Coverage Report

Created: 2026-05-26 14:03

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/storage/tablet/base_tablet.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
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//
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/tablet/base_tablet.h"
19
20
#include <bthread/mutex.h>
21
#include <crc32c/crc32c.h>
22
#include <fmt/format.h>
23
#include <rapidjson/prettywriter.h>
24
25
#include <algorithm>
26
#include <cstdint>
27
#include <iterator>
28
#include <random>
29
#include <shared_mutex>
30
31
#include "cloud/cloud_tablet.h"
32
#include "cloud/config.h"
33
#include "common/cast_set.h"
34
#include "common/logging.h"
35
#include "common/metrics/doris_metrics.h"
36
#include "common/status.h"
37
#include "core/assert_cast.h"
38
#include "core/data_type/data_type_factory.hpp"
39
#include "exec/sink/autoinc_buffer.h" // GlobalAutoIncBuffers
40
#include "load/memtable/memtable.h"
41
#include "service/point_query_executor.h"
42
#include "storage/binlog.h"
43
#include "storage/compaction/cumulative_compaction_time_series_policy.h"
44
#include "storage/delete/calc_delete_bitmap_executor.h"
45
#include "storage/delete/delete_bitmap_calculator.h"
46
#include "storage/index/primary_key_index.h"
47
#include "storage/iterators.h"
48
#include "storage/partial_update_info.h"
49
#include "storage/rowid_conversion.h"
50
#include "storage/rowset/beta_rowset.h"
51
#include "storage/rowset/group_rowset_writer.h"
52
#include "storage/rowset/rowset.h"
53
#include "storage/rowset/rowset_factory.h"
54
#include "storage/rowset/rowset_fwd.h"
55
#include "storage/rowset/rowset_reader.h"
56
#include "storage/rowset/rowset_writer_context.h"
57
#include "storage/segment/column_reader.h"
58
#include "storage/tablet/tablet_fwd.h"
59
#include "storage/txn/txn_manager.h"
60
#include "util/bvar_helper.h"
61
#include "util/debug_points.h"
62
#include "util/jsonb/serialize.h"
63
64
namespace doris {
65
66
using namespace ErrorCode;
67
68
namespace {
69
70
bvar::LatencyRecorder g_tablet_commit_phase_update_delete_bitmap_latency(
71
        "doris_pk", "commit_phase_update_delete_bitmap");
72
bvar::LatencyRecorder g_tablet_lookup_rowkey_latency("doris_pk", "tablet_lookup_rowkey");
73
bvar::Adder<uint64_t> g_tablet_pk_not_found("doris_pk", "lookup_not_found");
74
bvar::PerSecond<bvar::Adder<uint64_t>> g_tablet_pk_not_found_per_second(
75
        "doris_pk", "lookup_not_found_per_second", &g_tablet_pk_not_found, 60);
76
bvar::LatencyRecorder g_tablet_update_delete_bitmap_latency("doris_pk", "update_delete_bitmap");
77
78
static bvar::Adder<size_t> g_total_tablet_num("doris_total_tablet_num");
79
80
Status _get_segment_column_iterator(const BetaRowsetSharedPtr& rowset, uint32_t segid,
81
                                    const TabletColumn& target_column,
82
                                    SegmentCacheHandle* segment_cache_handle,
83
                                    std::unique_ptr<segment_v2::ColumnIterator>* column_iterator,
84
0
                                    OlapReaderStatistics* stats) {
85
0
    RETURN_IF_ERROR(SegmentLoader::instance()->load_segments(rowset, segment_cache_handle, true));
86
    // find segment
87
0
    auto it = std::find_if(
88
0
            segment_cache_handle->get_segments().begin(),
89
0
            segment_cache_handle->get_segments().end(),
90
0
            [&segid](const segment_v2::SegmentSharedPtr& seg) { return seg->id() == segid; });
91
0
    if (it == segment_cache_handle->get_segments().end()) {
92
0
        return Status::NotFound(fmt::format("rowset {} 's segemnt not found, seg_id {}",
93
0
                                            rowset->rowset_id().to_string(), segid));
94
0
    }
95
0
    segment_v2::SegmentSharedPtr segment = *it;
96
0
    StorageReadOptions opts;
97
0
    opts.stats = stats;
98
0
    RETURN_IF_ERROR(segment->new_column_iterator(target_column, column_iterator, &opts));
99
0
    segment_v2::ColumnIteratorOptions opt {
100
0
            .use_page_cache = !config::disable_storage_page_cache,
101
0
            .file_reader = segment->file_reader().get(),
102
0
            .stats = stats,
103
0
            .io_ctx = io::IOContext {.reader_type = ReaderType::READER_QUERY,
104
0
                                     .file_cache_stats = &stats->file_cache_stats},
105
0
    };
106
0
    RETURN_IF_ERROR((*column_iterator)->init(opt));
107
0
    return Status::OK();
108
0
}
109
110
} // namespace
111
112
extern MetricPrototype METRIC_query_scan_bytes;
113
extern MetricPrototype METRIC_query_scan_rows;
114
extern MetricPrototype METRIC_query_scan_count;
115
DEFINE_COUNTER_METRIC_PROTOTYPE_2ARG(flush_bytes, MetricUnit::BYTES);
116
DEFINE_COUNTER_METRIC_PROTOTYPE_2ARG(flush_finish_count, MetricUnit::OPERATIONS);
117
118
811
BaseTablet::BaseTablet(TabletMetaSharedPtr tablet_meta) : _tablet_meta(std::move(tablet_meta)) {
119
811
    _metric_entity = DorisMetrics::instance()->metric_registry()->register_entity(
120
811
            fmt::format("Tablet.{}", tablet_id()), {{"tablet_id", std::to_string(tablet_id())}},
121
811
            MetricEntityType::kTablet);
122
811
    INT_COUNTER_METRIC_REGISTER(_metric_entity, query_scan_bytes);
123
811
    INT_COUNTER_METRIC_REGISTER(_metric_entity, query_scan_rows);
124
811
    INT_COUNTER_METRIC_REGISTER(_metric_entity, query_scan_count);
125
811
    INT_COUNTER_METRIC_REGISTER(_metric_entity, flush_bytes);
126
811
    INT_COUNTER_METRIC_REGISTER(_metric_entity, flush_finish_count);
127
128
    // construct _timestamped_versioned_tracker from rs and stale rs meta
129
811
    _timestamped_version_tracker.construct_versioned_tracker(_tablet_meta->all_rs_metas(),
130
811
                                                             _tablet_meta->all_stale_rs_metas());
131
811
    _row_binlog_version_tracker.construct_versioned_tracker(
132
811
            _tablet_meta->all_row_binlog_rs_metas());
133
134
    // if !_tablet_meta->all_rs_metas()[0]->tablet_schema(),
135
    // that mean the tablet_meta is still no upgrade to doris 1.2 versions.
136
    // Before doris 1.2 version, rowset metas don't have tablet schema.
137
    // And when upgrade to doris 1.2 version,
138
    // all rowset metas will be set the tablet schmea from tablet meta.
139
811
    if (_tablet_meta->all_rs_metas().empty() ||
140
811
        !_tablet_meta->all_rs_metas().begin()->second->tablet_schema()) {
141
741
        _max_version_schema = _tablet_meta->tablet_schema();
142
741
    } else {
143
70
        std::vector<RowsetMetaSharedPtr> rowset_metas(_tablet_meta->all_rs_metas().size());
144
70
        std::transform(_tablet_meta->all_rs_metas().begin(), _tablet_meta->all_rs_metas().end(),
145
3.17k
                       rowset_metas.begin(), [](const auto& it) { return it.second; });
146
70
        _max_version_schema = tablet_schema_with_merged_max_schema_version(rowset_metas);
147
70
    }
148
811
    DCHECK(_max_version_schema);
149
811
    g_total_tablet_num << 1;
150
811
}
151
152
811
BaseTablet::~BaseTablet() {
153
811
    DorisMetrics::instance()->metric_registry()->deregister_entity(_metric_entity);
154
811
    g_total_tablet_num << -1;
155
811
}
156
157
TabletSchemaSPtr BaseTablet::tablet_schema_with_merged_max_schema_version(
158
112
        const std::vector<RowsetMetaSharedPtr>& rowset_metas) {
159
112
    RowsetMetaSharedPtr max_schema_version_rs = *std::max_element(
160
3.19k
            rowset_metas.begin(), rowset_metas.end(), [](const auto& a, const auto& b) -> bool {
161
3.19k
                return !a->tablet_schema()
162
3.19k
                               ? true
163
3.19k
                               : (!b->tablet_schema()
164
3.19k
                                          ? false
165
3.19k
                                          : a->tablet_schema()->schema_version() <
166
3.19k
                                                    b->tablet_schema()->schema_version());
167
3.19k
            });
168
112
    return max_schema_version_rs->tablet_schema();
169
112
}
170
171
271
Status BaseTablet::set_tablet_state(TabletState state) {
172
271
    if (_tablet_meta->tablet_state() == TABLET_SHUTDOWN && state != TABLET_SHUTDOWN) {
173
0
        return Status::Error<META_INVALID_ARGUMENT>(
174
0
                "could not change tablet state from shutdown to {}", state);
175
0
    }
176
271
    _tablet_meta->set_tablet_state(state);
177
271
    return Status::OK();
178
271
}
179
180
0
void BaseTablet::update_max_version_schema(const TabletSchemaSPtr& tablet_schema) {
181
0
    std::lock_guard wrlock(_meta_lock);
182
    // Double Check for concurrent update
183
0
    if (!_max_version_schema ||
184
0
        tablet_schema->schema_version() > _max_version_schema->schema_version()) {
185
0
        _max_version_schema = tablet_schema;
186
0
    }
187
0
}
188
189
254
uint32_t BaseTablet::get_real_compaction_score() const {
190
254
    std::shared_lock l(_meta_lock);
191
254
    const auto& rs_metas = _tablet_meta->all_rs_metas();
192
10.7k
    return std::accumulate(rs_metas.begin(), rs_metas.end(), 0, [](uint32_t score, const auto& it) {
193
10.7k
        return score + it.second->get_compaction_score();
194
10.7k
    });
195
254
}
196
197
Status BaseTablet::capture_rs_readers_unlocked(const Versions& version_path,
198
0
                                               std::vector<RowSetSplits>* rs_splits) const {
199
0
    DCHECK(rs_splits != nullptr && rs_splits->empty());
200
0
    for (auto version : version_path) {
201
0
        auto it = _rs_version_map.find(version);
202
0
        if (it == _rs_version_map.end()) {
203
0
            VLOG_NOTICE << "fail to find Rowset in rs_version for version. tablet=" << tablet_id()
204
0
                        << ", version='" << version.first << "-" << version.second;
205
206
0
            it = _stale_rs_version_map.find(version);
207
0
            if (it == _stale_rs_version_map.end()) {
208
0
                return Status::Error<CAPTURE_ROWSET_READER_ERROR>(
209
0
                        "fail to find Rowset in stale_rs_version for version. tablet={}, "
210
0
                        "version={}-{}",
211
0
                        tablet_id(), version.first, version.second);
212
0
            }
213
0
        }
214
0
        RowsetReaderSharedPtr rs_reader;
215
0
        auto res = it->second->create_reader(&rs_reader);
216
0
        if (!res.ok()) {
217
0
            return Status::Error<CAPTURE_ROWSET_READER_ERROR>(
218
0
                    "failed to create reader for rowset:{}", it->second->rowset_id().to_string());
219
0
        }
220
0
        rs_splits->emplace_back(std::move(rs_reader));
221
0
    }
222
0
    return Status::OK();
223
0
}
224
225
// snapshot manager may call this api to check if version exists, so that
226
// the version maybe not exist
227
RowsetSharedPtr BaseTablet::get_rowset_by_version(const Version& version,
228
16
                                                  bool find_in_stale) const {
229
16
    auto iter = _rs_version_map.find(version);
230
16
    if (iter == _rs_version_map.end()) {
231
0
        if (find_in_stale) {
232
0
            return get_stale_rowset_by_version(version);
233
0
        }
234
0
        return nullptr;
235
0
    }
236
16
    return iter->second;
237
16
}
238
239
0
RowsetSharedPtr BaseTablet::get_stale_rowset_by_version(const Version& version) const {
240
0
    auto iter = _stale_rs_version_map.find(version);
241
0
    if (iter == _stale_rs_version_map.end()) {
242
0
        VLOG_NOTICE << "no rowset for version:" << version << ", tablet: " << tablet_id();
243
0
        return nullptr;
244
0
    }
245
0
    return iter->second;
246
0
}
247
248
// Already under _meta_lock
249
42
RowsetSharedPtr BaseTablet::get_rowset_with_max_version() const {
250
42
    Version max_version = _tablet_meta->max_version();
251
42
    if (max_version.first == -1) {
252
0
        return nullptr;
253
0
    }
254
255
42
    auto iter = _rs_version_map.find(max_version);
256
42
    if (iter == _rs_version_map.end()) {
257
0
        DCHECK(false) << "invalid version:" << max_version;
258
0
        return nullptr;
259
0
    }
260
42
    return iter->second;
261
42
}
262
263
0
Status BaseTablet::get_all_rs_id(int64_t max_version, RowsetIdUnorderedSet* rowset_ids) const {
264
0
    std::shared_lock rlock(_meta_lock);
265
0
    return get_all_rs_id_unlocked(max_version, rowset_ids);
266
0
}
267
268
Status BaseTablet::get_all_rs_id_unlocked(int64_t max_version,
269
10
                                          RowsetIdUnorderedSet* rowset_ids) const {
270
    //  Ensure that the obtained versions of rowsets are continuous
271
10
    Version spec_version(0, max_version);
272
10
    Versions version_path;
273
10
    auto st = _timestamped_version_tracker.capture_consistent_versions(spec_version, &version_path);
274
10
    if (!st.ok()) [[unlikely]] {
275
0
        return st;
276
0
    }
277
278
12
    for (auto& ver : version_path) {
279
12
        if (ver.second == 1) {
280
            // [0-1] rowset is empty for each tablet, skip it
281
10
            continue;
282
10
        }
283
2
        auto it = _rs_version_map.find(ver);
284
2
        if (it == _rs_version_map.end()) {
285
0
            return Status::Error<CAPTURE_ROWSET_ERROR, false>(
286
0
                    "fail to find Rowset for version. tablet={}, version={}", tablet_id(),
287
0
                    ver.to_string());
288
0
        }
289
2
        rowset_ids->emplace(it->second->rowset_id());
290
2
    }
291
10
    return Status::OK();
292
10
}
293
294
0
Versions BaseTablet::get_missed_versions(int64_t spec_version) const {
295
0
    DCHECK(spec_version > 0) << "invalid spec_version: " << spec_version;
296
297
0
    Versions existing_versions;
298
0
    {
299
0
        std::shared_lock rdlock(_meta_lock);
300
0
        for (const auto& [ver, _] : _tablet_meta->all_rs_metas()) {
301
0
            existing_versions.emplace_back(ver);
302
0
        }
303
0
    }
304
0
    return calc_missed_versions(spec_version, std::move(existing_versions));
305
0
}
306
307
Versions BaseTablet::get_missed_versions_unlocked(int64_t spec_version,
308
3
                                                  bool capture_row_binlog) const {
309
3
    DCHECK(spec_version > 0) << "invalid spec_version: " << spec_version;
310
311
3
    Versions existing_versions;
312
3
    const auto& rs_metas = capture_row_binlog ? _tablet_meta->all_row_binlog_rs_metas()
313
3
                                              : _tablet_meta->all_rs_metas();
314
12
    for (const auto& [ver, _] : rs_metas) {
315
12
        existing_versions.emplace_back(ver);
316
12
    }
317
3
    return calc_missed_versions(spec_version, std::move(existing_versions));
318
3
}
319
320
2
void BaseTablet::_print_missed_versions(const Versions& missed_versions) const {
321
2
    std::stringstream ss;
322
2
    ss << tablet_id() << " has " << missed_versions.size() << " missed version:";
323
    // print at most 10 version
324
6
    for (int i = 0; i < 10 && i < missed_versions.size(); ++i) {
325
4
        ss << missed_versions[i] << ",";
326
4
    }
327
2
    LOG(WARNING) << ss.str();
328
2
}
329
330
2
bool BaseTablet::_reconstruct_version_tracker_if_necessary() {
331
2
    double data_orphan_vertex_ratio = _timestamped_version_tracker.get_orphan_vertex_ratio();
332
2
    double row_binlog_orphan_vertex_ratio = _row_binlog_version_tracker.get_orphan_vertex_ratio();
333
2
    if (data_orphan_vertex_ratio >= config::tablet_version_graph_orphan_vertex_ratio) {
334
2
        _timestamped_version_tracker.construct_versioned_tracker(
335
2
                _tablet_meta->all_rs_metas(), _tablet_meta->all_stale_rs_metas());
336
2
