driver_hostap.c 29 KB

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  1. /*
  2. * hostapd / Kernel driver communication with Linux Host AP driver
  3. * Copyright (c) 2002-2007, Jouni Malinen <j@w1.fi>
  4. *
  5. * This program is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License version 2 as
  7. * published by the Free Software Foundation.
  8. *
  9. * Alternatively, this software may be distributed under the terms of BSD
  10. * license.
  11. *
  12. * See README and COPYING for more details.
  13. */
  14. #include "includes.h"
  15. #include <sys/ioctl.h>
  16. #ifdef USE_KERNEL_HEADERS
  17. /* compat-wireless does not include linux/compiler.h to define __user, so
  18. * define it here */
  19. #ifndef __user
  20. #define __user
  21. #endif /* __user */
  22. #include <asm/types.h>
  23. #include <linux/if_packet.h>
  24. #include <linux/if_ether.h> /* The L2 protocols */
  25. #include <linux/if_arp.h>
  26. #include <linux/wireless.h>
  27. #else /* USE_KERNEL_HEADERS */
  28. #include <net/if_arp.h>
  29. #include <netpacket/packet.h>
  30. #include "wireless_copy.h"
  31. #endif /* USE_KERNEL_HEADERS */
  32. #include "hostapd.h"
  33. #include "driver.h"
  34. #include "ieee802_1x.h"
  35. #include "eloop.h"
  36. #include "priv_netlink.h"
  37. #include "ieee802_11.h"
  38. #include "sta_info.h"
  39. #include "hostap_common.h"
  40. #include "hw_features.h"
  41. struct hostap_driver_data {
  42. struct hostapd_data *hapd;
  43. char iface[IFNAMSIZ + 1];
  44. int sock; /* raw packet socket for driver access */
  45. int ioctl_sock; /* socket for ioctl() use */
  46. int wext_sock; /* socket for wireless events */
  47. int we_version;
  48. u8 *generic_ie;
  49. size_t generic_ie_len;
  50. };
  51. static int hostapd_ioctl(void *priv, struct prism2_hostapd_param *param,
  52. int len);
  53. static int hostap_set_iface_flags(void *priv, int dev_up);
  54. static void handle_data(struct hostapd_data *hapd, u8 *buf, size_t len,
  55. u16 stype)
  56. {
  57. struct ieee80211_hdr *hdr;
  58. u16 fc, ethertype;
  59. u8 *pos, *sa;
  60. size_t left;
  61. struct sta_info *sta;
  62. if (len < sizeof(struct ieee80211_hdr))
  63. return;
  64. hdr = (struct ieee80211_hdr *) buf;
  65. fc = le_to_host16(hdr->frame_control);
  66. if ((fc & (WLAN_FC_FROMDS | WLAN_FC_TODS)) != WLAN_FC_TODS) {
  67. printf("Not ToDS data frame (fc=0x%04x)\n", fc);
  68. return;
  69. }
  70. sa = hdr->addr2;
  71. sta = ap_get_sta(hapd, sa);
  72. if (!sta || !(sta->flags & WLAN_STA_ASSOC)) {
  73. printf("Data frame from not associated STA " MACSTR "\n",
  74. MAC2STR(sa));
  75. if (sta && (sta->flags & WLAN_STA_AUTH))
  76. hostapd_sta_disassoc(
  77. hapd, sa,
  78. WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
  79. else
  80. hostapd_sta_deauth(
  81. hapd, sa,
  82. WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
  83. return;
  84. }
  85. pos = (u8 *) (hdr + 1);
  86. left = len - sizeof(*hdr);
  87. if (left < sizeof(rfc1042_header)) {
  88. printf("Too short data frame\n");
  89. return;
  90. }
  91. if (memcmp(pos, rfc1042_header, sizeof(rfc1042_header)) != 0) {
  92. printf("Data frame with no RFC1042 header\n");
  93. return;
  94. }
  95. pos += sizeof(rfc1042_header);
  96. left -= sizeof(rfc1042_header);
  97. if (left < 2) {
  98. printf("No ethertype in data frame\n");
  99. return;
  100. }
  101. ethertype = WPA_GET_BE16(pos);
  102. pos += 2;
  103. left -= 2;
  104. switch (ethertype) {
  105. case ETH_P_PAE:
  106. ieee802_1x_receive(hapd, sa, pos, left);
  107. break;
  108. default:
  109. printf("Unknown ethertype 0x%04x in data frame\n", ethertype);
  110. break;
  111. }
  112. }
  113. static void handle_tx_callback(struct hostapd_data *hapd, u8 *buf, size_t len,
  114. int ok)
  115. {
  116. struct ieee80211_hdr *hdr;
  117. u16 fc, type, stype;
  118. struct sta_info *sta;
  119. hdr = (struct ieee80211_hdr *) buf;
  120. fc = le_to_host16(hdr->frame_control);
  121. type = WLAN_FC_GET_TYPE(fc);
  122. stype = WLAN_FC_GET_STYPE(fc);
  123. switch (type) {
  124. case WLAN_FC_TYPE_MGMT:
  125. wpa_printf(MSG_DEBUG, "MGMT (TX callback) %s",
  126. ok ? "ACK" : "fail");
  127. ieee802_11_mgmt_cb(hapd, buf, len, stype, ok);
  128. break;
  129. case WLAN_FC_TYPE_CTRL:
  130. wpa_printf(MSG_DEBUG, "CTRL (TX callback) %s",
  131. ok ? "ACK" : "fail");
  132. break;
  133. case WLAN_FC_TYPE_DATA:
  134. wpa_printf(MSG_DEBUG, "DATA (TX callback) %s",
  135. ok ? "ACK" : "fail");
  136. sta = ap_get_sta(hapd, hdr->addr1);
  137. if (sta && sta->flags & WLAN_STA_PENDING_POLL) {
