12774f206SBjoern A. Zeeb // SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause
22774f206SBjoern A. Zeeb /* Copyright(c) 2018-2019 Realtek Corporation
32774f206SBjoern A. Zeeb */
42774f206SBjoern A. Zeeb
52774f206SBjoern A. Zeeb #if defined(__FreeBSD__)
62774f206SBjoern A. Zeeb #define LINUXKPI_PARAM_PREFIX rtw88_
72774f206SBjoern A. Zeeb #endif
82774f206SBjoern A. Zeeb
92774f206SBjoern A. Zeeb #include <linux/devcoredump.h>
102774f206SBjoern A. Zeeb
112774f206SBjoern A. Zeeb #include "main.h"
122774f206SBjoern A. Zeeb #include "regd.h"
132774f206SBjoern A. Zeeb #include "fw.h"
142774f206SBjoern A. Zeeb #include "ps.h"
152774f206SBjoern A. Zeeb #include "sec.h"
162774f206SBjoern A. Zeeb #include "mac.h"
172774f206SBjoern A. Zeeb #include "coex.h"
182774f206SBjoern A. Zeeb #include "phy.h"
192774f206SBjoern A. Zeeb #include "reg.h"
202774f206SBjoern A. Zeeb #include "efuse.h"
212774f206SBjoern A. Zeeb #include "tx.h"
222774f206SBjoern A. Zeeb #include "debug.h"
232774f206SBjoern A. Zeeb #include "bf.h"
242774f206SBjoern A. Zeeb #include "sar.h"
2590aac0d8SBjoern A. Zeeb #include "sdio.h"
262774f206SBjoern A. Zeeb
272774f206SBjoern A. Zeeb bool rtw_disable_lps_deep_mode;
282774f206SBjoern A. Zeeb EXPORT_SYMBOL(rtw_disable_lps_deep_mode);
292774f206SBjoern A. Zeeb bool rtw_bf_support = true;
302774f206SBjoern A. Zeeb unsigned int rtw_debug_mask;
312774f206SBjoern A. Zeeb EXPORT_SYMBOL(rtw_debug_mask);
322774f206SBjoern A. Zeeb /* EDCCA is enabled during normal behavior. For debugging purpose in
332774f206SBjoern A. Zeeb * a noisy environment, it can be disabled via edcca debugfs. Because
342774f206SBjoern A. Zeeb * all rtw88 devices will probably be affected if environment is noisy,
352774f206SBjoern A. Zeeb * rtw_edcca_enabled is just declared by driver instead of by device.
362774f206SBjoern A. Zeeb * So, turning it off will take effect for all rtw88 devices before
372774f206SBjoern A. Zeeb * there is a tough reason to maintain rtw_edcca_enabled by device.
382774f206SBjoern A. Zeeb */
392774f206SBjoern A. Zeeb bool rtw_edcca_enabled = true;
402774f206SBjoern A. Zeeb
412774f206SBjoern A. Zeeb module_param_named(disable_lps_deep, rtw_disable_lps_deep_mode, bool, 0644);
422774f206SBjoern A. Zeeb module_param_named(support_bf, rtw_bf_support, bool, 0644);
432774f206SBjoern A. Zeeb module_param_named(debug_mask, rtw_debug_mask, uint, 0644);
442774f206SBjoern A. Zeeb
452774f206SBjoern A. Zeeb MODULE_PARM_DESC(disable_lps_deep, "Set Y to disable Deep PS");
462774f206SBjoern A. Zeeb MODULE_PARM_DESC(support_bf, "Set Y to enable beamformee support");
472774f206SBjoern A. Zeeb MODULE_PARM_DESC(debug_mask, "Debugging mask");
482774f206SBjoern A. Zeeb
49*7a5b55e3SBjoern A. Zeeb #if defined(__FreeBSD__)
50*7a5b55e3SBjoern A. Zeeb static bool rtw_ht_support = false;
51*7a5b55e3SBjoern A. Zeeb module_param_named(support_ht, rtw_ht_support, bool, 0644);
52*7a5b55e3SBjoern A. Zeeb MODULE_PARM_DESC(support_ht, "Set to Y to enable HT support");
53*7a5b55e3SBjoern A. Zeeb
54*7a5b55e3SBjoern A. Zeeb static bool rtw_vht_support = false;
55*7a5b55e3SBjoern A. Zeeb module_param_named(support_vht, rtw_vht_support, bool, 0644);
56*7a5b55e3SBjoern A. Zeeb MODULE_PARM_DESC(support_vht, "Set to Y to enable VHT support");
57*7a5b55e3SBjoern A. Zeeb #endif
58*7a5b55e3SBjoern A. Zeeb
592774f206SBjoern A. Zeeb static struct ieee80211_channel rtw_channeltable_2g[] = {
602774f206SBjoern A. Zeeb {.center_freq = 2412, .hw_value = 1,},
612774f206SBjoern A. Zeeb {.center_freq = 2417, .hw_value = 2,},
622774f206SBjoern A. Zeeb {.center_freq = 2422, .hw_value = 3,},
632774f206SBjoern A. Zeeb {.center_freq = 2427, .hw_value = 4,},
642774f206SBjoern A. Zeeb {.center_freq = 2432, .hw_value = 5,},
652774f206SBjoern A. Zeeb {.center_freq = 2437, .hw_value = 6,},
662774f206SBjoern A. Zeeb {.center_freq = 2442, .hw_value = 7,},
672774f206SBjoern A. Zeeb {.center_freq = 2447, .hw_value = 8,},
682774f206SBjoern A. Zeeb {.center_freq = 2452, .hw_value = 9,},
692774f206SBjoern A. Zeeb {.center_freq = 2457, .hw_value = 10,},
702774f206SBjoern A. Zeeb {.center_freq = 2462, .hw_value = 11,},
712774f206SBjoern A. Zeeb {.center_freq = 2467, .hw_value = 12,},
722774f206SBjoern A. Zeeb {.center_freq = 2472, .hw_value = 13,},
732774f206SBjoern A. Zeeb {.center_freq = 2484, .hw_value = 14,},
742774f206SBjoern A. Zeeb };
752774f206SBjoern A. Zeeb
762774f206SBjoern A. Zeeb static struct ieee80211_channel rtw_channeltable_5g[] = {
772774f206SBjoern A. Zeeb {.center_freq = 5180, .hw_value = 36,},
782774f206SBjoern A. Zeeb {.center_freq = 5200, .hw_value = 40,},
792774f206SBjoern A. Zeeb {.center_freq = 5220, .hw_value = 44,},
802774f206SBjoern A. Zeeb {.center_freq = 5240, .hw_value = 48,},
812774f206SBjoern A. Zeeb {.center_freq = 5260, .hw_value = 52,},
822774f206SBjoern A. Zeeb {.center_freq = 5280, .hw_value = 56,},
832774f206SBjoern A. Zeeb {.center_freq = 5300, .hw_value = 60,},
842774f206SBjoern A. Zeeb {.center_freq = 5320, .hw_value = 64,},
852774f206SBjoern A. Zeeb {.center_freq = 5500, .hw_value = 100,},
862774f206SBjoern A. Zeeb {.center_freq = 5520, .hw_value = 104,},
872774f206SBjoern A. Zeeb {.center_freq = 5540, .hw_value = 108,},
882774f206SBjoern A. Zeeb {.center_freq = 5560, .hw_value = 112,},
892774f206SBjoern A. Zeeb {.center_freq = 5580, .hw_value = 116,},
902774f206SBjoern A. Zeeb {.center_freq = 5600, .hw_value = 120,},
912774f206SBjoern A. Zeeb {.center_freq = 5620, .hw_value = 124,},
922774f206SBjoern A. Zeeb {.center_freq = 5640, .hw_value = 128,},
932774f206SBjoern A. Zeeb {.center_freq = 5660, .hw_value = 132,},
942774f206SBjoern A. Zeeb {.center_freq = 5680, .hw_value = 136,},
952774f206SBjoern A. Zeeb {.center_freq = 5700, .hw_value = 140,},
962774f206SBjoern A. Zeeb {.center_freq = 5720, .hw_value = 144,},
972774f206SBjoern A. Zeeb {.center_freq = 5745, .hw_value = 149,},
982774f206SBjoern A. Zeeb {.center_freq = 5765, .hw_value = 153,},
992774f206SBjoern A. Zeeb {.center_freq = 5785, .hw_value = 157,},
1002774f206SBjoern A. Zeeb {.center_freq = 5805, .hw_value = 161,},
1012774f206SBjoern A. Zeeb {.center_freq = 5825, .hw_value = 165,
1022774f206SBjoern A. Zeeb .flags = IEEE80211_CHAN_NO_HT40MINUS},
1032774f206SBjoern A. Zeeb };
1042774f206SBjoern A. Zeeb
1052774f206SBjoern A. Zeeb static struct ieee80211_rate rtw_ratetable[] = {
1062774f206SBjoern A. Zeeb {.bitrate = 10, .hw_value = 0x00,},
1072774f206SBjoern A. Zeeb {.bitrate = 20, .hw_value = 0x01,},
1082774f206SBjoern A. Zeeb {.bitrate = 55, .hw_value = 0x02,},
1092774f206SBjoern A. Zeeb {.bitrate = 110, .hw_value = 0x03,},
1102774f206SBjoern A. Zeeb {.bitrate = 60, .hw_value = 0x04,},
1112774f206SBjoern A. Zeeb {.bitrate = 90, .hw_value = 0x05,},
1122774f206SBjoern A. Zeeb {.bitrate = 120, .hw_value = 0x06,},
1132774f206SBjoern A. Zeeb {.bitrate = 180, .hw_value = 0x07,},
1142774f206SBjoern A. Zeeb {.bitrate = 240, .hw_value = 0x08,},
1152774f206SBjoern A. Zeeb {.bitrate = 360, .hw_value = 0x09,},
1162774f206SBjoern A. Zeeb {.bitrate = 480, .hw_value = 0x0a,},
1172774f206SBjoern A. Zeeb {.bitrate = 540, .hw_value = 0x0b,},
1182774f206SBjoern A. Zeeb };
1192774f206SBjoern A. Zeeb
12090aac0d8SBjoern A. Zeeb static const struct ieee80211_iface_limit rtw_iface_limits[] = {
12190aac0d8SBjoern A. Zeeb {
12290aac0d8SBjoern A. Zeeb .max = 1,
12390aac0d8SBjoern A. Zeeb .types = BIT(NL80211_IFTYPE_STATION),
12490aac0d8SBjoern A. Zeeb },
12590aac0d8SBjoern A. Zeeb {
12690aac0d8SBjoern A. Zeeb .max = 1,
12790aac0d8SBjoern A. Zeeb .types = BIT(NL80211_IFTYPE_AP),
12890aac0d8SBjoern A. Zeeb }
12990aac0d8SBjoern A. Zeeb };
13090aac0d8SBjoern A. Zeeb
13190aac0d8SBjoern A. Zeeb static const struct ieee80211_iface_combination rtw_iface_combs[] = {
13290aac0d8SBjoern A. Zeeb {
13390aac0d8SBjoern A. Zeeb .limits = rtw_iface_limits,
13490aac0d8SBjoern A. Zeeb .n_limits = ARRAY_SIZE(rtw_iface_limits),
13590aac0d8SBjoern A. Zeeb .max_interfaces = 2,
13690aac0d8SBjoern A. Zeeb .num_different_channels = 1,
13790aac0d8SBjoern A. Zeeb }
13890aac0d8SBjoern A. Zeeb };
13990aac0d8SBjoern A. Zeeb
rtw_desc_to_bitrate(u8 desc_rate)1402774f206SBjoern A. Zeeb u16 rtw_desc_to_bitrate(u8 desc_rate)
1412774f206SBjoern A. Zeeb {
1422774f206SBjoern A. Zeeb struct ieee80211_rate rate;
1432774f206SBjoern A. Zeeb
1442774f206SBjoern A. Zeeb if (WARN(desc_rate >= ARRAY_SIZE(rtw_ratetable), "invalid desc rate\n"))
1452774f206SBjoern A. Zeeb return 0;
1462774f206SBjoern A. Zeeb
1472774f206SBjoern A. Zeeb rate = rtw_ratetable[desc_rate];
1482774f206SBjoern A. Zeeb
1492774f206SBjoern A. Zeeb return rate.bitrate;
1502774f206SBjoern A. Zeeb }
1512774f206SBjoern A. Zeeb
1522774f206SBjoern A. Zeeb static struct ieee80211_supported_band rtw_band_2ghz = {
1532774f206SBjoern A. Zeeb .band = NL80211_BAND_2GHZ,
1542774f206SBjoern A. Zeeb
1552774f206SBjoern A. Zeeb .channels = rtw_channeltable_2g,
1562774f206SBjoern A. Zeeb .n_channels = ARRAY_SIZE(rtw_channeltable_2g),
1572774f206SBjoern A. Zeeb
1582774f206SBjoern A. Zeeb .bitrates = rtw_ratetable,
1592774f206SBjoern A. Zeeb .n_bitrates = ARRAY_SIZE(rtw_ratetable),
1602774f206SBjoern A. Zeeb
1612774f206SBjoern A. Zeeb .ht_cap = {0},
1622774f206SBjoern A. Zeeb .vht_cap = {0},
1632774f206SBjoern A. Zeeb };
1642774f206SBjoern A. Zeeb
1652774f206SBjoern A. Zeeb static struct ieee80211_supported_band rtw_band_5ghz = {
1662774f206SBjoern A. Zeeb .band = NL80211_BAND_5GHZ,
1672774f206SBjoern A. Zeeb
1682774f206SBjoern A. Zeeb .channels = rtw_channeltable_5g,
1692774f206SBjoern A. Zeeb .n_channels = ARRAY_SIZE(rtw_channeltable_5g),
1702774f206SBjoern A. Zeeb
1712774f206SBjoern A. Zeeb /* 5G has no CCK rates */
1722774f206SBjoern A. Zeeb .bitrates = rtw_ratetable + 4,
1732774f206SBjoern A. Zeeb .n_bitrates = ARRAY_SIZE(rtw_ratetable) - 4,
1742774f206SBjoern A. Zeeb
1752774f206SBjoern A. Zeeb .ht_cap = {0},
1762774f206SBjoern A. Zeeb .vht_cap = {0},
1772774f206SBjoern A. Zeeb };
1782774f206SBjoern A. Zeeb
1792774f206SBjoern A. Zeeb struct rtw_watch_dog_iter_data {
1802774f206SBjoern A. Zeeb struct rtw_dev *rtwdev;
1812774f206SBjoern A. Zeeb struct rtw_vif *rtwvif;
1822774f206SBjoern A. Zeeb };
1832774f206SBjoern A. Zeeb
rtw_dynamic_csi_rate(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif)1842774f206SBjoern A. Zeeb static void rtw_dynamic_csi_rate(struct rtw_dev *rtwdev, struct rtw_vif *rtwvif)
1852774f206SBjoern A. Zeeb {
1862774f206SBjoern A. Zeeb struct rtw_bf_info *bf_info = &rtwdev->bf_info;
1872774f206SBjoern A. Zeeb u8 fix_rate_enable = 0;
1882774f206SBjoern A. Zeeb u8 new_csi_rate_idx;
1892774f206SBjoern A. Zeeb
1902774f206SBjoern A. Zeeb if (rtwvif->bfee.role != RTW_BFEE_SU &&
1912774f206SBjoern A. Zeeb rtwvif->bfee.role != RTW_BFEE_MU)
1922774f206SBjoern A. Zeeb return;
1932774f206SBjoern A. Zeeb
1942774f206SBjoern A. Zeeb rtw_chip_cfg_csi_rate(rtwdev, rtwdev->dm_info.min_rssi,
1952774f206SBjoern A. Zeeb bf_info->cur_csi_rpt_rate,
1962774f206SBjoern A. Zeeb fix_rate_enable, &new_csi_rate_idx);
1972774f206SBjoern A. Zeeb
1982774f206SBjoern A. Zeeb if (new_csi_rate_idx != bf_info->cur_csi_rpt_rate)
1992774f206SBjoern A. Zeeb bf_info->cur_csi_rpt_rate = new_csi_rate_idx;
2002774f206SBjoern A. Zeeb }
2012774f206SBjoern A. Zeeb
rtw_vif_watch_dog_iter(void * data,struct ieee80211_vif * vif)20290aac0d8SBjoern A. Zeeb static void rtw_vif_watch_dog_iter(void *data, struct ieee80211_vif *vif)
2032774f206SBjoern A. Zeeb {
2042774f206SBjoern A. Zeeb struct rtw_watch_dog_iter_data *iter_data = data;
2052774f206SBjoern A. Zeeb struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
2062774f206SBjoern A. Zeeb
2072774f206SBjoern A. Zeeb if (vif->type == NL80211_IFTYPE_STATION)
20890aac0d8SBjoern A. Zeeb if (vif->cfg.assoc)
2092774f206SBjoern A. Zeeb iter_data->rtwvif = rtwvif;
2102774f206SBjoern A. Zeeb
2112774f206SBjoern A. Zeeb rtw_dynamic_csi_rate(iter_data->rtwdev, rtwvif);
2122774f206SBjoern A. Zeeb
2132774f206SBjoern A. Zeeb rtwvif->stats.tx_unicast = 0;
2142774f206SBjoern A. Zeeb rtwvif->stats.rx_unicast = 0;
2152774f206SBjoern A. Zeeb rtwvif->stats.tx_cnt = 0;
2162774f206SBjoern A. Zeeb rtwvif->stats.rx_cnt = 0;
2172774f206SBjoern A. Zeeb }
2182774f206SBjoern A. Zeeb
2192774f206SBjoern A. Zeeb /* process TX/RX statistics periodically for hardware,
2202774f206SBjoern A. Zeeb * the information helps hardware to enhance performance
2212774f206SBjoern A. Zeeb */
rtw_watch_dog_work(struct work_struct * work)2222774f206SBjoern A. Zeeb static void rtw_watch_dog_work(struct work_struct *work)
2232774f206SBjoern A. Zeeb {
2242774f206SBjoern A. Zeeb struct rtw_dev *rtwdev = container_of(work, struct rtw_dev,
2252774f206SBjoern A. Zeeb watch_dog_work.work);
2262774f206SBjoern A. Zeeb struct rtw_traffic_stats *stats = &rtwdev->stats;
2272774f206SBjoern A. Zeeb struct rtw_watch_dog_iter_data data = {};
2282774f206SBjoern A. Zeeb bool busy_traffic = test_bit(RTW_FLAG_BUSY_TRAFFIC, rtwdev->flags);
2292774f206SBjoern A. Zeeb bool ps_active;
2302774f206SBjoern A. Zeeb
2312774f206SBjoern A. Zeeb mutex_lock(&rtwdev->mutex);
2322774f206SBjoern A. Zeeb
2332774f206SBjoern A. Zeeb if (!test_bit(RTW_FLAG_RUNNING, rtwdev->flags))
2342774f206SBjoern A. Zeeb goto unlock;
2352774f206SBjoern A. Zeeb
2362774f206SBjoern A. Zeeb ieee80211_queue_delayed_work(rtwdev->hw, &rtwdev->watch_dog_work,
2372774f206SBjoern A. Zeeb RTW_WATCH_DOG_DELAY_TIME);
2382774f206SBjoern A. Zeeb
2392774f206SBjoern A. Zeeb if (rtwdev->stats.tx_cnt > 100 || rtwdev->stats.rx_cnt > 100)
2402774f206SBjoern A. Zeeb set_bit(RTW_FLAG_BUSY_TRAFFIC, rtwdev->flags);
2412774f206SBjoern A. Zeeb else
2422774f206SBjoern A. Zeeb clear_bit(RTW_FLAG_BUSY_TRAFFIC, rtwdev->flags);
2432774f206SBjoern A. Zeeb
2442774f206SBjoern A. Zeeb if (busy_traffic != test_bit(RTW_FLAG_BUSY_TRAFFIC, rtwdev->flags))
2452774f206SBjoern A. Zeeb rtw_coex_wl_status_change_notify(rtwdev, 0);
2462774f206SBjoern A. Zeeb
2472774f206SBjoern A. Zeeb if (stats->tx_cnt > RTW_LPS_THRESHOLD ||
2482774f206SBjoern A. Zeeb stats->rx_cnt > RTW_LPS_THRESHOLD)
2492774f206SBjoern A. Zeeb ps_active = true;
2502774f206SBjoern A. Zeeb else
2512774f206SBjoern A. Zeeb ps_active = false;
2522774f206SBjoern A. Zeeb
2532774f206SBjoern A. Zeeb ewma_tp_add(&stats->tx_ewma_tp,
2542774f206SBjoern A. Zeeb (u32)(stats->tx_unicast >> RTW_TP_SHIFT));
2552774f206SBjoern A. Zeeb ewma_tp_add(&stats->rx_ewma_tp,
2562774f206SBjoern A. Zeeb (u32)(stats->rx_unicast >> RTW_TP_SHIFT));
2572774f206SBjoern A. Zeeb stats->tx_throughput = ewma_tp_read(&stats->tx_ewma_tp);
2582774f206SBjoern A. Zeeb stats->rx_throughput = ewma_tp_read(&stats->rx_ewma_tp);
2592774f206SBjoern A. Zeeb
2602774f206SBjoern A. Zeeb /* reset tx/rx statictics */
2612774f206SBjoern A. Zeeb stats->tx_unicast = 0;
2622774f206SBjoern A. Zeeb stats->rx_unicast = 0;
2632774f206SBjoern A. Zeeb stats->tx_cnt = 0;
2642774f206SBjoern A. Zeeb stats->rx_cnt = 0;
2652774f206SBjoern A. Zeeb
2662774f206SBjoern A. Zeeb if (test_bit(RTW_FLAG_SCANNING, rtwdev->flags))
2672774f206SBjoern A. Zeeb goto unlock;
2682774f206SBjoern A. Zeeb
2692774f206SBjoern A. Zeeb /* make sure BB/RF is working for dynamic mech */
2702774f206SBjoern A. Zeeb rtw_leave_lps(rtwdev);
27111c53278SBjoern A. Zeeb rtw_coex_wl_status_check(rtwdev);
27211c53278SBjoern A. Zeeb rtw_coex_query_bt_hid_list(rtwdev);
2732774f206SBjoern A. Zeeb
2742774f206SBjoern A. Zeeb rtw_phy_dynamic_mechanism(rtwdev);
2752774f206SBjoern A. Zeeb
2762774f206SBjoern A. Zeeb data.rtwdev = rtwdev;
27790aac0d8SBjoern A. Zeeb /* rtw_iterate_vifs internally uses an atomic iterator which is needed
27890aac0d8SBjoern A. Zeeb * to avoid taking local->iflist_mtx mutex
27990aac0d8SBjoern A. Zeeb */
28090aac0d8SBjoern A. Zeeb rtw_iterate_vifs(rtwdev, rtw_vif_watch_dog_iter, &data);
2812774f206SBjoern A. Zeeb
2822774f206SBjoern A. Zeeb /* fw supports only one station associated to enter lps, if there are
2832774f206SBjoern A. Zeeb * more than two stations associated to the AP, then we can not enter
2842774f206SBjoern A. Zeeb * lps, because fw does not handle the overlapped beacon interval
2852774f206SBjoern A. Zeeb *
28690aac0d8SBjoern A. Zeeb * rtw_recalc_lps() iterate vifs and determine if driver can enter
28790aac0d8SBjoern A. Zeeb * ps by vif->type and vif->cfg.ps, all we need to do here is to
2882774f206SBjoern A. Zeeb * get that vif and check if device is having traffic more than the
2892774f206SBjoern A. Zeeb * threshold.
