sta_cmd.c 49 KB

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  1. /*
  2. * Marvell Wireless LAN device driver: station command 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. #include "11ac.h"
  27. /*
  28. * This function prepares command to set/get RSSI information.
  29. *
  30. * Preparation includes -
  31. * - Setting command ID, action and proper size
  32. * - Setting data/beacon average factors
  33. * - Resetting SNR/NF/RSSI values in private structure
  34. * - Ensuring correct endian-ness
  35. */
  36. static int
  37. mwifiex_cmd_802_11_rssi_info(struct mwifiex_private *priv,
  38. struct host_cmd_ds_command *cmd, u16 cmd_action)
  39. {
  40. cmd->command = cpu_to_le16(HostCmd_CMD_RSSI_INFO);
  41. cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_802_11_rssi_info) +
  42. S_DS_GEN);
  43. cmd->params.rssi_info.action = cpu_to_le16(cmd_action);
  44. cmd->params.rssi_info.ndata = cpu_to_le16(priv->data_avg_factor);
  45. cmd->params.rssi_info.nbcn = cpu_to_le16(priv->bcn_avg_factor);
  46. /* Reset SNR/NF/RSSI values in private structure */
  47. priv->data_rssi_last = 0;
  48. priv->data_nf_last = 0;
  49. priv->data_rssi_avg = 0;
  50. priv->data_nf_avg = 0;
  51. priv->bcn_rssi_last = 0;
  52. priv->bcn_nf_last = 0;
  53. priv->bcn_rssi_avg = 0;
  54. priv->bcn_nf_avg = 0;
  55. return 0;
  56. }
  57. /*
  58. * This function prepares command to set MAC control.
  59. *
  60. * Preparation includes -
  61. * - Setting command ID, action and proper size
  62. * - Ensuring correct endian-ness
  63. */
  64. static int mwifiex_cmd_mac_control(struct mwifiex_private *priv,
  65. struct host_cmd_ds_command *cmd,
  66. u16 cmd_action, u16 *action)
  67. {
  68. struct host_cmd_ds_mac_control *mac_ctrl = &cmd->params.mac_ctrl;
  69. if (cmd_action != HostCmd_ACT_GEN_SET) {
  70. dev_err(priv->adapter->dev,
  71. "mac_control: only support set cmd\n");
  72. return -1;
  73. }
  74. cmd->command = cpu_to_le16(HostCmd_CMD_MAC_CONTROL);
  75. cmd->size =
  76. cpu_to_le16(sizeof(struct host_cmd_ds_mac_control) + S_DS_GEN);
  77. mac_ctrl->action = cpu_to_le16(*action);
  78. return 0;
  79. }
  80. /*
  81. * This function prepares command to set/get SNMP MIB.
  82. *
  83. * Preparation includes -
  84. * - Setting command ID, action and proper size
  85. * - Setting SNMP MIB OID number and value
  86. * (as required)
  87. * - Ensuring correct endian-ness
  88. *
  89. * The following SNMP MIB OIDs are supported -
  90. * - FRAG_THRESH_I : Fragmentation threshold
  91. * - RTS_THRESH_I : RTS threshold
  92. * - SHORT_RETRY_LIM_I : Short retry limit
  93. * - DOT11D_I : 11d support
  94. */
  95. static int mwifiex_cmd_802_11_snmp_mib(struct mwifiex_private *priv,
  96. struct host_cmd_ds_command *cmd,
  97. u16 cmd_action, u32 cmd_oid,
  98. u16 *ul_temp)
  99. {
  100. struct host_cmd_ds_802_11_snmp_mib *snmp_mib = &cmd->params.smib;
  101. dev_dbg(priv->adapter->dev, "cmd: SNMP_CMD: cmd_oid = 0x%x\n", cmd_oid);
  102. cmd->command = cpu_to_le16(HostCmd_CMD_802_11_SNMP_MIB);
  103. cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_802_11_snmp_mib)
  104. - 1 + S_DS_GEN);
  105. snmp_mib->oid = cpu_to_le16((u16)cmd_oid);
  106. if (cmd_action == HostCmd_ACT_GEN_GET) {
  107. snmp_mib->query_type = cpu_to_le16(HostCmd_ACT_GEN_GET);
  108. snmp_mib->buf_size = cpu_to_le16(MAX_SNMP_BUF_SIZE);
  109. le16_add_cpu(&cmd->size, MAX_SNMP_BUF_SIZE);
  110. } else if (cmd_action == HostCmd_ACT_GEN_SET) {
  111. snmp_mib->query_type = cpu_to_le16(HostCmd_ACT_GEN_SET);
  112. snmp_mib->buf_size = cpu_to_le16(sizeof(u16));
  113. *((__le16 *) (snmp_mib->value)) = cpu_to_le16(*ul_temp);
  114. le16_add_cpu(&cmd->size, sizeof(u16));
  115. }
  116. dev_dbg(priv->adapter->dev,
  117. "cmd: SNMP_CMD: Action=0x%x, OID=0x%x, OIDSize=0x%x,"
  118. " Value=0x%x\n",
  119. cmd_action, cmd_oid, le16_to_cpu(snmp_mib->buf_size),
  120. le16_to_cpu(*(__le16 *) snmp_mib->value));
  121. return 0;
  122. }
  123. /*
  124. * This function prepares command to get log.
  125. *
  126. * Preparation includes -
  127. * - Setting command ID and proper size
  128. * - Ensuring correct endian-ness
  129. */
  130. static int
  131. mwifiex_cmd_802_11_get_log(struct host_cmd_ds_command *cmd)
  132. {
  133. cmd->command = cpu_to_le16(HostCmd_CMD_802_11_GET_LOG);
  134. cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_802_11_get_log) +
  135. S_DS_GEN);
  136. return 0;
  137. }
  138. /*
  139. * This function prepares command to set/get Tx data rate configuration.
  140. *
  141. * Preparation includes -
  142. * - Setting command ID, action and proper size
  143. * - Setting configuration index, rate scope and rate drop pattern
  144. * parameters (as required)
  145. * - Ensuring correct endian-ness
  146. */
  147. static int mwifiex_cmd_tx_rate_cfg(struct mwifiex_private *priv,
  148. struct host_cmd_ds_command *cmd,
  149. u16 cmd_action, u16 *pbitmap_rates)
  150. {
  151. struct host_cmd_ds_tx_rate_cfg *rate_cfg = &cmd->params.tx_rate_cfg;
  152. struct mwifiex_rate_scope *rate_scope;
  153. struct mwifiex_rate_drop_pattern *rate_drop;
  154. u32 i;
  155. cmd->command = cpu_to_le16(HostCmd_CMD_TX_RATE_CFG);
  156. rate_cfg->action = cpu_to_le16(cmd_action);
  157. rate_cfg->cfg_index = 0;
  158. rate_scope = (struct mwifiex_rate_scope *) ((u8 *) rate_cfg +
  159. sizeof(struct host_cmd_ds_tx_rate_cfg));
  160. rate_scope->type = cpu_to_le16(TLV_TYPE_RATE_SCOPE);
  161. rate_scope->length = cpu_to_le16
  162. (sizeof(*rate_scope) - sizeof(struct mwifiex_ie_types_header));
  163. if (pbitmap_rates != NULL) {
  164. rate_scope->hr_dsss_rate_bitmap = cpu_to_le16(pbitmap_rates[0]);
  165. rate_scope->ofdm_rate_bitmap = cpu_to_le16(pbitmap_rates[1]);
  166. for (i = 0;
  167. i < sizeof(rate_scope->ht_mcs_rate_bitmap) / sizeof(u16);
  168. i++)
  169. rate_scope->ht_mcs_rate_bitmap[i] =
  170. cpu_to_le16(pbitmap_rates[2 + i]);
  171. } else {
  172. rate_scope->hr_dsss_rate_bitmap =
  173. cpu_to_le16(priv->bitmap_rates[0]);
  174. rate_scope->ofdm_rate_bitmap =
  175. cpu_to_le16(priv->bitmap_rates[1]);
  176. for (i = 0;
  177. i < sizeof(rate_scope->ht_mcs_rate_bitmap) / sizeof(u16);
  178. i++)
  179. rate_scope->ht_mcs_rate_bitmap[i] =
  180. cpu_to_le16(priv->bitmap_rates[2 + i]);
  181. }
  182. rate_drop = (struct mwifiex_rate_drop_pattern *) ((u8 *) rate_scope +
  183. sizeof(struct mwifiex_rate_scope));
  184. rate_drop->type = cpu_to_le16(TLV_TYPE_RATE_DROP_CONTROL);
  185. rate_drop->length = cpu_to_le16(sizeof(rate_drop->rate_drop_mode));
  186. rate_drop->rate_drop_mode = 0;
  187. cmd->size =
  188. cpu_to_le16(S_DS_GEN + sizeof(struct host_cmd_ds_tx_rate_cfg) +
  189. sizeof(struct mwifiex_rate_scope) +
  190. sizeof(struct mwifiex_rate_drop_pattern));
  191. return 0;
  192. }
  193. /*
  194. * This function prepares command to set/get Tx power configuration.
