trts_ecall.cpp 13 KB

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  1. /*
  2. * Copyright (C) 2011-2017 Intel Corporation. All rights reserved.
  3. *
  4. * Redistribution and use in source and binary forms, with or without
  5. * modification, are permitted provided that the following conditions
  6. * are met:
  7. *
  8. * * Redistributions of source code must retain the above copyright
  9. * notice, this list of conditions and the following disclaimer.
  10. * * Redistributions in binary form must reproduce the above copyright
  11. * notice, this list of conditions and the following disclaimer in
  12. * the documentation and/or other materials provided with the
  13. * distribution.
  14. * * Neither the name of Intel Corporation nor the names of its
  15. * contributors may be used to endorse or promote products derived
  16. * from this software without specific prior written permission.
  17. *
  18. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  19. * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  20. * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
  21. * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
  22. * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  23. * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
  24. * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
  25. * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
  26. * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  27. * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  28. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  29. *
  30. */
  31. #include "se_memcpy.h"
  32. #include "thread_data.h"
  33. #include "global_data.h"
  34. #include "rts.h"
  35. #include "util.h"
  36. #include "xsave.h"
  37. #include "sgx_trts.h"
  38. #include "sgx_spinlock.h"
  39. #include "global_init.h"
  40. #include "trts_internal.h"
  41. #include "trts_inst.h"
  42. #include "trts_emodpr.h"
  43. #include "metadata.h"
  44. # include "linux/elf_parser.h"
  45. # define GET_TLS_INFO elf_tls_info
  46. // is_ecall_allowed()
  47. // check the index in the dynamic entry table
  48. static sgx_status_t is_ecall_allowed(uint32_t ordinal)
  49. {
  50. if(ordinal >= g_ecall_table.nr_ecall)
  51. {
  52. return SGX_ERROR_INVALID_FUNCTION;
  53. }
  54. thread_data_t *thread_data = get_thread_data();
  55. if(thread_data->last_sp == thread_data->stack_base_addr)
  56. {
  57. // root ECALL, check the priv bits.
  58. if (g_ecall_table.ecall_table[ordinal].is_priv)
  59. return SGX_ERROR_ECALL_NOT_ALLOWED;
  60. return SGX_SUCCESS;
  61. }
  62. ocall_context_t *context = reinterpret_cast<ocall_context_t*>(thread_data->last_sp);
  63. if(context->ocall_flag != OCALL_FLAG)
  64. {
  65. // abort the enclave if ocall frame is invalid
  66. abort();
  67. }
  68. uintptr_t ocall_index = context->ocall_index;
  69. if(ocall_index >= g_dyn_entry_table.nr_ocall)
  70. {
  71. return SGX_ERROR_INVALID_FUNCTION;
  72. }
  73. return (g_dyn_entry_table.entry_table[ocall_index * g_ecall_table.nr_ecall + ordinal] ? SGX_SUCCESS : SGX_ERROR_ECALL_NOT_ALLOWED);
  74. }
  75. // get_func_addr()
  76. // Get the address of ecall function from the ecall table
  77. // Parameters:
  78. // [IN] ordinal - the index of the ecall function in the ecall table
  79. // Return Value:
  80. // non-zero - success
  81. // zero - fail
  82. //
  83. static sgx_status_t get_func_addr(uint32_t ordinal, void **addr)
  84. {
  85. sgx_status_t status = is_ecall_allowed(ordinal);
  86. if(SGX_SUCCESS != status)
  87. {
  88. return status;
  89. }
  90. *addr = const_cast<void *>(g_ecall_table.ecall_table[ordinal].ecall_addr);
  91. if(!sgx_is_within_enclave(*addr, 0))
  92. {
  93. return SGX_ERROR_UNEXPECTED;
  94. }
  95. return SGX_SUCCESS;
  96. }
  97. typedef struct _tcs_node_t
  98. {
  99. uintptr_t tcs;
  100. struct _tcs_node_t *next;
  101. } tcs_node_t;
  102. static tcs_node_t *g_tcs_node = NULL;
  103. static sgx_spinlock_t g_tcs_node_lock = SGX_SPINLOCK_INITIALIZER;
  104. static uintptr_t g_tcs_cookie = 0;
  105. #define ENC_TCS_POINTER(x) (uintptr_t)(x) ^ g_tcs_cookie
  106. #define DEC_TCS_POINTER(x) (void *)((x) ^ g_tcs_cookie)
  107. // do_save_tcs()
  108. // Save tcs while function do_ecall_add_thread invoked.
