Coverage Report

Created: 2026-08-17 18:25

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/storage/segment/column_reader.cpp
Line
Count
Source
1
// Licensed to the Apache Software Foundation (ASF) under one
2
// or more contributor license agreements.  See the NOTICE file
3
// distributed with this work for additional information
4
// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
7
// with the License.  You may obtain a copy of the License at
8
//
9
//   http://www.apache.org/licenses/LICENSE-2.0
10
//
11
// Unless required by applicable law or agreed to in writing,
12
// software distributed under the License is distributed on an
13
// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
14
// KIND, either express or implied.  See the License for the
15
// specific language governing permissions and limitations
16
// under the License.
17
18
#include "storage/segment/column_reader.h"
19
20
#include <assert.h>
21
#include <gen_cpp/Descriptors_types.h>
22
#include <gen_cpp/segment_v2.pb.h>
23
#include <glog/logging.h>
24
25
#include <algorithm>
26
#include <memory>
27
#include <ostream>
28
#include <set>
29
#include <string>
30
#include <utility>
31
32
#include "common/compiler_util.h" // IWYU pragma: keep
33
#include "common/status.h"
34
#include "core/assert_cast.h"
35
#include "core/binary_cast.hpp"
36
#include "core/column/column.h"
37
#include "core/column/column_array.h"
38
#include "core/column/column_map.h"
39
#include "core/column/column_nullable.h"
40
#include "core/column/column_struct.h"
41
#include "core/column/column_vector.h"
42
#include "core/data_type/data_type_agg_state.h"
43
#include "core/data_type/data_type_factory.hpp"
44
#include "core/data_type/data_type_nullable.h"
45
#include "core/data_type/define_primitive_type.h"
46
#include "core/decimal12.h"
47
#include "core/string_ref.h"
48
#include "core/types.h"
49
#include "core/value/decimalv2_value.h"
50
#include "core/value/vdatetime_value.h" //for VecDateTime
51
#include "io/fs/file_reader.h"
52
#include "storage/index/ann/ann_index_reader.h"
53
#include "storage/index/bloom_filter/bloom_filter.h"
54
#include "storage/index/bloom_filter/bloom_filter_index_reader.h"
55
#include "storage/index/index_file_reader.h"
56
#include "storage/index/index_reader.h"
57
#include "storage/index/inverted/analyzer/analyzer.h"
58
#include "storage/index/inverted/inverted_index_reader.h"
59
#include "storage/index/snii/snii_bkd_index_reader.h"
60
#include "storage/index/snii/snii_index_reader.h"
61
#include "storage/index/zone_map/zone_map_index.h"
62
#include "storage/iterators.h"
63
#include "storage/olap_common.h"
64
#include "storage/predicate/block_column_predicate.h"
65
#include "storage/predicate/column_predicate.h"
66
#include "storage/segment/binary_dict_page.h" // for BinaryDictPageDecoder
67
#include "storage/segment/binary_plain_page.h"
68
#include "storage/segment/column_meta_accessor.h"
69
#include "storage/segment/encoding_info.h" // for EncodingInfo
70
#include "storage/segment/page_decoder.h"
71
#include "storage/segment/page_handle.h" // for PageHandle
72
#include "storage/segment/page_io.h"
73
#include "storage/segment/page_pointer.h" // for PagePointer
74
#include "storage/segment/row_ranges.h"
75
#include "storage/segment/segment.h"
76
#include "storage/segment/segment_prefetcher.h"
77
#include "storage/segment/variant/variant_column_reader.h"
78
#include "storage/tablet/tablet_schema.h"
79
#include "storage/types.h" // for TypeInfo
80
#include "util/bitmap.h"
81
#include "util/block_compression.h"
82
#include "util/concurrency_stats.h"
83
#include "util/defer_op.h"
84
#include "util/rle_encoding.h" // for RleDecoder
85
#include "util/slice.h"
86
87
namespace doris::segment_v2 {
88
911
#include "storage/segment/column_reader.h"
89
911
90
911
inline bool read_as_string(PrimitiveType type) {
91
911
    return type == PrimitiveType::TYPE_STRING || type == PrimitiveType::INVALID_TYPE ||
92
           type == PrimitiveType::TYPE_BITMAP || type == PrimitiveType::TYPE_FIXED_LENGTH_OBJECT;
93
13.7k
}
94
13.7k
95
1.43k
bool is_current_level_meta_access_path(const TColumnAccessPath& path) {
96
1.43k
    if (path.data_access_path.path.size() != 1) {
97
12.2k
        return false;
98
12.2k
    }
99
12.2k
    const auto& component = path.data_access_path.path[0];
100
13.7k
    return StringCaseEqual()(component, ColumnIterator::ACCESS_OFFSET) ||
101
           StringCaseEqual()(component, ColumnIterator::ACCESS_NULL);
102
}
103
65.8k
104
65.8k
bool is_current_level_data_access_path(const TColumnAccessPath& path,
105
65.8k
                                       const std::string& column_name) {
106
65.8k
    return path.data_access_path.path.size() == 1 &&
107
           StringCaseEqual()(path.data_access_path.path[0], column_name);
108
117k
}
109
117k
110
117k
void remove_current_level_meta_access_paths(TColumnAccessPaths& paths) {
111
117k
    auto removed = std::ranges::remove_if(paths, is_current_level_meta_access_path);
112
    paths.erase(removed.begin(), removed.end());
113
}
114
115
69.7k
Status ColumnReader::create_array(const ColumnReaderOptions& opts, const ColumnMetaPB& meta,
116
69.7k
                                  const io::FileReaderSPtr& file_reader,
117
                                  std::shared_ptr<ColumnReader>* reader) {
118
69.7k
    DCHECK(meta.children_columns_size() == 2 || meta.children_columns_size() == 3);
119
69.7k
120
69.7k
    std::shared_ptr<ColumnReader> item_reader;
121
69.7k
    RETURN_IF_ERROR(ColumnReader::create(opts, meta.children_columns(0),
122
                                         meta.children_columns(0).num_rows(), file_reader,
123
69.7k
                                         &item_reader));
124
69.7k
125
69.7k
    std::shared_ptr<ColumnReader> offset_reader;
126
69.7k
    RETURN_IF_ERROR(ColumnReader::create(opts, meta.children_columns(1),
127
                                         meta.children_columns(1).num_rows(), file_reader,
128
69.7k
                                         &offset_reader));
129
69.7k
130
49.8k
    std::shared_ptr<ColumnReader> null_reader;
131
49.8k
    if (meta.is_nullable()) {
132
49.8k
        RETURN_IF_ERROR(ColumnReader::create(opts, meta.children_columns(2),
133
49.8k
                                             meta.children_columns(2).num_rows(), file_reader,
134
                                             &null_reader));
135
    }
136
69.7k
137
69.7k
    // The num rows of the array reader equals to the num rows of the length reader.
138
69.7k
    uint64_t array_num_rows = meta.children_columns(1).num_rows();
139
    std::shared_ptr<ColumnReader> array_reader(
140
69.7k
            new ColumnReader(opts, meta, array_num_rows, file_reader));
141
69.7k
    //  array reader do not need to init
142
69.7k
    array_reader->_sub_readers.resize(meta.children_columns_size());
143
69.7k
    array_reader->_sub_readers[0] = std::move(item_reader);
144
49.7k
    array_reader->_sub_readers[1] = std::move(offset_reader);
145
49.7k
    if (meta.is_nullable()) {
146
69.7k
        array_reader->_sub_readers[2] = std::move(null_reader);
147
69.7k
    }
148
69.7k
    array_reader->_meta_type = FieldType::OLAP_FIELD_TYPE_ARRAY;
149
69.7k
    *reader = std::move(array_reader);
150
    return Status::OK();
151
}
152
153
72.0k
Status ColumnReader::create_map(const ColumnReaderOptions& opts, const ColumnMetaPB& meta,
154
                                const io::FileReaderSPtr& file_reader,
155
72.0k
                                std::shared_ptr<ColumnReader>* reader) {
156
72.0k
    // map reader now has 3 sub readers for key, value, offsets(scalar), null(scala)
157
72.0k
    DCHECK(meta.children_columns_size() == 3 || meta.children_columns_size() == 4);
158
72.0k
    std::shared_ptr<ColumnReader> key_reader;
159
72.0k
    RETURN_IF_ERROR(ColumnReader::create(opts, meta.children_columns(0),
160
72.0k
                                         meta.children_columns(0).num_rows(), file_reader,
161
72.0k
                                         &key_reader));
162
72.0k
    std::shared_ptr<ColumnReader> val_reader;
163
72.0k
    RETURN_IF_ERROR(ColumnReader::create(opts, meta.children_columns(1),
164
72.0k
                                         meta.children_columns(1).num_rows(), file_reader,
165
72.0k
                                         &val_reader));
166
72.0k
    std::shared_ptr<ColumnReader> offset_reader;
167
72.0k
    RETURN_IF_ERROR(ColumnReader::create(opts, meta.children_columns(2),
168
72.0k
                                         meta.children_columns(2).num_rows(), file_reader,
169
72.0k
                                         &offset_reader));
170
16.9k
    std::shared_ptr<ColumnReader> null_reader;
171
16.9k
    if (meta.is_nullable()) {
172
16.9k
        RETURN_IF_ERROR(ColumnReader::create(opts, meta.children_columns(3),
173
16.9k
                                             meta.children_columns(3).num_rows(), file_reader,
174
                                             &null_reader));
175
    }
176
72.0k
177
72.0k
    // The num rows of the map reader equals to the num rows of the length reader.
178
72.0k
    uint64_t map_num_rows = meta.children_columns(2).num_rows();
179
72.0k
    std::shared_ptr<ColumnReader> map_reader(
180
            new ColumnReader(opts, meta, map_num_rows, file_reader));
181
72.0k
    map_reader->_sub_readers.resize(meta.children_columns_size());
182
72.0k
183
72.0k
    map_reader->_sub_readers[0] = std::move(key_reader);
184
72.0k
    map_reader->_sub_readers[1] = std::move(val_reader);
185
16.9k
    map_reader->_sub_readers[2] = std::move(offset_reader);
186
16.9k
    if (meta.is_nullable()) {
187
72.0k
        map_reader->_sub_readers[3] = std::move(null_reader);
188
72.0k
    }
189
72.0k
    map_reader->_meta_type = FieldType::OLAP_FIELD_TYPE_MAP;
190
72.0k
    *reader = std::move(map_reader);
191
    return Status::OK();
192
}
193
194
8.34k
Status ColumnReader::create_struct(const ColumnReaderOptions& opts, const ColumnMetaPB& meta,
195
                                   uint64_t num_rows, const io::FileReaderSPtr& file_reader,
196
8.34k
                                   std::shared_ptr<ColumnReader>* reader) {
197
    // not support empty struct
198
8.34k
    DCHECK(meta.children_columns_size() >= 1);
199
8.34k
    // create struct column reader
200
8.34k
    std::shared_ptr<ColumnReader> struct_reader(
201
            new ColumnReader(opts, meta, num_rows, file_reader));
202
45.5k
    struct_reader->_sub_readers.reserve(meta.children_columns_size());
203
37.2k
    // now we support struct column can add the children columns according to the schema-change behavior
204
37.2k
    for (int i = 0; i < meta.children_columns_size(); i++) {
205
37.2k
        std::shared_ptr<ColumnReader> sub_reader;
206
37.2k
        RETURN_IF_ERROR(ColumnReader::create(opts, meta.children_columns(i),
207
37.2k
                                             meta.children_columns(i).num_rows(), file_reader,
208
37.2k
                                             &sub_reader));
209
8.34k
        struct_reader->_sub_readers.push_back(std::move(sub_reader));
210
8.34k
    }
211
8.34k
    struct_reader->_meta_type = FieldType::OLAP_FIELD_TYPE_STRUCT;
212
8.34k
    *reader = std::move(struct_reader);
213
    return Status::OK();
214
}
215
216
910
Status ColumnReader::create_agg_state(const ColumnReaderOptions& opts, const ColumnMetaPB& meta,
217
910
                                      uint64_t num_rows, const io::FileReaderSPtr& file_reader,
218
0
                                      std::shared_ptr<ColumnReader>* reader) {
219
0
    if (!meta.has_function_name()) { // meet old version ColumnMetaPB
220
0
        std::shared_ptr<ColumnReader> reader_local(
221
0
                new ColumnReader(opts, meta, num_rows, file_reader));
222
0
        RETURN_IF_ERROR(reader_local->init(&meta));
223
0
        *reader = std::move(reader_local);
224
        return Status::OK();
225
910
    }
226
910
227
910
    auto data_type = DataTypeFactory::instance().create_data_type(meta);
228
910
    const auto* agg_state_type = assert_cast<const DataTypeAggState*>(data_type.get());
229
    agg_state_type->check_function_compatibility(opts.be_exec_version);
230
910
    auto type = agg_state_type->get_serialized_type()->get_primitive_type();
231
855
232
855
    if (read_as_string(type)) {
233
855
        std::shared_ptr<ColumnReader> reader_local(
234
855
                new ColumnReader(opts, meta, num_rows, file_reader));
235
855
        RETURN_IF_ERROR(reader_local->init(&meta));
236
855
        *reader = std::move(reader_local);
237
41
        return Status::OK();
238
41
    } else if (type == PrimitiveType::TYPE_MAP) {
239
12
        return create_map(opts, meta, file_reader, reader);
240
12
    } else if (type == PrimitiveType::TYPE_ARRAY) {
241
0
        return create_array(opts, meta, file_reader, reader);
242
0
    } else if (type == PrimitiveType::TYPE_STRUCT) {
243
        return create_struct(opts, meta, num_rows, file_reader, reader);
244
2
    }
245
2
246
910
    return Status::InternalError("Not supported type: {}, serialized type: {}",
247
                                 agg_state_type->get_name(), int(type));
248
91.5k
}
249
91.5k
250
91.5k
bool ColumnReader::is_compaction_reader_type(ReaderType type) {
251
91.5k
    return type == ReaderType::READER_BASE_COMPACTION ||
252
91.5k
           type == ReaderType::READER_CUMULATIVE_COMPACTION ||
253
91.5k
           type == ReaderType::READER_COLD_DATA_COMPACTION ||
254
91.5k
           type == ReaderType::READER_SEGMENT_COMPACTION ||
255
           type == ReaderType::READER_FULL_COMPACTION;
256
}
257
258
21.3M
Status ColumnReader::create(const ColumnReaderOptions& opts, const ColumnMetaPB& meta,
259
21.3M
                            uint64_t num_rows, const io::FileReaderSPtr& file_reader,
260
3
                            std::shared_ptr<ColumnReader>* reader) {
261
3
    if (opts.const_value.has_value()) {
262
3
        *reader = std::make_shared<ConstantColumnReader>(*opts.const_value);
263
21.3M
        return Status::OK();
264
21.1M
    }
265
21.1M
    if (is_scalar_type((FieldType)meta.type())) {
266
21.1M
        std::shared_ptr<ColumnReader> reader_local(
267
21.1M
                new ColumnReader(opts, meta, num_rows, file_reader));
268
21.1M
        RETURN_IF_ERROR(reader_local->init(&meta));
269
21.1M
        *reader = std::move(reader_local);
270
141k
        return Status::OK();
271
141k
    } else {
272
911
        auto type = (FieldType)meta.type();
273
911
        switch (type) {
274
0
        case FieldType::OLAP_FIELD_TYPE_AGG_STATE: {
275
8.34k
            return create_agg_state(opts, meta, num_rows, file_reader, reader);
276
8.34k
        }
277
0
        case FieldType::OLAP_FIELD_TYPE_STRUCT: {
278
69.9k
            return create_struct(opts, meta, num_rows, file_reader, reader);
279
69.9k
        }
280
0
        case FieldType::OLAP_FIELD_TYPE_ARRAY: {
281
72.0k
            return create_array(opts, meta, file_reader, reader);
282
72.0k
        }
283
0
        case FieldType::OLAP_FIELD_TYPE_MAP: {
284
18.1k
            return create_map(opts, meta, file_reader, reader);
285
        }
286
18.1k
        case FieldType::OLAP_FIELD_TYPE_VARIANT: {
287
18.1k
            // Read variant only root data using a single ColumnReader
288
18.1k
            std::shared_ptr<ColumnReader> reader_local(
289
18.1k
                    new ColumnReader(opts, meta, num_rows, file_reader));
290
18.1k
            RETURN_IF_ERROR(reader_local->init(&meta));
291
18.1k
            *reader = std::move(reader_local);
292
0
            return Status::OK();
293
0
        }
294
0
        default:
295
141k
            return Status::NotSupported("unsupported type for ColumnReader: {}",
296
141k
                                        std::to_string(int(type)));
297
21.3M
        }
298
    }
299
18.6k
}
300
301
ColumnReader::ColumnReader() = default;
302
303
21.3M
ColumnReader::ColumnReader(const ColumnReaderOptions& opts, const ColumnMetaPB& meta,
304
21.3M
                           uint64_t num_rows, io::FileReaderSPtr file_reader)
305
21.3M
        : _use_index_page_cache(!config::disable_storage_page_cache),
306
21.3M
          _opts(opts),
307
21.3M
          _num_rows(num_rows),
308
21.3M
          _file_reader(std::move(file_reader)),
309
21.3M
          _dict_encoding_type(UNKNOWN_DICT_ENCODING) {
310
21.3M
    _meta_length = meta.length();
311
69.9k
    _meta_type = (FieldType)meta.type();
312
69.9k
    if (_meta_type == FieldType::OLAP_FIELD_TYPE_ARRAY) {
313
21.3M
        _meta_children_column_type = (FieldType)meta.children_columns(0).type();
314
21.3M
    }
315
21.3M
    _data_type = DataTypeFactory::instance().create_data_type(meta);
316
21.3M
    _meta_is_nullable = meta.is_nullable();
317
21.3M
    _meta_dict_page = meta.dict_page();
318
    _meta_compression = meta.compression();
319
21.4M
}
320
321
21.1M
ColumnReader::~ColumnReader() = default;
322
21.1M
323
21.1M
int64_t ColumnReader::get_metadata_size() const {
324
    return sizeof(ColumnReader) + (_segment_zone_map ? _segment_zone_map->ByteSizeLong() : 0);
325
}
326
327
#ifdef BE_TEST
328
/// This function is only used in UT to verify the correctness of data read from zone map
329
/// See UT case 'SegCompactionMoWTest.SegCompactionInterleaveWithBig_ooooOOoOooooooooO'
330
/// be/test/olap/segcompaction_mow_test.cpp
331
void ColumnReader::check_data_by_zone_map_for_test(const MutableColumnPtr& dst) const {
332
    if (!_segment_zone_map) {
333
        return;
334
    }
335
336
    const auto rows = dst->size();
337
    if (rows == 0) {
338
        return;
339
    }
340
341
    FieldType type = _type;
342
343
    if (type != FieldType::OLAP_FIELD_TYPE_INT) {
344
        return;
345
    }
346
347
    auto* non_nullable_column =
348
            is_column_nullable(*dst)
349
                    ? assert_cast<ColumnNullable*>(dst.get())->get_nested_column_ptr().get()
350
                    : dst.get();
351
352
    /// Only verify when the destination column carries Field-accessible TYPE_INT data.
353
    if (check_and_get_column<ColumnVector<TYPE_INT>>(non_nullable_column) == nullptr) {
354
        return;
355
    }
356
357
    ZoneMap zone_map;
358
    THROW_IF_ERROR(ZoneMap::from_proto(*_segment_zone_map, _data_type, zone_map));
359
360
    if (zone_map.has_null) {
361
        return;
362
    }
363
364
    for (size_t i = 0; i != rows; ++i) {
365
        Field field;
366
        dst->get(i, field);
367
        DCHECK(!field.is_null());
368
        const auto v = field.get<TYPE_INT>();
369
        DCHECK_GE(v, zone_map.min_value.get<TYPE_INT>());
370
        DCHECK_LE(v, zone_map.max_value.get<TYPE_INT>());
371
    }
372
}
373
21.0M
#endif
374
21.0M
375
Status ColumnReader::init(const ColumnMetaPB* meta) {
376
21.0M
    _type = (FieldType)meta->type();
377
20.7M
378
20.7M
    if (meta->has_be_exec_version()) {
379
        _be_exec_version = meta->be_exec_version();
380
21.1M
    }
381
0
382
0
    if (_type == FieldType::OLAP_FIELD_TYPE_NONE || _type == FieldType::OLAP_FIELD_TYPE_UNKNOWN) {
383
21.0M
        return Status::NotSupported("unsupported typeinfo, type={}", meta->type());
384
    }
385
62.6M
    RETURN_IF_ERROR(EncodingInfo::get(_type, meta->encoding(), &_encoding_info));
386
41.7M
387
41.7M
    for (int i = 0; i < meta->indexes_size(); i++) {
388
0
        const auto& index_meta = meta->indexes(i);
389
0
        switch (index_meta.type()) {
390
21.0M
        case BITMAP_INDEX:
391
21.0M
            break;
392
21.0M
        case ORDINAL_INDEX:
393
21.0M
            _ordinal_index.reset(
394
20.6M
                    new OrdinalIndexReader(_file_reader, _num_rows, index_meta.ordinal_index()));
395
20.6M
            break;
396
20.6M
        case ZONE_MAP_INDEX:
397
20.6M
            _segment_zone_map =
398
20.6M
                    std::make_unique<ZoneMapPB>(index_meta.zone_map_index().segment_zone_map());
399
20.6M
            _zone_map_index.reset(new ZoneMapIndexReader(
400
5.75k
                    _file_reader, index_meta.zone_map_index().page_zone_maps()));
401
5.75k
            break;
402
5.75k
        case BLOOM_FILTER_INDEX:
403
5.75k
            _bloom_filter_index.reset(
404
0
                    new BloomFilterIndexReader(_file_reader, index_meta.bloom_filter_index()));
405
0
            break;
406
0
        case NESTED_OFFSETS_INDEX:
407
0
            break;
408
0
        default:
409
41.7M
            return Status::Corruption("Bad file {}: invalid column index type {}",
410
41.7M
                                      _file_reader->path().native(), index_meta.type());
411
20.9M
        }
412
    }
413
    update_metadata_size();
414
415
20.9M
    // ArrayColumnWriter writes a single empty array and flushes. In this scenario,
416
0
    // the item writer doesn't write any data and the corresponding ordinal index is empty.
