config.c 73 KB

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  1. /*
  2. * WPA Supplicant / Configuration parser and common functions
  3. * Copyright (c) 2003-2012, Jouni Malinen <j@w1.fi>
  4. *
  5. * This software may be distributed under the terms of the BSD license.
  6. * See README for more details.
  7. */
  8. #include "includes.h"
  9. #include "common.h"
  10. #include "utils/uuid.h"
  11. #include "crypto/sha1.h"
  12. #include "rsn_supp/wpa.h"
  13. #include "eap_peer/eap.h"
  14. #include "p2p/p2p.h"
  15. #include "config.h"
  16. #if !defined(CONFIG_CTRL_IFACE) && defined(CONFIG_NO_CONFIG_WRITE)
  17. #define NO_CONFIG_WRITE
  18. #endif
  19. /*
  20. * Structure for network configuration parsing. This data is used to implement
  21. * a generic parser for each network block variable. The table of configuration
  22. * variables is defined below in this file (ssid_fields[]).
  23. */
  24. struct parse_data {
  25. /* Configuration variable name */
  26. char *name;
  27. /* Parser function for this variable */
  28. int (*parser)(const struct parse_data *data, struct wpa_ssid *ssid,
  29. int line, const char *value);
  30. #ifndef NO_CONFIG_WRITE
  31. /* Writer function (i.e., to get the variable in text format from
  32. * internal presentation). */
  33. char * (*writer)(const struct parse_data *data, struct wpa_ssid *ssid);
  34. #endif /* NO_CONFIG_WRITE */
  35. /* Variable specific parameters for the parser. */
  36. void *param1, *param2, *param3, *param4;
  37. /* 0 = this variable can be included in debug output and ctrl_iface
  38. * 1 = this variable contains key/private data and it must not be
  39. * included in debug output unless explicitly requested. In
  40. * addition, this variable will not be readable through the
  41. * ctrl_iface.
  42. */
  43. int key_data;
  44. };
  45. static int wpa_config_parse_str(const struct parse_data *data,
  46. struct wpa_ssid *ssid,
  47. int line, const char *value)
  48. {
  49. size_t res_len, *dst_len;
  50. char **dst, *tmp;
  51. if (os_strcmp(value, "NULL") == 0) {
  52. wpa_printf(MSG_DEBUG, "Unset configuration string '%s'",
  53. data->name);
  54. tmp = NULL;
  55. res_len = 0;
  56. goto set;
  57. }
  58. tmp = wpa_config_parse_string(value, &res_len);
  59. if (tmp == NULL) {
  60. wpa_printf(MSG_ERROR, "Line %d: failed to parse %s '%s'.",
  61. line, data->name,
  62. data->key_data ? "[KEY DATA REMOVED]" : value);
  63. return -1;
  64. }
  65. if (data->key_data) {
  66. wpa_hexdump_ascii_key(MSG_MSGDUMP, data->name,
  67. (u8 *) tmp, res_len);
  68. } else {
  69. wpa_hexdump_ascii(MSG_MSGDUMP, data->name,
  70. (u8 *) tmp, res_len);
  71. }
  72. if (data->param3 && res_len < (size_t) data->param3) {
  73. wpa_printf(MSG_ERROR, "Line %d: too short %s (len=%lu "
  74. "min_len=%ld)", line, data->name,
  75. (unsigned long) res_len, (long) data->param3);
  76. os_free(tmp);
  77. return -1;
  78. }
  79. if (data->param4 && res_len > (size_t) data->param4) {
  80. wpa_printf(MSG_ERROR, "Line %d: too long %s (len=%lu "
  81. "max_len=%ld)", line, data->name,
  82. (unsigned long) res_len, (long) data->param4);
  83. os_free(tmp);
  84. return -1;
  85. }
  86. set:
  87. dst = (char **) (((u8 *) ssid) + (long) data->param1);
  88. dst_len = (size_t *) (((u8 *) ssid) + (long) data->param2);
  89. os_free(*dst);
  90. *dst = tmp;
  91. if (data->param2)
  92. *dst_len = res_len;
  93. return 0;
  94. }
  95. #ifndef NO_CONFIG_WRITE
  96. static char * wpa_config_write_string_ascii(const u8 *value, size_t len)
  97. {
  98. char *buf;
  99. buf = os_malloc(len + 3);
  100. if (buf == NULL)
  101. return NULL;
  102. buf[0] = '"';
  103. os_memcpy(buf + 1, value, len);
  104. buf[len + 1] = '"';
  105. buf[len + 2] = '\0';
  106. return buf;
  107. }
  108. static char * wpa_config_write_string_hex(const u8 *value, size_t len)
  109. {
  110. char *buf;
  111. buf = os_zalloc(2 * len + 1);
  112. if (buf == NULL)
  113. return NULL;
  114. wpa_snprintf_hex(buf, 2 * len + 1, value, len);
  115. return buf;
  116. }
  117. static char * wpa_config_write_string(const u8 *value, size_t len)
  118. {
  119. if (value == NULL)
  120. return NULL;
  121. if (is_hex(value, len))
  122. return wpa_config_write_string_hex(value, len);
  123. else
  124. return wpa_config_write_string_ascii(value, len);
  125. }
  126. static char * wpa_config_write_str(const struct parse_data *data,
  127. struct wpa_ssid *ssid)
  128. {
  129. size_t len;
  130. char **src;
  131. src = (char **) (((u8 *) ssid) + (long) data->param1);
  132. if (*src == NULL)
  133. return NULL;
  134. if (data->param2)
  135. len = *((size_t *) (((u8 *) ssid) + (long) data->param2));
  136. else
  137. len = os_strlen(*src);
  138. return wpa_config_write_string((const u8 *) *src, len);
  139. }
  140. #endif /* NO_CONFIG_WRITE */
  141. static int wpa_config_parse_int(const struct parse_data *data,
  142. struct wpa_ssid *ssid,
  143. int line, const char *value)
  144. {
  145. int *dst;
  146. dst = (int *) (((u8 *) ssid) + (long) data->param1);
  147. *dst = atoi(value);
  148. wpa_printf(MSG_MSGDUMP, "%s=%d (0x%x)", data->name, *dst, *dst);
  149. if (data->param3 && *dst < (long) data->param3) {
  150. wpa_printf(MSG_ERROR, "Line %d: too small %s (value=%d "
  151. "min_value=%ld)", line, data->name, *dst,
  152. (long) data->param3);
  153. *dst = (long) data->param3;
  154. return -1;
  155. }
  156. if (data->param4 && *dst > (long) data->param4) {
  157. wpa_printf(MSG_ERROR, "Line %d: too large %s (value=%d "
  158. "max_value=%ld)", line, data->name, *dst,
  159. (long) data->param4);
  160. *dst = (long) data->param4;
  161. return -1;
  162. }
  163. return 0;
  164. }
  165. #ifndef NO_CONFIG_WRITE
  166. static char * wpa_config_write_int(const struct parse_data *data,
  167. struct wpa_ssid *ssid)
  168. {
  169. int *src, res;
  170. char *value;
  171. src = (int *) (((u8 *) ssid) + (long) data->param1);
  172. value = os_malloc(20);
  173. if (value == NULL)
  174. return NULL;
  175. res = os_snprintf(value, 20, "%d", *src);
  176. if (res < 0 || res >= 20) {
  177. os_free(value);
  178. return NULL;
  179. }
  180. value[20 - 1] = '\0';
  181. return value;
  182. }
  183. #endif /* NO_CONFIG_WRITE */
  184. static int wpa_config_parse_bssid(const struct parse_data *data,
  185. struct wpa_ssid *ssid, int line,
  186. const char *value)
  187. {
  188. if (value[0] == '\0' || os_strcmp(value, "\"\"") == 0 ||
  189. os_strcmp(value, "any") == 0) {
  190. ssid->bssid_set = 0;
  191. wpa_printf(MSG_MSGDUMP, "BSSID any");
  192. return 0;
  193. }
  194. if (hwaddr_aton(value, ssid->bssid)) {
  195. wpa_printf(MSG_ERROR, "Line %d: Invalid BSSID '%s'.",
  196. line, value);
  197. return -1;
  198. }
  199. ssid->bssid_set = 1;
  200. wpa_hexdump(MSG_MSGDUMP, "BSSID", ssid->bssid, ETH_ALEN);
  201. return 0;
  202. }
  203. #ifndef NO_CONFIG_WRITE
  204. static char * wpa_config_write_bssid(const struct parse_data *data,
  205. struct wpa_ssid *ssid)
  206. {
  207. char *value;
  208. int res;
  209. if (!ssid->bssid_set)
  210. return NULL;
  211. value = os_malloc(20);
  212. if (value == NULL)
  213. return NULL;
  214. res = os_snprintf(value, 20, MACSTR, MAC2STR(ssid->bssid));
  215. if (res < 0 || res >= 20) {
  216. os_free(value);
  217. return NULL;
  218. }
  219. value[20 - 1] = '\0';
  220. return value;
  221. }
  222. #endif /* NO_CONFIG_WRITE */
  223. static int wpa_config_parse_psk(const struct parse_data *data,
  224. struct wpa_ssid *ssid, int line,
  225. const char *value)
  226. {
  227. #ifdef CONFIG_EXT_PASSWORD
  228. if (os_strncmp(value, "ext:", 4) == 0) {
  229. os_free(ssid->passphrase);
  230. ssid->passphrase = NULL;
  231. ssid->psk_set = 0;
  232. os_free(ssid->ext_psk);
  233. ssid->ext_psk = os_strdup(value + 4);
  234. if (ssid->ext_psk == NULL)
  235. return -1;
  236. wpa_printf(MSG_DEBUG, "PSK: External password '%s'",
  237. ssid->ext_psk);
  238. return 0;
  239. }
  240. #endif /* CONFIG_EXT_PASSWORD */
  241. if (*value == '"') {
  242. #ifndef CONFIG_NO_PBKDF2
  243. const char *pos;
  244. size_t len;
  245. value++;
  246. pos = os_strrchr(value, '"');
  247. if (pos)
  248. len = pos - value;
  249. else
  250. len = os_strlen(value);
  251. if (len < 8 || len > 63) {
  252. wpa_printf(MSG_ERROR, "Line %d: Invalid passphrase "
  253. "length %lu (expected: 8..63) '%s'.",
  254. line, (unsigned long) len, value);
  255. return -1;
  256. }
  257. wpa_hexdump_ascii_key(MSG_MSGDUMP, "PSK (ASCII passphrase)",
  258. (u8 *) value, len);
  259. if (ssid->passphrase && os_strlen(ssid->passphrase) == len &&
  260. os_memcmp(ssid->passphrase, value, len) == 0)
  261. return 0;
  262. ssid->psk_set = 0;
  263. os_free(ssid->passphrase);
  264. ssid->passphrase = os_malloc(len + 1);
  265. if (ssid->passphrase == NULL)
  266. return -1;
  267. os_memcpy(ssid->passphrase, value, len);
  268. ssid->passphrase[len] = '\0';
  269. return 0;
  270. #else /* CONFIG_NO_PBKDF2 */
  271. wpa_printf(MSG_ERROR, "Line %d: ASCII passphrase not "
  272. "supported.", line);
  273. return -1;
  274. #endif /* CONFIG_NO_PBKDF2 */
  275. }
  276. if (hexstr2bin(value, ssid->psk, PMK_LEN) ||
  277. value[PMK_LEN * 2] != '\0') {
  278. wpa_printf(MSG_ERROR, "Line %d: Invalid PSK '%s'.",
  279. line, value);
  280. return -1;
  281. }
  282. os_free(ssid->passphrase);
  283. ssid->passphrase = NULL;
  284. ssid->psk_set = 1;
  285. wpa_hexdump_key(MSG_MSGDUMP, "PSK", ssid->psk, PMK_LEN);
  286. return 0;
  287. }
  288. #ifndef NO_CONFIG_WRITE
  289. static char * wpa_config_write_psk(const struct parse_data *data,
  290. struct wpa_ssid *ssid)
  291. {
  292. #ifdef CONFIG_EXT_PASSWORD
  293. if (ssid->ext_psk) {
  294. size_t len = 4 + os_strlen(ssid->ext_psk) + 1;
  295. char *buf = os_malloc(len);
  296. if (buf == NULL)
  297. return NULL;
  298. os_snprintf(buf, len, "ext:%s", ssid->ext_psk);
  299. return buf;
  300. }
  301. #endif /* CONFIG_EXT_PASSWORD */
  302. if (ssid->passphrase)
  303. return wpa_config_write_string_ascii(
  304. (const u8 *) ssid->passphrase,
  305. os_strlen(ssid->passphrase));
  306. if (ssid->psk_set)
  307. return wpa_config_write_string_hex(ssid->psk, PMK_LEN);
  308. return NULL;
  309. }
  310. #endif /* NO_CONFIG_WRITE */
  311. static int wpa_config_parse_proto(const struct parse_data *data,
  312. struct wpa_ssid *ssid, int line,
  313. const char *value)
  314. {
  315. int val = 0, last, errors = 0;
  316. char *start, *end, *buf;
  317. buf = os_strdup(value);
  318. if (buf == NULL)
  319. return -1;
  320. start = buf;
  321. while (*start != '\0') {
  322. while (*start == ' ' || *start == '\t')
  323. start++;
  324. if (*start == '\0')
  325. break;
  326. end = start;
  327. while (*end != ' ' && *end != '\t' && *end != '\0')
  328. end++;
