6 مستودعات
Compiling high-level validation schemas into optimized executable functions at runtime.
Distinct from Logic-to-Function Compilers: Existing candidates focus on general logic compilers or WASM; this is specifically for JIT-compiling validation schemas.
Explore 6 awesome GitHub repositories matching programming languages & runtimes · Runtime Validator Compilation. Refine with filters or upvote what's useful.
Arktype is a TypeScript runtime validation library and schema orchestrator. It synchronizes TypeScript types with runtime data validation, allowing users to define type-safe schemas that ensure unknown data adheres to specific structures during application execution. The project distinguishes itself by using set-theory type analysis to determine intersections and subtype compatibility, alongside JIT-compiled validation functions for optimized performance. It supports advanced type modeling through branded type constraints, recursive alias resolution, and the ability to generate runtime valida
Uses a runtime compilation mode to build optimized validators with a fallback for restricted environments.
TypeBox is a JSON schema generator and TypeScript data validator. It functions as a type builder that creates compliant JSON schema definitions while providing a mechanism for synchronizing runtime validation logic with compile-time types. The project allows for the automatic derivation of static TypeScript interfaces from schema definitions to eliminate redundant type declarations. It converts complex type constructs into schema fragments and resolves static types to maintain consistency between data shapes and code. The system covers runtime type checking and data validation through the us
Transforms high-level schema definitions into optimized executable validation functions at runtime for increased performance.
Typia is a compile-time code generator that transforms TypeScript type annotations into runtime validation, serialization, and schema functions without requiring decorators or separate schema files. It generates optimized validation and serialization code during TypeScript compilation, producing dedicated functions for each type that eliminate runtime schema objects for faster execution. The project extends this core capability into several integrated areas. It generates fully typed client SDKs from NestJS controller source code, keeping server and client types synchronized automatically. It
Replaces validation call sites with hand-written, type-specialized checks during compilation, leaving no general-purpose validator at runtime.
Lingui is a JavaScript internationalization library that provides a framework-agnostic core with bindings for React, SolidJS, Svelte, Astro, and other JavaScript frameworks. It operates through a compile-time message extraction pipeline that scans source files for translatable strings, generates standard PO, JSON, or CSV catalog files, and compiles them into optimized JavaScript modules for production deployment. The library uses macro-based message definition to wrap translatable text in source code while preserving context for extraction, and includes a plural rule engine that automatically
Compiles translation catalogs into optimized JavaScript modules for runtime loading.
This library is a header-only C++ framework that performs regular expression evaluation and static string analysis during the compilation phase. By leveraging template metaprogramming and constant expression evaluation, it transforms pattern matching logic into static state machines, effectively shifting the cost of parsing and validation from runtime to build time. The project distinguishes itself by encoding text data directly into the type system, allowing for the validation and extraction of string content before a program ever executes. This approach ensures that regular expression patte
Evaluates regular expressions during the compilation phase to ensure patterns are correct and extract data without runtime overhead.
This library is a collection of zero-overhead C++ abstractions designed to replace primitive types with strict wrappers. By leveraging template metaprogramming, it enforces compile-time type safety and validates data integrity, ensuring that logic errors are caught during the build process rather than at runtime. The project distinguishes itself by providing a zero-cost abstraction layer that maps high-level type safety wrappers directly to machine instructions. It utilizes static type identity enforcement to treat logically distinct data as incompatible types, even when they share the same u
Enforces domain-specific constraints and prevents invalid data states without impacting runtime performance.