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1 /* ldid - (Mach-O) Link-Loader Identity Editor
2 * Copyright (C) 2007-2012 Jay Freeman (saurik)
3 */
4
5 /* GNU Affero General Public License, Version 3 {{{ */
6 /*
7 * This program is free software: you can redistribute it and/or modify
8 * it under the terms of the GNU Affero General Public License as published by
9 * the Free Software Foundation, either version 3 of the License, or
10 * (at your option) any later version.
11
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU Affero General Public License for more details.
16
17 * You should have received a copy of the GNU Affero General Public License
18 * along with this program. If not, see <http://www.gnu.org/licenses/>.
19 **/
20 /* }}} */
21
22 #include "minimal/stdlib.h"
23 #include "minimal/string.h"
24 #include "minimal/mapping.h"
25
26 extern "C" {
27 #include "sha1.h"
28 }
29
30 #include <cstring>
31 #include <string>
32 #include <vector>
33
34 #include <sys/wait.h>
35 #include <sys/types.h>
36 #include <sys/stat.h>
37
38 struct fat_header {
39 uint32_t magic;
40 uint32_t nfat_arch;
41 } _packed;
42
43 #define FAT_MAGIC 0xcafebabe
44 #define FAT_CIGAM 0xbebafeca
45
46 struct fat_arch {
47 uint32_t cputype;
48 uint32_t cpusubtype;
49 uint32_t offset;
50 uint32_t size;
51 uint32_t align;
52 } _packed;
53
54 struct mach_header {
55 uint32_t magic;
56 uint32_t cputype;
57 uint32_t cpusubtype;
58 uint32_t filetype;
59 uint32_t ncmds;
60 uint32_t sizeofcmds;
61 uint32_t flags;
62 } _packed;
63
64 #define MH_MAGIC 0xfeedface
65 #define MH_CIGAM 0xcefaedfe
66
67 #define MH_MAGIC_64 0xfeedfacf
68 #define MH_CIGAM_64 0xcffaedfe
69
70 #define MH_DYLDLINK 0x4
71
72 #define MH_OBJECT 0x1
73 #define MH_EXECUTE 0x2
74 #define MH_DYLIB 0x6
75 #define MH_BUNDLE 0x8
76 #define MH_DYLIB_STUB 0x9
77
78 struct load_command {
79 uint32_t cmd;
80 uint32_t cmdsize;
81 } _packed;
82
83 #define LC_REQ_DYLD uint32_t(0x80000000)
84
85 #define LC_SEGMENT uint32_t(0x01)
86 #define LC_SYMTAB uint32_t(0x02)
87 #define LC_DYSYMTAB uint32_t(0x0b)
88 #define LC_LOAD_DYLIB uint32_t(0x0c)
89 #define LC_ID_DYLIB uint32_t(0x0d)
90 #define LC_SEGMENT_64 uint32_t(0x19)
91 #define LC_UUID uint32_t(0x1b)
92 #define LC_CODE_SIGNATURE uint32_t(0x1d)
93 #define LC_SEGMENT_SPLIT_INFO uint32_t(0x1e)
94 #define LC_REEXPORT_DYLIB uint32_t(0x1f | LC_REQ_DYLD)
95 #define LC_ENCRYPTION_INFO uint32_t(0x21)
96 #define LC_DYLD_INFO uint32_t(0x22)
97 #define LC_DYLD_INFO_ONLY uint32_t(0x22 | LC_REQ_DYLD)
98
99 struct dylib {
100 uint32_t name;
101 uint32_t timestamp;
102 uint32_t current_version;
103 uint32_t compatibility_version;
104 } _packed;
105
106 struct dylib_command {
107 uint32_t cmd;
108 uint32_t cmdsize;
109 struct dylib dylib;
110 } _packed;
111
112 struct uuid_command {
113 uint32_t cmd;
114 uint32_t cmdsize;
115 uint8_t uuid[16];
116 } _packed;
117
118 struct symtab_command {
119 uint32_t cmd;
120 uint32_t cmdsize;
121 uint32_t symoff;
122 uint32_t nsyms;
123 uint32_t stroff;
124 uint32_t strsize;
125 } _packed;
126
127 struct dyld_info_command {
128 uint32_t cmd;
129 uint32_t cmdsize;
130 uint32_t rebase_off;
131 uint32_t rebase_size;
132 uint32_t bind_off;
133 uint32_t bind_size;
134 uint32_t weak_bind_off;
135 uint32_t weak_bind_size;
136 uint32_t lazy_bind_off;
137 uint32_t lazy_bind_size;
138 uint32_t export_off;
139 uint32_t export_size;
140 } _packed;
141
142 struct dysymtab_command {
143 uint32_t cmd;
144 uint32_t cmdsize;
145 uint32_t ilocalsym;
146 uint32_t nlocalsym;
147 uint32_t iextdefsym;
148 uint32_t nextdefsym;
149 uint32_t iundefsym;
150 uint32_t nundefsym;
151 uint32_t tocoff;
152 uint32_t ntoc;
153 uint32_t modtaboff;
154 uint32_t nmodtab;
155 uint32_t extrefsymoff;
156 uint32_t nextrefsyms;
157 uint32_t indirectsymoff;
158 uint32_t nindirectsyms;
159 uint32_t extreloff;
160 uint32_t nextrel;
161 uint32_t locreloff;
162 uint32_t nlocrel;
163 } _packed;
164
165 struct dylib_table_of_contents {
166 uint32_t symbol_index;
167 uint32_t module_index;
168 } _packed;
169
170 struct dylib_module {
171 uint32_t module_name;
172 uint32_t iextdefsym;
173 uint32_t nextdefsym;
174 uint32_t irefsym;
175 uint32_t nrefsym;
176 uint32_t ilocalsym;
177 uint32_t nlocalsym;
178 uint32_t iextrel;
179 uint32_t nextrel;
180 uint32_t iinit_iterm;
181 uint32_t ninit_nterm;
182 uint32_t objc_module_info_addr;
183 uint32_t objc_module_info_size;
184 } _packed;
185
186 struct dylib_reference {
187 uint32_t isym:24;
188 uint32_t flags:8;
189 } _packed;
190
191 struct relocation_info {
192 int32_t r_address;
193 uint32_t r_symbolnum:24;
194 uint32_t r_pcrel:1;
195 uint32_t r_length:2;
196 uint32_t r_extern:1;
197 uint32_t r_type:4;
198 } _packed;
199
200 struct nlist {
201 union {
202 char *n_name;
203 int32_t n_strx;