  195. *
  196. * Preparation includes -
  197. * - Setting command ID, action and proper size
  198. * - Setting Tx power mode, power group TLV
  199. * (as required)
  200. * - Ensuring correct endian-ness
  201. */
  202. static int mwifiex_cmd_tx_power_cfg(struct host_cmd_ds_command *cmd,
  203. u16 cmd_action,
  204. struct host_cmd_ds_txpwr_cfg *txp)
  205. {
  206. struct mwifiex_types_power_group *pg_tlv;
  207. struct host_cmd_ds_txpwr_cfg *cmd_txp_cfg = &cmd->params.txp_cfg;
  208. cmd->command = cpu_to_le16(HostCmd_CMD_TXPWR_CFG);
  209. cmd->size =
  210. cpu_to_le16(S_DS_GEN + sizeof(struct host_cmd_ds_txpwr_cfg));
  211. switch (cmd_action) {
  212. case HostCmd_ACT_GEN_SET:
  213. if (txp->mode) {
  214. pg_tlv = (struct mwifiex_types_power_group
  215. *) ((unsigned long) txp +
  216. sizeof(struct host_cmd_ds_txpwr_cfg));
  217. memmove(cmd_txp_cfg, txp,
  218. sizeof(struct host_cmd_ds_txpwr_cfg) +
  219. sizeof(struct mwifiex_types_power_group) +
  220. pg_tlv->length);
  221. pg_tlv = (struct mwifiex_types_power_group *) ((u8 *)
  222. cmd_txp_cfg +
  223. sizeof(struct host_cmd_ds_txpwr_cfg));
  224. cmd->size = cpu_to_le16(le16_to_cpu(cmd->size) +
  225. sizeof(struct mwifiex_types_power_group) +
  226. pg_tlv->length);
  227. } else {
  228. memmove(cmd_txp_cfg, txp, sizeof(*txp));
  229. }
  230. cmd_txp_cfg->action = cpu_to_le16(cmd_action);
  231. break;
  232. case HostCmd_ACT_GEN_GET:
  233. cmd_txp_cfg->action = cpu_to_le16(cmd_action);
  234. break;
  235. }
  236. return 0;
  237. }
  238. /*
  239. * This function prepares command to get RF Tx power.
  240. */
  241. static int mwifiex_cmd_rf_tx_power(struct mwifiex_private *priv,
  242. struct host_cmd_ds_command *cmd,
  243. u16 cmd_action, void *data_buf)
  244. {
  245. struct host_cmd_ds_rf_tx_pwr *txp = &cmd->params.txp;
  246. cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_rf_tx_pwr)
  247. + S_DS_GEN);
  248. cmd->command = cpu_to_le16(HostCmd_CMD_RF_TX_PWR);
  249. txp->action = cpu_to_le16(cmd_action);
  250. return 0;
  251. }
  252. /*
  253. * This function prepares command to set rf antenna.
  254. */
  255. static int mwifiex_cmd_rf_antenna(struct mwifiex_private *priv,
  256. struct host_cmd_ds_command *cmd,
  257. u16 cmd_action,
  258. struct mwifiex_ds_ant_cfg *ant_cfg)
  259. {
  260. struct host_cmd_ds_rf_ant_mimo *ant_mimo = &cmd->params.ant_mimo;
  261. struct host_cmd_ds_rf_ant_siso *ant_siso = &cmd->params.ant_siso;
  262. cmd->command = cpu_to_le16(HostCmd_CMD_RF_ANTENNA);
  263. if (cmd_action != HostCmd_ACT_GEN_SET)
  264. return 0;
  265. if (priv->adapter->hw_dev_mcs_support == HT_STREAM_2X2) {
  266. cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_rf_ant_mimo) +
  267. S_DS_GEN);
  268. ant_mimo->action_tx = cpu_to_le16(HostCmd_ACT_SET_TX);
  269. ant_mimo->tx_ant_mode = cpu_to_le16((u16)ant_cfg->tx_ant);
  270. ant_mimo->action_rx = cpu_to_le16(HostCmd_ACT_SET_RX);
  271. ant_mimo->rx_ant_mode = cpu_to_le16((u16)ant_cfg->rx_ant);
  272. } else {
  273. cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_rf_ant_siso) +
  274. S_DS_GEN);
  275. ant_siso->action = cpu_to_le16(HostCmd_ACT_SET_BOTH);
  276. ant_siso->ant_mode = cpu_to_le16((u16)ant_cfg->tx_ant);
  277. }
  278. return 0;
  279. }
  280. /*
  281. * This function prepares command to set Host Sleep configuration.
  282. *
  283. * Preparation includes -
  284. * - Setting command ID and proper size
  285. * - Setting Host Sleep action, conditions, ARP filters
  286. * (as required)
  287. * - Ensuring correct endian-ness
  288. */
  289. static int
  290. mwifiex_cmd_802_11_hs_cfg(struct mwifiex_private *priv,
  291. struct host_cmd_ds_command *cmd,
  292. u16 cmd_action,
  293. struct mwifiex_hs_config_param *hscfg_param)
  294. {
  295. struct mwifiex_adapter *adapter = priv->adapter;
  296. struct host_cmd_ds_802_11_hs_cfg_enh *hs_cfg = &cmd->params.opt_hs_cfg;
  297. u16 hs_activate = false;
  298. if (!hscfg_param)
  299. /* New Activate command */
  300. hs_activate = true;
  301. cmd->command = cpu_to_le16(HostCmd_CMD_802_11_HS_CFG_ENH);
  302. if (!hs_activate &&
  303. (hscfg_param->conditions != cpu_to_le32(HS_CFG_CANCEL)) &&
  304. ((adapter->arp_filter_size > 0) &&
  305. (adapter->arp_filter_size <= ARP_FILTER_MAX_BUF_SIZE))) {
  306. dev_dbg(adapter->dev,
  307. "cmd: Attach %d bytes ArpFilter to HSCfg cmd\n",
  308. adapter->arp_filter_size);
  309. memcpy(((u8 *) hs_cfg) +
  310. sizeof(struct host_cmd_ds_802_11_hs_cfg_enh),
  311. adapter->arp_filter, adapter->arp_filter_size);
  312. cmd->size = cpu_to_le16
  313. (adapter->arp_filter_size +
  314. sizeof(struct host_cmd_ds_802_11_hs_cfg_enh)
  315. + S_DS_GEN);
  316. } else {
  317. cmd->size = cpu_to_le16(S_DS_GEN + sizeof(struct
  318. host_cmd_ds_802_11_hs_cfg_enh));
  319. }
  320. if (hs_activate) {
  321. hs_cfg->action = cpu_to_le16(HS_ACTIVATE);
  322. hs_cfg->params.hs_activate.resp_ctrl = RESP_NEEDED;
  323. } else {
  324. hs_cfg->action = cpu_to_le16(HS_CONFIGURE);
  325. hs_cfg->params.hs_config.conditions = hscfg_param->conditions;
  326. hs_cfg->params.hs_config.gpio = hscfg_param->gpio;
  327. hs_cfg->params.hs_config.gap = hscfg_param->gap;
  328. dev_dbg(adapter->dev,
  329. "cmd: HS_CFG_CMD: condition:0x%x gpio:0x%x gap:0x%x\n",
  330. hs_cfg->params.hs_config.conditions,
  331. hs_cfg->params.hs_config.gpio,
  332. hs_cfg->params.hs_config.gap);
  333. }
  334. return 0;
  335. }
  336. /*
  337. * This function prepares command to set/get MAC address.
  338. *
  339. * Preparation includes -
  340. * - Setting command ID, action and proper size
  341. * - Setting MAC address (for SET only)
  342. * - Ensuring correct endian-ness
  343. */
  344. static int mwifiex_cmd_802_11_mac_address(struct mwifiex_private *priv,
  345. struct host_cmd_ds_command *cmd,
  346. u16 cmd_action)
  347. {
  348. cmd->command = cpu_to_le16(HostCmd_CMD_802_11_MAC_ADDRESS);
  349. cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_802_11_mac_address) +
  350. S_DS_GEN);
  351. cmd->result = 0;
  352. cmd->params.mac_addr.action = cpu_to_le16(cmd_action);
  353. if (cmd_action == HostCmd_ACT_GEN_SET)
  354. memcpy(cmd->params.mac_addr.mac_addr, priv->curr_addr,
  355. ETH_ALEN);
  356. return 0;
  357. }
  358. /*
  359. * This function prepares command to set MAC multicast address.
  360. *
  361. * Preparation includes -
  362. * - Setting command ID, action and proper size
  363. * - Setting MAC multicast address
  364. * - Ensuring correct endian-ness
  365. */
  366. static int
  367. mwifiex_cmd_mac_multicast_adr(struct host_cmd_ds_command *cmd,
  368. u16 cmd_action,
  369. struct mwifiex_multicast_list *mcast_list)
  370. {
  371. struct host_cmd_ds_mac_multicast_adr *mcast_addr = &cmd->params.mc_addr;
  372. cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_mac_multicast_adr) +
  373. S_DS_GEN);
  374. cmd->command = cpu_to_le16(HostCmd_CMD_MAC_MULTICAST_ADR);
  375. mcast_addr->action = cpu_to_le16(cmd_action);
  376. mcast_addr->num_of_adrs =
  377. cpu_to_le16((u16) mcast_list->num_multicast_addr);
  378. memcpy(mcast_addr->mac_list, mcast_list->mac_list,
  379. mcast_list->num_multicast_addr * ETH_ALEN);
  380. return 0;
  381. }
  382. /*
  383. * This function prepares command to deauthenticate.
