Coverage Report

Created: 2025-06-18 12:37

/root/doris/be/src/olap/merger.cpp
Line
Count
Source (jump to first uncovered line)
1
// Licensed to the Apache Software Foundation (ASF) under one
2
// or more contributor license agreements.  See the NOTICE file
3
// distributed with this work for additional information
4
// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
7
// with the License.  You may obtain a copy of the License at
8
//
9
//   http://www.apache.org/licenses/LICENSE-2.0
10
//
11
// Unless required by applicable law or agreed to in writing,
12
// software distributed under the License is distributed on an
13
// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
14
// KIND, either express or implied.  See the License for the
15
// specific language governing permissions and limitations
16
// under the License.
17
18
#include "olap/merger.h"
19
20
#include <gen_cpp/olap_file.pb.h>
21
#include <gen_cpp/types.pb.h>
22
#include <stddef.h>
23
#include <unistd.h>
24
25
#include <algorithm>
26
#include <iterator>
27
#include <memory>
28
#include <mutex>
29
#include <numeric>
30
#include <ostream>
31
#include <shared_mutex>
32
#include <string>
33
#include <utility>
34
#include <vector>
35
36
#include "cloud/config.h"
37
#include "common/config.h"
38
#include "common/logging.h"
39
#include "common/status.h"
40
#include "olap/base_tablet.h"
41
#include "olap/iterators.h"
42
#include "olap/olap_common.h"
43
#include "olap/olap_define.h"
44
#include "olap/rowid_conversion.h"
45
#include "olap/rowset/rowset.h"
46
#include "olap/rowset/rowset_meta.h"
47
#include "olap/rowset/rowset_writer.h"
48
#include "olap/rowset/segment_v2/segment_writer.h"
49
#include "olap/storage_engine.h"
50
#include "olap/tablet.h"
51
#include "olap/tablet_fwd.h"
52
#include "olap/tablet_meta.h"
53
#include "olap/tablet_reader.h"
54
#include "olap/utils.h"
55
#include "util/slice.h"
56
#include "vec/core/block.h"
57
#include "vec/olap/block_reader.h"
58
#include "vec/olap/vertical_block_reader.h"
59
#include "vec/olap/vertical_merge_iterator.h"
60
61
namespace doris {
62
63
Status Merger::vmerge_rowsets(BaseTabletSPtr tablet, ReaderType reader_type,
64
                              const TabletSchema& cur_tablet_schema,
65
                              const std::vector<RowsetReaderSharedPtr>& src_rowset_readers,
66
48
                              RowsetWriter* dst_rowset_writer, Statistics* stats_output) {
67
48
    if (!cur_tablet_schema.cluster_key_uids().empty()) {
68
0
        return Status::InternalError(
69
0
                "mow table with cluster keys does not support non vertical compaction");
70
0
    }
71
48
    vectorized::BlockReader reader;
72
48
    TabletReader::ReaderParams reader_params;
73
48
    reader_params.tablet = tablet;
74
48
    reader_params.reader_type = reader_type;
75
76
48
    TabletReader::ReadSource read_source;
77
48
    read_source.rs_splits.reserve(src_rowset_readers.size());
78
144
    for (const RowsetReaderSharedPtr& rs_reader : src_rowset_readers) {
79
144
        read_source.rs_splits.emplace_back(rs_reader);
80
144
    }
81
48
    read_source.fill_delete_predicates();
82
48
    reader_params.set_read_source(std::move(read_source));
83
84
48
    reader_params.version = dst_rowset_writer->version();
85
86
48
    TabletSchemaSPtr merge_tablet_schema = std::make_shared<TabletSchema>();
87
48
    merge_tablet_schema->copy_from(cur_tablet_schema);
88
89
    // Merge the columns in delete predicate that not in latest schema in to current tablet schema
90
48
    for (auto& del_pred_rs : reader_params.delete_predicates) {
91
24
        merge_tablet_schema->merge_dropped_columns(*del_pred_rs->tablet_schema());
92
24
    }
93
48
    reader_params.tablet_schema = merge_tablet_schema;
94
48
    if (!tablet->tablet_schema()->cluster_key_uids().empty()) {