  109. // Parameters:
  110. // [IN] ptcs - the tcs_t pointer which need to be saved
  111. // Return Value:
  112. // zero - success
  113. // non-zero - fail
  114. //
  115. static sgx_status_t do_save_tcs(void *ptcs)
  116. {
  117. if(unlikely(g_tcs_cookie == 0))
  118. {
  119. uintptr_t rand = 0;
  120. do
  121. {
  122. if(SGX_SUCCESS != sgx_read_rand((unsigned char *)&rand, sizeof(rand)))
  123. {
  124. return SGX_ERROR_UNEXPECTED;
  125. }
  126. } while(rand == 0);
  127. sgx_spin_lock(&g_tcs_node_lock);
  128. if(g_tcs_cookie == 0)
  129. {
  130. g_tcs_cookie = rand;
  131. }
  132. sgx_spin_unlock(&g_tcs_node_lock);
  133. }
  134. tcs_node_t *tcs_node = (tcs_node_t *)malloc(sizeof(tcs_node_t));
  135. if(!tcs_node)
  136. {
  137. return SGX_ERROR_UNEXPECTED;
  138. }
  139. tcs_node->tcs = ENC_TCS_POINTER(ptcs);
  140. sgx_spin_lock(&g_tcs_node_lock);
  141. tcs_node->next = g_tcs_node;
  142. g_tcs_node = tcs_node;
  143. sgx_spin_unlock(&g_tcs_node_lock);
  144. return SGX_SUCCESS;
  145. }
  146. // do_del_tcs()
  147. // Delete tcs from the global tcs list.
  148. // Parameters:
  149. // [IN] ptcs - the tcs_t pointer which need to be deleted
  150. // Return Value:
  151. // N/A
  152. //
  153. static void do_del_tcs(void *ptcs)
  154. {
  155. sgx_spin_lock(&g_tcs_node_lock);
  156. if (g_tcs_node != NULL)
  157. {
  158. if (DEC_TCS_POINTER(g_tcs_node->tcs) == ptcs)
  159. {
  160. tcs_node_t *tmp = g_tcs_node;
  161. g_tcs_node = g_tcs_node->next;
  162. free(tmp);
  163. }
  164. else
  165. {
  166. tcs_node_t *tcs_node = g_tcs_node->next;
  167. tcs_node_t *pre_tcs_node = g_tcs_node;
  168. while (tcs_node != NULL)
  169. {
  170. if (DEC_TCS_POINTER(tcs_node->tcs) == ptcs)
  171. {
  172. pre_tcs_node->next = tcs_node->next;
  173. free(tcs_node);
  174. break;
  175. }
  176. pre_tcs_node = tcs_node;
  177. tcs_node = tcs_node->next;
  178. }
  179. }
  180. }
  181. sgx_spin_unlock(&g_tcs_node_lock);
  182. }
  183. static volatile bool g_is_first_ecall = true;
  184. static volatile sgx_spinlock_t g_ife_lock = SGX_SPINLOCK_INITIALIZER;
  185. typedef sgx_status_t (*ecall_func_t)(void *ms);
  186. static sgx_status_t trts_ecall(uint32_t ordinal, void *ms)
  187. {
  188. sgx_status_t status = SGX_ERROR_UNEXPECTED;
  189. if (unlikely(g_is_first_ecall))
  190. {
  191. // The thread performing the global initialization cannot do a nested ECall
  192. thread_data_t *thread_data = get_thread_data();
  193. if (thread_data->last_sp != thread_data->stack_base_addr)
  194. { // nested ecall
  195. return SGX_ERROR_ECALL_NOT_ALLOWED;
  196. }
  197. sgx_spin_lock(&g_ife_lock);
  198. if (g_is_first_ecall)
  199. {
  200. #ifndef SE_SIM
  201. if(EDMM_supported)
  202. {
  203. //change back the page permission
  204. size_t enclave_start = (size_t)&__ImageBase;
  205. if((status = change_protection((void *)enclave_start)) != SGX_SUCCESS)
  206. {
  207. sgx_spin_unlock(&g_ife_lock);
  208. return status;
  209. }
  210. }
  211. #endif
  212. //invoke global object's construction
  213. init_global_object();
  214. g_is_first_ecall = false;
  215. }
  216. sgx_spin_unlock(&g_ife_lock);
  217. }
  218. void *addr = NULL;
  219. status = get_func_addr(ordinal, &addr);
  220. if(status == SGX_SUCCESS)
  221. {
  222. ecall_func_t func = (ecall_func_t)addr;
  223. status = func(ms);
  224. }
  225. return status;
  226. }
  227. extern "C" uintptr_t __stack_chk_guard;
  228. static void init_static_stack_canary(void *tcs)
  229. {
  230. size_t *canary = TCS2CANARY(tcs);
  231. *canary = (size_t)__stack_chk_guard;
