Coverage Report

Created: 2026-07-24 22:25

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/format/parquet/vparquet_reader.cpp
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// Licensed to the Apache Software Foundation (ASF) under one
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// or more contributor license agreements.  See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership.  The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// with the License.  You may obtain a copy of the License at
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//
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//   http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
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#include "format/parquet/vparquet_reader.h"
19
20
#include <gen_cpp/Metrics_types.h>
21
#include <gen_cpp/PlanNodes_types.h>
22
#include <gen_cpp/parquet_types.h>
23
#include <glog/logging.h>
24
25
#include <algorithm>
26
#include <functional>
27
#include <set>
28
#include <unordered_map>
29
#include <utility>
30
31
#include "common/config.h"
32
#include "common/status.h"
33
#include "core/block/block.h"
34
#include "core/block/column_with_type_and_name.h"
35
#include "core/column/column.h"
36
#include "core/data_type/define_primitive_type.h"
37
#include "core/typeid_cast.h"
38
#include "core/types.h"
39
#include "exec/scan/file_scanner.h"
40
#include "exprs/expr_zonemap_filter.h"
41
#include "exprs/runtime_filter_expr.h"
42
#include "exprs/vbloom_predicate.h"
43
#include "exprs/vdirect_in_predicate.h"
44
#include "exprs/vexpr.h"
45
#include "exprs/vexpr_context.h"
46
#include "exprs/vin_predicate.h"
47
#include "exprs/vslot_ref.h"
48
#include "exprs/vtopn_pred.h"
49
#include "format/column_type_convert.h"
50
#include "format/parquet/parquet_block_split_bloom_filter.h"
51
#include "format/parquet/parquet_common.h"
52
#include "format/parquet/parquet_predicate.h"
53
#include "format/parquet/parquet_thrift_util.h"
54
#include "format/parquet/schema_desc.h"
55
#include "format/parquet/vparquet_file_metadata.h"
56
#include "format/parquet/vparquet_group_reader.h"
57
#include "format/parquet/vparquet_page_index.h"
58
#include "information_schema/schema_scanner.h"
59
#include "io/file_factory.h"
60
#include "io/fs/buffered_reader.h"
61
#include "io/fs/file_reader.h"
62
#include "io/fs/file_reader_writer_fwd.h"
63
#include "io/fs/tracing_file_reader.h"
64
#include "runtime/descriptors.h"
65
#include "storage/index/zone_map/zonemap_eval_context.h"
66
#include "util/slice.h"
67
#include "util/string_util.h"
68
#include "util/timezone_utils.h"
69
70
namespace cctz {
71
class time_zone;
72
} // namespace cctz
73
namespace doris {
74
class RowDescriptor;
75
class RuntimeState;
76
class SlotDescriptor;
77
class TupleDescriptor;
78
namespace io {
79
struct IOContext;
80
enum class FileCachePolicy : uint8_t;
81
} // namespace io
82
class Block;
83
} // namespace doris
84
85
namespace doris {
86
87
ParquetReader::ParquetReader(RuntimeProfile* profile, const TFileScanRangeParams& params,
88
                             const TFileRangeDesc& range, size_t batch_size,
89
                             const cctz::time_zone* ctz, io::IOContext* io_ctx, RuntimeState* state,
90
                             FileMetaCache* meta_cache, bool enable_lazy_mat)
91
194
        : _profile(profile),
92
194
          _scan_params(params),
93
194
          _scan_range(range),
94
194
          _batch_size(std::max(batch_size, 1UL)),
95
194
          _range_start_offset(range.start_offset),
96
194
          _range_size(range.size),
97
194
          _ctz(ctz),
98
194
          _io_ctx(io_ctx),
99
194
          _state(state),
100
194
          _enable_lazy_mat(enable_lazy_mat),
101
          _enable_filter_by_min_max(
102
194
                  state == nullptr ? true
103
194
                                   : state->query_options().enable_parquet_filter_by_min_max),
104
          _enable_filter_by_bloom_filter(
105
194
                  state == nullptr ? true
106
194
                                   : state->query_options().enable_parquet_filter_by_bloom_filter) {
107
194
    _meta_cache = meta_cache;
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194
    _init_profile();
109
194
    _init_system_properties();
110
194
    _init_file_description();
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194
}
112
113
0
void ParquetReader::set_batch_size(size_t batch_size) {
114
0
    if (_batch_size == batch_size) {
115
0
        return;
116
0
    }
117
0
    _batch_size = batch_size;
118
0
}
119
120
ParquetReader::ParquetReader(RuntimeProfile* profile, const TFileScanRangeParams& params,
121
                             const TFileRangeDesc& range, size_t batch_size,
122
                             const cctz::time_zone* ctz,
123
                             std::shared_ptr<io::IOContext> io_ctx_holder, RuntimeState* state,
124
                             FileMetaCache* meta_cache, bool enable_lazy_mat)
125
58
        : _profile(profile),
126
58
          _scan_params(params),
127
58
          _scan_range(range),
128
58
          _batch_size(std::max(batch_size, 1UL)),
129
58
          _range_start_offset(range.start_offset),
130
58
          _range_size(range.size),
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58
          _ctz(ctz),
132
58
          _io_ctx(io_ctx_holder ? io_ctx_holder.get() : nullptr),
133
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          _io_ctx_holder(std::move(io_ctx_holder)),
134
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          _state(state),
135
58
          _enable_lazy_mat(enable_lazy_mat),
136
          _enable_filter_by_min_max(
137
58
                  state == nullptr ? true
138
58
                                   : state->query_options().enable_parquet_filter_by_min_max),
139
          _enable_filter_by_bloom_filter(
140
58
                  state == nullptr ? true
141
58
                                   : state->query_options().enable_parquet_filter_by_bloom_filter) {
142
58
    _meta_cache = meta_cache;
143
58
    _init_profile();
144
58
    _init_system_properties();
145
58
    _init_file_description();
146
58
}
147
148
ParquetReader::ParquetReader(const TFileScanRangeParams& params, const TFileRangeDesc& range,
149
                             io::IOContext* io_ctx, RuntimeState* state, FileMetaCache* meta_cache,
150
                             bool enable_lazy_mat)
151
10
        : _profile(nullptr),
152
10
          _scan_params(params),
153
10
          _scan_range(range),
154
10
          _io_ctx(io_ctx),
155
10
          _state(state),
156
10
          _enable_lazy_mat(enable_lazy_mat),
157
          _enable_filter_by_min_max(
158
10
                  state == nullptr ? true
159
10
                                   : state->query_options().enable_parquet_filter_by_min_max),
160
          _enable_filter_by_bloom_filter(
161
10
                  state == nullptr ? true
162
10
                                   : state->query_options().enable_parquet_filter_by_bloom_filter) {
163
10
    _meta_cache = meta_cache;
164
10
    _init_system_properties();
165
10
    _init_file_description();
166
10
}
167
168
ParquetReader::ParquetReader(const TFileScanRangeParams& params, const TFileRangeDesc& range,
169
                             std::shared_ptr<io::IOContext> io_ctx_holder, RuntimeState* state,
170
                             FileMetaCache* meta_cache, bool enable_lazy_mat)
171
0
        : _profile(nullptr),
172
0
          _scan_params(params),
173
0
          _scan_range(range),
174
0
          _io_ctx(io_ctx_holder ? io_ctx_holder.get() : nullptr),
175
0
          _io_ctx_holder(std::move(io_ctx_holder)),
176
0
          _state(state),
177
0
          _enable_lazy_mat(enable_lazy_mat),
178
          _enable_filter_by_min_max(
179
0
                  state == nullptr ? true
180
0
                                   : state->query_options().enable_parquet_filter_by_min_max),
181
          _enable_filter_by_bloom_filter(
182
0
                  state == nullptr ? true
183
0
                                   : state->query_options().enable_parquet_filter_by_bloom_filter) {
184
0
    _meta_cache = meta_cache;
185
0
    _init_system_properties();
186
0
    _init_file_description();
187
0
}
188
189
262
ParquetReader::~ParquetReader() {
190
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    _close_internal();
191
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}
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#ifdef BE_TEST
194
// for unit test
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166
void ParquetReader::set_file_reader(io::FileReaderSPtr file_reader) {
196
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    _file_reader = file_reader;
197
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    _tracing_file_reader = file_reader;
198
166
}
199
#endif
200
201
252
void ParquetReader::_init_profile() {
202
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    if (_profile != nullptr) {
203
136
        static const char* parquet_profile = "ParquetReader";
204
136
        ADD_TIMER_WITH_LEVEL(_profile, parquet_profile, 1);
205
206
136
        _parquet_profile.filtered_row_groups = ADD_CHILD_COUNTER_WITH_LEVEL(
207
136
                _profile, "RowGroupsFiltered", TUnit::UNIT, parquet_profile, 1);
208
136
        _parquet_profile.filtered_row_groups_by_min_max = ADD_CHILD_COUNTER_WITH_LEVEL(
209
136
                _profile, "RowGroupsFilteredByMinMax", TUnit::UNIT, parquet_profile, 1);
210
136
        _parquet_profile.filtered_row_groups_by_expr_zonemap = ADD_CHILD_COUNTER_WITH_LEVEL(
211
136
                _profile, "ParquetExprZoneMapFilteredRowGroups", TUnit::UNIT, parquet_profile, 1);
212
136
        _parquet_profile.filtered_row_groups_by_bloom_filter = ADD_CHILD_COUNTER_WITH_LEVEL(
213
136
                _profile, "RowGroupsFilteredByBloomFilter", TUnit::UNIT, parquet_profile, 1);
214
136
        _parquet_profile.to_read_row_groups = ADD_CHILD_COUNTER_WITH_LEVEL(
215
136
                _profile, "RowGroupsReadNum", TUnit::UNIT, parquet_profile, 1);
216
136
        _parquet_profile.total_row_groups = ADD_CHILD_COUNTER_WITH_LEVEL(
217
136
                _profile, "RowGroupsTotalNum", TUnit::UNIT, parquet_profile, 1);
218
136
        _parquet_profile.filtered_group_rows = ADD_CHILD_COUNTER_WITH_LEVEL(
219
136
                _profile, "FilteredRowsByGroup", TUnit::UNIT, parquet_profile, 1);
220
136
        _parquet_profile.filtered_page_rows = ADD_CHILD_COUNTER_WITH_LEVEL(
221
136
                _profile, "FilteredRowsByPage", TUnit::UNIT, parquet_profile, 1);
222
136
        _parquet_profile.lazy_read_filtered_rows = ADD_CHILD_COUNTER_WITH_LEVEL(
223
136
                _profile, "FilteredRowsByLazyRead", TUnit::UNIT, parquet_profile, 1);
224
136
        _parquet_profile.filtered_bytes = ADD_CHILD_COUNTER_WITH_LEVEL(
225
136
                _profile, "FilteredBytes", TUnit::BYTES, parquet_profile, 1);
226
136
        _parquet_profile.raw_rows_read = ADD_CHILD_COUNTER_WITH_LEVEL(
227
136
                _profile, "RawRowsRead", TUnit::UNIT, parquet_profile, 1);
228
136
        _parquet_profile.column_read_time =
229
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "ColumnReadTime", parquet_profile, 1);
230
136
        _parquet_profile.parse_meta_time =
231
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "ParseMetaTime", parquet_profile, 1);
232
136
        _parquet_profile.parse_footer_time =
233
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "ParseFooterTime", parquet_profile, 1);
234
136
        _parquet_profile.file_reader_create_time =
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136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "FileReaderCreateTime", parquet_profile, 1);
236
136
        _parquet_profile.open_file_num =
237
136
                ADD_CHILD_COUNTER_WITH_LEVEL(_profile, "FileNum", TUnit::UNIT, parquet_profile, 1);
238
136
        _parquet_profile.page_index_read_calls =
239
136
                ADD_COUNTER_WITH_LEVEL(_profile, "PageIndexReadCalls", TUnit::UNIT, 1);
240
136
        _parquet_profile.page_index_filter_time =
241
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "PageIndexFilterTime", parquet_profile, 1);
242
136
        _parquet_profile.read_page_index_time =
243
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "PageIndexReadTime", parquet_profile, 1);
244
136
        _parquet_profile.parse_page_index_time =
245
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "PageIndexParseTime", parquet_profile, 1);
246
136
        _parquet_profile.row_group_filter_time =
247
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "RowGroupFilterTime", parquet_profile, 1);
248
136
