Coverage Report

Created: 2026-03-21 01:23

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/exec/common/variant_util.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 "exec/common/variant_util.h"
19
20
#include <assert.h>
21
#include <fmt/format.h>
22
#include <gen_cpp/FrontendService.h>
23
#include <gen_cpp/FrontendService_types.h>
24
#include <gen_cpp/HeartbeatService_types.h>
25
#include <gen_cpp/MasterService_types.h>
26
#include <gen_cpp/Status_types.h>
27
#include <gen_cpp/Types_types.h>
28
#include <glog/logging.h>
29
#include <rapidjson/document.h>
30
#include <rapidjson/stringbuffer.h>
31
#include <rapidjson/writer.h>
32
#include <simdjson/simdjson.h> // IWYU pragma: keep
33
#include <unicode/uchar.h>
34
35
#include <algorithm>
36
#include <cassert>
37
#include <cstddef>
38
#include <cstdint>
39
#include <cstring>
40
#include <list>
41
#include <memory>
42
#include <mutex>
43
#include <optional>
44
#include <ostream>
45
#include <ranges>
46
#include <set>
47
#include <stack>
48
#include <string>
49
#include <string_view>
50
#include <unordered_map>
51
#include <utility>
52
#include <vector>
53
54
#include "common/config.h"
55
#include "common/status.h"
56
#include "core/assert_cast.h"
57
#include "core/block/block.h"
58
#include "core/block/column_numbers.h"
59
#include "core/block/column_with_type_and_name.h"
60
#include "core/column/column.h"
61
#include "core/column/column_array.h"
62
#include "core/column/column_map.h"
63
#include "core/column/column_nullable.h"
64
#include "core/column/column_string.h"
65
#include "core/column/column_variant.h"
66
#include "core/data_type/data_type.h"
67
#include "core/data_type/data_type_array.h"
68
#include "core/data_type/data_type_factory.hpp"
69
#include "core/data_type/data_type_jsonb.h"
70
#include "core/data_type/data_type_nullable.h"
71
#include "core/data_type/data_type_string.h"
72
#include "core/data_type/data_type_variant.h"
73
#include "core/data_type/define_primitive_type.h"
74
#include "core/data_type/get_least_supertype.h"
75
#include "core/data_type/primitive_type.h"
76
#include "core/field.h"
77
#include "core/typeid_cast.h"
78
#include "core/types.h"
79
#include "exec/common/field_visitors.h"
80
#include "exec/common/sip_hash.h"
81
#include "exprs/function/function.h"
82
#include "exprs/function/simple_function_factory.h"
83
#include "exprs/function_context.h"
84
#include "exprs/json_functions.h"
85
#include "re2/re2.h"
86
#include "runtime/exec_env.h"
87
#include "runtime/runtime_state.h"
88
#include "storage/olap_common.h"
89
#include "storage/rowset/beta_rowset.h"
90
#include "storage/rowset/rowset.h"
91
#include "storage/rowset/rowset_fwd.h"
92
#include "storage/segment/segment_loader.h"
93
#include "storage/segment/variant/variant_column_reader.h"
94
#include "storage/segment/variant/variant_column_writer_impl.h"
95
#include "storage/tablet/tablet.h"
96
#include "storage/tablet/tablet_fwd.h"
97
#include "storage/tablet/tablet_schema.h"
98
#include "util/client_cache.h"
99
#include "util/defer_op.h"
100
#include "util/json/json_parser.h"
101
#include "util/json/path_in_data.h"
102
#include "util/json/simd_json_parser.h"
103
104
namespace doris::variant_util {
105
#include "common/compile_check_begin.h"
106
107
224
inline void append_escaped_regex_char(std::string* regex_output, char ch) {
108
224
    switch (ch) {
109
10
    case '.':
110
12
    case '^':
111
14
    case '$':
112
16
    case '+':
113
21
    case '*':
114
23
    case '?':
115
25
    case '(':
116
27
    case ')':
117
29
    case '|':
118
31
    case '{':
119
33
    case '}':
120
35
    case '[':
121
35
    case ']':
122
39
    case '\\':
123
39
        regex_output->push_back('\\');
124
39
        regex_output->push_back(ch);
125
39
        break;
126
185
    default:
127
185
        regex_output->push_back(ch);
128
185
        break;
129
224
    }
130
224
}
131
132
// Small LRU to cap compiled glob patterns
133
constexpr size_t kGlobRegexCacheCapacity = 256;
134
135
struct GlobRegexCacheEntry {
136
    std::shared_ptr<RE2> re2;
137
    std::list<std::string>::iterator lru_it;
138
};
139
140
static std::mutex g_glob_regex_cache_mutex;
141
static std::list<std::string> g_glob_regex_cache_lru;
142
static std::unordered_map<std::string, GlobRegexCacheEntry> g_glob_regex_cache;
143
144
169
std::shared_ptr<RE2> get_or_build_re2(const std::string& glob_pattern) {
145
169
    {
146
169
        std::lock_guard<std::mutex> lock(g_glob_regex_cache_mutex);
147
169
        auto it = g_glob_regex_cache.find(glob_pattern);
148
169
        if (it != g_glob_regex_cache.end()) {
149
123
            g_glob_regex_cache_lru.splice(g_glob_regex_cache_lru.begin(), g_glob_regex_cache_lru,
150
123
                                          it->second.lru_it);
151
123
            return it->second.re2;
152
123
        }
153
169
    }
154
46
    std::string regex_pattern;
155
46
    Status st = glob_to_regex(glob_pattern, &regex_pattern);
156
46
    if (!st.ok()) {
157
2
        return nullptr;
158
2
    }
159
44
    auto compiled = std::make_shared<RE2>(regex_pattern);
160
44
    if (!compiled->ok()) {
161
3
        return nullptr;
162
3
    }
163
41
    {
164
41
        std::lock_guard<std::mutex> lock(g_glob_regex_cache_mutex);
165
41
        auto it = g_glob_regex_cache.find(glob_pattern);
166
41
        if (it != g_glob_regex_cache.end()) {
167
0
            g_glob_regex_cache_lru.splice(g_glob_regex_cache_lru.begin(), g_glob_regex_cache_lru,
168
0
                                          it->second.lru_it);
169
0
            return it->second.re2;
170
0
        }
171
41
        g_glob_regex_cache_lru.push_front(glob_pattern);
172
41
        g_glob_regex_cache.emplace(glob_pattern,
173
41
                                   GlobRegexCacheEntry {compiled, g_glob_regex_cache_lru.begin()});
174
41
        if (g_glob_regex_cache.size() > kGlobRegexCacheCapacity) {
175
0
            const std::string& evict_key = g_glob_regex_cache_lru.back();
176
0
            g_glob_regex_cache.erase(evict_key);
177
0
            g_glob_regex_cache_lru.pop_back();
178
0
        }
179
41
    }
180
0
    return compiled;
181
41
}
182
183
// Convert a restricted glob pattern into a regex.
184
// Supported: '*', '?', '[...]', '\\' escape. Others are treated as literals.
185
84
Status glob_to_regex(const std::string& glob_pattern, std::string* regex_pattern) {
186
84
    regex_pattern->clear();
187
84
    regex_pattern->append("^");
188
84
    bool is_escaped = false;
189
84
    size_t pattern_length = glob_pattern.size();
190
373
    for (size_t index = 0; index < pattern_length; ++index) {
191
293
        char current_char = glob_pattern[index];
192
293
        if (is_escaped) {
193
9
            append_escaped_regex_char(regex_pattern, current_char);
194
9
            is_escaped = false;
195
9
            continue;
196
9
        }
197
284
        if (current_char == '\\') {
198
13
            is_escaped = true;
199
13
            continue;
200
13
        }
201
271
        if (current_char == '*') {
202
15
            regex_pattern->append(".*");
203
15
            continue;
204
15
        }
205
256
        if (current_char == '?') {
206
13
            regex_pattern->append(".");
207
13
            continue;
208
13
        }
209
243
        if (current_char == '[') {
210
32
            size_t class_index = index + 1;
211
32
            bool class_closed = false;
212
32
            bool is_class_escaped = false;
213
32
            std::string class_buffer;
214
32
            if (class_index < pattern_length &&
215
32
                (glob_pattern[class_index] == '!' || glob_pattern[class_index] == '^')) {
216
9
                class_buffer.push_back('^');
217
9
                ++class_index;
218
9
            }
219
95
            for (; class_index < pattern_length; ++class_index) {
220
91
                char class_char = glob_pattern[class_index];
221
91
                if (is_class_escaped) {
222
10
                    class_buffer.push_back(class_char);
223
10
                    is_class_escaped = false;
224
10
                    continue;
225
10
                }
226
81
                if (class_char == '\\') {
227
10
                    is_class_escaped = true;
228
10
                    continue;
229
10
                }
230
71
                if (class_char == ']') {
231
28
                    class_closed = true;
232
28
                    break;
233
28
                }
234
43
                class_buffer.push_back(class_char);
235
43
            }
236
32
            if (!class_closed) {
237
4
                return Status::InvalidArgument("Unclosed character class in glob pattern: {}",
238
4
                                               glob_pattern);
239
4
            }
240
28
            regex_pattern->append("[");
241
28
            regex_pattern->append(class_buffer);
242
28
            regex_pattern->append("]");
243
28
            index = class_index;
244
28
            continue;
245
32
        }
246
211
        append_escaped_regex_char(regex_pattern, current_char);
247
211
    }
248
80
    if (is_escaped) {
249
4
        append_escaped_regex_char(regex_pattern, '\\');
250
4
    }
251
80
    regex_pattern->append("$");
252
80
    return Status::OK();
253
84
}
254
255
169
bool glob_match_re2(const std::string& glob_pattern, const std::string& candidate_path) {
256
169
    auto compiled = get_or_build_re2(glob_pattern);
257
169
    if (compiled == nullptr) {
258
5
        return false;
259
5
    }
260
164
    return RE2::FullMatch(candidate_path, *compiled);
261
169
}
262
263
14
size_t get_number_of_dimensions(const IDataType& type) {
264
14
    if (const auto* type_array = typeid_cast<const DataTypeArray*>(&type)) {
265
4
        return type_array->get_number_of_dimensions();
266
4
    }
267
10
    return 0;
268
14
}
269
3
size_t get_number_of_dimensions(const IColumn& column) {
270
3
    if (const auto* column_array = check_and_get_column<ColumnArray>(column)) {
271
2
        return column_array->get_number_of_dimensions();
272
2
    }
273
1
    return 0;
274
3
}
275
276
1.01k
DataTypePtr get_base_type_of_array(const DataTypePtr& type) {
277
    /// Get raw pointers to avoid extra copying of type pointers.
278
1.01k
    const DataTypeArray* last_array = nullptr;
279
1.01k
    const auto* current_type = type.get();
280
1.01k
    if (const auto* nullable = typeid_cast<const DataTypeNullable*>(current_type)) {
281
1.01k
        current_type = nullable->get_nested_type().get();
282
1.01k
    }
283
1.03k
    while (const auto* type_array = typeid_cast<const DataTypeArray*>(current_type)) {
284
15
        current_type = type_array->get_nested_type().get();
285
15
        last_array = type_array;
286
15
        if (const auto* nullable = typeid_cast<const DataTypeNullable*>(current_type)) {
287
12
            current_type = nullable->get_nested_type().get();
288
12
        }
289
15
    }
290
1.01k
    return last_array ? last_array->get_nested_type() : type;
291
1.01k
}
292
293
49.1k
Status cast_column(const ColumnWithTypeAndName& arg, const DataTypePtr& type, ColumnPtr* result) {
294
49.1k
    ColumnsWithTypeAndName arguments {arg, {nullptr, type, type->get_name()}};
295
296
    // To prevent from null info lost, we should not call function since the function framework will wrap
297
    // nullable to Variant instead of the root of Variant
298
    // correct output: Nullable(Array(int)) -> Nullable(Variant(Nullable(Array(int))))
299
    // incorrect output: Nullable(Array(int)) -> Nullable(Variant(Array(int)))
300
49.1k
    if (type->get_primitive_type() == TYPE_VARIANT) {
301
        // If source column is variant, so the nullable info is different from dst column
302
3
        if (arg.type->get_primitive_type() == TYPE_VARIANT) {
303
1
            *result = type->is_nullable() ? make_nullable(arg.column) : remove_nullable(arg.column);
304
1
            return Status::OK();
305
1
        }
306
        // set variant root column/type to from column/type
307
3
        CHECK(arg.column->is_nullable());
308
2
        auto to_type = remove_nullable(type);
309
2
        const auto& data_type_object = assert_cast<const DataTypeVariant&>(*to_type);
310
2
        auto variant = ColumnVariant::create(data_type_object.variant_max_subcolumns_count());
311
312
2
        variant->create_root(arg.type, arg.column->assume_mutable());
313
2
        ColumnPtr nullable = ColumnNullable::create(
314
2
                variant->get_ptr(),
315
2
                check_and_get_column<ColumnNullable>(arg.column.get())->get_null_map_column_ptr());
316
2
        *result = type->is_nullable() ? nullable : variant->get_ptr();
317
2
        return Status::OK();
318
3
    }
319
320
49.1k
    auto function = SimpleFunctionFactory::instance().get_function("CAST", arguments, type);
321
49.1k
    if (!function) {
322
0
        return Status::InternalError("Not found cast function {} to {}", arg.type->get_name(),
323
0
                                     type->get_name());
324
0
    }
325
49.1k
    Block tmp_block {arguments};
326
49.1k
    uint32_t result_column = cast_set<uint32_t>(tmp_block.columns());
327
49.1k
    RuntimeState state;
328
49.1k
    auto ctx = FunctionContext::create_context(&state, {}, {});
329
330
49.1k
    if (arg.type->get_primitive_type() == INVALID_TYPE) {
331
        // cast from nothing to any type should result in nulls
332
651
        *result = type->create_column_const_with_default_value(arg.column->size())
333
651
                          ->convert_to_full_column_if_const();
334
651
        return Status::OK();
335
651
    }
336
337
    // We convert column string to jsonb type just add a string jsonb field to dst column instead of parse
338
    // each line in original string column.