204 } n_un;
205
206 uint8_t n_type;
207 uint8_t n_sect;
208 uint8_t n_desc;
209 uint32_t n_value;
210 } _packed;
211
212 struct segment_command {
213 uint32_t cmd;
214 uint32_t cmdsize;
215 char segname[16];
216 uint32_t vmaddr;
217 uint32_t vmsize;
218 uint32_t fileoff;
219 uint32_t filesize;
220 uint32_t maxprot;
221 uint32_t initprot;
222 uint32_t nsects;
223 uint32_t flags;
224 } _packed;
225
226 struct segment_command_64 {
227 uint32_t cmd;
228 uint32_t cmdsize;
229 char segname[16];
230 uint64_t vmaddr;
231 uint64_t vmsize;
232 uint64_t fileoff;
233 uint64_t filesize;
234 uint32_t maxprot;
235 uint32_t initprot;
236 uint32_t nsects;
237 uint32_t flags;
238 } _packed;
239
240 struct section {
241 char sectname[16];
242 char segname[16];
243 uint32_t addr;
244 uint32_t size;
245 uint32_t offset;
246 uint32_t align;
247 uint32_t reloff;
248 uint32_t nreloc;
249 uint32_t flags;
250 uint32_t reserved1;
251 uint32_t reserved2;
252 } _packed;
253
254 struct section_64 {
255 char sectname[16];
256 char segname[16];
257 uint64_t addr;
258 uint64_t size;
259 uint32_t offset;
260 uint32_t align;
261 uint32_t reloff;
262 uint32_t nreloc;
263 uint32_t flags;
264 uint32_t reserved1;
265 uint32_t reserved2;
266 } _packed;
267
268 struct linkedit_data_command {
269 uint32_t cmd;
270 uint32_t cmdsize;
271 uint32_t dataoff;
272 uint32_t datasize;
273 } _packed;
274
275 struct encryption_info_command {
276 uint32_t cmd;
277 uint32_t cmdsize;
278 uint32_t cryptoff;
279 uint32_t cryptsize;
280 uint32_t cryptid;
281 } _packed;
282
283 #define BIND_OPCODE_MASK 0xf0
284 #define BIND_IMMEDIATE_MASK 0x0f
285 #define BIND_OPCODE_DONE 0x00
286 #define BIND_OPCODE_SET_DYLIB_ORDINAL_IMM 0x10
287 #define BIND_OPCODE_SET_DYLIB_ORDINAL_ULEB 0x20
288 #define BIND_OPCODE_SET_DYLIB_SPECIAL_IMM 0x30
289 #define BIND_OPCODE_SET_SYMBOL_TRAILING_FLAGS_IMM 0x40
290 #define BIND_OPCODE_SET_TYPE_IMM 0x50
291 #define BIND_OPCODE_SET_ADDEND_SLEB 0x60
292 #define BIND_OPCODE_SET_SEGMENT_AND_OFFSET_ULEB 0x70
293 #define BIND_OPCODE_ADD_ADDR_ULEB 0x80
294 #define BIND_OPCODE_DO_BIND 0x90
295 #define BIND_OPCODE_DO_BIND_ADD_ADDR_ULEB 0xa0
296 #define BIND_OPCODE_DO_BIND_ADD_ADDR_IMM_SCALED 0xb0
297 #define BIND_OPCODE_DO_BIND_ULEB_TIMES_SKIPPING_ULEB 0xc0
298
299 template <typename Type_>
300 Type_ Align(Type_ value, size_t align) {
301 value += align - 1;
302 value /= align;
303 value *= align;
304 return value;
305 }
306
307 uint16_t Swap_(uint16_t value) {
308 return
309 ((value >> 8) & 0x00ff) |
310 ((value << 8) & 0xff00);
311 }
312
313 uint32_t Swap_(uint32_t value) {
314 value = ((value >> 8) & 0x00ff00ff) |
315 ((value << 8) & 0xff00ff00);
316 value = ((value >> 16) & 0x0000ffff) |
317 ((value << 16) & 0xffff0000);
318 return value;
319 }
320
321 uint64_t Swap_(uint64_t value) {
322 value = (value & 0x00000000ffffffff) << 32 | (value & 0xffffffff00000000) >> 32;
323 value = (value & 0x0000ffff0000ffff) << 16 | (value & 0xffff0000ffff0000) >> 16;
324 value = (value & 0x00ff00ff00ff00ff) << 8 | (value & 0xff00ff00ff00ff00) >> 8;
325 return value;
326 }
327
328 int16_t Swap_(int16_t value) {
329 return Swap_(static_cast<uint16_t>(value));
330 }
331
332 int32_t Swap_(int32_t value) {
333 return Swap_(static_cast<uint32_t>(value));
334 }
335
336 int64_t Swap_(int64_t value) {
337 return Swap_(static_cast<uint64_t>(value));
338 }
339
340 bool little_(true);
341
342 uint16_t Swap(uint16_t value) {
343 return little_ ? Swap_(value) : value;
344 }
345
346 uint32_t Swap(uint32_t value) {
347 return little_ ? Swap_(value) : value;
348 }
349
350 uint64_t Swap(uint64_t value) {
351 return little_ ? Swap_(value) : value;
352 }
353
354 int16_t Swap(int16_t value) {
355 return Swap(static_cast<uint16_t>(value));
356 }
357
358 int32_t Swap(int32_t value) {
359 return Swap(static_cast<uint32_t>(value));
360 }
361
362 int64_t Swap(int64_t value) {
363 return Swap(static_cast<uint64_t>(value));
364 }
365
366 template <typename Target_>
367 class Pointer;
368
369 class Data {
370 private:
371 void *base_;
372 size_t size_;
373
374 protected:
375 bool swapped_;
376
377 public:
378 Data(void *base, size_t size) :
379 base_(base),
380 size_(size),
381 swapped_(false)
382 {
383 }
384
385 uint16_t Swap(uint16_t value) const {
386 return swapped_ ? Swap_(value) : value;
387 }
388
389 uint32_t Swap(uint32_t value) const {
390 return swapped_ ? Swap_(value) : value;
391 }
392
393 uint64_t Swap(uint64_t value) const {
394 return swapped_ ? Swap_(value) : value;
395 }
396
397 int16_t Swap(int16_t value) const {
398 return Swap(static_cast<uint16_t>(value));
399 }
400
401 int32_t Swap(int32_t value) const {
402 return Swap(static_cast<uint32_t>(value));
403 }
404
405 int64_t Swap(int64_t value) const {
406 return Swap(static_cast<uint64_t>(value));
