ops.c 36 KB

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  1. /******************************************************************************
  2. *
  3. * This file is provided under a dual BSD/GPLv2 license. When using or
  4. * redistributing this file, you may do so under either license.
  5. *
  6. * GPL LICENSE SUMMARY
  7. *
  8. * Copyright(c) 2012 - 2014 Intel Corporation. All rights reserved.
  9. * Copyright(c) 2013 - 2014 Intel Mobile Communications GmbH
  10. *
  11. * This program is free software; you can redistribute it and/or modify
  12. * it under the terms of version 2 of the GNU General Public License as
  13. * published by the Free Software Foundation.
  14. *
  15. * This program is distributed in the hope that it will be useful, but
  16. * WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  18. * General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to the Free Software
  22. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110,
  23. * USA
  24. *
  25. * The full GNU General Public License is included in this distribution
  26. * in the file called COPYING.
  27. *
  28. * Contact Information:
  29. * Intel Linux Wireless <ilw@linux.intel.com>
  30. * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
  31. *
  32. * BSD LICENSE
  33. *
  34. * Copyright(c) 2012 - 2014 Intel Corporation. All rights reserved.
  35. * Copyright(c) 2013 - 2014 Intel Mobile Communications GmbH
  36. * All rights reserved.
  37. *
  38. * Redistribution and use in source and binary forms, with or without
  39. * modification, are permitted provided that the following conditions
  40. * are met:
  41. *
  42. * * Redistributions of source code must retain the above copyright
  43. * notice, this list of conditions and the following disclaimer.
  44. * * Redistributions in binary form must reproduce the above copyright
  45. * notice, this list of conditions and the following disclaimer in
  46. * the documentation and/or other materials provided with the
  47. * distribution.
  48. * * Neither the name Intel Corporation nor the names of its
  49. * contributors may be used to endorse or promote products derived
  50. * from this software without specific prior written permission.
  51. *
  52. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  53. * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  54. * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
  55. * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
  56. * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  57. * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
  58. * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
  59. * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
  60. * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  61. * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  62. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  63. *
  64. *****************************************************************************/
  65. #include <linux/module.h>
  66. #include <linux/vmalloc.h>
  67. #include <net/mac80211.h>
  68. #include "iwl-notif-wait.h"
  69. #include "iwl-trans.h"
  70. #include "iwl-op-mode.h"
  71. #include "iwl-fw.h"
  72. #include "iwl-debug.h"
  73. #include "iwl-drv.h"
  74. #include "iwl-modparams.h"
  75. #include "mvm.h"
  76. #include "iwl-phy-db.h"
  77. #include "iwl-eeprom-parse.h"
  78. #include "iwl-csr.h"
  79. #include "iwl-io.h"
  80. #include "iwl-prph.h"
  81. #include "rs.h"
  82. #include "fw-api-scan.h"
  83. #include "time-event.h"
  84. #include "iwl-fw-error-dump.h"
  85. /*
  86. * module name, copyright, version, etc.
  87. */
  88. #define DRV_DESCRIPTION "The new Intel(R) wireless AGN driver for Linux"
  89. #define DRV_VERSION IWLWIFI_VERSION
  90. MODULE_DESCRIPTION(DRV_DESCRIPTION);
  91. MODULE_VERSION(DRV_VERSION);
  92. MODULE_AUTHOR(DRV_COPYRIGHT " " DRV_AUTHOR);
  93. MODULE_LICENSE("GPL");
  94. static const struct iwl_op_mode_ops iwl_mvm_ops;
  95. struct iwl_mvm_mod_params iwlmvm_mod_params = {
  96. .power_scheme = IWL_POWER_SCHEME_BPS,
  97. /* rest of fields are 0 by default */
  98. };
  99. module_param_named(init_dbg, iwlmvm_mod_params.init_dbg, bool, S_IRUGO);
  100. MODULE_PARM_DESC(init_dbg,
  101. "set to true to debug an ASSERT in INIT fw (default: false");
  102. module_param_named(power_scheme, iwlmvm_mod_params.power_scheme, int, S_IRUGO);
  103. MODULE_PARM_DESC(power_scheme,
  104. "power management scheme: 1-active, 2-balanced, 3-low power, default: 2");
  105. /*
  106. * module init and exit functions
  107. */
  108. static int __init iwl_mvm_init(void)
  109. {
  110. int ret;
  111. ret = iwl_mvm_rate_control_register();
  112. if (ret) {
  113. pr_err("Unable to register rate control algorithm: %d\n", ret);
  114. return ret;
  115. }
  116. ret = iwl_opmode_register("iwlmvm", &iwl_mvm_ops);
  117. if (ret) {
  118. pr_err("Unable to register MVM op_mode: %d\n", ret);
  119. iwl_mvm_rate_control_unregister();
  120. }
  121. return ret;
  122. }
  123. module_init(iwl_mvm_init);
  124. static void __exit iwl_mvm_exit(void)
  125. {
  126. iwl_opmode_deregister("iwlmvm");
  127. iwl_mvm_rate_control_unregister();
  128. }
  129. module_exit(iwl_mvm_exit);
  130. static void iwl_mvm_nic_config(struct iwl_op_mode *op_mode)
  131. {
  132. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  133. u8 radio_cfg_type, radio_cfg_step, radio_cfg_dash;
  134. u32 reg_val = 0;
  135. radio_cfg_type = (mvm->fw->phy_config & FW_PHY_CFG_RADIO_TYPE) >>
  136. FW_PHY_CFG_RADIO_TYPE_POS;
  137. radio_cfg_step = (mvm->fw->phy_config & FW_PHY_CFG_RADIO_STEP) >>
  138. FW_PHY_CFG_RADIO_STEP_POS;
  139. radio_cfg_dash = (mvm->fw->phy_config & FW_PHY_CFG_RADIO_DASH) >>
  140. FW_PHY_CFG_RADIO_DASH_POS;
  141. /* SKU control */
  142. reg_val |= CSR_HW_REV_STEP(mvm->trans->hw_rev) <<
  143. CSR_HW_IF_CONFIG_REG_POS_MAC_STEP;
  144. reg_val |= CSR_HW_REV_DASH(mvm->trans->hw_rev) <<
  145. CSR_HW_IF_CONFIG_REG_POS_MAC_DASH;
  146. /* radio configuration */
  147. reg_val |= radio_cfg_type << CSR_HW_IF_CONFIG_REG_POS_PHY_TYPE;
  148. reg_val |= radio_cfg_step << CSR_HW_IF_CONFIG_REG_POS_PHY_STEP;
  149. reg_val |= radio_cfg_dash << CSR_HW_IF_CONFIG_REG_POS_PHY_DASH;
  150. WARN_ON((radio_cfg_type << CSR_HW_IF_CONFIG_REG_POS_PHY_TYPE) &
  151. ~CSR_HW_IF_CONFIG_REG_MSK_PHY_TYPE);
  152. /*
  153. * TODO: Bits 7-8 of CSR in 8000 HW family set the ADC sampling, and
  154. * shouldn't be set to any non-zero value. The same is supposed to be
  155. * true of the other HW, but unsetting them (such as the 7260) causes
  156. * automatic tests to fail on seemingly unrelated errors. Need to
  157. * further investigate this, but for now we'll separate cases.
