Coverage Report

Created: 2025-04-11 23:22

/root/doris/be/src/olap/compaction.cpp
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// Licensed to the Apache Software Foundation (ASF) under one
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// or more contributor license agreements.  See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership.  The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// with the License.  You may obtain a copy of the License at
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//
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//   http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
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#include "olap/compaction.h"
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#include <fmt/format.h>
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#include <gen_cpp/olap_file.pb.h>
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#include <glog/logging.h>
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#include <algorithm>
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#include <atomic>
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#include <cstdlib>
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#include <list>
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#include <map>
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#include <memory>
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#include <mutex>
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#include <nlohmann/json.hpp>
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#include <numeric>
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#include <ostream>
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#include <set>
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#include <shared_mutex>
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#include <utility>
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#include "cloud/cloud_meta_mgr.h"
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#include "cloud/cloud_storage_engine.h"
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#include "common/config.h"
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#include "common/status.h"
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#include "cpp/sync_point.h"
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#include "io/cache/block_file_cache_factory.h"
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#include "io/fs/file_system.h"
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#include "io/fs/file_writer.h"
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#include "io/fs/remote_file_system.h"
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#include "io/io_common.h"
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#include "olap/cumulative_compaction_policy.h"
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#include "olap/cumulative_compaction_time_series_policy.h"
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#include "olap/data_dir.h"
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#include "olap/olap_common.h"
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#include "olap/olap_define.h"
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#include "olap/rowset/beta_rowset.h"
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#include "olap/rowset/beta_rowset_writer.h"
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#include "olap/rowset/rowset.h"
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#include "olap/rowset/rowset_fwd.h"
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#include "olap/rowset/rowset_meta.h"
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#include "olap/rowset/rowset_writer.h"
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#include "olap/rowset/rowset_writer_context.h"
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#include "olap/rowset/segment_v2/inverted_index_compaction.h"
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#include "olap/rowset/segment_v2/inverted_index_desc.h"
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#include "olap/rowset/segment_v2/inverted_index_file_reader.h"
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#include "olap/rowset/segment_v2/inverted_index_file_writer.h"
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#include "olap/rowset/segment_v2/inverted_index_fs_directory.h"
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#include "olap/storage_engine.h"
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#include "olap/storage_policy.h"
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#include "olap/tablet.h"
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#include "olap/tablet_meta.h"
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#include "olap/tablet_meta_manager.h"
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#include "olap/task/engine_checksum_task.h"
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#include "olap/txn_manager.h"
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#include "olap/utils.h"
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#include "runtime/memory/mem_tracker_limiter.h"
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#include "runtime/thread_context.h"
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#include "util/time.h"
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#include "util/trace.h"
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using std::vector;
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namespace doris {
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using namespace ErrorCode;
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namespace {
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bool is_rowset_tidy(std::string& pre_max_key, const RowsetSharedPtr& rhs) {
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    size_t min_tidy_size = config::ordered_data_compaction_min_segment_size;
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    if (rhs->num_segments() == 0) {
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        return true;
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0
    }
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    if (rhs->is_segments_overlapping()) {
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0
        return false;
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0
    }
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    // check segment size
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    auto* beta_rowset = reinterpret_cast<BetaRowset*>(rhs.get());
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    std::vector<size_t> segments_size;
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    RETURN_FALSE_IF_ERROR(beta_rowset->get_segments_size(&segments_size));
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    for (auto segment_size : segments_size) {
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        // is segment is too small, need to do compaction
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        if (segment_size < min_tidy_size) {
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            return false;
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        }
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    }
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8
    std::string min_key;
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    auto ret = rhs->first_key(&min_key);
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    if (!ret) {
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        return false;
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    }
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    if (min_key <= pre_max_key) {
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        return false;
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    }
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    CHECK(rhs->last_key(&pre_max_key));
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    return true;
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}
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} // namespace
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Compaction::Compaction(BaseTabletSPtr tablet, const std::string& label)
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        : _mem_tracker(
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                  MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::COMPACTION, label)),
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          _tablet(std::move(tablet)),
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          _is_vertical(config::enable_vertical_compaction),
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          _allow_delete_in_cumu_compaction(config::enable_delete_when_cumu_compaction) {
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    ;
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    init_profile(label);
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    SCOPED_SWITCH_THREAD_MEM_TRACKER_LIMITER(_mem_tracker);
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    _rowid_conversion = std::make_unique<RowIdConversion>();
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}
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Compaction::~Compaction() {
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    SCOPED_SWITCH_THREAD_MEM_TRACKER_LIMITER(_mem_tracker);
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    _output_rs_writer.reset();
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    _tablet.reset();
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    _input_rowsets.clear();
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    _output_rowset.reset();
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    _cur_tablet_schema.reset();
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    _rowid_conversion.reset();
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}
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void Compaction::init_profile(const std::string& label) {
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    _profile = std::make_unique<RuntimeProfile>(label);
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    _input_rowsets_data_size_counter =
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            ADD_COUNTER(_profile, "input_rowsets_data_size", TUnit::BYTES);
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    _input_rowsets_counter = ADD_COUNTER(_profile, "input_rowsets_count", TUnit::UNIT);
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    _input_row_num_counter = ADD_COUNTER(_profile, "input_row_num", TUnit::UNIT);
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    _input_segments_num_counter = ADD_COUNTER(_profile, "input_segments_num", TUnit::UNIT);
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    _merged_rows_counter = ADD_COUNTER(_profile, "merged_rows", TUnit::UNIT);
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    _filtered_rows_counter = ADD_COUNTER(_profile, "filtered_rows", TUnit::UNIT);
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    _output_rowset_data_size_counter =
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            ADD_COUNTER(_profile, "output_rowset_data_size", TUnit::BYTES);
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    _output_row_num_counter = ADD_COUNTER(_profile, "output_row_num", TUnit::UNIT);
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    _output_segments_num_counter = ADD_COUNTER(_profile, "output_segments_num", TUnit::UNIT);
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    _merge_rowsets_latency_timer = ADD_TIMER(_profile, "merge_rowsets_latency");
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}
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0
int64_t Compaction::merge_way_num() {
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0
    int64_t way_num = 0;
159
0
    for (auto&& rowset : _input_rowsets) {
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0
        way_num += rowset->rowset_meta()->get_merge_way_num();
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0
    }
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    return way_num;
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0
}
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0
Status Compaction::merge_input_rowsets() {
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0
    std::vector<RowsetReaderSharedPtr> input_rs_readers;
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0
    input_rs_readers.reserve(_input_rowsets.size());
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    for (auto& rowset : _input_rowsets) {
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0
        RowsetReaderSharedPtr rs_reader;
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        RETURN_IF_ERROR(rowset->create_reader(&rs_reader));
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        input_rs_readers.push_back(std::move(rs_reader));
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    }
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    RowsetWriterContext ctx;
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    RETURN_IF_ERROR(construct_output_rowset_writer(ctx));
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    // write merged rows to output rowset
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    // The test results show that merger is low-memory-footprint, there is no need to tracker its mem pool
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    // if ctx.columns_to_do_index_compaction.size() > 0, it means we need to do inverted index compaction.
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    // the row ID conversion matrix needs to be used for inverted index compaction.
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0
    if (!ctx.columns_to_do_index_compaction.empty() ||
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        (_tablet->keys_type() == KeysType::UNIQUE_KEYS &&
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         _tablet->enable_unique_key_merge_on_write())) {
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        _stats.rowid_conversion = _rowid_conversion.get();
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    }
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    int64_t way_num = merge_way_num();
189
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    Status res;
191
0
    {
192
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        SCOPED_TIMER(_merge_rowsets_latency_timer);
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        // 1. Merge segment files and write bkd inverted index
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        if (_is_vertical) {
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            res = Merger::vertical_merge_rowsets(_tablet, compaction_type(), *_cur_tablet_schema,
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                                                 input_rs_readers, _output_rs_writer.get(),
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                                                 get_avg_segment_rows(), way_num, &_stats);
198
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        } else {
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            res = Merger::vmerge_rowsets(_tablet, compaction_type(), *_cur_tablet_schema,
200
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                                         input_rs_readers, _output_rs_writer.get(), &_stats);
201
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        }
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        _tablet->last_compaction_status = res;
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        if (!res.ok()) {
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            return res;
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        }
207
        // 2. Merge the remaining inverted index files of the string type
208
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        RETURN_IF_ERROR(do_inverted_index_compaction());
209
0
    }
210
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    COUNTER_UPDATE(_merged_rows_counter, _stats.merged_rows);
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    COUNTER_UPDATE(_filtered_rows_counter, _stats.filtered_rows);
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    // 3. In the `build`, `_close_file_writers` is called to close the inverted index file writer and write the final compound index file.
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0
    RETURN_NOT_OK_STATUS_WITH_WARN(_output_rs_writer->build(_output_rowset),
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                                   fmt::format("rowset writer build failed. output_version: {}",
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                                               _output_version.to_string()));
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    //RETURN_IF_ERROR(_engine.meta_mgr().commit_rowset(*_output_rowset->rowset_meta().get()));
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    // Now we support delete in cumu compaction, to make all data in rowsets whose version
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    // is below output_version to be delete in the future base compaction, we should carry
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    // all delete predicate in the output rowset.