  384. *
  385. * Preparation includes -
  386. * - Setting command ID and proper size
  387. * - Setting AP MAC address and reason code
  388. * - Ensuring correct endian-ness
  389. */
  390. static int mwifiex_cmd_802_11_deauthenticate(struct mwifiex_private *priv,
  391. struct host_cmd_ds_command *cmd,
  392. u8 *mac)
  393. {
  394. struct host_cmd_ds_802_11_deauthenticate *deauth = &cmd->params.deauth;
  395. cmd->command = cpu_to_le16(HostCmd_CMD_802_11_DEAUTHENTICATE);
  396. cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_802_11_deauthenticate)
  397. + S_DS_GEN);
  398. /* Set AP MAC address */
  399. memcpy(deauth->mac_addr, mac, ETH_ALEN);
  400. dev_dbg(priv->adapter->dev, "cmd: Deauth: %pM\n", deauth->mac_addr);
  401. deauth->reason_code = cpu_to_le16(WLAN_REASON_DEAUTH_LEAVING);
  402. return 0;
  403. }
  404. /*
  405. * This function prepares command to stop Ad-Hoc network.
  406. *
  407. * Preparation includes -
  408. * - Setting command ID and proper size
  409. * - Ensuring correct endian-ness
  410. */
  411. static int mwifiex_cmd_802_11_ad_hoc_stop(struct host_cmd_ds_command *cmd)
  412. {
  413. cmd->command = cpu_to_le16(HostCmd_CMD_802_11_AD_HOC_STOP);
  414. cmd->size = cpu_to_le16(S_DS_GEN);
  415. return 0;
  416. }
  417. /*
  418. * This function sets WEP key(s) to key parameter TLV(s).
  419. *
  420. * Multi-key parameter TLVs are supported, so we can send multiple
  421. * WEP keys in a single buffer.
  422. */
  423. static int
  424. mwifiex_set_keyparamset_wep(struct mwifiex_private *priv,
  425. struct mwifiex_ie_type_key_param_set *key_param_set,
  426. u16 *key_param_len)
  427. {
  428. int cur_key_param_len;
  429. u8 i;
  430. /* Multi-key_param_set TLV is supported */
  431. for (i = 0; i < NUM_WEP_KEYS; i++) {
  432. if ((priv->wep_key[i].key_length == WLAN_KEY_LEN_WEP40) ||
  433. (priv->wep_key[i].key_length == WLAN_KEY_LEN_WEP104)) {
  434. key_param_set->type =
  435. cpu_to_le16(TLV_TYPE_KEY_MATERIAL);
  436. /* Key_param_set WEP fixed length */
  437. #define KEYPARAMSET_WEP_FIXED_LEN 8
  438. key_param_set->length = cpu_to_le16((u16)
  439. (priv->wep_key[i].
  440. key_length +
  441. KEYPARAMSET_WEP_FIXED_LEN));
  442. key_param_set->key_type_id =
  443. cpu_to_le16(KEY_TYPE_ID_WEP);
  444. key_param_set->key_info =
  445. cpu_to_le16(KEY_ENABLED | KEY_UNICAST |
  446. KEY_MCAST);
  447. key_param_set->key_len =
  448. cpu_to_le16(priv->wep_key[i].key_length);
  449. /* Set WEP key index */
  450. key_param_set->key[0] = i;
  451. /* Set default Tx key flag */
  452. if (i ==
  453. (priv->
  454. wep_key_curr_index & HostCmd_WEP_KEY_INDEX_MASK))
  455. key_param_set->key[1] = 1;
  456. else
  457. key_param_set->key[1] = 0;
  458. memmove(&key_param_set->key[2],
  459. priv->wep_key[i].key_material,
  460. priv->wep_key[i].key_length);
  461. cur_key_param_len = priv->wep_key[i].key_length +
  462. KEYPARAMSET_WEP_FIXED_LEN +
  463. sizeof(struct mwifiex_ie_types_header);
  464. *key_param_len += (u16) cur_key_param_len;
  465. key_param_set =
  466. (struct mwifiex_ie_type_key_param_set *)
  467. ((u8 *)key_param_set +
  468. cur_key_param_len);
  469. } else if (!priv->wep_key[i].key_length) {
  470. continue;
  471. } else {
  472. dev_err(priv->adapter->dev,
  473. "key%d Length = %d is incorrect\n",
  474. (i + 1), priv->wep_key[i].key_length);
  475. return -1;
  476. }
  477. }
  478. return 0;
  479. }
  480. /*
  481. * This function prepares command to set/get/reset network key(s).
  482. *
  483. * Preparation includes -
  484. * - Setting command ID, action and proper size
  485. * - Setting WEP keys, WAPI keys or WPA keys along with required
  486. * encryption (TKIP, AES) (as required)
  487. * - Ensuring correct endian-ness
  488. */
  489. static int
  490. mwifiex_cmd_802_11_key_material(struct mwifiex_private *priv,
  491. struct host_cmd_ds_command *cmd,
  492. u16 cmd_action, u32 cmd_oid,
  493. struct mwifiex_ds_encrypt_key *enc_key)
  494. {
  495. struct host_cmd_ds_802_11_key_material *key_material =
  496. &cmd->params.key_material;
  497. struct host_cmd_tlv_mac_addr *tlv_mac;
  498. u16 key_param_len = 0, cmd_size;
  499. int ret = 0;
  500. cmd->command = cpu_to_le16(HostCmd_CMD_802_11_KEY_MATERIAL);
  501. key_material->action = cpu_to_le16(cmd_action);
  502. if (cmd_action == HostCmd_ACT_GEN_GET) {
  503. cmd->size =
  504. cpu_to_le16(sizeof(key_material->action) + S_DS_GEN);
  505. return ret;
  506. }
  507. if (!enc_key) {
  508. memset(&key_material->key_param_set, 0,
  509. (NUM_WEP_KEYS *
  510. sizeof(struct mwifiex_ie_type_key_param_set)));
  511. ret = mwifiex_set_keyparamset_wep(priv,
  512. &key_material->key_param_set,
  513. &key_param_len);
  514. cmd->size = cpu_to_le16(key_param_len +
  515. sizeof(key_material->action) + S_DS_GEN);
  516. return ret;
  517. } else
  518. memset(&key_material->key_param_set, 0,
  519. sizeof(struct mwifiex_ie_type_key_param_set));
  520. if (enc_key->is_wapi_key) {
  521. dev_dbg(priv->adapter->dev, "info: Set WAPI Key\n");
  522. key_material->key_param_set.key_type_id =
  523. cpu_to_le16(KEY_TYPE_ID_WAPI);
  524. if (cmd_oid == KEY_INFO_ENABLED)
  525. key_material->key_param_set.key_info =
  526. cpu_to_le16(KEY_ENABLED);
  527. else
  528. key_material->key_param_set.key_info =
  529. cpu_to_le16(!KEY_ENABLED);
  530. key_material->key_param_set.key[0] = enc_key->key_index;
  531. if (!priv->sec_info.wapi_key_on)
  532. key_material->key_param_set.key[1] = 1;
  533. else
  534. /* set 0 when re-key */
  535. key_material->key_param_set.key[1] = 0;
  536. if (!is_broadcast_ether_addr(enc_key->mac_addr)) {
  537. /* WAPI pairwise key: unicast */
  538. key_material->key_param_set.key_info |=
  539. cpu_to_le16(KEY_UNICAST);
  540. } else { /* WAPI group key: multicast */
  541. key_material->key_param_set.key_info |=
  542. cpu_to_le16(KEY_MCAST);
  543. priv->sec_info.wapi_key_on = true;
  544. }
  545. key_material->key_param_set.type =
  546. cpu_to_le16(TLV_TYPE_KEY_MATERIAL);
  547. key_material->key_param_set.key_len =
  548. cpu_to_le16(WAPI_KEY_LEN);
  549. memcpy(&key_material->key_param_set.key[2],
  550. enc_key->key_material, enc_key->key_len);
  551. memcpy(&key_material->key_param_set.key[2 + enc_key->key_len],
  552. enc_key->pn, PN_LEN);
  553. key_material->key_param_set.length =
  554. cpu_to_le16(WAPI_KEY_LEN + KEYPARAMSET_FIXED_LEN);
  555. key_param_len = (WAPI_KEY_LEN + KEYPARAMSET_FIXED_LEN) +
  556. sizeof(struct mwifiex_ie_types_header);
  557. cmd->size = cpu_to_le16(sizeof(key_material->action)
  558. + S_DS_GEN + key_param_len);
  559. return ret;
  560. }
  561. if (enc_key->key_len == WLAN_KEY_LEN_CCMP) {
  562. if (enc_key->is_igtk_key) {
