Coverage Report

Created: 2026-08-14 13:56

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/storage/tablet/tablet_schema.h
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Source
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// Licensed to the Apache Software Foundation (ASF) under one
2
// 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
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
7
// with the License.  You may obtain a copy of the License at
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//
9
//   http://www.apache.org/licenses/LICENSE-2.0
10
//
11
// Unless required by applicable law or agreed to in writing,
12
// software distributed under the License is distributed on an
13
// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
14
// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
17
18
#pragma once
19
20
#include <gen_cpp/AgentService_types.h>
21
#include <gen_cpp/Types_types.h>
22
#include <gen_cpp/olap_common.pb.h>
23
#include <gen_cpp/olap_file.pb.h>
24
#include <gen_cpp/segment_v2.pb.h>
25
#include <parallel_hashmap/phmap.h>
26
27
#include <algorithm>
28
#include <cstdint>
29
#include <map>
30
#include <memory>
31
#include <string>
32
#include <unordered_map>
33
#include <unordered_set>
34
#include <utility>
35
#include <vector>
36
37
#include "common/consts.h"
38
#include "common/status.h"
39
#include "core/data_type/define_primitive_type.h"
40
#include "core/string_ref.h"
41
#include "core/types.h"
42
#include "exec/common/string_utils/string_utils.h"
43
#include "exprs/aggregate/aggregate_function.h"
44
#include "runtime/descriptors.h"
45
#include "runtime/memory/lru_cache_policy.h"
46
#include "storage/index/inverted/inverted_index_parser.h"
47
#include "storage/metadata_adder.h"
48
#include "storage/olap_common.h"
49
#include "storage/segment/options.h"
50
#include "util/debug_points.h"
51
#include "util/json/path_in_data.h"
52
#include "util/string_parser.hpp"
53
#include "util/string_util.h"
54
55
namespace doris {
56
class Block;
57
class PathInData;
58
class IDataType;
59
60
struct OlapTableIndexSchema;
61
class TColumn;
62
class TOlapTableIndex;
63
class TabletColumn;
64
65
using TabletColumnPtr = std::shared_ptr<TabletColumn>;
66
67
class TabletColumn : public MetadataAdder<TabletColumn> {
68
public:
69
    struct VariantParams {
70
        int32_t max_subcolumns_count = 0;
71
        bool enable_typed_paths_to_sparse = false;
72
        int32_t max_sparse_column_statistics_size =
73
                BeConsts::DEFAULT_VARIANT_MAX_SPARSE_COLUMN_STATS_SIZE;
74
        // default to 0, no shard
75
        int32_t sparse_hash_shard_count = 0;
76
77
        bool enable_doc_mode = false;
78
        int64_t doc_materialization_min_rows = 0;
79
        int32_t doc_hash_shard_count = 64;
80
81
        bool enable_nested_group = false;
82
    };
83
84
    TabletColumn();
85
    TabletColumn(const ColumnPB& column);
86
    TabletColumn(const TColumn& column);
87
    TabletColumn(FieldAggregationMethod agg, FieldType type);
88
    TabletColumn(FieldAggregationMethod agg, FieldType filed_type, bool is_nullable);
89
    TabletColumn(FieldAggregationMethod agg, FieldType filed_type, bool is_nullable,
90
                 int32_t unique_id, size_t length);
91
92
#ifdef BE_TEST
93
68.3k
    virtual ~TabletColumn() = default;
94
#endif
95
96
    void init_from_pb(const ColumnPB& column);
97
    void init_from_thrift(const TColumn& column);
98
    void to_schema_pb(ColumnPB* column) const;
99
100
230k
    int32_t unique_id() const { return _unique_id; }
101
2.20k
    void set_unique_id(int32_t id) { _unique_id = id; }
102
219k
    const std::string& name() const { return _col_name; }
103
24.6k
    const std::string& name_lower_case() const { return _col_name_lower_case; }
104
8.42k
    void set_name(std::string col_name) {
105
8.42k
        _col_name = col_name;
106
8.42k
        _col_name_lower_case = to_lower(_col_name);
107
8.42k
    }
108
2.35M
    MOCK_FUNCTION FieldType type() const { return _type; }
109
9.10k
    void set_type(FieldType type) { _type = type; }
110
42.7k
    bool is_key() const { return _is_key; }
111
74.0k
    bool is_nullable() const { return _is_nullable; }
112
0
    bool is_auto_increment() const { return _is_auto_increment; }
113
0
    bool is_seqeunce_col() const { return _col_name == SEQUENCE_COL; }
114
16
    bool is_on_update_current_timestamp() const { return _is_on_update_current_timestamp; }
115
101k
    bool is_variant_type() const { return _type == FieldType::OLAP_FIELD_TYPE_VARIANT; }
116
21.9k
    bool is_bf_column() const { return _is_bf_column; }
117
55.8k
    bool is_array_type() const { return _type == FieldType::OLAP_FIELD_TYPE_ARRAY; }
118
10.1k
    bool is_agg_state_type() const { return _type == FieldType::OLAP_FIELD_TYPE_AGG_STATE; }
119
0
    bool is_jsonb_type() const { return _type == FieldType::OLAP_FIELD_TYPE_JSONB; }
120
159
    bool is_length_variable_type() const {
121
159
        return _type == FieldType::OLAP_FIELD_TYPE_CHAR ||
122
159
               _type == FieldType::OLAP_FIELD_TYPE_VARCHAR ||
123
159
               _type == FieldType::OLAP_FIELD_TYPE_STRING ||
124
159