        return true;
337
2
    } else if (row_binlog_orphan_vertex_ratio >= config::tablet_version_graph_orphan_vertex_ratio) {
338
0
        _row_binlog_version_tracker.construct_versioned_tracker(
339
0
                _tablet_meta->all_row_binlog_rs_metas());
340
0
        return true;
341
0
    }
342
0
    return false;
343
2
}
344
345
// should use this method to get a copy of current tablet meta
346
// there are some rowset meta in local meta store and in in-memory tablet meta
347
// but not in tablet meta in local meta store
348
void BaseTablet::generate_tablet_meta_copy(TabletMeta& new_tablet_meta,
349
0
                                           bool cloud_get_rowset_meta) const {
350
0
    std::shared_lock rdlock(_meta_lock);
351
0
    generate_tablet_meta_copy_unlocked(new_tablet_meta, cloud_get_rowset_meta);
352
0
}
353
354
// this is a unlocked version of generate_tablet_meta_copy()
355
// some method already hold the _meta_lock before calling this,
356
// such as EngineCloneTask::_finish_clone -> tablet->revise_tablet_meta
357
void BaseTablet::generate_tablet_meta_copy_unlocked(TabletMeta& new_tablet_meta,
358
4
                                                    bool cloud_get_rowset_meta) const {
359
4
    TabletMetaPB tablet_meta_pb;
360
4
    _tablet_meta->to_meta_pb(&tablet_meta_pb, cloud_get_rowset_meta);
361
4
    new_tablet_meta.init_from_pb(tablet_meta_pb);
362
4
}
363
364
Status BaseTablet::calc_delete_bitmap_between_segments(
365
        TabletSchemaSPtr schema, RowsetId rowset_id,
366
0
        const std::vector<segment_v2::SegmentSharedPtr>& segments, DeleteBitmapPtr delete_bitmap) {
367
0
    size_t const num_segments = segments.size();
368
0
    if (num_segments < 2) {
369
0
        return Status::OK();
370
0
    }
371
372
0
    OlapStopWatch watch;
373
0
    size_t seq_col_length = 0;
374
0
    if (schema->has_sequence_col()) {
375
0
        auto seq_col_idx = schema->sequence_col_idx();
376
0
        seq_col_length = schema->column(seq_col_idx).length() + 1;
377
0
    }
378
0
    size_t rowid_length = 0;
379
0
    if (!schema->cluster_key_uids().empty()) {
380
0
        rowid_length = PrimaryKeyIndexReader::ROW_ID_LENGTH;
381
0
    }
382
383
0
    MergeIndexDeleteBitmapCalculator calculator;
384
0
    RETURN_IF_ERROR(calculator.init(rowset_id, segments, seq_col_length, rowid_length));
385
386
0
    RETURN_IF_ERROR(calculator.calculate_all(delete_bitmap));
387
388
0
    delete_bitmap->add(
389
0
            {rowset_id, DeleteBitmap::INVALID_SEGMENT_ID, DeleteBitmap::TEMP_VERSION_COMMON},
390
0
            DeleteBitmap::ROWSET_SENTINEL_MARK);
391
0
    LOG(INFO) << fmt::format(
392
0
            "construct delete bitmap between segments, "
393
0
            "tablet: {}, rowset: {}, number of segments: {}, bitmap count: {}, bitmap cardinality: "
394
0
            "{}, cost {} (us)",
395
0
            tablet_id(), rowset_id.to_string(), num_segments,
396
0
            delete_bitmap->get_delete_bitmap_count(), delete_bitmap->cardinality(),
397
0
            watch.get_elapse_time_us());
398
0
    return Status::OK();
399
0
}
400
401
std::vector<RowsetSharedPtr> BaseTablet::get_rowset_by_ids(
402
73
        const RowsetIdUnorderedSet* specified_rowset_ids) {
403
73
    std::vector<RowsetSharedPtr> rowsets;
404
73
    for (auto& rs : _rs_version_map) {
405
16
        if (!specified_rowset_ids ||
406
16
            specified_rowset_ids->find(rs.second->rowset_id()) != specified_rowset_ids->end()) {
407
1
            rowsets.push_back(rs.second);
408
1
        }
409
16
    }
410
411
73
    std::sort(rowsets.begin(), rowsets.end(), [](RowsetSharedPtr& lhs, RowsetSharedPtr& rhs) {
412
0
        return lhs->end_version() > rhs->end_version();
413
0
    });
414
73
    return rowsets;
415
73
}
416
417
Status BaseTablet::lookup_row_data(const Slice& encoded_key, uint32_t segment_id,
418
                                   const std::vector<uint32_t>& row_ids,
419
                                   RowsetSharedPtr input_rowset, OlapReaderStatistics& stats,
420
0
                                   ColumnString& values, bool write_to_cache) {
421
0
    MonotonicStopWatch watch;
422
0
    size_t row_batch_size = row_ids.size();
423
0
    if (row_batch_size == 0) {
424
0
        return Status::OK();
425
0
    }
426
0
    watch.start();
427
0
    Defer _defer([&]() {
428
0
        LOG_EVERY_N(INFO, 500) << "get row batch, cost(us):" << watch.elapsed_time() / 1000
429
0
                               << ", row_batch_size:" << row_batch_size;
430
0
    });
431
432
0
    values.clear();
433
0
    if (write_to_cache && row_ids.size() != 1) {
434
0
        return Status::InvalidArgument("row cache only supports single row lookup, row_count={}",
435
0
                                       row_ids.size());
436
0
    }
437
438
0
    BetaRowsetSharedPtr rowset = std::static_pointer_cast<BetaRowset>(input_rowset);
439
0
    CHECK(rowset);
440
0
    const TabletSchemaSPtr tablet_schema = rowset->tablet_schema();
441
0
    SegmentCacheHandle segment_cache_handle;
442
0
    std::unique_ptr<segment_v2::ColumnIterator> column_iterator;
443
0
    const auto& column = *DORIS_TRY(tablet_schema->column(BeConsts::ROW_STORE_COL));
444
0
    RETURN_IF_ERROR(_get_segment_column_iterator(rowset, segment_id, column, &segment_cache_handle,
445
0
                                                 &column_iterator, &stats));
446
447
0
    MutableColumnPtr column_ptr = values.get_ptr();
448
0
    RETURN_IF_ERROR(column_iterator->read_by_rowids(row_ids.data(), row_ids.size(), column_ptr));
449
0
    assert(column_ptr->size() == row_ids.size());
450
    // only point query need write to cache
451
0
    if (write_to_cache) {
452
0
        StringRef value = values.get_data_at(0);
453
0
        RowCache::instance()->insert({tablet_id(), encoded_key}, Slice {value.data, value.size});
454
0
    }
455
0
    return Status::OK();
456
0
}
457
458
Status BaseTablet::lookup_row_key(const Slice& encoded_key, TabletSchema* latest_schema,
459
                                  bool with_seq_col,
460
                                  const std::vector<RowsetSharedPtr>& specified_rowsets,
461
                                  RowLocation* row_location, int64_t version,
462
                                  std::vector<std::unique_ptr<SegmentCacheHandle>>& segment_caches,
463
                                  RowsetSharedPtr* rowset, bool with_rowid,
464
                                  std::string* encoded_seq_value, OlapReaderStatistics* stats,
465
2
                                  DeleteBitmapPtr delete_bitmap) {
466
2
    SCOPED_BVAR_LATENCY(g_tablet_lookup_rowkey_latency);
467
2
    size_t seq_col_length = 0;
468
    // use the latest tablet schema to decide if the tablet has sequence column currently
469
2
    const TabletSchema* schema =
470
2
            (latest_schema == nullptr ? _tablet_meta->tablet_schema().get() : latest_schema);
471
2
    if (schema->has_sequence_col() && with_seq_col) {
472
2
        seq_col_length = schema->column(schema->sequence_col_idx()).length() + 1;
473
2
    }
474
2
    size_t rowid_length = 0;
475
2
    if (with_rowid && !schema->cluster_key_uids().empty()) {
476
0
        rowid_length = PrimaryKeyIndexReader::ROW_ID_LENGTH;
477
0
    }
478
2
    Slice key_without_seq =
479
2
            Slice(encoded_key.get_data(), encoded_key.get_size() - seq_col_length - rowid_length);
480
2
    RowLocation loc;
481
482
2
    auto tablet_delete_bitmap =
483
2
            delete_bitmap == nullptr ? _tablet_meta->delete_bitmap_ptr() : delete_bitmap;
484
2
    for (size_t i = 0; i < specified_rowsets.size(); i++) {
485
2
        const auto& rs = specified_rowsets[i];
486
2
        std::vector<KeyBoundsPB> segments_key_bounds;
487
2
        rs->rowset_meta()->get_segments_key_bounds(&segments_key_bounds);
488
2
        int num_segments = cast_set<int>(rs->num_segments());
489
        // MOW lookup requires per-segment bounds. Aggregation must be disabled
490
        // for MOW writers, but enforce at runtime too — indexing segments_key_bounds[j]
491
        // below would be out-of-bounds otherwise.
492
2
        if (UNLIKELY(rs->rowset_meta()->is_segments_key_bounds_aggregated() ||
493
2
                     static_cast<int>(segments_key_bounds.size()) != num_segments)) {
494
0
            return Status::InternalError(
495
0
                    "MOW lookup got rowset with inconsistent segments_key_bounds, rowset_id={}, "
496
0
                    "aggregated={}, bounds_size={}, num_segments={}",
497
0
                    rs->rowset_id().to_string(),
498
0
                    rs->rowset_meta()->is_segments_key_bounds_aggregated(),
499
0
                    segments_key_bounds.size(), num_segments);
500
0
        }
501
2
        std::vector<uint32_t> picked_segments;
502
4
        for (int j = num_segments - 1; j >= 0; j--) {
503
2
            if (_key_is_not_in_segment(key_without_seq, segments_key_bounds[j],
504
2
                                       rs->rowset_meta()->is_segments_key_bounds_truncated())) {
505
0
                continue;
506
0
            }
507
2
            picked_segments.emplace_back(j);
508
2
        }
509
2
        if (picked_segments.empty()) {
510
0
            continue;
511
0
        }
512
513
2
        if (UNLIKELY(segment_caches[i] == nullptr)) {
514
1
            segment_caches[i] = std::make_unique<SegmentCacheHandle>();
515
1
            RETURN_IF_ERROR(SegmentLoader::instance()->load_segments(
516
1
                    std::static_pointer_cast<BetaRowset>(rs), segment_caches[i].get(), true, true));
517
1
        }
518
2
        auto& segments = segment_caches[i]->get_segments();
519
2
        DCHECK_EQ(segments.size(), num_segments);
520
521
2
        for (auto id : picked_segments) {
522
2
            Status s = segments[id]->lookup_row_key(encoded_key, schema, with_seq_col, with_rowid,
523
2
                                                    &loc, stats, encoded_seq_value);
524
2
            if (s.is<KEY_NOT_FOUND>()) {
525
0
                continue;
526
0
            }
527
2
            if (!s.ok() && !s.is<KEY_ALREADY_EXISTS>()) {
528
0
                return s;
529
0
            }
530
2
            if (s.ok() && tablet_delete_bitmap->contains_agg_with_cache_if_eligible(
531
1
                                  {loc.rowset_id, loc.segment_id, version}, loc.row_id)) {
532
                // if has sequence col, we continue to compare the sequence_id of
533
                // all rowsets, util we find an existing key.
534
0
                if (schema->has_sequence_col()) {
535
0
                    continue;
536
0
                }
537
                // The key is deleted, we don't need to search for it any more.
538
0
                break;
539
0
            }
540
            // `st` is either OK or KEY_ALREADY_EXISTS now.
541
            // for partial update, even if the key is already exists, we still need to
542
            // read it's original values to keep all columns align.
543
2
            *row_location = loc;
544
2
            if (rowset) {
545
                // return it's rowset
546
2
                *rowset = rs;
547
2
            }
548
            // find it and return
549
2
            return s;
550
2
        }
551
2
    }
552
0
    g_tablet_pk_not_found << 1;
553
0
    return Status::Error<ErrorCode::KEY_NOT_FOUND>("can't find key in all rowsets");
554
2
}
555
556
// if user pass a token, then all calculation works will submit to a threadpool,
557
// user can get all delete bitmaps from that token.
558
// if `token` is nullptr, the calculation will run in local, and user can get the result
559
// delete bitmap from `delete_bitmap` directly.
560
Status BaseTablet::calc_delete_bitmap(const BaseTabletSPtr& tablet, RowsetSharedPtr rowset,
561
                                      const std::vector<segment_v2::SegmentSharedPtr>& segments,
562
                                      const std::vector<RowsetSharedPtr>& specified_rowsets,
563
                                      DeleteBitmapPtr delete_bitmap, int64_t end_version,
564
                                      CalcDeleteBitmapToken* token, RowsetWriter* rowset_writer,
565
69
                                      DeleteBitmapPtr tablet_delete_bitmap) {
566
69
    if (specified_rowsets.empty() || segments.empty()) {
567
68
        return Status::OK();
568
68
    }
569
570
1
    OlapStopWatch watch;
571
1
    for (const auto& segment : segments) {
572
1
        const auto& seg = segment;
573
1
        if (token != nullptr) {
574
1
            RETURN_IF_ERROR(token->submit(tablet, rowset, seg, specified_rowsets, end_version,
575
1
                                          delete_bitmap, rowset_writer, tablet_delete_bitmap));
576
1
        } else {
577
0
            RETURN_IF_ERROR(tablet->calc_segment_delete_bitmap(
578
0
                    rowset, segment, specified_rowsets, delete_bitmap, end_version, rowset_writer,
579
0
                    tablet_delete_bitmap));
580
0
        }
581
1
    }
582
583
1
    return Status::OK();
584
1
}
585
586
Status BaseTablet::calc_segment_delete_bitmap(RowsetSharedPtr rowset,
587
                                              const segment_v2::SegmentSharedPtr& seg,
588
                                              const std::vector<RowsetSharedPtr>& specified_rowsets,
589
                                              DeleteBitmapPtr delete_bitmap, int64_t end_version,
590
                                              RowsetWriter* rowset_writer,
591
1
                                              DeleteBitmapPtr tablet_delete_bitmap) {
592
1
    OlapStopWatch watch;
593
1
    auto rowset_id = rowset->rowset_id();
594
1
    Version dummy_version(end_version + 1, end_version + 1);
595
1
    auto rowset_schema = rowset->tablet_schema();
596
597
1
    PartialUpdateInfo* partial_update_info =
598
1
            rowset_writer != nullptr ? rowset_writer->get_partial_update_info().get() : nullptr;
599
1
    bool is_partial_update = partial_update_info && partial_update_info->is_partial_update();
600
1
    bool need_rewrite_conflict = partial_update_info != nullptr;
601
    // `have_input_seq_column` is for fixed partial update only. For flexible partial update, we should use
602
    // the skip bitmap to determine wheather a row has specified the sequence column
603
1
    bool have_input_seq_column = false;
604
    // `rids_be_overwritten` is for flexible partial update only, it records row ids that is overwritten by
605
    // another row with higher seqeucne value
606
1
    std::set<uint32_t> rids_be_overwritten;
607
1
    if (is_partial_update) {
608
0
        if (partial_update_info->is_fixed_partial_update() && rowset_schema->has_sequence_col()) {
609
0
            std::vector<uint32_t> including_cids =
610
0
                    rowset_writer->get_partial_update_info()->update_cids;
611
0
            have_input_seq_column =
612
0
                    rowset_schema->has_sequence_col() &&
613
0
                    (std::find(including_cids.cbegin(), including_cids.cend(),
614
0
                               rowset_schema->sequence_col_idx()) != including_cids.cend());
615
0
        }
616
0
    }
617
618
1
    if (rowset_schema->num_variant_columns() > 0) {
619
        // During partial updates, the extracted columns of a variant should not be included in the rowset schema.
620
        // This is because the partial update for a variant needs to ignore the extracted columns.
621
        // Otherwise, the schema types in different rowsets might be inconsistent. When performing a partial update,
622
        // the complete variant is constructed by reading all the sub-columns of the variant.
