645 lines
24 KiB
Plaintext
645 lines
24 KiB
Plaintext
"use strict";
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Object.defineProperty(exports, "__esModule", { value: true });
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exports.allProcessors = exports.lazyProcessor = exports.optionalProcessor = exports.promiseProcessor = exports.readonlyProcessor = exports.pipeProcessor = exports.catchProcessor = exports.prefaultProcessor = exports.defaultProcessor = exports.nonoptionalProcessor = exports.nullableProcessor = exports.recordProcessor = exports.tupleProcessor = exports.intersectionProcessor = exports.unionProcessor = exports.objectProcessor = exports.arrayProcessor = exports.setProcessor = exports.mapProcessor = exports.transformProcessor = exports.functionProcessor = exports.customProcessor = exports.successProcessor = exports.fileProcessor = exports.templateLiteralProcessor = exports.nanProcessor = exports.literalProcessor = exports.enumProcessor = exports.dateProcessor = exports.unknownProcessor = exports.anyProcessor = exports.neverProcessor = exports.voidProcessor = exports.undefinedProcessor = exports.nullProcessor = exports.symbolProcessor = exports.bigintProcessor = exports.booleanProcessor = exports.numberProcessor = exports.stringProcessor = void 0;
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exports.toJSONSchema = toJSONSchema;
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const to_json_schema_js_1 = require("./to-json-schema.cjs");
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const util_js_1 = require("./util.cjs");
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const formatMap = {
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guid: "uuid",
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url: "uri",
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datetime: "date-time",
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json_string: "json-string",
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regex: "", // do not set
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};
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// ==================== SIMPLE TYPE PROCESSORS ====================
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const stringProcessor = (schema, ctx, _json, _params) => {
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const json = _json;
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json.type = "string";
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const { minimum, maximum, format, patterns, contentEncoding } = schema._zod
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.bag;
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if (typeof minimum === "number")
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json.minLength = minimum;
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if (typeof maximum === "number")
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json.maxLength = maximum;
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// custom pattern overrides format
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if (format) {
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json.format = formatMap[format] ?? format;
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if (json.format === "")
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delete json.format; // empty format is not valid
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// JSON Schema format: "time" requires a full time with offset or Z
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// z.iso.time() does not include timezone information, so format: "time" should never be used
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if (format === "time") {
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delete json.format;
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}
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}
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if (contentEncoding)
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json.contentEncoding = contentEncoding;
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if (patterns && patterns.size > 0) {
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const regexes = [...patterns];
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if (regexes.length === 1)
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json.pattern = regexes[0].source;
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else if (regexes.length > 1) {
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json.allOf = [
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...regexes.map((regex) => ({
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...(ctx.target === "draft-07" || ctx.target === "draft-04" || ctx.target === "openapi-3.0"
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? { type: "string" }
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: {}),
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pattern: regex.source,
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})),
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];
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}
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}
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};
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exports.stringProcessor = stringProcessor;
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const numberProcessor = (schema, ctx, _json, _params) => {
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const json = _json;
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const { minimum, maximum, format, multipleOf, exclusiveMaximum, exclusiveMinimum } = schema._zod.bag;
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if (typeof format === "string" && format.includes("int"))
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json.type = "integer";
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else
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json.type = "number";
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// when both minimum and exclusiveMinimum exist, pick the more restrictive one
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const exMin = typeof exclusiveMinimum === "number" && exclusiveMinimum >= (minimum ?? Number.NEGATIVE_INFINITY);
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const exMax = typeof exclusiveMaximum === "number" && exclusiveMaximum <= (maximum ?? Number.POSITIVE_INFINITY);
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const legacy = ctx.target === "draft-04" || ctx.target === "openapi-3.0";
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if (exMin) {
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if (legacy) {
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json.minimum = exclusiveMinimum;
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json.exclusiveMinimum = true;
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}
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else {
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json.exclusiveMinimum = exclusiveMinimum;
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}
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}
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else if (typeof minimum === "number") {
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json.minimum = minimum;
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}
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if (exMax) {
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if (legacy) {
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json.maximum = exclusiveMaximum;
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json.exclusiveMaximum = true;
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}
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else {
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json.exclusiveMaximum = exclusiveMaximum;
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}
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}
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else if (typeof maximum === "number") {
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json.maximum = maximum;
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}
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if (typeof multipleOf === "number")
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json.multipleOf = multipleOf;
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};
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exports.numberProcessor = numberProcessor;
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const booleanProcessor = (_schema, _ctx, json, _params) => {
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json.type = "boolean";
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};
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exports.booleanProcessor = booleanProcessor;
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const bigintProcessor = (_schema, ctx, _json, _params) => {
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if (ctx.unrepresentable === "throw") {
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throw new Error("BigInt cannot be represented in JSON Schema");
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}
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};
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exports.bigintProcessor = bigintProcessor;
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const symbolProcessor = (_schema, ctx, _json, _params) => {
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if (ctx.unrepresentable === "throw") {
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throw new Error("Symbols cannot be represented in JSON Schema");
