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AFPImageHandlerRenderedImage.java 16KB

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  1. /*
  2. * Licensed to the Apache Software Foundation (ASF) under one or more
  3. * contributor license agreements. See the NOTICE file distributed with
  4. * this work for additional information regarding copyright ownership.
  5. * The ASF licenses this file to You under the Apache License, Version 2.0
  6. * (the "License"); you may not use this file except in compliance with
  7. * the License. You may obtain a copy of the License at
  8. *
  9. * http://www.apache.org/licenses/LICENSE-2.0
  10. *
  11. * Unless required by applicable law or agreed to in writing, software
  12. * distributed under the License is distributed on an "AS IS" BASIS,
  13. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  14. * See the License for the specific language governing permissions and
  15. * limitations under the License.
  16. */
  17. /* $Id$ */
  18. package org.apache.fop.render.afp;
  19. import java.awt.Dimension;
  20. import java.awt.Rectangle;
  21. import java.awt.image.ColorModel;
  22. import java.awt.image.DataBuffer;
  23. import java.awt.image.DataBufferByte;
  24. import java.awt.image.MultiPixelPackedSampleModel;
  25. import java.awt.image.Raster;
  26. import java.awt.image.RenderedImage;
  27. import java.awt.image.SampleModel;
  28. import java.io.IOException;
  29. import java.io.OutputStream;
  30. import org.apache.commons.io.output.ByteArrayOutputStream;
  31. import org.apache.commons.logging.Log;
  32. import org.apache.commons.logging.LogFactory;
  33. import org.apache.xmlgraphics.image.loader.Image;
  34. import org.apache.xmlgraphics.image.loader.ImageFlavor;
  35. import org.apache.xmlgraphics.image.loader.ImageInfo;
  36. import org.apache.xmlgraphics.image.loader.ImageSize;
  37. import org.apache.xmlgraphics.image.loader.impl.ImageRendered;
  38. import org.apache.xmlgraphics.ps.ImageEncodingHelper;
  39. import org.apache.xmlgraphics.util.MimeConstants;
  40. import org.apache.xmlgraphics.util.UnitConv;
  41. import org.apache.fop.afp.AFPDataObjectInfo;
  42. import org.apache.fop.afp.AFPImageObjectInfo;
  43. import org.apache.fop.afp.AFPObjectAreaInfo;
  44. import org.apache.fop.afp.AFPPaintingState;
  45. import org.apache.fop.afp.AFPResourceInfo;
  46. import org.apache.fop.afp.AFPResourceManager;
  47. import org.apache.fop.afp.modca.ResourceObject;
  48. import org.apache.fop.render.ImageHandler;
  49. import org.apache.fop.render.RenderingContext;
  50. import org.apache.fop.util.bitmap.BitmapImageUtil;
  51. /**
  52. * PDFImageHandler implementation which handles RenderedImage instances.
  53. */
  54. public class AFPImageHandlerRenderedImage extends AFPImageHandler implements ImageHandler {
  55. /** logging instance */
  56. private static Log log = LogFactory.getLog(AFPImageHandlerRenderedImage.class);
  57. private static final ImageFlavor[] FLAVORS = new ImageFlavor[] {
  58. ImageFlavor.BUFFERED_IMAGE,
  59. ImageFlavor.RENDERED_IMAGE
  60. };
  61. private void setDefaultResourceLevel(AFPImageObjectInfo imageObjectInfo,
  62. AFPResourceManager resourceManager) {
  63. AFPResourceInfo resourceInfo = imageObjectInfo.getResourceInfo();
  64. if (!resourceInfo.levelChanged()) {
  65. resourceInfo.setLevel(resourceManager.getResourceLevelDefaults()
  66. .getDefaultResourceLevel(ResourceObject.TYPE_IMAGE));
  67. }
  68. }
  69. /** {@inheritDoc} */
  70. @Override
  71. protected AFPDataObjectInfo createDataObjectInfo() {
  72. return new AFPImageObjectInfo();
  73. }
  74. /** {@inheritDoc} */