               _type == FieldType::OLAP_FIELD_TYPE_HLL ||
125
159
               _type == FieldType::OLAP_FIELD_TYPE_BITMAP ||
126
159
               _type == FieldType::OLAP_FIELD_TYPE_QUANTILE_STATE ||
127
159
               _type == FieldType::OLAP_FIELD_TYPE_AGG_STATE;
128
159
    }
129
690
    bool has_default_value() const { return _has_default_value; }
130
21.5k
    std::string default_value() const { return _default_value; }
131
42.6k
    int32_t length() const { return _length; }
132
3.50k
    void set_length(int32_t length) { _length = length; }
133
1.27k
    void set_default_value(const std::string& default_value) {
134
1.27k
        _default_value = default_value;
135
1.27k
        _has_default_value = true;
136
1.27k
    }
137
6.41k
    int32_t index_length() const { return _index_length; }
138
2.93k
    void set_index_length(int32_t index_length) { _index_length = index_length; }
139
1.91k
    void set_is_key(bool is_key) { _is_key = is_key; }
140
3.88k
    void set_is_nullable(bool is_nullable) { _is_nullable = is_nullable; }
141
0
    void set_is_auto_increment(bool is_auto_increment) { _is_auto_increment = is_auto_increment; }
142
0
    void set_is_on_update_current_timestamp(bool is_on_update_current_timestamp) {
143
0
        _is_on_update_current_timestamp = is_on_update_current_timestamp;
144
0
    }
145
    void set_path_info(const PathInData& path);
146
3.19k
    FieldAggregationMethod aggregation() const { return _aggregation; }
147
    AggregateFunctionPtr get_aggregate_function_union(DataTypePtr type,
148
                                                      int current_be_exec_version) const;
149
    AggregateFunctionPtr get_aggregate_function(std::string suffix,
150
                                                int current_be_exec_version) const;
151
    AggregateFunctionPtr get_aggregate_function(std::string suffix, int current_be_exec_version,
152
                                                DataTypePtr runtime_type) const;
153
41.9k
    int precision() const { return _precision; }
154
42.2k
    int frac() const { return _frac; }
155
196
    inline bool visible() const { return _visible; }
156
    bool has_char_type() const;
157
158
3.20k
    void set_aggregation_method(FieldAggregationMethod agg) {
159
3.20k
        _aggregation = agg;
160
3.20k
        _aggregation_name = get_string_by_aggregation_type(agg);
161
3.20k
    }
162
163
    /**
164
     * Add a sub column.
165
     */
166
    void add_sub_column(TabletColumn& sub_column);
167
168
38.3k
    uint32_t get_subtype_count() const { return _sub_column_count; }
169
6.96k
    MOCK_FUNCTION const TabletColumn& get_sub_column(uint64_t i) const { return *_sub_columns[i]; }
170
5.94k
    const std::vector<TabletColumnPtr>& get_sub_columns() const { return _sub_columns; }
171
172
    friend bool operator==(const TabletColumn& a, const TabletColumn& b);
173
    friend bool operator!=(const TabletColumn& a, const TabletColumn& b);
174
175
    static std::string get_string_by_field_type(FieldType type);
176
    static std::string get_string_by_aggregation_type(FieldAggregationMethod aggregation_type);
177
    static FieldType get_field_type_by_string(const std::string& str);
178
    static FieldAggregationMethod get_aggregation_type_by_string(const std::string& str);
179
    static uint32_t get_field_length_by_type(TPrimitiveType::type type, uint32_t string_length);
180
    bool is_row_store_column() const;
181
18.2k
    std::string get_aggregation_name() const { return _aggregation_name; }
182
18.2k
    bool get_result_is_nullable() const { return _result_is_nullable; }
183
18.2k
    int get_be_exec_version() const { return _be_exec_version; }
184
81.8k
    bool has_path_info() const { return _column_path != nullptr && !_column_path->empty(); }
185
22.3k
    const PathInDataPtr& path_info_ptr() const { return _column_path; }
186
    // If it is an extracted column from variant column
187
191k
    bool is_extracted_column() const {
188
191k
        return _column_path != nullptr && !_column_path->empty() && _parent_col_unique_id >= 0;
189
191k
    };
190
27.2k
    std::string suffix_path() const {
191
27.2k
        return is_extracted_column() ? _column_path->get_path() : "";
192
27.2k
    }
193
159
    bool is_nested_subcolumn() const {
194
159
        return _column_path != nullptr && _column_path->has_nested_part();
195
159
    }
196
9.16k
    int32_t parent_unique_id() const { return _parent_col_unique_id; }
197
3.60k
    void set_parent_unique_id(int32_t col_unique_id) { _parent_col_unique_id = col_unique_id; }
198
1.39k
    void set_is_bf_column(bool is_bf_column) { _is_bf_column = is_bf_column; }
199
    std::shared_ptr<const IDataType> get_vec_type() const;
200
201
1.73k
    Status check_valid() const {
202
1.73k
        if (type() != FieldType::OLAP_FIELD_TYPE_ARRAY &&
203
1.73k
            type() != FieldType::OLAP_FIELD_TYPE_STRUCT &&
204
1.73k
            type() != FieldType::OLAP_FIELD_TYPE_MAP) {
205
1.69k
            return Status::OK();
206
1.69k
        }
207
32
        if (is_bf_column()) {
208
0
            return Status::NotSupported("Do not support bloom filter index, type={}",
209
0
                                        get_string_by_field_type(type()));