  563. dev_dbg(priv->adapter->dev, "cmd: CMAC_AES\n");
  564. key_material->key_param_set.key_type_id =
  565. cpu_to_le16(KEY_TYPE_ID_AES_CMAC);
  566. if (cmd_oid == KEY_INFO_ENABLED)
  567. key_material->key_param_set.key_info =
  568. cpu_to_le16(KEY_ENABLED);
  569. else
  570. key_material->key_param_set.key_info =
  571. cpu_to_le16(!KEY_ENABLED);
  572. key_material->key_param_set.key_info |=
  573. cpu_to_le16(KEY_IGTK);
  574. } else {
  575. dev_dbg(priv->adapter->dev, "cmd: WPA_AES\n");
  576. key_material->key_param_set.key_type_id =
  577. cpu_to_le16(KEY_TYPE_ID_AES);
  578. if (cmd_oid == KEY_INFO_ENABLED)
  579. key_material->key_param_set.key_info =
  580. cpu_to_le16(KEY_ENABLED);
  581. else
  582. key_material->key_param_set.key_info =
  583. cpu_to_le16(!KEY_ENABLED);
  584. if (enc_key->key_index & MWIFIEX_KEY_INDEX_UNICAST)
  585. /* AES pairwise key: unicast */
  586. key_material->key_param_set.key_info |=
  587. cpu_to_le16(KEY_UNICAST);
  588. else /* AES group key: multicast */
  589. key_material->key_param_set.key_info |=
  590. cpu_to_le16(KEY_MCAST);
  591. }
  592. } else if (enc_key->key_len == WLAN_KEY_LEN_TKIP) {
  593. dev_dbg(priv->adapter->dev, "cmd: WPA_TKIP\n");
  594. key_material->key_param_set.key_type_id =
  595. cpu_to_le16(KEY_TYPE_ID_TKIP);
  596. key_material->key_param_set.key_info =
  597. cpu_to_le16(KEY_ENABLED);
  598. if (enc_key->key_index & MWIFIEX_KEY_INDEX_UNICAST)
  599. /* TKIP pairwise key: unicast */
  600. key_material->key_param_set.key_info |=
  601. cpu_to_le16(KEY_UNICAST);
  602. else /* TKIP group key: multicast */
  603. key_material->key_param_set.key_info |=
  604. cpu_to_le16(KEY_MCAST);
  605. }
  606. if (key_material->key_param_set.key_type_id) {
  607. key_material->key_param_set.type =
  608. cpu_to_le16(TLV_TYPE_KEY_MATERIAL);
  609. key_material->key_param_set.key_len =
  610. cpu_to_le16((u16) enc_key->key_len);
  611. memcpy(key_material->key_param_set.key, enc_key->key_material,
  612. enc_key->key_len);
  613. key_material->key_param_set.length =
  614. cpu_to_le16((u16) enc_key->key_len +
  615. KEYPARAMSET_FIXED_LEN);
  616. key_param_len = (u16)(enc_key->key_len + KEYPARAMSET_FIXED_LEN)
  617. + sizeof(struct mwifiex_ie_types_header);
  618. if (le16_to_cpu(key_material->key_param_set.key_type_id) ==
  619. KEY_TYPE_ID_AES_CMAC) {
  620. struct mwifiex_cmac_param *param =
  621. (void *)key_material->key_param_set.key;
  622. memcpy(param->ipn, enc_key->pn, IGTK_PN_LEN);
  623. memcpy(param->key, enc_key->key_material,
  624. WLAN_KEY_LEN_AES_CMAC);
  625. key_param_len = sizeof(struct mwifiex_cmac_param);
  626. key_material->key_param_set.key_len =
  627. cpu_to_le16(key_param_len);
  628. key_param_len += KEYPARAMSET_FIXED_LEN;
  629. key_material->key_param_set.length =
  630. cpu_to_le16(key_param_len);
  631. key_param_len += sizeof(struct mwifiex_ie_types_header);
  632. }
  633. cmd->size = cpu_to_le16(sizeof(key_material->action) + S_DS_GEN
  634. + key_param_len);
  635. if (priv->bss_type == MWIFIEX_BSS_TYPE_UAP) {
  636. tlv_mac = (void *)((u8 *)&key_material->key_param_set +
  637. key_param_len);
  638. tlv_mac->header.type =
  639. cpu_to_le16(TLV_TYPE_STA_MAC_ADDR);
  640. tlv_mac->header.len = cpu_to_le16(ETH_ALEN);
  641. memcpy(tlv_mac->mac_addr, enc_key->mac_addr, ETH_ALEN);
  642. cmd_size = key_param_len + S_DS_GEN +
  643. sizeof(key_material->action) +
  644. sizeof(struct host_cmd_tlv_mac_addr);
  645. } else {
  646. cmd_size = key_param_len + S_DS_GEN +
  647. sizeof(key_material->action);
  648. }
  649. cmd->size = cpu_to_le16(cmd_size);
  650. }
  651. return ret;
  652. }
  653. /*
  654. * This function prepares command to set/get 11d domain information.
  655. *
  656. * Preparation includes -
  657. * - Setting command ID, action and proper size
  658. * - Setting domain information fields (for SET only)
  659. * - Ensuring correct endian-ness
  660. */
  661. static int mwifiex_cmd_802_11d_domain_info(struct mwifiex_private *priv,
  662. struct host_cmd_ds_command *cmd,
  663. u16 cmd_action)
  664. {
  665. struct mwifiex_adapter *adapter = priv->adapter;
  666. struct host_cmd_ds_802_11d_domain_info *domain_info =
  667. &cmd->params.domain_info;
  668. struct mwifiex_ietypes_domain_param_set *domain =
  669. &domain_info->domain;
  670. u8 no_of_triplet = adapter->domain_reg.no_of_triplet;
  671. dev_dbg(adapter->dev, "info: 11D: no_of_triplet=0x%x\n", no_of_triplet);
  672. cmd->command = cpu_to_le16(HostCmd_CMD_802_11D_DOMAIN_INFO);
  673. domain_info->action = cpu_to_le16(cmd_action);
  674. if (cmd_action == HostCmd_ACT_GEN_GET) {
  675. cmd->size = cpu_to_le16(sizeof(domain_info->action) + S_DS_GEN);
  676. return 0;
  677. }
  678. /* Set domain info fields */
  679. domain->header.type = cpu_to_le16(WLAN_EID_COUNTRY);
  680. memcpy(domain->country_code, adapter->domain_reg.country_code,
  681. sizeof(domain->country_code));
  682. domain->header.len =
  683. cpu_to_le16((no_of_triplet *
  684. sizeof(struct ieee80211_country_ie_triplet))
  685. + sizeof(domain->country_code));
  686. if (no_of_triplet) {
  687. memcpy(domain->triplet, adapter->domain_reg.triplet,
  688. no_of_triplet * sizeof(struct
  689. ieee80211_country_ie_triplet));
  690. cmd->size = cpu_to_le16(sizeof(domain_info->action) +
  691. le16_to_cpu(domain->header.len) +
  692. sizeof(struct mwifiex_ie_types_header)
  693. + S_DS_GEN);
  694. } else {
  695. cmd->size = cpu_to_le16(sizeof(domain_info->action) + S_DS_GEN);
  696. }
  697. return 0;
  698. }
  699. /*
  700. * This function prepares command to set/get IBSS coalescing status.
  701. *
  702. * Preparation includes -
  703. * - Setting command ID, action and proper size
  704. * - Setting status to enable or disable (for SET only)
  705. * - Ensuring correct endian-ness
  706. */
  707. static int mwifiex_cmd_ibss_coalescing_status(struct host_cmd_ds_command *cmd,
  708. u16 cmd_action, u16 *enable)
  709. {
  710. struct host_cmd_ds_802_11_ibss_status *ibss_coal =
  711. &(cmd->params.ibss_coalescing);
  712. cmd->command = cpu_to_le16(HostCmd_CMD_802_11_IBSS_COALESCING_STATUS);
  713. cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_802_11_ibss_status) +
  714. S_DS_GEN);
  715. cmd->result = 0;
  716. ibss_coal->action = cpu_to_le16(cmd_action);
  717. switch (cmd_action) {
  718. case HostCmd_ACT_GEN_SET:
  719. if (enable)
  720. ibss_coal->enable = cpu_to_le16(*enable);
  721. else
  722. ibss_coal->enable = 0;
  723. break;
  724. /* In other case.. Nothing to do */
  725. case HostCmd_ACT_GEN_GET:
  726. default:
  727. break;
  728. }
  729. return 0;
  730. }
  731. /*
  732. * This function prepares command to set/get register value.