  329. last = *end == '\0';
  330. *end = '\0';
  331. if (os_strcmp(start, "WPA") == 0)
  332. val |= WPA_PROTO_WPA;
  333. else if (os_strcmp(start, "RSN") == 0 ||
  334. os_strcmp(start, "WPA2") == 0)
  335. val |= WPA_PROTO_RSN;
  336. else {
  337. wpa_printf(MSG_ERROR, "Line %d: invalid proto '%s'",
  338. line, start);
  339. errors++;
  340. }
  341. if (last)
  342. break;
  343. start = end + 1;
  344. }
  345. os_free(buf);
  346. if (val == 0) {
  347. wpa_printf(MSG_ERROR,
  348. "Line %d: no proto values configured.", line);
  349. errors++;
  350. }
  351. wpa_printf(MSG_MSGDUMP, "proto: 0x%x", val);
  352. ssid->proto = val;
  353. return errors ? -1 : 0;
  354. }
  355. #ifndef NO_CONFIG_WRITE
  356. static char * wpa_config_write_proto(const struct parse_data *data,
  357. struct wpa_ssid *ssid)
  358. {
  359. int first = 1, ret;
  360. char *buf, *pos, *end;
  361. pos = buf = os_zalloc(10);
  362. if (buf == NULL)
  363. return NULL;
  364. end = buf + 10;
  365. if (ssid->proto & WPA_PROTO_WPA) {
  366. ret = os_snprintf(pos, end - pos, "%sWPA", first ? "" : " ");
  367. if (ret < 0 || ret >= end - pos)
  368. return buf;
  369. pos += ret;
  370. first = 0;
  371. }
  372. if (ssid->proto & WPA_PROTO_RSN) {
  373. ret = os_snprintf(pos, end - pos, "%sRSN", first ? "" : " ");
  374. if (ret < 0 || ret >= end - pos)
  375. return buf;
  376. pos += ret;
  377. first = 0;
  378. }
  379. return buf;
  380. }
  381. #endif /* NO_CONFIG_WRITE */
  382. static int wpa_config_parse_key_mgmt(const struct parse_data *data,
  383. struct wpa_ssid *ssid, int line,
  384. const char *value)
  385. {
  386. int val = 0, last, errors = 0;
  387. char *start, *end, *buf;
  388. buf = os_strdup(value);
  389. if (buf == NULL)
  390. return -1;
  391. start = buf;
  392. while (*start != '\0') {
  393. while (*start == ' ' || *start == '\t')
  394. start++;
  395. if (*start == '\0')
  396. break;
  397. end = start;
  398. while (*end != ' ' && *end != '\t' && *end != '\0')
  399. end++;
  400. last = *end == '\0';
  401. *end = '\0';
  402. if (os_strcmp(start, "WPA-PSK") == 0)
  403. val |= WPA_KEY_MGMT_PSK;
  404. else if (os_strcmp(start, "WPA-EAP") == 0)
  405. val |= WPA_KEY_MGMT_IEEE8021X;
  406. else if (os_strcmp(start, "IEEE8021X") == 0)
  407. val |= WPA_KEY_MGMT_IEEE8021X_NO_WPA;
  408. else if (os_strcmp(start, "NONE") == 0)
  409. val |= WPA_KEY_MGMT_NONE;
  410. else if (os_strcmp(start, "WPA-NONE") == 0)
  411. val |= WPA_KEY_MGMT_WPA_NONE;
  412. #ifdef CONFIG_IEEE80211R
  413. else if (os_strcmp(start, "FT-PSK") == 0)
  414. val |= WPA_KEY_MGMT_FT_PSK;
  415. else if (os_strcmp(start, "FT-EAP") == 0)
  416. val |= WPA_KEY_MGMT_FT_IEEE8021X;
  417. #endif /* CONFIG_IEEE80211R */
  418. #ifdef CONFIG_IEEE80211W
  419. else if (os_strcmp(start, "WPA-PSK-SHA256") == 0)
  420. val |= WPA_KEY_MGMT_PSK_SHA256;
  421. else if (os_strcmp(start, "WPA-EAP-SHA256") == 0)
  422. val |= WPA_KEY_MGMT_IEEE8021X_SHA256;
  423. #endif /* CONFIG_IEEE80211W */
  424. #ifdef CONFIG_WPS
  425. else if (os_strcmp(start, "WPS") == 0)
  426. val |= WPA_KEY_MGMT_WPS;
  427. #endif /* CONFIG_WPS */
  428. else {
  429. wpa_printf(MSG_ERROR, "Line %d: invalid key_mgmt '%s'",
  430. line, start);
  431. errors++;
  432. }
  433. if (last)
  434. break;
  435. start = end + 1;
  436. }
  437. os_free(buf);
  438. if (val == 0) {
  439. wpa_printf(MSG_ERROR,
  440. "Line %d: no key_mgmt values configured.", line);
  441. errors++;
  442. }
  443. wpa_printf(MSG_MSGDUMP, "key_mgmt: 0x%x", val);
  444. ssid->key_mgmt = val;
  445. return errors ? -1 : 0;
  446. }
  447. #ifndef NO_CONFIG_WRITE
  448. static char * wpa_config_write_key_mgmt(const struct parse_data *data,
  449. struct wpa_ssid *ssid)
  450. {
  451. char *buf, *pos, *end;
  452. int ret;
  453. pos = buf = os_zalloc(50);
  454. if (buf == NULL)
  455. return NULL;
  456. end = buf + 50;
  457. if (ssid->key_mgmt & WPA_KEY_MGMT_PSK) {
  458. ret = os_snprintf(pos, end - pos, "%sWPA-PSK",
  459. pos == buf ? "" : " ");
  460. if (ret < 0 || ret >= end - pos) {
  461. end[-1] = '\0';
  462. return buf;
  463. }
  464. pos += ret;
  465. }
  466. if (ssid->key_mgmt & WPA_KEY_MGMT_IEEE8021X) {
  467. ret = os_snprintf(pos, end - pos, "%sWPA-EAP",
  468. pos == buf ? "" : " ");
  469. if (ret < 0 || ret >= end - pos) {
  470. end[-1] = '\0';
  471. return buf;
  472. }
  473. pos += ret;
  474. }
  475. if (ssid->key_mgmt & WPA_KEY_MGMT_IEEE8021X_NO_WPA) {
  476. ret = os_snprintf(pos, end - pos, "%sIEEE8021X",
  477. pos == buf ? "" : " ");
  478. if (ret < 0 || ret >= end - pos) {
  479. end[-1] = '\0';
  480. return buf;
  481. }
  482. pos += ret;
  483. }
  484. if (ssid->key_mgmt & WPA_KEY_MGMT_NONE) {
  485. ret = os_snprintf(pos, end - pos, "%sNONE",
  486. pos == buf ? "" : " ");
  487. if (ret < 0 || ret >= end - pos) {
  488. end[-1] = '\0';
  489. return buf;
  490. }
  491. pos += ret;
  492. }
  493. if (ssid->key_mgmt & WPA_KEY_MGMT_WPA_NONE) {
  494. ret = os_snprintf(pos, end - pos, "%sWPA-NONE",
  495. pos == buf ? "" : " ");
  496. if (ret < 0 || ret >= end - pos) {
  497. end[-1] = '\0';
  498. return buf;
  499. }
  500. pos += ret;
  501. }
  502. #ifdef CONFIG_IEEE80211R
  503. if (ssid->key_mgmt & WPA_KEY_MGMT_FT_PSK)
  504. pos += os_snprintf(pos, end - pos, "%sFT-PSK",
  505. pos == buf ? "" : " ");
  506. if (ssid->key_mgmt & WPA_KEY_MGMT_FT_IEEE8021X)
  507. pos += os_snprintf(pos, end - pos, "%sFT-EAP",
  508. pos == buf ? "" : " ");
  509. #endif /* CONFIG_IEEE80211R */
  510. #ifdef CONFIG_IEEE80211W
  511. if (ssid->key_mgmt & WPA_KEY_MGMT_PSK_SHA256)
  512. pos += os_snprintf(pos, end - pos, "%sWPA-PSK-SHA256",
  513. pos == buf ? "" : " ");
  514. if (ssid->key_mgmt & WPA_KEY_MGMT_IEEE8021X_SHA256)
  515. pos += os_snprintf(pos, end - pos, "%sWPA-EAP-SHA256",
  516. pos == buf ? "" : " ");
  517. #endif /* CONFIG_IEEE80211W */
  518. #ifdef CONFIG_WPS
  519. if (ssid->key_mgmt & WPA_KEY_MGMT_WPS)
  520. pos += os_snprintf(pos, end - pos, "%sWPS",
  521. pos == buf ? "" : " ");
  522. #endif /* CONFIG_WPS */
  523. return buf;
  524. }
  525. #endif /* NO_CONFIG_WRITE */
  526. static int wpa_config_parse_cipher(int line, const char *value)
  527. {
  528. int val = 0, last;
  529. char *start, *end, *buf;
  530. buf = os_strdup(value);
  531. if (buf == NULL)
  532. return -1;
  533. start = buf;
  534. while (*start != '\0') {
  535. while (*start == ' ' || *start == '\t')
  536. start++;
  537. if (*start == '\0')
  538. break;
  539. end = start;
  540. while (*end != ' ' && *end != '\t' && *end != '\0')
  541. end++;
  542. last = *end == '\0';
  543. *end = '\0';
  544. if (os_strcmp(start, "CCMP") == 0)
  545. val |= WPA_CIPHER_CCMP;
  546. else if (os_strcmp(start, "GCMP") == 0)
  547. val |= WPA_CIPHER_GCMP;
  548. else if (os_strcmp(start, "TKIP") == 0)
  549. val |= WPA_CIPHER_TKIP;
  550. else if (os_strcmp(start, "WEP104") == 0)
  551. val |= WPA_CIPHER_WEP104;
  552. else if (os_strcmp(start, "WEP40") == 0)
  553. val |= WPA_CIPHER_WEP40;
  554. else if (os_strcmp(start, "NONE") == 0)
  555. val |= WPA_CIPHER_NONE;
  556. else {
  557. wpa_printf(MSG_ERROR, "Line %d: invalid cipher '%s'.",
  558. line, start);
  559. os_free(buf);
  560. return -1;
  561. }
  562. if (last)
  563. break;
  564. start = end + 1;
  565. }
  566. os_free(buf);
  567. if (val == 0) {
  568. wpa_printf(MSG_ERROR, "Line %d: no cipher values configured.",
  569. line);
  570. return -1;
  571. }
  572. return val;
  573. }
  574. #ifndef NO_CONFIG_WRITE
  575. static char * wpa_config_write_cipher(int cipher)
  576. {
  577. char *buf, *pos, *end;
  578. int ret;
  579. pos = buf = os_zalloc(50);
  580. if (buf == NULL)
  581. return NULL;
  582. end = buf + 50;
  583. if (cipher & WPA_CIPHER_CCMP) {
  584. ret = os_snprintf(pos, end - pos, "%sCCMP",
  585. pos == buf ? "" : " ");
  586. if (ret < 0 || ret >= end - pos) {
  587. end[-1] = '\0';
  588. return buf;
  589. }
  590. pos += ret;
  591. }
  592. if (cipher & WPA_CIPHER_GCMP) {
  593. ret = os_snprintf(pos, end - pos, "%sGCMP",
  594. pos == buf ? "" : " ");
  595. if (ret < 0 || ret >= end - pos) {
  596. end[-1] = '\0';
  597. return buf;
  598. }
  599. pos += ret;
  600. }
  601. if (cipher & WPA_CIPHER_TKIP) {
  602. ret = os_snprintf(pos, end - pos, "%sTKIP",
  603. pos == buf ? "" : " ");
  604. if (ret < 0 || ret >= end - pos) {
  605. end[-1] = '\0';
  606. return buf;
  607. }
  608. pos += ret;
  609. }
  610. if (cipher & WPA_CIPHER_WEP104) {
  611. ret = os_snprintf(pos, end - pos, "%sWEP104",
  612. pos == buf ? "" : " ");
  613. if (ret < 0 || ret >= end - pos) {
  614. end[-1] = '\0';
  615. return buf;
  616. }
  617. pos += ret;
  618. }
  619. if (cipher & WPA_CIPHER_WEP40) {
  620. ret = os_snprintf(pos, end - pos, "%sWEP40",
  621. pos == buf ? "" : " ");
  622. if (ret < 0 || ret >= end - pos) {
  623. end[-1] = '\0';
  624. return buf;
  625. }
  626. pos += ret;
  627. }
  628. if (cipher & WPA_CIPHER_NONE) {
  629. ret = os_snprintf(pos, end - pos, "%sNONE",
  630. pos == buf ? "" : " ");
  631. if (ret < 0 || ret >= end - pos) {
  632. end[-1] = '\0';
  633. return buf;
  634. }
  635. pos += ret;
  636. }
  637. return buf;
  638. }
  639. #endif /* NO_CONFIG_WRITE */
  640. static int wpa_config_parse_pairwise(const struct parse_data *data,
  641. struct wpa_ssid *ssid, int line,
  642. const char *value)
  643. {
  644. int val;
  645. val = wpa_config_parse_cipher(line, value);
  646. if (val == -1)
  647. return -1;
  648. if (val & ~(WPA_CIPHER_CCMP | WPA_CIPHER_GCMP | WPA_CIPHER_TKIP |
  649. WPA_CIPHER_NONE)) {
  650. wpa_printf(MSG_ERROR, "Line %d: not allowed pairwise cipher "
  651. "(0x%x).", line, val);
  652. return -1;
  653. }
  654. wpa_printf(MSG_MSGDUMP, "pairwise: 0x%x", val);
  655. ssid->pairwise_cipher = val;
  656. return 0;
  657. }
  658. #ifndef NO_CONFIG_WRITE
  659. static char * wpa_config_write_pairwise(const struct parse_data *data,
  660. struct wpa_ssid *ssid)
  661. {
  662. return wpa_config_write_cipher(ssid->pairwise_cipher);
  663. }
  664. #endif /* NO_CONFIG_WRITE */
  665. static int wpa_config_parse_group(const struct parse_data *data,
  666. struct wpa_ssid *ssid, int line,
  667. const char *value)
  668. {
  669. int val;
  670. val = wpa_config_parse_cipher(line, value);
  671. if (val == -1)
  672. return -1;
  673. if (val & ~(WPA_CIPHER_CCMP | WPA_CIPHER_GCMP | WPA_CIPHER_TKIP |
  674. WPA_CIPHER_WEP104 | WPA_CIPHER_WEP40)) {
  675. wpa_printf(MSG_ERROR, "Line %d: not allowed group cipher "
  676. "(0x%x).", line, val);
  677. return -1;
  678. }
  679. wpa_printf(MSG_MSGDUMP, "group: 0x%x", val);
  680. ssid->group_cipher = val;
  681. return 0;
  682. }
  683. #ifndef NO_CONFIG_WRITE
  684. static char * wpa_config_write_group(const struct parse_data *data,
