driver_nl80211.c 54 KB

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  1. /*
  2. * hostapd / Kernel driver communication via nl80211
  3. * Copyright (c) 2002-2007, Jouni Malinen <j@w1.fi>
  4. * Copyright (c) 2003-2004, Instant802 Networks, Inc.
  5. * Copyright (c) 2005-2006, Devicescape Software, Inc.
  6. * Copyright (c) 2007, Johannes Berg <johannes@sipsolutions.net>
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License version 2 as
  10. * published by the Free Software Foundation.
  11. *
  12. * Alternatively, this software may be distributed under the terms of BSD
  13. * license.
  14. *
  15. * See README and COPYING for more details.
  16. */
  17. #include "includes.h"
  18. #include <sys/ioctl.h>
  19. #include <netlink/genl/genl.h>
  20. #include <netlink/genl/family.h>
  21. #include <netlink/genl/ctrl.h>
  22. #include <netlink/msg.h>
  23. #include <netlink/attr.h>
  24. #include <linux/nl80211.h>
  25. #include <net/if.h>
  26. #include <linux/if_packet.h>
  27. #include <linux/if_ether.h> /* The L2 protocols */
  28. #include "wireless_copy.h"
  29. #include <net/if_arp.h>
  30. #include "hostapd.h"
  31. #include "driver.h"
  32. #include "ieee802_1x.h"
  33. #include "eloop.h"
  34. #include "ieee802_11.h"
  35. #include "sta_info.h"
  36. #include "hw_features.h"
  37. #include "mlme.h"
  38. #include "radiotap.h"
  39. #include "radiotap_iter.h"
  40. enum ieee80211_msg_type {
  41. ieee80211_msg_normal = 0,
  42. ieee80211_msg_tx_callback_ack = 1,
  43. ieee80211_msg_tx_callback_fail = 2,
  44. };
  45. struct i802_driver_data {
  46. struct hostapd_data *hapd;
  47. char iface[IFNAMSIZ + 1];
  48. int bridge;
  49. int ioctl_sock; /* socket for ioctl() use */
  50. int wext_sock; /* socket for wireless events */
  51. int eapol_sock; /* socket for EAPOL frames */
  52. int monitor_sock; /* socket for monitor */
  53. int monitor_ifidx;
  54. int default_if_indices[16];
  55. int *if_indices;
  56. int num_if_indices;
  57. int we_version;
  58. struct nl_handle *nl_handle;
  59. struct nl_cache *nl_cache;
  60. struct nl_cb *nl_cb;
  61. struct genl_family *nl80211;
  62. int dtim_period, beacon_int;
  63. unsigned int beacon_set:1;
  64. unsigned int ieee802_1x_active:1;
  65. };
  66. static void add_ifidx(struct i802_driver_data *drv, int ifidx)
  67. {
  68. int i;
  69. int *old;
  70. for (i = 0; i < drv->num_if_indices; i++) {
  71. if (drv->if_indices[i] == 0) {
  72. drv->if_indices[i] = ifidx;
  73. return;
  74. }
  75. }
  76. if (drv->if_indices != drv->default_if_indices)
  77. old = drv->if_indices;
  78. else
  79. old = NULL;
  80. drv->if_indices = realloc(old,
  81. sizeof(int) * (drv->num_if_indices + 1));
  82. if (!drv->if_indices) {
  83. if (!old)
  84. drv->if_indices = drv->default_if_indices;
  85. else
  86. drv->if_indices = old;
  87. wpa_printf(MSG_ERROR, "Failed to reallocate memory for "
  88. "interfaces");
  89. wpa_printf(MSG_ERROR, "Ignoring EAPOL on interface %d", ifidx);
  90. return;
  91. }
  92. drv->if_indices[drv->num_if_indices] = ifidx;
  93. drv->num_if_indices++;
  94. }
  95. static void del_ifidx(struct i802_driver_data *drv, int ifidx)
  96. {
  97. int i;
  98. for (i = 0; i < drv->num_if_indices; i++) {
  99. if (drv->if_indices[i] == ifidx) {
  100. drv->if_indices[i] = 0;
  101. break;
  102. }
  103. }
  104. }
  105. static int have_ifidx(struct i802_driver_data *drv, int ifidx)
  106. {
  107. int i;
  108. if (ifidx == drv->bridge)
  109. return 1;
  110. for (i = 0; i < drv->num_if_indices; i++)
  111. if (drv->if_indices[i] == ifidx)
  112. return 1;
  113. return 0;
  114. }
  115. /* helper for netlink get routines */
  116. static int ack_wait_handler(struct nl_msg *msg, void *arg)
  117. {
  118. int *finished = arg;
  119. *finished = 1;
  120. return NL_STOP;
  121. }
  122. static int hostapd_set_iface_flags(struct i802_driver_data *drv,
  123. const char *ifname, int dev_up)
  124. {
  125. struct ifreq ifr;
  126. if (drv->ioctl_sock < 0)
  127. return -1;
  128. memset(&ifr, 0, sizeof(ifr));
  129. os_strlcpy(ifr.ifr_name, ifname, IFNAMSIZ);
  130. if (ioctl(drv->ioctl_sock, SIOCGIFFLAGS, &ifr) != 0) {
  131. perror("ioctl[SIOCGIFFLAGS]");
  132. wpa_printf(MSG_DEBUG, "Could not read interface flags (%s)",
  133. drv->iface);
  134. return -1;
  135. }
  136. if (dev_up)
  137. ifr.ifr_flags |= IFF_UP;
  138. else
  139. ifr.ifr_flags &= ~IFF_UP;
  140. if (ioctl(drv->ioctl_sock, SIOCSIFFLAGS, &ifr) != 0) {
  141. perror("ioctl[SIOCSIFFLAGS]");
  142. return -1;
  143. }
  144. return 0;
  145. }
  146. static int i802_set_encryption(const char *iface, void *priv, const char *alg,
  147. const u8 *addr, int idx, const u8 *key,
  148. size_t key_len, int txkey)
  149. {
  150. struct i802_driver_data *drv = priv;
  151. struct nl_msg *msg;
  152. int ret = -1;
  153. int err = 0;
  154. msg = nlmsg_alloc();
  155. if (!msg)
  156. goto out;
  157. if (strcmp(alg, "none") == 0) {
  158. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  159. 0, NL80211_CMD_DEL_KEY, 0);
  160. } else {
  161. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  162. 0, NL80211_CMD_NEW_KEY, 0);
  163. NLA_PUT(msg, NL80211_ATTR_KEY_DATA, key_len, key);
  164. if (strcmp(alg, "WEP") == 0) {
  165. if (key_len == 5)
  166. NLA_PUT_U32(msg, NL80211_ATTR_KEY_CIPHER,
  167. 0x000FAC01);
  168. else
  169. NLA_PUT_U32(msg, NL80211_ATTR_KEY_CIPHER,
  170. 0x000FAC05);
  171. } else if (strcmp(alg, "TKIP") == 0)
  172. NLA_PUT_U32(msg, NL80211_ATTR_KEY_CIPHER, 0x000FAC02);
  173. else if (strcmp(alg, "CCMP") == 0)
  174. NLA_PUT_U32(msg, NL80211_ATTR_KEY_CIPHER, 0x000FAC04);
  175. else
  176. goto out;
  177. }
  178. if (addr)
  179. NLA_PUT(msg, NL80211_ATTR_MAC, ETH_ALEN, addr);
  180. NLA_PUT_U8(msg, NL80211_ATTR_KEY_IDX, idx);
  181. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX, if_nametoindex(iface));
  182. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  183. (err = nl_wait_for_ack(drv->nl_handle)) < 0) {
  184. if (err != -ENOENT) {
  185. ret = 0;
  186. goto out;
  187. }
  188. }
  189. /*
  190. * If we need to set the default TX key we do that below,
  191. * otherwise we're done here.
  192. */
  193. if (!txkey || addr) {
  194. ret = 0;
  195. goto out;
  196. }
  197. nlmsg_free(msg);
  198. msg = nlmsg_alloc();
  199. if (!msg)
  200. goto out;
  201. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  202. 0, NL80211_CMD_SET_KEY, 0);
  203. NLA_PUT_U8(msg, NL80211_ATTR_KEY_IDX, idx);
  204. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX, if_nametoindex(iface));
  205. NLA_PUT_FLAG(msg, NL80211_ATTR_KEY_DEFAULT);
  206. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  207. (err = nl_wait_for_ack(drv->nl_handle)) < 0) {
  208. if (err != -ENOENT) {
  209. ret = 0;
  210. goto out;
  211. }
  212. }
  213. ret = 0;
  214. out:
  215. nla_put_failure:
  216. nlmsg_free(msg);
  217. return ret;
  218. }
  219. static inline int min_int(int a, int b)
  220. {
  221. if (a < b)
  222. return a;
  223. return b;
  224. }
  225. static int get_key_handler(struct nl_msg *msg, void *arg)
  226. {
  227. struct nlattr *tb[NL80211_ATTR_MAX];
  228. struct genlmsghdr *gnlh = nlmsg_data(nlmsg_hdr(msg));
  229. nla_parse(tb, NL80211_ATTR_MAX, genlmsg_attrdata(gnlh, 0),
  230. genlmsg_attrlen(gnlh, 0), NULL);
  231. /*
  232. * TODO: validate the key index and mac address!
  233. * Otherwise, there's a race condition as soon as
  234. * the kernel starts sending key notifications.
