smd.c 72 KB

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  1. /*
  2. * Copyright (c) 2013 Eugene Krasnikov <k.eugene.e@gmail.com>
  3. *
  4. * Permission to use, copy, modify, and/or distribute this software for any
  5. * purpose with or without fee is hereby granted, provided that the above
  6. * copyright notice and this permission notice appear in all copies.
  7. *
  8. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  9. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  10. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
  11. * SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  12. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
  13. * OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
  14. * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  15. */
  16. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  17. #include <linux/etherdevice.h>
  18. #include <linux/firmware.h>
  19. #include <linux/bitops.h>
  20. #include <linux/rpmsg.h>
  21. #include "smd.h"
  22. struct wcn36xx_cfg_val {
  23. u32 cfg_id;
  24. u32 value;
  25. };
  26. #define WCN36XX_CFG_VAL(id, val) \
  27. { \
  28. .cfg_id = WCN36XX_HAL_CFG_ ## id, \
  29. .value = val \
  30. }
  31. static struct wcn36xx_cfg_val wcn36xx_cfg_vals[] = {
  32. WCN36XX_CFG_VAL(CURRENT_TX_ANTENNA, 1),
  33. WCN36XX_CFG_VAL(CURRENT_RX_ANTENNA, 1),
  34. WCN36XX_CFG_VAL(LOW_GAIN_OVERRIDE, 0),
  35. WCN36XX_CFG_VAL(POWER_STATE_PER_CHAIN, 785),
  36. WCN36XX_CFG_VAL(CAL_PERIOD, 5),
  37. WCN36XX_CFG_VAL(CAL_CONTROL, 1),
  38. WCN36XX_CFG_VAL(PROXIMITY, 0),
  39. WCN36XX_CFG_VAL(NETWORK_DENSITY, 3),
  40. WCN36XX_CFG_VAL(MAX_MEDIUM_TIME, 6000),
  41. WCN36XX_CFG_VAL(MAX_MPDUS_IN_AMPDU, 64),
  42. WCN36XX_CFG_VAL(RTS_THRESHOLD, 2347),
  43. WCN36XX_CFG_VAL(SHORT_RETRY_LIMIT, 6),
  44. WCN36XX_CFG_VAL(LONG_RETRY_LIMIT, 6),
  45. WCN36XX_CFG_VAL(FRAGMENTATION_THRESHOLD, 8000),
  46. WCN36XX_CFG_VAL(DYNAMIC_THRESHOLD_ZERO, 5),
  47. WCN36XX_CFG_VAL(DYNAMIC_THRESHOLD_ONE, 10),
  48. WCN36XX_CFG_VAL(DYNAMIC_THRESHOLD_TWO, 15),
  49. WCN36XX_CFG_VAL(FIXED_RATE, 0),
  50. WCN36XX_CFG_VAL(RETRYRATE_POLICY, 4),
  51. WCN36XX_CFG_VAL(RETRYRATE_SECONDARY, 0),
  52. WCN36XX_CFG_VAL(RETRYRATE_TERTIARY, 0),
  53. WCN36XX_CFG_VAL(FORCE_POLICY_PROTECTION, 5),
  54. WCN36XX_CFG_VAL(FIXED_RATE_MULTICAST_24GHZ, 1),
  55. WCN36XX_CFG_VAL(FIXED_RATE_MULTICAST_5GHZ, 5),
  56. WCN36XX_CFG_VAL(DEFAULT_RATE_INDEX_5GHZ, 5),
  57. WCN36XX_CFG_VAL(MAX_BA_SESSIONS, 40),
  58. WCN36XX_CFG_VAL(PS_DATA_INACTIVITY_TIMEOUT, 200),
  59. WCN36XX_CFG_VAL(PS_ENABLE_BCN_FILTER, 1),
  60. WCN36XX_CFG_VAL(PS_ENABLE_RSSI_MONITOR, 1),
  61. WCN36XX_CFG_VAL(NUM_BEACON_PER_RSSI_AVERAGE, 20),
  62. WCN36XX_CFG_VAL(STATS_PERIOD, 10),
  63. WCN36XX_CFG_VAL(CFP_MAX_DURATION, 30000),
  64. WCN36XX_CFG_VAL(FRAME_TRANS_ENABLED, 0),
  65. WCN36XX_CFG_VAL(BA_THRESHOLD_HIGH, 128),
  66. WCN36XX_CFG_VAL(MAX_BA_BUFFERS, 2560),
  67. WCN36XX_CFG_VAL(DYNAMIC_PS_POLL_VALUE, 0),
  68. WCN36XX_CFG_VAL(TX_PWR_CTRL_ENABLE, 1),
  69. WCN36XX_CFG_VAL(ENABLE_CLOSE_LOOP, 1),
  70. WCN36XX_CFG_VAL(ENABLE_LPWR_IMG_TRANSITION, 0),
  71. WCN36XX_CFG_VAL(BTC_STATIC_LEN_LE_BT, 120000),
  72. WCN36XX_CFG_VAL(BTC_STATIC_LEN_LE_WLAN, 30000),
  73. WCN36XX_CFG_VAL(MAX_ASSOC_LIMIT, 10),
  74. WCN36XX_CFG_VAL(ENABLE_MCC_ADAPTIVE_SCHEDULER, 0),
  75. };
  76. static int put_cfg_tlv_u32(struct wcn36xx *wcn, size_t *len, u32 id, u32 value)
  77. {
  78. struct wcn36xx_hal_cfg *entry;
  79. u32 *val;
  80. if (*len + sizeof(*entry) + sizeof(u32) >= WCN36XX_HAL_BUF_SIZE) {
  81. wcn36xx_err("Not enough room for TLV entry\n");
  82. return -ENOMEM;
  83. }
  84. entry = (struct wcn36xx_hal_cfg *) (wcn->hal_buf + *len);
  85. entry->id = id;
  86. entry->len = sizeof(u32);
  87. entry->pad_bytes = 0;
  88. entry->reserve = 0;
  89. val = (u32 *) (entry + 1);
  90. *val = value;
  91. *len += sizeof(*entry) + sizeof(u32);
  92. return 0;
  93. }
  94. static void wcn36xx_smd_set_bss_nw_type(struct wcn36xx *wcn,
  95. struct ieee80211_sta *sta,
  96. struct wcn36xx_hal_config_bss_params *bss_params)
  97. {
  98. if (NL80211_BAND_5GHZ == WCN36XX_BAND(wcn))
  99. bss_params->nw_type = WCN36XX_HAL_11A_NW_TYPE;
  100. else if (sta && sta->ht_cap.ht_supported)
  101. bss_params->nw_type = WCN36XX_HAL_11N_NW_TYPE;
  102. else if (sta && (sta->supp_rates[NL80211_BAND_2GHZ] & 0x7f))
  103. bss_params->nw_type = WCN36XX_HAL_11G_NW_TYPE;
  104. else
  105. bss_params->nw_type = WCN36XX_HAL_11B_NW_TYPE;
  106. }
  107. static inline u8 is_cap_supported(unsigned long caps, unsigned long flag)
  108. {
  109. return caps & flag ? 1 : 0;
  110. }
  111. static void wcn36xx_smd_set_bss_ht_params(struct ieee80211_vif *vif,
  112. struct ieee80211_sta *sta,
  113. struct wcn36xx_hal_config_bss_params *bss_params)
  114. {
  115. if (sta && sta->ht_cap.ht_supported) {
  116. unsigned long caps = sta->ht_cap.cap;
  117. bss_params->ht = sta->ht_cap.ht_supported;
  118. bss_params->tx_channel_width_set = is_cap_supported(caps,
  119. IEEE80211_HT_CAP_SUP_WIDTH_20_40);
  120. bss_params->lsig_tx_op_protection_full_support =
  121. is_cap_supported(caps,
  122. IEEE80211_HT_CAP_LSIG_TXOP_PROT);
  123. bss_params->ht_oper_mode = vif->bss_conf.ht_operation_mode;
  124. bss_params->lln_non_gf_coexist =
  125. !!(vif->bss_conf.ht_operation_mode &
  126. IEEE80211_HT_OP_MODE_NON_GF_STA_PRSNT);
  127. /* IEEE80211_HT_STBC_PARAM_DUAL_CTS_PROT */
  128. bss_params->dual_cts_protection = 0;
  129. /* IEEE80211_HT_OP_MODE_PROTECTION_20MHZ */
  130. bss_params->ht20_coexist = 0;
  131. }
  132. }
  133. static void wcn36xx_smd_set_sta_ht_params(struct ieee80211_sta *sta,
  134. struct wcn36xx_hal_config_sta_params *sta_params)
  135. {
  136. if (sta->ht_cap.ht_supported) {
  137. unsigned long caps = sta->ht_cap.cap;
  138. sta_params->ht_capable = sta->ht_cap.ht_supported;
  139. sta_params->tx_channel_width_set = is_cap_supported(caps,
  140. IEEE80211_HT_CAP_SUP_WIDTH_20_40);
  141. sta_params->lsig_txop_protection = is_cap_supported(caps,
  142. IEEE80211_HT_CAP_LSIG_TXOP_PROT);
  143. sta_params->max_ampdu_size = sta->ht_cap.ampdu_factor;
  144. sta_params->max_ampdu_density = sta->ht_cap.ampdu_density;
  145. sta_params->max_amsdu_size = is_cap_supported(caps,
  146. IEEE80211_HT_CAP_MAX_AMSDU);
  147. sta_params->sgi_20Mhz = is_cap_supported(caps,
  148. IEEE80211_HT_CAP_SGI_20);
  149. sta_params->sgi_40mhz = is_cap_supported(caps,
  150. IEEE80211_HT_CAP_SGI_40);
  151. sta_params->green_field_capable = is_cap_supported(caps,
  152. IEEE80211_HT_CAP_GRN_FLD);
  153. sta_params->delayed_ba_support = is_cap_supported(caps,
  154. IEEE80211_HT_CAP_DELAY_BA);
  155. sta_params->dsss_cck_mode_40mhz = is_cap_supported(caps,
  156. IEEE80211_HT_CAP_DSSSCCK40);
  157. }
  158. }
  159. static void wcn36xx_smd_set_sta_default_ht_params(
  160. struct wcn36xx_hal_config_sta_params *sta_params)
  161. {
  162. sta_params->ht_capable = 1;
  163. sta_params->tx_channel_width_set = 1;
  164. sta_params->lsig_txop_protection = 1;
  165. sta_params->max_ampdu_size = 3;
  166. sta_params->max_ampdu_density = 5;
  167. sta_params->max_amsdu_size = 0;
  168. sta_params->sgi_20Mhz = 1;
  169. sta_params->sgi_40mhz = 1;
  170. sta_params->green_field_capable = 1;
  171. sta_params->delayed_ba_support = 0;
  172. sta_params->dsss_cck_mode_40mhz = 1;
  173. }
  174. static void wcn36xx_smd_set_sta_params(struct wcn36xx *wcn,
  175. struct ieee80211_vif *vif,
  176. struct ieee80211_sta *sta,
  177. struct wcn36xx_hal_config_sta_params *sta_params)
  178. {
  179. struct wcn36xx_vif *vif_priv = wcn36xx_vif_to_priv(vif);
  180. struct wcn36xx_sta *sta_priv = NULL;
  181. if (vif->type == NL80211_IFTYPE_ADHOC ||
  182. vif->type == NL80211_IFTYPE_AP ||
  183. vif->type == NL80211_IFTYPE_MESH_POINT) {
  184. sta_params->type = 1;
  185. sta_params->sta_index = WCN36XX_HAL_STA_INVALID_IDX;
  186. } else {
  187. sta_params->type = 0;
  188. sta_params->sta_index = vif_priv->self_sta_index;
  189. }
  190. sta_params->listen_interval = WCN36XX_LISTEN_INTERVAL(wcn);
  191. /*
  192. * In STA mode ieee80211_sta contains bssid and ieee80211_vif
  193. * contains our mac address. In AP mode we are bssid so vif
  194. * contains bssid and ieee80211_sta contains mac.
