rtw_tdls.c 102 KB

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  1. /******************************************************************************
  2. *
  3. * Copyright(c) 2007 - 2011 Realtek Corporation. All rights reserved.
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms of version 2 of the GNU General Public License as
  7. * published by the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope that it will be useful, but WITHOUT
  10. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  11. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  12. * more details.
  13. *
  14. * You should have received a copy of the GNU General Public License along with
  15. * this program; if not, write to the Free Software Foundation, Inc.,
  16. * 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
  17. *
  18. *
  19. ******************************************************************************/
  20. #define _RTW_TDLS_C_
  21. #include <drv_types.h>
  22. #include <hal_data.h>
  23. #ifdef CONFIG_TDLS
  24. #define ONE_SEC 1000 /* 1000 ms */
  25. extern unsigned char MCS_rate_2R[16];
  26. extern unsigned char MCS_rate_1R[16];
  27. extern void process_wmmps_data(_adapter *padapter, union recv_frame *precv_frame);
  28. void rtw_reset_tdls_info(_adapter *padapter)
  29. {
  30. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  31. ptdlsinfo->ap_prohibited = _FALSE;
  32. /* For TDLS channel switch, currently we only allow it to work in wifi logo test mode */
  33. if (padapter->registrypriv.wifi_spec == 1)
  34. ptdlsinfo->ch_switch_prohibited = _FALSE;
  35. else
  36. ptdlsinfo->ch_switch_prohibited = _TRUE;
  37. ptdlsinfo->link_established = _FALSE;
  38. ptdlsinfo->sta_cnt = 0;
  39. ptdlsinfo->sta_maximum = _FALSE;
  40. #ifdef CONFIG_TDLS_CH_SW
  41. ptdlsinfo->chsw_info.ch_sw_state = TDLS_STATE_NONE;
  42. ATOMIC_SET(&ptdlsinfo->chsw_info.chsw_on, _FALSE);
  43. ptdlsinfo->chsw_info.off_ch_num = 0;
  44. ptdlsinfo->chsw_info.ch_offset = HAL_PRIME_CHNL_OFFSET_DONT_CARE;
  45. ptdlsinfo->chsw_info.cur_time = 0;
  46. ptdlsinfo->chsw_info.delay_switch_back = _FALSE;
  47. ptdlsinfo->chsw_info.dump_stack = _FALSE;
  48. #endif
  49. ptdlsinfo->ch_sensing = 0;
  50. ptdlsinfo->watchdog_count = 0;
  51. ptdlsinfo->dev_discovered = _FALSE;
  52. #ifdef CONFIG_WFD
  53. ptdlsinfo->wfd_info = &padapter->wfd_info;
  54. #endif
  55. }
  56. int rtw_init_tdls_info(_adapter *padapter)
  57. {
  58. int res = _SUCCESS;
  59. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  60. rtw_reset_tdls_info(padapter);
  61. ptdlsinfo->tdls_enable = _TRUE;
  62. #ifdef CONFIG_TDLS_DRIVER_SETUP
  63. ptdlsinfo->driver_setup = _TRUE;
  64. #else
  65. ptdlsinfo->driver_setup = _FALSE;
  66. #endif /* CONFIG_TDLS_DRIVER_SETUP */
  67. _rtw_spinlock_init(&ptdlsinfo->cmd_lock);
  68. _rtw_spinlock_init(&ptdlsinfo->hdl_lock);
  69. return res;
  70. }
  71. void rtw_free_tdls_info(struct tdls_info *ptdlsinfo)
  72. {
  73. _rtw_spinlock_free(&ptdlsinfo->cmd_lock);
  74. _rtw_spinlock_free(&ptdlsinfo->hdl_lock);
  75. _rtw_memset(ptdlsinfo, 0, sizeof(struct tdls_info));
  76. }
  77. int check_ap_tdls_prohibited(u8 *pframe, u8 pkt_len)
  78. {
  79. u8 tdls_prohibited_bit = 0x40; /* bit(38); TDLS_prohibited */
  80. if (pkt_len < 5)
  81. return _FALSE;
  82. pframe += 4;
  83. if ((*pframe) & tdls_prohibited_bit)
  84. return _TRUE;
  85. return _FALSE;
  86. }
  87. int check_ap_tdls_ch_switching_prohibited(u8 *pframe, u8 pkt_len)
  88. {
  89. u8 tdls_ch_swithcing_prohibited_bit = 0x80; /* bit(39); TDLS_channel_switching prohibited */
  90. if (pkt_len < 5)
  91. return _FALSE;
  92. pframe += 4;
  93. if ((*pframe) & tdls_ch_swithcing_prohibited_bit)
  94. return _TRUE;
  95. return _FALSE;
  96. }
  97. u8 rtw_tdls_is_setup_allowed(_adapter *padapter)
  98. {
  99. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  100. if (ptdlsinfo->ap_prohibited == _TRUE)
  101. return _FALSE;
  102. return _TRUE;
  103. }
  104. #ifdef CONFIG_TDLS_CH_SW
  105. u8 rtw_tdls_is_chsw_allowed(_adapter *padapter)
  106. {
  107. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  108. if (ptdlsinfo->ch_switch_prohibited == _TRUE)
  109. return _FALSE;
  110. if (padapter->registrypriv.wifi_spec == 0)
  111. return _FALSE;
  112. return _TRUE;
  113. }
  114. #endif
  115. int _issue_nulldata_to_TDLS_peer_STA(_adapter *padapter, unsigned char *da, unsigned int power_mode, int wait_ack)
  116. {
  117. int ret = _FAIL;
  118. struct xmit_frame *pmgntframe;
  119. struct pkt_attrib *pattrib;
  120. unsigned char *pframe;
  121. struct rtw_ieee80211_hdr *pwlanhdr;
  122. unsigned short *fctrl, *qc;
  123. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  124. struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
  125. struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
  126. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  127. if (pmgntframe == NULL)
  128. goto exit;
  129. pattrib = &pmgntframe->attrib;
  130. update_mgntframe_attrib(padapter, pattrib);
  131. pattrib->hdrlen += 2;
  132. pattrib->qos_en = _TRUE;
  133. pattrib->eosp = 1;
  134. pattrib->ack_policy = 0;
  135. pattrib->mdata = 0;
  136. pattrib->retry_ctrl = _FALSE;
  137. _rtw_memset(pmgntframe->buf_addr, 0, WLANHDR_OFFSET + TXDESC_OFFSET);
  138. pframe = (u8 *)(pmgntframe->buf_addr) + TXDESC_OFFSET;
  139. pwlanhdr = (struct rtw_ieee80211_hdr *)pframe;
  140. fctrl = &(pwlanhdr->frame_ctl);
  141. *(fctrl) = 0;
  142. if (power_mode)
  143. SetPwrMgt(fctrl);
  144. qc = (unsigned short *)(pframe + pattrib->hdrlen - 2);
  145. SetPriority(qc, 7); /* Set priority to VO */
  146. SetEOSP(qc, pattrib->eosp);
  147. SetAckpolicy(qc, pattrib->ack_policy);
  148. _rtw_memcpy(pwlanhdr->addr1, da, ETH_ALEN);
  149. _rtw_memcpy(pwlanhdr->addr2, adapter_mac_addr(padapter), ETH_ALEN);
  150. _rtw_memcpy(pwlanhdr->addr3, get_my_bssid(&(pmlmeinfo->network)), ETH_ALEN);
  151. SetSeqNum(pwlanhdr, pmlmeext->mgnt_seq);
  152. pmlmeext->mgnt_seq++;
  153. set_frame_sub_type(pframe, WIFI_QOS_DATA_NULL);
  154. pframe += sizeof(struct rtw_ieee80211_hdr_3addr_qos);
  155. pattrib->pktlen = sizeof(struct rtw_ieee80211_hdr_3addr_qos);
  156. pattrib->last_txcmdsz = pattrib->pktlen;
  157. if (wait_ack)
  158. ret = dump_mgntframe_and_wait_ack(padapter, pmgntframe);
  159. else {
  160. dump_mgntframe(padapter, pmgntframe);
  161. ret = _SUCCESS;
  162. }
  163. exit:
  164. return ret;
  165. }
  166. /*
  167. *wait_ms == 0 means that there is no need to wait ack through C2H_CCX_TX_RPT
  168. *wait_ms > 0 means you want to wait ack through C2H_CCX_TX_RPT, and the value of wait_ms means the interval between each TX
  169. *try_cnt means the maximal TX count to try
  170. */
  171. int issue_nulldata_to_TDLS_peer_STA(_adapter *padapter, unsigned char *da, unsigned int power_mode, int try_cnt, int wait_ms)
  172. {
  173. int ret;
  174. int i = 0;
  175. u32 start = rtw_get_current_time();
  176. struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
  177. struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
  178. #if 0
  179. psta = rtw_get_stainfo(&padapter->stapriv, da);
  180. if (psta) {
  181. if (power_mode)
  182. rtw_hal_macid_sleep(padapter, psta->mac_id);
  183. else
  184. rtw_hal_macid_wakeup(padapter, psta->mac_id);
  185. } else {
  186. RTW_INFO(FUNC_ADPT_FMT ": Can't find sta info for " MAC_FMT ", skip macid %s!!\n",
  187. FUNC_ADPT_ARG(padapter), MAC_ARG(da), power_mode ? "sleep" : "wakeup");
  188. rtw_warn_on(1);
  189. }
  190. #endif
  191. do {
  192. ret = _issue_nulldata_to_TDLS_peer_STA(padapter, da, power_mode, wait_ms > 0 ? _TRUE : _FALSE);
  193. i++;
  194. if (RTW_CANNOT_RUN(padapter))
  195. break;
  196. if (i < try_cnt && wait_ms > 0 && ret == _FAIL)
  197. rtw_msleep_os(wait_ms);
  198. } while ((i < try_cnt) && (ret == _FAIL || wait_ms == 0));
  199. if (ret != _FAIL) {
  200. ret = _SUCCESS;
  201. #ifndef DBG_XMIT_ACK
  202. goto exit;
  203. #endif
  204. }
  205. if (try_cnt && wait_ms) {
  206. if (da)
  207. RTW_INFO(FUNC_ADPT_FMT" to "MAC_FMT", ch:%u%s, %d/%d in %u ms\n",
  208. FUNC_ADPT_ARG(padapter), MAC_ARG(da), rtw_get_oper_ch(padapter),
  209. ret == _SUCCESS ? ", acked" : "", i, try_cnt, rtw_get_passing_time_ms(start));
  210. else
  211. RTW_INFO(FUNC_ADPT_FMT", ch:%u%s, %d/%d in %u ms\n",
  212. FUNC_ADPT_ARG(padapter), rtw_get_oper_ch(padapter),
  213. ret == _SUCCESS ? ", acked" : "", i, try_cnt, rtw_get_passing_time_ms(start));
  214. }
  215. exit:
  216. return ret;
  217. }
  218. void free_tdls_sta(_adapter *padapter, struct sta_info *ptdls_sta)
  219. {
  220. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  221. struct sta_priv *pstapriv = &padapter->stapriv;
  222. _irqL irqL;
  223. /* free peer sta_info */
  224. _enter_critical_bh(&(pstapriv->sta_hash_lock), &irqL);
  225. if (ptdlsinfo->sta_cnt != 0)
  226. ptdlsinfo->sta_cnt--;
  227. _exit_critical_bh(&(pstapriv->sta_hash_lock), &irqL);
  228. /* -2: AP + BC/MC sta, -4: default key */
  229. if (ptdlsinfo->sta_cnt < MAX_ALLOWED_TDLS_STA_NUM) {
  230. ptdlsinfo->sta_maximum = _FALSE;
  231. _rtw_memset(&ptdlsinfo->ss_record, 0x00, sizeof(struct tdls_ss_record));
  232. }
  233. /* clear cam */
  234. rtw_clearstakey_cmd(padapter, ptdls_sta, _TRUE);
  235. if (ptdlsinfo->sta_cnt == 0) {
  236. rtw_tdls_cmd(padapter, NULL, TDLS_RS_RCR);
  237. ptdlsinfo->link_established = _FALSE;
  238. } else
  239. RTW_INFO("Remain tdls sta:%02x\n", ptdlsinfo->sta_cnt);
  240. rtw_free_stainfo(padapter, ptdls_sta);
  241. }
  242. /* TDLS encryption(if needed) will always be CCMP */
  243. void rtw_tdls_set_key(_adapter *padapter, struct sta_info *ptdls_sta)
  244. {
  245. ptdls_sta->dot118021XPrivacy = _AES_;
  246. rtw_setstakey_cmd(padapter, ptdls_sta, TDLS_KEY, _TRUE);
  247. }
  248. #ifdef CONFIG_80211N_HT
  249. void rtw_tdls_process_ht_cap(_adapter *padapter, struct sta_info *ptdls_sta, u8 *data, u8 Length)
  250. {
  251. struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
  252. struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
  253. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  254. struct ht_priv *phtpriv = &pmlmepriv->htpriv;
  255. u8 max_AMPDU_len, min_MPDU_spacing;
  256. u8 cur_ldpc_cap = 0, cur_stbc_cap = 0, cur_beamform_cap = 0;
  257. /* Save HT capabilities in the sta object */
  258. _rtw_memset(&ptdls_sta->htpriv.ht_cap, 0, sizeof(struct rtw_ieee80211_ht_cap));
  259. if (data && Length >= sizeof(struct rtw_ieee80211_ht_cap)) {
  260. ptdls_sta->flags |= WLAN_STA_HT;
  261. ptdls_sta->flags |= WLAN_STA_WME;
  262. _rtw_memcpy(&ptdls_sta->htpriv.ht_cap, data, sizeof(struct rtw_ieee80211_ht_cap));
  263. } else
  264. ptdls_sta->flags &= ~WLAN_STA_HT;
  265. if (ptdls_sta->flags & WLAN_STA_HT) {
  266. if (padapter->registrypriv.ht_enable == _TRUE) {
  267. ptdls_sta->htpriv.ht_option = _TRUE;
  268. ptdls_sta->qos_option = _TRUE;
  269. } else {
  270. ptdls_sta->htpriv.ht_option = _FALSE;
  271. ptdls_sta->qos_option = _FALSE;
  272. }
  273. }
  274. /* HT related cap */
  275. if (ptdls_sta->htpriv.ht_option) {
  276. /* Check if sta supports rx ampdu */
  277. if (padapter->registrypriv.ampdu_enable == 1)
  278. ptdls_sta->htpriv.ampdu_enable = _TRUE;
  279. /* AMPDU Parameters field */
  280. /* Get MIN of MAX AMPDU Length Exp */
  281. if ((pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x3) > (data[2] & 0x3))
  282. max_AMPDU_len = (data[2] & 0x3);
  283. else
  284. max_AMPDU_len = (pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x3);
  285. /* Get MAX of MIN MPDU Start Spacing */
  286. if ((pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x1c) > (data[2] & 0x1c))
  287. min_MPDU_spacing = (pmlmeinfo->HT_caps.u.HT_cap_element.AMPDU_para & 0x1c);
  288. else
  289. min_MPDU_spacing = (data[2] & 0x1c);
  290. ptdls_sta->htpriv.rx_ampdu_min_spacing = max_AMPDU_len | min_MPDU_spacing;
  291. /* Check if sta support s Short GI 20M */
  292. if (ptdls_sta->htpriv.ht_cap.cap_info & cpu_to_le16(IEEE80211_HT_CAP_SGI_20))
  293. ptdls_sta->htpriv.sgi_20m = _TRUE;
  294. /* Check if sta support s Short GI 40M */
  295. if (ptdls_sta->htpriv.ht_cap.cap_info & cpu_to_le16(IEEE80211_HT_CAP_SGI_40))
  296. ptdls_sta->htpriv.sgi_40m = _TRUE;
  297. /* Bwmode would still followed AP's setting */
  298. if (ptdls_sta->htpriv.ht_cap.cap_info & cpu_to_le16(IEEE80211_HT_CAP_SUP_WIDTH)) {
  299. if (padapter->mlmeextpriv.cur_bwmode >= CHANNEL_WIDTH_40)
  300. ptdls_sta->bw_mode = CHANNEL_WIDTH_40;
  301. ptdls_sta->htpriv.ch_offset = padapter->mlmeextpriv.cur_ch_offset;
  302. }
  303. /* Config LDPC Coding Capability */
  304. if (TEST_FLAG(phtpriv->ldpc_cap, LDPC_HT_ENABLE_TX) && GET_HT_CAP_ELE_LDPC_CAP(data)) {
  305. SET_FLAG(cur_ldpc_cap, (LDPC_HT_ENABLE_TX | LDPC_HT_CAP_TX));
  306. RTW_INFO("Enable HT Tx LDPC!\n");
  307. }
  308. ptdls_sta->htpriv.ldpc_cap = cur_ldpc_cap;
  309. /* Config STBC setting */
  310. if (TEST_FLAG(phtpriv->stbc_cap, STBC_HT_ENABLE_TX) && GET_HT_CAP_ELE_RX_STBC(data)) {
  311. SET_FLAG(cur_stbc_cap, (STBC_HT_ENABLE_TX | STBC_HT_CAP_TX));
  312. RTW_INFO("Enable HT Tx STBC!\n");
  313. }
  314. ptdls_sta->htpriv.stbc_cap = cur_stbc_cap;
  315. #ifdef CONFIG_BEAMFORMING
  316. /* Config Tx beamforming setting */
  317. if (TEST_FLAG(phtpriv->beamform_cap, BEAMFORMING_HT_BEAMFORMEE_ENABLE) &&
  318. GET_HT_CAP_TXBF_EXPLICIT_COMP_STEERING_CAP(data))
  319. SET_FLAG(cur_beamform_cap, BEAMFORMING_HT_BEAMFORMER_ENABLE);
  320. if (TEST_FLAG(phtpriv->beamform_cap, BEAMFORMING_HT_BEAMFORMER_ENABLE) &&
  321. GET_HT_CAP_TXBF_EXPLICIT_COMP_FEEDBACK_CAP(data))
  322. SET_FLAG(cur_beamform_cap, BEAMFORMING_HT_BEAMFORMEE_ENABLE);
