Coverage Report

Created: 2026-05-15 01:14

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/storage/segment/segment_iterator.h
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
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// distributed with this work for additional information
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// regarding copyright ownership.  The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// with the License.  You may obtain a copy of the License at
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//
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//   http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
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#pragma once
19
20
#include <gen_cpp/Exprs_types.h>
21
#include <stddef.h>
22
#include <stdint.h>
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24
#include <map>
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#include <memory>
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#include <ostream>
27
#include <roaring/roaring.hh>
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#include <set>
29
#include <string>
30
#include <unordered_map>
31
#include <utility>
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#include <vector>
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34
#include "common/status.h"
35
#include "core/block/block.h"
36
#include "core/block/column_with_type_and_name.h"
37
#include "core/block/columns_with_type_and_name.h"
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#include "core/column/column.h"
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#include "core/data_type/data_type.h"
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#include "core/data_type/primitive_type.h"
41
#include "core/field.h"
42
#include "exec/common/variant_util.h"
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#include "exprs/score_runtime.h"
44
#include "exprs/vexpr_fwd.h"
45
#include "io/fs/file_reader_writer_fwd.h"
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#include "runtime/runtime_profile.h"
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#include "storage/field.h"
48
#include "storage/index/ann/ann_topn_runtime.h"
49
#include "storage/index/index_iterator.h"
50
#include "storage/iterators.h"
51
#include "storage/olap_common.h"
52
#include "storage/predicate/block_column_predicate.h"
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#include "storage/predicate/column_predicate.h"
54
#include "storage/row_cursor.h"
55
#include "storage/schema.h"
56
#include "storage/segment/adaptive_block_size_predictor.h"
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#include "storage/segment/common.h"
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#include "storage/segment/segment.h"
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#include "util/slice.h"
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namespace doris {
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class ObjectPool;
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class MatchPredicate;
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66
class VExpr;
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class VExprContext;
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struct RowLocation;
69
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namespace segment_v2 {
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class ColumnIterator;
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class InvertedIndexIterator;
74
class RowRanges;
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class IndexIterator;
76
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struct ColumnPredicateInfo {
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    ColumnPredicateInfo() = default;
79
80
0
    std::string debug_string() const {
81
0
        std::stringstream ss;
82
0
        ss << "column_name=" << column_name << ", query_op=" << query_op
83
0
           << ", query_value=" << boost::join(query_values, ",");
84
0
        return ss.str();
85
0
    }
86
87
0
    bool is_empty() const {
88
0
        return column_name.empty() && query_values.empty() && query_op.empty();
89
0
    }
90
91
0
    bool is_equal(const ColumnPredicateInfo& column_pred_info) const {
92
0
        if (column_pred_info.column_name != column_name) {
93
0
            return false;
94
0
        }
95
0
96
0
        if (column_pred_info.query_values != query_values) {
97
0
            return false;
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0
        }
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0
100
0
        if (column_pred_info.query_op != query_op) {
101
0
            return false;
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0
        }
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0
104
0
        return true;
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0
    }
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    std::string column_name;
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    // use set to ensure the consistent order of predicate_result_sign generated by inlist.
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    std::set<std::string> query_values;
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    std::string query_op;
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    int32_t column_id;
112
};
113
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class SegmentIterator : public RowwiseIterator {
115
public:
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    SegmentIterator(std::shared_ptr<Segment> segment, SchemaSPtr schema);
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    ~SegmentIterator() override;
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    [[nodiscard]] Status init_iterators();
120
    [[nodiscard]] Status init(const StorageReadOptions& opts) override;
121
    [[nodiscard]] Status next_batch(Block* block) override;
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123
    // Get current block row locations. This function should be called
124
    // after the `next_batch` function.
125
    // Only vectorized version is supported.
