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629 lines
20 KiB
629 lines
20 KiB
function __variableDynamicImportRuntime0__(path) {
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switch (path) {
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case './locale/en.js':
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return Promise.resolve().then(function () { return en$1; });
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case './locale/fr.js':
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return Promise.resolve().then(function () { return fr$1; });
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case './locale/sv.js':
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return Promise.resolve().then(function () { return sv$1; });
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case './locale/tr.js':
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return Promise.resolve().then(function () { return tr$1; });
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case './locale/uk.js':
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return Promise.resolve().then(function () { return uk$1; });
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case './locale/zh-CN.js':
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return Promise.resolve().then(function () { return zhCN$1; });
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default:
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return new Promise(function (resolve, reject) {
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(typeof queueMicrotask === 'function' ? queueMicrotask : setTimeout)(reject.bind(null, new Error("Unknown variable dynamic import: " + path)));
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});
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}
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}
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/**
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* @file ext-polystar.js
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*
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*
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* @copyright 2010 CloudCanvas, Inc. All rights reserved
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* @copyright 2021 Optimistik SAS, Inc. All rights reserved
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* @license MIT
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*
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*/
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const name = 'polystar';
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const loadExtensionTranslation = async function (svgEditor) {
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let translationModule;
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const lang = svgEditor.configObj.pref('lang');
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try {
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translationModule = await __variableDynamicImportRuntime0__(`./locale/${lang}.js`);
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} catch (_error) {
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console.warn(`Missing translation (${lang}) for ${name} - using 'en'`);
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translationModule = await Promise.resolve().then(function () { return en$1; });
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}
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svgEditor.i18next.addResourceBundle(lang, name, translationModule.default);
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};
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var extPolystar = {
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name,
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async init() {
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const svgEditor = this;
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const {
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svgCanvas
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} = svgEditor;
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const {
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ChangeElementCommand
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} = svgCanvas.history;
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const addToHistory = cmd => {
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svgCanvas.undoMgr.addCommandToHistory(cmd);
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};
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const {
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$id,
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$click
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} = svgCanvas;
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let selElems;
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let started;
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let newFO;
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await loadExtensionTranslation(svgEditor);
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/**
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* @param {boolean} on true=display
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* @param {string} tool "star" or "polygone"
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* @returns {void}
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*/
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const showPanel = (on, tool) => {
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if (on) {
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$id(`${tool}_panel`).style.removeProperty('display');
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} else {
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$id(`${tool}_panel`).style.display = 'none';
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}
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};
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/**
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*
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* @param {string} attr attribute to change
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* @param {string|Float} val new value
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* @returns {void}
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*/
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const setAttr = (attr, val) => {
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svgCanvas.changeSelectedAttribute(attr, val);
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svgCanvas.call('changed', selElems);
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};
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/**
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* @param {Float} n angle
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* @return {Float} cotangeante
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*/
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const cot = n => 1 / Math.tan(n);
