sta_cmdresp.c 29 KB

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  1. /*
  2. * Marvell Wireless LAN device driver: station command response handling
  3. *
  4. * Copyright (C) 2011, Marvell International Ltd.
  5. *
  6. * This software file (the "File") is distributed by Marvell International
  7. * Ltd. under the terms of the GNU General Public License Version 2, June 1991
  8. * (the "License"). You may use, redistribute and/or modify this File in
  9. * accordance with the terms and conditions of the License, a copy of which
  10. * is available by writing to the Free Software Foundation, Inc.,
  11. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA or on the
  12. * worldwide web at http://www.gnu.org/licenses/old-licenses/gpl-2.0.txt.
  13. *
  14. * THE FILE IS DISTRIBUTED AS-IS, WITHOUT WARRANTY OF ANY KIND, AND THE
  15. * IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE
  16. * ARE EXPRESSLY DISCLAIMED. The License provides additional details about
  17. * this warranty disclaimer.
  18. */
  19. #include "decl.h"
  20. #include "ioctl.h"
  21. #include "util.h"
  22. #include "fw.h"
  23. #include "main.h"
  24. #include "wmm.h"
  25. #include "11n.h"
  26. /*
  27. * This function handles the command response error case.
  28. *
  29. * For scan response error, the function cancels all the pending
  30. * scan commands and generates an event to inform the applications
  31. * of the scan completion.
  32. *
  33. * For Power Save command failure, we do not retry enter PS
  34. * command in case of Ad-hoc mode.
  35. *
  36. * For all other response errors, the current command buffer is freed
  37. * and returned to the free command queue.
  38. */
  39. static void
  40. mwifiex_process_cmdresp_error(struct mwifiex_private *priv,
  41. struct host_cmd_ds_command *resp)
  42. {
  43. struct cmd_ctrl_node *cmd_node = NULL, *tmp_node;
  44. struct mwifiex_adapter *adapter = priv->adapter;
  45. struct host_cmd_ds_802_11_ps_mode_enh *pm;
  46. unsigned long flags;
  47. dev_err(adapter->dev, "CMD_RESP: cmd %#x error, result=%#x\n",
  48. resp->command, resp->result);
  49. if (adapter->curr_cmd->wait_q_enabled)
  50. adapter->cmd_wait_q.status = -1;
  51. switch (le16_to_cpu(resp->command)) {
  52. case HostCmd_CMD_802_11_PS_MODE_ENH:
  53. pm = &resp->params.psmode_enh;
  54. dev_err(adapter->dev,
  55. "PS_MODE_ENH cmd failed: result=0x%x action=0x%X\n",
  56. resp->result, le16_to_cpu(pm->action));
  57. /* We do not re-try enter-ps command in ad-hoc mode. */
  58. if (le16_to_cpu(pm->action) == EN_AUTO_PS &&
  59. (le16_to_cpu(pm->params.ps_bitmap) & BITMAP_STA_PS) &&
  60. priv->bss_mode == NL80211_IFTYPE_ADHOC)
  61. adapter->ps_mode = MWIFIEX_802_11_POWER_MODE_CAM;
  62. break;
  63. case HostCmd_CMD_802_11_SCAN:
  64. /* Cancel all pending scan command */
  65. spin_lock_irqsave(&adapter->scan_pending_q_lock, flags);
  66. list_for_each_entry_safe(cmd_node, tmp_node,
  67. &adapter->scan_pending_q, list) {
  68. list_del(&cmd_node->list);
  69. spin_unlock_irqrestore(&adapter->scan_pending_q_lock,
  70. flags);
  71. mwifiex_insert_cmd_to_free_q(adapter, cmd_node);
  72. spin_lock_irqsave(&adapter->scan_pending_q_lock, flags);
  73. }
  74. spin_unlock_irqrestore(&adapter->scan_pending_q_lock, flags);
  75. spin_lock_irqsave(&adapter->mwifiex_cmd_lock, flags);
  76. adapter->scan_processing = false;
  77. spin_unlock_irqrestore(&adapter->mwifiex_cmd_lock, flags);
  78. if (priv->report_scan_result)
  79. priv->report_scan_result = false;
  80. if (priv->scan_pending_on_block) {
  81. priv->scan_pending_on_block = false;
  82. up(&priv->async_sem);
  83. }
  84. break;
  85. case HostCmd_CMD_MAC_CONTROL:
  86. break;
  87. default:
  88. break;
  89. }
  90. /* Handling errors here */
  91. mwifiex_insert_cmd_to_free_q(adapter, adapter->curr_cmd);
  92. spin_lock_irqsave(&adapter->mwifiex_cmd_lock, flags);
  93. adapter->curr_cmd = NULL;
  94. spin_unlock_irqrestore(&adapter->mwifiex_cmd_lock, flags);
  95. }
  96. /*
  97. * This function handles the command response of get RSSI info.
  98. *
  99. * Handling includes changing the header fields into CPU format
  100. * and saving the following parameters in driver -
  101. * - Last data and beacon RSSI value
  102. * - Average data and beacon RSSI value
  103. * - Last data and beacon NF value
  104. * - Average data and beacon NF value
  105. *
  106. * The parameters are send to the application as well, along with
  107. * calculated SNR values.