417
0
    if (_ordinal_index == nullptr && !is_empty()) {
418
0
        return Status::Corruption("Bad file {}: missing ordinal index for column {}",
419
                                  _file_reader->path().native(), meta->column_id());
420
20.9M
    }
421
20.9M
422
    return Status::OK();
423
}
424
425
Status ColumnReader::new_index_iterator(const std::shared_ptr<IndexFileReader>& index_file_reader,
426
79.1k
                                        const TabletIndex* index_meta, const std::string& rowset_id,
427
79.1k
                                        uint32_t segment_id, size_t rows_of_segment,
428
79.1k
                                        std::unique_ptr<IndexIterator>* iterator) {
429
79.1k
    RETURN_IF_ERROR(
430
79.1k
            _load_index(index_file_reader, index_meta, rowset_id, segment_id, rows_of_segment));
431
79.1k
    {
432
79.4k
        std::shared_lock<std::shared_mutex> rlock(_load_index_lock);
433
79.5k
        auto iter = _index_readers.find(index_meta->index_id());
434
79.5k
        if (iter != _index_readers.end()) {
435
79.5k
            if (iter->second != nullptr) {
436
79.4k
                RETURN_IF_ERROR(iter->second->new_iterator(iterator));
437
79.1k
            }
438
79.1k
        }
439
79.1k
    }
440
    return Status::OK();
441
}
442
443
2.09M
Status ColumnReader::read_page(const ColumnIteratorOptions& iter_opts, const PagePointer& pp,
444
2.09M
                               PageHandle* handle, Slice* page_body, PageFooterPB* footer,
445
2.09M
                               BlockCompressionCodec* codec) const {
446
2.09M
    SCOPED_CONCURRENCY_COUNT(ConcurrencyStatsManager::instance().column_reader_read_page);
447
2.09M
    iter_opts.sanity_check();
448
2.09M
    PageReadOptions opts(iter_opts.io_ctx);
449
2.09M
    opts.verify_checksum = _opts.verify_checksum;
450
2.09M
    opts.use_page_cache = iter_opts.use_page_cache;
451
2.09M
    opts.kept_in_memory = _opts.kept_in_memory;
452
2.09M
    opts.type = iter_opts.type;
453
2.09M
    opts.file_reader = iter_opts.file_reader;
454
2.09M
    opts.page_pointer = pp;
455
2.09M
    opts.codec = codec;
456
    opts.stats = iter_opts.stats;
457
2.09M
    opts.encoding_info = _encoding_info;
458
2.09M
459
    return PageIO::read_and_decompress_page(opts, handle, page_body, footer);
460
}
461
462
Status ColumnReader::get_row_ranges_by_zone_map(
463
133k
        const AndBlockColumnPredicate* col_predicates,
464
133k
        const std::vector<std::shared_ptr<const ColumnPredicate>>* delete_predicates,
465
133k
        RowRanges* row_ranges, const ColumnIteratorOptions& iter_opts) {
466
133k
    std::vector<uint32_t> page_indexes;
467
133k
    RETURN_IF_ERROR(
468
133k
            _get_filtered_pages(col_predicates, delete_predicates, &page_indexes, iter_opts));
469
133k
    RETURN_IF_ERROR(_calculate_row_ranges(page_indexes, row_ranges, iter_opts));
470
    return Status::OK();
471
22.6k
}
472
22.6k
473
0
Status ColumnReader::next_batch_of_zone_map(size_t* n, MutableColumnPtr& dst) const {
474
0
    if (_segment_zone_map == nullptr) {
475
        return Status::InternalError("segment zonemap not exist");
476
22.6k
    }
477
22.6k
    // TODO: this work to get min/max value seems should only do once
478
    ZoneMap zone_map;
479
22.6k
    RETURN_IF_ERROR(ZoneMap::from_proto(*_segment_zone_map, _data_type, zone_map));
480
22.6k
481
1.22k
    dst->reserve(*n);
482
1.22k
    if (!zone_map.has_not_null) {
483
1.22k
        assert_cast<ColumnNullable&>(*dst).insert_many_defaults(*n);
484
21.4k
        return Status::OK();
485
42.8k
    }
486
21.4k
    dst->insert(zone_map.max_value);
487
21.4k
    for (int i = 1; i < *n; ++i) {
488
21.4k
        dst->insert(zone_map.min_value);
489
22.6k
    }
490
    return Status::OK();
491
}
492
1.97M
493
1.97M
Status ColumnReader::match_condition(const AndBlockColumnPredicate* col_predicates,
494
1.97M
                                     bool* matched) const {
495
0
    *matched = true;
496
0
    if (_zone_map_index == nullptr) {
497
1.97M
        return Status::OK();
498
1.97M
    }
499
    ZoneMap zone_map;
500
1.97M
    RETURN_IF_ERROR(ZoneMap::from_proto(*_segment_zone_map, _data_type, zone_map));
501
1.97M
502
1.97M
    *matched = _zone_map_match_condition(zone_map, col_predicates);
503
    return Status::OK();
504
}
505
3
506
3
Status ConstantColumnReader::match_condition(const AndBlockColumnPredicate* col_predicates,
507
3
                                             bool* matched) const {
508
3
    ZoneMap zone_map;
509
3
    zone_map.min_value = _value;
510
    zone_map.max_value = _value;
511
    zone_map.has_not_null = !_value.is_null();
512
3
    // evaluate_and returns false iff no value in [min, max] (i.e. the real constant) can satisfy
513
3
    // the predicates; predicates that don't support zonemap conservatively return true.
514
3
    *matched = col_predicates->evaluate_and(zone_map);
515
    return Status::OK();
516
}
517
518
11.4M
Status ColumnReader::prune_predicates_by_zone_map(
519
11.4M
        std::vector<std::shared_ptr<ColumnPredicate>>& predicates, const int column_id,
520
11.4M
        bool* pruned) const {
521
1.22k
    *pruned = false;
522
1.22k
    if (_zone_map_index == nullptr) {
523
        return Status::OK();
524
11.4M
    }
525
11.4M
526
11.4M
    ZoneMap zone_map;
527
0
    RETURN_IF_ERROR(ZoneMap::from_proto(*_segment_zone_map, _data_type, zone_map));
528
0
    if (zone_map.pass_all) {
529
        return Status::OK();
530
22.9M
    }
531
11.5M
532
11.5M
    for (auto it = predicates.begin(); it != predicates.end();) {
533
12.0k
        auto predicate = *it;
534
12.0k
        if (predicate->column_id() == column_id && predicate->is_always_true(zone_map)) {
535
11.5M
            *pruned = true;
536
11.5M
            it = predicates.erase(it);
537
11.5M
        } else {
538
11.5M
            ++it;
539
11.4M
        }
540
11.4M
    }
541
    return Status::OK();
542
}
543
2.07M
544
2.07M
bool ColumnReader::_zone_map_match_condition(const ZoneMap& zone_map,
545
0
                                             const AndBlockColumnPredicate* col_predicates) const {
546
0
    if (zone_map.pass_all) {
547
        return true;
548
2.07M
    }
549
2.07M
550
    return col_predicates->evaluate_and(zone_map);
551
}
552
553
Status ColumnReader::_get_filtered_pages(
554
133k
        const AndBlockColumnPredicate* col_predicates,
555
133k
        const std::vector<std::shared_ptr<const ColumnPredicate>>* delete_predicates,
556
        std::vector<uint32_t>* page_indexes, const ColumnIteratorOptions& iter_opts) {
557
133k
    RETURN_IF_ERROR(_load_zone_map_index(_use_index_page_cache, _opts.kept_in_memory, iter_opts));
558
133k
559
311k
    const std::vector<ZoneMapPB>& zone_maps = _zone_map_index->page_zone_maps();
560
177k
    size_t page_size = _zone_map_index->num_pages();
561
90.3k
    for (size_t i = 0; i < page_size; ++i) {
562
90.3k
        if (zone_maps[i].pass_all()) {
563
87.3k
            page_indexes->push_back(cast_set<uint32_t>(i));
564
87.3k
        } else {
565
87.3k
            segment_v2::ZoneMap zone_map;
566
86.7k
            RETURN_IF_ERROR(ZoneMap::from_proto(zone_maps[i], _data_type, zone_map));
567
86.7k
            if (_zone_map_match_condition(zone_map, col_predicates)) {
568
4
                bool should_read = true;
569
                if (delete_predicates != nullptr) {
570
                    for (auto del_pred : *delete_predicates) {
571
4
                        // TODO: Both `min_value` and `max_value` should be 0 or neither should be 0.
572
1
                        //  So nullable only need to judge once.
573
1
                        if (del_pred->evaluate_del(zone_map)) {
574
1
                            should_read = false;
575
4
                            break;
576
3
                        }
577
86.7k
                    }
578
86.7k
                }
579
86.7k
                if (should_read) {
580
86.7k
                    page_indexes->push_back(cast_set<uint32_t>(i));
581
87.3k
                }
582
177k
            }
583
18.4E
        }
584
18.4E
    }
585
18.4E
    VLOG(1) << "total-pages: " << page_size << " not-filtered-pages: " << page_indexes->size()
586
18.4E
            << " filtered-percent:"
587
133k
            << 1.0 - (static_cast<double>(page_indexes->size()) /
588
133k
                      (static_cast<double>(page_size) * 1.0));
589
    return Status::OK();
590
}
591
592
134k
Status ColumnReader::_calculate_row_ranges(const std::vector<uint32_t>& page_indexes,
593
134k
                                           RowRanges* row_ranges,
594
134k
                                           const ColumnIteratorOptions& iter_opts) {
595
177k
    row_ranges->clear();
596
177k
    RETURN_IF_ERROR(_load_ordinal_index(_use_index_page_cache, _opts.kept_in_memory, iter_opts));
597
177k
    for (auto i : page_indexes) {
598
177k
        ordinal_t page_first_id = _ordinal_index->get_first_ordinal(i);
599
177k
        ordinal_t page_last_id = _ordinal_index->get_last_ordinal(i);
600
177k
        RowRanges page_row_ranges(RowRanges::create_single(page_first_id, page_last_id + 1));
601
134k
        RowRanges::ranges_union(*row_ranges, page_row_ranges, row_ranges);
602
134k
    }
603
    return Status::OK();
604
}
605
606
108
Status ColumnReader::get_row_ranges_by_bloom_filter(const AndBlockColumnPredicate* col_predicates,
607
108
                                                    RowRanges* row_ranges,
608
108
                                                    const ColumnIteratorOptions& iter_opts) {
609
108
    RETURN_IF_ERROR(_load_ordinal_index(_use_index_page_cache, _opts.kept_in_memory, iter_opts));
610
108
    RETURN_IF_ERROR(
611
108
            _load_bloom_filter_index(_use_index_page_cache, _opts.kept_in_memory, iter_opts));
612
108
    RowRanges bf_row_ranges;
613
108
    std::unique_ptr<BloomFilterIndexIterator> bf_iter;
614
108
    RETURN_IF_ERROR(
615
            _bloom_filter_index->new_iterator(&bf_iter, iter_opts.stats, &iter_opts.io_ctx));
616
108
    size_t range_size = row_ranges->range_size();
617
212
    // get covered page ids
618
104
    std::set<uint32_t> page_ids;
619
104
    for (int i = 0; i < range_size; ++i) {
620
104
        int64_t from = row_ranges->get_range_from(i);
621
104
        int64_t idx = from;
622
362
        int64_t to = row_ranges->get_range_to(i);
623
258
        auto iter = _ordinal_index->seek_at_or_before(from);
624
258
        while (idx < to && iter.valid()) {
625
258
            page_ids.insert(iter.page_index());
626
258
            idx = iter.last_ordinal() + 1;
627
104
            iter.next();
628
334
        }
629
334
    }
630
334
    for (auto& pid : page_ids) {
631
334
        std::unique_ptr<BloomFilter> bf;
632
19
        RETURN_IF_ERROR(bf_iter->read_bloom_filter(pid, &bf));
633
19
        if (col_predicates->evaluate_and(bf.get())) {
634
19
            bf_row_ranges.add(RowRange(_ordinal_index->get_first_ordinal(pid),
635
334
                                       _ordinal_index->get_last_ordinal(pid) + 1));
636
108
        }
637
108
    }
638
108
    RowRanges::ranges_intersection(*row_ranges, bf_row_ranges, row_ranges);
639
    return Status::OK();
640
}
641
1.76M
642
1.76M
Status ColumnReader::_load_ordinal_index(bool use_page_cache, bool kept_in_memory,
643
0
                                         const ColumnIteratorOptions& iter_opts) {
644
0
    if (!_ordinal_index) {
645
1.76M
        return Status::InternalError("ordinal_index not inited");
646
1.76M
    }
647
    return _ordinal_index->load(use_page_cache, kept_in_memory, iter_opts.stats, &iter_opts.io_ctx);
648
}
649
134k
650
134k
Status ColumnReader::_load_zone_map_index(bool use_page_cache, bool kept_in_memory,
651
134k
                                          const ColumnIteratorOptions& iter_opts) {
652
134k
    if (_zone_map_index != nullptr) {
653
134k
        return _zone_map_index->load(use_page_cache, kept_in_memory, iter_opts.stats,
654
18.4E
                                     &iter_opts.io_ctx);
655
134k
    }
656
    return Status::OK();
657
2.82k
}
658
2.82k
659
2.82k
Status ColumnReader::get_segment_zone_map(segment_v2::ZoneMap* zone_map) const {
660
2.82k
    DORIS_CHECK(zone_map != nullptr);
661
2.82k
    DORIS_CHECK(_segment_zone_map != nullptr);
662
    return ZoneMap::from_proto(*_segment_zone_map, _data_type, *zone_map);
663
1
}
664
1
665
1
Status ConstantColumnReader::get_segment_zone_map(segment_v2::ZoneMap* zone_map) const {
666
1
    zone_map->min_value = _value;
667
1
    zone_map->max_value = _value;
668
1
    zone_map->has_not_null = !_value.is_null();
669
    return Status::OK();
670
}
671
601
672
601
Status ColumnReader::get_page_zone_maps(const ColumnIteratorOptions& iter_opts,
673
601
                                        const std::vector<ZoneMapPB>** zone_maps) {
674
0
    DORIS_CHECK(zone_maps != nullptr);
675
0
    if (_zone_map_index == nullptr) {
676
0
        *zone_maps = nullptr;
677
601
        return Status::OK();
678
601
    }
679
601
    RETURN_IF_ERROR(_load_zone_map_index(_use_index_page_cache, _opts.kept_in_memory, iter_opts));
680
601
    *zone_maps = &_zone_map_index->page_zone_maps();
681
    return Status::OK();
682
}
683
684
1.05k
Status ColumnReader::get_row_range_for_page(uint32_t page_index,
685
1.05k
                                            const ColumnIteratorOptions& iter_opts,
686
1.05k
                                            RowRange* row_range) {
687
1.05k
    DORIS_CHECK(row_range != nullptr);
688
1.05k
    RETURN_IF_ERROR(_load_ordinal_index(_use_index_page_cache, _opts.kept_in_memory, iter_opts));
689
1.05k
    DORIS_CHECK(page_index < _ordinal_index->num_data_pages());
690
1.05k
    *row_range = RowRange(_ordinal_index->get_first_ordinal(page_index),
691
1.05k
                          _ordinal_index->get_last_ordinal(page_index) + 1);
692
    return Status::OK();
693
}
694
695
76.5k
Status ColumnReader::_load_index(const std::shared_ptr<IndexFileReader>& index_file_reader,
696
76.5k
                                 const TabletIndex* index_meta, const std::string& rowset_id,
697
                                 uint32_t segment_id, size_t rows_of_segment) {
698
76.5k
    std::unique_lock<std::shared_mutex> wlock(_load_index_lock);
699
0
700
0
    if (index_meta == nullptr) {
701
0
        return Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
702
                "Failed to load inverted index: index metadata is null");
703
76.5k
    }
704
76.5k
705
0
    auto it = _index_readers.find(index_meta->index_id());
706
0
    if (it != _index_readers.end()) {
707
        return Status::OK();
708
76.5k
    }
709
76.5k
710
    bool should_analyzer =
711
76.5k
            inverted_index::InvertedIndexAnalyzer::should_analyzer(index_meta->properties());
712
76.5k
713
7.10k
    FieldType type;
714
69.4k
    if (_meta_type == FieldType::OLAP_FIELD_TYPE_ARRAY) {
715
69.4k
        type = _meta_children_column_type;
716
69.4k
    } else {
717
        type = _type;
718
76.5k
    }
719
157
720
157
    if (index_meta->index_type() == IndexType::ANN) {
721
157
        _index_readers[index_meta->index_id()] = std::make_shared<AnnIndexReader>(
722
157
                index_meta, index_file_reader, rowset_id, segment_id, rows_of_segment);
723
        return Status::OK();
724
76.3k
    }
725
726
76.3k
    IndexReaderPtr index_reader;
727
41.5k
    if (index_file_reader->get_storage_format() == InvertedIndexStorageFormatPB::SNII) {
728
23.5k
        // Mirrors the writer-side split in IndexColumnWriter::create: text is
729
23.5k
        // served by the SPIMI reader, numerics by the SNII-native BKD.
