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/*
 * Copyright (c) 2006, 2020 Oracle and/or its affiliates. All rights reserved.
 *
 * This program and the accompanying materials are made available under the
 * terms of the Eclipse Public License v. 2.0 which is available at
 * http://www.eclipse.org/legal/epl-2.0,
 * or the Eclipse Distribution License v. 1.0 which is available at
 * http://www.eclipse.org/org/documents/edl-v10.php.
 *
 * SPDX-License-Identifier: EPL-2.0 OR BSD-3-Clause
 */

// Contributors:
//     Oracle - initial API and implementation
//
package org.eclipse.persistence.jpa.jpql.parser;

import java.util.Collection;
import java.util.List;
import org.eclipse.persistence.jpa.jpql.WordParser;

/**
 * 
BNF: expression ::= NOT conditional_primary

* * @version 2.5 * @since 2.3 * @author Pascal Filion */ public final class NotExpression extends AbstractExpression { /** * The expression being negated by this expression. */ private AbstractExpression expression; /** * Determines whether a space was parsed after NOT. */ private boolean hasSpaceAfterNot; /** * The actual identifier found in the string representation of the JPQL query. */ private String identifier; /** * Creates a new NotExpression. * * @param parent The parent of this expression */ public NotExpression(AbstractExpression parent) { super(parent, NOT); } @Override public void accept(ExpressionVisitor visitor) { visitor.visit(this); } @Override public void acceptChildren(ExpressionVisitor visitor) { getExpression().accept(visitor); } @Override protected void addChildrenTo(Collection children) { children.add(getExpression()); } @Override protected void addOrderedChildrenTo(List children) { children.add(buildStringExpression(NOT)); if (hasSpaceAfterNot) { children.add(buildStringExpression(SPACE)); } if (expression != null) { children.add(expression); } } @Override public JPQLQueryBNF findQueryBNF(Expression expression) { if ((this.expression != null) && this.expression.isAncestor(expression)) { return getQueryBNF(ConditionalPrimaryBNF.ID); } return super.findQueryBNF(expression); } /** * Returns the actual NOT found in the string representation of the JPQL query, which has * the actual case that was used. * * @return The NOT identifier that was actually parsed */ public String getActualIdentifier() { return identifier; } /** * Returns the {@link Expression} representing the expression that is negated. * * @return The expression representing the expression that is negated */ public Expression getExpression() { if (expression == null) { expression = buildNullExpression(); } return expression; } @Override public JPQLQueryBNF getQueryBNF() { return getQueryBNF(ConditionalPrimaryBNF.ID); } /** * Determines whether the expression to negate was parsed. * * @return true if the expression to negate was parsed; false if it was * not parsed */ public boolean hasExpression() { return expression != null && !expression.isNull(); } /** * Determines whether a whitespace was parsed after NOT. * * @return true if a whitespace was parsed after the identifier NOT; * false otherwise */ public boolean hasSpaceAfterNot() { return hasSpaceAfterNot; } @Override protected boolean isParsingComplete(WordParser wordParser, String word, Expression expression) { return wordParser.startsWithIdentifier(AND) || wordParser.startsWithIdentifier(OR) || super.isParsingComplete(wordParser, word, expression); } @Override protected void parse(WordParser wordParser, boolean tolerant) { identifier = wordParser.moveForward(NOT); hasSpaceAfterNot = wordParser.skipLeadingWhitespace() > 0; expression = parse(wordParser, ConditionalPrimaryBNF.ID, tolerant); } @Override protected void toParsedText(StringBuilder writer, boolean actual) { // NOT writer.append(actual ? identifier : getText()); if (hasSpaceAfterNot) { writer.append(SPACE); } // Expression if (expression != null) { expression.toParsedText(writer, actual); } } }




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