  108. */
  109. static int mwifiex_ret_802_11_rssi_info(struct mwifiex_private *priv,
  110. struct host_cmd_ds_command *resp)
  111. {
  112. struct host_cmd_ds_802_11_rssi_info_rsp *rssi_info_rsp =
  113. &resp->params.rssi_info_rsp;
  114. struct mwifiex_ds_misc_subsc_evt subsc_evt;
  115. priv->data_rssi_last = le16_to_cpu(rssi_info_rsp->data_rssi_last);
  116. priv->data_nf_last = le16_to_cpu(rssi_info_rsp->data_nf_last);
  117. priv->data_rssi_avg = le16_to_cpu(rssi_info_rsp->data_rssi_avg);
  118. priv->data_nf_avg = le16_to_cpu(rssi_info_rsp->data_nf_avg);
  119. priv->bcn_rssi_last = le16_to_cpu(rssi_info_rsp->bcn_rssi_last);
  120. priv->bcn_nf_last = le16_to_cpu(rssi_info_rsp->bcn_nf_last);
  121. priv->bcn_rssi_avg = le16_to_cpu(rssi_info_rsp->bcn_rssi_avg);
  122. priv->bcn_nf_avg = le16_to_cpu(rssi_info_rsp->bcn_nf_avg);
  123. if (priv->subsc_evt_rssi_state == EVENT_HANDLED)
  124. return 0;
  125. /* Resubscribe low and high rssi events with new thresholds */
  126. memset(&subsc_evt, 0x00, sizeof(struct mwifiex_ds_misc_subsc_evt));
  127. subsc_evt.events = BITMASK_BCN_RSSI_LOW | BITMASK_BCN_RSSI_HIGH;
  128. subsc_evt.action = HostCmd_ACT_BITWISE_SET;
  129. if (priv->subsc_evt_rssi_state == RSSI_LOW_RECVD) {
  130. subsc_evt.bcn_l_rssi_cfg.abs_value = abs(priv->bcn_rssi_avg -
  131. priv->cqm_rssi_hyst);
  132. subsc_evt.bcn_h_rssi_cfg.abs_value = abs(priv->cqm_rssi_thold);
  133. } else if (priv->subsc_evt_rssi_state == RSSI_HIGH_RECVD) {
  134. subsc_evt.bcn_l_rssi_cfg.abs_value = abs(priv->cqm_rssi_thold);
  135. subsc_evt.bcn_h_rssi_cfg.abs_value = abs(priv->bcn_rssi_avg +
  136. priv->cqm_rssi_hyst);
  137. }
  138. subsc_evt.bcn_l_rssi_cfg.evt_freq = 1;
  139. subsc_evt.bcn_h_rssi_cfg.evt_freq = 1;
  140. priv->subsc_evt_rssi_state = EVENT_HANDLED;
  141. mwifiex_send_cmd_async(priv, HostCmd_CMD_802_11_SUBSCRIBE_EVENT,
  142. 0, 0, &subsc_evt);
  143. return 0;
  144. }
  145. /*
  146. * This function handles the command response of set/get SNMP
  147. * MIB parameters.
  148. *
  149. * Handling includes changing the header fields into CPU format
  150. * and saving the parameter in driver.
  151. *
  152. * The following parameters are supported -
  153. * - Fragmentation threshold
  154. * - RTS threshold
  155. * - Short retry limit
  156. */
  157. static int mwifiex_ret_802_11_snmp_mib(struct mwifiex_private *priv,
  158. struct host_cmd_ds_command *resp,
  159. u32 *data_buf)
  160. {
  161. struct host_cmd_ds_802_11_snmp_mib *smib = &resp->params.smib;
  162. u16 oid = le16_to_cpu(smib->oid);
  163. u16 query_type = le16_to_cpu(smib->query_type);
  164. u32 ul_temp;
  165. dev_dbg(priv->adapter->dev, "info: SNMP_RESP: oid value = %#x,"
  166. " query_type = %#x, buf size = %#x\n",
  167. oid, query_type, le16_to_cpu(smib->buf_size));
  168. if (query_type == HostCmd_ACT_GEN_GET) {
  169. ul_temp = le16_to_cpu(*((__le16 *) (smib->value)));
  170. if (data_buf)
  171. *data_buf = ul_temp;
  172. switch (oid) {
  173. case FRAG_THRESH_I:
  174. dev_dbg(priv->adapter->dev,
  175. "info: SNMP_RESP: FragThsd =%u\n", ul_temp);
  176. break;
  177. case RTS_THRESH_I:
  178. dev_dbg(priv->adapter->dev,
  179. "info: SNMP_RESP: RTSThsd =%u\n", ul_temp);
  180. break;
  181. case SHORT_RETRY_LIM_I:
  182. dev_dbg(priv->adapter->dev,
  183. "info: SNMP_RESP: TxRetryCount=%u\n", ul_temp);
  184. break;
  185. case DTIM_PERIOD_I:
  186. dev_dbg(priv->adapter->dev,
  187. "info: SNMP_RESP: DTIM period=%u\n", ul_temp);
  188. default:
  189. break;
  190. }
  191. }
  192. return 0;
  193. }
  194. /*
  195. * This function handles the command response of get log request
  196. *
  197. * Handling includes changing the header fields into CPU format
  198. * and sending the received parameters to application.
