sgx_main.c 30 KB

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  1. /* -*- mode:c; c-file-style:"k&r"; c-basic-offset: 4; tab-width:4; indent-tabs-mode:nil; mode:auto-fill; fill-column:78; -*- */
  2. /* vim: set ts=4 sw=4 et tw=78 fo=cqt wm=0: */
  3. #include <pal_linux.h>
  4. #include <pal_rtld.h>
  5. #include "sgx_internal.h"
  6. #include "sgx_tls.h"
  7. #include "sgx_enclave.h"
  8. #include "debugger/sgx_gdb.h"
  9. #include <asm/fcntl.h>
  10. #include <asm/socket.h>
  11. #include <linux/fs.h>
  12. #include <linux/in.h>
  13. #include <linux/in6.h>
  14. #include <asm/errno.h>
  15. #include <sysdep.h>
  16. #include <sysdeps/generic/ldsodefs.h>
  17. #define ENCLAVE_FILENAME PAL_FILE("libpal-enclave.so")
  18. unsigned long pagesize = PRESET_PAGESIZE;
  19. unsigned long pagemask = ~(PRESET_PAGESIZE - 1);
  20. unsigned long pageshift = PRESET_PAGESIZE - 1;
  21. static inline
  22. const char * alloc_concat(const char * p, int plen,
  23. const char * s, int slen)
  24. {
  25. plen = (plen != -1) ? plen : (p ? strlen(p) : 0);
  26. slen = (slen != -1) ? slen : (s ? strlen(s) : 0);
  27. char * buf = malloc(plen + slen + 1);
  28. if (plen)
  29. memcpy(buf, p, plen);
  30. if (slen)
  31. memcpy(buf + plen, s, slen);
  32. buf[plen + slen] = '\0';
  33. return buf;
  34. }
  35. static unsigned long parse_int (const char * str)
  36. {
  37. unsigned long num = 0;
  38. int radix = 10;
  39. char c;
  40. if (str[0] == '0') {
  41. str++;
  42. radix = 8;
  43. if (str[0] == 'x') {
  44. str++;
  45. radix = 16;
  46. }
  47. }
  48. while ((c = *(str++))) {
  49. int val;
  50. if (c >= 'A' && c <= 'F')
  51. val = c - 'A' + 10;
  52. else if (c >= 'a' && c <= 'f')
  53. val = c - 'a' + 10;
  54. else if (c >= '0' && c <= '9')
  55. val = c - '0';
  56. else
  57. break;
  58. if (val >= radix)
  59. break;
  60. num = num * radix + val;
  61. }
  62. if (c == 'G' || c == 'g')
  63. num *= 1024 * 1024 * 1024;
  64. else if (c == 'M' || c == 'm')
  65. num *= 1024 * 1024;
  66. else if (c == 'K' || c == 'k')
  67. num *= 1024;
  68. return num;
  69. }
  70. static const char * resolve_uri (const char * uri, const char ** errstring)
  71. {
  72. if (!strpartcmp_static(uri, "file:")) {
  73. *errstring = "Invalid URI";
  74. return NULL;
  75. }
  76. char path_buf[URI_MAX];
  77. int len = get_norm_path(uri + 5, path_buf, 0, URI_MAX);
  78. if (len < 0) {
  79. *errstring = "Invalid URI";
  80. return NULL;
  81. }
  82. return alloc_concat("file:", static_strlen("file:"), path_buf, len);
  83. }
  84. static
  85. int scan_enclave_binary (int fd, unsigned long * base, unsigned long * size,
  86. unsigned long * entry)
  87. {
  88. int ret = 0;
  89. if (IS_ERR(ret = INLINE_SYSCALL(lseek, 3, fd, 0, SEEK_SET)))
  90. return -ERRNO(ret);
  91. char filebuf[FILEBUF_SIZE];
  92. ret = INLINE_SYSCALL(read, 3, fd, filebuf, FILEBUF_SIZE);
  93. if (IS_ERR(ret))
  94. return -ERRNO(ret);
  95. const ElfW(Ehdr) * header = (void *) filebuf;
  96. const ElfW(Phdr) * phdr = (void *) filebuf + header->e_phoff;
  97. const ElfW(Phdr) * ph;
  98. struct loadcmd {
  99. ElfW(Addr) mapstart, mapend;
  100. } loadcmds[16], *c;
  101. int nloadcmds = 0;
  102. for (ph = phdr ; ph < &phdr[header->e_phnum] ; ph++)
  103. if (ph->p_type == PT_LOAD) {
  104. if (nloadcmds == 16)
  105. return -EINVAL;
  106. c = &loadcmds[nloadcmds++];
  107. c->mapstart = ALLOC_ALIGNDOWN(ph->p_vaddr);
  108. c->mapend = ALLOC_ALIGNUP(ph->p_vaddr + ph->p_memsz);
  109. }
  110. *base = loadcmds[0].mapstart;
