Coverage Report

Created: 2026-08-15 01:43

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/storage/segment/segment_writer.cpp
Line
Count
Source
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// 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
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// under the License.
17
18
#include "storage/segment/segment_writer.h"
19
20
#include <assert.h>
21
#include <gen_cpp/segment_v2.pb.h>
22
#include <parallel_hashmap/phmap.h>
23
24
#include <algorithm>
25
26
// IWYU pragma: no_include <opentelemetry/common/threadlocal.h>
27
#include <crc32c/crc32c.h>
28
29
#include "cloud/config.h"
30
#include "common/cast_set.h"
31
#include "common/compiler_util.h" // IWYU pragma: keep
32
#include "common/config.h"
33
#include "common/logging.h" // LOG
34
#include "common/status.h"
35
#include "core/block/block.h"
36
#include "core/block/column_with_type_and_name.h"
37
#include "core/column/column_nullable.h"
38
#include "core/data_type/primitive_type.h"
39
#include "core/field.h"
40
#include "core/types.h"
41
#include "core/value/vdatetime_value.h"
42
#include "exec/common/variant_util.h"
43
#include "io/cache/block_file_cache.h"
44
#include "io/cache/block_file_cache_factory.h"
45
#include "io/fs/file_system.h"
46
#include "io/fs/file_writer.h"
47
#include "io/fs/local_file_system.h"
48
#include "runtime/exec_env.h"
49
#include "runtime/memory/mem_tracker.h"
50
#include "storage/data_dir.h"
51
#include "storage/index/index_file_writer.h"
52
#include "storage/index/index_writer.h"
53
#include "storage/index/inverted/inverted_index_fs_directory.h"
54
#include "storage/index/primary_key_index.h"
55
#include "storage/index/short_key_index.h"
56
#include "storage/iterator/olap_data_convertor.h"
57
#include "storage/key_coder.h"
58
#include "storage/mow/key_probe.h"
59
#include "storage/olap_common.h"
60
#include "storage/olap_define.h"
61
#include "storage/partial_update_info.h"
62
#include "storage/rowset/rowset_writer_context.h" // RowsetWriterContext
63
#include "storage/rowset/segment_creator.h"
64
#include "storage/segment/column_writer.h" // ColumnWriter
65
#include "storage/segment/encoding_info.h"
66
#include "storage/segment/external_col_meta_util.h"
67
#include "storage/segment/page_io.h"
68
#include "storage/segment/page_pointer.h"
69
#include "storage/segment/segment_loader.h"
70
#include "storage/segment/variant/variant_ext_meta_writer.h"
71
#include "storage/segment/variant_stats_calculator.h"
72
#include "storage/storage_engine.h"
73
#include "storage/tablet/tablet_schema.h"
74
#include "storage/utils.h"
75
#include "util/coding.h"
76
#include "util/faststring.h"
77
#include "util/simd/bits.h"
78
namespace doris {
79
namespace segment_v2 {
80
81
using namespace ErrorCode;
82
83
const char* k_segment_magic = "D0R1";
84
const uint32_t k_segment_magic_length = 4;
85
86
12.7k
inline std::string segment_mem_tracker_name(uint32_t segment_id) {
87
12.7k
    return "SegmentWriter:Segment-" + std::to_string(segment_id);
88
12.7k
}
89
90
SegmentWriter::SegmentWriter(io::FileWriter* file_writer, uint32_t segment_id,
91
                             TabletSchemaSPtr tablet_schema, BaseTabletSPtr tablet,
92
                             DataDir* data_dir, const SegmentWriterOptions& opts,
93
                             IndexFileWriter* index_file_writer)
94
12.7k
        : _segment_id(segment_id),
95
12.7k
          _tablet_schema(std::move(tablet_schema)),
96
12.7k
          _tablet(std::move(tablet)),
97
12.7k
          _data_dir(data_dir),
98
12.7k
          _opts(opts),
99
12.7k
          _file_writer(file_writer),
100
12.7k
          _index_file_writer(index_file_writer),
101
12.7k
          _mem_tracker(std::make_unique<MemTracker>(segment_mem_tracker_name(segment_id))),
102
12.7k
          _key_encoder(*_tablet_schema, _is_mow()),
103
12.7k
          _mow_context(std::move(opts.mow_ctx)) {
104
12.7k
    CHECK_NOTNULL(file_writer);
105
12.7k
    _num_short_key_columns = _tablet_schema->num_short_key_columns();
106
12.7k
}
107
108
12.7k
SegmentWriter::~SegmentWriter() {
109
12.7k
    _mem_tracker->release(_mem_tracker->consumption());
110
12.7k
}
111
112
void SegmentWriter::init_column_meta(ColumnMetaPB* meta, uint32_t column_id,
113
103k
                                     const TabletColumn& column, const ColumnWriterOptions& opts) {
114
103k
    meta->set_column_id(column_id);
115
103k
    meta->set_type(int(column.type()));
116
103k
    meta->set_length(column.length());
117
103k
    meta->set_encoding(EncodingInfo::resolve_default_encoding(opts.storage_format, column));
118
103k
    meta->set_compression(_opts.compression_type);
119
103k
    meta->set_is_nullable(column.is_nullable());
120
103k
    meta->set_default_value(column.default_value());
121
103k
    meta->set_precision(column.precision());
122
103k
    meta->set_frac(column.frac());
123
103k
    if (column.has_path_info()) {
124
3.01k
        column.path_info_ptr()->to_protobuf(meta->mutable_column_path_info(),
125
3.01k
                                            column.parent_unique_id());
126
3.01k
    }
127
103k
    meta->set_unique_id(column.unique_id());
128
111k
