Coverage Report

Created: 2026-07-27 03:48

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/format_v2/table_reader.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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18
#pragma once
19
20
#include <bvar/status.h>
21
22
#include <algorithm>
23
#include <exception>
24
#include <map>
25
#include <memory>
26
#include <optional>
27
#include <string>
28
#include <string_view>
29
#include <utility>
30
#include <vector>
31
32
#include "common/cast_set.h"
33
#include "common/exception.h"
34
#include "common/logging.h"
35
#include "common/status.h"
36
#include "core/assert_cast.h"
37
#include "core/block/block.h"
38
#include "core/column/column_array.h"
39
#include "core/column/column_const.h"
40
#include "core/column/column_map.h"
41
#include "core/column/column_nullable.h"
42
#include "core/column/column_struct.h"
43
#include "core/column/column_vector.h"
44
#include "core/data_type/data_type.h"
45
#include "core/data_type/data_type_array.h"
46
#include "core/data_type/data_type_map.h"
47
#include "core/data_type/data_type_nullable.h"
48
#include "core/data_type/data_type_number.h"
49
#include "core/data_type/data_type_string.h"
50
#include "core/data_type/data_type_struct.h"
51
#include "core/field.h"
52
#include "exec/common/stringop_substring.h"
53
#include "exprs/vexpr.h"
54
#include "exprs/vexpr_context.h"
55
#include "exprs/vexpr_fwd.h"
56
#include "exprs/vslot_ref.h"
57
#include "format/table/deletion_vector.h"
58
#include "format_v2/column_data.h"
59
#include "format_v2/column_mapper.h"
60
#include "format_v2/expr/cast.h"
61
#include "format_v2/expr/delete_predicate.h"
62
#include "format_v2/file_reader.h"
63
#include "format_v2/parquet/reader/column_reader.h"
64
#include "format_v2/schema_projection.h"
65
#include "gen_cpp/PlanNodes_types.h"
66
#include "io/io_common.h"
67
#include "runtime/descriptors.h"
68
#include "storage/segment/condition_cache.h"
69
70
namespace doris {
71
class Block;
72
struct DeleteFileDesc;
73
class RuntimeState;
74
} // namespace doris
75
76
namespace doris::format {
77
78
using DeleteRows = std::vector<int64_t>;
79
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// Row-level predicates on table/global schema. They are rewritten to file-local expressions when
81
// possible, and remain the source of row-level filtering after localization.
82
struct TableFilter {
83
    VExprContextSPtr conjunct;
84
    std::vector<GlobalIndex> global_indices;
85
};
86
87
struct ScanTask {
88
456
    virtual ~ScanTask() = default;
89
90
    std::unique_ptr<io::FileDescription> data_file;
91
};
92
93
struct ProjectedColumnBuildContext {
94
    const TFileScanRangeParams* scan_params = nullptr;
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    const TFileRangeDesc* range = nullptr;
96
    RuntimeState* runtime_state = nullptr;
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    const SlotDescriptor* slot_desc = nullptr;
98
    std::optional<ColumnDefinition> schema_column = std::nullopt;
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    size_t next_file_column_idx = 0;
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};
101
102
struct ReadProfile {
103
    RuntimeProfile::Counter* total_timer = nullptr;
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    RuntimeProfile::Counter* init_timer = nullptr;
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    RuntimeProfile::Counter* num_delete_files = nullptr;
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    RuntimeProfile::Counter* num_delete_rows = nullptr;
107
    RuntimeProfile::Counter* parse_delete_file_time = nullptr;
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    RuntimeProfile::Counter* decoded_dv_cache_hit_count = nullptr;
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    RuntimeProfile::Counter* decoded_dv_cache_miss_count = nullptr;
110
    RuntimeProfile::Counter* dv_file_cache_hit_count = nullptr;
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    RuntimeProfile::Counter* dv_file_cache_miss_count = nullptr;
112
    RuntimeProfile::Counter* dv_file_cache_peer_read_count = nullptr;
113
    RuntimeProfile::Counter* exec_timer = nullptr;
114
    RuntimeProfile::Counter* prepare_split_timer = nullptr;
115
    RuntimeProfile::Counter* finalize_timer = nullptr;
116
    RuntimeProfile::Counter* create_reader_timer = nullptr;
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    RuntimeProfile::Counter* pushdown_agg_timer = nullptr;
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    RuntimeProfile::Counter* open_reader_timer = nullptr;
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    RuntimeProfile::Counter* runtime_filter_partition_prune_timer = nullptr;
120
    RuntimeProfile::Counter* runtime_filter_partition_pruned_range_counter = nullptr;
121
    RuntimeProfile::Counter* close_timer = nullptr;
122
    RuntimeProfile::Counter* file_reader_total_timer = nullptr;
123
    RuntimeProfile::Counter* file_reader_init_timer = nullptr;
124
    RuntimeProfile::Counter* file_reader_schema_timer = nullptr;
125
    RuntimeProfile::Counter* file_reader_mapper_timer = nullptr;
126
    RuntimeProfile::Counter* file_reader_open_timer = nullptr;
127
    RuntimeProfile::Counter* file_reader_get_block_timer = nullptr;
128
    RuntimeProfile::Counter* file_reader_aggregate_timer = nullptr;
129
    RuntimeProfile::Counter* file_reader_close_timer = nullptr;
130
};
131
132
struct TableReadOptions {
133
    // Columns need to be read from file and output by table reader. They are all in table/global
134
    // schema semantics.
135
    const std::vector<ColumnDefinition> projected_columns;
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    // All complex conjuncts from scan operator
137
    const VExprContextSPtrs conjuncts;
138
    // File format of the underlying data files, needed for reader initialization and reader-level
139
    // filter pushdown.
140
    const FileFormat format;
141
    TFileScanRangeParams* scan_params;
142
    std::shared_ptr<io::IOContext> io_ctx;
143
    RuntimeState* runtime_state;
144
    RuntimeProfile* scanner_profile;
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    // File formats without complete self-describing metadata, such as CSV, Text, and JSON, need
146
    // the FE-planned physical file slots to build their file-local schema and deserialize values.
147
    const std::vector<SlotDescriptor*>* file_slot_descs = nullptr;
148
    // Push-down aggregate type.
149
    const TPushAggOp::type push_down_agg_type = TPushAggOp::type::NONE;
150
    // Table/global indices of explicit COUNT arguments. nullopt means an old FE did not send the
151
    // semantic argument field, while an explicit empty vector means COUNT(*)/COUNT(1). Keeping
152
    // those states separate prevents a rolling-upgrade plan from being reinterpreted by a new BE.
153
    const std::optional<std::vector<GlobalIndex>> push_down_count_columns = std::nullopt;
154
    // Initial digest of predicates available during scanner open. Scanner-driven splits override it
155
    // with SplitReadOptions::condition_cache_digest after collecting late-arrival runtime filters.
156
    // A zero digest disables condition cache.
157
    uint64_t condition_cache_digest = 0;
158
};
159
160
struct SplitReadOptions {
161
    // Split-level information for reader initialization, which may include file path, partition values, delete file info, etc. The content is table format specific and opaque to table reader base class; it's the responsibility of the concrete table reader implementation to parse necessary information for reader initialization and filter pushdown.
162
    std::map<std::string, Field> partition_values;
163
    // Latest scanner conjuncts rewritten to table/global column indices. Runtime filters may
164
    // arrive after TableReader::init(), so scanner-driven splits replace the initial snapshot.
165
    // nullopt preserves the initial snapshot for standalone TableReader callers.
166
    std::optional<VExprContextSPtrs> conjuncts = std::nullopt;
167
    // Independent clones used for partition pruning because evaluation prepares and opens them
168
    // against a synthetic partition block before the file reader opens its row-level conjuncts.
169
    VExprContextSPtrs partition_prune_conjuncts;
170
    // Table-level COUNT may emit one metadata-derived batch and resume on a later scheduler turn.
171
    // It is safe only after every runtime filter assigned to the scanner has arrived; otherwise a
172
    // filter could arrive after synthetic rows have already been returned and those rows cannot be
173
    // retracted. Standalone TableReader callers have no scanner runtime-filter lifecycle.
174
    bool all_runtime_filters_applied = true;
175
    // Digest for the exact scanner conjunct snapshot attached to this split. FileScannerV2 rebuilds
176
    // it after collecting late-arrival RFs, so different RF payloads cannot share a cache entry. A
177
    // zero value explicitly disables condition cache for this split.
178
    std::optional<uint64_t> condition_cache_digest;
179
    ShardedKVCache* cache = nullptr;
180
    TFileRangeDesc current_range;
181
    FileFormat current_split_format = FileFormat::PARQUET;
182
    std::optional<GlobalRowIdContext> global_rowid_context;
183
};
184
185
// Base class for table-level readers.
186
// This layer owns common table-level orchestration, such as split iteration, dynamic partition
187
// pruning, delete handling and conversion from file-local blocks to table-schema blocks. Concrete
188
// table-format readers only need to provide format-specific hooks for opening readers and parsing
189
// split metadata.
190
class TableReader {
191
public:
192
532
    virtual ~TableReader() = default;
193
194
    // Initialize common runtime options for the table reader. Subclasses may call this from their
195
    // own init(options); table-format schema and split metadata are provided later per split.
196
    virtual Status init(TableReadOptions&& options);
197
198
    // FileScannerV2 adjusts this before each get_block() using an adaptive bytes-per-row estimate.
199
    // Store it here as well as forwarding to the current reader so newly opened split readers start
200
    // with the latest predicted batch size.
201
1.02k
    virtual void set_batch_size(size_t batch_size) {
202
1.02k
        _batch_size = std::max<size_t>(1, batch_size);
203
1.02k
        if (_data_reader.reader != nullptr) {
204
406
            _data_reader.reader->set_batch_size(_batch_size);
205
406
        }
206
1.02k
    }
207
208
#ifdef BE_TEST
209
    size_t TEST_batch_size() const { return _batch_size; }
210
    void TEST_set_condition_cache_hit_count(int64_t hits) { _condition_cache_hit_count = hits; }
211
    bool TEST_current_data_file_is_immutable() const {
212
        DORIS_CHECK(_current_task != nullptr);
213
        DORIS_CHECK(_current_task->data_file != nullptr);
214
        DORIS_CHECK(_current_file_description.has_value());
215
        DORIS_CHECK(_current_task->data_file->is_immutable ==
216
                    _current_file_description->is_immutable);
217
        return _current_task->data_file->is_immutable;
218
    }
219
#endif
220
221
    // Prepare for reading a new split/task.
222
    // 1. Pass a new split/task to reader, which will be used in subsequent open_reader() to initialize the underlying file reader.
223
    // 2. Parse delete predicates from split/task information, which will be used for later dynamic filtering and delete handling.
224
    virtual Status prepare_split(const SplitReadOptions& options);
225
226
377
    virtual bool current_split_pruned() const { return _current_split_pruned; }
227
1.13k
    virtual bool current_split_uses_metadata_count() const {
228
1.13k
        return _current_split_uses_metadata_count;
229
1.13k
    }
230
231
    // Discard the active split after the caller decides an error is ignorable, for example a
232
    // stale external-table file listing that returns NOT_FOUND. The next prepare_split() must start
233
    // with no concrete reader or split-local state left from the failed split.
234
1
    virtual Status abort_split() {
235
        // Ignored open failures still spend time closing partially initialized readers. Include
236
        // that recovery path in the common lifecycle profile so NOT_FOUND cannot become invisible.
237
1
        SCOPED_TIMER(_profile.total_timer);
238
1
        SCOPED_TIMER(_profile.close_timer);
239
1
        if (_data_reader.reader != nullptr) {
240
1
            RETURN_IF_ERROR(close_current_reader());
241
1
        } else {
242
0
            _current_task.reset();
243
0
            _current_file_description.reset();
244
0
        }
245
1
        _delete_rows = nullptr;
246
1
        _remaining_table_level_count = -1;
247
1
        _remaining_file_level_count = -1;
248
1
        _current_split_uses_metadata_count = false;
249
1
        _current_split_pruned = false;
250
1
        return Status::OK();
251
1
    }
252
253
    // Public entry point for reading a table-schema block. The base class opens the current reader,
254
    // advances across EOF, and closes exhausted readers. Subclasses provide protected hooks for
255
    // table-format-specific behavior.
256
876
    virtual Status get_block(Block* block, bool* eos) {
257
876
        SCOPED_TIMER(_profile.total_timer);
258
876
        SCOPED_TIMER(_profile.exec_timer);
259
876
        DORIS_CHECK(block->columns() == _projected_columns.size());
260
876
        block->clear_column_data(_projected_columns.size());
261
262
1.21k
        while (true) {
263
1.21k
            if (*eos) {
264
0
                return Status::OK();
265
0
            }
266
1.21k
            if (_io_ctx != nullptr && _io_ctx->should_stop) {
267
0
                *eos = true;
268
0
                return Status::OK();
269
0
            }
270
1.21k
            if (!_data_reader.reader) {
271
769
                if (_is_table_level_count_active()) {
272
6
                    RETURN_IF_ERROR(_read_table_level_count(block, eos));
273
6
                    return Status::OK();
274
6
                }
275
763
                if (_is_file_level_count_active()) {
276
4
                    RETURN_IF_ERROR(_read_file_level_count(block, eos));
277
4
                    return Status::OK();
278
4
                }
279
759
                RETURN_IF_ERROR(create_next_reader(eos));
280
758
                if (!_data_reader.reader) {
281
337
                    DCHECK(*eos);
282
337
                    return Status::OK();
283
337
                }
284
758
            }
285
286
            // Materialize a reduced row set for upper aggregate operators when aggregate
287
            // pushdown can be applied. This is not the final aggregate result: COUNT emits
288
            // `count` default rows for the upper COUNT(*), and MIN/MAX emits two rows containing
289
            // file-level min/max values for the upper MIN/MAX.
