db_sockets.c 42 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. /* Copyright (C) 2014 OSCAR lab, Stony Brook University
  4. This file is part of Graphene Library OS.
  5. Graphene Library OS is free software: you can redistribute it and/or
  6. modify it under the terms of the GNU General Public License
  7. as published by the Free Software Foundation, either version 3 of the
  8. License, or (at your option) any later version.
  9. Graphene Library OS is distributed in the hope that it will be useful,
  10. but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. GNU General Public License for more details.
  13. You should have received a copy of the GNU General Public License
  14. along with this program. If not, see <http://www.gnu.org/licenses/>. */
  15. /*
  16. * db_socket.c
  17. *
  18. * This file contains operands for streams with URIs that start with
  19. * "tcp:", "tcp.srv:", "udp:", "udp.srv:".
  20. */
  21. #include "pal_defs.h"
  22. #include "pal_linux_defs.h"
  23. #include "pal.h"
  24. #include "pal_internal.h"
  25. #include "pal_linux.h"
  26. #include "pal_debug.h"
  27. #include "pal_security.h"
  28. #include "pal_error.h"
  29. #include "api.h"
  30. #include "graphene.h"
  31. #include <linux/types.h>
  32. #include <linux/poll.h>
  33. typedef __kernel_pid_t pid_t;
  34. #include <asm/fcntl.h>
  35. #include <sys/socket.h>
  36. #include <linux/in.h>
  37. #include <linux/in6.h>
  38. #include <netinet/tcp.h>
  39. #include <asm/errno.h>
  40. #ifndef SOL_TCP
  41. # define SOL_TCP 6
  42. #endif
  43. #ifndef TCP_NODELAY
  44. # define TCP_NODELAY 1
  45. #endif
  46. #ifndef TCP_CORK
  47. # define TCP_CORK 3
  48. #endif
  49. #ifndef SOL_IPV6
  50. # define SOL_IPV6 41
  51. #endif
  52. /* 96 bytes is the minimal size of buffer to store a IPv4/IPv6
  53. address */
  54. #define PAL_SOCKADDR_SIZE 96
  55. static inline int addr_size (struct sockaddr * addr)
  56. {
  57. switch (addr->sa_family) {
  58. case AF_INET:
  59. return sizeof(struct sockaddr_in);
  60. case AF_INET6:
  61. return sizeof(struct sockaddr_in6);
  62. default:
  63. return 0;
  64. }
  65. }
  66. /* parsing the string of uri, and fill in the socket address structure.
  67. the latest pointer of uri, length of socket address are returned. */
  68. static int inet_parse_uri (char ** uri, struct sockaddr * addr, int * addrlen)
  69. {
  70. char * tmp = *uri, * end;
  71. char * addr_str = NULL, * port_str;
  72. int af;
  73. void * addr_buf;
  74. int addr_len;
  75. __be16 * port_buf;
  76. int slen;
  77. if (tmp[0] == '[') {
  78. /* for IPv6, the address will be in the form of
  79. "[xxxx:xxxx:xxxx:xxxx:xxxx:xxxx:xxxx:xxxx]:port". */
  80. struct sockaddr_in6 * addr_in6 = (struct sockaddr_in6 *) addr;
  81. slen = sizeof(struct sockaddr_in6);
  82. memset(addr, 0, slen);
  83. end = strchr(tmp + 1, ']');
  84. if (!end || *(end + 1) != ':')
  85. goto inval;
  86. addr_str = tmp + 1;
  87. addr_len = end - tmp - 1;
  88. port_str = end + 2;
  89. for (end = port_str ; *end >= '0' && *end <= '9' ; end++);
  90. addr_in6->sin6_family = af = AF_INET6;
  91. addr_buf = &addr_in6->sin6_addr.s6_addr;
  92. port_buf = &addr_in6->sin6_port;
  93. } else {
  94. /* for IP, the address will be in the form of "x.x.x.x:port". */
  95. struct sockaddr_in * addr_in = (struct sockaddr_in *) addr;
  96. slen = sizeof(struct sockaddr_in);
  97. memset(addr, 0, slen);
  98. end = strchr(tmp, ':');
  99. if (!end)
  100. goto inval;
  101. addr_str = tmp;
  102. addr_len = end - tmp;
  103. port_str = end + 1;
  104. for (end = port_str ; *end >= '0' && *end <= '9' ; end++);
  105. addr_in->sin_family = af = AF_INET;
  106. addr_buf = &addr_in->sin_addr.s_addr;
  107. port_buf = &addr_in->sin_port;
  108. }
  109. if (af == AF_INET) {
  110. if (!inet_pton4(addr_str, addr_len, addr_buf))
  111. goto inval;
  112. } else {
  113. if (!inet_pton6(addr_str, addr_len, addr_buf))
  114. goto inval;
  115. }
  116. *port_buf = __htons(atoi(port_str));
  117. *uri = *end ? end + 1 : NULL;
  118. if (addrlen)
  119. *addrlen = slen;
  120. return 0;
  121. inval:
  122. return -PAL_ERROR_INVAL;
  123. }
  124. /* create the string of uri from the given socket address */
  125. static int inet_create_uri (char * uri, int count, struct sockaddr * addr,
  126. int addrlen)
  127. {
  128. int len = 0;
  129. if (addr->sa_family == AF_INET) {
  130. if (addrlen != sizeof(struct sockaddr_in))
  131. return PAL_ERROR_INVAL;
  132. struct sockaddr_in * addr_in = (struct sockaddr_in *) addr;
  133. char * addr = (char *) &addr_in->sin_addr.s_addr;
  134. /* for IP, the address will be in the form of "x.x.x.x:port". */
  135. len = snprintf(uri, count, "%u.%u.%u.%u:%u",
  136. (unsigned char) addr[0],
  137. (unsigned char) addr[1],
  138. (unsigned char) addr[2],
  139. (unsigned char) addr[3],
  140. __ntohs(addr_in->sin_port));
  141. } else if (addr->sa_family == AF_INET6) {
  142. if (addrlen != sizeof(struct sockaddr_in6))
  143. return PAL_ERROR_INVAL;
  144. struct sockaddr_in6 * addr_in6 = (struct sockaddr_in6 *) addr;
  145. unsigned short * addr = (unsigned short *) &addr_in6->sin6_addr.s6_addr;
  146. /* for IPv6, the address will be in the form of
