Coverage Report

Created: 2026-05-25 12:01

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/storage/partial_update_info.cpp
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Source
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// Licensed to the Apache Software Foundation (ASF) under one
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// or more contributor license agreements.  See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership.  The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// with the License.  You may obtain a copy of the License at
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//
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//   http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
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#include "storage/partial_update_info.h"
19
20
#include <gen_cpp/olap_file.pb.h>
21
22
#include <cstdint>
23
#include <optional>
24
25
#include "common/consts.h"
26
#include "common/logging.h"
27
#include "core/assert_cast.h"
28
#include "core/block/block.h"
29
#include "core/data_type/data_type_number.h" // IWYU pragma: keep
30
#include "core/value/bitmap_value.h"
31
#include "storage/iterator/olap_data_convertor.h"
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#include "storage/olap_common.h"
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#include "storage/rowset/rowset.h"
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#include "storage/rowset/rowset_writer_context.h"
35
#include "storage/segment/historical_row_retriever.h"
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#include "storage/segment/vertical_segment_writer.h"
37
#include "storage/tablet/base_tablet.h"
38
#include "storage/tablet/tablet_meta.h"
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#include "storage/tablet/tablet_schema.h"
40
#include "storage/utils.h"
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42
namespace doris {
43
namespace {
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45
0
ColumnBitmap* get_mutable_skip_bitmap_column(Block* block, size_t skip_bitmap_col_idx) {
46
0
    auto skip_bitmap_column =
47
0
            IColumn::mutate(std::move(block->get_by_position(skip_bitmap_col_idx).column));
48
0
    auto* skip_bitmap_column_ptr = assert_cast<ColumnBitmap*>(skip_bitmap_column.get());
49
0
    block->replace_by_position(skip_bitmap_col_idx, std::move(skip_bitmap_column));
50
0
    return skip_bitmap_column_ptr;
51
0
}
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} // namespace
54
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Status PartialUpdateInfo::init(int64_t tablet_id, int64_t txn_id, const TabletSchema& tablet_schema,
56
                               UniqueKeyUpdateModePB unique_key_update_mode,
57
                               PartialUpdateNewRowPolicyPB policy,
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                               const std::set<std::string>& partial_update_cols,
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                               bool is_strict_mode_, int64_t timestamp_ms_, int32_t nano_seconds_,
60
                               const std::string& timezone_,
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                               const std::string& auto_increment_column,
62
29
                               int32_t sequence_map_col_uid, int64_t cur_max_version) {
63
29
    partial_update_mode = unique_key_update_mode;
64
29
    partial_update_new_key_policy = policy;
65
29
    partial_update_input_columns = partial_update_cols;
66
29
    max_version_in_flush_phase = cur_max_version;
67
29
    sequence_map_col_unqiue_id = sequence_map_col_uid;
68
29
    timestamp_ms = timestamp_ms_;
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29
    nano_seconds = nano_seconds_;
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29
    timezone = timezone_;
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29
    missing_cids.clear();
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29
    update_cids.clear();
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74
29
    if (partial_update_mode == UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS) {
75
        // partial_update_cols should include all key columns
76
0
        for (std::size_t i {0}; i < tablet_schema.num_key_columns(); i++) {
77
0
            const auto key_col = tablet_schema.column(i);
78
0
            if (!partial_update_cols.contains(key_col.name())) {
79
0
                auto msg = fmt::format(
80
0
                        "Unable to do partial update on shadow index's tablet, tablet_id={}, "
81
0
                        "txn_id={}. Missing key column {}.",
82
0
                        tablet_id, txn_id, key_col.name());
83
0
                LOG_WARNING(msg);
84
0
                return Status::Aborted<false>(msg);
85
0
            }
86
0
        }
87
0
    }
88
29
    if (is_partial_update()) {
89
0
        for (auto i = 0; i < tablet_schema.num_columns(); ++i) {
90
0
            if (partial_update_mode == UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS) {
91
0
                auto tablet_column = tablet_schema.column(i);
92
0
                if (!partial_update_input_columns.contains(tablet_column.name())) {
93
0
                    missing_cids.emplace_back(i);
94
0
                    if (!tablet_column.has_default_value() && !tablet_column.is_nullable() &&
95
0
                        tablet_schema.auto_increment_column() != tablet_column.name()) {
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0
                        can_insert_new_rows_in_partial_update = false;
97
0
                    }
98
0
                } else {
99
0
                    update_cids.emplace_back(i);
100
0
                }
101
0
                if (auto_increment_column == tablet_column.name()) {
102
0
                    is_schema_contains_auto_inc_column = true;
103
0
                }
104
0
            } else {
105
                // in flexible partial update, missing cids is all non sort keys' cid
106
0
                if (i >= tablet_schema.num_key_columns()) {
107
0
                    missing_cids.emplace_back(i);
108
0
                }
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0
            }
110
0
        }
111
0
        _generate_default_values_for_missing_cids(tablet_schema);
112
0
    }
113
29
    is_strict_mode = is_strict_mode_;
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29
    is_input_columns_contains_auto_inc_column =
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29
            is_fixed_partial_update() &&
116
29
            partial_update_input_columns.contains(auto_increment_column);
117
29
    return Status::OK();
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29
}
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120
0
void PartialUpdateInfo::to_pb(PartialUpdateInfoPB* partial_update_info_pb) const {
121
0
    partial_update_info_pb->set_partial_update_mode(partial_update_mode);
122
0
    partial_update_info_pb->set_partial_update_new_key_policy(partial_update_new_key_policy);
123
0
    partial_update_info_pb->set_max_version_in_flush_phase(max_version_in_flush_phase);
124
0
    for (const auto& col : partial_update_input_columns) {
125
0
        partial_update_info_pb->add_partial_update_input_columns(col);
126
0
    }
127
0
    for (auto cid : missing_cids) {
128
0
        partial_update_info_pb->add_missing_cids(cid);
129
0
    }
130
0
    for (auto cid : update_cids) {
131
0
        partial_update_info_pb->add_update_cids(cid);
132
0
    }
133
0
    partial_update_info_pb->set_can_insert_new_rows_in_partial_update(
134
0
            can_insert_new_rows_in_partial_update);
135
0
    partial_update_info_pb->set_is_strict_mode(is_strict_mode);
136
0
    partial_update_info_pb->set_timestamp_ms(timestamp_ms);
137
0
    partial_update_info_pb->set_nano_seconds(nano_seconds);
138
0
    partial_update_info_pb->set_timezone(timezone);
139
0
    partial_update_info_pb->set_is_input_columns_contains_auto_inc_column(
140
0
            is_input_columns_contains_auto_inc_column);
141
0
    partial_update_info_pb->set_is_schema_contains_auto_inc_column(
142
0
            is_schema_contains_auto_inc_column);
143
0
    for (const auto& value : default_values) {
144
0
        partial_update_info_pb->add_default_values(value);
145
0
    }
146
0
}
147
148
0
void PartialUpdateInfo::from_pb(PartialUpdateInfoPB* partial_update_info_pb) {
149
0
    if (!partial_update_info_pb->has_partial_update_mode()) {
150
        // for backward compatibility
151
0