290
863
            if (!_aggregate_pushdown_tried) {
291
421
                SCOPED_TIMER(_profile.pushdown_agg_timer);
292
421
                bool pushed_down = false;
293
421
                const auto status = _try_materialize_aggregate_pushdown_rows(block, &pushed_down);
294
421
                if (!status.ok()) {
295
1
                    if (_io_ctx != nullptr && _io_ctx->should_stop &&
296
1
                        status.is<ErrorCode::END_OF_FILE>()) {
297
1
                        *eos = true;
298
1
                        return Status::OK();
299
1
                    }
300
0
                    return status;
301
1
                }
302
420
                if (pushed_down) {
303
11
                    return Status::OK();
304
11
                }
305
420
            }
306
307
851
            bool current_eof = false;
308
851
            _data_reader.block_template.clear_column_data(
309
851
                    cast_set<int64_t>(_data_reader.file_block_layout.size()));
310
851
            size_t current_rows = 0;
311
851
            {
312
851
                SCOPED_TIMER(_profile.file_reader_total_timer);
313
851
                SCOPED_TIMER(_profile.file_reader_get_block_timer);
314
851
                RETURN_IF_ERROR(_data_reader.reader->get_block(&_data_reader.block_template,
315
851
                                                               &current_rows, &current_eof));
316
851
            }
317
851
            const bool stopped_during_read = _io_ctx != nullptr && _io_ctx->should_stop;
318
851
            if (current_rows == 0) {
319
335
                if (current_eof) {
320
335
                    _current_reader_reached_eof = !stopped_during_read;
321
335
                    RETURN_IF_ERROR(close_current_reader());
322
335
                }
323
335
                continue;
324
335
            }
325
851
            DCHECK_EQ(_data_reader.block_template.columns(), _data_reader.file_block_layout.size())
326
0
                    << _data_reader.block_template.dump_structure();
327
516
#ifndef NDEBUG
328
516
            RETURN_IF_ERROR(_check_file_block_columns("after file reader get_block", current_rows));
329
516
#endif
330
516
            DORIS_CHECK(block->columns() == _data_reader.column_mapper->mappings().size());
331
516
            RETURN_IF_ERROR(finalize_chunk(block, current_rows));
332
515
#ifndef NDEBUG
333
515
            RETURN_IF_ERROR(
334
515
                    _check_table_block_columns("after finalize_chunk", block, current_rows));
335
515
#endif
336
515
            if (current_eof) {
337
19
                _current_reader_reached_eof = !stopped_during_read;
338
19
                RETURN_IF_ERROR(close_current_reader());
339
19
            }
340
515
            return Status::OK();
341
515
        }
342
876
    }
343
344
    // Close the table reader and the currently active file reader. Subclasses that hold additional
345
    // table-format resources should override this and call TableReader::close() first.
346
430
    virtual Status close() {
347
430
        SCOPED_TIMER(_profile.total_timer);
348
430
        SCOPED_TIMER(_profile.close_timer);
349
430
        if (_data_reader.reader) {
350
54
            RETURN_IF_ERROR(close_current_reader());
351
54
        }
352
430
        _current_task.reset();
353
430
        _current_file_description.reset();
354
430
        _remaining_table_level_count = -1;
355
430
        _remaining_file_level_count = -1;
356
430
        _current_split_uses_metadata_count = false;
357
430
        return Status::OK();
358
430
    }
359
360
612
    virtual int64_t condition_cache_hit_count() const { return _condition_cache_hit_count; }
361
362
    virtual std::string debug_string() const;
363
364
    virtual Status annotate_projected_column(const TFileScanSlotInfo& slot_info,
365
                                             ProjectedColumnBuildContext* context,
366
                                             ColumnDefinition* column) const;
367
368
302
    virtual Status validate_projected_columns(const ProjectedColumnBuildContext& context) const {
369
302
        (void)context;
370
302
        return Status::OK();
371
302
    }
372
373
protected:
374
    // TableReader keeps the active file description both in the scan task and separately for
375
    // creating the physical reader. Table-format readers must update both copies when their
376
    // snapshot protocol guarantees that a file path is never overwritten with different bytes.
377
    // This guarantee lets readers safely build cache keys without mtime; it must not be used for
378
    // ordinary Hive/TVF files whose paths may be overwritten in place.
379
68
    void mark_current_data_file_immutable() {
380
68
        DORIS_CHECK(_current_task != nullptr);
381
68
        DORIS_CHECK(_current_task->data_file != nullptr);
382
68
        DORIS_CHECK(_current_file_description.has_value());
383
68
        _current_task->data_file->is_immutable = true;
384
68
        _current_file_description->is_immutable = true;
385
68
    }
386
387
    std::optional<ColumnDefinition> _find_current_table_column_by_field_id(int32_t field_id,
388
                                                                           DataTypePtr type) const;
389
390
    // Parse deletion vector information from table format specific file description.
391
    virtual Status _parse_deletion_vector_file(const TTableFormatFileDesc& t_desc,
392
391
                                               DeleteFileDesc* desc, bool* has_delete_file) {
393
391
        *has_delete_file = false;
394
391
        return Status::OK();
395
391
    }
396
397
    // Advance to the next reader. This closes the current reader first and then opens the next
398
    // concrete reader. Subclasses should not duplicate this loop.
399
    Status create_next_reader(bool* eos);
400
    virtual Status create_file_reader(std::unique_ptr<FileReader>* reader);
401
369
    virtual TableColumnMappingMode mapping_mode() const { return TableColumnMappingMode::BY_NAME; }
402
372
    virtual void configure_mapper_options(TableColumnMapperOptions*) const {}
403
419
    virtual Status annotate_file_schema(std::vector<ColumnDefinition>* file_schema) {
404
419
        DORIS_CHECK(file_schema != nullptr);
405
419
        return Status::OK();
406
419
    }
407
408
    // Open the concrete reader for the current split/task and build the file-local scan request.
409
422
    virtual Status open_reader() {
410
422
        SCOPED_TIMER(_profile.open_reader_timer);
411
        // 1. Get file schema and create column mapping.
412
422
        std::vector<ColumnDefinition> file_schema;
413
422
        {
414
422
            SCOPED_TIMER(_profile.file_reader_total_timer);
415
422
            SCOPED_TIMER(_profile.file_reader_schema_timer);
416
422
            RETURN_IF_ERROR(_data_reader.reader->get_schema(&file_schema));
417
422
        }
418
        // For Paimon/Hudi, FE can provide field ids through `history_schema_info`. Annotate the
419
        // file schema before column mapping when the table format maps columns by field id.
420
422
        RETURN_IF_ERROR(annotate_file_schema(&file_schema));
421
422
        _data_reader.file_schema = file_schema;
422
422
        _mapper_options.mode = mapping_mode();
423
422
        configure_mapper_options(&_mapper_options);
424
425
422
        {
426
422
            SCOPED_TIMER(_profile.file_reader_total_timer);
427
422
            SCOPED_TIMER(_profile.file_reader_mapper_timer);
428
422
            _data_reader.column_mapper = _data_reader.reader->create_column_mapper(_mapper_options);
429
422
        }
430
422
        DORIS_CHECK(_data_reader.column_mapper != nullptr);
431
422
        RETURN_IF_ERROR(_data_reader.column_mapper->create_mapping(_projected_columns,
432
422
                                                                   _partition_values, file_schema));
433
422
        DORIS_CHECK(_data_reader.column_mapper->mappings().size() == _projected_columns.size());
434
435
        // 2. Build table filters based on conjuncts and column predicates.
436
422
        RETURN_IF_ERROR(_build_table_filters_from_conjuncts());
437
438
        // 3. Create file scan request based on column mapping and table filters, then open file
439
        // reader with the request. File scan request carries row-level expression filters and
440
        // file-level pruning hints. Only expression filters decide returned rows.
441
422
        auto file_request = std::make_shared<FileScanRequest>();
442
422
        RETURN_IF_ERROR(_data_reader.column_mapper->create_scan_request(
443
422
                _table_filters, _projected_columns, file_request.get(), _runtime_state));
444
422
        bool constant_filter_pruned_split = false;
445
422
        RETURN_IF_ERROR(_evaluate_constant_filters(&constant_filter_pruned_split));
446
422
        if (constant_filter_pruned_split) {
447
1
            RETURN_IF_ERROR(close_current_reader());
448
1
            return Status::OK();
449
1
        }
450
        // COUNT(*) has no semantic column argument, but Nereids retains a minimum-width scan slot
451
        // so the scan node still has an output tuple. Record only the current non-predicate file
452
        // columns before table-format hooks add row-position or equality-delete dependencies. This
453
        // marker is independent of aggregate eligibility: with position deletes, for example,
454
        // metadata COUNT must fall back to reading rows, but an arbitrary unsupported TIME_MILLIS
455
        // placeholder still must not be validated or decoded merely to carry the surviving count.
456
421
        if (_push_down_agg_type == TPushAggOp::type::COUNT &&
457
421
            _push_down_count_columns.has_value() && _push_down_count_columns->empty()) {
458
11
            file_request->count_star_placeholder_columns.reserve(
459
11
                    file_request->non_predicate_columns.size());
460
11
            for (const auto& column : file_request->non_predicate_columns) {
461
8
                file_request->count_star_placeholder_columns.push_back(column.column_id());
462
8
            }
463
11
        }
464
421
        RETURN_IF_ERROR(customize_file_scan_request(file_request.get()));
465
421
        RETURN_IF_ERROR(_open_local_filter_exprs(*file_request));
466
421
        _data_reader.file_block_layout.clear();
467
421
        _data_reader.block_template.clear();
468
421
        _data_reader.file_block_layout.resize(file_request->local_positions.size());
469
470
        // 4. Build file block layout from file schema and column mapping. The layout describes
471
        // the block returned by file reader before table-column materialization.
472
2.03k
        for (const auto& [file_column_id, block_position] : file_request->local_positions) {
473
2.03k
            DORIS_CHECK(block_position.value() < _data_reader.file_block_layout.size());
474
2.03k
            const auto* field = _find_column_definition(_data_reader.file_schema, file_column_id);
475
2.03k
            DORIS_CHECK(field != nullptr);
476
477
2.03k
            ColumnDefinition projected_field;
478
2.03k
            {
479
2.03k
                auto it = std::find_if(
480
2.03k
                        file_request->non_predicate_columns.begin(),
481
2.03k
                        file_request->non_predicate_columns.end(),
482
13.0k
                        [&](const LocalColumnIndex& p) { return p.column_id() == file_column_id; });
483
2.03k
                if (it != file_request->non_predicate_columns.end()) {
484
1.96k
                    RETURN_IF_ERROR(project_column_definition(*field, *it, &projected_field));
485
1.96k
                }
486
2.03k
            }
487
2.03k
            {
488
2.03k
                auto it = std::find_if(
489
2.03k
                        file_request->predicate_columns.begin(),
490
2.03k
                        file_request->predicate_columns.end(),
491
2.03k
                        [&](const LocalColumnIndex& p) { return p.column_id() == file_column_id; });
492
2.03k
                if (it != file_request->predicate_columns.end()) {
493
63
                    RETURN_IF_ERROR(project_column_definition(*field, *it, &projected_field));
494
63
                }
495
2.03k
            }
496
2.03k
            _data_reader.file_block_layout[block_position.value()] = {
497
2.03k
                    .file_column_id = file_column_id,
498
2.03k
                    .name = projected_field.name,
499
2.03k
                    .type = projected_field.type,
500
2.03k
            };
501
2.03k
            DORIS_CHECK(_data_reader.file_block_layout[block_position.value()].type != nullptr);
502
2.03k
        }
503
504
        // 5. Prepare block template from file block layout. The block template stores the block
505
        // returned by file reader before table-column materialization.