  195. */
  196. if (NL80211_IFTYPE_STATION == vif->type)
  197. memcpy(&sta_params->mac, vif->addr, ETH_ALEN);
  198. else
  199. memcpy(&sta_params->bssid, vif->addr, ETH_ALEN);
  200. sta_params->encrypt_type = vif_priv->encrypt_type;
  201. sta_params->short_preamble_supported = true;
  202. sta_params->rifs_mode = 0;
  203. sta_params->rmf = 0;
  204. sta_params->action = 0;
  205. sta_params->uapsd = 0;
  206. sta_params->mimo_ps = WCN36XX_HAL_HT_MIMO_PS_STATIC;
  207. sta_params->max_ampdu_duration = 0;
  208. sta_params->bssid_index = vif_priv->bss_index;
  209. sta_params->p2p = 0;
  210. if (sta) {
  211. sta_priv = wcn36xx_sta_to_priv(sta);
  212. if (NL80211_IFTYPE_STATION == vif->type)
  213. memcpy(&sta_params->bssid, sta->addr, ETH_ALEN);
  214. else
  215. memcpy(&sta_params->mac, sta->addr, ETH_ALEN);
  216. sta_params->wmm_enabled = sta->wme;
  217. sta_params->max_sp_len = sta->max_sp;
  218. sta_params->aid = sta_priv->aid;
  219. wcn36xx_smd_set_sta_ht_params(sta, sta_params);
  220. memcpy(&sta_params->supported_rates, &sta_priv->supported_rates,
  221. sizeof(sta_priv->supported_rates));
  222. } else {
  223. wcn36xx_set_default_rates(&sta_params->supported_rates);
  224. wcn36xx_smd_set_sta_default_ht_params(sta_params);
  225. }
  226. }
  227. static int wcn36xx_smd_send_and_wait(struct wcn36xx *wcn, size_t len)
  228. {
  229. int ret;
  230. unsigned long start;
  231. struct wcn36xx_hal_msg_header *hdr =
  232. (struct wcn36xx_hal_msg_header *)wcn->hal_buf;
  233. u16 req_type = hdr->msg_type;
  234. wcn36xx_dbg_dump(WCN36XX_DBG_SMD_DUMP, "HAL >>> ", wcn->hal_buf, len);
  235. init_completion(&wcn->hal_rsp_compl);
  236. start = jiffies;
  237. ret = rpmsg_send(wcn->smd_channel, wcn->hal_buf, len);
  238. if (ret) {
  239. wcn36xx_err("HAL TX failed for req %d\n", req_type);
  240. goto out;
  241. }
  242. if (wait_for_completion_timeout(&wcn->hal_rsp_compl,
  243. msecs_to_jiffies(HAL_MSG_TIMEOUT)) <= 0) {
  244. wcn36xx_err("Timeout! No SMD response to req %d in %dms\n",
  245. req_type, HAL_MSG_TIMEOUT);
  246. ret = -ETIME;
  247. goto out;
  248. }
  249. wcn36xx_dbg(WCN36XX_DBG_SMD,
  250. "SMD command (req %d, rsp %d) completed in %dms\n",
  251. req_type, hdr->msg_type,
  252. jiffies_to_msecs(jiffies - start));
  253. out:
  254. return ret;
  255. }
  256. static void init_hal_msg(struct wcn36xx_hal_msg_header *hdr,
  257. enum wcn36xx_hal_host_msg_type msg_type,
  258. size_t msg_size)
  259. {
  260. memset(hdr, 0, msg_size + sizeof(*hdr));
  261. hdr->msg_type = msg_type;
  262. hdr->msg_version = WCN36XX_HAL_MSG_VERSION0;
  263. hdr->len = msg_size + sizeof(*hdr);
  264. }
  265. #define INIT_HAL_MSG(msg_body, type) \
  266. do { \
  267. memset(&msg_body, 0, sizeof(msg_body)); \
  268. msg_body.header.msg_type = type; \
  269. msg_body.header.msg_version = WCN36XX_HAL_MSG_VERSION0; \
  270. msg_body.header.len = sizeof(msg_body); \
  271. } while (0) \
  272. #define INIT_HAL_PTT_MSG(p_msg_body, ppt_msg_len) \
  273. do { \
  274. memset(p_msg_body, 0, sizeof(*p_msg_body) + ppt_msg_len); \
  275. p_msg_body->header.msg_type = WCN36XX_HAL_PROCESS_PTT_REQ; \
  276. p_msg_body->header.msg_version = WCN36XX_HAL_MSG_VERSION0; \
  277. p_msg_body->header.len = sizeof(*p_msg_body) + ppt_msg_len; \
  278. } while (0)
  279. #define PREPARE_HAL_BUF(send_buf, msg_body) \
  280. do { \
  281. memset(send_buf, 0, msg_body.header.len); \
  282. memcpy(send_buf, &msg_body, sizeof(msg_body)); \
  283. } while (0) \
  284. #define PREPARE_HAL_PTT_MSG_BUF(send_buf, p_msg_body) \
  285. do { \
  286. memset(send_buf, 0, p_msg_body->header.len); \
  287. memcpy(send_buf, p_msg_body, p_msg_body->header.len); \
  288. } while (0)
  289. static int wcn36xx_smd_rsp_status_check(void *buf, size_t len)
  290. {
  291. struct wcn36xx_fw_msg_status_rsp *rsp;
  292. if (len < sizeof(struct wcn36xx_hal_msg_header) +
  293. sizeof(struct wcn36xx_fw_msg_status_rsp))
  294. return -EIO;
  295. rsp = (struct wcn36xx_fw_msg_status_rsp *)
  296. (buf + sizeof(struct wcn36xx_hal_msg_header));
  297. if (WCN36XX_FW_MSG_RESULT_SUCCESS != rsp->status)
  298. return rsp->status;
  299. return 0;
  300. }
  301. int wcn36xx_smd_load_nv(struct wcn36xx *wcn)
  302. {
  303. struct nv_data *nv_d;
  304. struct wcn36xx_hal_nv_img_download_req_msg msg_body;
  305. int fw_bytes_left;
  306. int ret;
  307. u16 fm_offset = 0;
  308. if (!wcn->nv) {
  309. ret = request_firmware(&wcn->nv, WLAN_NV_FILE, wcn->dev);
  310. if (ret) {
  311. wcn36xx_err("Failed to load nv file %s: %d\n",
  312. WLAN_NV_FILE, ret);
  313. goto out;
  314. }
  315. }
  316. nv_d = (struct nv_data *)wcn->nv->data;
  317. INIT_HAL_MSG(msg_body, WCN36XX_HAL_DOWNLOAD_NV_REQ);
  318. msg_body.header.len += WCN36XX_NV_FRAGMENT_SIZE;
  319. msg_body.frag_number = 0;
  320. /* hal_buf must be protected with mutex */
  321. mutex_lock(&wcn->hal_mutex);
  322. do {
  323. fw_bytes_left = wcn->nv->size - fm_offset - 4;
  324. if (fw_bytes_left > WCN36XX_NV_FRAGMENT_SIZE) {
  325. msg_body.last_fragment = 0;
  326. msg_body.nv_img_buffer_size = WCN36XX_NV_FRAGMENT_SIZE;
  327. } else {
  328. msg_body.last_fragment = 1;
  329. msg_body.nv_img_buffer_size = fw_bytes_left;
  330. /* Do not forget update general message len */
  331. msg_body.header.len = sizeof(msg_body) + fw_bytes_left;
  332. }
  333. /* Add load NV request message header */
  334. memcpy(wcn->hal_buf, &msg_body, sizeof(msg_body));
  335. /* Add NV body itself */
  336. memcpy(wcn->hal_buf + sizeof(msg_body),
  337. &nv_d->table + fm_offset,
  338. msg_body.nv_img_buffer_size);
  339. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  340. if (ret)
  341. goto out_unlock;
  342. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf,
  343. wcn->hal_rsp_len);
  344. if (ret) {
  345. wcn36xx_err("hal_load_nv response failed err=%d\n",
  346. ret);
  347. goto out_unlock;
  348. }
  349. msg_body.frag_number++;
  350. fm_offset += WCN36XX_NV_FRAGMENT_SIZE;
  351. } while (msg_body.last_fragment != 1);
  352. out_unlock:
  353. mutex_unlock(&wcn->hal_mutex);
  354. out: return ret;
  355. }
  356. static int wcn36xx_smd_start_rsp(struct wcn36xx *wcn, void *buf, size_t len)
  357. {
  358. struct wcn36xx_hal_mac_start_rsp_msg *rsp;
  359. if (len < sizeof(*rsp))
  360. return -EIO;
  361. rsp = (struct wcn36xx_hal_mac_start_rsp_msg *)buf;
  362. if (WCN36XX_FW_MSG_RESULT_SUCCESS != rsp->start_rsp_params.status)
  363. return -EIO;
  364. memcpy(wcn->crm_version, rsp->start_rsp_params.crm_version,
  365. WCN36XX_HAL_VERSION_LENGTH);
  366. memcpy(wcn->wlan_version, rsp->start_rsp_params.wlan_version,
  367. WCN36XX_HAL_VERSION_LENGTH);
  368. /* null terminate the strings, just in case */
  369. wcn->crm_version[WCN36XX_HAL_VERSION_LENGTH] = '\0';
  370. wcn->wlan_version[WCN36XX_HAL_VERSION_LENGTH] = '\0';
  371. wcn->fw_revision = rsp->start_rsp_params.version.revision;
  372. wcn->fw_version = rsp->start_rsp_params.version.version;
  373. wcn->fw_minor = rsp->start_rsp_params.version.minor;
  374. wcn->fw_major = rsp->start_rsp_params.version.major;
  375. if (wcn->first_boot) {
  376. wcn->first_boot = false;
  377. wcn36xx_info("firmware WLAN version '%s' and CRM version '%s'\n",
  378. wcn->wlan_version, wcn->crm_version);
  379. wcn36xx_info("firmware API %u.%u.%u.%u, %u stations, %u bssids\n",
  380. wcn->fw_major, wcn->fw_minor,
  381. wcn->fw_version, wcn->fw_revision,
  382. rsp->start_rsp_params.stations,
  383. rsp->start_rsp_params.bssids);
  384. }
  385. return 0;
  386. }
  387. int wcn36xx_smd_start(struct wcn36xx *wcn)
  388. {
  389. struct wcn36xx_hal_mac_start_req_msg msg_body, *body;
  390. int ret;
  391. int i;
  392. size_t len;
  393. mutex_lock(&wcn->hal_mutex);
  394. INIT_HAL_MSG(msg_body, WCN36XX_HAL_START_REQ);
  395. msg_body.params.type = DRIVER_TYPE_PRODUCTION;
  396. msg_body.params.len = 0;
  397. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  398. body = (struct wcn36xx_hal_mac_start_req_msg *)wcn->hal_buf;
  399. len = body->header.len;
  400. for (i = 0; i < ARRAY_SIZE(wcn36xx_cfg_vals); i++) {
  401. ret = put_cfg_tlv_u32(wcn, &len, wcn36xx_cfg_vals[i].cfg_id,
  402. wcn36xx_cfg_vals[i].value);
  403. if (ret)
  404. goto out;
  405. }
  406. body->header.len = len;
  407. body->params.len = len - sizeof(*body);
  408. wcn36xx_dbg(WCN36XX_DBG_HAL, "hal start type %d\n",
  409. msg_body.params.type);
  410. ret = wcn36xx_smd_send_and_wait(wcn, body->header.len);
  411. if (ret) {
  412. wcn36xx_err("Sending hal_start failed\n");
  413. goto out;
  414. }
  415. ret = wcn36xx_smd_start_rsp(wcn, wcn->hal_buf, wcn->hal_rsp_len);
  416. if (ret) {
  417. wcn36xx_err("hal_start response failed err=%d\n", ret);
  418. goto out;
  419. }
  420. out:
  421. mutex_unlock(&wcn->hal_mutex);
  422. return ret;
  423. }
  424. int wcn36xx_smd_stop(struct wcn36xx *wcn)
  425. {
  426. struct wcn36xx_hal_mac_stop_req_msg msg_body;
  427. int ret;
  428. mutex_lock(&wcn->hal_mutex);
  429. INIT_HAL_MSG(msg_body, WCN36XX_HAL_STOP_REQ);
  430. msg_body.stop_req_params.reason = HAL_STOP_TYPE_RF_KILL;
  431. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  432. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  433. if (ret) {
  434. wcn36xx_err("Sending hal_stop failed\n");
  435. goto out;
  436. }
  437. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  438. if (ret) {
  439. wcn36xx_err("hal_stop response failed err=%d\n", ret);
  440. goto out;
  441. }
  442. out:
  443. mutex_unlock(&wcn->hal_mutex);
  444. return ret;
  445. }
  446. int wcn36xx_smd_init_scan(struct wcn36xx *wcn, enum wcn36xx_hal_sys_mode mode)
  447. {
  448. struct wcn36xx_hal_init_scan_req_msg msg_body;
  449. int ret;
  450. mutex_lock(&wcn->hal_mutex);
  451. INIT_HAL_MSG(msg_body, WCN36XX_HAL_INIT_SCAN_REQ);
  452. msg_body.mode = mode;
  453. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  454. wcn36xx_dbg(WCN36XX_DBG_HAL, "hal init scan mode %d\n", msg_body.mode);
  455. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  456. if (ret) {
  457. wcn36xx_err("Sending hal_init_scan failed\n");
  458. goto out;
  459. }
  460. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  461. if (ret) {
  462. wcn36xx_err("hal_init_scan response failed err=%d\n", ret);
  463. goto out;
  464. }
  465. out:
  466. mutex_unlock(&wcn->hal_mutex);
  467. return ret;
  468. }
  469. int wcn36xx_smd_start_scan(struct wcn36xx *wcn, u8 scan_channel)
  470. {
  471. struct wcn36xx_hal_start_scan_req_msg msg_body;
  472. int ret;
  473. mutex_lock(&wcn->hal_mutex);
  474. INIT_HAL_MSG(msg_body, WCN36XX_HAL_START_SCAN_REQ);
  475. msg_body.scan_channel = scan_channel;
  476. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  477. wcn36xx_dbg(WCN36XX_DBG_HAL, "hal start scan channel %d\n",
  478. msg_body.scan_channel);
  479. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  480. if (ret) {
  481. wcn36xx_err("Sending hal_start_scan failed\n");
  482. goto out;
  483. }
  484. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  485. if (ret) {
  486. wcn36xx_err("hal_start_scan response failed err=%d\n", ret);
  487. goto out;
  488. }
  489. out:
  490. mutex_unlock(&wcn->hal_mutex);
  491. return ret;
  492. }
  493. int wcn36xx_smd_end_scan(struct wcn36xx *wcn, u8 scan_channel)
  494. {
  495. struct wcn36xx_hal_end_scan_req_msg msg_body;
  496. int ret;
  497. mutex_lock(&wcn->hal_mutex);
  498. INIT_HAL_MSG(msg_body, WCN36XX_HAL_END_SCAN_REQ);
