
TypeScript Pro
FreeMaster advanced TypeScript type systems for robust applications.
Free · Opens the source repo
What TypeScript Pro does
TypeScript Pro is designed for developers looking to leverage the full power of TypeScript's advanced type system. This skill provides a comprehensive workflow that emphasizes type safety and performance optimization in TypeScript applications. By following the outlined core workflow, users can analyze their type architecture, design type-first APIs, implement type safety features, and optimize their build processes. This structured approach ensures that developers can create reliable and maintainable codebases, especially in complex applications or monorepo setups.
The skill includes detailed reference guides on various advanced TypeScript topics, such as generics, conditional types, and utility types. Users can access specific guidance on creating branded types, which help in domain modeling by preventing accidental type mix-ups. Additionally, the skill covers type guards and discriminated unions, enabling developers to create robust state management solutions. With examples provided for each concept, developers can quickly understand and implement these advanced features in their projects.
TypeScript Pro is particularly beneficial for teams building full-stack applications with tRPC, ensuring end-to-end type safety. The skill encourages best practices, such as enabling strict mode in TypeScript, using type-first API design, and generating declaration files. By adhering to these guidelines, developers can improve type inference and maintain high standards of code quality throughout their projects. This skill is an essential tool for any TypeScript developer aiming to enhance their expertise and build more reliable applications.
When to use it
Use TypeScript Pro when developing complex TypeScript applications that require advanced generics, type guards, or full-stack type safety with tRPC.
When not to use it
This skill may not be suitable for simple projects or for developers who are not yet familiar with TypeScript's advanced features.
What you can build with it
Building a Full-Stack Application
Utilize TypeScript Pro to ensure type safety across your front-end and back-end code when using tRPC.
Creating a Complex State Management System
Implement discriminated unions and type guards to manage different states in your application effectively.
Optimizing TypeScript Configuration
Use the recommended tsconfig settings to enhance build performance and type checking in your TypeScript projects.
How to install TypeScript Pro
View source1. Install with the skills CLI
npx skills add jeffallan/claude-skills/typescript-pro --agent claude-code2. Or install it manually
Download the skill folder and drop it into ~/.claude/skills/ for all projects, or .claude/skills/ to scope it to one repo. Restart Claude Code so it picks up the new skill.
Anthropic's agentic coding CLI, and the reference implementation of Agent Skills. Drop a skill folder into ~/.claude/skills and Claude Code loads it automatically whenever a task matches the skill's description. Claude Code docs
Inside SKILL.md
Written by jeffallanTypeScript Pro
Core Workflow
- Analyze type architecture - Review tsconfig, type coverage, build performance
- Design type-first APIs - Create branded types, generics, utility types
- Implement with type safety - Write type guards, discriminated unions, conditional types; run
tsc --noEmitto catch type errors before proceeding - Optimize build - Configure project references, incremental compilation, tree shaking; re-run
tsc --noEmitto confirm zero errors after changes - Test types - Confirm type coverage with a tool like
type-coverage; validate that all public APIs have explicit return types; iterate on steps 3–4 until all checks pass
Reference Guide
Load detailed guidance based on context:
| Topic | Reference | Load When |
|---|---|---|
| Advanced Types | references/advanced-types.md | Generics, conditional types, mapped types, template literals |
| Type Guards | references/type-guards.md | Type narrowing, discriminated unions, assertion functions |
| Utility Types | references/utility-types.md | Partial, Pick, Omit, Record, custom utilities |
| Configuration | references/configuration.md | tsconfig options, strict mode, project references |
| Patterns | references/patterns.md | Builder pattern, factory pattern, type-safe APIs |
Code Examples
Branded Types
// Branded type for domain modeling
type Brand<T, B extends string> = T & { readonly __brand: B };
type UserId = Brand<string, "UserId">;
type OrderId = Brand<number, "OrderId">;
const toUserId = (id: string): UserId => id as UserId;
const toOrderId = (id: number): OrderId => id as OrderId;
// Usage — prevents accidental id mix-ups at compile time
function getOrder(userId: UserId, orderId: OrderId) { /* ... */ }
Discriminated Unions & Type Guards
type LoadingState = { status: "loading" };
type SuccessState = { status: "success"; data: string[] };
type ErrorState = { status: "error"; error: Error };
type RequestState = LoadingState | SuccessState | ErrorState;
// Type predicate guard
function isSuccess(state: RequestState): state is SuccessState {
return state.status === "success";
}
// Exhaustive switch with discriminated union
function renderState(state: RequestState): string {
switch (state.status) {
case "loading": return "Loading…";
case "success": return state.data.join(", ");
case "error": return state.error.message;
default: {
const _exhaustive: never = state;
throw new Error(`Unhandled state: ${_exhaustive}`);
}
}
}
Custom Utility Types
// Deep readonly — immutable nested objects
type DeepReadonly<T> = {
readonly [K in keyof T]: T[K] extends object ? DeepReadonly<T[K]> : T[K];
};
// Require exactly one of a set of keys
type RequireExactlyOne<T, Keys extends keyof T = keyof T> =
Pick<T, Exclude<keyof T, Keys>> &
{ [K in Keys]-?: Required<Pick<T, K>> & Partial<Record<Exclude<Keys, K>, never>> }[Keys];
Recommended tsconfig.json
{
"compilerOptions": {
"target": "ES2022",
"module": "NodeNext",
"moduleResolution": "NodeNext",
"strict": true,
"noUncheckedIndexedAccess": true,
"noImplicitOverride": true,
"exactOptionalPropertyTypes": true,
"isolatedModules": true,
"declaration": true,
"declarationMap": true,
"incremental": true,
"skipLibCheck": false
}
}
Constraints
MUST DO
- Enable strict mode with all compiler flags
- Use type-first API design
- Implement branded types for domain modeling
- Use
satisfiesoperator for type validation - Create discriminated unions for state machines
- Use
Annotatedpattern with type predicates - Generate declaration files for libraries
- Optimize for type inference
MUST NOT DO
- Use explicit
anywithout justification - Skip type coverage for public APIs
- Mix type-only and value imports
- Disable strict null checks
- Use
asassertions without necessity - Ignore compiler performance warnings
- Skip declaration file generation
- Use enums (prefer const objects with
as const)
Output Templates
When implementing TypeScript features, provide:
- Type definitions (interfaces, types, generics)
- Implementation with type guards
- tsconfig configuration if needed
- Brief explanation of type design decisions
Knowledge Reference
TypeScript 5.0+, generics, conditional types, mapped types, template literal types, discriminated unions, type guards, branded types, tRPC, project references, incremental compilation, declaration files, const assertions, satisfies operator
Frequently asked questions about TypeScript Pro
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