339
48.5k
    ctx->set_string_as_jsonb_string(true);
340
48.5k
    ctx->set_jsonb_string_as_string(true);
341
48.5k
    tmp_block.insert({nullptr, type, arg.name});
342
    // TODO(lihangyu): we should handle this error in strict mode
343
48.5k
    if (!function->execute(ctx.get(), tmp_block, {0}, result_column, arg.column->size())) {
344
0
        LOG_EVERY_N(WARNING, 100) << fmt::format("cast from {} to {}", arg.type->get_name(),
345
0
                                                 type->get_name());
346
0
        *result = type->create_column_const_with_default_value(arg.column->size())
347
0
                          ->convert_to_full_column_if_const();
348
0
        return Status::OK();
349
0
    }
350
48.5k
    *result = tmp_block.get_by_position(result_column).column->convert_to_full_column_if_const();
351
48.5k
    VLOG_DEBUG << fmt::format("{} before convert {}, after convert {}", arg.name,
352
0
                              arg.column->get_name(), (*result)->get_name());
353
48.5k
    return Status::OK();
354
48.5k
}
355
356
void get_column_by_type(const DataTypePtr& data_type, const std::string& name, TabletColumn& column,
357
2.08k
                        const ExtraInfo& ext_info) {
358
2.08k
    column.set_name(name);
359
2.08k
    column.set_type(data_type->get_storage_field_type());
360
2.08k
    if (ext_info.unique_id >= 0) {
361
4
        column.set_unique_id(ext_info.unique_id);
362
4
    }
363
2.08k
    if (ext_info.parent_unique_id >= 0) {
364
1.03k
        column.set_parent_unique_id(ext_info.parent_unique_id);
365
1.03k
    }
366
2.08k
    if (!ext_info.path_info.empty()) {
367
1.03k
        column.set_path_info(ext_info.path_info);
368
1.03k
    }
369
2.08k
    if (data_type->is_nullable()) {
370
1.03k
        const auto& real_type = static_cast<const DataTypeNullable&>(*data_type);
371
1.03k
        column.set_is_nullable(true);
372
1.03k
        get_column_by_type(real_type.get_nested_type(), name, column, {});
373
1.03k
        return;
374
1.03k
    }
375
1.05k
    if (data_type->get_primitive_type() == PrimitiveType::TYPE_ARRAY) {
376
12
        TabletColumn child;
377
12
        get_column_by_type(assert_cast<const DataTypeArray*>(data_type.get())->get_nested_type(),
378
12
                           "", child, {});
379
12
        column.set_length(TabletColumn::get_field_length_by_type(TPrimitiveType::ARRAY, 0));
380
12
        column.add_sub_column(child);
381
12
        return;
382
12
    }
383
1.03k
    if (data_type->get_primitive_type() == PrimitiveType::TYPE_VARIANT) {
384
0
        column.set_variant_max_subcolumns_count(assert_cast<const DataTypeVariant*>(data_type.get())
385
0
                                                        ->variant_max_subcolumns_count());
386
0
        return;
387
0
    }
388
    // size is not fixed when type is string or json
389
1.03k
    if (is_string_type(data_type->get_primitive_type()) ||
390
1.03k
        data_type->get_primitive_type() == TYPE_JSONB) {
391
370
        column.set_length(INT_MAX);
392
370
        return;
393
370
    }
394
395
669
    PrimitiveType type = data_type->get_primitive_type();
396
669
    if (is_int_or_bool(type) || is_string_type(type) || is_float_or_double(type) || is_ip(type) ||
397
669
        is_date_or_datetime(type) || type == PrimitiveType::TYPE_DATEV2) {
398
666
        column.set_length(cast_set<int32_t>(data_type->get_size_of_value_in_memory()));
399
666
        return;
400
666
    }
401
3
    if (is_decimal(type)) {
402
1
        column.set_precision(data_type->get_precision());
403
1
        column.set_frac(data_type->get_scale());
404
1
        return;
405
1
    }
406
    // datetimev2 needs scale
407
2
    if (type == PrimitiveType::TYPE_DATETIMEV2 || type == PrimitiveType::TYPE_TIMESTAMPTZ) {
408
1
        column.set_precision(-1);
409
1
        column.set_frac(data_type->get_scale());
410
1
        return;
411
1
    }
412
413
1
    throw doris::Exception(doris::ErrorCode::INTERNAL_ERROR,
414
1
                           "unexcepted data column type: {}, column name is: {}",
415
1
                           data_type->get_name(), name);
416
2
}
417
418
TabletColumn get_column_by_type(const DataTypePtr& data_type, const std::string& name,
419
1.03k
                                const ExtraInfo& ext_info) {
420
1.03k
    TabletColumn result;
421
1.03k
    get_column_by_type(data_type, name, result, ext_info);
422
1.03k
    return result;
423
1.03k
}
424
425
// check if two paths which same prefix have different structure
426
static bool has_different_structure_in_same_path(const PathInData::Parts& lhs,
427
9.00k
                                                 const PathInData::Parts& rhs) {
428
9.00k
    if (lhs.size() != rhs.size()) {
429
1
        return false; // different size means different structure
430
1
    }
431
    // Since we group by path string, lhs and rhs must have the same size and keys
432
    // We only need to check if they have different nested structure
433
35.9k
    for (size_t i = 0; i < lhs.size(); ++i) {
434
26.9k
        if (lhs[i] != rhs[i]) {
435
5
            VLOG_DEBUG << fmt::format(
436
0
                    "Check different structure: {} vs {}, lhs[i].is_nested: {}, rhs[i].is_nested: "
437
0
                    "{}",
438
0
                    lhs[i].key, rhs[i].key, lhs[i].is_nested, rhs[i].is_nested);
439
5
            return true;
440
5
        }
441
26.9k
    }
442
8.99k
    return false;
443
8.99k
}
444
445
3.02k
Status check_variant_has_no_ambiguous_paths(const PathsInData& tuple_paths) {
446
    // Group paths by their string representation to reduce comparisons
447
3.02k
    std::unordered_map<std::string, std::vector<size_t>> path_groups;
448
449
24.0k
    for (size_t i = 0; i < tuple_paths.size(); ++i) {
450
        // same path should have same structure, so we group them by path
451
21.0k
        path_groups[tuple_paths[i].get_path()].push_back(i);
452
        // print part of tuple_paths[i]
453
21.0k
        VLOG_DEBUG << "tuple_paths[i]: " << tuple_paths[i].get_path();
454
21.0k
    }
455
456
    // Only compare paths within the same group
457
12.0k
    for (const auto& [path_str, indices] : path_groups) {
458
12.0k
        if (indices.size() <= 1) {
459
3.02k
            continue; // No conflicts possible
460
3.02k
        }
461
462
        // Compare all pairs within this group
463
26.9k
        for (size_t i = 0; i < indices.size(); ++i) {
464
26.9k
            for (size_t j = 0; j < i; ++j) {
465
9.00k
                if (has_different_structure_in_same_path(tuple_paths[indices[i]].get_parts(),
466
9.00k
                                                         tuple_paths[indices[j]].get_parts())) {
467
5
                    return Status::DataQualityError(
468
5
                            "Ambiguous paths: {} vs {} with different nested part {} vs {}",
469
5
                            tuple_paths[indices[i]].get_path(), tuple_paths[indices[j]].get_path(),
470
5
                            tuple_paths[indices[i]].has_nested_part(),
471
5
                            tuple_paths[indices[j]].has_nested_part());
472
5
                }
473
9.00k
            }
474
18.0k
        }
475
9.00k
    }
476
3.01k
    return Status::OK();
477
3.02k
}
478
479
Status update_least_schema_internal(const std::map<PathInData, DataTypes>& subcolumns_types,
480
                                    TabletSchemaSPtr& common_schema, int32_t variant_col_unique_id,
481
                                    const std::map<std::string, TabletColumnPtr>& typed_columns,
482
8
                                    std::set<PathInData>* path_set) {
483
8
    PathsInData tuple_paths;
484
8
    DataTypes tuple_types;
485
8
    CHECK(common_schema.use_count() == 1);
486
    // Get the least common type for all paths.
487
8
    for (const auto& [key, subtypes] : subcolumns_types) {
488
7
        assert(!subtypes.empty());
489
7
        if (key.get_path() == ColumnVariant::COLUMN_NAME_DUMMY) {
490
0
            continue;
491
0
        }
492
7
        size_t first_dim = get_number_of_dimensions(*subtypes[0]);
493
7
        tuple_paths.emplace_back(key);
494
10
        for (size_t i = 1; i < subtypes.size(); ++i) {
495
4
            if (first_dim != get_number_of_dimensions(*subtypes[i])) {
496
1
                tuple_types.emplace_back(make_nullable(std::make_shared<DataTypeJsonb>()));
497
1
                LOG(INFO) << fmt::format(
498
1
                        "Uncompatible types of subcolumn '{}': {} and {}, cast to JSONB",
499
1
                        key.get_path(), subtypes[0]->get_name(), subtypes[i]->get_name());
500
1
                break;
501
1
            }
502
4
        }
503
7
        if (tuple_paths.size() == tuple_types.size()) {
504
1
            continue;
505
1
        }
506
6
        DataTypePtr common_type;
507
6
        get_least_supertype_jsonb(subtypes, &common_type);
508
6
        if (!common_type->is_nullable()) {
509
3
            common_type = make_nullable(common_type);
510
3
        }
511
6
        tuple_types.emplace_back(common_type);
512
6
    }
513
8
    CHECK_EQ(tuple_paths.size(), tuple_types.size());
514
515
    // Append all common type columns of this variant
516
15
    for (int i = 0; i < tuple_paths.size(); ++i) {
517
7
        TabletColumn common_column;
518
        // typed path not contains root part
519
7
        auto path_without_root = tuple_paths[i].copy_pop_front().get_path();
520
7
        if (typed_columns.contains(path_without_root) && !tuple_paths[i].has_nested_part()) {
521
0
            common_column = *typed_columns.at(path_without_root);
522
            // parent unique id and path may not be init in write path
523
0
            common_column.set_parent_unique_id(variant_col_unique_id);
524
0
            common_column.set_path_info(tuple_paths[i]);
525
0
            common_column.set_name(tuple_paths[i].get_path());
526
7
        } else {
527
            // const std::string& column_name = variant_col_name + "." + tuple_paths[i].get_path();
528
7
            get_column_by_type(tuple_types[i], tuple_paths[i].get_path(), common_column,
529
7
                               ExtraInfo {.unique_id = -1,
530
7
                                          .parent_unique_id = variant_col_unique_id,
531
7
                                          .path_info = tuple_paths[i]});
532
7
        }
533
7
        common_schema->append_column(common_column);
534
7
        if (path_set != nullptr) {
535
4
            path_set->insert(tuple_paths[i]);
536
4
        }
537
7
    }
538
8
    return Status::OK();
539
8
}
540
541
Status update_least_common_schema(const std::vector<TabletSchemaSPtr>& schemas,
542
                                  TabletSchemaSPtr& common_schema, int32_t variant_col_unique_id,
543
7
                                  std::set<PathInData>* path_set) {
544
7
    std::map<std::string, TabletColumnPtr> typed_columns;
545
7
    for (const TabletColumnPtr& col :
546
7
         common_schema->column_by_uid(variant_col_unique_id).get_sub_columns()) {
547
2
        typed_columns[col->name()] = col;
548
2
    }
549
    // Types of subcolumns by path from all tuples.
550
7
    std::map<PathInData, DataTypes> subcolumns_types;
551
552
    // Collect all paths first to enable batch checking
553
7
    std::vector<PathInData> all_paths;
554
555
12
    for (const TabletSchemaSPtr& schema : schemas) {
556
16
        for (const TabletColumnPtr& col : schema->columns()) {
557
            // Get subcolumns of this variant
558
16
            if (col->has_path_info() && col->parent_unique_id() > 0 &&
559
16
                col->parent_unique_id() == variant_col_unique_id) {
560
6
                subcolumns_types[*col->path_info_ptr()].emplace_back(
561
6
                        DataTypeFactory::instance().create_data_type(*col, col->is_nullable()));
562
6
                all_paths.push_back(*col->path_info_ptr());
563
6
            }
564
16
        }
565
12
    }
566
567
    // Batch check for conflicts
568
7
    RETURN_IF_ERROR(check_variant_has_no_ambiguous_paths(all_paths));
569
570
7
    return update_least_schema_internal(subcolumns_types, common_schema, variant_col_unique_id,
571
7
                                        typed_columns, path_set);
572
7
}
573
574
// Keep variant subcolumn BF support aligned with FE DDL checks.
575
1.05k
bool is_bf_supported_by_fe_for_variant_subcolumn(FieldType type) {
576
1.05k
    switch (type) {
577
0
    case FieldType::OLAP_FIELD_TYPE_SMALLINT:
578
6
    case FieldType::OLAP_FIELD_TYPE_INT:
579
656
    case FieldType::OLAP_FIELD_TYPE_BIGINT:
580
656
    case FieldType::OLAP_FIELD_TYPE_LARGEINT:
581
656
    case FieldType::OLAP_FIELD_TYPE_CHAR:
582
656
    case FieldType::OLAP_FIELD_TYPE_VARCHAR:
583
1.03k
    case FieldType::OLAP_FIELD_TYPE_STRING:
584
1.03k
    case FieldType::OLAP_FIELD_TYPE_DATE:
585
1.03k
    case FieldType::OLAP_FIELD_TYPE_DATETIME:
586
1.03k
    case FieldType::OLAP_FIELD_TYPE_DATEV2:
587
1.03k
    case FieldType::OLAP_FIELD_TYPE_DATETIMEV2:
588
1.03k
    case FieldType::OLAP_FIELD_TYPE_TIMESTAMPTZ:
589
1.03k
    case FieldType::OLAP_FIELD_TYPE_DECIMAL:
590
1.03k
    case FieldType::OLAP_FIELD_TYPE_DECIMAL32:
591
1.03k
    case FieldType::OLAP_FIELD_TYPE_DECIMAL64:
592
1.03k
    case FieldType::OLAP_FIELD_TYPE_DECIMAL128I:
593
1.03k
    case FieldType::OLAP_FIELD_TYPE_DECIMAL256:
594
1.03k
    case FieldType::OLAP_FIELD_TYPE_IPV4:
595
1.03k
    case FieldType::OLAP_FIELD_TYPE_IPV6:
596
1.03k
        return true;
597
16
    default:
598
16
        return false;
599
1.05k
    }
600
1.05k
}
601
602
void inherit_column_attributes(const TabletColumn& source, TabletColumn& target,
603
1.05k
                               TabletSchemaSPtr* target_schema) {
604
1.05k
    if (!target.is_extracted_column()) {
605
0
        return;
606
0
    }
607
1.05k
    target.set_aggregation_method(source.aggregation());
608
609
    // 1. bloom filter
610
1.05k
    if (is_bf_supported_by_fe_for_variant_subcolumn(target.type())) {
611
1.03k
        target.set_is_bf_column(source.is_bf_column());
612
1.03k
    }
613
614
1.05k
    if (!target_schema) {
615
1.04k
        return;
616
1.04k
    }
617
618
    // 2. inverted index
619
8
    TabletIndexes indexes_to_add;
620
8
    auto source_indexes = (*target_schema)->inverted_indexs(source.unique_id());
621
    // if target is variant type, we need to inherit all indexes
622
    // because this schema is a read schema from fe
623
8
    if (target.is_variant_type()) {
624
0
        for (auto& index : source_indexes) {
625
0
            auto index_info = std::make_shared<TabletIndex>(*index);
626
0
            index_info->set_escaped_escaped_index_suffix_path(target.path_info_ptr()->get_path());
627
0
            indexes_to_add.emplace_back(std::move(index_info));
628
0
        }
629
8
    } else {
630
8
        inherit_index(source_indexes, indexes_to_add, target);
631
8
    }
632
8
    auto target_indexes = (*target_schema)
633
8
                                  ->inverted_indexs(target.parent_unique_id(),
634
8
                                                    target.path_info_ptr()->get_path());
635
8
    if (target_indexes.empty()) {
636
8
        for (auto& index_info : indexes_to_add) {
637
8
            (*target_schema)->append_index(std::move(*index_info));
638
8
        }
639
8
    }
640
641
    // 3. TODO: gnragm bf index
642
8
}
643
644
6
void inherit_column_attributes(TabletSchemaSPtr& schema) {
645
    // Add index meta if extracted column is missing index meta
646
23
    for (size_t i = 0; i < schema->num_columns(); ++i) {
647
17
        TabletColumn& col = schema->mutable_column(i);
648
17
        if (!col.is_extracted_column()) {
649
9
            continue;
650
9
        }
651
8
        if (schema->field_index(col.parent_unique_id()) == -1) {
652
            // parent column is missing, maybe dropped
653
0
            continue;
654
0
        }
655
8
        inherit_column_attributes(schema->column_by_uid(col.parent_unique_id()), col, &schema);
656
8
    }
657
6
}
658
659
Status get_least_common_schema(const std::vector<TabletSchemaSPtr>& schemas,
660
                               const TabletSchemaSPtr& base_schema, TabletSchemaSPtr& output_schema,
661
4
                               bool check_schema_size) {
662
4
    std::vector<int32_t> variant_column_unique_id;
663
    // Construct a schema excluding the extracted columns and gather unique identifiers for variants.
664
    // Ensure that the output schema also excludes these extracted columns. This approach prevents
665
    // duplicated paths following the update_least_common_schema process.