95
0
        reader_params.delete_bitmap = &tablet->tablet_meta()->delete_bitmap();
96
0
    }
97
98
48
    if (stats_output && stats_output->rowid_conversion) {
99
48
        reader_params.record_rowids = true;
100
48
        reader_params.rowid_conversion = stats_output->rowid_conversion;
101
48
        stats_output->rowid_conversion->set_dst_rowset_id(dst_rowset_writer->rowset_id());
102
48
    }
103
104
48
    reader_params.return_columns.resize(cur_tablet_schema.num_columns());
105
48
    std::iota(reader_params.return_columns.begin(), reader_params.return_columns.end(), 0);
106
48
    reader_params.origin_return_columns = &reader_params.return_columns;
107
48
    RETURN_IF_ERROR(reader.init(reader_params));
108
109
48
    vectorized::Block block = cur_tablet_schema.create_block(reader_params.return_columns);
110
48
    size_t output_rows = 0;
111
48
    bool eof = false;
112
626
    while (!eof && !ExecEnv::GetInstance()->storage_engine().stopped()) {
113
578
        auto tablet_state = tablet->tablet_state();
114
578
        if (tablet_state != TABLET_RUNNING && tablet_state != TABLET_NOTREADY) {
115
0
            tablet->clear_cache();
116
0
            return Status::Error<INTERNAL_ERROR>("tablet {} is not used any more",
117
0
                                                 tablet->tablet_id());
118
0
        }
119
120
        // Read one block from block reader
121
578
        RETURN_NOT_OK_STATUS_WITH_WARN(reader.next_block_with_aggregation(&block, &eof),
122
578
                                       "failed to read next block when merging rowsets of tablet " +
123
578
                                               std::to_string(tablet->tablet_id()));
124
578
        RETURN_NOT_OK_STATUS_WITH_WARN(dst_rowset_writer->add_block(&block),
125
578
                                       "failed to write block when merging rowsets of tablet " +
126
578
                                               std::to_string(tablet->tablet_id()));
127
128
578
        if (reader_params.record_rowids && block.rows() > 0) {
129
578
            std::vector<uint32_t> segment_num_rows;
130
578
            RETURN_IF_ERROR(dst_rowset_writer->get_segment_num_rows(&segment_num_rows));
131
578
            stats_output->rowid_conversion->add(reader.current_block_row_locations(),
132
578
                                                segment_num_rows);
133
578
        }
134
135
578
        output_rows += block.rows();
136
578
        block.clear_column_data();
137
578
    }
138
48
    if (ExecEnv::GetInstance()->storage_engine().stopped()) {
139
0
        return Status::Error<INTERNAL_ERROR>("tablet {} failed to do compaction, engine stopped",
140
0
                                             tablet->tablet_id());
141
0
    }
142
143
48
    if (stats_output != nullptr) {
144
48
        stats_output->output_rows = output_rows;
145
48
        stats_output->merged_rows = reader.merged_rows();
146
48
        stats_output->filtered_rows = reader.filtered_rows();
147
48
        stats_output->bytes_read_from_local = reader.stats().file_cache_stats.bytes_read_from_local;
148
48
        stats_output->bytes_read_from_remote =
149
48
                reader.stats().file_cache_stats.bytes_read_from_remote;
150
48
        stats_output->cached_bytes_total = reader.stats().file_cache_stats.bytes_write_into_cache;
151
48
        if (config::is_cloud_mode()) {
152
0
            stats_output->cloud_local_read_time =
153
0
                    reader.stats().file_cache_stats.local_io_timer / 1000;
154
0
            stats_output->cloud_remote_read_time =
155
0
                    reader.stats().file_cache_stats.remote_io_timer / 1000;
156
0
        }
157
48
    }
158
159
48
    RETURN_NOT_OK_STATUS_WITH_WARN(dst_rowset_writer->flush(),
160
48
