Coverage Report

Created: 2026-05-12 16:45

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/exprs/vexpr.cpp
Line
Count
Source
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// Licensed to the Apache Software Foundation (ASF) under one
2
// or more contributor license agreements.  See the NOTICE file
3
// distributed with this work for additional information
4
// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
7
// with the License.  You may obtain a copy of the License at
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//
9
//   http://www.apache.org/licenses/LICENSE-2.0
10
//
11
// Unless required by applicable law or agreed to in writing,
12
// software distributed under the License is distributed on an
13
// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
14
// KIND, either express or implied.  See the License for the
15
// specific language governing permissions and limitations
16
// under the License.
17
18
#include "exprs/vexpr.h"
19
20
#include <fmt/format.h>
21
#include <gen_cpp/Exprs_types.h>
22
#include <gen_cpp/FrontendService_types.h>
23
#include <thrift/protocol/TDebugProtocol.h>
24
25
#include <algorithm>
26
#include <boost/algorithm/string/split.hpp>
27
#include <boost/iterator/iterator_facade.hpp>
28
#include <cstdint>
29
#include <memory>
30
#include <stack>
31
#include <string_view>
32
#include <utility>
33
34
#include "common/config.h"
35
#include "common/exception.h"
36
#include "common/status.h"
37
#include "core/column/column_nothing.h"
38
#include "core/column/column_vector.h"
39
#include "core/data_type/data_type_array.h"
40
#include "core/data_type/data_type_decimal.h"
41
#include "core/data_type/data_type_factory.hpp"
42
#include "core/data_type/data_type_nullable.h"
43
#include "core/data_type/data_type_number.h"
44
#include "core/data_type/define_primitive_type.h"
45
#include "core/field.h"
46
#include "core/value/timestamptz_value.h"
47
#include "exec/common/util.hpp"
48
#include "exec/pipeline/pipeline_task.h"
49
#include "exprs/short_circuit_evaluation_expr.h"
50
#include "exprs/varray_literal.h"
51
#include "exprs/vcase_expr.h"
52
#include "exprs/vcast_expr.h"
53
#include "exprs/vcolumn_ref.h"
54
#include "exprs/vcompound_pred.h"
55
#include "exprs/vcondition_expr.h"
56
#include "exprs/vectorized_fn_call.h"
57
#include "exprs/vexpr_context.h"
58
#include "exprs/vexpr_fwd.h"
59
#include "exprs/vin_predicate.h"
60
#include "exprs/vinfo_func.h"
61
#include "exprs/virtual_slot_ref.h"
62
#include "exprs/vlambda_function_call_expr.h"
63
#include "exprs/vlambda_function_expr.h"
64
#include "exprs/vliteral.h"
65
#include "exprs/vmap_literal.h"
66
#include "exprs/vmatch_predicate.h"
67
#include "exprs/vsearch.h"
68
#include "exprs/vslot_ref.h"
69
#include "exprs/vstruct_literal.h"
70
#include "storage/index/ann/ann_search_params.h"
71
#include "storage/index/ann/ann_topn_runtime.h"
72
#include "storage/index/inverted/inverted_index_parser.h"
73
#include "storage/segment/column_reader.h"
74
75
namespace doris {
76
77
class RowDescriptor;
78
class RuntimeState;
79
80
// NOLINTBEGIN(readability-function-cognitive-complexity)
81
// NOLINTBEGIN(readability-function-size)
82
TExprNode create_texpr_node_from(const void* data, const PrimitiveType& type, int precision,
83
23
                                 int scale) {
84
23
    TExprNode node;
85
86
23
    switch (type) {
87
0
    case TYPE_BOOLEAN: {
88
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_BOOLEAN>(data, &node));
89
0
        break;
90
0
    }
91
0
    case TYPE_TINYINT: {
92
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_TINYINT>(data, &node));
93
0
        break;
94
0
    }
95
0
    case TYPE_SMALLINT: {
96
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_SMALLINT>(data, &node));
97
0
        break;
98
0
    }
99
5
    case TYPE_INT: {
100
5
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_INT>(data, &node));
101
5
        break;
102
5
    }
103
14
    case TYPE_BIGINT: {
104
14
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_BIGINT>(data, &node));
105
14
        break;
106
14
    }
107
14
    case TYPE_LARGEINT: {
108
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_LARGEINT>(data, &node));
109
0
        break;
110
0
    }
111
0
    case TYPE_FLOAT: {
112
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_FLOAT>(data, &node));
113
0
        break;
114
0
    }
115
0
    case TYPE_DOUBLE: {
116
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DOUBLE>(data, &node));
117
0
        break;
118
0
    }
119
0
    case TYPE_DATEV2: {
120
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DATEV2>(data, &node));
121
0
        break;
122
0
    }
123
0
    case TYPE_DATETIMEV2: {
124
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DATETIMEV2>(data, &node, precision, scale));
125
0
        break;
126
0
    }
127
0
    case TYPE_DATE: {
128
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DATE>(data, &node));
129
0
        break;
130
0
    }
131
0
    case TYPE_DATETIME: {
132
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DATETIME>(data, &node));
133
0
        break;
134
0
    }
135
0
    case TYPE_DECIMALV2: {
136
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DECIMALV2>(data, &node, precision, scale));
137
0
        break;
138
0
    }
139
0
    case TYPE_DECIMAL32: {
140
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DECIMAL32>(data, &node, precision, scale));
141
0
        break;
142
0
    }
143
0
    case TYPE_DECIMAL64: {
144
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DECIMAL64>(data, &node, precision, scale));
145
0
        break;
146
0
    }
147
0
    case TYPE_DECIMAL128I: {
148
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DECIMAL128I>(data, &node, precision, scale));
149
0
        break;
150
0
    }
151
0
    case TYPE_DECIMAL256: {
152