407 }
408
409 void *GetBase() const {
410 return base_;
411 }
412
413 size_t GetSize() const {
414 return size_;
415 }
416 };
417
418 class MachHeader :
419 public Data
420 {
421 private:
422 bool bits64_;
423
424 struct mach_header *mach_header_;
425 struct load_command *load_command_;
426
427 public:
428 MachHeader(void *base, size_t size) :
429 Data(base, size)
430 {
431 mach_header_ = (mach_header *) base;
432
433 switch (Swap(mach_header_->magic)) {
434 case MH_CIGAM:
435 swapped_ = !swapped_;
436 case MH_MAGIC:
437 bits64_ = false;
438 break;
439
440 case MH_CIGAM_64:
441 swapped_ = !swapped_;
442 case MH_MAGIC_64:
443 bits64_ = true;
444 break;
445
446 default:
447 _assert(false);
448 }
449
450 void *post = mach_header_ + 1;
451 if (bits64_)
452 post = (uint32_t *) post + 1;
453 load_command_ = (struct load_command *) post;
454
455 _assert(
456 Swap(mach_header_->filetype) == MH_EXECUTE ||
457 Swap(mach_header_->filetype) == MH_DYLIB ||
458 Swap(mach_header_->filetype) == MH_BUNDLE
459 );
460 }
461
462 struct mach_header *operator ->() const {
463 return mach_header_;
464 }
465
466 operator struct mach_header *() const {
467 return mach_header_;
468 }
469
470 uint32_t GetCPUType() const {
471 return Swap(mach_header_->cputype);
472 }
473
474 uint32_t GetCPUSubtype() const {
475 return Swap(mach_header_->cpusubtype) & 0xff;
476 }
477
478 struct load_command *GetLoadCommand() const {
479 return load_command_;
480 }
481
482 std::vector<struct load_command *> GetLoadCommands() const {
483 std::vector<struct load_command *> load_commands;
484
485 struct load_command *load_command = load_command_;
486 for (uint32_t cmd = 0; cmd != Swap(mach_header_->ncmds); ++cmd) {
487 load_commands.push_back(load_command);
488 load_command = (struct load_command *) ((uint8_t *) load_command + Swap(load_command->cmdsize));
489 }
490
491 return load_commands;
492 }
493
494 std::vector<segment_command *> GetSegments(const char *segment_name) const {
495 std::vector<struct segment_command *> segment_commands;
496
497 _foreach (load_command, GetLoadCommands()) {
498 if (Swap(load_command->cmd) == LC_SEGMENT) {
499 segment_command *segment_command = reinterpret_cast<struct segment_command *>(load_command);
500 if (strncmp(segment_command->segname, segment_name, 16) == 0)
501 segment_commands.push_back(segment_command);
502 }
503 }
504
505 return segment_commands;
506 }
507
508 std::vector<segment_command_64 *> GetSegments64(const char *segment_name) const {
509 std::vector<struct segment_command_64 *> segment_commands;
510
511 _foreach (load_command, GetLoadCommands()) {
512 if (Swap(load_command->cmd) == LC_SEGMENT_64) {
513 segment_command_64 *segment_command = reinterpret_cast<struct segment_command_64 *>(load_command);
514 if (strncmp(segment_command->segname, segment_name, 16) == 0)
515 segment_commands.push_back(segment_command);
516 }
517 }
518
519 return segment_commands;
520 }
521
522 std::vector<section *> GetSections(const char *segment_name, const char *section_name) const {
523 std::vector<section *> sections;
524
525 _foreach (segment, GetSegments(segment_name)) {
526 section *section = (struct section *) (segment + 1);
527
528 uint32_t sect;
529 for (sect = 0; sect != Swap(segment->nsects); ++sect) {
530 if (strncmp(section->sectname, section_name, 16) == 0)
531 sections.push_back(section);
532 ++section;
533 }
534 }
535
536 return sections;
537 }
538
539 template <typename Target_>
540 Pointer<Target_> GetPointer(uint32_t address, const char *segment_name = NULL) const {
541 load_command *load_command = (struct load_command *) (mach_header_ + 1);
542 uint32_t cmd;
543
544 for (cmd = 0; cmd != Swap(mach_header_->ncmds); ++cmd) {
545 if (Swap(load_command->cmd) == LC_SEGMENT) {
546 segment_command *segment_command = (struct segment_command *) load_command;
547 if (segment_name != NULL && strncmp(segment_command->segname, segment_name, 16) != 0)
548 goto next_command;
549
550 section *sections = (struct section *) (segment_command + 1);
551
552 uint32_t sect;
553 for (sect = 0; sect != Swap(segment_command->nsects); ++sect) {
554 section *section = &sections[sect];
555 //printf("%s %u %p %p %u\n", segment_command->segname, sect, address, section->addr, section->size);
556 if (address >= Swap(section->addr) && address < Swap(section->addr) + Swap(section->size)) {
557 //printf("0x%.8x %s\n", address, segment_command->segname);
558 return Pointer<Target_>(this, reinterpret_cast<Target_ *>(address - Swap(section->addr) + Swap(section->offset) + (char *) mach_header_));
559 }
560 }
561 }
562
563 next_command:
564 load_command = (struct load_command *) ((char *) load_command + Swap(load_command->cmdsize));
565 }
566
567 return Pointer<Target_>(this);
568 }
569