210
0
        }
211
32
        return Status::OK();
212
32
    }
213
214
8
    void set_precision(int precision) {
215
8
        _precision = precision;
216
8
        _is_decimal = true;
217
8
    }
218
219
270
    void set_frac(int frac) { _frac = frac; }
220
221
0
    const VariantParams& variant_params() const { return _variant; }
222
0
    VariantParams* mutable_variant_params() { return &_variant; }
223
224
3.78k
    int32_t variant_max_subcolumns_count() const { return _variant.max_subcolumns_count; }
225
226
138
    void set_variant_max_subcolumns_count(int32_t variant_max_subcolumns_count) {
227
138
        _variant.max_subcolumns_count = variant_max_subcolumns_count;
228
138
    }
229
230
1.55k
    bool variant_is_v2() const { return _variant_is_v2; }
231
133
    void set_variant_is_v2(bool is_v2) { _variant_is_v2 = is_v2; }
232
233
452
    PatternTypePB pattern_type() const { return _pattern_type; }
234
235
886
    bool variant_enable_typed_paths_to_sparse() const {
236
886
        return _variant.enable_typed_paths_to_sparse;
237
886
    }
238
239
21.5k
    int32_t variant_max_sparse_column_statistics_size() const {
240
21.5k
        return _variant.max_sparse_column_statistics_size;
241
21.5k
    }
242
243
661
    int32_t variant_sparse_hash_shard_count() const { return _variant.sparse_hash_shard_count; }
244
245
5.31k
    bool variant_enable_doc_mode() const { return _variant.enable_doc_mode; }
246
247
56
    int64_t variant_doc_materialization_min_rows() const {
248
56
        return _variant.doc_materialization_min_rows;
249
56
    }
250
251
55
    int32_t variant_doc_hash_shard_count() const { return _variant.doc_hash_shard_count; }
252
253
23
    void set_variant_doc_materialization_min_rows(int64_t variant_doc_materialization_min_rows) {
254
23
        _variant.doc_materialization_min_rows = variant_doc_materialization_min_rows;
255
23
    }
256
257
23
    void set_variant_doc_hash_shard_count(int32_t variant_doc_hash_shard_count) {
258
23
        _variant.doc_hash_shard_count = variant_doc_hash_shard_count;
259
23
    }
260
261
    void set_variant_max_sparse_column_statistics_size(
262
25
            int32_t variant_max_sparse_column_statistics_size) {
263
25
        _variant.max_sparse_column_statistics_size = variant_max_sparse_column_statistics_size;
264
25
    }
265
266
23
    void set_variant_sparse_hash_shard_count(int32_t variant_sparse_hash_shard_count) {
267
23
        _variant.sparse_hash_shard_count = variant_sparse_hash_shard_count;
268
23
    }
269
270
78
    void set_variant_enable_doc_mode(bool variant_enable_doc_mode) {
271
78
        _variant.enable_doc_mode = variant_enable_doc_mode;
272
78
    }
273
274
1
    void set_variant_enable_typed_paths_to_sparse(bool variant_enable_typed_paths_to_sparse) {
275
1
        _variant.enable_typed_paths_to_sparse = variant_enable_typed_paths_to_sparse;
276
1
    }
277
278
6.25k
    bool variant_enable_nested_group() const { return _variant.enable_nested_group; }
279
280
24
    void set_variant_enable_nested_group(bool val) { _variant.enable_nested_group = val; }
281
282
262
    bool is_decimal() const { return _is_decimal; }
283
284
private:
285
    int32_t _unique_id = -1;
286
    std::string _col_name;
287
    std::string _col_name_lower_case;
288
    // the field _type will change from TPrimitiveType
289
    // to string by 'EnumToString(TPrimitiveType, tcolumn.column_type.type, data_type);' (reference: TabletMeta::init_column_from_tcolumn)
290
    // to FieldType by 'TabletColumn::get_field_type_by_string' (reference: TabletColumn::init_from_pb).
291
    // And the _type in columnPB is string and it changed from FieldType by 'get_string_by_field_type' (reference: TabletColumn::to_schema_pb).
292
    FieldType _type;
293
    bool _is_key = false;
294
    FieldAggregationMethod _aggregation;
295
    std::string _aggregation_name;
296
    bool _is_nullable = false;
297
    bool _is_auto_increment = false;
298
    bool _is_on_update_current_timestamp {false};
299
300
    bool _has_default_value = false;
301
    std::string _default_value;
302
303
    bool _is_decimal = false;
304
    int32_t _precision = -1;
305
    int32_t _frac = -1;
306
307
    int32_t _length = -1;
308
    int32_t _index_length = -1;
309
310
    bool _is_bf_column = false;
311
312
    bool _visible = true;
313
314
    std::vector<TabletColumnPtr> _sub_columns;
315
    uint32_t _sub_column_count = 0;
316
317
    bool _result_is_nullable = false;
318
    int _be_exec_version = -1;
319
320
    // The extracted sub-columns from "variant" contain the following information:
321
    int32_t _parent_col_unique_id = -1; // "variant" -> col_unique_id
322
    PathInDataPtr _column_path;         // the path of the sub-columns themselves
323
    PatternTypePB _pattern_type = PatternTypePB::MATCH_NAME_GLOB;
324
325
    VariantParams _variant;
326
    // TODO: Remove this transient read-schema marker after legacy ColumnVariant destinations are
327
    // deleted and Variant readers always produce ColumnVariantV2. It only selects the in-memory
328
    // compute destination and must never be serialized into tablet or segment metadata.
