/* ***** BEGIN LICENSE BLOCK ***** * Version: MPL 1.1/GPL 2.0/LGPL 2.1 * * The contents of this file are subject to the Mozilla Public License Version * 1.1 (the "License"); you may not use this file except in compliance with * the License. You may obtain a copy of the License at * http://www.mozilla.org/MPL/ * * Software distributed under the License is distributed on an "AS IS" basis, * WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License * for the specific language governing rights and limitations under the * License. * * The Original Code is part of dcm4che, an implementation of DICOM(TM) in * Java(TM), hosted at https://github.com/gunterze/dcm4che. * * The Initial Developer of the Original Code is * Agfa Healthcare. * Portions created by the Initial Developer are Copyright (C) 2013 * the Initial Developer. All Rights Reserved. * * Contributor(s): * See @authors listed below * * Alternatively, the contents of this file may be used under the terms of * either the GNU General Public License Version 2 or later (the "GPL"), or * the GNU Lesser General Public License Version 2.1 or later (the "LGPL"), * in which case the provisions of the GPL or the LGPL are applicable instead * of those above. If you wish to allow use of your version of this file only * under the terms of either the GPL or the LGPL, and not to allow others to * use your version of this file under the terms of the MPL, indicate your * decision by deleting the provisions above and replace them with the notice * and other provisions required by the GPL or the LGPL. If you do not delete * the provisions above, a recipient may use your version of this file under * the terms of any one of the MPL, the GPL or the LGPL. * * ***** END LICENSE BLOCK ***** */ package org.dcm4che3.image; import java.awt.image.ComponentSampleModel; import java.awt.image.DataBuffer; import java.awt.image.DataBufferByte; import java.awt.image.DataBufferShort; import java.awt.image.DataBufferUShort; import java.awt.image.Raster; import java.awt.image.WritableRaster; import java.util.Arrays; import org.dcm4che3.data.Tag; import org.dcm4che3.data.Attributes; import org.dcm4che3.data.Sequence; import org.dcm4che3.util.TagUtils; /** * @author Gunter Zeilinger <gunterze@gmail.com> * */ public class Overlays { public static int[] getActiveOverlayGroupOffsets(Attributes psattrs) { return getOverlayGroupOffsets(psattrs, Tag.OverlayActivationLayer, -1); } public static int[] getActiveOverlayGroupOffsets(Attributes attrs, int activationMask) { return getOverlayGroupOffsets(attrs, Tag.OverlayRows, activationMask); } public static int[] getOverlayGroupOffsets(Attributes attrs, int tag, int activationMask) { int len = 0; int[] result = new int[16]; for (int i = 0; i < result.length; i++) { int gg0000 = i << 17; if ((activationMask & (1<<i)) != 0 && attrs.containsValue(tag | gg0000)) result[len++] = gg0000; } return Arrays.copyOf(result, len); } public static int[] getEmbeddedOverlayGroupOffsets(Attributes attrs) { int len = 0; int[] result = new int[16]; for (int i = 0; i < result.length; i++) { int gg0000 = i << 17; if (attrs.getInt(Tag.OverlayBitsAllocated | gg0000, 1) != 1) result[len++] = gg0000; } return Arrays.copyOf(result, len); } public static void extractFromPixeldata(Raster raster, int mask, byte[] ovlyData, int off, int length) { ComponentSampleModel sm = (ComponentSampleModel) raster.getSampleModel(); int rows = raster.getHeight(); int columns = raster.getWidth(); int stride = sm.getScanlineStride(); DataBuffer db = raster.getDataBuffer(); switch (db.getDataType()) { case DataBuffer.TYPE_BYTE: extractFromPixeldata(((DataBufferByte) db).getData(), rows, columns, stride, mask, ovlyData, off, length); break; case DataBuffer.TYPE_USHORT: extractFromPixeldata(((DataBufferUShort) db).getData(), rows, columns, stride, mask, ovlyData, off, length); break; case