File: C:/Python311/Lib/site-packages/notebook/static/7995.228c3c90da185c130d89.js.map
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Otherwise, the string is wrapped by\n * `Number()` and if that result is not `NaN`, that number will be returned, otherwise the string `value` will be.\n *\n * @param value - The string or null value to convert to a number\n * @returns - The `value` converted to a number when appropriate, otherwise the `value`\n */\nexport default function asNumber(value) {\n if (value === '') {\n return undefined;\n }\n if (value === null) {\n return null;\n }\n if (/\\.$/.test(value)) {\n // '3.' can't really be considered a number even if it parses in js. The\n // user is most likely entering a float.\n return value;\n }\n if (/\\.0$/.test(value)) {\n // we need to return this as a string here, to allow for input like 3.07\n return value;\n }\n if (/\\.\\d*0$/.test(value)) {\n // It's a number, that's cool - but we need it as a string so it doesn't screw\n // with the user when entering dollar amounts or other values (such as those with\n // specific precision or number of significant digits)\n return value;\n }\n const n = Number(value);\n const valid = typeof n === 'number' && !Number.isNaN(n);\n return valid ? n : value;\n}\n//# sourceMappingURL=asNumber.js.map","/** Below are the list of all the keys into various elements of a RJSFSchema or UiSchema that are used by the various\n * utility functions. In addition to those keys, there are the special `ADDITIONAL_PROPERTY_FLAG` and\n * `RJSF_ADDITONAL_PROPERTIES_FLAG` flags that is added to a schema under certain conditions by the `retrieveSchema()`\n * utility.\n */\nexport const ADDITIONAL_PROPERTY_FLAG = '__additional_property';\nexport const ADDITIONAL_PROPERTIES_KEY = 'additionalProperties';\nexport const ALL_OF_KEY = 'allOf';\nexport const ANY_OF_KEY = 'anyOf';\nexport const CONST_KEY = 'const';\nexport const DEFAULT_KEY = 'default';\nexport const DEFINITIONS_KEY = 'definitions';\nexport const DEPENDENCIES_KEY = 'dependencies';\nexport const ENUM_KEY = 'enum';\nexport const ERRORS_KEY = '__errors';\nexport const ID_KEY = '$id';\nexport const IF_KEY = 'if';\nexport const ITEMS_KEY = 'items';\nexport const JUNK_OPTION_ID = '_$junk_option_schema_id$_';\nexport const NAME_KEY = '$name';\nexport const ONE_OF_KEY = 'oneOf';\nexport const PROPERTIES_KEY = 'properties';\nexport const REQUIRED_KEY = 'required';\nexport const SUBMIT_BTN_OPTIONS_KEY = 'submitButtonOptions';\nexport const REF_KEY = '$ref';\nexport const RJSF_ADDITONAL_PROPERTIES_FLAG = '__rjsf_additionalProperties';\nexport const ROOT_SCHEMA_PREFIX = '__rjsf_rootSchema';\nexport const UI_FIELD_KEY = 'ui:field';\nexport const UI_WIDGET_KEY = 'ui:widget';\nexport const UI_OPTIONS_KEY = 'ui:options';\nexport const UI_GLOBAL_OPTIONS_KEY = 'ui:globalOptions';\n//# sourceMappingURL=constants.js.map","import { UI_OPTIONS_KEY, UI_WIDGET_KEY } from './constants';\nimport isObject from './isObject';\n/** Get all passed options from ui:options, and ui:<optionName>, returning them in an object with the `ui:`\n * stripped off. Any `globalOptions` will always be returned, unless they are overridden by options in the `uiSchema`.\n *\n * @param [uiSchema={}] - The UI Schema from which to get any `ui:xxx` options\n * @param [globalOptions={}] - The optional Global UI Schema from which to get any fallback `xxx` options\n * @returns - An object containing all the `ui:xxx` options with the `ui:` stripped off along with all `globalOptions`\n */\nexport default function getUiOptions(uiSchema = {}, globalOptions = {}) {\n return Object.keys(uiSchema)\n .filter((key) => key.indexOf('ui:') === 0)\n .reduce((options, key) => {\n const value = uiSchema[key];\n if (key === UI_WIDGET_KEY && isObject(value)) {\n console.error('Setting options via ui:widget object is no longer supported, use ui:options instead');\n return options;\n }\n if (key === UI_OPTIONS_KEY && isObject(value)) {\n return { ...options, ...value };\n }\n return { ...options, [key.substring(3)]: value };\n }, { ...globalOptions });\n}\n//# sourceMappingURL=getUiOptions.js.map","import getUiOptions from './getUiOptions';\n/** Checks whether the field described by `schema`, having the `uiSchema` and `formData` supports expanding. The UI for\n * the field can expand if it has additional properties, is not forced as non-expandable by the `uiSchema` and the\n * `formData` object doesn't already have `schema.maxProperties` elements.\n *\n * @param schema - The schema for the field that is being checked\n * @param [uiSchema={}] - The uiSchema for the field\n * @param [formData] - The formData for the field\n * @returns - True if the schema element has additionalProperties, is expandable, and not at the maxProperties limit\n */\nexport default function canExpand(schema, uiSchema = {}, formData) {\n if (!schema.additionalProperties) {\n return false;\n }\n const { expandable = true } = getUiOptions(uiSchema);\n if (expandable === false) {\n return expandable;\n }\n // if ui:options.expandable was not explicitly set to false, we can add\n // another property if we have not exceeded maxProperties yet\n if (schema.maxProperties !== undefined && formData) {\n return Object.keys(formData).length < schema.maxProperties;\n }\n return true;\n}\n//# sourceMappingURL=canExpand.js.map","import isPlainObject from 'lodash/isPlainObject';\nimport { ERRORS_KEY } from './constants';\n/** Given a `formData` object, recursively creates a `FormValidation` error handling structure around it\n *\n * @param formData - The form data around which the error handler is created\n * @returns - A `FormValidation` object based on the `formData` structure\n */\nexport default function createErrorHandler(formData) {\n const handler = {\n // We store the list of errors for this node in a property named __errors\n // to avoid name collision with a possible sub schema field named\n // 'errors' (see `utils.toErrorSchema`).\n [ERRORS_KEY]: [],\n addError(message) {\n this[ERRORS_KEY].push(message);\n },\n };\n if (Array.isArray(formData)) {\n return formData.reduce((acc, value, key) => {\n return { ...acc, [key]: createErrorHandler(value) };\n }, handler);\n }\n if (isPlainObject(formData)) {\n const formObject = formData;\n return Object.keys(formObject).reduce((acc, key) => {\n return { ...acc, [key]: createErrorHandler(formObject[key]) };\n }, handler);\n }\n return handler;\n}\n//# sourceMappingURL=createErrorHandler.js.map","import isEqualWith from 'lodash/isEqualWith';\n/** Implements a deep equals using the `lodash.isEqualWith` function, that provides a customized comparator that\n * assumes all functions are equivalent.\n *\n * @param a - The first element to compare\n * @param b - The second element to compare\n * @returns - True if the `a` and `b` are deeply equal, false otherwise\n */\nexport default function deepEquals(a, b) {\n return isEqualWith(a, b, (obj, other) => {\n if (typeof obj === 'function' && typeof other === 'function') {\n // Assume all functions are equivalent\n // see https://github.com/rjsf-team/react-jsonschema-form/issues/255\n return true;\n }\n return undefined; // fallback to default isEquals behavior\n });\n}\n//# sourceMappingURL=deepEquals.js.map","import jsonpointer from 'jsonpointer';\nimport omit from 'lodash/omit';\nimport { REF_KEY } from './constants';\n/** Splits out the value at the `key` in `object` from the `object`, returning an array that contains in the first\n * location, the `object` minus the `key: value` and in the second location the `value`.\n *\n * @param key - The key from the object to extract\n * @param object - The object from which to extract the element\n * @returns - An array with the first value being the object minus the `key` element and the second element being the\n * value from `object[key]`\n */\nexport function splitKeyElementFromObject(key, object) {\n const value = object[key];\n const remaining = omit(object, [key]);\n return [remaining, value];\n}\n/** Given the name of a `$ref` from within a schema, using the `rootSchema`, look up and return the sub-schema using the\n * path provided by that reference. If `#` is not the first character of the reference, or the path does not exist in\n * the schema, then throw an Error. Otherwise return the sub-schema. Also deals with nested `$ref`s in the sub-schema.\n *\n * @param $ref - The ref string for which the schema definition is desired\n * @param [rootSchema={}] - The root schema in which to search for the definition\n * @returns - The sub-schema within the `rootSchema` which matches the `$ref` if it exists\n * @throws - Error indicating that no schema for that reference exists\n */\nexport default function findSchemaDefinition($ref, rootSchema = {}) {\n let ref = $ref || '';\n if (ref.startsWith('#')) {\n // Decode URI fragment representation.\n ref = decodeURIComponent(ref.substring(1));\n }\n else {\n throw new Error(`Could not find a definition for ${$ref}.`);\n }\n const current = jsonpointer.get(rootSchema, ref);\n if (current === undefined) {\n throw new Error(`Could not find a definition for ${$ref}.`);\n }\n if (current[REF_KEY]) {\n const [remaining, theRef] = splitKeyElementFromObject(REF_KEY, current);\n const subSchema = findSchemaDefinition(theRef, rootSchema);\n if (Object.keys(remaining).length > 0) {\n return { ...remaining, ...subSchema };\n }\n return subSchema;\n }\n return current;\n}\n//# sourceMappingURL=findSchemaDefinition.js.map","import get from 'lodash/get';\nimport { PROPERTIES_KEY } from './constants';\n/** Compares the value of `discriminatorField` within `formData` against the value of `discriminatorField` within schema for each `option`.\n * Returns index of first `option` whose discriminator matches formData. Returns `undefined` if there is no match.\n * This function does not work with discriminators of `\"type\": \"object\"` and `\"type\": \"array\"`\n *\n * @param formData - The current formData, if any, used to figure out a match\n * @param options - The list of options to find a matching options from\n * @param [discriminatorField] - The optional name of the field within the options object whose value is used to\n * determine which option is selected\n * @returns - The index of the matched option or undefined if there is no match\n */\nexport default function getOptionMatchingSimpleDiscriminator(formData, options, discriminatorField) {\n var _a;\n if (formData && discriminatorField) {\n const value = get(formData, discriminatorField);\n if (value === undefined) {\n return;\n }\n for (let i = 0; i < options.length; i++) {\n const option = options[i];\n const discriminator = get(option, [PROPERTIES_KEY, discriminatorField], {});\n if (discriminator.type === 'object' || discriminator.type === 'array') {\n continue;\n }\n if (discriminator.const === value) {\n return i;\n }\n if ((_a = discriminator.enum) === null || _a === void 0 ? void 0 : _a.includes(value)) {\n return i;\n }\n }\n }\n return;\n}\n//# sourceMappingURL=getOptionMatchingSimpleDiscriminator.js.map","import get from 'lodash/get';\nimport has from 'lodash/has';\nimport isNumber from 'lodash/isNumber';\nimport { PROPERTIES_KEY } from '../constants';\nimport getOptionMatchingSimpleDiscriminator from '../getOptionMatchingSimpleDiscriminator';\n/** Given the `formData` and list of `options`, attempts to find the index of the option that best matches the data.\n * Deprecated, use `getFirstMatchingOption()` instead.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param formData - The current formData, if any, used to figure out a match\n * @param options - The list of options to find a matching options from\n * @param rootSchema - The root schema, used to primarily to look up `$ref`s\n * @param [discriminatorField] - The optional name of the field within the options object whose value is used to\n * determine which option is selected\n * @returns - The index of the matched option or 0 if none is available\n * @deprecated\n */\nexport default function getMatchingOption(validator, formData, options, rootSchema, discriminatorField) {\n // For performance, skip validating subschemas if formData is undefined. We just\n // want to get the first option in that case.\n if (formData === undefined) {\n return 0;\n }\n const simpleDiscriminatorMatch = getOptionMatchingSimpleDiscriminator(formData, options, discriminatorField);\n if (isNumber(simpleDiscriminatorMatch)) {\n return simpleDiscriminatorMatch;\n }\n for (let i = 0; i < options.length; i++) {\n const option = options[i];\n // If we have a discriminator field, then we will use this to make the determination\n if (discriminatorField && has(option, [PROPERTIES_KEY, discriminatorField])) {\n const value = get(formData, discriminatorField);\n const discriminator = get(option, [PROPERTIES_KEY, discriminatorField], {});\n if (validator.isValid(discriminator, value, rootSchema)) {\n return i;\n }\n }\n else if (option[PROPERTIES_KEY]) {\n // If the schema describes an object then we need to add slightly more\n // strict matching to the schema, because unless the schema uses the\n // \"requires\" keyword, an object will match the schema as long as it\n // doesn't have matching keys with a conflicting type. To do this we use an\n // \"anyOf\" with an array of requires. This augmentation expresses that the\n // schema should match if any of the keys in the schema are present on the\n // object and pass validation.\n //\n // Create an \"anyOf\" schema that requires at least one of the keys in the\n // \"properties\" object\n const requiresAnyOf = {\n anyOf: Object.keys(option[PROPERTIES_KEY]).map((key) => ({\n required: [key],\n })),\n };\n let augmentedSchema;\n // If the \"anyOf\" keyword already exists, wrap the augmentation in an \"allOf\"\n if (option.anyOf) {\n // Create a shallow clone of the option\n const { ...shallowClone } = option;\n if (!shallowClone.allOf) {\n shallowClone.allOf = [];\n }\n else {\n // If \"allOf\" already exists, shallow clone the array\n shallowClone.allOf = shallowClone.allOf.slice();\n }\n shallowClone.allOf.push(requiresAnyOf);\n augmentedSchema = shallowClone;\n }\n else {\n augmentedSchema = Object.assign({}, option, requiresAnyOf);\n }\n // Remove the \"required\" field as it's likely that not all fields have\n // been filled in yet, which will mean that the schema is not valid\n delete augmentedSchema.required;\n if (validator.isValid(augmentedSchema, formData, rootSchema)) {\n return i;\n }\n }\n else if (validator.isValid(option, formData, rootSchema)) {\n return i;\n }\n }\n return 0;\n}\n//# sourceMappingURL=getMatchingOption.js.map","import getMatchingOption from './getMatchingOption';\n/** Given the `formData` and list of `options`, attempts to find the index of the first option that matches the data.\n * Always returns the first option if there is nothing that matches.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param formData - The current formData, if any, used to figure out a match\n * @param options - The list of options to find a matching options from\n * @param rootSchema - The root schema, used to primarily to look up `$ref`s\n * @param [discriminatorField] - The optional name of the field within the options object whose value is used to\n * determine which option is selected\n * @returns - The index of the first matched option or 0 if none is available\n */\nexport default function getFirstMatchingOption(validator, formData, options, rootSchema, discriminatorField) {\n return getMatchingOption(validator, formData, options, rootSchema, discriminatorField);\n}\n//# sourceMappingURL=getFirstMatchingOption.js.map","import get from 'lodash/get';\nimport isString from 'lodash/isString';\n/** Returns the `discriminator.propertyName` when defined in the `schema` if it is a string. A warning is generated when\n * it is not a string. Returns `undefined` when a valid discriminator is not present.\n *\n * @param schema - The schema from which the discriminator is potentially obtained\n * @returns - The `discriminator.propertyName` if it exists in the schema, otherwise `undefined`\n */\nexport default function getDiscriminatorFieldFromSchema(schema) {\n let discriminator;\n const maybeString = get(schema, 'discriminator.propertyName', undefined);\n if (isString(maybeString)) {\n discriminator = maybeString;\n }\n else if (maybeString !== undefined) {\n console.warn(`Expecting discriminator to be a string, got \"${typeof maybeString}\" instead`);\n }\n return discriminator;\n}\n//# sourceMappingURL=getDiscriminatorFieldFromSchema.js.map","/** Given a specific `value` attempts to guess the type of a schema element. In the case where we have to implicitly\n * create a schema, it is useful to know what type to use based on the data we are defining.\n *\n * @param value - The value from which to guess the type\n * @returns - The best guess for the object type\n */\nexport default function guessType(value) {\n if (Array.isArray(value)) {\n return 'array';\n }\n if (typeof value === 'string') {\n return 'string';\n }\n if (value == null) {\n return 'null';\n }\n if (typeof value === 'boolean') {\n return 'boolean';\n }\n if (!isNaN(value)) {\n return 'number';\n }\n if (typeof value === 'object') {\n return 'object';\n }\n // Default to string if we can't figure it out\n return 'string';\n}\n//# sourceMappingURL=guessType.js.map","import guessType from './guessType';\n/** Gets the type of a given `schema`. If the type is not explicitly defined, then an attempt is made to infer it from\n * other elements of the schema as follows:\n * - schema.const: Returns the `guessType()` of that value\n * - schema.enum: Returns `string`\n * - schema.properties: Returns `object`\n * - schema.additionalProperties: Returns `object`\n * - type is an array with a length of 2 and one type is 'null': Returns the other type\n *\n * @param schema - The schema for which to get the type\n * @returns - The type of the schema\n */\nexport default function getSchemaType(schema) {\n let { type } = schema;\n if (!type && schema.const) {\n return guessType(schema.const);\n }\n if (!type && schema.enum) {\n return 'string';\n }\n if (!type && (schema.properties || schema.additionalProperties)) {\n return 'object';\n }\n if (Array.isArray(type)) {\n if (type.length === 2 && type.includes('null')) {\n type = type.find((type) => type !== 'null');\n }\n else {\n type = type[0];\n }\n }\n return type;\n}\n//# sourceMappingURL=getSchemaType.js.map","import union from 'lodash/union';\nimport { REQUIRED_KEY } from './constants';\nimport getSchemaType from './getSchemaType';\nimport isObject from './isObject';\n/** Recursively merge deeply nested schemas. The difference between `mergeSchemas` and `mergeObjects` is that\n * `mergeSchemas` only concats arrays for values under the 'required' keyword, and when it does, it doesn't include\n * duplicate values.\n *\n * @param obj1 - The first schema object to merge\n * @param obj2 - The second schema object to merge\n * @returns - The merged schema object\n */\nexport default function mergeSchemas(obj1, obj2) {\n const acc = Object.assign({}, obj1); // Prevent mutation of source object.\n return Object.keys(obj2).reduce((acc, key) => {\n const left = obj1 ? obj1[key] : {}, right = obj2[key];\n if (obj1 && key in obj1 && isObject(right)) {\n acc[key] = mergeSchemas(left, right);\n }\n else if (obj1 &&\n obj2 &&\n (getSchemaType(obj1) === 'object' || getSchemaType(obj2) === 'object') &&\n key === REQUIRED_KEY &&\n Array.isArray(left) &&\n Array.isArray(right)) {\n // Don't include duplicate values when merging 'required' fields.\n acc[key] = union(left, right);\n }\n else {\n acc[key] = right;\n }\n return acc;\n }, acc);\n}\n//# sourceMappingURL=mergeSchemas.js.map","import get from 'lodash/get';\nimport isEqual from 'lodash/isEqual';\nimport set from 'lodash/set';\nimport times from 'lodash/times';\nimport transform from 'lodash/transform';\nimport merge from 'lodash/merge';\nimport flattenDeep from 'lodash/flattenDeep';\nimport uniq from 'lodash/uniq';\nimport mergeAllOf from 'json-schema-merge-allof';\nimport { ADDITIONAL_PROPERTIES_KEY, ADDITIONAL_PROPERTY_FLAG, ALL_OF_KEY, ANY_OF_KEY, DEPENDENCIES_KEY, IF_KEY, ONE_OF_KEY, REF_KEY, PROPERTIES_KEY, ITEMS_KEY, } from '../constants';\nimport findSchemaDefinition, { splitKeyElementFromObject } from '../findSchemaDefinition';\nimport getDiscriminatorFieldFromSchema from '../getDiscriminatorFieldFromSchema';\nimport guessType from '../guessType';\nimport isObject from '../isObject';\nimport mergeSchemas from '../mergeSchemas';\nimport getFirstMatchingOption from './getFirstMatchingOption';\n/** Retrieves an expanded schema that has had all of its conditions, additional properties, references and dependencies\n * resolved and merged into the `schema` given a `validator`, `rootSchema` and `rawFormData` that is used to do the\n * potentially recursive resolution.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be forwarded to all the APIs\n * @param schema - The schema for which retrieving a schema is desired\n * @param [rootSchema={}] - The root schema that will be forwarded to all the APIs\n * @param [rawFormData] - The current formData, if any, to assist retrieving a schema\n * @returns - The schema having its conditions, additional properties, references and dependencies resolved\n */\nexport default function retrieveSchema(validator, schema, rootSchema = {}, rawFormData) {\n return retrieveSchemaInternal(validator, schema, rootSchema, rawFormData)[0];\n}\n/** Resolves a conditional block (if/else/then) by removing the condition and merging the appropriate conditional branch\n * with the rest of the schema. If `expandAllBranches` is true, then the `retrieveSchemaInteral()` results for both\n * conditions will be returned.\n *\n * @param validator - An implementation of the `ValidatorType` interface that is used to detect valid schema conditions\n * @param schema - The schema for which resolving a condition is desired\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param expandAllBranches - Flag, if true, will return all possible branches of conditions, any/oneOf and\n * dependencies as a list of schemas\n * @param recurseList - The list of recursive references already processed\n * @param [formData] - The current formData to assist retrieving a schema\n * @returns - A list of schemas with the appropriate conditions resolved, possibly with all branches expanded\n */\nexport function resolveCondition(validator, schema, rootSchema, expandAllBranches, recurseList, formData) {\n const { if: expression, then, else: otherwise, ...resolvedSchemaLessConditional } = schema;\n const conditionValue = validator.isValid(expression, formData || {}, rootSchema);\n let resolvedSchemas = [resolvedSchemaLessConditional];\n let schemas = [];\n if (expandAllBranches) {\n if (then && typeof then !== 'boolean') {\n schemas = schemas.concat(retrieveSchemaInternal(validator, then, rootSchema, formData, expandAllBranches, recurseList));\n }\n if (otherwise && typeof otherwise !== 'boolean') {\n schemas = schemas.concat(retrieveSchemaInternal(validator, otherwise, rootSchema, formData, expandAllBranches, recurseList));\n }\n }\n else {\n const conditionalSchema = conditionValue ? then : otherwise;\n if (conditionalSchema && typeof conditionalSchema !== 'boolean') {\n schemas = schemas.concat(retrieveSchemaInternal(validator, conditionalSchema, rootSchema, formData, expandAllBranches, recurseList));\n }\n }\n if (schemas.length) {\n resolvedSchemas = schemas.map((s) => mergeSchemas(resolvedSchemaLessConditional, s));\n }\n return resolvedSchemas.flatMap((s) => retrieveSchemaInternal(validator, s, rootSchema, formData, expandAllBranches, recurseList));\n}\n/** Given a list of lists of allOf, anyOf or oneOf values, create a list of lists of all permutations of the values. The\n * `listOfLists` is expected to be all resolved values of the 1st...nth schemas within an `allOf`, `anyOf` or `oneOf`.\n * From those lists, build a matrix for each `xxxOf` where there is more than one schema for a row in the list of lists.\n *\n * For example:\n * - If there are three xxxOf rows (A, B, C) and they have been resolved such that there is only one A, two B and three\n * C schemas then:\n * - The permutation for the first row is `[[A]]`\n * - The permutations for the second row are `[[A,B1], [A,B2]]`\n * - The permutations for the third row are `[[A,B1,C1], [A,B1,C2], [A,B1,C3], [A,B2,C1], [A,B2,C2], [A,B2,C3]]`\n *\n * @param listOfLists - The list of lists of elements that represent the allOf, anyOf or oneOf resolved values in order\n * @returns - The list of all permutations of schemas for a set of `xxxOf`s\n */\nexport function getAllPermutationsOfXxxOf(listOfLists) {\n const allPermutations = listOfLists.reduce((permutations, list) => {\n // When there are more than one set of schemas for a row, duplicate the set of permutations and add in the values\n if (list.length > 1) {\n return list.flatMap((element) => times(permutations.length, (i) => [...permutations[i]].concat(element)));\n }\n // Otherwise just push in the single value into the current set of permutations\n permutations.forEach((permutation) => permutation.push(list[0]));\n return permutations;\n }, [[]] // Start with an empty list\n );\n return allPermutations;\n}\n/** Resolves references and dependencies within a schema and its 'allOf' children. Passes the `expandAllBranches` flag\n * down to the `retrieveSchemaInternal()`, `resolveReference()` and `resolveDependencies()` helper calls. If\n * `expandAllBranches` is true, then all possible dependencies and/or allOf branches are returned.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be forwarded to all the APIs\n * @param schema - The schema for which resolving a schema is desired\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param expandAllBranches - Flag, if true, will return all possible branches of conditions, any/oneOf and dependencies\n * as a list of schemas\n * @param recurseList - The list of recursive references already processed\n * @param [formData] - The current formData, if any, to assist retrieving a schema\n * @returns - The list of schemas having its references, dependencies and allOf schemas resolved\n */\nexport function resolveSchema(validator, schema, rootSchema, expandAllBranches, recurseList, formData) {\n const updatedSchemas = resolveReference(validator, schema, rootSchema, expandAllBranches, recurseList, formData);\n if (updatedSchemas.length > 1 || updatedSchemas[0] !== schema) {\n // return the updatedSchemas array if it has either multiple schemas within it\n // OR the first schema is not the same as the original schema\n return updatedSchemas;\n }\n if (DEPENDENCIES_KEY in schema) {\n const resolvedSchemas = resolveDependencies(validator, schema, rootSchema, expandAllBranches, recurseList, formData);\n return resolvedSchemas.flatMap((s) => {\n return retrieveSchemaInternal(validator, s, rootSchema, formData, expandAllBranches, recurseList);\n });\n }\n if (ALL_OF_KEY in schema && Array.isArray(schema.allOf)) {\n const allOfSchemaElements = schema.allOf.map((allOfSubschema) => retrieveSchemaInternal(validator, allOfSubschema, rootSchema, formData, expandAllBranches, recurseList));\n const allPermutations = getAllPermutationsOfXxxOf(allOfSchemaElements);\n return allPermutations.map((permutation) => ({ ...schema, allOf: permutation }));\n }\n // No $ref or dependencies or allOf attribute was found, returning the original schema.\n return [schema];\n}\n/** Resolves all references within a schema and then returns the `retrieveSchemaInternal()` if the resolved schema is\n * actually different than the original. Passes the `expandAllBranches` flag down to the `retrieveSchemaInternal()`\n * helper call.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be forwarded to all the APIs\n * @param schema - The schema for which resolving a reference is desired\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param expandAllBranches - Flag, if true, will return all possible branches of conditions, any/oneOf and dependencies\n * as a list of schemas\n * @param recurseList - The list of recursive references already processed\n * @param [formData] - The current formData, if any, to assist retrieving a schema\n * @returns - The list schemas retrieved after having all references resolved\n */\nexport function resolveReference(validator, schema, rootSchema, expandAllBranches, recurseList, formData) {\n const updatedSchema = resolveAllReferences(schema, rootSchema, recurseList);\n if (updatedSchema !== schema) {\n // Only call this if the schema was actually changed by the `resolveAllReferences()` function\n return retrieveSchemaInternal(validator, updatedSchema, rootSchema, formData, expandAllBranches, recurseList);\n }\n return [schema];\n}\n/** Resolves all references within the schema itself as well as any of its properties and array items.\n *\n * @param schema - The schema for which resolving all references is desired\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param recurseList - List of $refs already resolved to prevent recursion\n * @returns - given schema will all references resolved or the original schema if no internal `$refs` were resolved\n */\nexport function resolveAllReferences(schema, rootSchema, recurseList) {\n if (!isObject(schema)) {\n return schema;\n }\n let resolvedSchema = schema;\n // resolve top level ref\n if (REF_KEY in resolvedSchema) {\n const { $ref, ...localSchema } = resolvedSchema;\n // Check for a recursive reference and stop the loop\n if (recurseList.includes($ref)) {\n return resolvedSchema;\n }\n recurseList.push($ref);\n // Retrieve the referenced schema definition.\n const refSchema = findSchemaDefinition($ref, rootSchema);\n resolvedSchema = { ...refSchema, ...localSchema };\n }\n if (PROPERTIES_KEY in resolvedSchema) {\n const childrenLists = [];\n const updatedProps = transform(resolvedSchema[PROPERTIES_KEY], (result, value, key) => {\n const childList = [...recurseList];\n result[key] = resolveAllReferences(value, rootSchema, childList);\n childrenLists.push(childList);\n }, {});\n merge(recurseList, uniq(flattenDeep(childrenLists)));\n resolvedSchema = { ...resolvedSchema, [PROPERTIES_KEY]: updatedProps };\n }\n if (ITEMS_KEY in resolvedSchema &&\n !Array.isArray(resolvedSchema.items) &&\n typeof resolvedSchema.items !== 'boolean') {\n resolvedSchema = {\n ...resolvedSchema,\n items: resolveAllReferences(resolvedSchema.items, rootSchema, recurseList),\n };\n }\n return isEqual(schema, resolvedSchema) ? schema : resolvedSchema;\n}\n/** Creates new 'properties' items for each key in the `formData`\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param theSchema - The schema for which the existing additional properties is desired\n * @param [rootSchema] - The root schema, used to primarily to look up `$ref`s * @param validator\n * @param [aFormData] - The current formData, if any, to assist retrieving a schema\n * @returns - The updated schema with additional properties stubbed\n */\nexport function stubExistingAdditionalProperties(validator, theSchema, rootSchema, aFormData) {\n // Clone the schema so that we don't ruin the consumer's original\n const schema = {\n ...theSchema,\n properties: { ...theSchema.properties },\n };\n // make sure formData is an object\n const formData = aFormData && isObject(aFormData) ? aFormData : {};\n Object.keys(formData).forEach((key) => {\n if (key in schema.properties) {\n // No need to stub, our schema already has the property\n return;\n }\n let additionalProperties = {};\n if (typeof schema.additionalProperties !== 'boolean') {\n if (REF_KEY in schema.additionalProperties) {\n additionalProperties = retrieveSchema(validator, { $ref: get(schema.additionalProperties, [REF_KEY]) }, rootSchema, formData);\n }\n else if ('type' in schema.additionalProperties) {\n additionalProperties = { ...schema.additionalProperties };\n }\n else if (ANY_OF_KEY in schema.additionalProperties || ONE_OF_KEY in schema.additionalProperties) {\n additionalProperties = {\n type: 'object',\n ...schema.additionalProperties,\n };\n }\n else {\n additionalProperties = { type: guessType(get(formData, [key])) };\n }\n }\n else {\n additionalProperties = { type: guessType(get(formData, [key])) };\n }\n // The type of our new key should match the additionalProperties value;\n schema.properties[key] = additionalProperties;\n // Set our additional property flag so we know it was dynamically added\n set(schema.properties, [key, ADDITIONAL_PROPERTY_FLAG], true);\n });\n return schema;\n}\n/** Internal handler that retrieves an expanded schema that has had all of its conditions, additional properties,\n * references and dependencies resolved and merged into the `schema` given a `validator`, `rootSchema` and `rawFormData`\n * that is used to do the potentially recursive resolution. If `expandAllBranches` is true, then all possible branches\n * of the schema and its references, conditions and dependencies are returned.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be forwarded to all the APIs\n * @param schema - The schema for which retrieving a schema is desired\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param [rawFormData] - The current formData, if any, to assist retrieving a schema\n * @param [expandAllBranches=false] - Flag, if true, will return all possible branches of conditions, any/oneOf and\n * dependencies as a list of schemas\n * @param [recurseList=[]] - The optional, list of recursive references already processed\n * @returns - The schema(s) resulting from having its conditions, additional properties, references and dependencies\n * resolved. Multiple schemas may be returned if `expandAllBranches` is true.\n */\nexport function retrieveSchemaInternal(validator, schema, rootSchema, rawFormData, expandAllBranches = false, recurseList = []) {\n if (!isObject(schema)) {\n return [{}];\n }\n const resolvedSchemas = resolveSchema(validator, schema, rootSchema, expandAllBranches, recurseList, rawFormData);\n return resolvedSchemas.flatMap((s) => {\n let resolvedSchema = s;\n if (IF_KEY in resolvedSchema) {\n return resolveCondition(validator, resolvedSchema, rootSchema, expandAllBranches, recurseList, rawFormData);\n }\n if (ALL_OF_KEY in resolvedSchema) {\n // resolve allOf schemas\n if (expandAllBranches) {\n const { allOf, ...restOfSchema } = resolvedSchema;\n return [...allOf, restOfSchema];\n }\n try {\n resolvedSchema = mergeAllOf(resolvedSchema, {\n deep: false,\n });\n }\n catch (e) {\n console.warn('could not merge subschemas in allOf:\\n', e);\n const { allOf, ...resolvedSchemaWithoutAllOf } = resolvedSchema;\n return resolvedSchemaWithoutAllOf;\n }\n }\n const hasAdditionalProperties = ADDITIONAL_PROPERTIES_KEY in resolvedSchema && resolvedSchema.additionalProperties !== false;\n if (hasAdditionalProperties) {\n return stubExistingAdditionalProperties(validator, resolvedSchema, rootSchema, rawFormData);\n }\n return resolvedSchema;\n });\n}\n/** Resolves an `anyOf` or `oneOf` within a schema (if present) to the list of schemas returned from\n * `retrieveSchemaInternal()` for the best matching option. If `expandAllBranches` is true, then a list of schemas for ALL\n * options are retrieved and returned.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be forwarded to all the APIs\n * @param schema - The schema for which retrieving a schema is desired\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param expandAllBranches - Flag, if true, will return all possible branches of conditions, any/oneOf and dependencies\n * as a list of schemas\n * @param [rawFormData] - The current formData, if any, to assist retrieving a schema, defaults to an empty object\n * @returns - Either an array containing the best matching option or all options if `expandAllBranches` is true\n */\nexport function resolveAnyOrOneOfSchemas(validator, schema, rootSchema, expandAllBranches, rawFormData) {\n let anyOrOneOf;\n const { oneOf, anyOf, ...remaining } = schema;\n if (Array.isArray(oneOf)) {\n anyOrOneOf = oneOf;\n }\n else if (Array.isArray(anyOf)) {\n anyOrOneOf = anyOf;\n }\n if (anyOrOneOf) {\n // Ensure that during expand all branches we pass an object rather than undefined so that all options are interrogated\n const formData = rawFormData === undefined && expandAllBranches ? {} : rawFormData;\n const discriminator = getDiscriminatorFieldFromSchema(schema);\n anyOrOneOf = anyOrOneOf.map((s) => {\n // Due to anyOf/oneOf possibly using the same $ref we always pass a fresh recurse list array so that each option\n // can resolve recursive references independently\n return resolveAllReferences(s, rootSchema, []);\n });\n // Call this to trigger the set of isValid() calls that the schema parser will need\n const option = getFirstMatchingOption(validator, formData, anyOrOneOf, rootSchema, discriminator);\n if (expandAllBranches) {\n return anyOrOneOf.map((item) => mergeSchemas(remaining, item));\n }\n schema = mergeSchemas(remaining, anyOrOneOf[option]);\n }\n return [schema];\n}\n/** Resolves dependencies within a schema and its 'anyOf/oneOf' children. Passes the `expandAllBranches` flag down to\n * the `resolveAnyOrOneOfSchema()` and `processDependencies()` helper calls.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be forwarded to all the APIs\n * @param schema - The schema for which resolving a dependency is desired\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param expandAllBranches - Flag, if true, will return all possible branches of conditions, any/oneOf and dependencies\n * as a list of schemas\n * @param recurseList - The list of recursive references already processed\n * @param [formData] - The current formData, if any, to assist retrieving a schema\n * @returns - The list of schemas with their dependencies resolved\n */\nexport function resolveDependencies(validator, schema, rootSchema, expandAllBranches, recurseList, formData) {\n // Drop the dependencies from the source schema.