  199. */
  200. static int mwifiex_ret_get_log(struct mwifiex_private *priv,
  201. struct host_cmd_ds_command *resp,
  202. struct mwifiex_ds_get_stats *stats)
  203. {
  204. struct host_cmd_ds_802_11_get_log *get_log =
  205. &resp->params.get_log;
  206. if (stats) {
  207. stats->mcast_tx_frame = le32_to_cpu(get_log->mcast_tx_frame);
  208. stats->failed = le32_to_cpu(get_log->failed);
  209. stats->retry = le32_to_cpu(get_log->retry);
  210. stats->multi_retry = le32_to_cpu(get_log->multi_retry);
  211. stats->frame_dup = le32_to_cpu(get_log->frame_dup);
  212. stats->rts_success = le32_to_cpu(get_log->rts_success);
  213. stats->rts_failure = le32_to_cpu(get_log->rts_failure);
  214. stats->ack_failure = le32_to_cpu(get_log->ack_failure);
  215. stats->rx_frag = le32_to_cpu(get_log->rx_frag);
  216. stats->mcast_rx_frame = le32_to_cpu(get_log->mcast_rx_frame);
  217. stats->fcs_error = le32_to_cpu(get_log->fcs_error);
  218. stats->tx_frame = le32_to_cpu(get_log->tx_frame);
  219. stats->wep_icv_error[0] =
  220. le32_to_cpu(get_log->wep_icv_err_cnt[0]);
  221. stats->wep_icv_error[1] =
  222. le32_to_cpu(get_log->wep_icv_err_cnt[1]);
  223. stats->wep_icv_error[2] =
  224. le32_to_cpu(get_log->wep_icv_err_cnt[2]);
  225. stats->wep_icv_error[3] =
  226. le32_to_cpu(get_log->wep_icv_err_cnt[3]);
  227. }
  228. return 0;
  229. }
  230. /*
  231. * This function handles the command response of set/get Tx rate
  232. * configurations.
  233. *
  234. * Handling includes changing the header fields into CPU format
  235. * and saving the following parameters in driver -
  236. * - DSSS rate bitmap
  237. * - OFDM rate bitmap
  238. * - HT MCS rate bitmaps
  239. *
  240. * Based on the new rate bitmaps, the function re-evaluates if
  241. * auto data rate has been activated. If not, it sends another
  242. * query to the firmware to get the current Tx data rate and updates
  243. * the driver value.
  244. */
  245. static int mwifiex_ret_tx_rate_cfg(struct mwifiex_private *priv,
  246. struct host_cmd_ds_command *resp,
  247. struct mwifiex_rate_cfg *ds_rate)
  248. {
  249. struct host_cmd_ds_tx_rate_cfg *rate_cfg = &resp->params.tx_rate_cfg;
  250. struct mwifiex_rate_scope *rate_scope;
  251. struct mwifiex_ie_types_header *head;
  252. u16 tlv, tlv_buf_len;
  253. u8 *tlv_buf;
  254. u32 i;
  255. int ret = 0;
  256. tlv_buf = ((u8 *)rate_cfg) +
  257. sizeof(struct host_cmd_ds_tx_rate_cfg);
  258. tlv_buf_len = *(u16 *) (tlv_buf + sizeof(u16));
  259. while (tlv_buf && tlv_buf_len > 0) {
  260. tlv = (*tlv_buf);
  261. tlv = tlv | (*(tlv_buf + 1) << 8);
  262. switch (tlv) {
  263. case TLV_TYPE_RATE_SCOPE:
  264. rate_scope = (struct mwifiex_rate_scope *) tlv_buf;
  265. priv->bitmap_rates[0] =
  266. le16_to_cpu(rate_scope->hr_dsss_rate_bitmap);
  267. priv->bitmap_rates[1] =
  268. le16_to_cpu(rate_scope->ofdm_rate_bitmap);
  269. for (i = 0;
  270. i <
  271. sizeof(rate_scope->ht_mcs_rate_bitmap) /
  272. sizeof(u16); i++)
  273. priv->bitmap_rates[2 + i] =
  274. le16_to_cpu(rate_scope->
  275. ht_mcs_rate_bitmap[i]);
  276. break;
  277. /* Add RATE_DROP tlv here */
  278. }
  279. head = (struct mwifiex_ie_types_header *) tlv_buf;
  280. tlv_buf += le16_to_cpu(head->len) + sizeof(*head);
  281. tlv_buf_len -= le16_to_cpu(head->len);
  282. }
  283. priv->is_data_rate_auto = mwifiex_is_rate_auto(priv);
  284. if (priv->is_data_rate_auto)
  285. priv->data_rate = 0;
  286. else
  287. ret = mwifiex_send_cmd_async(priv,
  288. HostCmd_CMD_802_11_TX_RATE_QUERY,
  289. HostCmd_ACT_GEN_GET, 0, NULL);
  290. if (!ds_rate)
  291. return ret;
  292. if (le16_to_cpu(rate_cfg->action) == HostCmd_ACT_GEN_GET) {
  293. if (priv->is_data_rate_auto) {
  294. ds_rate->is_rate_auto = 1;
  295. return ret;
  296. }
  297. ds_rate->rate = mwifiex_get_rate_index(priv->bitmap_rates,
  298. sizeof(priv->bitmap_rates));
  299. if (ds_rate->rate >= MWIFIEX_RATE_BITMAP_OFDM0 &&
  300. ds_rate->rate <= MWIFIEX_RATE_BITMAP_OFDM7)
  301. ds_rate->rate -= (MWIFIEX_RATE_BITMAP_OFDM0 -
  302. MWIFIEX_RATE_INDEX_OFDM0);
  303. if (ds_rate->rate >= MWIFIEX_RATE_BITMAP_MCS0 &&
  304. ds_rate->rate <= MWIFIEX_RATE_BITMAP_MCS127)
  305. ds_rate->rate -= (MWIFIEX_RATE_BITMAP_MCS0 -
  306. MWIFIEX_RATE_INDEX_MCS0);
  307. }
  308. return ret;
  309. }
  310. /*
  311. * This function handles the command response of get Tx power level.
