Coverage Report

Created: 2025-10-10 06:02

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/nanopb/pb_decode.c
Line
Count
Source
1
/* pb_decode.c -- decode a protobuf using minimal resources
2
 *
3
 * 2011 Petteri Aimonen <jpa@kapsi.fi>
4
 */
5
6
/* Use the GCC warn_unused_result attribute to check that all return values
7
 * are propagated correctly. On other compilers, gcc before 3.4.0 and iar
8
 * before 9.40.1 just ignore the annotation.
9
 */
10
#if (defined(__GNUC__) && ((__GNUC__ > 3) || (__GNUC__ == 3 && __GNUC_MINOR__ >= 4))) || \
11
    (defined(__IAR_SYSTEMS_ICC__) && (__VER__ >= 9040001))
12
    #define checkreturn __attribute__((warn_unused_result))
13
#else
14
    #define checkreturn
15
#endif
16
17
#include "pb.h"
18
#include "pb_decode.h"
19
#include "pb_common.h"
20
21
/**************************************
22
 * Declarations internal to this file *
23
 **************************************/
24
25
static bool checkreturn buf_read(pb_istream_t *stream, pb_byte_t *buf, size_t count);
26
static bool checkreturn read_raw_value(pb_istream_t *stream, pb_wire_type_t wire_type, pb_byte_t *buf, size_t *size);
27
static bool checkreturn decode_basic_field(pb_istream_t *stream, pb_wire_type_t wire_type, pb_field_iter_t *field);
28
static bool checkreturn decode_static_field(pb_istream_t *stream, pb_wire_type_t wire_type, pb_field_iter_t *field);
29
static bool checkreturn decode_pointer_field(pb_istream_t *stream, pb_wire_type_t wire_type, pb_field_iter_t *field);
30
static bool checkreturn decode_callback_field(pb_istream_t *stream, pb_wire_type_t wire_type, pb_field_iter_t *field);
31
static bool checkreturn decode_field(pb_istream_t *stream, pb_wire_type_t wire_type, pb_field_iter_t *field);
32
static bool checkreturn default_extension_decoder(pb_istream_t *stream, pb_extension_t *extension, uint32_t tag, pb_wire_type_t wire_type);
33
static bool checkreturn decode_extension(pb_istream_t *stream, uint32_t tag, pb_wire_type_t wire_type, pb_extension_t *extension);
34
static bool pb_field_set_to_default(pb_field_iter_t *field);
35
static bool pb_message_set_to_defaults(pb_field_iter_t *iter);
36
static bool checkreturn pb_dec_bool(pb_istream_t *stream, const pb_field_iter_t *field);
37
static bool checkreturn pb_dec_varint(pb_istream_t *stream, const pb_field_iter_t *field);
38
static bool checkreturn pb_dec_bytes(pb_istream_t *stream, const pb_field_iter_t *field);
39
static bool checkreturn pb_dec_string(pb_istream_t *stream, const pb_field_iter_t *field);
40
static bool checkreturn pb_dec_submessage(pb_istream_t *stream, const pb_field_iter_t *field);
41
static bool checkreturn pb_dec_fixed_length_bytes(pb_istream_t *stream, const pb_field_iter_t *field);
42
static bool checkreturn pb_skip_varint(pb_istream_t *stream);
43
static bool checkreturn pb_skip_string(pb_istream_t *stream);
44
45
#ifdef PB_ENABLE_MALLOC
46
static bool checkreturn allocate_field(pb_istream_t *stream, void *pData, size_t data_size, size_t array_size);
47
static void initialize_pointer_field(void *pItem, pb_field_iter_t *field);
48
static bool checkreturn pb_release_union_field(pb_istream_t *stream, pb_field_iter_t *field);
49
static void pb_release_single_field(pb_field_iter_t *field);
50
#endif
51
52
#ifdef PB_WITHOUT_64BIT
53
#define pb_int64_t int32_t
54
#define pb_uint64_t uint32_t
55
#else
56
59.1M
#define pb_int64_t int64_t
57
41.4M
#define pb_uint64_t uint64_t
58
#endif
59
60
typedef struct {
61
    uint32_t bitfield[(PB_MAX_REQUIRED_FIELDS + 31) / 32];
62
} pb_fields_seen_t;
63
64
/*******************************
65
 * pb_istream_t implementation *
66
 *******************************/
67
68
static bool checkreturn buf_read(pb_istream_t *stream, pb_byte_t *buf, size_t count)
69
184M
{
70
184M
    const pb_byte_t *source = (const pb_byte_t*)stream->state;
71
184M
    stream->state = (pb_byte_t*)stream->state + count;
72
    
73
184M
    if (buf != NULL)
74
183M
    {
75
183M
        memcpy(buf, source, count * sizeof(pb_byte_t));
76
183M
    }
77
    
78
184M
    return true;
79
184M
}
80
81
bool checkreturn pb_read(pb_istream_t *stream, pb_byte_t *buf, size_t count)
82
11.0M
{
83
11.0M
    if (count == 0)
84
1.95M
        return true;
85
86
9.12M
#ifndef PB_BUFFER_ONLY
87
9.12M
  if (buf == NULL && stream->callback != buf_read)
88
393k
  {
89
    /* Skip input bytes */
90
393k
    pb_byte_t tmp[16];
91
1.80M
    while (count > 16)
92
1.41M
    {
93
1.41M
      if (!pb_read(stream, tmp, 16))
94
2.59k
        return false;
95
      
96
1.41M
      count -= 16;
97
1.41M
    }
98
    
99
390k
    return pb_read(stream, tmp, count);
100
393k
  }
101
8.73M
#endif
102
103
8.73M
    if (stream->bytes_left < count)
104
1.91k
        PB_RETURN_ERROR(stream, "end-of-stream");
105
    
106
8.73M
#ifndef PB_BUFFER_ONLY
107
8.73M
    if (!stream->callback(stream, buf, count))
108
5.22k
        PB_RETURN_ERROR(stream, "io error");
109
#else
110
    if (!buf_read(stream, buf, count))
111
        return false;
112
#endif
113
    
114
8.72M
    if (stream->bytes_left < count)
115
0
        stream->bytes_left = 0;
116
8.72M
    else
117
8.72M
        stream->bytes_left -= count;
118
119
8.72M
    return true;
120
8.73M
}
121
122
/* Read a single byte from input stream. buf may not be NULL.
123
 * This is an optimization for the varint decoding. */
124
static bool checkreturn pb_readbyte(pb_istream_t *stream, pb_byte_t *buf)
125
254M
{
126
254M
    if (stream->bytes_left == 0)
127
3.74k
        PB_RETURN_ERROR(stream, "end-of-stream");
128
129
254M
#ifndef PB_BUFFER_ONLY
130
254M
    if (!stream->callback(stream, buf, 1))
131
10.9k
        PB_RETURN_ERROR(stream, "io error");
132
#else
133
    *buf = *(const pb_byte_t*)stream->state;
134
    stream->state = (pb_byte_t*)stream->state + 1;
135
#endif
136
137
254M
    stream->bytes_left--;
138
    
139
254M
    return true;    
140
254M
}
141
142
pb_istream_t pb_istream_from_buffer(const pb_byte_t *buf, size_t msglen)
143
211k
{
144
211k
    pb_istream_t stream;
145
    /* Cast away the const from buf without a compiler error.  We are
146
     * careful to use it only in a const manner in the callbacks.
147
     */
148
211k
    union {
149
211k
        void *state;
150
211k
        const void *c_state;
151
211k
    } state;
152
#ifdef PB_BUFFER_ONLY
153
    stream.callback = NULL;
154
#else
155
211k
    stream.callback = &buf_read;
156
211k
#endif
157
211k
    state.c_state = buf;
158
211k
    stream.state = state.state;
159
211k
    stream.bytes_left = msglen;
160
211k
#ifndef PB_NO_ERRMSG
161
211k
    stream.errmsg = NULL;
162
211k
#endif
163
211k
    return stream;
164
211k
}
165
166
167
/********************
168
 * Helper functions *
169
 ********************/
170
171
bool checkreturn pb_decode_varint32(pb_istream_t *stream, uint32_t *dest)
172
129M
{
173
129M
    pb_byte_t byte;
174
129M
    uint32_t result;
175
    
176
129M
    if (!pb_readbyte(stream, &byte))
177
10.7k
    {
178
10.7k
        return false;
179
10.7k
    }
180
    
181
129M
    if ((byte & 0x80) == 0)
182
77.2M
    {
183
        /* Quick case, 1 byte value */
184
77.2M
        result = byte;
185
77.2M
    }
186
52.5M
    else
187
52.5M
    {
188
        /* Multibyte case */
189
52.5M
        uint_fast8_t bitpos = 7;
190
52.5M
        result = byte & 0x7F;
191
        
192
52.5M
        do
193
53.4M
        {
194
53.4M
            if (!pb_readbyte(stream, &byte))
195
2.60k
                return false;
196
            
197
53.3M
            if (bitpos >= 32)
198
32.3k
            {
199
                /* Note: The varint could have trailing 0x80 bytes, or 0xFF for negative. */
200
32.3k
                pb_byte_t sign_extension = (bitpos < 63) ? 0xFF : 0x01;
201
32.3k
                bool valid_extension = ((byte & 0x7F) == 0x00 ||
202
18.6k
                         ((result >> 31) != 0 && byte == sign_extension));
203
204
32.3k
                if (bitpos >= 64 || !valid_extension)
205
1.33k
                {
206
1.33k
                    PB_RETURN_ERROR(stream, "varint overflow");
207
1.33k
                }
208
32.3k
            }
209
53.3M
            else if (bitpos == 28)
210
48.1k
            {
211
48.1k
                if ((byte & 0x70) != 0 && (byte & 0x78) != 0x78)
212
515
                {
213
515
                    PB_RETURN_ERROR(stream, "varint overflow");
214
515
                }
215
47.6k
                result |= (uint32_t)(byte & 0x0F) << bitpos;
216
47.6k
            }
217
53.3M
            else
218
53.3M
            {
219
53.3M
                result |= (uint32_t)(byte & 0x7F) << bitpos;
220
53.3M
            }
221
53.3M
            bitpos = (uint_fast8_t)(bitpos + 7);
222
53.3M
        } while (byte & 0x80);
223
52.5M
   }
224
   