730
23.5k
        if (is_string_type(type)) {
731
0
            auto reader_type = should_analyzer ? InvertedIndexReaderType::FULLTEXT
732
0
                                               : InvertedIndexReaderType::STRING_TYPE;
733
0
            index_reader =
734
23.5k
                    SniiIndexReader::create_shared(index_meta, index_file_reader, reader_type);
735
18.0k
        } else if (field_is_numeric_type(type)) {
736
18.0k
            index_reader = SniiBkdIndexReader::create_shared(index_meta, index_file_reader);
737
18.0k
        } else {
738
18.0k
            return Status::Error<ErrorCode::INVERTED_INDEX_NOT_SUPPORTED>(
739
0
                    "SNII inverted index storage format does not support index type {}", type);
740
0
        }
741
0
        _index_readers[index_meta->index_id()] = index_reader;
742
18.0k
        return Status::OK();
743
41.5k
    }
744
34.9k
745
34.9k
    if (is_string_type(type)) {
746
34.9k
        if (should_analyzer) {
747
0
            try {
748
0
                index_reader = FullTextIndexReader::create_shared(index_meta, index_file_reader);
749
0
            } catch (const CLuceneError& e) {
750
18.4E
                return Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
751
18.4E
                        "create FullTextIndexReader error: {}", e.what());
752
18.4E
            }
753
18.4E
        } else {
754
76.5k
            try {
755
76.5k
                index_reader =
756
76.3k
                        StringTypeInvertedIndexReader::create_shared(index_meta, index_file_reader);
757
            } catch (const CLuceneError& e) {
758
112k
                return Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
759
112k
                        "create StringTypeInvertedIndexReader error: {}", e.what());
760
            }
761
18.4E
        }
762
77
    } else if (field_is_numeric_type(type)) {
763
18.4E
        try {
764
18.4E
            index_reader = BkdIndexReader::create_shared(index_meta, index_file_reader);
765
18.4E
        } catch (const CLuceneError& e) {
766
18.4E
            return Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
767
                    "create BkdIndexReader error: {}", e.what());
768
        }
769
105
    } else {
770
106
        return Status::Error<ErrorCode::INVERTED_INDEX_NOT_SUPPORTED>(
771
106
                "Field type {} is not supported for inverted index", type);
772
106
    }
773
106
    _index_readers[index_meta->index_id()] = index_reader;
774
18.4E
    return Status::OK();
775
105
}
776
777
bool ColumnReader::has_bloom_filter_index(bool ngram) const {
778
1.63M
    if (_bloom_filter_index == nullptr) return false;
779
1.63M
780
1.63M
    if (ngram) {
781
1.63M
        return _bloom_filter_index->algorithm() == BloomFilterAlgorithmPB::NGRAM_BLOOM_FILTER;
782
0
    } else {
783
0
        return _bloom_filter_index->algorithm() != BloomFilterAlgorithmPB::NGRAM_BLOOM_FILTER;
784
1.63M
    }
785
1.63M
}
786
787
Status ColumnReader::_load_bloom_filter_index(bool use_page_cache, bool kept_in_memory,
788
1.24M
                                              const ColumnIteratorOptions& iter_opts) {
789
18.4E
    if (_bloom_filter_index != nullptr) {
790
18.4E
        return _bloom_filter_index->load(use_page_cache, kept_in_memory, iter_opts.stats,
791
1.24M
                                         &iter_opts.io_ctx);
792
1.24M
    }
793
1.24M
    return Status::OK();
794
1.24M
}
795
1.24M
796
Status ColumnReader::seek_at_or_before(ordinal_t ordinal, OrdinalPageIndexIterator* iter,
797
398k
                                       const ColumnIteratorOptions& iter_opts) {
798
398k
    RETURN_IF_ERROR(_load_ordinal_index(_use_index_page_cache, _opts.kept_in_memory, iter_opts));
799
398k
    *iter = _ordinal_index->seek_at_or_before(ordinal);
800
    if (!iter->valid()) {
801
        return Status::NotFound("Failed to seek to ordinal {}, ", ordinal);
802
28.9M
    }
803
28.9M
    return Status::OK();
804
47.2k
}
805
47.2k
806
47.2k
Status ColumnReader::get_ordinal_index_reader(OrdinalIndexReader*& reader,
807
28.8M
                                              OlapReaderStatistics* index_load_stats) {
808
28.8M
    CHECK(_ordinal_index) << fmt::format("ordinal index is null for column reader of type {}",
809
17.3M
                                         std::to_string(int(_meta_type)));
810
17.3M
    RETURN_IF_ERROR(
811
11.4M
            _ordinal_index->load(_use_index_page_cache, _opts.kept_in_memory, index_load_stats));
812
11.4M
    reader = _ordinal_index.get();
813
28.8M
    return Status::OK();
814
28.8M
}
815
28.8M
816
81.3k
Status ColumnReader::new_iterator(ColumnIteratorUPtr* iterator, const TabletColumn* tablet_column) {
817
81.3k
    return new_iterator(iterator, tablet_column, nullptr);
818
873
}
819
873
820
0
Status ColumnReader::new_iterator(ColumnIteratorUPtr* iterator, const TabletColumn* tablet_column,
821
8.48k
                                  const StorageReadOptions* opt) {
822
8.48k
    if (is_empty()) {
823
0
        *iterator = std::make_unique<EmptyFileColumnIterator>();
824
66.2k
        return Status::OK();
825
66.2k
    }
826
0
    if (is_scalar_type(_meta_type)) {
827
36.5k
        if (is_string_type(_meta_type)) {
828
36.5k
            *iterator = std::make_unique<StringFileColumnIterator>(shared_from_this());
829
0
        } else {
830
0
            *iterator = std::make_unique<FileColumnIterator>(shared_from_this());
831
0
        }
832
0
        (*iterator)->set_column_name(tablet_column ? tablet_column->name() : "");
833
81.3k
        return Status::OK();
834
81.3k
    } else {
835
28.8M
        auto type = _meta_type;
836
        switch (type) {
837
868
        case FieldType::OLAP_FIELD_TYPE_AGG_STATE: {
838
868
            return new_agg_state_iterator(iterator);
839
868
        }
840
868
        case FieldType::OLAP_FIELD_TYPE_STRUCT: {
841
            return new_struct_iterator(iterator, tablet_column);
842
        }
843
66.1k
        case FieldType::OLAP_FIELD_TYPE_ARRAY: {
844
66.1k
            return new_array_iterator(iterator, tablet_column);
845
66.1k
        }
846
66.1k
        case FieldType::OLAP_FIELD_TYPE_MAP: {
847
66.1k
            return new_map_iterator(iterator, tablet_column);
848
66.1k
        }
849
        default:
850
66.1k
            return Status::NotSupported("unsupported type to create iterator: {}",
851
                                        std::to_string(int(type)));
852
66.1k
        }
853
66.1k
    }
854
66.1k
}
855
66.1k
856
66.1k
Status ColumnReader::new_agg_state_iterator(ColumnIteratorUPtr* iterator) {
857
    *iterator = std::make_unique<FileColumnIterator>(shared_from_this());
858
66.1k
    return Status::OK();
859
66.1k
}
860
46.7k
861
46.7k
Status ColumnReader::new_array_iterator(ColumnIteratorUPtr* iterator,
862
66.1k
                                        const TabletColumn* tablet_column) {
863
66.1k
    ColumnIteratorUPtr item_iterator;
864
66.1k
    RETURN_IF_ERROR(_sub_readers[0]->new_iterator(
865
66.1k
            &item_iterator, tablet_column && tablet_column->get_subtype_count() > 0
866
66.1k
                                    ? &tablet_column->get_sub_column(0)
867
                                    : nullptr));
868
869
36.5k
    item_iterator->set_column_name(tablet_column ? tablet_column->get_sub_column(0).name() : "");
870
36.5k
871
36.5k
    ColumnIteratorUPtr offset_iterator;
872
36.5k
    RETURN_IF_ERROR(_sub_readers[1]->new_iterator(&offset_iterator, nullptr));
873
36.5k
    auto* file_iter = static_cast<FileColumnIterator*>(offset_iterator.release());
874
36.5k
    OffsetFileColumnIteratorUPtr ofcIter = std::make_unique<OffsetFileColumnIterator>(
875
36.5k
            std::unique_ptr<FileColumnIterator>(file_iter));
876
36.5k
877
36.5k
    ColumnIteratorUPtr null_iterator;
878
36.5k
    if (is_nullable()) {
879
36.5k
        RETURN_IF_ERROR(_sub_readers[2]->new_iterator(&null_iterator, nullptr));
880
36.5k
    }
881
36.5k
    *iterator = std::make_unique<ArrayFileColumnIterator>(shared_from_this(), std::move(ofcIter),
882
36.5k
                                                          std::move(item_iterator),
883
36.5k
                                                          std::move(null_iterator));
884
36.5k
    return Status::OK();
885
36.5k
}
886
36.5k
887
Status ColumnReader::new_map_iterator(ColumnIteratorUPtr* iterator,
888
36.5k
                                      const TabletColumn* tablet_column) {
889
36.5k
    ColumnIteratorUPtr key_iterator;
890
16.9k
    RETURN_IF_ERROR(_sub_readers[0]->new_iterator(
891
16.9k
            &key_iterator, tablet_column && tablet_column->get_subtype_count() > 1
892
36.5k
                                   ? &tablet_column->get_sub_column(0)
893
36.5k
                                   : nullptr));
894
36.5k
    key_iterator->set_column_name(tablet_column ? tablet_column->get_sub_column(0).name() : "");
895
36.5k
    ColumnIteratorUPtr val_iterator;
896
36.5k
    RETURN_IF_ERROR(_sub_readers[1]->new_iterator(
897
            &val_iterator, tablet_column && tablet_column->get_subtype_count() > 1
898
                                   ? &tablet_column->get_sub_column(1)
899
8.47k
                                   : nullptr));
900
8.47k
    val_iterator->set_column_name(tablet_column ? tablet_column->get_sub_column(1).name() : "");
901
8.47k
    ColumnIteratorUPtr offsets_iterator;
902
18.4E
    RETURN_IF_ERROR(_sub_readers[2]->new_iterator(&offsets_iterator, nullptr));
903
8.47k
    auto* file_iter = static_cast<FileColumnIterator*>(offsets_iterator.release());
904
    OffsetFileColumnIteratorUPtr ofcIter = std::make_unique<OffsetFileColumnIterator>(
905
39.5k
            std::unique_ptr<FileColumnIterator>(file_iter));
906
31.0k
907
31.0k
    ColumnIteratorUPtr null_iterator;
908
31.0k
    if (is_nullable()) {
909
31.0k
        RETURN_IF_ERROR(_sub_readers[3]->new_iterator(&null_iterator, nullptr));
910
31.0k
    }
911
31.0k
    *iterator = std::make_unique<MapFileColumnIterator>(
912
31.0k
            shared_from_this(), std::move(null_iterator), std::move(ofcIter),
913
            std::move(key_iterator), std::move(val_iterator));
914
    return Status::OK();
915
9.79k
}
916
1.31k
917
1.31k
Status ColumnReader::new_struct_iterator(ColumnIteratorUPtr* iterator,
918
1.31k
                                         const TabletColumn* tablet_column) {
919
1.31k
    std::vector<ColumnIteratorUPtr> sub_column_iterators;
920
1.31k
    size_t child_size = is_nullable() ? _sub_readers.size() - 1 : _sub_readers.size();
921
1.31k
    size_t tablet_column_size = tablet_column ? tablet_column->get_sub_columns().size() : 0;
922
    sub_column_iterators.reserve(child_size);
923
8.47k
924
8.47k
    for (uint64_t i = 0; i < child_size; i++) {
925
7.62k
        ColumnIteratorUPtr sub_column_iterator;
926
7.62k
        RETURN_IF_ERROR(_sub_readers[i]->new_iterator(
927
8.47k
                &sub_column_iterator, tablet_column ? &tablet_column->get_sub_column(i) : nullptr));
928
8.47k
        sub_column_iterator->set_column_name(tablet_column ? tablet_column->get_sub_column(i).name()
929
8.47k
                                                           : "");
930
8.47k
        sub_column_iterators.emplace_back(std::move(sub_column_iterator));
931
    }
932
4.45k
933
4.45k
    // create default_iterator for schema-change behavior which increase column
934
2.77k
    for (size_t i = child_size; i < tablet_column_size; i++) {
935
2.77k
        TabletColumn column = tablet_column->get_sub_column(i);
936
1.68k
        ColumnIteratorUPtr it;
937
        RETURN_IF_ERROR(Segment::new_default_iterator(column, &it));
938
        it->set_column_name(column.name());
939
        sub_column_iterators.emplace_back(std::move(it));
940
    }
941
1.19k
942
1.19k
    ColumnIteratorUPtr null_iterator;
943
    if (is_nullable()) {
944
1.68k
        RETURN_IF_ERROR(_sub_readers[child_size]->new_iterator(&null_iterator, nullptr));
945
1.68k
    }
946
    *iterator = std::make_unique<StructFileColumnIterator>(
947
3.52M
            shared_from_this(), std::move(null_iterator), std::move(sub_column_iterators));
948
3.52M
    return Status::OK();
949
1.19k
}
950
1.19k
951
1.19k
void ColumnIterator::_convert_to_place_holder_column(MutableColumnPtr& dst, size_t count) {
952
3.52M
    if (_read_phase == ReadPhase::LAZY) {
953
        return;
954
    } else if (_read_requirement == ReadRequirement::LAZY_OUTPUT &&
955
126k
               _read_phase == ReadPhase::PREDICATE) {
956
        // This branch is for non-predicate columns that still have to appear in the
957
        // predicate-phase block so row filtering can keep all block columns aligned.
958
        // Columns already marked PREDICATE are read normally, and SKIP/NORMAL
959
        // columns do not participate in lazy materialization.
960
        _has_place_holder_column = true;
961
    }
962
963
    dst->insert_many_defaults(count);
964
}
965
966
196k
void ColumnIterator::_recovery_from_place_holder_column(MutableColumnPtr& dst) {
967
69.8k
    if (_read_phase == ReadPhase::LAZY && _has_place_holder_column) {
968
69.8k
        dst->clear();
969
2
        _has_place_holder_column = false;
970
2
    }
971
2
}
972
973
69.8k
Result<TColumnAccessPaths> ColumnIterator::_get_sub_access_paths(
974
3
        TColumnAccessPaths sub_access_paths, bool is_predicate) {
975
3
    // Access paths passed to a complex iterator always start with the current
976
3
    // column name. Strip that component and return the remaining child-relative
977
3
    // paths to the caller. For example, when this iterator is for column `s`,
978
    // path `s.a.b` is converted to `a.b` and then dispatched to child `a`.
979
69.8k
    //
980
69.8k
    // If stripping the current column consumes the whole path, the current
981
10.8k
    // iterator itself is requested rather than one of its children. Mark the
982
58.9k
    // current iterator according to the path source: predicate paths must be read
983
58.9k
    // in the predicate phase, while all/output paths become lazy output targets.
984
3.09k
    // Empty or mismatched paths indicate an FE/BE access-path contract violation.
985
55.8k
    for (auto it = sub_access_paths.begin(); it != sub_access_paths.end();) {
986
55.8k
        TColumnAccessPath& name_path = *it;
987
55.8k
        if (name_path.data_access_path.path.empty()) {
988
58.9k
            return ResultError(Status::InternalError(
989
58.9k
                    "Invalid access path for column '{}': path is empty", _column_name));
990
69.8k
        }
991
126k
992
126k
        if (!StringCaseEqual()(name_path.data_access_path.path[0], _column_name)) {
993
            return ResultError(Status::InternalError(
994
                    R"(Invalid access path for column: expected name "{}", got "{}")", _column_name,
995
                    name_path.data_access_path.path[0]));
996
        }
997
998
        name_path.data_access_path.path.erase(name_path.data_access_path.path.begin());
999
        if (!name_path.data_access_path.path.empty()) {
1000
36.5k
            ++it;
1001
36.5k
        } else {
1002
36.5k
            if (is_predicate) {
1003
36.5k
                set_read_requirement(ReadRequirement::PREDICATE);
1004
36.5k
            } else {
1005
16.9k
                set_lazy_output_requirement();
1006
16.9k
            }
1007
36.5k
            it = sub_access_paths.erase(it);
1008
        }
1009
36.4k
    }
1010
36.4k
    return sub_access_paths;
1011
32
}
1012
32
1013
32
///====================== MapFileColumnIterator ============================////
1014
36.4k
MapFileColumnIterator::MapFileColumnIterator(std::shared_ptr<ColumnReader> reader,
1015
36.4k
                                             ColumnIteratorUPtr null_iterator,
1016
36.4k
                                             OffsetFileColumnIteratorUPtr offsets_iterator,
1017
36.4k
                                             ColumnIteratorUPtr key_iterator,
1018
16.8k
                                             ColumnIteratorUPtr val_iterator)
1019
16.8k
        : _map_reader(reader),
1020
36.4k
          _offsets_iterator(std::move(offsets_iterator)),
1021
36.4k
          _key_iterator(std::move(key_iterator)),
1022
          _val_iterator(std::move(val_iterator)) {
1023
20.3k
    if (_map_reader->is_nullable()) {
1024
20.3k
        _null_iterator = std::move(null_iterator);
1025
2
    }
1026
2
}
1027
2
1028
Status MapFileColumnIterator::init(const ColumnIteratorOptions& opts) {
1029
20.3k
    if (_read_requirement == ReadRequirement::SKIP) {
1030
        DLOG(INFO) << "Map column iterator column " << _column_name << " skip reading.";
1031
11
        return Status::OK();
1032
11
    }
1033
11
    RETURN_IF_ERROR(_key_iterator->init(opts));
1034
11
    RETURN_IF_ERROR(_val_iterator->init(opts));
1035
11
    RETURN_IF_ERROR(_offsets_iterator->init(opts));
1036
    if (_map_reader->is_nullable()) {
1037
20.2k
        RETURN_IF_ERROR(_null_iterator->init(opts));
1038
13.5k
    }
1039
13.5k
    return Status::OK();
1040
20.2k
}
1041
20.2k
1042
Status MapFileColumnIterator::seek_to_ordinal(ordinal_t ord) {
1043
467
    if (!need_to_read()) {
1044
467
        DLOG(INFO) << "Map column iterator column " << _column_name << " skip reading.";
1045
        return Status::OK();
1046
19.8k
    }
1047
19.8k
1048
19.8k
    if (read_null_map_only()) {
1049
19.8k
        // In NULL_MAP_ONLY mode, only seek the null iterator; skip offset/key/val iterators
1050
19.8k
        if (_map_reader->is_nullable() && _null_iterator) {
1051
19.8k
            RETURN_IF_ERROR(_null_iterator->seek_to_ordinal(ord));
1052
        }
1053
8.50k
        return Status::OK();
1054
8.50k
    }
1055
8.50k
1056
6.92k
    if (_map_reader->is_nullable()) {
1057
6.92k
        RETURN_IF_ERROR(_null_iterator->seek_to_ordinal(ord));
1058
8.50k
    }
1059
8.50k
    RETURN_IF_ERROR(_offsets_iterator->seek_to_ordinal(ord));
1060
8.50k
    if (read_offset_only()) {
1061
8.50k
        // In OFFSET_ONLY mode, key/value iterators are SKIP, no need to seek them
1062
        return Status::OK();
1063
    }
1064
    // here to use offset info
1065
8.44k
    ordinal_t offset = 0;
1066
8.44k
    RETURN_IF_ERROR(_offsets_iterator->_peek_one_offset(&offset));
1067
0
    RETURN_IF_ERROR(_key_iterator->seek_to_ordinal(offset));
1068
0
    RETURN_IF_ERROR(_val_iterator->seek_to_ordinal(offset));
1069
8.44k
    return Status::OK();
1070
8.41k
}
1071
8.41k
1072
8.44k
Status MapFileColumnIterator::init_prefetcher(const SegmentPrefetchParams& params) {
1073
6.85k
    RETURN_IF_ERROR(_offsets_iterator->init_prefetcher(params));
1074
6.85k
    if (_map_reader->is_nullable()) {
1075
8.44k
        RETURN_IF_ERROR(_null_iterator->init_prefetcher(params));
1076
488
    }
1077
488
    RETURN_IF_ERROR(_key_iterator->init_prefetcher(params));
1078
    RETURN_IF_ERROR(_val_iterator->init_prefetcher(params));
1079
    return Status::OK();
1080
7.95k
}
1081
7.68k
1082
7.68k
void MapFileColumnIterator::collect_prefetchers(
1083
7.95k
        std::map<PrefetcherInitMethod, std::vector<SegmentPrefetcher*>>& prefetchers,
1084
7.68k
        PrefetcherInitMethod init_method) {
1085
7.68k
    if (!need_to_read()) {
1086
7.95k
        return;
1087
    }
1088
20.3k
    if (!read_null_map_only()) {
1089
20.3k
        _offsets_iterator->collect_prefetchers(prefetchers, init_method);
1090
2
    }
1091
2
    if (_map_reader->is_nullable()) {
1092
2
        _null_iterator->collect_prefetchers(prefetchers, init_method);
1093
2
    }
1094
    if (read_offset_only() || read_null_map_only()) {
1095
20.3k
        return;
1096
    }
1097
20.3k
    // the actual data pages to read of key/value column depends on the read result of offset column,
1098
    // so we can't init prefetch blocks according to rowids, just prefetch all data blocks here.
1099
12
    if (_key_iterator->need_to_read()) {
1100
12
        _key_iterator->collect_prefetchers(prefetchers, PrefetcherInitMethod::ALL_DATA_BLOCKS);
1101
12
    }
1102
12
    if (_val_iterator->need_to_read()) {
1103
12
        _val_iterator->collect_prefetchers(prefetchers, PrefetcherInitMethod::ALL_DATA_BLOCKS);
1104
12
    }
1105
12
}
1106
12
1107
12
Status MapFileColumnIterator::next_batch(size_t* n, MutableColumnPtr& dst, bool* has_null) {
1108
12
    if (!need_to_read()) {
1109
        DLOG(INFO) << "Map column iterator column " << _column_name << " skip reading.";
1110
0
        _convert_to_place_holder_column(dst, *n);
1111
0
        return Status::OK();
1112
12
    }
1113
1114
12
    _recovery_from_place_holder_column(dst);
1115
12
1116
12
    if (read_null_map_only()) {
1117
12
        // NULL_MAP_ONLY mode: read null map, fill nested ColumnMap with empty defaults
1118
12
        DORIS_CHECK(is_column_nullable(*dst));
1119
12
        auto& nullable_col = assert_cast<ColumnNullable&>(*dst);
1120
        auto null_map_ptr = nullable_col.get_null_map_column_ptr();
1121
20.2k
        size_t num_read = *n;
1122
20.2k
        if (_null_iterator) {
1123
20.2k
            bool null_signs_has_null = false;
1124
20.2k
            MutableColumnPtr null_map_column = std::move(null_map_ptr);
1125
20.2k
            RETURN_IF_ERROR(
1126
20.2k
                    _null_iterator->next_batch(&num_read, null_map_column, &null_signs_has_null));
1127
19.8k
        } else {
1128
19.8k
            // schema-change: column became nullable but old segment has no null data
1129
            null_map_ptr->insert_many_vals(0, num_read);
1130
        }
1131
        DCHECK(num_read == *n);
1132
        // fill nested ColumnMap with empty (zero-element) maps
1133
        auto& column_map = assert_cast<ColumnMap&, TypeCheckOnRelease::DISABLE>(
1134
                nullable_col.get_nested_column());
1135
        column_map.insert_many_defaults(num_read);
1136
        *has_null = true;
1137
422
        return Status::OK();
1138
422
    }
1139
422
1140
422
    auto& column_map = assert_cast<ColumnMap&, TypeCheckOnRelease::DISABLE>(
1141
422
            is_column_nullable(*dst) ? static_cast<ColumnNullable&>(*dst).get_nested_column()
1142
422
                                     : *dst);
1143
20.2k
    const bool read_meta_columns = need_to_read_meta_columns();
1144
19.8k
    MutableColumnPtr column_offsets_ptr;
1145
19.4k
    if (read_meta_columns) {
1146
19.4k
        column_offsets_ptr = IColumn::mutate(std::move(column_map.get_offsets_ptr()));
1147
19.4k
    } else {
1148
19.4k
        // The parent offsets were already materialized in the predicate phase, so
1149
19.4k
        // they must not be appended to dst again. We still read offsets into a
1150
19.4k
        // temporary column here: this sequential path may be serving a nested
1151
19.8k
        // lazy read after seek_to_ordinal(), and the storage offsets are needed to
1152
20.2k
        // compute how many key/value elements to read from the current source
1153
20.2k
        // ordinal. The existing dst offsets only describe the filtered output
1154
20.2k
        // shape and do not track the current source ordinal consumed by this
1155
20.2k
        // iterator call.
