Coverage Report

Created: 2026-08-07 00:28

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/storage/segment/segment.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/segment.h"
19
20
#include <crc32c/crc32c.h>
21
#include <gen_cpp/Descriptors_types.h>
22
#include <gen_cpp/PlanNodes_types.h>
23
#include <gen_cpp/olap_file.pb.h>
24
#include <gen_cpp/segment_v2.pb.h>
25
26
#include <algorithm>
27
#include <cstring>
28
#include <memory>
29
#include <set>
30
#include <sstream>
31
#include <utility>
32
33
#include "cloud/config.h"
34
#include "common/config.h"
35
#include "common/exception.h"
36
#include "common/logging.h"
37
#include "common/status.h"
38
#include "core/column/column.h"
39
#include "core/data_type/data_type.h"
40
#include "core/data_type/data_type_factory.hpp"
41
#include "core/data_type/data_type_nullable.h"
42
#include "core/data_type/data_type_variant.h"
43
#include "core/field.h"
44
#include "core/string_ref.h"
45
#include "cpp/sync_point.h"
46
#include "exprs/expr_zonemap_filter.h"
47
#include "exprs/vexpr_context.h"
48
#include "io/cache/block_file_cache.h"
49
#include "io/cache/block_file_cache_factory.h"
50
#include "io/cache/cached_remote_file_reader.h"
51
#include "io/fs/file_reader.h"
52
#include "io/fs/file_system.h"
53
#include "io/io_common.h"
54
#include "runtime/exec_env.h"
55
#include "runtime/query_context.h"
56
#include "runtime/runtime_predicate.h"
57
#include "runtime/runtime_state.h"
58
#include "storage/index/index_file_reader.h"
59
#include "storage/index/indexed_column_reader.h"
60
#include "storage/index/primary_key_index.h"
61
#include "storage/index/short_key_index.h"
62
#include "storage/index/zone_map/zonemap_eval_context.h"
63
#include "storage/iterator/vgeneric_iterators.h"
64
#include "storage/iterators.h"
65
#include "storage/key_coder.h"
66
#include "storage/olap_common.h"
67
#include "storage/predicate/block_column_predicate.h"
68
#include "storage/predicate/column_predicate.h"
69
#include "storage/rowset/rowset_reader_context.h"
70
#include "storage/schema.h"
71
#include "storage/segment/column_meta_accessor.h"
72
#include "storage/segment/column_reader.h"
73
#include "storage/segment/column_reader_cache.h"
74
#include "storage/segment/empty_segment_iterator.h"
75
#include "storage/segment/page_io.h"
76
#include "storage/segment/page_pointer.h"
77
#include "storage/segment/segment_iterator.h"
78
#include "storage/segment/segment_writer.h" // k_segment_magic_length
79
#include "storage/segment/stream_reader.h"
80
#include "storage/segment/variant/variant_column_reader.h"
81
#include "storage/tablet/tablet_schema.h"
82
#include "storage/types.h"
83
#include "storage/utils.h"
84
#include "util/coding.h"
85
#include "util/json/path_in_data.h"
86
#include "util/slice.h" // Slice
87
88
namespace doris::segment_v2 {
89
90
class InvertedIndexIterator;
91
92
namespace {
93
94
Status build_segment_zonemap_context(Segment* segment, const Schema& schema,
95
                                     const StorageReadOptions& read_options,
96
22
                                     const VExprContextSPtrs& conjuncts, ZoneMapEvalContext* ctx) {
97
22
    DORIS_CHECK(segment != nullptr);
98
22
    DORIS_CHECK(ctx != nullptr);
99
22
    std::set<int> slot_indexes;
100
22
    for (const auto& conjunct : conjuncts) {
101
22
        DORIS_CHECK(conjunct != nullptr);
102
22
        const auto& root = conjunct->root();
103
22
        DORIS_CHECK(root != nullptr);
104
22
        if (!root->can_evaluate_zonemap_filter()) {
105
10
            continue;
106
10
        }
107
        // Segment zone maps have one min/max/null summary per column for the whole segment, so a
108
        // segment-level context can safely hold every slot referenced by a compound expression.
109
        // Page zone maps are page-aligned per column and still use single-slot filtering in
110
        // SegmentIterator.
111
12
        root->collect_slot_column_ids(slot_indexes);
112
12
    }
113
22
    for (const int slot_index : slot_indexes) {
114
12
        if (slot_index < 0 || cast_set<size_t>(slot_index) >= schema.num_column_ids()) {
115
0
            continue;
116
0
        }
117
12
        const auto column_id = schema.column_id(cast_set<size_t>(slot_index));
118
12
        const auto* tablet_column = schema.column(column_id);
119
12
        DORIS_CHECK(tablet_column != nullptr);
120
12
        if (!segment->can_apply_predicate_safely(
121
12
                    column_id, schema, read_options.target_cast_type_for_variants, read_options)) {
122
0
            continue;
123
0
        }
124
12
        auto data_type = segment->get_data_type_of(*tablet_column, read_options);
125
12
        if (data_type == nullptr) {
126
0
            continue;
127
0
        }
128
12
        ZoneMapEvalContext::SlotZoneMap slot_zone_map;
129
12
        slot_zone_map.data_type = data_type;
130
12
        std::shared_ptr<ColumnReader> reader;
131
12
        Status st = segment->get_column_reader(*tablet_column, &reader, read_options.stats,
132
12
                                               &read_options.io_ctx);
133
12
        if (st.is<ErrorCode::NOT_FOUND>()) {
134
4
            ctx->slots.emplace(slot_index, std::move(slot_zone_map));
135
4
            continue;
136
4
        }
137
8
        RETURN_IF_ERROR(st);
138
8
        if (reader != nullptr && reader->has_zone_map()) {
139
8
            ZoneMap zone_map;
140
8
            RETURN_IF_ERROR(reader->get_segment_zone_map(&zone_map));
141
8
            slot_zone_map.zone_map = std::make_shared<ZoneMap>(std::move(zone_map));
142
8
        }
143
8
        ctx->slots.emplace(slot_index, std::move(slot_zone_map));
144
8
    }
145
22
    return Status::OK();
146
22
}
147
148
9.38k
void fill_missing_decimal_precision(const TabletColumn& column, ColumnMetaPB* meta) {
149
9.38k
    auto meta_type = static_cast<FieldType>(meta->type());
150
9.38k
    if (meta_type != column.type()) {
151
0
        return;
152
0
    }
153
154
9.38k
    if (field_is_decimal_type(meta_type)) {
155
189
        if ((!meta->has_precision() || meta->precision() <= 0) && column.precision() > 0) {
156
4
            meta->set_precision(column.precision());
157
4
        }
158
189
        if ((!meta->has_frac() || meta->frac() < 0) && column.frac() >= 0) {
159
4
            meta->set_frac(column.frac());
160
4
        }
161
189
    }
162
163
    // Complex column meta may also include storage helper children, such as
164
    // array offsets. Only schema children have matching TabletColumn subtypes.
165
9.38k
    int child_count =
166
9.38k
            std::min(meta->children_columns_size(), static_cast<int>(column.get_subtype_count()));
167
9.40k
    for (int i = 0; i < child_count; ++i) {
168
16
        fill_missing_decimal_precision(column.get_sub_column(i), meta->mutable_children_columns(i));
169
16
    }
170
9.38k
}
171
172
void fill_missing_decimal_precision_from_schema(const TabletSchemaSPtr& tablet_schema,
173
9.97k
                                                ColumnMetaPB* meta) {
174
9.97k
    if (!meta->has_unique_id()) {
175
0
        return;
176
0
    }
177
9.97k
    int32_t col_idx = tablet_schema->field_index(static_cast<int32_t>(meta->unique_id()));
178
9.97k
    if (col_idx < 0) {
179
610
        return;
180
610
    }
181
9.36k
    fill_missing_decimal_precision(tablet_schema->column(col_idx), meta);
182
9.36k
}
183
184
void fill_footer_missing_decimal_precision(const TabletSchemaSPtr& tablet_schema,
185
2.90k
                                           SegmentFooterPB* footer) {
186
12.8k
    for (int i = 0; i < footer->columns_size(); ++i) {
187
9.97k
        fill_missing_decimal_precision_from_schema(tablet_schema, footer->mutable_columns(i));
188
9.97k
    }
189
2.90k
}
190
191
7.14k
io::IOContext create_index_io_context(const io::IOContext* source, OlapReaderStatistics* stats) {
192
7.14k
    io::IOContext io_ctx;
193
7.14k
    if (source != nullptr) {
194
6.47k
        io_ctx = *source;
195
6.47k
    }
196
7.14k
    io_ctx.is_index_data = true;
197
7.14k
    io_ctx.is_inverted_index = false;
198
7.14k
    io_ctx.file_cache_stats = stats ? &stats->file_cache_stats : nullptr;
199
7.14k
    return io_ctx;
200
7.14k
}
201
} // namespace
202
203
Status Segment::open(io::FileSystemSPtr fs, const std::string& path, int64_t tablet_id,
204
                     uint32_t segment_id, RowsetId rowset_id, TabletSchemaSPtr tablet_schema,
205
                     const io::FileReaderOptions& reader_options, std::shared_ptr<Segment>* output,
206
                     InvertedIndexFileInfo idx_file_info, OlapReaderStatistics* stats,
207
5.33k
                     const io::IOContext* source_io_ctx) {
208
    // Ensure tablet_id is available in reader_options for CachedRemoteFileReader peer read.