\n const { dependencies, ...remainingSchema } = schema;\n const resolvedSchemas = resolveAnyOrOneOfSchemas(validator, remainingSchema, rootSchema, expandAllBranches, formData);\n return resolvedSchemas.flatMap((resolvedSchema) => processDependencies(validator, dependencies, resolvedSchema, rootSchema, expandAllBranches, recurseList, formData));\n}\n/** Processes all the `dependencies` recursively into the list of `resolvedSchema`s as needed. Passes the\n * `expandAllBranches` flag down to the `withDependentSchema()` and the recursive `processDependencies()` helper calls.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be forwarded to all the APIs\n * @param dependencies - The set of dependencies that needs to be processed\n * @param resolvedSchema - The schema for which processing dependencies is desired\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param expandAllBranches - Flag, if true, will return all possible branches of conditions, any/oneOf and dependencies\n * as a list of schemas\n * @param recurseList - The list of recursive references already processed\n * @param [formData] - The current formData, if any, to assist retrieving a schema\n * @returns - The schema with the `dependencies` resolved into it\n */\nexport function processDependencies(validator, dependencies, resolvedSchema, rootSchema, expandAllBranches, recurseList, formData) {\n let schemas = [resolvedSchema];\n // Process dependencies updating the local schema properties as appropriate.\n for (const dependencyKey in dependencies) {\n // Skip this dependency if its trigger property is not present.\n if (!expandAllBranches && get(formData, [dependencyKey]) === undefined) {\n continue;\n }\n // Skip this dependency if it is not included in the schema (such as when dependencyKey is itself a hidden dependency.)\n if (resolvedSchema.properties && !(dependencyKey in resolvedSchema.properties)) {\n continue;\n }\n const [remainingDependencies, dependencyValue] = splitKeyElementFromObject(dependencyKey, dependencies);\n if (Array.isArray(dependencyValue)) {\n schemas[0] = withDependentProperties(resolvedSchema, dependencyValue);\n }\n else if (isObject(dependencyValue)) {\n schemas = withDependentSchema(validator, resolvedSchema, rootSchema, dependencyKey, dependencyValue, expandAllBranches, recurseList, formData);\n }\n return schemas.flatMap((schema) => processDependencies(validator, remainingDependencies, schema, rootSchema, expandAllBranches, recurseList, formData));\n }\n return schemas;\n}\n/** Updates a schema with additionally required properties added\n *\n * @param schema - The schema for which resolving a dependent properties is desired\n * @param [additionallyRequired] - An optional array of additionally required names\n * @returns - The schema with the additional required values merged in\n */\nexport function withDependentProperties(schema, additionallyRequired) {\n if (!additionallyRequired) {\n return schema;\n }\n const required = Array.isArray(schema.required)\n ? Array.from(new Set([...schema.required, ...additionallyRequired]))\n : additionallyRequired;\n return { ...schema, required: required };\n}\n/** Merges a dependent schema into the `schema` dealing with oneOfs and references. Passes the `expandAllBranches` flag\n * down to the `retrieveSchemaInternal()`, `resolveReference()` and `withExactlyOneSubschema()` helper calls.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be forwarded to all the APIs\n * @param schema - The schema for which resolving a dependent schema is desired\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param dependencyKey - The key name of the dependency\n * @param dependencyValue - The potentially dependent schema\n * @param expandAllBranches - Flag, if true, will return all possible branches of conditions, any/oneOf and dependencies\n * as a list of schemas\n * @param recurseList - The list of recursive references already processed\n * @param [formData]- The current formData to assist retrieving a schema\n * @returns - The list of schemas with the dependent schema resolved into them\n */\nexport function withDependentSchema(validator, schema, rootSchema, dependencyKey, dependencyValue, expandAllBranches, recurseList, formData) {\n const dependentSchemas = retrieveSchemaInternal(validator, dependencyValue, rootSchema, formData, expandAllBranches, recurseList);\n return dependentSchemas.flatMap((dependent) => {\n const { oneOf, ...dependentSchema } = dependent;\n schema = mergeSchemas(schema, dependentSchema);\n // Since it does not contain oneOf, we return the original schema.\n if (oneOf === undefined) {\n return schema;\n }\n // Resolve $refs inside oneOf.\n const resolvedOneOfs = oneOf.map((subschema) => {\n if (typeof subschema === 'boolean' || !(REF_KEY in subschema)) {\n return [subschema];\n }\n return resolveReference(validator, subschema, rootSchema, expandAllBranches, recurseList, formData);\n });\n const allPermutations = getAllPermutationsOfXxxOf(resolvedOneOfs);\n return allPermutations.flatMap((resolvedOneOf) => withExactlyOneSubschema(validator, schema, rootSchema, dependencyKey, resolvedOneOf, expandAllBranches, recurseList, formData));\n });\n}\n/** Returns a list of `schema`s with the best choice from the `oneOf` options merged into it. If `expandAllBranches` is\n * true, then a list of schemas for ALL options are retrieved and returned. Passes the `expandAllBranches` flag down to\n * the `retrieveSchemaInternal()` helper call.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used to validate oneOf options\n * @param schema - The schema for which resolving a oneOf subschema is desired\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param dependencyKey - The key name of the oneOf dependency\n * @param oneOf - The list of schemas representing the oneOf options\n * @param expandAllBranches - Flag, if true, will return all possible branches of conditions, any/oneOf and dependencies\n * as a list of schemas\n * @param recurseList - The list of recursive references already processed\n * @param [formData] - The current formData to assist retrieving a schema\n * @returns - Either an array containing the best matching option or all options if `expandAllBranches` is true\n */\nexport function withExactlyOneSubschema(validator, schema, rootSchema, dependencyKey, oneOf, expandAllBranches, recurseList, formData) {\n const validSubschemas = oneOf.filter((subschema) => {\n if (typeof subschema === 'boolean' || !subschema || !subschema.properties) {\n return false;\n }\n const { [dependencyKey]: conditionPropertySchema } = subschema.properties;\n if (conditionPropertySchema) {\n const conditionSchema = {\n type: 'object',\n properties: {\n [dependencyKey]: conditionPropertySchema,\n },\n };\n return validator.isValid(conditionSchema, formData, rootSchema) || expandAllBranches;\n }\n return false;\n });\n if (!expandAllBranches && validSubschemas.length !== 1) {\n console.warn(\"ignoring oneOf in dependencies because there isn't exactly one subschema that is valid\");\n return [schema];\n }\n return validSubschemas.flatMap((s) => {\n const subschema = s;\n const [dependentSubschema] = splitKeyElementFromObject(dependencyKey, subschema.properties);\n const dependentSchema = { ...subschema, properties: dependentSubschema };\n const schemas = retrieveSchemaInternal(validator, dependentSchema, rootSchema, formData, expandAllBranches, recurseList);\n return schemas.map((s) => mergeSchemas(schema, s));\n });\n}\n//# sourceMappingURL=retrieveSchema.js.map","import get from 'lodash/get';\nimport has from 'lodash/has';\nimport isNumber from 'lodash/isNumber';\nimport isObject from 'lodash/isObject';\nimport isString from 'lodash/isString';\nimport reduce from 'lodash/reduce';\nimport times from 'lodash/times';\nimport getFirstMatchingOption from './getFirstMatchingOption';\nimport retrieveSchema, { resolveAllReferences } from './retrieveSchema';\nimport { ONE_OF_KEY, REF_KEY, JUNK_OPTION_ID, ANY_OF_KEY } from '../constants';\nimport guessType from '../guessType';\nimport getDiscriminatorFieldFromSchema from '../getDiscriminatorFieldFromSchema';\nimport getOptionMatchingSimpleDiscriminator from '../getOptionMatchingSimpleDiscriminator';\n/** A junk option used to determine when the getFirstMatchingOption call really matches an option rather than returning\n * the first item\n */\nexport const JUNK_OPTION = {\n type: 'object',\n $id: JUNK_OPTION_ID,\n properties: {\n __not_really_there__: {\n type: 'number',\n },\n },\n};\n/** Recursive function that calculates the score of a `formData` against the given `schema`. The computation is fairly\n * simple. Initially the total score is 0. When `schema.properties` object exists, then all the `key/value` pairs within\n * the object are processed as follows after obtaining the formValue from `formData` using the `key`:\n * - If the `value` contains a `$ref`, `calculateIndexScore()` is called recursively with the formValue and the new\n * schema that is the result of the ref in the schema being resolved and that sub-schema's resulting score is added to\n * the total.\n * - If the `value` contains a `oneOf` and there is a formValue, then score based on the index returned from calling\n * `getClosestMatchingOption()` of that oneOf.\n * - If the type of the `value` is 'object', `calculateIndexScore()` is called recursively with the formValue and the\n * `value` itself as the sub-schema, and the score is added to the total.\n * - If the type of the `value` matches the guessed-type of the `formValue`, the score is incremented by 1, UNLESS the\n * value has a `default` or `const`. In those case, if the `default` or `const` and the `formValue` match, the score\n * is incremented by another 1 otherwise it is decremented by 1.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param rootSchema - The root JSON schema of the entire form\n * @param schema - The schema for which the score is being calculated\n * @param formData - The form data associated with the schema, used to calculate the score\n * @returns - The score a schema against the formData\n */\nexport function calculateIndexScore(validator, rootSchema, schema, formData = {}) {\n let totalScore = 0;\n if (schema) {\n if (isObject(schema.properties)) {\n totalScore += reduce(schema.properties, (score, value, key) => {\n const formValue = get(formData, key);\n if (typeof value === 'boolean') {\n return score;\n }\n if (has(value, REF_KEY)) {\n const newSchema = retrieveSchema(validator, value, rootSchema, formValue);\n return score + calculateIndexScore(validator, rootSchema, newSchema, formValue || {});\n }\n if ((has(value, ONE_OF_KEY) || has(value, ANY_OF_KEY)) && formValue) {\n const key = has(value, ONE_OF_KEY) ? ONE_OF_KEY : ANY_OF_KEY;\n const discriminator = getDiscriminatorFieldFromSchema(value);\n return (score +\n getClosestMatchingOption(validator, rootSchema, formValue, get(value, key), -1, discriminator));\n }\n if (value.type === 'object') {\n return score + calculateIndexScore(validator, rootSchema, value, formValue || {});\n }\n if (value.type === guessType(formValue)) {\n // If the types match, then we bump the score by one\n let newScore = score + 1;\n if (value.default) {\n // If the schema contains a readonly default value score the value that matches the default higher and\n // any non-matching value lower\n newScore += formValue === value.default ? 1 : -1;\n }\n else if (value.const) {\n // If the schema contains a const value score the value that matches the default higher and\n // any non-matching value lower\n newScore += formValue === value.const ? 1 : -1;\n }\n // TODO eventually, deal with enums/arrays\n return newScore;\n }\n return score;\n }, 0);\n }\n else if (isString(schema.type) && schema.type === guessType(formData)) {\n totalScore += 1;\n }\n }\n return totalScore;\n}\n/** Determines which of the given `options` provided most closely matches the `formData`. Using\n * `getFirstMatchingOption()` to match two schemas that differ only by the readOnly, default or const value of a field\n * based on the `formData` and returns 0 when there is no match. Rather than passing in all the `options` at once to\n * this utility, instead an array of valid option indexes is created by iterating over the list of options, call\n * `getFirstMatchingOptions` with a list of one junk option and one good option, seeing if the good option is considered\n * matched.\n *\n * Once the list of valid indexes is created, if there is only one valid index, just return it. Otherwise, if there are\n * no valid indexes, then fill the valid indexes array with the indexes of all the options. Next, the index of the\n * option with the highest score is determined by iterating over the list of valid options, calling\n * `calculateIndexScore()` on each, comparing it against the current best score, and returning the index of the one that\n * eventually has the best score.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param rootSchema - The root JSON schema of the entire form\n * @param formData - The form data associated with the schema\n * @param options - The list of options that can be selected from\n * @param [selectedOption=-1] - The index of the currently selected option, defaulted to -1 if not specified\n * @param [discriminatorField] - The optional name of the field within the options object whose value is used to\n * determine which option is selected\n * @returns - The index of the option that is the closest match to the `formData` or the `selectedOption` if no match\n */\nexport default function getClosestMatchingOption(validator, rootSchema, formData, options, selectedOption = -1, discriminatorField) {\n // First resolve any refs in the options\n const resolvedOptions = options.map((option) => {\n return resolveAllReferences(option, rootSchema, []);\n });\n const simpleDiscriminatorMatch = getOptionMatchingSimpleDiscriminator(formData, options, discriminatorField);\n if (isNumber(simpleDiscriminatorMatch)) {\n return simpleDiscriminatorMatch;\n }\n // Reduce the array of options down to a list of the indexes that are considered matching options\n const allValidIndexes = resolvedOptions.reduce((validList, option, index) => {\n const testOptions = [JUNK_OPTION, option];\n const match = getFirstMatchingOption(validator, formData, testOptions, rootSchema, discriminatorField);\n // The match is the real option, so add its index to list of valid indexes\n if (match === 1) {\n validList.push(index);\n }\n return validList;\n }, []);\n // There is only one valid index, so return it!\n if (allValidIndexes.length === 1) {\n return allValidIndexes[0];\n }\n if (!allValidIndexes.length) {\n // No indexes were valid, so we'll score all the options, add all the indexes\n times(resolvedOptions.length, (i) => allValidIndexes.push(i));\n }\n const scoreCount = new Set();\n // Score all the options in the list of valid indexes and return the index with the best score\n const { bestIndex } = allValidIndexes.reduce((scoreData, index) => {\n const { bestScore } = scoreData;\n const option = resolvedOptions[index];\n const score = calculateIndexScore(validator, rootSchema, option, formData);\n scoreCount.add(score);\n if (score > bestScore) {\n return { bestIndex: index, bestScore: score };\n }\n return scoreData;\n }, { bestIndex: selectedOption, bestScore: 0 });\n // if all scores are the same go with selectedOption\n if (scoreCount.size === 1 && selectedOption >= 0) {\n return selectedOption;\n }\n return bestIndex;\n}\n//# sourceMappingURL=getClosestMatchingOption.js.map","import isObject from './isObject';\n/** Detects whether the given `schema` contains fixed items. This is the case when `schema.items` is a non-empty array\n * that only contains objects.\n *\n * @param schema - The schema in which to check for fixed items\n * @returns - True if there are fixed items in the schema, false otherwise\n */\nexport default function isFixedItems(schema) {\n return Array.isArray(schema.items) && schema.items.length > 0 && schema.items.every((item) => isObject(item));\n}\n//# sourceMappingURL=isFixedItems.js.map","import get from 'lodash/get';\nimport isObject from './isObject';\n/** Merges the `defaults` object of type `T` into the `formData` of type `T`\n *\n * When merging defaults and form data, we want to merge in this specific way:\n * - objects are deeply merged\n * - arrays are merged in such a way that:\n * - when the array is set in form data, only array entries set in form data\n * are deeply merged; additional entries from the defaults are ignored unless `mergeExtraArrayDefaults` is true, in\n * which case the extras are appended onto the end of the form data\n * - when the array is not set in form data, the default is copied over\n * - scalars are overwritten/set by form data\n *\n * @param [defaults] - The defaults to merge\n * @param [formData] - The form data into which the defaults will be merged\n * @param [mergeExtraArrayDefaults=false] - If true, any additional default array entries are appended onto the formData\n * @returns - The resulting merged form data with defaults\n */\nexport default function mergeDefaultsWithFormData(defaults, formData, mergeExtraArrayDefaults = false) {\n if (Array.isArray(formData)) {\n const defaultsArray = Array.isArray(defaults) ? defaults : [];\n const mapped = formData.map((value, idx) => {\n if (defaultsArray[idx]) {\n return mergeDefaultsWithFormData(defaultsArray[idx], value, mergeExtraArrayDefaults);\n }\n return value;\n });\n // Merge any extra defaults when mergeExtraArrayDefaults is true\n if (mergeExtraArrayDefaults && mapped.length < defaultsArray.length) {\n mapped.push(...defaultsArray.slice(mapped.length));\n }\n return mapped;\n }\n if (isObject(formData)) {\n const acc = Object.assign({}, defaults); // Prevent mutation of source object.\n return Object.keys(formData).reduce((acc, key) => {\n acc[key] = mergeDefaultsWithFormData(defaults ? get(defaults, key) : {}, get(formData, key), mergeExtraArrayDefaults);\n return acc;\n }, acc);\n }\n return formData;\n}\n//# sourceMappingURL=mergeDefaultsWithFormData.js.map","import isObject from './isObject';\n/** Recursively merge deeply nested objects.\n *\n * @param obj1 - The first object to merge\n * @param obj2 - The second object to merge\n * @param [concatArrays=false] - Optional flag that, when true, will cause arrays to be concatenated. Use\n * \"preventDuplicates\" to merge arrays in a manner that prevents any duplicate entries from being merged.\n * NOTE: Uses shallow comparison for the duplicate checking.\n * @returns - A new object that is the merge of the two given objects\n */\nexport default function mergeObjects(obj1, obj2, concatArrays = false) {\n return Object.keys(obj2).reduce((acc, key) => {\n const left = obj1 ? obj1[key] : {}, right = obj2[key];\n if (obj1 && key in obj1 && isObject(right)) {\n acc[key] = mergeObjects(left, right, concatArrays);\n }\n else if (concatArrays && Array.isArray(left) && Array.isArray(right)) {\n let toMerge = right;\n if (concatArrays === 'preventDuplicates') {\n toMerge = right.reduce((result, value) => {\n if (!left.includes(value)) {\n result.push(value);\n }\n return result;\n }, []);\n }\n acc[key] = left.concat(toMerge);\n }\n else {\n acc[key] = right;\n }\n return acc;\n }, Object.assign({}, obj1)); // Prevent mutation of source object.\n}\n//# sourceMappingURL=mergeObjects.js.map","import { CONST_KEY } from './constants';\n/** This function checks if the given `schema` matches a single constant value. This happens when either the schema has\n * an `enum` array with a single value or there is a `const` defined.\n *\n * @param schema - The schema for a field\n * @returns - True if the `schema` has a single constant value, false otherwise\n */\nexport default function isConstant(schema) {\n return (Array.isArray(schema.enum) && schema.enum.length === 1) || CONST_KEY in schema;\n}\n//# sourceMappingURL=isConstant.js.map","import isConstant from '../isConstant';\nimport retrieveSchema from './retrieveSchema';\n/** Checks to see if the `schema` combination represents a select\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param theSchema - The schema for which check for a select flag is desired\n * @param [rootSchema] - The root schema, used to primarily to look up `$ref`s\n * @returns - True if schema contains a select, otherwise false\n */\nexport default function isSelect(validator, theSchema, rootSchema = {}) {\n const schema = retrieveSchema(validator, theSchema, rootSchema, undefined);\n const altSchemas = schema.oneOf || schema.anyOf;\n if (Array.isArray(schema.enum)) {\n return true;\n }\n if (Array.isArray(altSchemas)) {\n return altSchemas.every((altSchemas) => typeof altSchemas !== 'boolean' && isConstant(altSchemas));\n }\n return false;\n}\n//# sourceMappingURL=isSelect.js.map","import isSelect from './isSelect';\n/** Checks to see if the `schema` combination represents a multi-select\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param schema - The schema for which check for a multi-select flag is desired\n * @param [rootSchema] - The root schema, used to primarily to look up `$ref`s\n * @returns - True if schema contains a multi-select, otherwise false\n */\nexport default function isMultiSelect(validator, schema, rootSchema) {\n if (!schema.uniqueItems || !schema.items || typeof schema.items === 'boolean') {\n return false;\n }\n return isSelect(validator, schema.items, rootSchema);\n}\n//# sourceMappingURL=isMultiSelect.js.map","import get from 'lodash/get';\nimport isEmpty from 'lodash/isEmpty';\nimport { ANY_OF_KEY, DEFAULT_KEY, DEPENDENCIES_KEY, PROPERTIES_KEY, ONE_OF_KEY, REF_KEY, ALL_OF_KEY, } from '../constants';\nimport findSchemaDefinition from '../findSchemaDefinition';\nimport getClosestMatchingOption from './getClosestMatchingOption';\nimport getDiscriminatorFieldFromSchema from '../getDiscriminatorFieldFromSchema';\nimport getSchemaType from '../getSchemaType';\nimport isObject from '../isObject';\nimport isFixedItems from '../isFixedItems';\nimport mergeDefaultsWithFormData from '../mergeDefaultsWithFormData';\nimport mergeObjects from '../mergeObjects';\nimport mergeSchemas from '../mergeSchemas';\nimport isMultiSelect from './isMultiSelect';\nimport retrieveSchema, { resolveDependencies } from './retrieveSchema';\n/** Enum that indicates how `schema.additionalItems` should be handled by the `getInnerSchemaForArrayItem()` function.\n */\nexport var AdditionalItemsHandling;\n(function (AdditionalItemsHandling) {\n AdditionalItemsHandling[AdditionalItemsHandling[\"Ignore\"] = 0] = \"Ignore\";\n AdditionalItemsHandling[AdditionalItemsHandling[\"Invert\"] = 1] = \"Invert\";\n AdditionalItemsHandling[AdditionalItemsHandling[\"Fallback\"] = 2] = \"Fallback\";\n})(AdditionalItemsHandling || (AdditionalItemsHandling = {}));\n/** Given a `schema` will return an inner schema that for an array item. This is computed differently based on the\n * `additionalItems` enum and the value of `idx`. There are four possible returns:\n * 1. If `idx` is >= 0, then if `schema.items` is an array the `idx`th element of the array is returned if it is a valid\n * index and not a boolean, otherwise it falls through to 3.\n * 2. If `schema.items` is not an array AND truthy and not a boolean, then `schema.items` is returned since it actually\n * is a schema, otherwise it falls through to 3.\n * 3. If `additionalItems` is not `AdditionalItemsHandling.Ignore` and `schema.additionalItems` is an object, then\n * `schema.additionalItems` is returned since it actually is a schema, otherwise it falls through to 4.\n * 4. {} is returned representing an empty schema\n *\n * @param schema - The schema from which to get the particular item\n * @param [additionalItems=AdditionalItemsHandling.Ignore] - How do we want to handle additional items?\n * @param [idx=-1] - Index, if non-negative, will be used to return the idx-th element in a `schema.items` array\n * @returns - The best fit schema object from the `schema` given the `additionalItems` and `idx` modifiers\n */\nexport function getInnerSchemaForArrayItem(schema, additionalItems = AdditionalItemsHandling.Ignore, idx = -1) {\n if (idx >= 0) {\n if (Array.isArray(schema.items) && idx < schema.items.length) {\n const item = schema.items[idx];\n if (typeof item !== 'boolean') {\n return item;\n }\n }\n }\n else if (schema.items && !Array.isArray(schema.items) && typeof schema.items !== 'boolean') {\n return schema.items;\n }\n if (additionalItems !== AdditionalItemsHandling.Ignore && isObject(schema.additionalItems)) {\n return schema.additionalItems;\n }\n return {};\n}\n/** Either add `computedDefault` at `key` into `obj` or not add it based on its value, the value of\n * `includeUndefinedValues`, the value of `emptyObjectFields` and if its parent field is required. Generally undefined\n * `computedDefault` values are added only when `includeUndefinedValues` is either true/\"excludeObjectChildren\". If `\n * includeUndefinedValues` is false and `emptyObjectFields` is not \"skipDefaults\", then non-undefined and non-empty-object\n * values will be added based on certain conditions.\n *\n * @param obj - The object into which the computed default may be added\n * @param key - The key into the object at which the computed default may be added\n * @param computedDefault - The computed default value that maybe should be added to the obj\n * @param includeUndefinedValues - Optional flag, if true, cause undefined values to be added as defaults.\n * If \"excludeObjectChildren\", cause undefined values for this object and pass `includeUndefinedValues` as\n * false when computing defaults for any nested object properties. If \"allowEmptyObject\", prevents undefined\n * values in this object while allow the object itself to be empty and passing `includeUndefinedValues` as\n * false when computing defaults for any nested object properties.\n * @param isParentRequired - The optional boolean that indicates whether the parent field is required\n * @param requiredFields - The list of fields that are required\n * @param experimental_defaultFormStateBehavior - Optional configuration object, if provided, allows users to override\n * default form state behavior\n */\nfunction maybeAddDefaultToObject(obj, key, computedDefault, includeUndefinedValues, isParentRequired, requiredFields = [], experimental_defaultFormStateBehavior = {}) {\n const { emptyObjectFields = 'populateAllDefaults' } = experimental_defaultFormStateBehavior;\n if (includeUndefinedValues) {\n obj[key] = computedDefault;\n }\n else if (emptyObjectFields !== 'skipDefaults') {\n if (isObject(computedDefault)) {\n // If isParentRequired is undefined, then we are at the root level of the schema so defer to the requiredness of\n // the field key itself in the `requiredField` list\n const isSelfOrParentRequired = isParentRequired === undefined ? requiredFields.includes(key) : isParentRequired;\n // Store computedDefault if it's a non-empty object(e.g. not {}) and satisfies certain conditions\n // Condition 1: If computedDefault is not empty or if the key is a required field\n // Condition 2: If the parent object is required or emptyObjectFields is not 'populateRequiredDefaults'\n if ((!isEmpty(computedDefault) || requiredFields.includes(key)) &&\n (isSelfOrParentRequired || emptyObjectFields !== 'populateRequiredDefaults')) {\n obj[key] = computedDefault;\n }\n }\n else if (\n // Store computedDefault if it's a defined primitive (e.g., true) and satisfies certain conditions\n // Condition 1: computedDefault is not undefined\n // Condition 2: If emptyObjectFields is 'populateAllDefaults' or if the key is a required field\n computedDefault !== undefined &&\n (emptyObjectFields === 'populateAllDefaults' || requiredFields.includes(key))) {\n obj[key] = computedDefault;\n }\n }\n}\n/** Computes the defaults for the current `schema` given the `rawFormData` and `parentDefaults` if any. This drills into\n * each level of the schema, recursively, to fill out every level of defaults provided by the schema.\n *\n * @param validator - an implementation of the `ValidatorType` interface that will be used when necessary\n * @param rawSchema - The schema for which the default state is desired\n * @param [props] - Optional props for this function\n * @param [props.parentDefaults] - Any defaults provided by the parent field in the schema\n * @param [props.rootSchema] - The options root schema, used to primarily to look up `$ref`s\n * @param [props.rawFormData] - The current formData, if any, onto which to provide any missing defaults\n * @param [props.includeUndefinedValues=false] - Optional flag, if true, cause undefined values to be added as defaults.\n * If \"excludeObjectChildren\", cause undefined values for this object and pass `includeUndefinedValues` as\n * false when computing defaults for any nested object properties.\n * @param [props._recurseList=[]] - The list of ref names currently being recursed, used to prevent infinite recursion\n * @param [props.experimental_defaultFormStateBehavior] Optional configuration object, if provided, allows users to override default form state behavior\n * @param [props.required] - Optional flag, if true, indicates this schema was required in the parent schema.\n * @returns - The resulting `formData` with all the defaults provided\n */\nexport function computeDefaults(validator, rawSchema, { parentDefaults, rawFormData, rootSchema = {}, includeUndefinedValues = false, _recurseList = [], experimental_defaultFormStateBehavior = undefined, required, } = {}) {\n var _a, _b;\n const formData = (isObject(rawFormData) ? rawFormData : {});\n const schema = isObject(rawSchema) ? rawSchema : {};\n // Compute the defaults recursively: give highest priority to deepest nodes.\n let defaults = parentDefaults;\n // If we get a new schema, then we need to recompute defaults again for the new schema found.\n let schemaToCompute = null;\n let updatedRecurseList = _recurseList;\n if (isObject(defaults) && isObject(schema.default)) {\n // For object defaults, only override parent defaults that are defined in\n // schema.default.\n defaults = mergeObjects(defaults, schema.default);\n }\n else if (DEFAULT_KEY in schema) {\n defaults = schema.default;\n }\n else if (REF_KEY in schema) {\n const refName = schema[REF_KEY];\n // Use referenced schema defaults for this node.\n if (!_recurseList.includes(refName)) {\n updatedRecurseList = _recurseList.concat(refName);\n schemaToCompute = findSchemaDefinition(refName, rootSchema);\n }\n }\n else if (DEPENDENCIES_KEY in schema) {\n const resolvedSchema = resolveDependencies(validator, schema, rootSchema, false, [], formData);\n schemaToCompute = resolvedSchema[0]; // pick the first element from resolve dependencies\n }\n else if (isFixedItems(schema)) {\n defaults = schema.items.map((itemSchema, idx) => computeDefaults(validator, itemSchema, {\n rootSchema,\n includeUndefinedValues,\n _recurseList,\n experimental_defaultFormStateBehavior,\n parentDefaults: Array.isArray(parentDefaults) ? parentDefaults[idx] : undefined,\n rawFormData: formData,\n required,\n }));\n }\n else if (ONE_OF_KEY in schema) {\n const { oneOf, ...remaining } = schema;\n if (oneOf.length === 0) {\n return undefined;\n }\n const discriminator = getDiscriminatorFieldFromSchema(schema);\n schemaToCompute = oneOf[getClosestMatchingOption(validator, rootSchema, isEmpty(formData) ? undefined : formData, oneOf, 0, discriminator)];\n schemaToCompute = mergeSchemas(remaining, schemaToCompute);\n }\n else if (ANY_OF_KEY in schema) {\n const { anyOf, ...remaining } = schema;\n if (anyOf.length === 0) {\n return undefined;\n }\n const discriminator = getDiscriminatorFieldFromSchema(schema);\n schemaToCompute = anyOf[getClosestMatchingOption(validator, rootSchema, isEmpty(formData) ? undefined : formData, anyOf, 0, discriminator)];\n schemaToCompute = mergeSchemas(remaining, schemaToCompute);\n }\n if (schemaToCompute) {\n return computeDefaults(validator, schemaToCompute, {\n rootSchema,\n includeUndefinedValues,\n _recurseList: updatedRecurseList,\n experimental_defaultFormStateBehavior,\n parentDefaults: defaults,\n rawFormData: formData,\n required,\n });\n }\n // No defaults defined for this node, fallback to generic typed ones.\n if (defaults === undefined) {\n defaults = schema.default;\n }\n switch (getSchemaType(schema)) {\n // We need to recurse for object schema inner default values.\n case 'object': {\n // This is a custom addition that fixes this issue:\n // https://github.com/rjsf-team/react-jsonschema-form/issues/3832\n const retrievedSchema = (experimental_defaultFormStateBehavior === null || experimental_defaultFormStateBehavior === void 0 ? void 0 : experimental_defaultFormStateBehavior.allOf) === 'populateDefaults' && ALL_OF_KEY in schema\n ? retrieveSchema(validator, schema, rootSchema, formData)\n : schema;\n const objectDefaults = Object.keys(retrievedSchema.properties || {}).reduce((acc, key) => {\n var _a;\n // Compute the defaults for this node, with the parent defaults we might\n // have from a previous run: defaults[key].\n const computedDefault = computeDefaults(validator, get(retrievedSchema, [PROPERTIES_KEY, key]), {\n rootSchema,\n _recurseList,\n experimental_defaultFormStateBehavior,\n includeUndefinedValues: includeUndefinedValues === true,\n parentDefaults: get(defaults, [key]),\n rawFormData: get(formData, [key]),\n required: (_a = retrievedSchema.required) === null || _a === void 0 ? void 0 : _a.includes(key),\n });\n maybeAddDefaultToObject(acc, key, computedDefault, includeUndefinedValues, required, retrievedSchema.required, experimental_defaultFormStateBehavior);\n return acc;\n }, {});\n if (retrievedSchema.additionalProperties) {\n // as per spec additionalProperties may be either schema or boolean\n const additionalPropertiesSchema = isObject(retrievedSchema.additionalProperties)\n ? retrievedSchema.additionalProperties\n : {};\n const keys = new Set();\n if (isObject(defaults)) {\n Object.keys(defaults)\n .filter((key) => !retrievedSchema.properties || !retrievedSchema.properties[key])\n .forEach((key) => keys.add(key));\n }\n const formDataRequired = [];\n Object.keys(formData)\n .filter((key) => !retrievedSchema.properties || !retrievedSchema.properties[key])\n .forEach((key) => {\n keys.add(key);\n formDataRequired.push(key);\n });\n keys.forEach((key) => {\n var _a;\n const computedDefault = computeDefaults(validator, additionalPropertiesSchema, {\n rootSchema,\n _recurseList,\n experimental_defaultFormStateBehavior,\n includeUndefinedValues: includeUndefinedValues === true,\n parentDefaults: get(defaults, [key]),\n rawFormData: get(formData, [key]),\n required: (_a = retrievedSchema.required) === null || _a === void 0 ? void 0 : _a.includes(key),\n });\n // Since these are additional properties we don't need to add the `experimental_defaultFormStateBehavior` prop\n maybeAddDefaultToObject(objectDefaults, key, computedDefault, includeUndefinedValues, required, formDataRequired);\n });\n }\n return objectDefaults;\n }\n case 'array': {\n const neverPopulate = ((_a = experimental_defaultFormStateBehavior === null || experimental_defaultFormStateBehavior === void 0 ? void 0 : experimental_defaultFormStateBehavior.arrayMinItems) === null || _a === void 0 ? void 0 : _a.populate) === 'never';\n const ignoreMinItemsFlagSet = ((_b = experimental_defaultFormStateBehavior === null || experimental_defaultFormStateBehavior === void 0 ? void 0 : experimental_defaultFormStateBehavior.arrayMinItems) === null || _b === void 0 ? void 0 : _b.populate) === 'requiredOnly';\n // Inject defaults into existing array defaults\n if (Array.isArray(defaults)) {\n defaults = defaults.map((item, idx) => {\n const schemaItem = getInnerSchemaForArrayItem(schema, AdditionalItemsHandling.Fallback, idx);\n return computeDefaults(validator, schemaItem, {\n rootSchema,\n _recurseList,\n experimental_defaultFormStateBehavior,\n parentDefaults: item,\n required,\n });\n });\n }\n // Deeply inject defaults into already existing form data\n if (Array.isArray(rawFormData)) {\n const schemaItem = getInnerSchemaForArrayItem(schema);\n if (neverPopulate) {\n defaults = rawFormData;\n }\n else {\n defaults = rawFormData.map((item, idx) => {\n return computeDefaults(validator, schemaItem, {\n rootSchema,\n _recurseList,\n experimental_defaultFormStateBehavior,\n rawFormData: item,\n parentDefaults: get(defaults, [idx]),\n required,\n });\n });\n }\n }\n if (neverPopulate) {\n return defaults !== null && defaults !== void 0 ? defaults : [];\n }\n if (ignoreMinItemsFlagSet && !required) {\n // If no form data exists or defaults are set leave the field empty/non-existent, otherwise\n // return form data/defaults\n return defaults ? defaults : undefined;\n }\n const defaultsLength = Array.isArray(defaults) ? defaults.length : 0;\n if (!schema.minItems ||\n isMultiSelect(validator, schema, rootSchema) ||\n schema.minItems <= defaultsLength) {\n return defaults ? defaults : [];\n }\n const defaultEntries = (defaults || []);\n const fillerSchema = getInnerSchemaForArrayItem(schema, AdditionalItemsHandling.Invert);\n const fillerDefault = fillerSchema.default;\n // Calculate filler entries for remaining items (minItems - existing raw data/defaults)\n const fillerEntries = new Array(schema.minItems - defaultsLength).fill(computeDefaults(validator, fillerSchema, {\n parentDefaults: fillerDefault,\n rootSchema,\n _recurseList,\n experimental_defaultFormStateBehavior,\n required,\n }));\n // then fill up the rest with either the item default or empty, up to minItems\n return defaultEntries.concat(fillerEntries);\n }\n }\n return defaults;\n}\n/** Returns the superset of `formData` that includes the given set updated to include any missing fields that have\n * computed to have defaults provided in the `schema`.