Coverage Report

Created: 2025-12-14 06:59

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/yara/libyara/object.c
Line
Count
Source
1
/*
2
Copyright (c) 2014. The YARA Authors. All Rights Reserved.
3
4
Redistribution and use in source and binary forms, with or without modification,
5
are permitted provided that the following conditions are met:
6
7
1. Redistributions of source code must retain the above copyright notice, this
8
list of conditions and the following disclaimer.
9
10
2. Redistributions in binary form must reproduce the above copyright notice,
11
this list of conditions and the following disclaimer in the documentation and/or
12
other materials provided with the distribution.
13
14
3. Neither the name of the copyright holder nor the names of its contributors
15
may be used to endorse or promote products derived from this software without
16
specific prior written permission.
17
18
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
19
ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
20
WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
21
DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR
22
ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
23
(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
24
LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
25
ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26
(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
27
SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28
*/
29
30
#include <assert.h>
31
#include <ctype.h>
32
#include <math.h>
33
#include <stdarg.h>
34
#include <stdio.h>
35
#include <stdlib.h>
36
#include <string.h>
37
#include <yara/error.h>
38
#include <yara/exec.h>
39
#include <yara/globals.h>
40
#include <yara/mem.h>
41
#include <yara/object.h>
42
#include <yara/strutils.h>
43
#include <yara/utils.h>
44
45
////////////////////////////////////////////////////////////////////////////////
46
// Creates a new object with the given type and identifier. If a parent is
47
// specified the new object is owned by the parent and it will be destroyed when
48
// the parent is destroyed. You must not call yr_object_destroy on an objected
49
// that has a parent, you should destroy the parent instead.
50
//
51
int yr_object_create(
52
    int8_t type,
53
    const char* identifier,
54
    YR_OBJECT* parent,
55
    YR_OBJECT** object)
56
42.3M
{
57
42.3M
  YR_OBJECT* obj;
58
42.3M
  size_t object_size = 0;
59
60
42.3M
  assert(parent != NULL || object != NULL);
61
42.3M
  assert(identifier != NULL);
62
63
42.3M
  switch (type)
64
42.3M
  {
65
8.73M
  case OBJECT_TYPE_STRUCTURE:
66
8.73M
    object_size = sizeof(YR_OBJECT_STRUCTURE);
67
8.73M
    break;
68
135k
  case OBJECT_TYPE_ARRAY:
69
135k
    object_size = sizeof(YR_OBJECT_ARRAY);
70
135k
    break;
71
8.52k
  case OBJECT_TYPE_DICTIONARY:
72
8.52k
    object_size = sizeof(YR_OBJECT_DICTIONARY);
73
8.52k
    break;
74
22.7M
  case OBJECT_TYPE_INTEGER:
75
22.7M
    object_size = sizeof(YR_OBJECT);
76
22.7M
    break;
77
0
  case OBJECT_TYPE_FLOAT:
78
0
    object_size = sizeof(YR_OBJECT);
79
0
    break;
80
10.6M
  case OBJECT_TYPE_STRING:
81
10.6M
    object_size = sizeof(YR_OBJECT);
82
10.6M
    break;
83
127k
  case OBJECT_TYPE_FUNCTION:
84
127k
    object_size = sizeof(YR_OBJECT_FUNCTION);
85
127k
    break;
86
0
  default:
87
0
    assert(false);
88
42.3M
  }
89
90
42.3M
  obj = (YR_OBJECT*) yr_malloc(object_size);
91
92
42.3M
  if (obj == NULL)
93
0
    return ERROR_INSUFFICIENT_MEMORY;
94
95
42.3M
  obj->type = type;
96
42.3M
  obj->identifier = yr_strdup(identifier);
97
42.3M
  obj->parent = parent;
98
42.3M
  obj->data = NULL;
99
100
42.3M
  switch (type)
101
42.3M
  {
102
22.7M
  case OBJECT_TYPE_INTEGER:
103
22.7M
    obj->value.i = YR_UNDEFINED;
104
22.7M
    break;
105
0
  case OBJECT_TYPE_FLOAT:
106
0
    obj->value.d = NAN;
107
0
    break;
108
10.6M
  case OBJECT_TYPE_STRING:
109
10.6M
    obj->value.ss = NULL;
110
10.6M
    break;
111
8.73M
  case OBJECT_TYPE_STRUCTURE:
112
8.73M
    object_as_structure(obj)->members = NULL;
113
8.73M
    break;
114
135k
  case OBJECT_TYPE_ARRAY:
115
135k
    object_as_array(obj)->items = NULL;
116
135k
    object_as_array(obj)->prototype_item = NULL;
117
135k
    break;
118
8.52k
  case OBJECT_TYPE_DICTIONARY:
119
8.52k
    object_as_dictionary(obj)->items = NULL;
120
8.52k
    object_as_dictionary(obj)->prototype_item = NULL;
121
8.52k
    break;
122
127k
  case OBJECT_TYPE_FUNCTION:
123
127k
    object_as_function(obj)->return_obj = NULL;
124
1.40M
    for (int i = 0; i < YR_MAX_OVERLOADED_FUNCTIONS; i++)
125
1.27M
    {
126
1.27M
      object_as_function(obj)->prototypes[i].arguments_fmt = NULL;
127
1.27M
      object_as_function(obj)->prototypes[i].code = NULL;
128
1.27M
    }
129
127k
    break;
130
42.3M
  }
131
132
42.3M
  if (obj->identifier == NULL)
133
0
  {
134
0
    yr_free(obj);
135
0
    return ERROR_INSUFFICIENT_MEMORY;
136
0
  }
137
138
42.3M
  if (parent != NULL)
139
2.78M
  {
140
2.78M
    assert(
141
2.78M
        parent->type == OBJECT_TYPE_STRUCTURE ||
142
2.78M
        parent->type == OBJECT_TYPE_ARRAY ||
143
2.78M
        parent->type == OBJECT_TYPE_DICTIONARY ||
144
2.78M
        parent->type == OBJECT_TYPE_FUNCTION);
145
146
    // Objects with a parent take the canary from it.