  499. msg_body.scan_channel = scan_channel;
  500. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  501. wcn36xx_dbg(WCN36XX_DBG_HAL, "hal end scan channel %d\n",
  502. msg_body.scan_channel);
  503. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  504. if (ret) {
  505. wcn36xx_err("Sending hal_end_scan failed\n");
  506. goto out;
  507. }
  508. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  509. if (ret) {
  510. wcn36xx_err("hal_end_scan response failed err=%d\n", ret);
  511. goto out;
  512. }
  513. out:
  514. mutex_unlock(&wcn->hal_mutex);
  515. return ret;
  516. }
  517. int wcn36xx_smd_finish_scan(struct wcn36xx *wcn,
  518. enum wcn36xx_hal_sys_mode mode)
  519. {
  520. struct wcn36xx_hal_finish_scan_req_msg msg_body;
  521. int ret;
  522. mutex_lock(&wcn->hal_mutex);
  523. INIT_HAL_MSG(msg_body, WCN36XX_HAL_FINISH_SCAN_REQ);
  524. msg_body.mode = mode;
  525. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  526. wcn36xx_dbg(WCN36XX_DBG_HAL, "hal finish scan mode %d\n",
  527. msg_body.mode);
  528. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  529. if (ret) {
  530. wcn36xx_err("Sending hal_finish_scan failed\n");
  531. goto out;
  532. }
  533. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  534. if (ret) {
  535. wcn36xx_err("hal_finish_scan response failed err=%d\n", ret);
  536. goto out;
  537. }
  538. out:
  539. mutex_unlock(&wcn->hal_mutex);
  540. return ret;
  541. }
  542. int wcn36xx_smd_start_hw_scan(struct wcn36xx *wcn, struct ieee80211_vif *vif,
  543. struct cfg80211_scan_request *req)
  544. {
  545. struct wcn36xx_vif *vif_priv = wcn36xx_vif_to_priv(vif);
  546. struct wcn36xx_hal_start_scan_offload_req_msg *msg_body;
  547. int ret, i;
  548. if (req->ie_len > WCN36XX_MAX_SCAN_IE_LEN)
  549. return -EINVAL;
  550. mutex_lock(&wcn->hal_mutex);
  551. msg_body = kzalloc(sizeof(*msg_body), GFP_KERNEL);
  552. if (!msg_body) {
  553. ret = -ENOMEM;
  554. goto out;
  555. }
  556. INIT_HAL_MSG((*msg_body), WCN36XX_HAL_START_SCAN_OFFLOAD_REQ);
  557. msg_body->scan_type = WCN36XX_HAL_SCAN_TYPE_ACTIVE;
  558. msg_body->min_ch_time = 30;
  559. msg_body->max_ch_time = 100;
  560. msg_body->scan_hidden = 1;
  561. memcpy(msg_body->mac, vif->addr, ETH_ALEN);
  562. msg_body->bss_type = vif_priv->bss_type;
  563. msg_body->p2p_search = vif->p2p;
  564. msg_body->num_ssid = min_t(u8, req->n_ssids, ARRAY_SIZE(msg_body->ssids));
  565. for (i = 0; i < msg_body->num_ssid; i++) {
  566. msg_body->ssids[i].length = min_t(u8, req->ssids[i].ssid_len,
  567. sizeof(msg_body->ssids[i].ssid));
  568. memcpy(msg_body->ssids[i].ssid, req->ssids[i].ssid,
  569. msg_body->ssids[i].length);
  570. }
  571. msg_body->num_channel = min_t(u8, req->n_channels,
  572. sizeof(msg_body->channels));
  573. for (i = 0; i < msg_body->num_channel; i++)
  574. msg_body->channels[i] = req->channels[i]->hw_value;
  575. msg_body->header.len -= WCN36XX_MAX_SCAN_IE_LEN;
  576. if (req->ie_len > 0) {
  577. msg_body->ie_len = req->ie_len;
  578. msg_body->header.len += req->ie_len;
  579. memcpy(msg_body->ie, req->ie, req->ie_len);
  580. }
  581. PREPARE_HAL_BUF(wcn->hal_buf, (*msg_body));
  582. wcn36xx_dbg(WCN36XX_DBG_HAL,
  583. "hal start hw-scan (channels: %u; ssids: %u; p2p: %s)\n",
  584. msg_body->num_channel, msg_body->num_ssid,
  585. msg_body->p2p_search ? "yes" : "no");
  586. ret = wcn36xx_smd_send_and_wait(wcn, msg_body->header.len);
  587. if (ret) {
  588. wcn36xx_err("Sending hal_start_scan_offload failed\n");
  589. goto out;
  590. }
  591. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  592. if (ret) {
  593. wcn36xx_err("hal_start_scan_offload response failed err=%d\n",
  594. ret);
  595. goto out;
  596. }
  597. out:
  598. kfree(msg_body);
  599. mutex_unlock(&wcn->hal_mutex);
  600. return ret;
  601. }
  602. int wcn36xx_smd_stop_hw_scan(struct wcn36xx *wcn)
  603. {
  604. struct wcn36xx_hal_stop_scan_offload_req_msg msg_body;
  605. int ret;
  606. mutex_lock(&wcn->hal_mutex);
  607. INIT_HAL_MSG(msg_body, WCN36XX_HAL_STOP_SCAN_OFFLOAD_REQ);
  608. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  609. wcn36xx_dbg(WCN36XX_DBG_HAL, "hal stop hw-scan\n");
  610. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  611. if (ret) {
  612. wcn36xx_err("Sending hal_stop_scan_offload failed\n");
  613. goto out;
  614. }
  615. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  616. if (ret) {
  617. wcn36xx_err("hal_stop_scan_offload response failed err=%d\n",
  618. ret);
  619. goto out;
  620. }
  621. out:
  622. mutex_unlock(&wcn->hal_mutex);
  623. return ret;
  624. }
  625. static int wcn36xx_smd_switch_channel_rsp(void *buf, size_t len)
  626. {
  627. struct wcn36xx_hal_switch_channel_rsp_msg *rsp;
  628. int ret;
  629. ret = wcn36xx_smd_rsp_status_check(buf, len);
  630. if (ret)
  631. return ret;
  632. rsp = (struct wcn36xx_hal_switch_channel_rsp_msg *)buf;
  633. wcn36xx_dbg(WCN36XX_DBG_HAL, "channel switched to: %d, status: %d\n",
  634. rsp->channel_number, rsp->status);
  635. return ret;
  636. }
  637. int wcn36xx_smd_switch_channel(struct wcn36xx *wcn,
  638. struct ieee80211_vif *vif, int ch)
  639. {
  640. struct wcn36xx_hal_switch_channel_req_msg msg_body;
  641. int ret;
  642. mutex_lock(&wcn->hal_mutex);
  643. INIT_HAL_MSG(msg_body, WCN36XX_HAL_CH_SWITCH_REQ);
  644. msg_body.channel_number = (u8)ch;
  645. msg_body.tx_mgmt_power = 0xbf;
  646. msg_body.max_tx_power = 0xbf;
  647. memcpy(msg_body.self_sta_mac_addr, vif->addr, ETH_ALEN);
  648. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  649. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  650. if (ret) {
  651. wcn36xx_err("Sending hal_switch_channel failed\n");
  652. goto out;
  653. }
  654. ret = wcn36xx_smd_switch_channel_rsp(wcn->hal_buf, wcn->hal_rsp_len);
  655. if (ret) {
  656. wcn36xx_err("hal_switch_channel response failed err=%d\n", ret);
  657. goto out;
  658. }
  659. out:
  660. mutex_unlock(&wcn->hal_mutex);
  661. return ret;
  662. }
  663. static int wcn36xx_smd_process_ptt_msg_rsp(void *buf, size_t len,
  664. void **p_ptt_rsp_msg)
  665. {
  666. struct wcn36xx_hal_process_ptt_msg_rsp_msg *rsp;
  667. int ret;
  668. ret = wcn36xx_smd_rsp_status_check(buf, len);
  669. if (ret)
  670. return ret;
  671. rsp = (struct wcn36xx_hal_process_ptt_msg_rsp_msg *)buf;
  672. wcn36xx_dbg(WCN36XX_DBG_HAL, "process ptt msg responded with length %d\n",
  673. rsp->header.len);
  674. wcn36xx_dbg_dump(WCN36XX_DBG_HAL_DUMP, "HAL_PTT_MSG_RSP:", rsp->ptt_msg,
  675. rsp->header.len - sizeof(rsp->ptt_msg_resp_status));
  676. if (rsp->header.len > 0) {
  677. *p_ptt_rsp_msg = kmalloc(rsp->header.len, GFP_ATOMIC);
  678. if (!*p_ptt_rsp_msg)
  679. return -ENOMEM;
  680. memcpy(*p_ptt_rsp_msg, rsp->ptt_msg, rsp->header.len);
  681. }
  682. return ret;
  683. }
  684. int wcn36xx_smd_process_ptt_msg(struct wcn36xx *wcn,
  685. struct ieee80211_vif *vif, void *ptt_msg, size_t len,
  686. void **ptt_rsp_msg)
  687. {
  688. struct wcn36xx_hal_process_ptt_msg_req_msg *p_msg_body;
  689. int ret;
  690. mutex_lock(&wcn->hal_mutex);
  691. p_msg_body = kmalloc(
  692. sizeof(struct wcn36xx_hal_process_ptt_msg_req_msg) + len,
  693. GFP_ATOMIC);
  694. if (!p_msg_body) {
  695. ret = -ENOMEM;
  696. goto out_nomem;
  697. }
  698. INIT_HAL_PTT_MSG(p_msg_body, len);
  699. memcpy(&p_msg_body->ptt_msg, ptt_msg, len);
  700. PREPARE_HAL_PTT_MSG_BUF(wcn->hal_buf, p_msg_body);
  701. ret = wcn36xx_smd_send_and_wait(wcn, p_msg_body->header.len);
  702. if (ret) {
  703. wcn36xx_err("Sending hal_process_ptt_msg failed\n");
  704. goto out;
  705. }
  706. ret = wcn36xx_smd_process_ptt_msg_rsp(wcn->hal_buf, wcn->hal_rsp_len,
  707. ptt_rsp_msg);
  708. if (ret) {
  709. wcn36xx_err("process_ptt_msg response failed err=%d\n", ret);
  710. goto out;
  711. }
  712. out:
  713. kfree(p_msg_body);
  714. out_nomem:
  715. mutex_unlock(&wcn->hal_mutex);
  716. return ret;
  717. }
  718. static int wcn36xx_smd_update_scan_params_rsp(void *buf, size_t len)
  719. {
  720. struct wcn36xx_hal_update_scan_params_resp *rsp;
  721. rsp = (struct wcn36xx_hal_update_scan_params_resp *)buf;
  722. /* Remove the PNO version bit */
  723. rsp->status &= (~(WCN36XX_FW_MSG_PNO_VERSION_MASK));
  724. if (WCN36XX_FW_MSG_RESULT_SUCCESS != rsp->status) {
  725. wcn36xx_warn("error response from update scan\n");
  726. return rsp->status;
  727. }
  728. return 0;
  729. }
  730. int wcn36xx_smd_update_scan_params(struct wcn36xx *wcn,
  731. u8 *channels, size_t channel_count)
  732. {
  733. struct wcn36xx_hal_update_scan_params_req_ex msg_body;
  734. int ret;
  735. mutex_lock(&wcn->hal_mutex);
  736. INIT_HAL_MSG(msg_body, WCN36XX_HAL_UPDATE_SCAN_PARAM_REQ);
  737. msg_body.dot11d_enabled = false;
  738. msg_body.dot11d_resolved = true;
  739. msg_body.channel_count = channel_count;
  740. memcpy(msg_body.channels, channels, channel_count);
  741. msg_body.active_min_ch_time = 60;
  742. msg_body.active_max_ch_time = 120;
  743. msg_body.passive_min_ch_time = 60;
  744. msg_body.passive_max_ch_time = 110;
  745. msg_body.state = PHY_SINGLE_CHANNEL_CENTERED;
  746. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  747. wcn36xx_dbg(WCN36XX_DBG_HAL,
  748. "hal update scan params channel_count %d\n",
  749. msg_body.channel_count);
  750. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  751. if (ret) {
  752. wcn36xx_err("Sending hal_update_scan_params failed\n");
  753. goto out;
  754. }
  755. ret = wcn36xx_smd_update_scan_params_rsp(wcn->hal_buf,
  756. wcn->hal_rsp_len);
  757. if (ret) {
  758. wcn36xx_err("hal_update_scan_params response failed err=%d\n",
  759. ret);
  760. goto out;
  761. }
  762. out:
  763. mutex_unlock(&wcn->hal_mutex);
  764. return ret;
  765. }
  766. static int wcn36xx_smd_add_sta_self_rsp(struct wcn36xx *wcn,
  767. struct ieee80211_vif *vif,
  768. void *buf,
  769. size_t len)
  770. {
  771. struct wcn36xx_hal_add_sta_self_rsp_msg *rsp;
  772. struct wcn36xx_vif *vif_priv = wcn36xx_vif_to_priv(vif);
  773. if (len < sizeof(*rsp))
  774. return -EINVAL;
  775. rsp = (struct wcn36xx_hal_add_sta_self_rsp_msg *)buf;
  776. if (rsp->status != WCN36XX_FW_MSG_RESULT_SUCCESS) {
  777. wcn36xx_warn("hal add sta self failure: %d\n",
  778. rsp->status);
  779. return rsp->status;
  780. }
  781. wcn36xx_dbg(WCN36XX_DBG_HAL,
  782. "hal add sta self status %d self_sta_index %d dpu_index %d\n",
  783. rsp->status, rsp->self_sta_index, rsp->dpu_index);
  784. vif_priv->self_sta_index = rsp->self_sta_index;
  785. vif_priv->self_dpu_desc_index = rsp->dpu_index;
  786. return 0;
  787. }
  788. int wcn36xx_smd_add_sta_self(struct wcn36xx *wcn, struct ieee80211_vif *vif)
  789. {
  790. struct wcn36xx_hal_add_sta_self_req msg_body;
  791. int ret;
  792. mutex_lock(&wcn->hal_mutex);
  793. INIT_HAL_MSG(msg_body, WCN36XX_HAL_ADD_STA_SELF_REQ);
  794. memcpy(&msg_body.self_addr, vif->addr, ETH_ALEN);
  795. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  796. wcn36xx_dbg(WCN36XX_DBG_HAL,
  797. "hal add sta self self_addr %pM status %d\n",
  798. msg_body.self_addr, msg_body.status);
  799. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  800. if (ret) {
  801. wcn36xx_err("Sending hal_add_sta_self failed\n");
  802. goto out;
  803. }
  804. ret = wcn36xx_smd_add_sta_self_rsp(wcn,
  805. vif,
  806. wcn->hal_buf,
  807. wcn->hal_rsp_len);
  808. if (ret) {