    for (uint32_t i = 0; i < column.get_subtype_count(); ++i) {
129
8.70k
        init_column_meta(meta->add_children_columns(), column_id, column.get_sub_column(i), opts);
130
8.70k
    }
131
103k
    meta->set_result_is_nullable(column.get_result_is_nullable());
132
103k
    meta->set_function_name(column.get_aggregation_name());
133
103k
    meta->set_be_exec_version(column.get_be_exec_version());
134
103k
    if (column.is_variant_type()) {
135
1.24k
        meta->set_variant_max_subcolumns_count(column.variant_max_subcolumns_count());
136
1.24k
        meta->set_variant_enable_doc_mode(column.variant_enable_doc_mode());
137
1.24k
    }
138
103k
}
139
140
6.39k
Status SegmentWriter::init() {
141
6.39k
    std::vector<uint32_t> column_ids;
142
6.39k
    auto column_cnt = cast_set<int>(_tablet_schema->num_columns());
143
41.1k
    for (uint32_t i = 0; i < column_cnt; ++i) {
144
34.7k
        column_ids.emplace_back(i);
145
34.7k
    }
146
6.39k
    return init(column_ids, true);
147
6.39k
}
148
149
Status SegmentWriter::_create_column_writer(uint32_t cid, const TabletColumn& column,
150
94.3k
                                            const TabletSchemaSPtr& schema) {
151
94.3k
    ColumnWriterOptions opts;
152
94.3k
    opts.meta = _footer.add_columns();
153
94.3k
    opts.storage_format = schema->storage_format();
154
155
94.3k
    init_column_meta(opts.meta, cid, column, opts);
156
157
    // now we create zone map for key columns in AGG_KEYS or all column in UNIQUE_KEYS or DUP_KEYS
158
    // except for columns whose type don't support zone map.
159
94.3k
    opts.need_zone_map = column.is_key() || schema->keys_type() != KeysType::AGG_KEYS;
160
94.3k
    opts.need_bloom_filter = column.is_bf_column();
161
94.3k
    if (opts.need_bloom_filter) {
162
317
        opts.bf_options.fpp = schema->has_bf_fpp() ? schema->bloom_filter_fpp() : 0.05;
163
317
    }
164
94.3k
    auto* tablet_index = schema->get_ngram_bf_index(column.unique_id());
165
94.3k
    if (tablet_index) {
166
210
        opts.need_bloom_filter = true;
167
210
        opts.is_ngram_bf_index = true;
168
        //narrow convert from int32_t to uint8_t and uint16_t which is dangerous
169
210
        auto gram_size = tablet_index->get_gram_size();
170
210
        auto gram_bf_size = tablet_index->get_gram_bf_size();
171
210
        if (gram_size > 256 || gram_size < 1) {
172
0
            return Status::NotSupported("Do not support ngram bloom filter for ngram_size: ",
173
0
                                        gram_size);
174
0
        }
175
210
        if (gram_bf_size > 65535 || gram_bf_size < 64) {
176
0
            return Status::NotSupported("Do not support ngram bloom filter for bf_size: ",
177
0
                                        gram_bf_size);
178
0
        }
179
210
        opts.gram_size = cast_set<uint8_t>(gram_size);
180
210
        opts.gram_bf_size = cast_set<uint16_t>(gram_bf_size);
181
210
    }
182
183
94.3k
    bool skip_inverted_index = false;
184
94.3k
    if (_opts.rowset_ctx != nullptr) {
185
        // skip write inverted index for index compaction column
186
92.2k
        skip_inverted_index =
187
92.2k
                _opts.rowset_ctx->columns_to_do_index_compaction.count(column.unique_id()) > 0;
188
92.2k
    }
189
    // skip write inverted index on load if skip_write_index_on_load is true
190
94.3k
    if (_opts.write_type == DataWriteType::TYPE_DIRECT && schema->skip_write_index_on_load()) {
191
0
        skip_inverted_index = true;
192
0
    }
193
    // indexes for this column
194
94.3k
    if (!skip_inverted_index) {
195
93.5k
        auto inverted_indexs = schema->inverted_indexs(column);
196
93.5k
        if (!inverted_indexs.empty()) {
197
4.37k
            opts.inverted_indexes = inverted_indexs;
198
4.37k
            opts.need_inverted_index = true;
199
4.37k
            DCHECK(_index_file_writer != nullptr);
200
4.37k
        }
201
93.5k
    }
202
    // indexes for this column
203
94.3k
    if (const auto& index = schema->ann_index(column); index != nullptr) {
204
9
        opts.ann_index = index;
205
9
        opts.need_ann_index = true;
206
9
        DCHECK(_index_file_writer != nullptr);
207
9
    }
208
209
94.3k
    opts.index_file_writer = _index_file_writer;
210
211
94.3k
#define DISABLE_INDEX_IF_FIELD_TYPE(TYPE)                     \
212
849k
    if (column.type() == FieldType::OLAP_FIELD_TYPE_##TYPE) { \
213
6.95k
        opts.need_zone_map = false;                           \
214
6.95k
        opts.need_bloom_filter = false;                       \
215
6.95k
    }
216
217
94.3k
    DISABLE_INDEX_IF_FIELD_TYPE(STRUCT)
218
94.3k
    DISABLE_INDEX_IF_FIELD_TYPE(ARRAY)
219
94.3k
    DISABLE_INDEX_IF_FIELD_TYPE(JSONB)
220
94.3k
    DISABLE_INDEX_IF_FIELD_TYPE(AGG_STATE)
221
94.3k
    DISABLE_INDEX_IF_FIELD_TYPE(MAP)
222
94.3k
    DISABLE_INDEX_IF_FIELD_TYPE(BITMAP)
223
94.3k
    DISABLE_INDEX_IF_FIELD_TYPE(HLL)
224
94.3k
    DISABLE_INDEX_IF_FIELD_TYPE(QUANTILE_STATE)
225
94.3k
    DISABLE_INDEX_IF_FIELD_TYPE(VARIANT)
226
227
94.3k
#undef DISABLE_INDEX_IF_FIELD_TYPE
228
229
94.3k
    int64_t storage_page_size = _tablet_schema->storage_page_size();
230
    // storage_page_size must be between 4KB and 10MB.