570 template <typename Target_>
571 Pointer<Target_> GetOffset(uint32_t offset) {
572 return Pointer<Target_>(this, reinterpret_cast<Target_ *>(offset + (uint8_t *) mach_header_));
573 }
574 };
575
576 class FatMachHeader :
577 public MachHeader
578 {
579 private:
580 fat_arch *fat_arch_;
581
582 public:
583 FatMachHeader(void *base, size_t size, fat_arch *fat_arch) :
584 MachHeader(base, size),
585 fat_arch_(fat_arch)
586 {
587 }
588
589 fat_arch *GetFatArch() const {
590 return fat_arch_;
591 }
592 };
593
594 class FatHeader :
595 public Data
596 {
597 private:
598 fat_header *fat_header_;
599 std::vector<FatMachHeader> mach_headers_;
600
601 public:
602 FatHeader(void *base, size_t size) :
603 Data(base, size)
604 {
605 fat_header_ = reinterpret_cast<struct fat_header *>(base);
606
607 if (Swap(fat_header_->magic) == FAT_CIGAM) {
608 swapped_ = !swapped_;
609 goto fat;
610 } else if (Swap(fat_header_->magic) != FAT_MAGIC) {
611 fat_header_ = NULL;
612 mach_headers_.push_back(FatMachHeader(base, size, NULL));
613 } else fat: {
614 size_t fat_narch = Swap(fat_header_->nfat_arch);
615 fat_arch *fat_arch = reinterpret_cast<struct fat_arch *>(fat_header_ + 1);
616 size_t arch;
617 for (arch = 0; arch != fat_narch; ++arch) {
618 uint32_t arch_offset = Swap(fat_arch->offset);
619 uint32_t arch_size = Swap(fat_arch->size);
620 mach_headers_.push_back(FatMachHeader((uint8_t *) base + arch_offset, arch_size, fat_arch));
621 ++fat_arch;
622 }
623 }
624 }
625
626 std::vector<FatMachHeader> &GetMachHeaders() {
627 return mach_headers_;
628 }
629
630 bool IsFat() const {
631 return fat_header_ != NULL;
632 }
633
634 struct fat_header *operator ->() const {
635 return fat_header_;
636 }
637
638 operator struct fat_header *() const {
639 return fat_header_;
640 }
641 };
642
643 FatHeader Map(const char *path, bool ro = false) {
644 size_t size;
645 void *base(map(path, 0, _not(size_t), &size, ro));
646 return FatHeader(base, size);
647 }
648
649 template <typename Target_>
650 class Pointer {
651 private:
652 const MachHeader *framework_;
653 const Target_ *pointer_;
654
655 public:
656 Pointer(const MachHeader *framework = NULL, const Target_ *pointer = NULL) :
657 framework_(framework),
658 pointer_(pointer)
659 {
660 }
661
662 operator const Target_ *() const {
663 return pointer_;
664 }
665
666 const Target_ *operator ->() const {
667 return pointer_;
668 }
669
670 Pointer<Target_> &operator ++() {
671 ++pointer_;
672 return *this;
673 }
674
675 template <typename Value_>
676 Value_ Swap(Value_ value) {
677 return framework_->Swap(value);
678 }
679 };
680
681 #define CSMAGIC_CODEDIRECTORY uint32_t(0xfade0c02)
682 #define CSMAGIC_EMBEDDED_SIGNATURE uint32_t(0xfade0cc0)
683 #define CSMAGIC_ENTITLEMENTS uint32_t(0xfade7171)
684
685 #define CSSLOT_CODEDIRECTORY uint32_t(0)
686 #define CSSLOT_REQUIREMENTS uint32_t(2)
687 #define CSSLOT_ENTITLEMENTS uint32_t(5)
688
689 struct BlobIndex {
690 uint32_t type;
691 uint32_t offset;
692 } _packed;
693
694 struct Blob {
695 uint32_t magic;
696 uint32_t length;
697 } _packed;
698
699 struct SuperBlob {
700 struct Blob blob;
701 uint32_t count;
702 struct BlobIndex index[];
703 } _packed;
704
705 struct CodeDirectory {
706 struct Blob blob;
707 uint32_t version;
708 uint32_t flags;
709 uint32_t hashOffset;
710 uint32_t identOffset;
711 uint32_t nSpecialSlots;
712 uint32_t nCodeSlots;
713 uint32_t codeLimit;
714 uint8_t hashSize;
715 uint8_t hashType;
716 uint8_t spare1;
717 uint8_t pageSize;
718 uint32_t spare2;
719 } _packed;
720
721 extern "C" uint32_t hash(uint8_t *k, uint32_t length, uint32_t initval);
722
723 void sha1(uint8_t *hash, uint8_t *data, size_t size) {
724 SHA1Context context;
725 SHA1Reset(&context);
726 SHA1Input(&context, data, size);
727 SHA1Result(&context, hash);
728 }
729
730 struct CodesignAllocation {
731 FatMachHeader mach_header_;
732 uint32_t offset_;
733 uint32_t size_;
734 uint32_t alloc_;
735
736 CodesignAllocation(FatMachHeader mach_header, size_t offset, size_t size, size_t alloc) :
737 mach_header_(mach_header),
738 offset_(offset),
739 size_(size),
740 alloc_(alloc)
741 {
742 }
743 };
744
745 int main(int argc, const char *argv[]) {
746 union {
747 uint16_t word;
748 uint8_t byte[2];
749 } endian = {1};
750
751 little_ = endian.byte[0];
752
753 bool flag_R(false);
754 bool flag_r(false);
755
756 bool flag_t(false);
757 bool flag_p(false);
758 bool flag_u(false);
759 bool flag_e(false);
760
761 bool flag_T(false);
762
763 bool flag_S(false);
764 bool flag_s(false);
765
766 bool flag_O(false);
767
768 bool flag_D(false);
769 bool flag_d(false);
770
771 bool flag_A(false);
772 bool flag_a(false);
773
774 uint32_t flag_CPUType(_not(uint32_t));
775 uint32_t flag_CPUSubtype(_not(uint32_t));
776
777 const char *flag_I(NULL);
778