  809. wcn36xx_err("hal_add_sta_self response failed err=%d\n", ret);
  810. goto out;
  811. }
  812. out:
  813. mutex_unlock(&wcn->hal_mutex);
  814. return ret;
  815. }
  816. int wcn36xx_smd_delete_sta_self(struct wcn36xx *wcn, u8 *addr)
  817. {
  818. struct wcn36xx_hal_del_sta_self_req_msg msg_body;
  819. int ret;
  820. mutex_lock(&wcn->hal_mutex);
  821. INIT_HAL_MSG(msg_body, WCN36XX_HAL_DEL_STA_SELF_REQ);
  822. memcpy(&msg_body.self_addr, addr, ETH_ALEN);
  823. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  824. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  825. if (ret) {
  826. wcn36xx_err("Sending hal_delete_sta_self failed\n");
  827. goto out;
  828. }
  829. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  830. if (ret) {
  831. wcn36xx_err("hal_delete_sta_self response failed err=%d\n",
  832. ret);
  833. goto out;
  834. }
  835. out:
  836. mutex_unlock(&wcn->hal_mutex);
  837. return ret;
  838. }
  839. int wcn36xx_smd_delete_sta(struct wcn36xx *wcn, u8 sta_index)
  840. {
  841. struct wcn36xx_hal_delete_sta_req_msg msg_body;
  842. int ret;
  843. mutex_lock(&wcn->hal_mutex);
  844. INIT_HAL_MSG(msg_body, WCN36XX_HAL_DELETE_STA_REQ);
  845. msg_body.sta_index = sta_index;
  846. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  847. wcn36xx_dbg(WCN36XX_DBG_HAL,
  848. "hal delete sta sta_index %d\n",
  849. msg_body.sta_index);
  850. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  851. if (ret) {
  852. wcn36xx_err("Sending hal_delete_sta failed\n");
  853. goto out;
  854. }
  855. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  856. if (ret) {
  857. wcn36xx_err("hal_delete_sta response failed err=%d\n", ret);
  858. goto out;
  859. }
  860. out:
  861. mutex_unlock(&wcn->hal_mutex);
  862. return ret;
  863. }
  864. static int wcn36xx_smd_join_rsp(void *buf, size_t len)
  865. {
  866. struct wcn36xx_hal_join_rsp_msg *rsp;
  867. if (wcn36xx_smd_rsp_status_check(buf, len))
  868. return -EIO;
  869. rsp = (struct wcn36xx_hal_join_rsp_msg *)buf;
  870. wcn36xx_dbg(WCN36XX_DBG_HAL,
  871. "hal rsp join status %d tx_mgmt_power %d\n",
  872. rsp->status, rsp->tx_mgmt_power);
  873. return 0;
  874. }
  875. int wcn36xx_smd_join(struct wcn36xx *wcn, const u8 *bssid, u8 *vif, u8 ch)
  876. {
  877. struct wcn36xx_hal_join_req_msg msg_body;
  878. int ret;
  879. mutex_lock(&wcn->hal_mutex);
  880. INIT_HAL_MSG(msg_body, WCN36XX_HAL_JOIN_REQ);
  881. memcpy(&msg_body.bssid, bssid, ETH_ALEN);
  882. memcpy(&msg_body.self_sta_mac_addr, vif, ETH_ALEN);
  883. msg_body.channel = ch;
  884. if (conf_is_ht40_minus(&wcn->hw->conf))
  885. msg_body.secondary_channel_offset =
  886. PHY_DOUBLE_CHANNEL_HIGH_PRIMARY;
  887. else if (conf_is_ht40_plus(&wcn->hw->conf))
  888. msg_body.secondary_channel_offset =
  889. PHY_DOUBLE_CHANNEL_LOW_PRIMARY;
  890. else
  891. msg_body.secondary_channel_offset =
  892. PHY_SINGLE_CHANNEL_CENTERED;
  893. msg_body.link_state = WCN36XX_HAL_LINK_PREASSOC_STATE;
  894. msg_body.max_tx_power = 0xbf;
  895. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  896. wcn36xx_dbg(WCN36XX_DBG_HAL,
  897. "hal join req bssid %pM self_sta_mac_addr %pM channel %d link_state %d\n",
  898. msg_body.bssid, msg_body.self_sta_mac_addr,
  899. msg_body.channel, msg_body.link_state);
  900. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  901. if (ret) {
  902. wcn36xx_err("Sending hal_join failed\n");
  903. goto out;
  904. }
  905. ret = wcn36xx_smd_join_rsp(wcn->hal_buf, wcn->hal_rsp_len);
  906. if (ret) {
  907. wcn36xx_err("hal_join response failed err=%d\n", ret);
  908. goto out;
  909. }
  910. out:
  911. mutex_unlock(&wcn->hal_mutex);
  912. return ret;
  913. }
  914. int wcn36xx_smd_set_link_st(struct wcn36xx *wcn, const u8 *bssid,
  915. const u8 *sta_mac,
  916. enum wcn36xx_hal_link_state state)
  917. {
  918. struct wcn36xx_hal_set_link_state_req_msg msg_body;
  919. int ret;
  920. mutex_lock(&wcn->hal_mutex);
  921. INIT_HAL_MSG(msg_body, WCN36XX_HAL_SET_LINK_ST_REQ);
  922. memcpy(&msg_body.bssid, bssid, ETH_ALEN);
  923. memcpy(&msg_body.self_mac_addr, sta_mac, ETH_ALEN);
  924. msg_body.state = state;
  925. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  926. wcn36xx_dbg(WCN36XX_DBG_HAL,
  927. "hal set link state bssid %pM self_mac_addr %pM state %d\n",
  928. msg_body.bssid, msg_body.self_mac_addr, msg_body.state);
  929. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  930. if (ret) {
  931. wcn36xx_err("Sending hal_set_link_st failed\n");
  932. goto out;
  933. }
  934. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  935. if (ret) {
  936. wcn36xx_err("hal_set_link_st response failed err=%d\n", ret);
  937. goto out;
  938. }
  939. out:
  940. mutex_unlock(&wcn->hal_mutex);
  941. return ret;
  942. }
  943. static void wcn36xx_smd_convert_sta_to_v1(struct wcn36xx *wcn,
  944. const struct wcn36xx_hal_config_sta_params *orig,
  945. struct wcn36xx_hal_config_sta_params_v1 *v1)
  946. {
  947. /* convert orig to v1 format */
  948. memcpy(&v1->bssid, orig->bssid, ETH_ALEN);
  949. memcpy(&v1->mac, orig->mac, ETH_ALEN);
  950. v1->aid = orig->aid;
  951. v1->type = orig->type;
  952. v1->short_preamble_supported = orig->short_preamble_supported;
  953. v1->listen_interval = orig->listen_interval;
  954. v1->wmm_enabled = orig->wmm_enabled;
  955. v1->ht_capable = orig->ht_capable;
  956. v1->tx_channel_width_set = orig->tx_channel_width_set;
  957. v1->rifs_mode = orig->rifs_mode;
  958. v1->lsig_txop_protection = orig->lsig_txop_protection;
  959. v1->max_ampdu_size = orig->max_ampdu_size;
  960. v1->max_ampdu_density = orig->max_ampdu_density;
  961. v1->sgi_40mhz = orig->sgi_40mhz;
  962. v1->sgi_20Mhz = orig->sgi_20Mhz;
  963. v1->rmf = orig->rmf;
  964. v1->encrypt_type = orig->encrypt_type;
  965. v1->action = orig->action;
  966. v1->uapsd = orig->uapsd;
  967. v1->max_sp_len = orig->max_sp_len;
  968. v1->green_field_capable = orig->green_field_capable;
  969. v1->mimo_ps = orig->mimo_ps;
  970. v1->delayed_ba_support = orig->delayed_ba_support;
  971. v1->max_ampdu_duration = orig->max_ampdu_duration;
  972. v1->dsss_cck_mode_40mhz = orig->dsss_cck_mode_40mhz;
  973. memcpy(&v1->supported_rates, &orig->supported_rates,
  974. sizeof(orig->supported_rates));
  975. v1->sta_index = orig->sta_index;
  976. v1->bssid_index = orig->bssid_index;
  977. v1->p2p = orig->p2p;
  978. }
  979. static int wcn36xx_smd_config_sta_rsp(struct wcn36xx *wcn,
  980. struct ieee80211_sta *sta,
  981. void *buf,
  982. size_t len)
  983. {
  984. struct wcn36xx_hal_config_sta_rsp_msg *rsp;
  985. struct config_sta_rsp_params *params;
  986. struct wcn36xx_sta *sta_priv = wcn36xx_sta_to_priv(sta);
  987. if (len < sizeof(*rsp))
  988. return -EINVAL;
  989. rsp = (struct wcn36xx_hal_config_sta_rsp_msg *)buf;
  990. params = &rsp->params;
  991. if (params->status != WCN36XX_FW_MSG_RESULT_SUCCESS) {
  992. wcn36xx_warn("hal config sta response failure: %d\n",
  993. params->status);
  994. return -EIO;
  995. }
  996. sta_priv->sta_index = params->sta_index;
  997. sta_priv->dpu_desc_index = params->dpu_index;
  998. sta_priv->ucast_dpu_sign = params->uc_ucast_sig;
  999. wcn36xx_dbg(WCN36XX_DBG_HAL,
  1000. "hal config sta rsp status %d sta_index %d bssid_index %d uc_ucast_sig %d p2p %d\n",
  1001. params->status, params->sta_index, params->bssid_index,
  1002. params->uc_ucast_sig, params->p2p);
  1003. return 0;
  1004. }
  1005. static int wcn36xx_smd_config_sta_v1(struct wcn36xx *wcn,
  1006. const struct wcn36xx_hal_config_sta_req_msg *orig)
  1007. {
  1008. struct wcn36xx_hal_config_sta_req_msg_v1 msg_body;
  1009. struct wcn36xx_hal_config_sta_params_v1 *sta = &msg_body.sta_params;
  1010. INIT_HAL_MSG(msg_body, WCN36XX_HAL_CONFIG_STA_REQ);
  1011. wcn36xx_smd_convert_sta_to_v1(wcn, &orig->sta_params,
  1012. &msg_body.sta_params);
  1013. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1014. wcn36xx_dbg(WCN36XX_DBG_HAL,
  1015. "hal config sta v1 action %d sta_index %d bssid_index %d bssid %pM type %d mac %pM aid %d\n",
  1016. sta->action, sta->sta_index, sta->bssid_index,
  1017. sta->bssid, sta->type, sta->mac, sta->aid);
  1018. return wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1019. }
  1020. int wcn36xx_smd_config_sta(struct wcn36xx *wcn, struct ieee80211_vif *vif,
  1021. struct ieee80211_sta *sta)
  1022. {
  1023. struct wcn36xx_hal_config_sta_req_msg msg;
  1024. struct wcn36xx_hal_config_sta_params *sta_params;
  1025. int ret;
  1026. mutex_lock(&wcn->hal_mutex);
  1027. INIT_HAL_MSG(msg, WCN36XX_HAL_CONFIG_STA_REQ);
  1028. sta_params = &msg.sta_params;
  1029. wcn36xx_smd_set_sta_params(wcn, vif, sta, sta_params);
  1030. if (!wcn36xx_is_fw_version(wcn, 1, 2, 2, 24)) {
  1031. ret = wcn36xx_smd_config_sta_v1(wcn, &msg);
  1032. } else {
  1033. PREPARE_HAL_BUF(wcn->hal_buf, msg);
  1034. wcn36xx_dbg(WCN36XX_DBG_HAL,
  1035. "hal config sta action %d sta_index %d bssid_index %d bssid %pM type %d mac %pM aid %d\n",
  1036. sta_params->action, sta_params->sta_index,
  1037. sta_params->bssid_index, sta_params->bssid,
  1038. sta_params->type, sta_params->mac, sta_params->aid);
  1039. ret = wcn36xx_smd_send_and_wait(wcn, msg.header.len);
  1040. }
  1041. if (ret) {
  1042. wcn36xx_err("Sending hal_config_sta failed\n");
  1043. goto out;
  1044. }
  1045. ret = wcn36xx_smd_config_sta_rsp(wcn,
  1046. sta,
  1047. wcn->hal_buf,
  1048. wcn->hal_rsp_len);
  1049. if (ret) {
  1050. wcn36xx_err("hal_config_sta response failed err=%d\n", ret);
  1051. goto out;
  1052. }
  1053. out:
  1054. mutex_unlock(&wcn->hal_mutex);
  1055. return ret;
  1056. }
  1057. static int wcn36xx_smd_config_bss_v1(struct wcn36xx *wcn,
  1058. const struct wcn36xx_hal_config_bss_req_msg *orig)
  1059. {
  1060. struct wcn36xx_hal_config_bss_req_msg_v1 *msg_body;
  1061. struct wcn36xx_hal_config_bss_params_v1 *bss;
  1062. struct wcn36xx_hal_config_sta_params_v1 *sta;
  1063. int ret;
  1064. msg_body = kzalloc(sizeof(*msg_body), GFP_KERNEL);
  1065. if (!msg_body)
  1066. return -ENOMEM;
  1067. INIT_HAL_MSG((*msg_body), WCN36XX_HAL_CONFIG_BSS_REQ);
  1068. bss = &msg_body->bss_params;
  1069. sta = &bss->sta;
  1070. /* convert orig to v1 */
  1071. memcpy(&msg_body->bss_params.bssid,
  1072. &orig->bss_params.bssid, ETH_ALEN);
  1073. memcpy(&msg_body->bss_params.self_mac_addr,
  1074. &orig->bss_params.self_mac_addr, ETH_ALEN);
  1075. msg_body->bss_params.bss_type = orig->bss_params.bss_type;
  1076. msg_body->bss_params.oper_mode = orig->bss_params.oper_mode;
  1077. msg_body->bss_params.nw_type = orig->bss_params.nw_type;
  1078. msg_body->bss_params.short_slot_time_supported =
  1079. orig->bss_params.short_slot_time_supported;
  1080. msg_body->bss_params.lla_coexist = orig->bss_params.lla_coexist;
  1081. msg_body->bss_params.llb_coexist = orig->bss_params.llb_coexist;
  1082. msg_body->bss_params.llg_coexist = orig->bss_params.llg_coexist;
  1083. msg_body->bss_params.ht20_coexist = orig->bss_params.ht20_coexist;
  1084. msg_body->bss_params.lln_non_gf_coexist =
  1085. orig->bss_params.lln_non_gf_coexist;
  1086. msg_body->bss_params.lsig_tx_op_protection_full_support =
  1087. orig->bss_params.lsig_tx_op_protection_full_support;
  1088. msg_body->bss_params.rifs_mode = orig->bss_params.rifs_mode;
  1089. msg_body->bss_params.beacon_interval = orig->bss_params.beacon_interval;
  1090. msg_body->bss_params.dtim_period = orig->bss_params.dtim_period;
