Coverage Report

Created: 2026-06-18 08:17

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/util/jsonb_document.h
Line
Count
Source
1
/*
2
 *  Copyright (c) 2014, Facebook, Inc.
3
 *  All rights reserved.
4
 *
5
 *  This source code is licensed under the BSD-style license found in the
6
 *  LICENSE file in the root directory of this source tree. An additional grant
7
 *  of patent rights can be found in the PATENTS file in the same directory.
8
 *
9
 */
10
11
/*
12
 * This header defines JsonbDocument, JsonbKeyValue, and various value classes
13
 * which are derived from JsonbValue, and a forward iterator for container
14
 * values - essentially everything that is related to JSONB binary data
15
 * structures.
16
 *
17
 * Implementation notes:
18
 *
19
 * None of the classes in this header file can be instantiated directly (i.e.
20
 * you cannot create a JsonbKeyValue or JsonbValue object - all constructors
21
 * are declared non-public). We use the classes as wrappers on the packed JSONB
22
 * bytes (serialized), and cast the classes (types) to the underlying packed
23
 * byte array.
24
 *
25
 * For the same reason, we cannot define any JSONB value class to be virtual,
26
 * since we never call constructors, and will not instantiate vtbl and vptrs.
27
 *
28
 * Therefore, the classes are defined as packed structures (i.e. no data
29
 * alignment and padding), and the private member variables of the classes are
30
 * defined precisely in the same order as the JSONB spec. This ensures we
31
 * access the packed JSONB bytes correctly.
32
 *
33
 * The packed structures are highly optimized for in-place operations with low
34
 * overhead. The reads (and in-place writes) are performed directly on packed
35
 * bytes. There is no memory allocation at all at runtime.
36
 *
37
 * For updates/writes of values that will expand the original JSONB size, the
38
 * write will fail, and the caller needs to handle buffer increase.
39
 *
40
 * ** Iterator **
41
 * Both ObjectVal class and ArrayVal class have iterator type that you can use
42
 * to declare an iterator on a container object to go through the key-value
43
 * pairs or value list. The iterator has both non-const and const types.
44
 *
45
 * Note: iterators are forward direction only.
46
 *
47
 * ** Query **
48
 * Querying into containers is through the member functions find (for key/value
49
 * pairs) and get (for array elements), and is in streaming style. We don't
50
 * need to read/scan the whole JSONB packed bytes in order to return results.
51
 * Once the key/index is found, we will stop search.  You can use text to query
52
 * both objects and array (for array, text will be converted to integer index),
53
 * and use index to retrieve from array. Array index is 0-based.
54
 *
55
 * ** External dictionary **
56
 * During query processing, you can also pass a call-back function, so the
57
 * search will first try to check if the key string exists in the dictionary.
58
 * If so, search will be based on the id instead of the key string.
59
 * @author Tian Xia <tianx@fb.com>
60
 * 
61
 * this file is copied from 
62
 * https://github.com/facebook/mysql-5.6/blob/fb-mysql-5.6.35/fbson/FbsonDocument.h
63
 * and modified by Doris
64
 */
65
66
#ifndef JSONB_JSONBDOCUMENT_H
67
#define JSONB_JSONBDOCUMENT_H
68
69
#include <algorithm>
70
#include <array>
71
#include <cctype>
72
#include <charconv>
73
#include <cmath>
74
#include <cstddef>
75
#include <cstdint>
76
#include <limits>
77
#include <string>
78
#include <string_view>
79
#include <type_traits>
80
81
#include "common/compiler_util.h" // IWYU pragma: keep
82
#include "common/status.h"
83
#include "core/data_type/define_primitive_type.h"
84
#include "core/string_ref.h"
85
#include "core/types.h"
86
#include "util/string_util.h"
87
88
// #include "util/string_parser.hpp"
89
90
// Concept to check for supported decimal types
91
template <typename T>
92
concept JsonbDecimalType =
93
        std::same_as<T, doris::Decimal256> || std::same_as<T, doris::Decimal64> ||
94
        std::same_as<T, doris::Decimal128V3> || std::same_as<T, doris::Decimal32>;
95
96
namespace doris {
97
98
template <typename T>
99
constexpr bool is_pod_v = std::is_trivial_v<T> && std::is_standard_layout_v<T>;
100
101
struct JsonbStringVal;
102
struct ObjectVal;
103
struct ArrayVal;
104
struct JsonbBinaryVal;
105
struct ContainerVal;
106
107
template <JsonbDecimalType T>
108
struct JsonbDecimalVal;
109
110
using JsonbDecimal256 = JsonbDecimalVal<Decimal256>;
111
using JsonbDecimal128 = JsonbDecimalVal<Decimal128V3>;
112
using JsonbDecimal64 = JsonbDecimalVal<Decimal64>;
113
using JsonbDecimal32 = JsonbDecimalVal<Decimal32>;
114
115
template <typename T>
116
    requires std::is_integral_v<T> || std::is_floating_point_v<T>
117
struct NumberValT;
118
119
using JsonbInt8Val = NumberValT<int8_t>;
120
using JsonbInt16Val = NumberValT<int16_t>;
121
using JsonbInt32Val = NumberValT<int32_t>;
122
using JsonbInt64Val = NumberValT<int64_t>;
123
using JsonbInt128Val = NumberValT<int128_t>;
124
using JsonbDoubleVal = NumberValT<double>;
125
using JsonbFloatVal = NumberValT<float>;
126
127
template <typename T>
128
concept JsonbPodType = (std::same_as<T, JsonbStringVal> || std::same_as<T, ObjectVal> ||
129
                        std::same_as<T, ContainerVal> || std::same_as<T, ArrayVal> ||
130
                        std::same_as<T, JsonbBinaryVal> || std::same_as<T, JsonbDecimal32> ||
131
                        std::same_as<T, JsonbDecimal64> || std::same_as<T, JsonbDecimal128> ||
132
                        std::same_as<T, JsonbDecimal256> || std::same_as<T, JsonbDecimal32> ||
133
                        std::same_as<T, JsonbInt8Val> || std::same_as<T, JsonbInt16Val> ||
134
                        std::same_as<T, JsonbInt32Val> || std::same_as<T, JsonbInt64Val> ||
135
                        std::same_as<T, JsonbInt128Val> || std::same_as<T, JsonbFloatVal> ||
136
                        std::same_as<T, JsonbFloatVal> || std::same_as<T, JsonbDoubleVal>);
137
138
1.21M
#define JSONB_VER 1
139
140
using int128_t = __int128;
141
142
// forward declaration
143
struct JsonbValue;
144
145
class JsonbOutStream;
146
147
template <class OS_TYPE>
148
class JsonbWriterT;
149
150
using JsonbWriter = JsonbWriterT<JsonbOutStream>;
151
152
const int MaxNestingLevel = 100;
153
154
/*
155
 * JsonbType defines 10 primitive types and 2 container types, as described
156
 * below.
157
 * NOTE: Do NOT modify the existing values or their order in this enum.
158
 *      You may only append new entries at the end before `NUM_TYPES`.
159
 *      This enum will be used in serialized data and/or persisted data.
160
 *      Changing existing values may break backward compatibility
161
 *      with previously stored or transmitted data.
162
 *
163
 * primitive_value ::=
164
 *   0x00        //null value (0 byte)
165
 * | 0x01        //boolean true (0 byte)
166
 * | 0x02        //boolean false (0 byte)
167
 * | 0x03 int8   //char/int8 (1 byte)
168
 * | 0x04 int16  //int16 (2 bytes)
169
 * | 0x05 int32  //int32 (4 bytes)
170
 * | 0x06 int64  //int64 (8 bytes)
171
 * | 0x07 double //floating point (8 bytes)
172
 * | 0x08 string //variable length string
173
 * | 0x09 binary //variable length binary
174
 *
175
 * container ::=
176
 *   0x0A int32 key_value_list //object, int32 is the total bytes of the object
177
 * | 0x0B int32 value_list     //array, int32 is the total bytes of the array
178
 */
179
enum class JsonbType : char {
180
    T_Null = 0x00,
181
    T_True = 0x01,
182
    T_False = 0x02,
183
    T_Int8 = 0x03,
184
    T_Int16 = 0x04,
185
    T_Int32 = 0x05,
186
    T_Int64 = 0x06,
187
    T_Double = 0x07,
188
    T_String = 0x08,
189
    T_Binary = 0x09,
190
    T_Object = 0x0A,
191
    T_Array = 0x0B,
192
    T_Int128 = 0x0C,
193
    T_Float = 0x0D,
194
    T_Decimal32 = 0x0E,  // DecimalV3 only
195
    T_Decimal64 = 0x0F,  // DecimalV3 only
196
    T_Decimal128 = 0x10, // DecimalV3 only
197
    T_Decimal256 = 0x11, // DecimalV3 only
198
    NUM_TYPES,
199
};
200
201
inline PrimitiveType get_primitive_type_from_json_type(JsonbType json_type) {
202
    switch (json_type) {
203
    case JsonbType::T_Null:
204
        return TYPE_NULL;
205
    case JsonbType::T_True:
206
    case JsonbType::T_False:
207
        return TYPE_BOOLEAN;
208
    case JsonbType::T_Int8:
209
        return TYPE_TINYINT;
210
    case JsonbType::T_Int16:
211
        return TYPE_SMALLINT;
212
    case JsonbType::T_Int32:
213
        return TYPE_INT;
214
    case JsonbType::T_Int64:
215
        return TYPE_BIGINT;
216
    case JsonbType::T_Double:
217
        return TYPE_DOUBLE;
218
    case JsonbType::T_String:
219
        return TYPE_STRING;
220
    case JsonbType::T_Binary:
221
        return TYPE_BINARY;
222
    case JsonbType::T_Object:
223
        return TYPE_STRUCT;
224
    case JsonbType::T_Array:
225
        return TYPE_ARRAY;
226
    case JsonbType::T_Int128:
227
        return TYPE_LARGEINT;
228
    case JsonbType::T_Float:
229
        return TYPE_FLOAT;
230
    case JsonbType::T_Decimal32:
231
        return TYPE_DECIMAL32;
232
    case JsonbType::T_Decimal64:
233
        return TYPE_DECIMAL64;
234
    case JsonbType::T_Decimal128:
235
        return TYPE_DECIMAL128I;
236
    case JsonbType::T_Decimal256:
237
        return TYPE_DECIMAL256;
238
    default:
239
        throw Exception(ErrorCode::INTERNAL_ERROR, "Unsupported JsonbType: {}",
240
                        static_cast<int>(json_type));
241
    }
242
}
243
244
//for parse json path
245
constexpr char SCOPE = '$';
246
constexpr char BEGIN_MEMBER = '.';
247
constexpr char BEGIN_ARRAY = '[';
248
constexpr char END_ARRAY = ']';
249
constexpr char DOUBLE_QUOTE = '"';
250
constexpr char WILDCARD = '*';
251
constexpr char MINUS = '-';
252
constexpr char LAST[] = "last";
253
constexpr char ESCAPE = '\\';
254
constexpr unsigned int MEMBER_CODE = 0;
255
constexpr unsigned int ARRAY_CODE = 1;
256
257
/// A simple input stream class for the JSON path parser.