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}
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};
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exports.symbolProcessor = symbolProcessor;
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const nullProcessor = (_schema, ctx, json, _params) => {
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if (ctx.target === "openapi-3.0") {
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json.type = "string";
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json.nullable = true;
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json.enum = [null];
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}
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else {
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json.type = "null";
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}
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};
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exports.nullProcessor = nullProcessor;
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const undefinedProcessor = (_schema, ctx, _json, _params) => {
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if (ctx.unrepresentable === "throw") {
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throw new Error("Undefined cannot be represented in JSON Schema");
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}
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};
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exports.undefinedProcessor = undefinedProcessor;
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const voidProcessor = (_schema, ctx, _json, _params) => {
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if (ctx.unrepresentable === "throw") {
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throw new Error("Void cannot be represented in JSON Schema");
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}
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};
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exports.voidProcessor = voidProcessor;
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const neverProcessor = (_schema, _ctx, json, _params) => {
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json.not = {};
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};
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exports.neverProcessor = neverProcessor;
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const anyProcessor = (_schema, _ctx, _json, _params) => {
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// empty schema accepts anything
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};
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exports.anyProcessor = anyProcessor;
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const unknownProcessor = (_schema, _ctx, _json, _params) => {
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// empty schema accepts anything
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};
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exports.unknownProcessor = unknownProcessor;
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const dateProcessor = (_schema, ctx, _json, _params) => {
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if (ctx.unrepresentable === "throw") {
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throw new Error("Date cannot be represented in JSON Schema");
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}
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};
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exports.dateProcessor = dateProcessor;
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const enumProcessor = (schema, _ctx, json, _params) => {
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const def = schema._zod.def;
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const values = (0, util_js_1.getEnumValues)(def.entries);
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// Number enums can have both string and number values
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if (values.every((v) => typeof v === "number"))
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json.type = "number";
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if (values.every((v) => typeof v === "string"))
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json.type = "string";
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json.enum = values;
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};
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exports.enumProcessor = enumProcessor;
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const literalProcessor = (schema, ctx, json, _params) => {
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const def = schema._zod.def;
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const vals = [];
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for (const val of def.values) {
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if (val === undefined) {
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if (ctx.unrepresentable === "throw") {
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throw new Error("Literal `undefined` cannot be represented in JSON Schema");
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}
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else {
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// do not add to vals
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}
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}
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else if (typeof val === "bigint") {
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if (ctx.unrepresentable === "throw") {
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throw new Error("BigInt literals cannot be represented in JSON Schema");
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}
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else {
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vals.push(Number(val));
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}
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}
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else {
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vals.push(val);
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}
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}
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if (vals.length === 0) {
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// do nothing (an undefined literal was stripped)
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}
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else if (vals.length === 1) {
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const val = vals[0];
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json.type = val === null ? "null" : typeof val;
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if (ctx.target === "draft-04" || ctx.target === "openapi-3.0") {
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json.enum = [val];
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}
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else {
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json.const = val;
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}
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}
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else {
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if (vals.every((v) => typeof v === "number"))
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json.type = "number";
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if (vals.every((v) => typeof v === "string"))
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json.type = "string";
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if (vals.every((v) => typeof v === "boolean"))
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json.type = "boolean";
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if (vals.every((v) => v === null))
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json.type = "null";
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json.enum = vals;
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}
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};
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exports.literalProcessor = literalProcessor;
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const nanProcessor = (_schema, ctx, _json, _params) => {
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if (ctx.unrepresentable === "throw") {
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throw new Error("NaN cannot be represented in JSON Schema");
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}
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};
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exports.nanProcessor = nanProcessor;
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const templateLiteralProcessor = (schema, _ctx, json, _params) => {
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const _json = json;
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const pattern = schema._zod.pattern;
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if (!pattern)
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throw new Error("Pattern not found in template literal");
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_json.type = "string";
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_json.pattern = pattern.source;
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};
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exports.templateLiteralProcessor = templateLiteralProcessor;
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const fileProcessor = (schema, _ctx, json, _params) => {