147
2.78M
    obj->canary = parent->canary;
148
149
2.78M
    switch (parent->type)
150
2.78M
    {
151
2.57M
    case OBJECT_TYPE_STRUCTURE:
152
2.57M
      FAIL_ON_ERROR_WITH_CLEANUP(yr_object_structure_set_member(parent, obj), {
153
2.57M
        yr_free((void*) obj->identifier);
154
2.57M
        yr_free(obj);
155
2.57M
      });
156
2.57M
      break;
157
158
76.7k
    case OBJECT_TYPE_ARRAY:
159
76.7k
      object_as_array(parent)->prototype_item = obj;
160
76.7k
      break;
161
162
8.52k
    case OBJECT_TYPE_DICTIONARY:
163
8.52k
      object_as_dictionary(parent)->prototype_item = obj;
164
8.52k
      break;
165
166
127k
    case OBJECT_TYPE_FUNCTION:
167
127k
      object_as_function(parent)->return_obj = obj;
168
127k
      break;
169
2.78M
    }
170
2.78M
  }
171
172
42.3M
  if (object != NULL)
173
40.0M
    *object = obj;
174
175
42.3M
  return ERROR_SUCCESS;
176
42.3M
}
177
178
void yr_object_set_canary(YR_OBJECT* object, int canary)
179
8.52k
{
180
8.52k
  object->canary = canary;
181
8.52k
}
182
183
int yr_object_function_create(
184
    const char* identifier,
185
    const char* arguments_fmt,
186
    const char* return_fmt,
187
    YR_MODULE_FUNC code,
188
    YR_OBJECT* parent,
189
    YR_OBJECT** function)
190
264k
{
191
264k
  YR_OBJECT* return_obj;
192
264k
  YR_OBJECT* o = NULL;
193
264k
  YR_OBJECT_FUNCTION* f = NULL;
194
195
264k
  int8_t return_type;
196
197
  // The parent of a function must be a structure.
198
264k
  assert(parent != NULL && parent->type == OBJECT_TYPE_STRUCTURE);
199
200
264k
  switch (*return_fmt)
201
264k
  {
202
264k
  case 'i':
203
264k
    return_type = OBJECT_TYPE_INTEGER;
204
264k
    break;
205
0
  case 's':
206
0
    return_type = OBJECT_TYPE_STRING;
207
0
    break;
208
0
  case 'f':
209
0
    return_type = OBJECT_TYPE_FLOAT;
210
0
    break;
211
0
  default:
212
0
    return ERROR_INVALID_FORMAT;
213
264k
  }
214
215
  // Try to find if the structure already has a function
216
  // with that name. In that case this is a function overload.
217
264k
  f = object_as_function(yr_object_lookup_field(parent, identifier));
218
219
  // Overloaded functions must have the same return type.
220
264k
  if (f != NULL && return_type != f->return_obj->type)
221
0
    return ERROR_WRONG_RETURN_TYPE;
222
223
264k
  if (f == NULL)  // Function doesn't exist yet
224
127k
  {
225
127k
    FAIL_ON_ERROR(
226
127k
        yr_object_create(OBJECT_TYPE_FUNCTION, identifier, parent, &o));
227
228
    // In case of failure while creating return_obj we don't need to free the
229
    // previously created "o" object, as it is already associated with its
230
    // parent and will be destroyed when the parent is destroyed.