506
421
        _data_reader.block_template.reserve(_data_reader.file_block_layout.size());
507
2.03k
        for (const auto& column : _data_reader.file_block_layout) {
508
2.03k
            _data_reader.block_template.insert(
509
2.03k
                    {column.type->create_column(), column.type, column.name});
510
2.03k
        }
511
421
        if (VLOG_DEBUG_IS_ON) {
512
0
            VLOG_DEBUG << "TableReader debug: " << debug_string();
513
0
        }
514
421
        RETURN_IF_ERROR(_open_mapping_exprs());
515
421
        {
516
421
            SCOPED_TIMER(_profile.file_reader_total_timer);
517
421
            SCOPED_TIMER(_profile.file_reader_open_timer);
518
421
            RETURN_IF_ERROR(_data_reader.reader->open(file_request));
519
421
        }
520
421
        RETURN_IF_ERROR(_init_reader_condition_cache(*file_request));
521
421
        return Status::OK();
522
421
    }
523
524
    Status _build_table_filters_from_conjuncts();
525
    Status _evaluate_partition_prune_conjuncts(const VExprContextSPtrs& conjuncts,
526
                                               bool* can_filter_all);
527
    static bool _is_safe_to_pre_execute(const VExprContextSPtr& conjunct);
528
    Status _build_partition_prune_block(Block* block) const;
529
    Status _open_local_filter_exprs(const FileScanRequest& file_request);
530
    Status _init_reader_condition_cache(const FileScanRequest& file_request);
531
    void _finalize_reader_condition_cache();
532
    bool _should_enable_condition_cache(const FileScanRequest& file_request) const;
533
534
422
    Status _evaluate_constant_filters(bool* can_filter_all) {
535
422
        DORIS_CHECK(can_filter_all != nullptr);
536
422
        DORIS_CHECK_LE(_constant_pruning_safe_filter_count, _table_filters.size());
537
422
        *can_filter_all = false;
538
        // The bound was derived from the original `_conjuncts` order, which includes slotless
539
        // expressions omitted from `_table_filters`. Iterating only this prefix therefore cannot
540
        // skip an unsafe row-level predicate and pre-execute a later constant predicate.
541
459
        for (size_t i = 0; i < _constant_pruning_safe_filter_count; ++i) {
542
38
            const auto& table_filter = _table_filters[i];
543
38
            if (table_filter.conjunct == nullptr) {
544
0
                continue;
545
0
            }
546
38
            DORIS_CHECK(_is_safe_to_pre_execute(table_filter.conjunct));
547
            // RuntimeFilterExpr does not implement execute_column_impl(); it is evaluated by the
548
            // row-level filter path through execute_filter(). Constant split pruning uses
549
            // VExprContext::execute() on a one-row synthetic block, so runtime filters must not be
550
            // pre-executed here even when their referenced slot maps to a constant value.
551
38
            if (table_filter.conjunct->root()->is_rf_wrapper() ||
552
38
                !_table_filter_has_only_constant_entries(table_filter)) {
553
36
                continue;
554
36
            }
555
2
            Block eval_block;
556
2
            RETURN_IF_ERROR(_build_constant_filter_block(table_filter, &eval_block));
557
2
            RowDescriptor row_desc;
558
2
            RETURN_IF_ERROR(table_filter.conjunct->prepare(_runtime_state, row_desc));
559
2
            RETURN_IF_ERROR(table_filter.conjunct->open(_runtime_state));
560
2
            int result_column_id = -1;
561
2
            RETURN_IF_ERROR(table_filter.conjunct->execute(&eval_block, &result_column_id));
562
2
            DORIS_CHECK(result_column_id >= 0);
563
2
            if (_filter_result_filters_all(eval_block.get_by_position(result_column_id).column)) {
564
1
                *can_filter_all = true;
565
1
                return Status::OK();
566
1
            }
567
2
        }
568
421
        return Status::OK();
569
422
    }
570
571
33
    bool _table_filter_has_only_constant_entries(const TableFilter& table_filter) const {
572
33
        const auto& filter_entries = _data_reader.column_mapper->filter_entries();
573
33
        for (const auto global_index : table_filter.global_indices) {
574
33
            const auto entry_it = filter_entries.find(global_index);
575
33
            if (entry_it == filter_entries.end() || !entry_it->second.is_constant()) {
576
31
                return false;
577
31
            }
578
33
        }
579
2
        return !table_filter.global_indices.empty();
580
33
    }
581
582
2
    Status _build_constant_filter_block(const TableFilter& table_filter, Block* eval_block) {
583
2
        DORIS_CHECK(eval_block != nullptr);
584
2
        eval_block->clear();
585
2
        const auto& mappings = _data_reader.column_mapper->mappings();
586
2
        const auto& filter_entries = _data_reader.column_mapper->filter_entries();
587
2
        DORIS_CHECK(mappings.size() == _projected_columns.size());
588
4
        for (size_t column_idx = 0; column_idx < mappings.size(); ++column_idx) {
589
2
            const auto global_index = GlobalIndex(column_idx);
590
2
            const auto& mapping = mappings[column_idx];
591
2
            const auto entry_it = filter_entries.find(global_index);
592
2
            const bool referenced_by_filter =
593
2
                    std::find(table_filter.global_indices.begin(),
594
2
                              table_filter.global_indices.end(),
595
2
                              global_index) != table_filter.global_indices.end();
596
2
            if (referenced_by_filter && entry_it != filter_entries.end() &&
597
2
                entry_it->second.is_constant()) {
598
2
                ColumnPtr constant_column;
599
2
                RETURN_IF_ERROR(_materialize_constant_filter_column(
600
2
                        entry_it->second.constant_index(), &constant_column));
601
2
                eval_block->insert({std::move(constant_column), mapping.table_type,
602
2
                                    mapping.table_column_name});
603
2
            } else {
604
0
                eval_block->insert({mapping.table_type->create_column_const_with_default_value(1),
605
0
                                    mapping.table_type, mapping.table_column_name});
606
0
            }
607
2
        }
608
2
        return Status::OK();
609
2
    }
610
611
2
    Status _materialize_constant_filter_column(ConstantIndex constant_index, ColumnPtr* column) {
612
2
        DORIS_CHECK(column != nullptr);
613
2
        const auto& constant_entry = _data_reader.column_mapper->constant_map().get(constant_index);
614
2
        DORIS_CHECK(constant_entry.expr != nullptr);
615
2
        DORIS_CHECK(constant_entry.type != nullptr);
616
2
        RowDescriptor row_desc;
617
2
        RETURN_IF_ERROR(constant_entry.expr->prepare(_runtime_state, row_desc));
618
2
        RETURN_IF_ERROR(constant_entry.expr->open(_runtime_state));
619
2
        Block eval_block;
620
2
        eval_block.insert({constant_entry.type->create_column_const_with_default_value(1),
621
2
                           constant_entry.type, "__table_reader_constant_filter"});
622
2
        int result_column_id = -1;
623
2
        RETURN_IF_ERROR(constant_entry.expr->execute(&eval_block, &result_column_id));
624
2
        DORIS_CHECK(result_column_id >= 0);
625
2
        *column = eval_block.get_by_position(result_column_id).column;
626
2
        DORIS_CHECK((*column)->size() == 1);
627
2
        return Status::OK();
628
2
    }
629
630
2
    static bool _filter_result_filters_all(const ColumnPtr& filter_column) {
631
2
        DORIS_CHECK(filter_column.get() != nullptr);
632
2
        DORIS_CHECK(filter_column->size() == 1);
633
2
        return !filter_column->get_bool(0);
634
2
    }
635
636
422
    virtual Status customize_file_scan_request(FileScanRequest* file_request) {
637
422
        return _append_delete_predicate(file_request);
638
422
    }
639
640
1.29k
    bool _is_table_level_count_active() const { return _remaining_table_level_count >= 0; }
641
642
763
    bool _is_file_level_count_active() const { return _remaining_file_level_count >= 0; }
643
644
14
    Status _materialize_count_rows(size_t rows, Block* block) const {
645
14
        DORIS_CHECK(block != nullptr);
646
14
        DORIS_CHECK(block->columns() > 0 || rows == 0);
647
28
        for (size_t column_idx = 0; column_idx < block->columns(); ++column_idx) {
648
14
            auto column = block->get_by_position(column_idx).type->create_column();
649
14
            if (auto* nullable = check_and_get_column<ColumnNullable>(*column)) {
650
                // Metadata COUNT emits synthetic input rows for the unchanged upper aggregate.
651
                // They must be non-NULL for COUNT(nullable_col), and constructing them explicitly
652
                // also keeps every nullable null map boolean-valid in debug/ASAN block checks.
653
14
                nullable->get_nested_column().insert_many_defaults(rows);
654
14
                nullable->get_null_map_data().resize_fill(rows, 0);
655
14
            } else {
656
0
                column->insert_many_defaults(rows);
657
0
            }
658
14
            block->replace_by_position(column_idx, std::move(column));
659
14
        }
660
14
        return Status::OK();
661
14
    }
662
663
14
    Status _materialize_next_count_batch(int64_t* remaining_rows, Block* block) const {
664
14
        DORIS_CHECK(remaining_rows != nullptr);
665
14
        DORIS_CHECK(*remaining_rows > 0);
666
14
        const int64_t batch_size = _runtime_state == nullptr
667
14
                                           ? *remaining_rows
668
14
                                           : static_cast<int64_t>(_runtime_state->batch_size());
669
14
        const auto rows = std::min(*remaining_rows, batch_size);
670
14
        RETURN_IF_ERROR(_materialize_count_rows(cast_set<size_t>(rows), block));
671
14
        *remaining_rows -= rows;
672
14
        return Status::OK();
673
14
    }
674
675
10
    Status _read_count_batch(int64_t* remaining_rows, Block* block, bool* eos) {
676
10
        DORIS_CHECK(block != nullptr);
677
10
        DORIS_CHECK(eos != nullptr);
678
10
        DORIS_CHECK(_push_down_agg_type == TPushAggOp::type::COUNT);
679
10
        DORIS_CHECK(remaining_rows != nullptr);
680
10
        DORIS_CHECK(*remaining_rows >= 0);
681
10
        if (*remaining_rows == 0) {
682
4
            *remaining_rows = -1;
683
4
            _current_task.reset();
684
4
            *eos = true;
685
4
            return Status::OK();
686
4
        }
687
6
        RETURN_IF_ERROR(_materialize_next_count_batch(remaining_rows, block));
688
6
        *eos = false;
689
6
        return Status::OK();
690
6
    }
691
692
6
    Status _read_table_level_count(Block* block, bool* eos) {
693
6
        return _read_count_batch(&_remaining_table_level_count, block, eos);
694
6
    }
695
696
4
    Status _read_file_level_count(Block* block, bool* eos) {
697
4
        return _read_count_batch(&_remaining_file_level_count, block, eos);
698
4
    }
699
700
    void _append_file_scan_column(FileScanRequest* request, LocalColumnId column_id,
701
45
                                  std::vector<LocalColumnIndex>* scan_columns) {
702
45
        DORIS_CHECK(request != nullptr);
703
45
        DORIS_CHECK(scan_columns != nullptr);
704
45
        FileScanRequestBuilder builder(request);
705
45
        Status status;
706
45
        if (scan_columns == &request->predicate_columns) {
707
34
            status = builder.add_predicate_column(column_id);
708
34
        } else {
709
11
            DORIS_CHECK(scan_columns == &request->non_predicate_columns);
710
11
            status = builder.add_non_predicate_column(column_id);
711
11
        }
712
45
        DORIS_CHECK(status.ok()) << status.to_string();
713
45
        if (column_id == LocalColumnId(ROW_POSITION_COLUMN_ID) &&
714
45
            _find_column_definition(_data_reader.file_schema, column_id) == nullptr) {
715
30
            _data_reader.file_schema.push_back(row_position_column_definition());
716
30
        }
717
45
    }
718
719
    // Append DeletePredicate to file scan request if there are deletes. The predicate will be evaluated in file reader level and filter out deleted rows before returning data to table reader.
720
422
    Status _append_delete_predicate(FileScanRequest* request) {
721
422
        DORIS_CHECK(request != nullptr);
722
422
        if ((_delete_rows == nullptr || _delete_rows->empty()) &&
723
422
            (_deletion_vector == nullptr || _deletion_vector->isEmpty())) {
724
406
            return Status::OK();
725
406
        }
726
16
        const auto row_position_column_id = LocalColumnId(ROW_POSITION_COLUMN_ID);
727
16
        _append_file_scan_column(request, row_position_column_id, &request->predicate_columns);
728
729
16
        const auto block_position = request->local_positions.at(row_position_column_id);
730
16
        auto append_predicate = [&](auto& deleted_rows) {
731
16
            auto delete_predicate = std::make_shared<DeletePredicate>(deleted_rows);
732
16
            delete_predicate->add_child(VSlotRef::create_shared(
733
16
                    cast_set<int>(block_position.value()), cast_set<int>(block_position.value()),
734
16
                    -1, std::make_shared<DataTypeInt64>(), ROW_POSITION_COLUMN_NAME));
735
16
            request->delete_conjuncts.push_back(
736
16
                    VExprContext::create_shared(std::move(delete_predicate)));
737
16
        };
_ZZN5doris6format11TableReader24_append_delete_predicateEPNS0_15FileScanRequestEENKUlRT_E_clISt6vectorIlSaIlEEEEDaS5_
Line
Count
Source
730
12
        auto append_predicate = [&](auto& deleted_rows) {
731
12
            auto delete_predicate = std::make_shared<DeletePredicate>(deleted_rows);
732
12
            delete_predicate->add_child(VSlotRef::create_shared(
733
12
                    cast_set<int>(block_position.value()), cast_set<int>(block_position.value()),
734
12
                    -1, std::make_shared<DataTypeInt64>(), ROW_POSITION_COLUMN_NAME));
735
12
            request->delete_conjuncts.push_back(
736
12
                    VExprContext::create_shared(std::move(delete_predicate)));
737
12
        };
_ZZN5doris6format11TableReader24_append_delete_predicateEPNS0_15FileScanRequestEENKUlRT_E_clIN7roaring12Roaring64MapEEEDaS5_
Line
Count
Source
730
4
        auto append_predicate = [&](auto& deleted_rows) {
731
4
            auto delete_predicate = std::make_shared<DeletePredicate>(deleted_rows);
732
4
            delete_predicate->add_child(VSlotRef::create_shared(
733
4
                    cast_set<int>(block_position.value()), cast_set<int>(block_position.value()),
734
4
                    -1, std::make_shared<DataTypeInt64>(), ROW_POSITION_COLUMN_NAME));
735
4
            request->delete_conjuncts.push_back(
736
4
                    VExprContext::create_shared(std::move(delete_predicate)));
737
4
        };
738
16
        if (_delete_rows != nullptr && !_delete_rows->empty()) {
739
12
            append_predicate(*_delete_rows);
740
12
        }
741
16
        if (_deletion_vector != nullptr && !_deletion_vector->isEmpty()) {
742
4
            append_predicate(*_deletion_vector);
743
4
        }
744
16
        return Status::OK();
745
422
    }
746
747
    // Close the current concrete reader. This hook is called by both create_next_reader() and
748
    // close(), so it should remain idempotent.
