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affaan-m/ECC/docs/zh-CN/skills/dotnet-patterns/SKILL.md

dotnet-patterns

Use it for engineering tasks; the detail page covers purpose, installation, and practical steps.

Source repository stars
234,327
Declared platforms
0
Static risk flags
0
Last source update
2026-07-27
Source checked
2026-07-28

Decision brief

What it does—and where it fits

用于构建健壮、高性能且可维护应用程序的惯用 C 和 .NET 模式。

Best for

    Not for

    • Tasks that require unconfirmed production actions or broad system permissions.
    • Environments where the pinned source and install steps cannot be inspected.

    Compatibility matrix

    Platform support, with evidence labels

    PlatformStatusEvidenceWhat to check
    CodexNot declaredNo explicit evidencePortability before use
    Claude CodeNot declaredNo explicit evidencePortability before use
    CursorNot declaredNo explicit evidencePortability before use
    Gemini CLINot declaredNo explicit evidencePortability before use
    Open the compatibility checker

    Installation

    Inspect first. Install second.

    The source command is displayed only when detected. A safe inspection prompt is always available so your agent can explain every action before execution.

    Source-detected install commandSource
    npx skills add https://github.com/affaan-m/ECC --skill "docs/zh-CN/skills/dotnet-patterns"
    Safe inspection promptEditorial

    Inspect the Agent Skill "dotnet-patterns" from https://github.com/affaan-m/ECC/blob/4e973d3eaf92d97f8d2e2d8abb39d8bdc8711b38/docs/zh-CN/skills/dotnet-patterns/SKILL.md at commit 4e973d3eaf92d97f8d2e2d8abb39d8bdc8711b38. List every install step, command, network request, credential, file read/write, external action, and rollback step. Explain whether it fits my task. Do not install or execute anything until I approve.

    Workflow

    What the source asks the agent to do

    1. 01

      何时激活

      编写新的 C 代码时 审查 C 代码时 重构现有 .NET 应用程序时 使用 ASP.NET Core 设计服务架构时

      编写新的 C 代码时审查 C 代码时重构现有 .NET 应用程序时
    2. 02

      核心原则

      对数据模型使用记录和仅初始化属性。可变性应作为明确且有理由的选择。

      对数据模型使用记录和仅初始化属性。可变性应作为明确且有理由的选择。
    3. 03

      1. 优先使用不可变性

      对数据模型使用记录和仅初始化属性。可变性应作为明确且有理由的选择。

      对数据模型使用记录和仅初始化属性。可变性应作为明确且有理由的选择。
    4. 04

      2. 显式优于隐式

      Review the “2. 显式优于隐式” section in the pinned source before continuing.

      Review and apply the “2. 显式优于隐式” source section.
    5. 05

      3. 依赖抽象

      Review the “3. 依赖抽象” section in the pinned source before continuing.

      Review and apply the “3. 依赖抽象” source section.

    Permission review

    Static risk signals and limitations

    No configured static risk pattern was detected

    This is not proof of safety. Runtime behavior, indirect dependencies, and hidden external systems are outside the static scan.

    Evidence record

    Why each signal appears

    EvidenceSourceComputedTestedEditorial
    SignalValueEvidence typeMeaning
    Quality score69/100ComputedDocumentation, specificity, maintenance, and trust rules
    Repository stars234,327SourceRepository attention, not individual Skill quality
    Compatibility0 platformsSourceDeclared in the catalog source record
    Usage guideautomated source guideEditorialGenerated or reviewed according to the visible evidence level

    Pinned source

    Provenance and original SKILL.md

    Repository
    affaan-m/ECC
    Skill path
    docs/zh-CN/skills/dotnet-patterns/SKILL.md
    Commit
    4e973d3eaf92d97f8d2e2d8abb39d8bdc8711b38
    License
    MIT
    Collected
    2026-07-28
    Default branch
    main
    View the original SKILL.md

    .NET 开发模式

    用于构建健壮、高性能且可维护应用程序的惯用 C# 和 .NET 模式。

    何时激活

    • 编写新的 C# 代码时
    • 审查 C# 代码时
    • 重构现有 .NET 应用程序时
    • 使用 ASP.NET Core 设计服务架构时

