Install
$ agentstack add skill-saisudhir14-claude-skills-go-concurrency ✓ scanned · ✓ verified, works with Claude Code, Cursor, and more.
Security review
✓ PassedNo issues found. Passed automated security review. · v0.1.0 How review works →
- ✓ Prompt-injection patterns
- ✓ Secret / credential exfiltration
- ✓ Dangerous shell & filesystem operations
- ✓ Untrusted network calls
- ✓ Known-malicious package signatures
What it can access
- ● Network access Used
- ✓ Filesystem access No
- ✓ Shell / process execution No
- ✓ Environment & secrets No
- ✓ Dynamic code execution No
From automated source analysis of v0.1.0. “Used” means the capability is present in the source — more access means more to trust, not that it’s unsafe.
Verified badge
Passed review? Show it. Paste this badge into your README, it links to the public security report.
Reliability & compatibility
Declared compatibility
Compatibility is declared by the source manifest. End-to-end runtime verification is coming, see below.
We're building live execution health for every listing: tool-call success rate, median latency, uptime, and last-checked timestamps, measured, not self-reported. It isn't live yet, so we don't show numbers we can't stand behind.
How agent discovery & health will work →About
Go Concurrency
Patterns for safe, efficient concurrent Go code.
Channel Size
Channels should have size zero (unbuffered) or one. Any other size requires justification about what prevents filling under load.
// Wrong: arbitrary buffer
c := make(chan int, 64)
// Correct
c := make(chan int) // unbuffered: synchronous handoff
c := make(chan int, 1) // buffered: allows one pending send
Goroutine Lifetimes
Document when and how goroutines exit. Goroutines blocked on channels will not be garbage collected even if the channel is unreachable.
func (w *Worker) Run(ctx context.Context) error {
for {
select {
case <-ctx.Done():
return ctx.Err()
case job := <-w.jobs:
w.process(job)
}
}
}
Use errgroup for Concurrent Operations
Prefer errgroup.Group over manual sync.WaitGroup for error-returning goroutines.
import "golang.org/x/sync/errgroup"
func processItems(ctx context.Context, items []Item) error {
g, ctx := errgroup.WithContext(ctx)
for _, item := range items {
g.Go(func() error {
return process(ctx, item)
})
}
return g.Wait() // returns first error, cancels others via ctx
}
// With concurrency limit
func processItemsLimited(ctx context.Context, items []Item) error {
g, ctx := errgroup.WithContext(ctx)
g.SetLimit(10) // max 10 concurrent goroutines
for _, item := range items {
g.Go(func() error {
return process(ctx, item)
})
}
return g.Wait()
}
Prefer Synchronous Functions
Synchronous functions are easier to reason about and test. Let callers add concurrency when needed.
// Wrong: forces concurrency on caller
func Fetch(url string) <-chan Result
// Correct: caller can wrap in goroutine if needed
func Fetch(url string) (Result, error)
Zero Value Mutexes
The zero value of sync.Mutex is valid. Do not use pointers to mutexes or embed them in exported structs.
// Wrong
mu := new(sync.Mutex)
// Wrong: exposes Lock/Unlock in API
type SMap struct {
sync.Mutex
data map[string]string
}
// Correct
type SMap struct {
mu sync.Mutex
data map[string]string
}
Atomic Operations (Go 1.19+)
Use the standard library's typed atomics.
import "sync/atomic"
type Counter struct {
value atomic.Int64
}
func (c *Counter) Inc() { c.value.Add(1) }
func (c *Counter) Value() int64 { return c.value.Load() }
// Also available: atomic.Bool, atomic.Pointer[T], atomic.Uint32, etc.
sync.Map Performance (Go 1.24+)
The sync.Map implementation was significantly improved in Go 1.24. Modifications of disjoint sets of keys are much less likely to contend on larger maps, and there is no longer any ramp-up time required to achieve low-contention loads.
Context Cancellation
Always select on ctx.Done() in long-running goroutines to allow clean cancellation.
func longOperation(ctx context.Context) error {
resultCh := make(chan result, 1)
go func() {
// Note: if ctx is canceled, this goroutine still runs to completion
// and sends to the buffered channel (then gets GC'd).
// Pass ctx into the work function if it supports cancellation.
resultCh <- expensiveWork()
}()
select {
case <-ctx.Done():
return ctx.Err()
case r := <-resultCh:
return r.err
}
}
For graceful server shutdown patterns, see references/patterns.md.
Source & license
This open-source skill is cataloged on AgentStack and links to its original source — we do not rehost the code.
- Author: saisudhir14
- Source: saisudhir14/claude-skills
- License: MIT
Install and usage instructions live in the source repository linked above.
Reviews
No reviews yet, be the first.
Write a review
Versions
- v0.1.0 Imported from the upstream source.