  235. */
  236. if (tb[NL80211_ATTR_KEY_SEQ])
  237. memcpy(arg, nla_data(tb[NL80211_ATTR_KEY_SEQ]),
  238. min_int(nla_len(tb[NL80211_ATTR_KEY_SEQ]), 6));
  239. return NL_SKIP;
  240. }
  241. static int i802_get_seqnum(const char *iface, void *priv, const u8 *addr,
  242. int idx, u8 *seq)
  243. {
  244. struct i802_driver_data *drv = priv;
  245. struct nl_msg *msg;
  246. struct nl_cb *cb = NULL;
  247. int ret = -1;
  248. int err = 0;
  249. int finished = 0;
  250. msg = nlmsg_alloc();
  251. if (!msg)
  252. goto out;
  253. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  254. 0, NL80211_CMD_GET_KEY, 0);
  255. if (addr)
  256. NLA_PUT(msg, NL80211_ATTR_MAC, ETH_ALEN, addr);
  257. NLA_PUT_U8(msg, NL80211_ATTR_KEY_IDX, idx);
  258. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX, if_nametoindex(iface));
  259. cb = nl_cb_clone(drv->nl_cb);
  260. if (!cb)
  261. goto out;
  262. memset(seq, 0, 6);
  263. if (nl_send_auto_complete(drv->nl_handle, msg) < 0)
  264. goto out;
  265. nl_cb_set(cb, NL_CB_VALID, NL_CB_CUSTOM, get_key_handler, seq);
  266. nl_cb_set(cb, NL_CB_ACK, NL_CB_CUSTOM, ack_wait_handler, &finished);
  267. err = nl_recvmsgs(drv->nl_handle, cb);
  268. if (!finished)
  269. err = nl_wait_for_ack(drv->nl_handle);
  270. if (err < 0)
  271. goto out;
  272. ret = 0;
  273. out:
  274. nl_cb_put(cb);
  275. nla_put_failure:
  276. nlmsg_free(msg);
  277. return ret;
  278. }
  279. static int i802_set_rate_sets(void *priv, int *supp_rates, int *basic_rates,
  280. int mode)
  281. {
  282. return -1;
  283. }
  284. static int i802_set_ssid(const char *ifname, void *priv, const u8 *buf,
  285. int len)
  286. {
  287. struct i802_driver_data *drv = priv;
  288. struct iwreq iwr;
  289. memset(&iwr, 0, sizeof(iwr));
  290. os_strlcpy(iwr.ifr_name, ifname, IFNAMSIZ);
  291. iwr.u.essid.flags = 1; /* SSID active */
  292. iwr.u.essid.pointer = (caddr_t) buf;
  293. iwr.u.essid.length = len;
  294. if (ioctl(drv->ioctl_sock, SIOCSIWESSID, &iwr) < 0) {
  295. perror("ioctl[SIOCSIWESSID]");
  296. printf("len=%d\n", len);
  297. return -1;
  298. }
  299. return 0;
  300. }
  301. static int i802_send_mgmt_frame(void *priv, const void *data, size_t len,
  302. int flags)
  303. {
  304. struct ieee80211_hdr *hdr = (void*) data;
  305. __u8 rtap_hdr[] = {
  306. 0x00, 0x00, /* radiotap version */
  307. 0x0e, 0x00, /* radiotap length */
  308. 0x02, 0xc0, 0x00, 0x00, /* bmap: flags, tx and rx flags */
  309. 0x0c, /* F_WEP | F_FRAG (encrypt/fragment if required) */
  310. 0x00, /* padding */
  311. 0x00, 0x00, /* RX and TX flags to indicate that */
  312. 0x00, 0x00, /* this is the injected frame directly */
  313. };
  314. struct i802_driver_data *drv = priv;
  315. struct iovec iov[2] = {
  316. {
  317. .iov_base = &rtap_hdr,
  318. .iov_len = sizeof(rtap_hdr),
  319. },
  320. {
  321. .iov_base = (void*)data,
  322. .iov_len = len,
  323. }
  324. };
  325. struct msghdr msg = {
  326. .msg_name = NULL,
  327. .msg_namelen = 0,
  328. .msg_iov = iov,
  329. .msg_iovlen = 2,
  330. .msg_control = NULL,
  331. .msg_controllen = 0,
  332. .msg_flags = 0,
  333. };
  334. /*
  335. * ugh, guess what, the generic code sets one of the version
  336. * bits to request tx callback
  337. */
  338. hdr->frame_control &= ~host_to_le16(BIT(1));
  339. return sendmsg(drv->monitor_sock, &msg, flags);
  340. }
  341. /* Set kernel driver on given frequency (MHz) */
  342. static int i802_set_freq(void *priv, int mode, int freq)
  343. {
  344. struct i802_driver_data *drv = priv;
  345. struct iwreq iwr;
  346. memset(&iwr, 0, sizeof(iwr));
  347. os_strlcpy(iwr.ifr_name, drv->hapd->conf->iface, IFNAMSIZ);
  348. iwr.u.freq.m = freq;
  349. iwr.u.freq.e = 6;
  350. if (ioctl(drv->ioctl_sock, SIOCSIWFREQ, &iwr) < 0) {
  351. perror("ioctl[SIOCSIWFREQ]");
  352. return -1;
  353. }
  354. return 0;
  355. }
  356. static int i802_set_rts(void *priv, int rts)
  357. {
  358. struct i802_driver_data *drv = priv;
  359. struct iwreq iwr;
  360. memset(&iwr, 0, sizeof(iwr));
  361. os_strlcpy(iwr.ifr_name, drv->hapd->conf->iface, IFNAMSIZ);
  362. iwr.u.rts.value = rts;
  363. iwr.u.rts.fixed = 1;
  364. if (ioctl(drv->ioctl_sock, SIOCSIWRTS, &iwr) < 0) {
  365. perror("ioctl[SIOCSIWRTS]");
  366. return -1;
  367. }
  368. return 0;
  369. }
  370. static int i802_get_rts(void *priv, int *rts)
  371. {
  372. struct i802_driver_data *drv = priv;
  373. struct iwreq iwr;
  374. memset(&iwr, 0, sizeof(iwr));
  375. os_strlcpy(iwr.ifr_name, drv->hapd->conf->iface, IFNAMSIZ);
  376. if (ioctl(drv->ioctl_sock, SIOCGIWRTS, &iwr) < 0) {
  377. perror("ioctl[SIOCGIWRTS]");
  378. return -1;
  379. }
  380. *rts = iwr.u.rts.value;
  381. return 0;
  382. }
  383. static int i802_set_frag(void *priv, int frag)
  384. {
  385. struct i802_driver_data *drv = priv;
  386. struct iwreq iwr;
  387. memset(&iwr, 0, sizeof(iwr));
  388. os_strlcpy(iwr.ifr_name, drv->hapd->conf->iface, IFNAMSIZ);
  389. iwr.u.frag.value = frag;
  390. iwr.u.frag.fixed = 1;
  391. if (ioctl(drv->ioctl_sock, SIOCSIWFRAG, &iwr) < 0) {
  392. perror("ioctl[SIOCSIWFRAG]");
  393. return -1;
  394. }
  395. return 0;
  396. }
  397. static int i802_get_frag(void *priv, int *frag)
  398. {
  399. struct i802_driver_data *drv = priv;
  400. struct iwreq iwr;
  401. memset(&iwr, 0, sizeof(iwr));
  402. os_strlcpy(iwr.ifr_name, drv->hapd->conf->iface, IFNAMSIZ);
  403. if (ioctl(drv->ioctl_sock, SIOCGIWFRAG, &iwr) < 0) {
  404. perror("ioctl[SIOCGIWFRAG]");
  405. return -1;
  406. }
  407. *frag = iwr.u.frag.value;
  408. return 0;
  409. }
  410. static int i802_set_retry(void *priv, int short_retry, int long_retry)
  411. {
  412. struct i802_driver_data *drv = priv;
  413. struct iwreq iwr;
  414. memset(&iwr, 0, sizeof(iwr));
  415. os_strlcpy(iwr.ifr_name, drv->hapd->conf->iface, IFNAMSIZ);
  416. iwr.u.retry.value = short_retry;
  417. iwr.u.retry.flags = IW_RETRY_LIMIT | IW_RETRY_MIN;
  418. if (ioctl(drv->ioctl_sock, SIOCSIWFRAG, &iwr) < 0) {
  419. perror("ioctl[SIOCSIWRETRY(short)]");
  420. return -1;
  421. }
  422. iwr.u.retry.value = long_retry;
  423. iwr.u.retry.flags = IW_RETRY_LIMIT | IW_RETRY_MAX;
  424. if (ioctl(drv->ioctl_sock, SIOCSIWFRAG, &iwr) < 0) {
  425. perror("ioctl[SIOCSIWRETRY(long)]");
  426. return -1;
  427. }
  428. return 0;
  429. }
  430. static int i802_get_retry(void *priv, int *short_retry, int *long_retry)
  431. {
  432. struct i802_driver_data *drv = priv;
  433. struct iwreq iwr;
  434. memset(&iwr, 0, sizeof(iwr));
  435. os_strlcpy(iwr.ifr_name, drv->hapd->conf->iface, IFNAMSIZ);
  436. iwr.u.retry.flags = IW_RETRY_LIMIT | IW_RETRY_MIN;
  437. if (ioctl(drv->ioctl_sock, SIOCGIWRETRY, &iwr) < 0) {
  438. perror("ioctl[SIOCGIWFRAG(short)]");
  439. return -1;
  440. }
  441. *short_retry = iwr.u.retry.value;
  442. iwr.u.retry.flags = IW_RETRY_LIMIT | IW_RETRY_MAX;
  443. if (ioctl(drv->ioctl_sock, SIOCGIWRETRY, &iwr) < 0) {
  444. perror("ioctl[SIOCGIWFRAG(long)]");
  445. return -1;
  446. }
  447. *long_retry = iwr.u.retry.value;
  448. return 0;
  449. }
  450. static int i802_flush(void *priv)
  451. {
  452. struct i802_driver_data *drv = priv;
  453. struct nl_msg *msg;
  454. int ret = -1;
  455. msg = nlmsg_alloc();
  456. if (!msg)
  457. goto out;
  458. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  459. 0, NL80211_CMD_DEL_STATION, 0);
  460. /*
  461. * XXX: FIX! this needs to flush all VLANs too
  462. */
  463. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX,
  464. if_nametoindex(drv->iface));
  465. ret = 0;
  466. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  467. nl_wait_for_ack(drv->nl_handle) < 0) {
  468. ret = -1;
  469. }
  470. nla_put_failure:
  471. nlmsg_free(msg);
  472. out:
  473. return ret;
  474. }
  475. static int get_sta_handler(struct nl_msg *msg, void *arg)
  476. {
  477. struct nlattr *tb[NL80211_ATTR_MAX + 1];
  478. struct genlmsghdr *gnlh = nlmsg_data(nlmsg_hdr(msg));
  479. struct hostap_sta_driver_data *data = arg;
  480. struct nlattr *stats[NL80211_STA_INFO_MAX + 1];
  481. static struct nla_policy stats_policy[NL80211_STA_INFO_MAX + 1] = {
  482. [NL80211_STA_INFO_INACTIVE_TIME] = { .type = NLA_U32 },
  483. [NL80211_STA_INFO_RX_BYTES] = { .type = NLA_U32 },
  484. [NL80211_STA_INFO_TX_BYTES] = { .type = NLA_U32 },
  485. };
  486. nla_parse(tb, NL80211_ATTR_MAX, genlmsg_attrdata(gnlh, 0),
  487. genlmsg_attrlen(gnlh, 0), NULL);
  488. /*
  489. * TODO: validate the interface and mac address!
  490. * Otherwise, there's a race condition as soon as
  491. * the kernel starts sending station notifications.
