"use strict"; Object.defineProperty(exports, "__esModule", { value: true }); var encodings_1 = require("../../encoding/encodings"); var finished_1 = require("../../encoding/finished"); var indexes_1 = require("../../encoding/indexes"); var terminology_1 = require("../../encoding/terminology"); var utilities_1 = require("../../encoding/utilities"); /** * @constructor * @implements {Decoder} * @param {{fatal: boolean}} options */ var EUCKRDecoder = /** @class */ (function () { function EUCKRDecoder(options) { this.fatal = options.fatal; // euc-kr's decoder has an associated euc-kr lead (initially 0x00). /** @type {number} */ this.euckr_lead = 0x00; } /** * @param {Stream} stream The stream of bytes being decoded. * @param {number} bite The next byte read from the stream. * @return {?(number|!Array.)} The next code point(s) * decoded, or null if not enough data exists in the input * stream to decode a complete code point. */ EUCKRDecoder.prototype.handler = function (stream, bite) { // 1. If byte is end-of-stream and euc-kr lead is not 0x00, set // euc-kr lead to 0x00 and return error. if (bite === terminology_1.end_of_stream && this.euckr_lead !== 0) { this.euckr_lead = 0x00; return encodings_1.decoderError(this.fatal); } // 2. If byte is end-of-stream and euc-kr lead is 0x00, return // finished. if (bite === terminology_1.end_of_stream && this.euckr_lead === 0) return finished_1.finished; // 3. If euc-kr lead is not 0x00, let lead be euc-kr lead, let // pointer be null, set euc-kr lead to 0x00, and then run these // substeps: if (this.euckr_lead !== 0x00) { var lead = this.euckr_lead; var pointer = null; this.euckr_lead = 0x00; // 1. If byte is in the range 0x41 to 0xFE, inclusive, set // pointer to (lead − 0x81) × 190 + (byte − 0x41). if (utilities_1.inRange(bite, 0x41, 0xFE)) pointer = (lead - 0x81) * 190 + (bite - 0x41); // 2. Let code point be null, if pointer is null, and the // index code point for pointer in index euc-kr otherwise. var code_point = (pointer === null) ? null : indexes_1.indexCodePointFor(pointer, indexes_1.index('euc-kr')); // 3. If code point is null and byte is an ASCII byte, prepend // byte to stream. if (pointer === null && terminology_1.isASCIIByte(bite)) stream.prepend(bite); // 4. If code point is null, return error. if (code_point === null) return encodings_1.decoderError(this.fatal); // 5. Return a code point whose value is code point. return code_point; } // 4. If byte is an ASCII byte, return a code point whose value // is byte. if (terminology_1.isASCIIByte(bite)) return bite; // 5. If byte is in the range 0x81 to 0xFE, inclusive, set // euc-kr lead to byte and return continue. if (utilities_1.inRange(bite, 0x81, 0xFE)) { this.euckr_lead = bite; return null; } // 6. Return error. return encodings_1.decoderError(this.fatal); }; return EUCKRDecoder; }()); exports.EUCKRDecoder = EUCKRDecoder; //# sourceMappingURL=EUCKRDecoder.js.map