231
94.4k
    if (storage_page_size >= 4096 && storage_page_size <= 10485760) {
232
94.4k
        opts.data_page_size = storage_page_size;
233
94.4k
    }
234
94.3k
    opts.dict_page_size = _tablet_schema->storage_dict_page_size();
235
94.3k
    DBUG_EXECUTE_IF("VerticalSegmentWriter._create_column_writer.storage_page_size", {
236
94.3k
        auto table_id = DebugPoints::instance()->get_debug_param_or_default<int64_t>(
237
94.3k
                "VerticalSegmentWriter._create_column_writer.storage_page_size", "table_id",
238
94.3k
                INT_MIN);
239
94.3k
        auto target_data_page_size = DebugPoints::instance()->get_debug_param_or_default<int64_t>(
240
94.3k
                "VerticalSegmentWriter._create_column_writer.storage_page_size",
241
94.3k
                "storage_page_size", INT_MIN);
242
94.3k
        if (table_id == INT_MIN || target_data_page_size == INT_MIN) {
243
94.3k
            return Status::Error<ErrorCode::INTERNAL_ERROR>(
244
94.3k
                    "Debug point parameters missing: either 'table_id' or 'storage_page_size' not "
245
94.3k
                    "set.");
246
94.3k
        }
247
94.3k
        if (table_id == _tablet_schema->table_id() &&
248
94.3k
            opts.data_page_size != target_data_page_size) {
249
94.3k
            return Status::Error<ErrorCode::INTERNAL_ERROR>(
250
94.3k
                    "Mismatch in 'storage_page_size': expected size does not match the current "
251
94.3k
                    "data page size. "
252
94.3k
                    "Expected: " +
253
94.3k
                    std::to_string(target_data_page_size) +
254
94.3k
                    ", Actual: " + std::to_string(opts.data_page_size) + ".");
255
94.3k
        }
256
94.3k
    })
257
94.3k
    if (column.is_row_store_column()) {
258
        // smaller page size for row store column; encoding is already set to PLAIN /
259
        // PLAIN_V2 by init_column_meta via resolve_default_encoding().
260
179
        auto page_size = _tablet_schema->row_store_page_size();
261
179
        opts.data_page_size =
262
179
                (page_size > 0) ? page_size : segment_v2::ROW_STORE_PAGE_SIZE_DEFAULT_VALUE;
263
179
    }
264
265
94.3k
    opts.rowset_ctx = _opts.rowset_ctx;
266
94.3k
    opts.file_writer = _file_writer;
267
94.3k
    opts.compression_type = _opts.compression_type;
268
94.3k
    opts.footer = &_footer;
269
94.3k
    if (_opts.rowset_ctx != nullptr) {
270
92.2k
        opts.input_rs_readers = _opts.rowset_ctx->input_rs_readers;
271
92.2k
    }
272
273
94.3k
    std::unique_ptr<ColumnWriter> writer;
274
94.3k
    RETURN_IF_ERROR(ColumnWriter::create(opts, &column, _file_writer, &writer));
275
94.3k
    RETURN_IF_ERROR(writer->init());
276
94.3k
    _column_writers.push_back(std::move(writer));
277
278
94.3k
    _olap_data_convertor->add_column_data_convertor(column);
279
94.3k
    return Status::OK();
280
94.3k
}
281
282
22.7k
Status SegmentWriter::init(const std::vector<uint32_t>& col_ids, bool has_key) {
283
22.7k
    DCHECK(_column_writers.empty());
284
22.7k
    DCHECK(_column_ids.empty());
285
22.7k
    _has_key = has_key;
286
22.7k
    _column_writers.reserve(_tablet_schema->columns().size());
287
22.7k
    _column_ids.insert(_column_ids.end(), col_ids.begin(), col_ids.end());
288
22.7k
    _olap_data_convertor = std::make_unique<OlapBlockDataConvertor>();
289
22.7k
    if (_opts.compression_type == UNKNOWN_COMPRESSION) {
290
12.7k
        _opts.compression_type = _tablet_schema->compression_type();
291
12.7k
    }
292
293
    // Vertical compaction calls init() multiple times against the same writer; the footer accumulates entries
294
    // across calls, so this init()'s slice of footer columns starts at the current size.
295
22.7k
    const int variant_stats_footer_offset = _footer.columns_size();
296
22.7k
    RETURN_IF_ERROR(_create_writers(_tablet_schema, col_ids));
297
298
    // Initialize variant statistics calculator
299
22.7k
    _variant_stats_calculator = std::make_unique<VariantStatsCaculator>(
300
22.7k
            &_footer, _tablet_schema, col_ids, variant_stats_footer_offset);
301
302
    // we don't need the short key index for unique key merge on write table.
