config_winreg.c 24 KB

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  1. /*
  2. * WPA Supplicant / Configuration backend: Windows registry
  3. * Copyright (c) 2003-2008, 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. * This file implements a configuration backend for Windows registry. All the
  9. * configuration information is stored in the registry and the format for
  10. * network configuration fields is same as described in the sample
  11. * configuration file, wpa_supplicant.conf.
  12. *
  13. * Configuration data is in
  14. * \a HKEY_LOCAL_MACHINE\\SOFTWARE\\%wpa_supplicant\\configs
  15. * key. Each configuration profile has its own key under this. In terms of text
  16. * files, each profile would map to a separate text file with possibly multiple
  17. * networks. Under each profile, there is a networks key that lists all
  18. * networks as a subkey. Each network has set of values in the same way as
  19. * network block in the configuration file. In addition, blobs subkey has
  20. * possible blobs as values.
  21. *
  22. * Example network configuration block:
  23. * \verbatim
  24. HKEY_LOCAL_MACHINE\SOFTWARE\wpa_supplicant\configs\test\networks\0000
  25. ssid="example"
  26. key_mgmt=WPA-PSK
  27. \endverbatim
  28. */
  29. #include "includes.h"
  30. #include "common.h"
  31. #include "uuid.h"
  32. #include "config.h"
  33. #ifndef WPA_KEY_ROOT
  34. #define WPA_KEY_ROOT HKEY_LOCAL_MACHINE
  35. #endif
  36. #ifndef WPA_KEY_PREFIX
  37. #define WPA_KEY_PREFIX TEXT("SOFTWARE\\wpa_supplicant")
  38. #endif
  39. #ifdef UNICODE
  40. #define TSTR "%S"
  41. #else /* UNICODE */
  42. #define TSTR "%s"
  43. #endif /* UNICODE */
  44. static int wpa_config_read_blobs(struct wpa_config *config, HKEY hk)
  45. {
  46. struct wpa_config_blob *blob;
  47. int errors = 0;
  48. HKEY bhk;
  49. LONG ret;
  50. DWORD i;
  51. ret = RegOpenKeyEx(hk, TEXT("blobs"), 0, KEY_QUERY_VALUE, &bhk);
  52. if (ret != ERROR_SUCCESS) {
  53. wpa_printf(MSG_DEBUG, "Could not open wpa_supplicant config "
  54. "blobs key");
  55. return 0; /* assume no blobs */
  56. }
  57. for (i = 0; ; i++) {
  58. #define TNAMELEN 255
  59. TCHAR name[TNAMELEN];
  60. char data[4096];
  61. DWORD namelen, datalen, type;
  62. namelen = TNAMELEN;
  63. datalen = sizeof(data);
  64. ret = RegEnumValue(bhk, i, name, &namelen, NULL, &type,
  65. (LPBYTE) data, &datalen);
  66. if (ret == ERROR_NO_MORE_ITEMS)
  67. break;
  68. if (ret != ERROR_SUCCESS) {
  69. wpa_printf(MSG_DEBUG, "RegEnumValue failed: 0x%x",
  70. (unsigned int) ret);
  71. break;
  72. }
  73. if (namelen >= TNAMELEN)
  74. namelen = TNAMELEN - 1;
  75. name[namelen] = TEXT('\0');
  76. wpa_unicode2ascii_inplace(name);
  77. if (datalen >= sizeof(data))
  78. datalen = sizeof(data) - 1;
  79. wpa_printf(MSG_MSGDUMP, "blob %d: field='%s' len %d",
  80. (int) i, name, (int) datalen);
  81. blob = os_zalloc(sizeof(*blob));
  82. if (blob == NULL) {
  83. errors++;
  84. break;
  85. }
  86. blob->name = os_strdup((char *) name);
  87. blob->data = os_malloc(datalen);
  88. if (blob->name == NULL || blob->data == NULL) {
  89. wpa_config_free_blob(blob);
  90. errors++;
  91. break;
  92. }
  93. os_memcpy(blob->data, data, datalen);
  94. blob->len = datalen;
  95. wpa_config_set_blob(config, blob);
  96. }
  97. RegCloseKey(bhk);
  98. return errors ? -1 : 0;
  99. }
  100. static int wpa_config_read_reg_dword(HKEY hk, const TCHAR *name, int *_val)
  101. {
  102. DWORD val, buflen;
  103. LONG ret;