  111. *size = loadcmds[nloadcmds - 1].mapend - loadcmds[0].mapstart;
  112. if (entry)
  113. *entry = header->e_entry;
  114. return 0;
  115. }
  116. static
  117. int load_enclave_binary (sgx_arch_secs_t * secs, int fd,
  118. unsigned long base, unsigned long prot)
  119. {
  120. int ret = 0;
  121. if (IS_ERR(ret = INLINE_SYSCALL(lseek, 3, fd, 0, SEEK_SET)))
  122. return -ERRNO(ret);
  123. char filebuf[FILEBUF_SIZE];
  124. ret = INLINE_SYSCALL(read, 3, fd, filebuf, FILEBUF_SIZE);
  125. if (IS_ERR(ret))
  126. return -ERRNO(ret);
  127. const ElfW(Ehdr) * header = (void *) filebuf;
  128. const ElfW(Phdr) * phdr = (void *) filebuf + header->e_phoff;
  129. const ElfW(Phdr) * ph;
  130. struct loadcmd {
  131. ElfW(Addr) mapstart, mapend, datastart, dataend, allocend;
  132. unsigned int mapoff;
  133. int prot;
  134. } loadcmds[16], *c;
  135. int nloadcmds = 0;
  136. for (ph = phdr ; ph < &phdr[header->e_phnum] ; ph++)
  137. if (ph->p_type == PT_LOAD) {
  138. if (nloadcmds == 16)
  139. return -EINVAL;
  140. c = &loadcmds[nloadcmds++];
  141. c->mapstart = ALLOC_ALIGNDOWN(ph->p_vaddr);
  142. c->mapend = ALLOC_ALIGNUP(ph->p_vaddr + ph->p_filesz);
  143. c->datastart = ph->p_vaddr;
  144. c->dataend = ph->p_vaddr + ph->p_filesz;
  145. c->allocend = ph->p_vaddr + ph->p_memsz;
  146. c->mapoff = ALLOC_ALIGNDOWN(ph->p_offset);
  147. c->prot = (ph->p_flags & PF_R ? PROT_READ : 0)|
  148. (ph->p_flags & PF_W ? PROT_WRITE : 0)|
  149. (ph->p_flags & PF_X ? PROT_EXEC : 0)|prot;
  150. #define SGX_SECINFO_FLAGS_R 0x001
  151. }
  152. base -= loadcmds[0].mapstart;
  153. for (c = loadcmds; c < &loadcmds[nloadcmds] ; c++) {
  154. ElfW(Addr) zero = c->dataend;
  155. ElfW(Addr) zeroend = ALLOC_ALIGNUP(c->allocend);
  156. ElfW(Addr) zeropage = ALLOC_ALIGNUP(zero);
  157. if (zeroend < zeropage)
  158. zeropage = zeroend;
  159. if (c->mapend > c->mapstart) {
  160. void * addr = (void *) INLINE_SYSCALL(mmap, 6, NULL,
  161. c->mapend - c->mapstart,
  162. PROT_READ|PROT_WRITE,
  163. MAP_PRIVATE | MAP_FILE,
  164. fd, c->mapoff);
  165. if (IS_ERR_P(addr))
  166. return -ERRNO_P(addr);
  167. if (c->datastart > c->mapstart)
  168. memset(addr, 0, c->datastart - c->mapstart);
  169. if (zeropage > zero)
  170. memset(addr + zero - c->mapstart, 0, zeropage - zero);
  171. ret = add_pages_to_enclave(secs, (void *) base + c->mapstart, addr,
  172. c->mapend - c->mapstart,
  173. SGX_PAGE_REG, c->prot, 0,
  174. (c->prot & PROT_EXEC) ? "code" : "data");
  175. INLINE_SYSCALL(munmap, 2, addr, c->mapend - c->mapstart);
  176. if (ret < 0)
  177. return ret;
  178. }
  179. if (zeroend > zeropage) {
  180. ret = add_pages_to_enclave(secs, (void *) base + zeropage, NULL,
  181. zeroend - zeropage,
  182. SGX_PAGE_REG, c->prot, 1, "bss");
  183. if (ret < 0)
  184. return ret;
  185. }
  186. }
  187. return 0;
  188. }
  189. int initialize_enclave (struct pal_enclave * enclave)
  190. {
  191. int ret = 0;
  192. int enclave_image;
  193. int enclave_thread_num = 1;
  194. sgx_arch_token_t enclave_token;
  195. sgx_arch_sigstruct_t enclave_sigstruct;
  196. sgx_arch_secs_t enclave_secs;
  197. unsigned long enclave_entry_addr;
  198. unsigned long enclave_thread_gprs[MAX_DBG_THREADS];
  199. #define TRY(func, ...) \
  200. ({ \
  201. ret = func(__VA_ARGS__); \
  202. if (ret < 0) { \
  203. SGX_DBG(DBG_E, "initializing enclave failed: " #func ": %d\n", \
  204. -ret); \
  205. goto err; \
  206. } ret; \
  207. })
  208. enclave_image = INLINE_SYSCALL(open, 3, ENCLAVE_FILENAME, O_RDONLY, 0);
  209. if (IS_ERR(enclave_image)) {