2902774f206SBjoern A. Zeeb */
2912774f206SBjoern A. Zeeb if (rtwdev->ps_enabled && data.rtwvif && !ps_active &&
29290aac0d8SBjoern A. Zeeb !rtwdev->beacon_loss && !rtwdev->ap_active)
2932774f206SBjoern A. Zeeb rtw_enter_lps(rtwdev, data.rtwvif->port);
2942774f206SBjoern A. Zeeb
2952774f206SBjoern A. Zeeb rtwdev->watch_dog_cnt++;
2962774f206SBjoern A. Zeeb
2972774f206SBjoern A. Zeeb unlock:
2982774f206SBjoern A. Zeeb mutex_unlock(&rtwdev->mutex);
2992774f206SBjoern A. Zeeb }
3002774f206SBjoern A. Zeeb
rtw_c2h_work(struct work_struct * work)3012774f206SBjoern A. Zeeb static void rtw_c2h_work(struct work_struct *work)
3022774f206SBjoern A. Zeeb {
3032774f206SBjoern A. Zeeb struct rtw_dev *rtwdev = container_of(work, struct rtw_dev, c2h_work);
3042774f206SBjoern A. Zeeb struct sk_buff *skb, *tmp;
3052774f206SBjoern A. Zeeb
3062774f206SBjoern A. Zeeb skb_queue_walk_safe(&rtwdev->c2h_queue, skb, tmp) {
3072774f206SBjoern A. Zeeb skb_unlink(skb, &rtwdev->c2h_queue);
3082774f206SBjoern A. Zeeb rtw_fw_c2h_cmd_handle(rtwdev, skb);
3092774f206SBjoern A. Zeeb dev_kfree_skb_any(skb);
3102774f206SBjoern A. Zeeb }
3112774f206SBjoern A. Zeeb }
3122774f206SBjoern A. Zeeb
rtw_ips_work(struct work_struct * work)3139c951734SBjoern A. Zeeb static void rtw_ips_work(struct work_struct *work)
3149c951734SBjoern A. Zeeb {
3159c951734SBjoern A. Zeeb struct rtw_dev *rtwdev = container_of(work, struct rtw_dev, ips_work);
3169c951734SBjoern A. Zeeb
3179c951734SBjoern A. Zeeb mutex_lock(&rtwdev->mutex);
3189c951734SBjoern A. Zeeb if (rtwdev->hw->conf.flags & IEEE80211_CONF_IDLE)
3199c951734SBjoern A. Zeeb rtw_enter_ips(rtwdev);
3209c951734SBjoern A. Zeeb mutex_unlock(&rtwdev->mutex);
3219c951734SBjoern A. Zeeb }
3229c951734SBjoern A. Zeeb
rtw_acquire_macid(struct rtw_dev * rtwdev)3232774f206SBjoern A. Zeeb static u8 rtw_acquire_macid(struct rtw_dev *rtwdev)
3242774f206SBjoern A. Zeeb {
3252774f206SBjoern A. Zeeb unsigned long mac_id;
3262774f206SBjoern A. Zeeb
3272774f206SBjoern A. Zeeb mac_id = find_first_zero_bit(rtwdev->mac_id_map, RTW_MAX_MAC_ID_NUM);
3282774f206SBjoern A. Zeeb if (mac_id < RTW_MAX_MAC_ID_NUM)
3292774f206SBjoern A. Zeeb set_bit(mac_id, rtwdev->mac_id_map);
3302774f206SBjoern A. Zeeb
3312774f206SBjoern A. Zeeb return mac_id;
3322774f206SBjoern A. Zeeb }
3332774f206SBjoern A. Zeeb
rtw_sta_rc_work(struct work_struct * work)33490aac0d8SBjoern A. Zeeb static void rtw_sta_rc_work(struct work_struct *work)
33590aac0d8SBjoern A. Zeeb {
33690aac0d8SBjoern A. Zeeb struct rtw_sta_info *si = container_of(work, struct rtw_sta_info,
33790aac0d8SBjoern A. Zeeb rc_work);
33890aac0d8SBjoern A. Zeeb struct rtw_dev *rtwdev = si->rtwdev;
33990aac0d8SBjoern A. Zeeb
34090aac0d8SBjoern A. Zeeb mutex_lock(&rtwdev->mutex);
34190aac0d8SBjoern A. Zeeb rtw_update_sta_info(rtwdev, si, true);
34290aac0d8SBjoern A. Zeeb mutex_unlock(&rtwdev->mutex);
34390aac0d8SBjoern A. Zeeb }
34490aac0d8SBjoern A. Zeeb
rtw_sta_add(struct rtw_dev * rtwdev,struct ieee80211_sta * sta,struct ieee80211_vif * vif)3452774f206SBjoern A. Zeeb int rtw_sta_add(struct rtw_dev *rtwdev, struct ieee80211_sta *sta,
3462774f206SBjoern A. Zeeb struct ieee80211_vif *vif)
3472774f206SBjoern A. Zeeb {
3482774f206SBjoern A. Zeeb struct rtw_sta_info *si = (struct rtw_sta_info *)sta->drv_priv;
34990aac0d8SBjoern A. Zeeb struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
3502774f206SBjoern A. Zeeb int i;
3512774f206SBjoern A. Zeeb
3522774f206SBjoern A. Zeeb si->mac_id = rtw_acquire_macid(rtwdev);
3532774f206SBjoern A. Zeeb if (si->mac_id >= RTW_MAX_MAC_ID_NUM)
3542774f206SBjoern A. Zeeb return -ENOSPC;
3552774f206SBjoern A. Zeeb
35690aac0d8SBjoern A. Zeeb if (vif->type == NL80211_IFTYPE_STATION && vif->cfg.assoc == 0)
35790aac0d8SBjoern A. Zeeb rtwvif->mac_id = si->mac_id;
35890aac0d8SBjoern A. Zeeb si->rtwdev = rtwdev;
3592774f206SBjoern A. Zeeb si->sta = sta;
3602774f206SBjoern A. Zeeb si->vif = vif;
3612774f206SBjoern A. Zeeb si->init_ra_lv = 1;
3622774f206SBjoern A. Zeeb ewma_rssi_init(&si->avg_rssi);
3632774f206SBjoern A. Zeeb for (i = 0; i < ARRAY_SIZE(sta->txq); i++)
3642774f206SBjoern A. Zeeb rtw_txq_init(rtwdev, sta->txq[i]);
36590aac0d8SBjoern A. Zeeb INIT_WORK(&si->rc_work, rtw_sta_rc_work);
3662774f206SBjoern A. Zeeb
3679c951734SBjoern A. Zeeb rtw_update_sta_info(rtwdev, si, true);
3682774f206SBjoern A. Zeeb rtw_fw_media_status_report(rtwdev, si->mac_id, true);
3692774f206SBjoern A. Zeeb
3702774f206SBjoern A. Zeeb rtwdev->sta_cnt++;
3712774f206SBjoern A. Zeeb rtwdev->beacon_loss = false;
3722774f206SBjoern A. Zeeb #if defined(__linux__)
3739c951734SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_STATE, "sta %pM joined with macid %d\n",
3742774f206SBjoern A. Zeeb sta->addr, si->mac_id);
3752774f206SBjoern A. Zeeb #elif defined(__FreeBSD__)
3769c951734SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_STATE, "sta %6D joined with macid %d\n",
3772774f206SBjoern A. Zeeb sta->addr, ":", si->mac_id);
3782774f206SBjoern A. Zeeb #endif
3792774f206SBjoern A. Zeeb
3802774f206SBjoern A. Zeeb return 0;
3812774f206SBjoern A. Zeeb }
3822774f206SBjoern A. Zeeb
rtw_sta_remove(struct rtw_dev * rtwdev,struct ieee80211_sta * sta,bool fw_exist)3832774f206SBjoern A. Zeeb void rtw_sta_remove(struct rtw_dev *rtwdev, struct ieee80211_sta *sta,
3842774f206SBjoern A. Zeeb bool fw_exist)
3852774f206SBjoern A. Zeeb {
3862774f206SBjoern A. Zeeb struct rtw_sta_info *si = (struct rtw_sta_info *)sta->drv_priv;
3872774f206SBjoern A. Zeeb int i;
3882774f206SBjoern A. Zeeb
38990aac0d8SBjoern A. Zeeb cancel_work_sync(&si->rc_work);
39090aac0d8SBjoern A. Zeeb
3912774f206SBjoern A. Zeeb rtw_release_macid(rtwdev, si->mac_id);
3922774f206SBjoern A. Zeeb if (fw_exist)
3932774f206SBjoern A. Zeeb rtw_fw_media_status_report(rtwdev, si->mac_id, false);
3942774f206SBjoern A. Zeeb
3952774f206SBjoern A. Zeeb for (i = 0; i < ARRAY_SIZE(sta->txq); i++)
3962774f206SBjoern A. Zeeb rtw_txq_cleanup(rtwdev, sta->txq[i]);
3972774f206SBjoern A. Zeeb
3982774f206SBjoern A. Zeeb kfree(si->mask);
3992774f206SBjoern A. Zeeb
4002774f206SBjoern A. Zeeb rtwdev->sta_cnt--;
4012774f206SBjoern A. Zeeb #if defined(__linux__)
4029c951734SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_STATE, "sta %pM with macid %d left\n",
4032774f206SBjoern A. Zeeb sta->addr, si->mac_id);
4042774f206SBjoern A. Zeeb #elif defined(__FreeBSD__)
4059c951734SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_STATE, "sta %6D with macid %d left\n",
4062774f206SBjoern A. Zeeb sta->addr, ":", si->mac_id);
4072774f206SBjoern A. Zeeb #endif
4082774f206SBjoern A. Zeeb }
4092774f206SBjoern A. Zeeb
4102774f206SBjoern A. Zeeb struct rtw_fwcd_hdr {
4112774f206SBjoern A. Zeeb u32 item;
4122774f206SBjoern A. Zeeb u32 size;
4132774f206SBjoern A. Zeeb u32 padding1;
4142774f206SBjoern A. Zeeb u32 padding2;
4152774f206SBjoern A. Zeeb } __packed;
4162774f206SBjoern A. Zeeb
rtw_fwcd_prep(struct rtw_dev * rtwdev)4172774f206SBjoern A. Zeeb static int rtw_fwcd_prep(struct rtw_dev *rtwdev)
4182774f206SBjoern A. Zeeb {
41990aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
4202774f206SBjoern A. Zeeb struct rtw_fwcd_desc *desc = &rtwdev->fw.fwcd_desc;
4212774f206SBjoern A. Zeeb const struct rtw_fwcd_segs *segs = chip->fwcd_segs;
4222774f206SBjoern A. Zeeb u32 prep_size = chip->fw_rxff_size + sizeof(struct rtw_fwcd_hdr);
4232774f206SBjoern A. Zeeb u8 i;
4242774f206SBjoern A. Zeeb
4252774f206SBjoern A. Zeeb if (segs) {
4262774f206SBjoern A. Zeeb prep_size += segs->num * sizeof(struct rtw_fwcd_hdr);
4272774f206SBjoern A. Zeeb
4282774f206SBjoern A. Zeeb for (i = 0; i < segs->num; i++)
4292774f206SBjoern A. Zeeb prep_size += segs->segs[i];
4302774f206SBjoern A. Zeeb }
4312774f206SBjoern A. Zeeb
4322774f206SBjoern A. Zeeb desc->data = vmalloc(prep_size);
4332774f206SBjoern A. Zeeb if (!desc->data)
4342774f206SBjoern A. Zeeb return -ENOMEM;
4352774f206SBjoern A. Zeeb
4362774f206SBjoern A. Zeeb desc->size = prep_size;
4372774f206SBjoern A. Zeeb desc->next = desc->data;
4382774f206SBjoern A. Zeeb
4392774f206SBjoern A. Zeeb return 0;
4402774f206SBjoern A. Zeeb }
4412774f206SBjoern A. Zeeb
rtw_fwcd_next(struct rtw_dev * rtwdev,u32 item,u32 size)4422774f206SBjoern A. Zeeb static u8 *rtw_fwcd_next(struct rtw_dev *rtwdev, u32 item, u32 size)
4432774f206SBjoern A. Zeeb {
4442774f206SBjoern A. Zeeb struct rtw_fwcd_desc *desc = &rtwdev->fw.fwcd_desc;
4452774f206SBjoern A. Zeeb struct rtw_fwcd_hdr *hdr;
4462774f206SBjoern A. Zeeb u8 *next;
4472774f206SBjoern A. Zeeb
4482774f206SBjoern A. Zeeb if (!desc->data) {
4492774f206SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_FW, "fwcd isn't prepared successfully\n");
4502774f206SBjoern A. Zeeb return NULL;
4512774f206SBjoern A. Zeeb }
4522774f206SBjoern A. Zeeb
4532774f206SBjoern A. Zeeb next = desc->next + sizeof(struct rtw_fwcd_hdr);
4542774f206SBjoern A. Zeeb if (next - desc->data + size > desc->size) {
4552774f206SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_FW, "fwcd isn't prepared enough\n");
4562774f206SBjoern A. Zeeb return NULL;
4572774f206SBjoern A. Zeeb }
4582774f206SBjoern A. Zeeb
4592774f206SBjoern A. Zeeb hdr = (struct rtw_fwcd_hdr *)(desc->next);
4602774f206SBjoern A. Zeeb hdr->item = item;
4612774f206SBjoern A. Zeeb hdr->size = size;
4622774f206SBjoern A. Zeeb hdr->padding1 = 0x01234567;
4632774f206SBjoern A. Zeeb hdr->padding2 = 0x89abcdef;
4642774f206SBjoern A. Zeeb desc->next = next + size;
4652774f206SBjoern A. Zeeb
4662774f206SBjoern A. Zeeb return next;
4672774f206SBjoern A. Zeeb }
4682774f206SBjoern A. Zeeb
rtw_fwcd_dump(struct rtw_dev * rtwdev)4692774f206SBjoern A. Zeeb static void rtw_fwcd_dump(struct rtw_dev *rtwdev)
4702774f206SBjoern A. Zeeb {
4712774f206SBjoern A. Zeeb struct rtw_fwcd_desc *desc = &rtwdev->fw.fwcd_desc;
4722774f206SBjoern A. Zeeb
4732774f206SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_FW, "dump fwcd\n");
4742774f206SBjoern A. Zeeb
4752774f206SBjoern A. Zeeb /* Data will be freed after lifetime of device coredump. After calling
4762774f206SBjoern A. Zeeb * dev_coredump, data is supposed to be handled by the device coredump
4772774f206SBjoern A. Zeeb * framework. Note that a new dump will be discarded if a previous one
4782774f206SBjoern A. Zeeb * hasn't been released yet.
4792774f206SBjoern A. Zeeb */
4802774f206SBjoern A. Zeeb dev_coredumpv(rtwdev->dev, desc->data, desc->size, GFP_KERNEL);
4812774f206SBjoern A. Zeeb }
4822774f206SBjoern A. Zeeb
rtw_fwcd_free(struct rtw_dev * rtwdev,bool free_self)4832774f206SBjoern A. Zeeb static void rtw_fwcd_free(struct rtw_dev *rtwdev, bool free_self)
4842774f206SBjoern A. Zeeb {
4852774f206SBjoern A. Zeeb struct rtw_fwcd_desc *desc = &rtwdev->fw.fwcd_desc;
4862774f206SBjoern A. Zeeb
4872774f206SBjoern A. Zeeb if (free_self) {
4882774f206SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_FW, "free fwcd by self\n");
4892774f206SBjoern A. Zeeb vfree(desc->data);
4902774f206SBjoern A. Zeeb }
4912774f206SBjoern A. Zeeb
4922774f206SBjoern A. Zeeb desc->data = NULL;
4932774f206SBjoern A. Zeeb desc->next = NULL;
4942774f206SBjoern A. Zeeb }
4952774f206SBjoern A. Zeeb
rtw_fw_dump_crash_log(struct rtw_dev * rtwdev)4962774f206SBjoern A. Zeeb static int rtw_fw_dump_crash_log(struct rtw_dev *rtwdev)
4972774f206SBjoern A. Zeeb {
4982774f206SBjoern A. Zeeb u32 size = rtwdev->chip->fw_rxff_size;
4992774f206SBjoern A. Zeeb u32 *buf;
5002774f206SBjoern A. Zeeb u8 seq;
5012774f206SBjoern A. Zeeb
5022774f206SBjoern A. Zeeb buf = (u32 *)rtw_fwcd_next(rtwdev, RTW_FWCD_TLV, size);
5032774f206SBjoern A. Zeeb if (!buf)
5042774f206SBjoern A. Zeeb return -ENOMEM;
5052774f206SBjoern A. Zeeb
5062774f206SBjoern A. Zeeb if (rtw_fw_dump_fifo(rtwdev, RTW_FW_FIFO_SEL_RXBUF_FW, 0, size, buf)) {
5072774f206SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_FW, "dump fw fifo fail\n");
5082774f206SBjoern A. Zeeb return -EINVAL;
5092774f206SBjoern A. Zeeb }
5102774f206SBjoern A. Zeeb
5112774f206SBjoern A. Zeeb if (GET_FW_DUMP_LEN(buf) == 0) {
5122774f206SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_FW, "fw crash dump's length is 0\n");
5132774f206SBjoern A. Zeeb return -EINVAL;
5142774f206SBjoern A. Zeeb }
5152774f206SBjoern A. Zeeb
5162774f206SBjoern A. Zeeb seq = GET_FW_DUMP_SEQ(buf);
5172774f206SBjoern A. Zeeb if (seq > 0) {
5182774f206SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_FW,
5192774f206SBjoern A. Zeeb "fw crash dump's seq is wrong: %d\n", seq);
5202774f206SBjoern A. Zeeb return -EINVAL;
5212774f206SBjoern A. Zeeb }
5222774f206SBjoern A. Zeeb
5232774f206SBjoern A. Zeeb return 0;
5242774f206SBjoern A. Zeeb }
5252774f206SBjoern A. Zeeb
rtw_dump_fw(struct rtw_dev * rtwdev,const u32 ocp_src,u32 size,u32 fwcd_item)5262774f206SBjoern A. Zeeb int rtw_dump_fw(struct rtw_dev *rtwdev, const u32 ocp_src, u32 size,
5272774f206SBjoern A. Zeeb u32 fwcd_item)
5282774f206SBjoern A. Zeeb {
5292774f206SBjoern A. Zeeb u32 rxff = rtwdev->chip->fw_rxff_size;
5302774f206SBjoern A. Zeeb u32 dump_size, done_size = 0;
5312774f206SBjoern A. Zeeb u8 *buf;
5322774f206SBjoern A. Zeeb int ret;
5332774f206SBjoern A. Zeeb
5342774f206SBjoern A. Zeeb buf = rtw_fwcd_next(rtwdev, fwcd_item, size);
5352774f206SBjoern A. Zeeb if (!buf)
5362774f206SBjoern A. Zeeb return -ENOMEM;
5372774f206SBjoern A. Zeeb
5382774f206SBjoern A. Zeeb while (size) {
5392774f206SBjoern A. Zeeb dump_size = size > rxff ? rxff : size;
5402774f206SBjoern A. Zeeb
5412774f206SBjoern A. Zeeb ret = rtw_ddma_to_fw_fifo(rtwdev, ocp_src + done_size,
5422774f206SBjoern A. Zeeb dump_size);
5432774f206SBjoern A. Zeeb if (ret) {
5442774f206SBjoern A. Zeeb rtw_err(rtwdev,
5452774f206SBjoern A. Zeeb "ddma fw 0x%x [+0x%x] to fw fifo fail\n",
5462774f206SBjoern A. Zeeb ocp_src, done_size);
5472774f206SBjoern A. Zeeb return ret;
5482774f206SBjoern A. Zeeb }
5492774f206SBjoern A. Zeeb
5502774f206SBjoern A. Zeeb ret = rtw_fw_dump_fifo(rtwdev, RTW_FW_FIFO_SEL_RXBUF_FW, 0,
5512774f206SBjoern A. Zeeb dump_size, (u32 *)(buf + done_size));
5522774f206SBjoern A. Zeeb if (ret) {
5532774f206SBjoern A. Zeeb rtw_err(rtwdev,
5542774f206SBjoern A. Zeeb "dump fw 0x%x [+0x%x] from fw fifo fail\n",
5552774f206SBjoern A. Zeeb ocp_src, done_size);
5562774f206SBjoern A. Zeeb return ret;
5572774f206SBjoern A. Zeeb }
5582774f206SBjoern A. Zeeb
5592774f206SBjoern A. Zeeb size -= dump_size;
5602774f206SBjoern A. Zeeb done_size += dump_size;
5612774f206SBjoern A. Zeeb }
5622774f206SBjoern A. Zeeb
5632774f206SBjoern A. Zeeb return 0;
5642774f206SBjoern A. Zeeb }
5652774f206SBjoern A. Zeeb EXPORT_SYMBOL(rtw_dump_fw);
5662774f206SBjoern A. Zeeb
rtw_dump_reg(struct rtw_dev * rtwdev,const u32 addr,const u32 size)5672774f206SBjoern A. Zeeb int rtw_dump_reg(struct rtw_dev *rtwdev, const u32 addr, const u32 size)
5682774f206SBjoern A. Zeeb {
5692774f206SBjoern A. Zeeb u8 *buf;
5702774f206SBjoern A. Zeeb u32 i;
5712774f206SBjoern A. Zeeb
5722774f206SBjoern A. Zeeb if (addr & 0x3) {
5732774f206SBjoern A. Zeeb WARN(1, "should be 4-byte aligned, addr = 0x%08x\n", addr);
5742774f206SBjoern A. Zeeb return -EINVAL;
5752774f206SBjoern A. Zeeb }
5762774f206SBjoern A. Zeeb
5772774f206SBjoern A. Zeeb buf = rtw_fwcd_next(rtwdev, RTW_FWCD_REG, size);
5782774f206SBjoern A. Zeeb if (!buf)
5792774f206SBjoern A. Zeeb return -ENOMEM;
5802774f206SBjoern A. Zeeb
5812774f206SBjoern A. Zeeb for (i = 0; i < size; i += 4)
5822774f206SBjoern A. Zeeb *(u32 *)(buf + i) = rtw_read32(rtwdev, addr + i);
5832774f206SBjoern A. Zeeb
5842774f206SBjoern A. Zeeb return 0;
5852774f206SBjoern A. Zeeb }
5862774f206SBjoern A. Zeeb EXPORT_SYMBOL(rtw_dump_reg);
5872774f206SBjoern A. Zeeb
rtw_vif_assoc_changed(struct rtw_vif * rtwvif,struct ieee80211_bss_conf * conf)5882774f206SBjoern A. Zeeb void rtw_vif_assoc_changed(struct rtw_vif *rtwvif,
5892774f206SBjoern A. Zeeb struct ieee80211_bss_conf *conf)
5902774f206SBjoern A. Zeeb {
59190aac0d8SBjoern A. Zeeb struct ieee80211_vif *vif = NULL;
59290aac0d8SBjoern A. Zeeb
59390aac0d8SBjoern A. Zeeb if (conf)
59490aac0d8SBjoern A. Zeeb vif = container_of(conf, struct ieee80211_vif, bss_conf);
59590aac0d8SBjoern A. Zeeb
59690aac0d8SBjoern A. Zeeb if (conf && vif->cfg.assoc) {
59790aac0d8SBjoern A. Zeeb rtwvif->aid = vif->cfg.aid;
5982774f206SBjoern A. Zeeb rtwvif->net_type = RTW_NET_MGD_LINKED;
5992774f206SBjoern A. Zeeb } else {
6002774f206SBjoern A. Zeeb rtwvif->aid = 0;
6012774f206SBjoern A. Zeeb rtwvif->net_type = RTW_NET_NO_LINK;
6022774f206SBjoern A. Zeeb }
6032774f206SBjoern A. Zeeb }
6042774f206SBjoern A. Zeeb
rtw_reset_key_iter(struct ieee80211_hw * hw,struct ieee80211_vif * vif,struct ieee80211_sta * sta,struct ieee80211_key_conf * key,void * data)6052774f206SBjoern A. Zeeb static void rtw_reset_key_iter(struct ieee80211_hw *hw,
6062774f206SBjoern A. Zeeb struct ieee80211_vif *vif,
6072774f206SBjoern A. Zeeb struct ieee80211_sta *sta,
