iwinfo_lua.c 22 KB

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  1. /*
  2. * iwinfo - Wireless Information Library - Lua Bindings
  3. *
  4. * Copyright (C) 2009 Jo-Philipp Wich <xm@subsignal.org>
  5. *
  6. * The iwinfo library is free software: you can redistribute it and/or
  7. * modify it under the terms of the GNU General Public License version 2
  8. * as published by the Free Software Foundation.
  9. *
  10. * The iwinfo library is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  13. * See the GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License along
  16. * with the iwinfo library. If not, see http://www.gnu.org/licenses/.
  17. */
  18. #include "iwinfo/lua.h"
  19. /* Determine type */
  20. static int iwinfo_L_type(lua_State *L)
  21. {
  22. const char *ifname = luaL_checkstring(L, 1);
  23. const char *type = iwinfo_type(ifname);
  24. if (type)
  25. lua_pushstring(L, type);
  26. else
  27. lua_pushnil(L);
  28. return 1;
  29. }
  30. /* Shutdown backends */
  31. static int iwinfo_L__gc(lua_State *L)
  32. {
  33. iwinfo_finish();
  34. return 0;
  35. }
  36. /*
  37. * Build a short textual description of the crypto info
  38. */
  39. static char * iwinfo_crypto_print_ciphers(int ciphers)
  40. {
  41. static char str[128] = { 0 };
  42. char *pos = str;
  43. if (ciphers & IWINFO_CIPHER_WEP40)
  44. pos += sprintf(pos, "WEP-40, ");
  45. if (ciphers & IWINFO_CIPHER_WEP104)
  46. pos += sprintf(pos, "WEP-104, ");
  47. if (ciphers & IWINFO_CIPHER_TKIP)
  48. pos += sprintf(pos, "TKIP, ");
  49. if (ciphers & IWINFO_CIPHER_CCMP)
  50. pos += sprintf(pos, "CCMP, ");
  51. if (ciphers & IWINFO_CIPHER_WRAP)
  52. pos += sprintf(pos, "WRAP, ");
  53. if (ciphers & IWINFO_CIPHER_AESOCB)
  54. pos += sprintf(pos, "AES-OCB, ");
  55. if (ciphers & IWINFO_CIPHER_CKIP)
  56. pos += sprintf(pos, "CKIP, ");
  57. if (!ciphers || (ciphers & IWINFO_CIPHER_NONE))
  58. pos += sprintf(pos, "NONE, ");
  59. *(pos - 2) = 0;
  60. return str;
  61. }
  62. static char * iwinfo_crypto_print_suites(int suites)
  63. {
  64. static char str[64] = { 0 };
  65. char *pos = str;
  66. if (suites & IWINFO_KMGMT_PSK)
  67. pos += sprintf(pos, "PSK/");
  68. if (suites & IWINFO_KMGMT_8021x)
  69. pos += sprintf(pos, "802.1X/");
  70. if (suites & IWINFO_KMGMT_SAE)
  71. pos += sprintf(pos, "SAE/");
  72. if (suites & IWINFO_KMGMT_OWE)
  73. pos += sprintf(pos, "OWE/");
  74. if (!suites || (suites & IWINFO_KMGMT_NONE))
  75. pos += sprintf(pos, "NONE/");
  76. *(pos - 1) = 0;
  77. return str;
  78. }
  79. static char * iwinfo_crypto_desc(struct iwinfo_crypto_entry *c)
  80. {
  81. static char desc[512] = { 0 };
  82. char *pos = desc;
  83. int i, n;
  84. if (c)
  85. {
  86. if (c->enabled)
  87. {
  88. /* WEP */
  89. if (c->auth_algs && !c->wpa_version)
  90. {
  91. if ((c->auth_algs & IWINFO_AUTH_OPEN) &&
  92. (c->auth_algs & IWINFO_AUTH_SHARED))
  93. {
  94. sprintf(desc, "WEP Open/Shared (%s)",
  95. iwinfo_crypto_print_ciphers(c->pair_ciphers));
  96. }
  97. else if (c->auth_algs & IWINFO_AUTH_OPEN)
  98. {
  99. sprintf(desc, "WEP Open System (%s)",
  100. iwinfo_crypto_print_ciphers(c->pair_ciphers));
  101. }
  102. else if (c->auth_algs & IWINFO_AUTH_SHARED)
  103. {
  104. sprintf(desc, "WEP Shared Auth (%s)",
