Coverage Report

Created: 2026-06-11 15:31

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/storage/tablet_info.cpp
Line
Count
Source
1
// Licensed to the Apache Software Foundation (ASF) under one
2
// or more contributor license agreements.  See the NOTICE file
3
// distributed with this work for additional information
4
// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
7
// with the License.  You may obtain a copy of the License at
8
//
9
//   http://www.apache.org/licenses/LICENSE-2.0
10
//
11
// Unless required by applicable law or agreed to in writing,
12
// software distributed under the License is distributed on an
13
// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
14
// KIND, either express or implied.  See the License for the
15
// specific language governing permissions and limitations
16
// under the License.
17
18
#include "storage/tablet_info.h"
19
20
#include <butil/logging.h>
21
#include <gen_cpp/Descriptors_types.h>
22
#include <gen_cpp/Exprs_types.h>
23
#include <gen_cpp/Partitions_types.h>
24
#include <gen_cpp/Types_types.h>
25
#include <gen_cpp/descriptors.pb.h>
26
#include <gen_cpp/olap_file.pb.h>
27
#include <glog/logging.h>
28
29
#include <algorithm>
30
#include <cstddef>
31
#include <cstdint>
32
#include <memory>
33
#include <ostream>
34
#include <string>
35
#include <tuple>
36
37
#include "common/exception.h"
38
#include "common/logging.h"
39
#include "common/status.h"
40
#include "core/column/column.h"
41
#include "core/data_type/data_type.h"
42
#include "core/data_type/data_type_factory.hpp"
43
#include "core/data_type/define_primitive_type.h"
44
#include "core/data_type/primitive_type.h"
45
#include "core/value/large_int_value.h"
46
#include "runtime/descriptors.h"
47
#include "runtime/memory/mem_tracker.h"
48
#include "storage/tablet/tablet_schema.h"
49
#include "util/raw_value.h"
50
#include "util/string_parser.hpp"
51
#include "util/string_util.h"
52
// NOLINTNEXTLINE(unused-includes)
53
#include "core/value/vdatetime_value.h"
54
#include "exprs/function/cast/cast_to_date_or_datetime_impl.hpp"
55
#include "exprs/function/cast/cast_to_datetimev2_impl.hpp"
56
#include "exprs/function/cast/cast_to_datev2_impl.hpp"
57
#include "exprs/function/cast/cast_to_timestamptz.h"
58
#include "exprs/vexpr_context.h" // IWYU pragma: keep
59
#include "exprs/vliteral.h"
60
61
namespace doris {
62
63
58.8k
void OlapTableIndexSchema::to_protobuf(POlapTableIndexSchema* pindex) const {
64
58.8k
    pindex->set_id(index_id);
65
58.8k
    pindex->set_schema_hash(schema_hash);
66
58.8k
    if (row_binlog_id > 0) {
67
0
        pindex->set_row_binlog_id(row_binlog_id);
68
0
    }
69
398k
    for (auto* slot : slots) {
70
398k
        pindex->add_columns(slot->col_name());
71
398k
    }
72
405k
    for (auto* column : columns) {
73
405k
        column->to_schema_pb(pindex->add_columns_desc());
74
405k
    }
75
58.8k
    for (auto* index : indexes) {
76
0
        index->to_schema_pb(pindex->add_indexes_desc());
77
0
    }
78
58.8k
}
79
80
bool VOlapTablePartKeyComparator::operator()(const BlockRowWithIndicator& lhs,
81
472k
                                             const BlockRowWithIndicator& rhs) const {
82
472k
    Block* l_block = std::get<0>(lhs);
83
472k
    Block* r_block = std::get<0>(rhs);
84
472k
    int32_t l_row = std::get<1>(lhs);
85
472k
    int32_t r_row = std::get<1>(rhs);
86
472k
    bool l_use_new = std::get<2>(lhs);
87
472k
    bool r_use_new = std::get<2>(rhs);
88
89
472k
    VLOG_TRACE << '\n' << l_block->dump_data() << '\n' << r_block->dump_data();
90
91
472k
    if (l_row == -1) {
92
0
        return false;
93
472k
    } else if (r_row == -1) {
94
67.6k
        return true;
95
67.6k
    }
96
97
404k
    if (_param_locs.empty()) { // no transform, use origin column
98
404k
        for (auto slot_loc : _slot_locs) {
99
404k
            auto res = l_block->get_by_position(slot_loc).column->compare_at(
100
404k
                    l_row, r_row, *r_block->get_by_position(slot_loc).column, -1);
101
404k
            if (res != 0) {
102
402k
                return res < 0;
103
402k
            }
104
404k
        }
105
404k
    } else { // use transformed column to compare
106
33
        DCHECK(_slot_locs.size() == _param_locs.size())
107
0
                << _slot_locs.size() << ' ' << _param_locs.size();
108
109
33
        const std::vector<uint16_t>* l_index = l_use_new ? &_param_locs : &_slot_locs;
110
33
        const std::vector<uint16_t>* r_index = r_use_new ? &_param_locs : &_slot_locs;
111
112
41
        for (int i = 0; i < _slot_locs.size(); i++) {
113
33
            ColumnPtr l_col = l_block->get_by_position((*l_index)[i]).column;
114
33
            ColumnPtr r_col = r_block->get_by_position((*r_index)[i]).column;
115
116
33
            auto res = l_col->compare_at(l_row, r_row, *r_col, -1);
117
33
            if (res != 0) {
118
25
                return res < 0;
119
25
            }
120
33
        }
121
33
    }
122
123
    // equal, return false
124
2.03k
    return false;
125
404k
}
126
127
5.56k
Status OlapTableSchemaParam::init(const POlapTableSchemaParam& pschema) {
128
5.56k
    _db_id = pschema.db_id();
129
5.56k
    _table_id = pschema.table_id();
130
5.56k
    _version = pschema.version();
131
5.56k
    if (pschema.has_unique_key_update_mode()) {
132
5.56k
        _unique_key_update_mode = pschema.unique_key_update_mode();
133
5.56k
        if (pschema.has_sequence_map_col_unique_id()) {
134
5.56k
            _sequence_map_col_uid = pschema.sequence_map_col_unique_id();
135
5.56k
        }
136
5.56k
    } else {
137
        // for backward compatibility
138
3
        if (pschema.has_partial_update() && pschema.partial_update()) {
139
0
            _unique_key_update_mode = UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS;
140
3
        } else {
141
3
            _unique_key_update_mode = UniqueKeyUpdateModePB::UPSERT;
142
3
        }
143
3
    }
144
5.56k
    _is_strict_mode = pschema.is_strict_mode();
145
5.56k
    if (_unique_key_update_mode == UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS) {
146
246
        _auto_increment_column = pschema.auto_increment_column();
147
246
        if (!_auto_increment_column.empty() && pschema.auto_increment_column_unique_id() == -1) {
148
0
            return Status::InternalError(
149
0
                    "Auto increment column id is not set in FE. Maybe FE is an older version "
150
0
                    "different from BE.");
151
0
        }
152
246