  104. buflen = sizeof(val);
  105. ret = RegQueryValueEx(hk, name, NULL, NULL, (LPBYTE) &val, &buflen);
  106. if (ret == ERROR_SUCCESS && buflen == sizeof(val)) {
  107. wpa_printf(MSG_DEBUG, TSTR "=%d", name, (int) val);
  108. *_val = val;
  109. return 0;
  110. }
  111. return -1;
  112. }
  113. static char * wpa_config_read_reg_string(HKEY hk, const TCHAR *name)
  114. {
  115. DWORD buflen;
  116. LONG ret;
  117. TCHAR *val;
  118. buflen = 0;
  119. ret = RegQueryValueEx(hk, name, NULL, NULL, NULL, &buflen);
  120. if (ret != ERROR_SUCCESS)
  121. return NULL;
  122. val = os_malloc(buflen);
  123. if (val == NULL)
  124. return NULL;
  125. ret = RegQueryValueEx(hk, name, NULL, NULL, (LPBYTE) val, &buflen);
  126. if (ret != ERROR_SUCCESS) {
  127. os_free(val);
  128. return NULL;
  129. }
  130. wpa_unicode2ascii_inplace(val);
  131. wpa_printf(MSG_DEBUG, TSTR "=%s", name, (char *) val);
  132. return (char *) val;
  133. }
  134. #ifdef CONFIG_WPS
  135. static int wpa_config_read_global_uuid(struct wpa_config *config, HKEY hk)
  136. {
  137. char *str;
  138. int ret = 0;
  139. str = wpa_config_read_reg_string(hk, TEXT("uuid"));
  140. if (str == NULL)
  141. return 0;
  142. if (uuid_str2bin(str, config->uuid))
  143. ret = -1;
  144. os_free(str);
  145. return ret;
  146. }
  147. static int wpa_config_read_global_os_version(struct wpa_config *config,
  148. HKEY hk)
  149. {
  150. char *str;
  151. int ret = 0;
  152. str = wpa_config_read_reg_string(hk, TEXT("os_version"));
  153. if (str == NULL)
  154. return 0;
  155. if (hexstr2bin(str, config->os_version, 4))
  156. ret = -1;
  157. os_free(str);
  158. return ret;
  159. }
  160. #endif /* CONFIG_WPS */
  161. static int wpa_config_read_global(struct wpa_config *config, HKEY hk)
  162. {
  163. int errors = 0;
  164. wpa_config_read_reg_dword(hk, TEXT("ap_scan"), &config->ap_scan);
  165. wpa_config_read_reg_dword(hk, TEXT("fast_reauth"),
  166. &config->fast_reauth);
  167. wpa_config_read_reg_dword(hk, TEXT("dot11RSNAConfigPMKLifetime"),
  168. (int *) &config->dot11RSNAConfigPMKLifetime);
  169. wpa_config_read_reg_dword(hk,
  170. TEXT("dot11RSNAConfigPMKReauthThreshold"),
  171. (int *)
  172. &config->dot11RSNAConfigPMKReauthThreshold);
  173. wpa_config_read_reg_dword(hk, TEXT("dot11RSNAConfigSATimeout"),
  174. (int *) &config->dot11RSNAConfigSATimeout);
  175. wpa_config_read_reg_dword(hk, TEXT("update_config"),
  176. &config->update_config);
  177. if (wpa_config_read_reg_dword(hk, TEXT("eapol_version"),
  178. &config->eapol_version) == 0) {
  179. if (config->eapol_version < 1 ||
  180. config->eapol_version > 2) {
  181. wpa_printf(MSG_ERROR, "Invalid EAPOL version (%d)",
  182. config->eapol_version);
  183. errors++;
  184. }
  185. }
  186. config->ctrl_interface = wpa_config_read_reg_string(
  187. hk, TEXT("ctrl_interface"));
  188. #ifdef CONFIG_WPS
  189. if (wpa_config_read_global_uuid(config, hk))
  190. errors++;
  191. config->device_name = wpa_config_read_reg_string(
  192. hk, TEXT("device_name"));
  193. config->manufacturer = wpa_config_read_reg_string(
  194. hk, TEXT("manufacturer"));
  195. config->model_name = wpa_config_read_reg_string(
  196. hk, TEXT("model_name"));
  197. config->serial_number = wpa_config_read_reg_string(
  198. hk, TEXT("serial_number"));
  199. {
  200. char *t = wpa_config_read_reg_string(
  201. hk, TEXT("device_type"));
  202. if (t && wps_dev_type_str2bin(t, config->device_type))
  203. errors++;
  204. os_free(t);