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    // Output start version > 2 means we must set the delete predicate in the output rowset
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0
    if (_allow_delete_in_cumu_compaction && _output_rowset->version().first > 2) {
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0
        DeletePredicatePB delete_predicate;
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        std::accumulate(_input_rowsets.begin(), _input_rowsets.end(), &delete_predicate,
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                        [](DeletePredicatePB* delete_predicate, const RowsetSharedPtr& rs) {
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                            if (rs->rowset_meta()->has_delete_predicate()) {
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                                delete_predicate->MergeFrom(rs->rowset_meta()->delete_predicate());
231
0
                            }
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                            return delete_predicate;
233
0
                        });
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        // now version in delete_predicate is deprecated
235
0
        if (!delete_predicate.in_predicates().empty() ||
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0
            !delete_predicate.sub_predicates_v2().empty() ||
237
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            !delete_predicate.sub_predicates().empty()) {
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            _output_rowset->rowset_meta()->set_delete_predicate(std::move(delete_predicate));
239
0
        }
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0
    }
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0
    COUNTER_UPDATE(_output_rowset_data_size_counter, _output_rowset->data_disk_size());
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0
    COUNTER_UPDATE(_output_row_num_counter, _output_rowset->num_rows());
244
0
    COUNTER_UPDATE(_output_segments_num_counter, _output_rowset->num_segments());
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246
0
    return check_correctness();
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0
}
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0
int64_t Compaction::get_avg_segment_rows() {
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    // take care of empty rowset
251
    // input_rowsets_size is total disk_size of input_rowset, this size is the
252
    // final size after codec and compress, so expect dest segment file size
253
    // in disk is config::vertical_compaction_max_segment_size
254
0
    const auto& meta = _tablet->tablet_meta();
255
0
    if (meta->compaction_policy() == CUMULATIVE_TIME_SERIES_POLICY) {
256
0
        int64_t compaction_goal_size_mbytes = meta->time_series_compaction_goal_size_mbytes();
257
0
        return (compaction_goal_size_mbytes * 1024 * 1024 * 2) /
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0
               (_input_rowsets_data_size / (_input_row_num + 1) + 1);
259
0
    }
260
0
    return config::vertical_compaction_max_segment_size /
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0
           (_input_rowsets_data_size / (_input_row_num + 1) + 1);
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0
}
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CompactionMixin::CompactionMixin(StorageEngine& engine, TabletSharedPtr tablet,
265
                                 const std::string& label)
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        : Compaction(tablet, label), _engine(engine) {}
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CompactionMixin::~CompactionMixin() {
269
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    if (_state != CompactionState::SUCCESS && _output_rowset != nullptr) {
270
2
        if (!_output_rowset->is_local()) {
271
0
            tablet()->record_unused_remote_rowset(_output_rowset->rowset_id(),
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0
                                                  _output_rowset->rowset_meta()->resource_id(),
273
0
                                                  _output_rowset->num_segments());
274
0
            return;
275
0
        }
276
2
        _engine.add_unused_rowset(_output_rowset);
277
2
    }
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49
}
279
280
84
Tablet* CompactionMixin::tablet() {
281
84
    return static_cast<Tablet*>(_tablet.get());
282
84
}
283
284
2
Status CompactionMixin::do_compact_ordered_rowsets() {
285
2
    build_basic_info();
286
2
    RowsetWriterContext ctx;
287
2
    RETURN_IF_ERROR(construct_output_rowset_writer(ctx));
288
289
2
    LOG(INFO) << "start to do ordered data compaction, tablet=" << _tablet->tablet_id()
290
2
              << ", output_version=" << _output_version;
291
    // link data to new rowset
292
2
    auto seg_id = 0;
293
2
    std::vector<KeyBoundsPB> segment_key_bounds;
294
8
    for (auto rowset : _input_rowsets) {
295
8
        RETURN_IF_ERROR(rowset->link_files_to(tablet()->tablet_path(),
296
8
                                              _output_rs_writer->rowset_id(), seg_id));
297
8
        seg_id += rowset->num_segments();
298
299
8
        std::vector<KeyBoundsPB> key_bounds;
300
8
        RETURN_IF_ERROR(rowset->get_segments_key_bounds(&key_bounds));
301
8
        segment_key_bounds.insert(segment_key_bounds.end(), key_bounds.begin(), key_bounds.end());
302
8
    }
303
    // build output rowset
304
2
    RowsetMetaSharedPtr rowset_meta = std::make_shared<RowsetMeta>();
305
2
    rowset_meta->set_num_rows(_input_row_num);
306
2
    rowset_meta->set_total_disk_size(_input_rowsets_data_size + _input_rowsets_index_size);
307
2
    rowset_meta->set_data_disk_size(_input_rowsets_data_size);
308
2
    rowset_meta->set_index_disk_size(_input_rowsets_index_size);
309
2
    rowset_meta->set_empty(_input_row_num == 0);
310
2
    rowset_meta->set_num_segments(_input_num_segments);
311
2
    rowset_meta->set_segments_overlap(NONOVERLAPPING);
312
2
    rowset_meta->set_rowset_state(VISIBLE);
313
314
2
    rowset_meta->set_segments_key_bounds(segment_key_bounds);
315
2
    _output_rowset = _output_rs_writer->manual_build(rowset_meta);
316
2
    return Status::OK();
317
2
}
318
319
35
void CompactionMixin::build_basic_info() {
320
104
    for (auto& rowset : _input_rowsets) {
321
104
        const auto& rowset_meta = rowset->rowset_meta();
322
104
        auto index_size = rowset_meta->index_disk_size();
323
104
        auto total_size = rowset_meta->total_disk_size();
324
104
        auto data_size = rowset_meta->data_disk_size();
325
        // corrupted index size caused by bug before 2.1.5 or 3.0.0 version
326
        // try to get real index size from disk.
327
104
        if (index_size < 0 || index_size > total_size * 2) {
328
3
            LOG(ERROR) << "invalid index size:" << index_size << " total size:" << total_size
329
3
                       << " data size:" << data_size << " tablet:" << rowset_meta->tablet_id()
330
3
                       << " rowset:" << rowset_meta->rowset_id();
331
3
            index_size = 0;
332
3
            auto st = rowset->get_inverted_index_size(&index_size);
333
3
            if (!st.ok()) {
334
0
                LOG(ERROR) << "failed to get inverted index size. res=" << st;
335
0
            }
336
3
        }
337
104
        _input_rowsets_data_size += data_size;
338
104
        _input_rowsets_index_size += index_size;
339
104
        _input_rowsets_total_size += total_size;
340
104
        _input_row_num += rowset->num_rows();
341
104
        _input_num_segments += rowset->num_segments();
342
104
    }
343
35
    COUNTER_UPDATE(_input_rowsets_data_size_counter, _input_rowsets_data_size);
344
35
    COUNTER_UPDATE(_input_row_num_counter, _input_row_num);
345
35
    COUNTER_UPDATE(_input_segments_num_counter, _input_num_segments);
346
347
35
    _output_version =
348
35
            Version(_input_rowsets.front()->start_version(), _input_rowsets.back()->end_version());
349
350
35
    _newest_write_timestamp = _input_rowsets.back()->newest_write_timestamp();
351
352
35
    std::vector<RowsetMetaSharedPtr> rowset_metas(_input_rowsets.size());
353
35
    std::transform(_input_rowsets.begin(), _input_rowsets.end(), rowset_metas.begin(),
354
104
                   [](const RowsetSharedPtr& rowset) { return rowset->rowset_meta(); });
355
35
    _cur_tablet_schema = _tablet->tablet_schema_with_merged_max_schema_version(rowset_metas);
356
35
}
357
358
2
bool CompactionMixin::handle_ordered_data_compaction() {
359
2
    if (!config::enable_ordered_data_compaction) {
360
0
        return false;
361
0
    }
362
2
    if (compaction_type() == ReaderType::READER_COLD_DATA_COMPACTION ||
363
2
        compaction_type() == ReaderType::READER_FULL_COMPACTION) {
364
        // The remote file system and full compaction does not support to link files.
