Coverage Report

Created: 2025-12-23 06:05

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/yara/libyara/modules/macho/macho.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 <yara/endian.h>
31
#include <yara/macho.h>
32
#include <yara/mem.h>
33
#include <yara/modules.h>
34
35
#define MODULE_NAME macho
36
37
// Check for Mach-O binary magic constant.
38
int is_macho_file_block(const uint32_t* magic)
39
4.18k
{
40
4.18k
  return *magic == MH_MAGIC || *magic == MH_CIGAM || *magic == MH_MAGIC_64 ||
41
3.09k
         *magic == MH_CIGAM_64;
42
4.18k
}
43
44
// Check if file is for 32-bit architecture.
45
int macho_is_32(uint32_t magic)
46
21.4k
{
47
21.4k
  return magic == MH_MAGIC || magic == MH_CIGAM;
48
21.4k
}
49
50
// Check for Mach-O fat binary magic constant.
51
int is_fat_macho_file_block(const uint32_t* magic)
52
3.04k
{
53
3.04k
  return *magic == FAT_MAGIC || *magic == FAT_CIGAM || *magic == FAT_MAGIC_64 ||
54
1.87k
         *magic == FAT_CIGAM_64;
55
3.04k
}
56
57
// Check if file is 32-bit fat file.
58
int macho_fat_is_32(const uint32_t* magic)
59
258k
{
60
258k
  return yr_be32toh(*magic) == FAT_MAGIC;
61
258k
}
62
63
static int should_swap_bytes(const uint32_t magic)
64
745k
{
65
// In big-endian platforms byte swapping is needed for little-endian files
66
// but in little-endian platforms the files that need swapping are the
67
// the big-endian ones.
68
#if defined(WORDS_BIGENDIAN)
69
  return magic == MH_CIGAM || magic == MH_CIGAM_64 || magic == FAT_CIGAM ||
70
         magic == FAT_CIGAM_64;
71
#else
72
745k
  return magic == MH_MAGIC || magic == MH_MAGIC_64 || magic == FAT_MAGIC ||
73
331k
         magic == FAT_MAGIC_64;
74
745k
#endif
75
745k
}
76
77
static void swap_mach_header(yr_mach_header_64_t* mh)
78
4.06k
{
79
  // Don't swap the magic number so we can tell if swapping is needed
80
4.06k
  mh->cputype = yr_bswap32(mh->cputype);
81
4.06k
  mh->cpusubtype = yr_bswap32(mh->cpusubtype);
82
4.06k
  mh->filetype = yr_bswap32(mh->filetype);
83
4.06k
  mh->ncmds = yr_bswap32(mh->ncmds);
84
4.06k
  mh->sizeofcmds = yr_bswap32(mh->sizeofcmds);
85
4.06k
  mh->flags = yr_bswap32(mh->flags);
86
87
4.06k
  if (!macho_is_32(mh->magic))
88
2.56k
    mh->reserved = yr_bswap32(mh->reserved);
89
4.06k
}
90
91
static void swap_load_command(yr_load_command_t* lc)
92
850k
{
93
850k
  lc->cmd = yr_bswap32(lc->cmd);
94
850k
  lc->cmdsize = yr_bswap32(lc->cmdsize);
95
850k
}
96
97
static void swap_segment_command(yr_segment_command_32_t* sg)
98
28.3k
{
99
28.3k
  sg->cmd = yr_bswap32(sg->cmd);
100
28.3k
  sg->cmdsize = yr_bswap32(sg->cmdsize);
101
28.3k
  sg->vmaddr = yr_bswap32(sg->vmaddr);
102
28.3k
  sg->vmsize = yr_bswap32(sg->vmsize);
103
28.3k
  sg->fileoff = yr_bswap32(sg->fileoff);
104
28.3k
  sg->filesize = yr_bswap32(sg->filesize);
105
28.3k
  sg->maxprot = yr_bswap32(sg->maxprot);
106
28.3k
  sg->initprot = yr_bswap32(sg->initprot);
107
28.3k
  sg->nsects = yr_bswap32(sg->nsects);
108
28.3k
  sg->flags = yr_bswap32(sg->flags);
109
28.3k
}
110
111
static void swap_segment_command_64(yr_segment_command_64_t* sg)
112
372k
{
113
372k
  sg->cmd = yr_bswap32(sg->cmd);
114
372k
  sg->cmdsize = yr_bswap32(sg->cmdsize);
115
372k
  sg->vmaddr = yr_bswap64(sg->vmaddr);
116
372k
  sg->vmsize = yr_bswap64(sg->vmsize);
117
372k
  sg->fileoff = yr_bswap64(sg->fileoff);
118
372k
  sg->filesize = yr_bswap64(sg->filesize);
119
372k
  sg->maxprot = yr_bswap32(sg->maxprot);
120
372k
  sg->initprot = yr_bswap32(sg->initprot);
121
372k
  sg->nsects = yr_bswap32(sg->nsects);
122
372k
  sg->flags = yr_bswap32(sg->flags);
123
372k
}
124
125
static void swap_section(yr_section_32_t* sec)
126
10.3k
{
127
10.3k
  sec->addr = yr_bswap32(sec->addr);
128
10.3k
  sec->size = yr_bswap32(sec->size);
129
10.3k
  sec->offset = yr_bswap32(sec->offset);
130
10.3k
  sec->align = yr_bswap32(sec->align);
131
10.3k
  sec->reloff = yr_bswap32(sec->reloff);
132
10.3k
  sec->nreloc = yr_bswap32(sec->nreloc);
133
10.3k
  sec->flags = yr_bswap32(sec->flags);
134
10.3k
  sec->reserved1 = yr_bswap32(sec->reserved1);
135
10.3k
  sec->reserved2 = yr_bswap32(sec->reserved2);
136
10.3k
}
137
138
static void swap_section_64(yr_section_64_t* sec)
139
14.3k
{
140
14.3k
  sec->addr = yr_bswap64(sec->addr);
141
14.3k
  sec->size = yr_bswap64(sec->size);
142
14.3k
  sec->offset = yr_bswap32(sec->offset);
143
14.3k
  sec->align = yr_bswap32(sec->align);
144
14.3k
  sec->reloff = yr_bswap32(sec->reloff);
145
14.3k
  sec->nreloc = yr_bswap32(sec->nreloc);
146
14.3k
  sec->flags = yr_bswap32(sec->flags);
147
14.3k
  sec->reserved1 = yr_bswap32(sec->reserved1);
148
14.3k
  sec->reserved2 = yr_bswap32(sec->reserved2);
149
14.3k
  sec->reserved3 = yr_bswap32(sec->reserved3);
150
14.3k
}
151
152
static void swap_entry_point_command(yr_entry_point_command_t* ep_command)
153
1.67k
{
154
1.67k
  ep_command->cmd = yr_bswap32(ep_command->cmd);
155
1.67k
  ep_command->cmdsize = yr_bswap32(ep_command->cmdsize);
156
1.67k
  ep_command->entryoff = yr_bswap64(ep_command->entryoff);
157
1.67k
  ep_command->stacksize = yr_bswap64(ep_command->stacksize);
158
1.67k
}
159
160
// Convert virtual address to file offset. Segments have to be already loaded.
161
162
bool macho_rva_to_offset(uint64_t address, uint64_t* result, YR_OBJECT* object)
163
4.92k
{
164
4.92k
  uint64_t segment_count = yr_get_integer(object, "number_of_segments");
165
166
1.63M
  for (int i = 0; i < segment_count; i++)
167
1.63M
  {
168
1.63M
    uint64_t start = yr_get_integer(object, "segments[%i].vmaddr", i);
169
1.63M
    uint64_t end = start + yr_get_integer(object, "segments[%i].vmsize", i);
170
171
1.63M
    if (address >= start && address < end)
172
1.47k
    {
173
1.47k
      uint64_t fileoff = yr_get_integer(object, "segments[%i].fileoff", i);
174
1.47k
      *result = fileoff + (address - start);
175
1.47k
      return true;
176
1.47k
    }
177
1.63M
  }
178
179
3.45k
  return false;
180
4.92k
}
181
182
// Convert file offset to virtual address. Segments have to be already loaded.
183
184
int macho_offset_to_rva(uint64_t offset, uint64_t* result, YR_OBJECT* object)
185
0
{
186
0
  uint64_t segment_count = yr_get_integer(object, "number_of_segments");
187
188
0
  for (int i = 0; i < segment_count; i++)
189
0
  {
190
0
    uint64_t start = yr_get_integer(object, "segments[%i].fileoff", i);
191
0
    uint64_t end = start + yr_get_integer(object, "segments[%i].fsize", i);
192
193
0
    if (offset >= start && offset < end)
194
0
    {
195
0
      uint64_t vmaddr = yr_get_integer(object, "segments[%i].vmaddr", i);
196
0
      *result = vmaddr + (offset - start);
197
0
      return true;
198
0
    }
199
0
  }
200
201
0
  return false;
202
0
}
203
204
// Get entry point address from LC_UNIXTHREAD load command.
205
void macho_handle_unixthread(
206
    const uint8_t* data,
207
    size_t size,
208
    uint64_t base_address,
209
    YR_OBJECT* object,
210
    YR_SCAN_CONTEXT* context)
211
10.7k
{
212
10.7k
  int should_swap = should_swap_bytes(yr_get_integer(object, "magic"));
213
10.7k
  bool is64 = false;
214
215
10.7k
  if (size < sizeof(yr_thread_command_t))
216
361
    return;
217
218
  // command_size is the size indicated in yr_thread_command_t structure, but
219
  // limited to the data's size because we can't rely on the structure having
220
  // a valid size.