258
class Stream {
259
public:
260
    /// Creates an input stream reading from a character string.
261
    /// @param string  the input string
262
    /// @param length  the length of the input string
263
876
    Stream(const char* string, size_t length) : m_position(string), m_end(string + length) {}
264
265
    /// Returns a pointer to the current position in the stream.
266
222
    const char* position() const { return m_position; }
267
268
    /// Returns a pointer to the position just after the end of the stream.
269
0
    const char* end() const { return m_end; }
270
271
    /// Returns the number of bytes remaining in the stream.
272
6.94k
    size_t remaining() const {
273
6.94k
        assert(m_position <= m_end);
274
6.94k
        return m_end - m_position;
275
6.94k
    }
276
277
    /// Tells if the stream has been exhausted.
278
6.51k
    bool exhausted() const { return remaining() == 0; }
279
280
    /// Reads the next byte from the stream and moves the position forward.
281
868
    char read() {
282
868
        assert(!exhausted());
283
868
        return *m_position++;
284
868
    }
285
286
    /// Reads the next byte from the stream without moving the position forward.
287
2.57k
    char peek() const {
288
2.57k
        assert(!exhausted());
289
2.57k
        return *m_position;
290
2.57k
    }
291
292
    /// Moves the position to the next non-whitespace character.
293
1.51k
    void skip_whitespace() {
294
1.51k
        m_position = std::find_if_not(m_position, m_end, [](char c) { return std::isspace(c); });
295
1.51k
    }
296
297
    /// Moves the position n bytes forward.
298
430
    void skip(size_t n) {
299
430
        assert(remaining() >= n);
300
430
        m_position += n;
301
430
        skip_whitespace();
302
430
    }
303
304
392
    void advance() { m_position++; }
305
306
443
    void clear_leg_ptr() { leg_ptr = nullptr; }
307
308
227
    void set_leg_ptr(char* ptr) {
309
227
        clear_leg_ptr();
310
227
        leg_ptr = ptr;
311
227
    }
312
313
304
    char* get_leg_ptr() { return leg_ptr; }
314
315
224
    void clear_leg_len() { leg_len = 0; }
316
317
477
    void add_leg_len() { leg_len++; }
318
319
440
    unsigned int get_leg_len() const { return leg_len; }
320
321
11
    void remove_escapes() {
322
11
        unsigned int new_len = 0;
323
82
        for (unsigned int i = 0; i < leg_len; ++i) {
324
72
            if (leg_ptr[i] != ESCAPE) {
325
43
                leg_ptr[new_len++] = leg_ptr[i];
326
43
                continue;
327
43
            }
328
329
29
            ++i;
330
29
            if (i >= leg_len) {
331
1
                break;
332
1
            }
333
334
28
            switch (leg_ptr[i]) {
335
2
            case 'b':
336
2
                leg_ptr[new_len++] = '\b';
337
2
                break;
338
2
            case 'f':
339
2
                leg_ptr[new_len++] = '\f';
340
2
                break;
341
3
            case 'n':
342
3
                leg_ptr[new_len++] = '\n';
343
3
                break;
344
2
            case 'r':
345
2
                leg_ptr[new_len++] = '\r';
346
2
                break;
347
2
            case 't':
348
2
                leg_ptr[new_len++] = '\t';
349
2
                break;
350
11
            case 'u': {
351
11
                if (i + 4 >= leg_len || leg_ptr[i + 1] != '0' || leg_ptr[i + 2] != '0') {
352
2
                    leg_ptr[new_len++] = leg_ptr[i];
353
2
                    break;
354
2
                }
355
356
18
                auto hex_to_int = [](char c) -> int {
357
18
                    if (c >= '0' && c <= '9') {
358
12
                        return c - '0';
359
12
                    }
360
6
                    if (c >= 'a' && c <= 'f') {
361
2
                        return c - 'a' + 10;
362
2
                    }
363
4
                    if (c >= 'A' && c <= 'F') {
364
1
                        return c - 'A' + 10;
365
1
                    }
366
3
                    return -1;
367
4
                };
368
9
                int high = hex_to_int(leg_ptr[i + 3]);
369
9
                int low = hex_to_int(leg_ptr[i + 4]);
370
9
                if (high < 0 || low < 0) {
371
3
                    leg_ptr[new_len++] = leg_ptr[i];
372
3
                    break;
373
3
                }
374
6
                leg_ptr[new_len++] = static_cast<char>((high << 4) | low);
375
6
                i += 4;
376
6
                break;
377
9
            }
378
6
            default:
379
6
                leg_ptr[new_len++] = leg_ptr[i];
380
6
                break;
381
28
            }
382
28
        }
383
11
        leg_ptr[new_len] = '\0';
384
11
        leg_len = new_len;
385
11
    }
386
387
227
    void set_has_escapes(bool has) { has_escapes = has; }
388
389
88
    bool get_has_escapes() const { return has_escapes; }
390
391
private:
392
    /// The current position in the stream.
393
    const char* m_position = nullptr;
394
395
    /// The end of the stream.
396
    const char* const m_end;
397
398
    ///path leg ptr
399
    char* leg_ptr = nullptr;
400
401
    ///path leg len
402
    unsigned int leg_len;
403
404
    ///Whether to contain escape characters
405
    bool has_escapes = false;
406
};
407
408
struct leg_info {
409
    ///path leg ptr
410
    char* leg_ptr = nullptr;
411
412
    ///path leg len
413
    unsigned int leg_len;
414
415
    ///array_index
416
    int array_index;
417
418
    ///type: 0 is member 1 is array
419
    unsigned int type;
420
421
    // NOLINTNEXTLINE(readability-non-const-parameter): str is an output parameter.
422
7
    bool to_string(std::string* str) const {
423
7
        if (type == MEMBER_CODE) {
424
7
            str->push_back(BEGIN_MEMBER);
425
7
            bool contains_space = false;
426
7
            std::string tmp;
427
54
            for (auto* it = leg_ptr; it != (leg_ptr + leg_len); ++it) {
428
47
                auto c = static_cast<unsigned char>(*it);
429
47
                if (std::isspace(c)) {
430
9
                    contains_space = true;
431
9
                }
432
433
47
                switch (*it) {
434
2
                case '"':
435
2
                    tmp.append("\\\"");
436
2
                    break;
437
2
                case ESCAPE:
438
2
                    tmp.append("\\\\");
439
2
                    break;
440
2
                case '\b':
441
2
                    tmp.append("\\b");
442
2
                    break;
443
2
                case '\f':
444
2
                    tmp.append("\\f");
445
2
                    break;
446
3
                case '\n':
447
3
                    tmp.append("\\n");
448
3
                    break;
449
2
                case '\r':
450
2
                    tmp.append("\\r");
451
2
                    break;
452
2
                case '\t':
453
2
                    tmp.append("\\t");
454
2
                    break;
455
32
                default:
456
32
                    if (c < 0x20) {
457
6
                        constexpr char hex[] = "0123456789abcdef";
458
6
                        tmp.append("\\u00");
459
6
                        tmp.push_back(hex[c >> 4]);
460
6
                        tmp.push_back(hex[c & 0x0F]);
461
26
                    } else {
462
26
                        tmp.push_back(*it);
463
26
                    }
464
32
                    break;
465
47
                }
466
47
            }
467
7
            if (contains_space) {
468
5
                str->push_back(DOUBLE_QUOTE);
469
5
            }
470
7
            str->append(tmp);
471
7
            if (contains_space) {
472
5
                str->push_back(DOUBLE_QUOTE);
473
5
            }
474
7
            return true;
475
7
        } else if (type == ARRAY_CODE) {
476
0
            str->push_back(BEGIN_ARRAY);
477
0
            std::string int_str = std::to_string(array_index);
478
0
            str->append(int_str);
479
0
            str->push_back(END_ARRAY);
480
0
            return true;
481
0
        } else {
482
0
            return false;
483
0
        }
484
7
    }
485
};
486
487
class JsonbPath {
488
public:
489
    // parse json path
490
    static bool parsePath(Stream* stream, JsonbPath* path);
491
492
    static bool parse_array(Stream* stream, JsonbPath* path);
493
    static bool parse_member(Stream* stream, JsonbPath* path);
494
495
    //return true if json path valid else return false
496
    bool seek(const char* string, size_t length);
497
498
224
    void add_leg_to_leg_vector(std::unique_ptr<leg_info> leg) {
499
224
        leg_vector.emplace_back(leg.release());
500
224
    }
501
502
0
    void pop_leg_from_leg_vector() { leg_vector.pop_back(); }
503
504
    // NOLINTNEXTLINE(readability-non-const-parameter): res is an output parameter.
505
3
    bool to_string(std::string* res) const {
506
3
        res->push_back(SCOPE);
507
5
        for (const auto& leg : leg_vector) {
508
5
            auto valid = leg->to_string(res);
509
5
            if (!valid) {
510
0
                return false;
511
0
            }
512
5
        }
513
3
        return true;
514
3
    }
515
516
1.69k
    size_t get_leg_vector_size() const { return leg_vector.size(); }
517
518
2.85k
    leg_info* get_leg_from_leg_vector(size_t i) const { return leg_vector[i].get(); }
519
520
9
    bool is_wildcard() const { return _is_wildcard; }
521
1.11k
    bool is_supper_wildcard() const { return _is_supper_wildcard; }
522
523
6
    void clean() { leg_vector.clear(); }
524
525
private:
526
    std::vector<std::unique_ptr<leg_info>> leg_vector;
527
    bool _is_wildcard = false;        // whether the path is a wildcard path
528
    bool _is_supper_wildcard = false; // supper wildcard likes '$**.a' or '$**[1]'
529
};
530
531
/*
532
 * JsonbFwdIteratorT implements JSONB's iterator template.
533
 *
534
 * Note: it is an FORWARD iterator only due to the design of JSONB format.