                                   "failed to flush rowset when merging rowsets of tablet " +
161
48
                                           std::to_string(tablet->tablet_id()));
162
163
48
    return Status::OK();
164
48
}
165
166
// split columns into several groups, make sure all keys in one group
167
// unique_key should consider sequence&delete column
168
void Merger::vertical_split_columns(const TabletSchema& tablet_schema,
169
                                    std::vector<std::vector<uint32_t>>* column_groups,
170
90
                                    std::vector<uint32_t>* key_group_cluster_key_idxes) {
171
90
    uint32_t num_key_cols = tablet_schema.num_key_columns();
172
90
    uint32_t total_cols = tablet_schema.num_columns();
173
90
    std::vector<uint32_t> key_columns;
174
176
    for (auto i = 0; i < num_key_cols; ++i) {
175
86
        key_columns.emplace_back(i);
176
86
    }
177
    // in unique key, sequence & delete sign column should merge with key columns
178
90
    int32_t sequence_col_idx = -1;
179
90
    int32_t delete_sign_idx = -1;
180
    // in key column compaction, seq_col real index is _num_key_columns
181
    // and delete_sign column is _block->columns() - 1
182
90
    if (tablet_schema.keys_type() == KeysType::UNIQUE_KEYS) {
183
49
        if (tablet_schema.has_sequence_col()) {
184
4
            sequence_col_idx = tablet_schema.sequence_col_idx();
185
4
            key_columns.emplace_back(sequence_col_idx);
186
4
        }
187
49
        delete_sign_idx = tablet_schema.field_index(DELETE_SIGN);
188
49
        if (delete_sign_idx != -1) {
189
43
            key_columns.emplace_back(delete_sign_idx);
190
43
        }
191
49
        if (!tablet_schema.cluster_key_uids().empty()) {
192
0
            for (const auto& cid : tablet_schema.cluster_key_uids()) {
193
0
                auto idx = tablet_schema.field_index(cid);
194
0
                DCHECK(idx >= 0) << "could not find cluster key column with unique_id=" << cid
195
0
                                 << " in tablet schema, table_id=" << tablet_schema.table_id();
196
0
                if (idx >= num_key_cols) {
197
0
                    key_columns.emplace_back(idx);
198
0
                }
199
0
            }
200
            // tablet schema unique ids: [1, 2, 5, 3, 6, 4], [1 2] is key columns
201
            // cluster key unique ids: [3, 1, 4]
202
            // the key_columns should be [0, 1, 3, 5]
203
            // the key_group_cluster_key_idxes should be [2, 1, 3]
204
0
            for (const auto& cid : tablet_schema.cluster_key_uids()) {
205
0
                auto idx = tablet_schema.field_index(cid);
206
0
                for (auto i = 0; i < key_columns.size(); ++i) {
207
0
                    if (idx == key_columns[i]) {
208
0
                        key_group_cluster_key_idxes->emplace_back(i);
209
0
                        break;
210
0
                    }
211
0
                }
212
0
            }
213
0
        }
214
49
    }
215
90
    VLOG_NOTICE << "sequence_col_idx=" << sequence_col_idx
216
0
                << ", delete_sign_idx=" << delete_sign_idx;
217
    // for duplicate no keys
218
90
    if (!key_columns.empty()) {
219
75
        column_groups->emplace_back(key_columns);
220
75
    }
221
222
90
    std::vector<uint32_t> value_columns;
223
224
968
    for (uint32_t i = num_key_cols; i < total_cols; ++i) {
225
878
        if (i == sequence_col_idx || i == delete_sign_idx ||
226
878
            key_columns.end() != std::find(key_columns.begin(), key_columns.end(), i)) {
227
47
            continue;
228
47
        }
229
230
831
        if (!value_columns.empty() &&
231
831
            value_columns.size() % config::vertical_compaction_num_columns_per_group == 0) {
232
140
            column_groups->push_back(value_columns);