779 bool timeh(false);
780 uint32_t timev(0);
781
782 const void *xmld(NULL);
783 size_t xmls(0);
784
785 uintptr_t noffset(_not(uintptr_t));
786 uintptr_t woffset(_not(uintptr_t));
787
788 std::vector<std::string> files;
789
790 if (argc == 1) {
791 fprintf(stderr, "usage: %s -S[entitlements.xml] <binary>\n", argv[0]);
792 fprintf(stderr, " %s -e MobileSafari\n", argv[0]);
793 fprintf(stderr, " %s -S cat\n", argv[0]);
794 fprintf(stderr, " %s -Stfp.xml gdb\n", argv[0]);
795 exit(0);
796 }
797
798 for (int argi(1); argi != argc; ++argi)
799 if (argv[argi][0] != '-')
800 files.push_back(argv[argi]);
801 else switch (argv[argi][1]) {
802 case 'R': flag_R = true; break;
803 case 'r': flag_r = true; break;
804
805 case 't': flag_t = true; break;
806 case 'u': flag_u = true; break;
807 case 'p': flag_p = true; break;
808 case 'e': flag_e = true; break;
809 case 'O': flag_O = true; break;
810
811 case 'D': flag_D = true; break;
812 case 'd': flag_d = true; break;
813
814 case 'a': flag_a = true; break;
815
816 case 'A':
817 flag_A = true;
818 if (argv[argi][2] != '\0') {
819 const char *cpu = argv[argi] + 2;
820 const char *colon = strchr(cpu, ':');
821 _assert(colon != NULL);
822 char *arge;
823 flag_CPUType = strtoul(cpu, &arge, 0);
824 _assert(arge == colon);
825 flag_CPUSubtype = strtoul(colon + 1, &arge, 0);
826 _assert(arge == argv[argi] + strlen(argv[argi]));
827 }
828 break;
829
830 case 's':
831 _assert(!flag_S);
832 flag_s = true;
833 break;
834
835 case 'S':
836 _assert(!flag_s);
837 flag_S = true;
838 if (argv[argi][2] != '\0') {
839 const char *xml = argv[argi] + 2;
840 xmld = map(xml, 0, _not(size_t), &xmls, true);
841 }
842 break;
843
844 case 'T': {
845 flag_T = true;
846 if (argv[argi][2] == '-')
847 timeh = true;
848 else {
849 char *arge;
850 timev = strtoul(argv[argi] + 2, &arge, 0);
851 _assert(arge == argv[argi] + strlen(argv[argi]));
852 }
853 } break;
854
855 case 'I': {
856 flag_I = argv[argi] + 2;
857 } break;
858
859 case 'n': {
860 char *arge;
861 noffset = strtoul(argv[argi] + 2, &arge, 0);
862 _assert(arge == argv[argi] + strlen(argv[argi]));
863 } break;
864
865 case 'w': {
866 char *arge;
867 woffset = strtoul(argv[argi] + 2, &arge, 0);
868 _assert(arge == argv[argi] + strlen(argv[argi]));
869 } break;
870
871 default:
872 goto usage;
873 break;
874 }
875
876 if (files.empty()) usage: {
877 exit(0);
878 }
879
880 size_t filei(0), filee(0);
881 _foreach (file, files) try {
882 const char *path(file.c_str());
883 const char *base = strrchr(path, '/');
884 char *temp(NULL), *dir;
885
886 if (base != NULL)
887 dir = strndup_(path, base++ - path + 1);
888 else {
889 dir = strdup("");
890 base = path;
891 }
892
893 const char *name(flag_I ?: base);
894
895 if (flag_r) {
896 uint32_t clip(0); {
897 FatHeader fat_header(Map(path));
898 _foreach (mach_header, fat_header.GetMachHeaders()) {
899 if (flag_A) {
900 if (mach_header.GetCPUType() != flag_CPUType)
901 continue;
902 if (mach_header.GetCPUSubtype() != flag_CPUSubtype)
903 continue;
904 }
905
906 mach_header->flags = mach_header.Swap(mach_header.Swap(mach_header->flags) | MH_DYLDLINK);
907
908 uint32_t size(_not(uint32_t)); {
909 _foreach (load_command, mach_header.GetLoadCommands()) {
910 switch (mach_header.Swap(load_command->cmd)) {
911 case LC_CODE_SIGNATURE: {
912 struct linkedit_data_command *signature = reinterpret_cast<struct linkedit_data_command *>(load_command);
913 memset(reinterpret_cast<uint8_t *>(mach_header.GetBase()) + mach_header.Swap(signature->dataoff), 0, mach_header.Swap(signature->datasize));
914 memset(signature, 0, sizeof(struct linkedit_data_command));
915
916 mach_header->ncmds = mach_header.Swap(mach_header.Swap(mach_header->ncmds) - 1);
917 mach_header->sizeofcmds = mach_header.Swap(uint32_t(mach_header.Swap(mach_header->sizeofcmds) - sizeof(struct linkedit_data_command)));
918 } break;
919
920 case LC_SYMTAB: {
921 struct symtab_command *symtab = reinterpret_cast<struct symtab_command *>(load_command);
922 size = mach_header.Swap(symtab->stroff) + mach_header.Swap(symtab->strsize);
923 } break;
924 }
925 }
926 }
927
928 _assert(size != _not(uint32_t));
929
930 _foreach (segment, mach_header.GetSegments("__LINKEDIT")) {
931 segment->filesize -= mach_header.GetSize() - size;
932
933 if (fat_arch *fat_arch = mach_header.GetFatArch()) {
934 fat_arch->size = fat_header.Swap(size);
935 clip = std::max(clip, fat_header.Swap(fat_arch->offset) + size);
936 } else
937 clip = std::max(clip, size);
938 }
939
940 _foreach (segment, mach_header.GetSegments64("__LINKEDIT")) {
941 segment->filesize -= mach_header.GetSize() - size;
942
943 if (fat_arch *fat_arch = mach_header.GetFatArch()) {
944 fat_arch->size = fat_header.Swap(size);
945 clip = std::max(clip, fat_header.Swap(fat_arch->offset) + size);