126
    [[nodiscard]] Status current_block_row_locations(
127
            std::vector<RowLocation>* block_row_locations) override;
128
129
266
    const Schema& schema() const override { return *_schema; }
130
0
    Segment& segment() { return *_segment; }
131
0
    StorageReadOptions& storage_read_options() { return _opts; }
132
12
    uint64_t data_id() const override { return _segment->id(); }
133
0
    RowsetId rowset_id() const { return _segment->rowset_id(); }
134
0
    int64_t tablet_id() const { return _tablet_id; }
135
136
0
    void update_profile(RuntimeProfile* profile) override {
137
0
        _update_profile(profile, _short_cir_eval_predicate, "ShortCircuitPredicates");
138
0
        _update_profile(profile, _pre_eval_block_predicate, "PreEvaluatePredicates");
139
140
0
        if (_opts.delete_condition_predicates != nullptr) {
141
0
            std::set<std::shared_ptr<const ColumnPredicate>> delete_predicate_set;
142
0
            _opts.delete_condition_predicates->get_all_column_predicate(delete_predicate_set);
143
0
            _update_profile(profile, delete_predicate_set, "DeleteConditionPredicates");
144
0
        }
145
0
    }
146
147
0
    bool has_index_in_iterators() const {
148
0
        return std::any_of(_index_iterators.begin(), _index_iterators.end(),
149
0
                           [](const auto& iterator) { return iterator != nullptr; });
150
0
    }
151
152
private:
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    Status _next_batch_internal(Block* block);
154
155
    Status _check_output_block(Block* block);
156
157
    template <typename Container>
158
    void _update_profile(RuntimeProfile* profile, const Container& predicates,
159
0
                         const std::string& title) {
160
0
        if (predicates.empty()) {
161
0
            return;
162
0
        }
163
0
        std::string info;
164
0
        for (auto pred : predicates) {
165
0
            info += "\n" + pred->debug_string();
166
0
        }
167
0
        profile->add_info_string(title, info);
168
0
    }
Unexecuted instantiation: _ZN5doris10segment_v215SegmentIterator15_update_profileISt6vectorISt10shared_ptrINS_15ColumnPredicateEESaIS6_EEEEvPNS_14RuntimeProfileERKT_RKNSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEE
Unexecuted instantiation: _ZN5doris10segment_v215SegmentIterator15_update_profileISt3setISt10shared_ptrIKNS_15ColumnPredicateEESt4lessIS7_ESaIS7_EEEEvPNS_14RuntimeProfileERKT_RKNSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEE
169
170
    [[nodiscard]] Status _lazy_init(Block* block);
171
    [[nodiscard]] Status _init_impl(const StorageReadOptions& opts);
172
    [[nodiscard]] Status _init_return_column_iterators();
173
    [[nodiscard]] Status _init_index_iterators();
174
175
    // calculate row ranges that fall into requested key ranges using short key index
176
    [[nodiscard]] Status _get_row_ranges_by_keys();
177
    [[nodiscard]] Status _prepare_seek(const StorageReadOptions::KeyRange& key_range);
178
    [[nodiscard]] Status _lookup_ordinal(const RowCursor& key, bool is_include, rowid_t upper_bound,
179
                                         rowid_t* rowid);
180
    // lookup the ordinal of given key from short key index
181
    // the returned rowid is rowid in primary index, not the rowid encoded in primary key
182
    [[nodiscard]] Status _lookup_ordinal_from_sk_index(const RowCursor& key, bool is_include,
183
                                                       rowid_t upper_bound, rowid_t* rowid);
184
    // lookup the ordinal of given key from primary key index
185
    [[nodiscard]] Status _lookup_ordinal_from_pk_index(const RowCursor& key, bool is_include,
186
                                                       rowid_t* rowid);
187
    [[nodiscard]] Status _seek_and_peek(rowid_t rowid);
188
189
    // calculate row ranges that satisfy requested column conditions using various column index
190
    [[nodiscard]] Status _get_row_ranges_by_column_conditions();
191
    [[nodiscard]] Status _get_row_ranges_from_conditions(RowRanges* condition_row_ranges);
192
193
    [[nodiscard]] Status _apply_inverted_index();
194
    [[nodiscard]] Status _apply_inverted_index_on_column_predicate(
195
            std::shared_ptr<ColumnPredicate> pred,
196
            std::vector<std::shared_ptr<ColumnPredicate>>& remaining_predicates,
197
            bool* continue_apply);
198
    [[nodiscard]] Status _apply_ann_topn_predicate();
199
    [[nodiscard]] Status _apply_index_expr();
200
201
    bool _column_has_fulltext_index(int32_t cid);
202
    bool _column_has_ann_index(int32_t cid);
203
    bool _downgrade_without_index(Status res, bool need_remaining = false);
204
    inline bool _inverted_index_not_support_pred_type(const PredicateType& type);
205
    bool _is_literal_node(const TExprNodeType::type& node_type);
206
207
    Status _vec_init_lazy_materialization();
208
    // TODO: Fix Me
209
    // CHAR type in storage layer padding the 0 in length. But query engine need ignore the padding 0.