        _parquet_profile.expr_zonemap_unusable = ADD_CHILD_COUNTER_WITH_LEVEL(
249
136
                _profile, "ExprZoneMapUnusableEvals", TUnit::UNIT, parquet_profile, 1);
250
136
        _parquet_profile.in_zonemap_point_check = ADD_CHILD_COUNTER_WITH_LEVEL(
251
136
                _profile, "InZoneMapPointCheckCount", TUnit::UNIT, parquet_profile, 1);
252
136
        _parquet_profile.in_zonemap_range_only = ADD_CHILD_COUNTER_WITH_LEVEL(
253
136
                _profile, "InZoneMapRangeOnlyCount", TUnit::UNIT, parquet_profile, 1);
254
136
        _parquet_profile.file_footer_read_calls =
255
136
                ADD_COUNTER_WITH_LEVEL(_profile, "FileFooterReadCalls", TUnit::UNIT, 1);
256
136
        _parquet_profile.file_footer_hit_cache =
257
136
                ADD_COUNTER_WITH_LEVEL(_profile, "FileFooterHitCache", TUnit::UNIT, 1);
258
136
        _parquet_profile.decompress_time =
259
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "DecompressTime", parquet_profile, 1);
260
136
        _parquet_profile.decompress_cnt = ADD_CHILD_COUNTER_WITH_LEVEL(
261
136
                _profile, "DecompressCount", TUnit::UNIT, parquet_profile, 1);
262
136
        _parquet_profile.page_read_counter = ADD_CHILD_COUNTER_WITH_LEVEL(
263
136
                _profile, "PageReadCount", TUnit::UNIT, parquet_profile, 1);
264
136
        _parquet_profile.page_cache_write_counter = ADD_CHILD_COUNTER_WITH_LEVEL(
265
136
                _profile, "PageCacheWriteCount", TUnit::UNIT, parquet_profile, 1);
266
136
        _parquet_profile.page_cache_compressed_write_counter = ADD_CHILD_COUNTER_WITH_LEVEL(
267
136
                _profile, "PageCacheCompressedWriteCount", TUnit::UNIT, parquet_profile, 1);
268
136
        _parquet_profile.page_cache_decompressed_write_counter = ADD_CHILD_COUNTER_WITH_LEVEL(
269
136
                _profile, "PageCacheDecompressedWriteCount", TUnit::UNIT, parquet_profile, 1);
270
136
        _parquet_profile.page_cache_hit_counter = ADD_CHILD_COUNTER_WITH_LEVEL(
271
136
                _profile, "PageCacheHitCount", TUnit::UNIT, parquet_profile, 1);
272
136
        _parquet_profile.page_cache_missing_counter = ADD_CHILD_COUNTER_WITH_LEVEL(
273
136
                _profile, "PageCacheMissingCount", TUnit::UNIT, parquet_profile, 1);
274
136
        _parquet_profile.page_cache_compressed_hit_counter = ADD_CHILD_COUNTER_WITH_LEVEL(
275
136
                _profile, "PageCacheCompressedHitCount", TUnit::UNIT, parquet_profile, 1);
276
136
        _parquet_profile.page_cache_decompressed_hit_counter = ADD_CHILD_COUNTER_WITH_LEVEL(
277
136
                _profile, "PageCacheDecompressedHitCount", TUnit::UNIT, parquet_profile, 1);
278
136
        _parquet_profile.decode_header_time =
279
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "PageHeaderDecodeTime", parquet_profile, 1);
280
136
        _parquet_profile.read_page_header_time =
281
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "PageHeaderReadTime", parquet_profile, 1);
282
136
        _parquet_profile.decode_value_time =
283
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "DecodeValueTime", parquet_profile, 1);
284
136
        _parquet_profile.decode_dict_time =
285
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "DecodeDictTime", parquet_profile, 1);
286
136
        _parquet_profile.decode_level_time =
287
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "DecodeLevelTime", parquet_profile, 1);
288
136
        _parquet_profile.decode_null_map_time =
289
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "DecodeNullMapTime", parquet_profile, 1);
290
136
        _parquet_profile.skip_page_header_num = ADD_CHILD_COUNTER_WITH_LEVEL(
291
136
                _profile, "SkipPageHeaderNum", TUnit::UNIT, parquet_profile, 1);
292
136
        _parquet_profile.parse_page_header_num = ADD_CHILD_COUNTER_WITH_LEVEL(
293
136
                _profile, "ParsePageHeaderNum", TUnit::UNIT, parquet_profile, 1);
294
136
        _parquet_profile.predicate_filter_time =
295
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "PredicateFilterTime", parquet_profile, 1);
296
136
        _parquet_profile.dict_filter_rewrite_time =
297
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "DictFilterRewriteTime", parquet_profile, 1);
298
136
        _parquet_profile.convert_time =
299
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "ConvertTime", parquet_profile, 1);
300
136
        _parquet_profile.bloom_filter_read_time =
301
136
                ADD_CHILD_TIMER_WITH_LEVEL(_profile, "BloomFilterReadTime", parquet_profile, 1);
302
136
    }
303
252
}
304
305
30
Status ParquetReader::close() {
306
30
    _close_internal();
307
30
    return Status::OK();
308
30
}
309
310
292
void ParquetReader::_close_internal() {
311
292
    if (!_closed) {
312
262
        _current_group_reader.reset();
313
262
        _tracing_file_reader.reset();
314
262
        _file_reader.reset();
315
262
        _closed = true;
316
262
    }
317
292
}
318
319
270
Status ParquetReader::_open_file() {
320
270
    if (UNLIKELY(_io_ctx && _io_ctx->should_stop)) {
321
0
        return Status::EndOfFile("stop");
322
0
    }
323
270
    if (_file_reader == nullptr) {
324
42
        SCOPED_RAW_TIMER(&_reader_statistics.file_reader_create_time);
325
42
        ++_reader_statistics.open_file_num;
326
42
        _file_description.mtime =
327
42
                _scan_range.__isset.modification_time ? _scan_range.modification_time : 0;
328
42
        io::FileReaderOptions reader_options = FileFactory::get_reader_options(
329
42
                _state ? _state->query_options() : _default_query_options, _file_description);
330
42
        if (_io_ctx_holder) {
331
30
            _file_reader = DORIS_TRY(io::DelegateReader::create_file_reader(
332
30
                    _profile, _system_properties, _file_description, reader_options,
333
30
                    io::DelegateReader::AccessMode::RANDOM,
334
30
                    std::static_pointer_cast<const io::IOContext>(_io_ctx_holder)));
335
30
        } else {
336
12
            _file_reader = DORIS_TRY(io::DelegateReader::create_file_reader(
337
10
                    _profile, _system_properties, _file_description, reader_options,
338
10
                    io::DelegateReader::AccessMode::RANDOM, _io_ctx));
339
10
        }
340
40
        _tracing_file_reader = _io_ctx && _io_ctx->file_reader_stats
341
40
                                       ? std::make_shared<io::TracingFileReader>(
342
36
                                                 _file_reader, _io_ctx->file_reader_stats)
343
40
                                       : _file_reader;
344
40
    }
345
346
268
    if (_file_metadata == nullptr) {
347
206
        SCOPED_RAW_TIMER(&_reader_statistics.parse_footer_time);
348
206
        if (_tracing_file_reader->size() <= sizeof(PARQUET_VERSION_NUMBER)) {
349
            // Some system may generate parquet file with only 4 bytes: PAR1
350
            // Should consider it as empty file.
351
0
            return Status::EndOfFile("open file failed, empty parquet file {} with size: {}",
352
0
                                     _scan_range.path, _tracing_file_reader->size());
353
0
        }
354
206
        size_t meta_size = 0;
355
206
        bool enable_mapping_varbinary = _scan_params.__isset.enable_mapping_varbinary
356
206
                                                ? _scan_params.enable_mapping_varbinary
357
206
                                                : false;
358
206
        bool enable_mapping_timestamp_tz = _scan_params.__isset.enable_mapping_timestamp_tz
359
206
                                                   ? _scan_params.enable_mapping_timestamp_tz
360
206
                                                   : false;
361
206
        if (_meta_cache == nullptr) {
362
            // wrap _file_metadata with unique ptr, so that it can be released finally.
363
118
            RETURN_IF_ERROR(parse_thrift_footer(_tracing_file_reader, &_file_metadata_ptr,
364
118
                                                &meta_size, _io_ctx, enable_mapping_varbinary,
365
118
                                                enable_mapping_timestamp_tz));
366
118
            _file_metadata = _file_metadata_ptr.get();
367
            // parse magic number & parse meta data
368
118
            _reader_statistics.file_footer_read_calls += 1;
369
118
        } else {
370
88
            const auto& file_meta_cache_key =
371
88
                    FileMetaCache::get_key(_tracing_file_reader, _file_description);
372
88
            if (!_meta_cache->lookup(file_meta_cache_key, &_meta_cache_handle)) {
373
60
                RETURN_IF_ERROR(parse_thrift_footer(_tracing_file_reader, &_file_metadata_ptr,
374
60
                                                    &meta_size, _io_ctx, enable_mapping_varbinary,
375
60
                                                    enable_mapping_timestamp_tz));
376
                // _file_metadata_ptr.release() : move control of _file_metadata to _meta_cache_handle
377
60
                _meta_cache->insert(file_meta_cache_key, _file_metadata_ptr.release(),
378
60
                                    &_meta_cache_handle);
379
60
                _file_metadata = _meta_cache_handle.data<FileMetaData>();
380
60
                _reader_statistics.file_footer_read_calls += 1;
381
60
            } else {
382
28
                _reader_statistics.file_footer_hit_cache++;
383
28
            }
384
88
            _file_metadata = _meta_cache_handle.data<FileMetaData>();
385
88
        }
386
387
206
        if (_file_metadata == nullptr) {
388
0
            return Status::InternalError("failed to get file meta data: {}",
389
0
                                         _file_description.path);
390
0
        }
391
206
    }
392
268
    return Status::OK();
393
268
}
394
395
94
Status ParquetReader::get_file_metadata_schema(const FieldDescriptor** ptr) {
396
94
    RETURN_IF_ERROR(_open_file());
397
94
    DCHECK(_file_metadata != nullptr);
398
94
    *ptr = &_file_metadata->schema();
399
94
    return Status::OK();
400
94
}
401
402
262
void ParquetReader::_init_system_properties() {
403
262
    if (_scan_range.__isset.file_type) {
404
        // for compatibility
405
0
        _system_properties.system_type = _scan_range.file_type;
406
262
    } else {
407
262
        _system_properties.system_type = _scan_params.file_type;
408
262
    }
409
262
    _system_properties.properties = _scan_params.properties;
410
262
    _system_properties.hdfs_params = _scan_params.hdfs_params;
411
262
    if (_scan_params.__isset.broker_addresses) {
412
0
        _system_properties.broker_addresses.assign(_scan_params.broker_addresses.begin(),
413
0
                                                   _scan_params.broker_addresses.end());
414
0
    }
415
262
}
416
417
262
void ParquetReader::_init_file_description() {
418
262
    _file_description.path = _scan_range.path;
419
262
    _file_description.file_size = _scan_range.__isset.file_size ? _scan_range.file_size : -1;
420
262
    if (_scan_range.__isset.fs_name) {
421
16
        _file_description.fs_name = _scan_range.fs_name;
422
16
    }
423
262
    if (_scan_range.__isset.file_cache_admission) {
424
0
        _file_description.file_cache_admission = _scan_range.file_cache_admission;
425
0
    }
426
262
}
427
428
18
Status ParquetReader::on_before_init_reader(ReaderInitContext* ctx) {
429
18
    _column_descs = ctx->column_descs;
430
18
    _fill_col_name_to_block_idx = ctx->col_name_to_block_idx;
431
18
    RETURN_IF_ERROR(_extract_partition_values(*ctx->range, ctx->tuple_descriptor,
432
18
                                              _fill_partition_values,
433
18
                                              &_fill_partition_value_is_null));
434
42
    for (const auto& desc : *ctx->column_descs) {
435
42
        if (desc.category == ColumnCategory::REGULAR ||
436
42
            desc.category == ColumnCategory::GENERATED) {
437
42
            ctx->column_names.push_back(desc.name);
438
42
        } else if (desc.category == ColumnCategory::SYNTHESIZED &&
439
0
                   desc.name.starts_with(BeConsts::GLOBAL_ROWID_COL)) {
440
0
            auto topn_row_id_column_iter = _create_topn_row_id_column_iterator();
441
0
            this->register_synthesized_column_handler(
442
0
                    desc.name,
443
0
                    [iter = std::move(topn_row_id_column_iter), this, &desc](
444
0
                            Block* block, size_t rows) -> Status {
445
0
                        return fill_topn_row_id(iter, desc.name, block, rows);
446
0
                    });
447
0
            continue;
448
0
        }
449
42
    }
450
451
    // Build table_info_node from Parquet file metadata with case-insensitive recursive matching.