535
 */
536
template <class Iter_Type, class Cont_Type>
537
class JsonbFwdIteratorT {
538
public:
539
    using iterator = Iter_Type;
540
    using pointer = typename std::iterator_traits<Iter_Type>::pointer;
541
    using reference = typename std::iterator_traits<Iter_Type>::reference;
542
543
    explicit JsonbFwdIteratorT() : current_(nullptr) {}
544
28.3k
    explicit JsonbFwdIteratorT(const iterator& i) : current_(i) {}
_ZN5doris17JsonbFwdIteratorTIPKNS_13JsonbKeyValueENS_9ObjectValEEC2ERKS3_
Line
Count
Source
544
25.7k
    explicit JsonbFwdIteratorT(const iterator& i) : current_(i) {}
_ZN5doris17JsonbFwdIteratorTIPKNS_10JsonbValueENS_8ArrayValEEC2ERKS3_
Line
Count
Source
544
2.62k
    explicit JsonbFwdIteratorT(const iterator& i) : current_(i) {}
545
546
    // allow non-const to const iterator conversion (same container type)
547
    template <class Iter_Ty>
548
    JsonbFwdIteratorT(const JsonbFwdIteratorT<Iter_Ty, Cont_Type>& rhs) : current_(rhs.base()) {}
549
550
36.1k
    bool operator==(const JsonbFwdIteratorT& rhs) const { return (current_ == rhs.current_); }
_ZNK5doris17JsonbFwdIteratorTIPKNS_13JsonbKeyValueENS_9ObjectValEEeqERKS5_
Line
Count
Source
550
27.7k
    bool operator==(const JsonbFwdIteratorT& rhs) const { return (current_ == rhs.current_); }
_ZNK5doris17JsonbFwdIteratorTIPKNS_10JsonbValueENS_8ArrayValEEeqERKS5_
Line
Count
Source
550
8.47k
    bool operator==(const JsonbFwdIteratorT& rhs) const { return (current_ == rhs.current_); }
551
552
31.7k
    bool operator!=(const JsonbFwdIteratorT& rhs) const { return !operator==(rhs); }
_ZNK5doris17JsonbFwdIteratorTIPKNS_13JsonbKeyValueENS_9ObjectValEEneERKS5_
Line
Count
Source
552
24.5k
    bool operator!=(const JsonbFwdIteratorT& rhs) const { return !operator==(rhs); }
_ZNK5doris17JsonbFwdIteratorTIPKNS_10JsonbValueENS_8ArrayValEEneERKS5_
Line
Count
Source
552
7.16k
    bool operator!=(const JsonbFwdIteratorT& rhs) const { return !operator==(rhs); }
553
554
9.26k
    bool operator<(const JsonbFwdIteratorT& rhs) const { return (current_ < rhs.current_); }
555
556
    bool operator>(const JsonbFwdIteratorT& rhs) const { return !operator<(rhs); }
557
558
26.2k
    JsonbFwdIteratorT& operator++() {
559
26.2k
        current_ = (iterator)(((char*)current_) + current_->numPackedBytes());
560
26.2k
        return *this;
561
26.2k
    }
_ZN5doris17JsonbFwdIteratorTIPKNS_13JsonbKeyValueENS_9ObjectValEEppEv
Line
Count
Source
558
23.3k
    JsonbFwdIteratorT& operator++() {
559
23.3k
        current_ = (iterator)(((char*)current_) + current_->numPackedBytes());
560
23.3k
        return *this;
561
23.3k
    }
_ZN5doris17JsonbFwdIteratorTIPKNS_10JsonbValueENS_8ArrayValEEppEv
Line
Count
Source
558
2.92k
    JsonbFwdIteratorT& operator++() {
559
2.92k
        current_ = (iterator)(((char*)current_) + current_->numPackedBytes());
560
2.92k
        return *this;
561
2.92k
    }
562
563
    JsonbFwdIteratorT operator++(int) {
564
        auto tmp = *this;
565
        current_ = (iterator)(((char*)current_) + current_->numPackedBytes());
566
        return tmp;
567
    }
568
569
2.92k
    explicit operator pointer() { return current_; }
570
571
43
    reference operator*() const { return *current_; }
Unexecuted instantiation: _ZNK5doris17JsonbFwdIteratorTIPKNS_10JsonbValueENS_8ArrayValEEdeEv
_ZNK5doris17JsonbFwdIteratorTIPKNS_13JsonbKeyValueENS_9ObjectValEEdeEv
Line
Count
Source
571
43
    reference operator*() const { return *current_; }
572
573
51.8k
    pointer operator->() const { return current_; }
574
575
    iterator base() const { return current_; }
576
577
private:
578
    iterator current_;
579
};
580
using JsonbTypeUnder = std::underlying_type_t<JsonbType>;
581
582
#if defined(__clang__)
583
#pragma clang diagnostic push
584
#pragma clang diagnostic ignored "-Wzero-length-array"
585
#endif
586
#pragma pack(push, 1)
587
588
/*
589
 * JsonbDocument is the main object that accesses and queries JSONB packed
590
 * bytes. NOTE: JsonbDocument only allows object container as the top level
591
 * JSONB value. However, you can use the static method "createValue" to get any
592
 * JsonbValue object from the packed bytes.
593
 *
594
 * JsonbDocument object also dereferences to an object container value
595
 * (ObjectVal) once JSONB is loaded.
596
 *
597
 * ** Load **
598
 * JsonbDocument is usable after loading packed bytes (memory location) into
599
 * the object. We only need the header and first few bytes of the payload after
600
 * header to verify the JSONB.
601
 *
602
 * Note: creating an JsonbDocument (through createDocument) does not allocate
603
 * any memory. The document object is an efficient wrapper on the packed bytes
604
 * which is accessed directly.
605
 *
606
 * ** Query **
607
 * Query is through dereferencing into ObjectVal.
608
 */
609
class JsonbDocument {
610
public:
611
    // create an JsonbDocument object from JSONB packed bytes
612
    [[nodiscard]] static Status checkAndCreateDocument(const char* pb, size_t size,
613
                                                       const JsonbDocument** doc);
614
615
    // create an JsonbValue from JSONB packed bytes
616
    static const JsonbValue* createValue(const char* pb, size_t size);
617
618
0
    uint8_t version() const { return header_.ver_; }
619
620
29.4k
    const JsonbValue* getValue() const { return ((const JsonbValue*)payload_); }
621
622
    unsigned int numPackedBytes() const;
623
624
    const ObjectVal* operator->() const;
625
626
private:
627
    /*
628
   * JsonbHeader class defines JSONB header (internal to JsonbDocument).
629
   *
630
   * Currently it only contains version information (1-byte). We may expand the
631
   * header to include checksum of the JSONB binary for more security.
632
   */
633
    struct JsonbHeader {
634
        uint8_t ver_;
635
    } header_;
636
637
    char payload_[0];
638
};
639
640
/*
641
 * JsonbKeyValue class defines JSONB key type, as described below.
642
 *
643
 * key ::=
644
 *   0x00 int8    //1-byte dictionary id
645
 * | int8 (byte*) //int8 (>0) is the size of the key string
646
 *
647
 * value ::= primitive_value | container
648
 *
649
 * JsonbKeyValue can be either an id mapping to the key string in an external
650
 * dictionary, or it is the original key string. Whether to read an id or a
651
 * string is decided by the first byte (size).
652
 *
653
 * Note: a key object must be followed by a value object. Therefore, a key
654
 * object implicitly refers to a key-value pair, and you can get the value
655
 * object right after the key object. The function numPackedBytes hence
656
 * indicates the total size of the key-value pair, so that we will be able go
657
 * to next pair from the key.
658
 *
659
 * ** Dictionary size **
660
 * By default, the dictionary size is 255 (1-byte). Users can define
661
 * "USE_LARGE_DICT" to increase the dictionary size to 655535 (2-byte).
662
 */
663
class JsonbKeyValue {
664
public:
665
    // now we use sMaxKeyId to represent an empty key
666
    static const int sMaxKeyId = 65535;
667
    using keyid_type = uint16_t;
668
669
    static const uint8_t sMaxKeyLen = 64;
670
671
    // size of the key. 0 indicates it is stored as id
672
12.9k
    uint8_t klen() const { return size; }
673
674
    // get the key string. Note the string may not be null terminated.
675
6.60k
    const char* getKeyStr() const { return key.str_; }
676
677
9.33k
    keyid_type getKeyId() const { return key.id_; }
678
679
47.0k
    unsigned int keyPackedBytes() const {
680
47.0k
        return size ? (sizeof(size) + size) : (sizeof(size) + sizeof(keyid_type));
681
47.0k
    }
682
683
23.5k
    const JsonbValue* value() const {
684
23.5k
        return (const JsonbValue*)(((char*)this) + keyPackedBytes());
685
23.5k
    }
686
687
    // size of the total packed bytes (key+value)
688
    unsigned int numPackedBytes() const;
689
690
    uint8_t size;
691
692
    union key_ {
693
        keyid_type id_;
694
        char str_[1];
695
    } key;
696
};
697
698
struct JsonbFindResult {
699
    const JsonbValue* value = nullptr;   // found value
700
    std::unique_ptr<JsonbWriter> writer; // writer to write the value
701
    bool is_wildcard = false;            // whether the path is a wildcard path
702
};
703
704
/*
705
 * JsonbValue is the base class of all JSONB types. It contains only one member
706
 * variable - type info, which can be retrieved by member functions is[Type]()
707
 * or type().
708
 */
709
struct JsonbValue {
710
    static const uint32_t sMaxValueLen = 1 << 24; // 16M
711
712
4.29k
    bool isNull() const { return (type == JsonbType::T_Null); }
713
21
    bool isTrue() const { return (type == JsonbType::T_True); }
714
1
    bool isFalse() const { return (type == JsonbType::T_False); }
715
54
    bool isInt() const { return isInt8() || isInt16() || isInt32() || isInt64() || isInt128(); }
716
54
    bool isInt8() const { return (type == JsonbType::T_Int8); }
717
30
    bool isInt16() const { return (type == JsonbType::T_Int16); }
718
28
    bool isInt32() const { return (type == JsonbType::T_Int32); }
719
31
    bool isInt64() const { return (type == JsonbType::T_Int64); }
720
190
    bool isDouble() const { return (type == JsonbType::T_Double); }
721
153
    bool isFloat() const { return (type == JsonbType::T_Float); }
722
45
    bool isString() const { return (type == JsonbType::T_String); }
723
1.09k
    bool isBinary() const { return (type == JsonbType::T_Binary); }
724
105
    bool isObject() const { return (type == JsonbType::T_Object); }
725
25
    bool isArray() const { return (type == JsonbType::T_Array); }
726
31
    bool isInt128() const { return (type == JsonbType::T_Int128); }
727
74
    bool isDecimal() const {
728
74
        return (type == JsonbType::T_Decimal32 || type == JsonbType::T_Decimal64 ||
729
74
                type == JsonbType::T_Decimal128 || type == JsonbType::T_Decimal256);
730
74
    }
731
    bool isDecimal32() const { return (type == JsonbType::T_Decimal32); }
732
    bool isDecimal64() const { return (type == JsonbType::T_Decimal64); }
733
    bool isDecimal128() const { return (type == JsonbType::T_Decimal128); }
734
    bool isDecimal256() const { return (type == JsonbType::T_Decimal256); }
735
736
    PrimitiveType get_primitive_type() const { return get_primitive_type_from_json_type(type); }
737
738
0
    const char* typeName() const {
739
0
        switch (type) {
740
0
        case JsonbType::T_Null:
741
0
            return "null";
742
0
        case JsonbType::T_True:
743
0
        case JsonbType::T_False:
744
0
            return "bool";
745
0
        case JsonbType::T_Int8:
746
0
        case JsonbType::T_Int16:
747
0
        case JsonbType::T_Int32:
748
0
            return "int";
749
0
        case JsonbType::T_Int64:
750
0
            return "bigint";
751
0
        case JsonbType::T_Int128:
752
0
            return "largeint";
753
0
        case JsonbType::T_Double:
754
0
            return "double";
755
0
        case JsonbType::T_Float:
756
0
            return "float";
757
0
        case JsonbType::T_String:
758
0
            return "string";
759
0
        case JsonbType::T_Binary:
760
0
            return "binary";
761
0
        case JsonbType::T_Object:
762
0
            return "object";
763
0
        case JsonbType::T_Array:
764
0
            return "array";
765
0
        case JsonbType::T_Decimal32:
766
0
            return "Decimal32";
767
0
        case JsonbType::T_Decimal64:
768
0
            return "Decimal64";
769
0
        case JsonbType::T_Decimal128:
770
0
            return "Decimal128";
771
0
        case JsonbType::T_Decimal256:
772
0
            return "Decimal256";
773
0
        default:
774
0
            return "unknown";
775
0
        }
776
0
    }
777
778
    // size of the total packed bytes
779
    unsigned int numPackedBytes() const;
780
781
    // size of the value in bytes
782
    unsigned int size() const;
783
784
    //Get the number of jsonbvalue elements
785
    int numElements() const;
786
787
    //Whether to include the jsonbvalue rhs
788
    bool contains(const JsonbValue* rhs) const;
789
790
    // find the JSONB value by JsonbPath
791
    JsonbFindResult findValue(JsonbPath& path) const;
792
    friend class JsonbDocument;
793
794
    JsonbType type; // type info
795
796
    char payload[0]; // payload, which is the packed bytes of the value
797
798
    /**
799
    * @brief Unpacks the underlying Jsonb binary content as a pointer to type `T`.