        _auto_increment_column_unique_id = pschema.auto_increment_column_unique_id();
153
246
    }
154
5.56k
    if (_unique_key_update_mode != UniqueKeyUpdateModePB::UPSERT) {
155
246
        if (pschema.has_partial_update_new_key_policy()) {
156
246
            _partial_update_new_row_policy = pschema.partial_update_new_key_policy();
157
246
        }
158
246
    }
159
5.56k
    _timestamp_ms = pschema.timestamp_ms();
160
5.56k
    if (pschema.has_nano_seconds()) {
161
5.56k
        _nano_seconds = pschema.nano_seconds();
162
5.56k
    }
163
5.56k
    _timezone = pschema.timezone();
164
165
5.56k
    for (const auto& col : pschema.partial_update_input_columns()) {
166
1.07k
        _partial_update_input_columns.insert(col);
167
1.07k
    }
168
5.56k
    std::unordered_map<std::string, SlotDescriptor*> slots_map;
169
170
5.56k
    _tuple_desc = _obj_pool.add(new TupleDescriptor(pschema.tuple_desc()));
171
172
41.7k
    for (const auto& p_slot_desc : pschema.slot_descs()) {
173
41.7k
        auto* slot_desc = _obj_pool.add(new SlotDescriptor(p_slot_desc));
174
41.7k
        _tuple_desc->add_slot(slot_desc);
175
41.7k
        std::string data_type;
176
41.7k
        EnumToString(TPrimitiveType, to_thrift(slot_desc->col_type()), data_type);
177
41.7k
        std::string is_null_str = slot_desc->is_nullable() ? "true" : "false";
178
41.7k
        std::string data_type_str =
179
41.7k
                std::to_string(int64_t(TabletColumn::get_field_type_by_string(data_type)));
180
41.7k
        slots_map.emplace(to_lower(slot_desc->col_name()) + "+" + data_type_str + is_null_str,
181
41.7k
                          slot_desc);
182
41.7k
    }
183
184
5.58k
    for (const auto& p_index : pschema.indexes()) {
185
5.58k
        auto* index = _obj_pool.add(new OlapTableIndexSchema());
186
5.58k
        index->index_id = p_index.id();
187
5.58k
        index->schema_hash = p_index.schema_hash();
188
5.58k
        if (p_index.has_row_binlog_id()) {
189
0
            index->row_binlog_id = p_index.row_binlog_id();
190
0
        }
191
42.8k
        for (const auto& pcolumn_desc : p_index.columns_desc()) {
192
42.8k
            if (_unique_key_update_mode != UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS ||
193
42.8k
                _partial_update_input_columns.contains(pcolumn_desc.name())) {
194
41.6k
                std::string is_null_str = pcolumn_desc.is_nullable() ? "true" : "false";
195
41.6k
                std::string data_type_str = std::to_string(
196
41.6k
                        int64_t(TabletColumn::get_field_type_by_string(pcolumn_desc.type())));
197
41.6k
                auto it = slots_map.find(to_lower(pcolumn_desc.name()) + "+" + data_type_str +
198
41.6k
                                         is_null_str);
199
41.6k
                if (it == std::end(slots_map)) {
200
0
                    std::string keys {};
201
0
                    for (const auto& [key, _] : slots_map) {
202
0
                        keys += fmt::format("{},", key);
203
0
                    }
204
0
                    LOG_EVERY_SECOND(WARNING) << fmt::format(
205
0
                            "[OlapTableSchemaParam::init(const POlapTableSchemaParam& pschema)]: "
206
0
                            "unknown index column, column={}, type={}, data_type_str={}, "
207
0
                            "is_null_str={}, slots_map.keys()=[{}], {}\npschema={}",
208
0
                            pcolumn_desc.name(), pcolumn_desc.type(), data_type_str, is_null_str,
209
0
                            keys, debug_string(), pschema.ShortDebugString());
210
211
0
                    return Status::InternalError("unknown index column, column={}, type={}",
212
0
                                                 pcolumn_desc.name(), pcolumn_desc.type());
213
0
                }
214
41.6k
                index->slots.emplace_back(it->second);
215
41.6k
            }
216
42.8k
            TabletColumn* tc = _obj_pool.add(new TabletColumn());
217
42.8k
            tc->init_from_pb(pcolumn_desc);
218
42.8k
            index->columns.emplace_back(tc);
219
42.8k
        }
220
5.58k
        for (const auto& pindex_desc : p_index.indexes_desc()) {
221
0
            TabletIndex* ti = _obj_pool.add(new TabletIndex());
222
0
            ti->init_from_pb(pindex_desc);
223
0
            index->indexes.emplace_back(ti);
224
0
        }
225
5.58k
        _indexes.emplace_back(index);
226
5.58k
    }
227
228
5.56k
    if (pschema.has_row_binlog_index_schema()) {
229
0
        const auto& p_index = pschema.row_binlog_index_schema();
230
0
        auto* index = _obj_pool.add(new OlapTableIndexSchema());
231
0
        index->index_id = p_index.id();
232
0
        index->schema_hash = p_index.schema_hash();
233
0
        if (p_index.has_row_binlog_id()) {
234
0
            index->row_binlog_id = p_index.row_binlog_id();
235
0
        }
236
0
        for (const auto& pcolumn_desc : p_index.columns_desc()) {
237
0
            TabletColumn* tc = _obj_pool.add(new TabletColumn());
238
0
            tc->init_from_pb(pcolumn_desc);
239
0
            index->columns.emplace_back(tc);
240
0
        }
241
0
        for (const auto& pindex_desc : p_index.indexes_desc()) {
242
0
            TabletIndex* ti = _obj_pool.add(new TabletIndex());
243
0
            ti->init_from_pb(pindex_desc);
244
0
            index->indexes.emplace_back(ti);
245
0
        }
246
0
        _row_binlog_index_schema = index;
247
0
    }
248
249
5.56k
    std::sort(_indexes.begin(), _indexes.end(),
250
5.56k
              [](const OlapTableIndexSchema* lhs, const OlapTableIndexSchema* rhs) {
251
28
                  return lhs->index_id < rhs->index_id;
252
28
              });
253
5.56k
    return Status::OK();
254
5.56k
}
255
256
20.4k
Status OlapTableSchemaParam::init_unique_key_update_mode(const TOlapTableSchemaParam& tschema) {
257
20.4k
    if (tschema.__isset.unique_key_update_mode) {
258
20.3k
        switch (tschema.unique_key_update_mode) {
259
17.2k
        case doris::TUniqueKeyUpdateMode::UPSERT: {
260
17.2k
            _unique_key_update_mode = UniqueKeyUpdateModePB::UPSERT;
261
17.2k
            break;
262
0
        }
263
3.09k
        case doris::TUniqueKeyUpdateMode::UPDATE_FIXED_COLUMNS: {
264
3.09k
            _unique_key_update_mode = UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS;
265
3.09k
            break;
266
0
        }
267
0
        case doris::TUniqueKeyUpdateMode::UPDATE_FLEXIBLE_COLUMNS: {
268
0
