Coverage Report

Created: 2026-06-03 09:05

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/storage/rowset/beta_rowset_writer.cpp
Line
Count
Source
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 "storage/rowset/beta_rowset_writer.h"
19
20
#include <assert.h>
21
// IWYU pragma: no_include <bthread/errno.h>
22
#include <errno.h> // IWYU pragma: keep
23
#include <fmt/format.h>
24
#include <stdio.h>
25
26
#include <chrono>
27
#include <ctime> // time
28
#include <filesystem>
29
#include <memory>
30
#include <mutex>
31
#include <sstream>
32
#include <thread>
33
#include <utility>
34
#include <vector>
35
36
// IWYU pragma: no_include <opentelemetry/common/threadlocal.h>
37
#include "common/cast_set.h"
38
#include "common/compiler_util.h" // IWYU pragma: keep
39
#include "common/config.h"
40
#include "common/logging.h"
41
#include "common/status.h"
42
#include "core/block/block.h"
43
#include "core/column/column.h"
44
#include "core/data_type/data_type_factory.hpp"
45
#include "io/fs/file_reader.h"
46
#include "io/fs/file_system.h"
47
#include "io/fs/file_writer.h"
48
#include "runtime/thread_context.h"
49
#include "storage/index/inverted/inverted_index_cache.h"
50
#include "storage/index/inverted/inverted_index_desc.h"
51
#include "storage/olap_define.h"
52
#include "storage/rowset/beta_rowset.h"
53
#include "storage/rowset/rowset_factory.h"
54
#include "storage/rowset/rowset_writer.h"
55
#include "storage/rowset/segcompaction.h"
56
#include "storage/schema_change/schema_change.h"
57
#include "storage/segment/segment.h"
58
#include "storage/segment/segment_writer.h"
59
#include "storage/storage_engine.h"
60
#include "storage/tablet/tablet_schema.h"
61
#include "util/debug_points.h"
62
#include "util/pretty_printer.h"
63
#include "util/slice.h"
64
#include "util/stopwatch.hpp"
65
#include "util/time.h"
66
67
namespace doris {
68
using namespace ErrorCode;
69
70
namespace {
71
72
702
bool is_segment_overlapping(const std::vector<KeyBoundsPB>& segments_encoded_key_bounds) {
73
702
    std::string_view last;
74
1.78k
    for (auto&& segment_encode_key : segments_encoded_key_bounds) {
75
1.78k
        auto&& cur_min = segment_encode_key.min_key();
76
1.78k
        auto&& cur_max = segment_encode_key.max_key();
77
1.78k
        if (cur_min <= last) {
78
258
            return true;
79
258
        }
80
1.53k
        last = cur_max;
81
1.53k
    }
82
444
    return false;
83
702
}
84
85
1.21k
bool truncate_key_bounds(KeyBoundsPB* key_bounds) {
86
1.21k
    DCHECK(key_bounds != nullptr);
87
1.21k
    if (config::random_segments_key_bounds_truncation) {
88
0
        return false;
89
0
    }
90
1.21k
    const int32_t truncation_threshold = config::segments_key_bounds_truncation_threshold;
91
1.21k
    if (truncation_threshold <= 0) {
92
355
        return false;
93
355
    }
94
862
    const size_t truncation_size = cast_set<size_t>(truncation_threshold);
95
96
862
    bool truncated = false;
97
862
    if (key_bounds->min_key().size() > truncation_size) {
98
700
        key_bounds->mutable_min_key()->resize(truncation_size);
99
700
        truncated = true;
100
700
    }
101
862
    if (key_bounds->max_key().size() > truncation_size) {
102
695
        key_bounds->mutable_max_key()->resize(truncation_size);
103
695
        truncated = true;
104
695
    }
105
862
    return truncated;
106
1.21k
}
107
108
void build_rowset_meta_with_spec_field(RowsetMeta& rowset_meta,
109
24
                                       const RowsetMeta& spec_rowset_meta) {
110
24
    rowset_meta.set_num_rows(spec_rowset_meta.num_rows());
111
24
    rowset_meta.set_total_disk_size(spec_rowset_meta.total_disk_size());
112
24
    rowset_meta.set_data_disk_size(spec_rowset_meta.data_disk_size());
113
24
    rowset_meta.set_index_disk_size(spec_rowset_meta.index_disk_size());
114
    // TODO write zonemap to meta
115
24
    rowset_meta.set_empty(spec_rowset_meta.num_rows() == 0);
116
24
    rowset_meta.set_creation_time(time(nullptr));
117
24
    rowset_meta.set_num_segments(spec_rowset_meta.num_segments());
118
24
    rowset_meta.set_segments_overlap(spec_rowset_meta.segments_overlap());
119
24
    rowset_meta.set_rowset_state(spec_rowset_meta.rowset_state());
120
24
    rowset_meta.set_segments_key_bounds_truncated(
121
24
            spec_rowset_meta.is_segments_key_bounds_truncated());
122
24
    rowset_meta.set_db_id(spec_rowset_meta.db_id());
123
24
    rowset_meta.set_table_id(spec_rowset_meta.table_id());
124
24
    std::vector<KeyBoundsPB> segments_key_bounds;
125
24
    spec_rowset_meta.get_segments_key_bounds(&segments_key_bounds);
126
    // Preserve source layout: if source was aggregated (size 1), re-aggregating
127
    // the single entry is a no-op that also keeps the flag consistent.
128
24
    rowset_meta.set_segments_key_bounds(segments_key_bounds,
129
24
                                        spec_rowset_meta.is_segments_key_bounds_aggregated());
130
24
    std::vector<uint32_t> num_segment_rows;
131
24
    spec_rowset_meta.get_num_segment_rows(&num_segment_rows);
132
24
    rowset_meta.set_num_segment_rows(num_segment_rows);
133
24
    if (spec_rowset_meta.has_commit_tso()) {
134
6
        rowset_meta.set_commit_tso(spec_rowset_meta.commit_tso());
135
6
    }
136
24
    if (spec_rowset_meta.is_row_binlog()) {
137
0
        rowset_meta.mark_row_binlog();
138
0
    }
139
24
}
140
141
} // namespace
142
143
1.01k
SegmentFileCollection::~SegmentFileCollection() = default;
144
145
2.38k
Status SegmentFileCollection::add(int seg_id, io::FileWriterPtr&& writer) {
146
2.38k
    std::lock_guard lock(_lock);
147
2.38k
    if (_closed) [[unlikely]] {
148
0
        DCHECK(false) << writer->path();
149
0
        return Status::InternalError("add to closed SegmentFileCollection");
150
0
    }
151
152
2.38k
    _file_writers.emplace(seg_id, std::move(writer));
153
2.38k
    return Status::OK();
154
2.38k
}
155
156
63
io::FileWriter* SegmentFileCollection::get(int seg_id) const {
157
63
    std::lock_guard lock(_lock);
158
63
    if (auto it = _file_writers.find(seg_id); it != _file_writers.end()) {
159
63
        return it->second.get();
160
63
    } else {
161
0
        return nullptr;
162
0
    }
163
63
}
164
165
984
Status SegmentFileCollection::close() {
166
984
    {
167
984
        std::lock_guard lock(_lock);
168
984
        if (_closed) [[unlikely]] {
169
0
            DCHECK(false);
170
0
            return Status::InternalError("double close SegmentFileCollection");
171
0
        }
172
984
        _closed = true;
173
984
    }
174
175
2.38k
    for (auto&& [_, writer] : _file_writers) {
176
2.38k
        DBUG_EXECUTE_IF("SegmentFileCollection.close.wait_dat_closed", {
177
2.38k
            auto before_state = writer->state();
178
2.38k
            for (int i = 0; i < 3000 && writer->state() != io::FileWriter::State::CLOSED; ++i) {
179
2.38k
                std::this_thread::sleep_for(std::chrono::milliseconds(10));
180
2.38k
            }
181
2.38k
            LOG(INFO) << "SegmentFileCollection.close.wait_dat_closed path="
182
2.38k
                      << writer->path().native()
183
2.38k
                      << " before_state=" << static_cast<int>(before_state)
184
2.38k
                      << " after_state=" << static_cast<int>(writer->state());
185
2.38k
        });
186
2.38k
        if (writer->state() != io::FileWriter::State::CLOSED) {
187
2.32k
            RETURN_IF_ERROR(writer->close());
188
2.32k
        }
189
2.38k
    }
190
191
984
    return Status::OK();
192
984
}
193
194
0
Result<std::vector<size_t>> SegmentFileCollection::segments_file_size(int seg_id_offset) {
195
0
    std::lock_guard lock(_lock);
196
0
    if (!_closed) [[unlikely]] {
197
0
        DCHECK(false);
198
0
        return ResultError(Status::InternalError("get segments file size without closed"));
199
0
    }
200
201
0
    Status st;
202
0
    std::vector<size_t> seg_file_size(_file_writers.size(), 0);
203
0
    bool succ = std::all_of(_file_writers.begin(), _file_writers.end(), [&](auto&& it) {
204
0
        auto&& [seg_id, writer] = it;
205
206
0
        int idx = seg_id - seg_id_offset;
207
0
        if (idx >= seg_file_size.size()) [[unlikely]] {
208
0
            auto err_msg = fmt::format(
209
0
                    "invalid seg_id={} num_file_writers={} seg_id_offset={} path={}", seg_id,
210
0
                    seg_file_size.size(), seg_id_offset, writer->path().native());