  323. ptdls_sta->htpriv.beamform_cap = cur_beamform_cap;
  324. if (cur_beamform_cap)
  325. RTW_INFO("Client HT Beamforming Cap = 0x%02X\n", cur_beamform_cap);
  326. #endif /* CONFIG_BEAMFORMING */
  327. }
  328. }
  329. u8 *rtw_tdls_set_ht_cap(_adapter *padapter, u8 *pframe, struct pkt_attrib *pattrib)
  330. {
  331. rtw_ht_use_default_setting(padapter);
  332. rtw_restructure_ht_ie(padapter, NULL, pframe, 0, &(pattrib->pktlen), padapter->mlmeextpriv.cur_channel);
  333. return pframe + pattrib->pktlen;
  334. }
  335. #endif
  336. #ifdef CONFIG_80211AC_VHT
  337. void rtw_tdls_process_vht_cap(_adapter *padapter, struct sta_info *ptdls_sta, u8 *data, u8 Length)
  338. {
  339. struct hal_spec_t *hal_spec = GET_HAL_SPEC(padapter);
  340. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  341. struct vht_priv *pvhtpriv = &pmlmepriv->vhtpriv;
  342. u8 cur_ldpc_cap = 0, cur_stbc_cap = 0, cur_beamform_cap = 0, rf_type = RF_1T1R, tx_nss = 0;
  343. u8 *pcap_mcs;
  344. _rtw_memset(&ptdls_sta->vhtpriv, 0, sizeof(struct vht_priv));
  345. if (data && Length == 12) {
  346. ptdls_sta->flags |= WLAN_STA_VHT;
  347. _rtw_memcpy(ptdls_sta->vhtpriv.vht_cap, data, 12);
  348. #if 0
  349. if (elems.vht_op_mode_notify && elems.vht_op_mode_notify_len == 1)
  350. _rtw_memcpy(&pstat->vhtpriv.vht_op_mode_notify, elems.vht_op_mode_notify, 1);
  351. else /* for Frame without Operating Mode notify ie; default: 80M */
  352. pstat->vhtpriv.vht_op_mode_notify = CHANNEL_WIDTH_80;
  353. #else
  354. ptdls_sta->vhtpriv.vht_op_mode_notify = CHANNEL_WIDTH_80;
  355. #endif
  356. } else
  357. ptdls_sta->flags &= ~WLAN_STA_VHT;
  358. if (ptdls_sta->flags & WLAN_STA_VHT) {
  359. if (REGSTY_IS_11AC_ENABLE(&padapter->registrypriv)
  360. && hal_chk_proto_cap(padapter, PROTO_CAP_11AC)
  361. && (!pmlmepriv->country_ent || COUNTRY_CHPLAN_EN_11AC(pmlmepriv->country_ent)))
  362. ptdls_sta->vhtpriv.vht_option = _TRUE;
  363. else
  364. ptdls_sta->vhtpriv.vht_option = _FALSE;
  365. }
  366. /* B4 Rx LDPC */
  367. if (TEST_FLAG(pvhtpriv->ldpc_cap, LDPC_VHT_ENABLE_TX) &&
  368. GET_VHT_CAPABILITY_ELE_RX_LDPC(data)) {
  369. SET_FLAG(cur_ldpc_cap, (LDPC_VHT_ENABLE_TX | LDPC_VHT_CAP_TX));
  370. RTW_INFO("Current VHT LDPC Setting = %02X\n", cur_ldpc_cap);
  371. }
  372. ptdls_sta->vhtpriv.ldpc_cap = cur_ldpc_cap;
  373. /* B5 Short GI for 80 MHz */
  374. ptdls_sta->vhtpriv.sgi_80m = (GET_VHT_CAPABILITY_ELE_SHORT_GI80M(data) & pvhtpriv->sgi_80m) ? _TRUE : _FALSE;
  375. /* B8 B9 B10 Rx STBC */
  376. if (TEST_FLAG(pvhtpriv->stbc_cap, STBC_VHT_ENABLE_TX) &&
  377. GET_VHT_CAPABILITY_ELE_RX_STBC(data)) {
  378. SET_FLAG(cur_stbc_cap, (STBC_VHT_ENABLE_TX | STBC_VHT_CAP_TX));
  379. RTW_INFO("Current VHT STBC Setting = %02X\n", cur_stbc_cap);
  380. }
  381. ptdls_sta->vhtpriv.stbc_cap = cur_stbc_cap;
  382. /* B11 SU Beamformer Capable, the target supports Beamformer and we are Beamformee */
  383. if (TEST_FLAG(pvhtpriv->beamform_cap, BEAMFORMING_VHT_BEAMFORMER_ENABLE) &&
  384. GET_VHT_CAPABILITY_ELE_SU_BFEE(data))
  385. SET_FLAG(cur_beamform_cap, BEAMFORMING_VHT_BEAMFORMEE_ENABLE);
  386. /* B12 SU Beamformee Capable, the target supports Beamformee and we are Beamformer */
  387. if (TEST_FLAG(pvhtpriv->beamform_cap, BEAMFORMING_VHT_BEAMFORMEE_ENABLE) &&
  388. GET_VHT_CAPABILITY_ELE_SU_BFER(data))
  389. SET_FLAG(cur_beamform_cap, BEAMFORMING_VHT_BEAMFORMER_ENABLE);
  390. ptdls_sta->vhtpriv.beamform_cap = cur_beamform_cap;
  391. if (cur_beamform_cap)
  392. RTW_INFO("Current VHT Beamforming Setting = %02X\n", cur_beamform_cap);
  393. /* B23 B24 B25 Maximum A-MPDU Length Exponent */
  394. ptdls_sta->vhtpriv.ampdu_len = GET_VHT_CAPABILITY_ELE_MAX_RXAMPDU_FACTOR(data);
  395. pcap_mcs = GET_VHT_CAPABILITY_ELE_RX_MCS(data);
  396. rtw_hal_get_hwreg(padapter, HW_VAR_RF_TYPE, (u8 *)(&rf_type));
  397. tx_nss = rtw_min(rf_type_to_rf_tx_cnt(rf_type), hal_spec->tx_nss_num);
  398. rtw_vht_nss_to_mcsmap(tx_nss, ptdls_sta->vhtpriv.vht_mcs_map, pcap_mcs);
  399. ptdls_sta->vhtpriv.vht_highest_rate = rtw_get_vht_highest_rate(ptdls_sta->vhtpriv.vht_mcs_map);
  400. }
  401. u8 *rtw_tdls_set_aid(_adapter *padapter, u8 *pframe, struct pkt_attrib *pattrib)
  402. {
  403. return rtw_set_ie(pframe, EID_AID, 2, (u8 *)&(padapter->mlmepriv.cur_network.aid), &(pattrib->pktlen));
  404. }
  405. u8 *rtw_tdls_set_vht_cap(_adapter *padapter, u8 *pframe, struct pkt_attrib *pattrib)
  406. {
  407. u32 ie_len = 0;
  408. rtw_vht_use_default_setting(padapter);
  409. ie_len = rtw_build_vht_cap_ie(padapter, pframe);
  410. pattrib->pktlen += ie_len;
  411. return pframe + ie_len;
  412. }
  413. u8 *rtw_tdls_set_vht_operation(_adapter *padapter, u8 *pframe, struct pkt_attrib *pattrib, u8 channel)
  414. {
  415. u32 ie_len = 0;
  416. ie_len = rtw_build_vht_operation_ie(padapter, pframe, channel);
  417. pattrib->pktlen += ie_len;
  418. return pframe + ie_len;
  419. }
  420. u8 *rtw_tdls_set_vht_op_mode_notify(_adapter *padapter, u8 *pframe, struct pkt_attrib *pattrib, u8 bw)
  421. {
  422. u32 ie_len = 0;
  423. ie_len = rtw_build_vht_op_mode_notify_ie(padapter, pframe, bw);
  424. pattrib->pktlen += ie_len;
  425. return pframe + ie_len;
  426. }
  427. #endif
  428. u8 *rtw_tdls_set_sup_ch(struct mlme_ext_priv *pmlmeext, u8 *pframe, struct pkt_attrib *pattrib)
  429. {
  430. u8 sup_ch[30 * 2] = {0x00}, ch_set_idx = 0, sup_ch_idx = 2;
  431. while (ch_set_idx < pmlmeext->max_chan_nums && pmlmeext->channel_set[ch_set_idx].ChannelNum != 0) {
  432. if (pmlmeext->channel_set[ch_set_idx].ChannelNum <= 14) {
  433. /* TODO: fix 2.4G supported channel when channel doesn't start from 1 and continuous */
  434. sup_ch[0] = 1; /* First channel number */
  435. sup_ch[1] = pmlmeext->channel_set[ch_set_idx].ChannelNum; /* Number of channel */
  436. } else {
  437. sup_ch[sup_ch_idx++] = pmlmeext->channel_set[ch_set_idx].ChannelNum;
  438. sup_ch[sup_ch_idx++] = 1;
  439. }
  440. ch_set_idx++;
  441. }
  442. return rtw_set_ie(pframe, _SUPPORTED_CH_IE_, sup_ch_idx, sup_ch, &(pattrib->pktlen));
  443. }
  444. u8 *rtw_tdls_set_rsnie(struct tdls_txmgmt *ptxmgmt, u8 *pframe, struct pkt_attrib *pattrib, int init, struct sta_info *ptdls_sta)
  445. {
  446. u8 *p = NULL;
  447. int len = 0;
  448. if (ptxmgmt->len > 0)
  449. p = rtw_get_ie(ptxmgmt->buf, _RSN_IE_2_, &len, ptxmgmt->len);
  450. if (p != NULL)
  451. return rtw_set_ie(pframe, _RSN_IE_2_, len, p + 2, &(pattrib->pktlen));
  452. else if (init == _TRUE)
  453. return rtw_set_ie(pframe, _RSN_IE_2_, sizeof(TDLS_RSNIE), TDLS_RSNIE, &(pattrib->pktlen));
  454. else
  455. return rtw_set_ie(pframe, _RSN_IE_2_, sizeof(ptdls_sta->TDLS_RSNIE), ptdls_sta->TDLS_RSNIE, &(pattrib->pktlen));
  456. }
  457. u8 *rtw_tdls_set_ext_cap(u8 *pframe, struct pkt_attrib *pattrib)
  458. {
  459. return rtw_set_ie(pframe, _EXT_CAP_IE_ , sizeof(TDLS_EXT_CAPIE), TDLS_EXT_CAPIE, &(pattrib->pktlen));
  460. }
  461. u8 *rtw_tdls_set_qos_cap(u8 *pframe, struct pkt_attrib *pattrib)
  462. {
  463. return rtw_set_ie(pframe, _VENDOR_SPECIFIC_IE_, sizeof(TDLS_WMMIE), TDLS_WMMIE, &(pattrib->pktlen));
  464. }
  465. u8 *rtw_tdls_set_ftie(struct tdls_txmgmt *ptxmgmt, u8 *pframe, struct pkt_attrib *pattrib, u8 *ANonce, u8 *SNonce)
  466. {
  467. struct wpa_tdls_ftie FTIE = {0};
  468. u8 *p = NULL;
  469. int len = 0;
  470. if (ptxmgmt->len > 0)
  471. p = rtw_get_ie(ptxmgmt->buf, _FTIE_, &len, ptxmgmt->len);
  472. if (p != NULL)
  473. return rtw_set_ie(pframe, _FTIE_, len, p + 2, &(pattrib->pktlen));
  474. else {
  475. if (ANonce != NULL)
  476. _rtw_memcpy(FTIE.Anonce, ANonce, WPA_NONCE_LEN);
  477. if (SNonce != NULL)
  478. _rtw_memcpy(FTIE.Snonce, SNonce, WPA_NONCE_LEN);
  479. return rtw_set_ie(pframe, _FTIE_ , 82, (u8 *)FTIE.mic_ctrl, &(pattrib->pktlen));
  480. }
  481. }
  482. u8 *rtw_tdls_set_timeout_interval(struct tdls_txmgmt *ptxmgmt, u8 *pframe, struct pkt_attrib *pattrib, int init, struct sta_info *ptdls_sta)
  483. {
  484. u8 timeout_itvl[5]; /* set timeout interval to maximum value */
  485. u32 timeout_interval = TDLS_TPK_RESEND_COUNT;
  486. u8 *p = NULL;
  487. int len = 0;
  488. if (ptxmgmt->len > 0)
  489. p = rtw_get_ie(ptxmgmt->buf, _TIMEOUT_ITVL_IE_, &len, ptxmgmt->len);
  490. if (p != NULL)
  491. return rtw_set_ie(pframe, _TIMEOUT_ITVL_IE_, len, p + 2, &(pattrib->pktlen));
  492. else {
  493. /* Timeout interval */
  494. timeout_itvl[0] = 0x02;
  495. if (init == _TRUE)
  496. _rtw_memcpy(timeout_itvl + 1, &timeout_interval, 4);
  497. else
  498. _rtw_memcpy(timeout_itvl + 1, (u8 *)(&ptdls_sta->TDLS_PeerKey_Lifetime), 4);
  499. return rtw_set_ie(pframe, _TIMEOUT_ITVL_IE_, 5, timeout_itvl, &(pattrib->pktlen));
  500. }
  501. }
  502. u8 *rtw_tdls_set_bss_coexist(_adapter *padapter, u8 *pframe, struct pkt_attrib *pattrib)
  503. {
  504. u8 iedata = 0;
  505. if (padapter->mlmepriv.num_FortyMHzIntolerant > 0)
  506. iedata |= BIT(2); /* 20 MHz BSS Width Request */
  507. /* Information Bit should be set by TDLS test plan 5.9 */
  508. iedata |= BIT(0);
  509. return rtw_set_ie(pframe, EID_BSSCoexistence, 1, &iedata, &(pattrib->pktlen));
  510. }
  511. u8 *rtw_tdls_set_payload_type(u8 *pframe, struct pkt_attrib *pattrib)
  512. {
  513. u8 payload_type = 0x02;
  514. return rtw_set_fixed_ie(pframe, 1, &(payload_type), &(pattrib->pktlen));
  515. }
  516. u8 *rtw_tdls_set_category(u8 *pframe, struct pkt_attrib *pattrib, u8 category)
  517. {
  518. return rtw_set_fixed_ie(pframe, 1, &(category), &(pattrib->pktlen));
  519. }
  520. u8 *rtw_tdls_set_action(u8 *pframe, struct pkt_attrib *pattrib, struct tdls_txmgmt *ptxmgmt)
  521. {
  522. return rtw_set_fixed_ie(pframe, 1, &(ptxmgmt->action_code), &(pattrib->pktlen));
  523. }
  524. u8 *rtw_tdls_set_status_code(u8 *pframe, struct pkt_attrib *pattrib, struct tdls_txmgmt *ptxmgmt)
  525. {
  526. return rtw_set_fixed_ie(pframe, 2, (u8 *)&(ptxmgmt->status_code), &(pattrib->pktlen));
  527. }
  528. u8 *rtw_tdls_set_dialog(u8 *pframe, struct pkt_attrib *pattrib, struct tdls_txmgmt *ptxmgmt)
  529. {
  530. u8 dialogtoken = 1;
  531. if (ptxmgmt->dialog_token)
  532. return rtw_set_fixed_ie(pframe, 1, &(ptxmgmt->dialog_token), &(pattrib->pktlen));
  533. else
  534. return rtw_set_fixed_ie(pframe, 1, &(dialogtoken), &(pattrib->pktlen));
  535. }
  536. u8 *rtw_tdls_set_reg_class(u8 *pframe, struct pkt_attrib *pattrib, struct sta_info *ptdls_sta)
  537. {
  538. u8 reg_class = 22;
  539. return rtw_set_fixed_ie(pframe, 1, &(reg_class), &(pattrib->pktlen));
  540. }
  541. u8 *rtw_tdls_set_second_channel_offset(u8 *pframe, struct pkt_attrib *pattrib, u8 ch_offset)
  542. {
  543. return rtw_set_ie(pframe, EID_SecondaryChnlOffset , 1, &ch_offset, &(pattrib->pktlen));
  544. }
  545. u8 *rtw_tdls_set_capability(_adapter *padapter, u8 *pframe, struct pkt_attrib *pattrib)
  546. {
  547. struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
  548. struct mlme_ext_info *pmlmeinfo = &pmlmeext->mlmext_info;
  549. u8 cap_from_ie[2] = {0};
  550. _rtw_memcpy(cap_from_ie, rtw_get_capability_from_ie(pmlmeinfo->network.IEs), 2);
  551. return rtw_set_fixed_ie(pframe, 2, cap_from_ie, &(pattrib->pktlen));
  552. }
  553. u8 *rtw_tdls_set_supported_rate(_adapter *padapter, u8 *pframe, struct pkt_attrib *pattrib)
  554. {
  555. u8 bssrate[NDIS_802_11_LENGTH_RATES_EX];
  556. int bssrate_len = 0;
  557. u8 more_supportedrates = 0;
  558. rtw_set_supported_rate(bssrate, (padapter->registrypriv.wireless_mode == WIRELESS_MODE_MAX) ? padapter->mlmeextpriv.cur_wireless_mode : padapter->registrypriv.wireless_mode);
  559. bssrate_len = rtw_get_rateset_len(bssrate);
  560. if (bssrate_len > 8) {
  561. pframe = rtw_set_ie(pframe, _SUPPORTEDRATES_IE_ , 8, bssrate, &(pattrib->pktlen));
  562. more_supportedrates = 1;
  563. } else
  564. pframe = rtw_set_ie(pframe, _SUPPORTEDRATES_IE_ , bssrate_len , bssrate, &(pattrib->pktlen));
  565. /* extended supported rates */
  566. if (more_supportedrates == 1)
  567. pframe = rtw_set_ie(pframe, _EXT_SUPPORTEDRATES_IE_ , (bssrate_len - 8), (bssrate + 8), &(pattrib->pktlen));
  568. return pframe;
  569. }
  570. u8 *rtw_tdls_set_sup_reg_class(u8 *pframe, struct pkt_attrib *pattrib)
  571. {
  572. return rtw_set_ie(pframe, _SRC_IE_ , sizeof(TDLS_SRC), TDLS_SRC, &(pattrib->pktlen));
  573. }
  574. u8 *rtw_tdls_set_linkid(u8 *pframe, struct pkt_attrib *pattrib, u8 init)
  575. {
  576. u8 link_id_addr[18] = {0};
  577. if (init == _TRUE) {
  578. _rtw_memcpy(link_id_addr, pattrib->ra, 6);
  579. _rtw_memcpy((link_id_addr + 6), pattrib->src, 6);
  580. _rtw_memcpy((link_id_addr + 12), pattrib->dst, 6);
  581. } else {
  582. _rtw_memcpy(link_id_addr, pattrib->ra, 6);
  583. _rtw_memcpy((link_id_addr + 6), pattrib->dst, 6);
  584. _rtw_memcpy((link_id_addr + 12), pattrib->src, 6);
  585. }
  586. return rtw_set_ie(pframe, _LINK_ID_IE_, 18, link_id_addr, &(pattrib->pktlen));
  587. }
  588. #ifdef CONFIG_TDLS_CH_SW
  589. u8 *rtw_tdls_set_target_ch(_adapter *padapter, u8 *pframe, struct pkt_attrib *pattrib)
  590. {
  591. u8 target_ch = 1;
  592. if (padapter->tdlsinfo.chsw_info.off_ch_num)
  593. return rtw_set_fixed_ie(pframe, 1, &(padapter->tdlsinfo.chsw_info.off_ch_num), &(pattrib->pktlen));
  594. else
  595. return rtw_set_fixed_ie(pframe, 1, &(target_ch), &(pattrib->pktlen));
  596. }
  597. u8 *rtw_tdls_set_ch_sw(u8 *pframe, struct pkt_attrib *pattrib, struct sta_info *ptdls_sta)
  598. {
  599. u8 ch_switch_timing[4] = {0};
  600. u16 switch_time = (ptdls_sta->ch_switch_time >= TDLS_CH_SWITCH_TIME * 1000) ?
  601. ptdls_sta->ch_switch_time : TDLS_CH_SWITCH_TIME;
  602. u16 switch_timeout = (ptdls_sta->ch_switch_timeout >= TDLS_CH_SWITCH_TIMEOUT * 1000) ?