  1091. msg_body->bss_params.tx_channel_width_set =
  1092. orig->bss_params.tx_channel_width_set;
  1093. msg_body->bss_params.oper_channel = orig->bss_params.oper_channel;
  1094. msg_body->bss_params.ext_channel = orig->bss_params.ext_channel;
  1095. msg_body->bss_params.reserved = orig->bss_params.reserved;
  1096. memcpy(&msg_body->bss_params.ssid,
  1097. &orig->bss_params.ssid,
  1098. sizeof(orig->bss_params.ssid));
  1099. msg_body->bss_params.action = orig->bss_params.action;
  1100. msg_body->bss_params.rateset = orig->bss_params.rateset;
  1101. msg_body->bss_params.ht = orig->bss_params.ht;
  1102. msg_body->bss_params.obss_prot_enabled =
  1103. orig->bss_params.obss_prot_enabled;
  1104. msg_body->bss_params.rmf = orig->bss_params.rmf;
  1105. msg_body->bss_params.ht_oper_mode = orig->bss_params.ht_oper_mode;
  1106. msg_body->bss_params.dual_cts_protection =
  1107. orig->bss_params.dual_cts_protection;
  1108. msg_body->bss_params.max_probe_resp_retry_limit =
  1109. orig->bss_params.max_probe_resp_retry_limit;
  1110. msg_body->bss_params.hidden_ssid = orig->bss_params.hidden_ssid;
  1111. msg_body->bss_params.proxy_probe_resp =
  1112. orig->bss_params.proxy_probe_resp;
  1113. msg_body->bss_params.edca_params_valid =
  1114. orig->bss_params.edca_params_valid;
  1115. memcpy(&msg_body->bss_params.acbe,
  1116. &orig->bss_params.acbe,
  1117. sizeof(orig->bss_params.acbe));
  1118. memcpy(&msg_body->bss_params.acbk,
  1119. &orig->bss_params.acbk,
  1120. sizeof(orig->bss_params.acbk));
  1121. memcpy(&msg_body->bss_params.acvi,
  1122. &orig->bss_params.acvi,
  1123. sizeof(orig->bss_params.acvi));
  1124. memcpy(&msg_body->bss_params.acvo,
  1125. &orig->bss_params.acvo,
  1126. sizeof(orig->bss_params.acvo));
  1127. msg_body->bss_params.ext_set_sta_key_param_valid =
  1128. orig->bss_params.ext_set_sta_key_param_valid;
  1129. memcpy(&msg_body->bss_params.ext_set_sta_key_param,
  1130. &orig->bss_params.ext_set_sta_key_param,
  1131. sizeof(orig->bss_params.acvo));
  1132. msg_body->bss_params.wcn36xx_hal_persona =
  1133. orig->bss_params.wcn36xx_hal_persona;
  1134. msg_body->bss_params.spectrum_mgt_enable =
  1135. orig->bss_params.spectrum_mgt_enable;
  1136. msg_body->bss_params.tx_mgmt_power = orig->bss_params.tx_mgmt_power;
  1137. msg_body->bss_params.max_tx_power = orig->bss_params.max_tx_power;
  1138. wcn36xx_smd_convert_sta_to_v1(wcn, &orig->bss_params.sta,
  1139. &msg_body->bss_params.sta);
  1140. PREPARE_HAL_BUF(wcn->hal_buf, (*msg_body));
  1141. wcn36xx_dbg(WCN36XX_DBG_HAL,
  1142. "hal config bss v1 bssid %pM self_mac_addr %pM bss_type %d oper_mode %d nw_type %d\n",
  1143. bss->bssid, bss->self_mac_addr, bss->bss_type,
  1144. bss->oper_mode, bss->nw_type);
  1145. wcn36xx_dbg(WCN36XX_DBG_HAL,
  1146. "- sta bssid %pM action %d sta_index %d bssid_index %d aid %d type %d mac %pM\n",
  1147. sta->bssid, sta->action, sta->sta_index,
  1148. sta->bssid_index, sta->aid, sta->type, sta->mac);
  1149. ret = wcn36xx_smd_send_and_wait(wcn, msg_body->header.len);
  1150. kfree(msg_body);
  1151. return ret;
  1152. }
  1153. static int wcn36xx_smd_config_bss_rsp(struct wcn36xx *wcn,
  1154. struct ieee80211_vif *vif,
  1155. struct ieee80211_sta *sta,
  1156. void *buf,
  1157. size_t len)
  1158. {
  1159. struct wcn36xx_hal_config_bss_rsp_msg *rsp;
  1160. struct wcn36xx_hal_config_bss_rsp_params *params;
  1161. struct wcn36xx_vif *vif_priv = wcn36xx_vif_to_priv(vif);
  1162. if (len < sizeof(*rsp))
  1163. return -EINVAL;
  1164. rsp = (struct wcn36xx_hal_config_bss_rsp_msg *)buf;
  1165. params = &rsp->bss_rsp_params;
  1166. if (params->status != WCN36XX_FW_MSG_RESULT_SUCCESS) {
  1167. wcn36xx_warn("hal config bss response failure: %d\n",
  1168. params->status);
  1169. return -EIO;
  1170. }
  1171. wcn36xx_dbg(WCN36XX_DBG_HAL,
  1172. "hal config bss rsp status %d bss_idx %d dpu_desc_index %d"
  1173. " sta_idx %d self_idx %d bcast_idx %d mac %pM"
  1174. " power %d ucast_dpu_signature %d\n",
  1175. params->status, params->bss_index, params->dpu_desc_index,
  1176. params->bss_sta_index, params->bss_self_sta_index,
  1177. params->bss_bcast_sta_idx, params->mac,
  1178. params->tx_mgmt_power, params->ucast_dpu_signature);
  1179. vif_priv->bss_index = params->bss_index;
  1180. if (sta) {
  1181. struct wcn36xx_sta *sta_priv = wcn36xx_sta_to_priv(sta);
  1182. sta_priv->bss_sta_index = params->bss_sta_index;
  1183. sta_priv->bss_dpu_desc_index = params->dpu_desc_index;
  1184. }
  1185. vif_priv->self_ucast_dpu_sign = params->ucast_dpu_signature;
  1186. return 0;
  1187. }
  1188. int wcn36xx_smd_config_bss(struct wcn36xx *wcn, struct ieee80211_vif *vif,
  1189. struct ieee80211_sta *sta, const u8 *bssid,
  1190. bool update)
  1191. {
  1192. struct wcn36xx_hal_config_bss_req_msg *msg;
  1193. struct wcn36xx_hal_config_bss_params *bss;
  1194. struct wcn36xx_hal_config_sta_params *sta_params;
  1195. struct wcn36xx_vif *vif_priv = wcn36xx_vif_to_priv(vif);
  1196. int ret;
  1197. mutex_lock(&wcn->hal_mutex);
  1198. msg = kzalloc(sizeof(*msg), GFP_KERNEL);
  1199. if (!msg) {
  1200. ret = -ENOMEM;
  1201. goto out;
  1202. }
  1203. INIT_HAL_MSG((*msg), WCN36XX_HAL_CONFIG_BSS_REQ);
  1204. bss = &msg->bss_params;
  1205. sta_params = &bss->sta;
  1206. WARN_ON(is_zero_ether_addr(bssid));
  1207. memcpy(&bss->bssid, bssid, ETH_ALEN);
  1208. memcpy(bss->self_mac_addr, vif->addr, ETH_ALEN);
  1209. if (vif->type == NL80211_IFTYPE_STATION) {
  1210. bss->bss_type = WCN36XX_HAL_INFRASTRUCTURE_MODE;
  1211. /* STA */
  1212. bss->oper_mode = 1;
  1213. bss->wcn36xx_hal_persona = WCN36XX_HAL_STA_MODE;
  1214. } else if (vif->type == NL80211_IFTYPE_AP ||
  1215. vif->type == NL80211_IFTYPE_MESH_POINT) {
  1216. bss->bss_type = WCN36XX_HAL_INFRA_AP_MODE;
  1217. /* AP */
  1218. bss->oper_mode = 0;
  1219. bss->wcn36xx_hal_persona = WCN36XX_HAL_STA_SAP_MODE;
  1220. } else if (vif->type == NL80211_IFTYPE_ADHOC) {
  1221. bss->bss_type = WCN36XX_HAL_IBSS_MODE;
  1222. /* STA */
  1223. bss->oper_mode = 1;
  1224. } else {
  1225. wcn36xx_warn("Unknown type for bss config: %d\n", vif->type);
  1226. }
  1227. if (vif->type == NL80211_IFTYPE_STATION)
  1228. wcn36xx_smd_set_bss_nw_type(wcn, sta, bss);
  1229. else
  1230. bss->nw_type = WCN36XX_HAL_11N_NW_TYPE;
  1231. bss->short_slot_time_supported = vif->bss_conf.use_short_slot;
  1232. bss->lla_coexist = 0;
  1233. bss->llb_coexist = 0;
  1234. bss->llg_coexist = 0;
  1235. bss->rifs_mode = 0;
  1236. bss->beacon_interval = vif->bss_conf.beacon_int;
  1237. bss->dtim_period = vif_priv->dtim_period;
  1238. wcn36xx_smd_set_bss_ht_params(vif, sta, bss);
  1239. bss->oper_channel = WCN36XX_HW_CHANNEL(wcn);
  1240. if (conf_is_ht40_minus(&wcn->hw->conf))
  1241. bss->ext_channel = IEEE80211_HT_PARAM_CHA_SEC_BELOW;
  1242. else if (conf_is_ht40_plus(&wcn->hw->conf))
  1243. bss->ext_channel = IEEE80211_HT_PARAM_CHA_SEC_ABOVE;
  1244. else
  1245. bss->ext_channel = IEEE80211_HT_PARAM_CHA_SEC_NONE;
  1246. bss->reserved = 0;
  1247. wcn36xx_smd_set_sta_params(wcn, vif, sta, sta_params);
  1248. /* wcn->ssid is only valid in AP and IBSS mode */
  1249. bss->ssid.length = vif_priv->ssid.length;
  1250. memcpy(bss->ssid.ssid, vif_priv->ssid.ssid, vif_priv->ssid.length);
  1251. bss->obss_prot_enabled = 0;
  1252. bss->rmf = 0;
  1253. bss->max_probe_resp_retry_limit = 0;
  1254. bss->hidden_ssid = vif->bss_conf.hidden_ssid;
  1255. bss->proxy_probe_resp = 0;
  1256. bss->edca_params_valid = 0;
  1257. /* FIXME: set acbe, acbk, acvi and acvo */
  1258. bss->ext_set_sta_key_param_valid = 0;
  1259. /* FIXME: set ext_set_sta_key_param */
  1260. bss->spectrum_mgt_enable = 0;
  1261. bss->tx_mgmt_power = 0;
  1262. bss->max_tx_power = WCN36XX_MAX_POWER(wcn);
  1263. bss->action = update;
  1264. vif_priv->bss_type = bss->bss_type;
  1265. wcn36xx_dbg(WCN36XX_DBG_HAL,
  1266. "hal config bss bssid %pM self_mac_addr %pM bss_type %d oper_mode %d nw_type %d\n",
  1267. bss->bssid, bss->self_mac_addr, bss->bss_type,
  1268. bss->oper_mode, bss->nw_type);
  1269. wcn36xx_dbg(WCN36XX_DBG_HAL,
  1270. "- sta bssid %pM action %d sta_index %d bssid_index %d aid %d type %d mac %pM\n",
  1271. sta_params->bssid, sta_params->action,
  1272. sta_params->sta_index, sta_params->bssid_index,
  1273. sta_params->aid, sta_params->type,
  1274. sta_params->mac);
  1275. if (!wcn36xx_is_fw_version(wcn, 1, 2, 2, 24)) {
  1276. ret = wcn36xx_smd_config_bss_v1(wcn, msg);
  1277. } else {
  1278. PREPARE_HAL_BUF(wcn->hal_buf, (*msg));
  1279. ret = wcn36xx_smd_send_and_wait(wcn, msg->header.len);
  1280. }
  1281. if (ret) {
  1282. wcn36xx_err("Sending hal_config_bss failed\n");
  1283. goto out;
  1284. }
  1285. ret = wcn36xx_smd_config_bss_rsp(wcn,
  1286. vif,
  1287. sta,
  1288. wcn->hal_buf,
  1289. wcn->hal_rsp_len);
  1290. if (ret) {
  1291. wcn36xx_err("hal_config_bss response failed err=%d\n", ret);
  1292. goto out;
  1293. }
  1294. out:
  1295. kfree(msg);
  1296. mutex_unlock(&wcn->hal_mutex);
  1297. return ret;
  1298. }
  1299. int wcn36xx_smd_delete_bss(struct wcn36xx *wcn, struct ieee80211_vif *vif)
  1300. {
  1301. struct wcn36xx_hal_delete_bss_req_msg msg_body;
  1302. struct wcn36xx_vif *vif_priv = wcn36xx_vif_to_priv(vif);
  1303. int ret = 0;
  1304. mutex_lock(&wcn->hal_mutex);
  1305. if (vif_priv->bss_index == WCN36XX_HAL_BSS_INVALID_IDX)
  1306. goto out;
  1307. INIT_HAL_MSG(msg_body, WCN36XX_HAL_DELETE_BSS_REQ);
  1308. msg_body.bss_index = vif_priv->bss_index;
  1309. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1310. wcn36xx_dbg(WCN36XX_DBG_HAL, "hal delete bss %d\n", msg_body.bss_index);
  1311. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1312. if (ret) {
  1313. wcn36xx_err("Sending hal_delete_bss failed\n");
  1314. goto out;
  1315. }
  1316. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1317. if (ret) {
  1318. wcn36xx_err("hal_delete_bss response failed err=%d\n", ret);
  1319. goto out;
  1320. }
  1321. vif_priv->bss_index = WCN36XX_HAL_BSS_INVALID_IDX;
  1322. out:
  1323. mutex_unlock(&wcn->hal_mutex);
  1324. return ret;
  1325. }
  1326. int wcn36xx_smd_send_beacon(struct wcn36xx *wcn, struct ieee80211_vif *vif,
  1327. struct sk_buff *skb_beacon, u16 tim_off,
  1328. u16 p2p_off)
  1329. {
  1330. struct wcn36xx_hal_send_beacon_req_msg msg_body;
  1331. int ret, pad, pvm_len;
  1332. mutex_lock(&wcn->hal_mutex);
  1333. INIT_HAL_MSG(msg_body, WCN36XX_HAL_SEND_BEACON_REQ);
  1334. pvm_len = skb_beacon->data[tim_off + 1] - 3;
  1335. pad = TIM_MIN_PVM_SIZE - pvm_len;
  1336. /* Padding is irrelevant to mesh mode since tim_off is always 0. */
  1337. if (vif->type == NL80211_IFTYPE_MESH_POINT)
  1338. pad = 0;
  1339. msg_body.beacon_length = skb_beacon->len + pad;
  1340. /* TODO need to find out why + 6 is needed */
  1341. msg_body.beacon_length6 = msg_body.beacon_length + 6;
  1342. if (msg_body.beacon_length > BEACON_TEMPLATE_SIZE) {
  1343. wcn36xx_err("Beacon is to big: beacon size=%d\n",
  1344. msg_body.beacon_length);
  1345. ret = -ENOMEM;
  1346. goto out;
  1347. }
  1348. memcpy(msg_body.beacon, skb_beacon->data, skb_beacon->len);
  1349. memcpy(msg_body.bssid, vif->addr, ETH_ALEN);
  1350. if (pad > 0) {
  1351. /*
  1352. * The wcn36xx FW has a fixed size for the PVM in the TIM. If
  1353. * given the beacon template from mac80211 with a PVM shorter
  1354. * than the FW expectes it will overwrite the data after the
  1355. * TIM.