221
10.3k
  uint32_t command_size = yr_min(size, ((yr_thread_command_t*) data)->cmdsize);
222
223
  // command_size should be at least the size of yr_thread_command_t.
224
10.3k
  if (command_size < sizeof(yr_thread_command_t))
225
1.59k
    return;
226
227
  // command_size includes the size of yr_thread_command_t and the thread
228
  // state structure that follows, let's compute the size of the thread state
229
  // structure.
230
8.79k
  size_t thread_state_size = command_size - sizeof(yr_thread_command_t);
231
232
  // The structure that contains the thread state starts where
233
  // yr_thread_command_t ends.
234
8.79k
  const void* thread_state = data + sizeof(yr_thread_command_t);
235
236
8.79k
  uint64_t address = 0;
237
238
8.79k
  switch (yr_get_integer(object, "cputype"))
239
8.79k
  {
240
957
  case CPU_TYPE_MC680X0:
241
957
  {
242
957
    if (thread_state_size < sizeof(yr_m68k_thread_state_t))
243
377
      return;
244
580
    address = ((yr_m68k_thread_state_t*) thread_state)->pc;
245
580
    break;
246
957
  }
247
752
  case CPU_TYPE_MC88000:
248
752
  {
249
752
    if (thread_state_size < sizeof(yr_m88k_thread_state_t))
250
396
      return;
251
356
    address = ((yr_m88k_thread_state_t*) thread_state)->xip;
252
356
    break;
253
752
  }
254
763
  case CPU_TYPE_SPARC:
255
763
  {
256
763
    if (thread_state_size < sizeof(yr_sparc_thread_state_t))
257
257
      return;
258
506
    address = ((yr_sparc_thread_state_t*) thread_state)->pc;
259
506
    break;
260
763
  }
261
943
  case CPU_TYPE_POWERPC:
262
943
  {
263
943
    if (thread_state_size < sizeof(yr_ppc_thread_state_t))
264
464
      return;
265
479
    address = ((yr_ppc_thread_state_t*) thread_state)->srr0;
266
479
    break;
267
943
  }
268
1.47k
  case CPU_TYPE_X86:
269
1.47k
  {
270
1.47k
    if (thread_state_size < sizeof(yr_x86_thread_state_t))
271
397
      return;
272
1.07k
    address = ((yr_x86_thread_state_t*) thread_state)->eip;
273
1.07k
    break;
274
1.47k
  }
275
1.46k
  case CPU_TYPE_ARM:
276
1.46k
  {
277
1.46k
    if (thread_state_size < sizeof(yr_arm_thread_state_t))
278
389
      return;
279
1.07k
    address = ((yr_arm_thread_state_t*) thread_state)->pc;
280
1.07k
    break;
281
1.46k
  }
282
755
  case CPU_TYPE_X86_64:
283
755
  {
284
755
    if (thread_state_size < sizeof(yr_x86_thread_state64_t))
285
424
      return;
286
331
    address = ((yr_x86_thread_state64_t*) thread_state)->rip;
287
331
    is64 = true;
288
331
    break;
289
755
  }
290
516
  case CPU_TYPE_ARM64:
291
516
  {
292
516
    if (thread_state_size < sizeof(yr_arm_thread_state64_t))
293
251
      return;
294
265
    address = ((yr_arm_thread_state64_t*) thread_state)->pc;
295
265
    is64 = true;
296
265
    break;
297
516
  }
298
606
  case CPU_TYPE_POWERPC64:
299
606
  {
300
606
    if (thread_state_size < sizeof(yr_ppc_thread_state64_t))
301
341
      return;
302
265
    address = ((yr_ppc_thread_state64_t*) thread_state)->srr0;
303
265
    is64 = true;
304
265
    break;
305
606
  }
306
307
575
  default:
308
575
    return;
309
8.79k
  }
310
311
4.92k
  if (should_swap)
312
4.71k
  {
313
4.71k
    if (is64)
314
829
      address = yr_bswap64(address);
315
3.88k
    else
316
3.88k
      address = yr_bswap32(address);
317
4.71k
  }
318
319
4.92k
  if (context->flags & SCAN_FLAGS_PROCESS_MEMORY)
320
0
  {
321
0
    yr_set_integer(base_address + address, object, "entry_point");
322
0
  }
323
4.92k
  else
324
4.92k
  {
325
4.92k
    uint64_t offset = 0;
326
4.92k
    if (macho_rva_to_offset(address, &offset, object))
327
1.47k
    {
328
1.47k
      yr_set_integer(offset, object, "entry_point");
329
1.47k
    }
330
4.92k
  }
331
4.92k
}
332
333
// Get entry point offset and stack-size from LC_MAIN load command.
334
335
void macho_handle_main(
336
    void* data,
337
    size_t size,
338
    YR_OBJECT* object,
339
    YR_SCAN_CONTEXT* context)
340
2.33k
{
341
2.33k
  yr_entry_point_command_t ep_command;
342
343
2.33k
  if (size < sizeof(yr_entry_point_command_t))
344
302
    return;
345
346
2.02k
  memcpy(&ep_command, data, sizeof(yr_entry_point_command_t));
347
348
2.02k
  if (should_swap_bytes(yr_get_integer(object, "magic")))
349
1.67k
    swap_entry_point_command(&ep_command);
350
351
2.02k
  if (context->flags & SCAN_FLAGS_PROCESS_MEMORY)
352
0
  {
353
0
    uint64_t address = 0;
354
0
    if (macho_offset_to_rva(ep_command.entryoff, &address, object))
355
0
    {
356
0
      yr_set_integer(address, object, "entry_point");
357
0
    }
358
0
  }
359
2.02k
  else
360
2.02k
  {
361
2.02k
    yr_set_integer(ep_command.entryoff, object, "entry_point");
362
2.02k
  }
363
2.02k
  yr_set_integer(ep_command.stacksize, object, "stack_size");
364
2.02k
}
365
366
// Load segment and its sections.
367
368
void macho_handle_segment(
369
    const uint8_t* data,
370
    size_t size,
371
    const unsigned i,
372
    YR_OBJECT* object)
373
29.8k
{
374
29.8k
  if (size < sizeof(yr_segment_command_32_t))
375
775
    return;
376
377
29.0k
  yr_segment_command_32_t sg;
378
379
29.0k
  memcpy(&sg, data, sizeof(yr_segment_command_32_t));
380
381
29.0k
  int should_swap = should_swap_bytes(yr_get_integer(object, "magic"));
382
383
29.0k
  if (should_swap)
384
28.3k
    swap_segment_command(&sg);
385
386
29.0k
  yr_set_sized_string(
387
29.0k
      sg.segname, strnlen(sg.segname, 16), object, "segments[%i].segname", i);
388
389
29.0k
  yr_set_integer(sg.vmaddr, object, "segments[%i].vmaddr", i);
390
29.0k
  yr_set_integer(sg.vmsize, object, "segments[%i].vmsize", i);
391
29.0k
  yr_set_integer(sg.fileoff, object, "segments[%i].fileoff", i);
392
29.0k
  yr_set_integer(sg.filesize, object, "segments[%i].fsize", i);
393
29.0k
  yr_set_integer(sg.maxprot, object, "segments[%i].maxprot", i);
394
29.0k
  yr_set_integer(sg.initprot, object, "segments[%i].initprot", i);
395
29.0k
  yr_set_integer(sg.nsects, object, "segments[%i].nsects", i);
396
29.0k
  yr_set_integer(sg.flags, object, "segments[%i].flags", i);
397
398
29.0k
  uint64_t parsed_size = sizeof(yr_segment_command_32_t);
399
400
  // The array of yr_section_32_t starts where yr_segment_command_32_t ends.