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/**
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* @param {Float} n angle
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* @returns {Float} sec
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*/
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const sec = n => 1 / Math.cos(n);
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return {
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name: svgEditor.i18next.t(`${name}:name`),
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// The callback should be used to load the DOM with the appropriate UI items
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callback() {
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// Add the button and its handler(s)
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// Note: the star extension needs to be loaded before the polygon extension
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const fbtitle = `${name}:title`;
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const titleStar = `${name}:buttons.0.title`;
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const titlePolygon = `${name}:buttons.1.title`;
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const buttonTemplate = `
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<se-flyingbutton id="tools_polygon" title="${fbtitle}">
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<se-button id="tool_star" title="${titleStar}" src="star.svg">
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</se-button>
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<se-button id="tool_polygon" title="${titlePolygon}" src="polygon.svg">
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</se-button>
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</se-flyingbutton>
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`;
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svgCanvas.insertChildAtIndex($id('tools_left'), buttonTemplate, 10);
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// handler
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$click($id('tool_star'), () => {
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if (this.leftPanel.updateLeftPanel('tool_star')) {
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svgCanvas.setMode('star');
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showPanel(true, 'star');
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showPanel(false, 'polygon');
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}
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});
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$click($id('tool_polygon'), () => {
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if (this.leftPanel.updateLeftPanel('tool_polygon')) {
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svgCanvas.setMode('polygon');
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showPanel(true, 'polygon');
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showPanel(false, 'star');
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}
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});
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const label0 = `${name}:contextTools.0.label`;
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const title0 = `${name}:contextTools.0.title`;
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const label1 = `${name}:contextTools.1.label`;
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const title1 = `${name}:contextTools.1.title`;
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const label2 = `${name}:contextTools.2.label`;
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const title2 = `${name}:contextTools.2.title`;
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const label3 = `${name}:contextTools.3.label`;
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const title3 = `${name}:contextTools.3.title`;
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// Add the context panel and its handler(s)
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const panelTemplate = document.createElement('template');
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panelTemplate.innerHTML = `
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<div id="star_panel">
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<se-spin-input id="starNumPoints" label="${label0}" min=1 step=1 value=5 title="${title0}">
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</se-spin-input>
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<se-spin-input id="RadiusMultiplier" label="${label1}" min=1 step=2.5 value=3 title="${title1}">
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</se-spin-input>
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<se-spin-input id="radialShift" min=0 step=1 value=0 label="${label2}" title="${title2}">
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</se-spin-input>
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</div>
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<div id="polygon_panel">
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<se-spin-input size="3" id="polySides" min=1 step=1 value=5 label="${label3}" title="${title3}">
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</se-spin-input>
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</div>
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`;
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// add handlers for the panel
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$id('tools_top').appendChild(panelTemplate.content.cloneNode(true));
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// don't display the panels on start
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showPanel(false, 'star');
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showPanel(false, 'polygon');
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$id('starNumPoints').addEventListener('change', event => {
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setAttr('point', event.target.value);
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const point = event.target.value;
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let i = selElems.length;
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while (i--) {
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const elem = selElems[i];
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if (elem.hasAttribute('r')) {
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const oldPoint = elem.getAttribute('point');
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const oldPoints = elem.getAttribute('points');
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const radialshift = elem.getAttribute('radialshift');
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let xpos = 0;
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let ypos = 0;
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if (elem.points) {
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const list = elem.points;