946 } else
947 clip = std::max(clip, size);
948 }
949 }
950 }
951
952 if (clip != 0)
953 _syscall(truncate(path, clip));
954 }
955
956 if (flag_S) {
957 FatHeader source(Map(path));
958
959 size_t offset(0);
960
961 if (source.IsFat())
962 offset += sizeof(fat_header) + sizeof(fat_arch) * source.Swap(source->nfat_arch);
963
964 std::vector<CodesignAllocation> allocations; {
965 _foreach (mach_header, source.GetMachHeaders()) {
966 if (flag_A) {
967 if (mach_header.GetCPUType() != flag_CPUType)
968 continue;
969 if (mach_header.GetCPUSubtype() != flag_CPUSubtype)
970 continue;
971 }
972
973 mach_header->flags = mach_header.Swap(mach_header.Swap(mach_header->flags) | MH_DYLDLINK);
974
975 size_t size(_not(size_t)); {
976 _foreach (load_command, mach_header.GetLoadCommands()) {
977 uint32_t cmd(mach_header.Swap(load_command->cmd));
978 if (cmd == LC_CODE_SIGNATURE) {
979 struct linkedit_data_command *signature = reinterpret_cast<struct linkedit_data_command *>(load_command);
980 size = mach_header.Swap(signature->dataoff);
981 _assert(size < mach_header.GetSize());
982 break;
983 }
984 }
985
986 if (size == _not(size_t))
987 size = mach_header.GetSize();
988 }
989
990 size_t alloc(0);
991 alloc += sizeof(struct SuperBlob);
992 uint32_t special(0);
993
994 special = std::max(special, CSSLOT_CODEDIRECTORY);
995 alloc += sizeof(struct BlobIndex);
996 alloc += sizeof(struct CodeDirectory);
997 alloc += strlen(name) + 1;
998
999 special = std::max(special, CSSLOT_REQUIREMENTS);
1000 alloc += sizeof(struct BlobIndex);
1001 alloc += 0xc;
1002
1003 if (xmld != NULL) {
1004 special = std::max(special, CSSLOT_ENTITLEMENTS);
1005 alloc += sizeof(struct BlobIndex);
1006 alloc += sizeof(struct Blob);
1007 alloc += xmls;
1008 }
1009
1010 size_t normal((size + 0x1000 - 1) / 0x1000);
1011 alloc = Align(alloc + (special + normal) * 0x14, 16);
1012
1013 offset = Align(offset, 4096);
1014 allocations.push_back(CodesignAllocation(mach_header, offset, size, alloc));
1015 offset += size + alloc;
1016 }
1017 }
1018
1019 asprintf(&temp, "%s.%s.cs", dir, base);
1020 fclose(fopen(temp, "w+"));
1021 truncate(temp, offset);
1022
1023 void *file(map(temp, 0, offset, NULL, false));
1024 memset(file, 0, offset);
1025
1026 fat_arch *fat_arch;
1027 if (!source.IsFat())
1028 fat_arch = NULL;
1029 else {
1030 auto *fat_header(reinterpret_cast<struct fat_header *>(file));
1031 fat_header->magic = Swap(FAT_MAGIC);
1032 fat_header->nfat_arch = Swap(source.Swap(source->nfat_arch));
1033 fat_arch = reinterpret_cast<struct fat_arch *>(fat_header + 1);
1034 }
1035
1036 _foreach (allocation, allocations) {
1037 auto &source(allocation.mach_header_);
1038
1039 uint32_t align(allocation.size_);
1040 align = Align(align, 0x10);
1041
1042 if (fat_arch != NULL) {
1043 fat_arch->cputype = Swap(source->cputype);
1044 fat_arch->cpusubtype = Swap(source->cpusubtype);
1045 fat_arch->offset = Swap(allocation.offset_);
1046 fat_arch->size = Swap(align + allocation.alloc_);
1047 fat_arch->align = Swap(0xc);
1048 ++fat_arch;
1049 }
1050
1051 void *target(reinterpret_cast<uint8_t *>(file) + allocation.offset_);
1052 memcpy(target, source, allocation.size_);
1053 MachHeader mach_header(target, align + allocation.alloc_);
1054
1055 struct linkedit_data_command *signature(NULL);
1056 _foreach (load_command, mach_header.GetLoadCommands()) {
1057 uint32_t cmd(mach_header.Swap(load_command->cmd));
1058 if (cmd != LC_CODE_SIGNATURE)
1059 continue;
1060 signature = reinterpret_cast<struct linkedit_data_command *>(load_command);
1061 break;
1062 }
1063
1064 if (signature == NULL) {
1065 mach_header->ncmds = mach_header.Swap(mach_header.Swap(mach_header->ncmds) + 1);
1066 signature = reinterpret_cast<struct linkedit_data_command *>(reinterpret_cast<uint8_t *>(mach_header.GetLoadCommand()) + mach_header.Swap(mach_header->sizeofcmds));
1067 mach_header->sizeofcmds = mach_header.Swap(mach_header.Swap(mach_header->sizeofcmds) + uint32_t(sizeof(*signature)));
1068 signature->cmd = mach_header.Swap(LC_CODE_SIGNATURE);
1069 signature->cmdsize = mach_header.Swap(uint32_t(sizeof(*signature)));
1070 }
1071
1072 signature->dataoff = mach_header.Swap(align);
1073 signature->datasize = mach_header.Swap(allocation.alloc_);
1074
1075 _foreach (segment, mach_header.GetSegments("__LINKEDIT"))
1076 segment->filesize = mach_header.Swap(align + allocation.alloc_ - mach_header.Swap(segment->fileoff));
1077 _foreach (segment, mach_header.GetSegments64("__LINKEDIT"))
1078 segment->filesize = mach_header.Swap(align + allocation.alloc_ - mach_header.Swap(segment->fileoff));
1079 }
1080 }
1081
1082 if (flag_p)
1083 printf("path%zu='%s'\n", filei, file.c_str());
1084
1085 FatHeader fat_header(Map(temp == NULL ? path : temp, !(flag_R || flag_T || flag_s || flag_S || flag_O || flag_D)));