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const _json = json;
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const file = {
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type: "string",
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format: "binary",
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contentEncoding: "binary",
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};
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const { minimum, maximum, mime } = schema._zod.bag;
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if (minimum !== undefined)
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file.minLength = minimum;
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if (maximum !== undefined)
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file.maxLength = maximum;
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if (mime) {
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if (mime.length === 1) {
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file.contentMediaType = mime[0];
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Object.assign(_json, file);
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}
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else {
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Object.assign(_json, file); // shared props at root
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_json.anyOf = mime.map((m) => ({ contentMediaType: m })); // only contentMediaType differs
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}
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}
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else {
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Object.assign(_json, file);
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}
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};
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exports.fileProcessor = fileProcessor;
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const successProcessor = (_schema, _ctx, json, _params) => {
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json.type = "boolean";
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};
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exports.successProcessor = successProcessor;
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const customProcessor = (_schema, ctx, _json, _params) => {
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if (ctx.unrepresentable === "throw") {
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throw new Error("Custom types cannot be represented in JSON Schema");
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}
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};
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exports.customProcessor = customProcessor;
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const functionProcessor = (_schema, ctx, _json, _params) => {
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if (ctx.unrepresentable === "throw") {
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throw new Error("Function types cannot be represented in JSON Schema");
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}
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};
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exports.functionProcessor = functionProcessor;
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const transformProcessor = (_schema, ctx, _json, _params) => {
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if (ctx.unrepresentable === "throw") {
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throw new Error("Transforms cannot be represented in JSON Schema");
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}
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};
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exports.transformProcessor = transformProcessor;
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const mapProcessor = (_schema, ctx, _json, _params) => {
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if (ctx.unrepresentable === "throw") {
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throw new Error("Map cannot be represented in JSON Schema");
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}
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};
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exports.mapProcessor = mapProcessor;
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const setProcessor = (_schema, ctx, _json, _params) => {
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if (ctx.unrepresentable === "throw") {
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throw new Error("Set cannot be represented in JSON Schema");
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}
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};
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exports.setProcessor = setProcessor;
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// ==================== COMPOSITE TYPE PROCESSORS ====================
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const arrayProcessor = (schema, ctx, _json, params) => {
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const json = _json;
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const def = schema._zod.def;
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const { minimum, maximum } = schema._zod.bag;
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if (typeof minimum === "number")
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json.minItems = minimum;
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if (typeof maximum === "number")
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json.maxItems = maximum;
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json.type = "array";
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json.items = (0, to_json_schema_js_1.process)(def.element, ctx, {
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...params,
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path: [...params.path, "items"],
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});
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};
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exports.arrayProcessor = arrayProcessor;
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const objectProcessor = (schema, ctx, _json, params) => {
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const json = _json;
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const def = schema._zod.def;
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json.type = "object";
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json.properties = {};
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const shape = def.shape;
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for (const key in shape) {
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json.properties[key] = (0, to_json_schema_js_1.process)(shape[key], ctx, {
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...params,
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path: [...params.path, "properties", key],
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});
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}
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// required keys
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const allKeys = new Set(Object.keys(shape));
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const requiredKeys = new Set([...allKeys].filter((key) => {
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const v = def.shape[key]._zod;
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if (ctx.io === "input") {
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return v.optin === undefined;
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}
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else {
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return v.optout === undefined;
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}
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}));
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if (requiredKeys.size > 0) {
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json.required = Array.from(requiredKeys);
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}
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// catchall
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if (def.catchall?._zod.def.type === "never") {
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// strict
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json.additionalProperties = false;
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}
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else if (!def.catchall) {
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// regular
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if (ctx.io === "output")
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json.additionalProperties = false;
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}
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else if (def.catchall) {
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json.additionalProperties = (0, to_json_schema_js_1.process)(def.catchall, ctx, {
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...params,
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path: [...params.path, "additionalProperties"],
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});
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}
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};
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exports.objectProcessor = objectProcessor;
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const unionProcessor = (schema, ctx, json, params) => {