  1356. */
  1357. wcn36xx_dbg(WCN36XX_DBG_HAL, "Pad TIM PVM. %d bytes at %d\n",
  1358. pad, pvm_len);
  1359. memmove(&msg_body.beacon[tim_off + 5 + pvm_len + pad],
  1360. &msg_body.beacon[tim_off + 5 + pvm_len],
  1361. skb_beacon->len - (tim_off + 5 + pvm_len));
  1362. memset(&msg_body.beacon[tim_off + 5 + pvm_len], 0, pad);
  1363. msg_body.beacon[tim_off + 1] += pad;
  1364. }
  1365. /* TODO need to find out why this is needed? */
  1366. if (vif->type == NL80211_IFTYPE_MESH_POINT)
  1367. /* mesh beacon don't need this, so push further down */
  1368. msg_body.tim_ie_offset = 256;
  1369. else
  1370. msg_body.tim_ie_offset = tim_off+4;
  1371. msg_body.p2p_ie_offset = p2p_off;
  1372. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1373. wcn36xx_dbg(WCN36XX_DBG_HAL,
  1374. "hal send beacon beacon_length %d\n",
  1375. msg_body.beacon_length);
  1376. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1377. if (ret) {
  1378. wcn36xx_err("Sending hal_send_beacon failed\n");
  1379. goto out;
  1380. }
  1381. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1382. if (ret) {
  1383. wcn36xx_err("hal_send_beacon response failed err=%d\n", ret);
  1384. goto out;
  1385. }
  1386. out:
  1387. mutex_unlock(&wcn->hal_mutex);
  1388. return ret;
  1389. }
  1390. int wcn36xx_smd_update_proberesp_tmpl(struct wcn36xx *wcn,
  1391. struct ieee80211_vif *vif,
  1392. struct sk_buff *skb)
  1393. {
  1394. struct wcn36xx_hal_send_probe_resp_req_msg msg;
  1395. int ret;
  1396. mutex_lock(&wcn->hal_mutex);
  1397. INIT_HAL_MSG(msg, WCN36XX_HAL_UPDATE_PROBE_RSP_TEMPLATE_REQ);
  1398. if (skb->len > BEACON_TEMPLATE_SIZE) {
  1399. wcn36xx_warn("probe response template is too big: %d\n",
  1400. skb->len);
  1401. ret = -E2BIG;
  1402. goto out;
  1403. }
  1404. msg.probe_resp_template_len = skb->len;
  1405. memcpy(&msg.probe_resp_template, skb->data, skb->len);
  1406. memcpy(msg.bssid, vif->addr, ETH_ALEN);
  1407. PREPARE_HAL_BUF(wcn->hal_buf, msg);
  1408. wcn36xx_dbg(WCN36XX_DBG_HAL,
  1409. "hal update probe rsp len %d bssid %pM\n",
  1410. msg.probe_resp_template_len, msg.bssid);
  1411. ret = wcn36xx_smd_send_and_wait(wcn, msg.header.len);
  1412. if (ret) {
  1413. wcn36xx_err("Sending hal_update_proberesp_tmpl failed\n");
  1414. goto out;
  1415. }
  1416. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1417. if (ret) {
  1418. wcn36xx_err("hal_update_proberesp_tmpl response failed err=%d\n",
  1419. ret);
  1420. goto out;
  1421. }
  1422. out:
  1423. mutex_unlock(&wcn->hal_mutex);
  1424. return ret;
  1425. }
  1426. int wcn36xx_smd_set_stakey(struct wcn36xx *wcn,
  1427. enum ani_ed_type enc_type,
  1428. u8 keyidx,
  1429. u8 keylen,
  1430. u8 *key,
  1431. u8 sta_index)
  1432. {
  1433. struct wcn36xx_hal_set_sta_key_req_msg msg_body;
  1434. int ret;
  1435. mutex_lock(&wcn->hal_mutex);
  1436. INIT_HAL_MSG(msg_body, WCN36XX_HAL_SET_STAKEY_REQ);
  1437. msg_body.set_sta_key_params.sta_index = sta_index;
  1438. msg_body.set_sta_key_params.enc_type = enc_type;
  1439. if (enc_type == WCN36XX_HAL_ED_WEP104 ||
  1440. enc_type == WCN36XX_HAL_ED_WEP40) {
  1441. /* Use bss key for wep (static) */
  1442. msg_body.set_sta_key_params.def_wep_idx = keyidx;
  1443. msg_body.set_sta_key_params.wep_type = 0;
  1444. } else {
  1445. msg_body.set_sta_key_params.key[0].id = keyidx;
  1446. msg_body.set_sta_key_params.key[0].unicast = 1;
  1447. msg_body.set_sta_key_params.key[0].direction = WCN36XX_HAL_TX_RX;
  1448. msg_body.set_sta_key_params.key[0].pae_role = 0;
  1449. msg_body.set_sta_key_params.key[0].length = keylen;
  1450. memcpy(msg_body.set_sta_key_params.key[0].key, key, keylen);
  1451. }
  1452. msg_body.set_sta_key_params.single_tid_rc = 1;
  1453. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1454. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1455. if (ret) {
  1456. wcn36xx_err("Sending hal_set_stakey failed\n");
  1457. goto out;
  1458. }
  1459. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1460. if (ret) {
  1461. wcn36xx_err("hal_set_stakey response failed err=%d\n", ret);
  1462. goto out;
  1463. }
  1464. out:
  1465. mutex_unlock(&wcn->hal_mutex);
  1466. return ret;
  1467. }
  1468. int wcn36xx_smd_set_bsskey(struct wcn36xx *wcn,
  1469. enum ani_ed_type enc_type,
  1470. u8 bssidx,
  1471. u8 keyidx,
  1472. u8 keylen,
  1473. u8 *key)
  1474. {
  1475. struct wcn36xx_hal_set_bss_key_req_msg msg_body;
  1476. int ret;
  1477. mutex_lock(&wcn->hal_mutex);
  1478. INIT_HAL_MSG(msg_body, WCN36XX_HAL_SET_BSSKEY_REQ);
  1479. msg_body.bss_idx = bssidx;
  1480. msg_body.enc_type = enc_type;
  1481. msg_body.num_keys = 1;
  1482. msg_body.keys[0].id = keyidx;
  1483. msg_body.keys[0].unicast = 0;
  1484. msg_body.keys[0].direction = WCN36XX_HAL_RX_ONLY;
  1485. msg_body.keys[0].pae_role = 0;
  1486. msg_body.keys[0].length = keylen;
  1487. memcpy(msg_body.keys[0].key, key, keylen);
  1488. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1489. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1490. if (ret) {
  1491. wcn36xx_err("Sending hal_set_bsskey failed\n");
  1492. goto out;
  1493. }
  1494. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1495. if (ret) {
  1496. wcn36xx_err("hal_set_bsskey response failed err=%d\n", ret);
  1497. goto out;
  1498. }
  1499. out:
  1500. mutex_unlock(&wcn->hal_mutex);
  1501. return ret;
  1502. }
  1503. int wcn36xx_smd_remove_stakey(struct wcn36xx *wcn,
  1504. enum ani_ed_type enc_type,
  1505. u8 keyidx,
  1506. u8 sta_index)
  1507. {
  1508. struct wcn36xx_hal_remove_sta_key_req_msg msg_body;
  1509. int ret;
  1510. mutex_lock(&wcn->hal_mutex);
  1511. INIT_HAL_MSG(msg_body, WCN36XX_HAL_RMV_STAKEY_REQ);
  1512. msg_body.sta_idx = sta_index;
  1513. msg_body.enc_type = enc_type;
  1514. msg_body.key_id = keyidx;
  1515. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1516. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1517. if (ret) {
  1518. wcn36xx_err("Sending hal_remove_stakey failed\n");
  1519. goto out;
  1520. }
  1521. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1522. if (ret) {
  1523. wcn36xx_err("hal_remove_stakey response failed err=%d\n", ret);
  1524. goto out;
  1525. }
  1526. out:
  1527. mutex_unlock(&wcn->hal_mutex);
  1528. return ret;
  1529. }
  1530. int wcn36xx_smd_remove_bsskey(struct wcn36xx *wcn,
  1531. enum ani_ed_type enc_type,
  1532. u8 bssidx,
  1533. u8 keyidx)
  1534. {
  1535. struct wcn36xx_hal_remove_bss_key_req_msg msg_body;
  1536. int ret;
  1537. mutex_lock(&wcn->hal_mutex);
  1538. INIT_HAL_MSG(msg_body, WCN36XX_HAL_RMV_BSSKEY_REQ);
  1539. msg_body.bss_idx = bssidx;
  1540. msg_body.enc_type = enc_type;
  1541. msg_body.key_id = keyidx;
  1542. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1543. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1544. if (ret) {
  1545. wcn36xx_err("Sending hal_remove_bsskey failed\n");
  1546. goto out;
  1547. }
  1548. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1549. if (ret) {
  1550. wcn36xx_err("hal_remove_bsskey response failed err=%d\n", ret);
  1551. goto out;
  1552. }
  1553. out:
  1554. mutex_unlock(&wcn->hal_mutex);
  1555. return ret;
  1556. }
  1557. int wcn36xx_smd_enter_bmps(struct wcn36xx *wcn, struct ieee80211_vif *vif)
  1558. {
  1559. struct wcn36xx_hal_enter_bmps_req_msg msg_body;
  1560. struct wcn36xx_vif *vif_priv = wcn36xx_vif_to_priv(vif);
  1561. int ret;
  1562. mutex_lock(&wcn->hal_mutex);
  1563. INIT_HAL_MSG(msg_body, WCN36XX_HAL_ENTER_BMPS_REQ);
  1564. msg_body.bss_index = vif_priv->bss_index;
  1565. msg_body.tbtt = vif->bss_conf.sync_tsf;
  1566. msg_body.dtim_period = vif_priv->dtim_period;
  1567. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1568. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1569. if (ret) {
  1570. wcn36xx_err("Sending hal_enter_bmps failed\n");
  1571. goto out;
  1572. }
  1573. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1574. if (ret) {
  1575. wcn36xx_err("hal_enter_bmps response failed err=%d\n", ret);
  1576. goto out;
  1577. }
  1578. out:
  1579. mutex_unlock(&wcn->hal_mutex);
  1580. return ret;
  1581. }
  1582. int wcn36xx_smd_exit_bmps(struct wcn36xx *wcn, struct ieee80211_vif *vif)
  1583. {
  1584. struct wcn36xx_hal_exit_bmps_req_msg msg_body;
  1585. struct wcn36xx_vif *vif_priv = wcn36xx_vif_to_priv(vif);
  1586. int ret;
  1587. mutex_lock(&wcn->hal_mutex);
  1588. INIT_HAL_MSG(msg_body, WCN36XX_HAL_EXIT_BMPS_REQ);
  1589. msg_body.bss_index = vif_priv->bss_index;
  1590. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1591. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1592. if (ret) {
  1593. wcn36xx_err("Sending hal_exit_bmps failed\n");
  1594. goto out;
  1595. }
  1596. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1597. if (ret) {
  1598. wcn36xx_err("hal_exit_bmps response failed err=%d\n", ret);
  1599. goto out;
  1600. }
  1601. out:
  1602. mutex_unlock(&wcn->hal_mutex);
  1603. return ret;
  1604. }
  1605. int wcn36xx_smd_set_power_params(struct wcn36xx *wcn, bool ignore_dtim)
  1606. {
  1607. struct wcn36xx_hal_set_power_params_req_msg msg_body;
  1608. int ret;
  1609. mutex_lock(&wcn->hal_mutex);
  1610. INIT_HAL_MSG(msg_body, WCN36XX_HAL_SET_POWER_PARAMS_REQ);
  1611. /*
  1612. * When host is down ignore every second dtim
  1613. */
  1614. if (ignore_dtim) {
  1615. msg_body.ignore_dtim = 1;
  1616. msg_body.dtim_period = 2;
  1617. }
  1618. msg_body.listen_interval = WCN36XX_LISTEN_INTERVAL(wcn);
  1619. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1620. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1621. if (ret) {
  1622. wcn36xx_err("Sending hal_set_power_params failed\n");
  1623. goto out;
  1624. }
  1625. out:
  1626. mutex_unlock(&wcn->hal_mutex);
  1627. return ret;
  1628. }
  1629. /* Notice: This function should be called after associated, or else it
  1630. * will be invalid
  1631. */
  1632. int wcn36xx_smd_keep_alive_req(struct wcn36xx *wcn,
  1633. struct ieee80211_vif *vif,
  1634. int packet_type)
  1635. {
  1636. struct wcn36xx_hal_keep_alive_req_msg msg_body;
  1637. struct wcn36xx_vif *vif_priv = wcn36xx_vif_to_priv(vif);
  1638. int ret;
  1639. mutex_lock(&wcn->hal_mutex);
