Coverage Report

Created: 2026-07-16 21:27

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/doris/be/src/exprs/vexpr_context.cpp
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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
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
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// under the License.
17
18
#include "exprs/vexpr_context.h"
19
20
#include <algorithm>
21
#include <cstdint>
22
#include <ostream>
23
#include <string>
24
25
#include "common/cast_set.h"
26
#include "common/compiler_util.h" // IWYU pragma: keep
27
#include "common/exception.h"
28
#include "common/logging.h"
29
#include "common/status.h"
30
#include "core/block/column_numbers.h"
31
#include "core/block/column_with_type_and_name.h"
32
#include "core/block/columns_with_type_and_name.h"
33
#include "core/column/column.h"
34
#include "core/column/column_const.h"
35
#include "exprs/function_context.h"
36
#include "exprs/vexpr.h"
37
#include "runtime/runtime_state.h"
38
#include "runtime/thread_context.h"
39
#include "storage/olap_common.h"
40
#include "storage/segment/column_reader.h"
41
#include "util/simd/bits.h"
42
43
namespace doris {
44
class RowDescriptor;
45
} // namespace doris
46
47
namespace doris {
48
#include "common/compile_check_begin.h"
49
50
656k
VExprContext::~VExprContext() {
51
    // In runtime filter, only create expr context to get expr root, will not call
52
    // prepare or open, so that it is not need to call close. And call close may core
53
    // because the function context in expr is not set.
54
656k
    if (!_prepared || !_opened) {
55
142k
        return;
56
142k
    }
57
514k
    try {
58
514k
        close();
59
514k
    } catch (const Exception& e) {
60
0
        LOG(WARNING) << "Exception occurs when expr context deconstruct: " << e.to_string();
61
0
    }
62
514k
}
63
64
189k
Status VExprContext::execute(Block* block, int* result_column_id) {
65
189k
    Status st;
66
189k
    RETURN_IF_CATCH_EXCEPTION({
67
189k
        st = _root->execute(this, block, result_column_id);
68
189k
        _last_result_column_id = *result_column_id;
69
        // We should first check the status, as some expressions might incorrectly set result_column_id, even if the st is not ok.
70
189k
        if (st.ok() && _last_result_column_id != -1) {
71
189k
            block->get_by_position(*result_column_id).column->sanity_check();
72
189k
            RETURN_IF_ERROR(
73
189k
                    block->get_by_position(*result_column_id).check_type_and_column_match());
74
189k
        }
75
189k
    });
76
189k
    return st;
77
189k
}
78
79
286
Status VExprContext::execute(const Block* block, ColumnPtr& result_column) {
80
286
    Status st;
81
286
    RETURN_IF_CATCH_EXCEPTION(
82
286
            { st = _root->execute_column(this, block, nullptr, block->rows(), result_column); });
83
286
    return st;
84
286
}
85
86
19
Status VExprContext::execute(const Block* block, ColumnWithTypeAndName& result_data) {
87
19
    Status st;
88
19
    ColumnPtr result_column;
89
19
    RETURN_IF_CATCH_EXCEPTION(
90
19
            { st = _root->execute_column(this, block, nullptr, block->rows(), result_column); });
91
19
    RETURN_IF_ERROR(st);
92
19
    result_data.column = result_column;
93
19
    result_data.type = execute_type(block);
94
19
    result_data.name = _root->expr_name();
95
19
    return Status::OK();
96
19
}
97
98
55
DataTypePtr VExprContext::execute_type(const Block* block) {
99
55
    return _root->execute_type(block);
100
55
}
101
102
30
Status VExprContext::execute_const_expr(ColumnWithTypeAndName& result) {
103
30
    Status st;
104
30
    RETURN_IF_CATCH_EXCEPTION(
105
30
            { st = _root->execute_column(this, nullptr, nullptr, 1, result.column); });
106
30
    RETURN_IF_ERROR(st);
107
30
    result.type = _root->execute_type(nullptr);
108
30
    result.name = _root->expr_name();
109
30
    return Status::OK();
110
30
}
111
112
58
[[nodiscard]] const std::string& VExprContext::expr_name() const {
113
58
    return _root->expr_name();
114
58
}
115
116
0
bool VExprContext::is_blockable() const {
117
0
    return _root->is_blockable();
118
0
}
119
120
258k
Status VExprContext::prepare(RuntimeState* state, const RowDescriptor& row_desc) {
121
258k
    _prepared = true;
122
258k
    Status st;
123
258k
    RETURN_IF_CATCH_EXCEPTION({ st = _root->prepare(state, row_desc, this); });
124
258k
    return st;
125
258k
}
126
127
258k
Status VExprContext::open(RuntimeState* state) {
128
258k
    DCHECK(_prepared);
129
258k
    if (_opened) {
130
14
        return Status::OK();
131
14
    }
132
258k
    _opened = true;
133
    // Fragment-local state is only initialized for original contexts. Clones inherit the
134
    // original's fragment state and only need to have thread-local state initialized.
