/root/doris/be/src/exprs/vexpr_context.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 "exprs/vexpr_context.h" |
19 | | |
20 | | #include <algorithm> |
21 | | #include <cstdint> |
22 | | #include <string> |
23 | | |
24 | | #include "common/compiler_util.h" // IWYU pragma: keep |
25 | | #include "common/exception.h" |
26 | | #include "common/status.h" |
27 | | #include "core/block/column_numbers.h" |
28 | | #include "core/block/column_with_type_and_name.h" |
29 | | #include "core/block/columns_with_type_and_name.h" |
30 | | #include "core/column/column.h" |
31 | | #include "core/column/column_const.h" |
32 | | #include "exprs/function_context.h" |
33 | | #include "exprs/vexpr.h" |
34 | | #include "runtime/runtime_state.h" |
35 | | #include "runtime/thread_context.h" |
36 | | #include "storage/olap_common.h" |
37 | | #include "storage/segment/column_reader.h" |
38 | | #include "util/simd/bits.h" |
39 | | |
40 | | namespace doris { |
41 | | class RowDescriptor; |
42 | | } // namespace doris |
43 | | |
44 | | namespace doris { |
45 | | #include "common/compile_check_begin.h" |
46 | | |
47 | 655k | VExprContext::~VExprContext() { |
48 | | // In runtime filter, only create expr context to get expr root, will not call |
49 | | // prepare or open, so that it is not need to call close. And call close may core |
50 | | // because the function context in expr is not set. |
51 | 655k | if (!_prepared || !_opened) { |
52 | 141k | return; |
53 | 141k | } |
54 | 513k | try { |
55 | 513k | close(); |
56 | 513k | } catch (const Exception& e) { |
57 | 0 | LOG(WARNING) << "Exception occurs when expr context deconstruct: " << e.to_string(); |
58 | 0 | } |
59 | 513k | } |
60 | | |
61 | 189k | Status VExprContext::execute(Block* block, int* result_column_id) { |
62 | 189k | Status st; |
63 | 189k | RETURN_IF_CATCH_EXCEPTION({ |
64 | 189k | st = _root->execute(this, block, result_column_id); |
65 | 189k | _last_result_column_id = *result_column_id; |
66 | | // We should first check the status, as some expressions might incorrectly set result_column_id, even if the st is not ok. |
67 | 189k | if (st.ok() && _last_result_column_id != -1) { |
68 | 189k | block->get_by_position(*result_column_id).column->sanity_check(); |
69 | 189k | RETURN_IF_ERROR( |
70 | 189k | block->get_by_position(*result_column_id).check_type_and_column_match()); |
71 | 189k | } |
72 | 189k | }); |
73 | 189k | return st; |
74 | 189k | } |
75 | | |
76 | 262 | Status VExprContext::execute(const Block* block, ColumnPtr& result_column) { |
77 | 262 | Status st; |
78 | 262 | RETURN_IF_CATCH_EXCEPTION( |
79 | 262 | { st = _root->execute_column(this, block, nullptr, block->rows(), result_column); }); |
80 | 262 | return st; |
81 | 262 | } |
82 | | |
83 | 23 | Status VExprContext::execute(const Block* block, ColumnWithTypeAndName& result_data) { |
84 | 23 | Status st; |
85 | 23 | ColumnPtr result_column; |
86 | 23 | RETURN_IF_CATCH_EXCEPTION( |
87 | 23 | { st = _root->execute_column(this, block, nullptr, block->rows(), result_column); }); |
88 | 23 | RETURN_IF_ERROR(st); |
89 | 23 | result_data.column = result_column; |
90 | 23 | result_data.type = execute_type(block); |
91 | 23 | result_data.name = _root->expr_name(); |
92 | 23 | return Status::OK(); |
93 | 23 | } |
94 | | |
95 | 31 | DataTypePtr VExprContext::execute_type(const Block* block) { |
96 | 31 | return _root->execute_type(block); |
97 | 31 | } |
98 | | |
99 | 30 | Status VExprContext::execute_const_expr(ColumnWithTypeAndName& result) { |
100 | 30 | Status st; |