  685. struct wpa_ssid *ssid)
  686. {
  687. return wpa_config_write_cipher(ssid->group_cipher);
  688. }
  689. #endif /* NO_CONFIG_WRITE */
  690. static int wpa_config_parse_auth_alg(const struct parse_data *data,
  691. struct wpa_ssid *ssid, int line,
  692. const char *value)
  693. {
  694. int val = 0, last, errors = 0;
  695. char *start, *end, *buf;
  696. buf = os_strdup(value);
  697. if (buf == NULL)
  698. return -1;
  699. start = buf;
  700. while (*start != '\0') {
  701. while (*start == ' ' || *start == '\t')
  702. start++;
  703. if (*start == '\0')
  704. break;
  705. end = start;
  706. while (*end != ' ' && *end != '\t' && *end != '\0')
  707. end++;
  708. last = *end == '\0';
  709. *end = '\0';
  710. if (os_strcmp(start, "OPEN") == 0)
  711. val |= WPA_AUTH_ALG_OPEN;
  712. else if (os_strcmp(start, "SHARED") == 0)
  713. val |= WPA_AUTH_ALG_SHARED;
  714. else if (os_strcmp(start, "LEAP") == 0)
  715. val |= WPA_AUTH_ALG_LEAP;
  716. else {
  717. wpa_printf(MSG_ERROR, "Line %d: invalid auth_alg '%s'",
  718. line, start);
  719. errors++;
  720. }
  721. if (last)
  722. break;
  723. start = end + 1;
  724. }
  725. os_free(buf);
  726. if (val == 0) {
  727. wpa_printf(MSG_ERROR,
  728. "Line %d: no auth_alg values configured.", line);
  729. errors++;
  730. }
  731. wpa_printf(MSG_MSGDUMP, "auth_alg: 0x%x", val);
  732. ssid->auth_alg = val;
  733. return errors ? -1 : 0;
  734. }
  735. #ifndef NO_CONFIG_WRITE
  736. static char * wpa_config_write_auth_alg(const struct parse_data *data,
  737. struct wpa_ssid *ssid)
  738. {
  739. char *buf, *pos, *end;
  740. int ret;
  741. pos = buf = os_zalloc(30);
  742. if (buf == NULL)
  743. return NULL;
  744. end = buf + 30;
  745. if (ssid->auth_alg & WPA_AUTH_ALG_OPEN) {
  746. ret = os_snprintf(pos, end - pos, "%sOPEN",
  747. pos == buf ? "" : " ");
  748. if (ret < 0 || ret >= end - pos) {
  749. end[-1] = '\0';
  750. return buf;
  751. }
  752. pos += ret;
  753. }
  754. if (ssid->auth_alg & WPA_AUTH_ALG_SHARED) {
  755. ret = os_snprintf(pos, end - pos, "%sSHARED",
  756. pos == buf ? "" : " ");
  757. if (ret < 0 || ret >= end - pos) {
  758. end[-1] = '\0';
  759. return buf;
  760. }
  761. pos += ret;
  762. }
  763. if (ssid->auth_alg & WPA_AUTH_ALG_LEAP) {
  764. ret = os_snprintf(pos, end - pos, "%sLEAP",
  765. pos == buf ? "" : " ");
  766. if (ret < 0 || ret >= end - pos) {
  767. end[-1] = '\0';
  768. return buf;
  769. }
  770. pos += ret;
  771. }
  772. return buf;
  773. }
  774. #endif /* NO_CONFIG_WRITE */
  775. static int * wpa_config_parse_freqs(const struct parse_data *data,
  776. struct wpa_ssid *ssid, int line,
  777. const char *value)
  778. {
  779. int *freqs;
  780. size_t used, len;
  781. const char *pos;
  782. used = 0;
  783. len = 10;
  784. freqs = os_calloc(len + 1, sizeof(int));
  785. if (freqs == NULL)
  786. return NULL;
  787. pos = value;
  788. while (pos) {
  789. while (*pos == ' ')
  790. pos++;
  791. if (used == len) {
  792. int *n;
  793. size_t i;
  794. n = os_realloc_array(freqs, len * 2 + 1, sizeof(int));
  795. if (n == NULL) {
  796. os_free(freqs);
  797. return NULL;
  798. }
  799. for (i = len; i <= len * 2; i++)
  800. n[i] = 0;
  801. freqs = n;
  802. len *= 2;
  803. }
  804. freqs[used] = atoi(pos);
  805. if (freqs[used] == 0)
  806. break;
  807. used++;
  808. pos = os_strchr(pos + 1, ' ');
  809. }
  810. return freqs;
  811. }
  812. static int wpa_config_parse_scan_freq(const struct parse_data *data,
  813. struct wpa_ssid *ssid, int line,
  814. const char *value)
  815. {
  816. int *freqs;
  817. freqs = wpa_config_parse_freqs(data, ssid, line, value);
  818. if (freqs == NULL)
  819. return -1;
  820. os_free(ssid->scan_freq);
  821. ssid->scan_freq = freqs;
  822. return 0;
  823. }
  824. static int wpa_config_parse_freq_list(const struct parse_data *data,
  825. struct wpa_ssid *ssid, int line,
  826. const char *value)
  827. {
  828. int *freqs;
  829. freqs = wpa_config_parse_freqs(data, ssid, line, value);
  830. if (freqs == NULL)
  831. return -1;
  832. os_free(ssid->freq_list);
  833. ssid->freq_list = freqs;
  834. return 0;
  835. }
  836. #ifndef NO_CONFIG_WRITE
  837. static char * wpa_config_write_freqs(const struct parse_data *data,
  838. const int *freqs)
  839. {
  840. char *buf, *pos, *end;
  841. int i, ret;
  842. size_t count;
  843. if (freqs == NULL)
  844. return NULL;
  845. count = 0;
  846. for (i = 0; freqs[i]; i++)
  847. count++;
  848. pos = buf = os_zalloc(10 * count + 1);
  849. if (buf == NULL)
  850. return NULL;
  851. end = buf + 10 * count + 1;
  852. for (i = 0; freqs[i]; i++) {
  853. ret = os_snprintf(pos, end - pos, "%s%u",
  854. i == 0 ? "" : " ", freqs[i]);
  855. if (ret < 0 || ret >= end - pos) {
  856. end[-1] = '\0';
  857. return buf;
  858. }
  859. pos += ret;
  860. }
  861. return buf;
  862. }
  863. static char * wpa_config_write_scan_freq(const struct parse_data *data,
  864. struct wpa_ssid *ssid)
  865. {
  866. return wpa_config_write_freqs(data, ssid->scan_freq);
  867. }
  868. static char * wpa_config_write_freq_list(const struct parse_data *data,
  869. struct wpa_ssid *ssid)
  870. {
  871. return wpa_config_write_freqs(data, ssid->freq_list);
  872. }
  873. #endif /* NO_CONFIG_WRITE */
  874. #ifdef IEEE8021X_EAPOL
  875. static int wpa_config_parse_eap(const struct parse_data *data,
  876. struct wpa_ssid *ssid, int line,
  877. const char *value)
  878. {
  879. int last, errors = 0;
  880. char *start, *end, *buf;
  881. struct eap_method_type *methods = NULL, *tmp;
  882. size_t num_methods = 0;
  883. buf = os_strdup(value);
  884. if (buf == NULL)
  885. return -1;
  886. start = buf;
  887. while (*start != '\0') {
  888. while (*start == ' ' || *start == '\t')
  889. start++;
  890. if (*start == '\0')
  891. break;
  892. end = start;
  893. while (*end != ' ' && *end != '\t' && *end != '\0')
  894. end++;
  895. last = *end == '\0';
  896. *end = '\0';
  897. tmp = methods;
  898. methods = os_realloc_array(methods, num_methods + 1,
  899. sizeof(*methods));
  900. if (methods == NULL) {
  901. os_free(tmp);
  902. os_free(buf);
  903. return -1;
  904. }
  905. methods[num_methods].method = eap_peer_get_type(
  906. start, &methods[num_methods].vendor);
  907. if (methods[num_methods].vendor == EAP_VENDOR_IETF &&
  908. methods[num_methods].method == EAP_TYPE_NONE) {
  909. wpa_printf(MSG_ERROR, "Line %d: unknown EAP method "
  910. "'%s'", line, start);
  911. wpa_printf(MSG_ERROR, "You may need to add support for"
  912. " this EAP method during wpa_supplicant\n"
  913. "build time configuration.\n"
  914. "See README for more information.");
  915. errors++;
  916. } else if (methods[num_methods].vendor == EAP_VENDOR_IETF &&
  917. methods[num_methods].method == EAP_TYPE_LEAP)
  918. ssid->leap++;
  919. else
  920. ssid->non_leap++;
  921. num_methods++;
  922. if (last)
  923. break;
  924. start = end + 1;
  925. }
  926. os_free(buf);
  927. tmp = methods;
  928. methods = os_realloc_array(methods, num_methods + 1, sizeof(*methods));
  929. if (methods == NULL) {
  930. os_free(tmp);
  931. return -1;
  932. }
  933. methods[num_methods].vendor = EAP_VENDOR_IETF;
  934. methods[num_methods].method = EAP_TYPE_NONE;
  935. num_methods++;
  936. wpa_hexdump(MSG_MSGDUMP, "eap methods",
  937. (u8 *) methods, num_methods * sizeof(*methods));
  938. os_free(ssid->eap.eap_methods);
  939. ssid->eap.eap_methods = methods;
  940. return errors ? -1 : 0;
  941. }
  942. static char * wpa_config_write_eap(const struct parse_data *data,
  943. struct wpa_ssid *ssid)
  944. {
  945. int i, ret;
  946. char *buf, *pos, *end;
  947. const struct eap_method_type *eap_methods = ssid->eap.eap_methods;
  948. const char *name;
  949. if (eap_methods == NULL)
  950. return NULL;
  951. pos = buf = os_zalloc(100);
  952. if (buf == NULL)
  953. return NULL;
  954. end = buf + 100;
  955. for (i = 0; eap_methods[i].vendor != EAP_VENDOR_IETF ||
  956. eap_methods[i].method != EAP_TYPE_NONE; i++) {
  957. name = eap_get_name(eap_methods[i].vendor,
  958. eap_methods[i].method);
  959. if (name) {
  960. ret = os_snprintf(pos, end - pos, "%s%s",
  961. pos == buf ? "" : " ", name);
  962. if (ret < 0 || ret >= end - pos)
  963. break;
  964. pos += ret;
  965. }
  966. }
  967. end[-1] = '\0';
  968. return buf;
  969. }
  970. static int wpa_config_parse_password(const struct parse_data *data,
  971. struct wpa_ssid *ssid, int line,
  972. const char *value)
  973. {
  974. u8 *hash;
  975. if (os_strcmp(value, "NULL") == 0) {
  976. wpa_printf(MSG_DEBUG, "Unset configuration string 'password'");
  977. os_free(ssid->eap.password);
  978. ssid->eap.password = NULL;
  979. ssid->eap.password_len = 0;
  980. return 0;
  981. }
  982. #ifdef CONFIG_EXT_PASSWORD
  983. if (os_strncmp(value, "ext:", 4) == 0) {
  984. char *name = os_strdup(value + 4);
  985. if (name == NULL)
  986. return -1;
  987. os_free(ssid->eap.password);
  988. ssid->eap.password = (u8 *) name;
  989. ssid->eap.password_len = os_strlen(name);
  990. ssid->eap.flags &= ~EAP_CONFIG_FLAGS_PASSWORD_NTHASH;
  991. ssid->eap.flags |= EAP_CONFIG_FLAGS_EXT_PASSWORD;
  992. return 0;
  993. }
  994. #endif /* CONFIG_EXT_PASSWORD */
  995. if (os_strncmp(value, "hash:", 5) != 0) {
  996. char *tmp;
  997. size_t res_len;
  998. tmp = wpa_config_parse_string(value, &res_len);
  999. if (tmp == NULL) {
  1000. wpa_printf(MSG_ERROR, "Line %d: failed to parse "
  1001. "password.", line);
  1002. return -1;
  1003. }
  1004. wpa_hexdump_ascii_key(MSG_MSGDUMP, data->name,
  1005. (u8 *) tmp, res_len);
  1006. os_free(ssid->eap.password);
  1007. ssid->eap.password = (u8 *) tmp;
  1008. ssid->eap.password_len = res_len;
  1009. ssid->eap.flags &= ~EAP_CONFIG_FLAGS_PASSWORD_NTHASH;
  1010. ssid->eap.flags &= ~EAP_CONFIG_FLAGS_EXT_PASSWORD;
  1011. return 0;
  1012. }
  1013. /* NtPasswordHash: hash:<32 hex digits> */
  1014. if (os_strlen(value + 5) != 2 * 16) {
  1015. wpa_printf(MSG_ERROR, "Line %d: Invalid password hash length "
  1016. "(expected 32 hex digits)", line);
  1017. return -1;
  1018. }
  1019. hash = os_malloc(16);
  1020. if (hash == NULL)
  1021. return -1;
  1022. if (hexstr2bin(value + 5, hash, 16)) {
  1023. os_free(hash);
  1024. wpa_printf(MSG_ERROR, "Line %d: Invalid password hash", line);
  1025. return -1;
  1026. }
  1027. wpa_hexdump_key(MSG_MSGDUMP, data->name, hash, 16);
  1028. os_free(ssid->eap.password);
  1029. ssid->eap.password = hash;
  1030. ssid->eap.password_len = 16;
  1031. ssid->eap.flags |= EAP_CONFIG_FLAGS_PASSWORD_NTHASH;
  1032. ssid->eap.flags &= ~EAP_CONFIG_FLAGS_EXT_PASSWORD;
  1033. return 0;
  1034. }
  1035. static char * wpa_config_write_password(const struct parse_data *data,
  1036. struct wpa_ssid *ssid)
  1037. {
  1038. char *buf;