303
22.7k
    if (_has_key) {
304
12.7k
        if (_is_mow()) {
305
2.87k
            size_t seq_col_length = 0;
306
2.87k
            if (_tablet_schema->has_sequence_col()) {
307
173
                seq_col_length =
308
173
                        _tablet_schema->column(_tablet_schema->sequence_col_idx()).length() + 1;
309
173
            }
310
2.87k
            size_t rowid_length = 0;
311
2.87k
            if (_is_mow_with_cluster_key()) {
312
165
                rowid_length = PrimaryKeyIndexReader::ROW_ID_LENGTH;
313
165
                _short_key_index_builder.reset(
314
165
                        new ShortKeyIndexBuilder(_segment_id, _opts.num_rows_per_block));
315
165
            }
316
2.87k
            _primary_key_index_builder.reset(
317
2.87k
                    new PrimaryKeyIndexBuilder(_file_writer, seq_col_length, rowid_length));
318
2.87k
            RETURN_IF_ERROR(_primary_key_index_builder->init());
319
9.87k
        } else {
320
9.87k
            _short_key_index_builder.reset(
321
9.87k
                    new ShortKeyIndexBuilder(_segment_id, _opts.num_rows_per_block));
322
9.87k
        }
323
12.7k
    }
324
22.7k
    return Status::OK();
325
22.7k
}
326
327
Status SegmentWriter::_create_writers(const TabletSchemaSPtr& tablet_schema,
328
22.7k
                                      const std::vector<uint32_t>& col_ids) {
329
22.7k
    _olap_data_convertor->reserve(col_ids.size());
330
94.4k
    for (auto& cid : col_ids) {
331
94.4k
        RETURN_IF_ERROR(_create_column_writer(cid, tablet_schema->column(cid), tablet_schema));
332
94.4k
    }
333
22.7k
    return Status::OK();
334
22.7k
}
335
336
39.3k
Status SegmentWriter::append_block(const Block* block, size_t row_pos, size_t num_rows) {
337
    // Fixed partial update blocks arrive full-width, already filled by the transform
338
    // chain; only the flexible mode still needs the vertical writer.
339
39.3k
    if (_opts.rowset_ctx->partial_update_info &&
340
39.3k
        _opts.rowset_ctx->partial_update_info->is_partial_update() &&
341
39.3k
        _opts.write_type == DataWriteType::TYPE_DIRECT &&
342
39.3k
        !_opts.rowset_ctx->is_transient_rowset_writer &&
343
39.3k
        !_opts.rowset_ctx->partial_update_info->is_fixed_partial_update()) {
344
0
        return Status::NotSupported<false>(
345
0
                "SegmentWriter doesn't support flexible partial update, please set "
346
0
                "enable_vertical_segment_writer=true in be.conf on all BEs to use "
347
0
                "VerticalSegmentWriter.");
348
0
    }
349
39.3k
    if (block->columns() < _column_writers.size()) {
350
0
        return Status::InternalError(
351
0
                "block->columns() < _column_writers.size(), block->columns()=" +
352
0
                std::to_string(block->columns()) +
353
0
                ", _column_writers.size()=" + std::to_string(_column_writers.size()) +
354
0
                ", _tablet_schema->dump_structure()=" + _tablet_schema->dump_structure());
355
0
    }
356
18.4E
    CHECK(block->columns() >= _column_writers.size())
357
18.4E
            << ", block->columns()=" << block->columns()
358
18.4E
            << ", _column_writers.size()=" << _column_writers.size()
359
18.4E
            << ", _tablet_schema->dump_structure()=" << _tablet_schema->dump_structure();
360
    // Blocks from the seams arrive already transformed (variants parsed, row-store
361
    // column materialized); compaction-family callers bring rows that are already final.
362
39.3k
    _olap_data_convertor->set_source_content(block, row_pos, num_rows);
363
364
    // convert column data from engine format to storage layer format
365
39.3k
    std::vector<IOlapColumnDataAccessor*> key_columns;
366
39.3k
    IOlapColumnDataAccessor* seq_column = nullptr;
367
191k
    for (size_t id = 0; id < _column_writers.size(); ++id) {
368
        // olap data convertor alway start from id = 0
369
152k
        auto converted_result = _olap_data_convertor->convert_column_data(id);
370
152k
        if (!converted_result.first.ok()) {
371
0
            return converted_result.first;
372
0
        }
373
152k
        auto cid = _column_ids[id];
374
152k
        if (_has_key && cid < _tablet_schema->num_key_columns()) {
375
43.0k
            key_columns.push_back(converted_result.second);
376
109k
        } else if (_has_key && _tablet_schema->has_sequence_col() &&
377
109k
                   cid == _tablet_schema->sequence_col_idx()) {
378
237
            seq_column = converted_result.second;
379
237
        }
380
152k
        RETURN_IF_ERROR(_column_writers[id]->append(converted_result.second->get_nullmap(),
381
152k
                                                    converted_result.second->get_data(), num_rows));
382
152k
    }
383
39.3k
    if (_opts.write_type == DataWriteType::TYPE_COMPACTION) {
384
31.6k
        RETURN_IF_ERROR(
385
31.6k
                _variant_stats_calculator->calculate_variant_stats(block, row_pos, num_rows));
386
31.6k
    }
387
388
39.3k
    RETURN_IF_ERROR(build_key_index(key_columns, seq_column, num_rows));
389
390
39.3k
    _num_rows_written += num_rows;
391
39.3k
    _olap_data_convertor->clear_source_content();
392
39.3k
    return Status::OK();
393
39.3k
}
394
395
Status SegmentWriter::build_key_index(std::vector<IOlapColumnDataAccessor*>& key_columns,
396
39.3k
                                      IOlapColumnDataAccessor* seq_column, size_t num_rows) {
397
39.3k
    if (!_has_key) {
398
20.5k
        return Status::OK();
399
20.5k
    }
400
401