365
0
        return false;
366
0
    }
367
2
    if (_tablet->keys_type() == KeysType::UNIQUE_KEYS &&
368
2
        _tablet->enable_unique_key_merge_on_write()) {
369
0
        return false;
370
0
    }
371
372
2
    if (_tablet->tablet_meta()->tablet_schema()->skip_write_index_on_load()) {
373
        // Expected to create index through normal compaction
374
0
        return false;
375
0
    }
376
377
    // check delete version: if compaction type is base compaction and
378
    // has a delete version, use original compaction
379
2
    if (compaction_type() == ReaderType::READER_BASE_COMPACTION ||
380
2
        (_allow_delete_in_cumu_compaction &&
381
2
         compaction_type() == ReaderType::READER_CUMULATIVE_COMPACTION)) {
382
0
        for (auto& rowset : _input_rowsets) {
383
0
            if (rowset->rowset_meta()->has_delete_predicate()) {
384
0
                return false;
385
0
            }
386
0
        }
387
0
    }
388
389
    // check if rowsets are tidy so we can just modify meta and do link
390
    // files to handle compaction
391
2
    auto input_size = _input_rowsets.size();
392
2
    std::string pre_max_key;
393
10
    for (auto i = 0; i < input_size; ++i) {
394
8
        if (!is_rowset_tidy(pre_max_key, _input_rowsets[i])) {
395
0
            if (i <= input_size / 2) {
396
0
                return false;
397
0
            } else {
398
0
                _input_rowsets.resize(i);
399
0
                break;
400
0
            }
401
0
        }
402
8
    }
403
    // most rowset of current compaction is nonoverlapping
404
    // just handle nonoverlappint rowsets
405
2
    auto st = do_compact_ordered_rowsets();
406
2
    if (!st.ok()) {
407
0
        LOG(WARNING) << "failed to compact ordered rowsets: " << st;
408
0
        _pending_rs_guard.drop();
409
0
    }
410
411
2
    return st.ok();
412
2
}
413
414
0
Status CompactionMixin::execute_compact() {
415
0
    uint32_t checksum_before;
416
0
    uint32_t checksum_after;
417
0
    bool enable_compaction_checksum = config::enable_compaction_checksum;
418
0
    if (enable_compaction_checksum) {
419
0
        EngineChecksumTask checksum_task(_engine, _tablet->tablet_id(), _tablet->schema_hash(),
420
0
                                         _input_rowsets.back()->end_version(), &checksum_before);
421
0
        RETURN_IF_ERROR(checksum_task.execute());
422
0
    }
423
424
0
    auto* data_dir = tablet()->data_dir();
425
0
    int64_t permits = get_compaction_permits();
426
0
    data_dir->disks_compaction_score_increment(permits);
427
0
    data_dir->disks_compaction_num_increment(1);
428
429
0
    auto record_compaction_stats = [&](const doris::Exception& ex) {
430
0
        _tablet->compaction_count.fetch_add(1, std::memory_order_relaxed);
431
0
        data_dir->disks_compaction_score_increment(-permits);
432
0
        data_dir->disks_compaction_num_increment(-1);
433
0
    };
434
435
0
    HANDLE_EXCEPTION_IF_CATCH_EXCEPTION(execute_compact_impl(permits), record_compaction_stats);
436
0
    record_compaction_stats(doris::Exception());
437
438
0
    if (enable_compaction_checksum) {
439
0
        EngineChecksumTask checksum_task(_engine, _tablet->tablet_id(), _tablet->schema_hash(),
440
0
                                         _input_rowsets.back()->end_version(), &checksum_after);
441
0
        RETURN_IF_ERROR(checksum_task.execute());
442
0
        if (checksum_before != checksum_after) {
443
0
            return Status::InternalError(
444
0
                    "compaction tablet checksum not consistent, before={}, after={}, tablet_id={}",
445
0
                    checksum_before, checksum_after, _tablet->tablet_id());
446
0
        }
447
0
    }
448
449
0
    _load_segment_to_cache();
450
0
    return Status::OK();
451
0
}
452
453
0
Status CompactionMixin::execute_compact_impl(int64_t permits) {
454
0
    OlapStopWatch watch;
455
456
0
    if (handle_ordered_data_compaction()) {
457
0
        RETURN_IF_ERROR(modify_rowsets());
458
0
        LOG(INFO) << "succeed to do ordered data " << compaction_name()
459
0
                  << ". tablet=" << _tablet->tablet_id() << ", output_version=" << _output_version
460
0
                  << ", disk=" << tablet()->data_dir()->path()
461
0
                  << ", segments=" << _input_num_segments << ", input_row_num=" << _input_row_num
462
0
                  << ", output_row_num=" << _output_rowset->num_rows()
463
0
                  << ", input_rowsets_data_size=" << _input_rowsets_data_size
464
0
                  << ", input_rowsets_index_size=" << _input_rowsets_index_size
465
0
                  << ", input_rowsets_total_size=" << _input_rowsets_total_size
466
0
                  << ", output_rowset_data_size=" << _output_rowset->data_disk_size()
467
0
                  << ", output_rowset_index_size=" << _output_rowset->index_disk_size()
468
0
                  << ", output_rowset_total_size=" << _output_rowset->total_disk_size()
469
0
                  << ". elapsed time=" << watch.get_elapse_second() << "s.";
470
0
        _state = CompactionState::SUCCESS;
471
0
        return Status::OK();
472
0
    }
473
0
    build_basic_info();
474
475
0
    VLOG_DEBUG << "dump tablet schema: " << _cur_tablet_schema->dump_structure();
476
477
0
    LOG(INFO) << "start " << compaction_name() << ". tablet=" << _tablet->tablet_id()
478
0
              << ", output_version=" << _output_version << ", permits: " << permits;
479
480
0
    RETURN_IF_ERROR(merge_input_rowsets());
481
482
0
    RETURN_IF_ERROR(modify_rowsets());
483
484
0
    auto* cumu_policy = tablet()->cumulative_compaction_policy();
485
0
    DCHECK(cumu_policy);
486
0
    LOG(INFO) << "succeed to do " << compaction_name() << " is_vertical=" << _is_vertical
487
0
              << ". tablet=" << _tablet->tablet_id() << ", output_version=" << _output_version
488
0
              << ", current_max_version=" << tablet()->max_version().second
489
0
              << ", disk=" << tablet()->data_dir()->path() << ", segments=" << _input_num_segments
490
0
              << ", input_data_size=" << _input_rowsets_data_size
491
0
              << ", output_rowset_size=" << _output_rowset->total_disk_size()
492
0
              << ", input_row_num=" << _input_row_num
493
0
              << ", output_row_num=" << _output_rowset->num_rows()
494
0
              << ", filtered_row_num=" << _stats.filtered_rows
495
0
              << ", merged_row_num=" << _stats.merged_rows
496
0
              << ". elapsed time=" << watch.get_elapse_second()
497
0
              << "s. cumulative_compaction_policy=" << cumu_policy->name()
498
0
              << ", compact_row_per_second=" << int(_input_row_num / watch.get_elapse_second());
499
500
0
    _state = CompactionState::SUCCESS;
501
502
0
    return Status::OK();
503
0
}
504
505
32
Status Compaction::do_inverted_index_compaction() {
506
32
    const auto& ctx = _output_rs_writer->context();
507
32
    if (!config::inverted_index_compaction_enable || _input_row_num <= 0 ||
508
32
        ctx.columns_to_do_index_compaction.empty()) {
509
14
        return Status::OK();
510
14
    }
511
512
18
    auto error_handler = [this](int64_t index_id, int64_t column_uniq_id) {
513
0
        LOG(WARNING) << "failed to do index compaction"
514
0
                     << ". tablet=" << _tablet->tablet_id() << ". column uniq id=" << column_uniq_id
515
0
                     << ". index_id=" << index_id;
516
0
        for (auto& rowset : _input_rowsets) {
517
0
            rowset->set_skip_index_compaction(column_uniq_id);
518
0
            LOG(INFO) << "mark skipping inverted index compaction next time"
519
0
                      << ". tablet=" << _tablet->tablet_id() << ", rowset=" << rowset->rowset_id()
520
0
                      << ", column uniq id=" << column_uniq_id << ", index_id=" << index_id;
521
0
        }
522
0
    };
523
524
18
    DBUG_EXECUTE_IF("Compaction::do_inverted_index_compaction_rowid_conversion_null",
525
18
                    { _stats.rowid_conversion = nullptr; })
526
18
    if (!_stats.rowid_conversion) {
527
0
        LOG(WARNING) << "failed to do index compaction, rowid conversion is null"
528
0
                     << ". tablet=" << _tablet->tablet_id()
529
0
                     << ", input row number=" << _input_row_num;
530
0
        mark_skip_index_compaction(ctx, error_handler);
531
532
0
        return Status::Error<INVERTED_INDEX_COMPACTION_ERROR>(
533
0
                "failed to do index compaction, rowid conversion is null. tablet={}",
534
0
                _tablet->tablet_id());
535
0
    }
536
537
18
    OlapStopWatch inverted_watch;
538
539
    // translation vec
540
    // <<dest_idx_num, dest_docId>>
541
    // the first level vector: index indicates src segment.
542
    // the second level vector: index indicates row id of source segment,
543
    // value indicates row id of destination segment.
544
    // <UINT32_MAX, UINT32_MAX> indicates current row not exist.
545
18
    const auto& trans_vec = _stats.rowid_conversion->get_rowid_conversion_map();
546
547
    // source rowset,segment -> index_id
548
18
    const auto& src_seg_to_id_map = _stats.rowid_conversion->get_src_segment_to_id_map();
549
550
    // dest rowset id
551
18
    RowsetId dest_rowset_id = _stats.rowid_conversion->get_dst_rowset_id();
552
    // dest segment id -> num rows
553
18
    std::vector<uint32_t> dest_segment_num_rows;
554
18
    RETURN_IF_ERROR(_output_rs_writer->get_segment_num_rows(&dest_segment_num_rows));
555
556
18
    auto src_segment_num = src_seg_to_id_map.size();
557
18
    auto dest_segment_num = dest_segment_num_rows.size();
558
559
    // when all the input rowsets are deleted, the output rowset will be empty and dest_segment_num will be 0.
560
18
    if (dest_segment_num <= 0) {
561
2
        LOG(INFO) << "skip doing index compaction due to no output segments"
562
2
                  << ". tablet=" << _tablet->tablet_id() << ", input row number=" << _input_row_num
563
2
                  << ". elapsed time=" << inverted_watch.get_elapse_second() << "s.";
564
2
        return Status::OK();
565
2
    }
566
567
    // Only write info files when debug index compaction is enabled.
568
    // The files are used to debug index compaction and works with index_tool.