            _unique_key_update_mode = UniqueKeyUpdateModePB::UPDATE_FLEXIBLE_COLUMNS;
269
0
            break;
270
0
        }
271
0
        default: {
272
0
            return Status::InternalError(
273
0
                    "Unknown unique_key_update_mode: {}, should be one of "
274
0
                    "UPSERT/UPDATE_FIXED_COLUMNS/UPDATE_FLEXIBLE_COLUMNS",
275
0
                    tschema.unique_key_update_mode);
276
0
        }
277
20.3k
        }
278
20.3k
        if (tschema.__isset.sequence_map_col_unique_id) {
279
20.3k
            _sequence_map_col_uid = tschema.sequence_map_col_unique_id;
280
20.3k
        }
281
20.3k
    } else {
282
        // for backward compatibility
283
18
        if (tschema.__isset.is_partial_update && tschema.is_partial_update) {
284
0
            _unique_key_update_mode = UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS;
285
18
        } else {
286
18
            _unique_key_update_mode = UniqueKeyUpdateModePB::UPSERT;
287
18
        }
288
18
    }
289
20.4k
    return Status::OK();
290
20.4k
}
291
292
20.4k
Status OlapTableSchemaParam::init(const TOlapTableSchemaParam& tschema) {
293
20.4k
    _db_id = tschema.db_id;
294
20.4k
    _table_id = tschema.table_id;
295
20.4k
    _version = tschema.version;
296
20.4k
    RETURN_IF_ERROR(init_unique_key_update_mode(tschema));
297
20.4k
    if (tschema.__isset.is_strict_mode) {
298
20.4k
        _is_strict_mode = tschema.is_strict_mode;
299
20.4k
    }
300
20.4k
    if (_unique_key_update_mode == UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS) {
301
3.09k
        _auto_increment_column = tschema.auto_increment_column;
302
3.09k
        if (!_auto_increment_column.empty() && tschema.auto_increment_column_unique_id == -1) {
303
0
            return Status::InternalError(
304
0
                    "Auto increment column id is not set in FE. Maybe FE is an older version "
305
0
                    "different from BE.");
306
0
        }
307
3.09k
        _auto_increment_column_unique_id = tschema.auto_increment_column_unique_id;
308
3.09k
    }
309
310
20.4k
    if (_unique_key_update_mode != UniqueKeyUpdateModePB::UPSERT) {
311
3.09k
        if (tschema.__isset.partial_update_new_key_policy) {
312
3.09k
            switch (tschema.partial_update_new_key_policy) {
313
3.09k
            case doris::TPartialUpdateNewRowPolicy::APPEND: {
314
3.09k
                _partial_update_new_row_policy = PartialUpdateNewRowPolicyPB::APPEND;
315
3.09k
                break;
316
0
            }
317
0
            case doris::TPartialUpdateNewRowPolicy::ERROR: {
318
0
                _partial_update_new_row_policy = PartialUpdateNewRowPolicyPB::ERROR;
319
0
                break;
320
0
            }
321
0
            default: {
322
0
                return Status::InvalidArgument(
323
0
                        "Unknown partial_update_new_key_behavior: {}, should be one of "
324
0
                        "'APPEND' or 'ERROR'",
325
0
                        tschema.partial_update_new_key_policy);
326
0
            }
327
3.09k
            }
328
3.09k
        }
329
3.09k
    }
330
331
20.4k
    for (const auto& tcolumn : tschema.partial_update_input_columns) {
332
9.94k
        _partial_update_input_columns.insert(tcolumn);
333
9.94k
    }
334
20.4k
    std::unordered_map<std::string, SlotDescriptor*> slots_map;
335
20.4k
    _tuple_desc = _obj_pool.add(new TupleDescriptor(tschema.tuple_desc));
336
123k
    for (const auto& t_slot_desc : tschema.slot_descs) {
337
123k
        auto* slot_desc = _obj_pool.add(new SlotDescriptor(t_slot_desc));
338
123k
        _tuple_desc->add_slot(slot_desc);
339
123k
        std::string is_null_str = slot_desc->is_nullable() ? "true" : "false";
340
123k
        std::string data_type_str = std::to_string(int64_t(slot_desc->col_type()));
341
123k
        slots_map.emplace(to_lower(slot_desc->col_name()) + "+" + data_type_str + is_null_str,
342
123k
                          slot_desc);
343
123k
    }
344
345
20.4k
    for (const auto& t_index : tschema.indexes) {
346
20.4k
        std::unordered_map<std::string, int32_t> index_slots_map;
347
20.4k
        auto* index = _obj_pool.add(new OlapTableIndexSchema());
348
20.4k
        index->index_id = t_index.id;
349
20.4k
        index->schema_hash = t_index.schema_hash;
350
20.4k
        if (t_index.__isset.row_binlog_id) {
351
20.4k
            index->row_binlog_id = t_index.row_binlog_id;
352
20.4k
        }
353
133k
        for (const auto& tcolumn_desc : t_index.columns_desc) {
354
133k
            if (_unique_key_update_mode != UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS ||
355
133k
                _partial_update_input_columns.contains(tcolumn_desc.column_name)) {
356
122k
                std::string is_null_str = tcolumn_desc.is_allow_null ? "true" : "false";
357
122k
                std::string data_type_str =
358
122k
                        std::to_string(int64_t(thrift_to_type(tcolumn_desc.column_type.type)));
359
122k
                auto it = slots_map.find(to_lower(tcolumn_desc.column_name) + "+" + data_type_str +
360
122k
                                         is_null_str);
361
122k
                if (it == slots_map.end()) {
362
0
                    std::stringstream ss;
363
0
                    ss << tschema;
364
0
                    std::string keys {};
365
0
                    for (const auto& [key, _] : slots_map) {
366
0
                        keys += fmt::format("{},", key);
367
0
                    }
368
0
                    LOG_EVERY_SECOND(WARNING) << fmt::format(
369
0
                            "[OlapTableSchemaParam::init(const TOlapTableSchemaParam& tschema)]: "
370
0
                            "unknown index column, column={}, type={}, data_type_str={}, "
371
0
                            "is_null_str={}, slots_map.keys()=[{}], {}\ntschema={}",
372
0
                            tcolumn_desc.column_name, tcolumn_desc.column_type.type, data_type_str,
373
0
                            is_null_str, keys, debug_string(), ss.str());
374
0
                    return Status::InternalError("unknown index column, column={}, type={}",
375
0
                                                 tcolumn_desc.column_name,
376
0
                                                 tcolumn_desc.column_type.type);
377
0
                }
378
122k
                index->slots.emplace_back(it->second);
379
122k
            }
380
133k
            index_slots_map.emplace(to_lower(tcolumn_desc.column_name), tcolumn_desc.col_unique_id);