  205. }
  206. config->config_methods = wpa_config_read_reg_string(
  207. hk, TEXT("config_methods"));
  208. if (wpa_config_read_global_os_version(config, hk))
  209. errors++;
  210. wpa_config_read_reg_dword(hk, TEXT("wps_cred_processing"),
  211. &config->wps_cred_processing);
  212. #endif /* CONFIG_WPS */
  213. #ifdef CONFIG_P2P
  214. config->p2p_ssid_postfix = wpa_config_read_reg_string(
  215. hk, TEXT("p2p_ssid_postfix"));
  216. wpa_config_read_reg_dword(hk, TEXT("p2p_group_idle"),
  217. (int *) &config->p2p_group_idle);
  218. #endif /* CONFIG_P2P */
  219. wpa_config_read_reg_dword(hk, TEXT("bss_max_count"),
  220. (int *) &config->bss_max_count);
  221. wpa_config_read_reg_dword(hk, TEXT("filter_ssids"),
  222. &config->filter_ssids);
  223. wpa_config_read_reg_dword(hk, TEXT("max_num_sta"),
  224. (int *) &config->max_num_sta);
  225. wpa_config_read_reg_dword(hk, TEXT("disassoc_low_ack"),
  226. (int *) &config->disassoc_low_ack);
  227. return errors ? -1 : 0;
  228. }
  229. static struct wpa_ssid * wpa_config_read_network(HKEY hk, const TCHAR *netw,
  230. int id)
  231. {
  232. HKEY nhk;
  233. LONG ret;
  234. DWORD i;
  235. struct wpa_ssid *ssid;
  236. int errors = 0;
  237. ret = RegOpenKeyEx(hk, netw, 0, KEY_QUERY_VALUE, &nhk);
  238. if (ret != ERROR_SUCCESS) {
  239. wpa_printf(MSG_DEBUG, "Could not open wpa_supplicant config "
  240. "network '" TSTR "'", netw);
  241. return NULL;
  242. }
  243. wpa_printf(MSG_MSGDUMP, "Start of a new network '" TSTR "'", netw);
  244. ssid = os_zalloc(sizeof(*ssid));
  245. if (ssid == NULL) {
  246. RegCloseKey(nhk);
  247. return NULL;
  248. }
  249. ssid->id = id;
  250. wpa_config_set_network_defaults(ssid);
  251. for (i = 0; ; i++) {
  252. TCHAR name[255], data[1024];
  253. DWORD namelen, datalen, type;
  254. namelen = 255;
  255. datalen = sizeof(data);
  256. ret = RegEnumValue(nhk, i, name, &namelen, NULL, &type,
  257. (LPBYTE) data, &datalen);
  258. if (ret == ERROR_NO_MORE_ITEMS)
  259. break;
  260. if (ret != ERROR_SUCCESS) {
  261. wpa_printf(MSG_ERROR, "RegEnumValue failed: 0x%x",
  262. (unsigned int) ret);
  263. break;
  264. }
  265. if (namelen >= 255)
  266. namelen = 255 - 1;
  267. name[namelen] = TEXT('\0');
  268. if (datalen >= 1024)
  269. datalen = 1024 - 1;
  270. data[datalen] = TEXT('\0');
  271. wpa_unicode2ascii_inplace(name);
  272. wpa_unicode2ascii_inplace(data);
  273. if (wpa_config_set(ssid, (char *) name, (char *) data, 0) < 0)
  274. errors++;
  275. }
  276. RegCloseKey(nhk);
  277. if (ssid->passphrase) {
  278. if (ssid->psk_set) {
  279. wpa_printf(MSG_ERROR, "Both PSK and passphrase "
  280. "configured for network '" TSTR "'.", netw);
  281. errors++;
  282. }
  283. wpa_config_update_psk(ssid);
  284. }
  285. if (wpa_key_mgmt_wpa_psk(ssid->key_mgmt) && !ssid->psk_set) {
  286. wpa_printf(MSG_ERROR, "WPA-PSK accepted for key management, "
  287. "but no PSK configured for network '" TSTR "'.",
  288. netw);
  289. errors++;
  290. }
  291. if ((ssid->group_cipher & WPA_CIPHER_CCMP) &&
  292. !(ssid->pairwise_cipher & WPA_CIPHER_CCMP) &&
  293. !(ssid->pairwise_cipher & WPA_CIPHER_NONE)) {
  294. /* Group cipher cannot be stronger than the pairwise cipher. */
  295. wpa_printf(MSG_DEBUG, "Removed CCMP from group cipher "
  296. "list since it was not allowed for pairwise "
  297. "cipher for network '" TSTR "'.", netw);
  298. ssid->group_cipher &= ~WPA_CIPHER_CCMP;
  299. }
  300. if (errors) {
  301. wpa_config_free_ssid(ssid);