  492. */
  493. if (!tb[NL80211_ATTR_STA_INFO]) {
  494. wpa_printf(MSG_DEBUG, "sta stats missing!");
  495. return NL_SKIP;
  496. }
  497. if (nla_parse_nested(stats, NL80211_STA_INFO_MAX,
  498. tb[NL80211_ATTR_STA_INFO],
  499. stats_policy)) {
  500. wpa_printf(MSG_DEBUG, "failed to parse nested attributes!");
  501. return NL_SKIP;
  502. }
  503. if (stats[NL80211_STA_INFO_INACTIVE_TIME])
  504. data->inactive_msec =
  505. nla_get_u32(stats[NL80211_STA_INFO_INACTIVE_TIME]);
  506. if (stats[NL80211_STA_INFO_RX_BYTES])
  507. data->rx_bytes = nla_get_u32(stats[NL80211_STA_INFO_RX_BYTES]);
  508. if (stats[NL80211_STA_INFO_TX_BYTES])
  509. data->rx_bytes = nla_get_u32(stats[NL80211_STA_INFO_TX_BYTES]);
  510. return NL_SKIP;
  511. }
  512. static int i802_read_sta_data(void *priv, struct hostap_sta_driver_data *data,
  513. const u8 *addr)
  514. {
  515. struct i802_driver_data *drv = priv;
  516. struct nl_msg *msg;
  517. struct nl_cb *cb = NULL;
  518. int ret = -1;
  519. int err = 0;
  520. int finished = 0;
  521. msg = nlmsg_alloc();
  522. if (!msg)
  523. goto out;
  524. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  525. 0, NL80211_CMD_GET_STATION, 0);
  526. NLA_PUT(msg, NL80211_ATTR_MAC, ETH_ALEN, addr);
  527. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX, if_nametoindex(drv->iface));
  528. cb = nl_cb_clone(drv->nl_cb);
  529. if (!cb)
  530. goto out;
  531. if (nl_send_auto_complete(drv->nl_handle, msg) < 0)
  532. goto out;
  533. nl_cb_set(cb, NL_CB_VALID, NL_CB_CUSTOM, get_sta_handler, data);
  534. nl_cb_set(cb, NL_CB_ACK, NL_CB_CUSTOM, ack_wait_handler, &finished);
  535. err = nl_recvmsgs(drv->nl_handle, cb);
  536. if (!finished)
  537. err = nl_wait_for_ack(drv->nl_handle);
  538. if (err < 0)
  539. goto out;
  540. ret = 0;
  541. out:
  542. nl_cb_put(cb);
  543. nla_put_failure:
  544. nlmsg_free(msg);
  545. return ret;
  546. }
  547. static int i802_send_eapol(void *priv, const u8 *addr, const u8 *data,
  548. size_t data_len, int encrypt, const u8 *own_addr)
  549. {
  550. struct i802_driver_data *drv = priv;
  551. struct ieee80211_hdr *hdr;
  552. size_t len;
  553. u8 *pos;
  554. int res;
  555. #if 0 /* FIX */
  556. int qos = sta->flags & WLAN_STA_WME;
  557. #else
  558. int qos = 0;
  559. #endif
  560. len = sizeof(*hdr) + (qos ? 2 : 0) + sizeof(rfc1042_header) + 2 +
  561. data_len;
  562. hdr = os_zalloc(len);
  563. if (hdr == NULL) {
  564. printf("malloc() failed for i802_send_data(len=%lu)\n",
  565. (unsigned long) len);
  566. return -1;
  567. }
  568. hdr->frame_control =
  569. IEEE80211_FC(WLAN_FC_TYPE_DATA, WLAN_FC_STYPE_DATA);
  570. hdr->frame_control |= host_to_le16(WLAN_FC_FROMDS);
  571. if (encrypt)
  572. hdr->frame_control |= host_to_le16(WLAN_FC_ISWEP);
  573. #if 0 /* To be enabled if qos determination is added above */
  574. if (qos) {
  575. hdr->frame_control |=
  576. host_to_le16(WLAN_FC_STYPE_QOS_DATA << 4);
  577. }
  578. #endif
  579. memcpy(hdr->IEEE80211_DA_FROMDS, addr, ETH_ALEN);
  580. memcpy(hdr->IEEE80211_BSSID_FROMDS, own_addr, ETH_ALEN);
  581. memcpy(hdr->IEEE80211_SA_FROMDS, own_addr, ETH_ALEN);
  582. pos = (u8 *) (hdr + 1);
  583. #if 0 /* To be enabled if qos determination is added above */
  584. if (qos) {
  585. /* add an empty QoS header if needed */
  586. pos[0] = 0;
  587. pos[1] = 0;
  588. pos += 2;
  589. }
  590. #endif
  591. memcpy(pos, rfc1042_header, sizeof(rfc1042_header));
  592. pos += sizeof(rfc1042_header);
  593. WPA_PUT_BE16(pos, ETH_P_PAE);
  594. pos += 2;
  595. memcpy(pos, data, data_len);
  596. res = i802_send_mgmt_frame(drv, (u8 *) hdr, len, 0);
  597. free(hdr);
  598. if (res < 0) {
  599. perror("i802_send_eapol: send");
  600. printf("i802_send_eapol - packet len: %lu - failed\n",
  601. (unsigned long) len);
  602. }
  603. return res;
  604. }
  605. static int i802_sta_add(const char *ifname, void *priv, const u8 *addr,
  606. u16 aid, u16 capability, u8 *supp_rates,
  607. size_t supp_rates_len, int flags, u16 listen_interval)
  608. {
  609. struct i802_driver_data *drv = priv;
  610. struct nl_msg *msg;
  611. int ret = -1;
  612. msg = nlmsg_alloc();
  613. if (!msg)
  614. goto out;
  615. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  616. 0, NL80211_CMD_NEW_STATION, 0);
  617. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX,
  618. if_nametoindex(drv->iface));
  619. NLA_PUT(msg, NL80211_ATTR_MAC, ETH_ALEN, addr);
  620. NLA_PUT_U16(msg, NL80211_ATTR_STA_AID, aid);
  621. NLA_PUT(msg, NL80211_ATTR_STA_SUPPORTED_RATES, supp_rates_len,
  622. supp_rates);
  623. NLA_PUT_U16(msg, NL80211_ATTR_STA_LISTEN_INTERVAL, listen_interval);
  624. ret = nl_send_auto_complete(drv->nl_handle, msg);
  625. if (ret < 0)
  626. goto nla_put_failure;
  627. ret = nl_wait_for_ack(drv->nl_handle);
  628. /* ignore EEXIST, this happens if a STA associates while associated */
  629. if (ret == -EEXIST || ret >= 0)
  630. ret = 0;
  631. nla_put_failure:
  632. nlmsg_free(msg);
  633. out:
  634. return ret;
  635. }
  636. static int i802_sta_remove(void *priv, const u8 *addr)
  637. {
  638. struct i802_driver_data *drv = priv;
  639. struct nl_msg *msg;
  640. int ret = -1;
  641. msg = nlmsg_alloc();
  642. if (!msg)
  643. goto out;
  644. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  645. 0, NL80211_CMD_DEL_STATION, 0);
  646. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX,
  647. if_nametoindex(drv->iface));
  648. NLA_PUT(msg, NL80211_ATTR_MAC, ETH_ALEN, addr);
  649. ret = 0;
  650. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  651. nl_wait_for_ack(drv->nl_handle) < 0) {
  652. ret = -1;
  653. }
  654. nla_put_failure:
  655. nlmsg_free(msg);
  656. out:
  657. return ret;
  658. }
  659. static int i802_sta_set_flags(void *priv, const u8 *addr,
  660. int total_flags, int flags_or, int flags_and)
  661. {
  662. struct i802_driver_data *drv = priv;
  663. struct nl_msg *msg, *flags = NULL;
  664. int ret = -1;
  665. msg = nlmsg_alloc();
  666. if (!msg)
  667. goto out;
  668. flags = nlmsg_alloc();
  669. if (!flags)
  670. goto free_msg;
  671. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  672. 0, NL80211_CMD_SET_STATION, 0);
  673. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX,
  674. if_nametoindex(drv->iface));
  675. NLA_PUT(msg, NL80211_ATTR_MAC, ETH_ALEN, addr);
  676. if (total_flags & WLAN_STA_AUTHORIZED || !drv->ieee802_1x_active)
  677. NLA_PUT_FLAG(flags, NL80211_STA_FLAG_AUTHORIZED);
  678. if (total_flags & WLAN_STA_WME)
  679. NLA_PUT_FLAG(flags, NL80211_STA_FLAG_WME);
  680. if (total_flags & WLAN_STA_SHORT_PREAMBLE)
  681. NLA_PUT_FLAG(flags, NL80211_STA_FLAG_SHORT_PREAMBLE);
  682. if (nla_put_nested(msg, NL80211_ATTR_STA_FLAGS, flags))
  683. goto nla_put_failure;
  684. ret = 0;
  685. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  686. nl_wait_for_ack(drv->nl_handle) < 0) {
  687. ret = -1;
  688. }
  689. nla_put_failure:
  690. nlmsg_free(flags);
  691. free_msg:
  692. nlmsg_free(msg);
  693. out:
  694. return ret;
  695. }
  696. static int i802_set_channel_flag(void *priv, int mode, int chan, int flag,
  697. unsigned char power_level,
  698. unsigned char antenna_max)
  699. {
  700. return -1;
  701. }
  702. static int i802_set_regulatory_domain(void *priv, unsigned int rd)
  703. {
  704. return -1;
  705. }
  706. static int i802_set_tx_queue_params(void *priv, int queue, int aifs,
  707. int cw_min, int cw_max, int burst_time)
  708. {
  709. return -1;
  710. }
  711. static void nl80211_remove_iface(struct i802_driver_data *drv, int ifidx)
  712. {
  713. struct nl_msg *msg;
  714. /* stop listening for EAPOL on this interface */
  715. del_ifidx(drv, ifidx);
  716. msg = nlmsg_alloc();
  717. if (!msg)
  718. goto nla_put_failure;
  719. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  720. 0, NL80211_CMD_DEL_INTERFACE, 0);
  721. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX, ifidx);
  722. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  723. nl_wait_for_ack(drv->nl_handle) < 0)
  724. nla_put_failure:
  725. printf("Failed to remove interface.\n");
  726. nlmsg_free(msg);
  727. }
  728. static int nl80211_create_iface(struct i802_driver_data *drv,
  729. const char *ifname,
  730. enum nl80211_iftype iftype,
  731. const u8 *addr)
  732. {
  733. struct nl_msg *msg, *flags = NULL;
  734. int ifidx;
  735. struct ifreq ifreq;
  736. struct iwreq iwr;
  737. msg = nlmsg_alloc();
  738. if (!msg)
  739. return -1;
  740. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  741. 0, NL80211_CMD_NEW_INTERFACE, 0);
  742. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX,
  743. if_nametoindex(drv->hapd->conf->iface));
  744. NLA_PUT_STRING(msg, NL80211_ATTR_IFNAME, ifname);
  745. NLA_PUT_U32(msg, NL80211_ATTR_IFTYPE, iftype);
  746. if (iftype == NL80211_IFTYPE_MONITOR) {
  747. int err;
  748. flags = nlmsg_alloc();
  749. if (!flags)
  750. goto nla_put_failure;
  751. NLA_PUT_FLAG(flags, NL80211_MNTR_FLAG_COOK_FRAMES);
  752. err = nla_put_nested(msg, NL80211_ATTR_MNTR_FLAGS, flags);
  753. nlmsg_free(flags);
  754. if (err)
  755. goto nla_put_failure;
  756. }
  757. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  758. nl_wait_for_ack(drv->nl_handle) < 0) {
  759. nla_put_failure:
  760. printf("Failed to create interface %s.\n", ifname);
  761. nlmsg_free(msg);
  762. return -1;
  763. }
  764. nlmsg_free(msg);
  765. ifidx = if_nametoindex(ifname);
  766. if (ifidx <= 0)
  767. return -1;
  768. /* start listening for EAPOL on this interface */
  769. add_ifidx(drv, ifidx);
  770. if (addr) {
  771. switch (iftype) {
  772. case NL80211_IFTYPE_AP:
  773. os_strlcpy(ifreq.ifr_name, ifname, IFNAMSIZ);
  774. memcpy(ifreq.ifr_hwaddr.sa_data, addr, ETH_ALEN);
  775. ifreq.ifr_hwaddr.sa_family = ARPHRD_ETHER;
  776. if (ioctl(drv->ioctl_sock, SIOCSIFHWADDR, &ifreq)) {
  777. nl80211_remove_iface(drv, ifidx);
  778. return -1;
  779. }
  780. break;
  781. case NL80211_IFTYPE_WDS:
  782. memset(&iwr, 0, sizeof(iwr));
  783. os_strlcpy(iwr.ifr_name, ifname, IFNAMSIZ);
  784. iwr.u.addr.sa_family = ARPHRD_ETHER;
  785. memcpy(iwr.u.addr.sa_data, addr, ETH_ALEN);
  786. if (ioctl(drv->ioctl_sock, SIOCSIWAP, &iwr))
  787. return -1;
  788. break;
  789. default:
  790. /* nothing */
  791. break;
  792. }
  793. }
  794. return ifidx;
  795. }
  796. static int i802_bss_add(void *priv, const char *ifname, const u8 *bssid)
  797. {
  798. int ifidx;
  799. /*
  800. * The kernel supports that when the low-level driver does,
  801. * but we currently don't because we need per-BSS data that
  802. * currently we can't handle easily.