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DECIMAL256>(data, &node, precision, scale));
153
0
        break;
154
0
    }
155
0
    case TYPE_CHAR: {
156
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_CHAR>(data, &node));
157
0
        break;
158
0
    }
159
0
    case TYPE_VARCHAR: {
160
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_VARCHAR>(data, &node));
161
0
        break;
162
0
    }
163
3
    case TYPE_STRING: {
164
3
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_STRING>(data, &node));
165
3
        break;
166
3
    }
167
3
    case TYPE_IPV4: {
168
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_IPV4>(data, &node));
169
0
        break;
170
0
    }
171
0
    case TYPE_IPV6: {
172
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_IPV6>(data, &node));
173
0
        break;
174
0
    }
175
0
    case TYPE_TIMEV2: {
176
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_TIMEV2>(data, &node, precision, scale));
177
0
        break;
178
0
    }
179
1
    case TYPE_TIMESTAMPTZ: {
180
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_TIMESTAMPTZ>(data, &node, precision, scale));
181
1
        break;
182
1
    }
183
1
    default:
184
0
        throw Exception(ErrorCode::INTERNAL_ERROR, "runtime filter meet invalid type {}",
185
0
                        int(type));
186
23
    }
187
23
    return node;
188
23
}
189
190
TExprNode create_texpr_node_from(const Field& field, const PrimitiveType& type, int precision,
191
23
                                 int scale) {
192
23
    TExprNode node;
193
23
    switch (type) {
194
1
    case TYPE_BOOLEAN: {
195
1
        const auto& storage = static_cast<bool>(field.get<TYPE_BOOLEAN>());
196
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_BOOLEAN>(&storage, &node));
197
1
        break;
198
1
    }
199
1
    case TYPE_TINYINT: {
200
0
        const auto& storage = static_cast<int8_t>(field.get<TYPE_TINYINT>());
201
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_TINYINT>(&storage, &node));
202
0
        break;
203
0
    }
204
1
    case TYPE_SMALLINT: {
205
1
        const auto& storage = static_cast<int16_t>(field.get<TYPE_SMALLINT>());
206
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_SMALLINT>(&storage, &node));
207
1
        break;
208
1
    }
209
1
    case TYPE_INT: {
210
1
        const auto& storage = static_cast<int32_t>(field.get<TYPE_INT>());
211
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_INT>(&storage, &node));
212
1
        break;
213
1
    }
214
1
    case TYPE_BIGINT: {
215
1
        const auto& storage = static_cast<int64_t>(field.get<TYPE_BIGINT>());
216
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_BIGINT>(&storage, &node));
217
1
        break;
218
1
    }
219
1
    case TYPE_LARGEINT: {
220
1
        const auto& storage = static_cast<int128_t>(field.get<TYPE_LARGEINT>());
221
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_LARGEINT>(&storage, &node));
222
1
        break;
223
1
    }
224
1
    case TYPE_FLOAT: {
225
1
        const auto& storage = static_cast<float>(field.get<TYPE_FLOAT>());
226
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_FLOAT>(&storage, &node));
227
1
        break;
228
1
    }
229
1
    case TYPE_DOUBLE: {
230
1
        const auto& storage = static_cast<double>(field.get<TYPE_DOUBLE>());
231
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DOUBLE>(&storage, &node));
232
1
        break;
233
1
    }
234
1
    case TYPE_DATEV2: {
235
1
        const auto& storage = field.get<TYPE_DATEV2>();
236
237
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DATEV2>(&storage, &node));
238
1
        break;
239
1
    }
240
1
    case TYPE_DATETIMEV2: {
241
1
        const auto& storage = field.get<TYPE_DATETIMEV2>();
242
1
        THROW_IF_ERROR(
243
1
                create_texpr_literal_node<TYPE_DATETIMEV2>(&storage, &node, precision, scale));
244
1
        break;
245
1
    }
246
1
    case TYPE_TIMESTAMPTZ: {
247
1
        const auto& storage = field.get<TYPE_TIMESTAMPTZ>();
248
249
1
        THROW_IF_ERROR(
250
1
                create_texpr_literal_node<TYPE_TIMESTAMPTZ>(&storage, &node, precision, scale));
251
1
        break;
252
1
    }
253
1
    case TYPE_DATE: {
254
1
        const auto& storage = field.get<TYPE_DATE>();
255
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DATE>(&storage, &node));
256
1
        break;
257
1
    }
258
1
    case TYPE_DATETIME: {
259
1
        const auto& storage = field.get<TYPE_DATETIME>();
260
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_DATETIME>(&storage, &node));
261
1
        break;
262
1
    }
263
1
    case TYPE_DECIMALV2: {
264
1
        const auto& storage = field.get<TYPE_DECIMALV2>();
265
266
1
        THROW_IF_ERROR(
267
1
                create_texpr_literal_node<TYPE_DECIMALV2>(&storage, &node, precision, scale));
268
1
        break;
269
1
    }
270
2
    case TYPE_DECIMAL32: {
271
2
        const auto& storage = field.get<TYPE_DECIMAL32>();
272
2
        THROW_IF_ERROR(
273
2
                create_texpr_literal_node<TYPE_DECIMAL32>(&storage, &node, precision, scale));
274
2
        break;
275
2
    }
276
2
    case TYPE_DECIMAL64: {
277
2
        const auto& storage = field.get<TYPE_DECIMAL64>();
278
2
        THROW_IF_ERROR(
279
2
                create_texpr_literal_node<TYPE_DECIMAL64>(&storage, &node, precision, scale));
280
2
        break;
281
2
    }
282
2
    case TYPE_DECIMAL128I: {
283
2
        const auto& storage = field.get<TYPE_DECIMAL128I>();
284
2
        THROW_IF_ERROR(
285
2
                create_texpr_literal_node<TYPE_DECIMAL128I>(&storage, &node, precision, scale));
286
2
        break;
287
2
    }
288
2
    case TYPE_DECIMAL256: {
289
2
        const auto& storage = field.get<TYPE_DECIMAL256>();
290
2
        THROW_IF_ERROR(
291
2
                create_texpr_literal_node<TYPE_DECIMAL256>(&storage, &node, precision, scale));
