Coverage Report

Created: 2025-04-25 16:31

/root/doris/be/src/vec/exprs/vexpr.h
Line
Count
Source (jump to first uncovered line)
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
#pragma once
19
20
#include <gen_cpp/Exprs_types.h>
21
#include <gen_cpp/Opcodes_types.h>
22
#include <gen_cpp/Types_types.h>
23
#include <glog/logging.h>
24
25
#include <cstddef>
26
#include <memory>
27
#include <ostream>
28
#include <string>
29
#include <utility>
30
#include <vector>
31
32
#include "common/status.h"
33
#include "olap/rowset/segment_v2/inverted_index_reader.h"
34
#include "runtime/define_primitive_type.h"
35
#include "runtime/large_int_value.h"
36
#include "runtime/types.h"
37
#include "udf/udf.h"
38
#include "vec/aggregate_functions/aggregate_function.h"
39
#include "vec/columns/column.h"
40
#include "vec/core/block.h"
41
#include "vec/core/column_with_type_and_name.h"
42
#include "vec/core/types.h"
43
#include "vec/core/wide_integer.h"
44
#include "vec/data_types/data_type.h"
45
#include "vec/data_types/data_type_ipv6.h"
46
#include "vec/exprs/vexpr_fwd.h"
47
#include "vec/functions/function.h"
48
49
namespace doris {
50
class BitmapFilterFuncBase;
51
class BloomFilterFuncBase;
52
class HybridSetBase;
53
class ObjectPool;
54
class RowDescriptor;
55
class RuntimeState;
56
57
namespace vectorized {
58
59
#define RETURN_IF_ERROR_OR_PREPARED(stmt) \
60
12
    if (_prepared) {                      \
61
0
        return Status::OK();              \
62
0
    }                                     \
63
12
    _prepared = true;                     \
64
12
    RETURN_IF_ERROR(stmt);
65
66
// VExpr should be used as shared pointer because it will be passed between classes
67
// like runtime filter to scan node, or from scannode to scanner. We could not make sure
68
// the relatioinship between threads and classes.
69
class VExpr {
70
public:
71
    // resize inserted param column to make sure column size equal to block.rows()
72
    // and return param column index
73
14
    static size_t insert_param(Block* block, ColumnWithTypeAndName&& elem, size_t size) {
74
        // usually elem.column always is const column, so we just clone it.
75
14
        elem.column = elem.column->clone_resized(size);
76
14
        block->insert(std::move(elem));
77
14
        return block->columns() - 1;
78
14
    }
79
80
    static bool is_acting_on_a_slot(const VExpr& expr);
81
82
    VExpr(const TExprNode& node);
83
    VExpr(const VExpr& vexpr);
84
    VExpr(TypeDescriptor type, bool is_slotref, bool is_nullable);
85
    // only used for test
86
9
    VExpr() = default;
87
35
    virtual ~VExpr() = default;
88
89
    virtual const std::string& expr_name() const = 0;
90
0
    virtual std::string expr_label() { return ""; }
91
92
    /// Initializes this expr instance for execution. This does not include initializing
93
    /// state in the VExprContext; 'context' should only be used to register a
94
    /// FunctionContext via RegisterFunctionContext().
95
    ///
96
    /// Subclasses overriding this function should call VExpr::Prepare() to recursively call
97
    /// Prepare() on the expr tree
98
    /// row_desc used in vslot_ref and some subclass to specify column
99
    virtual Status prepare(RuntimeState* state, const RowDescriptor& row_desc,
100
                           VExprContext* context);
101
102
    /// Initializes 'context' for execution. If scope if FRAGMENT_LOCAL, both fragment- and
103
    /// thread-local state should be initialized. Otherwise, if scope is THREAD_LOCAL, only
104
    /// thread-local state should be initialized.
105
    //
106
    /// Subclasses overriding this function should call VExpr::Open() to recursively call
107
    /// Open() on the expr tree
108
    virtual Status open(RuntimeState* state, VExprContext* context,
109
                        FunctionContext::FunctionStateScope scope);
110
111
    // before execute, check if expr has been parepared+opened.