  105. iwinfo_crypto_print_ciphers(c->pair_ciphers));
  106. }
  107. }
  108. /* WPA */
  109. else if (c->wpa_version)
  110. {
  111. for (i = 0, n = 0; i < 3; i++)
  112. if (c->wpa_version & (1 << i))
  113. n++;
  114. if (n > 1)
  115. pos += sprintf(pos, "mixed ");
  116. for (i = 0; i < 3; i++)
  117. if (c->wpa_version & (1 << i))
  118. if (i)
  119. pos += sprintf(pos, "WPA%d/", i + 1);
  120. else
  121. pos += sprintf(pos, "WPA/");
  122. pos--;
  123. sprintf(pos, " %s (%s)",
  124. iwinfo_crypto_print_suites(c->auth_suites),
  125. iwinfo_crypto_print_ciphers(
  126. c->pair_ciphers | c->group_ciphers));
  127. }
  128. else
  129. {
  130. sprintf(desc, "None");
  131. }
  132. }
  133. else
  134. {
  135. sprintf(desc, "None");
  136. }
  137. }
  138. else
  139. {
  140. sprintf(desc, "Unknown");
  141. }
  142. return desc;
  143. }
  144. /* Build Lua table from crypto data */
  145. static void iwinfo_L_cryptotable(lua_State *L, struct iwinfo_crypto_entry *c)
  146. {
  147. int i, j;
  148. lua_newtable(L);
  149. lua_pushboolean(L, c->enabled);
  150. lua_setfield(L, -2, "enabled");
  151. lua_pushstring(L, iwinfo_crypto_desc(c));
  152. lua_setfield(L, -2, "description");
  153. lua_pushboolean(L, (c->enabled && !c->wpa_version));
  154. lua_setfield(L, -2, "wep");
  155. lua_pushinteger(L, c->wpa_version);
  156. lua_setfield(L, -2, "wpa");
  157. lua_newtable(L);
  158. for (i = 0, j = 1; i < ARRAY_SIZE(IWINFO_CIPHER_NAMES); i++)
  159. {
  160. if (c->pair_ciphers & (1 << i))
  161. {
  162. lua_pushstring(L, IWINFO_CIPHER_NAMES[i]);
  163. lua_rawseti(L, -2, j++);
  164. }
  165. }
  166. lua_setfield(L, -2, "pair_ciphers");
  167. lua_newtable(L);
  168. for (i = 0, j = 1; i < ARRAY_SIZE(IWINFO_CIPHER_NAMES); i++)
  169. {
  170. if (c->group_ciphers & (1 << i))
  171. {
  172. lua_pushstring(L, IWINFO_CIPHER_NAMES[i]);
  173. lua_rawseti(L, -2, j++);
  174. }
  175. }
  176. lua_setfield(L, -2, "group_ciphers");
  177. lua_newtable(L);
  178. for (i = 0, j = 1; i < ARRAY_SIZE(IWINFO_KMGMT_NAMES); i++)
  179. {
  180. if (c->auth_suites & (1 << i))
  181. {
  182. lua_pushstring(L, IWINFO_KMGMT_NAMES[i]);
  183. lua_rawseti(L, -2, j++);
  184. }
  185. }
  186. lua_setfield(L, -2, "auth_suites");
  187. lua_newtable(L);
  188. for (i = 0, j = 1; i < ARRAY_SIZE(IWINFO_AUTH_NAMES); i++)
  189. {
  190. if (c->auth_algs & (1 << i))
  191. {
  192. lua_pushstring(L, IWINFO_AUTH_NAMES[i]);
  193. lua_rawseti(L, -2, j++);
  194. }
  195. }
  196. lua_setfield(L, -2, "auth_algs");
  197. }
  198. /* Wrapper for mode */
  199. static int iwinfo_L_mode(lua_State *L, int (*func)(const char *, int *))
  200. {
  201. int mode;
  202. const char *ifname = luaL_checkstring(L, 1);
  203. if ((*func)(ifname, &mode))
  204. mode = IWINFO_OPMODE_UNKNOWN;
  205. lua_pushstring(L, IWINFO_OPMODE_NAMES[mode]);
  206. return 1;
  207. }
  208. static void set_rateinfo(lua_State *L, struct iwinfo_rate_entry *r, bool rx)
  209. {
  210. lua_pushnumber(L, r->rate);
  211. lua_setfield(L, -2, rx ? "rx_rate" : "tx_rate");
  212. lua_pushboolean(L, r->is_ht);
  213. lua_setfield(L, -2, rx ? "rx_ht" : "tx_ht");
  214. lua_pushboolean(L, r->is_vht);
  215. lua_setfield(L, -2, rx ? "rx_vht" : "tx_vht");
  216. lua_pushnumber(L, r->mhz);