452
    // File is already opened by init_reader before this hook, so metadata is available.
453
    // tuple_descriptor may be null in unit tests that only set column_descs.
454
18
    if (ctx->tuple_descriptor != nullptr) {
455
14
        const FieldDescriptor* field_desc = nullptr;
456
14
        RETURN_IF_ERROR(get_file_metadata_schema(&field_desc));
457
14
        RETURN_IF_ERROR(TableSchemaChangeHelper::BuildTableInfoUtil::by_parquet_name(
458
14
                ctx->tuple_descriptor, *field_desc, ctx->table_info_node));
459
14
    }
460
461
18
    return Status::OK();
462
18
}
463
464
172
Status ParquetReader::_open_file_reader(ReaderInitContext* /*ctx*/) {
465
172
    return _open_file();
466
172
}
467
468
170
Status ParquetReader::_do_init_reader(ReaderInitContext* base_ctx) {
469
170
    auto* ctx = checked_context_cast<ParquetInitContext>(base_ctx);
470
170
    _col_name_to_block_idx = base_ctx->col_name_to_block_idx;
471
170
    _tuple_descriptor = ctx->tuple_descriptor;
472
170
    _row_descriptor = ctx->row_descriptor;
473
170
    _colname_to_slot_id = ctx->colname_to_slot_id;
474
170
    _not_single_slot_filter_conjuncts = ctx->not_single_slot_filter_conjuncts;
475
170
    _slot_id_to_filter_conjuncts = ctx->slot_id_to_filter_conjuncts;
476
170
    _filter_groups = ctx->filter_groups;
477
170
    _table_info_node_ptr = base_ctx->table_info_node;
478
170
    _column_ids = base_ctx->column_ids;
479
170
    _filter_column_ids = base_ctx->filter_column_ids;
480
481
    // _open_file_reader (called by init_reader NVI before hooks) must have opened the file.
482
170
    DCHECK(_file_metadata != nullptr)
483
0
            << "ParquetReader::_do_init_reader called without _open_file_reader";
484
170
    _t_metadata = &(_file_metadata->to_thrift());
485
486
170
    SCOPED_RAW_TIMER(&_reader_statistics.parse_meta_time);
487
170
    _total_groups = _t_metadata->row_groups.size();
488
170
    if (_total_groups == 0) {
489
0
        return Status::EndOfFile("init reader failed, empty parquet file: " + _scan_range.path);
490
0
    }
491
170
    _current_row_group_index = RowGroupReader::RowGroupIndex {-1, 0, 0};
492
493
    // Compute missing columns and file↔table column mapping.
494
    // This runs in _do_init_reader (not on_before_init_reader) because table-format readers
495
    // (Iceberg, Paimon, Hive, Hudi) override on_before_init_reader completely.
496
170
    if (has_column_descs()) {
497
56
        _fill_missing_cols.clear();
498
56
        _fill_missing_defaults.clear();
499
160
        for (const auto& col_name : base_ctx->column_names) {
500
            // A projected column that is not present at all in the table-side schema tree means the
501
            // schema info from FE (e.g. the paimon/iceberg history_schema_info, or the hive/orc name
502
            // map) is inconsistent with the scan projection. Fail this query loudly instead of aborting
503
            // the whole BE process via the children_column_exists DCHECK (or an std::out_of_range from
504
            // children.at() in a release build). A column that IS known but missing from the data file
505
            // keeps its key (add_not_exist_children) and is correctly classified as fill-missing below.
506
160
            if (!_table_info_node_ptr->has_children_column(col_name)) {
507
0
                return Status::InternalError(
508
0
                        "schema mapping is missing projected column '{}'; the schema info from FE "
509
0
                        "is "
510
0
                        "inconsistent with the scan projection (file: {})",
511
0
                        col_name, _scan_range.path);
512
0
            }
513
160
            if (!_table_info_node_ptr->children_column_exists(col_name)) {
514
10
                _fill_missing_cols.insert(col_name);
515
10
            }
516
160
        }
517
56
        if (_column_descs && !_fill_missing_cols.empty()) {
518
26
            for (const auto& desc : *_column_descs) {
519
26
                if (_fill_missing_cols.contains(desc.name) &&
520
26
                    !_fill_partition_values.contains(desc.name)) {
521
0
                    _fill_missing_defaults[desc.name] = desc.default_expr;
522
0
                }
523
26
            }
524
10
        }
525
56
    }
526
    // Resolve file-column ↔ table-column mapping in file-schema order.
527
    // _init_read_columns handles both normal path (missing cols populated above)
528
    // and standalone path (_fill_missing_cols empty, _table_info_node_ptr may be null).
529
170
    _init_read_columns(base_ctx->column_names);
530
531
    // build column predicates for column lazy read
532
170
    if (ctx->conjuncts != nullptr) {
533
170
        _lazy_read_ctx.conjuncts = *ctx->conjuncts;
534
170
    }
535
170
    if (ctx->slot_id_to_predicates != nullptr) {
536
170
        _lazy_read_ctx.slot_id_to_predicates = *ctx->slot_id_to_predicates;
537
170
    }
538
539
    // ---- Inlined set_fill_columns logic (partition/missing/synthesized classification) ----
540
541
    // 1. Collect predicate columns from conjuncts for lazy materialization
542
170
    std::unordered_map<std::string, std::pair<uint32_t, int>> predicate_columns;
543
170
    _collect_predicate_columns_from_conjuncts(predicate_columns);
544
545
    // 2. Classify read/partition/missing/synthesized columns into lazy vs predicate groups
546
170
    _classify_columns_for_lazy_read(predicate_columns, _fill_partition_values,
547
170
                                    _fill_missing_defaults);
548
549
    // 3. Populate col_names vectors for ColumnProcessor path
550
170
    for (auto& kv : _lazy_read_ctx.predicate_partition_columns) {
551
10
        _lazy_read_ctx.predicate_partition_col_names.emplace_back(kv.first);
552
10
    }
553
170
    for (auto& kv : _lazy_read_ctx.predicate_missing_columns) {
554
0
        _lazy_read_ctx.predicate_missing_col_names.emplace_back(kv.first);
555
0
    }
556
170
    for (auto& kv : _lazy_read_ctx.partition_columns) {
557
6
        _lazy_read_ctx.partition_col_names.emplace_back(kv.first);
558
6
    }
559
170
    for (auto& kv : _lazy_read_ctx.missing_columns) {
560
0
        _lazy_read_ctx.missing_col_names.emplace_back(kv.first);
561
0
    }
562
563
170
    if (_filter_groups && (_total_groups == 0 || _t_metadata->num_rows == 0 || _range_size < 0)) {
564
0
        return Status::EndOfFile("No row group to read");
565
0
    }
566
567
170
    return Status::OK();
568
170
}
569
570
170
void ParquetReader::_init_read_columns(const std::vector<std::string>& column_names) {
571
    // Build file_col_name → table_col_name map, skipping missing columns.
572
    // Must iterate file schema in physical order so that _generate_random_access_ranges
573
    // sees monotonically increasing chunk offsets.
574
170
    auto schema_desc = _file_metadata->schema();
575
170
    std::map<std::string, std::string> required_file_columns;
576
1.09k
    for (const auto& col_name : column_names) {
577
1.09k
        if (_fill_missing_cols.contains(col_name)) {
578
10
            continue;
579
10
        }
580
1.08k
        std::string file_col = col_name;
581
1.08k
        if (_table_info_node_ptr && _table_info_node_ptr->children_column_exists(col_name)) {
582
1.08k
            file_col = _table_info_node_ptr->children_file_column_name(col_name);
583
1.08k
        }
584
1.08k
        required_file_columns[file_col] = col_name;
585
1.08k
    }
586
1.74k
    for (int i = 0; i < schema_desc.size(); ++i) {
587
1.57k
        const auto& name = schema_desc.get_column(i)->name;
588
1.57k
        if (required_file_columns.contains(name)) {
589
1.08k
            _read_file_columns.emplace_back(name);
590
1.08k
            _read_table_columns.emplace_back(required_file_columns[name]);
591
1.08k
            _read_table_columns_set.insert(required_file_columns[name]);
592
1.08k
        }
593
1.57k
    }
594
170
}
595
596
46
bool ParquetReader::_exists_in_file(const std::string& expr_name) const {
597
    // `_read_table_columns_set` is used to ensure that only columns actually read are subject to min-max filtering.
598
    // This primarily handles cases where partition columns also exist in a file. The reason it's not modified
599
    // in `_table_info_node_ptr` is that Iceberg、Hudi has inconsistent requirements for this node;
600
    // Iceberg partition evolution need read partition columns from a file.
601
    // hudi set `hoodie.datasource.write.drop.partition.columns=false` not need read partition columns from a file.
602
46
    return _table_info_node_ptr->children_column_exists(expr_name) &&
603
46
           _read_table_columns_set.contains(expr_name);
604
46
}
605
606
36
bool ParquetReader::_type_matches(const int cid) const {
607
36
    auto* slot = _tuple_descriptor->slots()[cid];
608
36
    auto table_col_type = remove_nullable(slot->type());
609
610
36
    const auto& file_col_name = _table_info_node_ptr->children_file_column_name(slot->col_name());
611
36
    const auto& file_col_type =
612
36
            remove_nullable(_file_metadata->schema().get_column(file_col_name)->data_type);
613
614
36
    return (table_col_type->get_primitive_type() == file_col_type->get_primitive_type()) &&
615
36
           !is_complex_type(table_col_type->get_primitive_type());
616
36
}
617
618
void ParquetReader::_collect_predicate_columns_from_conjuncts(
619
170
        std::unordered_map<std::string, std::pair<uint32_t, int>>& predicate_columns) {
620
170
    std::function<void(VExpr * expr)> visit_slot = [&](VExpr* expr) {
621
78
        if (expr->is_slot_ref()) {
622
26
            VSlotRef* slot_ref = static_cast<VSlotRef*>(expr);
623
26
            auto expr_name = slot_ref->expr_name();
624
26
            predicate_columns.emplace(expr_name,
625
26
                                      std::make_pair(slot_ref->column_id(), slot_ref->slot_id()));
626
26
            if (slot_ref->column_id() == 0) {
627
6
                _lazy_read_ctx.resize_first_column = false;
628
6
            }
629
26
            return;
630
26
        }
631
52
        for (auto& child : expr->children()) {
632
52
            visit_slot(child.get());
633
52
        }
634
52
    };
635
636
170
    for (const auto& conjunct : _lazy_read_ctx.conjuncts) {
637
26
        auto expr = conjunct->root();
638
26
        if (expr->is_rf_wrapper()) {
639
0
            RuntimeFilterExpr* runtime_filter = assert_cast<RuntimeFilterExpr*>(expr.get());
640
0
            auto filter_impl = runtime_filter->get_impl();
641
0
            visit_slot(filter_impl.get());
642
26
        } else {
643
26
            visit_slot(expr.get());
644
26
        }
645
26
    }
646
647
170
    if (!_lazy_read_ctx.slot_id_to_predicates.empty()) {
648
0
        auto and_pred = AndBlockColumnPredicate::create_unique();
649
0
        for (const auto& entry : _lazy_read_ctx.slot_id_to_predicates) {
650
0
            for (const auto& pred : entry.second) {
651
                // Parquet shares _push_down_predicates for row-group/page min-max pruning and
652
                // bloom-filter evaluation, so this flag currently gates both predicate paths.