  75. public int getPriority() {
  76. return 300;
  77. }
  78. /** {@inheritDoc} */
  79. public Class getSupportedImageClass() {
  80. return ImageRendered.class;
  81. }
  82. /** {@inheritDoc} */
  83. public ImageFlavor[] getSupportedImageFlavors() {
  84. return FLAVORS;
  85. }
  86. /** {@inheritDoc} */
  87. public void handleImage(RenderingContext context, Image image, Rectangle pos)
  88. throws IOException {
  89. AFPRenderingContext afpContext = (AFPRenderingContext)context;
  90. AFPImageObjectInfo imageObjectInfo = (AFPImageObjectInfo)createDataObjectInfo();
  91. AFPPaintingState paintingState = afpContext.getPaintingState();
  92. // set resource information
  93. setResourceInformation(imageObjectInfo,
  94. image.getInfo().getOriginalURI(),
  95. afpContext.getForeignAttributes());
  96. setDefaultResourceLevel(imageObjectInfo, afpContext.getResourceManager());
  97. // Positioning
  98. imageObjectInfo.setObjectAreaInfo(createObjectAreaInfo(paintingState, pos));
  99. Dimension targetSize = pos.getSize();
  100. // Image content
  101. ImageRendered imageRend = (ImageRendered)image;
  102. RenderedImageEncoder encoder = new RenderedImageEncoder(imageRend, targetSize);
  103. encoder.prepareEncoding(imageObjectInfo, paintingState);
  104. boolean included = afpContext.getResourceManager().tryIncludeObject(imageObjectInfo);
  105. if (!included) {
  106. long start = System.currentTimeMillis();
  107. //encode only if the same image has not been encoded, yet
  108. encoder.encodeImage(imageObjectInfo, paintingState);
  109. if (log.isDebugEnabled()) {
  110. long duration = System.currentTimeMillis() - start;
  111. log.debug("Image encoding took " + duration + "ms.");
  112. }
  113. // Create image
  114. afpContext.getResourceManager().createObject(imageObjectInfo);
  115. }
  116. }
  117. /** {@inheritDoc} */
  118. public boolean isCompatible(RenderingContext targetContext, Image image) {
  119. return (image == null || image instanceof ImageRendered)
  120. && targetContext instanceof AFPRenderingContext;
  121. }
  122. private static final class RenderedImageEncoder {
  123. private ImageRendered imageRendered;
  124. private Dimension targetSize;
  125. private boolean useFS10;
  126. private int maxPixelSize;
  127. private boolean usePageSegments;
  128. private Dimension resampledDim;
  129. private ImageSize intrinsicSize;
  130. private ImageSize effIntrinsicSize;
  131. private RenderedImageEncoder(ImageRendered imageRendered, Dimension targetSize) {
  132. this.imageRendered = imageRendered;
  133. this.targetSize = targetSize;
  134. }
  135. private void prepareEncoding(AFPImageObjectInfo imageObjectInfo,
  136. AFPPaintingState paintingState) {
  137. maxPixelSize = paintingState.getBitsPerPixel();
  138. if (paintingState.isColorImages()) {
  139. if (paintingState.isCMYKImagesSupported()) {
  140. maxPixelSize *= 4; //CMYK is maximum
  141. } else {
  142. maxPixelSize *= 3; //RGB is maximum
  143. }
  144. }
  145. RenderedImage renderedImage = imageRendered.getRenderedImage();
  146. useFS10 = (maxPixelSize == 1) || BitmapImageUtil.isMonochromeImage(renderedImage);
  147. ImageInfo imageInfo = imageRendered.getInfo();
  148. this.intrinsicSize = imageInfo.getSize();
  149. this.effIntrinsicSize = intrinsicSize;
  150. AFPResourceInfo resourceInfo = imageObjectInfo.getResourceInfo();
  151. this.usePageSegments = useFS10 && !resourceInfo.getLevel().isInline();
  152. if (usePageSegments) {
  153. //The image may need to be resized/resampled for use as a page segment
  154. int resolution = paintingState.getResolution();
  155. this.resampledDim = new Dimension(