210
    // so segment iterator need to shrink char column before output it. only use in vec query engine.
211
    void _vec_init_char_column_id(Block* block);
212
    bool _has_char_type(const StorageField& column_desc);
213
214
5.80k
    uint32_t segment_id() const { return _segment->id(); }
215
9.39k
    uint32_t num_rows() const { return _segment->num_rows(); }
216
217
    [[nodiscard]] Status _seek_columns(const std::vector<ColumnId>& column_ids, rowid_t pos);
218
    // read `nrows` of columns specified by `column_ids` into `block` at `row_offset`.
219
    // for vectorization implementation
220
    [[nodiscard]] Status _read_columns(const std::vector<ColumnId>& column_ids,
221
                                       MutableColumns& column_block, size_t nrows);
222
    [[nodiscard]] Status _read_columns_by_index(uint32_t nrows_read_limit, uint16_t& nrows_read);
223
    void _replace_version_col_if_needed(const std::vector<ColumnId>& column_ids, size_t num_rows);
224
    Status _init_current_block(Block* block, std::vector<MutableColumnPtr>& non_pred_vector,
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                               uint32_t nrows_read_limit);
226
    uint16_t _evaluate_vectorization_predicate(uint16_t* sel_rowid_idx, uint16_t selected_size);
227
    uint16_t _evaluate_short_circuit_predicate(uint16_t* sel_rowid_idx, uint16_t selected_size);
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    Status _apply_read_limit_to_selected_rows(Block* block, uint16_t& selected_size);
229
    void _collect_runtime_filter_predicate();
230
    Status _output_non_pred_columns(Block* block);
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    [[nodiscard]] Status _read_columns_by_rowids(std::vector<ColumnId>& read_column_ids,
232
                                                 std::vector<rowid_t>& rowid_vector,
233
                                                 uint16_t* sel_rowid_idx, size_t select_size,
234
                                                 MutableColumns* mutable_columns,
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                                                 bool init_condition_cache = false);
236
237
    Status copy_column_data_by_selector(IColumn* input_col_ptr, MutableColumnPtr& output_col,
238
                                        uint16_t* sel_rowid_idx, uint16_t select_size,
239
                                        size_t batch_size);
240
241
    template <class Container>
242
    [[nodiscard]] Status _output_column_by_sel_idx(Block* block, const Container& column_ids,
243
1.66k
                                                   uint16_t* sel_rowid_idx, uint16_t select_size) {
244
1.66k
        SCOPED_RAW_TIMER(&_opts.stats->output_col_ns);
245
1.66k
        for (auto cid : column_ids) {
246
1.66k
            int block_cid = _schema_block_id_map[cid];
247
            // Only the additional deleted filter condition need to materialize column be at the end of the block
248
            // We should not to materialize the column of query engine do not need. So here just return OK.
249
            // Eg:
250
            //      `delete from table where a = 10;`
251
            //      `select b from table;`
252
            // a column only effective in segment iterator, the block from query engine only contain the b column.