135
258k
    FunctionContext::FunctionStateScope scope =
136
258k
            _is_clone ? FunctionContext::THREAD_LOCAL : FunctionContext::FRAGMENT_LOCAL;
137
258k
    Status st;
138
258k
    RETURN_IF_CATCH_EXCEPTION({ st = _root->open(state, this, scope); });
139
258k
    return st;
140
258k
}
141
142
514k
void VExprContext::close() {
143
    // Sometimes expr context may not have a root, then it need not call close
144
514k
    if (_root == nullptr) {
145
0
        return;
146
0
    }
147
514k
    FunctionContext::FunctionStateScope scope =
148
514k
            _is_clone ? FunctionContext::THREAD_LOCAL : FunctionContext::FRAGMENT_LOCAL;
149
514k
    _root->close(this, scope);
150
514k
}
151
152
254k
Status VExprContext::clone(RuntimeState* state, VExprContextSPtr& new_ctx) {
153
254k
    DCHECK(_prepared) << "expr context not prepared";
154
254k
    DCHECK(_opened);
155
254k
    DCHECK(new_ctx.get() == nullptr);
156
157
254k
    new_ctx = std::make_shared<VExprContext>(_root);
158
254k
    for (auto& _fn_context : _fn_contexts) {
159
43
        new_ctx->_fn_contexts.push_back(_fn_context->clone());
160
43
    }
161
162
254k
    new_ctx->_is_clone = true;
163
254k
    new_ctx->_prepared = true;
164
254k
    new_ctx->_opened = true;
165
    // segment_v2::AnnRangeSearchRuntime should be cloned as well.
166
    // The object of segment_v2::AnnRangeSearchRuntime is not shared by threads.
167
254k
    new_ctx->_ann_range_search_runtime = this->_ann_range_search_runtime;
168
169
254k
    return _root->open(state, new_ctx.get(), FunctionContext::THREAD_LOCAL);
170
254k
}
171
172
0
void VExprContext::clone_fn_contexts(VExprContext* other) {
173
0
    for (auto& _fn_context : _fn_contexts) {
174
0
        other->_fn_contexts.push_back(_fn_context->clone());
175
0
    }
176
0
}
177
178
int VExprContext::register_function_context(RuntimeState* state, const DataTypePtr& return_type,
179
203
                                            const std::vector<DataTypePtr>& arg_types) {
180
203
    _fn_contexts.push_back(FunctionContext::create_context(state, return_type, arg_types));
181
203
    _fn_contexts.back()->set_check_overflow_for_decimal(state->check_overflow_for_decimal());
182
203
    _fn_contexts.back()->set_enable_strict_mode(state->enable_strict_mode());
183
203
    return static_cast<int>(_fn_contexts.size()) - 1;
184
203
}
185
186
30
Status VExprContext::evaluate_inverted_index(uint32_t segment_num_rows) {
187
30
    Status st;
188
30
    RETURN_IF_CATCH_EXCEPTION({ st = _root->evaluate_inverted_index(this, segment_num_rows); });
189
30
    return st;
190
30
}
191
192
ZoneMapFilterResult VExprContext::evaluate_zonemap_filter(const VExprContextSPtrs& conjuncts,
193
254
                                                          const ZoneMapEvalContext& ctx) {
194
277
    for (const auto& conjunct : conjuncts) {
195
277
        DORIS_CHECK(conjunct != nullptr);
196
277
        const auto& root = conjunct->root();
197
277
        DORIS_CHECK(root != nullptr);
198
277
        if (!root->can_evaluate_zonemap_filter()) {
199
14
            continue;
200
14
        }
201
263
        if (root->evaluate_zonemap_filter(ctx) == ZoneMapFilterResult::kNoMatch) {
202
103
            return ZoneMapFilterResult::kNoMatch;
203
103
        }
204
263
    }
205
151
    return ZoneMapFilterResult::kMayMatch;
206
254
}
207
208
ZoneMapFilterResult VExprContext::evaluate_dictionary_filter(const VExprContextSPtrs& conjuncts,
209
80
                                                             const DictionaryEvalContext& ctx) {
210
80
    for (const auto& conjunct : conjuncts) {
211
80
        DORIS_CHECK(conjunct != nullptr);
212
80
        const auto& root = conjunct->root();
213
80
        DORIS_CHECK(root != nullptr);
214
80
        if (!root->can_evaluate_dictionary_filter()) {
215
0
            continue;
216
0
        }
217
80
        if (root->evaluate_dictionary_filter(ctx) == ZoneMapFilterResult::kNoMatch) {