112
0
    [[maybe_unused]] Status ready_status() const {
113
0
        if (_prepare_finished && _open_finished) {
114
0
            return Status::OK();
115
0
        }
116
0
        return Status::InternalError(expr_name() + " is not ready when execute");
117
0
    }
118
119
    virtual Status execute(VExprContext* context, Block* block, int* result_column_id) = 0;
120
121
    // execute current expr with inverted index to filter block. Given a roaring bitmap of match rows
122
0
    virtual Status evaluate_inverted_index(VExprContext* context, uint32_t segment_num_rows) {
123
0
        return Status::OK();
124
0
    }
125
126
    Status _evaluate_inverted_index(VExprContext* context, const FunctionBasePtr& function,
127
                                    uint32_t segment_num_rows);
128
129
    // Only the 4th parameter is used in the runtime filter. In and MinMax need overwrite the
130
    // interface
131
    virtual Status execute_runtime_fitler(VExprContext* context, Block* block,
132
0
                                          int* result_column_id, std::vector<size_t>& args) {
133
0
        return execute(context, block, result_column_id);
134
0
    };
135
136
    /// Subclasses overriding this function should call VExpr::Close().
137
    //
138
    /// If scope if FRAGMENT_LOCAL, both fragment- and thread-local state should be torn
139
    /// down. Otherwise, if scope is THREAD_LOCAL, only thread-local state should be torn
140
    /// down.
141
    virtual void close(VExprContext* context, FunctionContext::FunctionStateScope scope);
142
143
14
    DataTypePtr& data_type() { return _data_type; }
144
145
18
    TypeDescriptor type() { return _type; }
146
147
0
    bool is_slot_ref() const { return _node_type == TExprNodeType::SLOT_REF; }
148
0
    virtual bool is_literal() const { return false; }
149
150
0
    TExprNodeType::type node_type() const { return _node_type; }
151
152
0
    TExprOpcode::type op() const { return _opcode; }
153
154
7
    void add_child(const VExprSPtr& expr) { _children.push_back(expr); }
155
0
    VExprSPtr get_child(int i) const { return _children[i]; }
156
0
    int get_num_children() const { return _children.size(); }
157
158
0
    virtual bool need_judge_selectivity() {
159
0
        return std::ranges::any_of(_children.begin(), _children.end(),
160
0
                                   [](VExprSPtr child) { return child->need_judge_selectivity(); });
161
0
    }
162
163
0
    virtual void do_judge_selectivity(int64_t filter_rows, int64_t input_rows) {
164
0
        for (auto child : _children) {
165
0
            child->do_judge_selectivity(filter_rows, input_rows);
166
0
        }
167
0
    }
168
169
    static Status create_expr_tree(const TExpr& texpr, VExprContextSPtr& ctx);
170
171
    static Status create_expr_trees(const std::vector<TExpr>& texprs, VExprContextSPtrs& ctxs);
172
173
    static Status prepare(const VExprContextSPtrs& ctxs, RuntimeState* state,
174
                          const RowDescriptor& row_desc);
175
176
    static Status open(const VExprContextSPtrs& ctxs, RuntimeState* state);
177
178
    static Status clone_if_not_exists(const VExprContextSPtrs& ctxs, RuntimeState* state,
179
                                      VExprContextSPtrs& new_ctxs);
180
181
0
    bool is_nullable() const { return _data_type->is_nullable(); }
182
183
0
    PrimitiveType result_type() const { return _type.type; }
184
185
    static Status create_expr(const TExprNode& expr_node, VExprSPtr& expr);
186
187
    static Status create_tree_from_thrift(const std::vector<TExprNode>& nodes, int* node_idx,
188
                                          VExprSPtr& root_expr, VExprContextSPtr& ctx);
189
190
    static Status check_expr_output_type(const VExprContextSPtrs& ctxs,
191
                                         const RowDescriptor& output_row_desc);
192
23
    virtual const VExprSPtrs& children() const { return _children; }
193
0
    void set_children(const VExprSPtrs& children) { _children = children; }
194
0
    void set_children(VExprSPtrs&& children) { _children = std::move(children); }
195
    virtual std::string debug_string() const;
196
    static std::string debug_string(const VExprSPtrs& exprs);
197
    static std::string debug_string(const VExprContextSPtrs& ctxs);
198
199
0
    void set_getting_const_col(bool val = true) { _getting_const_col = val; }
200
201
0
    bool is_and_expr() const { return _fn.name.function_name == "and"; }
202
203
0
    virtual bool is_compound_predicate() const { return false; }
204
205
0
    const TFunction& fn() const { return _fn; }
206
207
    /// Returns true if expr doesn't contain slotrefs, i.e., can be evaluated
208
    /// with get_value(NULL). The default implementation returns true if all of
209
    /// the children are constant.
