
Dotnet Local Tools
- 398 installs
- 1.1k repo stars
- Updated July 3, 2026
- aaronontheweb/dotnet-skills
dotnet-local-tools is an agent skill that configures `.config/dotnet-tools.json` manifests so developers who need consistent, version-pinned .NET CLI utilities across repos and CI can restore tools with one command inste
About
dotnet-local-tools is an agent skill from aaronontheweb/dotnet-skills for managing .NET local tools through a repository-scoped manifest at `.config/dotnet-tools.json`. The workflow starts with `dotnet new tool-manifest`, adds tools via `dotnet tool install`, and restores them everywhere with `dotnet tool restore`, keeping formatters like CSharpier, analyzers, DocFX, dotnet-ef, ReportGenerator, and incrementalist pinned per project. It documents manifest fields such as `isRoot`, exact versions, and `rollForward: false` for reproducible builds, plus GitHub Actions and Azure Pipelines snippets that run restore before doc generation, coverage reporting, or EF migrations. Reach for dotnet-local-tools when onboarding a .NET repo, eliminating global tool version conflicts, or aligning local developer setups with CI/CD tool versions.
- dotnet-tools.json manifest setup
- Version-pinned CLI utilities
- Restore and run local tools
- CI-friendly tool bootstrap
- Avoid global SDK pollution
Dotnet Local Tools by the numbers
- 398 all-time installs (skills.sh)
- Ranked #47 of 153 .NET & C# skills by installs in the Skillselion catalog
- Data as of Aug 3, 2026 (Skillselion catalog sync)
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| Installs | 398 |
|---|---|
| repo stars | ★ 1.1k |
| Last updated | July 3, 2026 |
| Repository | aaronontheweb/dotnet-skills ↗ |
How do you pin .NET CLI tools per repository?
Configure and use dotnet local tools manifests so teams pin CLI utilities—formatters, generators, analyzers—without polluting global SDK installs across repos.
Who is it for?
dotnet-local-tools fits .NET teams that want reproducible formatter, analyzer, and generator versions across laptops and CI without machine-wide global tool installs.
Skip if: Skip dotnet-local-tools when a project relies solely on globally installed SDK-bundled tools or never runs repo-specific CLI utilities in pipelines.
When should I use this skill?
Trigger dotnet-local-tools when setting up a new .NET repo, adding DocFX or dotnet-ef to CI, or fixing global versus local tool version mismatches.
What you get
A version-controlled `.config/dotnet-tools.json` manifest, restored local CLI tools, and CI steps that call `dotnet tool restore` before running pinned commands.
- .config/dotnet-tools.json manifest
- CI restore step snippets
By the numbers
- Example complete manifest pins 5 local tools
- Documents dotnet-ef 9.0.0 and ReportGenerator 5.4.1 as sample pinned versions
Files
Slopwatch: LLM Anti-Cheat for .NET
When to Use This Skill
Use this skill constantly. Every time an LLM (including Claude) makes changes to:
- C# source files (.cs)
- Project files (.csproj)
- Props files (Directory.Build.props, Directory.Packages.props)
- Test files
Run slopwatch to validate the changes don't introduce "slop."
What is Slop?
"Slop" refers to shortcuts LLMs take that make tests pass or builds succeed without actually solving the underlying problem. These are reward hacking behaviors - the LLM optimizes for apparent success rather than real fixes.
Common Slop Patterns
| Pattern | Example | Why It's Bad |
|---|---|---|
| Disabled tests | [Fact(Skip="flaky")] | Hides failures instead of fixing them |
| Warning suppression | #pragma warning disable CS8618 | Silences compiler without fixing issue |
| Empty catch blocks | catch (Exception) { } | Swallows errors, hides bugs |
| Arbitrary delays | await Task.Delay(1000); | Masks race conditions, makes tests slow |
| Project-level suppression | <NoWarn>CS1591</NoWarn> | Disables warnings project-wide |
| CPM bypass | Version="1.0.0" inline | Undermines central package management |
Never accept these patterns. If an LLM introduces slop, reject the change and require a proper fix.
---
Installation
As a Local Tool (Recommended)
Add to .config/dotnet-tools.json:
{
"version": 1,
"isRoot": true,
"tools": {
"slopwatch.cmd": {
"version": "0.2.0",
"commands": ["slopwatch"],
"rollForward": false
}
}
}Then restore:
dotnet tool restoreAs a Global Tool
dotnet tool install --global Slopwatch.Cmd---
First-Time Setup: Establish a Baseline
Before using slopwatch on an existing project, create a baseline of current issues:
# Initialize baseline from existing code
slopwatch init
# This creates .slopwatch/baseline.json
git add .slopwatch/baseline.json
git commit -m "Add slopwatch baseline"Why baseline? Legacy code may have existing issues. The baseline ensures slopwatch only catches new slop being introduced, not pre-existing technical debt.
---
Usage During LLM Sessions
After Every Code Change
Run slopwatch after any LLM-generated code modification:
# Analyze for new issues (uses baseline)
slopwatch analyze
# Use strict mode - fail on warnings too
slopwatch analyze --fail-on warningWhen Slopwatch Flags an Issue
Do not ignore it. Instead:
1. Understand why the LLM took the shortcut 2. Request a proper fix - be specific about what's wrong 3. Verify the fix doesn't introduce different slop
# Example: LLM disabled a test
❌ SW001 [Error]: Disabled test detected
File: tests/MyApp.Tests/OrderTests.cs:45
Pattern: [Fact(Skip="Test is flaky")]
# Correct response: Ask for actual fix
"This test was disabled instead of fixed. Please investigate why
it's flaky and fix the underlying timing/race condition issue."Updating the Baseline (Rare)
Only update the baseline when slop is truly justified and documented:
# Add current detections to baseline (use sparingly!)
slopwatch analyze --update-baselineJustification examples:
- Third-party library forces a pattern (e.g., must suppress specific warning)
- Intentional delay for rate limiting (not test flakiness)
- Generated code that can't be modified
Document why in a code comment when updating baseline.