381
133k
            TabletColumn* tc = _obj_pool.add(new TabletColumn());
382
133k
            tc->init_from_thrift(tcolumn_desc);
383
133k
            index->columns.emplace_back(tc);
384
133k
        }
385
20.4k
        if (t_index.__isset.indexes_desc) {
386
20.3k
            for (const auto& tindex_desc : t_index.indexes_desc) {
387
0
                std::vector<int32_t> column_unique_ids(tindex_desc.columns.size());
388
0
                for (size_t i = 0; i < tindex_desc.columns.size(); i++) {
389
0
                    auto it = index_slots_map.find(to_lower(tindex_desc.columns[i]));
390
0
                    if (it != index_slots_map.end()) {
391
0
                        column_unique_ids[i] = it->second;
392
0
                    }
393
0
                }
394
0
                TabletIndex* ti = _obj_pool.add(new TabletIndex());
395
0
                ti->init_from_thrift(tindex_desc, column_unique_ids);
396
0
                index->indexes.emplace_back(ti);
397
0
            }
398
20.3k
        }
399
20.4k
        if (t_index.__isset.where_clause) {
400
0
            RETURN_IF_ERROR(VExpr::create_expr_tree(t_index.where_clause, index->where_clause));
401
0
        }
402
20.4k
        _indexes.emplace_back(index);
403
20.4k
    }
404
405
20.4k
    if (tschema.__isset.row_binlog_index_schema) {
406
3
        const auto& t_index = tschema.row_binlog_index_schema;
407
3
        auto* index = _obj_pool.add(new OlapTableIndexSchema());
408
3
        index->index_id = t_index.id;
409
3
        index->schema_hash = t_index.schema_hash;
410
3
        if (t_index.__isset.row_binlog_id) {
411
0
            index->row_binlog_id = t_index.row_binlog_id;
412
0
        }
413
9
        for (const auto& tcolumn_desc : t_index.columns_desc) {
414
9
            TabletColumn* tc = _obj_pool.add(new TabletColumn());
415
9
            tc->init_from_thrift(tcolumn_desc);
416
9
            index->columns.emplace_back(tc);
417
9
        }
418
3
        _row_binlog_index_schema = index;
419
3
    }
420
421
20.4k
    std::sort(_indexes.begin(), _indexes.end(),
422
20.4k
              [](const OlapTableIndexSchema* lhs, const OlapTableIndexSchema* rhs) {
423
32
                  return lhs->index_id < rhs->index_id;
424
32
              });
425
20.4k
    return Status::OK();
426
20.4k
}
427
428
9.56k
void OlapTableSchemaParam::to_protobuf(POlapTableSchemaParam* pschema) const {
429
9.56k
    pschema->set_db_id(_db_id);
430
9.56k
    pschema->set_table_id(_table_id);
431
9.56k
    pschema->set_version(_version);
432
9.56k
    pschema->set_unique_key_update_mode(_unique_key_update_mode);
433
9.56k
    if (_unique_key_update_mode == UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS) {
434
        // for backward compatibility
435
1.45k
        pschema->set_partial_update(true);
436
1.45k
    }
437
9.56k
    pschema->set_partial_update_new_key_policy(_partial_update_new_row_policy);
438
9.56k
    pschema->set_is_strict_mode(_is_strict_mode);
439
9.56k
    pschema->set_auto_increment_column(_auto_increment_column);
440
9.56k
    pschema->set_auto_increment_column_unique_id(_auto_increment_column_unique_id);
441
9.56k
    pschema->set_timestamp_ms(_timestamp_ms);
442
9.56k
    pschema->set_timezone(_timezone);
443
9.56k
    pschema->set_nano_seconds(_nano_seconds);
444
9.56k
    pschema->set_sequence_map_col_unique_id(_sequence_map_col_uid);
445
9.56k
    for (auto col : _partial_update_input_columns) {
446
4.71k
        *pschema->add_partial_update_input_columns() = col;
447
4.71k
    }
448
9.56k
    _tuple_desc->to_protobuf(pschema->mutable_tuple_desc());
449
68.5k
    for (auto* slot : _tuple_desc->slots()) {
450
68.5k
        slot->to_protobuf(pschema->add_slot_descs());
451
68.5k
    }
452
9.58k
    for (auto* index : _indexes) {
453
9.58k
        index->to_protobuf(pschema->add_indexes());
454
9.58k
    }
455
9.56k
    if (_row_binlog_index_schema != nullptr) {
456
0
        _row_binlog_index_schema->to_protobuf(pschema->mutable_row_binlog_index_schema());
457
0
    }
458
9.56k
}
459
460
0
std::string OlapTableSchemaParam::debug_string() const {
461
0
    std::stringstream ss;
462
0
    ss << "tuple_desc=" << _tuple_desc->debug_string();
463
0
    return ss.str();
464
0
}
465
466
VOlapTablePartitionParam::VOlapTablePartitionParam(std::shared_ptr<OlapTableSchemaParam>& schema,
467
                                                   const TOlapTablePartitionParam& t_param)
468
14.3k
        : _schema(schema),
469
14.3k
          _t_param(t_param),
470
14.3k
          _slots(_schema->tuple_desc()->slots()),
471
14.3k
          _mem_tracker(std::make_unique<MemTracker>("OlapTablePartitionParam")),
472
14.3k
          _part_type(t_param.partition_type) {
473
14.3k
    if (t_param.__isset.enable_automatic_partition && t_param.enable_automatic_partition) {
474
34
        _is_auto_partition = true;
475
34
        auto size = t_param.partition_function_exprs.size();
476
34
        _part_func_ctx.resize(size);
477
34
        _partition_function.resize(size);
478
34
        DCHECK((t_param.partition_type == TPartitionType::RANGE_PARTITIONED && size == 1) ||
479
0
               (t_param.partition_type == TPartitionType::LIST_PARTITIONED && size >= 1))
480
0
                << "now support only 1 partition column for auto range partitions. "
481
0
                << t_param.partition_type << " " << size;
482
68
        for (int i = 0; i < size; ++i) {
483
34
            Status st =
484
34
                    VExpr::create_expr_tree(t_param.partition_function_exprs[i], _part_func_ctx[i]);
485
34
            if (!st.ok()) {
486
0
                throw Exception(Status::InternalError("Partition function expr is not valid"),
487
0
                                "Partition function expr is not valid");
488
0
            }
489
34
            _partition_function[i] = _part_func_ctx[i]->root();
490
34
        }
491
34
    }
492
493
14.3k
    if (t_param.__isset.enable_auto_detect_overwrite && t_param.enable_auto_detect_overwrite) {
494
1
        _is_auto_detect_overwrite = true;
495
1
        DCHECK(t_param.__isset.overwrite_group_id);
496
1
        _overwrite_group_id = t_param.overwrite_group_id;
497
1
    }
498
499
14.3k
    if (t_param.__isset.master_address) {
500
40
        _master_address = std::make_shared<TNetworkAddress>(t_param.master_address);
501
40
    }
502
503
14.3k
    if (_is_auto_partition) {
504
        // the nullable mode depends on partition_exprs. not column slots. so use them.