225
129M
   *dest = result;
226
129M
   return true;
227
129M
}
228
229
#ifndef PB_WITHOUT_64BIT
230
bool checkreturn pb_decode_varint(pb_istream_t *stream, uint64_t *dest)
231
35.2M
{
232
35.2M
    pb_byte_t byte;
233
35.2M
    uint_fast8_t bitpos = 0;
234
35.2M
    uint64_t result = 0;
235
    
236
35.2M
    do
237
70.8M
    {
238
70.8M
        if (!pb_readbyte(stream, &byte))
239
1.35k
            return false;
240
241
70.8M
        if (bitpos >= 63 && (byte & 0xFE) != 0)
242
236
            PB_RETURN_ERROR(stream, "varint overflow");
243
244
70.8M
        result |= (uint64_t)(byte & 0x7F) << bitpos;
245
70.8M
        bitpos = (uint_fast8_t)(bitpos + 7);
246
70.8M
    } while (byte & 0x80);
247
    
248
35.2M
    *dest = result;
249
35.2M
    return true;
250
35.2M
}
251
#endif
252
253
bool checkreturn pb_skip_varint(pb_istream_t *stream)
254
1.71M
{
255
1.71M
    pb_byte_t byte;
256
1.71M
    do
257
2.14M
    {
258
2.14M
        if (!pb_read(stream, &byte, 1))
259
640
            return false;
260
2.14M
    } while (byte & 0x80);
261
1.71M
    return true;
262
1.71M
}
263
264
bool checkreturn pb_skip_string(pb_istream_t *stream)
265
754k
{
266
754k
    uint32_t length;
267
754k
    if (!pb_decode_varint32(stream, &length))
268
510
        return false;
269
    
270
753k
    if ((size_t)length != length)
271
0
    {
272
0
        PB_RETURN_ERROR(stream, "size too large");
273
0
    }
274
275
753k
    return pb_read(stream, NULL, (size_t)length);
276
753k
}
277
278
bool checkreturn pb_decode_tag(pb_istream_t *stream, pb_wire_type_t *wire_type, uint32_t *tag, bool *eof)
279
73.4M
{
280
73.4M
    uint32_t temp;
281
73.4M
    *eof = false;
282
73.4M
    *wire_type = (pb_wire_type_t) 0;
283
73.4M
    *tag = 0;
284
285
73.4M
    if (stream->bytes_left == 0)
286
2.67M
    {
287
2.67M
        *eof = true;
288
2.67M
        return false;
289
2.67M
    }
290
291
70.7M
    if (!pb_decode_varint32(stream, &temp))
292
12.7k
    {
293
12.7k
#ifndef PB_BUFFER_ONLY
294
        /* Workaround for issue #1017
295
         *
296
         * Callback streams don't set bytes_left to 0 on eof until after being called by pb_decode_varint32,
297
         * which results in "io error" being raised. This contrasts the behavior of buffer streams who raise
298
         * no error on eof as bytes_left is already 0 on entry. This causes legitimate errors (e.g. missing
299
         * required fields) to be incorrectly reported by callback streams.
300
         */
301
12.7k
        if (stream->callback != buf_read && stream->bytes_left == 0)
302
9.97k
        {
303
9.97k
#ifndef PB_NO_ERRMSG
304
9.97k
            if (strcmp(stream->errmsg, "io error") == 0)
305
7.78k
                stream->errmsg = NULL;
306
9.97k
#endif
307
9.97k
            *eof = true;
308
9.97k
        }
309
12.7k
#endif
310
12.7k
        return false;
311
12.7k
    }
312
    
313
70.7M
    *tag = temp >> 3;
314
70.7M
    *wire_type = (pb_wire_type_t)(temp & 7);
315
70.7M
    return true;
316
70.7M
}
317
318
bool checkreturn pb_skip_field(pb_istream_t *stream, pb_wire_type_t wire_type)
319
3.30M
{
320
3.30M
    switch (wire_type)
321
3.30M
    {
322
1.71M
        case PB_WT_VARINT: return pb_skip_varint(stream);
323
312k
        case PB_WT_64BIT: return pb_read(stream, NULL, 8);
324
754k
        case PB_WT_STRING: return pb_skip_string(stream);
325
521k
        case PB_WT_32BIT: return pb_read(stream, NULL, 4);
326
0
  case PB_WT_PACKED: 
327
            /* Calling pb_skip_field with a PB_WT_PACKED is an error.
328
             * Explicitly handle this case and fallthrough to default to avoid
329
             * compiler warnings.
330
             */
331
2.76k
        default: PB_RETURN_ERROR(stream, "invalid wire_type");
332
3.30M
    }
333
3.30M
}
334
335
/* Read a raw value to buffer, for the purpose of passing it to callback as
336
 * a substream. Size is maximum size on call, and actual size on return.
337
 */
338
static bool checkreturn read_raw_value(pb_istream_t *stream, pb_wire_type_t wire_type, pb_byte_t *buf, size_t *size)
339
11.0k
{
340
11.0k
    size_t max_size = *size;
341
11.0k
    switch (wire_type)
342
11.0k
    {
343
7.80k
        case PB_WT_VARINT:
344
7.80k
            *size = 0;
345
7.80k
            do
346
21.5k
            {
347
21.5k
                (*size)++;
348
21.5k
                if (*size > max_size)
349
7
                    PB_RETURN_ERROR(stream, "varint overflow");
350
351
21.5k
                if (!pb_read(stream, buf, 1))
352
34
                    return false;
353
21.5k
            } while (*buf++ & 0x80);
354
7.75k
            return true;
355
            
356
1.25k
        case PB_WT_64BIT:
357
1.25k
            *size = 8;
358
1.25k
            return pb_read(stream, buf, 8);
359
        
360
1.91k
        case PB_WT_32BIT:
361
1.91k
            *size = 4;
362
1.91k
            return pb_read(stream, buf, 4);
363
        
364
0
        case PB_WT_STRING:
365
            /* Calling read_raw_value with a PB_WT_STRING is an error.
366
             * Explicitly handle this case and fallthrough to default to avoid
367
             * compiler warnings.
368
             */
369
370
0
  case PB_WT_PACKED: 
371
            /* Calling read_raw_value with a PB_WT_PACKED is an error.
372
             * Explicitly handle this case and fallthrough to default to avoid
373
             * compiler warnings.
374
             */
375
376
78
        default: PB_RETURN_ERROR(stream, "invalid wire_type");
377
11.0k
    }
378
11.0k
}
379
380
/* Decode string length from stream and return a substream with limited length.
381
 * Remember to close the substream using pb_close_string_substream().
382
 */
383
bool checkreturn pb_make_string_substream(pb_istream_t *stream, pb_istream_t *substream)
384
2.93M
{
385
2.93M
    uint32_t size;
386
2.93M
    if (!pb_decode_varint32(stream, &size))
387
1.17k
        return false;
388
    
389
2.93M
    *substream = *stream;
390
2.93M
    if (substream->bytes_left < size)
391
5.34k
        PB_RETURN_ERROR(stream, "parent stream too short");
392
    
393
2.93M
    substream->bytes_left = (size_t)size;
394
2.93M
    stream->bytes_left -= (size_t)size;
395
2.93M
    return true;
396
2.93M
}
397
398
bool checkreturn pb_close_string_substream(pb_istream_t *stream, pb_istream_t *substream)
399
2.93M
{
400
2.93M
    if (substream->bytes_left) {
401
65.9k
        if (!pb_read(substream, NULL, substream->bytes_left))
402
3.46k
            return false;
403
65.9k
    }
404
405
2.92M
    stream->state = substream->state;
406
407
2.92M
#ifndef PB_NO_ERRMSG
408
2.92M
    stream->errmsg = substream->errmsg;
409
2.92M
#endif
410
2.92M
    return true;
411
2.93M
}
412
413
/*************************
414
 * Decode a single field *
415
 *************************/
416
417
static bool checkreturn decode_basic_field(pb_istream_t *stream, pb_wire_type_t wire_type, pb_field_iter_t *field)
418
94.8M
{
419
94.8M
    switch (PB_LTYPE(field->type))
420
94.8M
    {
421
8.29M
        case PB_LTYPE_BOOL:
422
8.29M
            if (wire_type != PB_WT_VARINT && wire_type != PB_WT_PACKED)
423
194
                PB_RETURN_ERROR(stream, "wrong wire type");
424
425
8.29M
            return pb_dec_bool(stream, field);
426
427
23.3M
        case PB_LTYPE_VARINT:
428
28.9M
        case PB_LTYPE_UVARINT:
429
35.2M
        case PB_LTYPE_SVARINT:
430
35.2M
            if (wire_type != PB_WT_VARINT && wire_type != PB_WT_PACKED)
431
1.14k
                PB_RETURN_ERROR(stream, "wrong wire type");
432
433
35.2M
            return pb_dec_varint(stream, field);
434
435
859k
        case PB_LTYPE_FIXED32:
436
859k
            if (wire_type != PB_WT_32BIT && wire_type != PB_WT_PACKED)
437
252
                PB_RETURN_ERROR(stream, "wrong wire type");
438
439
858k
            return pb_decode_fixed32(stream, field->pData);
440
441
708k
        case PB_LTYPE_FIXED64:
442
708k
            if (wire_type != PB_WT_64BIT && wire_type != PB_WT_PACKED)
443
241
                PB_RETURN_ERROR(stream, "wrong wire type");
444
445
#ifdef PB_CONVERT_DOUBLE_FLOAT
446
            if (field->data_size == sizeof(float))
447
            {
448
                return pb_decode_double_as_float(stream, (float*)field->pData);
449
            }
450
#endif
451
452
#ifdef PB_WITHOUT_64BIT
453
            PB_RETURN_ERROR(stream, "invalid data_size");
454
#else
455
707k
            return pb_decode_fixed64(stream, field->pData);
456
0
#endif
457
458
1.39M
        case PB_LTYPE_BYTES:
459
1.39M
            if (wire_type != PB_WT_STRING)
460
388
                PB_RETURN_ERROR(stream, "wrong wire type");
461
462
1.39M
            return pb_dec_bytes(stream, field);
463
464
495k
        case PB_LTYPE_STRING:
465
495k
            if (wire_type != PB_WT_STRING)
466
352
                PB_RETURN_ERROR(stream, "wrong wire type");
467
468
495k
            return pb_dec_string(stream, field);
469
470
2.64M
        case PB_LTYPE_SUBMESSAGE:
471
2.69M
        case PB_LTYPE_SUBMSG_W_CB:
472
2.69M
            if (wire_type != PB_WT_STRING)
473
332
                PB_RETURN_ERROR(stream, "wrong wire type");
474
475
2.69M
            return pb_dec_submessage(stream, field);
476
477
45.1M
        case PB_LTYPE_FIXED_LENGTH_BYTES:
478
45.1M
            if (wire_type != PB_WT_STRING)
479
56
                PB_RETURN_ERROR(stream, "wrong wire type");
480
481
45.1M
            return pb_dec_fixed_length_bytes(stream, field);
482
483
0
        default:
484
0
            PB_RETURN_ERROR(stream, "invalid field type");
485
94.8M
    }
486
94.8M
}
487
488
static bool checkreturn decode_static_field(pb_istream_t *stream, pb_wire_type_t wire_type, pb_field_iter_t *field)
489
13.8M
{
490
13.8M
    switch (PB_HTYPE(field->type))
491
13.8M
    {
492
8.35M
        case PB_HTYPE_REQUIRED:
493
8.35M
            return decode_basic_field(stream, wire_type, field);
494
            