  138. wpa_printf(MSG_DEBUG, "STA " MACSTR
  139. " %s pending activity poll",
  140. MAC2STR(sta->addr),
  141. ok ? "ACKed" : "did not ACK");
  142. if (ok)
  143. sta->flags &= ~WLAN_STA_PENDING_POLL;
  144. }
  145. if (sta)
  146. ieee802_1x_tx_status(hapd, sta, buf, len, ok);
  147. break;
  148. default:
  149. printf("unknown TX callback frame type %d\n", type);
  150. break;
  151. }
  152. }
  153. static void handle_frame(struct hostapd_data *hapd, u8 *buf, size_t len)
  154. {
  155. struct ieee80211_hdr *hdr;
  156. u16 fc, extra_len, type, stype;
  157. unsigned char *extra = NULL;
  158. size_t data_len = len;
  159. int ver;
  160. /* PSPOLL is only 16 bytes, but driver does not (at least yet) pass
  161. * these to user space */
  162. if (len < 24) {
  163. wpa_printf(MSG_MSGDUMP, "handle_frame: too short (%lu)",
  164. (unsigned long) len);
  165. return;
  166. }
  167. hdr = (struct ieee80211_hdr *) buf;
  168. fc = le_to_host16(hdr->frame_control);
  169. type = WLAN_FC_GET_TYPE(fc);
  170. stype = WLAN_FC_GET_STYPE(fc);
  171. if (type != WLAN_FC_TYPE_MGMT || stype != WLAN_FC_STYPE_BEACON) {
  172. wpa_hexdump(MSG_MSGDUMP, "Received management frame",
  173. buf, len);
  174. }
  175. ver = fc & WLAN_FC_PVER;
  176. /* protocol version 3 is reserved for indicating extra data after the
  177. * payload, version 2 for indicating ACKed frame (TX callbacks), and
  178. * version 1 for indicating failed frame (no ACK, TX callbacks) */
  179. if (ver == 3) {
  180. u8 *pos = buf + len - 2;
  181. extra_len = WPA_GET_LE16(pos);
  182. printf("extra data in frame (elen=%d)\n", extra_len);
  183. if ((size_t) extra_len + 2 > len) {
  184. printf(" extra data overflow\n");
  185. return;
  186. }
  187. len -= extra_len + 2;
  188. extra = buf + len;
  189. } else if (ver == 1 || ver == 2) {
  190. handle_tx_callback(hapd, buf, data_len, ver == 2 ? 1 : 0);
  191. return;
  192. } else if (ver != 0) {
  193. printf("unknown protocol version %d\n", ver);
  194. return;
  195. }
  196. switch (type) {
  197. case WLAN_FC_TYPE_MGMT:
  198. if (stype != WLAN_FC_STYPE_BEACON)
  199. wpa_printf(MSG_MSGDUMP, "MGMT");
  200. ieee802_11_mgmt(hapd, buf, data_len, stype, NULL);
  201. break;
  202. case WLAN_FC_TYPE_CTRL:
  203. wpa_printf(MSG_DEBUG, "CTRL");
  204. break;
  205. case WLAN_FC_TYPE_DATA:
  206. wpa_printf(MSG_DEBUG, "DATA");
  207. handle_data(hapd, buf, data_len, stype);
  208. break;
  209. default:
  210. wpa_printf(MSG_DEBUG, "unknown frame type %d", type);
  211. break;
  212. }
  213. }
  214. static void handle_read(int sock, void *eloop_ctx, void *sock_ctx)
  215. {
  216. struct hostapd_data *hapd = (struct hostapd_data *) eloop_ctx;
  217. int len;
  218. unsigned char buf[3000];
  219. len = recv(sock, buf, sizeof(buf), 0);
  220. if (len < 0) {
  221. perror("recv");
  222. return;
  223. }
  224. handle_frame(hapd, buf, len);
  225. }
  226. static int hostap_init_sockets(struct hostap_driver_data *drv)
  227. {
  228. struct ifreq ifr;
  229. struct sockaddr_ll addr;
  230. drv->sock = socket(PF_PACKET, SOCK_RAW, htons(ETH_P_ALL));
  231. if (drv->sock < 0) {
  232. perror("socket[PF_PACKET,SOCK_RAW]");
  233. return -1;
  234. }
  235. if (eloop_register_read_sock(drv->sock, handle_read, drv->hapd, NULL))
  236. {
  237. printf("Could not register read socket\n");
  238. return -1;
  239. }
  240. memset(&ifr, 0, sizeof(ifr));
  241. snprintf(ifr.ifr_name, sizeof(ifr.ifr_name), "%sap", drv->iface);
  242. if (ioctl(drv->sock, SIOCGIFINDEX, &ifr) != 0) {
  243. perror("ioctl(SIOCGIFINDEX)");
  244. return -1;
  245. }
  246. if (hostap_set_iface_flags(drv, 1)) {
  247. return -1;
  248. }
  249. memset(&addr, 0, sizeof(addr));
  250. addr.sll_family = AF_PACKET;
  251. addr.sll_ifindex = ifr.ifr_ifindex;
  252. wpa_printf(MSG_DEBUG, "Opening raw packet socket for ifindex %d",
  253. addr.sll_ifindex);
  254. if (bind(drv->sock, (struct sockaddr *) &addr, sizeof(addr)) < 0) {
  255. perror("bind");
  256. return -1;
  257. }
  258. memset(&ifr, 0, sizeof(ifr));
  259. os_strlcpy(ifr.ifr_name, drv->iface, sizeof(ifr.ifr_name));
  260. if (ioctl(drv->sock, SIOCGIFHWADDR, &ifr) != 0) {
  261. perror("ioctl(SIOCGIFHWADDR)");
  262. return -1;
  263. }
  264. if (ifr.ifr_hwaddr.sa_family != ARPHRD_ETHER) {
  265. printf("Invalid HW-addr family 0x%04x\n",
  266. ifr.ifr_hwaddr.sa_family);
  267. return -1;
  268. }
  269. memcpy(drv->hapd->own_addr, ifr.ifr_hwaddr.sa_data, ETH_ALEN);
  270. return 0;
  271. }
  272. static int hostap_send_mgmt_frame(void *priv, const void *msg, size_t len,
  273. int flags)
  274. {