        if (partial_update_info_pb->is_partial_update()) {
152
0
            partial_update_mode = UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS;
153
0
        } else {
154
0
            partial_update_mode = UniqueKeyUpdateModePB::UPSERT;
155
0
        }
156
0
    } else {
157
0
        partial_update_mode = partial_update_info_pb->partial_update_mode();
158
0
    }
159
0
    if (partial_update_info_pb->has_partial_update_new_key_policy()) {
160
0
        partial_update_new_key_policy = partial_update_info_pb->partial_update_new_key_policy();
161
0
    }
162
0
    max_version_in_flush_phase = partial_update_info_pb->has_max_version_in_flush_phase()
163
0
                                         ? partial_update_info_pb->max_version_in_flush_phase()
164
0
                                         : -1;
165
0
    partial_update_input_columns.clear();
166
0
    for (const auto& col : partial_update_info_pb->partial_update_input_columns()) {
167
0
        partial_update_input_columns.insert(col);
168
0
    }
169
0
    missing_cids.clear();
170
0
    for (auto cid : partial_update_info_pb->missing_cids()) {
171
0
        missing_cids.push_back(cid);
172
0
    }
173
0
    update_cids.clear();
174
0
    for (auto cid : partial_update_info_pb->update_cids()) {
175
0
        update_cids.push_back(cid);
176
0
    }
177
0
    can_insert_new_rows_in_partial_update =
178
0
            partial_update_info_pb->can_insert_new_rows_in_partial_update();
179
0
    is_strict_mode = partial_update_info_pb->is_strict_mode();
180
0
    timestamp_ms = partial_update_info_pb->timestamp_ms();
181
0
    timezone = partial_update_info_pb->timezone();
182
0
    is_input_columns_contains_auto_inc_column =
183
0
            partial_update_info_pb->is_input_columns_contains_auto_inc_column();
184
0
    is_schema_contains_auto_inc_column =
185
0
            partial_update_info_pb->is_schema_contains_auto_inc_column();
186
0
    if (partial_update_info_pb->has_nano_seconds()) {
187
0
        nano_seconds = partial_update_info_pb->nano_seconds();
188
0
    }
189
0
    default_values.clear();
190
0
    for (const auto& value : partial_update_info_pb->default_values()) {
191
0
        default_values.push_back(value);
192
0
    }
193
0
}
194
195
0
std::string PartialUpdateInfo::summary() const {
196
0
    std::string mode;
197
0
    switch (partial_update_mode) {
198
0
    case UniqueKeyUpdateModePB::UPSERT:
199
0
        mode = "upsert";
200
0
        break;
201
0
    case UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS:
202
0
        mode = "fixed partial update";
203
0
        break;
204
0
    case UniqueKeyUpdateModePB::UPDATE_FLEXIBLE_COLUMNS:
205
0
        mode = "flexible partial update";
206
0
        break;
207
0
    }
208
0
    return fmt::format(
209
0
            "mode={}, update_cids={}, missing_cids={}, is_strict_mode={}, "
210
0
            "max_version_in_flush_phase={}",
211
0
            mode, update_cids.size(), missing_cids.size(), is_strict_mode,
212
0
            max_version_in_flush_phase);
213
0
}
214
215
Status PartialUpdateInfo::handle_new_key(const TabletSchema& tablet_schema,
216
                                         const std::function<std::string()>& line,
217
0
                                         BitmapValue* skip_bitmap) {
218
0
    switch (partial_update_new_key_policy) {
219
0
    case doris::PartialUpdateNewRowPolicyPB::APPEND: {
220
0
        if (partial_update_mode == UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS) {
221
0
            if (!can_insert_new_rows_in_partial_update) {
222
0
                std::string error_column;
223
0
                for (auto cid : missing_cids) {
224
0
                    const TabletColumn& col = tablet_schema.column(cid);
225
0
                    if (!col.has_default_value() && !col.is_nullable() &&
226
0
                        !(tablet_schema.auto_increment_column() == col.name())) {
227
0
                        error_column = col.name();
228
0
                        break;
229
0
                    }
230
0
                }
231
0
                return Status::Error<ErrorCode::INVALID_SCHEMA, false>(
232
0
                        "the unmentioned column `{}` should have default value or be nullable "
233
0
                        "for newly inserted rows in non-strict mode partial update",
234
0
                        error_column);
235
0
            }
236
0
        } else if (partial_update_mode == UniqueKeyUpdateModePB::UPDATE_FLEXIBLE_COLUMNS) {
237
0
            DCHECK(skip_bitmap != nullptr);
238
0
            bool can_insert_new_row {true};
239
0
            std::string error_column;
240
0
            for (auto cid : missing_cids) {
241
0
                const TabletColumn& col = tablet_schema.column(cid);
242
0
                if (skip_bitmap->contains(col.unique_id()) && !col.has_default_value() &&
243
0
                    !col.is_nullable() && !col.is_auto_increment()) {
244
0
                    error_column = col.name();
245
0
                    can_insert_new_row = false;
246
0
                    break;
247
0
                }
248
0
            }
249
0
            if (!can_insert_new_row) {
250
0
                return Status::Error<ErrorCode::INVALID_SCHEMA, false>(
251
0
                        "the unmentioned column `{}` should have default value or be "
252
0
                        "nullable for newly inserted rows in non-strict mode flexible partial "
253
0
                        "update",
254
0
                        error_column);
255
0
            }
256
0
        }
257
0
    } break;
258
0
    case doris::PartialUpdateNewRowPolicyPB::ERROR: {
259
0
        return Status::Error<ErrorCode::NEW_ROWS_IN_PARTIAL_UPDATE, false>(
260
0
                "Can't append new rows in partial update when partial_update_new_key_behavior is "
261
0
                "ERROR. Row with key=[{}] is not in table.",
262
0
                line());
263
0
    } break;
264
0
    }
265
0
    return Status::OK();
266
0
}
267
268
void PartialUpdateInfo::_generate_default_values_for_missing_cids(
269
0
        const TabletSchema& tablet_schema) {
270
0
    for (unsigned int cur_cid : missing_cids) {
271
0
        const auto& column = tablet_schema.column(cur_cid);
272
0
        if (column.has_default_value()) {
273
0
            std::string default_value;
274
0
            if (UNLIKELY((column.type() == FieldType::OLAP_FIELD_TYPE_DATETIMEV2 ||
275
0
                          column.type() == FieldType::OLAP_FIELD_TYPE_TIMESTAMPTZ) &&
276
0
                         to_lower(column.default_value()).find(to_lower("CURRENT_TIMESTAMP")) !=
277
0
                                 std::string::npos)) {
278
0
                auto pos = to_lower(column.default_value()).find('(');
279
0
                if (pos == std::string::npos) {
280
0
                    DateV2Value<DateTimeV2ValueType> dtv;
281
0
                    dtv.from_unixtime(timestamp_ms / 1000, timezone);
282
0
                    default_value = dtv.to_string();
283
0
                    if (column.type() == FieldType::OLAP_FIELD_TYPE_TIMESTAMPTZ) {
284
0
                        default_value += timezone;
285
0
                    }
286
0
                } else {
287
0
                    int precision = std::stoi(column.default_value().substr(pos + 1));
288
0
                    DateV2Value<DateTimeV2ValueType> dtv;
289
0
                    dtv.from_unixtime(timestamp_ms / 1000, nano_seconds, timezone, precision);
290
0
                    default_value = dtv.to_string();
291
0
                    if (column.type() == FieldType::OLAP_FIELD_TYPE_TIMESTAMPTZ) {
292
0
                        default_value += timezone;
293
0
                    }
294
0
                }
295
0
            } else if (UNLIKELY(column.type() == FieldType::OLAP_FIELD_TYPE_DATEV2 &&
296
0
                                to_lower(column.default_value()).find(to_lower("CURRENT_DATE")) !=
297
0
                                        std::string::npos)) {
298
0
                DateV2Value<DateV2ValueType> dv;
299
0
                dv.from_unixtime(timestamp_ms / 1000, timezone);
300
0
                default_value = dv.to_string();
301
0
            } else if (UNLIKELY(column.type() == FieldType::OLAP_FIELD_TYPE_BITMAP &&
302
0
                                to_lower(column.default_value()).find(to_lower("BITMAP_EMPTY")) !=
303
0
                                        std::string::npos)) {
304
0
                BitmapValue v = BitmapValue {};
305
0
                default_value = v.to_string();
306
0
            } else {
307
0
                default_value = column.default_value();
308
0
            }