292
2
        break;
293
2
    }
294
2
    case TYPE_CHAR: {
295
0
        const auto& storage = field.get<TYPE_CHAR>();
296
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_CHAR>(&storage, &node));
297
0
        break;
298
0
    }
299
0
    case TYPE_VARCHAR: {
300
0
        const auto& storage = field.get<TYPE_VARCHAR>();
301
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_VARCHAR>(&storage, &node));
302
0
        break;
303
0
    }
304
1
    case TYPE_STRING: {
305
1
        const auto& storage = field.get<TYPE_STRING>();
306
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_STRING>(&storage, &node));
307
1
        break;
308
1
    }
309
1
    case TYPE_IPV4: {
310
0
        const auto& storage = field.get<TYPE_IPV4>();
311
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_IPV4>(&storage, &node));
312
0
        break;
313
0
    }
314
0
    case TYPE_IPV6: {
315
0
        const auto& storage = field.get<TYPE_IPV6>();
316
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_IPV6>(&storage, &node));
317
0
        break;
318
0
    }
319
1
    case TYPE_TIMEV2: {
320
1
        const auto& storage = field.get<TYPE_TIMEV2>();
321
1
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_TIMEV2>(&storage, &node));
322
1
        break;
323
1
    }
324
1
    case TYPE_VARBINARY: {
325
0
        const auto& svf = field.get<TYPE_VARBINARY>();
326
0
        THROW_IF_ERROR(create_texpr_literal_node<TYPE_VARBINARY>(&svf, &node));
327
0
        break;
328
0
    }
329
0
    default:
330
0
        throw Exception(ErrorCode::INTERNAL_ERROR, "runtime filter meet invalid type {}",
331
0
                        int(type));
332
23
    }
333
23
    return node;
334
23
}
335
336
// NOLINTEND(readability-function-size)
337
// NOLINTEND(readability-function-cognitive-complexity)
338
} // namespace doris
339
340
namespace doris {
341
342
VExpr::VExpr(const TExprNode& node)
343
400k
        : _node_type(node.node_type),
344
400k
          _opcode(node.__isset.opcode ? node.opcode : TExprOpcode::INVALID_OPCODE) {
345
400k
    if (node.__isset.fn) {
346
96
        _fn = node.fn;
347
96
    }
348
349
400k
    bool is_nullable = true;
350
400k
    if (node.__isset.is_nullable) {
351
396k
        is_nullable = node.is_nullable;
352
396k
    }
353
    // If we define null literal ,should make nullable data type to get correct field instead of undefined ptr
354
400k
    if (node.node_type == TExprNodeType::NULL_LITERAL) {
355
1
        CHECK(is_nullable);
356
1
    }
357
400k
    _data_type = get_data_type_with_default_argument(
358
400k
            DataTypeFactory::instance().create_data_type(node.type, is_nullable));
359
400k
}
360
361
0
VExpr::VExpr(const VExpr& vexpr) = default;
362
363
VExpr::VExpr(DataTypePtr type, bool is_slotref)
364
26
        : _opcode(TExprOpcode::INVALID_OPCODE),
365
26
          _data_type(get_data_type_with_default_argument(type)) {
366
26
    if (is_slotref) {
367
17
        _node_type = TExprNodeType::SLOT_REF;
368
17
    }
369
26
}
370
371
258k
Status VExpr::prepare(RuntimeState* state, const RowDescriptor& row_desc, VExprContext* context) {
372
258k
    ++context->_depth_num;
373
258k
    if (context->_depth_num > config::max_depth_of_expr_tree) {
374
0
        return Status::Error<ErrorCode::EXCEEDED_LIMIT>(
375
0
                "The depth of the expression tree is too big, make it less than {}",
376
0
                config::max_depth_of_expr_tree);
377
0
    }
378
379
258k
    for (auto& i : _children) {
380
275
        RETURN_IF_ERROR(i->prepare(state, row_desc, context));
381
275
    }
382
258k
    --context->_depth_num;
383
#ifndef BE_TEST
384
    _enable_inverted_index_query = state->query_options().enable_inverted_index_query;
385
#endif
386
258k
    return Status::OK();
387
258k
}
388
389
Status VExpr::open(RuntimeState* state, VExprContext* context,
390
512k
                   FunctionContext::FunctionStateScope scope) {
391
512k
    for (auto& i : _children) {
392
66
        RETURN_IF_ERROR(i->open(state, context, scope));
393
66
    }
394
512k
    if (scope == FunctionContext::FRAGMENT_LOCAL) {
395
258k
        RETURN_IF_ERROR(VExpr::get_const_col(context, nullptr));
396
258k
    }
397
512k
    return Status::OK();
398
512k
}
399
400
514k
void VExpr::close(VExprContext* context, FunctionContext::FunctionStateScope scope) {
401
514k
    for (auto& i : _children) {
402
325
        i->close(context, scope);
403
325
    }
404
514k
}
405
406
// NOLINTBEGIN(readability-function-size)
407
400k
Status VExpr::create_expr(const TExprNode& expr_node, VExprSPtr& expr) {
408
400k
    try {
409
400k
        switch (expr_node.node_type) {
410
2
        case TExprNodeType::BOOL_LITERAL:
411
36
        case TExprNodeType::INT_LITERAL:
412
36
        case TExprNodeType::LARGE_INT_LITERAL:
413
37
        case TExprNodeType::IPV4_LITERAL:
414
37
        case TExprNodeType::IPV6_LITERAL:
415
148
        case TExprNodeType::FLOAT_LITERAL:
416
149
        case TExprNodeType::DECIMAL_LITERAL:
417
152
        case TExprNodeType::DATE_LITERAL:
418
152
        case TExprNodeType::TIMEV2_LITERAL:
419
161
        case TExprNodeType::STRING_LITERAL:
420
161
        case TExprNodeType::JSON_LITERAL:
421
161
        case TExprNodeType::VARBINARY_LITERAL:
422
162
        case TExprNodeType::NULL_LITERAL: {
423
162
            expr = VLiteral::create_shared(expr_node);
424
162
            break;
425
161
        }
426
13
        case TExprNodeType::ARRAY_LITERAL: {
427
13
            expr = VArrayLiteral::create_shared(expr_node);
428
13
            break;
429
161
        }
430
0
        case TExprNodeType::MAP_LITERAL: {
431
0
            expr = VMapLiteral::create_shared(expr_node);
432
0
            break;
433
161
        }
434
0
        case TExprNodeType::STRUCT_LITERAL: {
435
0
            expr = VStructLiteral::create_shared(expr_node);
436
0
            break;