  733. *
  734. * Preparation includes -
  735. * - Setting command ID, action and proper size
  736. * - Setting register offset (for both GET and SET) and
  737. * register value (for SET only)
  738. * - Ensuring correct endian-ness
  739. *
  740. * The following type of registers can be accessed with this function -
  741. * - MAC register
  742. * - BBP register
  743. * - RF register
  744. * - PMIC register
  745. * - CAU register
  746. * - EEPROM
  747. */
  748. static int mwifiex_cmd_reg_access(struct host_cmd_ds_command *cmd,
  749. u16 cmd_action, void *data_buf)
  750. {
  751. struct mwifiex_ds_reg_rw *reg_rw = data_buf;
  752. switch (le16_to_cpu(cmd->command)) {
  753. case HostCmd_CMD_MAC_REG_ACCESS:
  754. {
  755. struct host_cmd_ds_mac_reg_access *mac_reg;
  756. cmd->size = cpu_to_le16(sizeof(*mac_reg) + S_DS_GEN);
  757. mac_reg = &cmd->params.mac_reg;
  758. mac_reg->action = cpu_to_le16(cmd_action);
  759. mac_reg->offset =
  760. cpu_to_le16((u16) le32_to_cpu(reg_rw->offset));
  761. mac_reg->value = reg_rw->value;
  762. break;
  763. }
  764. case HostCmd_CMD_BBP_REG_ACCESS:
  765. {
  766. struct host_cmd_ds_bbp_reg_access *bbp_reg;
  767. cmd->size = cpu_to_le16(sizeof(*bbp_reg) + S_DS_GEN);
  768. bbp_reg = &cmd->params.bbp_reg;
  769. bbp_reg->action = cpu_to_le16(cmd_action);
  770. bbp_reg->offset =
  771. cpu_to_le16((u16) le32_to_cpu(reg_rw->offset));
  772. bbp_reg->value = (u8) le32_to_cpu(reg_rw->value);
  773. break;
  774. }
  775. case HostCmd_CMD_RF_REG_ACCESS:
  776. {
  777. struct host_cmd_ds_rf_reg_access *rf_reg;
  778. cmd->size = cpu_to_le16(sizeof(*rf_reg) + S_DS_GEN);
  779. rf_reg = &cmd->params.rf_reg;
  780. rf_reg->action = cpu_to_le16(cmd_action);
  781. rf_reg->offset = cpu_to_le16((u16) le32_to_cpu(reg_rw->offset));
  782. rf_reg->value = (u8) le32_to_cpu(reg_rw->value);
  783. break;
  784. }
  785. case HostCmd_CMD_PMIC_REG_ACCESS:
  786. {
  787. struct host_cmd_ds_pmic_reg_access *pmic_reg;
  788. cmd->size = cpu_to_le16(sizeof(*pmic_reg) + S_DS_GEN);
  789. pmic_reg = &cmd->params.pmic_reg;
  790. pmic_reg->action = cpu_to_le16(cmd_action);
  791. pmic_reg->offset =
  792. cpu_to_le16((u16) le32_to_cpu(reg_rw->offset));
  793. pmic_reg->value = (u8) le32_to_cpu(reg_rw->value);
  794. break;
  795. }
  796. case HostCmd_CMD_CAU_REG_ACCESS:
  797. {
  798. struct host_cmd_ds_rf_reg_access *cau_reg;
  799. cmd->size = cpu_to_le16(sizeof(*cau_reg) + S_DS_GEN);
  800. cau_reg = &cmd->params.rf_reg;
  801. cau_reg->action = cpu_to_le16(cmd_action);
  802. cau_reg->offset =
  803. cpu_to_le16((u16) le32_to_cpu(reg_rw->offset));
  804. cau_reg->value = (u8) le32_to_cpu(reg_rw->value);
  805. break;
  806. }
  807. case HostCmd_CMD_802_11_EEPROM_ACCESS:
  808. {
  809. struct mwifiex_ds_read_eeprom *rd_eeprom = data_buf;
  810. struct host_cmd_ds_802_11_eeprom_access *cmd_eeprom =
  811. &cmd->params.eeprom;
  812. cmd->size = cpu_to_le16(sizeof(*cmd_eeprom) + S_DS_GEN);
  813. cmd_eeprom->action = cpu_to_le16(cmd_action);
  814. cmd_eeprom->offset = rd_eeprom->offset;
  815. cmd_eeprom->byte_count = rd_eeprom->byte_count;
  816. cmd_eeprom->value = 0;
  817. break;
  818. }
  819. default:
  820. return -1;
  821. }
  822. return 0;
  823. }
  824. /*
  825. * This function prepares command to set PCI-Express
  826. * host buffer configuration
  827. *
  828. * Preparation includes -
  829. * - Setting command ID, action and proper size
  830. * - Setting host buffer configuration
  831. * - Ensuring correct endian-ness
  832. */
  833. static int
  834. mwifiex_cmd_pcie_host_spec(struct mwifiex_private *priv,
  835. struct host_cmd_ds_command *cmd, u16 action)
  836. {
  837. struct host_cmd_ds_pcie_details *host_spec =
  838. &cmd->params.pcie_host_spec;
  839. struct pcie_service_card *card = priv->adapter->card;
  840. cmd->command = cpu_to_le16(HostCmd_CMD_PCIE_DESC_DETAILS);
  841. cmd->size = cpu_to_le16(sizeof(struct
  842. host_cmd_ds_pcie_details) + S_DS_GEN);
  843. cmd->result = 0;
  844. memset(host_spec, 0, sizeof(struct host_cmd_ds_pcie_details));
  845. if (action != HostCmd_ACT_GEN_SET)
  846. return 0;
  847. /* Send the ring base addresses and count to firmware */
  848. host_spec->txbd_addr_lo = (u32)(card->txbd_ring_pbase);
  849. host_spec->txbd_addr_hi = (u32)(((u64)card->txbd_ring_pbase)>>32);
  850. host_spec->txbd_count = MWIFIEX_MAX_TXRX_BD;
  851. host_spec->rxbd_addr_lo = (u32)(card->rxbd_ring_pbase);
  852. host_spec->rxbd_addr_hi = (u32)(((u64)card->rxbd_ring_pbase)>>32);
  853. host_spec->rxbd_count = MWIFIEX_MAX_TXRX_BD;
  854. host_spec->evtbd_addr_lo = (u32)(card->evtbd_ring_pbase);
  855. host_spec->evtbd_addr_hi = (u32)(((u64)card->evtbd_ring_pbase)>>32);
  856. host_spec->evtbd_count = MWIFIEX_MAX_EVT_BD;
  857. if (card->sleep_cookie_vbase) {
  858. host_spec->sleep_cookie_addr_lo =
  859. (u32)(card->sleep_cookie_pbase);
  860. host_spec->sleep_cookie_addr_hi =
  861. (u32)(((u64)(card->sleep_cookie_pbase)) >> 32);
  862. dev_dbg(priv->adapter->dev, "sleep_cook_lo phy addr: 0x%x\n",
  863. host_spec->sleep_cookie_addr_lo);
  864. }
  865. return 0;
  866. }
  867. /*
  868. * This function prepares command for event subscription, configuration
  869. * and query. Events can be subscribed or unsubscribed. Current subscribed
  870. * events can be queried. Also, current subscribed events are reported in
  871. * every FW response.
  872. */
  873. static int
  874. mwifiex_cmd_802_11_subsc_evt(struct mwifiex_private *priv,
  875. struct host_cmd_ds_command *cmd,
  876. struct mwifiex_ds_misc_subsc_evt *subsc_evt_cfg)
  877. {
  878. struct host_cmd_ds_802_11_subsc_evt *subsc_evt = &cmd->params.subsc_evt;
  879. struct mwifiex_ie_types_rssi_threshold *rssi_tlv;
  880. u16 event_bitmap;
  881. u8 *pos;
  882. cmd->command = cpu_to_le16(HostCmd_CMD_802_11_SUBSCRIBE_EVENT);
  883. cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_802_11_subsc_evt) +
  884. S_DS_GEN);
  885. subsc_evt->action = cpu_to_le16(subsc_evt_cfg->action);
  886. dev_dbg(priv->adapter->dev, "cmd: action: %d\n", subsc_evt_cfg->action);
  887. /*For query requests, no configuration TLV structures are to be added.*/
  888. if (subsc_evt_cfg->action == HostCmd_ACT_GEN_GET)
  889. return 0;
  890. subsc_evt->events = cpu_to_le16(subsc_evt_cfg->events);
  891. event_bitmap = subsc_evt_cfg->events;
  892. dev_dbg(priv->adapter->dev, "cmd: event bitmap : %16x\n",
  893. event_bitmap);
  894. if (((subsc_evt_cfg->action == HostCmd_ACT_BITWISE_CLR) ||
  895. (subsc_evt_cfg->action == HostCmd_ACT_BITWISE_SET)) &&
  896. (event_bitmap == 0)) {
  897. dev_dbg(priv->adapter->dev, "Error: No event specified "
  898. "for bitwise action type\n");
  899. return -EINVAL;
  900. }
  901. /*
  902. * Append TLV structures for each of the specified events for
  903. * subscribing or re-configuring. This is not required for
  904. * bitwise unsubscribing request.
  905. */
  906. if (subsc_evt_cfg->action == HostCmd_ACT_BITWISE_CLR)
  907. return 0;
  908. pos = ((u8 *)subsc_evt) +
  909. sizeof(struct host_cmd_ds_802_11_subsc_evt);
  910. if (event_bitmap & BITMASK_BCN_RSSI_LOW) {
  911. rssi_tlv = (struct mwifiex_ie_types_rssi_threshold *) pos;
  912. rssi_tlv->header.type = cpu_to_le16(TLV_TYPE_RSSI_LOW);
  913. rssi_tlv->header.len =
  914. cpu_to_le16(sizeof(struct mwifiex_ie_types_rssi_threshold) -
  915. sizeof(struct mwifiex_ie_types_header));