231
127k
    FAIL_ON_ERROR(yr_object_create(return_type, "result", o, &return_obj));
232
233
127k
    f = object_as_function(o);
234
127k
  }
235
236
597k
  for (int i = 0; i < YR_MAX_OVERLOADED_FUNCTIONS; i++)
237
597k
  {
238
597k
    if (f->prototypes[i].arguments_fmt == NULL)
239
264k
    {
240
264k
      f->prototypes[i].arguments_fmt = arguments_fmt;
241
264k
      f->prototypes[i].code = code;
242
243
264k
      break;
244
264k
    }
245
597k
  }
246
247
264k
  if (function != NULL)
248
264k
    *function = (YR_OBJECT*) f;
249
250
264k
  return ERROR_SUCCESS;
251
264k
}
252
253
int yr_object_from_external_variable(
254
    YR_EXTERNAL_VARIABLE* external,
255
    YR_OBJECT** object)
256
0
{
257
0
  YR_OBJECT* obj;
258
0
  int result;
259
0
  uint8_t obj_type = 0;
260
261
0
  switch (external->type)
262
0
  {
263
0
  case EXTERNAL_VARIABLE_TYPE_INTEGER:
264
0
  case EXTERNAL_VARIABLE_TYPE_BOOLEAN:
265
0
    obj_type = OBJECT_TYPE_INTEGER;
266
0
    break;
267
268
0
  case EXTERNAL_VARIABLE_TYPE_FLOAT:
269
0
    obj_type = OBJECT_TYPE_FLOAT;
270
0
    break;
271
272
0
  case EXTERNAL_VARIABLE_TYPE_STRING:
273
0
  case EXTERNAL_VARIABLE_TYPE_MALLOC_STRING:
274
0
    obj_type = OBJECT_TYPE_STRING;
275
0
    break;
276
277
0
  default:
278
0
    assert(false);
279
0
  }
280
281
0
  result = yr_object_create(obj_type, external->identifier, NULL, &obj);
282
283
0
  if (result == ERROR_SUCCESS)
284
0
  {
285
0
    switch (external->type)
286
0
    {
287
0
    case EXTERNAL_VARIABLE_TYPE_INTEGER:
288
0
    case EXTERNAL_VARIABLE_TYPE_BOOLEAN:
289
0
      result = yr_object_set_integer(external->value.i, obj, NULL);
290
0
      break;
291
292
0
    case EXTERNAL_VARIABLE_TYPE_FLOAT:
293
0
      result = yr_object_set_float(external->value.f, obj, NULL);
294
0
      break;
295
296
0
    case EXTERNAL_VARIABLE_TYPE_STRING:
297
0
    case EXTERNAL_VARIABLE_TYPE_MALLOC_STRING:
298
0
      result = yr_object_set_string(
299
0
          external->value.s, strlen(external->value.s), obj, NULL);
300
0
      break;
301
0
    }
302
303
0
    if (result == ERROR_SUCCESS)
304
0
    {
305
0
      *object = obj;
306
0
    }
307
0
    else
308
0
    {
309
0
      yr_object_destroy(obj);
310
0
    }
311
0
  }
312
313
0
  return result;
314
0
}
315
316
////////////////////////////////////////////////////////////////////////////////
317
// Destroy an objects, and any other object that is a child of it. For example,
318
// destroying a struct will destroy all its members.
319
//
320
void yr_object_destroy(YR_OBJECT* object)
321
42.3M
{
322
42.3M
  YR_STRUCTURE_MEMBER* member;
323
42.3M
  YR_STRUCTURE_MEMBER* next_member;
324
42.3M
  YR_ARRAY_ITEMS* array_items;
325
42.3M
  YR_DICTIONARY_ITEMS* dict_items;
326
327
42.3M
  if (object == NULL)
328
0
    return;
329
330
42.3M
  switch (object->type)
331
42.3M
  {
332
8.73M
  case OBJECT_TYPE_STRUCTURE:
333
8.73M
    member = object_as_structure(object)->members;
334
335
42.2M
    while (member != NULL)
336
33.5M
    {
337
33.5M
      next_member = member->next;
338
33.5M
      yr_object_destroy(member->object);
339
33.5M
      yr_free(member);
340
33.5M
      member = next_member;
341
33.5M
    }
342
8.73M
    break;
343
344
10.6M
  case OBJECT_TYPE_STRING:
345
10.6M
    if (object->value.ss != NULL)
346
8.05M
      yr_free(object->value.ss);
347
10.6M
    break;
348
349
135k
  case OBJECT_TYPE_ARRAY:
350
135k
    if (object_as_array(object)->prototype_item != NULL)
351
135k
      yr_object_destroy(object_as_array(object)->prototype_item);
352
353
135k
    array_items = object_as_array(object)->items;
354
355
135k
    if (array_items != NULL)
356
71.8k
    {
357
8.60M
      for (int i = 0; i < array_items->length; i++)
358
8.53M
        if (array_items->objects[i] != NULL)
359
8.53M
          yr_object_destroy(array_items->objects[i]);
360
71.8k
    }
361
362
135k
    yr_free(array_items);
363
135k
    break;
364
365
8.52k
  case OBJECT_TYPE_DICTIONARY:
366
8.52k
    if (object_as_dictionary(object)->prototype_item != NULL)
367
8.52k
      yr_object_destroy(object_as_dictionary(object)->prototype_item);
368
369
8.52k
    dict_items = object_as_dictionary(object)->items;
370
371
8.52k
    if (dict_items != NULL)
372
228
    {
373
1.85k
      for (int i = 0; i < dict_items->used; i++)
374
1.63k
      {
375
1.63k
        if (dict_items->objects[i].key != NULL)
376
1.63k
          yr_free(dict_items->objects[i].key);
377
378
1.63k
        if (dict_items->objects[i].obj != NULL)
379
1.63k
          yr_object_destroy(dict_items->objects[i].obj);