  158. */
  159. if (mvm->trans->cfg->device_family != IWL_DEVICE_FAMILY_8000)
  160. reg_val |= CSR_HW_IF_CONFIG_REG_BIT_RADIO_SI;
  161. iwl_trans_set_bits_mask(mvm->trans, CSR_HW_IF_CONFIG_REG,
  162. CSR_HW_IF_CONFIG_REG_MSK_MAC_DASH |
  163. CSR_HW_IF_CONFIG_REG_MSK_MAC_STEP |
  164. CSR_HW_IF_CONFIG_REG_MSK_PHY_TYPE |
  165. CSR_HW_IF_CONFIG_REG_MSK_PHY_STEP |
  166. CSR_HW_IF_CONFIG_REG_MSK_PHY_DASH |
  167. CSR_HW_IF_CONFIG_REG_BIT_RADIO_SI |
  168. CSR_HW_IF_CONFIG_REG_BIT_MAC_SI,
  169. reg_val);
  170. IWL_DEBUG_INFO(mvm, "Radio type=0x%x-0x%x-0x%x\n", radio_cfg_type,
  171. radio_cfg_step, radio_cfg_dash);
  172. /*
  173. * W/A : NIC is stuck in a reset state after Early PCIe power off
  174. * (PCIe power is lost before PERST# is asserted), causing ME FW
  175. * to lose ownership and not being able to obtain it back.
  176. */
  177. if (mvm->trans->cfg->device_family != IWL_DEVICE_FAMILY_8000)
  178. iwl_set_bits_mask_prph(mvm->trans, APMG_PS_CTRL_REG,
  179. APMG_PS_CTRL_EARLY_PWR_OFF_RESET_DIS,
  180. ~APMG_PS_CTRL_EARLY_PWR_OFF_RESET_DIS);
  181. }
  182. struct iwl_rx_handlers {
  183. u8 cmd_id;
  184. bool async;
  185. int (*fn)(struct iwl_mvm *mvm, struct iwl_rx_cmd_buffer *rxb,
  186. struct iwl_device_cmd *cmd);
  187. };
  188. #define RX_HANDLER(_cmd_id, _fn, _async) \
  189. { .cmd_id = _cmd_id , .fn = _fn , .async = _async }
  190. /*
  191. * Handlers for fw notifications
  192. * Convention: RX_HANDLER(CMD_NAME, iwl_mvm_rx_CMD_NAME
  193. * This list should be in order of frequency for performance purposes.
  194. *
  195. * The handler can be SYNC - this means that it will be called in the Rx path
  196. * which can't acquire mvm->mutex. If the handler needs to hold mvm->mutex (and
  197. * only in this case!), it should be set as ASYNC. In that case, it will be
  198. * called from a worker with mvm->mutex held.
  199. */
  200. static const struct iwl_rx_handlers iwl_mvm_rx_handlers[] = {
  201. RX_HANDLER(REPLY_RX_MPDU_CMD, iwl_mvm_rx_rx_mpdu, false),
  202. RX_HANDLER(REPLY_RX_PHY_CMD, iwl_mvm_rx_rx_phy_cmd, false),
  203. RX_HANDLER(TX_CMD, iwl_mvm_rx_tx_cmd, false),
  204. RX_HANDLER(BA_NOTIF, iwl_mvm_rx_ba_notif, false),
  205. RX_HANDLER(BT_PROFILE_NOTIFICATION, iwl_mvm_rx_bt_coex_notif, true),
  206. RX_HANDLER(BEACON_NOTIFICATION, iwl_mvm_rx_beacon_notif, true),
  207. RX_HANDLER(STATISTICS_NOTIFICATION, iwl_mvm_rx_statistics, true),
  208. RX_HANDLER(ANTENNA_COUPLING_NOTIFICATION,
  209. iwl_mvm_rx_ant_coupling_notif, true),
  210. RX_HANDLER(TIME_EVENT_NOTIFICATION, iwl_mvm_rx_time_event_notif, false),
  211. RX_HANDLER(EOSP_NOTIFICATION, iwl_mvm_rx_eosp_notif, false),
  212. RX_HANDLER(SCAN_REQUEST_CMD, iwl_mvm_rx_scan_response, false),
  213. RX_HANDLER(SCAN_COMPLETE_NOTIFICATION, iwl_mvm_rx_scan_complete, true),
  214. RX_HANDLER(SCAN_OFFLOAD_COMPLETE,
  215. iwl_mvm_rx_scan_offload_complete_notif, true),
  216. RX_HANDLER(MATCH_FOUND_NOTIFICATION, iwl_mvm_rx_scan_offload_results,
  217. false),
  218. RX_HANDLER(RADIO_VERSION_NOTIFICATION, iwl_mvm_rx_radio_ver, false),
  219. RX_HANDLER(CARD_STATE_NOTIFICATION, iwl_mvm_rx_card_state_notif, false),
  220. RX_HANDLER(MISSED_BEACONS_NOTIFICATION, iwl_mvm_rx_missed_beacons_notif,
  221. false),
  222. RX_HANDLER(REPLY_ERROR, iwl_mvm_rx_fw_error, false),
  223. RX_HANDLER(PSM_UAPSD_AP_MISBEHAVING_NOTIFICATION,
  224. iwl_mvm_power_uapsd_misbehaving_ap_notif, false),
  225. };
  226. #undef RX_HANDLER
  227. #define CMD(x) [x] = #x
  228. static const char *const iwl_mvm_cmd_strings[REPLY_MAX] = {
  229. CMD(MVM_ALIVE),
  230. CMD(REPLY_ERROR),
  231. CMD(INIT_COMPLETE_NOTIF),
  232. CMD(PHY_CONTEXT_CMD),
  233. CMD(MGMT_MCAST_KEY),
  234. CMD(TX_CMD),
  235. CMD(TXPATH_FLUSH),
  236. CMD(MAC_CONTEXT_CMD),
  237. CMD(TIME_EVENT_CMD),
  238. CMD(TIME_EVENT_NOTIFICATION),
  239. CMD(BINDING_CONTEXT_CMD),
  240. CMD(TIME_QUOTA_CMD),
  241. CMD(NON_QOS_TX_COUNTER_CMD),
  242. CMD(RADIO_VERSION_NOTIFICATION),
  243. CMD(SCAN_REQUEST_CMD),
  244. CMD(SCAN_ABORT_CMD),
  245. CMD(SCAN_START_NOTIFICATION),
  246. CMD(SCAN_RESULTS_NOTIFICATION),
  247. CMD(SCAN_COMPLETE_NOTIFICATION),
  248. CMD(NVM_ACCESS_CMD),
  249. CMD(PHY_CONFIGURATION_CMD),
  250. CMD(CALIB_RES_NOTIF_PHY_DB),
  251. CMD(SET_CALIB_DEFAULT_CMD),
  252. CMD(CALIBRATION_COMPLETE_NOTIFICATION),
  253. CMD(ADD_STA_KEY),
  254. CMD(ADD_STA),
  255. CMD(REMOVE_STA),
  256. CMD(LQ_CMD),
  257. CMD(SCAN_OFFLOAD_CONFIG_CMD),
  258. CMD(MATCH_FOUND_NOTIFICATION),
  259. CMD(SCAN_OFFLOAD_REQUEST_CMD),
  260. CMD(SCAN_OFFLOAD_ABORT_CMD),
  261. CMD(HOT_SPOT_CMD),
  262. CMD(SCAN_OFFLOAD_COMPLETE),
  263. CMD(SCAN_OFFLOAD_UPDATE_PROFILES_CMD),
  264. CMD(SCAN_ITERATION_COMPLETE),
  265. CMD(POWER_TABLE_CMD),
  266. CMD(WEP_KEY),
  267. CMD(REPLY_RX_PHY_CMD),
  268. CMD(REPLY_RX_MPDU_CMD),
  269. CMD(BEACON_NOTIFICATION),
  270. CMD(BEACON_TEMPLATE_CMD),
  271. CMD(STATISTICS_NOTIFICATION),
  272. CMD(EOSP_NOTIFICATION),