623
0
        rowset_schema = rowset_schema->copy_without_variant_extracted_columns();
624
0
    }
625
    // use for partial update
626
1
    FixedReadPlan read_plan_ori;
627
1
    FixedReadPlan read_plan_update;
628
1
    int64_t conflict_rows = 0;
629
1
    int64_t new_generated_rows = 0;
630
631
1
    std::map<RowsetId, RowsetSharedPtr> rsid_to_rowset;
632
1
    rsid_to_rowset[rowset_id] = rowset;
633
1
    Block block = rowset_schema->create_block();
634
1
    Block ordered_block = block.clone_empty();
635
1
    uint32_t pos = 0;
636
637
1
    RETURN_IF_ERROR(seg->load_pk_index_and_bf(nullptr)); // We need index blocks to iterate
638
1
    const auto* pk_idx = seg->get_primary_key_index();
639
1
    int64_t total = pk_idx->num_rows();
640
1
    uint32_t row_id = 0;
641
1
    int64_t remaining = total;
642
1
    bool exact_match = false;
643
1
    std::string last_key;
644
1
    int batch_size = 1024;
645
    // The data for each segment may be lookup multiple times. Creating a SegmentCacheHandle
646
    // will update the lru cache, and there will be obvious lock competition in multithreading
647
    // scenarios, so using a segment_caches to cache SegmentCacheHandle.
648
1
    std::vector<std::unique_ptr<SegmentCacheHandle>> segment_caches(specified_rowsets.size());
649
2
    while (remaining > 0) {
650
1
        std::unique_ptr<segment_v2::IndexedColumnIterator> iter;
651
1
        RETURN_IF_ERROR(pk_idx->new_iterator(&iter, nullptr));
652
653
1
        size_t num_to_read = std::min<int64_t>(batch_size, remaining);
654
1
        auto index_type = DataTypeFactory::instance().create_data_type(pk_idx->type(), 1, 0);
655
1
        auto index_column = index_type->create_column();
656
1
        Slice last_key_slice(last_key);
657
1
        RETURN_IF_ERROR(iter->seek_at_or_after(&last_key_slice, &exact_match));
658
1
        auto current_ordinal = iter->get_current_ordinal();
659
1
        DCHECK(total == remaining + current_ordinal)
660
0
                << "total: " << total << ", remaining: " << remaining
661
0
                << ", current_ordinal: " << current_ordinal;
662
663
1
        size_t num_read = num_to_read;
664
1
        RETURN_IF_ERROR(iter->next_batch(&num_read, index_column));
665
1
        DCHECK(num_to_read == num_read)
666
0
                << "num_to_read: " << num_to_read << ", num_read: " << num_read;
667
1
        last_key = index_column->get_data_at(num_read - 1).to_string();
668
669
        // exclude last_key, last_key will be read in next batch.
670
1
        if (num_read == batch_size && num_read != remaining) {
671
0
            num_read -= 1;
672
0
        }
673
3
        for (size_t i = 0; i < num_read; i++, row_id++) {
674
2
            Slice key = Slice(index_column->get_data_at(i).data, index_column->get_data_at(i).size);
675
2
            RowLocation loc;
676
            // calculate row id
677
2
            if (!_tablet_meta->tablet_schema()->cluster_key_uids().empty()) {
678
0
                size_t seq_col_length = 0;
679
0
                if (_tablet_meta->tablet_schema()->has_sequence_col()) {
680
0
                    seq_col_length =
681
0
                            _tablet_meta->tablet_schema()
682
0
                                    ->column(_tablet_meta->tablet_schema()->sequence_col_idx())
683
0
                                    .length() +
684
0
                            1;
685
0
                }
686
0
                size_t rowid_length = PrimaryKeyIndexReader::ROW_ID_LENGTH;
687
0
                Slice key_without_seq =
688
0
                        Slice(key.get_data(), key.get_size() - seq_col_length - rowid_length);
689
0
                Slice rowid_slice =
690
0
                        Slice(key.get_data() + key_without_seq.get_size() + seq_col_length + 1,
691
0
                              rowid_length - 1);
692
0
                const auto* rowid_coder = get_key_coder(FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT);
693
0
                RETURN_IF_ERROR(rowid_coder->decode_ascending(&rowid_slice, rowid_length,
694
0
                                                              (uint8_t*)&row_id));
695
0
            }
696
            // same row in segments should be filtered
697
2
            if (delete_bitmap->contains({rowset_id, seg->id(), DeleteBitmap::TEMP_VERSION_COMMON},
698
2
                                        row_id)) {
699
0
                continue;
700
0
            }
701
702
2
            DBUG_EXECUTE_IF("BaseTablet::calc_segment_delete_bitmap.inject_err", {
703
2
                auto p = dp->param("percent", 0.01);
704
2
                std::mt19937 gen {std::random_device {}()};
705
2
                std::bernoulli_distribution inject_fault {p};
706
2
                if (inject_fault(gen)) {
707
2
                    return Status::InternalError(
708
2
                            "injection error in calc_segment_delete_bitmap, "
709
2
                            "tablet_id={}, rowset_id={}",
710
2
                            tablet_id(), rowset_id.to_string());
711
2
                }
712
2
            });
713
714
2
            RowsetSharedPtr rowset_find;
715
2
            Status st = Status::OK();
716
2
            if (tablet_delete_bitmap == nullptr) {
717
2
                st = lookup_row_key(key, rowset_schema.get(), true, specified_rowsets, &loc,
718
2
                                    dummy_version.first - 1, segment_caches, &rowset_find);
719
2
            } else {
720
0
                st = lookup_row_key(key, rowset_schema.get(), true, specified_rowsets, &loc,
721
0
                                    dummy_version.first - 1, segment_caches, &rowset_find, true,
722
0
                                    nullptr, nullptr, tablet_delete_bitmap);
723
0
            }
724
2
            bool expected_st = st.ok() || st.is<KEY_NOT_FOUND>() || st.is<KEY_ALREADY_EXISTS>();
725
            // It's a defensive DCHECK, we need to exclude some common errors to avoid core-dump
726
            // while stress test
727
2
            DCHECK(expected_st || st.is<MEM_LIMIT_EXCEEDED>())
728
0
                    << "unexpected error status while lookup_row_key:" << st;
729
2
            if (!expected_st) {
730
0
                return st;
731
0
            }
732
2
            if (st.is<KEY_NOT_FOUND>()) {
733
0
                continue;
734
0
            }
735
736
2
            ++conflict_rows;
737
2
            if (st.is<KEY_ALREADY_EXISTS>() &&
738
2
                (!is_partial_update ||
739
1
                 (partial_update_info->is_fixed_partial_update() && have_input_seq_column))) {
740
                // `st.is<KEY_ALREADY_EXISTS>()` means that there exists a row with the same key and larger value
741
                // in seqeunce column.
742
                // - If the current load is not a partial update, we just delete current row.
743
                // - Otherwise, it means that we are doing the alignment process in publish phase due to conflicts
744
                // during concurrent partial updates. And there exists another load which introduces a row with
745
                // the same keys and larger sequence column value published successfully after the commit phase
746
                // of the current load.
747
                //     - If the columns we update include sequence column, we should delete the current row becase the
748
                //       partial update on the current row has been `overwritten` by the previous one with larger sequence
749
                //       column value.
750
                //     - Otherwise, we should combine the values of the missing columns in the previous row and the values
751
                //       of the including columns in the current row into a new row.
752
1
                delete_bitmap->add({rowset_id, seg->id(), DeleteBitmap::TEMP_VERSION_COMMON},
753
1
                                   row_id);
754
1
                continue;
755
                // NOTE: for partial update which doesn't specify the sequence column, we can't use the sequence column value filled in flush phase
756
                // as its final value. Otherwise it may cause inconsistency between replicas.
757
1
            }
758
1
            if (need_rewrite_conflict) {
759
                // In publish version, record rows to be deleted for concurrent update
760
                // For example, if version 5 and 6 update a row, but version 6 only see
761
                // version 4 when write, and when publish version, version 5's value will
762
                // be marked as deleted and it's update is losed.
763
                // So here we should read version 5's columns and build a new row, which is
764
                // consists of version 6's update columns and version 5's origin columns
765
                // here we build 2 read plan for ori values and update values
766
767
                // - for fixed partial update, we should read update columns from current load's rowset
768
                // and read missing columns from previous rowsets to create the final block
769
                // - for flexible partial update, we should read all columns from current load's rowset
770
                // and read non sort key columns from previous rowsets to create the final block
771
                // - for upsert rewrite, we should read all columns from current load's rowset
772
                // So we only need to record rows to read for both mode partial update and upsert rewrite
773
0
                if (is_partial_update) {
774
0
                    read_plan_ori.prepare_to_read(loc, pos);
775
0
                }
776
0
                read_plan_update.prepare_to_read(RowLocation {rowset_id, seg->id(), row_id}, pos);
777
778
                // For flexible partial update, we should use skip bitmap to determine wheather
779
                // a row has specified the sequence column. But skip bitmap should be read from the segment.
780
                // So we record these row ids and process and filter them in `generate_new_block_for_flexible_partial_update()`
781
0
                if (st.is<KEY_ALREADY_EXISTS>() &&
782
0
                    partial_update_info->is_flexible_partial_update()) {
783
0
                    rids_be_overwritten.insert(pos);
784
0
                }
785
786
0
                rsid_to_rowset[rowset_find->rowset_id()] = rowset_find;
787
0
                ++pos;
788
789
                // delete bitmap will be calculate when memtable flush and
790
                // publish. The two stages may see different versions.
791
                // When there is sequence column, the currently imported data
792
                // of rowset may be marked for deletion at memtablet flush or
793
                // publish because the seq column is smaller than the previous
794
                // rowset.
795
                // just set 0 as a unified temporary version number, and update to
796
                // the real version number later.
797
0
                delete_bitmap->add(
798
0
                        {loc.rowset_id, loc.segment_id, DeleteBitmap::TEMP_VERSION_COMMON},
799
0
                        loc.row_id);
800
0
                delete_bitmap->add({rowset_id, seg->id(), DeleteBitmap::TEMP_VERSION_COMMON},
801
0
                                   row_id);
802
0
                ++new_generated_rows;
803
0
                continue;
804
0
            }
805
            // when st = ok
806
1
            delete_bitmap->add({loc.rowset_id, loc.segment_id, DeleteBitmap::TEMP_VERSION_COMMON},
807
1
                               loc.row_id);
808
1
        }
809
1
        remaining -= num_read;
810
1
    }
811
    // DCHECK_EQ(total, row_id) << "segment total rows: " << total << " row_id:" << row_id;
812
813
1
    if (config::enable_merge_on_write_correctness_check) {
814
1
        RowsetIdUnorderedSet rowsetids;
815
1
        for (const auto& specified_rowset : specified_rowsets) {
816
1
            rowsetids.emplace(specified_rowset->rowset_id());
817
1
            VLOG_NOTICE << "[tabletID:" << tablet_id() << "]"
818
0
                        << "[add_sentinel_mark_to_delete_bitmap][end_version:" << end_version << "]"
819
0
                        << "add:" << specified_rowset->rowset_id();
820
1
        }
821
1
        add_sentinel_mark_to_delete_bitmap(delete_bitmap.get(), rowsetids);
822
1
    }
823
824
1
    if (pos > 0) {
825
0
        DCHECK(partial_update_info != nullptr);
826
0
        if (partial_update_info->is_flexible_partial_update()) {
827
0
            RETURN_IF_ERROR(generate_new_block_for_flexible_partial_update(
828
0
                    rowset_schema, partial_update_info, rids_be_overwritten, read_plan_ori,
829
0
                    read_plan_update, rsid_to_rowset, &block));
830
0
        } else {
831
0
            RETURN_IF_ERROR(generate_new_block_for_partial_update(
832
0
                    rowset_schema, partial_update_info, read_plan_ori, read_plan_update,
833
0
                    rsid_to_rowset, &block));
834
0
        }
835
0
        RETURN_IF_ERROR(sort_block(block, ordered_block));
836
837
        // Publish-phase partial update may flush transient segments to a GroupRowsetWriter.
838
        // For row-binlog writing, RowBinlogSegmentWriter requires `seg_id -> lsn_ids` to be
839
        // registered before the segment writer is constructed.