  275. struct hostap_driver_data *drv = priv;
  276. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) msg;
  277. int res;
  278. /* Request TX callback */
  279. hdr->frame_control |= host_to_le16(BIT(1));
  280. res = send(drv->sock, msg, len, flags);
  281. hdr->frame_control &= ~host_to_le16(BIT(1));
  282. return res;
  283. }
  284. static int hostap_send_eapol(void *priv, const u8 *addr, const u8 *data,
  285. size_t data_len, int encrypt, const u8 *own_addr)
  286. {
  287. struct hostap_driver_data *drv = priv;
  288. struct ieee80211_hdr *hdr;
  289. size_t len;
  290. u8 *pos;
  291. int res;
  292. len = sizeof(*hdr) + sizeof(rfc1042_header) + 2 + data_len;
  293. hdr = os_zalloc(len);
  294. if (hdr == NULL) {
  295. printf("malloc() failed for hostapd_send_data(len=%lu)\n",
  296. (unsigned long) len);
  297. return -1;
  298. }
  299. hdr->frame_control =
  300. IEEE80211_FC(WLAN_FC_TYPE_DATA, WLAN_FC_STYPE_DATA);
  301. hdr->frame_control |= host_to_le16(WLAN_FC_FROMDS);
  302. if (encrypt)
  303. hdr->frame_control |= host_to_le16(WLAN_FC_ISWEP);
  304. memcpy(hdr->IEEE80211_DA_FROMDS, addr, ETH_ALEN);
  305. memcpy(hdr->IEEE80211_BSSID_FROMDS, own_addr, ETH_ALEN);
  306. memcpy(hdr->IEEE80211_SA_FROMDS, own_addr, ETH_ALEN);
  307. pos = (u8 *) (hdr + 1);
  308. memcpy(pos, rfc1042_header, sizeof(rfc1042_header));
  309. pos += sizeof(rfc1042_header);
  310. *((u16 *) pos) = htons(ETH_P_PAE);
  311. pos += 2;
  312. memcpy(pos, data, data_len);
  313. res = hostap_send_mgmt_frame(drv, (u8 *) hdr, len, 0);
  314. free(hdr);
  315. if (res < 0) {
  316. perror("hostapd_send_eapol: send");
  317. printf("hostapd_send_eapol - packet len: %lu - failed\n",
  318. (unsigned long) len);
  319. }
  320. return res;
  321. }
  322. static int hostap_sta_set_flags(void *priv, const u8 *addr,
  323. int total_flags, int flags_or, int flags_and)
  324. {
  325. struct hostap_driver_data *drv = priv;
  326. struct prism2_hostapd_param param;
  327. memset(&param, 0, sizeof(param));
  328. param.cmd = PRISM2_HOSTAPD_SET_FLAGS_STA;
  329. memcpy(param.sta_addr, addr, ETH_ALEN);
  330. param.u.set_flags_sta.flags_or = flags_or;
  331. param.u.set_flags_sta.flags_and = flags_and;
  332. return hostapd_ioctl(drv, &param, sizeof(param));
  333. }
  334. static int hostap_set_iface_flags(void *priv, int dev_up)
  335. {
  336. struct hostap_driver_data *drv = priv;
  337. struct ifreq ifr;
  338. if (drv->ioctl_sock < 0)
  339. return -1;
  340. memset(&ifr, 0, sizeof(ifr));
  341. snprintf(ifr.ifr_name, IFNAMSIZ, "%sap", drv->iface);
  342. if (ioctl(drv->ioctl_sock, SIOCGIFFLAGS, &ifr) != 0) {
  343. perror("ioctl[SIOCGIFFLAGS]");
  344. return -1;
  345. }
  346. if (dev_up)
  347. ifr.ifr_flags |= IFF_UP;
  348. else
  349. ifr.ifr_flags &= ~IFF_UP;
  350. if (ioctl(drv->ioctl_sock, SIOCSIFFLAGS, &ifr) != 0) {
  351. perror("ioctl[SIOCSIFFLAGS]");
  352. return -1;
  353. }
  354. if (dev_up) {
  355. memset(&ifr, 0, sizeof(ifr));
  356. snprintf(ifr.ifr_name, IFNAMSIZ, "%sap", drv->iface);
  357. ifr.ifr_mtu = HOSTAPD_MTU;
  358. if (ioctl(drv->ioctl_sock, SIOCSIFMTU, &ifr) != 0) {
  359. perror("ioctl[SIOCSIFMTU]");
  360. printf("Setting MTU failed - trying to survive with "
  361. "current value\n");
  362. }
  363. }
  364. return 0;
  365. }
  366. static int hostapd_ioctl(void *priv, struct prism2_hostapd_param *param,
  367. int len)
  368. {
  369. struct hostap_driver_data *drv = priv;
  370. struct iwreq iwr;
  371. memset(&iwr, 0, sizeof(iwr));
  372. os_strlcpy(iwr.ifr_name, drv->iface, IFNAMSIZ);
  373. iwr.u.data.pointer = (caddr_t) param;
  374. iwr.u.data.length = len;
  375. if (ioctl(drv->ioctl_sock, PRISM2_IOCTL_HOSTAPD, &iwr) < 0) {
  376. perror("ioctl[PRISM2_IOCTL_HOSTAPD]");
  377. return -1;
  378. }
  379. return 0;
  380. }
  381. static int hostap_set_encryption(const char *ifname, void *priv,
  382. const char *alg, const u8 *addr,
  383. int idx, const u8 *key, size_t key_len,
  384. int txkey)
  385. {
  386. struct hostap_driver_data *drv = priv;
  387. struct prism2_hostapd_param *param;
  388. u8 *buf;
  389. size_t blen;
  390. int ret = 0;
  391. blen = sizeof(*param) + key_len;
  392. buf = os_zalloc(blen);
  393. if (buf == NULL)
  394. return -1;
  395. param = (struct prism2_hostapd_param *) buf;
  396. param->cmd = PRISM2_SET_ENCRYPTION;
  397. if (addr == NULL)
  398. memset(param->sta_addr, 0xff, ETH_ALEN);
  399. else
  400. memcpy(param->sta_addr, addr, ETH_ALEN);
  401. os_strlcpy((char *) param->u.crypt.alg, alg,
  402. HOSTAP_CRYPT_ALG_NAME_LEN);
  403. param->u.crypt.flags = txkey ? HOSTAP_CRYPT_FLAG_SET_TX_KEY : 0;