218
47
            return ZoneMapFilterResult::kNoMatch;
219
47
        }
220
80
    }
221
33
    return ZoneMapFilterResult::kMayMatch;
222
80
}
223
224
ZoneMapFilterResult VExprContext::evaluate_bloom_filter(const VExprContextSPtrs& conjuncts,
225
17
                                                        const BloomFilterEvalContext& ctx) {
226
17
    for (const auto& conjunct : conjuncts) {
227
17
        DORIS_CHECK(conjunct != nullptr);
228
17
        const auto& root = conjunct->root();
229
17
        DORIS_CHECK(root != nullptr);
230
17
        if (!root->can_evaluate_bloom_filter()) {
231
0
            continue;
232
0
        }
233
17
        if (root->evaluate_bloom_filter(ctx) == ZoneMapFilterResult::kNoMatch) {
234
8
            return ZoneMapFilterResult::kNoMatch;
235
8
        }
236
17
    }
237
9
    return ZoneMapFilterResult::kMayMatch;
238
17
}
239
240
18
bool VExprContext::all_expr_inverted_index_evaluated() {
241
18
    return _index_context->has_index_result_for_expr(_root.get());
242
18
}
243
244
0
Status VExprContext::filter_block(VExprContext* vexpr_ctx, Block* block) {
245
0
    if (vexpr_ctx == nullptr || block->rows() == 0) {
246
0
        return Status::OK();
247
0
    }
248
0
    ColumnPtr filter_column;
249
0
    RETURN_IF_ERROR(vexpr_ctx->execute(block, filter_column));
250
0
    size_t filter_column_id = block->columns();
251
0
    block->insert({filter_column, vexpr_ctx->execute_type(block), "filter_column"});
252
0
    vexpr_ctx->_memory_usage = filter_column->allocated_bytes();
253
0
    return Block::filter_block(block, filter_column_id, filter_column_id);
254
0
}
255
256
Status VExprContext::filter_block(const VExprContextSPtrs& expr_contexts, Block* block,
257
1.08k
                                  size_t column_to_keep) {
258
1.08k
    if (expr_contexts.empty() || block->rows() == 0) {
259
1.06k
        return Status::OK();
260
1.06k
    }
261
262
22
    ColumnNumbers columns_to_filter(column_to_keep);
263
22
    std::iota(columns_to_filter.begin(), columns_to_filter.end(), 0);
264
265
22
    return execute_conjuncts_and_filter_block(expr_contexts, block, columns_to_filter,
266
22
                                              static_cast<int>(column_to_keep));
267
1.08k
}
268
269
Status VExprContext::execute_conjuncts(const VExprContextSPtrs& ctxs,
270
                                       const std::vector<IColumn::Filter*>* filters, Block* block,
271
26
                                       IColumn::Filter* result_filter, bool* can_filter_all) {
272
26
    return execute_conjuncts(ctxs, filters, false, block, result_filter, can_filter_all);
273
26
}
274
275
Status VExprContext::execute_filter(const Block* block, uint8_t* __restrict result_filter_data,
276
242
                                    size_t rows, bool accept_null, bool* can_filter_all) {
277
242
    return _root->execute_filter(this, block, result_filter_data, rows, accept_null,
278
242
                                 can_filter_all);
279
242
}
280
281
Status VExprContext::execute_conjuncts(const VExprContextSPtrs& ctxs,
282
                                       const std::vector<IColumn::Filter*>* filters,
283
                                       bool accept_null, const Block* block,
284
56
                                       IColumn::Filter* result_filter, bool* can_filter_all) {
285
56
    size_t rows = block->rows();
286
56
    DCHECK_EQ(result_filter->size(), rows);
287
56
    *can_filter_all = false;
288
56
    auto* __restrict result_filter_data = result_filter->data();
289
80
    for (const auto& ctx : ctxs) {
290
80
        RETURN_IF_ERROR(
291
80
                ctx->execute_filter(block, result_filter_data, rows, accept_null, can_filter_all));
292
80
        if (*can_filter_all) {
293
3
            return Status::OK();
294
3
        }
295
80
    }
296
53
    if (filters != nullptr) {
297
22
        for (auto* filter : *filters) {
298