210
    virtual bool is_constant() const;
211
212
    /// If this expr is constant, evaluates the expr with no input row argument and returns
213
    /// the output. Returns nullptr if the argument is not constant. The returned ColumnPtr is
214
    /// owned by this expr. This should only be called after Open() has been called on this
215
    /// expr.
216
    Status get_const_col(VExprContext* context, std::shared_ptr<ColumnPtrWrapper>* column_wrapper);
217
218
0
    int fn_context_index() const { return _fn_context_index; }
219
220
0
    static const VExprSPtr expr_without_cast(const VExprSPtr& expr) {
221
0
        if (expr->node_type() == TExprNodeType::CAST_EXPR) {
222
0
            return expr_without_cast(expr->_children[0]);
223
0
        }
224
0
        return expr;
225
0
    }
226
227
    // If this expr is a RuntimeFilterWrapper, this method will return an underlying rf expression
228
0
    virtual const VExprSPtr get_impl() const { return {}; }
229
230
    // If this expr is a BloomPredicate, this method will return a BloomFilterFunc
231
0
    virtual std::shared_ptr<BloomFilterFuncBase> get_bloom_filter_func() const {
232
0
        LOG(FATAL) << "Method 'get_bloom_filter_func()' is not supported in expression: "
233
0
                   << this->debug_string();
234
0
        return nullptr;
235
0
    }
236
237
0
    virtual std::shared_ptr<HybridSetBase> get_set_func() const { return nullptr; }
238
239
    // If this expr is a BitmapPredicate, this method will return a BitmapFilterFunc
240
0
    virtual std::shared_ptr<BitmapFilterFuncBase> get_bitmap_filter_func() const {
241
0
        LOG(FATAL) << "Method 'get_bitmap_filter_func()' is not supported in expression: "
242
0
                   << this->debug_string();
243
0
        return nullptr;
244
0
    }
245
246
    // fast_execute can direct copy expr filter result which build by apply index in segment_iterator
247
    bool fast_execute(doris::vectorized::VExprContext* context, doris::vectorized::Block* block,
248
                      int* result_column_id);
249
250
0
    virtual bool can_push_down_to_index() const { return false; }
251
    virtual bool equals(const VExpr& other);
252
0
    void set_index_unique_id(uint32_t index_unique_id) { _index_unique_id = index_unique_id; }
253
0
    uint32_t index_unique_id() const { return _index_unique_id; }
254
255
0
    virtual bool is_rf_wrapper() const {
256
0
        return std::ranges::any_of(_children.begin(), _children.end(),
257
0
                                   [](VExprSPtr child) { return child->is_rf_wrapper(); });
258
0
    }
259
260
protected:
261
    /// Simple debug string that provides no expr subclass-specific information
262
0
    std::string debug_string(const std::string& expr_name) const {
263
0
        std::stringstream out;
264
0
        out << expr_name << "(" << VExpr::debug_string() << ")";
265
0
        return out.str();
266
0
    }
267
268
2
    std::string get_child_names() {
269
2
        std::string res;
270
2
        for (auto child : _children) {
271
2
            if (!res.empty()) {
272
0
                res += ", ";
273
0
            }
274
2
            res += child->expr_name();
275
2
        }
276
2
        return res;
277
2
    }
278
279
0
    bool is_const_and_have_executed() { return (is_constant() && (_constant_col != nullptr)); }
280
281
    Status get_result_from_const(vectorized::Block* block, const std::string& expr_name,
282
                                 int* result_column_id);
283
284
    Status check_constant(const Block& block, ColumnNumbers arguments) const;
285
286
    /// Helper function that calls ctx->register(), sets fn_context_index_, and returns the
287
    /// registered FunctionContext
288
    void register_function_context(RuntimeState* state, VExprContext* context);
289
290
    /// Helper function to initialize function context, called in `open` phase of VExpr:
291
    /// 1. Set constant columns result of function arguments.
292
    /// 2. Call function's prepare() to initialize function state, fragment-local or
293
    /// thread-local according the input `FunctionStateScope` argument.