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const len = list.numberOfItems;
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for (let i = 0; i < len; ++i) {
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const pt = list.getItem(i);
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xpos += parseFloat(pt.x);
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ypos += parseFloat(pt.y);
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}
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const cx = xpos / len;
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const cy = ypos / len;
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const circumradius = Number(elem.getAttribute('r'));
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const inradius = circumradius / elem.getAttribute('starRadiusMultiplier');
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let polyPoints = '';
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for (let s = 0; point >= s; s++) {
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let angle = 2.0 * Math.PI * (s / point);
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{
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angle -= Math.PI / 2;
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}
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let x = circumradius * Math.cos(angle) + cx;
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let y = circumradius * Math.sin(angle) + cy;
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polyPoints += x + ',' + y + ' ';
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if (!isNaN(inradius)) {
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angle = 2.0 * Math.PI * (s / point) + Math.PI / point;
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{
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angle -= Math.PI / 2;
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}
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angle += radialshift;
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x = inradius * Math.cos(angle) + cx;
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y = inradius * Math.sin(angle) + cy;
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polyPoints += x + ',' + y + ' ';
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}
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}
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elem.setAttribute('points', polyPoints);
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addToHistory(new ChangeElementCommand(elem, {
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point: oldPoint,
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points: oldPoints
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}));
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}
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}
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}
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});
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$id('RadiusMultiplier').addEventListener('change', event => {
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setAttr('starRadiusMultiplier', event.target.value);
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});
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$id('radialShift').addEventListener('change', event => {
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setAttr('radialshift', event.target.value);
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});
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$id('polySides').addEventListener('change', event => {
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setAttr('sides', event.target.value);
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const sides = event.target.value;
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let i = selElems.length;
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while (i--) {
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const elem = selElems[i];
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if (elem.hasAttribute('edge')) {
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const oldSides = elem.getAttribute('sides');
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const oldPoints = elem.getAttribute('points');
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let xpos = 0;
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let ypos = 0;
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if (elem.points) {
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const list = elem.points;
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const len = list.numberOfItems;
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for (let i = 0; i < len; ++i) {
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const pt = list.getItem(i);
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xpos += parseFloat(pt.x);
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ypos += parseFloat(pt.y);
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}
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const cx = xpos / len;
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const cy = ypos / len;
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const edg = elem.getAttribute('edge');
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const inradius = edg / 2 * cot(Math.PI / sides);
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const circumradius = inradius * sec(Math.PI / sides);
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let points = '';
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for (let s = 0; sides >= s; s++) {
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const angle = 2.0 * Math.PI * s / sides;
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const x = circumradius * Math.cos(angle) + cx;
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const y = circumradius * Math.sin(angle) + cy;
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points += x + ',' + y + ' ';
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}
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elem.setAttribute('points', points);
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addToHistory(new ChangeElementCommand(elem, {
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sides: oldSides,
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points: oldPoints
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}));
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}
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}
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}
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});
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},
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mouseDown(opts) {
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if (svgCanvas.getMode() === 'star') {
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const fill = svgCanvas.getColor('fill');
