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Clean Architecture

Organization
codewithmukesh
clean-architecture

Clean Architecture for .NET applications. Covers the 4-project layout (Domain, Application, Infrastructure, Api), dependency inversion, use case handlers, domain entities with behavior, and infrastructure as a plugin. Load this skill when building a project with Clean Architecture, discussing layered architecture, dependency inversion, use cases, or when the architecture-advisor recommends Clean Architecture.

Overview

Publishercodewithmukesh
Repositorydotnet-claude-kit
Skill nameclean-architecture
Stars
721
Forks
170
Bundled files
Instructions only
LicenseMIT
Links
  • Markdown instructions

    A SKILL.md file the model loads on demand, so it only costs tokens when a request actually matches.

  • Works with any LLM

    AI skills are plain Markdown, not provider-specific code, so this works with GPT, Claude, Gemini, Grok, or a local model.

  • Self-contained

    Everything the model needs lives in the instructions — no extra files to sync.

  • Open source

    Published by codewithmukesh on GitHub. Read the source before you install it.

Installation

Install the Clean Architecture AI skill in TypingMind to use it with any LLM, or drop it into another agent that reads SKILL.md.

1

Install in TypingMind

TypingMind installs a skill straight from its GitHub folder — it reads SKILL.md, bundles the resource files, and stores the result locally.

  1. Open the app and go to Plugins → Skills.
  2. Choose "Install from GitHub".
  3. Paste the skill folder URL below and confirm.
  4. Enable the skill in any chat where you want it available.
Plugins → Skills → Add skill → From GitHub URL, then paste the folder URL and press Continue.
2

Install in another agent

Any agent that reads the Agent Skills format can use this skill — copy the folder into that agent's skills directory.

Claude Code — .claude/skills
git clone --depth 1 https://github.com/codewithmukesh/dotnet-claude-kit.git /tmp/dotnet-claude-kit
mkdir -p .claude/skills
cp -r /tmp/dotnet-claude-kit/skills/clean-architecture .claude/skills/clean-architecture
Restart Claude Code after copying so it picks up the new skill.

Use it in TypingMind

Enable Clean Architecture in any TypingMind chat and the model takes it from there. Its name and description sit in the system prompt, and the moment a request matches, the model loads the full instructions itself — you never invoke it by hand, and it costs no tokens until it is actually used.

The model loads Clean Architecture on its own as soon as a request matches it.

Works with any AI model

AI skills are plain Markdown instructions rather than provider-specific code, so Clean Architecture is not tied to the model it was written for. Install it once in TypingMind and use it with GPT-5, Claude, Gemini, Grok, DeepSeek, Mistral, Llama, or a local model you run yourself — all on your own API keys.

  • Loaded only when it is needed

    The system prompt carries just the name and description. The instructions are fetched on the first matching request, so an idle skill costs nothing.

  • Switch models mid-chat

    Because the skill is instructions rather than code, changing model does not break it — the next model reads the same SKILL.md.

Skill instructions

This is the SKILL.md content the model loads. Read it before installing — a skill is instructions your model will follow.

Clean Architecture

Core Principles

  1. Dependency inversion is the foundation — All dependencies point inward. Domain has zero project references. Application references only Domain. Infrastructure references Application and Domain. Api references all but depends on abstractions. The compiler enforces this via project references.
  2. Domain owns the rules — Business logic lives in the Domain layer as entity methods, domain services, or specifications. The Domain layer has no knowledge of databases, HTTP, or any framework — only pure C# and .NET primitives.
  3. Use cases are the unit of work — Each use case (command or query) is a single class in the Application layer. It orchestrates domain objects, persists through abstractions, and returns a result. No "service" classes with 20 methods.
  4. Infrastructure is a plugin — EF Core, external APIs, email senders, file storage — all live in Infrastructure and implement interfaces defined in Application or Domain. Swap implementations without touching business logic.
  5. The API layer is thin — Endpoints map HTTP to use cases and use cases to HTTP responses. No business logic in endpoints.