401
29.0k
  yr_section_32_t* sections =
402
29.0k
      (yr_section_32_t*) (data + sizeof(yr_segment_command_32_t));
403
404
39.7k
  for (unsigned j = 0; j < sg.nsects; ++j)
405
38.8k
  {
406
38.8k
    yr_section_32_t sec;
407
408
38.8k
    parsed_size += sizeof(yr_section_32_t);
409
410
38.8k
    if (sg.cmdsize < parsed_size)
411
28.1k
      break;
412
413
10.6k
    memcpy(&sec, &sections[j], sizeof(yr_section_32_t));
414
415
10.6k
    if (should_swap)
416
10.3k
      swap_section(&sec);
417
418
10.6k
    yr_set_sized_string(
419
10.6k
        sec.segname,
420
10.6k
        strnlen(sec.segname, 16),
421
10.6k
        object,
422
10.6k
        "segments[%i].sections[%i].segname",
423
10.6k
        i,
424
10.6k
        j);
425
426
10.6k
    yr_set_sized_string(
427
10.6k
        sec.sectname,
428
10.6k
        strnlen(sec.sectname, 16),
429
10.6k
        object,
430
10.6k
        "segments[%i].sections[%i].sectname",
431
10.6k
        i,
432
10.6k
        j);
433
434
10.6k
    yr_set_integer(sec.addr, object, "segments[%i].sections[%i].addr", i, j);
435
436
10.6k
    yr_set_integer(sec.size, object, "segments[%i].sections[%i].size", i, j);
437
438
10.6k
    yr_set_integer(
439
10.6k
        sec.offset, object, "segments[%i].sections[%i].offset", i, j);
440
441
10.6k
    yr_set_integer(sec.align, object, "segments[%i].sections[%i].align", i, j);
442
443
10.6k
    yr_set_integer(
444
10.6k
        sec.reloff, object, "segments[%i].sections[%i].reloff", i, j);
445
446
10.6k
    yr_set_integer(
447
10.6k
        sec.nreloc, object, "segments[%i].sections[%i].nreloc", i, j);
448
449
10.6k
    yr_set_integer(sec.flags, object, "segments[%i].sections[%i].flags", i, j);
450
451
10.6k
    yr_set_integer(
452
10.6k
        sec.reserved1, object, "segments[%i].sections[%i].reserved1", i, j);
453
454
10.6k
    yr_set_integer(
455
10.6k
        sec.reserved2, object, "segments[%i].sections[%i].reserved2", i, j);
456
10.6k
  }
457
29.0k
}
458
459
void macho_handle_segment_64(
460
    const uint8_t* data,
461
    size_t size,
462
    const unsigned i,
463
    YR_OBJECT* object)
464
692k
{
465
692k
  if (size < sizeof(yr_segment_command_64_t))
466
5.88k
    return;
467
468
686k
  yr_segment_command_64_t sg;
469
470
686k
  memcpy(&sg, data, sizeof(yr_segment_command_64_t));
471
472
686k
  int should_swap = should_swap_bytes(yr_get_integer(object, "magic"));
473
474
686k
  if (should_swap)
475
372k
    swap_segment_command_64(&sg);
476
477
686k
  yr_set_sized_string(
478
686k
      sg.segname, strnlen(sg.segname, 16), object, "segments[%i].segname", i);
479
480
686k
  yr_set_integer(sg.vmaddr, object, "segments[%i].vmaddr", i);
481
686k
  yr_set_integer(sg.vmsize, object, "segments[%i].vmsize", i);
482
686k
  yr_set_integer(sg.fileoff, object, "segments[%i].fileoff", i);
483
686k
  yr_set_integer(sg.filesize, object, "segments[%i].fsize", i);
484
686k
  yr_set_integer(sg.maxprot, object, "segments[%i].maxprot", i);
485
686k
  yr_set_integer(sg.initprot, object, "segments[%i].initprot", i);
486
686k
  yr_set_integer(sg.nsects, object, "segments[%i].nsects", i);
487
686k
  yr_set_integer(sg.flags, object, "segments[%i].flags", i);
488
489
686k
  uint64_t parsed_size = sizeof(yr_segment_command_64_t);
490
491
686k
  yr_section_64_t sec;
492
493
701k
  for (unsigned j = 0; j < sg.nsects; ++j)
494
700k
  {
495
700k
    parsed_size += sizeof(yr_section_64_t);
496
497
700k
    if (sg.cmdsize < parsed_size)
498
685k
      break;
499
500
14.7k
    memcpy(
501
14.7k
        &sec,
502
14.7k
        data + sizeof(yr_segment_command_64_t) + (j * sizeof(yr_section_64_t)),
503
14.7k
        sizeof(yr_section_64_t));
504
505
14.7k
    if (should_swap)
506
14.3k
      swap_section_64(&sec);
507
508
14.7k
    yr_set_sized_string(
509
14.7k
        sec.segname,
510
14.7k
        strnlen(sec.segname, 16),
511
14.7k
        object,
512
14.7k
        "segments[%i].sections[%i].segname",
513
14.7k
        i,
514
14.7k
        j);
515
516
14.7k
    yr_set_sized_string(
517
14.7k
        sec.sectname,
518
14.7k
        strnlen(sec.sectname, 16),
519
14.7k
        object,
520
14.7k
        "segments[%i].sections[%i].sectname",
521
14.7k
        i,
522
14.7k
        j);
523
524
14.7k
    yr_set_integer(sec.addr, object, "segments[%i].sections[%i].addr", i, j);
525
526
14.7k
    yr_set_integer(sec.size, object, "segments[%i].sections[%i].size", i, j);
527
528
14.7k
    yr_set_integer(
529
14.7k
        sec.offset, object, "segments[%i].sections[%i].offset", i, j);
530
531
14.7k
    yr_set_integer(sec.align, object, "segments[%i].sections[%i].align", i, j);
532
533
14.7k
    yr_set_integer(
534
14.7k
        sec.reloff, object, "segments[%i].sections[%i].reloff", i, j);
535
536
14.7k
    yr_set_integer(
537
14.7k
        sec.nreloc, object, "segments[%i].sections[%i].nreloc", i, j);
538
539
14.7k
    yr_set_integer(sec.flags, object, "segments[%i].sections[%i].flags", i, j);
540
541
14.7k
    yr_set_integer(
542
14.7k
        sec.reserved1, object, "segments[%i].sections[%i].reserved1", i, j);
543
544
14.7k
    yr_set_integer(
545
14.7k
        sec.reserved2, object, "segments[%i].sections[%i].reserved2", i, j);
546
547
14.7k
    yr_set_integer(
548
14.7k
        sec.reserved3, object, "segments[%i].sections[%i].reserved3", i, j);
549
14.7k
  }
550
686k
}
551
552
// Parse Mach-O file.
553
554
void macho_parse_file(
555
    const uint8_t* data,
556
    const uint64_t size,
557
    const uint64_t base_address,
558
    YR_OBJECT* object,
559
    YR_SCAN_CONTEXT* context)
560
116k
{
561
  // Size must be large enough the hold yr_mach_header_64_t, which is larger
562
  // than yr_mach_header_32_t.
563
116k
  if (size < sizeof(yr_mach_header_64_t))
564
99.3k
    return;
565
566
  // yr_mach_header_64_t is used for storing the header for both for 32-bits
567
  // and 64-bits files. yr_mach_header_64_t is exactly like
568
  // yr_mach_header_32_t but with an extra "reserved" field at the end.
569
17.3k
  yr_mach_header_64_t header;
570
571
17.3k
  memcpy(&header, data, sizeof(yr_mach_header_64_t));
572
573
  // The magic number is always handled as big-endian. If the magic bytes are
574
  // CA FE BA BE, then header.magic is 0xCAFEBABE.
575
17.3k
  header.magic = yr_be32toh(header.magic);
576
577
17.3k
  size_t header_size = (header.magic == MH_MAGIC || header.magic == MH_CIGAM)
578
17.3k
                           ? sizeof(yr_mach_header_32_t)
579
17.3k
                           : sizeof(yr_mach_header_64_t);
580
581
17.3k
  int should_swap = should_swap_bytes(header.magic);
582
583
17.3k
  if (should_swap)
584
4.06k
    swap_mach_header(&header);
585
586
17.3k
  yr_set_integer(header.magic, object, "magic");
587
17.3k
  yr_set_integer(header.cputype, object, "cputype");
588
17.3k
  yr_set_integer(header.cpusubtype, object, "cpusubtype");
589
17.3k
  yr_set_integer(header.filetype, object, "filetype");
590
17.3k
  yr_set_integer(header.ncmds, object, "ncmds");
591
17.3k
  yr_set_integer(header.sizeofcmds, object, "sizeofcmds");
592
17.3k
  yr_set_integer(header.flags, object, "flags");
593
594
  // The "reserved" field exists only in 64 bits files.
595
17.3k
  if (!macho_is_32(header.magic))
596
15.6k
    yr_set_integer(header.reserved, object, "reserved");
597
598
  // The first command parsing pass handles only segments.
599
17.3k
  uint64_t seg_count = 0;
600
17.3k
  uint64_t parsed_size = header_size;
601
17.3k
  uint8_t* command = (uint8_t*) (data + header_size);
602
603
17.3k
  yr_load_command_t command_struct;
604
605
763k
  for (unsigned i = 0; i < header.ncmds; i++)
606
761k
  {
607
761k
    if (data + size < command + sizeof(yr_load_command_t))
608
2.10k
      break;
609
610
759k
    memcpy(&command_struct, command, sizeof(yr_load_command_t));
611
612
759k
    if (should_swap)
613
425k
      swap_load_command(&command_struct);
614
615
759k
    if (size - parsed_size < command_struct.cmdsize)
616
12.7k
      break;
617
618
746k
    if (command_struct.cmdsize < sizeof(yr_load_command_t))
619
695
      break;
620
621
745k
    switch (command_struct.cmd)
622
745k
    {
623
29.8k
    case LC_SEGMENT:
624
29.8k
      macho_handle_segment(command, size - parsed_size, seg_count++, object);
625
29.8k
      break;
626
692k
    case LC_SEGMENT_64:
627
692k
      macho_handle_segment_64(command, size - parsed_size, seg_count++, object);
628
692k
      break;
629
745k
    }
630
631
745k
    command += command_struct.cmdsize;
632
745k
    parsed_size += command_struct.cmdsize;
633
745k
  }
634
635
17.3k
  yr_set_integer(seg_count, object, "number_of_segments");
636
637
  // The second command parsing pass handles others, who use segment count.