  273. CMD(REDUCE_TX_POWER_CMD),
  274. CMD(TX_ANT_CONFIGURATION_CMD),
  275. CMD(D3_CONFIG_CMD),
  276. CMD(D0I3_END_CMD),
  277. CMD(PROT_OFFLOAD_CONFIG_CMD),
  278. CMD(OFFLOADS_QUERY_CMD),
  279. CMD(REMOTE_WAKE_CONFIG_CMD),
  280. CMD(WOWLAN_PATTERNS),
  281. CMD(WOWLAN_CONFIGURATION),
  282. CMD(WOWLAN_TSC_RSC_PARAM),
  283. CMD(WOWLAN_TKIP_PARAM),
  284. CMD(WOWLAN_KEK_KCK_MATERIAL),
  285. CMD(WOWLAN_GET_STATUSES),
  286. CMD(WOWLAN_TX_POWER_PER_DB),
  287. CMD(NET_DETECT_CONFIG_CMD),
  288. CMD(NET_DETECT_PROFILES_QUERY_CMD),
  289. CMD(NET_DETECT_PROFILES_CMD),
  290. CMD(NET_DETECT_HOTSPOTS_CMD),
  291. CMD(NET_DETECT_HOTSPOTS_QUERY_CMD),
  292. CMD(CARD_STATE_NOTIFICATION),
  293. CMD(MISSED_BEACONS_NOTIFICATION),
  294. CMD(BT_COEX_PRIO_TABLE),
  295. CMD(BT_COEX_PROT_ENV),
  296. CMD(BT_PROFILE_NOTIFICATION),
  297. CMD(BT_CONFIG),
  298. CMD(MCAST_FILTER_CMD),
  299. CMD(BCAST_FILTER_CMD),
  300. CMD(REPLY_SF_CFG_CMD),
  301. CMD(REPLY_BEACON_FILTERING_CMD),
  302. CMD(CMD_DTS_MEASUREMENT_TRIGGER),
  303. CMD(DTS_MEASUREMENT_NOTIFICATION),
  304. CMD(REPLY_THERMAL_MNG_BACKOFF),
  305. CMD(MAC_PM_POWER_TABLE),
  306. CMD(LTR_CONFIG),
  307. CMD(BT_COEX_CI),
  308. CMD(BT_COEX_UPDATE_SW_BOOST),
  309. CMD(BT_COEX_UPDATE_CORUN_LUT),
  310. CMD(BT_COEX_UPDATE_REDUCED_TXP),
  311. CMD(PSM_UAPSD_AP_MISBEHAVING_NOTIFICATION),
  312. CMD(ANTENNA_COUPLING_NOTIFICATION),
  313. CMD(SCD_QUEUE_CFG),
  314. };
  315. #undef CMD
  316. /* this forward declaration can avoid to export the function */
  317. static void iwl_mvm_async_handlers_wk(struct work_struct *wk);
  318. static void iwl_mvm_d0i3_exit_work(struct work_struct *wk);
  319. static u32 calc_min_backoff(struct iwl_trans *trans, const struct iwl_cfg *cfg)
  320. {
  321. const struct iwl_pwr_tx_backoff *pwr_tx_backoff = cfg->pwr_tx_backoffs;
  322. if (!pwr_tx_backoff)
  323. return 0;
  324. while (pwr_tx_backoff->pwr) {
  325. if (trans->dflt_pwr_limit >= pwr_tx_backoff->pwr)
  326. return pwr_tx_backoff->backoff;
  327. pwr_tx_backoff++;
  328. }
  329. return 0;
  330. }
  331. static void iwl_mvm_fw_error_dump_wk(struct work_struct *work);
  332. static struct iwl_op_mode *
  333. iwl_op_mode_mvm_start(struct iwl_trans *trans, const struct iwl_cfg *cfg,
  334. const struct iwl_fw *fw, struct dentry *dbgfs_dir)
  335. {
  336. struct ieee80211_hw *hw;
  337. struct iwl_op_mode *op_mode;
  338. struct iwl_mvm *mvm;
  339. struct iwl_trans_config trans_cfg = {};
  340. static const u8 no_reclaim_cmds[] = {
  341. TX_CMD,
  342. };
  343. int err, scan_size;
  344. u32 min_backoff;
  345. /*
  346. * We use IWL_MVM_STATION_COUNT to check the validity of the station
  347. * index all over the driver - check that its value corresponds to the
  348. * array size.
  349. */
  350. BUILD_BUG_ON(ARRAY_SIZE(mvm->fw_id_to_mac_id) != IWL_MVM_STATION_COUNT);
  351. /********************************
  352. * 1. Allocating and configuring HW data
  353. ********************************/
  354. hw = ieee80211_alloc_hw(sizeof(struct iwl_op_mode) +
  355. sizeof(struct iwl_mvm),
  356. &iwl_mvm_hw_ops);
  357. if (!hw)
  358. return NULL;
  359. if (cfg->max_rx_agg_size)
  360. hw->max_rx_aggregation_subframes = cfg->max_rx_agg_size;
  361. if (cfg->max_tx_agg_size)
  362. hw->max_tx_aggregation_subframes = cfg->max_tx_agg_size;
  363. op_mode = hw->priv;
  364. op_mode->ops = &iwl_mvm_ops;
  365. mvm = IWL_OP_MODE_GET_MVM(op_mode);
  366. mvm->dev = trans->dev;
  367. mvm->trans = trans;
  368. mvm->cfg = cfg;
  369. mvm->fw = fw;
  370. mvm->hw = hw;
  371. mvm->restart_fw = iwlwifi_mod_params.restart_fw ? -1 : 0;
  372. mvm->aux_queue = 15;
  373. mvm->first_agg_queue = 16;
  374. mvm->last_agg_queue = mvm->cfg->base_params->num_of_queues - 1;
  375. if (mvm->cfg->base_params->num_of_queues == 16) {
  376. mvm->aux_queue = 11;
  377. mvm->first_agg_queue = 12;
  378. }
  379. mvm->sf_state = SF_UNINIT;
  380. mvm->low_latency_agg_frame_limit = 6;
  381. mutex_init(&mvm->mutex);
  382. mutex_init(&mvm->d0i3_suspend_mutex);
  383. spin_lock_init(&mvm->async_handlers_lock);
  384. INIT_LIST_HEAD(&mvm->time_event_list);
  385. INIT_LIST_HEAD(&mvm->aux_roc_te_list);
  386. INIT_LIST_HEAD(&mvm->async_handlers_list);
  387. spin_lock_init(&mvm->time_event_lock);
  388. INIT_WORK(&mvm->async_handlers_wk, iwl_mvm_async_handlers_wk);
  389. INIT_WORK(&mvm->roc_done_wk, iwl_mvm_roc_done_wk);
  390. INIT_WORK(&mvm->sta_drained_wk, iwl_mvm_sta_drained_wk);
  391. INIT_WORK(&mvm->d0i3_exit_work, iwl_mvm_d0i3_exit_work);
  392. INIT_WORK(&mvm->fw_error_dump_wk, iwl_mvm_fw_error_dump_wk);
  393. spin_lock_init(&mvm->d0i3_tx_lock);
  394. spin_lock_init(&mvm->refs_lock);
  395. skb_queue_head_init(&mvm->d0i3_tx);
  396. init_waitqueue_head(&mvm->d0i3_exit_waitq);
  397. SET_IEEE80211_DEV(mvm->hw, mvm->trans->dev);
  398. /*
  399. * Populate the state variables that the transport layer needs
  400. * to know about.