569
16
    if (config::debug_inverted_index_compaction) {
570
        // src index files
571
        // format: rowsetId_segmentId
572
0
        std::vector<std::string> src_index_files(src_segment_num);
573
0
        for (const auto& m : src_seg_to_id_map) {
574
0
            std::pair<RowsetId, uint32_t> p = m.first;
575
0
            src_index_files[m.second] = p.first.to_string() + "_" + std::to_string(p.second);
576
0
        }
577
578
        // dest index files
579
        // format: rowsetId_segmentId
580
0
        std::vector<std::string> dest_index_files(dest_segment_num);
581
0
        for (int i = 0; i < dest_segment_num; ++i) {
582
0
            auto prefix = dest_rowset_id.to_string() + "_" + std::to_string(i);
583
0
            dest_index_files[i] = prefix;
584
0
        }
585
586
0
        auto write_json_to_file = [&](const nlohmann::json& json_obj,
587
0
                                      const std::string& file_name) {
588
0
            io::FileWriterPtr file_writer;
589
0
            std::string file_path =
590
0
                    fmt::format("{}/{}.json", std::string(getenv("LOG_DIR")), file_name);
591
0
            RETURN_IF_ERROR(io::global_local_filesystem()->create_file(file_path, &file_writer));
592
0
            RETURN_IF_ERROR(file_writer->append(json_obj.dump()));
593
0
            RETURN_IF_ERROR(file_writer->append("\n"));
594
0
            return file_writer->close();
595
0
        };
596
597
        // Convert trans_vec to JSON and print it
598
0
        nlohmann::json trans_vec_json = trans_vec;
599
0
        auto output_version =
600
0
                _output_version.to_string().substr(1, _output_version.to_string().size() - 2);
601
0
        RETURN_IF_ERROR(write_json_to_file(
602
0
                trans_vec_json,
603
0
                fmt::format("trans_vec_{}_{}", _tablet->tablet_id(), output_version)));
604
605
0
        nlohmann::json src_index_files_json = src_index_files;
606
0
        RETURN_IF_ERROR(write_json_to_file(
607
0
                src_index_files_json,
608
0
                fmt::format("src_idx_dirs_{}_{}", _tablet->tablet_id(), output_version)));
609
610
0
        nlohmann::json dest_index_files_json = dest_index_files;
611
0
        RETURN_IF_ERROR(write_json_to_file(
612
0
                dest_index_files_json,
613
0
                fmt::format("dest_idx_dirs_{}_{}", _tablet->tablet_id(), output_version)));
614
615
0
        nlohmann::json dest_segment_num_rows_json = dest_segment_num_rows;
616
0
        RETURN_IF_ERROR(write_json_to_file(
617
0
                dest_segment_num_rows_json,
618
0
                fmt::format("dest_seg_num_rows_{}_{}", _tablet->tablet_id(), output_version)));
619
0
    }
620
621
    // create index_writer to compaction indexes
622
16
    std::unordered_map<RowsetId, Rowset*> rs_id_to_rowset_map;
623
43
    for (auto&& rs : _input_rowsets) {
624
43
        rs_id_to_rowset_map.emplace(rs->rowset_id(), rs.get());
625
43
    }
626
627
    // src index dirs
628
16
    std::vector<std::unique_ptr<InvertedIndexFileReader>> inverted_index_file_readers(
629
16
            src_segment_num);
630
104
    for (const auto& m : src_seg_to_id_map) {
631
104
        const auto& [rowset_id, seg_id] = m.first;
632
633
104
        auto find_it = rs_id_to_rowset_map.find(rowset_id);
634
104
        DBUG_EXECUTE_IF("Compaction::do_inverted_index_compaction_find_rowset_error",
635
104
                        { find_it = rs_id_to_rowset_map.end(); })
636
104
        if (find_it == rs_id_to_rowset_map.end()) [[unlikely]] {
637
0
            LOG(WARNING) << "failed to do index compaction, cannot find rowset. tablet_id="
638
0
                         << _tablet->tablet_id() << " rowset_id=" << rowset_id.to_string();
639
0
            mark_skip_index_compaction(ctx, error_handler);
640
0
            return Status::Error<INVERTED_INDEX_COMPACTION_ERROR>(
641
0
                    "failed to do index compaction, cannot find rowset. tablet_id={} rowset_id={}",
642
0
                    _tablet->tablet_id(), rowset_id.to_string());
643
0
        }
644
645
104
        auto* rowset = find_it->second;
646
104
        auto fs = rowset->rowset_meta()->fs();
647
104
        DBUG_EXECUTE_IF("Compaction::do_inverted_index_compaction_get_fs_error", { fs = nullptr; })
648
104
        if (!fs) {
649
0
            LOG(WARNING) << "failed to do index compaction, get fs failed. resource_id="
650
0
                         << rowset->rowset_meta()->resource_id();
651
0
            mark_skip_index_compaction(ctx, error_handler);
652
0
            return Status::Error<INVERTED_INDEX_COMPACTION_ERROR>(
653
0
                    "get fs failed, resource_id={}", rowset->rowset_meta()->resource_id());
654
0
        }
655
656
104
        auto seg_path = rowset->segment_path(seg_id);
657
104
        DBUG_EXECUTE_IF("Compaction::do_inverted_index_compaction_seg_path_nullptr", {
658
104
            seg_path = ResultError(Status::Error<ErrorCode::INTERNAL_ERROR>(
659
104
                    "do_inverted_index_compaction_seg_path_nullptr"));
660
104
        })
661
104
        if (!seg_path.has_value()) {
662
0
            LOG(WARNING) << "failed to do index compaction, get segment path failed. tablet_id="
663
0
                         << _tablet->tablet_id() << " rowset_id=" << rowset_id.to_string()
664
0
                         << " seg_id=" << seg_id;
665
0
            mark_skip_index_compaction(ctx, error_handler);
666
0
            return Status::Error<INVERTED_INDEX_COMPACTION_ERROR>(
667
0
                    "get segment path failed. tablet_id={} rowset_id={} seg_id={}",
668
0
                    _tablet->tablet_id(), rowset_id.to_string(), seg_id);
669
0
        }
670
104
        auto inverted_index_file_reader = std::make_unique<InvertedIndexFileReader>(
671
104
                fs,
672
104
                std::string {InvertedIndexDescriptor::get_index_file_path_prefix(seg_path.value())},
673
104
                _cur_tablet_schema->get_inverted_index_storage_format(),
674
104
                rowset->rowset_meta()->inverted_index_file_info(seg_id));
675
104
        auto st = inverted_index_file_reader->init(config::inverted_index_read_buffer_size);
676
104
        DBUG_EXECUTE_IF("Compaction::do_inverted_index_compaction_init_inverted_index_file_reader",
677
104
                        {
678
104
                            st = Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
679
104
                                    "debug point: "
680
104
                                    "Compaction::do_inverted_index_compaction_init_inverted_index_"
681
104
                                    "file_reader error");
682
104
                        })
683
104
        if (!st.ok()) {
684
0
            LOG(WARNING) << "failed to do index compaction, init inverted index file reader "
685
0
                            "failed. tablet_id="
686
0
                         << _tablet->tablet_id() << " rowset_id=" << rowset_id.to_string()
687
0
                         << " seg_id=" << seg_id;
688
0
            mark_skip_index_compaction(ctx, error_handler);
689
0
            return Status::Error<INVERTED_INDEX_COMPACTION_ERROR>(
690
0
                    "init inverted index file reader failed. tablet_id={} rowset_id={} seg_id={}",
691
0
                    _tablet->tablet_id(), rowset_id.to_string(), seg_id);
692
0
        }
693
104
        inverted_index_file_readers[m.second] = std::move(inverted_index_file_reader);
694
104
    }
695
696
    // dest index files
697
    // format: rowsetId_segmentId
698
16
    auto& inverted_index_file_writers = dynamic_cast<BaseBetaRowsetWriter*>(_output_rs_writer.get())
699
16
                                                ->inverted_index_file_writers();
700
16
    DBUG_EXECUTE_IF(
701
16
            "Compaction::do_inverted_index_compaction_inverted_index_file_writers_size_error",
702
16
            { inverted_index_file_writers.clear(); })
703
16
    if (inverted_index_file_writers.size() != dest_segment_num) {
704
0
        LOG(WARNING) << "failed to do index compaction, dest segment num not match. tablet_id="
705
0
                     << _tablet->tablet_id() << " dest_segment_num=" << dest_segment_num
706
0
                     << " inverted_index_file_writers.size()="
707
0
                     << inverted_index_file_writers.size();
708
0
        mark_skip_index_compaction(ctx, error_handler);
709
0
        return Status::Error<INVERTED_INDEX_COMPACTION_ERROR>(
710
0
                "dest segment num not match. tablet_id={} dest_segment_num={} "
711
0
                "inverted_index_file_writers.size()={}",
712
0
                _tablet->tablet_id(), dest_segment_num, inverted_index_file_writers.size());
713
0
    }
714
715
    // use tmp file dir to store index files
716
16
    auto tmp_file_dir = ExecEnv::GetInstance()->get_tmp_file_dirs()->get_tmp_file_dir();
717
16
    auto index_tmp_path = tmp_file_dir / dest_rowset_id.to_string();
718
16
    LOG(INFO) << "start index compaction"
719
16
              << ". tablet=" << _tablet->tablet_id() << ", source index size=" << src_segment_num
720
16
              << ", destination index size=" << dest_segment_num << ".";
721
722
16
    Status status = Status::OK();
723
306
    for (auto&& column_uniq_id : ctx.columns_to_do_index_compaction) {
724
306
        auto col = _cur_tablet_schema->column_by_uid(column_uniq_id);
725
306
        const auto* index_meta = _cur_tablet_schema->inverted_index(col);
726
306
        DBUG_EXECUTE_IF("Compaction::do_inverted_index_compaction_can_not_find_index_meta",
727
306
                        { index_meta = nullptr; })
728
306
        if (index_meta == nullptr) {
729
0
            status = Status::Error<INVERTED_INDEX_COMPACTION_ERROR>(
730
0
                    fmt::format("Can not find index_meta for col {}", col.name()));
731
0
            LOG(WARNING) << "failed to do index compaction, can not find index_meta for column"
732
0
                         << ". tablet=" << _tablet->tablet_id()
733
0
                         << ", column uniq id=" << column_uniq_id;
734
0
            error_handler(-1, column_uniq_id);
735
0
            break;
736
0
        }
737
738
306
        std::vector<lucene::store::Directory*> dest_index_dirs(dest_segment_num);
739
306
        try {
740
306
            std::vector<std::unique_ptr<DorisCompoundReader>> src_idx_dirs(src_segment_num);
741
1.29k
            for (int src_segment_id = 0; src_segment_id < src_segment_num; src_segment_id++) {
742
988
                auto res = inverted_index_file_readers[src_segment_id]->open(index_meta);
743
988
                DBUG_EXECUTE_IF("Compaction::open_inverted_index_file_reader", {
744
988
                    res = ResultError(Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
745
988
                            "debug point: Compaction::open_index_file_reader error"));
746
988
                })
747
988
                if (!res.has_value()) {
748
0
                    LOG(WARNING) << "failed to do index compaction, open inverted index file "
749
0
                                    "reader failed"
750
0
                                 << ". tablet=" << _tablet->tablet_id()
751
0
                                 << ", column uniq id=" << column_uniq_id
752
0
                                 << ", src_segment_id=" << src_segment_id;
753
0
                    throw Exception(ErrorCode::INVERTED_INDEX_COMPACTION_ERROR, res.error().msg());
754
0
                }
755
988
                src_idx_dirs[src_segment_id] = std::move(res.value());
756
988
            }
757
723
            for (int dest_segment_id = 0; dest_segment_id < dest_segment_num; dest_segment_id++) {
758
417
                auto res = inverted_index_file_writers[dest_segment_id]->open(index_meta);
759
417
                DBUG_EXECUTE_IF("Compaction::open_inverted_index_file_writer", {
760
417
                    res = ResultError(Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
761
417
                            "debug point: Compaction::open_inverted_index_file_writer error"));
762
417
                })
763
417
                if (!res.has_value()) {
764
0
                    LOG(WARNING) << "failed to do index compaction, open inverted index file "
765
0
                                    "writer failed"
766
0
                                 << ". tablet=" << _tablet->tablet_id()
767
0
                                 << ", column uniq id=" << column_uniq_id
768
0
                                 << ", dest_segment_id=" << dest_segment_id;
769
0
                    throw Exception(ErrorCode::INVERTED_INDEX_COMPACTION_ERROR, res.error().msg());
770
0
                }
771
                // Destination directories in dest_index_dirs do not need to be deconstructed,
772
                // but their lifecycle must be managed by inverted_index_file_writers.