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const stroke = svgCanvas.getColor('stroke');
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const strokeWidth = svgCanvas.getStrokeWidth();
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started = true;
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newFO = svgCanvas.addSVGElementsFromJson({
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element: 'polygon',
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attr: {
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cx: opts.start_x,
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cy: opts.start_y,
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id: svgCanvas.getNextId(),
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shape: 'star',
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point: $id('starNumPoints').value,
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r: 0,
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radialshift: $id('radialShift').value,
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r2: 0,
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orient: 'point',
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fill,
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stroke,
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'stroke-width': strokeWidth
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}
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});
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return {
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started: true
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};
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}
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if (svgCanvas.getMode() === 'polygon') {
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const fill = svgCanvas.getColor('fill');
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const stroke = svgCanvas.getColor('stroke');
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const strokeWidth = svgCanvas.getStrokeWidth();
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started = true;
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newFO = svgCanvas.addSVGElementsFromJson({
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element: 'polygon',
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attr: {
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cx: opts.start_x,
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cy: opts.start_y,
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id: svgCanvas.getNextId(),
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shape: 'regularPoly',
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sides: $id('polySides').value,
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orient: 'x',
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edge: 0,
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fill,
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stroke,
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'stroke-width': strokeWidth
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}
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});
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return {
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started: true
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};
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}
|
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return undefined;
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},
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|
mouseMove(opts) {
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if (!started) {
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return undefined;
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}
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if (svgCanvas.getMode() === 'star') {
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const cx = Number(newFO.getAttribute('cx'));
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const cy = Number(newFO.getAttribute('cy'));
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const point = Number(newFO.getAttribute('point'));
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const orient = newFO.getAttribute('orient');
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const fill = newFO.getAttribute('fill');
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const stroke = newFO.getAttribute('stroke');
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const strokeWidth = Number(newFO.getAttribute('stroke-width'));
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const radialshift = Number(newFO.getAttribute('radialshift'));
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let x = opts.mouse_x;
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let y = opts.mouse_y;
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const circumradius = Math.sqrt((x - cx) * (x - cx) + (y - cy) * (y - cy)) / 1.5;
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const RadiusMultiplier = document.getElementById('RadiusMultiplier').value;
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const inradius = circumradius / RadiusMultiplier;
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newFO.setAttribute('r', circumradius);
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newFO.setAttribute('r2', inradius);
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newFO.setAttribute('starRadiusMultiplier', RadiusMultiplier);
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let polyPoints = '';
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for (let s = 0; point >= s; s++) {
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let angle = 2.0 * Math.PI * (s / point);
|
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if (orient === 'point') {
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angle -= Math.PI / 2;
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} else if (orient === 'edge') {
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angle = angle + Math.PI / point - Math.PI / 2;
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}
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x = circumradius * Math.cos(angle) + cx;
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y = circumradius * Math.sin(angle) + cy;
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polyPoints += x + ',' + y + ' ';
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if (!isNaN(inradius)) {
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angle = 2.0 * Math.PI * (s / point) + Math.PI / point;
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if (orient === 'point') {
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angle -= Math.PI / 2;
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} else if (orient === 'edge') {
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angle = angle + Math.PI / point - Math.PI / 2;
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}
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angle += radialshift;
