Coverage Report

Created: 2026-07-19 07:07

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/format_v2/table_reader.cpp
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Count
Source
1
// Licensed to the Apache Software Foundation (ASF) under one
2
// or more contributor license agreements.  See the NOTICE file
3
// distributed with this work for additional information
4
// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
7
// with the License.  You may obtain a copy of the License at
8
//
9
//   http://www.apache.org/licenses/LICENSE-2.0
10
//
11
// Unless required by applicable law or agreed to in writing,
12
// software distributed under the License is distributed on an
13
// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
14
// KIND, either express or implied.  See the License for the
15
// specific language governing permissions and limitations
16
// under the License.
17
18
#include "format_v2/table_reader.h"
19
20
#include <gen_cpp/ExternalTableSchema_types.h>
21
#include <gen_cpp/PlanNodes_types.h>
22
#include <gen_cpp/Types_types.h>
23
24
#include <algorithm>
25
#include <memory>
26
#include <ranges>
27
#include <set>
28
#include <sstream>
29
#include <utility>
30
#include <vector>
31
32
#include "common/cast_set.h"
33
#include "common/status.h"
34
#include "core/assert_cast.h"
35
#include "core/data_type/data_type_array.h"
36
#include "core/data_type/data_type_factory.hpp"
37
#include "core/data_type/data_type_map.h"
38
#include "core/data_type/data_type_struct.h"
39
#include "core/data_type/primitive_type.h"
40
#include "exprs/vexpr_context.h"
41
#include "exprs/vslot_ref.h"
42
#include "format/table/deletion_vector_reader.h"
43
#include "format/table/iceberg_delete_file_reader_helper.h"
44
#include "format/table/paimon_reader.h"
45
#include "format_v2/column_mapper.h"
46
#include "format_v2/delimited_text/csv_reader.h"
47
#include "format_v2/delimited_text/text_reader.h"
48
#include "format_v2/json/json_reader.h"
49
#include "format_v2/native/native_reader.h"
50
#include "format_v2/orc/orc_reader.h"
51
#include "format_v2/parquet/parquet_reader.h"
52
#include "storage/segment/condition_cache.h"
53
#include "util/debug_points.h"
54
#include "util/string_util.h"
55
56
namespace doris::format {
57
namespace {
58
59
template <typename T, typename Formatter>
60
61
std::string join_table_reader_debug_strings(const std::vector<T>& values, Formatter formatter) {
61
61
    std::ostringstream out;
62
61
    out << "[";
63
70
    for (size_t i = 0; i < values.size(); ++i) {
64
9
        if (i > 0) {
65
3
            out << ", ";
66
3
        }
67
9
        out << formatter(values[i]);
68
9
    }
69
61
    out << "]";
70
61
    return out.str();
71
61
}
table_reader.cpp:_ZN5doris6format12_GLOBAL__N_131join_table_reader_debug_stringsINS0_16ColumnDefinitionEZNKS0_11TableReader12debug_stringB5cxx11EvE3$_0EENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKSt6vectorIT_SaISD_EET0_
Line
Count
Source
60
12
std::string join_table_reader_debug_strings(const std::vector<T>& values, Formatter formatter) {
61
12
    std::ostringstream out;
62
12
    out << "[";
63
14
    for (size_t i = 0; i < values.size(); ++i) {
64
2
        if (i > 0) {
65
1
            out << ", ";
66
1
        }
67
2
        out << formatter(values[i]);
68
2
    }
69
12
    out << "]";
70
12
    return out.str();
71
12
}
table_reader.cpp:_ZN5doris6format12_GLOBAL__N_131join_table_reader_debug_stringsINS0_11TableFilterEZNKS0_11TableReader12debug_stringB5cxx11EvE3$_1EENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKSt6vectorIT_SaISD_EET0_
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Count
Source
60
12
std::string join_table_reader_debug_strings(const std::vector<T>& values, Formatter formatter) {
61
12
    std::ostringstream out;
62
12
    out << "[";
63
13
    for (size_t i = 0; i < values.size(); ++i) {
64
1
        if (i > 0) {
65
0
            out << ", ";
66
0
        }
67
1
        out << formatter(values[i]);
68
1
    }
69
12
    out << "]";
70
12
    return out.str();
71
12
}
table_reader.cpp:_ZN5doris6format12_GLOBAL__N_131join_table_reader_debug_stringsINS0_11GlobalIndexEZNS1_25table_filter_debug_stringB5cxx11ERKNS0_11TableFilterEE3$_0EENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKSt6vectorIT_SaISF_EET0_
Line
Count
Source
60
1
std::string join_table_reader_debug_strings(const std::vector<T>& values, Formatter formatter) {
61
1
    std::ostringstream out;
62
1
    out << "[";
63
2
    for (size_t i = 0; i < values.size(); ++i) {
64
1
        if (i > 0) {
65
0
            out << ", ";
66
0
        }
67
1
        out << formatter(values[i]);
68
1
    }
69
1
    out << "]";
70
1
    return out.str();
71
1
}
table_reader.cpp:_ZN5doris6format12_GLOBAL__N_131join_table_reader_debug_stringsISt10shared_ptrINS_12VExprContextEEZNKS0_11TableReader12debug_stringB5cxx11EvE3$_2EENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKSt6vectorIT_SaISF_EET0_
Line
Count
Source
60
12
std::string join_table_reader_debug_strings(const std::vector<T>& values, Formatter formatter) {
61
12
    std::ostringstream out;
62
12
    out << "[";
63
13
    for (size_t i = 0; i < values.size(); ++i) {
64
1
        if (i > 0) {
65
0
            out << ", ";
66
0
        }
67
1
        out << formatter(values[i]);
68
1
    }
69
12
    out << "]";
70
12
    return out.str();
71
12
}
table_reader.cpp:_ZN5doris6format12_GLOBAL__N_131join_table_reader_debug_stringsINS0_16ColumnDefinitionEZNKS0_11TableReader12debug_stringB5cxx11EvE3$_3EENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKSt6vectorIT_SaISD_EET0_
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Source
60
12
std::string join_table_reader_debug_strings(const std::vector<T>& values, Formatter formatter) {
61
12
    std::ostringstream out;
62
12
    out << "[";
63
14
    for (size_t i = 0; i < values.size(); ++i) {
64
2
        if (i > 0) {
65
1
            out << ", ";
66
1
        }
67
2
        out << formatter(values[i]);
68
2
    }
69
12
    out << "]";
70
12
    return out.str();
71
12
}
table_reader.cpp:_ZN5doris6format12_GLOBAL__N_131join_table_reader_debug_stringsINS0_11TableReader15FileBlockColumnEZNKS3_12debug_stringB5cxx11EvE3$_4EENSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEERKSt6vectorIT_SaISD_EET0_
Line
Count
Source
60
12
std::string join_table_reader_debug_strings(const std::vector<T>& values, Formatter formatter) {
61
12
    std::ostringstream out;