253
            // so the `block_cid >= data.size()` is true
254
1.66k
            if (block_cid >= block->columns()) {
255
277
                continue;
256
277
            }
257
1.39k
            DataTypePtr storage_type =
258
1.39k
                    _segment->get_data_type_of(_schema->column(cid)->get_desc(), _opts);
259
1.39k
            if (storage_type && !storage_type->equals(*block->get_by_position(block_cid).type)) {
260
                // Do additional cast
261
0
                MutableColumnPtr tmp = storage_type->create_column();
262
0
                RETURN_IF_ERROR(copy_column_data_by_selector(_current_return_columns[cid].get(),
263
0
                                                             tmp, sel_rowid_idx, select_size,
264
0
                                                             _opts.block_row_max));
265
0
                RETURN_IF_ERROR(variant_util::cast_column(
266
0
                        {tmp->get_ptr(), storage_type, ""}, block->get_by_position(block_cid).type,
267
0
                        &block->get_by_position(block_cid).column));
268
1.39k
            } else {
269
1.39k
                MutableColumnPtr output_column =
270
1.39k
                        block->get_by_position(block_cid).column->assume_mutable();
271
1.39k
                RETURN_IF_ERROR(copy_column_data_by_selector(_current_return_columns[cid].get(),
272
1.39k
                                                             output_column, sel_rowid_idx,
273
1.39k
                                                             select_size, _opts.block_row_max));
274
1.39k
            }
275
1.39k
        }
276
1.66k
        return Status::OK();
277
1.66k
    }
278
279
    bool _can_evaluated_by_vectorized(std::shared_ptr<ColumnPredicate> predicate);
280
281
    [[nodiscard]] Status _extract_common_expr_columns(const VExprSPtr& expr);
282
    // same with _extract_common_expr_columns, but only extract columns that can be used for index
283
    [[nodiscard]] Status _execute_common_expr(uint16_t* sel_rowid_idx, uint16_t& selected_size,
284
                                              Block* block);
285
    Status _process_common_expr(uint16_t* sel_rowid_idx, uint16_t& selected_size, Block* block);
286
287
    uint16_t _evaluate_common_expr_filter(uint16_t* sel_rowid_idx, uint16_t selected_size,
288
                                          const IColumn::Filter& filter);
289
290
    // Dictionary column should do something to initial.
291
    void _convert_dict_code_for_predicate_if_necessary();
292
293
    void _convert_dict_code_for_predicate_if_necessary_impl(
294
            std::shared_ptr<ColumnPredicate> predicate);
295
296
    bool _check_apply_by_inverted_index(std::shared_ptr<ColumnPredicate> pred);
297
298
    void _output_index_result_column(const std::vector<VExprContext*>& expr_ctxs,
299
                                     uint16_t* sel_rowid_idx, uint16_t select_size, Block* block);
300
301
    bool _need_read_data(ColumnId cid);
302
    bool _prune_column(ColumnId cid, MutableColumnPtr& column, bool fill_defaults,
303
                       size_t num_of_defaults);
304
305
    Status _construct_compound_expr_context();
306
307
    int _compare_short_key_with_seek_block(const RowCursor& key,
308
0
                                           const std::vector<ColumnId>& col_ids) {
309
0
        for (auto cid : col_ids) {
310
0
            auto ord = key.field(cid) <=> (*_seek_block[cid])[0];
311
0
            if (ord != std::strong_ordering::equal) {
312
0
                return ord < 0 ? -1 : 1;
313
0
            }
314
0
        }
315
0
        return 0;
316
0
    }
317
318
    Status _convert_to_expected_type(const std::vector<ColumnId>& col_ids);
319
320
    bool _no_need_read_key_data(ColumnId cid, MutableColumnPtr& column, size_t nrows_read);
321
322
    bool _has_delete_predicate(ColumnId cid);
323
324
    bool _can_opt_limit_reads();
325
326
    void _initialize_predicate_results();
327
    bool _check_all_conditions_passed_inverted_index_for_column(ColumnId cid,
328
                                                                bool default_return = false);
