بنقرة واحدة
typescript-best-practices
Use when reading or writing TypeScript or JavaScript files (.ts, .tsx, .js, tsconfig.json).
التثبيت باستخدام Codex أو Claude انسخ هذا Prompt والصقه في Codex أو Claude أو مساعد آخر ليراجع صفحة Skill ويثبّتها لك.
القائمة
Use when reading or writing TypeScript or JavaScript files (.ts, .tsx, .js, tsconfig.json).
التثبيت باستخدام Codex أو Claude انسخ هذا Prompt والصقه في Codex أو Claude أو مساعد آخر ليراجع صفحة Skill ويثبّتها لك.
استنادا إلى تصنيف SOC المهني
Use when creating, reviewing, or updating a BRIEF.md (the quality law for a surface), defining what "good"/shippable means, or setting up a verified autonomous loop.
Use when checking deployment health, investigating errors, reading logs, or working with Tiltfiles. Queries Tilt resource status, logs, and manages dev environments.
Use when starting tilt, debugging Tiltfile errors, or bootstrapping a dev environment. Starts Tilt in zmx, monitors bootstrap to healthy state, fixes Tiltfile bugs without hard-coding or fallbacks.
Use when creating commits, managing branches, opening PRs, or rewriting history. Not for non-git implementation tasks or repo-specific release policy decisions.
Use when syncing a feature branch onto the latest origin base branch via git rebase.
Fetch latest from origin, prune remote-tracking refs, delete stale local branches and worktrees, and fast-forward important branches. Use when tidying up a worktree-based repo layout.
| name | typescript-best-practices |
| description | Use when reading or writing TypeScript or JavaScript files (.ts, .tsx, .js, tsconfig.json). |
Follows type-first, functional, and error handling patterns from CLAUDE.md. This skill covers language-specific idioms only.
When working with React components (.tsx, .jsx files or @react imports), always load react-best-practices alongside this skill. This skill covers TypeScript fundamentals; React-specific patterns (effects, hooks, refs, component design) are in the dedicated React skill.
Use the type system to prevent invalid states at compile time.
Discriminated unions for mutually exclusive states:
// Good: only valid combinations possible
type RequestState<T> =
| { status: 'idle' }
| { status: 'loading' }
| { status: 'success'; data: T }
| { status: 'error'; error: Error };
// Bad: allows invalid combinations like { loading: true, error: Error }
type RequestState<T> = {
loading: boolean;
data?: T;
error?: Error;
};
Branded types for domain primitives:
type UserId = string & { readonly __brand: 'UserId' };
type OrderId = string & { readonly __brand: 'OrderId' };
// Compiler prevents passing OrderId where UserId expected
function getUser(id: UserId): Promise<User> { /* ... */ }
Const assertions for literal unions:
const ROLES = ['admin', 'user', 'guest'] as const;
type Role = typeof ROLES[number]; // 'admin' | 'user' | 'guest'
// Array and type stay in sync automatically
function isValidRole(role: string): role is Role {
return ROLES.includes(role as Role);
}
Exhaustive switch with never check:
type Status = "active" | "inactive";
function processStatus(status: Status): string {
switch (status) {
case "active":
return "processing";
case "inactive":
return "skipped";
default: {
const _exhaustive: never = status;
throw new Error(`unhandled status: ${_exhaustive}`);
}
}
}
z.infer<>. Avoid duplicating types and schemas.safeParse for user input where failure is expected; use parse at trust boundaries where invalid data is a bug..extend(), .pick(), .omit(), .merge() for DRY definitions..transform() for data normalization at parse time (trim strings, parse dates).import { z } from "zod";
const UserSchema = z.object({
id: z.string().uuid(),
email: z.string().email(),
name: z.string().min(1),
createdAt: z.string().transform((s) => new Date(s)),
});
type User = z.infer<typeof UserSchema>;
// Strict parsing at trust boundaries — throws if API contract violated
export async function fetchUser(id: string): Promise<User> {
const response = await fetch(`/api/users/${id}`);
if (!response.ok) {
throw new Error(`fetch user ${id} failed: ${response.status}`);
}
return UserSchema.parse(await response.json());
}
// Caller handles both success and error from user input
const result = UserSchema.safeParse(formData);
if (!result.success) {
setErrors(result.error.flatten().fieldErrors);
return;
}
For advanced type utilities beyond TypeScript builtins, consider type-fest:
Opaque<T, Token> - cleaner branded types than manual & { __brand } patternPartialDeep<T> - recursive partial for nested objectsReadonlyDeep<T> - recursive readonly for immutable dataSetRequired<T, K> / SetOptional<T, K> - targeted field modificationsSimplify<T> - flatten complex intersection types in IDE tooltipsimport type { Opaque, PartialDeep } from 'type-fest';
type UserId = Opaque<string, 'UserId'>;
type UserPatch = PartialDeep<User>;