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const def = schema._zod.def;
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// Exclusive unions (inclusive === false) use oneOf (exactly one match) instead of anyOf (one or more matches)
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// This includes both z.xor() and discriminated unions
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const isExclusive = def.inclusive === false;
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const options = def.options.map((x, i) => (0, to_json_schema_js_1.process)(x, ctx, {
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...params,
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path: [...params.path, isExclusive ? "oneOf" : "anyOf", i],
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}));
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if (isExclusive) {
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json.oneOf = options;
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}
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else {
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json.anyOf = options;
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}
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};
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exports.unionProcessor = unionProcessor;
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const intersectionProcessor = (schema, ctx, json, params) => {
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const def = schema._zod.def;
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const a = (0, to_json_schema_js_1.process)(def.left, ctx, {
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...params,
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path: [...params.path, "allOf", 0],
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});
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const b = (0, to_json_schema_js_1.process)(def.right, ctx, {
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...params,
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path: [...params.path, "allOf", 1],
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});
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const isSimpleIntersection = (val) => "allOf" in val && Object.keys(val).length === 1;
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const allOf = [
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...(isSimpleIntersection(a) ? a.allOf : [a]),
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...(isSimpleIntersection(b) ? b.allOf : [b]),
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];
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json.allOf = allOf;
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};
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exports.intersectionProcessor = intersectionProcessor;
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const tupleProcessor = (schema, ctx, _json, params) => {
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const json = _json;
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const def = schema._zod.def;
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json.type = "array";
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const prefixPath = ctx.target === "draft-2020-12" ? "prefixItems" : "items";
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const restPath = ctx.target === "draft-2020-12" ? "items" : ctx.target === "openapi-3.0" ? "items" : "additionalItems";
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const prefixItems = def.items.map((x, i) => (0, to_json_schema_js_1.process)(x, ctx, {
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...params,
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path: [...params.path, prefixPath, i],
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}));
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const rest = def.rest
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? (0, to_json_schema_js_1.process)(def.rest, ctx, {
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...params,
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path: [...params.path, restPath, ...(ctx.target === "openapi-3.0" ? [def.items.length] : [])],
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})
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: null;
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if (ctx.target === "draft-2020-12") {
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json.prefixItems = prefixItems;
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if (rest) {
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json.items = rest;
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}
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}
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else if (ctx.target === "openapi-3.0") {
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json.items = {
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anyOf: prefixItems,
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};
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if (rest) {
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json.items.anyOf.push(rest);
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}
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json.minItems = prefixItems.length;
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if (!rest) {
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json.maxItems = prefixItems.length;
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}
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}
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else {
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json.items = prefixItems;
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if (rest) {
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json.additionalItems = rest;
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}
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}
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// length
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const { minimum, maximum } = schema._zod.bag;
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if (typeof minimum === "number")
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json.minItems = minimum;
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if (typeof maximum === "number")
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json.maxItems = maximum;
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};
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exports.tupleProcessor = tupleProcessor;
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const recordProcessor = (schema, ctx, _json, params) => {
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const json = _json;
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const def = schema._zod.def;
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json.type = "object";
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// For looseRecord with regex patterns, use patternProperties
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// This correctly represents "only validate keys matching the pattern" semantics
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// and composes well with allOf (intersections)
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const keyType = def.keyType;
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const keyBag = keyType._zod.bag;
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const patterns = keyBag?.patterns;
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if (def.mode === "loose" && patterns && patterns.size > 0) {
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// Use patternProperties for looseRecord with regex patterns
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const valueSchema = (0, to_json_schema_js_1.process)(def.valueType, ctx, {
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...params,
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path: [...params.path, "patternProperties", "*"],
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});
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json.patternProperties = {};
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for (const pattern of patterns) {
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json.patternProperties[pattern.source] = valueSchema;
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}
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}
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else {
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// Default behavior: use propertyNames + additionalProperties
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if (ctx.target === "draft-07" || ctx.target === "draft-2020-12") {
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json.propertyNames = (0, to_json_schema_js_1.process)(def.keyType, ctx, {
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...params,
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path: [...params.path, "propertyNames"],
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});
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}
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json.additionalProperties = (0, to_json_schema_js_1.process)(def.valueType, ctx, {
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...params,
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path: [...params.path, "additionalProperties"],
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});
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}
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// Add required for keys with discrete values (enum, literal, etc.)