209
5.33k
    io::FileReaderOptions opts_with_tablet = reader_options;
210
5.33k
    opts_with_tablet.tablet_id = tablet_id;
211
212
5.33k
    auto s = _open(fs, path, segment_id, rowset_id, tablet_schema, opts_with_tablet, output,
213
5.33k
                   idx_file_info, stats, source_io_ctx);
214
5.33k
    if (s.ok() && output && *output) {
215
5.33k
        (*output)->_tablet_id = tablet_id;
216
5.33k
    }
217
5.33k
    if (!s.ok()) {
218
5
        if (!config::is_cloud_mode()) {
219
5
            auto res = ExecEnv::get_tablet(tablet_id);
220
5
            TabletSharedPtr tablet =
221
5
                    res.has_value() ? std::dynamic_pointer_cast<Tablet>(res.value()) : nullptr;
222
5
            if (tablet) {
223
0
                tablet->report_error(s);
224
0
            }
225
5
        }
226
5
    }
227
228
5.33k
    return s;
229
5.33k
}
230
231
Status Segment::_open(io::FileSystemSPtr fs, const std::string& path, uint32_t segment_id,
232
                      RowsetId rowset_id, TabletSchemaSPtr tablet_schema,
233
                      const io::FileReaderOptions& reader_options, std::shared_ptr<Segment>* output,
234
                      InvertedIndexFileInfo idx_file_info, OlapReaderStatistics* stats,
235
5.33k
                      const io::IOContext* source_io_ctx) {
236
5.33k
    io::FileReaderSPtr file_reader;
237
5.33k
    auto st = fs->open_file(path, &file_reader, &reader_options);
238
5.33k
    TEST_INJECTION_POINT_CALLBACK("Segment::open:corruption", &st);
239
5.33k
    std::shared_ptr<Segment> segment(
240
5.33k
            new Segment(segment_id, rowset_id, std::move(tablet_schema), idx_file_info));
241
5.33k
    segment->_seg_path = path;
242
5.33k
    if (st) {
243
5.33k
        segment->_fs = fs;
244
5.33k
        segment->_file_reader = std::move(file_reader);
245
5.33k
        st = segment->_open(stats, source_io_ctx);
246
5.33k
    }
247
248
    // Three-tier retry for CORRUPTION errors when file cache is enabled.
249
    // This handles CORRUPTION from both open_file() and _parse_footer() (via _open()).
250
5.33k
    if (st.is<ErrorCode::CORRUPTION>() &&
251
5.33k
        reader_options.cache_type == io::FileCachePolicy::FILE_BLOCK_CACHE) {
252
        // Tier 1: Clear file cache and retry with cache support (re-downloads from remote).
253
2
        LOG(WARNING) << "bad segment file may be read from file cache, try to read remote source "
254
2
                        "file directly, file path: "
255
2
                     << path << " cache_key: " << file_cache_key_str(path);
256
2
        auto file_key = file_cache_key_from_path(path);
257
2
        auto* file_cache = io::FileCacheFactory::instance()->get_by_path(file_key);
258
2
        file_cache->remove_if_cached(file_key);
259
260
2
        st = fs->open_file(path, &file_reader, &reader_options);
261
2
        if (st) {
262
2
            segment->_fs = fs;
263
2
            segment->_file_reader = std::move(file_reader);
264
2
            st = segment->_open(stats, source_io_ctx);
265
2
        }
266
2
        TEST_INJECTION_POINT_CALLBACK("Segment::open:corruption1", &st);
267
2
        if (st.is<ErrorCode::CORRUPTION>()) { // corrupt again
268
            // Tier 2: Bypass cache entirely and read directly from remote storage.
269
0
            LOG(WARNING) << "failed to try to read remote source file again with cache support,"
270
0
                         << " try to read from remote directly, "
271
0
                         << " file path: " << path << " cache_key: " << file_cache_key_str(path);
272
0
            file_cache = io::FileCacheFactory::instance()->get_by_path(file_key);
273
0
            file_cache->remove_if_cached(file_key);
274
275
0
            io::FileReaderOptions opt = reader_options;
276
0
            opt.cache_type = io::FileCachePolicy::NO_CACHE; // skip cache
277
0
            RETURN_IF_ERROR(fs->open_file(path, &file_reader, &opt));
278
0
            segment->_fs = fs;
279
0
            segment->_file_reader = std::move(file_reader);
280
0
            st = segment->_open(stats, source_io_ctx);
281
0
            if (!st.ok()) {
282
                // Tier 3: Remote source itself is corrupt.
283
0
                LOG(WARNING) << "failed to try to read remote source file directly,"
284
0
                             << " file path: " << path
285
0
                             << " cache_key: " << file_cache_key_str(path);
286
0
            }
287
0
        }
288
2
    }
289
5.33k
    RETURN_IF_ERROR(st);
290
5.33k
    DCHECK(segment->_fs != nullptr) << "file system is nullptr after segment open";
291
5.33k
    *output = std::move(segment);
292
5.33k
    return Status::OK();
293
5.33k
}
294
295
Segment::Segment(uint32_t segment_id, RowsetId rowset_id, TabletSchemaSPtr tablet_schema,
296
                 InvertedIndexFileInfo idx_file_info)
297
5.35k
        : _segment_id(segment_id),
298
5.35k
          _meta_mem_usage(0),
299
5.35k
          _rowset_id(rowset_id),
300
5.35k
          _tablet_schema(std::move(tablet_schema)),
301
5.35k
          _idx_file_info(std::move(idx_file_info)) {}
302
303
5.35k
Segment::~Segment() {
304
5.35k
    g_segment_estimate_mem_bytes << -_tracked_meta_mem_usage;
305
    // if failed, fix `_tracked_meta_mem_usage` accuracy
306
5.35k
    DCHECK(_tracked_meta_mem_usage == meta_mem_usage());
307
5.35k
}
308
309
0
io::UInt128Wrapper Segment::file_cache_key(std::string_view rowset_id, uint32_t seg_id) {
310
0
    return io::BlockFileCache::hash(fmt::format("{}_{}.dat", rowset_id, seg_id));
311
0
}
312
313
5.33k
int64_t Segment::get_metadata_size() const {
314
5.33k
    std::shared_ptr<SegmentFooterPB> footer_pb_shared = _footer_pb.lock();
315
5.33k
    return sizeof(Segment) + (_pk_index_meta ? _pk_index_meta->ByteSizeLong() : 0) +
316
5.33k
           (footer_pb_shared ? footer_pb_shared->ByteSizeLong() : 0);
317
5.33k
}
318
319
5.33k
void Segment::update_metadata_size() {
320
5.33k
    MetadataAdder::update_metadata_size();
321
5.33k
    g_segment_estimate_mem_bytes << _meta_mem_usage - _tracked_meta_mem_usage;
322
5.33k
    _tracked_meta_mem_usage = _meta_mem_usage;
323
5.33k
}
324
325
5.33k
Status Segment::_open(OlapReaderStatistics* stats, const io::IOContext* source_io_ctx) {
326
5.33k
    std::shared_ptr<SegmentFooterPB> footer_pb_shared;
327
5.33k
    RETURN_IF_ERROR(_get_segment_footer(footer_pb_shared, stats, source_io_ctx));
328
329
5.33k
    _pk_index_meta.reset(
330
5.33k
            footer_pb_shared->has_primary_key_index_meta()
331
5.33k
                    ? new PrimaryKeyIndexMetaPB(footer_pb_shared->primary_key_index_meta())
332
5.33k
                    : nullptr);
333
    // delete_bitmap_calculator_test.cpp
334
    // DCHECK(footer.has_short_key_index_page());
335
5.33k
    _sk_index_page = footer_pb_shared->short_key_index_page();
336
5.33k
    _num_rows = footer_pb_shared->num_rows();
337
338
    // An estimated memory usage of a segment
339
    // Footer is seperated to StoragePageCache so we don't need to add it to _meta_mem_usage
340
    // _meta_mem_usage += footer_pb_shared->ByteSizeLong();
341
5.33k
    if (_pk_index_meta != nullptr) {
342
312
        _meta_mem_usage += _pk_index_meta->ByteSizeLong();
343
312
    }
344
345
5.33k
    _meta_mem_usage += sizeof(*this);
346
5.33k
    _meta_mem_usage += std::min(static_cast<int>(_tablet_schema->num_columns()),
347
5.33k
                                config::max_segment_partial_column_cache_size) *
348
5.33k
                       config::estimated_mem_per_column_reader;
349
350
    // 1024 comes from SegmentWriterOptions
351
5.33k
    _meta_mem_usage += (_num_rows + 1023) / 1024 * (36 + 4);
352
    // 0.01 comes from PrimaryKeyIndexBuilder::init
353
5.33k
    _meta_mem_usage += BloomFilter::optimal_bit_num(_num_rows, 0.01) / 8;
354
355
5.33k
    update_metadata_size();
356
357
5.33k
    return Status::OK();
358
5.33k
}
359
360
743
Status Segment::_open_index_file_reader() {
361
    // Derive the index path from `_seg_path`, not `_file_reader->path()`: remote FS normalizes the
362
    // latter to an absolute path that won't match the relative keys in PackedFileSystem's index map.
363
743
    _index_file_reader = std::make_shared<IndexFileReader>(
364
743
            _fs, std::string {InvertedIndexDescriptor::get_index_file_path_prefix(_seg_path)},
365
743
            _tablet_schema->get_inverted_index_storage_format(), _idx_file_info, _tablet_id);
366
743
    return Status::OK();
367
743
}
368
369
bool Segment::is_tso_placeholder_col(int cid, const Schema& schema,
370
136
                                     const StorageReadOptions& read_options) const {
371
136
    if (read_options.version.first != read_options.version.second) {
372
20
        return false;
373
20
    }
374
116
    if (!read_options.read_row_binlog) {
375
116
        return false;
376
116
    }
377
    // tso_col_idx() is -1 for non-binlog schemas, so this returns false there.