  404. param->u.crypt.idx = idx;
  405. param->u.crypt.key_len = key_len;
  406. memcpy((u8 *) (param + 1), key, key_len);
  407. if (hostapd_ioctl(drv, param, blen)) {
  408. printf("Failed to set encryption.\n");
  409. ret = -1;
  410. }
  411. free(buf);
  412. return ret;
  413. }
  414. static int hostap_get_seqnum(const char *ifname, void *priv, const u8 *addr,
  415. int idx, u8 *seq)
  416. {
  417. struct hostap_driver_data *drv = priv;
  418. struct prism2_hostapd_param *param;
  419. u8 *buf;
  420. size_t blen;
  421. int ret = 0;
  422. blen = sizeof(*param) + 32;
  423. buf = os_zalloc(blen);
  424. if (buf == NULL)
  425. return -1;
  426. param = (struct prism2_hostapd_param *) buf;
  427. param->cmd = PRISM2_GET_ENCRYPTION;
  428. if (addr == NULL)
  429. memset(param->sta_addr, 0xff, ETH_ALEN);
  430. else
  431. memcpy(param->sta_addr, addr, ETH_ALEN);
  432. param->u.crypt.idx = idx;
  433. if (hostapd_ioctl(drv, param, blen)) {
  434. printf("Failed to get encryption.\n");
  435. ret = -1;
  436. } else {
  437. memcpy(seq, param->u.crypt.seq, 8);
  438. }
  439. free(buf);
  440. return ret;
  441. }
  442. static int hostap_ioctl_prism2param(void *priv, int param, int value)
  443. {
  444. struct hostap_driver_data *drv = priv;
  445. struct iwreq iwr;
  446. int *i;
  447. memset(&iwr, 0, sizeof(iwr));
  448. os_strlcpy(iwr.ifr_name, drv->iface, IFNAMSIZ);
  449. i = (int *) iwr.u.name;
  450. *i++ = param;
  451. *i++ = value;
  452. if (ioctl(drv->ioctl_sock, PRISM2_IOCTL_PRISM2_PARAM, &iwr) < 0) {
  453. perror("ioctl[PRISM2_IOCTL_PRISM2_PARAM]");
  454. return -1;
  455. }
  456. return 0;
  457. }
  458. static int hostap_set_ieee8021x(const char *ifname, void *priv, int enabled)
  459. {
  460. struct hostap_driver_data *drv = priv;
  461. /* enable kernel driver support for IEEE 802.1X */
  462. if (hostap_ioctl_prism2param(drv, PRISM2_PARAM_IEEE_802_1X, enabled)) {
  463. printf("Could not setup IEEE 802.1X support in kernel driver."
  464. "\n");
  465. return -1;
  466. }
  467. if (!enabled)
  468. return 0;
  469. /* use host driver implementation of encryption to allow
  470. * individual keys and passing plaintext EAPOL frames */
  471. if (hostap_ioctl_prism2param(drv, PRISM2_PARAM_HOST_DECRYPT, 1) ||
  472. hostap_ioctl_prism2param(drv, PRISM2_PARAM_HOST_ENCRYPT, 1)) {
  473. printf("Could not setup host-based encryption in kernel "
  474. "driver.\n");
  475. return -1;
  476. }
  477. return 0;
  478. }
  479. static int hostap_set_privacy(const char *ifname, void *priv, int enabled)
  480. {
  481. struct hostap_drvier_data *drv = priv;
  482. return hostap_ioctl_prism2param(drv, PRISM2_PARAM_PRIVACY_INVOKED,
  483. enabled);
  484. }
  485. static int hostap_set_ssid(const char *ifname, void *priv, const u8 *buf,
  486. int len)
  487. {
  488. struct hostap_driver_data *drv = priv;
  489. struct iwreq iwr;
  490. memset(&iwr, 0, sizeof(iwr));
  491. os_strlcpy(iwr.ifr_name, drv->iface, IFNAMSIZ);
  492. iwr.u.essid.flags = 1; /* SSID active */
  493. iwr.u.essid.pointer = (caddr_t) buf;
  494. iwr.u.essid.length = len + 1;
  495. if (ioctl(drv->ioctl_sock, SIOCSIWESSID, &iwr) < 0) {
  496. perror("ioctl[SIOCSIWESSID]");
  497. printf("len=%d\n", len);
  498. return -1;
  499. }
  500. return 0;
  501. }
  502. static int hostap_flush(void *priv)
  503. {
  504. struct hostap_driver_data *drv = priv;
  505. struct prism2_hostapd_param param;
  506. memset(&param, 0, sizeof(param));
  507. param.cmd = PRISM2_HOSTAPD_FLUSH;
  508. return hostapd_ioctl(drv, &param, sizeof(param));
  509. }
  510. static int hostap_read_sta_data(void *priv,
  511. struct hostap_sta_driver_data *data,
  512. const u8 *addr)
  513. {
  514. struct hostap_driver_data *drv = priv;
  515. char buf[1024], line[128], *pos;
  516. FILE *f;
  517. unsigned long val;
  518. memset(data, 0, sizeof(*data));
  519. snprintf(buf, sizeof(buf), "/proc/net/hostap/%s/" MACSTR,
  520. drv->iface, MAC2STR(addr));
  521. f = fopen(buf, "r");
  522. if (!f)
  523. return -1;
  524. /* Need to read proc file with in one piece, so use large enough
  525. * buffer. */
  526. setbuffer(f, buf, sizeof(buf));
  527. while (fgets(line, sizeof(line), f)) {
  528. pos = strchr(line, '=');
  529. if (!pos)
  530. continue;
  531. *pos++ = '\0';
  532. val = strtoul(pos, NULL, 10);
  533. if (strcmp(line, "rx_packets") == 0)
  534. data->rx_packets = val;
  535. else if (strcmp(line, "tx_packets") == 0)
  536. data->tx_packets = val;
  537. else if (strcmp(line, "rx_bytes") == 0)
  538. data->rx_bytes = val;
  539. else if (strcmp(line, "tx_bytes") == 0)