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param theSchema - The schema for which the default state is desired\n * @param [formData] - The current formData, if any, onto which to provide any missing defaults\n * @param [rootSchema] - The root schema, used to primarily to look up `$ref`s\n * @param [includeUndefinedValues=false] - Optional flag, if true, cause undefined values to be added as defaults.\n * If \"excludeObjectChildren\", cause undefined values for this object and pass `includeUndefinedValues` as\n * false when computing defaults for any nested object properties.\n * @param [experimental_defaultFormStateBehavior] Optional configuration object, if provided, allows users to override default form state behavior\n * @returns - The resulting `formData` with all the defaults provided\n */\nexport default function getDefaultFormState(validator, theSchema, formData, rootSchema, includeUndefinedValues = false, experimental_defaultFormStateBehavior) {\n if (!isObject(theSchema)) {\n throw new Error('Invalid schema: ' + theSchema);\n }\n const schema = retrieveSchema(validator, theSchema, rootSchema, formData);\n const defaults = computeDefaults(validator, schema, {\n rootSchema,\n includeUndefinedValues,\n experimental_defaultFormStateBehavior,\n rawFormData: formData,\n });\n if (formData === undefined || formData === null || (typeof formData === 'number' && isNaN(formData))) {\n // No form data? Use schema defaults.\n return defaults;\n }\n const { mergeExtraDefaults } = (experimental_defaultFormStateBehavior === null || experimental_defaultFormStateBehavior === void 0 ? void 0 : experimental_defaultFormStateBehavior.arrayMinItems) || {};\n if (isObject(formData)) {\n return mergeDefaultsWithFormData(defaults, formData, mergeExtraDefaults);\n }\n if (Array.isArray(formData)) {\n return mergeDefaultsWithFormData(defaults, formData, mergeExtraDefaults);\n }\n return formData;\n}\n//# sourceMappingURL=getDefaultFormState.js.map","import getUiOptions from './getUiOptions';\n/** Checks to see if the `uiSchema` contains the `widget` field and that the widget is not `hidden`\n *\n * @param uiSchema - The UI Schema from which to detect if it is customized\n * @returns - True if the `uiSchema` describes a custom widget, false otherwise\n */\nexport default function isCustomWidget(uiSchema = {}) {\n return (\n // TODO: Remove the `&& uiSchema['ui:widget'] !== 'hidden'` once we support hidden widgets for arrays.\n // https://rjsf-team.github.io/react-jsonschema-form/docs/usage/widgets/#hidden-widgets\n 'widget' in getUiOptions(uiSchema) && getUiOptions(uiSchema)['widget'] !== 'hidden');\n}\n//# sourceMappingURL=isCustomWidget.js.map","import { UI_WIDGET_KEY } from '../constants';\nimport retrieveSchema from './retrieveSchema';\n/** Checks to see if the `schema` and `uiSchema` combination represents an array of files\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param schema - The schema for which check for array of files flag is desired\n * @param [uiSchema={}] - The UI schema from which to check the widget\n * @param [rootSchema] - The root schema, used to primarily to look up `$ref`s\n * @returns - True if schema/uiSchema contains an array of files, otherwise false\n */\nexport default function isFilesArray(validator, schema, uiSchema = {}, rootSchema) {\n if (uiSchema[UI_WIDGET_KEY] === 'files') {\n return true;\n }\n if (schema.items) {\n const itemsSchema = retrieveSchema(validator, schema.items, rootSchema);\n return itemsSchema.type === 'string' && itemsSchema.format === 'data-url';\n }\n return false;\n}\n//# sourceMappingURL=isFilesArray.js.map","import { UI_FIELD_KEY, UI_WIDGET_KEY } from '../constants';\nimport getSchemaType from '../getSchemaType';\nimport getUiOptions from '../getUiOptions';\nimport isCustomWidget from '../isCustomWidget';\nimport isFilesArray from './isFilesArray';\nimport isMultiSelect from './isMultiSelect';\n/** Determines whether the combination of `schema` and `uiSchema` properties indicates that the label for the `schema`\n * should be displayed in a UI.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param schema - The schema for which the display label flag is desired\n * @param [uiSchema={}] - The UI schema from which to derive potentially displayable information\n * @param [rootSchema] - The root schema, used to primarily to look up `$ref`s\n * @param [globalOptions={}] - The optional Global UI Schema from which to get any fallback `xxx` options\n * @returns - True if the label should be displayed or false if it should not\n */\nexport default function getDisplayLabel(validator, schema, uiSchema = {}, rootSchema, globalOptions) {\n const uiOptions = getUiOptions(uiSchema, globalOptions);\n const { label = true } = uiOptions;\n let displayLabel = !!label;\n const schemaType = getSchemaType(schema);\n if (schemaType === 'array') {\n displayLabel =\n isMultiSelect(validator, schema, rootSchema) ||\n isFilesArray(validator, schema, uiSchema, rootSchema) ||\n isCustomWidget(uiSchema);\n }\n if (schemaType === 'object') {\n displayLabel = false;\n }\n if (schemaType === 'boolean' && !uiSchema[UI_WIDGET_KEY]) {\n displayLabel = false;\n }\n if (uiSchema[UI_FIELD_KEY]) {\n displayLabel = false;\n }\n return displayLabel;\n}\n//# sourceMappingURL=getDisplayLabel.js.map","import isEmpty from 'lodash/isEmpty';\nimport mergeObjects from '../mergeObjects';\n/** Merges the errors in `additionalErrorSchema` into the existing `validationData` by combining the hierarchies in the\n * two `ErrorSchema`s and then appending the error list from the `additionalErrorSchema` obtained by calling\n * `validator.toErrorList()` onto the `errors` in the `validationData`. If no `additionalErrorSchema` is passed, then\n * `validationData` is returned.\n *\n * @param validator - The validator used to convert an ErrorSchema to a list of errors\n * @param validationData - The current `ValidationData` into which to merge the additional errors\n * @param [additionalErrorSchema] - The additional set of errors in an `ErrorSchema`\n * @returns - The `validationData` with the additional errors from `additionalErrorSchema` merged into it, if provided.\n * @deprecated - Use the `validationDataMerge()` function exported from `@rjsf/utils` instead. This function will be\n * removed in the next major release.\n */\nexport default function mergeValidationData(validator, validationData, additionalErrorSchema) {\n if (!additionalErrorSchema) {\n return validationData;\n }\n const { errors: oldErrors, errorSchema: oldErrorSchema } = validationData;\n let errors = validator.toErrorList(additionalErrorSchema);\n let errorSchema = additionalErrorSchema;\n if (!isEmpty(oldErrorSchema)) {\n errorSchema = mergeObjects(oldErrorSchema, additionalErrorSchema, true);\n errors = [...oldErrors].concat(errors);\n }\n return { errorSchema, errors };\n}\n//# sourceMappingURL=mergeValidationData.js.map","import get from 'lodash/get';\nimport has from 'lodash/has';\nimport { PROPERTIES_KEY, REF_KEY } from '../constants';\nimport retrieveSchema from './retrieveSchema';\nconst NO_VALUE = Symbol('no Value');\n/** Sanitize the `data` associated with the `oldSchema` so it is considered appropriate for the `newSchema`. If the new\n * schema does not contain any properties, then `undefined` is returned to clear all the form data. Due to the nature\n * of schemas, this sanitization happens recursively for nested objects of data. Also, any properties in the old schema\n * that are non-existent in the new schema are set to `undefined`. The data sanitization process has the following flow:\n *\n * - If the new schema is an object that contains a `properties` object then:\n * - Create a `removeOldSchemaData` object, setting each key in the `oldSchema.properties` having `data` to undefined\n * - Create an empty `nestedData` object for use in the key filtering below:\n * - Iterate over each key in the `newSchema.properties` as follows:\n * - Get the `formValue` of the key from the `data`\n * - Get the `oldKeySchema` and `newKeyedSchema` for the key, defaulting to `{}` when it doesn't exist\n * - Retrieve the schema for any refs within each `oldKeySchema` and/or `newKeySchema`\n * - Get the types of the old and new keyed schemas and if the old doesn't exist or the old & new are the same then:\n * - If `removeOldSchemaData` has an entry for the key, delete it since the new schema has the same property\n * - If type of the key in the new schema is `object`:\n * - Store the value from the recursive `sanitizeDataForNewSchema` call in `nestedData[key]`\n * - Otherwise, check for default or const values:\n * - Get the old and new `default` values from the schema and check:\n * - If the new `default` value does not match the form value:\n * - If the old `default` value DOES match the form value, then:\n * - Replace `removeOldSchemaData[key]` with the new `default`\n * - Otherwise, if the new schema is `readOnly` then replace `removeOldSchemaData[key]` with undefined\n * - Get the old and new `const` values from the schema and check:\n * - If the new `const` value does not match the form value:\n * - If the old `const` value DOES match the form value, then:\n * - Replace `removeOldSchemaData[key]` with the new `const`\n * - Otherwise, replace `removeOldSchemaData[key]` with undefined\n * - Once all keys have been processed, return an object built as follows:\n * - `{ ...removeOldSchemaData, ...nestedData, ...pick(data, keysToKeep) }`\n * - If the new and old schema types are array and the `data` is an array then:\n * - If the type of the old and new schema `items` are a non-array objects:\n * - Retrieve the schema for any refs within each `oldKeySchema.items` and/or `newKeySchema.items`\n * - If the `type`s of both items are the same (or the old does not have a type):\n * - If the type is \"object\", then:\n * - For each element in the `data` recursively sanitize the data, stopping at `maxItems` if specified\n * - Otherwise, just return the `data` removing any values after `maxItems` if it is set\n * - If the type of the old and new schema `items` are booleans of the same value, return `data` as is\n * - Otherwise return `undefined`\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param rootSchema - The root JSON schema of the entire form\n * @param [newSchema] - The new schema for which the data is being sanitized\n * @param [oldSchema] - The old schema from which the data originated\n * @param [data={}] - The form data associated with the schema, defaulting to an empty object when undefined\n * @returns - The new form data, with all the fields uniquely associated with the old schema set\n * to `undefined`. Will return `undefined` if the new schema is not an object containing properties.\n */\nexport default function sanitizeDataForNewSchema(validator, rootSchema, newSchema, oldSchema, data = {}) {\n // By default, we will clear the form data\n let newFormData;\n // If the new schema is of type object and that object contains a list of properties\n if (has(newSchema, PROPERTIES_KEY)) {\n // Create an object containing root-level keys in the old schema, setting each key to undefined to remove the data\n const removeOldSchemaData = {};\n if (has(oldSchema, PROPERTIES_KEY)) {\n const properties = get(oldSchema, PROPERTIES_KEY, {});\n Object.keys(properties).forEach((key) => {\n if (has(data, key)) {\n removeOldSchemaData[key] = undefined;\n }\n });\n }\n const keys = Object.keys(get(newSchema, PROPERTIES_KEY, {}));\n // Create a place to store nested data that will be a side-effect of the filter\n const nestedData = {};\n keys.forEach((key) => {\n const formValue = get(data, key);\n let oldKeyedSchema = get(oldSchema, [PROPERTIES_KEY, key], {});\n let newKeyedSchema = get(newSchema, [PROPERTIES_KEY, key], {});\n // Resolve the refs if they exist\n if (has(oldKeyedSchema, REF_KEY)) {\n oldKeyedSchema = retrieveSchema(validator, oldKeyedSchema, rootSchema, formValue);\n }\n if (has(newKeyedSchema, REF_KEY)) {\n newKeyedSchema = retrieveSchema(validator, newKeyedSchema, rootSchema, formValue);\n }\n // Now get types and see if they are the same\n const oldSchemaTypeForKey = get(oldKeyedSchema, 'type');\n const newSchemaTypeForKey = get(newKeyedSchema, 'type');\n // Check if the old option has the same key with the same type\n if (!oldSchemaTypeForKey || oldSchemaTypeForKey === newSchemaTypeForKey) {\n if (has(removeOldSchemaData, key)) {\n // SIDE-EFFECT: remove the undefined value for a key that has the same type between the old and new schemas\n delete removeOldSchemaData[key];\n }\n // If it is an object, we'll recurse and store the resulting sanitized data for the key\n if (newSchemaTypeForKey === 'object' || (newSchemaTypeForKey === 'array' && Array.isArray(formValue))) {\n // SIDE-EFFECT: process the new schema type of object recursively to save iterations\n const itemData = sanitizeDataForNewSchema(validator, rootSchema, newKeyedSchema, oldKeyedSchema, formValue);\n if (itemData !== undefined || newSchemaTypeForKey === 'array') {\n // only put undefined values for the array type and not the object type\n nestedData[key] = itemData;\n }\n }\n else {\n // Ok, the non-object types match, let's make sure that a default or a const of a different value is replaced\n // with the new default or const. This allows the case where two schemas differ that only by the default/const\n // value to be properly selected\n const newOptionDefault = get(newKeyedSchema, 'default', NO_VALUE);\n const oldOptionDefault = get(oldKeyedSchema, 'default', NO_VALUE);\n if (newOptionDefault !== NO_VALUE && newOptionDefault !== formValue) {\n if (oldOptionDefault === formValue) {\n // If the old default matches the formValue, we'll update the new value to match the new default\n removeOldSchemaData[key] = newOptionDefault;\n }\n else if (get(newKeyedSchema, 'readOnly') === true) {\n // If the new schema has the default set to read-only, treat it like a const and remove the value\n removeOldSchemaData[key] = undefined;\n }\n }\n const newOptionConst = get(newKeyedSchema, 'const', NO_VALUE);\n const oldOptionConst = get(oldKeyedSchema, 'const', NO_VALUE);\n if (newOptionConst !== NO_VALUE && newOptionConst !== formValue) {\n // Since this is a const, if the old value matches, replace the value with the new const otherwise clear it\n removeOldSchemaData[key] = oldOptionConst === formValue ? newOptionConst : undefined;\n }\n }\n }\n });\n newFormData = {\n ...(typeof data == 'string' || Array.isArray(data) ? undefined : data),\n ...removeOldSchemaData,\n ...nestedData,\n };\n // First apply removing the old schema data, then apply the nested data, then apply the old data keys to keep\n }\n else if (get(oldSchema, 'type') === 'array' && get(newSchema, 'type') === 'array' && Array.isArray(data)) {\n let oldSchemaItems = get(oldSchema, 'items');\n let newSchemaItems = get(newSchema, 'items');\n // If any of the array types `items` are arrays (remember arrays are objects) then we'll just drop the data\n // Eventually, we may want to deal with when either of the `items` are arrays since those tuple validations\n if (typeof oldSchemaItems === 'object' &&\n typeof newSchemaItems === 'object' &&\n !Array.isArray(oldSchemaItems) &&\n !Array.isArray(newSchemaItems)) {\n if (has(oldSchemaItems, REF_KEY)) {\n oldSchemaItems = retrieveSchema(validator, oldSchemaItems, rootSchema, data);\n }\n if (has(newSchemaItems, REF_KEY)) {\n newSchemaItems = retrieveSchema(validator, newSchemaItems, rootSchema, data);\n }\n // Now get types and see if they are the same\n const oldSchemaType = get(oldSchemaItems, 'type');\n const newSchemaType = get(newSchemaItems, 'type');\n // Check if the old option has the same key with the same type\n if (!oldSchemaType || oldSchemaType === newSchemaType) {\n const maxItems = get(newSchema, 'maxItems', -1);\n if (newSchemaType === 'object') {\n newFormData = data.reduce((newValue, aValue) => {\n const itemValue = sanitizeDataForNewSchema(validator, rootSchema, newSchemaItems, oldSchemaItems, aValue);\n if (itemValue !== undefined && (maxItems < 0 || newValue.length < maxItems)) {\n newValue.push(itemValue);\n }\n return newValue;\n }, []);\n }\n else {\n newFormData = maxItems > 0 && data.length > maxItems ? data.slice(0, maxItems) : data;\n }\n }\n }\n else if (typeof oldSchemaItems === 'boolean' &&\n typeof newSchemaItems === 'boolean' &&\n oldSchemaItems === newSchemaItems) {\n // If they are both booleans and have the same value just return the data as is otherwise fall-thru to undefined\n newFormData = data;\n }\n // Also probably want to deal with `prefixItems` as tuples with the latest 2020 draft\n }\n return newFormData;\n}\n//# sourceMappingURL=sanitizeDataForNewSchema.js.map","import get from 'lodash/get';\nimport isEqual from 'lodash/isEqual';\nimport { ALL_OF_KEY, DEPENDENCIES_KEY, ID_KEY, ITEMS_KEY, PROPERTIES_KEY, REF_KEY } from '../constants';\nimport isObject from '../isObject';\nimport retrieveSchema from './retrieveSchema';\nimport getSchemaType from '../getSchemaType';\n/** An internal helper that generates an `IdSchema` object for the `schema`, recursively with protection against\n * infinite recursion\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param schema - The schema for which the `IdSchema` is desired\n * @param idPrefix - The prefix to use for the id\n * @param idSeparator - The separator to use for the path segments in the id\n * @param [id] - The base id for the schema\n * @param [rootSchema] - The root schema, used to primarily to look up `$ref`s\n * @param [formData] - The current formData, if any, to assist retrieving a schema\n * @param [_recurseList=[]] - The list of retrieved schemas currently being recursed, used to prevent infinite recursion\n * @returns - The `IdSchema` object for the `schema`\n */\nfunction toIdSchemaInternal(validator, schema, idPrefix, idSeparator, id, rootSchema, formData, _recurseList = []) {\n if (REF_KEY in schema || DEPENDENCIES_KEY in schema || ALL_OF_KEY in schema) {\n const _schema = retrieveSchema(validator, schema, rootSchema, formData);\n const sameSchemaIndex = _recurseList.findIndex((item) => isEqual(item, _schema));\n if (sameSchemaIndex === -1) {\n return toIdSchemaInternal(validator, _schema, idPrefix, idSeparator, id, rootSchema, formData, _recurseList.concat(_schema));\n }\n }\n if (ITEMS_KEY in schema && !get(schema, [ITEMS_KEY, REF_KEY])) {\n return toIdSchemaInternal(validator, get(schema, ITEMS_KEY), idPrefix, idSeparator, id, rootSchema, formData, _recurseList);\n }\n const $id = id || idPrefix;\n const idSchema = { $id };\n if (getSchemaType(schema) === 'object' && PROPERTIES_KEY in schema) {\n for (const name in schema.properties) {\n const field = get(schema, [PROPERTIES_KEY, name]);\n const fieldId = idSchema[ID_KEY] + idSeparator + name;\n idSchema[name] = toIdSchemaInternal(validator, isObject(field) ? field : {}, idPrefix, idSeparator, fieldId, rootSchema, \n // It's possible that formData is not an object -- this can happen if an\n // array item has just been added, but not populated with data yet\n get(formData, [name]), _recurseList);\n }\n }\n return idSchema;\n}\n/** Generates an `IdSchema` object for the `schema`, recursively\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param schema - The schema for which the `IdSchema` is desired\n * @param [id] - The base id for the schema\n * @param [rootSchema] - The root schema, used to primarily to look up `$ref`s\n * @param [formData] - The current formData, if any, to assist retrieving a schema\n * @param [idPrefix='root'] - The prefix to use for the id\n * @param [idSeparator='_'] - The separator to use for the path segments in the id\n * @returns - The `IdSchema` object for the `schema`\n */\nexport default function toIdSchema(validator, schema, id, rootSchema, formData, idPrefix = 'root', idSeparator = '_') {\n return toIdSchemaInternal(validator, schema, idPrefix, idSeparator, id, rootSchema, formData);\n}\n//# sourceMappingURL=toIdSchema.js.map","import get from 'lodash/get';\nimport isEqual from 'lodash/isEqual';\nimport set from 'lodash/set';\nimport { ALL_OF_KEY, ANY_OF_KEY, ADDITIONAL_PROPERTIES_KEY, DEPENDENCIES_KEY, ITEMS_KEY, NAME_KEY, ONE_OF_KEY, PROPERTIES_KEY, REF_KEY, RJSF_ADDITONAL_PROPERTIES_FLAG, } from '../constants';\nimport getDiscriminatorFieldFromSchema from '../getDiscriminatorFieldFromSchema';\nimport getClosestMatchingOption from './getClosestMatchingOption';\nimport retrieveSchema from './retrieveSchema';\n/** An internal helper that generates an `PathSchema` object for the `schema`, recursively with protection against\n * infinite recursion\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param schema - The schema for which the `PathSchema` is desired\n * @param [name=''] - The base name for the schema\n * @param [rootSchema] - The root schema, used to primarily to look up `$ref`s\n * @param [formData] - The current formData, if any, to assist retrieving a schema\n * @param [_recurseList=[]] - The list of retrieved schemas currently being recursed, used to prevent infinite recursion\n * @returns - The `PathSchema` object for the `schema`\n */\nfunction toPathSchemaInternal(validator, schema, name, rootSchema, formData, _recurseList = []) {\n if (REF_KEY in schema || DEPENDENCIES_KEY in schema || ALL_OF_KEY in schema) {\n const _schema = retrieveSchema(validator, schema, rootSchema, formData);\n const sameSchemaIndex = _recurseList.findIndex((item) => isEqual(item, _schema));\n if (sameSchemaIndex === -1) {\n return toPathSchemaInternal(validator, _schema, name, rootSchema, formData, _recurseList.concat(_schema));\n }\n }\n let pathSchema = {\n [NAME_KEY]: name.replace(/^\\./, ''),\n };\n if (ONE_OF_KEY in schema || ANY_OF_KEY in schema) {\n const xxxOf = ONE_OF_KEY in schema ? schema.oneOf : schema.anyOf;\n const discriminator = getDiscriminatorFieldFromSchema(schema);\n const index = getClosestMatchingOption(validator, rootSchema, formData, xxxOf, 0, discriminator);\n const _schema = xxxOf[index];\n pathSchema = {\n ...pathSchema,\n ...toPathSchemaInternal(validator, _schema, name, rootSchema, formData, _recurseList),\n };\n }\n if (ADDITIONAL_PROPERTIES_KEY in schema && schema[ADDITIONAL_PROPERTIES_KEY] !== false) {\n set(pathSchema, RJSF_ADDITONAL_PROPERTIES_FLAG, true);\n }\n if (ITEMS_KEY in schema && Array.isArray(formData)) {\n const { items: schemaItems, additionalItems: schemaAdditionalItems } = schema;\n if (Array.isArray(schemaItems)) {\n formData.forEach((element, i) => {\n if (schemaItems[i]) {\n pathSchema[i] = toPathSchemaInternal(validator, schemaItems[i], `${name}.${i}`, rootSchema, element, _recurseList);\n }\n else if (schemaAdditionalItems) {\n pathSchema[i] = toPathSchemaInternal(validator, schemaAdditionalItems, `${name}.${i}`, rootSchema, element, _recurseList);\n }\n else {\n console.warn(`Unable to generate path schema for \"${name}.${i}\". No schema defined for it`);\n }\n });\n }\n else {\n formData.forEach((element, i) => {\n pathSchema[i] = toPathSchemaInternal(validator, schemaItems, `${name}.${i}`, rootSchema, element, _recurseList);\n });\n }\n }\n else if (PROPERTIES_KEY in schema) {\n for (const property in schema.properties) {\n const field = get(schema, [PROPERTIES_KEY, property]);\n pathSchema[property] = toPathSchemaInternal(validator, field, `${name}.${property}`, rootSchema, \n // It's possible that formData is not an object -- this can happen if an\n // array item has just been added, but not populated with data yet\n get(formData, [property]), _recurseList);\n }\n }\n return pathSchema;\n}\n/** Generates an `PathSchema` object for the `schema`, recursively\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be used when necessary\n * @param schema - The schema for which the `PathSchema` is desired\n * @param [name=''] - The base name for the schema\n * @param [rootSchema] - The root schema, used to primarily to look up `$ref`s\n * @param [formData] - The current formData, if any, to assist retrieving a schema\n * @returns - The `PathSchema` object for the `schema`\n */\nexport default function toPathSchema(validator, schema, name = '', rootSchema, formData) {\n return toPathSchemaInternal(validator, schema, name, rootSchema, formData);\n}\n//# sourceMappingURL=toPathSchema.js.map","import getDefaultFormState from './getDefaultFormState';\nimport getDisplayLabel from './getDisplayLabel';\nimport getClosestMatchingOption from './getClosestMatchingOption';\nimport getFirstMatchingOption from './getFirstMatchingOption';\nimport getMatchingOption from './getMatchingOption';\nimport isFilesArray from './isFilesArray';\nimport isMultiSelect from './isMultiSelect';\nimport isSelect from './isSelect';\nimport mergeValidationData from './mergeValidationData';\nimport retrieveSchema from './retrieveSchema';\nimport sanitizeDataForNewSchema from './sanitizeDataForNewSchema';\nimport toIdSchema from './toIdSchema';\nimport toPathSchema from './toPathSchema';\nexport { getDefaultFormState, getDisplayLabel, getClosestMatchingOption, getFirstMatchingOption, getMatchingOption, isFilesArray, isMultiSelect, isSelect, mergeValidationData, retrieveSchema, sanitizeDataForNewSchema, toIdSchema, toPathSchema, };\n//# sourceMappingURL=index.js.map","import deepEquals from './deepEquals';\nimport { getDefaultFormState, getDisplayLabel, getClosestMatchingOption, getFirstMatchingOption, getMatchingOption, isFilesArray, isMultiSelect, isSelect, mergeValidationData, retrieveSchema, sanitizeDataForNewSchema, toIdSchema, toPathSchema, } from './schema';\n/** The `SchemaUtils` class provides a wrapper around the publicly exported APIs in the `utils/schema` directory such\n * that one does not have to explicitly pass the `validator`, `rootSchema`, or `experimental_defaultFormStateBehavior` to each method.\n * Since these generally do not change across a `Form`, this allows for providing a simplified set of APIs to the\n * `@rjsf/core` components and the various themes as well. This class implements the `SchemaUtilsType` interface.\n */\nclass SchemaUtils {\n /** Constructs the `SchemaUtils` instance with the given `validator` and `rootSchema` stored as instance variables\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be forwarded to all the APIs\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param experimental_defaultFormStateBehavior - Configuration flags to allow users to override default form state behavior\n */\n constructor(validator, rootSchema, experimental_defaultFormStateBehavior) {\n this.rootSchema = rootSchema;\n this.validator = validator;\n this.experimental_defaultFormStateBehavior = experimental_defaultFormStateBehavior;\n }\n /** Returns the `ValidatorType` in the `SchemaUtilsType`\n *\n * @returns - The `ValidatorType`\n */\n getValidator() {\n return this.validator;\n }\n /** Determines whether either the `validator` and `rootSchema` differ from the ones associated with this instance of\n * the `SchemaUtilsType`. If either `validator` or `rootSchema` are falsy, then return false to prevent the creation\n * of a new `SchemaUtilsType` with incomplete properties.\n *\n * @param validator - An implementation of the `ValidatorType` interface that will be compared against the current one\n * @param rootSchema - The root schema that will be compared against the current one\n * @param [experimental_defaultFormStateBehavior] Optional configuration object, if provided, allows users to override default form state behavior\n * @returns - True if the `SchemaUtilsType` differs from the given `validator` or `rootSchema`\n */\n doesSchemaUtilsDiffer(validator, rootSchema, experimental_defaultFormStateBehavior = {}) {\n if (!validator || !rootSchema) {\n return false;\n }\n return (this.validator !== validator ||\n !deepEquals(this.rootSchema, rootSchema) ||\n !deepEquals(this.experimental_defaultFormStateBehavior, experimental_defaultFormStateBehavior));\n }\n /** Returns the superset of `formData` that includes the given set updated to include any missing fields that have\n * computed to have defaults provided in the `schema`.\n *\n * @param schema - The schema for which the default state is desired\n * @param [formData] - The current formData, if any, onto which to provide any missing defaults\n * @param [includeUndefinedValues=false] - Optional flag, if true, cause undefined values to be added as defaults.\n * If \"excludeObjectChildren\", pass `includeUndefinedValues` as false when computing defaults for any nested\n * object properties.\n * @returns - The resulting `formData` with all the defaults provided\n */\n getDefaultFormState(schema, formData, includeUndefinedValues = false) {\n return getDefaultFormState(this.validator, schema, formData, this.rootSchema, includeUndefinedValues, this.experimental_defaultFormStateBehavior);\n }\n /** Determines whether the combination of `schema` and `uiSchema` properties indicates that the label for the `schema`\n * should be displayed in a UI.\n *\n * @param schema - The schema for which the display label flag is desired\n * @param [uiSchema] - The UI schema from which to derive potentially displayable information\n * @param [globalOptions={}] - The optional Global UI Schema from which to get any fallback `xxx` options\n * @returns - True if the label should be displayed or false if it should not\n */\n getDisplayLabel(schema, uiSchema, globalOptions) {\n return getDisplayLabel(this.validator, schema, uiSchema, this.rootSchema, globalOptions);\n }\n /** Determines which of the given `options` provided most closely matches the `formData`.\n * Returns the index of the option that is valid and is the closest match, or 0 if there is no match.\n *\n * The closest match is determined using the number of matching properties, and more heavily favors options with\n * matching readOnly, default, or const values.\n *\n * @param formData - The form data associated with the schema\n * @param options - The list of options that can be selected from\n * @param [selectedOption] - The index of the currently selected option, defaulted to -1 if not specified\n * @param [discriminatorField] - The optional name of the field within the options object whose value is used to\n * determine which option is selected\n * @returns - The index of the option that is the closest match to the `formData` or the `selectedOption` if no match\n */\n getClosestMatchingOption(formData, options, selectedOption, discriminatorField) {\n return getClosestMatchingOption(this.validator, this.rootSchema, formData, options, selectedOption, discriminatorField);\n }\n /** Given the `formData` and list of `options`, attempts to find the index of the first option that matches the data.\n * Always returns the first option if there is nothing that matches.\n *\n * @param formData - The current formData, if any, used to figure out a match\n * @param options - The list of options to find a matching options from\n * @param [discriminatorField] - The optional name of the field within the options object whose value is used to\n * determine which option is selected\n * @returns - The firstindex of the matched option or 0 if none is available\n */\n getFirstMatchingOption(formData, options, discriminatorField) {\n return getFirstMatchingOption(this.validator, formData, options, this.rootSchema, discriminatorField);\n }\n /** Given the `formData` and list of `options`, attempts to find the index of the option that best matches the data.\n * Deprecated, use `getFirstMatchingOption()` instead.\n *\n * @param formData - The current formData, if any, onto which to provide any missing defaults\n * @param options - The list of options to find a matching options from\n * @param [discriminatorField] - The optional name of the field within the options object whose value is used to\n * determine which option is selected\n * @returns - The index of the matched option or 0 if none is available\n * @deprecated\n */\n getMatchingOption(formData, options, discriminatorField) {\n return getMatchingOption(this.validator, formData, options, this.rootSchema, discriminatorField);\n }\n /** Checks to see if the `schema` and `uiSchema` combination represents an array of files\n *\n * @param schema - The schema for which check for array of files flag is desired\n * @param [uiSchema] - The UI schema from which to check the widget\n * @returns - True if schema/uiSchema contains an array of files, otherwise false\n */\n isFilesArray(schema, uiSchema) {\n return isFilesArray(this.validator, schema, uiSchema, this.rootSchema);\n }\n /** Checks to see if the `schema` combination represents a multi-select\n *\n * @param schema - The schema for which check for a multi-select flag is desired\n * @returns - True if schema contains a multi-select, otherwise false\n */\n isMultiSelect(schema) {\n return isMultiSelect(this.validator, schema, this.rootSchema);\n }\n /** Checks to see if the `schema` combination represents a select\n *\n * @param schema - The schema for which check for a select flag is desired\n * @returns - True if schema contains a select, otherwise false\n */\n isSelect(schema) {\n return isSelect(this.validator, schema, this.rootSchema);\n }\n /** Merges the errors in `additionalErrorSchema` into the existing `validationData` by combining the hierarchies in\n * the two `ErrorSchema`s and then appending the error list from the `additionalErrorSchema` obtained by calling\n * `getValidator().toErrorList()` onto the `errors` in the `validationData`. If no `additionalErrorSchema` is passed,\n * then `validationData` is returned.\n *\n * @param validationData - The current `ValidationData` into which to merge the additional errors\n * @param [additionalErrorSchema] - The additional set of errors\n * @returns - The `validationData` with the additional errors from `additionalErrorSchema` merged into it, if provided.\n * @deprecated - Use the `validationDataMerge()` function exported from `@rjsf/utils` instead. This function will be\n * removed in the next major release.\n */\n mergeValidationData(validationData, additionalErrorSchema) {\n return mergeValidationData(this.validator, validationData, additionalErrorSchema);\n }\n /** Retrieves an expanded schema that has had all of its conditions, additional properties, references and\n * dependencies resolved and merged into the `schema` given a `rawFormData` that is used to do the potentially\n * recursive resolution.\n *\n * @param schema - The schema for which retrieving a schema is desired\n * @param [rawFormData] - The current formData, if any, to assist retrieving a schema\n * @returns - The schema having its conditions, additional properties, references and dependencies resolved\n */\n retrieveSchema(schema, rawFormData) {\n return retrieveSchema(this.validator, schema, this.rootSchema, rawFormData);\n }\n /** Sanitize the `data` associated with the `oldSchema` so it is considered appropriate for the `newSchema`. If the\n * new schema does not contain any properties, then `undefined` is returned to clear all the form data. Due to the\n * nature of schemas, this sanitization happens recursively for nested objects of data. Also, any properties in the\n * old schemas that are non-existent in the new schema are set to `undefined`.\n *\n * @param [newSchema] - The new schema for which the data is being sanitized\n * @param [oldSchema] - The old schema from which the data originated\n * @param [data={}] - The form data associated with the schema, defaulting to an empty object when undefined\n * @returns - The new form data, with all the fields uniquely associated with the old schema set\n * to `undefined`. Will return `undefined` if the new schema is not an object containing properties.\n */\n sanitizeDataForNewSchema(newSchema, oldSchema, data) {\n return sanitizeDataForNewSchema(this.validator, this.rootSchema, newSchema, oldSchema, data);\n }\n /** Generates an `IdSchema` object for the `schema`, recursively\n *\n * @param schema - The schema for which the display label flag is desired\n * @param [id] - The base id for the schema\n * @param [formData] - The current formData, if any, onto which to provide any missing defaults\n * @param [idPrefix='root'] - The prefix to use for the id\n * @param [idSeparator='_'] - The separator to use for the path segments in the id\n * @returns - The `IdSchema` object for the `schema`\n */\n toIdSchema(schema, id, formData, idPrefix = 'root', idSeparator = '_') {\n return toIdSchema(this.validator, schema, id, this.rootSchema, formData, idPrefix, idSeparator);\n }\n /** Generates an `PathSchema` object for the `schema`, recursively\n *\n * @param schema - The schema for which the display label flag is desired\n * @param [name] - The base name for the schema\n * @param [formData] - The current formData, if any, onto which to provide any missing defaults\n * @returns - The `PathSchema` object for the `schema`\n */\n toPathSchema(schema, name, formData) {\n return toPathSchema(this.validator, schema, name, this.rootSchema, formData);\n }\n}\n/** Creates a `SchemaUtilsType` interface that is based around the given `validator` and `rootSchema` parameters. The\n * resulting interface implementation will forward the `validator` and `rootSchema` to all the wrapped APIs.