505
34
        DCHECK(_partition_function.size() <= _slots.size())
506
0
                << _partition_function.size() << ", " << _slots.size();
507
508
        // suppose (k0, [k1], [k2]), so get [k1, 0], [k2, 1]
509
34
        std::map<std::string, int> partition_slots_map; // name to idx in part_exprs
510
68
        for (size_t i = 0; i < t_param.partition_columns.size(); i++) {
511
34
            partition_slots_map.emplace(t_param.partition_columns[i], i);
512
34
        }
513
514
        // here we rely on the same order and number of the _part_funcs and _slots in the prefix
515
        // _part_block contains all slots of table.
516
128
        for (auto* slot : _slots) {
517
            // try to replace with partition expr.
518
128
            if (auto it = partition_slots_map.find(slot->col_name());
519
128
                it != partition_slots_map.end()) { // it's a partition column slot
520
34
                auto& expr_type = _partition_function[it->second]->data_type();
521
34
                _partition_block.insert({expr_type->create_column(), expr_type, slot->col_name()});
522
94
            } else {
523
94
                _partition_block.insert({slot->get_empty_mutable_column(),
524
94
                                         slot->get_data_type_ptr(), slot->col_name()});
525
94
            }
526
128
        }
527
34
        VLOG_TRACE << _partition_block.dump_structure();
528
14.2k
    } else {
529
        // we insert all. but not all will be used. it will controlled by _partition_slot_locs
530
74.6k
        for (auto* slot : _slots) {
531
74.6k
            _partition_block.insert({slot->get_empty_mutable_column(), slot->get_data_type_ptr(),
532
74.6k
                                     slot->col_name()});
533
74.6k
        }
534
14.2k
    }
535
14.3k
}
536
537
14.3k
VOlapTablePartitionParam::~VOlapTablePartitionParam() {
538
14.3k
    _mem_tracker->release(_mem_usage);
539
14.3k
}
540
541
14.2k
Status VOlapTablePartitionParam::init() {
542
14.2k
    std::vector<std::string> slot_column_names;
543
74.8k
    for (auto* slot_desc : _schema->tuple_desc()->slots()) {
544
74.8k
        slot_column_names.emplace_back(slot_desc->col_name());
545
74.8k
    }
546
547
14.2k
    auto find_slot_locs = [&slot_column_names](const std::string& slot_name,
548
14.2k
                                               std::vector<uint16_t>& locs,
549
19.5k
                                               const std::string& column_type) {
550
19.5k
        auto it = std::find(slot_column_names.begin(), slot_column_names.end(), slot_name);
551
19.5k
        if (it == slot_column_names.end()) {
552
0
            return Status::InternalError("{} column not found, column ={}", column_type, slot_name);
553
0
        }
554
19.5k
        locs.emplace_back(it - slot_column_names.begin());
555
19.5k
        return Status::OK();
556
19.5k
    };
557
558
    // here we find the partition columns. others maybe non-partition columns/special columns.
559
14.2k
    if (_t_param.__isset.partition_columns) {
560
2.26k
        for (auto& part_col : _t_param.partition_columns) {
561
2.26k
            RETURN_IF_ERROR(find_slot_locs(part_col, _partition_slot_locs, "partition"));
562
2.26k
        }
563
2.22k
    }
564
565
14.2k
    _partitions_map = std::make_unique<
566
14.2k
            std::map<BlockRowWithIndicator, VOlapTablePartition*, VOlapTablePartKeyComparator>>(
567
14.2k
            VOlapTablePartKeyComparator(_partition_slot_locs, _transformed_slot_locs));
568
14.2k
    if (_t_param.__isset.distributed_columns) {
569
17.2k
        for (auto& col : _t_param.distributed_columns) {
570
17.2k
            RETURN_IF_ERROR(find_slot_locs(col, _distributed_slot_locs, "distributed"));
571
17.2k
        }
572
14.2k
    }
573
574
    // for both auto/non-auto partition table.