  540. data->tx_bytes = val;
  541. }
  542. fclose(f);
  543. return 0;
  544. }
  545. static int hostap_sta_add(const char *ifname, void *priv, const u8 *addr,
  546. u16 aid, u16 capability, u8 *supp_rates,
  547. size_t supp_rates_len, int flags,
  548. u16 listen_interval)
  549. {
  550. struct hostap_driver_data *drv = priv;
  551. struct prism2_hostapd_param param;
  552. int tx_supp_rates = 0;
  553. size_t i;
  554. #define WLAN_RATE_1M BIT(0)
  555. #define WLAN_RATE_2M BIT(1)
  556. #define WLAN_RATE_5M5 BIT(2)
  557. #define WLAN_RATE_11M BIT(3)
  558. for (i = 0; i < supp_rates_len; i++) {
  559. if ((supp_rates[i] & 0x7f) == 2)
  560. tx_supp_rates |= WLAN_RATE_1M;
  561. if ((supp_rates[i] & 0x7f) == 4)
  562. tx_supp_rates |= WLAN_RATE_2M;
  563. if ((supp_rates[i] & 0x7f) == 11)
  564. tx_supp_rates |= WLAN_RATE_5M5;
  565. if ((supp_rates[i] & 0x7f) == 22)
  566. tx_supp_rates |= WLAN_RATE_11M;
  567. }
  568. memset(&param, 0, sizeof(param));
  569. param.cmd = PRISM2_HOSTAPD_ADD_STA;
  570. memcpy(param.sta_addr, addr, ETH_ALEN);
  571. param.u.add_sta.aid = aid;
  572. param.u.add_sta.capability = capability;
  573. param.u.add_sta.tx_supp_rates = tx_supp_rates;
  574. return hostapd_ioctl(drv, &param, sizeof(param));
  575. }
  576. static int hostap_sta_remove(void *priv, const u8 *addr)
  577. {
  578. struct hostap_driver_data *drv = priv;
  579. struct prism2_hostapd_param param;
  580. hostap_sta_set_flags(drv, addr, 0, 0, ~WLAN_STA_AUTHORIZED);
  581. memset(&param, 0, sizeof(param));
  582. param.cmd = PRISM2_HOSTAPD_REMOVE_STA;
  583. memcpy(param.sta_addr, addr, ETH_ALEN);
  584. if (hostapd_ioctl(drv, &param, sizeof(param))) {
  585. printf("Could not remove station from kernel driver.\n");
  586. return -1;
  587. }
  588. return 0;
  589. }
  590. static int hostap_get_inact_sec(void *priv, const u8 *addr)
  591. {
  592. struct hostap_driver_data *drv = priv;
  593. struct prism2_hostapd_param param;
  594. memset(&param, 0, sizeof(param));
  595. param.cmd = PRISM2_HOSTAPD_GET_INFO_STA;
  596. memcpy(param.sta_addr, addr, ETH_ALEN);
  597. if (hostapd_ioctl(drv, &param, sizeof(param))) {
  598. return -1;
  599. }
  600. return param.u.get_info_sta.inactive_sec;
  601. }
  602. static int hostap_sta_clear_stats(void *priv, const u8 *addr)
  603. {
  604. struct hostap_driver_data *drv = priv;
  605. struct prism2_hostapd_param param;
  606. memset(&param, 0, sizeof(param));
  607. param.cmd = PRISM2_HOSTAPD_STA_CLEAR_STATS;
  608. memcpy(param.sta_addr, addr, ETH_ALEN);
  609. if (hostapd_ioctl(drv, &param, sizeof(param))) {
  610. return -1;
  611. }
  612. return 0;
  613. }
  614. static int hostap_set_assoc_ap(void *priv, const u8 *addr)
  615. {
  616. struct hostap_driver_data *drv = priv;
  617. struct prism2_hostapd_param param;
  618. memset(&param, 0, sizeof(param));
  619. param.cmd = PRISM2_HOSTAPD_SET_ASSOC_AP_ADDR;
  620. memcpy(param.sta_addr, addr, ETH_ALEN);
  621. if (hostapd_ioctl(drv, &param, sizeof(param)))
  622. return -1;
  623. return 0;
  624. }
  625. static int hostapd_ioctl_set_generic_elem(struct hostap_driver_data *drv)
  626. {
  627. struct prism2_hostapd_param *param;
  628. int res;
  629. size_t blen, elem_len;
  630. elem_len = drv->generic_ie_len;
  631. blen = PRISM2_HOSTAPD_GENERIC_ELEMENT_HDR_LEN + elem_len;
  632. if (blen < sizeof(*param))
  633. blen = sizeof(*param);
  634. param = os_zalloc(blen);
  635. if (param == NULL)
  636. return -1;
  637. param->cmd = PRISM2_HOSTAPD_SET_GENERIC_ELEMENT;
  638. param->u.generic_elem.len = elem_len;
  639. if (drv->generic_ie) {
  640. os_memcpy(param->u.generic_elem.data, drv->generic_ie,
  641. drv->generic_ie_len);
  642. }
  643. wpa_hexdump(MSG_DEBUG, "hostap: Set generic IE",
  644. param->u.generic_elem.data, elem_len);
  645. res = hostapd_ioctl(drv, param, blen);
  646. os_free(param);
  647. return res;
  648. }
  649. static int hostap_set_generic_elem(const char *ifname, void *priv,
  650. const u8 *elem, size_t elem_len)
  651. {
  652. struct hostap_driver_data *drv = priv;
  653. os_free(drv->generic_ie);
  654. drv->generic_ie = NULL;
  655. drv->generic_ie_len = 0;
  656. if (elem) {
  657. drv->generic_ie = os_malloc(elem_len);
  658. if (drv->generic_ie == NULL)
  659. return -1;
  660. os_memcpy(drv->generic_ie, elem, elem_len);
  661. drv->generic_ie_len = elem_len;
  662. }
  663. return hostapd_ioctl_set_generic_elem(drv);
  664. }
  665. static void
  666. hostapd_wireless_event_wireless_custom(struct hostap_driver_data *drv,
  667. char *custom)
  668. {
