sq_socket.cpp 56 KB

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  1. #include "squirrel.h"
  2. #include "sqstdblobimpl.h"
  3. #include <string.h>
  4. #include <stdio.h>
  5. SQ_OPT_STRING_STRLEN();
  6. #include "lua_socket.h"
  7. #ifdef _WIN32
  8. #include <windows.h>
  9. #else
  10. #include <time.h>
  11. #include <sys/time.h>
  12. #endif
  13. /* option registry */
  14. typedef struct t_opt {
  15. const char *name;
  16. int (*func)(HSQUIRRELVM v, p_socket ps);
  17. } t_opt;
  18. typedef t_opt *p_opt;
  19. /*=========================================================================*\
  20. * Internal functions prototypes
  21. \*=========================================================================*/
  22. static int opt_setmembership(HSQUIRRELVM v, p_socket ps, int level, int name);
  23. static int opt_setboolean(HSQUIRRELVM v, p_socket ps, int level, int name);
  24. static int opt_set(HSQUIRRELVM v, p_socket ps, int level, int name,
  25. void *val, int len);
  26. /*=========================================================================*\
  27. * Exported functions
  28. \*=========================================================================*/
  29. /*-------------------------------------------------------------------------*\
  30. * Calls appropriate option handler
  31. \*-------------------------------------------------------------------------*/
  32. static int opt_meth_setoption(HSQUIRRELVM v, p_opt opt, p_socket ps)
  33. {
  34. SQ_FUNC_VARS_NO_TOP(v);
  35. SQ_GET_STRING(v, 2, name); /* obj, name, ... */
  36. while (opt->name && strcmp(name, opt->name))
  37. opt++;
  38. if (!opt->func) {
  39. return sq_throwerror(v, _SC("unsupported option `%.35s'"), name);
  40. }
  41. return opt->func(v, ps);
  42. }
  43. /* enables reuse of local address */
  44. static int opt_reuseaddr(HSQUIRRELVM v, p_socket ps)
  45. {
  46. return opt_setboolean(v, ps, SOL_SOCKET, SO_REUSEADDR);
  47. }
  48. /* disables the Naggle algorithm */
  49. static int opt_tcp_nodelay(HSQUIRRELVM v, p_socket ps)
  50. {
  51. return opt_setboolean(v, ps, IPPROTO_TCP, TCP_NODELAY);
  52. }
  53. static int opt_keepalive(HSQUIRRELVM v, p_socket ps)
  54. {
  55. return opt_setboolean(v, ps, SOL_SOCKET, SO_KEEPALIVE);
  56. }
  57. static int opt_dontroute(HSQUIRRELVM v, p_socket ps)
  58. {
  59. return opt_setboolean(v, ps, SOL_SOCKET, SO_DONTROUTE);
  60. }
  61. static int opt_broadcast(HSQUIRRELVM v, p_socket ps)
  62. {
  63. return opt_setboolean(v, ps, SOL_SOCKET, SO_BROADCAST);
  64. }
  65. static int opt_ip_multicast_loop(HSQUIRRELVM v, p_socket ps)
  66. {
  67. return opt_setboolean(v, ps, IPPROTO_IP, IP_MULTICAST_LOOP);
  68. }
  69. static int opt_linger(HSQUIRRELVM v, p_socket ps)
  70. {
  71. SQ_FUNC_VARS_NO_TOP(v);
  72. struct linger li; /* obj, name, table */
  73. if(sq_gettype(v, 3) != OT_TABLE) return sq_throwerror(v, _SC("table expected as parameter 2"));
  74. sq_pushliteral(v, _SC("on"));
  75. sq_get(v, 3);
  76. if (!sq_gettype(v, -1) != OT_BOOL)
  77. return sq_throwerror(v, _SC("boolean 'on' field expected"));
  78. SQ_GET_BOOL(v, -1, bval);
  79. li.l_onoff = (u_short) bval == SQTrue;
  80. sq_pushliteral(v, _SC("timeout"));
  81. sq_get(v, 3);
  82. if (!sq_gettype(v, -1) != OT_INTEGER)
  83. return sq_throwerror(v, _SC("integer 'timeout' field expected"));
  84. SQ_GET_INTEGER(v, -1, ival);
  85. li.l_linger = (u_short) ival;
  86. return opt_set(v, ps, SOL_SOCKET, SO_LINGER, (char *) &li, sizeof(li));
  87. }
  88. static int opt_ip_multicast_ttl(HSQUIRRELVM v, p_socket ps)
  89. {
  90. SQ_FUNC_VARS_NO_TOP(v);
  91. SQ_GET_INTEGER(v, 3, val); /* obj, name, int */
  92. return opt_set(v, ps, SOL_SOCKET, SO_LINGER, (char *) &val, sizeof(val));
  93. }
  94. static int opt_ip_add_membership(HSQUIRRELVM v, p_socket ps)
  95. {
  96. return opt_setmembership(v, ps, IPPROTO_IP, IP_ADD_MEMBERSHIP);
  97. }
  98. static int opt_ip_drop_membersip(HSQUIRRELVM v, p_socket ps)
  99. {
  100. return opt_setmembership(v, ps, IPPROTO_IP, IP_DROP_MEMBERSHIP);
  101. }
  102. /*=========================================================================*\
  103. * Auxiliar functions
  104. \*=========================================================================*/
  105. /*-------------------------------------------------------------------------*\
  106. * Some systems do not provide this so that we provide our own. It's not
  107. * marvelously fast, but it works just fine.
  108. \*-------------------------------------------------------------------------*/
  109. #ifdef INET_ATON
  110. static int inet_aton(const char *cp, struct in_addr *inp)
  111. {
  112. unsigned int a = 0, b = 0, c = 0, d = 0;
  113. int n = 0, r;
  114. unsigned long int addr = 0;
  115. r = sscanf(cp, "%u.%u.%u.%u%n", &a, &b, &c, &d, &n);
  116. if (r == 0 || n == 0) return 0;
  117. cp += n;
  118. if (*cp) return 0;
  119. if (a > 255 || b > 255 || c > 255 || d > 255) return 0;
  120. if (inp) {
  121. addr += a; addr <<= 8;
  122. addr += b; addr <<= 8;
  123. addr += c; addr <<= 8;
  124. addr += d;
  125. inp->s_addr = htonl(addr);
  126. }
  127. return 1;
  128. }
  129. #endif
  130. #ifdef _WIN32
  131. //#define inet_aton inet_addr
  132. //#define inet_aton(a,b) inet_pton(a,b, AF_INET)
  133. #endif
  134. static int opt_setmembership(HSQUIRRELVM v, p_socket ps, int level, int name)
  135. {
  136. SQ_FUNC_VARS_NO_TOP(v);
  137. struct ip_mreq val; /* obj, name, table */
  138. if(sq_gettype(v, 3) != OT_TABLE) return sq_throwerror(v, _SC("table expected as parameter 2"));
  139. sq_pushliteral(v, _SC("multiaddr"));
  140. sq_get(v, 3);
  141. if (!sq_gettype(v, -1) != OT_STRING)
  142. return sq_throwerror(v, _SC("string 'multiaddr' field expected"));
  143. SQ_GET_STRING(v, -1, multiaddr);
  144. if (!inet_aton(multiaddr, &val.imr_multiaddr))
  145. return sq_throwerror(v, _SC("invalid 'multiaddr' ip address"));
  146. sq_pushliteral(v, _SC("interface"));
  147. sq_get(v, 3);
  148. if (!sq_gettype(v, -1) != OT_STRING)
  149. return sq_throwerror(v, _SC("string 'interface' field expected"));
  150. val.imr_interface.s_addr = htonl(INADDR_ANY);
  151. SQ_GET_STRING(v, -1, saddr);
  152. if (strcmp(saddr, "*") &&
  153. !inet_aton(saddr, &val.imr_interface))
  154. return sq_throwerror(v, _SC("invalid 'interface' ip address"));
  155. return opt_set(v, ps, level, name, (char *) &val, sizeof(val));
  156. }
  157. static
  158. int opt_set(HSQUIRRELVM v, p_socket ps, int level, int name, void *val, int len)
  159. {
  160. if (setsockopt(*ps, level, name, (char *) val, len) < 0) {
  161. return sq_throwerror(v, _SC("setsockopt failed"));
  162. }
  163. return 0;
  164. }
  165. static int opt_setboolean(HSQUIRRELVM v, p_socket ps, int level, int name)
  166. {
  167. SQ_FUNC_VARS_NO_TOP(v);
  168. SQ_GET_BOOL(v, 3, bval);
  169. int val = bval == SQTrue; /* obj, name, bool */
  170. return opt_set(v, ps, level, name, (char *) &val, sizeof(val));
  171. }
  172. /*=========================================================================*\
  173. * Global Lua functions
  174. \*=========================================================================*/
  175. /*-------------------------------------------------------------------------*\
  176. * Sets timeout values for IO operations
  177. * Lua Input: base, time [, mode]
  178. * time: time out value in seconds
  179. * mode: "b" for block timeout, "t" for total timeout. (default: b)
  180. \*-------------------------------------------------------------------------*/
  181. static int timeout_meth_settimeout(HSQUIRRELVM v, p_timeout tm) {
  182. SQ_FUNC_VARS(v);
  183. SQ_OPT_INTEGER(v, 2, t, -1);
  184. SQ_OPT_STRING(v, 3, mode, "b");
  185. switch (*mode) {
  186. case _SC('b'):
  187. tm->block = t;
  188. break;
  189. case _SC('r'): case _SC('t'):
  190. tm->total = t;
  191. break;
  192. default:
  193. return sq_throwerror(v, _SC("invalid timeout mode"));
  194. break;
  195. }
  196. return 0;
  197. }
  198. /*=========================================================================*\
  199. * Test support functions
  200. \*=========================================================================*/
  201. /*-------------------------------------------------------------------------*\
  202. * Returns the time the system has been up, in secconds.