211
0
            DCHECK(false) << err_msg;
212
0
            st = Status::InternalError(err_msg);
213
0
            return false;
214
0
        }
215
216
0
        auto& fsize = seg_file_size[idx];
217
0
        if (fsize != 0) {
218
            // File size should not been set
219
0
            auto err_msg =
220
0
                    fmt::format("duplicate seg_id={} path={}", seg_id, writer->path().native());
221
0
            DCHECK(false) << err_msg;
222
0
            st = Status::InternalError(err_msg);
223
0
            return false;
224
0
        }
225
226
0
        fsize = writer->bytes_appended();
227
0
        if (fsize <= 0) {
228
0
            auto err_msg =
229
0
                    fmt::format("invalid segment fsize={} path={}", fsize, writer->path().native());
230
0
            DCHECK(false) << err_msg;
231
0
            st = Status::InternalError(err_msg);
232
0
            return false;
233
0
        }
234
235
0
        return true;
236
0
    });
237
238
0
    if (succ) {
239
0
        return seg_file_size;
240
0
    }
241
242
0
    return ResultError(st);
243
0
}
244
245
1.01k
InvertedIndexFileCollection::~InvertedIndexFileCollection() = default;
246
247
263
Status InvertedIndexFileCollection::add(int seg_id, IndexFileWriterPtr&& index_writer) {
248
263
    std::lock_guard lock(_lock);
249
263
    if (_inverted_index_file_writers.find(seg_id) != _inverted_index_file_writers.end())
250
0
            [[unlikely]] {
251
0
        DCHECK(false);
252
0
        return Status::InternalError("The seg_id already exists, seg_id is {}", seg_id);
253
0
    }
254
263
    _inverted_index_file_writers.emplace(seg_id, std::move(index_writer));
255
263
    return Status::OK();
256
263
}
257
258
328
Status InvertedIndexFileCollection::begin_close() {
259
328
    std::lock_guard lock(_lock);
260
328
    for (auto&& [id, writer] : _inverted_index_file_writers) {
261
36
        RETURN_IF_ERROR(writer->begin_close());
262
36
        _total_size += writer->get_index_file_total_size();
263
36
    }
264
265
328
    return Status::OK();
266
328
}
267
268
984
Status InvertedIndexFileCollection::finish_close() {
269
984
    std::lock_guard lock(_lock);
270
984
    for (auto&& [id, writer] : _inverted_index_file_writers) {
271
262
        RETURN_IF_ERROR(writer->finish_close());
272
262
    }
273
984
    return Status::OK();
274
984
}
275
276
Result<std::vector<const InvertedIndexFileInfo*>>
277
106
InvertedIndexFileCollection::inverted_index_file_info(int seg_id_offset) {
278
106
    std::lock_guard lock(_lock);
279
280
106
    Status st;
281
106
    std::vector<const InvertedIndexFileInfo*> idx_file_info(_inverted_index_file_writers.size());
282
106
    bool succ = std::all_of(
283
106
            _inverted_index_file_writers.begin(), _inverted_index_file_writers.end(),
284
213
            [&](auto&& it) {
285
213
                auto&& [seg_id, writer] = it;
286
287
213
                int idx = seg_id - seg_id_offset;
288
213
                if (idx >= idx_file_info.size()) [[unlikely]] {
289
0
                    auto err_msg =
290
0
                            fmt::format("invalid seg_id={} num_file_writers={} seg_id_offset={}",
291
0
                                        seg_id, idx_file_info.size(), seg_id_offset);
292
0
                    DCHECK(false) << err_msg;
293
0
                    st = Status::InternalError(err_msg);
294
0
                    return false;
295
0
                }
296
213
                idx_file_info[idx] = _inverted_index_file_writers[seg_id]->get_index_file_info();
297
213
                return true;
298
213
            });
299
300
106
    if (succ) {
301
106
        return idx_file_info;
302
106
    }
303
304
0
    return ResultError(st);
305
106
}
306
307
BaseBetaRowsetWriter::BaseBetaRowsetWriter()
308
1.01k
        : _num_segment(0),
309
1.01k
          _segment_start_id(0),
310
1.01k
          _num_rows_written(0),
311
1.01k
          _total_data_size(0),
312
1.01k
          _total_index_size(0),
313
1.01k
          _segment_creator(_context, _seg_files, _idx_files) {}
314
315
BetaRowsetWriter::BetaRowsetWriter(StorageEngine& engine)
316
1.01k
        : _engine(engine), _segcompaction_worker(std::make_shared<SegcompactionWorker>(this)) {}
317
318
10
RowBinlogRowsetWriter::RowBinlogRowsetWriter(StorageEngine& engine) : BetaRowsetWriter(engine) {}
319
320
1.01k
BaseBetaRowsetWriter::~BaseBetaRowsetWriter() {
321
1.01k
    if (!_already_built && _rowset_meta->is_local()) {
322
        // abnormal exit, remove all files generated
323
10
        auto& fs = io::global_local_filesystem();
324
12
        for (int i = _segment_start_id; i < _segment_creator.next_segment_id(); ++i) {
325
2
            std::string seg_path =
326
2
                    local_segment_path(_context.tablet_path, _context.rowset_id.to_string(), i);
327
            // Even if an error is encountered, these files that have not been cleaned up
328
            // will be cleaned up by the GC background. So here we only print the error
329
            // message when we encounter an error.
330
2
            WARN_IF_ERROR(fs->delete_file(seg_path),
331
2
                          fmt::format("Failed to delete file={}", seg_path));
332
2
        }
333
10
    }
334
1.01k
    if (_calc_delete_bitmap_token) {
335
9
        _calc_delete_bitmap_token->cancel();
336
9
    }
337
1.01k
}
338
339
1.01k
BetaRowsetWriter::~BetaRowsetWriter() {
340
    /* Note that segcompaction is async and in parallel with load job. So we should handle carefully
341
     * when the job is cancelled. Although it is meaningless to continue segcompaction when the job
342
     * is cancelled, the objects involved in the job should be preserved during segcompaction to
343
     * avoid crashs for memory issues. */
344
1.01k
    WARN_IF_ERROR(_wait_flying_segcompaction(), "segment compaction failed");
345
1.01k
}
346
347
1.01k
Status BaseBetaRowsetWriter::init(const RowsetWriterContext& rowset_writer_context) {
348
1.01k
    _context = rowset_writer_context;
349
1.01k
    DCHECK(_context.tablet_schema != nullptr);
350
1.01k
    _rowset_meta.reset(new RowsetMeta);
351
1.01k
    if (_context.storage_resource) {
352
0
        _rowset_meta->set_remote_storage_resource(*_context.storage_resource);
353
0
    }
354
1.01k
    _rowset_meta->set_rowset_id(_context.rowset_id);
355
1.01k
    _rowset_meta->set_partition_id(_context.partition_id);
356
1.01k
    _rowset_meta->set_tablet_id(_context.tablet_id);
357
1.01k
    _rowset_meta->set_db_id(_context.db_id);
358
1.01k
    _rowset_meta->set_table_id(_context.table_id);
359
1.01k
    _rowset_meta->set_index_id(_context.index_id);
360
1.01k
    _rowset_meta->set_tablet_schema_hash(_context.tablet_schema_hash);
361
1.01k
    _rowset_meta->set_rowset_type(_context.rowset_type);
362
1.01k
    _rowset_meta->set_rowset_state(_context.rowset_state);
363
1.01k
    _rowset_meta->set_segments_overlap(_context.segments_overlap);
364
1.01k
    if (_context.rowset_state == PREPARED || _context.rowset_state == COMMITTED) {
365
36
        _is_pending = true;
366
36
        _rowset_meta->set_txn_id(_context.txn_id);
367
36
        _rowset_meta->set_load_id(_context.load_id);
368
981
    } else {
369
981
        _rowset_meta->set_version(_context.version);
370
981
        _rowset_meta->set_newest_write_timestamp(_context.newest_write_timestamp);
371
981
    }
372
1.01k
    _rowset_meta->set_tablet_uid(_context.tablet_uid);
373
1.01k
    _rowset_meta->set_tablet_schema(_context.tablet_schema);
374
1.01k
    _rowset_meta->set_compaction_level(_context.compaction_level);
375
1.01k
    if (_context.write_binlog_opt().enable) {
376
10
        _rowset_meta->mark_row_binlog();
377
10
    }
378
1.01k
    _context.segment_collector = std::make_shared<SegmentCollectorT<BaseBetaRowsetWriter>>(this);
379
1.01k
    _context.file_writer_creator = std::make_shared<FileWriterCreatorT<BaseBetaRowsetWriter>>(this);
380
1.01k
    return Status::OK();
381
1.01k
}
382
383
1.36k
Status BaseBetaRowsetWriter::add_block(const Block* block) {
384
1.36k
    return _segment_creator.add_block(block);
385
1.36k
}
386
387
63
Status BaseBetaRowsetWriter::_generate_delete_bitmap(int32_t segment_id) {
388
63
    SCOPED_RAW_TIMER(&_delete_bitmap_ns);
389
63
    if (_context.is_transient_rowset_writer ||
390
63
        !_context.tablet->enable_unique_key_merge_on_write() ||
391
63