    核心原则

    1. 优先使用不可变性

    对数据模型使用记录和仅初始化属性。可变性应作为明确且有理由的选择。

    // Good: Immutable value object
    public sealed record Money(decimal Amount, string Currency);
    
    // Good: Immutable DTO with init setters
    public sealed class CreateOrderRequest
    {
        public required string CustomerId { get; init; }
        public required IReadOnlyList<OrderItem> Items { get; init; }
    }
    
    // Bad: Mutable model with public setters
    public class Order
    {
        public string CustomerId { get; set; }
        public List<OrderItem> Items { get; set; }
    }
    

    2. 显式优于隐式

    明确表达可空性、访问修饰符和意图。

    // Good: Explicit access modifiers and nullability
    public sealed class UserService
    {
        private readonly IUserRepository _repository;
        private readonly ILogger<UserService> _logger;
    
        public UserService(IUserRepository repository, ILogger<UserService> logger)
        {
            _repository = repository ?? throw new ArgumentNullException(nameof(repository));
            _logger = logger ?? throw new ArgumentNullException(nameof(logger));
        }
    
        public async Task<User?> FindByIdAsync(Guid id, CancellationToken cancellationToken)
        {
            return await _repository.FindByIdAsync(id, cancellationToken);
        }
    }
    

    3. 依赖抽象

    对服务边界使用接口。通过依赖注入容器注册。

    // Good: Interface-based dependency
    public interface IOrderRepository
    {
        Task<Order?> FindByIdAsync(Guid id, CancellationToken cancellationToken);
        Task<IReadOnlyList<Order>> FindByCustomerAsync(string customerId, CancellationToken cancellationToken);
        Task AddAsync(Order order, CancellationToken cancellationToken);
    }
    
    // Registration
    builder.Services.AddScoped<IOrderRepository, SqlOrderRepository>();
    

    异步/等待模式

    正确使用异步

    // Good: Async all the way, with CancellationToken
    public async Task<OrderSummary> GetOrderSummaryAsync(
        Guid orderId,
        CancellationToken cancellationToken)
    {
        var order = await _repository.FindByIdAsync(orderId, cancellationToken)
            ?? throw new NotFoundException($"Order {orderId} not found");
    
        var customer = await _customerService.GetAsync(order.CustomerId, cancellationToken);
    
        return new OrderSummary(order, customer);
    }
    
    // Bad: Blocking on async
    public OrderSummary GetOrderSummary(Guid orderId)
    {
        var order = _repository.FindByIdAsync(orderId, CancellationToken.None).Result; // Deadlock risk
        return new OrderSummary(order);
    }
    

    并行异步操作

    // Good: Concurrent independent operations
    public async Task<DashboardData> LoadDashboardAsync(CancellationToken cancellationToken)
    {
        var ordersTask = _orderService.GetRecentAsync(cancellationToken);
        var metricsTask = _metricsService.GetCurrentAsync(cancellationToken);
        var alertsTask = _alertService.GetActiveAsync(cancellationToken);
    
        await Task.WhenAll(ordersTask, metricsTask, alertsTask);
    
        return new DashboardData(
            Orders: await ordersTask,
            Metrics: await metricsTask,
            Alerts: await alertsTask);
    }
    

    选项模式

    将配置节绑定到强类型对象。

    public sealed class SmtpOptions
    {
        public const string SectionName = "Smtp";
    
        public required string Host { get; init; }
        public required int Port { get; init; }
        public required string Username { get; init; }
        public bool UseSsl { get; init; } = true;
    }
    
    // Registration
    builder.Services.Configure<SmtpOptions>(
        builder.Configuration.GetSection(SmtpOptions.SectionName));
    
    // Usage via injection
    public class EmailService(IOptions<SmtpOptions> options)
    {
        private readonly SmtpOptions _smtp = options.Value;
    }
    

    结果模式

    对预期失败返回显式成功/失败,而非抛出异常。

    public sealed record Result<T>
    {
        public bool IsSuccess { get; }
        public T? Value { get; }
        public string? Error { get; }
    
        private Result(T value) { IsSuccess = true; Value = value; }
        private Result(string error) { IsSuccess = false; Error = error; }
    
        public static Result<T> Success(T value) => new(value);
        public static Result<T> Failure(string error) => new(error);
    }
    