  147. "[xxxx:xxxx:xxxx:xxxx:xxxx:xxxx:xxxx:xxxx]:port". */
  148. len = snprintf(uri, count, "[%04x:%04x:%04x:%04x:%04x:%04x:%04x:%04x]:%u",
  149. addr[0], addr[1], addr[2], addr[3],
  150. addr[4], addr[5], addr[6], addr[7],
  151. __ntohs(addr_in6->sin6_port));
  152. } else {
  153. return -PAL_ERROR_INVAL;
  154. }
  155. if (len >= count)
  156. return -PAL_ERROR_TOOLONG;
  157. return len;
  158. }
  159. /* parse the uri for a socket stream. The uri might have both binding
  160. address and connecting address, or connecting address only. The form
  161. of uri will be either "bind-addr:bind-port:connect-addr:connect-port"
  162. or "addr:port". */
  163. static int socket_parse_uri (char * uri,
  164. struct sockaddr ** bind_addr, int * bind_addrlen,
  165. struct sockaddr ** dest_addr, int * dest_addrlen)
  166. {
  167. int ret;
  168. if (!bind_addr && !dest_addr)
  169. return 0;
  170. if (!uri || !(*uri)) {
  171. if (bind_addr)
  172. *bind_addr = NULL;
  173. if (dest_addr)
  174. *dest_addr = NULL;
  175. return 0;
  176. }
  177. /* at least parse uri once */
  178. if ((ret = inet_parse_uri(&uri, bind_addr ? *bind_addr : *dest_addr,
  179. bind_addr ? bind_addrlen : dest_addrlen)) < 0)
  180. return ret;
  181. if (!(bind_addr && dest_addr))
  182. return 0;
  183. /* if you reach here, it can only be connection address */
  184. if (!uri || (ret = inet_parse_uri(&uri, *dest_addr, dest_addrlen)) < 0) {
  185. *dest_addr = *bind_addr;
  186. *dest_addrlen = *bind_addrlen;
  187. *bind_addr = NULL;
  188. *bind_addrlen = 0;
  189. }
  190. return 0;
  191. }
  192. /* fill in the PAL handle based on the file descriptors and address given. */
  193. static inline
  194. PAL_HANDLE socket_create_handle (int type, int fd, int options,
  195. struct sockaddr * bind_addr, int bind_addrlen,
  196. struct sockaddr * dest_addr, int dest_addrlen)
  197. {
  198. PAL_HANDLE hdl = malloc(HANDLE_SIZE(sock) + (bind_addr ? bind_addrlen : 0) +
  199. (dest_addr ? dest_addrlen : 0));
  200. if (!hdl)
  201. return NULL;
  202. memset(hdl, 0, sizeof(union pal_handle));
  203. PAL_GET_TYPE(hdl) = type;
  204. HANDLE_HDR(hdl)->flags |= RFD(0)|(type != pal_type_tcpsrv ? WFD(0) : 0);
  205. hdl->sock.fd = fd;
  206. void * addr = (void *) hdl + HANDLE_SIZE(sock);
  207. if (bind_addr) {
  208. hdl->sock.bind = (PAL_PTR) addr;
  209. memcpy(addr, bind_addr, bind_addrlen);
  210. addr += bind_addrlen;
  211. } else {
  212. hdl->sock.bind = (PAL_PTR) NULL;
  213. }
  214. if (dest_addr) {
  215. hdl->sock.conn = (PAL_PTR) addr;
  216. memcpy(addr, dest_addr, dest_addrlen);
  217. addr += dest_addrlen;
  218. } else {
  219. hdl->sock.conn = (PAL_PTR) NULL;
  220. }
  221. hdl->sock.nonblocking = (options & PAL_OPTION_NONBLOCK) ?
  222. PAL_TRUE : PAL_FALSE;
  223. hdl->sock.linger = 0;
  224. if (type == pal_type_tcpsrv) {
  225. hdl->sock.receivebuf = 0;
  226. hdl->sock.sendbuf = 0;
  227. } else {
  228. int ret, val, len = sizeof(int);
  229. ret = INLINE_SYSCALL(getsockopt, 5, fd, SOL_SOCKET, SO_RCVBUF,
  230. &val, &len);
  231. hdl->sock.receivebuf = IS_ERR(ret) ? 0 : val;
  232. ret = INLINE_SYSCALL(getsockopt, 5, fd, SOL_SOCKET, SO_SNDBUF,
  233. &val, &len);
  234. hdl->sock.sendbuf = IS_ERR(ret) ? 0 : val;
  235. }
  236. hdl->sock.receivetimeout = 0;
  237. hdl->sock.sendtimeout = 0;
  238. hdl->sock.tcp_cork = PAL_FALSE;
  239. hdl->sock.tcp_keepalive = PAL_FALSE;
  240. hdl->sock.tcp_nodelay = PAL_FALSE;
  241. return hdl;
  242. }
  243. static int check_zero (void * mem, int size)
  244. {
  245. void * p = mem, * q = mem + size;
  246. while (p < q) {
  247. if (p <= q - sizeof(long)) {
  248. if (*(long *) p)
  249. return 1;
  250. p += sizeof(long);
  251. } else if (p <= q - sizeof(int)) {
  252. if (*(int *) p)
  253. return 1;
  254. p += sizeof(int);
  255. } else if (p <= q - sizeof(short)) {
  256. if (*(short *) p)
  257. return 1;
  258. p += sizeof(short);
  259. } else {
  260. if (*(char *) p)
  261. return 1;
  262. p++;
  263. }
  264. }
  265. return 0;
  266. }
  267. /* check if an address is "Any" */
  268. static int addr_check_any (struct sockaddr * addr)
  269. {
  270. if (addr->sa_family == AF_INET) {
  271. struct sockaddr_in * addr_in =
  272. (struct sockaddr_in *) addr;
  273. return addr_in->sin_port ||
  274. check_zero(&addr_in->sin_addr,
  275. sizeof(addr_in->sin_addr));
  276. } else if (addr->sa_family == AF_INET6) {
  277. struct sockaddr_in6 * addr_in6 =
  278. (struct sockaddr_in6 *) addr;
  279. return addr_in6->sin6_port ||
  280. check_zero(&addr_in6->sin6_addr,
  281. sizeof(addr_in6->sin6_addr));
  282. }
  283. return -PAL_ERROR_NOTSUPPORT;
  284. }
  285. /* listen on a tcp socket */
  286. static int tcp_listen (PAL_HANDLE * handle, char * uri, int options)
  287. {
  288. struct sockaddr buffer, * bind_addr = &buffer;
  289. int bind_addrlen;
  290. int ret, fd = -1;
  291. if ((ret = socket_parse_uri(uri, &bind_addr, &bind_addrlen,
  292. NULL, NULL)) < 0)
  293. return ret;
  294. /* the socket need to have a binding address, a null address or an
  295. any address is not allowed */
  296. if (!bind_addr || addr_check_any(bind_addr) == 0)