  217. lua_setfield(L, -2, rx ? "rx_mhz" : "tx_mhz");
  218. if (r->is_ht)
  219. {
  220. lua_pushboolean(L, r->is_40mhz);
  221. lua_setfield(L, -2, rx ? "rx_40mhz" : "tx_40mhz");
  222. lua_pushnumber(L, r->mcs);
  223. lua_setfield(L, -2, rx ? "rx_mcs" : "tx_mcs");
  224. lua_pushboolean(L, r->is_short_gi);
  225. lua_setfield(L, -2, rx ? "rx_short_gi" : "tx_short_gi");
  226. }
  227. else if (r->is_vht)
  228. {
  229. lua_pushnumber(L, r->mcs);
  230. lua_setfield(L, -2, rx ? "rx_mcs" : "tx_mcs");
  231. lua_pushnumber(L, r->nss);
  232. lua_setfield(L, -2, rx ? "rx_nss" : "tx_nss");
  233. lua_pushboolean(L, r->is_short_gi);
  234. lua_setfield(L, -2, rx ? "rx_short_gi" : "tx_short_gi");
  235. }
  236. }
  237. /* Wrapper for assoclist */
  238. static int iwinfo_L_assoclist(lua_State *L, int (*func)(const char *, char *, int *))
  239. {
  240. int i, len;
  241. char rv[IWINFO_BUFSIZE];
  242. char macstr[18];
  243. const char *ifname = luaL_checkstring(L, 1);
  244. struct iwinfo_assoclist_entry *e;
  245. lua_newtable(L);
  246. memset(rv, 0, sizeof(rv));
  247. if (!(*func)(ifname, rv, &len))
  248. {
  249. for (i = 0; i < len; i += sizeof(struct iwinfo_assoclist_entry))
  250. {
  251. e = (struct iwinfo_assoclist_entry *) &rv[i];
  252. sprintf(macstr, "%02X:%02X:%02X:%02X:%02X:%02X",
  253. e->mac[0], e->mac[1], e->mac[2],
  254. e->mac[3], e->mac[4], e->mac[5]);
  255. lua_newtable(L);
  256. lua_pushnumber(L, e->signal);
  257. lua_setfield(L, -2, "signal");
  258. lua_pushnumber(L, e->noise);
  259. lua_setfield(L, -2, "noise");
  260. lua_pushnumber(L, e->inactive);
  261. lua_setfield(L, -2, "inactive");
  262. lua_pushnumber(L, e->rx_packets);
  263. lua_setfield(L, -2, "rx_packets");
  264. lua_pushnumber(L, e->tx_packets);
  265. lua_setfield(L, -2, "tx_packets");
  266. set_rateinfo(L, &e->rx_rate, true);
  267. set_rateinfo(L, &e->tx_rate, false);
  268. if (e->thr) {
  269. lua_pushnumber(L, e->thr);
  270. lua_setfield(L, -2, "expected_throughput");
  271. }
  272. lua_setfield(L, -2, macstr);
  273. }
  274. }
  275. return 1;
  276. }
  277. /* Wrapper for tx power list */
  278. static int iwinfo_L_txpwrlist(lua_State *L, int (*func)(const char *, char *, int *))
  279. {
  280. int i, x, len;
  281. char rv[IWINFO_BUFSIZE];
  282. const char *ifname = luaL_checkstring(L, 1);
  283. struct iwinfo_txpwrlist_entry *e;
  284. memset(rv, 0, sizeof(rv));
  285. if (!(*func)(ifname, rv, &len))
  286. {
  287. lua_newtable(L);
  288. for (i = 0, x = 1; i < len; i += sizeof(struct iwinfo_txpwrlist_entry), x++)
  289. {
  290. e = (struct iwinfo_txpwrlist_entry *) &rv[i];
  291. lua_newtable(L);
  292. lua_pushnumber(L, e->mw);
  293. lua_setfield(L, -2, "mw");
  294. lua_pushnumber(L, e->dbm);
  295. lua_setfield(L, -2, "dbm");
  296. lua_rawseti(L, -2, x);
  297. }
  298. return 1;
  299. }
  300. return 0;
  301. }
  302. /* Wrapper for scan list */
  303. static int iwinfo_L_scanlist(lua_State *L, int (*func)(const char *, char *, int *))
  304. {
  305. int i, x, len = 0;
  306. char rv[IWINFO_BUFSIZE];
  307. char macstr[18];
  308. const char *ifname = luaL_checkstring(L, 1);
  309. struct iwinfo_scanlist_entry *e;
  310. lua_newtable(L);
  311. memset(rv, 0, sizeof(rv));
  312. if (!(*func)(ifname, rv, &len))
  313. {