  203. \*-------------------------------------------------------------------------*/
  204. static int timeout_lua_gettime(HSQUIRRELVM v)
  205. {
  206. sq_pushinteger(v, lua_timeout_gettime());
  207. return 1;
  208. }
  209. /*-------------------------------------------------------------------------*\
  210. * Sleep for n seconds.
  211. \*-------------------------------------------------------------------------*/
  212. static int timeout_lua_sleep(HSQUIRRELVM v)
  213. {
  214. SQ_FUNC_VARS_NO_TOP(v);
  215. SQ_GET_FLOAT(v, 2, n);
  216. #ifdef _WIN32
  217. Sleep((int)(n*1000));
  218. #else
  219. struct timespec t, r;
  220. t.tv_sec = (int) n;
  221. n -= t.tv_sec;
  222. t.tv_nsec = (int) (n * 1000000000);
  223. if (t.tv_nsec >= 1000000000) t.tv_nsec = 999999999;
  224. while (nanosleep(&t, &r) != 0) {
  225. t.tv_sec = r.tv_sec;
  226. t.tv_nsec = r.tv_nsec;
  227. }
  228. #endif
  229. return 0;
  230. }
  231. /*-------------------------------------------------------------------------*\
  232. * Sleep for n Milliseconds.
  233. * Clone of the above for murgaLua.
  234. \*-------------------------------------------------------------------------*/
  235. static int timeout_lua_sleepMillisecs(HSQUIRRELVM v)
  236. {
  237. SQ_FUNC_VARS_NO_TOP(v);
  238. SQ_GET_FLOAT(v, 2, n);
  239. #ifdef _WIN32
  240. Sleep((int)(n));
  241. #else
  242. struct timespec t, r;
  243. n = n / 1000;
  244. t.tv_sec = (int) n;
  245. n -= t.tv_sec;
  246. t.tv_nsec = (int) (n * 1000000000);
  247. if (t.tv_nsec >= 1000000000) t.tv_nsec = 999999999;
  248. while (nanosleep(&t, &r) != 0) {
  249. t.tv_sec = r.tv_sec;
  250. t.tv_nsec = r.tv_nsec;
  251. }
  252. #endif
  253. return 0;
  254. }
  255. /*=========================================================================*\
  256. * Internal functions
  257. \*=========================================================================*/
  258. /*-------------------------------------------------------------------------*\
  259. * Passes all resolver information to Lua as a table
  260. \*-------------------------------------------------------------------------*/
  261. static void inet_pushresolved(HSQUIRRELVM v, struct hostent *hp)
  262. {
  263. char **alias;
  264. struct in_addr **addr;
  265. int i, resolved;
  266. sq_newtable(v); resolved = sq_gettop(v);
  267. sq_pushliteral(v, _SC("name"));
  268. sq_pushstring(v, hp->h_name, -1);
  269. sq_rawset(v, resolved);
  270. sq_pushliteral(v, _SC("ip"));
  271. sq_pushliteral(v, _SC("alias"));
  272. i = 1;
  273. alias = hp->h_aliases;
  274. sq_newarray(v, 0);
  275. if (alias) {
  276. while (*alias) {
  277. sq_pushstring(v, *alias, -1);
  278. sq_arrayappend(v, -2);
  279. i++; alias++;
  280. }
  281. }
  282. sq_rawset(v, resolved);
  283. i = 1;
  284. sq_newarray(v, 0);
  285. addr = (struct in_addr **) hp->h_addr_list;
  286. if (addr) {
  287. while (*addr) {
  288. sq_pushstring(v, inet_ntoa(**addr), -1);
  289. sq_arrayappend(v, -2);
  290. i++; addr++;
  291. }
  292. }
  293. sq_rawset(v, resolved);
  294. }
  295. /*-------------------------------------------------------------------------*\
  296. * Returns all information provided by the resolver given a host name
  297. * or ip address
  298. \*-------------------------------------------------------------------------*/
  299. static int inet_gethost(const char *address, struct hostent **hp) {
  300. struct in_addr addr;
  301. if (inet_aton(address, &addr))
  302. return lua_socket_gethostbyaddr((char *) &addr, sizeof(addr), hp);
  303. else
  304. return lua_socket_gethostbyname(address, hp);
  305. }
  306. /*-------------------------------------------------------------------------*\
  307. * Returns all information provided by the resolver given a host name
  308. * or ip address
  309. \*-------------------------------------------------------------------------*/
  310. static int inet_global_tohostname(HSQUIRRELVM v) {
  311. SQ_FUNC_VARS_NO_TOP(v);
  312. SQ_GET_STRING(v, 2, address);
  313. struct hostent *hp = NULL;
  314. int err = inet_gethost(address, &hp);
  315. if (err != IO_DONE) return sq_throwerror(v, lua_socket_hoststrerror(err));
  316. sq_newtable(v);
  317. sq_pushliteral(v, _SC("name"));
  318. sq_pushstring(v, hp->h_name, -1);
  319. sq_rawset(v, -3);
  320. sq_pushliteral(v, _SC("resolved"));
  321. inet_pushresolved(v, hp);
  322. sq_rawset(v, -3);
  323. return 1;
  324. }
  325. /*-------------------------------------------------------------------------*\
  326. * Returns all information provided by the resolver given a host name
  327. * or ip address
  328. \*-------------------------------------------------------------------------*/
  329. static int inet_global_toip(HSQUIRRELVM v)
  330. {
  331. SQ_FUNC_VARS_NO_TOP(v);
  332. SQ_GET_STRING(v, 2, address);
  333. struct hostent *hp = NULL;
  334. int err = inet_gethost(address, &hp);
  335. if (err != IO_DONE) return sq_throwerror(v, lua_socket_hoststrerror(err));
  336. sq_newtable(v);
  337. sq_pushliteral(v, _SC("address"));
  338. sq_pushstring(v, inet_ntoa(*((struct in_addr *) hp->h_addr)), -1);
  339. sq_rawset(v, -3);
  340. sq_pushliteral(v, _SC("resolved"));
  341. inet_pushresolved(v, hp);
  342. sq_rawset(v, -3);
  343. return 1;
  344. }
  345. /*-------------------------------------------------------------------------*\
  346. * Gets the host name
  347. \*-------------------------------------------------------------------------*/
  348. static int inet_global_gethostname(HSQUIRRELVM v)
  349. {
  350. char name[257];
  351. name[256] = '\0';
  352. if (gethostname(name, 256) < 0) return sq_throwerror(v, _SC("gethostname failed"));
  353. sq_pushstring(v, name, -1);
  354. return 1;
  355. }
  356. /*=========================================================================*\
  357. * Lua methods
  358. \*=========================================================================*/
  359. /*-------------------------------------------------------------------------*\
  360. * Retrieves socket peer name
  361. \*-------------------------------------------------------------------------*/
  362. static int inet_meth_getpeername(HSQUIRRELVM v, p_socket ps)
  363. {
  364. struct sockaddr_in peer;
  365. socklen_t peer_len = sizeof(peer);
  366. if (getpeername(*ps, (SA *) &peer, &peer_len) < 0) return sq_throwerror(v, _SC("getpeername failed"));
  367. sq_newtable(v);
  368. sq_pushliteral(v, _SC("address"));
  369. sq_pushstring(v, inet_ntoa(peer.sin_addr), -1);
  370. sq_rawset(v, -3);
  371. sq_pushliteral(v, _SC("port"));
  372. sq_pushinteger(v, ntohs(peer.sin_port));
  373. sq_rawset(v, -3);
  374. return 1;
  375. }
  376. /*-------------------------------------------------------------------------*\
  377. * Retrieves socket local name
  378. \*-------------------------------------------------------------------------*/
  379. static int inet_meth_getsockname(HSQUIRRELVM v, p_socket ps)
  380. {
  381. struct sockaddr_in local;
  382. socklen_t local_len = sizeof(local);
  383. if (getsockname(*ps, (SA *) &local, &local_len) < 0) return sq_throwerror(v, _SC("getsockname failed"));
  384. sq_newtable(v);
  385. sq_pushliteral(v, _SC("address"));
  386. sq_pushstring(v, inet_ntoa(local.sin_addr), -1);
  387. sq_rawset(v, -3);
  388. sq_pushliteral(v, _SC("port"));
  389. sq_pushinteger(v, ntohs(local.sin_port));
  390. sq_rawset(v, -3);
  391. return 1;
  392. }
  393. /*-------------------------------------------------------------------------*\
  394. * Tries to create a new inet socket
  395. \*-------------------------------------------------------------------------*/
  396. static const char *inet_trycreate(p_socket ps, int type) {
  397. return lua_socket_strerror(lua_socket_create(ps, AF_INET, type, 0));
  398. }
  399. /*-------------------------------------------------------------------------*\
  400. * Tries to connect to remote address (address, port)
  401. \*-------------------------------------------------------------------------*/
  402. static const char *inet_tryconnect(p_socket ps, const char *address,
  403. unsigned short port, p_timeout tm)
  404. {
  405. struct sockaddr_in remote;
  406. int err;
