/* * ------------------------------------------------------------------------ * * Copyright (C) 2003 - 2013 * University of Konstanz, Germany and * KNIME GmbH, Konstanz, Germany * Website: http://www.knime.org; Email: contact@knime.org * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License, Version 3, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but * WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, see <http://www.gnu.org/licenses>. * * Additional permission under GNU GPL version 3 section 7: * * KNIME interoperates with ECLIPSE solely via ECLIPSE's plug-in APIs. * Hence, KNIME and ECLIPSE are both independent programs and are not * derived from each other. Should, however, the interpretation of the * GNU GPL Version 3 ("License") under any applicable laws result in * KNIME and ECLIPSE being a combined program, KNIME GMBH herewith grants * you the additional permission to use and propagate KNIME together with * ECLIPSE with only the license terms in place for ECLIPSE applying to * ECLIPSE and the GNU GPL Version 3 applying for KNIME, provided the * license terms of ECLIPSE themselves allow for the respective use and * propagation of ECLIPSE together with KNIME. * * Additional permission relating to nodes for KNIME that extend the Node * Extension (and in particular that are based on subclasses of NodeModel, * NodeDialog, and NodeView) and that only interoperate with KNIME through * standard APIs ("Nodes"): * Nodes are deemed to be separate and independent programs and to not be * covered works. Notwithstanding anything to the contrary in the * License, the License does not apply to Nodes, you are not required to * license Nodes under the License, and you are granted a license to * prepare and propagate Nodes, in each case even if such Nodes are * propagated with or for interoperation with KNIME. The owner of a Node * may freely choose the license terms applicable to such Node, including * when such Node is propagated with or for interoperation with KNIME. * --------------------------------------------------------------------- * * */ package org.knime.knip.base.nodes.proc; import java.util.List; import net.imagej.ImgPlus; import net.imglib2.converter.read.ConvertedRandomAccessibleInterval; import net.imglib2.img.Img; import net.imglib2.img.ImgView; import net.imglib2.ops.img.UnaryOperationBasedConverter; import net.imglib2.ops.operation.UnaryOperation; import net.imglib2.ops.operation.real.unary.RealUnaryOperation; import net.imglib2.type.numeric.IntegerType; import net.imglib2.type.numeric.RealType; import org.knime.core.node.ExecutionContext; import org.knime.core.node.defaultnodesettings.SettingsModel; import org.knime.knip.base.data.img.ImgPlusCell; import org.knime.knip.base.data.img.ImgPlusCellFactory; import org.knime.knip.base.data.img.ImgPlusValue; import org.knime.knip.base.node.ValueToCellNodeDialog; import org.knime.knip.base.node.ValueToCellNodeFactory; import org.knime.knip.base.node.ValueToCellNodeModel; import org.knime.node.v210.FullDescriptionDocument.FullDescription; import org.knime.node.v210.KnimeNodeDocument; import org.knime.node.v210.KnimeNodeDocument.KnimeNode; /** * Factory class to produce an image inverter node. * * Use InverterNodeFactory * * @param <T> * * @author <a href="mailto:dietzc85@googlemail.com">Christian Dietz</a> * @author <a href="mailto:horn_martin@gmx.de">Martin Horn</a> * @author <a href="mailto:michael.zinsmaier@googlemail.com">Michael Zinsmaier</a> */ @Deprecated public class InvertNodeFactory<T extends RealType<T>> extends ValueToCellNodeFactory<ImgPlusValue<T>> { /** * {@inheritDoc} */ @Override protected void createNodeDescription(final KnimeNodeDocument doc) { final KnimeNode node = doc.addNewKnimeNode(); node.setIcon("icons/inverter.png"); node.setType(KnimeNode.Type.MANIPULATOR); node.setName("Inverter (Deprecated)"); node.setShortDescription("Inverts Images"); final FullDescription desc = node.addNewFullDescription(); desc.addNewIntro().addNewP().newCursor().setTextValue("Inverts Images"); } /** * {@inheritDoc} */ @Override public ValueToCellNodeModel<ImgPlusValue<T>, ImgPlusCell<T>> createNodeModel() { return new ValueToCellNodeModel<ImgPlusValue<T>, ImgPlusCell<T>>() { private ImgPlusCellFactory m_imgCellFactory; @Override protected void addSettingsModels(final List<SettingsModel> settingsModels) { } /** * {@inheritDoc} */ @Override protected void prepareExecute(final ExecutionContext exec) { m_imgCellFactory = new ImgPlusCellFactory(exec); } @SuppressWarnings({"unchecked", "rawtypes"}) @Override protected ImgPlusCell<T> compute(final ImgPlusValue<T> cellValue) throws Exception { final Img<T> img = cellValue.getImgPlus(); UnaryOperation<T, T> invert; T type = img.firstElement().createVariable(); if (type instanceof IntegerType) { if (img.firstElement().getMinValue() < 0) { invert = new SignedIntegerInvert(); } else { invert = new UnsignedIntegerInvert((long)type.getMaxValue()); } } else { invert = new RealInvert<T, T>(); } return m_imgCellFactory.createCell(new ImgPlus<>(new ImgView<T>( new ConvertedRandomAccessibleInterval<T, T>(img, new UnaryOperationBasedConverter<T, T>(invert), img.firstElement().createVariable()), img.factory()), cellValue.getMetadata())); } }; } /** * {@inheritDoc} */ @Override protected ValueToCellNodeDialog<ImgPlusValue<T>> createNodeDialog() { return new ValueToCellNodeDialog<ImgPlusValue<T>>() { /** * {@inheritDoc} */ @Override protected String getDefaultSuffixForAppend() { return "_inverted"; } @Override public void addDialogComponents() { // } }; } private class SignedIntegerInvert<I extends IntegerType<I>, O extends IntegerType<O>> implements RealUnaryOperation<I, O> { @Override public O compute(final I x, final O output) { final long value = x.getIntegerLong() * -1L - 1L; output.setInteger(value); return output; } @Override public SignedIntegerInvert<I, O> copy() { return new SignedIntegerInvert<I, O>(); } } private class UnsignedIntegerInvert<I extends IntegerType<I>, O extends IntegerType<O>> implements RealUnaryOperation<I, O> { private final long m_specifiedMax; /** * Constructor. * * @param specifiedMax - maximum value of the range to invert about */ public UnsignedIntegerInvert(final long specifiedMax) { this.m_specifiedMax = specifiedMax; } @Override public O compute(final I x, final O output) { final long value = m_specifiedMax - x.getIntegerLong(); output.setInteger(value); return output; } @Override public UnsignedIntegerInvert<I, O> copy() { return new UnsignedIntegerInvert<I, O>(m_specifiedMax); } } private class RealInvert<I extends RealType<I>, O extends RealType<O>> implements RealUnaryOperation<I, O> { @Override public O compute(final I x, final O output) { final double value = x.getRealDouble() * -1; output.setReal(value); return output; } @Override public RealInvert<I, O> copy() { return new RealInvert<I, O>(); } } }