  803. */
  804. return -1;
  805. ifidx = nl80211_create_iface(priv, ifname, NL80211_IFTYPE_AP, bssid);
  806. if (ifidx < 0)
  807. return -1;
  808. if (hostapd_set_iface_flags(priv, ifname, 1)) {
  809. nl80211_remove_iface(priv, ifidx);
  810. return -1;
  811. }
  812. return 0;
  813. }
  814. static int i802_bss_remove(void *priv, const char *ifname)
  815. {
  816. nl80211_remove_iface(priv, if_nametoindex(ifname));
  817. return 0;
  818. }
  819. static int i802_set_beacon(const char *iface, void *priv,
  820. u8 *head, size_t head_len,
  821. u8 *tail, size_t tail_len)
  822. {
  823. struct i802_driver_data *drv = priv;
  824. struct nl_msg *msg;
  825. u8 cmd = NL80211_CMD_NEW_BEACON;
  826. int ret = -1;
  827. msg = nlmsg_alloc();
  828. if (!msg)
  829. goto out;
  830. if (drv->beacon_set)
  831. cmd = NL80211_CMD_SET_BEACON;
  832. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  833. 0, cmd, 0);
  834. NLA_PUT(msg, NL80211_ATTR_BEACON_HEAD, head_len, head);
  835. NLA_PUT(msg, NL80211_ATTR_BEACON_TAIL, tail_len, tail);
  836. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX, if_nametoindex(iface));
  837. NLA_PUT_U32(msg, NL80211_ATTR_BEACON_INTERVAL, drv->beacon_int);
  838. if (!drv->dtim_period)
  839. drv->dtim_period = 2;
  840. NLA_PUT_U32(msg, NL80211_ATTR_DTIM_PERIOD, drv->dtim_period);
  841. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  842. nl_wait_for_ack(drv->nl_handle) < 0)
  843. goto out;
  844. ret = 0;
  845. drv->beacon_set = 1;
  846. out:
  847. nla_put_failure:
  848. nlmsg_free(msg);
  849. return ret;
  850. }
  851. static int i802_del_beacon(struct i802_driver_data *drv)
  852. {
  853. struct nl_msg *msg;
  854. int ret = -1;
  855. msg = nlmsg_alloc();
  856. if (!msg)
  857. goto out;
  858. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  859. 0, NL80211_CMD_DEL_BEACON, 0);
  860. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX, if_nametoindex(drv->iface));
  861. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  862. nl_wait_for_ack(drv->nl_handle) < 0)
  863. goto out;
  864. ret = 0;
  865. out:
  866. nla_put_failure:
  867. nlmsg_free(msg);
  868. return ret;
  869. }
  870. static int i802_set_ieee8021x(const char *ifname, void *priv, int enabled)
  871. {
  872. struct i802_driver_data *drv = priv;
  873. /*
  874. * FIXME: This needs to be per interface (BSS)
  875. */
  876. drv->ieee802_1x_active = enabled;
  877. return 0;
  878. }
  879. static int i802_set_privacy(const char *ifname, void *priv, int enabled)
  880. {
  881. struct i802_driver_data *drv = priv;
  882. struct iwreq iwr;
  883. memset(&iwr, 0, sizeof(iwr));
  884. os_strlcpy(iwr.ifr_name, ifname, IFNAMSIZ);
  885. iwr.u.param.flags = IW_AUTH_PRIVACY_INVOKED;
  886. iwr.u.param.value = enabled;
  887. ioctl(drv->ioctl_sock, SIOCSIWAUTH, &iwr);
  888. /* ignore errors, the kernel/driver might not care */
  889. return 0;
  890. }
  891. static int i802_set_internal_bridge(void *priv, int value)
  892. {
  893. return -1;
  894. }
  895. static int i802_set_beacon_int(void *priv, int value)
  896. {
  897. struct i802_driver_data *drv = priv;
  898. struct nl_msg *msg;
  899. int ret = -1;
  900. drv->beacon_int = value;
  901. if (!drv->beacon_set)
  902. return 0;
  903. msg = nlmsg_alloc();
  904. if (!msg)
  905. goto out;
  906. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  907. 0, NL80211_CMD_SET_BEACON, 0);
  908. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX, if_nametoindex(drv->iface));
  909. NLA_PUT_U32(msg, NL80211_ATTR_BEACON_INTERVAL, value);
  910. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  911. nl_wait_for_ack(drv->nl_handle) < 0)
  912. goto out;
  913. ret = 0;
  914. out:
  915. nla_put_failure:
  916. nlmsg_free(msg);
  917. return ret;
  918. }
  919. static int i802_set_dtim_period(const char *iface, void *priv, int value)
  920. {
  921. struct i802_driver_data *drv = priv;
  922. struct nl_msg *msg;
  923. int ret = -1;
  924. msg = nlmsg_alloc();
  925. if (!msg)
  926. goto out;
  927. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  928. 0, NL80211_CMD_SET_BEACON, 0);
  929. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX, if_nametoindex(iface));
  930. drv->dtim_period = value;
  931. NLA_PUT_U32(msg, NL80211_ATTR_DTIM_PERIOD, drv->dtim_period);
  932. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  933. nl_wait_for_ack(drv->nl_handle) < 0)
  934. goto out;
  935. ret = 0;
  936. out:
  937. nla_put_failure:
  938. nlmsg_free(msg);
  939. return ret;
  940. }
  941. static int i802_set_cts_protect(void *priv, int value)
  942. {
  943. return -1;
  944. }
  945. static int i802_set_preamble(void *priv, int value)
  946. {
  947. return -1;
  948. }
  949. static int i802_set_short_slot_time(void *priv, int value)
  950. {
  951. return -1;
  952. }
  953. static enum nl80211_iftype i802_if_type(enum hostapd_driver_if_type type)
  954. {
  955. switch (type) {
  956. case HOSTAPD_IF_VLAN:
  957. return NL80211_IFTYPE_AP_VLAN;
  958. case HOSTAPD_IF_WDS:
  959. return NL80211_IFTYPE_WDS;
  960. }
  961. return -1;
  962. }
  963. static int i802_if_add(const char *iface, void *priv,
  964. enum hostapd_driver_if_type type, char *ifname,
  965. const u8 *addr)
  966. {
  967. if (nl80211_create_iface(priv, ifname, i802_if_type(type), addr) < 0)
  968. return -1;
  969. return 0;
  970. }
  971. static int i802_if_update(void *priv, enum hostapd_driver_if_type type,
  972. char *ifname, const u8 *addr)
  973. {
  974. /* unused at the moment */
  975. return -1;
  976. }
  977. static int i802_if_remove(void *priv, enum hostapd_driver_if_type type,
  978. const char *ifname, const u8 *addr)
  979. {
  980. nl80211_remove_iface(priv, if_nametoindex(ifname));
  981. return 0;
  982. }
  983. struct phy_info_arg {
  984. u16 *num_modes;
  985. struct hostapd_hw_modes *modes;
  986. int error;
  987. };
  988. static int phy_info_handler(struct nl_msg *msg, void *arg)
  989. {
  990. struct nlattr *tb_msg[NL80211_ATTR_MAX + 1];
  991. struct genlmsghdr *gnlh = nlmsg_data(nlmsg_hdr(msg));
  992. struct phy_info_arg *phy_info = arg;
  993. struct nlattr *tb_band[NL80211_BAND_ATTR_MAX + 1];
  994. struct nlattr *tb_freq[NL80211_FREQUENCY_ATTR_MAX + 1];
  995. static struct nla_policy freq_policy[NL80211_FREQUENCY_ATTR_MAX + 1] = {
  996. [NL80211_FREQUENCY_ATTR_FREQ] = { .type = NLA_U32 },
  997. [NL80211_FREQUENCY_ATTR_DISABLED] = { .type = NLA_FLAG },
  998. [NL80211_FREQUENCY_ATTR_PASSIVE_SCAN] = { .type = NLA_FLAG },
  999. [NL80211_FREQUENCY_ATTR_NO_IBSS] = { .type = NLA_FLAG },
  1000. [NL80211_FREQUENCY_ATTR_RADAR] = { .type = NLA_FLAG },
  1001. };
  1002. struct nlattr *tb_rate[NL80211_BITRATE_ATTR_MAX + 1];
  1003. static struct nla_policy rate_policy[NL80211_BITRATE_ATTR_MAX + 1] = {
  1004. [NL80211_BITRATE_ATTR_RATE] = { .type = NLA_U32 },
  1005. [NL80211_BITRATE_ATTR_2GHZ_SHORTPREAMBLE] = { .type = NLA_FLAG },
  1006. };
  1007. struct nlattr *nl_band;
  1008. struct nlattr *nl_freq;
  1009. struct nlattr *nl_rate;
  1010. int rem_band, rem_freq, rem_rate;
  1011. struct hostapd_hw_modes *mode;
  1012. int idx, mode_is_set;
  1013. nla_parse(tb_msg, NL80211_ATTR_MAX, genlmsg_attrdata(gnlh, 0),
  1014. genlmsg_attrlen(gnlh, 0), NULL);
  1015. if (!tb_msg[NL80211_ATTR_WIPHY_BANDS])
  1016. return NL_SKIP;
  1017. nla_for_each_nested(nl_band, tb_msg[NL80211_ATTR_WIPHY_BANDS], rem_band) {
  1018. mode = realloc(phy_info->modes, (*phy_info->num_modes + 1) * sizeof(*mode));
  1019. if (!mode)
  1020. return NL_SKIP;
  1021. phy_info->modes = mode;
  1022. mode_is_set = 0;
  1023. mode = &phy_info->modes[*(phy_info->num_modes)];
  1024. memset(mode, 0, sizeof(*mode));
  1025. *(phy_info->num_modes) += 1;
  1026. nla_parse(tb_band, NL80211_BAND_ATTR_MAX, nla_data(nl_band),
  1027. nla_len(nl_band), NULL);