495
5.20M
        case PB_HTYPE_OPTIONAL:
496
5.20M
            if (field->pSize != NULL)
497
757k
                *(bool*)field->pSize = true;
498
5.20M
            return decode_basic_field(stream, wire_type, field);
499
    
500
59.0k
        case PB_HTYPE_REPEATED:
501
59.0k
            if (wire_type == PB_WT_STRING
502
46.3k
                && PB_LTYPE(field->type) <= PB_LTYPE_LAST_PACKABLE)
503
20.3k
            {
504
                /* Packed array */
505
20.3k
                bool status = true;
506
20.3k
                pb_istream_t substream;
507
20.3k
                pb_size_t *size = (pb_size_t*)field->pSize;
508
20.3k
                field->pData = (char*)field->pField + field->data_size * (*size);
509
510
20.3k
                if (!pb_make_string_substream(stream, &substream))
511
327
                    return false;
512
513
81.9k
                while (substream.bytes_left > 0 && *size < field->array_size)
514
62.1k
                {
515
62.1k
                    if (!decode_basic_field(&substream, PB_WT_PACKED, field))
516
261
                    {
517
261
                        status = false;
518
261
                        break;
519
261
                    }
520
61.8k
                    (*size)++;
521
61.8k
                    field->pData = (char*)field->pData + field->data_size;
522
61.8k
                }
523
524
20.0k
                if (substream.bytes_left != 0)
525
377
                    PB_RETURN_ERROR(stream, "array overflow");
526
19.6k
                if (!pb_close_string_substream(stream, &substream))
527
0
                    return false;
528
529
19.6k
                return status;
530
19.6k
            }
531
38.7k
            else
532
38.7k
            {
533
                /* Repeated field */
534
38.7k
                pb_size_t *size = (pb_size_t*)field->pSize;
535
38.7k
                field->pData = (char*)field->pField + field->data_size * (*size);
536
537
38.7k
                if ((*size)++ >= field->array_size)
538
156
                    PB_RETURN_ERROR(stream, "array overflow");
539
540
38.5k
                return decode_basic_field(stream, wire_type, field);
541
38.7k
            }
542
543
246k
        case PB_HTYPE_ONEOF:
544
246k
            if (PB_LTYPE_IS_SUBMSG(field->type) &&
545
246k
                *(pb_size_t*)field->pSize != field->tag)
546
134k
            {
547
                /* We memset to zero so that any callbacks are set to NULL.
548
                 * This is because the callbacks might otherwise have values
549
                 * from some other union field.
550
                 * If callbacks are needed inside oneof field, use .proto
551
                 * option submsg_callback to have a separate callback function
552
                 * that can set the fields before submessage is decoded.
553
                 * pb_dec_submessage() will set any default values. */
554
134k
                memset(field->pData, 0, (size_t)field->data_size);
555
556
                /* Set default values for the submessage fields. */
557
134k
                if (field->submsg_desc->default_value != NULL ||
558
63.0k
                    field->submsg_desc->field_callback != NULL ||
559
63.0k
                    field->submsg_desc->submsg_info[0] != NULL)
560
71.3k
                {
561
71.3k
                    pb_field_iter_t submsg_iter;
562
71.3k
                    if (pb_field_iter_begin(&submsg_iter, field->submsg_desc, field->pData))
563
71.3k
                    {
564
71.3k
                        if (!pb_message_set_to_defaults(&submsg_iter))
565
0
                            PB_RETURN_ERROR(stream, "failed to set defaults");
566
71.3k
                    }
567
71.3k
                }
568
134k
            }
569
246k
            *(pb_size_t*)field->pSize = field->tag;
570
571
246k
            return decode_basic_field(stream, wire_type, field);
572
573
0
        default:
574
0
            PB_RETURN_ERROR(stream, "invalid field type");
575
13.8M
    }
576
13.8M
}
577
578
#ifdef PB_ENABLE_MALLOC
579
/* Allocate storage for the field and store the pointer at iter->pData.
580
 * array_size is the number of entries to reserve in an array.
581
 * Zero size is not allowed, use pb_free() for releasing.
582
 */
583
static bool checkreturn allocate_field(pb_istream_t *stream, void *pData, size_t data_size, size_t array_size)
584
56.6M
{    
585
56.6M
    void *ptr = *(void**)pData;
586
    
587
56.6M
    if (data_size == 0 || array_size == 0)
588
0
        PB_RETURN_ERROR(stream, "invalid size");
589
    
590
#ifdef __AVR__
591
    /* Workaround for AVR libc bug 53284: http://savannah.nongnu.org/bugs/?53284
592
     * Realloc to size of 1 byte can cause corruption of the malloc structures.
593
     */
594
    if (data_size == 1 && array_size == 1)
595
    {
596
        data_size = 2;
597
    }
598
#endif
599
600
    /* Check for multiplication overflows.
601
     * This code avoids the costly division if the sizes are small enough.
602
     * Multiplication is safe as long as only half of bits are set
603
     * in either multiplicand.
604
     */
605
56.6M
    {
606
56.6M
        const size_t check_limit = (size_t)1 << (sizeof(size_t) * 4);
607
56.6M
        if (data_size >= check_limit || array_size >= check_limit)
608
0
        {
609
0
            const size_t size_max = (size_t)-1;
610
0
            if (size_max / array_size < data_size)
611
0
            {
612
0
                PB_RETURN_ERROR(stream, "size too large");
613
0
            }
614
0
        }
615
56.6M
    }
616
    
617
    /* Allocate new or expand previous allocation */
618
    /* Note: on failure the old pointer will remain in the structure,
619
     * the message must be freed by caller also on error return. */
620
56.6M
    ptr = pb_realloc(ptr, array_size * data_size);
621
56.6M
    if (ptr == NULL)
622
247
        PB_RETURN_ERROR(stream, "realloc failed");
623
    
624
56.6M
    *(void**)pData = ptr;
625
56.6M
    return true;
626
56.6M
}
627
628
/* Clear a newly allocated item in case it contains a pointer, or is a submessage. */
629
static void initialize_pointer_field(void *pItem, pb_field_iter_t *field)
630
80.6M
{
631
80.6M
    if (PB_LTYPE(field->type) == PB_LTYPE_STRING ||
632
80.5M
        PB_LTYPE(field->type) == PB_LTYPE_BYTES)
633
1.35M
    {
634
1.35M
        *(void**)pItem = NULL;
635
1.35M
    }
636
79.3M
    else if (PB_LTYPE_IS_SUBMSG(field->type))
637
2.30M
    {
638
        /* We memset to zero so that any callbacks are set to NULL.
639
         * Default values will be set by pb_dec_submessage(). */
640
2.30M
        memset(pItem, 0, field->data_size);
641
2.30M
    }
642
80.6M
}
643
#endif
644
645
static bool checkreturn decode_pointer_field(pb_istream_t *stream, pb_wire_type_t wire_type, pb_field_iter_t *field)
646
53.3M
{
647
#ifndef PB_ENABLE_MALLOC
648
    PB_UNUSED(wire_type);
649
    PB_UNUSED(field);
650
    PB_RETURN_ERROR(stream, "no malloc support");
651
#else
652
53.3M
    switch (PB_HTYPE(field->type))
653
53.3M
    {
654
2.81M
        case PB_HTYPE_REQUIRED:
655
4.11M
        case PB_HTYPE_OPTIONAL:
656
4.18M
        case PB_HTYPE_ONEOF:
657
4.18M
            if (PB_LTYPE_IS_SUBMSG(field->type) && *(void**)field->pField != NULL)
658
83.2k
            {
659
                /* Duplicate field, have to release the old allocation first. */
660
                /* FIXME: Does this work correctly for oneofs? */
661
83.2k
                pb_release_single_field(field);
662
83.2k
            }
663
        