749
421
    virtual Status close_current_reader() {
750
421
        _finalize_reader_condition_cache();
751
421
        {
752
421
            SCOPED_TIMER(_profile.file_reader_total_timer);
753
421
            SCOPED_TIMER(_profile.file_reader_close_timer);
754
421
            RETURN_IF_ERROR(_data_reader.reader->close());
755
421
        }
756
421
        _data_reader.reader.reset();
757
421
        if (_data_reader.column_mapper != nullptr) {
758
420
            _data_reader.column_mapper->clear();
759
420
            _data_reader.column_mapper.reset();
760
420
        }
761
421
        _table_filters.clear();
762
421
        _constant_pruning_safe_filter_count = 0;
763
421
        _data_reader.file_schema.clear();
764
421
        _data_reader.file_block_layout.clear();
765
421
        _data_reader.block_template.clear();
766
421
        _current_task.reset();
767
421
        _current_file_description.reset();
768
421
        _current_reader_reached_eof = false;
769
421
        return Status::OK();
770
421
    }
771
772
4
    void _record_scan_rows(size_t rows) {
773
4
        if (_io_ctx != nullptr && _io_ctx->file_reader_stats != nullptr) {
774
4
            _io_ctx->file_reader_stats->read_rows += rows;
775
4
        }
776
4
    }
777
778
    // Finalize file-local block to table/global schema block.
779
516
    Status finalize_chunk(Block* block, const size_t rows) {
780
516
        SCOPED_TIMER(_profile.finalize_timer);
781
516
        size_t idx = 0;
782
516
        const auto& mappings = _data_reader.column_mapper->mappings();
783
3.67k
        for (const auto& mapping : mappings) {
784
3.67k
            ColumnPtr column;
785
3.67k
            RETURN_IF_ERROR(_materialize_mapping_column(mapping, &_data_reader.block_template, rows,
786
3.67k
                                                        &column, idx + 1 == mappings.size()));
787
3.67k
            block->replace_by_position(idx, IColumn::mutate(std::move(column)));
788
3.67k
            idx++;
789
3.67k
        }
790
515
        RETURN_IF_ERROR(materialize_virtual_columns(block));
791
        // Enforce CHAR/VARCHAR length declared by the table schema after all file-to-table
792
        // materialization has finished.
793
515
        RETURN_IF_ERROR(_truncate_char_or_varchar_columns(block));
794
515
        return Status::OK();
795
515
    }
796
797
    // Materialize virtual columns in the table block, such as Iceberg _row_id and
798
    // _last_updated_sequence_number. This runs after normal column materialization so finalize
799
    // expressions can reference those virtual columns.
800
474
    virtual Status materialize_virtual_columns(Block* table_block) { return Status::OK(); }
801
802
#ifndef NDEBUG
803
516
    Status _check_file_block_columns(std::string_view stage, size_t rows) {
804
516
        DORIS_CHECK(_data_reader.block_template.columns() == _data_reader.file_block_layout.size());
805
4.19k
        for (size_t idx = 0; idx < _data_reader.block_template.columns(); ++idx) {
806
3.67k
            const auto& file_block_column = _data_reader.file_block_layout[idx];
807
3.67k
            const auto& column_with_type = _data_reader.block_template.get_by_position(idx);
808
3.67k
            const auto* column = column_with_type.column.get();
809
3.67k
            try {
810
3.67k
                if (column == nullptr) {
811
0
                    auto st = Status::InternalError(
812
0
                            "Invalid file block column {} at {}: file_column_id={}, name='{}', "
813
0
                            "type={}, column=null, expected_rows={}, reader={}",
814
0
                            idx, stage, file_block_column.file_column_id.value(),
815
0
                            file_block_column.name,
816
0
                            file_block_column.type == nullptr ? "null"
817
0
                                                              : file_block_column.type->get_name(),
818
0
                            rows, debug_string());
819
0
                    LOG(WARNING) << st;
820
0
                    return st;
821
0
                }
822
3.67k
                column->sanity_check();
823
3.67k
                auto st = column_with_type.check_type_and_column_match();
824
3.67k
                if (!st.ok()) {
825
0
                    auto contextual_status = Status::InternalError(
826
0
                            "Invalid file block column {} at {}: file_column_id={}, name='{}', "
827
0
                            "type={}, column={}, column_size={}, expected_rows={}, error={}, "
828
0
                            "reader={}",
829
0
                            idx, stage, file_block_column.file_column_id.value(),
830
0
                            file_block_column.name,
831
0
                            file_block_column.type == nullptr ? "null"
832
0
                                                              : file_block_column.type->get_name(),
833
0
                            column->get_name(), column->size(), rows, st.to_string(),
834
0
                            debug_string());
835
0
                    LOG(WARNING) << contextual_status;
836
0
                    return contextual_status;
837
0
                }
838
3.67k
            } catch (const Exception& e) {
839
0
                auto st = Status::InternalError(
840
0
                        "Invalid file block column {} at {}: file_column_id={}, name='{}', "
841
0
                        "type={}, column={}, column_size={}, expected_rows={}, error={}, "
842
0
                        "reader={}",
843
0
                        idx, stage, file_block_column.file_column_id.value(),
844
0
                        file_block_column.name,
845
0
                        file_block_column.type == nullptr ? "null"
846
0
                                                          : file_block_column.type->get_name(),
847
0
                        column == nullptr ? "null" : column->get_name(),
848
0
                        column == nullptr ? 0 : column->size(), rows, e.to_string(),
849
0
                        debug_string());
850
0
                LOG(WARNING) << st;
851
0
                return st;
852
0
            } catch (const std::exception& e) {
853
0
                auto st = Status::InternalError(
854
0
                        "Invalid file block column {} at {}: file_column_id={}, name='{}', "
855
0
                        "type={}, column={}, column_size={}, expected_rows={}, error={}, "
856
0
                        "reader={}",
857
0
                        idx, stage, file_block_column.file_column_id.value(),
858
0
                        file_block_column.name,
859
0
                        file_block_column.type == nullptr ? "null"
860
0
                                                          : file_block_column.type->get_name(),
861
0
                        column == nullptr ? "null" : column->get_name(),
862
0
                        column == nullptr ? 0 : column->size(), rows, e.what(), debug_string());
863
0
                LOG(WARNING) << st;
864
0
                return st;
865
0
            }
866
3.67k
        }
867
516
        return Status::OK();
868
516
    }
869
870
515
    Status _check_table_block_columns(std::string_view stage, const Block* block, size_t rows) {
871
515
        DORIS_CHECK(block != nullptr);
872
515
        DORIS_CHECK(block->columns() == _data_reader.column_mapper->mappings().size());
873
4.19k
        for (size_t idx = 0; idx < block->columns(); ++idx) {
874
3.67k
            const auto& mapping = _data_reader.column_mapper->mappings()[idx];
875
3.67k
            const auto& column_with_type = block->get_by_position(idx);
876
3.67k
            const auto* column = column_with_type.column.get();
877
3.67k
            try {
878
3.67k
                if (column == nullptr) {
879
0
                    auto st = Status::InternalError(
880
0
                            "Invalid table block column {} at {}: table_column='{}', "
881
0
                            "global_index={}, type={}, column=null, expected_rows={}, mapping={}",
882
0
                            idx, stage, mapping.table_column_name, mapping.global_index.value(),
883
0
                            mapping.table_type == nullptr ? "null" : mapping.table_type->get_name(),
884
0
                            rows, mapping.debug_string());
885
0
                    LOG(WARNING) << st;
886
0
                    return st;
887
0
                }
888
3.67k
                column->sanity_check();
889
3.67k
                auto st = column_with_type.check_type_and_column_match();
890
3.67k
                if (!st.ok()) {
891
0
                    auto contextual_status = Status::InternalError(
892
0
                            "Invalid table block column {} at {}: table_column='{}', "
893
0
                            "global_index={}, type={}, column={}, column_size={}, "
894
0
                            "expected_rows={}, error={}, mapping={}",
895
0
                            idx, stage, mapping.table_column_name, mapping.global_index.value(),
896
0
                            mapping.table_type == nullptr ? "null" : mapping.table_type->get_name(),
897
0
                            column->get_name(), column->size(), rows, st.to_string(),
898
0
                            mapping.debug_string());
899
0
                    LOG(WARNING) << contextual_status;
900
0
                    return contextual_status;
901
0
                }
902
3.67k
            } catch (const Exception& e) {
903
0
                auto st = Status::InternalError(
904
0
                        "Invalid table block column {} at {}: table_column='{}', global_index={}, "
905
0
                        "type={}, column={}, column_size={}, expected_rows={}, error={}, "
906
0
                        "mapping={}",
907
0
                        idx, stage, mapping.table_column_name, mapping.global_index.value(),
908
0
                        mapping.table_type == nullptr ? "null" : mapping.table_type->get_name(),
909
0
                        column == nullptr ? "null" : column->get_name(),
910
0
                        column == nullptr ? 0 : column->size(), rows, e.to_string(),
911
0
                        mapping.debug_string());
912
0
                LOG(WARNING) << st;
913
0
                return st;
914
0
            } catch (const std::exception& e) {
915
0
                auto st = Status::InternalError(
916
0
                        "Invalid table block column {} at {}: table_column='{}', global_index={}, "
917
0
                        "type={}, column={}, column_size={}, expected_rows={}, error={}, "
918
0
                        "mapping={}",
919
0
                        idx, stage, mapping.table_column_name, mapping.global_index.value(),
920
0
                        mapping.table_type == nullptr ? "null" : mapping.table_type->get_name(),
921
0
                        column == nullptr ? "null" : column->get_name(),
922
0
                        column == nullptr ? 0 : column->size(), rows, e.what(),
923
0
                        mapping.debug_string());
924
0
                LOG(WARNING) << st;
925
0
                return st;
926
0
            }
927
3.67k
        }
928
515
        return Status::OK();
929
515
    }
930
#endif
931
932
515
    Status _truncate_char_or_varchar_columns(Block* block) {
933
515
        DORIS_CHECK(block != nullptr);
934
515
        if (_runtime_state == nullptr ||
935
515
            !_runtime_state->query_options().truncate_char_or_varchar_columns) {
936
515
            return Status::OK();
937
515
        }
938
0
        DORIS_CHECK(block->columns() == _data_reader.column_mapper->mappings().size());
939
0
        for (size_t idx = 0; idx < _data_reader.column_mapper->mappings().size(); ++idx) {
940
0
            const auto& mapping = _data_reader.column_mapper->mappings()[idx];
941
0
            if (!_should_truncate_char_or_varchar_column(mapping)) {
942
0
                continue;
943
0
            }
944
0
            const auto target_len =
945
0
                    assert_cast<const DataTypeString*>(remove_nullable(mapping.table_type).get())
946
0
                            ->len();
947
0
            _truncate_char_or_varchar_column(block, idx, target_len);
948
0
        }
949
0
        return Status::OK();
950
515
    }
951
952
    // Return true when the table schema has a bounded CHAR/VARCHAR length that is stricter than
953
    // the file-side type. Examples:
954
    // - table VARCHAR(10), file VARCHAR(20): truncate to 10;
955
    // - table VARCHAR(10), file STRING: truncate to 10 because STRING has no declared bound;
956
    // - table STRING, any file type: no truncation because the target has no bound.