840
0
        if (auto* group_writer = typeid_cast<GroupRowsetWriter*>(rowset_writer);
841
0
            group_writer != nullptr) {
842
0
            auto seg_id = group_writer->get_allocated_segment_id();
843
0
            auto binlog_writer = group_writer->row_binlog_writer();
844
0
            auto& binlog_ctx = const_cast<RowsetWriterContext&>(binlog_writer->context());
845
0
            if (binlog_ctx.write_binlog_opt().enable) {
846
0
                auto db_id = binlog_writer->rowset_meta()->db_id();
847
0
                auto table_id = binlog_writer->rowset_meta()->table_id();
848
0
                DCHECK_GT(db_id, 0);
849
0
                DCHECK_GT(table_id, 0);
850
0
                auto lsn_buffer = GlobalAutoIncBuffers::GetInstance()->get_auto_inc_buffer(
851
0
                        db_id, table_id, kBinlogLsnAutoIncId);
852
0
                std::shared_ptr<std::vector<int64_t>> lsn_ids;
853
0
                RETURN_IF_ERROR(allocate_binlog_lsn(lsn_buffer, ordered_block.rows(), &lsn_ids));
854
0
                binlog_ctx.write_binlog_opt().write_binlog_config().insert_seg_lsn(
855
0
                        seg_id, std::move(lsn_ids));
856
0
            }
857
0
        }
858
0
        RETURN_IF_ERROR(rowset_writer->flush_single_block(&ordered_block));
859
0
        auto cost_us = watch.get_elapse_time_us();
860
0
        if (config::enable_mow_verbose_log || cost_us > 10 * 1000) {
861
0
            LOG(INFO) << "calc segment delete bitmap for "
862
0
                      << partial_update_info->partial_update_mode_str()
863
0
                      << ", tablet: " << tablet_id() << " rowset: " << rowset_id
864
0
                      << " seg_id: " << seg->id() << " dummy_version: " << end_version + 1
865
0
                      << " rows: " << seg->num_rows() << " conflict rows: " << conflict_rows
866
0
                      << " new generated rows: " << new_generated_rows
867
0
                      << " bitmap num: " << delete_bitmap->get_delete_bitmap_count()
868
0
                      << " bitmap cardinality: " << delete_bitmap->cardinality()
869
0
                      << " cost: " << cost_us << "(us)";
870
0
        }
871
0
        return Status::OK();
872
0
    }
873
1
    auto cost_us = watch.get_elapse_time_us();
874
1
    if (config::enable_mow_verbose_log || cost_us > 10 * 1000) {
875
0
        LOG(INFO) << "calc segment delete bitmap, tablet: " << tablet_id()
876
0
                  << " rowset: " << rowset_id << " seg_id: " << seg->id()
877
0
                  << " dummy_version: " << end_version + 1 << " rows: " << seg->num_rows()
878
0
                  << " conflict rows: " << conflict_rows
879
0
                  << " bitmap num: " << delete_bitmap->get_delete_bitmap_count()
880
0
                  << " bitmap cardinality: " << delete_bitmap->cardinality() << " cost: " << cost_us
881
0
                  << "(us)";
882
0
    }
883
1
    return Status::OK();
884
1
}
885
886
0
Status BaseTablet::sort_block(Block& in_block, Block& output_block) {
887
0
    ScopedMutableBlock scoped_input_block(&in_block);
888
0
    auto& mutable_input_block = scoped_input_block.mutable_block();
889
0
    ScopedMutableBlock scoped_output_block(&output_block);
890
0
    auto& mutable_output_block = scoped_output_block.mutable_block();
891
892
0
    std::shared_ptr<RowInBlockComparator> vec_row_comparator =
893
0
            std::make_shared<RowInBlockComparator>(_tablet_meta->tablet_schema());
894
0
    vec_row_comparator->set_block(&mutable_input_block);
895
896
0
    std::vector<std::unique_ptr<RowInBlock>> row_in_blocks;
897
0
    const auto input_rows = mutable_input_block.rows();
898
0
    DCHECK(input_rows <= std::numeric_limits<int>::max());
899
0
    row_in_blocks.reserve(input_rows);
900
0
    for (size_t i = 0; i < input_rows; ++i) {
901
0
        row_in_blocks.emplace_back(std::make_unique<RowInBlock>(i));
902
0
    }
903
0
    std::sort(row_in_blocks.begin(), row_in_blocks.end(),
904
0
              [&](const std::unique_ptr<RowInBlock>& l,
905
0
                  const std::unique_ptr<RowInBlock>& r) -> bool {
906
0
                  auto value = (*vec_row_comparator)(l.get(), r.get());
907
0
                  DCHECK(value != 0) << "value equel when sort block, l_pos: " << l->_row_pos
908
0
                                     << " r_pos: " << r->_row_pos;
909
0
                  return value < 0;
910
0
              });
911
0
    std::vector<uint32_t> row_pos_vec;
912
0
    row_pos_vec.reserve(input_rows);
913
0
    for (auto& block : row_in_blocks) {
914
0
        row_pos_vec.emplace_back(block->_row_pos);
915
0
    }
916
0
    scoped_input_block.restore();
917
0
    RETURN_IF_ERROR(mutable_output_block.add_rows(&in_block, row_pos_vec.data(),
918
0
                                                  row_pos_vec.data() + input_rows));
919
0
    return Status::OK();
920
0
}
921
922
// fetch value by row column
923
Status BaseTablet::fetch_value_through_row_column(RowsetSharedPtr input_rowset,
924
                                                  const TabletSchema& tablet_schema, uint32_t segid,
925
                                                  const std::vector<uint32_t>& rowids,
926
0
                                                  const std::vector<uint32_t>& cids, Block& block) {
927
0
    MonotonicStopWatch watch;
928
0
    watch.start();
929
0
    Defer _defer([&]() {
930
0
        LOG_EVERY_N(INFO, 500) << "fetch_value_by_rowids, cost(us):" << watch.elapsed_time() / 1000
931
0
                               << ", row_batch_size:" << rowids.size();
932
0
    });
933
934
0
    BetaRowsetSharedPtr rowset = std::static_pointer_cast<BetaRowset>(input_rowset);
935
0
    CHECK(rowset);
936
0
    CHECK(tablet_schema.has_row_store_for_all_columns());
937
0
    SegmentCacheHandle segment_cache_handle;
938
0
    std::unique_ptr<segment_v2::ColumnIterator> column_iterator;
939
0
    OlapReaderStatistics stats;
940
0
    const auto& column = *DORIS_TRY(tablet_schema.column(BeConsts::ROW_STORE_COL));
941
0
    RETURN_IF_ERROR(_get_segment_column_iterator(rowset, segid, column, &segment_cache_handle,
942
0
                                                 &column_iterator, &stats));
943
    // get and parse tuple row
944
0
    MutableColumnPtr column_ptr = ColumnString::create();
945
0
    RETURN_IF_ERROR(column_iterator->read_by_rowids(rowids.data(), rowids.size(), column_ptr));
946
0
    assert(column_ptr->size() == rowids.size());
947
0
    auto* string_column = static_cast<ColumnString*>(column_ptr.get());
948
0
    DataTypeSerDeSPtrs serdes;
949
0
    serdes.resize(cids.size());
950
0
    std::unordered_map<uint32_t, uint32_t> col_uid_to_idx;
951
0
    std::vector<std::string> default_values;
952
0
    default_values.resize(cids.size());
953
0
    for (int i = 0; i < cids.size(); ++i) {
954
0
        const TabletColumn& tablet_column = tablet_schema.column(cids[i]);
955
0
        DataTypePtr type = DataTypeFactory::instance().create_data_type(tablet_column);
956
0
        col_uid_to_idx[tablet_column.unique_id()] = i;
957
0
        default_values[i] = tablet_column.default_value();
958
0
        serdes[i] = type->get_serde();
959
0
    }
960
0
    RETURN_IF_ERROR(JsonbSerializeUtil::jsonb_to_block(serdes, *string_column, col_uid_to_idx,
961
0
                                                       block, default_values, {}));
962
0
    return Status::OK();
963
0
}
964
965
Status BaseTablet::fetch_value_by_rowids(RowsetSharedPtr input_rowset, uint32_t segid,
966
                                         const std::vector<uint32_t>& rowids,
967
0
                                         const TabletColumn& tablet_column, MutableColumnPtr& dst) {
968
0
    MonotonicStopWatch watch;
969
0
    watch.start();
970
0
    Defer _defer([&]() {
971
0
        LOG_EVERY_N(INFO, 500) << "fetch_value_by_rowids, cost(us):" << watch.elapsed_time() / 1000
972
0
                               << ", row_batch_size:" << rowids.size();
973
0
    });
974
975
    // read row data
976
0
    BetaRowsetSharedPtr rowset = std::static_pointer_cast<BetaRowset>(input_rowset);
977
0
    CHECK(rowset);
978
0
    SegmentCacheHandle segment_cache_handle;
979
0
    std::unique_ptr<segment_v2::ColumnIterator> column_iterator;
980
0
    OlapReaderStatistics stats;
981
0
    RETURN_IF_ERROR(_get_segment_column_iterator(rowset, segid, tablet_column,
982
0
                                                 &segment_cache_handle, &column_iterator, &stats));
983
0
    RETURN_IF_ERROR(column_iterator->read_by_rowids(rowids.data(), rowids.size(), dst));
984
0
    return Status::OK();
985
0
}
986
987
const signed char* BaseTablet::get_delete_sign_column_data(const Block& block,
988
0
                                                           size_t rows_at_least) {
989
0
    if (int pos = block.get_position_by_name(DELETE_SIGN); pos != -1) {
990
0
        const ColumnWithTypeAndName& delete_sign_column = block.get_by_position(pos);
991
0
        const auto& delete_sign_col = assert_cast<const ColumnInt8&>(*(delete_sign_column.column));
992
0
        if (delete_sign_col.size() >= rows_at_least) {
993
0
            return delete_sign_col.get_data().data();
994
0
        }
995
0
    }
996
0
    return nullptr;
997
0
};
998
999
Status BaseTablet::generate_default_value_block(const TabletSchema& schema,
1000
                                                const std::vector<uint32_t>& cids,
1001
                                                const std::vector<std::string>& default_values,
1002
                                                const Block& ref_block,
1003
0
                                                Block& default_value_block) {
1004
0
    auto mutable_default_value_columns_guard = default_value_block.mutate_columns_scoped();
1005
0
    auto& mutable_default_value_columns = mutable_default_value_columns_guard.mutable_columns();
1006
0
    for (auto i = 0; i < cids.size(); ++i) {
1007
0
        const auto& column = schema.column(cids[i]);
1008
0
        if (column.has_default_value()) {
1009
0
            const auto& default_value = default_values[i];
1010
0
            StringRef str(default_value);
1011
0
            RETURN_IF_ERROR(ref_block.get_by_position(i).type->get_serde()->default_from_string(
1012
0
                    str, *mutable_default_value_columns[i]));
1013
0
        }
1014
0
    }
1015
0
    return Status::OK();
1016
0
}
1017
1018
Status BaseTablet::generate_new_block_for_partial_update(
1019
        TabletSchemaSPtr rowset_schema, const PartialUpdateInfo* partial_update_info,
1020
        const FixedReadPlan& read_plan_ori, const FixedReadPlan& read_plan_update,
1021
0
        const std::map<RowsetId, RowsetSharedPtr>& rsid_to_rowset, Block* output_block) {
1022
    // do partial update related works
1023
    // 1. read columns by read plan
1024
    // 2. generate new block
1025
    // 3. write a new segment and modify rowset meta
1026
    // 4. mark current keys deleted
1027
0
    CHECK(output_block);
1028
0
    auto full_mutable_columns_guard = output_block->mutate_columns_scoped();
1029
0
    auto& full_mutable_columns = full_mutable_columns_guard.mutable_columns();
1030
0
    const auto& missing_cids = partial_update_info->missing_cids;
1031
0
    const auto& update_cids = partial_update_info->update_cids;
1032
0
    auto old_block = rowset_schema->create_block_by_cids(missing_cids);
1033
0
    auto update_block = rowset_schema->create_block_by_cids(update_cids);
1034
1035
0
    bool have_input_seq_column = false;
1036
0
    if (rowset_schema->has_sequence_col()) {
1037
0
        have_input_seq_column =
1038
0
                (std::find(update_cids.cbegin(), update_cids.cend(),
1039
0
                           rowset_schema->sequence_col_idx()) != update_cids.cend());
1040
0
    }
1041
1042
    // rowid in the final block(start from 0, increase continuously) -> rowid to read in update_block
1043
0
    std::map<uint32_t, uint32_t> read_index_update;
1044
1045
    // read current rowset first, if a row in the current rowset has delete sign mark
1046
    // we don't need to read values from old block
1047
0
    RETURN_IF_ERROR(read_plan_update.read_columns_by_plan(
1048
0
            *rowset_schema, update_cids, rsid_to_rowset, update_block, &read_index_update, false));
1049
0
    size_t update_rows = read_index_update.size();
1050
0
    for (auto i = 0; i < update_cids.size(); ++i) {
1051
0
        for (auto idx = 0; idx < update_rows; ++idx) {
1052
0
            full_mutable_columns[update_cids[i]]->insert_from(
1053
0
                    *update_block.get_by_position(i).column, read_index_update[idx]);
1054
0
        }
1055
0
    }
1056
1057
    // if there is sequence column in the table, we need to read the sequence column,
1058
    // otherwise it may cause the merge-on-read based compaction policy to produce incorrect results
1059
0
    const auto* __restrict new_block_delete_signs =
1060
0
            rowset_schema->has_sequence_col()
1061
0
                    ? nullptr
1062
0
                    : get_delete_sign_column_data(update_block, update_rows);
1063
1064
    // rowid in the final block(start from 0, increase, may not continuous becasue we skip to read some rows) -> rowid to read in old_block
1065
0
    std::map<uint32_t, uint32_t> read_index_old;
1066
0
    RETURN_IF_ERROR(read_plan_ori.read_columns_by_plan(*rowset_schema, missing_cids, rsid_to_rowset,
1067
0
                                                       old_block, &read_index_old, true,
1068
0
                                                       new_block_delete_signs));
1069
0
    size_t old_rows = read_index_old.size();
1070
0
    const auto* __restrict old_block_delete_signs =
1071
0
            get_delete_sign_column_data(old_block, old_rows);
1072
0
    DCHECK(old_block_delete_signs != nullptr);
1073
    // build default value block
1074
0
    auto default_value_block = old_block.clone_empty();
1075
0
    RETURN_IF_ERROR(BaseTablet::generate_default_value_block(*rowset_schema, missing_cids,
1076
0
                                                             partial_update_info->default_values,
1077
0
                                                             old_block, default_value_block));
1078
1079
0
    CHECK(update_rows >= old_rows);
1080
1081
    // build full block
1082
0
    for (auto i = 0; i < missing_cids.size(); ++i) {
1083
0
        const auto& rs_column = rowset_schema->column(missing_cids[i]);
1084
0
        auto& mutable_column = full_mutable_columns[missing_cids[i]];
1085
0
        for (auto idx = 0; idx < update_rows; ++idx) {
1086
            // There are two cases we don't need to read values from old data:
1087
            //     1. if the conflicting new row's delete sign is marked, which means the value columns
1088
            //     of the row will not be read. So we don't need to read the missing values from the previous rows.
1089
            //     2. if the conflicting old row's delete sign is marked, which means that the key is not exist now,
1090
            //     we should not read old values from the deleted data, and should use default value instead.
1091
            //     NOTE: since now we are in the publishing phase, all data is commited
1092
            //         before, even the `strict_mode` is true (which requires partial update
1093
            //         load job can't insert new keys), this "new" key MUST be written into
1094
            //         the new generated segment file.
1095
0
            bool new_row_delete_sign =
1096
0
                    (new_block_delete_signs != nullptr && new_block_delete_signs[idx]);
1097
0
            if (new_row_delete_sign) {
1098
0
                mutable_column->insert_default();
1099
0
            } else {
1100
0
                bool use_default = false;
1101
0
                bool old_row_delete_sign = (old_block_delete_signs != nullptr &&
1102
0
                                            old_block_delete_signs[read_index_old.at(idx)] != 0);
1103
0
                if (old_row_delete_sign) {
1104
0
                    if (!rowset_schema->has_sequence_col()) {
1105
0
                        use_default = true;
1106
0
                    } else if (have_input_seq_column || !rs_column.is_seqeunce_col()) {
1107
                        // to keep the sequence column value not decreasing, we should read values of seq column
1108
                        // from old rows even if the old row is deleted when the input don't specify the sequence column, otherwise
1109
                        // it may cause the merge-on-read based compaction to produce incorrect results
1110
0
                        use_default = true;
1111
0
                    }
1112
0
                }
1113
1114
0
                if (use_default) {
1115
0
                    if (rs_column.has_default_value()) {
1116
0
                        mutable_column->insert_from(*default_value_block.get_by_position(i).column,
1117
0
                                                    0);
1118
0
                    } else if (rs_column.is_nullable()) {
1119
0
                        assert_cast<ColumnNullable*, TypeCheckOnRelease::DISABLE>(
1120
0
                                mutable_column.get())
1121
0
                                ->insert_default();
1122
0
                    } else {
1123
0
                        mutable_column->insert_default();
1124
0
                    }
1125
0
                } else {
1126
0
                    mutable_column->insert_from(*old_block.get_by_position(i).column,
1127
0
                                                read_index_old[idx]);
1128
0
                }
1129
0
            }
1130
0
        }
1131
0
    }
1132
0
    full_mutable_columns_guard.restore();
1133
0
    VLOG_DEBUG << "full block when publish: " << output_block->dump_data();
1134
0
    return Status::OK();
1135
0
}
1136
1137
static void fill_cell_for_flexible_partial_update(
1138
        std::map<uint32_t, uint32_t>& read_index_old,
1139
        std::map<uint32_t, uint32_t>& read_index_update, const TabletSchemaSPtr& rowset_schema,
1140
        const PartialUpdateInfo* partial_update_info, const TabletColumn& tablet_column,
1141
        std::size_t idx, MutableColumnPtr& new_col, const IColumn& default_value_col,
1142
        const IColumn& old_value_col, const IColumn& cur_col, bool skipped,
1143
0
        bool row_has_sequence_col, const signed char* delete_sign_column_data) {
1144
0
    if (skipped) {
1145
0
        bool use_default = false;
1146
0
        bool old_row_delete_sign =
1147
0
                (delete_sign_column_data != nullptr &&
1148
0
                 delete_sign_column_data[read_index_old[cast_set<uint32_t>(idx)]] != 0);
1149
0
        if (old_row_delete_sign) {
1150
0
            if (!rowset_schema->has_sequence_col()) {
1151
0
                use_default = true;
1152
0
            } else if (row_has_sequence_col || (!tablet_column.is_seqeunce_col() &&
1153
0
                                                (tablet_column.unique_id() !=
1154
0
                                                 partial_update_info->sequence_map_col_uid()))) {
1155
                // to keep the sequence column value not decreasing, we should read values of seq column(and seq map column)
1156
                // from old rows even if the old row is deleted when the input don't specify the sequence column, otherwise
1157
                // it may cause the merge-on-read based compaction to produce incorrect results
1158
0
                use_default = true;
1159
0
            }
1160
0
        }
1161
0
        if (use_default) {
1162
0
            if (tablet_column.has_default_value()) {
1163
0
                new_col->insert_from(default_value_col, 0);
1164
0
            } else if (tablet_column.is_nullable()) {
1165
0
                assert_cast<ColumnNullable*, TypeCheckOnRelease::DISABLE>(new_col.get())
1166
0
                        ->insert_many_defaults(1);
1167
0
            } else if (tablet_column.is_auto_increment()) {
1168
                // For auto-increment column, its default value(generated value) is filled in current block in flush phase
1169
                // when the load doesn't specify the auto-increment column
1170
                //     - if the previous conflicting row is deleted, we should use the value in current block as its final value
1171
                //     - if the previous conflicting row is an insert, we should use the value in old block as its final value to
1172
                //       keep consistency between replicas
1173
0
                new_col->insert_from(cur_col, read_index_update[cast_set<uint32_t>(idx)]);
1174
0
            } else {
1175
0
                new_col->insert_default();
1176
0
            }
1177
0
        } else {
1178
0
            new_col->insert_from(old_value_col, read_index_old[cast_set<uint32_t>(idx)]);
1179
0
        }
1180
0
    } else {
1181
0
        new_col->insert_from(cur_col, read_index_update[cast_set<uint32_t>(idx)]);
1182
0
    }
1183
0
}
1184
1185
Status BaseTablet::generate_new_block_for_flexible_partial_update(
1186
        TabletSchemaSPtr rowset_schema, const PartialUpdateInfo* partial_update_info,
1187
        std::set<uint32_t>& rids_be_overwritten, const FixedReadPlan& read_plan_ori,
1188
        const FixedReadPlan& read_plan_update,
1189
0
        const std::map<RowsetId, RowsetSharedPtr>& rsid_to_rowset, Block* output_block) {
1190
0
    CHECK(output_block);
1191
1192
0
    int32_t seq_col_unique_id = -1;
1193
0
    if (rowset_schema->has_sequence_col()) {
1194
0
        seq_col_unique_id = rowset_schema->column(rowset_schema->sequence_col_idx()).unique_id();
1195
0
    }
1196
0
    const auto& non_sort_key_cids = partial_update_info->missing_cids;
1197
0
    std::vector<uint32_t> all_cids(rowset_schema->num_columns());
1198
0
    std::iota(all_cids.begin(), all_cids.end(), 0);
1199
0
    auto old_block = rowset_schema->create_block_by_cids(non_sort_key_cids);
1200
0
    auto update_block = rowset_schema->create_block_by_cids(all_cids);
1201
1202
    // rowid in the final block(start from 0, increase continuously) -> rowid to read in update_block
1203
0
    std::map<uint32_t, uint32_t> read_index_update;
1204
1205
    // 1. read the current rowset first, if a row in the current rowset has delete sign mark
1206
    // we don't need to read values from old block for that row
1207
0
    RETURN_IF_ERROR(read_plan_update.read_columns_by_plan(*rowset_schema, all_cids, rsid_to_rowset,
1208
0
                                                          update_block, &read_index_update, true));
1209
0
    size_t update_rows = read_index_update.size();
1210
1211
    // TODO(bobhan1): add the delete sign optimazation here
1212
    // // if there is sequence column in the table, we need to read the sequence column,
1213
    // // otherwise it may cause the merge-on-read based compaction policy to produce incorrect results
1214
    // const auto* __restrict new_block_delete_signs =
1215
    //         rowset_schema->has_sequence_col()
1216
    //                 ? nullptr
1217
    //                 : get_delete_sign_column_data(update_block, update_rows);
1218
1219
    // 2. read previous rowsets
1220
    // rowid in the final block(start from 0, increase, may not continuous becasue we skip to read some rows) -> rowid to read in old_block
1221
0
    std::map<uint32_t, uint32_t> read_index_old;
1222
0
    RETURN_IF_ERROR(read_plan_ori.read_columns_by_plan(
1223
0
            *rowset_schema, non_sort_key_cids, rsid_to_rowset, old_block, &read_index_old, true));
1224
0
    size_t old_rows = read_index_old.size();
1225
0
    DCHECK(update_rows == old_rows);
1226
0
    const auto* __restrict old_block_delete_signs =
1227
0
            get_delete_sign_column_data(old_block, old_rows);
1228
0
    DCHECK(old_block_delete_signs != nullptr);
1229
1230
    // 3. build default value block
1231
0
    auto default_value_block = old_block.clone_empty();
1232
0
    RETURN_IF_ERROR(BaseTablet::generate_default_value_block(*rowset_schema, non_sort_key_cids,
1233
0
                                                             partial_update_info->default_values,
1234
0
                                                             old_block, default_value_block));
1235
1236
    // 4. build the final block
1237
0
    auto full_mutable_columns_guard = output_block->mutate_columns_scoped();
1238
0
    auto& full_mutable_columns = full_mutable_columns_guard.mutable_columns();
1239
0
    DCHECK(rowset_schema->has_skip_bitmap_col());
1240
0
    auto skip_bitmap_col_idx = rowset_schema->skip_bitmap_col_idx();
1241
0
    const std::vector<BitmapValue>* skip_bitmaps =
1242
0
            &(assert_cast<const ColumnBitmap*, TypeCheckOnRelease::DISABLE>(
1243
0
                      update_block.get_by_position(skip_bitmap_col_idx).column->get_ptr().get())
1244
0
                      ->get_data());
1245
1246
0
    if (rowset_schema->has_sequence_col() && !rids_be_overwritten.empty()) {
1247
        // If the row specifies the sequence column, we should delete the current row becase the
1248
        // flexible partial update on the current row has been `overwritten` by the previous one with larger sequence
1249
        // column value.