  210. SGX_DBG(DBG_E, "cannot find %s\n", ENCLAVE_FILENAME);
  211. ret = -ERRNO(ret);
  212. goto err;
  213. }
  214. char cfgbuf[CONFIG_MAX];
  215. /* Reading sgx.enclave_size from manifest */
  216. if (get_config(enclave->config, "sgx.enclave_size", cfgbuf, CONFIG_MAX) <= 0) {
  217. SGX_DBG(DBG_E, "enclave_size is not specified\n");
  218. ret = -EINVAL;
  219. goto err;
  220. }
  221. enclave->size = parse_int(cfgbuf);
  222. /* Reading sgx.thread_num from manifest */
  223. if (get_config(enclave->config, "sgx.thread_num", cfgbuf, CONFIG_MAX) > 0)
  224. enclave->thread_num = parse_int(cfgbuf);
  225. if (enclave_thread_num > MAX_DBG_THREADS) {
  226. SGX_DBG(DBG_E, "Too many threads to debug\n");
  227. ret = -EINVAL;
  228. goto err;
  229. }
  230. /* Reading sgx.static_address from manifest */
  231. if (get_config(enclave->config, "sgx.static_address", cfgbuf, CONFIG_MAX) > 0 &&
  232. cfgbuf[0] == '1')
  233. enclave->baseaddr = ENCLAVE_MIN_ADDR;
  234. else
  235. enclave->baseaddr = 0;
  236. TRY(read_enclave_token, enclave->token, &enclave_token);
  237. TRY(read_enclave_sigstruct, enclave->sigfile, &enclave_sigstruct);
  238. TRY(create_enclave,
  239. &enclave_secs, enclave->baseaddr, enclave->size, &enclave_token);
  240. enclave->baseaddr = enclave_secs.baseaddr;
  241. enclave->size = enclave_secs.size;
  242. enclave->ssaframesize = enclave_secs.ssaframesize * pagesize;
  243. struct stat stat;
  244. ret = INLINE_SYSCALL(fstat, 2, enclave->manifest, &stat);
  245. if (IS_ERR(ret))
  246. return -ERRNO(ret);
  247. int manifest_size = stat.st_size;
  248. /* Start populating enclave memory */
  249. struct mem_area {
  250. const char * desc;
  251. bool is_binary;
  252. int fd;
  253. unsigned long addr, size, prot;
  254. enum sgx_page_type type;
  255. };
  256. struct mem_area * areas =
  257. __alloca(sizeof(areas[0]) * (10 + enclave->thread_num));
  258. int area_num = 0;
  259. #define set_area(_desc, _is_binary, _fd, _addr, _size, _prot, _type) \
  260. ({ \
  261. struct mem_area * _a = &areas[area_num++]; \
  262. _a->desc = _desc; _a->is_binary = _is_binary; \
  263. _a->fd = _fd; _a->addr = _addr; _a->size = _size; \
  264. _a->prot = _prot; _a->type = _type; _a; \
  265. })
  266. struct mem_area * manifest_area =
  267. set_area("manifest", false, enclave->manifest,
  268. 0, ALLOC_ALIGNUP(manifest_size),
  269. PROT_READ, SGX_PAGE_REG);
  270. struct mem_area * ssa_area =
  271. set_area("ssa", false, -1, 0,
  272. enclave->thread_num * enclave->ssaframesize * SSAFRAMENUM,
  273. PROT_READ|PROT_WRITE, SGX_PAGE_REG);
  274. struct mem_area * tcs_area =
  275. set_area("tcs", false, -1, 0, enclave->thread_num * pagesize,
  276. 0, SGX_PAGE_TCS);
  277. struct mem_area * tls_area =
  278. set_area("tls", false, -1, 0, enclave->thread_num * pagesize,
  279. PROT_READ|PROT_WRITE, SGX_PAGE_REG);
  280. struct mem_area * stack_areas = &areas[area_num];
  281. for (int t = 0 ; t < enclave->thread_num ; t++)
  282. set_area("stack", false, -1, 0, ENCLAVE_STACK_SIZE,
  283. PROT_READ|PROT_WRITE, SGX_PAGE_REG);
  284. struct mem_area * pal_area =
  285. set_area("pal", true, enclave_image, 0, 0, 0, SGX_PAGE_REG);
  286. TRY(scan_enclave_binary,
  287. enclave_image, &pal_area->addr, &pal_area->size, &enclave_entry_addr);
  288. struct mem_area * exec_area = NULL;
  289. if (enclave->exec != -1) {
  290. exec_area = set_area("exec", true, enclave->exec, 0, 0,
  291. PROT_WRITE, SGX_PAGE_REG);
  292. TRY(scan_enclave_binary,
  293. enclave->exec, &exec_area->addr, &exec_area->size, NULL);
  294. }