  603. ptdls_sta->ch_switch_timeout : TDLS_CH_SWITCH_TIMEOUT;
  604. _rtw_memcpy(ch_switch_timing, &switch_time, 2);
  605. _rtw_memcpy(ch_switch_timing + 2, &switch_timeout, 2);
  606. return rtw_set_ie(pframe, _CH_SWITCH_TIMING_, 4, ch_switch_timing, &(pattrib->pktlen));
  607. }
  608. void rtw_tdls_set_ch_sw_oper_control(_adapter *padapter, u8 enable)
  609. {
  610. if (ATOMIC_READ(&padapter->tdlsinfo.chsw_info.chsw_on) != enable)
  611. ATOMIC_SET(&padapter->tdlsinfo.chsw_info.chsw_on, enable);
  612. rtw_hal_set_hwreg(padapter, HW_VAR_TDLS_BCN_EARLY_C2H_RPT, &enable);
  613. RTW_INFO("[TDLS] %s Bcn Early C2H Report\n", (enable == _TRUE) ? "Start" : "Stop");
  614. }
  615. void rtw_tdls_ch_sw_back_to_base_chnl(_adapter *padapter)
  616. {
  617. struct mlme_priv *pmlmepriv;
  618. struct tdls_ch_switch *pchsw_info = &padapter->tdlsinfo.chsw_info;
  619. pmlmepriv = &padapter->mlmepriv;
  620. if ((ATOMIC_READ(&pchsw_info->chsw_on) == _TRUE) &&
  621. (padapter->mlmeextpriv.cur_channel != rtw_get_oper_ch(padapter)))
  622. rtw_tdls_cmd(padapter, pchsw_info->addr, TDLS_CH_SW_TO_BASE_CHNL_UNSOLICITED);
  623. }
  624. static void rtw_tdls_chsw_oper_init(_adapter *padapter, u32 timeout_ms)
  625. {
  626. struct submit_ctx *chsw_sctx = &padapter->tdlsinfo.chsw_info.chsw_sctx;
  627. rtw_sctx_init(chsw_sctx, timeout_ms);
  628. }
  629. static int rtw_tdls_chsw_oper_wait(_adapter *padapter)
  630. {
  631. struct submit_ctx *chsw_sctx = &padapter->tdlsinfo.chsw_info.chsw_sctx;
  632. return rtw_sctx_wait(chsw_sctx, __func__);
  633. }
  634. void rtw_tdls_chsw_oper_done(_adapter *padapter)
  635. {
  636. struct submit_ctx *chsw_sctx = &padapter->tdlsinfo.chsw_info.chsw_sctx;
  637. rtw_sctx_done(&chsw_sctx);
  638. }
  639. s32 rtw_tdls_do_ch_sw(_adapter *padapter, struct sta_info *ptdls_sta, u8 chnl_type, u8 channel, u8 channel_offset, u16 bwmode, u16 ch_switch_time)
  640. {
  641. HAL_DATA_TYPE *pHalData = GET_HAL_DATA(padapter);
  642. u8 center_ch, chnl_offset80 = HAL_PRIME_CHNL_OFFSET_DONT_CARE;
  643. u32 ch_sw_time_start, ch_sw_time_spent, wait_time;
  644. u8 take_care_iqk;
  645. s32 ret = _FAIL;
  646. ch_sw_time_start = rtw_systime_to_ms(rtw_get_current_time());
  647. rtw_tdls_chsw_oper_init(padapter, TDLS_CH_SWITCH_OPER_OFFLOAD_TIMEOUT);
  648. /* set mac_id sleep before channel switch */
  649. rtw_hal_macid_sleep(padapter, ptdls_sta->mac_id);
  650. /* channel switch IOs offload to FW */
  651. if (rtw_hal_ch_sw_oper_offload(padapter, channel, channel_offset, bwmode) == _SUCCESS) {
  652. if (rtw_tdls_chsw_oper_wait(padapter) == _SUCCESS) {
  653. /* set channel and bw related variables in driver */
  654. _enter_critical_mutex(&(adapter_to_dvobj(padapter)->setch_mutex), NULL);
  655. rtw_set_oper_ch(padapter, channel);
  656. rtw_set_oper_choffset(padapter, channel_offset);
  657. rtw_set_oper_bw(padapter, bwmode);
  658. center_ch = rtw_get_center_ch(channel, bwmode, channel_offset);
  659. pHalData->current_channel = center_ch;
  660. pHalData->CurrentCenterFrequencyIndex1 = center_ch;
  661. pHalData->current_channel_bw = bwmode;
  662. pHalData->nCur40MhzPrimeSC = channel_offset;
  663. if (bwmode == CHANNEL_WIDTH_80) {
  664. if (center_ch > channel)
  665. chnl_offset80 = HAL_PRIME_CHNL_OFFSET_LOWER;
  666. else if (center_ch < channel)
  667. chnl_offset80 = HAL_PRIME_CHNL_OFFSET_UPPER;
  668. else
  669. chnl_offset80 = HAL_PRIME_CHNL_OFFSET_DONT_CARE;
  670. }
  671. pHalData->nCur80MhzPrimeSC = chnl_offset80;
  672. pHalData->CurrentCenterFrequencyIndex1 = center_ch;
  673. _exit_critical_mutex(&(adapter_to_dvobj(padapter)->setch_mutex), NULL);
  674. rtw_hal_get_hwreg(padapter, HW_VAR_CH_SW_NEED_TO_TAKE_CARE_IQK_INFO, &take_care_iqk);
  675. if (take_care_iqk == _TRUE)
  676. rtw_hal_ch_sw_iqk_info_restore(padapter, CH_SW_USE_CASE_TDLS);
  677. ch_sw_time_spent = rtw_systime_to_ms(rtw_get_current_time()) - ch_sw_time_start;
  678. if (chnl_type == TDLS_CH_SW_OFF_CHNL) {
  679. if ((u32)ch_switch_time / 1000 > ch_sw_time_spent)
  680. wait_time = (u32)ch_switch_time / 1000 - ch_sw_time_spent;
  681. else
  682. wait_time = 0;
  683. if (wait_time > 0)
  684. rtw_msleep_os(wait_time);
  685. }
  686. ret = _SUCCESS;
  687. } else
  688. RTW_INFO("[TDLS] chsw oper wait fail !!\n");
  689. }
  690. /* set mac_id wakeup after channel switch */
  691. rtw_hal_macid_wakeup(padapter, ptdls_sta->mac_id);
  692. return ret;
  693. }
  694. #endif
  695. u8 *rtw_tdls_set_wmm_params(_adapter *padapter, u8 *pframe, struct pkt_attrib *pattrib)
  696. {
  697. struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
  698. struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
  699. u8 wmm_param_ele[24] = {0};
  700. if (&pmlmeinfo->WMM_param) {
  701. _rtw_memcpy(wmm_param_ele, WMM_PARA_OUI, 6);
  702. if (_rtw_memcmp(&pmlmeinfo->WMM_param, &wmm_param_ele[6], 18) == _TRUE)
  703. /* Use default WMM Param */
  704. _rtw_memcpy(wmm_param_ele + 6, (u8 *)&TDLS_WMM_PARAM_IE, sizeof(TDLS_WMM_PARAM_IE));
  705. else
  706. _rtw_memcpy(wmm_param_ele + 6, (u8 *)&pmlmeinfo->WMM_param, sizeof(pmlmeinfo->WMM_param));
  707. return rtw_set_ie(pframe, _VENDOR_SPECIFIC_IE_, 24, wmm_param_ele, &(pattrib->pktlen));
  708. } else
  709. return pframe;
  710. }
  711. #ifdef CONFIG_WFD
  712. void rtw_tdls_process_wfd_ie(struct tdls_info *ptdlsinfo, u8 *ptr, u8 length)
  713. {
  714. u8 *wfd_ie;
  715. u32 wfd_ielen = 0;
  716. if (!hal_chk_wl_func(tdls_info_to_adapter(ptdlsinfo), WL_FUNC_MIRACAST))
  717. return;
  718. /* Try to get the TCP port information when receiving the negotiation response. */
  719. wfd_ie = rtw_get_wfd_ie(ptr, length, NULL, &wfd_ielen);
  720. while (wfd_ie) {
  721. u8 *attr_content;
  722. u32 attr_contentlen = 0;
  723. int i;
  724. RTW_INFO("[%s] WFD IE Found!!\n", __FUNCTION__);
  725. attr_content = rtw_get_wfd_attr_content(wfd_ie, wfd_ielen, WFD_ATTR_DEVICE_INFO, NULL, &attr_contentlen);
  726. if (attr_content && attr_contentlen) {
  727. ptdlsinfo->wfd_info->peer_rtsp_ctrlport = RTW_GET_BE16(attr_content + 2);
  728. RTW_INFO("[%s] Peer PORT NUM = %d\n", __FUNCTION__, ptdlsinfo->wfd_info->peer_rtsp_ctrlport);
  729. }
  730. attr_content = rtw_get_wfd_attr_content(wfd_ie, wfd_ielen, WFD_ATTR_LOCAL_IP_ADDR, NULL, &attr_contentlen);
  731. if (attr_content && attr_contentlen) {
  732. _rtw_memcpy(ptdlsinfo->wfd_info->peer_ip_address, (attr_content + 1), 4);
  733. RTW_INFO("[%s] Peer IP = %02u.%02u.%02u.%02u\n", __FUNCTION__,
  734. ptdlsinfo->wfd_info->peer_ip_address[0], ptdlsinfo->wfd_info->peer_ip_address[1],
  735. ptdlsinfo->wfd_info->peer_ip_address[2], ptdlsinfo->wfd_info->peer_ip_address[3]);
  736. }
  737. wfd_ie = rtw_get_wfd_ie(wfd_ie + wfd_ielen, (ptr + length) - (wfd_ie + wfd_ielen), NULL, &wfd_ielen);
  738. }
  739. }
  740. int issue_tunneled_probe_req(_adapter *padapter)
  741. {
  742. struct xmit_frame *pmgntframe;
  743. struct pkt_attrib *pattrib;
  744. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  745. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  746. u8 baddr[ETH_ALEN] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
  747. struct tdls_txmgmt txmgmt;
  748. int ret = _FAIL;
  749. RTW_INFO("[%s]\n", __FUNCTION__);
  750. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  751. txmgmt.action_code = TUNNELED_PROBE_REQ;
  752. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  753. if (pmgntframe == NULL)
  754. goto exit;
  755. pattrib = &pmgntframe->attrib;
  756. pmgntframe->frame_tag = DATA_FRAMETAG;
  757. pattrib->ether_type = 0x890d;
  758. _rtw_memcpy(pattrib->dst, baddr, ETH_ALEN);
  759. _rtw_memcpy(pattrib->src, adapter_mac_addr(padapter), ETH_ALEN);
  760. _rtw_memcpy(pattrib->ra, get_bssid(pmlmepriv), ETH_ALEN);
  761. _rtw_memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
  762. update_tdls_attrib(padapter, pattrib);
  763. pattrib->qsel = pattrib->priority;
  764. if (rtw_xmit_tdls_coalesce(padapter, pmgntframe, &txmgmt) != _SUCCESS) {
  765. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  766. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  767. goto exit;
  768. }
  769. dump_mgntframe(padapter, pmgntframe);
  770. ret = _SUCCESS;
  771. exit:
  772. return ret;
  773. }
  774. int issue_tunneled_probe_rsp(_adapter *padapter, union recv_frame *precv_frame)
  775. {
  776. struct xmit_frame *pmgntframe;
  777. struct pkt_attrib *pattrib;
  778. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  779. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  780. struct tdls_txmgmt txmgmt;
  781. int ret = _FAIL;
  782. RTW_INFO("[%s]\n", __FUNCTION__);
  783. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  784. txmgmt.action_code = TUNNELED_PROBE_RSP;
  785. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  786. if (pmgntframe == NULL)
  787. goto exit;
  788. pattrib = &pmgntframe->attrib;
  789. pmgntframe->frame_tag = DATA_FRAMETAG;
  790. pattrib->ether_type = 0x890d;
  791. _rtw_memcpy(pattrib->dst, precv_frame->u.hdr.attrib.src, ETH_ALEN);
  792. _rtw_memcpy(pattrib->src, adapter_mac_addr(padapter), ETH_ALEN);
  793. _rtw_memcpy(pattrib->ra, get_bssid(pmlmepriv), ETH_ALEN);
  794. _rtw_memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
  795. update_tdls_attrib(padapter, pattrib);
  796. pattrib->qsel = pattrib->priority;
  797. if (rtw_xmit_tdls_coalesce(padapter, pmgntframe, &txmgmt) != _SUCCESS) {
  798. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  799. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  800. goto exit;
  801. }
  802. dump_mgntframe(padapter, pmgntframe);
  803. ret = _SUCCESS;
  804. exit:
  805. return ret;
  806. }
  807. #endif /* CONFIG_WFD */
  808. int issue_tdls_setup_req(_adapter *padapter, struct tdls_txmgmt *ptxmgmt, int wait_ack)
  809. {
  810. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  811. struct xmit_frame *pmgntframe;
  812. struct pkt_attrib *pattrib;
  813. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  814. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  815. struct sta_priv *pstapriv = &padapter->stapriv;
  816. struct sta_info *ptdls_sta = NULL;
  817. _irqL irqL;
  818. int ret = _FAIL;
  819. /* Retry timer should be set at least 301 sec, using TPK_count counting 301 times. */
  820. u32 timeout_interval = TDLS_TPK_RESEND_COUNT;
  821. RTW_INFO("[TDLS] %s\n", __FUNCTION__);
  822. ptxmgmt->action_code = TDLS_SETUP_REQUEST;
  823. if (rtw_tdls_is_setup_allowed(padapter) == _FALSE)
  824. goto exit;
  825. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  826. if (pmgntframe == NULL)
  827. goto exit;
  828. pattrib = &pmgntframe->attrib;
  829. pmgntframe->frame_tag = DATA_FRAMETAG;
  830. pattrib->ether_type = 0x890d;
  831. _rtw_memcpy(pattrib->dst, ptxmgmt->peer, ETH_ALEN);
  832. _rtw_memcpy(pattrib->src, adapter_mac_addr(padapter), ETH_ALEN);
  833. _rtw_memcpy(pattrib->ra, get_bssid(pmlmepriv), ETH_ALEN);
  834. _rtw_memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
  835. update_tdls_attrib(padapter, pattrib);
  836. /* init peer sta_info */
  837. ptdls_sta = rtw_get_stainfo(pstapriv, ptxmgmt->peer);
  838. if (ptdls_sta == NULL) {
  839. ptdls_sta = rtw_alloc_stainfo(pstapriv, ptxmgmt->peer);
  840. if (ptdls_sta == NULL) {
  841. RTW_INFO("[%s] rtw_alloc_stainfo fail\n", __FUNCTION__);
  842. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  843. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  844. goto exit;
  845. }
  846. }
  847. if (!(ptdls_sta->tdls_sta_state & TDLS_LINKED_STATE))
  848. ptdlsinfo->sta_cnt++;
  849. if (ptdlsinfo->sta_cnt == MAX_ALLOWED_TDLS_STA_NUM)
  850. ptdlsinfo->sta_maximum = _TRUE;
  851. ptdls_sta->tdls_sta_state |= TDLS_RESPONDER_STATE;
  852. if (rtw_tdls_is_driver_setup(padapter) == _TRUE) {
  853. ptdls_sta->TDLS_PeerKey_Lifetime = timeout_interval;
  854. _set_timer(&ptdls_sta->handshake_timer, TDLS_HANDSHAKE_TIME);
  855. }
  856. pattrib->qsel = pattrib->priority;
  857. if (rtw_xmit_tdls_coalesce(padapter, pmgntframe, ptxmgmt) != _SUCCESS) {
  858. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  859. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  860. goto exit;
  861. }
  862. if (wait_ack)
  863. ret = dump_mgntframe_and_wait_ack(padapter, pmgntframe);
  864. else {
  865. dump_mgntframe(padapter, pmgntframe);
  866. ret = _SUCCESS;
  867. }
  868. exit:
  869. return ret;
  870. }
  871. int _issue_tdls_teardown(_adapter *padapter, struct tdls_txmgmt *ptxmgmt, u8 wait_ack)
  872. {
  873. struct xmit_frame *pmgntframe;
  874. struct pkt_attrib *pattrib;
  875. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  876. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  877. struct sta_priv *pstapriv = &padapter->stapriv;
  878. struct sta_info *ptdls_sta = NULL;
  879. _irqL irqL;
  880. int ret = _FAIL;
  881. RTW_INFO("[TDLS] %s\n", __FUNCTION__);
  882. ptxmgmt->action_code = TDLS_TEARDOWN;
  883. ptdls_sta = rtw_get_stainfo(pstapriv, ptxmgmt->peer);
  884. if (ptdls_sta == NULL) {
  885. RTW_INFO("Np tdls_sta for tearing down\n");
  886. goto exit;
  887. }
  888. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  889. if (pmgntframe == NULL)
  890. goto exit;
  891. rtw_mi_set_scan_deny(padapter, 550);
  892. rtw_mi_scan_abort(padapter, _TRUE);
  893. pattrib = &pmgntframe->attrib;
  894. pmgntframe->frame_tag = DATA_FRAMETAG;
  895. pattrib->ether_type = 0x890d;
  896. _rtw_memcpy(pattrib->dst, ptxmgmt->peer, ETH_ALEN);
  897. _rtw_memcpy(pattrib->src, adapter_mac_addr(padapter), ETH_ALEN);
  898. _rtw_memcpy(pattrib->ra, get_bssid(pmlmepriv), ETH_ALEN);
  899. _rtw_memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
  900. update_tdls_attrib(padapter, pattrib);
  901. pattrib->qsel = pattrib->priority;
  902. if (rtw_xmit_tdls_coalesce(padapter, pmgntframe, ptxmgmt) != _SUCCESS) {
  903. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  904. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  905. goto exit;
  906. }
  907. if (rtw_tdls_is_driver_setup(padapter) == _TRUE)
  908. if (ptdls_sta->tdls_sta_state & TDLS_LINKED_STATE)
  909. if (pattrib->encrypt)
  910. _cancel_timer_ex(&ptdls_sta->TPK_timer);
  911. if (wait_ack)
  912. ret = dump_mgntframe_and_wait_ack(padapter, pmgntframe);
  913. else {
  914. dump_mgntframe(padapter, pmgntframe);
  915. ret = _SUCCESS;
  916. }
  917. if (rtw_tdls_is_driver_setup(padapter))
  918. rtw_tdls_cmd(padapter, ptxmgmt->peer, TDLS_TEARDOWN_STA_LOCALLY);
  919. exit:
  920. return ret;
  921. }
  922. int issue_tdls_teardown(_adapter *padapter, struct tdls_txmgmt *ptxmgmt, u8 wait_ack)
  923. {
  924. int ret = _FAIL;
  925. ret = _issue_tdls_teardown(padapter, ptxmgmt, wait_ack);
  926. if ((ptxmgmt->status_code == _RSON_TDLS_TEAR_UN_RSN_) && (ret == _FAIL)) {
  927. /* Change status code and send teardown again via AP */
  928. ptxmgmt->status_code = _RSON_TDLS_TEAR_TOOFAR_;
  929. ret = _issue_tdls_teardown(padapter, ptxmgmt, wait_ack);
  930. }
  931. return ret;
  932. }
  933. int issue_tdls_dis_req(_adapter *padapter, struct tdls_txmgmt *ptxmgmt)
  934. {
  935. struct xmit_frame *pmgntframe;
  936. struct pkt_attrib *pattrib;
  937. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  938. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  939. int ret = _FAIL;
  940. RTW_INFO("[TDLS] %s\n", __FUNCTION__);
  941. ptxmgmt->action_code = TDLS_DISCOVERY_REQUEST;
  942. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  943. if (pmgntframe == NULL)