664
4.18M
            if (PB_HTYPE(field->type) == PB_HTYPE_ONEOF)
665
67.2k
            {
666
67.2k
                *(pb_size_t*)field->pSize = field->tag;
667
67.2k
            }
668
669
4.18M
            if (PB_LTYPE(field->type) == PB_LTYPE_STRING ||
670
4.04M
                PB_LTYPE(field->type) == PB_LTYPE_BYTES)
671
199k
            {
672
                /* pb_dec_string and pb_dec_bytes handle allocation themselves */
673
199k
                field->pData = field->pField;
674
199k
                return decode_basic_field(stream, wire_type, field);
675
199k
            }
676
3.98M
            else
677
3.98M
            {
678
3.98M
                if (!allocate_field(stream, field->pField, field->data_size, 1))
679
6
                    return false;
680
                
681
3.98M
                field->pData = *(void**)field->pField;
682
3.98M
                initialize_pointer_field(field->pData, field);
683
3.98M
                return decode_basic_field(stream, wire_type, field);
684
3.98M
            }
685
    
686
49.1M
        case PB_HTYPE_REPEATED:
687
49.1M
            if (wire_type == PB_WT_STRING
688
48.6M
                && PB_LTYPE(field->type) <= PB_LTYPE_LAST_PACKABLE)
689
102k
            {
690
                /* Packed array, multiple items come in at once. */
691
102k
                bool status = true;
692
102k
                pb_size_t *size = (pb_size_t*)field->pSize;
693
102k
                size_t allocated_size = *size;
694
102k
                pb_istream_t substream;
695
                
696
102k
                if (!pb_make_string_substream(stream, &substream))
697
120
                    return false;
698
                
699
27.7M
                while (substream.bytes_left)
700
27.6M
                {
701
27.6M
                    if (*size == PB_SIZE_MAX)
702
5
                    {
703
5
#ifndef PB_NO_ERRMSG
704
5
                        stream->errmsg = "too many array entries";
705
5
#endif
706
5
                        status = false;
707
5
                        break;
708
5
                    }
709
710
27.6M
                    if ((size_t)*size + 1 > allocated_size)
711
2.07M
                    {
712
                        /* Allocate more storage. This tries to guess the
713
                         * number of remaining entries. Round the division
714
                         * upwards. */
715
2.07M
                        size_t remain = (substream.bytes_left - 1) / field->data_size + 1;
716
2.07M
                        if (remain < PB_SIZE_MAX - allocated_size)
717
387k
                            allocated_size += remain;
718
1.69M
                        else
719
1.69M
                            allocated_size += 1;
720
                        
721
2.07M
                        if (!allocate_field(&substream, field->pField, field->data_size, allocated_size))
722
34
                        {
723
34
                            status = false;
724
34
                            break;
725
34
                        }
726
2.07M
                    }
727
728
                    /* Decode the array entry */
729
27.6M
                    field->pData = *(char**)field->pField + field->data_size * (*size);
730
27.6M
                    if (field->pData == NULL)
731
0
                    {
732
                        /* Shouldn't happen, but satisfies static analyzers */
733
0
                        status = false;
734
0
                        break;
735
0
                    }
736
27.6M
                    initialize_pointer_field(field->pData, field);
737
27.6M
                    if (!decode_basic_field(&substream, PB_WT_PACKED, field))
738
438
                    {
739
438
                        status = false;
740
438
                        break;
741
438
                    }
742
                    
743
27.6M
                    (*size)++;
744
27.6M
                }
745
102k
                if (!pb_close_string_substream(stream, &substream))
746
163
                    return false;
747
                
748
102k
                return status;
749
102k
            }
750
49.0M
            else
751
49.0M
            {
752
                /* Normal repeated field, i.e. only one item at a time. */
753
49.0M
                pb_size_t *size = (pb_size_t*)field->pSize;
754
755
49.0M
                if (*size == PB_SIZE_MAX)
756
2
                    PB_RETURN_ERROR(stream, "too many array entries");
757
                
758
49.0M
                if (!allocate_field(stream, field->pField, field->data_size, (size_t)(*size + 1)))
759
6
                    return false;
760
            
761
49.0M
                field->pData = *(char**)field->pField + field->data_size * (*size);
762
49.0M
                (*size)++;
763
49.0M
                initialize_pointer_field(field->pData, field);
764
49.0M
                return decode_basic_field(stream, wire_type, field);
765
49.0M
            }
766
767
0
        default:
768
0
            PB_RETURN_ERROR(stream, "invalid field type");
769
53.3M
    }
770
53.3M
#endif
771
53.3M
}
772
773
static bool checkreturn decode_callback_field(pb_istream_t *stream, pb_wire_type_t wire_type, pb_field_iter_t *field)
774
126k
{
775
126k
    if (!field->descriptor->field_callback)
776
0
        return pb_skip_field(stream, wire_type);
777
778
126k
    if (wire_type == PB_WT_STRING)
779
115k
    {
780
115k
        pb_istream_t substream;
781
115k
        size_t prev_bytes_left;
782
        
783
115k
        if (!pb_make_string_substream(stream, &substream))
784
837
            return false;
785
786
        /* If the callback field is inside a submsg, first call the submsg_callback which
787
         * should set the decoder for the callback field. */
788
114k
        if (PB_LTYPE(field->type) == PB_LTYPE_SUBMSG_W_CB && field->pSize != NULL) {
789
0
            pb_callback_t* callback;
790
0
            *(pb_size_t*)field->pSize = field->tag;
791
0
            callback = (pb_callback_t*)field->pSize - 1;
792
793
0
            if (callback->funcs.decode)
794
0
            {
795
0
                if (!callback->funcs.decode(&substream, field, &callback->arg)) {
796
0
                    PB_SET_ERROR(stream, substream.errmsg ? substream.errmsg : "submsg callback failed");
797
0
                    return false;
798
0
                }
799
0
            }
800
0
        }
801
        
802
114k
        do
803
114k
        {
804
114k
            prev_bytes_left = substream.bytes_left;
805
114k
            if (!field->descriptor->field_callback(&substream, NULL, field))
806
0
            {
807
0
                PB_SET_ERROR(stream, substream.errmsg ? substream.errmsg : "callback failed");
808
0
                return false;
809
0
            }
810
114k
        } while (substream.bytes_left > 0 && substream.bytes_left < prev_bytes_left);
811
        
812
114k
        if (!pb_close_string_substream(stream, &substream))
813
0
            return false;
814
815
114k
        return true;
816
114k
    }
817
11.0k
    else
818
11.0k
    {
819
        /* Copy the single scalar value to stack.
820
         * This is required so that we can limit the stream length,
821
         * which in turn allows to use same callback for packed and
822
         * not-packed fields. */
823
11.0k
        pb_istream_t substream;
824
11.0k
        pb_byte_t buffer[10];
825
11.0k
        size_t size = sizeof(buffer);
826
        
827
11.0k
        if (!read_raw_value(stream, wire_type, buffer, &size))
828
159
            return false;
829
10.8k
        substream = pb_istream_from_buffer(buffer, size);
830
        
831
10.8k
        return field->descriptor->field_callback(&substream, NULL, field);
832
11.0k
    }
833
126k
}
834
835
static bool checkreturn decode_field(pb_istream_t *stream, pb_wire_type_t wire_type, pb_field_iter_t *field)
836
67.2M
{
837
#ifdef PB_ENABLE_MALLOC
838
    /* When decoding an oneof field, check if there is old data that must be
839
     * released first. */
840
55.3M
    if (PB_HTYPE(field->type) == PB_HTYPE_ONEOF)
841
111k
    {
842
111k
        if (!pb_release_union_field(stream, field))
843
0
            return false;
844
111k
    }
845
55.3M
#endif
846
847
67.2M
    switch (PB_ATYPE(field->type))
848
55.3M
    {
849
13.8M
        case PB_ATYPE_STATIC:
850
13.8M
            return decode_static_field(stream, wire_type, field);
851
        
852
53.3M
        case PB_ATYPE_POINTER:
853
53.3M
            return decode_pointer_field(stream, wire_type, field);
854
        
855
126k
        case PB_ATYPE_CALLBACK:
856
126k
            return decode_callback_field(stream, wire_type, field);
857
        
858
0
        default:
859
0
            PB_RETURN_ERROR(stream, "invalid field type");
860
55.3M
    }
861
55.3M
}
pb_decode.c:decode_field
Line
Count
Source
836
11.9M
{
837
#ifdef PB_ENABLE_MALLOC
838
    /* When decoding an oneof field, check if there is old data that must be
839
     * released first. */
840
    if (PB_HTYPE(field->type) == PB_HTYPE_ONEOF)
841
    {
842
        if (!pb_release_union_field(stream, field))
843
            return false;
844
    }
845
#endif
846
847
11.9M
    switch (PB_ATYPE(field->type))
848
11.9M
    {
849
11.9M
        case PB_ATYPE_STATIC:
850
11.9M
            return decode_static_field(stream, wire_type, field);
851
        
852
0
        case PB_ATYPE_POINTER:
853
0
            return decode_pointer_field(stream, wire_type, field);
854
        
855
66.2k
        case PB_ATYPE_CALLBACK:
856
66.2k
            return decode_callback_field(stream, wire_type, field);
857
        
858
0
        default:
859
            PB_RETURN_ERROR(stream, "invalid field type");
860
11.9M
    }
861
11.9M
}
pb_decode.c:decode_field
Line
Count
Source
836
55.3M
{
837
55.3M
#ifdef PB_ENABLE_MALLOC
838
    /* When decoding an oneof field, check if there is old data that must be
839
     * released first. */
840
55.3M
    if (PB_HTYPE(field->type) == PB_HTYPE_ONEOF)
841
111k
    {
842
111k
        if (!pb_release_union_field(stream, field))
843
0
            return false;
844
111k
    }
845
55.3M
#endif
846
847
55.3M
    switch (PB_ATYPE(field->type))
848
55.3M
    {
849
1.93M
        case PB_ATYPE_STATIC:
850
1.93M
            return decode_static_field(stream, wire_type, field);
851
        
852
53.3M
        case PB_ATYPE_POINTER:
853
53.3M
            return decode_pointer_field(stream, wire_type, field);
854
        