  669. wpa_printf(MSG_DEBUG, "Custom wireless event: '%s'", custom);
  670. if (strncmp(custom, "MLME-MICHAELMICFAILURE.indication", 33) == 0) {
  671. char *pos;
  672. u8 addr[ETH_ALEN];
  673. pos = strstr(custom, "addr=");
  674. if (pos == NULL) {
  675. wpa_printf(MSG_DEBUG,
  676. "MLME-MICHAELMICFAILURE.indication "
  677. "without sender address ignored");
  678. return;
  679. }
  680. pos += 5;
  681. if (hwaddr_aton(pos, addr) == 0) {
  682. ieee80211_michael_mic_failure(drv->hapd, addr, 1);
  683. } else {
  684. wpa_printf(MSG_DEBUG,
  685. "MLME-MICHAELMICFAILURE.indication "
  686. "with invalid MAC address");
  687. }
  688. }
  689. }
  690. static void hostapd_wireless_event_wireless(struct hostap_driver_data *drv,
  691. char *data, int len)
  692. {
  693. struct iw_event iwe_buf, *iwe = &iwe_buf;
  694. char *pos, *end, *custom, *buf;
  695. pos = data;
  696. end = data + len;
  697. while (pos + IW_EV_LCP_LEN <= end) {
  698. /* Event data may be unaligned, so make a local, aligned copy
  699. * before processing. */
  700. memcpy(&iwe_buf, pos, IW_EV_LCP_LEN);
  701. wpa_printf(MSG_DEBUG, "Wireless event: cmd=0x%x len=%d",
  702. iwe->cmd, iwe->len);
  703. if (iwe->len <= IW_EV_LCP_LEN)
  704. return;
  705. custom = pos + IW_EV_POINT_LEN;
  706. if (drv->we_version > 18 &&
  707. (iwe->cmd == IWEVMICHAELMICFAILURE ||
  708. iwe->cmd == IWEVCUSTOM)) {
  709. /* WE-19 removed the pointer from struct iw_point */
  710. char *dpos = (char *) &iwe_buf.u.data.length;
  711. int dlen = dpos - (char *) &iwe_buf;
  712. memcpy(dpos, pos + IW_EV_LCP_LEN,
  713. sizeof(struct iw_event) - dlen);
  714. } else {
  715. memcpy(&iwe_buf, pos, sizeof(struct iw_event));
  716. custom += IW_EV_POINT_OFF;
  717. }
  718. switch (iwe->cmd) {
  719. case IWEVCUSTOM:
  720. if (custom + iwe->u.data.length > end)
  721. return;
  722. buf = malloc(iwe->u.data.length + 1);
  723. if (buf == NULL)
  724. return;
  725. memcpy(buf, custom, iwe->u.data.length);
  726. buf[iwe->u.data.length] = '\0';
  727. hostapd_wireless_event_wireless_custom(drv, buf);
  728. free(buf);
  729. break;
  730. }
  731. pos += iwe->len;
  732. }
  733. }
  734. static void hostapd_wireless_event_rtm_newlink(struct hostap_driver_data *drv,
  735. struct nlmsghdr *h, int len)
  736. {
  737. struct ifinfomsg *ifi;
  738. int attrlen, nlmsg_len, rta_len;
  739. struct rtattr * attr;
  740. if (len < (int) sizeof(*ifi))
  741. return;
  742. ifi = NLMSG_DATA(h);
  743. /* TODO: use ifi->ifi_index to filter out wireless events from other
  744. * interfaces */
  745. nlmsg_len = NLMSG_ALIGN(sizeof(struct ifinfomsg));
  746. attrlen = h->nlmsg_len - nlmsg_len;
  747. if (attrlen < 0)
  748. return;
  749. attr = (struct rtattr *) (((char *) ifi) + nlmsg_len);
  750. rta_len = RTA_ALIGN(sizeof(struct rtattr));
  751. while (RTA_OK(attr, attrlen)) {
  752. if (attr->rta_type == IFLA_WIRELESS) {
  753. hostapd_wireless_event_wireless(
  754. drv, ((char *) attr) + rta_len,
  755. attr->rta_len - rta_len);
  756. }
  757. attr = RTA_NEXT(attr, attrlen);
  758. }
  759. }
  760. static void hostapd_wireless_event_receive(int sock, void *eloop_ctx,
  761. void *sock_ctx)
  762. {
  763. char buf[256];
  764. int left;
  765. struct sockaddr_nl from;
  766. socklen_t fromlen;
  767. struct nlmsghdr *h;
  768. struct hostap_driver_data *drv = eloop_ctx;
  769. fromlen = sizeof(from);
  770. left = recvfrom(sock, buf, sizeof(buf), MSG_DONTWAIT,
  771. (struct sockaddr *) &from, &fromlen);
  772. if (left < 0) {
  773. if (errno != EINTR && errno != EAGAIN)
  774. perror("recvfrom(netlink)");
  775. return;
  776. }
  777. h = (struct nlmsghdr *) buf;
  778. while (left >= (int) sizeof(*h)) {
  779. int len, plen;
  780. len = h->nlmsg_len;
  781. plen = len - sizeof(*h);
  782. if (len > left || plen < 0) {
  783. printf("Malformed netlink message: "
  784. "len=%d left=%d plen=%d\n",
  785. len, left, plen);
  786. break;
  787. }
  788. switch (h->nlmsg_type) {
  789. case RTM_NEWLINK:
  790. hostapd_wireless_event_rtm_newlink(drv, h, plen);
  791. break;
  792. }
  793. len = NLMSG_ALIGN(len);
  794. left -= len;
  795. h = (struct nlmsghdr *) ((char *) h + len);
  796. }
  797. if (left > 0) {
  798. printf("%d extra bytes in the end of netlink message\n", left);
  799. }
  800. }
  801. static int hostap_get_we_version(struct hostap_driver_data *drv)
  802. {
  803. struct iw_range *range;
  804. struct iwreq iwr;
  805. int minlen;
  806. size_t buflen;
  807. drv->we_version = 0;
  808. /*
  809. * Use larger buffer than struct iw_range in order to allow the
  810. * structure to grow in the future.