800
    *
801
    * @tparam T A POD (Plain Old Data) type that must satisfy the `JsonbPodType` concept.
802
    *           This ensures that `T` is trivially copyable, standard-layout, and safe to
803
    *           reinterpret from raw bytes without invoking undefined behavior.
804
    *
805
    * @return A pointer to a `const T` object, interpreted from the internal buffer.
806
    *
807
    * @note The caller must ensure that the current JsonbValue actually contains data
808
    *       compatible with type `T`, otherwise the result is undefined.
809
    */
810
    template <JsonbPodType T>
811
180k
    const T* unpack() const {
812
180k
        static_assert(is_pod_v<T>, "T must be a POD type");
813
180k
        return reinterpret_cast<const T*>(payload);
814
180k
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_9ObjectValEEEPKT_v
Line
Count
Source
811
22.4k
    const T* unpack() const {
812
22.4k
        static_assert(is_pod_v<T>, "T must be a POD type");
813
22.4k
        return reinterpret_cast<const T*>(payload);
814
22.4k
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_10NumberValTIaEEEEPKT_v
Line
Count
Source
811
2.04k
    const T* unpack() const {
812
2.04k
        static_assert(is_pod_v<T>, "T must be a POD type");
813
2.04k
        return reinterpret_cast<const T*>(payload);
814
2.04k
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_10NumberValTIsEEEEPKT_v
Line
Count
Source
811
228
    const T* unpack() const {
812
228
        static_assert(is_pod_v<T>, "T must be a POD type");
813
228
        return reinterpret_cast<const T*>(payload);
814
228
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_10NumberValTIiEEEEPKT_v
Line
Count
Source
811
3.68k
    const T* unpack() const {
812
3.68k
        static_assert(is_pod_v<T>, "T must be a POD type");
813
3.68k
        return reinterpret_cast<const T*>(payload);
814
3.68k
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_10NumberValTIlEEEEPKT_v
Line
Count
Source
811
1.94k
    const T* unpack() const {
812
1.94k
        static_assert(is_pod_v<T>, "T must be a POD type");
813
1.94k
        return reinterpret_cast<const T*>(payload);
814
1.94k
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_10NumberValTInEEEEPKT_v
Line
Count
Source
811
4.17k
    const T* unpack() const {
812
4.17k
        static_assert(is_pod_v<T>, "T must be a POD type");
813
4.17k
        return reinterpret_cast<const T*>(payload);
814
4.17k
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_10NumberValTIdEEEEPKT_v
Line
Count
Source
811
192
    const T* unpack() const {
812
192
        static_assert(is_pod_v<T>, "T must be a POD type");
813
192
        return reinterpret_cast<const T*>(payload);
814
192
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_10NumberValTIfEEEEPKT_v
Line
Count
Source
811
28
    const T* unpack() const {
812
28
        static_assert(is_pod_v<T>, "T must be a POD type");
813
28
        return reinterpret_cast<const T*>(payload);
814
28
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_15JsonbDecimalValINS_7DecimalIiEEEEEEPKT_v
Line
Count
Source
811
25
    const T* unpack() const {
812
25
        static_assert(is_pod_v<T>, "T must be a POD type");
813
25
        return reinterpret_cast<const T*>(payload);
814
25
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_15JsonbDecimalValINS_7DecimalIlEEEEEEPKT_v
Line
Count
Source
811
15
    const T* unpack() const {
812
15
        static_assert(is_pod_v<T>, "T must be a POD type");
813
15
        return reinterpret_cast<const T*>(payload);
814
15
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_15JsonbDecimalValINS_12Decimal128V3EEEEEPKT_v
Line
Count
Source
811
23
    const T* unpack() const {
812
23
        static_assert(is_pod_v<T>, "T must be a POD type");
813
23
        return reinterpret_cast<const T*>(payload);
814
23
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_15JsonbDecimalValINS_7DecimalIN4wide7integerILm256EiEEEEEEEEPKT_v
Line
Count
Source
811
13
    const T* unpack() const {
812
13
        static_assert(is_pod_v<T>, "T must be a POD type");
813
13
        return reinterpret_cast<const T*>(payload);
814
13
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_14JsonbBinaryValEEEPKT_v
Line
Count
Source
811
24.0k
    const T* unpack() const {
812
24.0k
        static_assert(is_pod_v<T>, "T must be a POD type");
813
24.0k
        return reinterpret_cast<const T*>(payload);
814
24.0k
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_12ContainerValEEEPKT_v
Line
Count
Source
811
110k
    const T* unpack() const {
812
110k
        static_assert(is_pod_v<T>, "T must be a POD type");
813
110k
        return reinterpret_cast<const T*>(payload);
814
110k
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_8ArrayValEEEPKT_v
Line
Count
Source
811
2.35k
    const T* unpack() const {
812
2.35k
        static_assert(is_pod_v<T>, "T must be a POD type");
813
2.35k
        return reinterpret_cast<const T*>(payload);
814
2.35k
    }
_ZNK5doris10JsonbValue6unpackITkNS_12JsonbPodTypeENS_14JsonbStringValEEEPKT_v
Line
Count
Source
811
8.64k
    const T* unpack() const {
812
8.64k
        static_assert(is_pod_v<T>, "T must be a POD type");
813
8.64k
        return reinterpret_cast<const T*>(payload);
814
8.64k
    }
815
816
    // /**
817
    // * @brief Unpacks the underlying Jsonb binary content as a pointer to type `T`.
818
    // *
819
    // * @tparam T A POD (Plain Old Data) type that must satisfy the `JsonbPodType` concept.
820
    // *           This ensures that `T` is trivially copyable, standard-layout, and safe to
821
    // *           reinterpret from raw bytes without invoking undefined behavior.
822
    // *
823
    // * @return A pointer to a `T` object, interpreted from the internal buffer.
824
    // *
825
    // * @note The caller must ensure that the current JsonbValue actually contains data
826
    // *       compatible with type `T`, otherwise the result is undefined.
827
    // */
828
    // template <JsonbPodType T>
829
    // T* unpack() {
830
    //     static_assert(is_pod_v<T>, "T must be a POD type");
831
    //     return reinterpret_cast<T*>(payload);
832
    // }
833
834
    int128_t int_val() const;
835
};
836
837
// inline ObjectVal* JsonbDocument::operator->() {
838
//     return (((JsonbValue*)payload_)->unpack<ObjectVal>());
839
// }
840
841
19.2k
inline const ObjectVal* JsonbDocument::operator->() const {
842
19.2k
    return (((const JsonbValue*)payload_)->unpack<ObjectVal>());
843
19.2k
}
844
845
/*
846
 * NumerValT is the template class (derived from JsonbValue) of all number
847
 * types (integers and double).
