am 565f2245: am a6671b70: am 6461e054: Merge "Add image comparison to LayoutLib tests." into lmp-dev
* commit '565f2245402f4fe6038942b03b9a35cfc0d48d86': Add image comparison to LayoutLib tests.
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/*
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* Copyright (C) 2014 The Android Open Source Project
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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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package com.android.layoutlib.bridge.intensive;
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import com.android.annotations.NonNull;
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import java.awt.AlphaComposite;
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import java.awt.Color;
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import java.awt.Graphics;
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import java.awt.Graphics2D;
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import java.awt.image.BufferedImage;
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import java.io.File;
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import java.io.IOException;
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import java.io.InputStream;
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import javax.imageio.ImageIO;
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import static java.awt.RenderingHints.*;
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import static java.awt.image.BufferedImage.TYPE_INT_ARGB;
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import static java.io.File.separatorChar;
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import static org.junit.Assert.assertEquals;
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import static org.junit.Assert.assertTrue;
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import static org.junit.Assert.fail;
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// Adapted by taking the relevant pieces of code from the following classes:
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//
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// com.android.tools.idea.rendering.ImageUtils,
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// com.android.tools.idea.tests.gui.framework.fixture.layout.ImageFixture and
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// com.android.tools.idea.rendering.RenderTestBase
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/**
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* Utilities related to image processing.
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*/
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public class ImageUtils {
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/**
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* Normally, this test will fail when there is a missing thumbnail. However, when
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* you create creating a new test, it's useful to be able to turn this off such that
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* you can generate all the missing thumbnails in one go, rather than having to run
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* the test repeatedly to get to each new render assertion generating its thumbnail.
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*/
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private static final boolean FAIL_ON_MISSING_THUMBNAIL = true;
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private static final int THUMBNAIL_SIZE = 250;
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private static final double MAX_PERCENT_DIFFERENCE = 0.1;
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public static void requireSimilar(@NonNull String relativePath, @NonNull BufferedImage image)
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throws IOException {
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int maxDimension = Math.max(image.getWidth(), image.getHeight());
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double scale = THUMBNAIL_SIZE / (double)maxDimension;
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BufferedImage thumbnail = scale(image, scale, scale);
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InputStream is = ImageUtils.class.getResourceAsStream(relativePath);
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if (is == null) {
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String message = "Unable to load golden thumbnail: " + relativePath + "\n";
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message = saveImageAndAppendMessage(thumbnail, message, relativePath);
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if (FAIL_ON_MISSING_THUMBNAIL) {
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fail(message);
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} else {
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System.out.println(message);
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}
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}
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else {
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BufferedImage goldenImage = ImageIO.read(is);
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assertImageSimilar(relativePath, goldenImage, thumbnail, MAX_PERCENT_DIFFERENCE);
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}
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}
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public static void assertImageSimilar(String relativePath, BufferedImage goldenImage,
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BufferedImage image, double maxPercentDifferent) throws IOException {
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assertEquals("Only TYPE_INT_ARGB image types are supported", TYPE_INT_ARGB, image.getType());
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if (goldenImage.getType() != TYPE_INT_ARGB) {
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BufferedImage temp = new BufferedImage(goldenImage.getWidth(), goldenImage.getHeight(),
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TYPE_INT_ARGB);
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temp.getGraphics().drawImage(goldenImage, 0, 0, null);
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goldenImage = temp;
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}
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assertEquals(TYPE_INT_ARGB, goldenImage.getType());
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int imageWidth = Math.min(goldenImage.getWidth(), image.getWidth());
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int imageHeight = Math.min(goldenImage.getHeight(), image.getHeight());
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// Blur the images to account for the scenarios where there are pixel
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// differences
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// in where a sharp edge occurs
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// goldenImage = blur(goldenImage, 6);
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// image = blur(image, 6);
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int width = 3 * imageWidth;
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@SuppressWarnings("UnnecessaryLocalVariable")
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int height = imageHeight; // makes code more readable
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BufferedImage deltaImage = new BufferedImage(width, height, TYPE_INT_ARGB);
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Graphics g = deltaImage.getGraphics();
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// Compute delta map
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long delta = 0;
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for (int y = 0; y < imageHeight; y++) {
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for (int x = 0; x < imageWidth; x++) {
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int goldenRgb = goldenImage.getRGB(x, y);
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int rgb = image.getRGB(x, y);
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if (goldenRgb == rgb) {
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deltaImage.setRGB(imageWidth + x, y, 0x00808080);
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continue;
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}
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// If the pixels have no opacity, don't delta colors at all
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if (((goldenRgb & 0xFF000000) == 0) && (rgb & 0xFF000000) == 0) {
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deltaImage.setRGB(imageWidth + x, y, 0x00808080);
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continue;
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}
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int deltaR = ((rgb & 0xFF0000) >>> 16) - ((goldenRgb & 0xFF0000) >>> 16);