6082774f206SBjoern A. Zeeb struct ieee80211_key_conf *key,
6092774f206SBjoern A. Zeeb void *data)
6102774f206SBjoern A. Zeeb {
6112774f206SBjoern A. Zeeb struct rtw_dev *rtwdev = (struct rtw_dev *)data;
6122774f206SBjoern A. Zeeb struct rtw_sec_desc *sec = &rtwdev->sec;
6132774f206SBjoern A. Zeeb
6142774f206SBjoern A. Zeeb rtw_sec_clear_cam(rtwdev, sec, key->hw_key_idx);
6152774f206SBjoern A. Zeeb }
6162774f206SBjoern A. Zeeb
rtw_reset_sta_iter(void * data,struct ieee80211_sta * sta)6172774f206SBjoern A. Zeeb static void rtw_reset_sta_iter(void *data, struct ieee80211_sta *sta)
6182774f206SBjoern A. Zeeb {
6192774f206SBjoern A. Zeeb struct rtw_dev *rtwdev = (struct rtw_dev *)data;
6202774f206SBjoern A. Zeeb
6212774f206SBjoern A. Zeeb if (rtwdev->sta_cnt == 0) {
6222774f206SBjoern A. Zeeb rtw_warn(rtwdev, "sta count before reset should not be 0\n");
6232774f206SBjoern A. Zeeb return;
6242774f206SBjoern A. Zeeb }
6252774f206SBjoern A. Zeeb rtw_sta_remove(rtwdev, sta, false);
6262774f206SBjoern A. Zeeb }
6272774f206SBjoern A. Zeeb
rtw_reset_vif_iter(void * data,u8 * mac,struct ieee80211_vif * vif)6282774f206SBjoern A. Zeeb static void rtw_reset_vif_iter(void *data, u8 *mac, struct ieee80211_vif *vif)
6292774f206SBjoern A. Zeeb {
6302774f206SBjoern A. Zeeb struct rtw_dev *rtwdev = (struct rtw_dev *)data;
6312774f206SBjoern A. Zeeb struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
6322774f206SBjoern A. Zeeb
6332774f206SBjoern A. Zeeb rtw_bf_disassoc(rtwdev, vif, NULL);
6342774f206SBjoern A. Zeeb rtw_vif_assoc_changed(rtwvif, NULL);
6352774f206SBjoern A. Zeeb rtw_txq_cleanup(rtwdev, vif->txq);
6362774f206SBjoern A. Zeeb }
6372774f206SBjoern A. Zeeb
rtw_fw_recovery(struct rtw_dev * rtwdev)6382774f206SBjoern A. Zeeb void rtw_fw_recovery(struct rtw_dev *rtwdev)
6392774f206SBjoern A. Zeeb {
6402774f206SBjoern A. Zeeb if (!test_bit(RTW_FLAG_RESTARTING, rtwdev->flags))
6412774f206SBjoern A. Zeeb ieee80211_queue_work(rtwdev->hw, &rtwdev->fw_recovery_work);
6422774f206SBjoern A. Zeeb }
6432774f206SBjoern A. Zeeb
__fw_recovery_work(struct rtw_dev * rtwdev)6442774f206SBjoern A. Zeeb static void __fw_recovery_work(struct rtw_dev *rtwdev)
6452774f206SBjoern A. Zeeb {
6462774f206SBjoern A. Zeeb int ret = 0;
6472774f206SBjoern A. Zeeb
6482774f206SBjoern A. Zeeb set_bit(RTW_FLAG_RESTARTING, rtwdev->flags);
6492774f206SBjoern A. Zeeb clear_bit(RTW_FLAG_RESTART_TRIGGERING, rtwdev->flags);
6502774f206SBjoern A. Zeeb
6512774f206SBjoern A. Zeeb ret = rtw_fwcd_prep(rtwdev);
6522774f206SBjoern A. Zeeb if (ret)
6532774f206SBjoern A. Zeeb goto free;
6542774f206SBjoern A. Zeeb ret = rtw_fw_dump_crash_log(rtwdev);
6552774f206SBjoern A. Zeeb if (ret)
6562774f206SBjoern A. Zeeb goto free;
6572774f206SBjoern A. Zeeb ret = rtw_chip_dump_fw_crash(rtwdev);
6582774f206SBjoern A. Zeeb if (ret)
6592774f206SBjoern A. Zeeb goto free;
6602774f206SBjoern A. Zeeb
6612774f206SBjoern A. Zeeb rtw_fwcd_dump(rtwdev);
6622774f206SBjoern A. Zeeb free:
6632774f206SBjoern A. Zeeb rtw_fwcd_free(rtwdev, !!ret);
6642774f206SBjoern A. Zeeb rtw_write8(rtwdev, REG_MCU_TST_CFG, 0);
6652774f206SBjoern A. Zeeb
6662774f206SBjoern A. Zeeb WARN(1, "firmware crash, start reset and recover\n");
6672774f206SBjoern A. Zeeb
6682774f206SBjoern A. Zeeb rcu_read_lock();
6692774f206SBjoern A. Zeeb rtw_iterate_keys_rcu(rtwdev, NULL, rtw_reset_key_iter, rtwdev);
6702774f206SBjoern A. Zeeb rcu_read_unlock();
6712774f206SBjoern A. Zeeb rtw_iterate_stas_atomic(rtwdev, rtw_reset_sta_iter, rtwdev);
6722774f206SBjoern A. Zeeb rtw_iterate_vifs_atomic(rtwdev, rtw_reset_vif_iter, rtwdev);
67390aac0d8SBjoern A. Zeeb bitmap_zero(rtwdev->hw_port, RTW_PORT_NUM);
6742774f206SBjoern A. Zeeb rtw_enter_ips(rtwdev);
6752774f206SBjoern A. Zeeb }
6762774f206SBjoern A. Zeeb
rtw_fw_recovery_work(struct work_struct * work)6772774f206SBjoern A. Zeeb static void rtw_fw_recovery_work(struct work_struct *work)
6782774f206SBjoern A. Zeeb {
6792774f206SBjoern A. Zeeb struct rtw_dev *rtwdev = container_of(work, struct rtw_dev,
6802774f206SBjoern A. Zeeb fw_recovery_work);
6812774f206SBjoern A. Zeeb
6822774f206SBjoern A. Zeeb mutex_lock(&rtwdev->mutex);
6832774f206SBjoern A. Zeeb __fw_recovery_work(rtwdev);
6842774f206SBjoern A. Zeeb mutex_unlock(&rtwdev->mutex);
6852774f206SBjoern A. Zeeb
6862774f206SBjoern A. Zeeb ieee80211_restart_hw(rtwdev->hw);
6872774f206SBjoern A. Zeeb }
6882774f206SBjoern A. Zeeb
6892774f206SBjoern A. Zeeb struct rtw_txq_ba_iter_data {
6902774f206SBjoern A. Zeeb };
6912774f206SBjoern A. Zeeb
rtw_txq_ba_iter(void * data,struct ieee80211_sta * sta)6922774f206SBjoern A. Zeeb static void rtw_txq_ba_iter(void *data, struct ieee80211_sta *sta)
6932774f206SBjoern A. Zeeb {
6942774f206SBjoern A. Zeeb struct rtw_sta_info *si = (struct rtw_sta_info *)sta->drv_priv;
6952774f206SBjoern A. Zeeb int ret;
6962774f206SBjoern A. Zeeb u8 tid;
6972774f206SBjoern A. Zeeb
6982774f206SBjoern A. Zeeb tid = find_first_bit(si->tid_ba, IEEE80211_NUM_TIDS);
6992774f206SBjoern A. Zeeb while (tid != IEEE80211_NUM_TIDS) {
7002774f206SBjoern A. Zeeb clear_bit(tid, si->tid_ba);
7012774f206SBjoern A. Zeeb ret = ieee80211_start_tx_ba_session(sta, tid, 0);
7022774f206SBjoern A. Zeeb if (ret == -EINVAL) {
7032774f206SBjoern A. Zeeb struct ieee80211_txq *txq;
7042774f206SBjoern A. Zeeb struct rtw_txq *rtwtxq;
7052774f206SBjoern A. Zeeb
7062774f206SBjoern A. Zeeb txq = sta->txq[tid];
7072774f206SBjoern A. Zeeb rtwtxq = (struct rtw_txq *)txq->drv_priv;
7082774f206SBjoern A. Zeeb set_bit(RTW_TXQ_BLOCK_BA, &rtwtxq->flags);
7092774f206SBjoern A. Zeeb }
7102774f206SBjoern A. Zeeb
7112774f206SBjoern A. Zeeb tid = find_first_bit(si->tid_ba, IEEE80211_NUM_TIDS);
7122774f206SBjoern A. Zeeb }
7132774f206SBjoern A. Zeeb }
7142774f206SBjoern A. Zeeb
rtw_txq_ba_work(struct work_struct * work)7152774f206SBjoern A. Zeeb static void rtw_txq_ba_work(struct work_struct *work)
7162774f206SBjoern A. Zeeb {
7172774f206SBjoern A. Zeeb struct rtw_dev *rtwdev = container_of(work, struct rtw_dev, ba_work);
7182774f206SBjoern A. Zeeb struct rtw_txq_ba_iter_data data;
7192774f206SBjoern A. Zeeb
7202774f206SBjoern A. Zeeb rtw_iterate_stas_atomic(rtwdev, rtw_txq_ba_iter, &data);
7212774f206SBjoern A. Zeeb }
7222774f206SBjoern A. Zeeb
rtw_set_rx_freq_band(struct rtw_rx_pkt_stat * pkt_stat,u8 channel)7232774f206SBjoern A. Zeeb void rtw_set_rx_freq_band(struct rtw_rx_pkt_stat *pkt_stat, u8 channel)
7242774f206SBjoern A. Zeeb {
7252774f206SBjoern A. Zeeb if (IS_CH_2G_BAND(channel))
7262774f206SBjoern A. Zeeb pkt_stat->band = NL80211_BAND_2GHZ;
7272774f206SBjoern A. Zeeb else if (IS_CH_5G_BAND(channel))
7282774f206SBjoern A. Zeeb pkt_stat->band = NL80211_BAND_5GHZ;
7292774f206SBjoern A. Zeeb else
7302774f206SBjoern A. Zeeb return;
7312774f206SBjoern A. Zeeb
7322774f206SBjoern A. Zeeb pkt_stat->freq = ieee80211_channel_to_frequency(channel, pkt_stat->band);
7332774f206SBjoern A. Zeeb }
7342774f206SBjoern A. Zeeb EXPORT_SYMBOL(rtw_set_rx_freq_band);
7352774f206SBjoern A. Zeeb
rtw_set_dtim_period(struct rtw_dev * rtwdev,int dtim_period)7369c951734SBjoern A. Zeeb void rtw_set_dtim_period(struct rtw_dev *rtwdev, int dtim_period)
7379c951734SBjoern A. Zeeb {
7389c951734SBjoern A. Zeeb rtw_write32_set(rtwdev, REG_TCR, BIT_TCR_UPDATE_TIMIE);
7399c951734SBjoern A. Zeeb rtw_write8(rtwdev, REG_DTIM_COUNTER_ROOT, dtim_period - 1);
7409c951734SBjoern A. Zeeb }
7419c951734SBjoern A. Zeeb
rtw_update_channel(struct rtw_dev * rtwdev,u8 center_channel,u8 primary_channel,enum rtw_supported_band band,enum rtw_bandwidth bandwidth)74290aac0d8SBjoern A. Zeeb void rtw_update_channel(struct rtw_dev *rtwdev, u8 center_channel,
74390aac0d8SBjoern A. Zeeb u8 primary_channel, enum rtw_supported_band band,
74490aac0d8SBjoern A. Zeeb enum rtw_bandwidth bandwidth)
74590aac0d8SBjoern A. Zeeb {
74690aac0d8SBjoern A. Zeeb enum nl80211_band nl_band = rtw_hw_to_nl80211_band(band);
74790aac0d8SBjoern A. Zeeb struct rtw_hal *hal = &rtwdev->hal;
74890aac0d8SBjoern A. Zeeb u8 *cch_by_bw = hal->cch_by_bw;
74990aac0d8SBjoern A. Zeeb u32 center_freq, primary_freq;
75090aac0d8SBjoern A. Zeeb enum rtw_sar_bands sar_band;
75190aac0d8SBjoern A. Zeeb u8 primary_channel_idx;
75290aac0d8SBjoern A. Zeeb
75390aac0d8SBjoern A. Zeeb center_freq = ieee80211_channel_to_frequency(center_channel, nl_band);
75490aac0d8SBjoern A. Zeeb primary_freq = ieee80211_channel_to_frequency(primary_channel, nl_band);
75590aac0d8SBjoern A. Zeeb
75690aac0d8SBjoern A. Zeeb /* assign the center channel used while 20M bw is selected */
75790aac0d8SBjoern A. Zeeb cch_by_bw[RTW_CHANNEL_WIDTH_20] = primary_channel;
75890aac0d8SBjoern A. Zeeb
75990aac0d8SBjoern A. Zeeb /* assign the center channel used while current bw is selected */
76090aac0d8SBjoern A. Zeeb cch_by_bw[bandwidth] = center_channel;
76190aac0d8SBjoern A. Zeeb
76290aac0d8SBjoern A. Zeeb switch (bandwidth) {
76390aac0d8SBjoern A. Zeeb case RTW_CHANNEL_WIDTH_20:
76490aac0d8SBjoern A. Zeeb default:
76590aac0d8SBjoern A. Zeeb primary_channel_idx = RTW_SC_DONT_CARE;
76690aac0d8SBjoern A. Zeeb break;
76790aac0d8SBjoern A. Zeeb case RTW_CHANNEL_WIDTH_40:
76890aac0d8SBjoern A. Zeeb if (primary_freq > center_freq)
76990aac0d8SBjoern A. Zeeb primary_channel_idx = RTW_SC_20_UPPER;
77090aac0d8SBjoern A. Zeeb else
77190aac0d8SBjoern A. Zeeb primary_channel_idx = RTW_SC_20_LOWER;
77290aac0d8SBjoern A. Zeeb break;
77390aac0d8SBjoern A. Zeeb case RTW_CHANNEL_WIDTH_80:
77490aac0d8SBjoern A. Zeeb if (primary_freq > center_freq) {
77590aac0d8SBjoern A. Zeeb if (primary_freq - center_freq == 10)
77690aac0d8SBjoern A. Zeeb primary_channel_idx = RTW_SC_20_UPPER;
77790aac0d8SBjoern A. Zeeb else
77890aac0d8SBjoern A. Zeeb primary_channel_idx = RTW_SC_20_UPMOST;
77990aac0d8SBjoern A. Zeeb
78090aac0d8SBjoern A. Zeeb /* assign the center channel used
78190aac0d8SBjoern A. Zeeb * while 40M bw is selected
78290aac0d8SBjoern A. Zeeb */
78390aac0d8SBjoern A. Zeeb cch_by_bw[RTW_CHANNEL_WIDTH_40] = center_channel + 4;
78490aac0d8SBjoern A. Zeeb } else {
78590aac0d8SBjoern A. Zeeb if (center_freq - primary_freq == 10)
78690aac0d8SBjoern A. Zeeb primary_channel_idx = RTW_SC_20_LOWER;
78790aac0d8SBjoern A. Zeeb else
78890aac0d8SBjoern A. Zeeb primary_channel_idx = RTW_SC_20_LOWEST;
78990aac0d8SBjoern A. Zeeb
79090aac0d8SBjoern A. Zeeb /* assign the center channel used
79190aac0d8SBjoern A. Zeeb * while 40M bw is selected
79290aac0d8SBjoern A. Zeeb */
79390aac0d8SBjoern A. Zeeb cch_by_bw[RTW_CHANNEL_WIDTH_40] = center_channel - 4;
79490aac0d8SBjoern A. Zeeb }
79590aac0d8SBjoern A. Zeeb break;
79690aac0d8SBjoern A. Zeeb }
79790aac0d8SBjoern A. Zeeb
79890aac0d8SBjoern A. Zeeb switch (center_channel) {
79990aac0d8SBjoern A. Zeeb case 1 ... 14:
80090aac0d8SBjoern A. Zeeb sar_band = RTW_SAR_BAND_0;
80190aac0d8SBjoern A. Zeeb break;
80290aac0d8SBjoern A. Zeeb case 36 ... 64:
80390aac0d8SBjoern A. Zeeb sar_band = RTW_SAR_BAND_1;
80490aac0d8SBjoern A. Zeeb break;
80590aac0d8SBjoern A. Zeeb case 100 ... 144:
80690aac0d8SBjoern A. Zeeb sar_band = RTW_SAR_BAND_3;
80790aac0d8SBjoern A. Zeeb break;
80890aac0d8SBjoern A. Zeeb case 149 ... 177:
80990aac0d8SBjoern A. Zeeb sar_band = RTW_SAR_BAND_4;
81090aac0d8SBjoern A. Zeeb break;
81190aac0d8SBjoern A. Zeeb default:
81290aac0d8SBjoern A. Zeeb WARN(1, "unknown ch(%u) to SAR band\n", center_channel);
81390aac0d8SBjoern A. Zeeb sar_band = RTW_SAR_BAND_0;
81490aac0d8SBjoern A. Zeeb break;
81590aac0d8SBjoern A. Zeeb }
81690aac0d8SBjoern A. Zeeb
81790aac0d8SBjoern A. Zeeb hal->current_primary_channel_index = primary_channel_idx;
81890aac0d8SBjoern A. Zeeb hal->current_band_width = bandwidth;
81990aac0d8SBjoern A. Zeeb hal->primary_channel = primary_channel;
82090aac0d8SBjoern A. Zeeb hal->current_channel = center_channel;
82190aac0d8SBjoern A. Zeeb hal->current_band_type = band;
82290aac0d8SBjoern A. Zeeb hal->sar_band = sar_band;
82390aac0d8SBjoern A. Zeeb }
82490aac0d8SBjoern A. Zeeb
rtw_get_channel_params(struct cfg80211_chan_def * chandef,struct rtw_channel_params * chan_params)8252774f206SBjoern A. Zeeb void rtw_get_channel_params(struct cfg80211_chan_def *chandef,
8262774f206SBjoern A. Zeeb struct rtw_channel_params *chan_params)
8272774f206SBjoern A. Zeeb {
8282774f206SBjoern A. Zeeb struct ieee80211_channel *channel = chandef->chan;
8292774f206SBjoern A. Zeeb enum nl80211_chan_width width = chandef->width;
8302774f206SBjoern A. Zeeb u32 primary_freq, center_freq;
8312774f206SBjoern A. Zeeb u8 center_chan;
8322774f206SBjoern A. Zeeb u8 bandwidth = RTW_CHANNEL_WIDTH_20;
8332774f206SBjoern A. Zeeb
8342774f206SBjoern A. Zeeb center_chan = channel->hw_value;
8352774f206SBjoern A. Zeeb primary_freq = channel->center_freq;
8362774f206SBjoern A. Zeeb center_freq = chandef->center_freq1;
8372774f206SBjoern A. Zeeb
8382774f206SBjoern A. Zeeb switch (width) {
8392774f206SBjoern A. Zeeb case NL80211_CHAN_WIDTH_20_NOHT:
8402774f206SBjoern A. Zeeb case NL80211_CHAN_WIDTH_20:
8412774f206SBjoern A. Zeeb bandwidth = RTW_CHANNEL_WIDTH_20;
8422774f206SBjoern A. Zeeb break;
8432774f206SBjoern A. Zeeb case NL80211_CHAN_WIDTH_40:
8442774f206SBjoern A. Zeeb bandwidth = RTW_CHANNEL_WIDTH_40;
84590aac0d8SBjoern A. Zeeb if (primary_freq > center_freq)
8462774f206SBjoern A. Zeeb center_chan -= 2;
84790aac0d8SBjoern A. Zeeb else
8482774f206SBjoern A. Zeeb center_chan += 2;
8492774f206SBjoern A. Zeeb break;
8502774f206SBjoern A. Zeeb case NL80211_CHAN_WIDTH_80:
8512774f206SBjoern A. Zeeb bandwidth = RTW_CHANNEL_WIDTH_80;
8522774f206SBjoern A. Zeeb if (primary_freq > center_freq) {
85390aac0d8SBjoern A. Zeeb if (primary_freq - center_freq == 10)
8542774f206SBjoern A. Zeeb center_chan -= 2;
85590aac0d8SBjoern A. Zeeb else
8562774f206SBjoern A. Zeeb center_chan -= 6;
8572774f206SBjoern A. Zeeb } else {
85890aac0d8SBjoern A. Zeeb if (center_freq - primary_freq == 10)
8592774f206SBjoern A. Zeeb center_chan += 2;
86090aac0d8SBjoern A. Zeeb else
8612774f206SBjoern A. Zeeb center_chan += 6;
8622774f206SBjoern A. Zeeb }
8632774f206SBjoern A. Zeeb break;
8642774f206SBjoern A. Zeeb default:
8652774f206SBjoern A. Zeeb center_chan = 0;
8662774f206SBjoern A. Zeeb break;
8672774f206SBjoern A. Zeeb }
8682774f206SBjoern A. Zeeb
8692774f206SBjoern A. Zeeb chan_params->center_chan = center_chan;
8702774f206SBjoern A. Zeeb chan_params->bandwidth = bandwidth;
87190aac0d8SBjoern A. Zeeb chan_params->primary_chan = channel->hw_value;
8722774f206SBjoern A. Zeeb }
8732774f206SBjoern A. Zeeb
rtw_set_channel(struct rtw_dev * rtwdev)8742774f206SBjoern A. Zeeb void rtw_set_channel(struct rtw_dev *rtwdev)
8752774f206SBjoern A. Zeeb {
87690aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
8772774f206SBjoern A. Zeeb struct ieee80211_hw *hw = rtwdev->hw;
8782774f206SBjoern A. Zeeb struct rtw_hal *hal = &rtwdev->hal;
8792774f206SBjoern A. Zeeb struct rtw_channel_params ch_param;
88090aac0d8SBjoern A. Zeeb u8 center_chan, primary_chan, bandwidth, band;
8812774f206SBjoern A. Zeeb
8822774f206SBjoern A. Zeeb rtw_get_channel_params(&hw->conf.chandef, &ch_param);
8832774f206SBjoern A. Zeeb if (WARN(ch_param.center_chan == 0, "Invalid channel\n"))
8842774f206SBjoern A. Zeeb return;
8852774f206SBjoern A. Zeeb
8862774f206SBjoern A. Zeeb center_chan = ch_param.center_chan;
88790aac0d8SBjoern A. Zeeb primary_chan = ch_param.primary_chan;
8882774f206SBjoern A. Zeeb bandwidth = ch_param.bandwidth;
88990aac0d8SBjoern A. Zeeb band = ch_param.center_chan > 14 ? RTW_BAND_5G : RTW_BAND_2G;
8902774f206SBjoern A. Zeeb
89190aac0d8SBjoern A. Zeeb rtw_update_channel(rtwdev, center_chan, primary_chan, band, bandwidth);
8922774f206SBjoern A. Zeeb
89390aac0d8SBjoern A. Zeeb if (rtwdev->scan_info.op_chan)
89490aac0d8SBjoern A. Zeeb rtw_store_op_chan(rtwdev, true);
8952774f206SBjoern A. Zeeb
89690aac0d8SBjoern A. Zeeb chip->ops->set_channel(rtwdev, center_chan, bandwidth,
89790aac0d8SBjoern A. Zeeb hal->current_primary_channel_index);
8982774f206SBjoern A. Zeeb
8992774f206SBjoern A. Zeeb if (hal->current_band_type == RTW_BAND_5G) {
9002774f206SBjoern A. Zeeb rtw_coex_switchband_notify(rtwdev, COEX_SWITCH_TO_5G);
9012774f206SBjoern A. Zeeb } else {
9022774f206SBjoern A. Zeeb if (test_bit(RTW_FLAG_SCANNING, rtwdev->flags))
9032774f206SBjoern A. Zeeb rtw_coex_switchband_notify(rtwdev, COEX_SWITCH_TO_24G);
9042774f206SBjoern A. Zeeb else
9052774f206SBjoern A. Zeeb rtw_coex_switchband_notify(rtwdev, COEX_SWITCH_TO_24G_NOFORSCAN);
9062774f206SBjoern A. Zeeb }
9072774f206SBjoern A. Zeeb
9082774f206SBjoern A. Zeeb rtw_phy_set_tx_power_level(rtwdev, center_chan);
9092774f206SBjoern A. Zeeb
9102774f206SBjoern A. Zeeb /* if the channel isn't set for scanning, we will do RF calibration
9112774f206SBjoern A. Zeeb * in ieee80211_ops::mgd_prepare_tx(). Performing the calibration
9122774f206SBjoern A. Zeeb * during scanning on each channel takes too long.