233
140
            value_columns.clear();
234
140
        }
235
831
        value_columns.push_back(i);
236
831
    }
237
238
90
    if (!value_columns.empty()) {
239
90
        column_groups->push_back(value_columns);
240
90
    }
241
90
}
242
243
Status Merger::vertical_compact_one_group(
244
        BaseTabletSPtr tablet, ReaderType reader_type, const TabletSchema& tablet_schema,
245
        bool is_key, const std::vector<uint32_t>& column_group,
246
        vectorized::RowSourcesBuffer* row_source_buf,
247
        const std::vector<RowsetReaderSharedPtr>& src_rowset_readers,
248
        RowsetWriter* dst_rowset_writer, int64_t max_rows_per_segment, Statistics* stats_output,
249
        std::vector<uint32_t> key_group_cluster_key_idxes, int64_t batch_size,
250
283
        CompactionSampleInfo* sample_info) {
251
    // build tablet reader
252
283
    VLOG_NOTICE << "vertical compact one group, max_rows_per_segment=" << max_rows_per_segment;
253
283
    vectorized::VerticalBlockReader reader(row_source_buf);
254
283
    TabletReader::ReaderParams reader_params;
255
283
    reader_params.is_key_column_group = is_key;
256
283
    reader_params.key_group_cluster_key_idxes = key_group_cluster_key_idxes;
257
283
    reader_params.tablet = tablet;
258
283
    reader_params.reader_type = reader_type;
259
260
283
    TabletReader::ReadSource read_source;
261
283
    read_source.rs_splits.reserve(src_rowset_readers.size());
262
911
    for (const RowsetReaderSharedPtr& rs_reader : src_rowset_readers) {
263
911
        read_source.rs_splits.emplace_back(rs_reader);
264
911
    }
265
283
    read_source.fill_delete_predicates();
266
283
    reader_params.set_read_source(std::move(read_source));
267
268
283
    reader_params.version = dst_rowset_writer->version();
269
270
283
    TabletSchemaSPtr merge_tablet_schema = std::make_shared<TabletSchema>();
271
283
    merge_tablet_schema->copy_from(tablet_schema);
272
273
283
    for (auto& del_pred_rs : reader_params.delete_predicates) {
274
125
        merge_tablet_schema->merge_dropped_columns(*del_pred_rs->tablet_schema());
275
125
    }
276
277
283
    reader_params.tablet_schema = merge_tablet_schema;
278
283
    bool has_cluster_key = false;
279
283
    if (!tablet->tablet_schema()->cluster_key_uids().empty()) {
280
0
        reader_params.delete_bitmap = &tablet->tablet_meta()->delete_bitmap();
281
0
        has_cluster_key = true;
282
0
    }
283
284
283
    if (is_key && stats_output && stats_output->rowid_conversion) {
285
79
        reader_params.record_rowids = true;
286
79
        reader_params.rowid_conversion = stats_output->rowid_conversion;
287
79
        stats_output->rowid_conversion->set_dst_rowset_id(dst_rowset_writer->rowset_id());
288
79
    }
289
290
283
    reader_params.return_columns = column_group;
291
283
    reader_params.origin_return_columns = &reader_params.return_columns;
292
283
    reader_params.batch_size = batch_size;
293
283
    RETURN_IF_ERROR(reader.init(reader_params, sample_info));
294
295
282
    vectorized::Block block = tablet_schema.create_block(reader_params.return_columns);
296
282
    size_t output_rows = 0;
297
282
    bool eof = false;
298
8.03k
    while (!eof && !ExecEnv::GetInstance()->storage_engine().stopped()) {
299
7.75k
        auto tablet_state = tablet->tablet_state();
300
7.75k
        if (tablet_state != TABLET_RUNNING && tablet_state != TABLET_NOTREADY) {
301
0
            tablet->clear_cache();
302
0
            return Status::Error<INTERNAL_ERROR>("tablet {} is not used any more",
303
0
                                                 tablet->tablet_id());
304
0
        }
305
        // Read one block from block reader
306
7.75k
        RETURN_NOT_OK_STATUS_WITH_WARN(reader.next_block_with_aggregation(&block, &eof),
307
7.75k