329
    bool _variant_is_v2 = false;
330
};
331
332
bool operator==(const TabletColumn& a, const TabletColumn& b);
333
bool operator!=(const TabletColumn& a, const TabletColumn& b);
334
335
class TabletIndex : public MetadataAdder<TabletIndex> {
336
public:
337
7.99k
    TabletIndex() = default;
338
    void init_from_thrift(const TOlapTableIndex& index, const TabletSchema& tablet_schema);
339
    void init_from_thrift(const TOlapTableIndex& index, const std::vector<int32_t>& column_uids);
340
    void init_from_pb(const TabletIndexPB& index);
341
    void to_schema_pb(TabletIndexPB* index) const;
342
343
21.0k
    int64_t index_id() const { return _index_id; }
344
33
    const std::string& index_name() const { return _index_name; }
345
15.8k
    MOCK_FUNCTION IndexType index_type() const { return _index_type; }
346
10.8k
    const std::vector<int32_t>& col_unique_ids() const { return _col_unique_ids; }
347
27.8k
    MOCK_FUNCTION const std::map<std::string, std::string>& properties() const {
348
27.8k
        return _properties;
349
27.8k
    }
350
17
    int32_t get_gram_size() const {
351
17
        if (_properties.contains("gram_size")) {
352
17
            return std::stoi(_properties.at("gram_size"));
353
17
        }
354
355
0
        return 0;
356
17
    }
357
17
    int32_t get_gram_bf_size() const {
358
17
        if (_properties.contains("bf_size")) {
359
17
            return std::stoi(_properties.at("bf_size"));
360
17
        }
361
362
0
        return 0;
363
17
    }
364
365
20.0k
    const std::string& get_index_suffix() const { return _escaped_index_suffix_path; }
366
367
    void set_escaped_escaped_index_suffix_path(const std::string& name);
368
369
2.42k
    bool is_inverted_index() const { return _index_type == IndexType::INVERTED; }
370
371
2
    bool is_ann_index() const { return _index_type == IndexType::ANN; }
372
373
19
    void remove_parser_and_analyzer() {
374
19
        _properties.erase(INVERTED_INDEX_PARSER_KEY);
375
19
        _properties.erase(INVERTED_INDEX_PARSER_KEY_ALIAS);
376
19
        _properties.erase(INVERTED_INDEX_ANALYZER_NAME_KEY);
377
19
        _properties.erase(INVERTED_INDEX_NORMALIZER_NAME_KEY);
378
19
    }
379
380
7.96k
    std::string field_pattern() const {
381
7.96k
        if (_properties.contains("field_pattern")) {
382
342
            return _properties.at("field_pattern");
383
342
        }
384
7.62k
        return "";
385
7.96k
    }
386
387
8
    bool is_same_except_id(const TabletIndex* other) const {
388
8
        return _escaped_index_suffix_path == other->_escaped_index_suffix_path &&
389
8
               _index_name == other->_index_name && _index_type == other->_index_type &&
390
8
               _col_unique_ids == other->_col_unique_ids && _properties == other->_properties;
391
8
    }
392
393
private:
394
    int64_t _index_id = -1;
395
    // Identify the different index with the same _index_id
396
    std::string _escaped_index_suffix_path;
397
    std::string _index_name;
398
    IndexType _index_type;
399
    std::vector<int32_t> _col_unique_ids;
400
    std::map<std::string, std::string> _properties;
401
};
402
403
using TabletIndexPtr = std::shared_ptr<TabletIndex>;
404
using TabletIndexes = std::vector<std::shared_ptr<TabletIndex>>;
405
using PathSet = phmap::flat_hash_set<std::string>;
406
407
class TabletSchema : public MetadataAdder<TabletSchema> {
408
public:
409
    enum class ColumnType { NORMAL = 0, VARIANT = 1 };
410
    // TODO(yingchun): better to make constructor as private to avoid
411
    // manually init members incorrectly, and define a new function like
412
    // void create_from_pb(const TabletSchemaPB& schema, TabletSchema* tablet_schema).
413
    TabletSchema();
414
    ~TabletSchema() override;
415
416
    // Init from pb
417
    // ignore_extracted_columns: ignore the extracted columns from variant column
418
    // reuse_cached_column: reuse the cached column in the schema if they are the same, to reduce memory usage
419
    void init_from_pb(const TabletSchemaPB& schema, bool ignore_extracted_columns = false,
420
                      bool reuse_cached_column = false);
421
    // Notice: Use deterministic way to serialize protobuf,
422
    // since serialize Map in protobuf may could lead to un-deterministic by default
423
    template <class PbType>
424
10.5k
    static std::string deterministic_string_serialize(const PbType& pb) {
425
10.5k
        std::string output;
426
10.5k
        google::protobuf::io::StringOutputStream string_output_stream(&output);
427
10.5k
        google::protobuf::io::CodedOutputStream output_stream(&string_output_stream);
428
10.5k
        output_stream.SetSerializationDeterministic(true);
429
10.5k
        pb.SerializeToCodedStream(&output_stream);
430
10.5k
        return output;
431
10.5k
    }
_ZN5doris12TabletSchema30deterministic_string_serializeINS_10segment_v212ColumnMetaPBEEENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKT_
Line
Count
Source
424
2.02k
    static std::string deterministic_string_serialize(const PbType& pb) {
425
2.02k
        std::string output;
426
2.02k
        google::protobuf::io::StringOutputStream string_output_stream(&output);
427
2.02k
        google::protobuf::io::CodedOutputStream output_stream(&string_output_stream);
428
2.02k
        output_stream.SetSerializationDeterministic(true);
429
2.02k
        pb.SerializeToCodedStream(&output_stream);
430
2.02k
        return output;
431
2.02k
    }
_ZN5doris12TabletSchema30deterministic_string_serializeINS_10segment_v215SegmentFooterPBEEENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKT_
Line
Count
Source
424
49
    static std::string deterministic_string_serialize(const PbType& pb) {
425
49
        std::string output;
426
49
        google::protobuf::io::StringOutputStream string_output_stream(&output);
427
49
        google::protobuf::io::CodedOutputStream output_stream(&string_output_stream);
428
49
        output_stream.SetSerializationDeterministic(true);
429
49
        pb.SerializeToCodedStream(&output_stream);
430
49
        return output;
431
49
    }
_ZN5doris12TabletSchema30deterministic_string_serializeINS_14TabletSchemaPBEEENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKT_
Line
Count
Source
424
7.33k
    static std::string deterministic_string_serialize(const PbType& pb) {
425
7.33k
        std::string output;
426
7.33k
        google::protobuf::io::StringOutputStream string_output_stream(&output);
427
7.33k
        google::protobuf::io::CodedOutputStream output_stream(&string_output_stream);
428
7.33k
        output_stream.SetSerializationDeterministic(true);
429
7.33k
        pb.SerializeToCodedStream(&output_stream);
430
7.33k
        return output;
431
7.33k
    }
_ZN5doris12TabletSchema30deterministic_string_serializeINS_8ColumnPBEEENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKT_
Line
Count
Source
424
918
    static std::string deterministic_string_serialize(const PbType& pb) {
425
918
        std::string output;
426
918
        google::protobuf::io::StringOutputStream string_output_stream(&output);
427
918
        google::protobuf::io::CodedOutputStream output_stream(&string_output_stream);
428
918
        output_stream.SetSerializationDeterministic(true);
429
918
        pb.SerializeToCodedStream(&output_stream);
430
918
        return output;
431
918
    }
_ZN5doris12TabletSchema30deterministic_string_serializeINS_13TabletIndexPBEEENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKT_
Line
Count
Source
424
237
    static std::string deterministic_string_serialize(const PbType& pb) {
425
237
        std::string output;
426
237
        google::protobuf::io::StringOutputStream string_output_stream(&output);
427
237
        google::protobuf::io::CodedOutputStream output_stream(&string_output_stream);
428
237
        output_stream.SetSerializationDeterministic(true);
429
237
        pb.SerializeToCodedStream(&output_stream);
430
237
        return output;
431
237
    }
_ZN5doris12TabletSchema30deterministic_string_serializeINS_21POlapTableIndexSchemaEEENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKT_
Line
Count
Source
424
23
    static std::string deterministic_string_serialize(const PbType& pb) {
425
23
        std::string output;
426
23
        google::protobuf::io::StringOutputStream string_output_stream(&output);
427
23
        google::protobuf::io::CodedOutputStream output_stream(&string_output_stream);
428
23
        output_stream.SetSerializationDeterministic(true);
429
23
        pb.SerializeToCodedStream(&output_stream);
430
23
        return output;
431
23
    }
432
    void to_schema_pb(TabletSchemaPB* tablet_meta_pb) const;
433
    void append_column(TabletColumn column, ColumnType col_type = ColumnType::NORMAL);
434
    void append_index(TabletIndex&& index);
435
    void remove_index(int64_t index_id);
436
    void clear_index();
437
    // Must make sure the row column is always the last column
438
    void add_row_column();
439
    void copy_from(const TabletSchema& tablet_schema);
440
    // lightweight copy, take care of lifecycle of TabletColumn
441
    void shawdow_copy_without_columns(const TabletSchema& tablet_schema);
442
    void update_index_info_from(const TabletSchema& tablet_schema);
443
    std::string to_key() const;
444
    // get_metadata_size is only the memory of the TabletSchema itself, not include child objects.