9132774f206SBjoern A. Zeeb */
9142774f206SBjoern A. Zeeb if (!test_bit(RTW_FLAG_SCANNING, rtwdev->flags))
9152774f206SBjoern A. Zeeb rtwdev->need_rfk = true;
9162774f206SBjoern A. Zeeb }
9172774f206SBjoern A. Zeeb
rtw_chip_prepare_tx(struct rtw_dev * rtwdev)9182774f206SBjoern A. Zeeb void rtw_chip_prepare_tx(struct rtw_dev *rtwdev)
9192774f206SBjoern A. Zeeb {
92090aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
9212774f206SBjoern A. Zeeb
9222774f206SBjoern A. Zeeb if (rtwdev->need_rfk) {
9232774f206SBjoern A. Zeeb rtwdev->need_rfk = false;
9242774f206SBjoern A. Zeeb chip->ops->phy_calibration(rtwdev);
9252774f206SBjoern A. Zeeb }
9262774f206SBjoern A. Zeeb }
9272774f206SBjoern A. Zeeb
rtw_vif_write_addr(struct rtw_dev * rtwdev,u32 start,u8 * addr)9282774f206SBjoern A. Zeeb static void rtw_vif_write_addr(struct rtw_dev *rtwdev, u32 start, u8 *addr)
9292774f206SBjoern A. Zeeb {
9302774f206SBjoern A. Zeeb int i;
9312774f206SBjoern A. Zeeb
9322774f206SBjoern A. Zeeb for (i = 0; i < ETH_ALEN; i++)
9332774f206SBjoern A. Zeeb rtw_write8(rtwdev, start + i, addr[i]);
9342774f206SBjoern A. Zeeb }
9352774f206SBjoern A. Zeeb
rtw_vif_port_config(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif,u32 config)9362774f206SBjoern A. Zeeb void rtw_vif_port_config(struct rtw_dev *rtwdev,
9372774f206SBjoern A. Zeeb struct rtw_vif *rtwvif,
9382774f206SBjoern A. Zeeb u32 config)
9392774f206SBjoern A. Zeeb {
9402774f206SBjoern A. Zeeb u32 addr, mask;
9412774f206SBjoern A. Zeeb
9422774f206SBjoern A. Zeeb if (config & PORT_SET_MAC_ADDR) {
9432774f206SBjoern A. Zeeb addr = rtwvif->conf->mac_addr.addr;
9442774f206SBjoern A. Zeeb rtw_vif_write_addr(rtwdev, addr, rtwvif->mac_addr);
9452774f206SBjoern A. Zeeb }
9462774f206SBjoern A. Zeeb if (config & PORT_SET_BSSID) {
9472774f206SBjoern A. Zeeb addr = rtwvif->conf->bssid.addr;
9482774f206SBjoern A. Zeeb rtw_vif_write_addr(rtwdev, addr, rtwvif->bssid);
9492774f206SBjoern A. Zeeb }
9502774f206SBjoern A. Zeeb if (config & PORT_SET_NET_TYPE) {
9512774f206SBjoern A. Zeeb addr = rtwvif->conf->net_type.addr;
9522774f206SBjoern A. Zeeb mask = rtwvif->conf->net_type.mask;
9532774f206SBjoern A. Zeeb rtw_write32_mask(rtwdev, addr, mask, rtwvif->net_type);
9542774f206SBjoern A. Zeeb }
9552774f206SBjoern A. Zeeb if (config & PORT_SET_AID) {
9562774f206SBjoern A. Zeeb addr = rtwvif->conf->aid.addr;
9572774f206SBjoern A. Zeeb mask = rtwvif->conf->aid.mask;
9582774f206SBjoern A. Zeeb rtw_write32_mask(rtwdev, addr, mask, rtwvif->aid);
9592774f206SBjoern A. Zeeb }
9602774f206SBjoern A. Zeeb if (config & PORT_SET_BCN_CTRL) {
9612774f206SBjoern A. Zeeb addr = rtwvif->conf->bcn_ctrl.addr;
9622774f206SBjoern A. Zeeb mask = rtwvif->conf->bcn_ctrl.mask;
9632774f206SBjoern A. Zeeb rtw_write8_mask(rtwdev, addr, mask, rtwvif->bcn_ctrl);
9642774f206SBjoern A. Zeeb }
9652774f206SBjoern A. Zeeb }
9662774f206SBjoern A. Zeeb
hw_bw_cap_to_bitamp(u8 bw_cap)9672774f206SBjoern A. Zeeb static u8 hw_bw_cap_to_bitamp(u8 bw_cap)
9682774f206SBjoern A. Zeeb {
9692774f206SBjoern A. Zeeb u8 bw = 0;
9702774f206SBjoern A. Zeeb
9712774f206SBjoern A. Zeeb switch (bw_cap) {
9722774f206SBjoern A. Zeeb case EFUSE_HW_CAP_IGNORE:
9732774f206SBjoern A. Zeeb case EFUSE_HW_CAP_SUPP_BW80:
9742774f206SBjoern A. Zeeb bw |= BIT(RTW_CHANNEL_WIDTH_80);
9752774f206SBjoern A. Zeeb fallthrough;
9762774f206SBjoern A. Zeeb case EFUSE_HW_CAP_SUPP_BW40:
9772774f206SBjoern A. Zeeb bw |= BIT(RTW_CHANNEL_WIDTH_40);
9782774f206SBjoern A. Zeeb fallthrough;
9792774f206SBjoern A. Zeeb default:
9802774f206SBjoern A. Zeeb bw |= BIT(RTW_CHANNEL_WIDTH_20);
9812774f206SBjoern A. Zeeb break;
9822774f206SBjoern A. Zeeb }
9832774f206SBjoern A. Zeeb
9842774f206SBjoern A. Zeeb return bw;
9852774f206SBjoern A. Zeeb }
9862774f206SBjoern A. Zeeb
rtw_hw_config_rf_ant_num(struct rtw_dev * rtwdev,u8 hw_ant_num)9872774f206SBjoern A. Zeeb static void rtw_hw_config_rf_ant_num(struct rtw_dev *rtwdev, u8 hw_ant_num)
9882774f206SBjoern A. Zeeb {
98990aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
9902774f206SBjoern A. Zeeb struct rtw_hal *hal = &rtwdev->hal;
9912774f206SBjoern A. Zeeb
9922774f206SBjoern A. Zeeb if (hw_ant_num == EFUSE_HW_CAP_IGNORE ||
9932774f206SBjoern A. Zeeb hw_ant_num >= hal->rf_path_num)
9942774f206SBjoern A. Zeeb return;
9952774f206SBjoern A. Zeeb
9962774f206SBjoern A. Zeeb switch (hw_ant_num) {
9972774f206SBjoern A. Zeeb case 1:
9982774f206SBjoern A. Zeeb hal->rf_type = RF_1T1R;
9992774f206SBjoern A. Zeeb hal->rf_path_num = 1;
10002774f206SBjoern A. Zeeb if (!chip->fix_rf_phy_num)
10012774f206SBjoern A. Zeeb hal->rf_phy_num = hal->rf_path_num;
10022774f206SBjoern A. Zeeb hal->antenna_tx = BB_PATH_A;
10032774f206SBjoern A. Zeeb hal->antenna_rx = BB_PATH_A;
10042774f206SBjoern A. Zeeb break;
10052774f206SBjoern A. Zeeb default:
10062774f206SBjoern A. Zeeb WARN(1, "invalid hw configuration from efuse\n");
10072774f206SBjoern A. Zeeb break;
10082774f206SBjoern A. Zeeb }
10092774f206SBjoern A. Zeeb }
10102774f206SBjoern A. Zeeb
get_vht_ra_mask(struct ieee80211_sta * sta)10112774f206SBjoern A. Zeeb static u64 get_vht_ra_mask(struct ieee80211_sta *sta)
10122774f206SBjoern A. Zeeb {
10132774f206SBjoern A. Zeeb u64 ra_mask = 0;
10146cf748adSBjoern A. Zeeb u16 mcs_map = le16_to_cpu(sta->deflink.vht_cap.vht_mcs.rx_mcs_map);
10152774f206SBjoern A. Zeeb u8 vht_mcs_cap;
10162774f206SBjoern A. Zeeb int i, nss;
10172774f206SBjoern A. Zeeb
10182774f206SBjoern A. Zeeb /* 4SS, every two bits for MCS7/8/9 */
10192774f206SBjoern A. Zeeb for (i = 0, nss = 12; i < 4; i++, mcs_map >>= 2, nss += 10) {
10202774f206SBjoern A. Zeeb vht_mcs_cap = mcs_map & 0x3;
10212774f206SBjoern A. Zeeb switch (vht_mcs_cap) {
10222774f206SBjoern A. Zeeb case 2: /* MCS9 */
10232774f206SBjoern A. Zeeb ra_mask |= 0x3ffULL << nss;
10242774f206SBjoern A. Zeeb break;
10252774f206SBjoern A. Zeeb case 1: /* MCS8 */
10262774f206SBjoern A. Zeeb ra_mask |= 0x1ffULL << nss;
10272774f206SBjoern A. Zeeb break;
10282774f206SBjoern A. Zeeb case 0: /* MCS7 */
10292774f206SBjoern A. Zeeb ra_mask |= 0x0ffULL << nss;
10302774f206SBjoern A. Zeeb break;
10312774f206SBjoern A. Zeeb default:
10322774f206SBjoern A. Zeeb break;
10332774f206SBjoern A. Zeeb }
10342774f206SBjoern A. Zeeb }
10352774f206SBjoern A. Zeeb
10362774f206SBjoern A. Zeeb return ra_mask;
10372774f206SBjoern A. Zeeb }
10382774f206SBjoern A. Zeeb
get_rate_id(u8 wireless_set,enum rtw_bandwidth bw_mode,u8 tx_num)10392774f206SBjoern A. Zeeb static u8 get_rate_id(u8 wireless_set, enum rtw_bandwidth bw_mode, u8 tx_num)
10402774f206SBjoern A. Zeeb {
10412774f206SBjoern A. Zeeb u8 rate_id = 0;
10422774f206SBjoern A. Zeeb
10432774f206SBjoern A. Zeeb switch (wireless_set) {
10442774f206SBjoern A. Zeeb case WIRELESS_CCK:
10452774f206SBjoern A. Zeeb rate_id = RTW_RATEID_B_20M;
10462774f206SBjoern A. Zeeb break;
10472774f206SBjoern A. Zeeb case WIRELESS_OFDM:
10482774f206SBjoern A. Zeeb rate_id = RTW_RATEID_G;
10492774f206SBjoern A. Zeeb break;
10502774f206SBjoern A. Zeeb case WIRELESS_CCK | WIRELESS_OFDM:
10512774f206SBjoern A. Zeeb rate_id = RTW_RATEID_BG;
10522774f206SBjoern A. Zeeb break;
10532774f206SBjoern A. Zeeb case WIRELESS_OFDM | WIRELESS_HT:
10542774f206SBjoern A. Zeeb if (tx_num == 1)
10552774f206SBjoern A. Zeeb rate_id = RTW_RATEID_GN_N1SS;
10562774f206SBjoern A. Zeeb else if (tx_num == 2)
10572774f206SBjoern A. Zeeb rate_id = RTW_RATEID_GN_N2SS;
10582774f206SBjoern A. Zeeb else if (tx_num == 3)
10592774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR5_N_3SS;
10602774f206SBjoern A. Zeeb break;
10612774f206SBjoern A. Zeeb case WIRELESS_CCK | WIRELESS_OFDM | WIRELESS_HT:
10622774f206SBjoern A. Zeeb if (bw_mode == RTW_CHANNEL_WIDTH_40) {
10632774f206SBjoern A. Zeeb if (tx_num == 1)
10642774f206SBjoern A. Zeeb rate_id = RTW_RATEID_BGN_40M_1SS;
10652774f206SBjoern A. Zeeb else if (tx_num == 2)
10662774f206SBjoern A. Zeeb rate_id = RTW_RATEID_BGN_40M_2SS;
10672774f206SBjoern A. Zeeb else if (tx_num == 3)
10682774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR5_N_3SS;
10692774f206SBjoern A. Zeeb else if (tx_num == 4)
10702774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR7_N_4SS;
10712774f206SBjoern A. Zeeb } else {
10722774f206SBjoern A. Zeeb if (tx_num == 1)
10732774f206SBjoern A. Zeeb rate_id = RTW_RATEID_BGN_20M_1SS;
10742774f206SBjoern A. Zeeb else if (tx_num == 2)
10752774f206SBjoern A. Zeeb rate_id = RTW_RATEID_BGN_20M_2SS;
10762774f206SBjoern A. Zeeb else if (tx_num == 3)
10772774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR5_N_3SS;
10782774f206SBjoern A. Zeeb else if (tx_num == 4)
10792774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR7_N_4SS;
10802774f206SBjoern A. Zeeb }
10812774f206SBjoern A. Zeeb break;
10822774f206SBjoern A. Zeeb case WIRELESS_OFDM | WIRELESS_VHT:
10832774f206SBjoern A. Zeeb if (tx_num == 1)
10842774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR1_AC_1SS;
10852774f206SBjoern A. Zeeb else if (tx_num == 2)
10862774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR0_AC_2SS;
10872774f206SBjoern A. Zeeb else if (tx_num == 3)
10882774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR4_AC_3SS;
10892774f206SBjoern A. Zeeb else if (tx_num == 4)
10902774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR6_AC_4SS;
10912774f206SBjoern A. Zeeb break;
10922774f206SBjoern A. Zeeb case WIRELESS_CCK | WIRELESS_OFDM | WIRELESS_VHT:
10932774f206SBjoern A. Zeeb if (bw_mode >= RTW_CHANNEL_WIDTH_80) {
10942774f206SBjoern A. Zeeb if (tx_num == 1)
10952774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR1_AC_1SS;
10962774f206SBjoern A. Zeeb else if (tx_num == 2)
10972774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR0_AC_2SS;
10982774f206SBjoern A. Zeeb else if (tx_num == 3)
10992774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR4_AC_3SS;
11002774f206SBjoern A. Zeeb else if (tx_num == 4)
11012774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR6_AC_4SS;
11022774f206SBjoern A. Zeeb } else {
11032774f206SBjoern A. Zeeb if (tx_num == 1)
11042774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR2_AC_2G_1SS;
11052774f206SBjoern A. Zeeb else if (tx_num == 2)
11062774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR3_AC_2G_2SS;
11072774f206SBjoern A. Zeeb else if (tx_num == 3)
11082774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR4_AC_3SS;
11092774f206SBjoern A. Zeeb else if (tx_num == 4)
11102774f206SBjoern A. Zeeb rate_id = RTW_RATEID_ARFR6_AC_4SS;
11112774f206SBjoern A. Zeeb }
11122774f206SBjoern A. Zeeb break;
11132774f206SBjoern A. Zeeb default:
11142774f206SBjoern A. Zeeb break;
11152774f206SBjoern A. Zeeb }
11162774f206SBjoern A. Zeeb
11172774f206SBjoern A. Zeeb return rate_id;
11182774f206SBjoern A. Zeeb }
11192774f206SBjoern A. Zeeb
11202774f206SBjoern A. Zeeb #define RA_MASK_CCK_RATES 0x0000f
11212774f206SBjoern A. Zeeb #define RA_MASK_OFDM_RATES 0x00ff0
11222774f206SBjoern A. Zeeb #define RA_MASK_HT_RATES_1SS (0xff000ULL << 0)
11232774f206SBjoern A. Zeeb #define RA_MASK_HT_RATES_2SS (0xff000ULL << 8)
11242774f206SBjoern A. Zeeb #define RA_MASK_HT_RATES_3SS (0xff000ULL << 16)
11252774f206SBjoern A. Zeeb #define RA_MASK_HT_RATES (RA_MASK_HT_RATES_1SS | \
11262774f206SBjoern A. Zeeb RA_MASK_HT_RATES_2SS | \
11272774f206SBjoern A. Zeeb RA_MASK_HT_RATES_3SS)
11282774f206SBjoern A. Zeeb #define RA_MASK_VHT_RATES_1SS (0x3ff000ULL << 0)
11292774f206SBjoern A. Zeeb #define RA_MASK_VHT_RATES_2SS (0x3ff000ULL << 10)
11302774f206SBjoern A. Zeeb #define RA_MASK_VHT_RATES_3SS (0x3ff000ULL << 20)
11312774f206SBjoern A. Zeeb #define RA_MASK_VHT_RATES (RA_MASK_VHT_RATES_1SS | \
11322774f206SBjoern A. Zeeb RA_MASK_VHT_RATES_2SS | \
11332774f206SBjoern A. Zeeb RA_MASK_VHT_RATES_3SS)
11349c951734SBjoern A. Zeeb #define RA_MASK_CCK_IN_BG 0x00005
11352774f206SBjoern A. Zeeb #define RA_MASK_CCK_IN_HT 0x00005
11362774f206SBjoern A. Zeeb #define RA_MASK_CCK_IN_VHT 0x00005
11372774f206SBjoern A. Zeeb #define RA_MASK_OFDM_IN_VHT 0x00010
11382774f206SBjoern A. Zeeb #define RA_MASK_OFDM_IN_HT_2G 0x00010
11392774f206SBjoern A. Zeeb #define RA_MASK_OFDM_IN_HT_5G 0x00030
11402774f206SBjoern A. Zeeb
rtw_rate_mask_rssi(struct rtw_sta_info * si,u8 wireless_set)11419c951734SBjoern A. Zeeb static u64 rtw_rate_mask_rssi(struct rtw_sta_info *si, u8 wireless_set)
11429c951734SBjoern A. Zeeb {
11439c951734SBjoern A. Zeeb u8 rssi_level = si->rssi_level;
11449c951734SBjoern A. Zeeb
11459c951734SBjoern A. Zeeb if (wireless_set == WIRELESS_CCK)
11469c951734SBjoern A. Zeeb return 0xffffffffffffffffULL;
11479c951734SBjoern A. Zeeb
11489c951734SBjoern A. Zeeb if (rssi_level == 0)
11499c951734SBjoern A. Zeeb return 0xffffffffffffffffULL;
11509c951734SBjoern A. Zeeb else if (rssi_level == 1)
11519c951734SBjoern A. Zeeb return 0xfffffffffffffff0ULL;
11529c951734SBjoern A. Zeeb else if (rssi_level == 2)
11539c951734SBjoern A. Zeeb return 0xffffffffffffefe0ULL;
11549c951734SBjoern A. Zeeb else if (rssi_level == 3)
11559c951734SBjoern A. Zeeb return 0xffffffffffffcfc0ULL;
11569c951734SBjoern A. Zeeb else if (rssi_level == 4)
11579c951734SBjoern A. Zeeb return 0xffffffffffff8f80ULL;
11589c951734SBjoern A. Zeeb else
11599c951734SBjoern A. Zeeb return 0xffffffffffff0f00ULL;
11609c951734SBjoern A. Zeeb }
11619c951734SBjoern A. Zeeb
rtw_rate_mask_recover(u64 ra_mask,u64 ra_mask_bak)11629c951734SBjoern A. Zeeb static u64 rtw_rate_mask_recover(u64 ra_mask, u64 ra_mask_bak)
11639c951734SBjoern A. Zeeb {
11649c951734SBjoern A. Zeeb if ((ra_mask & ~(RA_MASK_CCK_RATES | RA_MASK_OFDM_RATES)) == 0)
11659c951734SBjoern A. Zeeb ra_mask |= (ra_mask_bak & ~(RA_MASK_CCK_RATES | RA_MASK_OFDM_RATES));
11669c951734SBjoern A. Zeeb
11679c951734SBjoern A. Zeeb if (ra_mask == 0)
11689c951734SBjoern A. Zeeb ra_mask |= (ra_mask_bak & (RA_MASK_CCK_RATES | RA_MASK_OFDM_RATES));
11699c951734SBjoern A. Zeeb
11709c951734SBjoern A. Zeeb return ra_mask;
11719c951734SBjoern A. Zeeb }
11729c951734SBjoern A. Zeeb
rtw_rate_mask_cfg(struct rtw_dev * rtwdev,struct rtw_sta_info * si,u64 ra_mask,bool is_vht_enable)11739c951734SBjoern A. Zeeb static u64 rtw_rate_mask_cfg(struct rtw_dev *rtwdev, struct rtw_sta_info *si,
11749c951734SBjoern A. Zeeb u64 ra_mask, bool is_vht_enable)
11752774f206SBjoern A. Zeeb {
11762774f206SBjoern A. Zeeb struct rtw_hal *hal = &rtwdev->hal;
11772774f206SBjoern A. Zeeb const struct cfg80211_bitrate_mask *mask = si->mask;
11782774f206SBjoern A. Zeeb u64 cfg_mask = GENMASK_ULL(63, 0);
11799c951734SBjoern A. Zeeb u8 band;
11802774f206SBjoern A. Zeeb
11812774f206SBjoern A. Zeeb if (!si->use_cfg_mask)
11822774f206SBjoern A. Zeeb return ra_mask;
11832774f206SBjoern A. Zeeb
11842774f206SBjoern A. Zeeb band = hal->current_band_type;
11852774f206SBjoern A. Zeeb if (band == RTW_BAND_2G) {
11862774f206SBjoern A. Zeeb band = NL80211_BAND_2GHZ;
11872774f206SBjoern A. Zeeb cfg_mask = mask->control[band].legacy;
11882774f206SBjoern A. Zeeb } else if (band == RTW_BAND_5G) {
11892774f206SBjoern A. Zeeb band = NL80211_BAND_5GHZ;
11902774f206SBjoern A. Zeeb cfg_mask = u64_encode_bits(mask->control[band].legacy,
11912774f206SBjoern A. Zeeb RA_MASK_OFDM_RATES);
11922774f206SBjoern A. Zeeb }
11932774f206SBjoern A. Zeeb
11942774f206SBjoern A. Zeeb if (!is_vht_enable) {
11952774f206SBjoern A. Zeeb if (ra_mask & RA_MASK_HT_RATES_1SS)
11962774f206SBjoern A. Zeeb cfg_mask |= u64_encode_bits(mask->control[band].ht_mcs[0],
11972774f206SBjoern A. Zeeb RA_MASK_HT_RATES_1SS);
11982774f206SBjoern A. Zeeb if (ra_mask & RA_MASK_HT_RATES_2SS)
11992774f206SBjoern A. Zeeb cfg_mask |= u64_encode_bits(mask->control[band].ht_mcs[1],
12002774f206SBjoern A. Zeeb RA_MASK_HT_RATES_2SS);
12012774f206SBjoern A. Zeeb } else {
12022774f206SBjoern A. Zeeb if (ra_mask & RA_MASK_VHT_RATES_1SS)
12032774f206SBjoern A. Zeeb cfg_mask |= u64_encode_bits(mask->control[band].vht_mcs[0],
12042774f206SBjoern A. Zeeb RA_MASK_VHT_RATES_1SS);
12052774f206SBjoern A. Zeeb if (ra_mask & RA_MASK_VHT_RATES_2SS)
12062774f206SBjoern A. Zeeb cfg_mask |= u64_encode_bits(mask->control[band].vht_mcs[1],
12072774f206SBjoern A. Zeeb RA_MASK_VHT_RATES_2SS);
12082774f206SBjoern A. Zeeb }
12092774f206SBjoern A. Zeeb
12102774f206SBjoern A. Zeeb ra_mask &= cfg_mask;
12112774f206SBjoern A. Zeeb
12122774f206SBjoern A. Zeeb return ra_mask;
12132774f206SBjoern A. Zeeb }