666
4
    auto build_schema_without_extracted_columns = [&](const TabletSchemaSPtr& base_schema) {
667
4
        output_schema = std::make_shared<TabletSchema>();
668
        // not copy columns but only shadow copy other attributes
669
4
        output_schema->shawdow_copy_without_columns(*base_schema);
670
        // Get all columns without extracted columns and collect variant col unique id
671
7
        for (const TabletColumnPtr& col : base_schema->columns()) {
672
7
            if (col->is_variant_type()) {
673
4
                variant_column_unique_id.push_back(col->unique_id());
674
4
            }
675
7
            if (!col->is_extracted_column()) {
676
4
                output_schema->append_column(*col);
677
4
            }
678
7
        }
679
4
    };
680
4
    if (base_schema == nullptr) {
681
        // Pick tablet schema with max schema version
682
4
        auto max_version_schema =
683
4
                *std::max_element(schemas.cbegin(), schemas.cend(),
684
4
                                  [](const TabletSchemaSPtr a, const TabletSchemaSPtr b) {
685
2
                                      return a->schema_version() < b->schema_version();
686
2
                                  });
687
4
        CHECK(max_version_schema);
688
4
        build_schema_without_extracted_columns(max_version_schema);
689
4
    } else {
690
        // use input base_schema schema as base schema
691
0
        build_schema_without_extracted_columns(base_schema);
692
0
    }
693
694
4
    for (int32_t unique_id : variant_column_unique_id) {
695
4
        std::set<PathInData> path_set;
696
4
        RETURN_IF_ERROR(update_least_common_schema(schemas, output_schema, unique_id, &path_set));
697
4
    }
698
699
4
    inherit_column_attributes(output_schema);
700
4
    if (check_schema_size &&
701
4
        output_schema->columns().size() > config::variant_max_merged_tablet_schema_size) {
702
0
        return Status::DataQualityError("Reached max column size limit {}",
703
0
                                        config::variant_max_merged_tablet_schema_size);
704
0
    }
705
706
4
    return Status::OK();
707
4
}
708
709
// sort by paths in lexicographical order
710
634
ColumnVariant::Subcolumns get_sorted_subcolumns(const ColumnVariant::Subcolumns& subcolumns) {
711
    // sort by paths in lexicographical order
712
634
    ColumnVariant::Subcolumns sorted = subcolumns;
713
4.12k
    std::sort(sorted.begin(), sorted.end(), [](const auto& lhsItem, const auto& rhsItem) {
714
4.12k
        return lhsItem->path < rhsItem->path;
715
4.12k
    });
716
634
    return sorted;
717
634
}
718
719
bool has_schema_index_diff(const TabletSchema* new_schema, const TabletSchema* old_schema,
720
4
                           int32_t new_col_idx, int32_t old_col_idx) {
721
4
    const auto& column_new = new_schema->column(new_col_idx);
722
4
    const auto& column_old = old_schema->column(old_col_idx);
723
724
4
    if (column_new.is_bf_column() != column_old.is_bf_column()) {
725
2
        return true;
726
2
    }
727
728
2
    auto new_schema_inverted_indexs = new_schema->inverted_indexs(column_new);
729
2
    auto old_schema_inverted_indexs = old_schema->inverted_indexs(column_old);
730
731
2
    if (new_schema_inverted_indexs.size() != old_schema_inverted_indexs.size()) {
732
1
        return true;
733
1
    }
734
735
2
    for (size_t i = 0; i < new_schema_inverted_indexs.size(); ++i) {
736
1
        if (!new_schema_inverted_indexs[i]->is_same_except_id(old_schema_inverted_indexs[i])) {
737
0
            return true;
738
0
        }
739
1
    }
740
741
1
    return false;
742
1
}
743
744
622
TabletColumn create_sparse_column(const TabletColumn& variant) {
745
622
    TabletColumn res;
746
622
    res.set_name(variant.name_lower_case() + "." + SPARSE_COLUMN_PATH);
747
622
    res.set_type(FieldType::OLAP_FIELD_TYPE_MAP);
748
622
    res.set_aggregation_method(variant.aggregation());
749
622
    res.set_path_info(PathInData {variant.name_lower_case() + "." + SPARSE_COLUMN_PATH});
750
622
    res.set_parent_unique_id(variant.unique_id());
751
    // set default value to "NULL" DefaultColumnIterator will call insert_many_defaults
752
622
    res.set_default_value("NULL");
753
622
    TabletColumn child_tcolumn;
754
622
    child_tcolumn.set_type(FieldType::OLAP_FIELD_TYPE_STRING);
755
622
    res.add_sub_column(child_tcolumn);
756
622
    res.add_sub_column(child_tcolumn);
757
622
    return res;
758
622
}
759
760
29
TabletColumn create_sparse_shard_column(const TabletColumn& variant, int bucket_index) {
761
29
    TabletColumn res;
762
29
    std::string name = variant.name_lower_case() + "." + SPARSE_COLUMN_PATH + ".b" +
763
29
                       std::to_string(bucket_index);
764
29
    res.set_name(name);
765
29
    res.set_type(FieldType::OLAP_FIELD_TYPE_MAP);
766
29
    res.set_aggregation_method(variant.aggregation());
767
29
    res.set_parent_unique_id(variant.unique_id());
768
29
    res.set_default_value("NULL");
769
29
    PathInData path(name);
770
29
    res.set_path_info(path);
771
29
    TabletColumn child_tcolumn;
772
29
    child_tcolumn.set_type(FieldType::OLAP_FIELD_TYPE_STRING);
773
29
    res.add_sub_column(child_tcolumn);
774
29
    res.add_sub_column(child_tcolumn);
775
29
    return res;
776
29
}
777
778
28
TabletColumn create_doc_value_column(const TabletColumn& variant, int bucket_index) {
779
28
    TabletColumn res;
780
28
    std::string name = variant.name_lower_case() + "." + DOC_VALUE_COLUMN_PATH + ".b" +
781
28
                       std::to_string(bucket_index);
782
28
    res.set_name(name);
783
28
    res.set_type(FieldType::OLAP_FIELD_TYPE_MAP);
784
28
    res.set_aggregation_method(variant.aggregation());
785
28
    res.set_parent_unique_id(variant.unique_id());
786
28
    res.set_default_value("NULL");
787
28
    res.set_path_info(PathInData {name});
788
789
28
    TabletColumn child_tcolumn;
790
28
    child_tcolumn.set_type(FieldType::OLAP_FIELD_TYPE_STRING);
791
28
    res.add_sub_column(child_tcolumn);
792
28
    res.add_sub_column(child_tcolumn);
793
28
    return res;
794
28
}
795
796
5.34k
uint32_t variant_binary_shard_of(const StringRef& path, uint32_t bucket_num) {
797
5.34k
    if (bucket_num <= 1) return 0;
798
5.34k
    SipHash hash;
799
5.34k
    hash.update(path.data, path.size);
800
5.34k
    uint64_t h = hash.get64();
801
5.34k
    return static_cast<uint32_t>(h % bucket_num);
802
5.34k
}
803
804
Status VariantCompactionUtil::aggregate_path_to_stats(
805
        const RowsetSharedPtr& rs,
806
19
        std::unordered_map<int32_t, PathToNoneNullValues>* uid_to_path_stats) {
807
19
    SegmentCacheHandle segment_cache;
808
19
    RETURN_IF_ERROR(SegmentLoader::instance()->load_segments(
809
19
            std::static_pointer_cast<BetaRowset>(rs), &segment_cache));
810
811
95
    for (const auto& column : rs->tablet_schema()->columns()) {
812
95
        if (!column->is_variant_type() || column->unique_id() < 0) {
813
57
            continue;
814
57
        }
815
38
        if (!should_check_variant_path_stats(*column)) {
816
0
            continue;
817
0
        }
818
194
        for (const auto& segment : segment_cache.get_segments()) {
819
194
            std::shared_ptr<ColumnReader> column_reader;
820
194
            OlapReaderStatistics stats;
821
194
            RETURN_IF_ERROR(
822
194
                    segment->get_column_reader(column->unique_id(), &column_reader, &stats));
823
194
            if (!column_reader) {
824
0
                continue;
825
0
            }
826
827
194
            CHECK(column_reader->get_meta_type() == FieldType::OLAP_FIELD_TYPE_VARIANT);
828
194
            auto* variant_column_reader =
829
194
                    assert_cast<segment_v2::VariantColumnReader*>(column_reader.get());
830
            // load external meta before getting stats
831
194
            RETURN_IF_ERROR(variant_column_reader->load_external_meta_once());
832
194
            const auto* source_stats = variant_column_reader->get_stats();
833
194
            CHECK(source_stats);
834
835
            // agg path -> stats
836
1.35k
            for (const auto& [path, size] : source_stats->sparse_column_non_null_size) {
837
1.35k
                (*uid_to_path_stats)[column->unique_id()][path] += size;
838
1.35k
            }
839
840
572
            for (const auto& [path, size] : source_stats->subcolumns_non_null_size) {
841
572
                (*uid_to_path_stats)[column->unique_id()][path] += size;
842
572
            }
843
194
        }
844
38
    }
845
19
    return Status::OK();
846
19
}
847
848
Status VariantCompactionUtil::aggregate_variant_extended_info(
849
        const RowsetSharedPtr& rs,
850
8
        std::unordered_map<int32_t, VariantExtendedInfo>* uid_to_variant_extended_info) {
851
8
    SegmentCacheHandle segment_cache;
852
8
    RETURN_IF_ERROR(SegmentLoader::instance()->load_segments(
853
8
            std::static_pointer_cast<BetaRowset>(rs), &segment_cache));
854
855
32
    for (const auto& column : rs->tablet_schema()->columns()) {
856
32
        if (!column->is_variant_type()) {
857
18
            continue;
858
18
        }
859
14
        if (column->variant_enable_nested_group()) {
860
0
            (*uid_to_variant_extended_info)[column->unique_id()].has_nested_group = true;
861
0
            continue;
862
0
        }
863
60
        for (const auto& segment : segment_cache.get_segments()) {
864
60
            std::shared_ptr<ColumnReader> column_reader;
865
60
            OlapReaderStatistics stats;
866
60
            RETURN_IF_ERROR(
867
60
                    segment->get_column_reader(column->unique_id(), &column_reader, &stats));
868
60
            if (!column_reader) {
869
0
                continue;
870
0
            }
871
872
60
            CHECK(column_reader->get_meta_type() == FieldType::OLAP_FIELD_TYPE_VARIANT);
873
60
            auto* variant_column_reader =
874
60
                    assert_cast<segment_v2::VariantColumnReader*>(column_reader.get());
875
            // load external meta before getting stats
876
60
            RETURN_IF_ERROR(variant_column_reader->load_external_meta_once());
877
60
            const auto* source_stats = variant_column_reader->get_stats();
878
60
            CHECK(source_stats);
879
880
            // 1. agg path -> stats
881
420
            for (const auto& [path, size] : source_stats->sparse_column_non_null_size) {
882
420
                (*uid_to_variant_extended_info)[column->unique_id()]
883
420
                        .path_to_none_null_values[path] += size;
884
420
                (*uid_to_variant_extended_info)[column->unique_id()].sparse_paths.emplace(path);
885
420
            }
886
887
170
            for (const auto& [path, size] : source_stats->subcolumns_non_null_size) {
888
170
                (*uid_to_variant_extended_info)[column->unique_id()]
889
170
                        .path_to_none_null_values[path] += size;
890
170
            }
891
892
            //2. agg path -> schema
893
60
            auto& paths_types =
894
60
                    (*uid_to_variant_extended_info)[column->unique_id()].path_to_data_types;
895
60
            variant_column_reader->get_subcolumns_types(&paths_types);
896
897
            // 3. extract typed paths
898
60
            auto& typed_paths = (*uid_to_variant_extended_info)[column->unique_id()].typed_paths;
899
60
            variant_column_reader->get_typed_paths(&typed_paths);
900
901
            // 4. extract nested paths
902
60
            auto& nested_paths = (*uid_to_variant_extended_info)[column->unique_id()].nested_paths;
903
60
            variant_column_reader->get_nested_paths(&nested_paths);
904
60
        }
905
14
    }
906
8
    return Status::OK();
907
8
}
908
909
// get the subpaths and sparse paths for the variant column
910
void VariantCompactionUtil::get_subpaths(int32_t max_subcolumns_count,
911
                                         const PathToNoneNullValues& stats,
912
11
                                         TabletSchema::PathsSetInfo& paths_set_info) {
913
    // max_subcolumns_count is 0 means no limit
914
11
    if (max_subcolumns_count > 0 && stats.size() > max_subcolumns_count) {
915
6
        std::vector<std::pair<size_t, std::string_view>> paths_with_sizes;
916
6
        paths_with_sizes.reserve(stats.size());
917
48
        for (const auto& [path, size] : stats) {
918
48
            paths_with_sizes.emplace_back(size, path);
919
48
        }
920
6
        std::sort(paths_with_sizes.begin(), paths_with_sizes.end(), std::greater());
921
922
        // Select top N paths as subcolumns, remaining paths as sparse columns
923
48
        for (const auto& [size, path] : paths_with_sizes) {
924
48
            if (paths_set_info.sub_path_set.size() < max_subcolumns_count) {
925
18
                paths_set_info.sub_path_set.emplace(path);
926
30
            } else {
927
30
                paths_set_info.sparse_path_set.emplace(path);
928
30
            }
929
48
        }
930
6
        LOG(INFO) << "subpaths " << paths_set_info.sub_path_set.size() << " sparse paths "
931
6
                  << paths_set_info.sparse_path_set.size() << " variant max subcolumns count "
932
6
                  << max_subcolumns_count << " stats size " << paths_with_sizes.size();
933
6
    } else {
934
        // Apply all paths as subcolumns
935
11
        for (const auto& [path, _] : stats) {
936
11
            paths_set_info.sub_path_set.emplace(path);
937
11
        }
938
5
    }
939
11
}
940
941
Status VariantCompactionUtil::check_path_stats(const std::vector<RowsetSharedPtr>& intputs,
942
11
                                               RowsetSharedPtr output, BaseTabletSPtr tablet) {
943
11
    if (output->tablet_schema()->num_variant_columns() == 0) {
944
6
        return Status::OK();
945
6
    }
946
26
    for (const auto& rowset : intputs) {
947
130
        for (const auto& column : rowset->tablet_schema()->columns()) {
948
130
            if (column->is_variant_type() && !should_check_variant_path_stats(*column)) {
949
0
                return Status::OK();
950
0
            }
951
130
        }
952
26
    }
953
    // check no extended schema in input rowsets
954
26
    for (const auto& rowset : intputs) {
955
130
        for (const auto& column : rowset->tablet_schema()->columns()) {
956
130
            if (column->is_extracted_column()) {
957
0
                return Status::OK();
958
0
            }
959
130
        }
960
26
    }
961
#ifndef BE_TEST
962
    // check no extended schema in output rowset
963
    for (const auto& column : output->tablet_schema()->columns()) {
964
        if (column->is_extracted_column()) {
965
            const auto& name = column->name();
966
            if (name.find("." + DOC_VALUE_COLUMN_PATH + ".") != std::string::npos ||
967
                name.find("." + SPARSE_COLUMN_PATH + ".") != std::string::npos ||
968
                name.ends_with("." + SPARSE_COLUMN_PATH)) {
969
                continue;
970
            }
971
            return Status::InternalError("Unexpected extracted column {} in output rowset",
972
                                         column->name());
973
        }
974
    }
975
#endif
976
    // only check path stats for dup_keys since the rows may be merged in other models
977
5
    if (tablet->keys_type() != KeysType::DUP_KEYS) {
978
2
        return Status::OK();
979
2
    }
980
    // if there is a delete predicate in the input rowsets, we skip the path stats check
981
15
    for (auto& rowset : intputs) {
982
15
        if (rowset->rowset_meta()->has_delete_predicate()) {
983
0
            return Status::OK();
984
0
        }
985
15
    }
986
15
    for (const auto& column : output->tablet_schema()->columns()) {
987
15
        if (column->is_variant_type() && !should_check_variant_path_stats(*column)) {
988
0
            return Status::OK();
989
0
        }
990
15
    }
991
15
    for (const auto& column : output->tablet_schema()->columns()) {
992
15
        if (!column->is_variant_type()) {
993
9
            continue;
994
9
        }
995
15
    }
996
3
    std::unordered_map<int32_t, PathToNoneNullValues> original_uid_to_path_stats;
997
15
    for (const auto& rs : intputs) {
998
15
        RETURN_IF_ERROR(aggregate_path_to_stats(rs, &original_uid_to_path_stats));
999
15
    }
1000
3
    std::unordered_map<int32_t, PathToNoneNullValues> output_uid_to_path_stats;
1001
3
    RETURN_IF_ERROR(aggregate_path_to_stats(output, &output_uid_to_path_stats));
1002
5
    for (const auto& [uid, stats] : output_uid_to_path_stats) {
1003
5
        if (output->tablet_schema()->column_by_uid(uid).is_variant_type() &&
1004
5
            output->tablet_schema()->column_by_uid(uid).variant_enable_doc_mode()) {
1005
0
            continue;
1006
0
        }
1007
5
        if (original_uid_to_path_stats.find(uid) == original_uid_to_path_stats.end()) {
1008
0
            return Status::InternalError("Path stats not found for uid {}, tablet_id {}", uid,
1009
0
                                         tablet->tablet_id());
1010
0
        }
1011
1012
        // In input rowsets, some rowsets may have statistics values exceeding the maximum limit,