  1640. INIT_HAL_MSG(msg_body, WCN36XX_HAL_KEEP_ALIVE_REQ);
  1641. if (packet_type == WCN36XX_HAL_KEEP_ALIVE_NULL_PKT) {
  1642. msg_body.bss_index = vif_priv->bss_index;
  1643. msg_body.packet_type = WCN36XX_HAL_KEEP_ALIVE_NULL_PKT;
  1644. msg_body.time_period = WCN36XX_KEEP_ALIVE_TIME_PERIOD;
  1645. } else if (packet_type == WCN36XX_HAL_KEEP_ALIVE_UNSOLICIT_ARP_RSP) {
  1646. /* TODO: it also support ARP response type */
  1647. } else {
  1648. wcn36xx_warn("unknown keep alive packet type %d\n", packet_type);
  1649. ret = -EINVAL;
  1650. goto out;
  1651. }
  1652. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1653. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1654. if (ret) {
  1655. wcn36xx_err("Sending hal_keep_alive failed\n");
  1656. goto out;
  1657. }
  1658. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1659. if (ret) {
  1660. wcn36xx_err("hal_keep_alive response failed err=%d\n", ret);
  1661. goto out;
  1662. }
  1663. out:
  1664. mutex_unlock(&wcn->hal_mutex);
  1665. return ret;
  1666. }
  1667. int wcn36xx_smd_dump_cmd_req(struct wcn36xx *wcn, u32 arg1, u32 arg2,
  1668. u32 arg3, u32 arg4, u32 arg5)
  1669. {
  1670. struct wcn36xx_hal_dump_cmd_req_msg msg_body;
  1671. int ret;
  1672. mutex_lock(&wcn->hal_mutex);
  1673. INIT_HAL_MSG(msg_body, WCN36XX_HAL_DUMP_COMMAND_REQ);
  1674. msg_body.arg1 = arg1;
  1675. msg_body.arg2 = arg2;
  1676. msg_body.arg3 = arg3;
  1677. msg_body.arg4 = arg4;
  1678. msg_body.arg5 = arg5;
  1679. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1680. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1681. if (ret) {
  1682. wcn36xx_err("Sending hal_dump_cmd failed\n");
  1683. goto out;
  1684. }
  1685. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1686. if (ret) {
  1687. wcn36xx_err("hal_dump_cmd response failed err=%d\n", ret);
  1688. goto out;
  1689. }
  1690. out:
  1691. mutex_unlock(&wcn->hal_mutex);
  1692. return ret;
  1693. }
  1694. void set_feat_caps(u32 *bitmap, enum place_holder_in_cap_bitmap cap)
  1695. {
  1696. int arr_idx, bit_idx;
  1697. if (cap < 0 || cap > 127) {
  1698. wcn36xx_warn("error cap idx %d\n", cap);
  1699. return;
  1700. }
  1701. arr_idx = cap / 32;
  1702. bit_idx = cap % 32;
  1703. bitmap[arr_idx] |= (1 << bit_idx);
  1704. }
  1705. int get_feat_caps(u32 *bitmap, enum place_holder_in_cap_bitmap cap)
  1706. {
  1707. int arr_idx, bit_idx;
  1708. if (cap < 0 || cap > 127) {
  1709. wcn36xx_warn("error cap idx %d\n", cap);
  1710. return -EINVAL;
  1711. }
  1712. arr_idx = cap / 32;
  1713. bit_idx = cap % 32;
  1714. return (bitmap[arr_idx] & (1 << bit_idx)) ? 1 : 0;
  1715. }
  1716. void clear_feat_caps(u32 *bitmap, enum place_holder_in_cap_bitmap cap)
  1717. {
  1718. int arr_idx, bit_idx;
  1719. if (cap < 0 || cap > 127) {
  1720. wcn36xx_warn("error cap idx %d\n", cap);
  1721. return;
  1722. }
  1723. arr_idx = cap / 32;
  1724. bit_idx = cap % 32;
  1725. bitmap[arr_idx] &= ~(1 << bit_idx);
  1726. }
  1727. int wcn36xx_smd_feature_caps_exchange(struct wcn36xx *wcn)
  1728. {
  1729. struct wcn36xx_hal_feat_caps_msg msg_body, *rsp;
  1730. int ret, i;
  1731. mutex_lock(&wcn->hal_mutex);
  1732. INIT_HAL_MSG(msg_body, WCN36XX_HAL_FEATURE_CAPS_EXCHANGE_REQ);
  1733. set_feat_caps(msg_body.feat_caps, STA_POWERSAVE);
  1734. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1735. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1736. if (ret) {
  1737. wcn36xx_err("Sending hal_feature_caps_exchange failed\n");
  1738. goto out;
  1739. }
  1740. if (wcn->hal_rsp_len != sizeof(*rsp)) {
  1741. wcn36xx_err("Invalid hal_feature_caps_exchange response");
  1742. goto out;
  1743. }
  1744. rsp = (struct wcn36xx_hal_feat_caps_msg *) wcn->hal_buf;
  1745. for (i = 0; i < WCN36XX_HAL_CAPS_SIZE; i++)
  1746. wcn->fw_feat_caps[i] = rsp->feat_caps[i];
  1747. out:
  1748. mutex_unlock(&wcn->hal_mutex);
  1749. return ret;
  1750. }
  1751. int wcn36xx_smd_add_ba_session(struct wcn36xx *wcn,
  1752. struct ieee80211_sta *sta,
  1753. u16 tid,
  1754. u16 *ssn,
  1755. u8 direction,
  1756. u8 sta_index)
  1757. {
  1758. struct wcn36xx_hal_add_ba_session_req_msg msg_body;
  1759. int ret;
  1760. mutex_lock(&wcn->hal_mutex);
  1761. INIT_HAL_MSG(msg_body, WCN36XX_HAL_ADD_BA_SESSION_REQ);
  1762. msg_body.sta_index = sta_index;
  1763. memcpy(&msg_body.mac_addr, sta->addr, ETH_ALEN);
  1764. msg_body.dialog_token = 0x10;
  1765. msg_body.tid = tid;
  1766. /* Immediate BA because Delayed BA is not supported */
  1767. msg_body.policy = 1;
  1768. msg_body.buffer_size = WCN36XX_AGGR_BUFFER_SIZE;
  1769. msg_body.timeout = 0;
  1770. if (ssn)
  1771. msg_body.ssn = *ssn;
  1772. msg_body.direction = direction;
  1773. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1774. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1775. if (ret) {
  1776. wcn36xx_err("Sending hal_add_ba_session failed\n");
  1777. goto out;
  1778. }
  1779. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1780. if (ret) {
  1781. wcn36xx_err("hal_add_ba_session response failed err=%d\n", ret);
  1782. goto out;
  1783. }
  1784. out:
  1785. mutex_unlock(&wcn->hal_mutex);
  1786. return ret;
  1787. }
  1788. int wcn36xx_smd_add_ba(struct wcn36xx *wcn)
  1789. {
  1790. struct wcn36xx_hal_add_ba_req_msg msg_body;
  1791. int ret;
  1792. mutex_lock(&wcn->hal_mutex);
  1793. INIT_HAL_MSG(msg_body, WCN36XX_HAL_ADD_BA_REQ);
  1794. msg_body.session_id = 0;
  1795. msg_body.win_size = WCN36XX_AGGR_BUFFER_SIZE;
  1796. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1797. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1798. if (ret) {
  1799. wcn36xx_err("Sending hal_add_ba failed\n");
  1800. goto out;
  1801. }
  1802. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1803. if (ret) {
  1804. wcn36xx_err("hal_add_ba response failed err=%d\n", ret);
  1805. goto out;
  1806. }
  1807. out:
  1808. mutex_unlock(&wcn->hal_mutex);
  1809. return ret;
  1810. }
  1811. int wcn36xx_smd_del_ba(struct wcn36xx *wcn, u16 tid, u8 sta_index)
  1812. {
  1813. struct wcn36xx_hal_del_ba_req_msg msg_body;
  1814. int ret;
  1815. mutex_lock(&wcn->hal_mutex);
  1816. INIT_HAL_MSG(msg_body, WCN36XX_HAL_DEL_BA_REQ);
  1817. msg_body.sta_index = sta_index;
  1818. msg_body.tid = tid;
  1819. msg_body.direction = 0;
  1820. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1821. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1822. if (ret) {
  1823. wcn36xx_err("Sending hal_del_ba failed\n");
  1824. goto out;
  1825. }
  1826. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  1827. if (ret) {
  1828. wcn36xx_err("hal_del_ba response failed err=%d\n", ret);
  1829. goto out;
  1830. }
  1831. out:
  1832. mutex_unlock(&wcn->hal_mutex);
  1833. return ret;
  1834. }
  1835. static int wcn36xx_smd_trigger_ba_rsp(void *buf, int len)
  1836. {
  1837. struct wcn36xx_hal_trigger_ba_rsp_msg *rsp;
  1838. if (len < sizeof(*rsp))
  1839. return -EINVAL;
  1840. rsp = (struct wcn36xx_hal_trigger_ba_rsp_msg *) buf;
  1841. return rsp->status;
  1842. }
  1843. int wcn36xx_smd_trigger_ba(struct wcn36xx *wcn, u8 sta_index)
  1844. {
  1845. struct wcn36xx_hal_trigger_ba_req_msg msg_body;
  1846. struct wcn36xx_hal_trigger_ba_req_candidate *candidate;
  1847. int ret;
  1848. mutex_lock(&wcn->hal_mutex);
  1849. INIT_HAL_MSG(msg_body, WCN36XX_HAL_TRIGGER_BA_REQ);
  1850. msg_body.session_id = 0;
  1851. msg_body.candidate_cnt = 1;
  1852. msg_body.header.len += sizeof(*candidate);
  1853. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  1854. candidate = (struct wcn36xx_hal_trigger_ba_req_candidate *)
  1855. (wcn->hal_buf + sizeof(msg_body));
  1856. candidate->sta_index = sta_index;
  1857. candidate->tid_bitmap = 1;
  1858. ret = wcn36xx_smd_send_and_wait(wcn, msg_body.header.len);
  1859. if (ret) {
  1860. wcn36xx_err("Sending hal_trigger_ba failed\n");
  1861. goto out;
  1862. }
  1863. ret = wcn36xx_smd_trigger_ba_rsp(wcn->hal_buf, wcn->hal_rsp_len);
  1864. if (ret) {
  1865. wcn36xx_err("hal_trigger_ba response failed err=%d\n", ret);
  1866. goto out;
  1867. }
  1868. out:
  1869. mutex_unlock(&wcn->hal_mutex);
  1870. return ret;
  1871. }
  1872. static int wcn36xx_smd_tx_compl_ind(struct wcn36xx *wcn, void *buf, size_t len)
  1873. {
  1874. struct wcn36xx_hal_tx_compl_ind_msg *rsp = buf;
  1875. if (len != sizeof(*rsp)) {
  1876. wcn36xx_warn("Bad TX complete indication\n");
  1877. return -EIO;
  1878. }
  1879. wcn36xx_dxe_tx_ack_ind(wcn, rsp->status);
  1880. return 0;
  1881. }
  1882. static int wcn36xx_smd_hw_scan_ind(struct wcn36xx *wcn, void *buf, size_t len)
  1883. {
  1884. struct wcn36xx_hal_scan_offload_ind *rsp = buf;
  1885. struct cfg80211_scan_info scan_info = {};
  1886. if (len != sizeof(*rsp)) {
  1887. wcn36xx_warn("Corrupted delete scan indication\n");
  1888. return -EIO;
  1889. }
  1890. wcn36xx_dbg(WCN36XX_DBG_HAL, "scan indication (type %x)\n", rsp->type);
  1891. switch (rsp->type) {
  1892. case WCN36XX_HAL_SCAN_IND_FAILED:
  1893. case WCN36XX_HAL_SCAN_IND_DEQUEUED:
  1894. scan_info.aborted = true;
  1895. /* fall through */
  1896. case WCN36XX_HAL_SCAN_IND_COMPLETED:
  1897. mutex_lock(&wcn->scan_lock);
  1898. wcn->scan_req = NULL;
  1899. if (wcn->scan_aborted)
  1900. scan_info.aborted = true;
  1901. mutex_unlock(&wcn->scan_lock);
  1902. ieee80211_scan_completed(wcn->hw, &scan_info);
  1903. break;
  1904. case WCN36XX_HAL_SCAN_IND_STARTED:
  1905. case WCN36XX_HAL_SCAN_IND_FOREIGN_CHANNEL:
  1906. case WCN36XX_HAL_SCAN_IND_PREEMPTED:
  1907. case WCN36XX_HAL_SCAN_IND_RESTARTED:
  1908. break;
  1909. default:
  1910. wcn36xx_warn("Unknown scan indication type %x\n", rsp->type);
  1911. }
  1912. return 0;
  1913. }
  1914. static int wcn36xx_smd_missed_beacon_ind(struct wcn36xx *wcn,
  1915. void *buf,
  1916. size_t len)
  1917. {
  1918. struct wcn36xx_hal_missed_beacon_ind_msg *rsp = buf;
  1919. struct ieee80211_vif *vif = NULL;
  1920. struct wcn36xx_vif *tmp;
  1921. /* Old FW does not have bss index */
  1922. if (wcn36xx_is_fw_version(wcn, 1, 2, 2, 24)) {
  1923. list_for_each_entry(tmp, &wcn->vif_list, list) {
  1924. wcn36xx_dbg(WCN36XX_DBG_HAL, "beacon missed bss_index %d\n",
  1925. tmp->bss_index);
  1926. vif = wcn36xx_priv_to_vif(tmp);