                                       "failed to read next block when merging rowsets of tablet " +
308
7.75k
                                               std::to_string(tablet->tablet_id()));
309
7.75k
        RETURN_NOT_OK_STATUS_WITH_WARN(
310
7.75k
                dst_rowset_writer->add_columns(&block, column_group, is_key, max_rows_per_segment,
311
7.75k
                                               has_cluster_key),
312
7.75k
                "failed to write block when merging rowsets of tablet " +
313
7.75k
                        std::to_string(tablet->tablet_id()));
314
315
7.75k
        if (is_key && reader_params.record_rowids && block.rows() > 0) {
316
4.60k
            std::vector<uint32_t> segment_num_rows;
317
4.60k
            RETURN_IF_ERROR(dst_rowset_writer->get_segment_num_rows(&segment_num_rows));
318
4.60k
            stats_output->rowid_conversion->add(reader.current_block_row_locations(),
319
4.60k
                                                segment_num_rows);
320
4.60k
        }
321
7.75k
        output_rows += block.rows();
322
7.75k
        block.clear_column_data();
323
7.75k
    }
324
282
    if (ExecEnv::GetInstance()->storage_engine().stopped()) {
325
0
        return Status::Error<INTERNAL_ERROR>("tablet {} failed to do compaction, engine stopped",
326
0
                                             tablet->tablet_id());
327
0
    }
328
329
282
    if (is_key && stats_output != nullptr) {
330
78
        stats_output->output_rows = output_rows;
331
78
        stats_output->merged_rows = reader.merged_rows();
332
78
        stats_output->filtered_rows = reader.filtered_rows();
333
78
        stats_output->bytes_read_from_local = reader.stats().file_cache_stats.bytes_read_from_local;
334
78
        stats_output->bytes_read_from_remote =
335
78
                reader.stats().file_cache_stats.bytes_read_from_remote;
336
78
        stats_output->cached_bytes_total = reader.stats().file_cache_stats.bytes_write_into_cache;
337
78
        if (config::is_cloud_mode()) {
338
0
            stats_output->cloud_local_read_time =
339
0
                    reader.stats().file_cache_stats.local_io_timer / 1000;
340
0
            stats_output->cloud_remote_read_time =
341
0
                    reader.stats().file_cache_stats.remote_io_timer / 1000;
342
0
        }
343
78
    }
344
282
    RETURN_IF_ERROR(dst_rowset_writer->flush_columns(is_key));
345
346
282
    return Status::OK();
347
282
}
348
349
// for segcompaction
350
Status Merger::vertical_compact_one_group(
351
        int64_t tablet_id, ReaderType reader_type, const TabletSchema& tablet_schema, bool is_key,
352
        const std::vector<uint32_t>& column_group, vectorized::RowSourcesBuffer* row_source_buf,
353
        vectorized::VerticalBlockReader& src_block_reader,
354
        segment_v2::SegmentWriter& dst_segment_writer, Statistics* stats_output,
355
22
        uint64_t* index_size, KeyBoundsPB& key_bounds, SimpleRowIdConversion* rowid_conversion) {
356
    // TODO: record_rowids
357
22
    vectorized::Block block = tablet_schema.create_block(column_group);
358
22
    size_t output_rows = 0;
359
22
    bool eof = false;
360
138
    while (!eof && !ExecEnv::GetInstance()->storage_engine().stopped()) {
361
        // Read one block from block reader
362
116
        RETURN_NOT_OK_STATUS_WITH_WARN(src_block_reader.next_block_with_aggregation(&block, &eof),
363
116
                                       "failed to read next block when merging rowsets of tablet " +
364
116
                                               std::to_string(tablet_id));
365
116
        if (!block.rows()) {
366
0
            break;
367
0
        }
368
116
        RETURN_NOT_OK_STATUS_WITH_WARN(dst_segment_writer.append_block(&block, 0, block.rows()),
369
116