638
17.3k
  parsed_size = header_size;
639
17.3k
  command = (uint8_t*) (data + header_size);
640
641
763k
  for (unsigned i = 0; i < header.ncmds; i++)
642
761k
  {
643
761k
    if (data + size < command + sizeof(yr_load_command_t))
644
2.10k
      break;
645
646
759k
    memcpy(&command_struct, command, sizeof(yr_load_command_t));
647
648
759k
    if (should_swap)
649
425k
      swap_load_command(&command_struct);
650
651
759k
    if (size - parsed_size < command_struct.cmdsize)
652
12.7k
      break;
653
654
746k
    if (command_struct.cmdsize < sizeof(yr_load_command_t))
655
695
      break;
656
657
745k
    switch (command_struct.cmd)
658
745k
    {
659
10.7k
    case LC_UNIXTHREAD:
660
10.7k
      macho_handle_unixthread(
661
10.7k
          command, size - parsed_size, base_address, object, context);
662
10.7k
      break;
663
2.33k
    case LC_MAIN:
664
2.33k
      macho_handle_main(command, size - parsed_size, object, context);
665
2.33k
      break;
666
745k
    }
667
668
745k
    command += command_struct.cmdsize;
669
745k
    parsed_size += command_struct.cmdsize;
670
745k
  }
671
17.3k
}
672
673
// Parse Mach-O fat file.
674
675
void macho_load_fat_arch_header(
676
    const uint8_t* data,
677
    const uint64_t size,
678
    uint32_t num,
679
    yr_fat_arch_64_t* arch)
680
257k
{
681
257k
  if (macho_fat_is_32((uint32_t*) data))
682
230k
  {
683
230k
    yr_fat_arch_32_t* arch32 =
684
230k
        (yr_fat_arch_32_t*) (data + sizeof(yr_fat_header_t) +
685
230k
                             (num * sizeof(yr_fat_arch_32_t)));
686
687
230k
    arch->cputype = yr_be32toh(arch32->cputype);
688
230k
    arch->cpusubtype = yr_be32toh(arch32->cpusubtype);
689
230k
    arch->offset = yr_be32toh(arch32->offset);
690
230k
    arch->size = yr_be32toh(arch32->size);
691
230k
    arch->align = yr_be32toh(arch32->align);
692
230k
    arch->reserved = 0;
693
230k
  }
694
27.2k
  else
695
27.2k
  {
696
27.2k
    yr_fat_arch_64_t* arch64 =
697
27.2k
        (yr_fat_arch_64_t*) (data + sizeof(yr_fat_header_t) +
698
27.2k
                             (num * sizeof(yr_fat_arch_64_t)));
699
700
27.2k
    arch->cputype = yr_be32toh(arch64->cputype);
701
27.2k
    arch->cpusubtype = yr_be32toh(arch64->cpusubtype);
702
27.2k
    arch->offset = yr_be64toh(arch64->offset);
703
27.2k
    arch->size = yr_be64toh(arch64->size);
704
27.2k
    arch->align = yr_be32toh(arch64->align);
705
27.2k
    arch->reserved = yr_be32toh(arch64->reserved);
706
27.2k
  }
707
257k
}
708
709
void macho_parse_fat_file(
710
    const uint8_t* data,
711
    const uint64_t size,
712
    const uint64_t base_address,
713
    YR_OBJECT* object,
714
    YR_SCAN_CONTEXT* context)
715
1.20k
{
716
1.20k
  size_t fat_arch_sz = sizeof(yr_fat_arch_64_t);
717
718
1.20k
  if (macho_fat_is_32((uint32_t*) data))
719
1.05k
    fat_arch_sz = sizeof(yr_fat_arch_32_t);
720
721
1.20k
  if (size < sizeof(yr_fat_header_t))
722
6
    return;
723
724
  /* All data in Mach-O fat binary headers are in big-endian byte order. */
725
726
1.19k
  const yr_fat_header_t* header = (yr_fat_header_t*) data;
727
1.19k
  yr_set_integer(yr_be32toh(header->magic), object, "fat_magic");
728
729
1.19k
  uint32_t count = yr_be32toh(header->nfat_arch);
730
1.19k
  yr_set_integer(count, object, "nfat_arch");
731
732
1.19k
  if (size < sizeof(yr_fat_header_t) + count * fat_arch_sz)
733
42
    return;
734
735
1.15k
  yr_fat_arch_64_t arch;
736
737
258k
  for (uint32_t i = 0; i < count; i++)
738
257k
  {
739
257k
    macho_load_fat_arch_header(data, size, i, &arch);
740
741
257k
    yr_set_integer(arch.cputype, object, "fat_arch[%i].cputype", i);
742
257k
    yr_set_integer(arch.cpusubtype, object, "fat_arch[%i].cpusubtype", i);
743
257k
    yr_set_integer(arch.offset, object, "fat_arch[%i].offset", i);
744
257k
    yr_set_integer(arch.size, object, "fat_arch[%i].size", i);
745
257k
    yr_set_integer(arch.align, object, "fat_arch[%i].align", i);
746
257k
    yr_set_integer(arch.reserved, object, "fat_arch[%i].reserved", i);
747
748
    // Check for integer overflow.
749
257k
    if (arch.offset + arch.size < arch.offset)
750
609
      continue;
751
752
256k
    if (size < arch.offset + arch.size)
753
141k
      continue;
754
755
    // Force 'file' array entry creation.
756
115k
    yr_set_integer(YR_UNDEFINED, object, "file[%i].magic", i);
757
758
    // Get specific Mach-O file data.
759
115k
    macho_parse_file(
760
115k
        data + arch.offset,
761
115k
        arch.size,
762
115k
        base_address,
763
115k
        yr_get_object(object, "file[%i]", i),
764
115k
        context);
765
115k
  }
766
1.15k
}
767
768
// Sets all necessary Mach-O constants and definitions.
769
770
void macho_set_definitions(YR_OBJECT* object)
771
4.21k
{
772
  // Magic constants
773
774
4.21k
  yr_set_integer(MH_MAGIC, object, "MH_MAGIC");
775
4.21k
  yr_set_integer(MH_CIGAM, object, "MH_CIGAM");
776
4.21k
  yr_set_integer(MH_MAGIC_64, object, "MH_MAGIC_64");
777
4.21k
  yr_set_integer(MH_CIGAM_64, object, "MH_CIGAM_64");
778
779
  // Fat magic constants
780
781
4.21k
  yr_set_integer(FAT_MAGIC, object, "FAT_MAGIC");
782
4.21k
  yr_set_integer(FAT_CIGAM, object, "FAT_CIGAM");
783
4.21k
  yr_set_integer(FAT_MAGIC_64, object, "FAT_MAGIC_64");
784
4.21k
  yr_set_integer(FAT_CIGAM_64, object, "FAT_CIGAM_64");
785
786
  // 64-bit masks
787
788
4.21k
  yr_set_integer(CPU_ARCH_ABI64, object, "CPU_ARCH_ABI64");
789
4.21k
  yr_set_integer(CPU_SUBTYPE_LIB64, object, "CPU_SUBTYPE_LIB64");
790
791
  // CPU types
792
793
4.21k
  yr_set_integer(CPU_TYPE_MC680X0, object, "CPU_TYPE_MC680X0");
794
4.21k
  yr_set_integer(CPU_TYPE_X86, object, "CPU_TYPE_X86");
795
4.21k
  yr_set_integer(CPU_TYPE_X86, object, "CPU_TYPE_I386");
796
4.21k
  yr_set_integer(CPU_TYPE_X86_64, object, "CPU_TYPE_X86_64");
797
4.21k
  yr_set_integer(CPU_TYPE_MIPS, object, "CPU_TYPE_MIPS");
798
4.21k
  yr_set_integer(CPU_TYPE_MC98000, object, "CPU_TYPE_MC98000");
799
4.21k
  yr_set_integer(CPU_TYPE_ARM, object, "CPU_TYPE_ARM");
800
4.21k
  yr_set_integer(CPU_TYPE_ARM64, object, "CPU_TYPE_ARM64");
801
4.21k
  yr_set_integer(CPU_TYPE_MC88000, object, "CPU_TYPE_MC88000");
802
4.21k
  yr_set_integer(CPU_TYPE_SPARC, object, "CPU_TYPE_SPARC");
803
4.21k
  yr_set_integer(CPU_TYPE_POWERPC, object, "CPU_TYPE_POWERPC");
804
4.21k
  yr_set_integer(CPU_TYPE_POWERPC64, object, "CPU_TYPE_POWERPC64");
805
806
  // CPU sub-types
807
808
4.21k
  yr_set_integer(
809
4.21k
      CPU_SUBTYPE_INTEL_MODEL_ALL, object, "CPU_SUBTYPE_INTEL_MODEL_ALL");
810