1250
0
        for (auto it = rids_be_overwritten.begin(); it != rids_be_overwritten.end();) {
1251
0
            auto rid = *it;
1252
0
            if (!skip_bitmaps->at(rid).contains(seq_col_unique_id)) {
1253
0
                ++it;
1254
0
            } else {
1255
0
                it = rids_be_overwritten.erase(it);
1256
0
            }
1257
0
        }
1258
0
    }
1259
1260
0
    for (std::size_t cid {0}; cid < rowset_schema->num_columns(); cid++) {
1261
0
        MutableColumnPtr& new_col = full_mutable_columns[cid];
1262
0
        const IColumn& cur_col = *update_block.get_by_position(cid).column;
1263
0
        const auto& rs_column = rowset_schema->column(cid);
1264
0
        auto col_uid = rs_column.unique_id();
1265
0
        for (auto idx = 0; idx < update_rows; ++idx) {
1266
0
            if (cid < rowset_schema->num_key_columns()) {
1267
0
                new_col->insert_from(cur_col, read_index_update[idx]);
1268
0
            } else {
1269
0
                const IColumn& default_value_col =
1270
0
                        *default_value_block.get_by_position(cid - rowset_schema->num_key_columns())
1271
0
                                 .column;
1272
0
                const IColumn& old_value_col =
1273
0
                        *old_block.get_by_position(cid - rowset_schema->num_key_columns()).column;
1274
0
                if (rids_be_overwritten.contains(idx)) {
1275
0
                    new_col->insert_from(old_value_col, read_index_old[idx]);
1276
0
                } else {
1277
0
                    fill_cell_for_flexible_partial_update(
1278
0
                            read_index_old, read_index_update, rowset_schema, partial_update_info,
1279
0
                            rs_column, idx, new_col, default_value_col, old_value_col, cur_col,
1280
0
                            skip_bitmaps->at(idx).contains(col_uid),
1281
0
                            rowset_schema->has_sequence_col()
1282
0
                                    ? !skip_bitmaps->at(idx).contains(seq_col_unique_id)
1283
0
                                    : false,
1284
0
                            old_block_delete_signs);
1285
0
                }
1286
0
            }
1287
0
        }
1288
0
        DCHECK_EQ(full_mutable_columns[cid]->size(), update_rows);
1289
0
    }
1290
1291
0
    full_mutable_columns_guard.restore();
1292
0
    VLOG_DEBUG << "full block when publish: " << output_block->dump_data();
1293
0
    return Status::OK();
1294
0
}
1295
1296
Status BaseTablet::commit_phase_update_delete_bitmap(
1297
        const BaseTabletSPtr& tablet, const RowsetSharedPtr& rowset,
1298
        RowsetIdUnorderedSet& pre_rowset_ids, DeleteBitmapPtr delete_bitmap,
1299
        const std::vector<segment_v2::SegmentSharedPtr>& segments, int64_t txn_id,
1300
3
        CalcDeleteBitmapToken* token, RowsetWriter* rowset_writer) {
1301
3
    DBUG_EXECUTE_IF("BaseTablet::commit_phase_update_delete_bitmap.enable_spin_wait", {
1302
3
        auto tok = dp->param<std::string>("token", "invalid_token");
1303
3
        while (DebugPoints::instance()->is_enable(
1304
3
                "BaseTablet::commit_phase_update_delete_bitmap.block")) {
1305
3
            auto block_dp = DebugPoints::instance()->get_debug_point(
1306
3
                    "BaseTablet::commit_phase_update_delete_bitmap.block");
1307
3
            if (block_dp) {
1308
3
                auto pass_token = block_dp->param<std::string>("pass_token", "");
1309
3
                if (pass_token == tok) {
1310
3
                    break;
1311
3
                }
1312
3
            }
1313
3
            std::this_thread::sleep_for(std::chrono::milliseconds(50));
1314
3
        }
1315
3
    });
1316
3
    SCOPED_BVAR_LATENCY(g_tablet_commit_phase_update_delete_bitmap_latency);
1317
3
    RowsetIdUnorderedSet cur_rowset_ids;
1318
3
    RowsetIdUnorderedSet rowset_ids_to_add;
1319
3
    RowsetIdUnorderedSet rowset_ids_to_del;
1320
3
    int64_t cur_version;
1321
1322
3
    std::vector<RowsetSharedPtr> specified_rowsets;
1323
3
    {
1324
        // to prevent seeing intermediate state of a tablet
1325
3
        std::unique_lock<bthread::Mutex> sync_lock;
1326
3
        if (config::is_cloud_mode()) {
1327
0
            sync_lock = std::unique_lock<bthread::Mutex>(
1328
0
                    std::static_pointer_cast<CloudTablet>(tablet)->get_sync_meta_lock());
1329
0
        }
1330
3
        std::shared_lock meta_rlock(tablet->_meta_lock);
1331
3
        if (tablet->tablet_state() == TABLET_NOTREADY) {
1332
            // tablet is under alter process. The delete bitmap will be calculated after conversion.
1333
0
            LOG(INFO) << "tablet is under alter process, delete bitmap will be calculated later, "
1334
0
                         "tablet_id: "
1335
0
                      << tablet->tablet_id() << " txn_id: " << txn_id;
1336
0
            return Status::OK();
1337
0
        }
1338
3
        cur_version = tablet->max_version_unlocked();
1339
3
        RETURN_IF_ERROR(tablet->get_all_rs_id_unlocked(cur_version, &cur_rowset_ids));
1340
3
        _rowset_ids_difference(cur_rowset_ids, pre_rowset_ids, &rowset_ids_to_add,
1341
3
                               &rowset_ids_to_del);
1342
3
        specified_rowsets = tablet->get_rowset_by_ids(&rowset_ids_to_add);
1343
3
    }
1344
0
    for (const auto& to_del : rowset_ids_to_del) {
1345
0
        delete_bitmap->remove({to_del, 0, 0}, {to_del, UINT32_MAX, INT64_MAX});
1346
0
    }
1347
1348
3
    RETURN_IF_ERROR(calc_delete_bitmap(tablet, rowset, segments, specified_rowsets, delete_bitmap,
1349
3
                                       cur_version, token, rowset_writer));
1350
3
    size_t total_rows = std::accumulate(
1351
3
            segments.begin(), segments.end(), 0,
1352
3
            [](size_t sum, const segment_v2::SegmentSharedPtr& s) { return sum += s->num_rows(); });
1353
3
    LOG(INFO) << "[Before Commit] construct delete bitmap tablet: " << tablet->tablet_id()
1354
3
              << ", rowset_ids to add: " << rowset_ids_to_add.size()
1355
3
              << ", rowset_ids to del: " << rowset_ids_to_del.size()
1356
3
              << ", cur max_version: " << cur_version << ", transaction_id: " << txn_id
1357
3
              << ", total rows: " << total_rows;
1358
3
    pre_rowset_ids = cur_rowset_ids;
1359
3
    return Status::OK();
1360
3
}
1361
1362
void BaseTablet::add_sentinel_mark_to_delete_bitmap(DeleteBitmap* delete_bitmap,
1363
5
                                                    const RowsetIdUnorderedSet& rowsetids) {
1364
5
    for (const auto& rowsetid : rowsetids) {
1365
5
        delete_bitmap->add(
1366
5
                {rowsetid, DeleteBitmap::INVALID_SEGMENT_ID, DeleteBitmap::TEMP_VERSION_COMMON},
1367
5
                DeleteBitmap::ROWSET_SENTINEL_MARK);
1368
5
    }
1369
5
}
1370
1371
void BaseTablet::_rowset_ids_difference(const RowsetIdUnorderedSet& cur,
1372
                                        const RowsetIdUnorderedSet& pre,
1373
                                        RowsetIdUnorderedSet* to_add,
1374
6
                                        RowsetIdUnorderedSet* to_del) {
1375
6
    for (const auto& id : cur) {
1376
2
        if (pre.find(id) == pre.end()) {
1377
1
            to_add->insert(id);
1378
1
        }
1379
2
    }
1380
6
    for (const auto& id : pre) {
1381
1
        if (cur.find(id) == cur.end()) {
1382
0
            to_del->insert(id);
1383
0
        }
1384
1
    }
1385
6
}
1386
1387
Status BaseTablet::check_delete_bitmap_correctness(DeleteBitmapPtr delete_bitmap,
1388
                                                   int64_t max_version, int64_t txn_id,
1389
                                                   const RowsetIdUnorderedSet& rowset_ids,
1390
6
                                                   std::vector<RowsetSharedPtr>* rowsets) {
1391
6
    RowsetIdUnorderedSet missing_ids;
1392
6
    for (const auto& rowsetid : rowset_ids) {
1393
2
        if (!delete_bitmap->delete_bitmap.contains({rowsetid, DeleteBitmap::INVALID_SEGMENT_ID,
1394
2
                                                    DeleteBitmap::TEMP_VERSION_COMMON})) {
1395
0
            missing_ids.insert(rowsetid);
1396
0
        }
1397
2
    }
1398
1399
6
    if (!missing_ids.empty()) {
1400
0
        LOG(WARNING) << "[txn_id:" << txn_id << "][tablet_id:" << tablet_id()
1401
0
                     << "][max_version: " << max_version
1402
0
                     << "] check delete bitmap correctness failed!";
1403
0
        rapidjson::Document root;
1404
0
        root.SetObject();
1405
0
        rapidjson::Document required_rowsets_arr;
1406
0
        required_rowsets_arr.SetArray();
1407
0
        rapidjson::Document missing_rowsets_arr;
1408
0
        missing_rowsets_arr.SetArray();
1409
1410
0
        if (rowsets != nullptr) {
1411
0
            for (const auto& rowset : *rowsets) {
1412
0
                rapidjson::Value value;
1413
0
                std::string version_str = rowset->get_rowset_info_str();
1414
0
                value.SetString(version_str.c_str(),
1415
0
                                cast_set<rapidjson::SizeType>(version_str.length()),
1416
0
                                required_rowsets_arr.GetAllocator());
1417
0
                required_rowsets_arr.PushBack(value, required_rowsets_arr.GetAllocator());
1418
0
            }
1419
0
        } else {
1420
0
            std::vector<RowsetSharedPtr> tablet_rowsets;
1421
0
            {
1422
0
                std::shared_lock meta_rlock(_meta_lock);
1423
0
                tablet_rowsets = get_rowset_by_ids(&rowset_ids);
1424
0
            }
1425
0
            for (const auto& rowset : tablet_rowsets) {
1426
0
                rapidjson::Value value;
1427
0
                std::string version_str = rowset->get_rowset_info_str();
1428
0
                value.SetString(version_str.c_str(),
1429
0
                                cast_set<rapidjson::SizeType>(version_str.length()),
1430
0
                                required_rowsets_arr.GetAllocator());
1431
0
                required_rowsets_arr.PushBack(value, required_rowsets_arr.GetAllocator());
1432
0
            }
1433
0
        }
1434
0
        for (const auto& missing_rowset_id : missing_ids) {
1435
0
            rapidjson::Value miss_value;
1436
0
            std::string rowset_id_str = missing_rowset_id.to_string();
1437
0
            miss_value.SetString(rowset_id_str.c_str(),
1438
0
                                 cast_set<rapidjson::SizeType>(rowset_id_str.length()),
1439
0
                                 missing_rowsets_arr.GetAllocator());
1440
0
            missing_rowsets_arr.PushBack(miss_value, missing_rowsets_arr.GetAllocator());
1441
0
        }
1442
1443
0
        root.AddMember("required_rowsets", required_rowsets_arr, root.GetAllocator());
1444
0
        root.AddMember("missing_rowsets", missing_rowsets_arr, root.GetAllocator());
1445
0
        rapidjson::StringBuffer strbuf;
1446
0
        rapidjson::PrettyWriter<rapidjson::StringBuffer> writer(strbuf);
1447
0
        root.Accept(writer);
1448
0
        std::string rowset_status_string = std::string(strbuf.GetString());
1449
0
        LOG_EVERY_SECOND(WARNING) << rowset_status_string;
1450
        // let it crash if correctness check failed in Debug mode
1451
0
        DCHECK(false) << "delete bitmap correctness check failed in publish phase!";
1452
0
        return Status::InternalError("check delete bitmap failed!");
1453
0
    }
1454
6
    return Status::OK();
1455
6
}
1456
1457
Status BaseTablet::update_delete_bitmap(const BaseTabletSPtr& self, TabletTxnInfo* txn_info,
1458
                                        int64_t txn_id, int64_t txn_expiration,
1459
3
                                        DeleteBitmapPtr tablet_delete_bitmap) {
1460
3
    SCOPED_BVAR_LATENCY(g_tablet_update_delete_bitmap_latency);
1461
3
    RowsetIdUnorderedSet cur_rowset_ids;
1462
3
    RowsetIdUnorderedSet rowset_ids_to_add;
1463
3
    RowsetIdUnorderedSet rowset_ids_to_del;
1464
3
    RowsetSharedPtr rowset = txn_info->rowset;
1465
3
    RowsetSharedPtr row_binlog_rowset;
1466
3
    bool build_row_binlog = false;
1467
3
    int64_t cur_version = rowset->start_version();
1468
3
    std::unique_ptr<RowsetWriter> transient_rs_writer;
1469
3
    DeleteBitmapPtr delete_bitmap = txn_info->delete_bitmap;
1470
3
    bool is_partial_update =
1471
3
            txn_info->partial_update_info && txn_info->partial_update_info->is_partial_update();
1472
3
    for (const auto& rs : txn_info->attach_rowsets) {
1473
0
        if (rs != nullptr && rs->rowset_meta() != nullptr && rs->rowset_meta()->is_row_binlog()) {
1474
0
            row_binlog_rowset = rs;
1475
0
            build_row_binlog = is_partial_update ||
1476
0
                               self->tablet_meta()->binlog_config().need_historical_value();
1477
0
            break;
1478
0
        }
1479
0
    }
1480
1481
    // rewrite conflict only when partial update or need before
1482
3
    if (is_partial_update || build_row_binlog) {
1483
0
        if (txn_info->partial_update_info == nullptr) {
1484
0
            txn_info->partial_update_info = std::make_shared<PartialUpdateInfo>();
1485
0
        }
1486
0
        if (txn_info->partial_update_info->partial_update_mode == UniqueKeyUpdateModePB::UPSERT) {
1487
0
            txn_info->partial_update_info->partial_update_input_columns.clear();
1488
0
            txn_info->partial_update_info->missing_cids.clear();
1489
0
            txn_info->partial_update_info->default_values.clear();
1490
0
            auto& update_cids = txn_info->partial_update_info->update_cids;
1491
0
            update_cids.resize(rowset->tablet_schema()->num_columns());
1492
0
            std::iota(update_cids.begin(), update_cids.end(), 0);
1493
0
        }
1494
1495
0
        DCHECK(txn_info->partial_update_info != nullptr);
1496
1497
0
        transient_rs_writer = DORIS_TRY(self->create_transient_rowset_writer(
1498
0
                *rowset, txn_info->partial_update_info, txn_expiration));
1499
0
        DBUG_EXECUTE_IF("BaseTablet::update_delete_bitmap.after.create_transient_rs_writer",
1500
0
                        DBUG_BLOCK);
1501
        // Partial update or upsert rewrite might generate new segments when there is conflicts while publish, and mark
1502
        // the same key in original segments as delete.
