"use strict"; Object.defineProperty(exports, "__esModule", { value: true }); exports.ReflectionJsonReader = void 0; const json_typings_1 = require("./json-typings"); const base64_1 = require("./base64"); const reflection_info_1 = require("./reflection-info"); const pb_long_1 = require("./pb-long"); const assert_1 = require("./assert"); const reflection_long_convert_1 = require("./reflection-long-convert"); /** * Reads proto3 messages in canonical JSON format using reflection information. * * https://developers.google.com/protocol-buffers/docs/proto3#json */ class ReflectionJsonReader { constructor(info) { this.info = info; } prepare() { var _a; if (this.fMap === undefined) { this.fMap = {}; const fieldsInput = (_a = this.info.fields) !== null && _a !== void 0 ? _a : []; for (const field of fieldsInput) { this.fMap[field.name] = field; this.fMap[field.jsonName] = field; this.fMap[field.localName] = field; } } } // Cannot parse JSON for #. assert(condition, fieldName, jsonValue) { if (!condition) { let what = json_typings_1.typeofJsonValue(jsonValue); if (what == "number" || what == "boolean") what = jsonValue.toString(); throw new Error(`Cannot parse JSON ${what} for ${this.info.typeName}#${fieldName}`); } } /** * Reads a message from canonical JSON format into the target message. * * Repeated fields are appended. Map entries are added, overwriting * existing keys. * * If a message field is already present, it will be merged with the * new data. */ read(input, message, options) { this.prepare(); const oneofsHandled = []; for (const [jsonKey, jsonValue] of Object.entries(input)) { const field = this.fMap[jsonKey]; if (!field) { if (!options.ignoreUnknownFields) throw new Error(`Found unknown field while reading ${this.info.typeName} from JSON format. JSON key: ${jsonKey}`); continue; } const localName = field.localName; // handle oneof ADT let target; // this will be the target for the field value, whether it is member of a oneof or not if (field.oneof) { if (jsonValue === null && (field.kind !== 'enum' || field.T()[0] !== 'google.protobuf.NullValue')) { continue; } // since json objects are unordered by specification, it is not possible to take the last of multiple oneofs if (oneofsHandled.includes(field.oneof)) throw new Error(`Multiple members of the oneof group "${field.oneof}" of ${this.info.typeName} are present in JSON.`); oneofsHandled.push(field.oneof); target = message[field.oneof] = { oneofKind: localName }; } else { target = message; } // we have handled oneof above. we just have read the value into `target`. if (field.kind == 'map') { if (jsonValue === null) { continue; } // check input this.assert(json_typings_1.isJsonObject(jsonValue), field.name, jsonValue); // our target to put map entries into const fieldObj = target[localName]; // read entries for (const [jsonObjKey, jsonObjValue] of Object.entries(jsonValue)) { this.assert(jsonObjValue !== null, field.name + " map value", null); // read value let val; switch (field.V.kind) { case "message": val = field.V.T().internalJsonRead(jsonObjValue, options); break; case "enum": val = this.enum(field.V.T(), jsonObjValue, field.name, options.ignoreUnknownFields); if (val === false) continue; break; case "scalar": val = this.scalar(jsonObjValue, field.V.T, field.V.L, field.name); break; } this.assert(val !== undefined, field.name + " map value", jsonObjValue); // read key let key = jsonObjKey; if (field.K == reflection_info_1.ScalarType.BOOL) key = key == "true" ? true : key == "false" ? false : key; key = this.scalar(key, field.K, reflection_info_1.LongType.STRING, field.name).toString(); fieldObj[key] = val; } } else if (field.repeat) { if (jsonValue === null) continue; // check input this.assert(Array.isArray(jsonValue), field.name, jsonValue); // our target to put array entries into const fieldArr = target[localName]; // read array entries for (const jsonItem of jsonValue) { this.assert(jsonItem !== null, field.name, null); let val; switch (field.kind) { case "message": val = field.T().internalJsonRead(jsonItem, options); break; case "enum": val = this.enum(field.T(), jsonItem, field.name, options.ignoreUnknownFields); if (val === false) continue; break; case "scalar": val = this.scalar(jsonItem, field.T, field.L, field.name); break; } this.assert(val !== undefined, field.name, jsonValue); fieldArr.push(val); } } else { switch (field.kind) { case "message": if (jsonValue === null && field.T().typeName != 'google.protobuf.Value') { this.assert(field.oneof === undefined, field.name + " (oneof member)", null); continue; } target[localName] = field.T().internalJsonRead(jsonValue, options, target[localName]); break; case "enum": let val = this.enum(field.T(), jsonValue, field.name, options.ignoreUnknownFields); if (val === false) continue; target[localName] = val; break; case "scalar": target[localName] = this.scalar(jsonValue, field.T, field.L, field.name); break; } } } } /** * Returns `false` for unrecognized string representations. * * google.protobuf.NullValue accepts only JSON `null` (or the old `"NULL_VALUE"`). */ enum(type, json, fieldName, ignoreUnknownFields) { if (type[0] == 'google.protobuf.NullValue') assert_1.assert(json === null || json === "NULL_VALUE", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} only accepts null.