1156
0
        const auto base_offset =
1157
0
                column_map.get_offsets().empty() ? 0 : column_map.get_offsets().back();
1158
20.2k
        column_offsets_ptr = ColumnMap::COffsets::create();
1159
20.2k
        assert_cast<ColumnOffset64&, TypeCheckOnRelease::DISABLE>(*column_offsets_ptr)
1160
20.2k
                .insert_value(base_offset);
1161
20.2k
    }
1162
20.2k
    Defer defer_offsets {[&] {
1163
        if (read_meta_columns) {
1164
20.2k
            auto typed_column_offsets_ptr = ColumnMap::COffsets::cast_to_column_mutptr(
1165
16.7k
                    assert_cast<ColumnMap::COffsets*, TypeCheckOnRelease::DISABLE>(
1166
16.7k
                            column_offsets_ptr.get()));
1167
16.7k
            column_offsets_ptr = nullptr;
1168
16.7k
            column_map.get_offsets_ptr() = std::move(typed_column_offsets_ptr);
1169
16.7k
        }
1170
    }};
1171
467
    bool offsets_has_null = false;
1172
467
    ssize_t start = column_offsets_ptr->size();
1173
16.2k
    RETURN_IF_ERROR(_offsets_iterator->next_batch(n, column_offsets_ptr, &offsets_has_null));
1174
16.2k
    if (*n == 0) {
1175
31.9k
        return Status::OK();
1176
31.9k
    }
1177
31.9k
    auto& column_offsets = static_cast<ColumnArray::ColumnOffsets&>(*column_offsets_ptr);
1178
2
    RETURN_IF_ERROR(_offsets_iterator->_calculate_offsets(start, column_offsets));
1179
2
    DCHECK(column_offsets.get_data().back() >= column_offsets.get_data()[start - 1]);
1180
2
    size_t num_items =
1181
            column_offsets.get_data().back() - column_offsets.get_data()[start - 1]; // -1 is valid
1182
31.9k
1183
31.9k
    if (num_items > 0) {
1184
31.9k
        auto key_ptr = IColumn::mutate(std::move(column_map.get_keys_ptr()));
1185
31.9k
        auto val_ptr = IColumn::mutate(std::move(column_map.get_values_ptr()));
1186
31.9k
        Defer defer_keys {[&] { column_map.get_keys_ptr() = std::move(key_ptr); }};
1187
31.9k
        Defer defer_values {[&] { column_map.get_values_ptr() = std::move(val_ptr); }};
1188
16.2k
        if (read_offset_only()) {
1189
16.2k
            // OFFSET_ONLY mode: skip reading actual key/value data, fill with defaults
1190
16.2k
            key_ptr->insert_many_defaults(num_items);
1191
16.7k
            val_ptr->insert_many_defaults(num_items);
1192
        } else {
1193
20.2k
            auto read_or_fill_child = [&](ColumnIterator* iterator,
1194
13.1k
                                          MutableColumnPtr& column) -> Status {
1195
13.1k
                if (_read_phase == ReadPhase::LAZY && read_meta_columns &&
1196
                    iterator->read_requirement() == ReadRequirement::SKIP) {
1197
                    column->insert_many_defaults(num_items);
1198
                    return Status::OK();
1199
                }
1200
13.1k
1201
13.1k
                bool dummy_has_null = false;
1202
13.1k
                size_t num_read = num_items;
1203
13.1k
                RETURN_IF_ERROR(iterator->next_batch(&num_read, column, &dummy_has_null));
1204
13.1k
                DCHECK(num_read == num_items);
1205
18.4E
                return Status::OK();
1206
18.4E
            };
1207
18.4E
            RETURN_IF_ERROR(read_or_fill_child(_key_iterator.get(), key_ptr));
1208
13.1k
            RETURN_IF_ERROR(read_or_fill_child(_val_iterator.get(), val_ptr));
1209
13.1k
        }
1210
20.2k
    }
1211
20.2k
1212
    if (is_column_nullable(*dst) && read_meta_columns) {
1213
        size_t num_read = *n;
1214
15.4k
        auto null_map_ptr = static_cast<ColumnNullable&>(*dst).get_null_map_column_ptr();
1215
15.4k
        // in not-null to null linked-schemachange mode,
1216
1
        // actually we do not change dat data include meta in footer,
1217
1
        // so may dst from changed meta which is nullable but old data is not nullable,
1218
1
        // if so, we should set null_map to all null by default
1219
1
        if (_null_iterator) {
1220
            bool null_signs_has_null = false;
1221
15.4k
            MutableColumnPtr null_map_column = std::move(null_map_ptr);
1222
            RETURN_IF_ERROR(
1223
15.4k
                    _null_iterator->next_batch(&num_read, null_map_column, &null_signs_has_null));
1224
        } else {
1225
8
            null_map_ptr->insert_many_vals(0, num_read);
1226
8
        }
1227
8
        DCHECK(num_read == *n);
1228
8
    }
1229
8
    return Status::OK();
1230
8
}
1231
8
1232
Status MapFileColumnIterator::read_by_rowids(const rowid_t* rowids, const size_t count,
1233
0
                                             MutableColumnPtr& dst) {
1234
0
    if (!need_to_read()) {
1235
0
        DLOG(INFO) << "Map column iterator column " << _column_name << " skip reading.";
1236
        _convert_to_place_holder_column(dst, count);
1237
8
        return Status::OK();
1238
8
    }
1239
8
1240
8
    _recovery_from_place_holder_column(dst);
1241
8
1242
    if (read_null_map_only()) {
1243
15.4k
        // NULL_MAP_ONLY mode: read null map by rowids, fill nested ColumnMap with empty defaults
1244
0
        DORIS_CHECK(is_column_nullable(*dst));
1245
0
        auto& nullable_col = assert_cast<ColumnNullable&>(*dst);
1246
        if (_null_iterator) {
1247
            auto null_map_ptr = nullable_col.get_null_map_column_ptr();
1248
15.4k
            MutableColumnPtr null_map_column = std::move(null_map_ptr);
1249
15.4k
            RETURN_IF_ERROR(_null_iterator->read_by_rowids(rowids, count, null_map_column));
1250
15.4k
        } else {
1251
15.4k
            // schema-change: column became nullable but old segment has no null data
1252
15.4k
            auto null_map_ptr = nullable_col.get_null_map_column_ptr();
1253
15.4k
            null_map_ptr->insert_many_vals(0, count);
1254
15.4k
        }
1255
15.4k
        // fill nested ColumnMap with empty (zero-element) maps
1256
35
        auto& column_map = assert_cast<ColumnMap&, TypeCheckOnRelease::DISABLE>(
1257
35
                nullable_col.get_nested_column());
1258
35
        column_map.insert_many_defaults(count);
1259
35
        return Status::OK();
1260
35
    }
1261
35
1262
15.4k
    if (count == 0) {
1263
15.4k
        return Status::OK();
1264
15.3k
    }
1265
15.3k
1266
15.3k
    // resolve ColumnMap and nullable wrapper
1267
15.3k
    auto& column_map = assert_cast<ColumnMap&, TypeCheckOnRelease::DISABLE>(
1268
15.3k
            is_column_nullable(*dst) ? static_cast<ColumnNullable&>(*dst).get_nested_column()
1269
15.3k
                                     : *dst);
1270
15.4k
    const bool read_meta_columns = need_to_read_meta_columns();
1271
15.4k
    MutableColumnPtr offsets_ptr;
1272
15.4k
    if (read_meta_columns) {
1273
        offsets_ptr = IColumn::mutate(std::move(column_map.get_offsets_ptr()));
1274
    } else {
1275
15.4k
        const auto base_offset =
1276
15.4k
                column_map.get_offsets().empty() ? 0 : column_map.get_offsets().back();
1277
15.4k
        offsets_ptr = ColumnMap::COffsets::create();
1278
        assert_cast<ColumnOffset64&, TypeCheckOnRelease::DISABLE>(*offsets_ptr)
1279
3.79k
                .insert_value(base_offset);
1280
0
    }
1281
0
    Defer defer_offsets {[&] {
1282
0
        if (read_meta_columns) {
1283
3.79k
            auto typed_offsets_ptr = ColumnMap::COffsets::cast_to_column_mutptr(
1284
3.79k
                    assert_cast<ColumnMap::COffsets*, TypeCheckOnRelease::DISABLE>(
1285
3.79k
                            offsets_ptr.get()));
1286
3.79k
            offsets_ptr = nullptr;
1287
            column_map.get_offsets_ptr() = std::move(typed_offsets_ptr);
1288
3.79k
        }
1289
3.79k
    }};
1290
3.79k
    auto& offsets = static_cast<ColumnArray::ColumnOffsets&>(*offsets_ptr);
1291
11.6k
    size_t base = offsets.get_data().empty() ? 0 : offsets.get_data().back();
1292
1293
    // 1. bulk read null-map if nullable
1294
    std::vector<uint8_t> null_mask; // 0: not null, 1: null
1295
    if (read_meta_columns) {
1296
1
        if (_map_reader->is_nullable()) {
1297
1
            // For nullable map columns, the destination column must also be nullable.
1298
1
            if (UNLIKELY(!is_column_nullable(*dst))) {
1299
1
                return Status::InternalError(
1300
1
                        "unexpected non-nullable destination column for nullable map reader");
1301
15.4k
            }
1302
            MutableColumnPtr null_map_ptr =
1303
                    static_cast<ColumnNullable&>(*dst).get_null_map_column_ptr();
1304
            size_t null_before = null_map_ptr->size();
1305
21
            RETURN_IF_ERROR(_null_iterator->read_by_rowids(rowids, count, null_map_ptr));
1306
0
            // extract a light-weight view to decide element reads
1307
0
            auto& null_map_col = assert_cast<ColumnUInt8&>(*null_map_ptr);
1308
0
            const auto* src = null_map_col.get_data().data() + null_before;
1309
21
            null_mask.assign(src, src + count);
1310
21
        } else if (is_column_nullable(*dst)) {
1311
21
            // in not-null to null linked-schemachange mode,
1312
21
            // actually we do not change dat data include meta in footer,
1313
21
            // so may dst from changed meta which is nullable but old data is not nullable,
1314
            // if so, we should set null_map to all null by default
1315
            MutableColumnPtr null_map_ptr =
1316
                    static_cast<ColumnNullable&>(*dst).get_null_map_column_ptr();
1317
            auto& null_map = assert_cast<ColumnUInt8&>(*null_map_ptr);
1318
            null_map.insert_many_vals(0, count);
1319
        }
1320
15.4k
    } else if (_map_reader->is_nullable()) {
1321
15.4k
        // In lazy mode the parent null map has already been materialized during
1322
15.4k
        // predicate read and filtered together with the block. Reuse that dst
1323
        // null map to avoid re-reading the same meta column from storage.
1324
        if (UNLIKELY(!is_column_nullable(*dst))) {
1325
15.4k
            return Status::InternalError(
1326
302k
                    "unexpected non-nullable destination column for nullable map reader");
1327
286k
        }
1328
286k
        const auto& null_map_col = static_cast<const ColumnNullable&>(*dst).get_null_map_column();
1329
286k
        DORIS_CHECK(null_map_col.size() == count);
1330
286k
        const auto* src = null_map_col.get_data().data();
1331
15.4k
        null_mask.assign(src, src + count);
1332
15.4k
    }
1333
1334
15.4k
    // 2. Bulk read source start ordinals for requested rows. The offsets stored
1335
    // in dst already describe the filtered output shape when read_meta_columns is
1336
    // false, but they do not contain the source key/value ordinal for each
1337
302k
    // selected rowid. We still need the storage offsets here to seek child
1338
286k
    // iterators to the correct source element ranges.
1339
    MutableColumnPtr starts_col = ColumnOffset64::create();
1340
    starts_col->reserve(count);
1341
14.4k
    RETURN_IF_ERROR(_offsets_iterator->read_by_rowids(rowids, count, starts_col));
1342
14.4k
1343
14.4k
    // 3. bulk read next-start ordinals for rowid+1 (within bounds)
1344
14.4k
    std::vector<rowid_t> next_rowids(count);
1345
14.4k
    for (size_t i = 0; i < count; ++i) {
1346
14.4k
        uint64_t nr = rowids[i] + 1;
1347
14.4k
        next_rowids[i] = nr < _map_reader->num_rows() ? static_cast<rowid_t>(nr)
1348
                                                      : static_cast<rowid_t>(0); // placeholder
1349
14.4k
    }
1350
14.4k
    MutableColumnPtr next_starts_col = ColumnOffset64::create();
1351
14.4k
    next_starts_col->reserve(count);
1352
286k
    // read for all; we'll fix out-of-bound cases below
1353
    RETURN_IF_ERROR(_offsets_iterator->read_by_rowids(next_rowids.data(), count, next_starts_col));
1354
1355
15.4k
    // 4. fix next_start for rows whose next_rowid is out-of-bound (rowid == num_rows-1)
1356
15.4k
    for (size_t i = 0; i < count; ++i) {
1357
15.4k
        if (rowids[i] + 1 >= _map_reader->num_rows()) {
1358
15.4k
            // seek to the last row and consume one to move decoder to end-of-page,
1359
15.4k
            // then peek page-tail sentinel next_array_item_ordinal as next_start
1360
15.4k
            RETURN_IF_ERROR(_offsets_iterator->seek_to_ordinal(rowids[i]));
1361
15.4k
            size_t one = 1;
1362
298k
            bool has_null_unused = false;
1363
283k
            MutableColumnPtr tmp = ColumnOffset64::create();
1364
283k
            RETURN_IF_ERROR(_offsets_iterator->next_batch(&one, tmp, &has_null_unused));
1365
781
            ordinal_t ns = 0;
1366
781
            RETURN_IF_ERROR(_offsets_iterator->_peek_one_offset(&ns));
1367
283k
            // overwrite with sentinel
1368
283k
            assert_cast<ColumnOffset64&, TypeCheckOnRelease::DISABLE>(*next_starts_col)
1369
283k
                    .get_data()[i] = ns;
1370
258k
        }
1371
258k
    }
1372
283k
1373
    // 5. compute sizes and append offsets prefix-sum
1374
    auto& starts_data = assert_cast<ColumnOffset64&>(*starts_col).get_data();
1375
15.4k
    auto& next_starts_data = assert_cast<ColumnOffset64&>(*next_starts_col).get_data();
1376
15.4k
    std::vector<size_t> sizes(count, 0);
1377
15.4k
    size_t acc = base;
1378
15.4k
    if (read_meta_columns) {
1379
        offsets.get_data().reserve(offsets.get_data().size() + count);
1380
    }
1381
    for (size_t i = 0; i < count; ++i) {
1382
        auto sz = static_cast<size_t>(next_starts_data[i] - starts_data[i]);
1383
15.4k
        if (_map_reader->is_nullable() && !null_mask.empty() && null_mask[i]) {
1384
15.4k
            sz = 0; // null rows do not consume elements
1385
15.4k
        }
1386
15.4k
        sizes[i] = sz;
1387
15.4k
        acc += sz;
1388
15.4k
        if (read_meta_columns) {
1389
15.4k
            offsets.get_data().push_back(acc);
1390
30.8k
        }
1391
30.8k
    }
1392
20.3k
1393
20.3k
    // 6. read key/value elements for non-empty sizes
1394
10.5k
    auto keys_ptr = IColumn::mutate(std::move(column_map.get_keys_ptr()));
1395
0
    auto vals_ptr = IColumn::mutate(std::move(column_map.get_values_ptr()));
1396
0
    Defer defer_keys {[&] { column_map.get_keys_ptr() = std::move(keys_ptr); }};
1397
0
    Defer defer_values {[&] { column_map.get_values_ptr() = std::move(vals_ptr); }};
1398
10.5k
    // In lazy phase with read_meta_columns=true, this map was only a placeholder during
1399
6
    // predicate evaluation and is cleared before the lazy read. If only KEYS or VALUES is
1400
6
    // requested, fill the skipped counterpart with defaults to keep ColumnMap's
1401
10.5k
    // key/value/offset sizes consistent without reading unnecessary data pages.
1402
10.5k
    const bool fill_lazy_skipped_keys = _read_phase == ReadPhase::LAZY && read_meta_columns &&
1403
10.5k
                                        _key_iterator->read_requirement() == ReadRequirement::SKIP;
1404
10.5k
    const bool fill_lazy_skipped_values =
1405
10.5k
            _read_phase == ReadPhase::LAZY && read_meta_columns &&
1406
10.5k
            _val_iterator->read_requirement() == ReadRequirement::SKIP;
1407
10.5k
    auto read_or_fill_range = [&](ColumnIterator* iterator, MutableColumnPtr& column,
1408
                                  ordinal_t start_idx, size_t num_items,
1409
15.4k
                                  bool fill_lazy_skipped_child) -> Status {
1410
15.4k
        if (num_items == 0) {
1411
15.4k
            return Status::OK();
1412
284k
        }
1413
269k
        if (fill_lazy_skipped_child) {
1414
269k
            column->insert_many_defaults(num_items);
1415
16.6k
            return Status::OK();
1416
16.6k
        }
1417
252k
        if (_read_phase == ReadPhase::LAZY && !iterator->need_to_read()) {
1418
252k
            return Status::OK();
1419
588
        }
1420
588
        size_t n = num_items;
1421
588
        bool dummy_has_null = false;
1422
588
        RETURN_IF_ERROR(iterator->seek_to_ordinal(start_idx));
1423
588
        RETURN_IF_ERROR(iterator->next_batch(&n, column, &dummy_has_null));
1424
588
        DCHECK(n == num_items);
1425
588
        return Status::OK();
1426
588
    };
1427
588
1428
    size_t this_run = sizes[0];
1429
251k
    auto start_idx = starts_data[0];
1430
251k
    auto last_idx = starts_data[0] + this_run;
1431
251k
    for (size_t i = 1; i < count; ++i) {
1432
        size_t sz = sizes[i];
1433
15.4k
        if (sz == 0) {
1434
15.4k
            continue;
1435
15.4k
        }
1436
15.4k
        auto start = static_cast<ordinal_t>(starts_data[i]);
1437
15.4k
        if (start != last_idx) {
1438
15.4k
            RETURN_IF_ERROR(read_or_fill_range(_key_iterator.get(), keys_ptr, start_idx, this_run,
1439
                                               fill_lazy_skipped_keys));
1440
5.81k
            RETURN_IF_ERROR(read_or_fill_range(_val_iterator.get(), vals_ptr, start_idx, this_run,
1441
5.81k
                                               fill_lazy_skipped_values));
1442
5.81k
            start_idx = start;
1443
5.81k
            this_run = sz;
1444
5.81k
            last_idx = start + sz;
1445
            continue;
1446
7.97k
        }
1447
7.97k
1448
7.97k
        this_run += sz;
1449
7.97k
        last_idx += sz;
1450
    }
1451
1452
7.71k
    RETURN_IF_ERROR(read_or_fill_range(_key_iterator.get(), keys_ptr, start_idx, this_run,
1453
7.71k
                                       fill_lazy_skipped_keys));
1454
1.50k
    RETURN_IF_ERROR(read_or_fill_range(_val_iterator.get(), vals_ptr, start_idx, this_run,
1455
1.50k
                                       fill_lazy_skipped_values));
1456
    return Status::OK();
1457
6.20k
}
1458
6.20k
1459
275
void MapFileColumnIterator::set_lazy_output_requirement() {
1460
275
    set_read_requirement_self(ReadRequirement::LAZY_OUTPUT);
1461
275
    _key_iterator->set_lazy_output_requirement();
1462
    _val_iterator->set_lazy_output_requirement();
1463
6.20k
}
1464
7.15k
1465
7.15k
void MapFileColumnIterator::remove_pruned_sub_iterators() {
1466
7.15k
    _key_iterator->remove_pruned_sub_iterators();
1467
6.20k
    _val_iterator->remove_pruned_sub_iterators();
1468
6.20k
}
1469
6.20k
1470
6.20k
Status MapFileColumnIterator::set_access_paths(const TColumnAccessPaths& all_access_paths,
1471
3.97k
                                               const TColumnAccessPaths& predicate_access_paths) {
1472
3.97k
    if (all_access_paths.empty() && predicate_access_paths.empty()) {
1473
6.20k
        return Status::OK();
1474
6.20k
    }
1475
1476
    const auto requirement_before_access_path = _read_requirement;
1477
    if (!predicate_access_paths.empty()) {
1478
6.20k
        set_read_requirement_self(ReadRequirement::PREDICATE);
1479
        DLOG(INFO) << "Map column iterator set sub-column " << _column_name << " to PREDICATE";
1480
6.20k
    }
1481
6.20k
1482
    const bool has_current_level_data_path =
1483
            std::ranges::any_of(all_access_paths, [this](const TColumnAccessPath& path) {
1484
1
                return is_current_level_data_access_path(path, _column_name);
1485
1
            });
1486
1
    auto sub_all_access_paths = DORIS_TRY(_get_sub_access_paths(all_access_paths));
1487
    auto sub_predicate_access_paths =
1488
6.20k
            DORIS_TRY(_get_sub_access_paths(predicate_access_paths, true));
1489
    if (has_current_level_data_path) {
1490
        remove_current_level_meta_access_paths(sub_all_access_paths);
1491
5.93k
    }
1492
5.93k
    const bool has_current_level_predicate_meta_path =
1493
473
            std::ranges::any_of(sub_predicate_access_paths, is_current_level_meta_access_path);
1494
473
    // Current-level predicate metadata paths are consumed by this map iterator and must not be
1495
473
    // forwarded to key/value children. The FE keeps all_access_paths as a superset of predicate
1496
473
    // paths, so meta-only mode is still decided from sub_all_access_paths below.
1497
473
    remove_current_level_meta_access_paths(sub_predicate_access_paths);
1498
473
1499
5.46k
    if (sub_predicate_access_paths.empty() && _read_requirement == ReadRequirement::PREDICATE &&
1500
20
        !has_current_level_predicate_meta_path) {
1501
20
        // if no sub-column in predicate_access_paths, but current column is PREDICATE,
1502
20
        // then we should set key/value iterator to PREDICATE too.
1503
20
        _key_iterator->set_read_requirement(ReadRequirement::PREDICATE);
1504
20
        _val_iterator->set_read_requirement(ReadRequirement::PREDICATE);
1505
20
    }
1506
5.46k
1507
    if (sub_predicate_access_paths.empty()) {
1508
        // Check for meta-only modes (OFFSET_ONLY or NULL_MAP_ONLY). Only skip key/value
1509
        // iterators when no predicate sub-path needs them in the predicate phase.
1510
        _check_and_set_meta_read_mode(requirement_before_access_path, sub_all_access_paths);
1511
5.70k
        if (read_offset_only()) {
1512
3.99k
            _key_iterator->set_read_requirement(ReadRequirement::SKIP);
1513
3.99k
            _val_iterator->set_read_requirement(ReadRequirement::SKIP);
1514
            DLOG(INFO) << "Map column iterator set column " << _column_name
1515
1.71k
                       << " to OFFSET_ONLY meta read mode, key/value columns set to SKIP";
1516
1.71k
            return Status::OK();
1517
1.71k
        }
1518
1.71k
        if (read_null_map_only()) {
1519
            _key_iterator->set_read_requirement(ReadRequirement::SKIP);
1520
2.66k
            _val_iterator->set_read_requirement(ReadRequirement::SKIP);
1521
2.66k
            DLOG(INFO) << "Map column iterator set column " << _column_name
1522
                       << " to NULL_MAP_ONLY meta read mode, key/value columns set to SKIP";
1523
            return Status::OK();
1524
        }
1525
    }
1526
1.14k
1527
1.14k
    // A current-level data path is consumed by _get_sub_access_paths() and leaves
1528
1.14k
    // sub_all_access_paths empty after marking key/value as lazy-read targets. Predicate
1529
1.14k
    // sub-paths still have to be routed to child iterators for the predicate phase.
1530
1.14k
    if (sub_all_access_paths.empty() && sub_predicate_access_paths.empty()) {
1531
1.14k
        return Status::OK();
1532
    }
1533
1.14k
1534
1.14k
    TColumnAccessPaths key_all_access_paths;
1535
1.52k
    TColumnAccessPaths val_all_access_paths;
1536
1.21k
    TColumnAccessPaths key_predicate_access_paths;
1537
1.21k
    TColumnAccessPaths val_predicate_access_paths;
1538
1.21k
1539
305
    for (auto paths : sub_all_access_paths) {
1540
305
        if (paths.data_access_path.path[0] == ACCESS_ALL) {
1541
305
            // ACCESS_ALL means element_at(map, key) style access: the key column must be
1542
2.66k
            // fully read so that the runtime can match the requested key, while any sub-path
1543
1.71k
            // qualifiers (e.g. OFFSET) apply only to the value column.
1544
411
            // For key: create a path with just the column name (= full data access).