445
230
    int64_t mem_size() const { return get_metadata_size(); }
446
    size_t row_size() const;
447
    int32_t field_index(const std::string& field_name) const;
448
    int32_t field_index(const PathInData& path) const;
449
    int32_t field_index(int32_t col_unique_id) const;
450
    const TabletColumn& column(size_t ordinal) const;
451
    Result<const TabletColumn*> column(const std::string& field_name) const;
452
    Status have_column(const std::string& field_name) const;
453
    bool exist_column(const std::string& field_name) const;
454
    bool has_column_unique_id(int32_t col_unique_id) const;
455
    const TabletColumn& column_by_uid(int32_t col_unique_id) const;
456
    TabletColumn& mutable_column_by_uid(int32_t col_unique_id);
457
    TabletColumn& mutable_column(size_t ordinal);
458
    void replace_column(size_t pos, TabletColumn new_col);
459
    const std::vector<TabletColumnPtr>& columns() const;
460
802k
    size_t num_columns() const { return _num_columns; }
461
0
    size_t num_visible_columns() const {
462
0
        return std::count_if(_cols.begin(), _cols.end(),
463
0
                             [](const TabletColumnPtr& column) { return column->visible(); });
464
0
    }
465
0
    size_t num_visible_value_columns() const {
466
0
        return std::count_if(_cols.begin(), _cols.end(), [](const TabletColumnPtr& column) {
467
0
            return column->visible() && !column->is_key();
468
0
        });
469
0
    }
470
    // num_key_columns: Total number of sort key columns in the table, determined by the key columns
471
    // specified in DUPLICATE KEY/UNIQUE KEY/AGGREGATE KEY when creating the table, used for complete data sorting
472
    // Example: CREATE TABLE t(a INT, b DATE, c VARCHAR) DUPLICATE KEY(a, b, c)
473
    //          Then num_key_columns = 3 (columns a, b, c are all sort keys)
474
189k
    size_t num_key_columns() const { return _num_key_columns; }
475
140k
    const std::vector<uint32_t>& cluster_key_uids() const { return _cluster_key_uids; }
476
0
    size_t num_null_columns() const { return _num_null_columns; }
477
    // num_short_key_columns: Number of columns used to build the Short Key Index, automatically calculated by FE
478
    // Limited by max column count (default 3) and max bytes (default 36 bytes). Types like float/double/STRING/JSONB
479
    // cannot be used as short keys. VARCHAR can only be the last short key column. Optimizes index size and query performance.
480
    // Example: CREATE TABLE t(a INT, b DATE, c VARCHAR) DUPLICATE KEY(a, b, c)
481
    //          Then num_short_key_columns = 3 (a, b, c all meet criteria, c as VARCHAR is the last short key)
482
    // Example: CREATE TABLE t(a INT, b DOUBLE, c DATE) DUPLICATE KEY(a, b, c)
483
    //          Then num_short_key_columns = 1 (b is DOUBLE type which cannot be short key, stops at b)
484
    // short key's size is limited to 36 bytes, because it will be loaded to memory during segment loaded.
485
10.2k
    size_t num_short_key_columns() const { return _num_short_key_columns; }
486
2
    size_t num_rows_per_row_block() const { return _num_rows_per_row_block; }
487
3.96k
    size_t num_variant_columns() const { return _num_variant_columns; };
488
0
    size_t num_virtual_columns() const { return _num_virtual_columns; }
489
7.15M
    KeysType keys_type() const { return _keys_type; }
490
4.39k
    SortType sort_type() const { return _sort_type; }
491
2
    size_t sort_col_num() const { return _sort_col_num; }
492
2
    CompressKind compress_kind() const { return _compress_kind; }
493
3
    size_t next_column_unique_id() const { return _next_column_unique_id; }
494
130
    bool has_bf_fpp() const { return _has_bf_fpp; }
495
128
    double bloom_filter_fpp() const { return _bf_fpp; }
496
11.8k
    bool is_in_memory() const { return _is_in_memory; }
497
0
    void set_is_in_memory(bool is_in_memory) { _is_in_memory = is_in_memory; }
498
13
    void set_disable_auto_compaction(bool disable_auto_compaction) {
499
13
        _disable_auto_compaction = disable_auto_compaction;
500
13
    }
501
225
    bool disable_auto_compaction() const { return _disable_auto_compaction; }
502
    // Deprecated legacy switch for flatten-nested variant behavior.