294
    Status init_function_context(RuntimeState* state, VExprContext* context,
295
                                 FunctionContext::FunctionStateScope scope,
296
                                 const FunctionBasePtr& function) const;
297
298
    /// Helper function to close function context, fragment-local or thread-local according
299
    /// the input `FunctionStateScope` argument. Called in `close` phase of VExpr.
300
    void close_function_context(VExprContext* context, FunctionContext::FunctionStateScope scope,
301
                                const FunctionBasePtr& function) const;
302
303
    TExprNodeType::type _node_type;
304
    // Used to check what opcode
305
    TExprOpcode::type _opcode;
306
    TypeDescriptor _type;
307
    DataTypePtr _data_type;
308
    VExprSPtrs _children;
309
    TFunction _fn;
310
311
    /// Index to pass to ExprContext::fn_context() to retrieve this expr's FunctionContext.
312
    /// Set in RegisterFunctionContext(). -1 if this expr does not need a FunctionContext and
313
    /// doesn't call RegisterFunctionContext().
314
    int _fn_context_index = -1;
315
316
    // If this expr is constant, this will store and cache the value generated by
317
    // get_const_col()
318
    std::shared_ptr<ColumnPtrWrapper> _constant_col;
319
    bool _prepared = false; // for base class VExpr
320
    bool _getting_const_col =
321
            false; // if true, current execute() is in prepare() (that is, can't check _prepared)
322
    // for concrete classes
323
    bool _prepare_finished = false;
324
    bool _open_finished = false;
325
326
    // ensuring uniqueness during index traversal
327
    uint32_t _index_unique_id = 0;
328
};
329
330
} // namespace vectorized
331
332
// NOLINTBEGIN(readability-function-size)
333
template <PrimitiveType T>
334
Status create_texpr_literal_node(const void* data, TExprNode* node, int precision = 0,
335
0
                                 int scale = 0) {
336
0
    if constexpr (T == TYPE_BOOLEAN) {
337
0
        const auto* origin_value = reinterpret_cast<const bool*>(data);
338
0
        TBoolLiteral boolLiteral;
339
0
        (*node).__set_node_type(TExprNodeType::BOOL_LITERAL);
340
0
        boolLiteral.__set_value(*origin_value);
341
0
        (*node).__set_bool_literal(boolLiteral);
342
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_BOOLEAN));
343
0
    } else if constexpr (T == TYPE_TINYINT) {
344
0
        const auto* origin_value = reinterpret_cast<const int8_t*>(data);
345
0
        (*node).__set_node_type(TExprNodeType::INT_LITERAL);
346
0
        TIntLiteral intLiteral;
347
0
        intLiteral.__set_value(*origin_value);
348
0
        (*node).__set_int_literal(intLiteral);
349
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_TINYINT));
350
0
    } else if constexpr (T == TYPE_SMALLINT) {
351
0
        const auto* origin_value = reinterpret_cast<const int16_t*>(data);
352
0
        (*node).__set_node_type(TExprNodeType::INT_LITERAL);
353
0
        TIntLiteral intLiteral;
354
0
        intLiteral.__set_value(*origin_value);
355
0
        (*node).__set_int_literal(intLiteral);
356
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_SMALLINT));
357
0
    } else if constexpr (T == TYPE_INT) {
358
0
        const auto* origin_value = reinterpret_cast<const int32_t*>(data);
359
0
        (*node).__set_node_type(TExprNodeType::INT_LITERAL);
360
0
        TIntLiteral intLiteral;
361
0
        intLiteral.__set_value(*origin_value);
362
0
        (*node).__set_int_literal(intLiteral);
363
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_INT));
364
0
    } else if constexpr (T == TYPE_BIGINT) {
365
0
        const auto* origin_value = reinterpret_cast<const int64_t*>(data);
366
0
        (*node).__set_node_type(TExprNodeType::INT_LITERAL);
367
0
        TIntLiteral intLiteral;
368
0
        intLiteral.__set_value(*origin_value);
369
0
        (*node).__set_int_literal(intLiteral);
370
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_BIGINT));
371
0
    } else if constexpr (T == TYPE_LARGEINT) {
372
0
        const auto* origin_value = reinterpret_cast<const int128_t*>(data);
373
0
        (*node).__set_node_type(TExprNodeType::LARGE_INT_LITERAL);
374
0
        TLargeIntLiteral large_int_literal;
375
0
        large_int_literal.__set_value(LargeIntValue::to_string(*origin_value));