848
 */
849
template <typename T>
850
    requires std::is_integral_v<T> || std::is_floating_point_v<T>
851
struct NumberValT {
852
public:
853
12.2k
    T val() const { return num; }
_ZNK5doris10NumberValTIaE3valEv
Line
Count
Source
853
2.04k
    T val() const { return num; }
_ZNK5doris10NumberValTIsE3valEv
Line
Count
Source
853
228
    T val() const { return num; }
_ZNK5doris10NumberValTIiE3valEv
Line
Count
Source
853
3.68k
    T val() const { return num; }
_ZNK5doris10NumberValTIlE3valEv
Line
Count
Source
853
1.94k
    T val() const { return num; }
_ZNK5doris10NumberValTInE3valEv
Line
Count
Source
853
4.17k
    T val() const { return num; }
_ZNK5doris10NumberValTIdE3valEv
Line
Count
Source
853
192
    T val() const { return num; }
_ZNK5doris10NumberValTIfE3valEv
Line
Count
Source
853
28
    T val() const { return num; }
854
855
    static unsigned int numPackedBytes() { return sizeof(JsonbValue) + sizeof(T); }
856
857
    T num;
858
};
859
860
49
inline int128_t JsonbValue::int_val() const {
861
49
    switch (type) {
862
42
    case JsonbType::T_Int8:
863
42
        return unpack<JsonbInt8Val>()->val();
864
1
    case JsonbType::T_Int16:
865
1
        return unpack<JsonbInt16Val>()->val();
866
0
    case JsonbType::T_Int32:
867
0
        return unpack<JsonbInt32Val>()->val();
868
3
    case JsonbType::T_Int64:
869
3
        return unpack<JsonbInt64Val>()->val();
870
3
    case JsonbType::T_Int128:
871
3
        return unpack<JsonbInt128Val>()->val();
872
0
    default:
873
0
        throw Exception(ErrorCode::INTERNAL_ERROR, "Invalid JSONB value type: {}",
874
0
                        static_cast<int32_t>(type));
875
49
    }
876
49
}
877
878
template <JsonbDecimalType T>
879
struct JsonbDecimalVal {
880
public:
881
    using NativeType = typename T::NativeType;
882
883
    // get the decimal value
884
44
    NativeType val() const {
885
        // to avoid memory alignment issues, we use memcpy to copy the value
886
44
        NativeType tmp;
887
44
        memcpy(&tmp, &value, sizeof(NativeType));
888
44
        return tmp;
889
44
    }
_ZNK5doris15JsonbDecimalValINS_7DecimalIiEEE3valEv
Line
Count
Source
884
16
    NativeType val() const {
885
        // to avoid memory alignment issues, we use memcpy to copy the value
886
16
        NativeType tmp;
887
16
        memcpy(&tmp, &value, sizeof(NativeType));
888
16
        return tmp;
889
16
    }
_ZNK5doris15JsonbDecimalValINS_7DecimalIlEEE3valEv
Line
Count
Source
884
8
    NativeType val() const {
885
        // to avoid memory alignment issues, we use memcpy to copy the value
886
8
        NativeType tmp;
887
8
        memcpy(&tmp, &value, sizeof(NativeType));
888
8
        return tmp;
889
8
    }
_ZNK5doris15JsonbDecimalValINS_12Decimal128V3EE3valEv
Line
Count
Source
884
14
    NativeType val() const {
885
        // to avoid memory alignment issues, we use memcpy to copy the value
886
14
        NativeType tmp;
887
14
        memcpy(&tmp, &value, sizeof(NativeType));
888
14
        return tmp;
889
14
    }
_ZNK5doris15JsonbDecimalValINS_7DecimalIN4wide7integerILm256EiEEEEE3valEv
Line
Count
Source
884
6
    NativeType val() const {
885
        // to avoid memory alignment issues, we use memcpy to copy the value
886
6
        NativeType tmp;
887
6
        memcpy(&tmp, &value, sizeof(NativeType));
888
6
        return tmp;
889
6
    }
890
891
49
    static constexpr int numPackedBytes() {
892
49
        return sizeof(JsonbValue) + sizeof(precision) + sizeof(scale) + sizeof(value);
893
49
    }
_ZN5doris15JsonbDecimalValINS_7DecimalIiEEE14numPackedBytesEv
Line
Count
Source
891
19
    static constexpr int numPackedBytes() {
892
19
        return sizeof(JsonbValue) + sizeof(precision) + sizeof(scale) + sizeof(value);
893
19
    }
_ZN5doris15JsonbDecimalValINS_7DecimalIlEEE14numPackedBytesEv
Line
Count
Source
891
9
    static constexpr int numPackedBytes() {
892
9
        return sizeof(JsonbValue) + sizeof(precision) + sizeof(scale) + sizeof(value);
893
9
    }
_ZN5doris15JsonbDecimalValINS_12Decimal128V3EE14numPackedBytesEv
Line
Count
Source
891
15
    static constexpr int numPackedBytes() {
892
15
        return sizeof(JsonbValue) + sizeof(precision) + sizeof(scale) + sizeof(value);
893
15
    }
_ZN5doris15JsonbDecimalValINS_7DecimalIN4wide7integerILm256EiEEEEE14numPackedBytesEv
Line
Count
Source
891
6
    static constexpr int numPackedBytes() {
892
6
        return sizeof(JsonbValue) + sizeof(precision) + sizeof(scale) + sizeof(value);
893
6
    }
894
895
    uint32_t precision;
896
    uint32_t scale;
897
    NativeType value;
898
};
899
900
/*
901
 * BlobVal is the base class (derived from JsonbValue) for string and binary
902
 * types. The size indicates the total bytes of the payload.
903
 */
904
struct JsonbBinaryVal {
905
public:
906
    // size of the blob payload only
907
2.14k
    unsigned int getBlobLen() const { return size; }
908
909
    // return the blob as byte array
910
8.75k
    const char* getBlob() const { return payload; }
911
912
    // size of the total packed bytes
913
19.5k
    unsigned int numPackedBytes() const { return sizeof(JsonbValue) + sizeof(size) + size; }
914
    friend class JsonbDocument;
915
916
    uint32_t size;
917
    char payload[0];
918
};
919
920
/*
921
 * String type
922
 * Note: JSONB string may not be a c-string (NULL-terminated)
923
 */
924
struct JsonbStringVal : public JsonbBinaryVal {
925
public:
926
    /*
927
    This function return the actual size of a string. Since for
928
    a string, it can be null-terminated with null paddings or it
929
    can take all the space in the payload without null in the end.
930
    So we need to check it to get the true actual length of a string.
931
  */
932
4.32k
    size_t length() const {
933
        // It's an empty string
934
4.32k
        if (0 == size) {
935
8
            return size;
936
8
        }
937
        // The string stored takes all the spaces in payload
938
4.31k
        if (payload[size - 1] != 0) {
939
4.31k
            return size;
940
4.31k
        }
941
        // It's shorter than the size of payload
942
0
        return strnlen(payload, size);
943
4.31k
    }
944
};
945
946
/*
947
 * ContainerVal is the base class (derived from JsonbValue) for object and
948
 * array types. The size indicates the total bytes of the payload.
949
 */
950
struct ContainerVal {
951
    // size of the container payload only
952
0
    unsigned int getContainerSize() const { return size; }
953
954
    // return the container payload as byte array
955
0
    const char* getPayload() const { return payload; }
956
957
    // size of the total packed bytes
958
110k
    unsigned int numPackedBytes() const { return sizeof(JsonbValue) + sizeof(size) + size; }
959
    friend class JsonbDocument;
960
961
    uint32_t size;
962
    char payload[0];
963
};
964
965
/*
966
 * Object type
967
 */
968
struct ObjectVal : public ContainerVal {
969
    using value_type = JsonbKeyValue;
970
    using pointer = value_type*;
971
    using const_pointer = const value_type*;
972
    using const_iterator = JsonbFwdIteratorT<const_pointer, ObjectVal>;
973
974
    const_iterator search(const char* key) const {
975
        if (!key) {
976
            return end();
977
        }
978
        return search(key, (unsigned int)strlen(key));
979
    }
980
981
206
    const_iterator search(const char* key, unsigned int klen) const {
982
206
        if (!key || !klen) {
983
0
            return end();
984
0
        }
985
206
        return internalSearch(key, klen);
986
206
    }
987
988
    // Get number of elements in object
989
57
    int numElem() const {
990
57
        const char* pch = payload;
991
57
        const char* fence = payload + size;
992
993
57
        unsigned int num = 0;
994
149
        while (pch < fence) {
995
92
            auto* pkey = (JsonbKeyValue*)(pch);
996
92
            ++num;
997
92
            pch += pkey->numPackedBytes();
998
92
        }
999
1000
57
        assert(pch == fence);
1001
1002
57
        return num;
1003
57
    }
1004
1005
    // find the JSONB value by a key string (null terminated)
1006
    const JsonbValue* find(const char* key) const {
1007
        if (!key) {
1008
            return nullptr;
1009
        }
1010
        return find(key, (unsigned int)strlen(key));
1011
    }
1012
1013
    // find the JSONB value by a key string (with length)
1014
204
    const JsonbValue* find(const char* key, unsigned int klen) const {
1015
204
        const_iterator kv = search(key, klen);
1016
204
        if (end() == kv) {
1017
6
            return nullptr;
1018
6
        }
1019
198
        return kv->value();
1020
204
    }
1021
1022
4.16k
    const_iterator begin() const { return const_iterator((pointer)payload); }
1023
1024
21.3k
    const_iterator end() const { return const_iterator((pointer)(payload + size)); }
1025
1026
    std::vector<std::pair<StringRef, const JsonbValue*>> get_ordered_key_value_pairs() const;
1027
1028
private:
1029
206
    const_iterator internalSearch(const char* key, unsigned int klen) const {
1030
206
        const char* pch = payload;
1031
206
        const char* fence = payload + size;
1032
1033
216
        while (pch < fence) {
1034
210
            const auto* pkey = (const JsonbKeyValue*)(pch);
1035
210
            if (klen == pkey->klen() && strncmp(key, pkey->getKeyStr(), klen) == 0) {
1036
200
                return const_iterator(pkey);
1037
200
            }
1038
10
            pch += pkey->numPackedBytes();
1039
10
        }
1040
1041
206
        assert(pch == fence);
1042
1043
6
        return end();
1044
6
    }
1045
};
1046
1047
/*
1048
 * Array type
1049
 */
1050
struct ArrayVal : public ContainerVal {
1051
    using value_type = JsonbValue;
1052
    using pointer = value_type*;
1053
    using const_pointer = const value_type*;
1054
    using const_iterator = JsonbFwdIteratorT<const_pointer, ArrayVal>;
1055
1056
    // get the JSONB value at index
1057
372
    const JsonbValue* get(int idx) const {
1058
372
        if (idx < 0) {
1059
0
            return nullptr;
1060
0
        }
1061
1062
372
        const char* pch = payload;
1063
372
        const char* fence = payload + size;
1064
1065
501
        while (pch < fence && idx-- > 0) {
1066
129
            pch += ((const JsonbValue*)pch)->numPackedBytes();
1067
129
        }
1068
372
        if (idx > 0 || pch == fence) {
1069
9
            return nullptr;
1070
9
        }
1071
1072
363