378
0
    return cid == schema.tso_col_idx();
379
116
}
380
381
Status Segment::new_iterator(SchemaSPtr schema, const StorageReadOptions& read_options,
382
4.33k
                             std::unique_ptr<RowwiseIterator>* iter) {
383
4.33k
    if (read_options.runtime_state != nullptr) {
384
117
        _be_exec_version = read_options.runtime_state->be_exec_version();
385
117
    }
386
4.33k
    RETURN_IF_ERROR(_create_column_meta_once(read_options.stats, &read_options.io_ctx));
387
388
4.33k
    read_options.stats->total_segment_number++;
389
    // trying to prune the current segment by segment-level zone map
390
4.33k
    for (const auto& entry : read_options.col_id_to_predicates) {
391
72
        int32_t column_id = entry.first;
392
        // schema change
393
72
        if (_tablet_schema->num_columns() <= column_id) {
394
0
            continue;
395
0
        }
396
72
        const TabletColumn& col = read_options.tablet_schema->column(column_id);
397
72
        std::shared_ptr<ColumnReader> reader;
398
        // __DORIS_COMMIT_TSO_COL__ on a single-version segment stores a 0 placeholder on disk
399
        // (replaced with the rowset's real commit_tso at read time). Its on-disk zonemap [0,0]
400
        // must not drive segment-level pruning, so build a ConstantColumnReader carrying the real
401
        // commit_tso to prune against the real value instead.
402
72
        std::optional<Field> const_value;
403
72
        if (read_options.version.first == read_options.version.second &&
404
72
            column_id == schema->commit_tso_col_idx() && read_options.commit_tso.end_tso() != -1) {
405
1
            const_value = Field::create_field<TYPE_BIGINT>(read_options.commit_tso.end_tso());
406
1
        }
407
72
        Status st = get_column_reader(col, &reader, read_options.stats, &read_options.io_ctx,
408
72
                                      std::move(const_value));
409
        // not found in this segment, skip
410
72
        if (st.is<ErrorCode::NOT_FOUND>()) {
411
0
            continue;
412
0
        }
413
72
        RETURN_IF_ERROR(st);
414
        // should be OK
415
72
        DCHECK(reader != nullptr);
416
72
        if (!reader->has_zone_map()) {
417
0
            continue;
418
0
        }
419
        // Placeholder tso column on a single-version binlog segment: its zonemap reflects the
420
        // NULL placeholder (replaced with commit_tso at read time), so skip pruning by
421
        // zonemap (min == max == commit_tso) and reuse the predicate's own zonemap matching:
422
        // evaluate_and() returns false iff no value in [min, max] can satisfy the predicates,
423
        // i.e. commit_tso fails them and the whole segment can be pruned. Predicates that don't
424
        // support zonemap return true (conservative: not pruned, row-level eval handles them).
425
72
        if (read_options.col_id_to_predicates.contains(column_id) &&
426
72
            is_tso_placeholder_col(column_id, *schema, read_options)) {
427
0
            const Int64 commit_tso =
428
0
                    read_options.commit_tso.end_tso() == -1 ? 0 : read_options.commit_tso.end_tso();
429
0
            ZoneMap zone_map;
430
0
            zone_map.min_value = Field::create_field<TYPE_BIGINT>(commit_tso);
431
0
            zone_map.max_value = Field::create_field<TYPE_BIGINT>(commit_tso);
432
0
            zone_map.has_not_null = true;
433
0
            if (!entry.second->evaluate_and(zone_map)) {
434
                // any condition not satisfied, return.
435
0
                *iter = std::make_unique<EmptySegmentIterator>(*schema);
436
0
                read_options.stats->filtered_segment_number++;
437
0
                return Status::OK();
438
0
            }
439
0
            continue;
440
0
        }
441
72
        if (read_options.col_id_to_predicates.contains(column_id) &&
442
72
            can_apply_predicate_safely(column_id, *schema,
443
72
                                       read_options.target_cast_type_for_variants, read_options)) {
444
72
            bool matched = true;
445
72
            RETURN_IF_ERROR(reader->match_condition(entry.second.get(), &matched));
446
72
            if (!matched) {
447
                // any condition not satisfied, return.
448
8
                *iter = std::make_unique<EmptySegmentIterator>(*schema);
449
8
                read_options.stats->filtered_segment_number++;
450
8
                read_options.stats->rows_stats_filtered += num_rows();
451
8
                return Status::OK();
452
8
            }
453
72
        }
454
72
    }
455
456
    // Segment-level expr-zonemap runs before SegmentIterator can rebind storage expressions to
457
    // the reader schema. Only apply it when scan tuple slot ordinals already match this schema.
458
4.33k
    if (expr_zonemap::is_expr_zonemap_filter_enabled(read_options.runtime_state) &&
459
4.33k
        !read_options.common_expr_ctxs_push_down.empty()) {
460
22
        ZoneMapEvalContext ctx;
461
22
        RETURN_IF_ERROR(build_segment_zonemap_context(
462
22
                this, *schema, read_options, read_options.common_expr_ctxs_push_down, &ctx));
463
22
        const auto result =
464
22
                VExprContext::evaluate_zonemap_filter(read_options.common_expr_ctxs_push_down, ctx);
465
22
        ctx.stats.accumulate_to(read_options.stats);
466
22
        if (result == ZoneMapFilterResult::kNoMatch) {
467
1
            *iter = std::make_unique<EmptySegmentIterator>(*schema);
468
1
            read_options.stats->filtered_segment_number++;
469
1
            read_options.stats->expr_zonemap_filtered_segments++;
470
1
            return Status::OK();
471
1
        }
472
22
    }
473
474
4.33k
    {
475
4.33k
        SCOPED_RAW_TIMER(&read_options.stats->segment_load_index_timer_ns);
476
4.33k
        RETURN_IF_ERROR(load_index(read_options.stats, &read_options.io_ctx));
477
4.33k
    }
478
479
4.33k
    if (read_options.delete_condition_predicates->num_of_column_predicate() == 0 &&
480
4.33k
        read_options.push_down_agg_type_opt != TPushAggOp::NONE &&
481
4.33k
        read_options.push_down_agg_type_opt != TPushAggOp::COUNT_ON_INDEX) {
482
0
        iter->reset(new_vstatistics_iterator(this->shared_from_this(), *schema));
483
4.33k
    } else {
484
4.33k
        *iter = std::make_unique<SegmentIterator>(this->shared_from_this(), schema);
485
4.33k
    }
486
487
    // TODO: Valid the opt not only in ReaderType::READER_QUERY
488
4.33k
    if (read_options.io_ctx.reader_type == ReaderType::READER_QUERY &&
489
4.33k
        !read_options.column_predicates.empty()) {
490
64
        auto pruned_predicates = read_options.column_predicates;
491
64
        auto pruned = false;
492
64
        for (auto& it : _column_reader_cache->get_available_readers(false)) {
493
64
            const auto uid = it.first;
494
64
            const auto column_id = read_options.tablet_schema->field_index(uid);
495
64
            bool tmp_pruned = false;
496
64
            RETURN_IF_ERROR(it.second->prune_predicates_by_zone_map(pruned_predicates, column_id,
497
64
                                                                    &tmp_pruned));
498
64
            pruned |= tmp_pruned;
499
64
        }
500
501
64
        if (pruned) {
502
0
            auto options_with_pruned_predicates = read_options;
503
0
            options_with_pruned_predicates.column_predicates = pruned_predicates;
504
            //because column_predicates is changed, we need to rebuild col_id_to_predicates so that inverted index will not go through it.
505
0
            options_with_pruned_predicates.col_id_to_predicates.clear();
506
0
            for (auto pred : options_with_pruned_predicates.column_predicates) {
507
0
                if (!options_with_pruned_predicates.col_id_to_predicates.contains(
508
0
                            pred->column_id())) {
509
0
                    options_with_pruned_predicates.col_id_to_predicates.insert(
510
0
                            {pred->column_id(), AndBlockColumnPredicate::create_shared()});
511
0
                }
512
0
                options_with_pruned_predicates.col_id_to_predicates[pred->column_id()]
513
0
                        ->add_column_predicate(SingleColumnBlockPredicate::create_unique(pred));
514
0
            }
515
0
            for (const auto& pred : read_options.column_predicates) {
516
0
                const auto pred_cid = pred->column_id();
517
                // Key columns may still be required by key range seeks even if the segment zone
518
                // map proves their predicates always true. Only mark non-key columns as safe for
519
                // the no-need-read path.
