Detect Static Dependencies
Scan a C# codebase for calls to hard-to-test static APIs and produce a ranked report showing which statics appear most frequently, which files are most affected, and which abstractions already exist in the .NET ecosystem to replace them.
When to Use
- Auditing a project's testability before adding unit tests
- Understanding the scope of static coupling in a legacy codebase
- Prioritizing which statics to wrap first (highest-frequency wins)
- Creating a migration plan for incremental testability improvements
Response Guidelines
- Scale the response to the user's request. A question about a specific category (e.g., "find time statics") should focus on that category with file locations and counts, not produce a full report across all categories.
- When the user provides a specific file or directory path, scan only that scope — do not expand to the entire solution unless asked.
- The full structured report format in Step 4 is for comprehensive audit requests. For focused questions, return only the relevant subset (e.g., category summary + affected files for the requested category).
Execution Contract
- A relative path named in the prompt is enough to start. Discover it with the available file-listing tools and scan it immediately; do not ask the user to provide or re-upload files before both discovery and a content search fail.
- Start with a recursive, line-numbered content search over eligible
.csfiles. Do not search only for thestatickeyword: ambient calls inside LINQ expressions, lambdas, callbacks, and interpolated strings usually have nostaticmodifier. - If a file-reading tool fails on a path that listing or search proved exists,
classify the failure before retrying. Fall back to another available
mechanism such as
rg -n, grep, or a shell file reader only for confirmed tool availability, transport, or path-normalization failures and only after verifying the canonical path remains inside the workspace. Stop on content-exclusion, permission/policy, workspace-boundary, or unknown failures. Search output can seed the occurrence ledger; open only the surrounding code needed to verify receiver provenance. - Never stop after loading this skill or announcing a scan plan. Return the completed audit in the same response. If every fallback genuinely fails, report the verified partial findings and the exact limitation; do not invent findings or replace the audit with a request to rerun.
When Not to Use
- The user wants wrappers generated (hand off to
generate-testability-wrappers) - The user wants mechanical migration done (hand off to
migrate-static-to-wrapper) - The statics are already behind interfaces or
TimeProvider - The code is not C# / .NET
Inputs
Workflow
Step 1: Determine scan scope
Resolve the target to a set of .cs files:
- Treat a prompt-named workspace-relative path as the target; locate it rather than asking the user for an absolute path.
- If omitted, scan every eligible
.csfile under the current workspace; do not pick one project and silently omit its siblings. - If a
.csfile, scan that single file. - If a directory, scan all
.csfiles recursively (excludingobj/,bin/). - If a
.csproj, find its directory and scan.csfiles within. - If a
.sln, parse it, find all project directories, and scan.csfiles across all projects.
Always exclude obj/, bin/, and any user-specified exclusion patterns.
Step 2: Search for static dependency patterns
Scan each file for calls matching these categories:
Treat pattern matches as candidates, not findings. Before counting an instance call, trace how its
receiver enters the class. A collaborator supplied through a constructor, parameter, property, or
dependency injection (DI) is already a test seam. In particular, an injected HttpClient is
testable with a controlled HttpMessageHandler; do not count its calls or recommend replacing it
merely because the injected type is concrete.
For time calls, inspect use as well as count. Two ambient clock reads in one
logical operation are two call sites and a consistency defect: for example,
separate DateTime.UtcNow reads for CreatedAt and
ExpiresAt = DateTime.UtcNow.AddDays(30) can drift. Recommend one captured
instant. With TimeProvider, retain DateTimeOffset where possible; when the
existing member requires UTC DateTime, use GetUtcNow().UtcDateTime, never
.DateTime, which loses the UTC kind. Treat capturing one instant as an
optional behavior-level follow-up: a mechanical wrapper migration must preserve
the original reads one-for-one unless the user separately approves that
semantic change.
Step 3: Aggregate and rank results
Count each call site across the entire scan scope — including the instance-member call sites covered by the rules below, not only static ones.
