skills/golang-testing/SKILL.md
Production-ready Golang tests — table-driven tests, testify suites and mocks, parallel tests, fuzzing, fixtures, goroutine leak detection with goleak, snapshot testing, code coverage, integration tests, idiomatic test naming. Use when writing or reviewing Go tests, choosing a testing approach, setting up Go test CI, or debugging flaky/slow tests. For testify-specific APIs see `samber/cc-skills-golang@golang-stretchr-testify`; for measurement methodology see `samber/cc-skills-golang@golang-benchmark`.
npx skillsauth add samber/cc-skills-golang golang-testingInstall this skill globally with one command. Works with Claude Code, Cursor, and Windsurf.
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Persona: You are a Go engineer who treats tests as executable specifications. You write tests to constrain behavior, not to hit coverage targets.
Thinking mode: Reason as thoroughly as possible for test strategy design and failure analysis — shallow reasoning misses edge cases and produces brittle tests that pass today but break tomorrow. On Claude Code, use ultrathink to trigger extended thinking explicitly.
Orchestration mode: Fan out the three sub-agents described in Audit mode (unit quality and coverage gaps, integration isolation, goroutine/race issues) for auditing a large test suite, and merge their findings into one gap report. On Claude Code, use ultracode to opt into multi-agent orchestration explicitly.
Modes:
gotests to scaffold table-driven tests, then enrich with edge cases and error paths.t.Parallel(), implementation-detail coupling). Launch up to 3 parallel sub-agents split by concern: (1) unit test quality and coverage gaps, (2) integration test isolation and build tags, (3) goroutine leaks and race conditions.Community default. A company skill that explicitly supersedes
samber/cc-skills-golang@golang-testingskill takes precedence.
Dependencies:
go install github.com/cweill/gotests/gotests@latestThis skill guides the creation of production-ready tests for Go applications. Follow these principles to write maintainable, fast, and reliable tests.
name field passed to t.Run//go:build integration) to separate from unit testst.Parallel() when possiblegoleak.VerifyTestMain in TestMain to detect goroutine leaks// package_test.go - tests in same package (white-box, access unexported)
package mypackage
// mypackage_test.go - tests in test package (black-box, public API only)
package mypackage_test
Name the test file after the source file it tests, not after the function or method under test. Go's convention is one test file per source file (foo.go -> foo_test.go), because tools (go test, coverage reports, IDE "jump to test" navigation, gotests) and reviewers all resolve tests by source file, not by symbol. A source file usually declares several functions/methods; splitting its tests by symbol name scatters them across many files and breaks that file-to-file mapping.
// ✓ Good — one test file per source file
helloworld.go -> helloworld_test.go // contains TestHelloWorld, TestAbcd, TestXyz, ...
// ✗ Bad — test file named after the function/method instead of the source file
helloworld.go -> abcd_test.go // wrong: should be helloworld_test.go
Exception: very large source files MAY be split into multiple _test.go files by concern (e.g. foo_test.go + foo_edgecases_test.go), but each split file's name MUST still be derived from the source file name, never from an individual function name. Prefer keeping a single _test.go file per source file even when it grows large — splitting adds navigation overhead and is rarely worth it; reach for the exception only when a single file becomes genuinely unwieldy to browse or review.
Within a test file, order test functions to match the order their tested functions/methods appear in the source file. A reader (human or agent) scrolling foo.go alongside foo_test.go can then find the matching test by position instead of searching; drift between the two orderings compounds every time either file grows.
func TestAdd(t *testing.T) { ... } // function test
func TestMyStruct_MyMethod(t *testing.T) { ... } // method test
func BenchmarkAdd(b *testing.B) { ... } // benchmark
func ExampleAdd() { ... } // example
func FuzzAdd(f *testing.F) { ... } // fuzz test
Table-driven tests are the idiomatic Go way to test multiple scenarios. Always name each test case.
