Migrate Static to Wrapper

SkillFiles & storage

Rewrites C# code that calls static helpers like DateTime.UtcNow or File.* to use injectable, testable abstractions.

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About this capability

ALWAYS USE when asked to migrate, replace, or make testable existing C# static calls with a named wrapper or built-in abstraction: DateTime.UtcNow/Now or DateTimeOffset.UtcNow to TimeProvider/IClock, File.* to IFileSystem or an existing store such as ITextFileStore, and Environment.* to an existing

What this skill tells your AI

The instructions your AI receives, as published by dotnet/skills in plugins/dotnet-test/skills/migrate-static-to-wrapper/SKILL.md and read by ahel’s review.

Perform mechanical, codemod-style replacement of static dependency call sites with calls to injected wrapper interfaces or built-in abstractions. Operates on a bounded scope (single file, project, or namespace) so migrations can be done incrementally.

When to Use

  • After wrappers have been generated (via generate-testability-wrappers) or built-in abstractions identified
  • Migrating DateTime.UtcNowTimeProvider.GetUtcNow() across a project
  • Migrating File.*IFileSystem.File.* across a namespace
  • Adding constructor injection for the new abstraction to affected classes
  • Making a static utility class testable by adding an ambient seam (Step 3) while its existing call sites keep compiling unchanged
  • Incremental migration: one project or namespace at a time
  • Updating affected tests with fakes when the requested migration names the replacement abstraction

When Not to Use

  • No wrapper or abstraction exists yet and one must be designed from scratch (use generate-testability-wrappers first). A built-in abstraction such as TimeProvider or IFileSystem always counts as existing.
  • The user wants to detect statics, not migrate them (use detect-static-dependencies)
  • Migrating between test frameworks (use the appropriate migration skill)
  • The user primarily asks for a deterministic behavior test and has not selected the production seam (use testability-obstacle)

A class that is static, or a project with no DI container, is not a reason to skip this skill — that is exactly what the ambient seam in Step 3 is for. Use it whenever the call sites must keep compiling unchanged.

Inputs

InputRequiredDescription
Static patternYesWhat to replace (e.g., DateTime.UtcNow, File.ReadAllText)
Replacement abstractionYesWhat to use instead (e.g., TimeProvider, IFileSystem)
ScopeYesFile path, project (.csproj), namespace, or directory to migrate
Injection strategyNoconstructor (default), primary-constructor, or ambient

Workflow

Non-negotiable migration boundaries

  • Missing abstraction means stop. If the named interface/package is absent and the request only authorizes call-site replacement, do not add a package, invent a local lookalike interface, or edit production code. Report the exact missing prerequisite and the authorization needed to continue.
  • One source read stays one replacement read. Do not hoist or coalesce calls, even when sharing a captured timestamp looks cleaner.
  • The requested scope is exhaustive and exclusive. Replace every named call in scope and no adjacent member or file.

Step 1: Verify prerequisites

Before modifying any code:

  1. Confirm the wrapper/abstraction exists: Check that the interface or built-in abstraction is available in the project. For TimeProvider, verify the target framework is .NET 8+ or Microsoft.Bcl.TimeProvider is referenced. For System.IO.Abstractions, verify the NuGet package is referenced. A package that could provide an abstraction is not the same as an abstraction already available to this project.

  2. Confirm production composition exists: Check Program.cs, Startup.cs, or manual construction sites. If package, wrapper, or registration work is missing, add it only when the user explicitly authorized those dependency/composition changes. Otherwise stop before editing call sites and report the exact prerequisite; do not turn a scoped migration into first-time abstraction design.

  3. Identify all files in scope: List the .cs files that will be modified. Exclude test projects, obj/, bin/, and generated code.

  4. Count every in-scope occurrence before editing: Search the exact member named by the user and record its file/line inventory. Do not infer the count from a partial read or from how many methods were initially noticed.

Step 2: Plan the migration for each file

Migrate exactly what was asked — nothing adjacent. If the user named a member (DateTime.UtcNow), migrate only that member and leave siblings such as DateTime.Now untouched. If the user named files, do not touch other files. Never migrate a call site whose comment or name marks it as deliberate (e.g. // intentional local time). List everything you deliberately left alone under "Remaining (out of scope)" so the user can ask for it in a follow-up; suggesting is fine, silently widening the scope is not.

