docs/tr/skills/rust-testing/SKILL.md
Rust testing patterns including unit tests, integration tests, async testing, property-based testing, mocking, and coverage. Follows TDD methodology.
npx skillsauth add affaan-m/everything-claude-code rust-testingInstall this skill globally with one command. Works with Claude Code, Cursor, and Windsurf.
3 of 9 scanners reported clean
Some scanners were skipped, did not run, or reported a non-clean status. Review each row below.
TDD metodolojisini takip ederek güvenilir, bakım yapılabilir testler yazmak için kapsamlı Rust test desenleri.
#[cfg(test)] modülünde #[test] kullan, parametreli testler için rstest veya property-based testler için proptestRED → Önce başarısız bir test yaz
GREEN → Testi geçmek için minimal kod yaz
REFACTOR → Testleri yeşil tutarken kodu iyileştir
REPEAT → Bir sonraki gereksinimle devam et
// RED: Önce testi yaz, yer tutucu olarak todo!() kullan
pub fn add(a: i32, b: i32) -> i32 { todo!() }
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_add() { assert_eq!(add(2, 3), 5); }
}
// cargo test → 'not yet implemented'da panic
// GREEN: todo!()'yu minimal implementasyonla değiştir
pub fn add(a: i32, b: i32) -> i32 { a + b }
// cargo test → GEÇTİ, sonra testleri yeşil tutarken REFACTOR
// src/user.rs
pub struct User {
pub name: String,
pub email: String,
}
impl User {
pub fn new(name: impl Into<String>, email: impl Into<String>) -> Result<Self, String> {
let email = email.into();
if !email.contains('@') {
return Err(format!("invalid email: {email}"));
}
Ok(Self { name: name.into(), email })
}
pub fn display_name(&self) -> &str {
&self.name
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn creates_user_with_valid_email() {
let user = User::new("Alice", "[email protected]").unwrap();
assert_eq!(user.display_name(), "Alice");
assert_eq!(user.email, "[email protected]");
}
#[test]
fn rejects_invalid_email() {
let result = User::new("Bob", "not-an-email");
assert!(result.is_err());
assert!(result.unwrap_err().contains("invalid email"));
}
}
assert_eq!(2 + 2, 4); // Eşitlik
assert_ne!(2 + 2, 5); // Eşitsizlik
assert!(vec![1, 2, 3].contains(&2)); // Boolean
assert_eq!(value, 42, "expected 42 but got {value}"); // Özel mesaj
assert!((0.1_f64 + 0.2 - 0.3).abs() < f64::EPSILON); // Float karşılaştırma
Result Dönüşlerini Test Etme#[test]
fn parse_returns_error_for_invalid_input() {
let result = parse_config("}{invalid");
assert!(result.is_err());
// Spesifik hata varyantını doğrula
let err = result.unwrap_err();
assert!(matches!(err, ConfigError::ParseError(_)));
}
#[test]
fn parse_succeeds_for_valid_input() -> Result<(), Box<dyn std::error::Error>> {
let config = parse_config(r#"{"port": 8080}"#)?;
assert_eq!(config.port, 8080);
Ok(()) // Herhangi bir ? Err döndürürse test başarısız olur
}
#[test]
#[should_panic]
fn panics_on_empty_input() {
process(&[]);
}
#[test]
#[should_panic(expected = "index out of bounds")]
fn panics_with_specific_message() {
let v: Vec<i32> = vec![];
let _ = v[0];
}
my_crate/
├── src/
│ └── lib.rs
├── tests/ # Entegrasyon testleri
│ ├── api_test.rs # Her dosya ayrı bir test binary'si
│ ├── db_test.rs
│ └── common/ # Paylaşılan test yardımcıları
│ └── mod.rs
// tests/api_test.rs
use my_crate::{App, Config};
#[test]