4.21k
  yr_set_integer(CPU_SUBTYPE_386, object, "CPU_SUBTYPE_386");
811
4.21k
  yr_set_integer(CPU_SUBTYPE_386, object, "CPU_SUBTYPE_I386_ALL");
812
4.21k
  yr_set_integer(CPU_SUBTYPE_386, object, "CPU_SUBTYPE_X86_64_ALL");
813
4.21k
  yr_set_integer(CPU_SUBTYPE_486, object, "CPU_SUBTYPE_486");
814
4.21k
  yr_set_integer(CPU_SUBTYPE_486SX, object, "CPU_SUBTYPE_486SX");
815
4.21k
  yr_set_integer(CPU_SUBTYPE_586, object, "CPU_SUBTYPE_586");
816
4.21k
  yr_set_integer(CPU_SUBTYPE_PENT, object, "CPU_SUBTYPE_PENT");
817
4.21k
  yr_set_integer(CPU_SUBTYPE_PENTPRO, object, "CPU_SUBTYPE_PENTPRO");
818
4.21k
  yr_set_integer(CPU_SUBTYPE_PENTII_M3, object, "CPU_SUBTYPE_PENTII_M3");
819
4.21k
  yr_set_integer(CPU_SUBTYPE_PENTII_M5, object, "CPU_SUBTYPE_PENTII_M5");
820
4.21k
  yr_set_integer(CPU_SUBTYPE_CELERON, object, "CPU_SUBTYPE_CELERON");
821
4.21k
  yr_set_integer(
822
4.21k
      CPU_SUBTYPE_CELERON_MOBILE, object, "CPU_SUBTYPE_CELERON_MOBILE");
823
4.21k
  yr_set_integer(CPU_SUBTYPE_PENTIUM_3, object, "CPU_SUBTYPE_PENTIUM_3");
824
4.21k
  yr_set_integer(CPU_SUBTYPE_PENTIUM_3_M, object, "CPU_SUBTYPE_PENTIUM_3_M");
825
4.21k
  yr_set_integer(
826
4.21k
      CPU_SUBTYPE_PENTIUM_3_XEON, object, "CPU_SUBTYPE_PENTIUM_3_XEON");
827
4.21k
  yr_set_integer(CPU_SUBTYPE_PENTIUM_M, object, "CPU_SUBTYPE_PENTIUM_M");
828
4.21k
  yr_set_integer(CPU_SUBTYPE_PENTIUM_4, object, "CPU_SUBTYPE_PENTIUM_4");
829
4.21k
  yr_set_integer(CPU_SUBTYPE_PENTIUM_4_M, object, "CPU_SUBTYPE_PENTIUM_4_M");
830
4.21k
  yr_set_integer(CPU_SUBTYPE_ITANIUM, object, "CPU_SUBTYPE_ITANIUM");
831
4.21k
  yr_set_integer(CPU_SUBTYPE_ITANIUM_2, object, "CPU_SUBTYPE_ITANIUM_2");
832
4.21k
  yr_set_integer(CPU_SUBTYPE_XEON, object, "CPU_SUBTYPE_XEON");
833
4.21k
  yr_set_integer(CPU_SUBTYPE_XEON_MP, object, "CPU_SUBTYPE_XEON_MP");
834
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_ALL, object, "CPU_SUBTYPE_ARM_ALL");
835
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_V4T, object, "CPU_SUBTYPE_ARM_V4T");
836
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_V6, object, "CPU_SUBTYPE_ARM_V6");
837
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_V5, object, "CPU_SUBTYPE_ARM_V5");
838
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_V5TEJ, object, "CPU_SUBTYPE_ARM_V5TEJ");
839
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_XSCALE, object, "CPU_SUBTYPE_ARM_XSCALE");
840
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_V7, object, "CPU_SUBTYPE_ARM_V7");
841
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_V7F, object, "CPU_SUBTYPE_ARM_V7F");
842
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_V7S, object, "CPU_SUBTYPE_ARM_V7S");
843
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_V7K, object, "CPU_SUBTYPE_ARM_V7K");
844
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_V6M, object, "CPU_SUBTYPE_ARM_V6M");
845
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_V7M, object, "CPU_SUBTYPE_ARM_V7M");
846
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM_V7EM, object, "CPU_SUBTYPE_ARM_V7EM");
847
4.21k
  yr_set_integer(CPU_SUBTYPE_ARM64_ALL, object, "CPU_SUBTYPE_ARM64_ALL");
848
4.21k
  yr_set_integer(CPU_SUBTYPE_SPARC_ALL, object, "CPU_SUBTYPE_SPARC_ALL");
849
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_ALL, object, "CPU_SUBTYPE_POWERPC_ALL");
850
4.21k
  yr_set_integer(CPU_SUBTYPE_MC980000_ALL, object, "CPU_SUBTYPE_MC980000_ALL");
851
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_601, object, "CPU_SUBTYPE_POWERPC_601");
852
4.21k
  yr_set_integer(CPU_SUBTYPE_MC98601, object, "CPU_SUBTYPE_MC98601");
853
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_602, object, "CPU_SUBTYPE_POWERPC_602");
854
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_603, object, "CPU_SUBTYPE_POWERPC_603");
855
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_603e, object, "CPU_SUBTYPE_POWERPC_603e");
856
4.21k
  yr_set_integer(
857
4.21k
      CPU_SUBTYPE_POWERPC_603ev, object, "CPU_SUBTYPE_POWERPC_603ev");
858
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_604, object, "CPU_SUBTYPE_POWERPC_604");
859
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_604e, object, "CPU_SUBTYPE_POWERPC_604e");
860
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_620, object, "CPU_SUBTYPE_POWERPC_620");
861
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_750, object, "CPU_SUBTYPE_POWERPC_750");
862
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_7400, object, "CPU_SUBTYPE_POWERPC_7400");
863
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_7450, object, "CPU_SUBTYPE_POWERPC_7450");
864
4.21k
  yr_set_integer(CPU_SUBTYPE_POWERPC_970, object, "CPU_SUBTYPE_POWERPC_970");
865
866
  // File types
867
868
4.21k
  yr_set_integer(MH_OBJECT, object, "MH_OBJECT");
869
4.21k
  yr_set_integer(MH_EXECUTE, object, "MH_EXECUTE");
870
4.21k
  yr_set_integer(MH_FVMLIB, object, "MH_FVMLIB");
871
4.21k
  yr_set_integer(MH_CORE, object, "MH_CORE");
872
4.21k
  yr_set_integer(MH_PRELOAD, object, "MH_PRELOAD");
873
4.21k
  yr_set_integer(MH_DYLIB, object, "MH_DYLIB");
874
4.21k
  yr_set_integer(MH_DYLINKER, object, "MH_DYLINKER");
875
4.21k
  yr_set_integer(MH_BUNDLE, object, "MH_BUNDLE");
876
4.21k
  yr_set_integer(MH_DYLIB_STUB, object, "MH_DYLIB_STUB");
877
4.21k
  yr_set_integer(MH_DSYM, object, "MH_DSYM");
878
4.21k
  yr_set_integer(MH_KEXT_BUNDLE, object, "MH_KEXT_BUNDLE");
879
880
  // Header flags
881
882
4.21k
  yr_set_integer(MH_NOUNDEFS, object, "MH_NOUNDEFS");
883
4.21k
  yr_set_integer(MH_INCRLINK, object, "MH_INCRLINK");
884
4.21k
  yr_set_integer(MH_DYLDLINK, object, "MH_DYLDLINK");
885
4.21k
  yr_set_integer(MH_BINDATLOAD, object, "MH_BINDATLOAD");
886
4.21k
  yr_set_integer(MH_PREBOUND, object, "MH_PREBOUND");
887
4.21k
  yr_set_integer(MH_SPLIT_SEGS, object, "MH_SPLIT_SEGS");
888
4.21k
  yr_set_integer(MH_LAZY_INIT, object, "MH_LAZY_INIT");
889
4.21k
  yr_set_integer(MH_TWOLEVEL, object, "MH_TWOLEVEL");
890
4.21k
  yr_set_integer(MH_FORCE_FLAT, object, "MH_FORCE_FLAT");
891
4.21k
  yr_set_integer(MH_NOMULTIDEFS, object, "MH_NOMULTIDEFS");
892
4.21k
  yr_set_integer(MH_NOFIXPREBINDING, object, "MH_NOFIXPREBINDING");
893
4.21k
  yr_set_integer(MH_PREBINDABLE, object, "MH_PREBINDABLE");
894
4.21k
  yr_set_integer(MH_ALLMODSBOUND, object, "MH_ALLMODSBOUND");
895
4.21k
  yr_set_integer(
896
4.21k
      MH_SUBSECTIONS_VIA_SYMBOLS, object, "MH_SUBSECTIONS_VIA_SYMBOLS");
897
4.21k
  yr_set_integer(MH_CANONICAL, object, "MH_CANONICAL");
898
4.21k
  yr_set_integer(MH_WEAK_DEFINES, object, "MH_WEAK_DEFINES");