329
330
    void _calculate_expr_in_remaining_conjunct_root();
331
332
    Status _process_eof(Block* block);
333
334
    Status _process_column_predicate();
335
336
    void _fill_column_nothing();
337
338
    Status _process_columns(const std::vector<ColumnId>& column_ids, Block* block);
339
340
    // Initialize virtual columns in the block, set all virtual columns in the block to ColumnNothing
341
    void _init_virtual_columns(Block* block);
342
    // Fallback logic for virtual column materialization, materializing all unmaterialized virtual columns through expressions
343
    Status _materialization_of_virtual_column(Block* block);
344
    void _prepare_score_column_materialization();
345
346
    void _init_row_bitmap_by_condition_cache();
347
348
    void _init_segment_prefetchers();
349
350
    class BitmapRangeIterator;
351
    class BackwardBitmapRangeIterator;
352
353
    std::shared_ptr<Segment> _segment;
354
    // read schema from scanner
355
    SchemaSPtr _schema;
356
    // storage type schema related to _schema, since column in segment may be different with type in _schema
357
    std::vector<IndexFieldNameAndTypePair> _storage_name_and_type;
358
    // vector idx -> column iterarator
359
    std::vector<std::unique_ptr<ColumnIterator>> _column_iterators;
360
    std::vector<std::unique_ptr<IndexIterator>> _index_iterators;
361
    // after init(), `_row_bitmap` contains all rowid to scan
362
    roaring::Roaring _row_bitmap;
363
    // an iterator for `_row_bitmap` that can be used to extract row range to scan
364
    std::unique_ptr<BitmapRangeIterator> _range_iter;
365
    // the next rowid to read
366
    rowid_t _cur_rowid;
367
    // members related to lazy materialization read
368
    // --------------------------------------------
369
    // whether lazy materialization read should be used.
370
    bool _lazy_materialization_read;
371
    // columns to read after predicate evaluation and remaining expr execute
372
    std::vector<ColumnId> _non_predicate_columns;
373
    std::set<ColumnId> _common_expr_columns;
374
    // remember the rowids we've read for the current row block.
375
    // could be a local variable of next_batch(), kept here to reuse vector memory
376
    std::vector<rowid_t> _block_rowids;
377
    bool _is_need_vec_eval = false;
378
    bool _is_need_short_eval = false;
379
    bool _is_need_expr_eval = false;
380
381
    // fields for vectorization execution
382
    std::vector<ColumnId>
383
            _vec_pred_column_ids; // keep columnId of columns for vectorized predicate evaluation
384
    std::vector<ColumnId>
385
            _short_cir_pred_column_ids; // keep columnId of columns for short circuit predicate evaluation
386
    std::vector<bool> _is_pred_column; // columns hold _init segmentIter
387
    std::map<uint32_t, bool> _need_read_data_indices;
388
    std::vector<bool> _is_common_expr_column;
389
    MutableColumns _current_return_columns;
390
    std::vector<std::shared_ptr<ColumnPredicate>> _pre_eval_block_predicate;
391
    std::vector<std::shared_ptr<ColumnPredicate>> _short_cir_eval_predicate;
392
    std::vector<uint32_t> _delete_range_column_ids;
393
    std::vector<uint32_t> _delete_bloom_filter_column_ids;
394
    // when lazy materialization is enabled, segmentIter need to read data at least twice
395
    // first, read predicate columns by various index
396
    // second, read non-predicate columns
397
    // so we need a field to stand for columns first time to read
398
    std::vector<ColumnId> _predicate_column_ids;
399
    std::vector<ColumnId> _common_expr_column_ids;
400
    // TODO: Should use std::vector<size_t>
401
    std::vector<ColumnId> _columns_to_filter;
402
    std::vector<bool> _converted_column_ids;
403
    // TODO: Should use std::vector<size_t>
404
    std::vector<int> _schema_block_id_map; // map from schema column id to column idx in Block
405
406
    // the actual init process is delayed to the first call to next_batch()
407
    bool _lazy_inited;
408
    bool _inited;
409
410
    StorageReadOptions _opts;
411
    // Adaptive batch size predictor; null when the feature is disabled.