  916. rssi_tlv->abs_value = subsc_evt_cfg->bcn_l_rssi_cfg.abs_value;
  917. rssi_tlv->evt_freq = subsc_evt_cfg->bcn_l_rssi_cfg.evt_freq;
  918. dev_dbg(priv->adapter->dev, "Cfg Beacon Low Rssi event, "
  919. "RSSI:-%d dBm, Freq:%d\n",
  920. subsc_evt_cfg->bcn_l_rssi_cfg.abs_value,
  921. subsc_evt_cfg->bcn_l_rssi_cfg.evt_freq);
  922. pos += sizeof(struct mwifiex_ie_types_rssi_threshold);
  923. le16_add_cpu(&cmd->size,
  924. sizeof(struct mwifiex_ie_types_rssi_threshold));
  925. }
  926. if (event_bitmap & BITMASK_BCN_RSSI_HIGH) {
  927. rssi_tlv = (struct mwifiex_ie_types_rssi_threshold *) pos;
  928. rssi_tlv->header.type = cpu_to_le16(TLV_TYPE_RSSI_HIGH);
  929. rssi_tlv->header.len =
  930. cpu_to_le16(sizeof(struct mwifiex_ie_types_rssi_threshold) -
  931. sizeof(struct mwifiex_ie_types_header));
  932. rssi_tlv->abs_value = subsc_evt_cfg->bcn_h_rssi_cfg.abs_value;
  933. rssi_tlv->evt_freq = subsc_evt_cfg->bcn_h_rssi_cfg.evt_freq;
  934. dev_dbg(priv->adapter->dev, "Cfg Beacon High Rssi event, "
  935. "RSSI:-%d dBm, Freq:%d\n",
  936. subsc_evt_cfg->bcn_h_rssi_cfg.abs_value,
  937. subsc_evt_cfg->bcn_h_rssi_cfg.evt_freq);
  938. pos += sizeof(struct mwifiex_ie_types_rssi_threshold);
  939. le16_add_cpu(&cmd->size,
  940. sizeof(struct mwifiex_ie_types_rssi_threshold));
  941. }
  942. return 0;
  943. }
  944. static int
  945. mwifiex_cmd_append_rpn_expression(struct mwifiex_private *priv,
  946. struct mwifiex_mef_entry *mef_entry,
  947. u8 **buffer)
  948. {
  949. struct mwifiex_mef_filter *filter = mef_entry->filter;
  950. int i, byte_len;
  951. u8 *stack_ptr = *buffer;
  952. for (i = 0; i < MWIFIEX_MEF_MAX_FILTERS; i++) {
  953. filter = &mef_entry->filter[i];
  954. if (!filter->filt_type)
  955. break;
  956. *(__le32 *)stack_ptr = cpu_to_le32((u32)filter->repeat);
  957. stack_ptr += 4;
  958. *stack_ptr = TYPE_DNUM;
  959. stack_ptr += 1;
  960. byte_len = filter->byte_seq[MWIFIEX_MEF_MAX_BYTESEQ];
  961. memcpy(stack_ptr, filter->byte_seq, byte_len);
  962. stack_ptr += byte_len;
  963. *stack_ptr = byte_len;
  964. stack_ptr += 1;
  965. *stack_ptr = TYPE_BYTESEQ;
  966. stack_ptr += 1;
  967. *(__le32 *)stack_ptr = cpu_to_le32((u32)filter->offset);
  968. stack_ptr += 4;
  969. *stack_ptr = TYPE_DNUM;
  970. stack_ptr += 1;
  971. *stack_ptr = filter->filt_type;
  972. stack_ptr += 1;
  973. if (filter->filt_action) {
  974. *stack_ptr = filter->filt_action;
  975. stack_ptr += 1;
  976. }
  977. if (stack_ptr - *buffer > STACK_NBYTES)
  978. return -1;
  979. }
  980. *buffer = stack_ptr;
  981. return 0;
  982. }
  983. static int
  984. mwifiex_cmd_mef_cfg(struct mwifiex_private *priv,
  985. struct host_cmd_ds_command *cmd,
  986. struct mwifiex_ds_mef_cfg *mef)
  987. {
  988. struct host_cmd_ds_mef_cfg *mef_cfg = &cmd->params.mef_cfg;
  989. u8 *pos = (u8 *)mef_cfg;
  990. cmd->command = cpu_to_le16(HostCmd_CMD_MEF_CFG);
  991. mef_cfg->criteria = cpu_to_le32(mef->criteria);
  992. mef_cfg->num_entries = cpu_to_le16(mef->num_entries);
  993. pos += sizeof(*mef_cfg);
  994. mef_cfg->mef_entry->mode = mef->mef_entry->mode;
  995. mef_cfg->mef_entry->action = mef->mef_entry->action;
  996. pos += sizeof(*(mef_cfg->mef_entry));
  997. if (mwifiex_cmd_append_rpn_expression(priv, mef->mef_entry, &pos))
  998. return -1;
  999. mef_cfg->mef_entry->exprsize =
  1000. cpu_to_le16(pos - mef_cfg->mef_entry->expr);
  1001. cmd->size = cpu_to_le16((u16) (pos - (u8 *)mef_cfg) + S_DS_GEN);
  1002. return 0;
  1003. }
  1004. /* This function parse cal data from ASCII to hex */
  1005. static u32 mwifiex_parse_cal_cfg(u8 *src, size_t len, u8 *dst)
  1006. {
  1007. u8 *s = src, *d = dst;
  1008. while (s - src < len) {
  1009. if (*s && (isspace(*s) || *s == '\t')) {
  1010. s++;
  1011. continue;
  1012. }
  1013. if (isxdigit(*s)) {
  1014. *d++ = simple_strtol(s, NULL, 16);
  1015. s += 2;
  1016. } else {
  1017. s++;
  1018. }
  1019. }
  1020. return d - dst;
  1021. }
  1022. /* This function prepares command of set_cfg_data. */
  1023. static int mwifiex_cmd_cfg_data(struct mwifiex_private *priv,
  1024. struct host_cmd_ds_command *cmd,
  1025. u16 cmd_action)
  1026. {
  1027. struct host_cmd_ds_802_11_cfg_data *cfg_data = &cmd->params.cfg_data;
  1028. struct mwifiex_adapter *adapter = priv->adapter;
  1029. u32 len, cal_data_offset;
  1030. u8 *tmp_cmd = (u8 *)cmd;
  1031. cal_data_offset = S_DS_GEN + sizeof(*cfg_data);
  1032. if ((adapter->cal_data->data) && (adapter->cal_data->size > 0))
  1033. len = mwifiex_parse_cal_cfg((u8 *)adapter->cal_data->data,
  1034. adapter->cal_data->size,
  1035. (u8 *)(tmp_cmd + cal_data_offset));
  1036. else
  1037. return -1;
  1038. cfg_data->action = cpu_to_le16(cmd_action);
  1039. cfg_data->type = cpu_to_le16(CFG_DATA_TYPE_CAL);
  1040. cfg_data->data_len = cpu_to_le16(len);
  1041. cmd->command = cpu_to_le16(HostCmd_CMD_CFG_DATA);
  1042. cmd->size = cpu_to_le16(S_DS_GEN + sizeof(*cfg_data) + len);
  1043. return 0;
  1044. }
  1045. static int
  1046. mwifiex_cmd_coalesce_cfg(struct mwifiex_private *priv,
  1047. struct host_cmd_ds_command *cmd,
  1048. u16 cmd_action, void *data_buf)
  1049. {
  1050. struct host_cmd_ds_coalesce_cfg *coalesce_cfg =
  1051. &cmd->params.coalesce_cfg;
  1052. struct mwifiex_ds_coalesce_cfg *cfg = data_buf;
  1053. struct coalesce_filt_field_param *param;
  1054. u16 cnt, idx, length;
  1055. struct coalesce_receive_filt_rule *rule;
  1056. cmd->command = cpu_to_le16(HostCmd_CMD_COALESCE_CFG);
  1057. cmd->size = cpu_to_le16(S_DS_GEN);
  1058. coalesce_cfg->action = cpu_to_le16(cmd_action);
  1059. coalesce_cfg->num_of_rules = cpu_to_le16(cfg->num_of_rules);
  1060. rule = coalesce_cfg->rule;
  1061. for (cnt = 0; cnt < cfg->num_of_rules; cnt++) {
  1062. rule->header.type = cpu_to_le16(TLV_TYPE_COALESCE_RULE);
  1063. rule->max_coalescing_delay =
  1064. cpu_to_le16(cfg->rule[cnt].max_coalescing_delay);
  1065. rule->pkt_type = cfg->rule[cnt].pkt_type;
  1066. rule->num_of_fields = cfg->rule[cnt].num_of_fields;
  1067. length = 0;
  1068. param = rule->params;
  1069. for (idx = 0; idx < cfg->rule[cnt].num_of_fields; idx++) {
  1070. param->operation = cfg->rule[cnt].params[idx].operation;
  1071. param->operand_len =
  1072. cfg->rule[cnt].params[idx].operand_len;
  1073. param->offset =
  1074. cpu_to_le16(cfg->rule[cnt].params[idx].offset);
  1075. memcpy(param->operand_byte_stream,
  1076. cfg->rule[cnt].params[idx].operand_byte_stream,
  1077. param->operand_len);
  1078. length += sizeof(struct coalesce_filt_field_param);
  1079. param++;
  1080. }
  1081. /* Total rule length is sizeof max_coalescing_delay(u16),
  1082. * num_of_fields(u8), pkt_type(u8) and total length of the all
  1083. * params
  1084. */
  1085. rule->header.len = cpu_to_le16(length + sizeof(u16) +
  1086. sizeof(u8) + sizeof(u8));
  1087. /* Add the rule length to the command size*/
  1088. le16_add_cpu(&cmd->size, le16_to_cpu(rule->header.len) +
  1089. sizeof(struct mwifiex_ie_types_header));
  1090. rule = (void *)((u8 *)rule->params + length);
  1091. }
  1092. /* Add sizeof action, num_of_rules to total command length */
  1093. le16_add_cpu(&cmd->size, sizeof(u16) + sizeof(u16));
  1094. return 0;
  1095. }
  1096. /*
  1097. * This function prepares the commands before sending them to the firmware.
  1098. *
  1099. * This is a generic function which calls specific command preparation
  1100. * routines based upon the command number.