1545
            TColumnAccessPath key_path;
1546
204
            key_path.__set_type(paths.type);
1547
204
            TDataAccessPath key_data_path;
1548
204
            key_data_path.__set_path({_key_iterator->column_name()});
1549
204
            key_path.__set_data_access_path(key_data_path);
1550
204
            key_all_access_paths.emplace_back(std::move(key_path));
1551
204
            // For value: pass the full sub-path so qualifiers like OFFSET propagate.
1552
204
            paths.data_access_path.path[0] = _val_iterator->column_name();
1553
204
            val_all_access_paths.emplace_back(paths);
1554
207
        } else if (paths.data_access_path.path[0] == ACCESS_MAP_KEYS) {
1555
192
            paths.data_access_path.path[0] = _key_iterator->column_name();
1556
192
            key_all_access_paths.emplace_back(paths);
1557
192
        } else if (paths.data_access_path.path[0] == ACCESS_MAP_VALUES) {
1558
15
            paths.data_access_path.path[0] = _val_iterator->column_name();
1559
15
            val_all_access_paths.emplace_back(paths);
1560
15
        }
1561
411
    }
1562
    for (auto paths : sub_predicate_access_paths) {
1563
1.71k
        if (paths.data_access_path.path[0] == ACCESS_ALL) {
1564
1.71k
            // Same logic as above: key needs full data, value gets the sub-path.
1565
1.71k
            TColumnAccessPath key_path;
1566
1.71k
            key_path.__set_type(paths.type);
1567
            TDataAccessPath key_data_path;
1568
1.71k
            key_data_path.__set_path({_key_iterator->column_name()});
1569
1.45k
            key_path.__set_data_access_path(key_data_path);
1570
1.45k
            key_predicate_access_paths.emplace_back(std::move(key_path));
1571
            paths.data_access_path.path[0] = _val_iterator->column_name();
1572
            val_predicate_access_paths.emplace_back(paths);
1573
        } else if (paths.data_access_path.path[0] == ACCESS_MAP_KEYS) {
1574
1.45k
            paths.data_access_path.path[0] = _key_iterator->column_name();
1575
1.45k
            key_predicate_access_paths.emplace_back(paths);
1576
262
        } else if (paths.data_access_path.path[0] == ACCESS_MAP_VALUES) {
1577
262
            paths.data_access_path.path[0] = _val_iterator->column_name();
1578
262
            val_predicate_access_paths.emplace_back(paths);
1579
        }
1580
1.71k
    }
1581
1.45k
1582
1.45k
    const auto need_read_keys =
1583
            !key_all_access_paths.empty() || !key_predicate_access_paths.empty();
1584
    const auto need_read_values =
1585
1.45k
            !val_all_access_paths.empty() || !val_predicate_access_paths.empty();
1586
1.45k
1587
264
    if (need_read_keys) {
1588
264
        RETURN_IF_ERROR(
1589
264
                _key_iterator->set_access_paths(key_all_access_paths, key_predicate_access_paths));
1590
1.71k
        // Apply LAZY_OUTPUT after child predicate paths have been handled. Read requirements are
1591
1.71k
        // monotonic, so a predicate-only child already promoted to PREDICATE will not
1592
        // be downgraded, while a non-predicate child becomes a lazy materialization target.
1593
81.3k
        _key_iterator->set_read_requirement_self(ReadRequirement::LAZY_OUTPUT);
1594
81.3k
    } else {
1595
81.3k
        _key_iterator->set_read_requirement(ReadRequirement::SKIP);
1596
81.3k
        DLOG(INFO) << "Map column iterator set key column to SKIP";
1597
81.3k
    }
1598
1599
767
    if (need_read_values) {
1600
767
        RETURN_IF_ERROR(
1601
767
                _val_iterator->set_access_paths(val_all_access_paths, val_predicate_access_paths));
1602
767
        // Same as keys: predicate-only value paths stay PREDICATE because this
1603
767
        // post-processing update cannot lower a stronger child requirement.
1604
767
        _val_iterator->set_read_requirement_self(ReadRequirement::LAZY_OUTPUT);
1605
767
    } else {
1606
767
        _val_iterator->set_read_requirement(ReadRequirement::SKIP);
1607
767
        DLOG(INFO) << "Map column iterator set value column to SKIP";
1608
767
    }
1609
767
    return Status::OK();
1610
}
1611
51
1612
51
void MapFileColumnIterator::set_read_phase(ReadPhase mode) {
1613
51
    ColumnIterator::set_read_phase(mode);
1614
51
    _key_iterator->set_read_phase(mode);
1615
51
    _val_iterator->set_read_phase(mode);
1616
}
1617
6.74k
1618
6.74k
void MapFileColumnIterator::finalize_lazy_phase(MutableColumnPtr& dst) {
1619
6.74k
    _recovery_from_place_holder_column(dst);
1620
6.74k
    auto& map_column = assert_cast<ColumnMap&, TypeCheckOnRelease::DISABLE>(
1621
            dst->is_nullable() ? static_cast<ColumnNullable&>(*dst).get_nested_column() : *dst);
1622
    auto keys_ptr = IColumn::mutate(std::move(map_column.get_keys_ptr()));
1623
    auto vals_ptr = IColumn::mutate(std::move(map_column.get_values_ptr()));
1624
    _key_iterator->finalize_lazy_phase(keys_ptr);
1625
    _val_iterator->finalize_lazy_phase(vals_ptr);
1626
    map_column.get_keys_ptr() = std::move(keys_ptr);
1627
8.52k
    map_column.get_values_ptr() = std::move(vals_ptr);
1628
8.52k
}
1629
7.61k
1630
7.61k
void MapFileColumnIterator::set_read_requirement(ReadRequirement requirement) {
1631
8.52k
    set_read_requirement_self(requirement);
1632
    _key_iterator->set_read_requirement(requirement);
1633
8.44k
    _val_iterator->set_read_requirement(requirement);
1634
8.44k
}
1635
0
1636
0
bool MapFileColumnIterator::has_lazy_read_target() const {
1637
0
    return _read_requirement == ReadRequirement::LAZY_OUTPUT ||
1638
           _key_iterator->has_lazy_read_target() || _val_iterator->has_lazy_read_target();
1639
30.7k
}
1640
30.7k
1641
30.7k
////////////////////////////////////////////////////////////////////////////////
1642
8.44k
1643
7.59k
StructFileColumnIterator::StructFileColumnIterator(
1644
7.59k
        std::shared_ptr<ColumnReader> reader, ColumnIteratorUPtr null_iterator,
1645
8.44k
        std::vector<ColumnIteratorUPtr>&& sub_column_iterators)
1646
8.44k
        : _struct_reader(reader), _sub_column_iterators(std::move(sub_column_iterators)) {
1647
    if (_struct_reader->is_nullable()) {
1648
10.0k
        _null_iterator = std::move(null_iterator);
1649
10.0k
    }
1650
2
}
1651
2
1652
2
Status StructFileColumnIterator::init(const ColumnIteratorOptions& opts) {
1653
2
    if (_read_requirement == ReadRequirement::SKIP) {
1654
        DLOG(INFO) << "Struct column iterator column " << _column_name << " skip reading.";
1655
10.0k
        return Status::OK();
1656
    }
1657
10.0k
1658
    for (auto& column_iterator : _sub_column_iterators) {
1659
3
        RETURN_IF_ERROR(column_iterator->init(opts));
1660
3
    }
1661
3
    if (_struct_reader->is_nullable()) {
1662
3
        RETURN_IF_ERROR(_null_iterator->init(opts));
1663
3
    }
1664
3
    return Status::OK();
1665
3
}
1666
3
1667
3
Status StructFileColumnIterator::next_batch(size_t* n, MutableColumnPtr& dst, bool* has_null) {
1668
3
    if (!need_to_read()) {
1669
        DLOG(INFO) << "Struct column iterator column " << _column_name << " skip reading.";
1670
0
        _convert_to_place_holder_column(dst, *n);
1671
0
        return Status::OK();
1672
3
    }
1673
1674
3
    _recovery_from_place_holder_column(dst);
1675
3
1676
3
    if (read_null_map_only()) {
1677
3
        // NULL_MAP_ONLY mode: read null map, fill nested ColumnStruct with empty defaults
1678
3
        DORIS_CHECK(is_column_nullable(*dst));
1679
3
        auto& nullable_col = assert_cast<ColumnNullable&>(*dst);
1680
        auto null_map_ptr = nullable_col.get_null_map_column_ptr();
1681
10.0k
        size_t num_read = *n;
1682
10.0k
        if (_null_iterator) {
1683
10.0k
            bool null_signs_has_null = false;
1684
36.4k
            MutableColumnPtr null_map_column = std::move(null_map_ptr);
1685
26.3k
            RETURN_IF_ERROR(
1686
26.3k
                    _null_iterator->next_batch(&num_read, null_map_column, &null_signs_has_null));
1687
26.3k
        } else {
1688
26.3k
            // schema-change: column became nullable but old segment has no null data
1689
26.3k
            null_map_ptr->insert_many_vals(0, num_read);
1690
26.3k
        }
1691
26.3k
        DCHECK(num_read == *n);
1692
26.3k
        // fill nested ColumnStruct with defaults to maintain consistent column sizes
1693
26.3k
        auto& column_struct = assert_cast<ColumnStruct&, TypeCheckOnRelease::DISABLE>(
1694
                nullable_col.get_nested_column());
1695
10.0k
        column_struct.insert_many_defaults(num_read);
1696
6.97k
        *has_null = true;
1697
6.97k
        return Status::OK();
1698
    }
1699
1700
    auto& column_struct = assert_cast<ColumnStruct&, TypeCheckOnRelease::DISABLE>(
1701
            is_column_nullable(*dst) ? static_cast<ColumnNullable&>(*dst).get_nested_column()
1702
6.97k
                                     : *dst);
1703
6.88k
    for (size_t i = 0; i < column_struct.tuple_size(); i++) {
1704
6.88k
        size_t num_read = *n;
1705
6.88k
        auto sub_column_ptr = IColumn::mutate(std::move(column_struct.get_column_ptr(i)));
1706
6.88k
        Defer defer_sub_column {
1707
6.88k
                [&] { column_struct.get_column_ptr(i) = std::move(sub_column_ptr); }};
1708
89
        bool column_has_null = false;
1709
89
        RETURN_IF_ERROR(
1710
6.97k
                _sub_column_iterators[i]->next_batch(&num_read, sub_column_ptr, &column_has_null));
1711
6.97k
        DCHECK(num_read == *n);
1712
    }
1713
10.0k
1714
10.0k
    if (is_column_nullable(*dst) && need_to_read_meta_columns()) {
1715
        size_t num_read = *n;
1716
10.0k
        auto null_map_ptr = static_cast<ColumnNullable&>(*dst).get_null_map_column_ptr();
1717
10.0k
        // in not-null to null linked-schemachange mode,
1718
2
        // actually we do not change dat data include meta in footer,
1719
2
        // so may dst from changed meta which is nullable but old data is not nullable,
1720
2
        // if so, we should set null_map to all null by default
1721
        if (_null_iterator) {
1722
10.0k
            bool null_signs_has_null = false;
1723
            MutableColumnPtr null_map_column = std::move(null_map_ptr);
1724
2
            RETURN_IF_ERROR(
1725
2
                    _null_iterator->next_batch(&num_read, null_map_column, &null_signs_has_null));
1726
2
        } else {
1727
2
            null_map_ptr->insert_many_vals(0, num_read);
1728
2
        }
1729
        DCHECK(num_read == *n);
1730
26.3k
    }
1731
26.3k
1732
26.3k
    return Status::OK();
1733
}
1734
10.0k
1735
6.88k
Status StructFileColumnIterator::seek_to_ordinal(ordinal_t ord) {
1736
6.88k
    if (!need_to_read()) {
1737
10.0k
        DLOG(INFO) << "Struct column iterator column " << _column_name << " skip reading.";
1738
10.0k
        return Status::OK();
1739
    }
1740
4.22k
1741
12.1k
    if (read_null_map_only()) {
1742
12.1k
        // In NULL_MAP_ONLY mode, only seek the null iterator; skip all sub-column iterators
1743
12.1k
        if (_struct_reader->is_nullable() && _null_iterator) {
1744
4.22k
            RETURN_IF_ERROR(_null_iterator->seek_to_ordinal(ord));
1745
3.82k
        }
1746
3.82k
        return Status::OK();
1747
4.22k
    }
1748
4.22k
1749
    for (auto& column_iterator : _sub_column_iterators) {
1750
        RETURN_IF_ERROR(column_iterator->seek_to_ordinal(ord));
1751
    }
1752
4.20k
1753
4.20k
    if (_struct_reader->is_nullable() && need_to_read_meta_columns()) {
1754
0
        RETURN_IF_ERROR(_null_iterator->seek_to_ordinal(ord));
1755
0
    }
1756
4.20k
    return Status::OK();
1757
3.80k
}
1758
3.80k
1759
4.20k
Status StructFileColumnIterator::init_prefetcher(const SegmentPrefetchParams& params) {
1760
2
    for (auto& column_iterator : _sub_column_iterators) {
1761
2
        RETURN_IF_ERROR(column_iterator->init_prefetcher(params));
1762
12.1k
    }
1763
12.1k
    if (_struct_reader->is_nullable()) {
1764
11.7k
        RETURN_IF_ERROR(_null_iterator->init_prefetcher(params));
1765
11.7k
    }
1766
12.1k
    return Status::OK();
1767
4.20k
}
1768
1769
void StructFileColumnIterator::collect_prefetchers(
1770
3.77k
        std::map<PrefetcherInitMethod, std::vector<SegmentPrefetcher*>>& prefetchers,
1771
3.77k
        PrefetcherInitMethod init_method) {
1772
0
    if (!need_to_read()) {
1773
0
        return;
1774
0
    }
1775
0
    if (_struct_reader->is_nullable()) {
1776
        _null_iterator->collect_prefetchers(prefetchers, init_method);
1777
3.77k
    }
1778
    if (read_null_map_only()) {
1779
3.77k
        return;
1780
0
    }
1781
0
    for (auto& column_iterator : _sub_column_iterators) {
1782
        if (column_iterator->need_to_read()) {
1783
3.77k
            column_iterator->collect_prefetchers(prefetchers, init_method);
1784
3.77k
        }
1785
3.77k
    }
1786
5.71k
}
1787
1.94k
1788
338
Status StructFileColumnIterator::read_by_rowids(const rowid_t* rowids, const size_t count,
1789
338
                                                MutableColumnPtr& dst) {
1790
338
    if (!need_to_read()) {
1791
338
        DLOG(INFO) << "Struct column iterator column " << _column_name << " skip reading.";
1792
1.60k
        _convert_to_place_holder_column(dst, count);
1793
1.60k
        return Status::OK();
1794
1.60k
    }
1795
1.60k
1796
    _recovery_from_place_holder_column(dst);
1797
1.60k
1798
1.60k
    if (count == 0) {
1799
1.60k
        return Status::OK();
1800
1.60k
    }
1801
1802
3.77k
    size_t this_run = 1;
1803
3.77k
    auto start_idx = rowids[0];
1804
3.77k
    auto last_idx = rowids[0];
1805
3.77k
    for (size_t i = 1; i < count; ++i) {
1806
3.77k
        if (last_idx == rowids[i] - 1) {
1807
3.77k
            last_idx = rowids[i];
1808
            this_run++;
1809
7.06k
            continue;
1810
7.06k
        }
1811
27.3k
        RETURN_IF_ERROR(seek_to_ordinal(start_idx));
1812
27.3k
        size_t num_read = this_run;
1813
27.3k
        RETURN_IF_ERROR(next_batch(&num_read, dst));
1814
7.06k
        DCHECK_EQ(num_read, this_run);
1815
1816
7.34k
        start_idx = rowids[i];
1817
36.8k
        last_idx = rowids[i];
1818
29.4k
        this_run = 1;
1819
29.4k
    }
1820
1.52k
1821
1.52k
    RETURN_IF_ERROR(seek_to_ordinal(start_idx));
1822
1.52k
    size_t num_read = this_run;
1823
27.9k
    RETURN_IF_ERROR(next_batch(&num_read, dst));
1824
27.9k
    DCHECK_EQ(num_read, this_run);
1825
27.9k
    return Status::OK();
1826
27.9k
}
1827
29.4k
1828
7.34k
void StructFileColumnIterator::set_lazy_output_requirement() {
1829
    set_read_requirement_self(ReadRequirement::LAZY_OUTPUT);
1830
    for (auto& sub_iterator : _sub_column_iterators) {
1831
        sub_iterator->set_lazy_output_requirement();
1832
6.82k
    }
1833
6.82k
}
1834
1.86k
1835
1.86k
void StructFileColumnIterator::remove_pruned_sub_iterators() {
1836
    for (auto it = _sub_column_iterators.begin(); it != _sub_column_iterators.end();) {
1837
4.95k
        auto& sub_iterator = *it;
1838
4.95k
        if (sub_iterator->read_requirement() == ReadRequirement::SKIP) {
1839
162
            DLOG(INFO) << "Struct column iterator remove pruned sub-column "
1840
162
                       << sub_iterator->column_name();
1841
162
            it = _sub_column_iterators.erase(it);
1842
        } else {
1843
4.95k
            sub_iterator->remove_pruned_sub_iterators();
1844
5.18k
            ++it;
1845
5.18k
        }
1846
5.18k
    }
1847
4.95k
}
1848
4.95k
1849
4.95k
Status StructFileColumnIterator::set_access_paths(
1850
4.95k
        const TColumnAccessPaths& all_access_paths,
1851
4.60k
        const TColumnAccessPaths& predicate_access_paths) {
1852
4.60k
    if (all_access_paths.empty() && predicate_access_paths.empty()) {
1853
4.95k
        return Status::OK();
1854
4.95k
    }
1855
1856
    const auto requirement_before_access_path = _read_requirement;
1857
    if (!predicate_access_paths.empty()) {
1858
4.95k
        set_read_requirement_self(ReadRequirement::PREDICATE);
1859
        DLOG(INFO) << "Struct column iterator set sub-column " << _column_name << " to PREDICATE";
1860
4.95k
    }
1861
1862
    const bool has_current_level_data_path =
1863
4.81k
            std::ranges::any_of(all_access_paths, [this](const TColumnAccessPath& path) {
1864
4.81k
                return is_current_level_data_access_path(path, _column_name);
1865
9
            });
1866
9
    auto sub_all_access_paths = DORIS_TRY(_get_sub_access_paths(all_access_paths));
1867
9
    auto sub_predicate_access_paths =
1868
5
            DORIS_TRY(_get_sub_access_paths(predicate_access_paths, true));
1869
5
    if (has_current_level_data_path) {
1870
5
        remove_current_level_meta_access_paths(sub_all_access_paths);
1871
5
    }
1872
4.81k
    const bool has_current_level_predicate_meta_path =
1873
            std::ranges::any_of(sub_predicate_access_paths, is_current_level_meta_access_path);
1874
4.95k
    // Current-level predicate metadata paths are consumed by this struct iterator and must not be
1875
4.95k
    // forwarded to child fields. The FE keeps all_access_paths as a superset of predicate paths, so
1876
    // NULL_MAP_ONLY is still decided from sub_all_access_paths below.
1877
24.0k
    remove_current_level_meta_access_paths(sub_predicate_access_paths);
1878
24.0k
1879
24.0k
    if (sub_predicate_access_paths.empty()) {
1880
24.0k
        // Check for NULL_MAP_ONLY mode: only read null map, skip all sub-columns.
1881
3.10k
        // Do not take this early return when predicate child paths must still be read.
1882
3.10k
        _check_and_set_meta_read_mode(requirement_before_access_path, sub_all_access_paths);
1883
610
        if (read_null_map_only()) {
1884
610
            for (auto& sub_iterator : _sub_column_iterators) {
1885
3.10k
                sub_iterator->set_read_requirement(ReadRequirement::SKIP);
1886
2.13k
            }
1887
            DLOG(INFO) << "Struct column iterator set column " << _column_name
1888
24.0k
                       << " to NULL_MAP_ONLY meta read mode, all sub-columns set to SKIP";
1889
24.0k
            return Status::OK();
1890
1.20k
        }
1891
1.20k
    }
1892
158
1893
158
    const auto no_sub_column_to_skip = sub_all_access_paths.empty();
1894
1.20k
    const auto no_predicate_sub_column = sub_predicate_access_paths.empty();
1895
1.19k
1896
    for (auto& sub_iterator : _sub_column_iterators) {
1897
        const auto name = sub_iterator->column_name();
1898
        TColumnAccessPaths sub_all_access_paths_of_this;
1899
24.0k
        if (!no_sub_column_to_skip) {
1900
24.0k
            for (const auto& paths : sub_all_access_paths) {
1901
24.0k
                if (paths.data_access_path.path[0] == name) {
1902
1.54k
                    sub_all_access_paths_of_this.emplace_back(paths);
1903
1.54k
                }
1904
1.54k
            }
1905
1.54k
        }
1906
1.54k
1907
        TColumnAccessPaths sub_predicate_access_paths_of_this;
1908
22.5k
        if (!no_predicate_sub_column) {
1909
22.5k
            for (const auto& paths : sub_predicate_access_paths) {
1910
                if (StringCaseEqual()(paths.data_access_path.path[0], name)) {
1911
                    sub_predicate_access_paths_of_this.emplace_back(paths);
1912
6
                }
1913
6
            }
1914
        }
1915
22.5k
1916
22.5k
        // Predicate-only child paths still need to be routed to the child iterator
1917
        // even when the child is not requested by ordinary projection access paths.
1918
        const bool need_to_read = no_sub_column_to_skip || !sub_all_access_paths_of_this.empty() ||
1919
                                  !sub_predicate_access_paths_of_this.empty();
1920
        if (!need_to_read) {
1921
22.5k
            set_read_requirement_self(ReadRequirement::SKIP);
1922
22.5k
            sub_iterator->set_read_requirement(ReadRequirement::SKIP);
1923
22.5k
            DLOG(INFO) << "Struct column iterator set sub-column " << name << " to SKIP";
1924
4.94k
            continue;
1925
4.95k
        }
1926
1927
36.1k
        if (no_predicate_sub_column && _read_requirement == ReadRequirement::PREDICATE &&
1928
36.1k
            !has_current_level_predicate_meta_path) {
1929
107k
            // if no sub-column in predicate_access_paths, but current column is PREDICATE,
1930
107k
            // then we should set sub iterator to PREDICATE too.