575
14.2k
    _is_in_partition = _part_type == TPartitionType::type::LIST_PARTITIONED;
576
577
    // initial partitions. if meet dummy partitions only for open BE nodes, not generate key of them for finding
578
14.8k
    for (const auto& t_part : _t_param.partitions) {
579
14.8k
        VOlapTablePartition* part = nullptr;
580
14.8k
        RETURN_IF_ERROR(generate_partition_from(t_part, part));
581
14.8k
        _partitions.emplace_back(part);
582
583
14.8k
        if (!_t_param.partitions_is_fake) {
584
14.8k
            if (_is_in_partition) {
585
1.67k
                for (auto& in_key : part->in_keys) {
586
1.67k
                    _partitions_map->emplace(std::tuple {in_key.first, in_key.second, false}, part);
587
1.67k
                }
588
13.1k
            } else {
589
13.1k
                _partitions_map->emplace(
590
13.1k
                        std::tuple {part->end_key.first, part->end_key.second, false}, part);
591
13.1k
            }
592
14.8k
        }
593
14.8k
    }
594
595
14.2k
    _mem_usage = _partition_block.allocated_bytes();
596
14.2k
    _mem_tracker->consume(_mem_usage);
597
14.2k
    return Status::OK();
598
14.2k
}
599
600
bool VOlapTablePartitionParam::_part_contains(VOlapTablePartition* part,
601
200k
                                              BlockRowWithIndicator key) const {
602
200k
    VOlapTablePartKeyComparator comparator(_partition_slot_locs, _transformed_slot_locs);
603
    // we have used upper_bound to find to ensure key < part.right and this part is closest(right - key is min)
604
    // now we only have to check (key >= part.left). the comparator(a,b) means a < b, so we use anti
605
200k
    return part->start_key.second == -1 /* spj: start_key.second == -1 means only single partition*/
606
200k
           || !comparator(key, std::tuple {part->start_key.first, part->start_key.second, false});
607
200k
}
608
609
// insert value into _partition_block's column
610
// NOLINTBEGIN(readability-function-size)
611
3.89k
static Status _create_partition_key(const TExprNode& t_expr, BlockRow* part_key, uint16_t pos) {
612
3.89k
    auto column = std::move(*part_key->first->get_by_position(pos).column).mutate();
613
3.89k
    switch (t_expr.node_type) {
614
2.26k
    case TExprNodeType::DATE_LITERAL: {
615
2.26k
        auto primitive_type =
616
2.26k
                DataTypeFactory::instance().create_data_type(t_expr.type)->get_primitive_type();
617
2.26k
        if (primitive_type == TYPE_DATEV2) {
618
794
            DateV2Value<DateV2ValueType> dt;
619
794
            CastParameters params;
620
794
            if (!CastToDateV2::from_string_strict_mode<DatelikeParseMode::STRICT>(
621
794
                        {t_expr.date_literal.value.c_str(), t_expr.date_literal.value.size()}, dt,
622
794
                        nullptr, params)) {
623
0
                std::stringstream ss;
624
0
                ss << "invalid date literal in partition column, date=" << t_expr.date_literal;
625
0
                return Status::InternalError(ss.str());
626
0
            }
627
794
            column->insert_data(reinterpret_cast<const char*>(&dt), 0);
628
1.47k
        } else if (primitive_type == TYPE_DATETIMEV2) {
629
1.47k
            DateV2Value<DateTimeV2ValueType> dt;
630
1.47k
            const int32_t scale =
631
1.47k
                    t_expr.type.types.empty() ? -1 : t_expr.type.types.front().scalar_type.scale;
632
1.47k
            CastParameters params;
633
1.47k
            if (!CastToDatetimeV2::from_string_strict_mode<DatelikeParseMode::STRICT>(
634
1.47k
                        {t_expr.date_literal.value.c_str(), t_expr.date_literal.value.size()}, dt,
635
1.47k
                        nullptr, scale, params)) {
636
0
                std::stringstream ss;
637
0
                ss << "invalid date literal in partition column, date=" << t_expr.date_literal;
638
0
                return Status::InternalError(ss.str());
639
0
            }
640
1.47k
            column->insert_data(reinterpret_cast<const char*>(&dt), 0);
641
1.47k
        } else if (primitive_type == TYPE_TIMESTAMPTZ) {
642
0
            TimestampTzValue res;
643
0
            CastParameters params {.status = Status::OK(), .is_strict = true};
644
0
            const int32_t scale =
645
0
                    t_expr.type.types.empty() ? -1 : t_expr.type.types.front().scalar_type.scale;
646
0
            if (!CastToTimestampTz::from_string(
647
0
                        {t_expr.date_literal.value.c_str(), t_expr.date_literal.value.size()}, res,
648
0
                        params, nullptr, scale)) [[unlikely]] {
649
0
                std::stringstream ss;
650
0
                ss << "invalid timestamptz literal in partition column, value="
651
0
                   << t_expr.date_literal;
652
0
                return Status::InternalError(ss.str());
653
0
            }
654
0
            column->insert_data(reinterpret_cast<const char*>(&res), 0);
655
2
        } else {
656
2
            VecDateTimeValue dt;
657
2
            CastParameters params;
658
2
            if (!CastToDateOrDatetime::from_string_strict_mode<DatelikeParseMode::STRICT,
659
2
                                                               DatelikeTargetType::DATE_TIME>(
660
2
                        {t_expr.date_literal.value.c_str(), t_expr.date_literal.value.size()}, dt,
661
2
                        nullptr, params)) {
662
0
                std::stringstream ss;
663
0
                ss << "invalid date literal in partition column, date=" << t_expr.date_literal;
664
0
                return Status::InternalError(ss.str());
665
0
            }
666
2
            if (primitive_type == TYPE_DATE) {
667
0
                dt.cast_to_date();
668
0
            }
669
2
            column->insert_data(reinterpret_cast<const char*>(&dt), 0);
670
2
        }
671
2.26k
        break;
672
2.26k
    }
673
2.26k
    case TExprNodeType::INT_LITERAL: {
674
686
        switch (t_expr.type.types[0].scalar_type.type) {
675
48
        case TPrimitiveType::TINYINT: {
676
48
            auto value = cast_set<int8_t>(t_expr.int_literal.value);
677
48
            column->insert_data(reinterpret_cast<const char*>(&value), 0);
678
48
            break;
679
0
        }
680
0
        case TPrimitiveType::SMALLINT: {
681
0
            auto value = cast_set<int16_t>(t_expr.int_literal.value);
682
0
            column->insert_data(reinterpret_cast<const char*>(&value), 0);
683
0
            break;
684
0
        }
685
630
        case TPrimitiveType::INT: {
686
630
            auto value = cast_set<int32_t>(t_expr.int_literal.value);
687
630
            column->insert_data(reinterpret_cast<const char*>(&value), 0);
688
630
            break;
689
0
        }
690
0
        default:
691
0
            int64_t value = t_expr.int_literal.value;