1013
        // which leads to inaccurate statistics
1014
5
        if (stats.size() > output->tablet_schema()
1015
5
                                   ->column_by_uid(uid)
1016
5
                                   .variant_max_sparse_column_statistics_size()) {
1017
            // When there is only one segment, we can ensure that the size of each path in output stats is accurate
1018
0
            if (output->num_segments() == 1) {
1019
0
                for (const auto& [path, size] : stats) {
1020
0
                    if (original_uid_to_path_stats.at(uid).find(path) ==
1021
0
                        original_uid_to_path_stats.at(uid).end()) {
1022
0
                        continue;
1023
0
                    }
1024
0
                    if (original_uid_to_path_stats.at(uid).at(path) > size) {
1025
0
                        return Status::InternalError(
1026
0
                                "Path stats not smaller for uid {} with path `{}`, input size {}, "
1027
0
                                "output "
1028
0
                                "size {}, "
1029
0
                                "tablet_id {}",
1030
0
                                uid, path, original_uid_to_path_stats.at(uid).at(path), size,
1031
0
                                tablet->tablet_id());
1032
0
                    }
1033
0
                }
1034
0
            }
1035
0
        }
1036
        // in this case, input stats is accurate, so we check the stats size and stats value
1037
5
        else {
1038
41
            for (const auto& [path, size] : stats) {
1039
41
                if (original_uid_to_path_stats.at(uid).find(path) ==
1040
41
                    original_uid_to_path_stats.at(uid).end()) {
1041
0
                    return Status::InternalError(
1042
0
                            "Path stats not found for uid {}, path {}, tablet_id {}", uid, path,
1043
0
                            tablet->tablet_id());
1044
0
                }
1045
41
                if (original_uid_to_path_stats.at(uid).at(path) != size) {
1046
1
                    return Status::InternalError(
1047
1
                            "Path stats not match for uid {} with path `{}`, input size {}, output "
1048
1
                            "size {}, "
1049
1
                            "tablet_id {}",
1050
1
                            uid, path, original_uid_to_path_stats.at(uid).at(path), size,
1051
1
                            tablet->tablet_id());
1052
1
                }
1053
41
            }
1054
5
        }
1055
5
    }
1056
1057
2
    return Status::OK();
1058
3
}
1059
1060
Status VariantCompactionUtil::get_compaction_typed_columns(
1061
        const TabletSchemaSPtr& target, const std::unordered_set<std::string>& typed_paths,
1062
        const TabletColumnPtr parent_column, TabletSchemaSPtr& output_schema,
1063
7
        TabletSchema::PathsSetInfo& paths_set_info) {
1064
7
    if (parent_column->variant_enable_typed_paths_to_sparse()) {
1065
0
        return Status::OK();
1066
0
    }
1067
7
    for (const auto& path : typed_paths) {
1068
4
        TabletSchema::SubColumnInfo sub_column_info;
1069
4
        if (generate_sub_column_info(*target, parent_column->unique_id(), path, &sub_column_info)) {
1070
3
            inherit_column_attributes(*parent_column, sub_column_info.column);
1071
3
            output_schema->append_column(sub_column_info.column);
1072
3
            paths_set_info.typed_path_set.insert({path, std::move(sub_column_info)});
1073
3
            VLOG_DEBUG << "append typed column " << path;
1074
3
        } else {
1075
1
            return Status::InternalError("Failed to generate sub column info for path {}", path);
1076
1
        }
1077
4
    }
1078
6
    return Status::OK();
1079
7
}
1080
1081
Status VariantCompactionUtil::get_compaction_nested_columns(
1082
        const std::unordered_set<PathInData, PathInData::Hash>& nested_paths,
1083
        const PathToDataTypes& path_to_data_types, const TabletColumnPtr parent_column,
1084
7
        TabletSchemaSPtr& output_schema, TabletSchema::PathsSetInfo& paths_set_info) {
1085
7
    const auto& parent_indexes = output_schema->inverted_indexs(parent_column->unique_id());
1086
7
    for (const auto& path : nested_paths) {
1087
3
        const auto& find_data_types = path_to_data_types.find(path);
1088
3
        if (find_data_types == path_to_data_types.end() || find_data_types->second.empty()) {
1089
1
            return Status::InternalError("Nested path {} has no data type", path.get_path());
1090
1
        }
1091
2
        DataTypePtr data_type;
1092
2
        get_least_supertype_jsonb(find_data_types->second, &data_type);
1093
1094
2
        const std::string& column_name = parent_column->name_lower_case() + "." + path.get_path();
1095
2
        PathInDataBuilder full_path_builder;
1096
2
        auto full_path = full_path_builder.append(parent_column->name_lower_case(), false)
1097
2
                                 .append(path.get_parts(), false)
1098
2
                                 .build();
1099
2
        TabletColumn nested_column =
1100
2
                get_column_by_type(data_type, column_name,
1101
2
                                   ExtraInfo {.unique_id = -1,
1102
2
                                              .parent_unique_id = parent_column->unique_id(),
1103
2
                                              .path_info = full_path});
1104
2
        inherit_column_attributes(*parent_column, nested_column);
1105
2
        TabletIndexes sub_column_indexes;
1106
2
        inherit_index(parent_indexes, sub_column_indexes, nested_column);
1107
2
        paths_set_info.subcolumn_indexes.emplace(path.get_path(), std::move(sub_column_indexes));
1108
2
        output_schema->append_column(nested_column);
1109
2
        VLOG_DEBUG << "append nested column " << path.get_path();
1110
2
    }
1111
6
    return Status::OK();
1112
7
}
1113
1114
void VariantCompactionUtil::get_compaction_subcolumns_from_subpaths(
1115
        TabletSchema::PathsSetInfo& paths_set_info, const TabletColumnPtr parent_column,
1116
        const TabletSchemaSPtr& target, const PathToDataTypes& path_to_data_types,
1117
12
        const std::unordered_set<std::string>& sparse_paths, TabletSchemaSPtr& output_schema) {
1118
12
    auto& path_set = paths_set_info.sub_path_set;
1119
12
    std::vector<StringRef> sorted_subpaths(path_set.begin(), path_set.end());
1120
12
    std::sort(sorted_subpaths.begin(), sorted_subpaths.end());
1121
12
    const auto& parent_indexes = target->inverted_indexs(parent_column->unique_id());
1122
    // append subcolumns
1123
36
    for (const auto& subpath : sorted_subpaths) {
1124
36
        auto column_name = parent_column->name_lower_case() + "." + subpath.to_string();
1125
36
        auto column_path = PathInData(column_name);
1126
1127
36
        const auto& find_data_types = path_to_data_types.find(PathInData(subpath));
1128
1129
        // some cases: the subcolumn type is variant
1130
        // 1. this path has no data type in segments
1131
        // 2. this path is in sparse paths
1132
        // 3. the sparse paths are too much
1133
36
        TabletSchema::SubColumnInfo sub_column_info;
1134
36
        if (parent_column->variant_enable_typed_paths_to_sparse() &&
1135
36
            generate_sub_column_info(*target, parent_column->unique_id(), std::string(subpath),
1136
16
                                     &sub_column_info)) {
1137
8
            inherit_column_attributes(*parent_column, sub_column_info.column);
1138
8
            output_schema->append_column(sub_column_info.column);
1139
8
            paths_set_info.subcolumn_indexes.emplace(subpath, std::move(sub_column_info.indexes));
1140
8
            VLOG_DEBUG << "append typed column " << subpath;
1141
28
        } else if (find_data_types == path_to_data_types.end() || find_data_types->second.empty() ||
1142
28
                   sparse_paths.find(std::string(subpath)) != sparse_paths.end() ||
1143
28
                   sparse_paths.size() >=
1144
20
                           parent_column->variant_max_sparse_column_statistics_size()) {
1145
12
            TabletColumn subcolumn;
1146
12
            subcolumn.set_name(column_name);
1147
12
            subcolumn.set_type(FieldType::OLAP_FIELD_TYPE_VARIANT);
1148
12
            subcolumn.set_parent_unique_id(parent_column->unique_id());
1149
12
            subcolumn.set_path_info(column_path);
1150
12
            subcolumn.set_aggregation_method(parent_column->aggregation());
1151
12
            subcolumn.set_variant_max_subcolumns_count(
1152
12
                    parent_column->variant_max_subcolumns_count());
1153
12
            subcolumn.set_is_nullable(true);
1154
12
            output_schema->append_column(subcolumn);
1155
12
            VLOG_DEBUG << "append sub column " << subpath << " data type "
1156
0
                       << "VARIANT";
1157
12
        }
1158
        // normal case: the subcolumn type can be calculated from the data types in segments
1159
16
        else {
1160
16
            DataTypePtr data_type;
1161
16
            get_least_supertype_jsonb(find_data_types->second, &data_type);
1162
16
            TabletColumn sub_column =
1163
16
                    get_column_by_type(data_type, column_name,
1164
16
                                       ExtraInfo {.unique_id = -1,
1165
16
                                                  .parent_unique_id = parent_column->unique_id(),
1166
16
                                                  .path_info = column_path});
1167
16
            inherit_column_attributes(*parent_column, sub_column);
1168
16
            TabletIndexes sub_column_indexes;
1169
16
            inherit_index(parent_indexes, sub_column_indexes, sub_column);
1170
16
            paths_set_info.subcolumn_indexes.emplace(subpath, std::move(sub_column_indexes));
1171
16
            output_schema->append_column(sub_column);
1172
16
            VLOG_DEBUG << "append sub column " << subpath << " data type " << data_type->get_name();
1173
16
        }
1174
36
    }
1175
12
}
1176
1177
void VariantCompactionUtil::get_compaction_subcolumns_from_data_types(
1178
        TabletSchema::PathsSetInfo& paths_set_info, const TabletColumnPtr parent_column,
1179
        const TabletSchemaSPtr& target, const PathToDataTypes& path_to_data_types,
1180
2
        TabletSchemaSPtr& output_schema) {
1181
2
    const auto& parent_indexes = target->inverted_indexs(parent_column->unique_id());
1182
2
    for (const auto& [path, data_types] : path_to_data_types) {
1183
2
        if (data_types.empty() || path.empty() || path.has_nested_part()) {
1184
0
            continue;
1185
0
        }
1186
2
        DataTypePtr data_type;
1187
2
        get_least_supertype_jsonb(data_types, &data_type);
1188
2
        auto column_name = parent_column->name_lower_case() + "." + path.get_path();
1189
2
        auto column_path = PathInData(column_name);
1190
2
        TabletColumn sub_column =
1191
2
                get_column_by_type(data_type, column_name,
1192
2
                                   ExtraInfo {.unique_id = -1,
1193
2
                                              .parent_unique_id = parent_column->unique_id(),
1194
2
                                              .path_info = column_path});
1195
2
        inherit_column_attributes(*parent_column, sub_column);
1196
2
        TabletIndexes sub_column_indexes;
1197
2
        inherit_index(parent_indexes, sub_column_indexes, sub_column);
1198
2
        paths_set_info.subcolumn_indexes.emplace(path.get_path(), std::move(sub_column_indexes));
1199
2
        output_schema->append_column(sub_column);
1200
2
        VLOG_DEBUG << "append sub column " << path.get_path() << " data type "
1201
0
                   << data_type->get_name();
1202
2
    }
1203
2
}
1204
1205
// Build the temporary schema for compaction
1206
// 1. aggregate path stats and data types from all rowsets
1207
// 2. append typed columns and nested columns to the output schema
1208
// 3. sort the subpaths and sparse paths for each unique id
1209
// 4. append the subpaths and sparse paths to the output schema
1210
// 5. set the path set info for each unique id
1211
// 6. return the output schema
1212
Status VariantCompactionUtil::get_extended_compaction_schema(
1213
39
        const std::vector<RowsetSharedPtr>& rowsets, TabletSchemaSPtr& target) {
1214
39
    std::unordered_map<int32_t, VariantExtendedInfo> uid_to_variant_extended_info;
1215
39
    const bool has_extendable_variant =
1216
819
            std::ranges::any_of(target->columns(), [](const TabletColumnPtr& column) {
1217
819
                return column->is_variant_type() && should_check_variant_path_stats(*column);
1218
819
            });
1219
39
    if (has_extendable_variant) {
1220
        // collect path stats from all rowsets and segments
1221
8
        for (const auto& rs : rowsets) {
1222
8
            RETURN_IF_ERROR(aggregate_variant_extended_info(rs, &uid_to_variant_extended_info));
1223
8
        }
1224
3
    }
1225
1226
    // build the output schema
1227
39
    TabletSchemaSPtr output_schema = std::make_shared<TabletSchema>();
1228
39
    output_schema->shawdow_copy_without_columns(*target);
1229
39
    std::unordered_map<int32_t, TabletSchema::PathsSetInfo> uid_to_paths_set_info;
1230
825
    for (const TabletColumnPtr& column : target->columns()) {
1231
825
        if (!column->is_extracted_column()) {
1232
825
            output_schema->append_column(*column);
1233
825
        }
1234
825
        if (!column->is_variant_type()) {
1235
820
            continue;
1236
820
        }
1237
5
        VLOG_DEBUG << "column " << column->name() << " unique id " << column->unique_id();
1238
1239
5
        const auto info_it = uid_to_variant_extended_info.find(column->unique_id());
1240
5
        const VariantExtendedInfo empty_extended_info;
1241
5
        const VariantExtendedInfo& extended_info = info_it == uid_to_variant_extended_info.end()
1242
5
                                                           ? empty_extended_info
1243
5
                                                           : info_it->second;
1244
5
        if (!should_check_variant_path_stats(*column)) {
1245
0
            VLOG_DEBUG << "skip extended schema compaction for variant uid=" << column->unique_id()
1246
0
                       << " because the column disables variant path stats";
1247
0
            continue;
1248
0
        }
1249
5
        if (extended_info.has_nested_group) {
1250
0
            LOG(INFO) << "Variant column uid=" << column->unique_id()
1251
0
                      << " has nested group, keep original column in compaction schema";
1252
0
            continue;
1253
0
        }
1254
1255
5
        if (column->variant_enable_doc_mode()) {
1256
0
            const int bucket_num = std::max(1, column->variant_doc_hash_shard_count());
1257
0
            for (int b = 0; b < bucket_num; ++b) {
1258
0
                TabletColumn doc_value_bucket_column = create_doc_value_column(*column, b);
1259
0
                doc_value_bucket_column.set_type(FieldType::OLAP_FIELD_TYPE_VARIANT);
1260
0
                doc_value_bucket_column.set_is_nullable(false);
1261
0
                output_schema->append_column(doc_value_bucket_column);
1262
0
            }
1263
0
            continue;
1264
0
        }
1265
1266
        // 1. append typed columns
1267
5
        RETURN_IF_ERROR(get_compaction_typed_columns(target, extended_info.typed_paths, column,
1268
5
                                                     output_schema,
1269
5
                                                     uid_to_paths_set_info[column->unique_id()]));
1270
        // 2. append nested columns
1271
5
        RETURN_IF_ERROR(get_compaction_nested_columns(
1272
5
                extended_info.nested_paths, extended_info.path_to_data_types, column, output_schema,
1273
5
                uid_to_paths_set_info[column->unique_id()]));
1274
1275
        // 3. get the subpaths
1276
5
        get_subpaths(column->variant_max_subcolumns_count(), extended_info.path_to_none_null_values,
1277
5
                     uid_to_paths_set_info[column->unique_id()]);
1278
1279
        // 4. append subcolumns
1280
5
        if (column->variant_max_subcolumns_count() > 0 || !column->get_sub_columns().empty()) {
1281
4
            get_compaction_subcolumns_from_subpaths(
1282
4
                    uid_to_paths_set_info[column->unique_id()], column, target,
1283
4
                    extended_info.path_to_data_types, extended_info.sparse_paths, output_schema);
1284
4
        }
1285
        // variant_max_subcolumns_count == 0 and no typed paths materialized
1286
        // it means that all subcolumns are materialized, may be from old data
1287
1
        else {
1288
1
            get_compaction_subcolumns_from_data_types(
1289
1
                    uid_to_paths_set_info[column->unique_id()], column, target,
1290
1
                    extended_info.path_to_data_types, output_schema);
1291
1
        }
1292
1293
        // append sparse column(s)
1294
        // If variant uses bucketized sparse columns, append one sparse bucket column per bucket.