376
0
        (*node).__set_large_int_literal(large_int_literal);
377
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_LARGEINT));
378
0
    } else if constexpr ((T == TYPE_DATE) || (T == TYPE_DATETIME) || (T == TYPE_TIMEV2)) {
379
0
        const auto* origin_value = reinterpret_cast<const VecDateTimeValue*>(data);
380
0
        TDateLiteral date_literal;
381
0
        char convert_buffer[30];
382
0
        origin_value->to_string(convert_buffer);
383
0
        date_literal.__set_value(convert_buffer);
384
0
        (*node).__set_date_literal(date_literal);
385
0
        (*node).__set_node_type(TExprNodeType::DATE_LITERAL);
386
0
        if (origin_value->type() == TimeType::TIME_DATE) {
387
0
            (*node).__set_type(create_type_desc(PrimitiveType::TYPE_DATE));
388
0
        } else if (origin_value->type() == TimeType::TIME_DATETIME) {
389
0
            (*node).__set_type(create_type_desc(PrimitiveType::TYPE_DATETIME));
390
0
        } else if (origin_value->type() == TimeType::TIME_TIME) {
391
0
            (*node).__set_type(create_type_desc(PrimitiveType::TYPE_TIMEV2));
392
0
        }
393
0
    } else if constexpr (T == TYPE_DATEV2) {
394
0
        const auto* origin_value = reinterpret_cast<const DateV2Value<DateV2ValueType>*>(data);
395
0
        TDateLiteral date_literal;
396
0
        char convert_buffer[30];
397
0
        origin_value->to_string(convert_buffer);
398
0
        date_literal.__set_value(convert_buffer);
399
0
        (*node).__set_date_literal(date_literal);
400
0
        (*node).__set_node_type(TExprNodeType::DATE_LITERAL);
401
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_DATEV2));
402
0
    } else if constexpr (T == TYPE_DATETIMEV2) {
403
0
        const auto* origin_value = reinterpret_cast<const DateV2Value<DateTimeV2ValueType>*>(data);
404
0
        TDateLiteral date_literal;
405
0
        char convert_buffer[30];
406
0
        origin_value->to_string(convert_buffer, scale);
407
0
        date_literal.__set_value(convert_buffer);
408
0
        (*node).__set_date_literal(date_literal);
409
0
        (*node).__set_node_type(TExprNodeType::DATE_LITERAL);
410
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_DATETIMEV2, precision, scale));
411
0
    } else if constexpr (T == TYPE_DECIMALV2) {
412
0
        const auto* origin_value = reinterpret_cast<const DecimalV2Value*>(data);
413
0
        (*node).__set_node_type(TExprNodeType::DECIMAL_LITERAL);
414
0
        TDecimalLiteral decimal_literal;
415
0
        decimal_literal.__set_value(origin_value->to_string());
416
0
        (*node).__set_decimal_literal(decimal_literal);
417
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_DECIMALV2, precision, scale));
418
0
    } else if constexpr (T == TYPE_DECIMAL32) {
419
0
        const auto* origin_value = reinterpret_cast<const vectorized::Decimal<int32_t>*>(data);
420
0
        (*node).__set_node_type(TExprNodeType::DECIMAL_LITERAL);
421
0
        TDecimalLiteral decimal_literal;
422
0
        decimal_literal.__set_value(origin_value->to_string(precision, scale));
423
0
        (*node).__set_decimal_literal(decimal_literal);
424
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_DECIMAL32, precision, scale));
425
0
    } else if constexpr (T == TYPE_DECIMAL64) {
426
0
        const auto* origin_value = reinterpret_cast<const vectorized::Decimal<int64_t>*>(data);
427
0
        (*node).__set_node_type(TExprNodeType::DECIMAL_LITERAL);
428
0
        TDecimalLiteral decimal_literal;
429
0
        decimal_literal.__set_value(origin_value->to_string(precision, scale));
430
0
        (*node).__set_decimal_literal(decimal_literal);
431
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_DECIMAL64, precision, scale));
432
0
    } else if constexpr (T == TYPE_DECIMAL128I) {
433
0
        const auto* origin_value = reinterpret_cast<const vectorized::Decimal<int128_t>*>(data);
434
0
        (*node).__set_node_type(TExprNodeType::DECIMAL_LITERAL);
435
0
        TDecimalLiteral decimal_literal;
436
        // e.g. For a decimal(26,6) column, the initial value of the _min of the MinMax RF
437
        // on the RF producer side is an int128 value with 38 digits of 9, and this is the
438
        // final min value of the MinMax RF if the fragment instance has no data.