1503
        // When the new segment flush fails or the rowset build fails, the deletion marker for the
1504
        // duplicate key of the original segment should not remain in `txn_info->delete_bitmap`,
1505
        // so we need to make a copy of `txn_info->delete_bitmap` and make changes on it.
1506
0
        delete_bitmap = std::make_shared<DeleteBitmap>(*(txn_info->delete_bitmap));
1507
0
    }
1508
1509
3
    OlapStopWatch watch;
1510
3
    std::vector<segment_v2::SegmentSharedPtr> segments;
1511
3
    RETURN_IF_ERROR(std::dynamic_pointer_cast<BetaRowset>(rowset)->load_segments(&segments));
1512
3
    auto t1 = watch.get_elapse_time_us();
1513
1514
3
    int64_t next_visible_version = txn_info->is_txn_load ? txn_info->next_visible_version
1515
3
                                                         : txn_info->rowset->start_version();
1516
3
    {
1517
3
        std::shared_lock meta_rlock(self->_meta_lock);
1518
        // tablet is under alter process. The delete bitmap will be calculated after conversion.
1519
3
        if (self->tablet_state() == TABLET_NOTREADY) {
1520
0
            LOG(INFO) << "tablet is under alter process, update delete bitmap later, tablet_id="
1521
0
                      << self->tablet_id();
1522
0
            return Status::OK();
1523
0
        }
1524
3
        RETURN_IF_ERROR(self->get_all_rs_id_unlocked(next_visible_version - 1, &cur_rowset_ids));
1525
3
    }
1526
3
    auto t2 = watch.get_elapse_time_us();
1527
1528
3
    _rowset_ids_difference(cur_rowset_ids, txn_info->rowset_ids, &rowset_ids_to_add,
1529
3
                           &rowset_ids_to_del);
1530
3
    for (const auto& to_del : rowset_ids_to_del) {
1531
0
        delete_bitmap->remove({to_del, 0, 0}, {to_del, UINT32_MAX, INT64_MAX});
1532
0
    }
1533
1534
3
    std::vector<RowsetSharedPtr> specified_rowsets;
1535
3
    {
1536
3
        std::shared_lock meta_rlock(self->_meta_lock);
1537
3
        specified_rowsets = self->get_rowset_by_ids(&rowset_ids_to_add);
1538
3
    }
1539
3
    if (txn_info->is_txn_load) {
1540
0
        for (auto invisible_rowset : txn_info->invisible_rowsets) {
1541
0
            specified_rowsets.emplace_back(invisible_rowset);
1542
0
        }
1543
0
        std::sort(specified_rowsets.begin(), specified_rowsets.end(),
1544
0
                  [](RowsetSharedPtr& lhs, RowsetSharedPtr& rhs) {
1545
0
                      return lhs->end_version() > rhs->end_version();
1546
0
                  });
1547
0
    }
1548
3
    auto t3 = watch.get_elapse_time_us();
1549
1550
    // If a rowset is produced by compaction before the commit phase of the partial update load
1551
    // and is not included in txn_info->rowset_ids, we can skip the alignment process of that rowset
1552
    // because data remains the same before and after compaction. But we still need to calculate the
1553
    // the delete bitmap for that rowset.
1554
3
    std::vector<RowsetSharedPtr> rowsets_skip_alignment;
1555
3
    if (is_partial_update) {
1556
0
        int64_t max_version_in_flush_phase =
1557
0
                txn_info->partial_update_info->max_version_in_flush_phase;
1558
0
        DCHECK(max_version_in_flush_phase != -1);
1559
0
        std::vector<RowsetSharedPtr> remained_rowsets;
1560
0
        for (const auto& specified_rowset : specified_rowsets) {
1561
0
            if (specified_rowset->end_version() <= max_version_in_flush_phase &&
1562
0
                specified_rowset->produced_by_compaction()) {
1563
0
                rowsets_skip_alignment.emplace_back(specified_rowset);
1564
0
            } else {
1565
0
                remained_rowsets.emplace_back(specified_rowset);
1566
0
            }
1567
0
        }
1568
0
        if (!rowsets_skip_alignment.empty()) {
1569
0
            specified_rowsets = std::move(remained_rowsets);
1570
0
        }
1571
0
    }
1572
1573
3
    DBUG_EXECUTE_IF("BaseTablet::update_delete_bitmap.enable_spin_wait", {
1574
3
        auto token = dp->param<std::string>("token", "invalid_token");
1575
3
        while (DebugPoints::instance()->is_enable("BaseTablet::update_delete_bitmap.block")) {
1576
3
            auto block_dp = DebugPoints::instance()->get_debug_point(
1577
3
                    "BaseTablet::update_delete_bitmap.block");
1578
3
            if (block_dp) {
1579
3
                auto wait_token = block_dp->param<std::string>("wait_token", "");
1580
3
                LOG(INFO) << "BaseTablet::update_delete_bitmap.enable_spin_wait, wait_token: "
1581
3
                          << wait_token << ", token: " << token;
1582
3
                if (wait_token != token) {
1583
3
                    break;
1584
3
                }
1585
3
            }
1586
3
            std::this_thread::sleep_for(std::chrono::milliseconds(50));
1587
3
        }
1588
3
    });
1589
1590
3
    if (!rowsets_skip_alignment.empty()) {
1591
0
        auto token = self->calc_delete_bitmap_executor()->create_token();
1592
        // set rowset_writer to nullptr to skip the alignment process
1593
0
        RETURN_IF_ERROR(calc_delete_bitmap(self, rowset, segments, rowsets_skip_alignment,
1594
0
                                           delete_bitmap, cur_version - 1, token.get(), nullptr,
1595
0
                                           tablet_delete_bitmap));
1596
0
        RETURN_IF_ERROR(token->wait());
1597
0
    }
1598
1599
    // Publish-phase partial update or upsert rewrite may generate transient segments. If row binlog is enabled for
1600
    // this txn (row binlog rowset attached), we need to build row binlog segments together with
1601
    // transient data segments:
1602
    // 1) create a transient row binlog writer that appends to the same version row binlog rowset
1603
    // 2) pre-allocate per-row LSNs for each transient segment and register them in binlog options
1604
    // 3) wrap both writers into a GroupRowsetWriter so calc_delete_bitmap writes to both.
1605
3
    if (build_row_binlog) {
1606
0
        DCHECK(transient_rs_writer != nullptr);
1607
1608
        // Create transient row binlog writer for publish-phase segment appending.
1609
0
        auto transient_row_binlog_writer = DORIS_TRY(self->create_transient_rowset_writer(
1610
0
                *row_binlog_rowset, txn_info->partial_update_info, txn_expiration));
1611
1612
        // Prepare source MOW context for historical row retrieval in binlog writer.
1613
0
        auto& data_ctx = const_cast<RowsetWriterContext&>(transient_rs_writer->context());
1614
0
        data_ctx.mow_context = std::make_shared<MowContext>(
1615
0
                cur_version - 1, txn_id, std::make_shared<RowsetIdUnorderedSet>(),
1616
0
                specified_rowsets, nullptr);
1617
1618
0
        auto& binlog_ctx = const_cast<RowsetWriterContext&>(transient_row_binlog_writer->context());
1619
0
        auto& cfg = binlog_ctx.write_binlog_opt().write_binlog_config();
1620
0
        cfg.source.tablet_schema = data_ctx.tablet_schema;
1621
0
        cfg.source.partial_update_info = data_ctx.partial_update_info;
1622
0
        cfg.source.mow_context = data_ctx.mow_context;
1623
0
        cfg.source.is_transient_rowset_writer = data_ctx.is_transient_rowset_writer;
1624
0
        cfg.source.source_write_type = data_ctx.write_type;
1625
1626
        // Wrap two transient writers into a group writer for dual flush/build.
1627
0
        RowsetWriterSharedPtr data_writer_sp(std::move(transient_rs_writer));
1628
0
        RowsetWriterSharedPtr row_binlog_writer_sp(std::move(transient_row_binlog_writer));
1629
0
        std::unique_ptr<GroupRowsetWriter> group_writer;
1630
0
        RETURN_IF_ERROR(RowsetFactory::create_empty_group_rowset_writer(&group_writer));
1631
0
        group_writer->set_data_writer(data_writer_sp);
1632
0
        group_writer->set_row_binlog_writer(row_binlog_writer_sp);
1633
0
        transient_rs_writer = std::move(group_writer);
1634
0
    }
1635
1636
    // When there is only one segment, it will be calculated in the current thread.
1637
    // Otherwise, it will be submitted to the thread pool for calculation.
1638
3
    if (segments.size() <= 1) {
1639
3
        RETURN_IF_ERROR(calc_delete_bitmap(self, rowset, segments, specified_rowsets, delete_bitmap,
1640
3
                                           cur_version - 1, nullptr, transient_rs_writer.get(),
1641
3
                                           tablet_delete_bitmap));
1642
1643
3
    } else {
1644
0
        auto token = self->calc_delete_bitmap_executor()->create_token();
1645
0
        RETURN_IF_ERROR(calc_delete_bitmap(self, rowset, segments, specified_rowsets, delete_bitmap,
1646
0
                                           cur_version - 1, token.get(), transient_rs_writer.get(),
1647
0
                                           tablet_delete_bitmap));
1648
0
        RETURN_IF_ERROR(token->wait());
1649
0
    }
1650
1651
3
    std::stringstream ss;
1652
3
    ss << "cost(us): (load segments: " << t1 << ", get all rsid: " << t2 - t1
1653
3
       << ", get rowsets: " << t3 - t2
1654
3
       << ", calc delete bitmap: " << watch.get_elapse_time_us() - t3 << ")";
1655
1656
3
    if (config::enable_merge_on_write_correctness_check && rowset->num_rows() != 0) {
1657
        // only do correctness check if the rowset has at least one row written
1658
        // check if all the rowset has ROWSET_SENTINEL_MARK
1659
3
        auto st = self->check_delete_bitmap_correctness(delete_bitmap, cur_version - 1, -1,
1660
3
                                                        cur_rowset_ids, &specified_rowsets);
1661
3
        if (!st.ok()) {
1662
0
            LOG(WARNING) << fmt::format("delete bitmap correctness check failed in publish phase!");
1663
0
        }
1664
3
    }
1665
1666
3
    if (transient_rs_writer) {
1667
0
        auto t4 = watch.get_elapse_time_us();
1668
0
        DBUG_EXECUTE_IF("Tablet.update_delete_bitmap.partial_update_write_rowset_fail", {
1669
0
            if (rand() % 100 < (100 * dp->param("percent", 0.5))) {
1670
0
                LOG_WARNING("Tablet.update_delete_bitmap.partial_update_write_rowset random failed")
1671
0
                        .tag("txn_id", txn_id);
1672
0
                return Status::InternalError(
1673
0
                        "debug update_delete_bitmap partial update write rowset random failed");
1674
0
            }
1675
0
        });
1676
        // build rowset writer and merge transient rowset
1677
0
        RETURN_IF_ERROR(transient_rs_writer->flush());
1678
0
        RowsetSharedPtr transient_rowset;
1679
0
        RowsetSharedPtr transient_row_binlog;
1680
0
        if (build_row_binlog) {
1681
0
            auto* group_rowset_writer = typeid_cast<GroupRowsetWriter*>(transient_rs_writer.get());
1682
0
            DCHECK(group_rowset_writer != nullptr);
1683
0
            std::vector<RowsetSharedPtr> waited_build_rowsets;
1684
0
            RETURN_IF_ERROR(group_rowset_writer->build_rowsets(waited_build_rowsets));
1685
0
            transient_rowset = waited_build_rowsets.at(0);
1686
0
            transient_row_binlog = waited_build_rowsets.at(1);
1687
0
        } else {
1688
0
            RETURN_IF_ERROR(transient_rs_writer->build(transient_rowset));
1689
0
        }
1690
0
        auto old_segments = rowset->num_segments();
1691
0
        rowset->merge_rowset_meta(*transient_rowset->rowset_meta());
1692
0
        auto new_segments = rowset->num_segments();
1693
0
        ss << ", " << txn_info->partial_update_info->partial_update_mode_str()
1694
0
           << " flush rowset (old segment num: " << old_segments
1695
0
           << ", new segment num: " << new_segments << ")"
1696
0
           << ", cost:" << watch.get_elapse_time_us() - t4 << "(us)";
1697
1698
0
        if (build_row_binlog) {
1699
0
            DCHECK(row_binlog_rowset != nullptr);
1700
0
            old_segments = row_binlog_rowset->num_segments();
1701
0
            row_binlog_rowset->merge_rowset_meta(*transient_row_binlog->rowset_meta());
1702
0
            new_segments = row_binlog_rowset->num_segments();
1703
0
            ss << ", " << txn_info->partial_update_info->partial_update_mode_str()
1704
0
               << " flush binlog<row> (old segment num: " << old_segments
1705
0
               << ", new segment num: " << new_segments << ")";
1706
1707
0
            SegmentLoader::instance()->erase_segments(row_binlog_rowset->rowset_id(),
1708
0
                                                      row_binlog_rowset->num_segments());
1709
0
        }
1710
1711
        // update the shared_ptr to new bitmap, which is consistent with current rowset.