1295
        // Otherwise, append the single sparse column.
1296
5
        int bucket_num = std::max(1, column->variant_sparse_hash_shard_count());
1297
5
        if (bucket_num > 1) {
1298
0
            for (int b = 0; b < bucket_num; ++b) {
1299
0
                TabletColumn sparse_bucket_column = create_sparse_shard_column(*column, b);
1300
0
                output_schema->append_column(sparse_bucket_column);
1301
0
            }
1302
5
        } else {
1303
5
            TabletColumn sparse_column = create_sparse_column(*column);
1304
5
            output_schema->append_column(sparse_column);
1305
5
        }
1306
5
    }
1307
1308
39
    target = output_schema;
1309
    // used to merge & filter path to sparse column during reading in compaction
1310
39
    target->set_path_set_info(std::move(uid_to_paths_set_info));
1311
39
    VLOG_DEBUG << "dump schema " << target->dump_full_schema();
1312
39
    return Status::OK();
1313
39
}
1314
1315
// Calculate statistics about variant data paths from the encoded sparse column
1316
void VariantCompactionUtil::calculate_variant_stats(const IColumn& encoded_sparse_column,
1317
                                                    segment_v2::VariantStatisticsPB* stats,
1318
                                                    size_t max_sparse_column_statistics_size,
1319
2
                                                    size_t row_pos, size_t num_rows) {
1320
    // Cast input column to ColumnMap type since sparse column is stored as a map
1321
2
    const auto& map_column = assert_cast<const ColumnMap&>(encoded_sparse_column);
1322
1323
    // Get the keys column which contains the paths as strings
1324
2
    const auto& sparse_data_paths =
1325
2
            assert_cast<const ColumnString*>(map_column.get_keys_ptr().get());
1326
2
    const auto& serialized_sparse_column_offsets =
1327
2
            assert_cast<const ColumnArray::Offsets64&>(map_column.get_offsets());
1328
2
    auto& count_map = *stats->mutable_sparse_column_non_null_size();
1329
    // Iterate through all paths in the sparse column
1330
6
    for (size_t i = row_pos; i != row_pos + num_rows; ++i) {
1331
4
        size_t offset = serialized_sparse_column_offsets[i - 1];
1332
4
        size_t end = serialized_sparse_column_offsets[i];
1333
6
        for (size_t j = offset; j != end; ++j) {
1334
2
            auto path = sparse_data_paths->get_data_at(j);
1335
1336
2
            const auto& sparse_path = path.to_string();
1337
            // If path already exists in statistics, increment its count
1338
2
            if (auto it = count_map.find(sparse_path); it != count_map.end()) {
1339
0
                ++it->second;
1340
0
            }
1341
            // If path doesn't exist and we haven't hit the max statistics size limit,
1342
            // add it with count 1
1343
2
            else if (count_map.size() < max_sparse_column_statistics_size) {
1344
2
                count_map.emplace(sparse_path, 1);
1345
2
            }
1346
2
        }
1347
4
    }
1348
1349
2
    if (stats->sparse_column_non_null_size().size() > max_sparse_column_statistics_size) {
1350
0
        throw doris::Exception(
1351
0
                ErrorCode::INTERNAL_ERROR,
1352
0
                "Sparse column non null size: {} is greater than max statistics size: {}",
1353
0
                stats->sparse_column_non_null_size().size(), max_sparse_column_statistics_size);
1354
0
    }
1355
2
}
1356
1357
/// Calculates number of dimensions in array field.
1358
/// Returns 0 for scalar fields.
1359
class FieldVisitorToNumberOfDimensions : public StaticVisitor<size_t> {
1360
public:
1361
    FieldVisitorToNumberOfDimensions() = default;
1362
    template <PrimitiveType T>
1363
2.24M
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
2.24M
        if constexpr (T == TYPE_ARRAY) {
1365
127k
            const size_t size = x.size();
1366
127k
            size_t dimensions = 0;
1367
873k
            for (size_t i = 0; i < size; ++i) {
1368
745k
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
745k
                dimensions = std::max(dimensions, element_dimensions);
1370
745k
            }
1371
127k
            return 1 + dimensions;
1372
2.11M
        } else {
1373
2.11M
            return 0;
1374
2.11M
        }
1375
2.24M
    }
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE1EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
24.0k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
24.0k
        } else {
1373
24.0k
            return 0;
1374
24.0k
        }
1375
24.0k
    }
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE26EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE42EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE7EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
40.9k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
40.9k
        } else {
1373
40.9k
            return 0;
1374
40.9k
        }
1375
40.9k
    }
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE12EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE11EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE25EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE2EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
69.6k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
69.6k
        } else {
1373
69.6k
            return 0;
1374
69.6k
        }
1375
69.6k
    }
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE3EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
6
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
6
        } else {
1373
6
            return 0;
1374
6
        }
1375
6
    }
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE4EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
7
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
7
        } else {
1373
7
            return 0;
1374
7
        }
1375
7
    }
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE5EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
951
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
951
        } else {
1373
951
            return 0;
1374
951
        }
1375
951
    }
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE6EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
851k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
851k
        } else {
1373
851k
            return 0;
1374
851k
        }
1375
851k
    }
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE38EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE39EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE8EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
1
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
1
        } else {
1373
1
            return 0;
1374
1
        }
1375
1
    }
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE27EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE9EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
164k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
164k
        } else {
1373
164k
            return 0;
1374
164k
        }
1375
164k
    }
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE36EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE37EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE23EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
967k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
967k
        } else {
1373
967k
            return 0;
1374
967k
        }
1375
967k
    }
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE15EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE10EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE41EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE17EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
127k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
127k
        if constexpr (T == TYPE_ARRAY) {
1365
127k
            const size_t size = x.size();
1366
127k
            size_t dimensions = 0;
1367
873k
            for (size_t i = 0; i < size; ++i) {
1368
745k
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
745k
                dimensions = std::max(dimensions, element_dimensions);
1370
745k
            }
1371
127k
            return 1 + dimensions;
1372
        } else {
1373
            return 0;
1374
        }
1375
127k
    }
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE16EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
1
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
1
        } else {
1373
1
            return 0;
1374
1
        }
1375
1
    }
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE18EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE32EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
1
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
1
        } else {
1373
1
            return 0;
1374
1
        }
1375
1
    }
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE28EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE29EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE20EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE30EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE35EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE22EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE19EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE24EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util32FieldVisitorToNumberOfDimensions5applyILNS_13PrimitiveTypeE31EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1363
27
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1364
        if constexpr (T == TYPE_ARRAY) {
1365
            const size_t size = x.size();
1366
            size_t dimensions = 0;
1367
            for (size_t i = 0; i < size; ++i) {
1368
                size_t element_dimensions = apply_visitor(*this, x[i]);
1369
                dimensions = std::max(dimensions, element_dimensions);
1370
            }
1371
            return 1 + dimensions;
1372
27
        } else {
1373
27
            return 0;
1374
27
        }
1375
27
    }
1376
};
1377
1378
// Visitor that allows to get type of scalar field
1379
// but exclude fields contain complex field.This is a faster version
1380
// for FieldVisitorToScalarType which does not support complex field.
1381
class SimpleFieldVisitorToScalarType : public StaticVisitor<size_t> {
1382
public:
1383
    template <PrimitiveType T>
1384
1.42M
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
1.42M
        if constexpr (T == TYPE_ARRAY) {
1386
0
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
12.3k
        } else if constexpr (T == TYPE_NULL) {
1388
12.3k
            have_nulls = true;
1389
12.3k
            return 1;
1390
1.41M
        } else {
1391
1.41M
            type = T;
1392
1.41M
            return 1;
1393
1.41M
        }
1394
1.42M
    }
_ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE1EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1384
12.3k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
        if constexpr (T == TYPE_ARRAY) {
1386
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
12.3k
        } else if constexpr (T == TYPE_NULL) {
1388
12.3k
            have_nulls = true;
1389
12.3k
            return 1;
1390
        } else {
1391
            type = T;
1392
            return 1;
1393
        }
1394
12.3k
    }
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE26EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE42EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE7EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1384
12.3k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
        if constexpr (T == TYPE_ARRAY) {
1386
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
        } else if constexpr (T == TYPE_NULL) {
1388
            have_nulls = true;
1389
            return 1;
1390
12.3k
        } else {
1391
12.3k
            type = T;
1392
12.3k
            return 1;
1393
12.3k
        }
1394
12.3k
    }
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE12EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE11EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE25EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE2EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1384
12.4k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
        if constexpr (T == TYPE_ARRAY) {
1386
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
        } else if constexpr (T == TYPE_NULL) {
1388
            have_nulls = true;
1389
            return 1;
1390
12.4k
        } else {
1391
12.4k
            type = T;
1392
12.4k
            return 1;
1393
12.4k
        }
1394
12.4k
    }
_ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE3EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1384
2
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
        if constexpr (T == TYPE_ARRAY) {
1386
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
        } else if constexpr (T == TYPE_NULL) {
1388
            have_nulls = true;
1389
            return 1;
1390
2
        } else {
1391
2
            type = T;
1392
2
            return 1;
1393
2
        }
1394
2
    }
_ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE4EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1384
7
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
        if constexpr (T == TYPE_ARRAY) {
1386
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
        } else if constexpr (T == TYPE_NULL) {
1388
            have_nulls = true;
1389
            return 1;
1390
7
        } else {
1391
7
            type = T;
1392
7
            return 1;
1393
7
        }
1394
7
    }
_ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE5EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1384
570
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
        if constexpr (T == TYPE_ARRAY) {
1386
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
        } else if constexpr (T == TYPE_NULL) {
1388
            have_nulls = true;
1389
            return 1;
1390
570
        } else {
1391
570
            type = T;
1392
570
            return 1;
1393
570
        }
1394
570
    }
_ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE6EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1384
703k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
        if constexpr (T == TYPE_ARRAY) {
1386
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
        } else if constexpr (T == TYPE_NULL) {
1388
            have_nulls = true;
1389
            return 1;
1390
703k
        } else {
1391
703k
            type = T;
1392
703k
            return 1;
1393
703k
        }
1394
703k
    }
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE38EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE39EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE8EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1384
1
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
        if constexpr (T == TYPE_ARRAY) {
1386
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
        } else if constexpr (T == TYPE_NULL) {
1388
            have_nulls = true;
1389
            return 1;
1390
1
        } else {
1391
1
            type = T;
1392
1
            return 1;
1393
1
        }
1394
1
    }
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE27EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE9EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1384
12.6k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
        if constexpr (T == TYPE_ARRAY) {
1386
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
        } else if constexpr (T == TYPE_NULL) {
1388
            have_nulls = true;
1389
            return 1;
1390
12.6k
        } else {
1391
12.6k
            type = T;
1392
12.6k
            return 1;
1393
12.6k
        }
1394
12.6k
    }
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE36EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE37EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE23EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1384
670k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
        if constexpr (T == TYPE_ARRAY) {
1386
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
        } else if constexpr (T == TYPE_NULL) {
1388
            have_nulls = true;
1389
            return 1;
1390
670k
        } else {
1391
670k
            type = T;
1392
670k
            return 1;
1393
670k
        }
1394
670k
    }
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE15EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE10EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE41EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE17EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE16EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE18EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE32EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE28EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE29EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE20EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE30EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE35EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE22EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE19EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE24EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util30SimpleFieldVisitorToScalarType5applyILNS_13PrimitiveTypeE31EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1384
1
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1385
        if constexpr (T == TYPE_ARRAY) {
1386
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Array type is not supported");
1387
        } else if constexpr (T == TYPE_NULL) {
1388
            have_nulls = true;
1389
            return 1;
1390
1
        } else {
1391
1
            type = T;
1392
1
            return 1;
1393
1
        }
1394
1
    }
1395
1.42M
    void get_scalar_type(PrimitiveType* data_type) const { *data_type = type; }
1396
1.42M
    bool contain_nulls() const { return have_nulls; }
1397
1398
1.42M
    bool need_convert_field() const { return false; }
1399
1400
private:
1401
    PrimitiveType type = PrimitiveType::INVALID_TYPE;
1402
    bool have_nulls = false;
1403
};
1404
1405
/// Visitor that allows to get type of scalar field
1406
/// or least common type of scalars in array.
1407
/// More optimized version of FieldToDataType.