Patterns

Project Layout

src/
  MyApp.Domain/
    Entities/
      Order.cs                    # Entity with behavior
      OrderItem.cs
    Enums/
      OrderStatus.cs
    Exceptions/
      DomainException.cs          # Base domain exception
    Interfaces/
      IOrderRepository.cs         # Only if query needs go beyond DbSet
    Common/
      Entity.cs                   # Base entity with Id
      Result.cs                   # Result pattern type

  MyApp.Application/
    Common/
      Behaviors/
        ValidationBehavior.cs     # Mediator pipeline behavior
      Interfaces/
        IAppDbContext.cs           # DbContext abstraction (preferred over repository)
    Orders/
      Commands/
        CreateOrder/
          CreateOrderCommand.cs
          CreateOrderHandler.cs
          CreateOrderValidator.cs
      Queries/
        GetOrder/
          GetOrderQuery.cs
          GetOrderHandler.cs
          OrderDto.cs

  MyApp.Infrastructure/
    Persistence/
      AppDbContext.cs              # Implements IAppDbContext
      Configurations/
        OrderConfiguration.cs
      Migrations/
    Services/
      EmailSender.cs               # Implements IEmailSender from Application
    DependencyInjection.cs         # AddInfrastructure extension

  MyApp.Api/
    Endpoints/
      OrderEndpoints.cs            # Thin, maps HTTP ↔ use cases
    Program.cs

DbContext Abstraction (Preferred Over Repository)

Define a minimal interface in Application; implement in Infrastructure:

csharp
// Application/Common/Interfaces/IAppDbContext.cs
public interface IAppDbContext
{
    DbSet<Order> Orders { get; }
    DbSet<Product> Products { get; }
    Task<int> SaveChangesAsync(CancellationToken ct = default);
}

// Infrastructure/Persistence/AppDbContext.cs
public class AppDbContext(DbContextOptions<AppDbContext> options)
    : DbContext(options), IAppDbContext
{
    public DbSet<Order> Orders => Set<Order>();
    public DbSet<Product> Products => Set<Product>();

    protected override void OnModelCreating(ModelBuilder modelBuilder)
    {
        modelBuilder.ApplyConfigurationsFromAssembly(typeof(AppDbContext).Assembly);
    }
}

Why IAppDbContext over IRepository? EF Core's DbSet already IS a repository. Adding another abstraction on top adds indirection without value in most cases.

Use Case Handler (Command)

csharp
// Application/Orders/Commands/CreateOrder/CreateOrderCommand.cs
public record CreateOrderCommand(
    string CustomerId,
    List<OrderItemDto> Items) : IRequest<Result<Guid>>;

public record OrderItemDto(string ProductId, int Quantity, decimal UnitPrice);

// Application/Orders/Commands/CreateOrder/CreateOrderHandler.cs — uses Mediator (source-generated, MIT)
internal sealed class CreateOrderHandler(
    IAppDbContext db,
    TimeProvider clock) : IRequestHandler<CreateOrderCommand, Result<Guid>>
{
    public async ValueTask<Result<Guid>> Handle(CreateOrderCommand request, CancellationToken ct)
    {
        var order = Order.Create(
            request.CustomerId,
            request.Items.Select(i => new OrderItem(i.ProductId, i.Quantity, i.UnitPrice)),
            clock.GetUtcNow());

        db.Orders.Add(order);
        await db.SaveChangesAsync(ct);

        return Result.Success(order.Id);
    }
}

// Application/Orders/Commands/CreateOrder/CreateOrderValidator.cs
public class CreateOrderValidator : AbstractValidator<CreateOrderCommand>
{
    public CreateOrderValidator()
    {
        RuleFor(x => x.CustomerId).NotEmpty();
        RuleFor(x => x.Items).NotEmpty();
        RuleForEach(x => x.Items).ChildRules(item =>
        {
            item.RuleFor(x => x.ProductId).NotEmpty();
            item.RuleFor(x => x.Quantity).GreaterThan(0);
            item.RuleFor(x => x.UnitPrice).GreaterThan(0);
        });
    }
}

Use Case Handler (Query)

csharp
// Application/Orders/Queries/GetOrder/GetOrderQuery.cs
public record GetOrderQuery(Guid OrderId) : IRequest<Result<OrderDto>>;

public record OrderDto(Guid Id, string CustomerId, decimal Total, string Status, DateTimeOffset CreatedAt);

// Application/Orders/Queries/GetOrder/GetOrderHandler.cs
internal sealed class GetOrderHandler(IAppDbContext db) : IRequestHandler<GetOrderQuery, Result<OrderDto>>
{
    public async ValueTask<Result<OrderDto>> Handle(GetOrderQuery request, CancellationToken ct)
    {
        var order = await db.Orders
            .Where(o => o.Id == request.OrderId)
            .Select(o => new OrderDto(o.Id, o.CustomerId, o.Total, o.Status.ToString(), o.CreatedAt))
            .FirstOrDefaultAsync(ct);

        return order is not null
            ? Result.Success(order)
            : Result.Failure<OrderDto>("Order not found");
    }
}