  295. unsigned long populating = enclave->size;
  296. for (int i = 0 ; i < area_num ; i++) {
  297. if (areas[i].addr)
  298. continue;
  299. areas[i].addr = populating - areas[i].size;
  300. populating = areas[i].addr - MEMORY_GAP;
  301. }
  302. enclave_entry_addr += pal_area->addr;
  303. if (exec_area) {
  304. if (exec_area->addr + exec_area->size > pal_area->addr)
  305. return -EINVAL;
  306. if (exec_area->addr + exec_area->size < populating) {
  307. unsigned long addr = exec_area->addr + exec_area->size;
  308. set_area("free", false, -1, addr, populating - addr,
  309. PROT_READ|PROT_WRITE|PROT_EXEC, SGX_PAGE_REG);
  310. }
  311. populating = exec_area->addr;
  312. }
  313. if (populating > ENCLAVE_MIN_ADDR) {
  314. unsigned long addr = ENCLAVE_MIN_ADDR;
  315. set_area("free", false, -1, addr, populating - addr,
  316. PROT_READ|PROT_WRITE|PROT_EXEC, SGX_PAGE_REG);
  317. }
  318. for (int i = 0 ; i < area_num ; i++) {
  319. if (areas[i].fd != -1 && areas[i].is_binary) {
  320. TRY(load_enclave_binary,
  321. &enclave_secs, areas[i].fd, areas[i].addr, areas[i].prot);
  322. continue;
  323. }
  324. void * data = NULL;
  325. if (strcmp_static(areas[i].desc, "tls")) {
  326. data = (void *) INLINE_SYSCALL(mmap, 6, NULL, areas[i].size,
  327. PROT_READ|PROT_WRITE,
  328. MAP_ANON|MAP_PRIVATE, -1, 0);
  329. for (int t = 0 ; t < enclave->thread_num ; t++) {
  330. struct enclave_tls * gs = data + pagesize * t;
  331. gs->self = (void *) tls_area->addr + pagesize * t +
  332. enclave_secs.baseaddr;
  333. gs->initial_stack = (void *)
  334. stack_areas[t].addr + ENCLAVE_STACK_SIZE +
  335. enclave_secs.baseaddr;
  336. gs->ssaframesize = enclave->ssaframesize;
  337. gs->ssa = (void *) ssa_area->addr +
  338. enclave->ssaframesize * SSAFRAMENUM * t +
  339. enclave_secs.baseaddr;
  340. gs->gpr = gs->ssa +
  341. enclave->ssaframesize - sizeof(sgx_arch_gpr_t);
  342. enclave_thread_gprs[t] = (unsigned long) gs->gpr;
  343. }
  344. goto add_pages;
  345. }
  346. if (strcmp_static(areas[i].desc, "tcs")) {
  347. data = (void *) INLINE_SYSCALL(mmap, 6, NULL, areas[i].size,
  348. PROT_READ|PROT_WRITE,
  349. MAP_ANON|MAP_PRIVATE, -1, 0);
  350. for (int t = 0 ; t < enclave->thread_num ; t++) {
  351. sgx_arch_tcs_t * tcs = data + pagesize * t;
  352. memset(tcs, 0, pagesize);
  353. tcs->ossa = ssa_area->addr +
  354. enclave->ssaframesize * SSAFRAMENUM * t;
  355. tcs->nssa = 2;
  356. tcs->oentry = enclave_entry_addr;
  357. tcs->ofsbasgx = 0;
  358. tcs->ogsbasgx = tls_area->addr + t * pagesize;
  359. tcs->fslimit = 0xfff;
  360. tcs->gslimit = 0xfff;
  361. }
  362. goto add_pages;
  363. }
  364. if (areas[i].fd != -1)
  365. data = (void *) INLINE_SYSCALL(mmap, 6, NULL, areas[i].size,
  366. PROT_READ,
  367. MAP_FILE|MAP_PRIVATE,
  368. areas[i].fd, 0);
  369. add_pages:
  370. TRY(add_pages_to_enclave,
  371. &enclave_secs, (void *) areas[i].addr, data, areas[i].size,
  372. areas[i].type, areas[i].prot, (areas[i].fd == -1),
  373. areas[i].desc);
  374. if (data)
  375. INLINE_SYSCALL(munmap, 2, data, areas[i].size);
  376. }
  377. TRY(init_enclave, &enclave_secs, &enclave_sigstruct, &enclave_token);
  378. create_tcs_mapper((void *) enclave_secs.baseaddr + tcs_area->addr,
  379. enclave->thread_num);
  380. struct pal_sec * pal_sec = &enclave->pal_sec;
  381. pal_sec->enclave_addr = (PAL_PTR) (enclave_secs.baseaddr + pal_area->addr);
  382. pal_sec->heap_min = (void *) enclave_secs.baseaddr + ENCLAVE_MIN_ADDR;
  383. pal_sec->heap_max = (void *) enclave_secs.baseaddr + pal_area->addr - MEMORY_GAP;