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const keyValues = keyType._zod.values;
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if (keyValues) {
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const validKeyValues = [...keyValues].filter((v) => typeof v === "string" || typeof v === "number");
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if (validKeyValues.length > 0) {
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json.required = validKeyValues;
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}
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}
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};
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exports.recordProcessor = recordProcessor;
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const nullableProcessor = (schema, ctx, json, params) => {
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const def = schema._zod.def;
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const inner = (0, to_json_schema_js_1.process)(def.innerType, ctx, params);
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const seen = ctx.seen.get(schema);
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if (ctx.target === "openapi-3.0") {
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seen.ref = def.innerType;
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json.nullable = true;
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}
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else {
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json.anyOf = [inner, { type: "null" }];
|
|
}
|
|
};
|
|
exports.nullableProcessor = nullableProcessor;
|
|
const nonoptionalProcessor = (schema, ctx, _json, params) => {
|
|
const def = schema._zod.def;
|
|
(0, to_json_schema_js_1.process)(def.innerType, ctx, params);
|
|
const seen = ctx.seen.get(schema);
|
|
seen.ref = def.innerType;
|
|
};
|
|
exports.nonoptionalProcessor = nonoptionalProcessor;
|
|
const defaultProcessor = (schema, ctx, json, params) => {
|
|
const def = schema._zod.def;
|
|
(0, to_json_schema_js_1.process)(def.innerType, ctx, params);
|
|
const seen = ctx.seen.get(schema);
|
|
seen.ref = def.innerType;
|
|
json.default = JSON.parse(JSON.stringify(def.defaultValue));
|
|
};
|
|
exports.defaultProcessor = defaultProcessor;
|
|
const prefaultProcessor = (schema, ctx, json, params) => {
|
|
const def = schema._zod.def;
|
|
(0, to_json_schema_js_1.process)(def.innerType, ctx, params);
|
|
const seen = ctx.seen.get(schema);
|
|
seen.ref = def.innerType;
|
|
if (ctx.io === "input")
|
|
json._prefault = JSON.parse(JSON.stringify(def.defaultValue));
|
|
};
|
|
exports.prefaultProcessor = prefaultProcessor;
|
|
const catchProcessor = (schema, ctx, json, params) => {
|
|
const def = schema._zod.def;
|
|
(0, to_json_schema_js_1.process)(def.innerType, ctx, params);
|
|
const seen = ctx.seen.get(schema);
|
|
seen.ref = def.innerType;
|
|
let catchValue;
|
|
try {
|
|
catchValue = def.catchValue(undefined);
|
|
}
|
|
catch {
|
|
throw new Error("Dynamic catch values are not supported in JSON Schema");
|
|
}
|
|
json.default = catchValue;
|
|
};
|
|
exports.catchProcessor = catchProcessor;
|
|
const pipeProcessor = (schema, ctx, _json, params) => {
|
|
const def = schema._zod.def;
|
|
const inIsTransform = def.in._zod.traits.has("$ZodTransform");
|
|
const innerType = ctx.io === "input" ? (inIsTransform ? def.out : def.in) : def.out;
|
|
(0, to_json_schema_js_1.process)(innerType, ctx, params);
|
|
const seen = ctx.seen.get(schema);
|
|
seen.ref = innerType;
|
|
};
|
|
exports.pipeProcessor = pipeProcessor;
|
|
const readonlyProcessor = (schema, ctx, json, params) => {
|
|
const def = schema._zod.def;
|
|
(0, to_json_schema_js_1.process)(def.innerType, ctx, params);
|
|
const seen = ctx.seen.get(schema);
|
|
seen.ref = def.innerType;
|
|
json.readOnly = true;
|
|
};