\n *\n * @param validator - an implementation of the `ValidatorType` interface that will be forwarded to all the APIs\n * @param rootSchema - The root schema that will be forwarded to all the APIs\n * @param [experimental_defaultFormStateBehavior] Optional configuration object, if provided, allows users to override default form state behavior\n * @returns - An implementation of a `SchemaUtilsType` interface\n */\nexport default function createSchemaUtils(validator, rootSchema, experimental_defaultFormStateBehavior = {}) {\n return new SchemaUtils(validator, rootSchema, experimental_defaultFormStateBehavior);\n}\n//# sourceMappingURL=createSchemaUtils.js.map","/** Given the `FileReader.readAsDataURL()` based `dataURI` extracts that data into an actual Blob along with the name\n * of that Blob if provided in the URL. If no name is provided, then the name falls back to `unknown`.\n *\n * @param dataURI - The `DataUrl` potentially containing name and raw data to be converted to a Blob\n * @returns - an object containing a Blob and its name, extracted from the URI\n */\nexport default function dataURItoBlob(dataURI) {\n // Split metadata from data\n const splitted = dataURI.split(',');\n // Split params\n const params = splitted[0].split(';');\n // Get mime-type from params\n const type = params[0].replace('data:', '');\n // Filter the name property from params\n const properties = params.filter((param) => {\n return param.split('=')[0] === 'name';\n });\n // Look for the name and use unknown if no name property.\n let name;\n if (properties.length !== 1) {\n name = 'unknown';\n }\n else {\n // Because we filtered out the other property,\n // we only have the name case here, which we decode to make it human-readable\n name = decodeURI(properties[0].split('=')[1]);\n }\n // Built the Uint8Array Blob parameter from the base64 string.\n try {\n const binary = atob(splitted[1]);\n const array = [];\n for (let i = 0; i < binary.length; i++) {\n array.push(binary.charCodeAt(i));\n }\n // Create the blob object\n const blob = new window.Blob([new Uint8Array(array)], { type });\n return { blob, name };\n }\n catch (error) {\n return { blob: { size: 0, type: error.message }, name: dataURI };\n }\n}\n//# sourceMappingURL=dataURItoBlob.js.map","/** Potentially substitutes all replaceable parameters with the associated value(s) from the `params` if available. When\n * a `params` array is provided, each value in the array is used to replace any of the replaceable parameters in the\n * `inputString` using the `%1`, `%2`, etc. replacement specifiers.\n *\n * @param inputString - The string which will be potentially updated with replacement parameters\n * @param params - The optional list of replaceable parameter values to substitute into the english string\n * @returns - The updated string with any replacement specifiers replaced\n */\nexport default function replaceStringParameters(inputString, params) {\n let output = inputString;\n if (Array.isArray(params)) {\n const parts = output.split(/(%\\d)/);\n params.forEach((param, index) => {\n const partIndex = parts.findIndex((part) => part === `%${index + 1}`);\n if (partIndex >= 0) {\n parts[partIndex] = param;\n }\n });\n output = parts.join('');\n }\n return output;\n}\n//# sourceMappingURL=replaceStringParameters.js.map","import replaceStringParameters from './replaceStringParameters';\n/** Translates a `TranslatableString` value `stringToTranslate` into english. When a `params` array is provided, each\n * value in the array is used to replace any of the replaceable parameters in the `stringToTranslate` using the `%1`,\n * `%2`, etc. replacement specifiers.\n *\n * @param stringToTranslate - The `TranslatableString` value to convert to english\n * @param params - The optional list of replaceable parameter values to substitute into the english string\n * @returns - The `stringToTranslate` itself with any replaceable parameter values substituted\n */\nexport default function englishStringTranslator(stringToTranslate, params) {\n return replaceStringParameters(stringToTranslate, params);\n}\n//# sourceMappingURL=englishStringTranslator.js.map","/** Returns the value(s) from `allEnumOptions` at the index(es) provided by `valueIndex`. If `valueIndex` is not an\n * array AND the index is not valid for `allEnumOptions`, `emptyValue` is returned. If `valueIndex` is an array, AND it\n * contains an invalid index, the returned array will have the resulting undefined values filtered out, leaving only\n * valid values or in the worst case, an empty array.\n *\n * @param valueIndex - The index(es) of the value(s) that should be returned\n * @param [allEnumOptions=[]] - The list of all the known enumOptions\n * @param [emptyValue] - The value to return when the non-array `valueIndex` does not refer to a real option\n * @returns - The single or list of values specified by the single or list of indexes if they are valid. Otherwise,\n * `emptyValue` or an empty list.\n */\nexport default function enumOptionsValueForIndex(valueIndex, allEnumOptions = [], emptyValue) {\n if (Array.isArray(valueIndex)) {\n return valueIndex.map((index) => enumOptionsValueForIndex(index, allEnumOptions)).filter((val) => val);\n }\n // So Number(null) and Number('') both return 0, so use emptyValue for those two values\n const index = valueIndex === '' || valueIndex === null ? -1 : Number(valueIndex);\n const option = allEnumOptions[index];\n return option ? option.value : emptyValue;\n}\n//# sourceMappingURL=enumOptionsValueForIndex.js.map","import isEqual from 'lodash/isEqual';\nimport enumOptionsValueForIndex from './enumOptionsValueForIndex';\n/** Removes the enum option value at the `valueIndex` from the currently `selected` (list of) value(s). If `selected` is\n * a list, then that list is updated to remove the enum option value with the `valueIndex` in `allEnumOptions`. If it is\n * a single value, then if the enum option value with the `valueIndex` in `allEnumOptions` matches `selected`, undefined\n * is returned, otherwise the `selected` value is returned.\n *\n * @param valueIndex - The index of the value to be removed from the selected list or single value\n * @param selected - The current (list of) selected value(s)\n * @param [allEnumOptions=[]] - The list of all the known enumOptions\n * @returns - The updated `selected` with the enum option value at `valueIndex` in `allEnumOptions` removed from it,\n * unless `selected` is a single value. In that case, if the `valueIndex` value matches `selected`, returns\n * undefined, otherwise `selected`.\n */\nexport default function enumOptionsDeselectValue(valueIndex, selected, allEnumOptions = []) {\n const value = enumOptionsValueForIndex(valueIndex, allEnumOptions);\n if (Array.isArray(selected)) {\n return selected.filter((v) => !isEqual(v, value));\n }\n return isEqual(value, selected) ? undefined : selected;\n}\n//# sourceMappingURL=enumOptionsDeselectValue.js.map","import isEqual from 'lodash/isEqual';\n/** Determines whether the given `value` is (one of) the `selected` value(s).\n *\n * @param value - The value being checked to see if it is selected\n * @param selected - The current selected value or list of values\n * @returns - true if the `value` is one of the `selected` ones, false otherwise\n */\nexport default function enumOptionsIsSelected(value, selected) {\n if (Array.isArray(selected)) {\n return selected.some((sel) => isEqual(sel, value));\n }\n return isEqual(selected, value);\n}\n//# sourceMappingURL=enumOptionsIsSelected.js.map","import enumOptionsIsSelected from './enumOptionsIsSelected';\n/** Returns the index(es) of the options in `allEnumOptions` whose value(s) match the ones in `value`. All the\n * `enumOptions` are filtered based on whether they are a \"selected\" `value` and the index of each selected one is then\n * stored in an array. If `multiple` is true, that array is returned, otherwise the first element in the array is\n * returned.\n *\n * @param value - The single value or list of values for which indexes are desired\n * @param [allEnumOptions=[]] - The list of all the known enumOptions\n * @param [multiple=false] - Optional flag, if true will return a list of index, otherwise a single one\n * @returns - A single string index for the first `value` in `allEnumOptions`, if not `multiple`. Otherwise, the list\n * of indexes for (each of) the value(s) in `value`.\n */\nexport default function enumOptionsIndexForValue(value, allEnumOptions = [], multiple = false) {\n const selectedIndexes = allEnumOptions\n .map((opt, index) => (enumOptionsIsSelected(opt.value, value) ? String(index) : undefined))\n .filter((opt) => typeof opt !== 'undefined');\n if (!multiple) {\n return selectedIndexes[0];\n }\n return selectedIndexes;\n}\n//# sourceMappingURL=enumOptionsIndexForValue.js.map","import enumOptionsValueForIndex from './enumOptionsValueForIndex';\nimport isNil from 'lodash/isNil';\n/** Add the enum option value at the `valueIndex` to the list of `selected` values in the proper order as defined by\n * `allEnumOptions`\n *\n * @param valueIndex - The index of the value that should be selected\n * @param selected - The current list of selected values\n * @param [allEnumOptions=[]] - The list of all the known enumOptions\n * @returns - The updated list of selected enum values with enum value at the `valueIndex` added to it\n */\nexport default function enumOptionsSelectValue(valueIndex, selected, allEnumOptions = []) {\n const value = enumOptionsValueForIndex(valueIndex, allEnumOptions);\n if (!isNil(value)) {\n const index = allEnumOptions.findIndex((opt) => value === opt.value);\n const all = allEnumOptions.map(({ value: val }) => val);\n const updated = selected.slice(0, index).concat(value, selected.slice(index));\n // As inserting values at predefined index positions doesn't work with empty\n // arrays, we need to reorder the updated selection to match the initial order\n return updated.sort((a, b) => Number(all.indexOf(a) > all.indexOf(b)));\n }\n return selected;\n}\n//# sourceMappingURL=enumOptionsSelectValue.js.map","import cloneDeep from 'lodash/cloneDeep';\nimport get from 'lodash/get';\nimport set from 'lodash/set';\nimport { ERRORS_KEY } from './constants';\n/** The `ErrorSchemaBuilder<T>` is used to build an `ErrorSchema<T>` since the definition of the `ErrorSchema` type is\n * designed for reading information rather than writing it. Use this class to add, replace or clear errors in an error\n * schema by using either dotted path or an array of path names. Once you are done building the `ErrorSchema`, you can\n * get the result and/or reset all the errors back to an initial set and start again.\n */\nexport default class ErrorSchemaBuilder {\n /** Construct an `ErrorSchemaBuilder` with an optional initial set of errors in an `ErrorSchema`.\n *\n * @param [initialSchema] - The optional set of initial errors, that will be cloned into the class\n */\n constructor(initialSchema) {\n /** The error schema being built\n *\n * @private\n */\n this.errorSchema = {};\n this.resetAllErrors(initialSchema);\n }\n /** Returns the `ErrorSchema` that has been updated by the methods of the `ErrorSchemaBuilder`\n */\n get ErrorSchema() {\n return this.errorSchema;\n }\n /** Will get an existing `ErrorSchema` at the specified `pathOfError` or create and return one.\n *\n * @param [pathOfError] - The optional path into the `ErrorSchema` at which to add the error(s)\n * @returns - The error block for the given `pathOfError` or the root if not provided\n * @private\n */\n getOrCreateErrorBlock(pathOfError) {\n const hasPath = (Array.isArray(pathOfError) && pathOfError.length > 0) || typeof pathOfError === 'string';\n let errorBlock = hasPath ? get(this.errorSchema, pathOfError) : this.errorSchema;\n if (!errorBlock && pathOfError) {\n errorBlock = {};\n set(this.errorSchema, pathOfError, errorBlock);\n }\n return errorBlock;\n }\n /** Resets all errors in the `ErrorSchemaBuilder` back to the `initialSchema` if provided, otherwise an empty set.\n *\n * @param [initialSchema] - The optional set of initial errors, that will be cloned into the class\n * @returns - The `ErrorSchemaBuilder` object for chaining purposes\n */\n resetAllErrors(initialSchema) {\n this.errorSchema = initialSchema ? cloneDeep(initialSchema) : {};\n return this;\n }\n /** Adds the `errorOrList` to the list of errors in the `ErrorSchema` at either the root level or the location within\n * the schema described by the `pathOfError`. For more information about how to specify the path see the\n * [eslint lodash plugin docs](https://github.com/wix/eslint-plugin-lodash/blob/master/docs/rules/path-style.md).\n *\n * @param errorOrList - The error or list of errors to add into the `ErrorSchema`\n * @param [pathOfError] - The optional path into the `ErrorSchema` at which to add the error(s)\n * @returns - The `ErrorSchemaBuilder` object for chaining purposes\n */\n addErrors(errorOrList, pathOfError) {\n const errorBlock = this.getOrCreateErrorBlock(pathOfError);\n let errorsList = get(errorBlock, ERRORS_KEY);\n if (!Array.isArray(errorsList)) {\n errorsList = [];\n errorBlock[ERRORS_KEY] = errorsList;\n }\n if (Array.isArray(errorOrList)) {\n errorsList.push(...errorOrList);\n }\n else {\n errorsList.push(errorOrList);\n }\n return this;\n }\n /** Sets/replaces the `errorOrList` as the error(s) in the `ErrorSchema` at either the root level or the location\n * within the schema described by the `pathOfError`. For more information about how to specify the path see the\n * [eslint lodash plugin docs](https://github.com/wix/eslint-plugin-lodash/blob/master/docs/rules/path-style.md).\n *\n * @param errorOrList - The error or list of errors to set into the `ErrorSchema`\n * @param [pathOfError] - The optional path into the `ErrorSchema` at which to set the error(s)\n * @returns - The `ErrorSchemaBuilder` object for chaining purposes\n */\n setErrors(errorOrList, pathOfError) {\n const errorBlock = this.getOrCreateErrorBlock(pathOfError);\n // Effectively clone the array being given to prevent accidental outside manipulation of the given list\n const listToAdd = Array.isArray(errorOrList) ? [...errorOrList] : [errorOrList];\n set(errorBlock, ERRORS_KEY, listToAdd);\n return this;\n }\n /** Clears the error(s) in the `ErrorSchema` at either the root level or the location within the schema described by\n * the `pathOfError`. For more information about how to specify the path see the\n * [eslint lodash plugin docs](https://github.com/wix/eslint-plugin-lodash/blob/master/docs/rules/path-style.md).\n *\n * @param [pathOfError] - The optional path into the `ErrorSchema` at which to clear the error(s)\n * @returns - The `ErrorSchemaBuilder` object for chaining purposes\n */\n clearErrors(pathOfError) {\n const errorBlock = this.getOrCreateErrorBlock(pathOfError);\n set(errorBlock, ERRORS_KEY, []);\n return this;\n }\n}\n//# sourceMappingURL=ErrorSchemaBuilder.js.map","/** Given date & time information with optional yearRange & format, returns props for DateElement\n *\n * @param date - Object containing date with optional time information\n * @param time - Determines whether to include time or not\n * @param [yearRange=[1900, new Date().getFullYear() + 2]] - Controls the list of years to be displayed\n * @param [format='YMD'] - Controls the order in which day, month and year input element will be displayed\n * @returns Array of props for DateElement\n */\nexport default function getDateElementProps(date, time, yearRange = [1900, new Date().getFullYear() + 2], format = 'YMD') {\n const { day, month, year, hour, minute, second } = date;\n const dayObj = { type: 'day', range: [1, 31], value: day };\n const monthObj = { type: 'month', range: [1, 12], value: month };\n const yearObj = { type: 'year', range: yearRange, value: year };\n const dateElementProp = [];\n switch (format) {\n case 'MDY':\n dateElementProp.push(monthObj, dayObj, yearObj);\n break;\n case 'DMY':\n dateElementProp.push(dayObj, monthObj, yearObj);\n break;\n case 'YMD':\n default:\n dateElementProp.push(yearObj, monthObj, dayObj);\n }\n if (time) {\n dateElementProp.push({ type: 'hour', range: [0, 23], value: hour }, { type: 'minute', range: [0, 59], value: minute }, { type: 'second', range: [0, 59], value: second });\n }\n return dateElementProp;\n}\n//# sourceMappingURL=getDateElementProps.js.map","/** Extracts the range spec information `{ step?: number, min?: number, max?: number }` that can be spread onto an HTML\n * input from the range analog in the schema `{ multipleOf?: number, minimum?: number, maximum?: number }`.\n *\n * @param schema - The schema from which to extract the range spec\n * @returns - A range specification from the schema\n */\nexport default function rangeSpec(schema) {\n const spec = {};\n if (schema.multipleOf) {\n spec.step = schema.multipleOf;\n }\n if (schema.minimum || schema.minimum === 0) {\n spec.min = schema.minimum;\n }\n if (schema.maximum || schema.maximum === 0) {\n spec.max = schema.maximum;\n }\n return spec;\n}\n//# sourceMappingURL=rangeSpec.js.map","import rangeSpec from './rangeSpec';\n/** Using the `schema`, `defaultType` and `options`, extract out the props for the <input> element that make sense.\n *\n * @param schema - The schema for the field provided by the widget\n * @param [defaultType] - The default type, if any, for the field provided by the widget\n * @param [options={}] - The UI Options for the field provided by the widget\n * @param [autoDefaultStepAny=true] - Determines whether to auto-default step=any when the type is number and no step\n * @returns - The extracted `InputPropsType` object\n */\nexport default function getInputProps(schema, defaultType, options = {}, autoDefaultStepAny = true) {\n const inputProps = {\n type: defaultType || 'text',\n ...rangeSpec(schema),\n };\n // If options.inputType is set use that as the input type\n if (options.inputType) {\n inputProps.type = options.inputType;\n }\n else if (!defaultType) {\n // If the schema is of type number or integer, set the input type to number\n if (schema.type === 'number') {\n inputProps.type = 'number';\n // Only add step if one isn't already defined and we are auto-defaulting the \"any\" step\n if (autoDefaultStepAny && inputProps.step === undefined) {\n // Setting step to 'any' fixes a bug in Safari where decimals are not\n // allowed in number inputs\n inputProps.step = 'any';\n }\n }\n else if (schema.type === 'integer') {\n inputProps.type = 'number';\n // Only add step if one isn't already defined\n if (inputProps.step === undefined) {\n // Since this is integer, you always want to step up or down in multiples of 1\n inputProps.step = 1;\n }\n }\n }\n if (options.autocomplete) {\n inputProps.autoComplete = options.autocomplete;\n }\n return inputProps;\n}\n//# sourceMappingURL=getInputProps.js.map","import { SUBMIT_BTN_OPTIONS_KEY } from './constants';\nimport getUiOptions from './getUiOptions';\n/** The default submit button options, exported for testing purposes\n */\nexport const DEFAULT_OPTIONS = {\n props: {\n disabled: false,\n },\n submitText: 'Submit',\n norender: false,\n};\n/** Extracts any `ui:submitButtonOptions` from the `uiSchema` and merges them onto the `DEFAULT_OPTIONS`\n *\n * @param [uiSchema={}] - the UI Schema from which to extract submit button props\n * @returns - The merging of the `DEFAULT_OPTIONS` with any custom ones\n */\nexport default function getSubmitButtonOptions(uiSchema = {}) {\n const uiOptions = getUiOptions(uiSchema);\n if (uiOptions && uiOptions[SUBMIT_BTN_OPTIONS_KEY]) {\n const options = uiOptions[SUBMIT_BTN_OPTIONS_KEY];\n return { ...DEFAULT_OPTIONS, ...options };\n }\n return DEFAULT_OPTIONS;\n}\n//# sourceMappingURL=getSubmitButtonOptions.js.map","/** Returns the template with the given `name` from either the `uiSchema` if it is defined or from the `registry`\n * otherwise. NOTE, since `ButtonTemplates` are not overridden in `uiSchema` only those in the `registry` are returned.\n *\n * @param name - The name of the template to fetch, restricted to the keys of `TemplatesType`\n * @param registry - The `Registry` from which to read the template\n * @param [uiOptions={}] - The `UIOptionsType` from which to read an alternate template\n * @returns - The template from either the `uiSchema` or `registry` for the `name`\n */\nexport default function getTemplate(name, registry, uiOptions = {}) {\n const { templates } = registry;\n if (name === 'ButtonTemplates') {\n return templates[name];\n }\n return (\n // Evaluating uiOptions[name] results in TS2590: Expression produces a union type that is too complex to represent\n // To avoid that, we cast uiOptions to `any` before accessing the name field\n uiOptions[name] || templates[name]);\n}\n//# sourceMappingURL=getTemplate.js.map","import { jsx as _jsx } from \"react/jsx-runtime\";\nimport { createElement } from 'react';\nimport ReactIs from 'react-is';\nimport get from 'lodash/get';\nimport set from 'lodash/set';\nimport getSchemaType from './getSchemaType';\n/** The map of schema types to widget type to widget name\n */\nconst widgetMap = {\n boolean: {\n checkbox: 'CheckboxWidget',\n radio: 'RadioWidget',\n select: 'SelectWidget',\n hidden: 'HiddenWidget',\n },\n string: {\n text: 'TextWidget',\n password: 'PasswordWidget',\n email: 'EmailWidget',\n hostname: 'TextWidget',\n ipv4: 'TextWidget',\n ipv6: 'TextWidget',\n uri: 'URLWidget',\n 'data-url': 'FileWidget',\n radio: 'RadioWidget',\n select: 'SelectWidget',\n textarea: 'TextareaWidget',\n hidden: 'HiddenWidget',\n date: 'DateWidget',\n datetime: 'DateTimeWidget',\n 'date-time': 'DateTimeWidget',\n 'alt-date': 'AltDateWidget',\n 'alt-datetime': 'AltDateTimeWidget',\n time: 'TimeWidget',\n color: 'ColorWidget',\n file: 'FileWidget',\n },\n number: {\n text: 'TextWidget',\n select: 'SelectWidget',\n updown: 'UpDownWidget',\n range: 'RangeWidget',\n radio: 'RadioWidget',\n hidden: 'HiddenWidget',\n },\n integer: {\n text: 'TextWidget',\n select: 'SelectWidget',\n updown: 'UpDownWidget',\n range: 'RangeWidget',\n radio: 'RadioWidget',\n hidden: 'HiddenWidget',\n },\n array: {\n select: 'SelectWidget',\n checkboxes: 'CheckboxesWidget',\n files: 'FileWidget',\n hidden: 'HiddenWidget',\n },\n};\n/** Wraps the given widget with stateless functional component that will merge any `defaultProps.options` with the\n * `options` that are provided in the props. It will add the wrapper component as a `MergedWidget` property onto the\n * `Widget` so that future attempts to wrap `AWidget` will return the already existing wrapper.\n *\n * @param AWidget - A widget that will be wrapped or one that is already wrapped\n * @returns - The wrapper widget\n */\nfunction mergeWidgetOptions(AWidget) {\n let MergedWidget = get(AWidget, 'MergedWidget');\n // cache return value as property of widget for proper react reconciliation\n if (!MergedWidget) {\n const defaultOptions = (AWidget.defaultProps && AWidget.defaultProps.options) || {};\n MergedWidget = ({ options, ...props }) => {\n return _jsx(AWidget, { options: { ...defaultOptions, ...options }, ...props });\n };\n set(AWidget, 'MergedWidget', MergedWidget);\n }\n return MergedWidget;\n}\n/** Given a schema representing a field to render and either the name or actual `Widget` implementation, returns the\n * React component that is used to render the widget. If the `widget` is already a React component, then it is wrapped\n * with a `MergedWidget`. Otherwise an attempt is made to look up the widget inside of the `registeredWidgets` map based\n * on the schema type and `widget` name. If no widget component can be found an `Error` is thrown.\n *\n * @param schema - The schema for the field\n * @param [widget] - Either the name of the widget OR a `Widget` implementation to use\n * @param [registeredWidgets={}] - A registry of widget name to `Widget` implementation\n * @returns - The `Widget` component to use\n * @throws - An error if there is no `Widget` component that can be returned\n */\nexport default function getWidget(schema, widget, registeredWidgets = {}) {\n const type = getSchemaType(schema);\n if (typeof widget === 'function' ||\n (widget && ReactIs.isForwardRef(createElement(widget))) ||\n ReactIs.isMemo(widget)) {\n return mergeWidgetOptions(widget);\n }\n if (typeof widget !== 'string') {\n throw new Error(`Unsupported widget definition: ${typeof widget}`);\n }\n if (widget in registeredWidgets) {\n const registeredWidget = registeredWidgets[widget];\n return getWidget(schema, registeredWidget, registeredWidgets);\n }\n if (typeof type === 'string') {\n if (!(type in widgetMap)) {\n throw new Error(`No widget for type '${type}'`);\n }\n if (widget in widgetMap[type]) {\n const registeredWidget = registeredWidgets[widgetMap[type][widget]];\n return getWidget(schema, registeredWidget, registeredWidgets);\n }\n }\n throw new Error(`No widget '${widget}' for type '${type}'`);\n}\n//# sourceMappingURL=getWidget.js.map","/** JS has no built-in hashing function, so rolling our own\n * based on Java's hashing fn:\n * http://www.java2s.com/example/nodejs-utility-method/string-hash/hashcode-4dc2b.html\n *\n * @param string - The string for which to get the hash\n * @returns - The resulting hash of the string in hex format\n */\nfunction hashString(string) {\n let hash = 0;\n for (let i = 0; i < string.length; i += 1) {\n const chr = string.charCodeAt(i);\n hash = (hash << 5) - hash + chr;\n hash = hash & hash; // Convert to 32bit integer\n }\n return hash.toString(16);\n}\n/** Stringifies the schema and returns the hash of the resulting string. Sorts schema fields\n * in consistent order before stringify to prevent different hash ids for the same schema.\n *\n * @param schema - The schema for which the hash is desired\n * @returns - The string obtained from the hash of the stringified schema\n */\nexport default function hashForSchema(schema) {\n const allKeys = new Set();\n // solution source: https://stackoverflow.com/questions/16167581/sort-object-properties-and-json-stringify/53593328#53593328\n JSON.stringify(schema, (key, value) => (allKeys.add(key), value));\n return hashString(JSON.stringify(schema, Array.from(allKeys).sort()));\n}\n//# sourceMappingURL=hashForSchema.js.map","import getWidget from './getWidget';\n/** Detects whether the `widget` exists for the `schema` with the associated `registryWidgets` and returns true if it\n * does, or false if it doesn't.\n *\n * @param schema - The schema for the field\n * @param widget - Either the name of the widget OR a `Widget` implementation to use\n * @param [registeredWidgets={}] - A registry of widget name to `Widget` implementation\n * @returns - True if the widget exists, false otherwise\n */\nexport default function hasWidget(schema, widget, registeredWidgets = {}) {\n try {\n getWidget(schema, widget, registeredWidgets);\n return true;\n }\n catch (e) {\n const err = e;\n if (err.message && (err.message.startsWith('No widget') || err.message.startsWith('Unsupported widget'))) {\n return false;\n }\n throw e;\n }\n}\n//# sourceMappingURL=hasWidget.js.map","import isString from 'lodash/isString';\nimport { ID_KEY } from './constants';\n/** Generates a consistent `id` pattern for a given `id` and a `suffix`\n *\n * @param id - Either simple string id or an IdSchema from which to extract it\n * @param suffix - The suffix to append to the id\n */\nfunction idGenerator(id, suffix) {\n const theId = isString(id) ? id : id[ID_KEY];\n return `${theId}__${suffix}`;\n}\n/** Return a consistent `id` for the field description element\n *\n * @param id - Either simple string id or an IdSchema from which to extract it\n * @returns - The consistent id for the field description element from the given `id`\n */\nexport function descriptionId(id) {\n return idGenerator(id, 'description');\n}\n/** Return a consistent `id` for the field error element\n *\n * @param id - Either simple string id or an IdSchema from which to extract it\n * @returns - The consistent id for the field error element from the given `id`\n */\nexport function errorId(id) {\n return idGenerator(id, 'error');\n}\n/** Return a consistent `id` for the field examples element\n *\n * @param id - Either simple string id or an IdSchema from which to extract it\n * @returns - The consistent id for the field examples element from the given `id`\n */\nexport function examplesId(id) {\n return idGenerator(id, 'examples');\n}\n/** Return a consistent `id` for the field help element\n *\n * @param id - Either simple string id or an IdSchema from which to extract it\n * @returns - The consistent id for the field help element from the given `id`\n */\nexport function helpId(id) {\n return idGenerator(id, 'help');\n}\n/** Return a consistent `id` for the field title element\n *\n * @param id - Either simple string id or an IdSchema from which to extract it\n * @returns - The consistent id for the field title element from the given `id`\n */\nexport function titleId(id) {\n return idGenerator(id, 'title');\n}\n/** Return a list of element ids that contain additional information about the field that can be used to as the aria\n * description of the field. This is correctly omitting `titleId` which would be \"labeling\" rather than \"describing\" the\n * element.\n *\n * @param id - Either simple string id or an IdSchema from which to extract it\n * @param [includeExamples=false] - Optional flag, if true, will add the `examplesId` into the list\n * @returns - The string containing the list of ids for use in an `aria-describedBy` attribute\n */\nexport function ariaDescribedByIds(id, includeExamples = false) {\n const examples = includeExamples ? ` ${examplesId(id)}` : '';\n return `${errorId(id)} ${descriptionId(id)} ${helpId(id)}${examples}`;\n}\n/** Return a consistent `id` for the `optionIndex`s of a `Radio` or `Checkboxes` widget\n *\n * @param id - The id of the parent component for the option\n * @param optionIndex - The index of the option for which the id is desired\n * @returns - An id for the option index based on the parent `id`\n */\nexport function optionId(id, optionIndex) {\n return `${id}-${optionIndex}`;\n}\n//# sourceMappingURL=idGenerators.js.map","export default function labelValue(label, hideLabel, fallback) {\n return hideLabel ? fallback : label;\n}\n//# sourceMappingURL=labelValue.js.map","/** Converts a local Date string into a UTC date string\n *\n * @param dateString - The string representation of a date as accepted by the `Date()` constructor\n * @returns - A UTC date string if `dateString` is truthy, otherwise undefined\n */\nexport default function localToUTC(dateString) {\n return dateString ? new Date(dateString).toJSON() : undefined;\n}\n//# sourceMappingURL=localToUTC.js.map","import { CONST_KEY, ENUM_KEY } from './constants';\n/** Returns the constant value from the schema when it is either a single value enum or has a const key. Otherwise\n * throws an error.\n *\n * @param schema - The schema from which to obtain the constant value\n * @returns - The constant value for the schema\n * @throws - Error when the schema does not have a constant value\n */\nexport default function toConstant(schema) {\n if (ENUM_KEY in schema && Array.isArray(schema.enum) && schema.enum.length === 1) {\n return schema.enum[0];\n }\n if (CONST_KEY in schema) {\n return schema.const;\n }\n throw new Error('schema cannot be inferred as a constant');\n}\n//# sourceMappingURL=toConstant.js.map","import toConstant from './toConstant';\n/** Gets the list of options from the schema. If the schema has an enum list, then those enum values are returned. The\n * labels for the options will be extracted from the non-standard, RJSF-deprecated `enumNames` if it exists, otherwise\n * the label will be the same as the `value`. If the schema has a `oneOf` or `anyOf`, then the value is the list of\n * `const` values from the schema and the label is either the `schema.title` or the value.\n *\n * @param schema - The schema from which to extract the options list\n * @returns - The list of options from the schema\n */\nexport default function optionsList(schema) {\n // enumNames was deprecated in v5 and is intentionally omitted from the RJSFSchema type.\n // Cast the type to include enumNames so the feature still works.\n const schemaWithEnumNames = schema;\n if (schemaWithEnumNames.enumNames && process.env.NODE_ENV !== 'production') {\n console.warn('The enumNames property is deprecated and may be removed in a future major release.');\n }\n if (schema.enum) {\n return schema.enum.map((value, i) => {\n const label = (schemaWithEnumNames.enumNames && schemaWithEnumNames.enumNames[i]) || String(value);\n return { label, value };\n });\n }\n const altSchemas = schema.oneOf || schema.anyOf;\n return (altSchemas &&\n altSchemas.map((aSchemaDef) => {\n const aSchema = aSchemaDef;\n const value = toConstant(aSchema);\n const label = aSchema.title || String(value);\n return {\n schema: aSchema,\n label,\n value,\n };\n }));\n}\n//# sourceMappingURL=optionsList.js.map","/** Given a list of `properties` and an `order` list, returns a list that contains the `properties` ordered correctly.\n * If `order` is not an array, then the untouched `properties` list is returned. Otherwise `properties` is ordered per\n * the `order` list. If `order` contains a '*' then any `properties` that are not mentioned explicity in `order` will be\n * places in the location of the `*`.\n *\n * @param properties - The list of property keys to be ordered\n * @param order - An array of property keys to be ordered first, with an optional '*' property\n * @returns - A list with the `properties` ordered\n * @throws - Error when the properties cannot be ordered correctly\n */\nexport default function orderProperties(properties, order) {\n if (!Array.isArray(order)) {\n return properties;\n }\n const arrayToHash = (arr) => arr.reduce((prev, curr) => {\n prev[curr] = true;\n return prev;\n }, {});\n const errorPropList = (arr) => arr.length > 1 ? `properties '${arr.join(\"', '\")}'` : `property '${arr[0]}'`;\n const propertyHash = arrayToHash(properties);\n const orderFiltered = order.filter((prop) => prop === '*' || propertyHash[prop]);\n const orderHash = arrayToHash(orderFiltered);\n const rest = properties.filter((prop) => !orderHash[prop]);\n const restIndex = orderFiltered.indexOf('*');\n if (restIndex === -1) {\n if (rest.length) {\n throw new Error(`uiSchema order list does not contain ${errorPropList(rest)}`);\n }\n return orderFiltered;\n }\n if (restIndex !== orderFiltered.lastIndexOf('*')) {\n throw new Error('uiSchema order list contains more than one wildcard item');\n }\n const complete = [...orderFiltered];\n complete.splice(restIndex, 1, ...rest);\n return complete;\n}\n//# sourceMappingURL=orderProperties.js.map","/** Returns a string representation of the `num` that is padded with leading \"0\"s if necessary\n *\n * @param num - The number to pad\n * @param width - The width of the string at which no lead padding is necessary\n * @returns - The number converted to a string with leading zero padding if the number of digits is less than `width`\n */\nexport default function pad(num, width) {\n let s = String(num);\n while (s.length < width) {\n s = '0' + s;\n }\n return s;\n}\n//# sourceMappingURL=pad.js.map","/** Parses the `dateString` into a `DateObject`, including the time information when `includeTime` is true\n *\n * @param dateString - The date string to parse into a DateObject\n * @param [includeTime=true] - Optional flag, if false, will not include the time data into the object\n * @returns - The date string converted to a `DateObject`\n * @throws - Error when the date cannot be parsed from the string\n */\nexport default function parseDateString(dateString, includeTime = true) {\n if (!dateString) {\n return {\n year: -1,\n month: -1,\n day: -1,\n hour: includeTime ? -1 : 0,\n minute: includeTime ? -1 : 0,\n second: includeTime ? -1 : 0,\n };\n }\n const date = new Date(dateString);\n if (Number.isNaN(date.getTime())) {\n throw new Error('Unable to parse date ' + dateString);\n }\n return {\n year: date.getUTCFullYear(),\n month: date.getUTCMonth() + 1,\n day: date.getUTCDate(),\n hour: includeTime ? date.getUTCHours() : 0,\n minute: includeTime ? date.getUTCMinutes() : 0,\n second: includeTime ? date.getUTCSeconds() : 0,\n };\n}\n//# sourceMappingURL=parseDateString.js.map","/** Check to see if a `schema` specifies that a value must be true. This happens when:\n * - `schema.const` is truthy\n * - `schema.enum` == `[true]`\n * - `schema.anyOf` or `schema.oneOf` has a single value which recursively returns true\n * - `schema.allOf` has at least one value which recursively returns true\n *\n * @param schema - The schema to check\n * @returns - True if the schema specifies a value that must be true, false otherwise\n */\nexport default function schemaRequiresTrueValue(schema) {\n // Check if const is a truthy value\n if (schema.const) {\n return true;\n }\n // Check if an enum has a single value of true\n if (schema.enum && schema.enum.length === 1 && schema.enum[0] === true) {\n return true;\n }\n // If anyOf has a single value, evaluate the subschema\n if (schema.anyOf && schema.anyOf.length === 1) {\n return schemaRequiresTrueValue(schema.anyOf[0]);\n }\n // If oneOf has a single value, evaluate the subschema\n if (schema.oneOf && schema.oneOf.length === 1) {\n return schemaRequiresTrueValue(schema.oneOf[0]);\n }\n // Evaluate each subschema in allOf, to see if one of them requires a true value\n if (schema.allOf) {\n const schemaSome = (subSchema) => schemaRequiresTrueValue(subSchema);\n return schema.allOf.some(schemaSome);\n }\n return false;\n}\n//# sourceMappingURL=schemaRequiresTrueValue.js.map","import deepEquals from './deepEquals';\n/** Determines whether the given `component` should be rerendered by comparing its current set of props and state\n * against the next set. If either of those two sets are not the same, then the component should be rerendered.