  407. memset(&remote, 0, sizeof(remote));
  408. remote.sin_family = AF_INET;
  409. remote.sin_port = htons(port);
  410. if (strcmp(address, "*")) {
  411. if (!inet_aton(address, &remote.sin_addr)) {
  412. struct hostent *hp = NULL;
  413. struct in_addr **addr;
  414. err = lua_socket_gethostbyname(address, &hp);
  415. if (err != IO_DONE) return lua_socket_hoststrerror(err);
  416. addr = (struct in_addr **) hp->h_addr_list;
  417. memcpy(&remote.sin_addr, *addr, sizeof(struct in_addr));
  418. }
  419. } else remote.sin_family = AF_UNSPEC;
  420. err = lua_socket_connect(ps, (SA *) &remote, sizeof(remote), tm);
  421. return lua_socket_strerror(err);
  422. }
  423. /*-------------------------------------------------------------------------*\
  424. * Tries to bind socket to (address, port)
  425. \*-------------------------------------------------------------------------*/
  426. static const char *inet_trybind(p_socket ps, const char *address, unsigned short port)
  427. {
  428. struct sockaddr_in local;
  429. int err;
  430. memset(&local, 0, sizeof(local));
  431. /* address is either wildcard or a valid ip address */
  432. local.sin_addr.s_addr = htonl(INADDR_ANY);
  433. local.sin_port = htons(port);
  434. local.sin_family = AF_INET;
  435. if (strcmp(address, "*") && !inet_aton(address, &local.sin_addr)) {
  436. struct hostent *hp = NULL;
  437. struct in_addr **addr;
  438. err = lua_socket_gethostbyname(address, &hp);
  439. if (err != IO_DONE) return lua_socket_hoststrerror(err);
  440. addr = (struct in_addr **) hp->h_addr_list;
  441. memcpy(&local.sin_addr, *addr, sizeof(struct in_addr));
  442. }
  443. err = lua_socket_bind(ps, (SA *) &local, sizeof(local));
  444. if (err != IO_DONE) lua_socket_destroy(ps);
  445. return lua_socket_strerror(err);
  446. }
  447. /*=========================================================================*\
  448. * Input/Output interface for Lua programs
  449. * LuaSocket toolkit
  450. *
  451. * Line patterns require buffering. Reading one character at a time involves
  452. * too many system calls and is very slow. This module implements the
  453. * LuaSocket interface for input/output on connected objects, as seen by
  454. * Lua programs.
  455. *
  456. * Input is buffered. Output is *not* buffered because there was no simple
  457. * way of making sure the buffered output data would ever be sent.
  458. *
  459. * The module is built on top of the I/O abstraction defined in io.h and the
  460. * timeout management is done with the timeout.h interface.
  461. *
  462. * Adapted to Squirrel by Domingo Alvarez Duarte on 04/01/2013
  463. *
  464. * RCS ID: $Id: buffer.h,v 1.12 2005/10/07 04:40:59 diego Exp $
  465. \*=========================================================================*/
  466. /* buffer size in bytes */
  467. #define BUF_SIZE 8192
  468. /* buffer control structure */
  469. typedef struct t_buffer_ {
  470. SQFloat birthday; /* throttle support info: creation time, */
  471. SQInteger sent, received; /* bytes sent, and bytes received */
  472. p_io io; /* IO driver used for this buffer */
  473. p_timeout tm; /* timeout management for this buffer */
  474. #ifdef LUASOCKET_DEBUG
  475. int elapsed;
  476. #endif
  477. SQInteger first, last; /* index of first and last bytes of stored data */
  478. char data[BUF_SIZE]; /* storage space for buffer data */
  479. } t_buffer;
  480. typedef t_buffer *p_buffer;
  481. /*=========================================================================*\
  482. * Internal function prototypes
  483. \*=========================================================================*/
  484. static int recvraw(p_buffer buf, size_t wanted, SQBlob &b);
  485. static int recvline(p_buffer buf, SQBlob &b);
  486. static int recvall(p_buffer buf, SQBlob &b);
  487. static int buffer_get(p_buffer buf, const char **data, size_t *count);
  488. static void buffer_skip(p_buffer buf, size_t count);
  489. static int sendraw(p_buffer buf, const char *data, size_t count, size_t *sent);
  490. /* min and max macros */
  491. #ifndef MIN
  492. #define MIN(x, y) ((x) < (y) ? x : y)
  493. #endif
  494. #ifndef MAX
  495. #define MAX(x, y) ((x) > (y) ? x : y)
  496. #endif
  497. /*=========================================================================*\
  498. * Exported functions
  499. \*=========================================================================*/
  500. /*-------------------------------------------------------------------------*\
  501. * Initializes module
  502. \*-------------------------------------------------------------------------*/
  503. static int buffer_open(HSQUIRRELVM v) {
  504. (void) v;
  505. return 0;
  506. }
  507. /*-------------------------------------------------------------------------*\
  508. * Initializes C structure
  509. \*-------------------------------------------------------------------------*/
  510. static void buffer_init(p_buffer buf, p_io io, p_timeout tm) {
  511. buf->first = buf->last = 0;
  512. buf->io = io;
  513. buf->tm = tm;
  514. buf->received = buf->sent = 0;
  515. buf->birthday = lua_timeout_gettime();
  516. }
  517. /*-------------------------------------------------------------------------*\
  518. * object:getstats() interface
  519. \*-------------------------------------------------------------------------*/
  520. static int buffer_meth_getstats(HSQUIRRELVM v, p_buffer buf) {
  521. sq_newtable(v);
  522. sq_pushliteral(v, _SC("received"));
  523. sq_pushinteger(v, buf->received);
  524. sq_rawset(v, -3);
  525. sq_pushliteral(v, _SC("sent"));
  526. sq_pushinteger(v, buf->sent);
  527. sq_rawset(v, -3);
  528. sq_pushliteral(v, _SC("age"));
  529. sq_pushinteger(v, lua_timeout_gettime() - buf->birthday);
  530. sq_rawset(v, -3);
  531. return 1;
  532. }
  533. /*-------------------------------------------------------------------------*\
  534. * object:setstats() interface
  535. \*-------------------------------------------------------------------------*/
  536. static int buffer_meth_setstats(HSQUIRRELVM v, p_buffer buf) {
  537. SQ_FUNC_VARS(v);
  538. if(sq_getinteger(v, 2, &buf->received) < 0
  539. || sq_getinteger(v, 3, &buf->sent) < 0) return SQ_ERROR;
  540. if(_top_ > 3){
  541. SQ_GET_INTEGER(v, 4, age);
  542. buf->birthday = lua_timeout_gettime() - age;
  543. }
  544. return 0;
  545. }
  546. /*-------------------------------------------------------------------------*\
  547. * object:send() interface
  548. \*-------------------------------------------------------------------------*/
  549. static int buffer_meth_send(HSQUIRRELVM v, p_buffer buf) {
  550. SQ_FUNC_VARS(v);
  551. int err = IO_DONE;
  552. size_t sent = 0;
  553. SQ_GET_STRING(v, 2, data);
  554. SQ_OPT_INTEGER(v, 3, start, 0);
  555. SQ_OPT_INTEGER(v, 3, end, -1);
  556. #ifdef LUASOCKET_DEBUG
  557. p_timeout tm =
  558. #endif
  559. lua_timeout_markstart(buf->tm);
  560. if (start < 0) start = (data_size+start+1);
  561. if (end < 0) end = (data_size+end+1);
  562. if (start < 0) start = 0;
  563. if (end > data_size) end = data_size;
  564. if (start <= end) err = sendraw(buf, data+start, end-start, &sent);
  565. /* check if there was an error */
  566. if (err != IO_DONE) {
  567. return sq_throwerror(v, buf->io->error(buf->io->ctx, err));
  568. } else {
  569. sq_pushinteger(v, sent+start-1);
  570. }
  571. #ifdef LUASOCKET_DEBUG
  572. /* push time elapsed during operation as the last return value */
  573. buf->elapsed = timeout_gettime() - timeout_getstart(tm);
  574. #endif
  575. return 1;
  576. }
  577. /*-------------------------------------------------------------------------*\
  578. * object:receive() interface
  579. \*-------------------------------------------------------------------------*/
  580. static int buffer_meth_receive(HSQUIRRELVM v, p_buffer buf) {
  581. SQ_FUNC_VARS(v);
  582. int err = IO_DONE;
  583. SQBlob b(0, 8192);
  584. SQ_OPT_STRING(v, 3, prefix, NULL);
  585. #ifdef LUASOCKET_DEBUG
  586. p_timeout tm =
  587. #endif
  588. lua_timeout_markstart(buf->tm);
  589. /* initialize buffer with optional extra prefix
  590. * (useful for concatenating previous partial results) */