1086 struct linkedit_data_command *signature(NULL);
1087
1088 _foreach (mach_header, fat_header.GetMachHeaders()) {
1089 if (flag_A) {
1090 if (mach_header.GetCPUType() != flag_CPUType)
1091 continue;
1092 if (mach_header.GetCPUSubtype() != flag_CPUSubtype)
1093 continue;
1094 }
1095
1096 if (flag_a)
1097 printf("cpu=0x%x:0x%x\n", mach_header.GetCPUType(), mach_header.GetCPUSubtype());
1098
1099 if (flag_d) {
1100 if (struct fat_arch *fat_arch = mach_header.GetFatArch())
1101 printf("offset=0x%x\n", Swap(fat_arch->offset));
1102 else
1103 printf("offset=0x0\n");
1104 }
1105
1106 if (woffset != _not(uintptr_t)) {
1107 Pointer<uint32_t> wvalue(mach_header.GetPointer<uint32_t>(woffset));
1108 if (wvalue == NULL)
1109 printf("(null) %p\n", reinterpret_cast<void *>(woffset));
1110 else
1111 printf("0x%.08x\n", *wvalue);
1112 }
1113
1114 if (noffset != _not(uintptr_t))
1115 printf("%s\n", &*mach_header.GetPointer<char>(noffset));
1116
1117 if (flag_d)
1118 _foreach(segment, mach_header.GetSegments("__TEXT")) {
1119 printf("vmaddr=0x%x\n", mach_header.Swap(segment->vmaddr));
1120 printf("fileoff=0x%x\n", mach_header.Swap(segment->fileoff));
1121 }
1122
1123 if (flag_O) {
1124 _foreach(section, mach_header.GetSections("__TEXT", "__text"))
1125 section->addr = mach_header.Swap(0);
1126 }
1127
1128 _foreach (load_command, mach_header.GetLoadCommands()) {
1129 uint32_t cmd(mach_header.Swap(load_command->cmd));
1130
1131 if (flag_R && cmd == LC_REEXPORT_DYLIB)
1132 load_command->cmd = mach_header.Swap(LC_LOAD_DYLIB);
1133 else if (cmd == LC_CODE_SIGNATURE)
1134 signature = reinterpret_cast<struct linkedit_data_command *>(load_command);
1135 else if (cmd == LC_UUID) {
1136 volatile struct uuid_command *uuid_command(reinterpret_cast<struct uuid_command *>(load_command));
1137
1138 if (flag_u) {
1139 printf("uuid%zu=%.2x%.2x%.2x%.2x-%.2x%.2x-%.2x%.2x-%.2x%.2x-%.2x%.2x%.2x%.2x%.2x%.2x\n", filei,
1140 uuid_command->uuid[ 0], uuid_command->uuid[ 1], uuid_command->uuid[ 2], uuid_command->uuid[ 3],
1141 uuid_command->uuid[ 4], uuid_command->uuid[ 5], uuid_command->uuid[ 6], uuid_command->uuid[ 7],
1142 uuid_command->uuid[ 8], uuid_command->uuid[ 9], uuid_command->uuid[10], uuid_command->uuid[11],
1143 uuid_command->uuid[12], uuid_command->uuid[13], uuid_command->uuid[14], uuid_command->uuid[15]
1144 );
1145 }
1146 } else if (cmd == LC_ID_DYLIB) {
1147 volatile struct dylib_command *dylib_command(reinterpret_cast<struct dylib_command *>(load_command));
1148
1149 if (flag_t)
1150 printf("time%zu=0x%.8x\n", filei, mach_header.Swap(dylib_command->dylib.timestamp));
1151
1152 if (flag_T) {
1153 uint32_t timed;
1154
1155 if (!timeh)
1156 timed = timev;
1157 else {
1158 dylib_command->dylib.timestamp = 0;
1159 timed = hash(reinterpret_cast<uint8_t *>(mach_header.GetBase()), mach_header.GetSize(), timev);
1160 }
1161
1162 dylib_command->dylib.timestamp = mach_header.Swap(timed);
1163 }
1164 } else if (cmd == LC_ENCRYPTION_INFO) {
1165 volatile struct encryption_info_command *encryption_info_command(reinterpret_cast<struct encryption_info_command *>(load_command));
1166
1167 if (flag_D)
1168 encryption_info_command->cryptid = mach_header.Swap(0);
1169
1170 if (flag_d) {
1171 printf("cryptoff=0x%x\n", mach_header.Swap(encryption_info_command->cryptoff));
1172 printf("cryptsize=0x%x\n", mach_header.Swap(encryption_info_command->cryptsize));
1173 printf("cryptid=0x%x\n", mach_header.Swap(encryption_info_command->cryptid));
1174 }
1175 }
1176 }
1177
1178 if (flag_e) {
1179 _assert(signature != NULL);
1180
1181 uint32_t data = mach_header.Swap(signature->dataoff);
1182
1183 uint8_t *top = reinterpret_cast<uint8_t *>(mach_header.GetBase());
1184 uint8_t *blob = top + data;
1185 struct SuperBlob *super = reinterpret_cast<struct SuperBlob *>(blob);
1186
1187 for (size_t index(0); index != Swap(super->count); ++index)
1188 if (Swap(super->index[index].type) == CSSLOT_ENTITLEMENTS) {
1189 uint32_t begin = Swap(super->index[index].offset);
1190 struct Blob *entitlements = reinterpret_cast<struct Blob *>(blob + begin);
1191 fwrite(entitlements + 1, 1, Swap(entitlements->length) - sizeof(struct Blob), stdout);
1192 }
1193 }
1194
1195 if (flag_s) {
1196 _assert(signature != NULL);
1197
1198 uint32_t data = mach_header.Swap(signature->dataoff);
1199
1200 uint8_t *top = reinterpret_cast<uint8_t *>(mach_header.GetBase());
1201 uint8_t *blob = top + data;
1202 struct SuperBlob *super = reinterpret_cast<struct SuperBlob *>(blob);
1203
1204 for (size_t index(0); index != Swap(super->count); ++index)
1205 if (Swap(super->index[index].type) == CSSLOT_CODEDIRECTORY) {
1206 uint32_t begin = Swap(super->index[index].offset);
1207 struct CodeDirectory *directory = reinterpret_cast<struct CodeDirectory *>(blob + begin);