380
1.63k
      }
381
228
    }
382
383
8.52k
    yr_free(dict_items);
384
8.52k
    break;
385
386
127k
  case OBJECT_TYPE_FUNCTION:
387
127k
    yr_object_destroy(object_as_function(object)->return_obj);
388
127k
    break;
389
42.3M
  }
390
391
42.3M
  yr_free((void*) object->identifier);
392
42.3M
  yr_free(object);
393
42.3M
}
394
395
YR_OBJECT* yr_object_lookup_field(YR_OBJECT* object, const char* field_name)
396
111M
{
397
111M
  YR_STRUCTURE_MEMBER* member;
398
399
111M
  assert(object != NULL);
400
111M
  assert(object->type == OBJECT_TYPE_STRUCTURE);
401
402
111M
  member = object_as_structure(object)->members;
403
404
928M
  while (member != NULL)
405
894M
  {
406
894M
    if (strcmp(member->object->identifier, field_name) == 0)
407
78.2M
      return member->object;
408
409
816M
    member = member->next;
410
816M
  }
411
412
33.6M
  return NULL;
413
111M
}
414
415
static YR_OBJECT* _yr_object_lookup(
416
    YR_OBJECT* object,
417
    int flags,
418
    const char* pattern,
419
    va_list args)
420
29.3M
{
421
29.3M
  YR_OBJECT* obj = object;
422
423
29.3M
  const char* p = pattern;
424
29.3M
  const char* key = NULL;
425
426
29.3M
  char str[256];
427
428
29.3M
  int i;
429
29.3M
  int index = -1;
430
431
78.0M
  while (obj != NULL)
432
78.0M
  {
433
78.0M
    i = 0;
434
435
947M
    while (*p != '\0' && *p != '.' && *p != '[' && i < sizeof(str) - 1)
436
869M
    {
437
869M
      str[i++] = *p++;
438
869M
    }
439
440
78.0M
    str[i] = '\0';
441
442
78.0M
    if (obj->type != OBJECT_TYPE_STRUCTURE)
443
0
      return NULL;
444
445
78.0M
    obj = yr_object_lookup_field(obj, str);
446
447
78.0M
    if (obj == NULL)
448
0
      return NULL;
449
450
78.0M
    if (*p == '[')
451
48.7M
    {
452
48.7M
      p++;
453
454
48.7M
      if (*p == '%')
455
48.7M
      {
456
48.7M
        p++;
457
458
48.7M
        switch (*p++)
459
48.7M
        {
460
48.6M
        case 'i':
461
48.6M
          index = va_arg(args, int);
462
48.6M
          break;
463
4.02k
        case 's':
464
4.02k
          key = va_arg(args, const char*);
465
4.02k
          break;
466
467
0
        default:
468
0
          return NULL;
469
48.7M
        }
470
48.7M
      }
471
0
      else if (*p >= '0' && *p <= '9')
472
0
      {
473
0
        index = (int) strtol(p, (char**) &p, 10);
474
0
      }
475
0
      else if (*p == '"')
476
0
      {
477
0
        i = 0;
478
0
        p++;  // skip the opening quotation mark
479
480
0
        while (*p != '"' && *p != '\0' && i < sizeof(str) - 1) str[i++] = *p++;
481
482
0
        str[i] = '\0';
483
0
        p++;  // skip the closing quotation mark
484
0
        key = str;
485
0
      }
486
0
      else
487
0
      {
488
0
        return NULL;
489
0
      }
490
491
48.7M
      assert(*p == ']');
492
48.7M
      p++;
493
48.7M
      assert(*p == '.' || *p == '\0');
494
495
48.7M
      switch (obj->type)
496
48.7M
      {
497
48.6M
      case OBJECT_TYPE_ARRAY:
498
48.6M
        assert(index != -1);
499
48.6M
        obj = yr_object_array_get_item(obj, flags, index);
500
48.6M
        break;
501
502
4.02k
      case OBJECT_TYPE_DICTIONARY:
503
4.02k
        assert(key != NULL);
504
4.02k
        obj = yr_object_dict_get_item(obj, flags, key);
505
4.02k
        break;
506
48.7M
      }
507
48.7M
    }
508
509
78.0M
    if (*p == '\0')
510
29.3M
      break;
511
512
48.7M
    p++;
513
48.7M
  }
514
515
29.3M
  return obj;
516
29.3M
}
517
518
YR_OBJECT* yr_object_lookup(
519
    YR_OBJECT* object,
520
    int flags,
521
    const char* pattern,
522
    ...)
523
0
{
524
0
  YR_OBJECT* result;
525
526
0
  va_list args;
527
0
  va_start(args, pattern);
528
529
0
  result = _yr_object_lookup(object, flags, pattern, args);
530
531
0
  va_end(args);
532
533
0
  return result;
534
0
}
535
536
int yr_object_copy(YR_OBJECT* object, YR_OBJECT** object_copy)
537
39.5M
{
538
39.5M
  YR_OBJECT* copy;
539
39.5M
  YR_OBJECT* o;
540
541
39.5M
  YR_STRUCTURE_MEMBER* structure_member;
542
543
39.5M
  *object_copy = NULL;
544
545
39.5M
  FAIL_ON_ERROR(
546
39.5M
      yr_object_create(object->type, object->identifier, NULL, &copy));
547
548
39.5M
  copy->canary = object->canary;
549
550
39.5M
  switch (object->type)
551
39.5M
  {
552
20.4M
  case OBJECT_TYPE_INTEGER:
553
20.4M
    copy->value.i = object->value.i;
554
20.4M
    break;
555
556
0
  case OBJECT_TYPE_FLOAT:
557
0
    copy->value.d = object->value.d;
558
0
    break;
559
560
10.4M
  case OBJECT_TYPE_STRING:
561
562
10.4M
    if (object->value.ss != NULL)
563
0
      copy->value.ss = ss_dup(object->value.ss);