773
417
                dest_index_dirs[dest_segment_id] = res.value().get();
774
417
            }
775
306
            auto st = compact_column(index_meta->index_id(), src_idx_dirs, dest_index_dirs,
776
306
                                     index_tmp_path.native(), trans_vec, dest_segment_num_rows);
777
306
            if (!st.ok()) {
778
0
                error_handler(index_meta->index_id(), column_uniq_id);
779
0
                status = Status::Error<INVERTED_INDEX_COMPACTION_ERROR>(st.msg());
780
0
            }
781
306
        } catch (CLuceneError& e) {
782
0
            error_handler(index_meta->index_id(), column_uniq_id);
783
0
            status = Status::Error<INVERTED_INDEX_COMPACTION_ERROR>(e.what());
784
0
        } catch (const Exception& e) {
785
0
            error_handler(index_meta->index_id(), column_uniq_id);
786
0
            status = Status::Error<INVERTED_INDEX_COMPACTION_ERROR>(e.what());
787
0
        }
788
306
    }
789
790
    // check index compaction status. If status is not ok, we should return error and end this compaction round.
791
16
    if (!status.ok()) {
792
0
        return status;
793
0
    }
794
16
    LOG(INFO) << "succeed to do index compaction"
795
16
              << ". tablet=" << _tablet->tablet_id()
796
16
              << ". elapsed time=" << inverted_watch.get_elapse_second() << "s.";
797
798
16
    return Status::OK();
799
16
}
800
801
void Compaction::mark_skip_index_compaction(
802
        const RowsetWriterContext& context,
803
0
        const std::function<void(int64_t, int64_t)>& error_handler) {
804
0
    for (auto&& column_uniq_id : context.columns_to_do_index_compaction) {
805
0
        auto col = _cur_tablet_schema->column_by_uid(column_uniq_id);
806
0
        const auto* index_meta = _cur_tablet_schema->inverted_index(col);
807
0
        DBUG_EXECUTE_IF("Compaction::mark_skip_index_compaction_can_not_find_index_meta",
808
0
                        { index_meta = nullptr; })
809
0
        if (index_meta == nullptr) {
810
0
            LOG(WARNING) << "mark skip index compaction, can not find index_meta for column"
811
0
                         << ". tablet=" << _tablet->tablet_id()
812
0
                         << ", column uniq id=" << column_uniq_id;
813
0
            error_handler(-1, column_uniq_id);
814
0
            continue;
815
0
        }
816
0
        error_handler(index_meta->index_id(), column_uniq_id);
817
0
    }
818
0
}
819
820
21
void Compaction::construct_index_compaction_columns(RowsetWriterContext& ctx) {
821
414
    for (const auto& index : _cur_tablet_schema->inverted_indexes()) {
822
414
        auto col_unique_ids = index->col_unique_ids();
823
        // check if column unique ids is empty to avoid crash
824
414
        if (col_unique_ids.empty()) {
825
1
            LOG(WARNING) << "tablet[" << _tablet->tablet_id() << "] index[" << index->index_id()
826
1
                         << "] has no column unique id, will skip index compaction."
827
1
                         << " tablet_schema=" << _cur_tablet_schema->dump_full_schema();
828
1
            continue;
829
1
        }
830
413
        auto col_unique_id = col_unique_ids[0];
831
413
        if (!_cur_tablet_schema->has_column_unique_id(col_unique_id)) {
832
0
            LOG(WARNING) << "tablet[" << _tablet->tablet_id() << "] column_unique_id["
833
0
                         << col_unique_id << "] not found, will skip index compaction";
834
0
            continue;
835
0
        }
836
        // Avoid doing inverted index compaction on non-slice type columns
837
413
        if (!field_is_slice_type(_cur_tablet_schema->column_by_uid(col_unique_id).type())) {
838
22
            continue;
839
22
        }
840
841
        // if index properties are different, index compaction maybe needs to be skipped.
842
391
        bool is_continue = false;
843
391
        std::optional<std::map<std::string, std::string>> first_properties;
844
1.29k
        for (const auto& rowset : _input_rowsets) {
845
1.29k
            const auto* tablet_index = rowset->tablet_schema()->inverted_index(col_unique_id);
846
            // no inverted index or index id is different from current index id
847
1.29k
            if (tablet_index == nullptr || tablet_index->index_id() != index->index_id()) {
848
3
                is_continue = true;
849
3
                break;
850
3
            }
851
1.29k
            auto properties = tablet_index->properties();
852
1.29k
            if (!first_properties.has_value()) {
853
388
                first_properties = properties;
854
908
            } else {
855
908
                DBUG_EXECUTE_IF(
856
908
                        "Compaction::do_inverted_index_compaction_index_properties_different",
857
908
                        { properties.emplace("dummy_key", "dummy_value"); })
858
908
                if (properties != first_properties.value()) {
859
3
                    is_continue = true;
860
3
                    break;
861
3
                }
862
908
            }
863
1.29k
        }
864
391
        if (is_continue) {
865
6
            continue;
866
6
        }
867
1.28k
        auto has_inverted_index = [&](const RowsetSharedPtr& src_rs) {
868
1.28k
            auto* rowset = static_cast<BetaRowset*>(src_rs.get());
869
1.28k
            DBUG_EXECUTE_IF("Compaction::construct_skip_inverted_index_is_skip_index_compaction",
870
1.28k
                            { rowset->set_skip_index_compaction(col_unique_id); })
871
1.28k
            if (rowset->is_skip_index_compaction(col_unique_id)) {
872
1
                LOG(WARNING) << "tablet[" << _tablet->tablet_id() << "] rowset["
873
1
                             << rowset->rowset_id() << "] column_unique_id[" << col_unique_id
874
1
                             << "] skip inverted index compaction due to last failure";
875
1
                return false;
876
1
            }
877
878
1.28k
            auto fs = rowset->rowset_meta()->fs();
879
1.28k
            DBUG_EXECUTE_IF("Compaction::construct_skip_inverted_index_get_fs_error",
880
1.28k
                            { fs = nullptr; })
881
1.28k
            if (!fs) {
882
2
                LOG(WARNING) << "get fs failed, resource_id="
883
2
                             << rowset->rowset_meta()->resource_id();
884
2
                return false;
885
2
            }
886
887
1.28k
            const auto* index_meta = rowset->tablet_schema()->inverted_index(col_unique_id);
888
1.28k
            DBUG_EXECUTE_IF("Compaction::construct_skip_inverted_index_index_meta_nullptr",
889
1.28k
                            { index_meta = nullptr; })
890
1.28k
            if (index_meta == nullptr) {
891
0
                LOG(WARNING) << "tablet[" << _tablet->tablet_id() << "] column_unique_id["
892
0
                             << col_unique_id << "] index meta is null, will skip index compaction";
893
0
                return false;
894
0
            }
895
896
2.51k
            for (auto i = 0; i < rowset->num_segments(); i++) {
897
                // TODO: inverted_index_path
898
1.23k
                auto seg_path = rowset->segment_path(i);
899
1.23k
                DBUG_EXECUTE_IF("Compaction::construct_skip_inverted_index_seg_path_nullptr", {
900
1.23k
                    seg_path = ResultError(Status::Error<ErrorCode::INTERNAL_ERROR>(
901
1.23k
                            "construct_skip_inverted_index_seg_path_nullptr"));
902
1.23k
                })
903
1.23k
                if (!seg_path) {
904
0
                    LOG(WARNING) << seg_path.error();
905
0
                    return false;
906
0
                }
907
908
1.23k
                std::string index_file_path;
909
1.23k
                try {
910
1.23k
                    auto inverted_index_file_reader = std::make_unique<InvertedIndexFileReader>(
911
1.23k
                            fs,
912
1.23k
                            std::string {InvertedIndexDescriptor::get_index_file_path_prefix(
913
1.23k
                                    seg_path.value())},
914
1.23k
                            _cur_tablet_schema->get_inverted_index_storage_format(),
915
1.23k
                            rowset->rowset_meta()->inverted_index_file_info(i));
916
1.23k
                    auto st = inverted_index_file_reader->init(
917
1.23k
                            config::inverted_index_read_buffer_size);
918
1.23k
                    index_file_path = inverted_index_file_reader->get_index_file_path(index_meta);
919
1.23k
                    DBUG_EXECUTE_IF(
920
1.23k