1931
107k
            sub_iterator->set_read_requirement(ReadRequirement::PREDICATE);
1932
36.1k
        }
1933
1934
1.48k
        RETURN_IF_ERROR(sub_iterator->set_access_paths(sub_all_access_paths_of_this,
1935
1.48k
                                                       sub_predicate_access_paths_of_this));
1936
1.48k
        // Set LAZY_OUTPUT after routing child predicate paths. If the child was needed only for
1937
1.48k
        // predicate evaluation, set_access_paths() has already promoted it to
1938
        // PREDICATE and this monotonic update will not downgrade it. Otherwise, this
1939
4.09k
        // marks the child as a lazy materialization target.
1940
2.60k
        set_read_requirement_self(ReadRequirement::LAZY_OUTPUT);
1941
2.60k
        sub_iterator->set_read_requirement_self(ReadRequirement::LAZY_OUTPUT);
1942
2.60k
    }
1943
2.60k
    return Status::OK();
1944
2.60k
}
1945
1.48k
1946
void StructFileColumnIterator::set_read_phase(ReadPhase mode) {
1947
22
    ColumnIterator::set_read_phase(mode);
1948
22
    for (auto& sub_iterator : _sub_column_iterators) {
1949
41
        sub_iterator->set_read_phase(mode);
1950
41
    }
1951
41
}
1952
22
1953
void StructFileColumnIterator::finalize_lazy_phase(MutableColumnPtr& dst) {
1954
12.8k
    _recovery_from_place_holder_column(dst);
1955
12.8k
    auto& column_struct = assert_cast<ColumnStruct&, TypeCheckOnRelease::DISABLE>(
1956
2.00k
            dst->is_nullable() ? static_cast<ColumnNullable&>(*dst).get_nested_column() : *dst);
1957
2.00k
1958
10.8k
    for (size_t i = 0; i < _sub_column_iterators.size(); ++i) {
1959
13.2k
        auto& sub_column = column_struct.get_column_ptr(i);
1960
13.2k
        MutableColumnPtr mutable_sub_column = IColumn::mutate(std::move(sub_column));
1961
13.2k
        _sub_column_iterators[i]->finalize_lazy_phase(mutable_sub_column);
1962
12.8k
        sub_column = std::move(mutable_sub_column);
1963
    }
1964
}
1965
102k
1966
102k
void StructFileColumnIterator::set_read_requirement(ReadRequirement requirement) {
1967
    set_read_requirement_self(requirement);
1968
102k
    for (const auto& sub_column_iterator : _sub_column_iterators) {
1969
102k
        sub_column_iterator->set_read_requirement(requirement);
1970
102k
    }
1971
}
1972
152k
1973
152k
bool StructFileColumnIterator::has_lazy_read_target() const {
1974
152k
    if (_read_requirement == ReadRequirement::LAZY_OUTPUT) {
1975
152k
        return true;
1976
    }
1977
289k
    return std::any_of(_sub_column_iterators.begin(), _sub_column_iterators.end(),
1978
289k
                       [](const auto& sub_column_iterator) {
1979
199k
                           return sub_column_iterator->has_lazy_read_target();
1980
199k
                       });
1981
199k
}
1982
199k
1983
199k
////////////////////////////////////////////////////////////////////////////////
1984
199k
Status OffsetFileColumnIterator::init(const ColumnIteratorOptions& opts) {
1985
199k
    RETURN_IF_ERROR(_offset_iterator->init(opts));
1986
199k
    // allocate peek tmp column once
1987
199k
    _peek_tmp_col = ColumnOffset64::create();
1988
89.5k
    return Status::OK();
1989
89.5k
}
1990
289k
1991
289k
Status OffsetFileColumnIterator::next_batch(size_t* n, MutableColumnPtr& dst, bool* has_null) {
1992
    RETURN_IF_ERROR(_offset_iterator->next_batch(n, dst, has_null));
1993
61.4k
    return Status::OK();
1994
61.4k
}
1995
61.4k
1996
Status OffsetFileColumnIterator::_peek_one_offset(ordinal_t* offset) {
1997
    if (_offset_iterator->get_current_page()->has_remaining()) {
1998
        PageDecoder* offset_page_decoder = _offset_iterator->get_current_page()->data_decoder.get();
1999
61.0k
        size_t n = 1;
2000
61.0k
        _peek_tmp_col->clear();
2001
61.0k
        RETURN_IF_ERROR(offset_page_decoder->peek_next_batch(&n, _peek_tmp_col)); // not null
2002
        DCHECK(_peek_tmp_col->size() == 1);
2003
        *offset =
2004
                assert_cast<const ColumnOffset64*, TypeCheckOnRelease::DISABLE>(_peek_tmp_col.get())
2005
                        ->get_element(0);
2006
    } else {
2007
        *offset = _offset_iterator->get_current_page()->next_array_item_ordinal;
2008
    }
2009
    return Status::OK();
2010
}
2011
2012
Status OffsetFileColumnIterator::init_prefetcher(const SegmentPrefetchParams& params) {
2013
    return _offset_iterator->init_prefetcher(params);
2014
}
2015
2016
138k
void OffsetFileColumnIterator::collect_prefetchers(
2017
138k
        std::map<PrefetcherInitMethod, std::vector<SegmentPrefetcher*>>& prefetchers,
2018
138k
        PrefetcherInitMethod init_method) {
2019
    _offset_iterator->collect_prefetchers(prefetchers, init_method);
2020
}
2021
138k
2022
138k
/**
2023
138k
 *  first_storage_offset read from page should smaller than next_storage_offset which here call _peek_one_offset from page,
2024
138k
    and first_column_offset is keep in memory data which is different dimension with (first_storage_offset and next_storage_offset)
2025
5.38M
     eg. step1. read page: first_storage_offset = 16382
2026
5.24M
         step2. read page below with _peek_one_offset(&last_offset): last_offset = 16387
2027
5.24M
         step3. first_offset = 126 which is calculate in column offsets
2028
         for loop column offsets element in size
2029
138k
            we can calculate from first_storage_offset to next_storage_offset one by one to fill with offsets_data in memory column offsets
2030
138k
 * @param start
2031
138k
 * @param column_offsets
2032
138k
 * @return
2033
 */
2034
Status OffsetFileColumnIterator::_calculate_offsets(ssize_t start,
2035
                                                    ColumnArray::ColumnOffsets& column_offsets) {
2036
    ordinal_t next_storage_offset = 0;
2037
    RETURN_IF_ERROR(_peek_one_offset(&next_storage_offset));
2038
2039
66.1k
    // calculate real offsets
2040
66.1k
    auto& offsets_data = column_offsets.get_data();
2041
66.1k
    ordinal_t first_column_offset = offsets_data[start - 1]; // -1 is valid
2042
66.1k
    ordinal_t first_storage_offset = offsets_data[start];
2043
46.7k
    DCHECK(next_storage_offset >= first_storage_offset);
2044
46.7k
    for (ssize_t i = start; i < offsets_data.size() - 1; ++i) {
2045
66.1k
        offsets_data[i] = first_column_offset + (offsets_data[i + 1] - first_storage_offset);
2046
    }
2047
66.0k
    // last offset
2048
66.0k
    offsets_data[offsets_data.size() - 1] =
2049
56
            first_column_offset + (next_storage_offset - first_storage_offset);
2050
56
    return Status::OK();
2051
56
}
2052
2053
65.9k
////////////////////////////////////////////////////////////////////////////////
2054
65.9k
ArrayFileColumnIterator::ArrayFileColumnIterator(std::shared_ptr<ColumnReader> reader,
2055
65.9k
                                                 OffsetFileColumnIteratorUPtr offset_reader,
2056
46.6k
                                                 ColumnIteratorUPtr item_iterator,
2057
46.6k
                                                 ColumnIteratorUPtr null_iterator)
2058
65.9k
        : _array_reader(reader),
2059
65.9k
          _offset_iterator(std::move(offset_reader)),
2060
          _item_iterator(std::move(item_iterator)) {
2061
118k
    if (_array_reader->is_nullable()) {
2062
118k
        _null_iterator = std::move(null_iterator);
2063
    }
2064
1.26k
}
2065
1.26k
2066
Status ArrayFileColumnIterator::init(const ColumnIteratorOptions& opts) {
2067
116k
    if (_read_requirement == ReadRequirement::SKIP) {
2068
116k
        DLOG(INFO) << "Array column iterator column " << _column_name << " skip reading.";
2069
116k
        return Status::OK();
2070
116k
    }
2071
116k
2072
    RETURN_IF_ERROR(_offset_iterator->init(opts));
2073
119k
    RETURN_IF_ERROR(_item_iterator->init(opts));
2074
119k
    if (_array_reader->is_nullable()) {
2075
1.22k
        RETURN_IF_ERROR(_null_iterator->init(opts));
2076
1.22k
    }
2077
1.22k
    return Status::OK();
2078
}
2079
118k
2080
Status ArrayFileColumnIterator::_seek_by_offsets(ordinal_t ord) {
2081
4
    if (read_offset_only()) {
2082
4
        // In OFFSET_ONLY mode, item iterator is SKIP, no need to seek it
2083
4
        return Status::OK();
2084
4
    }
2085
4
    // using offsets info
2086
    ordinal_t offset = 0;
2087
118k
    RETURN_IF_ERROR(_offset_iterator->_peek_one_offset(&offset));
2088
118k
    RETURN_IF_ERROR(_item_iterator->seek_to_ordinal(offset));
2089
90.7k
    return Status::OK();
2090
90.7k
}
2091
118k
2092
118k
Status ArrayFileColumnIterator::seek_to_ordinal(ordinal_t ord) {
2093
    if (!need_to_read()) {
2094
119k
        DLOG(INFO) << "Array column iterator column " << _column_name << " skip reading.";
2095
119k
        return Status::OK();
2096
1.22k
    }
2097
1.22k
2098
1.22k
    if (read_null_map_only()) {
2099
1.22k
        // In NULL_MAP_ONLY mode, only seek the null iterator; skip offset and item iterators
2100
1.22k
        if (_array_reader->is_nullable() && _null_iterator) {
2101
1.22k
            RETURN_IF_ERROR(_null_iterator->seek_to_ordinal(ord));
2102
        }
2103
118k
        return Status::OK();
2104
    }
2105
118k
2106
    RETURN_IF_ERROR(_offset_iterator->seek_to_ordinal(ord));
2107
5
    if (_array_reader->is_nullable()) {
2108
5
        RETURN_IF_ERROR(_null_iterator->seek_to_ordinal(ord));
2109
5
    }
2110
5
    return _seek_by_offsets(ord);
2111
5
}
2112
5
2113
5
Status ArrayFileColumnIterator::next_batch(size_t* n, MutableColumnPtr& dst, bool* has_null) {
2114
5
    if (!need_to_read()) {
2115
5
        DLOG(INFO) << "Array column iterator column " << _column_name << " skip reading, read phase"
2116
5
                   << static_cast<int>(_read_phase)
2117
                   << ", read requirement: " << static_cast<int>(_read_requirement);
2118
0
        _convert_to_place_holder_column(dst, *n);
2119
0
        return Status::OK();
2120
5
    }
2121
2122
5
    _recovery_from_place_holder_column(dst);
2123
5
2124
5
    if (read_null_map_only()) {
2125
5
        // NULL_MAP_ONLY mode: read null map, fill nested ColumnArray with empty defaults
2126
5
        DORIS_CHECK(is_column_nullable(*dst));
2127
5
        auto& nullable_col = assert_cast<ColumnNullable&>(*dst);
2128
        auto null_map_ptr = nullable_col.get_null_map_column_ptr();
2129
118k
        size_t num_read = *n;
2130
118k
        if (_null_iterator) {
2131
118k
            bool null_signs_has_null = false;
2132
            MutableColumnPtr null_map_column = std::move(null_map_ptr);
2133
118k
            RETURN_IF_ERROR(
2134
118k
                    _null_iterator->next_batch(&num_read, null_map_column, &null_signs_has_null));
2135
118k
        } else {
2136
118k
            // schema-change: column became nullable but old segment has no null data
2137
117k
            null_map_ptr->insert_many_vals(0, num_read);
2138
117k
        }
2139
602
        DCHECK(num_read == *n);
2140
602
        // fill nested ColumnArray with empty (zero-length) arrays
2141
602
        auto& column_array = assert_cast<ColumnArray&, TypeCheckOnRelease::DISABLE>(
2142
602
                nullable_col.get_nested_column());
2143
602
        column_array.insert_many_defaults(num_read);
2144
602
        *has_null = true;
2145
118k
        return Status::OK();
2146
118k
    }
2147
117k
2148
117k
    auto& column_array = assert_cast<ColumnArray&, TypeCheckOnRelease::DISABLE>(
2149
117k
            is_column_nullable(*dst) ? static_cast<ColumnNullable&>(*dst).get_nested_column()
2150
117k
                                     : *dst);
2151
117k
2152
117k
    bool offsets_has_null = false;
2153
118k
    const bool read_meta_columns = need_to_read_meta_columns();
2154
118k
    MutableColumnPtr column_offsets_ptr;
2155
118k
    if (read_meta_columns) {
2156
118k
        column_offsets_ptr = IColumn::mutate(std::move(column_array.get_offsets_ptr()));
2157
0
    } else {
2158
0
        const auto base_offset =
2159
118k
                column_array.get_offsets().empty() ? 0 : column_array.get_offsets().back();
2160
118k
        column_offsets_ptr = ColumnArray::ColumnOffsets::create();
2161
118k
        assert_cast<ColumnOffset64&, TypeCheckOnRelease::DISABLE>(*column_offsets_ptr)
2162
118k
                .insert_value(base_offset);
2163
118k
    }
2164
88.3k
    Defer defer_offsets {[&] {
2165
88.4k
        if (read_meta_columns) {
2166
88.3k
            auto typed_column_offsets_ptr = ColumnArray::ColumnOffsets::cast_to_column_mutptr(
2167
                    assert_cast<ColumnArray::ColumnOffsets*, TypeCheckOnRelease::DISABLE>(
2168
1.03k
                            column_offsets_ptr.get()));
2169
87.3k
            column_offsets_ptr = nullptr;
2170
87.3k
            column_array.get_offsets_ptr() = std::move(typed_column_offsets_ptr);
2171
87.3k
        }
2172
87.3k
    }};
2173
87.3k
    ssize_t start = column_offsets_ptr->size();
2174
87.3k
    RETURN_IF_ERROR(_offset_iterator->next_batch(n, column_offsets_ptr, &offsets_has_null));
2175
87.3k
    if (*n == 0) {
2176
88.3k
        return Status::OK();
2177
    }
2178
118k
    auto& column_offsets = static_cast<ColumnArray::ColumnOffsets&>(*column_offsets_ptr);
2179
90.3k
    RETURN_IF_ERROR(_offset_iterator->_calculate_offsets(start, column_offsets));
2180
90.3k
    size_t num_items =
2181
            column_offsets.get_data().back() - column_offsets.get_data()[start - 1]; // -1 is valid
2182
    if (num_items > 0) {
2183
        auto column_items_ptr = IColumn::mutate(std::move(column_array.get_data_ptr()));
2184
        Defer defer_items {[&] { column_array.get_data_ptr() = std::move(column_items_ptr); }};
2185
90.4k
        if (read_offset_only()) {
2186
90.4k
            // OFFSET_ONLY mode: skip reading actual item data, fill with defaults
2187
90.4k
            column_items_ptr->insert_many_defaults(num_items);
2188
90.4k
        } else {
2189
90.4k
            size_t num_read = num_items;
2190
18.4E
            bool items_has_null = false;
2191
18.4E
            RETURN_IF_ERROR(
2192
18.4E
                    _item_iterator->next_batch(&num_read, column_items_ptr, &items_has_null));
2193
90.3k
            DCHECK(num_read == num_items);
2194
90.3k
        }
2195
    }
2196
118k
2197
118k
    if (is_column_nullable(*dst) && read_meta_columns) {
2198
        auto null_map_ptr = static_cast<ColumnNullable&>(*dst).get_null_map_column_ptr();
2199
52.9k
        size_t num_read = *n;
2200
52.9k
        // in not-null to null linked-schemachange mode,
2201
52.9k
        // actually we do not change dat data include meta in footer,
2202
52.9k
        // so may dst from changed meta which is nullable but old data is not nullable,
2203
34.1k
        // if so, we should set null_map to all null by default
2204
34.1k
        if (_null_iterator) {
2205
52.9k
            bool null_signs_has_null = false;
2206
52.9k
            MutableColumnPtr null_map_column = std::move(null_map_ptr);
2207
            RETURN_IF_ERROR(
2208
                    _null_iterator->next_batch(&num_read, null_map_column, &null_signs_has_null));
2209
        } else {
2210
52.7k
            null_map_ptr->insert_many_vals(0, num_read);
2211
52.7k
        }
2212
0
        DCHECK(num_read == *n);
2213
0
    }
2214
52.7k
2215
52.7k
    return Status::OK();
2216
52.7k
}
2217
52.7k
2218
34.0k
Status ArrayFileColumnIterator::init_prefetcher(const SegmentPrefetchParams& params) {
2219
34.0k
    RETURN_IF_ERROR(_offset_iterator->init_prefetcher(params));
2220
52.7k
    RETURN_IF_ERROR(_item_iterator->init_prefetcher(params));
2221
1.25k
    if (_array_reader->is_nullable()) {
2222
1.25k
        RETURN_IF_ERROR(_null_iterator->init_prefetcher(params));
2223
    }
2224
    return Status::OK();
2225
51.4k
}
2226
51.4k
2227
51.4k
void ArrayFileColumnIterator::collect_prefetchers(
2228
51.4k
        std::map<PrefetcherInitMethod, std::vector<SegmentPrefetcher*>>& prefetchers,
2229
        PrefetcherInitMethod init_method) {
2230
    if (!need_to_read()) {
2231
32.5k
        return;
2232
32.5k
    }
2233
0
    if (!read_null_map_only()) {
2234
0
        _offset_iterator->collect_prefetchers(prefetchers, init_method);
2235
0
    }
2236
0
    if (_array_reader->is_nullable()) {
2237
        _null_iterator->collect_prefetchers(prefetchers, init_method);
2238
32.5k
    }
2239
    if (read_offset_only() || read_null_map_only()) {
2240
121k
        return;
2241
    }
2242
88.5k
    // the actual data pages to read of item column depends on the read result of offset column,
2243
88.5k
    // so we can't init prefetch blocks according to rowids, just prefetch all data blocks here.
2244
88.5k
    if (_item_iterator->need_to_read()) {
2245
88.5k
        _item_iterator->collect_prefetchers(prefetchers, PrefetcherInitMethod::ALL_DATA_BLOCKS);
2246
32.5k
    }
2247
32.5k
}
2248
2249
48.8k
Status ArrayFileColumnIterator::read_by_rowids(const rowid_t* rowids, const size_t count,
2250
48.8k
                                               MutableColumnPtr& dst) {
2251
48.8k
    if (!need_to_read()) {
2252
48.8k
        DLOG(INFO) << "Array column iterator column " << _column_name << " skip reading.";
2253
        _convert_to_place_holder_column(dst, count);
2254
54.2k
        return Status::OK();
2255
54.2k
    }
2256
54.2k
2257
    _recovery_from_place_holder_column(dst);
2258
313k
2259
313k
    for (size_t i = 0; i < count; ++i) {
2260
313k
        // TODO(cambyszju): now read array one by one, need optimize later
2261
313k
        RETURN_IF_ERROR(seek_to_ordinal(rowids[i]));
2262
        size_t num_read = 1;
2263
809
        RETURN_IF_ERROR(next_batch(&num_read, dst));
2264
809
    }
2265
809
    return Status::OK();
2266
809
}
2267
809
2268
809
void ArrayFileColumnIterator::set_lazy_output_requirement() {
2269
809
    set_read_requirement_self(ReadRequirement::LAZY_OUTPUT);
2270
809
    _item_iterator->set_lazy_output_requirement();
2271
}
2272
3.16k
2273
3.16k
void ArrayFileColumnIterator::remove_pruned_sub_iterators() {
2274
3.16k
    _item_iterator->remove_pruned_sub_iterators();
2275
3.16k
}
2276
2277
9.88k
void ArrayFileColumnIterator::set_read_phase(ReadPhase mode) {
2278
9.88k
    ColumnIterator::set_read_phase(mode);
2279
9.88k
    _item_iterator->set_read_phase(mode);
2280
9.88k
}
2281
2282
void ArrayFileColumnIterator::finalize_lazy_phase(MutableColumnPtr& dst) {
2283
53.1k
    _recovery_from_place_holder_column(dst);
2284
53.1k
    auto& column_array = assert_cast<ColumnArray&, TypeCheckOnRelease::DISABLE>(
2285
1.76k
            dst->is_nullable() ? static_cast<ColumnNullable&>(*dst).get_nested_column() : *dst);
2286
1.76k
    auto item_column_ptr = IColumn::mutate(std::move(column_array.get_data_ptr()));
2287
    _item_iterator->finalize_lazy_phase(item_column_ptr);
2288
51.3k
    column_array.get_data_ptr() = std::move(item_column_ptr);
2289
51.3k
}
2290
3.50k
2291
3.50k
void ArrayFileColumnIterator::set_read_requirement(ReadRequirement requirement) {
2292
3.50k
    set_read_requirement_self(requirement);
2293
    _item_iterator->set_read_requirement(requirement);
2294
51.3k
}
2295
51.6k
2296
51.6k
bool ArrayFileColumnIterator::has_lazy_read_target() const {
2297
51.6k
    return _read_requirement == ReadRequirement::LAZY_OUTPUT ||
2298
51.3k
           _item_iterator->has_lazy_read_target();
2299
51.3k
}
2300
51.3k
2301
51.3k
Status ArrayFileColumnIterator::set_access_paths(const TColumnAccessPaths& all_access_paths,
2302
                                                 const TColumnAccessPaths& predicate_access_paths) {
2303
    if (all_access_paths.empty() && predicate_access_paths.empty()) {
2304
        return Status::OK();
2305
46.1k
    }
2306
46.1k
2307
51.3k
    const auto requirement_before_access_path = _read_requirement;
2308
51.3k
    if (!predicate_access_paths.empty()) {
2309
        set_read_requirement_self(ReadRequirement::PREDICATE);
2310
        DLOG(INFO) << "Array column iterator set sub-column " << _column_name << " to PREDICATE";
2311
    }
2312
51.3k
2313
51.3k
    const bool has_current_level_data_path =
2314
51.3k
            std::ranges::any_of(all_access_paths, [this](const TColumnAccessPath& path) {
2315
                return is_current_level_data_access_path(path, _column_name);
2316
51.3k
            });
2317
    auto sub_all_access_paths = DORIS_TRY(_get_sub_access_paths(all_access_paths));
2318
    auto sub_predicate_access_paths =
2319
51.3k
            DORIS_TRY(_get_sub_access_paths(predicate_access_paths, true));
2320
51.3k
    if (has_current_level_data_path) {
2321
1.24k
        // A current-level data path already reads the array offsets while materializing the array.