  944. goto exit;
  945. pattrib = &pmgntframe->attrib;
  946. pmgntframe->frame_tag = DATA_FRAMETAG;
  947. pattrib->ether_type = 0x890d;
  948. _rtw_memcpy(pattrib->dst, ptxmgmt->peer, ETH_ALEN);
  949. _rtw_memcpy(pattrib->src, adapter_mac_addr(padapter), ETH_ALEN);
  950. _rtw_memcpy(pattrib->ra, get_bssid(pmlmepriv), ETH_ALEN);
  951. _rtw_memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
  952. update_tdls_attrib(padapter, pattrib);
  953. pattrib->qsel = pattrib->priority;
  954. if (rtw_xmit_tdls_coalesce(padapter, pmgntframe, ptxmgmt) != _SUCCESS) {
  955. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  956. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  957. goto exit;
  958. }
  959. dump_mgntframe(padapter, pmgntframe);
  960. RTW_INFO("issue tdls dis req\n");
  961. ret = _SUCCESS;
  962. exit:
  963. return ret;
  964. }
  965. int issue_tdls_setup_rsp(_adapter *padapter, struct tdls_txmgmt *ptxmgmt)
  966. {
  967. struct xmit_frame *pmgntframe;
  968. struct pkt_attrib *pattrib;
  969. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  970. int ret = _FAIL;
  971. RTW_INFO("[TDLS] %s\n", __FUNCTION__);
  972. ptxmgmt->action_code = TDLS_SETUP_RESPONSE;
  973. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  974. if (pmgntframe == NULL)
  975. goto exit;
  976. pattrib = &pmgntframe->attrib;
  977. pmgntframe->frame_tag = DATA_FRAMETAG;
  978. pattrib->ether_type = 0x890d;
  979. _rtw_memcpy(pattrib->dst, ptxmgmt->peer, ETH_ALEN);
  980. _rtw_memcpy(pattrib->src, adapter_mac_addr(padapter), ETH_ALEN);
  981. _rtw_memcpy(pattrib->ra, get_bssid(&(padapter->mlmepriv)), ETH_ALEN);
  982. _rtw_memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
  983. update_tdls_attrib(padapter, pattrib);
  984. pattrib->qsel = pattrib->priority;
  985. if (rtw_xmit_tdls_coalesce(padapter, pmgntframe, ptxmgmt) != _SUCCESS) {
  986. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  987. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  988. goto exit;
  989. }
  990. dump_mgntframe(padapter, pmgntframe);
  991. ret = _SUCCESS;
  992. exit:
  993. return ret;
  994. }
  995. int issue_tdls_setup_cfm(_adapter *padapter, struct tdls_txmgmt *ptxmgmt)
  996. {
  997. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  998. struct xmit_frame *pmgntframe;
  999. struct pkt_attrib *pattrib;
  1000. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  1001. int ret = _FAIL;
  1002. RTW_INFO("[TDLS] %s\n", __FUNCTION__);
  1003. ptxmgmt->action_code = TDLS_SETUP_CONFIRM;
  1004. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  1005. if (pmgntframe == NULL)
  1006. goto exit;
  1007. pattrib = &pmgntframe->attrib;
  1008. pmgntframe->frame_tag = DATA_FRAMETAG;
  1009. pattrib->ether_type = 0x890d;
  1010. _rtw_memcpy(pattrib->dst, ptxmgmt->peer, ETH_ALEN);
  1011. _rtw_memcpy(pattrib->src, adapter_mac_addr(padapter), ETH_ALEN);
  1012. _rtw_memcpy(pattrib->ra, get_bssid(&padapter->mlmepriv), ETH_ALEN);
  1013. _rtw_memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
  1014. update_tdls_attrib(padapter, pattrib);
  1015. pattrib->qsel = pattrib->priority;
  1016. if (rtw_xmit_tdls_coalesce(padapter, pmgntframe, ptxmgmt) != _SUCCESS) {
  1017. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  1018. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  1019. goto exit;
  1020. }
  1021. dump_mgntframe(padapter, pmgntframe);
  1022. ret = _SUCCESS;
  1023. exit:
  1024. return ret;
  1025. }
  1026. /* TDLS Discovery Response frame is a management action frame */
  1027. int issue_tdls_dis_rsp(_adapter *padapter, struct tdls_txmgmt *ptxmgmt, u8 privacy)
  1028. {
  1029. struct xmit_frame *pmgntframe;
  1030. struct pkt_attrib *pattrib;
  1031. unsigned char *pframe;
  1032. struct rtw_ieee80211_hdr *pwlanhdr;
  1033. unsigned short *fctrl;
  1034. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  1035. struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
  1036. int ret = _FAIL;
  1037. RTW_INFO("[TDLS] %s\n", __FUNCTION__);
  1038. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  1039. if (pmgntframe == NULL)
  1040. goto exit;
  1041. pattrib = &pmgntframe->attrib;
  1042. update_mgntframe_attrib(padapter, pattrib);
  1043. _rtw_memset(pmgntframe->buf_addr, 0, WLANHDR_OFFSET + TXDESC_OFFSET);
  1044. pframe = (u8 *)(pmgntframe->buf_addr) + TXDESC_OFFSET;
  1045. pwlanhdr = (struct rtw_ieee80211_hdr *)pframe;
  1046. fctrl = &(pwlanhdr->frame_ctl);
  1047. *(fctrl) = 0;
  1048. /* unicast probe request frame */
  1049. _rtw_memcpy(pwlanhdr->addr1, ptxmgmt->peer, ETH_ALEN);
  1050. _rtw_memcpy(pattrib->dst, pwlanhdr->addr1, ETH_ALEN);
  1051. _rtw_memcpy(pwlanhdr->addr2, adapter_mac_addr(padapter), ETH_ALEN);
  1052. _rtw_memcpy(pattrib->src, pwlanhdr->addr2, ETH_ALEN);
  1053. _rtw_memcpy(pwlanhdr->addr3, get_bssid(&padapter->mlmepriv), ETH_ALEN);
  1054. _rtw_memcpy(pattrib->ra, pwlanhdr->addr3, ETH_ALEN);
  1055. SetSeqNum(pwlanhdr, pmlmeext->mgnt_seq);
  1056. pmlmeext->mgnt_seq++;
  1057. set_frame_sub_type(pframe, WIFI_ACTION);
  1058. pframe += sizeof(struct rtw_ieee80211_hdr_3addr);
  1059. pattrib->pktlen = sizeof(struct rtw_ieee80211_hdr_3addr);
  1060. rtw_build_tdls_dis_rsp_ies(padapter, pmgntframe, pframe, ptxmgmt, privacy);
  1061. pattrib->nr_frags = 1;
  1062. pattrib->last_txcmdsz = pattrib->pktlen;
  1063. dump_mgntframe(padapter, pmgntframe);
  1064. ret = _SUCCESS;
  1065. exit:
  1066. return ret;
  1067. }
  1068. int issue_tdls_peer_traffic_rsp(_adapter *padapter, struct sta_info *ptdls_sta, struct tdls_txmgmt *ptxmgmt)
  1069. {
  1070. struct xmit_frame *pmgntframe;
  1071. struct pkt_attrib *pattrib;
  1072. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  1073. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  1074. int ret = _FAIL;
  1075. RTW_INFO("[TDLS] %s\n", __FUNCTION__);
  1076. ptxmgmt->action_code = TDLS_PEER_TRAFFIC_RESPONSE;
  1077. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  1078. if (pmgntframe == NULL)
  1079. goto exit;
  1080. pattrib = &pmgntframe->attrib;
  1081. pmgntframe->frame_tag = DATA_FRAMETAG;
  1082. pattrib->ether_type = 0x890d;
  1083. _rtw_memcpy(pattrib->dst, ptdls_sta->hwaddr, ETH_ALEN);
  1084. _rtw_memcpy(pattrib->src, adapter_mac_addr(padapter), ETH_ALEN);
  1085. _rtw_memcpy(pattrib->ra, get_bssid(pmlmepriv), ETH_ALEN);
  1086. _rtw_memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
  1087. update_tdls_attrib(padapter, pattrib);
  1088. pattrib->qsel = pattrib->priority;
  1089. if (rtw_xmit_tdls_coalesce(padapter, pmgntframe, ptxmgmt) != _SUCCESS) {
  1090. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  1091. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  1092. goto exit;
  1093. }
  1094. dump_mgntframe(padapter, pmgntframe);
  1095. ret = _SUCCESS;
  1096. exit:
  1097. return ret;
  1098. }
  1099. int issue_tdls_peer_traffic_indication(_adapter *padapter, struct sta_info *ptdls_sta)
  1100. {
  1101. struct xmit_frame *pmgntframe;
  1102. struct pkt_attrib *pattrib;
  1103. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  1104. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  1105. struct tdls_txmgmt txmgmt;
  1106. int ret = _FAIL;
  1107. RTW_INFO("[TDLS] %s\n", __FUNCTION__);
  1108. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  1109. txmgmt.action_code = TDLS_PEER_TRAFFIC_INDICATION;
  1110. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  1111. if (pmgntframe == NULL)
  1112. goto exit;
  1113. pattrib = &pmgntframe->attrib;
  1114. pmgntframe->frame_tag = DATA_FRAMETAG;
  1115. pattrib->ether_type = 0x890d;
  1116. _rtw_memcpy(pattrib->dst, ptdls_sta->hwaddr, ETH_ALEN);
  1117. _rtw_memcpy(pattrib->src, adapter_mac_addr(padapter), ETH_ALEN);
  1118. _rtw_memcpy(pattrib->ra, get_bssid(pmlmepriv), ETH_ALEN);
  1119. _rtw_memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
  1120. /* PTI frame's priority should be AC_VO */
  1121. pattrib->priority = 7;
  1122. update_tdls_attrib(padapter, pattrib);
  1123. pattrib->qsel = pattrib->priority;
  1124. if (rtw_xmit_tdls_coalesce(padapter, pmgntframe, &txmgmt) != _SUCCESS) {
  1125. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  1126. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  1127. goto exit;
  1128. }
  1129. dump_mgntframe(padapter, pmgntframe);
  1130. ret = _SUCCESS;
  1131. exit:
  1132. return ret;
  1133. }
  1134. #ifdef CONFIG_TDLS_CH_SW
  1135. int issue_tdls_ch_switch_req(_adapter *padapter, struct sta_info *ptdls_sta)
  1136. {
  1137. struct xmit_frame *pmgntframe;
  1138. struct pkt_attrib *pattrib;
  1139. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  1140. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  1141. struct tdls_txmgmt txmgmt;
  1142. int ret = _FAIL;
  1143. RTW_INFO("[TDLS] %s\n", __FUNCTION__);
  1144. if (rtw_tdls_is_chsw_allowed(padapter) == _FALSE) {
  1145. RTW_INFO("[TDLS] Ignore %s since channel switch is not allowed\n", __func__);
  1146. goto exit;
  1147. }
  1148. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  1149. txmgmt.action_code = TDLS_CHANNEL_SWITCH_REQUEST;
  1150. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  1151. if (pmgntframe == NULL)
  1152. goto exit;
  1153. pattrib = &pmgntframe->attrib;
  1154. pmgntframe->frame_tag = DATA_FRAMETAG;
  1155. pattrib->ether_type = 0x890d;
  1156. _rtw_memcpy(pattrib->dst, ptdls_sta->hwaddr, ETH_ALEN);
  1157. _rtw_memcpy(pattrib->src, adapter_mac_addr(padapter), ETH_ALEN);
  1158. _rtw_memcpy(pattrib->ra, get_bssid(pmlmepriv), ETH_ALEN);
  1159. _rtw_memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
  1160. update_tdls_attrib(padapter, pattrib);
  1161. pattrib->qsel = pattrib->priority;
  1162. if (rtw_xmit_tdls_coalesce(padapter, pmgntframe, &txmgmt) != _SUCCESS) {
  1163. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  1164. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  1165. goto exit;
  1166. }
  1167. dump_mgntframe(padapter, pmgntframe);
  1168. ret = _SUCCESS;
  1169. exit:
  1170. return ret;
  1171. }
  1172. int issue_tdls_ch_switch_rsp(_adapter *padapter, struct tdls_txmgmt *ptxmgmt, int wait_ack)
  1173. {
  1174. struct xmit_frame *pmgntframe;
  1175. struct pkt_attrib *pattrib;
  1176. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  1177. struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
  1178. int ret = _FAIL;
  1179. RTW_INFO("[TDLS] %s\n", __FUNCTION__);
  1180. if (rtw_tdls_is_chsw_allowed(padapter) == _FALSE) {
  1181. RTW_INFO("[TDLS] Ignore %s since channel switch is not allowed\n", __func__);
  1182. goto exit;
  1183. }
  1184. ptxmgmt->action_code = TDLS_CHANNEL_SWITCH_RESPONSE;
  1185. pmgntframe = alloc_mgtxmitframe(pxmitpriv);
  1186. if (pmgntframe == NULL)
  1187. goto exit;
  1188. pattrib = &pmgntframe->attrib;
  1189. pmgntframe->frame_tag = DATA_FRAMETAG;
  1190. pattrib->ether_type = 0x890d;
  1191. _rtw_memcpy(pattrib->dst, ptxmgmt->peer, ETH_ALEN);
  1192. _rtw_memcpy(pattrib->src, adapter_mac_addr(padapter), ETH_ALEN);
  1193. _rtw_memcpy(pattrib->ra, ptxmgmt->peer, ETH_ALEN);
  1194. _rtw_memcpy(pattrib->ta, pattrib->src, ETH_ALEN);
  1195. update_tdls_attrib(padapter, pattrib);
  1196. pattrib->qsel = pattrib->priority;
  1197. /*
  1198. _enter_critical_bh(&pxmitpriv->lock, &irqL);
  1199. if(xmitframe_enqueue_for_tdls_sleeping_sta(padapter, pmgntframe)==_TRUE){
  1200. _exit_critical_bh(&pxmitpriv->lock, &irqL);
  1201. return _FALSE;
  1202. }
  1203. */
  1204. if (rtw_xmit_tdls_coalesce(padapter, pmgntframe, ptxmgmt) != _SUCCESS) {
  1205. rtw_free_xmitbuf(pxmitpriv, pmgntframe->pxmitbuf);
  1206. rtw_free_xmitframe(pxmitpriv, pmgntframe);
  1207. goto exit;
  1208. }
  1209. if (wait_ack)
  1210. ret = dump_mgntframe_and_wait_ack_timeout(padapter, pmgntframe, 10);
  1211. else {
  1212. dump_mgntframe(padapter, pmgntframe);
  1213. ret = _SUCCESS;
  1214. }
  1215. exit:
  1216. return ret;
  1217. }
  1218. #endif
  1219. int On_TDLS_Dis_Rsp(_adapter *padapter, union recv_frame *precv_frame)
  1220. {
  1221. struct sta_info *ptdls_sta = NULL, *psta = rtw_get_stainfo(&(padapter->stapriv), get_bssid(&(padapter->mlmepriv)));
  1222. struct recv_priv *precvpriv = &(padapter->recvpriv);
  1223. u8 *ptr = precv_frame->u.hdr.rx_data, *psa;
  1224. struct rx_pkt_attrib *pattrib = &(precv_frame->u.hdr.attrib);
  1225. struct tdls_info *ptdlsinfo = &(padapter->tdlsinfo);
  1226. u8 empty_addr[ETH_ALEN] = { 0x00 };
  1227. int undecorated_smoothed_pwdb;
  1228. struct tdls_txmgmt txmgmt;
  1229. int ret = _SUCCESS;
  1230. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  1231. /* WFDTDLS: for sigma test, not to setup direct link automatically */
  1232. ptdlsinfo->dev_discovered = _TRUE;
  1233. psa = get_sa(ptr);
  1234. ptdls_sta = rtw_get_stainfo(&(padapter->stapriv), psa);
  1235. if (ptdls_sta != NULL)
  1236. ptdls_sta->sta_stats.rx_tdls_disc_rsp_pkts++;
  1237. #ifdef CONFIG_TDLS_AUTOSETUP
  1238. if (ptdls_sta != NULL) {
  1239. /* Record the tdls sta with lowest signal strength */
  1240. if (ptdlsinfo->sta_maximum == _TRUE && ptdls_sta->alive_count >= 1) {
  1241. if (_rtw_memcmp(ptdlsinfo->ss_record.macaddr, empty_addr, ETH_ALEN)) {
  1242. _rtw_memcpy(ptdlsinfo->ss_record.macaddr, psa, ETH_ALEN);
  1243. ptdlsinfo->ss_record.RxPWDBAll = pattrib->phy_info.RxPWDBAll;
  1244. } else {
  1245. if (ptdlsinfo->ss_record.RxPWDBAll < pattrib->phy_info.RxPWDBAll) {
  1246. _rtw_memcpy(ptdlsinfo->ss_record.macaddr, psa, ETH_ALEN);
  1247. ptdlsinfo->ss_record.RxPWDBAll = pattrib->phy_info.RxPWDBAll;
  1248. }
  1249. }
  1250. }
  1251. } else {
  1252. if (ptdlsinfo->sta_maximum == _TRUE) {
  1253. if (_rtw_memcmp(ptdlsinfo->ss_record.macaddr, empty_addr, ETH_ALEN)) {
  1254. /* All traffics are busy, do not set up another direct link. */
  1255. ret = _FAIL;
  1256. goto exit;
  1257. } else {
  1258. if (pattrib->phy_info.RxPWDBAll > ptdlsinfo->ss_record.RxPWDBAll) {
  1259. _rtw_memcpy(txmgmt.peer, ptdlsinfo->ss_record.macaddr, ETH_ALEN);
  1260. /* issue_tdls_teardown(padapter, ptdlsinfo->ss_record.macaddr, _FALSE); */
  1261. } else {
  1262. ret = _FAIL;
  1263. goto exit;
  1264. }
  1265. }
  1266. }
  1267. rtw_hal_get_def_var(padapter, HAL_DEF_UNDERCORATEDSMOOTHEDPWDB, &undecorated_smoothed_pwdb);
  1268. if (pattrib->phy_info.RxPWDBAll + TDLS_SIGNAL_THRESH >= undecorated_smoothed_pwdb) {
  1269. RTW_INFO("pattrib->RxPWDBAll=%d, pdmpriv->undecorated_smoothed_pwdb=%d\n", pattrib->phy_info.RxPWDBAll, undecorated_smoothed_pwdb);
  1270. _rtw_memcpy(txmgmt.peer, psa, ETH_ALEN);
  1271. issue_tdls_setup_req(padapter, &txmgmt, _FALSE);
  1272. }
  1273. }
  1274. #endif /* CONFIG_TDLS_AUTOSETUP */
  1275. exit:
  1276. return ret;
  1277. }
  1278. sint On_TDLS_Setup_Req(_adapter *padapter, union recv_frame *precv_frame)
  1279. {
  1280. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  1281. u8 *psa, *pmyid;
  1282. struct sta_info *ptdls_sta = NULL;
  1283. struct sta_priv *pstapriv = &padapter->stapriv;
  1284. u8 *ptr = precv_frame->u.hdr.rx_data;
  1285. struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
  1286. struct security_priv *psecuritypriv = &padapter->securitypriv;
  1287. _irqL irqL;
  1288. struct rx_pkt_attrib *prx_pkt_attrib = &precv_frame->u.hdr.attrib;
  1289. u8 *prsnie, *ppairwise_cipher;
  1290. u8 i, k;
  1291. u8 ccmp_included = 0, rsnie_included = 0;
  1292. u16 j, pairwise_count;
  1293. u8 SNonce[32];