  401. */
  402. trans_cfg.op_mode = op_mode;
  403. trans_cfg.no_reclaim_cmds = no_reclaim_cmds;
  404. trans_cfg.n_no_reclaim_cmds = ARRAY_SIZE(no_reclaim_cmds);
  405. trans_cfg.rx_buf_size_8k = iwlwifi_mod_params.amsdu_size_8K;
  406. if (mvm->fw->ucode_capa.flags & IWL_UCODE_TLV_FLAGS_DW_BC_TABLE)
  407. trans_cfg.bc_table_dword = true;
  408. if (!iwlwifi_mod_params.wd_disable)
  409. trans_cfg.queue_watchdog_timeout = cfg->base_params->wd_timeout;
  410. else
  411. trans_cfg.queue_watchdog_timeout = IWL_WATCHDOG_DISABLED;
  412. trans_cfg.command_names = iwl_mvm_cmd_strings;
  413. trans_cfg.cmd_queue = IWL_MVM_CMD_QUEUE;
  414. trans_cfg.cmd_fifo = IWL_MVM_TX_FIFO_CMD;
  415. trans_cfg.scd_set_active = true;
  416. snprintf(mvm->hw->wiphy->fw_version,
  417. sizeof(mvm->hw->wiphy->fw_version),
  418. "%s", fw->fw_version);
  419. /* Configure transport layer */
  420. iwl_trans_configure(mvm->trans, &trans_cfg);
  421. trans->rx_mpdu_cmd = REPLY_RX_MPDU_CMD;
  422. trans->rx_mpdu_cmd_hdr_size = sizeof(struct iwl_rx_mpdu_res_start);
  423. /* set up notification wait support */
  424. iwl_notification_wait_init(&mvm->notif_wait);
  425. /* Init phy db */
  426. mvm->phy_db = iwl_phy_db_init(trans);
  427. if (!mvm->phy_db) {
  428. IWL_ERR(mvm, "Cannot init phy_db\n");
  429. goto out_free;
  430. }
  431. IWL_INFO(mvm, "Detected %s, REV=0x%X\n",
  432. mvm->cfg->name, mvm->trans->hw_rev);
  433. min_backoff = calc_min_backoff(trans, cfg);
  434. iwl_mvm_tt_initialize(mvm, min_backoff);
  435. /* set the nvm_file_name according to priority */
  436. if (iwlwifi_mod_params.nvm_file)
  437. mvm->nvm_file_name = iwlwifi_mod_params.nvm_file;
  438. else
  439. mvm->nvm_file_name = mvm->cfg->default_nvm_file;
  440. if (WARN(cfg->no_power_up_nic_in_init && !mvm->nvm_file_name,
  441. "not allowing power-up and not having nvm_file\n"))
  442. goto out_free;
  443. /*
  444. * Even if nvm exists in the nvm_file driver should read again the nvm
  445. * from the nic because there might be entries that exist in the OTP
  446. * and not in the file.
  447. * for nics with no_power_up_nic_in_init: rely completley on nvm_file
  448. */
  449. if (cfg->no_power_up_nic_in_init && mvm->nvm_file_name) {
  450. err = iwl_nvm_init(mvm, false);
  451. if (err)
  452. goto out_free;
  453. } else {
  454. err = iwl_trans_start_hw(mvm->trans);
  455. if (err)
  456. goto out_free;
  457. mutex_lock(&mvm->mutex);
  458. err = iwl_run_init_mvm_ucode(mvm, true);
  459. iwl_trans_stop_device(trans);
  460. mutex_unlock(&mvm->mutex);
  461. /* returns 0 if successful, 1 if success but in rfkill */
  462. if (err < 0 && !iwlmvm_mod_params.init_dbg) {
  463. IWL_ERR(mvm, "Failed to run INIT ucode: %d\n", err);
  464. goto out_free;
  465. }
  466. }
  467. if (mvm->fw->ucode_capa.api[0] & IWL_UCODE_TLV_API_LMAC_SCAN)
  468. scan_size = sizeof(struct iwl_scan_req_unified_lmac) +
  469. sizeof(struct iwl_scan_channel_cfg_lmac) *
  470. mvm->fw->ucode_capa.n_scan_channels +
  471. sizeof(struct iwl_scan_probe_req);
  472. else
  473. scan_size = sizeof(struct iwl_scan_cmd) +
  474. mvm->fw->ucode_capa.max_probe_length +
  475. mvm->fw->ucode_capa.n_scan_channels *
  476. sizeof(struct iwl_scan_channel);
  477. mvm->scan_cmd = kmalloc(scan_size, GFP_KERNEL);
  478. if (!mvm->scan_cmd)
  479. goto out_free;
  480. err = iwl_mvm_mac_setup_register(mvm);
  481. if (err)
  482. goto out_free;
  483. err = iwl_mvm_dbgfs_register(mvm, dbgfs_dir);
  484. if (err)
  485. goto out_unregister;
  486. memset(&mvm->rx_stats, 0, sizeof(struct mvm_statistics_rx));
  487. /* rpm starts with a taken ref. only set the appropriate bit here. */
  488. mvm->refs[IWL_MVM_REF_UCODE_DOWN] = 1;
  489. return op_mode;
  490. out_unregister:
  491. ieee80211_unregister_hw(mvm->hw);
  492. iwl_mvm_leds_exit(mvm);
  493. out_free:
  494. iwl_phy_db_free(mvm->phy_db);
  495. kfree(mvm->scan_cmd);
  496. if (!cfg->no_power_up_nic_in_init || !mvm->nvm_file_name)
  497. iwl_trans_op_mode_leave(trans);
  498. ieee80211_free_hw(mvm->hw);
  499. return NULL;
  500. }
  501. static void iwl_op_mode_mvm_stop(struct iwl_op_mode *op_mode)
  502. {
  503. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  504. int i;
  505. iwl_mvm_leds_exit(mvm);
  506. iwl_mvm_tt_exit(mvm);
  507. ieee80211_unregister_hw(mvm->hw);
  508. kfree(mvm->scan_cmd);
  509. kfree(mvm->mcast_filter_cmd);
  510. mvm->mcast_filter_cmd = NULL;
  511. #if defined(CONFIG_PM_SLEEP) && defined(CONFIG_IWLWIFI_DEBUGFS)
  512. kfree(mvm->d3_resume_sram);
  513. if (mvm->nd_config) {
  514. kfree(mvm->nd_config->match_sets);
  515. kfree(mvm->nd_config);
  516. mvm->nd_config = NULL;
  517. kfree(mvm->nd_ies);
  518. mvm->nd_ies = NULL;
  519. }
  520. #endif
  521. iwl_trans_op_mode_leave(mvm->trans);
  522. iwl_phy_db_free(mvm->phy_db);
  523. mvm->phy_db = NULL;
  524. iwl_free_nvm_data(mvm->nvm_data);
  525. for (i = 0; i < NVM_MAX_NUM_SECTIONS; i++)
  526. kfree(mvm->nvm_sections[i].data);
  527. ieee80211_free_hw(mvm->hw);
  528. }
  529. struct iwl_async_handler_entry {
  530. struct list_head list;
  531. struct iwl_rx_cmd_buffer rxb;
  532. int (*fn)(struct iwl_mvm *mvm, struct iwl_rx_cmd_buffer *rxb,
  533. struct iwl_device_cmd *cmd);
  534. };
  535. void iwl_mvm_async_handlers_purge(struct iwl_mvm *mvm)
  536. {
  537. struct iwl_async_handler_entry *entry, *tmp;
  538. spin_lock_bh(&mvm->async_handlers_lock);
  539. list_for_each_entry_safe(entry, tmp, &mvm->async_handlers_list, list) {
  540. iwl_free_rxb(&entry->rxb);
  541. list_del(&entry->list);
  542. kfree(entry);
  543. }
  544. spin_unlock_bh(&mvm->async_handlers_lock);
  545. }