fn full_request_lifecycle() {
let config = Config::test_default();
let app = App::new(config);
let response = app.handle_request("/health");
assert_eq!(response.status, 200);
assert_eq!(response.body, "OK");
}
#[tokio::test]
async fn fetches_data_successfully() {
let client = TestClient::new().await;
let result = client.get("/data").await;
assert!(result.is_ok());
assert_eq!(result.unwrap().items.len(), 3);
}
#[tokio::test]
async fn handles_timeout() {
use std::time::Duration;
let result = tokio::time::timeout(
Duration::from_millis(100),
slow_operation(),
).await;
assert!(result.is_err(), "should have timed out");
}
rstest ile Parametreli Testleruse rstest::{rstest, fixture};
#[rstest]
#[case("hello", 5)]
#[case("", 0)]
#[case("rust", 4)]
fn test_string_length(#[case] input: &str, #[case] expected: usize) {
assert_eq!(input.len(), expected);
}
// Fixture'lar
#[fixture]
fn test_db() -> TestDb {
TestDb::new_in_memory()
}
#[rstest]
fn test_insert(test_db: TestDb) {
test_db.insert("key", "value");
assert_eq!(test_db.get("key"), Some("value".into()));
}
#[cfg(test)]
mod tests {
use super::*;
/// Mantıklı varsayılanlarla test kullanıcısı oluşturur.
fn make_user(name: &str) -> User {
User::new(name, &format!("{name}@test.com")).unwrap()
}
#[test]
fn user_display() {
let user = make_user("alice");
assert_eq!(user.display_name(), "alice");
}
}
proptest ile Property-Based Testinguse proptest::prelude::*;
proptest! {
#[test]
fn encode_decode_roundtrip(input in ".*") {
let encoded = encode(&input);
let decoded = decode(&encoded).unwrap();
assert_eq!(input, decoded);
}
#[test]
fn sort_preserves_length(mut vec in prop::collection::vec(any::<i32>(), 0..100)) {
let original_len = vec.len();
vec.sort();
assert_eq!(vec.len(), original_len);
}
#[test]
fn sort_produces_ordered_output(mut vec in prop::collection::vec(any::<i32>(), 0..100)) {
vec.sort();
for window in vec.windows(2) {
assert!(window[0] <= window[1]);
}
}
}
use proptest::prelude::*;
fn valid_email() -> impl Strategy<Value = String> {
("[a-z]{1,10}", "[a-z]{1,5}")
.prop_map(|(user, domain)| format!("{user}@{domain}.com"))
}
proptest! {
#[test]
fn accepts_valid_emails(email in valid_email()) {
assert!(User::new("Test", &email).is_ok());
}
}
mockall ile Mock'lamause mockall::{automock, predicate::eq};
#[automock]
trait UserRepository {
fn find_by_id(&self, id: u64) -> Option<User>;
fn save(&self, user: &User) -> Result<(), StorageError>;
}
#[test]
fn service_returns_user_when_found() {
let mut mock = MockUserRepository::new();
mock.expect_find_by_id()
.with(eq(42))
.times(1)
.returning(|_| Some(User { id: 42, name: "Alice".into() }));
let service = UserService::new(Box::new(mock));
let user = service.get_user(42).unwrap();
assert_eq!(user.name, "Alice");
}
#[test]
fn service_returns_none_when_not_found() {
let mut mock = MockUserRepository::new();
mock.expect_find_by_id()
.returning(|_| None);
let service = UserService::new(Box::new(mock));
assert!(service.get_user(99).is_none());
}
/// İki sayıyı toplar.
///
/// # Examples
///
/// ```
/// use my_crate::add;
///
/// assert_eq!(add(2, 3), 5);
/// assert_eq!(add(-1, 1), 0);
/// ```
pub fn add(a: i32, b: i32) -> i32 {
a + b
}
/// Bir config string'i parse eder.
///
/// # Errors
///
/// Girdi geçerli TOML değilse `Err` döner.
