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dilswer

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Blazingly fast data validation library with TypeScript integration.

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var __defProp = Object.defineProperty; var __getOwnPropSymbols = Object.getOwnPropertySymbols; var __hasOwnProp = Object.prototype.hasOwnProperty; var __propIsEnum = Object.prototype.propertyIsEnumerable; var __defNormalProp = (obj, key, value) => key in obj ? __defProp(obj, key, { enumerable: true, configurable: true, writable: true, value }) : obj[key] = value; var __spreadValues = (a, b) => { for (var prop in b || (b = {})) if (__hasOwnProp.call(b, prop)) __defNormalProp(a, prop, b[prop]); if (__getOwnPropSymbols) for (var prop of __getOwnPropSymbols(b)) { if (__propIsEnum.call(b, prop)) __defNormalProp(a, prop, b[prop]); } return a; }; var __publicField = (obj, key, value) => __defNormalProp(obj, typeof key !== "symbol" ? key + "" : key, value); // src/data-types/types/string-integer.ts import { BaseType } from "../base-type.mjs"; import { getStandardSchemaProps } from "../generate-standard-schema.mjs"; import { UnionType } from "./union.mjs"; import { ValidationError } from "../../validation-algorithms/validation-error/validation-error.mjs"; var StringIntegerType = class extends BaseType { constructor() { super(); __publicField(this, "kind", "simple"); __publicField(this, "simpleType", "stringinteger"); __publicField(this, "_options", { positive: true, negative: true, zero: true }); Object.freeze(this); } get options() { return __spreadValues({}, this._options); } positive() { return new PositiveStringIntegerType(); } negative() { return new NegativeStringIntegerType(); } zero() { return new ZeroStringIntegerType(); } /** @internal */ _acceptVisitor(visitor) { return visitor.visit(this); } get ["~standard"]() { return getStandardSchemaProps(this); } ["~validate"](path, value) { if (typeof value !== "string") { throw new ValidationError(path, this, value, "not a string"); } if (value.length === 0) { throw new ValidationError(path, this, value, "empty string"); } let i = 0; if (value[0] === "-") { i++; } for (; i < value.length; i++) { const charCode = value.charCodeAt(i); if (charCode >= 48 && charCode <= 57) { continue; } throw new ValidationError( path, this, value, "value contained by the string is not a valid integer" ); } } ["~matches"](value) { if (typeof value !== "string") { return false; } let i = 0; if (value[0] === "-") { i++; } for (; i < value.length; i++) { const charCode = value.charCodeAt(i); if (charCode >= 48 && charCode <= 57) { continue; } return false; } return value.length > 0; } }; var ZeroStringIntegerType = class extends StringIntegerType { constructor() { super(); this._options.negative = false; this._options.positive = false; } positive() { throw new Error("This type already has a zero constraint"); } negative() { throw new Error("This type already has a zero constraint"); } zero() { throw new Error("This type already has a zero constraint"); } orPositive() { return new UnionType([ this, new PositiveStringIntegerType() ]); } orNegative() { return new UnionType([ this, new NegativeStringIntegerType() ]); } ["~validate"](path, value) { if (typeof value !== "string") { throw new ValidationError(path, this, value, "not a string"); } if (value.length === 0) { throw new ValidationError(path, this, value, "empty string"); } let i = 0; if (value[0] === "-") { i++; } for (; i < value.length; i++) { const charCode = value.charCodeAt(i); if (charCode === 48) { continue; } throw new ValidationError( path, this, value, "value contained by the string is not equalt to zero" ); } } ["~matches"](value) { if (typeof value !== "string") { return false; } let i = 0; if (value[0] === "-") { i++; } for (; i < value.length; i++) { const charCode = value.charCodeAt(i); if (charCode === 48) { continue; } return false; } return value.length > 0; } }; var PositiveStringIntegerType = class extends StringIntegerType { constructor() { super(); this._options.negative = false; this._options.zero = false; } positive() { throw new Error("This type already has a positive constraint"); } negative() { throw new Error("This type already has a positive constraint"); } zero() { throw new Error("This type already has a positive constraint"); } orZero() { return new UnionType([ this, new ZeroStringIntegerType() ]); } ["~validate"](path, value) { if (typeof value !== "string") { throw new ValidationError(path, this, value, "not a string"); } if (value.length === 0) { throw new ValidationError(path, this, value, "empty string"); } let hasNonZeroDigit = false; for (let i = 0; i < value.length; i++) { const charCode = value.charCodeAt(i); if (charCode >= 49 && charCode <= 57) { hasNonZeroDigit = true; continue; } if (charCode === 48) { continue; } throw new ValidationError( path, this, value, "value contained by the string is not a valid integer" ); } if (!hasNonZeroDigit) { throw new ValidationError( path, this, value, "value contained by the string is not positive" ); } } ["~matches"](value) { if (typeof value !== "string") { return false; } let hasNonZeroDigit = false; for (let i = 0; i < value.length; i++) { const charCode = value.charCodeAt(i); if (charCode >= 49 && charCode <= 57) { hasNonZeroDigit = true; continue; } if (charCode === 48) { continue; } return false; } return hasNonZeroDigit; } }; var NegativeStringIntegerType = class extends StringIntegerType { constructor() { super(); this._options.positive = false; this._options.zero = false; Object.freeze(this); } positive() { throw new Error("This type already has a negative constraint"); } negative() { throw new Error("This type already has a negative constraint"); } zero() { throw new Error("This type already has a negative constraint"); } orZero() { return new UnionType([ this, new ZeroStringIntegerType() ]); } ["~validate"](path, value) { if (typeof value !== "string") { throw new ValidationError(path, this, value, "not a string"); } if (value.length === 0) { throw new ValidationError(path, this, value, "empty string"); } if (value[0] !== "-") { throw new ValidationError( path, this, value, "value contained by the string is not negative" ); } let hasNonZeroDigit = false; for (let i = 1; i < value.length; i++) { const charCode = value.charCodeAt(i); if (charCode >= 49 && charCode <= 57) { hasNonZeroDigit = true; continue; } if (charCode === 48) { continue; } throw new ValidationError( path, this, value, "value contained by the string is not a valid integer" ); } if (!hasNonZeroDigit) { throw new ValidationError( path, this, value, "value contained by the string is not negative" ); } } ["~matches"](value) { if (typeof value !== "string") { return false; } if (value[0] !== "-") { return false; } let hasNonZeroDigit = false; for (let i = 1; i < value.length; i++) { const charCode = value.charCodeAt(i); if (charCode >= 49 && charCode <= 57) { hasNonZeroDigit = true; continue; } if (charCode === 48) { continue; } return false; } return hasNonZeroDigit; } }; export { NegativeStringIntegerType, PositiveStringIntegerType, StringIntegerType, ZeroStringIntegerType };