  546. static void iwl_mvm_async_handlers_wk(struct work_struct *wk)
  547. {
  548. struct iwl_mvm *mvm =
  549. container_of(wk, struct iwl_mvm, async_handlers_wk);
  550. struct iwl_async_handler_entry *entry, *tmp;
  551. struct list_head local_list;
  552. INIT_LIST_HEAD(&local_list);
  553. /* Ensure that we are not in stop flow (check iwl_mvm_mac_stop) */
  554. mutex_lock(&mvm->mutex);
  555. /*
  556. * Sync with Rx path with a lock. Remove all the entries from this list,
  557. * add them to a local one (lock free), and then handle them.
  558. */
  559. spin_lock_bh(&mvm->async_handlers_lock);
  560. list_splice_init(&mvm->async_handlers_list, &local_list);
  561. spin_unlock_bh(&mvm->async_handlers_lock);
  562. list_for_each_entry_safe(entry, tmp, &local_list, list) {
  563. if (entry->fn(mvm, &entry->rxb, NULL))
  564. IWL_WARN(mvm,
  565. "returned value from ASYNC handlers are ignored\n");
  566. iwl_free_rxb(&entry->rxb);
  567. list_del(&entry->list);
  568. kfree(entry);
  569. }
  570. mutex_unlock(&mvm->mutex);
  571. }
  572. static int iwl_mvm_rx_dispatch(struct iwl_op_mode *op_mode,
  573. struct iwl_rx_cmd_buffer *rxb,
  574. struct iwl_device_cmd *cmd)
  575. {
  576. struct iwl_rx_packet *pkt = rxb_addr(rxb);
  577. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  578. u8 i;
  579. /*
  580. * Do the notification wait before RX handlers so
  581. * even if the RX handler consumes the RXB we have
  582. * access to it in the notification wait entry.
  583. */
  584. iwl_notification_wait_notify(&mvm->notif_wait, pkt);
  585. for (i = 0; i < ARRAY_SIZE(iwl_mvm_rx_handlers); i++) {
  586. const struct iwl_rx_handlers *rx_h = &iwl_mvm_rx_handlers[i];
  587. struct iwl_async_handler_entry *entry;
  588. if (rx_h->cmd_id != pkt->hdr.cmd)
  589. continue;
  590. if (!rx_h->async)
  591. return rx_h->fn(mvm, rxb, cmd);
  592. entry = kzalloc(sizeof(*entry), GFP_ATOMIC);
  593. /* we can't do much... */
  594. if (!entry)
  595. return 0;
  596. entry->rxb._page = rxb_steal_page(rxb);
  597. entry->rxb._offset = rxb->_offset;
  598. entry->rxb._rx_page_order = rxb->_rx_page_order;
  599. entry->fn = rx_h->fn;
  600. spin_lock(&mvm->async_handlers_lock);
  601. list_add_tail(&entry->list, &mvm->async_handlers_list);
  602. spin_unlock(&mvm->async_handlers_lock);
  603. schedule_work(&mvm->async_handlers_wk);
  604. break;
  605. }
  606. return 0;
  607. }
  608. static void iwl_mvm_stop_sw_queue(struct iwl_op_mode *op_mode, int queue)
  609. {
  610. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  611. int mq = mvm->queue_to_mac80211[queue];
  612. if (WARN_ON_ONCE(mq == IWL_INVALID_MAC80211_QUEUE))
  613. return;
  614. if (atomic_inc_return(&mvm->mac80211_queue_stop_count[mq]) > 1) {
  615. IWL_DEBUG_TX_QUEUES(mvm,
  616. "queue %d (mac80211 %d) already stopped\n",
  617. queue, mq);
  618. return;
  619. }
  620. ieee80211_stop_queue(mvm->hw, mq);
  621. }
  622. static void iwl_mvm_wake_sw_queue(struct iwl_op_mode *op_mode, int queue)
  623. {
  624. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  625. int mq = mvm->queue_to_mac80211[queue];
  626. if (WARN_ON_ONCE(mq == IWL_INVALID_MAC80211_QUEUE))
  627. return;
  628. if (atomic_dec_return(&mvm->mac80211_queue_stop_count[mq]) > 0) {
  629. IWL_DEBUG_TX_QUEUES(mvm,
  630. "queue %d (mac80211 %d) still stopped\n",
  631. queue, mq);
  632. return;
  633. }
  634. ieee80211_wake_queue(mvm->hw, mq);
  635. }
  636. void iwl_mvm_set_hw_ctkill_state(struct iwl_mvm *mvm, bool state)
  637. {
  638. if (state)
  639. set_bit(IWL_MVM_STATUS_HW_CTKILL, &mvm->status);
  640. else
  641. clear_bit(IWL_MVM_STATUS_HW_CTKILL, &mvm->status);
  642. wiphy_rfkill_set_hw_state(mvm->hw->wiphy, iwl_mvm_is_radio_killed(mvm));
  643. }
  644. static bool iwl_mvm_set_hw_rfkill_state(struct iwl_op_mode *op_mode, bool state)
  645. {
  646. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  647. if (state)
  648. set_bit(IWL_MVM_STATUS_HW_RFKILL, &mvm->status);
  649. else
  650. clear_bit(IWL_MVM_STATUS_HW_RFKILL, &mvm->status);
  651. wiphy_rfkill_set_hw_state(mvm->hw->wiphy, iwl_mvm_is_radio_killed(mvm));
  652. return state && mvm->cur_ucode != IWL_UCODE_INIT;
  653. }
  654. static void iwl_mvm_free_skb(struct iwl_op_mode *op_mode, struct sk_buff *skb)
  655. {
  656. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  657. struct ieee80211_tx_info *info;
  658. info = IEEE80211_SKB_CB(skb);
  659. iwl_trans_free_tx_cmd(mvm->trans, info->driver_data[1]);
  660. ieee80211_free_txskb(mvm->hw, skb);
  661. }
  662. struct iwl_mvm_reprobe {
  663. struct device *dev;
  664. struct work_struct work;
  665. };
  666. static void iwl_mvm_reprobe_wk(struct work_struct *wk)
  667. {
  668. struct iwl_mvm_reprobe *reprobe;
  669. reprobe = container_of(wk, struct iwl_mvm_reprobe, work);
  670. if (device_reprobe(reprobe->dev))
  671. dev_err(reprobe->dev, "reprobe failed!\n");
  672. kfree(reprobe);
  673. module_put(THIS_MODULE);
  674. }
  675. static void iwl_mvm_fw_error_dump_wk(struct work_struct *work)
  676. {
  677. struct iwl_mvm *mvm =
  678. container_of(work, struct iwl_mvm, fw_error_dump_wk);
  679. mutex_lock(&mvm->mutex);
  680. iwl_mvm_fw_error_dump(mvm);
  681. mutex_unlock(&mvm->mutex);
  682. }
  683. void iwl_mvm_nic_restart(struct iwl_mvm *mvm, bool fw_error)
  684. {
  685. iwl_abort_notification_waits(&mvm->notif_wait);
  686. /*
  687. * This is a bit racy, but worst case we tell mac80211 about
  688. * a stopped/aborted scan when that was already done which
  689. * is not a problem. It is necessary to abort any os scan
  690. * here because mac80211 requires having the scan cleared
  691. * before restarting.