  232. }
  233. static sgx_status_t do_init_thread(void *tcs)
  234. {
  235. thread_data_t *thread_data = GET_PTR(thread_data_t, tcs, g_global_data.td_template.self_addr);
  236. #ifndef SE_SIM
  237. size_t saved_stack_commit_addr = thread_data->stack_commit_addr;
  238. bool thread_first_init = (saved_stack_commit_addr == 0) ? true : false;
  239. #endif
  240. size_t stack_guard = thread_data->stack_guard;
  241. memcpy_s(thread_data, SE_PAGE_SIZE, const_cast<thread_data_t *>(&g_global_data.td_template), sizeof(thread_data_t));
  242. thread_data->last_sp += (size_t)tcs;
  243. thread_data->self_addr += (size_t)tcs;
  244. thread_data->stack_base_addr += (size_t)tcs;
  245. thread_data->stack_limit_addr += (size_t)tcs;
  246. thread_data->stack_commit_addr = thread_data->stack_limit_addr;
  247. thread_data->first_ssa_gpr += (size_t)tcs;
  248. thread_data->tls_array += (size_t)tcs;
  249. thread_data->tls_addr += (size_t)tcs;
  250. thread_data->last_sp -= (size_t)STATIC_STACK_SIZE;
  251. thread_data->stack_base_addr -= (size_t)STATIC_STACK_SIZE;
  252. thread_data->stack_guard = stack_guard;
  253. init_static_stack_canary(tcs);
  254. #ifndef SE_SIM
  255. if (EDMM_supported && is_dynamic_thread(tcs))
  256. {
  257. if (thread_first_init)
  258. {
  259. uint32_t page_count = get_dynamic_stack_max_page();
  260. thread_data->stack_commit_addr += ((sys_word_t)page_count << SE_PAGE_SHIFT);
  261. }
  262. else
  263. {
  264. thread_data->stack_commit_addr = saved_stack_commit_addr;
  265. }
  266. }
  267. #endif
  268. uintptr_t tls_addr = 0;
  269. size_t tdata_size = 0;
  270. if(0 != GET_TLS_INFO(&__ImageBase, &tls_addr, &tdata_size))
  271. {
  272. return SGX_ERROR_UNEXPECTED;
  273. }
  274. if(tls_addr)
  275. {
  276. memset((void *)TRIM_TO_PAGE(thread_data->tls_addr), 0, ROUND_TO_PAGE(thread_data->self_addr - thread_data->tls_addr));
  277. memcpy_s((void *)(thread_data->tls_addr), thread_data->self_addr - thread_data->tls_addr, (void *)tls_addr, tdata_size);
  278. }
  279. return SGX_SUCCESS;
  280. }
  281. sgx_status_t do_ecall(int index, void *ms, void *tcs)
  282. {
  283. sgx_status_t status = SGX_ERROR_UNEXPECTED;
  284. if(ENCLAVE_INIT_DONE != get_enclave_state())
  285. {
  286. return status;
  287. }
  288. thread_data_t *thread_data = get_thread_data();
  289. if( (NULL == thread_data) || ((thread_data->stack_base_addr == thread_data->last_sp) && (0 != g_global_data.thread_policy)))
  290. {
  291. status = do_init_thread(tcs);
  292. if(0 != status)
  293. {
  294. return status;
  295. }
  296. }
  297. status = trts_ecall(index, ms);
  298. return status;
  299. }
  300. sgx_status_t do_ecall_add_thread(void *ms, void *tcs)
  301. {
  302. sgx_status_t status = SGX_ERROR_UNEXPECTED;
  303. struct ms_tcs *ms_tcs = (struct ms_tcs*)ms;
  304. if (ms_tcs == NULL)
  305. {
  306. return status;
  307. }
  308. if (!sgx_is_outside_enclave(ms_tcs, sizeof(struct ms_tcs)))
  309. {
  310. abort();
  311. }
  312. void* ptcs = ms_tcs->ptcs;
  313. if (ptcs == NULL)
  314. {
  315. return status;
  316. }
  317. status = do_init_thread(tcs);
  318. if(SGX_SUCCESS != status)
  319. {
  320. return status;
  321. }
  322. status = do_save_tcs(ptcs);
  323. if(SGX_SUCCESS != status)
  324. {
  325. return status;
  326. }
  327. status = do_add_thread(ptcs);
  328. if (SGX_SUCCESS != status)
  329. {
  330. do_del_tcs(ptcs);
  331. return status;
  332. }
  333. return status;
  334. }
  335. // do_uninit_enclave()
  336. // Run the global uninitialized functions when the enclave is destroyed.