101 | 30 | RETURN_IF_CATCH_EXCEPTION( |
102 | 30 | { st = _root->execute_column(this, nullptr, nullptr, 1, result.column); }); |
103 | 30 | RETURN_IF_ERROR(st); |
104 | 30 | result.type = _root->execute_type(nullptr); |
105 | 30 | result.name = _root->expr_name(); |
106 | 30 | return Status::OK(); |
107 | 30 | } |
108 | | |
109 | 8 | [[nodiscard]] const std::string& VExprContext::expr_name() const { |
110 | 8 | return _root->expr_name(); |
111 | 8 | } |
112 | | |
113 | 0 | bool VExprContext::is_blockable() const { |
114 | 0 | return _root->is_blockable(); |
115 | 0 | } |
116 | | |
117 | 258k | Status VExprContext::prepare(RuntimeState* state, const RowDescriptor& row_desc) { |
118 | 258k | _prepared = true; |
119 | 258k | Status st; |
120 | 258k | RETURN_IF_CATCH_EXCEPTION({ st = _root->prepare(state, row_desc, this); }); |
121 | 258k | return st; |
122 | 258k | } |
123 | | |
124 | 258k | Status VExprContext::open(RuntimeState* state) { |
125 | 258k | DCHECK(_prepared); |
126 | 258k | if (_opened) { |
127 | 6 | return Status::OK(); |
128 | 6 | } |
129 | 258k | _opened = true; |
130 | | // Fragment-local state is only initialized for original contexts. Clones inherit the |
131 | | // original's fragment state and only need to have thread-local state initialized. |
132 | 258k | FunctionContext::FunctionStateScope scope = |
133 | 258k | _is_clone ? FunctionContext::THREAD_LOCAL : FunctionContext::FRAGMENT_LOCAL; |
134 | 258k | Status st; |
135 | 258k | RETURN_IF_CATCH_EXCEPTION({ st = _root->open(state, this, scope); }); |
136 | 258k | return st; |
137 | 258k | } |
138 | | |
139 | 513k | void VExprContext::close() { |
140 | | // Sometimes expr context may not have a root, then it need not call close |
141 | 513k | if (_root == nullptr) { |
142 | 0 | return; |
143 | 0 | } |
144 | 513k | FunctionContext::FunctionStateScope scope = |
145 | 513k | _is_clone ? FunctionContext::THREAD_LOCAL : FunctionContext::FRAGMENT_LOCAL; |
146 | 513k | _root->close(this, scope); |
147 | 513k | } |
148 | | |
149 | 254k | Status VExprContext::clone(RuntimeState* state, VExprContextSPtr& new_ctx) { |
150 | 254k | DCHECK(_prepared) << "expr context not prepared"; |
151 | 254k | DCHECK(_opened); |
152 | 254k | DCHECK(new_ctx.get() == nullptr); |
153 | | |
154 | 254k | new_ctx = std::make_shared<VExprContext>(_root); |
155 | 254k | for (auto& _fn_context : _fn_contexts) { |
156 | 16 | new_ctx->_fn_contexts.push_back(_fn_context->clone()); |
157 | 16 | } |
158 | | |
159 | 254k | new_ctx->_is_clone = true; |
160 | 254k | new_ctx->_prepared = true; |
161 | 254k | new_ctx->_opened = true; |
162 | | // segment_v2::AnnRangeSearchRuntime should be cloned as well. |
163 | | // The object of segment_v2::AnnRangeSearchRuntime is not shared by threads. |
164 | 254k | new_ctx->_ann_range_search_runtime = this->_ann_range_search_runtime; |
165 | | |
166 | 254k | return _root->open(state, new_ctx.get(), FunctionContext::THREAD_LOCAL); |
167 | 254k | } |
168 | | |
169 | 0 | void VExprContext::clone_fn_contexts(VExprContext* other) { |
170 | 0 | for (auto& _fn_context : _fn_contexts) { |
171 | 0 | other->_fn_contexts.push_back(_fn_context->clone()); |
172 | 0 | } |
173 | 0 | } |
174 | | |
175 | | int VExprContext::register_function_context(RuntimeState* state, const DataTypePtr& return_type, |
176 | 83 | const std::vector<DataTypePtr>& arg_types) { |
177 | 83 | _fn_contexts.push_back(FunctionContext::create_context(state, return_type, arg_types)); |
178 | 83 | _fn_contexts.back()->set_check_overflow_for_decimal(state->check_overflow_for_decimal()); |