  312. *
  313. * Handling includes saving the maximum and minimum Tx power levels
  314. * in driver, as well as sending the values to user.
  315. */
  316. static int mwifiex_get_power_level(struct mwifiex_private *priv, void *data_buf)
  317. {
  318. int length, max_power = -1, min_power = -1;
  319. struct mwifiex_types_power_group *pg_tlv_hdr;
  320. struct mwifiex_power_group *pg;
  321. if (!data_buf)
  322. return -1;
  323. pg_tlv_hdr = (struct mwifiex_types_power_group *)
  324. ((u8 *) data_buf + sizeof(struct host_cmd_ds_txpwr_cfg));
  325. pg = (struct mwifiex_power_group *)
  326. ((u8 *) pg_tlv_hdr + sizeof(struct mwifiex_types_power_group));
  327. length = pg_tlv_hdr->length;
  328. if (length > 0) {
  329. max_power = pg->power_max;
  330. min_power = pg->power_min;
  331. length -= sizeof(struct mwifiex_power_group);
  332. }
  333. while (length) {
  334. pg++;
  335. if (max_power < pg->power_max)
  336. max_power = pg->power_max;
  337. if (min_power > pg->power_min)
  338. min_power = pg->power_min;
  339. length -= sizeof(struct mwifiex_power_group);
  340. }
  341. if (pg_tlv_hdr->length > 0) {
  342. priv->min_tx_power_level = (u8) min_power;
  343. priv->max_tx_power_level = (u8) max_power;
  344. }
  345. return 0;
  346. }
  347. /*
  348. * This function handles the command response of set/get Tx power
  349. * configurations.
  350. *
  351. * Handling includes changing the header fields into CPU format
  352. * and saving the current Tx power level in driver.
  353. */
  354. static int mwifiex_ret_tx_power_cfg(struct mwifiex_private *priv,
  355. struct host_cmd_ds_command *resp)
  356. {
  357. struct mwifiex_adapter *adapter = priv->adapter;
  358. struct host_cmd_ds_txpwr_cfg *txp_cfg = &resp->params.txp_cfg;
  359. struct mwifiex_types_power_group *pg_tlv_hdr;
  360. struct mwifiex_power_group *pg;
  361. u16 action = le16_to_cpu(txp_cfg->action);
  362. switch (action) {
  363. case HostCmd_ACT_GEN_GET:
  364. pg_tlv_hdr = (struct mwifiex_types_power_group *)
  365. ((u8 *) txp_cfg +
  366. sizeof(struct host_cmd_ds_txpwr_cfg));
  367. pg = (struct mwifiex_power_group *)
  368. ((u8 *) pg_tlv_hdr +
  369. sizeof(struct mwifiex_types_power_group));
  370. if (adapter->hw_status == MWIFIEX_HW_STATUS_INITIALIZING)
  371. mwifiex_get_power_level(priv, txp_cfg);
  372. priv->tx_power_level = (u16) pg->power_min;
  373. break;
  374. case HostCmd_ACT_GEN_SET:
  375. if (!le32_to_cpu(txp_cfg->mode))
  376. break;
  377. pg_tlv_hdr = (struct mwifiex_types_power_group *)
  378. ((u8 *) txp_cfg +
  379. sizeof(struct host_cmd_ds_txpwr_cfg));
  380. pg = (struct mwifiex_power_group *)
  381. ((u8 *) pg_tlv_hdr +
  382. sizeof(struct mwifiex_types_power_group));
  383. if (pg->power_max == pg->power_min)
  384. priv->tx_power_level = (u16) pg->power_min;
  385. break;
  386. default:
  387. dev_err(adapter->dev, "CMD_RESP: unknown cmd action %d\n",
  388. action);
  389. return 0;
  390. }
  391. dev_dbg(adapter->dev,
  392. "info: Current TxPower Level = %d, Max Power=%d, Min Power=%d\n",
  393. priv->tx_power_level, priv->max_tx_power_level,
  394. priv->min_tx_power_level);
  395. return 0;
  396. }
  397. /*
  398. * This function handles the command response of get RF Tx power.
  399. */
  400. static int mwifiex_ret_rf_tx_power(struct mwifiex_private *priv,
  401. struct host_cmd_ds_command *resp)
  402. {
  403. struct host_cmd_ds_rf_tx_pwr *txp = &resp->params.txp;
  404. u16 action = le16_to_cpu(txp->action);
  405. priv->tx_power_level = le16_to_cpu(txp->cur_level);
  406. if (action == HostCmd_ACT_GEN_GET) {
  407. priv->max_tx_power_level = txp->max_power;
  408. priv->min_tx_power_level = txp->min_power;
  409. }
  410. dev_dbg(priv->adapter->dev,
  411. "Current TxPower Level=%d, Max Power=%d, Min Power=%d\n",
  412. priv->tx_power_level, priv->max_tx_power_level,
  413. priv->min_tx_power_level);
  414. return 0;
  415. }
  416. /*
  417. * This function handles the command response of set/get MAC address.
  418. *
  419. * Handling includes saving the MAC address in driver.
  420. */
  421. static int mwifiex_ret_802_11_mac_address(struct mwifiex_private *priv,
  422. struct host_cmd_ds_command *resp)
  423. {
  424. struct host_cmd_ds_802_11_mac_address *cmd_mac_addr =
  425. &resp->params.mac_addr;
  426. memcpy(priv->curr_addr, cmd_mac_addr->mac_addr, ETH_ALEN);
  427. dev_dbg(priv->adapter->dev,
  428. "info: set mac address: %pM\n", priv->curr_addr);
  429. return 0;
  430. }
  431. /*
  432. * This function handles the command response of set/get MAC multicast
  433. * address.