///
/// ```no_run
/// use my_crate::parse_config;
///
/// let config = parse_config(r#"port = 8080"#).unwrap();
/// assert_eq!(config.port, 8080);
/// ```
///
/// ```no_run
/// use my_crate::parse_config;
///
/// assert!(parse_config("}{invalid").is_err());
/// ```
pub fn parse_config(input: &str) -> Result<Config, ParseError> {
todo!()
}
# Cargo.toml
[dev-dependencies]
criterion = { version = "0.5", features = ["html_reports"] }
[[bench]]
name = "benchmark"
harness = false
// benches/benchmark.rs
use criterion::{black_box, criterion_group, criterion_main, Criterion};
fn fibonacci(n: u64) -> u64 {
match n {
0 | 1 => n,
_ => fibonacci(n - 1) + fibonacci(n - 2),
}
}
fn bench_fibonacci(c: &mut Criterion) {
c.bench_function("fib 20", |b| b.iter(|| fibonacci(black_box(20))));
}
criterion_group!(benches, bench_fibonacci);
criterion_main!(benches);
# Kurulum: cargo install cargo-llvm-cov (veya CI'da taiki-e/install-action kullan)
cargo llvm-cov # Özet
cargo llvm-cov --html # HTML raporu
cargo llvm-cov --lcov > lcov.info # CI için LCOV formatı
cargo llvm-cov --fail-under-lines 80 # Eşiğin altındaysa başarısız yap
| Kod Tipi | Hedef | |----------|-------| | Kritik iş mantığı | 100% | | Public API | 90%+ | | Genel kod | 80%+ | | Oluşturulmuş / FFI binding'leri | Hariç tut |
cargo test # Tüm testleri çalıştır
cargo test -- --nocapture # println çıktısını göster
cargo test test_name # Desene uyan testleri çalıştır
cargo test --lib # Sadece unit testler
cargo test --test api_test # Sadece entegrasyon testleri
cargo test --doc # Sadece doc testleri
cargo test --no-fail-fast # İlk başarısızlıkta durma
cargo test -- --ignored # Yok sayılan testleri çalıştır
YAPIN:
#[cfg(test)] modülleri kullanınassert! yerine assert_eq! tercih edinResult döndüren testlerde ? kullanınYAPMAYIN:
Result::is_err() test edebiliyorsanız #[should_panic] kullanmayınsleep() kullanmayın — channel'lar, barrier'lar veya tokio::time::pause() kullanın# GitHub Actions
test:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
- uses: dtolnay/rust-toolchain@stable
with:
components: clippy, rustfmt
- name: Check formatting
run: cargo fmt --check
- name: Clippy
run: cargo clippy -- -D warnings
- name: Run tests
run: cargo test
- uses: taiki-e/install-action@cargo-llvm-cov
- name: Coverage
run: cargo llvm-cov --fail-under-lines 80
Unutmayın: Testler dokümantasyondur. Kodunuzun nasıl kullanılması gerektiğini gösterirler. Onları net yazın ve güncel tutun.
development
Share durable, inspectable context and handoffs between Claude, Codex, Hermes, Cursor, OpenCode, and other agents through the local ECC Memory Vault. Use when an agent must save work state, transfer context, resume another agent's task, or search shared project knowledge.
development
Use when multiple consumers and providers must evolve an API or event schema without field drift, integration surprises, or one side silently redefining the interface.
tools
Query live GPU inventory, submit an authenticated Itô fixed-rate RFQ, inspect RFQ or procurement status, and run explicitly gated node qualification through the separately installed canonical CLI. Use when a user asks to find H100/H200 capacity, request a fixed compute rate, check Itô compute status, or validate GPU nodes.
data-ai
Instinct-based learning system that observes sessions via hooks, creates atomic instincts with confidence scoring, and evolves them into skills/commands/agents. v2.1 adds project-scoped instincts to prevent cross-project contamination.