309
0
            default_values.emplace_back(default_value);
310
0
        } else {
311
            // place an empty string here
312
0
            default_values.emplace_back();
313
0
        }
314
0
    }
315
0
    CHECK_EQ(missing_cids.size(), default_values.size());
316
0
}
317
318
0
bool FixedReadPlan::empty() const {
319
0
    return plan.empty();
320
0
}
321
322
0
void FixedReadPlan::prepare_to_read(const RowLocation& row_location, size_t pos) {
323
0
    plan[row_location.rowset_id][row_location.segment_id].emplace_back(row_location.row_id, pos);
324
0
}
325
326
// read columns by read plan
327
// read_index: ori_pos-> block_idx
328
Status FixedReadPlan::read_columns_by_plan(
329
        const TabletSchema& tablet_schema, std::vector<uint32_t> cids_to_read,
330
        const std::map<RowsetId, RowsetSharedPtr>& rsid_to_rowset, Block& block,
331
        std::map<uint32_t, uint32_t>* read_index, bool force_read_old_delete_signs,
332
0
        const signed char* __restrict cur_delete_signs) const {
333
0
    if (force_read_old_delete_signs) {
334
        // always read delete sign column from historical data
335
0
        if (block.get_position_by_name(DELETE_SIGN) == -1) {
336
0
            auto del_col_cid = tablet_schema.field_index(DELETE_SIGN);
337
0
            cids_to_read.emplace_back(del_col_cid);
338
0
            block.swap(tablet_schema.create_block_by_cids(cids_to_read));
339
0
        }
340
0
    }
341
0
    bool has_row_column = tablet_schema.has_row_store_for_all_columns();
342
0
    std::optional<Block::ScopedMutableColumns> mutable_columns_guard;
343
0
    MutableColumns* mutable_columns = nullptr;
344
0
    if (!has_row_column) {
345
0
        mutable_columns_guard.emplace(block);
346
0
        mutable_columns = &mutable_columns_guard->mutable_columns();
347
0
    }
348
0
    uint32_t read_idx = 0;
349
0
    for (const auto& [rowset_id, segment_row_mappings] : plan) {
350
0
        for (const auto& [segment_id, mappings] : segment_row_mappings) {
351
0
            auto rowset_iter = rsid_to_rowset.find(rowset_id);
352
0
            CHECK(rowset_iter != rsid_to_rowset.end());
353
0
            std::vector<uint32_t> rids;
354
0
            for (auto [rid, pos] : mappings) {
355
0
                if (cur_delete_signs && cur_delete_signs[pos]) {
356
0
                    continue;
357
0
                }
358
0
                rids.emplace_back(rid);
359
0
                (*read_index)[static_cast<uint32_t>(pos)] = read_idx++;
360
0
            }
361
0
            if (has_row_column) {
362
0
                auto st = BaseTablet::fetch_value_through_row_column(
363
0
                        rowset_iter->second, tablet_schema, segment_id, rids, cids_to_read, block);
364
0
                if (!st.ok()) {
365
0
                    LOG(WARNING) << "failed to fetch value through row column";
366
0
                    return st;
367
0
                }
368
0
                continue;
369
0
            }
370
0
            for (size_t cid = 0; cid < mutable_columns->size(); ++cid) {
371
0
                TabletColumn tablet_column = tablet_schema.column(cids_to_read[cid]);
372
0
                auto st = doris::BaseTablet::fetch_value_by_rowids(rowset_iter->second, segment_id,
373
0
                                                                   rids, tablet_column,
374
0
                                                                   (*mutable_columns)[cid]);
375
                // set read value to output block
376
0
                if (!st.ok()) {
377
0
                    LOG(WARNING) << "failed to fetch value";
378
0
                    return st;
379
0
                }
380
0
            }
381
0
        }
382
0
    }
383
0
    return Status::OK();
384
0
}
385
386
Status FixedReadPlan::fill_missing_columns(
387
        const segment_v2::HistoricalRowRetrieverContext& historical_context,
388
        const std::map<RowsetId, RowsetSharedPtr>& rsid_to_rowset,
389
        const TabletSchema& tablet_schema, Block& full_block,
390
        const std::vector<bool>& use_default_or_null_flag, bool has_default_or_nullable,
391
0
        uint32_t segment_start_pos, const Block* block) const {
392
0
    auto mutable_full_columns_guard = full_block.mutate_columns_scoped();
393
0
    auto& mutable_full_columns = mutable_full_columns_guard.mutable_columns();
394
    // create old value columns
395
0
    DCHECK(historical_context.partial_update_info != nullptr);
396
0
    DCHECK(historical_context.tablet_schema != nullptr);
397
0
    const auto& partial_update_info = *historical_context.partial_update_info;
398
0
    const auto& missing_cids = partial_update_info.missing_cids;
399
0
    bool have_input_seq_column = false;
400
0
    if (tablet_schema.has_sequence_col()) {
401
0
        const std::vector<uint32_t>& including_cids = partial_update_info.update_cids;
402
0
        have_input_seq_column =
403
0
                (std::find(including_cids.cbegin(), including_cids.cend(),
404
0
                           tablet_schema.sequence_col_idx()) != including_cids.cend());
405
0
    }
406
407
0
    auto old_value_block = tablet_schema.create_block_by_cids(missing_cids);
408
0
    CHECK_EQ(missing_cids.size(), old_value_block.columns());
409
410
    // segment pos to write -> rowid to read in old_value_block
411
0
    std::map<uint32_t, uint32_t> read_index;
412
0
    RETURN_IF_ERROR(read_columns_by_plan(tablet_schema, missing_cids, rsid_to_rowset,
413
0
                                         old_value_block, &read_index, true, nullptr));
414
415
0
    const auto* old_delete_signs = BaseTablet::get_delete_sign_column_data(old_value_block);
416
0
    if (old_delete_signs == nullptr) {
417
0
        return Status::InternalError("old delete signs column not found, block: {}",
418
0
                                     old_value_block.dump_structure());
419
0
    }
420
    // build default value columns
421
0
    auto default_value_block = old_value_block.clone_empty();
422
0
    RETURN_IF_ERROR(BaseTablet::generate_default_value_block(tablet_schema, missing_cids,
423
0
                                                             partial_update_info.default_values,
424
0
                                                             old_value_block, default_value_block));
425
0
    auto mutable_default_value_columns_guard = default_value_block.mutate_columns_scoped();
426
0
    auto& mutable_default_value_columns = mutable_default_value_columns_guard.mutable_columns();
427
428
    // fill all missing value from mutable_old_columns, need to consider default value and null value
429
0
    for (auto idx = 0; idx < use_default_or_null_flag.size(); idx++) {
430
0
        auto segment_pos = idx + segment_start_pos;
431
0
        auto pos_in_old_block = read_index[segment_pos];
432
433
0
        for (auto i = 0; i < missing_cids.size(); ++i) {
434
            // if the column has default value, fill it with default value
435
            // otherwise, if the column is nullable, fill it with null value
436
0
            const auto& tablet_column = tablet_schema.column(missing_cids[i]);
437
0
            auto& missing_col = mutable_full_columns[missing_cids[i]];
438
439
0
            bool should_use_default = use_default_or_null_flag[idx];
440
0
            if (!should_use_default) {
441
0
                bool old_row_delete_sign =
442
0
                        (old_delete_signs != nullptr && old_delete_signs[pos_in_old_block] != 0);
443
0
                if (old_row_delete_sign) {
444
0
                    if (!tablet_schema.has_sequence_col()) {
445
0
                        should_use_default = true;
446
0
                    } else if (have_input_seq_column || (!tablet_column.is_seqeunce_col())) {
447
                        // to keep the sequence column value not decreasing, we should read values of seq column
448
                        // from old rows even if the old row is deleted when the input don't specify the sequence column, otherwise
449
                        // it may cause the merge-on-read based compaction to produce incorrect results
450
0
                        should_use_default = true;
451
0
                    }
452
0
                }
453
0
            }
454
455
0
            if (should_use_default) {
456
0
                if (tablet_column.has_default_value()) {
457
0
                    missing_col->insert_from(*mutable_default_value_columns[i], 0);
458
0
                } else if (tablet_column.is_nullable()) {
459
0
                    auto* nullable_column = assert_cast<ColumnNullable*>(missing_col.get());
460
0
                    nullable_column->insert_many_defaults(1);