|
|
exports.readonlyProcessor = readonlyProcessor;
|
|
const promiseProcessor = (schema, ctx, _json, params) => {
|
|
const def = schema._zod.def;
|
|
(0, to_json_schema_js_1.process)(def.innerType, ctx, params);
|
|
const seen = ctx.seen.get(schema);
|
|
seen.ref = def.innerType;
|
|
};
|
|
exports.promiseProcessor = promiseProcessor;
|
|
const optionalProcessor = (schema, ctx, _json, params) => {
|
|
const def = schema._zod.def;
|
|
(0, to_json_schema_js_1.process)(def.innerType, ctx, params);
|
|
const seen = ctx.seen.get(schema);
|
|
seen.ref = def.innerType;
|
|
};
|
|
exports.optionalProcessor = optionalProcessor;
|
|
const lazyProcessor = (schema, ctx, _json, params) => {
|
|
const innerType = schema._zod.innerType;
|
|
(0, to_json_schema_js_1.process)(innerType, ctx, params);
|
|
const seen = ctx.seen.get(schema);
|
|
seen.ref = innerType;
|
|
};
|
|
exports.lazyProcessor = lazyProcessor;
|
|
// ==================== ALL PROCESSORS ====================
|
|
exports.allProcessors = {
|
|
string: exports.stringProcessor,
|
|
number: exports.numberProcessor,
|
|
boolean: exports.booleanProcessor,
|
|
bigint: exports.bigintProcessor,
|
|
symbol: exports.symbolProcessor,
|
|
null: exports.nullProcessor,
|
|
undefined: exports.undefinedProcessor,
|
|
void: exports.voidProcessor,
|
|
never: exports.neverProcessor,
|
|
any: exports.anyProcessor,
|
|
unknown: exports.unknownProcessor,
|
|
date: exports.dateProcessor,
|
|
enum: exports.enumProcessor,
|
|
literal: exports.literalProcessor,
|
|
nan: exports.nanProcessor,
|
|
template_literal: exports.templateLiteralProcessor,
|
|
file: exports.fileProcessor,
|
|
success: exports.successProcessor,
|
|
custom: exports.customProcessor,
|
|
function: exports.functionProcessor,
|
|
transform: exports.transformProcessor,
|
|
map: exports.mapProcessor,
|
|
set: exports.setProcessor,
|
|
array: exports.arrayProcessor,
|
|
object: exports.objectProcessor,
|
|
union: exports.unionProcessor,
|
|
intersection: exports.intersectionProcessor,
|
|
tuple: exports.tupleProcessor,
|
|
record: exports.recordProcessor,
|
|
nullable: exports.nullableProcessor,
|
|
nonoptional: exports.nonoptionalProcessor,
|
|
default: exports.defaultProcessor,
|
|
prefault: exports.prefaultProcessor,
|
|
catch: exports.catchProcessor,
|
|
pipe: exports.pipeProcessor,
|
|
readonly: exports.readonlyProcessor,
|
|
promise: exports.promiseProcessor,
|
|
optional: exports.optionalProcessor,
|
|
lazy: exports.lazyProcessor,
|
|
};
|
|
function toJSONSchema(input, params) {
|
|
if ("_idmap" in input) {
|
|
// Registry case
|
|
const registry = input;
|
|
const ctx = (0, to_json_schema_js_1.initializeContext)({ ...params, processors: exports.allProcessors });
|
|
const defs = {};
|
|
// First pass: process all schemas to build the seen map
|
|
for (const entry of registry._idmap.entries()) {
|
|
const [_, schema] = entry;
|
|
(0, to_json_schema_js_1.process)(schema, ctx);
|
|
}
|
|
const schemas = {};
|
|
const external = {
|
|
registry,
|
|
uri: params?.uri,
|
|
defs,
|
|
};
|
|
// Update the context with external configuration
|
|
ctx.external = external;
|
|
// Second pass: emit each schema
|
|
for (const entry of registry._idmap.entries()) {
|
|
const [key, schema] = entry;
|
|
(0, to_json_schema_js_1.extractDefs)(ctx, schema);
|
|
schemas[key] = (0, to_json_schema_js_1.finalize)(ctx, schema);
|
|
}
|
|
if (Object.keys(defs).length > 0) {
|
|
const defsSegment = ctx.target === "draft-2020-12" ? "$defs" : "definitions";
|
|
schemas.__shared = {
|
|
[defsSegment]: defs,
|
|
};
|
|
}
|
|
return { schemas };
|
|
}
|
|
// Single schema case
|
|
const ctx = (0, to_json_schema_js_1.initializeContext)({ ...params, processors: exports.allProcessors });
|
|
(0, to_json_schema_js_1.process)(input, ctx);
|
|
(0, to_json_schema_js_1.extractDefs)(ctx, input);
|
|
return (0, to_json_schema_js_1.finalize)(ctx, input);
|
|
}
|