                            "Compaction::construct_skip_inverted_index_index_file_reader_init_"
921
1.23k
                            "status_not_ok",
922
1.23k
                            {
923
1.23k
                                st = Status::Error<ErrorCode::INTERNAL_ERROR>(
924
1.23k
                                        "debug point: "
925
1.23k
                                        "construct_skip_inverted_index_index_file_reader_init_"
926
1.23k
                                        "status_"
927
1.23k
                                        "not_ok");
928
1.23k
                            })
929
1.23k
                    if (!st.ok()) {
930
0
                        LOG(WARNING) << "init index " << index_file_path << " error:" << st;
931
0
                        return false;
932
0
                    }
933
934
                    // check index meta
935
1.23k
                    auto result = inverted_index_file_reader->open(index_meta);
936
1.23k
                    DBUG_EXECUTE_IF(
937
1.23k
                            "Compaction::construct_skip_inverted_index_index_file_reader_open_"
938
1.23k
                            "error",
939
1.23k
                            {
940
1.23k
                                result = ResultError(
941
1.23k
                                        Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
942
1.23k
                                                "CLuceneError occur when open idx file"));
943
1.23k
                            })
944
1.23k
                    if (!result.has_value()) {
945
0
                        LOG(WARNING)
946
0
                                << "open index " << index_file_path << " error:" << result.error();
947
0
                        return false;
948
0
                    }
949
1.23k
                    auto reader = std::move(result.value());
950
1.23k
                    std::vector<std::string> files;
951
1.23k
                    reader->list(&files);
952
1.23k
                    reader->close();
953
1.23k
                    DBUG_EXECUTE_IF(
954
1.23k
                            "Compaction::construct_skip_inverted_index_index_reader_close_error",
955
1.23k
                            { _CLTHROWA(CL_ERR_IO, "debug point: reader close error"); })
956
957
1.23k
                    DBUG_EXECUTE_IF("Compaction::construct_skip_inverted_index_index_files_count",
958
1.23k
                                    { files.clear(); })
959
960
                    // why is 3?
961
                    // slice type index file at least has 3 files: null_bitmap, segments_N, segments.gen
962
1.23k
                    if (files.size() < 3) {
963
0
                        LOG(WARNING) << "tablet[" << _tablet->tablet_id() << "] column_unique_id["
964
0
                                     << col_unique_id << "]," << index_file_path
965
0
                                     << " is corrupted, will skip index compaction";
966
0
                        return false;
967
0
                    }
968
1.23k
                } catch (CLuceneError& err) {
969
0
                    LOG(WARNING) << "tablet[" << _tablet->tablet_id() << "] column_unique_id["
970
0
                                 << col_unique_id << "] open index[" << index_file_path
971
0
                                 << "], will skip index compaction, error:" << err.what();
972
0
                    return false;
973
0
                }
974
1.23k
            }
975
1.28k
            return true;
976
1.28k
        };
977
978
385
        bool all_have_inverted_index = std::all_of(_input_rowsets.begin(), _input_rowsets.end(),
979
385
                                                   std::move(has_inverted_index));
980
981
385
        if (all_have_inverted_index) {
982
382
            ctx.columns_to_do_index_compaction.insert(col_unique_id);
983
382
        }
984
385
    }
985
21
}
986
987
35
Status CompactionMixin::construct_output_rowset_writer(RowsetWriterContext& ctx) {
988
    // only do index compaction for dup_keys and unique_keys with mow enabled
989
35
    if (config::inverted_index_compaction_enable &&
990
35
        (((_tablet->keys_type() == KeysType::UNIQUE_KEYS &&
991
21
           _tablet->enable_unique_key_merge_on_write()) ||
992
21
          _tablet->keys_type() == KeysType::DUP_KEYS))) {
993
21
        construct_index_compaction_columns(ctx);
994
21
    }
995
35
    ctx.version = _output_version;
996
35
    ctx.rowset_state = VISIBLE;
997
35
    ctx.segments_overlap = NONOVERLAPPING;
998
35
    ctx.tablet_schema = _cur_tablet_schema;
999
35
    ctx.newest_write_timestamp = _newest_write_timestamp;
1000
35
    ctx.write_type = DataWriteType::TYPE_COMPACTION;
1001
35
    _output_rs_writer = DORIS_TRY(_tablet->create_rowset_writer(ctx, _is_vertical));
1002
35
    _pending_rs_guard = _engine.add_pending_rowset(ctx);
1003
35
    return Status::OK();
1004
35
}
1005
1006
0
Status CompactionMixin::modify_rowsets() {
1007
0
    std::vector<RowsetSharedPtr> output_rowsets;
1008
0
    output_rowsets.push_back(_output_rowset);
1009
1010
0
    if (_tablet->keys_type() == KeysType::UNIQUE_KEYS &&
1011
0
        _tablet->enable_unique_key_merge_on_write()) {
1012
0
        Version version = tablet()->max_version();
1013
0
        DeleteBitmap output_rowset_delete_bitmap(_tablet->tablet_id());
1014
0
        std::unique_ptr<RowLocationSet> missed_rows;
1015
0
        if ((config::enable_missing_rows_correctness_check ||
1016
0
             config::enable_mow_compaction_correctness_check_core) &&
1017
0
            !_allow_delete_in_cumu_compaction &&
1018
0
            compaction_type() == ReaderType::READER_CUMULATIVE_COMPACTION) {
1019
0
            missed_rows = std::make_unique<RowLocationSet>();
1020
0
            LOG(INFO) << "RowLocation Set inited succ for tablet:" << _tablet->tablet_id();
1021
0
        }
1022
0
        std::unique_ptr<std::map<RowsetSharedPtr, RowLocationPairList>> location_map;
1023
0
        if (config::enable_rowid_conversion_correctness_check) {
1024
0
            location_map = std::make_unique<std::map<RowsetSharedPtr, RowLocationPairList>>();
1025
0
            LOG(INFO) << "Location Map inited succ for tablet:" << _tablet->tablet_id();
1026
0
        }
1027
        // Convert the delete bitmap of the input rowsets to output rowset.
1028
        // New loads are not blocked, so some keys of input rowsets might
1029
        // be deleted during the time. We need to deal with delete bitmap
1030
        // of incremental data later.
1031
        // TODO(LiaoXin): check if there are duplicate keys
1032
0
        std::size_t missed_rows_size = 0;
1033
0
        tablet()->calc_compaction_output_rowset_delete_bitmap(
1034
0
                _input_rowsets, *_rowid_conversion, 0, version.second + 1, missed_rows.get(),
1035
0
                location_map.get(), _tablet->tablet_meta()->delete_bitmap(),
1036
0
                &output_rowset_delete_bitmap);
1037
0
        if (missed_rows) {
1038
0
            missed_rows_size = missed_rows->size();
1039
0
            std::size_t merged_missed_rows_size = _stats.merged_rows;
1040
0
            if (!_tablet->tablet_meta()->tablet_schema()->cluster_key_idxes().empty()) {
1041
0
                merged_missed_rows_size += _stats.filtered_rows;
1042
0
            }
1043
1044
            // Suppose a heavy schema change process on BE converting tablet A to tablet B.
1045
            // 1. during schema change double write, new loads write [X-Y] on tablet B.
1046
            // 2. rowsets with version [a],[a+1],...,[b-1],[b] on tablet B are picked for cumu compaction(X<=a<b<=Y).(cumu compaction
1047
            //    on new tablet during schema change double write is allowed after https://github.com/apache/doris/pull/16470)
1048
            // 3. schema change remove all rowsets on tablet B before version Z(b<=Z<=Y) before it begins to convert historical rowsets.
1049
            // 4. schema change finishes.
1050
            // 5. cumu compation begins on new tablet with version [a],...,[b]. If there are duplicate keys between these rowsets,
1051
            //    the compaction check will fail because these rowsets have skipped to calculate delete bitmap in commit phase and
1052
            //    publish phase because tablet B is in NOT_READY state when writing.
1053
1054
            // Considering that the cumu compaction will fail finally in this situation because `Tablet::modify_rowsets` will check if rowsets in
1055
            // `to_delete`(_input_rowsets) still exist in tablet's `_rs_version_map`, we can just skip to check missed rows here.