        (_context.partial_update_info && _context.partial_update_info->is_partial_update())) {
392
0
        return Status::OK();
393
0
    }
394
63
    std::vector<RowsetSharedPtr> specified_rowsets;
395
63
    {
396
63
        std::shared_lock meta_rlock(_context.tablet->get_header_lock());
397
63
        specified_rowsets =
398
63
                _context.tablet->get_rowset_by_ids(_context.mow_context->rowset_ids.get());
399
63
    }
400
401
    // Submit the entire delete bitmap calculation process to thread pool for async execution
402
    // This avoids blocking memtable flush thread while waiting for file upload to complete
403
    // The process includes: file_writer->close(), _build_tmp, load_segments, and calc_delete_bitmap
404
63
    return _calc_delete_bitmap_token->submit_func(
405
63
            [this, segment_id, specified_rowsets = std::move(specified_rowsets)]() -> Status {
406
63
                Status st = Status::OK();
407
                // Step 1: Close file_writer (must be done before load_segments)
408
63
                auto* file_writer = _seg_files.get(segment_id);
409
63
                if (file_writer && file_writer->state() != io::FileWriter::State::CLOSED) {
410
63
                    MonotonicStopWatch close_timer;
411
63
                    close_timer.start();
412
63
                    st = file_writer->close();
413
63
                    close_timer.stop();
414
415
63
                    auto close_time_ms = close_timer.elapsed_time_milliseconds();
416
63
                    if (close_time_ms > 1000) {
417
0
                        LOG(INFO) << "file_writer->close() took " << close_time_ms
418
0
                                  << "ms for segment_id=" << segment_id
419
0
                                  << ", tablet_id=" << _context.tablet_id
420
0
                                  << ", rowset_id=" << _context.rowset_id;
421
0
                    }
422
63
                    if (!st.ok()) {
423
0
                        return st;
424
0
                    }
425
63
                }
426
427
63
                OlapStopWatch watch;
428
                // Step 2: Build tmp rowset (needs file_writer to be closed)
429
63
                RowsetSharedPtr rowset_ptr;
430
63
                st = _build_tmp(rowset_ptr);
431
63
                if (!st.ok()) {
432
0
                    return st;
433
0
                }
434
435
                // Step 3: Load segments (needs file_writer to be closed and rowset to be built)
436
63
                auto* beta_rowset = reinterpret_cast<BetaRowset*>(rowset_ptr.get());
437
63
                std::vector<segment_v2::SegmentSharedPtr> segments;
438
63
                st = beta_rowset->load_segments(segment_id, segment_id + 1, &segments);
439
63
                if (!st.ok()) {
440
0
                    return st;
441
0
                }
442
443
                // Step 4: Calculate delete bitmap
444
63
                st = BaseTablet::calc_delete_bitmap(
445
63
                        _context.tablet, rowset_ptr, segments, specified_rowsets,
446
63
                        _context.mow_context->delete_bitmap, _context.mow_context->max_version,
447
63
                        nullptr, nullptr, nullptr);
448
63
                if (!st.ok()) {
449
0
                    return st;
450
0
                }
451
452
63
                size_t total_rows =
453
63
                        std::accumulate(segments.begin(), segments.end(), 0,
454
63
                                        [](size_t sum, const segment_v2::SegmentSharedPtr& s) {
455
63
                                            return sum += s->num_rows();
456
63
                                        });
457
63
                LOG(INFO) << "[Memtable Flush] construct delete bitmap tablet: "
458
63
                          << _context.tablet->tablet_id()
459
63
                          << ", rowset_ids: " << _context.mow_context->rowset_ids->size()
460
63
                          << ", cur max_version: " << _context.mow_context->max_version
461
63
                          << ", transaction_id: " << _context.mow_context->txn_id
462
63
                          << ", delete_bitmap_count: "
463
63
                          << _context.mow_context->delete_bitmap->get_delete_bitmap_count()
464
63
                          << ", delete_bitmap_cardinality: "
465
63
                          << _context.mow_context->delete_bitmap->cardinality()
466
63
                          << ", cost: " << watch.get_elapse_time_us()
467
63
                          << "(us), total rows: " << total_rows;
468
63
                return Status::OK();
469
63
            });
470
63
}
471
472
1.01k
Status BetaRowsetWriter::init(const RowsetWriterContext& rowset_writer_context) {
473
1.01k
    RETURN_IF_ERROR(BaseBetaRowsetWriter::init(rowset_writer_context));
474
1.01k
    if (_segcompaction_worker) {
475
1.01k
        _segcompaction_worker->init_mem_tracker(rowset_writer_context);
476
1.01k
    }
477
1.01k
    if (_context.mow_context != nullptr) {
478
9
        _calc_delete_bitmap_token = _engine.calc_delete_bitmap_executor_for_load()->create_token();
479
9
    }
480
1.01k
    return Status::OK();
481
1.01k
}
482
483
Status BetaRowsetWriter::_load_noncompacted_segment(segment_v2::SegmentSharedPtr& segment,
484
77
                                                    int32_t segment_id) {
485
77
    DCHECK(_rowset_meta->is_local());
486
77
    auto fs = _rowset_meta->fs();
487
77
    if (!fs) {
488
0
        return Status::Error<INIT_FAILED>(
489
0
                "BetaRowsetWriter::_load_noncompacted_segment _rowset_meta->fs get failed");
490
0
    }
491
77
    auto path =
492
77
            local_segment_path(_context.tablet_path, _context.rowset_id.to_string(), segment_id);
493
77
    io::FileReaderOptions reader_options {
494
77
            .cache_type =
495
77
                    _context.write_file_cache
496
77
                            ? (config::enable_file_cache ? io::FileCachePolicy::FILE_BLOCK_CACHE
497
0
                                                         : io::FileCachePolicy::NO_CACHE)
498
77
                            : io::FileCachePolicy::NO_CACHE,
499
77
            .is_doris_table = true,
500
77
            .cache_base_path {},
501
77
            .tablet_id = _rowset_meta->tablet_id(),
502
77
    };
503
77
    auto s = segment_v2::Segment::open(fs, path, _rowset_meta->tablet_id(), segment_id, rowset_id(),
504
77
                                       _context.tablet_schema, reader_options, &segment);
505
77
    if (!s.ok()) {
506
0
        LOG(WARNING) << "failed to open segment. " << path << ":" << s;
507
0
        return s;
508
0
    }
509
77
    return Status::OK();
510
77
}
511
512
/* policy of segcompaction target selection:
513
 *  1. skip big segments
514
 *  2. if the consecutive smalls end up with a big, compact the smalls, except
515
 *     single small
516
 *  3. if the consecutive smalls end up with small, compact the smalls if the
517
 *     length is beyond (config::segcompaction_batch_size / 2)
518
 */
519
Status BetaRowsetWriter::_find_longest_consecutive_small_segment(
520
15
        SegCompactionCandidatesSharedPtr& segments) {
521
15
    segments = std::make_shared<SegCompactionCandidates>();
522
    // skip last (maybe active) segment
523
15
    int32_t last_segment = _num_segment - 1;
524
15
    size_t task_bytes = 0;
525
15
    uint32_t task_rows = 0;
526
15
    int32_t segid;
527
15
    for (segid = _segcompacted_point;
528
86
         segid < last_segment && segments->size() < config::segcompaction_batch_size; segid++) {
529
77
        segment_v2::SegmentSharedPtr segment;
530
77
        RETURN_IF_ERROR(_load_noncompacted_segment(segment, segid));
531
77
        const auto segment_rows = segment->num_rows();
532
77
        const auto segment_bytes = segment->file_reader()->size();
533
77
        bool is_large_segment = segment_rows > config::segcompaction_candidate_max_rows ||
534
77
                                segment_bytes > config::segcompaction_candidate_max_bytes;
535
77
        if (is_large_segment) {
536
14
            if (segid == _segcompacted_point) {
537
                // skip large segments at the front
538
8
                auto dst_seg_id = _num_segcompacted.load();
539
8
                RETURN_IF_ERROR(_rename_compacted_segment_plain(_segcompacted_point++));
540
8
                if (_segcompaction_worker->need_convert_delete_bitmap()) {