653
0
                if (!has_column_optimization(pred->col_name(), ColumnOptimizationTypes::MIN_MAX)) {
654
0
                    continue;
655
0
                }
656
0
                if (!_exists_in_file(pred->col_name()) || !_type_matches(pred->column_id())) {
657
0
                    continue;
658
0
                }
659
0
                and_pred->add_column_predicate(
660
0
                        SingleColumnBlockPredicate::create_unique(pred->clone(pred->column_id())));
661
0
            }
662
0
        }
663
0
        if (and_pred->num_of_column_predicate() > 0) {
664
0
            _push_down_predicates.push_back(std::move(and_pred));
665
0
        }
666
0
    }
667
170
}
668
669
void ParquetReader::_classify_columns_for_lazy_read(
670
        const std::unordered_map<std::string, std::pair<uint32_t, int>>&
671
                predicate_conjuncts_columns,
672
        const std::unordered_map<std::string, std::tuple<std::string, const SlotDescriptor*>>&
673
                partition_columns,
674
170
        const std::unordered_map<std::string, VExprContextSPtr>& missing_columns) {
675
170
    const FieldDescriptor& schema = _file_metadata->schema();
676
170
    auto predicate_columns = predicate_conjuncts_columns;
677
#ifndef BE_TEST
678
    for (const auto& [col_name, _] : _generated_col_handlers) {
679
        int slot_id = -1;
680
        for (auto slot : _tuple_descriptor->slots()) {
681
            if (slot->col_name() == col_name) {
682
                slot_id = slot->id();
683
                break;
684
            }
685
        }
686
        DCHECK(slot_id != -1) << "slot id should not be -1 for generated column: " << col_name;
687
        auto column_index = _row_descriptor->get_column_id(slot_id);
688
        if (column_index == 0) {
689
            _lazy_read_ctx.resize_first_column = false;
690
        }
691
        // assume generated columns are only used for predicate push down.
692
        predicate_columns.emplace(col_name, std::make_pair(column_index, slot_id));
693
    }
694
695
    for (const auto& [col_name, _] : _synthesized_col_handlers) {
696
        int slot_id = -1;
697
        for (auto slot : _tuple_descriptor->slots()) {
698
            if (slot->col_name() == col_name) {
699
                slot_id = slot->id();
700
                break;
701
            }
702
        }
703
        DCHECK(slot_id != -1) << "slot id should not be -1 for synthesized column: " << col_name;
704
        auto column_index = _row_descriptor->get_column_id(slot_id);
705
        if (column_index == 0) {
706
            _lazy_read_ctx.resize_first_column = false;
707
        }
708
        // synthesized columns always fill data on first phase.
709
        _lazy_read_ctx.all_predicate_col_ids.emplace_back(column_index);
710
    }
711
#endif
712
1.08k
    for (auto& read_table_col : _read_table_columns) {
713
1.08k
        _lazy_read_ctx.all_read_columns.emplace_back(read_table_col);
714
715
1.08k
        auto file_column_name = _table_info_node_ptr->children_file_column_name(read_table_col);
716
1.08k
        PrimitiveType column_type =
717
1.08k
                schema.get_column(file_column_name)->data_type->get_primitive_type();
718
1.08k
        if (is_complex_type(column_type)) {
719
8
            _lazy_read_ctx.has_complex_type = true;
720
8
        }
721
1.08k
        if (predicate_columns.size() > 0) {
722
24
            auto iter = predicate_columns.find(read_table_col);
723
24
            if (iter == predicate_columns.end()) {
724
8
                _lazy_read_ctx.lazy_read_columns.emplace_back(read_table_col);
725
16
            } else {
726
16
                _lazy_read_ctx.predicate_columns.first.emplace_back(iter->first);
727
16
                _lazy_read_ctx.predicate_columns.second.emplace_back(iter->second.second);
728
16
                _lazy_read_ctx.all_predicate_col_ids.emplace_back(iter->second.first);
729
16
            }
730
24
        }
731
1.08k
    }
732
733
170
    for (auto& kv : partition_columns) {
734
10
        auto iter = predicate_columns.find(kv.first);
735
10
        if (iter == predicate_columns.end()) {
736
0
            _lazy_read_ctx.partition_columns.emplace(kv.first, kv.second);
737
10
        } else {
738
10
            _lazy_read_ctx.predicate_partition_columns.emplace(kv.first, kv.second);
739
10
            _lazy_read_ctx.all_predicate_col_ids.emplace_back(iter->second.first);
740
10
        }
741
10
    }
742
743
170
    for (auto& kv : missing_columns) {
744
0
        auto iter = predicate_columns.find(kv.first);
745
0
        if (iter != predicate_columns.end()) {
746
            //For check missing column :   missing column == xx, missing column is null,missing column is not null.
747
0
            if (_slot_id_to_filter_conjuncts->find(iter->second.second) !=
748
0
                _slot_id_to_filter_conjuncts->end()) {
749
0
                for (auto& ctx : _slot_id_to_filter_conjuncts->find(iter->second.second)->second) {
750
0
                    _lazy_read_ctx.missing_columns_conjuncts.emplace_back(ctx);
751
0
                }
752
0
            }
753
0
            _lazy_read_ctx.predicate_missing_columns.emplace(kv.first, kv.second);
754
0
            _lazy_read_ctx.all_predicate_col_ids.emplace_back(iter->second.first);
755
0
        } else {
756
0
            _lazy_read_ctx.missing_columns.emplace(kv.first, kv.second);
757
0
        }
758
0
    }
759
760
170
    if (_enable_lazy_mat && _lazy_read_ctx.predicate_columns.first.size() > 0 &&
761
170
        _lazy_read_ctx.lazy_read_columns.size() > 0) {
762
4
        _lazy_read_ctx.can_lazy_read = true;
763
4
    }
764
765
170
    if (!_lazy_read_ctx.can_lazy_read) {
766
166
        for (auto& kv : _lazy_read_ctx.predicate_partition_columns) {
767
6
            _lazy_read_ctx.partition_columns.emplace(kv.first, kv.second);
768
6
        }
769
166
        for (auto& kv : _lazy_read_ctx.predicate_missing_columns) {
770
0
            _lazy_read_ctx.missing_columns.emplace(kv.first, kv.second);
771
0
        }
772
166
    }
773
170
}
774
775
// init file reader and file metadata for parsing schema
776
4
Status ParquetReader::init_schema_reader() {
777
4
    RETURN_IF_ERROR(_open_file());
778
4
    _t_metadata = &(_file_metadata->to_thrift());
779
4
    return Status::OK();
780
4
}
781
782
Status ParquetReader::get_parsed_schema(std::vector<std::string>* col_names,
783
0
                                        std::vector<DataTypePtr>* col_types) {
784
0
    _total_groups = _t_metadata->row_groups.size();
785
0
    auto schema_desc = _file_metadata->schema();
786
0
    for (int i = 0; i < schema_desc.size(); ++i) {
787
        // Get the Column Reader for the boolean column
788
0
        col_names->emplace_back(schema_desc.get_column(i)->name);
789
0
        col_types->emplace_back(make_nullable(schema_desc.get_column(i)->data_type));
790
0
    }
791
0
    return Status::OK();
792
0
}
793
794
Status ParquetReader::_get_columns_impl(
795
28
        std::unordered_map<std::string, DataTypePtr>* name_to_type) {
796
28
    const auto& schema_desc = _file_metadata->schema();
797
28
    std::unordered_set<std::string> column_names;
798
28
    schema_desc.get_column_names(&column_names);
799
420
    for (auto& name : column_names) {
800
420
        auto field = schema_desc.get_column(name);
801
420
        name_to_type->emplace(name, field->data_type);
802
420
    }
803
28
    return Status::OK();
804
28
}
805
806
194
Status ParquetReader::_do_get_next_block(Block* block, size_t* read_rows, bool* eof) {
807
194
    if (_current_group_reader == nullptr || _row_group_eof) {
808
94
        Status st = _next_row_group_reader();
809
94
        if (!st.ok() && !st.is<ErrorCode::END_OF_FILE>()) {
810
0
            return st;
811
0
        }
812
94
        if (_current_group_reader == nullptr || _row_group_eof || st.is<ErrorCode::END_OF_FILE>()) {
813
8
            _current_group_reader.reset(nullptr);
814
8
            _row_group_eof = true;
815
8
            *read_rows = 0;
816
8
            *eof = true;
817
8
            return Status::OK();
818
8
        }
819
94
    }
820
821
    // Limit memory per batch for load paths.
822
    // _load_bytes_per_row is updated after each batch so the *next* call pre-shrinks _batch_size
823
    // before reading, ensuring the current batch is already within the limit (from call 2 onward).
824
186
    const int64_t max_block_bytes =
825
186
            (_state != nullptr && _state->query_type() == TQueryType::LOAD &&
826
186
             config::load_reader_max_block_bytes > 0)
827
186
                    ? config::load_reader_max_block_bytes
828
186
                    : 0;
829
186
    if (max_block_bytes > 0 && _load_bytes_per_row > 0) {
830
0
        _batch_size = std::max((size_t)1,
831
0
                               (size_t)((int64_t)max_block_bytes / (int64_t)_load_bytes_per_row));
832
0
    }
833
834
186
    SCOPED_RAW_TIMER(&_reader_statistics.column_read_time);
835
186
    Status batch_st =
836
186
            _current_group_reader->next_batch(block, _batch_size, read_rows, &_row_group_eof);
837
186
    if (batch_st.is<ErrorCode::END_OF_FILE>()) {
838
0
        block->clear_column_data();
839
0
        _current_group_reader.reset(nullptr);
840
0
        *read_rows = 0;
841
0
        *eof = true;
842
0
        return Status::OK();
843
0
    }
844
845
186
    if (!batch_st.ok()) {
846
0
        return Status::InternalError("Read parquet file {} failed, reason = {}", _scan_range.path,
847
0
                                     batch_st.to_string());
848
0
    }
849
850
186
    if (max_block_bytes > 0 && *read_rows > 0) {
851
0
        _load_bytes_per_row = block->bytes() / *read_rows;
852
0
    }
853
854
186
    if (_row_group_eof) {
855
86
        auto column_st = _current_group_reader->merged_column_statistics();
856
86
        _column_statistics.merge(column_st);
857
86
        _reader_statistics.lazy_read_filtered_rows +=
858
86
                _current_group_reader->lazy_read_filtered_rows();
859
86
        _reader_statistics.predicate_filter_time += _current_group_reader->predicate_filter_time();
860
86
        _reader_statistics.dict_filter_rewrite_time +=
861
86
                _current_group_reader->dict_filter_rewrite_time();
862
86
        if (_io_ctx) {
863
48
            _io_ctx->condition_cache_filtered_rows +=
864
48
                    _current_group_reader->condition_cache_filtered_rows();
865
48
        }
866
867
86
        if (_current_row_group_index.row_group_id + 1 == _total_groups) {
868
84
            *eof = true;
869
84
        } else {
870
2
            *eof = false;
871
2
        }
872
86
    }
873
186
    return Status::OK();
874
186
}
875
876
RowGroupReader::PositionDeleteContext ParquetReader::_get_position_delete_ctx(
877
86
        const tparquet::RowGroup& row_group, const RowGroupReader::RowGroupIndex& row_group_index) {
878
86
    if (_deletion_vector != nullptr) {
879
0
        _row_group_deletion_vector_rows.clear();
880
0
        auto it = _deletion_vector->begin();
881
0
        it.move(cast_set<uint64_t>(row_group_index.first_row));
882
0
        const auto end = _deletion_vector->end();
883
0
        while (it != end && *it < cast_set<uint64_t>(row_group_index.last_row)) {
884
0
            _row_group_deletion_vector_rows.push_back(cast_set<int64_t>(*it));
885
0
            ++it;
886
0
        }
887
        // Iceberg may plan a DV together with older position delete files. Preserve both sources
888
        // while keeping only the current row group's temporary expansion.