  1028. nla_for_each_nested(nl_freq, tb_band[NL80211_BAND_ATTR_FREQS], rem_freq) {
  1029. nla_parse(tb_freq, NL80211_FREQUENCY_ATTR_MAX, nla_data(nl_freq),
  1030. nla_len(nl_freq), freq_policy);
  1031. if (!tb_freq[NL80211_FREQUENCY_ATTR_FREQ])
  1032. continue;
  1033. mode->num_channels++;
  1034. }
  1035. mode->channels = calloc(mode->num_channels, sizeof(struct hostapd_channel_data));
  1036. if (!mode->channels)
  1037. return NL_SKIP;
  1038. idx = 0;
  1039. nla_for_each_nested(nl_freq, tb_band[NL80211_BAND_ATTR_FREQS], rem_freq) {
  1040. nla_parse(tb_freq, NL80211_FREQUENCY_ATTR_MAX, nla_data(nl_freq),
  1041. nla_len(nl_freq), freq_policy);
  1042. if (!tb_freq[NL80211_FREQUENCY_ATTR_FREQ])
  1043. continue;
  1044. mode->channels[idx].freq = nla_get_u32(tb_freq[NL80211_FREQUENCY_ATTR_FREQ]);
  1045. mode->channels[idx].flag |= HOSTAPD_CHAN_W_SCAN |
  1046. HOSTAPD_CHAN_W_ACTIVE_SCAN |
  1047. HOSTAPD_CHAN_W_IBSS;
  1048. if (!mode_is_set) {
  1049. /* crude heuristic */
  1050. if (mode->channels[idx].freq < 4000)
  1051. mode->mode = HOSTAPD_MODE_IEEE80211B;
  1052. else
  1053. mode->mode = HOSTAPD_MODE_IEEE80211A;
  1054. mode_is_set = 1;
  1055. }
  1056. /* crude heuristic */
  1057. if (mode->channels[idx].freq < 4000)
  1058. if (mode->channels[idx].freq == 2848)
  1059. mode->channels[idx].chan = 14;
  1060. else
  1061. mode->channels[idx].chan = (mode->channels[idx].freq - 2407) / 5;
  1062. else
  1063. mode->channels[idx].chan = mode->channels[idx].freq/5 - 1000;
  1064. if (tb_freq[NL80211_FREQUENCY_ATTR_DISABLED])
  1065. mode->channels[idx].flag &= ~HOSTAPD_CHAN_W_SCAN;
  1066. if (tb_freq[NL80211_FREQUENCY_ATTR_PASSIVE_SCAN])
  1067. mode->channels[idx].flag &= ~HOSTAPD_CHAN_W_ACTIVE_SCAN;
  1068. if (tb_freq[NL80211_FREQUENCY_ATTR_NO_IBSS])
  1069. mode->channels[idx].flag &= ~HOSTAPD_CHAN_W_IBSS;
  1070. idx++;
  1071. }
  1072. nla_for_each_nested(nl_rate, tb_band[NL80211_BAND_ATTR_RATES], rem_rate) {
  1073. nla_parse(tb_rate, NL80211_BITRATE_ATTR_MAX, nla_data(nl_rate),
  1074. nla_len(nl_rate), rate_policy);
  1075. if (!tb_rate[NL80211_BITRATE_ATTR_RATE])
  1076. continue;
  1077. mode->num_rates++;
  1078. }
  1079. mode->rates = calloc(mode->num_rates, sizeof(struct hostapd_rate_data));
  1080. if (!mode->rates)
  1081. return NL_SKIP;
  1082. idx = 0;
  1083. nla_for_each_nested(nl_rate, tb_band[NL80211_BAND_ATTR_RATES], rem_rate) {
  1084. nla_parse(tb_rate, NL80211_BITRATE_ATTR_MAX, nla_data(nl_rate),
  1085. nla_len(nl_rate), rate_policy);
  1086. if (!tb_rate[NL80211_BITRATE_ATTR_RATE])
  1087. continue;
  1088. mode->rates[idx].rate = nla_get_u32(tb_rate[NL80211_BITRATE_ATTR_RATE]);
  1089. /* crude heuristic */
  1090. if (mode->mode == HOSTAPD_MODE_IEEE80211B &&
  1091. mode->rates[idx].rate > 200)
  1092. mode->mode = HOSTAPD_MODE_IEEE80211G;
  1093. if (tb_rate[NL80211_BITRATE_ATTR_2GHZ_SHORTPREAMBLE])
  1094. mode->rates[idx].flags |= HOSTAPD_RATE_PREAMBLE2;
  1095. idx++;
  1096. }
  1097. }
  1098. phy_info->error = 0;
  1099. return NL_SKIP;
  1100. }
  1101. static struct hostapd_hw_modes *i802_get_hw_feature_data(void *priv,
  1102. u16 *num_modes,
  1103. u16 *flags)
  1104. {
  1105. struct i802_driver_data *drv = priv;
  1106. struct nl_msg *msg;
  1107. int err = -1;
  1108. struct nl_cb *cb = NULL;
  1109. int finished = 0;
  1110. struct phy_info_arg result = {
  1111. .num_modes = num_modes,
  1112. .modes = NULL,
  1113. .error = 1,
  1114. };
  1115. *num_modes = 0;
  1116. *flags = 0;
  1117. msg = nlmsg_alloc();
  1118. if (!msg)
  1119. return NULL;
  1120. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  1121. 0, NL80211_CMD_GET_WIPHY, 0);
  1122. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX, if_nametoindex(drv->iface));
  1123. cb = nl_cb_clone(drv->nl_cb);
  1124. if (!cb)
  1125. goto out;
  1126. if (nl_send_auto_complete(drv->nl_handle, msg) < 0)
  1127. goto out;
  1128. nl_cb_set(cb, NL_CB_VALID, NL_CB_CUSTOM, phy_info_handler, &result);
  1129. nl_cb_set(cb, NL_CB_ACK, NL_CB_CUSTOM, ack_wait_handler, &finished);
  1130. err = nl_recvmsgs(drv->nl_handle, cb);
  1131. if (!finished)
  1132. err = nl_wait_for_ack(drv->nl_handle);
  1133. if (err < 0 || result.error) {
  1134. hostapd_free_hw_features(result.modes, *num_modes);
  1135. result.modes = NULL;
  1136. }
  1137. out:
  1138. nl_cb_put(cb);
  1139. nla_put_failure:
  1140. if (err)
  1141. fprintf(stderr, "failed to get information: %d\n", err);
  1142. nlmsg_free(msg);
  1143. return result.modes;
  1144. }
  1145. static int i802_set_sta_vlan(void *priv, const u8 *addr,
  1146. const char *ifname, int vlan_id)
  1147. {
  1148. struct i802_driver_data *drv = priv;
  1149. struct nl_msg *msg;
  1150. int ret = -1;
  1151. msg = nlmsg_alloc();
  1152. if (!msg)
  1153. goto out;
  1154. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  1155. 0, NL80211_CMD_SET_STATION, 0);
  1156. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX,
  1157. if_nametoindex(drv->iface));
  1158. NLA_PUT(msg, NL80211_ATTR_MAC, ETH_ALEN, addr);
  1159. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX,
  1160. if_nametoindex(ifname));
  1161. ret = 0;
  1162. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  1163. (errno = nl_wait_for_ack(drv->nl_handle) < 0)) {
  1164. ret = -1;
  1165. }
  1166. nla_put_failure:
  1167. nlmsg_free(msg);
  1168. out:
  1169. return ret;
  1170. }
  1171. static void handle_unknown_sta(struct hostapd_data *hapd, u8 *ta)
  1172. {
  1173. struct sta_info *sta;
  1174. sta = ap_get_sta(hapd, ta);
  1175. if (!sta || !(sta->flags & WLAN_STA_ASSOC)) {
  1176. printf("Data/PS-poll frame from not associated STA "
  1177. MACSTR "\n", MAC2STR(ta));
  1178. if (sta && (sta->flags & WLAN_STA_AUTH))
  1179. hostapd_sta_disassoc(
  1180. hapd, ta,
  1181. WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
  1182. else
  1183. hostapd_sta_deauth(
  1184. hapd, ta,
  1185. WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA);
  1186. }
  1187. }
  1188. static void handle_tx_callback(struct hostapd_data *hapd, u8 *buf, size_t len,
  1189. int ok)
  1190. {
  1191. struct ieee80211_hdr *hdr;
  1192. u16 fc, type, stype;
  1193. struct sta_info *sta;
  1194. hdr = (struct ieee80211_hdr *) buf;
  1195. fc = le_to_host16(hdr->frame_control);
  1196. type = WLAN_FC_GET_TYPE(fc);
  1197. stype = WLAN_FC_GET_STYPE(fc);
  1198. switch (type) {
  1199. case WLAN_FC_TYPE_MGMT:
  1200. wpa_printf(MSG_DEBUG, "MGMT (TX callback) %s",
  1201. ok ? "ACK" : "fail");
  1202. ieee802_11_mgmt_cb(hapd, buf, len, stype, ok);
  1203. break;
  1204. case WLAN_FC_TYPE_CTRL:
  1205. wpa_printf(MSG_DEBUG, "CTRL (TX callback) %s",
  1206. ok ? "ACK" : "fail");
  1207. break;
  1208. case WLAN_FC_TYPE_DATA:
  1209. wpa_printf(MSG_DEBUG, "DATA (TX callback) %s",
  1210. ok ? "ACK" : "fail");
  1211. sta = ap_get_sta(hapd, hdr->addr1);
  1212. if (sta && sta->flags & WLAN_STA_PENDING_POLL) {
  1213. wpa_printf(MSG_DEBUG, "STA " MACSTR " %s pending "
  1214. "activity poll", MAC2STR(sta->addr),
  1215. ok ? "ACKed" : "did not ACK");
  1216. if (ok)
  1217. sta->flags &= ~WLAN_STA_PENDING_POLL;
  1218. }
  1219. if (sta)
  1220. ieee802_1x_tx_status(hapd, sta, buf, len, ok);
  1221. break;
  1222. default:
  1223. printf("unknown TX callback frame type %d\n", type);
  1224. break;
  1225. }
  1226. }
  1227. static void handle_frame(struct hostapd_iface *iface, u8 *buf, size_t len,
  1228. struct hostapd_frame_info *hfi,
  1229. enum ieee80211_msg_type msg_type)
  1230. {
  1231. struct ieee80211_hdr *hdr;
  1232. u16 fc, type, stype;
  1233. size_t data_len = len;
  1234. struct hostapd_data *hapd = NULL;
  1235. int broadcast_bssid = 0;
  1236. size_t i;
  1237. u8 *bssid;
  1238. /*
  1239. * PS-Poll frames are 16 bytes. All other frames are
  1240. * 24 bytes or longer.