437
161
        }
438
400k
        case TExprNodeType::SLOT_REF: {
439
400k
            if (expr_node.slot_ref.__isset.is_virtual_slot && expr_node.slot_ref.is_virtual_slot) {
440
11
                expr = VirtualSlotRef::create_shared(expr_node);
441
11
                expr->_node_type = TExprNodeType::VIRTUAL_SLOT_REF;
442
400k
            } else {
443
400k
                expr = VSlotRef::create_shared(expr_node);
444
400k
            }
445
400k
            break;
446
161
        }
447
0
        case TExprNodeType::COLUMN_REF: {
448
0
            expr = VColumnRef::create_shared(expr_node);
449
0
            break;
450
161
        }
451
17
        case TExprNodeType::COMPOUND_PRED: {
452
17
            expr = VCompoundPred::create_shared(expr_node);
453
17
            break;
454
161
        }
455
0
        case TExprNodeType::LAMBDA_FUNCTION_EXPR: {
456
0
            expr = VLambdaFunctionExpr::create_shared(expr_node);
457
0
            break;
458
161
        }
459
0
        case TExprNodeType::LAMBDA_FUNCTION_CALL_EXPR: {
460
0
            expr = VLambdaFunctionCallExpr::create_shared(expr_node);
461
0
            break;
462
161
        }
463
0
        case TExprNodeType::ARITHMETIC_EXPR:
464
46
        case TExprNodeType::BINARY_PRED:
465
47
        case TExprNodeType::NULL_AWARE_BINARY_PRED:
466
47
        case TExprNodeType::COMPUTE_FUNCTION_CALL: {
467
47
            expr = VectorizedFnCall::create_shared(expr_node);
468
47
            break;
469
47
        }
470
26
        case TExprNodeType::FUNCTION_CALL: {
471
26
            if (expr_node.fn.name.function_name == "if") {
472
0
                if (expr_node.__isset.short_circuit_evaluation &&
473
0
                    expr_node.short_circuit_evaluation) {
474
0
                    expr = ShortCircuitIfExpr::create_shared(expr_node);
475
0
                } else {
476
0
                    expr = VectorizedIfExpr::create_shared(expr_node);
477
0
                }
478
0
                break;
479
26
            } else if (expr_node.fn.name.function_name == "ifnull" ||
480
26
                       expr_node.fn.name.function_name == "nvl") {
481
0
                if (expr_node.__isset.short_circuit_evaluation &&
482
0
                    expr_node.short_circuit_evaluation) {
483
0
                    expr = ShortCircuitIfNullExpr::create_shared(expr_node);
484
0
                } else {
485
0
                    expr = VectorizedIfNullExpr::create_shared(expr_node);
486
0
                }
487
0
                break;
488
26
            } else if (expr_node.fn.name.function_name == "coalesce") {
489
0
                if (expr_node.__isset.short_circuit_evaluation &&
490
0
                    expr_node.short_circuit_evaluation) {
491
0
                    expr = ShortCircuitCoalesceExpr::create_shared(expr_node);
492
0
                } else {
493
0
                    expr = VectorizedCoalesceExpr::create_shared(expr_node);
494
0
                }
495
0
                break;
496
0
            }
497
26
            expr = VectorizedFnCall::create_shared(expr_node);
498
26
            break;
499
26
        }
500
0
        case TExprNodeType::MATCH_PRED: {
501
0
            expr = VMatchPredicate::create_shared(expr_node);
502
0
            break;
503
26
        }
504
2
        case TExprNodeType::CAST_EXPR: {
505
2
            expr = VCastExpr::create_shared(expr_node);
506
2
            break;
507
26
        }
508
0
        case TExprNodeType::TRY_CAST_EXPR: {
509
0
            expr = TryCastExpr::create_shared(expr_node);
510
0
            break;
511
26
        }
512
5
        case TExprNodeType::IN_PRED: {
513
5
            expr = VInPredicate::create_shared(expr_node);
514
5
            break;
515
26
        }
516
0
        case TExprNodeType::CASE_EXPR: {
517
0
            if (!expr_node.__isset.case_expr) {
518
0
                return Status::InternalError("Case expression not set in thrift node");
519
0
            }
520
0
            if (expr_node.__isset.short_circuit_evaluation && expr_node.short_circuit_evaluation) {
521
0
                expr = ShortCircuitCaseExpr::create_shared(expr_node);
522
0
            } else {
523
0
                expr = VCaseExpr::create_shared(expr_node);
524
0
            }
525
0
            break;
526
0
        }
527
0
        case TExprNodeType::INFO_FUNC: {
528
0
            expr = VInfoFunc::create_shared(expr_node);
529
0
            break;
530
0
        }
531
0
        case TExprNodeType::SEARCH_EXPR: {
532
0
            expr = VSearchExpr::create_shared(expr_node);
533
0
            break;
534
0
        }
535
0
        default:
536
0
            return Status::InternalError("Unknown expr node type: {}", expr_node.node_type);
537
400k
        }
538
400k
    } catch (const Exception& e) {
539
0
        if (e.code() == ErrorCode::INTERNAL_ERROR) {
540
0
            return Status::InternalError("Create Expr failed because {}\nTExprNode={}", e.what(),
541
0
                                         apache::thrift::ThriftDebugString(expr_node));
542
0
        }
543
0
        return Status::Error<false>(e.code(), "Create Expr failed because {}", e.what());
544
0
        LOG(WARNING) << "create expr failed, TExprNode={}, reason={}"
545
0
                     << apache::thrift::ThriftDebugString(expr_node) << e.what();
546
0
    }
547
400k
    if (!expr->data_type()) {
548
0
        return Status::InvalidArgument("Unknown expr type: {}", expr_node.node_type);
549
0
    }
550
400k
    return Status::OK();
551
400k
}
552
// NOLINTEND(readability-function-size)
553
554
Status VExpr::create_tree_from_thrift(const std::vector<TExprNode>& nodes, int* node_idx,
555
400k
                                      VExprSPtr& root_expr, VExprContextSPtr& ctx) {
556
    // propagate error case
557
400k
    if (*node_idx >= nodes.size()) {
558
0