  811. */
  812. buflen = sizeof(struct iw_range) + 500;
  813. range = os_zalloc(buflen);
  814. if (range == NULL)
  815. return -1;
  816. memset(&iwr, 0, sizeof(iwr));
  817. os_strlcpy(iwr.ifr_name, drv->iface, IFNAMSIZ);
  818. iwr.u.data.pointer = (caddr_t) range;
  819. iwr.u.data.length = buflen;
  820. minlen = ((char *) &range->enc_capa) - (char *) range +
  821. sizeof(range->enc_capa);
  822. if (ioctl(drv->ioctl_sock, SIOCGIWRANGE, &iwr) < 0) {
  823. perror("ioctl[SIOCGIWRANGE]");
  824. free(range);
  825. return -1;
  826. } else if (iwr.u.data.length >= minlen &&
  827. range->we_version_compiled >= 18) {
  828. wpa_printf(MSG_DEBUG, "SIOCGIWRANGE: WE(compiled)=%d "
  829. "WE(source)=%d enc_capa=0x%x",
  830. range->we_version_compiled,
  831. range->we_version_source,
  832. range->enc_capa);
  833. drv->we_version = range->we_version_compiled;
  834. }
  835. free(range);
  836. return 0;
  837. }
  838. static int hostap_wireless_event_init(void *priv)
  839. {
  840. struct hostap_driver_data *drv = priv;
  841. int s;
  842. struct sockaddr_nl local;
  843. hostap_get_we_version(drv);
  844. drv->wext_sock = -1;
  845. s = socket(PF_NETLINK, SOCK_RAW, NETLINK_ROUTE);
  846. if (s < 0) {
  847. perror("socket(PF_NETLINK,SOCK_RAW,NETLINK_ROUTE)");
  848. return -1;
  849. }
  850. memset(&local, 0, sizeof(local));
  851. local.nl_family = AF_NETLINK;
  852. local.nl_groups = RTMGRP_LINK;
  853. if (bind(s, (struct sockaddr *) &local, sizeof(local)) < 0) {
  854. perror("bind(netlink)");
  855. close(s);
  856. return -1;
  857. }
  858. eloop_register_read_sock(s, hostapd_wireless_event_receive, drv,
  859. NULL);
  860. drv->wext_sock = s;
  861. return 0;
  862. }
  863. static void hostap_wireless_event_deinit(void *priv)
  864. {
  865. struct hostap_driver_data *drv = priv;
  866. if (drv->wext_sock < 0)
  867. return;
  868. eloop_unregister_read_sock(drv->wext_sock);
  869. close(drv->wext_sock);
  870. }
  871. static void * hostap_init(struct hostapd_data *hapd)
  872. {
  873. struct hostap_driver_data *drv;
  874. drv = os_zalloc(sizeof(struct hostap_driver_data));
  875. if (drv == NULL) {
  876. printf("Could not allocate memory for hostapd driver data\n");
  877. return NULL;
  878. }
  879. drv->hapd = hapd;
  880. drv->ioctl_sock = drv->sock = -1;
  881. memcpy(drv->iface, hapd->conf->iface, sizeof(drv->iface));
  882. drv->ioctl_sock = socket(PF_INET, SOCK_DGRAM, 0);
  883. if (drv->ioctl_sock < 0) {
  884. perror("socket[PF_INET,SOCK_DGRAM]");
  885. free(drv);
  886. return NULL;
  887. }
  888. if (hostap_ioctl_prism2param(drv, PRISM2_PARAM_HOSTAPD, 1)) {
  889. printf("Could not enable hostapd mode for interface %s\n",
  890. drv->iface);
  891. close(drv->ioctl_sock);
  892. free(drv);
  893. return NULL;
  894. }
  895. if (hostap_init_sockets(drv)) {
  896. close(drv->ioctl_sock);
  897. free(drv);
  898. return NULL;
  899. }
  900. return drv;
  901. }
  902. static void hostap_driver_deinit(void *priv)
  903. {
  904. struct hostap_driver_data *drv = priv;
  905. (void) hostap_set_iface_flags(drv, 0);
  906. (void) hostap_ioctl_prism2param(drv, PRISM2_PARAM_HOSTAPD, 0);
  907. (void) hostap_ioctl_prism2param(drv, PRISM2_PARAM_HOSTAPD_STA, 0);
  908. if (drv->ioctl_sock >= 0)
  909. close(drv->ioctl_sock);
  910. if (drv->sock >= 0)
  911. close(drv->sock);
  912. os_free(drv->generic_ie);
  913. free(drv);
  914. }
  915. static int hostap_sta_deauth(void *priv, const u8 *addr, int reason)
  916. {
  917. struct hostap_driver_data *drv = priv;
  918. struct ieee80211_mgmt mgmt;
  919. memset(&mgmt, 0, sizeof(mgmt));
  920. mgmt.frame_control = IEEE80211_FC(WLAN_FC_TYPE_MGMT,