564
10.4M
    else
565
10.4M
      copy->value.ss = NULL;
566
567
10.4M
    break;
568
569
0
  case OBJECT_TYPE_FUNCTION:
570
571
0
    FAIL_ON_ERROR_WITH_CLEANUP(
572
0
        yr_object_copy(
573
0
            object_as_function(object)->return_obj,
574
0
            &object_as_function(copy)->return_obj),
575
        // cleanup
576
0
        yr_object_destroy(copy));
577
578
0
    for (int i = 0; i < YR_MAX_OVERLOADED_FUNCTIONS; i++)
579
0
      object_as_function(copy)->prototypes[i] =
580
0
          object_as_function(object)->prototypes[i];
581
582
0
    break;
583
584
8.59M
  case OBJECT_TYPE_STRUCTURE:
585
586
8.59M
    structure_member = object_as_structure(object)->members;
587
588
39.5M
    while (structure_member != NULL)
589
30.9M
    {
590
30.9M
      FAIL_ON_ERROR_WITH_CLEANUP(
591
30.9M
          yr_object_copy(structure_member->object, &o),
592
30.9M
          yr_object_destroy(copy));
593
594
30.9M
      FAIL_ON_ERROR_WITH_CLEANUP(yr_object_structure_set_member(copy, o),
595
                                 // cleanup
596
30.9M
                                 yr_free(o);
597
30.9M
                                 yr_object_destroy(copy));
598
599
30.9M
      structure_member = structure_member->next;
600
30.9M
    }
601
602
8.59M
    break;
603
604
8.59M
  case OBJECT_TYPE_ARRAY:
605
606
58.9k
    FAIL_ON_ERROR_WITH_CLEANUP(
607
58.9k
        yr_object_copy(object_as_array(object)->prototype_item, &o),
608
58.9k
        yr_object_destroy(copy));
609
610
58.9k
    object_as_array(copy)->prototype_item = o;
611
612
58.9k
    break;
613
614
0
  case OBJECT_TYPE_DICTIONARY:
615
616
0
    FAIL_ON_ERROR_WITH_CLEANUP(
617
0
        yr_object_copy(object_as_dictionary(object)->prototype_item, &o),
618
0
        yr_object_destroy(copy));
619
620
0
    object_as_dictionary(copy)->prototype_item = o;
621
622
0
    break;
623
624
0
  default:
625
0
    assert(false);
626
39.5M
  }
627
628
39.5M
  *object_copy = copy;
629
630
39.5M
  return ERROR_SUCCESS;
631
39.5M
}
632
633
int yr_object_structure_set_member(YR_OBJECT* object, YR_OBJECT* member)
634
33.5M
{
635
33.5M
  YR_STRUCTURE_MEMBER* sm;
636
637
33.5M
  assert(object->type == OBJECT_TYPE_STRUCTURE);
638
639
  // Check if the object already have a member with the same identifier
640
641
33.5M
  if (yr_object_lookup_field(object, member->identifier) != NULL)
642
0
    return ERROR_DUPLICATED_STRUCTURE_MEMBER;
643
644
33.5M
  sm = (YR_STRUCTURE_MEMBER*) yr_malloc(sizeof(YR_STRUCTURE_MEMBER));
645
646
33.5M
  if (sm == NULL)
647
0
    return ERROR_INSUFFICIENT_MEMORY;
648
649
33.5M
  member->parent = object;
650
33.5M
  sm->object = member;
651
33.5M
  sm->next = object_as_structure(object)->members;
652
653
33.5M
  object_as_structure(object)->members = sm;
654
655
33.5M
  return ERROR_SUCCESS;
656
33.5M
}
657
658
YR_API int yr_object_array_length(YR_OBJECT* object)
659
0
{
660
0
  YR_OBJECT_ARRAY* array;
661
662
0
  assert(object->type == OBJECT_TYPE_ARRAY);
663
0
  array = object_as_array(object);
664
665
0
  if (array->items == NULL)
666
0
    return 0;
667
668
0
  return array->items->length;
669
0
}
670
671
YR_API YR_OBJECT* yr_object_array_get_item(YR_OBJECT* object, int flags,
672
                                           int index)
673
48.7M
{
674
48.7M
  YR_OBJECT* result = NULL;
675
48.7M
  YR_OBJECT_ARRAY* array;
676
677
48.7M
  assert(object->type == OBJECT_TYPE_ARRAY);
678
679
48.7M
  if (index < 0)
680
0
    return NULL;
681
682
48.7M
  array = object_as_array(object);
683
684
48.7M
  if (array->items != NULL && array->items->capacity > index)
685
48.6M
    result = array->items->objects[index];
686
687
48.7M
  if (result == NULL && flags & OBJECT_CREATE)
688
8.53M
  {
689
8.53M
    yr_object_copy(array->prototype_item, &result);
690
691
8.53M
    if (result != NULL)
692
8.53M
      yr_object_array_set_item(object, result, index);
693
8.53M
  }
694
695
48.7M
  return result;
696
48.7M
}
697
698
int yr_object_array_set_item(YR_OBJECT* object, YR_OBJECT* item, int index)
699
8.53M
{
700
8.53M
  YR_OBJECT_ARRAY* array;
701
702
8.53M
  int capacity;
703
704
8.53M
  assert(index >= 0);
705
8.53M
  assert(object->type == OBJECT_TYPE_ARRAY);
706
707
8.53M
  array = object_as_array(object);
708
709
8.53M
  if (array->items == NULL)
710
71.8k
  {
711
71.8k
    capacity = 64;
712
713
71.8k
    while (capacity <= index) capacity *= 2;
714
715
71.8k
    array->items = (YR_ARRAY_ITEMS*) yr_malloc(
716
71.8k
        sizeof(YR_ARRAY_ITEMS) + capacity * sizeof(YR_OBJECT*));
717