541
4
                    _segcompaction_worker->convert_segment_delete_bitmap(
542
4
                            _context.mow_context->delete_bitmap, segid, dst_seg_id);
543
4
                }
544
8
                continue;
545
8
            } else {
546
                // stop because we need consecutive segments
547
6
                break;
548
6
            }
549
14
        }
550
63
        bool is_task_full = task_rows + segment_rows > config::segcompaction_task_max_rows ||
551
63
                            task_bytes + segment_bytes > config::segcompaction_task_max_bytes;
552
63
        if (is_task_full) {
553
0
            break;
554
0
        }
555
63
        segments->push_back(segment);
556
63
        task_rows += segment->num_rows();
557
63
        task_bytes += segment->file_reader()->size();
558
63
    }
559
15
    size_t s = segments->size();
560
15
    if (segid == last_segment && s <= (config::segcompaction_batch_size / 2)) {
561
        // we didn't collect enough segments, better to do it in next
562
        // round to compact more at once
563
0
        segments->clear();
564
0
        return Status::OK();
565
0
    }
566
15
    if (s == 1) { // poor bachelor, let it go
567
4
        VLOG_DEBUG << "only one candidate segment";
568
4
        auto src_seg_id = _segcompacted_point.load();
569
4
        auto dst_seg_id = _num_segcompacted.load();
570
4
        RETURN_IF_ERROR(_rename_compacted_segment_plain(_segcompacted_point++));
571
4
        if (_segcompaction_worker->need_convert_delete_bitmap()) {
572
2
            _segcompaction_worker->convert_segment_delete_bitmap(
573
2
                    _context.mow_context->delete_bitmap, src_seg_id, dst_seg_id);
574
2
        }
575
4
        segments->clear();
576
4
        return Status::OK();
577
4
    }
578
11
    if (VLOG_DEBUG_IS_ON) {
579
0
        vlog_buffer.clear();
580
0
        for (auto& segment : (*segments.get())) {
581
0
            fmt::format_to(vlog_buffer, "[id:{} num_rows:{}]", segment->id(), segment->num_rows());
582
0
        }
583
0
        VLOG_DEBUG << "candidate segments num:" << s
584
0
                   << " list of candidates:" << fmt::to_string(vlog_buffer);
585
0
    }
586
11
    return Status::OK();
587
15
}
588
589
11
Status BetaRowsetWriter::_rename_compacted_segments(int64_t begin, int64_t end) {
590
11
    int ret;
591
11
    auto src_seg_path = BetaRowset::local_segment_path_segcompacted(_context.tablet_path,
592
11
                                                                    _context.rowset_id, begin, end);
593
11
    auto dst_seg_path = local_segment_path(_context.tablet_path, _context.rowset_id.to_string(),
594
11
                                           _num_segcompacted);
595
11
    ret = rename(src_seg_path.c_str(), dst_seg_path.c_str());
596
11
    if (ret) {
597
0
        return Status::Error<ROWSET_RENAME_FILE_FAILED>(
598
0
                "failed to rename {} to {}. ret:{}, errno:{}", src_seg_path, dst_seg_path, ret,
599
0
                errno);
600
0
    }
601
11
    RETURN_IF_ERROR(_remove_segment_footer_cache(_num_segcompacted, dst_seg_path));
602
603
    // rename inverted index files
604
11
    RETURN_IF_ERROR(_rename_compacted_indices(begin, end, 0));
605
606
11
    _num_segcompacted++;
607
11
    return Status::OK();
608
11
}
609
610
void BetaRowsetWriter::_clear_statistics_for_deleting_segments_unsafe(uint32_t begin,
611
43
                                                                      uint32_t end) {
612
43
    VLOG_DEBUG << "_segid_statistics_map clear record segid range from:" << begin << " to:" << end;
613
134
    for (uint32_t i = begin; i <= end; ++i) {
614
91
        _segid_statistics_map.erase(i);
615
91
    }
616
43
}
617
618
42
Status BetaRowsetWriter::_rename_compacted_segment_plain(uint32_t seg_id) {
619
42
    if (seg_id == _num_segcompacted) {
620
10
        ++_num_segcompacted;
621
10
        return Status::OK();
622
10
    }
623
624
32
    auto src_seg_path =
625
32
            local_segment_path(_context.tablet_path, _context.rowset_id.to_string(), seg_id);
626
32
    auto dst_seg_path = local_segment_path(_context.tablet_path, _context.rowset_id.to_string(),
627
32
                                           _num_segcompacted);
628
32
    VLOG_DEBUG << "segcompaction skip this segment. rename " << src_seg_path << " to "
629
0
               << dst_seg_path;
630
32
    {
631
32
        std::lock_guard<std::mutex> lock(_segid_statistics_map_mutex);
632
32
        DCHECK_EQ(_segid_statistics_map.find(seg_id) == _segid_statistics_map.end(), false);
633
32
        DCHECK_EQ(_segid_statistics_map.find(_num_segcompacted) == _segid_statistics_map.end(),
634
32
                  true);
635
32
        auto org = _segid_statistics_map[seg_id];
636
32
        _segid_statistics_map.emplace(_num_segcompacted, org);
637
32
        _clear_statistics_for_deleting_segments_unsafe(seg_id, seg_id);
638
32
    }
639
32
    int ret = rename(src_seg_path.c_str(), dst_seg_path.c_str());
640
32
    if (ret) {
641
0
        return Status::Error<ROWSET_RENAME_FILE_FAILED>(
642
0
                "failed to rename {} to {}. ret:{}, errno:{}", src_seg_path, dst_seg_path, ret,
643
0
                errno);
644
0
    }
645
646
32
    RETURN_IF_ERROR(_remove_segment_footer_cache(_num_segcompacted, dst_seg_path));
647
    // rename remaining inverted index files
648
32
    RETURN_IF_ERROR(_rename_compacted_indices(-1, -1, seg_id));
649
650
32
    ++_num_segcompacted;
651
32
    return Status::OK();
652
32
}
653
654
Status BetaRowsetWriter::_remove_segment_footer_cache(const uint32_t seg_id,
655
43
                                                      const std::string& segment_path) {
656
43
    auto* footer_page_cache = ExecEnv::GetInstance()->get_storage_page_cache();
657
43
    if (!footer_page_cache) {
658
0
        return Status::OK();
659
0
    }
660
661
43
    auto fs = _rowset_meta->fs();
662
43
    bool exists = false;
663
43
    RETURN_IF_ERROR(fs->exists(segment_path, &exists));
664
43
    if (exists) {
665
43
        io::FileReaderSPtr file_reader;
666
43
        io::FileReaderOptions reader_options {
667
43
                .cache_type = config::enable_file_cache ? io::FileCachePolicy::FILE_BLOCK_CACHE
668
43
                                                        : io::FileCachePolicy::NO_CACHE,
669
43
                .is_doris_table = true,
670
43
                .cache_base_path = "",
671
43
                .file_size = _rowset_meta->segment_file_size(static_cast<int>(seg_id)),
672
43
                .tablet_id = _rowset_meta->tablet_id(),
673
43
        };
674
43
        RETURN_IF_ERROR(fs->open_file(segment_path, &file_reader, &reader_options));
675
43
        DCHECK(file_reader != nullptr);
676
43
        auto cache_key = segment_v2::Segment::get_segment_footer_cache_key(file_reader);
677
43
        footer_page_cache->erase(cache_key, segment_v2::PageTypePB::INDEX_PAGE);
678
43
    }
679
43
    return Status::OK();
680
43
}
681
682
43
Status BetaRowsetWriter::_rename_compacted_indices(int64_t begin, int64_t end, uint64_t seg_id) {
683
43
    int ret;
684
685
43
    auto src_seg_path = begin < 0 ? local_segment_path(_context.tablet_path,
686
32
                                                       _context.rowset_id.to_string(), seg_id)
687
43
                                  : BetaRowset::local_segment_path_segcompacted(
688
11
                                            _context.tablet_path, _context.rowset_id, begin, end);
689
43
    auto src_index_path_prefix = InvertedIndexDescriptor::get_index_file_path_prefix(src_seg_path);
690
43
    auto dst_seg_path = local_segment_path(_context.tablet_path, _context.rowset_id.to_string(),
691
43
                                           _num_segcompacted);
692
43
    auto dst_index_path_prefix = InvertedIndexDescriptor::get_index_file_path_prefix(dst_seg_path);
693
694
43
    if (_context.tablet_schema->get_inverted_index_storage_format() >=
695
43
        InvertedIndexStorageFormatPB::V2) {
696
22
        if (_context.tablet_schema->has_inverted_index() ||
697
22
            _context.tablet_schema->has_ann_index()) {
698
22
            auto src_idx_path =
699
22
                    InvertedIndexDescriptor::get_index_file_path_v2(src_index_path_prefix);
700
22
            auto dst_idx_path =
701
22