        return Status::InternalError("Failed to reconstruct expression tree from thrift.");
559
0
    }
560
561
    // create root expr
562
400k
    int root_children = nodes[*node_idx].num_children;
563
400k
    VExprSPtr root;
564
400k
    RETURN_IF_ERROR(create_expr(nodes[*node_idx], root));
565
400k
    DCHECK(root != nullptr);
566
400k
    root_expr = root;
567
400k
    ctx = std::make_shared<VExprContext>(root);
568
    // short path for leaf node
569
400k
    if (root_children <= 0) {
570
400k
        return Status::OK();
571
400k
    }
572
573
    // non-recursive traversal
574
52
    using VExprSPtrCountPair = std::pair<VExprSPtr, int>;
575
52
    std::stack<std::shared_ptr<VExprSPtrCountPair>> s;
576
52
    s.emplace(std::make_shared<VExprSPtrCountPair>(root, root_children));
577
328
    while (!s.empty()) {
578
        // copy the shared ptr resource to avoid dangling reference
579
276
        auto parent = s.top();
580
        // Decrement or pop
581
276
        if (parent->second > 1) {
582
175
            parent->second -= 1;
583
175
        } else {
584
101
            s.pop();
585
101
        }
586
587
276
        DCHECK(parent->first != nullptr);
588
276
        if (++*node_idx >= nodes.size()) {
589
0
            return Status::InternalError("Failed to reconstruct expression tree from thrift.");
590
0
        }
591
592
276
        VExprSPtr expr;
593
276
        RETURN_IF_ERROR(create_expr(nodes[*node_idx], expr));
594
276
        DCHECK(expr != nullptr);
595
276
        parent->first->add_child(expr);
596
        // push to stack if has children
597
276
        int num_children = nodes[*node_idx].num_children;
598
276
        if (num_children > 0) {
599
49
            s.emplace(std::make_shared<VExprSPtrCountPair>(expr, num_children));
600
49
        }
601
276
    }
602
52
    return Status::OK();
603
52
}
604
605
400k
Status VExpr::create_expr_tree(const TExpr& texpr, VExprContextSPtr& ctx) {
606
400k
    if (texpr.nodes.empty()) {
607
7
        ctx = nullptr;
608
7
        return Status::OK();
609
7
    }
610
400k
    int node_idx = 0;
611
400k
    VExprSPtr e;
612
400k
    Status status = create_tree_from_thrift(texpr.nodes, &node_idx, e, ctx);
613
400k
    if (status.ok() && node_idx + 1 != texpr.nodes.size()) {
614
0
        status = Status::InternalError(
615
0
                "Expression tree only partially reconstructed. Not all thrift nodes were "
616
0
                "used.");
617
0
    }
618
400k
    if (!status.ok()) {
619
0
        LOG(ERROR) << "Could not construct expr tree.\n"
620
0
                   << status << "\n"
621
0
                   << apache::thrift::ThriftDebugString(texpr);
622
0
    }
623
400k
    return status;
624
400k
}
625
626
28.1k
Status VExpr::create_expr_trees(const std::vector<TExpr>& texprs, VExprContextSPtrs& ctxs) {
627
28.1k
    ctxs.clear();
628
70.1k
    for (const auto& texpr : texprs) {
629
70.1k
        VExprContextSPtr ctx;
630
70.1k
        RETURN_IF_ERROR(create_expr_tree(texpr, ctx));
631
70.1k
        ctxs.push_back(ctx);
632
70.1k
    }
633
28.1k
    return Status::OK();
634
28.1k
}
635
636
Status VExpr::check_expr_output_type(const VExprContextSPtrs& ctxs,
637
24.0k
                                     const RowDescriptor& output_row_desc) {
638
24.0k
    if (ctxs.empty()) {
639
6
        return Status::OK();
640
6
    }
641
24.0k
    auto name_and_types = VectorizedUtils::create_name_and_data_types(output_row_desc);
642
24.0k
    if (ctxs.size() != name_and_types.size()) {
643
0
        return Status::InternalError(
644
0
                "output type size not match expr size {} , expected output size {} ", ctxs.size(),
645
0
                name_and_types.size());
646
0
    }
647
65.9k
    auto check_type_can_be_converted = [](DataTypePtr& from, DataTypePtr& to) -> bool {
648
65.9k
        if (to->equals(*from)) {
649
65.9k
            return true;
650
65.9k
        }
651
0
        if (to->is_nullable() && !from->is_nullable()) {
652
0
            return remove_nullable(to)->equals(*from);
653
0
        }
654
0
        return false;
655
0
    };
656
90.0k
    for (int i = 0; i < ctxs.size(); i++) {
657
65.9k
        auto real_expr_type = get_data_type_with_default_argument(ctxs[i]->root()->data_type());
658
65.9k
        auto&& [name, expected_type] = name_and_types[i];
659
65.9k
        if (!check_type_can_be_converted(real_expr_type, expected_type)) {
660
0
            return Status::InternalError(
661
0
                    "output type not match expr type, col name {} , expected type {} , real type "
662
0
                    "{}",
663
0
                    name, expected_type->get_name(), real_expr_type->get_name());
664
0
        }
665
65.9k
    }
666
24.0k
    return Status::OK();
667
24.0k
}
668
669
Status VExpr::prepare(const VExprContextSPtrs& ctxs, RuntimeState* state,
670
148k
                      const RowDescriptor& row_desc) {
671
258k
    for (auto ctx : ctxs) {
672
258k
        RETURN_IF_ERROR(ctx->prepare(state, row_desc));
673
258k
    }
674
148k
    return Status::OK();
675
148k
}
676
677
148k
Status VExpr::open(const VExprContextSPtrs& ctxs, RuntimeState* state) {
678
258k
    for (const auto& ctx : ctxs) {
679
258k
        RETURN_IF_ERROR(ctx->open(state));
680
258k
    }
681
148k
    return Status::OK();
682
148k
}
683
684
96.4k
bool VExpr::contains_blockable_function(const VExprContextSPtrs& ctxs) {
685
96.4k
    return std::any_of(ctxs.begin(), ctxs.end(), [](const VExprContextSPtr& ctx) {
686
65.9k
        return ctx != nullptr && ctx->root() != nullptr && ctx->root()->is_blockable();
687
65.9k
    });
688
96.4k
}
689
690
Status VExpr::clone_if_not_exists(const VExprContextSPtrs& ctxs, RuntimeState* state,
691
0
                                  VExprContextSPtrs& new_ctxs) {
692
0
    if (!new_ctxs.empty()) {
693
        // 'ctxs' was already cloned into '*new_ctxs', nothing to do.