62
12
    out << "[";
63
14
    for (size_t i = 0; i < values.size(); ++i) {
64
2
        if (i > 0) {
65
1
            out << ", ";
66
1
        }
67
2
        out << formatter(values[i]);
68
2
    }
69
12
    out << "]";
70
12
    return out.str();
71
12
}
72
73
12
std::string file_format_to_string(FileFormat format) {
74
12
    switch (format) {
75
5
    case FileFormat::PARQUET:
76
5
        return "PARQUET";
77
1
    case FileFormat::ORC:
78
1
        return "ORC";
79
1
    case FileFormat::CSV:
80
1
        return "CSV";
81
1
    case FileFormat::JSON:
82
1
        return "JSON";
83
1
    case FileFormat::TEXT:
84
1
        return "TEXT";
85
1
    case FileFormat::JNI:
86
1
        return "JNI";
87
1
    case FileFormat::NATIVE:
88
1
        return "NATIVE";
89
1
    case FileFormat::ARROW:
90
1
        return "ARROW";
91
12
    }
92
0
    return "UNKNOWN";
93
12
}
94
95
12
std::string push_down_agg_to_string(TPushAggOp::type op) {
96
12
    switch (op) {
97
8
    case TPushAggOp::NONE:
98
8
        return "NONE";
99
1
    case TPushAggOp::COUNT:
100
1
        return "COUNT";
101
1
    case TPushAggOp::MINMAX:
102
1
        return "MINMAX";
103
1
    case TPushAggOp::MIX:
104
1
        return "MIX";
105
1
    case TPushAggOp::COUNT_ON_INDEX:
106
1
        return "COUNT_ON_INDEX";
107
12
    }
108
0
    return "UNKNOWN";
109
12
}
110
111
12
std::string current_file_debug_string(const std::unique_ptr<ScanTask>& task) {
112
12
    if (task == nullptr || task->data_file == nullptr) {
113
11
        return "null";
114
11
    }
115
1
    const auto& file = *task->data_file;
116
1
    std::ostringstream out;
117
1
    out << "FileDescription{path=" << file.path << ", file_size=" << file.file_size
118
1
        << ", range_start_offset=" << file.range_start_offset << ", range_size=" << file.range_size
119
1
        << ", mtime=" << file.mtime << ", fs_name=" << file.fs_name
120
1
        << ", is_immutable=" << file.is_immutable
121
1
        << ", file_cache_admission=" << file.file_cache_admission << "}";
122
1
    return out.str();
123
12
}
124
125
12
std::string partition_values_debug_string(const std::map<std::string, Field>& partition_values) {
126
12
    std::ostringstream out;
127
12
    out << "{";
128
12
    size_t idx = 0;
129
12
    for (const auto& [key, _] : partition_values) {
130
1
        if (idx++ > 0) {
131
0
            out << ", ";
132
0
        }
133
1
        out << key;
134
1
    }
135
12
    out << "}";
136
12
    return out.str();
137
12
}
138
139
18
const schema::external::TField* get_field_ptr(const schema::external::TFieldPtr& field_ptr) {
140
18
    if (!field_ptr.__isset.field_ptr || field_ptr.field_ptr == nullptr) {
141
0
        return nullptr;
142
0
    }
143
18
    return field_ptr.field_ptr.get();
144
18
}
145
146
5
bool external_field_matches_name(const schema::external::TField& field, const std::string& name) {
147
5
    if (field.__isset.name && to_lower(field.name) == to_lower(name)) {
148
1
        return true;
149
1
    }
150
4
    return field.__isset.name_mapping &&
151
4
           std::ranges::any_of(field.name_mapping, [&](const std::string& alias) {
152
4
               return to_lower(alias) == to_lower(name);
153
4
           });
154
5
}
155
156
DataTypePtr find_struct_child_type_by_external_field(const DataTypeStruct& struct_type,
157
2
                                                     const schema::external::TField& field) {
158
3
    for (size_t field_idx = 0; field_idx < struct_type.get_elements().size(); ++field_idx) {
159
3
        if (external_field_matches_name(field, struct_type.get_element_name(field_idx))) {
160
2
            return struct_type.get_element(field_idx);
161
2
        }
162
3
    }
163
0
    return nullptr;
164
2
}
165
166
DataTypePtr restore_current_primitive_type(const schema::external::TField& field,
167
13
                                           DataTypePtr fallback_type) {
168
13
    if (!field.__isset.type) {
169
9
        return fallback_type;
170
9
    }
171
4
    const auto primitive_type = thrift_to_type(field.type.type);
172
4
    if (is_complex_type(primitive_type)) {
173
0
        return fallback_type;
174
0
    }
175
    // The delete file can expose an older physical type, but initial defaults belong to the
176
    // current table field. Restore that type from FE before parsing the default and let the table
177
    // reader apply the normal promotion cast to the delete-key type.
178
4
    return DataTypeFactory::instance().create_data_type(
179
4
            primitive_type, false, field.type.__isset.precision ? field.type.precision : 0,
180
4
            field.type.__isset.scale ? field.type.scale : 0,
181
4
            field.type.__isset.len ? field.type.len : -1);
182
4
}
183
184
ColumnDefinition build_schema_column_from_external_field(const schema::external::TField& field,
185
13
                                                         DataTypePtr type) {
186
13
    type = restore_current_primitive_type(field, std::move(type));
187
13
    ColumnDefinition column {
188
13
            .identifier = field.__isset.id ? Field::create_field<TYPE_INT>(field.id) : Field {},
189
13
            .name = field.__isset.name ? field.name : "",
190
13
            .name_mapping =
191
13
                    field.__isset.name_mapping ? field.name_mapping : std::vector<std::string> {},
192
13
            .has_name_mapping = field.__isset.name_mapping,
193
13
            .type = std::move(type),
194
13
            .children = {},
195
13
            .default_expr = nullptr,
196
13
            .initial_default_value = field.__isset.initial_default_value
197
13
                                             ? std::make_optional(field.initial_default_value)
198
13
                                             : std::nullopt,
199
13
            .initial_default_value_is_base64 = field.__isset.initial_default_value_is_base64 &&
200
13
                                               field.initial_default_value_is_base64,
201
13
            .is_partition_key = false,
202
13
    };
203
13
    if (column.type == nullptr || !field.__isset.nestedField) {
204
10
        return column;
205
10
    }
206
207
3
    const auto nested_type = remove_nullable(column.type);
208
3
    switch (nested_type->get_primitive_type()) {
209
1
    case TYPE_STRUCT: {
210
1
        if (!field.nestedField.__isset.struct_field ||
211
1
            !field.nestedField.struct_field.__isset.fields) {