520
0
                if (!read_options.tablet_schema->column(pred_cid).is_key() &&
521
0
                    !options_with_pruned_predicates.col_id_to_predicates.contains(pred_cid)) {
522
0
                    options_with_pruned_predicates.zonemap_always_true_pred_cols.insert(pred_cid);
523
0
                }
524
0
            }
525
0
            return iter->get()->init(options_with_pruned_predicates);
526
0
        }
527
64
    }
528
4.33k
    return iter->get()->init(read_options);
529
4.33k
}
530
531
Status Segment::_write_error_file(size_t file_size, size_t offset, size_t bytes_read, char* data,
532
1
                                  io::IOContext& io_ctx) {
533
1
    if (!config::enbale_dump_error_file || !doris::config::is_cloud_mode()) {
534
1
        return Status::OK();
535
1
    }
536
537
0
    std::string file_name = _rowset_id.to_string() + "_" + std::to_string(_segment_id) + ".dat";
538
0
    std::string dir_path = io::FileCacheFactory::instance()->get_base_paths()[0] + "/error_file/";
539
0
    Status create_st = io::global_local_filesystem()->create_directory(dir_path, true);
540
0
    if (!create_st.ok() && !create_st.is<ErrorCode::ALREADY_EXIST>()) {
541
0
        LOG(WARNING) << "failed to create error file dir: " << create_st.to_string();
542
0
        return create_st;
543
0
    }
544
0
    size_t dir_size = 0;
545
0
    RETURN_IF_ERROR(io::global_local_filesystem()->directory_size(dir_path, &dir_size));
546
0
    if (dir_size > config::file_cache_error_log_limit_bytes) {
547
0
        LOG(WARNING) << "error file dir size is too large: " << dir_size;
548
0
        return Status::OK();
549
0
    }
550
551
0
    std::string error_part;
552
0
    error_part.resize(bytes_read);
553
0
    std::string part_path = dir_path + file_name + ".part_offset_" + std::to_string(offset);
554
0
    LOG(WARNING) << "writer error part to " << part_path;
555
0
    bool is_part_exist = false;
556
0
    RETURN_IF_ERROR(io::global_local_filesystem()->exists(part_path, &is_part_exist));
557
0
    if (is_part_exist) {
558
0
        LOG(WARNING) << "error part already exists: " << part_path;
559
0
    } else {
560
0
        std::unique_ptr<io::FileWriter> part_writer;
561
0
        RETURN_IF_ERROR(io::global_local_filesystem()->create_file(part_path, &part_writer));
562
0
        RETURN_IF_ERROR(part_writer->append(Slice(data, bytes_read)));
563
0
        RETURN_IF_ERROR(part_writer->close());
564
0
    }
565
566
0
    std::string error_file;
567
0
    error_file.resize(file_size);
568
0
    auto* cached_reader = dynamic_cast<io::CachedRemoteFileReader*>(_file_reader.get());
569
0
    if (cached_reader == nullptr) {
570
0
        return Status::InternalError("file reader is not CachedRemoteFileReader");
571
0
    }
572
0
    size_t error_file_bytes_read = 0;
573
0
    RETURN_IF_ERROR(cached_reader->get_remote_reader()->read_at(
574
0
            0, Slice(error_file.data(), file_size), &error_file_bytes_read, &io_ctx));
575
0
    DCHECK(error_file_bytes_read == file_size);
576
    //std::string file_path = dir_path + std::to_string(cur_time) + "_" + ss.str();
577
0
    std::string file_path = dir_path + file_name;
578
0
    LOG(WARNING) << "writer error file to " << file_path;
579
0
    bool is_file_exist = false;
580
0
    RETURN_IF_ERROR(io::global_local_filesystem()->exists(file_path, &is_file_exist));
581
0
    if (is_file_exist) {
582
0
        LOG(WARNING) << "error file already exists: " << part_path;
583
0
    } else {
584
0
        std::unique_ptr<io::FileWriter> writer;
585
0
        RETURN_IF_ERROR(io::global_local_filesystem()->create_file(file_path, &writer));
586
0
        RETURN_IF_ERROR(writer->append(Slice(error_file.data(), file_size)));
587
0
        RETURN_IF_ERROR(writer->close());
588
0
    }
589
0
    return Status::OK(); // already exists
590
0
};
591
592
Status Segment::_parse_footer(std::shared_ptr<SegmentFooterPB>& footer, OlapReaderStatistics* stats,
593
2.90k
                              const io::IOContext* source_io_ctx) {
594
    // Footer := SegmentFooterPB, FooterPBSize(4), FooterPBChecksum(4), MagicNumber(4)
595
2.90k
    auto file_size = _file_reader->size();
596
2.90k
    if (file_size < 12) {
597
0
        return Status::Corruption("Bad segment file {}: file size {} < 12, cache_key: {}",
598
0
                                  _file_reader->path().native(), file_size,
599
0
                                  file_cache_key_str(_file_reader->path().native()));
600
0
    }
601
602
2.90k
    uint8_t fixed_buf[12];
603
2.90k
    size_t bytes_read = 0;
604
2.90k
    auto io_ctx = create_index_io_context(source_io_ctx, stats);
605
2.90k
    TEST_SYNC_POINT_CALLBACK("Segment::_parse_footer::io_ctx", &io_ctx);
606
2.90k
    RETURN_IF_ERROR(
607
2.90k
            _file_reader->read_at(file_size - 12, Slice(fixed_buf, 12), &bytes_read, &io_ctx));
608
2.90k
    DCHECK_EQ(bytes_read, 12);
609
2.90k
    TEST_SYNC_POINT_CALLBACK("Segment::parse_footer:magic_number_corruption", fixed_buf);
610
2.90k
    TEST_INJECTION_POINT_CALLBACK("Segment::parse_footer:magic_number_corruption_inj", fixed_buf);
611
2.90k
    if (memcmp(fixed_buf + 8, k_segment_magic, k_segment_magic_length) != 0) {
612
1
        Status st =
613
1
                _write_error_file(file_size, file_size - 12, bytes_read, (char*)fixed_buf, io_ctx);
614
1
        if (!st.ok()) {
615
0
            LOG(WARNING) << "failed to write error file: " << st.to_string();
616
0
        }
617
1
        return Status::Corruption(
618
1
                "Bad segment file {}: file_size: {}, magic number not match, cache_key: {}",
619
1
                _file_reader->path().native(), file_size,
620
1
                file_cache_key_str(_file_reader->path().native()));
621
1
    }
622
623
    // read footer PB
624
2.90k
    uint32_t footer_length = decode_fixed32_le(fixed_buf);
625
2.90k
    if (file_size < 12 + footer_length) {
626
0
        Status st =
627
0
                _write_error_file(file_size, file_size - 12, bytes_read, (char*)fixed_buf, io_ctx);
628
0
        if (!st.ok()) {
629
0
            LOG(WARNING) << "failed to write error file: " << st.to_string();
630
0
        }
631
0
        return Status::Corruption("Bad segment file {}: file size {} < {}, cache_key: {}",
632
0
                                  _file_reader->path().native(), file_size, 12 + footer_length,
633
0
                                  file_cache_key_str(_file_reader->path().native()));
634
0
    }
635
636
2.90k
    std::string footer_buf;
637
2.90k
    footer_buf.resize(footer_length);
638
2.90k
    RETURN_IF_ERROR(_file_reader->read_at(file_size - 12 - footer_length, footer_buf, &bytes_read,
639
2.90k
                                          &io_ctx));
640
2.90k
    DCHECK_EQ(bytes_read, footer_length);
641
642
    // validate footer PB's checksum
643
2.90k
    uint32_t expect_checksum = decode_fixed32_le(fixed_buf + 4);
644
2.90k
    uint32_t actual_checksum = crc32c::Crc32c(footer_buf.data(), footer_buf.size());
645
2.90k
    if (actual_checksum != expect_checksum) {
646
0
        Status st = _write_error_file(file_size, file_size - 12 - footer_length, bytes_read,
647
0
                                      footer_buf.data(), io_ctx);
648
0
        if (!st.ok()) {
649
0
            LOG(WARNING) << "failed to write error file: " << st.to_string();
650
0
        }
651
0
        return Status::Corruption(
652
0
                "Bad segment file {}: file_size = {}, footer checksum not match, actual={} "
653
0
                "vs expect={}, cache_key: {}",
654
0
                _file_reader->path().native(), file_size, actual_checksum, expect_checksum,
655
0
                file_cache_key_str(_file_reader->path().native()));
656
0
    }
657
658
    // deserialize footer PB
659
2.90k
    footer = std::make_shared<SegmentFooterPB>();
660
2.90k
    if (!footer->ParseFromString(footer_buf)) {
661
0
        Status st = _write_error_file(file_size, file_size - 12 - footer_length, bytes_read,
662
0
                                      footer_buf.data(), io_ctx);
663
0
        if (!st.ok()) {
664
0
            LOG(WARNING) << "failed to write error file: " << st.to_string();
665
0
        }
666
0
        return Status::Corruption(
667
0
                "Bad segment file {}: file_size = {}, failed to parse SegmentFooterPB, "
668
0
                "cache_key: ",
669
0
                _file_reader->path().native(), file_size,
670
0
                file_cache_key_str(_file_reader->path().native()));
671
0
    }
672
    // Segments written before #26572 do not persist decimal precision/frac in
673
    // ColumnMetaPB, so recover the logical p/s from TabletSchema before
674
    // ColumnReader builds DataTypeDecimal.