957
5
    static bool _should_truncate_char_or_varchar_column(const ColumnMapping& mapping) {
958
5
        if (mapping.table_type == nullptr) {
959
0
            return false;
960
0
        }
961
5
        const auto table_type = remove_nullable(mapping.table_type);
962
5
        const auto primitive_type = table_type->get_primitive_type();
963
5
        if (primitive_type != TYPE_VARCHAR && primitive_type != TYPE_CHAR) {
964
1
            return false;
965
1
        }
966
4
        const auto target_len = assert_cast<const DataTypeString*>(table_type.get())->len();
967
4
        if (target_len <= 0) {
968
0
            return false;
969
0
        }
970
4
        if (mapping.file_type == nullptr) {
971
0
            return true;
972
0
        }
973
4
        const auto file_type = remove_nullable(mapping.file_type);
974
4
        DORIS_CHECK(file_type != nullptr);
975
4
        int file_len = -1;
976
4
        if (file_type->get_primitive_type() == TYPE_VARCHAR ||
977
4
            file_type->get_primitive_type() == TYPE_CHAR ||
978
4
            file_type->get_primitive_type() == TYPE_STRING) {
979
3
            file_len = assert_cast<const DataTypeString*>(file_type.get())->len();
980
3
        }
981
982
4
        return file_len < 0 || target_len < file_len;
983
4
    }
984
985
    // Truncate a materialized CHAR/VARCHAR column in place by reusing the vectorized substring
986
    // implementation: substring(column, 1, len). Nullable columns are unwrapped before substring
987
    // execution and wrapped back with the original null map afterward, because substring operates
988
    // on the nested string payload only.
989
1
    static void _truncate_char_or_varchar_column(Block* block, size_t idx, int len) {
990
1
        DORIS_CHECK(block != nullptr);
991
1
        auto int_type = std::make_shared<DataTypeInt32>();
992
1
        const auto num_columns_without_result = cast_set<uint32_t>(block->columns());
993
1
        auto& target = block->get_by_position(idx);
994
1
        const bool is_nullable = target.type->is_nullable();
995
1
        ColumnPtr input_column = target.column;
996
1
        ColumnPtr null_map_column;
997
1
        if (is_nullable) {
998
1
            const auto* nullable_column = assert_cast<const ColumnNullable*>(target.column.get());
999
1
            input_column = nullable_column->get_nested_column_ptr();
1000
1
            null_map_column = nullable_column->get_null_map_column_ptr();
1001
1
        }
1002
1
        block->replace_by_position(idx, std::move(input_column));
1003
1
        block->insert({int_type->create_column_const(block->rows(), to_field<TYPE_INT>(1)),
1004
1
                       int_type, "const 1"});
1005
1
        block->insert({int_type->create_column_const(block->rows(), to_field<TYPE_INT>(len)),
1006
1
                       int_type, "const len"});
1007
1
        block->insert({nullptr, std::make_shared<DataTypeString>(), "result"});
1008
1009
1
        ColumnNumbers temp_arguments(3);
1010
1
        temp_arguments[0] = cast_set<uint32_t>(idx);
1011
1
        temp_arguments[1] = num_columns_without_result;
1012
1
        temp_arguments[2] = num_columns_without_result + 1;
1013
1
        const uint32_t result_column_id = num_columns_without_result + 2;
1014
1
        SubstringUtil::substring_execute(*block, temp_arguments, result_column_id, block->rows());
1015
1016
1
        ColumnPtr result_column = block->get_by_position(result_column_id).column;
1017
1
        if (is_nullable) {
1018
1
            result_column = ColumnNullable::create(std::move(result_column), null_map_column);
1019
1
        }
1020
1
        block->replace_by_position(idx, std::move(result_column));
1021
1
        block->erase_tail(num_columns_without_result);
1022
1
    }
1023
1024
421
    Status _try_materialize_aggregate_pushdown_rows(Block* block, bool* pushed_down) {
1025
421
        DORIS_CHECK(block != nullptr);
1026
421
        DORIS_CHECK(pushed_down != nullptr);
1027
421
        *pushed_down = false;
1028
421
        block->clear_column_data(_projected_columns.size());
1029
421
        _aggregate_pushdown_tried = true;
1030
421
        if (!_supports_aggregate_pushdown(_push_down_agg_type)) {
1031
408
            return Status::OK();
1032
408
        }
1033
1034
13
        FileAggregateRequest file_request;
1035
13
        RETURN_IF_ERROR(_build_file_aggregate_request(_push_down_agg_type, &file_request));
1036
13
        FileAggregateResult file_result;
1037
13
        Status status;
1038
13
        {
1039
13
            SCOPED_TIMER(_profile.file_reader_total_timer);
1040
13
            SCOPED_TIMER(_profile.file_reader_aggregate_timer);
1041
13
            status = _data_reader.reader->get_aggregate_result(file_request, &file_result);
1042
13
        }
1043
13
        if (status.is<ErrorCode::NOT_IMPLEMENTED_ERROR>()) {
1044
1
            return Status::OK();
1045
1
        }
1046
12
        RETURN_IF_ERROR(status);
1047
11
        if (_push_down_agg_type == TPushAggOp::type::COUNT) {
1048
8
            DORIS_CHECK(file_result.count >= 0);
1049
            // The upper aggregate consumes synthetic input rows, but emitting the whole metadata
1050
            // count in one block bypasses the runtime batch contract and can allocate by file size.
1051
            // Keep the remaining cardinality as split state and expose at most one batch per call.
1052
8
            _remaining_file_level_count = file_result.count;
1053
8
            _current_split_uses_metadata_count = true;
1054
8
            if (_remaining_file_level_count > 0) {
1055
8
                RETURN_IF_ERROR(_materialize_next_count_batch(&_remaining_file_level_count, block));
1056
8
            }
1057
8
        } else {
1058
3
            RETURN_IF_ERROR(
1059
3
                    _materialize_aggregate_pushdown_rows(_push_down_agg_type, file_result, block));
1060
3
        }
1061
11
        *pushed_down = true;
1062
11
        RETURN_IF_ERROR(close_current_reader());
1063
11
        return Status::OK();
1064
11
    }
1065
1066
434
    virtual bool _supports_aggregate_pushdown(TPushAggOp::type agg_type) const {
1067
        // Only COUNT and MIN/MAX can be push down.
1068
434
        if (agg_type != TPushAggOp::type::COUNT && agg_type != TPushAggOp::type::MINMAX) {
1069
389
            return false;
1070
389
        }
1071
        // Aggregate pushdown returns reduced synthetic rows and may close the physical reader
1072
        // before the next scheduler turn. If a runtime filter is still pending, those rows could
1073
        // escape before the filter arrives and cannot later be reconstructed from real file rows.
1074
        // This is the same irreversibility constraint as table-level metadata COUNT, and applies
1075
        // to COUNT and MIN/MAX for Parquet/ORC as well as COUNT for text readers.
1076
45
        if (!_all_runtime_filters_applied_for_split) {
1077
2
            return false;
1078
2
        }
1079
        // Scanner owns the original conjunct list and evaluates it after TableReader finalizes
1080
        // rows. Even a slotless conjunct that cannot become a TableFilter must see every source
1081
        // row before an aggregate reduces the stream to synthetic COUNT/MINMAX rows.
1082
43
        if (!_conjuncts.empty()) {
1083
5
            return false;
1084
5
        }
1085
        // Only support aggregate pushdown when there is no delete or filter, so
1086
        // the reduced rows consumed by the upper aggregate remain semantically equivalent to a
1087
        // normal scan.
1088
38
        if ((_delete_rows != nullptr && !_delete_rows->empty()) ||
1089
38
            (_deletion_vector != nullptr && !_deletion_vector->isEmpty())) {
1090
3
            return false;
1091
3
        }
1092
35
        if (!_table_filters.empty()) {
1093
0
            return false;
1094
0
        }
1095
35
        if (agg_type == TPushAggOp::type::COUNT) {
1096
            // Old FEs do not serialize push_down_count_slot_ids. During the supported BE-first
1097
            // rolling upgrade, nullopt therefore means "COUNT semantics are unknown", not
1098
            // COUNT(*). Fall back to reading rows until the FE explicitly sends either an empty
1099
            // list for COUNT(*) or one slot for COUNT(col).
1100
24
            if (!_push_down_count_columns.has_value()) {
1101
3
                return false;
1102
3
            }
1103
            // COUNT(*) needs no column metadata. COUNT(col) currently supports one direct file
1104
            // column; multiple COUNT arguments fall back to the normal scan so every upper
1105
            // aggregate receives the original rows.
1106
21
            if (_push_down_count_columns->empty()) {
1107
10
                return true;
1108
10
            }
1109
11
            if (_push_down_count_columns->size() != 1) {
1110
1
                return false;
1111
1
            }
1112
10
            const auto& mapping = _push_down_count_mapping();
1113
            // Metadata COUNT skips TableReader's normal materialization path. Only a trivial
1114
            // mapping is safe: for example, a nullable Parquet INT mapped to a NOT NULL table
1115
            // BIGINT normally needs both an INT->BIGINT cast and nullability validation. Counting
1116
            // footer values directly would bypass both operations and could hide invalid data.
1117
10
            return mapping.file_local_id.has_value() && mapping.file_type != nullptr &&
1118
10
                   mapping.table_type != nullptr && mapping.is_trivial &&
1119
10
                   mapping.virtual_column_type == TableVirtualColumnType::INVALID &&
1120
10
                   mapping.default_expr == nullptr;
1121
11
        }
1122
        // For MIN/MAX, only support direct file-to-table column mappings. The two emitted rows
1123
        // must be enough for the upper MIN/MAX aggregate without evaluating default expressions or
1124
        // virtual columns.
1125
13
        for (const auto& mapping : _data_reader.column_mapper->mappings()) {
1126
13
            if (!mapping.file_local_id.has_value() ||
1127
13
                mapping.virtual_column_type != TableVirtualColumnType::INVALID ||
1128
13
                mapping.default_expr != nullptr || mapping.file_type == nullptr ||
1129
13
                mapping.table_type == nullptr) {
1130
1
                return false;
1131
1
            }
1132
12
            if (!_can_push_down_minmax_for_mapping(mapping)) {
1133
2
                return false;
1134
2
            }
1135
12
        }
1136
8
        return true;
1137
11
    }
1138
1139
3.68k
    static ColumnPtr _detach_column(ColumnPtr column) {
1140
3.68k
        DORIS_CHECK(column.get() != nullptr);
1141
3.68k
        return IColumn::mutate(std::move(column));
1142
3.68k
    }
1143
1144
506
    static ColumnPtr _take_and_detach_block_column(Block* block, int position) {
1145
506
        DORIS_CHECK(block != nullptr);
1146
506
        DORIS_CHECK(position >= 0 && position < static_cast<int>(block->columns()));
1147
506
        auto& source = block->get_by_position(position);
1148
506
        ColumnPtr column = source.column;
1149
        // The final mapping no longer needs the file block. Release its COW owner before mutate(),
1150
        // otherwise nested MAP/STRING columns are deep-copied and a multi-GB payload can OOM.