212
0
            return column;
213
0
        }
214
1
        const auto& struct_type = assert_cast<const DataTypeStruct&>(*nested_type);
215
2
        for (const auto& child_ptr : field.nestedField.struct_field.fields) {
216
2
            const auto* child_field = get_field_ptr(child_ptr);
217
2
            if (child_field == nullptr || !child_field->__isset.name) {
218
0
                continue;
219
0
            }
220
2
            auto child_type = find_struct_child_type_by_external_field(struct_type, *child_field);
221
2
            if (child_type == nullptr) {
222
0
                continue;
223
0
            }
224
2
            column.children.push_back(
225
2
                    build_schema_column_from_external_field(*child_field, child_type));
226
2
        }
227
1
        break;
228
1
    }
229
1
    case TYPE_ARRAY: {
230
1
        if (!field.nestedField.__isset.array_field ||
231
1
            !field.nestedField.array_field.__isset.item_field) {
232
0
            return column;
233
0
        }
234
1
        const auto* item_field = get_field_ptr(field.nestedField.array_field.item_field);
235
1
        if (item_field == nullptr) {
236
0
            return column;
237
0
        }
238
1
        const auto& array_type = assert_cast<const DataTypeArray&>(*nested_type);
239
1
        auto child =
240
1
                build_schema_column_from_external_field(*item_field, array_type.get_nested_type());
241
1
        child.name = "element";
242
1
        if (child.has_identifier_name()) {
243
0
            child.identifier = Field::create_field<TYPE_STRING>(child.name);
244
0
        }
245
1
        column.children.push_back(std::move(child));
246
1
        break;
247
1
    }
248
1
    case TYPE_MAP: {
249
1
        if (!field.nestedField.__isset.map_field ||
250
1
            !field.nestedField.map_field.__isset.key_field ||
251
1
            !field.nestedField.map_field.__isset.value_field) {
252
0
            return column;
253
0
        }
254
1
        const auto& map_type = assert_cast<const DataTypeMap&>(*nested_type);
255
1
        const auto* key_field = get_field_ptr(field.nestedField.map_field.key_field);
256
1
        if (key_field != nullptr) {
257
1
            auto child =
258
1
                    build_schema_column_from_external_field(*key_field, map_type.get_key_type());
259
1
            child.name = "key";
260
1
            if (child.has_identifier_name()) {
261
0
                child.identifier = Field::create_field<TYPE_STRING>(child.name);
262
0
            }
263
1
            column.children.push_back(std::move(child));
264
1
        }
265
1
        const auto* value_field = get_field_ptr(field.nestedField.map_field.value_field);
266
1
        if (value_field != nullptr) {
267
1
            auto child = build_schema_column_from_external_field(*value_field,
268
1
                                                                 map_type.get_value_type());
269
1
            child.name = "value";
270
1
            if (child.has_identifier_name()) {
271
0
                child.identifier = Field::create_field<TYPE_STRING>(child.name);
272
0
            }
273
1
            column.children.push_back(std::move(child));
274
1
        }
275
1
        break;
276
1
    }
277
0
    default:
278
0
        break;
279
3
    }
280
3
    return column;
281
3
}
282
283
const schema::external::TField* find_external_root_field(const TFileScanRangeParams* params,
284
9
                                                         const ColumnDefinition& column) {
285
9
    if (params == nullptr || !params->__isset.history_schema_info ||
286
9
        params->history_schema_info.empty()) {
287
7
        return nullptr;
288
7
    }
289
2
    const auto* schema = &params->history_schema_info.front();
290
2
    if (params->__isset.current_schema_id) {
291
3
        for (const auto& candidate_schema : params->history_schema_info) {
292
3
            if (candidate_schema.__isset.schema_id &&
293
3
                candidate_schema.schema_id == params->current_schema_id) {
294
2
                schema = &candidate_schema;
295
2
                break;
296
2
            }
297
3
        }
298
2
    }
299
2
    if (!schema->__isset.root_field || !schema->root_field.__isset.fields) {
300
0
        return nullptr;
301
0
    }
302
2
    for (const auto& field_ptr : schema->root_field.fields) {
303
2
        const auto* field = get_field_ptr(field_ptr);
304
2
        if (field == nullptr) {
305
0
            continue;
306
0
        }
307
2
        if (external_field_matches_name(*field, column.name)) {
308
2
            return field;
309
2
        }
310
2
    }
311
0
    return nullptr;
312
2
}
313
314
2
std::string expr_context_debug_string(const VExprContextSPtr& context) {
315
2
    if (context == nullptr) {
316
0
        return "null";
317
0
    }
318
2
    const auto root = context->root();
319
2
    if (root == nullptr) {
320
0
        return "VExprContext{root=null}";
321
0
    }
322
2
    std::ostringstream out;
323
2
    out << "VExprContext{root_name=" << root->expr_name() << ", root_debug=" << root->debug_string()
324
2
        << "}";
325
2
    return out.str();
326
2
}
327
328
1
std::string table_filter_debug_string(const TableFilter& filter) {
329
1
    std::ostringstream out;
330
1
    out << "TableFilter{conjunct=" << expr_context_debug_string(filter.conjunct)
331
1
        << ", global_indices="
332
1
        << join_table_reader_debug_strings(
333
1
                   filter.global_indices,
334
1
                   [](GlobalIndex global_index) { return std::to_string(global_index.value()); })
335
1
        << "}";
336
1
    return out.str();
337
1
}
338
339
4
bool contains_runtime_filter(const VExprContextSPtrs& conjuncts) {
340
4
    return std::ranges::any_of(conjuncts, [](const auto& conjunct) {
341
4
        return conjunct != nullptr && conjunct->root() != nullptr &&
342
4
               conjunct->root()->is_rf_wrapper();
343
4
    });
344
4
}
345
346
102
void collect_global_indices(const VExprSPtr& expr, std::set<GlobalIndex>* global_indices) {
347
102
    if (expr == nullptr) {
348
0
        return;
349
0
    }
350
102
    if (expr->is_rf_wrapper()) {
351
        // RuntimeFilterExpr wraps a real predicate expression but its own thrift node can still
352
        // look like SLOT_REF. Collect indices from the wrapped predicate; do not cast the wrapper
353
        // itself to VSlotRef.