0
            auto* __restrict filter_data = filter->data();
299
0
            const size_t size = filter->size();
300
0
            for (size_t i = 0; i < size; ++i) {
301
0
                result_filter_data[i] &= filter_data[i];
302
0
            }
303
0
            if (memchr(result_filter_data, 0x1, size) == nullptr) {
304
0
                *can_filter_all = true;
305
0
                return Status::OK();
306
0
            }
307
0
        }
308
22
    }
309
53
    return Status::OK();
310
53
}
311
312
Status VExprContext::execute_conjuncts(const VExprContextSPtrs& conjuncts, const Block* block,
313
6
                                       ColumnUInt8& null_map, IColumn::Filter& filter) {
314
6
    const auto& rows = block->rows();
315
6
    if (rows == 0) {
316
0
        return Status::OK();
317
0
    }
318
6
    if (null_map.size() != rows) {
319
0
        return Status::InternalError("null_map.size()!=rows, null_map.size()={}, rows={}",
320
0
                                     null_map.size(), rows);
321
0
    }
322
323
6
    auto* final_null_map = null_map.get_data().data();
324
6
    auto* final_filter_ptr = filter.data();
325
326
6
    for (const auto& conjunct : conjuncts) {
327
4
        ColumnPtr result_column;
328
4
        RETURN_IF_ERROR(conjunct->execute(block, result_column));
329
4
        auto [filter_column, is_const] = unpack_if_const(result_column);
330
4
        const auto* nullable_column = assert_cast<const ColumnNullable*>(filter_column.get());
331
4
        if (!is_const) {
332
4
            const ColumnPtr& nested_column = nullable_column->get_nested_column_ptr();
333
4
            const IColumn::Filter& result =
334
4
                    assert_cast<const ColumnUInt8&>(*nested_column).get_data();
335
4
            const auto* __restrict filter_data = result.data();
336
4
            const auto* __restrict null_map_data = nullable_column->get_null_map_data().data();
337
4
            DCHECK_EQ(rows, nullable_column->size());
338
339
32
            for (size_t i = 0; i != rows; ++i) {
340
                // null and null    => null
341
                // null and true    => null
342
                // null and false   => false
343
28
                final_null_map[i] = (final_null_map[i] & (null_map_data[i] | filter_data[i])) |
344
28
                                    (null_map_data[i] & (final_null_map[i] | final_filter_ptr[i]));
345
28
                final_filter_ptr[i] = final_filter_ptr[i] & filter_data[i];
346
28
            }
347
4
        } else {
348
0
            bool filter_data = nullable_column->get_bool(0);
349
0
            bool null_map_data = nullable_column->is_null_at(0);
350
0
            for (size_t i = 0; i != rows; ++i) {
351
                // null and null    => null
352
                // null and true    => null
353
                // null and false   => false
354
0
                final_null_map[i] = (final_null_map[i] & (null_map_data | filter_data)) |
355
0
                                    (null_map_data & (final_null_map[i] | final_filter_ptr[i]));
356
0
                final_filter_ptr[i] = final_filter_ptr[i] & filter_data;
357
0
            }
358
0
        }
359
4
    }
360
6
    return Status::OK();
361
6
}
362
363
// TODO Performance Optimization
364
// need exception safety
365
Status VExprContext::execute_conjuncts_and_filter_block(const VExprContextSPtrs& ctxs, Block* block,
366
                                                        std::vector<uint32_t>& columns_to_filter,
367
22
                                                        int column_to_keep) {
368
22
    IColumn::Filter result_filter(block->rows(), 1);
369
22
    bool can_filter_all;
370
371
22
    _reset_memory_usage(ctxs);
372
373
22
    RETURN_IF_ERROR(
374
22
            execute_conjuncts(ctxs, nullptr, false, block, &result_filter, &can_filter_all));
375
376
    // Accumulate the usage of `result_filter` into the first context.