  1101. */
  1102. int mwifiex_sta_prepare_cmd(struct mwifiex_private *priv, uint16_t cmd_no,
  1103. u16 cmd_action, u32 cmd_oid,
  1104. void *data_buf, void *cmd_buf)
  1105. {
  1106. struct host_cmd_ds_command *cmd_ptr = cmd_buf;
  1107. int ret = 0;
  1108. /* Prepare command */
  1109. switch (cmd_no) {
  1110. case HostCmd_CMD_GET_HW_SPEC:
  1111. ret = mwifiex_cmd_get_hw_spec(priv, cmd_ptr);
  1112. break;
  1113. case HostCmd_CMD_CFG_DATA:
  1114. ret = mwifiex_cmd_cfg_data(priv, cmd_ptr, cmd_action);
  1115. break;
  1116. case HostCmd_CMD_MAC_CONTROL:
  1117. ret = mwifiex_cmd_mac_control(priv, cmd_ptr, cmd_action,
  1118. data_buf);
  1119. break;
  1120. case HostCmd_CMD_802_11_MAC_ADDRESS:
  1121. ret = mwifiex_cmd_802_11_mac_address(priv, cmd_ptr,
  1122. cmd_action);
  1123. break;
  1124. case HostCmd_CMD_MAC_MULTICAST_ADR:
  1125. ret = mwifiex_cmd_mac_multicast_adr(cmd_ptr, cmd_action,
  1126. data_buf);
  1127. break;
  1128. case HostCmd_CMD_TX_RATE_CFG:
  1129. ret = mwifiex_cmd_tx_rate_cfg(priv, cmd_ptr, cmd_action,
  1130. data_buf);
  1131. break;
  1132. case HostCmd_CMD_TXPWR_CFG:
  1133. ret = mwifiex_cmd_tx_power_cfg(cmd_ptr, cmd_action,
  1134. data_buf);
  1135. break;
  1136. case HostCmd_CMD_RF_TX_PWR:
  1137. ret = mwifiex_cmd_rf_tx_power(priv, cmd_ptr, cmd_action,
  1138. data_buf);
  1139. break;
  1140. case HostCmd_CMD_RF_ANTENNA:
  1141. ret = mwifiex_cmd_rf_antenna(priv, cmd_ptr, cmd_action,
  1142. data_buf);
  1143. break;
  1144. case HostCmd_CMD_802_11_PS_MODE_ENH:
  1145. ret = mwifiex_cmd_enh_power_mode(priv, cmd_ptr, cmd_action,
  1146. (uint16_t)cmd_oid, data_buf);
  1147. break;
  1148. case HostCmd_CMD_802_11_HS_CFG_ENH:
  1149. ret = mwifiex_cmd_802_11_hs_cfg(priv, cmd_ptr, cmd_action,
  1150. (struct mwifiex_hs_config_param *) data_buf);
  1151. break;
  1152. case HostCmd_CMD_802_11_SCAN:
  1153. ret = mwifiex_cmd_802_11_scan(cmd_ptr, data_buf);
  1154. break;
  1155. case HostCmd_CMD_802_11_BG_SCAN_QUERY:
  1156. ret = mwifiex_cmd_802_11_bg_scan_query(cmd_ptr);
  1157. break;
  1158. case HostCmd_CMD_802_11_ASSOCIATE:
  1159. ret = mwifiex_cmd_802_11_associate(priv, cmd_ptr, data_buf);
  1160. break;
  1161. case HostCmd_CMD_802_11_DEAUTHENTICATE:
  1162. ret = mwifiex_cmd_802_11_deauthenticate(priv, cmd_ptr,
  1163. data_buf);
  1164. break;
  1165. case HostCmd_CMD_802_11_AD_HOC_START:
  1166. ret = mwifiex_cmd_802_11_ad_hoc_start(priv, cmd_ptr,
  1167. data_buf);
  1168. break;
  1169. case HostCmd_CMD_802_11_GET_LOG:
  1170. ret = mwifiex_cmd_802_11_get_log(cmd_ptr);
  1171. break;
  1172. case HostCmd_CMD_802_11_AD_HOC_JOIN:
  1173. ret = mwifiex_cmd_802_11_ad_hoc_join(priv, cmd_ptr,
  1174. data_buf);
  1175. break;
  1176. case HostCmd_CMD_802_11_AD_HOC_STOP:
  1177. ret = mwifiex_cmd_802_11_ad_hoc_stop(cmd_ptr);
  1178. break;
  1179. case HostCmd_CMD_RSSI_INFO:
  1180. ret = mwifiex_cmd_802_11_rssi_info(priv, cmd_ptr, cmd_action);
  1181. break;
  1182. case HostCmd_CMD_802_11_SNMP_MIB:
  1183. ret = mwifiex_cmd_802_11_snmp_mib(priv, cmd_ptr, cmd_action,
  1184. cmd_oid, data_buf);
  1185. break;
  1186. case HostCmd_CMD_802_11_TX_RATE_QUERY:
  1187. cmd_ptr->command =
  1188. cpu_to_le16(HostCmd_CMD_802_11_TX_RATE_QUERY);
  1189. cmd_ptr->size =
  1190. cpu_to_le16(sizeof(struct host_cmd_ds_tx_rate_query) +
  1191. S_DS_GEN);
  1192. priv->tx_rate = 0;
  1193. ret = 0;
  1194. break;
  1195. case HostCmd_CMD_VERSION_EXT:
  1196. cmd_ptr->command = cpu_to_le16(cmd_no);
  1197. cmd_ptr->params.verext.version_str_sel =
  1198. (u8) (*((u32 *) data_buf));
  1199. memcpy(&cmd_ptr->params, data_buf,
  1200. sizeof(struct host_cmd_ds_version_ext));
  1201. cmd_ptr->size =
  1202. cpu_to_le16(sizeof(struct host_cmd_ds_version_ext) +
  1203. S_DS_GEN);
  1204. ret = 0;
  1205. break;
  1206. case HostCmd_CMD_MGMT_FRAME_REG:
  1207. cmd_ptr->command = cpu_to_le16(cmd_no);
  1208. cmd_ptr->params.reg_mask.action = cpu_to_le16(cmd_action);
  1209. cmd_ptr->params.reg_mask.mask = cpu_to_le32(*(u32 *)data_buf);
  1210. cmd_ptr->size =
  1211. cpu_to_le16(sizeof(struct host_cmd_ds_mgmt_frame_reg) +
  1212. S_DS_GEN);
  1213. ret = 0;
  1214. break;
  1215. case HostCmd_CMD_REMAIN_ON_CHAN:
  1216. cmd_ptr->command = cpu_to_le16(cmd_no);
  1217. memcpy(&cmd_ptr->params, data_buf,
  1218. sizeof(struct host_cmd_ds_remain_on_chan));
  1219. cmd_ptr->size =
  1220. cpu_to_le16(sizeof(struct host_cmd_ds_remain_on_chan) +
  1221. S_DS_GEN);
  1222. break;
  1223. case HostCmd_CMD_11AC_CFG:
  1224. ret = mwifiex_cmd_11ac_cfg(priv, cmd_ptr, cmd_action, data_buf);
  1225. break;
  1226. case HostCmd_CMD_P2P_MODE_CFG:
  1227. cmd_ptr->command = cpu_to_le16(cmd_no);
  1228. cmd_ptr->params.mode_cfg.action = cpu_to_le16(cmd_action);
  1229. cmd_ptr->params.mode_cfg.mode = cpu_to_le16(*(u16 *)data_buf);
  1230. cmd_ptr->size =
  1231. cpu_to_le16(sizeof(struct host_cmd_ds_p2p_mode_cfg) +
  1232. S_DS_GEN);
  1233. break;
  1234. case HostCmd_CMD_FUNC_INIT:
  1235. if (priv->adapter->hw_status == MWIFIEX_HW_STATUS_RESET)
  1236. priv->adapter->hw_status = MWIFIEX_HW_STATUS_READY;
  1237. cmd_ptr->command = cpu_to_le16(cmd_no);
  1238. cmd_ptr->size = cpu_to_le16(S_DS_GEN);
  1239. break;
  1240. case HostCmd_CMD_FUNC_SHUTDOWN:
  1241. priv->adapter->hw_status = MWIFIEX_HW_STATUS_RESET;
  1242. cmd_ptr->command = cpu_to_le16(cmd_no);
  1243. cmd_ptr->size = cpu_to_le16(S_DS_GEN);
  1244. break;
  1245. case HostCmd_CMD_11N_ADDBA_REQ:
  1246. ret = mwifiex_cmd_11n_addba_req(cmd_ptr, data_buf);
  1247. break;
  1248. case HostCmd_CMD_11N_DELBA:
  1249. ret = mwifiex_cmd_11n_delba(cmd_ptr, data_buf);
  1250. break;
  1251. case HostCmd_CMD_11N_ADDBA_RSP:
  1252. ret = mwifiex_cmd_11n_addba_rsp_gen(priv, cmd_ptr, data_buf);
  1253. break;
  1254. case HostCmd_CMD_802_11_KEY_MATERIAL:
  1255. ret = mwifiex_cmd_802_11_key_material(priv, cmd_ptr,
  1256. cmd_action, cmd_oid,
  1257. data_buf);
  1258. break;
  1259. case HostCmd_CMD_802_11D_DOMAIN_INFO:
  1260. ret = mwifiex_cmd_802_11d_domain_info(priv, cmd_ptr,
  1261. cmd_action);
  1262. break;
  1263. case HostCmd_CMD_RECONFIGURE_TX_BUFF:
  1264. ret = mwifiex_cmd_recfg_tx_buf(priv, cmd_ptr, cmd_action,
  1265. data_buf);
  1266. break;
  1267. case HostCmd_CMD_AMSDU_AGGR_CTRL:
  1268. ret = mwifiex_cmd_amsdu_aggr_ctrl(cmd_ptr, cmd_action,
  1269. data_buf);
  1270. break;
  1271. case HostCmd_CMD_11N_CFG:
  1272. ret = mwifiex_cmd_11n_cfg(priv, cmd_ptr, cmd_action, data_buf);
  1273. break;
  1274. case HostCmd_CMD_WMM_GET_STATUS:
  1275. dev_dbg(priv->adapter->dev,
  1276. "cmd: WMM: WMM_GET_STATUS cmd sent\n");
  1277. cmd_ptr->command = cpu_to_le16(HostCmd_CMD_WMM_GET_STATUS);
  1278. cmd_ptr->size =
  1279. cpu_to_le16(sizeof(struct host_cmd_ds_wmm_get_status) +
  1280. S_DS_GEN);
  1281. ret = 0;
  1282. break;
  1283. case HostCmd_CMD_802_11_IBSS_COALESCING_STATUS:
  1284. ret = mwifiex_cmd_ibss_coalescing_status(cmd_ptr, cmd_action,
  1285. data_buf);
  1286. break;
  1287. case HostCmd_CMD_MAC_REG_ACCESS:
  1288. case HostCmd_CMD_BBP_REG_ACCESS:
  1289. case HostCmd_CMD_RF_REG_ACCESS:
  1290. case HostCmd_CMD_PMIC_REG_ACCESS:
  1291. case HostCmd_CMD_CAU_REG_ACCESS:
  1292. case HostCmd_CMD_802_11_EEPROM_ACCESS:
  1293. ret = mwifiex_cmd_reg_access(cmd_ptr, cmd_action, data_buf);
  1294. break;
  1295. case HostCmd_CMD_SET_BSS_MODE:
  1296. cmd_ptr->command = cpu_to_le16(cmd_no);
  1297. if (priv->bss_mode == NL80211_IFTYPE_ADHOC)
  1298. cmd_ptr->params.bss_mode.con_type =
  1299. CONNECTION_TYPE_ADHOC;
  1300. else if (priv->bss_mode == NL80211_IFTYPE_STATION)
  1301. cmd_ptr->params.bss_mode.con_type =
  1302. CONNECTION_TYPE_INFRA;
  1303. else if (priv->bss_mode == NL80211_IFTYPE_AP)
  1304. cmd_ptr->params.bss_mode.con_type = CONNECTION_TYPE_AP;
  1305. cmd_ptr->size = cpu_to_le16(sizeof(struct
  1306. host_cmd_ds_set_bss_mode) + S_DS_GEN);
  1307. ret = 0;
  1308. break;
  1309. case HostCmd_CMD_PCIE_DESC_DETAILS:
  1310. ret = mwifiex_cmd_pcie_host_spec(priv, cmd_ptr, cmd_action);
  1311. break;
  1312. case HostCmd_CMD_802_11_SUBSCRIBE_EVENT:
  1313. ret = mwifiex_cmd_802_11_subsc_evt(priv, cmd_ptr, data_buf);
  1314. break;
  1315. case HostCmd_CMD_MEF_CFG:
  1316. ret = mwifiex_cmd_mef_cfg(priv, cmd_ptr, data_buf);
  1317. break;
  1318. case HostCmd_CMD_COALESCE_CFG:
  1319. ret = mwifiex_cmd_coalesce_cfg(priv, cmd_ptr, cmd_action,
  1320. data_buf);
  1321. break;
  1322. default:
  1323. dev_err(priv->adapter->dev,
  1324. "PREP_CMD: unknown cmd- %#x\n", cmd_no);
  1325. ret = -1;
  1326. break;
  1327. }
  1328. return ret;
  1329. }
  1330. /*
  1331. * This function issues commands to initialize firmware.