  1294. u32 timeout_interval = TDLS_TPK_RESEND_COUNT;
  1295. sint parsing_length; /* Frame body length, without icv_len */
  1296. PNDIS_802_11_VARIABLE_IEs pIE;
  1297. u8 FIXED_IE = 5;
  1298. unsigned char supportRate[16];
  1299. int supportRateNum = 0;
  1300. struct tdls_txmgmt txmgmt;
  1301. if (rtw_tdls_is_setup_allowed(padapter) == _FALSE)
  1302. goto exit;
  1303. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  1304. psa = get_sa(ptr);
  1305. ptdls_sta = rtw_get_stainfo(pstapriv, psa);
  1306. pmyid = adapter_mac_addr(padapter);
  1307. ptr += prx_pkt_attrib->hdrlen + prx_pkt_attrib->iv_len + LLC_HEADER_SIZE + ETH_TYPE_LEN + PAYLOAD_TYPE_LEN;
  1308. parsing_length = ((union recv_frame *)precv_frame)->u.hdr.len
  1309. - prx_pkt_attrib->hdrlen
  1310. - prx_pkt_attrib->iv_len
  1311. - prx_pkt_attrib->icv_len
  1312. - LLC_HEADER_SIZE
  1313. - ETH_TYPE_LEN
  1314. - PAYLOAD_TYPE_LEN
  1315. - FIXED_IE;
  1316. if (ptdls_sta == NULL)
  1317. ptdls_sta = rtw_alloc_stainfo(pstapriv, psa);
  1318. else {
  1319. if (ptdls_sta->tdls_sta_state & TDLS_LINKED_STATE) {
  1320. /* If the direct link is already set up */
  1321. /* Process as re-setup after tear down */
  1322. RTW_INFO("re-setup a direct link\n");
  1323. }
  1324. /* Already receiving TDLS setup request */
  1325. else if (ptdls_sta->tdls_sta_state & TDLS_INITIATOR_STATE) {
  1326. RTW_INFO("receive duplicated TDLS setup request frame in handshaking\n");
  1327. goto exit;
  1328. }
  1329. /* When receiving and sending setup_req to the same link at the same time */
  1330. /* STA with higher MAC_addr would be initiator */
  1331. else if (ptdls_sta->tdls_sta_state & TDLS_RESPONDER_STATE) {
  1332. RTW_INFO("receive setup_req after sending setup_req\n");
  1333. for (i = 0; i < 6; i++) {
  1334. if (*(pmyid + i) == *(psa + i)) {
  1335. } else if (*(pmyid + i) > *(psa + i)) {
  1336. ptdls_sta->tdls_sta_state = TDLS_INITIATOR_STATE;
  1337. break;
  1338. } else if (*(pmyid + i) < *(psa + i))
  1339. goto exit;
  1340. }
  1341. }
  1342. }
  1343. if (ptdls_sta) {
  1344. txmgmt.dialog_token = *(ptr + 2); /* Copy dialog token */
  1345. txmgmt.status_code = _STATS_SUCCESSFUL_;
  1346. /* Parsing information element */
  1347. for (j = FIXED_IE; j < parsing_length;) {
  1348. pIE = (PNDIS_802_11_VARIABLE_IEs)(ptr + j);
  1349. switch (pIE->ElementID) {
  1350. case _SUPPORTEDRATES_IE_:
  1351. _rtw_memcpy(supportRate, pIE->data, pIE->Length);
  1352. supportRateNum = pIE->Length;
  1353. break;
  1354. case _COUNTRY_IE_:
  1355. break;
  1356. case _EXT_SUPPORTEDRATES_IE_:
  1357. if (supportRateNum <= sizeof(supportRate)) {
  1358. _rtw_memcpy(supportRate + supportRateNum, pIE->data, pIE->Length);
  1359. supportRateNum += pIE->Length;
  1360. }
  1361. break;
  1362. case _SUPPORTED_CH_IE_:
  1363. break;
  1364. case _RSN_IE_2_:
  1365. rsnie_included = 1;
  1366. if (prx_pkt_attrib->encrypt) {
  1367. prsnie = (u8 *)pIE;
  1368. /* Check CCMP pairwise_cipher presence. */
  1369. ppairwise_cipher = prsnie + 10;
  1370. _rtw_memcpy(ptdls_sta->TDLS_RSNIE, pIE->data, pIE->Length);
  1371. pairwise_count = *(u16 *)(ppairwise_cipher - 2);
  1372. for (k = 0; k < pairwise_count; k++) {
  1373. if (_rtw_memcmp(ppairwise_cipher + 4 * k, RSN_CIPHER_SUITE_CCMP, 4) == _TRUE)
  1374. ccmp_included = 1;
  1375. }
  1376. if (ccmp_included == 0)
  1377. txmgmt.status_code = _STATS_INVALID_RSNIE_;
  1378. }
  1379. break;
  1380. case _EXT_CAP_IE_:
  1381. break;
  1382. case _VENDOR_SPECIFIC_IE_:
  1383. break;
  1384. case _FTIE_:
  1385. if (prx_pkt_attrib->encrypt)
  1386. _rtw_memcpy(SNonce, (ptr + j + 52), 32);
  1387. break;
  1388. case _TIMEOUT_ITVL_IE_:
  1389. if (prx_pkt_attrib->encrypt)
  1390. timeout_interval = cpu_to_le32(*(u32 *)(ptr + j + 3));
  1391. break;
  1392. case _RIC_Descriptor_IE_:
  1393. break;
  1394. #ifdef CONFIG_80211N_HT
  1395. case _HT_CAPABILITY_IE_:
  1396. rtw_tdls_process_ht_cap(padapter, ptdls_sta, pIE->data, pIE->Length);
  1397. break;
  1398. #endif
  1399. #ifdef CONFIG_80211AC_VHT
  1400. case EID_AID:
  1401. break;
  1402. case EID_VHTCapability:
  1403. rtw_tdls_process_vht_cap(padapter, ptdls_sta, pIE->data, pIE->Length);
  1404. break;
  1405. #endif
  1406. case EID_BSSCoexistence:
  1407. break;
  1408. case _LINK_ID_IE_:
  1409. if (_rtw_memcmp(get_bssid(pmlmepriv), pIE->data, 6) == _FALSE)
  1410. txmgmt.status_code = _STATS_NOT_IN_SAME_BSS_;
  1411. break;
  1412. default:
  1413. break;
  1414. }
  1415. j += (pIE->Length + 2);
  1416. }
  1417. /* Check status code */
  1418. /* If responder STA has/hasn't security on AP, but request hasn't/has RSNIE, it should reject */
  1419. if (txmgmt.status_code == _STATS_SUCCESSFUL_) {
  1420. if (rsnie_included && prx_pkt_attrib->encrypt == 0)
  1421. txmgmt.status_code = _STATS_SEC_DISABLED_;
  1422. else if (rsnie_included == 0 && prx_pkt_attrib->encrypt)
  1423. txmgmt.status_code = _STATS_INVALID_PARAMETERS_;
  1424. #ifdef CONFIG_WFD
  1425. /* WFD test plan version 0.18.2 test item 5.1.5 */
  1426. /* SoUT does not use TDLS if AP uses weak security */
  1427. if (padapter->wdinfo.wfd_tdls_enable && (rsnie_included && prx_pkt_attrib->encrypt != _AES_))
  1428. txmgmt.status_code = _STATS_SEC_DISABLED_;
  1429. #endif /* CONFIG_WFD */
  1430. }
  1431. ptdls_sta->tdls_sta_state |= TDLS_INITIATOR_STATE;
  1432. if (prx_pkt_attrib->encrypt) {
  1433. _rtw_memcpy(ptdls_sta->SNonce, SNonce, 32);
  1434. if (timeout_interval <= 300)
  1435. ptdls_sta->TDLS_PeerKey_Lifetime = TDLS_TPK_RESEND_COUNT;
  1436. else
  1437. ptdls_sta->TDLS_PeerKey_Lifetime = timeout_interval;
  1438. }
  1439. /* Update station supportRate */
  1440. ptdls_sta->bssratelen = supportRateNum;
  1441. _rtw_memcpy(ptdls_sta->bssrateset, supportRate, supportRateNum);
  1442. if (!(ptdls_sta->tdls_sta_state & TDLS_LINKED_STATE))
  1443. ptdlsinfo->sta_cnt++;
  1444. /* -2: AP + BC/MC sta, -4: default key */
  1445. if (ptdlsinfo->sta_cnt == MAX_ALLOWED_TDLS_STA_NUM)
  1446. ptdlsinfo->sta_maximum = _TRUE;
  1447. #ifdef CONFIG_WFD
  1448. rtw_tdls_process_wfd_ie(ptdlsinfo, ptr + FIXED_IE, parsing_length);
  1449. #endif
  1450. } else
  1451. goto exit;
  1452. _rtw_memcpy(txmgmt.peer, prx_pkt_attrib->src, ETH_ALEN);
  1453. if (rtw_tdls_is_driver_setup(padapter)) {
  1454. issue_tdls_setup_rsp(padapter, &txmgmt);
  1455. if (txmgmt.status_code == _STATS_SUCCESSFUL_)
  1456. _set_timer(&ptdls_sta->handshake_timer, TDLS_HANDSHAKE_TIME);
  1457. else
  1458. free_tdls_sta(padapter, ptdls_sta);
  1459. }
  1460. exit:
  1461. return _SUCCESS;
  1462. }
  1463. int On_TDLS_Setup_Rsp(_adapter *padapter, union recv_frame *precv_frame)
  1464. {
  1465. struct registry_priv *pregistrypriv = &padapter->registrypriv;
  1466. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  1467. struct sta_info *ptdls_sta = NULL;
  1468. struct sta_priv *pstapriv = &padapter->stapriv;
  1469. u8 *ptr = precv_frame->u.hdr.rx_data;
  1470. _irqL irqL;
  1471. struct rx_pkt_attrib *prx_pkt_attrib = &precv_frame->u.hdr.attrib;
  1472. u8 *psa;
  1473. u16 status_code = 0;
  1474. sint parsing_length; /* Frame body length, without icv_len */
  1475. PNDIS_802_11_VARIABLE_IEs pIE;
  1476. u8 FIXED_IE = 7;
  1477. u8 ANonce[32];
  1478. u8 *pftie = NULL, *ptimeout_ie = NULL, *plinkid_ie = NULL, *prsnie = NULL, *pftie_mic = NULL, *ppairwise_cipher = NULL;
  1479. u16 pairwise_count, j, k;
  1480. u8 verify_ccmp = 0;
  1481. unsigned char supportRate[16];
  1482. int supportRateNum = 0;
  1483. struct tdls_txmgmt txmgmt;
  1484. int ret = _SUCCESS;
  1485. u32 timeout_interval = TDLS_TPK_RESEND_COUNT;
  1486. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  1487. psa = get_sa(ptr);
  1488. ptdls_sta = rtw_get_stainfo(pstapriv, psa);
  1489. if (ptdls_sta == NULL) {
  1490. RTW_INFO("[%s] Direct Link Peer = "MAC_FMT" not found\n", __func__, MAC_ARG(psa));
  1491. ret = _FAIL;
  1492. goto exit;
  1493. }
  1494. ptr += prx_pkt_attrib->hdrlen + prx_pkt_attrib->iv_len + LLC_HEADER_SIZE + ETH_TYPE_LEN + PAYLOAD_TYPE_LEN;
  1495. parsing_length = ((union recv_frame *)precv_frame)->u.hdr.len
  1496. - prx_pkt_attrib->hdrlen
  1497. - prx_pkt_attrib->iv_len
  1498. - prx_pkt_attrib->icv_len
  1499. - LLC_HEADER_SIZE
  1500. - ETH_TYPE_LEN
  1501. - PAYLOAD_TYPE_LEN
  1502. - FIXED_IE;
  1503. _rtw_memcpy(&status_code, ptr + 2, 2);
  1504. if (status_code != 0) {
  1505. RTW_INFO("[TDLS] %s status_code = %d, free_tdls_sta\n", __FUNCTION__, status_code);
  1506. free_tdls_sta(padapter, ptdls_sta);
  1507. ret = _FAIL;
  1508. goto exit;
  1509. }
  1510. status_code = 0;
  1511. /* parsing information element */
  1512. for (j = FIXED_IE; j < parsing_length;) {
  1513. pIE = (PNDIS_802_11_VARIABLE_IEs)(ptr + j);
  1514. switch (pIE->ElementID) {
  1515. case _SUPPORTEDRATES_IE_:
  1516. _rtw_memcpy(supportRate, pIE->data, pIE->Length);
  1517. supportRateNum = pIE->Length;
  1518. break;
  1519. case _COUNTRY_IE_:
  1520. break;
  1521. case _EXT_SUPPORTEDRATES_IE_:
  1522. if (supportRateNum <= sizeof(supportRate)) {
  1523. _rtw_memcpy(supportRate + supportRateNum, pIE->data, pIE->Length);
  1524. supportRateNum += pIE->Length;
  1525. }
  1526. break;
  1527. case _SUPPORTED_CH_IE_:
  1528. break;
  1529. case _RSN_IE_2_:
  1530. prsnie = (u8 *)pIE;
  1531. /* Check CCMP pairwise_cipher presence. */
  1532. ppairwise_cipher = prsnie + 10;
  1533. _rtw_memcpy(&pairwise_count, (u16 *)(ppairwise_cipher - 2), 2);
  1534. for (k = 0; k < pairwise_count; k++) {
  1535. if (_rtw_memcmp(ppairwise_cipher + 4 * k, RSN_CIPHER_SUITE_CCMP, 4) == _TRUE)
  1536. verify_ccmp = 1;
  1537. }
  1538. case _EXT_CAP_IE_:
  1539. break;
  1540. case _VENDOR_SPECIFIC_IE_:
  1541. if (_rtw_memcmp((u8 *)pIE + 2, WMM_INFO_OUI, 6) == _TRUE) {
  1542. /* WMM Info ID and OUI */
  1543. if ((pregistrypriv->wmm_enable == _TRUE) || (padapter->mlmepriv.htpriv.ht_option == _TRUE))
  1544. ptdls_sta->qos_option = _TRUE;
  1545. }
  1546. break;
  1547. case _FTIE_:
  1548. pftie = (u8 *)pIE;
  1549. _rtw_memcpy(ANonce, (ptr + j + 20), 32);
  1550. break;
  1551. case _TIMEOUT_ITVL_IE_:
  1552. ptimeout_ie = (u8 *)pIE;
  1553. timeout_interval = cpu_to_le32(*(u32 *)(ptimeout_ie + 3));
  1554. break;
  1555. case _RIC_Descriptor_IE_:
  1556. break;
  1557. #ifdef CONFIG_80211N_HT
  1558. case _HT_CAPABILITY_IE_:
  1559. rtw_tdls_process_ht_cap(padapter, ptdls_sta, pIE->data, pIE->Length);
  1560. break;
  1561. #endif
  1562. #ifdef CONFIG_80211AC_VHT
  1563. case EID_AID:
  1564. /* todo in the future if necessary */
  1565. break;
  1566. case EID_VHTCapability:
  1567. rtw_tdls_process_vht_cap(padapter, ptdls_sta, pIE->data, pIE->Length);
  1568. break;
  1569. case EID_OpModeNotification:
  1570. rtw_process_vht_op_mode_notify(padapter, pIE->data, ptdls_sta);
  1571. break;
  1572. #endif
  1573. case EID_BSSCoexistence:
  1574. break;
  1575. case _LINK_ID_IE_:
  1576. plinkid_ie = (u8 *)pIE;
  1577. break;
  1578. default:
  1579. break;
  1580. }
  1581. j += (pIE->Length + 2);
  1582. }
  1583. ptdls_sta->bssratelen = supportRateNum;
  1584. _rtw_memcpy(ptdls_sta->bssrateset, supportRate, supportRateNum);
  1585. _rtw_memcpy(ptdls_sta->ANonce, ANonce, 32);
  1586. #ifdef CONFIG_WFD
  1587. rtw_tdls_process_wfd_ie(ptdlsinfo, ptr + FIXED_IE, parsing_length);
  1588. #endif
  1589. if (status_code != _STATS_SUCCESSFUL_)
  1590. txmgmt.status_code = status_code;
  1591. else {
  1592. if (prx_pkt_attrib->encrypt) {
  1593. if (verify_ccmp == 1) {
  1594. txmgmt.status_code = _STATS_SUCCESSFUL_;
  1595. if (rtw_tdls_is_driver_setup(padapter) == _TRUE) {
  1596. wpa_tdls_generate_tpk(padapter, ptdls_sta);
  1597. if (tdls_verify_mic(ptdls_sta->tpk.kck, 2, plinkid_ie, prsnie, ptimeout_ie, pftie) == _FAIL) {
  1598. RTW_INFO("[TDLS] %s tdls_verify_mic fail, free_tdls_sta\n", __FUNCTION__);
  1599. free_tdls_sta(padapter, ptdls_sta);
  1600. ret = _FAIL;
  1601. goto exit;
  1602. }
  1603. ptdls_sta->TDLS_PeerKey_Lifetime = timeout_interval;
  1604. }
  1605. } else
  1606. txmgmt.status_code = _STATS_INVALID_RSNIE_;
  1607. } else
  1608. txmgmt.status_code = _STATS_SUCCESSFUL_;
  1609. }
  1610. if (rtw_tdls_is_driver_setup(padapter) == _TRUE) {
  1611. _rtw_memcpy(txmgmt.peer, prx_pkt_attrib->src, ETH_ALEN);
  1612. issue_tdls_setup_cfm(padapter, &txmgmt);
  1613. if (txmgmt.status_code == _STATS_SUCCESSFUL_) {
  1614. ptdlsinfo->link_established = _TRUE;
  1615. if (ptdls_sta->tdls_sta_state & TDLS_RESPONDER_STATE) {
  1616. ptdls_sta->tdls_sta_state |= TDLS_LINKED_STATE;
  1617. ptdls_sta->state |= _FW_LINKED;
  1618. _cancel_timer_ex(&ptdls_sta->handshake_timer);
  1619. }
  1620. if (prx_pkt_attrib->encrypt)
  1621. rtw_tdls_set_key(padapter, ptdls_sta);
  1622. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_ESTABLISHED);
  1623. }
  1624. }
  1625. exit:
  1626. if (rtw_tdls_is_driver_setup(padapter) == _TRUE)
  1627. return ret;
  1628. else
  1629. return _SUCCESS;
  1630. }
  1631. int On_TDLS_Setup_Cfm(_adapter *padapter, union recv_frame *precv_frame)
  1632. {
  1633. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  1634. struct sta_info *ptdls_sta = NULL;
  1635. struct sta_priv *pstapriv = &padapter->stapriv;
  1636. u8 *ptr = precv_frame->u.hdr.rx_data;
  1637. _irqL irqL;
  1638. struct rx_pkt_attrib *prx_pkt_attrib = &precv_frame->u.hdr.attrib;
  1639. u8 *psa;
  1640. u16 status_code = 0;
  1641. sint parsing_length;
  1642. PNDIS_802_11_VARIABLE_IEs pIE;
  1643. u8 FIXED_IE = 5;
  1644. u8 *pftie = NULL, *ptimeout_ie = NULL, *plinkid_ie = NULL, *prsnie = NULL, *pftie_mic = NULL, *ppairwise_cipher = NULL;
  1645. u16 j, pairwise_count;
  1646. int ret = _SUCCESS;
  1647. psa = get_sa(ptr);
  1648. ptdls_sta = rtw_get_stainfo(pstapriv, psa);
  1649. if (ptdls_sta == NULL) {
  1650. RTW_INFO("[%s] Direct Link Peer = "MAC_FMT" not found\n", __FUNCTION__, MAC_ARG(psa));
  1651. ret = _FAIL;
  1652. goto exit;
  1653. }
  1654. ptr += prx_pkt_attrib->hdrlen + prx_pkt_attrib->iv_len + LLC_HEADER_SIZE + ETH_TYPE_LEN + PAYLOAD_TYPE_LEN;
  1655. parsing_length = ((union recv_frame *)precv_frame)->u.hdr.len
  1656. - prx_pkt_attrib->hdrlen
  1657. - prx_pkt_attrib->iv_len
  1658. - prx_pkt_attrib->icv_len
  1659. - LLC_HEADER_SIZE
  1660. - ETH_TYPE_LEN
  1661. - PAYLOAD_TYPE_LEN
  1662. - FIXED_IE;
  1663. _rtw_memcpy(&status_code, ptr + 2, 2);
  1664. if (status_code != 0) {
  1665. RTW_INFO("[%s] status_code = %d\n, free_tdls_sta", __FUNCTION__, status_code);
  1666. free_tdls_sta(padapter, ptdls_sta);
  1667. ret = _FAIL;
  1668. goto exit;
  1669. }
  1670. /* Parsing information element */
  1671. for (j = FIXED_IE; j < parsing_length;) {
  1672. pIE = (PNDIS_802_11_VARIABLE_IEs)(ptr + j);
  1673. switch (pIE->ElementID) {
  1674. case _RSN_IE_2_:
  1675. prsnie = (u8 *)pIE;
  1676. break;
  1677. case _VENDOR_SPECIFIC_IE_:
  1678. if (_rtw_memcmp((u8 *)pIE + 2, WMM_PARA_OUI, 6) == _TRUE) {
  1679. /* WMM Parameter ID and OUI */
  1680. ptdls_sta->qos_option = _TRUE;
  1681. }
  1682. break;
  1683. case _FTIE_:
  1684. pftie = (u8 *)pIE;
  1685. break;
  1686. case _TIMEOUT_ITVL_IE_:
  1687. ptimeout_ie = (u8 *)pIE;
  1688. break;
  1689. #ifdef CONFIG_80211N_HT
  1690. case _HT_EXTRA_INFO_IE_:
  1691. break;
  1692. #endif
  1693. #ifdef CONFIG_80211AC_VHT
  1694. case EID_VHTOperation:
  1695. break;
  1696. case EID_OpModeNotification:
  1697. rtw_process_vht_op_mode_notify(padapter, pIE->data, ptdls_sta);