DataBuffer.TYPE_SHORT: extractFromPixeldata(((DataBufferShort) db).getData(), rows, columns, stride, mask, ovlyData, off, length); break; default: throw new UnsupportedOperationException( "Unsupported DataBuffer type: " + db.getDataType()); } } private static void extractFromPixeldata(byte[] pixeldata, int rows, int columns, int stride, int mask, byte[] ovlyData, int off, int length) { for (int y = 0, i = off, imax = off + length; y < columns && i < imax; y++) { for (int j = y * stride, jmax = j + rows; j < jmax && i < imax; j++, i++) { if ((pixeldata[j] & mask) != 0) ovlyData[i >>> 3] |= 1 << (i & 7); } } } private static void extractFromPixeldata(short[] pixeldata, int rows, int columns, int stride, int mask, byte[] ovlyData, int off, int length) { for (int y = 0, i = off, imax = off + length; y < rows && i < imax; y++) { for (int j = y * stride, jmax = j + columns; j < jmax && i < imax; j++, i++) { if ((pixeldata[j] & mask) != 0) { ovlyData[i >>> 3] |= 1 << (i & 7); } } } } public static int getRecommendedDisplayGrayscaleValue(Attributes psAttrs, int gg0000) { int tagOverlayActivationLayer = Tag.OverlayActivationLayer | gg0000; String layerName = psAttrs.getString(tagOverlayActivationLayer); if (layerName == null) throw new IllegalArgumentException("Missing " + TagUtils.toString(tagOverlayActivationLayer) + " Overlay Activation Layer"); Sequence layers = psAttrs.getSequence(Tag.GraphicLayerSequence); if (layers == null) throw new IllegalArgumentException("Missing " + TagUtils.toString(Tag.GraphicLayerSequence) + " Graphic Layer Sequence"); for (Attributes layer : layers) if (layerName.equals(layer.getString(Tag.GraphicLayer))) return layer.getInt(Tag.RecommendedDisplayGrayscaleValue, -1); throw new IllegalArgumentException("No Graphic Layer: " + layerName); } public static void applyOverlay(int frameIndex, WritableRaster raster, Attributes attrs, int gg0000, int pixelValue, byte[] ovlyData) { int imageFrameOrigin = attrs.getInt(Tag.ImageFrameOrigin | gg0000, 1); int framesInOverlay = attrs.getInt(Tag.NumberOfFramesInOverlay | gg0000, 1); int ovlyFrameIndex = frameIndex - imageFrameOrigin + 1; if (ovlyFrameIndex < 0 || ovlyFrameIndex >= framesInOverlay) return; int tagOverlayRows = Tag.OverlayRows | gg0000; int tagOverlayColumns = Tag.OverlayColumns | gg0000; int tagOverlayData = Tag.OverlayData | gg0000; int tagOverlayOrigin = Tag.OverlayOrigin | gg0000; int ovlyRows = attrs.getInt(tagOverlayRows, -1); int ovlyColumns = attrs.getInt(tagOverlayColumns, -1); int[] ovlyOrigin = attrs.getInts(tagOverlayOrigin); if (ovlyData == null) ovlyData = attrs.getSafeBytes(tagOverlayData); if (ovlyData == null) throw new IllegalArgumentException("Missing " + TagUtils.toString(tagOverlayData) + " Overlay Data"); if (ovlyRows <= 0) throw new IllegalArgumentException( TagUtils.toString(tagOverlayRows) + " Overlay Rows [" + ovlyRows + "]"); if (ovlyColumns <= 0) throw new IllegalArgumentException( TagUtils.toString(tagOverlayColumns) + " Overlay Columns [" + ovlyColumns + "]"); if (ovlyOrigin == null) throw new IllegalArgumentException("Missing " + TagUtils.toString(tagOverlayOrigin) + " Overlay Origin"); if (ovlyOrigin.length != 2) throw new IllegalArgumentException( TagUtils.toString(tagOverlayOrigin) + " Overlay Origin " + Arrays.toString(ovlyOrigin)); int x0 = ovlyOrigin[1] - 1; int y0 = ovlyOrigin[0] - 1; int ovlyLen = ovlyRows * ovlyColumns; int ovlyOff = ovlyLen * ovlyFrameIndex; for (int i = ovlyOff >>> 3, end = (ovlyOff + ovlyLen + 7) >>> 3; i < end; i++) { int ovlyBits = ovlyData[i] & 0xff; for (int j = 0; (ovlyBits>>>j) != 0; j++) { if ((ovlyBits & (1<<j)) == 0) continue; int ovlyIndex = ((i<<3) + j) - ovlyOff; if (ovlyIndex >= ovlyLen) continue; int y = y0 + ovlyIndex / ovlyColumns; int x = x0 + ovlyIndex % ovlyColumns; try { raster.setSample(x, y, 0, pixelValue); } catch (ArrayIndexOutOfBoundsException ignore) {} } } } }