179 | 83 | _fn_contexts.back()->set_enable_strict_mode(state->enable_strict_mode()); |
180 | 83 | return static_cast<int>(_fn_contexts.size()) - 1; |
181 | 83 | } |
182 | | |
183 | 0 | Status VExprContext::evaluate_inverted_index(uint32_t segment_num_rows) { |
184 | 0 | Status st; |
185 | 0 | RETURN_IF_CATCH_EXCEPTION({ st = _root->evaluate_inverted_index(this, segment_num_rows); }); |
186 | 0 | return st; |
187 | 0 | } |
188 | | |
189 | 0 | bool VExprContext::all_expr_inverted_index_evaluated() { |
190 | 0 | return _index_context->has_index_result_for_expr(_root.get()); |
191 | 0 | } |
192 | | |
193 | 0 | Status VExprContext::filter_block(VExprContext* vexpr_ctx, Block* block) { |
194 | 0 | if (vexpr_ctx == nullptr || block->rows() == 0) { |
195 | 0 | return Status::OK(); |
196 | 0 | } |
197 | 0 | ColumnPtr filter_column; |
198 | 0 | RETURN_IF_ERROR(vexpr_ctx->execute(block, filter_column)); |
199 | 0 | size_t filter_column_id = block->columns(); |
200 | 0 | block->insert({filter_column, vexpr_ctx->execute_type(block), "filter_column"}); |
201 | 0 | vexpr_ctx->_memory_usage = filter_column->allocated_bytes(); |
202 | 0 | return Block::filter_block(block, filter_column_id, filter_column_id); |
203 | 0 | } |
204 | | |
205 | | Status VExprContext::filter_block(const VExprContextSPtrs& expr_contexts, Block* block, |
206 | 163 | size_t column_to_keep) { |
207 | 163 | if (expr_contexts.empty() || block->rows() == 0) { |
208 | 161 | return Status::OK(); |
209 | 161 | } |
210 | | |
211 | 2 | ColumnNumbers columns_to_filter(column_to_keep); |
212 | 2 | std::iota(columns_to_filter.begin(), columns_to_filter.end(), 0); |
213 | | |
214 | 2 | return execute_conjuncts_and_filter_block(expr_contexts, block, columns_to_filter, |
215 | 2 | static_cast<int>(column_to_keep)); |
216 | 163 | } |
217 | | |
218 | | Status VExprContext::execute_conjuncts(const VExprContextSPtrs& ctxs, |
219 | | const std::vector<IColumn::Filter*>* filters, Block* block, |
220 | 2 | IColumn::Filter* result_filter, bool* can_filter_all) { |
221 | 2 | return execute_conjuncts(ctxs, filters, false, block, result_filter, can_filter_all); |
222 | 2 | } |
223 | | |
224 | | Status VExprContext::execute_filter(const Block* block, uint8_t* __restrict result_filter_data, |
225 | 8 | size_t rows, bool accept_null, bool* can_filter_all) { |
226 | 8 | return _root->execute_filter(this, block, result_filter_data, rows, accept_null, |
227 | 8 | can_filter_all); |
228 | 8 | } |
229 | | |
230 | | Status VExprContext::execute_conjuncts(const VExprContextSPtrs& ctxs, |
231 | | const std::vector<IColumn::Filter*>* filters, |
232 | | bool accept_null, const Block* block, |
233 | 6 | IColumn::Filter* result_filter, bool* can_filter_all) { |
234 | 6 | size_t rows = block->rows(); |
235 | 6 | DCHECK_EQ(result_filter->size(), rows); |
236 | 6 | *can_filter_all = false; |
237 | 6 | auto* __restrict result_filter_data = result_filter->data(); |
238 | 8 | for (const auto& ctx : ctxs) { |
239 | 8 | RETURN_IF_ERROR( |
240 | 8 | ctx->execute_filter(block, result_filter_data, rows, accept_null, can_filter_all)); |
241 | 8 | if (*can_filter_all) { |
242 | 2 | return Status::OK(); |
243 | 2 | } |
244 | 8 | } |
245 | 4 | if (filters != nullptr) { |
246 | 0 | for (auto* filter : *filters) { |
247 | 0 | auto* __restrict filter_data = filter->data(); |
248 | 0 | const size_t size = filter->size(); |
249 | 0 | for (size_t i = 0; i < size; ++i) { |
250 | 0 | result_filter_data[i] &= filter_data[i]; |
251 | 0 | } |