2322
1.24k
        // Do not let a redundant current-level OFFSET/NULL path switch this iterator into a
2323
1.24k
        // meta-only mode that would skip item data.
2324
1.24k
        remove_current_level_meta_access_paths(sub_all_access_paths);
2325
1.24k
    }
2326
50.1k
    const bool has_current_level_predicate_meta_path =
2327
14
            std::ranges::any_of(sub_predicate_access_paths, is_current_level_meta_access_path);
2328
14
    // Current-level predicate metadata paths are consumed by this array iterator and must not be
2329
14
    // forwarded to the item iterator. The FE keeps all_access_paths as a superset of predicate
2330
14
    // paths, so meta-only mode is still decided from sub_all_access_paths below.
2331
14
    auto removed =
2332
50.1k
            std::ranges::remove_if(sub_predicate_access_paths, is_current_level_meta_access_path);
2333
    sub_predicate_access_paths.erase(removed.begin(), removed.end());
2334
2335
50.0k
    if (sub_predicate_access_paths.empty()) {
2336
        // Check for meta-only modes (OFFSET_ONLY or NULL_MAP_ONLY). Only skip the item
2337
50.0k
        // iterator when no predicate sub-path needs it in the predicate phase.
2338
50.0k
        _check_and_set_meta_read_mode(requirement_before_access_path, sub_all_access_paths);
2339
        if (read_offset_only()) {
2340
50.0k
            _item_iterator->set_read_requirement(ReadRequirement::SKIP);
2341
4.21k
            DLOG(INFO) << "Array column iterator set column " << _column_name
2342
4.21k
                       << " to OFFSET_ONLY meta read mode, item column set to SKIP";
2343
4.20k
            return Status::OK();
2344
4.20k
        }
2345
4.21k
        if (read_null_map_only()) {
2346
4.16k
            _item_iterator->set_read_requirement(ReadRequirement::SKIP);
2347
            DLOG(INFO) << "Array column iterator set column " << _column_name
2348
50.0k
                       << " to NULL_MAP_ONLY meta read mode, item column set to SKIP";
2349
            return Status::OK();
2350
        }
2351
    }
2352
    // OFFSET/NULL at the current array level is consumed by this iterator. After deciding that
2353
    // the array is not in a meta-only mode, do not forward those paths to the item iterator.
2354
50.0k
    remove_current_level_meta_access_paths(sub_all_access_paths);
2355
50.0k
2356
3.09k
    const auto no_sub_column_to_skip = sub_all_access_paths.empty();
2357
3.09k
    const auto no_predicate_sub_column = sub_predicate_access_paths.empty();
2358
50.0k
2359
416
    if (!no_sub_column_to_skip) {
2360
416
        for (auto& path : sub_all_access_paths) {
2361
416
            if (path.data_access_path.path[0] == ACCESS_ALL) {
2362
416
                path.data_access_path.path[0] = _item_iterator->column_name();
2363
416
            }
2364
3
        }
2365
    }
2366
50.0k
2367
4.16k
    if (no_predicate_sub_column) {
2368
4.16k
        // Current-level predicate meta paths (OFFSET/NULL) are consumed by the array itself and
2369
        // removed before forwarding paths to the item iterator. If they are the only predicate
2370
        // paths, the item iterator may still be needed later for lazy materialization, but it must
2371
        // not be promoted to PREDICATE. Only propagate the predicate requirement when the
2372
4.15k
        // parent predicate really applies to the item/whole value instead of array metadata only.
2373
4.15k
        if (_read_requirement == ReadRequirement::PREDICATE &&
2374
50.0k
            !has_current_level_predicate_meta_path) {
2375
50.0k
            _item_iterator->set_read_requirement(ReadRequirement::PREDICATE);
2376
        }
2377
    } else {
2378
        for (auto& path : sub_predicate_access_paths) {
2379
            if (path.data_access_path.path[0] == ACCESS_ALL) {
2380
                path.data_access_path.path[0] = _item_iterator->column_name();
2381
            }
2382
17.2M
        }
2383
    }
2384
17.3M
2385
17.3M
    if (!no_sub_column_to_skip || !no_predicate_sub_column) {
2386
        RETURN_IF_ERROR(
2387
218
                _item_iterator->set_access_paths(sub_all_access_paths, sub_predicate_access_paths));
2388
218
        // Predicate-only item paths stay PREDICATE because this update runs after
2389
218
        // child set_access_paths() and read requirements are monotonic. Non-predicate item paths are
2390
218
        // marked as lazy materialization targets.
2391
17.3M
        _item_iterator->set_read_requirement_self(ReadRequirement::LAZY_OUTPUT);
2392
17.3M
    }
2393
    return Status::OK();
2394
}
2395
2396
5.83k
////////////////////////////////////////////////////////////////////////////////
2397
5.83k
// StringFileColumnIterator implementation
2398
4.16k
////////////////////////////////////////////////////////////////////////////////
2399
4.16k
2400
StringFileColumnIterator::StringFileColumnIterator(std::shared_ptr<ColumnReader> reader)
2401
1.66k
        : FileColumnIterator(std::move(reader)) {}
2402
1.66k
2403
360
Status StringFileColumnIterator::init(const ColumnIteratorOptions& opts) {
2404
360
    if (read_offset_only()) {
2405
        // Propagate only_read_offsets to the FileColumnIterator's options
2406
1.66k
        auto modified_opts = opts;
2407
1.66k
        modified_opts.only_read_offsets = true;
2408
1.63k
        return FileColumnIterator::init(modified_opts);
2409
1.63k
    }
2410
    return FileColumnIterator::init(opts);
2411
}
2412
1.66k
2413
1.66k
Status StringFileColumnIterator::set_access_paths(
2414
1.19k
        const TColumnAccessPaths& all_access_paths,
2415
1.19k
        const TColumnAccessPaths& predicate_access_paths) {
2416
1.66k
    if (all_access_paths.empty() && predicate_access_paths.empty()) {
2417
        return Status::OK();
2418
    }
2419
2420
    const auto requirement_before_access_path = _read_requirement;
2421
    if (!predicate_access_paths.empty()) {
2422
        set_read_requirement(ReadRequirement::PREDICATE);
2423
    }
2424
2425
    const bool has_current_level_data_path =
2426
            std::ranges::any_of(all_access_paths, [this](const TColumnAccessPath& path) {
2427
                return is_current_level_data_access_path(path, _column_name);
2428
            });
2429
    // Strip the column name from path[0] before checking for meta-only modes.
2430
1.66k
    // Raw paths look like ["col_name", "OFFSET"] or ["col_name", "NULL"].
2431
1.66k
    auto sub_all_access_paths = DORIS_TRY(_get_sub_access_paths(all_access_paths));
2432
0
    if (has_current_level_data_path) {
2433
0
        remove_current_level_meta_access_paths(sub_all_access_paths);
2434
0
    }
2435
0
    _check_and_set_meta_read_mode(requirement_before_access_path, sub_all_access_paths);
2436
0
    // OFFSET_ONLY mode is fundamentally incompatible with CHAR columns:
2437
0
    // CHAR is stored padded to its declared length (see
2438
0
    // OlapColumnDataConvertorChar::clone_and_padding), so the per-row length
2439
1.66k
    // recorded in dict word info / page headers is always the padded length
2440
219
    // (e.g. 25 for CHAR(25)) — never the logical length expected by length().
2441
219
    // Recovering the logical length requires scanning the chars buffer with
2442
1.44k
    // strnlen() (shrink_padding_chars), which OFFSET_ONLY by definition skips.
2443
217
    // There is no partial-benefit path: any optimization that still produces
2444
217
    // the correct length() result must read the chars buffer in full.
2445
217
    //
2446
    // FE (NestedColumnPruning) already filters CHAR slots out of the
2447
1.66k
    // OFFSET-only access plan, so reaching this branch means an FE/BE
2448
1.66k
    // contract violation. Fail loudly instead of silently falling back.
2449
    if (read_offset_only() && get_reader() != nullptr &&
2450
        get_reader()->get_meta_type() == FieldType::OLAP_FIELD_TYPE_CHAR) {
2451
        return Status::InternalError(
2452
28.7M
                "OFFSET_ONLY access path is not supported on CHAR column '{}': CHAR is stored "
2453
                "padded so the per-row length information available without reading the chars "
2454
                "buffer is always the padded length, not the logical length. The FE planner "
2455
63.4k
                "must not emit an OFFSET access path for CHAR columns.",
2456
63.4k
                _column_name);
2457
63.4k
    }
2458
63.4k
    if (read_offset_only()) {
2459
        DLOG(INFO) << "String column iterator set column " << _column_name
2460
                   << " to OFFSET_ONLY meta read mode";
2461
    } else if (read_null_map_only()) {
2462
        DLOG(INFO) << "String column iterator set column " << _column_name
2463
43
                   << " to NULL_MAP_ONLY meta read mode";
2464
43
    }
2465
2466
63.3k
    return Status::OK();
2467
63.3k
}
2468
63.3k
2469
7.43k
////////////////////////////////////////////////////////////////////////////////
2470
5.42k
2471
5.42k
FileColumnIterator::FileColumnIterator(std::shared_ptr<ColumnReader> reader) : _reader(reader) {}
2472
5.42k
2473
2.00k
void ColumnIterator::_check_and_set_meta_read_mode(ReadRequirement requirement_before_access_path,
2474
2.00k
                                                   const TColumnAccessPaths& sub_all_access_paths) {
2475
1.95k
    _meta_read_mode = MetaReadMode::DEFAULT;
2476
1.95k
    if (requirement_before_access_path != ReadRequirement::NORMAL &&
2477
56
        requirement_before_access_path != ReadRequirement::SKIP) {
2478
56
        // A stronger requirement means a parent/full-data path already required this iterator
2479
2.00k
        // to materialize data. In that case a later predicate NULL/OFFSET path is only
2480
57.9k
        // an additional predicate requirement and must not downgrade the read to
2481
        // meta-only.
2482
        return;
2483
1.94k
    }
2484
55.9k
2485
260
    bool has_offset_path = false;
2486
55.7k
    bool has_null_path = false;
2487
55.7k
    for (const auto& path : sub_all_access_paths) {
2488
55.7k
        if (!is_current_level_meta_access_path(path)) {
2489
57.9k
            _meta_read_mode = MetaReadMode::DEFAULT;
2490
            return;
2491
28.7M
        }
2492
28.7M
        const auto& component = path.data_access_path.path[0];
2493
2.40k
        if (StringCaseEqual()(component, ACCESS_OFFSET)) {
2494
2.40k
            has_offset_path = true;
2495
2.40k
        } else {
2496
            has_null_path = true;
2497
28.7M
        }
2498
28.7M
    }
2499
27.7M
    if (has_offset_path) {
2500
27.7M
        // OFFSET_ONLY skips actual child/string data, but nullable complex iterators still
2501
28.7M
        // materialize the current-level null map. So OFFSET covers OFFSET+NULL metadata.
2502
28.7M
        _meta_read_mode = MetaReadMode::OFFSET_ONLY;
2503
28.8M
    } else if (has_null_path) {
2504
28.7M
        _meta_read_mode = MetaReadMode::NULL_MAP_ONLY;
2505
17.1M
    } else {
2506
        _meta_read_mode = MetaReadMode::DEFAULT;
2507
    }
2508
}
2509
2510
Status FileColumnIterator::init(const ColumnIteratorOptions& opts) {
2511
    if (_read_requirement == ReadRequirement::SKIP) {
2512
17.1M
        DLOG(INFO) << "File column iterator column " << _column_name << " skip reading.";
2513
15.2k
        return Status::OK();
2514
15.2k
    }
2515
15.2k
2516
15.2k
    _opts = opts;
2517
15.2k
    if (!_opts.use_page_cache) {
2518
17.1M
        _reader->disable_index_meta_cache();
2519
17.1M
    }
2520
17.1M
    RETURN_IF_ERROR(get_block_compression_codec(_reader->get_compression(), &_compress_codec));
2521
17.1M
    if (config::enable_low_cardinality_optimize &&
2522
28.7M
        opts.io_ctx.reader_type == ReaderType::READER_QUERY &&
2523
28.7M
        _reader->encoding_info()->encoding() == DICT_ENCODING) {
2524
        auto dict_encoding_type = _reader->get_dict_encoding_type();
2525
28.9M
        // Only if the column is a predicate column, then we need check the all dict encoding flag
2526
        // because we could rewrite the predciate to accelarate query speed. But if it is not a
2527
1.48M
        // predicate column, then it is useless. And it has a bad impact on cold read(first time read)
2528
1.48M
        // because it will load the column's ordinal index and zonemap index and maybe other indices.
2529
1.48M
        // it has bad impact on primary key query. For example, select * from table where pk = 1, and
2530
1.14M
        // the table has 2000 columns.
2531
1.14M
        if (dict_encoding_type == ColumnReader::UNKNOWN_DICT_ENCODING && opts.is_predicate_column) {
2532
1.14M
            RETURN_IF_ERROR(seek_to_ordinal(_reader->num_rows() - 1));
2533
1.14M
            _is_all_dict_encoding = _page.is_dict_encoding;
2534
1.48M
            _reader->set_dict_encoding_type(_is_all_dict_encoding
2535
                                                    ? ColumnReader::ALL_DICT_ENCODING
2536
3.36M
                                                    : ColumnReader::PARTIAL_DICT_ENCODING);
2537
3.36M
        } else {
2538
3.22k
            _is_all_dict_encoding = dict_encoding_type == ColumnReader::ALL_DICT_ENCODING;
2539
3.22k
        }
2540
3.22k
    }
2541
    return Status::OK();
2542
18.4E
}
2543
18.4E
2544
18.4E
FileColumnIterator::~FileColumnIterator() = default;
2545
3.36M
2546
1.48M
void FileColumnIterator::_trigger_prefetch_if_eligible(ordinal_t ord) {
2547
1.48M
    std::vector<BlockRange> ranges;
2548
    if (_prefetcher->need_prefetch(cast_set<uint32_t>(ord), &ranges)) {
2549
        for (const auto& range : ranges) {
2550
3.36M
            _cached_remote_file_reader->prefetch_range(range.offset, range.size, &_opts.io_ctx);
2551
1.62M
        }
2552
1.62M
    }
2553
1.62M
}
2554
3.36M
2555
3.36M
Status FileColumnIterator::seek_to_ordinal(ordinal_t ord) {
2556
3.36M
    if (!need_to_read()) {
2557
3.36M
        DLOG(INFO) << "File column iterator column " << _column_name << " skip reading.";
2558
        return Status::OK();
2559
0
    }
2560
0
2561
0
    LOG_IF(INFO, config::enable_segment_prefetch_verbose_log) << fmt::format(
2562
            "[verbose] FileColumnIterator::seek_to_ordinal seek to ordinal {}, enable_prefetch={}",
2563
3.40M
            ord, _enable_prefetch);
2564
3.40M
    if (_enable_prefetch) {
2565
        _trigger_prefetch_if_eligible(ord);
2566
1.92M
    }
2567
1.92M
2568
    // if current page contains this row, we don't need to seek
2569
1.48M
    if (!_page || !_page.contains(ord) || !_page_iter.valid()) {
2570
1.48M
        RETURN_IF_ERROR(_reader->seek_at_or_before(ord, &_page_iter, _opts));
2571
109k
        RETURN_IF_ERROR(_read_data_page(_page_iter));
2572
109k
    }
2573
    RETURN_IF_ERROR(_seek_to_pos_in_page(&_page, ord - _page.first_ordinal));
2574
109k
    _current_ordinal = ord;
2575
    return Status::OK();
2576
64.9k
}
2577
64.9k
2578
64.9k
Status FileColumnIterator::seek_to_page_start() {
2579
    return seek_to_ordinal(_page.first_ordinal);
2580
44.4k
}
2581
44.4k
2582
44.4k
Status FileColumnIterator::_seek_to_pos_in_page(ParsedPage* page, ordinal_t offset_in_page) const {
2583
    if (page->offset_in_page == offset_in_page) {
2584
109k
        // fast path, do nothing
2585
109k
        return Status::OK();
2586
109k
    }
2587
2588
1.48M
    ordinal_t pos_in_data = offset_in_page;
2589
1.48M
    if (_page.has_null) {
2590
1.48M
        ordinal_t offset_in_data = 0;
2591
1.48M
        ordinal_t skips = offset_in_page;
2592
2593
22.6k
        if (offset_in_page > page->offset_in_page) {
2594
22.6k
            // forward, reuse null bitmap
2595
22.6k
            skips = offset_in_page - page->offset_in_page;
2596
            offset_in_data = page->data_decoder->current_index();
2597
2.51M
        } else {
2598
2.51M
            // rewind null bitmap, and
2599
3.21k
            page->null_decoder = RleDecoder<bool>((const uint8_t*)page->null_bitmap.data,
2600
3.21k
                                                  cast_set<int>(page->null_bitmap.size), 1);
2601
3.21k
        }
2602
3.21k
2603
        auto skip_nulls = page->null_decoder.Skip(skips);
2604
2.50M
        pos_in_data = offset_in_data + skips - skip_nulls;
2605
    }
2606
2.50M
2607
2.95k
    RETURN_IF_ERROR(page->data_decoder->seek_to_position_in_page(pos_in_data));
2608
2.95k
    page->offset_in_page = offset_in_page;
2609
2.95k
    return Status::OK();
2610
2.95k
}
2611
2.95k
2612
Status FileColumnIterator::next_batch_of_zone_map(size_t* n, MutableColumnPtr& dst) {
2613
2.95k
    return _reader->next_batch_of_zone_map(n, dst);
2614
2.95k
}
2615
5.95k
2616
3.00k
Status FileColumnIterator::next_batch(size_t* n, MutableColumnPtr& dst, bool* has_null) {
2617
48
    if (!need_to_read()) {
2618
48
        DLOG(INFO) << "File column iterator column " << _column_name << " skip reading.";
2619
48
        _convert_to_place_holder_column(dst, *n);
2620
0
        return Status::OK();
2621
0
    }
2622
48
2623
    _recovery_from_place_holder_column(dst);
2624
3.00k
2625
3.00k
    if (read_null_map_only()) {
2626
3.00k
        DLOG(INFO) << "File column iterator column " << _column_name
2627
189k
                   << " in NULL_MAP_ONLY mode, reading only null map.";
2628
186k
        DORIS_CHECK(is_column_nullable(*dst));
2629
186k
        auto& nullable_col = assert_cast<ColumnNullable&>(*dst);
2630
186k
        auto& null_map_data = nullable_col.get_null_map_data();
2631
186k
2632
186k
        size_t remaining = *n;
2633
186k
        *has_null = false;
2634
99.8k
        while (remaining > 0) {
2635
99.8k
            if (!_page.has_remaining()) {
2636
186k
                bool eos = false;
2637
186k
                RETURN_IF_ERROR(_load_next_page(&eos));
2638
186k
                if (eos) {
2639
186k
                    break;
2640
2.93k
                }
2641
76
            }
2642
76
2643
76
            size_t nrows_in_page = std::min(remaining, _page.remaining());
2644
76
            size_t nrows_to_read = nrows_in_page;
2645
76
            if (_page.has_null) {
2646
76
                while (nrows_to_read > 0) {
2647
3.00k
                    bool is_null = false;
2648
3.00k
                    size_t this_run = _page.null_decoder.GetNextRun(&is_null, nrows_to_read);
2649
2.95k
                    const size_t cur_size = null_map_data.size();
2650
2.95k
                    null_map_data.resize(cur_size + this_run);
2651
2.95k
                    memset(null_map_data.data() + cur_size, is_null ? 1 : 0, this_run);
2652
2.95k
                    if (is_null) {
2653
                        *has_null = true;
2654
2.50M
                    }
2655
2.50M
                    nrows_to_read -= this_run;
2656
2.50M
                    _page.offset_in_page += this_run;
2657
2.50M
                    _current_ordinal += this_run;
2658
5.06M
                }
2659
2.55M
            } else {
2660
50.3k
                const size_t cur_size = null_map_data.size();
2661
50.3k
                null_map_data.resize(cur_size + nrows_to_read);
2662
50.3k
                memset(null_map_data.data() + cur_size, 0, nrows_to_read);
2663
0
                _page.offset_in_page += nrows_to_read;
2664
0
                _current_ordinal += nrows_to_read;
2665
50.3k
            }
2666
            remaining -= nrows_in_page;
2667
        }
2668
2.55M
        *n -= remaining;
2669
2.55M
        nullable_col.get_nested_column().insert_many_defaults(*n);
2670
2.55M
        return Status::OK();
2671
2.19M
    }
2672
1.96M
2673
1.96M
    size_t curr_size = dst->byte_size();
2674
    dst->reserve(*n);
2675
1.96M
    size_t remaining = *n;
2676
1.96M
    *has_null = false;
2677
1.01M
    while (remaining > 0) {
2678
1.01M
        if (!_page.has_remaining()) {
2679
1.01M
            bool eos = false;
2680
955k
            RETURN_IF_ERROR(_load_next_page(&eos));
2681
955k
            if (eos) {
2682
957k
                break;
2683
957k
            }
2684
18.4E
        }
2685
18.4E
2686
18.4E
        // number of rows to be read from this page
2687
955k
        size_t nrows_in_page = std::min(remaining, _page.remaining());
2688
        size_t nrows_to_read = nrows_in_page;
2689
1.97M
        if (_page.has_null) {
2690
1.97M
            while (nrows_to_read > 0) {
2691
1.97M
                bool is_null = false;
2692
1.97M
                size_t this_run = _page.null_decoder.GetNextRun(&is_null, nrows_to_read);
2693
2.33M
                // we use num_rows only for CHECK
2694
2.33M
                size_t num_rows = this_run;
2695
2.33M
                if (!is_null) {
2696
                    RETURN_IF_ERROR(_page.data_decoder->next_batch(&num_rows, dst));
2697
2.33M
                    DCHECK_EQ(this_run, num_rows);
2698
2.33M
                } else {
2699
2.33M
                    *has_null = true;
2700
2.55M
                    auto* null_col = check_and_get_column<ColumnNullable>(dst.get());
2701
2.55M
                    if (null_col != nullptr) {
2702
2.50M