461
0
                } else if (tablet_schema.auto_increment_column() == tablet_column.name()) {
462
0
                    const auto& column = *DORIS_TRY(
463
0
                            historical_context.tablet_schema->column(tablet_column.name()));
464
0
                    DCHECK(column.type() == FieldType::OLAP_FIELD_TYPE_BIGINT);
465
0
                    auto* auto_inc_column = assert_cast<ColumnInt64*>(missing_col.get());
466
0
                    int pos = block->get_position_by_name(BeConsts::PARTIAL_UPDATE_AUTO_INC_COL);
467
0
                    if (pos == -1) {
468
0
                        return Status::InternalError("auto increment column not found in block {}",
469
0
                                                     block->dump_structure());
470
0
                    }
471
0
                    auto_inc_column->insert_from(*block->get_by_position(pos).column.get(), idx);
472
0
                } else {
473
                    // If the control flow reaches this branch, the column neither has default value
474
                    // nor is nullable. It means that the row's delete sign is marked, and the value
475
                    // columns are useless and won't be read. So we can just put arbitary values in the cells
476
0
                    missing_col->insert_default();
477
0
                }
478
0
            } else {
479
0
                missing_col->insert_from(*old_value_block.get_by_position(i).column,
480
0
                                         pos_in_old_block);
481
0
            }
482
0
        }
483
0
    }
484
0
    return Status::OK();
485
0
}
486
487
void FlexibleReadPlan::prepare_to_read(const RowLocation& row_location, size_t pos,
488
0
                                       const BitmapValue& skip_bitmap) {
489
0
    if (!use_row_store) {
490
0
        for (uint64_t col_uid : skip_bitmap) {
491
0
            plan[row_location.rowset_id][row_location.segment_id][static_cast<uint32_t>(col_uid)]
492
0
                    .emplace_back(row_location.row_id, pos);
493
0
        }
494
0
    } else {
495
0
        row_store_plan[row_location.rowset_id][row_location.segment_id].emplace_back(
496
0
                row_location.row_id, pos);
497
0
    }
498
0
}
499
500
Status FlexibleReadPlan::read_columns_by_plan(
501
        const TabletSchema& tablet_schema,
502
        const std::map<RowsetId, RowsetSharedPtr>& rsid_to_rowset, Block& old_value_block,
503
0
        std::map<uint32_t, std::map<uint32_t, uint32_t>>* read_index) const {
504
0
    auto mutable_columns_guard = old_value_block.mutate_columns_scoped();
505
0
    auto& mutable_columns = mutable_columns_guard.mutable_columns();
506
507
    // cid -> next rid to fill in block
508
0
    std::map<uint32_t, uint32_t> next_read_idx;
509
0
    for (uint32_t cid {0}; cid < tablet_schema.num_columns(); cid++) {
510
0
        next_read_idx[cid] = 0;
511
0
    }
512
513
0
    for (const auto& [rowset_id, segment_mappings] : plan) {
514
0
        for (const auto& [segment_id, uid_mappings] : segment_mappings) {
515
0
            for (const auto& [col_uid, mappings] : uid_mappings) {
516
0
                auto rowset_iter = rsid_to_rowset.find(rowset_id);
517
0
                CHECK(rowset_iter != rsid_to_rowset.end());
518
0
                auto cid = tablet_schema.field_index(col_uid);
519
0
                DCHECK_NE(cid, -1);
520
0
                DCHECK_GE(cid, tablet_schema.num_key_columns());
521
0
                std::vector<uint32_t> rids;
522
0
                for (auto [rid, pos] : mappings) {
523
0
                    rids.emplace_back(rid);
524
0
                    (*read_index)[cid][static_cast<uint32_t>(pos)] = next_read_idx[cid]++;
525
0
                }
526
527
0
                TabletColumn tablet_column = tablet_schema.column(cid);
528
0
                auto idx = cid - tablet_schema.num_key_columns();
529
0
                RETURN_IF_ERROR(doris::BaseTablet::fetch_value_by_rowids(
530
0
                        rowset_iter->second, segment_id, rids, tablet_column,
531
0
                        mutable_columns[idx]));
532
0
            }
533
0
        }
534
0
    }
535
    // !!!ATTENTION!!!: columns in block may have different size because every row has different columns to update
536
0
    return Status::OK();
537
0
}
538
539
Status FlexibleReadPlan::read_columns_by_plan(
540
        const TabletSchema& tablet_schema, const std::vector<uint32_t>& cids_to_read,
541
        const std::map<RowsetId, RowsetSharedPtr>& rsid_to_rowset, Block& old_value_block,
542
0
        std::map<uint32_t, uint32_t>* read_index) const {
543
0
    DCHECK(use_row_store);
544
0
    uint32_t read_idx = 0;
545
0
    for (const auto& [rowset_id, segment_row_mappings] : row_store_plan) {
546
0
        for (const auto& [segment_id, mappings] : segment_row_mappings) {
547
0
            auto rowset_iter = rsid_to_rowset.find(rowset_id);
548
0
            CHECK(rowset_iter != rsid_to_rowset.end());
549
0
            std::vector<uint32_t> rids;
550
0
            for (auto [rid, pos] : mappings) {
551
0
                rids.emplace_back(rid);
552
0
                (*read_index)[static_cast<uint32_t>(pos)] = read_idx++;
553
0
            }
554
0
            auto st = BaseTablet::fetch_value_through_row_column(rowset_iter->second, tablet_schema,
555
0
                                                                 segment_id, rids, cids_to_read,
556
0
                                                                 old_value_block);
557
0
            if (!st.ok()) {
558
0
                LOG(WARNING) << "failed to fetch value through row column";
559
0
                return st;
560
0
            }
561
0
        }
562
0
    }
563
0
    return Status::OK();
564
0
}
565
566
Status FlexibleReadPlan::fill_non_primary_key_columns(
567
        const segment_v2::HistoricalRowRetrieverContext& historical_context,
568
        const std::map<RowsetId, RowsetSharedPtr>& rsid_to_rowset,
569
        const TabletSchema& tablet_schema, Block& full_block,
570
        const std::vector<bool>& use_default_or_null_flag, bool has_default_or_nullable,
571
        uint32_t segment_start_pos, uint32_t block_start_pos, const Block* block,
572
0
        std::vector<BitmapValue>* skip_bitmaps) const {
573
0
    auto mutable_full_columns_guard = full_block.mutate_columns_scoped();
574
0
    auto& mutable_full_columns = mutable_full_columns_guard.mutable_columns();
575
0
    DCHECK(historical_context.partial_update_info != nullptr);
576
577
    // missing_cids are all non sort key columns' cids
578
0
    const auto& non_sort_key_cids = historical_context.partial_update_info->missing_cids;
579
0
    auto old_value_block = tablet_schema.create_block_by_cids(non_sort_key_cids);
580
0
    CHECK_EQ(non_sort_key_cids.size(), old_value_block.columns());
581
582
0
    if (!use_row_store) {
583
0
        RETURN_IF_ERROR(fill_non_primary_key_columns_for_column_store(
584
0
                historical_context, rsid_to_rowset, tablet_schema, non_sort_key_cids,
585
0
                old_value_block, mutable_full_columns, use_default_or_null_flag,
586
0
                has_default_or_nullable, segment_start_pos, block_start_pos, block, skip_bitmaps));
587
0
    } else {
588
0
        RETURN_IF_ERROR(fill_non_primary_key_columns_for_row_store(
589
0
                historical_context, rsid_to_rowset, tablet_schema, non_sort_key_cids,
590
0
                old_value_block, mutable_full_columns, use_default_or_null_flag,
591
0
                has_default_or_nullable, segment_start_pos, block_start_pos, block, skip_bitmaps));
592
0
    }
593
0
    return Status::OK();
594
0
}
595
596
static void fill_non_primary_key_cell_for_column_store(
597
        const TabletColumn& tablet_column, uint32_t cid, MutableColumnPtr& new_col,
598
        const IColumn& default_value_col, const IColumn& old_value_col, const IColumn& cur_col,
599
        std::size_t block_pos, uint32_t segment_pos, bool skipped, bool row_has_sequence_col,
600
        bool use_default, const signed char* delete_sign_column_data,
601
        const TabletSchema& tablet_schema,
602
        std::map<uint32_t, std::map<uint32_t, uint32_t>>& read_index,
603
0
        const PartialUpdateInfo* info) {
604
0
    if (skipped) {
605
0
        DCHECK(cid != tablet_schema.skip_bitmap_col_idx());
606
0
        DCHECK(cid != tablet_schema.version_col_idx());
607
0
        DCHECK(!tablet_column.is_row_store_column());
608
609
0
        if (!use_default) {
610
0
            if (delete_sign_column_data != nullptr) {
611
0
                bool old_row_delete_sign = false;
612
0
