DotnetTemplateMCP
An MCP server that lets AI agents work with dotnet new templates — search, inspect, preview, and create projects through natural conversation instead of memorizing CLI flags.
Instead of this:
dotnet new list --language C#
dotnet new webapi --help
dotnet new webapi --auth Individual --use-controllers --name MyApi --output ./MyApi
Your AI agent just says: "I need a web API with authentication and controllers" — and the MCP server figures out the rest.
Template Validation for Authors
Building a custom dotnet new template? template_validate catches mistakes before you publish — no more guessing if your template.json is correct:
Agent calls: template_validate("./my-template")
← Returns:
{
"valid": false,
"summary": "2 error(s), 1 warning(s), 3 suggestion(s)",
"errors": [
"Missing required field 'shortName'.",
"Parameter 'Framework': default value 'net7.0' is not in the choices list."
],
"warnings": [
"Missing 'sourceName'. Without it, the generated project name won't be customizable via --name."
],
"suggestions": [
"Consider adding a 'description' field to help users understand what this template creates.",
"Consider adding 'language' tag (e.g., 'C#') for better discoverability.",
"Consider adding 'type' tag (e.g., 'project', 'item') for filtering."
]
}
What it catches: missing required fields, invalid identity format, short name conflicts with CLI commands, parameter issues (missing defaults, empty choices, prefix collisions, type mismatches), broken computed symbols, constraint misconfiguration, and missing tags.
How this relates to the official tooling. Microsoft ships template authoring validation already, and you should know about it:
| Official tool | What it gives you |
|---|---|
Microsoft.TemplateEngine.Authoring.CLI | dotnet template-authoring validate — the reference validator |
Microsoft.TemplateEngine.Authoring.Tasks | Validation at build time, as an MSBuild task |
Microsoft.TemplateEngine.Authoring.TemplateVerifier | Snapshot testing of template output |
What template_validate adds is not the validation itself — it is the delivery: a single structured JSON payload, split into errors/warnings/suggestions with fix-oriented messages, returned in-band to an agent that is already editing the template. No install step, no output parsing, no second tool in the loop. If you are a human authoring templates in CI, prefer the official tools above; they are the reference implementation and cover cases this does not.
Tools
| Tool | What it does |
|---|---|
template_search | Search locally and on NuGet.org — one call, ranked results |
template_list | List what's installed, filter by language/type/classification |
template_inspect | Parameters, constraints, post-actions — all in one shot |
template_instantiate | Create a project. Not installed? Auto-resolves from NuGet. Elicits missing params interactively |
template_dry_run | Preview files without touching disk |
template_install | Install a package (idempotent — skips if already there) |
template_uninstall | Remove a template package |
templates_installed | Inventory of everything installed |
template_from_intent | "web API with auth" → webapi + auth=Individual — no LLM needed |
template_create_from_existing | Analyze a .csproj → generate a reusable template matching repo conventions |
template_compose | Execute a sequence of templates (project + items) in one workflow |
template_suggest_parameters | Suggest parameter values with rationale based on cross-parameter relationships |
template_validate | Validate a local template directory for authoring issues before publishing |
template_compare | Compare 2+ templates side by side — parameters, features, frameworks |
solution_analyze | Analyze a solution/workspace — project structure, frameworks, CPM status |
packages_upgrade | Scan a project/solution/folder for outdated NuGet versions and report or apply upgrades (CPM-aware) |
Hosted deployment
A hosted deployment is available on Fronteir AI.
Quick Start
Global tool (.NET 8+)
dotnet tool install --global DotnetTemplateMCP --version 2.0.0
Zero-install with dnx (.NET 10+)
dnx -y DotnetTemplateMCP --version 2.0.0
VS Code / GitHub Copilot
Add to mcp.json:
{
"servers": {
"dotnet-templates": {
"type": "stdio",
"command": "dnx",
"args": ["-y", "DotnetTemplateMCP", "--version", "2.0.0"]
}
}
}
📖 Claude Desktop, Cursor, and more →
Transport Modes
Stdio (default)
Standard I/O transport for local CLI and tool usage:
template-engine-mcp # stdio is the default
template-engine-mcp --transport stdio # explicit
HTTP (remote / team-shared)
Streamable HTTP transport for remote or CI/CD deployment.
Authentication is mandatory. Every tool in this server writes files and installs NuGet packages, so an open endpoint is a remote code execution surface. The server refuses to start the HTTP transport unless you either set a token or explicitly opt in to anonymous access:
# Recommended
MCP_TEMPLATE_HTTP_TOKEN=<shared-secret> template-engine-mcp --transport http
# Only for a trusted, isolated network
MCP_TEMPLATE_HTTP_ALLOW_ANONYMOUS=true template-engine-mcp --transport http
Clients authenticate with Authorization: Bearer <shared-secret>. Requests to /mcp are rate limited per client (default 120/minute, MCP_TEMPLATE_HTTP_RATE_LIMIT=0 disables). /health stays anonymous for probes.