  1698. break;
  1699. #endif
  1700. case _LINK_ID_IE_:
  1701. plinkid_ie = (u8 *)pIE;
  1702. break;
  1703. default:
  1704. break;
  1705. }
  1706. j += (pIE->Length + 2);
  1707. }
  1708. if (prx_pkt_attrib->encrypt) {
  1709. /* Verify mic in FTIE MIC field */
  1710. if (rtw_tdls_is_driver_setup(padapter) &&
  1711. (tdls_verify_mic(ptdls_sta->tpk.kck, 3, plinkid_ie, prsnie, ptimeout_ie, pftie) == _FAIL)) {
  1712. free_tdls_sta(padapter, ptdls_sta);
  1713. ret = _FAIL;
  1714. goto exit;
  1715. }
  1716. }
  1717. if (rtw_tdls_is_driver_setup(padapter)) {
  1718. ptdlsinfo->link_established = _TRUE;
  1719. if (ptdls_sta->tdls_sta_state & TDLS_INITIATOR_STATE) {
  1720. ptdls_sta->tdls_sta_state |= TDLS_LINKED_STATE;
  1721. ptdls_sta->state |= _FW_LINKED;
  1722. _cancel_timer_ex(&ptdls_sta->handshake_timer);
  1723. }
  1724. if (prx_pkt_attrib->encrypt) {
  1725. rtw_tdls_set_key(padapter, ptdls_sta);
  1726. /* Start TPK timer */
  1727. ptdls_sta->TPK_count = 0;
  1728. _set_timer(&ptdls_sta->TPK_timer, ONE_SEC);
  1729. }
  1730. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_ESTABLISHED);
  1731. }
  1732. exit:
  1733. return ret;
  1734. }
  1735. int On_TDLS_Dis_Req(_adapter *padapter, union recv_frame *precv_frame)
  1736. {
  1737. struct rx_pkt_attrib *prx_pkt_attrib = &precv_frame->u.hdr.attrib;
  1738. struct sta_priv *pstapriv = &padapter->stapriv;
  1739. struct sta_info *psta_ap;
  1740. u8 *ptr = precv_frame->u.hdr.rx_data;
  1741. sint parsing_length; /* Frame body length, without icv_len */
  1742. PNDIS_802_11_VARIABLE_IEs pIE;
  1743. u8 FIXED_IE = 3, *dst;
  1744. u16 j;
  1745. struct tdls_txmgmt txmgmt;
  1746. int ret = _SUCCESS;
  1747. if (rtw_tdls_is_driver_setup(padapter) == _FALSE)
  1748. goto exit;
  1749. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  1750. ptr += prx_pkt_attrib->hdrlen + prx_pkt_attrib->iv_len + LLC_HEADER_SIZE + ETH_TYPE_LEN + PAYLOAD_TYPE_LEN;
  1751. txmgmt.dialog_token = *(ptr + 2);
  1752. _rtw_memcpy(&txmgmt.peer, precv_frame->u.hdr.attrib.src, ETH_ALEN);
  1753. txmgmt.action_code = TDLS_DISCOVERY_RESPONSE;
  1754. parsing_length = ((union recv_frame *)precv_frame)->u.hdr.len
  1755. - prx_pkt_attrib->hdrlen
  1756. - prx_pkt_attrib->iv_len
  1757. - prx_pkt_attrib->icv_len
  1758. - LLC_HEADER_SIZE
  1759. - ETH_TYPE_LEN
  1760. - PAYLOAD_TYPE_LEN
  1761. - FIXED_IE;
  1762. /* Parsing information element */
  1763. for (j = FIXED_IE; j < parsing_length;) {
  1764. pIE = (PNDIS_802_11_VARIABLE_IEs)(ptr + j);
  1765. switch (pIE->ElementID) {
  1766. case _LINK_ID_IE_:
  1767. psta_ap = rtw_get_stainfo(pstapriv, pIE->data);
  1768. if (psta_ap == NULL)
  1769. goto exit;
  1770. dst = pIE->data + 12;
  1771. if (MacAddr_isBcst(dst) == _FALSE && (_rtw_memcmp(adapter_mac_addr(padapter), dst, 6) == _FALSE))
  1772. goto exit;
  1773. break;
  1774. default:
  1775. break;
  1776. }
  1777. j += (pIE->Length + 2);
  1778. }
  1779. issue_tdls_dis_rsp(padapter, &txmgmt, prx_pkt_attrib->privacy);
  1780. exit:
  1781. return ret;
  1782. }
  1783. int On_TDLS_Teardown(_adapter *padapter, union recv_frame *precv_frame)
  1784. {
  1785. u8 *psa;
  1786. u8 *ptr = precv_frame->u.hdr.rx_data;
  1787. struct rx_pkt_attrib *prx_pkt_attrib = &precv_frame->u.hdr.attrib;
  1788. struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
  1789. struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
  1790. struct sta_priv *pstapriv = &padapter->stapriv;
  1791. struct sta_info *ptdls_sta = NULL;
  1792. _irqL irqL;
  1793. u8 reason;
  1794. reason = *(ptr + prx_pkt_attrib->hdrlen + prx_pkt_attrib->iv_len + LLC_HEADER_SIZE + ETH_TYPE_LEN + PAYLOAD_TYPE_LEN + 2);
  1795. RTW_INFO("[TDLS] %s Reason code(%d)\n", __FUNCTION__, reason);
  1796. psa = get_sa(ptr);
  1797. ptdls_sta = rtw_get_stainfo(pstapriv, psa);
  1798. if (ptdls_sta != NULL) {
  1799. if (rtw_tdls_is_driver_setup(padapter))
  1800. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_TEARDOWN_STA_LOCALLY);
  1801. }
  1802. return _SUCCESS;
  1803. }
  1804. #if 0
  1805. u8 TDLS_check_ch_state(uint state)
  1806. {
  1807. if (state & TDLS_CH_SWITCH_ON_STATE &&
  1808. state & TDLS_PEER_AT_OFF_STATE) {
  1809. if (state & TDLS_PEER_SLEEP_STATE)
  1810. return 2; /* U-APSD + ch. switch */
  1811. else
  1812. return 1; /* ch. switch */
  1813. } else
  1814. return 0;
  1815. }
  1816. #endif
  1817. int On_TDLS_Peer_Traffic_Indication(_adapter *padapter, union recv_frame *precv_frame)
  1818. {
  1819. struct rx_pkt_attrib *pattrib = &precv_frame->u.hdr.attrib;
  1820. struct sta_info *ptdls_sta = rtw_get_stainfo(&padapter->stapriv, pattrib->src);
  1821. u8 *ptr = precv_frame->u.hdr.rx_data;
  1822. struct tdls_txmgmt txmgmt;
  1823. ptr += pattrib->hdrlen + pattrib->iv_len + LLC_HEADER_SIZE + ETH_TYPE_LEN + PAYLOAD_TYPE_LEN;
  1824. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  1825. if (ptdls_sta != NULL) {
  1826. txmgmt.dialog_token = *(ptr + 2);
  1827. issue_tdls_peer_traffic_rsp(padapter, ptdls_sta, &txmgmt);
  1828. /* issue_nulldata_to_TDLS_peer_STA(padapter, ptdls_sta->hwaddr, 0, 0, 0); */
  1829. } else {
  1830. RTW_INFO("from unknown sta:"MAC_FMT"\n", MAC_ARG(pattrib->src));
  1831. return _FAIL;
  1832. }
  1833. return _SUCCESS;
  1834. }
  1835. /* We process buffered data for 1. U-APSD, 2. ch. switch, 3. U-APSD + ch. switch here */
  1836. int On_TDLS_Peer_Traffic_Rsp(_adapter *padapter, union recv_frame *precv_frame)
  1837. {
  1838. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  1839. struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
  1840. struct rx_pkt_attrib *pattrib = &precv_frame->u.hdr.attrib;
  1841. struct sta_priv *pstapriv = &padapter->stapriv;
  1842. struct sta_info *ptdls_sta = rtw_get_stainfo(pstapriv, pattrib->src);
  1843. u8 wmmps_ac = 0;
  1844. /* u8 state=TDLS_check_ch_state(ptdls_sta->tdls_sta_state); */
  1845. int i;
  1846. ptdls_sta->sta_stats.rx_data_pkts++;
  1847. ptdls_sta->tdls_sta_state &= ~(TDLS_WAIT_PTR_STATE);
  1848. /* Check 4-AC queue bit */
  1849. if (ptdls_sta->uapsd_vo || ptdls_sta->uapsd_vi || ptdls_sta->uapsd_be || ptdls_sta->uapsd_bk)
  1850. wmmps_ac = 1;
  1851. /* If it's a direct link and have buffered frame */
  1852. if (ptdls_sta->tdls_sta_state & TDLS_LINKED_STATE) {
  1853. if (wmmps_ac) {
  1854. _irqL irqL;
  1855. _list *xmitframe_plist, *xmitframe_phead;
  1856. struct xmit_frame *pxmitframe = NULL;
  1857. _enter_critical_bh(&ptdls_sta->sleep_q.lock, &irqL);
  1858. xmitframe_phead = get_list_head(&ptdls_sta->sleep_q);
  1859. xmitframe_plist = get_next(xmitframe_phead);
  1860. /* transmit buffered frames */
  1861. while (rtw_end_of_queue_search(xmitframe_phead, xmitframe_plist) == _FALSE) {
  1862. pxmitframe = LIST_CONTAINOR(xmitframe_plist, struct xmit_frame, list);
  1863. xmitframe_plist = get_next(xmitframe_plist);
  1864. rtw_list_delete(&pxmitframe->list);
  1865. ptdls_sta->sleepq_len--;
  1866. ptdls_sta->sleepq_ac_len--;
  1867. if (ptdls_sta->sleepq_len > 0) {
  1868. pxmitframe->attrib.mdata = 1;
  1869. pxmitframe->attrib.eosp = 0;
  1870. } else {
  1871. pxmitframe->attrib.mdata = 0;
  1872. pxmitframe->attrib.eosp = 1;
  1873. }
  1874. pxmitframe->attrib.triggered = 1;
  1875. rtw_hal_xmitframe_enqueue(padapter, pxmitframe);
  1876. }
  1877. if (ptdls_sta->sleepq_len == 0)
  1878. RTW_INFO("no buffered packets for tdls to xmit\n");
  1879. else {
  1880. RTW_INFO("error!psta->sleepq_len=%d\n", ptdls_sta->sleepq_len);
  1881. ptdls_sta->sleepq_len = 0;
  1882. }
  1883. _exit_critical_bh(&ptdls_sta->sleep_q.lock, &irqL);
  1884. }
  1885. }
  1886. return _SUCCESS;
  1887. }
  1888. #ifdef CONFIG_TDLS_CH_SW
  1889. sint On_TDLS_Ch_Switch_Req(_adapter *padapter, union recv_frame *precv_frame)
  1890. {
  1891. struct tdls_ch_switch *pchsw_info = &padapter->tdlsinfo.chsw_info;
  1892. struct sta_info *ptdls_sta = NULL;
  1893. struct sta_priv *pstapriv = &padapter->stapriv;
  1894. u8 *ptr = precv_frame->u.hdr.rx_data;
  1895. struct rx_pkt_attrib *prx_pkt_attrib = &precv_frame->u.hdr.attrib;
  1896. u8 *psa;
  1897. sint parsing_length;
  1898. PNDIS_802_11_VARIABLE_IEs pIE;
  1899. u8 FIXED_IE = 4;
  1900. u16 j;
  1901. struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
  1902. struct tdls_txmgmt txmgmt;
  1903. u8 zaddr[ETH_ALEN] = {0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
  1904. u16 switch_time = TDLS_CH_SWITCH_TIME * 1000, switch_timeout = TDLS_CH_SWITCH_TIMEOUT * 1000;
  1905. u8 take_care_iqk;
  1906. if (rtw_tdls_is_chsw_allowed(padapter) == _FALSE) {
  1907. RTW_INFO("[TDLS] Ignore %s since channel switch is not allowed\n", __func__);
  1908. return _FAIL;
  1909. }
  1910. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  1911. psa = get_sa(ptr);
  1912. ptdls_sta = rtw_get_stainfo(pstapriv, psa);
  1913. if (ptdls_sta == NULL) {
  1914. RTW_INFO("[%s] Direct Link Peer = "MAC_FMT" not found\n", __func__, MAC_ARG(psa));
  1915. return _FAIL;
  1916. }
  1917. ptdls_sta->ch_switch_time = switch_time;
  1918. ptdls_sta->ch_switch_timeout = switch_timeout;
  1919. ptr += prx_pkt_attrib->hdrlen + prx_pkt_attrib->iv_len + LLC_HEADER_SIZE + ETH_TYPE_LEN + PAYLOAD_TYPE_LEN;
  1920. parsing_length = ((union recv_frame *)precv_frame)->u.hdr.len
  1921. - prx_pkt_attrib->hdrlen
  1922. - prx_pkt_attrib->iv_len
  1923. - prx_pkt_attrib->icv_len
  1924. - LLC_HEADER_SIZE
  1925. - ETH_TYPE_LEN
  1926. - PAYLOAD_TYPE_LEN
  1927. - FIXED_IE;
  1928. pchsw_info->off_ch_num = *(ptr + 2);
  1929. if ((*(ptr + 2) == 2) && (hal_is_band_support(padapter, BAND_ON_5G)))
  1930. pchsw_info->off_ch_num = 44;
  1931. if (pchsw_info->off_ch_num != pmlmeext->cur_channel)
  1932. pchsw_info->delay_switch_back = _FALSE;
  1933. /* Parsing information element */
  1934. for (j = FIXED_IE; j < parsing_length;) {
  1935. pIE = (PNDIS_802_11_VARIABLE_IEs)(ptr + j);
  1936. switch (pIE->ElementID) {
  1937. case EID_SecondaryChnlOffset:
  1938. switch (*(pIE->data)) {
  1939. case EXTCHNL_OFFSET_UPPER:
  1940. pchsw_info->ch_offset = HAL_PRIME_CHNL_OFFSET_LOWER;
  1941. break;
  1942. case EXTCHNL_OFFSET_LOWER:
  1943. pchsw_info->ch_offset = HAL_PRIME_CHNL_OFFSET_UPPER;
  1944. break;
  1945. default:
  1946. pchsw_info->ch_offset = HAL_PRIME_CHNL_OFFSET_DONT_CARE;
  1947. break;
  1948. }
  1949. break;
  1950. case _LINK_ID_IE_:
  1951. break;
  1952. case _CH_SWITCH_TIMING_:
  1953. ptdls_sta->ch_switch_time = (RTW_GET_LE16(pIE->data) >= TDLS_CH_SWITCH_TIME * 1000) ?
  1954. RTW_GET_LE16(pIE->data) : TDLS_CH_SWITCH_TIME * 1000;
  1955. ptdls_sta->ch_switch_timeout = (RTW_GET_LE16(pIE->data + 2) >= TDLS_CH_SWITCH_TIMEOUT * 1000) ?
  1956. RTW_GET_LE16(pIE->data + 2) : TDLS_CH_SWITCH_TIMEOUT * 1000;
  1957. RTW_INFO("[TDLS] %s ch_switch_time:%d, ch_switch_timeout:%d\n"
  1958. , __FUNCTION__, RTW_GET_LE16(pIE->data), RTW_GET_LE16(pIE->data + 2));
  1959. default:
  1960. break;
  1961. }
  1962. j += (pIE->Length + 2);
  1963. }
  1964. rtw_hal_get_hwreg(padapter, HW_VAR_CH_SW_NEED_TO_TAKE_CARE_IQK_INFO, &take_care_iqk);
  1965. if (take_care_iqk == _TRUE) {
  1966. u8 central_chnl;
  1967. u8 bw_mode;
  1968. bw_mode = (pchsw_info->ch_offset) ? CHANNEL_WIDTH_40 : CHANNEL_WIDTH_20;
  1969. central_chnl = rtw_get_center_ch(pchsw_info->off_ch_num, bw_mode, pchsw_info->ch_offset);
  1970. if (rtw_hal_ch_sw_iqk_info_search(padapter, central_chnl, bw_mode) < 0) {
  1971. if (!(pchsw_info->ch_sw_state & TDLS_CH_SWITCH_PREPARE_STATE))
  1972. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_CH_SW_PREPARE);
  1973. return _FAIL;
  1974. }
  1975. }
  1976. /* cancel ch sw monitor timer for responder */
  1977. if (!(pchsw_info->ch_sw_state & TDLS_CH_SW_INITIATOR_STATE))
  1978. _cancel_timer_ex(&ptdls_sta->ch_sw_monitor_timer);
  1979. /* Todo: check status */
  1980. txmgmt.status_code = 0;
  1981. _rtw_memcpy(txmgmt.peer, psa, ETH_ALEN);
  1982. if (_rtw_memcmp(pchsw_info->addr, zaddr, ETH_ALEN) == _TRUE)
  1983. _rtw_memcpy(pchsw_info->addr, ptdls_sta->hwaddr, ETH_ALEN);
  1984. if (ATOMIC_READ(&pchsw_info->chsw_on) == _FALSE)
  1985. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_CH_SW_START);
  1986. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_CH_SW_RESP);
  1987. return _SUCCESS;
  1988. }
  1989. sint On_TDLS_Ch_Switch_Rsp(_adapter *padapter, union recv_frame *precv_frame)
  1990. {
  1991. struct tdls_ch_switch *pchsw_info = &padapter->tdlsinfo.chsw_info;
  1992. struct sta_info *ptdls_sta = NULL;
  1993. struct sta_priv *pstapriv = &padapter->stapriv;
  1994. u8 *ptr = precv_frame->u.hdr.rx_data;
  1995. struct rx_pkt_attrib *prx_pkt_attrib = &precv_frame->u.hdr.attrib;
  1996. u8 *psa;
  1997. sint parsing_length;
  1998. PNDIS_802_11_VARIABLE_IEs pIE;
  1999. u8 FIXED_IE = 4;
  2000. u16 status_code, j, switch_time, switch_timeout;
  2001. struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
  2002. int ret = _SUCCESS;
  2003. if (rtw_tdls_is_chsw_allowed(padapter) == _FALSE) {
  2004. RTW_INFO("[TDLS] Ignore %s since channel switch is not allowed\n", __func__);
  2005. return _SUCCESS;
  2006. }
  2007. psa = get_sa(ptr);
  2008. ptdls_sta = rtw_get_stainfo(pstapriv, psa);
  2009. if (ptdls_sta == NULL) {
  2010. RTW_INFO("[%s] Direct Link Peer = "MAC_FMT" not found\n", __func__, MAC_ARG(psa));
  2011. return _FAIL;
  2012. }
  2013. /* If we receive Unsolicited TDLS Channel Switch Response when channel switch is running, */
  2014. /* we will go back to base channel and terminate this channel switch procedure */
  2015. if (ATOMIC_READ(&pchsw_info->chsw_on) == _TRUE) {
  2016. if (pmlmeext->cur_channel != rtw_get_oper_ch(padapter)) {
  2017. RTW_INFO("[TDLS] Rx unsolicited channel switch response\n");
  2018. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_CH_SW_TO_BASE_CHNL);
  2019. goto exit;
  2020. }
  2021. }
  2022. ptr += prx_pkt_attrib->hdrlen + prx_pkt_attrib->iv_len + LLC_HEADER_SIZE + ETH_TYPE_LEN + PAYLOAD_TYPE_LEN;
  2023. parsing_length = ((union recv_frame *)precv_frame)->u.hdr.len
  2024. - prx_pkt_attrib->hdrlen
  2025. - prx_pkt_attrib->iv_len
  2026. - prx_pkt_attrib->icv_len
  2027. - LLC_HEADER_SIZE
  2028. - ETH_TYPE_LEN
  2029. - PAYLOAD_TYPE_LEN
  2030. - FIXED_IE;
  2031. _rtw_memcpy(&status_code, ptr + 2, 2);
  2032. if (status_code != 0) {
  2033. RTW_INFO("[TDLS] %s status_code:%d\n", __func__, status_code);
  2034. pchsw_info->ch_sw_state &= ~(TDLS_CH_SW_INITIATOR_STATE);
  2035. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_CH_SW_END);
  2036. ret = _FAIL;
  2037. goto exit;
  2038. }
  2039. /* Parsing information element */
  2040. for (j = FIXED_IE; j < parsing_length;) {
  2041. pIE = (PNDIS_802_11_VARIABLE_IEs)(ptr + j);
  2042. switch (pIE->ElementID) {
  2043. case _LINK_ID_IE_:
  2044. break;
  2045. case _CH_SWITCH_TIMING_:
  2046. _rtw_memcpy(&switch_time, pIE->data, 2);
  2047. if (switch_time > ptdls_sta->ch_switch_time)
  2048. _rtw_memcpy(&ptdls_sta->ch_switch_time, &switch_time, 2);
  2049. _rtw_memcpy(&switch_timeout, pIE->data + 2, 2);
  2050. if (switch_timeout > ptdls_sta->ch_switch_timeout)
  2051. _rtw_memcpy(&ptdls_sta->ch_switch_timeout, &switch_timeout, 2);
  2052. break;
  2053. default:
  2054. break;
  2055. }
  2056. j += (pIE->Length + 2);
  2057. }
  2058. if ((pmlmeext->cur_channel == rtw_get_oper_ch(padapter)) &&
  2059. (pchsw_info->ch_sw_state & TDLS_WAIT_CH_RSP_STATE)) {
  2060. if (ATOMIC_READ(&pchsw_info->chsw_on) == _TRUE)