  297. return -PAL_ERROR_INVAL;
  298. fd = INLINE_SYSCALL(socket, 3, bind_addr->sa_family,
  299. SOCK_STREAM|SOCK_CLOEXEC|options, 0);
  300. if (IS_ERR(fd))
  301. return -PAL_ERROR_DENIED;
  302. if (bind_addr->sa_family == AF_INET6) {
  303. int ipv6only = 1;
  304. INLINE_SYSCALL(setsockopt, 5, fd, SOL_IPV6, IPV6_V6ONLY, &ipv6only,
  305. sizeof(int));
  306. }
  307. /* must set the socket to be reuseable */
  308. int reuseaddr = 1;
  309. INLINE_SYSCALL(setsockopt, 5, fd, SOL_SOCKET, SO_REUSEADDR, &reuseaddr,
  310. sizeof(int));
  311. ret = INLINE_SYSCALL(bind, 3, fd, bind_addr, bind_addrlen);
  312. if (IS_ERR(ret)) {
  313. switch(ERRNO(ret)) {
  314. case EINVAL:
  315. ret = -PAL_ERROR_INVAL;
  316. goto failed;
  317. case EADDRINUSE:
  318. ret = -PAL_ERROR_STREAMEXIST;
  319. goto failed;
  320. default:
  321. ret = -PAL_ERROR_DENIED;
  322. goto failed;
  323. }
  324. }
  325. ret = INLINE_SYSCALL(listen, 2, fd, DEFAULT_BACKLOG);
  326. if (IS_ERR(ret))
  327. return -PAL_ERROR_DENIED;
  328. *handle = socket_create_handle(pal_type_tcpsrv, fd, options,
  329. bind_addr, bind_addrlen, NULL, 0);
  330. if (!(*handle)) {
  331. ret = -PAL_ERROR_NOMEM;
  332. goto failed;
  333. }
  334. return 0;
  335. failed:
  336. INLINE_SYSCALL(close, 1, fd);
  337. return ret;
  338. }
  339. /* accept a tcp connection */
  340. static int tcp_accept (PAL_HANDLE handle, PAL_HANDLE * client)
  341. {
  342. if (!IS_HANDLE_TYPE(handle, tcpsrv) ||
  343. !handle->sock.bind || handle->sock.conn)
  344. return -PAL_ERROR_NOTSERVER;
  345. if (handle->sock.fd == PAL_IDX_POISON)
  346. return -PAL_ERROR_BADHANDLE;
  347. struct sockaddr * bind_addr = (struct sockaddr *) handle->sock.bind;
  348. int bind_addrlen = addr_size(bind_addr);
  349. struct sockaddr buffer;
  350. socklen_t addrlen = sizeof(struct sockaddr);
  351. int ret = 0;
  352. int newfd = INLINE_SYSCALL(accept4, 4, handle->sock.fd, &buffer,
  353. &addrlen, O_CLOEXEC);
  354. if (IS_ERR(newfd))
  355. switch(ERRNO(newfd)) {
  356. case EWOULDBLOCK:
  357. return -PAL_ERROR_TRYAGAIN;
  358. case ECONNABORTED:
  359. return -PAL_ERROR_STREAMNOTEXIST;
  360. default:
  361. return unix_to_pal_error(ERRNO(newfd));
  362. }
  363. struct sockaddr * dest_addr = &buffer;
  364. int dest_addrlen = addrlen;
  365. *client = socket_create_handle(pal_type_tcp, newfd, 0,
  366. bind_addr, bind_addrlen,
  367. dest_addr, dest_addrlen);
  368. if (!(*client)) {
  369. ret = -PAL_ERROR_NOMEM;
  370. goto failed;
  371. }
  372. return 0;
  373. failed:
  374. INLINE_SYSCALL(close, 1, newfd);
  375. return ret;
  376. }
  377. /* connect on a tcp socket */
  378. static int tcp_connect (PAL_HANDLE * handle, char * uri, int options)
  379. {
  380. struct sockaddr buffer[3];
  381. struct sockaddr * bind_addr = buffer, * dest_addr = buffer + 1;
  382. int bind_addrlen, dest_addrlen;
  383. int ret, fd = -1;
  384. /* accepting two kind of different uri:
  385. dest-ip:dest-port or bind-ip:bind-port:dest-ip:dest-port */
  386. if ((ret = socket_parse_uri(uri, &bind_addr, &bind_addrlen,
  387. &dest_addr, &dest_addrlen)) < 0)
  388. return ret;
  389. if (!dest_addr)
  390. return -PAL_ERROR_INVAL;
  391. if (bind_addr && bind_addr->sa_family != dest_addr->sa_family)
  392. return -PAL_ERROR_INVAL;
  393. fd = INLINE_SYSCALL(socket, 3, dest_addr->sa_family,
  394. SOCK_STREAM|SOCK_CLOEXEC|options, 0);
  395. if (IS_ERR(fd))
  396. return -PAL_ERROR_DENIED;
  397. if (bind_addr) {
  398. if (IS_ERR(ret)) {
  399. INLINE_SYSCALL(close, 1, fd);
  400. switch (ERRNO(ret)) {
  401. case EADDRINUSE:
  402. ret = -PAL_ERROR_STREAMEXIST;
  403. goto failed;
  404. case EADDRNOTAVAIL:
  405. ret = -PAL_ERROR_ADDRNOTEXIST;
  406. goto failed;
  407. default:
  408. ret = unix_to_pal_error(ERRNO(ret));
  409. goto failed;
  410. }
  411. }
  412. }
  413. if (dest_addr->sa_family == AF_INET6) {
  414. int ipv6only = 1;
  415. INLINE_SYSCALL(setsockopt, 5, fd, SOL_IPV6, IPV6_V6ONLY, &ipv6only,
  416. sizeof(int));
  417. }
  418. ret = INLINE_SYSCALL(connect, 3, fd, dest_addr, dest_addrlen);
  419. if (IS_ERR(ret)) {
  420. ret = unix_to_pal_error(ERRNO(ret));
  421. goto failed;
  422. }
  423. if (!bind_addr) {
  424. /* save some space to get socket address */
  425. bind_addr = buffer + 2;
  426. bind_addrlen = sizeof(struct sockaddr);
  427. /* call getsockname to get socket address */
  428. if ((ret = INLINE_SYSCALL(getsockname, 3, fd,
  429. bind_addr, &bind_addrlen)) < 0)
  430. bind_addr = NULL;
  431. }
  432. *handle = socket_create_handle(pal_type_tcp, fd, options,
  433. bind_addr, bind_addrlen,
  434. dest_addr, dest_addrlen);
  435. if (!(*handle)) {
  436. ret = -PAL_ERROR_NOMEM;
  437. goto failed;
  438. }
  439. return 0;
  440. failed:
  441. INLINE_SYSCALL(close, 1, fd);
  442. return ret;
  443. }
  444. /* 'open' operation of tcp stream */
  445. static int tcp_open (PAL_HANDLE *handle, const char * type, const char * uri,
  446. int access, int share, int create, int options)
  447. {
  448. int uri_len = strlen(uri) + 1;
  449. if (uri_len > PAL_SOCKADDR_SIZE)
  450. return -PAL_ERROR_TOOLONG;
  451. char uri_buf[PAL_SOCKADDR_SIZE];
  452. memcpy(uri_buf, uri, uri_len);