439
        // Need to truncate the value to the right precision and scale here, to avoid
440
        // error when casting string back to decimal later.
441
        // TODO: this is a temporary solution, the best solution is to produce the
442
        // right min max value at the producer side.
443
0
        decimal_literal.__set_value(origin_value->to_string(precision, scale));
444
0
        (*node).__set_decimal_literal(decimal_literal);
445
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_DECIMAL128I, precision, scale));
446
0
    } else if constexpr (T == TYPE_DECIMAL256) {
447
0
        const auto* origin_value = reinterpret_cast<const vectorized::Decimal<wide::Int256>*>(data);
448
0
        (*node).__set_node_type(TExprNodeType::DECIMAL_LITERAL);
449
0
        TDecimalLiteral decimal_literal;
450
0
        decimal_literal.__set_value(origin_value->to_string(precision, scale));
451
0
        (*node).__set_decimal_literal(decimal_literal);
452
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_DECIMAL256, precision, scale));
453
0
    } else if constexpr (T == TYPE_FLOAT) {
454
0
        const auto* origin_value = reinterpret_cast<const float*>(data);
455
0
        (*node).__set_node_type(TExprNodeType::FLOAT_LITERAL);
456
0
        TFloatLiteral float_literal;
457
0
        float_literal.__set_value(*origin_value);
458
0
        (*node).__set_float_literal(float_literal);
459
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_FLOAT));
460
0
    } else if constexpr (T == TYPE_DOUBLE) {
461
0
        const auto* origin_value = reinterpret_cast<const double*>(data);
462
0
        (*node).__set_node_type(TExprNodeType::FLOAT_LITERAL);
463
0
        TFloatLiteral float_literal;
464
0
        float_literal.__set_value(*origin_value);
465
0
        (*node).__set_float_literal(float_literal);
466
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_DOUBLE));
467
0
    } else if constexpr ((T == TYPE_STRING) || (T == TYPE_CHAR) || (T == TYPE_VARCHAR)) {
468
0
        const auto* origin_value = reinterpret_cast<const std::string*>(data);
469
0
        (*node).__set_node_type(TExprNodeType::STRING_LITERAL);
470
0
        TStringLiteral string_literal;
471
0
        string_literal.__set_value(*origin_value);
472
0
        (*node).__set_string_literal(string_literal);
473
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_STRING));
474
0
    } else if constexpr (T == TYPE_IPV4) {
475
0
        const auto* origin_value = reinterpret_cast<const IPv4*>(data);
476
0
        (*node).__set_node_type(TExprNodeType::IPV4_LITERAL);
477
0
        TIPv4Literal literal;
478
0
        literal.__set_value(*origin_value);
479
0
        (*node).__set_ipv4_literal(literal);
480
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_IPV4));
481
0
    } else if constexpr (T == TYPE_IPV6) {
482
0
        const auto* origin_value = reinterpret_cast<const IPv6*>(data);
483
0
        (*node).__set_node_type(TExprNodeType::IPV6_LITERAL);
484
0
        TIPv6Literal literal;
485
0
        literal.__set_value(vectorized::DataTypeIPv6::to_string(*origin_value));
486
0
        (*node).__set_ipv6_literal(literal);
487
0
        (*node).__set_type(create_type_desc(PrimitiveType::TYPE_IPV6));
488
0
    } else {
489
0
        return Status::InvalidArgument("Invalid argument type!");
490
0
    }
491
0
    return Status::OK();
492
0
}
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE2EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE3EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE4EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE5EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE6EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE7EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE8EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE9EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE25EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE26EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE11EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE12EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE20EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE28EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE29EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE30EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE35EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE15EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE10EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE23EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE36EEENS_6StatusEPKvPNS_9TExprNodeEii
Unexecuted instantiation: _ZN5doris25create_texpr_literal_nodeILNS_13PrimitiveTypeE37EEENS_6StatusEPKvPNS_9TExprNodeEii
493
// NOLINTEND(readability-function-size)
494
495
TExprNode create_texpr_node_from(const void* data, const PrimitiveType& type, int precision = 0,
496
                                 int scale = 0);
497
498
} // namespace doris