typescript-expert

v2026.09.24

Resolves TypeScript and JavaScript problems across type-level programming, performance, monorepo management, migration, and modern tooling. Invoke when diagnosing "type instantiation excessively deep" errors, migrating JS to TS, configuring strict tsconfig, debugging module resolution, or choosing between Biome/ESLint/Turborepo/Nx.

GitHub
安装命令
npx skhub add shipshitdev/typescript-expert
Markdown
SKILL.md

TypeScript Expert

When invoked

  1. Analyze project setup comprehensively:

    Prefer built-in file-reading and search capabilities for performance. Shell commands are fallbacks.

    # Core versions and configuration
    bunx tsc --version
    node -v
    # Detect tooling ecosystem (prefer parsing package.json)
    node -e "const p=require('./package.json');console.log(Object.keys({...p.devDependencies,...p.dependencies}||{}).join('\n'))" 2>/dev/null | grep -E 'biome|eslint|prettier|vitest|jest|turborepo|nx' || echo "No tooling detected"
    # Check for monorepo (fixed precedence)
    (test -f pnpm-workspace.yaml || test -f lerna.json || test -f nx.json || test -f turbo.json) && echo "Monorepo detected"
    

    After detection, adapt approach:

    • Match import style (absolute vs relative)
    • Respect existing baseUrl/paths configuration
    • Prefer existing project scripts over raw tools
    • In monorepos, consider project references before broad tsconfig changes
  2. Identify the specific problem category and complexity level

  3. Apply the appropriate solution strategy from the expertise below

  4. Validate thoroughly:

    # Fast fail approach (avoid long-lived processes)
    bun run typecheck || bunx tsc --noEmit
    bun run test || bunx vitest run --reporter=basic --no-watch
    # Only if needed and build affects outputs/config
    bun run build
    

    Safety note: Avoid watch/serve processes in validation. Use one-shot diagnostics only.

Advanced Type System Expertise

Type-Level Programming Patterns

Branded Types for Domain Modeling — nominal types (type UserId = Brand<string, 'UserId'>) prevent accidentally mixing domain primitives that share a base type. Use for critical domain primitives, API boundaries, currency/units. See references/typescript-cheatsheet.md (§ Branded Types) for the full pattern. Resource: https://egghead.io/blog/using-branded-types-in-typescript

Advanced Conditional Types — recursive type manipulation (e.g. DeepReadonly<T>) and template-literal event-source APIs. Use for library APIs, type-safe event systems, compile-time validation. Watch for type instantiation depth errors (limit recursion to 10 levels). See references/typescript-cheatsheet.md (§ Conditional Types, § Mapped Types, § Template Literal Types).

Type Inference Techniques — use satisfies (TS 5.0+) for constraint validation while preserving literal types; use as const assertions for maximum inference on literal arrays/objects. See references/typescript-cheatsheet.md (§ Best Practices).

Performance Optimization Strategies

Type Checking Performance

bunx tsc --extendedDiagnostics --incremental false | grep -E "Check time|Files:|Lines:|Nodes:"

Common fixes for "Type instantiation is excessively deep": replace type intersections with interfaces, split large union types (>100 members), avoid circular generic constraints, use type aliases to break recursion.

Build Performance Patterns

  • Enable skipLibCheck: true for library type checking only (often significantly improves performance on large projects, but avoid masking app typing issues)
  • Use incremental: true with .tsbuildinfo cache
  • Configure include/exclude precisely
  • For monorepos: Use project references with composite: true

Real-World Problem Resolution

Complex Error Patterns

"The inferred type of X cannot be named"

Missing type declarations — add an ambient .d.ts module declaration for untyped packages. See references/typescript-cheatsheet.md (§ Module Declarations). For more detail: Declaration Files Guide

"Excessive stack depth comparing types"

  • Cause: Circular or deeply recursive types
  • Fix priority: limit recursion depth with conditional types; use interface extends instead of type intersection; simplify generic constraints
// Bad: Infinite recursion
type InfiniteArray<T> = T | InfiniteArray<T>[];

// Good: Limited recursion
type NestedArray<T, D extends number = 5> =
  D extends 0 ? T : T | NestedArray<T, [-1, 0, 1, 2, 3, 4][D]>[];

Module Resolution Mysteries — "Cannot find module" despite the file existing:

  1. Check moduleResolution matches your bundler
  2. Verify baseUrl and paths alignment
  3. For monorepos: Ensure workspace protocol (workspace:*)
  4. Try clearing cache: rm -rf node_modules/.cache .tsbuildinfo

Path Mapping at Runtime — TypeScript paths only work at compile time, not runtime:

  • ts-node: use ts-node -r tsconfig-paths/register
  • Node ESM: use loader alternatives or avoid TS paths at runtime
  • Production: pre-compile with resolved paths

Migration Expertise

JavaScript to TypeScript Migration — incremental strategy: enable allowJs/checkJs in the existing tsconfig, rename files gradually (.js → .ts), add types file by file, enable strict mode features one by one. See references/full-guide.md (§ Migration Playbook) for the full command sequence and optional automated helpers (ts-migrate, typesync).