  302. ssid = NULL;
  303. }
  304. return ssid;
  305. }
  306. static int wpa_config_read_networks(struct wpa_config *config, HKEY hk)
  307. {
  308. HKEY nhk;
  309. struct wpa_ssid *ssid, *tail = NULL, *head = NULL;
  310. int errors = 0;
  311. LONG ret;
  312. DWORD i;
  313. ret = RegOpenKeyEx(hk, TEXT("networks"), 0, KEY_ENUMERATE_SUB_KEYS,
  314. &nhk);
  315. if (ret != ERROR_SUCCESS) {
  316. wpa_printf(MSG_ERROR, "Could not open wpa_supplicant networks "
  317. "registry key");
  318. return -1;
  319. }
  320. for (i = 0; ; i++) {
  321. TCHAR name[255];
  322. DWORD namelen;
  323. namelen = 255;
  324. ret = RegEnumKeyEx(nhk, i, name, &namelen, NULL, NULL, NULL,
  325. NULL);
  326. if (ret == ERROR_NO_MORE_ITEMS)
  327. break;
  328. if (ret != ERROR_SUCCESS) {
  329. wpa_printf(MSG_DEBUG, "RegEnumKeyEx failed: 0x%x",
  330. (unsigned int) ret);
  331. break;
  332. }
  333. if (namelen >= 255)
  334. namelen = 255 - 1;
  335. name[namelen] = '\0';
  336. ssid = wpa_config_read_network(nhk, name, i);
  337. if (ssid == NULL) {
  338. wpa_printf(MSG_ERROR, "Failed to parse network "
  339. "profile '%s'.", name);
  340. errors++;
  341. continue;
  342. }
  343. if (head == NULL) {
  344. head = tail = ssid;
  345. } else {
  346. tail->next = ssid;
  347. tail = ssid;
  348. }
  349. if (wpa_config_add_prio_network(config, ssid)) {
  350. wpa_printf(MSG_ERROR, "Failed to add network profile "
  351. "'%s' to priority list.", name);
  352. errors++;
  353. continue;
  354. }
  355. }
  356. RegCloseKey(nhk);
  357. config->ssid = head;
  358. return errors ? -1 : 0;
  359. }
  360. struct wpa_config * wpa_config_read(const char *name)
  361. {
  362. TCHAR buf[256];
  363. int errors = 0;
  364. struct wpa_config *config;
  365. HKEY hk;
  366. LONG ret;
  367. config = wpa_config_alloc_empty(NULL, NULL);
  368. if (config == NULL)
  369. return NULL;
  370. wpa_printf(MSG_DEBUG, "Reading configuration profile '%s'", name);
  371. #ifdef UNICODE
  372. _snwprintf(buf, 256, WPA_KEY_PREFIX TEXT("\\configs\\%S"), name);
  373. #else /* UNICODE */
  374. os_snprintf(buf, 256, WPA_KEY_PREFIX TEXT("\\configs\\%s"), name);
  375. #endif /* UNICODE */
  376. ret = RegOpenKeyEx(WPA_KEY_ROOT, buf, 0, KEY_QUERY_VALUE, &hk);
  377. if (ret != ERROR_SUCCESS) {
  378. wpa_printf(MSG_ERROR, "Could not open wpa_supplicant "
  379. "configuration registry HKLM\\" TSTR, buf);
  380. os_free(config);
  381. return NULL;
  382. }
  383. if (wpa_config_read_global(config, hk))
  384. errors++;
  385. if (wpa_config_read_networks(config, hk))
  386. errors++;
  387. if (wpa_config_read_blobs(config, hk))
  388. errors++;
  389. wpa_config_debug_dump_networks(config);
  390. RegCloseKey(hk);
  391. if (errors) {
  392. wpa_config_free(config);
  393. config = NULL;
  394. }
  395. return config;
  396. }
  397. static int wpa_config_write_reg_dword(HKEY hk, const TCHAR *name, int val,
  398. int def)
  399. {
  400. LONG ret;
  401. DWORD _val = val;
  402. if (val == def) {
  403. RegDeleteValue(hk, name);
  404. return 0;
  405. }
  406. ret = RegSetValueEx(hk, name, 0, REG_DWORD, (LPBYTE) &_val,
  407. sizeof(_val));
  408. if (ret != ERROR_SUCCESS) {
  409. wpa_printf(MSG_ERROR, "WINREG: Failed to set %s=%d: error %d",
  410. name, val, (int) GetLastError());
  411. return -1;
  412. }
  413. return 0;
  414. }
  415. static int wpa_config_write_reg_string(HKEY hk, const char *name,
  416. const char *val)
  417. {
  418. LONG ret;
  419. TCHAR *_name, *_val;