1151
506
        block->replace_by_position(position, source.type->create_column());
1152
506
        return _detach_column(std::move(column));
1153
506
    }
1154
1155
72
    static Status _align_column_nullability(ColumnPtr* column, const DataTypePtr& table_type) {
1156
72
        DORIS_CHECK(column != nullptr);
1157
72
        DORIS_CHECK(column->get() != nullptr);
1158
72
        DORIS_CHECK(table_type != nullptr);
1159
        // Must return non-const column
1160
72
        *column = (*column)->convert_to_full_column_if_const();
1161
72
        if (table_type->is_nullable()) {
1162
30
            const auto& nested_type =
1163
30
                    assert_cast<const DataTypeNullable&>(*table_type).get_nested_type();
1164
30
            if (!(*column)->is_nullable()) {
1165
2
                RETURN_IF_ERROR(_align_column_nullability(column, nested_type));
1166
2
                *column = make_nullable(*column);
1167
2
                return Status::OK();
1168
2
            }
1169
28
            const auto& nullable_column = assert_cast<const ColumnNullable&>(**column);
1170
28
            ColumnPtr nested_column = nullable_column.get_nested_column_ptr();
1171
28
            RETURN_IF_ERROR(_align_column_nullability(&nested_column, nested_type));
1172
28
            *column = ColumnNullable::create(nested_column,
1173
28
                                             nullable_column.get_null_map_column_ptr());
1174
28
            return Status::OK();
1175
28
        }
1176
42
        if ((*column)->is_nullable()) {
1177
0
            const auto& nullable_column = assert_cast<const ColumnNullable&>(**column);
1178
0
            if (nullable_column.has_null()) {
1179
0
                return Status::InternalError(
1180
0
                        "Default expression produced NULL for non-nullable table column");
1181
0
            }
1182
0
            ColumnPtr nested_column = nullable_column.get_nested_column_ptr();
1183
0
            RETURN_IF_ERROR(_align_column_nullability(&nested_column, table_type));
1184
0
            *column = nested_column;
1185
0
            return Status::OK();
1186
0
        }
1187
42
        if (const auto* array_type = typeid_cast<const DataTypeArray*>(table_type.get())) {
1188
1
            const auto& array_column = assert_cast<const ColumnArray&>(**column);
1189
1
            ColumnPtr nested_column = array_column.get_data_ptr();
1190
1
            RETURN_IF_ERROR(
1191
1
                    _align_column_nullability(&nested_column, array_type->get_nested_type()));
1192
1
            *column = ColumnArray::create(nested_column, array_column.get_offsets_ptr());
1193
1
            return Status::OK();
1194
1
        }
1195
41
        if (const auto* map_type = typeid_cast<const DataTypeMap*>(table_type.get())) {
1196
0
            const auto& map_column = assert_cast<const ColumnMap&>(**column);
1197
0
            ColumnPtr key_column = map_column.get_keys_ptr();
1198
0
            ColumnPtr value_column = map_column.get_values_ptr();
1199
0
            RETURN_IF_ERROR(_align_column_nullability(&key_column, map_type->get_key_type()));
1200
0
            RETURN_IF_ERROR(_align_column_nullability(&value_column, map_type->get_value_type()));
1201
0
            *column = ColumnMap::create(key_column, value_column, map_column.get_offsets_ptr());
1202
0
            return Status::OK();
1203
0
        }
1204
41
        if (const auto* struct_type = typeid_cast<const DataTypeStruct*>(table_type.get())) {
1205
5
            const auto& struct_column = assert_cast<const ColumnStruct&>(**column);
1206
5
            Columns columns = struct_column.get_columns_copy();
1207
5
            DORIS_CHECK(columns.size() == struct_type->get_elements().size());
1208
16
            for (size_t i = 0; i < columns.size(); ++i) {
1209
11
                RETURN_IF_ERROR(
1210
11
                        _align_column_nullability(&columns[i], struct_type->get_element(i)));
1211
11
            }
1212
5
            *column = ColumnStruct::create(columns);
1213
5
            return Status::OK();
1214
5
        }
1215
36
        return Status::OK();
1216
41
    }
1217
1218
    static Status _execute_default_expr_without_root_type_check(
1219
            const VExprContextSPtr& default_expr, const Block* block,
1220
10
            ColumnWithTypeAndName* result_data) {
1221
10
        DORIS_CHECK(default_expr != nullptr);
1222
10
        DORIS_CHECK(block != nullptr);
1223
10
        DORIS_CHECK(result_data != nullptr);
1224
10
        ColumnPtr result_column;
1225
10
        Status st;
1226
10
        RETURN_IF_CATCH_EXCEPTION({
1227
10
            st = default_expr->root()->execute_column_impl(default_expr.get(), block, nullptr,
1228
10
                                                           block->rows(), result_column);
1229
10
        });
1230
10
        RETURN_IF_ERROR(st);
1231
10
        DORIS_CHECK(result_column.get() != nullptr);
1232
10
        if (result_column->size() != block->rows()) {
1233
0
            return Status::InternalError(
1234
0
                    "Default expr {} return column size {} not equal to expected size {}",
1235
0
                    default_expr->expr_name(), result_column->size(), block->rows());
1236
0
        }
1237
10
        result_data->column = result_column;
1238
10
        result_data->type = default_expr->execute_type(block);
1239
10
        result_data->name = default_expr->expr_name();
1240
10
        return Status::OK();
1241
10
    }
1242
1243
    Status _cast_column_to_type(ColumnPtr* column, const DataTypePtr& file_type,
1244
                                const DataTypePtr& table_type,
1245
1
                                const std::string& column_name) const {
1246
1
        DORIS_CHECK(column != nullptr);
1247
1
        DORIS_CHECK(column->get() != nullptr);
1248
1
        DORIS_CHECK(file_type != nullptr);
1249
1
        DORIS_CHECK(table_type != nullptr);
1250
1
        if (file_type->equals(*table_type)) {
1251
0
            return Status::OK();
1252
0
        }
1253
1254
1
        DataTypePtr input_type = file_type;
1255
        // Cast wrappers unwrap nullable inputs according to the declared input type, so keep the
1256
        // root nullability of the declared type aligned with the actual column shape.
1257
1
        if ((*column)->is_nullable() && !input_type->is_nullable()) {
1258
0
            input_type = make_nullable(input_type);
1259
1
        } else if (!(*column)->is_nullable() && input_type->is_nullable()) {
1260
1
            input_type = remove_nullable(input_type);
1261
1
        }
1262
1
        Block cast_block;
1263
1
        cast_block.insert({*column, input_type, column_name});
1264
1
        auto slot_ref = VSlotRef::create_shared(0, 0, -1, input_type, column_name);
1265
1
        auto cast_expr = Cast::create_shared(table_type);
1266
1
        cast_expr->add_child(std::move(slot_ref));
1267
1
        auto cast_ctx = VExprContext::create_shared(std::move(cast_expr));
1268
1
        RowDescriptor row_desc;
1269
1
        RETURN_IF_ERROR(cast_ctx->prepare(_runtime_state, row_desc));
1270
1
        RETURN_IF_ERROR(cast_ctx->open(_runtime_state));
1271
1
        ColumnPtr cast_column;
1272
1
        RETURN_IF_ERROR(cast_ctx->execute(&cast_block, cast_column));
1273
1
        *column = std::move(cast_column);
1274
1
        return Status::OK();
1275
1
    }
1276
1277
    Status _materialize_present_child_mapping_column(const ColumnMapping& mapping,
1278
                                                     const ColumnPtr& file_column,
1279
20
                                                     const size_t rows, ColumnPtr* column) {
1280
20
        DORIS_CHECK(column != nullptr);
1281
20
        DORIS_CHECK(mapping.file_type != nullptr);
1282
20
        DORIS_CHECK(mapping.table_type != nullptr);
1283
20
        *column = file_column;
1284
20
        if (!mapping.is_trivial) {
1285
5
            if (!mapping.child_mappings.empty()) {
1286
5
                RETURN_IF_ERROR(
1287
5
                        _materialize_complex_mapping_column(mapping, *column, rows, column));
1288
5
            } else {
1289
0
                RETURN_IF_ERROR(_cast_column_to_type(column, mapping.file_type, mapping.table_type,
1290
0
                                                     mapping.file_column_name));
1291
0
            }
1292
5
        }
1293
20
        RETURN_IF_ERROR(_align_column_nullability(column, mapping.table_type));
1294
20
        return Status::OK();
1295
20
    }
1296
1297
    Status _materialize_mapping_column(const ColumnMapping& mapping, Block* current_block,
1298
                                       const size_t rows, ColumnPtr* column,
1299
3.68k
                                       bool take_projection_result = false) {
1300
3.68k
        if (!mapping.is_trivial && mapping.file_local_id.has_value() &&
1301
3.68k
            !mapping.child_mappings.empty()) {
1302
9
            DCHECK(mapping.projection != nullptr);
1303
9
            int res_id;
1304
9
            auto st = mapping.projection->execute(current_block, &res_id);
1305
9
            if (!st.ok()) {
1306
0
                return Status::InternalError(
1307
0
                        "Failed to execute complex mapping projection for table column '{}' "
1308
0
                        "(global_index={}, file_local_id={}, rows={}): {}, mapping={}",
1309
0
                        mapping.table_column_name, mapping.global_index.value(),
1310
0
                        *mapping.file_local_id, rows, st.to_string(), mapping.debug_string());
1311
0
            }
1312
9
            ColumnPtr result_column = take_projection_result
1313
9
                                              ? _take_and_detach_block_column(current_block, res_id)
1314
9
                                              : current_block->get_by_position(res_id).column;
1315
9
            RETURN_IF_ERROR(
1316
9
                    _materialize_complex_mapping_column(mapping, result_column, rows, column));
1317
9
            return Status::OK();
1318
9
        }
1319
3.67k
        if (mapping.projection != nullptr) {
1320
3.65k
            int res_id;
1321
3.65k
            auto st = mapping.projection->execute(current_block, &res_id);
1322
3.65k
            if (!st.ok()) {
1323
1
                std::string file_local_id = "null";
1324
1
                if (mapping.file_local_id.has_value()) {
1325
1
                    file_local_id = std::to_string(*mapping.file_local_id);
1326
1
                }
1327
1
                return Status::InternalError(
1328
1
                        "Failed to execute mapping projection for table column '{}' "
1329
1
                        "(global_index={}, file_local_id={}, rows={}): {}, mapping={}",
1330
1
                        mapping.table_column_name, mapping.global_index.value(), file_local_id,
1331
1
                        rows, st.to_string(), mapping.debug_string());
1332
1
            }
1333
3.64k
            if (take_projection_result) {
1334
497
                *column = _take_and_detach_block_column(current_block, res_id);
1335
3.15k
            } else {
1336
3.15k
                ColumnPtr result_column = current_block->get_by_position(res_id).column;
1337
3.15k
                *column = _detach_column(std::move(result_column));
1338
3.15k
            }
1339
3.64k
            return Status::OK();
1340
3.65k
        }
1341
23
        if (mapping.default_expr != nullptr) {
1342
10
            if (current_block->rows() == rows) {
1343
2
                ColumnWithTypeAndName result;
1344
2
                RETURN_IF_ERROR(_execute_default_expr_without_root_type_check(
1345
2
                        mapping.default_expr, current_block, &result));
1346
2
                ColumnPtr result_column = result.column;
1347
2
                RETURN_IF_ERROR(_align_column_nullability(&result_column, mapping.table_type));
1348
2
                *column = _detach_column(std::move(result_column));
1349
8
            } else {
1350
8
                DORIS_CHECK(mapping.constant_index.has_value());
1351
8
                Block eval_block;
1352
8
                eval_block.insert({mapping.table_type->create_column_const_with_default_value(rows),
1353
8
                                   mapping.table_type, "__table_reader_const_rows"});
1354
8
                ColumnWithTypeAndName result;
1355
8
                RETURN_IF_ERROR(_execute_default_expr_without_root_type_check(
1356
8
                        mapping.default_expr, &eval_block, &result));
1357
8
                ColumnPtr result_column = result.column;
1358
8
                RETURN_IF_ERROR(_align_column_nullability(&result_column, mapping.table_type));
1359
8
                *column = _detach_column(std::move(result_column));
1360
8
            }
1361
10
            return Status::OK();
1362
10
        }
1363
13
        ColumnPtr result_column = mapping.table_type->create_column_const_with_default_value(rows);
1364
13
        *column = _detach_column(std::move(result_column));
1365
13
        return Status::OK();
1366
23
    }
1367
1368
    Status _materialize_complex_mapping_column(const ColumnMapping& mapping,
1369
                                               const ColumnPtr& file_column, const size_t rows,
1370
14
                                               ColumnPtr* column) {
1371
14
        DORIS_CHECK(mapping.table_type != nullptr);
1372
14
        DORIS_CHECK(file_column.get() != nullptr);
1373
14
        const auto table_type = remove_nullable(mapping.table_type);
1374
14
        switch (table_type->get_primitive_type()) {
1375
11
        case TYPE_STRUCT:
1376
11
            RETURN_IF_ERROR(_materialize_struct_mapping_column(mapping, file_column, rows, column));
1377
11
            break;
1378
11
        case TYPE_ARRAY:
1379
2
            RETURN_IF_ERROR(_materialize_array_mapping_column(mapping, file_column, rows, column));
1380
2
            break;
1381
2
        case TYPE_MAP:
1382
1
            RETURN_IF_ERROR(_materialize_map_mapping_column(mapping, file_column, rows, column));
1383
1
            break;
1384
1
        default:
1385
0
            *column = _detach_column(file_column);
1386
0
            break;
1387
14
        }
1388
14
        return Status::OK();
1389
14
    }
1390
1391
    static std::vector<const ColumnMapping*> _present_child_mappings_in_file_order(