Tool Migration Decisions

FromToWhenMigration Effort
ESLint + PrettierBiomeNeed much faster speed, okay with fewer rulesLow (1 day)
TSC for lintingType-check onlyHave 100+ files, need faster feedbackMedium (2-3 days)
LernaNx/TurborepoNeed caching, parallel buildsHigh (1 week)
CJSESMNode 18+, modern toolingHigh (varies)

Monorepo Management

Nx vs Turborepo Decision Matrix

  • Choose Turborepo if: Simple structure, need speed, <20 packages
  • Choose Nx if: Complex dependencies, need visualization, plugins required
  • Performance: Nx often performs better on large monorepos (>50 packages)

TypeScript Monorepo Configuration — root tsconfig references array plus composite/declaration/declarationMap per package. See references/full-guide.md (§ Monorepo TypeScript Configuration) for the full config.

Modern Tooling Expertise

Biome vs ESLint

Use Biome when: speed is critical, want a single tool for lint + format, TypeScript-first project, okay with 64 TS rules vs 100+ in typescript-eslint.

Stay with ESLint when: need specific rules/plugins, have complex custom rules, working with Vue/Angular (limited Biome support), need type-aware linting (Biome doesn't have this yet).

Type Testing Strategies

Vitest Type Testing (Recommended) — write .test-d.ts files using expectTypeOf to assert on prop/return types at compile time. See references/full-guide.md (§ Vitest Type Testing) for a full example.

When to Test Types: publishing libraries, complex generic functions, type-level utilities, API contracts.

Debugging Mastery

CLI Debugging Tools — trace module resolution (tsc --traceResolution), profile type-check performance (tsc --generateTrace), debug files directly with tsx/ts-node --inspect-brk. See references/full-guide.md (§ CLI Debugging Tools) for the full command set.

Custom Error Classes — extend Error, set this.name, and call Error.captureStackTrace to preserve the stack. See references/full-guide.md (§ Custom Error Classes) for the full pattern.

Current Best Practices

Strict by Default

Use strict: true plus noUncheckedIndexedAccess, noImplicitOverride, exactOptionalPropertyTypes, noPropertyAccessFromIndexSignature. See references/tsconfig-strict.json for a full production-ready strict config.

ESM-First Approach

  • Set "type": "module" in package.json
  • Use .mts for TypeScript ESM files if needed
  • Configure "moduleResolution": "bundler" for modern tools
  • Use dynamic imports for CJS: const pkg = await import('cjs-package')
    • Note: await import() requires async function or top-level await in ESM
    • For CJS packages in ESM: may need (await import('pkg')).default depending on the package's export structure and compiler settings

AI-Assisted Development

  • AI coding assistants excel at TypeScript generics and boilerplate type definitions
  • Validate AI-generated types with type tests
  • Document complex types for AI context

Code Review Checklist

Type Safety

  • No implicit any types (use unknown or proper types)
  • Strict null checks enabled and properly handled
  • Type assertions (as) justified and minimal
  • Generic constraints properly defined
  • Discriminated unions for error handling
  • Return types explicitly declared for public APIs

TypeScript Best Practices

  • Prefer interface over type for object shapes (better error messages)
  • Use const assertions for literal types
  • Leverage type guards and predicates
  • Avoid type gymnastics when simpler solution exists
  • Template literal types used appropriately
  • Branded types for domain primitives

Performance Considerations

  • Type complexity doesn't cause slow compilation
  • No excessive type instantiation depth
  • Avoid complex mapped types in hot paths
  • Use skipLibCheck: true in tsconfig
  • Project references configured for monorepos

Module System

  • Consistent import/export patterns, no circular dependencies
  • Proper use of barrel exports (avoid over-bundling)
  • ESM/CJS compatibility handled correctly, dynamic imports for code splitting

Error Handling Patterns

  • Result types or discriminated unions for errors
  • Custom error classes with proper inheritance, type-safe error boundaries
  • Exhaustive switch cases with never type

Code Organization

  • Types co-located with implementation
  • Shared types in dedicated modules
  • Avoid global type augmentation when possible
  • Proper use of declaration files (.d.ts)

Quick Decision Trees

"Which tool should I use?"
Type checking only? → tsc
Type checking + linting speed critical? → Biome
Type checking + comprehensive linting? → ESLint + typescript-eslint
Type testing? → Vitest expectTypeOf
Build tool? → Project size <10 packages? Turborepo. Else? Nx

"How do I fix this performance issue?"
Slow type checking? → skipLibCheck, incremental, project references
Slow builds? → Check bundler config, enable caching
Slow tests? → Vitest with threads, avoid type checking in tests
Slow language server? → Exclude node_modules, limit files in tsconfig

Expert Resources

Always validate changes don't break existing functionality before considering the issue resolved.

Typescript Best Practices procedure

Read typescript-best-practices procedure when running this workflow. Apply the authorized scope and mode of this entry point to every step. Resolve other skills through this distribution’s active catalog; resolve resources relative to the installed skill directory.

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最新版本元数据

版本

v2026.09.24

发布时间

Sep 24, 2026

分类

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许可证

未指定

源路径

skills/typescript-expert

默认分支

master

最新提交

a0f9899

Tree SHA

f05942e