1408
class FieldVisitorToScalarType : public StaticVisitor<size_t> {
1409
public:
1410
    template <PrimitiveType T>
1411
823k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
823k
        if constexpr (T == TYPE_ARRAY) {
1413
127k
            size_t size = x.size();
1414
873k
            for (size_t i = 0; i < size; ++i) {
1415
745k
                apply_visitor(*this, x[i]);
1416
745k
            }
1417
127k
            return 0;
1418
127k
        } else if constexpr (T == TYPE_NULL) {
1419
11.6k
            have_nulls = true;
1420
11.6k
            return 0;
1421
683k
        } else {
1422
683k
            field_types.insert(T);
1423
683k
            type_indexes.insert(T);
1424
683k
            return 0;
1425
683k
        }
1426
823k
    }
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE1EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
11.6k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
        if constexpr (T == TYPE_ARRAY) {
1413
            size_t size = x.size();
1414
            for (size_t i = 0; i < size; ++i) {
1415
                apply_visitor(*this, x[i]);
1416
            }
1417
            return 0;
1418
11.6k
        } else if constexpr (T == TYPE_NULL) {
1419
11.6k
            have_nulls = true;
1420
11.6k
            return 0;
1421
        } else {
1422
            field_types.insert(T);
1423
            type_indexes.insert(T);
1424
            return 0;
1425
        }
1426
11.6k
    }
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE26EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE42EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE7EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
28.6k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
        if constexpr (T == TYPE_ARRAY) {
1413
            size_t size = x.size();
1414
            for (size_t i = 0; i < size; ++i) {
1415
                apply_visitor(*this, x[i]);
1416
            }
1417
            return 0;
1418
        } else if constexpr (T == TYPE_NULL) {
1419
            have_nulls = true;
1420
            return 0;
1421
28.6k
        } else {
1422
28.6k
            field_types.insert(T);
1423
28.6k
            type_indexes.insert(T);
1424
28.6k
            return 0;
1425
28.6k
        }
1426
28.6k
    }
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE12EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE11EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE25EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE2EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
57.2k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
        if constexpr (T == TYPE_ARRAY) {
1413
            size_t size = x.size();
1414
            for (size_t i = 0; i < size; ++i) {
1415
                apply_visitor(*this, x[i]);
1416
            }
1417
            return 0;
1418
        } else if constexpr (T == TYPE_NULL) {
1419
            have_nulls = true;
1420
            return 0;
1421
57.2k
        } else {
1422
57.2k
            field_types.insert(T);
1423
57.2k
            type_indexes.insert(T);
1424
57.2k
            return 0;
1425
57.2k
        }
1426
57.2k
    }
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE3EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
4
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
        if constexpr (T == TYPE_ARRAY) {
1413
            size_t size = x.size();
1414
            for (size_t i = 0; i < size; ++i) {
1415
                apply_visitor(*this, x[i]);
1416
            }
1417
            return 0;
1418
        } else if constexpr (T == TYPE_NULL) {
1419
            have_nulls = true;
1420
            return 0;
1421
4
        } else {
1422
4
            field_types.insert(T);
1423
4
            type_indexes.insert(T);
1424
4
            return 0;
1425
4
        }
1426
4
    }
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE4EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE5EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
381
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
        if constexpr (T == TYPE_ARRAY) {
1413
            size_t size = x.size();
1414
            for (size_t i = 0; i < size; ++i) {
1415
                apply_visitor(*this, x[i]);
1416
            }
1417
            return 0;
1418
        } else if constexpr (T == TYPE_NULL) {
1419
            have_nulls = true;
1420
            return 0;
1421
381
        } else {
1422
381
            field_types.insert(T);
1423
381
            type_indexes.insert(T);
1424
381
            return 0;
1425
381
        }
1426
381
    }
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE6EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
147k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
        if constexpr (T == TYPE_ARRAY) {
1413
            size_t size = x.size();
1414
            for (size_t i = 0; i < size; ++i) {
1415
                apply_visitor(*this, x[i]);
1416
            }
1417
            return 0;
1418
        } else if constexpr (T == TYPE_NULL) {
1419
            have_nulls = true;
1420
            return 0;
1421
147k
        } else {
1422
147k
            field_types.insert(T);
1423
147k
            type_indexes.insert(T);
1424
147k
            return 0;
1425
147k
        }
1426
147k
    }
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE38EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE39EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE8EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE27EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE9EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
151k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
        if constexpr (T == TYPE_ARRAY) {
1413
            size_t size = x.size();
1414
            for (size_t i = 0; i < size; ++i) {
1415
                apply_visitor(*this, x[i]);
1416
            }
1417
            return 0;
1418
        } else if constexpr (T == TYPE_NULL) {
1419
            have_nulls = true;
1420
            return 0;
1421
151k
        } else {
1422
151k
            field_types.insert(T);
1423
151k
            type_indexes.insert(T);
1424
151k
            return 0;
1425
151k
        }
1426
151k
    }
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE36EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE37EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE23EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
297k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
        if constexpr (T == TYPE_ARRAY) {
1413
            size_t size = x.size();
1414
            for (size_t i = 0; i < size; ++i) {
1415
                apply_visitor(*this, x[i]);
1416
            }
1417
            return 0;
1418
        } else if constexpr (T == TYPE_NULL) {
1419
            have_nulls = true;
1420
            return 0;
1421
297k
        } else {
1422
297k
            field_types.insert(T);
1423
297k
            type_indexes.insert(T);
1424
297k
            return 0;
1425
297k
        }
1426
297k
    }
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE15EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE10EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE41EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE17EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
127k
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
127k
        if constexpr (T == TYPE_ARRAY) {
1413
127k
            size_t size = x.size();
1414
873k
            for (size_t i = 0; i < size; ++i) {
1415
745k
                apply_visitor(*this, x[i]);
1416
745k
            }
1417
127k
            return 0;
1418
        } else if constexpr (T == TYPE_NULL) {
1419
            have_nulls = true;
1420
            return 0;
1421
        } else {
1422
            field_types.insert(T);
1423
            type_indexes.insert(T);
1424
            return 0;
1425
        }
1426
127k
    }
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE16EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
1
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
        if constexpr (T == TYPE_ARRAY) {
1413
            size_t size = x.size();
1414
            for (size_t i = 0; i < size; ++i) {
1415
                apply_visitor(*this, x[i]);
1416
            }
1417
            return 0;
1418
        } else if constexpr (T == TYPE_NULL) {
1419
            have_nulls = true;
1420
            return 0;
1421
1
        } else {
1422
1
            field_types.insert(T);
1423
1
            type_indexes.insert(T);
1424
1
            return 0;
1425
1
        }
1426
1
    }
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE18EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE32EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
1
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
        if constexpr (T == TYPE_ARRAY) {
1413
            size_t size = x.size();
1414
            for (size_t i = 0; i < size; ++i) {
1415
                apply_visitor(*this, x[i]);
1416
            }
1417
            return 0;
1418
        } else if constexpr (T == TYPE_NULL) {
1419
            have_nulls = true;
1420
            return 0;
1421
1
        } else {
1422
1
            field_types.insert(T);
1423
1
            type_indexes.insert(T);
1424
1
            return 0;
1425
1
        }
1426
1
    }
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE28EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE29EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE20EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE30EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE35EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE22EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE19EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Unexecuted instantiation: _ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE24EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
_ZN5doris12variant_util24FieldVisitorToScalarType5applyILNS_13PrimitiveTypeE31EEEmRKNS_19PrimitiveTypeTraitsIXT_EE7CppTypeE
Line
Count
Source
1411
26
    size_t apply(const typename PrimitiveTypeTraits<T>::CppType& x) {
1412
        if constexpr (T == TYPE_ARRAY) {
1413
            size_t size = x.size();
1414
            for (size_t i = 0; i < size; ++i) {
1415
                apply_visitor(*this, x[i]);
1416
            }
1417
            return 0;
1418
        } else if constexpr (T == TYPE_NULL) {
1419
            have_nulls = true;
1420
            return 0;
1421
26
        } else {
1422
26
            field_types.insert(T);
1423
26
            type_indexes.insert(T);
1424
26
            return 0;
1425
26
        }
1426
26
    }
1427
77.7k
    void get_scalar_type(PrimitiveType* type) const {
1428
77.7k
        if (type_indexes.size() == 1) {
1429
            // Most cases will have only one type
1430
64.4k
            *type = *type_indexes.begin();
1431
64.4k
            return;
1432
64.4k
        }
1433
13.2k
        DataTypePtr data_type;
1434
13.2k
        get_least_supertype_jsonb(type_indexes, &data_type);
1435
13.2k
        *type = data_type->get_primitive_type();
1436
13.2k
    }
1437
77.7k
    bool contain_nulls() const { return have_nulls; }
1438
77.7k
    bool need_convert_field() const { return field_types.size() > 1; }
1439
1440
private:
1441
    phmap::flat_hash_set<PrimitiveType> type_indexes;
1442
    phmap::flat_hash_set<PrimitiveType> field_types;
1443
    bool have_nulls = false;
1444
};
1445
1446
template <typename Visitor>
1447
1.50M
void get_field_info_impl(const Field& field, FieldInfo* info) {
1448
1.50M
    Visitor to_scalar_type_visitor;
1449
1.50M
    apply_visitor(to_scalar_type_visitor, field);
1450
1.50M
    PrimitiveType type_id;
1451
1.50M
    to_scalar_type_visitor.get_scalar_type(&type_id);
1452
    // array item's dimension may missmatch, eg. [1, 2, [1, 2, 3]]
1453
1.50M
    *info = {type_id, to_scalar_type_visitor.contain_nulls(),
1454
1.50M
             to_scalar_type_visitor.need_convert_field(),
1455
1.50M
             apply_visitor(FieldVisitorToNumberOfDimensions(), field)};
1456
1.50M
}
_ZN5doris12variant_util19get_field_info_implINS0_24FieldVisitorToScalarTypeEEEvRKNS_5FieldEPNS_9FieldInfoE
Line
Count
Source
1447
77.7k
void get_field_info_impl(const Field& field, FieldInfo* info) {
1448
77.7k
    Visitor to_scalar_type_visitor;
1449
77.7k
    apply_visitor(to_scalar_type_visitor, field);
1450
77.7k
    PrimitiveType type_id;
1451
77.7k
    to_scalar_type_visitor.get_scalar_type(&type_id);
1452
    // array item's dimension may missmatch, eg. [1, 2, [1, 2, 3]]
1453
77.7k
    *info = {type_id, to_scalar_type_visitor.contain_nulls(),
1454
77.7k
             to_scalar_type_visitor.need_convert_field(),
1455
77.7k
             apply_visitor(FieldVisitorToNumberOfDimensions(), field)};
1456
77.7k
}
_ZN5doris12variant_util19get_field_info_implINS0_30SimpleFieldVisitorToScalarTypeEEEvRKNS_5FieldEPNS_9FieldInfoE
Line
Count
Source
1447
1.42M
void get_field_info_impl(const Field& field, FieldInfo* info) {
1448
1.42M
    Visitor to_scalar_type_visitor;
1449
1.42M
    apply_visitor(to_scalar_type_visitor, field);
1450
1.42M
    PrimitiveType type_id;
1451
1.42M
    to_scalar_type_visitor.get_scalar_type(&type_id);
1452
    // array item's dimension may missmatch, eg. [1, 2, [1, 2, 3]]
1453
1.42M
    *info = {type_id, to_scalar_type_visitor.contain_nulls(),
1454
1.42M
             to_scalar_type_visitor.need_convert_field(),
1455
1.42M
             apply_visitor(FieldVisitorToNumberOfDimensions(), field)};
1456
1.42M
}
1457
1458
1.50M
void get_field_info(const Field& field, FieldInfo* info) {
1459
1.50M
    if (field.is_complex_field()) {
1460
77.7k
        get_field_info_impl<FieldVisitorToScalarType>(field, info);
1461
1.42M
    } else {
1462
1.42M
        get_field_info_impl<SimpleFieldVisitorToScalarType>(field, info);
1463
1.42M
    }
1464
1.50M
}
1465
1466
bool generate_sub_column_info(const TabletSchema& schema, int32_t col_unique_id,
1467
                              const std::string& path,
1468
2.03k
                              TabletSchema::SubColumnInfo* sub_column_info) {
1469
2.03k
    const auto& parent_column = schema.column_by_uid(col_unique_id);
1470
2.03k
    std::function<void(const TabletColumn&, TabletColumn*)> generate_result_column =
1471
2.03k
            [&](const TabletColumn& from_column, TabletColumn* to_column) {
1472
31
                to_column->set_name(parent_column.name_lower_case() + "." + path);
1473
31
                to_column->set_type(from_column.type());
1474
31
                to_column->set_parent_unique_id(parent_column.unique_id());
1475
31
                bool is_typed = !parent_column.variant_enable_typed_paths_to_sparse();
1476
31
                to_column->set_path_info(
1477
31
                        PathInData(parent_column.name_lower_case() + "." + path, is_typed));
1478
31
                to_column->set_aggregation_method(parent_column.aggregation());
1479
31
                to_column->set_is_nullable(true);
1480
31
                to_column->set_parent_unique_id(parent_column.unique_id());
1481
31
                if (from_column.is_decimal()) {
1482
0
                    to_column->set_precision(from_column.precision());
1483
0
                }
1484
31
                to_column->set_frac(from_column.frac());
1485
1486
31
                if (from_column.is_array_type()) {
1487
2
                    TabletColumn nested_column;
1488
2
                    generate_result_column(*from_column.get_sub_columns()[0], &nested_column);
1489
2
                    to_column->add_sub_column(nested_column);
1490
2
                }
1491
31
            };
1492
1493
2.03k
    auto generate_index = [&](const std::string& pattern) {
1494
        // 1. find subcolumn's index
1495
29
        if (const auto& indexes = schema.inverted_index_by_field_pattern(col_unique_id, pattern);
1496
29
            !indexes.empty()) {
1497
2
            for (const auto& index : indexes) {
1498
2
                auto index_ptr = std::make_shared<TabletIndex>(*index);
1499
2
                index_ptr->set_escaped_escaped_index_suffix_path(
1500
2
                        sub_column_info->column.path_info_ptr()->get_path());
1501
2
                sub_column_info->indexes.emplace_back(std::move(index_ptr));
1502
2
            }
1503
2
        }
1504
        // 2. find parent column's index
1505
27
        else if (const auto parent_index = schema.inverted_indexs(col_unique_id);
1506
27
                 !parent_index.empty()) {
1507
0
            inherit_index(parent_index, sub_column_info->indexes, sub_column_info->column);
1508
27
        } else {
1509
27
            sub_column_info->indexes.clear();
1510
27
        }
1511
29
    };
1512
1513
2.03k
    const auto& sub_columns = parent_column.get_sub_columns();
1514
2.03k
    for (const auto& sub_column : sub_columns) {
1515
113
        const char* pattern = sub_column->name().c_str();
1516
113
        switch (sub_column->pattern_type()) {
1517
0
        case PatternTypePB::MATCH_NAME: {
1518
0
            if (strcmp(pattern, path.c_str()) == 0) {
1519
0
                generate_result_column(*sub_column, &sub_column_info->column);
1520
0
                generate_index(sub_column->name());
1521
0
                return true;
1522
0
            }
1523
0
            break;
1524
0
        }
1525
113
        case PatternTypePB::MATCH_NAME_GLOB: {
1526
113
            if (glob_match_re2(pattern, path)) {
1527
29
                generate_result_column(*sub_column, &sub_column_info->column);
1528
29
                generate_index(sub_column->name());
1529
29
                return true;
1530
29
            }
1531
84
            break;
1532
113
        }
1533
84
        default:
1534
0
            break;
1535
113
        }
1536
113
    }
1537
2.01k
    return false;
1538
2.03k
}
1539
1540
TabletSchemaSPtr VariantCompactionUtil::calculate_variant_extended_schema(
1541
0
        const std::vector<RowsetSharedPtr>& rowsets, const TabletSchemaSPtr& base_schema) {
1542
0
    if (rowsets.empty()) {
1543
0
        return nullptr;
1544
0
    }
1545
1546
0
    std::vector<TabletSchemaSPtr> schemas;
1547
0
    for (const auto& rs : rowsets) {
1548
0
        if (rs->num_segments() == 0) {
1549
0
            continue;
1550
0
        }
1551
0
        const auto& tablet_schema = rs->tablet_schema();
1552
0
        SegmentCacheHandle segment_cache;
1553
0
        auto st = SegmentLoader::instance()->load_segments(std::static_pointer_cast<BetaRowset>(rs),
1554
0
                                                           &segment_cache);
1555
0
        if (!st.ok()) {
1556
0
            return base_schema;
1557
0
        }
1558
0
        for (const auto& segment : segment_cache.get_segments()) {
1559
0
            TabletSchemaSPtr schema = tablet_schema->copy_without_variant_extracted_columns();
1560
0
            for (const auto& column : tablet_schema->columns()) {
1561
0
                if (!column->is_variant_type()) {
1562
0
                    continue;
1563
0
                }
1564
0
                std::shared_ptr<ColumnReader> column_reader;
1565
0
                OlapReaderStatistics stats;
1566
0
                st = segment->get_column_reader(column->unique_id(), &column_reader, &stats);
1567
0
                if (!st.ok()) {
1568
0
                    LOG(WARNING) << "Failed to get column reader for column: " << column->name()
1569
0
                                 << " error: " << st.to_string();
1570
0
                    continue;
1571
0
                }
1572
0
                if (!column_reader) {
1573
0
                    continue;
1574
0
                }
1575
1576
0
                CHECK(column_reader->get_meta_type() == FieldType::OLAP_FIELD_TYPE_VARIANT);
1577
0
                auto* variant_column_reader =
1578
0
                        assert_cast<segment_v2::VariantColumnReader*>(column_reader.get());
1579
                // load external meta before getting subcolumn meta info
1580
0
                st = variant_column_reader->load_external_meta_once();
1581
0
                if (!st.ok()) {
1582
0
                    LOG(WARNING) << "Failed to load external meta for column: " << column->name()
1583
0
                                 << " error: " << st.to_string();
1584
0
                    continue;
1585
0
                }
1586
0
                const auto* subcolumn_meta_info = variant_column_reader->get_subcolumns_meta_info();
1587
0
                for (const auto& entry : *subcolumn_meta_info) {
1588
0
                    if (entry->path.empty()) {
1589
0
                        continue;
1590
0
                    }
1591
0
                    const std::string& column_name =
1592
0
                            column->name_lower_case() + "." + entry->path.get_path();
1593
0
                    const DataTypePtr& data_type = entry->data.file_column_type;
1594
0
                    PathInDataBuilder full_path_builder;
1595
0
                    auto full_path = full_path_builder.append(column->name_lower_case(), false)
1596
0
                                             .append(entry->path.get_parts(), false)
1597
0
                                             .build();
1598
0
                    TabletColumn subcolumn =
1599
0
                            get_column_by_type(data_type, column_name,
1600
0
                                               ExtraInfo {.unique_id = -1,
1601
0
                                                          .parent_unique_id = column->unique_id(),
1602
0
                                                          .path_info = full_path});
1603
0
                    schema->append_column(subcolumn);
1604
0
                }
1605
0
            }
1606
0
            schemas.emplace_back(schema);
1607
0
        }
1608
0
    }
1609
0
    TabletSchemaSPtr least_common_schema;
1610
0
    auto st = get_least_common_schema(schemas, base_schema, least_common_schema, false);
1611
0
    if (!st.ok()) {
1612
0
        return base_schema;
1613
0
    }
1614
0
    return least_common_schema;
1615
0
}
1616
1617
bool inherit_index(const std::vector<const TabletIndex*>& parent_indexes,
1618
                   TabletIndexes& subcolumns_indexes, FieldType column_type,
1619
1.03k
                   const std::string& suffix_path, bool is_array_nested_type) {
1620
1.03k
    if (parent_indexes.empty()) {
1621
1.02k
        return false;
1622
1.02k
    }
1623
14
    subcolumns_indexes.clear();
1624
    // bkd index or array index only need to inherit one index
1625
14
    if (field_is_numeric_type(column_type) ||
1626
14
        (is_array_nested_type &&
1627
8
         (field_is_numeric_type(column_type) || field_is_slice_type(column_type)))) {
1628
7
        auto index_ptr = std::make_shared<TabletIndex>(*parent_indexes[0]);
1629
7
        index_ptr->set_escaped_escaped_index_suffix_path(suffix_path);
1630
        // no need parse for bkd index or array index
1631
7
        index_ptr->remove_parser_and_analyzer();
1632
7
        subcolumns_indexes.emplace_back(std::move(index_ptr));
1633
7
        return true;
1634
7
    }
1635
    // string type need to inherit all indexes
1636
7
    else if (field_is_slice_type(column_type) && !is_array_nested_type) {
1637
6
        for (const auto& index : parent_indexes) {
1638
6
            auto index_ptr = std::make_shared<TabletIndex>(*index);
1639
6
            index_ptr->set_escaped_escaped_index_suffix_path(suffix_path);
1640
6
            subcolumns_indexes.emplace_back(std::move(index_ptr));
1641
6
        }
1642
5
        return true;
1643
5
    }
1644
2
    return false;
1645
14
}
1646
1647
bool inherit_index(const std::vector<const TabletIndex*>& parent_indexes,
1648
1.03k
                   TabletIndexes& subcolumns_indexes, const TabletColumn& column) {
1649
1.03k
    if (!column.is_extracted_column()) {
1650
3
        return false;
1651
3
    }
1652
1.03k
    if (column.is_array_type()) {
1653
13
        if (column.get_sub_columns().empty()) {
1654
0
            return false;
1655
0
        }
1656
13
        const TabletColumn* nested = column.get_sub_columns()[0].get();
1657
13
        while (nested != nullptr && nested->is_array_type()) {
1658
0
            if (nested->get_sub_columns().empty()) {
1659
0
                return false;
1660
0
            }
1661
0
            nested = nested->get_sub_columns()[0].get();
1662
0
        }
1663
13
        if (nested == nullptr) {
1664
0
            return false;
1665
0
        }
1666
13
        return inherit_index(parent_indexes, subcolumns_indexes, nested->type(),
1667
13
                             column.path_info_ptr()->get_path(), true);
1668
13
    }
1669
1.02k
    return inherit_index(parent_indexes, subcolumns_indexes, column.type(),
1670
1.02k
                         column.path_info_ptr()->get_path());
1671
1.03k
}
1672
1673
bool inherit_index(const std::vector<const TabletIndex*>& parent_indexes,
1674
0
                   TabletIndexes& subcolumns_indexes, const ColumnMetaPB& column_pb) {
1675
0
    if (!column_pb.has_column_path_info()) {
1676
0
        return false;
1677
0
    }
1678
0
    if (column_pb.type() == (int)FieldType::OLAP_FIELD_TYPE_ARRAY) {
1679
0
        if (column_pb.children_columns_size() == 0) {
1680
0
            return false;
1681
0
        }
1682
0
        const ColumnMetaPB* nested = &column_pb.children_columns(0);
1683
0
        while (nested != nullptr && nested->type() == (int)FieldType::OLAP_FIELD_TYPE_ARRAY) {
1684
0
            if (nested->children_columns_size() == 0) {
1685
0
                return false;
1686
0
            }
1687
0
            nested = &nested->children_columns(0);
1688
0
        }
1689
0
        if (nested == nullptr) {
1690
0
            return false;
1691
0
        }
1692
0
        return inherit_index(parent_indexes, subcolumns_indexes, (FieldType)nested->type(),
1693
0
                             column_pb.column_path_info().path(), true);
1694
0
    }
1695
0
    return inherit_index(parent_indexes, subcolumns_indexes, (FieldType)column_pb.type(),
1696
0
                         column_pb.column_path_info().path());
1697
0
}
1698
1699
// ============ Implementation from parse2column.cpp ============
1700
1701
/** Pool for objects that cannot be used from different threads simultaneously.
