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/*
    This file is part of the iText (R) project.
    Copyright (c) 1998-2023 Apryse Group NV
    Authors: Apryse Software.

    This program is offered under a commercial and under the AGPL license.
    For commercial licensing, contact us at https://itextpdf.com/sales.  For AGPL licensing, see below.

    AGPL licensing:
    This program is free software: you can redistribute it and/or modify
    it under the terms of the GNU Affero General Public License as published by
    the Free Software Foundation, either version 3 of the License, or
    (at your option) any later version.

    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 Affero General Public License for more details.

    You should have received a copy of the GNU Affero General Public License
    along with this program.  If not, see .
 */
package com.itextpdf.kernel.pdf;

import com.itextpdf.io.source.ByteUtils;
import com.itextpdf.kernel.utils.ICopyFilter;

import java.nio.charset.StandardCharsets;

/**
 * A {@code PdfNumber}-class is the PDF-equivalent of a {@code Double}-object.
 * 
 * 

* PDF provides two types of numeric objects: integer and real. Integer objects represent mathematical integers. Real * objects represent mathematical real numbers. The range and precision of numbers may be limited by the internal * representations used in the computer on which the PDF processor is running. * An integer shall be written as one or more decimal digits optionally preceded by a sign. The value shall be * interpreted as a signed decimal integer and shall be converted to an integer object. * A real value shall be written as one or more decimal digits with an optional sign and a leading, trailing, or * embedded period (decimal point). */ public class PdfNumber extends PdfPrimitiveObject { private double value; private boolean isDouble; /** * Creates an instance of {@link PdfNumber} and sets value. * * @param value double value to set */ public PdfNumber(double value) { super(); setValue(value); } /** * Creates an instance of {@link PdfNumber} and sets value. * * @param value int value to set */ public PdfNumber(int value) { super(); setValue(value); } /** * Creates an instance of {@link PdfNumber} with provided content. * * @param content byte array content to set */ public PdfNumber(byte[] content) { super(content); this.isDouble = true; this.value = java.lang.Double.NaN; } private PdfNumber() { super(); } @Override public byte getType() { return NUMBER; } /** * Returns value of current instance of {@link PdfNumber}. * * @return value of {@link PdfNumber} instance */ public double getValue() { if (java.lang.Double.isNaN(value)) generateValue(); return value; } /** * Returns double value of current instance of {@link PdfNumber}. * * @return double value of {@link PdfNumber} instance */ public double doubleValue() { return getValue(); } /** * Returns value and converts it to float. * * @return value converted to float */ public float floatValue() { return (float) getValue(); } /** * Returns value and converts it to long. * * @return value converted to long */ public long longValue() { return (long) getValue(); } /** * Returns value and converts it to an int. If value surpasses {@link Integer#MAX_VALUE}, {@link Integer#MAX_VALUE} * would be return. * * @return value converted to int */ public int intValue() { if (getValue() > (double) Integer.MAX_VALUE) { return Integer.MAX_VALUE; } else { return (int) getValue(); } } /** * Sets value and convert it to double. * * @param value to set */ public void setValue(int value) { this.value = value; this.isDouble = false; this.content = null; } /** * Sets value. * * @param value to set */ public void setValue(double value) { this.value = value; this.isDouble = true; this.content = null; } /** * Increments current value. */ public void increment() { setValue(++value); } /** * Decrements current value. */ public void decrement() { setValue(--value); } @Override public String toString() { if (content != null) { return new String(content, StandardCharsets.ISO_8859_1); } else if (isDouble) { return new String(ByteUtils.getIsoBytes(getValue()), StandardCharsets.ISO_8859_1); } else { return new String(ByteUtils.getIsoBytes(intValue()), StandardCharsets.ISO_8859_1); } } @Override public boolean equals(Object o) { if (this == o) { return true; } if (o == null || getClass() != o.getClass()) { return false; } return Double.compare(((PdfNumber) o).getValue(), getValue()) == 0; } /** * Checks if string representation of the value contains decimal point. * * @return true if contains so the number must be real not integer */ public boolean hasDecimalPoint() { return this.toString().contains("."); } @Override public int hashCode() { long hash = Double.doubleToLongBits(getValue()); return (int) (hash ^ (hash >>> 32)); } @Override protected PdfObject newInstance() { return new PdfNumber(); } protected boolean isDoubleNumber() { return isDouble; } @Override protected void generateContent() { if (isDouble) { content = ByteUtils.getIsoBytes(value); } else { content = ByteUtils.getIsoBytes((int) value); } } protected void generateValue() { try { value = java.lang.Double.parseDouble(new String(content, StandardCharsets.ISO_8859_1)); } catch (NumberFormatException e) { value = java.lang.Double.NaN; } isDouble = true; } @Override protected void copyContent(PdfObject from, PdfDocument document, ICopyFilter copyFilter) { super.copyContent(from, document, copyFilter); PdfNumber number = (PdfNumber) from; value = number.value; isDouble = number.isDouble; } }





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