  921. WLAN_FC_STYPE_DEAUTH);
  922. memcpy(mgmt.da, addr, ETH_ALEN);
  923. memcpy(mgmt.sa, drv->hapd->own_addr, ETH_ALEN);
  924. memcpy(mgmt.bssid, drv->hapd->own_addr, ETH_ALEN);
  925. mgmt.u.deauth.reason_code = host_to_le16(reason);
  926. return hostap_send_mgmt_frame(drv, &mgmt, IEEE80211_HDRLEN +
  927. sizeof(mgmt.u.deauth), 0);
  928. }
  929. static int hostap_sta_disassoc(void *priv, const u8 *addr, int reason)
  930. {
  931. struct hostap_driver_data *drv = priv;
  932. struct ieee80211_mgmt mgmt;
  933. memset(&mgmt, 0, sizeof(mgmt));
  934. mgmt.frame_control = IEEE80211_FC(WLAN_FC_TYPE_MGMT,
  935. WLAN_FC_STYPE_DISASSOC);
  936. memcpy(mgmt.da, addr, ETH_ALEN);
  937. memcpy(mgmt.sa, drv->hapd->own_addr, ETH_ALEN);
  938. memcpy(mgmt.bssid, drv->hapd->own_addr, ETH_ALEN);
  939. mgmt.u.disassoc.reason_code = host_to_le16(reason);
  940. return hostap_send_mgmt_frame(drv, &mgmt, IEEE80211_HDRLEN +
  941. sizeof(mgmt.u.disassoc), 0);
  942. }
  943. static struct hostapd_hw_modes * hostap_get_hw_feature_data(void *priv,
  944. u16 *num_modes,
  945. u16 *flags)
  946. {
  947. struct hostapd_hw_modes *mode;
  948. int i, clen, rlen;
  949. const short chan2freq[14] = {
  950. 2412, 2417, 2422, 2427, 2432, 2437, 2442,
  951. 2447, 2452, 2457, 2462, 2467, 2472, 2484
  952. };
  953. mode = os_zalloc(sizeof(struct hostapd_hw_modes));
  954. if (mode == NULL)
  955. return NULL;
  956. *num_modes = 1;
  957. *flags = 0;
  958. mode->mode = HOSTAPD_MODE_IEEE80211B;
  959. mode->num_channels = 14;
  960. mode->num_rates = 4;
  961. clen = mode->num_channels * sizeof(struct hostapd_channel_data);
  962. rlen = mode->num_rates * sizeof(struct hostapd_rate_data);
  963. mode->channels = os_zalloc(clen);
  964. mode->rates = os_zalloc(rlen);
  965. if (mode->channels == NULL || mode->rates == NULL) {
  966. hostapd_free_hw_features(mode, *num_modes);
  967. return NULL;
  968. }
  969. for (i = 0; i < 14; i++) {
  970. mode->channels[i].chan = i + 1;
  971. mode->channels[i].freq = chan2freq[i];
  972. /* TODO: Get allowed channel list from the driver */
  973. if (i >= 11)
  974. mode->channels[i].flag = HOSTAPD_CHAN_DISABLED;
  975. }
  976. mode->rates[0].rate = 10;
  977. mode->rates[0].flags = HOSTAPD_RATE_CCK;
  978. mode->rates[1].rate = 20;
  979. mode->rates[1].flags = HOSTAPD_RATE_CCK;
  980. mode->rates[2].rate = 55;
  981. mode->rates[2].flags = HOSTAPD_RATE_CCK;
  982. mode->rates[3].rate = 110;
  983. mode->rates[3].flags = HOSTAPD_RATE_CCK;
  984. return mode;
  985. }
  986. const struct wpa_driver_ops wpa_driver_hostap_ops = {
  987. .name = "hostap",
  988. .init = hostap_init,
  989. .deinit = hostap_driver_deinit,
  990. .wireless_event_init = hostap_wireless_event_init,
  991. .wireless_event_deinit = hostap_wireless_event_deinit,
  992. .set_ieee8021x = hostap_set_ieee8021x,
  993. .set_privacy = hostap_set_privacy,
  994. .set_encryption = hostap_set_encryption,
  995. .get_seqnum = hostap_get_seqnum,
  996. .flush = hostap_flush,
  997. .set_generic_elem = hostap_set_generic_elem,
  998. .read_sta_data = hostap_read_sta_data,
  999. .send_eapol = hostap_send_eapol,
  1000. .sta_set_flags = hostap_sta_set_flags,
  1001. .sta_deauth = hostap_sta_deauth,
  1002. .sta_disassoc = hostap_sta_disassoc,
  1003. .sta_remove = hostap_sta_remove,
  1004. .set_ssid = hostap_set_ssid,
  1005. .send_mgmt_frame = hostap_send_mgmt_frame,
  1006. .set_assoc_ap = hostap_set_assoc_ap,
  1007. .sta_add = hostap_sta_add,
  1008. .get_inact_sec = hostap_get_inact_sec,
  1009. .sta_clear_stats = hostap_sta_clear_stats,
  1010. .get_hw_feature_data = hostap_get_hw_feature_data,
  1011. };