  453. if (strpartcmp_static(type, "tcp.srv:"))
  454. return tcp_listen(handle, uri_buf, options);
  455. if (strpartcmp_static(type, "tcp:"))
  456. return tcp_connect(handle, uri_buf, options);
  457. return -PAL_ERROR_NOTSUPPORT;
  458. }
  459. /* 'read' operation of tcp stream */
  460. static int tcp_read (PAL_HANDLE handle, int offset, int len, void * buf)
  461. {
  462. if (!IS_HANDLE_TYPE(handle, tcp) || !handle->sock.conn)
  463. return -PAL_ERROR_NOTCONNECTION;
  464. if (handle->sock.fd == PAL_IDX_POISON)
  465. return -PAL_ERROR_ENDOFSTREAM;
  466. struct msghdr hdr;
  467. struct iovec iov;
  468. iov.iov_base = buf;
  469. iov.iov_len = len;
  470. hdr.msg_name = NULL;
  471. hdr.msg_namelen = 0;
  472. hdr.msg_iov = &iov;
  473. hdr.msg_iovlen = 1;
  474. hdr.msg_control = NULL;
  475. hdr.msg_controllen = 0;
  476. hdr.msg_flags = 0;
  477. int bytes = INLINE_SYSCALL(recvmsg, 3, handle->sock.fd, &hdr, 0);
  478. if (IS_ERR(bytes))
  479. switch (ERRNO(bytes)) {
  480. case EWOULDBLOCK:
  481. return -PAL_ERROR_TRYAGAIN;
  482. default:
  483. return unix_to_pal_error(ERRNO(bytes));
  484. }
  485. if (!bytes)
  486. return -PAL_ERROR_ENDOFSTREAM;
  487. return bytes;
  488. }
  489. /* write' operation of tcp stream */
  490. static int tcp_write (PAL_HANDLE handle, int offset, int len, const void * buf)
  491. {
  492. if (!IS_HANDLE_TYPE(handle, tcp) || !handle->sock.conn)
  493. return -PAL_ERROR_NOTCONNECTION;
  494. if (handle->sock.fd == PAL_IDX_POISON)
  495. return -PAL_ERROR_CONNFAILED;
  496. struct msghdr hdr;
  497. struct iovec iov;
  498. iov.iov_base = (void *) buf;
  499. iov.iov_len = len;
  500. hdr.msg_name = NULL;
  501. hdr.msg_namelen = 0;
  502. hdr.msg_iov = &iov;
  503. hdr.msg_iovlen = 1;
  504. hdr.msg_control = NULL;
  505. hdr.msg_controllen = 0;
  506. hdr.msg_flags = 0;
  507. int bytes = INLINE_SYSCALL(sendmsg, 3, handle->sock.fd, &hdr, MSG_NOSIGNAL);
  508. if (IS_ERR(bytes))
  509. switch(ERRNO(bytes)) {
  510. case ECONNRESET:
  511. case EPIPE:
  512. return -PAL_ERROR_CONNFAILED;
  513. case EWOULDBLOCK:
  514. HANDLE_HDR(handle)->flags &= ~WRITEABLE(0);
  515. return -PAL_ERROR_TRYAGAIN;
  516. default:
  517. return unix_to_pal_error(ERRNO(bytes));
  518. }
  519. if (bytes == len)
  520. HANDLE_HDR(handle)->flags |= WRITEABLE(0);
  521. else
  522. HANDLE_HDR(handle)->flags &= ~WRITEABLE(0);
  523. return bytes;
  524. }
  525. /* used by 'open' operation of tcp stream for bound socket */
  526. static int udp_bind (PAL_HANDLE * handle, char * uri, int options)
  527. {
  528. struct sockaddr buffer, * bind_addr = &buffer;
  529. int bind_addrlen;
  530. int ret = 0, fd = -1;
  531. if ((ret = socket_parse_uri(uri, &bind_addr, &bind_addrlen,
  532. NULL, NULL)) < 0)
  533. return ret;
  534. assert(bind_addr);
  535. assert(bind_addrlen == addr_size(bind_addr));
  536. fd = INLINE_SYSCALL(socket, 3, bind_addr->sa_family,
  537. SOCK_DGRAM|SOCK_CLOEXEC|options, 0);
  538. if (IS_ERR(fd))
  539. return -PAL_ERROR_DENIED;
  540. if (bind_addr->sa_family == AF_INET6) {
  541. int ipv6only = 1;
  542. INLINE_SYSCALL(setsockopt, 5, fd, SOL_IPV6, IPV6_V6ONLY, &ipv6only,
  543. sizeof(int));
  544. }
  545. ret = INLINE_SYSCALL(bind, 3, fd, bind_addr, bind_addrlen);
  546. if (IS_ERR(ret)) {
  547. switch (ERRNO(ret)) {
  548. case EADDRINUSE:
  549. ret = -PAL_ERROR_STREAMEXIST;
  550. goto failed;
  551. case EADDRNOTAVAIL:
  552. ret = -PAL_ERROR_ADDRNOTEXIST;
  553. goto failed;
  554. default:
  555. ret = unix_to_pal_error(ERRNO(ret));
  556. goto failed;
  557. }
  558. }
  559. *handle = socket_create_handle(pal_type_udpsrv, fd, options,
  560. bind_addr, bind_addrlen, NULL, 0);
  561. if (!(*handle)) {
  562. ret = -ENOMEM;
  563. goto failed;
  564. }
  565. return 0;
  566. failed:
  567. INLINE_SYSCALL(close, 1, fd);
  568. return ret;
  569. }
  570. /* used by 'open' operation of tcp stream for connected socket */
  571. static int udp_connect (PAL_HANDLE * handle, char * uri, int options)
  572. {
  573. struct sockaddr buffer[2];
  574. struct sockaddr * bind_addr = buffer, * dest_addr = buffer + 1;
  575. int bind_addrlen, dest_addrlen;
  576. int ret, fd = -1;
  577. if ((ret = socket_parse_uri(uri, &bind_addr, &bind_addrlen,
  578. &dest_addr, &dest_addrlen)) < 0)
  579. return ret;
  580. fd = INLINE_SYSCALL(socket, 3, dest_addr ? dest_addr->sa_family : AF_INET,
  581. SOCK_DGRAM|SOCK_CLOEXEC|options, 0);
  582. if (IS_ERR(fd))
  583. return -PAL_ERROR_DENIED;
  584. if (dest_addr->sa_family == AF_INET6) {
  585. int ipv6only = 1;
  586. INLINE_SYSCALL(setsockopt, 5, fd, SOL_IPV6, IPV6_V6ONLY, &ipv6only,
  587. sizeof(int));
  588. }
  589. if (bind_addr) {
  590. ret = INLINE_SYSCALL(bind, 3, fd, bind_addr, bind_addrlen);
  591. if (IS_ERR(ret)) {
  592. switch (ERRNO(ret)) {
  593. case EADDRINUSE:
  594. ret = -PAL_ERROR_STREAMEXIST;
  595. goto failed;
  596. case EADDRNOTAVAIL:
  597. ret = -PAL_ERROR_ADDRNOTEXIST;
  598. goto failed;
  599. default:
  600. ret = unix_to_pal_error(ERRNO(ret));
  601. goto failed;
  602. }
  603. }
  604. }
  605. *handle = socket_create_handle(dest_addr ? pal_type_udp : pal_type_udpsrv,
  606. fd, options,
