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技能库 智客分类:写作与研究 golang-grpc

戈兰克

为Golang微型服务提供GRPC的使用准则、原生组织以及生产准备模式。 在执行,审查,或调试gRPC服务器/客户端时使用,写出原型文件,设置截取器,处理gRPC错误并使用状态代码,配置TLS/mTLS,用bufconn进行测试,或与流式RPC合作.

38301 安装量

官方网址:作者主页

技能介绍

先看中文介绍;官方 description 原文单独保留,不改写 SKILL.md。

做什么

为Golang微型服务提供GRPC的使用准则、原型组织以及生产准备模式

何时用

官方 description 未单独写出 Use when。按规范,代理会在用户任务与这段 description 的关键词匹配时激活本技能。

代理如何加载

按 Agent Skills 渐进披露:启动时只加载 name 与 description(约 100 token);任务匹配后才读入整份 SKILL.md 正文;scripts/、references/、assets/ 仅在需要时再读。 本文件正文结构:Go gRPC Best Practices、Quick Reference、Proto File Organization、Server Implementation、Interceptor Pattern、Client Implementation。

文件分析

文件分析:除 SKILL.md 外,正文引用了 references/protoc-reference.md、references/testing.md,属于带资源的技能包,这些文件按需再读。

官方 description(原文)

Provides gRPC usage guidelines, protobuf organization, and production-ready patterns for Golang microservices. Use when implementing, reviewing, or debugging gRPC servers/clients, writing proto files, setting up interceptors, handling gRPC errors with status codes, configuring TLS/mTLS, testing with bufconn, or working with streaming RPCs.

Go gRPC Best PracticesQuick ReferenceProto File OrganizationServer ImplementationInterceptor PatternClient ImplementationError HandlingStreamingTestingSecurityPerformanceCommon Mistakes

兼容:Designed for Claude Code, Codex or similar harness, and for projects using Golang. · 许可:MIT · allowed-tools:Read Edit Write Glob Grep Bash(go:*) Bash(golangci-lint:*) Bash(git:*) Agent WebFetch mcp__context7__resolve-library-id mcp__context7__query-docs Bash(protoc:*) AskUserQuestion Bash(godig:*) Bash(gopls:*) LSP mcp__gopls__*

来源分类:skills.sh agent-skill

SKILL.md 与 Agent 调用

官方规范 ↗
name
golang-grpc
description
Provides gRPC usage guidelines, protobuf organization, and production-ready patterns for Golang microservices. Use when implementing, reviewing, or debugging gRPC servers/clients, writing proto files, setting up interceptors, handling gRPC errors with status codes, configuring TLS/mTLS, testing with bufconn, or working with streaming RPCs.
compatibility
Designed for Claude Code, Codex or similar harness, and for projects using Golang.
allowed-tools
Read Edit Write Glob Grep Bash(go:*) Bash(golangci-lint:*) Bash(git:*) Agent WebFetch mcp__context7__resolve-library-id mcp__context7__query-docs Bash(protoc:*) AskUserQuestion Bash(godig:*) Bash(gopls:*) LSP mcp__gopls__*实验字段,支持情况取决于客户端;字段声明本身不会授予工具权限。
许可
MIT
  1. 发现技能客户端向 Agent 提供名称与描述目录。
  2. 匹配与调用用户指定或任务匹配后,载入 SKILL.md 指令。
  3. 按需加载按步骤读取参考文档、使用脚本与素材。
指令中引用的文件 · 2
  • references/protoc-reference.md
  • references/testing.md

以下路径提取自原文;文件是否齐全请以来源仓库中的完整目录为准。

具体调用语法与可用工具以目标 Agent 客户端为准。 查看调用机制说明 ↗

安装这个技能

Skills CLI ↗

先选择目标 Agent 和安装范围,保留技能包的附属文件,安装后检查客户端能否发现该技能。

该技能引用了附属文件,请从来源获取完整目录;仅复制 SKILL.md 可能缺少依赖。

交给 Agent 安装

复制安装指令给支持 Agent Skills 的代理,确认其中的目标目录与客户端匹配。

把 Agent Skill「golang-grpc」安装到我的项目:SKILL.md 原文与官方 description 见 https://zicq.com/zh/skills/skl-a3ad0946bfa1e6c6-%E6%88%88%E5%85%B0%E5%85%8B.html
请存为 .cursor/skills/golang-grpc/SKILL.md 或 .claude/skills/golang-grpc/SKILL.md,frontmatter 的 name 与 description 保持原样,不要改写。
该技能还带 scripts/、references/、assets/ 等文件,请从 https://github.com/samber/cc-skills-golang 取完整目录,不要只建一个 SKILL.md。

GitHub 完整包 ↗

终端安装 · Skills CLI

需要 Node.js 与 npx。先查看仓库技能列表,确认实际名称。

npx skills add 'https://github.com/samber/cc-skills-golang' --list

npx skills add 'https://github.com/samber/cc-skills-golang' --skill 'golang-grpc'