  420. _name = wpa_strdup_tchar(name);
  421. if (_name == NULL)
  422. return -1;
  423. if (val == NULL) {
  424. RegDeleteValue(hk, _name);
  425. os_free(_name);
  426. return 0;
  427. }
  428. _val = wpa_strdup_tchar(val);
  429. if (_val == NULL) {
  430. os_free(_name);
  431. return -1;
  432. }
  433. ret = RegSetValueEx(hk, _name, 0, REG_SZ, (BYTE *) _val,
  434. (os_strlen(val) + 1) * sizeof(TCHAR));
  435. if (ret != ERROR_SUCCESS) {
  436. wpa_printf(MSG_ERROR, "WINREG: Failed to set %s='%s': "
  437. "error %d", name, val, (int) GetLastError());
  438. os_free(_name);
  439. os_free(_val);
  440. return -1;
  441. }
  442. os_free(_name);
  443. os_free(_val);
  444. return 0;
  445. }
  446. static int wpa_config_write_global(struct wpa_config *config, HKEY hk)
  447. {
  448. #ifdef CONFIG_CTRL_IFACE
  449. wpa_config_write_reg_string(hk, "ctrl_interface",
  450. config->ctrl_interface);
  451. #endif /* CONFIG_CTRL_IFACE */
  452. wpa_config_write_reg_dword(hk, TEXT("eapol_version"),
  453. config->eapol_version,
  454. DEFAULT_EAPOL_VERSION);
  455. wpa_config_write_reg_dword(hk, TEXT("ap_scan"), config->ap_scan,
  456. DEFAULT_AP_SCAN);
  457. wpa_config_write_reg_dword(hk, TEXT("fast_reauth"),
  458. config->fast_reauth, DEFAULT_FAST_REAUTH);
  459. wpa_config_write_reg_dword(hk, TEXT("dot11RSNAConfigPMKLifetime"),
  460. config->dot11RSNAConfigPMKLifetime, 0);
  461. wpa_config_write_reg_dword(hk,
  462. TEXT("dot11RSNAConfigPMKReauthThreshold"),
  463. config->dot11RSNAConfigPMKReauthThreshold,
  464. 0);
  465. wpa_config_write_reg_dword(hk, TEXT("dot11RSNAConfigSATimeout"),
  466. config->dot11RSNAConfigSATimeout, 0);
  467. wpa_config_write_reg_dword(hk, TEXT("update_config"),
  468. config->update_config,
  469. 0);
  470. #ifdef CONFIG_WPS
  471. if (!is_nil_uuid(config->uuid)) {
  472. char buf[40];
  473. uuid_bin2str(config->uuid, buf, sizeof(buf));
  474. wpa_config_write_reg_string(hk, "uuid", buf);
  475. }
  476. wpa_config_write_reg_string(hk, "device_name", config->device_name);
  477. wpa_config_write_reg_string(hk, "manufacturer", config->manufacturer);
  478. wpa_config_write_reg_string(hk, "model_name", config->model_name);
  479. wpa_config_write_reg_string(hk, "model_number", config->model_number);
  480. wpa_config_write_reg_string(hk, "serial_number",
  481. config->serial_number);
  482. {
  483. char _buf[WPS_DEV_TYPE_BUFSIZE], *buf;
  484. buf = wps_dev_type_bin2str(config->device_type,
  485. _buf, sizeof(_buf));
  486. wpa_config_write_reg_string(hk, "device_type", buf);
  487. }
  488. wpa_config_write_reg_string(hk, "config_methods",
  489. config->config_methods);
  490. if (WPA_GET_BE32(config->os_version)) {
  491. char vbuf[10];
  492. os_snprintf(vbuf, sizeof(vbuf), "%08x",
  493. WPA_GET_BE32(config->os_version));
  494. wpa_config_write_reg_string(hk, "os_version", vbuf);
  495. }
  496. wpa_config_write_reg_dword(hk, TEXT("wps_cred_processing"),
  497. config->wps_cred_processing, 0);
  498. #endif /* CONFIG_WPS */
  499. #ifdef CONFIG_P2P
  500. wpa_config_write_reg_string(hk, "p2p_ssid_postfix",
  501. config->p2p_ssid_postfix);
  502. wpa_config_write_reg_dword(hk, TEXT("p2p_group_idle"),
  503. config->p2p_group_idle, 0);
  504. #endif /* CONFIG_P2P */
  505. wpa_config_write_reg_dword(hk, TEXT("bss_max_count"),
  506. config->bss_max_count,
  507. DEFAULT_BSS_MAX_COUNT);
  508. wpa_config_write_reg_dword(hk, TEXT("filter_ssids"),
  509. config->filter_ssids, 0);
  510. wpa_config_write_reg_dword(hk, TEXT("max_num_sta"),