252 | 0 | if (memchr(result_filter_data, 0x1, size) == nullptr) { |
253 | 0 | *can_filter_all = true; |
254 | 0 | return Status::OK(); |
255 | 0 | } |
256 | 0 | } |
257 | 0 | } |
258 | 4 | return Status::OK(); |
259 | 4 | } |
260 | | |
261 | | Status VExprContext::execute_conjuncts(const VExprContextSPtrs& conjuncts, const Block* block, |
262 | 6 | ColumnUInt8& null_map, IColumn::Filter& filter) { |
263 | 6 | const auto& rows = block->rows(); |
264 | 6 | if (rows == 0) { |
265 | 0 | return Status::OK(); |
266 | 0 | } |
267 | 6 | if (null_map.size() != rows) { |
268 | 0 | return Status::InternalError("null_map.size()!=rows, null_map.size()={}, rows={}", |
269 | 0 | null_map.size(), rows); |
270 | 0 | } |
271 | | |
272 | 6 | auto* final_null_map = null_map.get_data().data(); |
273 | 6 | auto* final_filter_ptr = filter.data(); |
274 | | |
275 | 6 | for (const auto& conjunct : conjuncts) { |
276 | 4 | ColumnPtr result_column; |
277 | 4 | RETURN_IF_ERROR(conjunct->execute(block, result_column)); |
278 | 4 | auto [filter_column, is_const] = unpack_if_const(result_column); |
279 | 4 | const auto* nullable_column = assert_cast<const ColumnNullable*>(filter_column.get()); |
280 | 4 | if (!is_const) { |
281 | 4 | const ColumnPtr& nested_column = nullable_column->get_nested_column_ptr(); |
282 | 4 | const IColumn::Filter& result = |
283 | 4 | assert_cast<const ColumnUInt8&>(*nested_column).get_data(); |
284 | 4 | const auto* __restrict filter_data = result.data(); |
285 | 4 | const auto* __restrict null_map_data = nullable_column->get_null_map_data().data(); |
286 | 4 | DCHECK_EQ(rows, nullable_column->size()); |
287 | | |
288 | 32 | for (size_t i = 0; i != rows; ++i) { |
289 | | // null and null => null |
290 | | // null and true => null |
291 | | // null and false => false |
292 | 28 | final_null_map[i] = (final_null_map[i] & (null_map_data[i] | filter_data[i])) | |
293 | 28 | (null_map_data[i] & (final_null_map[i] | final_filter_ptr[i])); |
294 | 28 | final_filter_ptr[i] = final_filter_ptr[i] & filter_data[i]; |
295 | 28 | } |
296 | 4 | } else { |
297 | 0 | bool filter_data = nullable_column->get_bool(0); |
298 | 0 | bool null_map_data = nullable_column->is_null_at(0); |
299 | 0 | for (size_t i = 0; i != rows; ++i) { |
300 | | // null and null => null |
301 | | // null and true => null |
302 | | // null and false => false |
303 | 0 | final_null_map[i] = (final_null_map[i] & (null_map_data | filter_data)) | |
304 | 0 | (null_map_data & (final_null_map[i] | final_filter_ptr[i])); |
305 | 0 | final_filter_ptr[i] = final_filter_ptr[i] & filter_data; |
306 | 0 | } |
307 | 0 | } |
308 | 4 | } |
309 | 6 | return Status::OK(); |
310 | 6 | } |
311 | | |
312 | | // TODO Performance Optimization |
313 | | // need exception safety |
314 | | Status VExprContext::execute_conjuncts_and_filter_block(const VExprContextSPtrs& ctxs, Block* block, |
315 | | std::vector<uint32_t>& columns_to_filter, |
316 | 2 | int column_to_keep) { |
317 | 2 | IColumn::Filter result_filter(block->rows(), 1); |
318 | 2 | bool can_filter_all; |
319 | | |
320 | 2 | _reset_memory_usage(ctxs); |
321 | | |
322 | 2 | RETURN_IF_ERROR( |
323 | 2 | execute_conjuncts(ctxs, nullptr, false, block, &result_filter, &can_filter_all)); |
324 | | |
325 | | // Accumulate the usage of `result_filter` into the first context. |
326 | 2 | if (!ctxs.empty()) { |
327 | 2 | ctxs[0]->_memory_usage += result_filter.allocated_bytes(); |
328 | 2 | } |
329 | 2 | if (can_filter_all) { |
330 | 3 | for (auto& col : columns_to_filter) { |