                if (auto it = read_index[tablet_schema.delete_sign_idx()].find(segment_pos);
613
0
                    it != read_index[tablet_schema.delete_sign_idx()].end()) {
614
0
                    old_row_delete_sign = (delete_sign_column_data[it->second] != 0);
615
0
                }
616
617
0
                if (old_row_delete_sign) {
618
0
                    if (!tablet_schema.has_sequence_col()) {
619
0
                        use_default = true;
620
0
                    } else if (row_has_sequence_col ||
621
0
                               (!tablet_column.is_seqeunce_col() &&
622
0
                                (tablet_column.unique_id() != info->sequence_map_col_uid()))) {
623
                        // to keep the sequence column value not decreasing, we should read values of seq column(and seq map column)
624
                        // from old rows even if the old row is deleted when the input don't specify the sequence column, otherwise
625
                        // it may cause the merge-on-read based compaction to produce incorrect results
626
0
                        use_default = true;
627
0
                    }
628
0
                }
629
0
            }
630
0
        }
631
0
        if (!use_default && tablet_column.is_on_update_current_timestamp()) {
632
0
            use_default = true;
633
0
        }
634
0
        if (use_default) {
635
0
            if (tablet_column.has_default_value()) {
636
0
                new_col->insert_from(default_value_col, 0);
637
0
            } else if (tablet_column.is_nullable()) {
638
0
                assert_cast<ColumnNullable*, TypeCheckOnRelease::DISABLE>(new_col.get())
639
0
                        ->insert_many_defaults(1);
640
0
            } else if (tablet_column.is_auto_increment()) {
641
                // In flexible partial update, the skip bitmap indicates whether a cell
642
                // is specified in the original load, so the generated auto-increment value is filled
643
                // in current block in place if needed rather than using a seperate column to
644
                // store the generated auto-increment value in fixed partial update
645
0
                new_col->insert_from(cur_col, block_pos);
646
0
            } else {
647
0
                new_col->insert_default();
648
0
            }
649
0
        } else {
650
0
            auto pos_in_old_block = read_index.at(cid).at(segment_pos);
651
0
            new_col->insert_from(old_value_col, pos_in_old_block);
652
0
        }
653
0
    } else {
654
0
        new_col->insert_from(cur_col, block_pos);
655
0
    }
656
0
}
657
658
Status FlexibleReadPlan::fill_non_primary_key_columns_for_column_store(
659
        const segment_v2::HistoricalRowRetrieverContext& historical_context,
660
        const std::map<RowsetId, RowsetSharedPtr>& rsid_to_rowset,
661
        const TabletSchema& tablet_schema, const std::vector<uint32_t>& non_sort_key_cids,
662
        Block& old_value_block, MutableColumns& mutable_full_columns,
663
        const std::vector<bool>& use_default_or_null_flag, bool has_default_or_nullable,
664
        uint32_t segment_start_pos, uint32_t block_start_pos, const Block* block,
665
0
        std::vector<BitmapValue>* skip_bitmaps) const {
666
0
    auto* info = historical_context.partial_update_info.get();
667
0
    int32_t seq_col_unique_id = -1;
668
0
    if (tablet_schema.has_sequence_col()) {
669
0
        seq_col_unique_id = tablet_schema.column(tablet_schema.sequence_col_idx()).unique_id();
670
0
    }
671
    // cid -> segment pos to write -> rowid to read in old_value_block
672
0
    std::map<uint32_t, std::map<uint32_t, uint32_t>> read_index;
673
0
    RETURN_IF_ERROR(
674
0
            read_columns_by_plan(tablet_schema, rsid_to_rowset, old_value_block, &read_index));
675
    // !!!ATTENTION!!!: columns in old_value_block may have different size because every row has different columns to update
676
677
0
    const auto* delete_sign_column_data = BaseTablet::get_delete_sign_column_data(old_value_block);
678
    // build default value columns
679
0
    auto default_value_block = old_value_block.clone_empty();
680
0
    if (has_default_or_nullable || delete_sign_column_data != nullptr) {
681
0
        RETURN_IF_ERROR(BaseTablet::generate_default_value_block(
682
0
                tablet_schema, non_sort_key_cids, info->default_values, old_value_block,
683
0
                default_value_block));
684
0
    }
685
686
    // fill all non sort key columns from mutable_old_columns, need to consider default value and null value
687
0
    for (std::size_t i {0}; i < non_sort_key_cids.size(); i++) {
688
0
        auto cid = non_sort_key_cids[i];
689
0
        const auto& tablet_column = tablet_schema.column(cid);
690
0
        auto col_uid = tablet_column.unique_id();
691
0
        for (auto idx = 0; idx < use_default_or_null_flag.size(); idx++) {
692
0
            auto segment_pos = segment_start_pos + idx;
693
0
            auto block_pos = block_start_pos + idx;
694
695
0
            fill_non_primary_key_cell_for_column_store(
696
0
                    tablet_column, cid, mutable_full_columns[cid],
697
0
                    *default_value_block.get_by_position(i).column,
698
0
                    *old_value_block.get_by_position(i).column, *block->get_by_position(cid).column,
699
0
                    block_pos, segment_pos, skip_bitmaps->at(block_pos).contains(col_uid),
700
0
                    tablet_schema.has_sequence_col()
701
0
                            ? !skip_bitmaps->at(block_pos).contains(seq_col_unique_id)
702
0
                            : false,
703
0
                    use_default_or_null_flag[idx], delete_sign_column_data, tablet_schema,
704
0
                    read_index, info);
705
0
        }
706
0
    }
707
0
    return Status::OK();
708
0
}
709
710
static void fill_non_primary_key_cell_for_row_store(
711
        const TabletColumn& tablet_column, uint32_t cid, MutableColumnPtr& new_col,
712
        const IColumn& default_value_col, const IColumn& old_value_col, const IColumn& cur_col,
713
        std::size_t block_pos, bool skipped, bool row_has_sequence_col, bool use_default,
714
        const signed char* delete_sign_column_data, uint32_t pos_in_old_block,
715
0
        const TabletSchema& tablet_schema, const PartialUpdateInfo* info) {
716
0
    if (skipped) {
717
0
        DCHECK(cid != tablet_schema.skip_bitmap_col_idx());
718
0
        DCHECK(cid != tablet_schema.version_col_idx());
719
0
        DCHECK(!tablet_column.is_row_store_column());
720
0
        if (!use_default) {
721
0
            if (delete_sign_column_data != nullptr) {
722
0
                bool old_row_delete_sign = (delete_sign_column_data[pos_in_old_block] != 0);
723
0
                if (old_row_delete_sign) {
724
0
                    if (!tablet_schema.has_sequence_col()) {
725
0
                        use_default = true;
726
0
                    } else if (row_has_sequence_col ||
727
0
                               (!tablet_column.is_seqeunce_col() &&
728
0
                                (tablet_column.unique_id() != info->sequence_map_col_uid()))) {
729
                        // to keep the sequence column value not decreasing, we should read values of seq column(and seq map column)
730
                        // from old rows even if the old row is deleted when the input don't specify the sequence column, otherwise
731
                        // it may cause the merge-on-read based compaction to produce incorrect results
732
0
                        use_default = true;
733
0
                    }
734
0
                }
735
0
            }
736
0
        }
737
738
0
        if (!use_default && tablet_column.is_on_update_current_timestamp()) {
739
0
            use_default = true;
740
0
        }
741
0
        if (use_default) {
742
0
            if (tablet_column.has_default_value()) {
743
0
                new_col->insert_from(default_value_col, 0);
744
0
            } else if (tablet_column.is_nullable()) {
745
0
                assert_cast<ColumnNullable*, TypeCheckOnRelease::DISABLE>(new_col.get())
746
0
                        ->insert_many_defaults(1);
747
0
            } else if (tablet_column.is_auto_increment()) {
748
                // In flexible partial update, the skip bitmap indicates whether a cell
749
                // is specified in the original load, so the generated auto-increment value is filled
750
                // in current block in place if needed rather than using a seperate column to
751
                // store the generated auto-increment value in fixed partial update
752
0