  1332. *
  1333. * This is called after firmware download to bring the card to
  1334. * working state.
  1335. *
  1336. * The following commands are issued sequentially -
  1337. * - Set PCI-Express host buffer configuration (PCIE only)
  1338. * - Function init (for first interface only)
  1339. * - Read MAC address (for first interface only)
  1340. * - Reconfigure Tx buffer size (for first interface only)
  1341. * - Enable auto deep sleep (for first interface only)
  1342. * - Get Tx rate
  1343. * - Get Tx power
  1344. * - Set IBSS coalescing status
  1345. * - Set AMSDU aggregation control
  1346. * - Set 11d control
  1347. * - Set MAC control (this must be the last command to initialize firmware)
  1348. */
  1349. int mwifiex_sta_init_cmd(struct mwifiex_private *priv, u8 first_sta)
  1350. {
  1351. struct mwifiex_adapter *adapter = priv->adapter;
  1352. int ret;
  1353. u16 enable = true;
  1354. struct mwifiex_ds_11n_amsdu_aggr_ctrl amsdu_aggr_ctrl;
  1355. struct mwifiex_ds_auto_ds auto_ds;
  1356. enum state_11d_t state_11d;
  1357. struct mwifiex_ds_11n_tx_cfg tx_cfg;
  1358. if (first_sta) {
  1359. if (priv->adapter->iface_type == MWIFIEX_PCIE) {
  1360. ret = mwifiex_send_cmd_sync(priv,
  1361. HostCmd_CMD_PCIE_DESC_DETAILS,
  1362. HostCmd_ACT_GEN_SET, 0, NULL);
  1363. if (ret)
  1364. return -1;
  1365. }
  1366. ret = mwifiex_send_cmd_sync(priv, HostCmd_CMD_FUNC_INIT,
  1367. HostCmd_ACT_GEN_SET, 0, NULL);
  1368. if (ret)
  1369. return -1;
  1370. /* Download calibration data to firmware */
  1371. if (adapter->cal_data) {
  1372. ret = mwifiex_send_cmd_sync(priv, HostCmd_CMD_CFG_DATA,
  1373. HostCmd_ACT_GEN_SET, 0, NULL);
  1374. if (ret)
  1375. return -1;
  1376. }
  1377. /* Read MAC address from HW */
  1378. ret = mwifiex_send_cmd_sync(priv, HostCmd_CMD_GET_HW_SPEC,
  1379. HostCmd_ACT_GEN_GET, 0, NULL);
  1380. if (ret)
  1381. return -1;
  1382. /* Reconfigure tx buf size */
  1383. ret = mwifiex_send_cmd_sync(priv,
  1384. HostCmd_CMD_RECONFIGURE_TX_BUFF,
  1385. HostCmd_ACT_GEN_SET, 0,
  1386. &priv->adapter->tx_buf_size);
  1387. if (ret)
  1388. return -1;
  1389. if (priv->bss_type != MWIFIEX_BSS_TYPE_UAP) {
  1390. /* Enable IEEE PS by default */
  1391. priv->adapter->ps_mode = MWIFIEX_802_11_POWER_MODE_PSP;
  1392. ret = mwifiex_send_cmd_sync(
  1393. priv, HostCmd_CMD_802_11_PS_MODE_ENH,
  1394. EN_AUTO_PS, BITMAP_STA_PS, NULL);
  1395. if (ret)
  1396. return -1;
  1397. }
  1398. }
  1399. /* get tx rate */
  1400. ret = mwifiex_send_cmd_sync(priv, HostCmd_CMD_TX_RATE_CFG,
  1401. HostCmd_ACT_GEN_GET, 0, NULL);
  1402. if (ret)
  1403. return -1;
  1404. priv->data_rate = 0;
  1405. /* get tx power */
  1406. ret = mwifiex_send_cmd_sync(priv, HostCmd_CMD_RF_TX_PWR,
  1407. HostCmd_ACT_GEN_GET, 0, NULL);
  1408. if (ret)
  1409. return -1;
  1410. if (priv->bss_type == MWIFIEX_BSS_TYPE_STA) {
  1411. /* set ibss coalescing_status */
  1412. ret = mwifiex_send_cmd_sync(
  1413. priv, HostCmd_CMD_802_11_IBSS_COALESCING_STATUS,
  1414. HostCmd_ACT_GEN_SET, 0, &enable);
  1415. if (ret)
  1416. return -1;
  1417. }
  1418. memset(&amsdu_aggr_ctrl, 0, sizeof(amsdu_aggr_ctrl));
  1419. amsdu_aggr_ctrl.enable = true;
  1420. /* Send request to firmware */
  1421. ret = mwifiex_send_cmd_sync(priv, HostCmd_CMD_AMSDU_AGGR_CTRL,
  1422. HostCmd_ACT_GEN_SET, 0,
  1423. &amsdu_aggr_ctrl);
  1424. if (ret)
  1425. return -1;
  1426. /* MAC Control must be the last command in init_fw */
  1427. /* set MAC Control */
  1428. ret = mwifiex_send_cmd_sync(priv, HostCmd_CMD_MAC_CONTROL,
  1429. HostCmd_ACT_GEN_SET, 0,
  1430. &priv->curr_pkt_filter);
  1431. if (ret)
  1432. return -1;
  1433. if (first_sta && priv->adapter->iface_type != MWIFIEX_USB &&
  1434. priv->bss_type != MWIFIEX_BSS_TYPE_UAP) {
  1435. /* Enable auto deep sleep */
  1436. auto_ds.auto_ds = DEEP_SLEEP_ON;
  1437. auto_ds.idle_time = DEEP_SLEEP_IDLE_TIME;
  1438. ret = mwifiex_send_cmd_sync(priv,
  1439. HostCmd_CMD_802_11_PS_MODE_ENH,
  1440. EN_AUTO_PS, BITMAP_AUTO_DS,
  1441. &auto_ds);
  1442. if (ret)
  1443. return -1;
  1444. }
  1445. if (priv->bss_type != MWIFIEX_BSS_TYPE_UAP) {
  1446. /* Send cmd to FW to enable/disable 11D function */
  1447. state_11d = ENABLE_11D;
  1448. ret = mwifiex_send_cmd_sync(priv, HostCmd_CMD_802_11_SNMP_MIB,
  1449. HostCmd_ACT_GEN_SET, DOT11D_I,
  1450. &state_11d);
  1451. if (ret)
  1452. dev_err(priv->adapter->dev,
  1453. "11D: failed to enable 11D\n");
  1454. }
  1455. /* set last_init_cmd before sending the command */
  1456. priv->adapter->last_init_cmd = HostCmd_CMD_11N_CFG;
  1457. /* Send cmd to FW to configure 11n specific configuration
  1458. * (Short GI, Channel BW, Green field support etc.) for transmit
  1459. */
  1460. tx_cfg.tx_htcap = MWIFIEX_FW_DEF_HTTXCFG;
  1461. ret = mwifiex_send_cmd_sync(priv, HostCmd_CMD_11N_CFG,
  1462. HostCmd_ACT_GEN_SET, 0, &tx_cfg);
  1463. ret = -EINPROGRESS;
  1464. return ret;
  1465. }