  384. if (exec_area) {
  385. pal_sec->exec_addr = (void *) enclave_secs.baseaddr + exec_area->addr;
  386. pal_sec->exec_size = exec_area->size;
  387. }
  388. pal_sec->manifest_addr = (void *) enclave_secs.baseaddr + manifest_area->addr;
  389. pal_sec->manifest_size = manifest_size;
  390. memcpy(pal_sec->mrenclave, enclave_secs.mrenclave,
  391. sizeof(sgx_arch_hash_t));
  392. memcpy(pal_sec->mrsigner, enclave_secs.mrsigner,
  393. sizeof(sgx_arch_hash_t));
  394. memcpy(&pal_sec->enclave_attributes, &enclave_secs.attributes,
  395. sizeof(sgx_arch_attributes_t));
  396. struct enclave_dbginfo * dbg = (void *)
  397. INLINE_SYSCALL(mmap, 6, DBGINFO_ADDR,
  398. sizeof(struct enclave_dbginfo),
  399. PROT_READ|PROT_WRITE,
  400. MAP_PRIVATE|MAP_ANONYMOUS|MAP_FIXED,
  401. -1, 0);
  402. if (IS_ERR_P(dbg)) {
  403. SGX_DBG(DBG_E, "Cannot allocate debug info\n");
  404. return 0;
  405. }
  406. dbg->pid = INLINE_SYSCALL(getpid, 0);
  407. dbg->base = enclave->baseaddr;
  408. dbg->size = enclave->size;
  409. dbg->aep = (unsigned long) async_exit_pointer;
  410. dbg->thread_tids[0] = dbg->pid;
  411. for (int i = 0 ; i < MAX_DBG_THREADS ; i++)
  412. dbg->thread_gprs[i] = enclave_thread_gprs[i];
  413. return 0;
  414. err:
  415. return ret;
  416. }
  417. static int mcast_s (int port)
  418. {
  419. struct sockaddr_in addr;
  420. int ret = 0;
  421. addr.sin_family = AF_INET;
  422. addr.sin_addr.s_addr = INADDR_ANY;
  423. addr.sin_port = htons(port);
  424. int fd = INLINE_SYSCALL(socket, 3, AF_INET, SOCK_DGRAM, 0);
  425. if (IS_ERR(fd))
  426. return -PAL_ERROR_DENIED;
  427. ret = INLINE_SYSCALL(setsockopt, 5, fd, IPPROTO_IP, IP_MULTICAST_IF,
  428. &addr.sin_addr.s_addr, sizeof(addr.sin_addr.s_addr));
  429. if (IS_ERR(ret))
  430. return -PAL_ERROR_DENIED;
  431. return fd;
  432. }
  433. static int mcast_c (int port)
  434. {
  435. int ret = 0, fd;
  436. struct sockaddr_in addr;
  437. addr.sin_family = AF_INET;
  438. addr.sin_addr.s_addr = INADDR_ANY;
  439. addr.sin_port = htons(port);
  440. fd = INLINE_SYSCALL(socket, 3, AF_INET, SOCK_DGRAM, 0);
  441. if (IS_ERR(fd))
  442. return -PAL_ERROR_DENIED;
  443. int reuse = 1;
  444. INLINE_SYSCALL(setsockopt, 5, fd, SOL_SOCKET, SO_REUSEADDR,
  445. &reuse, sizeof(reuse));
  446. ret = INLINE_SYSCALL(bind, 3, fd, &addr, sizeof(addr));
  447. if (IS_ERR(ret))
  448. return -PAL_ERROR_DENIED;
  449. ret = INLINE_SYSCALL(setsockopt, 5, fd, IPPROTO_IP, IP_MULTICAST_IF,
  450. &addr.sin_addr.s_addr, sizeof(addr.sin_addr.s_addr));
  451. if (IS_ERR(ret))
  452. return -PAL_ERROR_DENIED;
  453. inet_pton4(MCAST_GROUP, sizeof(MCAST_GROUP) - 1,
  454. &addr.sin_addr.s_addr);
  455. struct ip_mreq group;
  456. group.imr_multiaddr.s_addr = addr.sin_addr.s_addr;
  457. group.imr_interface.s_addr = INADDR_ANY;
  458. ret = INLINE_SYSCALL(setsockopt, 5, fd, IPPROTO_IP, IP_ADD_MEMBERSHIP,
  459. &group, sizeof(group));
  460. if (IS_ERR(ret))
  461. return -PAL_ERROR_DENIED;
  462. return fd;
  463. }
  464. static unsigned long randval = 0;
  465. int getrand (void * buffer, int size)
  466. {
  467. unsigned long val;
  468. int bytes = 0;
  469. val = randval;
  470. randval++;
  471. while (bytes + sizeof(unsigned long) <= size) {
  472. *(unsigned long *) (buffer + bytes) = val;
  473. val = hash64(val);
  474. bytes += sizeof(unsigned long);
  475. }
  476. if (bytes < size) {
  477. switch (size - bytes) {
  478. case 4:
  479. *(unsigned int *) (buffer + bytes) = randval & 0xffffffff;
  480. bytes += 4;
  481. break;
  482. case 2:
  483. *(unsigned short *) (buffer + bytes) = randval & 0xffff;