889
0
        if (_delete_rows != nullptr) {
890
0
            const auto position_begin = std::lower_bound(_delete_rows->begin(), _delete_rows->end(),
891
0
                                                         row_group_index.first_row);
892
0
            const auto position_end =
893
0
                    std::lower_bound(position_begin, _delete_rows->end(), row_group_index.last_row);
894
0
            _row_group_deletion_vector_rows.insert(_row_group_deletion_vector_rows.end(),
895
0
                                                   position_begin, position_end);
896
0
            std::ranges::sort(_row_group_deletion_vector_rows);
897
0
            auto unique_end = std::ranges::unique(_row_group_deletion_vector_rows).begin();
898
0
            _row_group_deletion_vector_rows.erase(unique_end,
899
0
                                                  _row_group_deletion_vector_rows.end());
900
0
        }
901
0
        return RowGroupReader::PositionDeleteContext(
902
0
                _row_group_deletion_vector_rows, row_group.num_rows, row_group_index.first_row, 0,
903
0
                cast_set<int64_t>(_row_group_deletion_vector_rows.size()));
904
0
    }
905
86
    if (_delete_rows == nullptr) {
906
86
        return RowGroupReader::PositionDeleteContext(row_group.num_rows, row_group_index.first_row);
907
86
    }
908
0
    const int64_t* delete_rows = &(*_delete_rows)[0];
909
0
    const int64_t* delete_rows_end = delete_rows + _delete_rows->size();
910
0
    const int64_t* start_pos = std::lower_bound(delete_rows + _delete_rows_index, delete_rows_end,
911
0
                                                row_group_index.first_row);
912
0
    int64_t start_index = start_pos - delete_rows;
913
0
    const int64_t* end_pos = std::lower_bound(start_pos, delete_rows_end, row_group_index.last_row);
914
0
    int64_t end_index = end_pos - delete_rows;
915
0
    _delete_rows_index = end_index;
916
0
    return RowGroupReader::PositionDeleteContext(*_delete_rows, row_group.num_rows,
917
0
                                                 row_group_index.first_row, start_index, end_index);
918
86
}
919
920
94
Status ParquetReader::_next_row_group_reader() {
921
94
    if (_current_group_reader != nullptr) {
922
2
        _current_group_reader->collect_profile_before_close();
923
2
    }
924
925
94
    RowRanges candidate_row_ranges;
926
102
    while (++_current_row_group_index.row_group_id < _total_groups) {
927
94
        const auto& row_group = _t_metadata->row_groups[_current_row_group_index.row_group_id];
928
94
        _current_row_group_index.first_row = _current_row_group_index.last_row;
929
94
        _current_row_group_index.last_row = _current_row_group_index.last_row + row_group.num_rows;
930
931
94
        if (_filter_groups && _is_misaligned_range_group(row_group)) {
932
0
            continue;
933
0
        }
934
935
94
        candidate_row_ranges.clear();
936
        // The range of lines to be read is determined by the push down predicate.
937
94
        RETURN_IF_ERROR(_process_min_max_bloom_filter(
938
94
                _current_row_group_index, row_group, _push_down_predicates, &candidate_row_ranges));
939
940
94
        std::function<int64_t(const FieldSchema*)> column_compressed_size =
941
308
                [&row_group, &column_compressed_size](const FieldSchema* field) -> int64_t {
942
308
            if (field->physical_column_index >= 0) {
943
276
                int parquet_col_id = field->physical_column_index;
944
276
                if (row_group.columns[parquet_col_id].__isset.meta_data) {
945
276
                    return row_group.columns[parquet_col_id].meta_data.total_compressed_size;
946
276
                }
947
0
                return 0;
948
276
            }
949
32
            int64_t size = 0;
950
64
            for (const FieldSchema& child : field->children) {
951
64
                size += column_compressed_size(&child);
952
64
            }
953
32
            return size;
954
308
        };
955
94
        int64_t group_size = 0; // only calculate the needed columns
956
244
        for (auto& read_col : _read_file_columns) {
957
244
            const FieldSchema* field = _file_metadata->schema().get_column(read_col);
958
244
            group_size += column_compressed_size(field);
959
244
        }
960
961
94
        _reader_statistics.read_rows += candidate_row_ranges.count();
962
94
        if (_io_ctx && _io_ctx->file_reader_stats) {
963
36
            _io_ctx->file_reader_stats->read_rows += candidate_row_ranges.count();
964
36
        }
965
966
94
        if (candidate_row_ranges.count() != 0) {
967
            // need read this row group.
968
86
            _reader_statistics.read_row_groups++;
969
86
            _reader_statistics.filtered_page_rows +=
970
86
                    row_group.num_rows - candidate_row_ranges.count();
971
86
            break;
972
86
        } else {
973
            // this row group be filtered.
974
8
            _reader_statistics.filtered_row_groups++;
975
8
            _reader_statistics.filtered_bytes += group_size;
976
8
            _reader_statistics.filtered_group_rows += row_group.num_rows;
977
8
        }
978
94
    }
979
980
94
    if (_current_row_group_index.row_group_id == _total_groups) {
981
8
        _row_group_eof = true;
982
8
        _current_group_reader.reset(nullptr);
983
8
        return Status::EndOfFile("No next RowGroupReader");
984
8
    }
985
986
    // process page index and generate the ranges to read
987
86
    auto& row_group = _t_metadata->row_groups[_current_row_group_index.row_group_id];
988
989
86
    RowGroupReader::PositionDeleteContext position_delete_ctx =
990
86
            _get_position_delete_ctx(row_group, _current_row_group_index);
991
86
    io::FileReaderSPtr group_file_reader;
992
86
    if (typeid_cast<io::InMemoryFileReader*>(_file_reader.get())) {
993
        // InMemoryFileReader has the ability to merge small IO
994
0
        group_file_reader = _file_reader;
995
86
    } else {
996
86
        size_t avg_io_size = 0;
997
86
        const std::vector<io::PrefetchRange> io_ranges =
998
86
                _generate_random_access_ranges(_current_row_group_index, &avg_io_size);
999
86
        int64_t merged_read_slice_size = -1;
1000
86
        if (_state != nullptr && _state->query_options().__isset.merge_read_slice_size) {
1001
62
            merged_read_slice_size = _state->query_options().merge_read_slice_size;
1002
62
        }
1003
        // The underlying page reader will prefetch data in column.
1004
        // Using both MergeRangeFileReader and BufferedStreamReader simultaneously would waste a lot of memory.
1005
86
        group_file_reader =
1006
86
                avg_io_size < io::MergeRangeFileReader::SMALL_IO
1007
86
                        ? std::make_shared<io::MergeRangeFileReader>(
1008
86
                                  _profile, _file_reader, io_ranges, merged_read_slice_size)
1009
86
                        : _file_reader;
1010
86
    }
1011
86
    _current_group_reader.reset(new RowGroupReader(
1012
86
            _io_ctx && _io_ctx->file_reader_stats
1013
86
                    ? std::make_shared<io::TracingFileReader>(group_file_reader,
1014
36
                                                              _io_ctx->file_reader_stats)
1015
86
                    : group_file_reader,
1016
86
            _read_table_columns, _current_row_group_index.row_group_id, row_group, _ctz, _io_ctx,
1017
86
            position_delete_ctx, _lazy_read_ctx, _state, _column_ids, _filter_column_ids));
1018
86
    _row_group_eof = false;
1019
1020
86
    _current_group_reader->set_current_row_group_idx(_current_row_group_index);
1021
86
    _current_group_reader->set_col_name_to_block_idx(_col_name_to_block_idx);
1022
86
    if (_condition_cache_ctx) {
1023
0
        _current_group_reader->set_condition_cache_context(_condition_cache_ctx);
1024
0
    }
1025
86
    _current_group_reader->set_table_format_reader(this);
1026
1027
86
    _current_group_reader->_table_info_node_ptr = _table_info_node_ptr;
1028
86
    return _current_group_reader->init(_file_metadata->schema(), candidate_row_ranges, _col_offsets,
1029
86
                                       _tuple_descriptor, _row_descriptor, _colname_to_slot_id,
1030
86
                                       _not_single_slot_filter_conjuncts,
1031
86
                                       _slot_id_to_filter_conjuncts);
1032
94
}
1033
1034
std::vector<io::PrefetchRange> ParquetReader::_generate_random_access_ranges(
1035
86
        const RowGroupReader::RowGroupIndex& group, size_t* avg_io_size) {
1036
86
    std::vector<io::PrefetchRange> result;
1037
86
    int64_t last_chunk_end = -1;
1038
86
    size_t total_io_size = 0;
1039
86
    std::function<void(const FieldSchema*, const tparquet::RowGroup&)> scalar_range =
1040
288
            [&](const FieldSchema* field, const tparquet::RowGroup& row_group) {
1041
288
                if (_column_ids.empty() ||
1042
288
                    _column_ids.find(field->get_column_id()) != _column_ids.end()) {
1043
280
                    if (field->data_type->get_primitive_type() == TYPE_ARRAY) {
1044
4
                        scalar_range(&field->children[0], row_group);
1045
276
                    } else if (field->data_type->get_primitive_type() == TYPE_MAP) {
1046
0
                        scalar_range(&field->children[0], row_group);
1047
0
                        scalar_range(&field->children[1], row_group);
1048
276
                    } else if (field->data_type->get_primitive_type() == TYPE_STRUCT) {
1049
82
                        for (int i = 0; i < field->children.size(); ++i) {
1050
56
                            scalar_range(&field->children[i], row_group);
1051
56
                        }
1052
250
                    } else {
1053
250
                        const tparquet::ColumnChunk& chunk =
1054
250
                                row_group.columns[field->physical_column_index];
1055
250
                        auto& chunk_meta = chunk.meta_data;
1056
250
                        int64_t chunk_start = has_dict_page(chunk_meta)
1057
250
                                                      ? chunk_meta.dictionary_page_offset
1058
250
                                                      : chunk_meta.data_page_offset;
1059
250
                        int64_t chunk_end = chunk_start + chunk_meta.total_compressed_size;
1060
250
                        DCHECK_GE(chunk_start, last_chunk_end);
1061
250
                        result.emplace_back(chunk_start, chunk_end);
1062
250
                        total_io_size += chunk_meta.total_compressed_size;
1063
250
                        last_chunk_end = chunk_end;
1064
250
                    }
1065
280
                }
1066
288
            };
1067
86
    const tparquet::RowGroup& row_group = _t_metadata->row_groups[group.row_group_id];
1068
228
    for (const auto& read_col : _read_file_columns) {
1069
228
        const FieldSchema* field = _file_metadata->schema().get_column(read_col);
1070
228
        scalar_range(field, row_group);
1071
228
    }
1072
86
    if (!result.empty()) {
1073
84
        *avg_io_size = total_io_size / result.size();
1074
84
    }
1075
86
    return result;
1076
86
}
1077
1078
82
bool ParquetReader::_is_misaligned_range_group(const tparquet::RowGroup& row_group) const {
1079
82
    int64_t start_offset = _get_column_start_offset(row_group.columns[0].meta_data);
1080
1081
82
    auto& last_column = row_group.columns[row_group.columns.size() - 1].meta_data;
1082
82
    int64_t end_offset = _get_column_start_offset(last_column) + last_column.total_compressed_size;
1083
1084
82
    int64_t row_group_mid = start_offset + (end_offset - start_offset) / 2;
1085
82
    if (!(row_group_mid >= _range_start_offset &&
1086
82
          row_group_mid < _range_start_offset + _range_size)) {
1087
0
        return true;
1088
0
    }
1089
82
    return false;
1090
82
}
1091
1092
0
int64_t ParquetReader::get_total_rows() const {
1093
0
    if (!_t_metadata) return 0;
1094
0
    if (!_filter_groups) return _t_metadata->num_rows;
1095
0
    int64_t total = 0;
1096
0
    for (const auto& rg : _t_metadata->row_groups) {
1097
0
        if (!_is_misaligned_range_group(rg)) {
1098
0
            total += rg.num_rows;
1099
0
        }
1100
0
    }
1101
0
    return total;
1102
0
}
1103
1104
0
void ParquetReader::set_condition_cache_context(std::shared_ptr<ConditionCacheContext> ctx) {
1105
0
    _condition_cache_ctx = std::move(ctx);
1106
0
    if (!_condition_cache_ctx || !_t_metadata || !_filter_groups) {
1107
0
        return;
1108
0
    }
1109
    // Find the first assigned row group to compute base_granule.