  1039. if (ssid->eap.password == NULL)
  1040. return NULL;
  1041. #ifdef CONFIG_EXT_PASSWORD
  1042. if (ssid->eap.flags & EAP_CONFIG_FLAGS_EXT_PASSWORD) {
  1043. buf = os_zalloc(4 + ssid->eap.password_len + 1);
  1044. if (buf == NULL)
  1045. return NULL;
  1046. os_memcpy(buf, "ext:", 4);
  1047. os_memcpy(buf + 4, ssid->eap.password, ssid->eap.password_len);
  1048. return buf;
  1049. }
  1050. #endif /* CONFIG_EXT_PASSWORD */
  1051. if (!(ssid->eap.flags & EAP_CONFIG_FLAGS_PASSWORD_NTHASH)) {
  1052. return wpa_config_write_string(
  1053. ssid->eap.password, ssid->eap.password_len);
  1054. }
  1055. buf = os_malloc(5 + 32 + 1);
  1056. if (buf == NULL)
  1057. return NULL;
  1058. os_memcpy(buf, "hash:", 5);
  1059. wpa_snprintf_hex(buf + 5, 32 + 1, ssid->eap.password, 16);
  1060. return buf;
  1061. }
  1062. #endif /* IEEE8021X_EAPOL */
  1063. static int wpa_config_parse_wep_key(u8 *key, size_t *len, int line,
  1064. const char *value, int idx)
  1065. {
  1066. char *buf, title[20];
  1067. int res;
  1068. buf = wpa_config_parse_string(value, len);
  1069. if (buf == NULL) {
  1070. wpa_printf(MSG_ERROR, "Line %d: Invalid WEP key %d '%s'.",
  1071. line, idx, value);
  1072. return -1;
  1073. }
  1074. if (*len > MAX_WEP_KEY_LEN) {
  1075. wpa_printf(MSG_ERROR, "Line %d: Too long WEP key %d '%s'.",
  1076. line, idx, value);
  1077. os_free(buf);
  1078. return -1;
  1079. }
  1080. if (*len && *len != 5 && *len != 13 && *len != 16) {
  1081. wpa_printf(MSG_ERROR, "Line %d: Invalid WEP key length %u - "
  1082. "this network block will be ignored",
  1083. line, (unsigned int) *len);
  1084. }
  1085. os_memcpy(key, buf, *len);
  1086. os_free(buf);
  1087. res = os_snprintf(title, sizeof(title), "wep_key%d", idx);
  1088. if (res >= 0 && (size_t) res < sizeof(title))
  1089. wpa_hexdump_key(MSG_MSGDUMP, title, key, *len);
  1090. return 0;
  1091. }
  1092. static int wpa_config_parse_wep_key0(const struct parse_data *data,
  1093. struct wpa_ssid *ssid, int line,
  1094. const char *value)
  1095. {
  1096. return wpa_config_parse_wep_key(ssid->wep_key[0],
  1097. &ssid->wep_key_len[0], line,
  1098. value, 0);
  1099. }
  1100. static int wpa_config_parse_wep_key1(const struct parse_data *data,
  1101. struct wpa_ssid *ssid, int line,
  1102. const char *value)
  1103. {
  1104. return wpa_config_parse_wep_key(ssid->wep_key[1],
  1105. &ssid->wep_key_len[1], line,
  1106. value, 1);
  1107. }
  1108. static int wpa_config_parse_wep_key2(const struct parse_data *data,
  1109. struct wpa_ssid *ssid, int line,
  1110. const char *value)
  1111. {
  1112. return wpa_config_parse_wep_key(ssid->wep_key[2],
  1113. &ssid->wep_key_len[2], line,
  1114. value, 2);
  1115. }
  1116. static int wpa_config_parse_wep_key3(const struct parse_data *data,
  1117. struct wpa_ssid *ssid, int line,
  1118. const char *value)
  1119. {
  1120. return wpa_config_parse_wep_key(ssid->wep_key[3],
  1121. &ssid->wep_key_len[3], line,
  1122. value, 3);
  1123. }
  1124. #ifndef NO_CONFIG_WRITE
  1125. static char * wpa_config_write_wep_key(struct wpa_ssid *ssid, int idx)
  1126. {
  1127. if (ssid->wep_key_len[idx] == 0)
  1128. return NULL;
  1129. return wpa_config_write_string(ssid->wep_key[idx],
  1130. ssid->wep_key_len[idx]);
  1131. }
  1132. static char * wpa_config_write_wep_key0(const struct parse_data *data,
  1133. struct wpa_ssid *ssid)
  1134. {
  1135. return wpa_config_write_wep_key(ssid, 0);
  1136. }
  1137. static char * wpa_config_write_wep_key1(const struct parse_data *data,
  1138. struct wpa_ssid *ssid)
  1139. {
  1140. return wpa_config_write_wep_key(ssid, 1);
  1141. }
  1142. static char * wpa_config_write_wep_key2(const struct parse_data *data,
  1143. struct wpa_ssid *ssid)
  1144. {
  1145. return wpa_config_write_wep_key(ssid, 2);
  1146. }
  1147. static char * wpa_config_write_wep_key3(const struct parse_data *data,
  1148. struct wpa_ssid *ssid)
  1149. {
  1150. return wpa_config_write_wep_key(ssid, 3);
  1151. }
  1152. #endif /* NO_CONFIG_WRITE */
  1153. #ifdef CONFIG_P2P
  1154. static int wpa_config_parse_p2p_client_list(const struct parse_data *data,
  1155. struct wpa_ssid *ssid, int line,
  1156. const char *value)
  1157. {
  1158. const char *pos;
  1159. u8 *buf, *n, addr[ETH_ALEN];
  1160. size_t count;
  1161. buf = NULL;
  1162. count = 0;
  1163. pos = value;
  1164. while (pos && *pos) {
  1165. while (*pos == ' ')
  1166. pos++;
  1167. if (hwaddr_aton(pos, addr)) {
  1168. if (count == 0) {
  1169. wpa_printf(MSG_ERROR, "Line %d: Invalid "
  1170. "p2p_client_list address '%s'.",
  1171. line, value);
  1172. os_free(buf);
  1173. return -1;
  1174. }
  1175. /* continue anyway since this could have been from a
  1176. * truncated configuration file line */
  1177. wpa_printf(MSG_INFO, "Line %d: Ignore likely "
  1178. "truncated p2p_client_list address '%s'",
  1179. line, pos);
  1180. } else {
  1181. n = os_realloc_array(buf, count + 1, ETH_ALEN);
  1182. if (n == NULL) {
  1183. os_free(buf);
  1184. return -1;
  1185. }
  1186. buf = n;
  1187. os_memmove(buf + ETH_ALEN, buf, count * ETH_ALEN);
  1188. os_memcpy(buf, addr, ETH_ALEN);
  1189. count++;
  1190. wpa_hexdump(MSG_MSGDUMP, "p2p_client_list",
  1191. addr, ETH_ALEN);
  1192. }
  1193. pos = os_strchr(pos, ' ');
  1194. }
  1195. os_free(ssid->p2p_client_list);
  1196. ssid->p2p_client_list = buf;
  1197. ssid->num_p2p_clients = count;
  1198. return 0;
  1199. }
  1200. #ifndef NO_CONFIG_WRITE
  1201. static char * wpa_config_write_p2p_client_list(const struct parse_data *data,
  1202. struct wpa_ssid *ssid)
  1203. {
  1204. char *value, *end, *pos;
  1205. int res;
  1206. size_t i;
  1207. if (ssid->p2p_client_list == NULL || ssid->num_p2p_clients == 0)
  1208. return NULL;
  1209. value = os_malloc(20 * ssid->num_p2p_clients);
  1210. if (value == NULL)
  1211. return NULL;
  1212. pos = value;
  1213. end = value + 20 * ssid->num_p2p_clients;
  1214. for (i = ssid->num_p2p_clients; i > 0; i--) {
  1215. res = os_snprintf(pos, end - pos, MACSTR " ",
  1216. MAC2STR(ssid->p2p_client_list +
  1217. (i - 1) * ETH_ALEN));
  1218. if (res < 0 || res >= end - pos) {
  1219. os_free(value);
  1220. return NULL;
  1221. }
  1222. pos += res;
  1223. }
  1224. if (pos > value)
  1225. pos[-1] = '\0';
  1226. return value;
  1227. }
  1228. #endif /* NO_CONFIG_WRITE */
  1229. #endif /* CONFIG_P2P */
  1230. /* Helper macros for network block parser */
  1231. #ifdef OFFSET
  1232. #undef OFFSET
  1233. #endif /* OFFSET */
  1234. /* OFFSET: Get offset of a variable within the wpa_ssid structure */
  1235. #define OFFSET(v) ((void *) &((struct wpa_ssid *) 0)->v)
  1236. /* STR: Define a string variable for an ASCII string; f = field name */
  1237. #ifdef NO_CONFIG_WRITE
  1238. #define _STR(f) #f, wpa_config_parse_str, OFFSET(f)
  1239. #define _STRe(f) #f, wpa_config_parse_str, OFFSET(eap.f)
  1240. #else /* NO_CONFIG_WRITE */
  1241. #define _STR(f) #f, wpa_config_parse_str, wpa_config_write_str, OFFSET(f)
  1242. #define _STRe(f) #f, wpa_config_parse_str, wpa_config_write_str, OFFSET(eap.f)
  1243. #endif /* NO_CONFIG_WRITE */
  1244. #define STR(f) _STR(f), NULL, NULL, NULL, 0
  1245. #define STRe(f) _STRe(f), NULL, NULL, NULL, 0
  1246. #define STR_KEY(f) _STR(f), NULL, NULL, NULL, 1
  1247. #define STR_KEYe(f) _STRe(f), NULL, NULL, NULL, 1
  1248. /* STR_LEN: Define a string variable with a separate variable for storing the
  1249. * data length. Unlike STR(), this can be used to store arbitrary binary data
  1250. * (i.e., even nul termination character). */
  1251. #define _STR_LEN(f) _STR(f), OFFSET(f ## _len)
  1252. #define _STR_LENe(f) _STRe(f), OFFSET(eap.f ## _len)
  1253. #define STR_LEN(f) _STR_LEN(f), NULL, NULL, 0
  1254. #define STR_LENe(f) _STR_LENe(f), NULL, NULL, 0
  1255. #define STR_LEN_KEY(f) _STR_LEN(f), NULL, NULL, 1
  1256. /* STR_RANGE: Like STR_LEN(), but with minimum and maximum allowed length
  1257. * explicitly specified. */
  1258. #define _STR_RANGE(f, min, max) _STR_LEN(f), (void *) (min), (void *) (max)
  1259. #define STR_RANGE(f, min, max) _STR_RANGE(f, min, max), 0
  1260. #define STR_RANGE_KEY(f, min, max) _STR_RANGE(f, min, max), 1
  1261. #ifdef NO_CONFIG_WRITE
  1262. #define _INT(f) #f, wpa_config_parse_int, OFFSET(f), (void *) 0
  1263. #define _INTe(f) #f, wpa_config_parse_int, OFFSET(eap.f), (void *) 0
  1264. #else /* NO_CONFIG_WRITE */
  1265. #define _INT(f) #f, wpa_config_parse_int, wpa_config_write_int, \
  1266. OFFSET(f), (void *) 0
  1267. #define _INTe(f) #f, wpa_config_parse_int, wpa_config_write_int, \
  1268. OFFSET(eap.f), (void *) 0
  1269. #endif /* NO_CONFIG_WRITE */
  1270. /* INT: Define an integer variable */
  1271. #define INT(f) _INT(f), NULL, NULL, 0
  1272. #define INTe(f) _INTe(f), NULL, NULL, 0
  1273. /* INT_RANGE: Define an integer variable with allowed value range */
  1274. #define INT_RANGE(f, min, max) _INT(f), (void *) (min), (void *) (max), 0
  1275. /* FUNC: Define a configuration variable that uses a custom function for
  1276. * parsing and writing the value. */
  1277. #ifdef NO_CONFIG_WRITE
  1278. #define _FUNC(f) #f, wpa_config_parse_ ## f, NULL, NULL, NULL, NULL
  1279. #else /* NO_CONFIG_WRITE */
  1280. #define _FUNC(f) #f, wpa_config_parse_ ## f, wpa_config_write_ ## f, \
  1281. NULL, NULL, NULL, NULL
  1282. #endif /* NO_CONFIG_WRITE */
  1283. #define FUNC(f) _FUNC(f), 0
  1284. #define FUNC_KEY(f) _FUNC(f), 1
  1285. /*
  1286. * Table of network configuration variables. This table is used to parse each
  1287. * network configuration variable, e.g., each line in wpa_supplicant.conf file
  1288. * that is inside a network block.
  1289. *
  1290. * This table is generated using the helper macros defined above and with
  1291. * generous help from the C pre-processor. The field name is stored as a string
  1292. * into .name and for STR and INT types, the offset of the target buffer within
  1293. * struct wpa_ssid is stored in .param1. .param2 (if not NULL) is similar
  1294. * offset to the field containing the length of the configuration variable.
  1295. * .param3 and .param4 can be used to mark the allowed range (length for STR
  1296. * and value for INT).
  1297. *
  1298. * For each configuration line in wpa_supplicant.conf, the parser goes through
  1299. * this table and select the entry that matches with the field name. The parser
  1300. * function (.parser) is then called to parse the actual value of the field.
  1301. *
  1302. * This kind of mechanism makes it easy to add new configuration parameters,
  1303. * since only one line needs to be added into this table and into the
  1304. * struct wpa_ssid definition if the new variable is either a string or
  1305. * integer. More complex types will need to use their own parser and writer
  1306. * functions.