                    InvertedIndexDescriptor::get_index_file_path_v2(dst_index_path_prefix);
702
703
22
            ret = rename(src_idx_path.c_str(), dst_idx_path.c_str());
704
22
            if (ret) {
705
0
                return Status::Error<ROWSET_RENAME_FILE_FAILED>(
706
0
                        "failed to rename {} to {}. ret:{}, errno:{}", src_idx_path, dst_idx_path,
707
0
                        ret, errno);
708
0
            }
709
22
        }
710
22
    }
711
    // rename remaining inverted index files
712
150
    for (auto column : _context.tablet_schema->columns()) {
713
150
        auto index_infos = _context.tablet_schema->inverted_indexs(*column);
714
150
        for (const auto& index_info : index_infos) {
715
44
            auto index_id = index_info->index_id();
716
44
            if (_context.tablet_schema->get_inverted_index_storage_format() ==
717
44
                InvertedIndexStorageFormatPB::V1) {
718
0
                auto src_idx_path = InvertedIndexDescriptor::get_index_file_path_v1(
719
0
                        src_index_path_prefix, index_id, index_info->get_index_suffix());
720
0
                auto dst_idx_path = InvertedIndexDescriptor::get_index_file_path_v1(
721
0
                        dst_index_path_prefix, index_id, index_info->get_index_suffix());
722
0
                VLOG_DEBUG << "segcompaction skip this index. rename " << src_idx_path << " to "
723
0
                           << dst_idx_path;
724
0
                ret = rename(src_idx_path.c_str(), dst_idx_path.c_str());
725
0
                if (ret) {
726
0
                    return Status::Error<INVERTED_INDEX_RENAME_FILE_FAILED>(
727
0
                            "failed to rename {} to {}. ret:{}, errno:{}", src_idx_path,
728
0
                            dst_idx_path, ret, errno);
729
0
                }
730
0
            }
731
            // Erase the origin index file cache
732
44
            auto src_idx_cache_key = InvertedIndexDescriptor::get_index_file_cache_key(
733
44
                    src_index_path_prefix, index_id, index_info->get_index_suffix());
734
44
            auto dst_idx_cache_key = InvertedIndexDescriptor::get_index_file_cache_key(
735
44
                    dst_index_path_prefix, index_id, index_info->get_index_suffix());
736
44
            RETURN_IF_ERROR(InvertedIndexSearcherCache::instance()->erase(src_idx_cache_key));
737
44
            RETURN_IF_ERROR(InvertedIndexSearcherCache::instance()->erase(dst_idx_cache_key));
738
44
        }
739
150
    }
740
43
    return Status::OK();
741
43
}
742
743
1.20k
Status BetaRowsetWriter::_segcompaction_if_necessary() {
744
1.20k
    Status status = Status::OK();
745
    // if not doing segcompaction, just check segment number
746
1.20k
    if (!config::enable_segcompaction || !_context.enable_segcompaction ||
747
1.20k
        _context.tablet_schema->num_variant_columns() > 0) {
748
1.08k
        return _check_segment_number_limit(_num_segment);
749
1.08k
    }
750
    // leave _is_doing_segcompaction as the last condition
751
    // otherwise _segcompacting_cond will never get notified
752
121
    if (_is_doing_segcompaction.exchange(true)) {
753
0
        return status;
754
0
    }
755
121
    if (_segcompaction_status.load() != OK) {
756
0
        status = Status::Error<SEGCOMPACTION_FAILED>(
757
0
                "BetaRowsetWriter::_segcompaction_if_necessary meet invalid state, error code: {}",
758
0
                _segcompaction_status.load());
759
121
    } else {
760
121
        status = _check_segment_number_limit(_num_segcompacted);
761
121
    }
762
121
    if (status.ok() && (_num_segment - _segcompacted_point) >= config::segcompaction_batch_size) {
763
15
        SegCompactionCandidatesSharedPtr segments;
764
15
        status = _find_longest_consecutive_small_segment(segments);
765
15
        if (LIKELY(status.ok()) && (!segments->empty())) {
766
11
            LOG(INFO) << "submit segcompaction task, tablet_id:" << _context.tablet_id
767
11
                      << " rowset_id:" << _context.rowset_id << " segment num:" << _num_segment
768
11
                      << ", segcompacted_point:" << _segcompacted_point;
769
11
            status = _engine.submit_seg_compaction_task(_segcompaction_worker, segments);
770
11
            if (status.ok()) {
771
11
                return status;
772
11
            }
773
11
        }
774
15
    }
775
110
    {
776
110
        std::lock_guard lk(_is_doing_segcompaction_lock);
777
110
        _is_doing_segcompaction = false;
778
110
        _segcompacting_cond.notify_all();
779
110
    }
780
110
    return status;
781
121
}
782
783
656
Status BetaRowsetWriter::_segcompaction_rename_last_segments() {
784
656
    DCHECK_EQ(_is_doing_segcompaction, false);
785
656
    if (!config::enable_segcompaction) {
786
144
        return Status::OK();
787
144
    }
788
512
    if (_segcompaction_status.load() != OK) {
789
0
        return Status::Error<SEGCOMPACTION_FAILED>(
790
0
                "BetaRowsetWriter::_segcompaction_rename_last_segments meet invalid state, error "
791
0
                "code: {}",
792
0
                _segcompaction_status.load());
793
0
    }
794
512
    if (!is_segcompacted() || _segcompacted_point == _num_segment) {
795
        // no need if never segcompact before or all segcompacted
796
503
        return Status::OK();
797
503
    }
798
    // currently we only rename remaining segments to reduce wait time
799
    // so that transaction can be committed ASAP
800
9
    VLOG_DEBUG << "segcompaction last few segments";
801
39
    for (int32_t segid = _segcompacted_point; segid < _num_segment; segid++) {
802
30
        auto dst_segid = _num_segcompacted.load();
803
30
        RETURN_IF_ERROR(_rename_compacted_segment_plain(_segcompacted_point++));
804
30
        if (_segcompaction_worker->need_convert_delete_bitmap()) {
805
16
            _segcompaction_worker->convert_segment_delete_bitmap(
806
16
                    _context.mow_context->delete_bitmap, segid, dst_segid);
807
16
        }
808
30
    }
809
9
    return Status::OK();
810
9
}
811
812
10
Status BaseBetaRowsetWriter::add_rowset(RowsetSharedPtr rowset) {
813
10
    assert(rowset->rowset_meta()->rowset_type() == BETA_ROWSET);
814
10
    RETURN_IF_ERROR(rowset->link_files_to(_context.tablet_path, _context.rowset_id));
815
10
    _num_rows_written += rowset->num_rows();
816
10
    const auto& rowset_meta = rowset->rowset_meta();
817
10
    auto index_size = rowset_meta->index_disk_size();
818
10
    auto total_size = rowset_meta->total_disk_size();
819
10
    auto data_size = rowset_meta->data_disk_size();
820
    // corrupted index size caused by bug before 2.1.5 or 3.0.0 version
821
    // try to get real index size from disk.
822
10
    if (index_size < 0 || index_size > total_size * 2) {
823
0
        LOG(ERROR) << "invalid index size:" << index_size << " total size:" << total_size
824
0
                   << " data size:" << data_size << " tablet:" << rowset_meta->tablet_id()
825
0
                   << " rowset:" << rowset_meta->rowset_id();
826
0
        index_size = 0;
827
0
        auto st = rowset->get_inverted_index_size(&index_size);
828
0
        if (!st.ok()) {
829
0
            if (!st.is<NOT_FOUND>()) {
830
0
                LOG(ERROR) << "failed to get inverted index size. res=" << st;
831
0
                return st;
832
0
            }
833
0
        }
834
0
    }
835
10
    _total_data_size += data_size;
836
10
    _total_index_size += index_size;
837
10
    _num_segment += cast_set<int32_t>(rowset->num_segments());
838
    // append key_bounds to current rowset
839
10
    RETURN_IF_ERROR(rowset->get_segments_key_bounds(&_segments_encoded_key_bounds));
840
10
    rowset->get_num_segment_rows(&_segment_num_rows);
841
10
    _segments_key_bounds_truncated = rowset->rowset_meta()->is_segments_key_bounds_truncated();
842
843
    // TODO update zonemap
844
10
    if (rowset->rowset_meta()->has_delete_predicate()) {
845
0
        _rowset_meta->set_delete_predicate(rowset->rowset_meta()->delete_predicate());
846
0
    }
847
    // Update the tablet schema in the rowset metadata if the tablet schema contains a variant.
848
    // During the build process, _context.tablet_schema will be used as the rowset schema.
849
    // This situation may arise in the event of a linked schema change. If this schema is not set,
850
    // the subcolumns of the variant will be lost.