    // find all row pos for short key indexes
402
18.8k
    std::vector<size_t> short_key_pos;
403
18.8k
    if (UNLIKELY(_short_key_row_pos == 0 && _num_rows_written == 0)) {
404
12.6k
        short_key_pos.push_back(0);
405
12.6k
    }
406
42.5k
    while (_short_key_row_pos + _opts.num_rows_per_block < _num_rows_written + num_rows) {
407
23.7k
        _short_key_row_pos += _opts.num_rows_per_block;
408
23.7k
        short_key_pos.push_back(_short_key_row_pos - _num_rows_written);
409
23.7k
    }
410
411
18.8k
    if (_is_mow_with_cluster_key()) {
412
        // For CLUSTER BY tables:
413
        // 1) generate primary key index (unique keys)
414
257
        RETURN_IF_ERROR(_generate_primary_key_index(key_columns, seq_column, num_rows, true));
415
        // 2) generate short key index (cluster keys)
416
257
        key_columns.clear();
417
1.64k
        for (const auto& cid : _tablet_schema->cluster_key_uids()) {
418
1.64k
            auto cluster_key_index = _tablet_schema->field_index(cid);
419
1.64k
            if (cluster_key_index == -1) {
420
0
                return Status::InternalError("could not find cluster key column with unique_id=" +
421
0
                                             std::to_string(cid) + " in tablet schema");
422
0
            }
423
1.64k
            bool found = false;
424
14.8k
            for (auto i = 0; i < _column_ids.size(); ++i) {
425
14.8k
                if (_column_ids[i] == cluster_key_index) {
426
1.64k
                    auto converted_result = _olap_data_convertor->convert_column_data(i);
427
1.64k
                    if (!converted_result.first.ok()) {
428
0
                        return converted_result.first;
429
0
                    }
430
1.64k
                    key_columns.push_back(converted_result.second);
431
1.64k
                    found = true;
432
1.64k
                    break;
433
1.64k
                }
434
14.8k
            }
435
1.64k
            if (!found) {
436
0
                return Status::InternalError(
437
0
                        "could not found cluster key column with unique_id=" + std::to_string(cid) +
438
0
                        ", tablet schema index=" + std::to_string(cluster_key_index));
439
0
            }
440
1.64k
        }
441
257
        return _generate_short_key_index(key_columns, num_rows, short_key_pos);
442
257
    }
443
18.5k
    if (_is_mow()) {
444
3.08k
        return _generate_primary_key_index(key_columns, seq_column, num_rows, false);
445
3.08k
    }
446
15.4k
    return _generate_short_key_index(key_columns, num_rows, short_key_pos);
447
18.5k
}
448
449
7.88k
int64_t SegmentWriter::max_row_to_add(size_t row_avg_size_in_bytes) {
450
7.88k
    auto segment_size = estimate_segment_size();
451
7.88k
    if (segment_size >= MAX_SEGMENT_SIZE || _num_rows_written >= _opts.max_rows_per_segment)
452
367
            [[unlikely]] {
453
367
        return 0;
454
367
    }
455
7.51k
    int64_t size_rows = ((int64_t)MAX_SEGMENT_SIZE - (int64_t)segment_size) / row_avg_size_in_bytes;
456
7.51k
    int64_t count_rows = (int64_t)_opts.max_rows_per_segment - _num_rows_written;
457
458
7.51k
    return std::min(size_rows, count_rows);
459
7.88k
}
460
461
// TODO(lingbin): Currently this function does not include the size of various indexes,
462
// We should make this more precise.
463
// NOTE: This function will be called when any row of data is added, so we need to
464
// make this function efficient.
465
8.36k
uint64_t SegmentWriter::estimate_segment_size() {
466
    // footer_size(4) + checksum(4) + segment_magic(4)
467
8.36k
    uint64_t size = 12;
468
44.9k
    for (auto& column_writer : _column_writers) {
469
44.9k
        size += column_writer->estimate_buffer_size();
470
44.9k
    }
471
8.36k
    if (_is_mow_with_cluster_key()) {
472
198
        size += _primary_key_index_builder->size() + _short_key_index_builder->size();
473
8.16k
    } else if (_is_mow()) {
474
479
        size += _primary_key_index_builder->size();
475
7.68k
    } else {
476
7.68k
        size += _short_key_index_builder->size();
477
7.68k
    }
478
479
    // update the mem_tracker of segment size
480
8.36k
    _mem_tracker->consume(size - _mem_tracker->consumption());
481
8.36k
    return size;
482
8.36k
}
483
484
22.7k
Status SegmentWriter::finalize_columns_data() {
485
22.7k
    if (_has_key) {
486
12.7k
        _row_count = _num_rows_written;
487
12.7k
    } else {
488
18.4E
        DCHECK(_row_count == _num_rows_written)
489
18.4E
                << "_row_count != _num_rows_written:" << _row_count << " vs. " << _num_rows_written;
490
10.0k
        if (_row_count != _num_rows_written) {
491
0
            std::stringstream ss;
492
0
            ss << "_row_count != _num_rows_written:" << _row_count << " vs. " << _num_rows_written;
493
0
            LOG(WARNING) << ss.str();
494
0
            return Status::InternalError(ss.str());
495
0
        }
496
10.0k
    }
497
22.7k
    _num_rows_written = 0;
498
499
94.4k
    for (auto& column_writer : _column_writers) {
500
94.4k
        RETURN_IF_ERROR(column_writer->finish());
501
94.4k
    }
502
22.7k
    RETURN_IF_ERROR(_write_data());
503
504
22.7k
    return Status::OK();
505
22.7k
}
506
507
22.7k
Status SegmentWriter::finalize_columns_index(uint64_t* index_size) {
508
22.7k
    uint64_t index_start = _file_writer->bytes_appended();
509
    // Record each index range separately. Vertical compaction writes column groups as
510
    // data+index pairs, so a single [first index, EOF) range would include later column data.