12142774f206SBjoern A. Zeeb
rtw_update_sta_info(struct rtw_dev * rtwdev,struct rtw_sta_info * si,bool reset_ra_mask)12159c951734SBjoern A. Zeeb void rtw_update_sta_info(struct rtw_dev *rtwdev, struct rtw_sta_info *si,
12169c951734SBjoern A. Zeeb bool reset_ra_mask)
12172774f206SBjoern A. Zeeb {
12182774f206SBjoern A. Zeeb struct rtw_dm_info *dm_info = &rtwdev->dm_info;
12192774f206SBjoern A. Zeeb struct ieee80211_sta *sta = si->sta;
12202774f206SBjoern A. Zeeb struct rtw_efuse *efuse = &rtwdev->efuse;
12212774f206SBjoern A. Zeeb struct rtw_hal *hal = &rtwdev->hal;
12222774f206SBjoern A. Zeeb u8 wireless_set;
12232774f206SBjoern A. Zeeb u8 bw_mode;
12242774f206SBjoern A. Zeeb u8 rate_id;
12252774f206SBjoern A. Zeeb u8 rf_type = RF_1T1R;
12262774f206SBjoern A. Zeeb u8 stbc_en = 0;
12272774f206SBjoern A. Zeeb u8 ldpc_en = 0;
12282774f206SBjoern A. Zeeb u8 tx_num = 1;
12292774f206SBjoern A. Zeeb u64 ra_mask = 0;
12309c951734SBjoern A. Zeeb u64 ra_mask_bak = 0;
12312774f206SBjoern A. Zeeb bool is_vht_enable = false;
12322774f206SBjoern A. Zeeb bool is_support_sgi = false;
12332774f206SBjoern A. Zeeb
12346cf748adSBjoern A. Zeeb if (sta->deflink.vht_cap.vht_supported) {
12352774f206SBjoern A. Zeeb is_vht_enable = true;
12362774f206SBjoern A. Zeeb ra_mask |= get_vht_ra_mask(sta);
12376cf748adSBjoern A. Zeeb if (sta->deflink.vht_cap.cap & IEEE80211_VHT_CAP_RXSTBC_MASK)
12382774f206SBjoern A. Zeeb stbc_en = VHT_STBC_EN;
12396cf748adSBjoern A. Zeeb if (sta->deflink.vht_cap.cap & IEEE80211_VHT_CAP_RXLDPC)
12402774f206SBjoern A. Zeeb ldpc_en = VHT_LDPC_EN;
12416cf748adSBjoern A. Zeeb } else if (sta->deflink.ht_cap.ht_supported) {
12426cf748adSBjoern A. Zeeb ra_mask |= (sta->deflink.ht_cap.mcs.rx_mask[1] << 20) |
12436cf748adSBjoern A. Zeeb (sta->deflink.ht_cap.mcs.rx_mask[0] << 12);
12446cf748adSBjoern A. Zeeb if (sta->deflink.ht_cap.cap & IEEE80211_HT_CAP_RX_STBC)
12452774f206SBjoern A. Zeeb stbc_en = HT_STBC_EN;
12466cf748adSBjoern A. Zeeb if (sta->deflink.ht_cap.cap & IEEE80211_HT_CAP_LDPC_CODING)
12472774f206SBjoern A. Zeeb ldpc_en = HT_LDPC_EN;
12482774f206SBjoern A. Zeeb }
12492774f206SBjoern A. Zeeb
12509c951734SBjoern A. Zeeb if (efuse->hw_cap.nss == 1 || rtwdev->hal.txrx_1ss)
12512774f206SBjoern A. Zeeb ra_mask &= RA_MASK_VHT_RATES_1SS | RA_MASK_HT_RATES_1SS;
12522774f206SBjoern A. Zeeb
12532774f206SBjoern A. Zeeb if (hal->current_band_type == RTW_BAND_5G) {
12546cf748adSBjoern A. Zeeb ra_mask |= (u64)sta->deflink.supp_rates[NL80211_BAND_5GHZ] << 4;
12559c951734SBjoern A. Zeeb ra_mask_bak = ra_mask;
12566cf748adSBjoern A. Zeeb if (sta->deflink.vht_cap.vht_supported) {
12572774f206SBjoern A. Zeeb ra_mask &= RA_MASK_VHT_RATES | RA_MASK_OFDM_IN_VHT;
12582774f206SBjoern A. Zeeb wireless_set = WIRELESS_OFDM | WIRELESS_VHT;
12596cf748adSBjoern A. Zeeb } else if (sta->deflink.ht_cap.ht_supported) {
12602774f206SBjoern A. Zeeb ra_mask &= RA_MASK_HT_RATES | RA_MASK_OFDM_IN_HT_5G;
12612774f206SBjoern A. Zeeb wireless_set = WIRELESS_OFDM | WIRELESS_HT;
12622774f206SBjoern A. Zeeb } else {
12632774f206SBjoern A. Zeeb wireless_set = WIRELESS_OFDM;
12642774f206SBjoern A. Zeeb }
12652774f206SBjoern A. Zeeb dm_info->rrsr_val_init = RRSR_INIT_5G;
12662774f206SBjoern A. Zeeb } else if (hal->current_band_type == RTW_BAND_2G) {
12676cf748adSBjoern A. Zeeb ra_mask |= sta->deflink.supp_rates[NL80211_BAND_2GHZ];
12689c951734SBjoern A. Zeeb ra_mask_bak = ra_mask;
12696cf748adSBjoern A. Zeeb if (sta->deflink.vht_cap.vht_supported) {
12702774f206SBjoern A. Zeeb ra_mask &= RA_MASK_VHT_RATES | RA_MASK_CCK_IN_VHT |
12712774f206SBjoern A. Zeeb RA_MASK_OFDM_IN_VHT;
12722774f206SBjoern A. Zeeb wireless_set = WIRELESS_CCK | WIRELESS_OFDM |
12732774f206SBjoern A. Zeeb WIRELESS_HT | WIRELESS_VHT;
12746cf748adSBjoern A. Zeeb } else if (sta->deflink.ht_cap.ht_supported) {
12752774f206SBjoern A. Zeeb ra_mask &= RA_MASK_HT_RATES | RA_MASK_CCK_IN_HT |
12762774f206SBjoern A. Zeeb RA_MASK_OFDM_IN_HT_2G;
12772774f206SBjoern A. Zeeb wireless_set = WIRELESS_CCK | WIRELESS_OFDM |
12782774f206SBjoern A. Zeeb WIRELESS_HT;
12798aaefd05SBjoern A. Zeeb #if defined(__linux__)
12806cf748adSBjoern A. Zeeb } else if (sta->deflink.supp_rates[0] <= 0xf) {
12818aaefd05SBjoern A. Zeeb #elif defined(__FreeBSD__)
12828aaefd05SBjoern A. Zeeb } else if (sta->deflink.supp_rates[NL80211_BAND_2GHZ] <= 0xf) {
12838aaefd05SBjoern A. Zeeb #endif
12842774f206SBjoern A. Zeeb wireless_set = WIRELESS_CCK;
12852774f206SBjoern A. Zeeb } else {
12869c951734SBjoern A. Zeeb ra_mask &= RA_MASK_OFDM_RATES | RA_MASK_CCK_IN_BG;
12872774f206SBjoern A. Zeeb wireless_set = WIRELESS_CCK | WIRELESS_OFDM;
12882774f206SBjoern A. Zeeb }
12892774f206SBjoern A. Zeeb dm_info->rrsr_val_init = RRSR_INIT_2G;
12902774f206SBjoern A. Zeeb } else {
12912774f206SBjoern A. Zeeb rtw_err(rtwdev, "Unknown band type\n");
12929c951734SBjoern A. Zeeb ra_mask_bak = ra_mask;
12932774f206SBjoern A. Zeeb wireless_set = 0;
12942774f206SBjoern A. Zeeb }
12952774f206SBjoern A. Zeeb
12966cf748adSBjoern A. Zeeb switch (sta->deflink.bandwidth) {
12972774f206SBjoern A. Zeeb case IEEE80211_STA_RX_BW_80:
12982774f206SBjoern A. Zeeb bw_mode = RTW_CHANNEL_WIDTH_80;
12996cf748adSBjoern A. Zeeb is_support_sgi = sta->deflink.vht_cap.vht_supported &&
13006cf748adSBjoern A. Zeeb (sta->deflink.vht_cap.cap & IEEE80211_VHT_CAP_SHORT_GI_80);
13012774f206SBjoern A. Zeeb break;
13022774f206SBjoern A. Zeeb case IEEE80211_STA_RX_BW_40:
13032774f206SBjoern A. Zeeb bw_mode = RTW_CHANNEL_WIDTH_40;
13046cf748adSBjoern A. Zeeb is_support_sgi = sta->deflink.ht_cap.ht_supported &&
13056cf748adSBjoern A. Zeeb (sta->deflink.ht_cap.cap & IEEE80211_HT_CAP_SGI_40);
13062774f206SBjoern A. Zeeb break;
13072774f206SBjoern A. Zeeb default:
13082774f206SBjoern A. Zeeb bw_mode = RTW_CHANNEL_WIDTH_20;
13096cf748adSBjoern A. Zeeb is_support_sgi = sta->deflink.ht_cap.ht_supported &&
13106cf748adSBjoern A. Zeeb (sta->deflink.ht_cap.cap & IEEE80211_HT_CAP_SGI_20);
13112774f206SBjoern A. Zeeb break;
13122774f206SBjoern A. Zeeb }
13132774f206SBjoern A. Zeeb
13146cf748adSBjoern A. Zeeb if (sta->deflink.vht_cap.vht_supported && ra_mask & 0xffc00000) {
13152774f206SBjoern A. Zeeb tx_num = 2;
13162774f206SBjoern A. Zeeb rf_type = RF_2T2R;
13176cf748adSBjoern A. Zeeb } else if (sta->deflink.ht_cap.ht_supported && ra_mask & 0xfff00000) {
13182774f206SBjoern A. Zeeb tx_num = 2;
13192774f206SBjoern A. Zeeb rf_type = RF_2T2R;
13202774f206SBjoern A. Zeeb }
13212774f206SBjoern A. Zeeb
13222774f206SBjoern A. Zeeb rate_id = get_rate_id(wireless_set, bw_mode, tx_num);
13232774f206SBjoern A. Zeeb
13249c951734SBjoern A. Zeeb ra_mask &= rtw_rate_mask_rssi(si, wireless_set);
13259c951734SBjoern A. Zeeb ra_mask = rtw_rate_mask_recover(ra_mask, ra_mask_bak);
13269c951734SBjoern A. Zeeb ra_mask = rtw_rate_mask_cfg(rtwdev, si, ra_mask, is_vht_enable);
13272774f206SBjoern A. Zeeb
13282774f206SBjoern A. Zeeb si->bw_mode = bw_mode;
13292774f206SBjoern A. Zeeb si->stbc_en = stbc_en;
13302774f206SBjoern A. Zeeb si->ldpc_en = ldpc_en;
13312774f206SBjoern A. Zeeb si->rf_type = rf_type;
13322774f206SBjoern A. Zeeb si->sgi_enable = is_support_sgi;
13332774f206SBjoern A. Zeeb si->vht_enable = is_vht_enable;
13342774f206SBjoern A. Zeeb si->ra_mask = ra_mask;
13352774f206SBjoern A. Zeeb si->rate_id = rate_id;
13362774f206SBjoern A. Zeeb
13379c951734SBjoern A. Zeeb rtw_fw_send_ra_info(rtwdev, si, reset_ra_mask);
13382774f206SBjoern A. Zeeb }
13392774f206SBjoern A. Zeeb
rtw_wait_firmware_completion(struct rtw_dev * rtwdev)13402774f206SBjoern A. Zeeb static int rtw_wait_firmware_completion(struct rtw_dev *rtwdev)
13412774f206SBjoern A. Zeeb {
134290aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
13432774f206SBjoern A. Zeeb struct rtw_fw_state *fw;
13442774f206SBjoern A. Zeeb
13452774f206SBjoern A. Zeeb fw = &rtwdev->fw;
13462774f206SBjoern A. Zeeb wait_for_completion(&fw->completion);
13472774f206SBjoern A. Zeeb if (!fw->firmware)
13482774f206SBjoern A. Zeeb return -EINVAL;
13492774f206SBjoern A. Zeeb
13502774f206SBjoern A. Zeeb if (chip->wow_fw_name) {
13512774f206SBjoern A. Zeeb fw = &rtwdev->wow_fw;
13522774f206SBjoern A. Zeeb wait_for_completion(&fw->completion);
13532774f206SBjoern A. Zeeb if (!fw->firmware)
13542774f206SBjoern A. Zeeb return -EINVAL;
13552774f206SBjoern A. Zeeb }
13562774f206SBjoern A. Zeeb
13572774f206SBjoern A. Zeeb return 0;
13582774f206SBjoern A. Zeeb }
13592774f206SBjoern A. Zeeb
rtw_update_lps_deep_mode(struct rtw_dev * rtwdev,struct rtw_fw_state * fw)13602774f206SBjoern A. Zeeb static enum rtw_lps_deep_mode rtw_update_lps_deep_mode(struct rtw_dev *rtwdev,
13612774f206SBjoern A. Zeeb struct rtw_fw_state *fw)
13622774f206SBjoern A. Zeeb {
136390aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
13642774f206SBjoern A. Zeeb
13652774f206SBjoern A. Zeeb if (rtw_disable_lps_deep_mode || !chip->lps_deep_mode_supported ||
13662774f206SBjoern A. Zeeb !fw->feature)
13672774f206SBjoern A. Zeeb return LPS_DEEP_MODE_NONE;
13682774f206SBjoern A. Zeeb
13692774f206SBjoern A. Zeeb if ((chip->lps_deep_mode_supported & BIT(LPS_DEEP_MODE_PG)) &&
13702774f206SBjoern A. Zeeb rtw_fw_feature_check(fw, FW_FEATURE_PG))
13712774f206SBjoern A. Zeeb return LPS_DEEP_MODE_PG;
13722774f206SBjoern A. Zeeb
13732774f206SBjoern A. Zeeb if ((chip->lps_deep_mode_supported & BIT(LPS_DEEP_MODE_LCLK)) &&
13742774f206SBjoern A. Zeeb rtw_fw_feature_check(fw, FW_FEATURE_LCLK))
13752774f206SBjoern A. Zeeb return LPS_DEEP_MODE_LCLK;
13762774f206SBjoern A. Zeeb
13772774f206SBjoern A. Zeeb return LPS_DEEP_MODE_NONE;
13782774f206SBjoern A. Zeeb }
13792774f206SBjoern A. Zeeb
rtw_power_on(struct rtw_dev * rtwdev)13802774f206SBjoern A. Zeeb static int rtw_power_on(struct rtw_dev *rtwdev)
13812774f206SBjoern A. Zeeb {
138290aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
13832774f206SBjoern A. Zeeb struct rtw_fw_state *fw = &rtwdev->fw;
13842774f206SBjoern A. Zeeb bool wifi_only;
13852774f206SBjoern A. Zeeb int ret;
13862774f206SBjoern A. Zeeb
13872774f206SBjoern A. Zeeb ret = rtw_hci_setup(rtwdev);
13882774f206SBjoern A. Zeeb if (ret) {
13892774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to setup hci\n");
13902774f206SBjoern A. Zeeb goto err;
13912774f206SBjoern A. Zeeb }
13922774f206SBjoern A. Zeeb
13932774f206SBjoern A. Zeeb /* power on MAC before firmware downloaded */
13942774f206SBjoern A. Zeeb ret = rtw_mac_power_on(rtwdev);
13952774f206SBjoern A. Zeeb if (ret) {
13962774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to power on mac\n");
13972774f206SBjoern A. Zeeb goto err;
13982774f206SBjoern A. Zeeb }
13992774f206SBjoern A. Zeeb
14002774f206SBjoern A. Zeeb ret = rtw_wait_firmware_completion(rtwdev);
14012774f206SBjoern A. Zeeb if (ret) {
14022774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to wait firmware completion\n");
14032774f206SBjoern A. Zeeb goto err_off;
14042774f206SBjoern A. Zeeb }
14052774f206SBjoern A. Zeeb
14062774f206SBjoern A. Zeeb ret = rtw_download_firmware(rtwdev, fw);
14072774f206SBjoern A. Zeeb if (ret) {
14082774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to download firmware\n");
14092774f206SBjoern A. Zeeb goto err_off;
14102774f206SBjoern A. Zeeb }
14112774f206SBjoern A. Zeeb
14122774f206SBjoern A. Zeeb /* config mac after firmware downloaded */
14132774f206SBjoern A. Zeeb ret = rtw_mac_init(rtwdev);
14142774f206SBjoern A. Zeeb if (ret) {
14152774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to configure mac\n");
14162774f206SBjoern A. Zeeb goto err_off;
14172774f206SBjoern A. Zeeb }
14182774f206SBjoern A. Zeeb
14192774f206SBjoern A. Zeeb chip->ops->phy_set_param(rtwdev);
14202774f206SBjoern A. Zeeb
14212774f206SBjoern A. Zeeb ret = rtw_hci_start(rtwdev);
14222774f206SBjoern A. Zeeb if (ret) {
14232774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to start hci\n");
14242774f206SBjoern A. Zeeb goto err_off;
14252774f206SBjoern A. Zeeb }
14262774f206SBjoern A. Zeeb
14272774f206SBjoern A. Zeeb /* send H2C after HCI has started */
14282774f206SBjoern A. Zeeb rtw_fw_send_general_info(rtwdev);
14292774f206SBjoern A. Zeeb rtw_fw_send_phydm_info(rtwdev);
14302774f206SBjoern A. Zeeb
14312774f206SBjoern A. Zeeb wifi_only = !rtwdev->efuse.btcoex;
14322774f206SBjoern A. Zeeb rtw_coex_power_on_setting(rtwdev);
14332774f206SBjoern A. Zeeb rtw_coex_init_hw_config(rtwdev, wifi_only);
14342774f206SBjoern A. Zeeb
14352774f206SBjoern A. Zeeb return 0;
14362774f206SBjoern A. Zeeb
14372774f206SBjoern A. Zeeb err_off:
14382774f206SBjoern A. Zeeb rtw_mac_power_off(rtwdev);
14392774f206SBjoern A. Zeeb
14402774f206SBjoern A. Zeeb err:
14412774f206SBjoern A. Zeeb return ret;
14422774f206SBjoern A. Zeeb }
14432774f206SBjoern A. Zeeb
rtw_core_fw_scan_notify(struct rtw_dev * rtwdev,bool start)14442774f206SBjoern A. Zeeb void rtw_core_fw_scan_notify(struct rtw_dev *rtwdev, bool start)
14452774f206SBjoern A. Zeeb {
14462774f206SBjoern A. Zeeb if (!rtw_fw_feature_check(&rtwdev->fw, FW_FEATURE_NOTIFY_SCAN))
14472774f206SBjoern A. Zeeb return;
14482774f206SBjoern A. Zeeb
14492774f206SBjoern A. Zeeb if (start) {
14502774f206SBjoern A. Zeeb rtw_fw_scan_notify(rtwdev, true);
14512774f206SBjoern A. Zeeb } else {
14522774f206SBjoern A. Zeeb reinit_completion(&rtwdev->fw_scan_density);
14532774f206SBjoern A. Zeeb rtw_fw_scan_notify(rtwdev, false);
14542774f206SBjoern A. Zeeb if (!wait_for_completion_timeout(&rtwdev->fw_scan_density,
14552774f206SBjoern A. Zeeb SCAN_NOTIFY_TIMEOUT))
14562774f206SBjoern A. Zeeb rtw_warn(rtwdev, "firmware failed to report density after scan\n");
14572774f206SBjoern A. Zeeb }
14582774f206SBjoern A. Zeeb }
14592774f206SBjoern A. Zeeb
rtw_core_scan_start(struct rtw_dev * rtwdev,struct rtw_vif * rtwvif,const u8 * mac_addr,bool hw_scan)14602774f206SBjoern A. Zeeb void rtw_core_scan_start(struct rtw_dev *rtwdev, struct rtw_vif *rtwvif,
14612774f206SBjoern A. Zeeb const u8 *mac_addr, bool hw_scan)
14622774f206SBjoern A. Zeeb {
14632774f206SBjoern A. Zeeb u32 config = 0;
14642774f206SBjoern A. Zeeb int ret = 0;
14652774f206SBjoern A. Zeeb
14662774f206SBjoern A. Zeeb rtw_leave_lps(rtwdev);
14672774f206SBjoern A. Zeeb
14689c951734SBjoern A. Zeeb if (hw_scan && (rtwdev->hw->conf.flags & IEEE80211_CONF_IDLE)) {
14692774f206SBjoern A. Zeeb ret = rtw_leave_ips(rtwdev);
14702774f206SBjoern A. Zeeb if (ret) {
14712774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to leave idle state\n");
14722774f206SBjoern A. Zeeb return;
14732774f206SBjoern A. Zeeb }
14742774f206SBjoern A. Zeeb }
14752774f206SBjoern A. Zeeb
14762774f206SBjoern A. Zeeb ether_addr_copy(rtwvif->mac_addr, mac_addr);
14772774f206SBjoern A. Zeeb config |= PORT_SET_MAC_ADDR;
14782774f206SBjoern A. Zeeb rtw_vif_port_config(rtwdev, rtwvif, config);
14792774f206SBjoern A. Zeeb
14802774f206SBjoern A. Zeeb rtw_coex_scan_notify(rtwdev, COEX_SCAN_START);
14812774f206SBjoern A. Zeeb rtw_core_fw_scan_notify(rtwdev, true);
14822774f206SBjoern A. Zeeb
14832774f206SBjoern A. Zeeb set_bit(RTW_FLAG_DIG_DISABLE, rtwdev->flags);
14842774f206SBjoern A. Zeeb set_bit(RTW_FLAG_SCANNING, rtwdev->flags);
14852774f206SBjoern A. Zeeb }
14862774f206SBjoern A. Zeeb
rtw_core_scan_complete(struct rtw_dev * rtwdev,struct ieee80211_vif * vif,bool hw_scan)14879c951734SBjoern A. Zeeb void rtw_core_scan_complete(struct rtw_dev *rtwdev, struct ieee80211_vif *vif,
14889c951734SBjoern A. Zeeb bool hw_scan)
14892774f206SBjoern A. Zeeb {
14909c951734SBjoern A. Zeeb struct rtw_vif *rtwvif = vif ? (struct rtw_vif *)vif->drv_priv : NULL;
14912774f206SBjoern A. Zeeb u32 config = 0;
14922774f206SBjoern A. Zeeb
14939c951734SBjoern A. Zeeb if (!rtwvif)
14949c951734SBjoern A. Zeeb return;
14959c951734SBjoern A. Zeeb
14962774f206SBjoern A. Zeeb clear_bit(RTW_FLAG_SCANNING, rtwdev->flags);
14972774f206SBjoern A. Zeeb clear_bit(RTW_FLAG_DIG_DISABLE, rtwdev->flags);
14982774f206SBjoern A. Zeeb
14992774f206SBjoern A. Zeeb rtw_core_fw_scan_notify(rtwdev, false);
15002774f206SBjoern A. Zeeb
15012774f206SBjoern A. Zeeb ether_addr_copy(rtwvif->mac_addr, vif->addr);
15022774f206SBjoern A. Zeeb config |= PORT_SET_MAC_ADDR;
15032774f206SBjoern A. Zeeb rtw_vif_port_config(rtwdev, rtwvif, config);
15042774f206SBjoern A. Zeeb
15052774f206SBjoern A. Zeeb rtw_coex_scan_notify(rtwdev, COEX_SCAN_FINISH);
15069c951734SBjoern A. Zeeb