  1307. */
  1308. static const struct parse_data ssid_fields[] = {
  1309. { STR_RANGE(ssid, 0, MAX_SSID_LEN) },
  1310. { INT_RANGE(scan_ssid, 0, 1) },
  1311. { FUNC(bssid) },
  1312. { FUNC_KEY(psk) },
  1313. { FUNC(proto) },
  1314. { FUNC(key_mgmt) },
  1315. { INT(bg_scan_period) },
  1316. { FUNC(pairwise) },
  1317. { FUNC(group) },
  1318. { FUNC(auth_alg) },
  1319. { FUNC(scan_freq) },
  1320. { FUNC(freq_list) },
  1321. #ifdef IEEE8021X_EAPOL
  1322. { FUNC(eap) },
  1323. { STR_LENe(identity) },
  1324. { STR_LENe(anonymous_identity) },
  1325. { FUNC_KEY(password) },
  1326. { STRe(ca_cert) },
  1327. { STRe(ca_path) },
  1328. { STRe(client_cert) },
  1329. { STRe(private_key) },
  1330. { STR_KEYe(private_key_passwd) },
  1331. { STRe(dh_file) },
  1332. { STRe(subject_match) },
  1333. { STRe(altsubject_match) },
  1334. { STRe(ca_cert2) },
  1335. { STRe(ca_path2) },
  1336. { STRe(client_cert2) },
  1337. { STRe(private_key2) },
  1338. { STR_KEYe(private_key2_passwd) },
  1339. { STRe(dh_file2) },
  1340. { STRe(subject_match2) },
  1341. { STRe(altsubject_match2) },
  1342. { STRe(phase1) },
  1343. { STRe(phase2) },
  1344. { STRe(pcsc) },
  1345. { STR_KEYe(pin) },
  1346. { STRe(engine_id) },
  1347. { STRe(key_id) },
  1348. { STRe(cert_id) },
  1349. { STRe(ca_cert_id) },
  1350. { STR_KEYe(pin2) },
  1351. { STRe(engine2_id) },
  1352. { STRe(key2_id) },
  1353. { STRe(cert2_id) },
  1354. { STRe(ca_cert2_id) },
  1355. { INTe(engine) },
  1356. { INTe(engine2) },
  1357. { INT(eapol_flags) },
  1358. #endif /* IEEE8021X_EAPOL */
  1359. { FUNC_KEY(wep_key0) },
  1360. { FUNC_KEY(wep_key1) },
  1361. { FUNC_KEY(wep_key2) },
  1362. { FUNC_KEY(wep_key3) },
  1363. { INT(wep_tx_keyidx) },
  1364. { INT(priority) },
  1365. #ifdef IEEE8021X_EAPOL
  1366. { INT(eap_workaround) },
  1367. { STRe(pac_file) },
  1368. { INTe(fragment_size) },
  1369. #endif /* IEEE8021X_EAPOL */
  1370. { INT_RANGE(mode, 0, 4) },
  1371. { INT_RANGE(proactive_key_caching, 0, 1) },
  1372. { INT_RANGE(disabled, 0, 2) },
  1373. { STR(id_str) },
  1374. #ifdef CONFIG_IEEE80211W
  1375. { INT_RANGE(ieee80211w, 0, 2) },
  1376. #endif /* CONFIG_IEEE80211W */
  1377. { INT_RANGE(peerkey, 0, 1) },
  1378. { INT_RANGE(mixed_cell, 0, 1) },
  1379. { INT_RANGE(frequency, 0, 10000) },
  1380. { INT(wpa_ptk_rekey) },
  1381. { STR(bgscan) },
  1382. { INT_RANGE(ignore_broadcast_ssid, 0, 2) },
  1383. #ifdef CONFIG_P2P
  1384. { FUNC(p2p_client_list) },
  1385. #endif /* CONFIG_P2P */
  1386. #ifdef CONFIG_HT_OVERRIDES
  1387. { INT_RANGE(disable_ht, 0, 1) },
  1388. { INT_RANGE(disable_ht40, -1, 1) },
  1389. { INT_RANGE(disable_max_amsdu, -1, 1) },
  1390. { INT_RANGE(ampdu_factor, -1, 3) },
  1391. { INT_RANGE(ampdu_density, -1, 7) },
  1392. { STR(ht_mcs) },
  1393. #endif /* CONFIG_HT_OVERRIDES */
  1394. { INT(ap_max_inactivity) },
  1395. { INT(dtim_period) },
  1396. };
  1397. #undef OFFSET
  1398. #undef _STR
  1399. #undef STR
  1400. #undef STR_KEY
  1401. #undef _STR_LEN
  1402. #undef STR_LEN
  1403. #undef STR_LEN_KEY
  1404. #undef _STR_RANGE
  1405. #undef STR_RANGE
  1406. #undef STR_RANGE_KEY
  1407. #undef _INT
  1408. #undef INT
  1409. #undef INT_RANGE
  1410. #undef _FUNC
  1411. #undef FUNC
  1412. #undef FUNC_KEY
  1413. #define NUM_SSID_FIELDS (sizeof(ssid_fields) / sizeof(ssid_fields[0]))
  1414. /**
  1415. * wpa_config_add_prio_network - Add a network to priority lists
  1416. * @config: Configuration data from wpa_config_read()
  1417. * @ssid: Pointer to the network configuration to be added to the list
  1418. * Returns: 0 on success, -1 on failure
  1419. *
  1420. * This function is used to add a network block to the priority list of
  1421. * networks. This must be called for each network when reading in the full
  1422. * configuration. In addition, this can be used indirectly when updating
  1423. * priorities by calling wpa_config_update_prio_list().
  1424. */
  1425. int wpa_config_add_prio_network(struct wpa_config *config,
  1426. struct wpa_ssid *ssid)
  1427. {
  1428. int prio;
  1429. struct wpa_ssid *prev, **nlist;
  1430. /*
  1431. * Add to an existing priority list if one is available for the
  1432. * configured priority level for this network.
  1433. */
  1434. for (prio = 0; prio < config->num_prio; prio++) {
  1435. prev = config->pssid[prio];
  1436. if (prev->priority == ssid->priority) {
  1437. while (prev->pnext)
  1438. prev = prev->pnext;
  1439. prev->pnext = ssid;
  1440. return 0;
  1441. }
  1442. }
  1443. /* First network for this priority - add a new priority list */
  1444. nlist = os_realloc_array(config->pssid, config->num_prio + 1,
  1445. sizeof(struct wpa_ssid *));
  1446. if (nlist == NULL)
  1447. return -1;
  1448. for (prio = 0; prio < config->num_prio; prio++) {
  1449. if (nlist[prio]->priority < ssid->priority) {
  1450. os_memmove(&nlist[prio + 1], &nlist[prio],
  1451. (config->num_prio - prio) *
  1452. sizeof(struct wpa_ssid *));
  1453. break;
  1454. }
  1455. }
  1456. nlist[prio] = ssid;
  1457. config->num_prio++;
  1458. config->pssid = nlist;
  1459. return 0;
  1460. }
  1461. /**
  1462. * wpa_config_update_prio_list - Update network priority list
  1463. * @config: Configuration data from wpa_config_read()
  1464. * Returns: 0 on success, -1 on failure
  1465. *
  1466. * This function is called to update the priority list of networks in the
  1467. * configuration when a network is being added or removed. This is also called
  1468. * if a priority for a network is changed.
  1469. */
  1470. int wpa_config_update_prio_list(struct wpa_config *config)
  1471. {
  1472. struct wpa_ssid *ssid;
  1473. int ret = 0;
  1474. os_free(config->pssid);
  1475. config->pssid = NULL;
  1476. config->num_prio = 0;
  1477. ssid = config->ssid;
  1478. while (ssid) {
  1479. ssid->pnext = NULL;
  1480. if (wpa_config_add_prio_network(config, ssid) < 0)
  1481. ret = -1;
  1482. ssid = ssid->next;
  1483. }
  1484. return ret;
  1485. }
  1486. #ifdef IEEE8021X_EAPOL
  1487. static void eap_peer_config_free(struct eap_peer_config *eap)
  1488. {
  1489. os_free(eap->eap_methods);
  1490. os_free(eap->identity);
  1491. os_free(eap->anonymous_identity);
  1492. os_free(eap->password);
  1493. os_free(eap->ca_cert);
  1494. os_free(eap->ca_path);
  1495. os_free(eap->client_cert);
  1496. os_free(eap->private_key);
  1497. os_free(eap->private_key_passwd);
  1498. os_free(eap->dh_file);
  1499. os_free(eap->subject_match);
  1500. os_free(eap->altsubject_match);
  1501. os_free(eap->ca_cert2);
  1502. os_free(eap->ca_path2);
  1503. os_free(eap->client_cert2);
  1504. os_free(eap->private_key2);
  1505. os_free(eap->private_key2_passwd);
  1506. os_free(eap->dh_file2);
  1507. os_free(eap->subject_match2);
  1508. os_free(eap->altsubject_match2);
  1509. os_free(eap->phase1);
  1510. os_free(eap->phase2);
  1511. os_free(eap->pcsc);
  1512. os_free(eap->pin);
  1513. os_free(eap->engine_id);
  1514. os_free(eap->key_id);
  1515. os_free(eap->cert_id);
  1516. os_free(eap->ca_cert_id);
  1517. os_free(eap->key2_id);
  1518. os_free(eap->cert2_id);
  1519. os_free(eap->ca_cert2_id);
  1520. os_free(eap->pin2);
  1521. os_free(eap->engine2_id);
  1522. os_free(eap->otp);
  1523. os_free(eap->pending_req_otp);
  1524. os_free(eap->pac_file);
  1525. os_free(eap->new_password);
  1526. }
  1527. #endif /* IEEE8021X_EAPOL */
  1528. /**
  1529. * wpa_config_free_ssid - Free network/ssid configuration data
  1530. * @ssid: Configuration data for the network
  1531. *
  1532. * This function frees all resources allocated for the network configuration
  1533. * data.
  1534. */
  1535. void wpa_config_free_ssid(struct wpa_ssid *ssid)
  1536. {
  1537. os_free(ssid->ssid);
  1538. os_free(ssid->passphrase);
  1539. os_free(ssid->ext_psk);
  1540. #ifdef IEEE8021X_EAPOL
  1541. eap_peer_config_free(&ssid->eap);
  1542. #endif /* IEEE8021X_EAPOL */
  1543. os_free(ssid->id_str);
  1544. os_free(ssid->scan_freq);
  1545. os_free(ssid->freq_list);
  1546. os_free(ssid->bgscan);
  1547. os_free(ssid->p2p_client_list);
  1548. #ifdef CONFIG_HT_OVERRIDES
  1549. os_free(ssid->ht_mcs);
  1550. #endif /* CONFIG_HT_OVERRIDES */
  1551. os_free(ssid);
  1552. }
  1553. void wpa_config_free_cred(struct wpa_cred *cred)
  1554. {
  1555. os_free(cred->realm);
  1556. os_free(cred->username);
  1557. os_free(cred->password);
  1558. os_free(cred->ca_cert);
  1559. os_free(cred->client_cert);
  1560. os_free(cred->private_key);
  1561. os_free(cred->private_key_passwd);
  1562. os_free(cred->imsi);
  1563. os_free(cred->milenage);
  1564. os_free(cred->domain);
  1565. os_free(cred->eap_method);
  1566. os_free(cred->phase1);
  1567. os_free(cred->phase2);
  1568. os_free(cred);
  1569. }
  1570. /**
  1571. * wpa_config_free - Free configuration data
  1572. * @config: Configuration data from wpa_config_read()
  1573. *
  1574. * This function frees all resources allocated for the configuration data by
  1575. * wpa_config_read().
  1576. */
  1577. void wpa_config_free(struct wpa_config *config)
  1578. {
  1579. #ifndef CONFIG_NO_CONFIG_BLOBS
  1580. struct wpa_config_blob *blob, *prevblob;
  1581. #endif /* CONFIG_NO_CONFIG_BLOBS */
  1582. struct wpa_ssid *ssid, *prev = NULL;
  1583. struct wpa_cred *cred, *cprev;
  1584. ssid = config->ssid;
  1585. while (ssid) {
  1586. prev = ssid;
  1587. ssid = ssid->next;
  1588. wpa_config_free_ssid(prev);
  1589. }
  1590. cred = config->cred;
  1591. while (cred) {
  1592. cprev = cred;
  1593. cred = cred->next;
  1594. wpa_config_free_cred(cprev);
  1595. }
  1596. #ifndef CONFIG_NO_CONFIG_BLOBS
  1597. blob = config->blobs;
  1598. prevblob = NULL;
  1599. while (blob) {
  1600. prevblob = blob;
  1601. blob = blob->next;
  1602. wpa_config_free_blob(prevblob);
  1603. }
  1604. #endif /* CONFIG_NO_CONFIG_BLOBS */
  1605. wpabuf_free(config->wps_vendor_ext_m1);
  1606. os_free(config->ctrl_interface);
  1607. os_free(config->ctrl_interface_group);
  1608. os_free(config->opensc_engine_path);
  1609. os_free(config->pkcs11_engine_path);
  1610. os_free(config->pkcs11_module_path);
  1611. os_free(config->pcsc_reader);
  1612. os_free(config->pcsc_pin);
  1613. os_free(config->driver_param);
  1614. os_free(config->device_name);
  1615. os_free(config->manufacturer);
  1616. os_free(config->model_name);
  1617. os_free(config->model_number);
  1618. os_free(config->serial_number);
  1619. os_free(config->config_methods);
  1620. os_free(config->p2p_ssid_postfix);
  1621. os_free(config->pssid);
  1622. os_free(config->p2p_pref_chan);
  1623. os_free(config->autoscan);
  1624. wpabuf_free(config->wps_nfc_dh_pubkey);
  1625. wpabuf_free(config->wps_nfc_dh_privkey);
  1626. wpabuf_free(config->wps_nfc_dev_pw);
  1627. os_free(config->ext_password_backend);
  1628. os_free(config);
  1629. }
  1630. /**
  1631. * wpa_config_foreach_network - Iterate over each configured network
  1632. * @config: Configuration data from wpa_config_read()
  1633. * @func: Callback function to process each network
  1634. * @arg: Opaque argument to pass to callback function
  1635. *
  1636. * Iterate over the set of configured networks calling the specified
  1637. * function for each item. We guard against callbacks removing the
  1638. * supplied network.