func TestCalculatePrice(t *testing.T) {
tests := []struct {
name string
quantity int
unitPrice float64
expected float64
}{
{
name: "single item",
quantity: 1,
unitPrice: 10.0,
expected: 10.0,
},
{
name: "bulk discount - 100 items",
quantity: 100,
unitPrice: 10.0,
expected: 900.0, // 10% discount
},
{
name: "zero quantity",
quantity: 0,
unitPrice: 10.0,
expected: 0.0,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
got := CalculatePrice(tt.quantity, tt.unitPrice)
if got != tt.expected {
t.Errorf("CalculatePrice(%d, %.2f) = %.2f, want %.2f",
tt.quantity, tt.unitPrice, got, tt.expected)
}
})
}
}
Never create a testify assert/require instance in the parent test function and reuse it inside t.Run closures. assert.New(t) captures the exact *testing.T it was built with, so if that t belongs to the parent, every failure raised inside the subtest gets attributed to the parent test in go test output — the failing subtest itself still reports --- PASS, silently hiding which case broke. This happens whether or not the subtest calls t.Parallel().
// WRONG -- `is` is bound to the parent's t
func TestCalculatePrice(t *testing.T) {
is := assert.New(t)
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
is.Equal(tt.expected, CalculatePrice(tt.quantity, tt.unitPrice)) // misattributed on failure
})
}
}
// RIGHT -- each subtest builds its own instance from its own t
func TestCalculatePrice(t *testing.T) {
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
is := assert.New(t)
is.Equal(tt.expected, CalculatePrice(tt.quantity, tt.unitPrice))
})
}
}
Verify with a deliberately-broken case: if go test -v -run TestName shows --- FAIL: TestName but every --- PASS: TestName/subtest_name line still says PASS, the assert scope is leaking.
Unit tests should be fast (< 1ms), isolated (no external dependencies), and deterministic.
Use httptest for handler tests with table-driven patterns. See HTTP Testing for examples with request/response bodies, query parameters, headers, and status code assertions.
Use go.uber.org/goleak to detect leaking goroutines, especially for concurrent code:
import (
"testing"
"go.uber.org/goleak"
)
func TestMain(m *testing.M) {
goleak.VerifyTestMain(m)
}
To exclude specific goroutine stacks (for known leaks or library goroutines):
func TestMain(m *testing.M) {
goleak.VerifyTestMain(m,
goleak.IgnoreCurrent(),
)
}
Or per-test:
func TestWorkerPool(t *testing.T) {
defer goleak.VerifyNone(t)
// ... test code ...
}
testing/synctest (Go 1.25+) provides deterministic tests for goroutines, timers, deadlines, and context cancellation. Time advances only when all goroutines are blocked, making ordering predictable.
When to use synctest instead of real time:
import (
"context"
"testing"
"testing/synctest"
"time"
)
func TestContextTimeout(t *testing.T) {
synctest.Test(t, func(t *testing.T) {
const timeout = 5 * time.Second
ctx, cancel := context.WithTimeout(t.Context(), timeout)
defer cancel()
time.Sleep(timeout - time.Nanosecond)
synctest.Wait()
if err := ctx.Err(); err != nil {
t.Fatalf("before timeout: %v", err)
}
time.Sleep(time.Nanosecond)
synctest.Wait()
if err := ctx.Err(); err != context.DeadlineExceeded {
t.Fatalf("after timeout: got %v, want DeadlineExceeded", err)
}
})
}
Use synctest.Test in Go 1.25+ and later. Do not use the old Go 1.24 experimental synctest.Run API in Go 1.25+ code. If a module explicitly targets Go 1.24 and opts into GOEXPERIMENT=synctest, use the old API only as a compatibility fallback.
Key differences in synctest:
time.Sleep advances synthetic time instantly when the goroutine blockstime.After fires when synthetic time reaches the durationsynctest.Sleep(d) as a direct helper to advance the bubble's fake clock, equivalent to time.Sleep(d) followed by synctest.Wait() but without needing a real goroutine to block onGo 1.27+ also adds httptest.NewTestServer(), an in-memory fake-network variant of httptest.NewServer that composes with synctest — no real socket, so server tests can run inside a synctest.Test bubble instead of needing httptest.NewServer plus real timers.