                                       "failed to write block when merging rowsets of tablet " +
370
116
                                               std::to_string(tablet_id));
371
372
116
        if (is_key && rowid_conversion != nullptr) {
373
30
            rowid_conversion->add(src_block_reader.current_block_row_locations());
374
30
        }
375
116
        output_rows += block.rows();
376
116
        block.clear_column_data();
377
116
    }
378
22
    if (ExecEnv::GetInstance()->storage_engine().stopped()) {
379
0
        return Status::Error<INTERNAL_ERROR>("tablet {} failed to do compaction, engine stopped",
380
0
                                             tablet_id);
381
0
    }
382
383
22
    if (is_key && stats_output != nullptr) {
384
11
        stats_output->output_rows = output_rows;
385
11
        stats_output->merged_rows = src_block_reader.merged_rows();
386
11
        stats_output->filtered_rows = src_block_reader.filtered_rows();
387
11
        stats_output->bytes_read_from_local =
388
11
                src_block_reader.stats().file_cache_stats.bytes_read_from_local;
389
11
        stats_output->bytes_read_from_remote =
390
11
                src_block_reader.stats().file_cache_stats.bytes_read_from_remote;
391
11
        stats_output->cached_bytes_total =
392
11
                src_block_reader.stats().file_cache_stats.bytes_write_into_cache;
393
11
    }
394
395
    // segcompaction produce only one segment at once
396
22
    RETURN_IF_ERROR(dst_segment_writer.finalize_columns_data());
397
22
    RETURN_IF_ERROR(dst_segment_writer.finalize_columns_index(index_size));
398
399
22
    if (is_key) {
400
11
        Slice min_key = dst_segment_writer.min_encoded_key();
401
11
        Slice max_key = dst_segment_writer.max_encoded_key();
402
11
        DCHECK_LE(min_key.compare(max_key), 0);
403
11
        key_bounds.set_min_key(min_key.to_string());
404
11
        key_bounds.set_max_key(max_key.to_string());
405
11
    }
406
407
22
    return Status::OK();
408
22
}
409
410
90
int64_t estimate_batch_size(int group_index, BaseTabletSPtr tablet, int64_t way_cnt) {
411
90
    std::unique_lock<std::mutex> lock(tablet->sample_info_lock);
412
90
    CompactionSampleInfo info = tablet->sample_infos[group_index];
413
90
    if (way_cnt <= 0) {
414
0
        LOG(INFO) << "estimate batch size for vertical compaction, tablet id: "
415
0
                  << tablet->tablet_id() << " way cnt: " << way_cnt;
416
0
        return 4096 - 32;
417
0
    }
418
90
    int64_t block_mem_limit = config::compaction_memory_bytes_limit / way_cnt;
419
90
    if (tablet->last_compaction_status.is<ErrorCode::MEM_LIMIT_EXCEEDED>()) {
420
0
        block_mem_limit /= 4;
421
0
    }
422
423
90
    int64_t group_data_size = 0;
424
90
    if (info.group_data_size > 0 && info.bytes > 0 && info.rows > 0) {
425
0
        float smoothing_factor = 0.5;
426
0
        group_data_size = int64_t(info.group_data_size * (1 - smoothing_factor) +
427
0
                                  info.bytes / info.rows * smoothing_factor);
428
0
        tablet->sample_infos[group_index].group_data_size = group_data_size;
429
90
    } else if (info.group_data_size > 0 && (info.bytes <= 0 || info.rows <= 0)) {
430
0
        group_data_size = info.group_data_size;
431
90
    } else if (info.group_data_size <= 0 && info.bytes > 0 && info.rows > 0) {
432
0
        group_data_size = info.bytes / info.rows;
433
0
        tablet->sample_infos[group_index].group_data_size = group_data_size;
434
90
    } else {
435
90
        LOG(INFO) << "estimate batch size for vertical compaction, tablet id: "
436
90
                  << tablet->tablet_id() << " group data size: " << info.group_data_size
437
90
                  << " row num: " << info.rows << " consume bytes: " << info.bytes;
438
90
        return 1024 - 32;