  484. bytes += 2;
  485. break;
  486. case 1:
  487. *(unsigned char *) (buffer + bytes) = randval & 0xff;
  488. bytes++;
  489. break;
  490. default: break;
  491. }
  492. randval = hash64(randval);
  493. }
  494. randval = val;
  495. return bytes;
  496. }
  497. static int create_instance (struct pal_sec * pal_sec)
  498. {
  499. int ret = 0;
  500. const char * path;
  501. ret = INLINE_SYSCALL(mkdir, 2, (path = GRAPHENE_PIPEDIR), 0777);
  502. if (IS_ERR(ret) && ERRNO(ret) != EEXIST) {
  503. if (ERRNO(ret) == ENOENT) {
  504. ret = INLINE_SYSCALL(mkdir, 2, (path = GRAPHENE_TEMPDIR), 0777);
  505. if (!IS_ERR(ret)) {
  506. INLINE_SYSCALL(chmod, 2, GRAPHENE_TEMPDIR, 0777);
  507. ret = INLINE_SYSCALL(mkdir, 2, (path = GRAPHENE_PIPEDIR), 0777);
  508. }
  509. }
  510. if (IS_ERR(ret)) {
  511. SGX_DBG(DBG_E, "Cannot create directory %s (%s), "
  512. "please check permission\n", path, PAL_STRERROR(-ERRNO(ret)));
  513. return -PAL_ERROR_DENIED;
  514. }
  515. }
  516. if (!IS_ERR(ret))
  517. INLINE_SYSCALL(chmod, 2, GRAPHENE_PIPEDIR, 0777);
  518. unsigned int id;
  519. do {
  520. if (!getrand(&id, sizeof(unsigned int))) {
  521. SGX_DBG(DBG_E, "Unable to generate random numbers\n");
  522. return -PAL_ERROR_DENIED;
  523. }
  524. snprintf(pal_sec->pipe_prefix, sizeof(pal_sec->pipe_prefix),
  525. GRAPHENE_PIPEDIR "/%08x/", id);
  526. ret = INLINE_SYSCALL(mkdir, 2, pal_sec->pipe_prefix, 0700);
  527. if (IS_ERR(ret) && ERRNO(ret) != EEXIST) {
  528. SGX_DBG(DBG_E, "Cannot create directory %s (%s), "
  529. "please fix permission\n",
  530. pal_sec->pipe_prefix, PAL_STRERROR(-ERRNO(ret)));
  531. return -PAL_ERROR_DENIED;
  532. }
  533. } while (IS_ERR(ret));
  534. pal_sec->instance_id = id;
  535. return 0;
  536. }
  537. int load_manifest (int fd, struct config_store ** config_ptr)
  538. {
  539. int nbytes = INLINE_SYSCALL(lseek, 3, fd, 0, SEEK_END);
  540. if (IS_ERR(nbytes))
  541. return -ERRNO(nbytes);
  542. struct config_store * config = malloc(sizeof(struct config_store));
  543. if (!config)
  544. return -ENOMEM;
  545. void * config_raw = (void *)
  546. INLINE_SYSCALL(mmap, 6, NULL, nbytes,
  547. PROT_READ|PROT_WRITE, MAP_PRIVATE,
  548. fd, 0);
  549. if (IS_ERR_P(config_raw))
  550. return -ERRNO_P(config_raw);
  551. config->raw_data = config_raw;
  552. config->raw_size = nbytes;
  553. config->malloc = malloc;
  554. config->free = NULL;
  555. const char * errstring = NULL;
  556. int ret = read_config(config, NULL, &errstring);
  557. if (ret < 0) {
  558. SGX_DBG(DBG_E, "can't read manifest: %s\n", errstring);
  559. return ret;
  560. }
  561. *config_ptr = config;
  562. return 0;
  563. }
  564. static int load_enclave (struct pal_enclave * enclave,
  565. const char * manifest_uri,
  566. const char * exec_uri,
  567. const char ** arguments, const char ** environments)
  568. {
  569. struct pal_sec * pal_sec = &enclave->pal_sec;
  570. int ret;
  571. const char * errstring;
  572. ret = open_gsgx();
  573. if (ret < 0) {
  574. SGX_DBG(DBG_E, "cannot open device /dev/gsgx, possibly the kernel "
  575. "module is not loaded.\n");
  576. return ret;
  577. }
  578. ret = check_wrfsbase_support();
  579. if (ret < 0)
  580. return ret;
  581. if (!ret)
  582. return -EPERM;
  583. struct timeval tv;
  584. ret = INLINE_SYSCALL(gettimeofday, 2, &tv, NULL);
  585. if (IS_ERR(ret))
  586. return -ERRNO(ret);
  587. randval = tv.tv_sec * 1000000UL + tv.tv_usec;
  588. pal_sec->pid = INLINE_SYSCALL(getpid, 0);
  589. pal_sec->uid = INLINE_SYSCALL(getuid, 0);