511
    // This SegmentWriter path is shared by cloud load, non-vertical compaction, schema change
512
    // final output, and vertical compaction via VerticalBetaRowsetWriter.
513
22.7k
    RETURN_IF_ERROR(_write_ordinal_index());
514
22.7k
    RETURN_IF_ERROR(_write_zone_map());
515
22.7k
    RETURN_IF_ERROR(_write_inverted_index());
516
22.7k
    RETURN_IF_ERROR(_write_ann_index());
517
22.7k
    RETURN_IF_ERROR(_write_bloom_filter_index());
518
519
22.7k
    *index_size = _file_writer->bytes_appended() - index_start;
520
22.7k
    if (_has_key) {
521
12.7k
        if (_is_mow_with_cluster_key()) {
522
            // 1. sort primary keys
523
165
            std::sort(_primary_keys.begin(), _primary_keys.end());
524
            // 2. write primary keys index
525
165
            std::string last_key;
526
425k
            for (const auto& key : _primary_keys) {
527
425k
                DCHECK(key.compare(last_key) > 0)
528
0
                        << "found duplicate key or key is not sorted! current key: " << key
529
0
                        << ", last key: " << last_key;
530
425k
                RETURN_IF_ERROR(_primary_key_index_builder->add_item(key));
531
425k
                last_key = key;
532
425k
            }
533
534
165
            RETURN_IF_ERROR(_write_short_key_index());
535
165
            *index_size = _file_writer->bytes_appended() - index_start;
536
165
            RETURN_IF_ERROR(_write_primary_key_index());
537
165
            *index_size += _primary_key_index_builder->disk_size();
538
12.5k
        } else if (_is_mow()) {
539
2.70k
            RETURN_IF_ERROR(_write_primary_key_index());
540
            // IndexedColumnWriter write data pages mixed with segment data, we should use
541
            // the stat from primary key index builder.
542
2.70k
            *index_size += _primary_key_index_builder->disk_size();
543
9.86k
        } else {
544
9.86k
            RETURN_IF_ERROR(_write_short_key_index());
545
9.86k
            *index_size = _file_writer->bytes_appended() - index_start;
546
9.86k
        }
547
12.7k
    }
548
22.7k
    uint64_t file_index_end = _file_writer->bytes_appended();
549
22.7k
    _index_file_cache_info.add_index_range(index_start, file_index_end - index_start);
550
    // reset all column writers and data_conveter
551
22.7k
    clear();
552
553
22.7k
    return Status::OK();
554
22.7k
}
555
556
Status SegmentWriter::finalize_footer(uint64_t* segment_file_size,
557
12.7k
                                      SegmentIndexFileCacheInfo* index_file_cache_info) {
558
12.7k
    uint64_t footer_start = _file_writer->bytes_appended();
559
12.7k
    RETURN_IF_ERROR(_write_footer());
560
    // finish
561
12.7k
    RETURN_IF_ERROR(_file_writer->close(true));
562
12.7k
    *segment_file_size = _file_writer->bytes_appended();
563
    // The closed size completes the preload range recorded above. Local temporary rowsets, such as
564
    // schema-change internal sorting output, are filtered by SegmentIndexFileCacheLoader.
565
12.7k
    _index_file_cache_info.segment_file_size = *segment_file_size;
566
12.7k
    _index_file_cache_info.add_index_range(footer_start, *segment_file_size - footer_start);
567
12.7k
    if (index_file_cache_info != nullptr) {
568
12.6k
        *index_file_cache_info = _index_file_cache_info;
569
12.6k
    }
570
12.7k
    if (*segment_file_size == 0) {
571
0
        return Status::Corruption("Bad segment, file size = 0");
572
0
    }
573
12.7k
    return Status::OK();
574
12.7k
}
575
576
Status SegmentWriter::finalize(uint64_t* segment_file_size, uint64_t* index_size,
577
6.39k
                               SegmentIndexFileCacheInfo* index_file_cache_info) {
578
6.39k
    MonotonicStopWatch timer;
579
6.39k
    timer.start();
580
    // check disk capacity
581
6.39k
    if (_data_dir != nullptr && _data_dir->reach_capacity_limit((int64_t)estimate_segment_size())) {
582
0
        return Status::Error<DISK_REACH_CAPACITY_LIMIT>("disk {} exceed capacity limit, path: {}",
583
0
                                                        _data_dir->path_hash(), _data_dir->path());
584
0
    }
585
    // write data
586
6.39k
    RETURN_IF_ERROR(finalize_columns_data());
587
    // write index
588
6.39k
    RETURN_IF_ERROR(finalize_columns_index(index_size));
589
    // write footer
590
6.39k
    RETURN_IF_ERROR(finalize_footer(segment_file_size, index_file_cache_info));
591
592
6.39k
    if (timer.elapsed_time() > 5000000000l) {
593
4
        LOG(INFO) << "segment flush consumes a lot time_ns " << timer.elapsed_time()
594
4
                  << ", segmemt_size " << *segment_file_size;
595
4
    }
596
6.39k
    return Status::OK();
597
6.39k
}
598
599
22.7k
void SegmentWriter::clear() {
600
94.4k
    for (auto& column_writer : _column_writers) {
601
94.4k
        column_writer.reset();
602
94.4k
    }
603
22.7k
    _column_writers.clear();
604
22.7k
    _column_ids.clear();
605
22.7k
    _olap_data_convertor.reset();
606
22.7k
}
607
608
// write column data to file one by one
