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631 lines
21 KiB
631 lines
21 KiB
/* Copyright 2015 Mozilla Foundation |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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/* globals WeakMap */ |
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|
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'use strict'; |
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|
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(function (root, factory) { |
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if (typeof define === 'function' && define.amd) { |
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define('pdfjs/display/text_layer', ['exports', 'pdfjs/shared/util', |
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'pdfjs/display/dom_utils'], factory); |
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} else if (typeof exports !== 'undefined') { |
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factory(exports, require('../shared/util.js'), require('./dom_utils.js')); |
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} else { |
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factory((root.pdfjsDisplayTextLayer = {}), root.pdfjsSharedUtil, |
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root.pdfjsDisplayDOMUtils); |
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} |
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}(this, function (exports, sharedUtil, displayDOMUtils) { |
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|
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var Util = sharedUtil.Util; |
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var createPromiseCapability = sharedUtil.createPromiseCapability; |
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var CustomStyle = displayDOMUtils.CustomStyle; |
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var getDefaultSetting = displayDOMUtils.getDefaultSetting; |
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/** |
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* Text layer render parameters. |
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* |
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* @typedef {Object} TextLayerRenderParameters |
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* @property {TextContent} textContent - Text content to render (the object is |
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* returned by the page's getTextContent() method). |
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* @property {HTMLElement} container - HTML element that will contain text runs. |
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* @property {PageViewport} viewport - The target viewport to properly |
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* layout the text runs. |
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* @property {Array} textDivs - (optional) HTML elements that are correspond |
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* the text items of the textContent input. This is output and shall be |
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* initially be set to empty array. |
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* @property {number} timeout - (optional) Delay in milliseconds before |
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* rendering of the text runs occurs. |
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* @property {boolean} enhanceTextSelection - (optional) Whether to turn on the |
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* text selection enhancement. |
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*/ |
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var renderTextLayer = (function renderTextLayerClosure() { |
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var MAX_TEXT_DIVS_TO_RENDER = 100000; |
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var NonWhitespaceRegexp = /\S/; |
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function isAllWhitespace(str) { |
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return !NonWhitespaceRegexp.test(str); |
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} |
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function appendText(task, geom, styles) { |
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// Initialize all used properties to keep the caches monomorphic. |
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var textDiv = document.createElement('div'); |
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var textDivProperties = { |
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angle: 0, |
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canvasWidth: 0, |
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isWhitespace: false, |
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originalTransform: '', |
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originalWidth: 0, |
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paddingBottom: 0, |
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paddingLeft: 0, |
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paddingRight: 0, |
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paddingTop: 0, |
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}; |
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task._textDivs.push(textDiv); |
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if (isAllWhitespace(geom.str)) { |
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textDivProperties.isWhitespace = true; |
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task._textDivProperties.set(textDiv, textDivProperties); |
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return; |
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} |
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var tx = Util.transform(task._viewport.transform, geom.transform); |
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var angle = Math.atan2(tx[1], tx[0]); |
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var style = styles[geom.fontName]; |
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if (style.vertical) { |
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angle += Math.PI / 2; |
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} |
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var fontHeight = Math.sqrt((tx[2] * tx[2]) + (tx[3] * tx[3])); |
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var fontAscent = fontHeight; |
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if (style.ascent) { |
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fontAscent = style.ascent * fontAscent; |
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} else if (style.descent) { |
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fontAscent = (1 + style.descent) * fontAscent; |
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} |
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var left; |
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var top; |
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if (angle === 0) { |
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left = tx[4]; |
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top = tx[5] - fontAscent; |
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} else { |
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left = tx[4] + (fontAscent * Math.sin(angle)); |
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top = tx[5] - (fontAscent * Math.cos(angle)); |