Not multi-tenant.
TemplateEngineServiceis a process-wide singleton withvirtualizeSettings: false, so the installed-template set is shared by every caller, and the workspace root is process-wide. Run one instance per trusted team or per tenant — do not expose a single instance to mutually untrusting users.
template-engine-mcp --transport http
# or via environment variable:
MCP_TEMPLATE_TRANSPORT=http template-engine-mcp
The HTTP server exposes:
/mcp— MCP streamable HTTP endpoint (bearer token required)/health— Health check endpoint (anonymous)
Configure the listen URL:
MCP_TEMPLATE_HTTP_URL=http://0.0.0.0:8080 template-engine-mcp --transport http
Connect your MCP client:
{
"servers": {
"dotnet-templates": {
"type": "http",
"url": "http://localhost:5005/mcp"
}
}
}
Interactive Elicitation
When a template has required parameters that weren't provided, the server asks the user interactively via MCP elicitation — instead of failing. Template parameter types are mapped to form fields:
| Template Parameter | Elicitation Field |
|---|---|
string | Text input |
bool / boolean | Checkbox |
int / number | Number input |
| Choice parameter | Single-select dropdown |
Disable with MCP_TEMPLATE_ELICITATION=false.
How it works
You: "I need a web API with authentication, controllers, and Docker support"
→ template_from_intent extracts keywords: web api, authentication, controllers, docker
→ Matches: webapi (confidence: 0.85)
→ Resolves: auth=Individual, UseControllers=true, EnableDocker=true
→ template_instantiate creates the project
The server also does smart defaults (AOT → latest framework, auth → HTTPS stays on), parameter validation before writing files, constraint checking (OS, SDK, workload), interactive elicitation of missing required parameters, and auto-resolves templates from NuGet if they're not installed.
CPM & Latest Package Versions
When creating a project inside a solution that uses Central Package Management, the server automatically:
- Detects
Directory.Packages.propsby walking up the directory tree - Strips
Versionattributes from generated.csprojPackageReferences - Adds missing
<PackageVersion>entries toDirectory.Packages.props - Resolves latest stable NuGet versions — no more stale hardcoded versions from templates
Before (what dotnet new generates):
<PackageReference Include="Serilog" Version="3.1.0" /> ← stale, breaks CPM
After (what template_instantiate produces):
.csproj: <PackageReference Include="Serilog" />
Directory.Packages.props: <PackageVersion Include="Serilog" Version="4.2.0" />
Works for standalone projects too — versions are updated directly in the .csproj.
Multi-Template Composition
Chain multiple templates in one call with template_compose:
[
{"templateName": "webapi", "name": "MyApi", "parametersJson": "{\"auth\": \"Individual\"}"},
{"templateName": "gitignore", "target": "."}
]
📖 Architecture & smart behaviors →
Tool Profiles (Lite vs Full)
By default, all 15 tools are available. If your agent works better with fewer tools, set the MCP_TEMPLATE_TOOL_PROFILE environment variable:
| Profile | Tools | When to use |
|---|---|---|
full (default) | All 15 tools | Full control — advanced workflows, composition, custom templates |
lite | 5 core tools | Simpler agents that just need to find and create projects |
Lite profile tools: template_from_intent, template_instantiate, template_inspect, template_search, template_dry_run
{
"servers": {
"dotnet-template-mcp": {
"command": "dotnet-template-mcp",
"env": {
"MCP_TEMPLATE_TOOL_PROFILE": "lite"
}
}
}
}
Non-lite tools will return a helpful message explaining they're disabled and how to enable them.
Documentation
| Doc | What's in it |
|---|---|
| Configuration | VS Code, Claude Desktop, Cursor setup + troubleshooting |
| Tool Reference | Every tool's parameters, types, and examples |
| Architecture | Template cache, smart behaviors, telemetry, project structure |
| MCP vs Skills | Why MCP over Copilot Skills — benefits and downsides |
| Plain LLM vs MCP | Side-by-side: what a plain LLM does vs. the MCP tool (4 scenarios) |
| Skills Equivalent | What it'd take to cover this with Skills instead |
Building & Testing
dotnet build
dotnet test # 185+ tests — unit, integration, and E2E
CI runs on push/PR via GitHub Actions (Ubuntu + Windows).
Contributing
Contributions are welcome! Please open an issue to discuss proposed changes before submitting a PR.
# Setup
dotnet restore
dotnet build
# Run tests
dotnet test
# Pack locally
dotnet pack src/DotnetTemplateMcp -o nupkg/
Changelog
See CHANGELOG.md for release history.