  607. bind_addr, bind_addrlen,
  608. dest_addr, dest_addrlen);
  609. if (!(*handle)) {
  610. ret = -ENOMEM;
  611. goto failed;
  612. }
  613. return 0;
  614. failed:
  615. INLINE_SYSCALL(close, 1, fd);
  616. return ret;
  617. }
  618. static int udp_open (PAL_HANDLE *hdl, const char * type, const char * uri,
  619. int access, int share, int create, int options)
  620. {
  621. char buf[PAL_SOCKADDR_SIZE];
  622. int len = strlen(uri);
  623. if (len >= PAL_SOCKADDR_SIZE)
  624. return -PAL_ERROR_TOOLONG;
  625. memcpy(buf, uri, len + 1);
  626. options &= PAL_OPTION_MASK;
  627. if (strpartcmp_static(type, "udp.srv:"))
  628. return udp_bind(hdl, buf, options);
  629. if (strpartcmp_static(type, "udp:"))
  630. return udp_connect(hdl, buf, options);
  631. return -PAL_ERROR_NOTSUPPORT;
  632. }
  633. static int udp_receive (PAL_HANDLE handle, int offset, int len, void * buf)
  634. {
  635. if (!IS_HANDLE_TYPE(handle, udp))
  636. return -PAL_ERROR_NOTCONNECTION;
  637. if (handle->sock.fd == PAL_IDX_POISON)
  638. return -PAL_ERROR_BADHANDLE;
  639. struct msghdr hdr;
  640. struct iovec iov;
  641. iov.iov_base = buf;
  642. iov.iov_len = len;
  643. hdr.msg_name = NULL;
  644. hdr.msg_namelen = 0;
  645. hdr.msg_iov = &iov;
  646. hdr.msg_iovlen = 1;
  647. hdr.msg_control = NULL;
  648. hdr.msg_controllen = 0;
  649. hdr.msg_flags = 0;
  650. int bytes = INLINE_SYSCALL(recvmsg, 3, handle->sock.fd, &hdr, 0);
  651. if (IS_ERR(bytes))
  652. switch(ERRNO(bytes)) {
  653. case EWOULDBLOCK:
  654. return -PAL_ERROR_TRYAGAIN;
  655. case EINTR:
  656. return -PAL_ERROR_INTERRUPTED;
  657. default:
  658. return unix_to_pal_error(ERRNO(bytes));
  659. }
  660. return bytes;
  661. }
  662. static int udp_receivebyaddr (PAL_HANDLE handle, int offset, int len,
  663. void * buf, char * addr, int addrlen)
  664. {
  665. if (!IS_HANDLE_TYPE(handle, udpsrv))
  666. return -PAL_ERROR_NOTCONNECTION;
  667. if (handle->sock.fd == PAL_IDX_POISON)
  668. return -PAL_ERROR_BADHANDLE;
  669. struct sockaddr conn_addr;
  670. socklen_t conn_addrlen = sizeof(struct sockaddr);
  671. struct msghdr hdr;
  672. struct iovec iov;
  673. iov.iov_base = buf;
  674. iov.iov_len = len;
  675. hdr.msg_name = &conn_addr;
  676. hdr.msg_namelen = conn_addrlen;
  677. hdr.msg_iov = &iov;
  678. hdr.msg_iovlen = 1;
  679. hdr.msg_control = NULL;
  680. hdr.msg_controllen = 0;
  681. hdr.msg_flags = 0;
  682. int bytes = INLINE_SYSCALL(recvmsg, 3, handle->sock.fd, &hdr, 0);
  683. if (IS_ERR(bytes))
  684. switch(ERRNO(bytes)) {
  685. case EWOULDBLOCK:
  686. return -PAL_ERROR_TRYAGAIN;
  687. case EINTR:
  688. return -PAL_ERROR_INTERRUPTED;
  689. case ECONNREFUSED:
  690. return -PAL_ERROR_STREAMNOTEXIST;
  691. default:
  692. return unix_to_pal_error(ERRNO(bytes));
  693. }
  694. char * addr_uri = strcpy_static(addr, "udp:", addrlen);
  695. if (!addr_uri)
  696. return -PAL_ERROR_OVERFLOW;
  697. int ret = inet_create_uri(addr_uri, addr + addrlen - addr_uri, &conn_addr,
  698. hdr.msg_namelen);
  699. if (ret < 0)
  700. return ret;
  701. return bytes;
  702. }
  703. static int udp_send (PAL_HANDLE handle, int offset, int len, const void * buf)
  704. {
  705. if (!IS_HANDLE_TYPE(handle, udp))
  706. return -PAL_ERROR_NOTCONNECTION;
  707. if (handle->sock.fd == PAL_IDX_POISON)
  708. return -PAL_ERROR_BADHANDLE;
  709. struct msghdr hdr;
  710. struct iovec iov;
  711. iov.iov_base = (void *) buf;
  712. iov.iov_len = len;
  713. hdr.msg_name = (void *) handle->sock.conn;
  714. hdr.msg_namelen = addr_size((struct sockaddr *) handle->sock.conn);
  715. hdr.msg_iov = &iov;
  716. hdr.msg_iovlen = 1;
  717. hdr.msg_control = NULL;
  718. hdr.msg_controllen = 0;
  719. hdr.msg_flags = 0;
  720. int bytes = INLINE_SYSCALL(sendmsg, 3, handle->sock.fd, &hdr, MSG_NOSIGNAL);
  721. if (IS_ERR(bytes))
  722. switch(ERRNO(bytes)) {
  723. case EAGAIN:
  724. HANDLE_HDR(handle)->flags &= ~WRITEABLE(0);
  725. return -PAL_ERROR_TRYAGAIN;
  726. case ECONNRESET:
  727. case EPIPE:
  728. return -PAL_ERROR_CONNFAILED;
  729. default:
  730. return unix_to_pal_error(ERRNO(bytes));
  731. }
  732. if (bytes == len)
  733. HANDLE_HDR(handle)->flags |= WRITEABLE(0);
  734. else
  735. HANDLE_HDR(handle)->flags &= ~WRITEABLE(0);
  736. return bytes;
  737. }
  738. static int udp_sendbyaddr (PAL_HANDLE handle, int offset, int len,
  739. const void * buf, const char * addr, int addrlen)
  740. {
  741. if (!IS_HANDLE_TYPE(handle, udpsrv))
  742. return -PAL_ERROR_NOTCONNECTION;
  743. if (handle->sock.fd == PAL_IDX_POISON)
  744. return -PAL_ERROR_BADHANDLE;
  745. if (!strpartcmp_static(addr, "udp:"))
  746. return -PAL_ERROR_INVAL;
  747. addr += static_strlen("udp:");
  748. addrlen -= static_strlen("udp:");
  749. char * addrbuf = __alloca(addrlen);
  750. memcpy(addrbuf, addr, addrlen);
  751. struct sockaddr conn_addr;
  752. int conn_addrlen;
  753. int ret = inet_parse_uri(&addrbuf, &conn_addr, &conn_addrlen);
  754. if (ret < 0)
  755. return ret;
  756. struct msghdr hdr;
  757. struct iovec iov;
  758. iov.iov_base = (void *) buf;
  759. iov.iov_len = len;
  760. hdr.msg_name = &conn_addr;
  761. hdr.msg_namelen = conn_addrlen;