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} |
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textDiv.style.left = left + 'px'; |
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textDiv.style.top = top + 'px'; |
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textDiv.style.fontSize = fontHeight + 'px'; |
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textDiv.style.fontFamily = style.fontFamily; |
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textDiv.textContent = geom.str; |
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// |fontName| is only used by the Font Inspector. This test will succeed |
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// when e.g. the Font Inspector is off but the Stepper is on, but it's |
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// not worth the effort to do a more accurate test. We only use `dataset` |
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// here to make the font name available for the debugger. |
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if (getDefaultSetting('pdfBug')) { |
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textDiv.dataset.fontName = geom.fontName; |
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} |
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if (angle !== 0) { |
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textDivProperties.angle = angle * (180 / Math.PI); |
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} |
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// We don't bother scaling single-char text divs, because it has very |
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// little effect on text highlighting. This makes scrolling on docs with |
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// lots of such divs a lot faster. |
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if (geom.str.length > 1) { |
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if (style.vertical) { |
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textDivProperties.canvasWidth = geom.height * task._viewport.scale; |
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} else { |
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textDivProperties.canvasWidth = geom.width * task._viewport.scale; |
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} |
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} |
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task._textDivProperties.set(textDiv, textDivProperties); |
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if (task._enhanceTextSelection) { |
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var angleCos = 1, angleSin = 0; |
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if (angle !== 0) { |
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angleCos = Math.cos(angle); |
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angleSin = Math.sin(angle); |
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} |
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var divWidth = (style.vertical ? geom.height : geom.width) * |
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task._viewport.scale; |
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var divHeight = fontHeight; |
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var m, b; |
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if (angle !== 0) { |
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m = [angleCos, angleSin, -angleSin, angleCos, left, top]; |
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b = Util.getAxialAlignedBoundingBox([0, 0, divWidth, divHeight], m); |
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} else { |
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b = [left, top, left + divWidth, top + divHeight]; |
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} |
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task._bounds.push({ |
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left: b[0], |
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top: b[1], |
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right: b[2], |
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bottom: b[3], |
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div: textDiv, |
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size: [divWidth, divHeight], |
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m: m |
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}); |
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} |
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} |
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function render(task) { |
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if (task._canceled) { |
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return; |
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} |
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var textLayerFrag = task._container; |
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var textDivs = task._textDivs; |
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var capability = task._capability; |
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var textDivsLength = textDivs.length; |
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// No point in rendering many divs as it would make the browser |
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// unusable even after the divs are rendered. |
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if (textDivsLength > MAX_TEXT_DIVS_TO_RENDER) { |
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task._renderingDone = true; |
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capability.resolve(); |
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return; |
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} |
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var canvas = document.createElement('canvas'); |
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//#if MOZCENTRAL || FIREFOX || GENERIC |
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canvas.mozOpaque = true; |
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//#endif |
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var ctx = canvas.getContext('2d', {alpha: false}); |
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var lastFontSize; |
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var lastFontFamily; |
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for (var i = 0; i < textDivsLength; i++) { |
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var textDiv = textDivs[i]; |
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var textDivProperties = task._textDivProperties.get(textDiv); |
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if (textDivProperties.isWhitespace) { |
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continue; |
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} |
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var fontSize = textDiv.style.fontSize; |
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var fontFamily = textDiv.style.fontFamily; |
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// Only build font string and set to context if different from last. |
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if (fontSize !== lastFontSize || fontFamily !== lastFontFamily) { |
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ctx.font = fontSize + ' ' + fontFamily; |
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lastFontSize = fontSize; |