675
2.90k
    fill_footer_missing_decimal_precision(_tablet_schema, footer.get());
676
677
2.90k
    VLOG_DEBUG << fmt::format("Loading segment footer from {} finished",
678
0
                              _file_reader->path().native());
679
2.90k
    return Status::OK();
680
2.90k
}
681
682
Status Segment::_load_pk_bloom_filter(OlapReaderStatistics* stats,
683
434
                                      const io::IOContext* source_io_ctx) {
684
434
#ifdef BE_TEST
685
434
    if (_pk_index_meta == nullptr) {
686
        // for BE UT "segment_cache_test"
687
2
        return _load_pk_bf_once.call([this] {
688
1
            _meta_mem_usage += 100;
689
1
            update_metadata_size();
690
1
            return Status::OK();
691
1
        });
692
2
    }
693
432
#endif
694
434
    DCHECK(_tablet_schema->keys_type() == UNIQUE_KEYS);
695
432
    DCHECK(_pk_index_meta != nullptr);
696
432
    DCHECK(_pk_index_reader != nullptr);
697
698
432
    return _load_pk_bf_once.call([this, stats, source_io_ctx] {
699
96
        RETURN_IF_ERROR(
700
96
                _pk_index_reader->parse_bf(_file_reader, *_pk_index_meta, stats, source_io_ctx));
701
        // _meta_mem_usage += _pk_index_reader->get_bf_memory_size();
702
96
        return Status::OK();
703
96
    });
704
434
}
705
706
Status Segment::load_pk_index_and_bf(OlapReaderStatistics* index_load_stats,
707
434
                                     const io::IOContext* source_io_ctx) {
708
    // `DorisCallOnce` may catch exception in calling stack A and re-throw it in
709
    // a different calling stack B which doesn't have catch block. So we add catch block here
710
    // to prevent coreudmp
711
434
    RETURN_IF_CATCH_EXCEPTION({
712
434
        RETURN_IF_ERROR(load_index(index_load_stats, source_io_ctx));
713
434
        RETURN_IF_ERROR(_load_pk_bloom_filter(index_load_stats, source_io_ctx));
714
434
    });
715
434
    return Status::OK();
716
434
}
717
718
4.81k
Status Segment::load_index(OlapReaderStatistics* stats, const io::IOContext* source_io_ctx) {
719
4.81k
    return _load_index_once.call([this, stats, source_io_ctx] {
720
4.38k
        if (_tablet_schema->keys_type() == UNIQUE_KEYS && _pk_index_meta != nullptr) {
721
151
            _pk_index_reader = std::make_unique<PrimaryKeyIndexReader>();
722
151
            RETURN_IF_ERROR(_pk_index_reader->parse_index(_file_reader, *_pk_index_meta, stats,
723
151
                                                          source_io_ctx));
724
            // _meta_mem_usage += _pk_index_reader->get_memory_size();
725
151
            return Status::OK();
726
4.23k
        } else {
727
            // read and parse short key index page
728
4.23k
            OlapReaderStatistics tmp_stats;
729
4.23k
            OlapReaderStatistics* stats_ptr = stats != nullptr ? stats : &tmp_stats;
730
4.23k
            auto page_io_ctx = create_index_io_context(source_io_ctx, stats_ptr);
731
4.23k
            PageReadOptions opts(page_io_ctx);
732
4.23k
            opts.use_page_cache = true;
733
4.23k
            opts.type = INDEX_PAGE;
734
4.23k
            opts.file_reader = _file_reader.get();
735
4.23k
            opts.page_pointer = PagePointer(_sk_index_page);
736
            // short key index page uses NO_COMPRESSION for now
737
4.23k
            opts.codec = nullptr;
738
4.23k
            opts.stats = &tmp_stats;
739
740
4.23k
            Slice body;
741
4.23k
            PageFooterPB footer;
742
4.23k
            RETURN_IF_ERROR(
743
4.23k
                    PageIO::read_and_decompress_page(opts, &_sk_index_handle, &body, &footer));
744
4.23k
            DCHECK_EQ(footer.type(), SHORT_KEY_PAGE);
745
4.23k
            DCHECK(footer.has_short_key_page_footer());
746
747
            // _meta_mem_usage += body.get_size();
748
4.23k
            _sk_index_decoder = std::make_unique<ShortKeyIndexDecoder>();
749
4.23k
            return _sk_index_decoder->parse(body, footer.short_key_page_footer());
750
4.23k
        }
751
4.38k
    });
752
4.81k
}
753
754
0
Status Segment::healthy_status() {
755
0
    try {
756
0
        if (_load_index_once.has_called()) {
757
0
            RETURN_IF_ERROR(_load_index_once.stored_result());
758
0
        }
759
0
        if (_load_pk_bf_once.has_called()) {
760
0
            RETURN_IF_ERROR(_load_pk_bf_once.stored_result());
761
0
        }
762
0
        if (_create_column_meta_once_call.has_called()) {
763
0
            RETURN_IF_ERROR(_create_column_meta_once_call.stored_result());
764
0
        }
765
0
        if (_index_file_reader_open.has_called()) {
766
0
            RETURN_IF_ERROR(_index_file_reader_open.stored_result());
767
0
        }
768
        // This status is set by running time, for example, if there is something wrong during read segment iterator.
769
0
        return _healthy_status.status();
770
0
    } catch (const doris::Exception& e) {
771
        // If there is an exception during load_xxx, should not throw exception directly because
772
        // the caller may not exception safe.
773
0
        return e.to_status();
774
0
    } catch (const std::exception& e) {
775
        // The exception is not thrown by doris code.
776
0
        return Status::InternalError("Unexcepted error during load segment: {}", e.what());
777
0
    }
778
0
}
779
780
// Return the storage datatype of related column to field.
781
DataTypePtr Segment::get_data_type_of(const TabletColumn& column,
782
12.0k
                                      const StorageReadOptions& read_options) {
783
12.0k
    const PathInDataPtr path = column.path_info_ptr();
784
785
    // none variant column
786
12.0k
    if (path == nullptr || path->empty()) {
787
11.3k
        return DataTypeFactory::instance().create_data_type(column);
788
11.3k
    }
789
790
    // Path exists, proceed with variant logic.
791
662
    PathInData relative_path = path->copy_pop_front();
792
662
    int32_t unique_id = column.unique_id() >= 0 ? column.unique_id() : column.parent_unique_id();
793
794
    // If this uid does not exist in segment meta, fallback to schema type.
795
662
    if (!_column_meta_accessor->has_column_uid(unique_id)) {
796
0
        return DataTypeFactory::instance().create_data_type(column);
797
0
    }
798
799
662
    std::shared_ptr<ColumnReader> v_reader;
800
662
    OlapReaderStatistics tmp_stats;
801
662
    auto* stats = read_options.stats == nullptr ? &tmp_stats : read_options.stats;
802
803
    // Get the parent variant column reader
804
    // If status is not ok, it will throw exception(data corruption)
805
662
    THROW_IF_ERROR(get_column_reader(unique_id, &v_reader, stats, &read_options.io_ctx));
806
662
    DCHECK(v_reader != nullptr);
807
662
    auto* variant_reader = static_cast<VariantColumnReader*>(v_reader.get());
808
    // Delegate type inference for variant paths to VariantColumnReader.
809
662
    DataTypePtr type;
810
662
    THROW_IF_ERROR(variant_reader->infer_data_type_for_path(&type, column, read_options,
811
662
                                                            _column_reader_cache.get()));
812
662
    return type;
813
662
}
814
815
Status Segment::_create_column_meta_once(OlapReaderStatistics* stats,
816
32.1k
                                         const io::IOContext* source_io_ctx) {
817
32.1k
    SCOPED_RAW_TIMER(&stats->segment_create_column_readers_timer_ns);
818
32.1k
    return _create_column_meta_once_call.call([this, stats, source_io_ctx] {
819
5.06k
        std::shared_ptr<SegmentFooterPB> footer_pb_shared;
820
5.06k
        RETURN_IF_ERROR(_get_segment_footer(footer_pb_shared, stats, source_io_ctx));
821
5.06k
        return _create_column_meta(*footer_pb_shared, stats, source_io_ctx);
822
5.06k
    });
823
32.1k
}
824
825
Status Segment::_create_column_meta(const SegmentFooterPB& footer, OlapReaderStatistics* stats,
826
5.06k
                                    const io::IOContext* source_io_ctx) {
827
    // Initialize column meta accessor which internally maintains uid -> column_ordinal mapping.
828
5.06k
    _column_meta_accessor = std::make_unique<ColumnMetaAccessor>();
829
5.06k
    RETURN_IF_ERROR(_column_meta_accessor->init(footer, _file_reader));
830
831
5.06k
    if (config::enable_adaptive_batch_size) {
832
        // Cache raw_data_bytes per column uid for adaptive batch size prediction.
833
        // This runs under call_once, so no thread-safety concerns.
834
5.06k
        auto st = _column_meta_accessor->traverse_metas(
835
5.06k
                footer,
836
35.2k
                [this](const ColumnMetaPB& meta) {
837
35.2k
                    if (meta.has_unique_id() && meta.unique_id() != -1 &&
838
35.2k
                        meta.has_raw_data_bytes()) {
839
32.2k
                        _column_uid_to_raw_bytes[meta.unique_id()] = meta.raw_data_bytes();
840
32.2k
                    }
841
35.2k
                },
842
5.06k
                stats, source_io_ctx);
843
844
5.06k
        if (!st.ok()) {
845
0
            LOG(WARNING) << "Failed to traverse column metas to cache raw_data_bytes, error: "
846
0
                         << st.to_string();
847
0
        }
848
5.06k
    }
849
850
5.06k
    _column_reader_cache = std::make_unique<ColumnReaderCache>(
851
5.06k
            _column_meta_accessor.get(), _tablet_schema, _file_reader, _num_rows,
852
5.06k
            [this](std::shared_ptr<SegmentFooterPB>& footer_pb, OlapReaderStatistics* stats,
853
11.3k
                   const io::IOContext* io_ctx) {
854
11.3k
                return _get_segment_footer(footer_pb, stats, io_ctx);
855
11.3k
            });
856
5.06k
    return Status::OK();
857
5.06k
}
858
859
Status Segment::new_default_iterator(const TabletColumn& tablet_column,
860
14
                                     std::unique_ptr<ColumnIterator>* iter) {
861
14
    if (!tablet_column.has_default_value() && !tablet_column.is_nullable()) {
862
0
        return Status::InternalError(
863
0
                "invalid nonexistent column without default value. column_uid={}, "
864
0
                "column_name={}, "
865
0
                "column_type={}",
866
0
                tablet_column.unique_id(), tablet_column.name(), tablet_column.type());
867
0
    }
868
14
    std::unique_ptr<DefaultValueColumnIterator> default_value_iter(new DefaultValueColumnIterator(
869
14
            tablet_column.has_default_value(), tablet_column.default_value(),
870
14
            tablet_column.is_nullable(), tablet_column.type(), tablet_column.precision(),
871
14
            tablet_column.frac(), tablet_column.length()));
872
14
    ColumnIteratorOptions iter_opts;
873
874
14
    RETURN_IF_ERROR(default_value_iter->init(iter_opts));
875
14
    *iter = std::move(default_value_iter);
876
14
    return Status::OK();
877
14
}
878
879
// Not use cid anymore, for example original table schema is colA int, then user do following actions
880
// 1.add column b
881
// 2. drop column b
882
// 3. add column c
883
// in the new schema column c's cid == 2
884
// but in the old schema column b's cid == 2
885
// but they are not the same column
886
Status Segment::new_column_iterator(const TabletColumn& tablet_column,
887
                                    std::unique_ptr<ColumnIterator>* iter,
888
                                    const StorageReadOptions* opt,
889
                                    const std::unordered_map<int32_t, PathToBinaryColumnCacheUPtr>*
890
10.4k
                                            variant_sparse_column_cache) {
891
10.4k
    if (opt->runtime_state != nullptr) {
892
222
        _be_exec_version = opt->runtime_state->be_exec_version();
893
222
    }
894
10.4k
    RETURN_IF_ERROR(_create_column_meta_once(opt->stats, &opt->io_ctx));
895
896
    // For compability reason unique_id may less than 0 for variant extracted column
897
10.4k
    int32_t unique_id = tablet_column.unique_id() >= 0 ? tablet_column.unique_id()
898
10.4k
                                                       : tablet_column.parent_unique_id();
899
900
    // If column meta for this uid is not found in this segment, use default iterator.