851
10
    if (_context.tablet_schema->num_variant_columns() > 0 && rowset->tablet_schema() != nullptr) {
852
0
        _context.tablet_schema = rowset->tablet_schema();
853
0
    }
854
10
    return Status::OK();
855
10
}
856
857
0
Status BaseBetaRowsetWriter::add_rowset_for_linked_schema_change(RowsetSharedPtr rowset) {
858
    // TODO use schema_mapping to transfer zonemap
859
0
    return add_rowset(rowset);
860
0
}
861
862
1.15k
Status BaseBetaRowsetWriter::flush() {
863
1.15k
    return _segment_creator.flush();
864
1.15k
}
865
866
12
Status BaseBetaRowsetWriter::flush_memtable(Block* block, int32_t segment_id, int64_t* flush_size) {
867
12
    if (block->rows() == 0) {
868
0
        return Status::OK();
869
0
    }
870
871
12
    {
872
12
        SCOPED_RAW_TIMER(&_segment_writer_ns);
873
12
        RETURN_IF_ERROR(_segment_creator.flush_single_block(block, segment_id, flush_size));
874
12
    }
875
12
    return Status::OK();
876
12
}
877
878
4
Status BaseBetaRowsetWriter::flush_single_block(const Block* block) {
879
4
    return _segment_creator.flush_single_block(block);
880
4
}
881
882
1.01k
Status BetaRowsetWriter::_wait_flying_segcompaction() {
883
1.01k
    std::unique_lock<std::mutex> l(_is_doing_segcompaction_lock);
884
1.01k
    uint64_t begin_wait = GetCurrentTimeMicros();
885
1.01k
    while (_is_doing_segcompaction) {
886
        // change sync wait to async?
887
0
        _segcompacting_cond.wait(l);
888
0
    }
889
1.01k
    uint64_t elapsed = GetCurrentTimeMicros() - begin_wait;
890
1.01k
    if (elapsed >= MICROS_PER_SEC) {
891
0
        LOG(INFO) << "wait flying segcompaction finish time:" << elapsed << "us";
892
0
    }
893
1.01k
    if (_segcompaction_status.load() != OK) {
894
0
        return Status::Error<SEGCOMPACTION_FAILED>(
895
0
                "BetaRowsetWriter meet invalid state, error code: {}",
896
0
                _segcompaction_status.load());
897
0
    }
898
1.01k
    return Status::OK();
899
1.01k
}
900
901
24
RowsetSharedPtr BaseBetaRowsetWriter::manual_build(const RowsetMetaSharedPtr& spec_rowset_meta) {
902
24
    if (_rowset_meta->newest_write_timestamp() == -1) {
903
0
        _rowset_meta->set_newest_write_timestamp(UnixSeconds());
904
0
    }
905
906
24
    build_rowset_meta_with_spec_field(*_rowset_meta, *spec_rowset_meta);
907
24
    RowsetSharedPtr rowset;
908
24
    auto status = RowsetFactory::create_rowset(_context.tablet_schema, _context.tablet_path,
909
24
                                               _rowset_meta, &rowset);
910
24
    if (!status.ok()) {
911
0
        LOG(WARNING) << "rowset init failed when build new rowset, res=" << status;
912
0
        return nullptr;
913
0
    }
914
24
    _already_built = true;
915
24
    return rowset;
916
24
}
917
918
656
Status BaseBetaRowsetWriter::_close_file_writers() {
919
    // Flush and close segment files
920
656
    RETURN_NOT_OK_STATUS_WITH_WARN(_segment_creator.close(),
921
656
                                   "failed to close segment creator when build new rowset");
922
656
    return Status::OK();
923
656
}
924
925
656
Status BetaRowsetWriter::_close_file_writers() {
926
656
    RETURN_IF_ERROR(BaseBetaRowsetWriter::_close_file_writers());
927
    // if _segment_start_id is not zero, that means it's a transient rowset writer for
928
    // MoW partial update, don't need to do segment compaction.
929
656
    if (_segment_start_id == 0) {
930
656
        if (_segcompaction_worker->cancel()) {
931
656
            std::lock_guard lk(_is_doing_segcompaction_lock);
932
656
            _is_doing_segcompaction = false;
933
656
            _segcompacting_cond.notify_all();
934
656
        } else {
935
0
            RETURN_NOT_OK_STATUS_WITH_WARN(_wait_flying_segcompaction(),
936
0
                                           "segcompaction failed when build new rowset");
937
0
        }
938
656
        RETURN_NOT_OK_STATUS_WITH_WARN(_segcompaction_rename_last_segments(),
939
656
                                       "rename last segments failed when build new rowset");
940
        // segcompaction worker would do file wrier's close function in compact_segments
941
656
        if (auto& seg_comp_file_writer = _segcompaction_worker->get_file_writer();
942
656
            nullptr != seg_comp_file_writer &&
943
656
            seg_comp_file_writer->state() != io::FileWriter::State::CLOSED) {
944
0
            RETURN_NOT_OK_STATUS_WITH_WARN(seg_comp_file_writer->close(),
945
0
                                           "close segment compaction worker failed");
946
0
        }
947
        // process delete bitmap for mow table
948
656
        if (is_segcompacted() && _segcompaction_worker->need_convert_delete_bitmap()) {
949
4
            auto converted_delete_bitmap = _segcompaction_worker->get_converted_delete_bitmap();
950
            // which means the segment compaction is triggerd
951
4
            if (converted_delete_bitmap != nullptr) {
952
4
                RowsetIdUnorderedSet rowsetids;
953
4
                rowsetids.insert(rowset_id());
954
4
                context().tablet->add_sentinel_mark_to_delete_bitmap(converted_delete_bitmap.get(),
955
4
                                                                     rowsetids);
956
4
                context().mow_context->delete_bitmap->remove({rowset_id(), 0, 0},
957
4
                                                             {rowset_id(), UINT32_MAX, INT64_MAX});
958
4
                context().mow_context->delete_bitmap->merge(*converted_delete_bitmap);
959
4
            }
960
4
        }
961
656
    }
962
656
    return Status::OK();
963
656
}
964
965
984
Status BetaRowsetWriter::build(RowsetSharedPtr& rowset) {
966
984
    if (_calc_delete_bitmap_token != nullptr) {
967
9
        RETURN_IF_ERROR(_calc_delete_bitmap_token->wait());
968
9
    }
969
984
    RETURN_IF_ERROR(_close_file_writers());
970
984
    const auto total_segment_num = _num_segment - _segcompacted_point + 1 + _num_segcompacted;
971
984
    RETURN_NOT_OK_STATUS_WITH_WARN(_check_segment_number_limit(total_segment_num),
972
984
                                   "too many segments when build new rowset");
973
984
    RETURN_IF_ERROR(_build_rowset_meta(_rowset_meta.get(), true));
974
984
    if (_is_pending) {
975
30
        _rowset_meta->set_rowset_state(COMMITTED);
976
954
    } else {
977
954
        _rowset_meta->set_rowset_state(VISIBLE);
978
954
    }
979
980
984
    if (_rowset_meta->newest_write_timestamp() == -1) {
981
634
        _rowset_meta->set_newest_write_timestamp(UnixSeconds());
982
634
    }
983
984
984
    _rowset_meta->set_tablet_schema(_context.tablet_schema);
985
986
    // If segment compaction occurs, the idx file info will become inaccurate.
987
984
    if ((_context.tablet_schema->has_inverted_index() || _context.tablet_schema->has_ann_index()) &&
988
984
        _num_segcompacted == 0) {
989
106
        if (auto idx_files_info = _idx_files.inverted_index_file_info(_segment_start_id);
990
106
            !idx_files_info.has_value()) [[unlikely]] {
991
0
            LOG(ERROR) << "expected inverted index files info, but none presents: "
992
0
                       << idx_files_info.error();
993
106
        } else {
994
106
            _rowset_meta->add_inverted_index_files_info(idx_files_info.value());
995
106
        }
996
106
    }
997
998
984
    RETURN_NOT_OK_STATUS_WITH_WARN(
999
984
            RowsetFactory::create_rowset(_context.tablet_schema, _context.tablet_path, _rowset_meta,
1000
984
                                         &rowset),
1001
984
            "rowset init failed when build new rowset");
1002
984
    _already_built = true;
1003
984
    return Status::OK();
1004
984
}
1005
1006
0
int64_t BaseBetaRowsetWriter::_num_seg() const {
1007
0
    return _num_segment;
1008
0
}
1009
1010
1.04k
int64_t BetaRowsetWriter::_num_seg() const {
1011
1.04k
    return is_segcompacted() ? _num_segcompacted : _num_segment;
1012
1.04k
}
1013
1014
1.04k
Status BaseBetaRowsetWriter::_build_rowset_meta(RowsetMeta* rowset_meta, bool check_segment_num) {
1015
1.04k
    int64_t num_rows_written = 0;
1016
1.04k
    int64_t total_data_size = 0;
1017
1.04k
    int64_t total_index_size = 0;
1018
1.04k
    std::vector<KeyBoundsPB> segments_encoded_key_bounds;
1019
1.04k
    std::vector<uint32_t> segment_rows;
1020
1.04k
    std::optional<bool> segments_key_bounds_truncated;
1021
1.04k
    {
1022
1.04k
        std::lock_guard<std::mutex> lock(_segid_statistics_map_mutex);
1023
1.50k
        for (const auto& itr : _segid_statistics_map) {
1024
1.50k
            num_rows_written += itr.second.row_num;
1025
1.50k
            total_data_size += itr.second.data_size;
1026
1.50k
            total_index_size += itr.second.index_size;
1027
1.50k
            segments_encoded_key_bounds.push_back(itr.second.key_bounds);
1028
            // segcompaction don't modify _segment_num_rows, so we need to get segment rows from _segid_statistics_map for load
1029
1.50k
            segment_rows.push_back(cast_set<uint32_t>(itr.second.row_num));
1030
1.50k
        }
1031
1.04k
        segments_key_bounds_truncated = _segments_key_bounds_truncated;
1032
1.04k
    }
1033
1.04k
    if (segment_rows.empty()) {
1034
        // vertical compaction and linked schema change will not record segment statistics,
1035
        // it will record segment rows in _segment_num_rows
1036
428
        RETURN_IF_ERROR(get_segment_num_rows(&segment_rows));
1037
428
    }
1038
1039
1.18k
    for (auto& key_bound : _segments_encoded_key_bounds) {
1040
1.18k
        segments_encoded_key_bounds.push_back(key_bound);
1041
1.18k
    }
1042
1.04k
    if (segments_key_bounds_truncated.has_value()) {
1043
406
        rowset_meta->set_segments_key_bounds_truncated(segments_key_bounds_truncated.value());
1044
406
    }
1045
1.04k
    rowset_meta->set_num_segment_rows(segment_rows);
1046
    // segment key bounds are empty in old version(before version 1.2.x). So we should not modify
1047
    // the overlap property when key bounds are empty.