  762. hdr.msg_iov = &iov;
  763. hdr.msg_iovlen = 1;
  764. hdr.msg_control = NULL;
  765. hdr.msg_controllen = 0;
  766. hdr.msg_flags = 0;
  767. int bytes = INLINE_SYSCALL(sendmsg, 3, handle->sock.fd, &hdr, MSG_NOSIGNAL);
  768. if (IS_ERR(bytes))
  769. switch(ERRNO(bytes)) {
  770. case ECONNRESET:
  771. case EPIPE:
  772. return -PAL_ERROR_CONNFAILED;
  773. case EAGAIN:
  774. HANDLE_HDR(handle)->flags &= ~WRITEABLE(0);
  775. default:
  776. return unix_to_pal_error(ERRNO(bytes));
  777. }
  778. if (bytes == len)
  779. HANDLE_HDR(handle)->flags |= WRITEABLE(0);
  780. else
  781. HANDLE_HDR(handle)->flags &= ~WRITEABLE(0);
  782. return bytes;
  783. }
  784. static int socket_delete (PAL_HANDLE handle, int access)
  785. {
  786. if (handle->sock.fd == PAL_IDX_POISON)
  787. return 0;
  788. if (!IS_HANDLE_TYPE(handle, tcp) && access)
  789. return -PAL_ERROR_INVAL;
  790. if (IS_HANDLE_TYPE(handle, tcp) || IS_HANDLE_TYPE(handle, tcpsrv)) {
  791. int shutdown;
  792. switch (access) {
  793. case 0:
  794. shutdown = SHUT_RDWR;
  795. break;
  796. case PAL_DELETE_RD:
  797. shutdown = SHUT_RD;
  798. break;
  799. case PAL_DELETE_WR:
  800. shutdown = SHUT_WR;
  801. break;
  802. default:
  803. return -PAL_ERROR_INVAL;
  804. }
  805. INLINE_SYSCALL(shutdown, 2, handle->sock.fd, shutdown);
  806. }
  807. return 0;
  808. }
  809. struct __kernel_linger {
  810. int l_onoff;
  811. int l_linger;
  812. };
  813. static int socket_close (PAL_HANDLE handle)
  814. {
  815. if (handle->sock.fd != PAL_IDX_POISON) {
  816. struct __kernel_linger l;
  817. l.l_onoff = 1;
  818. l.l_linger = 0;
  819. INLINE_SYSCALL(setsockopt, 5, handle->sock.fd, SOL_SOCKET, SO_LINGER,
  820. &l, sizeof(struct __kernel_linger));
  821. INLINE_SYSCALL(close, 1, handle->sock.fd);
  822. handle->sock.fd = PAL_IDX_POISON;
  823. }
  824. if (handle->sock.bind)
  825. handle->sock.bind = (PAL_PTR) NULL;
  826. if (handle->sock.conn)
  827. handle->sock.conn = (PAL_PTR) NULL;
  828. return 0;
  829. }
  830. #ifndef FIONREAD
  831. # define FIONREAD 0x541B
  832. #endif
  833. static int socket_attrquerybyhdl (PAL_HANDLE handle, PAL_STREAM_ATTR * attr)
  834. {
  835. if (handle->sock.fd == PAL_IDX_POISON)
  836. return -PAL_ERROR_BADHANDLE;
  837. attr->handle_type = HANDLE_HDR(handle)->type;
  838. attr->disconnected = HANDLE_HDR(handle)->flags & ERROR(0);
  839. attr->nonblocking = handle->sock.nonblocking;
  840. attr->writeable = HANDLE_HDR(handle)->flags & WRITEABLE(0);
  841. attr->pending_size = 0; /* fill in later */
  842. attr->socket.linger = handle->sock.linger;
  843. attr->socket.receivebuf = handle->sock.receivebuf;
  844. attr->socket.sendbuf = handle->sock.sendbuf;
  845. attr->socket.receivetimeout = handle->sock.receivetimeout;
  846. attr->socket.sendtimeout = handle->sock.sendtimeout;
  847. attr->socket.tcp_cork = handle->sock.tcp_cork;
  848. attr->socket.tcp_keepalive = handle->sock.tcp_keepalive;
  849. attr->socket.tcp_nodelay = handle->sock.tcp_nodelay;
  850. int fd = handle->sock.fd, ret, val;
  851. if (IS_HANDLE_TYPE(handle, tcpsrv)) {
  852. struct pollfd pfd = { .fd = fd, .events = POLLIN, .revents = 0 };
  853. struct timespec tp = { 0, 0 };
  854. ret = INLINE_SYSCALL(ppoll, 5, &pfd, 1, &tp, NULL, 0);
  855. attr->readable = (ret == 1 && pfd.revents == POLLIN);
  856. } else {
  857. /* try use ioctl FIONEAD to get the size of socket */
  858. ret = INLINE_SYSCALL(ioctl, 3, fd, FIONREAD, &val);
  859. if (IS_ERR(ret))
  860. return unix_to_pal_error(ERRNO(ret));
  861. attr->pending_size = val;
  862. attr->readable = !!attr->pending_size > 0;
  863. }
  864. return 0;
  865. }
  866. static int socket_attrsetbyhdl (PAL_HANDLE handle, PAL_STREAM_ATTR * attr)
  867. {
  868. if (handle->sock.fd == PAL_IDX_POISON)
  869. return -PAL_ERROR_BADHANDLE;
  870. int fd = handle->sock.fd, ret, val;
  871. if (attr->nonblocking != handle->sock.nonblocking) {
  872. ret = INLINE_SYSCALL(fcntl, 3, fd, F_SETFL,
  873. attr->nonblocking ? O_NONBLOCK : 0);
  874. if (IS_ERR(ret))
  875. return unix_to_pal_error(ERRNO(ret));
  876. handle->sock.nonblocking = attr->nonblocking;
  877. }
  878. if (IS_HANDLE_TYPE(handle, tcpsrv)) {
  879. if (attr->socket.linger != handle->sock.linger) {
  880. struct __kernel_linger l;
  881. l.l_onoff = attr->socket.linger ? 1 : 0;
  882. l.l_linger = attr->socket.linger;
  883. ret = INLINE_SYSCALL(setsockopt, 5, fd, SOL_SOCKET, SO_LINGER,
  884. &l, sizeof(struct __kernel_linger));
  885. if (IS_ERR(ret))
  886. return unix_to_pal_error(ERRNO(ret));
  887. handle->sock.linger = attr->socket.linger;
  888. }
  889. if (attr->socket.receivebuf != handle->sock.receivebuf) {
  890. int val = attr->socket.receivebuf;
  891. ret = INLINE_SYSCALL(setsockopt, 5, fd, SOL_SOCKET, SO_RCVBUF,
  892. &val, sizeof(int));
  893. if (IS_ERR(ret))
  894. return unix_to_pal_error(ERRNO(ret));
  895. handle->sock.receivebuf = attr->socket.receivebuf;
  896. }
  897. if (attr->socket.sendbuf != handle->sock.sendbuf) {
  898. int val = attr->socket.sendbuf;
  899. ret = INLINE_SYSCALL(setsockopt, 5, fd, SOL_SOCKET, SO_SNDBUF,
  900. &val, sizeof(int));
  901. if (IS_ERR(ret))
  902. return unix_to_pal_error(ERRNO(ret));