901
10.4k
    if (!_column_meta_accessor->has_column_uid(unique_id)) {
902
6
        RETURN_IF_ERROR(new_default_iterator(tablet_column, iter));
903
6
        return Status::OK();
904
6
    }
905
906
    // __DORIS_COMMIT_TSO_COL__ on a single-version segment stores a 0 placeholder on disk (its
907
    // real value is the rowset's commit_tso, filled at read time). Pass the real commit_tso as a
908
    // const value so the cache returns a ConstantColumnReader, whose iterator yields the real value
909
    // on every read path (projection / predicate / MIN-MAX zone-map) instead of the placeholder 0.
910
    // commit_tso == -1 means it is not assigned yet (before publish); keep the on-disk value then.
911
    // The value is constant per segment (a segment belongs to a single rowset), so caching the
912
    // ConstantColumnReader does not cross-pollute other queries. Some internal read paths (e.g. MOW
913
    // partial-update row fetch) build a bare StorageReadOptions without tablet_schema, so guard it.
914
10.4k
    std::optional<Field> const_value;
915
10.4k
    if (opt->tablet_schema != nullptr && opt->version.first == opt->version.second &&
916
10.4k
        opt->commit_tso.end_tso() != -1) {
917
1
        int32_t tso_idx = opt->tablet_schema->commit_tso_col_idx();
918
1
        if (tso_idx != -1 && opt->tablet_schema->column(tso_idx).unique_id() == unique_id) {
919
1
            const_value = Field::create_field<TYPE_BIGINT>(opt->commit_tso.end_tso());
920
1
        }
921
1
    }
922
923
    // init iterator by unique id
924
10.4k
    std::shared_ptr<ColumnReader> reader;
925
10.4k
    RETURN_IF_ERROR(get_column_reader(unique_id, &reader, opt->stats, &opt->io_ctx,
926
10.4k
                                      std::move(const_value)));
927
10.4k
    if (reader == nullptr) {
928
0
        return Status::InternalError("column reader is nullptr, unique_id={}", unique_id);
929
0
    }
930
10.4k
    if (reader->get_meta_type() == FieldType::OLAP_FIELD_TYPE_VARIANT) {
931
        // if sparse_column_cache_ptr is nullptr, means the sparse column cache is not used
932
391
        PathToBinaryColumnCache* sparse_column_cache_ptr = nullptr;
933
391
        if (variant_sparse_column_cache) {
934
391
            auto it = variant_sparse_column_cache->find(unique_id);
935
391
            if (it != variant_sparse_column_cache->end()) {
936
391
                sparse_column_cache_ptr = it->second.get();
937
391
            } else {
938
0
                DCHECK(false) << "sparse column cache is not found, unique_id=" << unique_id;
939
0
            }
940
391
        }
941
        // use _column_reader_cache to get variant subcolumn(path column) reader
942
391
        RETURN_IF_ERROR(assert_cast<VariantColumnReader*>(reader.get())
943
391
                                ->new_iterator(iter, &tablet_column, opt,
944
391
                                               _column_reader_cache.get(),
945
391
                                               sparse_column_cache_ptr));
946
10.0k
    } else {
947
10.0k
        RETURN_IF_ERROR(reader->new_iterator(iter, &tablet_column, opt));
948
10.0k
        if (opt->all_access_paths.contains(unique_id) ||
949
10.0k
            opt->predicate_access_paths.contains(unique_id)) {
950
0
            const auto& all_access_paths = opt->all_access_paths.contains(unique_id)
951
0
                                                   ? opt->all_access_paths.at(unique_id)
952
0
                                                   : TColumnAccessPaths {};
953
0
            const auto& predicate_access_paths = opt->predicate_access_paths.contains(unique_id)
954
0
                                                         ? opt->predicate_access_paths.at(unique_id)
955
0
                                                         : TColumnAccessPaths {};
956
957
            // set column name to apply access paths.
958
0
            (*iter)->set_column_name(tablet_column.name());
959
0
            RETURN_IF_ERROR((*iter)->set_access_paths(all_access_paths, predicate_access_paths));
960
0
            (*iter)->remove_pruned_sub_iterators();
961
0
        }
962
10.0k
    }
963
964
10.4k
    if (config::enable_column_type_check && !tablet_column.has_path_info() &&
965
10.4k
        !tablet_column.is_agg_state_type() && tablet_column.type() != reader->get_meta_type()) {
966
0
        LOG(WARNING) << "different type between schema and column reader,"
967
0
                     << " column schema name: " << tablet_column.name()
968
0
                     << " column schema type: " << int(tablet_column.type())
969
0
                     << " column reader meta type: " << int(reader->get_meta_type());
970
0
        return Status::InternalError("different type between schema and column reader");
971
0
    }
972
10.4k
    return Status::OK();
973
10.4k
}
974
975
Status Segment::get_column_reader(int32_t col_uid, std::shared_ptr<ColumnReader>* column_reader,
976
                                  OlapReaderStatistics* stats, const io::IOContext* source_io_ctx,
977
11.5k
                                  std::optional<Field> const_value) {
978
11.5k
    RETURN_IF_ERROR(_create_column_meta_once(stats, source_io_ctx));
979
11.5k
    SCOPED_RAW_TIMER(&stats->segment_create_column_readers_timer_ns);
980
    // The column is not in this segment, return nullptr
981
11.5k
    if (!_tablet_schema->has_column_unique_id(col_uid)) {
982
0
        *column_reader = nullptr;
983
0
        return Status::Error<ErrorCode::NOT_FOUND, false>("column not found in segment, col_uid={}",
984
0
                                                          col_uid);
985
0
    }
986
11.5k
    return _column_reader_cache->get_column_reader(col_uid, column_reader, stats, source_io_ctx,
987
11.5k
                                                   std::move(const_value));
988
11.5k
}
989
990
378
Status Segment::traverse_column_meta_pbs(const std::function<void(const ColumnMetaPB&)>& visitor) {
991
    // Ensure column meta accessor and reader cache are initialized once.
