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@zlooun/exceljs

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Fixes the problem with writing a file using streams and not using RAM based on 'exeljs'

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"use strict"; function _typeof(obj) { "@babel/helpers - typeof"; return _typeof = "function" == typeof Symbol && "symbol" == typeof Symbol.iterator ? function (obj) { return typeof obj; } : function (obj) { return obj && "function" == typeof Symbol && obj.constructor === Symbol && obj !== Symbol.prototype ? "symbol" : typeof obj; }, _typeof(obj); } function _classCallCheck(instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError("Cannot call a class as a function"); } } function _defineProperties(target, props) { for (var i = 0; i < props.length; i++) { var descriptor = props[i]; descriptor.enumerable = descriptor.enumerable || false; descriptor.configurable = true; if ("value" in descriptor) descriptor.writable = true; Object.defineProperty(target, _toPropertyKey(descriptor.key), descriptor); } } function _createClass(Constructor, protoProps, staticProps) { if (protoProps) _defineProperties(Constructor.prototype, protoProps); if (staticProps) _defineProperties(Constructor, staticProps); Object.defineProperty(Constructor, "prototype", { writable: false }); return Constructor; } function _toPropertyKey(arg) { var key = _toPrimitive(arg, "string"); return _typeof(key) === "symbol" ? key : String(key); } function _toPrimitive(input, hint) { if (_typeof(input) !== "object" || input === null) return input; var prim = input[Symbol.toPrimitive]; if (prim !== undefined) { var res = prim.call(input, hint || "default"); if (_typeof(res) !== "object") return res; throw new TypeError("@@toPrimitive must return a primitive value."); } return (hint === "string" ? String : Number)(input); } function _inherits(subClass, superClass) { if (typeof superClass !== "function" && superClass !== null) { throw new TypeError("Super expression must either be null or a function"); } subClass.prototype = Object.create(superClass && superClass.prototype, { constructor: { value: subClass, writable: true, configurable: true } }); Object.defineProperty(subClass, "prototype", { writable: false }); if (superClass) _setPrototypeOf(subClass, superClass); } function _setPrototypeOf(o, p) { _setPrototypeOf = Object.setPrototypeOf ? Object.setPrototypeOf.bind() : function _setPrototypeOf(o, p) { o.__proto__ = p; return o; }; return _setPrototypeOf(o, p); } function _createSuper(Derived) { var hasNativeReflectConstruct = _isNativeReflectConstruct(); return function _createSuperInternal() { var Super = _getPrototypeOf(Derived), result; if (hasNativeReflectConstruct) { var NewTarget = _getPrototypeOf(this).constructor; result = Reflect.construct(Super, arguments, NewTarget); } else { result = Super.apply(this, arguments); } return _possibleConstructorReturn(this, result); }; } function _possibleConstructorReturn(self, call) { if (call && (_typeof(call) === "object" || typeof call === "function")) { return call; } else if (call !== void 0) { throw new TypeError("Derived constructors may only return object or undefined"); } return _assertThisInitialized(self); } function _assertThisInitialized(self) { if (self === void 0) { throw new ReferenceError("this hasn't been initialised - super() hasn't been called"); } return self; } function _isNativeReflectConstruct() { if (typeof Reflect === "undefined" || !Reflect.construct) return false; if (Reflect.construct.sham) return false; if (typeof Proxy === "function") return true; try { Boolean.prototype.valueOf.call(Reflect.construct(Boolean, [], function () {})); return true; } catch (e) { return false; } } function _getPrototypeOf(o) { _getPrototypeOf = Object.setPrototypeOf ? Object.getPrototypeOf.bind() : function _getPrototypeOf(o) { return o.__proto__ || Object.getPrototypeOf(o); }; return _getPrototypeOf(o); } var BaseXform = require('../base-xform'); var IntegerXform = require('../simple/integer-xform'); var CellPositionXform = /*#__PURE__*/function (_BaseXform) { _inherits(CellPositionXform, _BaseXform); var _super = _createSuper(CellPositionXform); function CellPositionXform(options) { var _this; _classCallCheck(this, CellPositionXform); _this = _super.call(this); _this.tag = options.tag; _this.map = { 'xdr:col': new IntegerXform({ tag: 'xdr:col', zero: true }), 'xdr:colOff': new IntegerXform({ tag: 'xdr:colOff', zero: true }), 'xdr:row': new IntegerXform({ tag: 'xdr:row', zero: true }), 'xdr:rowOff': new IntegerXform({ tag: 'xdr:rowOff', zero: true }) }; return _this; } _createClass(CellPositionXform, [{ key: "render", value: function render(xmlStream, model) { xmlStream.openNode(this.tag); this.map['xdr:col'].render(xmlStream, model.nativeCol); this.map['xdr:colOff'].render(xmlStream, model.nativeColOff); this.map['xdr:row'].render(xmlStream, model.nativeRow); this.map['xdr:rowOff'].render(xmlStream, model.nativeRowOff); xmlStream.closeNode(); } }, { key: "parseOpen", value: function parseOpen(node) { if (this.parser) { this.parser.parseOpen(node); return true; } switch (node.name) { case this.tag: this.reset(); break; default: this.parser = this.map[node.name]; if (this.parser) { this.parser.parseOpen(node); } break; } return true; } }, { key: "parseText", value: function parseText(text) { if (this.parser) { this.parser.parseText(text); } } }, { key: "parseClose", value: function parseClose(name) { if (this.parser) { if (!this.parser.parseClose(name)) { this.parser = undefined; } return true; } switch (name) { case this.tag: this.model = { nativeCol: this.map['xdr:col'].model, nativeColOff: this.map['xdr:colOff'].model, nativeRow: this.map['xdr:row'].model, nativeRowOff: this.map['xdr:rowOff'].model }; return false; default: // not quite sure how we get here! return true; } } }]); return CellPositionXform; }(BaseXform); module.exports = CellPositionXform; //# sourceMappingURL=cell-position-xform.js.map