  591. b.Write(prefix, prefix_size);
  592. /* receive new patterns */
  593. SQObjectType ptype = sq_gettype(v, 2);
  594. if (ptype == OT_STRING) {
  595. SQ_GET_STRING(v, 2, p);
  596. if (p[0] == _SC('*') && p[1] == _SC('l')) err = recvline(buf, b);
  597. else if (p[0] == _SC('*') && p[1] == _SC('a')) err = recvall(buf, b);
  598. else return sq_throwerror(v, _SC("invalid receive pattern"));
  599. /* get a fixed number of bytes (minus what was already partially
  600. * received) */
  601. }
  602. else
  603. {
  604. SQ_GET_INTEGER(v, 2, recv_size);
  605. err = recvraw(buf, (size_t) recv_size-prefix_size, b);
  606. }
  607. /* check if there was an error */
  608. if (err != IO_DONE) {
  609. return sq_throwerror(v, buf->io->error(buf->io->ctx, err));
  610. /* we can't push anyting in the stack before pushing the
  611. * contents of the buffer. this is the reason for the complication */
  612. } else {
  613. sq_pushstring(v, (const SQChar*)b.GetBuf(), b.Len());
  614. }
  615. #ifdef LUASOCKET_DEBUG
  616. /* push time elapsed during operation as the last return value */
  617. buf->elapsed = timeout_gettime() - timeout_getstart(tm);
  618. #endif
  619. return 1;
  620. }
  621. /*-------------------------------------------------------------------------*\
  622. * Determines if there is any data in the read buffer
  623. \*-------------------------------------------------------------------------*/
  624. static int buffer_isempty(p_buffer buf) {
  625. return buf->first >= buf->last;
  626. }
  627. /*=========================================================================*\
  628. * Internal functions
  629. \*=========================================================================*/
  630. /*-------------------------------------------------------------------------*\
  631. * Sends a block of data (unbuffered)
  632. \*-------------------------------------------------------------------------*/
  633. #define STEPSIZE 8192
  634. static int sendraw(p_buffer buf, const char *data, size_t count, size_t *sent) {
  635. p_io io = buf->io;
  636. p_timeout tm = buf->tm;
  637. size_t total = 0;
  638. int err = IO_DONE;
  639. while (total < count && err == IO_DONE) {
  640. size_t done;
  641. size_t step = (count-total <= STEPSIZE)? count-total: STEPSIZE;
  642. err = io->send(io->ctx, data+total, step, &done, tm);
  643. total += done;
  644. }
  645. *sent = total;
  646. buf->sent += total;
  647. return err;
  648. }
  649. /*-------------------------------------------------------------------------*\
  650. * Reads a fixed number of bytes (buffered)
  651. \*-------------------------------------------------------------------------*/
  652. static int recvraw(p_buffer buf, size_t wanted, SQBlob &b) {
  653. int err = IO_DONE;
  654. size_t total = 0;
  655. while (err == IO_DONE) {
  656. size_t count; const char *data;
  657. err = buffer_get(buf, &data, &count);
  658. count = MIN(count, wanted - total);
  659. b.Write(data, count);
  660. buffer_skip(buf, count);
  661. total += count;
  662. if (total >= wanted) break;
  663. }
  664. return err;
  665. }
  666. /*-------------------------------------------------------------------------*\
  667. * Reads everything until the connection is closed (buffered)
  668. \*-------------------------------------------------------------------------*/
  669. static int recvall(p_buffer buf, SQBlob &b) {
  670. int err = IO_DONE;
  671. size_t total = 0;
  672. while (err == IO_DONE) {
  673. const char *data; size_t count;
  674. err = buffer_get(buf, &data, &count);
  675. total += count;
  676. b.Write(data, count);
  677. buffer_skip(buf, count);
  678. }
  679. if (err == IO_CLOSED) {
  680. if (total > 0) return IO_DONE;
  681. else return IO_CLOSED;
  682. } else return err;
  683. }
  684. /*-------------------------------------------------------------------------*\
  685. * Reads a line terminated by a CR LF pair or just by a LF. The CR and LF
  686. * are not returned by the function and are discarded from the buffer
  687. \*-------------------------------------------------------------------------*/
  688. static int recvline(p_buffer buf, SQBlob &b) {
  689. int err = IO_DONE;
  690. while (err == IO_DONE) {
  691. size_t count, pos; const char *data;
  692. err = buffer_get(buf, &data, &count);
  693. pos = 0;
  694. while (pos < count && data[pos] != '\n') {
  695. /* we ignore all \r's */
  696. if (data[pos] != '\r') b.WriteChar(data[pos]);
  697. pos++;
  698. }
  699. if (pos < count) { /* found '\n' */
  700. buffer_skip(buf, pos+1); /* skip '\n' too */
  701. break; /* we are done */
  702. } else /* reached the end of the buffer */
  703. buffer_skip(buf, pos);
  704. }
  705. return err;
  706. }
  707. /*-------------------------------------------------------------------------*\
  708. * Skips a given number of bytes from read buffer. No data is read from the
  709. * transport layer
  710. \*-------------------------------------------------------------------------*/
  711. static void buffer_skip(p_buffer buf, size_t count) {
  712. buf->received += count;
  713. buf->first += count;
  714. if (buffer_isempty(buf))
  715. buf->first = buf->last = 0;
  716. }
  717. /*-------------------------------------------------------------------------*\
  718. * Return any data available in buffer, or get more data from transport layer
  719. * if buffer is empty
  720. \*-------------------------------------------------------------------------*/
  721. static int buffer_get(p_buffer buf, const char **data, size_t *count) {
  722. int err = IO_DONE;
  723. p_io io = buf->io;
  724. p_timeout tm = buf->tm;
  725. if (buffer_isempty(buf)) {
  726. size_t got;
  727. err = io->recv(io->ctx, buf->data, BUF_SIZE, &got, tm);
  728. buf->first = 0;
  729. buf->last = got;
  730. }
  731. *count = buf->last - buf->first;
  732. *data = buf->data + buf->first;
  733. return err;
  734. }
  735. /*=========================================================================*\
  736. * Lua methods
  737. \*=========================================================================*/
  738. #define TCP_TYPE_ANY 0
  739. #define TCP_TYPE_CLIENT 1
  740. #define TCP_TYPE_SERVER 2
  741. #define TCP_TYPE_MASTER 3
  742. typedef struct t_tcp_ {
  743. t_socket sock;
  744. t_io io;
  745. t_buffer buf;
  746. t_timeout tm;
  747. int type;
  748. } t_tcp;
  749. typedef t_tcp *p_tcp;
  750. static const SQChar SQ_tcp_TAG[] = _SC("sq_tcp");
  751. #define GET_tcp_INSTANCE_AT(v, idx) \
  752. p_tcp tcp; \
  753. if((_rc_ = sq_getinstanceup(v,idx,(SQUserPointer*)&tcp,(void*)SQ_tcp_TAG)) < 0) return _rc_;
  754. #define GET_tcp_client_INSTANCE_AT(v, idx) GET_tcp_INSTANCE_AT(v, idx)\
  755. if(tcp->type != TCP_TYPE_CLIENT) return sq_throwerror(v, _SC("tcp client expected"));
  756. #define GET_tcp_server_INSTANCE_AT(v, idx) GET_tcp_INSTANCE_AT(v, idx)\
  757. if(tcp->type != TCP_TYPE_SERVER) return sq_throwerror(v, _SC("tcp server expected"));
  758. #define GET_tcp_master_INSTANCE_AT(v, idx) GET_tcp_INSTANCE_AT(v, idx)\
  759. if(tcp->type != TCP_TYPE_MASTER) return sq_throwerror(v, _SC("tcp master expected"));
  760. /*-------------------------------------------------------------------------*\
  761. * Just call buffered IO methods
  762. \*-------------------------------------------------------------------------*/
  763. /* socket tcp option handlers */
  764. static t_opt tcp_opt[] = {
  765. {"keepalive", opt_keepalive},
  766. {"reuseaddr", opt_reuseaddr},
  767. {"tcp-nodelay", opt_tcp_nodelay},
  768. {"linger", opt_linger},
  769. {NULL, NULL}
  770. };
  771. static int tcp_meth_send(HSQUIRRELVM v) {
  772. SQ_FUNC_VARS_NO_TOP(v);
  773. GET_tcp_client_INSTANCE_AT(v, 1);
  774. return buffer_meth_send(v, &tcp->buf);
  775. }
  776. static int tcp_meth_receive(HSQUIRRELVM v) {
  777. SQ_FUNC_VARS_NO_TOP(v);
  778. GET_tcp_client_INSTANCE_AT(v, 1);
  779. return buffer_meth_receive(v, &tcp->buf);
  780. }
  781. static int tcp_meth_getstats(HSQUIRRELVM v) {
  782. SQ_FUNC_VARS_NO_TOP(v);
  783. GET_tcp_client_INSTANCE_AT(v, 1);
  784. return buffer_meth_getstats(v, &tcp->buf);
  785. }
  786. static int tcp_meth_setstats(HSQUIRRELVM v) {