  1241. */
  1242. if (len < 16)
  1243. return;
  1244. hdr = (struct ieee80211_hdr *) buf;
  1245. fc = le_to_host16(hdr->frame_control);
  1246. type = WLAN_FC_GET_TYPE(fc);
  1247. stype = WLAN_FC_GET_STYPE(fc);
  1248. switch (type) {
  1249. case WLAN_FC_TYPE_DATA:
  1250. if (len < 24)
  1251. return;
  1252. switch (fc & (WLAN_FC_FROMDS | WLAN_FC_TODS)) {
  1253. case WLAN_FC_TODS:
  1254. bssid = hdr->addr1;
  1255. break;
  1256. default:
  1257. /* discard */
  1258. return;
  1259. }
  1260. break;
  1261. case WLAN_FC_TYPE_CTRL:
  1262. /* discard non-ps-poll frames */
  1263. if (stype != WLAN_FC_STYPE_PSPOLL)
  1264. return;
  1265. bssid = hdr->addr1;
  1266. break;
  1267. case WLAN_FC_TYPE_MGMT:
  1268. bssid = hdr->addr3;
  1269. break;
  1270. default:
  1271. /* discard */
  1272. return;
  1273. }
  1274. /* find interface frame belongs to */
  1275. for (i = 0; i < iface->num_bss; i++) {
  1276. if (memcmp(bssid, iface->bss[i]->own_addr, ETH_ALEN) == 0) {
  1277. hapd = iface->bss[i];
  1278. break;
  1279. }
  1280. }
  1281. if (hapd == NULL) {
  1282. hapd = iface->bss[0];
  1283. if (bssid[0] != 0xff || bssid[1] != 0xff ||
  1284. bssid[2] != 0xff || bssid[3] != 0xff ||
  1285. bssid[4] != 0xff || bssid[5] != 0xff) {
  1286. /*
  1287. * Unknown BSSID - drop frame if this is not from
  1288. * passive scanning or a beacon (at least ProbeReq
  1289. * frames to other APs may be allowed through RX
  1290. * filtering in the wlan hw/driver)
  1291. */
  1292. if ((type != WLAN_FC_TYPE_MGMT ||
  1293. stype != WLAN_FC_STYPE_BEACON))
  1294. return;
  1295. } else
  1296. broadcast_bssid = 1;
  1297. }
  1298. switch (msg_type) {
  1299. case ieee80211_msg_normal:
  1300. /* continue processing */
  1301. break;
  1302. case ieee80211_msg_tx_callback_ack:
  1303. handle_tx_callback(hapd, buf, data_len, 1);
  1304. return;
  1305. case ieee80211_msg_tx_callback_fail:
  1306. handle_tx_callback(hapd, buf, data_len, 0);
  1307. return;
  1308. }
  1309. switch (type) {
  1310. case WLAN_FC_TYPE_MGMT:
  1311. if (stype != WLAN_FC_STYPE_BEACON &&
  1312. stype != WLAN_FC_STYPE_PROBE_REQ)
  1313. wpa_printf(MSG_MSGDUMP, "MGMT");
  1314. if (broadcast_bssid) {
  1315. for (i = 0; i < iface->num_bss; i++)
  1316. ieee802_11_mgmt(iface->bss[i], buf, data_len,
  1317. stype, hfi);
  1318. } else
  1319. ieee802_11_mgmt(hapd, buf, data_len, stype, hfi);
  1320. break;
  1321. case WLAN_FC_TYPE_CTRL:
  1322. /* can only get here with PS-Poll frames */
  1323. wpa_printf(MSG_DEBUG, "CTRL");
  1324. handle_unknown_sta(hapd, hdr->addr2);
  1325. break;
  1326. case WLAN_FC_TYPE_DATA:
  1327. wpa_printf(MSG_DEBUG, "DATA");
  1328. handle_unknown_sta(hapd, hdr->addr2);
  1329. break;
  1330. }
  1331. }
  1332. static void handle_eapol(int sock, void *eloop_ctx, void *sock_ctx)
  1333. {
  1334. struct i802_driver_data *drv = eloop_ctx;
  1335. struct hostapd_data *hapd = drv->hapd;
  1336. struct sockaddr_ll lladdr;
  1337. unsigned char buf[3000];
  1338. int len;
  1339. socklen_t fromlen = sizeof(lladdr);
  1340. len = recvfrom(sock, buf, sizeof(buf), 0,
  1341. (struct sockaddr *)&lladdr, &fromlen);
  1342. if (len < 0) {
  1343. perror("recv");
  1344. return;
  1345. }
  1346. if (have_ifidx(drv, lladdr.sll_ifindex))
  1347. ieee802_1x_receive(hapd, lladdr.sll_addr, buf, len);
  1348. }
  1349. static void handle_monitor_read(int sock, void *eloop_ctx, void *sock_ctx)
  1350. {
  1351. struct i802_driver_data *drv = eloop_ctx;
  1352. int len;
  1353. unsigned char buf[3000];
  1354. struct hostapd_data *hapd = drv->hapd;
  1355. struct ieee80211_radiotap_iterator iter;
  1356. int ret;
  1357. struct hostapd_frame_info hfi;
  1358. int injected = 0, failed = 0, msg_type, rxflags = 0;
  1359. len = recv(sock, buf, sizeof(buf), 0);
  1360. if (len < 0) {
  1361. perror("recv");
  1362. return;
  1363. }
  1364. if (ieee80211_radiotap_iterator_init(&iter, (void*)buf, len)) {
  1365. printf("received invalid radiotap frame\n");
  1366. return;
  1367. }
  1368. memset(&hfi, 0, sizeof(hfi));
  1369. while (1) {
  1370. ret = ieee80211_radiotap_iterator_next(&iter);
  1371. if (ret == -ENOENT)
  1372. break;
  1373. if (ret) {
  1374. printf("received invalid radiotap frame (%d)\n", ret);
  1375. return;
  1376. }
  1377. switch (iter.this_arg_index) {
  1378. case IEEE80211_RADIOTAP_FLAGS:
  1379. if (*iter.this_arg & IEEE80211_RADIOTAP_F_FCS)
  1380. len -= 4;
  1381. break;
  1382. case IEEE80211_RADIOTAP_RX_FLAGS:
  1383. rxflags = 1;
  1384. break;
  1385. case IEEE80211_RADIOTAP_TX_FLAGS:
  1386. injected = 1;
  1387. failed = le_to_host16((*(uint16_t *) iter.this_arg)) &
  1388. IEEE80211_RADIOTAP_F_TX_FAIL;
  1389. break;
  1390. case IEEE80211_RADIOTAP_DATA_RETRIES:
  1391. break;
  1392. case IEEE80211_RADIOTAP_CHANNEL:
  1393. /* TODO convert from freq/flags to channel number
  1394. hfi.channel = XXX;
  1395. hfi.phytype = XXX;
  1396. */
  1397. break;
  1398. case IEEE80211_RADIOTAP_RATE:
  1399. hfi.datarate = *iter.this_arg * 5;
  1400. break;
  1401. case IEEE80211_RADIOTAP_DB_ANTSIGNAL:
  1402. hfi.ssi_signal = *iter.this_arg;
  1403. break;
  1404. }
  1405. }
  1406. if (rxflags && injected)
  1407. return;
  1408. if (!injected)
  1409. msg_type = ieee80211_msg_normal;
  1410. else if (failed)
  1411. msg_type = ieee80211_msg_tx_callback_fail;
  1412. else
  1413. msg_type = ieee80211_msg_tx_callback_ack;
  1414. handle_frame(hapd->iface, buf + iter.max_length,
  1415. len - iter.max_length, &hfi, msg_type);
  1416. }
  1417. static int nl80211_create_monitor_interface(struct i802_driver_data *drv)
  1418. {
  1419. char buf[IFNAMSIZ];
  1420. struct sockaddr_ll ll;
  1421. int optval;
  1422. socklen_t optlen;
  1423. snprintf(buf, IFNAMSIZ, "mon.%s", drv->iface);
  1424. buf[IFNAMSIZ - 1] = '\0';
  1425. drv->monitor_ifidx =
  1426. nl80211_create_iface(drv, buf, NL80211_IFTYPE_MONITOR, NULL);
  1427. if (drv->monitor_ifidx < 0)
  1428. return -1;
  1429. if (hostapd_set_iface_flags(drv, buf, 1))
  1430. goto error;
  1431. memset(&ll, 0, sizeof(ll));
  1432. ll.sll_family = AF_PACKET;
  1433. ll.sll_ifindex = drv->monitor_ifidx;
  1434. drv->monitor_sock = socket(PF_PACKET, SOCK_RAW, htons(ETH_P_ALL));
  1435. if (drv->monitor_sock < 0) {
  1436. perror("socket[PF_PACKET,SOCK_RAW]");
  1437. goto error;
  1438. }
  1439. if (bind(drv->monitor_sock, (struct sockaddr *) &ll,
  1440. sizeof(ll)) < 0) {
  1441. perror("monitor socket bind");
  1442. goto error;
  1443. }
  1444. optlen = sizeof(optval);
  1445. optval = 20;
  1446. if (setsockopt
  1447. (drv->monitor_sock, SOL_SOCKET, SO_PRIORITY, &optval, optlen)) {
  1448. perror("Failed to set socket priority");
  1449. goto error;
  1450. }
  1451. if (eloop_register_read_sock(drv->monitor_sock, handle_monitor_read,
  1452. drv, NULL)) {
  1453. printf("Could not register monitor read socket\n");
  1454. goto error;
  1455. }
  1456. return 0;
  1457. error:
  1458. nl80211_remove_iface(drv, drv->monitor_ifidx);
  1459. return -1;
  1460. }
  1461. static int nl80211_set_master_mode(struct i802_driver_data *drv,
  1462. const char *ifname)
  1463. {
  1464. struct nl_msg *msg;
  1465. msg = nlmsg_alloc();
  1466. if (!msg)
  1467. return -1;
  1468. genlmsg_put(msg, 0, 0, genl_family_get_id(drv->nl80211), 0,
  1469. 0, NL80211_CMD_SET_INTERFACE, 0);
  1470. NLA_PUT_U32(msg, NL80211_ATTR_IFINDEX,
  1471. if_nametoindex(ifname));
  1472. NLA_PUT_U32(msg, NL80211_ATTR_IFTYPE, NL80211_IFTYPE_AP);
  1473. if (nl_send_auto_complete(drv->nl_handle, msg) < 0 ||
  1474. nl_wait_for_ack(drv->nl_handle) < 0) {
  1475. nla_put_failure:
  1476. wpa_printf(MSG_ERROR, "Failed to set interface %s to master "
  1477. "mode.", ifname);
  1478. nlmsg_free(msg);
  1479. return -1;
  1480. }
  1481. nlmsg_free(msg);
  1482. return 0;
  1483. }
  1484. static int i802_init_sockets(struct i802_driver_data *drv, const u8 *bssid)
  1485. {
  1486. struct ifreq ifr;
  1487. struct sockaddr_ll addr;
  1488. drv->ioctl_sock = -1;
  1489. drv->ioctl_sock = socket(PF_INET, SOCK_DGRAM, 0);
  1490. if (drv->ioctl_sock < 0) {
  1491. perror("socket[PF_INET,SOCK_DGRAM]");
  1492. return -1;
  1493. }