354
7
        collect_global_indices(expr->get_impl(), global_indices);
355
7
        return;
356
7
    }
357
95
    if (expr->is_slot_ref()) {
358
32
        const auto* slot_ref = assert_cast<const VSlotRef*>(expr.get());
359
32
        DORIS_CHECK(slot_ref->column_id() >= 0);
360
32
        global_indices->insert(GlobalIndex(cast_set<size_t>(slot_ref->column_id())));
361
32
    }
362
95
    for (const auto& child : expr->children()) {
363
64
        collect_global_indices(child, global_indices);
364
64
    }
365
95
}
366
367
Status build_table_filters_from_conjunct(const VExprContextSPtr& conjunct, RuntimeState* state,
368
29
                                         std::vector<TableFilter>* table_filters) {
369
29
    if (conjunct == nullptr) {
370
0
        return Status::OK();
371
0
    }
372
29
    std::set<GlobalIndex> global_indices;
373
29
    collect_global_indices(conjunct->root(), &global_indices);
374
29
    if (!global_indices.empty()) {
375
29
        TableFilter table_filter;
376
29
        VExprSPtr filter_root;
377
29
        RETURN_IF_ERROR(clone_table_expr_tree(conjunct->root(), &filter_root));
378
29
        table_filter.conjunct = VExprContext::create_shared(std::move(filter_root));
379
30
        for (const auto global_index : global_indices) {
380
30
            table_filter.global_indices.push_back(global_index);
381
30
        }
382
29
        table_filters->push_back(std::move(table_filter));
383
29
    }
384
29
    return Status::OK();
385
29
}
386
387
Status parse_deletion_vector(const char* buf, size_t buffer_size, DeleteFileDesc::Format format,
388
5
                             DeletionVector* deletion_vector) {
389
5
    DORIS_CHECK(buf != nullptr);
390
5
    DORIS_CHECK(deletion_vector != nullptr);
391
5
    DORIS_CHECK(format == DeleteFileDesc::Format::PAIMON ||
392
5
                format == DeleteFileDesc::Format::ICEBERG);
393
394
5
    if (format == DeleteFileDesc::Format::PAIMON) {
395
1
        RETURN_IF_ERROR(decode_paimon_deletion_vector_buffer(buf, buffer_size, deletion_vector));
396
1
        return Status::OK();
397
1
    }
398
399
4
    return decode_iceberg_deletion_vector_buffer(buf, buffer_size, deletion_vector);
400
5
}
401
402
} // namespace
403
404
std::shared_ptr<io::FileSystemProperties> create_system_properties(
405
133
        const TFileScanRangeParams* scan_params) {
406
133
    auto system_properties = std::make_shared<io::FileSystemProperties>();
407
133
    if (scan_params == nullptr || !scan_params->__isset.file_type) {
408
98
        system_properties->system_type = TFileType::FILE_LOCAL;
409
98
        return system_properties;
410
98
    }
411
35
    system_properties->system_type = scan_params->file_type;
412
35
    system_properties->properties = scan_params->properties;
413
35
    system_properties->hdfs_params = scan_params->hdfs_params;
414
35
    if (scan_params->__isset.broker_addresses) {
415
0
        system_properties->broker_addresses.assign(scan_params->broker_addresses.begin(),
416
0
                                                   scan_params->broker_addresses.end());
417
0
    }
418
35
    return system_properties;
419
133
}
420
421
12
std::string TableReader::debug_string() const {
422
12
    std::ostringstream out;
423
12
    out << "TableReader{format=" << file_format_to_string(_format)
424
12
        << ", push_down_agg_type=" << push_down_agg_to_string(_push_down_agg_type)
425
12
        << ", aggregate_pushdown_tried=" << _aggregate_pushdown_tried
426
12
        << ", has_current_reader=" << (_data_reader.reader != nullptr)
427
12
        << ", has_current_task=" << (_current_task != nullptr)
428
12
        << ", current_file=" << current_file_debug_string(_current_task)
429
12
        << ", has_delete_rows=" << (_delete_rows != nullptr)
430
12
        << ", delete_row_count=" << (_delete_rows == nullptr ? 0 : _delete_rows->size())
431
12
        << ", has_deletion_vector=" << (_deletion_vector != nullptr)
432
12
        << ", deletion_vector_cardinality="
433
12
        << (_deletion_vector == nullptr ? 0 : _deletion_vector->cardinality())
434
12
        << ", has_system_properties=" << (_system_properties != nullptr) << ", system_type="
435
12
        << (_system_properties == nullptr ? static_cast<int>(TFileType::FILE_LOCAL)
436
12
                                          : static_cast<int>(_system_properties->system_type))
437
12
        << ", has_scan_params=" << (_scan_params != nullptr)
438
12
        << ", has_io_ctx=" << (_io_ctx != nullptr)
439
12
        << ", has_runtime_state=" << (_runtime_state != nullptr)
440
12
        << ", has_scanner_profile=" << (_scanner_profile != nullptr)
441
12
        << ", mapper_options=" << _mapper_options.debug_string() << ", projected_columns="
442
12
        << join_table_reader_debug_strings(
443
12
                   _projected_columns,
444
12
                   [](const ColumnDefinition& column) { return column.debug_string(); })
445
12
        << ", partition_values=" << partition_values_debug_string(_partition_values)
446
12
        << ", table_filters="
447
12
        << join_table_reader_debug_strings(
448
12
                   _table_filters,
449
12
                   [](const TableFilter& filter) { return table_filter_debug_string(filter); })
450
12
        << ", conjunct_count=" << _conjuncts.size() << ", conjuncts="
451
12
        << join_table_reader_debug_strings(_conjuncts,
452
12
                                           [](const VExprContextSPtr& conjunct) {
453
1
                                               return expr_context_debug_string(conjunct);
454
1
                                           })
455
12
        << ", file_schema="
456
12
        << join_table_reader_debug_strings(
457
12
                   _data_reader.file_schema,
458
12
                   [](const ColumnDefinition& field) { return field.debug_string(); })
459
12
        << ", file_block_layout="
460
12
        << join_table_reader_debug_strings(
461
12
                   _data_reader.file_block_layout,
462
12
                   [](const FileBlockColumn& column) {
463
2
                       std::ostringstream column_out;
464
2
                       column_out << "FileBlockColumn{file_column_id=" << column.file_column_id
465
2
                                  << ", name=" << column.name << ", type="
466
2
                                  << (column.type == nullptr ? "null" : column.type->get_name())
467
2
                                  << "}";
468
2
                       return column_out.str();
469
2
                   })
470
12
        << ", block_template_columns=" << _data_reader.block_template.columns()
471
12
        << ", column_mapper="
472
12
        << (_data_reader.column_mapper == nullptr ? "null"
473
12
                                                  : _data_reader.column_mapper->debug_string())
474
12
        << "}";
475
12
    return out.str();
476
12
}
477
478
Status TableReader::annotate_projected_column(const TFileScanSlotInfo& slot_info,
479
                                              ProjectedColumnBuildContext* context,
480
9
                                              ColumnDefinition* column) const {
481
9
    (void)slot_info;
482
9
    DORIS_CHECK(context != nullptr);
483
9
    DORIS_CHECK(column != nullptr);
484
9
    context->schema_column.reset();
485
9
    const auto* schema_field = find_external_root_field(context->scan_params, *column);
486
9
    if (schema_field == nullptr) {
487
7
        return Status::OK();
488
7
    }
489
2
    context->schema_column = build_schema_column_from_external_field(*schema_field, column->type);
490
2
    column->identifier = context->schema_column->identifier;
491
2
    column->name_mapping = context->schema_column->name_mapping;
492
2
    column->has_name_mapping = context->schema_column->has_name_mapping;
493
2
    return Status::OK();
494
9
}
495
496
std::optional<ColumnDefinition> TableReader::_find_current_table_column_by_field_id(
497
9
        int32_t field_id, DataTypePtr type) const {