  787. SQ_FUNC_VARS_NO_TOP(v);
  788. GET_tcp_client_INSTANCE_AT(v, 1);
  789. return buffer_meth_setstats(v, &tcp->buf);
  790. }
  791. /*-------------------------------------------------------------------------*\
  792. * Just call option handler
  793. \*-------------------------------------------------------------------------*/
  794. static int tcp_meth_setoption(HSQUIRRELVM v)
  795. {
  796. SQ_FUNC_VARS_NO_TOP(v);
  797. GET_tcp_INSTANCE_AT(v, 1);
  798. return opt_meth_setoption(v, tcp_opt, &tcp->sock);
  799. }
  800. /*-------------------------------------------------------------------------*\
  801. * Select support methods
  802. \*-------------------------------------------------------------------------*/
  803. static int tcp_meth_getfd(HSQUIRRELVM v)
  804. {
  805. SQ_FUNC_VARS_NO_TOP(v);
  806. GET_tcp_INSTANCE_AT(v, 1);
  807. sq_pushinteger(v, (int) tcp->sock);
  808. return 1;
  809. }
  810. /* this is very dangerous, but can be handy for those that are brave enough */
  811. static int tcp_meth_setfd(HSQUIRRELVM v)
  812. {
  813. SQ_FUNC_VARS_NO_TOP(v);
  814. GET_tcp_INSTANCE_AT(v, 1);
  815. SQ_GET_INTEGER(v, 2, fd);
  816. tcp->sock = (t_socket) fd;
  817. return 0;
  818. }
  819. static int tcp_meth_dirty(HSQUIRRELVM v)
  820. {
  821. SQ_FUNC_VARS_NO_TOP(v);
  822. GET_tcp_INSTANCE_AT(v, 1);
  823. sq_pushbool(v, !buffer_isempty(&tcp->buf));
  824. return 1;
  825. }
  826. /*=========================================================================*\
  827. * Library functions
  828. \*=========================================================================*/
  829. /*-------------------------------------------------------------------------*\
  830. * Creates a master tcp object
  831. \*-------------------------------------------------------------------------*/
  832. static SQRESULT tcp_releasehook(SQUserPointer p, SQInteger size, HSQUIRRELVM v)
  833. {
  834. p_tcp tcp = (p_tcp)p;
  835. if(tcp) {
  836. lua_socket_destroy(&tcp->sock);
  837. sq_free(tcp, sizeof(t_tcp));
  838. }
  839. return 0;
  840. }
  841. static int tcp_constructor_for_socket(HSQUIRRELVM v, int idx, t_socket sock, int type)
  842. {
  843. /* allocate tcp object */
  844. p_tcp tcp = (p_tcp) sq_malloc(sizeof(t_tcp));
  845. /* set its type as master object */
  846. tcp->type = type;
  847. /* initialize remaining structure fields */
  848. lua_socket_setnonblocking(&sock);
  849. tcp->sock = sock;
  850. lua_io_init(&tcp->io, (p_send) lua_socket_send, (p_recv) lua_socket_recv,
  851. (p_error) lua_socket_ioerror, &tcp->sock);
  852. lua_timeout_init(&tcp->tm, -1, -1);
  853. buffer_init(&tcp->buf, &tcp->io, &tcp->tm);
  854. sq_setinstanceup(v, idx, tcp);
  855. sq_setreleasehook(v, idx, tcp_releasehook);
  856. return 1;
  857. }
  858. static int tcp_constructor(HSQUIRRELVM v)
  859. {
  860. t_socket sock;
  861. const char *err = inet_trycreate(&sock, SOCK_STREAM);
  862. /* try to allocate a system socket */
  863. if (!err) {
  864. return tcp_constructor_for_socket(v, 1, sock, TCP_TYPE_MASTER);
  865. }
  866. return sq_throwerror(v, err);
  867. }
  868. /*-------------------------------------------------------------------------*\
  869. * Waits for and returns a client object attempting connection to the
  870. * server object
  871. \*-------------------------------------------------------------------------*/
  872. static int tcp_meth_accept(HSQUIRRELVM v)
  873. {
  874. SQ_FUNC_VARS_NO_TOP(v);
  875. GET_tcp_server_INSTANCE_AT(v, 1);
  876. p_timeout tm = lua_timeout_markstart(&tcp->tm);
  877. t_socket sock;
  878. int err = lua_socket_accept(&tcp->sock, &sock, NULL, NULL, tm);
  879. /* if successful, push client socket */
  880. if (err == IO_DONE) {
  881. sq_pushstring(v,_SC("socket"),-1);
  882. int rc = sq_getonroottable(v);
  883. if(rc < 0) return rc;
  884. sq_pushstring(v,_SC("tcp"),-1);
  885. rc = sq_rawget(v, -2);
  886. if(rc < 0) return rc;
  887. rc = sq_createinstance(v, -1);
  888. if(rc < 0) return rc;
  889. tcp_constructor_for_socket(v, sq_gettop(v), sock, TCP_TYPE_CLIENT);
  890. } else {
  891. return sq_throwerror(v, lua_socket_strerror(err));
  892. }
  893. return 1;
  894. }
  895. /*-------------------------------------------------------------------------*\
  896. * Binds an object to an address
  897. \*-------------------------------------------------------------------------*/
  898. static int tcp_meth_bind(HSQUIRRELVM v)
  899. {
  900. SQ_FUNC_VARS_NO_TOP(v);
  901. GET_tcp_master_INSTANCE_AT(v, 1);
  902. SQ_GET_STRING(v, 2, address);
  903. SQ_GET_INTEGER(v, 3, port);
  904. const char *err = inet_trybind(&tcp->sock, address, port);
  905. if (err) return sq_throwerror(v, err);
  906. return 0;
  907. }
  908. /*-------------------------------------------------------------------------*\
  909. * Turns a master tcp object into a client object.
  910. \*-------------------------------------------------------------------------*/
  911. static int tcp_meth_connect(HSQUIRRELVM v)
  912. {
  913. SQ_FUNC_VARS_NO_TOP(v);
  914. GET_tcp_INSTANCE_AT(v, 1);
  915. SQ_GET_STRING(v, 2, address);
  916. SQ_GET_INTEGER(v, 3, port);
  917. p_timeout tm = lua_timeout_markstart(&tcp->tm);
  918. const char *err = inet_tryconnect(&tcp->sock, address, port, tm);
  919. /* have to set the class even if it failed due to non-blocking connects */
  920. if (err) return sq_throwerror(v, err);
  921. tcp->type = TCP_TYPE_CLIENT;
  922. return 0;
  923. }
  924. /*-------------------------------------------------------------------------*\
  925. * Closes socket used by object
  926. \*-------------------------------------------------------------------------*/
  927. static int tcp_meth_close(HSQUIRRELVM v)
  928. {
  929. SQ_FUNC_VARS_NO_TOP(v);
  930. GET_tcp_INSTANCE_AT(v, 1);
  931. lua_socket_destroy(&tcp->sock);
  932. return 0;
  933. }
  934. /*-------------------------------------------------------------------------*\
  935. * Puts the sockt in listen mode
  936. \*-------------------------------------------------------------------------*/
  937. static int tcp_meth_listen(HSQUIRRELVM v)
  938. {
  939. SQ_FUNC_VARS(v);
  940. GET_tcp_master_INSTANCE_AT(v, 1);
  941. SQ_OPT_INTEGER(v, 2, backlog, 32);
  942. int err = lua_socket_listen(&tcp->sock, backlog);
  943. if (err != IO_DONE) return sq_throwerror(v, lua_socket_strerror(err));
  944. /* turn master object into a server object */
  945. tcp->type = TCP_TYPE_SERVER;
  946. return 0;
  947. }
  948. /*-------------------------------------------------------------------------*\
  949. * Shuts the connection down partially
  950. \*-------------------------------------------------------------------------*/
  951. static int tcp_meth_shutdown(HSQUIRRELVM v)
  952. {
  953. SQ_FUNC_VARS(v);
  954. GET_tcp_client_INSTANCE_AT(v, 1);
  955. SQ_OPT_STRING(v, 2, how, _SC("both"));
  956. switch (how[0]) {
  957. case _SC('b'):
  958. if (strcmp(how, "both")) goto error;
  959. lua_socket_shutdown(&tcp->sock, 2);
  960. break;
  961. case _SC('s'):
  962. if (strcmp(how, "send")) goto error;
  963. lua_socket_shutdown(&tcp->sock, 1);
  964. break;
  965. case _SC('r'):
  966. if (strcmp(how, "receive")) goto error;
  967. lua_socket_shutdown(&tcp->sock, 0);
  968. break;
  969. }
  970. return 0;
  971. error:
  972. return sq_throwerror(v, _SC("invalid shutdown method"));
  973. }
  974. /*-------------------------------------------------------------------------*\
  975. * Just call inet methods
  976. \*-------------------------------------------------------------------------*/
  977. static int tcp_meth_getpeername(HSQUIRRELVM v)
  978. {
  979. SQ_FUNC_VARS_NO_TOP(v);
  980. GET_tcp_INSTANCE_AT(v, 1);
  981. return inet_meth_getpeername(v, &tcp->sock);
  982. }
  983. static int tcp_meth_getsockname(HSQUIRRELVM v)
  984. {
  985. SQ_FUNC_VARS_NO_TOP(v);
  986. GET_tcp_INSTANCE_AT(v, 1);
  987. return inet_meth_getsockname(v, &tcp->sock);
  988. }
  989. /*-------------------------------------------------------------------------*\
  990. * Just call tm methods
  991. \*-------------------------------------------------------------------------*/
  992. static int tcp_meth_settimeout(HSQUIRRELVM v)
