ClickHouse/dbms/src/Formats/FormatFactory.h
2019-10-01 13:48:46 +03:00

149 lines
4.5 KiB
C++

#pragma once
#include <Core/Types.h>
#include <DataStreams/IBlockStream_fwd.h>
#include <IO/BufferWithOwnMemory.h>
#include <functional>
#include <memory>
#include <unordered_map>
#include <boost/noncopyable.hpp>
namespace DB
{
class Block;
class Context;
struct FormatSettings;
class ReadBuffer;
class WriteBuffer;
class IProcessor;
using ProcessorPtr = std::shared_ptr<IProcessor>;
class IInputFormat;
class IOutputFormat;
struct RowInputFormatParams;
using InputFormatPtr = std::shared_ptr<IInputFormat>;
using OutputFormatPtr = std::shared_ptr<IOutputFormat>;
/** Allows to create an IBlockInputStream or IBlockOutputStream by the name of the format.
* Note: format and compression are independent things.
*/
class FormatFactory final : private boost::noncopyable
{
public:
/// This callback allows to perform some additional actions after reading a single row.
/// It's initial purpose was to extract payload for virtual columns from Kafka Consumer ReadBuffer.
using ReadCallback = std::function<void()>;
/** Fast reading data from buffer and save result to memory.
* Reads at least min_chunk_size bytes and some more until the end of the chunk, depends on the format.
* Used in SharedReadBuffer.
*/
using FileSegmentationEngine = std::function<bool(
ReadBuffer & buf,
DB::Memory<> & memory,
size_t & used_size,
size_t min_chunk_size)>;
/// This callback allows to perform some additional actions after writing a single row.
/// It's initial purpose was to flush Kafka message for each row.
using WriteCallback = std::function<void()>;
private:
using InputCreator = std::function<BlockInputStreamPtr(
ReadBuffer & buf,
const Block & sample,
const Context & context,
UInt64 max_block_size,
ReadCallback callback,
const FormatSettings & settings)>;
using OutputCreator = std::function<BlockOutputStreamPtr(
WriteBuffer & buf,
const Block & sample,
const Context & context,
WriteCallback callback,
const FormatSettings & settings)>;
using InputProcessorCreator = std::function<InputFormatPtr(
ReadBuffer & buf,
const Block & header,
const Context & context,
const RowInputFormatParams & params,
const FormatSettings & settings)>;
using OutputProcessorCreator = std::function<OutputFormatPtr(
WriteBuffer & buf,
const Block & sample,
const Context & context,
WriteCallback callback,
const FormatSettings & settings)>;
struct Creators
{
InputCreator input_creator;
OutputCreator output_creator;
InputProcessorCreator input_processor_creator;
OutputProcessorCreator output_processor_creator;
FileSegmentationEngine file_segmentation_engine;
};
using FormatsDictionary = std::unordered_map<String, Creators>;
public:
static FormatFactory & instance();
BlockInputStreamPtr getInput(
const String & name,
ReadBuffer & buf,
const Block & sample,
const Context & context,
UInt64 max_block_size,
ReadCallback callback = {}) const;
BlockOutputStreamPtr getOutput(const String & name, WriteBuffer & buf,
const Block & sample, const Context & context, WriteCallback callback = {}) const;
InputFormatPtr getInputFormat(
const String & name,
ReadBuffer & buf,
const Block & sample,
const Context & context,
UInt64 max_block_size,
ReadCallback callback = {}) const;
OutputFormatPtr getOutputFormat(
const String & name, WriteBuffer & buf, const Block & sample, const Context & context, WriteCallback callback = {}) const;
/// Register format by its name.
void registerInputFormat(const String & name, InputCreator input_creator);
void registerOutputFormat(const String & name, OutputCreator output_creator);
void registerFileSegmentationEngine(const String & name, FileSegmentationEngine file_segmentation_engine);
void registerInputFormatProcessor(const String & name, InputProcessorCreator input_creator);
void registerOutputFormatProcessor(const String & name, OutputProcessorCreator output_creator);
const FormatsDictionary & getAllFormats() const
{
return dict;
}
private:
/// FormatsDictionary dict;
FormatsDictionary dict;
FormatFactory();
const Creators & getCreators(const String & name) const;
};
}