15079c951734SBjoern A. Zeeb if (hw_scan && (rtwdev->hw->conf.flags & IEEE80211_CONF_IDLE))
15089c951734SBjoern A. Zeeb ieee80211_queue_work(rtwdev->hw, &rtwdev->ips_work);
15092774f206SBjoern A. Zeeb }
15102774f206SBjoern A. Zeeb
rtw_core_start(struct rtw_dev * rtwdev)15112774f206SBjoern A. Zeeb int rtw_core_start(struct rtw_dev *rtwdev)
15122774f206SBjoern A. Zeeb {
15132774f206SBjoern A. Zeeb int ret;
15142774f206SBjoern A. Zeeb
15152774f206SBjoern A. Zeeb ret = rtw_power_on(rtwdev);
15162774f206SBjoern A. Zeeb if (ret)
15172774f206SBjoern A. Zeeb return ret;
15182774f206SBjoern A. Zeeb
15192774f206SBjoern A. Zeeb rtw_sec_enable_sec_engine(rtwdev);
15202774f206SBjoern A. Zeeb
15212774f206SBjoern A. Zeeb rtwdev->lps_conf.deep_mode = rtw_update_lps_deep_mode(rtwdev, &rtwdev->fw);
15222774f206SBjoern A. Zeeb rtwdev->lps_conf.wow_deep_mode = rtw_update_lps_deep_mode(rtwdev, &rtwdev->wow_fw);
15232774f206SBjoern A. Zeeb
15242774f206SBjoern A. Zeeb /* rcr reset after powered on */
15252774f206SBjoern A. Zeeb rtw_write32(rtwdev, REG_RCR, rtwdev->hal.rcr);
15262774f206SBjoern A. Zeeb
15272774f206SBjoern A. Zeeb ieee80211_queue_delayed_work(rtwdev->hw, &rtwdev->watch_dog_work,
15282774f206SBjoern A. Zeeb RTW_WATCH_DOG_DELAY_TIME);
15292774f206SBjoern A. Zeeb
15302774f206SBjoern A. Zeeb set_bit(RTW_FLAG_RUNNING, rtwdev->flags);
15312774f206SBjoern A. Zeeb
15322774f206SBjoern A. Zeeb return 0;
15332774f206SBjoern A. Zeeb }
15342774f206SBjoern A. Zeeb
rtw_power_off(struct rtw_dev * rtwdev)15352774f206SBjoern A. Zeeb static void rtw_power_off(struct rtw_dev *rtwdev)
15362774f206SBjoern A. Zeeb {
15372774f206SBjoern A. Zeeb rtw_hci_stop(rtwdev);
15382774f206SBjoern A. Zeeb rtw_coex_power_off_setting(rtwdev);
15392774f206SBjoern A. Zeeb rtw_mac_power_off(rtwdev);
15402774f206SBjoern A. Zeeb }
15412774f206SBjoern A. Zeeb
rtw_core_stop(struct rtw_dev * rtwdev)15422774f206SBjoern A. Zeeb void rtw_core_stop(struct rtw_dev *rtwdev)
15432774f206SBjoern A. Zeeb {
15442774f206SBjoern A. Zeeb struct rtw_coex *coex = &rtwdev->coex;
15452774f206SBjoern A. Zeeb
15462774f206SBjoern A. Zeeb clear_bit(RTW_FLAG_RUNNING, rtwdev->flags);
15472774f206SBjoern A. Zeeb clear_bit(RTW_FLAG_FW_RUNNING, rtwdev->flags);
15482774f206SBjoern A. Zeeb
15492774f206SBjoern A. Zeeb mutex_unlock(&rtwdev->mutex);
15502774f206SBjoern A. Zeeb
15512774f206SBjoern A. Zeeb cancel_work_sync(&rtwdev->c2h_work);
15529c951734SBjoern A. Zeeb cancel_work_sync(&rtwdev->update_beacon_work);
15532774f206SBjoern A. Zeeb cancel_delayed_work_sync(&rtwdev->watch_dog_work);
15542774f206SBjoern A. Zeeb cancel_delayed_work_sync(&coex->bt_relink_work);
15552774f206SBjoern A. Zeeb cancel_delayed_work_sync(&coex->bt_reenable_work);
15562774f206SBjoern A. Zeeb cancel_delayed_work_sync(&coex->defreeze_work);
15572774f206SBjoern A. Zeeb cancel_delayed_work_sync(&coex->wl_remain_work);
15582774f206SBjoern A. Zeeb cancel_delayed_work_sync(&coex->bt_remain_work);
15592774f206SBjoern A. Zeeb cancel_delayed_work_sync(&coex->wl_connecting_work);
15602774f206SBjoern A. Zeeb cancel_delayed_work_sync(&coex->bt_multi_link_remain_work);
15612774f206SBjoern A. Zeeb cancel_delayed_work_sync(&coex->wl_ccklock_work);
15622774f206SBjoern A. Zeeb
15632774f206SBjoern A. Zeeb mutex_lock(&rtwdev->mutex);
15642774f206SBjoern A. Zeeb
15652774f206SBjoern A. Zeeb rtw_power_off(rtwdev);
15662774f206SBjoern A. Zeeb }
15672774f206SBjoern A. Zeeb
rtw_init_ht_cap(struct rtw_dev * rtwdev,struct ieee80211_sta_ht_cap * ht_cap)15682774f206SBjoern A. Zeeb static void rtw_init_ht_cap(struct rtw_dev *rtwdev,
15692774f206SBjoern A. Zeeb struct ieee80211_sta_ht_cap *ht_cap)
15702774f206SBjoern A. Zeeb {
157190aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
15722774f206SBjoern A. Zeeb struct rtw_efuse *efuse = &rtwdev->efuse;
15732774f206SBjoern A. Zeeb
15742774f206SBjoern A. Zeeb ht_cap->ht_supported = true;
15752774f206SBjoern A. Zeeb ht_cap->cap = 0;
15762774f206SBjoern A. Zeeb ht_cap->cap |= IEEE80211_HT_CAP_SGI_20 |
15772774f206SBjoern A. Zeeb IEEE80211_HT_CAP_MAX_AMSDU |
15782774f206SBjoern A. Zeeb (1 << IEEE80211_HT_CAP_RX_STBC_SHIFT);
15792774f206SBjoern A. Zeeb
15802774f206SBjoern A. Zeeb if (rtw_chip_has_rx_ldpc(rtwdev))
15812774f206SBjoern A. Zeeb ht_cap->cap |= IEEE80211_HT_CAP_LDPC_CODING;
15822774f206SBjoern A. Zeeb if (rtw_chip_has_tx_stbc(rtwdev))
15832774f206SBjoern A. Zeeb ht_cap->cap |= IEEE80211_HT_CAP_TX_STBC;
15842774f206SBjoern A. Zeeb
15852774f206SBjoern A. Zeeb if (efuse->hw_cap.bw & BIT(RTW_CHANNEL_WIDTH_40))
15862774f206SBjoern A. Zeeb ht_cap->cap |= IEEE80211_HT_CAP_SUP_WIDTH_20_40 |
15872774f206SBjoern A. Zeeb IEEE80211_HT_CAP_DSSSCCK40 |
15882774f206SBjoern A. Zeeb IEEE80211_HT_CAP_SGI_40;
15892774f206SBjoern A. Zeeb ht_cap->ampdu_factor = IEEE80211_HT_MAX_AMPDU_64K;
15909c951734SBjoern A. Zeeb ht_cap->ampdu_density = chip->ampdu_density;
15912774f206SBjoern A. Zeeb ht_cap->mcs.tx_params = IEEE80211_HT_MCS_TX_DEFINED;
15922774f206SBjoern A. Zeeb if (efuse->hw_cap.nss > 1) {
15932774f206SBjoern A. Zeeb ht_cap->mcs.rx_mask[0] = 0xFF;
15942774f206SBjoern A. Zeeb ht_cap->mcs.rx_mask[1] = 0xFF;
15952774f206SBjoern A. Zeeb ht_cap->mcs.rx_mask[4] = 0x01;
15962774f206SBjoern A. Zeeb ht_cap->mcs.rx_highest = cpu_to_le16(300);
15972774f206SBjoern A. Zeeb } else {
15982774f206SBjoern A. Zeeb ht_cap->mcs.rx_mask[0] = 0xFF;
15992774f206SBjoern A. Zeeb ht_cap->mcs.rx_mask[1] = 0x00;
16002774f206SBjoern A. Zeeb ht_cap->mcs.rx_mask[4] = 0x01;
16012774f206SBjoern A. Zeeb ht_cap->mcs.rx_highest = cpu_to_le16(150);
16022774f206SBjoern A. Zeeb }
16032774f206SBjoern A. Zeeb }
16042774f206SBjoern A. Zeeb
rtw_init_vht_cap(struct rtw_dev * rtwdev,struct ieee80211_sta_vht_cap * vht_cap)16052774f206SBjoern A. Zeeb static void rtw_init_vht_cap(struct rtw_dev *rtwdev,
16062774f206SBjoern A. Zeeb struct ieee80211_sta_vht_cap *vht_cap)
16072774f206SBjoern A. Zeeb {
16082774f206SBjoern A. Zeeb struct rtw_efuse *efuse = &rtwdev->efuse;
16092774f206SBjoern A. Zeeb u16 mcs_map;
16102774f206SBjoern A. Zeeb __le16 highest;
16112774f206SBjoern A. Zeeb
16122774f206SBjoern A. Zeeb if (efuse->hw_cap.ptcl != EFUSE_HW_CAP_IGNORE &&
16132774f206SBjoern A. Zeeb efuse->hw_cap.ptcl != EFUSE_HW_CAP_PTCL_VHT)
16142774f206SBjoern A. Zeeb return;
16152774f206SBjoern A. Zeeb
16162774f206SBjoern A. Zeeb vht_cap->vht_supported = true;
16172774f206SBjoern A. Zeeb vht_cap->cap = IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_11454 |
16182774f206SBjoern A. Zeeb IEEE80211_VHT_CAP_SHORT_GI_80 |
16192774f206SBjoern A. Zeeb IEEE80211_VHT_CAP_RXSTBC_1 |
16202774f206SBjoern A. Zeeb IEEE80211_VHT_CAP_HTC_VHT |
16212774f206SBjoern A. Zeeb IEEE80211_VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_MASK |
16222774f206SBjoern A. Zeeb 0;
16232774f206SBjoern A. Zeeb if (rtwdev->hal.rf_path_num > 1)
16242774f206SBjoern A. Zeeb vht_cap->cap |= IEEE80211_VHT_CAP_TXSTBC;
16252774f206SBjoern A. Zeeb vht_cap->cap |= IEEE80211_VHT_CAP_MU_BEAMFORMEE_CAPABLE |
16262774f206SBjoern A. Zeeb IEEE80211_VHT_CAP_SU_BEAMFORMEE_CAPABLE;
16272774f206SBjoern A. Zeeb vht_cap->cap |= (rtwdev->hal.bfee_sts_cap <<
16282774f206SBjoern A. Zeeb IEEE80211_VHT_CAP_BEAMFORMEE_STS_SHIFT);
16292774f206SBjoern A. Zeeb
16302774f206SBjoern A. Zeeb if (rtw_chip_has_rx_ldpc(rtwdev))
16312774f206SBjoern A. Zeeb vht_cap->cap |= IEEE80211_VHT_CAP_RXLDPC;
16322774f206SBjoern A. Zeeb
16332774f206SBjoern A. Zeeb mcs_map = IEEE80211_VHT_MCS_SUPPORT_0_9 << 0 |
16342774f206SBjoern A. Zeeb IEEE80211_VHT_MCS_NOT_SUPPORTED << 4 |
16352774f206SBjoern A. Zeeb IEEE80211_VHT_MCS_NOT_SUPPORTED << 6 |
16362774f206SBjoern A. Zeeb IEEE80211_VHT_MCS_NOT_SUPPORTED << 8 |
16372774f206SBjoern A. Zeeb IEEE80211_VHT_MCS_NOT_SUPPORTED << 10 |
16382774f206SBjoern A. Zeeb IEEE80211_VHT_MCS_NOT_SUPPORTED << 12 |
16392774f206SBjoern A. Zeeb IEEE80211_VHT_MCS_NOT_SUPPORTED << 14;
16402774f206SBjoern A. Zeeb if (efuse->hw_cap.nss > 1) {
16412774f206SBjoern A. Zeeb highest = cpu_to_le16(780);
16422774f206SBjoern A. Zeeb mcs_map |= IEEE80211_VHT_MCS_SUPPORT_0_9 << 2;
16432774f206SBjoern A. Zeeb } else {
16442774f206SBjoern A. Zeeb highest = cpu_to_le16(390);
16452774f206SBjoern A. Zeeb mcs_map |= IEEE80211_VHT_MCS_NOT_SUPPORTED << 2;
16462774f206SBjoern A. Zeeb }
16472774f206SBjoern A. Zeeb
16482774f206SBjoern A. Zeeb vht_cap->vht_mcs.rx_mcs_map = cpu_to_le16(mcs_map);
16492774f206SBjoern A. Zeeb vht_cap->vht_mcs.tx_mcs_map = cpu_to_le16(mcs_map);
16502774f206SBjoern A. Zeeb vht_cap->vht_mcs.rx_highest = highest;
16512774f206SBjoern A. Zeeb vht_cap->vht_mcs.tx_highest = highest;
16522774f206SBjoern A. Zeeb }
16532774f206SBjoern A. Zeeb
rtw_get_max_scan_ie_len(struct rtw_dev * rtwdev)165490aac0d8SBjoern A. Zeeb static u16 rtw_get_max_scan_ie_len(struct rtw_dev *rtwdev)
165590aac0d8SBjoern A. Zeeb {
165690aac0d8SBjoern A. Zeeb u16 len;
165790aac0d8SBjoern A. Zeeb
165890aac0d8SBjoern A. Zeeb len = rtwdev->chip->max_scan_ie_len;
165990aac0d8SBjoern A. Zeeb
166090aac0d8SBjoern A. Zeeb if (!rtw_fw_feature_check(&rtwdev->fw, FW_FEATURE_SCAN_OFFLOAD) &&
166190aac0d8SBjoern A. Zeeb rtwdev->chip->id == RTW_CHIP_TYPE_8822C)
166290aac0d8SBjoern A. Zeeb len = IEEE80211_MAX_DATA_LEN;
166390aac0d8SBjoern A. Zeeb else if (rtw_fw_feature_ext_check(&rtwdev->fw, FW_FEATURE_EXT_OLD_PAGE_NUM))
166490aac0d8SBjoern A. Zeeb len -= RTW_OLD_PROBE_PG_CNT * TX_PAGE_SIZE;
166590aac0d8SBjoern A. Zeeb
166690aac0d8SBjoern A. Zeeb return len;
166790aac0d8SBjoern A. Zeeb }
166890aac0d8SBjoern A. Zeeb
rtw_set_supported_band(struct ieee80211_hw * hw,const struct rtw_chip_info * chip)16692774f206SBjoern A. Zeeb static void rtw_set_supported_band(struct ieee80211_hw *hw,
167090aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip)
16712774f206SBjoern A. Zeeb {
16722774f206SBjoern A. Zeeb struct rtw_dev *rtwdev = hw->priv;
16732774f206SBjoern A. Zeeb struct ieee80211_supported_band *sband;
16742774f206SBjoern A. Zeeb
16752774f206SBjoern A. Zeeb if (chip->band & RTW_BAND_2G) {
16762774f206SBjoern A. Zeeb sband = kmemdup(&rtw_band_2ghz, sizeof(*sband), GFP_KERNEL);
16772774f206SBjoern A. Zeeb if (!sband)
16782774f206SBjoern A. Zeeb goto err_out;
1679*7a5b55e3SBjoern A. Zeeb #if defined(__linux__)
16802774f206SBjoern A. Zeeb if (chip->ht_supported)
1681*7a5b55e3SBjoern A. Zeeb #elif defined(__FreeBSD__)
1682*7a5b55e3SBjoern A. Zeeb if (rtw_ht_support && chip->ht_supported)
1683*7a5b55e3SBjoern A. Zeeb #endif
16842774f206SBjoern A. Zeeb rtw_init_ht_cap(rtwdev, &sband->ht_cap);
16852774f206SBjoern A. Zeeb hw->wiphy->bands[NL80211_BAND_2GHZ] = sband;
16862774f206SBjoern A. Zeeb }
16872774f206SBjoern A. Zeeb
16882774f206SBjoern A. Zeeb if (chip->band & RTW_BAND_5G) {
16892774f206SBjoern A. Zeeb sband = kmemdup(&rtw_band_5ghz, sizeof(*sband), GFP_KERNEL);
16902774f206SBjoern A. Zeeb if (!sband)
16912774f206SBjoern A. Zeeb goto err_out;
1692*7a5b55e3SBjoern A. Zeeb #if defined(__linux__)
16932774f206SBjoern A. Zeeb if (chip->ht_supported)
1694*7a5b55e3SBjoern A. Zeeb #elif defined(__FreeBSD__)
1695*7a5b55e3SBjoern A. Zeeb if (rtw_ht_support && chip->ht_supported)
1696*7a5b55e3SBjoern A. Zeeb #endif
16972774f206SBjoern A. Zeeb rtw_init_ht_cap(rtwdev, &sband->ht_cap);
1698*7a5b55e3SBjoern A. Zeeb #if defined(__linux__)
16992774f206SBjoern A. Zeeb if (chip->vht_supported)
1700*7a5b55e3SBjoern A. Zeeb #elif defined(__FreeBSD__)
1701*7a5b55e3SBjoern A. Zeeb if (rtw_vht_support && chip->vht_supported)
1702*7a5b55e3SBjoern A. Zeeb #endif
17032774f206SBjoern A. Zeeb rtw_init_vht_cap(rtwdev, &sband->vht_cap);
17042774f206SBjoern A. Zeeb hw->wiphy->bands[NL80211_BAND_5GHZ] = sband;
17052774f206SBjoern A. Zeeb }
17062774f206SBjoern A. Zeeb
17072774f206SBjoern A. Zeeb return;
17082774f206SBjoern A. Zeeb
17092774f206SBjoern A. Zeeb err_out:
17102774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to set supported band\n");
17112774f206SBjoern A. Zeeb }
17122774f206SBjoern A. Zeeb
rtw_unset_supported_band(struct ieee80211_hw * hw,const struct rtw_chip_info * chip)17132774f206SBjoern A. Zeeb static void rtw_unset_supported_band(struct ieee80211_hw *hw,
171490aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip)
17152774f206SBjoern A. Zeeb {
17162774f206SBjoern A. Zeeb kfree(hw->wiphy->bands[NL80211_BAND_2GHZ]);
17172774f206SBjoern A. Zeeb kfree(hw->wiphy->bands[NL80211_BAND_5GHZ]);
17182774f206SBjoern A. Zeeb }
17192774f206SBjoern A. Zeeb
rtw_vif_smps_iter(void * data,u8 * mac,struct ieee80211_vif * vif)17209c951734SBjoern A. Zeeb static void rtw_vif_smps_iter(void *data, u8 *mac,
17219c951734SBjoern A. Zeeb struct ieee80211_vif *vif)
17229c951734SBjoern A. Zeeb {
17239c951734SBjoern A. Zeeb struct rtw_dev *rtwdev = (struct rtw_dev *)data;
17249c951734SBjoern A. Zeeb
172590aac0d8SBjoern A. Zeeb if (vif->type != NL80211_IFTYPE_STATION || !vif->cfg.assoc)
17269c951734SBjoern A. Zeeb return;
17279c951734SBjoern A. Zeeb
17289c951734SBjoern A. Zeeb if (rtwdev->hal.txrx_1ss)
172990aac0d8SBjoern A. Zeeb ieee80211_request_smps(vif, 0, IEEE80211_SMPS_STATIC);
17309c951734SBjoern A. Zeeb else
173190aac0d8SBjoern A. Zeeb ieee80211_request_smps(vif, 0, IEEE80211_SMPS_OFF);
17329c951734SBjoern A. Zeeb }
17339c951734SBjoern A. Zeeb
rtw_set_txrx_1ss(struct rtw_dev * rtwdev,bool txrx_1ss)17349c951734SBjoern A. Zeeb void rtw_set_txrx_1ss(struct rtw_dev *rtwdev, bool txrx_1ss)
17359c951734SBjoern A. Zeeb {
173690aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
17379c951734SBjoern A. Zeeb struct rtw_hal *hal = &rtwdev->hal;
17389c951734SBjoern A. Zeeb
17399c951734SBjoern A. Zeeb if (!chip->ops->config_txrx_mode || rtwdev->hal.txrx_1ss == txrx_1ss)
17409c951734SBjoern A. Zeeb return;
17419c951734SBjoern A. Zeeb
17429c951734SBjoern A. Zeeb rtwdev->hal.txrx_1ss = txrx_1ss;
17439c951734SBjoern A. Zeeb if (txrx_1ss)
17449c951734SBjoern A. Zeeb chip->ops->config_txrx_mode(rtwdev, BB_PATH_A, BB_PATH_A, false);
17459c951734SBjoern A. Zeeb else
17469c951734SBjoern A. Zeeb chip->ops->config_txrx_mode(rtwdev, hal->antenna_tx,
17479c951734SBjoern A. Zeeb hal->antenna_rx, false);
17489c951734SBjoern A. Zeeb rtw_iterate_vifs_atomic(rtwdev, rtw_vif_smps_iter, rtwdev);
17499c951734SBjoern A. Zeeb }
17509c951734SBjoern A. Zeeb
__update_firmware_feature(struct rtw_dev * rtwdev,struct rtw_fw_state * fw)17512774f206SBjoern A. Zeeb static void __update_firmware_feature(struct rtw_dev *rtwdev,
17522774f206SBjoern A. Zeeb struct rtw_fw_state *fw)
17532774f206SBjoern A. Zeeb {
17542774f206SBjoern A. Zeeb u32 feature;
17552774f206SBjoern A. Zeeb const struct rtw_fw_hdr *fw_hdr =
17562774f206SBjoern A. Zeeb (const struct rtw_fw_hdr *)fw->firmware->data;
17572774f206SBjoern A. Zeeb
17582774f206SBjoern A. Zeeb feature = le32_to_cpu(fw_hdr->feature);
17592774f206SBjoern A. Zeeb fw->feature = feature & FW_FEATURE_SIG ? feature : 0;
176090aac0d8SBjoern A. Zeeb
176190aac0d8SBjoern A. Zeeb if (rtwdev->chip->id == RTW_CHIP_TYPE_8822C &&
176290aac0d8SBjoern A. Zeeb RTW_FW_SUIT_VER_CODE(rtwdev->fw) < RTW_FW_VER_CODE(9, 9, 13))
176390aac0d8SBjoern A. Zeeb fw->feature_ext |= FW_FEATURE_EXT_OLD_PAGE_NUM;
17642774f206SBjoern A. Zeeb }
17652774f206SBjoern A. Zeeb
__update_firmware_info(struct rtw_dev * rtwdev,struct rtw_fw_state * fw)17662774f206SBjoern A. Zeeb static void __update_firmware_info(struct rtw_dev *rtwdev,
17672774f206SBjoern A. Zeeb struct rtw_fw_state *fw)
17682774f206SBjoern A. Zeeb {
17692774f206SBjoern A. Zeeb const struct rtw_fw_hdr *fw_hdr =
17702774f206SBjoern A. Zeeb (const struct rtw_fw_hdr *)fw->firmware->data;
17712774f206SBjoern A. Zeeb
17722774f206SBjoern A. Zeeb fw->h2c_version = le16_to_cpu(fw_hdr->h2c_fmt_ver);
17732774f206SBjoern A. Zeeb fw->version = le16_to_cpu(fw_hdr->version);
17742774f206SBjoern A. Zeeb fw->sub_version = fw_hdr->subversion;
17752774f206SBjoern A. Zeeb fw->sub_index = fw_hdr->subindex;
17762774f206SBjoern A. Zeeb
17772774f206SBjoern A. Zeeb __update_firmware_feature(rtwdev, fw);
17782774f206SBjoern A. Zeeb }
17792774f206SBjoern A. Zeeb
__update_firmware_info_legacy(struct rtw_dev * rtwdev,struct rtw_fw_state * fw)17802774f206SBjoern A. Zeeb static void __update_firmware_info_legacy(struct rtw_dev *rtwdev,
17812774f206SBjoern A. Zeeb struct rtw_fw_state *fw)
17822774f206SBjoern A. Zeeb {
17832774f206SBjoern A. Zeeb struct rtw_fw_hdr_legacy *legacy =