For tests that may hang, use a timeout helper that panics with caller location. See Helpers.
Write benchmarks as sub-benchmarks (b.Run per variant) so each variant gets its own name in the output — that name is what comparison tooling diffs. For Go 1.24+, use b.Loop() rather than a b.N loop.
→ See Benchmarks in a Test Suite for the code shape and size-parameterized examples.
→ See samber/cc-skills-golang@golang-benchmark skill for measurement methodology: benchstat, profiling from benchmarks, and CI regression detection.
When a test, benchmark, or fuzz target needs to persist files for inspection, use ArtifactDir() instead of ad-hoc paths or repo-local output.
func TestRenderGoldenArtifact(t *testing.T) {
dir := t.ArtifactDir()
out := filepath.Join(dir, "rendered.json")
if err := os.WriteFile(out, renderedBytes, 0o644); err != nil {
t.Fatal(err)
}
t.Logf("artifact written: %s", out)
}
Available on *testing.T, *testing.B, and *testing.F in Go 1.26+.
stdversion runs automaticallygo test now invokes the stdversion vet check by default, flagging any use of an API newer than the module's go directive. A CI failure from this check means either the go directive needs bumping or the code needs to stop using the newer API — it is not a check to silence.
Use t.Parallel() to run tests concurrently:
func TestParallelOperations(t *testing.T) {
tests := []struct {
name string
data []byte
}{
{"small data", make([]byte, 1024)},
{"medium data", make([]byte, 1024*1024)},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
t.Parallel()
is := assert.New(t)
result := Process(tt.data)
is.NotNil(result)
})
}
}
Use fuzzing to find edge cases and bugs:
func FuzzReverse(f *testing.F) {
f.Add("hello")
f.Add("")
f.Add("a")
f.Fuzz(func(t *testing.T, input string) {
reversed := Reverse(input)
doubleReversed := Reverse(reversed)
if input != doubleReversed {
t.Errorf("Reverse(Reverse(%q)) = %q, want %q", input, doubleReversed, input)
}
})
}
ExampleXxx functions are executable documentation: go test compares their stdout to the // Output: comment, so a drifting example fails the build instead of misleading readers.
→ See Examples as Documentation for naming rules, Unordered output, and placement.
Generate a profile with go test -coverprofile=coverage.out ./..., then read the uncovered lines with go tool cover -html=coverage.out. Coverage locates untested paths; it does not measure assertion quality, so treat a percentage as a gap finder rather than a target.
→ See Code Coverage for coverage modes, -coverpkg, and reporting pitfalls.
Use build tags to separate integration tests from unit tests:
//go:build integration
package mypackage
func TestDatabaseIntegration(t *testing.T) {
db, err := sql.Open("postgres", os.Getenv("DATABASE_URL"))
if err != nil {
t.Fatal(err)
}
defer db.Close()
// Test real database operations
}
Run integration tests separately:
go test -tags=integration ./...
For Docker Compose fixtures, SQL schemas, and integration test suites, see Integration Testing.
Mock interfaces, not concrete types. Define interfaces where consumed, then create mock implementations.
For mock patterns, test fixtures, and time mocking, see Mocking.
Many test best practices are enforced automatically by linters: thelper, paralleltest, testifylint. See the samber/cc-skills-golang@golang-lint skill for configuration and usage.