992
378
    OlapReaderStatistics dummy_stats;
993
378
    RETURN_IF_ERROR(_create_column_meta_once(&dummy_stats));
994
378
    std::shared_ptr<SegmentFooterPB> footer_pb_shared;
995
378
    RETURN_IF_ERROR(_get_segment_footer(footer_pb_shared, &dummy_stats));
996
378
    return _column_meta_accessor->traverse_metas(*footer_pb_shared, visitor, &dummy_stats);
997
378
}
998
999
Status Segment::get_column_reader(const TabletColumn& col,
1000
                                  std::shared_ptr<ColumnReader>* column_reader,
1001
                                  OlapReaderStatistics* stats, const io::IOContext* source_io_ctx,
1002
2.77k
                                  std::optional<Field> const_value) {
1003
2.77k
    RETURN_IF_ERROR(_create_column_meta_once(stats, source_io_ctx));
1004
2.77k
    SCOPED_RAW_TIMER(&stats->segment_create_column_readers_timer_ns);
1005
2.77k
    int col_uid = col.unique_id() >= 0 ? col.unique_id() : col.parent_unique_id();
1006
    // The column is not in this segment, return nullptr
1007
2.77k
    if (!_tablet_schema->has_column_unique_id(col_uid)) {
1008
0
        *column_reader = nullptr;
1009
0
        return Status::Error<ErrorCode::NOT_FOUND, false>("column not found in segment, col_uid={}",
1010
0
                                                          col_uid);
1011
0
    }
1012
2.77k
    if (col.has_path_info()) {
1013
152
        PathInData relative_path = col.path_info_ptr()->copy_pop_front();
1014
152
        return _column_reader_cache->get_path_column_reader(col_uid, relative_path, column_reader,
1015
152
                                                            stats, nullptr, source_io_ctx);
1016
152
    }
1017
2.62k
    return _column_reader_cache->get_column_reader(col_uid, column_reader, stats, source_io_ctx,
1018
2.62k
                                                   std::move(const_value));
1019
2.77k
}
1020
1021
Status Segment::new_index_iterator(const TabletColumn& tablet_column, const TabletIndex* index_meta,
1022
                                   const StorageReadOptions& read_options,
1023
2.68k
                                   std::unique_ptr<IndexIterator>* iter) {
1024
2.68k
    if (read_options.runtime_state != nullptr) {
1025
76
        _be_exec_version = read_options.runtime_state->be_exec_version();
1026
76
    }
1027
2.68k
    RETURN_IF_ERROR(_create_column_meta_once(read_options.stats, &read_options.io_ctx));
1028
2.68k
    std::shared_ptr<ColumnReader> reader;
1029
2.68k
    auto st = get_column_reader(tablet_column, &reader, read_options.stats, &read_options.io_ctx);
1030
2.68k
    if (st.is<ErrorCode::NOT_FOUND>()) {
1031
2
        return Status::OK();
1032
2
    }
1033
2.67k
    RETURN_IF_ERROR(st);
1034
2.67k
    DCHECK(reader != nullptr);
1035
2.67k
    if (index_meta) {
1036
        // call DorisCallOnce.call without check if _index_file_reader is nullptr
1037
        // to avoid data race during parallel method calls
1038
2.67k
        RETURN_IF_ERROR(_index_file_reader_open.call([&] { return _open_index_file_reader(); }));
1039
        // after DorisCallOnce.call, _index_file_reader is guaranteed to be not nullptr
1040
2.67k
        const std::string rowset_id =
1041
2.67k
                index_meta->index_type() == IndexType::ANN ? _rowset_id.to_string() : "";
1042
2.67k
        const bool need_binding_diagnostic = tablet_column.is_variant_type() ||
1043
2.67k
                                             tablet_column.is_extracted_column() ||
1044
2.67k
                                             !index_meta->get_index_suffix().empty();
1045
2.67k
        bool index_file_exists = false;
1046
2.67k
        Status probe_status;
1047
2.67k
        if (need_binding_diagnostic) {
1048
85
            probe_status = _index_file_reader->init(config::inverted_index_read_buffer_size,
1049
85
                                                    &read_options.io_ctx);
1050
85
            if (probe_status.ok()) {
1051
85
                probe_status = _index_file_reader->index_file_exist(index_meta, &index_file_exists);
1052
85
            }
1053
85
            const auto diagnostic = fmt::format(
1054
85
                    "[VariantSearchBinding] phase=index_file_probe tablet_id={} rowset_id={} "
1055
85
                    "segment_id={} column={} logical_path={} index_id={} suffix={} exists={} "
1056
85
                    "status={}",
1057
85
                    read_options.tablet_id, _rowset_id.to_string(), _segment_id,
1058
85
                    tablet_column.name(),
1059
85
                    tablet_column.has_path_info() ? tablet_column.path_info_ptr()->get_path()
1060
85
                                                  : tablet_column.name(),
1061
85
                    index_meta->index_id(), index_meta->get_index_suffix(), index_file_exists,
1062
85
                    probe_status.ok() ? "OK" : probe_status.to_string());
1063
85
            VLOG_DEBUG << diagnostic;
1064
85
            if (read_options.stats != nullptr) {
1065
85
                read_options.stats->inverted_index_stats.add_binding_diagnostic(diagnostic);
1066
85
            }
1067
85
        }
1068
2.67k
        Status iter_status = reader->new_index_iterator(_index_file_reader, index_meta, rowset_id,
1069
2.67k
                                                        _segment_id, _num_rows, iter);
1070
2.67k
        if (!iter_status.ok()) {
1071
0
            if (need_binding_diagnostic) {
1072
0
                const auto diagnostic = fmt::format(
1073
0
                        "[VariantSearchBinding] phase=index_iterator_create result=reject "
1074
0
                        "tablet_id={} rowset_id={} segment_id={} column={} logical_path={} "
1075
0
                        "index_id={} suffix={} reason={}",
1076
0
                        read_options.tablet_id, _rowset_id.to_string(), _segment_id,
1077
0
                        tablet_column.name(),
1078
0
                        tablet_column.has_path_info() ? tablet_column.path_info_ptr()->get_path()
1079
0
                                                      : tablet_column.name(),
1080
0
                        index_meta->index_id(), index_meta->get_index_suffix(),
1081
0
                        iter_status.to_string());
1082
0
                VLOG_DEBUG << diagnostic;
1083
0
                if (read_options.stats != nullptr) {
1084
0
                    read_options.stats->inverted_index_stats.add_binding_diagnostic(diagnostic);
1085
0
                }
1086
0
            }
1087
0
            return iter_status;
1088
0
        }
1089
2.67k
        return Status::OK();
1090
2.67k
    }
1091
0
    return Status::OK();
1092
2.67k
}
1093
1094
Status Segment::lookup_row_key(const Slice& key, const TabletSchema* latest_schema,
1095
                               bool with_seq_col, bool with_rowid, RowLocation* row_location,
1096
                               OlapReaderStatistics* stats, std::string* encoded_seq_value,
1097
240
                               const io::IOContext* io_ctx) {
1098
240
    RETURN_IF_ERROR(load_pk_index_and_bf(stats, io_ctx));
1099
240
    bool has_seq_col = latest_schema->has_sequence_col();
1100
240
    bool has_rowid = !latest_schema->cluster_key_uids().empty();
1101
240
    size_t seq_col_length = 0;
1102
240
    if (has_seq_col) {
1103
141
        seq_col_length = latest_schema->column(latest_schema->sequence_col_idx()).length() + 1;
1104
141
    }
1105
240
    size_t rowid_length = has_rowid ? PrimaryKeyIndexReader::ROW_ID_LENGTH : 0;
1106
1107
240
    Slice key_without_seq =
1108
240
            Slice(key.get_data(), key.get_size() - (with_seq_col ? seq_col_length : 0) -
1109
240
                                          (with_rowid ? rowid_length : 0));
1110
1111
240
    DCHECK(_pk_index_reader != nullptr);
1112
240
    if (!_pk_index_reader->check_present(key_without_seq)) {
1113
22
        return Status::Error<ErrorCode::KEY_NOT_FOUND, false>("");
1114
22
    }
1115
218
    bool exact_match = false;
1116
218
    std::unique_ptr<segment_v2::IndexedColumnIterator> index_iterator;
1117
218
    RETURN_IF_ERROR(_pk_index_reader->new_iterator(&index_iterator, stats, io_ctx));
1118
218
    auto st = index_iterator->seek_at_or_after(&key_without_seq, &exact_match);
1119
218
    if (!st.ok() && !st.is<ErrorCode::ENTRY_NOT_FOUND>()) {
1120
0
        return st;
1121
0
    }
1122
218
    if (st.is<ErrorCode::ENTRY_NOT_FOUND>() || (!has_seq_col && !has_rowid && !exact_match)) {
1123
0
        return Status::Error<ErrorCode::KEY_NOT_FOUND, false>("");
1124
0
    }
1125
218
    row_location->row_id = cast_set<uint32_t>(index_iterator->get_current_ordinal());
1126
218
    row_location->segment_id = _segment_id;
1127
218
    row_location->rowset_id = _rowset_id;
1128
1129
218
    size_t num_to_read = 1;
1130
218
    auto index_type = DataTypeFactory::instance().create_data_type(_pk_index_reader->type(), 1, 0);
1131
218
    auto index_column = index_type->create_column();
1132
218
    size_t num_read = num_to_read;
1133
218
    RETURN_IF_ERROR(index_iterator->next_batch(&num_read, index_column));
1134
218
    DCHECK(num_to_read == num_read);
1135
1136
218
    Slice sought_key = Slice(index_column->get_data_at(0).data, index_column->get_data_at(0).size);
1137
1138
    // user may use "ALTER TABLE tbl ENABLE FEATURE "SEQUENCE_LOAD" WITH ..." to add a hidden sequence column
1139
    // for a merge-on-write table which doesn't have sequence column, so `has_seq_col ==  true` doesn't mean
1140
    // data in segment has sequence column value
1141
218
    bool segment_has_seq_col = _tablet_schema->has_sequence_col();
1142
218
    Slice sought_key_without_seq = Slice(
1143
218
            sought_key.get_data(),
1144
218
            sought_key.get_size() - (segment_has_seq_col ? seq_col_length : 0) - rowid_length);
1145
1146
218
    if (has_seq_col) {
1147
        // compare key
1148
129
        if (key_without_seq.compare(sought_key_without_seq) != 0) {
1149
0
            return Status::Error<ErrorCode::KEY_NOT_FOUND, false>("");
1150
0
        }
1151
1152
129
        if (with_seq_col && segment_has_seq_col) {
1153
            // compare sequence id
1154
43
            Slice sequence_id =
1155
43
                    Slice(key.get_data() + key_without_seq.get_size() + 1, seq_col_length - 1);
1156
43
            Slice previous_sequence_id =
1157
43
                    Slice(sought_key.get_data() + sought_key_without_seq.get_size() + 1,
1158
43
                          seq_col_length - 1);
1159
43
            if (sequence_id.compare(previous_sequence_id) < 0) {
1160
10
                return Status::Error<ErrorCode::KEY_ALREADY_EXISTS>(
1161
10
                        "key with higher sequence id exists");
1162
10
            }
1163
43
        }
1164
129
    } else if (has_rowid) {
1165
0
        Slice sought_key_without_rowid =
1166
0
                Slice(sought_key.get_data(), sought_key.get_size() - rowid_length);
1167
        // compare key
1168
0
        if (key_without_seq.compare(sought_key_without_rowid) != 0) {
1169
0
            return Status::Error<ErrorCode::KEY_NOT_FOUND, false>("");
1170
0
        }
1171
0
    }
1172
    // found the key, use rowid in pk index if necessary.