  434. */
  435. static int mwifiex_ret_mac_multicast_adr(struct mwifiex_private *priv,
  436. struct host_cmd_ds_command *resp)
  437. {
  438. return 0;
  439. }
  440. /*
  441. * This function handles the command response of get Tx rate query.
  442. *
  443. * Handling includes changing the header fields into CPU format
  444. * and saving the Tx rate and HT information parameters in driver.
  445. *
  446. * Both rate configuration and current data rate can be retrieved
  447. * with this request.
  448. */
  449. static int mwifiex_ret_802_11_tx_rate_query(struct mwifiex_private *priv,
  450. struct host_cmd_ds_command *resp)
  451. {
  452. priv->tx_rate = resp->params.tx_rate.tx_rate;
  453. priv->tx_htinfo = resp->params.tx_rate.ht_info;
  454. if (!priv->is_data_rate_auto)
  455. priv->data_rate =
  456. mwifiex_index_to_data_rate(priv, priv->tx_rate,
  457. priv->tx_htinfo);
  458. return 0;
  459. }
  460. /*
  461. * This function handles the command response of a deauthenticate
  462. * command.
  463. *
  464. * If the deauthenticated MAC matches the current BSS MAC, the connection
  465. * state is reset.
  466. */
  467. static int mwifiex_ret_802_11_deauthenticate(struct mwifiex_private *priv,
  468. struct host_cmd_ds_command *resp)
  469. {
  470. struct mwifiex_adapter *adapter = priv->adapter;
  471. adapter->dbg.num_cmd_deauth++;
  472. if (!memcmp(resp->params.deauth.mac_addr,
  473. &priv->curr_bss_params.bss_descriptor.mac_address,
  474. sizeof(resp->params.deauth.mac_addr)))
  475. mwifiex_reset_connect_state(priv);
  476. return 0;
  477. }
  478. /*
  479. * This function handles the command response of ad-hoc stop.
  480. *
  481. * The function resets the connection state in driver.
  482. */
  483. static int mwifiex_ret_802_11_ad_hoc_stop(struct mwifiex_private *priv,
  484. struct host_cmd_ds_command *resp)
  485. {
  486. mwifiex_reset_connect_state(priv);
  487. return 0;
  488. }
  489. /*
  490. * This function handles the command response of set/get key material.
  491. *
  492. * Handling includes updating the driver parameters to reflect the
  493. * changes.
  494. */
  495. static int mwifiex_ret_802_11_key_material(struct mwifiex_private *priv,
  496. struct host_cmd_ds_command *resp)
  497. {
  498. struct host_cmd_ds_802_11_key_material *key =
  499. &resp->params.key_material;
  500. if (le16_to_cpu(key->action) == HostCmd_ACT_GEN_SET) {
  501. if ((le16_to_cpu(key->key_param_set.key_info) & KEY_MCAST)) {
  502. dev_dbg(priv->adapter->dev, "info: key: GTK is set\n");
  503. priv->wpa_is_gtk_set = true;
  504. priv->scan_block = false;
  505. }
  506. }
  507. memset(priv->aes_key.key_param_set.key, 0,
  508. sizeof(key->key_param_set.key));
  509. priv->aes_key.key_param_set.key_len = key->key_param_set.key_len;
  510. memcpy(priv->aes_key.key_param_set.key, key->key_param_set.key,
  511. le16_to_cpu(priv->aes_key.key_param_set.key_len));
  512. return 0;
  513. }
  514. /*
  515. * This function handles the command response of get 11d domain information.
  516. */
  517. static int mwifiex_ret_802_11d_domain_info(struct mwifiex_private *priv,
  518. struct host_cmd_ds_command *resp)
  519. {
  520. struct host_cmd_ds_802_11d_domain_info_rsp *domain_info =
  521. &resp->params.domain_info_resp;
  522. struct mwifiex_ietypes_domain_param_set *domain = &domain_info->domain;
  523. u16 action = le16_to_cpu(domain_info->action);
  524. u8 no_of_triplet;
  525. no_of_triplet = (u8) ((le16_to_cpu(domain->header.len)
  526. - IEEE80211_COUNTRY_STRING_LEN)
  527. / sizeof(struct ieee80211_country_ie_triplet));
  528. dev_dbg(priv->adapter->dev,
  529. "info: 11D Domain Info Resp: no_of_triplet=%d\n",
  530. no_of_triplet);
  531. if (no_of_triplet > MWIFIEX_MAX_TRIPLET_802_11D) {
  532. dev_warn(priv->adapter->dev,
  533. "11D: invalid number of triplets %d returned\n",
  534. no_of_triplet);
  535. return -1;
  536. }
  537. switch (action) {
  538. case HostCmd_ACT_GEN_SET: /* Proc Set Action */
  539. break;
  540. case HostCmd_ACT_GEN_GET:
  541. break;
  542. default:
  543. dev_err(priv->adapter->dev,
  544. "11D: invalid action:%d\n", domain_info->action);
  545. return -1;
  546. }
  547. return 0;
  548. }
  549. /*
  550. * This function handles the command response of get RF channel.
  551. *
  552. * Handling includes changing the header fields into CPU format
  553. * and saving the new channel in driver.