  314. for (i = 0, x = 1; i < len; i += sizeof(struct iwinfo_scanlist_entry), x++)
  315. {
  316. e = (struct iwinfo_scanlist_entry *) &rv[i];
  317. lua_newtable(L);
  318. /* BSSID */
  319. sprintf(macstr, "%02X:%02X:%02X:%02X:%02X:%02X",
  320. e->mac[0], e->mac[1], e->mac[2],
  321. e->mac[3], e->mac[4], e->mac[5]);
  322. lua_pushstring(L, macstr);
  323. lua_setfield(L, -2, "bssid");
  324. /* ESSID */
  325. if (e->ssid[0])
  326. {
  327. lua_pushstring(L, (char *) e->ssid);
  328. lua_setfield(L, -2, "ssid");
  329. }
  330. /* Channel */
  331. lua_pushinteger(L, e->channel);
  332. lua_setfield(L, -2, "channel");
  333. /* Mode */
  334. lua_pushstring(L, IWINFO_OPMODE_NAMES[e->mode]);
  335. lua_setfield(L, -2, "mode");
  336. /* Quality, Signal */
  337. lua_pushinteger(L, e->quality);
  338. lua_setfield(L, -2, "quality");
  339. lua_pushinteger(L, e->quality_max);
  340. lua_setfield(L, -2, "quality_max");
  341. lua_pushnumber(L, (e->signal - 0x100));
  342. lua_setfield(L, -2, "signal");
  343. /* BSS load */
  344. if (e->has_bss_load) {
  345. lua_pushnumber(L, e->station_count);
  346. lua_setfield(L, -2, "station_count");
  347. lua_pushnumber(L, e->channel_utilization);
  348. lua_setfield(L, -2, "channel_utilization");
  349. lua_pushnumber(L, e->admission_capacity);
  350. lua_setfield(L, -2, "admission_capacity");
  351. }
  352. /* Crypto */
  353. iwinfo_L_cryptotable(L, &e->crypto);
  354. lua_setfield(L, -2, "encryption");
  355. lua_rawseti(L, -2, x);
  356. }
  357. }
  358. return 1;
  359. }
  360. /* Wrapper for frequency list */
  361. static int iwinfo_L_freqlist(lua_State *L, int (*func)(const char *, char *, int *))
  362. {
  363. int i, x, len;
  364. char rv[IWINFO_BUFSIZE];
  365. const char *ifname = luaL_checkstring(L, 1);
  366. struct iwinfo_freqlist_entry *e;
  367. lua_newtable(L);
  368. memset(rv, 0, sizeof(rv));
  369. if (!(*func)(ifname, rv, &len))
  370. {
  371. for (i = 0, x = 1; i < len; i += sizeof(struct iwinfo_freqlist_entry), x++)
  372. {
  373. e = (struct iwinfo_freqlist_entry *) &rv[i];
  374. lua_newtable(L);
  375. /* MHz */
  376. lua_pushinteger(L, e->mhz);
  377. lua_setfield(L, -2, "mhz");
  378. /* Channel */
  379. lua_pushinteger(L, e->channel);
  380. lua_setfield(L, -2, "channel");
  381. /* Restricted (DFS/TPC/Radar) */
  382. lua_pushboolean(L, e->restricted);
  383. lua_setfield(L, -2, "restricted");
  384. lua_rawseti(L, -2, x);
  385. }
  386. }
  387. return 1;
  388. }
  389. /* Wrapper for crypto settings */
  390. static int iwinfo_L_encryption(lua_State *L, int (*func)(const char *, char *))
  391. {
  392. const char *ifname = luaL_checkstring(L, 1);
  393. struct iwinfo_crypto_entry c = { 0 };
  394. if (!(*func)(ifname, (char *)&c))
  395. {
  396. iwinfo_L_cryptotable(L, &c);
  397. return 1;
  398. }
  399. lua_pushnil(L);
  400. return 1;
  401. }
  402. /* Wrapper for hwmode list */
  403. static int iwinfo_L_hwmodelist(lua_State *L, int (*func)(const char *, int *))
  404. {
  405. const char *ifname = luaL_checkstring(L, 1);
  406. int hwmodes = 0;
  407. if (!(*func)(ifname, &hwmodes))
  408. {
  409. lua_newtable(L);
  410. lua_pushboolean(L, hwmodes & IWINFO_80211_A);
  411. lua_setfield(L, -2, "a");
  412. lua_pushboolean(L, hwmodes & IWINFO_80211_B);
  413. lua_setfield(L, -2, "b");