503
    // It is distinct from variant_enable_nested_group.
504
0
    void set_deprecated_variant_flatten_nested(bool flatten_nested) {
505
0
        _deprecated_enable_variant_flatten_nested = flatten_nested;
506
0
    }
507
509
    bool deprecated_variant_flatten_nested() const {
508
509
        return _deprecated_enable_variant_flatten_nested;
509
509
    }
510
    // indicate if full row store column(all the columns encodes as row) exists
511
203
    bool has_row_store_for_all_columns() const {
512
203
        return _store_row_column && row_columns_uids().empty();
513
203
    }
514
0
    void set_skip_write_index_on_load(bool skip) { _skip_write_index_on_load = skip; }
515
4.87k
    bool skip_write_index_on_load() const { return _skip_write_index_on_load; }
516
4.14k
    int32_t delete_sign_idx() const { return _delete_sign_idx; }
517
168k
    bool has_sequence_col() const { return _sequence_col_idx != -1; }
518
66.1k
    int32_t sequence_col_idx() const { return _sequence_col_idx; }
519
0
    void set_version_col_idx(int32_t version_col_idx) { _version_col_idx = version_col_idx; }
520
44
    int32_t version_col_idx() const { return _version_col_idx; }
521
8
    bool has_skip_bitmap_col() const { return _skip_bitmap_col_idx != -1; }
522
68
    int32_t skip_bitmap_col_idx() const { return _skip_bitmap_col_idx; }
523
0
    bool is_tso_enabled() const { return _commit_tso_col_idx != -1 || _binlog_tso_col_idx != -1; }
524
4
    int32_t commit_tso_col_idx() const { return _commit_tso_col_idx; }
525
27
    int32_t binlog_tso_col_idx() const { return _binlog_tso_col_idx; }
526
28
    int32_t binlog_lsn_col_idx() const { return _binlog_lsn_col_idx; }
527
27
    int32_t binlog_op_col_idx() const { return _binlog_op_col_idx; }
528
3.55k
    segment_v2::CompressionTypePB compression_type() const { return _compression_type; }
529
0
    void set_row_store_page_size(long page_size) { _row_store_page_size = page_size; }
530
81
    long row_store_page_size() const { return _row_store_page_size; }
531
8
    void set_storage_page_size(long storage_page_size) { _storage_page_size = storage_page_size; }
532
17.2k
    long storage_page_size() const { return _storage_page_size; }
533
0
    void set_storage_dict_page_size(long storage_dict_page_size) {
534
0
        _storage_dict_page_size = storage_dict_page_size;
535
0
    }
536
17.2k
    long storage_dict_page_size() const { return _storage_dict_page_size; }
537
0
    bool has_global_row_id() const {
538
0
        for (auto [col_name, _] : _field_name_to_index) {
539
0
            if (col_name.start_with(StringRef(BeConsts::GLOBAL_ROWID_COL.data(),
540
0
                                              BeConsts::GLOBAL_ROWID_COL.size()))) {
541
0
                return true;
542
0
            }
543
0
        }
544
0
        return false;
545
0
    }
546
547
131
    const std::vector<const TabletIndex*> inverted_indexes() const {
548
131
        std::vector<const TabletIndex*> inverted_indexes;
549
1.27k
        for (const auto& index : _indexes) {
550
1.27k
            if (index->index_type() == IndexType::INVERTED) {
551
1.27k
                inverted_indexes.emplace_back(index.get());
552
1.27k
            }
553
1.27k
        }
554
131
        return inverted_indexes;
555
131
    }
556
9.87k
    bool has_inverted_index() const {
557
9.87k
        for (const auto& index : _indexes) {
558
1.36k
            DBUG_EXECUTE_IF("tablet_schema::has_inverted_index", {
559
1.36k
                if (index->col_unique_ids().empty()) {
560
1.36k
                    throw Exception(Status::InternalError("col unique ids cannot be empty"));
561
1.36k
                }
562
1.36k
            });
563
564
1.36k
            if (index->index_type() == IndexType::INVERTED) {
565
                //if index_id == -1, ignore it.
566
1.20k
                if (!index->col_unique_ids().empty() && index->col_unique_ids()[0] >= 0) {
567
1.20k
                    return true;
568
1.20k
                }
569
1.20k
            }
570
1.36k
        }
571
8.66k
        return false;
572
9.87k
    }
573
574
7.93k
    bool has_ann_index() const {
575
7.93k
        for (const auto& index : _indexes) {
576
151
            if (index->index_type() == IndexType::ANN) {
577
85
                if (!index->col_unique_ids().empty() && index->col_unique_ids()[0] >= 0) {
578
85
                    return true;
579
85
                }
580
85
            }
581
151
        }
582
7.84k
        return false;
583
7.93k
    }
584
585
    bool has_inverted_index_with_index_id(int64_t index_id) const;
586
587
    std::vector<const TabletIndex*> inverted_indexs(const TabletColumn& col) const;
588
589
    std::vector<const TabletIndex*> inverted_indexs(int32_t col_unique_id,
590
                                                    const std::string& suffix_path = "") const;
591
    const TabletIndex* ann_index(const TabletColumn& col) const;
592
593
    // Regardless of whether this column supports inverted index
594
    // TabletIndex information will be returned as long as it exists.
595
    const TabletIndex* ann_index(int32_t col_unique_id, const std::string& suffix_path = "") const;
596
597
    std::vector<TabletIndexPtr> inverted_index_by_field_pattern(
598
            int32_t col_unique_id, const std::string& field_pattern) const;
599
600
    bool has_ngram_bf_index(int32_t col_unique_id) const;
601
    const TabletIndex* get_ngram_bf_index(int32_t col_unique_id) const;
602
    const TabletIndex* get_index(int32_t col_unique_id, IndexType index_type,
603
                                 const std::string& suffix_path) const;
604
    void update_indexes_from_thrift(const std::vector<doris::TOlapTableIndex>& indexes);
605
    // If schema version is not set, it should be -1
606
7.64k
    int32_t schema_version() const { return _schema_version; }
607
    void clear_columns();
608
    // Each column id is an ordinal in TabletSchema::_cols, not a unique id or ReadSchema ordinal.