899
4.21k
  yr_set_integer(MH_BINDS_TO_WEAK, object, "MH_BINDS_TO_WEAK");
900
4.21k
  yr_set_integer(MH_ALLOW_STACK_EXECUTION, object, "MH_ALLOW_STACK_EXECUTION");
901
4.21k
  yr_set_integer(MH_ROOT_SAFE, object, "MH_ROOT_SAFE");
902
4.21k
  yr_set_integer(MH_SETUID_SAFE, object, "MH_SETUID_SAFE");
903
4.21k
  yr_set_integer(MH_NO_REEXPORTED_DYLIBS, object, "MH_NO_REEXPORTED_DYLIBS");
904
4.21k
  yr_set_integer(MH_PIE, object, "MH_PIE");
905
4.21k
  yr_set_integer(MH_DEAD_STRIPPABLE_DYLIB, object, "MH_DEAD_STRIPPABLE_DYLIB");
906
4.21k
  yr_set_integer(MH_HAS_TLV_DESCRIPTORS, object, "MH_HAS_TLV_DESCRIPTORS");
907
4.21k
  yr_set_integer(MH_NO_HEAP_EXECUTION, object, "MH_NO_HEAP_EXECUTION");
908
4.21k
  yr_set_integer(MH_APP_EXTENSION_SAFE, object, "MH_APP_EXTENSION_SAFE");
909
910
  // Segment flags masks
911
912
4.21k
  yr_set_integer(SG_HIGHVM, object, "SG_HIGHVM");
913
4.21k
  yr_set_integer(SG_FVMLIB, object, "SG_FVMLIB");
914
4.21k
  yr_set_integer(SG_NORELOC, object, "SG_NORELOC");
915
4.21k
  yr_set_integer(SG_PROTECTED_VERSION_1, object, "SG_PROTECTED_VERSION_1");
916
917
  // Section flags masks
918
919
4.21k
  yr_set_integer(SECTION_TYPE, object, "SECTION_TYPE");
920
4.21k
  yr_set_integer(SECTION_ATTRIBUTES, object, "SECTION_ATTRIBUTES");
921
922
  // Section types
923
924
4.21k
  yr_set_integer(S_REGULAR, object, "S_REGULAR");
925
4.21k
  yr_set_integer(S_ZEROFILL, object, "S_ZEROFILL");
926
4.21k
  yr_set_integer(S_CSTRING_LITERALS, object, "S_CSTRING_LITERALS");
927
4.21k
  yr_set_integer(S_4BYTE_LITERALS, object, "S_4BYTE_LITERALS");
928
4.21k
  yr_set_integer(S_8BYTE_LITERALS, object, "S_8BYTE_LITERALS");
929
4.21k
  yr_set_integer(
930
4.21k
      S_NON_LAZY_SYMBOL_POINTERS, object, "S_NON_LAZY_SYMBOL_POINTERS");
931
4.21k
  yr_set_integer(S_LAZY_SYMBOL_POINTERS, object, "S_LAZY_SYMBOL_POINTERS");
932
4.21k
  yr_set_integer(S_LITERAL_POINTERS, object, "S_LITERAL_POINTERS");
933
4.21k
  yr_set_integer(S_SYMBOL_STUBS, object, "S_SYMBOL_STUBS");
934
4.21k
  yr_set_integer(S_MOD_INIT_FUNC_POINTERS, object, "S_MOD_INIT_FUNC_POINTERS");
935
4.21k
  yr_set_integer(S_MOD_TERM_FUNC_POINTERS, object, "S_MOD_TERM_FUNC_POINTERS");
936
4.21k
  yr_set_integer(S_COALESCED, object, "S_COALESCED");
937
4.21k
  yr_set_integer(S_GB_ZEROFILL, object, "S_GB_ZEROFILL");
938
4.21k
  yr_set_integer(S_INTERPOSING, object, "S_INTERPOSING");
939
4.21k
  yr_set_integer(S_16BYTE_LITERALS, object, "S_16BYTE_LITERALS");
940
4.21k
  yr_set_integer(S_DTRACE_DOF, object, "S_DTRACE_DOF");
941
4.21k
  yr_set_integer(
942
4.21k
      S_LAZY_DYLIB_SYMBOL_POINTERS, object, "S_LAZY_DYLIB_SYMBOL_POINTERS");
943
4.21k
  yr_set_integer(S_THREAD_LOCAL_REGULAR, object, "S_THREAD_LOCAL_REGULAR");
944
4.21k
  yr_set_integer(S_THREAD_LOCAL_ZEROFILL, object, "S_THREAD_LOCAL_ZEROFILL");
945
4.21k
  yr_set_integer(S_THREAD_LOCAL_VARIABLES, object, "S_THREAD_LOCAL_VARIABLES");
946
4.21k
  yr_set_integer(
947
4.21k
      S_THREAD_LOCAL_VARIABLE_POINTERS,
948
4.21k
      object,
949
4.21k
      "S_THREAD_LOCAL_VARIABLE_POINTERS");
950
4.21k
  yr_set_integer(
951
4.21k
      S_THREAD_LOCAL_INIT_FUNCTION_POINTERS,
952
4.21k
      object,
953
4.21k
      "S_THREAD_LOCAL_INIT_FUNCTION_POINTERS");
954
955
  // Section attributes
956
957
4.21k
  yr_set_integer(S_ATTR_PURE_INSTRUCTIONS, object, "S_ATTR_PURE_INSTRUCTIONS");
958
4.21k
  yr_set_integer(S_ATTR_NO_TOC, object, "S_ATTR_NO_TOC");
959
4.21k
  yr_set_integer(S_ATTR_STRIP_STATIC_SYMS, object, "S_ATTR_STRIP_STATIC_SYMS");
960
4.21k
  yr_set_integer(S_ATTR_NO_DEAD_STRIP, object, "S_ATTR_NO_DEAD_STRIP");
961
4.21k
  yr_set_integer(S_ATTR_LIVE_SUPPORT, object, "S_ATTR_LIVE_SUPPORT");
962
4.21k
  yr_set_integer(
963
4.21k
      S_ATTR_SELF_MODIFYING_CODE, object, "S_ATTR_SELF_MODIFYING_CODE");
964
4.21k
  yr_set_integer(S_ATTR_DEBUG, object, "S_ATTR_DEBUG");
965
4.21k
  yr_set_integer(S_ATTR_SOME_INSTRUCTIONS, object, "S_ATTR_SOME_INSTRUCTIONS");
966
4.21k
  yr_set_integer(S_ATTR_EXT_RELOC, object, "S_ATTR_EXT_RELOC");
967
4.21k
  yr_set_integer(S_ATTR_LOC_RELOC, object, "S_ATTR_LOC_RELOC");
968
4.21k
}
969
970
// Get Mach-O file index in fat file by cputype field.
971
972
define_function(file_index_type)
973
0
{
974
0
  YR_OBJECT* module = yr_module();
975
0
  int64_t type_arg = integer_argument(1);
976
977
0
  uint64_t nfat = yr_get_integer(module, "nfat_arch");
978
0
  if (yr_is_undefined(module, "nfat_arch"))
979
0
    return_integer(YR_UNDEFINED);
980
981
0
  for (int i = 0; i < nfat; i++)
982
0
  {
983
0
    int64_t type = yr_get_integer(module, "file[%i].cputype", i);
984
0
    if (type == type_arg)
985
0
    {
986
0
      return_integer(i);
987
0
    }
988
0
  }
989
0
  return_integer(YR_UNDEFINED);
990
0
}
991
992
// Get Mach-O file index in fat file by cputype and cpusubtype fields.
993
994
define_function(file_index_subtype)
995
0
{
996
0
  YR_OBJECT* module = yr_module();
997
0
  int64_t type_arg = integer_argument(1);
998
0
  int64_t subtype_arg = integer_argument(2);
999
0
  uint64_t nfat = yr_get_integer(module, "nfat_arch");
1000
1001
0
  if (yr_is_undefined(module, "nfat_arch"))
1002
0
    return_integer(YR_UNDEFINED);
1003
1004
0
  for (int i = 0; i < nfat; i++)
1005
0
  {
1006
0
    int64_t type = yr_get_integer(module, "file[%i].cputype", i);
1007
0
    int64_t subtype = yr_get_integer(module, "file[%i].cpusubtype", i);
1008
1009
0
    if (type == type_arg && subtype == subtype_arg)
1010
0
    {
1011
0
      return_integer(i);
1012
0
    }
1013
0
  }
1014
1015
0
  return_integer(YR_UNDEFINED);
1016
0
}
1017
1018
// Get real entry point offset for specific architecture in fat Mach-O.
1019
1020
define_function(ep_for_arch_type)
1021
0
{
1022
0
  YR_OBJECT* module = yr_module();
1023
0
  int64_t type_arg = integer_argument(1);
1024
0
  uint64_t nfat = yr_get_integer(module, "nfat_arch");
1025
1026
0
  if (yr_is_undefined(module, "nfat_arch"))
1027
0
    return_integer(YR_UNDEFINED);
1028
1029
0
  for (int i = 0; i < nfat; i++)
1030
0
  {
1031
0
    int64_t type = yr_get_integer(module, "fat_arch[%i].cputype", i);
1032
0
    if (type == type_arg)
1033
0
    {
1034
0
      uint64_t file_offset = yr_get_integer(module, "fat_arch[%i].offset", i);
1035
0
      uint64_t entry_point = yr_get_integer(module, "file[%i].entry_point", i);
1036
0
      return_integer(file_offset + entry_point);
1037
0
    }
1038
0
  }
1039
1040
0
  return_integer(YR_UNDEFINED);
1041
0
}
1042
1043
// Get real entry point offset for specific architecture in fat Mach-O.