Counting rules — inaccurate totals are the main way this report loses to an ad-hoc scan:
- Build one occurrence ledger before writing prose. Give each included call
site exactly one row containing category, exact pattern,
file:line, and recommended seam. Derive every category, pattern, and per-file count by grouping that same ledger; never recount independently while writing tables. - Keep the three count domains separate.
Files scannedincludes every eligible source file;affected filesincludes only files with ledger rows;call sitesis the number of ledger rows. Never substitute one for another. - One authoritative total. Every call site you found belongs in the category summary and the grand total. Never park real findings in an "additional observations" section that the totals exclude.
- Classify by what the member touches, not by whether it is
static. Instance members that reach the same untestable resource still count and belong in the matching category (new FileInfo(path).LastWriteTimeUtc→ File System;new HttpClient().GetAsync(...)→ Network). Say "hidden dependency", not "static", when the member is an instance call. - Check receiver provenance before counting instance calls. Count a resource access only when the code under test acquires or constructs the dependency itself. Exclude constructor-, parameter-, property-, and DI-injected collaborators from the "needs wrapping" total, including concrete
HttpClientinstances. - Exclude deterministic pure helpers from the "needs wrapping" total.
Path.Combine,Path.GetExtension,Path.GetFileName, andMath.*/string.*statics take no ambient input and are trivially testable. List them, if at all, in a separate "no action needed" note — never as testability blockers. - Cover every category before reporting — time, file system, environment, network, console, process, randomness (
new Random(),Guid.NewGuid()), culture (CultureInfo.CurrentCulture), and serialization/statics such asJsonSerializer. Omitting a category that is present is an under-count. - Give
file:linefor every occurrence so the user can jump straight to it. - Reconcile before publishing. The category totals, the top-patterns table, and the per-file table must sum to the same grand total.
- Treat exclusions as a scope decision, not a category. Remove
obj/,bin/, generated, and user-excluded files before building the ledger. Do not include their files or call sites in any reported count. State the exclusions once rather than mixing excluded candidates into the arithmetic. - Label truncated rankings. In a comprehensive audit, list all distinct patterns when needed for reconciliation. If the user asked only for a top-N subset, label it as a subset and do not imply that its rows sum to the grand total.
Produce a summary with:
- Category summary — total call sites per category (time, filesystem, env, etc.)
- Top patterns — the 10 most frequent individual patterns ranked by count
- Most affected files — files with the highest number of static dependencies
- Existing abstractions available — for each category, note the recommended .NET abstraction:
- Time →
TimeProvider(built-in since .NET 8) - File system →
System.IO.Abstractions(NuGet package) - HTTP →
IHttpClientFactory(built-in) - Environment → custom
IEnvironmentProvider - Console → custom
IConsoleorILogger - Process → custom
IProcessRunner
- Time →
Step 4: Present the report
Format the output as a structured report:
Step 5: Suggest next steps
Based on the report, recommend which category to tackle first (highest count, best built-in support). Keep this to a few lines.
Mention generate-testability-wrappers or migrate-static-to-wrapper only when the user's next action clearly needs them — a hand-off note, not a sales pitch. Never end an audit with promotional next-steps that dilute the findings.
Validation
- All
.csfiles in scope were scanned (check count) - Report includes category totals, top patterns, and affected files
- Category totals, top patterns, and per-file counts reconcile to the same grand total
- Files scanned, affected files, and call sites are reported as different quantities
- Every aggregate was derived from one occurrence ledger rather than independently recounted
- Every occurrence carries a
file:linelocation - No findings are held outside the totals in an "additional" section
- Calls on injected collaborators are excluded from the "needs wrapping" total
- Deterministic pure helpers (
Path.Combine,Math.*) are not counted as testability blockers - Each detected pattern has a recommended replacement listed
-
obj/andbin/directories were excluded - Migration priority is ordered by impact (count × ease of replacement)