1173
208
    if (has_rowid) {
1174
0
        Slice rowid_slice = Slice(sought_key.get_data() + sought_key_without_seq.get_size() +
1175
0
                                          (segment_has_seq_col ? seq_col_length : 0) + 1,
1176
0
                                  rowid_length - 1);
1177
0
        const auto* rowid_coder = get_key_coder(FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT);
1178
0
        RETURN_IF_ERROR(rowid_coder->decode_ascending(&rowid_slice, rowid_length,
1179
0
                                                      (uint8_t*)&row_location->row_id));
1180
0
    }
1181
1182
208
    if (encoded_seq_value) {
1183
5
        if (!segment_has_seq_col) {
1184
0
            *encoded_seq_value = std::string {};
1185
5
        } else {
1186
            // include marker
1187
5
            *encoded_seq_value =
1188
5
                    Slice(sought_key.get_data() + sought_key_without_seq.get_size(), seq_col_length)
1189
5
                            .to_string();
1190
5
        }
1191
5
    }
1192
208
    return Status::OK();
1193
208
}
1194
1195
96
Status Segment::read_key_by_rowid(uint32_t row_id, std::string* key) {
1196
96
    OlapReaderStatistics* null_stat = nullptr;
1197
96
    RETURN_IF_ERROR(load_pk_index_and_bf(null_stat));
1198
96
    std::unique_ptr<segment_v2::IndexedColumnIterator> iter;
1199
96
    RETURN_IF_ERROR(_pk_index_reader->new_iterator(&iter, null_stat));
1200
1201
96
    auto index_type = DataTypeFactory::instance().create_data_type(_pk_index_reader->type(), 1, 0);
1202
96
    auto index_column = index_type->create_column();
1203
96
    RETURN_IF_ERROR(iter->seek_to_ordinal(row_id));
1204
96
    size_t num_read = 1;
1205
96
    RETURN_IF_ERROR(iter->next_batch(&num_read, index_column));
1206
96
    CHECK(num_read == 1);
1207
    // trim row id
1208
96
    if (_tablet_schema->cluster_key_uids().empty()) {
1209
96
        *key = index_column->get_data_at(0).to_string();
1210
96
    } else {
1211
0
        Slice sought_key =
1212
0
                Slice(index_column->get_data_at(0).data, index_column->get_data_at(0).size);
1213
0
        Slice sought_key_without_rowid =
1214
0
                Slice(sought_key.get_data(),
1215
0
                      sought_key.get_size() - PrimaryKeyIndexReader::ROW_ID_LENGTH);
1216
0
        *key = sought_key_without_rowid.to_string();
1217
0
    }
1218
96
    return Status::OK();
1219
96
}
1220
1221
Status Segment::seek_and_read_by_rowid(const TabletSchema& schema, SlotDescriptor* slot,
1222
                                       const std::vector<uint32_t>& row_ids,
1223
                                       MutableColumnPtr& result,
1224
                                       StorageReadOptions& storage_read_options,
1225
0
                                       std::unique_ptr<ColumnIterator>& iterator_hint) {
1226
0
    if (row_ids.empty()) {
1227
0
        return Status::OK();
1228
0
    }
1229
0
    DORIS_CHECK(std::is_sorted(row_ids.begin(), row_ids.end()));
1230
0
    DORIS_CHECK(std::adjacent_find(row_ids.begin(), row_ids.end()) == row_ids.end());
1231
    // ColumnIterator::seek_and_read expects monotonically increasing row_ids without
1232
    // duplicates for correct ordinal scanning. Enforce this contract at the entry point.
1233
0
    auto io_ctx = storage_read_options.io_ctx;
1234
0
    io_ctx.reader_type = ReaderType::READER_QUERY;
1235
0
    io_ctx.file_cache_stats = &storage_read_options.stats->file_cache_stats;
1236
0
    segment_v2::ColumnIteratorOptions opt {
1237
0
            .use_page_cache = !config::disable_storage_page_cache,
1238
0
            .file_reader = file_reader().get(),
1239
0
            .stats = storage_read_options.stats,
1240
0
            .io_ctx = io_ctx,
1241
0
    };
1242
1243
0
    if (!slot->column_paths().empty()) {
1244
        // here need create column readers to make sure column reader is created before seek_and_read_by_rowid
1245
        // if segment cache miss, column reader will be created to make sure the variant column result not coredump
1246
0
        RETURN_IF_ERROR(
1247
0
                _create_column_meta_once(storage_read_options.stats, &storage_read_options.io_ctx));
1248
1249
0
        const auto& dt_variant =
1250
0
                assert_cast<const DataTypeVariant&>(*remove_nullable(slot->type()));
1251
0
        TabletColumn column = TabletColumn::create_materialized_variant_column(
1252
0
                schema.column_by_uid(slot->col_unique_id()).name_lower_case(), slot->column_paths(),
1253
0
                slot->col_unique_id(), dt_variant.variant_max_subcolumns_count(),
1254
0
                dt_variant.enable_doc_mode());
1255
0
        auto storage_type = get_data_type_of(column, storage_read_options);
1256
0
        MutableColumnPtr file_storage_column = storage_type->create_column();
1257
0
        DCHECK(storage_type != nullptr);
1258
1259
0
        if (iterator_hint == nullptr) {
1260
0
            RETURN_IF_ERROR(new_column_iterator(column, &iterator_hint, &storage_read_options));
1261
0
            RETURN_IF_ERROR(iterator_hint->init(opt));
1262
0
        }
1263
0
        RETURN_IF_ERROR(
1264
0
                iterator_hint->read_by_rowids(row_ids.data(), row_ids.size(), file_storage_column));
1265
0
        ColumnPtr source_ptr;
1266
        // storage may have different type with schema, so we need to cast the column
1267
0
        RETURN_IF_ERROR(variant_util::cast_column(
1268
0
                ColumnWithTypeAndName(file_storage_column->get_ptr(), storage_type, column.name()),
1269
0
                slot->type(), &source_ptr));
1270
0
        RETURN_IF_CATCH_EXCEPTION(result->insert_range_from(*source_ptr, 0, row_ids.size()));
1271
0
    } else {
1272
0
        int index = (slot->col_unique_id() >= 0) ? schema.field_index(slot->col_unique_id())
1273
0
                                                 : schema.field_index(slot->col_name());
1274
0
        if (index < 0) {
1275
0
            std::stringstream ss;
1276
0
            ss << "field name is invalid. field=" << slot->col_name()
1277
0
               << ", field_name_to_index=" << schema.get_all_field_names();
1278
0
            return Status::InternalError(ss.str());
1279
0
        }
1280
0
        if (iterator_hint == nullptr) {
1281
0
            RETURN_IF_ERROR(new_column_iterator(schema.column(index), &iterator_hint,
1282
0
                                                &storage_read_options));
1283
0
            RETURN_IF_ERROR(iterator_hint->init(opt));
1284
0
        }
1285
0
        RETURN_IF_ERROR(iterator_hint->read_by_rowids(row_ids.data(), row_ids.size(), result));
1286
0
    }
1287
0
    return Status::OK();
1288
0
}
1289
1290
Status Segment::_get_segment_footer(std::shared_ptr<SegmentFooterPB>& footer_pb,
1291
                                    OlapReaderStatistics* stats,
1292
22.1k
                                    const io::IOContext* source_io_ctx) {
1293
22.1k
    std::shared_ptr<SegmentFooterPB> footer_pb_shared = _footer_pb.lock();
1294
22.1k
    if (footer_pb_shared != nullptr) {
1295
16.7k
        footer_pb = footer_pb_shared;
1296
16.7k
        return Status::OK();
1297
16.7k
    }
1298
1299
5.33k
    VLOG_DEBUG << fmt::format("Segment footer of {}:{}:{} is missing, try to load it",
1300
0
                              _file_reader->path().native(), _file_reader->size(),
1301
0
                              _file_reader->size() - 12);
1302
1303
5.33k
    StoragePageCache* segment_footer_cache = ExecEnv::GetInstance()->get_storage_page_cache();
1304
5.33k
    DCHECK(segment_footer_cache != nullptr);
1305
1306
5.33k
    auto cache_key = get_segment_footer_cache_key();
1307
1308
5.33k
    PageCacheHandle cache_handle;
1309
1310
    // Put segment footer into index page cache.
1311
    // Rationale:
1312
    // - Footer is metadata (small, parsed with indexes), not data page payload.
1313
    // - Using PageTypePB::INDEX_PAGE keeps it under the same eviction policy/shards
1314
    //   as other index/metadata pages and avoids competing with DATA_PAGE budget.
1315
5.33k
    if (!segment_footer_cache->lookup(cache_key, &cache_handle,
1316
5.33k
                                      segment_v2::PageTypePB::INDEX_PAGE)) {
1317
2.89k
        RETURN_IF_ERROR(_parse_footer(footer_pb_shared, stats, source_io_ctx));
1318
2.89k
        segment_footer_cache->insert(cache_key, footer_pb_shared, footer_pb_shared->ByteSizeLong(),
1319
2.89k
                                     &cache_handle, segment_v2::PageTypePB::INDEX_PAGE);
1320
2.89k
    } else {
1321
2.43k
        VLOG_DEBUG << fmt::format("Segment footer of {}:{}:{} is found in cache",
1322
0
                                  _file_reader->path().native(), _file_reader->size(),
1323
0
                                  _file_reader->size() - 12);
1324
2.43k
    }
1325
5.33k
    footer_pb_shared = cache_handle.get<std::shared_ptr<SegmentFooterPB>>();
1326
5.33k
    _footer_pb = footer_pb_shared;
1327
5.33k
    footer_pb = footer_pb_shared;
1328
5.33k
    return Status::OK();
1329
5.33k
}
1330
1331
5.34k
StoragePageCache::CacheKey Segment::get_segment_footer_cache_key() const {
1332
5.34k
    DCHECK(_file_reader != nullptr);
1333
    // The footer is always at the end of the segment file.
1334
    // The size of footer is 12.
1335
    // So we use the size of file minus 12 as the cache key, which is unique for each segment file.
1336
5.34k
    return get_segment_footer_cache_key(_file_reader);
1337
5.34k
}
1338
1339
StoragePageCache::CacheKey Segment::get_segment_footer_cache_key(
1340
5.38k
        const io::FileReaderSPtr& file_reader) {
1341
5.38k
    return {file_reader->path().native(), file_reader->size(),
1342
5.38k
            static_cast<int64_t>(file_reader->size() - 12)};
1343
5.38k
}
1344
1345
} // namespace doris::segment_v2