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451 lines
15 KiB
451 lines
15 KiB
/* -*- Mode: Java; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */ |
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/* vim: set shiftwidth=2 tabstop=2 autoindent cindent expandtab: */ |
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/* Copyright 2012 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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'use strict'; |
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var PDFImage = (function PDFImageClosure() { |
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/** |
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* Decode the image in the main thread if it supported. Resovles the promise |
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* when the image data is ready. |
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*/ |
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function handleImageData(handler, xref, res, image, promise) { |
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if (image instanceof JpegStream && image.isNativelyDecodable(xref, res)) { |
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// For natively supported jpegs send them to the main thread for decoding. |
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var dict = image.dict; |
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var colorSpace = dict.get('ColorSpace', 'CS'); |
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colorSpace = ColorSpace.parse(colorSpace, xref, res); |
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var numComps = colorSpace.numComps; |
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handler.send('JpegDecode', [image.getIR(), numComps], function(message) { |
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var data = message.data; |
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var stream = new Stream(data, 0, data.length, image.dict); |
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promise.resolve(stream); |
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}); |
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} else { |
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promise.resolve(image); |
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} |
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} |
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/** |
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* Decode and clamp a value. The formula is different from the spec because we |
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* don't decode to float range [0,1], we decode it in the [0,max] range. |
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*/ |
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function decodeAndClamp(value, addend, coefficient, max) { |
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value = addend + value * coefficient; |
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// Clamp the value to the range |
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return value < 0 ? 0 : value > max ? max : value; |
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} |
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function PDFImage(xref, res, image, inline, smask, mask) { |
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this.image = image; |
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if (image.getParams) { |
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// JPX/JPEG2000 streams directly contain bits per component |
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// and color space mode information. |
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TODO('get params from actual stream'); |
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// var bits = ... |
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// var colorspace = ... |
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} |
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// TODO cache rendered images? |
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var dict = image.dict; |
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this.width = dict.get('Width', 'W'); |
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this.height = dict.get('Height', 'H'); |
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if (this.width < 1 || this.height < 1) |
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error('Invalid image width: ' + this.width + ' or height: ' + |
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this.height); |
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this.interpolate = dict.get('Interpolate', 'I') || false; |
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this.imageMask = dict.get('ImageMask', 'IM') || false; |
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var bitsPerComponent = image.bitsPerComponent; |
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if (!bitsPerComponent) { |
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bitsPerComponent = dict.get('BitsPerComponent', 'BPC'); |
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if (!bitsPerComponent) { |
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if (this.imageMask) |
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bitsPerComponent = 1; |
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else |
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error('Bits per component missing in image: ' + this.imageMask); |
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} |
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} |
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this.bpc = bitsPerComponent; |
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if (!this.imageMask) { |
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var colorSpace = dict.get('ColorSpace', 'CS'); |
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if (!colorSpace) { |
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TODO('JPX images (which don"t require color spaces'); |
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colorSpace = new Name('DeviceRGB'); |
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} |
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this.colorSpace = ColorSpace.parse(colorSpace, xref, res); |
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this.numComps = this.colorSpace.numComps; |
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} |
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this.decode = dict.get('Decode', 'D'); |
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this.needsDecode = false; |
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if (this.decode && this.colorSpace && |
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!this.colorSpace.isDefaultDecode(this.decode)) { |
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this.needsDecode = true; |
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// Do some preprocessing to avoid more math. |
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var max = (1 << bitsPerComponent) - 1; |
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this.decodeCoefficients = []; |
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this.decodeAddends = []; |
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for (var i = 0, j = 0; i < this.decode.length; i += 2, ++j) { |
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var dmin = this.decode[i]; |
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var dmax = this.decode[i + 1]; |
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this.decodeCoefficients[j] = dmax - dmin; |
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this.decodeAddends[j] = max * dmin; |
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} |
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} |
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if (smask) { |
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this.smask = new PDFImage(xref, res, smask, false); |
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} else if (mask) { |
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if (isStream(mask)) { |
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this.mask = new PDFImage(xref, res, mask, false); |
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} else { |
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// Color key mask (just an array). |
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this.mask = mask; |