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x = inradius * Math.cos(angle) + cx;
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y = inradius * Math.sin(angle) + cy;
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polyPoints += x + ',' + y + ' ';
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}
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}
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newFO.setAttribute('points', polyPoints);
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newFO.setAttribute('fill', fill);
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newFO.setAttribute('stroke', stroke);
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newFO.setAttribute('stroke-width', strokeWidth);
|
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/* const shape = */
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newFO.getAttribute('shape');
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return {
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started: true
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};
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|
}
|
|
if (svgCanvas.getMode() === 'polygon') {
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const cx = Number(newFO.getAttribute('cx'));
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|
const cy = Number(newFO.getAttribute('cy'));
|
|
const sides = Number(newFO.getAttribute('sides'));
|
|
// const orient = newFO.getAttribute('orient');
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const fill = newFO.getAttribute('fill');
|
|
const stroke = newFO.getAttribute('stroke');
|
|
const strokeWidth = Number(newFO.getAttribute('stroke-width'));
|
|
let x = opts.mouse_x;
|
|
let y = opts.mouse_y;
|
|
const edg = Math.sqrt((x - cx) * (x - cx) + (y - cy) * (y - cy)) / 1.5;
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|
newFO.setAttribute('edge', edg);
|
|
const inradius = edg / 2 * cot(Math.PI / sides);
|
|
const circumradius = inradius * sec(Math.PI / sides);
|
|
let points = '';
|
|
for (let s = 0; sides >= s; s++) {
|
|
const angle = 2.0 * Math.PI * s / sides;
|
|
x = circumradius * Math.cos(angle) + cx;
|
|
y = circumradius * Math.sin(angle) + cy;
|
|
points += x + ',' + y + ' ';
|
|
}
|
|
|
|
// const poly = newFO.createElementNS(NS.SVG, 'polygon');
|
|
newFO.setAttribute('points', points);
|
|
newFO.setAttribute('fill', fill);
|
|
newFO.setAttribute('stroke', stroke);
|
|
newFO.setAttribute('stroke-width', strokeWidth);
|
|
return {
|
|
started: true
|
|
};
|
|
}
|
|
return undefined;
|
|
},
|
|
mouseUp() {
|
|
if (svgCanvas.getMode() === 'star') {
|
|
const r = newFO.getAttribute('r');
|
|
return {
|
|
keep: r !== '0',
|
|
element: newFO
|
|
};
|
|
}
|
|
if (svgCanvas.getMode() === 'polygon') {
|
|
const edge = newFO.getAttribute('edge');
|
|
const keep = edge !== '0';
|
|
// svgCanvas.addToSelection([newFO], true);
|
|
return {
|
|
keep,
|
|
element: newFO
|
|
};
|
|
}
|
|
return undefined;
|
|
},
|
|
selectedChanged(opts) {
|
|
// Use this to update the current selected elements
|
|
selElems = opts.elems;
|
|
let i = selElems.length;
|
|
// Hide panels if nothing is selected
|
|
if (!i) {
|
|
showPanel(false, 'star');
|
|
showPanel(false, 'polygon');
|
|
return;
|
|
}
|
|
while (i--) {
|
|
const elem = selElems[i];
|
|
if (elem?.getAttribute('shape') === 'star') {
|
|
if (opts.selectedElement && !opts.multiselected) {
|
|
$id('starNumPoints').value = elem.getAttribute('point');
|
|
$id('radialShift').value = elem.getAttribute('radialshift');
|
|
showPanel(true, 'star');
|
|
} else {
|
|
showPanel(false, 'star');
|
|
}
|
|
} else if (elem?.getAttribute('shape') === 'regularPoly') {
|
|
if (opts.selectedElement && !opts.multiselected) {
|
|
$id('polySides').value = elem.getAttribute('sides');
|
|
showPanel(true, 'polygon');
|
|
} else {
|
|
showPanel(false, 'polygon');
|
|
}
|
|
} else {
|
|
showPanel(false, 'star');
|
|
showPanel(false, 'polygon');
|
|
}
|
|
}
|
|
}
|
|
};
|
|
}
|
|
};
|
|
|
|
var en = {
|
|
name: 'star',
|
|
title: 'Polygone/Star Tool',
|
|
buttons: [{
|
|
title: 'Star Tool'
|
|
}, {
|
|
title: 'Polygon Tool'
|
|
}],
|
|
contextTools: [{
|
|
title: 'Number of Sides',
|
|
label: 'points'
|
|
}, {
|
|
title: 'Pointiness',
|
|
label: 'Pointiness'
|
|
}, {
|
|
title: 'Twists the star',
|
|
label: 'Radial Shift'
|
|
}, {
|
|
title: 'Number of Sides',
|
|
label: 'sides'
|
|
}]
|
|
};
|
|
|
|
var en$1 = /*#__PURE__*/Object.freeze({
|
|
__proto__: null,
|
|
default: en
|
|
});
|
|
|
|
var fr = {
|
|
name: 'etoile',
|
|
title: 'Outil Polygone/Etoile',
|
|
buttons: [{
|
|
title: 'Outil Etoile'
|
|
}, {
|
|
title: 'Outil Polygone'
|
|
}],
|
|
contextTools: [{
|
|
title: 'Nombre de côtés',
|
|
label: 'points'
|
|
}, {
|
|
title: 'Précision',
|
|
label: 'Précision'
|
|
}, {
|
|
title: 'Torsion Etoile',
|
|
label: 'Décalage Radial'
|
|
}, {
|
|
title: 'Nombre de côtés',
|
|
label: 'côtés'
|
|
}]
|
|
};
|
|
|
|
var fr$1 = /*#__PURE__*/Object.freeze({
|
|
__proto__: null,
|
|
default: fr
|
|
});
|
|
|
|
var sv = {
|
|
name: 'stjärna',
|
|
title: 'Polygon/stjärnverktyg',
|
|
buttons: [{
|
|
title: 'Stjärnverktyg'
|
|
}, {
|
|
title: 'Polygonverktyg'
|
|
}],
|
|
contextTools: [{
|
|
title: 'Antal sidor',
|
|
label: 'poäng'
|
|
}, {
|
|
title: 'Pointiness',
|
|
label: 'Pointiness'
|
|
}, {
|
|
title: 'Vrider stjärnan',
|
|
label: 'Radiell förskjutning'
|
|
}, {
|
|
title: 'Antal sidor',
|
|
label: 'sidor'
|
|
}]
|
|
};
|
|
|
|
var sv$1 = /*#__PURE__*/Object.freeze({
|
|
__proto__: null,
|
|
default: sv
|
|
});
|
|
|
|
var tr = {
|
|
name: 'yıldız',
|
|
title: 'Çokgen/Yıldız Aracı',
|
|
buttons: [{
|
|
title: 'Yıldız Aracı'
|
|
}, {
|
|
title: 'Çokgen Aracı'
|
|
}],
|
|
contextTools: [{
|
|
title: 'Kenar Sayısı',
|
|
label: 'noktalar'
|
|
}, {
|
|
title: 'Sivrilik',
|
|
label: 'Sivrilik'
|
|
}, {
|
|
title: 'Yıldızı Kıvır',
|
|
label: 'Döngüsel Kaydırma'
|
|
}, {
|
|
title: 'Kenar Sayısı',
|
|
label: 'kenarlar'
|
|
}]
|
|
};
|
|
|
|
var tr$1 = /*#__PURE__*/Object.freeze({
|
|
__proto__: null,
|
|
default: tr
|
|
});
|
|
|
|
var uk = {
|
|
name: 'зірка',
|
|
title: 'Полігон/Зірка',
|
|
buttons: [{
|
|
title: 'Зірка'
|
|
}, {
|
|
title: 'Полігон'
|
|
}],
|
|
contextTools: [{
|
|
title: 'Кількість Сторін',
|
|
label: 'точки'
|
|
}, {
|
|
title: 'Без точок',
|
|
label: 'Без точок'
|
|
}, {
|
|
title: 'Закручення зірки',
|
|
label: 'Радіальне Зміщення'
|
|
}, {
|
|
title: 'Кількість Сторін',
|
|
label: 'сторони'
|
|
}]
|
|
};
|
|
|
|
var uk$1 = /*#__PURE__*/Object.freeze({
|
|
__proto__: null,
|
|
default: uk
|
|
});
|
|
|
|
var zhCN = {
|
|
name: '星形',
|
|
title: 'Polygone/Star Tool',
|
|
buttons: [{
|
|
title: '星形工具'
|
|
}, {
|
|
title: '多边形工具'
|
|
}],
|
|
contextTools: [{
|
|
title: '顶点',
|
|
label: '顶点'
|
|
}, {
|
|
title: '钝度',
|
|
label: '钝度'
|
|
}, {
|
|
title: '径向',
|
|
label: '径向'
|
|
}, {
|
|
title: '边数',
|
|
label: '边数'
|
|
}]
|
|
};
|
|
|
|
var zhCN$1 = /*#__PURE__*/Object.freeze({
|
|
__proto__: null,
|
|
default: zhCN
|
|
});
|
|
|
|
export { extPolystar as default };
|
|
//# sourceMappingURL=ext-polystar.js.map
|
|
|