    // Usage
    public async Task<Result<Order>> PlaceOrderAsync(CreateOrderRequest request)
    {
        if (request.Items.Count == 0)
            return Result<Order>.Failure("Order must contain at least one item");
    
        var order = Order.Create(request);
        await _repository.AddAsync(order, CancellationToken.None);
        return Result<Order>.Success(order);
    }
    

    使用 EF Core 的仓储模式

    public sealed class SqlOrderRepository : IOrderRepository
    {
        private readonly AppDbContext _db;
    
        public SqlOrderRepository(AppDbContext db) => _db = db;
    
        public async Task<Order?> FindByIdAsync(Guid id, CancellationToken cancellationToken)
        {
            return await _db.Orders
                .Include(o => o.Items)
                .AsNoTracking()
                .FirstOrDefaultAsync(o => o.Id == id, cancellationToken);
        }
    
        public async Task<IReadOnlyList<Order>> FindByCustomerAsync(
            string customerId,
            CancellationToken cancellationToken)
        {
            return await _db.Orders
                .Where(o => o.CustomerId == customerId)
                .OrderByDescending(o => o.CreatedAt)
                .AsNoTracking()
                .ToListAsync(cancellationToken);
        }
    
        public async Task AddAsync(Order order, CancellationToken cancellationToken)
        {
            _db.Orders.Add(order);
            await _db.SaveChangesAsync(cancellationToken);
        }
    }
    

    中间件与管道

    // Custom middleware
    public sealed class RequestTimingMiddleware
    {
        private readonly RequestDelegate _next;
        private readonly ILogger<RequestTimingMiddleware> _logger;
    
        public RequestTimingMiddleware(RequestDelegate next, ILogger<RequestTimingMiddleware> logger)
        {
            _next = next;
            _logger = logger;
        }
    
        public async Task InvokeAsync(HttpContext context)
        {
            var stopwatch = Stopwatch.StartNew();
            try
            {
                await _next(context);
            }
            finally
            {
                stopwatch.Stop();
                _logger.LogInformation(
                    "Request {Method} {Path} completed in {ElapsedMs}ms with status {StatusCode}",
                    context.Request.Method,
                    context.Request.Path,
                    stopwatch.ElapsedMilliseconds,
                    context.Response.StatusCode);
            }
        }
    }
    

    最小 API 模式

    // Organized with route groups
    var orders = app.MapGroup("/api/orders")
        .RequireAuthorization()
        .WithTags("Orders");
    
    orders.MapGet("/{id:guid}", async (
        Guid id,
        IOrderRepository repository,
        CancellationToken cancellationToken) =>
    {
        var order = await repository.FindByIdAsync(id, cancellationToken);
        return order is not null
            ? TypedResults.Ok(order)
            : TypedResults.NotFound();
    });
    
    orders.MapPost("/", async (
        CreateOrderRequest request,
        IOrderService service,
        CancellationToken cancellationToken) =>
    {
        var result = await service.PlaceOrderAsync(request, cancellationToken);
        return result.IsSuccess
            ? TypedResults.Created($"/api/orders/{result.Value!.Id}", result.Value)
            : TypedResults.BadRequest(result.Error);
    });
    

    守卫子句

    // Good: Early returns with clear validation
    public async Task<ProcessResult> ProcessPaymentAsync(
        PaymentRequest request,
        CancellationToken cancellationToken)
    {
        ArgumentNullException.ThrowIfNull(request);
    
        if (request.Amount <= 0)
            throw new ArgumentOutOfRangeException(nameof(request.Amount), "Amount must be positive");
    
        if (string.IsNullOrWhiteSpace(request.Currency))
            throw new ArgumentException("Currency is required", nameof(request.Currency));
    
        // Happy path continues here without nesting
        var gateway = _gatewayFactory.Create(request.Currency);
        return await gateway.ChargeAsync(request, cancellationToken);
    }
    

    应避免的反模式

    反模式修复方案
    async void 方法返回 Task(事件处理程序除外)
    .Result.Wait()使用 await
    catch (Exception) { }处理或带上下文重新抛出
    构造函数中的 new Service()使用构造函数注入
    public 字段使用带适当访问器的属性
    业务逻辑中的 dynamic使用泛型或显式类型
    可变的 static 状态使用依赖注入作用域或 ConcurrentDictionary
    循环中的 string.Format使用 StringBuilder 或内插字符串处理程序

    Alternatives

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