  1494. /* start listening for EAPOL on the default AP interface */
  1495. add_ifidx(drv, if_nametoindex(drv->iface));
  1496. if (hostapd_set_iface_flags(drv, drv->iface, 0))
  1497. return -1;
  1498. if (bssid) {
  1499. os_strlcpy(ifr.ifr_name, drv->iface, IFNAMSIZ);
  1500. memcpy(ifr.ifr_hwaddr.sa_data, bssid, ETH_ALEN);
  1501. ifr.ifr_hwaddr.sa_family = ARPHRD_ETHER;
  1502. if (ioctl(drv->ioctl_sock, SIOCSIFHWADDR, &ifr)) {
  1503. perror("ioctl(SIOCSIFHWADDR)");
  1504. return -1;
  1505. }
  1506. }
  1507. /*
  1508. * initialise generic netlink and nl80211
  1509. */
  1510. drv->nl_cb = nl_cb_alloc(NL_CB_DEFAULT);
  1511. if (!drv->nl_cb) {
  1512. printf("Failed to allocate netlink callbacks.\n");
  1513. return -1;
  1514. }
  1515. drv->nl_handle = nl_handle_alloc_cb(drv->nl_cb);
  1516. if (!drv->nl_handle) {
  1517. printf("Failed to allocate netlink handle.\n");
  1518. return -1;
  1519. }
  1520. if (genl_connect(drv->nl_handle)) {
  1521. printf("Failed to connect to generic netlink.\n");
  1522. return -1;
  1523. }
  1524. drv->nl_cache = genl_ctrl_alloc_cache(drv->nl_handle);
  1525. if (!drv->nl_cache) {
  1526. printf("Failed to allocate generic netlink cache.\n");
  1527. return -1;
  1528. }
  1529. drv->nl80211 = genl_ctrl_search_by_name(drv->nl_cache, "nl80211");
  1530. if (!drv->nl80211) {
  1531. printf("nl80211 not found.\n");
  1532. return -1;
  1533. }
  1534. /* Initialise a monitor interface */
  1535. if (nl80211_create_monitor_interface(drv))
  1536. return -1;
  1537. if (nl80211_set_master_mode(drv, drv->iface))
  1538. return -1;
  1539. if (hostapd_set_iface_flags(drv, drv->iface, 1))
  1540. return -1;
  1541. memset(&addr, 0, sizeof(addr));
  1542. addr.sll_family = AF_PACKET;
  1543. addr.sll_ifindex = ifr.ifr_ifindex;
  1544. wpa_printf(MSG_DEBUG, "Opening raw packet socket for ifindex %d",
  1545. addr.sll_ifindex);
  1546. drv->eapol_sock = socket(PF_PACKET, SOCK_DGRAM, htons(ETH_P_PAE));
  1547. if (drv->eapol_sock < 0) {
  1548. perror("socket(PF_PACKET, SOCK_DGRAM, ETH_P_PAE)");
  1549. return -1;
  1550. }
  1551. if (eloop_register_read_sock(drv->eapol_sock, handle_eapol, drv, NULL))
  1552. {
  1553. printf("Could not register read socket for eapol\n");
  1554. return -1;
  1555. }
  1556. memset(&ifr, 0, sizeof(ifr));
  1557. os_strlcpy(ifr.ifr_name, drv->iface, sizeof(ifr.ifr_name));
  1558. if (ioctl(drv->ioctl_sock, SIOCGIFHWADDR, &ifr) != 0) {
  1559. perror("ioctl(SIOCGIFHWADDR)");
  1560. return -1;
  1561. }
  1562. if (ifr.ifr_hwaddr.sa_family != ARPHRD_ETHER) {
  1563. printf("Invalid HW-addr family 0x%04x\n",
  1564. ifr.ifr_hwaddr.sa_family);
  1565. return -1;
  1566. }
  1567. memcpy(drv->hapd->own_addr, ifr.ifr_hwaddr.sa_data, ETH_ALEN);
  1568. return 0;
  1569. }
  1570. static int i802_get_inact_sec(void *priv, const u8 *addr)
  1571. {
  1572. struct hostap_sta_driver_data data;
  1573. int ret;
  1574. data.inactive_msec = (unsigned long) -1;
  1575. ret = i802_read_sta_data(priv, &data, addr);
  1576. if (ret || data.inactive_msec == (unsigned long) -1)
  1577. return -1;
  1578. return data.inactive_msec / 1000;
  1579. }
  1580. static int i802_sta_clear_stats(void *priv, const u8 *addr)
  1581. {
  1582. #if 0
  1583. /* TODO */
  1584. #endif
  1585. return 0;
  1586. }
  1587. static void
  1588. hostapd_wireless_event_wireless_custom(struct i802_driver_data *drv,
  1589. char *custom)
  1590. {
  1591. wpa_printf(MSG_DEBUG, "Custom wireless event: '%s'", custom);
  1592. if (strncmp(custom, "MLME-MICHAELMICFAILURE.indication", 33) == 0) {
  1593. char *pos;
  1594. u8 addr[ETH_ALEN];
  1595. pos = strstr(custom, "addr=");
  1596. if (pos == NULL) {
  1597. wpa_printf(MSG_DEBUG,
  1598. "MLME-MICHAELMICFAILURE.indication "
  1599. "without sender address ignored");
  1600. return;
  1601. }
  1602. pos += 5;
  1603. if (hwaddr_aton(pos, addr) == 0) {
  1604. ieee80211_michael_mic_failure(drv->hapd, addr, 1);
  1605. } else {
  1606. wpa_printf(MSG_DEBUG,
  1607. "MLME-MICHAELMICFAILURE.indication "
  1608. "with invalid MAC address");
  1609. }
  1610. }
  1611. }
  1612. static void hostapd_wireless_event_wireless(struct i802_driver_data *drv,
  1613. char *data, int len)
  1614. {
  1615. struct iw_event iwe_buf, *iwe = &iwe_buf;
  1616. char *pos, *end, *custom, *buf;
  1617. pos = data;
  1618. end = data + len;
  1619. while (pos + IW_EV_LCP_LEN <= end) {
  1620. /* Event data may be unaligned, so make a local, aligned copy
  1621. * before processing. */
  1622. memcpy(&iwe_buf, pos, IW_EV_LCP_LEN);
  1623. wpa_printf(MSG_DEBUG, "Wireless event: cmd=0x%x len=%d",
  1624. iwe->cmd, iwe->len);
  1625. if (iwe->len <= IW_EV_LCP_LEN)
  1626. return;
  1627. custom = pos + IW_EV_POINT_LEN;
  1628. if (drv->we_version > 18 &&
  1629. (iwe->cmd == IWEVMICHAELMICFAILURE ||
  1630. iwe->cmd == IWEVCUSTOM)) {
  1631. /* WE-19 removed the pointer from struct iw_point */
  1632. char *dpos = (char *) &iwe_buf.u.data.length;
  1633. int dlen = dpos - (char *) &iwe_buf;
  1634. memcpy(dpos, pos + IW_EV_LCP_LEN,
  1635. sizeof(struct iw_event) - dlen);
  1636. } else {
  1637. memcpy(&iwe_buf, pos, sizeof(struct iw_event));
  1638. custom += IW_EV_POINT_OFF;
  1639. }
  1640. switch (iwe->cmd) {
  1641. case IWEVCUSTOM:
  1642. if (custom + iwe->u.data.length > end)
  1643. return;
  1644. buf = malloc(iwe->u.data.length + 1);
  1645. if (buf == NULL)
  1646. return;
  1647. memcpy(buf, custom, iwe->u.data.length);
  1648. buf[iwe->u.data.length] = '\0';
  1649. hostapd_wireless_event_wireless_custom(drv, buf);
  1650. free(buf);
  1651. break;
  1652. }
  1653. pos += iwe->len;
  1654. }
  1655. }
  1656. static void hostapd_wireless_event_rtm_newlink(struct i802_driver_data *drv,
  1657. struct nlmsghdr *h, int len)
  1658. {
  1659. struct ifinfomsg *ifi;
  1660. int attrlen, nlmsg_len, rta_len;
  1661. struct rtattr *attr;
  1662. if (len < (int) sizeof(*ifi))
  1663. return;
  1664. ifi = NLMSG_DATA(h);
  1665. /* TODO: use ifi->ifi_index to filter out wireless events from other
  1666. * interfaces */
  1667. nlmsg_len = NLMSG_ALIGN(sizeof(struct ifinfomsg));
  1668. attrlen = h->nlmsg_len - nlmsg_len;
  1669. if (attrlen < 0)
  1670. return;
  1671. attr = (struct rtattr *) (((char *) ifi) + nlmsg_len);
  1672. rta_len = RTA_ALIGN(sizeof(struct rtattr));
  1673. while (RTA_OK(attr, attrlen)) {
  1674. if (attr->rta_type == IFLA_WIRELESS) {
  1675. hostapd_wireless_event_wireless(
  1676. drv, ((char *) attr) + rta_len,
  1677. attr->rta_len - rta_len);
  1678. }
  1679. attr = RTA_NEXT(attr, attrlen);
  1680. }
  1681. }
  1682. static void hostapd_wireless_event_receive(int sock, void *eloop_ctx,
  1683. void *sock_ctx)
  1684. {
  1685. char buf[256];
  1686. int left;
  1687. struct sockaddr_nl from;
  1688. socklen_t fromlen;
  1689. struct nlmsghdr *h;
  1690. struct i802_driver_data *drv = eloop_ctx;
  1691. fromlen = sizeof(from);
  1692. left = recvfrom(sock, buf, sizeof(buf), MSG_DONTWAIT,
  1693. (struct sockaddr *) &from, &fromlen);
  1694. if (left < 0) {
  1695. if (errno != EINTR && errno != EAGAIN)
  1696. perror("recvfrom(netlink)");
  1697. return;
  1698. }
  1699. h = (struct nlmsghdr *) buf;
  1700. while (left >= (int) sizeof(*h)) {
  1701. int len, plen;
  1702. len = h->nlmsg_len;
  1703. plen = len - sizeof(*h);
  1704. if (len > left || plen < 0) {
  1705. printf("Malformed netlink message: "
  1706. "len=%d left=%d plen=%d\n",
  1707. len, left, plen);
  1708. break;
  1709. }
  1710. switch (h->nlmsg_type) {
  1711. case RTM_NEWLINK:
  1712. hostapd_wireless_event_rtm_newlink(drv, h, plen);
  1713. break;
  1714. }
  1715. len = NLMSG_ALIGN(len);
  1716. left -= len;
  1717. h = (struct nlmsghdr *) ((char *) h + len);
  1718. }
  1719. if (left > 0) {
  1720. printf("%d extra bytes in the end of netlink message\n", left);
  1721. }
  1722. }
  1723. static int hostap_get_we_version(struct i802_driver_data *drv)
  1724. {
  1725. struct iw_range *range;
  1726. struct iwreq iwr;
  1727. int minlen;
  1728. size_t buflen;
  1729. drv->we_version = 0;
  1730. /*
  1731. * Use larger buffer than struct iw_range in order to allow the
  1732. * structure to grow in the future.