  511. config->max_num_sta, DEFAULT_MAX_NUM_STA);
  512. wpa_config_write_reg_dword(hk, TEXT("disassoc_low_ack"),
  513. config->disassoc_low_ack, 0);
  514. return 0;
  515. }
  516. static int wpa_config_delete_subkeys(HKEY hk, const TCHAR *key)
  517. {
  518. HKEY nhk;
  519. int i, errors = 0;
  520. LONG ret;
  521. ret = RegOpenKeyEx(hk, key, 0, KEY_ENUMERATE_SUB_KEYS | DELETE, &nhk);
  522. if (ret != ERROR_SUCCESS) {
  523. wpa_printf(MSG_DEBUG, "WINREG: Could not open key '" TSTR
  524. "' for subkey deletion: error 0x%x (%d)", key,
  525. (unsigned int) ret, (int) GetLastError());
  526. return 0;
  527. }
  528. for (i = 0; ; i++) {
  529. TCHAR name[255];
  530. DWORD namelen;
  531. namelen = 255;
  532. ret = RegEnumKeyEx(nhk, i, name, &namelen, NULL, NULL, NULL,
  533. NULL);
  534. if (ret == ERROR_NO_MORE_ITEMS)
  535. break;
  536. if (ret != ERROR_SUCCESS) {
  537. wpa_printf(MSG_DEBUG, "RegEnumKeyEx failed: 0x%x (%d)",
  538. (unsigned int) ret, (int) GetLastError());
  539. break;
  540. }
  541. if (namelen >= 255)
  542. namelen = 255 - 1;
  543. name[namelen] = TEXT('\0');
  544. ret = RegDeleteKey(nhk, name);
  545. if (ret != ERROR_SUCCESS) {
  546. wpa_printf(MSG_DEBUG, "RegDeleteKey failed: 0x%x (%d)",
  547. (unsigned int) ret, (int) GetLastError());
  548. errors++;
  549. }
  550. }
  551. RegCloseKey(nhk);
  552. return errors ? -1 : 0;
  553. }
  554. static void write_str(HKEY hk, const char *field, struct wpa_ssid *ssid)
  555. {
  556. char *value = wpa_config_get(ssid, field);
  557. if (value == NULL)
  558. return;
  559. wpa_config_write_reg_string(hk, field, value);
  560. os_free(value);
  561. }
  562. static void write_int(HKEY hk, const char *field, int value, int def)
  563. {
  564. char val[20];
  565. if (value == def)
  566. return;
  567. os_snprintf(val, sizeof(val), "%d", value);
  568. wpa_config_write_reg_string(hk, field, val);
  569. }
  570. static void write_bssid(HKEY hk, struct wpa_ssid *ssid)
  571. {
  572. char *value = wpa_config_get(ssid, "bssid");
  573. if (value == NULL)
  574. return;
  575. wpa_config_write_reg_string(hk, "bssid", value);
  576. os_free(value);
  577. }
  578. static void write_psk(HKEY hk, struct wpa_ssid *ssid)
  579. {
  580. char *value = wpa_config_get(ssid, "psk");
  581. if (value == NULL)
  582. return;
  583. wpa_config_write_reg_string(hk, "psk", value);
  584. os_free(value);
  585. }
  586. static void write_proto(HKEY hk, struct wpa_ssid *ssid)
  587. {
  588. char *value;
  589. if (ssid->proto == DEFAULT_PROTO)
  590. return;
  591. value = wpa_config_get(ssid, "proto");
  592. if (value == NULL)
  593. return;
  594. if (value[0])
  595. wpa_config_write_reg_string(hk, "proto", value);
  596. os_free(value);
  597. }
  598. static void write_key_mgmt(HKEY hk, struct wpa_ssid *ssid)
  599. {
  600. char *value;
  601. if (ssid->key_mgmt == DEFAULT_KEY_MGMT)
  602. return;
  603. value = wpa_config_get(ssid, "key_mgmt");
  604. if (value == NULL)
  605. return;
  606. if (value[0])
  607. wpa_config_write_reg_string(hk, "key_mgmt", value);
  608. os_free(value);
  609. }
  610. static void write_pairwise(HKEY hk, struct wpa_ssid *ssid)
  611. {
  612. char *value;
  613. if (ssid->pairwise_cipher == DEFAULT_PAIRWISE)
  614. return;
  615. value = wpa_config_get(ssid, "pairwise");
  616. if (value == NULL)
  617. return;
  618. if (value[0])
  619. wpa_config_write_reg_string(hk, "pairwise", value);
  620. os_free(value);
  621. }