Domain Entity with Behavior

csharp
// Domain/Entities/Order.cs
public class Order : Entity
{
    private readonly List<OrderItem> _items = [];

    private Order() { } // EF Core

    public string CustomerId { get; private set; } = null!;
    public OrderStatus Status { get; private set; }
    public decimal Total { get; private set; }
    public DateTimeOffset CreatedAt { get; private set; }
    public IReadOnlyList<OrderItem> Items => _items.AsReadOnly();

    public static Order Create(string customerId, IEnumerable<OrderItem> items, DateTimeOffset now)
    {
        var order = new Order
        {
            Id = Guid.CreateVersion7(),
            CustomerId = customerId,
            Status = OrderStatus.Pending,
            CreatedAt = now
        };

        foreach (var item in items)
            order.AddItem(item);

        return order;
    }

    public void AddItem(OrderItem item)
    {
        _items.Add(item);
        Total = _items.Sum(i => i.Quantity * i.UnitPrice);
    }

    public Result Cancel()
    {
        if (Status is not OrderStatus.Pending)
            return Result.Failure("Only pending orders can be cancelled");

        Status = OrderStatus.Cancelled;
        return Result.Success();
    }
}

Thin Endpoint Wiring (IEndpointGroup Auto-Discovery)

Every endpoint group implements IEndpointGroup and is auto-discovered via app.MapEndpoints(). Program.cs never changes when adding new endpoints. See the minimal-api skill for the full IEndpointGroup interface and EndpointExtensions setup.

csharp
// Api/Endpoints/OrderEndpoints.cs
public sealed class OrderEndpoints : IEndpointGroup
{
    public void Map(IEndpointRouteBuilder app)
    {
        var group = app.MapGroup("/api/orders").WithTags("Orders");

        group.MapPost("/", CreateOrder)
            .WithName("CreateOrder");

        group.MapGet("/{id:guid}", GetOrder)
            .WithName("GetOrder");

        group.MapGet("/", ListOrders)
            .WithName("ListOrders");
    }

    private static async Task<IResult> CreateOrder(
        CreateOrderCommand command, ISender sender, CancellationToken ct)
    {
        var result = await sender.Send(command, ct);
        return result.IsSuccess
            ? TypedResults.Created($"/api/orders/{result.Value}", result.Value)
            : result.ToProblemDetails();
    }

    private static async Task<IResult> GetOrder(
        Guid id, ISender sender, CancellationToken ct)
    {
        var result = await sender.Send(new GetOrderQuery(id), ct);
        return result.IsSuccess
            ? TypedResults.Ok(result.Value)
            : TypedResults.NotFound();
    }

    private static async Task<IResult> ListOrders(
        [AsParameters] ListOrdersQuery query, ISender sender, CancellationToken ct)
    {
        var result = await sender.Send(query, ct);
        return TypedResults.Ok(result);
    }
}

Infrastructure DI Registration

csharp
// Infrastructure/DependencyInjection.cs
public static class DependencyInjection
{
    public static IServiceCollection AddInfrastructure(
        this IServiceCollection services,
        IConfiguration config)
    {
        services.AddDbContext<AppDbContext>(options =>
            options.UseNpgsql(config.GetConnectionString("DefaultConnection")));

        services.AddScoped<IAppDbContext>(sp => sp.GetRequiredService<AppDbContext>());

        return services;
    }
}

Anti-patterns

Anemic Domain Model

csharp
// BAD — entity is just a data bag, all logic in handler
public class Order
{
    public Guid Id { get; set; }
    public string CustomerId { get; set; } = null!;
    public decimal Total { get; set; }
    public List<OrderItem> Items { get; set; } = [];
}

// Handler sets everything directly
order.Total = order.Items.Sum(i => i.Quantity * i.UnitPrice);
order.Status = OrderStatus.Pending;

// GOOD — entity encapsulates its own rules (see Domain Entity pattern above)
var order = Order.Create(customerId, items, clock.GetUtcNow());

DbContext in Domain Layer

csharp
// BAD — Domain references EF Core
// Domain/Services/OrderService.cs
public class OrderService(AppDbContext db) { } // Domain depends on Infrastructure!