1044
1045
define_function(ep_for_arch_subtype)
1046
0
{
1047
0
  YR_OBJECT* module = yr_module();
1048
0
  int64_t type_arg = integer_argument(1);
1049
0
  int64_t subtype_arg = integer_argument(2);
1050
0
  uint64_t nfat = yr_get_integer(module, "nfat_arch");
1051
1052
0
  if (yr_is_undefined(module, "nfat_arch"))
1053
0
    return_integer(YR_UNDEFINED);
1054
1055
0
  for (int i = 0; i < nfat; i++)
1056
0
  {
1057
0
    int64_t type = yr_get_integer(module, "fat_arch[%i].cputype", i);
1058
0
    int64_t subtype = yr_get_integer(module, "fat_arch[%i].cpusubtype", i);
1059
1060
0
    if (type == type_arg && subtype == subtype_arg)
1061
0
    {
1062
0
      uint64_t entry_point = yr_get_integer(module, "file[%i].entry_point", i);
1063
0
      uint64_t file_offset = yr_get_integer(module, "fat_arch[%i].offset", i);
1064
1065
0
      if (entry_point == YR_UNDEFINED)
1066
0
      {
1067
0
        return_integer(YR_UNDEFINED);
1068
0
      }
1069
0
      else
1070
0
      {
1071
0
        return_integer(file_offset + entry_point);
1072
0
      }
1073
0
    }
1074
0
  }
1075
1076
0
  return_integer(YR_UNDEFINED);
1077
0
}
1078
1079
4.21k
begin_declarations
1080
  // Magic constants
1081
4.21k
  declare_integer("MH_MAGIC");
1082
4.21k
  declare_integer("MH_CIGAM");
1083
4.21k
  declare_integer("MH_MAGIC_64");
1084
4.21k
  declare_integer("MH_CIGAM_64");
1085
1086
  // Fat magic constants
1087
4.21k
  declare_integer("FAT_MAGIC");
1088
4.21k
  declare_integer("FAT_CIGAM");
1089
4.21k
  declare_integer("FAT_MAGIC_64");
1090
4.21k
  declare_integer("FAT_CIGAM_64");
1091
1092
  // 64-bit masks
1093
4.21k
  declare_integer("CPU_ARCH_ABI64");
1094
4.21k
  declare_integer("CPU_SUBTYPE_LIB64");
1095
1096
  // CPU types
1097
4.21k
  declare_integer("CPU_TYPE_MC680X0");
1098
4.21k
  declare_integer("CPU_TYPE_X86");
1099
4.21k
  declare_integer("CPU_TYPE_I386");
1100
4.21k
  declare_integer("CPU_TYPE_X86_64");
1101
4.21k
  declare_integer("CPU_TYPE_MIPS");
1102
4.21k
  declare_integer("CPU_TYPE_MC98000");
1103
4.21k
  declare_integer("CPU_TYPE_ARM");
1104
4.21k
  declare_integer("CPU_TYPE_ARM64");
1105
4.21k
  declare_integer("CPU_TYPE_MC88000");
1106
4.21k
  declare_integer("CPU_TYPE_SPARC");
1107
4.21k
  declare_integer("CPU_TYPE_POWERPC");
1108
4.21k
  declare_integer("CPU_TYPE_POWERPC64");
1109
1110
  // CPU sub-types
1111
4.21k
  declare_integer("CPU_SUBTYPE_INTEL_MODEL_ALL");
1112
4.21k
  declare_integer("CPU_SUBTYPE_386");
1113
4.21k
  declare_integer("CPU_SUBTYPE_I386_ALL");
1114
4.21k
  declare_integer("CPU_SUBTYPE_X86_64_ALL");
1115
4.21k
  declare_integer("CPU_SUBTYPE_486");
1116
4.21k
  declare_integer("CPU_SUBTYPE_486SX");
1117
4.21k
  declare_integer("CPU_SUBTYPE_586");
1118
4.21k
  declare_integer("CPU_SUBTYPE_PENT");
1119
4.21k
  declare_integer("CPU_SUBTYPE_PENTPRO");
1120
4.21k
  declare_integer("CPU_SUBTYPE_PENTII_M3");
1121
4.21k
  declare_integer("CPU_SUBTYPE_PENTII_M5");
1122
4.21k
  declare_integer("CPU_SUBTYPE_CELERON");
1123
4.21k
  declare_integer("CPU_SUBTYPE_CELERON_MOBILE");
1124
4.21k
  declare_integer("CPU_SUBTYPE_PENTIUM_3");
1125
4.21k
  declare_integer("CPU_SUBTYPE_PENTIUM_3_M");
1126
4.21k
  declare_integer("CPU_SUBTYPE_PENTIUM_3_XEON");
1127
4.21k
  declare_integer("CPU_SUBTYPE_PENTIUM_M");
1128
4.21k
  declare_integer("CPU_SUBTYPE_PENTIUM_4");
1129
4.21k
  declare_integer("CPU_SUBTYPE_PENTIUM_4_M");
1130
4.21k
  declare_integer("CPU_SUBTYPE_ITANIUM");
1131
4.21k
  declare_integer("CPU_SUBTYPE_ITANIUM_2");
1132
4.21k
  declare_integer("CPU_SUBTYPE_XEON");
1133
4.21k
  declare_integer("CPU_SUBTYPE_XEON_MP");
1134
4.21k
  declare_integer("CPU_SUBTYPE_ARM_ALL");
1135
4.21k
  declare_integer("CPU_SUBTYPE_ARM_V4T");
1136
4.21k
  declare_integer("CPU_SUBTYPE_ARM_V6");
1137
4.21k
  declare_integer("CPU_SUBTYPE_ARM_V5");
1138
4.21k
  declare_integer("CPU_SUBTYPE_ARM_V5TEJ");
1139
4.21k
  declare_integer("CPU_SUBTYPE_ARM_XSCALE");
1140
4.21k
  declare_integer("CPU_SUBTYPE_ARM_V7");
1141
4.21k
  declare_integer("CPU_SUBTYPE_ARM_V7F");
1142
4.21k
  declare_integer("CPU_SUBTYPE_ARM_V7S");
1143
4.21k
  declare_integer("CPU_SUBTYPE_ARM_V7K");
1144
4.21k
  declare_integer("CPU_SUBTYPE_ARM_V6M");
1145
4.21k
  declare_integer("CPU_SUBTYPE_ARM_V7M");
1146
4.21k
  declare_integer("CPU_SUBTYPE_ARM_V7EM");
1147
4.21k
  declare_integer("CPU_SUBTYPE_ARM64_ALL");
1148
4.21k
  declare_integer("CPU_SUBTYPE_SPARC_ALL");
1149
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_ALL");
1150
4.21k
  declare_integer("CPU_SUBTYPE_MC980000_ALL");
1151
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_601");
1152
4.21k
  declare_integer("CPU_SUBTYPE_MC98601");
1153
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_602");
1154
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_603");
1155
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_603e");
1156
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_603ev");
1157
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_604");
1158
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_604e");
1159
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_620");
1160
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_750");
1161
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_7400");
1162
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_7450");
1163
4.21k
  declare_integer("CPU_SUBTYPE_POWERPC_970");
1164
1165
  // File types
1166
4.21k
  declare_integer("MH_OBJECT");
1167
4.21k
  declare_integer("MH_EXECUTE");
1168
4.21k
  declare_integer("MH_FVMLIB");
1169
4.21k
  declare_integer("MH_CORE");
1170
4.21k
  declare_integer("MH_PRELOAD");
1171
4.21k
  declare_integer("MH_DYLIB");
1172
4.21k
  declare_integer("MH_DYLINKER");
1173
4.21k
  declare_integer("MH_BUNDLE");
1174
4.21k
  declare_integer("MH_DYLIB_STUB");
1175
4.21k
  declare_integer("MH_DSYM");
1176
4.21k
  declare_integer("MH_KEXT_BUNDLE");
1177
1178
  // Header flags
1179
4.21k
  declare_integer("MH_NOUNDEFS");
1180
4.21k
  declare_integer("MH_INCRLINK");
1181
4.21k
  declare_integer("MH_DYLDLINK");
1182
4.21k
  declare_integer("MH_BINDATLOAD");
1183
4.21k
  declare_integer("MH_PREBOUND");
1184
4.21k
  declare_integer("MH_SPLIT_SEGS");
1185
4.21k
  declare_integer("MH_LAZY_INIT");
1186
4.21k
  declare_integer("MH_TWOLEVEL");
1187
4.21k
  declare_integer("MH_FORCE_FLAT");
1188
4.21k
  declare_integer("MH_NOMULTIDEFS");
1189
4.21k
  declare_integer("MH_NOFIXPREBINDING");
1190
4.21k
  declare_integer("MH_PREBINDABLE");
1191
4.21k
  declare_integer("MH_ALLMODSBOUND");
1192
4.21k
  declare_integer("MH_SUBSECTIONS_VIA_SYMBOLS");
1193
4.21k
  declare_integer("MH_CANONICAL");
1194
4.21k
  declare_integer("MH_WEAK_DEFINES");
1195
4.21k
  declare_integer("MH_BINDS_TO_WEAK");
1196
4.21k
  declare_integer("MH_ALLOW_STACK_EXECUTION");
1197
4.21k
  declare_integer("MH_ROOT_SAFE");
1198
4.21k
  declare_integer("MH_SETUID_SAFE");
1199
4.21k
  declare_integer("MH_NO_REEXPORTED_DYLIBS");
1200
4.21k
  declare_integer("MH_PIE");
1201
4.21k
  declare_integer("MH_DEAD_STRIPPABLE_DYLIB");
1202
4.21k
  declare_integer("MH_HAS_TLV_DESCRIPTORS");
1203
4.21k
  declare_integer("MH_NO_HEAP_EXECUTION");
1204
4.21k
  declare_integer("MH_APP_EXTENSION_SAFE");
1205
1206
  // Segment flags
1207
4.21k
  declare_integer("SG_HIGHVM");
1208
4.21k
  declare_integer("SG_FVMLIB");
1209
4.21k
  declare_integer("SG_NORELOC");
1210
4.21k
  declare_integer("SG_PROTECTED_VERSION_1");
1211
1212
  // Section masks
1213
4.21k
  declare_integer("SECTION_TYPE");
1214
4.21k
  declare_integer("SECTION_ATTRIBUTES");
1215
1216
  // Section types
1217
4.21k
  declare_integer("S_REGULAR");
1218
4.21k
  declare_integer("S_ZEROFILL");