609
22.7k
Status SegmentWriter::_write_data() {
610
94.4k
    for (auto& column_writer : _column_writers) {
611
94.4k
        RETURN_IF_ERROR(column_writer->write_data());
612
613
94.4k
        auto* column_meta = column_writer->get_column_meta();
614
94.4k
        DCHECK(column_meta != nullptr);
615
94.4k
        column_meta->set_compressed_data_bytes(
616
94.4k
                (column_meta->has_compressed_data_bytes() ? column_meta->compressed_data_bytes()
617
94.4k
                                                          : 0) +
618
94.4k
                column_writer->get_total_compressed_data_pages_bytes());
619
94.4k
        column_meta->set_uncompressed_data_bytes(
620
94.4k
                (column_meta->has_uncompressed_data_bytes() ? column_meta->uncompressed_data_bytes()
621
94.4k
                                                            : 0) +
622
94.4k
                column_writer->get_total_uncompressed_data_pages_bytes());
623
94.4k
        column_meta->set_raw_data_bytes(
624
94.4k
                (column_meta->has_raw_data_bytes() ? column_meta->raw_data_bytes() : 0) +
625
94.4k
                column_writer->get_raw_data_bytes());
626
94.4k
    }
627
22.7k
    return Status::OK();
628
22.7k
}
629
630
// write ordinal index after data has been written
631
22.7k
Status SegmentWriter::_write_ordinal_index() {
632
94.4k
    for (auto& column_writer : _column_writers) {
633
94.4k
        RETURN_IF_ERROR(column_writer->write_ordinal_index());
634
94.4k
    }
635
22.7k
    return Status::OK();
636
22.7k
}
637
638
22.7k
Status SegmentWriter::_write_zone_map() {
639
94.4k
    for (auto& column_writer : _column_writers) {
640
94.4k
        RETURN_IF_ERROR(column_writer->write_zone_map());
641
94.4k
    }
642
22.7k
    return Status::OK();
643
22.7k
}
644
645
22.7k
Status SegmentWriter::_write_inverted_index() {
646
94.4k
    for (auto& column_writer : _column_writers) {
647
94.4k
        RETURN_IF_ERROR(column_writer->write_inverted_index());
648
94.4k
    }
649
22.7k
    return Status::OK();
650
22.7k
}
651
652
22.7k
Status SegmentWriter::_write_ann_index() {
653
94.4k
    for (auto& column_writer : _column_writers) {
654
94.4k
        RETURN_IF_ERROR(column_writer->write_ann_index());
655
94.4k
    }
656
22.7k
    return Status::OK();
657
22.7k
}
658
659
22.7k
Status SegmentWriter::_write_bloom_filter_index() {
660
94.4k
    for (auto& column_writer : _column_writers) {
661
94.4k
        RETURN_IF_ERROR(column_writer->write_bloom_filter_index());
662
94.4k
    }
663
22.7k
    return Status::OK();
664
22.7k
}
665
666
10.0k
Status SegmentWriter::_write_short_key_index() {
667
10.0k
    std::vector<Slice> body;
668
10.0k
    PageFooterPB footer;
669
10.0k
    RETURN_IF_ERROR(_short_key_index_builder->finalize(_row_count, &body, &footer));
670
10.0k
    PagePointer pp;
671
    // short key index page is not compressed right now
672
10.0k
    RETURN_IF_ERROR(PageIO::write_page(_file_writer, body, footer, &pp));
673
10.0k
    pp.to_proto(_footer.mutable_short_key_index_page());
674
10.0k
    return Status::OK();
675
10.0k
}
676
677
2.86k
Status SegmentWriter::_write_primary_key_index() {
678
2.86k
    CHECK_EQ(_primary_key_index_builder->num_rows(), _row_count);
679
2.86k
    return _primary_key_index_builder->finalize(_footer.mutable_primary_key_index_meta());
680
2.86k
}
681
682
12.7k
Status SegmentWriter::_write_footer() {
683
12.7k
    _footer.set_num_rows(_row_count);
684
    // Decide whether to externalize ColumnMetaPB by tablet default, and stamp footer version
685
12.7k
    if (_tablet_schema->storage_format() == TabletStorageFormatPB::TABLET_STORAGE_FORMAT_V3) {
686
5.65k
        _footer.set_version(SEGMENT_FOOTER_VERSION_V3_EXT_COL_META);
687
18.4E
        VLOG_DEBUG << "use external column meta";
688
        // External ColumnMetaPB writing (optional)
689
5.65k
        RETURN_IF_ERROR(ExternalColMetaUtil::write_external_column_meta(
690
5.65k
                _file_writer, &_footer, _opts.compression_type,
691
5.65k
                [this](const std::vector<Slice>& slices) { return _write_raw_data(slices); }));
692
5.65k
    }
693
694
    // Footer := SegmentFooterPB, FooterPBSize(4), FooterPBChecksum(4), MagicNumber(4)
695
12.7k
    std::string footer_buf;
696
18.4E
    VLOG_DEBUG << "footer " << _footer.DebugString();
697
12.7k
    if (!_footer.SerializeToString(&footer_buf)) {
698
0
        return Status::InternalError("failed to serialize segment footer");
699
0
    }
700
701
12.7k
    faststring fixed_buf;
702
    // footer's size
703
12.7k
    put_fixed32_le(&fixed_buf, cast_set<uint32_t>(footer_buf.size()));
704
    // footer's checksum
705
12.7k
    uint32_t checksum = crc32c::Crc32c(footer_buf.data(), footer_buf.size());
706
12.7k
    put_fixed32_le(&fixed_buf, checksum);
707
    // Append magic number. we don't write magic number in the header because
708
    // that will need an extra seek when reading
709
12.7k
    fixed_buf.append(k_segment_magic, k_segment_magic_length);