1712
0
        txn_info->delete_bitmap = delete_bitmap;
1713
        // erase segment cache cause we will add a segment to rowset
1714
0
        SegmentLoader::instance()->erase_segments(rowset->rowset_id(), rowset->num_segments());
1715
0
    }
1716
1717
3
    size_t total_rows = std::accumulate(
1718
3
            segments.begin(), segments.end(), 0,
1719
3
            [](size_t sum, const segment_v2::SegmentSharedPtr& s) { return sum += s->num_rows(); });
1720
3
    auto t5 = watch.get_elapse_time_us();
1721
3
    int64_t lock_id = txn_info->is_txn_load ? txn_info->lock_id : -1;
1722
3
    RETURN_IF_ERROR(self->save_delete_bitmap(txn_info, txn_id, delete_bitmap,
1723
3
                                             transient_rs_writer.get(), cur_rowset_ids, lock_id,
1724
3
                                             next_visible_version));
1725
1726
    // defensive check, check that the delete bitmap cache we wrote is correct
1727
3
    RETURN_IF_ERROR(self->check_delete_bitmap_cache(txn_id, delete_bitmap.get()));
1728
1729
3
    LOG(INFO) << "[Publish] construct delete bitmap tablet: " << self->tablet_id()
1730
3
              << ", rowset_ids to add: "
1731
3
              << (specified_rowsets.size() + rowsets_skip_alignment.size())
1732
3
              << ", rowset_ids to del: " << rowset_ids_to_del.size()
1733
3
              << ", cur version: " << cur_version << ", transaction_id: " << txn_id << ","
1734
3
              << ss.str() << " , total rows: " << total_rows
1735
3
              << ", update delete_bitmap cost: " << watch.get_elapse_time_us() - t5 << "(us)";
1736
3
    return Status::OK();
1737
3
}
1738
1739
void BaseTablet::calc_compaction_output_rowset_delete_bitmap(
1740
        const std::vector<RowsetSharedPtr>& input_rowsets, const RowIdConversion& rowid_conversion,
1741
        uint64_t start_version, uint64_t end_version, std::set<RowLocation>* missed_rows,
1742
        std::map<RowsetSharedPtr, std::list<std::pair<RowLocation, RowLocation>>>* location_map,
1743
0
        const DeleteBitmap& input_delete_bitmap, DeleteBitmap* output_rowset_delete_bitmap) {
1744
0
    RowLocation src;
1745
0
    RowLocation dst;
1746
0
    for (auto& rowset : input_rowsets) {
1747
0
        src.rowset_id = rowset->rowset_id();
1748
0
        for (uint32_t seg_id = 0; seg_id < rowset->num_segments(); ++seg_id) {
1749
0
            src.segment_id = seg_id;
1750
0
            DeleteBitmap subset_map(tablet_id());
1751
0
            input_delete_bitmap.subset({rowset->rowset_id(), seg_id, start_version},
1752
0
                                       {rowset->rowset_id(), seg_id, end_version}, &subset_map);
1753
            // traverse all versions and convert rowid
1754
0
            for (auto iter = subset_map.delete_bitmap.begin();
1755
0
                 iter != subset_map.delete_bitmap.end(); ++iter) {
1756
0
                auto cur_version = std::get<2>(iter->first);
1757
0
                for (auto index = iter->second.begin(); index != iter->second.end(); ++index) {
1758
0
                    src.row_id = *index;
1759
0
                    if (rowid_conversion.get(src, &dst) != 0) {
1760
0
                        VLOG_CRITICAL << "Can't find rowid, may be deleted by the delete_handler, "
1761
0
                                      << " src loaction: |" << src.rowset_id << "|"
1762
0
                                      << src.segment_id << "|" << src.row_id
1763
0
                                      << " version: " << cur_version;
1764
0
                        if (missed_rows) {
1765
0
                            missed_rows->insert(src);
1766
0
                        }
1767
0
                        continue;
1768
0
                    }
1769
0
                    VLOG_DEBUG << "calc_compaction_output_rowset_delete_bitmap dst location: |"
1770
0
                               << dst.rowset_id << "|" << dst.segment_id << "|" << dst.row_id
1771
0
                               << " src location: |" << src.rowset_id << "|" << src.segment_id
1772
0
                               << "|" << src.row_id << " start version: " << start_version
1773
0
                               << "end version" << end_version;
1774
0
                    if (location_map) {
1775
0
                        (*location_map)[rowset].emplace_back(src, dst);
1776
0
                    }
1777
0
                    output_rowset_delete_bitmap->add({dst.rowset_id, dst.segment_id, cur_version},
1778
0
                                                     dst.row_id);
1779
0
                }
1780
0
            }
1781
0
        }
1782
0
    }
1783
0
}
1784
1785
Status BaseTablet::check_rowid_conversion(
1786
        RowsetSharedPtr dst_rowset,
1787
        const std::map<RowsetSharedPtr, std::list<std::pair<RowLocation, RowLocation>>>&
1788
0
                location_map) {
1789
0
    if (location_map.empty()) {
1790
0
        VLOG_DEBUG << "check_rowid_conversion, location_map is empty";
1791
0
        return Status::OK();
1792
0
    }
1793
0
    std::vector<segment_v2::SegmentSharedPtr> dst_segments;
1794
1795
0
    RETURN_IF_ERROR(
1796
0
            std::dynamic_pointer_cast<BetaRowset>(dst_rowset)->load_segments(&dst_segments));
1797
0
    std::unordered_map<RowsetId, std::vector<segment_v2::SegmentSharedPtr>> input_rowsets_segment;
1798
1799
0
    VLOG_DEBUG << "check_rowid_conversion, dst_segments size: " << dst_segments.size();
1800
0
    for (auto [src_rowset, locations] : location_map) {
1801
0
        std::vector<segment_v2::SegmentSharedPtr>& segments =
1802
0
                input_rowsets_segment[src_rowset->rowset_id()];
1803
0
        if (segments.empty()) {
1804
0
            RETURN_IF_ERROR(
1805
0
                    std::dynamic_pointer_cast<BetaRowset>(src_rowset)->load_segments(&segments));
1806
0
        }
1807
0
        for (auto& [src, dst] : locations) {
1808
0
            std::string src_key;
1809
0
            std::string dst_key;
1810
0
            Status s = segments[src.segment_id]->read_key_by_rowid(src.row_id, &src_key);
1811
0
            if (UNLIKELY(s.is<NOT_IMPLEMENTED_ERROR>())) {
1812
0
                LOG(INFO) << "primary key index of old version does not "
1813
0
                             "support reading key by rowid";
1814
0
                break;
1815
0
            }
1816
0
            if (UNLIKELY(!s)) {
1817
0
                LOG(WARNING) << "failed to get src key: |" << src.rowset_id << "|" << src.segment_id
1818
0
                             << "|" << src.row_id << " status: " << s;
1819
0
                DCHECK(false);
1820
0
                return s;
1821
0
            }
1822
1823
0
            s = dst_segments[dst.segment_id]->read_key_by_rowid(dst.row_id, &dst_key);
1824
0
            if (UNLIKELY(!s)) {
1825
0
                LOG(WARNING) << "failed to get dst key: |" << dst.rowset_id << "|" << dst.segment_id
1826
0
                             << "|" << dst.row_id << " status: " << s;
1827
0
                DCHECK(false);
1828
0
                return s;
1829
0
            }
1830
1831
0
            VLOG_DEBUG << "check_rowid_conversion, src: |" << src.rowset_id << "|" << src.segment_id
1832
0
                       << "|" << src.row_id << "|" << src_key << " dst: |" << dst.rowset_id << "|"
1833
0
                       << dst.segment_id << "|" << dst.row_id << "|" << dst_key;
1834
0
            if (UNLIKELY(src_key.compare(dst_key) != 0)) {
1835
0
                LOG(WARNING) << "failed to check key, src key: |" << src.rowset_id << "|"
1836
0
                             << src.segment_id << "|" << src.row_id << "|" << src_key
1837
0
                             << " dst key: |" << dst.rowset_id << "|" << dst.segment_id << "|"
1838
0
                             << dst.row_id << "|" << dst_key;
1839
0
                DCHECK(false);
1840
0
                return Status::InternalError("failed to check rowid conversion");
1841
0
            }
1842
0
        }
1843
0
    }
1844
0
    return Status::OK();
1845
0
}
1846
1847
// The caller should hold _rowset_update_lock and _meta_lock lock.
1848
Status BaseTablet::update_delete_bitmap_without_lock(
1849
        const BaseTabletSPtr& self, const RowsetSharedPtr& rowset,
1850
0
        const std::vector<RowsetSharedPtr>* specified_base_rowsets) {
1851
0
    DBUG_EXECUTE_IF("BaseTablet.update_delete_bitmap_without_lock.random_failed", {
1852
0
        auto rnd = rand() % 100;
1853
0
        auto percent = dp->param("percent", 0.1);
1854
0
        if (rnd < (100 * percent)) {
1855
0
            LOG(WARNING) << "BaseTablet.update_delete_bitmap_without_lock.random_failed";
1856
0
            return Status::InternalError(
1857
0
                    "debug tablet update delete bitmap without lock random failed");
1858
0
        } else {
1859
0
            LOG(INFO) << "BaseTablet.update_delete_bitmap_without_lock.random_failed not "
1860
0
                         "triggered"
1861
0
                      << ", rnd:" << rnd << ", percent: " << percent;
1862
0
        }
1863
0
    });
1864
0
    int64_t cur_version = rowset->start_version();
1865
0
    std::vector<segment_v2::SegmentSharedPtr> segments;
1866
0
    RETURN_IF_ERROR(std::dynamic_pointer_cast<BetaRowset>(rowset)->load_segments(&segments));
1867
1868
    // If this rowset does not have a segment, there is no need for an update.
1869
0
    if (segments.empty()) {
1870
0
        LOG(INFO) << "[Schema Change or Clone] skip to construct delete bitmap tablet: "
1871
0
                  << self->tablet_id() << " cur max_version: " << cur_version;
1872
0
        return Status::OK();
1873
0
    }
1874
1875
    // calculate delete bitmap between segments if necessary.
1876
0
    DeleteBitmapPtr delete_bitmap = std::make_shared<DeleteBitmap>(self->tablet_id());
1877
0
    RETURN_IF_ERROR(self->calc_delete_bitmap_between_segments(
1878
0
            rowset->tablet_schema(), rowset->rowset_id(), segments, delete_bitmap));
1879
1880
    // get all base rowsets to calculate on
1881
0
    std::vector<RowsetSharedPtr> specified_rowsets;
1882
0
    RowsetIdUnorderedSet cur_rowset_ids;
1883
0
    if (specified_base_rowsets == nullptr) {
1884
0
        RETURN_IF_ERROR(self->get_all_rs_id_unlocked(cur_version - 1, &cur_rowset_ids));
1885
0
        specified_rowsets = self->get_rowset_by_ids(&cur_rowset_ids);
1886
0
    } else {
1887
0
        specified_rowsets = *specified_base_rowsets;
1888
0
    }
1889
1890
0
    OlapStopWatch watch;
1891
0
    auto token = self->calc_delete_bitmap_executor()->create_token();
1892
0
    RETURN_IF_ERROR(calc_delete_bitmap(self, rowset, segments, specified_rowsets, delete_bitmap,
1893
0
                                       cur_version - 1, token.get()));
1894
0
    RETURN_IF_ERROR(token->wait());
1895
0
    size_t total_rows = std::accumulate(
1896
0
            segments.begin(), segments.end(), 0,
1897
0
            [](size_t sum, const segment_v2::SegmentSharedPtr& s) { return sum += s->num_rows(); });
1898
0
    LOG(INFO) << "[Schema Change or Clone] construct delete bitmap tablet: " << self->tablet_id()
1899
0
              << ", rowset_ids: " << cur_rowset_ids.size() << ", cur max_version: " << cur_version
1900
0
              << ", transaction_id: " << -1 << ", cost: " << watch.get_elapse_time_us()
1901
0
              << "(us), total rows: " << total_rows;
1902
0
    if (config::enable_merge_on_write_correctness_check) {
1903
        // check if all the rowset has ROWSET_SENTINEL_MARK
1904
0
        auto st = self->check_delete_bitmap_correctness(delete_bitmap, cur_version - 1, -1,
1905
0
                                                        cur_rowset_ids, &specified_rowsets);
1906
0
        if (!st.ok()) {
1907
0
            LOG(WARNING) << fmt::format("delete bitmap correctness check failed in publish phase!");
1908
0
        }
1909
0
        delete_bitmap->remove_sentinel_marks();
1910
0
    }
1911
0
    for (auto& iter : delete_bitmap->delete_bitmap) {
1912
0
        self->_tablet_meta->delete_bitmap().merge(
1913
0
                {std::get<0>(iter.first), std::get<1>(iter.first), cur_version}, iter.second);
1914
0
    }
1915
1916
0
    return Status::OK();
1917
0
}
1918
1919
void BaseTablet::agg_delete_bitmap_for_stale_rowsets(
1920
0
        Version version, DeleteBitmapKeyRanges& remove_delete_bitmap_key_ranges) {
1921
0
    if (!config::enable_agg_and_remove_pre_rowsets_delete_bitmap) {
1922
0
        return;
1923
0
    }
1924
0
    if (!(keys_type() == UNIQUE_KEYS && enable_unique_key_merge_on_write())) {
1925
0
        return;
1926
0
    }
1927
0
    int64_t start_version = version.first;
1928
0
    int64_t end_version = version.second;
1929
0
    if (start_version == end_version) {
1930
0
        return;
1931
0
    }
1932
0
    DCHECK(start_version < end_version)
1933
0
            << ". start_version: " << start_version << ", end_version: " << end_version;
1934
    // get pre rowsets
1935
0
    std::vector<RowsetSharedPtr> pre_rowsets {};
1936
0
    {
1937
0
        std::shared_lock rdlock(_meta_lock);
1938
0
        for (const auto& it2 : _rs_version_map) {
1939
0
            if (it2.first.second < start_version) {
1940
0
                pre_rowsets.emplace_back(it2.second);
1941
0
            }
1942
0
        }
1943
0
    }
1944
0
    std::sort(pre_rowsets.begin(), pre_rowsets.end(), Rowset::comparator);
1945
    // do agg for pre rowsets
1946
0
    DeleteBitmapPtr new_delete_bitmap = std::make_shared<DeleteBitmap>(tablet_id());
1947
0
    for (auto& rowset : pre_rowsets) {
1948
0
        for (uint32_t seg_id = 0; seg_id < rowset->num_segments(); ++seg_id) {
1949
0
            auto d = tablet_meta()->delete_bitmap().get_agg_without_cache(
1950
0
                    {rowset->rowset_id(), seg_id, end_version}, start_version);
1951
0
            if (d->isEmpty()) {
1952
0
                continue;
1953
0
            }
1954
0
            VLOG_DEBUG << "agg delete bitmap for tablet_id=" << tablet_id()
1955
0
                       << ", rowset_id=" << rowset->rowset_id() << ", seg_id=" << seg_id
1956
0
                       << ", rowset_version=" << rowset->version().to_string()
1957
0
                       << ". compaction start_version=" << start_version
1958
0
                       << ", end_version=" << end_version << ", delete_bitmap=" << d->cardinality();
1959
0
            DeleteBitmap::BitmapKey start_key {rowset->rowset_id(), seg_id, start_version};
1960
0
            DeleteBitmap::BitmapKey end_key {rowset->rowset_id(), seg_id, end_version};
1961
0
            new_delete_bitmap->set(end_key, *d);
1962
0
            remove_delete_bitmap_key_ranges.emplace_back(start_key, end_key);
1963
0
        }
1964
0
    }
1965
0
    DBUG_EXECUTE_IF("BaseTablet.agg_delete_bitmap_for_stale_rowsets.merge_delete_bitmap.block",
1966
0
                    DBUG_BLOCK);
1967
0
    tablet_meta()->delete_bitmap().merge(*new_delete_bitmap);
1968
0
}
1969
1970
void BaseTablet::check_agg_delete_bitmap_for_stale_rowsets(int64_t& useless_rowset_count,
1971
0
                                                           int64_t& useless_rowset_version_count) {
1972
0
    std::map<RowsetId, Version> rowset_ids;
1973
0
    std::set<int64_t> end_versions;
1974
0
    traverse_rowsets(
1975
0
            [&rowset_ids, &end_versions](const RowsetSharedPtr& rs) {
1976
0
                rowset_ids[rs->rowset_id()] = rs->version();
1977
0
                end_versions.emplace(rs->end_version());
1978
0
            },
1979
0
            true);
1980
1981
0
    std::set<RowsetId> useless_rowsets;
1982
0
    std::map<RowsetId, std::vector<int64_t>> useless_rowset_versions;
1983
0
    {
1984
0
        _tablet_meta->delete_bitmap().traverse_rowset_and_version(
