File: C:/Users/fred/anaconda3/Library/include/orc/MemoryPool.hh
/**
* 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 MEMORYPOOL_HH_
#define MEMORYPOOL_HH_
#include <memory>
#include "orc/Int128.hh"
#include "orc/orc-config.hh"
namespace orc {
class MemoryPool {
public:
virtual ~MemoryPool();
virtual char* malloc(uint64_t size) = 0;
virtual void free(char* p) = 0;
};
MemoryPool* getDefaultPool();
template <class T>
class DataBuffer {
private:
MemoryPool& memoryPool;
T* buf;
// current size
uint64_t currentSize;
// maximal capacity (actual allocated memory)
uint64_t currentCapacity;
// not implemented
DataBuffer(DataBuffer& buffer);
DataBuffer& operator=(DataBuffer& buffer);
public:
DataBuffer(MemoryPool& pool, uint64_t _size = 0);
DataBuffer(DataBuffer<T>&& buffer) noexcept;
virtual ~DataBuffer();
T* data() {
return buf;
}
const T* data() const {
return buf;
}
uint64_t size() const {
return currentSize;
}
uint64_t capacity() const {
return currentCapacity;
}
const T& operator[](uint64_t i) const {
return buf[i];
}
T& operator[](uint64_t i) {
return buf[i];
}
void reserve(uint64_t _size);
void resize(uint64_t _size);
void zeroOut();
};
// Specializations for char
template <>
DataBuffer<char>::~DataBuffer();
template <>
void DataBuffer<char>::resize(uint64_t newSize);
// Specializations for char*
template <>
DataBuffer<char*>::~DataBuffer();
template <>
void DataBuffer<char*>::resize(uint64_t newSize);
// Specializations for double
template <>
DataBuffer<double>::~DataBuffer();
template <>
void DataBuffer<double>::resize(uint64_t newSize);
// Specializations for float
template <>
DataBuffer<float>::~DataBuffer();
template <>
void DataBuffer<float>::resize(uint64_t newSize);
// Specializations for int64_t
template <>
DataBuffer<int64_t>::~DataBuffer();
template <>
void DataBuffer<int64_t>::resize(uint64_t newSize);
// Specializations for int32_t
template <>
DataBuffer<int32_t>::~DataBuffer();
template <>
void DataBuffer<int32_t>::resize(uint64_t newSize);
// Specializations for int16_t
template <>
DataBuffer<int16_t>::~DataBuffer();
template <>
void DataBuffer<int16_t>::resize(uint64_t newSize);
// Specializations for int8_t
template <>
DataBuffer<int8_t>::~DataBuffer();
template <>
void DataBuffer<int8_t>::resize(uint64_t newSize);
// Specializations for uint64_t
template <>
DataBuffer<uint64_t>::~DataBuffer();
template <>
void DataBuffer<uint64_t>::resize(uint64_t newSize);
// Specializations for unsigned char
template <>
DataBuffer<unsigned char>::~DataBuffer();
template <>
void DataBuffer<unsigned char>::resize(uint64_t newSize);
// Specializations for Int128
template <>
void DataBuffer<Int128>::zeroOut();
#ifdef __clang__
#pragma clang diagnostic push
#pragma clang diagnostic ignored "-Wweak-template-vtables"
#endif
extern template class DataBuffer<char>;
extern template class DataBuffer<char*>;
extern template class DataBuffer<double>;
extern template class DataBuffer<float>;
extern template class DataBuffer<Int128>;
extern template class DataBuffer<int64_t>;
extern template class DataBuffer<int32_t>;
extern template class DataBuffer<int16_t>;
extern template class DataBuffer<int8_t>;
extern template class DataBuffer<uint64_t>;
extern template class DataBuffer<unsigned char>;
#ifdef __clang__
#pragma clang diagnostic pop
#endif
} // namespace orc
#endif /* MEMORYPOOL_HH_ */