331 | 3 | auto& column = block->get_by_position(col).column; |
332 | 3 | if (column->is_exclusive()) { |
333 | 0 | column->assume_mutable()->clear(); |
334 | 3 | } else { |
335 | 3 | column = column->clone_empty(); |
336 | 3 | } |
337 | 3 | } |
338 | 1 | } else { |
339 | 1 | try { |
340 | 1 | Block::filter_block_internal(block, columns_to_filter, result_filter); |
341 | 1 | } catch (const Exception& e) { |
342 | 0 | std::string str; |
343 | 0 | for (auto ctx : ctxs) { |
344 | 0 | if (str.length()) { |
345 | 0 | str += ","; |
346 | 0 | } |
347 | 0 | str += ctx->root()->debug_string(); |
348 | 0 | } |
349 | |
|
350 | 0 | return Status::InternalError( |
351 | 0 | "filter_block_internal meet exception, exprs=[{}], exception={}", str, |
352 | 0 | e.what()); |
353 | 0 | } |
354 | 1 | } |
355 | 2 | Block::erase_useless_column(block, column_to_keep); |
356 | 2 | return Status::OK(); |
357 | 2 | } |
358 | | |
359 | | Status VExprContext::execute_conjuncts_and_filter_block(const VExprContextSPtrs& ctxs, Block* block, |
360 | | std::vector<uint32_t>& columns_to_filter, |
361 | | int column_to_keep, |
362 | 2 | IColumn::Filter& filter) { |
363 | 2 | _reset_memory_usage(ctxs); |
364 | 2 | filter.resize_fill(block->rows(), 1); |
365 | 2 | bool can_filter_all; |
366 | 2 | RETURN_IF_ERROR(execute_conjuncts(ctxs, nullptr, false, block, &filter, &can_filter_all)); |
367 | | |
368 | | // Accumulate the usage of `result_filter` into the first context. |
369 | 2 | if (!ctxs.empty()) { |
370 | 2 | ctxs[0]->_memory_usage += filter.allocated_bytes(); |
371 | 2 | } |
372 | 2 | if (can_filter_all) { |
373 | 3 | for (auto& col : columns_to_filter) { |
374 | 3 | auto& column = block->get_by_position(col).column; |
375 | 3 | if (column->is_exclusive()) { |
376 | 3 | column->assume_mutable()->clear(); |
377 | 3 | } else { |
378 | 0 | column = column->clone_empty(); |
379 | 0 | } |
380 | 3 | } |
381 | 1 | } else { |
382 | 1 | RETURN_IF_CATCH_EXCEPTION(Block::filter_block_internal(block, columns_to_filter, filter)); |
383 | 1 | } |
384 | | |
385 | 2 | Block::erase_useless_column(block, column_to_keep); |
386 | 2 | return Status::OK(); |
387 | 2 | } |
388 | | |
389 | | // do_projection: for some query(e.g. in MultiCastDataStreamerSourceOperator::get_block()), |
390 | | // output_vexpr_ctxs will output the same column more than once, and if the output_block |
391 | | // is mem-reused later, it will trigger DCHECK_EQ(d.column->use_count(), 1) failure when |
392 | | // doing Block::clear_column_data, set do_projection to true to copy the column data to |
393 | | // avoid this problem. |
394 | | Status VExprContext::get_output_block_after_execute_exprs( |
395 | | const VExprContextSPtrs& output_vexpr_ctxs, const Block& input_block, Block* output_block, |
396 | 1 | bool do_projection) { |
397 | 1 | auto rows = input_block.rows(); |
398 | 1 | ColumnsWithTypeAndName result_columns; |
399 | 1 | _reset_memory_usage(output_vexpr_ctxs); |
400 | | |
401 | 8 | for (const auto& vexpr_ctx : output_vexpr_ctxs) { |
402 | 8 | ColumnPtr result_column; |
403 | 8 | RETURN_IF_ERROR(vexpr_ctx->execute(&input_block, result_column)); |
404 | | |
405 | 8 | auto type = vexpr_ctx->execute_type(&input_block); |
406 | 8 | const auto& name = vexpr_ctx->expr_name(); |
407 | | |
408 | 8 | vexpr_ctx->_memory_usage += result_column->allocated_bytes(); |
409 | 8 | if (do_projection) { |
410 | 0 | result_columns.emplace_back(result_column->clone_resized(rows), type, name); |
411 | |
|
412 | 8 | } else { |
413 | 8 | result_columns.emplace_back(result_column, type, name); |