CLI 会交互选择目标 Agent,默认安装到项目;用户级安装使用 -g。先通过查看命令核对仓库内容,再用 npx skills list 检查已安装技能。

阅读排版

name: golang-grpc description: "Provides gRPC usage guidelines, protobuf organization, and production-ready patterns for Golang microservices. Use when implementing, reviewing, or debugging gRPC servers/clients, writing proto files, setting up interceptors, handling gRPC errors with status codes, configuring TLS/mTLS, testing with bufconn, or working with streaming RPCs." user-invocable: true license: MIT compatibility: Designed for Claude Code, Codex or similar harness, and for projects using Golang. metadata: author: samber version: "1.2.2" openclaw: emoji: "🌐" homepage: https://github.com/samber/cc-skills-golang requires: bins: - go - protoc install: - kind: brew formula: protobuf bins: [protoc] allowed-tools: Read Edit Write Glob Grep Bash(go:) Bash(golangci-lint:) Bash(git:) Agent WebFetch mcp__context7__resolve-library-id mcp__context7__query-docs Bash(protoc:) AskUserQuestion Bash(godig:) Bash(gopls:) LSP mcp__gopls__* paths:

  • "**/*.go"

Persona: You are a Go distributed systems engineer. You design gRPC services for correctness and operability — proper status codes, deadlines, interceptors, and graceful shutdown matter as much as the happy path.

Modes:

  • Build mode — implementing a new gRPC server or client from scratch.
  • Review mode — auditing existing gRPC code for correctness, security, and operability issues.

Dependencies:

  • protoc: brew install protobuf
  • protoc-gen-go: go install google.golang.org/protobuf/cmd/protoc-gen-go@latest
  • protoc-gen-go-grpc: go install google.golang.org/grpc/cmd/protoc-gen-go-grpc@latest

Go gRPC Best Practices

Treat gRPC as a pure transport layer — keep it separate from business logic. The official Go implementation is google.golang.org/grpc.

This skill is not exhaustive — refer to library documentation and code examples for more information:

  • For Go package docs, symbols, versions, importers, and known vulnerabilities, → See samber/cc-skills-golang@golang-pkg-go-dev skill (godig), preferred over Context7 for Go package facts.
  • To navigate this library's usage in your own code (definitions, call sites, diagnostics), → See samber/cc-skills-golang@golang-gopls skill (gopls).
  • Context7 remains a fallback for docs not indexed on pkg.go.dev.

Quick Reference

| Concern | Package / Tool | | --- | --- | | Service definition | protoc or buf with .proto files | | Code generation | protoc-gen-go, protoc-gen-go-grpc | | Error handling | google.golang.org/grpc/status with codes | | Rich error details | google.golang.org/genproto/googleapis/rpc/errdetails | | Interceptors | grpc.ChainUnaryInterceptor, grpc.ChainStreamInterceptor | | Middleware ecosystem | github.com/grpc-ecosystem/go-grpc-middleware | | Testing | google.golang.org/grpc/test/bufconn | | TLS / mTLS | google.golang.org/grpc/credentials | | Health checks | google.golang.org/grpc/health |

Proto File Organization

Organize by domain with versioned directories (proto/user/v1/). Always use Request/Response wrapper messages — bare types like string cannot have fields added later. Generate with buf generate or protoc.

Proto & code generation reference

Server Implementation

  • Implement health check service (grpc_health_v1) — Kubernetes probes need it to determine readiness
  • Use interceptors for cross-cutting concerns (logging, auth, recovery) — keeps business logic clean
  • Use GracefulStop() with a timeout fallback to Stop() — drains in-flight RPCs while preventing hangs
  • Disable reflection in production — it exposes your full API surface
srv := grpc.NewServer(
    grpc.ChainUnaryInterceptor(loggingInterceptor, recoveryInterceptor),
)
pb.RegisterUserServiceServer(srv, svc)
healthpb.RegisterHealthServer(srv, health.NewServer())

go srv.Serve(lis)

// On shutdown signal:
stopped := make(chan struct{})
go func() { srv.GracefulStop(); close(stopped) }()
select {
case <-stopped:
case <-time.After(15 * time.Second):
    srv.Stop()
}

Interceptor Pattern

func loggingInterceptor(ctx context.Context, req any, info *grpc.UnaryServerInfo, handler grpc.UnaryHandler) (any, error) {
    start := time.Now()
    resp, err := handler(ctx, req)
    log.Printf("method=%s duration=%s code=%s", info.FullMethod, time.Since(start), status.Code(err))
    return resp, err
}