1702
  * Allows to create an object for each thread.
1703
  * Pool has unbounded size and objects are not destroyed before destruction of pool.
1704
  *
1705
  * Use it in cases when thread local storage is not appropriate
1706
  *  (when maximum number of simultaneously used objects is less
1707
  *   than number of running/sleeping threads, that has ever used object,
1708
  *   and creation/destruction of objects is expensive).
1709
  */
1710
template <typename T>
1711
class SimpleObjectPool {
1712
protected:
1713
    /// Hold all available objects in stack.
1714
    std::mutex mutex;
1715
    std::stack<std::unique_ptr<T>> stack;
1716
    /// Specialized deleter for std::unique_ptr.
1717
    /// Returns underlying pointer back to stack thus reclaiming its ownership.
1718
    struct Deleter {
1719
        SimpleObjectPool<T>* parent;
1720
12.6k
        Deleter(SimpleObjectPool<T>* parent_ = nullptr) : parent {parent_} {} /// NOLINT
1721
12.6k
        void operator()(T* owning_ptr) const {
1722
12.6k
            std::lock_guard lock {parent->mutex};
1723
12.6k
            parent->stack.emplace(owning_ptr);
1724
12.6k
        }
1725
    };
1726
1727
public:
1728
    using Pointer = std::unique_ptr<T, Deleter>;
1729
    /// Extracts and returns a pointer from the stack if it's not empty,
1730
    ///  creates a new one by calling provided f() otherwise.
1731
    template <typename Factory>
1732
12.6k
    Pointer get(Factory&& f) {
1733
12.6k
        std::unique_lock lock(mutex);
1734
12.6k
        if (stack.empty()) {
1735
1
            return {f(), this};
1736
1
        }
1737
12.6k
        auto object = stack.top().release();
1738
12.6k
        stack.pop();
1739
12.6k
        return std::unique_ptr<T, Deleter>(object, Deleter(this));
1740
12.6k
    }
variant_util.cpp:_ZN5doris12variant_util16SimpleObjectPoolINS_14JSONDataParserINS_14SimdJSONParserEEEE3getIZNS0_21parse_json_to_variantERNS_7IColumnERKNS_9StringRefEPS4_RKNS_11ParseConfigEE3$_0EESt10unique_ptrIS4_NS5_7DeleterEEOT_
Line
Count
Source
1732
12.4k
    Pointer get(Factory&& f) {
1733
12.4k
        std::unique_lock lock(mutex);
1734
12.4k
        if (stack.empty()) {
1735
1
            return {f(), this};
1736
1
        }
1737
12.4k
        auto object = stack.top().release();
1738
12.4k
        stack.pop();
1739
12.4k
        return std::unique_ptr<T, Deleter>(object, Deleter(this));
1740
12.4k
    }
variant_util.cpp:_ZN5doris12variant_util16SimpleObjectPoolINS_14JSONDataParserINS_14SimdJSONParserEEEE3getIZNS0_21parse_json_to_variantERNS_7IColumnERKNS_9ColumnStrIjEERKNS_11ParseConfigEE3$_0EESt10unique_ptrIS4_NS5_7DeleterEEOT_
Line
Count
Source
1732
209
    Pointer get(Factory&& f) {
1733
209
        std::unique_lock lock(mutex);
1734
209
        if (stack.empty()) {
1735
0
            return {f(), this};
1736
0
        }
1737
209
        auto object = stack.top().release();
1738
209
        stack.pop();
1739
209
        return std::unique_ptr<T, Deleter>(object, Deleter(this));
1740
209
    }
1741
    /// Like get(), but creates object using default constructor.
1742
    Pointer getDefault() {
1743
        return get([] { return new T; });
1744
    }
1745
};
1746
1747
SimpleObjectPool<JsonParser> parsers_pool;
1748
1749
using Node = typename ColumnVariant::Subcolumns::Node;
1750
1751
11.5k
static inline void append_binary_bytes(ColumnString::Chars& chars, const void* data, size_t size) {
1752
11.5k
    const auto old_size = chars.size();
1753
11.5k
    chars.resize(old_size + size);
1754
11.5k
    memcpy(chars.data() + old_size, reinterpret_cast<const char*>(data), size);
1755
11.5k
}
1756
1757
4.67k
static inline void append_binary_type(ColumnString::Chars& chars, FieldType type) {
1758
4.67k
    const uint8_t t = static_cast<uint8_t>(type);
1759
4.67k
    append_binary_bytes(chars, &t, sizeof(uint8_t));
1760
4.67k
}
1761
1762
2.22k
static inline void append_binary_sizet(ColumnString::Chars& chars, size_t v) {
1763
2.22k
    append_binary_bytes(chars, &v, sizeof(size_t));
1764
2.22k
}
1765
1766
4.67k
static void append_field_to_binary_chars(const Field& field, ColumnString::Chars& chars) {
1767
4.67k
    switch (field.get_type()) {
1768
0
    case PrimitiveType::TYPE_NULL: {
1769
0
        append_binary_type(chars, FieldType::OLAP_FIELD_TYPE_NONE);
1770
0
        return;
1771
0
    }
1772
2
    case PrimitiveType::TYPE_BOOLEAN: {
1773
2
        append_binary_type(chars,
1774
2
                           TabletColumn::get_field_type_by_type(PrimitiveType::TYPE_BOOLEAN));
1775
2
        const auto v = static_cast<UInt8>(field.get<PrimitiveType::TYPE_BOOLEAN>());
1776
2
        append_binary_bytes(chars, &v, sizeof(UInt8));
1777
2
        return;
1778
0
    }
1779
2.44k
    case PrimitiveType::TYPE_BIGINT: {
1780
2.44k
        append_binary_type(chars, TabletColumn::get_field_type_by_type(PrimitiveType::TYPE_BIGINT));
1781
2.44k
        const auto v = field.get<PrimitiveType::TYPE_BIGINT>();
1782
2.44k
        append_binary_bytes(chars, &v, sizeof(Int64));
1783
2.44k
        return;
1784
0
    }
1785
1
    case PrimitiveType::TYPE_LARGEINT: {
1786
1
        append_binary_type(chars,
1787
1
                           TabletColumn::get_field_type_by_type(PrimitiveType::TYPE_LARGEINT));
1788
1
        const auto v = field.get<PrimitiveType::TYPE_LARGEINT>();
1789
1
        append_binary_bytes(chars, &v, sizeof(int128_t));
1790
1
        return;
1791
0
    }
1792
1
    case PrimitiveType::TYPE_DOUBLE: {
1793
1
        append_binary_type(chars, TabletColumn::get_field_type_by_type(PrimitiveType::TYPE_DOUBLE));
1794
1
        const auto v = field.get<PrimitiveType::TYPE_DOUBLE>();
1795
1
        append_binary_bytes(chars, &v, sizeof(Float64));
1796
1
        return;
1797
0
    }
1798
2.22k
    case PrimitiveType::TYPE_STRING: {
1799
2.22k
        append_binary_type(chars, FieldType::OLAP_FIELD_TYPE_STRING);
1800
2.22k
        const auto& v = field.get<PrimitiveType::TYPE_STRING>();
1801
2.22k
        append_binary_sizet(chars, v.size());
1802
2.22k
        append_binary_bytes(chars, v.data(), v.size());
1803
2.22k
        return;
1804
0
    }
1805
0
    case PrimitiveType::TYPE_JSONB: {
1806
0
        append_binary_type(chars, FieldType::OLAP_FIELD_TYPE_JSONB);
1807
0
        const auto& v = field.get<PrimitiveType::TYPE_JSONB>();
1808
0
        append_binary_sizet(chars, v.get_size());
1809
0
        append_binary_bytes(chars, v.get_value(), v.get_size());
1810
0
        return;
1811
0
    }
1812
7
    case PrimitiveType::TYPE_ARRAY: {
1813
7
        append_binary_type(chars, FieldType::OLAP_FIELD_TYPE_ARRAY);
1814
7
        const auto& a = field.get<PrimitiveType::TYPE_ARRAY>();
1815
7
        append_binary_sizet(chars, a.size());
1816
12
        for (const auto& elem : a) {
1817
12
            append_field_to_binary_chars(elem, chars);
1818
12
        }
1819
7
        return;
1820
0
    }
1821
0
    default:
1822
0
        throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Unsupported field type {}",
1823
0
                               field.get_type());
1824
4.67k
    }
1825
4.67k
}
1826
/// Visitor that keeps @num_dimensions_to_keep dimensions in arrays
1827
/// and replaces all scalars or nested arrays to @replacement at that level.
1828
class FieldVisitorReplaceScalars : public StaticVisitor<Field> {
1829
public:
1830
    FieldVisitorReplaceScalars(const Field& replacement_, size_t num_dimensions_to_keep_)
1831
0
            : replacement(replacement_), num_dimensions_to_keep(num_dimensions_to_keep_) {}
1832
    template <PrimitiveType T>
1833
    Field operator()(const typename PrimitiveTypeTraits<T>::CppType& x) const {
1834
        if constexpr (T == TYPE_ARRAY) {
1835
            if (num_dimensions_to_keep == 0) {
1836
                return replacement;
1837
            }
1838
            const size_t size = x.size();
1839
            Array res(size);
1840
            for (size_t i = 0; i < size; ++i) {
1841
                res[i] = apply_visitor(
1842
                        FieldVisitorReplaceScalars(replacement, num_dimensions_to_keep - 1), x[i]);
1843
            }
1844
            return Field::create_field<TYPE_ARRAY>(res);
1845
        } else {
1846
            return replacement;
1847
        }
1848
    }
1849
1850
private:
1851
    const Field& replacement;
1852
    size_t num_dimensions_to_keep;
1853
};
1854
1855
template <typename ParserImpl>
1856
void parse_json_to_variant_impl(IColumn& column, const char* src, size_t length,
1857
80.5k
                                JSONDataParser<ParserImpl>* parser, const ParseConfig& config) {
1858
80.5k
    auto& column_variant = assert_cast<ColumnVariant&>(column);
1859
80.5k
    std::optional<ParseResult> result;
1860
    /// Treat empty string as an empty object
1861
    /// for better CAST from String to Object.