  692. * We'll reset the scan_status to NONE in restart cleanup in
  693. * the next start() call from mac80211. If restart isn't called
  694. * (no fw restart) scan status will stay busy.
  695. */
  696. switch (mvm->scan_status) {
  697. case IWL_MVM_SCAN_NONE:
  698. break;
  699. case IWL_MVM_SCAN_OS:
  700. ieee80211_scan_completed(mvm->hw, true);
  701. break;
  702. case IWL_MVM_SCAN_SCHED:
  703. /* Sched scan will be restarted by mac80211 in restart_hw. */
  704. if (!mvm->restart_fw)
  705. ieee80211_sched_scan_stopped(mvm->hw);
  706. break;
  707. }
  708. /*
  709. * If we're restarting already, don't cycle restarts.
  710. * If INIT fw asserted, it will likely fail again.
  711. * If WoWLAN fw asserted, don't restart either, mac80211
  712. * can't recover this since we're already half suspended.
  713. */
  714. if (test_and_set_bit(IWL_MVM_STATUS_IN_HW_RESTART, &mvm->status)) {
  715. struct iwl_mvm_reprobe *reprobe;
  716. IWL_ERR(mvm,
  717. "Firmware error during reconfiguration - reprobe!\n");
  718. /*
  719. * get a module reference to avoid doing this while unloading
  720. * anyway and to avoid scheduling a work with code that's
  721. * being removed.
  722. */
  723. if (!try_module_get(THIS_MODULE)) {
  724. IWL_ERR(mvm, "Module is being unloaded - abort\n");
  725. return;
  726. }
  727. reprobe = kzalloc(sizeof(*reprobe), GFP_ATOMIC);
  728. if (!reprobe) {
  729. module_put(THIS_MODULE);
  730. return;
  731. }
  732. reprobe->dev = mvm->trans->dev;
  733. INIT_WORK(&reprobe->work, iwl_mvm_reprobe_wk);
  734. schedule_work(&reprobe->work);
  735. } else if (mvm->cur_ucode == IWL_UCODE_REGULAR &&
  736. (!fw_error || mvm->restart_fw)) {
  737. /* don't let the transport/FW power down */
  738. iwl_mvm_ref(mvm, IWL_MVM_REF_UCODE_DOWN);
  739. if (fw_error && mvm->restart_fw > 0)
  740. mvm->restart_fw--;
  741. ieee80211_restart_hw(mvm->hw);
  742. } else if (fw_error) {
  743. schedule_work(&mvm->fw_error_dump_wk);
  744. }
  745. }
  746. static void iwl_mvm_nic_error(struct iwl_op_mode *op_mode)
  747. {
  748. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  749. iwl_mvm_dump_nic_error_log(mvm);
  750. iwl_mvm_nic_restart(mvm, true);
  751. }
  752. static void iwl_mvm_cmd_queue_full(struct iwl_op_mode *op_mode)
  753. {
  754. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  755. WARN_ON(1);
  756. iwl_mvm_nic_restart(mvm, true);
  757. }
  758. struct iwl_d0i3_iter_data {
  759. struct iwl_mvm *mvm;
  760. u8 ap_sta_id;
  761. u8 vif_count;
  762. u8 offloading_tid;
  763. bool disable_offloading;
  764. };
  765. static bool iwl_mvm_disallow_offloading(struct iwl_mvm *mvm,
  766. struct ieee80211_vif *vif,
  767. struct iwl_d0i3_iter_data *iter_data)
  768. {
  769. struct iwl_mvm_vif *mvmvif = iwl_mvm_vif_from_mac80211(vif);
  770. struct ieee80211_sta *ap_sta;
  771. struct iwl_mvm_sta *mvmsta;
  772. u32 available_tids = 0;
  773. u8 tid;
  774. if (WARN_ON(vif->type != NL80211_IFTYPE_STATION ||
  775. mvmvif->ap_sta_id == IWL_MVM_STATION_COUNT))
  776. return false;
  777. ap_sta = rcu_dereference(mvm->fw_id_to_mac_id[mvmvif->ap_sta_id]);
  778. if (IS_ERR_OR_NULL(ap_sta))
  779. return false;
  780. mvmsta = iwl_mvm_sta_from_mac80211(ap_sta);
  781. spin_lock_bh(&mvmsta->lock);
  782. for (tid = 0; tid < IWL_MAX_TID_COUNT; tid++) {
  783. struct iwl_mvm_tid_data *tid_data = &mvmsta->tid_data[tid];
  784. /*
  785. * in case of pending tx packets, don't use this tid
  786. * for offloading in order to prevent reuse of the same
  787. * qos seq counters.