498
9
    if (_scan_params == nullptr || !_scan_params->__isset.history_schema_info ||
499
9
        _scan_params->history_schema_info.empty()) {
500
3
        return std::nullopt;
501
3
    }
502
6
    const auto* schema = &_scan_params->history_schema_info.front();
503
6
    if (_scan_params->__isset.current_schema_id) {
504
6
        for (const auto& candidate_schema : _scan_params->history_schema_info) {
505
6
            if (candidate_schema.__isset.schema_id &&
506
6
                candidate_schema.schema_id == _scan_params->current_schema_id) {
507
6
                schema = &candidate_schema;
508
6
                break;
509
6
            }
510
6
        }
511
6
    }
512
6
    if (!schema->__isset.root_field || !schema->root_field.__isset.fields) {
513
0
        return std::nullopt;
514
0
    }
515
11
    for (const auto& field_ptr : schema->root_field.fields) {
516
11
        const auto* field = get_field_ptr(field_ptr);
517
11
        if (field != nullptr && field->__isset.id && field->id == field_id) {
518
6
            return build_schema_column_from_external_field(*field, std::move(type));
519
6
        }
520
11
    }
521
0
    return std::nullopt;
522
6
}
523
524
133
Status TableReader::init(TableReadOptions&& options) {
525
133
    _scan_params = options.scan_params;
526
133
    _format = options.format;
527
133
    _io_ctx = options.io_ctx;
528
133
    _runtime_state = options.runtime_state;
529
133
    _scanner_profile = options.scanner_profile;
530
133
    _file_slot_descs = options.file_slot_descs;
531
133
    _push_down_agg_type = options.push_down_agg_type;
532
133
    _initial_condition_cache_digest = options.condition_cache_digest;
533
133
    _condition_cache_digest = _initial_condition_cache_digest;
534
133
    _projected_columns = std::move(options.projected_columns);
535
133
    _system_properties = create_system_properties(_scan_params);
536
133
    _mapper_options.mode = TableColumnMappingMode::BY_NAME;
537
133
    _conjuncts = std::move(options.conjuncts);
538
539
133
    if (_scanner_profile != nullptr) {
540
43
        static const char* table_profile = "TableReader";
541
43
        ADD_TIMER_WITH_LEVEL(_scanner_profile, table_profile, 1);
542
43
        _profile.num_delete_files = ADD_CHILD_COUNTER_WITH_LEVEL(_scanner_profile, "NumDeleteFiles",
543
43
                                                                 TUnit::UNIT, table_profile, 1);
544
43
        _profile.num_delete_rows = ADD_CHILD_COUNTER_WITH_LEVEL(_scanner_profile, "NumDeleteRows",
545
43
                                                                TUnit::UNIT, table_profile, 1);
546
43
        _profile.parse_delete_file_time = ADD_CHILD_TIMER_WITH_LEVEL(
547
43
                _scanner_profile, "ParseDeleteFileTime", table_profile, 1);
548
43
        _profile.decoded_dv_cache_hit_count =
549
43
                ADD_CHILD_COUNTER_WITH_LEVEL(_scanner_profile, "DeletionVectorDecodedCacheHitCount",
550
43
                                             TUnit::UNIT, table_profile, 1);
551
43
        _profile.decoded_dv_cache_miss_count = ADD_CHILD_COUNTER_WITH_LEVEL(
552
43
                _scanner_profile, "DeletionVectorDecodedCacheMissCount", TUnit::UNIT, table_profile,
553
43
                1);
554
43
        _profile.dv_file_cache_hit_count = ADD_CHILD_COUNTER_WITH_LEVEL(
555
43
                _scanner_profile, "DeletionVectorFileCacheHitCount", TUnit::UNIT, table_profile, 1);
556
43
        _profile.dv_file_cache_miss_count =
557
43
                ADD_CHILD_COUNTER_WITH_LEVEL(_scanner_profile, "DeletionVectorFileCacheMissCount",
558
43
                                             TUnit::UNIT, table_profile, 1);
559
43
        _profile.dv_file_cache_peer_read_count = ADD_CHILD_COUNTER_WITH_LEVEL(
560
43
                _scanner_profile, "DeletionVectorFileCachePeerReadCount", TUnit::UNIT,
561
43
                table_profile, 1);
562
43
        _profile.exec_timer =
563
43
                ADD_CHILD_TIMER_WITH_LEVEL(_scanner_profile, "GetBlockTime", table_profile, 1);
564
43
        _profile.prepare_split_timer =
565
43
                ADD_CHILD_TIMER_WITH_LEVEL(_scanner_profile, "PrepareSplitTime", table_profile, 1);
566
43
        _profile.finalize_timer =
567
43
                ADD_CHILD_TIMER_WITH_LEVEL(_scanner_profile, "FinalizeBlockTime", table_profile, 1);
568
43
        _profile.create_reader_timer =
569
43
                ADD_CHILD_TIMER_WITH_LEVEL(_scanner_profile, "CreateReaderTime", table_profile, 1);
570
43
        _profile.pushdown_agg_timer =
571
43
                ADD_CHILD_TIMER_WITH_LEVEL(_scanner_profile, "PushDownAggTime", table_profile, 1);
572
43
        _profile.open_reader_timer =
573
43
                ADD_CHILD_TIMER_WITH_LEVEL(_scanner_profile, "OpenReaderTime", table_profile, 1);
574
43
        _profile.runtime_filter_partition_prune_timer = ADD_TIMER_WITH_LEVEL(
575
43
                _scanner_profile, "FileScannerRuntimeFilterPartitionPruningTime", 1);
576
43
        _profile.runtime_filter_partition_pruned_range_counter = ADD_COUNTER_WITH_LEVEL(
577
43
                _scanner_profile, "RuntimeFilterPartitionPrunedRangeNum", TUnit::UNIT, 1);
578
43
    }
579
133
    return Status::OK();
580
133
}
581
582
98
Status TableReader::_build_table_filters_from_conjuncts() {
583
98
    _table_filters.clear();
584
98
    _constant_pruning_safe_filter_count = 0;
585
98
    bool in_safe_prefix = true;
586
98
    for (const auto& conjunct : _conjuncts) {
587
34
        DORIS_CHECK(conjunct != nullptr);
588
34
        DORIS_CHECK(conjunct->root() != nullptr);
589
        // `_table_filters` omits expressions without slot references, but such an expression still
590
        // occupies a position in the row-level conjunct order. Record how many localized filters
591
        // precede the first unsafe original conjunct so constant pruning cannot jump over a
592
        // slotless non-deterministic/error-preserving barrier.
593
34
        if (in_safe_prefix && !_is_safe_to_pre_execute(conjunct)) {
594
3
            in_safe_prefix = false;
595
3
        }
596
34
        if (!in_safe_prefix) {
597
5
            continue;
598
5
        }
599
29
        RETURN_IF_ERROR(
600
29
                build_table_filters_from_conjunct(conjunct, _runtime_state, &_table_filters));
601
29
        _constant_pruning_safe_filter_count = _table_filters.size();
602
29
    }
603
98
    return Status::OK();
604
98
}
605
606
97
Status TableReader::_open_local_filter_exprs(const FileScanRequest& file_request) {
607
97
    RowDescriptor row_desc;
608
97
    for (const auto& conjunct : file_request.conjuncts) {
609
24
        RETURN_IF_ERROR(conjunct->prepare(_runtime_state, row_desc));
610
24
        RETURN_IF_ERROR(conjunct->open(_runtime_state));
611
24
    }
612
97
    for (const auto& delete_conjunct : file_request.delete_conjuncts) {
613
32
        RETURN_IF_ERROR(delete_conjunct->prepare(_runtime_state, row_desc));
614
32
        RETURN_IF_ERROR(delete_conjunct->open(_runtime_state));
615
32
    }
616
97
    return Status::OK();
617
97
}
618
619
97
bool TableReader::_should_enable_condition_cache(const FileScanRequest& file_request) const {
620
97
    if (_condition_cache_digest == 0 || _push_down_agg_type == TPushAggOp::type::COUNT ||
621
97
        _current_file_description == std::nullopt || _data_reader.reader == nullptr) {
622
90
        return false;
623
90
    }
624
    // Condition cache is populated by file readers after evaluating file-local row-level
625
    // conjuncts. Metadata pruning can skip row groups/pages, but it does not produce a per-row
626
    // survivor bitmap that can safely populate the cache.
627
7
    if (file_request.conjuncts.empty()) {
628
1
        return false;
629
1
    }
630
    // Delete files/deletion vectors are table-format state. They may change independently of the
631
    // data file path/mtime/size used by the external cache key, so caching their result can become
632
    // stale. Keep delete filtering enabled, but do not read or write condition cache.