855
60.1k
        case PB_ATYPE_CALLBACK:
856
60.1k
            return decode_callback_field(stream, wire_type, field);
857
        
858
0
        default:
859
            PB_RETURN_ERROR(stream, "invalid field type");
860
55.3M
    }
861
55.3M
}
862
863
/* Default handler for extension fields. Expects to have a pb_msgdesc_t
864
 * pointer in the extension->type->arg field, pointing to a message with
865
 * only one field in it.  */
866
static bool checkreturn default_extension_decoder(pb_istream_t *stream,
867
    pb_extension_t *extension, uint32_t tag, pb_wire_type_t wire_type)
868
265k
{
869
265k
    pb_field_iter_t iter;
870
871
265k
    if (!pb_field_iter_begin_extension(&iter, extension))
872
0
        PB_RETURN_ERROR(stream, "invalid extension");
873
874
265k
    if (iter.tag != tag || !iter.message)
875
253k
        return true;
876
877
11.7k
    extension->found = true;
878
11.7k
    return decode_field(stream, wire_type, &iter);
879
265k
}
880
881
/* Try to decode an unknown field as an extension field. Tries each extension
882
 * decoder in turn, until one of them handles the field or loop ends. */
883
static bool checkreturn decode_extension(pb_istream_t *stream,
884
    uint32_t tag, pb_wire_type_t wire_type, pb_extension_t *extension)
885
265k
{
886
265k
    size_t pos = stream->bytes_left;
887
    
888
531k
    while (extension != NULL && pos == stream->bytes_left)
889
265k
    {
890
265k
        bool status;
891
265k
        if (extension->type->decode)
892
0
            status = extension->type->decode(stream, extension, tag, wire_type);
893
265k
        else
894
265k
            status = default_extension_decoder(stream, extension, tag, wire_type);
895
896
265k
        if (!status)
897
195
            return false;
898
        
899
265k
        extension = extension->next;
900
265k
    }
901
    
902
265k
    return true;
903
265k
}
904
905
/* Initialize message fields to default values, recursively */
906
static bool pb_field_set_to_default(pb_field_iter_t *field)
907
10.5M
{
908
10.5M
    pb_type_t type;
909
10.5M
    type = field->type;
910
911
10.5M
    if (PB_LTYPE(type) == PB_LTYPE_EXTENSION)
912
38.1k
    {
913
38.1k
        pb_extension_t *ext = *(pb_extension_t* const *)field->pData;
914
54.6k
        while (ext != NULL)
915
16.5k
        {
916
16.5k
            pb_field_iter_t ext_iter;
917
16.5k
            if (pb_field_iter_begin_extension(&ext_iter, ext))
918
16.5k
            {
919
16.5k
                ext->found = false;
920
16.5k
                if (!pb_message_set_to_defaults(&ext_iter))
921
0
                    return false;
922
16.5k
            }
923
16.5k
            ext = ext->next;
924
16.5k
        }
925
38.1k
    }
926
10.5M
    else if (PB_ATYPE(type) == PB_ATYPE_STATIC)
927
2.17M
    {
928
2.17M
        bool init_data = true;
929
2.17M
        if (PB_HTYPE(type) == PB_HTYPE_OPTIONAL && field->pSize != NULL)
930
543k
        {
931
            /* Set has_field to false. Still initialize the optional field
932
             * itself also. */
933
543k
            *(bool*)field->pSize = false;
934
543k
        }
935
1.62M
        else if (PB_HTYPE(type) == PB_HTYPE_REPEATED ||
936
1.17M
                 PB_HTYPE(type) == PB_HTYPE_ONEOF)
937
564k
        {
938
            /* REPEATED: Set array count to 0, no need to initialize contents.
939
               ONEOF: Set which_field to 0. */
940
564k
            *(pb_size_t*)field->pSize = 0;
941
564k
            init_data = false;
942
564k
        }
943
944
2.17M
        if (init_data)
945
1.60M
        {
946
1.60M
            if (PB_LTYPE_IS_SUBMSG(field->type) &&
947
186k
                (field->submsg_desc->default_value != NULL ||
948
121k
                 field->submsg_desc->field_callback != NULL ||
949
121k
                 field->submsg_desc->submsg_info[0] != NULL))
950
64.2k
            {
951
                /* Initialize submessage to defaults.
952
                 * Only needed if it has default values
953
                 * or callback/submessage fields. */
954
64.2k
                pb_field_iter_t submsg_iter;
955
64.2k
                if (pb_field_iter_begin(&submsg_iter, field->submsg_desc, field->pData))
956
64.2k
                {
957
64.2k
                    if (!pb_message_set_to_defaults(&submsg_iter))
958
0
                        return false;
959
64.2k
                }
960
64.2k
            }
961
1.54M
            else
962
1.54M
            {
963
                /* Initialize to zeros */
964
1.54M
                memset(field->pData, 0, (size_t)field->data_size);
965
1.54M
            }
966
1.60M
        }
967
2.17M
    }
968
8.35M
    else if (PB_ATYPE(type) == PB_ATYPE_POINTER)
969
8.16M
    {
970
        /* Initialize the pointer to NULL. */
971
8.16M
        *(void**)field->pField = NULL;
972
973
        /* Initialize array count to 0. */
974
8.16M
        if (PB_HTYPE(type) == PB_HTYPE_REPEATED ||
975
7.64M
            PB_HTYPE(type) == PB_HTYPE_ONEOF)
976
573k
        {
977
573k
            *(pb_size_t*)field->pSize = 0;
978
573k
        }
979
8.16M
    }
980
190k
    else if (PB_ATYPE(type) == PB_ATYPE_CALLBACK)
981
190k
    {
982
        /* Don't overwrite callback */
983
190k
    }
984
985
10.5M
    return true;
986
10.5M
}
987
988
static bool pb_message_set_to_defaults(pb_field_iter_t *iter)
989
2.38M
{
990
2.38M
    pb_istream_t defstream = PB_ISTREAM_EMPTY;
991
2.38M
    uint32_t tag = 0;
992
2.38M
    pb_wire_type_t wire_type = PB_WT_VARINT;
993
2.38M
    bool eof;
994
995
2.38M
    if (iter->descriptor->default_value)
996
161k
    {
997
161k
        defstream = pb_istream_from_buffer(iter->descriptor->default_value, (size_t)-1);
998
161k
        if (!pb_decode_tag(&defstream, &wire_type, &tag, &eof))
999
0
            return false;
1000
161k
    }
1001
1002
2.38M
    do
1003
10.5M
    {
1004
10.5M
        if (!pb_field_set_to_default(iter))
1005
0
            return false;
1006
1007
10.5M
        if (tag != 0 && iter->tag == tag)
1008
924k
        {
1009
            /* We have a default value for this field in the defstream */
1010
924k
            if (!decode_field(&defstream, wire_type, iter))
1011
0
                return false;
1012
924k
            if (!pb_decode_tag(&defstream, &wire_type, &tag, &eof))
1013
0
                return false;
1014
1015
924k
            if (iter->pSize)
1016
487k
                *(bool*)iter->pSize = false;
1017
924k
        }
1018
10.5M
    } while (pb_field_iter_next(iter));
1019
1020
2.38M
    return true;
1021
2.38M
}
1022
1023
/*********************
1024
 * Decode all fields *
1025
 *********************/
1026
1027
static bool checkreturn pb_decode_inner(pb_istream_t *stream, const pb_msgdesc_t *fields, void *dest_struct, unsigned int flags)
1028
2.71M
{
1029
    /* If the message contains extension fields, the extension handlers
1030
     * are called when tag number is >= extension_range_start. This precheck
1031
     * is just for speed, and the handlers will check for precise match.
1032
     */
1033
2.71M
    uint32_t extension_range_start = 0;
1034
2.71M
    pb_extension_t *extensions = NULL;
1035
1036
    /* 'fixed_count_field' and 'fixed_count_size' track position of a repeated fixed
1037
     * count field. This can only handle _one_ repeated fixed count field that
1038
     * is unpacked and unordered among other (non repeated fixed count) fields.
1039
     */
1040
2.71M
    pb_size_t fixed_count_field = PB_SIZE_MAX;
1041
2.71M
    pb_size_t fixed_count_size = 0;
1042
2.71M
    pb_size_t fixed_count_total_size = 0;
1043
1044
    /* Tag and wire type of next field from the input stream */
1045
2.71M
    uint32_t tag;
1046
2.71M
    pb_wire_type_t wire_type;
1047
2.71M
    bool eof;
1048
1049
    /* Track presence of required fields */
1050
2.71M
    pb_fields_seen_t fields_seen = {{0, 0}};
1051
2.71M
    const uint32_t allbits = ~(uint32_t)0;
1052
1053
    /* Descriptor for the structure field matching the tag decoded from stream */
1054
2.71M
    pb_field_iter_t iter;
1055
1056
2.71M
    if (pb_field_iter_begin(&iter, fields, dest_struct))
1057
2.42M
    {
1058
2.42M
        if ((flags & PB_DECODE_NOINIT) == 0)
1059
2.23M
        {
1060
2.23M
            if (!pb_message_set_to_defaults(&iter))
1061
0
                PB_RETURN_ERROR(stream, "failed to set defaults");
1062
2.23M
        }
1063
2.42M
    }
1064
1065
72.3M
    while (pb_decode_tag(stream, &wire_type, &tag, &eof))
1066
69.6M
    {
1067
69.6M
        if (tag == 0)
1068
2.09k
        {
1069
2.09k
          if (flags & PB_DECODE_NULLTERMINATED)
1070
266
          {
1071
266
            eof = true;
1072
266
            break;
1073
266
          }
1074
1.83k
          else
1075
1.83k
          {
1076
1.83k
            PB_RETURN_ERROR(stream, "zero tag");
1077
1.83k
          }
1078
2.09k
        }
1079
1080
69.6M
        if (!pb_field_iter_find(&iter, tag) || PB_LTYPE(iter.type) == PB_LTYPE_EXTENSION)
1081
3.32M
        {
1082
            /* No match found, check if it matches an extension. */
1083
3.32M
            if (extension_range_start == 0)
1084
60.4k
            {
1085
60.4k
                if (pb_field_iter_find_extension(&iter))
1086
15.0k
                {
1087
15.0k
                    extensions = *(pb_extension_t* const *)iter.pData;
1088
15.0k
                    extension_range_start = iter.tag;
1089
15.0k
                }
1090
1091
60.4k
                if (!extensions)
1092
52.8k
                {
1093
52.8k
                    extension_range_start = (uint32_t)-1;
1094
52.8k
                }
1095
60.4k
            }
1096
1097
3.32M
            if (tag >= extension_range_start)
1098
265k
            {
1099
265k
                size_t pos = stream->bytes_left;
1100
1101
265k
                if (!decode_extension(stream, tag, wire_type, extensions))
1102
195
                    return false;
1103
1104
265k
                if (pos != stream->bytes_left)
1105
11.5k
                {
1106
                    /* The field was handled */
1107
11.5k
                    continue;
1108
11.5k
                }
1109
265k
            }
1110
1111
            /* No match found, skip data */
1112
3.30M
            if (!pb_skip_field(stream, wire_type))
1113
5.74k
                return false;
1114
3.30M
            continue;
1115
3.30M
        }
1116
1117
        /* If a repeated fixed count field was found, get size from
1118
         * 'fixed_count_field' as there is no counter contained in the struct.
1119
         */
1120
66.3M
        if (PB_HTYPE(iter.type) == PB_HTYPE_REPEATED && iter.pSize == &iter.array_size)
1121
9.45k
        {
1122
9.45k
            if (fixed_count_field != iter.index) {
1123
                /* If the new fixed count field does not match the previous one,
1124
                 * check that the previous one is NULL or that it finished
1125
                 * receiving all the expected data.
1126
                 */
1127
5.87k
                if (fixed_count_field != PB_SIZE_MAX &&
1128
3.20k
                    fixed_count_size != fixed_count_total_size)
1129
96
                {
1130
96
                    PB_RETURN_ERROR(stream, "wrong size for fixed count field");
1131
96
                }
1132
1133
5.77k
                fixed_count_field = iter.index;
1134
5.77k
                fixed_count_size = 0;
1135
5.77k
                fixed_count_total_size = iter.array_size;
1136
5.77k
            }
1137
1138
9.36k
            iter.pSize = &fixed_count_size;
1139
9.36k
        }
1140
1141
66.3M
        if (PB_HTYPE(iter.type) == PB_HTYPE_REQUIRED
1142
10.8M
            && iter.required_field_index < PB_MAX_REQUIRED_FIELDS)
1143
10.8M
        {
1144
10.8M
            uint32_t tmp = ((uint32_t)1 << (iter.required_field_index & 31));
1145
10.8M
            fields_seen.bitfield[iter.required_field_index >> 5] |= tmp;
1146
10.8M
        }
1147
1148
66.3M
        if (!decode_field(stream, wire_type, &iter))
1149
16.4k
            return false;
1150
66.3M
    }
1151
1152
2.69M
    if (!eof)
1153
2.81k
    {
1154
        /* pb_decode_tag() returned error before end of stream */
1155
2.81k
        return false;
1156
2.81k
    }
1157
1158
    /* Check that all elements of the last decoded fixed count field were present. */
1159
2.68M
    if (fixed_count_field != PB_SIZE_MAX &&
1160
1.91k
        fixed_count_size != fixed_count_total_size)
1161
117
    {
1162
117
        PB_RETURN_ERROR(stream, "wrong size for fixed count field");
1163
117
    }
1164
1165
    /* Check that all required fields were present. */
1166
2.68M
    {
1167
2.68M
        pb_size_t req_field_count = iter.descriptor->required_field_count;
1168
1169
2.68M
        if (req_field_count > 0)
1170
292k
        {
1171
292k
            pb_size_t i;
1172
1173
292k
            if (req_field_count > PB_MAX_REQUIRED_FIELDS)
1174
0
                req_field_count = PB_MAX_REQUIRED_FIELDS;
1175
1176
            /* Check the whole words */
1177
292k
            for (i = 0; i < (req_field_count >> 5); i++)
1178
0
            {
1179
0
                if (fields_seen.bitfield[i] != allbits)
1180
0
                    PB_RETURN_ERROR(stream, "missing required field");
1181
0
            }
1182
1183
            /* Check the remaining bits (if any) */
1184
292k
            if ((req_field_count & 31) != 0)
1185
292k
            {
1186
292k
                if (fields_seen.bitfield[req_field_count >> 5] !=
1187
292k
                    (allbits >> (uint_least8_t)(32 - (req_field_count & 31))))
1188
3.62k
                {
1189
3.62k
                    PB_RETURN_ERROR(stream, "missing required field");
1190
3.62k
                }
1191
292k
            }
1192
292k
        }
1193
2.68M
    }
1194
1195
2.68M
    return true;
1196
2.68M
}
1197
1198
bool checkreturn pb_decode_ex(pb_istream_t *stream, const pb_msgdesc_t *fields, void *dest_struct, unsigned int flags)
1199
14.8k
{
1200
14.8k
    bool status;
1201
1202
14.8k
    if ((flags & PB_DECODE_DELIMITED) == 0)
1203
14.8k
    {
1204
14.8k
      status = pb_decode_inner(stream, fields, dest_struct, flags);
1205
14.8k
    }
1206
0
    else
1207
0
    {
1208
0
      pb_istream_t substream;
1209
0
      if (!pb_make_string_substream(stream, &substream))
1210
0
        return false;
1211
1212
0
      status = pb_decode_inner(&substream, fields, dest_struct, flags);
1213
1214
0
      if (!pb_close_string_substream(stream, &substream))
1215
0
        status = false;
1216
0
    }
1217
    