1862
80.5k
    if (length > 0) {
1863
80.5k
        result = parser->parse(src, length, config);
1864
80.5k
    } else {
1865
1
        result = ParseResult {};
1866
1
    }
1867
80.5k
    if (!result) {
1868
11
        VLOG_DEBUG << "failed to parse " << std::string_view(src, length) << ", length= " << length;
1869
11
        if (config::variant_throw_exeception_on_invalid_json) {
1870
0
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Failed to parse object {}",
1871
0
                                   std::string_view(src, length));
1872
0
        }
1873
        // Treat as string
1874
11
        PathInData root_path;
1875
11
        Field field = Field::create_field<TYPE_STRING>(String(src, length));
1876
11
        result = ParseResult {{root_path}, {field}};
1877
11
    }
1878
80.5k
    auto& [paths, values] = *result;
1879
80.5k
    assert(paths.size() == values.size());
1880
80.0k
    size_t old_num_rows = column_variant.rows();
1881
80.0k
    if (config.deprecated_enable_flatten_nested) {
1882
        // here we should check the paths in variant and paths in result,
1883
        // if two paths which same prefix have different structure, we should throw an exception
1884
3.00k
        std::vector<PathInData> check_paths;
1885
11.9k
        for (const auto& entry : column_variant.get_subcolumns()) {
1886
11.9k
            check_paths.push_back(entry->path);
1887
11.9k
        }
1888
3.00k
        check_paths.insert(check_paths.end(), paths.begin(), paths.end());
1889
3.00k
        THROW_IF_ERROR(check_variant_has_no_ambiguous_paths(check_paths));
1890
3.00k
    }
1891
80.0k
    auto [doc_value_data_paths, doc_value_data_values] =
1892
80.0k
            column_variant.get_doc_value_data_paths_and_values();
1893
80.0k
    auto& doc_value_data_offsets = column_variant.serialized_doc_value_column_offsets();
1894
1895
1.35M
    auto flush_defaults = [](ColumnVariant::Subcolumn* subcolumn) {
1896
1.35M
        const auto num_defaults = subcolumn->cur_num_of_defaults();
1897
1.35M
        if (num_defaults > 0) {
1898
104k
            subcolumn->insert_many_defaults(num_defaults);
1899
104k
            subcolumn->reset_current_num_of_defaults();
1900
104k
        }
1901
1.35M
    };
1902
1903
80.0k
    auto get_or_create_subcolumn = [&](const PathInData& path, size_t index_hint,
1904
1.35M
                                       const FieldInfo& field_info) -> ColumnVariant::Subcolumn* {
1905
1.35M
        if (column_variant.get_subcolumn(path, index_hint) == nullptr) {
1906
1.59k
            if (path.has_nested_part()) {
1907
8
                column_variant.add_nested_subcolumn(path, field_info, old_num_rows);
1908
1.58k
            } else {
1909
1.58k
                column_variant.add_sub_column(path, old_num_rows);
1910
1.58k
            }
1911
1.59k
        }
1912
1.35M
        auto* subcolumn = column_variant.get_subcolumn(path, index_hint);
1913
1.35M
        if (!subcolumn) {
1914
0
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT, "Failed to find sub column {}",
1915
0
                                   path.get_path());
1916
0
        }
1917
1.35M
        return subcolumn;
1918
1.35M
    };
1919
1920
80.0k
    auto insert_into_subcolumn = [&](size_t i,
1921
1.35M
                                     bool check_size_mismatch) -> ColumnVariant::Subcolumn* {
1922
1.35M
        FieldInfo field_info;
1923
1.35M
        get_field_info(values[i], &field_info);
1924
1.35M
        if (field_info.scalar_type_id == PrimitiveType::INVALID_TYPE) {
1925
104
            return nullptr;
1926
104
        }
1927
1.35M
        auto* subcolumn = get_or_create_subcolumn(paths[i], i, field_info);
1928
1.35M
        flush_defaults(subcolumn);
1929
1.35M
        if (check_size_mismatch && subcolumn->size() != old_num_rows) {
1930
0
            throw doris::Exception(ErrorCode::INVALID_ARGUMENT,
1931
0
                                   "subcolumn {} size missmatched, may contains duplicated entry",
1932
0
                                   paths[i].get_path());
1933
0
        }
1934
1.35M
        subcolumn->insert(std::move(values[i]), std::move(field_info));
1935
1.35M
        return subcolumn;
1936
1.35M
    };
1937
1938
80.0k
    switch (config.parse_to) {
1939
79.0k
    case ParseConfig::ParseTo::OnlySubcolumns:
1940
1.43M
        for (size_t i = 0; i < paths.size(); ++i) {
1941
1.35M
            insert_into_subcolumn(i, true);
1942
1.35M
        }
1943
79.0k
        break;
1944
1.01k
    case ParseConfig::ParseTo::OnlyDocValueColumn: {
1945
1.01k
        std::vector<size_t> doc_item_indexes;
1946
1.01k
        doc_item_indexes.reserve(paths.size());
1947
1.01k
        phmap::flat_hash_set<StringRef, StringRefHash> seen_paths;
1948
1.01k
        seen_paths.reserve(paths.size());
1949
1950
5.67k
        for (size_t i = 0; i < paths.size(); ++i) {
1951
4.66k
            FieldInfo field_info;
1952
4.66k
            get_field_info(values[i], &field_info);
1953
4.66k
            if (paths[i].empty()) {
1954
0
                auto* subcolumn = column_variant.get_subcolumn(paths[i]);
1955
0
                DCHECK(subcolumn != nullptr);
1956
0
                flush_defaults(subcolumn);
1957
0
                subcolumn->insert(std::move(values[i]), std::move(field_info));
1958
0
                continue;
1959
0
            }
1960
4.66k
            if (field_info.scalar_type_id == PrimitiveType::INVALID_TYPE ||
1961
4.66k
                values[i].get_type() == PrimitiveType::TYPE_NULL) {
1962
0
                continue;
1963
0
            }
1964
4.66k
            const auto& path_str = paths[i].get_path();
1965
4.66k
            StringRef path_ref {path_str.data(), path_str.size()};
1966
4.66k
            if (UNLIKELY(!seen_paths.emplace(path_ref).second)) {
1967
0
                throw doris::Exception(ErrorCode::INVALID_ARGUMENT,
1968
0
                                       "may contains duplicated entry : {}",
1969
0
                                       std::string_view(path_str));
1970
0
            }
1971
4.66k
            doc_item_indexes.push_back(i);
1972
4.66k
        }
1973
1974
1.01k
        std::sort(doc_item_indexes.begin(), doc_item_indexes.end(),
1975
7.36k
                  [&](size_t l, size_t r) { return paths[l].get_path() < paths[r].get_path(); });
1976
4.66k
        for (const auto idx : doc_item_indexes) {
1977
4.66k
            const auto& path_str = paths[idx].get_path();
1978
4.66k
            doc_value_data_paths->insert_data(path_str.data(), path_str.size());
1979
4.66k
            auto& chars = doc_value_data_values->get_chars();
1980
4.66k
            append_field_to_binary_chars(values[idx], chars);
1981
4.66k
            doc_value_data_values->get_offsets().push_back(chars.size());
1982
4.66k
        }
1983
1.01k
    } break;
1984
80.0k
    }
1985
80.0k
    doc_value_data_offsets.push_back(doc_value_data_paths->size());
1986
    // /// Insert default values to missed subcolumns.
1987
80.0k
    const auto& subcolumns = column_variant.get_subcolumns();
1988
1.73M
    for (const auto& entry : subcolumns) {
1989
1.73M
        if (entry->data.size() == old_num_rows) {
1990
            // Handle nested paths differently from simple paths
1991
384k
            if (entry->path.has_nested_part()) {
1992
                // Try to insert default from nested, if failed, insert regular default
1993
0
                bool success = UNLIKELY(column_variant.try_insert_default_from_nested(entry));
1994
0
                if (!success) {
1995
0
                    entry->data.insert_default();
1996
0
                }
1997
384k
            } else {
1998
                // For non-nested paths, increment default counter
1999
384k
                entry->data.increment_default_counter();
2000
384k
            }
2001
384k
        }
2002
1.73M
    }
2003
80.0k
    column_variant.incr_num_rows();
2004
80.0k
    auto sparse_column = column_variant.get_sparse_column();
2005
80.0k
    if (sparse_column->size() == old_num_rows) {
2006
80.0k
        sparse_column->assume_mutable()->insert_default();
2007
80.0k
    }
2008
80.0k
#ifndef NDEBUG
2009
80.0k
    column_variant.check_consistency();
2010
80.0k
#endif
2011
80.0k
}
2012
2013
// exposed interfaces
2014
void parse_json_to_variant(IColumn& column, const StringRef& json, JsonParser* parser,
2015
12.4k
                           const ParseConfig& config) {
2016
12.4k
    if (parser) {
2017
0
        return parse_json_to_variant_impl(column, json.data, json.size, parser, config);
2018
12.4k
    } else {
2019
12.4k
        auto pool_parser = parsers_pool.get([] { return new JsonParser(); });
2020
12.4k
        return parse_json_to_variant_impl(column, json.data, json.size, pool_parser.get(), config);
2021
12.4k
    }
2022
12.4k
}
2023
2024
void parse_json_to_variant(IColumn& column, const ColumnString& raw_json_column,
2025
209
                           const ParseConfig& config) {
2026
209
    auto parser = parsers_pool.get([] { return new JsonParser(); });
2027
68.3k
    for (size_t i = 0; i < raw_json_column.size(); ++i) {
2028
68.1k
        StringRef raw_json = raw_json_column.get_data_at(i);
2029
68.1k
        parse_json_to_variant_impl(column, raw_json.data, raw_json.size, parser.get(), config);
2030
68.1k
    }
2031
209
    column.finalize();
2032
209
}
2033
2034
// parse the doc snapshot column to subcolumns
2035
0
void materialize_docs_to_subcolumns(ColumnVariant& column_variant) {
2036
0
    auto subcolumns = materialize_docs_to_subcolumns_map(column_variant);
2037
2038
0
    for (auto& entry : subcolumns) {
2039
0
        entry.second.finalize();
2040
0
        if (!column_variant.add_sub_column(PathInData(entry.first),
2041
0
                                           IColumn::mutate(entry.second.get_finalized_column_ptr()),
2042
0
                                           entry.second.get_least_common_type())) {
2043
0
            throw doris::Exception(ErrorCode::INTERNAL_ERROR,
2044
0
                                   "Failed to add subcolumn {}, which is from doc snapshot column",
2045
0
                                   entry.first);
2046
0
        }
2047
0
    }
2048
2049
0
    column_variant.finalize();
2050
0
}
2051
2052
// ============ Implementation from variant_util.cpp ============
2053
2054
phmap::flat_hash_map<std::string_view, ColumnVariant::Subcolumn> materialize_docs_to_subcolumns_map(
2055
3
        const ColumnVariant& variant) {
2056
3
    phmap::flat_hash_map<std::string_view, ColumnVariant::Subcolumn> subcolumns;
2057
2058
3
    const auto [column_key, column_value] = variant.get_doc_value_data_paths_and_values();
2059
3
    const auto& column_offsets = variant.serialized_doc_value_column_offsets();
2060
3
    const size_t num_rows = column_offsets.size();
2061
2062
3
    DCHECK_EQ(num_rows, variant.size()) << "doc snapshot offsets size mismatch with variant rows";
2063
2064
    // Best-effort reserve: at most number of kv pairs.
2065
3
    subcolumns.reserve(column_key->size());
2066
2067
10
    for (size_t row = 0; row < num_rows; ++row) {
2068
7
        const size_t start = (row == 0) ? 0 : column_offsets[row - 1];
2069
7
        const size_t end = column_offsets[row];
2070
24
        for (size_t i = start; i < end; ++i) {
2071
17
            const auto& key = column_key->get_data_at(i);
2072
17
            const std::string_view path_sv(key.data, key.size);
2073
2074
17
            auto [it, inserted] =
2075
17
                    subcolumns.try_emplace(path_sv, ColumnVariant::Subcolumn {0, true, false});
2076
17
            auto& subcolumn = it->second;
2077
17
            if (inserted) {
2078
10
                subcolumn.insert_many_defaults(row);
2079
10
            } else if (subcolumn.size() != row) {
2080
1
                subcolumn.insert_many_defaults(row - subcolumn.size());
2081
1
            }
2082
17
            subcolumn.deserialize_from_binary_column(column_value, i);
2083
17
        }
2084
7
    }
2085
2086
10
    for (auto& [path, subcolumn] : subcolumns) {
2087
10
        if (subcolumn.size() != num_rows) {
2088
4
            subcolumn.insert_many_defaults(num_rows - subcolumn.size());
2089
4
        }
2090
10
    }
2091
2092
3
    return subcolumns;
2093
3
}
2094
2095
Status _parse_and_materialize_variant_columns(Block& block,
2096
                                              const std::vector<uint32_t>& variant_pos,
2097
148
                                              const std::vector<ParseConfig>& configs) {
2098
431
    for (size_t i = 0; i < variant_pos.size(); ++i) {
2099
283
        auto column_ref = block.get_by_position(variant_pos[i]).column;
2100
283
        bool is_nullable = column_ref->is_nullable();
2101
283
        MutableColumnPtr var_column = column_ref->assume_mutable();
2102
283
        if (is_nullable) {
2103
1
            const auto& nullable = assert_cast<const ColumnNullable&>(*column_ref);
2104
1
            var_column = nullable.get_nested_column_ptr()->assume_mutable();
2105
1
        }
2106
283
        auto& var = assert_cast<ColumnVariant&>(*var_column);
2107
283
        var_column->finalize();
2108
2109
283
        MutableColumnPtr variant_column;
2110
283
        if (!var.is_scalar_variant()) {
2111
            // already parsed
2112
277
            continue;
2113
277
        }
2114
2115
6
        VLOG_DEBUG << "parse scalar variant column: " << var.get_root_type()->get_name();
2116
6
        ColumnPtr scalar_root_column;
2117
6
        if (var.get_root_type()->get_primitive_type() == TYPE_JSONB) {
2118
            // TODO more efficient way to parse jsonb type, currently we just convert jsonb to
2119
            // json str and parse them into variant
2120
1
            RETURN_IF_ERROR(cast_column({var.get_root(), var.get_root_type(), ""},
2121
1
                                        var.get_root()->is_nullable()
2122
1
                                                ? make_nullable(std::make_shared<DataTypeString>())
2123
1
                                                : std::make_shared<DataTypeString>(),
2124
1
                                        &scalar_root_column));
2125
1
            if (scalar_root_column->is_nullable()) {
2126
1
                scalar_root_column = assert_cast<const ColumnNullable*>(scalar_root_column.get())
2127
1
                                             ->get_nested_column_ptr();
2128
1
            }
2129
5
        } else {
2130
5
            const auto& root = *var.get_root();
2131
5
            scalar_root_column =
2132
5
                    root.is_nullable()
2133
5
                            ? assert_cast<const ColumnNullable&>(root).get_nested_column_ptr()
2134
5
                            : var.get_root();
2135
5
        }
2136
2137
6
        if (scalar_root_column->is_column_string()) {
2138
6
            variant_column = ColumnVariant::create(0);
2139
6
            parse_json_to_variant(*variant_column.get(),
2140
6
                                  assert_cast<const ColumnString&>(*scalar_root_column),
2141
6
                                  configs[i]);
2142
6
        } else {
2143
            // Root maybe other types rather than string like ColumnVariant(Int32).
2144
            // In this case, we should finlize the root and cast to JSON type
2145
0
            auto expected_root_type =
2146
0
                    make_nullable(std::make_shared<ColumnVariant::MostCommonType>());
2147
0
            var.ensure_root_node_type(expected_root_type);
2148
0
            variant_column = var.assume_mutable();
2149
0
        }
2150
2151
        // Wrap variant with nullmap if it is nullable
2152
6
        ColumnPtr result = variant_column->get_ptr();
2153
6
        if (is_nullable) {
2154
1
            const auto& null_map =
2155
1
                    assert_cast<const ColumnNullable&>(*column_ref).get_null_map_column_ptr();
2156
1
            result = ColumnNullable::create(result, null_map);
2157
1
        }
2158
6
        block.get_by_position(variant_pos[i]).column = result;
2159
6
    }
2160
148
    return Status::OK();
2161
148
}
2162
2163
Status parse_and_materialize_variant_columns(Block& block, const std::vector<uint32_t>& variant_pos,
2164
148
                                             const std::vector<ParseConfig>& configs) {
2165
148
    RETURN_IF_CATCH_EXCEPTION(
2166
148
            { return _parse_and_materialize_variant_columns(block, variant_pos, configs); });
2167
148
}
2168
2169
Status parse_and_materialize_variant_columns(Block& block, const TabletSchema& tablet_schema,
2170
140
                                             const std::vector<uint32_t>& column_pos) {
2171
140
    std::vector<uint32_t> variant_column_pos;
2172
140
    std::vector<uint32_t> variant_schema_pos;
2173
140
    variant_column_pos.reserve(column_pos.size());
2174
140
    variant_schema_pos.reserve(column_pos.size());
2175
820
    for (size_t block_pos = 0; block_pos < column_pos.size(); ++block_pos) {
2176
680
        const uint32_t schema_pos = column_pos[block_pos];
2177
680
        const auto& column = tablet_schema.column(schema_pos);
2178
680
        if (column.is_variant_type()) {
2179
275
            variant_column_pos.push_back(schema_pos);
2180
275
            variant_schema_pos.push_back(schema_pos);
2181
275
        }
2182
680
    }
2183
2184
140
    if (variant_column_pos.empty()) {
2185
0
        return Status::OK();
2186
0
    }
2187
2188
140
    std::vector<ParseConfig> configs(variant_column_pos.size());
2189
415
    for (size_t i = 0; i < variant_column_pos.size(); ++i) {
2190
        // Deprecated legacy flatten-nested switch. Distinct from variant_enable_nested_group.
2191
275
        configs[i].deprecated_enable_flatten_nested =
2192
275
                tablet_schema.deprecated_variant_flatten_nested();
2193
275
        const auto& column = tablet_schema.column(variant_schema_pos[i]);
2194
275
        if (!column.is_variant_type()) {
2195
0
            return Status::InternalError("column is not variant type, column name: {}",
2196
0
                                         column.name());
2197
0
        }
2198
        // if doc mode is not enabled, no need to parse to doc value column
2199
275
        if (!column.variant_enable_doc_mode()) {
2200
275
            configs[i].parse_to = ParseConfig::ParseTo::OnlySubcolumns;
2201
275
            continue;
2202
275
        }
2203
2204
0
        configs[i].parse_to = ParseConfig::ParseTo::OnlyDocValueColumn;
2205
0
    }
2206
2207
140
    RETURN_IF_ERROR(parse_and_materialize_variant_columns(block, variant_column_pos, configs));
2208
140
    return Status::OK();
2209
140
}
2210
2211
#include "common/compile_check_end.h"
2212
} // namespace doris::variant_util