Typescript

作者 pproencacf93c57cac89无许可证215 个星标收录于 2026年10月8日更新于 2026年10月8日仓库7周前更新

TypeScript performance, tsconfig, type errors, async patterns — triggered when the user asks to "optimize TypeScript performance", "speed up tsc compilation", "configure tsconfig.json", "fix type errors", "improve async patterns", or encounters TS errors (TS2322, TS2339, "is not assignable to"). Also triggers on .ts, .tsx, .d.ts file work involving type definitions, module organization, or memory management. Does NOT cover TypeScript basics, framework-specific patterns, or testing.

AI 生成的概览

TypeScript 性能指南,包含类型、tsconfig、异步、模块、安全与内存方面的 45 条规则。

功能
提供按优先级排列的 45 条 TypeScript 规则,分为八个类别:类型系统性能、编译器配置、异步模式、模块组织、类型安全、内存管理、运行时优化和高级模式。每条规则位于单独的参考文件中,并按影响程度排序,用于指导重构和代码生成。它只是纯说明性指南,不生成任何文件或脚本。
适用场景
适用于配置 tsconfig.json、编写复杂类型定义或泛型、优化异步与数据获取模式、组织模块与导入,以及审查 TypeScript 代码的编译与运行时性能。也适用于涉及类型定义、模块组织或内存管理的 .ts、.tsx 和 .d.ts 工作。
运行要求
无需任何工具、软件包或凭据;它仅包含说明和参考文档,不附带脚本。

TypeScript Best Practices

Comprehensive performance optimization guide for TypeScript applications. Contains 45 rules across 8 categories, prioritized by impact to guide automated refactoring and code generation.

When to Apply

Reference these guidelines when:

  • Configuring tsconfig.json for a new or existing project
  • Writing complex type definitions or generics
  • Optimizing async/await patterns and data fetching
  • Organizing modules and managing imports
  • Reviewing code for compilation or runtime performance

Rule Categories by Priority

PriorityCategoryImpactPrefix
1Type System PerformanceCRITICALtype-
2Compiler ConfigurationCRITICALtscfg-
3Async PatternsHIGHasync-
4Module OrganizationHIGHmodule-
5Type Safety PatternsMEDIUM-HIGHsafety-
6Memory ManagementMEDIUMmem-
7Runtime OptimizationLOW-MEDIUMruntime-
8Advanced PatternsLOWadvanced-