        return (const JsonbValue*)pch;
1073
372
    }
1074
1075
    // Get number of elements in array
1076
714
    int numElem() const {
1077
714
        const char* pch = payload;
1078
714
        const char* fence = payload + size;
1079
1080
714
        unsigned int num = 0;
1081
103k
        while (pch < fence) {
1082
103k
            ++num;
1083
103k
            pch += ((const JsonbValue*)pch)->numPackedBytes();
1084
103k
        }
1085
1086
714
        assert(pch == fence);
1087
1088
714
        return num;
1089
714
    }
1090
1091
1.31k
    const_iterator begin() const { return const_iterator((pointer)payload); }
1092
1093
1.31k
    const_iterator end() const { return const_iterator((pointer)(payload + size)); }
1094
};
1095
1096
namespace jsonb_detail {
1097
1098
struct JsonbScaledDecimal {
1099
    wide::Int256 value;
1100
    uint32_t scale;
1101
};
1102
1103
26
inline void validate_decimal_scale(uint32_t scale) {
1104
26
    if (scale > static_cast<uint32_t>(BeConsts::MAX_DECIMALV3_SCALE)) {
1105
2
        throw Exception(ErrorCode::INTERNAL_ERROR,
1106
2
                        "Invalid JSONB decimal scale: {}, max allowed scale: {}", scale,
1107
2
                        BeConsts::MAX_DECIMALV3_SCALE);
1108
2
    }
1109
26
}
1110
1111
39
inline bool is_numeric(const JsonbValue* value) {
1112
39
    return value->isInt() || value->isDouble() || value->isFloat() || value->isDecimal();
1113
39
}
1114
1115
10
inline double floating_value(const JsonbValue* value) {
1116
10
    if (value->isDouble()) {
1117
10
        return value->unpack<JsonbDoubleVal>()->val();
1118
10
    }
1119
0
    return value->unpack<JsonbFloatVal>()->val();
1120
10
}
1121
1122
20
inline JsonbScaledDecimal get_scaled_decimal(const JsonbValue* value) {
1123
20
    switch (value->type) {
1124
12
    case JsonbType::T_Decimal32: {
1125
12
        const auto* decimal = value->unpack<JsonbDecimal32>();
1126
12
        validate_decimal_scale(decimal->scale);
1127
12
        return {wide::Int256(decimal->val()), decimal->scale};
1128
0
    }
1129
2
    case JsonbType::T_Decimal64: {
1130
2
        const auto* decimal = value->unpack<JsonbDecimal64>();
1131
2
        validate_decimal_scale(decimal->scale);
1132
2
        return {wide::Int256(decimal->val()), decimal->scale};
1133
0
    }
1134
6
    case JsonbType::T_Decimal128: {
1135
6
        const auto* decimal = value->unpack<JsonbDecimal128>();
1136
6
        validate_decimal_scale(decimal->scale);
1137
6
        return {wide::Int256(decimal->val()), decimal->scale};
1138
0
    }
1139
0
    case JsonbType::T_Decimal256: {
1140
0
        const auto* decimal = value->unpack<JsonbDecimal256>();
1141
0
        validate_decimal_scale(decimal->scale);
1142
0
        return {decimal->val(), decimal->scale};
1143
0
    }
1144
0
    default:
1145
0
        throw Exception(ErrorCode::INTERNAL_ERROR, "Invalid JSONB decimal value type: {}",
1146
0
                        static_cast<int32_t>(value->type));
1147
20
    }
1148
20
}
1149
1150
inline bool scaled_decimal_equal_decimal(const JsonbScaledDecimal& lhs,
1151
4
                                         const JsonbScaledDecimal& rhs) {
1152
4
    if (lhs.scale == rhs.scale) {
1153
0
        return lhs.value == rhs.value;
1154
0
    }
1155
1156
4
    if (lhs.scale < rhs.scale) {
1157
2
        const auto scale_multiplier = decimal_scale_multiplier<wide::Int256>(rhs.scale - lhs.scale);
1158
2
        return rhs.value % scale_multiplier == 0 && lhs.value == rhs.value / scale_multiplier;
1159
2
    }
1160
1161
2
    const auto scale_multiplier = decimal_scale_multiplier<wide::Int256>(lhs.scale - rhs.scale);
1162
2
    return lhs.value % scale_multiplier == 0 && lhs.value / scale_multiplier == rhs.value;
1163
4
}
1164
1165
4
inline bool scaled_decimal_equal_integer(const JsonbScaledDecimal& decimal, int128_t integer) {
1166
4
    const auto integer_value = wide::Int256(integer);
1167
4
    if (decimal.scale == 0) {
1168
0
        return decimal.value == integer_value;
1169
0
    }
1170
1171
4
    const auto scale_multiplier = decimal_scale_multiplier<wide::Int256>(decimal.scale);
1172
4
    return decimal.value % scale_multiplier == 0 &&
1173
4
           decimal.value / scale_multiplier == integer_value;
1174
4
}
1175
1176
inline constexpr auto kPowersOfFive = [] {
1177
    std::array<wide::Int256, BeConsts::MAX_DECIMALV3_SCALE + 1> powers {};
1178
    powers[0] = 1;
1179
    for (size_t i = 1; i < powers.size(); ++i) {
1180
        powers[i] = powers[i - 1] * 5;
1181
    }
1182
    return powers;
1183
}();
1184
1185
6
inline wide::Int256 power_of_five(uint32_t exponent) {
1186
6
    validate_decimal_scale(exponent);
1187
6
    return kPowersOfFive[exponent];
1188
6
}
1189
1190
6
inline bool scaled_binary_equal(wide::Int256 value, int exponent, wide::Int256 significand) {
1191
6
    if (exponent < 0) {
1192
4
        const int divisor_exponent = -exponent;
1193
4
        if (divisor_exponent >= std::numeric_limits<int64_t>::digits) {
1194
0
            return false;
1195
0
        }
1196
4
        const auto divisor = wide::Int256(1) << divisor_exponent;
1197
4
        return significand % divisor == 0 && value == significand / divisor;
1198
4
    }
1199
2
    constexpr int max_positive_int256_shift = std::numeric_limits<wide::Int256>::digits;
1200
    // wide::Int256 is signed, so shifting 1 by 255 reaches the sign bit.
1201
2
    if (exponent >= max_positive_int256_shift) {
1202
0
        return false;
1203
0
    }
1204
2
    const auto multiplier = wide::Int256(1) << exponent;
1205
2
    return value % multiplier == 0 && value / multiplier == significand;
1206
2
}
1207
1208
4
inline bool floating_equal_integer(const JsonbValue* floating, int128_t integer) {
1209
4
    const double value = floating_value(floating);
1210
4
    int exponent = 0;
1211
4
    std::frexp(value, &exponent);
1212
4
    if (!std::isfinite(value) || std::trunc(value) != value) {
1213
1
        return false;
1214
1
    }
1215
3
    if (exponent >= 128) {
1216
0
        return value == -std::ldexp(1.0, 127) && integer == std::numeric_limits<int128_t>::min();
1217
0
    }
1218
3
    if (exponent <= -1) {
1219
0
        return false;
1220
0
    }
1221
3
    return static_cast<int128_t>(value) == integer;
1222
3
}
1223
1224
6
inline bool floating_equal_decimal(const JsonbValue* floating, const JsonbScaledDecimal& decimal) {
1225
6
    const double value = floating_value(floating);
1226
6
    if (!std::isfinite(value)) {
1227
0
        return false;
1228
0
    }
1229
6
    if (value == 0) {
1230
0
        return decimal.value == 0;
1231
0
    }
1232
1233
6
    int exponent = 0;
1234
6
    const double significand_fraction = std::frexp(value, &exponent);
1235
6
    const double significand_double =
1236
6
            std::ldexp(significand_fraction, std::numeric_limits<double>::digits);
1237
6
    auto significand = wide::Int256(static_cast<int64_t>(significand_double));
1238
6
    exponent -= std::numeric_limits<double>::digits;
1239
1240
6
    const auto five_multiplier = power_of_five(decimal.scale);
1241
6
    if (decimal.value % five_multiplier != 0) {
1242
0
        return false;
1243
0
    }
1244
6
    const auto binary_scaled_decimal = decimal.value / five_multiplier;
1245
6
    return scaled_binary_equal(binary_scaled_decimal, exponent + decimal.scale, significand);
1246
6
}
1247
1248
39
inline bool numeric_equal(const JsonbValue* lhs, const JsonbValue* rhs) {
1249
39
    if (!is_numeric(rhs)) {
1250
2
        return false;
1251
2
    }
1252
1253
37
    if ((lhs->isDouble() || lhs->isFloat()) && rhs->isInt()) {
1254
1
        return floating_equal_integer(lhs, rhs->int_val());
1255
1
    }
1256
1257
36
    if ((rhs->isDouble() || rhs->isFloat()) && lhs->isInt()) {
1258
3
        return floating_equal_integer(rhs, lhs->int_val());
1259
3
    }
1260
1261
33
    if ((lhs->isDouble() || lhs->isFloat()) && rhs->isDecimal()) {
1262
4
        return floating_equal_decimal(lhs, get_scaled_decimal(rhs));
1263
4
    }
1264
1265
29
    if ((rhs->isDouble() || rhs->isFloat()) && lhs->isDecimal()) {
1266
4
        return floating_equal_decimal(rhs, get_scaled_decimal(lhs));
1267
4
    }
1268
1269
25
    if (lhs->isDouble() || lhs->isFloat()) {
1270
0
        return (rhs->isDouble() || rhs->isFloat()) && floating_value(lhs) == floating_value(rhs);
1271
0
    }
1272
1273
25
    if (lhs->isDecimal()) {
1274
6
        const auto lhs_decimal = get_scaled_decimal(lhs);
1275
6
        if (rhs->isDecimal()) {
1276
4
            return scaled_decimal_equal_decimal(lhs_decimal, get_scaled_decimal(rhs));
1277
4
        }
1278
2
        return scaled_decimal_equal_integer(lhs_decimal, rhs->int_val());
1279
6
    }
1280
1281
19
    if (rhs->isDecimal()) {
1282
2
        return scaled_decimal_equal_integer(get_scaled_decimal(rhs), lhs->int_val());
1283
2
    }
1284
1285
17
    return lhs->int_val() == rhs->int_val();
1286
19
}
1287
1288
14
inline bool array_contains_value(const ArrayVal* target_array, const JsonbValue* candidate) {
1289
14
    const int target_num = target_array->numElem();
1290
25
    for (int i = 0; i < target_num; ++i) {
1291
22
        if (target_array->get(i)->contains(candidate)) {
1292
11
            return true;
1293
11
        }
1294
22
    }
1295
3
    return false;
1296
14
}
1297
1298
7
inline bool array_contains_array(const ArrayVal* target_array, const ArrayVal* candidate_array) {
1299
7
    const int candidate_num = candidate_array->numElem();
1300
17
    for (int i = 0; i < candidate_num; ++i) {
1301
12
        if (!array_contains_value(target_array, candidate_array->get(i))) {
1302
2
            return false;
1303
2
        }
1304
12
    }
1305
5
    return true;
1306
7
}
1307
1308
} // namespace jsonb_detail
1309
1310
inline const JsonbValue* JsonbDocument::createValue(const char* pb, size_t size) {
1311
    if (!pb || size < sizeof(JsonbHeader) + sizeof(JsonbValue)) {
1312
        return nullptr;
1313
    }
1314
1315
    auto* doc = (JsonbDocument*)pb;
1316
    if (doc->header_.ver_ != JSONB_VER) {
1317
        return nullptr;
1318
    }
1319
1320
    const auto* val = (const JsonbValue*)doc->payload_;
1321
    // Same as checkAndCreateDocument(), this is intentionally a lightweight structural check for
1322
    // hot paths. Do not recursively validate container bodies here unless the caller is a clearly
1323
    // untrusted raw binary boundary and accepts the O(document size) cost.