17842774f206SBjoern A. Zeeb #if defined(__linux__)
17852774f206SBjoern A. Zeeb (struct rtw_fw_hdr_legacy *)fw->firmware->data;
17862774f206SBjoern A. Zeeb #elif defined(__FreeBSD__)
17872774f206SBjoern A. Zeeb __DECONST(struct rtw_fw_hdr_legacy *, fw->firmware->data);
17882774f206SBjoern A. Zeeb #endif
17892774f206SBjoern A. Zeeb
17902774f206SBjoern A. Zeeb fw->h2c_version = 0;
17912774f206SBjoern A. Zeeb fw->version = le16_to_cpu(legacy->version);
17922774f206SBjoern A. Zeeb fw->sub_version = legacy->subversion1;
17932774f206SBjoern A. Zeeb fw->sub_index = legacy->subversion2;
17942774f206SBjoern A. Zeeb }
17952774f206SBjoern A. Zeeb
update_firmware_info(struct rtw_dev * rtwdev,struct rtw_fw_state * fw)17962774f206SBjoern A. Zeeb static void update_firmware_info(struct rtw_dev *rtwdev,
17972774f206SBjoern A. Zeeb struct rtw_fw_state *fw)
17982774f206SBjoern A. Zeeb {
17992774f206SBjoern A. Zeeb if (rtw_chip_wcpu_11n(rtwdev))
18002774f206SBjoern A. Zeeb __update_firmware_info_legacy(rtwdev, fw);
18012774f206SBjoern A. Zeeb else
18022774f206SBjoern A. Zeeb __update_firmware_info(rtwdev, fw);
18032774f206SBjoern A. Zeeb }
18042774f206SBjoern A. Zeeb
rtw_load_firmware_cb(const struct firmware * firmware,void * context)18052774f206SBjoern A. Zeeb static void rtw_load_firmware_cb(const struct firmware *firmware, void *context)
18062774f206SBjoern A. Zeeb {
18072774f206SBjoern A. Zeeb struct rtw_fw_state *fw = context;
18082774f206SBjoern A. Zeeb struct rtw_dev *rtwdev = fw->rtwdev;
18092774f206SBjoern A. Zeeb
18102774f206SBjoern A. Zeeb if (!firmware || !firmware->data) {
18112774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to request firmware\n");
18122774f206SBjoern A. Zeeb complete_all(&fw->completion);
18132774f206SBjoern A. Zeeb return;
18142774f206SBjoern A. Zeeb }
18152774f206SBjoern A. Zeeb
18162774f206SBjoern A. Zeeb fw->firmware = firmware;
18172774f206SBjoern A. Zeeb update_firmware_info(rtwdev, fw);
18182774f206SBjoern A. Zeeb complete_all(&fw->completion);
18192774f206SBjoern A. Zeeb
182090aac0d8SBjoern A. Zeeb rtw_info(rtwdev, "%sFirmware version %u.%u.%u, H2C version %u\n",
182190aac0d8SBjoern A. Zeeb fw->type == RTW_WOWLAN_FW ? "WOW " : "",
18222774f206SBjoern A. Zeeb fw->version, fw->sub_version, fw->sub_index, fw->h2c_version);
18232774f206SBjoern A. Zeeb }
18242774f206SBjoern A. Zeeb
rtw_load_firmware(struct rtw_dev * rtwdev,enum rtw_fw_type type)18252774f206SBjoern A. Zeeb static int rtw_load_firmware(struct rtw_dev *rtwdev, enum rtw_fw_type type)
18262774f206SBjoern A. Zeeb {
18272774f206SBjoern A. Zeeb const char *fw_name;
18282774f206SBjoern A. Zeeb struct rtw_fw_state *fw;
18292774f206SBjoern A. Zeeb int ret;
18302774f206SBjoern A. Zeeb
18312774f206SBjoern A. Zeeb switch (type) {
18322774f206SBjoern A. Zeeb case RTW_WOWLAN_FW:
18332774f206SBjoern A. Zeeb fw = &rtwdev->wow_fw;
18342774f206SBjoern A. Zeeb fw_name = rtwdev->chip->wow_fw_name;
18352774f206SBjoern A. Zeeb break;
18362774f206SBjoern A. Zeeb
18372774f206SBjoern A. Zeeb case RTW_NORMAL_FW:
18382774f206SBjoern A. Zeeb fw = &rtwdev->fw;
18392774f206SBjoern A. Zeeb fw_name = rtwdev->chip->fw_name;
18402774f206SBjoern A. Zeeb break;
18412774f206SBjoern A. Zeeb
18422774f206SBjoern A. Zeeb default:
18432774f206SBjoern A. Zeeb rtw_warn(rtwdev, "unsupported firmware type\n");
18442774f206SBjoern A. Zeeb return -ENOENT;
18452774f206SBjoern A. Zeeb }
18462774f206SBjoern A. Zeeb
184790aac0d8SBjoern A. Zeeb fw->type = type;
18482774f206SBjoern A. Zeeb fw->rtwdev = rtwdev;
18492774f206SBjoern A. Zeeb init_completion(&fw->completion);
18502774f206SBjoern A. Zeeb
18512774f206SBjoern A. Zeeb ret = request_firmware_nowait(THIS_MODULE, true, fw_name, rtwdev->dev,
18522774f206SBjoern A. Zeeb GFP_KERNEL, fw, rtw_load_firmware_cb);
18532774f206SBjoern A. Zeeb if (ret) {
18542774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to async firmware request\n");
18552774f206SBjoern A. Zeeb return ret;
18562774f206SBjoern A. Zeeb }
18572774f206SBjoern A. Zeeb
18582774f206SBjoern A. Zeeb return 0;
18592774f206SBjoern A. Zeeb }
18602774f206SBjoern A. Zeeb
rtw_chip_parameter_setup(struct rtw_dev * rtwdev)18612774f206SBjoern A. Zeeb static int rtw_chip_parameter_setup(struct rtw_dev *rtwdev)
18622774f206SBjoern A. Zeeb {
186390aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
18642774f206SBjoern A. Zeeb struct rtw_hal *hal = &rtwdev->hal;
18652774f206SBjoern A. Zeeb struct rtw_efuse *efuse = &rtwdev->efuse;
18662774f206SBjoern A. Zeeb
18672774f206SBjoern A. Zeeb switch (rtw_hci_type(rtwdev)) {
18682774f206SBjoern A. Zeeb case RTW_HCI_TYPE_PCIE:
18692774f206SBjoern A. Zeeb rtwdev->hci.rpwm_addr = 0x03d9;
18702774f206SBjoern A. Zeeb rtwdev->hci.cpwm_addr = 0x03da;
18712774f206SBjoern A. Zeeb break;
187290aac0d8SBjoern A. Zeeb case RTW_HCI_TYPE_SDIO:
187390aac0d8SBjoern A. Zeeb rtwdev->hci.rpwm_addr = REG_SDIO_HRPWM1;
187490aac0d8SBjoern A. Zeeb rtwdev->hci.cpwm_addr = REG_SDIO_HCPWM1_V2;
187590aac0d8SBjoern A. Zeeb break;
187690aac0d8SBjoern A. Zeeb case RTW_HCI_TYPE_USB:
187790aac0d8SBjoern A. Zeeb rtwdev->hci.rpwm_addr = 0xfe58;
187890aac0d8SBjoern A. Zeeb rtwdev->hci.cpwm_addr = 0xfe57;
187990aac0d8SBjoern A. Zeeb break;
18802774f206SBjoern A. Zeeb default:
18812774f206SBjoern A. Zeeb rtw_err(rtwdev, "unsupported hci type\n");
18822774f206SBjoern A. Zeeb return -EINVAL;
18832774f206SBjoern A. Zeeb }
18842774f206SBjoern A. Zeeb
18852774f206SBjoern A. Zeeb hal->chip_version = rtw_read32(rtwdev, REG_SYS_CFG1);
18862774f206SBjoern A. Zeeb hal->cut_version = BIT_GET_CHIP_VER(hal->chip_version);
18872774f206SBjoern A. Zeeb hal->mp_chip = (hal->chip_version & BIT_RTL_ID) ? 0 : 1;
18882774f206SBjoern A. Zeeb if (hal->chip_version & BIT_RF_TYPE_ID) {
18892774f206SBjoern A. Zeeb hal->rf_type = RF_2T2R;
18902774f206SBjoern A. Zeeb hal->rf_path_num = 2;
18912774f206SBjoern A. Zeeb hal->antenna_tx = BB_PATH_AB;
18922774f206SBjoern A. Zeeb hal->antenna_rx = BB_PATH_AB;
18932774f206SBjoern A. Zeeb } else {
18942774f206SBjoern A. Zeeb hal->rf_type = RF_1T1R;
18952774f206SBjoern A. Zeeb hal->rf_path_num = 1;
18962774f206SBjoern A. Zeeb hal->antenna_tx = BB_PATH_A;
18972774f206SBjoern A. Zeeb hal->antenna_rx = BB_PATH_A;
18982774f206SBjoern A. Zeeb }
18992774f206SBjoern A. Zeeb hal->rf_phy_num = chip->fix_rf_phy_num ? chip->fix_rf_phy_num :
19002774f206SBjoern A. Zeeb hal->rf_path_num;
19012774f206SBjoern A. Zeeb
19022774f206SBjoern A. Zeeb efuse->physical_size = chip->phy_efuse_size;
19032774f206SBjoern A. Zeeb efuse->logical_size = chip->log_efuse_size;
19042774f206SBjoern A. Zeeb efuse->protect_size = chip->ptct_efuse_size;
19052774f206SBjoern A. Zeeb
19062774f206SBjoern A. Zeeb /* default use ack */
19072774f206SBjoern A. Zeeb rtwdev->hal.rcr |= BIT_VHT_DACK;
19082774f206SBjoern A. Zeeb
19092774f206SBjoern A. Zeeb hal->bfee_sts_cap = 3;
19102774f206SBjoern A. Zeeb
19112774f206SBjoern A. Zeeb return 0;
19122774f206SBjoern A. Zeeb }
19132774f206SBjoern A. Zeeb
rtw_chip_efuse_enable(struct rtw_dev * rtwdev)19142774f206SBjoern A. Zeeb static int rtw_chip_efuse_enable(struct rtw_dev *rtwdev)
19152774f206SBjoern A. Zeeb {
19162774f206SBjoern A. Zeeb struct rtw_fw_state *fw = &rtwdev->fw;
19172774f206SBjoern A. Zeeb int ret;
19182774f206SBjoern A. Zeeb
19192774f206SBjoern A. Zeeb ret = rtw_hci_setup(rtwdev);
19202774f206SBjoern A. Zeeb if (ret) {
19212774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to setup hci\n");
19222774f206SBjoern A. Zeeb goto err;
19232774f206SBjoern A. Zeeb }
19242774f206SBjoern A. Zeeb
19252774f206SBjoern A. Zeeb ret = rtw_mac_power_on(rtwdev);
19262774f206SBjoern A. Zeeb if (ret) {
19272774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to power on mac\n");
19282774f206SBjoern A. Zeeb goto err;
19292774f206SBjoern A. Zeeb }
19302774f206SBjoern A. Zeeb
19312774f206SBjoern A. Zeeb rtw_write8(rtwdev, REG_C2HEVT, C2H_HW_FEATURE_DUMP);
19322774f206SBjoern A. Zeeb
19332774f206SBjoern A. Zeeb wait_for_completion(&fw->completion);
19342774f206SBjoern A. Zeeb if (!fw->firmware) {
19352774f206SBjoern A. Zeeb ret = -EINVAL;
19362774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to load firmware\n");
19372774f206SBjoern A. Zeeb goto err;
19382774f206SBjoern A. Zeeb }
19392774f206SBjoern A. Zeeb
19402774f206SBjoern A. Zeeb ret = rtw_download_firmware(rtwdev, fw);
19412774f206SBjoern A. Zeeb if (ret) {
19422774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to download firmware\n");
19432774f206SBjoern A. Zeeb goto err_off;
19442774f206SBjoern A. Zeeb }
19452774f206SBjoern A. Zeeb
19462774f206SBjoern A. Zeeb return 0;
19472774f206SBjoern A. Zeeb
19482774f206SBjoern A. Zeeb err_off:
19492774f206SBjoern A. Zeeb rtw_mac_power_off(rtwdev);
19502774f206SBjoern A. Zeeb
19512774f206SBjoern A. Zeeb err:
19522774f206SBjoern A. Zeeb return ret;
19532774f206SBjoern A. Zeeb }
19542774f206SBjoern A. Zeeb
rtw_dump_hw_feature(struct rtw_dev * rtwdev)19552774f206SBjoern A. Zeeb static int rtw_dump_hw_feature(struct rtw_dev *rtwdev)
19562774f206SBjoern A. Zeeb {
19572774f206SBjoern A. Zeeb struct rtw_efuse *efuse = &rtwdev->efuse;
19582774f206SBjoern A. Zeeb u8 hw_feature[HW_FEATURE_LEN];
19592774f206SBjoern A. Zeeb u8 id;
19602774f206SBjoern A. Zeeb u8 bw;
19612774f206SBjoern A. Zeeb int i;
19622774f206SBjoern A. Zeeb
19632774f206SBjoern A. Zeeb id = rtw_read8(rtwdev, REG_C2HEVT);
19642774f206SBjoern A. Zeeb if (id != C2H_HW_FEATURE_REPORT) {
19652774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to read hw feature report\n");
19662774f206SBjoern A. Zeeb return -EBUSY;
19672774f206SBjoern A. Zeeb }
19682774f206SBjoern A. Zeeb
19692774f206SBjoern A. Zeeb for (i = 0; i < HW_FEATURE_LEN; i++)
19702774f206SBjoern A. Zeeb hw_feature[i] = rtw_read8(rtwdev, REG_C2HEVT + 2 + i);
19712774f206SBjoern A. Zeeb
19722774f206SBjoern A. Zeeb rtw_write8(rtwdev, REG_C2HEVT, 0);
19732774f206SBjoern A. Zeeb
19742774f206SBjoern A. Zeeb bw = GET_EFUSE_HW_CAP_BW(hw_feature);
19752774f206SBjoern A. Zeeb efuse->hw_cap.bw = hw_bw_cap_to_bitamp(bw);
19762774f206SBjoern A. Zeeb efuse->hw_cap.hci = GET_EFUSE_HW_CAP_HCI(hw_feature);
19772774f206SBjoern A. Zeeb efuse->hw_cap.nss = GET_EFUSE_HW_CAP_NSS(hw_feature);
19782774f206SBjoern A. Zeeb efuse->hw_cap.ptcl = GET_EFUSE_HW_CAP_PTCL(hw_feature);
19792774f206SBjoern A. Zeeb efuse->hw_cap.ant_num = GET_EFUSE_HW_CAP_ANT_NUM(hw_feature);
19802774f206SBjoern A. Zeeb
19812774f206SBjoern A. Zeeb rtw_hw_config_rf_ant_num(rtwdev, efuse->hw_cap.ant_num);
19822774f206SBjoern A. Zeeb
19832774f206SBjoern A. Zeeb if (efuse->hw_cap.nss == EFUSE_HW_CAP_IGNORE ||
19842774f206SBjoern A. Zeeb efuse->hw_cap.nss > rtwdev->hal.rf_path_num)
19852774f206SBjoern A. Zeeb efuse->hw_cap.nss = rtwdev->hal.rf_path_num;
19862774f206SBjoern A. Zeeb
19872774f206SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_EFUSE,
19882774f206SBjoern A. Zeeb "hw cap: hci=0x%02x, bw=0x%02x, ptcl=0x%02x, ant_num=%d, nss=%d\n",
19892774f206SBjoern A. Zeeb efuse->hw_cap.hci, efuse->hw_cap.bw, efuse->hw_cap.ptcl,
19902774f206SBjoern A. Zeeb efuse->hw_cap.ant_num, efuse->hw_cap.nss);
19912774f206SBjoern A. Zeeb
19922774f206SBjoern A. Zeeb return 0;
19932774f206SBjoern A. Zeeb }
19942774f206SBjoern A. Zeeb
rtw_chip_efuse_disable(struct rtw_dev * rtwdev)19952774f206SBjoern A. Zeeb static void rtw_chip_efuse_disable(struct rtw_dev *rtwdev)
19962774f206SBjoern A. Zeeb {
19972774f206SBjoern A. Zeeb rtw_hci_stop(rtwdev);
19982774f206SBjoern A. Zeeb rtw_mac_power_off(rtwdev);
19992774f206SBjoern A. Zeeb }
20002774f206SBjoern A. Zeeb
rtw_chip_efuse_info_setup(struct rtw_dev * rtwdev)20012774f206SBjoern A. Zeeb static int rtw_chip_efuse_info_setup(struct rtw_dev *rtwdev)
20022774f206SBjoern A. Zeeb {
20032774f206SBjoern A. Zeeb struct rtw_efuse *efuse = &rtwdev->efuse;
20042774f206SBjoern A. Zeeb int ret;
20052774f206SBjoern A. Zeeb
20062774f206SBjoern A. Zeeb mutex_lock(&rtwdev->mutex);
20072774f206SBjoern A. Zeeb
20082774f206SBjoern A. Zeeb /* power on mac to read efuse */
20092774f206SBjoern A. Zeeb ret = rtw_chip_efuse_enable(rtwdev);
20102774f206SBjoern A. Zeeb if (ret)
20112774f206SBjoern A. Zeeb goto out_unlock;
20122774f206SBjoern A. Zeeb
20132774f206SBjoern A. Zeeb ret = rtw_parse_efuse_map(rtwdev);
20142774f206SBjoern A. Zeeb if (ret)
20152774f206SBjoern A. Zeeb goto out_disable;
20162774f206SBjoern A. Zeeb
20172774f206SBjoern A. Zeeb ret = rtw_dump_hw_feature(rtwdev);
20182774f206SBjoern A. Zeeb if (ret)
20192774f206SBjoern A. Zeeb goto out_disable;
20202774f206SBjoern A. Zeeb
20212774f206SBjoern A. Zeeb ret = rtw_check_supported_rfe(rtwdev);
20222774f206SBjoern A. Zeeb if (ret)
20232774f206SBjoern A. Zeeb goto out_disable;
20242774f206SBjoern A. Zeeb
20252774f206SBjoern A. Zeeb if (efuse->crystal_cap == 0xff)
20262774f206SBjoern A. Zeeb efuse->crystal_cap = 0;
20272774f206SBjoern A. Zeeb if (efuse->pa_type_2g == 0xff)
20282774f206SBjoern A. Zeeb efuse->pa_type_2g = 0;
20292774f206SBjoern A. Zeeb if (efuse->pa_type_5g == 0xff)
20302774f206SBjoern A. Zeeb efuse->pa_type_5g = 0;
20312774f206SBjoern A. Zeeb if (efuse->lna_type_2g == 0xff)
20322774f206SBjoern A. Zeeb efuse->lna_type_2g = 0;
20332774f206SBjoern A. Zeeb if (efuse->lna_type_5g == 0xff)
20342774f206SBjoern A. Zeeb efuse->lna_type_5g = 0;
20352774f206SBjoern A. Zeeb if (efuse->channel_plan == 0xff)
20362774f206SBjoern A. Zeeb efuse->channel_plan = 0x7f;
20372774f206SBjoern A. Zeeb if (efuse->rf_board_option == 0xff)
20382774f206SBjoern A. Zeeb efuse->rf_board_option = 0;
20392774f206SBjoern A. Zeeb if (efuse->bt_setting & BIT(0))
20402774f206SBjoern A. Zeeb efuse->share_ant = true;
20412774f206SBjoern A. Zeeb if (efuse->regd == 0xff)
20422774f206SBjoern A. Zeeb efuse->regd = 0;
20432774f206SBjoern A. Zeeb if (efuse->tx_bb_swing_setting_2g == 0xff)
20442774f206SBjoern A. Zeeb efuse->tx_bb_swing_setting_2g = 0;
20452774f206SBjoern A. Zeeb if (efuse->tx_bb_swing_setting_5g == 0xff)
20462774f206SBjoern A. Zeeb efuse->tx_bb_swing_setting_5g = 0;
20472774f206SBjoern A. Zeeb
20482774f206SBjoern A. Zeeb efuse->btcoex = (efuse->rf_board_option & 0xe0) == 0x20;
20492774f206SBjoern A. Zeeb efuse->ext_pa_2g = efuse->pa_type_2g & BIT(4) ? 1 : 0;
20502774f206SBjoern A. Zeeb efuse->ext_lna_2g = efuse->lna_type_2g & BIT(3) ? 1 : 0;
20512774f206SBjoern A. Zeeb efuse->ext_pa_5g = efuse->pa_type_5g & BIT(0) ? 1 : 0;
20522774f206SBjoern A. Zeeb efuse->ext_lna_2g = efuse->lna_type_5g & BIT(3) ? 1 : 0;
20532774f206SBjoern A. Zeeb
205411c53278SBjoern A. Zeeb if (!is_valid_ether_addr(efuse->addr)) {
205511c53278SBjoern A. Zeeb eth_random_addr(efuse->addr);
205611c53278SBjoern A. Zeeb dev_warn(rtwdev->dev, "efuse MAC invalid, using random\n");
205711c53278SBjoern A. Zeeb }
205811c53278SBjoern A. Zeeb
20592774f206SBjoern A. Zeeb out_disable:
20602774f206SBjoern A. Zeeb rtw_chip_efuse_disable(rtwdev);
20612774f206SBjoern A. Zeeb
20622774f206SBjoern A. Zeeb out_unlock:
20632774f206SBjoern A. Zeeb mutex_unlock(&rtwdev->mutex);
20642774f206SBjoern A. Zeeb return ret;
20652774f206SBjoern A. Zeeb }
20662774f206SBjoern A. Zeeb
rtw_chip_board_info_setup(struct rtw_dev * rtwdev)20672774f206SBjoern A. Zeeb static int rtw_chip_board_info_setup(struct rtw_dev *rtwdev)
20682774f206SBjoern A. Zeeb {
20692774f206SBjoern A. Zeeb struct rtw_hal *hal = &rtwdev->hal;
20702774f206SBjoern A. Zeeb const struct rtw_rfe_def *rfe_def = rtw_get_rfe_def(rtwdev);
20712774f206SBjoern A. Zeeb
20722774f206SBjoern A. Zeeb if (!rfe_def)
20732774f206SBjoern A. Zeeb return -ENODEV;
20742774f206SBjoern A. Zeeb
207590aac0d8SBjoern A. Zeeb rtw_phy_setup_phy_cond(rtwdev, hal->pkg_type);
20762774f206SBjoern A. Zeeb
20772774f206SBjoern A. Zeeb rtw_phy_init_tx_power(rtwdev);
20782774f206SBjoern A. Zeeb rtw_load_table(rtwdev, rfe_def->phy_pg_tbl);
20792774f206SBjoern A. Zeeb rtw_load_table(rtwdev, rfe_def->txpwr_lmt_tbl);
20802774f206SBjoern A. Zeeb rtw_phy_tx_power_by_rate_config(hal);
20812774f206SBjoern A. Zeeb rtw_phy_tx_power_limit_config(hal);
20822774f206SBjoern A. Zeeb
20832774f206SBjoern A. Zeeb return 0;
20842774f206SBjoern A. Zeeb }
20852774f206SBjoern A. Zeeb
rtw_chip_info_setup(struct rtw_dev * rtwdev)20862774f206SBjoern A. Zeeb int rtw_chip_info_setup(struct rtw_dev *rtwdev)
20872774f206SBjoern A. Zeeb {