  1639. */
  1640. void wpa_config_foreach_network(struct wpa_config *config,
  1641. void (*func)(void *, struct wpa_ssid *),
  1642. void *arg)
  1643. {
  1644. struct wpa_ssid *ssid, *next;
  1645. ssid = config->ssid;
  1646. while (ssid) {
  1647. next = ssid->next;
  1648. func(arg, ssid);
  1649. ssid = next;
  1650. }
  1651. }
  1652. /**
  1653. * wpa_config_get_network - Get configured network based on id
  1654. * @config: Configuration data from wpa_config_read()
  1655. * @id: Unique network id to search for
  1656. * Returns: Network configuration or %NULL if not found
  1657. */
  1658. struct wpa_ssid * wpa_config_get_network(struct wpa_config *config, int id)
  1659. {
  1660. struct wpa_ssid *ssid;
  1661. ssid = config->ssid;
  1662. while (ssid) {
  1663. if (id == ssid->id)
  1664. break;
  1665. ssid = ssid->next;
  1666. }
  1667. return ssid;
  1668. }
  1669. /**
  1670. * wpa_config_add_network - Add a new network with empty configuration
  1671. * @config: Configuration data from wpa_config_read()
  1672. * Returns: The new network configuration or %NULL if operation failed
  1673. */
  1674. struct wpa_ssid * wpa_config_add_network(struct wpa_config *config)
  1675. {
  1676. int id;
  1677. struct wpa_ssid *ssid, *last = NULL;
  1678. id = -1;
  1679. ssid = config->ssid;
  1680. while (ssid) {
  1681. if (ssid->id > id)
  1682. id = ssid->id;
  1683. last = ssid;
  1684. ssid = ssid->next;
  1685. }
  1686. id++;
  1687. ssid = os_zalloc(sizeof(*ssid));
  1688. if (ssid == NULL)
  1689. return NULL;
  1690. ssid->id = id;
  1691. if (last)
  1692. last->next = ssid;
  1693. else
  1694. config->ssid = ssid;
  1695. wpa_config_update_prio_list(config);
  1696. return ssid;
  1697. }
  1698. /**
  1699. * wpa_config_remove_network - Remove a configured network based on id
  1700. * @config: Configuration data from wpa_config_read()
  1701. * @id: Unique network id to search for
  1702. * Returns: 0 on success, or -1 if the network was not found
  1703. */
  1704. int wpa_config_remove_network(struct wpa_config *config, int id)
  1705. {
  1706. struct wpa_ssid *ssid, *prev = NULL;
  1707. ssid = config->ssid;
  1708. while (ssid) {
  1709. if (id == ssid->id)
  1710. break;
  1711. prev = ssid;
  1712. ssid = ssid->next;
  1713. }
  1714. if (ssid == NULL)
  1715. return -1;
  1716. if (prev)
  1717. prev->next = ssid->next;
  1718. else
  1719. config->ssid = ssid->next;
  1720. wpa_config_update_prio_list(config);
  1721. wpa_config_free_ssid(ssid);
  1722. return 0;
  1723. }
  1724. /**
  1725. * wpa_config_set_network_defaults - Set network default values
  1726. * @ssid: Pointer to network configuration data
  1727. */
  1728. void wpa_config_set_network_defaults(struct wpa_ssid *ssid)
  1729. {
  1730. ssid->proto = DEFAULT_PROTO;
  1731. ssid->pairwise_cipher = DEFAULT_PAIRWISE;
  1732. ssid->group_cipher = DEFAULT_GROUP;
  1733. ssid->key_mgmt = DEFAULT_KEY_MGMT;
  1734. ssid->bg_scan_period = DEFAULT_BG_SCAN_PERIOD;
  1735. #ifdef IEEE8021X_EAPOL
  1736. ssid->eapol_flags = DEFAULT_EAPOL_FLAGS;
  1737. ssid->eap_workaround = DEFAULT_EAP_WORKAROUND;
  1738. ssid->eap.fragment_size = DEFAULT_FRAGMENT_SIZE;
  1739. #endif /* IEEE8021X_EAPOL */
  1740. #ifdef CONFIG_HT_OVERRIDES
  1741. ssid->disable_ht = DEFAULT_DISABLE_HT;
  1742. ssid->disable_ht40 = DEFAULT_DISABLE_HT40;
  1743. ssid->disable_max_amsdu = DEFAULT_DISABLE_MAX_AMSDU;
  1744. ssid->ampdu_factor = DEFAULT_AMPDU_FACTOR;
  1745. ssid->ampdu_density = DEFAULT_AMPDU_DENSITY;
  1746. #endif /* CONFIG_HT_OVERRIDES */
  1747. }
  1748. /**
  1749. * wpa_config_set - Set a variable in network configuration
  1750. * @ssid: Pointer to network configuration data
  1751. * @var: Variable name, e.g., "ssid"
  1752. * @value: Variable value
  1753. * @line: Line number in configuration file or 0 if not used
  1754. * Returns: 0 on success, -1 on failure
  1755. *
  1756. * This function can be used to set network configuration variables based on
  1757. * both the configuration file and management interface input. The value
  1758. * parameter must be in the same format as the text-based configuration file is
  1759. * using. For example, strings are using double quotation marks.
  1760. */
  1761. int wpa_config_set(struct wpa_ssid *ssid, const char *var, const char *value,
  1762. int line)
  1763. {
  1764. size_t i;
  1765. int ret = 0;
  1766. if (ssid == NULL || var == NULL || value == NULL)
  1767. return -1;
  1768. for (i = 0; i < NUM_SSID_FIELDS; i++) {
  1769. const struct parse_data *field = &ssid_fields[i];
  1770. if (os_strcmp(var, field->name) != 0)
  1771. continue;
  1772. if (field->parser(field, ssid, line, value)) {
  1773. if (line) {
  1774. wpa_printf(MSG_ERROR, "Line %d: failed to "
  1775. "parse %s '%s'.", line, var, value);
  1776. }
  1777. ret = -1;
  1778. }
  1779. break;
  1780. }
  1781. if (i == NUM_SSID_FIELDS) {
  1782. if (line) {
  1783. wpa_printf(MSG_ERROR, "Line %d: unknown network field "
  1784. "'%s'.", line, var);
  1785. }
  1786. ret = -1;
  1787. }
  1788. return ret;
  1789. }
  1790. int wpa_config_set_quoted(struct wpa_ssid *ssid, const char *var,
  1791. const char *value)
  1792. {
  1793. size_t len;
  1794. char *buf;
  1795. int ret;
  1796. len = os_strlen(value);
  1797. buf = os_malloc(len + 3);
  1798. if (buf == NULL)
  1799. return -1;
  1800. buf[0] = '"';
  1801. os_memcpy(buf + 1, value, len);
  1802. buf[len + 1] = '"';
  1803. buf[len + 2] = '\0';
  1804. ret = wpa_config_set(ssid, var, buf, 0);
  1805. os_free(buf);
  1806. return ret;
  1807. }
  1808. /**
  1809. * wpa_config_get_all - Get all options from network configuration
  1810. * @ssid: Pointer to network configuration data
  1811. * @get_keys: Determines if keys/passwords will be included in returned list
  1812. * (if they may be exported)
  1813. * Returns: %NULL terminated list of all set keys and their values in the form
  1814. * of [key1, val1, key2, val2, ... , NULL]
  1815. *
  1816. * This function can be used to get list of all configured network properties.
  1817. * The caller is responsible for freeing the returned list and all its
  1818. * elements.
  1819. */
  1820. char ** wpa_config_get_all(struct wpa_ssid *ssid, int get_keys)
  1821. {
  1822. const struct parse_data *field;
  1823. char *key, *value;
  1824. size_t i;
  1825. char **props;
  1826. int fields_num;
  1827. get_keys = get_keys && ssid->export_keys;
  1828. props = os_calloc(2 * NUM_SSID_FIELDS + 1, sizeof(char *));
  1829. if (!props)
  1830. return NULL;
  1831. fields_num = 0;
  1832. for (i = 0; i < NUM_SSID_FIELDS; i++) {
  1833. field = &ssid_fields[i];
  1834. if (field->key_data && !get_keys)
  1835. continue;
  1836. value = field->writer(field, ssid);
  1837. if (value == NULL)
  1838. continue;
  1839. if (os_strlen(value) == 0) {
  1840. os_free(value);
  1841. continue;
  1842. }
  1843. key = os_strdup(field->name);
  1844. if (key == NULL) {
  1845. os_free(value);
  1846. goto err;
  1847. }
  1848. props[fields_num * 2] = key;
  1849. props[fields_num * 2 + 1] = value;
  1850. fields_num++;
  1851. }
  1852. return props;
  1853. err:
  1854. value = *props;
  1855. while (value)
  1856. os_free(value++);
  1857. os_free(props);
  1858. return NULL;
  1859. }
  1860. #ifndef NO_CONFIG_WRITE
  1861. /**
  1862. * wpa_config_get - Get a variable in network configuration
  1863. * @ssid: Pointer to network configuration data
  1864. * @var: Variable name, e.g., "ssid"
  1865. * Returns: Value of the variable or %NULL on failure
  1866. *
  1867. * This function can be used to get network configuration variables. The
  1868. * returned value is a copy of the configuration variable in text format, i.e,.
  1869. * the same format that the text-based configuration file and wpa_config_set()
  1870. * are using for the value. The caller is responsible for freeing the returned
  1871. * value.
  1872. */
  1873. char * wpa_config_get(struct wpa_ssid *ssid, const char *var)
  1874. {
  1875. size_t i;
  1876. if (ssid == NULL || var == NULL)
  1877. return NULL;
  1878. for (i = 0; i < NUM_SSID_FIELDS; i++) {
  1879. const struct parse_data *field = &ssid_fields[i];
  1880. if (os_strcmp(var, field->name) == 0)
  1881. return field->writer(field, ssid);
  1882. }
  1883. return NULL;
  1884. }
  1885. /**
  1886. * wpa_config_get_no_key - Get a variable in network configuration (no keys)
  1887. * @ssid: Pointer to network configuration data
  1888. * @var: Variable name, e.g., "ssid"
  1889. * Returns: Value of the variable or %NULL on failure
  1890. *
  1891. * This function can be used to get network configuration variable like
  1892. * wpa_config_get(). The only difference is that this functions does not expose
  1893. * key/password material from the configuration. In case a key/password field
  1894. * is requested, the returned value is an empty string or %NULL if the variable
  1895. * is not set or "*" if the variable is set (regardless of its value). The
  1896. * returned value is a copy of the configuration variable in text format, i.e,.
  1897. * the same format that the text-based configuration file and wpa_config_set()
  1898. * are using for the value. The caller is responsible for freeing the returned
  1899. * value.
  1900. */
  1901. char * wpa_config_get_no_key(struct wpa_ssid *ssid, const char *var)
  1902. {
  1903. size_t i;
  1904. if (ssid == NULL || var == NULL)
  1905. return NULL;
  1906. for (i = 0; i < NUM_SSID_FIELDS; i++) {
  1907. const struct parse_data *field = &ssid_fields[i];
  1908. if (os_strcmp(var, field->name) == 0) {
  1909. char *res = field->writer(field, ssid);
  1910. if (field->key_data) {
  1911. if (res && res[0]) {
  1912. wpa_printf(MSG_DEBUG, "Do not allow "
  1913. "key_data field to be "
  1914. "exposed");
  1915. os_free(res);
  1916. return os_strdup("*");
  1917. }
  1918. os_free(res);
  1919. return NULL;
  1920. }
  1921. return res;
  1922. }
  1923. }
  1924. return NULL;
  1925. }
  1926. #endif /* NO_CONFIG_WRITE */
  1927. /**
  1928. * wpa_config_update_psk - Update WPA PSK based on passphrase and SSID
  1929. * @ssid: Pointer to network configuration data
  1930. *
  1931. * This function must be called to update WPA PSK when either SSID or the
  1932. * passphrase has changed for the network configuration.