`); if (json === null) // we require 0 to be default value for all enums return 0; switch (typeof json) { case "number": assert_1.assert(Number.isInteger(json), `Unable to parse field ${this.info.typeName}#${fieldName}, enum can only be integral number, got ${json}.`); return json; case "string": let localEnumName = json; if (type[2] && json.substring(0, type[2].length) === type[2]) // lookup without the shared prefix localEnumName = json.substring(type[2].length); let enumNumber = type[1][localEnumName]; if (typeof enumNumber === 'undefined' && ignoreUnknownFields) { return false; } assert_1.assert(typeof enumNumber == "number", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} has no value for "${json}".`); return enumNumber; } assert_1.assert(false, `Unable to parse field ${this.info.typeName}#${fieldName}, cannot parse enum value from ${typeof json}".`); } scalar(json, type, longType, fieldName) { let e; try { switch (type) { // float, double: JSON value will be a number or one of the special string values "NaN", "Infinity", and "-Infinity". // Either numbers or strings are accepted. Exponent notation is also accepted. case reflection_info_1.ScalarType.DOUBLE: case reflection_info_1.ScalarType.FLOAT: if (json === null) return .0; if (json === "NaN") return Number.NaN; if (json === "Infinity") return Number.POSITIVE_INFINITY; if (json === "-Infinity") return Number.NEGATIVE_INFINITY; if (json === "") { e = "empty string"; break; } if (typeof json == "string" && json.trim().length !== json.length) { e = "extra whitespace"; break; } if (typeof json != "string" && typeof json != "number") { break; } let float = Number(json); if (Number.isNaN(float)) { e = "not a number"; break; } if (!Number.isFinite(float)) { // infinity and -infinity are handled by string representation above, so this is an error e = "too large or small"; break; } if (type == reflection_info_1.ScalarType.FLOAT) assert_1.assertFloat32(float); return float; // int32, fixed32, uint32: JSON value will be a decimal number. Either numbers or strings are accepted. case reflection_info_1.ScalarType.INT32: case reflection_info_1.ScalarType.FIXED32: case reflection_info_1.ScalarType.SFIXED32: case reflection_info_1.ScalarType.SINT32: case reflection_info_1.ScalarType.UINT32: if (json === null) return 0; let int32; if (typeof json == "number") int32 = json; else if (json === "") e = "empty string"; else if (typeof json == "string") { if (json.trim().length !== json.length) e = "extra whitespace"; else int32 = Number(json); } if (int32 === undefined) break; if (type == reflection_info_1.ScalarType.UINT32) assert_1.assertUInt32(int32); else assert_1.assertInt32(int32); return int32; // int64, fixed64, uint64: JSON value will be a decimal string. Either numbers or strings are accepted. case reflection_info_1.ScalarType.INT64: case reflection_info_1.ScalarType.SFIXED64: case reflection_info_1.ScalarType.SINT64: if (json === null) return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.ZERO, longType); if (typeof json != "number" && typeof json != "string") break; return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.from(json), longType); case reflection_info_1.ScalarType.FIXED64: case reflection_info_1.ScalarType.UINT64: if (json === null) return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.ZERO, longType); if (typeof json != "number" && typeof json != "string") break; return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.from(json), longType); // bool: case reflection_info_1.ScalarType.BOOL: if (json === null) return false; if (typeof json !== "boolean") break; return json; // string: case reflection_info_1.ScalarType.STRING: if (json === null) return ""; if (typeof json !== "string") { e = "extra whitespace"; break; } try { encodeURIComponent(json); } catch (e) { e = "invalid UTF8"; break; } return json; // bytes: JSON value will be the data encoded as a string using standard base64 encoding with paddings. // Either standard or URL-safe base64 encoding with/without paddings are accepted. case reflection_info_1.ScalarType.BYTES: if (json === null || json === "") return new Uint8Array(0); if (typeof json !== 'string') break; return base64_1.base64decode(json); } } catch (error) { e = error.message; } this.assert(false, fieldName + (e ? " - " + e : ""), json); } } exports.ReflectionJsonReader = ReflectionJsonReader;