1056
0
            bool need_to_check_missed_rows = true;
1057
0
            {
1058
0
                std::shared_lock rlock(_tablet->get_header_lock());
1059
0
                need_to_check_missed_rows =
1060
0
                        std::all_of(_input_rowsets.begin(), _input_rowsets.end(),
1061
0
                                    [&](const RowsetSharedPtr& rowset) {
1062
0
                                        return tablet()->rowset_exists_unlocked(rowset);
1063
0
                                    });
1064
0
            }
1065
1066
0
            if (_tablet->tablet_state() == TABLET_RUNNING &&
1067
0
                merged_missed_rows_size != missed_rows_size && need_to_check_missed_rows) {
1068
0
                std::stringstream ss;
1069
0
                ss << "cumulative compaction: the merged rows(" << _stats.merged_rows
1070
0
                   << "), filtered rows(" << _stats.filtered_rows
1071
0
                   << ") is not equal to missed rows(" << missed_rows_size
1072
0
                   << ") in rowid conversion, tablet_id: " << _tablet->tablet_id()
1073
0
                   << ", table_id:" << _tablet->table_id();
1074
0
                if (missed_rows_size == 0) {
1075
0
                    ss << ", debug info: ";
1076
0
                    DeleteBitmap subset_map(_tablet->tablet_id());
1077
0
                    for (auto rs : _input_rowsets) {
1078
0
                        _tablet->tablet_meta()->delete_bitmap().subset(
1079
0
                                {rs->rowset_id(), 0, 0},
1080
0
                                {rs->rowset_id(), rs->num_segments(), version.second + 1},
1081
0
                                &subset_map);
1082
0
                        ss << "(rowset id: " << rs->rowset_id()
1083
0
                           << ", delete bitmap cardinality: " << subset_map.cardinality() << ")";
1084
0
                    }
1085
0
                    ss << ", version[0-" << version.second + 1 << "]";
1086
0
                }
1087
0
                std::string err_msg = fmt::format(
1088
0
                        "cumulative compaction: the merged rows({}), filtered rows({})"
1089
0
                        " is not equal to missed rows({}) in rowid conversion,"
1090
0
                        " tablet_id: {}, table_id:{}",
1091
0
                        _stats.merged_rows, _stats.filtered_rows, missed_rows_size,
1092
0
                        _tablet->tablet_id(), _tablet->table_id());
1093
0
                if (config::enable_mow_compaction_correctness_check_core) {
1094
0
                    CHECK(false) << err_msg;
1095
0
                } else {
1096
0
                    DCHECK(false) << err_msg;
1097
0
                }
1098
0
                LOG(WARNING) << err_msg;
1099
0
            }
1100
0
        }
1101
1102
0
        if (location_map) {
1103
0
            RETURN_IF_ERROR(tablet()->check_rowid_conversion(_output_rowset, *location_map));
1104
0
            location_map->clear();
1105
0
        }
1106
1107
0
        {
1108
0
            std::lock_guard<std::mutex> wrlock_(tablet()->get_rowset_update_lock());
1109
0
            std::lock_guard<std::shared_mutex> wrlock(_tablet->get_header_lock());
1110
0
            SCOPED_SIMPLE_TRACE_IF_TIMEOUT(TRACE_TABLET_LOCK_THRESHOLD);
1111
1112
            // Here we will calculate all the rowsets delete bitmaps which are committed but not published to reduce the calculation pressure
1113
            // of publish phase.
1114
            // All rowsets which need to recalculate have been published so we don't need to acquire lock.
1115
            // Step1: collect this tablet's all committed rowsets' delete bitmaps
1116
0
            CommitTabletTxnInfoVec commit_tablet_txn_info_vec {};
1117
0
            _engine.txn_manager()->get_all_commit_tablet_txn_info_by_tablet(
1118
0
                    *tablet(), &commit_tablet_txn_info_vec);
1119
1120
            // Step2: calculate all rowsets' delete bitmaps which are published during compaction.
1121
0
            for (auto& it : commit_tablet_txn_info_vec) {
1122
0
                if (!_check_if_includes_input_rowsets(it.rowset_ids)) {
1123
                    // When calculating the delete bitmap of all committed rowsets relative to the compaction,
1124
                    // there may be cases where the compacted rowsets are newer than the committed rowsets.
1125
                    // At this time, row number conversion cannot be performed, otherwise data will be missing.
1126
                    // Therefore, we need to check if every committed rowset has calculated delete bitmap for
1127
                    // all compaction input rowsets.
1128
0
                    continue;
1129
0
                }
1130
0
                DeleteBitmap txn_output_delete_bitmap(_tablet->tablet_id());
1131
0
                tablet()->calc_compaction_output_rowset_delete_bitmap(
1132
0
                        _input_rowsets, *_rowid_conversion, 0, UINT64_MAX, missed_rows.get(),
1133
0
                        location_map.get(), *it.delete_bitmap.get(), &txn_output_delete_bitmap);
1134
0
                if (config::enable_merge_on_write_correctness_check) {
1135
0
                    RowsetIdUnorderedSet rowsetids;
1136
0
                    rowsetids.insert(_output_rowset->rowset_id());
1137
0
                    _tablet->add_sentinel_mark_to_delete_bitmap(&txn_output_delete_bitmap,
1138
0
                                                                rowsetids);
1139
0
                }
1140
0
                it.delete_bitmap->merge(txn_output_delete_bitmap);
1141
                // Step3: write back updated delete bitmap and tablet info.
1142
0
                it.rowset_ids.insert(_output_rowset->rowset_id());
1143
0
                _engine.txn_manager()->set_txn_related_delete_bitmap(
1144
0
                        it.partition_id, it.transaction_id, _tablet->tablet_id(),
1145
0
                        tablet()->tablet_uid(), true, it.delete_bitmap, it.rowset_ids,
1146
0
                        it.partial_update_info);
1147
0
            }
1148
1149
            // Convert the delete bitmap of the input rowsets to output rowset for
1150
            // incremental data.
1151
0
            tablet()->calc_compaction_output_rowset_delete_bitmap(
1152
0
                    _input_rowsets, *_rowid_conversion, version.second, UINT64_MAX,
1153
0
                    missed_rows.get(), location_map.get(), _tablet->tablet_meta()->delete_bitmap(),
1154
0
                    &output_rowset_delete_bitmap);
1155
1156
0
            if (missed_rows) {
1157
0
                DCHECK_EQ(missed_rows->size(), missed_rows_size);
1158
0
                if (missed_rows->size() != missed_rows_size) {
1159
0
                    LOG(WARNING) << "missed rows don't match, before: " << missed_rows_size
1160
0
                                 << " after: " << missed_rows->size();
1161
0
                }
1162
0
            }
1163
1164
0
            if (location_map) {
1165
0
                RETURN_IF_ERROR(tablet()->check_rowid_conversion(_output_rowset, *location_map));
1166
0
            }
1167
1168
0
            tablet()->merge_delete_bitmap(output_rowset_delete_bitmap);
1169
0
            RETURN_IF_ERROR(tablet()->modify_rowsets(output_rowsets, _input_rowsets, true));
1170
0
        }
1171
0
    } else {
1172
0
        std::lock_guard<std::shared_mutex> wrlock(_tablet->get_header_lock());
1173
0
        SCOPED_SIMPLE_TRACE_IF_TIMEOUT(TRACE_TABLET_LOCK_THRESHOLD);
1174
0
        RETURN_IF_ERROR(tablet()->modify_rowsets(output_rowsets, _input_rowsets, true));
1175
0
    }
1176
1177
0
    if (config::tablet_rowset_stale_sweep_by_size &&
1178
0
        _tablet->tablet_meta()->all_stale_rs_metas().size() >=
1179
0
                config::tablet_rowset_stale_sweep_threshold_size) {
1180
0
        tablet()->delete_expired_stale_rowset();
1181
0
    }
1182
1183
0
    int64_t cur_max_version = 0;
1184
0
    {
1185
0
        std::shared_lock rlock(_tablet->get_header_lock());
1186
0
        cur_max_version = _tablet->max_version_unlocked();
1187
0
        tablet()->save_meta();
1188
0
    }
1189
0
    if (_tablet->keys_type() == KeysType::UNIQUE_KEYS &&
1190
0
        _tablet->enable_unique_key_merge_on_write()) {
1191
0
        auto st = TabletMetaManager::remove_old_version_delete_bitmap(
1192
0
                tablet()->data_dir(), _tablet->tablet_id(), cur_max_version);
1193
0
        if (!st.ok()) {
1194
0
            LOG(WARNING) << "failed to remove old version delete bitmap, st: " << st;
1195
0
        }
1196
0
    }
1197
0
    return Status::OK();
1198
0
}
1199
1200
bool CompactionMixin::_check_if_includes_input_rowsets(
1201
0
        const RowsetIdUnorderedSet& commit_rowset_ids_set) const {
1202
0
    std::vector<RowsetId> commit_rowset_ids {};
1203
0
    commit_rowset_ids.insert(commit_rowset_ids.end(), commit_rowset_ids_set.begin(),
1204
0
                             commit_rowset_ids_set.end());
1205
0
    std::sort(commit_rowset_ids.begin(), commit_rowset_ids.end());
1206
0
    std::vector<RowsetId> input_rowset_ids {};
1207
0
    for (const auto& rowset : _input_rowsets) {
1208
0
        input_rowset_ids.emplace_back(rowset->rowset_meta()->rowset_id());
1209
0
    }
1210
0
    std::sort(input_rowset_ids.begin(), input_rowset_ids.end());
1211
0
    return std::includes(commit_rowset_ids.begin(), commit_rowset_ids.end(),
1212
0
                         input_rowset_ids.begin(), input_rowset_ids.end());
1213
0
}
1214
1215
0
Status Compaction::check_correctness() {
1216
    // 1. check row number
1217
0
    if (_input_row_num != _output_rowset->num_rows() + _stats.merged_rows + _stats.filtered_rows) {
1218
0
        return Status::Error<CHECK_LINES_ERROR>(
1219
0
                "row_num does not match between cumulative input and output! tablet={}, "
1220
0
                "input_row_num={}, merged_row_num={}, filtered_row_num={}, output_row_num={}",
1221
0
                _tablet->tablet_id(), _input_row_num, _stats.merged_rows, _stats.filtered_rows,
1222
0
                _output_rowset->num_rows());
1223
0
    }
1224
0
    return Status::OK();
1225
0
}
1226
1227
10
int64_t CompactionMixin::get_compaction_permits() {
1228
10
    int64_t permits = 0;
1229
280
    for (auto&& rowset : _input_rowsets) {
1230
280
        permits += rowset->rowset_meta()->get_compaction_score();
1231
280
    }
1232
10
    return permits;
1233
10
}
1234
1235
0
void Compaction::_load_segment_to_cache() {
1236
    // Load new rowset's segments to cache.