// GOOD — Domain defines interfaces, Infrastructure implements
// Domain/Interfaces/IOrderRepository.cs (only if you need query abstraction beyond DbSet)
// Application/Common/Interfaces/IAppDbContext.cs (preferred)

Fat Endpoints

csharp
// BAD — business logic in the endpoint
app.MapPost("/orders", async (CreateOrderRequest req, AppDbContext db) =>
{
    var order = new Order { CustomerId = req.CustomerId };
    foreach (var item in req.Items)
    {
        order.Items.Add(new OrderItem { ProductId = item.ProductId, Quantity = item.Quantity });
    }
    order.Total = order.Items.Sum(i => i.Quantity * i.UnitPrice);
    db.Orders.Add(order);
    await db.SaveChangesAsync();
    return TypedResults.Created($"/orders/{order.Id}", order);
});

// GOOD — endpoint delegates to a use case
app.MapPost("/orders", async (CreateOrderCommand command, ISender sender, CancellationToken ct) =>
{
    var result = await sender.Send(command, ct);
    return result.IsSuccess
        ? TypedResults.Created($"/orders/{result.Value}", result.Value)
        : result.ToProblemDetails();
});

Repository for Every Entity

csharp
// BAD — repository per entity duplicates DbSet functionality
public interface IOrderRepository { Task<Order?> GetByIdAsync(Guid id); }
public interface IProductRepository { Task<Product?> GetByIdAsync(Guid id); }
public interface ICustomerRepository { Task<Customer?> GetByIdAsync(Guid id); }

// GOOD — use IAppDbContext with DbSet<T> directly
// Only create a repository interface when you have complex query logic
// that you want to test in isolation or reuse across multiple use cases

Decision Guide

ScenarioRecommendation
When to use CA over VSAMedium+ domain complexity, long-lived system, team familiar with layers
When to add a Domain layerBusiness rules involve invariants across entity groups
IAppDbContext vs repositoriesPrefer IAppDbContext; add repository only for complex reusable queries
Mediator vs raw handlers in CAMediator for pipeline behaviors (validation, logging); raw handlers for simplicity
When to add Domain eventsWhen side effects (notifications, audit) should be decoupled from the main flow
Evolving from VSA to CAWhen handlers start needing shared domain logic that does not belong in Common/

Frequently asked questions

What does the Clean Architecture AI skill do?

Clean Architecture for .NET applications. Covers the 4-project layout (Domain, Application, Infrastructure, Api), dependency inversion, use case handlers, domain entities with behavior, and infrastructure as a plugin. Load this skill when building a project with Clean Architecture, discussing layered architecture, dependency inversion, use cases, or when the architecture-advisor recommends Clean Architecture.

Why use Clean Architecture on TypingMind?

Because you install it once and use it with any model. Clean Architecture is plain Markdown rather than provider-specific code, so the same skill runs on GPT-5, Claude, Gemini, Grok, or a local model — and you can switch model mid-chat without it breaking. TypingMind runs on your own API keys, so you pay providers directly instead of a per-seat subscription, and your skills and chats stay in your own storage.

How do I install Clean Architecture in TypingMind?

Open Plugins → Skills → Install from GitHub in TypingMind and paste https://github.com/codewithmukesh/dotnet-claude-kit/tree/main/skills/clean-architecture. TypingMind reads its SKILL.md and installs it as a skill you can enable per chat.

Which AI models can use Clean Architecture?

Any model you connect in TypingMind. AI skills are plain Markdown instructions rather than provider-specific code, so GPT, Claude, Gemini, Grok, and local models can all load this skill when a request matches it.

How many AI models can I use with Clean Architecture?

As many as you like. As long as a model supports skills, you can use Clean Architecture with it — GPT, Claude, Gemini, Grok, DeepSeek, Mistral, Llama and more — all on TypingMind with your own API keys.

Is the Clean Architecture AI skill free?

Yes. It is published on GitHub by codewithmukesh under the MIT license. You only pay your own AI provider for the tokens you use.

What are AI skills?

An AI skill is a reusable instruction bundle that teaches an AI model how to do one specific task. It follows the open Agent Skills format: a SKILL.md file with a name and description, plus any scripts, templates or reference files the model may need. The model reads the instructions only when your request matches the skill, so an installed skill costs nothing until it is used.

How are AI skills different from plugins or MCP servers?

A plugin or MCP server gives a model new tools to call — code that runs somewhere and returns a result. An AI skill gives the model knowledge and process instead: how to approach a task, which steps to follow, what good output looks like. Skills are plain Markdown, so they need no server, no API key and no runtime, and they work with any model.

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