692
0
            column->insert_data(reinterpret_cast<const char*>(&value), 0);
693
686
        }
694
686
        break;
695
686
    }
696
686
    case TExprNodeType::LARGE_INT_LITERAL: {
697
0
        StringParser::ParseResult parse_result = StringParser::PARSE_SUCCESS;
698
0
        auto value = StringParser::string_to_int<__int128>(t_expr.large_int_literal.value.c_str(),
699
0
                                                           t_expr.large_int_literal.value.size(),
700
0
                                                           &parse_result);
701
0
        if (parse_result != StringParser::PARSE_SUCCESS) {
702
0
            value = MAX_INT128;
703
0
        }
704
0
        column->insert_data(reinterpret_cast<const char*>(&value), 0);
705
0
        break;
706
686
    }
707
894
    case TExprNodeType::STRING_LITERAL: {
708
894
        size_t len = t_expr.string_literal.value.size();
709
894
        const char* str_val = t_expr.string_literal.value.c_str();
710
894
        column->insert_data(str_val, len);
711
894
        break;
712
686
    }
713
0
    case TExprNodeType::BOOL_LITERAL: {
714
0
        column->insert_data(reinterpret_cast<const char*>(&t_expr.bool_literal.value), 0);
715
0
        break;
716
686
    }
717
64
    case TExprNodeType::NULL_LITERAL: {
718
        // insert a null literal
719
64
        if (!column->is_nullable()) {
720
            // https://github.com/apache/doris/pull/39449 have forbid this cause. always add this check as protective measures
721
0
            return Status::InternalError("The column {} is not null, can't insert into NULL value.",
722
0
                                         part_key->first->get_by_position(pos).name);
723
0
        }
724
64
        column->insert_data(nullptr, 0);
725
64
        break;
726
64
    }
727
0
    default: {
728
0
        return Status::InternalError("unsupported partition column node type, type={}",
729
0
                                     t_expr.node_type);
730
64
    }
731
3.89k
    }
732
3.92k
    part_key->second = cast_set<int32_t>(column->size() - 1);
733
3.92k
    return Status::OK();
734
3.89k
}
735
// NOLINTEND(readability-function-size)
736
737
Status VOlapTablePartitionParam::_create_partition_keys(const std::vector<TExprNode>& t_exprs,
738
3.84k
                                                        BlockRow* part_key) {
739
7.74k
    for (int i = 0; i < t_exprs.size(); i++) {
740
3.89k
        RETURN_IF_ERROR(_create_partition_key(t_exprs[i], part_key, _partition_slot_locs[i]));
741
3.89k
    }
742
3.84k
    return Status::OK();
743
3.84k
}
744
745
Status VOlapTablePartitionParam::generate_partition_from(const TOlapTablePartition& t_part,
746
14.7k
                                                         VOlapTablePartition*& part_result) {
747
14.7k
    DCHECK(part_result == nullptr);
748
    // here we set the default value of partition bounds first! if it doesn't have some key, it will be -1.
749
14.7k
    part_result = _obj_pool.add(new VOlapTablePartition(&_partition_block));
750
14.7k
    part_result->id = t_part.id;
751
14.7k
    part_result->is_mutable = t_part.is_mutable;
752
    // only load_to_single_tablet = true will set load_tablet_idx
753
14.7k
    if (t_part.__isset.load_tablet_idx) {
754
2.18k
        part_result->load_tablet_idx = t_part.load_tablet_idx;
755
2.18k
    }
756
757
14.7k
    if (_is_in_partition) {
758
1.69k
        for (const auto& keys : t_part.in_keys) {
759
1.66k
            RETURN_IF_ERROR(_create_partition_keys(
760
1.66k
                    keys, &part_result->in_keys.emplace_back(&_partition_block, -1)));
761
1.66k
        }
762
1.69k
        if (t_part.__isset.is_default_partition && t_part.is_default_partition &&
763
1.69k
            _default_partition == nullptr) {
764
0
            _default_partition = part_result;
765
0
        }
766
13.0k
    } else { // range
767
13.0k
        if (t_part.__isset.start_keys) {
768
1.07k
            RETURN_IF_ERROR(_create_partition_keys(t_part.start_keys, &part_result->start_key));
769
1.07k
        }
770
        // we generate the right bound but not insert into partition map
771
13.0k
        if (t_part.__isset.end_keys) {
772
1.09k
            RETURN_IF_ERROR(_create_partition_keys(t_part.end_keys, &part_result->end_key));
773
1.09k
        }
774
13.0k
    }
775
776
14.7k
    part_result->num_buckets = t_part.num_buckets;
777
14.7k
    auto num_indexes = _schema->indexes().size();
778
14.7k
    if (t_part.indexes.size() != num_indexes) {
779
0
        return Status::InternalError(
780
0
                "number of partition's index is not equal with schema's"
781
0
                ", num_part_indexes={}, num_schema_indexes={}",
782
0
                t_part.indexes.size(), num_indexes);
783
0
    }
784
14.7k
    part_result->indexes = t_part.indexes;
785
14.7k
    std::sort(part_result->indexes.begin(), part_result->indexes.end(),
786
14.7k
              [](const OlapTableIndexTablets& lhs, const OlapTableIndexTablets& rhs) {
787
0
                  return lhs.index_id < rhs.index_id;
788
0
              });
789
    // check index
790
29.6k
    for (int j = 0; j < num_indexes; ++j) {
791
14.8k
        if (part_result->indexes[j].index_id != _schema->indexes()[j]->index_id) {
792
0
            return Status::InternalError(
793
0
                    "partition's index is not equal with schema's"
794
0
                    ", part_index={}, schema_index={}",
795
0
                    part_result->indexes[j].index_id, _schema->indexes()[j]->index_id);
796
0
        }
797
14.8k
    }
798
14.8k
    if (t_part.__isset.total_replica_num) {
799
14.8k
        part_result->total_replica_num = t_part.total_replica_num;
800
14.8k
    }
801
14.8k
    if (t_part.__isset.load_required_replica_num) {
802
14.8k
        part_result->load_required_replica_num = t_part.load_required_replica_num;
803
14.8k
    }
804
14.7k
    if (t_part.__isset.tablet_version_gap_backends) {
805
0
        for (const auto& [tablet_id, backend_ids] : t_part.tablet_version_gap_backends) {
806
0
            auto& gap_set = part_result->tablet_version_gap_backends[tablet_id];
807
0
            for (auto backend_id : backend_ids) {
808
0
                gap_set.insert(backend_id);
809
0
            }
810
0
        }
811
0
    }
812
14.7k
    return Status::OK();
813
14.7k
}
814
815
Status VOlapTablePartitionParam::add_partitions(
816
6
        const std::vector<TOlapTablePartition>& partitions) {
817
6
    for (const auto& t_part : partitions) {
818
6
        auto* part = _obj_pool.add(new VOlapTablePartition(&_partition_block));
819
6
        part->id = t_part.id;
820
6
        part->is_mutable = t_part.is_mutable;
821
822
        // we dont pass right keys when it's MAX_VALUE. so there's possibility we only have start_key but not end_key