Client Implementation

  • Reuse connections — gRPC multiplexes RPCs on a single HTTP/2 connection; one-per-request wastes TCP/TLS handshakes
  • Set deadlines on every call (context.WithTimeout) — without one, a slow upstream hangs goroutines indefinitely
  • Use round_robin with headless Kubernetes services via dns:/// scheme
  • Pass metadata (auth tokens, trace IDs) via metadata.NewOutgoingContext
conn, err := grpc.NewClient("dns:///user-service:50051",
    grpc.WithTransportCredentials(creds),
    grpc.WithDefaultServiceConfig(`{
        "loadBalancingPolicy": "round_robin",
        "methodConfig": [{
            "name": [{"service": ""}],
            "timeout": "5s",
            "retryPolicy": {
                "maxAttempts": 3,
                "initialBackoff": "0.1s",
                "maxBackoff": "1s",
                "backoffMultiplier": 2,
                "retryableStatusCodes": ["UNAVAILABLE"]
            }
        }]
    }`),
)
client := pb.NewUserServiceClient(conn)

Error Handling

Always return gRPC errors using status.Error with a specific code — a raw error becomes codes.Unknown, telling the client nothing actionable. Clients use codes to decide retry vs fail-fast vs degrade.

| Code | When to Use | | -------------------- | ------------------------------------------- | | InvalidArgument | Malformed input (missing field, bad format) | | NotFound | Entity does not exist | | AlreadyExists | Create failed, entity exists | | PermissionDenied | Caller lacks permission | | Unauthenticated | Missing or invalid token | | FailedPrecondition | System not in required state | | ResourceExhausted | Rate limit or quota exceeded | | Unavailable | Transient issue, safe to retry | | Internal | Unexpected bug | | DeadlineExceeded | Timeout |

// ✗ Bad — caller gets codes.Unknown, can't decide whether to retry
return nil, fmt.Errorf("user not found")

// ✓ Good — specific code lets clients act appropriately
if errors.Is(err, ErrNotFound) {
    return nil, status.Errorf(codes.NotFound, "user %q not found", req.UserId)
}
return nil, status.Errorf(codes.Internal, "lookup failed: %v", err)

For field-level validation errors, attach errdetails.BadRequest via status.WithDetails.

Streaming

| Pattern | Use Case | | --- | --- | | Server streaming | Server sends a sequence (log tailing, result sets) | | Client streaming | Client sends a sequence, server responds once (file upload, batch) | | Bidirectional | Both send independently (chat, real-time sync) |

Prefer streaming over large single messages — avoids per-message size limits and lowers memory pressure.

func (s *server) ListUsers(req *pb.ListUsersRequest, stream pb.UserService_ListUsersServer) error {
    for _, u := range users {
        if err := stream.Send(u); err != nil {
            return err
        }
    }
    return nil
}

Testing

Use bufconn for in-memory connections that exercise the full gRPC stack (serialization, interceptors, metadata) without network overhead. Always test that error scenarios return the expected gRPC status codes.

Testing patterns and examples

Security

  • TLS MUST be enabled in production — credentials travel in metadata
  • For service-to-service auth, use mTLS or delegate to a service mesh (Istio, Linkerd)
  • For user auth, implement credentials.PerRPCCredentials and validate tokens in an auth interceptor
  • Reflection SHOULD be disabled in production to prevent API discovery

Performance

| Setting | Purpose | Typical Value | | --- | --- | --- | | keepalive.ServerParameters.Time | Ping interval for idle connections | 30s | | keepalive.ServerParameters.Timeout | Ping ack timeout | 10s | | grpc.MaxRecvMsgSize | Override 4 MB default for large payloads | 16 MB | | Connection pooling | Multiple conns for high-load streaming | 4 connections |

Most services do not need connection pooling — profile before adding complexity.

Common Mistakes

| Mistake | Fix | | --- | --- | | Returning raw error | Becomes codes.Unknown — client can't decide whether to retry. Use status.Errorf with a specific code | | No deadline on client calls | Slow upstream hangs indefinitely. Always context.WithTimeout | | New connection per request | Wastes TCP/TLS handshakes. Create once, reuse — HTTP/2 multiplexes RPCs | | Reflection enabled in production | Lets attackers enumerate every method. Enable only in dev/staging | | codes.Internal for all errors | Wrong codes break client retry logic. Unavailable triggers retry; InvalidArgument does not | | Bare types as RPC arguments | Can't add fields to string. Wrapper messages allow backwards-compatible evolution | | Missing health check service | Kubernetes can't determine readiness, kills pods during deployments | | Ignoring context cancellation | Long operations continue after caller gave up. Check ctx.Err() |

Cross-References

  • → See samber/cc-skills-golang@golang-context skill for deadline and cancellation patterns
  • → See samber/cc-skills-golang@golang-error-handling skill for gRPC error to Go error mapping
  • → See samber/cc-skills-golang@golang-observability skill for gRPC interceptors (logging, tracing, metrics)
  • → See samber/cc-skills-golang@golang-testing skill for gRPC testing with bufconn

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