/* ==================================================================== Licensed to the Apache Software Foundation (ASF) under one or more contributor license agreements. See the NOTICE file distributed with this work for additional information regarding copyright ownership. The ASF licenses this file to You under the Apache License, Version 2.0 (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.apache.org/licenses/LICENSE-2.0 Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License. ==================================================================== */ package org.apache.poi.hssf.record; import org.apache.poi.hssf.util.RKUtil; import org.apache.poi.util.LittleEndianOutput; /** * Title: RK Record (0x027E)<p> * Description: An internal 32 bit number with the two most significant bits * storing the type. This is part of a bizarre scheme to save disk * space and memory (gee look at all the other whole records that * are in the file just "cause"..,far better to waste processor * cycles on this then leave on of those "valuable" records out).<p> * We support this in READ-ONLY mode. HSSF converts these to NUMBER records<p> * * REFERENCE: PG 376 Microsoft Excel 97 Developer's Kit (ISBN: 1-57231-498-2) * * @see org.apache.poi.hssf.record.NumberRecord */ public final class RKRecord extends CellRecord { public final static short sid = 0x027E; public final static short RK_IEEE_NUMBER = 0; public final static short RK_IEEE_NUMBER_TIMES_100 = 1; public final static short RK_INTEGER = 2; public final static short RK_INTEGER_TIMES_100 = 3; private int field_4_rk_number; private RKRecord() { // fields uninitialised } public RKRecord(RecordInputStream in) { super(in); field_4_rk_number = in.readInt(); } /** * Extract the value of the number * <P> * The mechanism for determining the value is dependent on the two * low order bits of the raw number. If bit 1 is set, the number * is an integer and can be cast directly as a double, otherwise, * it's apparently the exponent and mantissa of a double (and the * remaining low-order bits of the double's mantissa are 0's). * <P> * If bit 0 is set, the result of the conversion to a double is * divided by 100; otherwise, the value is left alone. * <P> * [insert picture of Screwy Squirrel in full Napoleonic regalia] * * @return the value as a proper double (hey, it <B>could</B> * happen) */ public double getRKNumber() { return RKUtil.decodeNumber(field_4_rk_number); } @Override protected String getRecordName() { return "RK"; } @Override protected void appendValueText(StringBuilder sb) { sb.append(" .value= ").append(getRKNumber()); } @Override protected void serializeValue(LittleEndianOutput out) { out.writeInt(field_4_rk_number); } @Override protected int getValueDataSize() { return 4; } @Override public short getSid() { return sid; } @Override public Object clone() { RKRecord rec = new RKRecord(); copyBaseFields(rec); rec.field_4_rk_number = field_4_rk_number; return rec; } }