Table of Contents

  1. Type System Performance [blocked] — CRITICAL
    • 1.1 Add Explicit Return Types to Exported Functions [blocked] — CRITICAL (30-50% faster declaration emit)
    • 1.2 Avoid Deeply Nested Generic Types [blocked] — CRITICAL (prevents exponential instantiation cost)
    • 1.3 Avoid Large Union Types [blocked] — CRITICAL (quadratic O(n²) comparison cost)
    • 1.4 Extract Conditional Types to Named Aliases [blocked] — CRITICAL (enables compiler caching, prevents re-evaluation)
    • 1.5 Limit Type Recursion Depth [blocked] — HIGH (prevents exponential type expansion when applicable)
    • 1.6 Prefer Interfaces Over Type Intersections [blocked] — CRITICAL (2-5× faster type resolution)
    • 1.7 Simplify Complex Mapped Types [blocked] — HIGH (reduces type computation by 50-80% when applicable)
  2. Compiler Configuration [blocked] — CRITICAL
    • 2.1 Configure Include and Exclude Properly [blocked] — CRITICAL (prevents scanning thousands of unnecessary files)
    • 2.2 Enable Incremental Compilation [blocked] — CRITICAL (50-90% faster rebuilds)
    • 2.3 Enable isolatedDeclarations for Parallel Declaration Emit [blocked] — CRITICAL (enables parallel .d.ts generation without type-checker)
    • 2.4 Enable skipLibCheck for Faster Builds [blocked] — CRITICAL (20-40% faster compilation)
    • 2.5 Enable strictFunctionTypes for Faster Variance Checks [blocked] — CRITICAL (enables optimized variance checking)
    • 2.6 Use erasableSyntaxOnly for Node.js Native TypeScript [blocked] — HIGH (prevents 100% of Node.js type-stripping runtime errors)
    • 2.7 Use isolatedModules for Single-File Transpilation [blocked] — CRITICAL (80-90% faster transpilation with bundlers)
    • 2.8 Use Project References for Large Codebases [blocked] — CRITICAL (60-80% faster incremental builds)
  3. Async Patterns [blocked] — HIGH
    • 3.1 Annotate Async Function Return Types [blocked] — HIGH (prevents runtime errors, improves inference)
    • 3.2 Avoid await Inside Loops [blocked] — HIGH (N× faster for N iterations, 10 users = 10× improvement)
    • 3.3 Avoid Unnecessary async/await [blocked] — HIGH (eliminates trivial Promise wrappers and improves stack traces)
    • 3.4 Defer await Until Value Is Needed [blocked] — HIGH (enables implicit parallelization)
    • 3.5 Use Promise.all for Independent Operations [blocked] — HIGH (2-10× improvement in I/O-bound code)
  4. Module Organization [blocked] — HIGH
    • 4.1 Avoid Barrel File Imports [blocked] — HIGH (200-800ms import cost, 30-50% larger bundles)
    • 4.2 Avoid Circular Dependencies [blocked] — HIGH (prevents runtime undefined errors and slow compilation)
    • 4.3 Control @types Package Inclusion [blocked] — HIGH (prevents type conflicts and reduces memory usage)
    • 4.4 Use Dynamic Imports for Large Modules [blocked] — HIGH (reduces initial bundle by 30-70%)
    • 4.5 Use Type-Only Imports for Types [blocked] — HIGH (eliminates runtime imports for type information)
  5. Type Safety Patterns [blocked] — MEDIUM-HIGH
    • 5.1 Enable noUncheckedIndexedAccess [blocked] — MEDIUM-HIGH (prevents 100% of unchecked index access errors at compile time)
    • 5.2 Enable strictNullChecks [blocked] — MEDIUM-HIGH (prevents null/undefined runtime errors)
    • 5.3 Prefer unknown Over any [blocked] — MEDIUM-HIGH (forces type narrowing, prevents runtime errors)
    • 5.4 Use Assertion Functions for Validation [blocked] — MEDIUM-HIGH (reduces validation boilerplate by 50-70%)
    • 5.5 Use const Assertions for Literal Types [blocked] — MEDIUM-HIGH (preserves literal types, enables better inference)
    • 5.6 Use Exhaustive Checks for Union Types [blocked] — MEDIUM-HIGH (prevents 100% of missing case errors at compile time)
    • 5.7 Use Type Guards for Runtime Type Checking [blocked] — MEDIUM-HIGH (eliminates type assertions, catches errors at boundaries)
  6. Memory Management [blocked] — MEDIUM
    • 6.1 Avoid Closure Memory Leaks [blocked] — MEDIUM (prevents retained references in long-lived callbacks)
    • 6.2 Avoid Global State Accumulation [blocked] — MEDIUM (prevents unbounded memory growth)
    • 6.3 Clean Up Event Listeners [blocked] — MEDIUM (prevents unbounded memory growth)
    • 6.4 Clear Timers and Intervals [blocked] — MEDIUM (prevents callback retention and repeated execution)
    • 6.5 Use WeakMap for Object Metadata [blocked] — MEDIUM (prevents memory leaks, enables automatic cleanup)
  7. Runtime Optimization [blocked] — LOW-MEDIUM
    • 7.1 Avoid Object Spread in Hot Loops [blocked] — LOW-MEDIUM (reduces object allocations by N×)
    • 7.2 Cache Property Access in Loops [blocked] — LOW-MEDIUM (reduces property lookups by N× in hot paths)
    • 7.3 Prefer Native Array Methods Over Lodash [blocked] — LOW-MEDIUM (eliminates library overhead, enables tree-shaking)
    • 7.4 Use for-of for Simple Iteration [blocked] — LOW-MEDIUM (reduces iteration boilerplate by 30-50%)
    • 7.5 Use Modern String Methods [blocked] — LOW-MEDIUM (2-5× faster than regex for simple patterns)
    • 7.6 Use Set/Map for O(1) Lookups [blocked] — LOW-MEDIUM (O(n) to O(1) per lookup)
  8. Advanced Patterns [blocked] — LOW
    • 8.1 Use Branded Types for Type-Safe IDs [blocked] — LOW (prevents mixing incompatible ID types)
    • 8.2 Use satisfies for Type Validation with Inference [blocked] — LOW (prevents property access errors, enables 100% autocomplete accuracy)
    • 8.3 Use Template Literal Types for String Patterns [blocked] — LOW (prevents 100% of string format errors at compile time)

References

  1. https://github.com/microsoft/TypeScript/wiki/Performance
  2. https://www.typescriptlang.org/docs/handbook/
  3. https://v8.dev/blog
  4. https://nodejs.org/en/learn/diagnostics/memory

来源与署名

来源:pproenca/dot-skills位于skills/.curated/typescript提交cf93c57

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