---
Claude Code Hook Integration
Add slopwatch as a hook to automatically validate every edit. Create or update .claude/settings.json:
{
"hooks": {
"PostToolUse": [
{
"matcher": "Write|Edit|MultiEdit",
"hooks": [
{
"type": "command",
"command": "slopwatch analyze -d . --hook",
"timeout": 60000
}
]
}
]
}
}The --hook flag:
- Only analyzes git dirty files (fast, even on large repos)
- Outputs errors to stderr in readable format
- Blocks the edit on warnings/errors (exit code 2)
- Claude sees the error and can fix it immediately
---
CI/CD Integration
Add slopwatch to your CI pipeline as a quality gate:
GitHub Actions
jobs:
slopwatch:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
- name: Setup .NET
uses: actions/setup-dotnet@v4
with:
dotnet-version: '9.0.x'
- name: Install Slopwatch
run: dotnet tool install --global Slopwatch.Cmd
- name: Run Slopwatch
run: slopwatch analyze -d . --fail-on warningAzure Pipelines
- task: DotNetCoreCLI@2
displayName: 'Install Slopwatch'
inputs:
command: 'custom'
custom: 'tool'
arguments: 'install --global Slopwatch.Cmd'
- script: slopwatch analyze -d . --fail-on warning
displayName: 'Slopwatch Analysis'---
Detection Rules
| Rule | Severity | What It Catches |
|---|---|---|
| SW001 | Error | Disabled tests (Skip=, Ignore, #if false) |
| SW002 | Warning | Warning suppression (#pragma warning disable, SuppressMessage) |
| SW003 | Error | Empty catch blocks that swallow exceptions |
| SW004 | Warning | Arbitrary delays in tests (Task.Delay, Thread.Sleep) |
| SW005 | Warning | Project file slop (NoWarn, TreatWarningsAsErrors=false) |
| SW006 | Warning | CPM bypass (VersionOverride, inline Version attributes) |
---
Configuration
Create .slopwatch/slopwatch.json to customize:
{
"minSeverity": "warning",
"rules": {
"SW001": { "enabled": true, "severity": "error" },
"SW002": { "enabled": true, "severity": "warning" },
"SW003": { "enabled": true, "severity": "error" },
"SW004": { "enabled": true, "severity": "warning" },
"SW005": { "enabled": true, "severity": "warning" },
"SW006": { "enabled": true, "severity": "warning" }
},
"exclude": [
"**/Generated/**",
"**/obj/**",
"**/bin/**"
]
}Strict Mode (Recommended for LLM Sessions)
For maximum protection during LLM coding sessions, elevate all rules to errors:
{
"minSeverity": "warning",
"rules": {
"SW001": { "enabled": true, "severity": "error" },
"SW002": { "enabled": true, "severity": "error" },
"SW003": { "enabled": true, "severity": "error" },
"SW004": { "enabled": true, "severity": "error" },
"SW005": { "enabled": true, "severity": "error" },
"SW006": { "enabled": true, "severity": "error" }
}
}---
The Philosophy: Zero Tolerance for New Slop
1. Baseline captures legacy - Existing issues are acknowledged but isolated 2. New slop is blocked - Any new shortcut fails the build/edit 3. Exceptions require justification - If you must update baseline, document why 4. LLMs are not special - The same rules apply to human and AI-generated code
The goal is to prevent the gradual accumulation of technical debt that occurs when LLMs optimize for "make the test pass" rather than "fix the actual problem."
---
Quick Reference
# First time setup
slopwatch init
git add .slopwatch/baseline.json
# After every LLM code change
slopwatch analyze
# Strict mode (recommended)
slopwatch analyze --fail-on warning
# With stats (performance debugging)
slopwatch analyze --stats
# Update baseline (rare, document why)
slopwatch analyze --update-baseline
# JSON output for tooling
slopwatch analyze --output json---
When to Override (Almost Never)
The only valid reasons to update baseline or disable a rule:
| Scenario | Action | Required |
|---|---|---|
| Third-party forces pattern | Update baseline | Code comment explaining why |
| Generated code (not editable) | Add to exclude list | Document in config |
| Intentional rate limiting delay | Update baseline | Code comment, not in test |
| Legacy code cleanup | One-time baseline update | PR description |
Invalid reasons:
- "The test is flaky" → Fix the flakiness
- "The warning is annoying" → Fix the code
- "It works on my machine" → Fix the race condition
- "We'll fix it later" → Fix it now
Related skills
How it compares
Pick dotnet-local-tools over ad hoc global installs when reproducible, repo-scoped CLI tooling matters more than one-off machine convenience.
FAQ
What file does dotnet-local-tools manage?
dotnet-local-tools manages `.config/dotnet-tools.json`, the per-repository manifest that records pinned .NET CLI tool names, exact versions, command aliases, and whether newer versions may roll forward.
How do CI pipelines restore local tools?
dotnet-local-tools instructs pipelines to run `dotnet tool restore` once after checkout and SDK setup, then invoke tools as `dotnet docfx`, `dotnet ef`, or `dotnet csharpier` without separate global installs.