\n *\n * @param component - A React component being checked\n * @param nextProps - The next set of props against which to check\n * @param nextState - The next set of state against which to check\n * @returns - True if the component should be re-rendered, false otherwise\n */\nexport default function shouldRender(component, nextProps, nextState) {\n const { props, state } = component;\n return !deepEquals(props, nextProps) || !deepEquals(state, nextState);\n}\n//# sourceMappingURL=shouldRender.js.map","/** Returns a UTC date string for the given `dateObject`. If `time` is false, then the time portion of the string is\n * removed.\n *\n * @param dateObject - The `DateObject` to convert to a date string\n * @param [time=true] - Optional flag used to remove the time portion of the date string if false\n * @returns - The UTC date string\n */\nexport default function toDateString(dateObject, time = true) {\n const { year, month, day, hour = 0, minute = 0, second = 0 } = dateObject;\n const utcTime = Date.UTC(year, month - 1, day, hour, minute, second);\n const datetime = new Date(utcTime).toJSON();\n return time ? datetime : datetime.slice(0, 10);\n}\n//# sourceMappingURL=toDateString.js.map","import isPlainObject from 'lodash/isPlainObject';\nimport { ERRORS_KEY } from './constants';\n/** Converts an `errorSchema` into a list of `RJSFValidationErrors`\n *\n * @param errorSchema - The `ErrorSchema` instance to convert\n * @param [fieldPath=[]] - The current field path, defaults to [] if not specified\n * @returns - The list of `RJSFValidationErrors` extracted from the `errorSchema`\n */\nexport default function toErrorList(errorSchema, fieldPath = []) {\n if (!errorSchema) {\n return [];\n }\n let errorList = [];\n if (ERRORS_KEY in errorSchema) {\n errorList = errorList.concat(errorSchema[ERRORS_KEY].map((message) => {\n const property = `.${fieldPath.join('.')}`;\n return {\n property,\n message,\n stack: `${property} ${message}`,\n };\n }));\n }\n return Object.keys(errorSchema).reduce((acc, key) => {\n if (key !== ERRORS_KEY) {\n const childSchema = errorSchema[key];\n if (isPlainObject(childSchema)) {\n acc = acc.concat(toErrorList(childSchema, [...fieldPath, key]));\n }\n }\n return acc;\n }, errorList);\n}\n//# sourceMappingURL=toErrorList.js.map","import toPath from 'lodash/toPath';\nimport ErrorSchemaBuilder from './ErrorSchemaBuilder';\n/** Transforms a rjsf validation errors list:\n * [\n * {property: '.level1.level2[2].level3', message: 'err a'},\n * {property: '.level1.level2[2].level3', message: 'err b'},\n * {property: '.level1.level2[4].level3', message: 'err b'},\n * ]\n * Into an error tree:\n * {\n * level1: {\n * level2: {\n * 2: {level3: {errors: ['err a', 'err b']}},\n * 4: {level3: {errors: ['err b']}},\n * }\n * }\n * };\n *\n * @param errors - The list of RJSFValidationError objects\n * @returns - The `ErrorSchema` built from the list of `RJSFValidationErrors`\n */\nexport default function toErrorSchema(errors) {\n const builder = new ErrorSchemaBuilder();\n if (errors.length) {\n errors.forEach((error) => {\n const { property, message } = error;\n // When the property is the root element, just use an empty array for the path\n const path = property === '.' ? [] : toPath(property);\n // If the property is at the root (.level1) then toPath creates\n // an empty array element at the first index. Remove it.\n if (path.length > 0 && path[0] === '') {\n path.splice(0, 1);\n }\n if (message) {\n builder.addErrors(message, path);\n }\n });\n }\n return builder.ErrorSchema;\n}\n//# sourceMappingURL=toErrorSchema.js.map","import isPlainObject from 'lodash/isPlainObject';\n/** Unwraps the `errorHandler` structure into the associated `ErrorSchema`, stripping the `addError()` functions from it\n *\n * @param errorHandler - The `FormValidation` error handling structure\n * @returns - The `ErrorSchema` resulting from the stripping of the `addError()` function\n */\nexport default function unwrapErrorHandler(errorHandler) {\n return Object.keys(errorHandler).reduce((acc, key) => {\n if (key === 'addError') {\n return acc;\n }\n else {\n const childSchema = errorHandler[key];\n if (isPlainObject(childSchema)) {\n return {\n ...acc,\n [key]: unwrapErrorHandler(childSchema),\n };\n }\n return { ...acc, [key]: childSchema };\n }\n }, {});\n}\n//# sourceMappingURL=unwrapErrorHandler.js.map","import pad from './pad';\n/** Converts a UTC date string into a local Date format\n *\n * @param jsonDate - A UTC date string\n * @returns - An empty string when `jsonDate` is falsey, otherwise a date string in local format\n */\nexport default function utcToLocal(jsonDate) {\n if (!jsonDate) {\n return '';\n }\n // required format of `'yyyy-MM-ddThh:mm' followed by optional ':ss' or ':ss.SSS'\n // https://html.spec.whatwg.org/multipage/input.html#local-date-and-time-state-(type%3Ddatetime-local)\n // > should be a _valid local date and time string_ (not GMT)\n // Note - date constructor passed local ISO-8601 does not correctly\n // change time to UTC in node pre-8\n const date = new Date(jsonDate);\n const yyyy = pad(date.getFullYear(), 4);\n const MM = pad(date.getMonth() + 1, 2);\n const dd = pad(date.getDate(), 2);\n const hh = pad(date.getHours(), 2);\n const mm = pad(date.getMinutes(), 2);\n const ss = pad(date.getSeconds(), 2);\n const SSS = pad(date.getMilliseconds(), 3);\n return `${yyyy}-${MM}-${dd}T${hh}:${mm}:${ss}.${SSS}`;\n}\n//# sourceMappingURL=utcToLocal.js.map","import isEmpty from 'lodash/isEmpty';\nimport mergeObjects from './mergeObjects';\nimport toErrorList from './toErrorList';\n/** Merges the errors in `additionalErrorSchema` into the existing `validationData` by combining the hierarchies in the\n * two `ErrorSchema`s and then appending the error list from the `additionalErrorSchema` obtained by calling\n * `toErrorList()` on the `errors` in the `validationData`. If no `additionalErrorSchema` is passed, then\n * `validationData` is returned.\n *\n * @param validationData - The current `ValidationData` into which to merge the additional errors\n * @param [additionalErrorSchema] - The optional additional set of errors in an `ErrorSchema`\n * @returns - The `validationData` with the additional errors from `additionalErrorSchema` merged into it, if provided.\n */\nexport default function validationDataMerge(validationData, additionalErrorSchema) {\n if (!additionalErrorSchema) {\n return validationData;\n }\n const { errors: oldErrors, errorSchema: oldErrorSchema } = validationData;\n let errors = toErrorList(additionalErrorSchema);\n let errorSchema = additionalErrorSchema;\n if (!isEmpty(oldErrorSchema)) {\n errorSchema = mergeObjects(oldErrorSchema, additionalErrorSchema, true);\n errors = [...oldErrors].concat(errors);\n }\n return { errorSchema, errors };\n}\n//# sourceMappingURL=validationDataMerge.js.map","import { REF_KEY, ROOT_SCHEMA_PREFIX } from './constants';\nimport isObject from 'lodash/isObject';\n/** Takes a `node` object and transforms any contained `$ref` node variables with a prefix, recursively calling\n * `withIdRefPrefix` for any other elements.\n *\n * @param node - The object node to which a ROOT_SCHEMA_PREFIX is added when a REF_KEY is part of it\n */\nfunction withIdRefPrefixObject(node) {\n for (const key in node) {\n const realObj = node;\n const value = realObj[key];\n if (key === REF_KEY && typeof value === 'string' && value.startsWith('#')) {\n realObj[key] = ROOT_SCHEMA_PREFIX + value;\n }\n else {\n realObj[key] = withIdRefPrefix(value);\n }\n }\n return node;\n}\n/** Takes a `node` object list and transforms any contained `$ref` node variables with a prefix, recursively calling\n * `withIdRefPrefix` for any other elements.\n *\n * @param node - The list of object nodes to which a ROOT_SCHEMA_PREFIX is added when a REF_KEY is part of it\n */\nfunction withIdRefPrefixArray(node) {\n for (let i = 0; i < node.length; i++) {\n node[i] = withIdRefPrefix(node[i]);\n }\n return node;\n}\n/** Recursively prefixes all `$ref`s in a schema with the value of the `ROOT_SCHEMA_PREFIX` constant.\n * This is used in isValid to make references to the rootSchema\n *\n * @param schemaNode - The object node to which a ROOT_SCHEMA_PREFIX is added when a REF_KEY is part of it\n * @returns - A copy of the `schemaNode` with updated `$ref`s\n */\nexport default function withIdRefPrefix(schemaNode) {\n if (Array.isArray(schemaNode)) {\n return withIdRefPrefixArray([...schemaNode]);\n }\n if (isObject(schemaNode)) {\n return withIdRefPrefixObject({ ...schemaNode });\n }\n return schemaNode;\n}\n//# sourceMappingURL=withIdRefPrefix.js.map","/** An enumeration of all the translatable strings used by `@rjsf/core` and its themes. The value of each of the\n * enumeration keys is expected to be the actual english string. Some strings contain replaceable parameter values\n * as indicated by `%1`, `%2`, etc. The number after the `%` indicates the order of the parameter. The ordering of\n * parameters is important because some languages may choose to put the second parameter before the first in its\n * translation. Also, some strings are rendered using `markdown-to-jsx` and thus support markdown and inline html.\n */\nexport var TranslatableString;\n(function (TranslatableString) {\n /** Fallback title of an array item, used by ArrayField */\n TranslatableString[\"ArrayItemTitle\"] = \"Item\";\n /** Missing items reason, used by ArrayField */\n TranslatableString[\"MissingItems\"] = \"Missing items definition\";\n /** Yes label, used by BooleanField */\n TranslatableString[\"YesLabel\"] = \"Yes\";\n /** No label, used by BooleanField */\n TranslatableString[\"NoLabel\"] = \"No\";\n /** Close label, used by ErrorList */\n TranslatableString[\"CloseLabel\"] = \"Close\";\n /** Errors label, used by ErrorList */\n TranslatableString[\"ErrorsLabel\"] = \"Errors\";\n /** New additionalProperties string default value, used by ObjectField */\n TranslatableString[\"NewStringDefault\"] = \"New Value\";\n /** Add button title, used by AddButton */\n TranslatableString[\"AddButton\"] = \"Add\";\n /** Add button title, used by AddButton */\n TranslatableString[\"AddItemButton\"] = \"Add Item\";\n /** Copy button title, used by IconButton */\n TranslatableString[\"CopyButton\"] = \"Copy\";\n /** Move down button title, used by IconButton */\n TranslatableString[\"MoveDownButton\"] = \"Move down\";\n /** Move up button title, used by IconButton */\n TranslatableString[\"MoveUpButton\"] = \"Move up\";\n /** Remove button title, used by IconButton */\n TranslatableString[\"RemoveButton\"] = \"Remove\";\n /** Now label, used by AltDateWidget */\n TranslatableString[\"NowLabel\"] = \"Now\";\n /** Clear label, used by AltDateWidget */\n TranslatableString[\"ClearLabel\"] = \"Clear\";\n /** Aria date label, used by DateWidget */\n TranslatableString[\"AriaDateLabel\"] = \"Select a date\";\n /** File preview label, used by FileWidget */\n TranslatableString[\"PreviewLabel\"] = \"Preview\";\n /** Decrement button aria label, used by UpDownWidget */\n TranslatableString[\"DecrementAriaLabel\"] = \"Decrease value by 1\";\n /** Increment button aria label, used by UpDownWidget */\n TranslatableString[\"IncrementAriaLabel\"] = \"Increase value by 1\";\n // Strings with replaceable parameters\n /** Unknown field type reason, where %1 will be replaced with the type as provided by SchemaField */\n TranslatableString[\"UnknownFieldType\"] = \"Unknown field type %1\";\n /** Option prefix, where %1 will be replaced with the option index as provided by MultiSchemaField */\n TranslatableString[\"OptionPrefix\"] = \"Option %1\";\n /** Option prefix, where %1 and %2 will be replaced by the schema title and option index, respectively as provided by\n * MultiSchemaField\n */\n TranslatableString[\"TitleOptionPrefix\"] = \"%1 option %2\";\n /** Key label, where %1 will be replaced by the label as provided by WrapIfAdditionalTemplate */\n TranslatableString[\"KeyLabel\"] = \"%1 Key\";\n // Strings with replaceable parameters AND/OR that support markdown and html\n /** Invalid object field configuration as provided by the ObjectField */\n TranslatableString[\"InvalidObjectField\"] = \"Invalid \\\"%1\\\" object field configuration: <em>%2</em>.\";\n /** Unsupported field schema, used by UnsupportedField */\n TranslatableString[\"UnsupportedField\"] = \"Unsupported field schema.\";\n /** Unsupported field schema, where %1 will be replaced by the idSchema.$id as provided by UnsupportedField */\n TranslatableString[\"UnsupportedFieldWithId\"] = \"Unsupported field schema for field <code>%1</code>.\";\n /** Unsupported field schema, where %1 will be replaced by the reason string as provided by UnsupportedField */\n TranslatableString[\"UnsupportedFieldWithReason\"] = \"Unsupported field schema: <em>%1</em>.\";\n /** Unsupported field schema, where %1 and %2 will be replaced by the idSchema.$id and reason strings, respectively,\n * as provided by UnsupportedField\n */\n TranslatableString[\"UnsupportedFieldWithIdAndReason\"] = \"Unsupported field schema for field <code>%1</code>: <em>%2</em>.\";\n /** File name, type and size info, where %1, %2 and %3 will be replaced by the file name, file type and file size as\n * provided by FileWidget\n */\n TranslatableString[\"FilesInfo\"] = \"<strong>%1</strong> (%2, %3 bytes)\";\n})(TranslatableString || (TranslatableString = {}));\n//# sourceMappingURL=enums.js.map","import get from 'lodash/get';\nimport isEqual from 'lodash/isEqual';\nimport { ID_KEY } from '../constants';\nimport hashForSchema from '../hashForSchema';\n/** An implementation of the `ValidatorType` interface that is designed for use in capturing schemas used by the\n * `isValid()` function. The rest of the implementation of the interface throws errors when it is attempted to be used.\n * An instance of the object allows the caller to capture the schemas used in calls to the `isValid()` function. These\n * captured schema, along with the root schema used to construct the object are stored in the map of schemas keyed by\n * the hashed value of the schema. NOTE: After hashing the schema, an $id with the hash value is added to the\n * schema IF that schema doesn't already have an $id, prior to putting the schema into the map.\n */\nexport default class ParserValidator {\n /** Construct the ParserValidator for the given `rootSchema`. This `rootSchema` will be stashed in the `schemaMap`\n * first.\n *\n * @param rootSchema - The root schema against which this validator will be executed\n */\n constructor(rootSchema) {\n /** The map of schemas encountered by the ParserValidator */\n this.schemaMap = {};\n this.rootSchema = rootSchema;\n this.addSchema(rootSchema, hashForSchema(rootSchema));\n }\n /** Adds the given `schema` to the `schemaMap` keyed by the `hash` or `ID_KEY` if present on the `schema`. If the\n * schema does not have an `ID_KEY`, then the `hash` will be added as the `ID_KEY` to allow the schema to be\n * associated with it's `hash` for future use (by a schema compiler).\n *\n * @param schema - The schema which is to be added to the map\n * @param hash - The hash value at which to map the schema\n */\n addSchema(schema, hash) {\n const key = get(schema, ID_KEY, hash);\n const identifiedSchema = { ...schema, [ID_KEY]: key };\n const existing = this.schemaMap[key];\n if (!existing) {\n this.schemaMap[key] = identifiedSchema;\n }\n else if (!isEqual(existing, identifiedSchema)) {\n console.error('existing schema:', JSON.stringify(existing, null, 2));\n console.error('new schema:', JSON.stringify(identifiedSchema, null, 2));\n throw new Error(`Two different schemas exist with the same key ${key}! What a bad coincidence. If possible, try adding an $id to one of the schemas`);\n }\n }\n /** Returns the current `schemaMap` to the caller\n */\n getSchemaMap() {\n return this.schemaMap;\n }\n /** Implements the `ValidatorType` `isValid()` method to capture the `schema` in the `schemaMap`. Throws an error when\n * the `rootSchema` is not the same as the root schema provided during construction.\n *\n * @param schema - The schema to record in the `schemaMap`\n * @param _formData - The formData parameter that is ignored\n * @param rootSchema - The root schema associated with the schema\n * @throws - Error when the given `rootSchema` differs from the root schema provided during construction\n */\n isValid(schema, _formData, rootSchema) {\n if (!isEqual(rootSchema, this.rootSchema)) {\n throw new Error('Unexpectedly calling isValid() with a rootSchema that differs from the construction rootSchema');\n }\n this.addSchema(schema, hashForSchema(schema));\n return false;\n }\n /** Implements the `ValidatorType` `rawValidation()` method to throw an error since it is never supposed to be called\n *\n * @param _schema - The schema parameter that is ignored\n * @param _formData - The formData parameter that is ignored\n */\n rawValidation(_schema, _formData) {\n throw new Error('Unexpectedly calling the `rawValidation()` method during schema parsing');\n }\n /** Implements the `ValidatorType` `toErrorList()` method to throw an error since it is never supposed to be called\n *\n * @param _errorSchema - The error schema parameter that is ignored\n * @param _fieldPath - The field path parameter that is ignored\n */\n toErrorList(_errorSchema, _fieldPath) {\n throw new Error('Unexpectedly calling the `toErrorList()` method during schema parsing');\n }\n /** Implements the `ValidatorType` `validateFormData()` method to throw an error since it is never supposed to be\n * called\n *\n * @param _formData - The formData parameter that is ignored\n * @param _schema - The schema parameter that is ignored\n * @param _customValidate - The customValidate parameter that is ignored\n * @param _transformErrors - The transformErrors parameter that is ignored\n * @param _uiSchema - The uiSchema parameter that is ignored\n */\n validateFormData(_formData, _schema, _customValidate, _transformErrors, _uiSchema) {\n throw new Error('Unexpectedly calling the `validateFormData()` method during schema parsing');\n }\n}\n//# sourceMappingURL=ParserValidator.js.map","import forEach from 'lodash/forEach';\nimport isEqual from 'lodash/isEqual';\nimport { PROPERTIES_KEY, ITEMS_KEY } from '../constants';\nimport ParserValidator from './ParserValidator';\nimport { retrieveSchemaInternal, resolveAnyOrOneOfSchemas } from '../schema/retrieveSchema';\n/** Recursive function used to parse the given `schema` belonging to the `rootSchema`. The `validator` is used to\n * capture the sub-schemas that the `isValid()` function is called with. For each schema returned by the\n * `retrieveSchemaInternal()`, the `resolveAnyOrOneOfSchemas()` function is called. For each of the schemas returned\n * from THAT call have `properties`, then each of the sub-schema property objects are then recursively parsed.\n *\n * @param validator - The `ParserValidator` implementation used to capture `isValid()` calls during parsing\n * @param recurseList - The list of schemas returned from the `retrieveSchemaInternal`, preventing infinite recursion\n * @param rootSchema - The root schema from which the schema parsing began\n * @param schema - The current schema element being parsed\n */\nfunction parseSchema(validator, recurseList, rootSchema, schema) {\n const schemas = retrieveSchemaInternal(validator, schema, rootSchema, undefined, true);\n schemas.forEach((schema) => {\n const sameSchemaIndex = recurseList.findIndex((item) => isEqual(item, schema));\n if (sameSchemaIndex === -1) {\n recurseList.push(schema);\n const allOptions = resolveAnyOrOneOfSchemas(validator, schema, rootSchema, true);\n allOptions.forEach((s) => {\n if (PROPERTIES_KEY in s && s[PROPERTIES_KEY]) {\n forEach(schema[PROPERTIES_KEY], (value) => {\n parseSchema(validator, recurseList, rootSchema, value);\n });\n }\n });\n if (ITEMS_KEY in schema && !Array.isArray(schema.items) && typeof schema.items !== 'boolean') {\n parseSchema(validator, recurseList, rootSchema, schema.items);\n }\n }\n });\n}\n/** Parses the given `rootSchema` to extract out all the sub-schemas that maybe contained within it. Returns a map of\n * the hash of the schema to schema/sub-schema.\n *\n * @param rootSchema - The root schema to parse for sub-schemas used by `isValid()` calls\n * @returns - The `SchemaMap` of all schemas that were parsed\n */\nexport default function schemaParser(rootSchema) {\n const validator = new ParserValidator(rootSchema);\n const recurseList = [];\n parseSchema(validator, recurseList, rootSchema, rootSchema);\n return validator.getSchemaMap();\n}\n//# sourceMappingURL=schemaParser.js.map","import schemaParser from './schemaParser';\nexport { schemaParser };\n//# sourceMappingURL=index.js.map","import allowAdditionalItems from './allowAdditionalItems';\nimport asNumber from './asNumber';\nimport canExpand from './canExpand';\nimport createErrorHandler from './createErrorHandler';\nimport createSchemaUtils from './createSchemaUtils';\nimport dataURItoBlob from './dataURItoBlob';\nimport deepEquals from './deepEquals';\nimport englishStringTranslator from './englishStringTranslator';\nimport enumOptionsDeselectValue from './enumOptionsDeselectValue';\nimport enumOptionsIndexForValue from './enumOptionsIndexForValue';\nimport enumOptionsIsSelected from './enumOptionsIsSelected';\nimport enumOptionsSelectValue from './enumOptionsSelectValue';\nimport enumOptionsValueForIndex from './enumOptionsValueForIndex';\nimport ErrorSchemaBuilder from './ErrorSchemaBuilder';\nimport findSchemaDefinition from './findSchemaDefinition';\nimport getDateElementProps from './getDateElementProps';\nimport getDiscriminatorFieldFromSchema from './getDiscriminatorFieldFromSchema';\nimport getInputProps from './getInputProps';\nimport getSchemaType from './getSchemaType';\nimport getSubmitButtonOptions from './getSubmitButtonOptions';\nimport getTemplate from './getTemplate';\nimport getUiOptions from './getUiOptions';\nimport getWidget from './getWidget';\nimport guessType from './guessType';\nimport hashForSchema from './hashForSchema';\nimport hasWidget from './hasWidget';\nimport { ariaDescribedByIds, descriptionId, errorId, examplesId, helpId, optionId, titleId } from './idGenerators';\nimport isConstant from './isConstant';\nimport isCustomWidget from './isCustomWidget';\nimport isFixedItems from './isFixedItems';\nimport isObject from './isObject';\nimport labelValue from './labelValue';\nimport localToUTC from './localToUTC';\nimport mergeDefaultsWithFormData from './mergeDefaultsWithFormData';\nimport mergeObjects from './mergeObjects';\nimport mergeSchemas from './mergeSchemas';\nimport optionsList from './optionsList';\nimport orderProperties from './orderProperties';\nimport pad from './pad';\nimport parseDateString from './parseDateString';\nimport rangeSpec from './rangeSpec';\nimport replaceStringParameters from './replaceStringParameters';\nimport schemaRequiresTrueValue from './schemaRequiresTrueValue';\nimport shouldRender from './shouldRender';\nimport toConstant from './toConstant';\nimport toDateString from './toDateString';\nimport toErrorList from './toErrorList';\nimport toErrorSchema from './toErrorSchema';\nimport unwrapErrorHandler from './unwrapErrorHandler';\nimport utcToLocal from './utcToLocal';\nimport validationDataMerge from './validationDataMerge';\nimport withIdRefPrefix from './withIdRefPrefix';\nimport getOptionMatchingSimpleDiscriminator from './getOptionMatchingSimpleDiscriminator';\nexport * from './types';\nexport * from './enums';\nexport * from './constants';\nexport * from './parser';\nexport * from './schema';\nexport { allowAdditionalItems, ariaDescribedByIds, asNumber, canExpand, createErrorHandler, createSchemaUtils, dataURItoBlob, deepEquals, descriptionId, englishStringTranslator, enumOptionsDeselectValue, enumOptionsIndexForValue, enumOptionsIsSelected, enumOptionsSelectValue, enumOptionsValueForIndex, errorId, examplesId, ErrorSchemaBuilder, findSchemaDefinition, getDateElementProps, getDiscriminatorFieldFromSchema, getInputProps, getOptionMatchingSimpleDiscriminator, getSchemaType, getSubmitButtonOptions, getTemplate, getUiOptions, getWidget, guessType, hasWidget, hashForSchema, helpId, isConstant, isCustomWidget, isFixedItems, isObject, labelValue, localToUTC, mergeDefaultsWithFormData, mergeObjects, mergeSchemas, optionId, optionsList, orderProperties, pad, parseDateString, rangeSpec, replaceStringParameters, schemaRequiresTrueValue, shouldRender, titleId, toConstant, toDateString, toErrorList, toErrorSchema, unwrapErrorHandler, utcToLocal, validationDataMerge, withIdRefPrefix, };\n//# sourceMappingURL=index.js.map","'use strict';\n\n// MODULES //\n\nvar isArray = require( 'validate.io-array' ),\n\tisIntegerArray = require( 'validate.io-integer-array' ),\n\tisFunction = require( 'validate.io-function' );\n\n\n// VARIABLES //\n\nvar MAXINT = Math.pow( 2, 31 ) - 1;\n\n\n// FUNCTIONS //\n\n/**\n* FUNCTION: gcd( a, b )\n*\tComputes the greatest common divisor of two integers `a` and `b`, using the binary GCD algorithm.\n*\n* @param {Number} a - integer\n* @param {Number} b - integer\n* @returns {Number} greatest common divisor\n*/\nfunction gcd( a, b ) {\n\tvar k = 1,\n\t\tt;\n\t// Simple cases:\n\tif ( a === 0 ) {\n\t\treturn b;\n\t}\n\tif ( b === 0 ) {\n\t\treturn a;\n\t}\n\t// Reduce `a` and/or `b` to odd numbers and keep track of the greatest power of 2 dividing both `a` and `b`...\n\twhile ( a%2 === 0 && b%2 === 0 ) {\n\t\ta = a / 2; // right shift\n\t\tb = b / 2; // right shift\n\t\tk = k * 2; // left shift\n\t}\n\t// Reduce `a` to an odd number...\n\twhile ( a%2 === 0 ) {\n\t\ta = a / 2; // right shift\n\t}\n\t// Henceforth, `a` is always odd...\n\twhile ( b ) {\n\t\t// Remove all factors of 2 in `b`, as they are not common...\n\t\twhile ( b%2 === 0 ) {\n\t\t\tb = b / 2; // right shift\n\t\t}\n\t\t// `a` and `b` are both odd. Swap values such that `b` is the larger of the two values, and then set `b` to the difference (which is even)...\n\t\tif ( a > b ) {\n\t\t\tt = b;\n\t\t\tb = a;\n\t\t\ta = t;\n\t\t}\n\t\tb = b - a; // b=0 iff b=a\n\t}\n\t// Restore common factors of 2...\n\treturn k * a;\n} // end FUNCTION gcd()\n\n/**\n* FUNCTION: bitwise( a, b )\n*\tComputes the greatest common divisor of two integers `a` and `b`, using the binary GCD algorithm and bitwise operations.\n*\n* @param {Number} a - safe integer\n* @param {Number} b - safe integer\n* @returns {Number} greatest common divisor\n*/\nfunction bitwise( a, b ) {\n\tvar k = 0,\n\t\tt;\n\t// Simple cases:\n\tif ( a === 0 ) {\n\t\treturn b;\n\t}\n\tif ( b === 0 ) {\n\t\treturn a;\n\t}\n\t// Reduce `a` and/or `b` to odd numbers and keep track of the greatest power of 2 dividing both `a` and `b`...\n\twhile ( (a & 1) === 0 && (b & 1) === 0 ) {\n\t\ta >>>= 1; // right shift\n\t\tb >>>= 1; // right shift\n\t\tk++;\n\t}\n\t// Reduce `a` to an odd number...\n\twhile ( (a & 1) === 0 ) {\n\t\ta >>>= 1; // right shift\n\t}\n\t// Henceforth, `a` is always odd...\n\twhile ( b ) {\n\t\t// Remove all factors of 2 in `b`, as they are not common...\n\t\twhile ( (b & 1) === 0 ) {\n\t\t\tb >>>= 1; // right shift\n\t\t}\n\t\t// `a` and `b` are both odd. Swap values such that `b` is the larger of the two values, and then set `b` to the difference (which is even)...\n\t\tif ( a > b ) {\n\t\t\tt = b;\n\t\t\tb = a;\n\t\t\ta = t;\n\t\t}\n\t\tb = b - a; // b=0 iff b=a\n\t}\n\t// Restore common factors of 2...\n\treturn a << k;\n} // end FUNCTION bitwise()\n\n\n// GREATEST COMMON DIVISOR //\n\n/**\n* FUNCTION: compute( arr[, clbk] )\n*\tComputes the greatest common divisor.\n*\n* @param {Number[]|Number} arr - input array of integers\n* @param {Function|Number} [clbk] - accessor function for accessing array values\n* @returns {Number|Null} greatest common divisor or null\n*/\nfunction compute() {\n\tvar nargs = arguments.length,\n\t\targs,\n\t\tclbk,\n\t\tarr,\n\t\tlen,\n\t\ta, b,\n\t\ti;\n\n\t// Copy the input arguments to an array...\n\targs = new Array( nargs );\n\tfor ( i = 0; i < nargs; i++ ) {\n\t\targs[ i ] = arguments[ i ];\n\t}\n\t// Have we been provided with integer arguments?\n\tif ( isIntegerArray( args ) ) {\n\t\tif ( nargs === 2 ) {\n\t\t\ta = args[ 0 ];\n\t\t\tb = args[ 1 ];\n\t\t\tif ( a < 0 ) {\n\t\t\t\ta = -a;\n\t\t\t}\n\t\t\tif ( b < 0 ) {\n\t\t\t\tb = -b;\n\t\t\t}\n\t\t\tif ( a <= MAXINT && b <= MAXINT ) {\n\t\t\t\treturn bitwise( a, b );\n\t\t\t} else {\n\t\t\t\treturn gcd( a, b );\n\t\t\t}\n\t\t}\n\t\tarr = args;\n\t}\n\t// If not integers, ensure the first argument is an array...\n\telse if ( !isArray( args[ 0 ] ) ) {\n\t\tthrow new TypeError( 'gcd()::invalid input argument. Must provide an array of integers. Value: `' + args[ 0 ] + '`.' );\n\t}\n\t// Have we been provided with more than one argument? If so, ensure that the accessor argument is a function...\n\telse if ( nargs > 1 ) {\n\t\tarr = args[ 0 ];\n\t\tclbk = args[ 1 ];\n\t\tif ( !isFunction( clbk ) ) {\n\t\t\tthrow new TypeError( 'gcd()::invalid input argument. Accessor must be a function. Value: `' + clbk + '`.' );\n\t\t}\n\t}\n\t// We have been provided an array...\n\telse {\n\t\tarr = args[ 0 ];\n\t}\n\tlen = arr.length;\n\n\t// Check if a sufficient number of values have been provided...\n\tif ( len < 2 ) {\n\t\treturn null;\n\t}\n\t// If an accessor is provided, extract the array values...\n\tif ( clbk ) {\n\t\ta = new Array( len );\n\t\tfor ( i = 0; i < len; i++ ) {\n\t\t\ta[ i ] = clbk( arr[ i ], i );\n\t\t}\n\t\tarr = a;\n\t}\n\t// Given an input array, ensure all array values are integers...\n\tif ( nargs < 3 ) {\n\t\tif ( !isIntegerArray( arr ) ) {\n\t\t\tthrow new TypeError( 'gcd()::invalid input argument. Accessed array values must be integers. Value: `' + arr + '`.' );\n\t\t}\n\t}\n\t// Convert any negative integers to positive integers...\n\tfor ( i = 0; i < len; i++ ) {\n\t\ta = arr[ i ];\n\t\tif ( a < 0 ) {\n\t\t\tarr[ i ] = -a;\n\t\t}\n\t}\n\t// Exploit the fact that the gcd is an associative function...\n\ta = arr[ 0 ];\n\tfor ( i = 1; i < len; i++ ) {\n\t\tb = arr[ i ];\n\t\tif ( b <= MAXINT && a <= MAXINT ) {\n\t\t\ta = bitwise( a, b );\n\t\t} else {\n\t\t\ta = gcd( a, b );\n\t\t}\n\t}\n\treturn a;\n} // end FUNCTION compute()\n\n\n// EXPORTS //\n\nmodule.exports = compute;\n","'use strict';\n\n// MODULES //\n\nvar gcd = require( 'compute-gcd' ),\n\tisArray = require( 'validate.io-array' ),\n\tisIntegerArray = require( 'validate.io-integer-array' ),\n\tisFunction = require( 'validate.io-function' );\n\n\n// LEAST COMMON MULTIPLE //\n\n/**\n* FUNCTION: lcm( arr[, clbk] )\n*\tComputes the least common multiple (lcm).\n*\n* @param {Number[]|Number} arr - input array of integers\n* @param {Function|Number} [accessor] - accessor function for accessing array values\n* @returns {Number|Null} least common multiple or null\n*/\nfunction lcm() {\n\tvar nargs = arguments.length,\n\t\targs,\n\t\tclbk,\n\t\tarr,\n\t\tlen,\n\t\ta, b,\n\t\ti;\n\n\t// Copy the input arguments to an array...\n\targs = new Array( nargs );\n\tfor ( i = 0; i < nargs; i++ ) {\n\t\targs[ i ] = arguments[ i ];\n\t}\n\t// Have we been provided with integer arguments?\n\tif ( isIntegerArray( args ) ) {\n\t\tif ( nargs === 2 ) {\n\t\t\ta = args[ 0 ];\n\t\t\tb = args[ 1 ];\n\t\t\tif ( a < 0 ) {\n\t\t\t\ta = -a;\n\t\t\t}\n\t\t\tif ( b < 0 ) {\n\t\t\t\tb = -b;\n\t\t\t}\n\t\t\tif ( a === 0 || b === 0 ) {\n\t\t\t\treturn 0;\n\t\t\t}\n\t\t\treturn ( a/gcd(a,b) ) * b;\n\t\t}\n\t\tarr = args;\n\t}\n\t// If not integers, ensure that the first argument is an array...\n\telse if ( !isArray( args[ 0 ] ) ) {\n\t\tthrow new TypeError( 'lcm()::invalid input argument. Must provide an array of integers. Value: `' + args[ 0 ] + '`.' );\n\t}\n\t// Have we been provided with more than one argument? If so, ensure that the accessor argument is a function...\n\telse if ( nargs > 1 ) {\n\t\tarr = args[ 0 ];\n\t\tclbk = args[ 1 ];\n\t\tif ( !isFunction( clbk ) ) {\n\t\t\tthrow new TypeError( 'lcm()::invalid input argument. Accessor must be a function. Value: `' + clbk + '`.' );\n\t\t}\n\t}\n\t// We have been provided an array...\n\telse {\n\t\tarr = args[ 0 ];\n\t}\n\tlen = arr.length;\n\n\t// Check if a sufficient number of values have been provided...\n\tif ( len < 2 ) {\n\t\treturn null;\n\t}\n\t// If an accessor is provided, extract the array values...\n\tif ( clbk ) {\n\t\ta = new Array( len );\n\t\tfor ( i = 0; i < len; i++ ) {\n\t\t\ta[ i ] = clbk( arr[ i ], i );\n\t\t}\n\t\tarr = a;\n\t}\n\t// Given an input array, ensure all array values are integers...\n\tif ( nargs < 3 ) {\n\t\tif ( !isIntegerArray( arr ) ) {\n\t\t\tthrow new TypeError( 'lcm()::invalid input argument. Accessed array values must be integers. Value: `' + arr + '`.' );\n\t\t}\n\t}\n\t// Convert any negative integers to positive integers...\n\tfor ( i = 0; i < len; i++ ) {\n\t\ta = arr[ i ];\n\t\tif ( a < 0 ) {\n\t\t\tarr[ i ] = -a;\n\t\t}\n\t}\n\t// Exploit the fact that the lcm is an associative function...\n\ta = arr[ 0 ];\n\tfor ( i = 1; i < len; i++ ) {\n\t\tb = arr[ i ];\n\t\tif ( a === 0 || b === 0 ) {\n\t\t\treturn 0;\n\t\t}\n\t\ta = ( a/gcd(a,b) ) * b;\n\t}\n\treturn a;\n} // end FUNCTION lcm()\n\n\n// EXPORTS //\n\nmodule.exports = lcm;\n","var isEqual = require('lodash/isEqual')\nvar sortBy = require('lodash/sortBy')\nvar uniq = require('lodash/uniq')\nvar uniqWith = require('lodash/uniqWith')\nvar defaults = require('lodash/defaults')\nvar intersectionWith = require('lodash/intersectionWith')\nvar isPlainObject = require('lodash/isPlainObject')\nvar isBoolean = require('lodash/isBoolean')\n\nvar normalizeArray = val => Array.isArray(val)\n ? val : [val]\nvar undef = val => val === undefined\nvar keys = obj => isPlainObject(obj) || Array.isArray(obj) ? Object.keys(obj) : []\nvar has = (obj, key) => obj.hasOwnProperty(key)\nvar stringArray = arr => sortBy(uniq(arr))\nvar undefEmpty = val => undef(val) || (Array.isArray(val) && val.length === 0)\nvar keyValEqual = (a, b, key, compare) => b && has(b, key) && a && has(a, key) && compare(a[key], b[key])\nvar undefAndZero = (a, b) => (undef(a) && b === 0) || (undef(b) && a === 0) || isEqual(a, b)\nvar falseUndefined = (a, b) => (undef(a) && b === false) || (undef(b) && a === false) || isEqual(a, b)\nvar emptySchema = schema => undef(schema) || isEqual(schema, {}) || schema === true\nvar emptyObjUndef = schema => undef(schema) || isEqual(schema, {})\nvar isSchema = val => undef(val) || isPlainObject(val) || val === true || val === false\n\nfunction undefArrayEqual(a, b) {\n if (undefEmpty(a) && undefEmpty(b)) {\n return true\n } else {\n return isEqual(stringArray(a), stringArray(b))\n }\n}\n\nfunction unsortedNormalizedArray(a, b) {\n a = normalizeArray(a)\n b = normalizeArray(b)\n return isEqual(stringArray(a), stringArray(b))\n}\n\nfunction schemaGroup(a, b, key, compare) {\n var allProps = uniq(keys(a).concat(keys(b)))\n if (emptyObjUndef(a) && emptyObjUndef(b)) {\n return true\n } else if (emptyObjUndef(a) && keys(b).length) {\n return false\n } else if (emptyObjUndef(b) && keys(a).length) {\n return false\n }\n\n return allProps.every(function(key) {\n var aVal = a[key]\n var bVal = b[key]\n if (Array.isArray(aVal) && Array.isArray(bVal)) {\n return isEqual(stringArray(a), stringArray(b))\n } else if (Array.isArray(aVal) && !Array.isArray(bVal)) {\n return false\n } else if (Array.isArray(bVal) && !Array.isArray(aVal)) {\n return false\n }\n return keyValEqual(a, b, key, compare)\n })\n}\n\nfunction items(a, b, key, compare) {\n if (isPlainObject(a) && isPlainObject(b)) {\n return compare(a, b)\n } else if (Array.isArray(a) && Array.isArray(b)) {\n return schemaGroup(a, b, key, compare)\n } else {\n return isEqual(a, b)\n }\n}\n\nfunction unsortedArray(a, b, key, compare) {\n var uniqueA = uniqWith(a, compare)\n var uniqueB = uniqWith(b, compare)\n var inter = intersectionWith(uniqueA, uniqueB, compare)\n return inter.length === Math.max(uniqueA.length, uniqueB.length)\n}\n\nvar comparers = {\n title: isEqual,\n uniqueItems: falseUndefined,\n minLength: undefAndZero,\n minItems: undefAndZero,\n minProperties: undefAndZero,\n required: undefArrayEqual,\n enum: undefArrayEqual,\n type: unsortedNormalizedArray,\n items: items,\n anyOf: unsortedArray,\n allOf: unsortedArray,\n oneOf: unsortedArray,\n properties: schemaGroup,\n patternProperties: schemaGroup,\n dependencies: schemaGroup\n}\n\nvar acceptsUndefined = [\n 'properties',\n 'patternProperties',\n 'dependencies',\n 'uniqueItems',\n 'minLength',\n 'minItems',\n 'minProperties',\n 'required'\n]\n\nvar schemaProps = ['additionalProperties', 'additionalItems', 'contains', 'propertyNames', 'not']\n\nfunction compare(a, b, options) {\n options = defaults(options, {\n ignore: []\n })\n\n if (emptySchema(a) && emptySchema(b)) {\n return true\n }\n\n if (!isSchema(a) || !isSchema(b)) {\n throw new Error('Either of the values are not a JSON schema.')\n }\n if (a === b) {\n return true\n }\n\n if (isBoolean(a) && isBoolean(b)) {\n return a === b\n }\n\n if ((a === undefined && b === false) || (b === undefined && a === false)) {\n return false\n }\n\n if ((undef(a) && !undef(b)) || (!undef(a) && undef(b))) {\n return false\n }\n\n var allKeys = uniq(Object.keys(a).concat(Object.keys(b)))\n\n if (options.ignore.length) {\n allKeys = allKeys.filter(k => options.ignore.indexOf(k) === -1)\n }\n\n if (!allKeys.length) {\n return true\n }\n\n function innerCompare(a, b) {\n return compare(a, b, options)\n }\n\n return allKeys.every(function(key) {\n var aValue = a[key]\n var bValue = b[key]\n\n if (schemaProps.indexOf(key) !