1392
11
            const std::vector<ColumnMapping>& child_mappings) {
1393
11
        std::vector<const ColumnMapping*> result;
1394
11
        result.reserve(child_mappings.size());
1395
22
        for (const auto& child_mapping : child_mappings) {
1396
22
            if (child_mapping.file_local_id.has_value()) {
1397
13
                result.push_back(&child_mapping);
1398
13
            }
1399
22
        }
1400
11
        std::ranges::sort(result, [](const ColumnMapping* lhs, const ColumnMapping* rhs) {
1401
6
            DORIS_CHECK(lhs->file_local_id.has_value());
1402
6
            DORIS_CHECK(rhs->file_local_id.has_value());
1403
6
            return *lhs->file_local_id < *rhs->file_local_id;
1404
6
        });
1405
11
        return result;
1406
11
    }
1407
1408
    static size_t _file_child_ordinal_for_mapping(
1409
            const ColumnMapping& mapping, const ColumnMapping& child_mapping,
1410
13
            const std::vector<const ColumnMapping*>& file_ordered_children) {
1411
13
        DORIS_CHECK(child_mapping.file_local_id.has_value());
1412
13
        if (!mapping.projected_file_children.empty()) {
1413
9
            const auto child_it = std::ranges::find_if(
1414
12
                    mapping.projected_file_children, [&](const ColumnDefinition& file_child) {
1415
12
                        return file_child.file_local_id() == *child_mapping.file_local_id;
1416
12
                    });
1417
9
            DORIS_CHECK(child_it != mapping.projected_file_children.end());
1418
9
            return static_cast<size_t>(
1419
9
                    std::distance(mapping.projected_file_children.begin(), child_it));
1420
9
        }
1421
4
        const auto child_it = std::ranges::find(file_ordered_children, &child_mapping);
1422
4
        DORIS_CHECK(child_it != file_ordered_children.end());
1423
4
        return static_cast<size_t>(std::distance(file_ordered_children.begin(), child_it));
1424
13
    }
1425
1426
    static std::vector<const ColumnMapping*> _child_mappings_in_table_type_order(
1427
11
            const ColumnMapping& mapping, const DataTypeStruct& table_type) {
1428
11
        std::vector<const ColumnMapping*> result;
1429
11
        result.reserve(mapping.child_mappings.size());
1430
33
        for (size_t child_idx = 0; child_idx < table_type.get_elements().size(); ++child_idx) {
1431
22
            const auto& child_name = table_type.get_element_name(child_idx);
1432
22
            const auto child_it = std::ranges::find_if(
1433
36
                    mapping.child_mappings, [&](const ColumnMapping& child_mapping) {
1434
36
                        return child_mapping.table_column_name == child_name;
1435
36
                    });
1436
22
            DORIS_CHECK(child_it != mapping.child_mappings.end())
1437
0
                    << mapping.debug_string() << ", table_child_name=" << child_name;
1438
22
            result.push_back(&*child_it);
1439
22
        }
1440
11
        return result;
1441
11
    }
1442
1443
    static const IColumn* _nested_column_if_nullable(const ColumnPtr& column,
1444
16
                                                     const NullMap** null_map) {
1445
16
        DORIS_CHECK(column.get() != nullptr);
1446
16
        if (const auto* nullable_column = check_and_get_column<ColumnNullable>(*column)) {
1447
12
            if (null_map != nullptr) {
1448
12
                *null_map = &nullable_column->get_null_map_data();
1449
12
            }
1450
12
            return &nullable_column->get_nested_column();
1451
12
        }
1452
4
        return column.get();
1453
16
    }
1454
1455
    Status _materialize_struct_mapping_column(const ColumnMapping& mapping,
1456
                                              const ColumnPtr& file_column, const size_t rows,
1457
11
                                              ColumnPtr* column) {
1458
11
        DORIS_CHECK(mapping.table_type != nullptr);
1459
11
        const auto* table_type =
1460
11
                assert_cast<const DataTypeStruct*>(remove_nullable(mapping.table_type).get());
1461
11
        const auto full_file_column = file_column->convert_to_full_column_if_const();
1462
11
        const NullMap* parent_null_map = nullptr;
1463
11
        const auto* nested_file_column =
1464
11
                _nested_column_if_nullable(full_file_column, &parent_null_map);
1465
11
        const auto* file_struct = assert_cast<const ColumnStruct*>(nested_file_column);
1466
11
        DORIS_CHECK(table_type->get_elements().size() == mapping.child_mappings.size());
1467
1468
11
        Columns child_columns;
1469
11
        child_columns.reserve(mapping.child_mappings.size());
1470
11
        const auto file_ordered_children =
1471
11
                _present_child_mappings_in_file_order(mapping.child_mappings);
1472
11
        const auto table_ordered_children =
1473
11
                _child_mappings_in_table_type_order(mapping, *table_type);
1474
22
        for (const auto* child_mapping : table_ordered_children) {
1475
22
            DORIS_CHECK(child_mapping != nullptr);
1476
22
            if (!child_mapping->file_local_id.has_value()) {
1477
9
                child_columns.push_back(
1478
9
                        (child_mapping->initial_default_column
1479
9
                                 ? child_mapping->initial_default_column->clone_resized(rows)
1480
9
                                 : child_mapping->table_type
1481
6
                                           ->create_column_const_with_default_value(rows))
1482
9
                                ->convert_to_full_column_if_const());
1483
9
                continue;
1484
9
            }
1485
13
            const auto file_child_idx =
1486
13
                    _file_child_ordinal_for_mapping(mapping, *child_mapping, file_ordered_children);
1487
13
            DORIS_CHECK(file_child_idx < file_struct->get_columns().size());
1488
13
            ColumnPtr child_column = file_struct->get_column_ptr(file_child_idx);
1489
13
            RETURN_IF_ERROR(_materialize_present_child_mapping_column(*child_mapping, child_column,
1490
13
                                                                      rows, &child_column));
1491
13
            child_columns.push_back(std::move(child_column));
1492
13
        }
1493
11
        MutableColumns mutable_child_columns;
1494
11
        mutable_child_columns.reserve(child_columns.size());
1495
22
        for (auto& child_column : child_columns) {
1496
22
            mutable_child_columns.push_back(IColumn::mutate(std::move(child_column)));
1497
22
        }
1498
11
        auto result = ColumnStruct::create(std::move(mutable_child_columns));
1499
11
        if (mapping.table_type->is_nullable()) {
1500
9
            auto null_map = ColumnUInt8::create();
1501
9
            auto& null_map_data = null_map->get_data();
1502
9
            null_map_data.resize(rows);
1503
9
            if (parent_null_map != nullptr) {
1504
9
                DORIS_CHECK(parent_null_map->size() == rows);
1505
9
                null_map_data.assign(parent_null_map->begin(), parent_null_map->end());
1506
9
            } else {
1507
0
                std::fill(null_map_data.begin(), null_map_data.end(), 0);
1508
0
            }
1509
9
            *column = ColumnNullable::create(std::move(result), std::move(null_map));
1510
9
        } else {
1511
2
            *column = std::move(result);
1512
2
        }
1513
11
        return Status::OK();
1514
11
    }
1515
1516
    Status _materialize_array_mapping_column(const ColumnMapping& mapping,
1517
                                             const ColumnPtr& file_column, const size_t rows,
1518
2
                                             ColumnPtr* column) {
1519
2
        DORIS_CHECK(mapping.child_mappings.size() == 1);
1520
2
        const auto full_file_column = file_column->convert_to_full_column_if_const();
1521
2
        const NullMap* parent_null_map = nullptr;
1522
2
        const auto* nested_file_column =
1523
2
                _nested_column_if_nullable(full_file_column, &parent_null_map);
1524
2
        const auto* file_array = assert_cast<const ColumnArray*>(nested_file_column);
1525
2
        ColumnPtr nested_column = file_array->get_data_ptr();
1526
2
        const auto& element_mapping = mapping.child_mappings[0];
1527
2
        RETURN_IF_ERROR(_materialize_present_child_mapping_column(
1528
2
                element_mapping, nested_column, nested_column->size(), &nested_column));
1529
2
        auto offsets_column = file_array->get_offsets_ptr()->convert_to_full_column_if_const();
1530
2
        auto result = ColumnArray::create(IColumn::mutate(std::move(nested_column)),
1531
2
                                          IColumn::mutate(std::move(offsets_column)));
1532
2
        if (mapping.table_type->is_nullable()) {
1533
2
            auto null_map = ColumnUInt8::create();
1534
2
            auto& null_map_data = null_map->get_data();
1535
2
            null_map_data.resize(rows);
1536
2
            if (parent_null_map != nullptr) {
1537
2
                DORIS_CHECK(parent_null_map->size() == rows);
1538
2
                null_map_data.assign(parent_null_map->begin(), parent_null_map->end());
1539
2
            } else {
1540
0
                std::fill(null_map_data.begin(), null_map_data.end(), 0);
1541
0
            }
1542
2
            *column = ColumnNullable::create(std::move(result), std::move(null_map));
1543
2
        } else {
1544
0
            *column = std::move(result);
1545
0
        }
1546
2
        return Status::OK();
1547
2
    }
1548
1549
    Status _materialize_map_mapping_column(const ColumnMapping& mapping,
1550
                                           const ColumnPtr& file_column, const size_t rows,
1551
3
                                           ColumnPtr* column) {
1552
3
        const auto full_file_column = file_column->convert_to_full_column_if_const();
1553
3
        const NullMap* parent_null_map = nullptr;
1554
3
        const auto* nested_file_column =
1555
3
                _nested_column_if_nullable(full_file_column, &parent_null_map);
1556
3
        const auto* file_map = assert_cast<const ColumnMap*>(nested_file_column);
1557
3
        ColumnPtr key_column = file_map->get_keys_ptr();
1558
3
        ColumnPtr value_column = file_map->get_values_ptr();
1559
1560
3
        const ColumnMapping* key_mapping = nullptr;
1561
3
        const ColumnMapping* value_mapping = nullptr;
1562
5
        for (const auto& child_mapping : mapping.child_mappings) {
1563
5
            if (!child_mapping.file_local_id.has_value()) {
1564
0
                continue;
1565
0
            }
1566
5
            if (*child_mapping.file_local_id == 0) {
1567
2
                key_mapping = &child_mapping;
1568
3
            } else if (*child_mapping.file_local_id == 1) {
1569
3
                value_mapping = &child_mapping;
1570
3
            }
1571
5
        }
1572
1573
3
        if (key_mapping != nullptr) {
1574
2
            RETURN_IF_ERROR(_materialize_present_child_mapping_column(
1575
2
                    *key_mapping, key_column, key_column->size(), &key_column));
1576
2
        }
1577
3
        if (value_mapping != nullptr) {
1578
3
            RETURN_IF_ERROR(_materialize_present_child_mapping_column(
1579
3
                    *value_mapping, value_column, value_column->size(), &value_column));
1580
3
        }
1581
3
        auto offsets_column = file_map->get_offsets_ptr()->convert_to_full_column_if_const();
1582
3
        auto result = ColumnMap::create(IColumn::mutate(std::move(key_column)),
1583
3
                                        IColumn::mutate(std::move(value_column)),
1584
3
                                        IColumn::mutate(std::move(offsets_column)));
1585
3
        if (mapping.table_type->is_nullable()) {
1586
1
            auto null_map = ColumnUInt8::create();
1587
1
            auto& null_map_data = null_map->get_data();
1588
1
            null_map_data.resize(rows);
1589
1
            if (parent_null_map != nullptr) {
1590
1
                DORIS_CHECK(parent_null_map->size() == rows);
1591
1
                null_map_data.assign(parent_null_map->begin(), parent_null_map->end());
1592
1
            } else {
1593
0
                std::fill(null_map_data.begin(), null_map_data.end(), 0);
1594
0
            }
1595
1
            *column = ColumnNullable::create(std::move(result), std::move(null_map));
1596
2
        } else {
1597
2
            *column = std::move(result);
1598
2
        }
1599
3
        return Status::OK();
1600
3
    }
1601
1602
421
    Status _open_mapping_exprs() {
1603
421
        RowDescriptor row_desc;
1604
2.02k
        for (const auto& mapping : _data_reader.column_mapper->mappings()) {
1605
2.02k
            if (mapping.projection != nullptr) {
1606
2.00k
                RETURN_IF_ERROR(mapping.projection->prepare(_runtime_state, row_desc));
1607
2.00k
                RETURN_IF_ERROR(mapping.projection->open(_runtime_state));
1608
2.00k
            }
1609
2.02k
            if (mapping.default_expr != nullptr) {
1610
10
                RETURN_IF_ERROR(mapping.default_expr->prepare(_runtime_state, row_desc));
1611
10
                RETURN_IF_ERROR(mapping.default_expr->open(_runtime_state));
1612
10
            }
1613
2.02k
        }
1614
421
        return Status::OK();
1615
421
    }
1616
1617
    Status _build_file_aggregate_request(TPushAggOp::type agg_type,
1618
13
                                         FileAggregateRequest* request) const {
1619
13
        DORIS_CHECK(request != nullptr);
1620
13
        DORIS_CHECK(_supports_aggregate_pushdown(agg_type));
1621
13
        request->agg_type = agg_type;
1622
13
        request->columns.clear();
1623
13
        if (agg_type == TPushAggOp::type::COUNT) {
1624
9
            DORIS_CHECK(_push_down_count_columns.has_value());
1625
            // An empty explicit list is the semantic signal for COUNT(*). Do not inspect the
1626
            // mapping count: `SELECT COUNT(*) FROM t` may still project one nullable column because
1627
            // the planner keeps a placeholder slot. In a 10,000-row file where that arbitrary slot
1628
            // has 9,015 non-null values, passing the slot would ask Parquet/ORC metadata for
1629
            // COUNT(slot)=9,015 instead of the required row count 10,000.
