreadStatic] does not flow across await, so the override silently disappears mid-test.DateTime.UtcNow with a local-time source changes the DateTimeKind every existing caller and stored value depends on — pair UtcNow with GetUtcNow(), and Now with GetLocalNow().internal override is
inaccessible from a separate test assembly unless the production project adds
the exact InternalsVisibleTo for that test assembly. Otherwise use an
already-public seam only when a public API change is authorized. Never show a
test calling an inaccessible member.The same shape works for non-time statics: swap TimeProvider.System.GetUtcNow() for the real static call and keep the override slot, the disposable scope, and the original semantics.
Generate files following the project's existing conventions:
Abstractions/ or Interfaces/ folder, place the interface thereInfrastructure/ or Services/ folder, place the implementation thereAlways generate:
Skip registration entirely on the ambient-seam path: there is no container to register into, and offering one anyway is the failure mode that made a user ask for the seam in the first place.
Before reporting completion, verify the delivered output contains every item the prompt requested. In particular, do not summarize "singleton registration" when no registration code was added or shown, and do not claim testability without demonstrating how the consumer receives a fake. For console wrappers, exercise the consumer with a fake that both captures the prompt and supplies the returned input; a build or banner-only run does not prove the prompt flow.
AddSingleton for stateless wrappers, AddTransient for stateful onesTimeProvider is recommended over custom ISystemClockFakeTimeProvider, its testing package, and an assertion on a
time-dependent resultAsyncLocal<T>, a scoped IDisposable that restores the previous value, and trade-off explanationIServiceCollection registration is proposed, the separate test assembly can reach the override, and the replaced member's return type and semantics (UtcNow vs Now, and its DateTimeKind) are preserved| Pitfall | Solution |
|---|---|
| Treating "no DI package" as "must be ambient" | Inject into instantiable classes and compose explicitly; reserve Step 5 for static/signature-preserving APIs |
| Wrapping ALL members of a static class | Only wrap methods actually called in the codebase |
| Custom time wrapper on .NET 8+ | Use built-in TimeProvider instead |
| Custom file system wrapper | Prefer System.IO.Abstractions NuGet — battle-tested, complete |
| Registering scoped when singleton suffices | Stateless wrappers should be AddSingleton |
| Forgetting test helper packages | Microsoft.Extensions.TimeProvider.Testing for time, System.IO.Abstractions.TestingHelpers for filesystem |
Ambient context without AsyncLocal | Non-async [ThreadStatic] breaks with async/await — always use AsyncLocal<T> |
| Showing an internal ambient override to external tests | Add the exact friend assembly or use an authorized public seam; compile the test project |
// Requires Microsoft.Extensions.TimeProvider.Testing NuGet
var fakeTime = new FakeTimeProvider(new DateTimeOffset(2026, 1, 15, 0, 0, 0, TimeSpan.Zero));
var processor = new OrderProcessor(fakeTime);
fakeTime.Advance(TimeSpan.FromDays(1));
Assert.True(processor.IsExpired(order));namespace <Namespace>;
/// <summary>
/// Abstraction over <static class> for testability.
/// </summary>
public interface I<WrapperName>
{
// One method per detected static call
<return type> <MethodName>(<parameters>);
}namespace <Namespace>;
/// <summary>
/// Default implementation that delegates to <static class>.
/// </summary>
public sealed class <WrapperName> : I<WrapperName>
{
public <return type> <MethodName>(<parameters>)
=> <StaticClass>.<Method>(<arguments>);
}// In Program.cs or Startup.cs:
builder.Services.AddSingleton<I<WrapperName>, <WrapperName>>();dotnet add package System.IO.Abstractionsbuilder.Services.AddSingleton<IFileSystem, FileSystem>();public class ConfigLoader(IFileSystem fileSystem)
{
public string LoadConfig(string path)
=> fileSystem.File.ReadAllText(path);
}dotnet add <TestProject> package System.IO.Abstractions.TestingHelpersvar mockFs = new MockFileSystem(new Dictionary<string, MockFileData>
{
{ "/config.json", new MockFileData("{\"key\": \"value\"}") }
});
var loader = new ConfigLoader(mockFs);
Assert.Equal("{\"key\": \"value\"}", loader.LoadConfig("/config.json"));public static class Clock
{
private static readonly AsyncLocal<Func<DateTime>?> s_override = new();
public static DateTime UtcNow
=> s_override.Value?.Invoke() ?? TimeProvider.System.GetUtcNow().UtcDateTime;
internal static IDisposable Override(DateTime fixedUtcTime)
{
if (fixedUtcTime.Kind != DateTimeKind.Utc)
throw new ArgumentException("The override must be UTC.", nameof(fixedUtcTime));
var previous = s_override.Value;
s_override.Value = () => fixedUtcTime;
return new Scope(previous);
}
private sealed class Scope : IDisposable
{
private readonly Func<DateTime>? _previous;
private bool _disposed;
public Scope(Func<DateTime>? previous)
{
_previous = previous;
}
public void Dispose()
{
if (_disposed)
return;
s_override.Value = _previous;
_disposed = true;
}
}
}