#pragma once #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include namespace DB { struct ColumnSize; class MergeTreeData; /// Description of the data part. class MergeTreeDataPartCompact : public IMergeTreeDataPart { public: using Checksums = MergeTreeDataPartChecksums; using Checksum = MergeTreeDataPartChecksums::Checksum; MergeTreeDataPartCompact( const MergeTreeData & storage_, const String & name_, const MergeTreePartInfo & info_, const DiskSpace::DiskPtr & disk_, const std::optional & relative_path_ = {}); MergeTreeDataPartCompact( MergeTreeData & storage_, const String & name_, const DiskSpace::DiskPtr & disk_, const std::optional & relative_path_ = {}); MergeTreeReaderPtr getReader( const NamesAndTypesList & columns, const MarkRanges & mark_ranges, UncompressedCache * uncompressed_cache, MarkCache * mark_cache, const ReaderSettings & reader_settings_, const ValueSizeMap & avg_value_size_hints = ValueSizeMap{}, const ReadBufferFromFileBase::ProfileCallback & profile_callback = ReadBufferFromFileBase::ProfileCallback{}) const override; MergeTreeWriterPtr getWriter( const NamesAndTypesList & columns_list, const std::vector & indices_to_recalc, const CompressionCodecPtr & default_codec_, const WriterSettings & writer_settings, const MergeTreeIndexGranularity & computed_index_granularity = {}) const override; bool isStoredOnDisk() const override { return true; } /// Returns the name of a column with minimum compressed size (as returned by getColumnSize()). /// If no checksums are present returns the name of the first physically existing column. String getColumnNameWithMinumumCompressedSize() const override; Type getType() const override { return Type::COMPACT; } ColumnSize getColumnSize(const String & name, const IDataType & type0) const override; ColumnSize getTotalColumnsSize() const override; void checkConsistency(bool /* require_part_metadata */) const override {} ~MergeTreeDataPartCompact() override; private: /// Loads marks index granularity into memory void loadIndexGranularity() override; void checkConsistency(bool require_part_metadata); }; // using MergeTreeDataPartState =IMergeTreeDataPart::State; }