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204 lines
6.0 KiB
C++
204 lines
6.0 KiB
C++
#include <Common/FieldVisitors.h>
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#include <DataStreams/CollapsingSortedBlockInputStream.h>
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#include <Columns/ColumnsNumber.h>
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/// Maximum number of messages about incorrect data in the log.
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#define MAX_ERROR_MESSAGES 10
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namespace DB
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{
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namespace ErrorCodes
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{
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extern const int INCORRECT_DATA;
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extern const int LOGICAL_ERROR;
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}
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void CollapsingSortedBlockInputStream::reportIncorrectData()
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{
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std::stringstream s;
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s << "Incorrect data: number of rows with sign = 1 (" << count_positive
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<< ") differs with number of rows with sign = -1 (" << count_negative
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<< ") by more than one (for key: ";
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for (size_t i = 0, size = current_key.size(); i < size; ++i)
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{
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if (i != 0)
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s << ", ";
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s << applyVisitor(FieldVisitorToString(), (*(*current_key.columns)[i])[current_key.row_num]);
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}
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s << ").";
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/** Fow now we limit ourselves to just logging such situations,
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* since the data is generated by external programs.
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* With inconsistent data, this is an unavoidable error that can not be easily corrected by admins. Therefore Warning.
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*/
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LOG_WARNING(log, s.rdbuf());
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}
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void CollapsingSortedBlockInputStream::insertRows(MutableColumns & merged_columns, size_t block_size, MergeStopCondition & condition)
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{
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if (count_positive == 0 && count_negative == 0)
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{
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/// No input rows have been read.
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return;
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}
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if (last_is_positive || count_positive != count_negative)
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{
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if (count_positive <= count_negative)
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{
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condition.incrementRowsCountFromGranularity(block_size);
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for (size_t i = 0; i < num_columns; ++i)
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merged_columns[i]->insertFrom(*(*first_negative.columns)[i], first_negative.row_num);
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if (out_row_sources_buf)
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current_row_sources[first_negative_pos].setSkipFlag(false);
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}
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if (count_positive >= count_negative)
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{
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condition.incrementRowsCountFromGranularity(block_size);
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for (size_t i = 0; i < num_columns; ++i)
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merged_columns[i]->insertFrom(*(*last_positive.columns)[i], last_positive.row_num);
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if (out_row_sources_buf)
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current_row_sources[last_positive_pos].setSkipFlag(false);
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}
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if (!(count_positive == count_negative || count_positive + 1 == count_negative || count_positive == count_negative + 1))
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{
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if (count_incorrect_data < MAX_ERROR_MESSAGES)
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reportIncorrectData();
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++count_incorrect_data;
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}
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}
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if (out_row_sources_buf)
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out_row_sources_buf->write(
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reinterpret_cast<const char *>(current_row_sources.data()),
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current_row_sources.size() * sizeof(RowSourcePart));
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}
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Block CollapsingSortedBlockInputStream::readImpl()
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{
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if (finished)
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return {};
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MutableColumns merged_columns;
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init(merged_columns);
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if (has_collation)
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throw Exception("Logical error: " + getName() + " does not support collations", ErrorCodes::LOGICAL_ERROR);
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if (merged_columns.empty())
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return {};
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merge(merged_columns, queue_without_collation);
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return header.cloneWithColumns(std::move(merged_columns));
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}
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void CollapsingSortedBlockInputStream::merge(MutableColumns & merged_columns, std::priority_queue<SortCursor> & queue)
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{
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MergeStopCondition stop_condition(average_block_sizes, max_block_size);
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size_t current_block_granularity;
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/// Take rows in correct order and put them into `merged_columns` until the rows no more than `max_block_size`
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for (; !queue.empty(); ++current_pos)
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{
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SortCursor current = queue.top();
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current_block_granularity = current->rows;
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if (current_key.empty())
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setPrimaryKeyRef(current_key, current);
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Int8 sign = static_cast<const ColumnInt8 &>(*current->all_columns[sign_column_number]).getData()[current->pos];
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setPrimaryKeyRef(next_key, current);
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bool key_differs = next_key != current_key;
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/// if there are enough rows and the last one is calculated completely
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if (key_differs && stop_condition.checkStop())
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{
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++blocks_written;
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return;
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}
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queue.pop();
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if (key_differs)
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{
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/// We write data for the previous primary key.
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insertRows(merged_columns, current_block_granularity, stop_condition);
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current_key.swap(next_key);
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count_negative = 0;
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count_positive = 0;
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current_pos = 0;
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first_negative_pos = 0;
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last_positive_pos = 0;
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last_negative_pos = 0;
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current_row_sources.resize(0);
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}
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/// Initially, skip all rows. On insert, unskip "corner" rows.
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if (out_row_sources_buf)
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current_row_sources.emplace_back(current.impl->order, true);
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if (sign == 1)
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{
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++count_positive;
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last_is_positive = true;
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setRowRef(last_positive, current);
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last_positive_pos = current_pos;
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}
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else if (sign == -1)
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{
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if (!count_negative)
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{
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setRowRef(first_negative, current);
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first_negative_pos = current_pos;
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}
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if (!blocks_written && stop_condition.empty())
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{
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setRowRef(last_negative, current);
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last_negative_pos = current_pos;
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}
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++count_negative;
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last_is_positive = false;
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}
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else
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throw Exception("Incorrect data: Sign = " + toString(sign) + " (must be 1 or -1).",
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ErrorCodes::INCORRECT_DATA);
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if (!current->isLast())
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{
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current->next();
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queue.push(current);
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}
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else
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{
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/// We take next block from the corresponding source, if there is one.
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fetchNextBlock(current, queue);
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}
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}
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/// Write data for last primary key.
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insertRows(merged_columns, /*some_granularity*/ 0, stop_condition);
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finished = true;
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}
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}
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