  2061. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_CH_SW_TO_OFF_CHNL);
  2062. }
  2063. exit:
  2064. return ret;
  2065. }
  2066. #endif /* CONFIG_TDLS_CH_SW */
  2067. #ifdef CONFIG_WFD
  2068. void wfd_ie_tdls(_adapter *padapter, u8 *pframe, u32 *pktlen)
  2069. {
  2070. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  2071. struct wifi_display_info *pwfd_info = padapter->tdlsinfo.wfd_info;
  2072. u8 wfdie[MAX_WFD_IE_LEN] = { 0x00 };
  2073. u32 wfdielen = 0;
  2074. if (!hal_chk_wl_func(padapter, WL_FUNC_MIRACAST))
  2075. return;
  2076. /* WFD OUI */
  2077. wfdielen = 0;
  2078. wfdie[wfdielen++] = 0x50;
  2079. wfdie[wfdielen++] = 0x6F;
  2080. wfdie[wfdielen++] = 0x9A;
  2081. wfdie[wfdielen++] = 0x0A; /* WFA WFD v1.0 */
  2082. /*
  2083. * Commented by Albert 20110825
  2084. * According to the WFD Specification, the negotiation request frame should contain 3 WFD attributes
  2085. * 1. WFD Device Information
  2086. * 2. Associated BSSID ( Optional )
  2087. * 3. Local IP Adress ( Optional )
  2088. */
  2089. /* WFD Device Information ATTR */
  2090. /* Type: */
  2091. wfdie[wfdielen++] = WFD_ATTR_DEVICE_INFO;
  2092. /* Length: */
  2093. /* Note: In the WFD specification, the size of length field is 2. */
  2094. RTW_PUT_BE16(wfdie + wfdielen, 0x0006);
  2095. wfdielen += 2;
  2096. /* Value1: */
  2097. /* WFD device information */
  2098. /* available for WFD session + Preferred TDLS + WSD ( WFD Service Discovery ) */
  2099. RTW_PUT_BE16(wfdie + wfdielen, pwfd_info->wfd_device_type | WFD_DEVINFO_SESSION_AVAIL
  2100. | WFD_DEVINFO_PC_TDLS | WFD_DEVINFO_WSD);
  2101. wfdielen += 2;
  2102. /* Value2: */
  2103. /* Session Management Control Port */
  2104. /* Default TCP port for RTSP messages is 554 */
  2105. RTW_PUT_BE16(wfdie + wfdielen, pwfd_info->tdls_rtsp_ctrlport);
  2106. wfdielen += 2;
  2107. /* Value3: */
  2108. /* WFD Device Maximum Throughput */
  2109. /* 300Mbps is the maximum throughput */
  2110. RTW_PUT_BE16(wfdie + wfdielen, 300);
  2111. wfdielen += 2;
  2112. /* Associated BSSID ATTR */
  2113. /* Type: */
  2114. wfdie[wfdielen++] = WFD_ATTR_ASSOC_BSSID;
  2115. /* Length: */
  2116. /* Note: In the WFD specification, the size of length field is 2. */
  2117. RTW_PUT_BE16(wfdie + wfdielen, 0x0006);
  2118. wfdielen += 2;
  2119. /* Value: */
  2120. /* Associated BSSID */
  2121. if (check_fwstate(pmlmepriv, _FW_LINKED) == _TRUE)
  2122. _rtw_memcpy(wfdie + wfdielen, &pmlmepriv->assoc_bssid[0], ETH_ALEN);
  2123. else
  2124. _rtw_memset(wfdie + wfdielen, 0x00, ETH_ALEN);
  2125. /* Local IP Address ATTR */
  2126. wfdie[wfdielen++] = WFD_ATTR_LOCAL_IP_ADDR;
  2127. /* Length: */
  2128. /* Note: In the WFD specification, the size of length field is 2. */
  2129. RTW_PUT_BE16(wfdie + wfdielen, 0x0005);
  2130. wfdielen += 2;
  2131. /* Version: */
  2132. /* 0x01: Version1;IPv4 */
  2133. wfdie[wfdielen++] = 0x01;
  2134. /* IPv4 Address */
  2135. _rtw_memcpy(wfdie + wfdielen, pwfd_info->ip_address, 4);
  2136. wfdielen += 4;
  2137. pframe = rtw_set_ie(pframe, _VENDOR_SPECIFIC_IE_, wfdielen, (unsigned char *) wfdie, pktlen);
  2138. }
  2139. #endif /* CONFIG_WFD */
  2140. void rtw_build_tdls_setup_req_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe, struct tdls_txmgmt *ptxmgmt)
  2141. {
  2142. struct registry_priv *pregistrypriv = &padapter->registrypriv;
  2143. struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
  2144. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2145. struct sta_info *ptdls_sta = rtw_get_stainfo((&padapter->stapriv) , pattrib->dst);
  2146. int i = 0 ;
  2147. u32 time;
  2148. u8 *pframe_head;
  2149. /* SNonce */
  2150. if (pattrib->encrypt) {
  2151. for (i = 0; i < 8; i++) {
  2152. time = rtw_get_current_time();
  2153. _rtw_memcpy(&ptdls_sta->SNonce[4 * i], (u8 *)&time, 4);
  2154. }
  2155. }
  2156. pframe_head = pframe; /* For rtw_tdls_set_ht_cap() */
  2157. pframe = rtw_tdls_set_payload_type(pframe, pattrib);
  2158. pframe = rtw_tdls_set_category(pframe, pattrib, RTW_WLAN_CATEGORY_TDLS);
  2159. pframe = rtw_tdls_set_action(pframe, pattrib, ptxmgmt);
  2160. pframe = rtw_tdls_set_dialog(pframe, pattrib, ptxmgmt);
  2161. pframe = rtw_tdls_set_capability(padapter, pframe, pattrib);
  2162. pframe = rtw_tdls_set_supported_rate(padapter, pframe, pattrib);
  2163. pframe = rtw_tdls_set_sup_ch(&(padapter->mlmeextpriv), pframe, pattrib);
  2164. pframe = rtw_tdls_set_sup_reg_class(pframe, pattrib);
  2165. if (pattrib->encrypt)
  2166. pframe = rtw_tdls_set_rsnie(ptxmgmt, pframe, pattrib, _TRUE, ptdls_sta);
  2167. pframe = rtw_tdls_set_ext_cap(pframe, pattrib);
  2168. if (pattrib->encrypt) {
  2169. pframe = rtw_tdls_set_ftie(ptxmgmt
  2170. , pframe
  2171. , pattrib
  2172. , NULL
  2173. , ptdls_sta->SNonce);
  2174. pframe = rtw_tdls_set_timeout_interval(ptxmgmt, pframe, pattrib, _TRUE, ptdls_sta);
  2175. }
  2176. #ifdef CONFIG_80211N_HT
  2177. /* Sup_reg_classes(optional) */
  2178. if (pregistrypriv->ht_enable == _TRUE)
  2179. pframe = rtw_tdls_set_ht_cap(padapter, pframe_head, pattrib);
  2180. #endif
  2181. pframe = rtw_tdls_set_bss_coexist(padapter, pframe, pattrib);
  2182. pframe = rtw_tdls_set_linkid(pframe, pattrib, _TRUE);
  2183. if ((pregistrypriv->wmm_enable == _TRUE) || (padapter->mlmepriv.htpriv.ht_option == _TRUE))
  2184. pframe = rtw_tdls_set_qos_cap(pframe, pattrib);
  2185. #ifdef CONFIG_80211AC_VHT
  2186. if ((padapter->mlmepriv.htpriv.ht_option == _TRUE) && (pmlmeext->cur_channel > 14)
  2187. && REGSTY_IS_11AC_ENABLE(pregistrypriv)
  2188. && hal_chk_proto_cap(padapter, PROTO_CAP_11AC)
  2189. && (!padapter->mlmepriv.country_ent || COUNTRY_CHPLAN_EN_11AC(padapter->mlmepriv.country_ent))
  2190. ) {
  2191. pframe = rtw_tdls_set_aid(padapter, pframe, pattrib);
  2192. pframe = rtw_tdls_set_vht_cap(padapter, pframe, pattrib);
  2193. }
  2194. #endif
  2195. #ifdef CONFIG_WFD
  2196. if (padapter->wdinfo.wfd_tdls_enable == 1)
  2197. wfd_ie_tdls(padapter, pframe, &(pattrib->pktlen));
  2198. #endif
  2199. }
  2200. void rtw_build_tdls_setup_rsp_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe, struct tdls_txmgmt *ptxmgmt)
  2201. {
  2202. struct registry_priv *pregistrypriv = &padapter->registrypriv;
  2203. struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
  2204. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2205. struct sta_info *ptdls_sta;
  2206. u8 k; /* for random ANonce */
  2207. u8 *pftie = NULL, *ptimeout_ie = NULL, *plinkid_ie = NULL, *prsnie = NULL, *pftie_mic = NULL;
  2208. u32 time;
  2209. u8 *pframe_head;
  2210. ptdls_sta = rtw_get_stainfo(&(padapter->stapriv) , pattrib->dst);
  2211. if (ptdls_sta == NULL)
  2212. RTW_INFO("[%s] %d ptdls_sta is NULL\n", __FUNCTION__, __LINE__);
  2213. if (pattrib->encrypt && ptdls_sta != NULL) {
  2214. for (k = 0; k < 8; k++) {
  2215. time = rtw_get_current_time();
  2216. _rtw_memcpy(&ptdls_sta->ANonce[4 * k], (u8 *)&time, 4);
  2217. }
  2218. }
  2219. pframe_head = pframe;
  2220. pframe = rtw_tdls_set_payload_type(pframe, pattrib);
  2221. pframe = rtw_tdls_set_category(pframe, pattrib, RTW_WLAN_CATEGORY_TDLS);
  2222. pframe = rtw_tdls_set_action(pframe, pattrib, ptxmgmt);
  2223. pframe = rtw_tdls_set_status_code(pframe, pattrib, ptxmgmt);
  2224. if (ptxmgmt->status_code != 0) {
  2225. RTW_INFO("[%s] status_code:%04x\n", __FUNCTION__, ptxmgmt->status_code);
  2226. return;
  2227. }
  2228. pframe = rtw_tdls_set_dialog(pframe, pattrib, ptxmgmt);
  2229. pframe = rtw_tdls_set_capability(padapter, pframe, pattrib);
  2230. pframe = rtw_tdls_set_supported_rate(padapter, pframe, pattrib);
  2231. pframe = rtw_tdls_set_sup_ch(&(padapter->mlmeextpriv), pframe, pattrib);
  2232. pframe = rtw_tdls_set_sup_reg_class(pframe, pattrib);
  2233. if (pattrib->encrypt) {
  2234. prsnie = pframe;
  2235. pframe = rtw_tdls_set_rsnie(ptxmgmt, pframe, pattrib, _FALSE, ptdls_sta);
  2236. }
  2237. pframe = rtw_tdls_set_ext_cap(pframe, pattrib);
  2238. if (pattrib->encrypt) {
  2239. if (rtw_tdls_is_driver_setup(padapter) == _TRUE)
  2240. wpa_tdls_generate_tpk(padapter, ptdls_sta);
  2241. pftie = pframe;
  2242. pftie_mic = pframe + 4;
  2243. pframe = rtw_tdls_set_ftie(ptxmgmt
  2244. , pframe
  2245. , pattrib
  2246. , ptdls_sta->ANonce
  2247. , ptdls_sta->SNonce);
  2248. ptimeout_ie = pframe;
  2249. pframe = rtw_tdls_set_timeout_interval(ptxmgmt, pframe, pattrib, _FALSE, ptdls_sta);
  2250. }
  2251. #ifdef CONFIG_80211N_HT
  2252. /* Sup_reg_classes(optional) */
  2253. if (pregistrypriv->ht_enable == _TRUE)
  2254. pframe = rtw_tdls_set_ht_cap(padapter, pframe_head, pattrib);
  2255. #endif
  2256. pframe = rtw_tdls_set_bss_coexist(padapter, pframe, pattrib);
  2257. plinkid_ie = pframe;
  2258. pframe = rtw_tdls_set_linkid(pframe, pattrib, _FALSE);
  2259. /* Fill FTIE mic */
  2260. if (pattrib->encrypt && rtw_tdls_is_driver_setup(padapter) == _TRUE)
  2261. wpa_tdls_ftie_mic(ptdls_sta->tpk.kck, 2, plinkid_ie, prsnie, ptimeout_ie, pftie, pftie_mic);
  2262. if ((pregistrypriv->wmm_enable == _TRUE) || (padapter->mlmepriv.htpriv.ht_option == _TRUE))
  2263. pframe = rtw_tdls_set_qos_cap(pframe, pattrib);
  2264. #ifdef CONFIG_80211AC_VHT
  2265. if ((padapter->mlmepriv.htpriv.ht_option == _TRUE) && (pmlmeext->cur_channel > 14)
  2266. && REGSTY_IS_11AC_ENABLE(pregistrypriv)
  2267. && hal_chk_proto_cap(padapter, PROTO_CAP_11AC)
  2268. && (!padapter->mlmepriv.country_ent || COUNTRY_CHPLAN_EN_11AC(padapter->mlmepriv.country_ent))
  2269. ) {
  2270. pframe = rtw_tdls_set_aid(padapter, pframe, pattrib);
  2271. pframe = rtw_tdls_set_vht_cap(padapter, pframe, pattrib);
  2272. pframe = rtw_tdls_set_vht_op_mode_notify(padapter, pframe, pattrib, pmlmeext->cur_bwmode);
  2273. }
  2274. #endif
  2275. #ifdef CONFIG_WFD
  2276. if (padapter->wdinfo.wfd_tdls_enable)
  2277. wfd_ie_tdls(padapter, pframe, &(pattrib->pktlen));
  2278. #endif
  2279. }
  2280. void rtw_build_tdls_setup_cfm_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe, struct tdls_txmgmt *ptxmgmt)
  2281. {
  2282. struct registry_priv *pregistrypriv = &padapter->registrypriv;
  2283. struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
  2284. struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
  2285. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2286. struct sta_info *ptdls_sta = rtw_get_stainfo((&padapter->stapriv) , pattrib->dst);
  2287. unsigned int ie_len;
  2288. unsigned char *p;
  2289. u8 wmm_param_ele[24] = {0};
  2290. u8 *pftie = NULL, *ptimeout_ie = NULL, *plinkid_ie = NULL, *prsnie = NULL, *pftie_mic = NULL;
  2291. pframe = rtw_tdls_set_payload_type(pframe, pattrib);
  2292. pframe = rtw_tdls_set_category(pframe, pattrib, RTW_WLAN_CATEGORY_TDLS);
  2293. pframe = rtw_tdls_set_action(pframe, pattrib, ptxmgmt);
  2294. pframe = rtw_tdls_set_status_code(pframe, pattrib, ptxmgmt);
  2295. pframe = rtw_tdls_set_dialog(pframe, pattrib, ptxmgmt);
  2296. if (ptxmgmt->status_code != 0)
  2297. return;
  2298. if (pattrib->encrypt) {
  2299. prsnie = pframe;
  2300. pframe = rtw_tdls_set_rsnie(ptxmgmt, pframe, pattrib, _TRUE, ptdls_sta);
  2301. }
  2302. if (pattrib->encrypt) {
  2303. pftie = pframe;
  2304. pftie_mic = pframe + 4;
  2305. pframe = rtw_tdls_set_ftie(ptxmgmt
  2306. , pframe
  2307. , pattrib
  2308. , ptdls_sta->ANonce
  2309. , ptdls_sta->SNonce);
  2310. ptimeout_ie = pframe;
  2311. pframe = rtw_tdls_set_timeout_interval(ptxmgmt, pframe, pattrib, _TRUE, ptdls_sta);
  2312. if (rtw_tdls_is_driver_setup(padapter) == _TRUE) {
  2313. /* Start TPK timer */
  2314. ptdls_sta->TPK_count = 0;
  2315. _set_timer(&ptdls_sta->TPK_timer, ONE_SEC);
  2316. }
  2317. }
  2318. /* HT operation; todo */
  2319. plinkid_ie = pframe;
  2320. pframe = rtw_tdls_set_linkid(pframe, pattrib, _TRUE);
  2321. if (pattrib->encrypt && (rtw_tdls_is_driver_setup(padapter) == _TRUE))
  2322. wpa_tdls_ftie_mic(ptdls_sta->tpk.kck, 3, plinkid_ie, prsnie, ptimeout_ie, pftie, pftie_mic);
  2323. if (ptdls_sta->qos_option == _TRUE)
  2324. pframe = rtw_tdls_set_wmm_params(padapter, pframe, pattrib);
  2325. #ifdef CONFIG_80211AC_VHT
  2326. if ((padapter->mlmepriv.htpriv.ht_option == _TRUE)
  2327. && (ptdls_sta->vhtpriv.vht_option == _TRUE) && (pmlmeext->cur_channel > 14)
  2328. && REGSTY_IS_11AC_ENABLE(pregistrypriv)
  2329. && hal_chk_proto_cap(padapter, PROTO_CAP_11AC)
  2330. && (!padapter->mlmepriv.country_ent || COUNTRY_CHPLAN_EN_11AC(padapter->mlmepriv.country_ent))
  2331. ) {
  2332. pframe = rtw_tdls_set_vht_operation(padapter, pframe, pattrib, pmlmeext->cur_channel);
  2333. pframe = rtw_tdls_set_vht_op_mode_notify(padapter, pframe, pattrib, pmlmeext->cur_bwmode);
  2334. }
  2335. #endif
  2336. }
  2337. void rtw_build_tdls_teardown_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe, struct tdls_txmgmt *ptxmgmt)
  2338. {
  2339. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2340. struct sta_info *ptdls_sta = rtw_get_stainfo(&(padapter->stapriv) , pattrib->dst);
  2341. u8 *pftie = NULL, *pftie_mic = NULL, *plinkid_ie = NULL;
  2342. pframe = rtw_tdls_set_payload_type(pframe, pattrib);
  2343. pframe = rtw_tdls_set_category(pframe, pattrib, RTW_WLAN_CATEGORY_TDLS);
  2344. pframe = rtw_tdls_set_action(pframe, pattrib, ptxmgmt);
  2345. pframe = rtw_tdls_set_status_code(pframe, pattrib, ptxmgmt);
  2346. if (pattrib->encrypt) {
  2347. pftie = pframe;
  2348. pftie_mic = pframe + 4;
  2349. pframe = rtw_tdls_set_ftie(ptxmgmt
  2350. , pframe
  2351. , pattrib
  2352. , ptdls_sta->ANonce
  2353. , ptdls_sta->SNonce);
  2354. }
  2355. plinkid_ie = pframe;
  2356. if (ptdls_sta->tdls_sta_state & TDLS_INITIATOR_STATE)
  2357. pframe = rtw_tdls_set_linkid(pframe, pattrib, _FALSE);
  2358. else if (ptdls_sta->tdls_sta_state & TDLS_RESPONDER_STATE)
  2359. pframe = rtw_tdls_set_linkid(pframe, pattrib, _TRUE);
  2360. if (pattrib->encrypt && (rtw_tdls_is_driver_setup(padapter) == _TRUE))
  2361. wpa_tdls_teardown_ftie_mic(ptdls_sta->tpk.kck, plinkid_ie, ptxmgmt->status_code, 1, 4, pftie, pftie_mic);
  2362. }
  2363. void rtw_build_tdls_dis_req_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe, struct tdls_txmgmt *ptxmgmt)
  2364. {
  2365. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2366. pframe = rtw_tdls_set_payload_type(pframe, pattrib);
  2367. pframe = rtw_tdls_set_category(pframe, pattrib, RTW_WLAN_CATEGORY_TDLS);
  2368. pframe = rtw_tdls_set_action(pframe, pattrib, ptxmgmt);
  2369. pframe = rtw_tdls_set_dialog(pframe, pattrib, ptxmgmt);
  2370. pframe = rtw_tdls_set_linkid(pframe, pattrib, _TRUE);
  2371. }
  2372. void rtw_build_tdls_dis_rsp_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe, struct tdls_txmgmt *ptxmgmt, u8 privacy)
  2373. {
  2374. struct registry_priv *pregistrypriv = &padapter->registrypriv;
  2375. struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
  2376. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2377. u8 *pframe_head, pktlen_index;
  2378. pktlen_index = pattrib->pktlen;
  2379. pframe_head = pframe;
  2380. pframe = rtw_tdls_set_category(pframe, pattrib, RTW_WLAN_CATEGORY_PUBLIC);
  2381. pframe = rtw_tdls_set_action(pframe, pattrib, ptxmgmt);
  2382. pframe = rtw_tdls_set_dialog(pframe, pattrib, ptxmgmt);
  2383. pframe = rtw_tdls_set_capability(padapter, pframe, pattrib);
  2384. pframe = rtw_tdls_set_supported_rate(padapter, pframe, pattrib);
  2385. pframe = rtw_tdls_set_sup_ch(pmlmeext, pframe, pattrib);
  2386. if (privacy)
