关于
This skill provides guidance on implementing dependency injection in Go, focusing on constructor injection and explicit wiring in `main()` to avoid global state. It explains when to use frameworks like Wire, Fx, or Dig versus manual dependency management. Use this skill for questions about wiring dependencies, improving testability, or removing singletons, but not for interface design or project structure topics.
快速安装
Claude Code
推荐npx skills add eduardo-sl/go-agent-skills -a claude-code/plugin add https://github.com/eduardo-sl/go-agent-skillsgit clone https://github.com/eduardo-sl/go-agent-skills.git ~/.claude/skills/go-dependency-injection在 Claude Code 中复制并粘贴此命令以安装该技能
技能文档
Go Dependency Injection
DI in Go is a pattern, not a framework: pass dependencies to
constructors, wire everything explicitly in main. Reach for a
framework only when manual wiring measurably hurts.
1. Constructor Injection — the Default
// ✅ Good — dependencies are explicit parameters
type OrderService struct {
repo OrderRepository
payments PaymentGateway
logger *slog.Logger
}
func NewOrderService(repo OrderRepository, payments PaymentGateway, logger *slog.Logger) *OrderService {
return &OrderService{repo: repo, payments: payments, logger: logger}
}
// ❌ Bad — hidden dependencies reached through globals
func (s *OrderService) Place(ctx context.Context, o Order) error {
db := database.Get() // global singleton
log.Printf("placing order") // global logger
// untestable without touching process-wide state
}
Rules:
- Accept interfaces for dependencies the service calls; return the concrete type from the constructor.
- Every dependency visible in the signature — if the list feels long, the type does too much (split it), don't hide deps to shorten it.
- Validate required deps in the constructor and return an error
(or accept a nil-safe default, e.g.
logger = slog.Default()).
2. The Composition Root
All wiring lives in one place — main (or a run function it calls).
Construction order is the dependency order, checked by the compiler:
func run(ctx context.Context, cfg Config) error {
db, err := store.Open(ctx, cfg.DatabaseURL)
if err != nil {
return fmt.Errorf("open db: %w", err)
}
defer db.Close()
orderRepo := store.NewOrderRepo(db)
payments := stripe.NewGateway(cfg.StripeKey)
logger := slog.New(slog.NewJSONHandler(os.Stdout, nil))
orders := service.NewOrderService(orderRepo, payments, logger)
server := handler.NewServer(cfg.Addr, orders)
return server.ListenAndServe(ctx)
}
- No package builds its own dependencies; it receives them.
- No
init()wiring, no package-levelvar DB *sql.DB. - Two binaries needing different wiring = two mains, same components.
3. Eliminating Global State
// ❌ Before — package-level singleton
var defaultClient *api.Client
func Fetch(id string) (*Item, error) {
return defaultClient.Get(id)
}
// ✅ After — the dependency moves into a struct
type Fetcher struct {
client *api.Client
}
func NewFetcher(c *api.Client) *Fetcher { return &Fetcher{client: c} }
func (f *Fetcher) Fetch(id string) (*Item, error) {
return f.client.Get(id)
}
Migration path for a legacy codebase: introduce the struct, keep a
deprecated package-level wrapper delegating to one instance built in
main, move callers over, delete the wrapper.
Acceptable package-level state: pure constants, compiled regexps,
sync.Once-guarded process singletons that hold no config.
4. Function Dependencies for Small Seams
A full interface is overkill for one function — inject the function:
type Service struct {
now func() time.Time
genID func() string
publish func(ctx context.Context, e Event) error
}
// Production: Service{now: time.Now, genID: uuid.NewString, publish: bus.Publish}
// Test: Service{now: fixedTime, genID: constID, publish: capture}
5. When Frameworks Earn Their Complexity
Manual wiring scales further than expected — a 100-line run function
is still readable and compiler-checked. Consider a tool when wiring
crosses hundreds of components or many teams share one binary.
| Tool | Model | Trade-off |
|---|---|---|
| google/wire | Compile-time code generation | Wiring stays plain Go and compiler-checked; adds a codegen step |
| uber-go/fx | Runtime container + lifecycle | App lifecycle (start/stop hooks) managed; errors surface at runtime, magic in stack traces |
| uber-go/dig | Runtime container (fx's core) | Same runtime trade-offs, no lifecycle layer |
Decision rule: prefer manual wiring; if generation becomes necessary prefer wire (failures at compile time beat failures at startup); adopt fx only when you also want its lifecycle management and your team accepts the runtime container.
Never mix models: one composition root, one mechanism.
6. Wire Example (when chosen)
//go:build wireinject
func InitializeServer(cfg Config) (*handler.Server, error) {
wire.Build(
store.Open,
store.NewOrderRepo,
stripe.NewGateway,
service.NewOrderService,
handler.NewServer,
)
return nil, nil // replaced by generated code
}
wire generates the ordered constructor calls; the generated file is
committed and reviewed like handwritten code.
Verification Checklist
- Every service/handler receives dependencies via constructor parameters
- No package-level mutable singletons (
var DB,var logger,Get()accessors) - All wiring concentrated in main/run — no
init()construction - Dependencies accepted as interfaces (or funcs), concrete types returned
- Constructors validate required dependencies
- Components testable by passing fakes — no process-global setup in tests
- If a DI tool is used: exactly one, at the composition root only
go build ./...passes — wiring errors surface at compile time
GitHub 仓库
常见问题
什么是 go-dependency-injection Skill?
go-dependency-injection 是一个 Claude Skill,作者为 eduardo-sl。Skill 将 Claude 按需加载的说明和资源打包,让 Claude 无需额外提示即可执行与 go-dependency-injection 相关的任务。
如何安装 go-dependency-injection?
使用本页的安装命令:将 go-dependency-injection 作为插件添加到 Claude Code,或将其仓库克隆到 skills 目录,然后重启 Claude 以加载该 Skill。
go-dependency-injection 属于哪个分类?
go-dependency-injection 属于测试分类。
go-dependency-injection 可以免费使用吗?
可以。go-dependency-injection 已收录在 AIMCP,可免费安装。
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