  903. handle->sock.sendbuf = attr->socket.sendbuf;
  904. }
  905. if (attr->socket.receivetimeout != handle->sock.receivetimeout) {
  906. int val = attr->socket.receivetimeout;
  907. ret = INLINE_SYSCALL(setsockopt, 5, fd, SOL_SOCKET, SO_RCVTIMEO,
  908. &val, sizeof(int));
  909. if (IS_ERR(ret))
  910. return unix_to_pal_error(ERRNO(ret));
  911. handle->sock.receivetimeout = attr->socket.receivetimeout;
  912. }
  913. if (attr->socket.sendtimeout != handle->sock.sendtimeout) {
  914. int val = attr->socket.sendtimeout;
  915. ret = INLINE_SYSCALL(setsockopt, 5, fd, SOL_SOCKET, SO_SNDTIMEO,
  916. &val, sizeof(int));
  917. if (IS_ERR(ret))
  918. return unix_to_pal_error(ERRNO(ret));
  919. handle->sock.sendtimeout = attr->socket.sendtimeout;
  920. }
  921. }
  922. if (IS_HANDLE_TYPE(handle, tcp) || IS_HANDLE_TYPE(handle, tcpsrv)) {
  923. if (attr->socket.tcp_cork != handle->sock.tcp_cork) {
  924. val = attr->socket.tcp_cork ? 1 : 0;
  925. ret = INLINE_SYSCALL(setsockopt, 5, fd, SOL_TCP, TCP_CORK,
  926. &val, sizeof(int));
  927. if (IS_ERR(ret))
  928. return unix_to_pal_error(ERRNO(ret));
  929. handle->sock.tcp_cork = attr->socket.tcp_cork;
  930. }
  931. if (attr->socket.tcp_keepalive != handle->sock.tcp_keepalive) {
  932. val = attr->socket.tcp_keepalive ? 1 : 0;
  933. ret = INLINE_SYSCALL(setsockopt, 5, fd, SOL_SOCKET, SO_KEEPALIVE,
  934. &val, sizeof(int));
  935. if (IS_ERR(ret))
  936. return unix_to_pal_error(ERRNO(ret));
  937. handle->sock.tcp_keepalive = attr->socket.tcp_keepalive;
  938. }
  939. if (attr->socket.tcp_nodelay != handle->sock.tcp_nodelay) {
  940. val = attr->socket.tcp_nodelay ? 1 : 0;
  941. ret = INLINE_SYSCALL(setsockopt, 5, fd, SOL_TCP, TCP_NODELAY,
  942. &val, sizeof(int));
  943. if (IS_ERR(ret))
  944. return unix_to_pal_error(ERRNO(ret));
  945. handle->sock.tcp_nodelay = attr->socket.tcp_nodelay;
  946. }
  947. }
  948. return 0;
  949. }
  950. static int socket_getname (PAL_HANDLE handle, char * buffer, int count)
  951. {
  952. int old_count = count;
  953. int ret;
  954. const char * prefix = NULL;
  955. int prefix_len = 0;
  956. struct sockaddr * bind_addr = NULL, * dest_addr = NULL;
  957. switch (PAL_GET_TYPE(handle)) {
  958. case pal_type_tcpsrv:
  959. prefix_len = static_strlen("tcp.srv");
  960. prefix = "tcp.srv";
  961. bind_addr = (struct sockaddr *) handle->sock.bind;
  962. break;
  963. case pal_type_tcp:
  964. prefix_len = static_strlen("tcp");
  965. prefix = "tcp";
  966. bind_addr = (struct sockaddr *) handle->sock.bind;
  967. dest_addr = (struct sockaddr *) handle->sock.conn;
  968. break;
  969. case pal_type_udpsrv:
  970. prefix_len = static_strlen("udp.srv");
  971. prefix = "udp.srv";
  972. bind_addr = (struct sockaddr *) handle->sock.bind;
  973. break;
  974. case pal_type_udp:
  975. prefix_len = static_strlen("udp");
  976. prefix = "udp";
  977. bind_addr = (struct sockaddr *) handle->sock.bind;
  978. dest_addr = (struct sockaddr *) handle->sock.conn;
  979. break;
  980. default:
  981. return -PAL_ERROR_INVAL;
  982. }
  983. if (prefix_len >= count)
  984. return -PAL_ERROR_OVERFLOW;
  985. memcpy(buffer, prefix, prefix_len + 1);
  986. buffer += prefix_len;
  987. count -= prefix_len;
  988. for (int i = 0 ; i < 2 ; i++) {
  989. struct sockaddr * addr = i ? dest_addr : bind_addr;
  990. if (addr) {
  991. if (count <= 1)
  992. return -PAL_ERROR_OVERFLOW;
  993. buffer[0] = ':';
  994. buffer[1] = 0;
  995. buffer++;
  996. count--;
  997. if ((ret = inet_create_uri(buffer, count, addr,
  998. addr_size(addr))) < 0)
  999. return ret;
  1000. buffer += ret;
  1001. count -= ret;
  1002. }
  1003. }
  1004. return old_count - count;
  1005. }
  1006. struct handle_ops tcp_ops = {
  1007. .getname = &socket_getname,
  1008. .open = &tcp_open,
  1009. .waitforclient = &tcp_accept,
  1010. .read = &tcp_read,
  1011. .write = &tcp_write,
  1012. .delete = &socket_delete,
  1013. .close = &socket_close,
  1014. .attrquerybyhdl = &socket_attrquerybyhdl,
  1015. .attrsetbyhdl = &socket_attrsetbyhdl,
  1016. };
  1017. struct handle_ops udp_ops = {
  1018. .getname = &socket_getname,
  1019. .open = &udp_open,
  1020. .read = &udp_receive,
  1021. .write = &udp_send,
  1022. .delete = &socket_delete,
  1023. .close = &socket_close,
  1024. .attrquerybyhdl = &socket_attrquerybyhdl,
  1025. .attrsetbyhdl = &socket_attrsetbyhdl,
  1026. };
  1027. struct handle_ops udpsrv_ops = {
  1028. .getname = &socket_getname,
  1029. .open = &udp_open,
  1030. .readbyaddr = &udp_receivebyaddr,
  1031. .writebyaddr = &udp_sendbyaddr,
  1032. .delete = &socket_delete,
  1033. .close = &socket_close,
  1034. .attrquerybyhdl = &socket_attrquerybyhdl,
  1035. .attrsetbyhdl = &socket_attrsetbyhdl,
  1036. };
  1037. PAL_HANDLE _DkBroadcastStreamOpen (void)
  1038. {
  1039. if (!pal_sec.mcast_port) {
  1040. unsigned short mcast_port;
  1041. _DkFastRandomBitsRead(&mcast_port, sizeof(unsigned short));
  1042. pal_sec.mcast_port = mcast_port > 1024 ? mcast_port : mcast_port + 1024;
  1043. }
  1044. struct sockaddr_in addr;
  1045. int ret = 0;
  1046. addr.sin_family = AF_INET;
  1047. addr.sin_addr.s_addr = INADDR_ANY;