710
711
12.7k
    std::vector<Slice> slices {footer_buf, fixed_buf};
712
12.7k
    return _write_raw_data(slices);
713
12.7k
}
714
715
70.6k
Status SegmentWriter::_write_raw_data(const std::vector<Slice>& slices) {
716
70.6k
    RETURN_IF_ERROR(_file_writer->appendv(&slices[0], slices.size()));
717
70.6k
    return Status::OK();
718
70.6k
}
719
720
12.7k
Slice SegmentWriter::min_encoded_key() {
721
12.7k
    return (_primary_key_index_builder == nullptr) ? Slice(_min_key.data(), _min_key.size())
722
12.7k
                                                   : _primary_key_index_builder->min_key();
723
12.7k
}
724
12.7k
Slice SegmentWriter::max_encoded_key() {
725
12.7k
    return (_primary_key_index_builder == nullptr) ? Slice(_max_key.data(), _max_key.size())
726
12.7k
                                                   : _primary_key_index_builder->max_key();
727
12.7k
}
728
729
24.8k
void SegmentWriter::set_min_max_key(const Slice& key) {
730
24.8k
    if (UNLIKELY(_is_first_row)) {
731
12
        _min_key.append(key.get_data(), key.get_size());
732
12
        _is_first_row = false;
733
12
    }
734
24.8k
    if (key.compare(_max_key) > 0) {
735
24.8k
        _max_key.clear();
736
24.8k
        _max_key.append(key.get_data(), key.get_size());
737
24.8k
    }
738
24.8k
}
739
740
15.7k
void SegmentWriter::set_min_key(const Slice& key) {
741
15.7k
    if (UNLIKELY(_is_first_row)) {
742
10.0k
        _min_key.append(key.get_data(), key.get_size());
743
10.0k
        _is_first_row = false;
744
10.0k
    }
745
15.7k
}
746
747
15.7k
void SegmentWriter::set_max_key(const Slice& key) {
748
15.7k
    _max_key.clear();
749
15.7k
    _max_key.append(key.get_data(), key.get_size());
750
15.7k
}
751
752
Status SegmentWriter::_generate_primary_key_index(
753
        const std::vector<IOlapColumnDataAccessor*>& primary_key_columns,
754
3.33k
        IOlapColumnDataAccessor* seq_column, size_t num_rows, bool need_sort) {
755
3.33k
    if (!need_sort) { // mow table without cluster key
756
3.08k
        std::string last_key;
757
2.12M
        for (size_t pos = 0; pos < num_rows; pos++) {
758
2.12M
            std::string key = encode_mow_key_invalidate_cache(
759
2.12M
                    _key_encoder, primary_key_columns, seq_column, pos,
760
2.12M
                    _tablet_schema->has_sequence_col(), _opts.rowset_ctx->tablet_id,
761
2.12M
                    *_tablet_schema, _opts.write_type);
762
18.4E
            DCHECK(key.compare(last_key) > 0)
763
18.4E
                    << "found duplicate key or key is not sorted! current key: " << key
764
18.4E
                    << ", last key: " << last_key;
765
2.12M
            RETURN_IF_ERROR(_primary_key_index_builder->add_item(key));
766
2.12M
            last_key = std::move(key);
767
2.12M
        }
768
3.08k
    } else { // mow table with cluster key
769
        // generate primary keys in memory
770
425k
        for (uint32_t pos = 0; pos < num_rows; pos++) {
771
425k
            std::string key = _key_encoder.full_encode_primary_keys(primary_key_columns, pos);
772
425k
            MowKeyProbe::maybe_invalidate_row_cache(_opts.rowset_ctx->tablet_id, *_tablet_schema,
773
425k
                                                    _opts.write_type, key);
774
425k
            if (_tablet_schema->has_sequence_col()) {
775
25
                _key_encoder.append_seq_suffix(&key, seq_column, pos);
776
25
            }
777
425k
            _key_encoder.append_rowid_suffix(&key, pos + _num_rows_written);
778
425k
            _primary_keys_size += key.size();
779
425k
            _primary_keys.emplace_back(std::move(key));
780
425k
        }
781
255
    }
782
3.33k
    return Status::OK();
783
3.33k
}
784
785
Status SegmentWriter::_generate_short_key_index(std::vector<IOlapColumnDataAccessor*>& key_columns,
786
                                                size_t num_rows,
787
15.6k
                                                const std::vector<size_t>& short_key_pos) {
788
15.6k
    set_min_key(_key_encoder.full_encode(key_columns, 0));
789
15.6k
    set_max_key(_key_encoder.full_encode(key_columns, num_rows - 1));
790
18.4E
    DCHECK(Slice(_max_key.data(), _max_key.size())
791
18.4E
                   .compare(Slice(_min_key.data(), _min_key.size())) >= 0)
792
18.4E
            << "key is not sorted! min key: " << _min_key << ", max key: " << _max_key;
793
794
15.6k
    key_columns.resize(_num_short_key_columns);
795
15.6k
    std::string last_key;
796
31.9k
    for (const auto pos : short_key_pos) {
797
31.9k
        std::string key = _key_encoder.encode_short_keys(key_columns, pos);
798
18.4E
        DCHECK(key.compare(last_key) >= 0)
799
18.4E
                << "key is not sorted! current key: " << key << ", last key: " << last_key;
800
31.9k
        RETURN_IF_ERROR(_short_key_index_builder->add_item(key));
801
31.9k
        last_key = std::move(key);
802
31.9k
    }
803
15.6k
    return Status::OK();
804
15.6k
}
805
806
} // namespace segment_v2
807
} // namespace doris