414 | 8 | } |
415 | 8 | } |
416 | 1 | *output_block = {result_columns}; |
417 | 1 | return Status::OK(); |
418 | 1 | } |
419 | | |
420 | 5 | void VExprContext::_reset_memory_usage(const VExprContextSPtrs& contexts) { |
421 | 5 | std::for_each(contexts.begin(), contexts.end(), |
422 | 12 | [](auto&& context) { context->_memory_usage = 0; }); |
423 | 5 | } |
424 | | |
425 | 5 | void VExprContext::prepare_ann_range_search(const doris::VectorSearchUserParams& params) { |
426 | 5 | if (_root == nullptr) { |
427 | 0 | return; |
428 | 0 | } |
429 | | |
430 | 5 | _root->prepare_ann_range_search(params, _ann_range_search_runtime, _suitable_for_ann_index); |
431 | 5 | VLOG_DEBUG << fmt::format("Prepare ann range search result {}, _suitable_for_ann_index {}", |
432 | 0 | this->_ann_range_search_runtime.to_string(), |
433 | 0 | this->_suitable_for_ann_index); |
434 | 5 | return; |
435 | 5 | } |
436 | | |
437 | | Status VExprContext::evaluate_ann_range_search( |
438 | | const std::vector<std::unique_ptr<segment_v2::IndexIterator>>& cid_to_index_iterators, |
439 | | const std::vector<ColumnId>& idx_to_cid, |
440 | | const std::vector<std::unique_ptr<segment_v2::ColumnIterator>>& column_iterators, |
441 | | const std::unordered_map<VExprContext*, std::unordered_map<ColumnId, VExpr*>>& |
442 | | common_expr_to_slotref_map, |
443 | 3 | roaring::Roaring& row_bitmap, segment_v2::AnnIndexStats& ann_index_stats) { |
444 | 3 | if (_root == nullptr) { |
445 | 0 | return Status::OK(); |
446 | 0 | } |
447 | | |
448 | 3 | RETURN_IF_ERROR(_root->evaluate_ann_range_search( |
449 | 3 | _ann_range_search_runtime, cid_to_index_iterators, idx_to_cid, column_iterators, |
450 | 3 | row_bitmap, ann_index_stats)); |
451 | | |
452 | 2 | if (!_root->ann_range_search_executedd()) { |
453 | 0 | return Status::OK(); |
454 | 0 | } |
455 | | |
456 | 2 | if (!_root->ann_dist_is_fulfilled()) { |
457 | | // Do not perform index scan in this case. |
458 | 1 | return Status::OK(); |
459 | 1 | } |
460 | | |
461 | 1 | auto src_col_idx = _ann_range_search_runtime.src_col_idx; |
462 | 1 | auto slot_ref_map_it = common_expr_to_slotref_map.find(this); |
463 | 1 | if (slot_ref_map_it == common_expr_to_slotref_map.end()) { |
464 | 1 | return Status::OK(); |
465 | 1 | } |
466 | 0 | auto& slot_ref_map = slot_ref_map_it->second; |
467 | 0 | ColumnId cid = idx_to_cid[src_col_idx]; |
468 | 0 | if (slot_ref_map.find(cid) == slot_ref_map.end()) { |
469 | 0 | return Status::OK(); |
470 | 0 | } |
471 | 0 | const VExpr* slot_ref_expr_addr = slot_ref_map.find(cid)->second; |
472 | 0 | _index_context->set_true_for_index_status(slot_ref_expr_addr, idx_to_cid[cid]); |
473 | |
|
474 | 0 | VLOG_DEBUG << fmt::format( |
475 | 0 | "Evaluate ann range search for expr {}, src_col_idx {}, cid {}, row_bitmap " |
476 | 0 | "cardinality {}", |
477 | 0 | _root->debug_string(), src_col_idx, cid, row_bitmap.cardinality()); |
478 | 0 | return Status::OK(); |
479 | 0 | } |
480 | | |
481 | 0 | uint64_t VExprContext::get_digest(uint64_t seed) const { |
482 | 0 | return _root->get_digest(seed); |
483 | 0 | } |
484 | | |
485 | 0 | double VExprContext::execute_cost() const { |
486 | 0 | if (_root == nullptr) { |
487 | | // When there is no expression root, treat the cost as a base value. |
488 | | // This avoids null dereferences while keeping a deterministic cost. |
489 | 0 | return 0.0; |
490 | 0 | } |
491 | 0 | return _root->execute_cost(); |
492 | 0 | } |
493 | | |
494 | | #include "common/compile_check_end.h" |
495 | | } // namespace doris |