1324
    if (size != sizeof(JsonbHeader) + val->numPackedBytes()) {
1325
        return nullptr;
1326
    }
1327
1328
    return val;
1329
}
1330
1331
6
inline unsigned int JsonbDocument::numPackedBytes() const {
1332
6
    return ((const JsonbValue*)payload_)->numPackedBytes() + sizeof(header_);
1333
6
}
1334
1335
23.4k
inline unsigned int JsonbKeyValue::numPackedBytes() const {
1336
23.4k
    unsigned int ks = keyPackedBytes();
1337
23.4k
    const auto* val = (const JsonbValue*)(((char*)this) + ks);
1338
23.4k
    return ks + val->numPackedBytes();
1339
23.4k
}
1340
1341
// Poor man's "virtual" function JsonbValue::numPackedBytes
1342
186k
inline unsigned int JsonbValue::numPackedBytes() const {
1343
186k
    switch (type) {
1344
2.88k
    case JsonbType::T_Null:
1345
12.4k
    case JsonbType::T_True:
1346
13.1k
    case JsonbType::T_False: {
1347
13.1k
        return sizeof(type);
1348
12.4k
    }
1349
1350
2.19k
    case JsonbType::T_Int8: {
1351
2.19k
        return sizeof(type) + sizeof(int8_t);
1352
12.4k
    }
1353
245
    case JsonbType::T_Int16: {
1354
245
        return sizeof(type) + sizeof(int16_t);
1355
12.4k
    }
1356
3.70k
    case JsonbType::T_Int32: {
1357
3.70k
        return sizeof(type) + sizeof(int32_t);
1358
12.4k
    }
1359
12.1k
    case JsonbType::T_Int64: {
1360
12.1k
        return sizeof(type) + sizeof(int64_t);
1361
12.4k
    }
1362
10.6k
    case JsonbType::T_Double: {
1363
10.6k
        return sizeof(type) + sizeof(double);
1364
12.4k
    }
1365
29
    case JsonbType::T_Float: {
1366
29
        return sizeof(type) + sizeof(float);
1367
12.4k
    }
1368
13.8k
    case JsonbType::T_Int128: {
1369
13.8k
        return sizeof(type) + sizeof(int128_t);
1370
12.4k
    }
1371
15.1k
    case JsonbType::T_String:
1372
19.5k
    case JsonbType::T_Binary: {
1373
19.5k
        return unpack<JsonbBinaryVal>()->numPackedBytes();
1374
15.1k
    }
1375
1376
107k
    case JsonbType::T_Object:
1377
110k
    case JsonbType::T_Array: {
1378
110k
        return unpack<ContainerVal>()->numPackedBytes();
1379
107k
    }
1380
19
    case JsonbType::T_Decimal32: {
1381
19
        return JsonbDecimal32::numPackedBytes();
1382
107k
    }
1383
9
    case JsonbType::T_Decimal64: {
1384
9
        return JsonbDecimal64::numPackedBytes();
1385
107k
    }
1386
15
    case JsonbType::T_Decimal128: {
1387
15
        return JsonbDecimal128::numPackedBytes();
1388
107k
    }
1389
6
    case JsonbType::T_Decimal256: {
1390
6
        return JsonbDecimal256::numPackedBytes();
1391
107k
    }
1392
0
    case JsonbType::NUM_TYPES:
1393
0
        break;
1394
186k
    }
1395
1396
0
    throw Exception(ErrorCode::INTERNAL_ERROR, "Invalid JSONB value type: {}",
1397
0
                    static_cast<int32_t>(type));
1398
186k
}
1399
1400
688
inline int JsonbValue::numElements() const {
1401
688
    switch (type) {
1402
0
    case JsonbType::T_Int8:
1403
0
    case JsonbType::T_Int16:
1404
0
    case JsonbType::T_Int32:
1405
0
    case JsonbType::T_Int64:
1406
0
    case JsonbType::T_Double:
1407
0
    case JsonbType::T_Float:
1408
0
    case JsonbType::T_Int128:
1409
1
    case JsonbType::T_String:
1410
1
    case JsonbType::T_Binary:
1411
2
    case JsonbType::T_Null:
1412
2
    case JsonbType::T_True:
1413
2
    case JsonbType::T_False:
1414
2
    case JsonbType::T_Decimal32:
1415
2
    case JsonbType::T_Decimal64:
1416
2
    case JsonbType::T_Decimal128:
1417
2
    case JsonbType::T_Decimal256: {
1418
2
        return 1;
1419
2
    }
1420
0
    case JsonbType::T_Object: {
1421
0
        return unpack<ObjectVal>()->numElem();
1422
2
    }
1423
686
    case JsonbType::T_Array: {
1424
686
        return unpack<ArrayVal>()->numElem();
1425
2
    }
1426
0
    case JsonbType::NUM_TYPES:
1427
0
        break;
1428
688
    }
1429
0
    throw Exception(ErrorCode::INTERNAL_ERROR, "Invalid JSONB value type: {}",
1430
0
                    static_cast<int32_t>(type));
1431
688
}
1432
1433
52
inline bool JsonbValue::contains(const JsonbValue* rhs) const {
1434
52
    switch (type) {
1435
23
    case JsonbType::T_Int8:
1436
23
    case JsonbType::T_Int16:
1437
23
    case JsonbType::T_Int32:
1438
23
    case JsonbType::T_Int64:
1439
24
    case JsonbType::T_Int128:
1440
29
    case JsonbType::T_Double:
1441
29
    case JsonbType::T_Float:
1442
35
    case JsonbType::T_Decimal32:
1443
36
    case JsonbType::T_Decimal64:
1444
39
    case JsonbType::T_Decimal128:
1445
39
    case JsonbType::T_Decimal256: {
1446
39
        return jsonb_detail::numeric_equal(this, rhs);
1447
39
    }
1448
1
    case JsonbType::T_String:
1449
1
    case JsonbType::T_Binary: {
1450
1
        if (rhs->isString() || rhs->isBinary()) {
1451
1
            const auto* str_value1 = unpack<JsonbStringVal>();
1452
1
            const auto* str_value2 = rhs->unpack<JsonbStringVal>();
1453
1
            return str_value1->length() == str_value2->length() &&
1454
1
                   std::memcmp(str_value1->getBlob(), str_value2->getBlob(),
1455
1
                               str_value1->length()) == 0;
1456
1
        }
1457
0
        return false;
1458
1
    }
1459
9
    case JsonbType::T_Array: {
1460
9
        const auto* lhs_array = unpack<ArrayVal>();
1461
9
        if (rhs->isArray()) {
1462
7
            return jsonb_detail::array_contains_array(lhs_array, rhs->unpack<ArrayVal>());
1463
7
        }
1464
2
        return jsonb_detail::array_contains_value(lhs_array, rhs);
1465
9
    }
1466
3
    case JsonbType::T_Object: {
1467
3
        if (rhs->isObject()) {
1468
2
            const auto* obj_value1 = unpack<ObjectVal>();
1469
2
            const auto* obj_value2 = rhs->unpack<ObjectVal>();
1470
3
            for (auto it = obj_value2->begin(); it != obj_value2->end(); ++it) {
1471
2
                const JsonbValue* value = obj_value1->find(it->getKeyStr(), it->klen());
1472
2
                if (value == nullptr || !value->contains(it->value())) {
1473
1
                    return false;
1474
1
                }
1475
2
            }
1476
1
            return true;
1477
2
        }
1478
1
        return false;
1479
3
    }
1480
0
    case JsonbType::T_Null: {
1481
0
        return rhs->isNull();
1482
3
    }
1483
0
    case JsonbType::T_True: {
1484
0
        return rhs->isTrue();
1485
3
    }
1486
0
    case JsonbType::T_False: {
1487
0
        return rhs->isFalse();
1488
3
    }
1489
0
    case JsonbType::NUM_TYPES:
1490
0
        break;
1491
52
    }
1492
1493
0
    throw Exception(ErrorCode::INTERNAL_ERROR, "Invalid JSONB value type: {}",
1494
0
                    static_cast<int32_t>(type));
1495
52
}
1496
1497
868
inline bool JsonbPath::seek(const char* key_path, size_t kp_len) {
1498
868
    while (kp_len > 0 && std::isspace(key_path[kp_len - 1])) {
1499
0
        --kp_len;
1500
0
    }
1501
1502
    //path invalid
1503
868
    if (!key_path || kp_len == 0) {
1504
0
        return false;
1505
0
    }
1506
868
    Stream stream(key_path, kp_len);
1507
868
    stream.skip_whitespace();
1508
868
    if (stream.exhausted() || stream.read() != SCOPE) {
1509
        //path invalid
1510
2
        return false;
1511
2
    }
1512
1513
1.08k
    while (!stream.exhausted()) {
1514
216
        stream.skip_whitespace();
1515
216
        stream.clear_leg_ptr();
1516
216
        stream.clear_leg_len();
1517
216
        stream.set_has_escapes(false);
1518
1519
216
        if (!JsonbPath::parsePath(&stream, this)) {
1520
            //path invalid
1521
0
            return false;
1522
0
        }
1523
216
    }
1524
866
    return true;
1525
866
}
1526
1527
216
inline bool JsonbPath::parsePath(Stream* stream, JsonbPath* path) {
1528
    // $[0]
1529
216
    if (stream->peek() == BEGIN_ARRAY) {
1530
60
        return parse_array(stream, path);
1531
60
    }
1532
    // $.a or $.[0]
1533
    // Keep $.[0] for backward compatibility: although the dot before an array
1534
    // leg is non-standard, existing JSONB users may rely on it.
1535
156
    else if (stream->peek() == BEGIN_MEMBER) {
1536
        // advance past the .
1537
154
        stream->skip(1);
1538
1539
154
        if (stream->exhausted()) {
1540
0
            return false;
1541
0
        }
1542
1543
        // $.[0]
1544
154
        if (stream->peek() == BEGIN_ARRAY) {
1545
68
            return parse_array(stream, path);
1546
68
        }
1547
        // $.a
1548
86
        else {
1549
86
            return parse_member(stream, path);
1550
86
        }
1551
154
    } else if (stream->peek() == WILDCARD) {
1552
2
        stream->skip(1);
1553
2
        if (stream->exhausted()) {
1554
0
            return false;
1555
0
        }
1556
1557
        // $**
1558
2
        if (stream->peek() == WILDCARD) {
1559
2
            path->_is_supper_wildcard = true;
1560
2
        }
1561
1562
2
        stream->skip(1);
1563
2
        if (stream->exhausted()) {
1564
0
            return false;
1565
0
        }
1566
1567
2
        if (stream->peek() == BEGIN_ARRAY) {
1568
0
            return parse_array(stream, path);
1569
2
        } else if (stream->peek() == BEGIN_MEMBER) {
1570
            // advance past the .
1571
2
            stream->skip(1);
1572
1573
2
            if (stream->exhausted()) {
1574
0
                return false;
1575
0
            }
1576
1577
            // $**.[0]
1578
            // Keep the dot-array form compatible with the root path behavior.
1579
2
            if (stream->peek() == BEGIN_ARRAY) {
1580
0
                return parse_array(stream, path);
1581
0
            }
1582
            // $.a
1583
2
            else {
1584
2
                return parse_member(stream, path);
1585
2
            }
1586
2
        }
1587
0
        return false;
1588
2
    } else {
1589
0
        return false; //invalid json path
1590
0
    }
1591
216
}
1592
1593
128
inline bool JsonbPath::parse_array(Stream* stream, JsonbPath* path) {
1594
128
    assert(stream->peek() == BEGIN_ARRAY);
1595
128
    stream->skip(1);
1596
128
    if (stream->exhausted()) {
1597
0
        return false;
1598
0
    }
1599
1600
128
    if (stream->peek() == WILDCARD) {
1601
        // Called by function_jsonb.cpp, the variables passed in originate from a mutable block;
1602
        // using const_cast is acceptable.