1218
#ifdef PB_ENABLE_MALLOC
1219
    if (!status)
1220
        pb_release(fields, dest_struct);
1221
#endif
1222
    
1223
14.8k
    return status;
1224
14.8k
}
1225
1226
bool checkreturn pb_decode(pb_istream_t *stream, const pb_msgdesc_t *fields, void *dest_struct)
1227
18.0k
{
1228
18.0k
    return pb_decode_ex(stream, fields, dest_struct, 0);
1229
18.0k
}
1230
1231
#ifdef PB_ENABLE_MALLOC
1232
/* Given an oneof field, if there has already been a field inside this oneof,
1233
 * release it before overwriting with a different one. */
1234
static bool pb_release_union_field(pb_istream_t *stream, pb_field_iter_t *field)
1235
111k
{
1236
111k
    pb_field_iter_t old_field = *field;
1237
111k
    pb_size_t old_tag = *(pb_size_t*)field->pSize; /* Previous which_ value */
1238
111k
    pb_size_t new_tag = field->tag; /* New which_ value */
1239
1240
111k
    if (old_tag == 0)
1241
4.94k
        return true; /* Ok, no old data in union */
1242
1243
107k
    if (old_tag == new_tag)
1244
48.2k
        return true; /* Ok, old data is of same type => merge */
1245
1246
    /* Release old data. The find can fail if the message struct contains
1247
     * invalid data. */
1248
58.7k
    if (!pb_field_iter_find(&old_field, old_tag))
1249
0
        PB_RETURN_ERROR(stream, "invalid union tag");
1250
1251
58.7k
    pb_release_single_field(&old_field);
1252
1253
58.7k
    if (PB_ATYPE(field->type) == PB_ATYPE_POINTER)
1254
30.6k
    {
1255
        /* Initialize the pointer to NULL to make sure it is valid
1256
         * even in case of error return. */
1257
30.6k
        *(void**)field->pField = NULL;
1258
30.6k
        field->pData = NULL;
1259
30.6k
    }
1260
1261
58.7k
    return true;
1262
58.7k
}
1263
1264
static void pb_release_single_field(pb_field_iter_t *field)
1265
10.2M
{
1266
10.2M
    pb_type_t type;
1267
10.2M
    type = field->type;
1268
1269
10.2M
    if (PB_HTYPE(type) == PB_HTYPE_ONEOF)
1270
226k
    {
1271
226k
        if (*(pb_size_t*)field->pSize != field->tag)
1272
128k
            return; /* This is not the current field in the union */
1273
226k
    }
1274
1275
    /* Release anything contained inside an extension or submsg.
1276
     * This has to be done even if the submsg itself is statically
1277
     * allocated. */
1278
10.0M
    if (PB_LTYPE(type) == PB_LTYPE_EXTENSION)
1279
35.4k
    {
1280
        /* Release fields from all extensions in the linked list */
1281
35.4k
        pb_extension_t *ext = *(pb_extension_t**)field->pData;
1282
47.5k
        while (ext != NULL)
1283
12.1k
        {
1284
12.1k
            pb_field_iter_t ext_iter;
1285
12.1k
            if (pb_field_iter_begin_extension(&ext_iter, ext))
1286
12.1k
            {
1287
12.1k
                pb_release_single_field(&ext_iter);
1288
12.1k
            }
1289
12.1k
            ext = ext->next;
1290
12.1k
        }
1291
35.4k
    }
1292
10.0M
    else if (PB_LTYPE_IS_SUBMSG(type) && PB_ATYPE(type) != PB_ATYPE_CALLBACK)
1293
507k
    {
1294
        /* Release fields in submessage or submsg array */
1295
507k
        pb_size_t count = 1;
1296
        
1297
507k
        if (PB_ATYPE(type) == PB_ATYPE_POINTER)
1298
314k
        {
1299
314k
            field->pData = *(void**)field->pField;
1300
314k
        }
1301
192k
        else
1302
192k
        {
1303
192k
            field->pData = field->pField;
1304
192k
        }
1305
        