1110
0
    int64_t first_row = 0;
1111
0
    for (const auto& rg : _t_metadata->row_groups) {
1112
0
        if (!_is_misaligned_range_group(rg)) {
1113
0
            _condition_cache_ctx->base_granule = first_row / ConditionCacheContext::GRANULE_SIZE;
1114
0
            return;
1115
0
        }
1116
0
        first_row += rg.num_rows;
1117
0
    }
1118
0
}
1119
1120
bool ParquetReader::_expr_zonemap_page_slot_index(const VExprContextSPtr& conjunct,
1121
22
                                                  int* cid) const {
1122
22
    DORIS_CHECK(cid != nullptr);
1123
22
    if (conjunct == nullptr || conjunct->root() == nullptr ||
1124
22
        !conjunct->root()->can_evaluate_zonemap_filter()) {
1125
2
        return false;
1126
2
    }
1127
1128
20
    std::set<int> column_ids;
1129
20
    conjunct->root()->collect_slot_column_ids(column_ids);
1130
20
    if (column_ids.size() != 1) {
1131
2
        return false;
1132
2
    }
1133
1134
18
    const int slot_index = *column_ids.begin();
1135
18
    if (slot_index < 0 || static_cast<size_t>(slot_index) >= _tuple_descriptor->slots().size()) {
1136
2
        return false;
1137
2
    }
1138
16
    auto* slot = _tuple_descriptor->slots()[slot_index];
1139
16
    if (!_exists_in_file(slot->col_name()) || !_type_matches(slot_index)) {
1140
0
        return false;
1141
0
    }
1142
1143
16
    *cid = slot_index;
1144
16
    return true;
1145
16
}
1146
1147
4
bool ParquetReader::_has_expr_zonemap_page_filter() const {
1148
4
    if (!expr_zonemap::is_expr_zonemap_filter_enabled(_state)) {
1149
0
        return false;
1150
0
    }
1151
4
    return std::ranges::any_of(_lazy_read_ctx.conjuncts, [this](const auto& conjunct) {
1152
4
        int cid = -1;
1153
4
        return _expr_zonemap_page_slot_index(conjunct, &cid);
1154
4
    });
1155
4
}
1156
1157
Status ParquetReader::_process_page_index_filter(
1158
        const tparquet::RowGroup& row_group, const RowGroupReader::RowGroupIndex& row_group_index,
1159
        const std::vector<std::unique_ptr<MutilColumnBlockPredicate>>& push_down_pred,
1160
40
        RowRanges* candidate_row_ranges) {
1161
40
    if (UNLIKELY(_io_ctx && _io_ctx->should_stop)) {
1162
0
        return Status::EndOfFile("stop");
1163
0
    }
1164
1165
40
    std::function<void()> read_whole_row_group = [&]() {
1166
38
        candidate_row_ranges->add(RowRange {0, row_group.num_rows});
1167
38
    };
1168
1169
    // Check if the page index is available and if it exists.
1170
40
    PageIndex page_index;
1171
40
    if (!config::enable_parquet_page_index || _colname_to_slot_id == nullptr ||
1172
40
        !page_index.check_and_get_page_index_ranges(row_group.columns)) {
1173
36
        read_whole_row_group();
1174
36
        return Status::OK();
1175
36
    }
1176
1177
4
    std::vector<int> parquet_col_ids;
1178
48
    for (size_t idx = 0; idx < _read_table_columns.size(); idx++) {
1179
44
        const auto& read_table_col = _read_table_columns[idx];
1180
44
        const auto& read_file_col = _read_file_columns[idx];
1181
44
        if (!_colname_to_slot_id->contains(read_table_col)) {
1182
40
            continue;
1183
40
        }
1184
4
        auto* field = _file_metadata->schema().get_column(read_file_col);
1185
1186
4
        std::function<void(FieldSchema * field)> f = [&](FieldSchema* field) {
1187
4
            if (!_column_ids.empty() &&
1188
4
                _column_ids.find(field->get_column_id()) == _column_ids.end()) {
1189
0
                return;
1190
0
            }
1191
1192
4
            if (field->data_type->get_primitive_type() == TYPE_ARRAY) {
1193
0
                f(&field->children[0]);
1194
4
            } else if (field->data_type->get_primitive_type() == TYPE_MAP) {
1195
0
                f(&field->children[0]);
1196
0
                f(&field->children[1]);
1197
4
            } else if (field->data_type->get_primitive_type() == TYPE_STRUCT) {
1198
0
                for (int i = 0; i < field->children.size(); ++i) {
1199
0
                    f(&field->children[i]);
1200
0
                }
1201
4
            } else {
1202
4
                int parquet_col_id = field->physical_column_index;
1203
4
                if (parquet_col_id >= 0) {
1204
4
                    parquet_col_ids.push_back(parquet_col_id);
1205
4
                }
1206
4
            }
1207
4
        };
1208
1209
4
        f(field);
1210
4
    }
1211
1212
4
    auto parse_offset_index = [&]() -> Status {
1213
4
        std::vector<uint8_t> off_index_buff(page_index._offset_index_size);
1214
4
        Slice res(off_index_buff.data(), page_index._offset_index_size);
1215
4
        size_t bytes_read = 0;
1216
4
        {
1217
4
            SCOPED_RAW_TIMER(&_reader_statistics.read_page_index_time);
1218
4
            RETURN_IF_ERROR(_tracing_file_reader->read_at(page_index._offset_index_start, res,
1219
4
                                                          &bytes_read, _io_ctx));
1220
4
        }
1221
4
        _column_statistics.page_index_read_calls++;
1222
4
        _col_offsets.clear();
1223
1224
4
        for (auto parquet_col_id : parquet_col_ids) {
1225
4
            auto& chunk = row_group.columns[parquet_col_id];
1226
4
            if (chunk.offset_index_length == 0) [[unlikely]] {
1227
0
                continue;
1228
0
            }
1229
4
            tparquet::OffsetIndex offset_index;
1230
4
            SCOPED_RAW_TIMER(&_reader_statistics.parse_page_index_time);
1231
4
            RETURN_IF_ERROR(
1232
4
                    page_index.parse_offset_index(chunk, off_index_buff.data(), &offset_index));
1233
4
            _col_offsets[parquet_col_id] = offset_index;
1234
4
        }
1235
4
        return Status::OK();
1236
4
    };
1237
1238
    // from https://github.com/apache/doris/pull/55795
1239
4
    RETURN_IF_ERROR(parse_offset_index());
1240
1241
    // Check if page index is needed for min-max or expr-zonemap filter.
1242
4
    const bool has_expr_zonemap_filter = _has_expr_zonemap_page_filter();
1243
4
    if (!_enable_filter_by_min_max || (push_down_pred.empty() && !has_expr_zonemap_filter)) {
1244
2
        read_whole_row_group();
1245
2
        return Status::OK();
1246
2
    }
1247
1248
    // read column index.
1249
2
    std::vector<uint8_t> col_index_buff(page_index._column_index_size);
1250
2
    size_t bytes_read = 0;
1251
2
    Slice result(col_index_buff.data(), page_index._column_index_size);
1252
2
    {
1253
2
        SCOPED_RAW_TIMER(&_reader_statistics.read_page_index_time);
1254
2
        RETURN_IF_ERROR(_tracing_file_reader->read_at(page_index._column_index_start, result,
1255
2
                                                      &bytes_read, _io_ctx));
1256
2
    }
1257
2
    _column_statistics.page_index_read_calls++;
1258
1259
2
    SCOPED_RAW_TIMER(&_reader_statistics.page_index_filter_time);
1260
1261
    // Construct a cacheable page index structure to avoid repeatedly reading the page index of the same column.
1262
2
    ParquetPredicate::CachedPageIndexStat cached_page_index;
1263
2
    cached_page_index.ctz = _ctz;
1264
2
    std::function<bool(ParquetPredicate::PageIndexStat**, int)> get_stat_func =
1265
2
            [&](ParquetPredicate::PageIndexStat** ans, const int cid) -> bool {
1266
2
        if (cached_page_index.stats.contains(cid)) {
1267
0
            *ans = &cached_page_index.stats[cid];
1268
0
            return (*ans)->available;
1269
0
        }
1270
2
        cached_page_index.stats.emplace(cid, ParquetPredicate::PageIndexStat {});
1271
2
        auto& sig_stat = cached_page_index.stats[cid];
1272
1273
2
        auto* slot = _tuple_descriptor->slots()[cid];
1274
2
        if (!_table_info_node_ptr->children_column_exists(slot->col_name())) {
1275
            // table column not exist in file, may be schema change.
1276
0
            return false;
1277
0
        }
1278
1279
2
        const auto& file_col_name =
1280
2
                _table_info_node_ptr->children_file_column_name(slot->col_name());
1281
2
        const FieldSchema* col_schema = _file_metadata->schema().get_column(file_col_name);
1282
2
        int parquet_col_id = col_schema->physical_column_index;
1283
1284
2
        if (parquet_col_id < 0) {
1285
            // complex type, not support page index yet.
1286
0
            return false;
1287
0
        }
1288
2
        if (!_col_offsets.contains(parquet_col_id)) {
1289
            // If the file contains partition columns and the query applies filters on those
1290
            // partition columns, then reading the page index is unnecessary.
1291
0
            return false;
1292
0
        }
1293
1294
2
        auto& column_chunk = row_group.columns[parquet_col_id];
1295
2
        if (column_chunk.column_index_length == 0 || column_chunk.offset_index_length == 0) {
1296
            // column no page index.
1297
0
            return false;
1298
0
        }
1299
1300
2
        tparquet::ColumnIndex column_index;
1301
2
        {
1302
2
            SCOPED_RAW_TIMER(&_reader_statistics.parse_page_index_time);
1303
2
            RETURN_IF_ERROR(page_index.parse_column_index(column_chunk, col_index_buff.data(),
1304
2
                                                          &column_index));
1305
2
        }
1306
2
        const int64_t num_of_pages = column_index.null_pages.size();
1307
2
        if (num_of_pages <= 0) [[unlikely]] {
1308
            // no page. (maybe this row group no data.)
1309
0
            return false;
1310
0
        }
1311
2
        DCHECK_EQ(column_index.min_values.size(), column_index.max_values.size());
1312
2
        if (!column_index.__isset.null_counts) {
1313
            // not set null or null counts;
1314
0
            return false;
1315
0
        }
1316
1317
2
        auto& offset_index = _col_offsets[parquet_col_id];
1318
2
        const auto& page_locations = offset_index.page_locations;
1319
1320
2
        sig_stat.col_schema = col_schema;
1321
2
        sig_stat.num_of_pages = num_of_pages;
1322
2
        sig_stat.encoded_min_value = column_index.min_values;
1323
2
        sig_stat.encoded_max_value = column_index.max_values;
1324
2
        sig_stat.is_all_null.resize(num_of_pages);
1325
2
        sig_stat.has_null.resize(num_of_pages);
1326
2
        sig_stat.ranges.resize(num_of_pages);
1327
1328
4
        for (int page_id = 0; page_id < num_of_pages; page_id++) {
1329
2
            sig_stat.is_all_null[page_id] = column_index.null_pages[page_id];
1330
2
            sig_stat.has_null[page_id] = column_index.null_counts[page_id] > 0;
1331
1332
2
            int64_t from = page_locations[page_id].first_row_index;
1333
2
            int64_t to = 0;
1334
2
            if (page_id == page_locations.size() - 1) {
1335
2
                to = row_group_index.last_row;
1336
2
            } else {
1337
0
                to = page_locations[page_id + 1].first_row_index;
1338
0
            }
1339
2
            sig_stat.ranges[page_id] = RowRange {from, to};
1340
2
        }
1341
1342
2
        sig_stat.available = true;
1343
2
        *ans = &sig_stat;
1344
2
        return true;
1345
2
    };
1346
2
    cached_page_index.row_group_range = {0, row_group.num_rows};
1347
2
    cached_page_index.get_stat_func = get_stat_func;
1348
1349
2
    candidate_row_ranges->add({0, row_group.num_rows});
1350
2
    for (const auto& predicate : push_down_pred) {
1351
0
        RowRanges tmp_row_range;
1352
0
        if (!predicate->evaluate_and(&cached_page_index, &tmp_row_range)) {
1353
            // no need read this row group.