609
    // The resulting Block uses the selected physical TabletSchema column types.
610
    Block create_storage_block(const std::vector<uint32_t>& column_ids) const;
611
    Block create_storage_block() const;
612
4
    void set_schema_version(int32_t version) { _schema_version = version; }
613
0
    void set_auto_increment_column(const std::string& auto_increment_column) {
614
0
        _auto_increment_column = auto_increment_column;
615
0
    }
616
9
    std::string auto_increment_column() const { return _auto_increment_column; }
617
618
10
    void set_table_id(int64_t table_id) { _table_id = table_id; }
619
963
    int64_t table_id() const { return _table_id; }
620
10
    void set_db_id(int64_t db_id) { _db_id = db_id; }
621
360
    int64_t db_id() const { return _db_id; }
622
    void build_current_tablet_schema(int64_t index_id, int32_t version,
623
                                     const OlapTableIndexSchema* index,
624
                                     const TabletSchema& out_tablet_schema);
625
626
    // copy extracted columns from src_schema
627
    void copy_extracted_columns(const TabletSchema& src_schema);
628
629
    // only reserve extracted columns
630
    void reserve_extracted_columns();
631
632
4.04k
    std::string get_all_field_names() const {
633
4.04k
        std::string str = "[";
634
4.04k
        for (auto p : _field_name_to_index) {
635
4.04k
            if (str.size() > 1) {
636
0
                str += ", ";
637
0
            }
638
4.04k
            str += p.first.to_string() + "(" + std::to_string(_cols[p.second]->unique_id()) + ")";
639
4.04k
        }
640
4.04k
        str += "]";
641
4.04k
        return str;
642
4.04k
    }
643
644
    // Dump [(name, type, is_nullable), ...]
645
5
    std::string dump_structure() const {
646
5
        std::string str = "[";
647
28
        for (auto p : _cols) {
648
28
            if (str.size() > 1) {
649
23
                str += ", ";
650
23
            }
651
28
            str += "(";
652
28
            str += p->name();
653
28
            str += ", ";
654
28
            str += TabletColumn::get_string_by_field_type(p->type());
655
28
            str += ", ";
656
28
            str += "is_nullable:";
657
28
            str += (p->is_nullable() ? "true" : "false");
658
28
            str += ")";
659
28
        }
660
5
        str += "]";
661
5
        return str;
662
5
    }
663
664
1
    std::string dump_full_schema() const {
665
1
        std::string str = "[";
666
4
        for (auto p : _cols) {
667
4
            if (str.size() > 1) {
668
3
                str += ", ";
669
3
            }
670
4
            ColumnPB col_pb;
671
4
            p->to_schema_pb(&col_pb);
672
4
            str += "(";
673
4
            str += col_pb.ShortDebugString();
674
4
            str += ")";
675
4
        }
676
1
        str += "]";
677
1
        return str;
678
1
    }
679
680
    std::shared_ptr<TabletSchema> copy_without_variant_extracted_columns();
681
8.71k
    InvertedIndexStorageFormatPB get_inverted_index_storage_format() const {
682
8.71k
        return _inverted_index_storage_format;
683
8.71k
    }
684
685
    void update_tablet_columns(const TabletSchema& tablet_schema,
686
                               const std::vector<TColumn>& t_columns);
687
688
197
    const std::vector<int32_t>& row_columns_uids() const { return _row_store_column_unique_ids; }
689
690
    int64_t get_metadata_size() const override;
691
692
    struct SubColumnInfo {
693
        TabletColumn column;
694
        TabletIndexes indexes;
695
    };
696
697
    // all path in path_set_info are relative to the parent column
698
    struct PathsSetInfo {
699
        std::unordered_map<std::string, SubColumnInfo> typed_path_set;    // typed columns
700
        std::unordered_map<std::string, TabletIndexes> subcolumn_indexes; // subcolumns indexes
701
        PathSet sub_path_set;                                             // extracted columns
702
        PathSet sparse_path_set;                                          // sparse columns
703
704
        // "Materialized regular path" means compaction chose to store this path as a dedicated
705
        // column in the schema, either typed or extracted, instead of re-emitting it dynamically.