  156. (int)Math.ceil(UnitConv.mpt2px(targetSize.getWidth(), resolution)),
  157. (int)Math.ceil(UnitConv.mpt2px(targetSize.getHeight(), resolution)));
  158. resourceInfo.setImageDimension(resampledDim);
  159. effIntrinsicSize = new ImageSize(
  160. resampledDim.width, resampledDim.height, resolution);
  161. }
  162. //Update image object info
  163. imageObjectInfo.setDataHeightRes((int)Math.round(
  164. effIntrinsicSize.getDpiHorizontal() * 10));
  165. imageObjectInfo.setDataWidthRes((int)Math.round(
  166. effIntrinsicSize.getDpiVertical() * 10));
  167. imageObjectInfo.setDataHeight(effIntrinsicSize.getHeightPx());
  168. imageObjectInfo.setDataWidth(effIntrinsicSize.getWidthPx());
  169. // set object area info
  170. int resolution = paintingState.getResolution();
  171. AFPObjectAreaInfo objectAreaInfo = imageObjectInfo.getObjectAreaInfo();
  172. objectAreaInfo.setWidthRes(resolution);
  173. objectAreaInfo.setHeightRes(resolution);
  174. }
  175. private AFPDataObjectInfo encodeImage
  176. (AFPImageObjectInfo imageObjectInfo,
  177. AFPPaintingState paintingState)
  178. throws IOException {
  179. RenderedImage renderedImage = imageRendered.getRenderedImage();
  180. int functionSet = useFS10 ? 10 : 11;
  181. if (usePageSegments) {
  182. assert resampledDim != null;
  183. //Resize, optionally resample and convert image
  184. imageObjectInfo.setCreatePageSegment(true);
  185. float ditheringQuality = paintingState.getDitheringQuality();
  186. //Only resample/downsample if image is smaller than its intrinsic size
  187. //to make print file smaller
  188. boolean resample = resampledDim.width < renderedImage.getWidth()
  189. && resampledDim.height < renderedImage.getHeight();
  190. if (resample) {
  191. if (log.isDebugEnabled()) {
  192. log.debug("Resample from " + intrinsicSize.getDimensionPx()
  193. + " to " + resampledDim);
  194. }
  195. renderedImage = BitmapImageUtil.convertToMonochrome(renderedImage,
  196. resampledDim, ditheringQuality);
  197. } else if (ditheringQuality >= 0.5f) {
  198. renderedImage = BitmapImageUtil.convertToMonochrome(renderedImage,
  199. intrinsicSize.getDimensionPx(), ditheringQuality);
  200. }
  201. }
  202. //TODO To reduce AFP file size, investigate using a compression scheme.
  203. //Currently, all image data is uncompressed.
  204. ColorModel cm = renderedImage.getColorModel();
  205. if (log.isTraceEnabled()) {
  206. log.trace("ColorModel: " + cm);
  207. }
  208. int pixelSize = cm.getPixelSize();
  209. if (cm.hasAlpha()) {
  210. pixelSize -= 8;
  211. }
  212. byte[] imageData = null;
  213. ByteArrayOutputStream baos = new ByteArrayOutputStream();
  214. boolean allowDirectEncoding = true;
  215. if (allowDirectEncoding && (pixelSize <= maxPixelSize)) {
  216. //Attempt to encode without resampling the image
  217. ImageEncodingHelper helper = new ImageEncodingHelper(renderedImage,
  218. pixelSize == 32);
  219. ColorModel encodedColorModel = helper.getEncodedColorModel();
  220. boolean directEncode = true;
  221. if (helper.getEncodedColorModel().getPixelSize() > maxPixelSize) {
  222. directEncode = false; //pixel size needs to be reduced
  223. }
  224. if (BitmapImageUtil.getColorIndexSize(renderedImage) > 2) {
  225. directEncode = false; //Lookup tables are not implemented, yet
  226. }
  227. if (useFS10
  228. && BitmapImageUtil.isMonochromeImage(renderedImage)
  229. && BitmapImageUtil.isZeroBlack(renderedImage)) {
  230. directEncode = false;
  231. //need a special method to invert the bit-stream since setting the
  232. //subtractive mode in AFP alone doesn't seem to do the trick.