  414. lua_pushboolean(L, hwmodes & IWINFO_80211_G);
  415. lua_setfield(L, -2, "g");
  416. lua_pushboolean(L, hwmodes & IWINFO_80211_N);
  417. lua_setfield(L, -2, "n");
  418. lua_pushboolean(L, hwmodes & IWINFO_80211_AC);
  419. lua_setfield(L, -2, "ac");
  420. lua_pushboolean(L, hwmodes & IWINFO_80211_AD);
  421. lua_setfield(L, -2, "ad");
  422. return 1;
  423. }
  424. lua_pushnil(L);
  425. return 1;
  426. }
  427. /* Wrapper for htmode list */
  428. static int iwinfo_L_htmodelist(lua_State *L, int (*func)(const char *, int *))
  429. {
  430. const char *ifname = luaL_checkstring(L, 1);
  431. int i, htmodes = 0;
  432. if (!(*func)(ifname, &htmodes))
  433. {
  434. lua_newtable(L);
  435. for (i = 0; i < ARRAY_SIZE(IWINFO_HTMODE_NAMES); i++)
  436. {
  437. lua_pushboolean(L, htmodes & (1 << i));
  438. lua_setfield(L, -2, IWINFO_HTMODE_NAMES[i]);
  439. }
  440. return 1;
  441. }
  442. lua_pushnil(L);
  443. return 1;
  444. }
  445. /* Wrapper for mbssid_support */
  446. static int iwinfo_L_mbssid_support(lua_State *L, int (*func)(const char *, int *))
  447. {
  448. const char *ifname = luaL_checkstring(L, 1);
  449. int support = 0;
  450. if (!(*func)(ifname, &support))
  451. {
  452. lua_pushboolean(L, support);
  453. return 1;
  454. }
  455. lua_pushnil(L);
  456. return 1;
  457. }
  458. /* Wrapper for hardware_id */
  459. static int iwinfo_L_hardware_id(lua_State *L, int (*func)(const char *, char *))
  460. {
  461. const char *ifname = luaL_checkstring(L, 1);
  462. struct iwinfo_hardware_id ids;
  463. if (!(*func)(ifname, (char *)&ids))
  464. {
  465. lua_newtable(L);
  466. lua_pushnumber(L, ids.vendor_id);
  467. lua_setfield(L, -2, "vendor_id");
  468. lua_pushnumber(L, ids.device_id);
  469. lua_setfield(L, -2, "device_id");
  470. lua_pushnumber(L, ids.subsystem_vendor_id);
  471. lua_setfield(L, -2, "subsystem_vendor_id");
  472. lua_pushnumber(L, ids.subsystem_device_id);
  473. lua_setfield(L, -2, "subsystem_device_id");
  474. }
  475. else
  476. {
  477. lua_pushnil(L);
  478. }
  479. return 1;
  480. }
  481. /* Wrapper for country list */
  482. static char * iwinfo_L_country_lookup(char *buf, int len, int iso3166)
  483. {
  484. int i;
  485. struct iwinfo_country_entry *c;
  486. for (i = 0; i < len; i += sizeof(struct iwinfo_country_entry))
  487. {
  488. c = (struct iwinfo_country_entry *) &buf[i];
  489. if (c->iso3166 == iso3166)
  490. return c->ccode;
  491. }
  492. return NULL;
  493. }
  494. static int iwinfo_L_countrylist(lua_State *L, int (*func)(const char *, char *, int *))
  495. {
  496. int len, i;
  497. char rv[IWINFO_BUFSIZE], alpha2[3];
  498. char *ccode;
  499. const char *ifname = luaL_checkstring(L, 1);
  500. const struct iwinfo_iso3166_label *l;
  501. lua_newtable(L);
  502. memset(rv, 0, sizeof(rv));
  503. if (!(*func)(ifname, rv, &len))
  504. {
  505. for (l = IWINFO_ISO3166_NAMES, i = 1; l->iso3166; l++)
  506. {
  507. if ((ccode = iwinfo_L_country_lookup(rv, len, l->iso3166)) != NULL)
  508. {
  509. sprintf(alpha2, "%c%c",
  510. (l->iso3166 / 256), (l->iso3166 % 256));
  511. lua_newtable(L);
  512. lua_pushstring(L, alpha2);
  513. lua_setfield(L, -2, "alpha2");
  514. lua_pushstring(L, ccode);
  515. lua_setfield(L, -2, "ccode");
  516. lua_pushstring(L, l->name);