For each file containing the static pattern, determine:

  1. Which class(es) contain the call sites — identify the class declarations
  2. Whether the class already has the dependency injected — check constructors for existing TimeProvider, IFileSystem, etc. parameters
  3. The replacement expression for each call site
Replacement mapping
CategoryOriginalDI replacement
TimeDateTime.Now_timeProvider.GetLocalNow().LocalDateTime
TimeDateTime.UtcNow_timeProvider.GetUtcNow().UtcDateTime
TimeDateTime.Today_timeProvider.GetLocalNow().LocalDateTime.Date
TimeDateTimeOffset.Now_timeProvider.GetLocalNow()
TimeDateTimeOffset.UtcNow_timeProvider.GetUtcNow()
FileFile.ReadAllText(path)_fileSystem.File.ReadAllText(path)
FileFile.WriteAllText(path, text)_fileSystem.File.WriteAllText(path, text)
FileFile.Exists(path)_fileSystem.File.Exists(path)
FileDirectory.Exists(path)_fileSystem.Directory.Exists(path)
EnvEnvironment.GetEnvironmentVariable(name)_env.GetEnvironmentVariable(name)
ConsoleConsole.WriteLine(msg)_console.WriteLine(msg)
ProcessProcess.Start(info)_processRunner.Start(info)

Apply the same pattern for other members in each category.

Preserve DateTimeKind — this is the most common silent regression. TimeProvider.GetUtcNow() / GetLocalNow() return a DateTimeOffset. Converting back to DateTime must keep the original Kind, otherwise you introduce a behavioral change even though the code still compiles:

  • DateTime.UtcNow has Kind == Utc → use .UtcDateTime (not .DateTime, which yields Kind == Unspecified).
  • DateTime.Now has Kind == Local → use .LocalDateTime (not .DateTime).
  • When a call site consumes a DateTimeOffset directly (a field/parameter/return already typed DateTimeOffset), drop the .UtcDateTime/.LocalDateTime suffix and assign the DateTimeOffset as-is — don't force it back through DateTime.

Match the target member's type: if the surrounding field/property is DateTime, keep it DateTime (via the Kind-correct property above); do not change it to DateTimeOffset as part of a "mechanical" migration — that is a design change, not a delegation.

Preserve the number, order, and location of reads as well as the value type. Replace each original clock read in place with one provider read. Do not hoist, cache, or coalesce two reads into a shared now local, even when they are in the same object initializer or method. Two consecutive DateTime.UtcNow calls could observe different instants; making CreatedAt and ExpiresAt derive from one captured value is a behavior change, not a mechanical migration. Reuse a value only when the original code already captured and reused one.

Step 3: Add constructor injection

Add the new dependency following the class's existing pattern:

  • Primary constructor (C# 12+): Add parameter to primary constructor: public class OrderProcessor(ILogger<OrderProcessor> logger, TimeProvider timeProvider)
  • Traditional constructor: Add private readonly field + constructor parameter, matching the existing field naming convention (_camelCase or m_camelCase)
Static classes: use ambient context (no constructor injection)

A static class with only static members cannot receive constructor injection — adding an instance constructor or instance field would break it. Do not convert it to a non-static class just to inject the dependency; that changes its design and every call site. Instead, apply a scoped ambient seam that defaults to the real implementation and can be overridden without leaking process-global state.

When the user wants to keep the class static, the ambient seam below is the answer — present it as the solution and implement it directly. Do not hedge by offering "convert it to a non-static class" or "pass TimeProvider as a method parameter" as co-equal alternatives; those change the class's design or public API and are not what was asked. Lead with the seam, then note the parallelism trade-off.

public static class TimestampFormatter
{
  private static readonly AsyncLocal<TimeProvider?> s_clock = new();

  private static TimeProvider Clock => s_clock.Value ?? TimeProvider.System;

  public static string Now() => Clock.GetUtcNow().ToString("O");

  public static IDisposable OverrideClock(TimeProvider clock)
  {
      ArgumentNullException.ThrowIfNull(clock);
      var previous = s_clock.Value;
      s_clock.Value = clock;
      return new Scope(() => s_clock.Value = previous);
  }

  private sealed class Scope : IDisposable
  {
      private Action? _restore;

      public Scope(Action restore)
      {
          _restore = restore;
      }

      public void Dispose() => Interlocked.Exchange(ref _restore, null)?.Invoke();
  }
}
  • Production reads TimeProvider.System whenever no override is active; no startup mutation is required.
  • Tests create a fresh fake/provider per async flow and dispose the returned scope. Nested disposal restores the outer provider.
  • AsyncLocal<T> keeps independently established test flows isolated across await. Do not store a mutable stack/list in the slot or mutate one fake inherited by multiple child flows.
  • Add focused tests for substitution, nested restoration, and parallel async isolation. A build-only check does not prove this seam.
  • The same shape works for other statics (IFileSystem, custom wrappers): store the abstraction value in AsyncLocal<T>, default to the real implementation, and restore the previous value from the scope.

Step 4: Replace call sites

Perform each replacement mechanically. For each call site:

  1. Replace the static call with the wrapper call
  2. Preserve the surrounding expression structure and evaluation order; one original dependency read remains one wrapper read
  3. Add required using directives if not already present

After editing, repeat the exact search and require zero occurrences in every in-scope production file. Re-open each changed file and compare the result to the pre-edit inventory. A summary count is not evidence if one method was silently missed.