                new_col->insert_from(cur_col, block_pos);
753
0
            } else {
754
0
                new_col->insert_default();
755
0
            }
756
0
        } else {
757
0
            new_col->insert_from(old_value_col, pos_in_old_block);
758
0
        }
759
0
    } else {
760
0
        new_col->insert_from(cur_col, block_pos);
761
0
    }
762
0
}
763
764
Status FlexibleReadPlan::fill_non_primary_key_columns_for_row_store(
765
        const segment_v2::HistoricalRowRetrieverContext& historical_context,
766
        const std::map<RowsetId, RowsetSharedPtr>& rsid_to_rowset,
767
        const TabletSchema& tablet_schema, const std::vector<uint32_t>& non_sort_key_cids,
768
        Block& old_value_block, MutableColumns& mutable_full_columns,
769
        const std::vector<bool>& use_default_or_null_flag, bool has_default_or_nullable,
770
        uint32_t segment_start_pos, uint32_t block_start_pos, const Block* block,
771
0
        std::vector<BitmapValue>* skip_bitmaps) const {
772
0
    auto* info = historical_context.partial_update_info.get();
773
0
    int32_t seq_col_unique_id = -1;
774
0
    if (tablet_schema.has_sequence_col()) {
775
0
        seq_col_unique_id = tablet_schema.column(tablet_schema.sequence_col_idx()).unique_id();
776
0
    }
777
    // segment pos to write -> rowid to read in old_value_block
778
0
    std::map<uint32_t, uint32_t> read_index;
779
0
    RETURN_IF_ERROR(read_columns_by_plan(tablet_schema, non_sort_key_cids, rsid_to_rowset,
780
0
                                         old_value_block, &read_index));
781
782
0
    const auto* delete_sign_column_data = BaseTablet::get_delete_sign_column_data(old_value_block);
783
    // build default value columns
784
0
    auto default_value_block = old_value_block.clone_empty();
785
0
    if (has_default_or_nullable || delete_sign_column_data != nullptr) {
786
0
        RETURN_IF_ERROR(BaseTablet::generate_default_value_block(
787
0
                tablet_schema, non_sort_key_cids, info->default_values, old_value_block,
788
0
                default_value_block));
789
0
    }
790
791
    // fill all non sort key columns from mutable_old_columns, need to consider default value and null value
792
0
    for (std::size_t i {0}; i < non_sort_key_cids.size(); i++) {
793
0
        auto cid = non_sort_key_cids[i];
794
0
        const auto& tablet_column = tablet_schema.column(cid);
795
0
        auto col_uid = tablet_column.unique_id();
796
0
        for (auto idx = 0; idx < use_default_or_null_flag.size(); idx++) {
797
0
            auto segment_pos = segment_start_pos + idx;
798
0
            auto block_pos = block_start_pos + idx;
799
0
            auto pos_in_old_block = read_index[segment_pos];
800
801
0
            fill_non_primary_key_cell_for_row_store(
802
0
                    tablet_column, cid, mutable_full_columns[cid],
803
0
                    *default_value_block.get_by_position(i).column,
804
0
                    *old_value_block.get_by_position(i).column, *block->get_by_position(cid).column,
805
0
                    block_pos, skip_bitmaps->at(block_pos).contains(col_uid),
806
0
                    tablet_schema.has_sequence_col()
807
0
                            ? !skip_bitmaps->at(block_pos).contains(seq_col_unique_id)
808
0
                            : false,
809
0
                    use_default_or_null_flag[idx], delete_sign_column_data, pos_in_old_block,
810
0
                    tablet_schema, info);
811
0
        }
812
0
    }
813
0
    return Status::OK();
814
0
}
815
816
BlockAggregator::BlockAggregator(segment_v2::VerticalSegmentWriter& vertical_segment_writer)
817
14
        : _writer(vertical_segment_writer), _tablet_schema(*_writer._tablet_schema) {}
818
819
void BlockAggregator::merge_one_row(MutableBlock& dst_block, Block* src_block, int rid,
820
0
                                    BitmapValue& skip_bitmap) {
821
0
    for (size_t cid {_tablet_schema.num_key_columns()}; cid < _tablet_schema.num_columns(); cid++) {
822
0
        if (cid == _tablet_schema.skip_bitmap_col_idx()) {
823
0
            auto& cur_skip_bitmap =
824
0
                    assert_cast<ColumnBitmap*>(dst_block.mutable_columns()[cid].get())
825
0
                            ->get_data()
826
0
                            .back();
827
0
            const auto& new_row_skip_bitmap =
828
0
                    assert_cast<const ColumnBitmap*>(src_block->get_by_position(cid).column.get())
829
0
                            ->get_data()[rid];
830
0
            cur_skip_bitmap &= new_row_skip_bitmap;
831
0
            continue;
832
0
        }
833
0
        if (!skip_bitmap.contains(_tablet_schema.column(cid).unique_id())) {
834
0
            dst_block.mutable_columns()[cid]->pop_back(1);
835
0
            dst_block.mutable_columns()[cid]->insert_from(*src_block->get_by_position(cid).column,
836
0
                                                          rid);
837
0
        }
838
0
    }
839
0
    VLOG_DEBUG << fmt::format("merge a row, after merge, output_block.rows()={}, state: {}",
840
0
                              dst_block.rows(), _state.to_string());
841
0
}
842
843
0
void BlockAggregator::append_one_row(MutableBlock& dst_block, Block* src_block, int rid) {
844
0
    dst_block.add_row(src_block, rid);
845
0
    _state.rows++;
846
0
    VLOG_DEBUG << fmt::format("append a new row, after append, output_block.rows()={}, state: {}",
847
0
                              dst_block.rows(), _state.to_string());
848
0
}
849
850
0
void BlockAggregator::remove_last_n_rows(MutableBlock& dst_block, int n) {
851
0
    if (n > 0) {
852
0
        for (size_t cid {0}; cid < _tablet_schema.num_columns(); cid++) {
853
0
            DCHECK_GE(dst_block.mutable_columns()[cid]->size(), n);
854
0
            dst_block.mutable_columns()[cid]->pop_back(n);
855
0
        }
856
0
    }
857
0
}
858
859
void BlockAggregator::append_or_merge_row(MutableBlock& dst_block, Block* src_block, int rid,
860
0
                                          BitmapValue& skip_bitmap, bool have_delete_sign) {
861
0
    if (have_delete_sign) {
862
        // remove all the previous batched rows
863
0
        remove_last_n_rows(dst_block, _state.rows);
864
0
        _state.rows = 0;
865
0
        _state.has_row_with_delete_sign = true;
866
867
0
        append_one_row(dst_block, src_block, rid);
868
0
    } else {
869
0
        if (_state.should_merge()) {
870
0
            merge_one_row(dst_block, src_block, rid, skip_bitmap);
871
0
        } else {
872
0
            append_one_row(dst_block, src_block, rid);
873
0
        }
874
0
    }
875
0
};
876
877
Status BlockAggregator::aggregate_rows(
878
        MutableBlock& output_block, Block* block, int start, int end, std::string key,
879
        std::vector<BitmapValue>* skip_bitmaps, const signed char* delete_signs,
880
        IOlapColumnDataAccessor* seq_column, const std::vector<RowsetSharedPtr>& specified_rowsets,
881
0
        std::vector<std::unique_ptr<SegmentCacheHandle>>& segment_caches) {
882
0
    VLOG_DEBUG << fmt::format("merge rows in range=[{}-{})", start, end);
883
0
    if (end - start == 1) {
884
0
        output_block.add_row(block, start);
885
0
        VLOG_DEBUG << fmt::format("append a row directly, rid={}", start);
886
0
        return Status::OK();
887
0
    }
888
889
0
    auto seq_col_unique_id = _tablet_schema.column(_tablet_schema.sequence_col_idx()).unique_id();
890
0
    auto delete_sign_col_unique_id =
891
0
            _tablet_schema.column(_tablet_schema.delete_sign_idx()).unique_id();
892
893
0
    _state.reset();
894
895
0
    RowLocation loc;
896
0
    RowsetSharedPtr rowset;
897
0
    std::string previous_encoded_seq_value {};
898
0
    Status st = _writer._tablet->lookup_row_key(
899
0
            key, &_tablet_schema, false, specified_rowsets, &loc, _writer._mow_context->max_version,
900
0
            segment_caches, &rowset, true, &previous_encoded_seq_value);
901
0
    int pos = start;
902
0
    bool is_expected_st = (st.is<ErrorCode::KEY_NOT_FOUND>() || st.ok());
903
0
    DCHECK(is_expected_st || st.is<ErrorCode::MEM_LIMIT_EXCEEDED>())
904
0
            << "[BlockAggregator::aggregate_rows] unexpected error status while lookup_row_key:"
905
0
            << st;
906
0
    if (!is_expected_st) {
907
0
        return st;
908
0
    }
909
910
0
    std::string cur_seq_val;
911
0
    if (st.ok()) {
912
0
        for (pos = start; pos < end; pos++) {
913
0
            auto& skip_bitmap = skip_bitmaps->at(pos);
914
0
            bool row_has_sequence_col = (!skip_bitmap.contains(seq_col_unique_id));
915
            // Discard all the rows whose seq value is smaller than previous_encoded_seq_value.