412
    std::unique_ptr<AdaptiveBlockSizePredictor> _block_size_predictor;
413
    // Build the AdaptiveBlockSizePredictor for this segment based on segment footer
414
    // metadata for the projected output columns. Returns nullptr if the feature is
415
    // disabled or the byte budget is non-positive.
416
    std::unique_ptr<AdaptiveBlockSizePredictor> _make_block_size_predictor() const;
417
    // Snapshot of _opts.block_row_max at init time; used as the hard upper bound so that
418
    // dynamic adjustments never exceed the capacity of pre-allocated buffers.
419
    uint32_t _initial_block_row_max = 0;
420
    // make a copy of `_opts.column_predicates` in order to make local changes
421
    std::vector<std::shared_ptr<ColumnPredicate>> _col_predicates;
422
    VExprContextSPtrs _common_expr_ctxs_push_down;
423
    bool _enable_common_expr_pushdown = false;
424
    std::vector<VExprSPtr> _remaining_conjunct_roots;
425
    std::set<ColumnId> _not_apply_index_pred;
426
427
    // row schema of the key to seek
428
    // only used in `_get_row_ranges_by_keys`
429
    std::unique_ptr<Schema> _seek_schema;
430
    // used to binary search the rowid for a given key
431
    // only used in `_get_row_ranges_by_keys`
432
    MutableColumns _seek_block;
433
434
    io::FileReaderSPtr _file_reader;
435
436
    // char_type or array<char> type columns cid
437
    std::vector<size_t> _char_type_idx;
438
    std::vector<bool> _is_char_type;
439
440
    // used for compaction, record selectd rowids of current batch
441
    uint16_t _selected_size;
442
    std::vector<uint16_t> _sel_rowid_idx;
443
444
    // Rows already produced by this iterator. Used together with
445
    // _opts.read_limit to compute the remaining per-batch budget.
446
    size_t _rows_returned = 0;
447
448
    std::unique_ptr<ObjectPool> _pool;
449
450
    // used to collect filter information.
451
    std::vector<std::shared_ptr<ColumnPredicate>> _filter_info_id;
452
    bool _record_rowids = false;
453
    int64_t _tablet_id = 0;
454
    std::set<int32_t> _output_columns;
455
456
    std::vector<uint8_t> _ret_flags;
457
458
    /*
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    * column and column_predicates on it.
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    * a boolean value to indicate whether the column has been read by the index.
461
    */
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    std::unordered_map<ColumnId, std::unordered_map<std::shared_ptr<ColumnPredicate>, bool>>
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            _column_predicate_index_exec_status;
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    /*
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    * column and common expr on it.
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    * a boolean value to indicate whether the column has been read by the index.
468
    */
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    std::unordered_map<ColumnId, std::unordered_map<const VExpr*, bool>>
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            _common_expr_index_exec_status;
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    /*
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    * common expr context to slotref map
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    * slot ref map is used to get slot ref expr by using column id.
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    */
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    std::unordered_map<VExprContext*, std::unordered_map<ColumnId, VExpr*>>
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            _common_expr_to_slotref_map;
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    ScoreRuntimeSPtr _score_runtime;
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    std::shared_ptr<segment_v2::AnnTopNRuntime> _ann_topn_runtime;
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    // cid to virtual column expr
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    std::map<ColumnId, VExprContextSPtr> _virtual_column_exprs;
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    std::map<ColumnId, size_t> _vir_cid_to_idx_in_block;
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    IndexQueryContextPtr _index_query_context;
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    // key is column uid, value is the sparse column cache
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    std::unordered_map<int32_t, PathToBinaryColumnCacheUPtr> _variant_sparse_column_cache;
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    bool _find_condition_cache = false;
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    std::shared_ptr<std::vector<bool>> _condition_cache;
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    static constexpr int CONDITION_CACHE_OFFSET = 2048;
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};
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} // namespace segment_v2
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} // namespace doris