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} |
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} |
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} |
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/** |
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* Handles processing of image data and calls the callback with an argument |
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* of a PDFImage when the image is ready to be used. |
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*/ |
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PDFImage.buildImage = function PDFImage_buildImage(callback, handler, xref, |
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res, image, inline) { |
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var imageDataPromise = new Promise(); |
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var smaskPromise = new Promise(); |
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var maskPromise = new Promise(); |
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// The image data and smask data may not be ready yet, wait till both are |
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// resolved. |
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Promise.all([imageDataPromise, smaskPromise, maskPromise]).then( |
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function(results) { |
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var imageData = results[0], smaskData = results[1], maskData = results[2]; |
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var image = new PDFImage(xref, res, imageData, inline, smaskData, |
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maskData); |
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callback(image); |
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}); |
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handleImageData(handler, xref, res, image, imageDataPromise); |
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var smask = image.dict.get('SMask'); |
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var mask = image.dict.get('Mask'); |
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if (smask) { |
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handleImageData(handler, xref, res, smask, smaskPromise); |
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maskPromise.resolve(null); |
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} else { |
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smaskPromise.resolve(null); |
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if (mask) { |
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if (isStream(mask)) { |
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handleImageData(handler, xref, res, mask, maskPromise); |
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} else if (isArray(mask)) { |
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maskPromise.resolve(mask); |
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} else { |
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warn('Unsupported mask format.'); |
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maskPromise.resolve(null); |
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} |
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} else { |
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maskPromise.resolve(null); |
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} |
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} |
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}; |
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/** |
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* Resize an image using the nearest neighbor algorithm. Currently only |
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* supports one and three component images. |
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* @param {TypedArray} pixels The original image with one component. |
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* @param {Number} bpc Number of bits per component. |
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* @param {Number} components Number of color components, 1 or 3 is supported. |
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* @param {Number} w1 Original width. |
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* @param {Number} h1 Original height. |
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* @param {Number} w2 New width. |
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* @param {Number} h2 New height. |
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* @return {TypedArray} Resized image data. |
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*/ |
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PDFImage.resize = function PDFImage_resize(pixels, bpc, components, |
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w1, h1, w2, h2) { |
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var length = w2 * h2 * components; |
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var temp = bpc <= 8 ? new Uint8Array(length) : |
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bpc <= 16 ? new Uint16Array(length) : new Uint32Array(length); |
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var xRatio = w1 / w2; |
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var yRatio = h1 / h2; |
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var px, py, newIndex, oldIndex; |
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for (var i = 0; i < h2; i++) { |
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for (var j = 0; j < w2; j++) { |
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px = Math.floor(j * xRatio); |
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py = Math.floor(i * yRatio); |
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newIndex = (i * w2) + j; |
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oldIndex = ((py * w1) + px); |
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if (components === 1) { |
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temp[newIndex] = pixels[oldIndex]; |
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} else if (components === 3) { |
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newIndex *= 3; |
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oldIndex *= 3; |
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temp[newIndex] = pixels[oldIndex]; |
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temp[newIndex + 1] = pixels[oldIndex + 1]; |
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temp[newIndex + 2] = pixels[oldIndex + 2]; |
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} |
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} |
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} |
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return temp; |
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}; |
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PDFImage.prototype = { |
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get drawWidth() { |
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if (!this.smask) |
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return this.width; |
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return Math.max(this.width, this.smask.width); |
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}, |
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get drawHeight() { |
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if (!this.smask) |
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return this.height; |
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return Math.max(this.height, this.smask.height); |
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}, |
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getComponents: function PDFImage_getComponents(buffer) { |
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var bpc = this.bpc; |
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var needsDecode = this.needsDecode; |
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var decodeMap = this.decode; |
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// This image doesn't require any extra work. |
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if (bpc == 8 && !needsDecode) |
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return buffer; |
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var bufferLength = buffer.length; |