1237
0
    SegmentCacheHandle handle;
1238
0
    auto st = SegmentLoader::instance()->load_segments(
1239
0
            std::static_pointer_cast<BetaRowset>(_output_rowset), &handle, true);
1240
0
    if (!st.ok()) {
1241
0
        LOG(WARNING) << "failed to load segment to cache! output rowset version="
1242
0
                     << _output_rowset->start_version() << "-" << _output_rowset->end_version()
1243
0
                     << ".";
1244
0
    }
1245
0
}
1246
1247
0
void CloudCompactionMixin::build_basic_info() {
1248
0
    _output_version =
1249
0
            Version(_input_rowsets.front()->start_version(), _input_rowsets.back()->end_version());
1250
1251
0
    _newest_write_timestamp = _input_rowsets.back()->newest_write_timestamp();
1252
1253
0
    std::vector<RowsetMetaSharedPtr> rowset_metas(_input_rowsets.size());
1254
0
    std::transform(_input_rowsets.begin(), _input_rowsets.end(), rowset_metas.begin(),
1255
0
                   [](const RowsetSharedPtr& rowset) { return rowset->rowset_meta(); });
1256
0
    _cur_tablet_schema = _tablet->tablet_schema_with_merged_max_schema_version(rowset_metas);
1257
0
}
1258
1259
0
int64_t CloudCompactionMixin::get_compaction_permits() {
1260
0
    int64_t permits = 0;
1261
0
    for (auto&& rowset : _input_rowsets) {
1262
0
        permits += rowset->rowset_meta()->get_compaction_score();
1263
0
    }
1264
0
    return permits;
1265
0
}
1266
1267
CloudCompactionMixin::CloudCompactionMixin(CloudStorageEngine& engine, CloudTabletSPtr tablet,
1268
                                           const std::string& label)
1269
0
        : Compaction(tablet, label), _engine(engine) {
1270
0
    auto uuid = UUIDGenerator::instance()->next_uuid();
1271
0
    std::stringstream ss;
1272
0
    ss << uuid;
1273
0
    _uuid = ss.str();
1274
0
}
1275
1276
0
Status CloudCompactionMixin::execute_compact_impl(int64_t permits) {
1277
0
    OlapStopWatch watch;
1278
1279
0
    build_basic_info();
1280
1281
0
    LOG(INFO) << "start " << compaction_name() << ". tablet=" << _tablet->tablet_id()
1282
0
              << ", output_version=" << _output_version << ", permits: " << permits;
1283
1284
0
    RETURN_IF_ERROR(merge_input_rowsets());
1285
1286
0
    DBUG_EXECUTE_IF("CloudFullCompaction::modify_rowsets.wrong_rowset_id", {
1287
0
        DCHECK(compaction_type() == ReaderType::READER_FULL_COMPACTION);
1288
0
        RowsetId id;
1289
0
        id.version = 2;
1290
0
        id.hi = _output_rowset->rowset_meta()->rowset_id().hi + ((int64_t)(1) << 56);
1291
0
        id.mi = _output_rowset->rowset_meta()->rowset_id().mi;
1292
0
        id.lo = _output_rowset->rowset_meta()->rowset_id().lo;
1293
0
        _output_rowset->rowset_meta()->set_rowset_id(id);
1294
0
        LOG(INFO) << "[Debug wrong rowset id]:"
1295
0
                  << _output_rowset->rowset_meta()->rowset_id().to_string();
1296
0
    })
1297
1298
0
    RETURN_IF_ERROR(_engine.meta_mgr().commit_rowset(*_output_rowset->rowset_meta().get()));
1299
1300
    // 4. modify rowsets in memory
1301
0
    RETURN_IF_ERROR(modify_rowsets());
1302
1303
0
    return Status::OK();
1304
0
}
1305
1306
0
int64_t CloudCompactionMixin::initiator() const {
1307
0
    return HashUtil::hash64(_uuid.data(), _uuid.size(), 0) & std::numeric_limits<int64_t>::max();
1308
0
}
1309
1310
0
Status CloudCompactionMixin::execute_compact() {
1311
0
    TEST_INJECTION_POINT("Compaction::do_compaction");
1312
0
    int64_t permits = get_compaction_permits();
1313
0
    HANDLE_EXCEPTION_IF_CATCH_EXCEPTION(
1314
0
            execute_compact_impl(permits), [&](const doris::Exception& ex) {
1315
0
                auto st = garbage_collection();
1316
0
                if (!st.ok() && initiator() != INVALID_COMPACTION_INITIATOR_ID) {
1317
                    // if compaction fail, be will try to abort compaction, and delete bitmap lock
1318
                    // will release if abort job successfully, but if abort failed, delete bitmap
1319
                    // lock will not release, in this situation, be need to send this rpc to ms
1320
                    // to try to release delete bitmap lock.
1321
0
                    _engine.meta_mgr().remove_delete_bitmap_update_lock(
1322
0
                            _tablet->table_id(), COMPACTION_DELETE_BITMAP_LOCK_ID, initiator(),
1323
0
                            _tablet->tablet_id());
1324
0
                }
1325
0
            });
1326
0
    _load_segment_to_cache();
1327
0
    return Status::OK();
1328
0
}
1329
1330
0
Status CloudCompactionMixin::modify_rowsets() {
1331
0
    return Status::OK();
1332
0
}
1333
1334
0
Status CloudCompactionMixin::construct_output_rowset_writer(RowsetWriterContext& ctx) {
1335
    // only do index compaction for dup_keys and unique_keys with mow enabled
1336
0
    if (config::inverted_index_compaction_enable &&
1337
0
        (((_tablet->keys_type() == KeysType::UNIQUE_KEYS &&
1338
0
           _tablet->enable_unique_key_merge_on_write()) ||
1339
0
          _tablet->keys_type() == KeysType::DUP_KEYS))) {
1340
0
        construct_index_compaction_columns(ctx);
1341
0
    }
1342
1343
    // Use the storage resource of the previous rowset
1344
0
    ctx.storage_resource =
1345
0
            *DORIS_TRY(_input_rowsets.back()->rowset_meta()->remote_storage_resource());
1346
1347
0
    ctx.txn_id = boost::uuids::hash_value(UUIDGenerator::instance()->next_uuid()) &
1348
0
                 std::numeric_limits<int64_t>::max(); // MUST be positive
1349
0
    ctx.txn_expiration = _expiration;
1350
1351
0
    ctx.version = _output_version;
1352
0
    ctx.rowset_state = VISIBLE;
1353
0
    ctx.segments_overlap = NONOVERLAPPING;
1354
0
    ctx.tablet_schema = _cur_tablet_schema;
1355
0
    ctx.newest_write_timestamp = _newest_write_timestamp;
1356
0
    ctx.write_type = DataWriteType::TYPE_COMPACTION;
1357
1358
0
    auto compaction_policy = _tablet->tablet_meta()->compaction_policy();
1359
0
    if (_tablet->tablet_meta()->time_series_compaction_level_threshold() >= 2) {
1360
0
        ctx.compaction_level = _engine.cumu_compaction_policy(compaction_policy)
1361
0
                                       ->new_compaction_level(_input_rowsets);
1362
0
    }
1363
    // We presume that the data involved in cumulative compaction is sufficiently 'hot'
1364
    // and should always be retained in the cache.
1365
    // TODO(gavin): Ensure that the retention of hot data is implemented with precision.
1366
0
    ctx.write_file_cache = (compaction_type() == ReaderType::READER_CUMULATIVE_COMPACTION) ||
1367
0
                           (config::enable_file_cache_keep_base_compaction_output &&
1368
0
                            compaction_type() == ReaderType::READER_BASE_COMPACTION);
1369
0
    ctx.file_cache_ttl_sec = _tablet->ttl_seconds();
1370
0
    _output_rs_writer = DORIS_TRY(_tablet->create_rowset_writer(ctx, _is_vertical));
1371
0
    RETURN_IF_ERROR(_engine.meta_mgr().prepare_rowset(*_output_rs_writer->rowset_meta().get()));
1372
0
    return Status::OK();
1373
0
}
1374
1375
0
Status CloudCompactionMixin::garbage_collection() {
1376
0
    if (!config::enable_file_cache) {
1377
0
        return Status::OK();
1378
0
    }
1379
0
    if (_output_rs_writer) {
1380
0
        auto* beta_rowset_writer = dynamic_cast<BaseBetaRowsetWriter*>(_output_rs_writer.get());
1381
0
        DCHECK(beta_rowset_writer);
1382
0
        for (const auto& [_, file_writer] : beta_rowset_writer->get_file_writers()) {
1383
0
            auto file_key = io::BlockFileCache::hash(file_writer->path().filename().native());
1384
0
            auto* file_cache = io::FileCacheFactory::instance()->get_by_path(file_key);
1385
0
            file_cache->remove_if_cached_async(file_key);
1386
0
        }
1387
0
    }
1388
0
    return Status::OK();
1389
0
}
1390
1391
} // namespace doris