916
0
            if (row_has_sequence_col) {
917
0
                std::string seq_val {};
918
0
                _writer._encode_seq_column(seq_column, pos, &seq_val);
919
0
                if (Slice {seq_val}.compare(Slice {previous_encoded_seq_value}) < 0) {
920
0
                    continue;
921
0
                }
922
0
                cur_seq_val = std::move(seq_val);
923
0
                break;
924
0
            }
925
0
            cur_seq_val = std::move(previous_encoded_seq_value);
926
0
            break;
927
0
        }
928
0
    } else {
929
0
        pos = start;
930
0
        auto& skip_bitmap = skip_bitmaps->at(pos);
931
0
        bool row_has_sequence_col = (!skip_bitmap.contains(seq_col_unique_id));
932
0
        if (row_has_sequence_col) {
933
0
            std::string seq_val {};
934
            // for rows that don't specify seqeunce col, seq_val will be encoded to minial value
935
0
            _writer._encode_seq_column(seq_column, pos, &seq_val);
936
0
            cur_seq_val = std::move(seq_val);
937
0
        } else {
938
0
            cur_seq_val.clear();
939
0
            RETURN_IF_ERROR(_writer._generate_encoded_default_seq_value(
940
0
                    _tablet_schema, *_writer._opts.rowset_ctx->partial_update_info, &cur_seq_val));
941
0
        }
942
0
    }
943
944
0
    for (int rid {pos}; rid < end; rid++) {
945
0
        auto& skip_bitmap = skip_bitmaps->at(rid);
946
0
        bool row_has_sequence_col = (!skip_bitmap.contains(seq_col_unique_id));
947
0
        bool have_delete_sign =
948
0
                (!skip_bitmap.contains(delete_sign_col_unique_id) && delete_signs[rid] != 0);
949
0
        if (!row_has_sequence_col) {
950
0
            append_or_merge_row(output_block, block, rid, skip_bitmap, have_delete_sign);
951
0
        } else {
952
0
            std::string seq_val {};
953
0
            _writer._encode_seq_column(seq_column, rid, &seq_val);
954
0
            if (Slice {seq_val}.compare(Slice {cur_seq_val}) >= 0) {
955
0
                append_or_merge_row(output_block, block, rid, skip_bitmap, have_delete_sign);
956
0
                cur_seq_val = std::move(seq_val);
957
0
            } else {
958
0
                VLOG_DEBUG << fmt::format(
959
0
                        "skip rid={} becasue its seq value is lower than the previous", rid);
960
0
            }
961
0
        }
962
0
    }
963
0
    return Status::OK();
964
0
};
965
966
Status BlockAggregator::aggregate_for_sequence_column(
967
        Block* block, int num_rows, const std::vector<IOlapColumnDataAccessor*>& key_columns,
968
        IOlapColumnDataAccessor* seq_column, const std::vector<RowsetSharedPtr>& specified_rowsets,
969
0
        std::vector<std::unique_ptr<SegmentCacheHandle>>& segment_caches) {
970
0
    DCHECK_EQ(block->columns(), _tablet_schema.num_columns());
971
    // the process logic here is the same as MemTable::_aggregate_for_flexible_partial_update_without_seq_col()
972
    // after this function, there will be at most 2 rows for a specified key
973
0
    std::vector<BitmapValue>* skip_bitmaps =
974
0
            &get_mutable_skip_bitmap_column(block, _tablet_schema.skip_bitmap_col_idx())
975
0
                     ->get_data();
976
0
    const auto* delete_signs = BaseTablet::get_delete_sign_column_data(*block, num_rows);
977
978
0
    auto filtered_block = _tablet_schema.create_block();
979
0
    MutableBlock output_block = MutableBlock::build_mutable_block(std::move(filtered_block));
980
981
0
    int same_key_rows {0};
982
0
    std::string previous_key {};
983
0
    for (int block_pos {0}; block_pos < num_rows; block_pos++) {
984
0
        std::string key = _writer._full_encode_keys(key_columns, block_pos);
985
0
        if (block_pos > 0 && previous_key == key) {
986
0
            same_key_rows++;
987
0
        } else {
988
0
            if (same_key_rows > 0) {
989
0
                RETURN_IF_ERROR(aggregate_rows(output_block, block, block_pos - same_key_rows,
990
0
                                               block_pos, std::move(previous_key), skip_bitmaps,
991
0
                                               delete_signs, seq_column, specified_rowsets,
992
0
                                               segment_caches));
993
0
            }
994
0
            same_key_rows = 1;
995
0
        }
996
0
        previous_key = std::move(key);
997
0
    }
998
0
    if (same_key_rows > 0) {
999
0
        RETURN_IF_ERROR(aggregate_rows(output_block, block, num_rows - same_key_rows, num_rows,
1000
0
                                       std::move(previous_key), skip_bitmaps, delete_signs,
1001
0
                                       seq_column, specified_rowsets, segment_caches));
1002
0
    }
1003
1004
0
    block->swap(output_block.to_block());
1005
0
    return Status::OK();
1006
0
}
1007
1008
Status BlockAggregator::fill_sequence_column(Block* block, size_t num_rows,
1009
                                             const FixedReadPlan& read_plan,
1010
0
                                             std::vector<BitmapValue>& skip_bitmaps) {
1011
0
    DCHECK(_tablet_schema.has_sequence_col());
1012
0
    std::vector<uint32_t> cids {static_cast<uint32_t>(_tablet_schema.sequence_col_idx())};
1013
0
    auto seq_col_unique_id = _tablet_schema.column(_tablet_schema.sequence_col_idx()).unique_id();
1014
1015
0
    auto seq_col_block = _tablet_schema.create_block_by_cids(cids);
1016
0
    auto tmp_block = _tablet_schema.create_block_by_cids(cids);
1017
0
    std::map<uint32_t, uint32_t> read_index;
1018
0
    RETURN_IF_ERROR(read_plan.read_columns_by_plan(_tablet_schema, cids, _writer._rsid_to_rowset,
1019
0
                                                   seq_col_block, &read_index, false));
1020
1021
0
    auto new_seq_col_ptr = tmp_block.get_by_position(0).column->assert_mutable();
1022
0
    const auto& old_seq_col_ptr = *seq_col_block.get_by_position(0).column;
1023
0
    const auto& cur_seq_col_ptr = *block->get_by_position(_tablet_schema.sequence_col_idx()).column;
1024
0
    for (uint32_t block_pos {0}; block_pos < num_rows; block_pos++) {
1025
0
        if (read_index.contains(block_pos)) {
1026
0
            new_seq_col_ptr->insert_from(old_seq_col_ptr, read_index[block_pos]);
1027
0
            skip_bitmaps[block_pos].remove(seq_col_unique_id);
1028
0
        } else {
1029
0
            new_seq_col_ptr->insert_from(cur_seq_col_ptr, block_pos);
1030
0
        }
1031
0
    }
1032
0
    block->replace_by_position(_tablet_schema.sequence_col_idx(), std::move(new_seq_col_ptr));
1033
0
    return Status::OK();
1034
0
}
1035
1036
Status BlockAggregator::aggregate_for_insert_after_delete(
1037
        Block* block, size_t num_rows, const std::vector<IOlapColumnDataAccessor*>& key_columns,
1038
        const std::vector<RowsetSharedPtr>& specified_rowsets,
1039
0
        std::vector<std::unique_ptr<SegmentCacheHandle>>& segment_caches) {
1040
0
    DCHECK_EQ(block->columns(), _tablet_schema.num_columns());
1041
    // there will be at most 2 rows for a specified key in block when control flow reaches here
1042
    // after this function, there will not be duplicate rows in block
1043
1044
0
    std::vector<BitmapValue>* skip_bitmaps =
1045
0
            &get_mutable_skip_bitmap_column(block, _tablet_schema.skip_bitmap_col_idx())
1046
0
                     ->get_data();
1047
0
    const auto* delete_signs = BaseTablet::get_delete_sign_column_data(*block, num_rows);
1048
1049
0
    auto filter_column = ColumnUInt8::create(num_rows, 1);
1050
0
    auto* __restrict filter_map = filter_column->get_data().data();
1051
0
    std::string previous_key {};
1052
0
    bool previous_has_delete_sign {false};
1053
0
    int duplicate_rows {0};
1054
0
    int32_t delete_sign_col_unique_id =
1055
0
            _tablet_schema.column(_tablet_schema.delete_sign_idx()).unique_id();
1056
0
    auto seq_col_unique_id =
1057
0
            (_tablet_schema.sequence_col_idx() != -1)
1058
0
                    ? _tablet_schema.column(_tablet_schema.sequence_col_idx()).unique_id()
1059
0
                    : -1;
1060
0
    FixedReadPlan read_plan;
1061
0
    for (size_t block_pos {0}; block_pos < num_rows; block_pos++) {
1062
0
        size_t delta_pos = block_pos;
1063
0
        auto& skip_bitmap = skip_bitmaps->at(block_pos);
1064
0
        std::string key = _writer._full_encode_keys(key_columns, delta_pos);
1065
0
        bool have_delete_sign =
1066
0
                (!skip_bitmap.contains(delete_sign_col_unique_id) && delete_signs[block_pos] != 0);
1067
0
        if (delta_pos > 0 && previous_key == key) {
1068
            // !!ATTENTION!!: We can only remove the row with delete sign if there is a insert with the same key after this row.