  788. */
  789. if (iwl_mvm_tid_queued(tid_data))
  790. continue;
  791. if (tid_data->state != IWL_AGG_OFF)
  792. continue;
  793. available_tids |= BIT(tid);
  794. }
  795. spin_unlock_bh(&mvmsta->lock);
  796. /*
  797. * disallow protocol offloading if we have no available tid
  798. * (with no pending frames and no active aggregation,
  799. * as we don't handle "holes" properly - the scheduler needs the
  800. * frame's seq number and TFD index to match)
  801. */
  802. if (!available_tids)
  803. return true;
  804. /* for simplicity, just use the first available tid */
  805. iter_data->offloading_tid = ffs(available_tids) - 1;
  806. return false;
  807. }
  808. static void iwl_mvm_enter_d0i3_iterator(void *_data, u8 *mac,
  809. struct ieee80211_vif *vif)
  810. {
  811. struct iwl_d0i3_iter_data *data = _data;
  812. struct iwl_mvm *mvm = data->mvm;
  813. struct iwl_mvm_vif *mvmvif = iwl_mvm_vif_from_mac80211(vif);
  814. u32 flags = CMD_ASYNC | CMD_HIGH_PRIO | CMD_SEND_IN_IDLE;
  815. IWL_DEBUG_RPM(mvm, "entering D0i3 - vif %pM\n", vif->addr);
  816. if (vif->type != NL80211_IFTYPE_STATION ||
  817. !vif->bss_conf.assoc)
  818. return;
  819. /*
  820. * in case of pending tx packets or active aggregations,
  821. * avoid offloading features in order to prevent reuse of
  822. * the same qos seq counters.
  823. */
  824. if (iwl_mvm_disallow_offloading(mvm, vif, data))
  825. data->disable_offloading = true;
  826. iwl_mvm_update_d0i3_power_mode(mvm, vif, true, flags);
  827. iwl_mvm_send_proto_offload(mvm, vif, data->disable_offloading, flags);
  828. /*
  829. * on init/association, mvm already configures POWER_TABLE_CMD
  830. * and REPLY_MCAST_FILTER_CMD, so currently don't
  831. * reconfigure them (we might want to use different
  832. * params later on, though).
  833. */
  834. data->ap_sta_id = mvmvif->ap_sta_id;
  835. data->vif_count++;
  836. }
  837. static void iwl_mvm_set_wowlan_data(struct iwl_mvm *mvm,
  838. struct iwl_wowlan_config_cmd_v3 *cmd,
  839. struct iwl_d0i3_iter_data *iter_data)
  840. {
  841. struct ieee80211_sta *ap_sta;
  842. struct iwl_mvm_sta *mvm_ap_sta;
  843. if (iter_data->ap_sta_id == IWL_MVM_STATION_COUNT)
  844. return;
  845. rcu_read_lock();
  846. ap_sta = rcu_dereference(mvm->fw_id_to_mac_id[iter_data->ap_sta_id]);
  847. if (IS_ERR_OR_NULL(ap_sta))
  848. goto out;
  849. mvm_ap_sta = iwl_mvm_sta_from_mac80211(ap_sta);
  850. cmd->common.is_11n_connection = ap_sta->ht_cap.ht_supported;
  851. cmd->offloading_tid = iter_data->offloading_tid;
  852. /*
  853. * The d0i3 uCode takes care of the nonqos counters,
  854. * so configure only the qos seq ones.
  855. */
  856. iwl_mvm_set_wowlan_qos_seq(mvm_ap_sta, &cmd->common);
  857. out:
  858. rcu_read_unlock();
  859. }
  860. static int iwl_mvm_enter_d0i3(struct iwl_op_mode *op_mode)
  861. {
  862. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  863. u32 flags = CMD_ASYNC | CMD_HIGH_PRIO | CMD_SEND_IN_IDLE;
  864. int ret;
  865. struct iwl_d0i3_iter_data d0i3_iter_data = {
  866. .mvm = mvm,
  867. };
  868. struct iwl_wowlan_config_cmd_v3 wowlan_config_cmd = {
  869. .common = {
  870. .wakeup_filter =
  871. cpu_to_le32(IWL_WOWLAN_WAKEUP_RX_FRAME |
  872. IWL_WOWLAN_WAKEUP_BEACON_MISS |
  873. IWL_WOWLAN_WAKEUP_LINK_CHANGE |
  874. IWL_WOWLAN_WAKEUP_BCN_FILTERING),
  875. },
  876. };
  877. struct iwl_d3_manager_config d3_cfg_cmd = {
  878. .min_sleep_time = cpu_to_le32(1000),
  879. };
  880. IWL_DEBUG_RPM(mvm, "MVM entering D0i3\n");
  881. /* make sure we have no running tx while configuring the qos */
  882. set_bit(IWL_MVM_STATUS_IN_D0I3, &mvm->status);
  883. synchronize_net();
  884. ieee80211_iterate_active_interfaces_atomic(mvm->hw,
  885. IEEE80211_IFACE_ITER_NORMAL,
  886. iwl_mvm_enter_d0i3_iterator,
  887. &d0i3_iter_data);
  888. if (d0i3_iter_data.vif_count == 1) {
  889. mvm->d0i3_ap_sta_id = d0i3_iter_data.ap_sta_id;
  890. mvm->d0i3_offloading = !d0i3_iter_data.disable_offloading;
  891. } else {
  892. WARN_ON_ONCE(d0i3_iter_data.vif_count > 1);
  893. mvm->d0i3_ap_sta_id = IWL_MVM_STATION_COUNT;
  894. mvm->d0i3_offloading = false;
  895. }
  896. iwl_mvm_set_wowlan_data(mvm, &wowlan_config_cmd, &d0i3_iter_data);
  897. ret = iwl_mvm_send_cmd_pdu(mvm, WOWLAN_CONFIGURATION, flags,
  898. sizeof(wowlan_config_cmd),
  899. &wowlan_config_cmd);
  900. if (ret)
  901. return ret;
  902. return iwl_mvm_send_cmd_pdu(mvm, D3_CONFIG_CMD,
  903. flags | CMD_MAKE_TRANS_IDLE,
  904. sizeof(d3_cfg_cmd), &d3_cfg_cmd);
  905. }
  906. static void iwl_mvm_exit_d0i3_iterator(void *_data, u8 *mac,
  907. struct ieee80211_vif *vif)
  908. {
  909. struct iwl_mvm *mvm = _data;
  910. u32 flags = CMD_ASYNC | CMD_HIGH_PRIO;
  911. IWL_DEBUG_RPM(mvm, "exiting D0i3 - vif %pM\n", vif->addr);
  912. if (vif->type != NL80211_IFTYPE_STATION ||
  913. !vif->bss_conf.assoc)
  914. return;
  915. iwl_mvm_update_d0i3_power_mode(mvm, vif, false, flags);
  916. }
  917. static void iwl_mvm_d0i3_disconnect_iter(void *data, u8 *mac,
  918. struct ieee80211_vif *vif)
  919. {
  920. struct iwl_mvm *mvm = data;
  921. struct iwl_mvm_vif *mvmvif = iwl_mvm_vif_from_mac80211(vif);
  922. if (vif->type == NL80211_IFTYPE_STATION && vif->bss_conf.assoc &&
  923. mvm->d0i3_ap_sta_id == mvmvif->ap_sta_id)