1630
9
            if (!_push_down_count_columns->empty()) {
1631
4
                const auto& mapping = _push_down_count_mapping();
1632
4
                DORIS_CHECK(mapping.file_local_id.has_value());
1633
4
                FileAggregateRequest::Column column;
1634
4
                column.projection =
1635
4
                        LocalColumnIndex::top_level(LocalColumnId(*mapping.file_local_id));
1636
4
                request->columns.push_back(std::move(column));
1637
4
            }
1638
9
            return Status::OK();
1639
9
        }
1640
4
        request->columns.reserve(_data_reader.column_mapper->mappings().size());
1641
5
        for (const auto& mapping : _data_reader.column_mapper->mappings()) {
1642
5
            DORIS_CHECK(mapping.file_local_id.has_value());
1643
5
            FileAggregateRequest::Column column;
1644
5
            column.projection = LocalColumnIndex::top_level(LocalColumnId(*mapping.file_local_id));
1645
5
            if (!mapping.child_mappings.empty()) {
1646
1
                RETURN_IF_ERROR(build_aggregate_projection(mapping, &column.projection));
1647
1
            }
1648
5
            request->columns.push_back(std::move(column));
1649
5
        }
1650
4
        return Status::OK();
1651
4
    }
1652
1653
14
    const ColumnMapping& _push_down_count_mapping() const {
1654
14
        DORIS_CHECK(_push_down_count_columns.has_value());
1655
14
        DORIS_CHECK(_push_down_count_columns->size() == 1);
1656
14
        const auto mapping_it =
1657
14
                std::ranges::find(_data_reader.column_mapper->mappings(),
1658
14
                                  _push_down_count_columns->front(), &ColumnMapping::global_index);
1659
        // FileScannerV2 translates FE SlotIds through the same projected-column list used to build
1660
        // the mapper, so a missing mapping is an FE/BE contract violation rather than a fallback.
1661
14
        DORIS_CHECK(mapping_it != _data_reader.column_mapper->mappings().end());
1662
14
        return *mapping_it;
1663
14
    }
1664
1665
    Status _materialize_aggregate_pushdown_rows(TPushAggOp::type agg_type,
1666
                                                const FileAggregateResult& file_result,
1667
3
                                                Block* block) {
1668
3
        DORIS_CHECK(agg_type == TPushAggOp::type::MINMAX);
1669
        // MIN/MAX pushdown emits two rows, min first and max second, for each projected column.
1670
        // The upper MIN/MAX aggregate consumes those two rows to produce the final aggregate value.
1671
3
        DORIS_CHECK(file_result.columns.size() == _data_reader.column_mapper->mappings().size());
1672
3
        DORIS_CHECK(block->columns() == _data_reader.column_mapper->mappings().size());
1673
3
        Block file_block;
1674
3
        file_block.reserve(_data_reader.file_block_layout.size());
1675
4
        for (const auto& column : _data_reader.file_block_layout) {
1676
4
            file_block.insert({column.type->create_column(), column.type, column.name});
1677
4
        }
1678
7
        for (size_t column_idx = 0; column_idx < file_result.columns.size(); ++column_idx) {
1679
4
            const auto& result_column = file_result.columns[column_idx];
1680
4
            if (!result_column.has_min || !result_column.has_max) {
1681
0
                return Status::NotSupported("Missing min/max aggregate result for column {}",
1682
0
                                            _projected_columns[column_idx].name);
1683
0
            }
1684
4
            bool found_file_column = false;
1685
5
            for (size_t block_position = 0; block_position < _data_reader.file_block_layout.size();
1686
5
                 ++block_position) {
1687
5
                if (_data_reader.file_block_layout[block_position].file_column_id ==
1688
5
                    file_result.columns[column_idx].projection.column_id()) {
1689
4
                    found_file_column = true;
1690
4
                    auto column = file_block.get_by_position(block_position)
1691
4
                                          .type->create_column()
1692
4
                                          ->assert_mutable();
1693
4
                    RETURN_IF_ERROR(_insert_aggregate_projection_value(
1694
4
                            file_result.columns[column_idx].projection, result_column.min_value,
1695
4
                            column.get()));
1696
4
                    RETURN_IF_ERROR(_insert_aggregate_projection_value(
1697
4
                            file_result.columns[column_idx].projection, result_column.max_value,
1698
4
                            column.get()));
1699
4
                    file_block.replace_by_position(block_position, std::move(column));
1700
4
                    break;
1701
4
                }
1702
5
            }
1703
4
            DORIS_CHECK(found_file_column);
1704
4
        }
1705
7
        for (size_t column_idx = 0; column_idx < _data_reader.column_mapper->mappings().size();
1706
4
             ++column_idx) {
1707
4
            ColumnPtr table_column;
1708
4
            RETURN_IF_ERROR(_materialize_mapping_column(
1709
4
                    _data_reader.column_mapper->mappings()[column_idx], &file_block, 2,
1710
4
                    &table_column,
1711
4
                    column_idx + 1 == _data_reader.column_mapper->mappings().size()));
1712
4
            block->replace_by_position(column_idx, std::move(table_column));
1713
4
        }
1714
3
        return Status::OK();
1715
3
    }
1716
1717
    struct FileBlockColumn {
1718
        LocalColumnId file_column_id = LocalColumnId::invalid();
1719
        std::string name;
1720
        DataTypePtr type;
1721
    };
1722
1723
    struct DataReader {
1724
        std::unique_ptr<FileReader> reader;
1725
        std::unique_ptr<TableColumnMapper> column_mapper;
1726
        // Schema of the data file, also including virtual column (row position).
1727
        std::vector<ColumnDefinition> file_schema;
1728
        // Layout of the block returned by file reader, determined by column mapping and file
1729
        // schema. It is used for file reader to materialize columns into correct type and position.
1730
        std::vector<FileBlockColumn> file_block_layout;
1731
        Block block_template;
1732
    };
1733
    DataReader _data_reader;
1734
    std::vector<ColumnDefinition> _projected_columns;
1735
    std::unique_ptr<ScanTask> _current_task;
1736
    std::optional<io::FileDescription> _current_file_description;
1737
    // Range-level compression has higher priority than scan-param compression. TVF/load can keep
1738
    // the logical format as CSV/TEXT while carrying the concrete compression such as GZ or LZO on
1739
    // each TFileRangeDesc, matching the old FileScanner reader contract.
1740
    TFileCompressType::type _current_range_compress_type = TFileCompressType::UNKNOWN;
1741
    std::optional<TUniqueId> _current_range_load_id;
1742
    TFileRangeDesc _current_file_range_desc;
1743
    std::shared_ptr<io::FileSystemProperties> _system_properties;
1744
    // partition key -> value
1745
    std::map<std::string, Field> _partition_values;
1746
    // Predicates built from scan conjuncts before file-level localization.
1747
    std::vector<TableFilter> _table_filters;
1748
    // Number of localized filters before the first unsafe conjunct in the original row-level
1749
    // order. This differs from scanning `_table_filters` for safety because slotless predicates are
1750
    // intentionally absent from that vector but must still act as ordering barriers.
1751
    size_t _constant_pruning_safe_filter_count = 0;
1752
    VExprContextSPtrs _conjuncts;
1753
    ReadProfile _profile;
1754
    // Parsed from row-position based delete files, including position delete and deletion vector.
1755
    DeleteRows* _delete_rows = nullptr;
1756
    DeletionVector* _deletion_vector = nullptr;
1757
    TFileScanRangeParams* _scan_params;
1758
    std::shared_ptr<io::IOContext> _io_ctx;
1759
    RuntimeState* _runtime_state;
1760
    RuntimeProfile* _scanner_profile;
1761
    const std::vector<SlotDescriptor*>* _file_slot_descs = nullptr;
1762
    FileFormat _format;
1763
    TPushAggOp::type _push_down_agg_type = TPushAggOp::type::NONE;
1764
    std::optional<std::vector<GlobalIndex>> _push_down_count_columns;
1765
    size_t _batch_size = 0;
1766
    uint64_t _initial_condition_cache_digest = 0;
1767
    uint64_t _condition_cache_digest = 0;
1768
    // True only when prepare_split() received a digest for the exact conjunct snapshot used by
1769
    // this split. Standalone callers that only supplied TableReadOptions::condition_cache_digest
1770
    // keep the conservative runtime-filter guard.
1771
    bool _condition_cache_digest_covers_current_split = false;
1772
    segment_v2::ConditionCache::ExternalCacheKey _condition_cache_key;
1773
    std::shared_ptr<std::vector<bool>> _condition_cache;
1774
    std::shared_ptr<ConditionCacheContext> _condition_cache_ctx;
1775
    int64_t _condition_cache_hit_count = 0;
1776
    bool _current_reader_reached_eof = false;
1777
    int64_t _remaining_table_level_count = -1;
1778
    int64_t _remaining_file_level_count = -1;
1779
    // True only after the active split selects a table-level row-count shortcut or successfully
1780
    // materializes COUNT rows from file metadata. FileScannerV2 uses this result, rather than the
1781
    // raw aggregate opcode, to keep adaptive batching enabled for normal row-scan fallbacks.
1782
    bool _current_split_uses_metadata_count = false;
1783
    // Snapshot supplied by FileScannerV2 for the active split. It gates every shortcut that emits
1784
    // irreversible aggregate rows, not only the table-level row-count shortcut in prepare_split().
1785
    bool _all_runtime_filters_applied_for_split = true;
1786
    std::optional<GlobalRowIdContext> _global_rowid_context;
1787
    bool _aggregate_pushdown_tried = false;
1788
    bool _current_split_pruned = false;
1789
    TableColumnMapperOptions _mapper_options;
1790
1791
private:
1792
    static const ColumnDefinition* _find_column_definition(
1793
2.06k
            const std::vector<ColumnDefinition>& schema, LocalColumnId column_id) {
1794
13.6k
        for (const auto& field : schema) {
1795
13.6k
            if (field.file_local_id() == column_id.value()) {
1796
2.03k
                return &field;
1797
2.03k
            }
1798
13.6k
        }
1799
30
        return nullptr;
1800
2.06k
    }
1801
1802
14
    static bool _can_push_down_minmax_for_mapping(const ColumnMapping& mapping) {
1803
14
        if (mapping.child_mappings.empty()) {
1804
            // Direct mappings use a slot-ref projection to materialize the file column. The
1805
            // projection does not transform ordering; casts and other conversions are already
1806
            // represented by a non-trivial mapping and must fall back to row scanning.
1807
11
            return mapping.is_trivial;
1808
11
        }
1809
3
        const auto primitive_type = remove_nullable(mapping.file_type)->get_primitive_type();
1810
3
        if (primitive_type != TYPE_STRUCT) {
1811
1
            return false;
1812
1
        }
1813
2
        size_t mapped_children = 0;
1814
2
        const ColumnMapping* mapped_child = nullptr;
1815
2
        for (const auto& child_mapping : mapping.child_mappings) {
1816
2
            if (!child_mapping.file_local_id.has_value()) {
1817
0
                continue;
1818
0
            }
1819
2
            ++mapped_children;
1820
2
            mapped_child = &child_mapping;
1821
2
        }
1822
2
        return mapped_children == 1 && mapped_child != nullptr &&
1823
2
               _can_push_down_minmax_for_mapping(*mapped_child);
1824
3
    }
1825
1826
    static Status build_aggregate_projection(const ColumnMapping& mapping,
1827
2
                                             LocalColumnIndex* projection) {
1828
2
        DORIS_CHECK(projection != nullptr);
1829
2
        DORIS_CHECK(mapping.file_local_id.has_value());
1830
2
        *projection = LocalColumnIndex::local(*mapping.file_local_id);
1831
2
        projection->children.clear();
1832
2
        projection->project_all_children = true;
1833
2
        if (mapping.child_mappings.empty()) {
1834
1
            return Status::OK();
1835
1
        }
1836
1
        projection->project_all_children = false;
1837
1
        for (const auto& child_mapping : mapping.child_mappings) {
1838
1
            if (!child_mapping.file_local_id.has_value()) {
1839
0
                continue;
1840
0
            }
1841
1
            LocalColumnIndex child_projection;
1842
1
            RETURN_IF_ERROR(build_aggregate_projection(child_mapping, &child_projection));
1843
1
            projection->children.push_back(std::move(child_projection));
1844
1
        }
1845
1
        DORIS_CHECK(projection->children.size() == 1);
1846
1
        return Status::OK();
1847
1
    }
1848
1849
    static Status _insert_aggregate_projection_value(const LocalColumnIndex& projection,
1850
20
                                                     const Field& value, IColumn* column) {
1851
20
        DORIS_CHECK(column != nullptr);
1852
20
        if (auto* nullable_column = check_and_get_column<ColumnNullable>(*column)) {
1853
10
            RETURN_IF_ERROR(_insert_aggregate_projection_value(
1854
10
                    projection, value, &nullable_column->get_nested_column()));
1855
10
            nullable_column->get_null_map_data().push_back(0);
1856
10
            return Status::OK();
1857
10
        }
1858
10
        if (projection.project_all_children || projection.children.empty()) {
1859
8
            column->insert(value);
1860
8
            return Status::OK();
1861
8
        }
1862
2
        auto* struct_column = assert_cast<ColumnStruct*>(column);
1863
2
        DORIS_CHECK(projection.children.size() == 1);
1864
2
        const auto& child_projection = projection.children[0];
1865
2
        DORIS_CHECK(struct_column->get_columns().size() == 1);
1866
2
        RETURN_IF_ERROR(_insert_aggregate_projection_value(child_projection, value,
1867
2
                                                           &struct_column->get_column(0)));
1868
2
        return Status::OK();
1869
2
    }
1870
1871
    // Parse a DV into its compressed bitmap. Position delete files continue to use _delete_rows.
1872
    Status _parse_delete_predicates(const SplitReadOptions& options);
1873
};
1874
1875
} // namespace doris::format