  517. lua_setfield(L, -2, "name");
  518. lua_rawseti(L, -2, i++);
  519. }
  520. }
  521. }
  522. return 1;
  523. }
  524. #ifdef USE_WL
  525. /* Broadcom */
  526. LUA_WRAP_INT_OP(wl,channel)
  527. LUA_WRAP_INT_OP(wl,frequency)
  528. LUA_WRAP_INT_OP(wl,frequency_offset)
  529. LUA_WRAP_INT_OP(wl,txpower)
  530. LUA_WRAP_INT_OP(wl,txpower_offset)
  531. LUA_WRAP_INT_OP(wl,bitrate)
  532. LUA_WRAP_INT_OP(wl,signal)
  533. LUA_WRAP_INT_OP(wl,noise)
  534. LUA_WRAP_INT_OP(wl,quality)
  535. LUA_WRAP_INT_OP(wl,quality_max)
  536. LUA_WRAP_STRING_OP(wl,ssid)
  537. LUA_WRAP_STRING_OP(wl,bssid)
  538. LUA_WRAP_STRING_OP(wl,country)
  539. LUA_WRAP_STRING_OP(wl,hardware_name)
  540. LUA_WRAP_STRING_OP(wl,phyname)
  541. LUA_WRAP_STRUCT_OP(wl,mode)
  542. LUA_WRAP_STRUCT_OP(wl,assoclist)
  543. LUA_WRAP_STRUCT_OP(wl,txpwrlist)
  544. LUA_WRAP_STRUCT_OP(wl,scanlist)
  545. LUA_WRAP_STRUCT_OP(wl,freqlist)
  546. LUA_WRAP_STRUCT_OP(wl,countrylist)
  547. LUA_WRAP_STRUCT_OP(wl,hwmodelist)
  548. LUA_WRAP_STRUCT_OP(wl,htmodelist)
  549. LUA_WRAP_STRUCT_OP(wl,encryption)
  550. LUA_WRAP_STRUCT_OP(wl,mbssid_support)
  551. LUA_WRAP_STRUCT_OP(wl,hardware_id)
  552. #endif
  553. #ifdef USE_MADWIFI
  554. /* Madwifi */
  555. LUA_WRAP_INT_OP(madwifi,channel)
  556. LUA_WRAP_INT_OP(madwifi,frequency)
  557. LUA_WRAP_INT_OP(madwifi,frequency_offset)
  558. LUA_WRAP_INT_OP(madwifi,txpower)
  559. LUA_WRAP_INT_OP(madwifi,txpower_offset)
  560. LUA_WRAP_INT_OP(madwifi,bitrate)
  561. LUA_WRAP_INT_OP(madwifi,signal)
  562. LUA_WRAP_INT_OP(madwifi,noise)
  563. LUA_WRAP_INT_OP(madwifi,quality)
  564. LUA_WRAP_INT_OP(madwifi,quality_max)
  565. LUA_WRAP_STRING_OP(madwifi,ssid)
  566. LUA_WRAP_STRING_OP(madwifi,bssid)
  567. LUA_WRAP_STRING_OP(madwifi,country)
  568. LUA_WRAP_STRING_OP(madwifi,hardware_name)
  569. LUA_WRAP_STRING_OP(madwifi,phyname)
  570. LUA_WRAP_STRUCT_OP(madwifi,mode)
  571. LUA_WRAP_STRUCT_OP(madwifi,assoclist)
  572. LUA_WRAP_STRUCT_OP(madwifi,txpwrlist)
  573. LUA_WRAP_STRUCT_OP(madwifi,scanlist)
  574. LUA_WRAP_STRUCT_OP(madwifi,freqlist)
  575. LUA_WRAP_STRUCT_OP(madwifi,countrylist)
  576. LUA_WRAP_STRUCT_OP(madwifi,hwmodelist)
  577. LUA_WRAP_STRUCT_OP(madwifi,htmodelist)
  578. LUA_WRAP_STRUCT_OP(madwifi,encryption)
  579. LUA_WRAP_STRUCT_OP(madwifi,mbssid_support)
  580. LUA_WRAP_STRUCT_OP(madwifi,hardware_id)
  581. #endif
  582. #ifdef USE_NL80211
  583. /* NL80211 */
  584. LUA_WRAP_INT_OP(nl80211,channel)
  585. LUA_WRAP_INT_OP(nl80211,frequency)
  586. LUA_WRAP_INT_OP(nl80211,frequency_offset)
  587. LUA_WRAP_INT_OP(nl80211,txpower)
  588. LUA_WRAP_INT_OP(nl80211,txpower_offset)
  589. LUA_WRAP_INT_OP(nl80211,bitrate)
  590. LUA_WRAP_INT_OP(nl80211,signal)
  591. LUA_WRAP_INT_OP(nl80211,noise)
  592. LUA_WRAP_INT_OP(nl80211,quality)
  593. LUA_WRAP_INT_OP(nl80211,quality_max)
  594. LUA_WRAP_STRING_OP(nl80211,ssid)
  595. LUA_WRAP_STRING_OP(nl80211,bssid)
  596. LUA_WRAP_STRING_OP(nl80211,country)
  597. LUA_WRAP_STRING_OP(nl80211,hardware_name)
  598. LUA_WRAP_STRING_OP(nl80211,phyname)
  599. LUA_WRAP_STRUCT_OP(nl80211,mode)
  600. LUA_WRAP_STRUCT_OP(nl80211,assoclist)
  601. LUA_WRAP_STRUCT_OP(nl80211,txpwrlist)
  602. LUA_WRAP_STRUCT_OP(nl80211,scanlist)
  603. LUA_WRAP_STRUCT_OP(nl80211,freqlist)