694
0
        DCHECK_EQ(new_ctxs.size(), ctxs.size());
695
0
        for (auto& new_ctx : new_ctxs) {
696
0
            DCHECK(new_ctx->_is_clone);
697
0
        }
698
0
        return Status::OK();
699
0
    }
700
0
    new_ctxs.resize(ctxs.size());
701
0
    for (int i = 0; i < ctxs.size(); ++i) {
702
0
        RETURN_IF_ERROR(ctxs[i]->clone(state, new_ctxs[i]));
703
0
    }
704
0
    return Status::OK();
705
0
}
706
707
7
std::string VExpr::debug_string() const {
708
    // TODO: implement partial debug string for member vars
709
7
    std::stringstream out;
710
7
    out << " type=" << _data_type->get_name();
711
712
7
    if (!_children.empty()) {
713
0
        out << " children=" << debug_string(_children);
714
0
    }
715
716
7
    return out.str();
717
7
}
718
719
0
std::string VExpr::debug_string(const VExprSPtrs& exprs) {
720
0
    std::stringstream out;
721
0
    out << "[";
722
723
0
    for (int i = 0; i < exprs.size(); ++i) {
724
0
        out << (i == 0 ? "" : " ") << exprs[i]->debug_string();
725
0
    }
726
727
0
    out << "]";
728
0
    return out.str();
729
0
}
730
731
0
std::string VExpr::debug_string(const VExprContextSPtrs& ctxs) {
732
0
    VExprSPtrs exprs;
733
0
    for (const auto& ctx : ctxs) {
734
0
        exprs.push_back(ctx->root());
735
0
    }
736
0
    return debug_string(exprs);
737
0
}
738
739
689
bool VExpr::is_constant() const {
740
689
    return std::all_of(_children.begin(), _children.end(),
741
689
                       [](const VExprSPtr& expr) { return expr->is_constant(); });
742
689
}
743
744
Status VExpr::get_const_col(VExprContext* context,
745
258k
                            std::shared_ptr<ColumnPtrWrapper>* column_wrapper) {
746
258k
    if (!is_constant()) {
747
258k
        return Status::OK();
748
258k
    }
749
750
152
    if (_constant_col != nullptr) {
751
45
        DCHECK(column_wrapper != nullptr);
752
45
        *column_wrapper = _constant_col;
753
45
        return Status::OK();
754
45
    }
755
756
107
    ColumnPtr result;
757
107
    RETURN_IF_ERROR(execute_column(context, nullptr, nullptr, 1, result));
758
107
    _constant_col = std::make_shared<ColumnPtrWrapper>(result);
759
107
    if (column_wrapper != nullptr) {
760
0
        *column_wrapper = _constant_col;
761
0
    }
762
763
107
    return Status::OK();
764
107
}
765
766
103
void VExpr::register_function_context(RuntimeState* state, VExprContext* context) {
767
103
    std::vector<DataTypePtr> arg_types;
768
199
    for (auto& i : _children) {
769
199
        arg_types.push_back(i->data_type());
770
199
    }
771
772
103
    _fn_context_index = context->register_function_context(state, _data_type, arg_types);
773
103
}
774
775
Status VExpr::init_function_context(RuntimeState* state, VExprContext* context,
776
                                    FunctionContext::FunctionStateScope scope,
777
70
                                    const FunctionBasePtr& function) const {
778
70
    FunctionContext* fn_ctx = context->fn_context(_fn_context_index);
779
70
    if (scope == FunctionContext::FRAGMENT_LOCAL) {
780
51
        std::vector<std::shared_ptr<ColumnPtrWrapper>> constant_cols;
781
95
        for (auto c : _children) {
782
95
            std::shared_ptr<ColumnPtrWrapper> const_col;
783
95
            RETURN_IF_ERROR(c->get_const_col(context, &const_col));
784
95
            constant_cols.push_back(const_col);
785
95
        }
786
51
        fn_ctx->set_constant_cols(constant_cols);
787
51
    }
788
789
70
    if (scope == FunctionContext::FRAGMENT_LOCAL) {
790
51
        RETURN_IF_ERROR(function->open(fn_ctx, FunctionContext::FRAGMENT_LOCAL));
791
51
    }
792
70
    RETURN_IF_ERROR(function->open(fn_ctx, FunctionContext::THREAD_LOCAL));
793
70
    return Status::OK();
794
70
}
795
796
void VExpr::close_function_context(VExprContext* context, FunctionContext::FunctionStateScope scope,
797
179
                                   const FunctionBasePtr& function) const {
798
179
    if (_fn_context_index != -1) {
799
72
        FunctionContext* fn_ctx = context->fn_context(_fn_context_index);
800
        // `close_function_context` is called in VExprContext's destructor so do not throw exceptions here.
801
72
        static_cast<void>(function->close(fn_ctx, FunctionContext::THREAD_LOCAL));
802
72
        if (scope == FunctionContext::FRAGMENT_LOCAL) {
803
53
            static_cast<void>(function->close(fn_ctx, FunctionContext::FRAGMENT_LOCAL));
804
53
        }
805
72
    }
806
179
}
807
808
0
Status VExpr::check_constant(const Block& block, ColumnNumbers arguments) const {
809
0
    if (is_constant() && !VectorizedUtils::all_arguments_are_constant(block, arguments)) {
810
0
        return Status::InternalError("const check failed, expr={}", debug_string());
811
0
    }
812
0
    return Status::OK();
813
0
}
814
815
0
uint64_t VExpr::get_digest(uint64_t seed) const {
816
0
    auto digest = seed;
817
0
    for (auto child : _children) {
818
0
        digest = child->get_digest(digest);
819
0
        if (digest == 0) {
820
0
            return 0;
821
0
        }
822
0
    }
823
824
0
    auto& fn_name = _fn.name.function_name;
825
0
    if (!fn_name.empty()) {
826
0
        digest = HashUtil::hash64(fn_name.c_str(), fn_name.size(), digest);
827
0
    } else {
828
0
        digest = HashUtil::hash64((const char*)&_node_type, sizeof(_node_type), digest);
829
0
        digest = HashUtil::hash64((const char*)&_opcode, sizeof(_opcode), digest);
830
0
    }
831
0
    return digest;
832
0
}
833
834
0
ColumnPtr VExpr::get_result_from_const(size_t count) const {
835
0
    return ColumnConst::create(_constant_col->column_ptr, count);
836
0
}
837
838
Status VExpr::_evaluate_inverted_index(VExprContext* context, const FunctionBasePtr& function,
839
1
                                       uint32_t segment_num_rows) {
840
    // Pre-allocate vectors based on an estimated or known size
841
1
    std::vector<segment_v2::IndexIterator*> iterators;
842
1
    std::vector<IndexFieldNameAndTypePair> data_type_with_names;
843
1
    std::vector<int> column_ids;
844
1
    ColumnsWithTypeAndName arguments;
845
1
    VExprSPtrs children_exprs;
846
847
    // Reserve space to avoid multiple reallocations
848
1
    const size_t estimated_size = get_num_children();
849
1
    iterators.reserve(estimated_size);
850
1
    data_type_with_names.reserve(estimated_size);
851
1
    column_ids.reserve(estimated_size);
852
1
    children_exprs.reserve(estimated_size);
853
854
1
    auto index_context = context->get_index_context();
855
856
    // if child is cast expr, we need to ensure target data type is the same with storage data type.
857
    // or they are all string type
858
    // and if data type is array, we need to get the nested data type to ensure that.