633
6
    if (_delete_rows != nullptr || _deletion_vector != nullptr ||
634
6
        !file_request.delete_conjuncts.empty()) {
635
1
        return false;
636
1
    }
637
    // Only scanner-driven splits provide a digest rebuilt from the exact RF snapshot. Keep the
638
    // conservative behavior for standalone TableReader callers: their initial digest may describe
639
    // only static predicate P and must not store P AND RF under that key.
640
5
    return _condition_cache_digest_covers_current_split ||
641
5
           !contains_runtime_filter(file_request.conjuncts);
642
6
}
643
644
97
Status TableReader::_init_reader_condition_cache(const FileScanRequest& file_request) {
645
97
    _condition_cache = nullptr;
646
97
    _condition_cache_ctx = nullptr;
647
97
    if (!_should_enable_condition_cache(file_request)) {
648
93
        return Status::OK();
649
93
    }
650
651
4
    auto* cache = segment_v2::ConditionCache::instance();
652
4
    if (cache == nullptr) {
653
0
        return Status::OK();
654
0
    }
655
4
    const auto& file = *_current_file_description;
656
4
    _condition_cache_key = segment_v2::ConditionCache::ExternalCacheKey(
657
4
            file.path, file.mtime, file.file_size, _condition_cache_digest, file.range_start_offset,
658
4
            file.range_size,
659
4
            segment_v2::ConditionCache::ExternalCacheKey::BASE_GRANULE_AWARE_VERSION);
660
661
4
    segment_v2::ConditionCacheHandle handle;
662
4
    const bool condition_cache_hit = cache->lookup(_condition_cache_key, &handle);
663
4
    if (condition_cache_hit) {
664
0
        _condition_cache = handle.get_filter_result();
665
0
        ++_condition_cache_hit_count;
666
4
    } else {
667
4
        const int64_t total_rows = _data_reader.reader->get_total_rows();
668
4
        if (total_rows <= 0) {
669
0
            return Status::OK();
670
0
        }
671
        // Add one guard granule for split ranges that start in the middle of a granule. A guard
672
        // false bit beyond the real range never overlaps real rows, but avoids boundary overflow
673
        // when a reader marks the last partial granule.
674
4
        const size_t num_granules = (total_rows + ConditionCacheContext::GRANULE_SIZE - 1) /
675
4
                                    ConditionCacheContext::GRANULE_SIZE;
676
4
        _condition_cache = std::make_shared<std::vector<bool>>(num_granules + 1, false);
677
4
    }
678
679
4
    if (_condition_cache != nullptr) {
680
4
        _condition_cache_ctx = std::make_shared<ConditionCacheContext>();
681
4
        _condition_cache_ctx->is_hit = condition_cache_hit;
682
4
        _condition_cache_ctx->filter_result = _condition_cache;
683
4
        _condition_cache_ctx->num_granules = _condition_cache->size();
684
4
        if (condition_cache_hit) {
685
0
            _condition_cache_ctx->base_granule = handle.get_base_granule();
686
0
        }
687
4
        _data_reader.reader->set_condition_cache_context(_condition_cache_ctx);
688
4
    }
689
4
    return Status::OK();
690
4
}
691
692
98
void TableReader::_finalize_reader_condition_cache() {
693
98
    if (_condition_cache_ctx == nullptr || _condition_cache_ctx->is_hit) {
694
94
        _condition_cache = nullptr;
695
94
        _condition_cache_ctx = nullptr;
696
94
        return;
697
94
    }
698
    // LIMIT or scanner cancellation may close a reader before all selected row ranges are visited.
699
    // Unvisited granules remain false in a MISS bitmap, so inserting a partial bitmap would make a
700
    // later HIT skip valid rows. Only publish cache entries after the physical reader reaches EOF.
701
4
    if (!_current_reader_reached_eof) {
702
2
        _condition_cache = nullptr;
703
2
        _condition_cache_ctx = nullptr;
704
2
        return;
705
2
    }
706
2
    DORIS_CHECK(_condition_cache_ctx->num_granules <= _condition_cache->size());
707
2
    _condition_cache->resize(_condition_cache_ctx->num_granules);
708
2
    segment_v2::ConditionCache::instance()->insert(
709
2
            _condition_cache_key, std::move(_condition_cache), _condition_cache_ctx->base_granule);
710
2
    _condition_cache = nullptr;
711
2
    _condition_cache_ctx = nullptr;
712
2
}
713
714
131
Status TableReader::create_next_reader(bool* eos) {
715
131
    SCOPED_TIMER(_profile.create_reader_timer);
716
131
    DCHECK(_data_reader.reader == nullptr);
717
131
    if (_current_task == nullptr) {
718
32
        *eos = true;
719
32
        return Status::OK();
720
32
    }
721
722
99
    RETURN_IF_ERROR(create_file_reader(&_data_reader.reader));
723
99
    DORIS_CHECK(_data_reader.reader != nullptr);
724
99
    if (_batch_size > 0) {
725
0
        _data_reader.reader->set_batch_size(_batch_size);
726
0
    }
727
99
    Status st = _data_reader.reader->init(_runtime_state);
728
99
    if (!st.ok()) {
729
1
        if (_io_ctx != nullptr && _io_ctx->should_stop && st.is<ErrorCode::END_OF_FILE>()) {
730
0
            *eos = true;
731
0
            _data_reader.reader.reset();
732
0
            return Status::OK();
733
0
        }
734
1
        return st;
735
1
    }
736
98
    st = open_reader();
737
98
    if (!st.ok()) {
738
0
        if (_io_ctx != nullptr && _io_ctx->should_stop && st.is<ErrorCode::END_OF_FILE>()) {
739
0
            *eos = true;
740
0
            _data_reader.reader.reset();
741
0
            return Status::OK();
742
0
        }
743
0
        return st;
744
0
    }
745
98
    if (_data_reader.reader == nullptr) {
746
1
        *eos = _current_task == nullptr;
747
1
        return Status::OK();
748
1
    }
749
97
    *eos = false;
750
97
    return Status::OK();
751
98
}
752
753
79
Status TableReader::create_file_reader(std::unique_ptr<FileReader>* reader) {
754
79
    DORIS_CHECK(reader != nullptr);
755
79
    const bool enable_mapping_timestamp_tz = _scan_params != nullptr &&
756
79
                                             _scan_params->__isset.enable_mapping_timestamp_tz &&
757
79
                                             _scan_params->enable_mapping_timestamp_tz;
758
79
    if (_format == FileFormat::PARQUET) {
759
79
        *reader = std::make_unique<format::parquet::ParquetReader>(
760
79
                _system_properties, _current_task->data_file, _io_ctx, _scanner_profile,
761
79
                _global_rowid_context, enable_mapping_timestamp_tz);
762
79
        return Status::OK();
763
79
    }
764
0
    if (_format == FileFormat::ORC) {
765
0
        *reader = std::make_unique<format::orc::OrcReader>(
766
0
                _system_properties, _current_task->data_file, _io_ctx, _scanner_profile,
767
0
                _global_rowid_context, enable_mapping_timestamp_tz);
768
0
        return Status::OK();
769
0
    }
770
0
    if (_format == FileFormat::CSV) {
771
0
        if (_file_slot_descs == nullptr) {
772
0
            return Status::InvalidArgument("CSV reader requires file slot descriptors");
773
0
        }
774
        // CSV has no embedded schema. TableReader owns table-level mapping, while CsvReader needs
775
        // only the physical file slots plus scan text parameters to build a file-local schema.