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lastFontFamily = fontFamily; |
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} |
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var width = ctx.measureText(textDiv.textContent).width; |
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textDivProperties.originalWidth = width; |
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textLayerFrag.appendChild(textDiv); |
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var transform = ''; |
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if (textDivProperties.canvasWidth !== 0 && width > 0) { |
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var scale = textDivProperties.canvasWidth / width; |
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transform = 'scaleX(' + scale + ')'; |
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} |
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var rotation = textDivProperties.angle; |
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if (rotation !== 0) { |
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transform = 'rotate(' + rotation + 'deg) ' + transform; |
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} |
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if (transform !== '') { |
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textDivProperties.originalTransform = transform; |
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CustomStyle.setProp('transform', textDiv, transform); |
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} |
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task._textDivProperties.set(textDiv, textDivProperties); |
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} |
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task._renderingDone = true; |
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capability.resolve(); |
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} |
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function expand(task) { |
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var bounds = task._bounds; |
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var viewport = task._viewport; |
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var expanded = expandBounds(viewport.width, viewport.height, bounds); |
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for (var i = 0; i < expanded.length; i++) { |
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var div = bounds[i].div; |
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var divProperties = task._textDivProperties.get(div); |
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if (divProperties.angle === 0) { |
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divProperties.paddingLeft = bounds[i].left - expanded[i].left; |
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divProperties.paddingTop = bounds[i].top - expanded[i].top; |
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divProperties.paddingRight = expanded[i].right - bounds[i].right; |
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divProperties.paddingBottom = expanded[i].bottom - bounds[i].bottom; |
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task._textDivProperties.set(div, divProperties); |
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continue; |
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} |
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// Box is rotated -- trying to find padding so rotated div will not |
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// exceed its expanded bounds. |
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var e = expanded[i], b = bounds[i]; |
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var m = b.m, c = m[0], s = m[1]; |
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// Finding intersections with expanded box. |
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var points = [[0, 0], [0, b.size[1]], [b.size[0], 0], b.size]; |
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var ts = new Float64Array(64); |
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points.forEach(function (p, i) { |
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var t = Util.applyTransform(p, m); |
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ts[i + 0] = c && (e.left - t[0]) / c; |
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ts[i + 4] = s && (e.top - t[1]) / s; |
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ts[i + 8] = c && (e.right - t[0]) / c; |
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ts[i + 12] = s && (e.bottom - t[1]) / s; |
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ts[i + 16] = s && (e.left - t[0]) / -s; |
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ts[i + 20] = c && (e.top - t[1]) / c; |
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ts[i + 24] = s && (e.right - t[0]) / -s; |
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ts[i + 28] = c && (e.bottom - t[1]) / c; |
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ts[i + 32] = c && (e.left - t[0]) / -c; |
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ts[i + 36] = s && (e.top - t[1]) / -s; |
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ts[i + 40] = c && (e.right - t[0]) / -c; |
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ts[i + 44] = s && (e.bottom - t[1]) / -s; |
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ts[i + 48] = s && (e.left - t[0]) / s; |
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ts[i + 52] = c && (e.top - t[1]) / -c; |
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ts[i + 56] = s && (e.right - t[0]) / s; |
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ts[i + 60] = c && (e.bottom - t[1]) / -c; |
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}); |
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var findPositiveMin = function (ts, offset, count) { |
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var result = 0; |
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for (var i = 0; i < count; i++) { |
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var t = ts[offset++]; |
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if (t > 0) { |
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result = result ? Math.min(t, result) : t; |
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} |
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} |
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return result; |
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}; |
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// Not based on math, but to simplify calculations, using cos and sin |
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// absolute values to not exceed the box (it can but insignificantly). |
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var boxScale = 1 + Math.min(Math.abs(c), Math.abs(s)); |
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divProperties.paddingLeft = findPositiveMin(ts, 32, 16) / boxScale; |
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divProperties.paddingTop = findPositiveMin(ts, 48, 16) / boxScale; |
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divProperties.paddingRight = findPositiveMin(ts, 0, 16) / boxScale; |
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divProperties.paddingBottom = findPositiveMin(ts, 16, 16) / boxScale; |
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task._textDivProperties.set(div, divProperties); |
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} |