1354
0
            candidate_row_ranges->clear();
1355
0
            return Status::OK();
1356
0
        }
1357
0
        RowRanges::ranges_intersection(*candidate_row_ranges, tmp_row_range, candidate_row_ranges);
1358
0
    }
1359
2
    bool filtered_row_group_by_expr_zonemap = false;
1360
2
    RETURN_IF_ERROR(_process_expr_zonemap_page_filter(&cached_page_index, candidate_row_ranges,
1361
2
                                                      &filtered_row_group_by_expr_zonemap));
1362
2
    if (filtered_row_group_by_expr_zonemap) {
1363
2
        ++_reader_statistics.filtered_row_groups_by_expr_zonemap;
1364
2
    }
1365
2
    return Status::OK();
1366
2
}
1367
1368
Status ParquetReader::_process_expr_zonemap_page_filter(
1369
        ParquetPredicate::CachedPageIndexStat* cached_page_index, RowRanges* candidate_row_ranges,
1370
16
        bool* filtered_row_group_by_expr_zonemap) {
1371
16
    DORIS_CHECK(cached_page_index != nullptr);
1372
16
    DORIS_CHECK(candidate_row_ranges != nullptr);
1373
16
    DORIS_CHECK(filtered_row_group_by_expr_zonemap != nullptr);
1374
16
    *filtered_row_group_by_expr_zonemap = false;
1375
16
    const auto& all_conjuncts = _lazy_read_ctx.conjuncts;
1376
16
    if (!expr_zonemap::is_expr_zonemap_filter_enabled(_state) || all_conjuncts.empty() ||
1377
16
        candidate_row_ranges->is_empty()) {
1378
4
        return Status::OK();
1379
4
    }
1380
1381
12
    std::unordered_map<int, VExprContextSPtrs> ctxs_by_column;
1382
18
    for (const auto& conjunct : all_conjuncts) {
1383
18
        int cid = -1;
1384
18
        if (_expr_zonemap_page_slot_index(conjunct, &cid)) {
1385
14
            ctxs_by_column[cid].emplace_back(conjunct);
1386
14
        }
1387
18
    }
1388
1389
14
    for (const auto& [cid, conjuncts] : ctxs_by_column) {
1390
14
        auto* slot = _tuple_descriptor->slots()[cid];
1391
14
        ParquetPredicate::PageIndexStat* stat = nullptr;
1392
14
        if (!cached_page_index->get_stat_func(&stat, cid) || stat == nullptr || !stat->available) {
1393
2
            continue;
1394
2
        }
1395
12
        RowRanges expr_ranges;
1396
12
        ZoneMapEvalStats page_stats;
1397
40
        for (int64_t page_id = 0; page_id < stat->num_of_pages; ++page_id) {
1398
28
            DORIS_CHECK_LT(page_id, stat->ranges.size());
1399
28
            DORIS_CHECK_LT(page_id, stat->has_null.size());
1400
28
            DORIS_CHECK_LT(page_id, stat->is_all_null.size());
1401
28
            const auto& page_range = stat->ranges[page_id];
1402
28
            DORIS_CHECK(page_range.is_valid());
1403
1404
28
            ZoneMapEvalContext ctx;
1405
28
            ZoneMapEvalContext::SlotZoneMap slot_zone_map;
1406
28
            slot_zone_map.data_type = slot->type();
1407
28
            segment_v2::ZoneMap zone_map;
1408
28
            zone_map.has_null = stat->has_null[page_id];
1409
28
            zone_map.has_not_null = !stat->is_all_null[page_id];
1410
28
            if (!stat->is_all_null[page_id]) {
1411
26
                DORIS_CHECK_LT(page_id, stat->encoded_min_value.size());
1412
26
                DORIS_CHECK_LT(page_id, stat->encoded_max_value.size());
1413
26
                Status status = ParquetPredicate::parse_min_max_value(
1414
26
                        stat->col_schema, stat->encoded_min_value[page_id],
1415
26
                        stat->encoded_max_value[page_id], *cached_page_index->ctz,
1416
26
                        &zone_map.min_value, &zone_map.max_value);
1417
26
                if (status.ok()) {
1418
26
                    slot_zone_map.zone_map =
1419
26
                            std::make_shared<segment_v2::ZoneMap>(std::move(zone_map));
1420
26
                }
1421
26
            } else {
1422
2
                slot_zone_map.zone_map = std::make_shared<segment_v2::ZoneMap>(std::move(zone_map));
1423
2
            }
1424
28
            ctx.slots.emplace(cid, std::move(slot_zone_map));
1425
28
            const auto result = VExprContext::evaluate_zonemap_filter(conjuncts, ctx);
1426
28
            page_stats.merge_page_eval_stats(ctx.stats);
1427
28
            if (result != ZoneMapFilterResult::kNoMatch) {
1428
16
                expr_ranges.add(page_range);
1429
16
            }
1430
28
        }
1431
12
        page_stats.accumulate_to(&_reader_statistics);
1432
12
        const auto before_expr_page_count = candidate_row_ranges->count();
1433
12
        RowRanges::ranges_intersection(*candidate_row_ranges, expr_ranges, candidate_row_ranges);
1434
12
        if (before_expr_page_count > 0 && candidate_row_ranges->is_empty()) {
1435
2
            *filtered_row_group_by_expr_zonemap = true;
1436
2
            return Status::OK();
1437
2
        }
1438
12
    }
1439
10
    return Status::OK();
1440
12
}
1441
1442
Status ParquetReader::_process_min_max_bloom_filter(
1443
        const RowGroupReader::RowGroupIndex& row_group_index, const tparquet::RowGroup& row_group,
1444
        const std::vector<std::unique_ptr<MutilColumnBlockPredicate>>& push_down_pred,
1445
94
        RowRanges* row_ranges) {
1446
94
    SCOPED_RAW_TIMER(&_reader_statistics.row_group_filter_time);
1447
94
    if (!_filter_groups) {
1448
        // No row group filtering is needed;
1449
        // for example, Iceberg reads position delete files.
1450
12
        row_ranges->add({0, row_group.num_rows});
1451
12
        return Status::OK();
1452
12
    }
1453
1454
82
    if (_read_by_rows) {
1455
38
        auto group_start = row_group_index.first_row;
1456
38
        auto group_end = row_group_index.last_row;
1457
1458
94
        while (!_row_ids.empty()) {
1459
56
            auto v = _row_ids.front();
1460
56
            if (v < group_start) {
1461
0
                continue;
1462
56
            } else if (v < group_end) {
1463
56
                row_ranges->add(RowRange {v - group_start, v - group_start + 1});
1464
56
                _row_ids.pop_front();
1465
56
            } else {
1466
0
                break;
1467
0
            }
1468
56
        }
1469
44
    } else {
1470
44
        bool filter_this_row_group = false;
1471
44
        bool filtered_by_min_max = false;
1472
44
        bool filtered_by_bloom_filter = false;
1473
44
        RETURN_IF_ERROR(_process_column_stat_filter(row_group, push_down_pred,
1474
44
                                                    &filter_this_row_group, &filtered_by_min_max,
1475
44
                                                    &filtered_by_bloom_filter));
1476
44
        if (!filter_this_row_group) {
1477
44
            RETURN_IF_ERROR(_process_expr_zonemap_filter(row_group, &filter_this_row_group));
1478
44
        }
1479
        // Update statistics based on filter type
1480
44
        if (filter_this_row_group) {
1481
8
            if (filtered_by_min_max) {
1482
0
                _reader_statistics.filtered_row_groups_by_min_max++;
1483
0
            }
1484
8
            if (filtered_by_bloom_filter) {
1485
0
                _reader_statistics.filtered_row_groups_by_bloom_filter++;
1486
0
            }
1487
8
        }
1488
1489
44
        if (!filter_this_row_group) {
1490
36
            RETURN_IF_ERROR(_process_page_index_filter(row_group, row_group_index, push_down_pred,
1491
36
                                                       row_ranges));
1492
36
        }
1493
44
    }
1494
1495
82
    return Status::OK();
1496
82
}
1497
1498
Status ParquetReader::_process_column_stat_filter(
1499
        const tparquet::RowGroup& row_group,
1500
        const std::vector<std::unique_ptr<MutilColumnBlockPredicate>>& push_down_pred,
1501
48
        bool* filter_group, bool* filtered_by_min_max, bool* filtered_by_bloom_filter) {
1502
    // If both filters are disabled, skip filtering
1503
48
    if (!_enable_filter_by_min_max && !_enable_filter_by_bloom_filter) {
1504
0
        return Status::OK();
1505
0
    }
1506
1507
    // Cache bloom filters for each column to avoid reading the same bloom filter multiple times
1508
    // when there are multiple predicates on the same column
1509
48
    std::unordered_map<int, std::unique_ptr<ParquetBlockSplitBloomFilter>> bloom_filter_cache;
1510
1511
    // Initialize output parameters
1512
48
    *filtered_by_min_max = false;
1513
48
    *filtered_by_bloom_filter = false;
1514
1515
48
    for (const auto& predicate : _push_down_predicates) {
1516
4
        std::function<bool(ParquetPredicate::ColumnStat*, int)> get_stat_func =
1517
8
                [&](ParquetPredicate::ColumnStat* stat, const int cid) {
1518
                    // Check if min-max filter is enabled
1519
8
                    if (!_enable_filter_by_min_max) {
1520
0
                        return false;
1521
0
                    }
1522
8
                    auto* slot = _tuple_descriptor->slots()[cid];
1523
8
                    if (!_table_info_node_ptr->children_column_exists(slot->col_name())) {
1524
0
                        return false;
1525
0
                    }
1526
8
                    const auto& file_col_name =
1527
8
                            _table_info_node_ptr->children_file_column_name(slot->col_name());
1528
8
                    const FieldSchema* col_schema =
1529
8
                            _file_metadata->schema().get_column(file_col_name);
1530
8
                    int parquet_col_id = col_schema->physical_column_index;
1531
8
                    auto meta_data = row_group.columns[parquet_col_id].meta_data;
1532
8
                    stat->col_schema = col_schema;
1533
8
                    return ParquetPredicate::read_column_stats(col_schema, meta_data,
1534
8
                                                               &_ignored_stats,
1535
8
                                                               _t_metadata->created_by, stat)
1536
8
                            .ok();
1537
8
                };
1538
4
        std::function<bool(ParquetPredicate::ColumnStat*, int)> get_bloom_filter_func =
1539
4
                [&](ParquetPredicate::ColumnStat* stat, const int cid) {
1540
0
                    auto* slot = _tuple_descriptor->slots()[cid];
1541
0
                    if (!_table_info_node_ptr->children_column_exists(slot->col_name())) {
1542
0
                        return false;
1543
0
                    }
1544
0
                    const auto& file_col_name =
1545
0
                            _table_info_node_ptr->children_file_column_name(slot->col_name());
1546
0
                    const FieldSchema* col_schema =
1547
0
                            _file_metadata->schema().get_column(file_col_name);
1548
0
                    int parquet_col_id = col_schema->physical_column_index;
1549
0
                    auto meta_data = row_group.columns[parquet_col_id].meta_data;
1550
0
                    if (!meta_data.__isset.bloom_filter_offset) {
1551
0
                        return false;
1552
0
                    }
1553
0
                    auto primitive_type =
1554
0
                            remove_nullable(col_schema->data_type)->get_primitive_type();
1555
0
                    if (!ParquetPredicate::bloom_filter_supported(primitive_type)) {
1556
0
                        return false;
1557
0
                    }
1558
1559
                    // Check if bloom filter is enabled
1560
0
                    if (!_enable_filter_by_bloom_filter) {
1561
0
                        return false;
1562
0
                    }
1563
1564
                    // Check cache first
1565
0
                    auto cache_iter = bloom_filter_cache.find(parquet_col_id);
1566
0
                    if (cache_iter != bloom_filter_cache.end()) {
1567
                        // Bloom filter already loaded for this column, reuse it
1568
0
                        stat->bloom_filter = std::move(cache_iter->second);
1569
0
                        bloom_filter_cache.erase(cache_iter);
1570
0
                        return stat->bloom_filter != nullptr;
1571
0
                    }
1572
1573
0
                    if (!stat->bloom_filter) {
1574
0
                        SCOPED_RAW_TIMER(&_reader_statistics.bloom_filter_read_time);
1575
0
                        auto st = ParquetPredicate::read_bloom_filter(
1576
0
                                meta_data, _tracing_file_reader, _io_ctx, stat);
1577
0
                        if (!st.ok()) {
1578
0
                            LOG(WARNING) << "Failed to read bloom filter for column "
1579
0
                                         << col_schema->name << " in file " << _scan_range.path
1580
0
                                         << ", status: " << st.to_string();
1581
0
                            stat->bloom_filter.reset();
1582
0
                            return false;
1583
0
                        }
1584
0
                    }
1585
0
                    return stat->bloom_filter != nullptr;
1586
0
                };
1587
4
        ParquetPredicate::ColumnStat stat;
1588
4
        stat.ctz = _ctz;
1589
4
        stat.get_stat_func = &get_stat_func;
1590
4
        stat.get_bloom_filter_func = &get_bloom_filter_func;
1591
1592
4
        if (!predicate->evaluate_and(&stat)) {
1593
2
            *filter_group = true;
1594
1595
            // Track which filter was used for filtering
1596
            // If bloom filter was loaded, it means bloom filter was used
1597
2
            if (stat.bloom_filter) {
1598
0
                *filtered_by_bloom_filter = true;
1599
0
            }
1600
            // If col_schema was set but no bloom filter, it means min-max stats were used
1601
2
            if (stat.col_schema && !stat.bloom_filter) {
1602
2
                *filtered_by_min_max = true;
1603
2
            }
1604
1605
2
            return Status::OK();
1606
2
        }
1607
1608
        // After evaluating, if the bloom filter was used, cache it for subsequent predicates
1609
2
        if (stat.bloom_filter) {
1610
            // Find the column id for caching
1611
0
            for (auto* slot : _tuple_descriptor->slots()) {
1612
0
                if (_table_info_node_ptr->children_column_exists(slot->col_name())) {
1613
0
                    const auto& file_col_name =
1614
0
                            _table_info_node_ptr->children_file_column_name(slot->col_name());
1615
0
                    const FieldSchema* col_schema =
1616
0
                            _file_metadata->schema().get_column(file_col_name);
1617
0
                    int parquet_col_id = col_schema->physical_column_index;
1618
0
                    if (stat.col_schema == col_schema) {
1619
0
                        bloom_filter_cache[parquet_col_id] = std::move(stat.bloom_filter);
1620
0
                        break;
1621
0
                    }
1622
0
                }
1623
0
            }
1624
0
        }
1625
2
    }
1626
1627
    // Update filter statistics if this row group was not filtered
1628
    // The statistics will be updated in _init_row_groups when filter_group is true
1629
46
    return Status::OK();
1630
48
}
1631
1632
Status ParquetReader::_process_expr_zonemap_filter(const tparquet::RowGroup& row_group,
1633
48
                                                   bool* filter_group) {
1634
48
    DORIS_CHECK(filter_group != nullptr);
1635
48
    const auto& all_conjuncts = _lazy_read_ctx.conjuncts;
1636
48
    if (!expr_zonemap::is_expr_zonemap_filter_enabled(_state) || all_conjuncts.empty() ||
1637
48
        !_enable_filter_by_min_max) {
1638
30
        return Status::OK();
1639
30
    }
1640
1641
18
    std::set<int> column_ids;
1642
30
    for (const auto& conjunct : all_conjuncts) {
1643
30
        if (conjunct->root() != nullptr && conjunct->root()->can_evaluate_zonemap_filter()) {
1644
30
            conjunct->root()->collect_slot_column_ids(column_ids);
1645
30
        }
1646
30
    }
1647
18
    if (column_ids.empty()) {
1648
0
        return Status::OK();
1649
0
    }
1650
1651
18
    ZoneMapEvalContext ctx;
1652
30
    for (const int cid : column_ids) {
1653
30
        if (cid < 0 || cid >= _tuple_descriptor->slots().size()) {
1654
0
            continue;
1655
0
        }
1656
30
        auto* slot = _tuple_descriptor->slots()[cid];
1657
30
        ZoneMapEvalContext::SlotZoneMap slot_zone_map;
1658
30
        slot_zone_map.data_type = slot->type();
1659
30
        if (!_exists_in_file(slot->col_name()) || !_type_matches(cid)) {
1660
12
            ctx.slots.emplace(cid, std::move(slot_zone_map));
1661
12
            continue;
1662
12
        }
1663
18
        const auto& file_col_name =
1664
18
                _table_info_node_ptr->children_file_column_name(slot->col_name());
1665
18
        const FieldSchema* col_schema = _file_metadata->schema().get_column(file_col_name);
1666
18
        int parquet_col_id = col_schema->physical_column_index;
1667
18
        if (parquet_col_id < 0) {
1668
            // Complex parent fields do not map to a physical Parquet column.