1048
    // for mow table with cluster keys, the overlap is used for cluster keys,
1049
    // the key_bounds is primary keys
1050
1.04k
    if (!segments_encoded_key_bounds.empty() &&
1051
1.04k
        !is_segment_overlapping(segments_encoded_key_bounds) &&
1052
1.04k
        _context.tablet_schema->cluster_key_uids().empty()) {
1053
442
        rowset_meta->set_segments_overlap(NONOVERLAPPING);
1054
442
    }
1055
1056
1.04k
    auto segment_num = _num_seg();
1057
1.04k
    if (check_segment_num && config::check_segment_when_build_rowset_meta) {
1058
0
        auto segments_encoded_key_bounds_size = segments_encoded_key_bounds.size();
1059
0
        if (segments_encoded_key_bounds_size != segment_num) {
1060
0
            return Status::InternalError(
1061
0
                    "segments_encoded_key_bounds_size should  equal to _num_seg, "
1062
0
                    "segments_encoded_key_bounds_size "
1063
0
                    "is: {}, _num_seg is: {}",
1064
0
                    segments_encoded_key_bounds_size, segment_num);
1065
0
        }
1066
0
        if (segment_rows.size() != segment_num) {
1067
0
            return Status::InternalError(
1068
0
                    "segment_rows size should equal to _num_seg, segment_rows size is: {}, "
1069
0
                    "_num_seg is {}, tablet={}, rowset={}, txn={}",
1070
0
                    segment_rows.size(), segment_num, _context.tablet_id,
1071
0
                    _context.rowset_id.to_string(), _context.txn_id);
1072
0
        }
1073
0
    }
1074
1075
1.04k
    rowset_meta->set_num_segments(segment_num);
1076
1.04k
    rowset_meta->set_num_rows(num_rows_written + _num_rows_written);
1077
1.04k
    rowset_meta->set_total_disk_size(total_data_size + _total_data_size + total_index_size +
1078
1.04k
                                     _total_index_size);
1079
1.04k
    rowset_meta->set_data_disk_size(total_data_size + _total_data_size);
1080
1.04k
    rowset_meta->set_index_disk_size(total_index_size + _total_index_size);
1081
1.04k
    bool aggregate_key_bounds = config::enable_aggregate_non_mow_key_bounds &&
1082
1.04k
                                !_context.enable_unique_key_merge_on_write;
1083
1.04k
    rowset_meta->set_segments_key_bounds(segments_encoded_key_bounds, aggregate_key_bounds);
1084
    // TODO write zonemap to meta
1085
1.04k
    rowset_meta->set_empty((num_rows_written + _num_rows_written) == 0);
1086
1.04k
    rowset_meta->set_creation_time(time(nullptr));
1087
1.04k
    return Status::OK();
1088
1.04k
}
1089
1090
63
Status BaseBetaRowsetWriter::_build_tmp(RowsetSharedPtr& rowset_ptr) {
1091
63
    Status status;
1092
63
    std::shared_ptr<RowsetMeta> tmp_rs_meta = std::make_shared<RowsetMeta>();
1093
63
    tmp_rs_meta->init(_rowset_meta.get());
1094
1095
63
    status = _build_rowset_meta(tmp_rs_meta.get());
1096
63
    if (!status.ok()) {
1097
0
        LOG(WARNING) << "failed to build rowset meta, res=" << status;
1098
0
        return status;
1099
0
    }
1100
1101
63
    status = RowsetFactory::create_rowset(_context.tablet_schema, _context.tablet_path, tmp_rs_meta,
1102
63
                                          &rowset_ptr);
1103
63
    DBUG_EXECUTE_IF("BaseBetaRowsetWriter::_build_tmp.create_rowset_failed",
1104
63
                    { status = Status::InternalError("create rowset failed"); });
1105
63
    if (!status.ok()) {
1106
0
        LOG(WARNING) << "rowset init failed when build new rowset, res=" << status;
1107
0
        return status;
1108
0
    }
1109
63
    return Status::OK();
1110
63
}
1111
1112
Status BaseBetaRowsetWriter::_create_file_writer(const std::string& path,
1113
                                                 io::FileWriterPtr& file_writer,
1114
2.68k
                                                 bool is_index_file) {
1115
2.68k
    io::FileWriterOptions opts = _context.get_file_writer_options(is_index_file);
1116
2.68k
    Status st = _context.fs()->create_file(path, &file_writer, &opts);
1117
2.68k
    if (!st.ok()) {
1118
0
        LOG(WARNING) << "failed to create writable file. path=" << path << ", err: " << st;
1119
0
        return st;
1120
0
    }
1121
1122
2.68k
    DCHECK(file_writer != nullptr);
1123
2.68k
    return Status::OK();
1124
2.68k
}
1125
1126
Status BaseBetaRowsetWriter::create_file_writer(uint32_t segment_id, io::FileWriterPtr& file_writer,
1127
2.66k
                                                FileType file_type) {
1128
2.66k
    auto segment_path = _context.segment_path(segment_id);
1129
2.66k
    if (file_type == FileType::INVERTED_INDEX_FILE) {
1130
253
        std::string prefix =
1131
253
                std::string {InvertedIndexDescriptor::get_index_file_path_prefix(segment_path)};
1132
253
        std::string index_path = InvertedIndexDescriptor::get_index_file_path_v2(prefix);
1133
253
        return _create_file_writer(index_path, file_writer, true /* is_index_file */);
1134
2.40k
    } else if (file_type == FileType::SEGMENT_FILE) {
1135
2.40k
        return _create_file_writer(segment_path, file_writer, false /* is_index_file */);
1136
2.40k
    }
1137
0
    return Status::Error<ErrorCode::INTERNAL_ERROR>(
1138
0
            fmt::format("failed to create file = {}, file type = {}", segment_path, file_type));
1139
2.66k
}
1140
1141
Status BaseBetaRowsetWriter::create_index_file_writer(uint32_t segment_id,
1142
226
                                                      IndexFileWriterPtr* index_file_writer) {
1143
226
    RETURN_IF_ERROR(RowsetWriter::create_index_file_writer(segment_id, index_file_writer));
1144
    // used for inverted index format v1
1145
226
    (*index_file_writer)
1146
226
            ->set_file_writer_opts(_context.get_file_writer_options(true /* is_index_file */));
1147
226
    return Status::OK();
1148
226
}
1149
1150
Status BetaRowsetWriter::create_segment_writer_for_segcompaction(
1151
12
        std::unique_ptr<segment_v2::SegmentWriter>* writer, int64_t begin, int64_t end) {
1152
12
    DCHECK(begin >= 0 && end >= 0);
1153
12
    std::string path = BetaRowset::local_segment_path_segcompacted(_context.tablet_path,
1154
12
                                                                   _context.rowset_id, begin, end);
1155
12
    io::FileWriterPtr file_writer;
1156
12
    RETURN_IF_ERROR(_create_file_writer(path, file_writer, false /* is_index_file */));
1157
1158
12
    IndexFileWriterPtr index_file_writer;
1159
12
    if (_context.tablet_schema->has_inverted_index() || _context.tablet_schema->has_ann_index()) {
1160
8
        io::FileWriterPtr idx_file_writer;
1161
8
        std::string prefix(InvertedIndexDescriptor::get_index_file_path_prefix(path));
1162
8
        if (_context.tablet_schema->get_inverted_index_storage_format() !=
1163
8
            InvertedIndexStorageFormatPB::V1) {
1164
8
            std::string index_path = InvertedIndexDescriptor::get_index_file_path_v2(prefix);
1165
8
            RETURN_IF_ERROR(
1166
8
                    _create_file_writer(index_path, idx_file_writer, true /* is_index_file */));
1167
8
        }
1168
8
        index_file_writer = std::make_unique<IndexFileWriter>(
1169
8
                _context.fs(), prefix, _context.rowset_id.to_string(), _num_segcompacted,
1170
8
                _context.tablet_schema->get_inverted_index_storage_format(),
1171
8