  924. ieee80211_connection_loss(vif);
  925. }
  926. void iwl_mvm_d0i3_enable_tx(struct iwl_mvm *mvm, __le16 *qos_seq)
  927. {
  928. struct ieee80211_sta *sta = NULL;
  929. struct iwl_mvm_sta *mvm_ap_sta;
  930. int i;
  931. bool wake_queues = false;
  932. lockdep_assert_held(&mvm->mutex);
  933. spin_lock_bh(&mvm->d0i3_tx_lock);
  934. if (mvm->d0i3_ap_sta_id == IWL_MVM_STATION_COUNT)
  935. goto out;
  936. IWL_DEBUG_RPM(mvm, "re-enqueue packets\n");
  937. /* get the sta in order to update seq numbers and re-enqueue skbs */
  938. sta = rcu_dereference_protected(
  939. mvm->fw_id_to_mac_id[mvm->d0i3_ap_sta_id],
  940. lockdep_is_held(&mvm->mutex));
  941. if (IS_ERR_OR_NULL(sta)) {
  942. sta = NULL;
  943. goto out;
  944. }
  945. if (mvm->d0i3_offloading && qos_seq) {
  946. /* update qos seq numbers if offloading was enabled */
  947. mvm_ap_sta = (struct iwl_mvm_sta *)sta->drv_priv;
  948. for (i = 0; i < IWL_MAX_TID_COUNT; i++) {
  949. u16 seq = le16_to_cpu(qos_seq[i]);
  950. /* firmware stores last-used one, we store next one */
  951. seq += 0x10;
  952. mvm_ap_sta->tid_data[i].seq_number = seq;
  953. }
  954. }
  955. out:
  956. /* re-enqueue (or drop) all packets */
  957. while (!skb_queue_empty(&mvm->d0i3_tx)) {
  958. struct sk_buff *skb = __skb_dequeue(&mvm->d0i3_tx);
  959. if (!sta || iwl_mvm_tx_skb(mvm, skb, sta))
  960. ieee80211_free_txskb(mvm->hw, skb);
  961. /* if the skb_queue is not empty, we need to wake queues */
  962. wake_queues = true;
  963. }
  964. clear_bit(IWL_MVM_STATUS_IN_D0I3, &mvm->status);
  965. wake_up(&mvm->d0i3_exit_waitq);
  966. mvm->d0i3_ap_sta_id = IWL_MVM_STATION_COUNT;
  967. if (wake_queues)
  968. ieee80211_wake_queues(mvm->hw);
  969. spin_unlock_bh(&mvm->d0i3_tx_lock);
  970. }
  971. static void iwl_mvm_d0i3_exit_work(struct work_struct *wk)
  972. {
  973. struct iwl_mvm *mvm = container_of(wk, struct iwl_mvm, d0i3_exit_work);
  974. struct iwl_host_cmd get_status_cmd = {
  975. .id = WOWLAN_GET_STATUSES,
  976. .flags = CMD_HIGH_PRIO | CMD_WANT_SKB,
  977. };
  978. struct iwl_wowlan_status *status;
  979. int ret;
  980. u32 disconnection_reasons, wakeup_reasons;
  981. __le16 *qos_seq = NULL;
  982. mutex_lock(&mvm->mutex);
  983. ret = iwl_mvm_send_cmd(mvm, &get_status_cmd);
  984. if (ret)
  985. goto out;
  986. if (!get_status_cmd.resp_pkt)
  987. goto out;
  988. status = (void *)get_status_cmd.resp_pkt->data;
  989. wakeup_reasons = le32_to_cpu(status->wakeup_reasons);
  990. qos_seq = status->qos_seq_ctr;
  991. IWL_DEBUG_RPM(mvm, "wakeup reasons: 0x%x\n", wakeup_reasons);
  992. disconnection_reasons =
  993. IWL_WOWLAN_WAKEUP_BY_DISCONNECTION_ON_MISSED_BEACON |
  994. IWL_WOWLAN_WAKEUP_BY_DISCONNECTION_ON_DEAUTH;
  995. if (wakeup_reasons & disconnection_reasons)
  996. ieee80211_iterate_active_interfaces(
  997. mvm->hw, IEEE80211_IFACE_ITER_NORMAL,
  998. iwl_mvm_d0i3_disconnect_iter, mvm);
  999. iwl_free_resp(&get_status_cmd);
  1000. out:
  1001. iwl_mvm_d0i3_enable_tx(mvm, qos_seq);
  1002. iwl_mvm_unref(mvm, IWL_MVM_REF_EXIT_WORK);
  1003. mutex_unlock(&mvm->mutex);
  1004. }
  1005. int _iwl_mvm_exit_d0i3(struct iwl_mvm *mvm)
  1006. {
  1007. u32 flags = CMD_ASYNC | CMD_HIGH_PRIO | CMD_SEND_IN_IDLE |
  1008. CMD_WAKE_UP_TRANS;
  1009. int ret;
  1010. IWL_DEBUG_RPM(mvm, "MVM exiting D0i3\n");
  1011. mutex_lock(&mvm->d0i3_suspend_mutex);
  1012. if (test_bit(D0I3_DEFER_WAKEUP, &mvm->d0i3_suspend_flags)) {
  1013. IWL_DEBUG_RPM(mvm, "Deferring d0i3 exit until resume\n");
  1014. __set_bit(D0I3_PENDING_WAKEUP, &mvm->d0i3_suspend_flags);
  1015. mutex_unlock(&mvm->d0i3_suspend_mutex);
  1016. return 0;
  1017. }
  1018. mutex_unlock(&mvm->d0i3_suspend_mutex);
  1019. ret = iwl_mvm_send_cmd_pdu(mvm, D0I3_END_CMD, flags, 0, NULL);
  1020. if (ret)
  1021. goto out;
  1022. ieee80211_iterate_active_interfaces_atomic(mvm->hw,
  1023. IEEE80211_IFACE_ITER_NORMAL,
  1024. iwl_mvm_exit_d0i3_iterator,
  1025. mvm);
  1026. out:
  1027. schedule_work(&mvm->d0i3_exit_work);
  1028. return ret;
  1029. }
  1030. static int iwl_mvm_exit_d0i3(struct iwl_op_mode *op_mode)
  1031. {
  1032. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  1033. iwl_mvm_ref(mvm, IWL_MVM_REF_EXIT_WORK);
  1034. return _iwl_mvm_exit_d0i3(mvm);
  1035. }
  1036. static void iwl_mvm_napi_add(struct iwl_op_mode *op_mode,
  1037. struct napi_struct *napi,
  1038. struct net_device *napi_dev,
  1039. int (*poll)(struct napi_struct *, int),
  1040. int weight)
  1041. {
  1042. struct iwl_mvm *mvm = IWL_OP_MODE_GET_MVM(op_mode);
  1043. ieee80211_napi_add(mvm->hw, napi, napi_dev, poll, weight);
  1044. }
  1045. static const struct iwl_op_mode_ops iwl_mvm_ops = {
  1046. .start = iwl_op_mode_mvm_start,
  1047. .stop = iwl_op_mode_mvm_stop,
  1048. .rx = iwl_mvm_rx_dispatch,
  1049. .queue_full = iwl_mvm_stop_sw_queue,
  1050. .queue_not_full = iwl_mvm_wake_sw_queue,
  1051. .hw_rf_kill = iwl_mvm_set_hw_rfkill_state,
  1052. .free_skb = iwl_mvm_free_skb,
  1053. .nic_error = iwl_mvm_nic_error,
  1054. .cmd_queue_full = iwl_mvm_cmd_queue_full,
  1055. .nic_config = iwl_mvm_nic_config,
  1056. .enter_d0i3 = iwl_mvm_enter_d0i3,
  1057. .exit_d0i3 = iwl_mvm_exit_d0i3,
  1058. .napi_add = iwl_mvm_napi_add,
  1059. };