706
0
        bool contains_materialized_regular_path(const std::string& path) const {
707
0
            return typed_path_set.contains(path) || sub_path_set.contains(path);
708
0
        }
709
    };
710
711
76
    void set_path_set_info(std::unordered_map<int32_t, PathsSetInfo>&& path_set_info_map) {
712
76
        _path_set_info_map = std::move(path_set_info_map);
713
76
    }
714
715
74
    const PathsSetInfo& path_set_info(int32_t unique_id) const {
716
74
        return _path_set_info_map.at(unique_id);
717
74
    }
718
719
7
    const PathsSetInfo* try_path_set_info(int32_t unique_id) const {
720
7
        auto it = _path_set_info_map.find(unique_id);
721
7
        return it == _path_set_info_map.end() ? nullptr : &it->second;
722
7
    }
723
724
6
    bool need_record_variant_extended_schema() const { return variant_max_subcolumns_count() == 0; }
725
726
11
    int32_t variant_max_subcolumns_count() const {
727
12
        for (const auto& col : _cols) {
728
12
            if (col->is_variant_type()) {
729
7
                return col->variant_max_subcolumns_count();
730
7
            }
731
12
        }
732
4
        return 0;
733
11
    }
734
    const std::unordered_map<uint32_t, std::vector<uint32_t>>& seq_col_idx_to_value_cols_idx()
735
0
            const {
736
0
        return _seq_col_idx_to_value_cols_idx;
737
0
    }
738
739
654
    bool has_seq_map() const { return !_seq_col_idx_to_value_cols_idx.empty(); }
740
741
20.8k
    TabletStorageFormatPB storage_format() const { return _storage_format; }
742
185
    void set_storage_format(TabletStorageFormatPB v) { _storage_format = v; }
743
744
private:
745
    friend bool operator==(const TabletSchema& a, const TabletSchema& b);
746
    friend bool operator!=(const TabletSchema& a, const TabletSchema& b);
747
28
    TabletSchema(const TabletSchema&) = default;
748
749
    KeysType _keys_type = DUP_KEYS;
750
    SortType _sort_type = SortType::LEXICAL;
751
    size_t _sort_col_num = 0;
752
    std::vector<TabletColumnPtr> _cols;
753
754
    std::vector<TabletIndexPtr> _indexes;
755
    std::unordered_map<StringRef, int32_t, StringRefHash> _field_name_to_index;
756
    std::unordered_map<int32_t, int32_t> _field_uniqueid_to_index;
757
    std::unordered_map<PathInDataRef, int32_t, PathInDataRef::Hash> _field_path_to_index;
758
759
    // index_type/col_unique_id/suffix -> idxs in _indexes
760
    using IndexKey = std::tuple<IndexType, int32_t, std::string>;
761
    struct IndexKeyHash {
762
58.8k
        size_t operator()(const IndexKey& t) const {
763
58.8k
            uint32_t seed = 0;
764
58.8k
            seed = doris::HashUtil::hash((const char*)&std::get<0>(t), sizeof(std::get<0>(t)),
765
58.8k
                                         seed);
766
58.8k
            seed = doris::HashUtil::hash((const char*)&std::get<1>(t), sizeof(std::get<1>(t)),
767
58.8k
                                         seed);
768
58.8k
            seed = doris::HashUtil::hash((const char*)std::get<2>(t).c_str(),
769
58.8k
                                         static_cast<uint32_t>(std::get<2>(t).size()), seed);
770
58.8k
            return seed;
771
58.8k
        }
772
    };
773
    std::unordered_map<IndexKey, std::vector<size_t>, IndexKeyHash> _col_id_suffix_to_index;
774
775
    int32_t _num_columns = 0;
776
    size_t _num_variant_columns = 0;
777
    size_t _num_virtual_columns = 0;
778
    size_t _num_key_columns = 0;
779
    std::vector<uint32_t> _cluster_key_uids;
780
    size_t _num_null_columns = 0;
781
    size_t _num_short_key_columns = 0;
782
    size_t _num_rows_per_row_block = 0;
783
    CompressKind _compress_kind = COMPRESS_NONE;
784
    segment_v2::CompressionTypePB _compression_type = segment_v2::CompressionTypePB::LZ4F;
785
    long _row_store_page_size = segment_v2::ROW_STORE_PAGE_SIZE_DEFAULT_VALUE;
786
    long _storage_page_size = segment_v2::STORAGE_PAGE_SIZE_DEFAULT_VALUE;
787
    long _storage_dict_page_size = segment_v2::STORAGE_DICT_PAGE_SIZE_DEFAULT_VALUE;
788
    size_t _next_column_unique_id = 0;
789
    std::string _auto_increment_column;
790
791
    bool _has_bf_fpp = false;
792
    double _bf_fpp = 0;
793
    bool _is_in_memory = false;
794
    int32_t _delete_sign_idx = -1;
795
    int32_t _sequence_col_idx = -1;
796
    int32_t _version_col_idx = -1;
797
    int32_t _skip_bitmap_col_idx = -1;
798
    int32_t _commit_tso_col_idx = -1;
799
    int32_t _binlog_tso_col_idx = -1;
800
    int32_t _binlog_lsn_col_idx = -1;
801
    int32_t _binlog_op_col_idx = -1;
802
    int32_t _schema_version = -1;
803
    int64_t _table_id = -1;
804
    int64_t _db_id = -1;
805
    bool _disable_auto_compaction = false;
806
    bool _store_row_column = false;
807
    bool _skip_write_index_on_load = false;
808
    InvertedIndexStorageFormatPB _inverted_index_storage_format = InvertedIndexStorageFormatPB::V1;
809
810
    // Contains column ids of which columns should be encoded into row store.
811
    // ATTN: For compability reason empty cids means all columns of tablet schema are encoded to row column
812
    std::vector<int32_t> _row_store_column_unique_ids;
813
    bool _deprecated_enable_variant_flatten_nested = false;
814
815
    std::map<size_t, int32_t> _vir_col_idx_to_unique_id;
816
817
    // value: extracted path set and sparse path set
818
    std::unordered_map<int32_t, PathsSetInfo> _path_set_info_map;
819
820
    // key: field_pattern
821
    // value: indexes
822
    using PatternToIndex = std::unordered_map<std::string, std::vector<TabletIndexPtr>>;
823
    std::unordered_map<int32_t, PatternToIndex> _index_by_unique_id_with_pattern;
824
825
    // Default behavior for new segments: use external ColumnMeta region + CMO table if true
826
    // Persisted tablet storage format. Authoritative source for "is this tablet V3?"
827
    // decisions in the segment write paths. Old PBs without this field are upgraded in
828
    // init_from_pb() by deriving V3 from any of the three legacy V3-flavor flags.
829
    TabletStorageFormatPB _storage_format {TabletStorageFormatPB::TABLET_STORAGE_FORMAT_V2};
830
    // Sequence column unique id mapping to value columns unique id
831
    std::unordered_map<uint32_t, std::vector<uint32_t>> _seq_col_uid_to_value_cols_uid;
832
    // Value column unique id mapping to sequence column unique id(also map sequence column it self)
833
    std::unordered_map<uint32_t, uint32_t> _value_col_uid_to_seq_col_uid;
834
    // Sequence column index mapping to value column index
835
    std::unordered_map<uint32_t, std::vector<uint32_t>> _seq_col_idx_to_value_cols_idx;
836
};
837
838
bool operator==(const TabletSchema& a, const TabletSchema& b);
839
bool operator!=(const TabletSchema& a, const TabletSchema& b);
840
841
using TabletSchemaSPtr = std::shared_ptr<TabletSchema>;
842
843
} // namespace doris