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} |
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function expandBounds(width, height, boxes) { |
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var bounds = boxes.map(function (box, i) { |
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return { |
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x1: box.left, |
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y1: box.top, |
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x2: box.right, |
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y2: box.bottom, |
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index: i, |
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x1New: undefined, |
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x2New: undefined |
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}; |
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}); |
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expandBoundsLTR(width, bounds); |
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var expanded = new Array(boxes.length); |
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bounds.forEach(function (b) { |
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var i = b.index; |
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expanded[i] = { |
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left: b.x1New, |
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top: 0, |
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right: b.x2New, |
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bottom: 0 |
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}; |
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}); |
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|
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// Rotating on 90 degrees and extending extended boxes. Reusing the bounds |
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// array and objects. |
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boxes.map(function (box, i) { |
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var e = expanded[i], b = bounds[i]; |
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b.x1 = box.top; |
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b.y1 = width - e.right; |
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b.x2 = box.bottom; |
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b.y2 = width - e.left; |
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b.index = i; |
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b.x1New = undefined; |
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b.x2New = undefined; |
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}); |
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expandBoundsLTR(height, bounds); |
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bounds.forEach(function (b) { |
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var i = b.index; |
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expanded[i].top = b.x1New; |
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expanded[i].bottom = b.x2New; |
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}); |
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return expanded; |
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} |
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function expandBoundsLTR(width, bounds) { |
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// Sorting by x1 coordinate and walk by the bounds in the same order. |
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bounds.sort(function (a, b) { return a.x1 - b.x1 || a.index - b.index; }); |
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// First we see on the horizon is a fake boundary. |
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var fakeBoundary = { |
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x1: -Infinity, |
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y1: -Infinity, |
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x2: 0, |
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y2: Infinity, |
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index: -1, |
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x1New: 0, |
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x2New: 0 |
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}; |
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var horizon = [{ |
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start: -Infinity, |
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end: Infinity, |
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boundary: fakeBoundary |
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}]; |
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bounds.forEach(function (boundary) { |
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// Searching for the affected part of horizon. |
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// TODO red-black tree or simple binary search |
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var i = 0; |
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while (i < horizon.length && horizon[i].end <= boundary.y1) { |
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i++; |
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} |
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var j = horizon.length - 1; |
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while(j >= 0 && horizon[j].start >= boundary.y2) { |
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j--; |
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} |
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var horizonPart, affectedBoundary; |
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var q, k, maxXNew = -Infinity; |
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for (q = i; q <= j; q++) { |
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horizonPart = horizon[q]; |
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affectedBoundary = horizonPart.boundary; |
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var xNew; |
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if (affectedBoundary.x2 > boundary.x1) { |
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// In the middle of the previous element, new x shall be at the |
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// boundary start. Extending if further if the affected bondary |
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// placed on top of the current one. |
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xNew = affectedBoundary.index > boundary.index ? |
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affectedBoundary.x1New : boundary.x1; |
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} else if (affectedBoundary.x2New === undefined) { |
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// We have some space in between, new x in middle will be a fair |
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// choice. |
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xNew = (affectedBoundary.x2 + boundary.x1) / 2; |
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} else { |
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// Affected boundary has x2new set, using it as new x. |
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xNew = affectedBoundary.x2New; |
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} |
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if (xNew > maxXNew) { |