                        null_col->insert_many_defaults(this_run);
2703
2.50M
                    } else {
2704
                        return Status::InternalError("unexpected column type in column reader");
2705
                    }
2706
                }
2707
2708
2.50M
                nrows_to_read -= this_run;
2709
2.50M
                _page.offset_in_page += this_run;
2710
                _current_ordinal += this_run;
2711
            }
2712
795k
        } else {
2713
795k
            RETURN_IF_ERROR(_page.data_decoder->next_batch(&nrows_to_read, dst));
2714
0
            DCHECK_EQ(nrows_to_read, nrows_in_page);
2715
0
2716
0
            _page.offset_in_page += nrows_to_read;
2717
0
            _current_ordinal += nrows_to_read;
2718
        }
2719
795k
        remaining -= nrows_in_page;
2720
    }
2721
795k
    *n -= remaining;
2722
22
    _opts.stats->bytes_read += (dst->byte_size() - curr_size) + BitmapSize(*n);
2723
22
2724
#ifdef BE_TEST
2725
22
    _reader->check_data_by_zone_map_for_test(dst);
2726
22
#endif
2727
22
    return Status::OK();
2728
22
}
2729
22
2730
Status FileColumnIterator::read_by_rowids(const rowid_t* rowids, const size_t count,
2731
22
                                          MutableColumnPtr& dst) {
2732
22
    if (!need_to_read()) {
2733
22
        DLOG(INFO) << "File column iterator column " << _column_name << " skip reading.";
2734
45
        _convert_to_place_holder_column(dst, count);
2735
23
        return Status::OK();
2736
    }
2737
23
2738
    _recovery_from_place_holder_column(dst);
2739
23
2740
5
    if (read_null_map_only()) {
2741
10
        DLOG(INFO) << "File column iterator column " << _column_name
2742
5
                   << " in NULL_MAP_ONLY mode, reading only null map by rowids.";
2743
5
2744
5
        DORIS_CHECK(is_column_nullable(*dst));
2745
0
        auto& nullable_col = assert_cast<ColumnNullable&>(*dst);
2746
0
        auto& null_map_data = nullable_col.get_null_map_data();
2747
5
        const size_t base_size = null_map_data.size();
2748
        null_map_data.resize(base_size + count);
2749
5
2750
5
        size_t remaining = count;
2751
5
        size_t total_read_count = 0;
2752
5
        size_t nrows_to_read = 0;
2753
10
        while (remaining > 0) {
2754
5
            RETURN_IF_ERROR(seek_to_ordinal(rowids[total_read_count]));
2755
0
2756
0
            nrows_to_read = std::min(remaining, _page.remaining());
2757
5
2758
5
            if (_page.has_null) {
2759
                size_t already_read = 0;
2760
5
                while ((nrows_to_read - already_read) > 0) {
2761
5
                    bool is_null = false;
2762
5
                    size_t this_run = std::min(nrows_to_read - already_read, _page.remaining());
2763
5
                    if (UNLIKELY(this_run == 0)) {
2764
                        break;
2765
5
                    }
2766
5
                    this_run = _page.null_decoder.GetNextRun(&is_null, this_run);
2767
5
2768
                    size_t offset = total_read_count + already_read;
2769
5
                    size_t this_read_count = 0;
2770
5
                    rowid_t current_ordinal_in_page =
2771
5
                            cast_set<uint32_t>(_page.offset_in_page + _page.first_ordinal);
2772
18
                    for (size_t i = 0; i < this_run; ++i) {
2773
18
                        if (rowids[offset + i] - current_ordinal_in_page >= this_run) {
2774
18
                            break;
2775
18
                        }
2776
36
                        this_read_count++;
2777
19
                    }
2778
1
2779
1
                    if (this_read_count > 0) {
2780
18
                        memset(null_map_data.data() + base_size + offset, is_null ? 1 : 0,
2781
18
                               this_read_count);
2782
18
                    }
2783
18
2784
18
                    already_read += this_read_count;
2785
18
                    _page.offset_in_page += this_run;
2786
18
                }
2787
18
2788
18
                nrows_to_read = already_read;
2789
23
                total_read_count += nrows_to_read;
2790
                remaining -= nrows_to_read;
2791
22
            } else {
2792
22
                rowid_t current_ordinal_in_page =
2793
22
                        cast_set<uint32_t>(_page.offset_in_page + _page.first_ordinal);
2794
22
                size_t rows_in_current_page = 0;
2795
                for (size_t i = 0; i < nrows_to_read; ++i) {
2796
795k
                    if (rowids[total_read_count + i] - current_ordinal_in_page >= nrows_to_read) {
2797
795k
                        break;
2798
795k
                    }
2799
1.61M
                    ++rows_in_current_page;
2800
823k
                }
2801
                DCHECK_GT(rows_in_current_page, 0);
2802
                memset(null_map_data.data() + base_size + total_read_count, 0,
2803
823k
                       rows_in_current_page);
2804
                _page.offset_in_page += rows_in_current_page;
2805
823k
                total_read_count += rows_in_current_page;
2806
61.9k
                remaining -= rows_in_current_page;
2807
3.25M
            }
2808
3.19M
        }
2809
3.19M
2810
3.19M
        null_map_data.resize(base_size + total_read_count);
2811
206
        nullable_col.get_nested_column().insert_many_defaults(total_read_count);
2812
206
        return Status::OK();
2813
3.19M
    }
2814
3.19M
2815
3.19M
    size_t remaining = count;
2816
3.19M
    size_t total_read_count = 0;
2817
3.19M
    size_t nrows_to_read = 0;
2818
6.26M
    while (remaining > 0) {
2819
6.17M
        RETURN_IF_ERROR(seek_to_ordinal(rowids[total_read_count]));
2820
3.09M
2821
3.09M
        // number of rows to be read from this page
2822
3.07M
        nrows_to_read = std::min(remaining, _page.remaining());
2823
3.07M
2824
        if (_page.has_null) {
2825
3.19M
            size_t already_read = 0;
2826
3.19M
            while ((nrows_to_read - already_read) > 0) {
2827
103k
                bool is_null = false;
2828
69.6k
                size_t this_run = std::min(nrows_to_read - already_read, _page.remaining());
2829
69.6k
                if (UNLIKELY(this_run == 0)) {
2830
0
                    break;
2831
0
                }
2832
                this_run = _page.null_decoder.GetNextRun(&is_null, this_run);
2833
69.6k
                size_t offset = total_read_count + already_read;
2834
69.6k
                size_t this_read_count = 0;
2835
33.4k
                rowid_t current_ordinal_in_page =
2836
                        cast_set<uint32_t>(_page.offset_in_page + _page.first_ordinal);
2837
                for (size_t i = 0; i < this_run; ++i) {
2838
                    if (rowids[offset + i] - current_ordinal_in_page >= this_run) {
2839
33.4k
                        break;
2840
33.4k
                    }
2841
33.4k
                    this_read_count++;
2842
33.4k
                }
2843
33.4k
2844
33.4k
                auto origin_index = _page.data_decoder->current_index();
2845
103k
                if (this_read_count > 0) {
2846
                    if (is_null) {
2847
3.19M
                        auto* null_col = check_and_get_column<ColumnNullable>(dst.get());
2848
3.11M
                        if (UNLIKELY(null_col == nullptr)) {
2849
3.11M
                            return Status::InternalError("unexpected column type in column reader");
2850
3.11M
                        }
2851
2852
3.19M
                        null_col->insert_many_defaults(this_read_count);
2853
3.19M
                    } else {
2854
3.19M
                        size_t read_count = this_read_count;
2855
3.19M
2856
                        // ordinal in nullable columns' data buffer maybe be not continuously(the data doesn't contain null value),
2857
61.9k
                        // so we need use `page_start_off_in_decoder` to calculate the actual offset in `data_decoder`
2858
61.9k
                        size_t page_start_off_in_decoder =
2859
61.9k
                                _page.first_ordinal + _page.offset_in_page - origin_index;
2860
761k
                        RETURN_IF_ERROR(_page.data_decoder->read_by_rowids(
2861
761k
                                &rowids[offset], page_start_off_in_decoder, &read_count, dst));
2862
761k
                        DCHECK_EQ(read_count, this_read_count);
2863
761k
                    }
2864
761k
                }
2865
761k
2866
823k
                if (!is_null) {
2867
795k
                    RETURN_IF_ERROR(
2868
795k
                            _page.data_decoder->seek_to_position_in_page(origin_index + this_run));
2869
                }
2870
50.3k
2871
50.3k
                already_read += this_read_count;
2872
50.3k
                _page.offset_in_page += this_run;
2873
0
                DCHECK(_page.offset_in_page <= _page.num_rows);
2874
0
            }
2875
0
2876
            nrows_to_read = already_read;
2877
50.3k
            total_read_count += nrows_to_read;
2878
50.3k
            remaining -= nrows_to_read;
2879
50.3k
        } else {
2880
50.3k
            RETURN_IF_ERROR(_page.data_decoder->read_by_rowids(
2881
50.3k
                    &rowids[total_read_count], _page.first_ordinal, &nrows_to_read, dst));
2882
            total_read_count += nrows_to_read;
2883
1.67M
            remaining -= nrows_to_read;
2884
1.67M
        }
2885
1.67M
    }
2886
1.67M
    return Status::OK();
2887
1.67M
}
2888
1.67M
2889
1.67M
Status FileColumnIterator::_load_next_page(bool* eos) {
2890
1.67M
    _page_iter.next();
2891
1.67M
    if (!_page_iter.valid()) {
2892
        *eos = true;
2893
1.67M
        return Status::OK();
2894
1.67M
    }
2895
1.67M
2896
1.67M
    RETURN_IF_ERROR(_read_data_page(_page_iter));
2897
0
    RETURN_IF_ERROR(_seek_to_pos_in_page(&_page, 0));
2898
0
    *eos = false;
2899
0
    return Status::OK();
2900
0
}
2901
0
2902
Status FileColumnIterator::_read_data_page(const OrdinalPageIndexIterator& iter) {
2903
    PageHandle handle;
2904
    Slice page_body;
2905
    PageFooterPB footer;
2906
    _opts.type = DATA_PAGE;
2907
    PageDecoderOptions decoder_opts;
2908
1.67M
    decoder_opts.only_read_offsets = _opts.only_read_offsets;
2909
434k
    RETURN_IF_ERROR(
2910
434k
            _reader->read_page(_opts, iter.page(), &handle, &page_body, &footer, _compress_codec));
2911
419k
    // parse data page
2912
413k
    auto st = ParsedPage::create(std::move(handle), page_body, footer.data_page_footer(),
2913
413k
                                 _reader->encoding_info(), iter.page(), iter.page_index(), &_page,
2914
413k
                                 decoder_opts);
2915
    if (!st.ok()) {
2916
419k
        LOG(WARNING) << "failed to create ParsedPage, file=" << _opts.file_reader->path().native()
2917
419k
                     << ", page_offset=" << iter.page().offset << ", page_size=" << iter.page().size
2918
419k
                     << ", page_index=" << iter.page_index() << ", error=" << st;
2919
434k
        return st;
2920
1.67M
    }
2921
1.67M
2922
    // dictionary page is read when the first data page that uses it is read,
2923
413k
    // this is to optimize the memory usage: when there is no query on one column, we could
2924
413k
    // release the memory of dictionary page.
2925
    // note that concurrent iterators for the same column won't repeatedly read dictionary page
2926
413k
    // because of page cache.
2927
413k
    if (_reader->encoding_info()->encoding() == DICT_ENCODING) {
2928
413k
        auto dict_page_decoder = reinterpret_cast<BinaryDictPageDecoder*>(_page.data_decoder.get());
2929
        if (dict_page_decoder->is_dict_encoding()) {
2930
413k
            if (_dict_decoder == nullptr) {
2931
413k
                RETURN_IF_ERROR(_read_dict_data());
2932
413k
                CHECK_NOTNULL(_dict_decoder);
2933
            }
2934
2935
            dict_page_decoder->set_dict_decoder(cast_set<uint32_t>(_dict_decoder->count()),
2936
413k
                                                _dict_word_info.get());
2937
413k
        }
2938
413k
    }
2939
413k
    return Status::OK();
2940
}
2941
413k
2942
413k
Status FileColumnIterator::_read_dict_data() {
2943
413k
    CHECK_EQ(_reader->encoding_info()->encoding(), DICT_ENCODING);
2944
413k
    // read dictionary page
2945
    Slice dict_data;
2946
    PageFooterPB dict_footer;
2947
    _opts.type = INDEX_PAGE;
2948
2949
135k
    RETURN_IF_ERROR(_reader->read_page(_opts, _reader->get_dict_page_pointer(), &_dict_page_handle,
2950
135k
                                       &dict_data, &dict_footer, _compress_codec));
2951
134k
    const EncodingInfo* encoding_info;
2952
134k
    // The dict pool stores strings of the outer column's type. Using the
2953
134k
    // outer type (CHAR vs VARCHAR/STRING) lets the EncodingInfo pick a
2954
135k
    // CHAR-strip pre-decoder so the cached dict page is already unpadded.
2955
135k
    RETURN_IF_ERROR(EncodingInfo::get(_reader->get_meta_type(),
2956
                                      dict_footer.dict_page_footer().encoding(), &encoding_info));
2957
    RETURN_IF_ERROR(encoding_info->create_page_decoder(dict_data, {}, _dict_decoder));
2958
135k
    RETURN_IF_ERROR(_dict_decoder->init());
2959
135k
2960
135k
    _dict_word_info.reset(new StringRef[_dict_decoder->count()]);
2961
108
    RETURN_IF_ERROR(_dict_decoder->get_dict_word_info(_dict_word_info.get()));
2962
108
    return Status::OK();
2963
135k
}
2964
135k
2965
Status FileColumnIterator::get_row_ranges_by_zone_map(
2966
        const AndBlockColumnPredicate* col_predicates,
2967
137k
        const std::vector<std::shared_ptr<const ColumnPredicate>>* delete_predicates,
2968
137k
        RowRanges* row_ranges) {
2969
125k
    if (_reader->has_zone_map()) {
2970
125k
        RETURN_IF_ERROR(_reader->get_row_ranges_by_zone_map(col_predicates, delete_predicates,
2971
                                                            row_ranges, _opts));
2972
11.5k
    }
2973
36
    return Status::OK();
2974
36
}
2975
36
2976
Status FileColumnIterator::get_row_ranges_by_bloom_filter(
2977
11.5k
        const AndBlockColumnPredicate* col_predicates, RowRanges* row_ranges) {
2978
1.10k
    if ((col_predicates->can_do_bloom_filter(false) && _reader->has_bloom_filter_index(false)) ||
2979
1.10k
        (col_predicates->can_do_bloom_filter(true) && _reader->has_bloom_filter_index(true))) {
2980
11.5k
        RETURN_IF_ERROR(_reader->get_row_ranges_by_bloom_filter(col_predicates, row_ranges, _opts));
2981
11.5k
    }
2982
    return Status::OK();
2983
1.25M
}
2984
1.25M
2985
1.25M
Status FileColumnIterator::get_row_ranges_by_dict(const AndBlockColumnPredicate* col_predicates,
2986
1.25M
                                                  RowRanges* row_ranges) {
2987
0
    if (!_is_all_dict_encoding) {
2988
0
        return Status::OK();
2989
1.25M
    }
2990
1.25M
2991
1.25M
    if (!_dict_decoder) {
2992
1.25M
        RETURN_IF_ERROR(_read_dict_data());
2993
1.25M
        CHECK_NOTNULL(_dict_decoder);
2994
    }
2995
2996
    if (!col_predicates->evaluate_and(_dict_word_info.get(), _dict_decoder->count())) {
2997
1.24M
        row_ranges->clear();
2998
1.24M
    }
2999
1.24M
    return Status::OK();
3000
1.24M
}
3001
1.24M
3002
Status FileColumnIterator::init_prefetcher(const SegmentPrefetchParams& params) {
3003
24.7k
    if (_cached_remote_file_reader =
3004
24.7k
                std::dynamic_pointer_cast<io::CachedRemoteFileReader>(_reader->_file_reader);
3005
        !_cached_remote_file_reader) {
3006
        return Status::OK();
3007
    }
3008
24.7k
    _enable_prefetch = true;
3009
1.57k
    _prefetcher = std::make_unique<SegmentPrefetcher>(params.config);
3010
728
    RETURN_IF_ERROR(_prefetcher->init(_reader, params.read_options));
3011
850
    return Status::OK();
3012
850
}
3013
8
3014
0
void FileColumnIterator::collect_prefetchers(
3015
8
        std::map<PrefetcherInitMethod, std::vector<SegmentPrefetcher*>>& prefetchers,
3016
8
        PrefetcherInitMethod init_method) {
3017
8
    if (_prefetcher) {
3018
8
        prefetchers[init_method].emplace_back(_prefetcher.get());
3019
842
    }
3020
0
}
3021
842
3022
0
Status DefaultValueColumnIterator::init(const ColumnIteratorOptions& opts) {
3023
0
    _opts = opts;
3024
842
    // be consistent with segment v1
3025
842
    // if _has_default_value, we should create default column iterator for this column, and
3026
842
    // "NULL" is a special default value which means the default value is null.
3027
842
    if (_has_default_value) {
3028
842
        if (_default_value == "NULL") {
3029
842
            _default_value_field = Field::create_field<TYPE_NULL>(Null {});
3030
23.1k
        } else {
3031
23.1k
            if (_type == FieldType::OLAP_FIELD_TYPE_ARRAY) {
3032
18.4E
                if (_default_value != "[]") {
3033
18.4E
                    return Status::NotSupported("Array default {} is unsupported", _default_value);
3034
18.4E
                } else {
3035
18.4E
                    _default_value_field = Field::create_field<TYPE_ARRAY>(Array {});
3036
24.7k
                    return Status::OK();
3037
24.7k
                }
3038
            } else if (_type == FieldType::OLAP_FIELD_TYPE_STRUCT) {
3039
2.86k
                return Status::NotSupported("STRUCT default type is unsupported");
3040
2.86k
            } else if (_type == FieldType::OLAP_FIELD_TYPE_MAP) {
3041
8
                return Status::NotSupported("MAP default type is unsupported");
3042
8
            }
3043
8
            const auto t = _type;
3044
            const auto serde = DataTypeFactory::instance()
3045
2.86k
                                       .create_data_type(t, _precision, _scale, _len)
3046
2.86k
                                       ->get_serde();
3047
2.86k
            RETURN_IF_ERROR(serde->from_fe_string(_default_value, _default_value_field));
3048
2.86k
        }
3049
2.86k
    } else if (_is_nullable) {
3050
        _default_value_field = Field::create_field<TYPE_NULL>(Null {});
3051
    } else {
3052
7.07k
        return Status::InternalError(
3053
7.07k
                "invalid default value column for no default value and not nullable");
3054
1
    }
3055
1
    return Status::OK();
3056
1
}
3057
3058
7.07k
Status DefaultValueColumnIterator::next_batch(size_t* n, MutableColumnPtr& dst, bool* has_null) {
3059
7.07k
    if (!need_to_read()) {
3060
7.07k
        _convert_to_place_holder_column(dst, *n);
3061
7.07k
        return Status::OK();
3062
    }
3063
9.93k
3064
9.93k
    _recovery_from_place_holder_column(dst);
3065
9.44k
    *has_null = _default_value_field.is_null();
3066
9.44k
    _insert_many_default(dst, *n);
3067
488
    return Status::OK();
3068
488
}
3069
488
3070
9.93k
Status DefaultValueColumnIterator::read_by_rowids(const rowid_t* rowids, const size_t count,
3071
                                                  MutableColumnPtr& dst) {
3072
4.91k
    if (!need_to_read()) {
3073
4.91k
        _convert_to_place_holder_column(dst, count);
3074
        return Status::OK();
3075
12.4M
    }
3076
12.4M
3077
12.4M
    _recovery_from_place_holder_column(dst);
3078
12.4M
    _insert_many_default(dst, count);
3079
12.4M
    return Status::OK();
3080
12.4M
}
3081
4.91k
3082
4.91k
void DefaultValueColumnIterator::_insert_many_default(MutableColumnPtr& dst, size_t n) {
3083
4.91k
    if (_default_value_field.is_null()) {
3084
        dst->insert_many_defaults(n);
3085
    } else {
3086
6.32k
        dst = dst->convert_to_predicate_column_if_dictionary();
3087
6.32k
        dst->insert_duplicate_fields(_default_value_field, n);
3088
    }
3089
13.6M
}
3090
13.6M
3091
13.6M
Status RowIdColumnIteratorV2::next_batch(size_t* n, MutableColumnPtr& dst, bool* has_null) {
3092
13.6M
    auto* string_column = assert_cast<ColumnString*, TypeCheckOnRelease::DISABLE>(dst.get());
3093
13.6M
3094
13.6M
    for (uint32_t i = 0; i < *n; ++i) {
3095
6.32k
        uint32_t row_id = _current_rowid + i;
3096
6.32k
        GlobalRowLoacationV2 location(_version, _backend_id, _file_id, row_id);
3097
        string_column->insert_data(reinterpret_cast<const char*>(&location),
3098
                                   sizeof(GlobalRowLoacationV2));
3099
    }
3100
    _current_rowid += *n;
3101
    return Status::OK();
3102
}
3103
3104
Status RowIdColumnIteratorV2::read_by_rowids(const rowid_t* rowids, const size_t count,
3105
                                             MutableColumnPtr& dst) {
3106
    auto* string_column = assert_cast<ColumnString*>(dst.get());
3107
3108
    for (size_t i = 0; i < count; ++i) {
3109
        uint32_t row_id = rowids[i];
3110
        GlobalRowLoacationV2 location(_version, _backend_id, _file_id, row_id);
3111
        string_column->insert_data(reinterpret_cast<const char*>(&location),
3112
                                   sizeof(GlobalRowLoacationV2));
3113
    }
3114
    return Status::OK();
3115
}
3116
3117
} // namespace doris::segment_v2