                std::move(idx_file_writer), true /* can_use_ram_dir */, _context.tablet_id);
1172
8
    }
1173
1174
12
    segment_v2::SegmentWriterOptions writer_options;
1175
12
    writer_options.enable_unique_key_merge_on_write = _context.enable_unique_key_merge_on_write;
1176
12
    writer_options.rowset_ctx = &_context;
1177
12
    writer_options.write_type = _context.write_type;
1178
12
    writer_options.write_type = DataWriteType::TYPE_COMPACTION;
1179
12
    writer_options.max_rows_per_segment = _context.max_rows_per_segment;
1180
12
    writer_options.mow_ctx = _context.mow_context;
1181
1182
12
    *writer = std::make_unique<segment_v2::SegmentWriter>(
1183
12
            file_writer.get(), _num_segcompacted, _context.tablet_schema, _context.tablet,
1184
12
            _context.data_dir, writer_options, index_file_writer.get());
1185
12
    if (auto& seg_writer = _segcompaction_worker->get_file_writer();
1186
12
        seg_writer != nullptr && seg_writer->state() != io::FileWriter::State::CLOSED) {
1187
0
        RETURN_IF_ERROR(_segcompaction_worker->get_file_writer()->close());
1188
0
    }
1189
12
    _segcompaction_worker->get_file_writer().reset(file_writer.release());
1190
12
    if (auto& idx_file_writer = _segcompaction_worker->get_inverted_index_file_writer();
1191
12
        idx_file_writer != nullptr) {
1192
0
        RETURN_IF_ERROR(idx_file_writer->begin_close());
1193
0
        RETURN_IF_ERROR(idx_file_writer->finish_close());
1194
0
    }
1195
12
    _segcompaction_worker->get_inverted_index_file_writer().reset(index_file_writer.release());
1196
12
    return Status::OK();
1197
12
}
1198
1199
0
Status BaseBetaRowsetWriter::_check_segment_number_limit(size_t segnum) {
1200
0
    DBUG_EXECUTE_IF("BetaRowsetWriter._check_segment_number_limit_too_many_segments",
1201
0
                    { segnum = dp->param("segnum", 1024); });
1202
0
    if (UNLIKELY(segnum > config::max_segment_num_per_rowset)) {
1203
0
        return Status::Error<TOO_MANY_SEGMENTS>(
1204
0
                "too many segments in rowset. tablet_id:{}, rowset_id:{}, max:{}, "
1205
0
                "_num_segment:{}, rowset_num_rows:{}. Please check if the bucket number is too "
1206
0
                "small or if the data is skewed.",
1207
0
                _context.tablet_id, _context.rowset_id.to_string(),
1208
0
                config::max_segment_num_per_rowset, _num_segment, get_rowset_num_rows());
1209
0
    }
1210
0
    return Status::OK();
1211
0
}
1212
1213
2.19k
Status BetaRowsetWriter::_check_segment_number_limit(size_t segnum) {
1214
2.19k
    DBUG_EXECUTE_IF("BetaRowsetWriter._check_segment_number_limit_too_many_segments",
1215
2.19k
                    { segnum = dp->param("segnum", 1024); });
1216
2.19k
    if (UNLIKELY(segnum > config::max_segment_num_per_rowset)) {
1217
0
        return Status::Error<TOO_MANY_SEGMENTS>(
1218
0
                "too many segments in rowset. tablet_id:{}, rowset_id:{}, max:{}, _num_segment:{}, "
1219
0
                "_segcompacted_point:{}, _num_segcompacted:{}, rowset_num_rows:{}. Please check if "
1220
0
                "the bucket number is too small or if the data is skewed.",
1221
0
                _context.tablet_id, _context.rowset_id.to_string(),
1222
0
                config::max_segment_num_per_rowset, _num_segment, _segcompacted_point,
1223
0
                _num_segcompacted, get_rowset_num_rows());
1224
0
    }
1225
2.19k
    return Status::OK();
1226
2.19k
}
1227
1228
1.20k
Status BaseBetaRowsetWriter::add_segment(uint32_t segment_id, const SegmentStatistics& segstat) {
1229
1.20k
    uint32_t segid_offset = segment_id - _segment_start_id;
1230
1.20k
    SegmentStatistics stored_segstat = segstat;
1231
1.20k
    const bool key_bounds_truncated = truncate_key_bounds(&stored_segstat.key_bounds);
1232
1.20k
    {
1233
1.20k
        std::lock_guard<std::mutex> lock(_segid_statistics_map_mutex);
1234
1.20k
        CHECK_EQ(_segid_statistics_map.find(segment_id) == _segid_statistics_map.end(), true);
1235
1.20k
        _segid_statistics_map.emplace(segment_id, std::move(stored_segstat));
1236
1.20k
        if (segment_id >= _segment_num_rows.size()) {
1237
1.20k
            _segment_num_rows.resize(segment_id + 1);
1238
1.20k
        }
1239
1.20k
        _segment_num_rows[segid_offset] = cast_set<uint32_t>(segstat.row_num);
1240
1.20k
        if (key_bounds_truncated) {
1241
702
            _segments_key_bounds_truncated = true;
1242
702
        }
1243
1.20k
    }
1244
1.20k
    VLOG_DEBUG << "_segid_statistics_map add new record. segment_id:" << segment_id
1245
0
               << " row_num:" << segstat.row_num << " data_size:" << segstat.data_size
1246
0
               << " index_size:" << segstat.index_size;
1247
1248
1.20k
    {
1249
1.20k
        std::lock_guard<std::mutex> lock(_segment_set_mutex);
1250
1.20k
        _segment_set.add(segid_offset);
1251
2.41k
        while (_segment_set.contains(_num_segment)) {
1252
1.20k
            _num_segment++;
1253
1.20k
        }
1254
1.20k
    }
1255
1256
1.20k
    if (_context.mow_context != nullptr) {
1257
63
        RETURN_IF_ERROR(_generate_delete_bitmap(segment_id));
1258
63
    }
1259
1.20k
    return Status::OK();
1260
1.20k
}
1261
1262
1.20k
Status BetaRowsetWriter::add_segment(uint32_t segment_id, const SegmentStatistics& segstat) {
1263
1.20k
    RETURN_IF_ERROR(BaseBetaRowsetWriter::add_segment(segment_id, segstat));
1264
1.20k
    return _segcompaction_if_necessary();
1265
1.20k
}
1266
1267
Status BetaRowsetWriter::flush_segment_writer_for_segcompaction(
1268
        std::unique_ptr<segment_v2::SegmentWriter>* writer, uint64_t index_size,
1269
11
        KeyBoundsPB& key_bounds) {
1270
11
    uint32_t segid = (*writer)->get_segment_id();
1271
11
    uint32_t row_num = (*writer)->row_count();
1272
11
    uint64_t segment_size;
1273
1274
11
    auto s = (*writer)->finalize_footer(&segment_size);
1275
11
    if (!s.ok()) {
1276
0
        return Status::Error<WRITER_DATA_WRITE_ERROR>("failed to finalize segment: {}",
1277
0
                                                      s.to_string());
1278
0
    }
1279
11
    int64_t inverted_index_file_size = 0;
1280
11
    RETURN_IF_ERROR((*writer)->close_inverted_index(&inverted_index_file_size));
1281
1282
11
    SegmentStatistics segstat;
1283
11
    segstat.row_num = row_num;
1284
11
    segstat.data_size = segment_size;
1285
11
    segstat.index_size = inverted_index_file_size;
1286
11
    segstat.key_bounds = key_bounds;
1287
11
    const bool key_bounds_truncated = truncate_key_bounds(&segstat.key_bounds);
1288
11
    {
1289
11
        std::lock_guard<std::mutex> lock(_segid_statistics_map_mutex);
1290
11
        CHECK_EQ(_segid_statistics_map.find(segid) == _segid_statistics_map.end(), true);
1291
11
        _segid_statistics_map.emplace(segid, std::move(segstat));
1292
11
        if (key_bounds_truncated) {
1293
2
            _segments_key_bounds_truncated = true;
1294
2
        }
1295
11
    }
1296
11
    VLOG_DEBUG << "_segid_statistics_map add new record. segid:" << segid << " row_num:" << row_num
1297
0
               << " data_size:" << PrettyPrinter::print_bytes(segment_size)
1298
0
               << " index_size:" << PrettyPrinter::print_bytes(inverted_index_file_size);
1299
1300
11
    writer->reset();
1301
1302
11
    return Status::OK();
1303
11
}
1304
1305
} // namespace doris