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var width = this.width; |
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var height = this.height; |
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var numComps = this.numComps; |
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var length = width * height * numComps; |
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var bufferPos = 0; |
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var output = bpc <= 8 ? new Uint8Array(length) : |
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bpc <= 16 ? new Uint16Array(length) : new Uint32Array(length); |
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var rowComps = width * numComps; |
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var decodeAddends, decodeCoefficients; |
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if (needsDecode) { |
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decodeAddends = this.decodeAddends; |
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decodeCoefficients = this.decodeCoefficients; |
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} |
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var max = (1 << bpc) - 1; |
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if (bpc == 8) { |
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// Optimization for reading 8 bpc images that have a decode. |
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for (var i = 0, ii = length; i < ii; ++i) { |
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var compIndex = i % numComps; |
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var value = buffer[i]; |
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value = decodeAndClamp(value, decodeAddends[compIndex], |
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decodeCoefficients[compIndex], max); |
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output[i] = value; |
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} |
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} else if (bpc == 1) { |
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// Optimization for reading 1 bpc images. |
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var valueZero = 0, valueOne = 1; |
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if (decodeMap) { |
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valueZero = decodeMap[0] ? 1 : 0; |
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valueOne = decodeMap[1] ? 1 : 0; |
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} |
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var mask = 0; |
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var buf = 0; |
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for (var i = 0, ii = length; i < ii; ++i) { |
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if (i % rowComps == 0) { |
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mask = 0; |
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buf = 0; |
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} else { |
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mask >>= 1; |
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} |
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if (mask <= 0) { |
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buf = buffer[bufferPos++]; |
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mask = 128; |
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} |
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output[i] = !(buf & mask) ? valueZero : valueOne; |
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} |
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} else { |
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// The general case that handles all other bpc values. |
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var bits = 0, buf = 0; |
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for (var i = 0, ii = length; i < ii; ++i) { |
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if (i % rowComps == 0) { |
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buf = 0; |
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bits = 0; |
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} |
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while (bits < bpc) { |
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buf = (buf << 8) | buffer[bufferPos++]; |
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bits += 8; |
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} |
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var remainingBits = bits - bpc; |
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var value = buf >> remainingBits; |
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if (needsDecode) { |
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var compIndex = i % numComps; |
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value = decodeAndClamp(value, decodeAddends[compIndex], |
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decodeCoefficients[compIndex], max); |
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} |
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output[i] = value; |
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buf = buf & ((1 << remainingBits) - 1); |
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bits = remainingBits; |
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} |
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} |
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return output; |
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}, |
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getOpacity: function PDFImage_getOpacity(width, height, image) { |
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var smask = this.smask; |
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var mask = this.mask; |
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var originalWidth = this.width; |
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var originalHeight = this.height; |
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var buf; |
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if (smask) { |
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var sw = smask.width; |
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var sh = smask.height; |
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buf = new Uint8Array(sw * sh); |
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smask.fillGrayBuffer(buf); |
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if (sw != width || sh != height) |
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buf = PDFImage.resize(buf, smask.bpc, 1, sw, sh, width, height); |
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} else if (mask) { |
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if (mask instanceof PDFImage) { |
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var sw = mask.width; |
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var sh = mask.height; |
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buf = new Uint8Array(sw * sh); |
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mask.numComps = 1; |
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mask.fillGrayBuffer(buf); |
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// Need to invert values in buffer |
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for (var i = 0, ii = sw * sh; i < ii; ++i) |
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buf[i] = 255 - buf[i]; |
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if (sw != width || sh != height) |
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buf = PDFImage.resize(buf, mask.bpc, 1, sw, sh, width, height); |
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} else if (isArray(mask)) { |
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// Color key mask: if any of the compontents are outside the range |
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// then they should be painted. |
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buf = new Uint8Array(width * height); |
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var numComps = this.numComps; |
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for (var i = 0, ii = width * height; i < ii; ++i) { |
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var opacity = 0; |
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var imageOffset = i * numComps; |
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for (var j = 0; j < numComps; ++j) { |