377
22
    if (!ctxs.empty()) {
378
22
        ctxs[0]->_memory_usage += result_filter.allocated_bytes();
379
22
    }
380
22
    if (can_filter_all) {
381
1
        block->clear_column_data(columns_to_filter);
382
21
    } else {
383
21
        try {
384
21
            Block::filter_block_internal(block, columns_to_filter, result_filter);
385
21
        } catch (const Exception& e) {
386
0
            std::string str;
387
0
            for (auto ctx : ctxs) {
388
0
                if (str.length()) {
389
0
                    str += ",";
390
0
                }
391
0
                str += ctx->root()->debug_string();
392
0
            }
393
394
0
            return Status::InternalError(
395
0
                    "filter_block_internal meet exception, exprs=[{}], exception={}", str,
396
0
                    e.what());
397
0
        }
398
21
    }
399
22
    Block::erase_useless_column(block, column_to_keep);
400
22
    return Status::OK();
401
22
}
402
403
Status VExprContext::execute_conjuncts_and_filter_block(const VExprContextSPtrs& ctxs, Block* block,
404
                                                        std::vector<uint32_t>& columns_to_filter,
405
                                                        int column_to_keep,
406
8
                                                        IColumn::Filter& filter) {
407
8
    _reset_memory_usage(ctxs);
408
8
    filter.resize_fill(block->rows(), 1);
409
8
    bool can_filter_all;
410
8
    RETURN_IF_ERROR(execute_conjuncts(ctxs, nullptr, false, block, &filter, &can_filter_all));
411
412
    // Accumulate the usage of `result_filter` into the first context.
413
8
    if (!ctxs.empty()) {
414
8
        ctxs[0]->_memory_usage += filter.allocated_bytes();
415
8
    }
416
8
    if (can_filter_all) {
417
1
        block->clear_column_data(columns_to_filter);
418
7
    } else {
419
7
        RETURN_IF_CATCH_EXCEPTION(Block::filter_block_internal(block, columns_to_filter, filter));
420
7
    }
421
422
8
    Block::erase_useless_column(block, column_to_keep);
423
8
    return Status::OK();
424
8
}
425
426
// do_projection: for some query(e.g. in MultiCastDataStreamerSourceOperator::get_block()),
427
// output_vexpr_ctxs will output the same column more than once, and if the output_block
428
// is mem-reused later, it will trigger DCHECK_EQ(d.column->use_count(), 1) failure when
429
// doing Block::clear_column_data, set do_projection to true to copy the column data to
430
// avoid this problem.
431
Status VExprContext::get_output_block_after_execute_exprs(
432
        const VExprContextSPtrs& output_vexpr_ctxs, const Block& input_block, Block* output_block,
433
5
        bool do_projection) {
434
5
    auto rows = input_block.rows();
435
5
    ColumnsWithTypeAndName result_columns;
436
5
    _reset_memory_usage(output_vexpr_ctxs);
437
438
28
    for (const auto& vexpr_ctx : output_vexpr_ctxs) {
439
28
        ColumnPtr result_column;
440
28
        RETURN_IF_ERROR(vexpr_ctx->execute(&input_block, result_column));
441
442
28
        auto type = vexpr_ctx->execute_type(&input_block);
443
28
        const auto& name = vexpr_ctx->expr_name();
444
445
28
        vexpr_ctx->_memory_usage += result_column->allocated_bytes();
446
28
        if (do_projection) {
447
0
            result_columns.emplace_back(result_column->clone_resized(rows), type, name);
448
449
28
        } else {
450
28
            result_columns.emplace_back(result_column, type, name);
451
28
        }
452
28
    }
453
5
    *output_block = {result_columns};
454
5
    return Status::OK();
455
5
}
456
457
35
void VExprContext::_reset_memory_usage(const VExprContextSPtrs& contexts) {
458
35
    std::for_each(contexts.begin(), contexts.end(),
459
58
                  [](auto&& context) { context->_memory_usage = 0; });
460
35
}
461
462
7
void VExprContext::prepare_ann_range_search(const doris::VectorSearchUserParams& params) {
463
7
    if (_root == nullptr) {