  993. {
  994. SQ_FUNC_VARS_NO_TOP(v);
  995. GET_tcp_INSTANCE_AT(v, 1);
  996. return timeout_meth_settimeout(v, &tcp->tm);
  997. }
  998. /*=========================================================================*\
  999. * Lua udp methods
  1000. \*=========================================================================*/
  1001. /* can't be larger than wsocket.c MAXCHUNK!!! */
  1002. #define UDP_DATAGRAMSIZE 8192
  1003. #define UDP_TYPE_ANY 0
  1004. #define UDP_TYPE_CONNECTED 1
  1005. #define UDP_TYPE_UNCONNECTED 2
  1006. typedef struct t_udp_ {
  1007. t_socket sock;
  1008. t_timeout tm;
  1009. int type;
  1010. } t_udp;
  1011. typedef t_udp *p_udp;
  1012. /* socket udp options */
  1013. static t_opt udp_opt[] = {
  1014. {"dontroute", opt_dontroute},
  1015. {"broadcast", opt_broadcast},
  1016. {"reuseaddr", opt_reuseaddr},
  1017. {"ip-multicast-ttl", opt_ip_multicast_ttl},
  1018. {"ip-multicast-loop", opt_ip_multicast_loop},
  1019. {"ip-add-membership", opt_ip_add_membership},
  1020. {"ip-drop-membership", opt_ip_drop_membersip},
  1021. {NULL, NULL}
  1022. };
  1023. static const SQChar SQ_udp_TAG[] = _SC("sq_udp");
  1024. #define GET_udp_INSTANCE_AT(v, idx) \
  1025. p_udp udp; \
  1026. if((_rc_ = sq_getinstanceup(v,idx,(SQUserPointer*)&udp,(void*)SQ_udp_TAG)) < 0) return _rc_;
  1027. #define GET_udp_connected_INSTANCE_AT(v, idx) GET_udp_INSTANCE_AT(v, idx)\
  1028. if(udp->type != UDP_TYPE_CONNECTED) return sq_throwerror(v, _SC("udp connected expected"));
  1029. #define GET_udp_unconnected_INSTANCE_AT(v, idx) GET_udp_INSTANCE_AT(v, idx)\
  1030. if(udp->type != UDP_TYPE_UNCONNECTED) return sq_throwerror(v, _SC("udp unconnected expected"));
  1031. static const char *udp_strerror(int err) {
  1032. /* a 'closed' error on an unconnected means the target address was not
  1033. * accepted by the transport layer */
  1034. if (err == IO_CLOSED) return "refused";
  1035. else return lua_socket_strerror(err);
  1036. }
  1037. /*-------------------------------------------------------------------------*\
  1038. * Send data through connected udp socket
  1039. \*-------------------------------------------------------------------------*/
  1040. static int udp_meth_send(HSQUIRRELVM v) {
  1041. SQ_FUNC_VARS_NO_TOP(v);
  1042. GET_udp_connected_INSTANCE_AT(v, 1);
  1043. p_timeout tm = &udp->tm;
  1044. size_t sent = 0;
  1045. int err;
  1046. SQ_GET_STRING(v, 2, data);
  1047. lua_timeout_markstart(tm);
  1048. err = lua_socket_send(&udp->sock, data, data_size, &sent, tm);
  1049. if (err != IO_DONE) return sq_throwerror(v, udp_strerror(err));
  1050. sq_pushinteger(v, sent);
  1051. return 1;
  1052. }
  1053. /*-------------------------------------------------------------------------*\
  1054. * Send data through unconnected udp socket
  1055. \*-------------------------------------------------------------------------*/
  1056. static int udp_meth_sendto(HSQUIRRELVM v) {
  1057. SQ_FUNC_VARS_NO_TOP(v);
  1058. GET_udp_unconnected_INSTANCE_AT(v, 1);
  1059. size_t sent = 0;
  1060. SQ_GET_STRING(v, 2, data);
  1061. SQ_GET_STRING(v, 3, ip);
  1062. SQ_GET_INTEGER(v, 4, port);
  1063. p_timeout tm = &udp->tm;
  1064. struct sockaddr_in addr;
  1065. int err;
  1066. memset(&addr, 0, sizeof(addr));
  1067. if (!inet_aton(ip, &addr.sin_addr))
  1068. return sq_throwerror(v, _SC("invalid ip address"));
  1069. addr.sin_family = AF_INET;
  1070. addr.sin_port = htons(port);
  1071. lua_timeout_markstart(tm);
  1072. err = lua_socket_sendto(&udp->sock, data, data_size, &sent,
  1073. (SA *) &addr, sizeof(addr), tm);
  1074. if (err != IO_DONE) return sq_throwerror(v, udp_strerror(err));
  1075. sq_pushinteger(v, sent);
  1076. return 1;
  1077. }
  1078. /*-------------------------------------------------------------------------*\
  1079. * Receives data from a UDP socket
  1080. \*-------------------------------------------------------------------------*/
  1081. static int udp_meth_receive(HSQUIRRELVM v) {
  1082. SQ_FUNC_VARS(v);
  1083. GET_udp_INSTANCE_AT(v, 1);
  1084. char buffer[UDP_DATAGRAMSIZE];
  1085. SQ_OPT_INTEGER(v, 2, count, sizeof(buffer));
  1086. size_t got;
  1087. int err;
  1088. p_timeout tm = &udp->tm;
  1089. count = MIN(count, sizeof(buffer));
  1090. lua_timeout_markstart(tm);
  1091. err = lua_socket_recv(&udp->sock, buffer, count, &got, tm);
  1092. if (err != IO_DONE) return sq_throwerror(v, udp_strerror(err));
  1093. sq_pushstring(v, buffer, got);
  1094. return 1;
  1095. }
  1096. /*-------------------------------------------------------------------------*\
  1097. * Receives data and sender from a UDP socket
  1098. \*-------------------------------------------------------------------------*/
  1099. static int udp_meth_receivefrom(HSQUIRRELVM v) {
  1100. SQ_FUNC_VARS(v);
  1101. GET_udp_unconnected_INSTANCE_AT(v, 1);
  1102. struct sockaddr_in addr;
  1103. socklen_t addr_len = sizeof(addr);
  1104. char buffer[UDP_DATAGRAMSIZE];
  1105. size_t got;
  1106. SQ_OPT_INTEGER(v, 2, count, sizeof(buffer));
  1107. int err;
  1108. p_timeout tm = &udp->tm;
  1109. lua_timeout_markstart(tm);
  1110. count = MIN(count, sizeof(buffer));
  1111. err = lua_socket_recvfrom(&udp->sock, buffer, count, &got,
  1112. (SA *) &addr, &addr_len, tm);
  1113. if (err == IO_DONE) {
  1114. sq_newtable(v);
  1115. sq_pushliteral(v, _SC("data"));
  1116. sq_pushstring(v, buffer, got);
  1117. sq_rawset(v, -3);
  1118. sq_pushliteral(v, _SC("address"));
  1119. sq_pushstring(v, inet_ntoa(addr.sin_addr), -1);
  1120. sq_rawset(v, -3);
  1121. sq_pushliteral(v, _SC("port"));
  1122. sq_pushinteger(v, ntohs(addr.sin_port));
  1123. sq_rawset(v, -3);
  1124. return 1;
  1125. }
  1126. else return sq_throwerror(v, udp_strerror(err));
  1127. }
  1128. /*-------------------------------------------------------------------------*\
  1129. * Select support methods
  1130. \*-------------------------------------------------------------------------*/
  1131. static int udp_meth_getfd(HSQUIRRELVM v) {
  1132. SQ_FUNC_VARS_NO_TOP(v);
  1133. GET_udp_INSTANCE_AT(v, 1);
  1134. sq_pushinteger(v, (SQInteger) udp->sock);
  1135. return 1;
  1136. }
  1137. /* this is very dangerous, but can be handy for those that are brave enough */
  1138. static int udp_meth_setfd(HSQUIRRELVM v) {
  1139. SQ_FUNC_VARS_NO_TOP(v);
  1140. GET_udp_INSTANCE_AT(v, 1);
  1141. SQ_GET_INTEGER(v, 2, fd);
  1142. udp->sock = (t_socket) fd;
  1143. return 0;
  1144. }
  1145. static int udp_meth_dirty(HSQUIRRELVM v) {
  1146. SQ_FUNC_VARS_NO_TOP(v);
  1147. GET_udp_INSTANCE_AT(v, 1);
  1148. (void) udp;
  1149. sq_pushbool(v, SQFalse);
  1150. return 1;
  1151. }
  1152. /*-------------------------------------------------------------------------*\
  1153. * Just call inet methods
  1154. \*-------------------------------------------------------------------------*/
  1155. static int udp_meth_getpeername(HSQUIRRELVM v) {
  1156. SQ_FUNC_VARS_NO_TOP(v);
  1157. GET_udp_connected_INSTANCE_AT(v, 1);
  1158. return inet_meth_getpeername(v, &udp->sock);
  1159. }
  1160. static int udp_meth_getsockname(HSQUIRRELVM v) {
  1161. SQ_FUNC_VARS_NO_TOP(v);
  1162. GET_udp_INSTANCE_AT(v, 1);
  1163. return inet_meth_getsockname(v, &udp->sock);
  1164. }
  1165. /*-------------------------------------------------------------------------*\
  1166. * Just call option handler
  1167. \*-------------------------------------------------------------------------*/
  1168. static int udp_meth_setoption(HSQUIRRELVM v) {
  1169. SQ_FUNC_VARS_NO_TOP(v);
  1170. GET_udp_INSTANCE_AT(v, 1);
  1171. return opt_meth_setoption(v, udp_opt, &udp->sock);
  1172. }
  1173. /*-------------------------------------------------------------------------*\
  1174. * Just call tm methods
  1175. \*-------------------------------------------------------------------------*/
  1176. static int udp_meth_settimeout(HSQUIRRELVM v) {
  1177. SQ_FUNC_VARS_NO_TOP(v);
  1178. GET_udp_INSTANCE_AT(v, 1);
  1179. return timeout_meth_settimeout(v, &udp->tm);
  1180. }
  1181. /*-------------------------------------------------------------------------*\
  1182. * Turns a master udp object into a client object.