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int newR = 128 + deltaR & 0xFF;
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int deltaG = ((rgb & 0x00FF00) >>> 8) - ((goldenRgb & 0x00FF00) >>> 8);
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int newG = 128 + deltaG & 0xFF;
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int deltaB = (rgb & 0x0000FF) - (goldenRgb & 0x0000FF);
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int newB = 128 + deltaB & 0xFF;
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int avgAlpha = ((((goldenRgb & 0xFF000000) >>> 24)
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+ ((rgb & 0xFF000000) >>> 24)) / 2) << 24;
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int newRGB = avgAlpha | newR << 16 | newG << 8 | newB;
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deltaImage.setRGB(imageWidth + x, y, newRGB);
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delta += Math.abs(deltaR);
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delta += Math.abs(deltaG);
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delta += Math.abs(deltaB);
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}
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}
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// 3 different colors, 256 color levels
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long total = imageHeight * imageWidth * 3L * 256L;
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float percentDifference = (float) (delta * 100 / (double) total);
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String error = null;
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String imageName = getName(relativePath);
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if (percentDifference > maxPercentDifferent) {
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error = String.format("Images differ (by %.1f%%)", percentDifference);
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} else if (Math.abs(goldenImage.getWidth() - image.getWidth()) >= 2) {
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error = "Widths differ too much for " + imageName + ": " +
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goldenImage.getWidth() + "x" + goldenImage.getHeight() +
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"vs" + image.getWidth() + "x" + image.getHeight();
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} else if (Math.abs(goldenImage.getHeight() - image.getHeight()) >= 2) {
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error = "Heights differ too much for " + imageName + ": " +
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goldenImage.getWidth() + "x" + goldenImage.getHeight() +
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"vs" + image.getWidth() + "x" + image.getHeight();
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}
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assertEquals(TYPE_INT_ARGB, image.getType());
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if (error != null) {
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// Expected on the left
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// Golden on the right
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g.drawImage(goldenImage, 0, 0, null);
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g.drawImage(image, 2 * imageWidth, 0, null);
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// Labels
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if (imageWidth > 80) {
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g.setColor(Color.RED);
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g.drawString("Expected", 10, 20);
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g.drawString("Actual", 2 * imageWidth + 10, 20);
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}
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File output = new File(getTempDir(), "delta-" + imageName);
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if (output.exists()) {
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boolean deleted = output.delete();
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assertTrue(deleted);
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}
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ImageIO.write(deltaImage, "PNG", output);
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error += " - see details in " + output.getPath() + "\n";
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error = saveImageAndAppendMessage(image, error, relativePath);
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System.out.println(error);
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fail(error);
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}
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g.dispose();
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}
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/**
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* Resize the given image
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*
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* @param source the image to be scaled
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* @param xScale x scale
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* @param yScale y scale
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* @return the scaled image
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*/
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@NonNull
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public static BufferedImage scale(@NonNull BufferedImage source, double xScale, double yScale) {
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int sourceWidth = source.getWidth();
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int sourceHeight = source.getHeight();
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int destWidth = Math.max(1, (int) (xScale * sourceWidth));
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int destHeight = Math.max(1, (int) (yScale * sourceHeight));
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int imageType = source.getType();
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if (imageType == BufferedImage.TYPE_CUSTOM) {
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imageType = BufferedImage.TYPE_INT_ARGB;
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}
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if (xScale > 0.5 && yScale > 0.5) {
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BufferedImage scaled =
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new BufferedImage(destWidth, destHeight, imageType);
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Graphics2D g2 = scaled.createGraphics();
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g2.setComposite(AlphaComposite.Src);
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g2.setColor(new Color(0, true));
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g2.fillRect(0, 0, destWidth, destHeight);
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if (xScale == 1 && yScale == 1) {
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g2.drawImage(source, 0, 0, null);
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} else {
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setRenderingHints(g2);
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g2.drawImage(source, 0, 0, destWidth, destHeight, 0, 0, sourceWidth, sourceHeight,
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null);
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}
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g2.dispose();
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return scaled;
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} else {
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// When creating a thumbnail, using the above code doesn't work very well;
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// you get some visible artifacts, especially for text. Instead use the
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// technique of repeatedly scaling the image into half; this will cause
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// proper averaging of neighboring pixels, and will typically (for the kinds
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// of screen sizes used by this utility method in the layout editor) take
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// about 3-4 iterations to get the result since we are logarithmically reducing
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// the size. Besides, each successive pass in operating on much fewer pixels
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// (a reduction of 4 in each pass).
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//
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// However, we may not be resizing to a size that can be reached exactly by
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// successively diving in half. Therefore, once we're within a factor of 2 of
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// the final size, we can do a resize to the exact target size.