  590. pal_sec->gid = INLINE_SYSCALL(getgid, 0);
  591. #ifdef DEBUG
  592. for (const char ** e = environments ; *e ; e++) {
  593. if (strcmp_static(*e, "IN_GDB=1")) {
  594. SGX_DBG(DBG_I, "being GDB'ed!!!\n");
  595. pal_sec->in_gdb = true;
  596. }
  597. if (strcmp_static(*e, "LD_PRELOAD="))
  598. *e = "\0";
  599. }
  600. #endif
  601. char cfgbuf[CONFIG_MAX];
  602. enclave->manifest = INLINE_SYSCALL(open, 3, manifest_uri + 5,
  603. O_RDONLY|O_CLOEXEC, 0);
  604. if (IS_ERR(enclave->manifest)) {
  605. SGX_DBG(DBG_E, "cannot open manifest %s\n", manifest_uri);
  606. return -EINVAL;
  607. }
  608. ret = load_manifest(enclave->manifest, &enclave->config);
  609. if (ret < 0) {
  610. SGX_DBG(DBG_E, "invalid manifest: %s\n", manifest_uri);
  611. return -EINVAL;
  612. }
  613. if (exec_uri == NULL) {
  614. if (get_config(enclave->config, "loader.exec", cfgbuf, CONFIG_MAX) > 0) {
  615. exec_uri = resolve_uri(cfgbuf, &errstring);
  616. if (!exec_uri) {
  617. SGX_DBG(DBG_E, "%s: %s\n", errstring, cfgbuf);
  618. return -EINVAL;
  619. }
  620. }
  621. }
  622. if (exec_uri) {
  623. enclave->exec = INLINE_SYSCALL(open, 3,
  624. exec_uri + static_strlen("file:"),
  625. O_RDONLY|O_CLOEXEC, 0);
  626. if (IS_ERR(enclave->exec)) {
  627. SGX_DBG(DBG_E, "cannot open executable %s\n", exec_uri);
  628. return -EINVAL;
  629. }
  630. } else {
  631. enclave->exec = -1;
  632. }
  633. if (get_config(enclave->config, "sgx.sigfile", cfgbuf, CONFIG_MAX) < 0) {
  634. SGX_DBG(DBG_E, "sigstruct file not found. Must have \'sgx.sigfile\' in the manifest\n");
  635. return -EINVAL;
  636. }
  637. const char * uri = resolve_uri(cfgbuf, &errstring);
  638. if (!uri) {
  639. SGX_DBG(DBG_E, "%s: %s\n", errstring, cfgbuf);
  640. return -EINVAL;
  641. }
  642. if (!strcmp_static(uri + strlen(uri) - 4, ".sig")) {
  643. SGX_DBG(DBG_E, "Invalid sigstruct file URI as %s\n", cfgbuf);
  644. return -EINVAL;
  645. }
  646. enclave->sigfile = INLINE_SYSCALL(open, 3, uri + 5, O_RDONLY|O_CLOEXEC, 0);
  647. if (IS_ERR(enclave->sigfile)) {
  648. SGX_DBG(DBG_E, "cannot open sigstruct file %s\n", uri);
  649. return -EINVAL;
  650. }
  651. uri = alloc_concat(uri, strlen(uri) - 4, ".token", -1);
  652. enclave->token = INLINE_SYSCALL(open, 3, uri + 5, O_RDONLY|O_CLOEXEC, 0);
  653. if (IS_ERR(enclave->token)) {
  654. SGX_DBG(DBG_E, "cannot open token \'%s\'. Use \'"
  655. PAL_FILE("pal-sgx-get-token")
  656. "\' on the runtime host, or run \'make SGX_RUN=1\' "
  657. "in the Graphene source, to create the token file.\n",
  658. uri);
  659. return -EINVAL;
  660. }
  661. /* Initialize the enclave */
  662. ret = initialize_enclave(enclave);
  663. if (ret < 0)
  664. return ret;
  665. snprintf(pal_sec->enclave_image, sizeof(PAL_SEC_STR), "%s",
  666. ENCLAVE_FILENAME);
  667. if (!pal_sec->instance_id)
  668. create_instance(&enclave->pal_sec);
  669. pal_sec->manifest_fd = enclave->manifest;
  670. memcpy(pal_sec->manifest_name, manifest_uri, strlen(manifest_uri) + 1);
  671. if (enclave->exec == -1) {
  672. pal_sec->exec_fd = PAL_IDX_POISON;
  673. memset(pal_sec->exec_name, 0, sizeof(PAL_SEC_STR));
  674. } else {
  675. pal_sec->exec_fd = enclave->exec;
  676. memcpy(pal_sec->exec_name, exec_uri, strlen(exec_uri) + 1);
  677. }
  678. if (!pal_sec->mcast_port) {
  679. unsigned short mcast_port;
  680. getrand(&mcast_port, sizeof(unsigned short));
  681. pal_sec->mcast_port = mcast_port > 1024 ? mcast_port : mcast_port + 1024;
  682. }
  683. if ((ret = mcast_s(pal_sec->mcast_port)) >= 0) {
  684. pal_sec->mcast_srv = ret;