  1183. \*-------------------------------------------------------------------------*/
  1184. static int udp_meth_setpeername(HSQUIRRELVM v) {
  1185. SQ_FUNC_VARS_NO_TOP(v);
  1186. GET_udp_INSTANCE_AT(v, 1);
  1187. p_timeout tm = &udp->tm;
  1188. SQ_GET_STRING(v, 2, address);
  1189. int connecting = scstrcmp(address, _SC("*"));
  1190. SQInteger port;
  1191. if(connecting) sq_getinteger(v, 3, &port);
  1192. else sq_optinteger(v, 3, &port, 0);
  1193. const char *err = inet_tryconnect(&udp->sock, address, port, tm);
  1194. if (err) return sq_throwerror(v, err);
  1195. /* change class to connected or unconnected depending on address */
  1196. if (connecting)
  1197. udp->type = connecting ? UDP_TYPE_CONNECTED : UDP_TYPE_UNCONNECTED;
  1198. return 0;
  1199. }
  1200. /*-------------------------------------------------------------------------*\
  1201. * Closes socket used by object
  1202. \*-------------------------------------------------------------------------*/
  1203. static int udp_meth_close(HSQUIRRELVM v) {
  1204. SQ_FUNC_VARS_NO_TOP(v);
  1205. GET_udp_INSTANCE_AT(v, 1);
  1206. lua_socket_destroy(&udp->sock);
  1207. return 0;
  1208. }
  1209. /*-------------------------------------------------------------------------*\
  1210. * Turns a master object into a server object
  1211. \*-------------------------------------------------------------------------*/
  1212. static int udp_meth_setsockname(HSQUIRRELVM v) {
  1213. SQ_FUNC_VARS_NO_TOP(v);
  1214. GET_udp_unconnected_INSTANCE_AT(v, 1);
  1215. SQ_GET_STRING(v, 2, address);
  1216. SQ_GET_INTEGER(v, 3, port);
  1217. const char *err = inet_trybind(&udp->sock, address, port);
  1218. if (err) return sq_throwerror(v, err);
  1219. return 0;
  1220. }
  1221. /*=========================================================================*\
  1222. * Library functions
  1223. \*=========================================================================*/
  1224. /*-------------------------------------------------------------------------*\
  1225. * Creates a master udp object
  1226. \*-------------------------------------------------------------------------*/
  1227. static SQRESULT udp_releasehook(SQUserPointer p, SQInteger size, HSQUIRRELVM v)
  1228. {
  1229. p_udp udp = (p_udp)p;
  1230. if(udp) {
  1231. lua_socket_destroy(&udp->sock);
  1232. sq_free(udp, sizeof(p_udp));
  1233. }
  1234. return 0;
  1235. }
  1236. static int udp_constructor(HSQUIRRELVM v) {
  1237. t_socket sock;
  1238. const char *err = inet_trycreate(&sock, SOCK_DGRAM);
  1239. /* try to allocate a system socket */
  1240. if (!err) {
  1241. /* allocate tcp object */
  1242. p_udp udp = (p_udp) sq_malloc(sizeof(t_udp));
  1243. udp->type = UDP_TYPE_UNCONNECTED;
  1244. /* initialize remaining structure fields */
  1245. lua_socket_setnonblocking(&sock);
  1246. udp->sock = sock;
  1247. lua_timeout_init(&udp->tm, -1, -1);
  1248. sq_setinstanceup(v, 1, udp);
  1249. sq_setreleasehook(v, 1, udp_releasehook);
  1250. return 1;
  1251. }
  1252. return sq_throwerror(v, err);
  1253. }
  1254. /*=========================================================================*\
  1255. * Internal Select function prototypes.
  1256. \*=========================================================================*/
  1257. static t_socket getfd(HSQUIRRELVM v);
  1258. static int dirty(HSQUIRRELVM v);
  1259. static t_socket collect_fd(HSQUIRRELVM v, int tab, t_socket max_fd,
  1260. int itab, fd_set *set);
  1261. static int check_dirty(HSQUIRRELVM v, int tab, int dtab, fd_set *set);
  1262. static void return_fd(HSQUIRRELVM v, fd_set *set, t_socket max_fd,
  1263. int itab, int tab, int start);
  1264. static void make_assoc(HSQUIRRELVM v, int tab);
  1265. static int global_select(HSQUIRRELVM v);
  1266. /*-------------------------------------------------------------------------*\
  1267. * Waits for a set of sockets until a condition is met or timeout.
  1268. \*-------------------------------------------------------------------------*/
  1269. static int global_select(HSQUIRRELVM v) {
  1270. SQ_FUNC_VARS(v);
  1271. int rtab, wtab, itab, ret, ndirty;
  1272. t_socket max_fd;
  1273. fd_set rset, wset;
  1274. t_timeout tm;
  1275. SQ_OPT_FLOAT(v, 4, t, -1);
  1276. FD_ZERO(&rset); FD_ZERO(&wset);
  1277. sq_settop(v, 4);
  1278. sq_newarray(v, 0); itab = sq_gettop(v);
  1279. sq_newarray(v, 0); rtab = sq_gettop(v);
  1280. sq_newarray(v, 0); wtab = sq_gettop(v);
  1281. max_fd = collect_fd(v, 2, SOCKET_INVALID, itab, &rset);
  1282. ndirty = check_dirty(v, 2, rtab, &rset);
  1283. t = ndirty > 0? 0.0: t;
  1284. lua_timeout_init(&tm, t, -1);
  1285. lua_timeout_markstart(&tm);
  1286. max_fd = collect_fd(v, 3, max_fd, itab, &wset);
  1287. ret = lua_socket_select(max_fd+1, &rset, &wset, NULL, &tm);
  1288. if (ret > 0 || ndirty > 0) {
  1289. return_fd(v, &rset, max_fd+1, itab, rtab, ndirty);
  1290. return_fd(v, &wset, max_fd+1, itab, wtab, 0);
  1291. make_assoc(v, rtab);
  1292. make_assoc(v, wtab);
  1293. sq_newarray(v, 2);
  1294. sq_pushinteger(v, 0);
  1295. sq_push(v, rtab);
  1296. sq_rawset(v, -2);
  1297. sq_pushinteger(v, 1);
  1298. sq_push(v, wtab);
  1299. sq_rawset(v, -2);
  1300. return 1;
  1301. } else if (ret == 0) {
  1302. return sq_throwerror(v, _SC("timeout"));
  1303. }
  1304. return sq_throwerror(v, _SC("error"));
  1305. }
  1306. /*=========================================================================*\
  1307. * Internal functions
  1308. \*=========================================================================*/
  1309. static t_socket getfd(HSQUIRRELVM v) {
  1310. t_socket fd = SOCKET_INVALID;
  1311. SQInteger top = sq_gettop(v);
  1312. sq_pushliteral(v, _SC("getfd"));
  1313. if(sq_get(v, -2) == SQ_OK){
  1314. SQObjectType ptype = sq_gettype(v, -1);
  1315. if (ptype == OT_CLOSURE || ptype == OT_NATIVECLOSURE) {
  1316. sq_push(v, -2);
  1317. if(sq_call(v, 1, SQTrue, SQFalse) == SQ_OK){
  1318. if (sq_gettype(v, -1) == OT_INTEGER){
  1319. SQInteger ifd;
  1320. sq_getinteger(v, -1, &ifd);
  1321. fd = (t_socket) ifd;
  1322. }
  1323. }
  1324. }
  1325. }
  1326. sq_settop(v, top);
  1327. return fd;
  1328. }
  1329. static int dirty(HSQUIRRELVM v) {
  1330. int is = 0;
  1331. SQInteger top = sq_gettop(v);
  1332. sq_pushliteral(v, _SC("dirty"));
  1333. if(sq_get(v, -2) == SQ_OK){
  1334. SQObjectType ptype = sq_gettype(v, -1);
  1335. if (ptype == OT_CLOSURE || ptype == OT_NATIVECLOSURE) {