  622. static void write_group(HKEY hk, struct wpa_ssid *ssid)
  623. {
  624. char *value;
  625. if (ssid->group_cipher == DEFAULT_GROUP)
  626. return;
  627. value = wpa_config_get(ssid, "group");
  628. if (value == NULL)
  629. return;
  630. if (value[0])
  631. wpa_config_write_reg_string(hk, "group", value);
  632. os_free(value);
  633. }
  634. static void write_auth_alg(HKEY hk, struct wpa_ssid *ssid)
  635. {
  636. char *value;
  637. if (ssid->auth_alg == 0)
  638. return;
  639. value = wpa_config_get(ssid, "auth_alg");
  640. if (value == NULL)
  641. return;
  642. if (value[0])
  643. wpa_config_write_reg_string(hk, "auth_alg", value);
  644. os_free(value);
  645. }
  646. #ifdef IEEE8021X_EAPOL
  647. static void write_eap(HKEY hk, struct wpa_ssid *ssid)
  648. {
  649. char *value;
  650. value = wpa_config_get(ssid, "eap");
  651. if (value == NULL)
  652. return;
  653. if (value[0])
  654. wpa_config_write_reg_string(hk, "eap", value);
  655. os_free(value);
  656. }
  657. #endif /* IEEE8021X_EAPOL */
  658. static void write_wep_key(HKEY hk, int idx, struct wpa_ssid *ssid)
  659. {
  660. char field[20], *value;
  661. os_snprintf(field, sizeof(field), "wep_key%d", idx);
  662. value = wpa_config_get(ssid, field);
  663. if (value) {
  664. wpa_config_write_reg_string(hk, field, value);
  665. os_free(value);
  666. }
  667. }
  668. static int wpa_config_write_network(HKEY hk, struct wpa_ssid *ssid, int id)
  669. {
  670. int i, errors = 0;
  671. HKEY nhk, netw;
  672. LONG ret;
  673. TCHAR name[5];
  674. ret = RegOpenKeyEx(hk, TEXT("networks"), 0, KEY_CREATE_SUB_KEY, &nhk);
  675. if (ret != ERROR_SUCCESS) {
  676. wpa_printf(MSG_DEBUG, "WINREG: Could not open networks key "
  677. "for subkey addition: error 0x%x (%d)",
  678. (unsigned int) ret, (int) GetLastError());
  679. return 0;
  680. }
  681. #ifdef UNICODE
  682. wsprintf(name, L"%04d", id);
  683. #else /* UNICODE */
  684. os_snprintf(name, sizeof(name), "%04d", id);
  685. #endif /* UNICODE */
  686. ret = RegCreateKeyEx(nhk, name, 0, NULL, 0, KEY_WRITE, NULL, &netw,
  687. NULL);
  688. RegCloseKey(nhk);
  689. if (ret != ERROR_SUCCESS) {
  690. wpa_printf(MSG_DEBUG, "WINREG: Could not add network key '%s':"
  691. " error 0x%x (%d)",
  692. name, (unsigned int) ret, (int) GetLastError());
  693. return -1;
  694. }
  695. #define STR(t) write_str(netw, #t, ssid)
  696. #define INT(t) write_int(netw, #t, ssid->t, 0)
  697. #define INTe(t) write_int(netw, #t, ssid->eap.t, 0)
  698. #define INT_DEF(t, def) write_int(netw, #t, ssid->t, def)
  699. #define INT_DEFe(t, def) write_int(netw, #t, ssid->eap.t, def)
  700. STR(ssid);
  701. INT(scan_ssid);
  702. write_bssid(netw, ssid);
  703. write_psk(netw, ssid);
  704. write_proto(netw, ssid);
  705. write_key_mgmt(netw, ssid);
  706. write_pairwise(netw, ssid);
  707. write_group(netw, ssid);
  708. write_auth_alg(netw, ssid);
  709. #ifdef IEEE8021X_EAPOL
  710. write_eap(netw, ssid);
  711. STR(identity);
  712. STR(anonymous_identity);
  713. STR(password);
  714. STR(ca_cert);
  715. STR(ca_path);
  716. STR(client_cert);
  717. STR(private_key);
  718. STR(private_key_passwd);
  719. STR(dh_file);
  720. STR(subject_match);
  721. STR(altsubject_match);
  722. STR(ca_cert2);
  723. STR(ca_path2);
  724. STR(client_cert2);
  725. STR(private_key2);
  726. STR(private_key2_passwd);
  727. STR(dh_file2);
  728. STR(subject_match2);
  729. STR(altsubject_match2);
  730. STR(phase1);
  731. STR(phase2);
  732. STR(pcsc);
  733. STR(pin);