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var color = image[imageOffset + j]; |
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var maskOffset = j * 2; |
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if (color < mask[maskOffset] || color > mask[maskOffset + 1]) { |
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opacity = 255; |
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break; |
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} |
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} |
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buf[i] = opacity; |
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} |
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} else { |
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error('Unknown mask format.'); |
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} |
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} else { |
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buf = new Uint8Array(width * height); |
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for (var i = 0, ii = width * height; i < ii; ++i) |
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buf[i] = 255; |
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} |
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return buf; |
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}, |
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applyStencilMask: function PDFImage_applyStencilMask(buffer, |
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inverseDecode) { |
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var width = this.width, height = this.height; |
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var bitStrideLength = (width + 7) >> 3; |
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var imgArray = this.getImageBytes(bitStrideLength * height); |
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var imgArrayPos = 0; |
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var i, j, mask, buf; |
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// removing making non-masked pixels transparent |
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var bufferPos = 3; // alpha component offset |
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for (i = 0; i < height; i++) { |
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mask = 0; |
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for (j = 0; j < width; j++) { |
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if (!mask) { |
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buf = imgArray[imgArrayPos++]; |
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mask = 128; |
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} |
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if (!(buf & mask) == inverseDecode) { |
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buffer[bufferPos] = 0; |
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} |
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bufferPos += 4; |
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mask >>= 1; |
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} |
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} |
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}, |
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fillRgbaBuffer: function PDFImage_fillRgbaBuffer(buffer, width, height) { |
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var numComps = this.numComps; |
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var originalWidth = this.width; |
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var originalHeight = this.height; |
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var bpc = this.bpc; |
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// rows start at byte boundary; |
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var rowBytes = (originalWidth * numComps * bpc + 7) >> 3; |
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var imgArray = this.getImageBytes(originalHeight * rowBytes); |
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// imgArray can be incomplete (e.g. after CCITT fax encoding) |
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var actualHeight = 0 | (imgArray.length / rowBytes * |
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height / originalHeight); |
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var comps = this.colorSpace.createRgbBuffer(this.getComponents(imgArray), |
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0, originalWidth * originalHeight, bpc); |
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if (originalWidth != width || originalHeight != height) |
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comps = PDFImage.resize(comps, this.bpc, 3, originalWidth, |
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originalHeight, width, height); |
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var compsPos = 0; |
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var opacity = this.getOpacity(width, height, imgArray); |
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var opacityPos = 0; |
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var length = width * actualHeight * 4; |
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for (var i = 0; i < length; i += 4) { |
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buffer[i] = comps[compsPos++]; |
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buffer[i + 1] = comps[compsPos++]; |
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buffer[i + 2] = comps[compsPos++]; |
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buffer[i + 3] = opacity[opacityPos++]; |
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} |
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}, |
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fillGrayBuffer: function PDFImage_fillGrayBuffer(buffer) { |
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var numComps = this.numComps; |
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if (numComps != 1) |
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error('Reading gray scale from a color image: ' + numComps); |
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var width = this.width; |
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var height = this.height; |
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var bpc = this.bpc; |
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// rows start at byte boundary; |
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var rowBytes = (width * numComps * bpc + 7) >> 3; |
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var imgArray = this.getImageBytes(height * rowBytes); |
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var comps = this.getComponents(imgArray); |
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var length = width * height; |
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// we aren't using a colorspace so we need to scale the value |
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var scale = 255 / ((1 << bpc) - 1); |
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for (var i = 0; i < length; ++i) |
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buffer[i] = (scale * comps[i]) | 0; |
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}, |
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getImageBytes: function PDFImage_getImageBytes(length) { |
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this.image.reset(); |
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return this.image.getBytes(length); |
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} |
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}; |
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return PDFImage; |
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})(); |
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function loadJpegStream(id, imageData, objs) { |
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var img = new Image(); |
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img.onload = (function loadJpegStream_onloadClosure() { |
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objs.resolve(id, img); |
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}); |
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img.src = 'data:image/jpeg;base64,' + window.btoa(imageData); |
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} |
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