  1336. sq_push(v, -2);
  1337. if(sq_call(v, 1, SQTrue, SQFalse) == SQ_OK){
  1338. if (sq_gettype(v, -1) == OT_INTEGER){
  1339. SQBool bval;
  1340. sq_getbool(v, -1, &bval);
  1341. is = bval == SQTrue;
  1342. }
  1343. }
  1344. }
  1345. sq_pop(v, 1);
  1346. }
  1347. sq_settop(v, top);
  1348. return is;
  1349. }
  1350. static t_socket collect_fd(HSQUIRRELVM v, int tab, t_socket max_fd,
  1351. int itab, fd_set *set) {
  1352. int i = 0;
  1353. if (sq_gettype(v, tab) == OT_NULL)
  1354. return max_fd;
  1355. while (1) {
  1356. t_socket fd;
  1357. sq_pushinteger(v, i);
  1358. if(sq_rawget(v, tab) == SQ_ERROR) break;
  1359. fd = getfd(v);
  1360. if (fd != SOCKET_INVALID) {
  1361. FD_SET(fd, set);
  1362. if (max_fd == SOCKET_INVALID || max_fd < fd)
  1363. max_fd = fd;
  1364. sq_pushinteger(v, fd);
  1365. sq_push(v, -2);
  1366. sq_rawset(v, itab);
  1367. }
  1368. sq_pop(v, 1);
  1369. i = i + 1;
  1370. }
  1371. return max_fd;
  1372. }
  1373. static int check_dirty(HSQUIRRELVM v, int tab, int dtab, fd_set *set) {
  1374. int ndirty = 0, i = 0;
  1375. if (sq_gettype(v, tab) == OT_NULL)
  1376. return 0;
  1377. while (1) {
  1378. t_socket fd;
  1379. sq_pushinteger(v, i);
  1380. if(sq_rawget(v, tab) == SQ_ERROR) break;
  1381. fd = getfd(v);
  1382. if (fd != SOCKET_INVALID && dirty(v)) {
  1383. sq_pushinteger(v, ++ndirty);
  1384. sq_push(v, -2);
  1385. sq_rawset(v, dtab);
  1386. FD_CLR(fd, set);
  1387. }
  1388. sq_pop(v, 1);
  1389. i = i + 1;
  1390. }
  1391. return ndirty;
  1392. }
  1393. static void return_fd(HSQUIRRELVM v, fd_set *set, t_socket max_fd,
  1394. int itab, int tab, int start) {
  1395. t_socket fd;
  1396. for (fd = 0; fd < max_fd; fd++) {
  1397. if (FD_ISSET(fd, set)) {
  1398. sq_pushinteger(v, ++start);
  1399. sq_pushinteger(v, fd);
  1400. sq_rawget(v, itab);
  1401. sq_rawset(v, tab);
  1402. }
  1403. }
  1404. }
  1405. static void make_assoc(HSQUIRRELVM v, int tab) {
  1406. int i = 0, atab;
  1407. sq_newarray(v, 0); atab = sq_gettop(v);
  1408. while (1) {
  1409. sq_pushinteger(v, i);
  1410. if(sq_rawget(v, tab) == SQ_ERROR) break;
  1411. if (sq_gettype(v, -1) != OT_NULL) {
  1412. sq_pushinteger(v, i);
  1413. sq_push(v, -2);
  1414. sq_rawset(v, atab);
  1415. sq_pushinteger(v, i);
  1416. sq_rawset(v, atab);
  1417. } else {
  1418. sq_pop(v, 1);
  1419. break;
  1420. }
  1421. i = i+1;
  1422. }
  1423. }
  1424. #ifdef __cplusplus
  1425. extern "C" {
  1426. #endif
  1427. SQRESULT sqext_register_sq_socket(HSQUIRRELVM v)
  1428. {
  1429. sq_pushliteral(v,_SC("socket"));
  1430. sq_newtable(v);
  1431. sq_insertfunc(v, _SC("gethostname"), inet_global_gethostname, 1, _SC("."), SQTrue);
  1432. sq_insertfunc(v, _SC("gettime"), timeout_lua_gettime, 1, _SC("."), SQTrue);
  1433. sq_insertfunc(v, _SC("select"), global_select, -3, _SC(".aan"), SQTrue);
  1434. sq_insertfunc(v, _SC("sleep"), timeout_lua_sleep, 2, _SC(".i"), SQTrue);
  1435. sq_insertfunc(v, _SC("sleepMillisecs"), timeout_lua_sleepMillisecs, 2, _SC(".i"), SQTrue);
  1436. sq_insertfunc(v, _SC("tohostname"), inet_global_tohostname, 2, _SC(".s"), SQTrue);
  1437. sq_insertfunc(v, _SC("toip"), inet_global_toip, 2, _SC(".s"), SQTrue);
  1438. sq_pushliteral(v, _SC("tcp"));
  1439. sq_newclass(v, SQFalse);
  1440. sq_settypetag(v,-1,(void*)SQ_tcp_TAG);
  1441. sq_insertfunc(v, _SC("constructor"), tcp_constructor, 1, _SC("x"), SQFalse);
  1442. sq_insertfunc(v, _SC("accept"), tcp_meth_accept, 1, _SC("x"), SQFalse);
  1443. sq_insertfunc(v, _SC("bind"), tcp_meth_bind, 3, _SC("xsi"), SQFalse);
  1444. sq_insertfunc(v, _SC("close"), tcp_meth_close, 1, _SC("x"), SQFalse);
  1445. sq_insertfunc(v, _SC("connect"), tcp_meth_connect, 3, _SC("xsi"), SQFalse);
  1446. sq_insertfunc(v, _SC("dirty"), tcp_meth_dirty, 1, _SC("x"), SQFalse);
  1447. sq_insertfunc(v, _SC("getfd"), tcp_meth_getfd, 1, _SC("x"), SQFalse);
  1448. sq_insertfunc(v, _SC("getpeername"), tcp_meth_getpeername, 1, _SC("x"), SQFalse);
  1449. sq_insertfunc(v, _SC("getsockname"), tcp_meth_getsockname, 1, _SC("x"), SQFalse);
  1450. sq_insertfunc(v, _SC("getstats"), tcp_meth_getstats, 1, _SC("x"), SQFalse);
  1451. sq_insertfunc(v, _SC("listen"), tcp_meth_listen, -1, _SC("xi"), SQFalse);
  1452. sq_insertfunc(v, _SC("receive"), tcp_meth_receive, -1, _SC("x i|s s"), SQFalse);
  1453. sq_insertfunc(v, _SC("send"), tcp_meth_send, -2, _SC("xsii"), SQFalse);
  1454. sq_insertfunc(v, _SC("setfd"), tcp_meth_setfd, 2, _SC("xi"), SQFalse);
  1455. sq_insertfunc(v, _SC("setoption"), tcp_meth_setoption, -2, _SC("xs s|n|b"), SQFalse);
  1456. sq_insertfunc(v, _SC("setstats"), tcp_meth_setstats, 4, _SC("xiii"), SQFalse);
  1457. sq_insertfunc(v, _SC("settimeout"), tcp_meth_settimeout, -2, _SC("xns"), SQFalse);
  1458. sq_insertfunc(v, _SC("shutdown"), tcp_meth_shutdown, 2, _SC("xs"), SQFalse);
  1459. sq_newslot(v,-3,SQTrue);
  1460. sq_pushliteral(v, _SC("udp"));
  1461. sq_newclass(v, SQFalse);
  1462. sq_settypetag(v,-1,(void*)SQ_udp_TAG);
  1463. sq_insertfunc(v, _SC("constructor"), udp_constructor, 1, _SC("x"), SQFalse);
  1464. sq_insertfunc(v, _SC("close"), udp_meth_close, 1, _SC("x"), SQFalse);
  1465. sq_insertfunc(v, _SC("dirty"), udp_meth_dirty, 1, _SC("x"), SQFalse);
  1466. sq_insertfunc(v, _SC("getfd"), udp_meth_getfd, 1, _SC("x"), SQFalse);
  1467. sq_insertfunc(v, _SC("getpeername"), udp_meth_getpeername, 1, _SC("x"), SQFalse);
  1468. sq_insertfunc(v, _SC("getsockname"), udp_meth_getsockname, 1, _SC("x"), SQFalse);
  1469. sq_insertfunc(v, _SC("receive"), udp_meth_receive, -1, _SC("xi"), SQFalse);
  1470. sq_insertfunc(v, _SC("receivefrom"), udp_meth_receivefrom, -1, _SC("xi"), SQFalse);
  1471. sq_insertfunc(v, _SC("send"), udp_meth_send, 2, _SC("xs"), SQFalse);
  1472. sq_insertfunc(v, _SC("sendto"), udp_meth_sendto, 4, _SC("xssi"), SQFalse);
  1473. sq_insertfunc(v, _SC("setfd"), udp_meth_setfd, 2, _SC("xi"), SQFalse);
  1474. sq_insertfunc(v, _SC("setpeername"), udp_meth_setpeername, -1, _SC("xsi"), SQFalse);
  1475. sq_insertfunc(v, _SC("setsockname"), udp_meth_setsockname, 3, _SC("xsi"), SQFalse);
  1476. sq_insertfunc(v, _SC("setoption"), udp_meth_setoption, -2, _SC("xs s|n|b"), SQFalse);
  1477. sq_insertfunc(v, _SC("settimeout"), udp_meth_settimeout, 2, _SC("xn"), SQFalse);
  1478. sq_newslot(v,-3,SQTrue);
  1479. sq_newslot(v,-3,SQTrue); //push socket table
  1480. return 0;
  1481. }
  1482. #ifdef __cplusplus
  1483. }
  1484. #endif