718
71.8k
    if (array->items == NULL)
719
0
      return ERROR_INSUFFICIENT_MEMORY;
720
721
71.8k
    memset(array->items->objects, 0, capacity * sizeof(YR_OBJECT*));
722
723
71.8k
    array->items->capacity = capacity;
724
71.8k
    array->items->length = 0;
725
71.8k
  }
726
8.46M
  else if (index >= array->items->capacity)
727
18.2k
  {
728
18.2k
    capacity = array->items->capacity * 2;
729
730
18.2k
    while (capacity <= index) capacity *= 2;
731
732
18.2k
    array->items = (YR_ARRAY_ITEMS*) yr_realloc(
733
18.2k
        array->items, sizeof(YR_ARRAY_ITEMS) + capacity * sizeof(YR_OBJECT*));
734
735
18.2k
    if (array->items == NULL)
736
0
      return ERROR_INSUFFICIENT_MEMORY;
737
738
11.2M
    for (int i = array->items->capacity; i < capacity; i++)
739
11.2M
      array->items->objects[i] = NULL;
740
741
18.2k
    array->items->capacity = capacity;
742
18.2k
  }
743
744
8.53M
  item->parent = object;
745
8.53M
  array->items->objects[index] = item;
746
747
8.53M
  if (index >= array->items->length)
748
8.53M
    array->items->length = index + 1;
749
750
8.53M
  return ERROR_SUCCESS;
751
8.53M
}
752
753
YR_OBJECT* yr_object_dict_get_item(
754
    YR_OBJECT* object,
755
    int flags,
756
    const char* key)
757
4.02k
{
758
4.02k
  YR_OBJECT* result = NULL;
759
4.02k
  YR_OBJECT_DICTIONARY* dict;
760
761
4.02k
  assert(object->type == OBJECT_TYPE_DICTIONARY);
762
763
4.02k
  dict = object_as_dictionary(object);
764
765
4.02k
  if (dict->items != NULL)
766
3.79k
  {
767
40.2k
    for (int i = 0; i < dict->items->used; i++)
768
36.4k
    {
769
36.4k
      if (strcmp(dict->items->objects[i].key->c_string, key) == 0)
770
2.39k
        result = dict->items->objects[i].obj;
771
36.4k
    }
772
3.79k
  }
773
774
4.02k
  if (result == NULL && flags & OBJECT_CREATE)
775
1.63k
  {
776
1.63k
    yr_object_copy(dict->prototype_item, &result);
777
778
1.63k
    if (result != NULL)
779
1.63k
      yr_object_dict_set_item(object, result, key);
780
1.63k
  }
781
782
4.02k
  return result;
783
4.02k
}
784
785
int yr_object_dict_set_item(YR_OBJECT* object, YR_OBJECT* item, const char* key)
786
1.63k
{
787
1.63k
  YR_OBJECT_DICTIONARY* dict;
788
789
1.63k
  int count;
790
791
1.63k
  assert(object->type == OBJECT_TYPE_DICTIONARY);
792
793
1.63k
  dict = object_as_dictionary(object);
794
795
1.63k
  if (dict->items == NULL)
796
228
  {
797
228
    count = 64;
798
799
228
    dict->items = (YR_DICTIONARY_ITEMS*) yr_malloc(
800
228
        sizeof(YR_DICTIONARY_ITEMS) + count * sizeof(dict->items->objects[0]));
801
802
228
    if (dict->items == NULL)
803
0
      return ERROR_INSUFFICIENT_MEMORY;
804
805
228
    memset(dict->items->objects, 0, count * sizeof(dict->items->objects[0]));
806
807
228
    dict->items->free = count;
808
228
    dict->items->used = 0;
809
228
  }
810
1.40k
  else if (dict->items->free == 0)
811
3
  {
812
3
    count = dict->items->used * 2;
813
3
    dict->items = (YR_DICTIONARY_ITEMS*) yr_realloc(
814
3
        dict->items,
815
3
        sizeof(YR_DICTIONARY_ITEMS) + count * sizeof(dict->items->objects[0]));
816
817
3
    if (dict->items == NULL)
818
0
      return ERROR_INSUFFICIENT_MEMORY;
819
820
259
    for (int i = dict->items->used; i < count; i++)
821
256
    {
822
256
      dict->items->objects[i].key = NULL;
823
256
      dict->items->objects[i].obj = NULL;
824
256
    }
825
826
3
    dict->items->free = dict->items->used;
827
3
  }
828
829
1.63k
  item->parent = object;
830
831
1.63k
  dict->items->objects[dict->items->used].key = ss_new(key);
832
1.63k
  dict->items->objects[dict->items->used].obj = item;
833
834
1.63k
  dict->items->used++;
835
1.63k
  dict->items->free--;
836
837
1.63k
  return ERROR_SUCCESS;
838
1.63k
}
839
840
bool yr_object_has_undefined_value(YR_OBJECT* object, const char* field, ...)
841
0
{
842
0
  YR_OBJECT* field_obj;
843
844
0
  va_list args;
845
0
  va_start(args, field);
846
847
0
  if (field != NULL)
848
0
    field_obj = _yr_object_lookup(object, 0, field, args);
849
0
  else
850
0
    field_obj = object;
851
852
0
  va_end(args);
853
854
0
  if (field_obj == NULL)
855
0
    return true;
856
857
0
  switch (field_obj->type)
858
0
  {
859
0
  case OBJECT_TYPE_FLOAT:
860
0
    return yr_isnan(field_obj->value.d);
861
0
  case OBJECT_TYPE_STRING:
862
0
    return field_obj->value.ss == NULL;
863
0
  case OBJECT_TYPE_INTEGER:
864
0
    return field_obj->value.i == YR_UNDEFINED;
865
0
  }
866
867
0
  return false;
868
0
}
869
870
int64_t yr_object_get_integer(YR_OBJECT* object, const char* field, ...)