1669
2
            ctx.slots.emplace(cid, std::move(slot_zone_map));
1670
2
            continue;
1671
2
        }
1672
16
        const auto& meta_data = row_group.columns[parquet_col_id].meta_data;
1673
1674
16
        ParquetPredicate::ColumnStat stat;
1675
16
        stat.ctz = _ctz;
1676
16
        auto status = ParquetPredicate::read_column_stats(col_schema, meta_data, &_ignored_stats,
1677
16
                                                          _t_metadata->created_by, &stat);
1678
16
        if (!status.ok()) {
1679
0
            ctx.slots.emplace(cid, std::move(slot_zone_map));
1680
0
            continue;
1681
0
        }
1682
1683
16
        segment_v2::ZoneMap zone_map;
1684
16
        zone_map.has_null = stat.has_null;
1685
16
        zone_map.has_not_null = !stat.is_all_null;
1686
16
        if (!stat.is_all_null) {
1687
12
            status = ParquetPredicate::parse_min_max_value(
1688
12
                    col_schema, stat.encoded_min_value, stat.encoded_max_value, *_ctz,
1689
12
                    &zone_map.min_value, &zone_map.max_value);
1690
12
            if (!status.ok()) {
1691
0
                ctx.slots.emplace(cid, std::move(slot_zone_map));
1692
0
                continue;
1693
0
            }
1694
12
        }
1695
16
        slot_zone_map.zone_map = std::make_shared<segment_v2::ZoneMap>(std::move(zone_map));
1696
16
        ctx.slots.emplace(cid, std::move(slot_zone_map));
1697
16
    }
1698
1699
18
    const auto result = VExprContext::evaluate_zonemap_filter(all_conjuncts, ctx);
1700
18
    ctx.stats.accumulate_to(&_reader_statistics);
1701
18
    if (result == ZoneMapFilterResult::kNoMatch) {
1702
8
        *filter_group = true;
1703
8
        ++_reader_statistics.filtered_row_groups_by_expr_zonemap;
1704
8
    }
1705
18
    return Status::OK();
1706
18
}
1707
1708
164
int64_t ParquetReader::_get_column_start_offset(const tparquet::ColumnMetaData& column) const {
1709
164
    return has_dict_page(column) ? column.dictionary_page_offset : column.data_page_offset;
1710
164
}
1711
1712
28
void ParquetReader::_collect_profile() {
1713
28
    if (_profile == nullptr) {
1714
0
        return;
1715
0
    }
1716
1717
28
    if (_current_group_reader != nullptr) {
1718
28
        _current_group_reader->collect_profile_before_close();
1719
28
    }
1720
28
    COUNTER_UPDATE(_parquet_profile.filtered_row_groups, _reader_statistics.filtered_row_groups);
1721
28
    COUNTER_UPDATE(_parquet_profile.filtered_row_groups_by_min_max,
1722
28
                   _reader_statistics.filtered_row_groups_by_min_max);
1723
28
    COUNTER_UPDATE(_parquet_profile.filtered_row_groups_by_expr_zonemap,
1724
28
                   _reader_statistics.filtered_row_groups_by_expr_zonemap);
1725
28
    COUNTER_UPDATE(_parquet_profile.filtered_row_groups_by_bloom_filter,
1726
28
                   _reader_statistics.filtered_row_groups_by_bloom_filter);
1727
28
    COUNTER_UPDATE(_parquet_profile.to_read_row_groups, _reader_statistics.read_row_groups);
1728
28
    COUNTER_UPDATE(_parquet_profile.total_row_groups, _total_groups);
1729
28
    COUNTER_UPDATE(_parquet_profile.filtered_group_rows, _reader_statistics.filtered_group_rows);
1730
28
    COUNTER_UPDATE(_parquet_profile.filtered_page_rows, _reader_statistics.filtered_page_rows);
1731
28
    COUNTER_UPDATE(_parquet_profile.lazy_read_filtered_rows,
1732
28
                   _reader_statistics.lazy_read_filtered_rows);
1733
28
    COUNTER_UPDATE(_parquet_profile.filtered_bytes, _reader_statistics.filtered_bytes);
1734
28
    COUNTER_UPDATE(_parquet_profile.raw_rows_read, _reader_statistics.read_rows);
1735
28
    COUNTER_UPDATE(_parquet_profile.column_read_time, _reader_statistics.column_read_time);
1736
28
    COUNTER_UPDATE(_parquet_profile.parse_meta_time, _reader_statistics.parse_meta_time);
1737
28
    COUNTER_UPDATE(_parquet_profile.parse_footer_time, _reader_statistics.parse_footer_time);
1738
28
    COUNTER_UPDATE(_parquet_profile.file_reader_create_time,
1739
28
                   _reader_statistics.file_reader_create_time);
1740
28
    COUNTER_UPDATE(_parquet_profile.open_file_num, _reader_statistics.open_file_num);
1741
28
    COUNTER_UPDATE(_parquet_profile.page_index_filter_time,
1742
28
                   _reader_statistics.page_index_filter_time);
1743
28
    COUNTER_UPDATE(_parquet_profile.read_page_index_time, _reader_statistics.read_page_index_time);
1744
28
    COUNTER_UPDATE(_parquet_profile.parse_page_index_time,
1745
28
                   _reader_statistics.parse_page_index_time);
1746
28
    COUNTER_UPDATE(_parquet_profile.row_group_filter_time,
1747
28
                   _reader_statistics.row_group_filter_time);
1748
28
    COUNTER_UPDATE(_parquet_profile.expr_zonemap_unusable,
1749
28
                   _reader_statistics.expr_zonemap_unusable_evals);
1750
28
    COUNTER_UPDATE(_parquet_profile.in_zonemap_point_check,
1751
28
                   _reader_statistics.in_zonemap_point_check_count);
1752
28
    COUNTER_UPDATE(_parquet_profile.in_zonemap_range_only,
1753
28
                   _reader_statistics.in_zonemap_range_only_count);
1754
28
    COUNTER_UPDATE(_parquet_profile.file_footer_read_calls,
1755
28
                   _reader_statistics.file_footer_read_calls);
1756
28
    COUNTER_UPDATE(_parquet_profile.file_footer_hit_cache,
1757
28
                   _reader_statistics.file_footer_hit_cache);
1758
1759
28
    COUNTER_UPDATE(_parquet_profile.skip_page_header_num, _column_statistics.skip_page_header_num);
1760
28
    COUNTER_UPDATE(_parquet_profile.parse_page_header_num,
1761
28
                   _column_statistics.parse_page_header_num);
1762
28
    COUNTER_UPDATE(_parquet_profile.predicate_filter_time,
1763
28
                   _reader_statistics.predicate_filter_time);
1764
28
    COUNTER_UPDATE(_parquet_profile.dict_filter_rewrite_time,
1765
28
                   _reader_statistics.dict_filter_rewrite_time);
1766
28
    COUNTER_UPDATE(_parquet_profile.convert_time, _column_statistics.convert_time);
1767
28
    COUNTER_UPDATE(_parquet_profile.bloom_filter_read_time,
1768
28
                   _reader_statistics.bloom_filter_read_time);
1769
28
    COUNTER_UPDATE(_parquet_profile.page_index_read_calls,
1770
28
                   _column_statistics.page_index_read_calls);
1771
28
    COUNTER_UPDATE(_parquet_profile.decompress_time, _column_statistics.decompress_time);
1772
28
    COUNTER_UPDATE(_parquet_profile.decompress_cnt, _column_statistics.decompress_cnt);
1773
28
    COUNTER_UPDATE(_parquet_profile.page_read_counter, _column_statistics.page_read_counter);
1774
28
    COUNTER_UPDATE(_parquet_profile.page_cache_write_counter,
1775
28
                   _column_statistics.page_cache_write_counter);
1776
28
    COUNTER_UPDATE(_parquet_profile.page_cache_compressed_write_counter,
1777
28
                   _column_statistics.page_cache_compressed_write_counter);
1778
28
    COUNTER_UPDATE(_parquet_profile.page_cache_decompressed_write_counter,
1779
28
                   _column_statistics.page_cache_decompressed_write_counter);
1780
28
    COUNTER_UPDATE(_parquet_profile.page_cache_hit_counter,
1781
28
                   _column_statistics.page_cache_hit_counter);
1782
28
    COUNTER_UPDATE(_parquet_profile.page_cache_missing_counter,
1783
28
                   _column_statistics.page_cache_missing_counter);
1784
28
    COUNTER_UPDATE(_parquet_profile.page_cache_compressed_hit_counter,
1785
28
                   _column_statistics.page_cache_compressed_hit_counter);
1786
28
    COUNTER_UPDATE(_parquet_profile.page_cache_decompressed_hit_counter,
1787
28
                   _column_statistics.page_cache_decompressed_hit_counter);
1788
28
    COUNTER_UPDATE(_parquet_profile.decode_header_time, _column_statistics.decode_header_time);
1789
28
    COUNTER_UPDATE(_parquet_profile.read_page_header_time,
1790
28
                   _column_statistics.read_page_header_time);
1791
28
    COUNTER_UPDATE(_parquet_profile.decode_value_time, _column_statistics.decode_value_time);
1792
28
    COUNTER_UPDATE(_parquet_profile.decode_dict_time, _column_statistics.decode_dict_time);
1793
28
    COUNTER_UPDATE(_parquet_profile.decode_level_time, _column_statistics.decode_level_time);
1794
28
    COUNTER_UPDATE(_parquet_profile.decode_null_map_time, _column_statistics.decode_null_map_time);
1795
28
}
1796
1797
28
void ParquetReader::_collect_profile_before_close() {
1798
28
    _collect_profile();
1799
28
}
1800
1801
} // namespace doris