1208
1209 uint8_t (*hashes)[20] = reinterpret_cast<uint8_t (*)[20]>(blob + begin + Swap(directory->hashOffset));
1210 uint32_t pages = Swap(directory->nCodeSlots);
1211
1212 if (pages != 1)
1213 for (size_t i = 0; i != pages - 1; ++i)
1214 sha1(hashes[i], top + 0x1000 * i, 0x1000);
1215 if (pages != 0)
1216 sha1(hashes[pages - 1], top + 0x1000 * (pages - 1), ((data - 1) % 0x1000) + 1);
1217 }
1218 }
1219
1220 if (flag_S) {
1221 _assert(signature != NULL);
1222
1223 uint32_t data = mach_header.Swap(signature->dataoff);
1224 uint32_t size = mach_header.Swap(signature->datasize);
1225
1226 uint8_t *top = reinterpret_cast<uint8_t *>(mach_header.GetBase());
1227 uint8_t *blob = top + data;
1228 struct SuperBlob *super = reinterpret_cast<struct SuperBlob *>(blob);
1229 super->blob.magic = Swap(CSMAGIC_EMBEDDED_SIGNATURE);
1230
1231 uint32_t count = xmld == NULL ? 2 : 3;
1232 uint32_t offset = sizeof(struct SuperBlob) + count * sizeof(struct BlobIndex);
1233
1234 super->index[0].type = Swap(CSSLOT_CODEDIRECTORY);
1235 super->index[0].offset = Swap(offset);
1236
1237 uint32_t begin = offset;
1238 struct CodeDirectory *directory = reinterpret_cast<struct CodeDirectory *>(blob + begin);
1239 offset += sizeof(struct CodeDirectory);
1240
1241 directory->blob.magic = Swap(CSMAGIC_CODEDIRECTORY);
1242 directory->version = Swap(uint32_t(0x00020001));
1243 directory->flags = Swap(uint32_t(0));
1244 directory->codeLimit = Swap(data);
1245 directory->hashSize = 0x14;
1246 directory->hashType = 0x01;
1247 directory->spare1 = 0x00;
1248 directory->pageSize = 0x0c;
1249 directory->spare2 = Swap(uint32_t(0));
1250
1251 directory->identOffset = Swap(offset - begin);
1252 strcpy(reinterpret_cast<char *>(blob + offset), name);
1253 offset += strlen(name) + 1;
1254
1255 uint32_t special = xmld == NULL ? CSSLOT_REQUIREMENTS : CSSLOT_ENTITLEMENTS;
1256 directory->nSpecialSlots = Swap(special);
1257
1258 uint8_t (*hashes)[20] = reinterpret_cast<uint8_t (*)[20]>(blob + offset);
1259 memset(hashes, 0, sizeof(*hashes) * special);
1260
1261 offset += sizeof(*hashes) * special;
1262 hashes += special;
1263
1264 uint32_t pages = (data + 0x1000 - 1) / 0x1000;
1265 directory->nCodeSlots = Swap(pages);
1266
1267 if (pages != 1)
1268 for (size_t i = 0; i != pages - 1; ++i)
1269 sha1(hashes[i], top + 0x1000 * i, 0x1000);
1270 if (pages != 0)
1271 sha1(hashes[pages - 1], top + 0x1000 * (pages - 1), ((data - 1) % 0x1000) + 1);
1272
1273 directory->hashOffset = Swap(offset - begin);
1274 offset += sizeof(*hashes) * pages;
1275 directory->blob.length = Swap(offset - begin);
1276
1277 super->index[1].type = Swap(CSSLOT_REQUIREMENTS);
1278 super->index[1].offset = Swap(offset);
1279
1280 memcpy(blob + offset, "\xfa\xde\x0c\x01\x00\x00\x00\x0c\x00\x00\x00\x00", 0xc);
1281 offset += 0xc;
1282
1283 if (xmld != NULL) {
1284 super->index[2].type = Swap(CSSLOT_ENTITLEMENTS);
1285 super->index[2].offset = Swap(offset);
1286
1287 uint32_t begin = offset;
1288 struct Blob *entitlements = reinterpret_cast<struct Blob *>(blob + begin);
1289 offset += sizeof(struct Blob);
1290
1291 memcpy(blob + offset, xmld, xmls);
1292 offset += xmls;
1293
1294 entitlements->magic = Swap(CSMAGIC_ENTITLEMENTS);
1295 entitlements->length = Swap(offset - begin);
1296 }
1297
1298 for (size_t index(0); index != count; ++index) {
1299 uint32_t type = Swap(super->index[index].type);
1300 if (type != 0 && type <= special) {
1301 uint32_t offset = Swap(super->index[index].offset);
1302 struct Blob *local = (struct Blob *) (blob + offset);
1303 sha1((uint8_t *) (hashes - type), (uint8_t *) local, Swap(local->length));
1304 }
1305 }
1306
1307 super->count = Swap(count);
1308 super->blob.length = Swap(offset);
1309
1310 if (offset > size) {
1311 fprintf(stderr, "offset (%u) > size (%u)\n", offset, size);
1312 _assert(false);
1313 } //else fprintf(stderr, "offset (%zu) <= size (%zu)\n", offset, size);
1314
1315 memset(blob + offset, 0, size - offset);
1316 }
1317 }
1318
1319 if (flag_S) {
1320 uint8_t *top = reinterpret_cast<uint8_t *>(fat_header.GetBase());
1321 size_t size = fat_header.GetSize();
1322
1323 char *copy;
1324 asprintf(&copy, "%s.%s.cp", dir, base);
1325 FILE *file = fopen(copy, "w+");
1326 size_t writ = fwrite(top, 1, size, file);
1327 _assert(writ == size);
1328 fclose(file);
1329
1330 _syscall(unlink(temp));
1331 free(temp);
1332 temp = copy;
1333 }
1334
1335 if (temp != NULL) {
1336 struct stat info;
1337 _syscall(stat(path, &info));
1338 _syscall(chown(temp, info.st_uid, info.st_gid));
1339 _syscall(chmod(temp, info.st_mode));
1340 _syscall(unlink(path));
1341 _syscall(rename(temp, path));
1342 free(temp);
1343 }
1344
1345 free(dir);
1346 ++filei;
1347 } catch (const char *) {
1348 ++filee;
1349 ++filei;
1350 }
1351
1352 return filee;
1353 }