  604. LUA_WRAP_STRUCT_OP(nl80211,countrylist)
  605. LUA_WRAP_STRUCT_OP(nl80211,hwmodelist)
  606. LUA_WRAP_STRUCT_OP(nl80211,htmodelist)
  607. LUA_WRAP_STRUCT_OP(nl80211,encryption)
  608. LUA_WRAP_STRUCT_OP(nl80211,mbssid_support)
  609. LUA_WRAP_STRUCT_OP(nl80211,hardware_id)
  610. #endif
  611. /* Wext */
  612. LUA_WRAP_INT_OP(wext,channel)
  613. LUA_WRAP_INT_OP(wext,frequency)
  614. LUA_WRAP_INT_OP(wext,frequency_offset)
  615. LUA_WRAP_INT_OP(wext,txpower)
  616. LUA_WRAP_INT_OP(wext,txpower_offset)
  617. LUA_WRAP_INT_OP(wext,bitrate)
  618. LUA_WRAP_INT_OP(wext,signal)
  619. LUA_WRAP_INT_OP(wext,noise)
  620. LUA_WRAP_INT_OP(wext,quality)
  621. LUA_WRAP_INT_OP(wext,quality_max)
  622. LUA_WRAP_STRING_OP(wext,ssid)
  623. LUA_WRAP_STRING_OP(wext,bssid)
  624. LUA_WRAP_STRING_OP(wext,country)
  625. LUA_WRAP_STRING_OP(wext,hardware_name)
  626. LUA_WRAP_STRING_OP(wext,phyname)
  627. LUA_WRAP_STRUCT_OP(wext,mode)
  628. LUA_WRAP_STRUCT_OP(wext,assoclist)
  629. LUA_WRAP_STRUCT_OP(wext,txpwrlist)
  630. LUA_WRAP_STRUCT_OP(wext,scanlist)
  631. LUA_WRAP_STRUCT_OP(wext,freqlist)
  632. LUA_WRAP_STRUCT_OP(wext,countrylist)
  633. LUA_WRAP_STRUCT_OP(wext,hwmodelist)
  634. LUA_WRAP_STRUCT_OP(wext,htmodelist)
  635. LUA_WRAP_STRUCT_OP(wext,encryption)
  636. LUA_WRAP_STRUCT_OP(wext,mbssid_support)
  637. LUA_WRAP_STRUCT_OP(wext,hardware_id)
  638. #ifdef USE_WL
  639. /* Broadcom table */
  640. static const luaL_reg R_wl[] = {
  641. LUA_REG(wl,channel),
  642. LUA_REG(wl,frequency),
  643. LUA_REG(wl,frequency_offset),
  644. LUA_REG(wl,txpower),
  645. LUA_REG(wl,txpower_offset),
  646. LUA_REG(wl,bitrate),
  647. LUA_REG(wl,signal),
  648. LUA_REG(wl,noise),
  649. LUA_REG(wl,quality),
  650. LUA_REG(wl,quality_max),
  651. LUA_REG(wl,mode),
  652. LUA_REG(wl,ssid),
  653. LUA_REG(wl,bssid),
  654. LUA_REG(wl,country),
  655. LUA_REG(wl,assoclist),
  656. LUA_REG(wl,txpwrlist),
  657. LUA_REG(wl,scanlist),
  658. LUA_REG(wl,freqlist),
  659. LUA_REG(wl,countrylist),
  660. LUA_REG(wl,hwmodelist),
  661. LUA_REG(wl,htmodelist),
  662. LUA_REG(wl,encryption),
  663. LUA_REG(wl,mbssid_support),
  664. LUA_REG(wl,hardware_id),
  665. LUA_REG(wl,hardware_name),
  666. LUA_REG(wl,phyname),
  667. { NULL, NULL }
  668. };
  669. #endif
  670. #ifdef USE_MADWIFI
  671. /* Madwifi table */
  672. static const luaL_reg R_madwifi[] = {
  673. LUA_REG(madwifi,channel),
  674. LUA_REG(madwifi,frequency),
  675. LUA_REG(madwifi,frequency_offset),
  676. LUA_REG(madwifi,txpower),
  677. LUA_REG(madwifi,txpower_offset),
  678. LUA_REG(madwifi,bitrate),
  679. LUA_REG(madwifi,signal),
  680. LUA_REG(madwifi,noise),
  681. LUA_REG(madwifi,quality),
  682. LUA_REG(madwifi,quality_max),
  683. LUA_REG(madwifi,mode),
  684. LUA_REG(madwifi,ssid),
  685. LUA_REG(madwifi,bssid),
  686. LUA_REG(madwifi,country),
  687. LUA_REG(madwifi,assoclist),
  688. LUA_REG(madwifi,txpwrlist),
  689. LUA_REG(madwifi,scanlist),
  690. LUA_REG(madwifi,freqlist),
  691. LUA_REG(madwifi,countrylist),
  692. LUA_REG(madwifi,hwmodelist),
  693. LUA_REG(madwifi,htmodelist),
  694. LUA_REG(madwifi,encryption),
  695. LUA_REG(madwifi,mbssid_support),
  696. LUA_REG(madwifi,hardware_id),
  697. LUA_REG(madwifi,hardware_name),
  698. LUA_REG(madwifi,phyname),
  699. { NULL, NULL }
  700. };
  701. #endif