1219
4.21k
  declare_integer("S_CSTRING_LITERALS");
1220
4.21k
  declare_integer("S_4BYTE_LITERALS");
1221
4.21k
  declare_integer("S_8BYTE_LITERALS");
1222
4.21k
  declare_integer("S_LITERAL_POINTERS");
1223
4.21k
  declare_integer("S_NON_LAZY_SYMBOL_POINTERS");
1224
4.21k
  declare_integer("S_LAZY_SYMBOL_POINTERS");
1225
4.21k
  declare_integer("S_SYMBOL_STUBS");
1226
4.21k
  declare_integer("S_MOD_INIT_FUNC_POINTERS");
1227
4.21k
  declare_integer("S_MOD_TERM_FUNC_POINTERS");
1228
4.21k
  declare_integer("S_COALESCED");
1229
4.21k
  declare_integer("S_GB_ZEROFILL");
1230
4.21k
  declare_integer("S_INTERPOSING");
1231
4.21k
  declare_integer("S_16BYTE_LITERALS");
1232
4.21k
  declare_integer("S_DTRACE_DOF");
1233
4.21k
  declare_integer("S_LAZY_DYLIB_SYMBOL_POINTERS");
1234
4.21k
  declare_integer("S_THREAD_LOCAL_REGULAR");
1235
4.21k
  declare_integer("S_THREAD_LOCAL_ZEROFILL");
1236
4.21k
  declare_integer("S_THREAD_LOCAL_VARIABLES");
1237
4.21k
  declare_integer("S_THREAD_LOCAL_VARIABLE_POINTERS");
1238
4.21k
  declare_integer("S_THREAD_LOCAL_INIT_FUNCTION_POINTERS");
1239
1240
  // Section attributes
1241
4.21k
  declare_integer("S_ATTR_PURE_INSTRUCTIONS");
1242
4.21k
  declare_integer("S_ATTR_NO_TOC");
1243
4.21k
  declare_integer("S_ATTR_STRIP_STATIC_SYMS");
1244
4.21k
  declare_integer("S_ATTR_NO_DEAD_STRIP");
1245
4.21k
  declare_integer("S_ATTR_LIVE_SUPPORT");
1246
4.21k
  declare_integer("S_ATTR_SELF_MODIFYING_CODE");
1247
4.21k
  declare_integer("S_ATTR_DEBUG");
1248
4.21k
  declare_integer("S_ATTR_SOME_INSTRUCTIONS");
1249
4.21k
  declare_integer("S_ATTR_EXT_RELOC");
1250
4.21k
  declare_integer("S_ATTR_LOC_RELOC");
1251
1252
  // Header
1253
4.21k
  declare_integer("magic");
1254
4.21k
  declare_integer("cputype");
1255
4.21k
  declare_integer("cpusubtype");
1256
4.21k
  declare_integer("filetype");
1257
4.21k
  declare_integer("ncmds");
1258
4.21k
  declare_integer("sizeofcmds");
1259
4.21k
  declare_integer("flags");
1260
4.21k
  declare_integer("reserved");
1261
1262
  // Segments and nested sections
1263
4.21k
  declare_integer("number_of_segments");
1264
1265
12.6k
  begin_struct_array("segments")
1266
4.21k
    declare_string("segname");
1267
4.21k
    declare_integer("vmaddr");
1268
4.21k
    declare_integer("vmsize");
1269
4.21k
    declare_integer("fileoff");
1270
4.21k
    declare_integer("fsize");
1271
4.21k
    declare_integer("maxprot");
1272
4.21k
    declare_integer("initprot");
1273
4.21k
    declare_integer("nsects");
1274
4.21k
    declare_integer("flags");
1275
12.6k
    begin_struct_array("sections")
1276
4.21k
      declare_string("sectname");
1277
4.21k
      declare_string("segname");
1278
4.21k
      declare_integer("addr");
1279
4.21k
      declare_integer("size");
1280
4.21k
      declare_integer("offset");
1281
4.21k
      declare_integer("align");
1282
4.21k
      declare_integer("reloff");
1283
4.21k
      declare_integer("nreloc");
1284
4.21k
      declare_integer("flags");
1285
4.21k
      declare_integer("reserved1");
1286
4.21k
      declare_integer("reserved2");
1287
4.21k
      declare_integer("reserved3");
1288
8.43k
    end_struct_array("sections");
1289
8.43k
  end_struct_array("segments")
1290
1291
  // Entry point and stack size
1292
4.21k
  declare_integer("entry_point");
1293
4.21k
  declare_integer("stack_size");
1294
1295
  // Mach-O fat binary header
1296
4.21k
  declare_integer("fat_magic");
1297
4.21k
  declare_integer("nfat_arch");
1298
1299
12.6k
  begin_struct_array("fat_arch")
1300
4.21k
    declare_integer("cputype");
1301
4.21k
    declare_integer("cpusubtype");
1302
4.21k
    declare_integer("offset");
1303
4.21k
    declare_integer("size");
1304
4.21k
    declare_integer("align");
1305
8.43k
  end_struct_array("fat_arch")
1306
1307
  // Included Mach-O files (must be same as single file structure above)
1308
12.6k
  begin_struct_array("file")
1309
1310
    // Single file header
1311
4.21k
    declare_integer("magic");
1312
4.21k
    declare_integer("cputype");
1313
4.21k
    declare_integer("cpusubtype");
1314
4.21k
    declare_integer("filetype");
1315
4.21k
    declare_integer("ncmds");
1316
4.21k
    declare_integer("sizeofcmds");
1317
4.21k
    declare_integer("flags");
1318
4.21k
    declare_integer("reserved");
1319
1320
    // Segments and nested sections
1321
4.21k
    declare_integer("number_of_segments");
1322
1323
12.6k
    begin_struct_array("segments")
1324
4.21k
      declare_string("segname");
1325
4.21k
      declare_integer("vmaddr");
1326
4.21k
      declare_integer("vmsize");
1327
4.21k
      declare_integer("fileoff");
1328
4.21k
      declare_integer("fsize");
1329
4.21k
      declare_integer("maxprot");
1330
4.21k
      declare_integer("initprot");
1331
4.21k
      declare_integer("nsects");
1332
4.21k
      declare_integer("flags");
1333
12.6k
      begin_struct_array("sections")
1334
4.21k
        declare_string("sectname");
1335
4.21k
        declare_string("segname");
1336
4.21k
        declare_integer("addr");
1337
4.21k
        declare_integer("size");
1338
4.21k
        declare_integer("offset");
1339
4.21k
        declare_integer("align");
1340
4.21k
        declare_integer("reloff");
1341
4.21k
        declare_integer("nreloc");
1342
4.21k
        declare_integer("flags");
1343
4.21k
        declare_integer("reserved1");
1344
4.21k
        declare_integer("reserved2");
1345
4.21k
        declare_integer("reserved3");
1346
8.43k
      end_struct_array("sections");
1347
8.43k
    end_struct_array("segments")
1348
1349
    // Entry point and stack size
1350
4.21k
    declare_integer("entry_point");
1351
4.21k
    declare_integer("stack_size");
1352
1353
8.43k
  end_struct_array("file");
1354
1355
  // Mach-O fat binary helper functions
1356
8.43k
  declare_function("file_index_for_arch", "i", "i", file_index_type);
1357
4.21k
  declare_function("file_index_for_arch", "ii", "i", file_index_subtype);
1358
4.21k
  declare_function("entry_point_for_arch", "i", "i", ep_for_arch_type);
1359
4.21k
  declare_function("entry_point_for_arch", "ii", "i", ep_for_arch_subtype);
1360
4.21k
end_declarations
1361
1362
int module_initialize(YR_MODULE* module)
1363
11
{
1364
11
  return ERROR_SUCCESS;
1365
11
}
1366
1367
int module_finalize(YR_MODULE* module)
1368
0
{
1369
0
  return ERROR_SUCCESS;
1370
0
}
1371
1372
int module_load(
1373
    YR_SCAN_CONTEXT* context,
1374
    YR_OBJECT* module_object,
1375
    void* module_data,
1376
    size_t module_data_size)
1377
4.21k
{
1378
4.21k
  YR_MEMORY_BLOCK* block;
1379
4.21k
  YR_MEMORY_BLOCK_ITERATOR* iterator = context->iterator;
1380
1381
4.21k
  foreach_memory_block(iterator, block)
1382
4.21k
  {
1383
4.21k
    const uint8_t* block_data = yr_fetch_block_data(block);
1384
1385
4.21k
    if (block_data == NULL || block->size < 4)
1386
24
      continue;
1387
1388
    // Parse Mach-O binary.
1389
4.18k
    if (is_macho_file_block((uint32_t*) block_data))
1390
1.14k
    {
1391
1.14k
      macho_parse_file(
1392
1.14k
          block_data, block->size, block->base, module_object, context);
1393
1.14k
      break;
1394
1.14k
    }
1395
1396
    // Parse fat Mach-O binary.
1397
3.04k
    if (is_fat_macho_file_block((uint32_t*) block_data))
1398
1.20k
    {
1399
1.20k
      macho_parse_fat_file(
1400
1.20k
          block_data, block->size, block->base, module_object, context);
1401
1.20k
      break;
1402
1.20k
    }
1403
3.04k
  }
1404
1405
4.21k
  macho_set_definitions(module_object);
1406
4.21k
  return ERROR_SUCCESS;
1407
4.21k
}
1408
1409
int module_unload(YR_OBJECT* module_object)
1410
4.21k
{
1411
4.21k
  return ERROR_SUCCESS;
1412
4.21k
}