464
0
        return;
465
0
    }
466
467
7
    _root->prepare_ann_range_search(params, _ann_range_search_runtime, _suitable_for_ann_index);
468
7
    VLOG_DEBUG << fmt::format("Prepare ann range search result {}, _suitable_for_ann_index {}",
469
0
                              this->_ann_range_search_runtime.to_string(),
470
0
                              this->_suitable_for_ann_index);
471
7
    return;
472
7
}
473
474
Status VExprContext::evaluate_ann_range_search(
475
        const std::vector<std::unique_ptr<segment_v2::IndexIterator>>& cid_to_index_iterators,
476
        const std::vector<ColumnId>& idx_to_cid,
477
        const std::vector<std::unique_ptr<segment_v2::ColumnIterator>>& column_iterators,
478
        const std::unordered_map<VExprContext*, std::unordered_map<ColumnId, VExpr*>>&
479
                common_expr_to_slotref_map,
480
        size_t rows_of_segment, roaring::Roaring& row_bitmap,
481
24
        segment_v2::AnnIndexStats& ann_index_stats, bool* ann_range_search_executed) {
482
24
    if (ann_range_search_executed != nullptr) {
483
23
        *ann_range_search_executed = false;
484
23
    }
485
24
    if (_root == nullptr) {
486
0
        return Status::OK();
487
0
    }
488
489
24
    AnnRangeSearchEvaluationResult evaluation_result;
490
24
    RETURN_IF_ERROR(_root->evaluate_ann_range_search(
491
24
            _ann_range_search_runtime, cid_to_index_iterators, idx_to_cid, column_iterators,
492
24
            rows_of_segment, row_bitmap, ann_index_stats, evaluation_result));
493
494
23
    if (!evaluation_result.executed) {
495
19
        return Status::OK();
496
19
    }
497
4
    if (ann_range_search_executed != nullptr) {
498
4
        *ann_range_search_executed = true;
499
4
    }
500
501
4
    DCHECK(_index_context != nullptr);
502
4
    _index_context->set_index_result_for_expr(
503
4
            _root.get(),
504
4
            segment_v2::InvertedIndexResultBitmap(std::make_shared<roaring::Roaring>(row_bitmap),
505
4
                                                  std::make_shared<roaring::Roaring>()));
506
507
4
    if (!evaluation_result.dist_fulfilled) {
508
        // Do not perform index scan in this case.
509
2
        return Status::OK();
510
2
    }
511
512
4
    DCHECK_LT(_ann_range_search_runtime.src_col_idx, idx_to_cid.size());
513
2
    const auto src_col_idx = cast_set<int>(_ann_range_search_runtime.src_col_idx);
514
2
    const auto src_col_key = cast_set<ColumnId>(_ann_range_search_runtime.src_col_idx);
515
2
    auto slot_ref_map_it = common_expr_to_slotref_map.find(this);
516
2
    if (slot_ref_map_it == common_expr_to_slotref_map.end()) {
517
1
        return Status::OK();
518
1
    }
519
1
    auto& slot_ref_map = slot_ref_map_it->second;
520
1
    auto slot_ref_it = slot_ref_map.find(src_col_key);
521
1
    if (slot_ref_it == slot_ref_map.end()) {
522
0
        return Status::OK();
523
0
    }
524
1
    const VExpr* slot_ref_expr_addr = slot_ref_it->second;
525
1
    _index_context->set_true_for_index_status(slot_ref_expr_addr, src_col_idx);
526
527
1
    VLOG_DEBUG << fmt::format(
528
0
            "Evaluate ann range search for expr {}, src_col_idx {}, cid {}, row_bitmap "
529
0
            "cardinality {}",
530
0
            _root->debug_string(), src_col_idx, idx_to_cid[_ann_range_search_runtime.src_col_idx],
531
0
            row_bitmap.cardinality());
532
1
    return Status::OK();
533
1
}
534
535
0
uint64_t VExprContext::get_digest(uint64_t seed) const {
536
0
    return _root->get_digest(seed);
537
0
}
538
539
0
double VExprContext::execute_cost() const {
540
0
    if (_root == nullptr) {
541
        // When there is no expression root, treat the cost as a base value.
542
        // This avoids null dereferences while keeping a deterministic cost.
543
0
        return 0.0;
544
0
    }
545
0
    return _root->execute_cost();
546
0
}
547
548
#include "common/compile_check_end.h"
549
} // namespace doris