== -1) {\n return compare(aValue, bValue, options)\n }\n\n var comparer = comparers[key]\n if (!comparer) {\n comparer = isEqual\n }\n\n // do simple lodash check first\n if (isEqual(aValue, bValue)) {\n return true\n }\n\n if (acceptsUndefined.indexOf(key) === -1) {\n if ((!has(a, key) && has(b, key)) || (has(a, key) && !has(b, key))) {\n return aValue === bValue\n }\n }\n\n var result = comparer(aValue, bValue, key, innerCompare)\n if (!isBoolean(result)) {\n throw new Error('Comparer must return true or false')\n }\n return result\n })\n}\n\nmodule.exports = compare\n","const flatten = require('lodash/flatten')\nconst flattenDeep = require('lodash/flattenDeep')\nconst isPlainObject = require('lodash/isPlainObject')\nconst uniq = require('lodash/uniq')\nconst uniqWith = require('lodash/uniqWith')\nconst without = require('lodash/without')\n\nfunction deleteUndefinedProps(returnObject) {\n // cleanup empty\n for (const prop in returnObject) {\n if (has(returnObject, prop) && isEmptySchema(returnObject[prop])) {\n delete returnObject[prop]\n }\n }\n return returnObject\n}\n\nconst allUniqueKeys = (arr) => uniq(flattenDeep(arr.map(keys)))\nconst getValues = (schemas, key) => schemas.map(schema => schema && schema[key])\nconst has = (obj, propName) => Object.prototype.hasOwnProperty.call(obj, propName)\nconst keys = obj => {\n if (isPlainObject(obj) || Array.isArray(obj)) {\n return Object.keys(obj)\n } else {\n return []\n }\n}\n\nconst notUndefined = (val) => val !== undefined\nconst isSchema = (val) => isPlainObject(val) || val === true || val === false\nconst isEmptySchema = (obj) => (!keys(obj).length) && obj !== false && obj !== true\nconst withoutArr = (arr, ...rest) => without.apply(null, [arr].concat(flatten(rest)))\n\nmodule.exports = {\n allUniqueKeys,\n deleteUndefinedProps,\n getValues,\n has,\n isEmptySchema,\n isSchema,\n keys,\n notUndefined,\n uniqWith,\n withoutArr\n}\n","\nconst compare = require('json-schema-compare')\nconst forEach = require('lodash/forEach')\nconst {\n allUniqueKeys,\n deleteUndefinedProps,\n has,\n isSchema,\n notUndefined,\n uniqWith\n} = require('../common')\n\nfunction removeFalseSchemasFromArray(target) {\n forEach(target, function(schema, index) {\n if (schema === false) {\n target.splice(index, 1)\n }\n })\n}\n\nfunction getItemSchemas(subSchemas, key) {\n return subSchemas.map(function(sub) {\n if (!sub) {\n return undefined\n }\n\n if (Array.isArray(sub.items)) {\n const schemaAtPos = sub.items[key]\n if (isSchema(schemaAtPos)) {\n return schemaAtPos\n } else if (has(sub, 'additionalItems')) {\n return sub.additionalItems\n }\n } else {\n return sub.items\n }\n\n return undefined\n })\n}\n\nfunction getAdditionalSchemas(subSchemas) {\n return subSchemas.map(function(sub) {\n if (!sub) {\n return undefined\n }\n if (Array.isArray(sub.items)) {\n return sub.additionalItems\n }\n return sub.items\n })\n}\n\n// Provide source when array\nfunction mergeItems(group, mergeSchemas, items) {\n const allKeys = allUniqueKeys(items)\n return allKeys.reduce(function(all, key) {\n const schemas = getItemSchemas(group, key)\n const compacted = uniqWith(schemas.filter(notUndefined), compare)\n all[key] = mergeSchemas(compacted, key)\n return all\n }, [])\n}\n\nmodule.exports = {\n keywords: ['items', 'additionalItems'],\n resolver(values, parents, mergers) {\n // const createSubMerger = groupKey => (schemas, key) => mergeSchemas(schemas, parents.concat(groupKey, key))\n const items = values.map(s => s.items)\n const itemsCompacted = items.filter(notUndefined)\n const returnObject = {}\n\n // if all items keyword values are schemas, we can merge them as simple schemas\n // if not we need to merge them as mixed\n if (itemsCompacted.every(isSchema)) {\n returnObject.items = mergers.items(items)\n } else {\n returnObject.items = mergeItems(values, mergers.items, items)\n }\n\n let schemasAtLastPos\n if (itemsCompacted.every(Array.isArray)) {\n schemasAtLastPos = values.map(s => s.additionalItems)\n } else if (itemsCompacted.some(Array.isArray)) {\n schemasAtLastPos = getAdditionalSchemas(values)\n }\n\n if (schemasAtLastPos) {\n returnObject.additionalItems = mergers.additionalItems(schemasAtLastPos)\n }\n\n if (returnObject.additionalItems === false && Array.isArray(returnObject.items)) {\n removeFalseSchemasFromArray(returnObject.items)\n }\n\n return deleteUndefinedProps(returnObject)\n }\n}\n","\nconst compare = require('json-schema-compare')\nconst forEach = require('lodash/forEach')\nconst {\n allUniqueKeys,\n deleteUndefinedProps,\n getValues,\n keys,\n notUndefined,\n uniqWith,\n withoutArr\n} = require('../common')\n\nfunction removeFalseSchemas(target) {\n forEach(target, function(schema, prop) {\n if (schema === false) {\n delete target[prop]\n }\n })\n}\n\nfunction mergeSchemaGroup(group, mergeSchemas) {\n const allKeys = allUniqueKeys(group)\n return allKeys.reduce(function(all, key) {\n const schemas = getValues(group, key)\n const compacted = uniqWith(schemas.filter(notUndefined), compare)\n all[key] = mergeSchemas(compacted, key)\n return all\n }, {})\n}\n\nmodule.exports = {\n keywords: ['properties', 'patternProperties', 'additionalProperties'],\n resolver(values, parents, mergers, options) {\n // first get rid of all non permitted properties\n if (!options.ignoreAdditionalProperties) {\n values.forEach(function(subSchema) {\n const otherSubSchemas = values.filter(s => s !== subSchema)\n const ownKeys = keys(subSchema.properties)\n const ownPatternKeys = keys(subSchema.patternProperties)\n const ownPatterns = ownPatternKeys.map(k => new RegExp(k))\n otherSubSchemas.forEach(function(other) {\n const allOtherKeys = keys(other.properties)\n const keysMatchingPattern = allOtherKeys.filter(k => ownPatterns.some(pk => pk.test(k)))\n const additionalKeys = withoutArr(allOtherKeys, ownKeys, keysMatchingPattern)\n additionalKeys.forEach(function(key) {\n other.properties[key] = mergers.properties([\n other.properties[key], subSchema.additionalProperties\n ], key)\n })\n })\n })\n\n // remove disallowed patternProperties\n values.forEach(function(subSchema) {\n const otherSubSchemas = values.filter(s => s !== subSchema)\n const ownPatternKeys = keys(subSchema.patternProperties)\n if (subSchema.additionalProperties === false) {\n otherSubSchemas.forEach(function(other) {\n const allOtherPatterns = keys(other.patternProperties)\n const additionalPatternKeys = withoutArr(allOtherPatterns, ownPatternKeys)\n additionalPatternKeys.forEach(key => delete other.patternProperties[key])\n })\n }\n })\n }\n\n const returnObject = {\n additionalProperties: mergers.additionalProperties(values.map(s => s.additionalProperties)),\n patternProperties: mergeSchemaGroup(values.map(s => s.patternProperties), mergers.patternProperties),\n properties: mergeSchemaGroup(values.map(s => s.properties), mergers.properties)\n }\n\n if (returnObject.additionalProperties === false) {\n removeFalseSchemas(returnObject.properties)\n }\n\n return deleteUndefinedProps(returnObject)\n }\n}\n","const cloneDeep = require('lodash/cloneDeep')\nconst compare = require('json-schema-compare')\nconst computeLcm = require('compute-lcm')\nconst defaultsDeep = require('lodash/defaultsDeep')\nconst flatten = require('lodash/flatten')\nconst flattenDeep = require('lodash/flattenDeep')\nconst intersection = require('lodash/intersection')\nconst intersectionWith = require('lodash/intersectionWith')\nconst isEqual = require('lodash/isEqual')\nconst isPlainObject = require('lodash/isPlainObject')\nconst pullAll = require('lodash/pullAll')\nconst sortBy = require('lodash/sortBy')\nconst uniq = require('lodash/uniq')\nconst uniqWith = require('lodash/uniqWith')\n\nconst propertiesResolver = require('./complex-resolvers/properties')\nconst itemsResolver = require('./complex-resolvers/items')\n\nconst contains = (arr, val) => arr.indexOf(val) !== -1\nconst isSchema = (val) => isPlainObject(val) || val === true || val === false\nconst isFalse = (val) => val === false\nconst isTrue = (val) => val === true\nconst schemaResolver = (compacted, key, mergeSchemas) => mergeSchemas(compacted)\nconst stringArray = (values) => sortBy(uniq(flattenDeep(values)))\nconst notUndefined = (val) => val !== undefined\nconst allUniqueKeys = (arr) => uniq(flattenDeep(arr.map(keys)))\n\n// resolvers\nconst first = compacted => compacted[0]\nconst required = compacted => stringArray(compacted)\nconst maximumValue = compacted => Math.max.apply(Math, compacted)\nconst minimumValue = compacted => Math.min.apply(Math, compacted)\nconst uniqueItems = compacted => compacted.some(isTrue)\nconst examples = compacted => uniqWith(flatten(compacted), isEqual)\n\nfunction compareProp(key) {\n return function(a, b) {\n return compare({\n [key]: a\n }, { [key]: b })\n }\n}\n\nfunction getAllOf(schema) {\n let { allOf = [], ...copy } = schema\n copy = isPlainObject(schema) ? copy : schema // if schema is boolean\n return [copy, ...allOf.map(getAllOf)]\n}\n\nfunction getValues(schemas, key) {\n return schemas.map(schema => schema && schema[key])\n}\n\nfunction tryMergeSchemaGroups(schemaGroups, mergeSchemas) {\n return schemaGroups.map(function(schemas, index) {\n try {\n return mergeSchemas(schemas, index)\n } catch (e) {\n return undefined\n }\n }).filter(notUndefined)\n}\n\nfunction keys(obj) {\n if (isPlainObject(obj) || Array.isArray(obj)) {\n return Object.keys(obj)\n } else {\n return []\n }\n}\n\nfunction getAnyOfCombinations(arrOfArrays, combinations) {\n combinations = combinations || []\n if (!arrOfArrays.length) {\n return combinations\n }\n\n const values = arrOfArrays.slice(0).shift()\n const rest = arrOfArrays.slice(1)\n if (combinations.length) {\n return getAnyOfCombinations(rest, flatten(combinations.map(combination => values.map(item => ([item].concat(combination))))))\n }\n return getAnyOfCombinations(rest, values.map(item => (item)))\n}\n\nfunction throwIncompatible(values, paths) {\n let asJSON\n try {\n asJSON = values.map(function(val) {\n return JSON.stringify(val, null, 2)\n }).join('\\n')\n } catch (variable) {\n asJSON = values.join(', ')\n }\n throw new Error('Could not resolve values for path:\"' + paths.join('.') + '\". They are probably incompatible. Values: \\n' + asJSON)\n}\n\nfunction callGroupResolver(complexKeywords, resolverName, schemas, mergeSchemas, options, parents) {\n if (complexKeywords.length) {\n const resolverConfig = options.complexResolvers[resolverName]\n if (!resolverConfig || !resolverConfig.resolver) {\n throw new Error('No resolver found for ' + resolverName)\n }\n\n // extract all keywords from all the schemas that have one or more\n // then remove all undefined ones and not unique\n const extractedKeywordsOnly = schemas.map(schema => complexKeywords.reduce((all, key) => {\n if (schema[key] !== undefined) all[key] = schema[key]\n return all\n }, {}))\n const unique = uniqWith(extractedKeywordsOnly, compare)\n\n // create mergers that automatically add the path of the keyword for use in the complex resolver\n const mergers = resolverConfig.keywords.reduce((all, key) => ({\n ...all,\n [key]: (schemas, extraKey = []) => mergeSchemas(schemas, null, parents.concat(key, extraKey))\n }), {})\n\n const result = resolverConfig.resolver(unique, parents.concat(resolverName), mergers, options)\n\n if (!isPlainObject(result)) {\n throwIncompatible(unique, parents.concat(resolverName))\n }\n\n return result\n }\n}\n\nfunction createRequiredMetaArray(arr) {\n return { required: arr }\n}\n\nconst schemaGroupProps = ['properties', 'patternProperties', 'definitions', 'dependencies']\nconst schemaArrays = ['anyOf', 'oneOf']\nconst schemaProps = [\n 'additionalProperties',\n 'additionalItems',\n 'contains',\n 'propertyNames',\n 'not',\n 'items'\n]\n\nconst defaultResolvers = {\n type(compacted) {\n if (compacted.some(Array.isArray)) {\n const normalized = compacted.map(function(val) {\n return Array.isArray(val)\n ? val\n : [val]\n })\n const common = intersection.apply(null, normalized)\n\n if (common.length === 1) {\n return common[0]\n } else if (common.length > 1) {\n return uniq(common)\n }\n }\n },\n dependencies(compacted, paths, mergeSchemas) {\n const allChildren = allUniqueKeys(compacted)\n\n return allChildren.reduce(function(all, childKey) {\n const childSchemas = getValues(compacted, childKey)\n let innerCompacted = uniqWith(childSchemas.filter(notUndefined), isEqual)\n\n // to support dependencies\n const innerArrays = innerCompacted.filter(Array.isArray)\n\n if (innerArrays.length) {\n if (innerArrays.length === innerCompacted.length) {\n all[childKey] = stringArray(innerCompacted)\n } else {\n const innerSchemas = innerCompacted.filter(isSchema)\n const arrayMetaScheams = innerArrays.map(createRequiredMetaArray)\n all[childKey] = mergeSchemas(innerSchemas.concat(arrayMetaScheams), childKey)\n }\n return all\n }\n\n innerCompacted = uniqWith(innerCompacted, compare)\n\n all[childKey] = mergeSchemas(innerCompacted, childKey)\n return all\n }, {})\n },\n oneOf(compacted, paths, mergeSchemas) {\n const combinations = getAnyOfCombinations(cloneDeep(compacted))\n const result = tryMergeSchemaGroups(combinations, mergeSchemas)\n const unique = uniqWith(result, compare)\n\n if (unique.length) {\n return unique\n }\n },\n not(compacted) {\n return { anyOf: compacted }\n },\n pattern(compacted) {\n return compacted.map(r => '(?=' + r + ')').join('')\n },\n multipleOf(compacted) {\n let integers = compacted.slice(0)\n let factor = 1\n while (integers.some(n => !Number.isInteger(n))) {\n integers = integers.map(n => n * 10)\n factor = factor * 10\n }\n return computeLcm(integers) / factor\n },\n enum(compacted) {\n const enums = intersectionWith.apply(null, compacted.concat(isEqual))\n if (enums.length) {\n return sortBy(enums)\n }\n }\n}\n\ndefaultResolvers.$id = first\ndefaultResolvers.$ref = first\ndefaultResolvers.$schema = first\ndefaultResolvers.additionalItems = schemaResolver\ndefaultResolvers.additionalProperties = schemaResolver\ndefaultResolvers.anyOf = defaultResolvers.oneOf\ndefaultResolvers.contains = schemaResolver\ndefaultResolvers.default = first\ndefaultResolvers.definitions = defaultResolvers.dependencies\ndefaultResolvers.description = first\ndefaultResolvers.examples = examples\ndefaultResolvers.exclusiveMaximum = minimumValue\ndefaultResolvers.exclusiveMinimum = maximumValue\ndefaultResolvers.items = itemsResolver\ndefaultResolvers.maximum = minimumValue\ndefaultResolvers.maxItems = minimumValue\ndefaultResolvers.maxLength = minimumValue\ndefaultResolvers.maxProperties = minimumValue\ndefaultResolvers.minimum = maximumValue\ndefaultResolvers.minItems = maximumValue\ndefaultResolvers.minLength = maximumValue\ndefaultResolvers.minProperties = maximumValue\ndefaultResolvers.properties = propertiesResolver\ndefaultResolvers.propertyNames = schemaResolver\ndefaultResolvers.required = required\ndefaultResolvers.title = first\ndefaultResolvers.uniqueItems = uniqueItems\n\nconst defaultComplexResolvers = {\n properties: propertiesResolver,\n items: itemsResolver\n}\n\nfunction merger(rootSchema, options, totalSchemas) {\n totalSchemas = totalSchemas || []\n options = defaultsDeep(options, {\n ignoreAdditionalProperties: false,\n resolvers: defaultResolvers,\n complexResolvers: defaultComplexResolvers,\n deep: true\n })\n\n const complexResolvers = Object.entries(options.complexResolvers)\n\n function mergeSchemas(schemas, base, parents) {\n schemas = cloneDeep(schemas.filter(notUndefined))\n parents = parents || []\n const merged = isPlainObject(base)\n ? base\n : {}\n\n // return undefined, an empty schema\n if (!schemas.length) {\n return\n }\n\n if (schemas.some(isFalse)) {\n return false\n }\n\n if (schemas.every(isTrue)) {\n return true\n }\n\n // there are no false and we don't need the true ones as they accept everything\n schemas = schemas.filter(isPlainObject)\n\n const allKeys = allUniqueKeys(schemas)\n if (options.deep && contains(allKeys, 'allOf')) {\n return merger({\n allOf: schemas\n }, options, totalSchemas)\n }\n\n const complexKeysArr = complexResolvers.map(([mainKeyWord, resolverConf]) =>\n allKeys.filter(k => resolverConf.keywords.includes(k)))\n\n // remove all complex keys before simple resolvers\n complexKeysArr.forEach(keys => pullAll(allKeys, keys))\n\n // call all simple resolvers for relevant keywords\n allKeys.forEach(function(key) {\n const values = getValues(schemas, key)\n const compacted = uniqWith(values.filter(notUndefined), compareProp(key))\n\n // arrayprops like anyOf and oneOf must be merged first, as they contains schemas\n // allOf is treated differently alltogether\n if (compacted.length === 1 && contains(schemaArrays, key)) {\n merged[key] = compacted[0].map(schema => mergeSchemas([schema], schema))\n // prop groups must always be resolved\n } else if (compacted.length === 1 && !contains(schemaGroupProps, key) && !contains(schemaProps, key)) {\n merged[key] = compacted[0]\n } else {\n const resolver = options.resolvers[key] || options.resolvers.defaultResolver\n if (!resolver) throw new Error('No resolver found for key ' + key + '. You can provide a resolver for this keyword in the options, or provide a default resolver.')\n\n const merger = (schemas, extraKey = []) => mergeSchemas(schemas, null, parents.concat(key, extraKey))\n merged[key] = resolver(compacted, parents.concat(key), merger, options)\n\n if (merged[key] === undefined) {\n throwIncompatible(compacted, parents.concat(key))\n } else if (merged[key] === undefined) {\n delete merged[key]\n }\n }\n })\n\n return complexResolvers.reduce((all, [resolverKeyword, config], index) => ({\n ...all,\n ...callGroupResolver(complexKeysArr[index], resolverKeyword, schemas, mergeSchemas, options, parents)\n }), merged)\n }\n\n const allSchemas = flattenDeep(getAllOf(rootSchema))\n const merged = mergeSchemas(allSchemas)\n\n return merged\n}\n\nmerger.options = {\n resolvers: defaultResolvers\n}\n\nmodule.exports = merger\n","var hasExcape = /~/\nvar escapeMatcher = /~[01]/g\nfunction escapeReplacer (m) {\n switch (m) {\n case '~1': return '/'\n case '~0': return '~'\n }\n throw new Error('Invalid tilde escape: ' + m)\n}\n\nfunction untilde (str) {\n if (!hasExcape.test(str)) return str\n return str.replace(escapeMatcher, escapeReplacer)\n}\n\nfunction setter (obj, pointer, value) {\n var part\n var hasNextPart\n\n for (var p = 1, len = pointer.length; p < len;) {\n if (pointer[p] === 'constructor' || pointer[p] === 'prototype' || pointer[p] === '__proto__') return obj\n\n part = untilde(pointer[p++])\n hasNextPart = len > p\n\n if (typeof obj[part] === 'undefined') {\n // support setting of /-\n if (Array.isArray(obj) && part === '-') {\n part = obj.length\n }\n\n // support nested objects/array when setting values\n if (hasNextPart) {\n if ((pointer[p] !== '' && pointer[p] < Infinity) || pointer[p] === '-') obj[part] = []\n else obj[part] = {}\n }\n }\n\n if (!hasNextPart) break\n obj = obj[part]\n }\n\n var oldValue = obj[part]\n if (value === undefined) delete obj[part]\n else obj[part] = value\n return oldValue\n}\n\nfunction compilePointer (pointer) {\n if (typeof pointer === 'string') {\n pointer = pointer.split('/')\n if (pointer[0] === '') return pointer\n throw new Error('Invalid JSON pointer.')\n } else if (Array.isArray(pointer)) {\n for (const part of pointer) {\n if (typeof part !== 'string' && typeof part !== 'number') {\n throw new Error('Invalid JSON pointer. Must be of type string or number.')\n }\n }\n return pointer\n }\n\n throw new Error('Invalid JSON pointer.')\n}\n\nfunction get (obj, pointer) {\n if (typeof obj !== 'object') throw new Error('Invalid input object.')\n pointer = compilePointer(pointer)\n var len = pointer.length\n if (len === 1) return obj\n\n for (var p = 1; p < len;) {\n obj = obj[untilde(pointer[p++])]\n if (len === p) return obj\n if (typeof obj !== 'object' || obj === null) return undefined\n }\n}\n\nfunction set (obj, pointer, value) {\n if (typeof obj !== 'object') throw new Error('Invalid input object.')\n pointer = compilePointer(pointer)\n if (pointer.length === 0) throw new Error('Invalid JSON pointer for set.')\n return setter(obj, pointer, value)\n}\n\nfunction compile (pointer) {\n var compiled = compilePointer(pointer)\n return {\n get: function (object) {\n return get(object, compiled)\n },\n set: function (object, value) {\n return set(object, compiled, value)\n }\n }\n}\n\nexports.get = get\nexports.set = set\nexports.compile = compile\n","var MapCache = require('./_MapCache'),\n setCacheAdd = require('./_setCacheAdd'),\n setCacheHas = require('./_setCacheHas');\n\n/**\n *\n * Creates an array cache object to store unique values.\n *\n * @private\n * @constructor\n * @param {Array} [values] The values to cache.\n */\nfunction SetCache(values) {\n var index = -1,\n length = values == null ? 0 : values.length;\n\n this.__data__ = new MapCache;\n while (++index < length) {\n this.add(values[index]);\n }\n}\n\n// Add methods to `SetCache`.\nSetCache.prototype.add = SetCache.prototype.push = setCacheAdd;\nSetCache.prototype.has = setCacheHas;\n\nmodule.exports = SetCache;\n","var baseIndexOf = require('./_baseIndexOf');\n\n/**\n * A specialized version of `_.includes` for arrays without support for\n * specifying an index to search from.\n *\n * @private\n * @param {Array} [array] The array to inspect.\n * @param {*} target The value to search for.\n * @returns {boolean} Returns `true` if `target` is found, else `false`.\n */\nfunction arrayIncludes(array, value) {\n var length = array == null ? 0 : array.length;\n return !!length && baseIndexOf(array, value, 0) > -1;\n}\n\nmodule.exports = arrayIncludes;\n","/**\n * This function is like `arrayIncludes` except that it accepts a comparator.\n *\n * @private\n * @param {Array} [array] The array to inspect.\n * @param {*} target The value to search for.\n * @param {Function} comparator The comparator invoked per element.\n * @returns {boolean} Returns `true` if `target` is found, else `false`.\n */\nfunction arrayIncludesWith(array, value, comparator) {\n var index = -1,\n length = array == null ? 0 : array.length;\n\n while (++index < length) {\n if (comparator(value, array[index])) {\n return true;\n }\n }\n return false;\n}\n\nmodule.exports = arrayIncludesWith;\n","/**\n * A specialized version of `_.reduce` for arrays without support for\n * iteratee shorthands.\n *\n * @private\n * @param {Array} [array] The array to iterate over.\n * @param {Function} iteratee The function invoked per iteration.\n * @param {*} [accumulator] The initial value.\n * @param {boolean} [initAccum] Specify using the first element of `array` as\n * the initial value.\n * @returns {*} Returns the accumulated value.\n */\nfunction arrayReduce(array, iteratee, accumulator, initAccum) {\n var index = -1,\n length = array == null ? 0 : array.length;\n\n if (initAccum && length) {\n accumulator = array[++index];\n }\n while (++index < length) {\n accumulator = iteratee(accumulator, array[index], index, array);\n }\n return accumulator;\n}\n\nmodule.exports = arrayReduce;\n","/**\n * A specialized version of `_.some` for arrays without support for iteratee\n * shorthands.\n *\n * @private\n * @param {Array} [array] The array to iterate over.\n * @param {Function} predicate The function invoked per iteration.\n * @returns {boolean} Returns `true` if any element passes the predicate check,\n * else `false`.\n */\nfunction arraySome(array, predicate) {\n var index = -1,\n length = array == null ? 0 : array.length;\n\n while (++index < length) {\n if (predicate(array[index], index, array)) {\n return true;\n }\n }\n return false;\n}\n\nmodule.exports = arraySome;\n","var baseAssignValue = require('./_baseAssignValue'),\n eq = require('./eq');\n\n/**\n * This function is like `assignValue` except that it doesn't assign\n * `undefined` values.\n *\n * @private\n * @param {Object} object The object to modify.\n * @param {string} key The key of the property to assign.\n * @param {*} value The value to assign.\n */\nfunction assignMergeValue(object, key, value) {\n if ((value !== undefined && !eq(object[key], value)) ||\n (value === undefined && !(key in object))) {\n baseAssignValue(object, key, value);\n }\n}\n\nmodule.exports = assignMergeValue;\n","var SetCache = require('./_SetCache'),\n arrayIncludes = require('./_arrayIncludes'),\n arrayIncludesWith = require('./_arrayIncludesWith'),\n arrayMap = require('./_arrayMap'),\n baseUnary = require('./_baseUnary'),\n cacheHas = require('./_cacheHas');\n\n/** Used as the size to enable large array optimizations. */\nvar LARGE_ARRAY_SIZE = 200;\n\n/**\n * The base implementation of methods like `_.difference` without support\n * for excluding multiple arrays or iteratee shorthands.\n *\n * @private\n * @param {Array} array The array to inspect.\n * @param {Array} values The values to exclude.\n * @param {Function} [iteratee] The iteratee invoked per element.\n * @param {Function} [comparator] The comparator invoked per element.\n * @returns {Array} Returns the new array of filtered values.\n */\nfunction baseDifference(array, values, iteratee, comparator) {\n var index = -1,\n includes = arrayIncludes,\n isCommon = true,\n length = array.length,\n result = [],\n valuesLength = values.length;\n\n if (!length) {\n return result;\n }\n if (iteratee) {\n values = arrayMap(values, baseUnary(iteratee));\n }\n if (comparator) {\n includes = arrayIncludesWith;\n isCommon = false;\n }\n else if (values.length >= LARGE_ARRAY_SIZE) {\n includes = cacheHas;\n isCommon = false;\n values = new SetCache(values);\n }\n outer:\n while (++index < length) {\n var value = array[index],\n computed = iteratee == null ? value : iteratee(value);\n\n value = (comparator || value !== 0) ? value : 0;\n if (isCommon && computed === computed) {\n var valuesIndex = valuesLength;\n while (valuesIndex--) {\n if (values[valuesIndex] === computed) {\n continue outer;\n }\n }\n result.push(value);\n }\n else if (!includes(values, computed, comparator)) {\n result.push(value);\n }\n }\n return result;\n}\n\nmodule.exports = baseDifference;\n","var baseForOwn = require('./_baseForOwn'),\n createBaseEach = require('./_createBaseEach');\n\n/**\n * The base implementation of `_.forEach` without support for iteratee shorthands.\n *\n * @private\n * @param {Array|Object} collection The collection to iterate over.\n * @param {Function} iteratee The function invoked per iteration.\n * @returns {Array|Object} Returns `collection`.\n */\nvar baseEach = createBaseEach(baseForOwn);\n\nmodule.exports = baseEach;\n","/**\n * The base implementation of `_.findIndex` and `_.findLastIndex` without\n * support for iteratee shorthands.\n *\n * @private\n * @param {Array} array The array to inspect.\n * @param {Function} predicate The function invoked per iteration.\n * @param {number} fromIndex The index to search from.\n * @param {boolean} [fromRight] Specify iterating from right to left.\n * @returns {number} Returns the index of the matched value, else `-1`.\n */\nfunction baseFindIndex(array, predicate, fromIndex, fromRight) {\n var length = array.length,\n index = fromIndex + (fromRight ? 1 : -1);\n\n while ((fromRight ? index-- : ++index < length)) {\n if (predicate(array[index], index, array)) {\n return index;\n }\n }\n return -1;\n}\n\nmodule.exports = baseFindIndex;\n","var createBaseFor = require('./_createBaseFor');\n\n/**\n * The base implementation of `baseForOwn` which iterates over `object`\n * properties returned by `keysFunc` and invokes `iteratee` for each property.\n * Iteratee functions may exit iteration early by explicitly returning `false`.\n *\n * @private\n * @param {Object} object The object to iterate over.\n * @param {Function} iteratee The function invoked per iteration.\n * @param {Function} keysFunc The function to get the keys of `object`.\n * @returns {Object} Returns `object`.\n */\nvar baseFor = createBaseFor();\n\nmodule.exports = baseFor;\n","var baseFor = require('./_baseFor'),\n keys = require('./keys');\n\n/**\n * The base implementation of `_.forOwn` without support for iteratee shorthands.\n *\n * @private\n * @param {Object} object The object to iterate over.\n * @param {Function} iteratee The function invoked per iteration.\n * @returns {Object} Returns `object`.\n */\nfunction baseForOwn(object, iteratee) {\n return object && baseFor(object, iteratee, keys);\n}\n\nmodule.exports = baseForOwn;\n","var baseFindIndex = require('./_baseFindIndex'),\n baseIsNaN = require('./_baseIsNaN'),\n strictIndexOf = require('./_strictIndexOf');\n\n/**\n * The base implementation of `_.indexOf` without `fromIndex` bounds checks.\n *\n * @private\n * @param {Array} array The array to inspect.\n * @param {*} value The value to search for.\n * @param {number} fromIndex The index to search from.\n * @returns {number} Returns the index of the matched value, else `-1`.\n */\nfunction baseIndexOf(array, value, fromIndex) {\n return value === value\n ? strictIndexOf(array, value, fromIndex)\n : baseFindIndex(array, baseIsNaN, fromIndex);\n}\n\nmodule.exports = baseIndexOf;\n","/**\n * This function is like `baseIndexOf` except that it accepts a comparator.\n *\n * @private\n * @param {Array} array The array to inspect.\n * @param {*} value The value to search for.\n * @param {number} fromIndex The index to search from.\n * @param {Function} comparator The comparator invoked per element.\n * @returns {number} Returns the index of the matched value, else `-1`.\n */\nfunction baseIndexOfWith(array, value, fromIndex, comparator) {\n var index = fromIndex - 1,\n length = array.length;\n\n while (++index < length) {\n if (comparator(array[index], value)) {\n return index;\n }\n }\n return -1;\n}\n\nmodule.exports = baseIndexOfWith;\n","var SetCache = require('./_SetCache'),\n arrayIncludes = require('./_arrayIncludes'),\n arrayIncludesWith = require('./_arrayIncludesWith'),\n arrayMap = require('./_arrayMap'),\n baseUnary = require('./_baseUnary'),\n cacheHas = require('./_cacheHas');\n\n/* Built-in method references for those with the same name as other `lodash` methods. */\nvar nativeMin = Math.min;\n\n/**\n * The base implementation of methods like `_.intersection`, without support\n * for iteratee shorthands, that accepts an array of arrays to inspect.\n *\n * @private\n * @param {Array} arrays The arrays to inspect.\n * @param {Function} [iteratee] The iteratee invoked per element.\n * @param {Function} [comparator] The comparator invoked per element.\n * @returns {Array} Returns the new array of shared values.\n */\nfunction baseIntersection(arrays, iteratee, comparator) {\n var includes = comparator ? arrayIncludesWith : arrayIncludes,\n length = arrays[0].length,\n othLength = arrays.length,\n othIndex = othLength,\n caches = Array(othLength),\n maxLength = Infinity,\n result = [];\n\n while (othIndex--) {\n var array = arrays[othIndex];\n if (othIndex && iteratee) {\n array = arrayMap(array, baseUnary(iteratee));\n }\n maxLength = nativeMin(array.length, maxLength);\n caches[othIndex] = !comparator && (iteratee || (length >= 120 && array.length >= 120))\n ? new SetCache(othIndex && array)\n : undefined;\n }\n array = arrays[0];\n\n var index = -1,\n seen = caches[0];\n\n outer:\n while (++index < length && result.length < maxLength) {\n var value = array[index],\n computed = iteratee ? iteratee(value) : value;\n\n value = (comparator || value !== 0) ? value : 0;\n if (!(seen\n ? cacheHas(seen, computed)\n : includes(result, computed, comparator)\n )) {\n othIndex = othLength;\n while (--othIndex) {\n var cache = caches[othIndex];\n if (!(cache\n ? cacheHas(cache, computed)\n : includes(arrays[othIndex], computed, comparator))\n ) {\n continue outer;\n }\n }\n if (seen) {\n seen.push(computed);\n }\n result.push(value);\n }\n }\n return result;\n}\n\nmodule.exports = baseIntersection;\n","var baseIsEqualDeep = require('./_baseIsEqualDeep'),\n isObjectLike = require('./isObjectLike');\n\n/**\n * The base implementation of `_.isEqual` which supports partial comparisons\n * and tracks traversed objects.\n *\n * @private\n * @param {*} value The value to compare.\n * @param {*} other The other value to compare.\n * @param {boolean} bitmask The bitmask flags.\n * 1 - Unordered comparison\n * 2 - Partial comparison\n * @param {Function} [customizer] The function to customize comparisons.\n * @param {Object} [stack] Tracks traversed `value` and `other` objects.\n * @returns {boolean} Returns `true` if the values are equivalent, else `false`.\n */\nfunction baseIsEqual(value, other, bitmask, customizer, stack) {\n if (value === other) {\n return true;\n }\n if (value == null || other == null || (!isObjectLike(value) && !isObjectLike(other))) {\n return value !== value && other !== other;\n }\n return baseIsEqualDeep(value, other, bitmask, customizer, baseIsEqual, stack);\n}\n\nmodule.exports = baseIsEqual;\n","var Stack = require('./_Stack'),\n equalArrays = require('./_equalArrays'),\n equalByTag = require('./_equalByTag'),\n equalObjects = require('./_equalObjects'),\n getTag = require('./_getTag'),\n isArray = require('./isArray'),\n isBuffer = require('./isBuffer'),\n isTypedArray = require('./isTypedArray');\n\n/** Used to compose bitmasks for value comparisons. */\nvar COMPARE_PARTIAL_FLAG = 1;\n\n/** `Object#toString` result references. */\nvar argsTag = '[object Arguments]',\n arrayTag = '[object Array]',\n objectTag = '[object Object]';\n\n/** Used for built-in method references. */\nvar objectProto = Object.prototype;\n\n/** Used to check objects for own properties. */\nvar hasOwnProperty = objectProto.hasOwnProperty;\n\n/**\n * A specialized version of `baseIsEqual` for arrays and objects which performs\n * deep comparisons and tracks traversed objects enabling objects with circular\n * references to be compared.\n *\n * @private\n * @param {Object} object The object to compare.\n * @param {Object} other The other object to compare.\n * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details.\n * @param {Function} customizer The function to customize comparisons.\n * @param {Function} equalFunc The function to determine equivalents of values.\n * @param {Object} [stack] Tracks traversed `object` and `other` objects.\n * @returns {boolean} Returns `true` if the objects are equivalent, else `false`.\n */\nfunction baseIsEqualDeep(object, other, bitmask, customizer, equalFunc, stack) {\n var objIsArr = isArray(object),\n othIsArr = isArray(other),\n objTag = objIsArr ? arrayTag : getTag(object),\n othTag = othIsArr ? arrayTag : getTag(other);\n\n objTag = objTag == argsTag ? objectTag : objTag;\n othTag = othTag == argsTag ? objectTag : othTag;\n\n var objIsObj = objTag == objectTag,\n othIsObj = othTag == objectTag,\n isSameTag = objTag == othTag;\n\n if (isSameTag && isBuffer(object)) {\n if (!isBuffer(other)) {\n return false;\n }\n objIsArr = true;\n objIsObj = false;\n }\n if (isSameTag && !objIsObj) {\n stack || (stack = new Stack);\n return (objIsArr || isTypedArray(object))\n ? equalArrays(object, other, bitmask, customizer, equalFunc, stack)\n : equalByTag(object, other, objTag, bitmask, customizer, equalFunc, stack);\n }\n if (!(bitmask & COMPARE_PARTIAL_FLAG)) {\n var objIsWrapped = objIsObj && hasOwnProperty.call(object, '__wrapped__'),\n othIsWrapped = othIsObj && hasOwnProperty.call(other, '__wrapped__');\n\n if (objIsWrapped || othIsWrapped) {\n var objUnwrapped = objIsWrapped ? object.value() : object,\n othUnwrapped = othIsWrapped ? other.value() : other;\n\n stack || (stack = new Stack);\n return equalFunc(objUnwrapped, othUnwrapped, bitmask, customizer, stack);\n }\n }\n if (!isSameTag) {\n return false;\n }\n stack || (stack = new Stack);\n return equalObjects(object, other, bitmask, customizer, equalFunc, stack);\n}\n\nmodule.exports = baseIsEqualDeep;\n","var Stack = require('./_Stack'),\n baseIsEqual = require('./_baseIsEqual');\n\n/** Used to compose bitmasks for value comparisons. */\nvar COMPARE_PARTIAL_FLAG = 1,\n COMPARE_UNORDERED_FLAG = 2;\n\n/**\n * The base implementation of `_.isMatch` without support for iteratee shorthands.\n *\n * @private\n * @param {Object} object The object to inspect.\n * @param {Object} source The object of property values to match.\n * @param {Array} matchData The property names, values, and compare flags to match.\n * @param {Function} [customizer] The function to customize comparisons.\n * @returns {boolean} Returns `true` if `object` is a match, else `false`.\n */\nfunction baseIsMatch(object, source, matchData, customizer) {\n var index = matchData.length,\n length = index,\n noCustomizer = !customizer;\n\n if (object == null) {\n return !length;\n }\n object = Object(object);\n while (index--) {\n var data = matchData[index];\n if ((noCustomizer && data[2])\n ? data[1] !== object[data[0]]\n : !(data[0] in object)\n ) {\n return false;\n }\n }\n while (++index < length) {\n data = matchData[index];\n var key = data[0],\n objValue = object[key],\n srcValue = data[1];\n\n if (noCustomizer && data[2]) {\n if (objValue === undefined && !(key in object)) {\n return false;\n }\n } else {\n var stack = new Stack;\n if (customizer) {\n var result = customizer(objValue, srcValue, key, object, source, stack);\n }\n if (!(result === undefined\n ? baseIsEqual(srcValue, objValue, COMPARE_PARTIAL_FLAG | COMPARE_UNORDERED_FLAG, customizer, stack)\n : result\n )) {\n return false;\n }\n }\n }\n return true;\n}\n\nmodule.exports = baseIsMatch;\n","/**\n * The base implementation of `_.isNaN` without support for number objects.\n *\n * @private\n * @param {*} value The value to check.\n * @returns {boolean} Returns `true` if `value` is `NaN`, else `false`.\n */\nfunction baseIsNaN(value) {\n return value !== value;\n}\n\nmodule.exports = baseIsNaN;\n","var baseMatches = require('./_baseMatches'),\n baseMatchesProperty = require('./_baseMatchesProperty'),\n identity = require('./identity'),\n isArray = require('./isArray'),\n property = require('./property');\n\n/**\n * The base implementation of `_.iteratee`.\n *\n * @private\n * @param {*} [value=_.identity] The value to convert to an iteratee.