1069
            // If there is only a row with delete sign, we should keep it and can't remove it from block, because
1070
            // compaction will not use the delete bitmap when reading data. So there may still be rows with delete sign
1071
            // in later process
1072
0
            DCHECK(previous_has_delete_sign);
1073
0
            DCHECK(!have_delete_sign);
1074
0
            ++duplicate_rows;
1075
0
            RowLocation loc;
1076
0
            RowsetSharedPtr rowset;
1077
0
            Status st = _writer._tablet->lookup_row_key(
1078
0
                    key, &_tablet_schema, false, specified_rowsets, &loc,
1079
0
                    _writer._mow_context->max_version, segment_caches, &rowset, true);
1080
0
            bool is_expected_st = (st.is<ErrorCode::KEY_NOT_FOUND>() || st.ok());
1081
0
            DCHECK(is_expected_st || st.is<ErrorCode::MEM_LIMIT_EXCEEDED>())
1082
0
                    << "[BlockAggregator::aggregate_for_insert_after_delete] unexpected error "
1083
0
                       "status while lookup_row_key:"
1084
0
                    << st;
1085
0
            if (!is_expected_st) {
1086
0
                return st;
1087
0
            }
1088
1089
0
            Slice previous_seq_slice {};
1090
0
            if (st.ok()) {
1091
0
                if (_tablet_schema.has_sequence_col()) {
1092
                    // if the insert row doesn't specify the sequence column, we need to
1093
                    // read the historical's sequence column value so that we don't need
1094
                    // to handle seqeunce column in append_block_with_flexible_content()
1095
                    // for this row
1096
0
                    bool row_has_sequence_col = (!skip_bitmap.contains(seq_col_unique_id));
1097
0
                    if (!row_has_sequence_col) {
1098
0
                        read_plan.prepare_to_read(loc, block_pos);
1099
0
                        _writer._rsid_to_rowset.emplace(rowset->rowset_id(), rowset);
1100
0
                    }
1101
0
                }
1102
                // delete the existing row
1103
0
                _writer._mow_context->delete_bitmap->add(
1104
0
                        {loc.rowset_id, loc.segment_id, DeleteBitmap::TEMP_VERSION_COMMON},
1105
0
                        loc.row_id);
1106
0
            }
1107
            // and remove the row with delete sign from the current block
1108
0
            filter_map[block_pos - 1] = 0;
1109
0
        }
1110
0
        previous_has_delete_sign = have_delete_sign;
1111
0
        previous_key = std::move(key);
1112
0
    }
1113
0
    if (duplicate_rows > 0) {
1114
0
        if (!read_plan.empty()) {
1115
            // fill sequence column value for some rows
1116
0
            RETURN_IF_ERROR(fill_sequence_column(block, num_rows, read_plan, *skip_bitmaps));
1117
0
        }
1118
0
        RETURN_IF_ERROR(filter_block(block, num_rows, std::move(filter_column), duplicate_rows,
1119
0
                                     "__filter_insert_after_delete_col__"));
1120
0
    }
1121
0
    return Status::OK();
1122
0
}
1123
1124
Status BlockAggregator::filter_block(Block* block, size_t num_rows, MutableColumnPtr filter_column,
1125
0
                                     int duplicate_rows, std::string col_name) {
1126
0
    auto num_cols = block->columns();
1127
0
    block->insert({std::move(filter_column), std::make_shared<DataTypeUInt8>(), col_name});
1128
0
    RETURN_IF_ERROR(Block::filter_block(block, num_cols, num_cols));
1129
0
    DCHECK_EQ(num_cols, block->columns());
1130
0
    size_t merged_rows = num_rows - block->rows();
1131
0
    if (duplicate_rows != merged_rows) {
1132
0
        auto msg = fmt::format(
1133
0
                "filter_block_for_flexible_partial_update {}: duplicate_rows != merged_rows, "
1134
0
                "duplicate_keys={}, merged_rows={}, num_rows={}, mutable_block->rows()={}",
1135
0
                col_name, duplicate_rows, merged_rows, num_rows, block->rows());
1136
0
        DCHECK(false) << msg;
1137
0
        return Status::InternalError<false>(msg);
1138
0
    }
1139
0
    return Status::OK();
1140
0
}
1141
1142
Status BlockAggregator::convert_pk_columns(Block* block, size_t row_pos, size_t num_rows,
1143
0
                                           std::vector<IOlapColumnDataAccessor*>& key_columns) {
1144
0
    key_columns.clear();
1145
0
    for (uint32_t cid {0}; cid < _tablet_schema.num_key_columns(); cid++) {
1146
0
        RETURN_IF_ERROR(_writer._olap_data_convertor->set_source_content_with_specifid_column(
1147
0
                block->get_by_position(cid), row_pos, num_rows, cid));
1148
0
        auto [status, column] = _writer._olap_data_convertor->convert_column_data(cid);
1149
0
        if (!status.ok()) {
1150
0
            return status;
1151
0
        }
1152
0
        key_columns.push_back(column);
1153
0
    }
1154
0
    return Status::OK();
1155
0
}
1156
1157
Status BlockAggregator::convert_seq_column(Block* block, size_t row_pos, size_t num_rows,
1158
0
                                           IOlapColumnDataAccessor*& seq_column) {
1159
0
    seq_column = nullptr;
1160
0
    if (_tablet_schema.has_sequence_col()) {
1161
0
        auto seq_col_idx = _tablet_schema.sequence_col_idx();
1162
0
        RETURN_IF_ERROR(_writer._olap_data_convertor->set_source_content_with_specifid_column(
1163
0
                block->get_by_position(seq_col_idx), row_pos, num_rows, seq_col_idx));
1164
0
        auto [status, column] = _writer._olap_data_convertor->convert_column_data(seq_col_idx);
1165
0
        if (!status.ok()) {
1166
0
            return status;
1167
0
        }
1168
0
        seq_column = column;
1169
0
    }
1170
0
    return Status::OK();
1171
0
};
1172
1173
Status BlockAggregator::aggregate_for_flexible_partial_update(
1174
        Block* block, size_t num_rows, const std::vector<RowsetSharedPtr>& specified_rowsets,
1175
0
        std::vector<std::unique_ptr<SegmentCacheHandle>>& segment_caches) {
1176
0
    std::vector<IOlapColumnDataAccessor*> key_columns {};
1177
0
    IOlapColumnDataAccessor* seq_column {nullptr};
1178
1179
0
    RETURN_IF_ERROR(convert_pk_columns(block, 0, num_rows, key_columns));
1180
0
    RETURN_IF_ERROR(convert_seq_column(block, 0, num_rows, seq_column));
1181
1182
    // 1. merge duplicate rows when table has sequence column
1183
    // When there are multiple rows with the same keys in memtable, some of them specify specify the sequence column,
1184
    // some of them don't. We can't do the de-duplication in memtable because we don't know the historical data. We must
1185
    // de-duplicate them here.
1186
0
    if (_tablet_schema.has_sequence_col()) {
1187
0
        RETURN_IF_ERROR(aggregate_for_sequence_column(block, static_cast<int>(num_rows),
1188
0
                                                      key_columns, seq_column, specified_rowsets,
1189
0
                                                      segment_caches));
1190
0
    }
1191
1192
    // 2. merge duplicate rows and handle insert after delete
1193
0
    if (block->rows() != num_rows) {
1194
0
        num_rows = block->rows();
1195
        // data in block has changed, should re-encode key columns, sequence column
1196
0
        _writer._olap_data_convertor->clear_source_content();
1197
0
        RETURN_IF_ERROR(convert_pk_columns(block, 0, num_rows, key_columns));
1198
0
        RETURN_IF_ERROR(convert_seq_column(block, 0, num_rows, seq_column));
1199
0
    }
1200
0
    RETURN_IF_ERROR(aggregate_for_insert_after_delete(block, num_rows, key_columns,
1201
0
                                                      specified_rowsets, segment_caches));
1202
0
    return Status::OK();
1203
0
}
1204
1205
} // namespace doris