1603
0
        stream->set_leg_ptr(const_cast<char*>(stream->position()));
1604
0
        stream->add_leg_len();
1605
0
        stream->skip(1);
1606
0
        if (stream->exhausted()) {
1607
0
            return false;
1608
0
        }
1609
1610
0
        if (stream->peek() == END_ARRAY) {
1611
0
            std::unique_ptr<leg_info> leg(
1612
0
                    new leg_info(stream->get_leg_ptr(), stream->get_leg_len(), 0, ARRAY_CODE));
1613
0
            path->add_leg_to_leg_vector(std::move(leg));
1614
0
            stream->skip(1);
1615
0
            path->_is_wildcard = true;
1616
0
            return true;
1617
0
        } else {
1618
0
            return false;
1619
0
        }
1620
0
    }
1621
1622
    // Called by function_jsonb.cpp, the variables passed in originate from a mutable block;
1623
    // using const_cast is acceptable.
1624
128
    stream->set_leg_ptr(const_cast<char*>(stream->position()));
1625
1626
256
    for (; !stream->exhausted() && stream->peek() != END_ARRAY; stream->advance()) {
1627
128
        stream->add_leg_len();
1628
128
    }
1629
1630
128
    if (stream->exhausted() || stream->peek() != END_ARRAY) {
1631
0
        return false;
1632
128
    } else {
1633
128
        stream->skip(1);
1634
128
    }
1635
1636
    //parse array index to int
1637
1638
128
    std::string_view idx_string(stream->get_leg_ptr(), stream->get_leg_len());
1639
128
    int index = 0;
1640
1641
    // Match "last" case-insensitively for compatibility with existing JSONB
1642
    // paths such as [Last] and [LAST].
1643
128
    if (stream->get_leg_len() >= 4 &&
1644
128
        std::equal(LAST, LAST + 4, stream->get_leg_ptr(),
1645
0
                   [](char c1, char c2) { return std::tolower(c1) == std::tolower(c2); })) {
1646
0
        auto pos = idx_string.find(MINUS);
1647
1648
0
        if (pos != std::string::npos) {
1649
0
            for (size_t i = 4; i < pos; ++i) {
1650
0
                if (std::isspace(idx_string[i])) {
1651
0
                    continue;
1652
0
                } else {
1653
                    // leading zeroes are not allowed
1654
0
                    LOG(WARNING) << "Non-space char in idx_string: '" << idx_string << "'";
1655
0
                    return false;
1656
0
                }
1657
0
            }
1658
0
            idx_string = idx_string.substr(pos + 1);
1659
0
            idx_string = trim(idx_string);
1660
1661
            // Keep numeric-prefix parsing for last-N offsets as existing JSONB
1662
            // path behavior.
1663
0
            auto result = std::from_chars(idx_string.data(), idx_string.data() + idx_string.size(),
1664
0
                                          index);
1665
0
            if (result.ec != std::errc()) {
1666
0
                LOG(WARNING) << "Invalid index in JSON path: '" << idx_string << "'";
1667
0
                return false;
1668
0
            }
1669
1670
0
        } else if (stream->get_leg_len() > 4) {
1671
0
            return false;
1672
0
        }
1673
1674
0
        std::unique_ptr<leg_info> leg(new leg_info(nullptr, 0, -index - 1, ARRAY_CODE));
1675
0
        path->add_leg_to_leg_vector(std::move(leg));
1676
1677
0
        return true;
1678
0
    }
1679
1680
    // Preserve legacy numeric-prefix parsing for array indexes. std::from_chars
1681
    // may stop before the end (for example [1.5] is parsed as index 1), and
1682
    // current JSONB path semantics treat that as supported behavior.
1683
128
    auto result = std::from_chars(idx_string.data(), idx_string.data() + idx_string.size(), index);
1684
1685
128
    if (result.ec != std::errc()) {
1686
0
        return false;
1687
0
    }
1688
1689
128
    std::unique_ptr<leg_info> leg(new leg_info(nullptr, 0, index, ARRAY_CODE));
1690
128
    path->add_leg_to_leg_vector(std::move(leg));
1691
1692
128
    return true;
1693
128
}
1694
1695
88
inline bool JsonbPath::parse_member(Stream* stream, JsonbPath* path) {
1696
88
    if (stream->exhausted()) {
1697
0
        return false;
1698
0
    }
1699
1700
88
    if (stream->peek() == WILDCARD) {
1701
        // Called by function_jsonb.cpp, the variables passed in originate from a mutable block;
1702
        // using const_cast is acceptable.
1703
0
        stream->set_leg_ptr(const_cast<char*>(stream->position()));
1704
0
        stream->add_leg_len();
1705
0
        stream->skip(1);
1706
0
        std::unique_ptr<leg_info> leg(
1707
0
                new leg_info(stream->get_leg_ptr(), stream->get_leg_len(), 0, MEMBER_CODE));
1708
0
        path->add_leg_to_leg_vector(std::move(leg));
1709
0
        path->_is_wildcard = true;
1710
0
        return true;
1711
0
    }
1712
1713
    // Called by function_jsonb.cpp, the variables passed in originate from a mutable block;
1714
    // using const_cast is acceptable.
1715
88
    stream->set_leg_ptr(const_cast<char*>(stream->position()));
1716
1717
88
    const char* left_quotation_marks = nullptr;
1718
88
    const char* right_quotation_marks = nullptr;
1719
1720
352
    for (; !stream->exhausted(); stream->advance()) {
1721
        // Only accept space characters quoted by double quotes.
1722
272
        if (std::isspace(stream->peek()) && left_quotation_marks == nullptr) {
1723
0
            return false;
1724
272
        } else if (stream->peek() == ESCAPE) {
1725
11
            stream->add_leg_len();
1726
11
            stream->skip(1);
1727
11
            stream->add_leg_len();
1728
11
            stream->set_has_escapes(true);
1729
11
            if (stream->exhausted()) {
1730
0
                return false;
1731
0
            }
1732
11
            continue;
1733
261
        } else if (stream->peek() == DOUBLE_QUOTE) {
1734
6
            if (left_quotation_marks == nullptr) {
1735
3
                left_quotation_marks = stream->position();
1736
                // Called by function_jsonb.cpp, the variables passed in originate from a mutable block;
1737
                // using const_cast is acceptable.
1738
3
                stream->set_leg_ptr(const_cast<char*>(++left_quotation_marks));
1739
3
                continue;
1740
3
            } else {
1741
3
                right_quotation_marks = stream->position();
1742
3
                stream->skip(1);
1743
3
                break;
1744
3
            }
1745
255
        } else if (stream->peek() == BEGIN_MEMBER || stream->peek() == BEGIN_ARRAY) {
1746
5
            if (left_quotation_marks == nullptr) {
1747
5
                break;
1748
5
            }
1749
5
        }
1750
1751
250
        stream->add_leg_len();
1752
250
    }
1753
1754
88
    if ((left_quotation_marks != nullptr && right_quotation_marks == nullptr) ||
1755
88
        stream->get_leg_ptr() == nullptr || stream->get_leg_len() == 0) {
1756
0
        return false; //invalid json path
1757
0
    }
1758
1759
88
    if (stream->get_has_escapes()) {
1760
3
        stream->remove_escapes();
1761
3
    }
1762
1763
88
    std::unique_ptr<leg_info> leg(
1764
88
            new leg_info(stream->get_leg_ptr(), stream->get_leg_len(), 0, MEMBER_CODE));
1765
88
    path->add_leg_to_leg_vector(std::move(leg));
1766
1767
88
    return true;
1768
88
}
1769
1770
static_assert(is_pod_v<JsonbDocument>, "JsonbDocument must be standard layout and trivial");
1771
static_assert(is_pod_v<JsonbValue>, "JsonbValue must be standard layout and trivial");
1772
static_assert(is_pod_v<JsonbDecimal32>, "JsonbDecimal32 must be standard layout and trivial");
1773
static_assert(is_pod_v<JsonbDecimal64>, "JsonbDecimal64 must be standard layout and trivial");
1774
static_assert(is_pod_v<JsonbDecimal128>, "JsonbDecimal128 must be standard layout and trivial");
1775
static_assert(is_pod_v<JsonbDecimal256>, "JsonbDecimal256 must be standard layout and trivial");
1776
static_assert(is_pod_v<JsonbInt8Val>, "JsonbInt8Val must be standard layout and trivial");
1777
static_assert(is_pod_v<JsonbInt32Val>, "JsonbInt32Val must be standard layout and trivial");
1778
static_assert(is_pod_v<JsonbInt64Val>, "JsonbInt64Val must be standard layout and trivial");
1779
static_assert(is_pod_v<JsonbInt128Val>, "JsonbInt128Val must be standard layout and trivial");
1780
static_assert(is_pod_v<JsonbDoubleVal>, "JsonbDoubleVal must be standard layout and trivial");
1781
static_assert(is_pod_v<JsonbFloatVal>, "JsonbFloatVal must be standard layout and trivial");
1782
static_assert(is_pod_v<JsonbBinaryVal>, "JsonbBinaryVal must be standard layout and trivial");
1783
static_assert(is_pod_v<ContainerVal>, "ContainerVal must be standard layout and trivial");
1784
1785
#define ASSERT_DECIMAL_LAYOUT(type)                \
1786
    static_assert(offsetof(type, precision) == 0); \
1787
    static_assert(offsetof(type, scale) == 4);     \
1788
    static_assert(offsetof(type, value) == 8);
1789
1790
ASSERT_DECIMAL_LAYOUT(JsonbDecimal32)
1791
ASSERT_DECIMAL_LAYOUT(JsonbDecimal64)
1792
ASSERT_DECIMAL_LAYOUT(JsonbDecimal128)
1793
ASSERT_DECIMAL_LAYOUT(JsonbDecimal256)
1794
1795
#define ASSERT_NUMERIC_LAYOUT(type) static_assert(offsetof(type, num) == 0);
1796
1797
ASSERT_NUMERIC_LAYOUT(JsonbInt8Val)
1798
ASSERT_NUMERIC_LAYOUT(JsonbInt32Val)
1799
ASSERT_NUMERIC_LAYOUT(JsonbInt64Val)
1800
ASSERT_NUMERIC_LAYOUT(JsonbInt128Val)
1801
ASSERT_NUMERIC_LAYOUT(JsonbDoubleVal)
1802
1803
static_assert(offsetof(JsonbBinaryVal, size) == 0);
1804
static_assert(offsetof(JsonbBinaryVal, payload) == 4);
1805
1806
static_assert(offsetof(ContainerVal, size) == 0);
1807
static_assert(offsetof(ContainerVal, payload) == 4);
1808
1809
#pragma pack(pop)
1810
#if defined(__clang__)
1811
#pragma clang diagnostic pop
1812
#endif
1813
} // namespace doris
1814
1815
#endif // JSONB_JSONBDOCUMENT_H