871
0
{
872
0
  YR_OBJECT* integer_obj;
873
874
0
  va_list args;
875
0
  va_start(args, field);
876
877
0
  if (field != NULL)
878
0
    integer_obj = _yr_object_lookup(object, 0, field, args);
879
0
  else
880
0
    integer_obj = object;
881
882
0
  va_end(args);
883
884
0
  if (integer_obj == NULL)
885
0
    return YR_UNDEFINED;
886
887
0
  assertf(
888
0
      integer_obj->type == OBJECT_TYPE_INTEGER,
889
0
      "type of \"%s\" is not integer\n",
890
0
      field);
891
892
0
  return integer_obj->value.i;
893
0
}
894
895
double yr_object_get_float(YR_OBJECT* object, const char* field, ...)
896
0
{
897
0
  YR_OBJECT* double_obj;
898
899
0
  va_list args;
900
0
  va_start(args, field);
901
902
0
  if (field != NULL)
903
0
    double_obj = _yr_object_lookup(object, 0, field, args);
904
0
  else
905
0
    double_obj = object;
906
907
0
  va_end(args);
908
909
0
  if (double_obj == NULL)
910
0
    return NAN;
911
912
0
  assertf(
913
0
      double_obj->type == OBJECT_TYPE_FLOAT,
914
0
      "type of \"%s\" is not double\n",
915
0
      field);
916
917
0
  return double_obj->value.d;
918
0
}
919
920
SIZED_STRING* yr_object_get_string(YR_OBJECT* object, const char* field, ...)
921
0
{
922
0
  YR_OBJECT* string_obj;
923
924
0
  va_list args;
925
0
  va_start(args, field);
926
927
0
  if (field != NULL)
928
0
    string_obj = _yr_object_lookup(object, 0, field, args);
929
0
  else
930
0
    string_obj = object;
931
932
0
  va_end(args);
933
934
0
  if (string_obj == NULL)
935
0
    return NULL;
936
937
0
  assertf(
938
0
      string_obj->type == OBJECT_TYPE_STRING,
939
0
      "type of \"%s\" is not string\n",
940
0
      field);
941
942
0
  return string_obj->value.ss;
943
0
}
944
945
int yr_object_set_integer(
946
    int64_t value,
947
    YR_OBJECT* object,
948
    const char* field,
949
    ...)
950
21.2M
{
951
21.2M
  YR_OBJECT* integer_obj;
952
953
21.2M
  va_list args;
954
21.2M
  va_start(args, field);
955
956
21.2M
  if (field != NULL)
957
21.2M
    integer_obj = _yr_object_lookup(object, OBJECT_CREATE, field, args);
958
2.09k
  else
959
2.09k
    integer_obj = object;
960
961
21.2M
  va_end(args);
962
963
21.2M
  if (integer_obj == NULL)
964
0
  {
965
0
    if (field != NULL)
966
0
      return ERROR_INSUFFICIENT_MEMORY;
967
0
    else
968
0
      return ERROR_INVALID_ARGUMENT;
969
0
  }
970
971
21.2M
  assert(integer_obj->type == OBJECT_TYPE_INTEGER);
972
973
21.2M
  integer_obj->value.i = value;
974
975
21.2M
  return ERROR_SUCCESS;
976
21.2M
}
977
978
int yr_object_set_float(double value, YR_OBJECT* object, const char* field, ...)
979
0
{
980
0
  YR_OBJECT* double_obj;
981
982
0
  va_list args;
983
0
  va_start(args, field);
984
985
0
  if (field != NULL)
986
0
    double_obj = _yr_object_lookup(object, OBJECT_CREATE, field, args);
987
0
  else
988
0
    double_obj = object;
989
990
0
  va_end(args);
991
992
0
  if (double_obj == NULL)
993
0
  {
994
0
    if (field != NULL)
995
0
      return ERROR_INSUFFICIENT_MEMORY;
996
0
    else
997
0
      return ERROR_INVALID_ARGUMENT;
998
0
  }
999
1000
0
  assert(double_obj->type == OBJECT_TYPE_FLOAT);
1001
1002
0
  double_obj->value.d = value;
1003
1004
0
  return ERROR_SUCCESS;
1005
0
}
1006
1007
int yr_object_set_string(
1008
    const char* value,
1009
    size_t len,
1010
    YR_OBJECT* object,
1011
    const char* field,
1012
    ...)