  1933. */
  1934. void wpa_config_update_psk(struct wpa_ssid *ssid)
  1935. {
  1936. #ifndef CONFIG_NO_PBKDF2
  1937. pbkdf2_sha1(ssid->passphrase, ssid->ssid, ssid->ssid_len, 4096,
  1938. ssid->psk, PMK_LEN);
  1939. wpa_hexdump_key(MSG_MSGDUMP, "PSK (from passphrase)",
  1940. ssid->psk, PMK_LEN);
  1941. ssid->psk_set = 1;
  1942. #endif /* CONFIG_NO_PBKDF2 */
  1943. }
  1944. int wpa_config_set_cred(struct wpa_cred *cred, const char *var,
  1945. const char *value, int line)
  1946. {
  1947. char *val;
  1948. size_t len;
  1949. if (os_strcmp(var, "priority") == 0) {
  1950. cred->priority = atoi(value);
  1951. return 0;
  1952. }
  1953. if (os_strcmp(var, "pcsc") == 0) {
  1954. cred->pcsc = atoi(value);
  1955. return 0;
  1956. }
  1957. if (os_strcmp(var, "eap") == 0) {
  1958. struct eap_method_type method;
  1959. method.method = eap_peer_get_type(value, &method.vendor);
  1960. if (method.vendor == EAP_VENDOR_IETF &&
  1961. method.method == EAP_TYPE_NONE) {
  1962. wpa_printf(MSG_ERROR, "Line %d: unknown EAP type '%s' "
  1963. "for a credential", line, value);
  1964. return -1;
  1965. }
  1966. os_free(cred->eap_method);
  1967. cred->eap_method = os_malloc(sizeof(*cred->eap_method));
  1968. if (cred->eap_method == NULL)
  1969. return -1;
  1970. os_memcpy(cred->eap_method, &method, sizeof(method));
  1971. return 0;
  1972. }
  1973. if (os_strcmp(var, "password") == 0 &&
  1974. os_strncmp(value, "ext:", 4) == 0) {
  1975. os_free(cred->password);
  1976. cred->password = os_strdup(value);
  1977. cred->ext_password = 1;
  1978. return 0;
  1979. }
  1980. val = wpa_config_parse_string(value, &len);
  1981. if (val == NULL) {
  1982. wpa_printf(MSG_ERROR, "Line %d: invalid field '%s' string "
  1983. "value '%s'.", line, var, value);
  1984. return -1;
  1985. }
  1986. if (os_strcmp(var, "realm") == 0) {
  1987. os_free(cred->realm);
  1988. cred->realm = val;
  1989. return 0;
  1990. }
  1991. if (os_strcmp(var, "username") == 0) {
  1992. os_free(cred->username);
  1993. cred->username = val;
  1994. return 0;
  1995. }
  1996. if (os_strcmp(var, "password") == 0) {
  1997. os_free(cred->password);
  1998. cred->password = val;
  1999. cred->ext_password = 0;
  2000. return 0;
  2001. }
  2002. if (os_strcmp(var, "ca_cert") == 0) {
  2003. os_free(cred->ca_cert);
  2004. cred->ca_cert = val;
  2005. return 0;
  2006. }
  2007. if (os_strcmp(var, "client_cert") == 0) {
  2008. os_free(cred->client_cert);
  2009. cred->client_cert = val;
  2010. return 0;
  2011. }
  2012. if (os_strcmp(var, "private_key") == 0) {
  2013. os_free(cred->private_key);
  2014. cred->private_key = val;
  2015. return 0;
  2016. }
  2017. if (os_strcmp(var, "private_key_passwd") == 0) {
  2018. os_free(cred->private_key_passwd);
  2019. cred->private_key_passwd = val;
  2020. return 0;
  2021. }
  2022. if (os_strcmp(var, "imsi") == 0) {
  2023. os_free(cred->imsi);
  2024. cred->imsi = val;
  2025. return 0;
  2026. }
  2027. if (os_strcmp(var, "milenage") == 0) {
  2028. os_free(cred->milenage);
  2029. cred->milenage = val;
  2030. return 0;
  2031. }
  2032. if (os_strcmp(var, "domain") == 0) {
  2033. os_free(cred->domain);
  2034. cred->domain = val;
  2035. return 0;
  2036. }
  2037. if (os_strcmp(var, "phase1") == 0) {
  2038. os_free(cred->phase1);
  2039. cred->phase1 = val;
  2040. return 0;
  2041. }
  2042. if (os_strcmp(var, "phase2") == 0) {
  2043. os_free(cred->phase2);
  2044. cred->phase2 = val;
  2045. return 0;
  2046. }
  2047. if (os_strcmp(var, "roaming_consortium") == 0) {
  2048. if (len < 3 || len > sizeof(cred->roaming_consortium)) {
  2049. wpa_printf(MSG_ERROR, "Line %d: invalid "
  2050. "roaming_consortium length %d (3..15 "
  2051. "expected)", line, (int) len);
  2052. os_free(val);
  2053. return -1;
  2054. }
  2055. os_memcpy(cred->roaming_consortium, val, len);
  2056. cred->roaming_consortium_len = len;
  2057. os_free(val);
  2058. return 0;
  2059. }
  2060. if (line) {
  2061. wpa_printf(MSG_ERROR, "Line %d: unknown cred field '%s'.",
  2062. line, var);
  2063. }
  2064. os_free(val);
  2065. return -1;
  2066. }
  2067. struct wpa_cred * wpa_config_get_cred(struct wpa_config *config, int id)
  2068. {
  2069. struct wpa_cred *cred;
  2070. cred = config->cred;
  2071. while (cred) {
  2072. if (id == cred->id)
  2073. break;
  2074. cred = cred->next;
  2075. }
  2076. return cred;
  2077. }
  2078. struct wpa_cred * wpa_config_add_cred(struct wpa_config *config)
  2079. {
  2080. int id;
  2081. struct wpa_cred *cred, *last = NULL;
  2082. id = -1;
  2083. cred = config->cred;
  2084. while (cred) {
  2085. if (cred->id > id)
  2086. id = cred->id;
  2087. last = cred;
  2088. cred = cred->next;
  2089. }
  2090. id++;
  2091. cred = os_zalloc(sizeof(*cred));
  2092. if (cred == NULL)
  2093. return NULL;
  2094. cred->id = id;
  2095. if (last)
  2096. last->next = cred;
  2097. else
  2098. config->cred = cred;
  2099. return cred;
  2100. }
  2101. int wpa_config_remove_cred(struct wpa_config *config, int id)
  2102. {
  2103. struct wpa_cred *cred, *prev = NULL;
  2104. cred = config->cred;
  2105. while (cred) {
  2106. if (id == cred->id)
  2107. break;
  2108. prev = cred;
  2109. cred = cred->next;
  2110. }
  2111. if (cred == NULL)
  2112. return -1;
  2113. if (prev)
  2114. prev->next = cred->next;
  2115. else
  2116. config->cred = cred->next;
  2117. wpa_config_free_cred(cred);
  2118. return 0;
  2119. }
  2120. #ifndef CONFIG_NO_CONFIG_BLOBS
  2121. /**
  2122. * wpa_config_get_blob - Get a named configuration blob
  2123. * @config: Configuration data from wpa_config_read()
  2124. * @name: Name of the blob
  2125. * Returns: Pointer to blob data or %NULL if not found
  2126. */
  2127. const struct wpa_config_blob * wpa_config_get_blob(struct wpa_config *config,
  2128. const char *name)
  2129. {
  2130. struct wpa_config_blob *blob = config->blobs;
  2131. while (blob) {
  2132. if (os_strcmp(blob->name, name) == 0)
  2133. return blob;
  2134. blob = blob->next;
  2135. }
  2136. return NULL;
  2137. }
  2138. /**
  2139. * wpa_config_set_blob - Set or add a named configuration blob
  2140. * @config: Configuration data from wpa_config_read()
  2141. * @blob: New value for the blob
  2142. *
  2143. * Adds a new configuration blob or replaces the current value of an existing
  2144. * blob.
  2145. */
  2146. void wpa_config_set_blob(struct wpa_config *config,
  2147. struct wpa_config_blob *blob)
  2148. {
  2149. wpa_config_remove_blob(config, blob->name);
  2150. blob->next = config->blobs;
  2151. config->blobs = blob;
  2152. }
  2153. /**
  2154. * wpa_config_free_blob - Free blob data
  2155. * @blob: Pointer to blob to be freed
  2156. */
  2157. void wpa_config_free_blob(struct wpa_config_blob *blob)
  2158. {
  2159. if (blob) {
  2160. os_free(blob->name);
  2161. os_free(blob->data);
  2162. os_free(blob);
  2163. }
  2164. }
  2165. /**
  2166. * wpa_config_remove_blob - Remove a named configuration blob
  2167. * @config: Configuration data from wpa_config_read()
  2168. * @name: Name of the blob to remove
  2169. * Returns: 0 if blob was removed or -1 if blob was not found
  2170. */
  2171. int wpa_config_remove_blob(struct wpa_config *config, const char *name)
  2172. {
  2173. struct wpa_config_blob *pos = config->blobs, *prev = NULL;
  2174. while (pos) {
  2175. if (os_strcmp(pos->name, name) == 0) {
  2176. if (prev)
  2177. prev->next = pos->next;
  2178. else
  2179. config->blobs = pos->next;
  2180. wpa_config_free_blob(pos);
  2181. return 0;
  2182. }
  2183. prev = pos;
  2184. pos = pos->next;
  2185. }
  2186. return -1;
  2187. }
  2188. #endif /* CONFIG_NO_CONFIG_BLOBS */
  2189. /**
  2190. * wpa_config_alloc_empty - Allocate an empty configuration
  2191. * @ctrl_interface: Control interface parameters, e.g., path to UNIX domain
  2192. * socket
  2193. * @driver_param: Driver parameters
  2194. * Returns: Pointer to allocated configuration data or %NULL on failure
  2195. */
  2196. struct wpa_config * wpa_config_alloc_empty(const char *ctrl_interface,
  2197. const char *driver_param)
  2198. {
  2199. struct wpa_config *config;
  2200. const int aCWmin = 4, aCWmax = 10;
  2201. const struct hostapd_wmm_ac_params ac_bk =
  2202. { aCWmin, aCWmax, 7, 0, 0 }; /* background traffic */
  2203. const struct hostapd_wmm_ac_params ac_be =
  2204. { aCWmin, aCWmax, 3, 0, 0 }; /* best effort traffic */
  2205. const struct hostapd_wmm_ac_params ac_vi = /* video traffic */
  2206. { aCWmin - 1, aCWmin, 2, 3000 / 32, 0 };
  2207. const struct hostapd_wmm_ac_params ac_vo = /* voice traffic */
  2208. { aCWmin - 2, aCWmin - 1, 2, 1500 / 32, 0 };
  2209. config = os_zalloc(sizeof(*config));
  2210. if (config == NULL)
  2211. return NULL;
  2212. config->eapol_version = DEFAULT_EAPOL_VERSION;
  2213. config->ap_scan = DEFAULT_AP_SCAN;
  2214. config->fast_reauth = DEFAULT_FAST_REAUTH;
  2215. config->p2p_go_intent = DEFAULT_P2P_GO_INTENT;
  2216. config->p2p_intra_bss = DEFAULT_P2P_INTRA_BSS;
  2217. config->p2p_go_max_inactivity = DEFAULT_P2P_GO_MAX_INACTIVITY;
  2218. config->bss_max_count = DEFAULT_BSS_MAX_COUNT;
  2219. config->bss_expiration_age = DEFAULT_BSS_EXPIRATION_AGE;
  2220. config->bss_expiration_scan_count = DEFAULT_BSS_EXPIRATION_SCAN_COUNT;
  2221. config->max_num_sta = DEFAULT_MAX_NUM_STA;
  2222. config->access_network_type = DEFAULT_ACCESS_NETWORK_TYPE;
  2223. config->wmm_ac_params[0] = ac_be;
  2224. config->wmm_ac_params[1] = ac_bk;
  2225. config->wmm_ac_params[2] = ac_vi;
  2226. config->wmm_ac_params[3] = ac_vo;
  2227. if (ctrl_interface)
  2228. config->ctrl_interface = os_strdup(ctrl_interface);
  2229. if (driver_param)
  2230. config->driver_param = os_strdup(driver_param);
  2231. return config;
  2232. }
  2233. #ifndef CONFIG_NO_STDOUT_DEBUG
  2234. /**
  2235. * wpa_config_debug_dump_networks - Debug dump of configured networks
  2236. * @config: Configuration data from wpa_config_read()
  2237. */
  2238. void wpa_config_debug_dump_networks(struct wpa_config *config)
  2239. {
  2240. int prio;
  2241. struct wpa_ssid *ssid;
  2242. for (prio = 0; prio < config->num_prio; prio++) {
  2243. ssid = config->pssid[prio];
  2244. wpa_printf(MSG_DEBUG, "Priority group %d",
  2245. ssid->priority);
  2246. while (ssid) {
  2247. wpa_printf(MSG_DEBUG, " id=%d ssid='%s'",
  2248. ssid->id,
  2249. wpa_ssid_txt(ssid->ssid, ssid->ssid_len));
  2250. ssid = ssid->pnext;
  2251. }
  2252. }
  2253. }
  2254. #endif /* CONFIG_NO_STDOUT_DEBUG */
  2255. struct global_parse_data {
  2256. char *name;
  2257. int (*parser)(const struct global_parse_data *data,
  2258. struct wpa_config *config, int line, const char *value);
  2259. void *param1, *param2, *param3;
  2260. unsigned int changed_flag;
  2261. };
  2262. static int wpa_global_config_parse_int(const struct global_parse_data *data,
  2263. struct wpa_config *config, int line,
  2264. const char *pos)
  2265. {
  2266. int *dst;
  2267. dst = (int *) (((u8 *) config) + (long) data->param1);
  2268. *dst = atoi(pos);
  2269. wpa_printf(MSG_DEBUG, "%s=%d", data->name, *dst);
  2270. if (data->param2 && *dst < (long) data->param2) {
  2271. wpa_printf(MSG_ERROR, "Line %d: too small %s (value=%d "
  2272. "min_value=%ld)", line, data->name, *dst,
  2273. (long) data->param2);
  2274. *dst = (long) data->param2;
  2275. return -1;
  2276. }
  2277. if (data->param3 && *dst > (long) data->param3) {
  2278. wpa_printf(MSG_ERROR, "Line %d: too large %s (value=%d "
  2279. "max_value=%ld)", line, data->name, *dst,
  2280. (long) data->param3);
  2281. *dst = (long) data->param3;
  2282. return -1;
  2283. }
  2284. return 0;
  2285. }
  2286. static int wpa_global_config_parse_str(const struct global_parse_data *data,
  2287. struct wpa_config *config, int line,
  2288. const char *pos)
  2289. {
  2290. size_t len;
  2291. char **dst, *tmp;
  2292. len = os_strlen(pos);
  2293. if (data->param2 && len < (size_t) data->param2) {
  2294. wpa_printf(MSG_ERROR, "Line %d: too short %s (len=%lu "
  2295. "min_len=%ld)", line, data->name,
  2296. (unsigned long) len, (long) data->param2);
  2297. return -1;
  2298. }
  2299. if (data->param3 && len > (size_t) data->param3) {
  2300. wpa_printf(MSG_ERROR, "Line %d: too long %s (len=%lu "