  1048. addr.sin_port = __htons(pal_sec.mcast_port);
  1049. /* set up server (sender) side */
  1050. int srv = INLINE_SYSCALL(socket, 3, AF_INET, SOCK_DGRAM|SOCK_CLOEXEC, 0);
  1051. if (IS_ERR(srv))
  1052. goto err;
  1053. ret = INLINE_SYSCALL(setsockopt, 5, srv, IPPROTO_IP, IP_MULTICAST_IF,
  1054. &addr.sin_addr.s_addr, sizeof(addr.sin_addr.s_addr));
  1055. if (IS_ERR(ret))
  1056. goto err_srv;
  1057. /* set up client (receiver) side */
  1058. int cli = INLINE_SYSCALL(socket, 3, AF_INET, SOCK_DGRAM|SOCK_CLOEXEC, 0);
  1059. if (IS_ERR(cli))
  1060. goto err_srv;
  1061. int reuse = 1;
  1062. INLINE_SYSCALL(setsockopt, 5, cli, SOL_SOCKET, SO_REUSEADDR,
  1063. &reuse, sizeof(reuse));
  1064. ret = INLINE_SYSCALL(bind, 3, cli, &addr, sizeof(addr));
  1065. if (IS_ERR(ret))
  1066. goto err_cli;
  1067. ret = INLINE_SYSCALL(setsockopt, 5, cli, IPPROTO_IP, IP_MULTICAST_IF,
  1068. &addr.sin_addr.s_addr, sizeof(addr.sin_addr.s_addr));
  1069. if (IS_ERR(ret))
  1070. goto err_cli;
  1071. inet_pton4(GRAPHENE_MCAST_GROUP, sizeof(GRAPHENE_MCAST_GROUP) - 1,
  1072. &addr.sin_addr.s_addr);
  1073. struct ip_mreq group;
  1074. group.imr_multiaddr.s_addr = addr.sin_addr.s_addr;
  1075. group.imr_interface.s_addr = INADDR_ANY;
  1076. ret = INLINE_SYSCALL(setsockopt, 5, cli, IPPROTO_IP, IP_ADD_MEMBERSHIP,
  1077. &group, sizeof(group));
  1078. if (IS_ERR(ret))
  1079. goto err_cli;
  1080. PAL_HANDLE hdl = malloc(HANDLE_SIZE(mcast));
  1081. SET_HANDLE_TYPE(hdl, mcast);
  1082. HANDLE_HDR(hdl)->flags |= WFD(1)|WRITEABLE(1);
  1083. hdl->mcast.srv = srv;
  1084. hdl->mcast.cli = cli;
  1085. hdl->mcast.port = (PAL_NUM) pal_sec.mcast_port;
  1086. hdl->mcast.nonblocking = PAL_FALSE;
  1087. hdl->mcast.addr = (PAL_PTR) remalloc(&addr, sizeof(addr));
  1088. return hdl;
  1089. err_cli:
  1090. INLINE_SYSCALL(close, 1, cli);
  1091. err_srv:
  1092. INLINE_SYSCALL(close, 1, srv);
  1093. err:
  1094. return NULL;
  1095. }
  1096. static int mcast_send (PAL_HANDLE handle, int offset, int size,
  1097. const void * buf)
  1098. {
  1099. if (handle->mcast.srv == PAL_IDX_POISON)
  1100. return -PAL_ERROR_BADHANDLE;
  1101. struct msghdr hdr;
  1102. struct iovec iov;
  1103. iov.iov_base = (void *) buf;
  1104. iov.iov_len = size;
  1105. hdr.msg_name = (char *) handle->mcast.addr;
  1106. hdr.msg_namelen = sizeof(struct sockaddr_in);
  1107. hdr.msg_iov = &iov;
  1108. hdr.msg_iovlen = 1;
  1109. hdr.msg_control = NULL;
  1110. hdr.msg_controllen = 0;
  1111. hdr.msg_flags = 0;
  1112. int bytes = INLINE_SYSCALL(sendmsg, 3, handle->mcast.srv, &hdr,
  1113. MSG_NOSIGNAL);
  1114. if (IS_ERR(bytes))
  1115. switch(ERRNO(bytes)) {
  1116. case ECONNRESET:
  1117. case EPIPE:
  1118. return -PAL_ERROR_CONNFAILED;
  1119. case EAGAIN:
  1120. HANDLE_HDR(handle)->flags &= ~WRITEABLE(1);
  1121. default:
  1122. return unix_to_pal_error(ERRNO(bytes));
  1123. }
  1124. if (bytes == size)
  1125. HANDLE_HDR(handle)->flags |= WRITEABLE(1);
  1126. else
  1127. HANDLE_HDR(handle)->flags &= ~WRITEABLE(1);
  1128. return bytes;
  1129. }
  1130. static int mcast_receive (PAL_HANDLE handle, int offset, int size, void * buf)
  1131. {
  1132. if (handle->mcast.cli == PAL_IDX_POISON)
  1133. return -PAL_ERROR_BADHANDLE;
  1134. struct msghdr hdr;
  1135. struct iovec iov;
  1136. iov.iov_base = buf;
  1137. iov.iov_len = size;
  1138. hdr.msg_name = NULL;
  1139. hdr.msg_namelen = 0;
  1140. hdr.msg_iov = &iov;
  1141. hdr.msg_iovlen = 1;
  1142. hdr.msg_control = NULL;
  1143. hdr.msg_controllen = 0;
  1144. hdr.msg_flags = 0;
  1145. int bytes = INLINE_SYSCALL(recvmsg, 3, handle->mcast.cli, &hdr, 0);
  1146. if (IS_ERR(bytes))
  1147. return -PAL_ERROR_DENIED;
  1148. return bytes;
  1149. }
  1150. static int mcast_attrquerybyhdl (PAL_HANDLE handle, PAL_STREAM_ATTR * attr)
  1151. {
  1152. int ret, val;
  1153. if (handle->mcast.cli == PAL_IDX_POISON)
  1154. return -PAL_ERROR_BADHANDLE;
  1155. ret = INLINE_SYSCALL(ioctl, 3, handle->mcast.cli, FIONREAD, &val);
  1156. if (IS_ERR(ret))
  1157. return unix_to_pal_error(ERRNO(ret));
  1158. attr->handle_type = pal_type_mcast;
  1159. attr->disconnected = HANDLE_HDR(handle)->flags & (ERROR(0)|ERROR(1));
  1160. attr->nonblocking = handle->mcast.nonblocking;
  1161. attr->readable = !!val;
  1162. attr->writeable = HANDLE_HDR(handle)->flags & WRITEABLE(1);
  1163. attr->runnable = PAL_FALSE;
  1164. attr->pending_size = val;
  1165. return 0;
  1166. }
  1167. static int mcast_attrsetbyhdl (PAL_HANDLE handle, PAL_STREAM_ATTR * attr)
  1168. {
  1169. if (handle->mcast.cli == PAL_IDX_POISON)
  1170. return -PAL_ERROR_BADHANDLE;
  1171. int ret;
  1172. PAL_BOL * nonblocking = &handle->mcast.nonblocking;
  1173. if (attr->nonblocking != *nonblocking) {
  1174. ret = INLINE_SYSCALL(fcntl, 3, handle->mcast.cli, F_SETFL,
  1175. *nonblocking ? O_NONBLOCK : 0);
  1176. if (IS_ERR(ret))
  1177. return unix_to_pal_error(ERRNO(ret));
  1178. *nonblocking = attr->nonblocking;
  1179. }
  1180. return 0;
  1181. }
  1182. struct handle_ops mcast_ops = {
  1183. .write = &mcast_send,
  1184. .read = &mcast_receive,
  1185. .attrquerybyhdl = &mcast_attrquerybyhdl,
  1186. .attrsetbyhdl = &mcast_attrsetbyhdl,
  1187. };