439
90
    }
440
441
0
    if (group_data_size <= 0) {
442
0
        LOG(WARNING) << "estimate batch size for vertical compaction, tablet id: "
443
0
                     << tablet->tablet_id() << " unexpected group data size: " << group_data_size;
444
0
        return 4096 - 32;
445
0
    }
446
447
0
    tablet->sample_infos[group_index].bytes = 0;
448
0
    tablet->sample_infos[group_index].rows = 0;
449
450
0
    int64_t batch_size = block_mem_limit / group_data_size;
451
0
    int64_t res = std::max(std::min(batch_size, int64_t(4096 - 32)), int64_t(32L));
452
0
    LOG(INFO) << "estimate batch size for vertical compaction, tablet id: " << tablet->tablet_id()
453
0
              << " group data size: " << info.group_data_size << " row num: " << info.rows
454
0
              << " consume bytes: " << info.bytes << " way cnt: " << way_cnt
455
0
              << " batch size: " << res;
456
0
    return res;
457
0
}
458
459
// steps to do vertical merge:
460
// 1. split columns into column groups
461
// 2. compact groups one by one, generate a row_source_buf when compact key group
462
// and use this row_source_buf to compact value column groups
463
// 3. build output rowset
464
Status Merger::vertical_merge_rowsets(BaseTabletSPtr tablet, ReaderType reader_type,
465
                                      const TabletSchema& tablet_schema,
466
                                      const std::vector<RowsetReaderSharedPtr>& src_rowset_readers,
467
                                      RowsetWriter* dst_rowset_writer, int64_t max_rows_per_segment,
468
79
                                      int64_t merge_way_num, Statistics* stats_output) {
469
79
    LOG(INFO) << "Start to do vertical compaction, tablet_id: " << tablet->tablet_id();
470
79
    std::vector<std::vector<uint32_t>> column_groups;
471
79
    std::vector<uint32_t> key_group_cluster_key_idxes;
472
79
    vertical_split_columns(tablet_schema, &column_groups, &key_group_cluster_key_idxes);
473
474
79
    vectorized::RowSourcesBuffer row_sources_buf(
475
79
            tablet->tablet_id(), dst_rowset_writer->context().tablet_path, reader_type);
476
79
    {
477
79
        std::unique_lock<std::mutex> lock(tablet->sample_info_lock);
478
79
        tablet->sample_infos.resize(column_groups.size(), {0, 0, 0});
479
79
    }
480
    // compact group one by one
481
361
    for (auto i = 0; i < column_groups.size(); ++i) {
482
283
        VLOG_NOTICE << "row source size: " << row_sources_buf.total_size();
483
283
        bool is_key = (i == 0);
484
283
        int64_t batch_size = config::compaction_batch_size != -1
485
283
                                     ? config::compaction_batch_size
486
283
                                     : estimate_batch_size(i, tablet, merge_way_num);
487
283
        CompactionSampleInfo sample_info;
488
283
        Status st = vertical_compact_one_group(
489
283
                tablet, reader_type, tablet_schema, is_key, column_groups[i], &row_sources_buf,
490
283
                src_rowset_readers, dst_rowset_writer, max_rows_per_segment, stats_output,
491
283
                key_group_cluster_key_idxes, batch_size, &sample_info);
492
283
        {
493
283
            std::unique_lock<std::mutex> lock(tablet->sample_info_lock);
494
283
            tablet->sample_infos[i] = sample_info;
495
283
        }
496
283
        RETURN_IF_ERROR(st);
497
282
        if (is_key) {
498
78
            RETURN_IF_ERROR(row_sources_buf.flush());
499
78
        }
500
282
        RETURN_IF_ERROR(row_sources_buf.seek_to_begin());
501
282
    }
502
503
    // finish compact, build output rowset
504
78
    VLOG_NOTICE << "finish compact groups";
505
78
    RETURN_IF_ERROR(dst_rowset_writer->final_flush());
506
507
78
    return Status::OK();
508
78
}
509
510
} // namespace doris