  337. // Parameters:
  338. // [IN] tcs - used for running this task
  339. // Return Value:
  340. // zero - success
  341. // non-zero - fail
  342. //
  343. sgx_status_t do_uninit_enclave(void *tcs)
  344. {
  345. sgx_spin_lock(&g_tcs_node_lock);
  346. tcs_node_t *tcs_node = g_tcs_node;
  347. g_tcs_node = NULL;
  348. sgx_spin_unlock(&g_tcs_node_lock);
  349. while (tcs_node != NULL)
  350. {
  351. if (DEC_TCS_POINTER(tcs_node->tcs) == tcs)
  352. {
  353. tcs_node_t *tmp = tcs_node;
  354. tcs_node = tcs_node->next;
  355. free(tmp);
  356. continue;
  357. }
  358. size_t start = (size_t)DEC_TCS_POINTER(tcs_node->tcs);
  359. size_t end = start + (1 << SE_PAGE_SHIFT);
  360. int rc = sgx_accept_forward(SI_FLAG_TRIM | SI_FLAG_MODIFIED, start, end);
  361. if(rc != 0)
  362. {
  363. return SGX_ERROR_UNEXPECTED;
  364. }
  365. tcs_node_t *tmp = tcs_node;
  366. tcs_node = tcs_node->next;
  367. free(tmp);
  368. }
  369. sgx_spin_lock(&g_ife_lock);
  370. if (!g_is_first_ecall)
  371. {
  372. uninit_global_object();
  373. }
  374. sgx_spin_unlock(&g_ife_lock);
  375. set_enclave_state(ENCLAVE_CRASHED);
  376. return SGX_SUCCESS;
  377. }
  378. extern "C" sgx_status_t sgx_trts_mprotect(size_t start, size_t size, uint64_t perms)
  379. {
  380. int rc = -1;
  381. size_t page;
  382. sgx_status_t ret = SGX_SUCCESS;
  383. SE_DECLSPEC_ALIGN(sizeof(sec_info_t)) sec_info_t si;
  384. //Error return if start or size is not page-aligned or size is zero.
  385. if (!IS_PAGE_ALIGNED(start) || (size == 0) || !IS_PAGE_ALIGNED(size))
  386. return SGX_ERROR_INVALID_PARAMETER;
  387. ret = change_permissions_ocall(start, size, perms);
  388. if (ret != SGX_SUCCESS)
  389. return ret;
  390. si.flags = perms|SI_FLAG_REG|SI_FLAG_PR;
  391. memset(&si.reserved, 0, sizeof(si.reserved));
  392. for(page = start; page < start + size; page += SE_PAGE_SIZE)
  393. {
  394. do_emodpe(&si, page);
  395. // If the target permission to set is RWX, no EMODPR, hence no EACCEPT.
  396. if ((perms & (SI_FLAG_W|SI_FLAG_X)) != (SI_FLAG_W|SI_FLAG_X))
  397. {
  398. rc = do_eaccept(&si, page);
  399. if(rc != 0)
  400. return (sgx_status_t)rc;
  401. }
  402. }
  403. return SGX_SUCCESS;
  404. }