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maxXNew = xNew; |
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} |
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} |
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|
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// Set new x1 for current boundary. |
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boundary.x1New = maxXNew; |
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|
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// Adjusts new x2 for the affected boundaries. |
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for (q = i; q <= j; q++) { |
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horizonPart = horizon[q]; |
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affectedBoundary = horizonPart.boundary; |
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if (affectedBoundary.x2New === undefined) { |
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// Was not set yet, choosing new x if possible. |
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if (affectedBoundary.x2 > boundary.x1) { |
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// Current and affected boundaries intersect. If affected boundary |
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// is placed on top of the current, shrinking the affected. |
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if (affectedBoundary.index > boundary.index) { |
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affectedBoundary.x2New = affectedBoundary.x2; |
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} |
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} else { |
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affectedBoundary.x2New = maxXNew; |
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} |
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} else if (affectedBoundary.x2New > maxXNew) { |
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// Affected boundary is touching new x, pushing it back. |
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affectedBoundary.x2New = Math.max(maxXNew, affectedBoundary.x2); |
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} |
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} |
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|
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// Fixing the horizon. |
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var changedHorizon = [], lastBoundary = null; |
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for (q = i; q <= j; q++) { |
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horizonPart = horizon[q]; |
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affectedBoundary = horizonPart.boundary; |
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// Checking which boundary will be visible. |
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var useBoundary = affectedBoundary.x2 > boundary.x2 ? |
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affectedBoundary : boundary; |
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if (lastBoundary === useBoundary) { |
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// Merging with previous. |
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changedHorizon[changedHorizon.length - 1].end = horizonPart.end; |
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} else { |
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changedHorizon.push({ |
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start: horizonPart.start, |
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end: horizonPart.end, |
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boundary: useBoundary |
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}); |
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lastBoundary = useBoundary; |
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} |
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} |
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if (horizon[i].start < boundary.y1) { |
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changedHorizon[0].start = boundary.y1; |
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changedHorizon.unshift({ |
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start: horizon[i].start, |
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end: boundary.y1, |
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boundary: horizon[i].boundary |
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}); |
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} |
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if (boundary.y2 < horizon[j].end) { |
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changedHorizon[changedHorizon.length - 1].end = boundary.y2; |
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changedHorizon.push({ |
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start: boundary.y2, |
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end: horizon[j].end, |
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boundary: horizon[j].boundary |
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}); |
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} |
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|
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// Set x2 new of boundary that is no longer visible (see overlapping case |
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// above). |
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// TODO more efficient, e.g. via reference counting. |
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for (q = i; q <= j; q++) { |
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horizonPart = horizon[q]; |
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affectedBoundary = horizonPart.boundary; |
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if (affectedBoundary.x2New !== undefined) { |
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continue; |
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} |
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var used = false; |
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for (k = i - 1; !used && k >= 0 && |
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horizon[k].start >= affectedBoundary.y1; k--) { |
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used = horizon[k].boundary === affectedBoundary; |
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} |
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for (k = j + 1; !used && k < horizon.length && |
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horizon[k].end <= affectedBoundary.y2; k++) { |
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used = horizon[k].boundary === affectedBoundary; |
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} |
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for (k = 0; !used && k < changedHorizon.length; k++) { |
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used = changedHorizon[k].boundary === affectedBoundary; |
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} |
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if (!used) { |
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affectedBoundary.x2New = maxXNew; |
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} |
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} |
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|
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Array.prototype.splice.apply(horizon, |