859
2
    for (const auto& child : children()) {
860
2
        if (child->node_type() == TExprNodeType::CAST_EXPR) {
861
1
            auto* cast_expr = assert_cast<VCastExpr*>(child.get());
862
1
            DCHECK_EQ(cast_expr->get_num_children(), 1);
863
1
            if (cast_expr->get_child(0)->is_slot_ref()) {
864
0
                auto* column_slot_ref = assert_cast<VSlotRef*>(cast_expr->get_child(0).get());
865
0
                auto column_id = column_slot_ref->column_id();
866
0
                const auto* storage_name_type =
867
0
                        context->get_index_context()->get_storage_name_and_type_by_column_id(
868
0
                                column_id);
869
0
                auto storage_type = remove_nullable(storage_name_type->second);
870
0
                auto target_type = remove_nullable(cast_expr->get_target_type());
871
0
                auto origin_primitive_type = storage_type->get_primitive_type();
872
0
                auto target_primitive_type = target_type->get_primitive_type();
873
0
                if (is_complex_type(storage_type->get_primitive_type())) {
874
0
                    if (storage_type->get_primitive_type() == TYPE_ARRAY &&
875
0
                        target_type->get_primitive_type() == TYPE_ARRAY) {
876
0
                        auto nested_storage_type =
877
0
                                (assert_cast<const DataTypeArray*>(storage_type.get()))
878
0
                                        ->get_nested_type();
879
0
                        origin_primitive_type = nested_storage_type->get_primitive_type();
880
0
                        auto nested_target_type =
881
0
                                (assert_cast<const DataTypeArray*>(target_type.get()))
882
0
                                        ->get_nested_type();
883
0
                        target_primitive_type = nested_target_type->get_primitive_type();
884
0
                    } else {
885
0
                        continue;
886
0
                    }
887
0
                }
888
0
                if (origin_primitive_type != TYPE_VARIANT &&
889
0
                    (storage_type->equals(*target_type) ||
890
0
                     (is_string_type(target_primitive_type) &&
891
0
                      is_string_type(origin_primitive_type)))) {
892
0
                    children_exprs.emplace_back(expr_without_cast(child));
893
0
                }
894
1
            } else {
895
1
                return Status::OK(); // for example: cast("abc") as ipv4 case
896
1
            }
897
1
        } else {
898
1
            children_exprs.emplace_back(child);
899
1
        }
900
2
    }
901
902
0
    if (children_exprs.empty()) {
903
0
        return Status::OK(); // Early exit if no children to process
904
0
    }
905
906
0
    for (const auto& child : children_exprs) {
907
0
        if (child->is_slot_ref()) {
908
0
            auto* column_slot_ref = assert_cast<VSlotRef*>(child.get());
909
0
            auto column_id = column_slot_ref->column_id();
910
0
            auto* iter = context->get_index_context()->get_inverted_index_iterator_by_column_id(
911
0
                    column_id);
912
            //column does not have inverted index
913
0
            if (iter == nullptr) {
914
0
                continue;
915
0
            }
916
0
            const auto* storage_name_type =
917
0
                    context->get_index_context()->get_storage_name_and_type_by_column_id(column_id);
918
0
            if (storage_name_type == nullptr) {
919
0
                auto err_msg = fmt::format(
920
0
                        "storage_name_type cannot be found for column {} while in {} "
921
0
                        "evaluate_inverted_index",
922
0
                        column_id, expr_name());
923
0
                LOG(ERROR) << err_msg;
924
0
                return Status::InternalError(err_msg);
925
0
            }
926
0
            iterators.emplace_back(iter);
927
0
            data_type_with_names.emplace_back(*storage_name_type);
928
0
            column_ids.emplace_back(column_id);
929
0
        } else if (child->is_literal()) {
930
0
            auto* column_literal = assert_cast<VLiteral*>(child.get());
931
0
            arguments.emplace_back(column_literal->get_column_ptr(),
932
0
                                   column_literal->get_data_type(), column_literal->expr_name());
933
0
        } else if (child->can_push_down_to_index()) {
934
0
            RETURN_IF_ERROR(child->evaluate_inverted_index(context, segment_num_rows));
935
0
        } else {
936
0
            return Status::OK(); // others cases
937
0
        }
938
0
    }
939
940
    // is null or is not null has no arguments
941
0
    if (iterators.empty() || (arguments.empty() && !(function->get_name() == "is_not_null_pred" ||
942
0
                                                     function->get_name() == "is_null_pred"))) {
943
0
        return Status::OK(); // Nothing to evaluate or no literals to compare against
944
0
    }
945
946
0
    const InvertedIndexAnalyzerCtx* analyzer_ctx = nullptr;
947
0
    if (auto index_ctx = context->get_index_context(); index_ctx != nullptr) {
948
0
        analyzer_ctx = index_ctx->get_analyzer_ctx_for_expr(this);
949
0
    }
950
951
0
    auto result_bitmap = segment_v2::InvertedIndexResultBitmap();
952
    // Pass analyzer_key to function (used by match predicates for multi-analyzer index selection)
953
0
    auto res = function->evaluate_inverted_index(arguments, data_type_with_names, iterators,
954
0
                                                 segment_num_rows, analyzer_ctx, result_bitmap);
955
0
    if (!res.ok()) {
956
0
        return res;
957
0
    }
958
0
    if (!result_bitmap.is_empty()) {
959
0
        index_context->set_index_result_for_expr(this, result_bitmap);
960
0
        for (int column_id : column_ids) {
961
0
            index_context->set_true_for_index_status(this, column_id);
962
0
        }
963
0
    }
964
0
    return Status::OK();
965
0
}
966
967
0
size_t VExpr::estimate_memory(const size_t rows) {
968
0
    if (is_const_and_have_executed()) {
969
0
        return 0;
970
0
    }
971
972
0
    size_t estimate_size = 0;
973
0
    for (auto& child : _children) {
974
0
        estimate_size += child->estimate_memory(rows);
975
0
    }
976
977
0
    if (_data_type->have_maximum_size_of_value()) {
978
0
        estimate_size += rows * _data_type->get_size_of_value_in_memory();
979
0
    } else {
980
0
        estimate_size += rows * 64; /// TODO: need a more reasonable value
981
0
    }
982
0
    return estimate_size;
983
0
}
984
985
Status VExpr::execute_column(VExprContext* context, const Block* block, const Selector* selector,
986
800
                             size_t count, ColumnPtr& result_column) const {
987
800
    RETURN_IF_ERROR(execute_column_impl(context, block, selector, count, result_column));
988
797
    if (result_column->size() != count) {
989
1
        return Status::InternalError("Expr {} return column size {} not equal to expected size {}",
990
1
                                     expr_name(), result_column->size(), count);
991
1
    }
992
797
    DCHECK(selector == nullptr || selector->size() == count);
993
    // Validate type match. ColumnNothing is exempt (used as a placeholder in tests/stubs).