776
        // Non-file columns such as partitions/defaults/virtual row ids are intentionally excluded
777
        // from `_file_slot_descs` and are materialized during finalize_chunk().
778
0
        *reader = std::make_unique<format::csv::CsvReader>(
779
0
                _system_properties, _current_task->data_file, _io_ctx, _scanner_profile,
780
0
                _scan_params, *_file_slot_descs, _current_range_compress_type,
781
0
                _current_range_load_id);
782
0
        return Status::OK();
783
0
    }
784
0
    if (_format == FileFormat::TEXT) {
785
0
        if (_file_slot_descs == nullptr) {
786
0
            return Status::InvalidArgument("Text reader requires file slot descriptors");
787
0
        }
788
        // Text files have no embedded schema. As with CSV, TableReader handles table-level mapping
789
        // and only passes physical file slots to the v2 TextReader.
790
0
        *reader = std::make_unique<format::text::TextReader>(
791
0
                _system_properties, _current_task->data_file, _io_ctx, _scanner_profile,
792
0
                _scan_params, *_file_slot_descs, _current_range_compress_type,
793
0
                _current_range_load_id);
794
0
        return Status::OK();
795
0
    }
796
0
    if (_format == FileFormat::JSON) {
797
0
        if (_file_slot_descs == nullptr) {
798
0
            return Status::InvalidArgument("JSON reader requires file slot descriptors");
799
0
        }
800
0
        *reader = std::make_unique<format::json::JsonReader>(
801
0
                _system_properties, _current_task->data_file, _io_ctx, _scanner_profile,
802
0
                _scan_params, _current_file_range_desc, *_file_slot_descs,
803
0
                _current_range_compress_type, _current_range_load_id);
804
0
        return Status::OK();
805
0
    }
806
0
    if (_format == FileFormat::NATIVE) {
807
0
        *reader = std::make_unique<format::native::NativeReader>(
808
0
                _system_properties, _current_task->data_file, _io_ctx, _scanner_profile);
809
0
        return Status::OK();
810
0
    }
811
0
    return Status::NotSupported("TableReader does not support file format {}",
812
0
                                file_format_to_string(_format));
813
0
}
814
815
125
std::unique_ptr<io::FileDescription> create_file_description(const TFileRangeDesc& range) {
816
125
    auto file_description = std::make_unique<io::FileDescription>();
817
125
    file_description->path = range.path;
818
125
    file_description->file_size = range.__isset.file_size ? range.file_size : -1;
819
125
    file_description->mtime = range.__isset.modification_time ? range.modification_time : 0;
820
125
    file_description->range_start_offset = range.__isset.start_offset ? range.start_offset : 0;
821
125
    file_description->range_size = range.__isset.size ? range.size : -1;
822
125
    if (range.__isset.fs_name) {
823
5
        file_description->fs_name = range.fs_name;
824
5
    }
825
125
    if (range.__isset.file_cache_admission) {
826
0
        file_description->file_cache_admission = range.file_cache_admission;
827
0
    }
828
125
    return file_description;
829
125
}
830
831
126
Status TableReader::prepare_split(const SplitReadOptions& options) {
832
126
    SCOPED_TIMER(_profile.prepare_split_timer);
833
126
    _current_split_pruned = false;
834
126
    _all_runtime_filters_applied_for_split = options.all_runtime_filters_applied;
835
126
    _condition_cache_digest_covers_current_split = options.condition_cache_digest.has_value();
836
126
    if (options.condition_cache_digest.has_value()) {
837
        // The split snapshot may include RFs that arrived after TableReader::init(). Use the digest
838
        // computed from that exact snapshot. Example: an initial P digest must not be used to store
839
        // the bitmap for P AND late RF{7, 9}; the scanner supplies digest(P AND RF{7, 9}) here.
840
1
        _condition_cache_digest = *options.condition_cache_digest;
841
125
    } else {
842
        // An explicit scanner digest is split-scoped. Restore the init-time digest when a later
843
        // standalone split omits it instead of leaking the previous split's RF payload into its key.
844
125
        _condition_cache_digest = _initial_condition_cache_digest;
845
125
    }
846
126
    if (options.conjuncts.has_value()) {
847
2
        _conjuncts = *options.conjuncts;
848
2
    }
849
    // Update to current split format to handle ORC/PARQUET files in one table.
850
126
    _format = options.current_split_format;
851
126
    _partition_values = std::move(options.partition_values);
852
126
    _current_task.reset();
853
126
    _current_file_description.reset();
854
126
    _current_file_range_desc = options.current_range;
855
126
    _current_range_compress_type = options.current_range.__isset.compress_type
856
126
                                           ? options.current_range.compress_type
857
126
                                           : TFileCompressType::UNKNOWN;
858
126
    _current_range_load_id = options.current_range.__isset.load_id
859
126
                                     ? std::make_optional(options.current_range.load_id)
860
126
                                     : std::nullopt;
861
126
    _global_rowid_context = options.global_rowid_context;
862
126
    _delete_rows = nullptr;
863
126
    _deletion_vector = nullptr;
864
126
    _aggregate_pushdown_tried = false;
865
126
    _remaining_table_level_count = -1;
866
126
    _current_reader_reached_eof = false;
867
126
    RETURN_IF_ERROR(_evaluate_partition_prune_conjuncts(options.partition_prune_conjuncts,
868
126
                                                        &_current_split_pruned));
869
126
    if (_current_split_pruned) {
870
1
        COUNTER_UPDATE(_profile.runtime_filter_partition_pruned_range_counter, 1);
871
1
        return Status::OK();
872
1
    }
873
125
    _current_task = std::make_unique<ScanTask>();
874
125
    _current_task->data_file = create_file_description(options.current_range);
875
125
    _current_file_description = *_current_task->data_file;
876
    // A table-level row count is only equivalent to scanning the split when no row predicate is
877
    // active and no predicate can arrive later. The metadata path can return several batches for
878
    // one split; after its first synthetic batch there is no way to recover the real rows if a
879
    // runtime filter arrives before the next scheduler turn.
880
125
    if (_push_down_agg_type == TPushAggOp::type::COUNT && options.all_runtime_filters_applied &&
881
125
        _conjuncts.empty() && options.current_range.__isset.table_format_params &&
882
125
        options.current_range.table_format_params.__isset.table_level_row_count) {
883
6
        DORIS_CHECK(options.current_range.table_format_params.table_level_row_count >= -1);
884
6
        _remaining_table_level_count =
885
6
                options.current_range.table_format_params.table_level_row_count;
886
6
    }
887
125
    if (_is_table_level_count_active()) {
888
2
        return Status::OK();
889
2
    }
890
123
    return _parse_delete_predicates(options);
891
125
}
892
893
Status TableReader::_evaluate_partition_prune_conjuncts(const VExprContextSPtrs& conjuncts,
894
126
                                                        bool* can_filter_all) {
895
126
    DORIS_CHECK(can_filter_all != nullptr);
896
126
    SCOPED_TIMER(_profile.runtime_filter_partition_prune_timer);
897
126
    *can_filter_all = false;
898
126
    if (conjuncts.empty() || _partition_values.empty()) {
899
123
        return Status::OK();
900
123
    }
901
902
3
    VExprContextSPtrs partition_conjuncts;
903
3
    for (const auto& conjunct : conjuncts) {
904
3
        DORIS_CHECK(conjunct != nullptr);
905
3
        DORIS_CHECK(conjunct->root() != nullptr);
906
        // Keep only the safe prefix of the original conjunct order. If an unsafe conjunct is
907
        // skipped, a later predicate could prune the split before the unsafe one reaches its
908
        // normal row-level evaluation point.