1985
                // 0: rowset and rowset with version exists
1986
                // -1: rowset does not exist
1987
                // -2: find next <rowset, version>
1988
                //     rowset exist, rowset with version does not exist
1989
                //     sequence table
1990
0
                [&](const RowsetId& rowset_id, int64_t version) {
1991
0
                    auto rowset_it = rowset_ids.find(rowset_id);
1992
0
                    if (rowset_it == rowset_ids.end()) {
1993
0
                        useless_rowsets.emplace(rowset_id);
1994
0
                        return -1;
1995
0
                    }
1996
0
                    if (end_versions.find(version) == end_versions.end()) {
1997
0
                        if (tablet_schema()->has_sequence_col()) {
1998
0
                            auto rowset_version = rowset_it->second;
1999
0
                            if (version >= rowset_version.first &&
2000
0
                                version <= rowset_version.second) {
2001
0
                                return -2;
2002
0
                            }
2003
0
                        }
2004
0
                        if (useless_rowset_versions.find(rowset_id) ==
2005
0
                            useless_rowset_versions.end()) {
2006
0
                            useless_rowset_versions[rowset_id] = {};
2007
0
                        }
2008
0
                        useless_rowset_versions[rowset_id].emplace_back(version);
2009
0
                        return -2;
2010
0
                    }
2011
0
                    return 0;
2012
0
                });
2013
0
    }
2014
0
    useless_rowset_count = useless_rowsets.size();
2015
0
    useless_rowset_version_count = useless_rowset_versions.size();
2016
0
    if (!useless_rowsets.empty() || !useless_rowset_versions.empty()) {
2017
0
        std::stringstream ss;
2018
0
        if (!useless_rowsets.empty()) {
2019
0
            ss << "useless rowsets: {";
2020
0
            for (auto it = useless_rowsets.begin(); it != useless_rowsets.end(); ++it) {
2021
0
                if (it != useless_rowsets.begin()) {
2022
0
                    ss << ", ";
2023
0
                }
2024
0
                ss << it->to_string();
2025
0
            }
2026
0
            ss << "}. ";
2027
0
        }
2028
0
        if (!useless_rowset_versions.empty()) {
2029
0
            ss << "useless rowset versions: {";
2030
0
            for (auto iter = useless_rowset_versions.begin(); iter != useless_rowset_versions.end();
2031
0
                 ++iter) {
2032
0
                if (iter != useless_rowset_versions.begin()) {
2033
0
                    ss << ", ";
2034
0
                }
2035
0
                ss << iter->first.to_string() << ": [";
2036
                // some versions are continuous, such as [8, 9, 10, 11, 13, 17, 18]
2037
                // print as [8-11, 13, 17-18]
2038
0
                int64_t last_start_version = -1;
2039
0
                int64_t last_end_version = -1;
2040
0
                for (int64_t version : iter->second) {
2041
0
                    if (last_start_version == -1) {
2042
0
                        last_start_version = version;
2043
0
                        last_end_version = version;
2044
0
                        continue;
2045
0
                    }
2046
0
                    if (last_end_version + 1 == version) {
2047
0
                        last_end_version = version;
2048
0
                    } else {
2049
0
                        if (last_start_version == last_end_version) {
2050
0
                            ss << last_start_version << ", ";
2051
0
                        } else {
2052
0
                            ss << last_start_version << "-" << last_end_version << ", ";
2053
0
                        }
2054
0
                        last_start_version = version;
2055
0
                        last_end_version = version;
2056
0
                    }
2057
0
                }
2058
0
                if (last_start_version == last_end_version) {
2059
0
                    ss << last_start_version;
2060
0
                } else {
2061
0
                    ss << last_start_version << "-" << last_end_version;
2062
0
                }
2063
2064
0
                ss << "]";
2065
0
            }
2066
0
            ss << "}.";
2067
0
        }
2068
0
        LOG(WARNING) << "failed check_agg_delete_bitmap_for_stale_rowsets for tablet_id="
2069
0
                     << tablet_id() << ". " << ss.str();
2070
0
    } else {
2071
0
        LOG(INFO) << "succeed check_agg_delete_bitmap_for_stale_rowsets for tablet_id="
2072
0
                  << tablet_id();
2073
0
    }
2074
0
}
2075
2076
0
RowsetSharedPtr BaseTablet::get_rowset(const RowsetId& rowset_id) {
2077
0
    std::shared_lock rdlock(_meta_lock);
2078
0
    for (auto& version_rowset : _rs_version_map) {
2079
0
        if (version_rowset.second->rowset_id() == rowset_id) {
2080
0
            return version_rowset.second;
2081
0
        }
2082
0
    }
2083
0
    for (auto& stale_version_rowset : _stale_rs_version_map) {
2084
0
        if (stale_version_rowset.second->rowset_id() == rowset_id) {
2085
0
            return stale_version_rowset.second;
2086
0
        }
2087
0
    }
2088
0
    return nullptr;
2089
0
}
2090
2091
1
std::vector<RowsetSharedPtr> BaseTablet::get_snapshot_rowset(bool include_stale_rowset) const {
2092
1
    std::shared_lock rdlock(_meta_lock);
2093
1
    std::vector<RowsetSharedPtr> rowsets;
2094
1
    std::transform(_rs_version_map.cbegin(), _rs_version_map.cend(), std::back_inserter(rowsets),
2095
28
                   [](auto& kv) { return kv.second; });
2096
1
    if (include_stale_rowset) {
2097
0
        std::transform(_stale_rs_version_map.cbegin(), _stale_rs_version_map.cend(),
2098
0
                       std::back_inserter(rowsets), [](auto& kv) { return kv.second; });
2099
0
    }
2100
1
    return rowsets;
2101
1
}
2102
2103
void BaseTablet::calc_consecutive_empty_rowsets(
2104
        std::vector<RowsetSharedPtr>* empty_rowsets,
2105
4
        const std::vector<RowsetSharedPtr>& candidate_rowsets, int64_t limit) {
2106
4
    int len = cast_set<int>(candidate_rowsets.size());
2107
12
    for (int i = 0; i < len - 1; ++i) {
2108
9
        auto rowset = candidate_rowsets[i];
2109
9
        auto next_rowset = candidate_rowsets[i + 1];
2110
2111
        // identify two consecutive rowsets that are empty
2112
9
        if (rowset->num_segments() == 0 && next_rowset->num_segments() == 0 &&
2113
9
            !rowset->rowset_meta()->has_delete_predicate() &&
2114
9
            !next_rowset->rowset_meta()->has_delete_predicate() &&
2115
9
            rowset->end_version() == next_rowset->start_version() - 1) {
2116
1
            empty_rowsets->emplace_back(rowset);
2117
1
            empty_rowsets->emplace_back(next_rowset);
2118
1
            rowset = next_rowset;
2119
1
            int next_index = i + 2;
2120
2121
            // keep searching for consecutive empty rowsets
2122
6
            while (next_index < len && candidate_rowsets[next_index]->num_segments() == 0 &&
2123
6
                   !candidate_rowsets[next_index]->rowset_meta()->has_delete_predicate() &&
2124
6
                   rowset->end_version() == candidate_rowsets[next_index]->start_version() - 1) {
2125
5
                empty_rowsets->emplace_back(candidate_rowsets[next_index]);
2126
5
                rowset = candidate_rowsets[next_index++];
2127
5
            }
2128
            // if the number of consecutive empty rowset reach the limit,
2129
            // and there are still rowsets following them
2130
1
            if (empty_rowsets->size() >= limit && next_index < len) {
2131
1
                return;
2132
1
            } else {
2133
                // current rowset is not empty, start searching from that rowset in the next
2134
0
                i = next_index - 1;
2135
0
                empty_rowsets->clear();
2136
0
            }
2137
1
        }
2138
9
    }
2139
4
}
2140
2141
Status BaseTablet::calc_file_crc(uint32_t* crc_value, int64_t start_version, int64_t end_version,
2142
0
                                 uint32_t* rowset_count, int64_t* file_count) {
2143
0
    Version v(start_version, end_version);
2144
0
    std::vector<RowsetSharedPtr> rowsets;
2145
0
    traverse_rowsets([&rowsets, &v](const auto& rs) {
2146
        // get all rowsets
2147
0
        if (v.contains(rs->version())) {
2148
0
            rowsets.emplace_back(rs);
2149
0
        }
2150
0
    });
2151
0
    std::sort(rowsets.begin(), rowsets.end(), Rowset::comparator);
2152
0
    *rowset_count = cast_set<uint32_t>(rowsets.size());
2153
2154
0
    *crc_value = 0;
2155
0
    *file_count = 0;
2156
0
    for (const auto& rs : rowsets) {
2157
0
        uint32_t rs_crc_value = 0;
2158
0
        int64_t rs_file_count = 0;
2159
0
        auto rowset = std::static_pointer_cast<BetaRowset>(rs);
2160
0
        auto st = rowset->calc_file_crc(&rs_crc_value, &rs_file_count);
2161
0
        if (!st.ok()) {
2162
0
            return st;
2163
0
        }
2164
        // crc_value is calculated based on the crc_value of each rowset.
2165
0
        *crc_value = crc32c::Extend(*crc_value, reinterpret_cast<const uint8_t*>(&rs_crc_value),
2166
0
                                    sizeof(rs_crc_value));
2167
0
        *file_count += rs_file_count;
2168
0
    }
2169
0
    return Status::OK();
2170
0
}
2171
2172
0
Status BaseTablet::show_nested_index_file(std::string* json_meta) {
2173
0
    Version v(0, max_version_unlocked());
2174
0
    std::vector<RowsetSharedPtr> rowsets;
2175
0
    traverse_rowsets([&rowsets, &v](const auto& rs) {
2176
        // get all rowsets
2177
0
        if (v.contains(rs->version())) {
2178
0
            rowsets.emplace_back(rs);
2179
0
        }
2180
0
    });
2181
0
    std::sort(rowsets.begin(), rowsets.end(), Rowset::comparator);
2182
2183
0
    rapidjson::Document doc;
2184
0
    doc.SetObject();
2185
0
    rapidjson::Document::AllocatorType& allocator = doc.GetAllocator();
2186
0
    rapidjson::Value tabletIdValue(tablet_id());
2187
0
    doc.AddMember("tablet_id", tabletIdValue, allocator);
2188
2189
0
    rapidjson::Value rowsets_value(rapidjson::kArrayType);
2190
2191
0
    for (const auto& rs : rowsets) {
2192
0
        rapidjson::Value rowset_value(rapidjson::kObjectType);
2193
2194
0
        auto rowset = std::static_pointer_cast<BetaRowset>(rs);
2195
0
        RETURN_IF_ERROR(rowset->show_nested_index_file(&rowset_value, allocator));
2196
0
        rowsets_value.PushBack(rowset_value, allocator);
2197
0
    }
2198
0
    doc.AddMember("rowsets", rowsets_value, allocator);
2199
2200
0
    rapidjson::StringBuffer buffer;
2201
0
    rapidjson::PrettyWriter<rapidjson::StringBuffer> writer(buffer);
2202
0
    doc.Accept(writer);
2203
0
    *json_meta = std::string(buffer.GetString());
2204
2205
0
    return Status::OK();
2206
0
}
2207
2208
void BaseTablet::get_base_rowset_delete_bitmap_count(
2209
        uint64_t* max_base_rowset_delete_bitmap_score,
2210
0
        int64_t* max_base_rowset_delete_bitmap_score_tablet_id) {
2211
0
    std::vector<RowsetSharedPtr> rowsets_;
2212
0
    std::string base_rowset_id_str;
2213
0
    {
2214
0
        std::shared_lock rowset_ldlock(this->get_header_lock());
2215
0
        for (const auto& it : _rs_version_map) {
2216
0
            rowsets_.emplace_back(it.second);
2217
0
        }
2218
0
    }
2219
0
    std::sort(rowsets_.begin(), rowsets_.end(), Rowset::comparator);
2220
0
    if (!rowsets_.empty()) {
2221
0
        bool base_found = false;
2222
0
        for (auto& rowset : rowsets_) {
2223
0
            if (rowset->start_version() > 2) {
2224
0
                break;
2225
0
            }
2226
0
            base_found = true;
2227
0
            uint64_t base_rowset_delete_bitmap_count =
2228
0
                    this->tablet_meta()->delete_bitmap().get_count_with_range(
2229
0
                            {rowset->rowset_id(), 0, 0},
2230
0
                            {rowset->rowset_id(), UINT32_MAX, UINT64_MAX});
2231
0
            if (base_rowset_delete_bitmap_count > *max_base_rowset_delete_bitmap_score) {
2232
0
                *max_base_rowset_delete_bitmap_score = base_rowset_delete_bitmap_count;
2233
0
                *max_base_rowset_delete_bitmap_score_tablet_id = this->tablet_id();
2234
0
            }
2235
0
        }
2236
0
        if (!base_found) {
2237
0
            LOG(WARNING) << "can not found base rowset for tablet " << tablet_id();
2238
0
        }
2239
0
    }
2240
0
}
2241
2242
343
void TabletReadSource::fill_delete_predicates() {
2243
343
    DCHECK_EQ(delete_predicates.size(), 0);
2244
343
    auto delete_pred_view =
2245
1.24k
            rs_splits | std::views::transform([](auto&& split) {
2246
1.24k
                return split.rs_reader->rowset()->rowset_meta();
2247
1.24k
            }) |
2248
1.09k
            std::views::filter([](const auto& rs_meta) { return rs_meta->has_delete_predicate(); });
2249
343
    delete_predicates = {delete_pred_view.begin(), delete_pred_view.end()};
2250
343
}
2251
2252
57
int32_t BaseTablet::max_version_config() {
2253
57
    int32_t max_version = tablet_meta()->compaction_policy() == CUMULATIVE_TIME_SERIES_POLICY
2254
57
                                  ? std::max(config::time_series_max_tablet_version_num,
2255
0
                                             config::max_tablet_version_num)
2256
57
                                  : config::max_tablet_version_num;
2257
57
    return max_version;
2258
57
}
2259
2260
0
void BaseTablet::prefill_dbm_agg_cache(const RowsetSharedPtr& rowset, int64_t version) {
2261
0
    for (std::size_t i = 0; i < rowset->num_segments(); i++) {
2262
0
        tablet_meta()->delete_bitmap().get_agg({rowset->rowset_id(), i, version});
2263
0
    }
2264
0
}
2265
2266
0
void BaseTablet::prefill_dbm_agg_cache_after_compaction(const RowsetSharedPtr& output_rowset) {
2267
0
    if (keys_type() == KeysType::UNIQUE_KEYS && enable_unique_key_merge_on_write() &&
2268
0
        (config::enable_prefill_output_dbm_agg_cache_after_compaction ||
2269
0
         config::enable_prefill_all_dbm_agg_cache_after_compaction)) {
2270
0
        int64_t cur_max_version {-1};
2271
0
        {
2272
0
            std::shared_lock rlock(get_header_lock());
2273
0
            cur_max_version = max_version_unlocked();
2274
0
        }
2275
0
        if (config::enable_prefill_all_dbm_agg_cache_after_compaction) {
2276
0
            traverse_rowsets(
2277
0
                    [&](const RowsetSharedPtr& rs) { prefill_dbm_agg_cache(rs, cur_max_version); },
2278
0
                    false);
2279
0
        } else if (config::enable_prefill_output_dbm_agg_cache_after_compaction) {
2280
0
            prefill_dbm_agg_cache(output_rowset, cur_max_version);
2281
0
        }
2282
0
    }
2283
0
}
2284
2285
bool BaseTablet::_key_is_not_in_segment(Slice key, const KeyBoundsPB& segment_key_bounds,
2286
2
                                        bool is_segments_key_bounds_truncated) {
2287
2
    Slice maybe_truncated_min_key {segment_key_bounds.min_key()};
2288
2
    Slice maybe_truncated_max_key {segment_key_bounds.max_key()};
2289
2
    bool res1 = Slice::lhs_is_strictly_less_than_rhs(key, false, maybe_truncated_min_key,
2290
2
                                                     is_segments_key_bounds_truncated);
2291
2
    bool res2 = Slice::lhs_is_strictly_less_than_rhs(maybe_truncated_max_key,
2292
2
                                                     is_segments_key_bounds_truncated, key, false);
2293
2
    return res1 || res2;
2294
2
}
2295
2296
} // namespace doris