  734. STR(engine_id);
  735. STR(key_id);
  736. STR(cert_id);
  737. STR(ca_cert_id);
  738. STR(key2_id);
  739. STR(pin2);
  740. STR(engine2_id);
  741. STR(cert2_id);
  742. STR(ca_cert2_id);
  743. INTe(engine);
  744. INTe(engine2);
  745. INT_DEF(eapol_flags, DEFAULT_EAPOL_FLAGS);
  746. #endif /* IEEE8021X_EAPOL */
  747. for (i = 0; i < 4; i++)
  748. write_wep_key(netw, i, ssid);
  749. INT(wep_tx_keyidx);
  750. INT(priority);
  751. #ifdef IEEE8021X_EAPOL
  752. INT_DEF(eap_workaround, DEFAULT_EAP_WORKAROUND);
  753. STR(pac_file);
  754. INT_DEFe(fragment_size, DEFAULT_FRAGMENT_SIZE);
  755. #endif /* IEEE8021X_EAPOL */
  756. INT(mode);
  757. INT(proactive_key_caching);
  758. INT(disabled);
  759. INT(peerkey);
  760. #ifdef CONFIG_IEEE80211W
  761. INT(ieee80211w);
  762. #endif /* CONFIG_IEEE80211W */
  763. STR(id_str);
  764. #undef STR
  765. #undef INT
  766. #undef INT_DEF
  767. RegCloseKey(netw);
  768. return errors ? -1 : 0;
  769. }
  770. static int wpa_config_write_blob(HKEY hk, struct wpa_config_blob *blob)
  771. {
  772. HKEY bhk;
  773. LONG ret;
  774. TCHAR *name;
  775. ret = RegCreateKeyEx(hk, TEXT("blobs"), 0, NULL, 0, KEY_WRITE, NULL,
  776. &bhk, NULL);
  777. if (ret != ERROR_SUCCESS) {
  778. wpa_printf(MSG_DEBUG, "WINREG: Could not add blobs key: "
  779. "error 0x%x (%d)",
  780. (unsigned int) ret, (int) GetLastError());
  781. return -1;
  782. }
  783. name = wpa_strdup_tchar(blob->name);
  784. ret = RegSetValueEx(bhk, name, 0, REG_BINARY, blob->data,
  785. blob->len);
  786. if (ret != ERROR_SUCCESS) {
  787. wpa_printf(MSG_ERROR, "WINREG: Failed to set blob %s': "
  788. "error 0x%x (%d)", blob->name, (unsigned int) ret,
  789. (int) GetLastError());
  790. RegCloseKey(bhk);
  791. os_free(name);
  792. return -1;
  793. }
  794. os_free(name);
  795. RegCloseKey(bhk);
  796. return 0;
  797. }
  798. int wpa_config_write(const char *name, struct wpa_config *config)
  799. {
  800. TCHAR buf[256];
  801. HKEY hk;
  802. LONG ret;
  803. int errors = 0;
  804. struct wpa_ssid *ssid;
  805. struct wpa_config_blob *blob;
  806. int id;
  807. wpa_printf(MSG_DEBUG, "Writing configuration file '%s'", name);
  808. #ifdef UNICODE
  809. _snwprintf(buf, 256, WPA_KEY_PREFIX TEXT("\\configs\\%S"), name);
  810. #else /* UNICODE */
  811. os_snprintf(buf, 256, WPA_KEY_PREFIX TEXT("\\configs\\%s"), name);
  812. #endif /* UNICODE */
  813. ret = RegOpenKeyEx(WPA_KEY_ROOT, buf, 0, KEY_SET_VALUE | DELETE, &hk);
  814. if (ret != ERROR_SUCCESS) {
  815. wpa_printf(MSG_ERROR, "Could not open wpa_supplicant "
  816. "configuration registry %s: error %d", buf,
  817. (int) GetLastError());
  818. return -1;
  819. }
  820. if (wpa_config_write_global(config, hk)) {
  821. wpa_printf(MSG_ERROR, "Failed to write global configuration "
  822. "data");
  823. errors++;
  824. }
  825. wpa_config_delete_subkeys(hk, TEXT("networks"));
  826. for (ssid = config->ssid, id = 0; ssid; ssid = ssid->next, id++) {
  827. if (ssid->key_mgmt == WPA_KEY_MGMT_WPS)
  828. continue; /* do not save temporary WPS networks */
  829. if (wpa_config_write_network(hk, ssid, id))
  830. errors++;
  831. }
  832. RegDeleteKey(hk, TEXT("blobs"));
  833. for (blob = config->blobs; blob; blob = blob->next) {
  834. if (wpa_config_write_blob(hk, blob))
  835. errors++;
  836. }
  837. RegCloseKey(hk);
  838. wpa_printf(MSG_DEBUG, "Configuration '%s' written %ssuccessfully",
  839. name, errors ? "un" : "");
  840. return errors ? -1 : 0;
  841. }