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[i, j - i + 1].concat(changedHorizon)); |
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}); |
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|
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// Set new x2 for all unset boundaries. |
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horizon.forEach(function (horizonPart) { |
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var affectedBoundary = horizonPart.boundary; |
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if (affectedBoundary.x2New === undefined) { |
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affectedBoundary.x2New = Math.max(width, affectedBoundary.x2); |
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} |
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}); |
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} |
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|
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/** |
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* Text layer rendering task. |
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* |
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* @param {TextContent} textContent |
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* @param {HTMLElement} container |
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* @param {PageViewport} viewport |
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* @param {Array} textDivs |
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* @param {boolean} enhanceTextSelection |
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* @private |
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*/ |
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function TextLayerRenderTask(textContent, container, viewport, textDivs, |
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enhanceTextSelection) { |
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this._textContent = textContent; |
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this._container = container; |
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this._viewport = viewport; |
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this._textDivs = textDivs || []; |
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this._textDivProperties = new WeakMap(); |
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this._renderingDone = false; |
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this._canceled = false; |
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this._capability = createPromiseCapability(); |
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this._renderTimer = null; |
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this._bounds = []; |
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this._enhanceTextSelection = !!enhanceTextSelection; |
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this._expanded = false; |
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} |
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TextLayerRenderTask.prototype = { |
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get promise() { |
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return this._capability.promise; |
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}, |
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|
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cancel: function TextLayer_cancel() { |
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this._canceled = true; |
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if (this._renderTimer !== null) { |
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clearTimeout(this._renderTimer); |
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this._renderTimer = null; |
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} |
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this._capability.reject('canceled'); |
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}, |
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|
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_render: function TextLayer_render(timeout) { |
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var textItems = this._textContent.items; |
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var textStyles = this._textContent.styles; |
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for (var i = 0, len = textItems.length; i < len; i++) { |
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appendText(this, textItems[i], textStyles); |
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} |
|
|
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if (!timeout) { // Render right away |
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render(this); |
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} else { // Schedule |
|
var self = this; |
|
this._renderTimer = setTimeout(function() { |
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render(self); |
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self._renderTimer = null; |
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}, timeout); |
|
} |
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}, |
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|
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expandTextDivs: function TextLayer_expandTextDivs(expandDivs) { |
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if (!this._enhanceTextSelection || !this._renderingDone) { |
|
return; |
|
} |
|
if (!this._expanded) { |
|
expand(this); |
|
this._expanded = true; |
|
this._bounds.length = 0; |
|
} |
|
|
|
for (var i = 0, ii = this._textDivs.length; i < ii; i++) { |
|
var div = this._textDivs[i]; |
|
var divProperties = this._textDivProperties.get(div); |
|
|
|
if (expandDivs) { |
|
var transform = ''; |
|
var scale = 1; |
|
|
|
if (divProperties.canvasWidth !== 0 && |
|
divProperties.originalWidth > 0) { |
|
scale = divProperties.canvasWidth / divProperties.originalWidth; |
|
transform = 'scaleX(' + scale + ')'; |
|
} |
|
if (divProperties.angle !== 0) { |
|
transform = 'rotate(' + divProperties.angle + 'deg) ' + transform; |
|
} |
|
if (divProperties.paddingLeft !== 0) { |
|
div.style.paddingLeft = |
|
(divProperties.paddingLeft / scale) + 'px'; |
|
transform += ' translateX(' + |
|
(-divProperties.paddingLeft / scale) + 'px)'; |
|
} |
|
if (divProperties.paddingTop !== 0) { |
|
div.style.paddingTop = divProperties.paddingTop + 'px'; |
|
transform += ' translateY(' + (-divProperties.paddingTop) + 'px)'; |
|
} |
|
if (divProperties.paddingRight !== 0) { |
|
div.style.paddingRight = |
|
divProperties.paddingRight / scale + 'px'; |
|
} |
|
if (divProperties.paddingBottom !== 0) { |
|
div.style.paddingBottom = divProperties.paddingBottom + 'px'; |
|
} |
|
if (transform !== '') { |
|
CustomStyle.setProp('transform', div, transform); |
|
} |
|
} else { |
|
div.style.padding = 0; |
|
CustomStyle.setProp('transform', div, |
|
divProperties.originalTransform); |
|
} |
|
} |
|
}, |
|
}; |
|
|
|
/** |
|
* Starts rendering of the text layer. |
|
* |
|
* @param {TextLayerRenderParameters} renderParameters |
|
* @returns {TextLayerRenderTask} |
|
*/ |
|
function renderTextLayer(renderParameters) { |
|
var task = new TextLayerRenderTask(renderParameters.textContent, |
|
renderParameters.container, |
|
renderParameters.viewport, |
|
renderParameters.textDivs, |
|
renderParameters.enhanceTextSelection); |
|
task._render(renderParameters.timeout); |
|
return task; |
|
} |
|
|
|
return renderTextLayer; |
|
})(); |
|
|
|
exports.renderTextLayer = renderTextLayer; |
|
}));
|
|
|