Adding using directives
AbstractionUsing directive
TimeProviderNone (in System namespace)
IFileSystemusing System.IO.Abstractions;
IHttpClientFactoryusing System.Net.Http; (usually already present)
Custom wrappersusing <wrapper namespace>;

Step 5: Update affected test files

If test files exist for the migrated classes:

  1. Update constructor calls — add the new parameter to test class instantiation
  2. Use test doubles:
    • TimeProvidernew FakeTimeProvider() from Microsoft.Extensions.TimeProvider.Testing
    • IFileSystemnew MockFileSystem() from System.IO.Abstractions.TestingHelpers
    • Custom wrappers → new Mock<IWrapperName>() or hand-rolled fake

Preserve every observable branch that depended on the original static result. For example, migrating Environment.GetEnvironmentVariable(name) ?? "production" requires tests for both a configured value and null/missing input selecting the fallback. A fake-only happy path is not enough to prove a mechanical migration. When tests already exist, preserve their framework and assertion style, but make the replacement dependency observable: include at least one configured/fake value assertion and one fallback or error-path assertion where the original static API exposed both outcomes. Merely making the old tests compile is not complete migration evidence.

Step 6: Build verification

After all changes in the current scope, build the affected production project and run the narrowest affected test project whenever tests exist or were changed:

dotnet build <project.csproj>
dotnet test <affected-test-project.csproj>

Report the build result you actually observed. Only write "build succeeded" when the command exited 0; if it failed — including restore/NuGet failures such as "assets file not found" — say so, quote the error, and either fix it (dotnet restore, add the missing package) or hand the user a precise blocker. A false success claim is worse than an unfinished migration.

If the build fails:

  • Missing using: Add the required using directive
  • Missing NuGet package: add it only when dependency changes were explicitly authorized; otherwise report the unmet prerequisite and stop
  • Constructor mismatch in tests: Update test instantiation (Step 5)
  • Ambiguous call: Fully qualify the wrapper call

Do not substitute a successful build for the requested test run. When migration changes constructor calls, fakes, process-global state, or real I/O, only the targeted tests prove the complete path. If the test command is blocked, report that blocker rather than claiming the migration is fully validated.

Step 7: Report changes

Summarize what was done:

## Migration Summary

**Pattern**: DateTime.UtcNow → TimeProvider.GetUtcNow()
**Scope**: MyProject/Services/

### Files Modified (production)
| File | Call Sites Replaced | Injection Added |
|------|--------------------:|:----------------|
| OrderProcessor.cs | 3 | Yes (constructor) |
| NotificationService.cs | 1 | Yes (primary ctor) |

### Files Modified (tests)
| File | Change |
|------|--------|
| OrderProcessorTests.cs | Added FakeTimeProvider parameter |

### Remaining (out of scope)
- MyProject/Legacy/ — 8 call sites not migrated (different namespace)

Validation

  • All call sites in scope were replaced (none missed)
  • A before/after exact-member search proves the in-scope occurrence count reached zero
  • No call site outside the requested member/file scope was modified
  • Call sites documented as intentional (e.g. local time) were left untouched and reported
  • Constructor injection added to all affected classes
  • Field naming follows existing class conventions
  • Required using directives added
  • Required NuGet packages referenced
  • Build succeeds after migration, and the reported result matches the actual command exit code
  • Test files updated with appropriate test doubles
  • Existing configured, fallback/null, and error branches still have direct test evidence
  • The affected targeted tests ran successfully when tests exist or changed
  • No behavioral changes introduced (wrapper delegates directly to the static)
  • Static reads were replaced one-for-one; none were hoisted, cached, or coalesced
  • DateTimeKind preserved — former DateTime.UtcNow stays Utc (.UtcDateTime), former DateTime.Now stays Local (.LocalDateTime)

Common Pitfalls

PitfallSolution
Replacing statics in test codeOnly replace in production code; tests should use fakes/mocks
Breaking static classesStatic classes can't have constructors — use the ambient context seam (Step 3) instead of converting them to non-static
Missing FakeTimeProvider NuGetAdd Microsoft.Extensions.TimeProvider.Testing to test project
Replacing a DateTime value with .DateTime off a DateTimeOffsetDateTimeOffset.DateTime returns Kind == Unspecified — use .UtcDateTime (for former DateTime.UtcNow) or .LocalDateTime (for former DateTime.Now) to preserve the original DateTimeKind. Only change the field/return type to DateTimeOffset if the user asked for it.
Capturing one provider value for multiple original clock readsReplace each read in place. Coalescing reads changes observable timing even when it looks cleaner.
Migrating too much at onceStick to the defined scope — one project or namespace per run
Migrating DateTime.Now when only UtcNow was requestedRespect the literal request; list the other call sites as out-of-scope suggestions instead of rewriting them
Claiming "Build succeeded" after a failed restoreRead the exit code and output; report the real failure and fix it or surface it as a blocker
Adding a package during a call-site-only migrationStop and request authorization or run wrapper/adoption setup first
Forgetting production compositionVerify DI registration, manual construction, or the ambient production default before replacing call sites

Signals

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Sep 2026
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Source
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