\n * @returns {Function} Returns the iteratee.\n */\nfunction baseIteratee(value) {\n // Don't store the `typeof` result in a variable to avoid a JIT bug in Safari 9.\n // See https://bugs.webkit.org/show_bug.cgi?id=156034 for more details.\n if (typeof value == 'function') {\n return value;\n }\n if (value == null) {\n return identity;\n }\n if (typeof value == 'object') {\n return isArray(value)\n ? baseMatchesProperty(value[0], value[1])\n : baseMatches(value);\n }\n return property(value);\n}\n\nmodule.exports = baseIteratee;\n","var baseEach = require('./_baseEach'),\n isArrayLike = require('./isArrayLike');\n\n/**\n * The base implementation of `_.map` without support for iteratee shorthands.\n *\n * @private\n * @param {Array|Object} collection The collection to iterate over.\n * @param {Function} iteratee The function invoked per iteration.\n * @returns {Array} Returns the new mapped array.\n */\nfunction baseMap(collection, iteratee) {\n var index = -1,\n result = isArrayLike(collection) ? Array(collection.length) : [];\n\n baseEach(collection, function(value, key, collection) {\n result[++index] = iteratee(value, key, collection);\n });\n return result;\n}\n\nmodule.exports = baseMap;\n","var baseIsMatch = require('./_baseIsMatch'),\n getMatchData = require('./_getMatchData'),\n matchesStrictComparable = require('./_matchesStrictComparable');\n\n/**\n * The base implementation of `_.matches` which doesn't clone `source`.\n *\n * @private\n * @param {Object} source The object of property values to match.\n * @returns {Function} Returns the new spec function.\n */\nfunction baseMatches(source) {\n var matchData = getMatchData(source);\n if (matchData.length == 1 && matchData[0][2]) {\n return matchesStrictComparable(matchData[0][0], matchData[0][1]);\n }\n return function(object) {\n return object === source || baseIsMatch(object, source, matchData);\n };\n}\n\nmodule.exports = baseMatches;\n","var baseIsEqual = require('./_baseIsEqual'),\n get = require('./get'),\n hasIn = require('./hasIn'),\n isKey = require('./_isKey'),\n isStrictComparable = require('./_isStrictComparable'),\n matchesStrictComparable = require('./_matchesStrictComparable'),\n toKey = require('./_toKey');\n\n/** Used to compose bitmasks for value comparisons. */\nvar COMPARE_PARTIAL_FLAG = 1,\n COMPARE_UNORDERED_FLAG = 2;\n\n/**\n * The base implementation of `_.matchesProperty` which doesn't clone `srcValue`.\n *\n * @private\n * @param {string} path The path of the property to get.\n * @param {*} srcValue The value to match.\n * @returns {Function} Returns the new spec function.\n */\nfunction baseMatchesProperty(path, srcValue) {\n if (isKey(path) && isStrictComparable(srcValue)) {\n return matchesStrictComparable(toKey(path), srcValue);\n }\n return function(object) {\n var objValue = get(object, path);\n return (objValue === undefined && objValue === srcValue)\n ? hasIn(object, path)\n : baseIsEqual(srcValue, objValue, COMPARE_PARTIAL_FLAG | COMPARE_UNORDERED_FLAG);\n };\n}\n\nmodule.exports = baseMatchesProperty;\n","var Stack = require('./_Stack'),\n assignMergeValue = require('./_assignMergeValue'),\n baseFor = require('./_baseFor'),\n baseMergeDeep = require('./_baseMergeDeep'),\n isObject = require('./isObject'),\n keysIn = require('./keysIn'),\n safeGet = require('./_safeGet');\n\n/**\n * The base implementation of `_.merge` without support for multiple sources.\n *\n * @private\n * @param {Object} object The destination object.\n * @param {Object} source The source object.\n * @param {number} srcIndex The index of `source`.\n * @param {Function} [customizer] The function to customize merged values.\n * @param {Object} [stack] Tracks traversed source values and their merged\n * counterparts.\n */\nfunction baseMerge(object, source, srcIndex, customizer, stack) {\n if (object === source) {\n return;\n }\n baseFor(source, function(srcValue, key) {\n stack || (stack = new Stack);\n if (isObject(srcValue)) {\n baseMergeDeep(object, source, key, srcIndex, baseMerge, customizer, stack);\n }\n else {\n var newValue = customizer\n ? customizer(safeGet(object, key), srcValue, (key + ''), object, source, stack)\n : undefined;\n\n if (newValue === undefined) {\n newValue = srcValue;\n }\n assignMergeValue(object, key, newValue);\n }\n }, keysIn);\n}\n\nmodule.exports = baseMerge;\n","var assignMergeValue = require('./_assignMergeValue'),\n cloneBuffer = require('./_cloneBuffer'),\n cloneTypedArray = require('./_cloneTypedArray'),\n copyArray = require('./_copyArray'),\n initCloneObject = require('./_initCloneObject'),\n isArguments = require('./isArguments'),\n isArray = require('./isArray'),\n isArrayLikeObject = require('./isArrayLikeObject'),\n isBuffer = require('./isBuffer'),\n isFunction = require('./isFunction'),\n isObject = require('./isObject'),\n isPlainObject = require('./isPlainObject'),\n isTypedArray = require('./isTypedArray'),\n safeGet = require('./_safeGet'),\n toPlainObject = require('./toPlainObject');\n\n/**\n * A specialized version of `baseMerge` for arrays and objects which performs\n * deep merges and tracks traversed objects enabling objects with circular\n * references to be merged.\n *\n * @private\n * @param {Object} object The destination object.\n * @param {Object} source The source object.\n * @param {string} key The key of the value to merge.\n * @param {number} srcIndex The index of `source`.\n * @param {Function} mergeFunc The function to merge values.\n * @param {Function} [customizer] The function to customize assigned values.\n * @param {Object} [stack] Tracks traversed source values and their merged\n * counterparts.\n */\nfunction baseMergeDeep(object, source, key, srcIndex, mergeFunc, customizer, stack) {\n var objValue = safeGet(object, key),\n srcValue = safeGet(source, key),\n stacked = stack.get(srcValue);\n\n if (stacked) {\n assignMergeValue(object, key, stacked);\n return;\n }\n var newValue = customizer\n ? customizer(objValue, srcValue, (key + ''), object, source, stack)\n : undefined;\n\n var isCommon = newValue === undefined;\n\n if (isCommon) {\n var isArr = isArray(srcValue),\n isBuff = !isArr && isBuffer(srcValue),\n isTyped = !isArr && !isBuff && isTypedArray(srcValue);\n\n newValue = srcValue;\n if (isArr || isBuff || isTyped) {\n if (isArray(objValue)) {\n newValue = objValue;\n }\n else if (isArrayLikeObject(objValue)) {\n newValue = copyArray(objValue);\n }\n else if (isBuff) {\n isCommon = false;\n newValue = cloneBuffer(srcValue, true);\n }\n else if (isTyped) {\n isCommon = false;\n newValue = cloneTypedArray(srcValue, true);\n }\n else {\n newValue = [];\n }\n }\n else if (isPlainObject(srcValue) || isArguments(srcValue)) {\n newValue = objValue;\n if (isArguments(objValue)) {\n newValue = toPlainObject(objValue);\n }\n else if (!isObject(objValue) || isFunction(objValue)) {\n newValue = initCloneObject(srcValue);\n }\n }\n else {\n isCommon = false;\n }\n }\n if (isCommon) {\n // Recursively merge objects and arrays (susceptible to call stack limits).\n stack.set(srcValue, newValue);\n mergeFunc(newValue, srcValue, srcIndex, customizer, stack);\n stack['delete'](srcValue);\n }\n assignMergeValue(object, key, newValue);\n}\n\nmodule.exports = baseMergeDeep;\n","var arrayMap = require('./_arrayMap'),\n baseGet = require('./_baseGet'),\n baseIteratee = require('./_baseIteratee'),\n baseMap = require('./_baseMap'),\n baseSortBy = require('./_baseSortBy'),\n baseUnary = require('./_baseUnary'),\n compareMultiple = require('./_compareMultiple'),\n identity = require('./identity'),\n isArray = require('./isArray');\n\n/**\n * The base implementation of `_.orderBy` without param guards.\n *\n * @private\n * @param {Array|Object} collection The collection to iterate over.\n * @param {Function[]|Object[]|string[]} iteratees The iteratees to sort by.\n * @param {string[]} orders The sort orders of `iteratees`.\n * @returns {Array} Returns the new sorted array.\n */\nfunction baseOrderBy(collection, iteratees, orders) {\n if (iteratees.length) {\n iteratees = arrayMap(iteratees, function(iteratee) {\n if (isArray(iteratee)) {\n return function(value) {\n return baseGet(value, iteratee.length === 1 ? iteratee[0] : iteratee);\n }\n }\n return iteratee;\n });\n } else {\n iteratees = [identity];\n }\n\n var index = -1;\n iteratees = arrayMap(iteratees, baseUnary(baseIteratee));\n\n var result = baseMap(collection, function(value, key, collection) {\n var criteria = arrayMap(iteratees, function(iteratee) {\n return iteratee(value);\n });\n return { 'criteria': criteria, 'index': ++index, 'value': value };\n });\n\n return baseSortBy(result, function(object, other) {\n return compareMultiple(object, other, orders);\n });\n}\n\nmodule.exports = baseOrderBy;\n","/**\n * The base implementation of `_.property` without support for deep paths.\n *\n * @private\n * @param {string} key The key of the property to get.\n * @returns {Function} Returns the new accessor function.\n */\nfunction baseProperty(key) {\n return function(object) {\n return object == null ? undefined : object[key];\n };\n}\n\nmodule.exports = baseProperty;\n","var baseGet = require('./_baseGet');\n\n/**\n * A specialized version of `baseProperty` which supports deep paths.\n *\n * @private\n * @param {Array|string} path The path of the property to get.\n * @returns {Function} Returns the new accessor function.\n */\nfunction basePropertyDeep(path) {\n return function(object) {\n return baseGet(object, path);\n };\n}\n\nmodule.exports = basePropertyDeep;\n","var arrayMap = require('./_arrayMap'),\n baseIndexOf = require('./_baseIndexOf'),\n baseIndexOfWith = require('./_baseIndexOfWith'),\n baseUnary = require('./_baseUnary'),\n copyArray = require('./_copyArray');\n\n/** Used for built-in method references. */\nvar arrayProto = Array.prototype;\n\n/** Built-in value references. */\nvar splice = arrayProto.splice;\n\n/**\n * The base implementation of `_.pullAllBy` without support for iteratee\n * shorthands.\n *\n * @private\n * @param {Array} array The array to modify.\n * @param {Array} values The values to remove.\n * @param {Function} [iteratee] The iteratee invoked per element.\n * @param {Function} [comparator] The comparator invoked per element.\n * @returns {Array} Returns `array`.\n */\nfunction basePullAll(array, values, iteratee, comparator) {\n var indexOf = comparator ? baseIndexOfWith : baseIndexOf,\n index = -1,\n length = values.length,\n seen = array;\n\n if (array === values) {\n values = copyArray(values);\n }\n if (iteratee) {\n seen = arrayMap(array, baseUnary(iteratee));\n }\n while (++index < length) {\n var fromIndex = 0,\n value = values[index],\n computed = iteratee ? iteratee(value) : value;\n\n while ((fromIndex = indexOf(seen, computed, fromIndex, comparator)) > -1) {\n if (seen !== array) {\n splice.call(seen, fromIndex, 1);\n }\n splice.call(array, fromIndex, 1);\n }\n }\n return array;\n}\n\nmodule.exports = basePullAll;\n","/**\n * The base implementation of `_.reduce` and `_.reduceRight`, without support\n * for iteratee shorthands, which iterates over `collection` using `eachFunc`.\n *\n * @private\n * @param {Array|Object} collection The collection to iterate over.\n * @param {Function} iteratee The function invoked per iteration.\n * @param {*} accumulator The initial value.\n * @param {boolean} initAccum Specify using the first or last element of\n * `collection` as the initial value.\n * @param {Function} eachFunc The function to iterate over `collection`.\n * @returns {*} Returns the accumulated value.\n */\nfunction baseReduce(collection, iteratee, accumulator, initAccum, eachFunc) {\n eachFunc(collection, function(value, index, collection) {\n accumulator = initAccum\n ? (initAccum = false, value)\n : iteratee(accumulator, value, index, collection);\n });\n return accumulator;\n}\n\nmodule.exports = baseReduce;\n","var identity = require('./identity'),\n overRest = require('./_overRest'),\n setToString = require('./_setToString');\n\n/**\n * The base implementation of `_.rest` which doesn't validate or coerce arguments.\n *\n * @private\n * @param {Function} func The function to apply a rest parameter to.\n * @param {number} [start=func.length-1] The start position of the rest parameter.\n * @returns {Function} Returns the new function.\n */\nfunction baseRest(func, start) {\n return setToString(overRest(func, start, identity), func + '');\n}\n\nmodule.exports = baseRest;\n","/**\n * The base implementation of `_.sortBy` which uses `comparer` to define the\n * sort order of `array` and replaces criteria objects with their corresponding\n * values.\n *\n * @private\n * @param {Array} array The array to sort.\n * @param {Function} comparer The function to define sort order.\n * @returns {Array} Returns `array`.\n */\nfunction baseSortBy(array, comparer) {\n var length = array.length;\n\n array.sort(comparer);\n while (length--) {\n array[length] = array[length].value;\n }\n return array;\n}\n\nmodule.exports = baseSortBy;\n","var trimmedEndIndex = require('./_trimmedEndIndex');\n\n/** Used to match leading whitespace. */\nvar reTrimStart = /^\\s+/;\n\n/**\n * The base implementation of `_.trim`.\n *\n * @private\n * @param {string} string The string to trim.\n * @returns {string} Returns the trimmed string.\n */\nfunction baseTrim(string) {\n return string\n ? string.slice(0, trimmedEndIndex(string) + 1).replace(reTrimStart, '')\n : string;\n}\n\nmodule.exports = baseTrim;\n","var SetCache = require('./_SetCache'),\n arrayIncludes = require('./_arrayIncludes'),\n arrayIncludesWith = require('./_arrayIncludesWith'),\n cacheHas = require('./_cacheHas'),\n createSet = require('./_createSet'),\n setToArray = require('./_setToArray');\n\n/** Used as the size to enable large array optimizations. */\nvar LARGE_ARRAY_SIZE = 200;\n\n/**\n * The base implementation of `_.uniqBy` without support for iteratee shorthands.\n *\n * @private\n * @param {Array} array The array to inspect.\n * @param {Function} [iteratee] The iteratee invoked per element.\n * @param {Function} [comparator] The comparator invoked per element.\n * @returns {Array} Returns the new duplicate free array.\n */\nfunction baseUniq(array, iteratee, comparator) {\n var index = -1,\n includes = arrayIncludes,\n length = array.length,\n isCommon = true,\n result = [],\n seen = result;\n\n if (comparator) {\n isCommon = false;\n includes = arrayIncludesWith;\n }\n else if (length >= LARGE_ARRAY_SIZE) {\n var set = iteratee ? null : createSet(array);\n if (set) {\n return setToArray(set);\n }\n isCommon = false;\n includes = cacheHas;\n seen = new SetCache;\n }\n else {\n seen = iteratee ? [] : result;\n }\n outer:\n while (++index < length) {\n var value = array[index],\n computed = iteratee ? iteratee(value) : value;\n\n value = (comparator || value !== 0) ? value : 0;\n if (isCommon && computed === computed) {\n var seenIndex = seen.length;\n while (seenIndex--) {\n if (seen[seenIndex] === computed) {\n continue outer;\n }\n }\n if (iteratee) {\n seen.push(computed);\n }\n result.push(value);\n }\n else if (!includes(seen, computed, comparator)) {\n if (seen !== result) {\n seen.push(computed);\n }\n result.push(value);\n }\n }\n return result;\n}\n\nmodule.exports = baseUniq;\n","/**\n * Checks if a `cache` value for `key` exists.\n *\n * @private\n * @param {Object} cache The cache to query.\n * @param {string} key The key of the entry to check.\n * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`.\n */\nfunction cacheHas(cache, key) {\n return cache.has(key);\n}\n\nmodule.exports = cacheHas;\n","var isArrayLikeObject = require('./isArrayLikeObject');\n\n/**\n * Casts `value` to an empty array if it's not an array like object.\n *\n * @private\n * @param {*} value The value to inspect.\n * @returns {Array|Object} Returns the cast array-like object.\n */\nfunction castArrayLikeObject(value) {\n return isArrayLikeObject(value) ? value : [];\n}\n\nmodule.exports = castArrayLikeObject;\n","var identity = require('./identity');\n\n/**\n * Casts `value` to `identity` if it's not a function.\n *\n * @private\n * @param {*} value The value to inspect.\n * @returns {Function} Returns cast function.\n */\nfunction castFunction(value) {\n return typeof value == 'function' ? value : identity;\n}\n\nmodule.exports = castFunction;\n","var isSymbol = require('./isSymbol');\n\n/**\n * Compares values to sort them in ascending order.\n *\n * @private\n * @param {*} value The value to compare.\n * @param {*} other The other value to compare.\n * @returns {number} Returns the sort order indicator for `value`.\n */\nfunction compareAscending(value, other) {\n if (value !== other) {\n var valIsDefined = value !== undefined,\n valIsNull = value === null,\n valIsReflexive = value === value,\n valIsSymbol = isSymbol(value);\n\n var othIsDefined = other !== undefined,\n othIsNull = other === null,\n othIsReflexive = other === other,\n othIsSymbol = isSymbol(other);\n\n if ((!othIsNull && !othIsSymbol && !valIsSymbol && value > other) ||\n (valIsSymbol && othIsDefined && othIsReflexive && !othIsNull && !othIsSymbol) ||\n (valIsNull && othIsDefined && othIsReflexive) ||\n (!valIsDefined && othIsReflexive) ||\n !valIsReflexive) {\n return 1;\n }\n if ((!valIsNull && !valIsSymbol && !othIsSymbol && value < other) ||\n (othIsSymbol && valIsDefined && valIsReflexive && !valIsNull && !valIsSymbol) ||\n (othIsNull && valIsDefined && valIsReflexive) ||\n (!othIsDefined && valIsReflexive) ||\n !othIsReflexive) {\n return -1;\n }\n }\n return 0;\n}\n\nmodule.exports = compareAscending;\n","var compareAscending = require('./_compareAscending');\n\n/**\n * Used by `_.orderBy` to compare multiple properties of a value to another\n * and stable sort them.\n *\n * If `orders` is unspecified, all values are sorted in ascending order. Otherwise,\n * specify an order of \"desc\" for descending or \"asc\" for ascending sort order\n * of corresponding values.\n *\n * @private\n * @param {Object} object The object to compare.\n * @param {Object} other The other object to compare.\n * @param {boolean[]|string[]} orders The order to sort by for each property.\n * @returns {number} Returns the sort order indicator for `object`.\n */\nfunction compareMultiple(object, other, orders) {\n var index = -1,\n objCriteria = object.criteria,\n othCriteria = other.criteria,\n length = objCriteria.length,\n ordersLength = orders.length;\n\n while (++index < length) {\n var result = compareAscending(objCriteria[index], othCriteria[index]);\n if (result) {\n if (index >= ordersLength) {\n return result;\n }\n var order = orders[index];\n return result * (order == 'desc' ? -1 : 1);\n }\n }\n // Fixes an `Array#sort` bug in the JS engine embedded in Adobe applications\n // that causes it, under certain circumstances, to provide the same value for\n // `object` and `other`. See https://github.com/jashkenas/underscore/pull/1247\n // for more details.\n //\n // This also ensures a stable sort in V8 and other engines.\n // See https://bugs.chromium.org/p/v8/issues/detail?id=90 for more details.\n return object.index - other.index;\n}\n\nmodule.exports = compareMultiple;\n","var baseRest = require('./_baseRest'),\n isIterateeCall = require('./_isIterateeCall');\n\n/**\n * Creates a function like `_.assign`.\n *\n * @private\n * @param {Function} assigner The function to assign values.\n * @returns {Function} Returns the new assigner function.\n */\nfunction createAssigner(assigner) {\n return baseRest(function(object, sources) {\n var index = -1,\n length = sources.length,\n customizer = length > 1 ? sources[length - 1] : undefined,\n guard = length > 2 ? sources[2] : undefined;\n\n customizer = (assigner.length > 3 && typeof customizer == 'function')\n ? (length--, customizer)\n : undefined;\n\n if (guard && isIterateeCall(sources[0], sources[1], guard)) {\n customizer = length < 3 ? undefined : customizer;\n length = 1;\n }\n object = Object(object);\n while (++index < length) {\n var source = sources[index];\n if (source) {\n assigner(object, source, index, customizer);\n }\n }\n return object;\n });\n}\n\nmodule.exports = createAssigner;\n","var isArrayLike = require('./isArrayLike');\n\n/**\n * Creates a `baseEach` or `baseEachRight` function.\n *\n * @private\n * @param {Function} eachFunc The function to iterate over a collection.\n * @param {boolean} [fromRight] Specify iterating from right to left.\n * @returns {Function} Returns the new base function.\n */\nfunction createBaseEach(eachFunc, fromRight) {\n return function(collection, iteratee) {\n if (collection == null) {\n return collection;\n }\n if (!isArrayLike(collection)) {\n return eachFunc(collection, iteratee);\n }\n var length = collection.length,\n index = fromRight ? length : -1,\n iterable = Object(collection);\n\n while ((fromRight ? index-- : ++index < length)) {\n if (iteratee(iterable[index], index, iterable) === false) {\n break;\n }\n }\n return collection;\n };\n}\n\nmodule.exports = createBaseEach;\n","/**\n * Creates a base function for methods like `_.forIn` and `_.forOwn`.\n *\n * @private\n * @param {boolean} [fromRight] Specify iterating from right to left.\n * @returns {Function} Returns the new base function.\n */\nfunction createBaseFor(fromRight) {\n return function(object, iteratee, keysFunc) {\n var index = -1,\n iterable = Object(object),\n props = keysFunc(object),\n length = props.length;\n\n while (length--) {\n var key = props[fromRight ? length : ++index];\n if (iteratee(iterable[key], key, iterable) === false) {\n break;\n }\n }\n return object;\n };\n}\n\nmodule.exports = createBaseFor;\n","var Set = require('./_Set'),\n noop = require('./noop'),\n setToArray = require('./_setToArray');\n\n/** Used as references for various `Number` constants. */\nvar INFINITY = 1 / 0;\n\n/**\n * Creates a set object of `values`.\n *\n * @private\n * @param {Array} values The values to add to the set.\n * @returns {Object} Returns the new set.\n */\nvar createSet = !(Set && (1 / setToArray(new Set([,-0]))[1]) == INFINITY) ? noop : function(values) {\n return new Set(values);\n};\n\nmodule.exports = createSet;\n","var baseMerge = require('./_baseMerge'),\n isObject = require('./isObject');\n\n/**\n * Used by `_.defaultsDeep` to customize its `_.merge` use to merge source\n * objects into destination objects that are passed thru.\n *\n * @private\n * @param {*} objValue The destination value.\n * @param {*} srcValue The source value.\n * @param {string} key The key of the property to merge.\n * @param {Object} object The parent object of `objValue`.\n * @param {Object} source The parent object of `srcValue`.\n * @param {Object} [stack] Tracks traversed source values and their merged\n * counterparts.\n * @returns {*} Returns the value to assign.\n */\nfunction customDefaultsMerge(objValue, srcValue, key, object, source, stack) {\n if (isObject(objValue) && isObject(srcValue)) {\n // Recursively merge objects and arrays (susceptible to call stack limits).\n stack.set(srcValue, objValue);\n baseMerge(objValue, srcValue, undefined, customDefaultsMerge, stack);\n stack['delete'](srcValue);\n }\n return objValue;\n}\n\nmodule.exports = customDefaultsMerge;\n","var SetCache = require('./_SetCache'),\n arraySome = require('./_arraySome'),\n cacheHas = require('./_cacheHas');\n\n/** Used to compose bitmasks for value comparisons. */\nvar COMPARE_PARTIAL_FLAG = 1,\n COMPARE_UNORDERED_FLAG = 2;\n\n/**\n * A specialized version of `baseIsEqualDeep` for arrays with support for\n * partial deep comparisons.\n *\n * @private\n * @param {Array} array The array to compare.\n * @param {Array} other The other array to compare.\n * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details.\n * @param {Function} customizer The function to customize comparisons.\n * @param {Function} equalFunc The function to determine equivalents of values.\n * @param {Object} stack Tracks traversed `array` and `other` objects.\n * @returns {boolean} Returns `true` if the arrays are equivalent, else `false`.\n */\nfunction equalArrays(array, other, bitmask, customizer, equalFunc, stack) {\n var isPartial = bitmask & COMPARE_PARTIAL_FLAG,\n arrLength = array.length,\n othLength = other.length;\n\n if (arrLength != othLength && !(isPartial && othLength > arrLength)) {\n return false;\n }\n // Check that cyclic values are equal.\n var arrStacked = stack.get(array);\n var othStacked = stack.get(other);\n if (arrStacked && othStacked) {\n return arrStacked == other && othStacked == array;\n }\n var index = -1,\n result = true,\n seen = (bitmask & COMPARE_UNORDERED_FLAG) ? new SetCache : undefined;\n\n stack.set(array, other);\n stack.set(other, array);\n\n // Ignore non-index properties.\n while (++index < arrLength) {\n var arrValue = array[index],\n othValue = other[index];\n\n if (customizer) {\n var compared = isPartial\n ? customizer(othValue, arrValue, index, other, array, stack)\n : customizer(arrValue, othValue, index, array, other, stack);\n }\n if (compared !== undefined) {\n if (compared) {\n continue;\n }\n result = false;\n break;\n }\n // Recursively compare arrays (susceptible to call stack limits).\n if (seen) {\n if (!arraySome(other, function(othValue, othIndex) {\n if (!cacheHas(seen, othIndex) &&\n (arrValue === othValue || equalFunc(arrValue, othValue, bitmask, customizer, stack))) {\n return seen.push(othIndex);\n }\n })) {\n result = false;\n break;\n }\n } else if (!(\n arrValue === othValue ||\n equalFunc(arrValue, othValue, bitmask, customizer, stack)\n )) {\n result = false;\n break;\n }\n }\n stack['delete'](array);\n stack['delete'](other);\n return result;\n}\n\nmodule.exports = equalArrays;\n","var Symbol = require('./_Symbol'),\n Uint8Array = require('./_Uint8Array'),\n eq = require('./eq'),\n equalArrays = require('./_equalArrays'),\n mapToArray = require('./_mapToArray'),\n setToArray = require('./_setToArray');\n\n/** Used to compose bitmasks for value comparisons. */\nvar COMPARE_PARTIAL_FLAG = 1,\n COMPARE_UNORDERED_FLAG = 2;\n\n/** `Object#toString` result references. */\nvar boolTag = '[object Boolean]',\n dateTag = '[object Date]',\n errorTag = '[object Error]',\n mapTag = '[object Map]',\n numberTag = '[object Number]',\n regexpTag = '[object RegExp]',\n setTag = '[object Set]',\n stringTag = '[object String]',\n symbolTag = '[object Symbol]';\n\nvar arrayBufferTag = '[object ArrayBuffer]',\n dataViewTag = '[object DataView]';\n\n/** Used to convert symbols to primitives and strings. */\nvar symbolProto = Symbol ? Symbol.prototype : undefined,\n symbolValueOf = symbolProto ? symbolProto.valueOf : undefined;\n\n/**\n * A specialized version of `baseIsEqualDeep` for comparing objects of\n * the same `toStringTag`.\n *\n * **Note:** This function only supports comparing values with tags of\n * `Boolean`, `Date`, `Error`, `Number`, `RegExp`, or `String`.\n *\n * @private\n * @param {Object} object The object to compare.\n * @param {Object} other The other object to compare.\n * @param {string} tag The `toStringTag` of the objects to compare.\n * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details.\n * @param {Function} customizer The function to customize comparisons.\n * @param {Function} equalFunc The function to determine equivalents of values.\n * @param {Object} stack Tracks traversed `object` and `other` objects.\n * @returns {boolean} Returns `true` if the objects are equivalent, else `false`.\n */\nfunction equalByTag(object, other, tag, bitmask, customizer, equalFunc, stack) {\n switch (tag) {\n case dataViewTag:\n if ((object.byteLength != other.byteLength) ||\n (object.byteOffset != other.byteOffset)) {\n return false;\n }\n object = object.buffer;\n other = other.buffer;\n\n case arrayBufferTag:\n if ((object.byteLength != other.byteLength) ||\n !equalFunc(new Uint8Array(object), new Uint8Array(other))) {\n return false;\n }\n return true;\n\n case boolTag:\n case dateTag:\n case numberTag:\n // Coerce booleans to `1` or `0` and dates to milliseconds.\n // Invalid dates are coerced to `NaN`.\n return eq(+object, +other);\n\n case errorTag:\n return object.name == other.name && object.message == other.message;\n\n case regexpTag:\n case stringTag:\n // Coerce regexes to strings and treat strings, primitives and objects,\n // as equal. See http://www.ecma-international.org/ecma-262/7.0/#sec-regexp.prototype.tostring\n // for more details.\n return object == (other + '');\n\n case mapTag:\n var convert = mapToArray;\n\n case setTag:\n var isPartial = bitmask & COMPARE_PARTIAL_FLAG;\n convert || (convert = setToArray);\n\n if (object.size != other.size && !isPartial) {\n return false;\n }\n // Assume cyclic values are equal.\n var stacked = stack.get(object);\n if (stacked) {\n return stacked == other;\n }\n bitmask |= COMPARE_UNORDERED_FLAG;\n\n // Recursively compare objects (susceptible to call stack limits).\n stack.set(object, other);\n var result = equalArrays(convert(object), convert(other), bitmask, customizer, equalFunc, stack);\n stack['delete'](object);\n return result;\n\n case symbolTag:\n if (symbolValueOf) {\n return symbolValueOf.call(object) == symbolValueOf.call(other);\n }\n }\n return false;\n}\n\nmodule.exports = equalByTag;\n","var getAllKeys = require('./_getAllKeys');\n\n/** Used to compose bitmasks for value comparisons. */\nvar COMPARE_PARTIAL_FLAG = 1;\n\n/** Used for built-in method references. */\nvar objectProto = Object.prototype;\n\n/** Used to check objects for own properties. */\nvar hasOwnProperty = objectProto.hasOwnProperty;\n\n/**\n * A specialized version of `baseIsEqualDeep` for objects with support for\n * partial deep comparisons.\n *\n * @private\n * @param {Object} object The object to compare.\n * @param {Object} other The other object to compare.\n * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details.\n * @param {Function} customizer The function to customize comparisons.\n * @param {Function} equalFunc The function to determine equivalents of values.\n * @param {Object} stack Tracks traversed `object` and `other` objects.\n * @returns {boolean} Returns `true` if the objects are equivalent, else `false`.\n */\nfunction equalObjects(object, other, bitmask, customizer, equalFunc, stack) {\n var isPartial = bitmask & COMPARE_PARTIAL_FLAG,\n objProps = getAllKeys(object),\n objLength = objProps.length,\n othProps = getAllKeys(other),\n othLength = othProps.length;\n\n if (objLength != othLength && !isPartial) {\n return false;\n }\n var index = objLength;\n while (index--) {\n var key = objProps[index];\n if (!(isPartial ? key in other : hasOwnProperty.call(other, key))) {\n return false;\n }\n }\n // Check that cyclic values are equal.\n var objStacked = stack.get(object);\n var othStacked = stack.get(other);\n if (objStacked && othStacked) {\n return objStacked == other && othStacked == object;\n }\n var result = true;\n stack.set(object, other);\n stack.set(other, object);\n\n var skipCtor = isPartial;\n while (++index < objLength) {\n key = objProps[index];\n var objValue = object[key],\n othValue = other[key];\n\n if (customizer) {\n var compared = isPartial\n ? customizer(othValue, objValue, key, other, object, stack)\n : customizer(objValue, othValue, key, object, other, stack);\n }\n // Recursively compare objects (susceptible to call stack limits).\n if (!(compared === undefined\n ? (objValue === othValue || equalFunc(objValue, othValue, bitmask, customizer, stack))\n : compared\n )) {\n result = false;\n break;\n }\n skipCtor || (skipCtor = key == 'constructor');\n }\n if (result && !skipCtor) {\n var objCtor = object.constructor,\n othCtor = other.constructor;\n\n // Non `Object` object instances with different constructors are not equal.\n if (objCtor != othCtor &&\n ('constructor' in object && 'constructor' in other) &&\n !(typeof objCtor == 'function' && objCtor instanceof objCtor &&\n typeof othCtor == 'function' && othCtor instanceof othCtor)) {\n result = false;\n }\n }\n stack['delete'](object);\n stack['delete'](other);\n return result;\n}\n\nmodule.exports = equalObjects;\n","var isStrictComparable = require('./_isStrictComparable'),\n keys = require('./keys');\n\n/**\n * Gets the property names, values, and compare flags of `object`.\n *\n * @private\n * @param {Object} object The object to query.\n * @returns {Array} Returns the match data of `object`.\n */\nfunction getMatchData(object) {\n var result = keys(object),\n length = result.length;\n\n while (length--) {\n var key = result[length],\n value = object[key];\n\n result[length] = [key, value, isStrictComparable(value)];\n }\n return result;\n}\n\nmodule.exports = getMatchData;\n","var eq = require('./eq'),\n isArrayLike = require('./isArrayLike'),\n isIndex = require('./_isIndex'),\n isObject = require('./isObject');\n\n/**\n * Checks if the given arguments are from an iteratee call.\n *\n * @private\n * @param {*} value The potential iteratee value argument.\n * @param {*} index The potential iteratee index or key argument.\n * @param {*} object The potential iteratee object argument.\n * @returns {boolean} Returns `true` if the arguments are from an iteratee call,\n * else `false`.\n */\nfunction isIterateeCall(value, index, object) {\n if (!isObject(object)) {\n return false;\n }\n var type = typeof index;\n if (type == 'number'\n ? (isArrayLike(object) && isIndex(index, object.length))\n : (type == 'string' && index in object)\n ) {\n return eq(object[index], value);\n }\n return false;\n}\n\nmodule.exports = isIterateeCall;\n","var isObject = require('./isObject');\n\n/**\n * Checks if `value` is suitable for strict equality comparisons, i.e. `===`.\n *\n * @private\n * @param {*} value The value to check.\n * @returns {boolean} Returns `true` if `value` if suitable for strict\n * equality comparisons, else `false`.\n */\nfunction isStrictComparable(value) {\n return value === value && !isObject(value);\n}\n\nmodule.exports = isStrictComparable;\n","/**\n * Converts `map` to its key-value pairs.\n *\n * @private\n * @param {Object} map The map to convert.\n * @returns {Array} Returns the key-value pairs.\n */\nfunction mapToArray(map) {\n var index = -1,\n result = Array(map.size);\n\n map.forEach(function(value, key) {\n result[++index] = [key, value];\n });\n return result;\n}\n\nmodule.exports = mapToArray;\n","/**\n * A specialized version of `matchesProperty` for source values suitable\n * for strict equality comparisons, i.e. `===`.\n *\n * @private\n * @param {string} key The key of the property to get.\n * @param {*} srcValue The value to match.\n * @returns {Function} Returns the new spec function.\n */\nfunction matchesStrictComparable(key, srcValue) {\n return function(object) {\n if (object == null) {\n return false;\n }\n return object[key] === srcValue &&\n (srcValue !== undefined || (key in Object(object)));\n };\n}\n\nmodule.exports = matchesStrictComparable;\n","/**\n * Gets the value at `key`, unless `key` is \"__proto__\" or \"constructor\".\n *\n * @private\n * @param {Object} object The object to query.\n * @param {string} key The key of the property to get.\n * @returns {*} Returns the property value.\n */\nfunction safeGet(object, key) {\n if (key === 'constructor' && typeof object[key] === 'function') {\n return;\n }\n\n if (key == '__proto__') {\n return;\n }\n\n return object[key];\n}\n\nmodule.exports = safeGet;\n","/** Used to stand-in for `undefined` hash values. */\nvar HASH_UNDEFINED = '__lodash_hash_undefined__';\n\n/**\n * Adds `value` to the array cache.\n *\n * @private\n * @name add\n * @memberOf SetCache\n * @alias push\n * @param {*} value The value to cache.\n * @returns {Object} Returns the cache instance.\n */\nfunction setCacheAdd(value) {\n this.__data__.set(value, HASH_UNDEFINED);\n return this;\n}\n\nmodule.exports = setCacheAdd;\n","/**\n * Checks if `value` is in the array cache.\n *\n * @private\n * @name has\n * @memberOf SetCache\n * @param {*} value The value to search for.\n * @returns {number} Returns `true` if `value` is found, else `false`.\n */\nfunction setCacheHas(value) {\n return this.__data__.has(value);\n}\n\nmodule.exports = setCacheHas;\n","/**\n * Converts `set` to an array of its values.\n *\n * @private\n * @param {Object} set The set to convert.\n * @returns {Array} Returns the values.\n */\nfunction setToArray(set) {\n var index = -1,\n result = Array(set.size);\n\n set.forEach(function(value) {\n result[++index] = value;\n });\n return result;\n}\n\nmodule.exports = setToArray;\n","/**\n * A specialized version of `_.indexOf` which performs strict equality\n * comparisons of values, i.e. `===`.\n *\n * @private\n * @param {Array} array The array to inspect.\n * @param {*} value The value to search for.\n * @param {number} fromIndex The index to search from.\n * @returns {number} Returns the index of the matched value, else `-1`.\n */\nfunction strictIndexOf(array, value, fromIndex) {\n var index = fromIndex - 1,\n length = array.length;\n\n while (++index < length) {\n if (array[index] === value) {\n return index;\n }\n }\n return -1;\n}\n\nmodule.exports = strictIndexOf;\n","/** Used to match a single whitespace character. */\nvar reWhitespace = /\\s/;\n\n/**\n * Used by `_.trim` and `_.trimEnd` to get the index of the last non-whitespace\n * character of `string`.\n *\n * @private\n * @param {string} string The string to inspect.\n * @returns {number} Returns the index of the last non-whitespace character.\n */\nfunction trimmedEndIndex(string) {\n var index = string.length;\n\n while (index-- && reWhitespace.test(string.charAt(index))) {}\n return index;\n}\n\nmodule.exports = trimmedEndIndex;\n","var baseRest = require('./_baseRest'),\n eq = require('./eq'),\n isIterateeCall = require('./_isIterateeCall'),\n keysIn = require('./keysIn');\n\n/** Used for built-in method references. */\nvar objectProto = Object.prototype;\n\n/** Used to check objects for own properties. */\nvar hasOwnProperty = objectProto.hasOwnProperty;\n\n/**\n * Assigns own and inherited enumerable string keyed properties of source\n * objects to the destination object for all destination properties that\n * resolve to `undefined`. Source objects are applied from left to right.