  702. #ifdef USE_NL80211
  703. /* NL80211 table */
  704. static const luaL_reg R_nl80211[] = {
  705. LUA_REG(nl80211,channel),
  706. LUA_REG(nl80211,frequency),
  707. LUA_REG(nl80211,frequency_offset),
  708. LUA_REG(nl80211,txpower),
  709. LUA_REG(nl80211,txpower_offset),
  710. LUA_REG(nl80211,bitrate),
  711. LUA_REG(nl80211,signal),
  712. LUA_REG(nl80211,noise),
  713. LUA_REG(nl80211,quality),
  714. LUA_REG(nl80211,quality_max),
  715. LUA_REG(nl80211,mode),
  716. LUA_REG(nl80211,ssid),
  717. LUA_REG(nl80211,bssid),
  718. LUA_REG(nl80211,country),
  719. LUA_REG(nl80211,assoclist),
  720. LUA_REG(nl80211,txpwrlist),
  721. LUA_REG(nl80211,scanlist),
  722. LUA_REG(nl80211,freqlist),
  723. LUA_REG(nl80211,countrylist),
  724. LUA_REG(nl80211,hwmodelist),
  725. LUA_REG(nl80211,htmodelist),
  726. LUA_REG(nl80211,encryption),
  727. LUA_REG(nl80211,mbssid_support),
  728. LUA_REG(nl80211,hardware_id),
  729. LUA_REG(nl80211,hardware_name),
  730. LUA_REG(nl80211,phyname),
  731. { NULL, NULL }
  732. };
  733. #endif
  734. /* Wext table */
  735. static const luaL_reg R_wext[] = {
  736. LUA_REG(wext,channel),
  737. LUA_REG(wext,frequency),
  738. LUA_REG(wext,frequency_offset),
  739. LUA_REG(wext,txpower),
  740. LUA_REG(wext,txpower_offset),
  741. LUA_REG(wext,bitrate),
  742. LUA_REG(wext,signal),
  743. LUA_REG(wext,noise),
  744. LUA_REG(wext,quality),
  745. LUA_REG(wext,quality_max),
  746. LUA_REG(wext,mode),
  747. LUA_REG(wext,ssid),
  748. LUA_REG(wext,bssid),
  749. LUA_REG(wext,country),
  750. LUA_REG(wext,assoclist),
  751. LUA_REG(wext,txpwrlist),
  752. LUA_REG(wext,scanlist),
  753. LUA_REG(wext,freqlist),
  754. LUA_REG(wext,countrylist),
  755. LUA_REG(wext,hwmodelist),
  756. LUA_REG(wext,htmodelist),
  757. LUA_REG(wext,encryption),
  758. LUA_REG(wext,mbssid_support),
  759. LUA_REG(wext,hardware_id),
  760. LUA_REG(wext,hardware_name),
  761. LUA_REG(wext,phyname),
  762. { NULL, NULL }
  763. };
  764. /* Common */
  765. static const luaL_reg R_common[] = {
  766. { "type", iwinfo_L_type },
  767. { "__gc", iwinfo_L__gc },
  768. { NULL, NULL }
  769. };
  770. LUALIB_API int luaopen_iwinfo(lua_State *L) {
  771. luaL_register(L, IWINFO_META, R_common);
  772. #ifdef USE_WL
  773. luaL_newmetatable(L, IWINFO_WL_META);
  774. luaL_register(L, NULL, R_common);
  775. luaL_register(L, NULL, R_wl);
  776. lua_pushvalue(L, -1);
  777. lua_setfield(L, -2, "__index");
  778. lua_setfield(L, -2, "wl");
  779. #endif
  780. #ifdef USE_MADWIFI
  781. luaL_newmetatable(L, IWINFO_MADWIFI_META);
  782. luaL_register(L, NULL, R_common);
  783. luaL_register(L, NULL, R_madwifi);
  784. lua_pushvalue(L, -1);
  785. lua_setfield(L, -2, "__index");
  786. lua_setfield(L, -2, "madwifi");
  787. #endif
  788. #ifdef USE_NL80211
  789. luaL_newmetatable(L, IWINFO_NL80211_META);
  790. luaL_register(L, NULL, R_common);
  791. luaL_register(L, NULL, R_nl80211);
  792. lua_pushvalue(L, -1);
  793. lua_setfield(L, -2, "__index");
  794. lua_setfield(L, -2, "nl80211");
  795. #endif
  796. luaL_newmetatable(L, IWINFO_WEXT_META);
  797. luaL_register(L, NULL, R_common);
  798. luaL_register(L, NULL, R_wext);
  799. lua_pushvalue(L, -1);
  800. lua_setfield(L, -2, "__index");
  801. lua_setfield(L, -2, "wext");
  802. return 1;
  803. }