994
796
    if (!check_and_get_column<ColumnNothing>(result_column.get())) {
995
792
        auto result_type = execute_type(block);
996
792
        if (result_type != nullptr) {
997
752
            Status st = result_type->check_column(*result_column);
998
752
            if (!st.ok()) {
999
                // Nullable(T) may legitimately produce a non-nullable T column when all rows are
1000
                // non-null (use_default_implementation_for_nulls optimization). Allow this.
1001
35
                const auto* nullable_type =
1002
35
                        check_and_get_data_type<DataTypeNullable>(result_type.get());
1003
35
                if (nullable_type && !check_and_get_column<ColumnNullable>(result_column.get())) {
1004
34
                    st = nullable_type->get_nested_type()->check_column(*result_column);
1005
34
                }
1006
35
            }
1007
752
            if (!st.ok()) {
1008
1
                return Status::InternalError(
1009
1
                        "Expr {} return column type mismatch: declared={}, actual={}", expr_name(),
1010
1
                        result_type->get_name(), result_column->get_name());
1011
1
            }
1012
752
        }
1013
792
    }
1014
795
    return Status::OK();
1015
796
}
1016
1017
bool VExpr::fast_execute(VExprContext* context, const Selector* selector, size_t count,
1018
93
                         ColumnPtr& result_column) const {
1019
93
    if (context->get_index_context() &&
1020
93
        context->get_index_context()->get_index_result_column().contains(this)) {
1021
        // prepare a column to save result
1022
1
        result_column = filter_column_with_selector(
1023
1
                context->get_index_context()->get_index_result_column()[this], selector, count);
1024
1
        if (_data_type->is_nullable()) {
1025
1
            result_column = make_nullable(result_column);
1026
1
        }
1027
1
        return true;
1028
1
    }
1029
92
    return false;
1030
93
}
1031
1032
0
bool VExpr::equals(const VExpr& other) {
1033
0
    return false;
1034
0
}
1035
1036
Status VExpr::evaluate_ann_range_search(
1037
        const segment_v2::AnnRangeSearchRuntime& runtime,
1038
        const std::vector<std::unique_ptr<segment_v2::IndexIterator>>& index_iterators,
1039
        const std::vector<ColumnId>& idx_to_cid,
1040
        const std::vector<std::unique_ptr<segment_v2::ColumnIterator>>& column_iterators,
1041
0
        roaring::Roaring& row_bitmap, AnnIndexStats& ann_index_stats) {
1042
0
    return Status::OK();
1043
0
}
1044
1045
void VExpr::prepare_ann_range_search(const doris::VectorSearchUserParams& params,
1046
                                     segment_v2::AnnRangeSearchRuntime& range_search_runtime,
1047
0
                                     bool& suitable_for_ann_index) {
1048
0
    if (!suitable_for_ann_index) {
1049
0
        return;
1050
0
    }
1051
0
    for (auto& child : _children) {
1052
0
        child->prepare_ann_range_search(params, range_search_runtime, suitable_for_ann_index);
1053
0
        if (!suitable_for_ann_index) {
1054
0
            return;
1055
0
        }
1056
0
    }
1057
0
}
1058
1059
2
bool VExpr::ann_range_search_executedd() {
1060
2
    return _has_been_executed;
1061
2
}
1062
1063
2
bool VExpr::ann_dist_is_fulfilled() const {
1064
2
    return _virtual_column_is_fulfilled;
1065
2
}
1066
1067
Status VExpr::execute_filter(VExprContext* context, const Block* block,
1068
                             uint8_t* __restrict result_filter_data, size_t rows, bool accept_null,
1069
87
                             bool* can_filter_all) const {
1070
87
    ColumnPtr filter_column;
1071
87
    RETURN_IF_ERROR(execute_column(context, block, nullptr, rows, filter_column));
1072
87
    if (const auto* const_column = check_and_get_column<ColumnConst>(*filter_column)) {
1073
        // const(nullable) or const(bool)
1074
0
        const bool result = accept_null
1075
0
                                    ? (const_column->is_null_at(0) || const_column->get_bool(0))
1076
0
                                    : (!const_column->is_null_at(0) && const_column->get_bool(0));
1077
0
        if (!result) {
1078
            // filter all
1079
0
            *can_filter_all = true;
1080
0
            memset(result_filter_data, 0, rows);
1081
0
            return Status::OK();
1082
0
        }
1083
87
    } else if (const auto* nullable_column = check_and_get_column<ColumnNullable>(*filter_column)) {
1084
        // nullable(bool)
1085
54
        const ColumnPtr& nested_column = nullable_column->get_nested_column_ptr();
1086
54
        const IColumn::Filter& filter = assert_cast<const ColumnUInt8&>(*nested_column).get_data();
1087
54
        const auto* __restrict filter_data = filter.data();
1088
54
        const auto* __restrict null_map_data = nullable_column->get_null_map_data().data();
1089
1090
54
        if (accept_null) {
1091
0
            for (size_t i = 0; i < rows; ++i) {
1092
0
                result_filter_data[i] &= (null_map_data[i]) || filter_data[i];
1093
0
            }
1094
54
        } else {
1095
40.1k
            for (size_t i = 0; i < rows; ++i) {
1096
40.0k
                result_filter_data[i] &= (!null_map_data[i]) & filter_data[i];
1097
40.0k
            }
1098
54
        }
1099
1100
54
        if (!simd::contain_one(result_filter_data, rows)) {
1101
26
            *can_filter_all = true;
1102
26
            return Status::OK();
1103
26
        }
1104
54
    } else {
1105
        // bool
1106
33
        const IColumn::Filter& filter = assert_cast<const ColumnUInt8&>(*filter_column).get_data();
1107
33
        const auto* __restrict filter_data = filter.data();
1108
1109
30.0k
        for (size_t i = 0; i < rows; ++i) {
1110
30.0k
            result_filter_data[i] &= filter_data[i];
1111
30.0k
        }
1112
1113
33
        if (!simd::contain_one(result_filter_data, rows)) {
1114
0
            *can_filter_all = true;
1115
0
            return Status::OK();
1116
0
        }
1117
33
    }
1118
1119
61
    return Status::OK();
1120
87
}
1121
1122
} // namespace doris