  1733. */
  1734. buflen = sizeof(struct iw_range) + 500;
  1735. range = os_zalloc(buflen);
  1736. if (range == NULL)
  1737. return -1;
  1738. memset(&iwr, 0, sizeof(iwr));
  1739. os_strlcpy(iwr.ifr_name, drv->iface, IFNAMSIZ);
  1740. iwr.u.data.pointer = (caddr_t) range;
  1741. iwr.u.data.length = buflen;
  1742. minlen = ((char *) &range->enc_capa) - (char *) range +
  1743. sizeof(range->enc_capa);
  1744. if (ioctl(drv->ioctl_sock, SIOCGIWRANGE, &iwr) < 0) {
  1745. perror("ioctl[SIOCGIWRANGE]");
  1746. free(range);
  1747. return -1;
  1748. } else if (iwr.u.data.length >= minlen &&
  1749. range->we_version_compiled >= 18) {
  1750. wpa_printf(MSG_DEBUG, "SIOCGIWRANGE: WE(compiled)=%d "
  1751. "WE(source)=%d enc_capa=0x%x",
  1752. range->we_version_compiled,
  1753. range->we_version_source,
  1754. range->enc_capa);
  1755. drv->we_version = range->we_version_compiled;
  1756. }
  1757. free(range);
  1758. return 0;
  1759. }
  1760. static int i802_wireless_event_init(void *priv)
  1761. {
  1762. struct i802_driver_data *drv = priv;
  1763. int s;
  1764. struct sockaddr_nl local;
  1765. hostap_get_we_version(drv);
  1766. drv->wext_sock = -1;
  1767. s = socket(PF_NETLINK, SOCK_RAW, NETLINK_ROUTE);
  1768. if (s < 0) {
  1769. perror("socket(PF_NETLINK,SOCK_RAW,NETLINK_ROUTE)");
  1770. return -1;
  1771. }
  1772. memset(&local, 0, sizeof(local));
  1773. local.nl_family = AF_NETLINK;
  1774. local.nl_groups = RTMGRP_LINK;
  1775. if (bind(s, (struct sockaddr *) &local, sizeof(local)) < 0) {
  1776. perror("bind(netlink)");
  1777. close(s);
  1778. return -1;
  1779. }
  1780. eloop_register_read_sock(s, hostapd_wireless_event_receive, drv,
  1781. NULL);
  1782. drv->wext_sock = s;
  1783. return 0;
  1784. }
  1785. static void i802_wireless_event_deinit(void *priv)
  1786. {
  1787. struct i802_driver_data *drv = priv;
  1788. if (drv->wext_sock < 0)
  1789. return;
  1790. eloop_unregister_read_sock(drv->wext_sock);
  1791. close(drv->wext_sock);
  1792. }
  1793. static int i802_sta_deauth(void *priv, const u8 *addr, int reason)
  1794. {
  1795. struct i802_driver_data *drv = priv;
  1796. struct ieee80211_mgmt mgmt;
  1797. memset(&mgmt, 0, sizeof(mgmt));
  1798. mgmt.frame_control = IEEE80211_FC(WLAN_FC_TYPE_MGMT,
  1799. WLAN_FC_STYPE_DEAUTH);
  1800. memcpy(mgmt.da, addr, ETH_ALEN);
  1801. memcpy(mgmt.sa, drv->hapd->own_addr, ETH_ALEN);
  1802. memcpy(mgmt.bssid, drv->hapd->own_addr, ETH_ALEN);
  1803. mgmt.u.deauth.reason_code = host_to_le16(reason);
  1804. return i802_send_mgmt_frame(drv, &mgmt, IEEE80211_HDRLEN +
  1805. sizeof(mgmt.u.deauth), 0);
  1806. }
  1807. static int i802_sta_disassoc(void *priv, const u8 *addr, int reason)
  1808. {
  1809. struct i802_driver_data *drv = priv;
  1810. struct ieee80211_mgmt mgmt;
  1811. memset(&mgmt, 0, sizeof(mgmt));
  1812. mgmt.frame_control = IEEE80211_FC(WLAN_FC_TYPE_MGMT,
  1813. WLAN_FC_STYPE_DISASSOC);
  1814. memcpy(mgmt.da, addr, ETH_ALEN);
  1815. memcpy(mgmt.sa, drv->hapd->own_addr, ETH_ALEN);
  1816. memcpy(mgmt.bssid, drv->hapd->own_addr, ETH_ALEN);
  1817. mgmt.u.disassoc.reason_code = host_to_le16(reason);
  1818. return i802_send_mgmt_frame(drv, &mgmt, IEEE80211_HDRLEN +
  1819. sizeof(mgmt.u.disassoc), 0);
  1820. }
  1821. static void *i802_init_bssid(struct hostapd_data *hapd, const u8 *bssid)
  1822. {
  1823. struct i802_driver_data *drv;
  1824. drv = os_zalloc(sizeof(struct i802_driver_data));
  1825. if (drv == NULL) {
  1826. printf("Could not allocate memory for i802 driver data\n");
  1827. return NULL;
  1828. }
  1829. drv->hapd = hapd;
  1830. memcpy(drv->iface, hapd->conf->iface, sizeof(drv->iface));
  1831. drv->num_if_indices = sizeof(drv->default_if_indices) / sizeof(int);
  1832. drv->if_indices = drv->default_if_indices;
  1833. drv->bridge = if_nametoindex(hapd->conf->bridge);
  1834. if (i802_init_sockets(drv, bssid))
  1835. goto failed;
  1836. return drv;
  1837. failed:
  1838. free(drv);
  1839. return NULL;
  1840. }
  1841. static void *i802_init(struct hostapd_data *hapd)
  1842. {
  1843. return i802_init_bssid(hapd, NULL);
  1844. }
  1845. static void i802_deinit(void *priv)
  1846. {
  1847. struct i802_driver_data *drv = priv;
  1848. i802_del_beacon(drv);
  1849. /* remove monitor interface */
  1850. nl80211_remove_iface(drv, drv->monitor_ifidx);
  1851. (void) hostapd_set_iface_flags(drv, drv->iface, 0);
  1852. if (drv->monitor_sock >= 0) {
  1853. eloop_unregister_read_sock(drv->monitor_sock);
  1854. close(drv->monitor_sock);
  1855. }
  1856. if (drv->ioctl_sock >= 0)
  1857. close(drv->ioctl_sock);
  1858. if (drv->eapol_sock >= 0) {
  1859. eloop_unregister_read_sock(drv->eapol_sock);
  1860. close(drv->eapol_sock);
  1861. }
  1862. genl_family_put(drv->nl80211);
  1863. nl_cache_free(drv->nl_cache);
  1864. nl_handle_destroy(drv->nl_handle);
  1865. nl_cb_put(drv->nl_cb);
  1866. if (drv->if_indices != drv->default_if_indices)
  1867. free(drv->if_indices);
  1868. free(drv);
  1869. }
  1870. const struct wpa_driver_ops wpa_driver_nl80211_ops = {
  1871. .name = "nl80211",
  1872. .init = i802_init,
  1873. .init_bssid = i802_init_bssid,
  1874. .deinit = i802_deinit,
  1875. .wireless_event_init = i802_wireless_event_init,
  1876. .wireless_event_deinit = i802_wireless_event_deinit,
  1877. .set_ieee8021x = i802_set_ieee8021x,
  1878. .set_privacy = i802_set_privacy,
  1879. .set_encryption = i802_set_encryption,
  1880. .get_seqnum = i802_get_seqnum,
  1881. .flush = i802_flush,
  1882. .read_sta_data = i802_read_sta_data,
  1883. .send_eapol = i802_send_eapol,
  1884. .sta_set_flags = i802_sta_set_flags,
  1885. .sta_deauth = i802_sta_deauth,
  1886. .sta_disassoc = i802_sta_disassoc,
  1887. .sta_remove = i802_sta_remove,
  1888. .set_ssid = i802_set_ssid,
  1889. .send_mgmt_frame = i802_send_mgmt_frame,
  1890. .sta_add = i802_sta_add,
  1891. .get_inact_sec = i802_get_inact_sec,
  1892. .sta_clear_stats = i802_sta_clear_stats,
  1893. .set_freq = i802_set_freq,
  1894. .set_rts = i802_set_rts,
  1895. .get_rts = i802_get_rts,
  1896. .set_frag = i802_set_frag,
  1897. .get_frag = i802_get_frag,
  1898. .set_retry = i802_set_retry,
  1899. .get_retry = i802_get_retry,
  1900. .set_rate_sets = i802_set_rate_sets,
  1901. .set_channel_flag = i802_set_channel_flag,
  1902. .set_regulatory_domain = i802_set_regulatory_domain,
  1903. .set_beacon = i802_set_beacon,
  1904. .set_internal_bridge = i802_set_internal_bridge,
  1905. .set_beacon_int = i802_set_beacon_int,
  1906. .set_dtim_period = i802_set_dtim_period,
  1907. .set_cts_protect = i802_set_cts_protect,
  1908. .set_preamble = i802_set_preamble,
  1909. .set_short_slot_time = i802_set_short_slot_time,
  1910. .set_tx_queue_params = i802_set_tx_queue_params,
  1911. .bss_add = i802_bss_add,
  1912. .bss_remove = i802_bss_remove,
  1913. .if_add = i802_if_add,
  1914. .if_update = i802_if_update,
  1915. .if_remove = i802_if_remove,
  1916. .get_hw_feature_data = i802_get_hw_feature_data,
  1917. .set_sta_vlan = i802_set_sta_vlan,
  1918. };