  2301. "max_len=%ld)", line, data->name,
  2302. (unsigned long) len, (long) data->param3);
  2303. return -1;
  2304. }
  2305. tmp = os_strdup(pos);
  2306. if (tmp == NULL)
  2307. return -1;
  2308. dst = (char **) (((u8 *) config) + (long) data->param1);
  2309. os_free(*dst);
  2310. *dst = tmp;
  2311. wpa_printf(MSG_DEBUG, "%s='%s'", data->name, *dst);
  2312. return 0;
  2313. }
  2314. static int wpa_global_config_parse_bin(const struct global_parse_data *data,
  2315. struct wpa_config *config, int line,
  2316. const char *pos)
  2317. {
  2318. size_t len;
  2319. struct wpabuf **dst, *tmp;
  2320. len = os_strlen(pos);
  2321. if (len & 0x01)
  2322. return -1;
  2323. tmp = wpabuf_alloc(len / 2);
  2324. if (tmp == NULL)
  2325. return -1;
  2326. if (hexstr2bin(pos, wpabuf_put(tmp, len / 2), len / 2)) {
  2327. wpabuf_free(tmp);
  2328. return -1;
  2329. }
  2330. dst = (struct wpabuf **) (((u8 *) config) + (long) data->param1);
  2331. wpabuf_free(*dst);
  2332. *dst = tmp;
  2333. wpa_printf(MSG_DEBUG, "%s", data->name);
  2334. return 0;
  2335. }
  2336. static int wpa_config_process_country(const struct global_parse_data *data,
  2337. struct wpa_config *config, int line,
  2338. const char *pos)
  2339. {
  2340. if (!pos[0] || !pos[1]) {
  2341. wpa_printf(MSG_DEBUG, "Invalid country set");
  2342. return -1;
  2343. }
  2344. config->country[0] = pos[0];
  2345. config->country[1] = pos[1];
  2346. wpa_printf(MSG_DEBUG, "country='%c%c'",
  2347. config->country[0], config->country[1]);
  2348. return 0;
  2349. }
  2350. static int wpa_config_process_load_dynamic_eap(
  2351. const struct global_parse_data *data, struct wpa_config *config,
  2352. int line, const char *so)
  2353. {
  2354. int ret;
  2355. wpa_printf(MSG_DEBUG, "load_dynamic_eap=%s", so);
  2356. ret = eap_peer_method_load(so);
  2357. if (ret == -2) {
  2358. wpa_printf(MSG_DEBUG, "This EAP type was already loaded - not "
  2359. "reloading.");
  2360. } else if (ret) {
  2361. wpa_printf(MSG_ERROR, "Line %d: Failed to load dynamic EAP "
  2362. "method '%s'.", line, so);
  2363. return -1;
  2364. }
  2365. return 0;
  2366. }
  2367. #ifdef CONFIG_WPS
  2368. static int wpa_config_process_uuid(const struct global_parse_data *data,
  2369. struct wpa_config *config, int line,
  2370. const char *pos)
  2371. {
  2372. char buf[40];
  2373. if (uuid_str2bin(pos, config->uuid)) {
  2374. wpa_printf(MSG_ERROR, "Line %d: invalid UUID", line);
  2375. return -1;
  2376. }
  2377. uuid_bin2str(config->uuid, buf, sizeof(buf));
  2378. wpa_printf(MSG_DEBUG, "uuid=%s", buf);
  2379. return 0;
  2380. }
  2381. static int wpa_config_process_device_type(
  2382. const struct global_parse_data *data,
  2383. struct wpa_config *config, int line, const char *pos)
  2384. {
  2385. return wps_dev_type_str2bin(pos, config->device_type);
  2386. }
  2387. static int wpa_config_process_os_version(const struct global_parse_data *data,
  2388. struct wpa_config *config, int line,
  2389. const char *pos)
  2390. {
  2391. if (hexstr2bin(pos, config->os_version, 4)) {
  2392. wpa_printf(MSG_ERROR, "Line %d: invalid os_version", line);
  2393. return -1;
  2394. }
  2395. wpa_printf(MSG_DEBUG, "os_version=%08x",
  2396. WPA_GET_BE32(config->os_version));
  2397. return 0;
  2398. }
  2399. static int wpa_config_process_wps_vendor_ext_m1(
  2400. const struct global_parse_data *data,
  2401. struct wpa_config *config, int line, const char *pos)
  2402. {
  2403. struct wpabuf *tmp;
  2404. int len = os_strlen(pos) / 2;
  2405. u8 *p;
  2406. if (!len) {
  2407. wpa_printf(MSG_ERROR, "Line %d: "
  2408. "invalid wps_vendor_ext_m1", line);
  2409. return -1;
  2410. }
  2411. tmp = wpabuf_alloc(len);
  2412. if (tmp) {
  2413. p = wpabuf_put(tmp, len);
  2414. if (hexstr2bin(pos, p, len)) {
  2415. wpa_printf(MSG_ERROR, "Line %d: "
  2416. "invalid wps_vendor_ext_m1", line);
  2417. wpabuf_free(tmp);
  2418. return -1;
  2419. }
  2420. wpabuf_free(config->wps_vendor_ext_m1);
  2421. config->wps_vendor_ext_m1 = tmp;
  2422. } else {
  2423. wpa_printf(MSG_ERROR, "Can not allocate "
  2424. "memory for wps_vendor_ext_m1");
  2425. return -1;
  2426. }
  2427. return 0;
  2428. }
  2429. #endif /* CONFIG_WPS */
  2430. #ifdef CONFIG_P2P
  2431. static int wpa_config_process_sec_device_type(
  2432. const struct global_parse_data *data,
  2433. struct wpa_config *config, int line, const char *pos)
  2434. {
  2435. int idx;
  2436. if (config->num_sec_device_types >= MAX_SEC_DEVICE_TYPES) {
  2437. wpa_printf(MSG_ERROR, "Line %d: too many sec_device_type "
  2438. "items", line);
  2439. return -1;
  2440. }
  2441. idx = config->num_sec_device_types;
  2442. if (wps_dev_type_str2bin(pos, config->sec_device_type[idx]))
  2443. return -1;
  2444. config->num_sec_device_types++;
  2445. return 0;
  2446. }
  2447. static int wpa_config_process_p2p_pref_chan(
  2448. const struct global_parse_data *data,
  2449. struct wpa_config *config, int line, const char *pos)
  2450. {
  2451. struct p2p_channel *pref = NULL, *n;
  2452. unsigned int num = 0;
  2453. const char *pos2;
  2454. u8 op_class, chan;
  2455. /* format: class:chan,class:chan,... */
  2456. while (*pos) {
  2457. op_class = atoi(pos);
  2458. pos2 = os_strchr(pos, ':');
  2459. if (pos2 == NULL)
  2460. goto fail;
  2461. pos2++;
  2462. chan = atoi(pos2);
  2463. n = os_realloc_array(pref, num + 1,
  2464. sizeof(struct p2p_channel));
  2465. if (n == NULL)
  2466. goto fail;
  2467. pref = n;
  2468. pref[num].op_class = op_class;
  2469. pref[num].chan = chan;
  2470. num++;
  2471. pos = os_strchr(pos2, ',');
  2472. if (pos == NULL)
  2473. break;
  2474. pos++;
  2475. }
  2476. os_free(config->p2p_pref_chan);
  2477. config->p2p_pref_chan = pref;
  2478. config->num_p2p_pref_chan = num;
  2479. wpa_hexdump(MSG_DEBUG, "P2P: Preferred class/channel pairs",
  2480. (u8 *) config->p2p_pref_chan,
  2481. config->num_p2p_pref_chan * sizeof(struct p2p_channel));
  2482. return 0;
  2483. fail:
  2484. os_free(pref);
  2485. wpa_printf(MSG_ERROR, "Line %d: Invalid p2p_pref_chan list", line);
  2486. return -1;
  2487. }
  2488. #endif /* CONFIG_P2P */
  2489. static int wpa_config_process_hessid(
  2490. const struct global_parse_data *data,
  2491. struct wpa_config *config, int line, const char *pos)
  2492. {
  2493. if (hwaddr_aton2(pos, config->hessid) < 0) {
  2494. wpa_printf(MSG_ERROR, "Line %d: Invalid hessid '%s'",
  2495. line, pos);
  2496. return -1;
  2497. }
  2498. return 0;
  2499. }
  2500. #ifdef OFFSET
  2501. #undef OFFSET
  2502. #endif /* OFFSET */
  2503. /* OFFSET: Get offset of a variable within the wpa_config structure */
  2504. #define OFFSET(v) ((void *) &((struct wpa_config *) 0)->v)
  2505. #define FUNC(f) #f, wpa_config_process_ ## f, OFFSET(f), NULL, NULL
  2506. #define FUNC_NO_VAR(f) #f, wpa_config_process_ ## f, NULL, NULL, NULL
  2507. #define _INT(f) #f, wpa_global_config_parse_int, OFFSET(f)
  2508. #define INT(f) _INT(f), NULL, NULL
  2509. #define INT_RANGE(f, min, max) _INT(f), (void *) min, (void *) max
  2510. #define _STR(f) #f, wpa_global_config_parse_str, OFFSET(f)
  2511. #define STR(f) _STR(f), NULL, NULL
  2512. #define STR_RANGE(f, min, max) _STR(f), (void *) min, (void *) max
  2513. #define BIN(f) #f, wpa_global_config_parse_bin, OFFSET(f), NULL, NULL
  2514. static const struct global_parse_data global_fields[] = {
  2515. #ifdef CONFIG_CTRL_IFACE
  2516. { STR(ctrl_interface), 0 },
  2517. { STR(ctrl_interface_group), 0 } /* deprecated */,
  2518. #endif /* CONFIG_CTRL_IFACE */
  2519. { INT_RANGE(eapol_version, 1, 2), 0 },
  2520. { INT(ap_scan), 0 },
  2521. { INT(disable_scan_offload), 0 },
  2522. { INT(fast_reauth), 0 },
  2523. { STR(opensc_engine_path), 0 },
  2524. { STR(pkcs11_engine_path), 0 },
  2525. { STR(pkcs11_module_path), 0 },
  2526. { STR(pcsc_reader), 0 },
  2527. { STR(pcsc_pin), 0 },
  2528. { STR(driver_param), 0 },
  2529. { INT(dot11RSNAConfigPMKLifetime), 0 },
  2530. { INT(dot11RSNAConfigPMKReauthThreshold), 0 },
  2531. { INT(dot11RSNAConfigSATimeout), 0 },
  2532. #ifndef CONFIG_NO_CONFIG_WRITE
  2533. { INT(update_config), 0 },
  2534. #endif /* CONFIG_NO_CONFIG_WRITE */
  2535. { FUNC_NO_VAR(load_dynamic_eap), 0 },
  2536. #ifdef CONFIG_WPS
  2537. { FUNC(uuid), CFG_CHANGED_UUID },
  2538. { STR_RANGE(device_name, 0, 32), CFG_CHANGED_DEVICE_NAME },
  2539. { STR_RANGE(manufacturer, 0, 64), CFG_CHANGED_WPS_STRING },
  2540. { STR_RANGE(model_name, 0, 32), CFG_CHANGED_WPS_STRING },
  2541. { STR_RANGE(model_number, 0, 32), CFG_CHANGED_WPS_STRING },
  2542. { STR_RANGE(serial_number, 0, 32), CFG_CHANGED_WPS_STRING },
  2543. { FUNC(device_type), CFG_CHANGED_DEVICE_TYPE },
  2544. { FUNC(os_version), CFG_CHANGED_OS_VERSION },
  2545. { STR(config_methods), CFG_CHANGED_CONFIG_METHODS },
  2546. { INT_RANGE(wps_cred_processing, 0, 2), 0 },
  2547. { FUNC(wps_vendor_ext_m1), CFG_CHANGED_VENDOR_EXTENSION },
  2548. #endif /* CONFIG_WPS */
  2549. #ifdef CONFIG_P2P
  2550. { FUNC(sec_device_type), CFG_CHANGED_SEC_DEVICE_TYPE },
  2551. { INT(p2p_listen_reg_class), 0 },
  2552. { INT(p2p_listen_channel), 0 },
  2553. { INT(p2p_oper_reg_class), 0 },
  2554. { INT(p2p_oper_channel), 0 },
  2555. { INT_RANGE(p2p_go_intent, 0, 15), 0 },
  2556. { STR(p2p_ssid_postfix), CFG_CHANGED_P2P_SSID_POSTFIX },
  2557. { INT_RANGE(persistent_reconnect, 0, 1), 0 },
  2558. { INT_RANGE(p2p_intra_bss, 0, 1), CFG_CHANGED_P2P_INTRA_BSS },
  2559. { INT(p2p_group_idle), 0 },
  2560. { FUNC(p2p_pref_chan), CFG_CHANGED_P2P_PREF_CHAN },
  2561. #endif /* CONFIG_P2P */
  2562. { FUNC(country), CFG_CHANGED_COUNTRY },
  2563. { INT(bss_max_count), 0 },
  2564. { INT(bss_expiration_age), 0 },
  2565. { INT(bss_expiration_scan_count), 0 },
  2566. { INT_RANGE(filter_ssids, 0, 1), 0 },
  2567. { INT_RANGE(filter_rssi, -100, 0), 0 },
  2568. { INT(max_num_sta), 0 },
  2569. { INT_RANGE(disassoc_low_ack, 0, 1), 0 },
  2570. #ifdef CONFIG_HS20
  2571. { INT_RANGE(hs20, 0, 1), 0 },
  2572. #endif /* CONFIG_HS20 */
  2573. { INT_RANGE(interworking, 0, 1), 0 },
  2574. { FUNC(hessid), 0 },
  2575. { INT_RANGE(access_network_type, 0, 15), 0 },
  2576. { INT_RANGE(pbc_in_m1, 0, 1), 0 },
  2577. { STR(autoscan), 0 },
  2578. { INT_RANGE(wps_nfc_dev_pw_id, 0x10, 0xffff), 0 },
  2579. { BIN(wps_nfc_dh_pubkey), 0 },
  2580. { BIN(wps_nfc_dh_privkey), 0 },
  2581. { BIN(wps_nfc_dev_pw), 0 },
  2582. { STR(ext_password_backend), CFG_CHANGED_EXT_PW_BACKEND },
  2583. { INT(p2p_go_max_inactivity), 0 },
  2584. { INT_RANGE(auto_interworking, 0, 1), 0 },
  2585. };
  2586. #undef FUNC
  2587. #undef _INT
  2588. #undef INT
  2589. #undef INT_RANGE
  2590. #undef _STR
  2591. #undef STR
  2592. #undef STR_RANGE
  2593. #undef BIN
  2594. #define NUM_GLOBAL_FIELDS (sizeof(global_fields) / sizeof(global_fields[0]))
  2595. int wpa_config_process_global(struct wpa_config *config, char *pos, int line)
  2596. {
  2597. size_t i;
  2598. int ret = 0;
  2599. for (i = 0; i < NUM_GLOBAL_FIELDS; i++) {
  2600. const struct global_parse_data *field = &global_fields[i];
  2601. size_t flen = os_strlen(field->name);
  2602. if (os_strncmp(pos, field->name, flen) != 0 ||
  2603. pos[flen] != '=')
  2604. continue;
  2605. if (field->parser(field, config, line, pos + flen + 1)) {
  2606. wpa_printf(MSG_ERROR, "Line %d: failed to "
  2607. "parse '%s'.", line, pos);
  2608. ret = -1;
  2609. }
  2610. config->changed_parameters |= field->changed_flag;
  2611. break;
  2612. }
  2613. if (i == NUM_GLOBAL_FIELDS) {
  2614. #ifdef CONFIG_AP
  2615. if (os_strncmp(pos, "wmm_ac_", 7) == 0) {
  2616. char *tmp = os_strchr(pos, '=');
  2617. if (tmp == NULL) {
  2618. if (line < 0)
  2619. return -1;
  2620. wpa_printf(MSG_ERROR, "Line %d: invalid line "
  2621. "'%s'", line, pos);
  2622. return -1;
  2623. }
  2624. *tmp++ = '\0';
  2625. if (hostapd_config_wmm_ac(config->wmm_ac_params, pos,
  2626. tmp)) {
  2627. wpa_printf(MSG_ERROR, "Line %d: invalid WMM "
  2628. "AC item", line);
  2629. return -1;
  2630. }
  2631. }
  2632. #endif /* CONFIG_AP */
  2633. if (line < 0)
  2634. return -1;
  2635. wpa_printf(MSG_ERROR, "Line %d: unknown global field '%s'.",
  2636. line, pos);
  2637. ret = -1;
  2638. }
  2639. return ret;
  2640. }