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// 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.
#ifndef IMPALA_EXPRS_BIT_BYTE_FUNCTIONS_H
#define IMPALA_EXPRS_BIT_BYTE_FUNCTIONS_H
#include "udf/udf.h"
namespace impala {
using impala_udf::FunctionContext;
using impala_udf::TinyIntVal;
using impala_udf::SmallIntVal;
using impala_udf::IntVal;
using impala_udf::BigIntVal;
class BitByteFunctions {
public:
// Count number of bits set in binary representation of integer types (aka popcount)
template <typename T> static IntVal CountSet(FunctionContext* ctx, const T& v);
template <typename T> static IntVal CountSet(FunctionContext* ctx, const T& v,
const IntVal& bitval);
// Get and set individual bits in binary representation of integer types
template <typename T> static TinyIntVal GetBit(FunctionContext* ctx, const T& v,
const IntVal& bitpos);
template <typename T> static T SetBit(FunctionContext* ctx, const T& v,
const IntVal& bitpos);
template <typename T> static T SetBit(FunctionContext* ctx, const T& v,
const IntVal& bitpos, const IntVal&);
// Bitwise rotation of integer types
static TinyIntVal RotateLeft(FunctionContext* ctx, const TinyIntVal& v,
const IntVal& shift);
static SmallIntVal RotateLeft(FunctionContext* ctx, const SmallIntVal& v,
const IntVal& shift);
static IntVal RotateLeft(FunctionContext* ctx, const IntVal& v,
const IntVal& shift);
static BigIntVal RotateLeft(FunctionContext* ctx, const BigIntVal& v,
const IntVal& shift);
static TinyIntVal RotateRight(FunctionContext* ctx, const TinyIntVal& v,
const IntVal& shift);
static SmallIntVal RotateRight(FunctionContext* ctx, const SmallIntVal& v,
const IntVal& shift);
static IntVal RotateRight(FunctionContext* ctx, const IntVal& v,
const IntVal& shift);
static BigIntVal RotateRight(FunctionContext* ctx, const BigIntVal& v,
const IntVal& shift);
// Bitwise logical shifts of integer types
static TinyIntVal ShiftLeft(FunctionContext* ctx, const TinyIntVal& v,
const IntVal& shift);
static SmallIntVal ShiftLeft(FunctionContext* ctx, const SmallIntVal& v,
const IntVal& shift);
static IntVal ShiftLeft(FunctionContext* ctx, const IntVal& v,
const IntVal& shift);
static BigIntVal ShiftLeft(FunctionContext* ctx, const BigIntVal& v,
const IntVal& shift);
static TinyIntVal ShiftRight(FunctionContext* ctx, const TinyIntVal& v,
const IntVal& shift);
static SmallIntVal ShiftRight(FunctionContext* ctx, const SmallIntVal& v,
const IntVal& shift);
static IntVal ShiftRight(FunctionContext* ctx, const IntVal& v,
const IntVal& shift);
static BigIntVal ShiftRight(FunctionContext* ctx, const BigIntVal& v,
const IntVal& shift);
};
}
#endif