1306
507k
        if (PB_HTYPE(type) == PB_HTYPE_REPEATED)
1307
71.8k
        {
1308
71.8k
            count = *(pb_size_t*)field->pSize;
1309
1310
71.8k
            if (PB_ATYPE(type) == PB_ATYPE_STATIC && count > field->array_size)
1311
77
            {
1312
                /* Protect against corrupted _count fields */
1313
77
                count = field->array_size;
1314
77
            }
1315
71.8k
        }
1316
        
1317
507k
        if (field->pData)
1318
348k
        {
1319
2.83M
            for (; count > 0; count--)
1320
2.48M
            {
1321
2.48M
                pb_release(field->submsg_desc, field->pData);
1322
2.48M
                field->pData = (char*)field->pData + field->data_size;
1323
2.48M
            }
1324
348k
        }
1325
507k
    }
1326
    
1327
10.0M
    if (PB_ATYPE(type) == PB_ATYPE_POINTER)
1328
8.29M
    {
1329
8.29M
        if (PB_HTYPE(type) == PB_HTYPE_REPEATED &&
1330
530k
            (PB_LTYPE(type) == PB_LTYPE_STRING ||
1331
504k
             PB_LTYPE(type) == PB_LTYPE_BYTES))
1332
52.2k
        {
1333
            /* Release entries in repeated string or bytes array */
1334
52.2k
            void **pItem = *(void***)field->pField;
1335
52.2k
            pb_size_t count = *(pb_size_t*)field->pSize;
1336
1.40M
            for (; count > 0; count--)
1337
1.35M
            {
1338
1.35M
                pb_free(*pItem);
1339
1.35M
                *pItem++ = NULL;
1340
1.35M
            }
1341
52.2k
        }
1342
        
1343
8.29M
        if (PB_HTYPE(type) == PB_HTYPE_REPEATED)
1344
530k
        {
1345
            /* We are going to release the array, so set the size to 0 */
1346
530k
            *(pb_size_t*)field->pSize = 0;
1347
530k
        }
1348
        
1349
        /* Release main pointer */
1350
8.29M
        pb_free(*(void**)field->pField);
1351
8.29M
        *(void**)field->pField = NULL;
1352
8.29M
    }
1353
10.0M
}
1354
1355
void pb_release(const pb_msgdesc_t *fields, void *dest_struct)
1356
2.52M
{
1357
2.52M
    pb_field_iter_t iter;
1358
    
1359
2.52M
    if (!dest_struct)
1360
0
        return; /* Ignore NULL pointers, similar to free() */
1361
1362
2.52M
    if (!pb_field_iter_begin(&iter, fields, dest_struct))
1363
180k
        return; /* Empty message type */
1364
    
1365
2.34M
    do
1366
10.0M
    {
1367
10.0M
        pb_release_single_field(&iter);
1368
10.0M
    } while (pb_field_iter_next(&iter));
1369
2.34M
}
1370
#else
1371
void pb_release(const pb_msgdesc_t *fields, void *dest_struct)
1372
12.2k
{
1373
    /* Nothing to release without PB_ENABLE_MALLOC. */
1374
12.2k
    PB_UNUSED(fields);
1375
12.2k
    PB_UNUSED(dest_struct);
1376
12.2k
}
1377
#endif
1378
1379
/* Field decoders */
1380
1381
bool pb_decode_bool(pb_istream_t *stream, bool *dest)
1382
8.29M
{
1383
8.29M
    uint32_t value;
1384
8.29M
    if (!pb_decode_varint32(stream, &value))
1385
429
        return false;
1386
1387
8.29M
    *(bool*)dest = (value != 0);
1388
8.29M
    return true;
1389
8.29M
}
1390
1391
bool pb_decode_svarint(pb_istream_t *stream, pb_int64_t *dest)
1392
6.23M
{
1393
6.23M
    pb_uint64_t value;
1394
6.23M
    if (!pb_decode_varint(stream, &value))
1395
467
        return false;
1396
    
1397
6.23M
    if (value & 1)
1398
804k
        *dest = (pb_int64_t)(~(value >> 1));
1399
5.42M
    else
1400
5.42M
        *dest = (pb_int64_t)(value >> 1);
1401
    
1402
6.23M
    return true;
1403
6.23M
}
1404
1405
bool pb_decode_fixed32(pb_istream_t *stream, void *dest)
1406
858k
{
1407
858k
    union {
1408
858k
        uint32_t fixed32;
1409
858k
        pb_byte_t bytes[4];
1410
858k
    } u;
1411
1412
858k
    if (!pb_read(stream, u.bytes, 4))
1413
281
        return false;
1414
1415
858k
#if defined(PB_LITTLE_ENDIAN_8BIT) && PB_LITTLE_ENDIAN_8BIT == 1
1416
    /* fast path - if we know that we're on little endian, assign directly */
1417
858k
    *(uint32_t*)dest = u.fixed32;
1418
#else
1419
    *(uint32_t*)dest = ((uint32_t)u.bytes[0] << 0) |
1420
                       ((uint32_t)u.bytes[1] << 8) |
1421
                       ((uint32_t)u.bytes[2] << 16) |
1422
                       ((uint32_t)u.bytes[3] << 24);
1423
#endif
1424
858k
    return true;
1425
858k
}
1426
1427
#ifndef PB_WITHOUT_64BIT
1428
bool pb_decode_fixed64(pb_istream_t *stream, void *dest)
1429
707k
{
1430
707k
    union {
1431
707k
        uint64_t fixed64;
1432
707k
        pb_byte_t bytes[8];
1433
707k
    } u;
1434
1435
707k
    if (!pb_read(stream, u.bytes, 8))
1436
375
        return false;
1437
1438
707k
#if defined(PB_LITTLE_ENDIAN_8BIT) && PB_LITTLE_ENDIAN_8BIT == 1
1439
    /* fast path - if we know that we're on little endian, assign directly */
1440
707k
    *(uint64_t*)dest = u.fixed64;
1441
#else
1442
    *(uint64_t*)dest = ((uint64_t)u.bytes[0] << 0) |
1443
                       ((uint64_t)u.bytes[1] << 8) |
1444
                       ((uint64_t)u.bytes[2] << 16) |
1445
                       ((uint64_t)u.bytes[3] << 24) |
1446
                       ((uint64_t)u.bytes[4] << 32) |
1447
                       ((uint64_t)u.bytes[5] << 40) |
1448
                       ((uint64_t)u.bytes[6] << 48) |
1449
                       ((uint64_t)u.bytes[7] << 56);
1450
#endif
1451
707k
    return true;
1452
707k
}
1453
#endif
1454
1455
static bool checkreturn pb_dec_bool(pb_istream_t *stream, const pb_field_iter_t *field)
1456
8.29M
{
1457
8.29M
    return pb_decode_bool(stream, (bool*)field->pData);
1458
8.29M
}
1459
1460
static bool checkreturn pb_dec_varint(pb_istream_t *stream, const pb_field_iter_t *field)
1461
35.2M
{
1462
35.2M
    if (PB_LTYPE(field->type) == PB_LTYPE_UVARINT)
1463
5.63M
    {
1464
5.63M
        pb_uint64_t value, clamped;
1465
5.63M
        if (!pb_decode_varint(stream, &value))
1466
528
            return false;
1467
1468
        /* Cast to the proper field size, while checking for overflows */
1469
5.63M
        if (field->data_size == sizeof(pb_uint64_t))
1470
3.38M
            clamped = *(pb_uint64_t*)field->pData = value;
1471
2.24M
        else if (field->data_size == sizeof(uint32_t))
1472
2.19M
            clamped = *(uint32_t*)field->pData = (uint32_t)value;
1473
49.5k
        else if (field->data_size == sizeof(uint_least16_t))
1474
24.5k
            clamped = *(uint_least16_t*)field->pData = (uint_least16_t)value;
1475
24.9k
        else if (field->data_size == sizeof(uint_least8_t))
1476
24.9k
            clamped = *(uint_least8_t*)field->pData = (uint_least8_t)value;
1477
0
        else
1478
0
            PB_RETURN_ERROR(stream, "invalid data_size");
1479
1480
5.63M
        if (clamped != value)
1481
689
            PB_RETURN_ERROR(stream, "integer too large");
1482
1483
5.62M
        return true;
1484
5.63M
    }
1485
29.5M
    else
1486
29.5M
    {
1487
29.5M
        pb_uint64_t value;
1488
29.5M
        pb_int64_t svalue;
1489
29.5M
        pb_int64_t clamped;
1490
1491
29.5M
        if (PB_LTYPE(field->type) == PB_LTYPE_SVARINT)
1492
6.23M
        {
1493
6.23M
            if (!pb_decode_svarint(stream, &svalue))
1494
467
                return false;
1495
6.23M
        }
1496
23.3M
        else
1497
23.3M
        {
1498
23.3M
            if (!pb_decode_varint(stream, &value))
1499
592
                return false;
1500
1501
            /* See issue 97: Google's C++ protobuf allows negative varint values to
1502
            * be cast as int32_t, instead of the int64_t that should be used when
1503
            * encoding. Nanopb versions before 0.2.5 had a bug in encoding. In order to
1504
            * not break decoding of such messages, we cast <=32 bit fields to
1505
            * int32_t first to get the sign correct.
1506
            */
1507
23.3M
            if (field->data_size == sizeof(pb_int64_t))
1508
3.08M
                svalue = (pb_int64_t)value;
1509
20.2M
            else
1510
20.2M
                svalue = (int32_t)value;
1511
23.3M
        }
1512
1513
        /* Cast to the proper field size, while checking for overflows */
1514
29.5M
        if (field->data_size == sizeof(pb_int64_t))
1515
8.65M
            clamped = *(pb_int64_t*)field->pData = svalue;
1516
20.9M
        else if (field->data_size == sizeof(int32_t))
1517
20.8M
            clamped = *(int32_t*)field->pData = (int32_t)svalue;
1518
97.4k
        else if (field->data_size == sizeof(int_least16_t))
1519
48.7k
            clamped = *(int_least16_t*)field->pData = (int_least16_t)svalue;
1520
48.6k
        else if (field->data_size == sizeof(int_least8_t))
1521
48.6k
            clamped = *(int_least8_t*)field->pData = (int_least8_t)svalue;
1522
0
        else
1523
0
            PB_RETURN_ERROR(stream, "invalid data_size");
1524
1525
29.5M
        if (clamped != svalue)
1526
550
            PB_RETURN_ERROR(stream, "integer too large");
1527
1528
29.5M
        return true;
1529
29.5M
    }
1530
35.2M
}
1531
1532
static bool checkreturn pb_dec_bytes(pb_istream_t *stream, const pb_field_iter_t *field)
1533
62.7k
{
1534
62.7k
    uint32_t size;
1535
62.7k
    size_t alloc_size;
1536
62.7k
    pb_bytes_array_t *dest;
1537
    