1013
8.06M
{
1014
8.06M
  YR_OBJECT* string_obj;
1015
1016
8.06M
  va_list args;
1017
8.06M
  va_start(args, field);
1018
1019
8.06M
  if (field != NULL)
1020
8.06M
    string_obj = _yr_object_lookup(object, OBJECT_CREATE, field, args);
1021
0
  else
1022
0
    string_obj = object;
1023
1024
8.06M
  va_end(args);
1025
1026
8.06M
  if (string_obj == NULL)
1027
0
  {
1028
0
    if (field != NULL)
1029
0
      return ERROR_INSUFFICIENT_MEMORY;
1030
0
    else
1031
0
      return ERROR_INVALID_ARGUMENT;
1032
0
  }
1033
1034
8.06M
  assert(string_obj->type == OBJECT_TYPE_STRING);
1035
1036
8.06M
  if (string_obj->value.ss != NULL)
1037
2.39k
    yr_free(string_obj->value.ss);
1038
1039
8.06M
  if (value != NULL)
1040
8.06M
  {
1041
8.06M
    string_obj->value.ss = (SIZED_STRING*) yr_malloc(
1042
8.06M
        len + sizeof(SIZED_STRING));
1043
1044
8.06M
    if (string_obj->value.ss == NULL)
1045
0
      return ERROR_INSUFFICIENT_MEMORY;
1046
1047
8.06M
    string_obj->value.ss->length = (uint32_t) len;
1048
8.06M
    string_obj->value.ss->flags = 0;
1049
1050
8.06M
    memcpy(string_obj->value.ss->c_string, value, len);
1051
8.06M
    string_obj->value.ss->c_string[len] = '\0';
1052
8.06M
  }
1053
469
  else
1054
469
  {
1055
469
    string_obj->value.ss = NULL;
1056
469
  }
1057
1058
8.06M
  return ERROR_SUCCESS;
1059
8.06M
}
1060
1061
YR_OBJECT* yr_object_get_root(YR_OBJECT* object)
1062
2.09k
{
1063
2.09k
  YR_OBJECT* o = object;
1064
1065
4.19k
  while (o->parent != NULL) o = o->parent;
1066
1067
2.09k
  return o;
1068
2.09k
}
1069
1070
YR_API void yr_object_print_data(
1071
    YR_OBJECT* object,
1072
    int indent,
1073
    int print_identifier)
1074
0
{
1075
0
  YR_DICTIONARY_ITEMS* dict_items;
1076
0
  YR_STRUCTURE_MEMBER* member;
1077
1078
0
  char indent_spaces[32];
1079
1080
0
  indent = yr_min(indent, sizeof(indent_spaces) - 1);
1081
1082
0
  memset(indent_spaces, '\t', indent);
1083
0
  indent_spaces[indent] = '\0';
1084
1085
0
  if (print_identifier && object->type != OBJECT_TYPE_FUNCTION)
1086
0
    printf("%s%s", indent_spaces, object->identifier);
1087
1088
0
  switch (object->type)
1089
0
  {
1090
0
  case OBJECT_TYPE_FLOAT:
1091
0
    if (object->value.i != YR_UNDEFINED)
1092
0
      printf(" = %f", object->value.d);
1093
0
    else
1094
0
      printf(" = YR_UNDEFINED");
1095
1096
0
    break;
1097
1098
0
  case OBJECT_TYPE_INTEGER:
1099
1100
0
    if (object->value.i != YR_UNDEFINED)
1101
0
      printf(" = %" PRId64, object->value.i);
1102
0
    else
1103
0
      printf(" = YR_UNDEFINED");
1104
1105
0
    break;
1106
1107
0
  case OBJECT_TYPE_STRING:
1108
1109
0
    if (object->value.ss != NULL)
1110
0
    {
1111
0
      printf(" = \"");
1112
1113
0
      for (size_t l = 0; l < object->value.ss->length; l++)
1114
0
      {
1115
0
        char c = object->value.ss->c_string[l];
1116
1117
0
        if (isprint((unsigned char) c))
1118
0
          printf("%c", c);
1119
0
        else
1120
0
          printf("\\x%02x", (unsigned char) c);
1121
0
      }
1122
1123
0
      printf("\"");
1124
0
    }
1125
0
    else
1126
0
    {
1127
0
      printf(" = YR_UNDEFINED");
1128
0
    }
1129
1130
0
    break;
1131
1132
0
  case OBJECT_TYPE_STRUCTURE:
1133
1134
0
    member = object_as_structure(object)->members;
1135
1136
0
    while (member != NULL)
1137
0
    {
1138
0
      if (member->object->type != OBJECT_TYPE_FUNCTION)
1139
0
      {
1140
0
        printf("\n");
1141
0
        yr_object_print_data(member->object, indent + 1, 1);
1142
0
      }
1143
0
      member = member->next;
1144
0
    }
1145
1146
0
    break;
1147
1148
0
  case OBJECT_TYPE_ARRAY:
1149
0
    for (int i = 0; i < yr_object_array_length(object); i++)
1150
0
    {
1151
0
      YR_OBJECT* o = yr_object_array_get_item(object, 0, i);
1152
1153
0
      if (o != NULL)
1154
0
      {
1155
0
        printf("\n%s\t[%d]", indent_spaces, i);
1156
0
        yr_object_print_data(o, indent + 1, 0);
1157
0
      }
1158
0
    }
1159
0
    break;
1160
1161
0
  case OBJECT_TYPE_DICTIONARY:
1162
1163
0
    dict_items = object_as_dictionary(object)->items;
1164
1165
0
    if (dict_items != NULL)
1166
0
    {
1167
0
      for (int i = 0; i < dict_items->used; i++)
1168
0
      {
1169
0
        printf("\n%s\t%s", indent_spaces, dict_items->objects[i].key->c_string);
1170
1171
0
        yr_object_print_data(dict_items->objects[i].obj, indent + 1, 0);
1172
0
      }
1173
0
    }
1174
1175
0
    break;
1176
0
  }
1177
0
}