909
3
        if (!_is_safe_to_pre_execute(conjunct)) {
910
1
            break;
911
1
        }
912
2
        std::set<GlobalIndex> global_indices;
913
2
        collect_global_indices(conjunct->root(), &global_indices);
914
2
        if (global_indices.empty()) {
915
0
            continue;
916
0
        }
917
2
        const bool partition_only = std::ranges::all_of(global_indices, [&](GlobalIndex index) {
918
2
            if (index.value() >= _projected_columns.size()) {
919
0
                return false;
920
0
            }
921
2
            const auto& column = _projected_columns[index.value()];
922
2
            return column.is_partition_key &&
923
2
                   find_partition_value(column, _partition_values) != nullptr;
924
2
        });
925
2
        if (partition_only) {
926
2
            partition_conjuncts.push_back(conjunct);
927
2
        }
928
2
    }
929
3
    if (partition_conjuncts.empty()) {
930
1
        return Status::OK();
931
1
    }
932
933
2
    Block block;
934
2
    RETURN_IF_ERROR(_build_partition_prune_block(&block));
935
2
    RowDescriptor row_desc;
936
2
    for (const auto& conjunct : partition_conjuncts) {
937
2
        RETURN_IF_ERROR(conjunct->prepare(_runtime_state, row_desc));
938
2
        RETURN_IF_ERROR(conjunct->open(_runtime_state));
939
2
    }
940
2
    IColumn::Filter result_filter(block.rows(), 1);
941
2
    return VExprContext::execute_conjuncts(partition_conjuncts, nullptr, &block, &result_filter,
942
2
                                           can_filter_all);
943
2
}
944
945
64
bool TableReader::_is_safe_to_pre_execute(const VExprContextSPtr& conjunct) {
946
64
    DORIS_CHECK(conjunct != nullptr);
947
64
    DORIS_CHECK(conjunct->root() != nullptr);
948
64
    const auto root = conjunct->root();
949
64
    const auto impl = root->get_impl();
950
64
    const auto predicate = impl != nullptr ? impl : root;
951
    // Split pruning evaluates a predicate once before any file rows are read. Reordering
952
    // non-deterministic or error-preserving expressions can change their row-level semantics,
953
    // even when every referenced slot is a partition column or maps to a constant entry.
954
64
    return predicate->is_safe_to_execute_on_selected_rows();
955
64
}
956
957
2
Status TableReader::_build_partition_prune_block(Block* block) const {
958
2
    DORIS_CHECK(block != nullptr);
959
2
    DORIS_CHECK(!_projected_columns.empty());
960
2
    block->clear();
961
2
    for (const auto& column : _projected_columns) {
962
2
        DORIS_CHECK(column.type != nullptr);
963
2
        ColumnPtr value_column = column.type->create_column_const_with_default_value(1);
964
2
        if (column.is_partition_key) {
965
2
            const auto* partition_value = find_partition_value(column, _partition_values);
966
2
            if (partition_value != nullptr) {
967
2
                value_column = column.type->create_column_const(1, *partition_value);
968
2
            }
969
2
        }
970
2
        block->insert({std::move(value_column), column.type, column.name});
971
2
    }
972
2
    return Status::OK();
973
2
}
974
975
123
Status TableReader::_parse_delete_predicates(const SplitReadOptions& options) {
976
123
    DeleteFileDesc desc {.fs_name = options.current_range.fs_name};
977
123
    bool has_delete_file = false;
978
123
    RETURN_IF_ERROR(_parse_deletion_vector_file(options.current_range.table_format_params, &desc,
979
123
                                                &has_delete_file));
980
123
    if (has_delete_file) {
981
7
        DORIS_CHECK(options.cache != nullptr);
982
7
        Status create_status = Status::OK();
983
984
7
        bool decoded_cache_hit = false;
985
7
        _deletion_vector = options.cache->get<DeletionVector>(
986
7
                desc.key,
987
7
                [&]() -> DeletionVector* {
988
7
                    auto deletion_vector = std::make_unique<DeletionVector>();
989
990
7
                    DeletionVectorReader dv_reader(_runtime_state, _scanner_profile, *_scan_params,
991
7
                                                   desc, _io_ctx.get());
992
7
                    create_status = dv_reader.open();
993
7
                    if (!create_status.ok()) [[unlikely]] {
994
0
                        return nullptr;
995
0
                    }
996
997
7
                    size_t bytes_read = desc.size;
998
7
                    std::vector<char> buffer(bytes_read);
999
7
                    DBUG_EXECUTE_IF("TableReader.parse_deletion_vector.io_error", {
1000
7
                        create_status =
1001
7
                                Status::IOError("injected format v2 deletion vector read failure");
1002
7
                        return nullptr;
1003
7
                    });
1004
6
                    DBUG_EXECUTE_IF("TableReader.parse_deletion_vector.should_stop", {
1005
6
                        create_status = Status::EndOfFile("stop read.");
1006
6
                        return nullptr;
1007
6
                    });
1008
5
                    create_status =
1009
5
                            dv_reader.read_at(desc.start_offset, {buffer.data(), bytes_read});
1010
5
                    const auto& file_cache_stats = dv_reader.file_cache_statistics();
1011
5
                    COUNTER_UPDATE(_profile.dv_file_cache_hit_count,
1012
5
                                   file_cache_stats.num_local_io_total);
1013
5
                    COUNTER_UPDATE(_profile.dv_file_cache_miss_count,
1014
5
                                   file_cache_stats.num_remote_io_total);
1015
5
                    COUNTER_UPDATE(_profile.dv_file_cache_peer_read_count,
1016
5
                                   file_cache_stats.num_peer_io_total);
1017
5
                    if (!create_status.ok()) [[unlikely]] {
1018
0
                        return nullptr;
1019
0
                    }
1020
1021
5
                    const char* buf = buffer.data();
1022
5
                    SCOPED_TIMER(_profile.parse_delete_file_time);
1023
5
                    create_status = parse_deletion_vector(buf, bytes_read, desc.format,
1024
5
                                                          deletion_vector.get());
1025
5
                    if (!create_status.ok()) [[unlikely]] {
1026
1
                        return nullptr;
1027
1
                    }
1028
4
                    COUNTER_UPDATE(_profile.num_delete_rows, deletion_vector->cardinality());
1029
4
                    return deletion_vector.release();
1030
5
                },
1031
7
                &decoded_cache_hit);
1032
7
        RETURN_IF_ERROR(create_status);
1033
4
        COUNTER_UPDATE(decoded_cache_hit ? _profile.decoded_dv_cache_hit_count
1034
4
                                         : _profile.decoded_dv_cache_miss_count,
1035
4
                       1);
1036
4
    }
1037
1038
120
    return Status::OK();
1039
123
}
1040
} // namespace doris::format