1538
62.7k
    if (!pb_decode_varint32(stream, &size))
1539
4
        return false;
1540
    
1541
62.7k
    if (size > PB_SIZE_MAX)
1542
60
        PB_RETURN_ERROR(stream, "bytes overflow");
1543
    
1544
62.6k
    alloc_size = PB_BYTES_ARRAY_T_ALLOCSIZE(size);
1545
62.6k
    if (size > alloc_size)
1546
0
        PB_RETURN_ERROR(stream, "size too large");
1547
    
1548
62.6k
    if (PB_ATYPE(field->type) == PB_ATYPE_POINTER)
1549
0
    {
1550
0
#ifndef PB_ENABLE_MALLOC
1551
0
        PB_RETURN_ERROR(stream, "no malloc support");
1552
#else
1553
        if (stream->bytes_left < size)
1554
            PB_RETURN_ERROR(stream, "end-of-stream");
1555
1556
        if (!allocate_field(stream, field->pData, alloc_size, 1))
1557
            return false;
1558
        dest = *(pb_bytes_array_t**)field->pData;
1559
#endif
1560
0
    }
1561
62.6k
    else
1562
62.6k
    {
1563
62.6k
        if (alloc_size > field->data_size)
1564
94
            PB_RETURN_ERROR(stream, "bytes overflow");
1565
62.5k
        dest = (pb_bytes_array_t*)field->pData;
1566
62.5k
    }
1567
1568
62.5k
    dest->size = (pb_size_t)size;
1569
62.5k
    return pb_read(stream, dest->bytes, (size_t)size);
1570
62.6k
}
1571
1572
static bool checkreturn pb_dec_string(pb_istream_t *stream, const pb_field_iter_t *field)
1573
205k
{
1574
205k
    uint32_t size;
1575
205k
    size_t alloc_size;
1576
205k
    pb_byte_t *dest = (pb_byte_t*)field->pData;
1577
1578
205k
    if (!pb_decode_varint32(stream, &size))
1579
7
        return false;
1580
1581
205k
    if (size == (uint32_t)-1)
1582
3
        PB_RETURN_ERROR(stream, "size too large");
1583
1584
    /* Space for null terminator */
1585
205k
    alloc_size = (size_t)(size + 1);
1586
1587
205k
    if (alloc_size < size)
1588
0
        PB_RETURN_ERROR(stream, "size too large");
1589
1590
205k
    if (PB_ATYPE(field->type) == PB_ATYPE_POINTER)
1591
0
    {
1592
0
#ifndef PB_ENABLE_MALLOC
1593
0
        PB_RETURN_ERROR(stream, "no malloc support");
1594
#else
1595
        if (stream->bytes_left < size)
1596
            PB_RETURN_ERROR(stream, "end-of-stream");
1597
1598
        if (!allocate_field(stream, field->pData, alloc_size, 1))
1599
            return false;
1600
        dest = *(pb_byte_t**)field->pData;
1601
#endif
1602
0
    }
1603
205k
    else
1604
205k
    {
1605
205k
        if (alloc_size > field->data_size)
1606
163
            PB_RETURN_ERROR(stream, "string overflow");
1607
205k
    }
1608
    
1609
205k
    dest[size] = 0;
1610
1611
205k
    if (!pb_read(stream, dest, (size_t)size))
1612
11
        return false;
1613
1614
#ifdef PB_VALIDATE_UTF8
1615
    if (!pb_validate_utf8((const char*)dest))
1616
        PB_RETURN_ERROR(stream, "invalid utf8");
1617
#endif
1618
1619
205k
    return true;
1620
205k
}
1621
1622
static bool checkreturn pb_dec_submessage(pb_istream_t *stream, const pb_field_iter_t *field)
1623
2.69M
{
1624
2.69M
    bool status = true;
1625
2.69M
    bool submsg_consumed = false;
1626
2.69M
    pb_istream_t substream;
1627
1628
2.69M
    if (!pb_make_string_substream(stream, &substream))
1629
1.84k
        return false;
1630
    
1631
2.68M
    if (field->submsg_desc == NULL)
1632
0
        PB_RETURN_ERROR(stream, "invalid field descriptor");
1633
    
1634
    /* Submessages can have a separate message-level callback that is called
1635
     * before decoding the message. Typically it is used to set callback fields
1636
     * inside oneofs. */
1637
2.68M
    if (PB_LTYPE(field->type) == PB_LTYPE_SUBMSG_W_CB && field->pSize != NULL)
1638
51.8k
    {
1639
        /* Message callback is stored right before pSize. */
1640
51.8k
        pb_callback_t *callback = (pb_callback_t*)field->pSize - 1;
1641
51.8k
        if (callback->funcs.decode)
1642
51.8k
        {
1643
51.8k
            status = callback->funcs.decode(&substream, field, &callback->arg);
1644
1645
51.8k
            if (substream.bytes_left == 0)
1646
30.0k
            {
1647
30.0k
                submsg_consumed = true;
1648
30.0k
            }
1649
51.8k
        }
1650
51.8k
    }
1651
1652
    /* Now decode the submessage contents */
1653
2.68M
    if (status && !submsg_consumed)
1654
2.65M
    {
1655
2.65M
        unsigned int flags = 0;
1656
1657
        /* Static required/optional fields are already initialized by top-level
1658
         * pb_decode(), no need to initialize them again. */
1659
2.65M
        if (PB_ATYPE(field->type) == PB_ATYPE_STATIC &&
1660
350k
            PB_HTYPE(field->type) != PB_HTYPE_REPEATED)
1661
339k
        {
1662
339k
            flags = PB_DECODE_NOINIT;
1663
339k
        }
1664
1665
2.65M
        status = pb_decode_inner(&substream, field->submsg_desc, field->pData, flags);
1666
2.65M
    }
1667
    
1668
2.68M
    if (!pb_close_string_substream(stream, &substream))
1669
824
        return false;
1670
1671
2.68M
    return status;
1672
2.68M
}
1673
1674
static bool checkreturn pb_dec_fixed_length_bytes(pb_istream_t *stream, const pb_field_iter_t *field)
1675
45.1M
{
1676
45.1M
    uint32_t size;
1677
1678
45.1M
    if (!pb_decode_varint32(stream, &size))
1679
30
        return false;
1680
1681
45.1M
    if (size > PB_SIZE_MAX)
1682
226
        PB_RETURN_ERROR(stream, "bytes overflow");
1683
1684
45.1M
    if (size == 0)
1685
43.1M
    {
1686
        /* As a special case, treat empty bytes string as all zeros for fixed_length_bytes. */
1687
43.1M
        memset(field->pData, 0, (size_t)field->data_size);
1688
43.1M
        return true;
1689
43.1M
    }
1690
1691
1.99M
    if (size != field->data_size)
1692
327
        PB_RETURN_ERROR(stream, "incorrect fixed length bytes size");
1693
1694
1.99M
    return pb_read(stream, (pb_byte_t*)field->pData, (size_t)field->data_size);
1695
1.99M
}
1696
1697
#ifdef PB_CONVERT_DOUBLE_FLOAT
1698
bool pb_decode_double_as_float(pb_istream_t *stream, float *dest)
1699
{
1700
    uint_least8_t sign;
1701
    int exponent;
1702
    uint32_t mantissa;
1703
    uint64_t value;
1704
    union { float f; uint32_t i; } out;
1705
1706
    if (!pb_decode_fixed64(stream, &value))
1707
        return false;
1708
1709
    /* Decompose input value */
1710
    sign = (uint_least8_t)((value >> 63) & 1);
1711
    exponent = (int)((value >> 52) & 0x7FF) - 1023;
1712
    mantissa = (value >> 28) & 0xFFFFFF; /* Highest 24 bits */
1713
1714
    /* Figure if value is in range representable by floats. */
1715
    if (exponent == 1024)
1716
    {
1717
        /* Special value */
1718
        exponent = 128;
1719
        mantissa >>= 1;
1720
    }
1721
    else
1722
    {
1723
        if (exponent > 127)
1724
        {
1725
            /* Too large, convert to infinity */
1726
            exponent = 128;
1727
            mantissa = 0;
1728
        }
1729
        else if (exponent < -150)
1730
        {
1731
            /* Too small, convert to zero */
1732
            exponent = -127;
1733
            mantissa = 0;
1734
        }
1735
        else if (exponent < -126)
1736
        {
1737
            /* Denormalized */
1738
            mantissa |= 0x1000000;
1739
            mantissa >>= (-126 - exponent);
1740
            exponent = -127;
1741
        }
1742
1743
        /* Round off mantissa */
1744
        mantissa = (mantissa + 1) >> 1;
1745
1746
        /* Check if mantissa went over 2.0 */
1747
        if (mantissa & 0x800000)
1748
        {
1749
            exponent += 1;
1750
            mantissa &= 0x7FFFFF;
1751
            mantissa >>= 1;
1752
        }
1753
    }
1754
1755
    /* Combine fields */
1756
    out.i = mantissa;
1757
    out.i |= (uint32_t)(exponent + 127) << 23;
1758
    out.i |= (uint32_t)sign << 31;
1759
1760
    *dest = out.f;
1761
    return true;
1762
}
1763
#endif