samber/cc-skills-golang@golang-stretchr-testify skill for detailed testify API (assert, require, mock, suite)samber/cc-skills-golang@golang-database skill (testing.md) for database integration test patternssamber/cc-skills-golang@golang-concurrency skill for goroutine leak detection with goleaksamber/cc-skills-golang@golang-continuous-integration skill for CI test configuration and GitHub Actions workflowssamber/cc-skills-golang@golang-lint skill for testifylint and paralleltest configurationsamber/cc-skills-golang@golang-continuous-integration skill for automated AI-driven code review in CI using these guidelinesgo test ./... # all tests
go test -run TestName ./... # specific test by exact name
go test -run TestName/subtest ./... # subtests within a test
go test -run 'Test(Add|Sub)' ./... # multiple tests (regexp OR)
go test -run 'Test[A-Z]' ./... # tests starting with capital letter
go test -run 'TestUser.*' ./... # tests matching prefix
go test -run '.*Validation.*' ./... # tests containing substring
go test -run TestName/. ./... # all subtests of TestName
go test -run '/(unit|integration)' ./... # filter by subtest name
go test -race ./... # race detection
go test -cover ./... # coverage summary
go test -bench=. -benchmem ./... # benchmarks
go test -fuzz=FuzzName ./... # fuzzing
go test -tags=integration ./... # integration tests
development
Golang refactoring — safe, at-scale restructuring of existing Go code: a coverage-adaptive safety net, behavior-preserving transforms (gopls Rename/Extract, `gofmt -r`, `gopatch`), the Fowler catalog mapped to Go, breaking import cycles, and small stacked PRs. Apply when a function or type has grown too large, a code smell blocks a feature, or the user asks to refactor Go code — also for renaming at scale, extracting functions or interfaces, moving code between packages, or planning a multi-step refactor. Target styles owned elsewhere → See `samber/cc-skills-golang@golang-naming` (renames), `samber/cc-skills-golang@golang-project-layout` (splits), `samber/cc-skills-golang@golang-modernize` (idioms), `samber/cc-skills-golang@golang-code-style` (control flow), `samber/cc-skills-golang@golang-design-patterns` (patterns/DI).
tools
Golang semantic code intelligence via `gopls`, the official Go language server — go-to-definition, find references, call/implementation hierarchy, workspace symbol search, package API discovery, diagnostics, safe rename, refactors (extract/inline/fill/rewrite code actions), formatting, and generated tests. Reaches an agent via gopls's own MCP server (`go_*` tools), Claude Code's native `LSP` tool, or the `gopls` CLI. Use when navigating or refactoring Go code — jumping to a definition, finding call sites before a rename, understanding a file's or package's dependencies, running diagnostics after an edit, or extracting/inlining/renaming. Not for the published ecosystem — packages not in your `go.mod`, versions, licenses, importers — → See `samber/cc-skills-golang@golang-pkg-go-dev` skill (`godig`). Not for a whole-tree vulnerability audit → See `samber/cc-skills-golang@golang-security` skill (`govulncheck`).
tools
Golang package and module lookup via `godig`, a pkg.go.dev API client (CLI + MCP server). Use for any Go/Golang library's documentation, API signatures, symbols, usage examples, which versions exist, licenses, whether a dependency has CVEs, or who imports a package — prefer this over Context7 for any Go package or module. Read-only, no auth. Not for upgrading dependencies (→ See `samber/cc-skills-golang@golang-dependency-management` skill), choosing a library (→ See `samber/cc-skills-golang@golang-popular-libraries` skill), or local symbols and an already-used dependency's resolved source, call sites, and generic instantiations (→ See `samber/cc-skills-golang@golang-gopls` skill).
development
Golang skills orchestrator — always active on any Golang coding, review, debug, or setup task. Reads the task context and loads the most relevant skills from samber/cc-skills-golang, often multiple at once: writing a gRPC service loads golang-grpc + golang-testing + golang-error-handling; debugging a panic loads golang-troubleshooting + golang-safety; auditing security loads golang-security + golang-lint + golang-safety. Also: disambiguates competing clusters when two skills seem to overlap (performance vs benchmark vs troubleshooting, samber/lo vs mo vs ro, DI cluster, safety vs security), and configures the project's agent-config file (CLAUDE.md, AGENTS.md, GEMINI.md, Cursor rules, or Copilot instructions) to force-trigger skills in a project (/golang-how-to configure).