\n * Once a property is set, additional values of the same property are ignored.\n *\n * **Note:** This method mutates `object`.\n *\n * @static\n * @since 0.1.0\n * @memberOf _\n * @category Object\n * @param {Object} object The destination object.\n * @param {...Object} [sources] The source objects.\n * @returns {Object} Returns `object`.\n * @see _.defaultsDeep\n * @example\n *\n * _.defaults({ 'a': 1 }, { 'b': 2 }, { 'a': 3 });\n * // => { 'a': 1, 'b': 2 }\n */\nvar defaults = baseRest(function(object, sources) {\n object = Object(object);\n\n var index = -1;\n var length = sources.length;\n var guard = length > 2 ? sources[2] : undefined;\n\n if (guard && isIterateeCall(sources[0], sources[1], guard)) {\n length = 1;\n }\n\n while (++index < length) {\n var source = sources[index];\n var props = keysIn(source);\n var propsIndex = -1;\n var propsLength = props.length;\n\n while (++propsIndex < propsLength) {\n var key = props[propsIndex];\n var value = object[key];\n\n if (value === undefined ||\n (eq(value, objectProto[key]) && !hasOwnProperty.call(object, key))) {\n object[key] = source[key];\n }\n }\n }\n\n return object;\n});\n\nmodule.exports = defaults;\n","var apply = require('./_apply'),\n baseRest = require('./_baseRest'),\n customDefaultsMerge = require('./_customDefaultsMerge'),\n mergeWith = require('./mergeWith');\n\n/**\n * This method is like `_.defaults` except that it recursively assigns\n * default properties.\n *\n * **Note:** This method mutates `object`.\n *\n * @static\n * @memberOf _\n * @since 3.10.0\n * @category Object\n * @param {Object} object The destination object.\n * @param {...Object} [sources] The source objects.\n * @returns {Object} Returns `object`.\n * @see _.defaults\n * @example\n *\n * _.defaultsDeep({ 'a': { 'b': 2 } }, { 'a': { 'b': 1, 'c': 3 } });\n * // => { 'a': { 'b': 2, 'c': 3 } }\n */\nvar defaultsDeep = baseRest(function(args) {\n args.push(undefined, customDefaultsMerge);\n return apply(mergeWith, undefined, args);\n});\n\nmodule.exports = defaultsDeep;\n","var baseFlatten = require('./_baseFlatten');\n\n/** Used as references for various `Number` constants. */\nvar INFINITY = 1 / 0;\n\n/**\n * Recursively flattens `array`.\n *\n * @static\n * @memberOf _\n * @since 3.0.0\n * @category Array\n * @param {Array} array The array to flatten.\n * @returns {Array} Returns the new flattened array.\n * @example\n *\n * _.flattenDeep([1, [2, [3, [4]], 5]]);\n * // => [1, 2, 3, 4, 5]\n */\nfunction flattenDeep(array) {\n var length = array == null ? 0 : array.length;\n return length ? baseFlatten(array, INFINITY) : [];\n}\n\nmodule.exports = flattenDeep;\n","var arrayEach = require('./_arrayEach'),\n baseEach = require('./_baseEach'),\n castFunction = require('./_castFunction'),\n isArray = require('./isArray');\n\n/**\n * Iterates over elements of `collection` and invokes `iteratee` for each element.\n * The iteratee is invoked with three arguments: (value, index|key, collection).\n * Iteratee functions may exit iteration early by explicitly returning `false`.\n *\n * **Note:** As with other \"Collections\" methods, objects with a \"length\"\n * property are iterated like arrays. To avoid this behavior use `_.forIn`\n * or `_.forOwn` for object iteration.\n *\n * @static\n * @memberOf _\n * @since 0.1.0\n * @alias each\n * @category Collection\n * @param {Array|Object} collection The collection to iterate over.\n * @param {Function} [iteratee=_.identity] The function invoked per iteration.\n * @returns {Array|Object} Returns `collection`.\n * @see _.forEachRight\n * @example\n *\n * _.forEach([1, 2], function(value) {\n * console.log(value);\n * });\n * // => Logs `1` then `2`.\n *\n * _.forEach({ 'a': 1, 'b': 2 }, function(value, key) {\n * console.log(key);\n * });\n * // => Logs 'a' then 'b' (iteration order is not guaranteed).\n */\nfunction forEach(collection, iteratee) {\n var func = isArray(collection) ? arrayEach : baseEach;\n return func(collection, castFunction(iteratee));\n}\n\nmodule.exports = forEach;\n","var arrayMap = require('./_arrayMap'),\n baseIntersection = require('./_baseIntersection'),\n baseRest = require('./_baseRest'),\n castArrayLikeObject = require('./_castArrayLikeObject');\n\n/**\n * Creates an array of unique values that are included in all given arrays\n * using [`SameValueZero`](http://ecma-international.org/ecma-262/7.0/#sec-samevaluezero)\n * for equality comparisons. The order and references of result values are\n * determined by the first array.\n *\n * @static\n * @memberOf _\n * @since 0.1.0\n * @category Array\n * @param {...Array} [arrays] The arrays to inspect.\n * @returns {Array} Returns the new array of intersecting values.\n * @example\n *\n * _.intersection([2, 1], [2, 3]);\n * // => [2]\n */\nvar intersection = baseRest(function(arrays) {\n var mapped = arrayMap(arrays, castArrayLikeObject);\n return (mapped.length && mapped[0] === arrays[0])\n ? baseIntersection(mapped)\n : [];\n});\n\nmodule.exports = intersection;\n","var arrayMap = require('./_arrayMap'),\n baseIntersection = require('./_baseIntersection'),\n baseRest = require('./_baseRest'),\n castArrayLikeObject = require('./_castArrayLikeObject'),\n last = require('./last');\n\n/**\n * This method is like `_.intersection` except that it accepts `comparator`\n * which is invoked to compare elements of `arrays`. The order and references\n * of result values are determined by the first array. The comparator is\n * invoked with two arguments: (arrVal, othVal).\n *\n * @static\n * @memberOf _\n * @since 4.0.0\n * @category Array\n * @param {...Array} [arrays] The arrays to inspect.\n * @param {Function} [comparator] The comparator invoked per element.\n * @returns {Array} Returns the new array of intersecting values.\n * @example\n *\n * var objects = [{ 'x': 1, 'y': 2 }, { 'x': 2, 'y': 1 }];\n * var others = [{ 'x': 1, 'y': 1 }, { 'x': 1, 'y': 2 }];\n *\n * _.intersectionWith(objects, others, _.isEqual);\n * // => [{ 'x': 1, 'y': 2 }]\n */\nvar intersectionWith = baseRest(function(arrays) {\n var comparator = last(arrays),\n mapped = arrayMap(arrays, castArrayLikeObject);\n\n comparator = typeof comparator == 'function' ? comparator : undefined;\n if (comparator) {\n mapped.pop();\n }\n return (mapped.length && mapped[0] === arrays[0])\n ? baseIntersection(mapped, undefined, comparator)\n : [];\n});\n\nmodule.exports = intersectionWith;\n","var isArrayLike = require('./isArrayLike'),\n isObjectLike = require('./isObjectLike');\n\n/**\n * This method is like `_.isArrayLike` except that it also checks if `value`\n * is an object.\n *\n * @static\n * @memberOf _\n * @since 4.0.0\n * @category Lang\n * @param {*} value The value to check.\n * @returns {boolean} Returns `true` if `value` is an array-like object,\n * else `false`.\n * @example\n *\n * _.isArrayLikeObject([1, 2, 3]);\n * // => true\n *\n * _.isArrayLikeObject(document.body.children);\n * // => true\n *\n * _.isArrayLikeObject('abc');\n * // => false\n *\n * _.isArrayLikeObject(_.noop);\n * // => false\n */\nfunction isArrayLikeObject(value) {\n return isObjectLike(value) && isArrayLike(value);\n}\n\nmodule.exports = isArrayLikeObject;\n","var baseGetTag = require('./_baseGetTag'),\n isObjectLike = require('./isObjectLike');\n\n/** `Object#toString` result references. */\nvar boolTag = '[object Boolean]';\n\n/**\n * Checks if `value` is classified as a boolean primitive or object.\n *\n * @static\n * @memberOf _\n * @since 0.1.0\n * @category Lang\n * @param {*} value The value to check.\n * @returns {boolean} Returns `true` if `value` is a boolean, else `false`.\n * @example\n *\n * _.isBoolean(false);\n * // => true\n *\n * _.isBoolean(null);\n * // => false\n */\nfunction isBoolean(value) {\n return value === true || value === false ||\n (isObjectLike(value) && baseGetTag(value) == boolTag);\n}\n\nmodule.exports = isBoolean;\n","var baseIsEqual = require('./_baseIsEqual');\n\n/**\n * Performs a deep comparison between two values to determine if they are\n * equivalent.\n *\n * **Note:** This method supports comparing arrays, array buffers, booleans,\n * date objects, error objects, maps, numbers, `Object` objects, regexes,\n * sets, strings, symbols, and typed arrays. `Object` objects are compared\n * by their own, not inherited, enumerable properties. Functions and DOM\n * nodes are compared by strict equality, i.e. `===`.\n *\n * @static\n * @memberOf _\n * @since 0.1.0\n * @category Lang\n * @param {*} value The value to compare.\n * @param {*} other The other value to compare.\n * @returns {boolean} Returns `true` if the values are equivalent, else `false`.\n * @example\n *\n * var object = { 'a': 1 };\n * var other = { 'a': 1 };\n *\n * _.isEqual(object, other);\n * // => true\n *\n * object === other;\n * // => false\n */\nfunction isEqual(value, other) {\n return baseIsEqual(value, other);\n}\n\nmodule.exports = isEqual;\n","var baseIsEqual = require('./_baseIsEqual');\n\n/**\n * This method is like `_.isEqual` except that it accepts `customizer` which\n * is invoked to compare values. If `customizer` returns `undefined`, comparisons\n * are handled by the method instead. The `customizer` is invoked with up to\n * six arguments: (objValue, othValue [, index|key, object, other, stack]).\n *\n * @static\n * @memberOf _\n * @since 4.0.0\n * @category Lang\n * @param {*} value The value to compare.\n * @param {*} other The other value to compare.\n * @param {Function} [customizer] The function to customize comparisons.\n * @returns {boolean} Returns `true` if the values are equivalent, else `false`.\n * @example\n *\n * function isGreeting(value) {\n * return /^h(?:i|ello)$/.test(value);\n * }\n *\n * function customizer(objValue, othValue) {\n * if (isGreeting(objValue) && isGreeting(othValue)) {\n * return true;\n * }\n * }\n *\n * var array = ['hello', 'goodbye'];\n * var other = ['hi', 'goodbye'];\n *\n * _.isEqualWith(array, other, customizer);\n * // => true\n */\nfunction isEqualWith(value, other, customizer) {\n customizer = typeof customizer == 'function' ? customizer : undefined;\n var result = customizer ? customizer(value, other) : undefined;\n return result === undefined ? baseIsEqual(value, other, undefined, customizer) : !!result;\n}\n\nmodule.exports = isEqualWith;\n","/**\n * Checks if `value` is `null` or `undefined`.\n *\n * @static\n * @memberOf _\n * @since 4.0.0\n * @category Lang\n * @param {*} value The value to check.\n * @returns {boolean} Returns `true` if `value` is nullish, else `false`.\n * @example\n *\n * _.isNil(null);\n * // => true\n *\n * _.isNil(void 0);\n * // => true\n *\n * _.isNil(NaN);\n * // => false\n */\nfunction isNil(value) {\n return value == null;\n}\n\nmodule.exports = isNil;\n","var baseGetTag = require('./_baseGetTag'),\n isObjectLike = require('./isObjectLike');\n\n/** `Object#toString` result references. */\nvar numberTag = '[object Number]';\n\n/**\n * Checks if `value` is classified as a `Number` primitive or object.\n *\n * **Note:** To exclude `Infinity`, `-Infinity`, and `NaN`, which are\n * classified as numbers, use the `_.isFinite` method.\n *\n * @static\n * @memberOf _\n * @since 0.1.0\n * @category Lang\n * @param {*} value The value to check.\n * @returns {boolean} Returns `true` if `value` is a number, else `false`.\n * @example\n *\n * _.isNumber(3);\n * // => true\n *\n * _.isNumber(Number.MIN_VALUE);\n * // => true\n *\n * _.isNumber(Infinity);\n * // => true\n *\n * _.isNumber('3');\n * // => false\n */\nfunction isNumber(value) {\n return typeof value == 'number' ||\n (isObjectLike(value) && baseGetTag(value) == numberTag);\n}\n\nmodule.exports = isNumber;\n","var baseGetTag = require('./_baseGetTag'),\n isArray = require('./isArray'),\n isObjectLike = require('./isObjectLike');\n\n/** `Object#toString` result references. */\nvar stringTag = '[object String]';\n\n/**\n * Checks if `value` is classified as a `String` primitive or object.\n *\n * @static\n * @since 0.1.0\n * @memberOf _\n * @category Lang\n * @param {*} value The value to check.\n * @returns {boolean} Returns `true` if `value` is a string, else `false`.\n * @example\n *\n * _.isString('abc');\n * // => true\n *\n * _.isString(1);\n * // => false\n */\nfunction isString(value) {\n return typeof value == 'string' ||\n (!isArray(value) && isObjectLike(value) && baseGetTag(value) == stringTag);\n}\n\nmodule.exports = isString;\n","var baseMerge = require('./_baseMerge'),\n createAssigner = require('./_createAssigner');\n\n/**\n * This method is like `_.assign` except that it recursively merges own and\n * inherited enumerable string keyed properties of source objects into the\n * destination object. Source properties that resolve to `undefined` are\n * skipped if a destination value exists. Array and plain object properties\n * are merged recursively. Other objects and value types are overridden by\n * assignment. Source objects are applied from left to right. Subsequent\n * sources overwrite property assignments of previous sources.\n *\n * **Note:** This method mutates `object`.\n *\n * @static\n * @memberOf _\n * @since 0.5.0\n * @category Object\n * @param {Object} object The destination object.\n * @param {...Object} [sources] The source objects.\n * @returns {Object} Returns `object`.\n * @example\n *\n * var object = {\n * 'a': [{ 'b': 2 }, { 'd': 4 }]\n * };\n *\n * var other = {\n * 'a': [{ 'c': 3 }, { 'e': 5 }]\n * };\n *\n * _.merge(object, other);\n * // => { 'a': [{ 'b': 2, 'c': 3 }, { 'd': 4, 'e': 5 }] }\n */\nvar merge = createAssigner(function(object, source, srcIndex) {\n baseMerge(object, source, srcIndex);\n});\n\nmodule.exports = merge;\n","var baseMerge = require('./_baseMerge'),\n createAssigner = require('./_createAssigner');\n\n/**\n * This method is like `_.merge` except that it accepts `customizer` which\n * is invoked to produce the merged values of the destination and source\n * properties. If `customizer` returns `undefined`, merging is handled by the\n * method instead. The `customizer` is invoked with six arguments:\n * (objValue, srcValue, key, object, source, stack).\n *\n * **Note:** This method mutates `object`.\n *\n * @static\n * @memberOf _\n * @since 4.0.0\n * @category Object\n * @param {Object} object The destination object.\n * @param {...Object} sources The source objects.\n * @param {Function} customizer The function to customize assigned values.\n * @returns {Object} Returns `object`.\n * @example\n *\n * function customizer(objValue, srcValue) {\n * if (_.isArray(objValue)) {\n * return objValue.concat(srcValue);\n * }\n * }\n *\n * var object = { 'a': [1], 'b': [2] };\n * var other = { 'a': [3], 'b': [4] };\n *\n * _.mergeWith(object, other, customizer);\n * // => { 'a': [1, 3], 'b': [2, 4] }\n */\nvar mergeWith = createAssigner(function(object, source, srcIndex, customizer) {\n baseMerge(object, source, srcIndex, customizer);\n});\n\nmodule.exports = mergeWith;\n","/**\n * This method returns `undefined`.\n *\n * @static\n * @memberOf _\n * @since 2.3.0\n * @category Util\n * @example\n *\n * _.times(2, _.noop);\n * // => [undefined, undefined]\n */\nfunction noop() {\n // No operation performed.\n}\n\nmodule.exports = noop;\n","var baseProperty = require('./_baseProperty'),\n basePropertyDeep = require('./_basePropertyDeep'),\n isKey = require('./_isKey'),\n toKey = require('./_toKey');\n\n/**\n * Creates a function that returns the value at `path` of a given object.\n *\n * @static\n * @memberOf _\n * @since 2.4.0\n * @category Util\n * @param {Array|string} path The path of the property to get.\n * @returns {Function} Returns the new accessor function.\n * @example\n *\n * var objects = [\n * { 'a': { 'b': 2 } },\n * { 'a': { 'b': 1 } }\n * ];\n *\n * _.map(objects, _.property('a.b'));\n * // => [2, 1]\n *\n * _.map(_.sortBy(objects, _.property(['a', 'b'])), 'a.b');\n * // => [1, 2]\n */\nfunction property(path) {\n return isKey(path) ? baseProperty(toKey(path)) : basePropertyDeep(path);\n}\n\nmodule.exports = property;\n","var basePullAll = require('./_basePullAll');\n\n/**\n * This method is like `_.pull` except that it accepts an array of values to remove.\n *\n * **Note:** Unlike `_.difference`, this method mutates `array`.\n *\n * @static\n * @memberOf _\n * @since 4.0.0\n * @category Array\n * @param {Array} array The array to modify.\n * @param {Array} values The values to remove.\n * @returns {Array} Returns `array`.\n * @example\n *\n * var array = ['a', 'b', 'c', 'a', 'b', 'c'];\n *\n * _.pullAll(array, ['a', 'c']);\n * console.log(array);\n * // => ['b', 'b']\n */\nfunction pullAll(array, values) {\n return (array && array.length && values && values.length)\n ? basePullAll(array, values)\n : array;\n}\n\nmodule.exports = pullAll;\n","var arrayReduce = require('./_arrayReduce'),\n baseEach = require('./_baseEach'),\n baseIteratee = require('./_baseIteratee'),\n baseReduce = require('./_baseReduce'),\n isArray = require('./isArray');\n\n/**\n * Reduces `collection` to a value which is the accumulated result of running\n * each element in `collection` thru `iteratee`, where each successive\n * invocation is supplied the return value of the previous. If `accumulator`\n * is not given, the first element of `collection` is used as the initial\n * value. The iteratee is invoked with four arguments:\n * (accumulator, value, index|key, collection).\n *\n * Many lodash methods are guarded to work as iteratees for methods like\n * `_.reduce`, `_.reduceRight`, and `_.transform`.\n *\n * The guarded methods are:\n * `assign`, `defaults`, `defaultsDeep`, `includes`, `merge`, `orderBy`,\n * and `sortBy`\n *\n * @static\n * @memberOf _\n * @since 0.1.0\n * @category Collection\n * @param {Array|Object} collection The collection to iterate over.\n * @param {Function} [iteratee=_.identity] The function invoked per iteration.\n * @param {*} [accumulator] The initial value.\n * @returns {*} Returns the accumulated value.\n * @see _.reduceRight\n * @example\n *\n * _.reduce([1, 2], function(sum, n) {\n * return sum + n;\n * }, 0);\n * // => 3\n *\n * _.reduce({ 'a': 1, 'b': 2, 'c': 1 }, function(result, value, key) {\n * (result[value] || (result[value] = [])).push(key);\n * return result;\n * }, {});\n * // => { '1': ['a', 'c'], '2': ['b'] } (iteration order is not guaranteed)\n */\nfunction reduce(collection, iteratee, accumulator) {\n var func = isArray(collection) ? arrayReduce : baseReduce,\n initAccum = arguments.length < 3;\n\n return func(collection, baseIteratee(iteratee, 4), accumulator, initAccum, baseEach);\n}\n\nmodule.exports = reduce;\n","var baseFlatten = require('./_baseFlatten'),\n baseOrderBy = require('./_baseOrderBy'),\n baseRest = require('./_baseRest'),\n isIterateeCall = require('./_isIterateeCall');\n\n/**\n * Creates an array of elements, sorted in ascending order by the results of\n * running each element in a collection thru each iteratee. This method\n * performs a stable sort, that is, it preserves the original sort order of\n * equal elements. The iteratees are invoked with one argument: (value).\n *\n * @static\n * @memberOf _\n * @since 0.1.0\n * @category Collection\n * @param {Array|Object} collection The collection to iterate over.\n * @param {...(Function|Function[])} [iteratees=[_.identity]]\n * The iteratees to sort by.\n * @returns {Array} Returns the new sorted array.\n * @example\n *\n * var users = [\n * { 'user': 'fred', 'age': 48 },\n * { 'user': 'barney', 'age': 36 },\n * { 'user': 'fred', 'age': 30 },\n * { 'user': 'barney', 'age': 34 }\n * ];\n *\n * _.sortBy(users, [function(o) { return o.user; }]);\n * // => objects for [['barney', 36], ['barney', 34], ['fred', 48], ['fred', 30]]\n *\n * _.sortBy(users, ['user', 'age']);\n * // => objects for [['barney', 34], ['barney', 36], ['fred', 30], ['fred', 48]]\n */\nvar sortBy = baseRest(function(collection, iteratees) {\n if (collection == null) {\n return [];\n }\n var length = iteratees.length;\n if (length > 1 && isIterateeCall(collection, iteratees[0], iteratees[1])) {\n iteratees = [];\n } else if (length > 2 && isIterateeCall(iteratees[0], iteratees[1], iteratees[2])) {\n iteratees = [iteratees[0]];\n }\n return baseOrderBy(collection, baseFlatten(iteratees, 1), []);\n});\n\nmodule.exports = sortBy;\n","var baseTimes = require('./_baseTimes'),\n castFunction = require('./_castFunction'),\n toInteger = require('./toInteger');\n\n/** Used as references for various `Number` constants. */\nvar MAX_SAFE_INTEGER = 9007199254740991;\n\n/** Used as references for the maximum length and index of an array. */\nvar MAX_ARRAY_LENGTH = 4294967295;\n\n/* Built-in method references for those with the same name as other `lodash` methods. */\nvar nativeMin = Math.min;\n\n/**\n * Invokes the iteratee `n` times, returning an array of the results of\n * each invocation. The iteratee is invoked with one argument; (index).\n *\n * @static\n * @since 0.1.0\n * @memberOf _\n * @category Util\n * @param {number} n The number of times to invoke `iteratee`.\n * @param {Function} [iteratee=_.identity] The function invoked per iteration.\n * @returns {Array} Returns the array of results.\n * @example\n *\n * _.times(3, String);\n * // => ['0', '1', '2']\n *\n * _.times(4, _.constant(0));\n * // => [0, 0, 0, 0]\n */\nfunction times(n, iteratee) {\n n = toInteger(n);\n if (n < 1 || n > MAX_SAFE_INTEGER) {\n return [];\n }\n var index = MAX_ARRAY_LENGTH,\n length = nativeMin(n, MAX_ARRAY_LENGTH);\n\n iteratee = castFunction(iteratee);\n n -= MAX_ARRAY_LENGTH;\n\n var result = baseTimes(length, iteratee);\n while (++index < n) {\n iteratee(index);\n }\n return result;\n}\n\nmodule.exports = times;\n","var toNumber = require('./toNumber');\n\n/** Used as references for various `Number` constants. */\nvar INFINITY = 1 / 0,\n MAX_INTEGER = 1.7976931348623157e+308;\n\n/**\n * Converts `value` to a finite number.\n *\n * @static\n * @memberOf _\n * @since 4.12.0\n * @category Lang\n * @param {*} value The value to convert.\n * @returns {number} Returns the converted number.\n * @example\n *\n * _.toFinite(3.2);\n * // => 3.2\n *\n * _.toFinite(Number.MIN_VALUE);\n * // => 5e-324\n *\n * _.toFinite(Infinity);\n * // => 1.7976931348623157e+308\n *\n * _.toFinite('3.2');\n * // => 3.2\n */\nfunction toFinite(value) {\n if (!value) {\n return value === 0 ? value : 0;\n }\n value = toNumber(value);\n if (value === INFINITY || value === -INFINITY) {\n var sign = (value < 0 ? -1 : 1);\n return sign * MAX_INTEGER;\n }\n return value === value ? value : 0;\n}\n\nmodule.exports = toFinite;\n","var toFinite = require('./toFinite');\n\n/**\n * Converts `value` to an integer.\n *\n * **Note:** This method is loosely based on\n * [`ToInteger`](http://www.ecma-international.org/ecma-262/7.0/#sec-tointeger).\n *\n * @static\n * @memberOf _\n * @since 4.0.0\n * @category Lang\n * @param {*} value The value to convert.\n * @returns {number} Returns the converted integer.\n * @example\n *\n * _.toInteger(3.2);\n * // => 3\n *\n * _.toInteger(Number.MIN_VALUE);\n * // => 0\n *\n * _.toInteger(Infinity);\n * // => 1.7976931348623157e+308\n *\n * _.toInteger('3.2');\n * // => 3\n */\nfunction toInteger(value) {\n var result = toFinite(value),\n remainder = result % 1;\n\n return result === result ? (remainder ? result - remainder : result) : 0;\n}\n\nmodule.exports = toInteger;\n","var baseTrim = require('./_baseTrim'),\n isObject = require('./isObject'),\n isSymbol = require('./isSymbol');\n\n/** Used as references for various `Number` constants. */\nvar NAN = 0 / 0;\n\n/** Used to detect bad signed hexadecimal string values. */\nvar reIsBadHex = /^[-+]0x[0-9a-f]+$/i;\n\n/** Used to detect binary string values. */\nvar reIsBinary = /^0b[01]+$/i;\n\n/** Used to detect octal string values. */\nvar reIsOctal = /^0o[0-7]+$/i;\n\n/** Built-in method references without a dependency on `root`. */\nvar freeParseInt = parseInt;\n\n/**\n * Converts `value` to a number.\n *\n * @static\n * @memberOf _\n * @since 4.0.0\n * @category Lang\n * @param {*} value The value to process.\n * @returns {number} Returns the number.\n * @example\n *\n * _.toNumber(3.2);\n * // => 3.2\n *\n * _.toNumber(Number.MIN_VALUE);\n * // => 5e-324\n *\n * _.toNumber(Infinity);\n * // => Infinity\n *\n * _.toNumber('3.2');\n * // => 3.2\n */\nfunction toNumber(value) {\n if (typeof value == 'number') {\n return value;\n }\n if (isSymbol(value)) {\n return NAN;\n }\n if (isObject(value)) {\n var other = typeof value.valueOf == 'function' ? value.valueOf() : value;\n value = isObject(other) ? (other + '') : other;\n }\n if (typeof value != 'string') {\n return value === 0 ? value : +value;\n }\n value = baseTrim(value);\n var isBinary = reIsBinary.test(value);\n return (isBinary || reIsOctal.test(value))\n ? freeParseInt(value.slice(2), isBinary ? 2 : 8)\n : (reIsBadHex.test(value) ? NAN : +value);\n}\n\nmodule.exports = toNumber;\n","var copyObject = require('./_copyObject'),\n keysIn = require('./keysIn');\n\n/**\n * Converts `value` to a plain object flattening inherited enumerable string\n * keyed properties of `value` to own properties of the plain object.\n *\n * @static\n * @memberOf _\n * @since 3.0.0\n * @category Lang\n * @param {*} value The value to convert.\n * @returns {Object} Returns the converted plain object.\n * @example\n *\n * function Foo() {\n * this.b = 2;\n * }\n *\n * Foo.prototype.c = 3;\n *\n * _.assign({ 'a': 1 }, new Foo);\n * // => { 'a': 1, 'b': 2 }\n *\n * _.assign({ 'a': 1 }, _.toPlainObject(new Foo));\n * // => { 'a': 1, 'b': 2, 'c': 3 }\n */\nfunction toPlainObject(value) {\n return copyObject(value, keysIn(value));\n}\n\nmodule.exports = toPlainObject;\n","var arrayEach = require('./_arrayEach'),\n baseCreate = require('./_baseCreate'),\n baseForOwn = require('./_baseForOwn'),\n baseIteratee = require('./_baseIteratee'),\n getPrototype = require('./_getPrototype'),\n isArray = require('./isArray'),\n isBuffer = require('./isBuffer'),\n isFunction = require('./isFunction'),\n isObject = require('./isObject'),\n isTypedArray = require('./isTypedArray');\n\n/**\n * An alternative to `_.reduce`; this method transforms `object` to a new\n * `accumulator` object which is the result of running each of its own\n * enumerable string keyed properties thru `iteratee`, with each invocation\n * potentially mutating the `accumulator` object. If `accumulator` is not\n * provided, a new object with the same `[[Prototype]]` will be used. The\n * iteratee is invoked with four arguments: (accumulator, value, key, object).\n * Iteratee functions may exit iteration early by explicitly returning `false`.\n *\n * @static\n * @memberOf _\n * @since 1.3.0\n * @category Object\n * @param {Object} object The object to iterate over.\n * @param {Function} [iteratee=_.identity] The function invoked per iteration.\n * @param {*} [accumulator] The custom accumulator value.\n * @returns {*} Returns the accumulated value.\n * @example\n *\n * _.transform([2, 3, 4], function(result, n) {\n * result.push(n *= n);\n * return n % 2 == 0;\n * }, []);\n * // => [4, 9]\n *\n * _.transform({ 'a': 1, 'b': 2, 'c': 1 }, function(result, value, key) {\n * (result[value] || (result[value] = [])).push(key);\n * }, {});\n * // => { '1': ['a', 'c'], '2': ['b'] }\n */\nfunction transform(object, iteratee, accumulator) {\n var isArr = isArray(object),\n isArrLike = isArr || isBuffer(object) || isTypedArray(object);\n\n iteratee = baseIteratee(iteratee, 4);\n if (accumulator == null) {\n var Ctor = object && object.constructor;\n if (isArrLike) {\n accumulator = isArr ? new Ctor : [];\n }\n else if (isObject(object)) {\n accumulator = isFunction(Ctor) ? baseCreate(getPrototype(object)) : {};\n }\n else {\n accumulator = {};\n }\n }\n (isArrLike ? arrayEach : baseForOwn)(object, function(value, index, object) {\n return iteratee(accumulator, value, index, object);\n });\n return accumulator;\n}\n\nmodule.exports = transform;\n","var baseFlatten = require('./_baseFlatten'),\n baseRest = require('./_baseRest'),\n baseUniq = require('./_baseUniq'),\n isArrayLikeObject = require('./isArrayLikeObject');\n\n/**\n * Creates an array of unique values, in order, from all given arrays using\n * [`SameValueZero`](http://ecma-international.org/ecma-262/7.0/#sec-samevaluezero)\n * for equality comparisons.\n *\n * @static\n * @memberOf _\n * @since 0.1.0\n * @category Array\n * @param {...Array} [arrays] The arrays to inspect.\n * @returns {Array} Returns the new array of combined values.\n * @example\n *\n * _.union([2], [1, 2]);\n * // => [2, 1]\n */\nvar union = baseRest(function(arrays) {\n return baseUniq(baseFlatten(arrays, 1, isArrayLikeObject, true));\n});\n\nmodule.exports = union;\n","var baseUniq = require('./_baseUniq');\n\n/**\n * Creates a duplicate-free version of an array, using\n * [`SameValueZero`](http://ecma-international.org/ecma-262/7.0/#sec-samevaluezero)\n * for equality comparisons, in which only the first occurrence of each element\n * is kept. The order of result values is determined by the order they occur\n * in the array.\n *\n * @static\n * @memberOf _\n * @since 0.1.0\n * @category Array\n * @param {Array} array The array to inspect.\n * @returns {Array} Returns the new duplicate free array.\n * @example\n *\n * _.uniq([2, 1, 2]);\n * // => [2, 1]\n */\nfunction uniq(array) {\n return (array && array.length) ? baseUniq(array) : [];\n}\n\nmodule.exports = uniq;\n","var baseUniq = require('./_baseUniq');\n\n/**\n * This method is like `_.uniq` except that it accepts `comparator` which\n * is invoked to compare elements of `array`. The order of result values is\n * determined by the order they occur in the array.The comparator is invoked\n * with two arguments: (arrVal, othVal).\n *\n * @static\n * @memberOf _\n * @since 4.0.0\n * @category Array\n * @param {Array} array The array to inspect.\n * @param {Function} [comparator] The comparator invoked per element.\n * @returns {Array} Returns the new duplicate free array.\n * @example\n *\n * var objects = [{ 'x': 1, 'y': 2 }, { 'x': 2, 'y': 1 }, { 'x': 1, 'y': 2 }];\n *\n * _.uniqWith(objects, _.isEqual);\n * // => [{ 'x': 1, 'y': 2 }, { 'x': 2, 'y': 1 }]\n */\nfunction uniqWith(array, comparator) {\n comparator = typeof comparator == 'function' ? comparator : undefined;\n return (array && array.length) ? baseUniq(array, undefined, comparator) : [];\n}\n\nmodule.exports = uniqWith;\n","var baseDifference = require('./_baseDifference'),\n baseRest = require('./_baseRest'),\n isArrayLikeObject = require('./isArrayLikeObject');\n\n/**\n * Creates an array excluding all given values using\n * [`SameValueZero`](http://ecma-international.org/ecma-262/7.0/#sec-samevaluezero)\n * for equality comparisons.\n *\n * **Note:** Unlike `_.pull`, this method returns a new array.\n *\n * @static\n * @memberOf _\n * @since 0.1.0\n * @category Array\n * @param {Array} array The array to inspect.\n * @param {...*} [values] The values to exclude.\n * @returns {Array} Returns the new array of filtered values.\n * @see _.difference, _.xor\n * @example\n *\n * _.without([2, 1, 2, 3], 1, 2);\n * // => [3]\n */\nvar without = baseRest(function(array, values) {\n return isArrayLikeObject(array)\n ? baseDifference(array, values)\n : [];\n});\n\nmodule.exports = without;\n","/**\n * @license React\n * react-is.production.min.js\n *\n * Copyright (c) Facebook, Inc. and its affiliates.\n *\n * This source code is licensed under the MIT license found in the\n * LICENSE file in the root directory of this source tree.\n */\n'use strict';var b=Symbol.for(\"react.element\"),c=Symbol.for(\"react.portal\"),d=Symbol.for(\"react.fragment\"),e=Symbol.for(\"react.strict_mode\"),f=Symbol.for(\"react.profiler\"),g=Symbol.for(\"react.provider\"),h=Symbol.for(\"react.context\"),k=Symbol.for(\"react.server_context\"),l=Symbol.for(\"react.forward_ref\"),m=Symbol.for(\"react.suspense\"),n=Symbol.for(\"react.suspense_list\"),p=Symbol.for(\"react.memo\"),q=Symbol.for(\"react.lazy\"),t=Symbol.for(\"react.offscreen\"),u;u=Symbol.for(\"react.module.reference\");\nfunction v(a){if(\"object\"===typeof a&&null!==a){var r=a.$$typeof;switch(r){case b:switch(a=a.type,a){case d:case f:case e:case m:case n:return a;default:switch(a=a&&a.$$typeof,a){case k:case h:case l:case q:case p:case g:return a;default:return r}}case c:return r}}}exports.ContextConsumer=h;exports.ContextProvider=g;exports.Element=b;exports.ForwardRef=l;exports.Fragment=d;exports.Lazy=q;exports.Memo=p;exports.Portal=c;exports.Profiler=f;exports.StrictMode=e;exports.Suspense=m;\nexports.SuspenseList=n;exports.isAsyncMode=function(){return!1};exports.isConcurrentMode=function(){return!1};exports.isContextConsumer=function(a){return v(a)===h};exports.isContextProvider=function(a){return v(a)===g};exports.isElement=function(a){return\"object\"===typeof a&&null!==a&&a.$$typeof===b};exports.isForwardRef=function(a){return v(a)===l};exports.isFragment=function(a){return v(a)===d};exports.isLazy=function(a){return v(a)===q};exports.isMemo=function(a){return v(a)===p};\nexports.isPortal=function(a){return v(a)===c};exports.isProfiler=function(a){return v(a)===f};exports.isStrictMode=function(a){return v(a)===e};exports.isSuspense=function(a){return v(a)===m};exports.isSuspenseList=function(a){return v(a)===n};\nexports.isValidElementType=function(a){return\"string\"===typeof a||\"function\"===typeof a||a===d||a===f||a===e||a===m||a===n||a===t||\"object\"===typeof a&&null!==a&&(a.$$typeof===q||a.$$typeof===p||a.$$typeof===g||a.$$typeof===h||a.$$typeof===l||a.$$typeof===u||void 0!==a.getModuleId)?!0:!1};exports.typeOf=v;\n","'use strict';\n\nif (process.env.NODE_ENV === 'production') {\n module.exports = require('./cjs/react-is.production.min.js');\n} else {\n module.exports = require('./cjs/react-is.development.js');\n}\n","'use strict';\n\n/**\n* FUNCTION: isArray( value )\n*\tValidates if a value is an array.\n*\n* @param {*} value - value to be validated\n* @returns {Boolean} boolean indicating whether value is an array\n*/\nfunction isArray( value ) {\n\treturn Object.prototype.toString.call( value ) === '[object Array]';\n} // end FUNCTION isArray()\n\n// EXPORTS //\n\nmodule.exports = Array.isArray || isArray;\n","/**\n*\n*\tVALIDATE: function\n*\n*\n*\tDESCRIPTION:\n*\t\t- Validates if a value is a function.\n*\n*\n*\tNOTES:\n*\t\t[1]\n*\n*\n*\tTODO:\n*\t\t[1]\n*\n*\n*\tLICENSE:\n*\t\tMIT\n*\n*\tCopyright (c) 2014. Athan Reines.\n*\n*\n*\tAUTHOR:\n*\t\tAthan Reines. [email protected]. 2014.\n*\n*/\n\n'use strict';\n\n/**\n* FUNCTION: isFunction( value )\n*\tValidates if a value is a function.\n*\n* @param {*} value - value to be validated\n* @returns {Boolean} boolean indicating whether value is a function\n*/\nfunction isFunction( value ) {\n\treturn ( typeof value === 'function' );\n} // end FUNCTION isFunction()\n\n\n// EXPORTS //\n\nmodule.exports = isFunction;\n","/**\n*\n*\tVALIDATE: integer-array\n*\n*\n*\tDESCRIPTION:\n*\t\t- Validates if a value is an integer array.\n*\n*\n*\tNOTES:\n*\t\t[1]\n*\n*\n*\tTODO:\n*\t\t[1]\n*\n*\n*\tLICENSE:\n*\t\tMIT\n*\n*\tCopyright (c) 2015. Athan Reines.\n*\n*\n*\tAUTHOR:\n*\t\tAthan Reines. [email protected]. 2015.\n*\n*/\n\n'use strict';\n\n// MODULES //\n\nvar isArray = require( 'validate.io-array' ),\n\tisInteger = require( 'validate.io-integer' );\n\n\n// IS INTEGER ARRAY //\n\n/**\n* FUNCTION: isIntegerArray( value )\n*\tValidates if a value is an integer array.\n*\n* @param {*} value - value to be validated\n* @returns {Boolean} boolean indicating if a value is an integer array\n*/\nfunction isIntegerArray( value ) {\n\tvar len;\n\tif ( !isArray( value ) ) {\n\t\treturn false;\n\t}\n\tlen = value.length;\n\tif ( !len ) {\n\t\treturn false;\n\t}\n\tfor ( var i = 0; i < len; i++ ) {\n\t\tif ( !isInteger( value[i] ) ) {\n\t\t\treturn false;\n\t\t}\n\t}\n\treturn true;\n} // end FUNCTION isIntegerArray()\n\n\n// EXPORTS //\n\nmodule.exports = isIntegerArray;\n","/**\n*\n*\tVALIDATE: integer\n*\n*\n*\tDESCRIPTION:\n*\t\t- Validates if a value is an integer.\n*\n*\n*\tNOTES:\n*\t\t[1]\n*\n*\n*\tTODO:\n*\t\t[1]\n*\n*\n*\tLICENSE:\n*\t\tMIT\n*\n*\tCopyright (c) 2014. Athan Reines.\n*\n*\n*\tAUTHOR:\n*\t\tAthan Reines. [email protected]. 2014.\n*\n*/\n\n'use strict';\n\n// MODULES //\n\nvar isNumber = require( 'validate.io-number' );\n\n\n// ISINTEGER //\n\n/**\n* FUNCTION: isInteger( value )\n*\tValidates if a value is an integer.\n*\n* @param {Number} value - value to be validated\n* @returns {Boolean} boolean indicating whether value is an integer\n*/\nfunction isInteger( value ) {\n\treturn isNumber( value ) && value%1 === 0;\n} // end FUNCTION isInteger()\n\n\n// EXPORTS //\n\nmodule.exports = isInteger;\n","/**\n*\n*\tVALIDATE: number\n*\n*\n*\tDESCRIPTION:\n*\t\t- Validates if a value is a number.\n*\n*\n*\tNOTES:\n*\t\t[1]\n*\n*\n*\tTODO:\n*\t\t[1]\n*\n*\n*\tLICENSE:\n*\t\tMIT\n*\n*\tCopyright (c) 2014. Athan Reines.\n*\n*\n*\tAUTHOR:\n*\t\tAthan Reines. [email protected]. 2014.\n*\n*/\n\n'use strict';\n\n/**\n* FUNCTION: isNumber( value )\n*\tValidates if a value is a number.\n*\n* @param {*} value - value to be validated\n* @returns {Boolean} boolean indicating whether value is a number\n*/\nfunction isNumber( value ) {\n\treturn ( typeof value === 'number' || Object.prototype.toString.call( value ) === '[object Number]' ) && value.valueOf() === value.valueOf();\n} // end FUNCTION isNumber()\n\n\n// EXPORTS //\n\nmodule.exports = isNumber;\n"],"names":[],"sourceRoot":""}