  685. if ((ret = mcast_c(pal_sec->mcast_port)) >= 0) {
  686. pal_sec->mcast_cli = ret;
  687. } else {
  688. INLINE_SYSCALL(close, 1, pal_sec->mcast_srv);
  689. pal_sec->mcast_srv = 0;
  690. }
  691. }
  692. /* setup signal handling */
  693. ret = sgx_signal_setup();
  694. if (ret < 0)
  695. return ret;
  696. current_enclave = enclave;
  697. map_tcs(INLINE_SYSCALL(gettid, 0));
  698. /* start running trusted PAL */
  699. ecall_pal_main(arguments, environments);
  700. unmap_tcs();
  701. exit_process(0);
  702. return 0;
  703. }
  704. int main (int argc, const char ** argv, const char ** envp)
  705. {
  706. const char * manifest_uri = NULL, * exec_uri = NULL;
  707. const char * pal_loader = argv[0];
  708. argc--;
  709. argv++;
  710. struct pal_enclave * enclave = malloc(sizeof(struct pal_enclave));
  711. if (!enclave)
  712. return -ENOMEM;
  713. memset(enclave, 0, sizeof(struct pal_enclave));
  714. int is_child = sgx_init_child_process(&enclave->pal_sec);
  715. if (is_child < 0)
  716. return is_child;
  717. if (!is_child) {
  718. /* occupy PROC_INIT_FD so no one will use it */
  719. INLINE_SYSCALL(dup2, 2, 0, PROC_INIT_FD);
  720. if (!argc)
  721. goto usage;
  722. if (strcmp_static(argv[0], "file:")) {
  723. exec_uri = alloc_concat(argv[0], -1, NULL, -1);
  724. } else {
  725. exec_uri = alloc_concat("file:", -1, argv[0], -1);
  726. }
  727. } else {
  728. exec_uri = alloc_concat(enclave->pal_sec.exec_name, -1, NULL, -1);
  729. }
  730. int fd = INLINE_SYSCALL(open, 3, exec_uri + 5, O_RDONLY|O_CLOEXEC, 0);
  731. if (IS_ERR(fd))
  732. return -ERRNO(fd);
  733. char filebuf[4];
  734. /* check if the first argument is a executable. If it is, try finding
  735. all the possible manifest files */
  736. INLINE_SYSCALL(read, 3, fd, filebuf, 4);
  737. INLINE_SYSCALL(close, 1, fd);
  738. if (memcmp(filebuf, "\177ELF", 4)) {
  739. manifest_uri = exec_uri;
  740. exec_uri = NULL;
  741. SGX_DBG(DBG_I, "manifest file: %s\n", manifest_uri);
  742. } else {
  743. char path[URI_MAX];
  744. int len = get_base_name(exec_uri + static_strlen("file:"),
  745. path, URI_MAX);
  746. if (len < 0)
  747. return len;
  748. strcpy_static(path + len, ".manifest.sgx", URI_MAX - len);
  749. fd = INLINE_SYSCALL(open, 3, path, O_RDONLY|O_CLOEXEC, 0);
  750. if (IS_ERR(fd)) {
  751. SGX_DBG(DBG_E, "cannot open manifest file: %s\n", path);
  752. goto usage;
  753. }
  754. manifest_uri = alloc_concat("file:", static_strlen("file:"), path, -1);
  755. INLINE_SYSCALL(close, 1, fd);
  756. SGX_DBG(DBG_I, "manifest file: %s\n", manifest_uri);
  757. }
  758. return load_enclave(enclave, manifest_uri, exec_uri, argv, envp);
  759. usage:
  760. SGX_DBG(DBG_E, "USAGE: %s [executable|manifest] args ...\n", pal_loader);
  761. return -EINVAL;
  762. }
  763. int pal_init_enclave (const char * manifest_uri,
  764. const char * exec_uri,
  765. const char ** arguments, const char ** environments)
  766. {
  767. if (!manifest_uri)
  768. return -PAL_ERROR_INVAL;
  769. struct pal_enclave * enclave = malloc(sizeof(struct pal_enclave));
  770. if (!enclave)
  771. return -PAL_ERROR_NOMEM;
  772. memset(enclave, 0, sizeof(struct pal_enclave));
  773. return load_enclave(enclave, manifest_uri, exec_uri,
  774. arguments, environments);
  775. }
  776. void exit_process (int status)
  777. {
  778. struct pal_enclave * enclave = current_enclave;
  779. destroy_enclave((void *) enclave->baseaddr, enclave->size);
  780. free(enclave->config);
  781. free(enclave);
  782. INLINE_SYSCALL(exit, 1, status);
  783. }