Int32Type.java
/*
* 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.cassandra.db.marshal;
import java.nio.ByteBuffer;
import java.util.Objects;
import org.apache.commons.lang3.mutable.MutableInt;
import org.apache.cassandra.cql3.CQL3Type;
import org.apache.cassandra.cql3.Constants;
import org.apache.cassandra.cql3.Term;
import org.apache.cassandra.cql3.functions.ArgumentDeserializer;
import org.apache.cassandra.serializers.Int32Serializer;
import org.apache.cassandra.serializers.MarshalException;
import org.apache.cassandra.transport.ProtocolVersion;
import org.apache.cassandra.serializers.TypeSerializer;
import org.apache.cassandra.utils.ByteBufferUtil;
import org.apache.cassandra.utils.bytecomparable.ByteComparable;
import org.apache.cassandra.utils.bytecomparable.ByteSource;
import org.apache.cassandra.utils.bytecomparable.ByteSourceInverse;
public class Int32Type extends NumberType<Integer>
{
public static final Int32Type instance = new Int32Type();
private static final ByteBuffer MASKED_VALUE = instance.decompose(0);
Int32Type()
{
super(ComparisonType.CUSTOM);
} // singleton
public boolean isEmptyValueMeaningless()
{
return true;
}
public <VL, VR> int compareCustom(VL left, ValueAccessor<VL> accessorL, VR right, ValueAccessor<VR> accessorR)
{
if (accessorL.isEmpty(left) || accessorR.isEmpty(right))
return Boolean.compare(accessorR.isEmpty(right), accessorL.isEmpty(left));
int diff = accessorL.getByte(left, 0) - accessorR.getByte(right, 0);
if (diff != 0)
return diff;
return ValueAccessor.compare(left, accessorL, right, accessorR);
}
@Override
public <V> ByteSource asComparableBytes(ValueAccessor<V> accessor, V data, ByteComparable.Version version)
{
return ByteSource.optionalSignedFixedLengthNumber(accessor, data);
}
@Override
public <V> V fromComparableBytes(ValueAccessor<V> accessor, ByteSource.Peekable comparableBytes, ByteComparable.Version version)
{
return ByteSourceInverse.getOptionalSignedFixedLength(accessor, comparableBytes, 4);
}
public ByteBuffer fromString(String source) throws MarshalException
{
// Return an empty ByteBuffer for an empty string.
if (source.isEmpty())
return ByteBufferUtil.EMPTY_BYTE_BUFFER;
int int32Type;
try
{
int32Type = Integer.parseInt(source);
}
catch (Exception e)
{
throw new MarshalException(String.format("Unable to make int from '%s'", source), e);
}
return decompose(int32Type);
}
@Override
public Term fromJSONObject(Object parsed) throws MarshalException
{
try
{
if (parsed instanceof String)
return new Constants.Value(fromString((String) parsed));
Number parsedNumber = (Number) parsed;
if (!(parsedNumber instanceof Integer))
throw new MarshalException(String.format("Expected an int value, but got a %s: %s", parsed.getClass().getSimpleName(), parsed));
return new Constants.Value(getSerializer().serialize(parsedNumber.intValue()));
}
catch (ClassCastException exc)
{
throw new MarshalException(String.format(
"Expected an int value, but got a %s: %s", parsed.getClass().getSimpleName(), parsed));
}
}
@Override
public String toJSONString(ByteBuffer buffer, ProtocolVersion protocolVersion)
{
return Objects.toString(getSerializer().deserialize(buffer), "\"\"");
}
public CQL3Type asCQL3Type()
{
return CQL3Type.Native.INT;
}
public TypeSerializer<Integer> getSerializer()
{
return Int32Serializer.instance;
}
@Override
public ArgumentDeserializer getArgumentDeserializer()
{
return new NumberArgumentDeserializer<MutableInt>(new MutableInt())
{
@Override
protected void setMutableValue(MutableInt mutable, ByteBuffer buffer)
{
mutable.setValue(ByteBufferUtil.toInt(buffer));
}
};
}
@Override
public int valueLengthIfFixed()
{
return 4;
}
@Override
public ByteBuffer add(Number left, Number right)
{
return ByteBufferUtil.bytes(left.intValue() + right.intValue());
}
@Override
public ByteBuffer substract(Number left, Number right)
{
return ByteBufferUtil.bytes(left.intValue() - right.intValue());
}
@Override
public ByteBuffer multiply(Number left, Number right)
{
return ByteBufferUtil.bytes(left.intValue() * right.intValue());
}
@Override
public ByteBuffer divide(Number left, Number right)
{
return ByteBufferUtil.bytes(left.intValue() / right.intValue());
}
@Override
public ByteBuffer mod(Number left, Number right)
{
return ByteBufferUtil.bytes(left.intValue() % right.intValue());
}
@Override
public ByteBuffer negate(Number input)
{
return ByteBufferUtil.bytes(-input.intValue());
}
@Override
public ByteBuffer abs(Number input)
{
return ByteBufferUtil.bytes(Math.abs(input.intValue()));
}
@Override
public ByteBuffer exp(Number input)
{
return ByteBufferUtil.bytes((int) Math.exp(input.intValue()));
}
@Override
public ByteBuffer log(Number input)
{
return ByteBufferUtil.bytes((int) Math.log(input.intValue()));
}
@Override
public ByteBuffer log10(Number input)
{
return ByteBufferUtil.bytes((int) Math.log10(input.intValue()));
}
@Override
public ByteBuffer round(Number input)
{
return ByteBufferUtil.bytes(input.intValue());
}
@Override
public ByteBuffer getMaskedValue()
{
return MASKED_VALUE;
}
}