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// However, we can get even better results if we perform this final resize
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// up front. Let's say we're going from width 1000 to a destination width of 85.
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// The first approach would cause a resize from 1000 to 500 to 250 to 125, and
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// then a resize from 125 to 85. That last resize can distort/blur a lot.
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// Instead, we can start with the destination width, 85, and double it
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// successfully until we're close to the initial size: 85, then 170,
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// then 340, and finally 680. (The next one, 1360, is larger than 1000).
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// So, now we *start* the thumbnail operation by resizing from width 1000 to
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// width 680, which will preserve a lot of visual details such as text.
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// Then we can successively resize the image in half, 680 to 340 to 170 to 85.
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// We end up with the expected final size, but we've been doing an exact
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// divide-in-half resizing operation at the end so there is less distortion.
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int iterations = 0; // Number of halving operations to perform after the initial resize
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int nearestWidth = destWidth; // Width closest to source width that = 2^x, x is integer
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int nearestHeight = destHeight;
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while (nearestWidth < sourceWidth / 2) {
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nearestWidth *= 2;
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nearestHeight *= 2;
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iterations++;
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}
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BufferedImage scaled = new BufferedImage(nearestWidth, nearestHeight, imageType);
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Graphics2D g2 = scaled.createGraphics();
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setRenderingHints(g2);
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g2.drawImage(source, 0, 0, nearestWidth, nearestHeight, 0, 0, sourceWidth, sourceHeight,
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null);
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g2.dispose();
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sourceWidth = nearestWidth;
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sourceHeight = nearestHeight;
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source = scaled;
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for (int iteration = iterations - 1; iteration >= 0; iteration--) {
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int halfWidth = sourceWidth / 2;
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int halfHeight = sourceHeight / 2;
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scaled = new BufferedImage(halfWidth, halfHeight, imageType);
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g2 = scaled.createGraphics();
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setRenderingHints(g2);
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g2.drawImage(source, 0, 0, halfWidth, halfHeight, 0, 0, sourceWidth, sourceHeight,
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null);
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g2.dispose();
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sourceWidth = halfWidth;
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sourceHeight = halfHeight;
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source = scaled;
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iterations--;
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}
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return scaled;
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}
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}
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private static void setRenderingHints(@NonNull Graphics2D g2) {
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g2.setRenderingHint(KEY_INTERPOLATION,VALUE_INTERPOLATION_BILINEAR);
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g2.setRenderingHint(KEY_RENDERING, VALUE_RENDER_QUALITY);
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g2.setRenderingHint(KEY_ANTIALIASING, VALUE_ANTIALIAS_ON);
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}
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/**
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* Temp directory where to write the thumbnails and deltas.
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*/
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@NonNull
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private static File getTempDir() {
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if (System.getProperty("os.name").equals("Mac OS X")) {
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return new File("/tmp"); //$NON-NLS-1$
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}
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return new File(System.getProperty("java.io.tmpdir")); //$NON-NLS-1$
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}
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/**
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* Saves the generated thumbnail image and appends the info message to an initial message
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*/
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@NonNull
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private static String saveImageAndAppendMessage(@NonNull BufferedImage image,
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@NonNull String initialMessage, @NonNull String relativePath) throws IOException {
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File output = new File(getTempDir(), getName(relativePath));
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if (output.exists()) {
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boolean deleted = output.delete();
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assertTrue(deleted);
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}
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ImageIO.write(image, "PNG", output);
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initialMessage += "Thumbnail for current rendering stored at " + output.getPath();
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// initialMessage += "\nRun the following command to accept the changes:\n";
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// initialMessage += String.format("mv %1$s %2$s", output.getPath(),
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// ImageUtils.class.getResource(relativePath).getPath());
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// The above has been commented out, since the destination path returned is in out dir
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// and it makes the tests pass without the code being actually checked in.
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return initialMessage;
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}
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private static String getName(@NonNull String relativePath) {
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return relativePath.substring(relativePath.lastIndexOf(separatorChar) + 1);
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}
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}
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@@ -39,6 +39,7 @@ import org.junit.Test;
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import java.io.File;
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import java.io.FileFilter;
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import java.io.IOException;
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import java.net.URL;
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import java.util.Arrays;
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import java.util.Comparator;
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@@ -280,6 +281,12 @@ public class Main {
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getLogger().error(session.getResult().getException(),
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session.getResult().getErrorMessage());
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}
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String goldenDataDir = APP_TEST_RES + "/../../../golden/";
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try {
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ImageUtils.requireSimilar(goldenDataDir + "activity.png", session.getImage());
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} catch (IOException e) {
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getLogger().error(e, e.getMessage());
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}
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}
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/**
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Reference in New Issue
Block a user