Go Concurrency Patterns

SkillAI & models

Teaches your agent Go concurrency patterns like goroutines, channels, and worker pools when writing or debugging Go code.

Available today. Use it from your connected AI after setup.

Connect ahel once, and every AI you use reads what you have installed.

Then ask your AI: use the Go Concurrency Patterns skill

About this capability

Master Go concurrency with goroutines, channels, sync primitives, and context. Use when building concurrent Go applications, implementing worker pools, or debugging race conditions.

What this skill tells your AI

The instructions your AI receives, as published by rudycity/superagent in .agents/skills/go-concurrency-patterns/SKILL.md and read by ahel’s review.

Production patterns for Go concurrency including goroutines, channels, synchronization primitives, and context management.

When to Use This Skill

  • Building concurrent Go applications
  • Implementing worker pools and pipelines
  • Managing goroutine lifecycles
  • Using channels for communication
  • Debugging race conditions
  • Implementing graceful shutdown

Core Concepts

1. Go Concurrency Primitives

PrimitivePurpose
goroutineLightweight concurrent execution
channelCommunication between goroutines
selectMultiplex channel operations
sync.MutexMutual exclusion
sync.WaitGroupWait for goroutines to complete
context.ContextCancellation and deadlines

2. Go Concurrency Mantra

Don't communicate by sharing memory;
share memory by communicating.

Quick Start

package main

import (
    "context"
    "fmt"
    "sync"
    "time"
)

func main() {
    ctx, cancel := context.WithTimeout(context.Background(), 5*time.Second)
    defer cancel()

    results := make(chan string, 10)
    var wg sync.WaitGroup

    // Spawn workers
    for i := 0; i < 3; i++ {
        wg.Add(1)
        go worker(ctx, i, results, &wg)
    }

    // Close results when done
    go func() {
        wg.Wait()
        close(results)
    }()

    // Collect results
    for result := range results {
        fmt.Println(result)
    }
}

func worker(ctx context.Context, id int, results chan<- string, wg *sync.WaitGroup) {
    defer wg.Done()

    select {
    case <-ctx.Done():
        return
    case results <- fmt.Sprintf("Worker %d done", id):
    }
}

Detailed patterns and worked examples

Detailed pattern documentation lives in references/details.md. Read that file when the navigation tier above is insufficient.

Best Practices

Do's

  • Use context - For cancellation and deadlines
  • Close channels - From sender side only
  • Use errgroup - For concurrent operations with errors
  • Buffer channels - When you know the count
  • Prefer channels - Over mutexes when possible

Don'ts

  • Don't leak goroutines - Always have exit path
  • Don't close from receiver - Causes panic
  • Don't use shared memory - Unless necessary
  • Don't ignore context cancellation - Check ctx.Done()
  • Don't use time.Sleep for sync - Use proper primitives

Signals

GitHub stars
21
Forks
3
Last commit
Sep 2026
Advanced
Catalog kind
skill
Gateway key
go-concurrency-patterns
Source
github.com/rudycity/superagent