823
        // range partition
824
6
        if (t_part.__isset.start_keys) {
825
2
            RETURN_IF_ERROR(_create_partition_keys(t_part.start_keys, &part->start_key));
826
2
        }
827
6
        if (t_part.__isset.end_keys) {
828
2
            RETURN_IF_ERROR(_create_partition_keys(t_part.end_keys, &part->end_key));
829
2
        }
830
        // list partition - we only set 1 value in 1 partition for new created ones
831
6
        if (t_part.__isset.in_keys) {
832
4
            for (const auto& keys : t_part.in_keys) {
833
4
                RETURN_IF_ERROR(_create_partition_keys(
834
4
                        keys, &part->in_keys.emplace_back(&_partition_block, -1)));
835
4
            }
836
4
            if (t_part.__isset.is_default_partition && t_part.is_default_partition) {
837
0
                _default_partition = part;
838
0
            }
839
4
        }
840
841
6
        part->num_buckets = t_part.num_buckets;
842
6
        auto num_indexes = _schema->indexes().size();
843
6
        if (t_part.indexes.size() != num_indexes) {
844
0
            return Status::InternalError(
845
0
                    "number of partition's index is not equal with schema's"
846
0
                    ", num_part_indexes={}, num_schema_indexes={}",
847
0
                    t_part.indexes.size(), num_indexes);
848
0
        }
849
6
        part->indexes = t_part.indexes;
850
6
        std::sort(part->indexes.begin(), part->indexes.end(),
851
6
                  [](const OlapTableIndexTablets& lhs, const OlapTableIndexTablets& rhs) {
852
0
                      return lhs.index_id < rhs.index_id;
853
0
                  });
854
        // check index
855
12
        for (int j = 0; j < num_indexes; ++j) {
856
6
            if (part->indexes[j].index_id != _schema->indexes()[j]->index_id) {
857
0
                return Status::InternalError(
858
0
                        "partition's index is not equal with schema's"
859
0
                        ", part_index={}, schema_index={}",
860
0
                        part->indexes[j].index_id, _schema->indexes()[j]->index_id);
861
0
            }
862
6
        }
863
6
        _partitions.emplace_back(part);
864
        // after _creating_partiton_keys
865
6
        if (_is_in_partition) {
866
4
            for (auto& in_key : part->in_keys) {
867
4
                _partitions_map->emplace(std::tuple {in_key.first, in_key.second, false}, part);
868
4
            }
869
4
        } else {
870
2
            _partitions_map->emplace(std::tuple {part->end_key.first, part->end_key.second, false},
871
2
                                     part);
872
2
        }
873
6
    }
874
875
6
    return Status::OK();
876
6
}
877
878
Status VOlapTablePartitionParam::replace_partitions(
879
        std::vector<int64_t>& old_partition_ids,
880
1
        const std::vector<TOlapTablePartition>& new_partitions) {
881
    // remove old replaced partitions
882
1
    DCHECK(old_partition_ids.size() == new_partitions.size());
883
884
    // init and add new partitions. insert into _partitions
885
3
    for (int i = 0; i < new_partitions.size(); i++) {
886
2
        const auto& t_part = new_partitions[i];
887
        // pair old_partition_ids and new_partitions one by one. TODO: sort to opt performance
888
2
        VOlapTablePartition* old_part = nullptr;
889
2
        auto old_part_id = old_partition_ids[i];
890
2
        if (auto it = std::find_if(
891
2
                    _partitions.begin(), _partitions.end(),
892
3
                    [=](const VOlapTablePartition* lhs) { return lhs->id == old_part_id; });
893
2
            it != _partitions.end()) {
894
2
            old_part = *it;
895
2
        } else {
896
0
            return Status::InternalError("Cannot find old tablet {} in replacing", old_part_id);
897
0
        }
898
899
2
        auto* part = _obj_pool.add(new VOlapTablePartition(&_partition_block));
900
2
        part->id = t_part.id;
901
2
        part->is_mutable = t_part.is_mutable;
902
903
        /// just substitute directly. no need to remove and reinsert keys.
904
        // range partition
905
2
        part->start_key = std::move(old_part->start_key);
906
2
        part->end_key = std::move(old_part->end_key);
907
        // list partition
908
2
        part->in_keys = std::move(old_part->in_keys);
909
2
        if (t_part.__isset.is_default_partition && t_part.is_default_partition) {
910
0
            _default_partition = part;
911
0
        }
912
913
2
        part->num_buckets = t_part.num_buckets;
914
2
        auto num_indexes = _schema->indexes().size();
915
2
        if (t_part.indexes.size() != num_indexes) {
916
0
            return Status::InternalError(
917
0
                    "number of partition's index is not equal with schema's"
918
0
                    ", num_part_indexes={}, num_schema_indexes={}",
919
0
                    t_part.indexes.size(), num_indexes);
920
0
        }
921
2
        part->indexes = t_part.indexes;
922
2
        std::sort(part->indexes.begin(), part->indexes.end(),
923
2
                  [](const OlapTableIndexTablets& lhs, const OlapTableIndexTablets& rhs) {
924
0
                      return lhs.index_id < rhs.index_id;
925
0
                  });
926
        // check index
927
4
        for (int j = 0; j < num_indexes; ++j) {
928
2
            if (part->indexes[j].index_id != _schema->indexes()[j]->index_id) {
929
0
                return Status::InternalError(
930
0
                        "partition's index is not equal with schema's"
931
0
                        ", part_index={}, schema_index={}",
932
0
                        part->indexes[j].index_id, _schema->indexes()[j]->index_id);
933
0
            }
934
2
        }
935
936
        // add new partitions with new id.
937
2
        _partitions.emplace_back(part);
938
2
        VLOG_NOTICE << "params add new partition " << part->id;
939
940
        // replace items in _partition_maps
941
2
        if (_is_in_partition) {
942
0
            for (auto& in_key : part->in_keys) {
943
0
                (*_partitions_map)[std::tuple {in_key.first, in_key.second, false}] = part;
944
0
            }
945
2
        } else {
946
2
            (*_partitions_map)[std::tuple {part->end_key.first, part->end_key.second, false}] =
947
2
                    part;
948
2
        }
949
2
    }
950
    // remove old partitions by id
951
1
    std::ranges::sort(old_partition_ids);
952
5
    for (auto it = _partitions.begin(); it != _partitions.end();) {
953
4
        if (std::ranges::binary_search(old_partition_ids, (*it)->id)) {
954
2
            it = _partitions.erase(it);
955
2
        } else {
956
2
            it++;
957
2
        }
958
4
    }
959
960
1
    return Status::OK();
961
1
}
962
963
} // namespace doris