  233. if (encodeInvertedBilevel(helper, imageObjectInfo, baos)) {
  234. imageData = baos.toByteArray();
  235. }
  236. }
  237. if (directEncode) {
  238. log.debug("Encoding image directly...");
  239. imageObjectInfo.setBitsPerPixel(encodedColorModel.getPixelSize());
  240. if (pixelSize == 32) {
  241. functionSet = 45; //IOCA FS45 required for CMYK
  242. }
  243. helper.encode(baos);
  244. imageData = baos.toByteArray();
  245. }
  246. }
  247. if (imageData == null) {
  248. log.debug("Encoding image via RGB...");
  249. imageData = encodeViaRGB(renderedImage, imageObjectInfo, paintingState, baos);
  250. }
  251. switch (functionSet) {
  252. case 10:
  253. imageObjectInfo.setMimeType(MimeConstants.MIME_AFP_IOCA_FS10);
  254. break;
  255. case 11:
  256. imageObjectInfo.setMimeType(MimeConstants.MIME_AFP_IOCA_FS11);
  257. break;
  258. case 45:
  259. imageObjectInfo.setMimeType(MimeConstants.MIME_AFP_IOCA_FS45);
  260. break;
  261. default:
  262. throw new IllegalStateException("Invalid IOCA function set: " + functionSet);
  263. }
  264. imageObjectInfo.setData(imageData);
  265. return imageObjectInfo;
  266. }
  267. private byte[] encodeViaRGB(RenderedImage renderedImage,
  268. AFPImageObjectInfo imageObjectInfo, AFPPaintingState paintingState,
  269. ByteArrayOutputStream baos) throws IOException {
  270. byte[] imageData;
  271. //Convert image to 24bit RGB
  272. ImageEncodingHelper.encodeRenderedImageAsRGB(renderedImage, baos);
  273. imageData = baos.toByteArray();
  274. imageObjectInfo.setBitsPerPixel(24);
  275. boolean colorImages = paintingState.isColorImages();
  276. imageObjectInfo.setColor(colorImages);
  277. // convert to grayscale
  278. if (!colorImages) {
  279. log.debug("Converting RGB image to grayscale...");
  280. baos.reset();
  281. int bitsPerPixel = paintingState.getBitsPerPixel();
  282. imageObjectInfo.setBitsPerPixel(bitsPerPixel);
  283. //TODO this should be done off the RenderedImage to avoid buffering the
  284. //intermediate 24bit image
  285. ImageEncodingHelper.encodeRGBAsGrayScale(
  286. imageData, renderedImage.getWidth(), renderedImage.getHeight(),
  287. bitsPerPixel, baos);
  288. imageData = baos.toByteArray();
  289. if (bitsPerPixel == 1) {
  290. imageObjectInfo.setSubtractive(true);
  291. }
  292. }
  293. return imageData;
  294. }
  295. /**
  296. * Efficiently encodes a bi-level image in inverted form as a plain bit-stream.
  297. * @param helper the image encoding helper used to analyze the image
  298. * @param imageObjectInfo the AFP image object
  299. * @param out the output stream
  300. * @return true if the image was encoded, false if there was something prohibiting that
  301. * @throws IOException if an I/O error occurs
  302. */
  303. private boolean encodeInvertedBilevel(ImageEncodingHelper helper,
  304. AFPImageObjectInfo imageObjectInfo, OutputStream out) throws IOException {
  305. RenderedImage renderedImage = helper.getImage();
  306. if (!BitmapImageUtil.isMonochromeImage(renderedImage)) {
  307. throw new IllegalStateException("This method only supports binary images!");
  308. }
  309. int tiles = renderedImage.getNumXTiles() * renderedImage.getNumYTiles();
  310. if (tiles > 1) {
  311. return false;
  312. }
  313. SampleModel sampleModel = renderedImage.getSampleModel();
  314. SampleModel expectedSampleModel = new MultiPixelPackedSampleModel(DataBuffer.TYPE_BYTE,
  315. renderedImage.getWidth(), renderedImage.getHeight(), 1);
  316. if (!expectedSampleModel.equals(sampleModel)) {
  317. return false; //Pixels are not packed
  318. }
  319. imageObjectInfo.setBitsPerPixel(1);
  320. Raster raster = renderedImage.getTile(0, 0);
  321. DataBuffer buffer = raster.getDataBuffer();
  322. if (buffer instanceof DataBufferByte) {
  323. DataBufferByte byteBuffer = (DataBufferByte)buffer;
  324. log.debug("Encoding image as inverted bi-level...");
  325. byte[] rawData = byteBuffer.getData();
  326. int remaining = rawData.length;
  327. int pos = 0;
  328. byte[] data = new byte[4096];
  329. while (remaining > 0) {
  330. int size = Math.min(remaining, data.length);
  331. for (int i = 0; i < size; i++) {
  332. data[i] = (byte)~rawData[pos]; //invert bits
  333. pos++;
  334. }
  335. out.write(data, 0, size);
  336. remaining -= size;
  337. }
  338. return true;
  339. }
  340. return false;
  341. }
  342. }
  343. }