  554. */
  555. static int mwifiex_ret_802_11_rf_channel(struct mwifiex_private *priv,
  556. struct host_cmd_ds_command *resp,
  557. u16 *data_buf)
  558. {
  559. struct host_cmd_ds_802_11_rf_channel *rf_channel =
  560. &resp->params.rf_channel;
  561. u16 new_channel = le16_to_cpu(rf_channel->current_channel);
  562. if (priv->curr_bss_params.bss_descriptor.channel != new_channel) {
  563. dev_dbg(priv->adapter->dev, "cmd: Channel Switch: %d to %d\n",
  564. priv->curr_bss_params.bss_descriptor.channel,
  565. new_channel);
  566. /* Update the channel again */
  567. priv->curr_bss_params.bss_descriptor.channel = new_channel;
  568. }
  569. if (data_buf)
  570. *data_buf = new_channel;
  571. return 0;
  572. }
  573. /*
  574. * This function handles the command response of get extended version.
  575. *
  576. * Handling includes forming the extended version string and sending it
  577. * to application.
  578. */
  579. static int mwifiex_ret_ver_ext(struct mwifiex_private *priv,
  580. struct host_cmd_ds_command *resp,
  581. struct host_cmd_ds_version_ext *version_ext)
  582. {
  583. struct host_cmd_ds_version_ext *ver_ext = &resp->params.verext;
  584. if (version_ext) {
  585. version_ext->version_str_sel = ver_ext->version_str_sel;
  586. memcpy(version_ext->version_str, ver_ext->version_str,
  587. sizeof(char) * 128);
  588. memcpy(priv->version_str, ver_ext->version_str, 128);
  589. }
  590. return 0;
  591. }
  592. /*
  593. * This function handles the command response of register access.
  594. *
  595. * The register value and offset are returned to the user. For EEPROM
  596. * access, the byte count is also returned.
  597. */
  598. static int mwifiex_ret_reg_access(u16 type, struct host_cmd_ds_command *resp,
  599. void *data_buf)
  600. {
  601. struct mwifiex_ds_reg_rw *reg_rw;
  602. struct mwifiex_ds_read_eeprom *eeprom;
  603. union reg {
  604. struct host_cmd_ds_mac_reg_access *mac;
  605. struct host_cmd_ds_bbp_reg_access *bbp;
  606. struct host_cmd_ds_rf_reg_access *rf;
  607. struct host_cmd_ds_pmic_reg_access *pmic;
  608. struct host_cmd_ds_802_11_eeprom_access *eeprom;
  609. } r;
  610. if (!data_buf)
  611. return 0;
  612. reg_rw = data_buf;
  613. eeprom = data_buf;
  614. switch (type) {
  615. case HostCmd_CMD_MAC_REG_ACCESS:
  616. r.mac = &resp->params.mac_reg;
  617. reg_rw->offset = cpu_to_le32((u32) le16_to_cpu(r.mac->offset));
  618. reg_rw->value = r.mac->value;
  619. break;
  620. case HostCmd_CMD_BBP_REG_ACCESS:
  621. r.bbp = &resp->params.bbp_reg;
  622. reg_rw->offset = cpu_to_le32((u32) le16_to_cpu(r.bbp->offset));
  623. reg_rw->value = cpu_to_le32((u32) r.bbp->value);
  624. break;
  625. case HostCmd_CMD_RF_REG_ACCESS:
  626. r.rf = &resp->params.rf_reg;
  627. reg_rw->offset = cpu_to_le32((u32) le16_to_cpu(r.rf->offset));
  628. reg_rw->value = cpu_to_le32((u32) r.bbp->value);
  629. break;
  630. case HostCmd_CMD_PMIC_REG_ACCESS:
  631. r.pmic = &resp->params.pmic_reg;
  632. reg_rw->offset = cpu_to_le32((u32) le16_to_cpu(r.pmic->offset));
  633. reg_rw->value = cpu_to_le32((u32) r.pmic->value);
  634. break;
  635. case HostCmd_CMD_CAU_REG_ACCESS:
  636. r.rf = &resp->params.rf_reg;
  637. reg_rw->offset = cpu_to_le32((u32) le16_to_cpu(r.rf->offset));
  638. reg_rw->value = cpu_to_le32((u32) r.rf->value);
  639. break;
  640. case HostCmd_CMD_802_11_EEPROM_ACCESS:
  641. r.eeprom = &resp->params.eeprom;
  642. pr_debug("info: EEPROM read len=%x\n", r.eeprom->byte_count);
  643. if (le16_to_cpu(eeprom->byte_count) <
  644. le16_to_cpu(r.eeprom->byte_count)) {
  645. eeprom->byte_count = cpu_to_le16(0);
  646. pr_debug("info: EEPROM read length is too big\n");
  647. return -1;
  648. }
  649. eeprom->offset = r.eeprom->offset;
  650. eeprom->byte_count = r.eeprom->byte_count;
  651. if (le16_to_cpu(eeprom->byte_count) > 0)
  652. memcpy(&eeprom->value, &r.eeprom->value,
  653. le16_to_cpu(r.eeprom->byte_count));
  654. break;
  655. default:
  656. return -1;
  657. }
  658. return 0;
  659. }
  660. /*
  661. * This function handles the command response of get IBSS coalescing status.
  662. *
  663. * If the received BSSID is different than the current one, the current BSSID,
  664. * beacon interval, ATIM window and ERP information are updated, along with
  665. * changing the ad-hoc state accordingly.