  2387. pframe = rtw_tdls_set_rsnie(ptxmgmt, pframe, pattrib, _TRUE, NULL);
  2388. pframe = rtw_tdls_set_ext_cap(pframe, pattrib);
  2389. if (privacy) {
  2390. pframe = rtw_tdls_set_ftie(ptxmgmt, pframe, pattrib, NULL, NULL);
  2391. pframe = rtw_tdls_set_timeout_interval(ptxmgmt, pframe, pattrib, _TRUE, NULL);
  2392. }
  2393. #ifdef CONFIG_80211N_HT
  2394. if (pregistrypriv->ht_enable == _TRUE)
  2395. pframe = rtw_tdls_set_ht_cap(padapter, pframe_head - pktlen_index, pattrib);
  2396. #endif
  2397. pframe = rtw_tdls_set_bss_coexist(padapter, pframe, pattrib);
  2398. pframe = rtw_tdls_set_linkid(pframe, pattrib, _FALSE);
  2399. }
  2400. void rtw_build_tdls_peer_traffic_indication_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe, struct tdls_txmgmt *ptxmgmt)
  2401. {
  2402. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2403. u8 AC_queue = 0;
  2404. struct sta_info *ptdls_sta = rtw_get_stainfo(&padapter->stapriv, pattrib->dst);
  2405. pframe = rtw_tdls_set_payload_type(pframe, pattrib);
  2406. pframe = rtw_tdls_set_category(pframe, pattrib, RTW_WLAN_CATEGORY_TDLS);
  2407. pframe = rtw_tdls_set_action(pframe, pattrib, ptxmgmt);
  2408. pframe = rtw_tdls_set_dialog(pframe, pattrib, ptxmgmt);
  2409. if (ptdls_sta->tdls_sta_state & TDLS_INITIATOR_STATE)
  2410. pframe = rtw_tdls_set_linkid(pframe, pattrib, _FALSE);
  2411. else if (ptdls_sta->tdls_sta_state & TDLS_RESPONDER_STATE)
  2412. pframe = rtw_tdls_set_linkid(pframe, pattrib, _TRUE);
  2413. /* PTI control */
  2414. /* PU buffer status */
  2415. if (ptdls_sta->uapsd_bk & BIT(1))
  2416. AC_queue = BIT(0);
  2417. if (ptdls_sta->uapsd_be & BIT(1))
  2418. AC_queue = BIT(1);
  2419. if (ptdls_sta->uapsd_vi & BIT(1))
  2420. AC_queue = BIT(2);
  2421. if (ptdls_sta->uapsd_vo & BIT(1))
  2422. AC_queue = BIT(3);
  2423. pframe = rtw_set_ie(pframe, _PTI_BUFFER_STATUS_, 1, &AC_queue, &(pattrib->pktlen));
  2424. }
  2425. void rtw_build_tdls_peer_traffic_rsp_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe, struct tdls_txmgmt *ptxmgmt)
  2426. {
  2427. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2428. struct sta_info *ptdls_sta = rtw_get_stainfo(&padapter->stapriv, pattrib->dst);
  2429. pframe = rtw_tdls_set_payload_type(pframe, pattrib);
  2430. pframe = rtw_tdls_set_category(pframe, pattrib, RTW_WLAN_CATEGORY_TDLS);
  2431. pframe = rtw_tdls_set_action(pframe, pattrib, ptxmgmt);
  2432. pframe = rtw_tdls_set_dialog(pframe, pattrib, ptxmgmt);
  2433. if (ptdls_sta->tdls_sta_state & TDLS_INITIATOR_STATE)
  2434. pframe = rtw_tdls_set_linkid(pframe, pattrib, _FALSE);
  2435. else if (ptdls_sta->tdls_sta_state & TDLS_RESPONDER_STATE)
  2436. pframe = rtw_tdls_set_linkid(pframe, pattrib, _TRUE);
  2437. }
  2438. #ifdef CONFIG_TDLS_CH_SW
  2439. void rtw_build_tdls_ch_switch_req_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe, struct tdls_txmgmt *ptxmgmt)
  2440. {
  2441. struct tdls_info *ptdlsinfo = &padapter->tdlsinfo;
  2442. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2443. struct sta_priv *pstapriv = &padapter->stapriv;
  2444. struct sta_info *ptdls_sta = rtw_get_stainfo(pstapriv, pattrib->dst);
  2445. u16 switch_time = TDLS_CH_SWITCH_TIME * 1000, switch_timeout = TDLS_CH_SWITCH_TIMEOUT * 1000;
  2446. ptdls_sta->ch_switch_time = switch_time;
  2447. ptdls_sta->ch_switch_timeout = switch_timeout;
  2448. pframe = rtw_tdls_set_payload_type(pframe, pattrib);
  2449. pframe = rtw_tdls_set_category(pframe, pattrib, RTW_WLAN_CATEGORY_TDLS);
  2450. pframe = rtw_tdls_set_action(pframe, pattrib, ptxmgmt);
  2451. pframe = rtw_tdls_set_target_ch(padapter, pframe, pattrib);
  2452. pframe = rtw_tdls_set_reg_class(pframe, pattrib, ptdls_sta);
  2453. if (ptdlsinfo->chsw_info.ch_offset != HAL_PRIME_CHNL_OFFSET_DONT_CARE) {
  2454. switch (ptdlsinfo->chsw_info.ch_offset) {
  2455. case HAL_PRIME_CHNL_OFFSET_LOWER:
  2456. pframe = rtw_tdls_set_second_channel_offset(pframe, pattrib, SCA);
  2457. break;
  2458. case HAL_PRIME_CHNL_OFFSET_UPPER:
  2459. pframe = rtw_tdls_set_second_channel_offset(pframe, pattrib, SCB);
  2460. break;
  2461. }
  2462. }
  2463. if (ptdls_sta->tdls_sta_state & TDLS_INITIATOR_STATE)
  2464. pframe = rtw_tdls_set_linkid(pframe, pattrib, _FALSE);
  2465. else if (ptdls_sta->tdls_sta_state & TDLS_RESPONDER_STATE)
  2466. pframe = rtw_tdls_set_linkid(pframe, pattrib, _TRUE);
  2467. pframe = rtw_tdls_set_ch_sw(pframe, pattrib, ptdls_sta);
  2468. }
  2469. void rtw_build_tdls_ch_switch_rsp_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe, struct tdls_txmgmt *ptxmgmt)
  2470. {
  2471. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2472. struct sta_priv *pstapriv = &padapter->stapriv;
  2473. struct sta_info *ptdls_sta = rtw_get_stainfo(pstapriv, pattrib->dst);
  2474. pframe = rtw_tdls_set_payload_type(pframe, pattrib);
  2475. pframe = rtw_tdls_set_category(pframe, pattrib, RTW_WLAN_CATEGORY_TDLS);
  2476. pframe = rtw_tdls_set_action(pframe, pattrib, ptxmgmt);
  2477. pframe = rtw_tdls_set_status_code(pframe, pattrib, ptxmgmt);
  2478. if (ptdls_sta->tdls_sta_state & TDLS_INITIATOR_STATE)
  2479. pframe = rtw_tdls_set_linkid(pframe, pattrib, _FALSE);
  2480. else if (ptdls_sta->tdls_sta_state & TDLS_RESPONDER_STATE)
  2481. pframe = rtw_tdls_set_linkid(pframe, pattrib, _TRUE);
  2482. pframe = rtw_tdls_set_ch_sw(pframe, pattrib, ptdls_sta);
  2483. }
  2484. #endif
  2485. #ifdef CONFIG_WFD
  2486. void rtw_build_tunneled_probe_req_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe)
  2487. {
  2488. u8 i;
  2489. _adapter *iface = NULL;
  2490. struct dvobj_priv *dvobj = adapter_to_dvobj(padapter);
  2491. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2492. struct wifidirect_info *pwdinfo;
  2493. u8 category = RTW_WLAN_CATEGORY_P2P;
  2494. u8 WFA_OUI[3] = { 0x50, 0x6f, 0x9a};
  2495. u8 probe_req = 4;
  2496. u8 wfdielen = 0;
  2497. pframe = rtw_tdls_set_payload_type(pframe, pattrib);
  2498. pframe = rtw_set_fixed_ie(pframe, 1, &(category), &(pattrib->pktlen));
  2499. pframe = rtw_set_fixed_ie(pframe, 3, WFA_OUI, &(pattrib->pktlen));
  2500. pframe = rtw_set_fixed_ie(pframe, 1, &(probe_req), &(pattrib->pktlen));
  2501. for (i = 0; i < dvobj->iface_nums; i++) {
  2502. iface = dvobj->padapters[i];
  2503. if ((iface) && rtw_is_adapter_up(iface)) {
  2504. pwdinfo = &iface->wdinfo;
  2505. if (!rtw_p2p_chk_state(pwdinfo, P2P_STATE_NONE)) {
  2506. wfdielen = build_probe_req_wfd_ie(pwdinfo, pframe);
  2507. pframe += wfdielen;
  2508. pattrib->pktlen += wfdielen;
  2509. }
  2510. }
  2511. }
  2512. }
  2513. void rtw_build_tunneled_probe_rsp_ies(_adapter *padapter, struct xmit_frame *pxmitframe, u8 *pframe)
  2514. {
  2515. u8 i;
  2516. _adapter *iface = NULL;
  2517. struct dvobj_priv *dvobj = adapter_to_dvobj(padapter);
  2518. struct pkt_attrib *pattrib = &pxmitframe->attrib;
  2519. struct wifidirect_info *pwdinfo;
  2520. u8 category = RTW_WLAN_CATEGORY_P2P;
  2521. u8 WFA_OUI[3] = { 0x50, 0x6f, 0x9a};
  2522. u8 probe_rsp = 5;
  2523. u8 wfdielen = 0;
  2524. pframe = rtw_tdls_set_payload_type(pframe, pattrib);
  2525. pframe = rtw_set_fixed_ie(pframe, 1, &(category), &(pattrib->pktlen));
  2526. pframe = rtw_set_fixed_ie(pframe, 3, WFA_OUI, &(pattrib->pktlen));
  2527. pframe = rtw_set_fixed_ie(pframe, 1, &(probe_rsp), &(pattrib->pktlen));
  2528. for (i = 0; i < dvobj->iface_nums; i++) {
  2529. iface = dvobj->padapters[i];
  2530. if ((iface) && rtw_is_adapter_up(iface)) {
  2531. pwdinfo = &iface->wdinfo;
  2532. if (!rtw_p2p_chk_state(pwdinfo, P2P_STATE_NONE)) {
  2533. wfdielen = build_probe_resp_wfd_ie(pwdinfo, pframe, 1);
  2534. pframe += wfdielen;
  2535. pattrib->pktlen += wfdielen;
  2536. }
  2537. }
  2538. }
  2539. }
  2540. #endif /* CONFIG_WFD */
  2541. void _tdls_tpk_timer_hdl(void *FunctionContext)
  2542. {
  2543. struct sta_info *ptdls_sta = (struct sta_info *)FunctionContext;
  2544. struct tdls_txmgmt txmgmt;
  2545. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  2546. ptdls_sta->TPK_count++;
  2547. /* TPK_timer expired in a second */
  2548. /* Retry timer should set at least 301 sec. */
  2549. if (ptdls_sta->TPK_count >= (ptdls_sta->TDLS_PeerKey_Lifetime - 3)) {
  2550. RTW_INFO("[TDLS] %s, Re-Setup TDLS link with "MAC_FMT" since TPK lifetime expires!\n", __FUNCTION__, MAC_ARG(ptdls_sta->hwaddr));
  2551. ptdls_sta->TPK_count = 0;
  2552. _rtw_memcpy(txmgmt.peer, ptdls_sta->hwaddr, ETH_ALEN);
  2553. issue_tdls_setup_req(ptdls_sta->padapter, &txmgmt, _FALSE);
  2554. }
  2555. _set_timer(&ptdls_sta->TPK_timer, ONE_SEC);
  2556. }
  2557. #ifdef CONFIG_TDLS_CH_SW
  2558. void _tdls_ch_switch_timer_hdl(void *FunctionContext)
  2559. {
  2560. struct sta_info *ptdls_sta = (struct sta_info *)FunctionContext;
  2561. _adapter *padapter = ptdls_sta->padapter;
  2562. struct tdls_ch_switch *pchsw_info = &padapter->tdlsinfo.chsw_info;
  2563. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_CH_SW_END_TO_BASE_CHNL);
  2564. RTW_INFO("[TDLS] %s, can't get traffic from op_ch:%d\n", __func__, rtw_get_oper_ch(padapter));
  2565. }
  2566. void _tdls_delay_timer_hdl(void *FunctionContext)
  2567. {
  2568. struct sta_info *ptdls_sta = (struct sta_info *)FunctionContext;
  2569. _adapter *padapter = ptdls_sta->padapter;
  2570. struct tdls_ch_switch *pchsw_info = &padapter->tdlsinfo.chsw_info;
  2571. RTW_INFO("[TDLS] %s, op_ch:%d, tdls_state:0x%08x\n", __func__, rtw_get_oper_ch(padapter), ptdls_sta->tdls_sta_state);
  2572. pchsw_info->delay_switch_back = _TRUE;
  2573. }
  2574. void _tdls_stay_on_base_chnl_timer_hdl(void *FunctionContext)
  2575. {
  2576. struct sta_info *ptdls_sta = (struct sta_info *)FunctionContext;
  2577. _adapter *padapter = ptdls_sta->padapter;
  2578. struct tdls_ch_switch *pchsw_info = &padapter->tdlsinfo.chsw_info;
  2579. if (ptdls_sta != NULL) {
  2580. issue_tdls_ch_switch_req(padapter, ptdls_sta);
  2581. pchsw_info->ch_sw_state |= TDLS_WAIT_CH_RSP_STATE;
  2582. }
  2583. }
  2584. void _tdls_ch_switch_monitor_timer_hdl(void *FunctionContext)
  2585. {
  2586. struct sta_info *ptdls_sta = (struct sta_info *)FunctionContext;
  2587. _adapter *padapter = ptdls_sta->padapter;
  2588. struct tdls_ch_switch *pchsw_info = &padapter->tdlsinfo.chsw_info;
  2589. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_CH_SW_END);
  2590. RTW_INFO("[TDLS] %s, does not receive ch sw req\n", __func__);
  2591. }
  2592. #endif
  2593. void _tdls_handshake_timer_hdl(void *FunctionContext)
  2594. {
  2595. struct sta_info *ptdls_sta = (struct sta_info *)FunctionContext;
  2596. _adapter *padapter = ptdls_sta->padapter;
  2597. struct tdls_txmgmt txmgmt;
  2598. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  2599. _rtw_memcpy(txmgmt.peer, ptdls_sta->hwaddr, ETH_ALEN);
  2600. txmgmt.status_code = _RSON_TDLS_TEAR_UN_RSN_;
  2601. if (ptdls_sta != NULL) {
  2602. RTW_INFO("[TDLS] Handshake time out\n");
  2603. if (ptdls_sta->tdls_sta_state & TDLS_LINKED_STATE)
  2604. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_TEARDOWN_STA);
  2605. else
  2606. rtw_tdls_cmd(padapter, ptdls_sta->hwaddr, TDLS_TEARDOWN_STA_LOCALLY);
  2607. }
  2608. }
  2609. void _tdls_pti_timer_hdl(void *FunctionContext)
  2610. {
  2611. struct sta_info *ptdls_sta = (struct sta_info *)FunctionContext;
  2612. _adapter *padapter = ptdls_sta->padapter;
  2613. struct tdls_txmgmt txmgmt;
  2614. _rtw_memset(&txmgmt, 0x00, sizeof(struct tdls_txmgmt));
  2615. _rtw_memcpy(txmgmt.peer, ptdls_sta->hwaddr, ETH_ALEN);
  2616. txmgmt.status_code = _RSON_TDLS_TEAR_TOOFAR_;
  2617. if (ptdls_sta != NULL) {
  2618. if (ptdls_sta->tdls_sta_state & TDLS_WAIT_PTR_STATE) {
  2619. RTW_INFO("[TDLS] Doesn't receive PTR from peer dev:"MAC_FMT"; "
  2620. "Send TDLS Tear Down\n", MAC_ARG(ptdls_sta->hwaddr));
  2621. issue_tdls_teardown(padapter, &txmgmt, _FALSE);
  2622. }
  2623. }
  2624. }
  2625. void rtw_init_tdls_timer(_adapter *padapter, struct sta_info *psta)
  2626. {
  2627. psta->padapter = padapter;
  2628. rtw_init_timer(&psta->TPK_timer, padapter, _tdls_tpk_timer_hdl, psta);
  2629. #ifdef CONFIG_TDLS_CH_SW
  2630. rtw_init_timer(&psta->ch_sw_timer, padapter, _tdls_ch_switch_timer_hdl, psta);
  2631. rtw_init_timer(&psta->delay_timer, padapter, _tdls_delay_timer_hdl, psta);
  2632. rtw_init_timer(&psta->stay_on_base_chnl_timer, padapter, _tdls_stay_on_base_chnl_timer_hdl, psta);
  2633. rtw_init_timer(&psta->ch_sw_monitor_timer, padapter, _tdls_ch_switch_monitor_timer_hdl, psta);
  2634. #endif
  2635. rtw_init_timer(&psta->handshake_timer, padapter, _tdls_handshake_timer_hdl, psta);
  2636. rtw_init_timer(&psta->pti_timer, padapter, _tdls_pti_timer_hdl, psta);
  2637. }
  2638. void rtw_free_tdls_timer(struct sta_info *psta)
  2639. {
  2640. _cancel_timer_ex(&psta->TPK_timer);
  2641. #ifdef CONFIG_TDLS_CH_SW
  2642. _cancel_timer_ex(&psta->ch_sw_timer);
  2643. _cancel_timer_ex(&psta->delay_timer);
  2644. _cancel_timer_ex(&psta->stay_on_base_chnl_timer);
  2645. _cancel_timer_ex(&psta->ch_sw_monitor_timer);
  2646. #endif
  2647. _cancel_timer_ex(&psta->handshake_timer);
  2648. _cancel_timer_ex(&psta->pti_timer);
  2649. }
  2650. u32 update_mask_tdls(_adapter *padapter, struct sta_info *psta)
  2651. {
  2652. unsigned char sta_band = 0;
  2653. unsigned int tx_ra_bitmap = 0;
  2654. struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
  2655. WLAN_BSSID_EX *pcur_network = (WLAN_BSSID_EX *)&pmlmepriv->cur_network.network;
  2656. rtw_hal_update_sta_rate_mask(padapter, psta);
  2657. tx_ra_bitmap = psta->ra_mask;
  2658. if (pcur_network->Configuration.DSConfig > 14) {
  2659. if (tx_ra_bitmap & 0xffff000)
  2660. sta_band |= WIRELESS_11_5N | WIRELESS_11A;
  2661. else
  2662. sta_band |= WIRELESS_11A;
  2663. } else {
  2664. if (tx_ra_bitmap & 0xffff000)
  2665. sta_band |= WIRELESS_11_24N | WIRELESS_11G | WIRELESS_11B;
  2666. else if (tx_ra_bitmap & 0xff0)
  2667. sta_band |= WIRELESS_11G | WIRELESS_11B;
  2668. else
  2669. sta_band |= WIRELESS_11B;
  2670. }
  2671. psta->wireless_mode = sta_band;
  2672. psta->raid = rtw_hal_networktype_to_raid(padapter, psta);
  2673. tx_ra_bitmap |= ((psta->raid << 28) & 0xf0000000);
  2674. return tx_ra_bitmap;
  2675. }
  2676. int rtw_tdls_is_driver_setup(_adapter *padapter)
  2677. {
  2678. return padapter->tdlsinfo.driver_setup;
  2679. }
  2680. const char *rtw_tdls_action_txt(enum TDLS_ACTION_FIELD action)
  2681. {
  2682. switch (action) {
  2683. case TDLS_SETUP_REQUEST:
  2684. return "TDLS_SETUP_REQUEST";
  2685. case TDLS_SETUP_RESPONSE:
  2686. return "TDLS_SETUP_RESPONSE";
  2687. case TDLS_SETUP_CONFIRM:
  2688. return "TDLS_SETUP_CONFIRM";
  2689. case TDLS_TEARDOWN:
  2690. return "TDLS_TEARDOWN";
  2691. case TDLS_PEER_TRAFFIC_INDICATION:
  2692. return "TDLS_PEER_TRAFFIC_INDICATION";
  2693. case TDLS_CHANNEL_SWITCH_REQUEST:
  2694. return "TDLS_CHANNEL_SWITCH_REQUEST";
  2695. case TDLS_CHANNEL_SWITCH_RESPONSE:
  2696. return "TDLS_CHANNEL_SWITCH_RESPONSE";
  2697. case TDLS_PEER_PSM_REQUEST:
  2698. return "TDLS_PEER_PSM_REQUEST";
  2699. case TDLS_PEER_PSM_RESPONSE:
  2700. return "TDLS_PEER_PSM_RESPONSE";
  2701. case TDLS_PEER_TRAFFIC_RESPONSE:
  2702. return "TDLS_PEER_TRAFFIC_RESPONSE";
  2703. case TDLS_DISCOVERY_REQUEST:
  2704. return "TDLS_DISCOVERY_REQUEST";
  2705. case TDLS_DISCOVERY_RESPONSE:
  2706. return "TDLS_DISCOVERY_RESPONSE";
  2707. default:
  2708. return "UNKNOWN";
  2709. }
  2710. }
  2711. #endif /* CONFIG_TDLS */