  1927. ieee80211_connection_loss(vif);
  1928. }
  1929. return 0;
  1930. }
  1931. if (len != sizeof(*rsp)) {
  1932. wcn36xx_warn("Corrupted missed beacon indication\n");
  1933. return -EIO;
  1934. }
  1935. list_for_each_entry(tmp, &wcn->vif_list, list) {
  1936. if (tmp->bss_index == rsp->bss_index) {
  1937. wcn36xx_dbg(WCN36XX_DBG_HAL, "beacon missed bss_index %d\n",
  1938. rsp->bss_index);
  1939. vif = wcn36xx_priv_to_vif(tmp);
  1940. ieee80211_connection_loss(vif);
  1941. return 0;
  1942. }
  1943. }
  1944. wcn36xx_warn("BSS index %d not found\n", rsp->bss_index);
  1945. return -ENOENT;
  1946. }
  1947. static int wcn36xx_smd_delete_sta_context_ind(struct wcn36xx *wcn,
  1948. void *buf,
  1949. size_t len)
  1950. {
  1951. struct wcn36xx_hal_delete_sta_context_ind_msg *rsp = buf;
  1952. struct wcn36xx_vif *tmp;
  1953. struct ieee80211_sta *sta;
  1954. if (len != sizeof(*rsp)) {
  1955. wcn36xx_warn("Corrupted delete sta indication\n");
  1956. return -EIO;
  1957. }
  1958. wcn36xx_dbg(WCN36XX_DBG_HAL, "delete station indication %pM index %d\n",
  1959. rsp->addr2, rsp->sta_id);
  1960. list_for_each_entry(tmp, &wcn->vif_list, list) {
  1961. rcu_read_lock();
  1962. sta = ieee80211_find_sta(wcn36xx_priv_to_vif(tmp), rsp->addr2);
  1963. if (sta)
  1964. ieee80211_report_low_ack(sta, 0);
  1965. rcu_read_unlock();
  1966. if (sta)
  1967. return 0;
  1968. }
  1969. wcn36xx_warn("STA with addr %pM and index %d not found\n",
  1970. rsp->addr2,
  1971. rsp->sta_id);
  1972. return -ENOENT;
  1973. }
  1974. static int wcn36xx_smd_print_reg_info_ind(struct wcn36xx *wcn,
  1975. void *buf,
  1976. size_t len)
  1977. {
  1978. struct wcn36xx_hal_print_reg_info_ind *rsp = buf;
  1979. int i;
  1980. if (len < sizeof(*rsp)) {
  1981. wcn36xx_warn("Corrupted print reg info indication\n");
  1982. return -EIO;
  1983. }
  1984. wcn36xx_dbg(WCN36XX_DBG_HAL,
  1985. "reginfo indication, scenario: 0x%x reason: 0x%x\n",
  1986. rsp->scenario, rsp->reason);
  1987. for (i = 0; i < rsp->count; i++) {
  1988. wcn36xx_dbg(WCN36XX_DBG_HAL, "\t0x%x: 0x%x\n",
  1989. rsp->regs[i].addr, rsp->regs[i].value);
  1990. }
  1991. return 0;
  1992. }
  1993. int wcn36xx_smd_update_cfg(struct wcn36xx *wcn, u32 cfg_id, u32 value)
  1994. {
  1995. struct wcn36xx_hal_update_cfg_req_msg msg_body, *body;
  1996. size_t len;
  1997. int ret;
  1998. mutex_lock(&wcn->hal_mutex);
  1999. INIT_HAL_MSG(msg_body, WCN36XX_HAL_UPDATE_CFG_REQ);
  2000. PREPARE_HAL_BUF(wcn->hal_buf, msg_body);
  2001. body = (struct wcn36xx_hal_update_cfg_req_msg *) wcn->hal_buf;
  2002. len = msg_body.header.len;
  2003. put_cfg_tlv_u32(wcn, &len, cfg_id, value);
  2004. body->header.len = len;
  2005. body->len = len - sizeof(*body);
  2006. ret = wcn36xx_smd_send_and_wait(wcn, body->header.len);
  2007. if (ret) {
  2008. wcn36xx_err("Sending hal_update_cfg failed\n");
  2009. goto out;
  2010. }
  2011. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  2012. if (ret) {
  2013. wcn36xx_err("hal_update_cfg response failed err=%d\n", ret);
  2014. goto out;
  2015. }
  2016. out:
  2017. mutex_unlock(&wcn->hal_mutex);
  2018. return ret;
  2019. }
  2020. int wcn36xx_smd_set_mc_list(struct wcn36xx *wcn,
  2021. struct ieee80211_vif *vif,
  2022. struct wcn36xx_hal_rcv_flt_mc_addr_list_type *fp)
  2023. {
  2024. struct wcn36xx_vif *vif_priv = wcn36xx_vif_to_priv(vif);
  2025. struct wcn36xx_hal_rcv_flt_pkt_set_mc_list_req_msg *msg_body = NULL;
  2026. int ret;
  2027. mutex_lock(&wcn->hal_mutex);
  2028. msg_body = (struct wcn36xx_hal_rcv_flt_pkt_set_mc_list_req_msg *)
  2029. wcn->hal_buf;
  2030. init_hal_msg(&msg_body->header, WCN36XX_HAL_8023_MULTICAST_LIST_REQ,
  2031. sizeof(msg_body->mc_addr_list));
  2032. /* An empty list means all mc traffic will be received */
  2033. if (fp)
  2034. memcpy(&msg_body->mc_addr_list, fp,
  2035. sizeof(msg_body->mc_addr_list));
  2036. else
  2037. msg_body->mc_addr_list.mc_addr_count = 0;
  2038. msg_body->mc_addr_list.bss_index = vif_priv->bss_index;
  2039. ret = wcn36xx_smd_send_and_wait(wcn, msg_body->header.len);
  2040. if (ret) {
  2041. wcn36xx_err("Sending HAL_8023_MULTICAST_LIST failed\n");
  2042. goto out;
  2043. }
  2044. ret = wcn36xx_smd_rsp_status_check(wcn->hal_buf, wcn->hal_rsp_len);
  2045. if (ret) {
  2046. wcn36xx_err("HAL_8023_MULTICAST_LIST rsp failed err=%d\n", ret);
  2047. goto out;
  2048. }
  2049. out:
  2050. mutex_unlock(&wcn->hal_mutex);
  2051. return ret;
  2052. }
  2053. int wcn36xx_smd_rsp_process(struct rpmsg_device *rpdev,
  2054. void *buf, int len, void *priv, u32 addr)
  2055. {
  2056. const struct wcn36xx_hal_msg_header *msg_header = buf;
  2057. struct ieee80211_hw *hw = priv;
  2058. struct wcn36xx *wcn = hw->priv;
  2059. struct wcn36xx_hal_ind_msg *msg_ind;
  2060. wcn36xx_dbg_dump(WCN36XX_DBG_SMD_DUMP, "SMD <<< ", buf, len);
  2061. switch (msg_header->msg_type) {
  2062. case WCN36XX_HAL_START_RSP:
  2063. case WCN36XX_HAL_CONFIG_STA_RSP:
  2064. case WCN36XX_HAL_CONFIG_BSS_RSP:
  2065. case WCN36XX_HAL_ADD_STA_SELF_RSP:
  2066. case WCN36XX_HAL_STOP_RSP:
  2067. case WCN36XX_HAL_DEL_STA_SELF_RSP:
  2068. case WCN36XX_HAL_DELETE_STA_RSP:
  2069. case WCN36XX_HAL_INIT_SCAN_RSP:
  2070. case WCN36XX_HAL_START_SCAN_RSP:
  2071. case WCN36XX_HAL_END_SCAN_RSP:
  2072. case WCN36XX_HAL_FINISH_SCAN_RSP:
  2073. case WCN36XX_HAL_DOWNLOAD_NV_RSP:
  2074. case WCN36XX_HAL_DELETE_BSS_RSP:
  2075. case WCN36XX_HAL_SEND_BEACON_RSP:
  2076. case WCN36XX_HAL_SET_LINK_ST_RSP:
  2077. case WCN36XX_HAL_UPDATE_PROBE_RSP_TEMPLATE_RSP:
  2078. case WCN36XX_HAL_SET_BSSKEY_RSP:
  2079. case WCN36XX_HAL_SET_STAKEY_RSP:
  2080. case WCN36XX_HAL_RMV_STAKEY_RSP:
  2081. case WCN36XX_HAL_RMV_BSSKEY_RSP:
  2082. case WCN36XX_HAL_ENTER_BMPS_RSP:
  2083. case WCN36XX_HAL_SET_POWER_PARAMS_RSP:
  2084. case WCN36XX_HAL_EXIT_BMPS_RSP:
  2085. case WCN36XX_HAL_KEEP_ALIVE_RSP:
  2086. case WCN36XX_HAL_DUMP_COMMAND_RSP:
  2087. case WCN36XX_HAL_ADD_BA_SESSION_RSP:
  2088. case WCN36XX_HAL_ADD_BA_RSP:
  2089. case WCN36XX_HAL_DEL_BA_RSP:
  2090. case WCN36XX_HAL_TRIGGER_BA_RSP:
  2091. case WCN36XX_HAL_UPDATE_CFG_RSP:
  2092. case WCN36XX_HAL_JOIN_RSP:
  2093. case WCN36XX_HAL_UPDATE_SCAN_PARAM_RSP:
  2094. case WCN36XX_HAL_CH_SWITCH_RSP:
  2095. case WCN36XX_HAL_PROCESS_PTT_RSP:
  2096. case WCN36XX_HAL_FEATURE_CAPS_EXCHANGE_RSP:
  2097. case WCN36XX_HAL_8023_MULTICAST_LIST_RSP:
  2098. case WCN36XX_HAL_START_SCAN_OFFLOAD_RSP:
  2099. case WCN36XX_HAL_STOP_SCAN_OFFLOAD_RSP:
  2100. memcpy(wcn->hal_buf, buf, len);
  2101. wcn->hal_rsp_len = len;
  2102. complete(&wcn->hal_rsp_compl);
  2103. break;
  2104. case WCN36XX_HAL_COEX_IND:
  2105. case WCN36XX_HAL_AVOID_FREQ_RANGE_IND:
  2106. case WCN36XX_HAL_DEL_BA_IND:
  2107. case WCN36XX_HAL_OTA_TX_COMPL_IND:
  2108. case WCN36XX_HAL_MISSED_BEACON_IND:
  2109. case WCN36XX_HAL_DELETE_STA_CONTEXT_IND:
  2110. case WCN36XX_HAL_PRINT_REG_INFO_IND:
  2111. case WCN36XX_HAL_SCAN_OFFLOAD_IND:
  2112. msg_ind = kmalloc(sizeof(*msg_ind) + len, GFP_ATOMIC);
  2113. if (!msg_ind) {
  2114. wcn36xx_err("Run out of memory while handling SMD_EVENT (%d)\n",
  2115. msg_header->msg_type);
  2116. return -ENOMEM;
  2117. }
  2118. msg_ind->msg_len = len;
  2119. memcpy(msg_ind->msg, buf, len);
  2120. spin_lock(&wcn->hal_ind_lock);
  2121. list_add_tail(&msg_ind->list, &wcn->hal_ind_queue);
  2122. queue_work(wcn->hal_ind_wq, &wcn->hal_ind_work);
  2123. spin_unlock(&wcn->hal_ind_lock);
  2124. wcn36xx_dbg(WCN36XX_DBG_HAL, "indication arrived\n");
  2125. break;
  2126. default:
  2127. wcn36xx_err("SMD_EVENT (%d) not supported\n",
  2128. msg_header->msg_type);
  2129. }
  2130. return 0;
  2131. }
  2132. static void wcn36xx_ind_smd_work(struct work_struct *work)
  2133. {
  2134. struct wcn36xx *wcn =
  2135. container_of(work, struct wcn36xx, hal_ind_work);
  2136. for (;;) {
  2137. struct wcn36xx_hal_msg_header *msg_header;
  2138. struct wcn36xx_hal_ind_msg *hal_ind_msg;
  2139. unsigned long flags;
  2140. spin_lock_irqsave(&wcn->hal_ind_lock, flags);
  2141. if (list_empty(&wcn->hal_ind_queue)) {
  2142. spin_unlock_irqrestore(&wcn->hal_ind_lock, flags);
  2143. return;
  2144. }
  2145. hal_ind_msg = list_first_entry(&wcn->hal_ind_queue,
  2146. struct wcn36xx_hal_ind_msg,
  2147. list);
  2148. list_del(&hal_ind_msg->list);
  2149. spin_unlock_irqrestore(&wcn->hal_ind_lock, flags);
  2150. msg_header = (struct wcn36xx_hal_msg_header *)hal_ind_msg->msg;
  2151. switch (msg_header->msg_type) {
  2152. case WCN36XX_HAL_COEX_IND:
  2153. case WCN36XX_HAL_DEL_BA_IND:
  2154. case WCN36XX_HAL_AVOID_FREQ_RANGE_IND:
  2155. break;
  2156. case WCN36XX_HAL_OTA_TX_COMPL_IND:
  2157. wcn36xx_smd_tx_compl_ind(wcn,
  2158. hal_ind_msg->msg,
  2159. hal_ind_msg->msg_len);
  2160. break;
  2161. case WCN36XX_HAL_MISSED_BEACON_IND:
  2162. wcn36xx_smd_missed_beacon_ind(wcn,
  2163. hal_ind_msg->msg,
  2164. hal_ind_msg->msg_len);
  2165. break;
  2166. case WCN36XX_HAL_DELETE_STA_CONTEXT_IND:
  2167. wcn36xx_smd_delete_sta_context_ind(wcn,
  2168. hal_ind_msg->msg,
  2169. hal_ind_msg->msg_len);
  2170. break;
  2171. case WCN36XX_HAL_PRINT_REG_INFO_IND:
  2172. wcn36xx_smd_print_reg_info_ind(wcn,
  2173. hal_ind_msg->msg,
  2174. hal_ind_msg->msg_len);
  2175. break;
  2176. case WCN36XX_HAL_SCAN_OFFLOAD_IND:
  2177. wcn36xx_smd_hw_scan_ind(wcn, hal_ind_msg->msg,
  2178. hal_ind_msg->msg_len);
  2179. break;
  2180. default:
  2181. wcn36xx_err("SMD_EVENT (%d) not supported\n",
  2182. msg_header->msg_type);
  2183. }
  2184. kfree(hal_ind_msg);
  2185. }
  2186. }
  2187. int wcn36xx_smd_open(struct wcn36xx *wcn)
  2188. {
  2189. wcn->hal_ind_wq = create_freezable_workqueue("wcn36xx_smd_ind");
  2190. if (!wcn->hal_ind_wq)
  2191. return -ENOMEM;
  2192. INIT_WORK(&wcn->hal_ind_work, wcn36xx_ind_smd_work);
  2193. INIT_LIST_HEAD(&wcn->hal_ind_queue);
  2194. spin_lock_init(&wcn->hal_ind_lock);
  2195. return 0;
  2196. }
  2197. void wcn36xx_smd_close(struct wcn36xx *wcn)
  2198. {
  2199. struct wcn36xx_hal_ind_msg *msg, *tmp;
  2200. cancel_work_sync(&wcn->hal_ind_work);
  2201. destroy_workqueue(wcn->hal_ind_wq);
  2202. list_for_each_entry_safe(msg, tmp, &wcn->hal_ind_queue, list)
  2203. kfree(msg);
  2204. }