  666. */
  667. static int mwifiex_ret_ibss_coalescing_status(struct mwifiex_private *priv,
  668. struct host_cmd_ds_command *resp)
  669. {
  670. struct host_cmd_ds_802_11_ibss_status *ibss_coal_resp =
  671. &(resp->params.ibss_coalescing);
  672. u8 zero_mac[ETH_ALEN] = { 0, 0, 0, 0, 0, 0 };
  673. if (le16_to_cpu(ibss_coal_resp->action) == HostCmd_ACT_GEN_SET)
  674. return 0;
  675. dev_dbg(priv->adapter->dev,
  676. "info: new BSSID %pM\n", ibss_coal_resp->bssid);
  677. /* If rsp has NULL BSSID, Just return..... No Action */
  678. if (!memcmp(ibss_coal_resp->bssid, zero_mac, ETH_ALEN)) {
  679. dev_warn(priv->adapter->dev, "new BSSID is NULL\n");
  680. return 0;
  681. }
  682. /* If BSSID is diff, modify current BSS parameters */
  683. if (memcmp(priv->curr_bss_params.bss_descriptor.mac_address,
  684. ibss_coal_resp->bssid, ETH_ALEN)) {
  685. /* BSSID */
  686. memcpy(priv->curr_bss_params.bss_descriptor.mac_address,
  687. ibss_coal_resp->bssid, ETH_ALEN);
  688. /* Beacon Interval */
  689. priv->curr_bss_params.bss_descriptor.beacon_period
  690. = le16_to_cpu(ibss_coal_resp->beacon_interval);
  691. /* ERP Information */
  692. priv->curr_bss_params.bss_descriptor.erp_flags =
  693. (u8) le16_to_cpu(ibss_coal_resp->use_g_rate_protect);
  694. priv->adhoc_state = ADHOC_COALESCED;
  695. }
  696. return 0;
  697. }
  698. /*
  699. * This function handles the command response for subscribe event command.
  700. */
  701. static int mwifiex_ret_subsc_evt(struct mwifiex_private *priv,
  702. struct host_cmd_ds_command *resp,
  703. struct mwifiex_ds_misc_subsc_evt *sub_event)
  704. {
  705. struct host_cmd_ds_802_11_subsc_evt *cmd_sub_event =
  706. &resp->params.subsc_evt;
  707. /* For every subscribe event command (Get/Set/Clear), FW reports the
  708. * current set of subscribed events*/
  709. dev_dbg(priv->adapter->dev, "Bitmap of currently subscribed events: %16x\n",
  710. le16_to_cpu(cmd_sub_event->events));
  711. /*Return the subscribed event info for a Get request*/
  712. if (sub_event)
  713. sub_event->events = le16_to_cpu(cmd_sub_event->events);
  714. return 0;
  715. }
  716. /*
  717. * This function handles the command responses.
  718. *
  719. * This is a generic function, which calls command specific
  720. * response handlers based on the command ID.
  721. */
  722. int mwifiex_process_sta_cmdresp(struct mwifiex_private *priv, u16 cmdresp_no,
  723. struct host_cmd_ds_command *resp)
  724. {
  725. int ret = 0;
  726. struct mwifiex_adapter *adapter = priv->adapter;
  727. void *data_buf = adapter->curr_cmd->data_buf;
  728. /* If the command is not successful, cleanup and return failure */
  729. if (resp->result != HostCmd_RESULT_OK) {
  730. mwifiex_process_cmdresp_error(priv, resp);
  731. return -1;
  732. }
  733. /* Command successful, handle response */
  734. switch (cmdresp_no) {
  735. case HostCmd_CMD_GET_HW_SPEC:
  736. ret = mwifiex_ret_get_hw_spec(priv, resp);
  737. break;
  738. case HostCmd_CMD_MAC_CONTROL:
  739. break;
  740. case HostCmd_CMD_802_11_MAC_ADDRESS:
  741. ret = mwifiex_ret_802_11_mac_address(priv, resp);
  742. break;
  743. case HostCmd_CMD_MAC_MULTICAST_ADR:
  744. ret = mwifiex_ret_mac_multicast_adr(priv, resp);
  745. break;
  746. case HostCmd_CMD_TX_RATE_CFG:
  747. ret = mwifiex_ret_tx_rate_cfg(priv, resp, data_buf);
  748. break;
  749. case HostCmd_CMD_802_11_SCAN:
  750. ret = mwifiex_ret_802_11_scan(priv, resp);
  751. adapter->curr_cmd->wait_q_enabled = false;
  752. break;
  753. case HostCmd_CMD_802_11_BG_SCAN_QUERY:
  754. ret = mwifiex_ret_802_11_scan(priv, resp);
  755. dev_dbg(adapter->dev,
  756. "info: CMD_RESP: BG_SCAN result is ready!\n");
  757. break;
  758. case HostCmd_CMD_TXPWR_CFG:
  759. ret = mwifiex_ret_tx_power_cfg(priv, resp);
  760. break;
  761. case HostCmd_CMD_RF_TX_PWR:
  762. ret = mwifiex_ret_rf_tx_power(priv, resp);
  763. break;
  764. case HostCmd_CMD_802_11_PS_MODE_ENH:
  765. ret = mwifiex_ret_enh_power_mode(priv, resp, data_buf);
  766. break;
  767. case HostCmd_CMD_802_11_HS_CFG_ENH:
  768. ret = mwifiex_ret_802_11_hs_cfg(priv, resp);
  769. break;
  770. case HostCmd_CMD_802_11_ASSOCIATE:
  771. ret = mwifiex_ret_802_11_associate(priv, resp);
  772. break;
  773. case HostCmd_CMD_802_11_DEAUTHENTICATE:
  774. ret = mwifiex_ret_802_11_deauthenticate(priv, resp);
  775. break;
  776. case HostCmd_CMD_802_11_AD_HOC_START:
  777. case HostCmd_CMD_802_11_AD_HOC_JOIN:
  778. ret = mwifiex_ret_802_11_ad_hoc(priv, resp);
  779. break;
  780. case HostCmd_CMD_802_11_AD_HOC_STOP:
  781. ret = mwifiex_ret_802_11_ad_hoc_stop(priv, resp);
  782. break;
  783. case HostCmd_CMD_802_11_GET_LOG:
  784. ret = mwifiex_ret_get_log(priv, resp, data_buf);
  785. break;
  786. case HostCmd_CMD_RSSI_INFO:
  787. ret = mwifiex_ret_802_11_rssi_info(priv, resp);
  788. break;
  789. case HostCmd_CMD_802_11_SNMP_MIB:
  790. ret = mwifiex_ret_802_11_snmp_mib(priv, resp, data_buf);
  791. break;
  792. case HostCmd_CMD_802_11_TX_RATE_QUERY:
  793. ret = mwifiex_ret_802_11_tx_rate_query(priv, resp);
  794. break;
  795. case HostCmd_CMD_802_11_RF_CHANNEL:
  796. ret = mwifiex_ret_802_11_rf_channel(priv, resp, data_buf);
  797. break;
  798. case HostCmd_CMD_VERSION_EXT:
  799. ret = mwifiex_ret_ver_ext(priv, resp, data_buf);
  800. break;
  801. case HostCmd_CMD_FUNC_INIT:
  802. case HostCmd_CMD_FUNC_SHUTDOWN:
  803. break;
  804. case HostCmd_CMD_802_11_KEY_MATERIAL:
  805. ret = mwifiex_ret_802_11_key_material(priv, resp);
  806. break;
  807. case HostCmd_CMD_802_11D_DOMAIN_INFO:
  808. ret = mwifiex_ret_802_11d_domain_info(priv, resp);
  809. break;
  810. case HostCmd_CMD_11N_ADDBA_REQ:
  811. ret = mwifiex_ret_11n_addba_req(priv, resp);
  812. break;
  813. case HostCmd_CMD_11N_DELBA:
  814. ret = mwifiex_ret_11n_delba(priv, resp);
  815. break;
  816. case HostCmd_CMD_11N_ADDBA_RSP:
  817. ret = mwifiex_ret_11n_addba_resp(priv, resp);
  818. break;
  819. case HostCmd_CMD_RECONFIGURE_TX_BUFF:
  820. adapter->tx_buf_size = (u16) le16_to_cpu(resp->params.
  821. tx_buf.buff_size);
  822. adapter->tx_buf_size = (adapter->tx_buf_size
  823. / MWIFIEX_SDIO_BLOCK_SIZE)
  824. * MWIFIEX_SDIO_BLOCK_SIZE;
  825. adapter->curr_tx_buf_size = adapter->tx_buf_size;
  826. dev_dbg(adapter->dev,
  827. "cmd: max_tx_buf_size=%d, tx_buf_size=%d\n",
  828. adapter->max_tx_buf_size, adapter->tx_buf_size);
  829. if (adapter->if_ops.update_mp_end_port)
  830. adapter->if_ops.update_mp_end_port(adapter,
  831. le16_to_cpu(resp->params.tx_buf.mp_end_port));
  832. break;
  833. case HostCmd_CMD_AMSDU_AGGR_CTRL:
  834. ret = mwifiex_ret_amsdu_aggr_ctrl(resp, data_buf);
  835. break;
  836. case HostCmd_CMD_WMM_GET_STATUS:
  837. ret = mwifiex_ret_wmm_get_status(priv, resp);
  838. break;
  839. case HostCmd_CMD_802_11_IBSS_COALESCING_STATUS:
  840. ret = mwifiex_ret_ibss_coalescing_status(priv, resp);
  841. break;
  842. case HostCmd_CMD_MAC_REG_ACCESS:
  843. case HostCmd_CMD_BBP_REG_ACCESS:
  844. case HostCmd_CMD_RF_REG_ACCESS:
  845. case HostCmd_CMD_PMIC_REG_ACCESS:
  846. case HostCmd_CMD_CAU_REG_ACCESS:
  847. case HostCmd_CMD_802_11_EEPROM_ACCESS:
  848. ret = mwifiex_ret_reg_access(cmdresp_no, resp, data_buf);
  849. break;
  850. case HostCmd_CMD_SET_BSS_MODE:
  851. break;
  852. case HostCmd_CMD_11N_CFG:
  853. ret = mwifiex_ret_11n_cfg(resp, data_buf);
  854. break;
  855. case HostCmd_CMD_PCIE_DESC_DETAILS:
  856. break;
  857. case HostCmd_CMD_802_11_SUBSCRIBE_EVENT:
  858. ret = mwifiex_ret_subsc_evt(priv, resp, data_buf);
  859. break;
  860. case HostCmd_CMD_UAP_SYS_CONFIG:
  861. break;
  862. case HostCmd_CMD_UAP_BSS_START:
  863. priv->bss_started = 1;
  864. break;
  865. case HostCmd_CMD_UAP_BSS_STOP:
  866. priv->bss_started = 0;
  867. break;
  868. default:
  869. dev_err(adapter->dev, "CMD_RESP: unknown cmd response %#x\n",
  870. resp->command);
  871. break;
  872. }
  873. return ret;
  874. }