20882774f206SBjoern A. Zeeb int ret;
20892774f206SBjoern A. Zeeb
20902774f206SBjoern A. Zeeb ret = rtw_chip_parameter_setup(rtwdev);
20912774f206SBjoern A. Zeeb if (ret) {
20922774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to setup chip parameters\n");
20932774f206SBjoern A. Zeeb goto err_out;
20942774f206SBjoern A. Zeeb }
20952774f206SBjoern A. Zeeb
20962774f206SBjoern A. Zeeb ret = rtw_chip_efuse_info_setup(rtwdev);
20972774f206SBjoern A. Zeeb if (ret) {
20982774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to setup chip efuse info\n");
20992774f206SBjoern A. Zeeb goto err_out;
21002774f206SBjoern A. Zeeb }
21012774f206SBjoern A. Zeeb
21022774f206SBjoern A. Zeeb ret = rtw_chip_board_info_setup(rtwdev);
21032774f206SBjoern A. Zeeb if (ret) {
21042774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to setup chip board info\n");
21052774f206SBjoern A. Zeeb goto err_out;
21062774f206SBjoern A. Zeeb }
21072774f206SBjoern A. Zeeb
21082774f206SBjoern A. Zeeb return 0;
21092774f206SBjoern A. Zeeb
21102774f206SBjoern A. Zeeb err_out:
21112774f206SBjoern A. Zeeb return ret;
21122774f206SBjoern A. Zeeb }
21132774f206SBjoern A. Zeeb EXPORT_SYMBOL(rtw_chip_info_setup);
21142774f206SBjoern A. Zeeb
rtw_stats_init(struct rtw_dev * rtwdev)21152774f206SBjoern A. Zeeb static void rtw_stats_init(struct rtw_dev *rtwdev)
21162774f206SBjoern A. Zeeb {
21172774f206SBjoern A. Zeeb struct rtw_traffic_stats *stats = &rtwdev->stats;
21182774f206SBjoern A. Zeeb struct rtw_dm_info *dm_info = &rtwdev->dm_info;
21192774f206SBjoern A. Zeeb int i;
21202774f206SBjoern A. Zeeb
21212774f206SBjoern A. Zeeb ewma_tp_init(&stats->tx_ewma_tp);
21222774f206SBjoern A. Zeeb ewma_tp_init(&stats->rx_ewma_tp);
21232774f206SBjoern A. Zeeb
21242774f206SBjoern A. Zeeb for (i = 0; i < RTW_EVM_NUM; i++)
21252774f206SBjoern A. Zeeb ewma_evm_init(&dm_info->ewma_evm[i]);
21262774f206SBjoern A. Zeeb for (i = 0; i < RTW_SNR_NUM; i++)
21272774f206SBjoern A. Zeeb ewma_snr_init(&dm_info->ewma_snr[i]);
21282774f206SBjoern A. Zeeb }
21292774f206SBjoern A. Zeeb
rtw_core_init(struct rtw_dev * rtwdev)21302774f206SBjoern A. Zeeb int rtw_core_init(struct rtw_dev *rtwdev)
21312774f206SBjoern A. Zeeb {
213290aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
21332774f206SBjoern A. Zeeb struct rtw_coex *coex = &rtwdev->coex;
21342774f206SBjoern A. Zeeb int ret;
21352774f206SBjoern A. Zeeb
21362774f206SBjoern A. Zeeb INIT_LIST_HEAD(&rtwdev->rsvd_page_list);
21372774f206SBjoern A. Zeeb INIT_LIST_HEAD(&rtwdev->txqs);
21382774f206SBjoern A. Zeeb
21392774f206SBjoern A. Zeeb timer_setup(&rtwdev->tx_report.purge_timer,
21402774f206SBjoern A. Zeeb rtw_tx_report_purge_timer, 0);
21412774f206SBjoern A. Zeeb rtwdev->tx_wq = alloc_workqueue("rtw_tx_wq", WQ_UNBOUND | WQ_HIGHPRI, 0);
214290aac0d8SBjoern A. Zeeb if (!rtwdev->tx_wq) {
214390aac0d8SBjoern A. Zeeb rtw_warn(rtwdev, "alloc_workqueue rtw_tx_wq failed\n");
214490aac0d8SBjoern A. Zeeb return -ENOMEM;
214590aac0d8SBjoern A. Zeeb }
21462774f206SBjoern A. Zeeb
21472774f206SBjoern A. Zeeb INIT_DELAYED_WORK(&rtwdev->watch_dog_work, rtw_watch_dog_work);
21482774f206SBjoern A. Zeeb INIT_DELAYED_WORK(&coex->bt_relink_work, rtw_coex_bt_relink_work);
21492774f206SBjoern A. Zeeb INIT_DELAYED_WORK(&coex->bt_reenable_work, rtw_coex_bt_reenable_work);
21502774f206SBjoern A. Zeeb INIT_DELAYED_WORK(&coex->defreeze_work, rtw_coex_defreeze_work);
21512774f206SBjoern A. Zeeb INIT_DELAYED_WORK(&coex->wl_remain_work, rtw_coex_wl_remain_work);
21522774f206SBjoern A. Zeeb INIT_DELAYED_WORK(&coex->bt_remain_work, rtw_coex_bt_remain_work);
21532774f206SBjoern A. Zeeb INIT_DELAYED_WORK(&coex->wl_connecting_work, rtw_coex_wl_connecting_work);
21542774f206SBjoern A. Zeeb INIT_DELAYED_WORK(&coex->bt_multi_link_remain_work,
21552774f206SBjoern A. Zeeb rtw_coex_bt_multi_link_remain_work);
21562774f206SBjoern A. Zeeb INIT_DELAYED_WORK(&coex->wl_ccklock_work, rtw_coex_wl_ccklock_work);
21572774f206SBjoern A. Zeeb INIT_WORK(&rtwdev->tx_work, rtw_tx_work);
21582774f206SBjoern A. Zeeb INIT_WORK(&rtwdev->c2h_work, rtw_c2h_work);
21599c951734SBjoern A. Zeeb INIT_WORK(&rtwdev->ips_work, rtw_ips_work);
21602774f206SBjoern A. Zeeb INIT_WORK(&rtwdev->fw_recovery_work, rtw_fw_recovery_work);
21619c951734SBjoern A. Zeeb INIT_WORK(&rtwdev->update_beacon_work, rtw_fw_update_beacon_work);
21622774f206SBjoern A. Zeeb INIT_WORK(&rtwdev->ba_work, rtw_txq_ba_work);
21632774f206SBjoern A. Zeeb skb_queue_head_init(&rtwdev->c2h_queue);
21642774f206SBjoern A. Zeeb skb_queue_head_init(&rtwdev->coex.queue);
21652774f206SBjoern A. Zeeb skb_queue_head_init(&rtwdev->tx_report.queue);
21662774f206SBjoern A. Zeeb
21672774f206SBjoern A. Zeeb spin_lock_init(&rtwdev->txq_lock);
21682774f206SBjoern A. Zeeb spin_lock_init(&rtwdev->tx_report.q_lock);
21692774f206SBjoern A. Zeeb
21702774f206SBjoern A. Zeeb mutex_init(&rtwdev->mutex);
21712774f206SBjoern A. Zeeb mutex_init(&rtwdev->hal.tx_power_mutex);
21722774f206SBjoern A. Zeeb
21732774f206SBjoern A. Zeeb init_waitqueue_head(&rtwdev->coex.wait);
21742774f206SBjoern A. Zeeb init_completion(&rtwdev->lps_leave_check);
21752774f206SBjoern A. Zeeb init_completion(&rtwdev->fw_scan_density);
21762774f206SBjoern A. Zeeb
21772774f206SBjoern A. Zeeb rtwdev->sec.total_cam_num = 32;
21782774f206SBjoern A. Zeeb rtwdev->hal.current_channel = 1;
21792774f206SBjoern A. Zeeb rtwdev->dm_info.fix_rate = U8_MAX;
21802774f206SBjoern A. Zeeb set_bit(RTW_BC_MC_MACID, rtwdev->mac_id_map);
21812774f206SBjoern A. Zeeb
21822774f206SBjoern A. Zeeb rtw_stats_init(rtwdev);
21832774f206SBjoern A. Zeeb
21842774f206SBjoern A. Zeeb /* default rx filter setting */
21852774f206SBjoern A. Zeeb rtwdev->hal.rcr = BIT_APP_FCS | BIT_APP_MIC | BIT_APP_ICV |
21862774f206SBjoern A. Zeeb BIT_PKTCTL_DLEN | BIT_HTC_LOC_CTRL | BIT_APP_PHYSTS |
21872774f206SBjoern A. Zeeb BIT_AB | BIT_AM | BIT_APM;
21882774f206SBjoern A. Zeeb
21892774f206SBjoern A. Zeeb ret = rtw_load_firmware(rtwdev, RTW_NORMAL_FW);
21902774f206SBjoern A. Zeeb if (ret) {
21912774f206SBjoern A. Zeeb rtw_warn(rtwdev, "no firmware loaded\n");
219290aac0d8SBjoern A. Zeeb goto out;
21932774f206SBjoern A. Zeeb }
21942774f206SBjoern A. Zeeb
21952774f206SBjoern A. Zeeb if (chip->wow_fw_name) {
21962774f206SBjoern A. Zeeb ret = rtw_load_firmware(rtwdev, RTW_WOWLAN_FW);
21972774f206SBjoern A. Zeeb if (ret) {
21982774f206SBjoern A. Zeeb rtw_warn(rtwdev, "no wow firmware loaded\n");
21992774f206SBjoern A. Zeeb wait_for_completion(&rtwdev->fw.completion);
22002774f206SBjoern A. Zeeb if (rtwdev->fw.firmware)
22012774f206SBjoern A. Zeeb release_firmware(rtwdev->fw.firmware);
220290aac0d8SBjoern A. Zeeb goto out;
22032774f206SBjoern A. Zeeb }
22042774f206SBjoern A. Zeeb }
22052774f206SBjoern A. Zeeb
22062774f206SBjoern A. Zeeb #if defined(__FreeBSD__)
22072774f206SBjoern A. Zeeb rtw_wait_firmware_completion(rtwdev);
22082774f206SBjoern A. Zeeb #endif
22092774f206SBjoern A. Zeeb
22102774f206SBjoern A. Zeeb return 0;
221190aac0d8SBjoern A. Zeeb
221290aac0d8SBjoern A. Zeeb out:
221390aac0d8SBjoern A. Zeeb destroy_workqueue(rtwdev->tx_wq);
221490aac0d8SBjoern A. Zeeb return ret;
22152774f206SBjoern A. Zeeb }
22162774f206SBjoern A. Zeeb EXPORT_SYMBOL(rtw_core_init);
22172774f206SBjoern A. Zeeb
rtw_core_deinit(struct rtw_dev * rtwdev)22182774f206SBjoern A. Zeeb void rtw_core_deinit(struct rtw_dev *rtwdev)
22192774f206SBjoern A. Zeeb {
22202774f206SBjoern A. Zeeb struct rtw_fw_state *fw = &rtwdev->fw;
22212774f206SBjoern A. Zeeb struct rtw_fw_state *wow_fw = &rtwdev->wow_fw;
22222774f206SBjoern A. Zeeb struct rtw_rsvd_page *rsvd_pkt, *tmp;
22232774f206SBjoern A. Zeeb unsigned long flags;
22242774f206SBjoern A. Zeeb
22252774f206SBjoern A. Zeeb rtw_wait_firmware_completion(rtwdev);
22262774f206SBjoern A. Zeeb
22272774f206SBjoern A. Zeeb if (fw->firmware)
22282774f206SBjoern A. Zeeb release_firmware(fw->firmware);
22292774f206SBjoern A. Zeeb
22302774f206SBjoern A. Zeeb if (wow_fw->firmware)
22312774f206SBjoern A. Zeeb release_firmware(wow_fw->firmware);
22322774f206SBjoern A. Zeeb
22332774f206SBjoern A. Zeeb destroy_workqueue(rtwdev->tx_wq);
223490aac0d8SBjoern A. Zeeb timer_delete_sync(&rtwdev->tx_report.purge_timer);
22352774f206SBjoern A. Zeeb spin_lock_irqsave(&rtwdev->tx_report.q_lock, flags);
22362774f206SBjoern A. Zeeb skb_queue_purge(&rtwdev->tx_report.queue);
22372774f206SBjoern A. Zeeb spin_unlock_irqrestore(&rtwdev->tx_report.q_lock, flags);
223890aac0d8SBjoern A. Zeeb skb_queue_purge(&rtwdev->coex.queue);
223990aac0d8SBjoern A. Zeeb skb_queue_purge(&rtwdev->c2h_queue);
22402774f206SBjoern A. Zeeb
22412774f206SBjoern A. Zeeb list_for_each_entry_safe(rsvd_pkt, tmp, &rtwdev->rsvd_page_list,
22422774f206SBjoern A. Zeeb build_list) {
22432774f206SBjoern A. Zeeb list_del(&rsvd_pkt->build_list);
22442774f206SBjoern A. Zeeb kfree(rsvd_pkt);
22452774f206SBjoern A. Zeeb }
22462774f206SBjoern A. Zeeb
22472774f206SBjoern A. Zeeb mutex_destroy(&rtwdev->mutex);
22482774f206SBjoern A. Zeeb mutex_destroy(&rtwdev->hal.tx_power_mutex);
22492774f206SBjoern A. Zeeb }
22502774f206SBjoern A. Zeeb EXPORT_SYMBOL(rtw_core_deinit);
22512774f206SBjoern A. Zeeb
rtw_register_hw(struct rtw_dev * rtwdev,struct ieee80211_hw * hw)22522774f206SBjoern A. Zeeb int rtw_register_hw(struct rtw_dev *rtwdev, struct ieee80211_hw *hw)
22532774f206SBjoern A. Zeeb {
225411c53278SBjoern A. Zeeb bool sta_mode_only = rtwdev->hci.type == RTW_HCI_TYPE_SDIO;
22552774f206SBjoern A. Zeeb struct rtw_hal *hal = &rtwdev->hal;
22562774f206SBjoern A. Zeeb int max_tx_headroom = 0;
22572774f206SBjoern A. Zeeb int ret;
22582774f206SBjoern A. Zeeb
22592774f206SBjoern A. Zeeb max_tx_headroom = rtwdev->chip->tx_pkt_desc_sz;
22602774f206SBjoern A. Zeeb
226190aac0d8SBjoern A. Zeeb if (rtw_hci_type(rtwdev) == RTW_HCI_TYPE_SDIO)
226290aac0d8SBjoern A. Zeeb max_tx_headroom += RTW_SDIO_DATA_PTR_ALIGN;
226390aac0d8SBjoern A. Zeeb
22642774f206SBjoern A. Zeeb hw->extra_tx_headroom = max_tx_headroom;
22652774f206SBjoern A. Zeeb hw->queues = IEEE80211_NUM_ACS;
22662774f206SBjoern A. Zeeb hw->txq_data_size = sizeof(struct rtw_txq);
22672774f206SBjoern A. Zeeb hw->sta_data_size = sizeof(struct rtw_sta_info);
22682774f206SBjoern A. Zeeb hw->vif_data_size = sizeof(struct rtw_vif);
22692774f206SBjoern A. Zeeb
22702774f206SBjoern A. Zeeb ieee80211_hw_set(hw, SIGNAL_DBM);
22712774f206SBjoern A. Zeeb ieee80211_hw_set(hw, RX_INCLUDES_FCS);
22722774f206SBjoern A. Zeeb ieee80211_hw_set(hw, AMPDU_AGGREGATION);
22732774f206SBjoern A. Zeeb ieee80211_hw_set(hw, MFP_CAPABLE);
22742774f206SBjoern A. Zeeb ieee80211_hw_set(hw, REPORTS_TX_ACK_STATUS);
22752774f206SBjoern A. Zeeb ieee80211_hw_set(hw, SUPPORTS_PS);
22762774f206SBjoern A. Zeeb ieee80211_hw_set(hw, SUPPORTS_DYNAMIC_PS);
22772774f206SBjoern A. Zeeb ieee80211_hw_set(hw, SUPPORT_FAST_XMIT);
22782774f206SBjoern A. Zeeb ieee80211_hw_set(hw, SUPPORTS_AMSDU_IN_AMPDU);
22792774f206SBjoern A. Zeeb ieee80211_hw_set(hw, HAS_RATE_CONTROL);
22802774f206SBjoern A. Zeeb ieee80211_hw_set(hw, TX_AMSDU);
22812774f206SBjoern A. Zeeb ieee80211_hw_set(hw, SINGLE_SCAN_ON_ALL_BANDS);
22822774f206SBjoern A. Zeeb
228311c53278SBjoern A. Zeeb if (sta_mode_only)
228411c53278SBjoern A. Zeeb hw->wiphy->interface_modes = BIT(NL80211_IFTYPE_STATION);
228511c53278SBjoern A. Zeeb else
22862774f206SBjoern A. Zeeb hw->wiphy->interface_modes = BIT(NL80211_IFTYPE_STATION) |
22872774f206SBjoern A. Zeeb BIT(NL80211_IFTYPE_AP) |
228811c53278SBjoern A. Zeeb BIT(NL80211_IFTYPE_ADHOC);
22892774f206SBjoern A. Zeeb hw->wiphy->available_antennas_tx = hal->antenna_tx;
22902774f206SBjoern A. Zeeb hw->wiphy->available_antennas_rx = hal->antenna_rx;
22912774f206SBjoern A. Zeeb
22922774f206SBjoern A. Zeeb hw->wiphy->flags |= WIPHY_FLAG_SUPPORTS_TDLS |
22932774f206SBjoern A. Zeeb WIPHY_FLAG_TDLS_EXTERNAL_SETUP;
22942774f206SBjoern A. Zeeb
22952774f206SBjoern A. Zeeb hw->wiphy->features |= NL80211_FEATURE_SCAN_RANDOM_MAC_ADDR;
22962774f206SBjoern A. Zeeb hw->wiphy->max_scan_ssids = RTW_SCAN_MAX_SSIDS;
229790aac0d8SBjoern A. Zeeb hw->wiphy->max_scan_ie_len = rtw_get_max_scan_ie_len(rtwdev);
229890aac0d8SBjoern A. Zeeb
229911c53278SBjoern A. Zeeb if (!sta_mode_only && rtwdev->chip->id == RTW_CHIP_TYPE_8822C) {
230090aac0d8SBjoern A. Zeeb hw->wiphy->iface_combinations = rtw_iface_combs;
230190aac0d8SBjoern A. Zeeb hw->wiphy->n_iface_combinations = ARRAY_SIZE(rtw_iface_combs);
230290aac0d8SBjoern A. Zeeb }
23032774f206SBjoern A. Zeeb
23042774f206SBjoern A. Zeeb wiphy_ext_feature_set(hw->wiphy, NL80211_EXT_FEATURE_CAN_REPLACE_PTK0);
23052774f206SBjoern A. Zeeb wiphy_ext_feature_set(hw->wiphy, NL80211_EXT_FEATURE_SCAN_RANDOM_SN);
23062774f206SBjoern A. Zeeb wiphy_ext_feature_set(hw->wiphy, NL80211_EXT_FEATURE_SET_SCAN_DWELL);
23072774f206SBjoern A. Zeeb
23082774f206SBjoern A. Zeeb #ifdef CONFIG_PM
23092774f206SBjoern A. Zeeb hw->wiphy->wowlan = rtwdev->chip->wowlan_stub;
23102774f206SBjoern A. Zeeb hw->wiphy->max_sched_scan_ssids = rtwdev->chip->max_sched_scan_ssids;
23112774f206SBjoern A. Zeeb #endif
23122774f206SBjoern A. Zeeb rtw_set_supported_band(hw, rtwdev->chip);
23132774f206SBjoern A. Zeeb SET_IEEE80211_PERM_ADDR(hw, rtwdev->efuse.addr);
23142774f206SBjoern A. Zeeb
23152774f206SBjoern A. Zeeb hw->wiphy->sar_capa = &rtw_sar_capa;
23162774f206SBjoern A. Zeeb
23172774f206SBjoern A. Zeeb ret = rtw_regd_init(rtwdev);
23182774f206SBjoern A. Zeeb if (ret) {
23192774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to init regd\n");
23202774f206SBjoern A. Zeeb return ret;
23212774f206SBjoern A. Zeeb }
23222774f206SBjoern A. Zeeb
23232774f206SBjoern A. Zeeb ret = ieee80211_register_hw(hw);
23242774f206SBjoern A. Zeeb if (ret) {
23252774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to register hw\n");
23262774f206SBjoern A. Zeeb return ret;
23272774f206SBjoern A. Zeeb }
23282774f206SBjoern A. Zeeb
23292774f206SBjoern A. Zeeb ret = rtw_regd_hint(rtwdev);
23302774f206SBjoern A. Zeeb if (ret) {
23312774f206SBjoern A. Zeeb rtw_err(rtwdev, "failed to hint regd\n");
23322774f206SBjoern A. Zeeb return ret;
23332774f206SBjoern A. Zeeb }
23342774f206SBjoern A. Zeeb
23352774f206SBjoern A. Zeeb rtw_debugfs_init(rtwdev);
23362774f206SBjoern A. Zeeb
23372774f206SBjoern A. Zeeb rtwdev->bf_info.bfer_mu_cnt = 0;
23382774f206SBjoern A. Zeeb rtwdev->bf_info.bfer_su_cnt = 0;
23392774f206SBjoern A. Zeeb
23402774f206SBjoern A. Zeeb return 0;
23412774f206SBjoern A. Zeeb }
23422774f206SBjoern A. Zeeb EXPORT_SYMBOL(rtw_register_hw);
23432774f206SBjoern A. Zeeb
rtw_unregister_hw(struct rtw_dev * rtwdev,struct ieee80211_hw * hw)23442774f206SBjoern A. Zeeb void rtw_unregister_hw(struct rtw_dev *rtwdev, struct ieee80211_hw *hw)
23452774f206SBjoern A. Zeeb {
234690aac0d8SBjoern A. Zeeb const struct rtw_chip_info *chip = rtwdev->chip;
23472774f206SBjoern A. Zeeb
23482774f206SBjoern A. Zeeb ieee80211_unregister_hw(hw);
23492774f206SBjoern A. Zeeb rtw_unset_supported_band(hw, chip);
23502774f206SBjoern A. Zeeb }
23512774f206SBjoern A. Zeeb EXPORT_SYMBOL(rtw_unregister_hw);
23522774f206SBjoern A. Zeeb
235390aac0d8SBjoern A. Zeeb static
rtw_swap_reg_nbytes(struct rtw_dev * rtwdev,const struct rtw_hw_reg * reg1,const struct rtw_hw_reg * reg2,u8 nbytes)235490aac0d8SBjoern A. Zeeb void rtw_swap_reg_nbytes(struct rtw_dev *rtwdev, const struct rtw_hw_reg *reg1,
235590aac0d8SBjoern A. Zeeb const struct rtw_hw_reg *reg2, u8 nbytes)
235690aac0d8SBjoern A. Zeeb {
235790aac0d8SBjoern A. Zeeb u8 i;
235890aac0d8SBjoern A. Zeeb
235990aac0d8SBjoern A. Zeeb for (i = 0; i < nbytes; i++) {
236090aac0d8SBjoern A. Zeeb u8 v1 = rtw_read8(rtwdev, reg1->addr + i);
236190aac0d8SBjoern A. Zeeb u8 v2 = rtw_read8(rtwdev, reg2->addr + i);
236290aac0d8SBjoern A. Zeeb
236390aac0d8SBjoern A. Zeeb rtw_write8(rtwdev, reg1->addr + i, v2);
236490aac0d8SBjoern A. Zeeb rtw_write8(rtwdev, reg2->addr + i, v1);
236590aac0d8SBjoern A. Zeeb }
236690aac0d8SBjoern A. Zeeb }
236790aac0d8SBjoern A. Zeeb
236890aac0d8SBjoern A. Zeeb static
rtw_swap_reg_mask(struct rtw_dev * rtwdev,const struct rtw_hw_reg * reg1,const struct rtw_hw_reg * reg2)236990aac0d8SBjoern A. Zeeb void rtw_swap_reg_mask(struct rtw_dev *rtwdev, const struct rtw_hw_reg *reg1,
237090aac0d8SBjoern A. Zeeb const struct rtw_hw_reg *reg2)
237190aac0d8SBjoern A. Zeeb {
237290aac0d8SBjoern A. Zeeb u32 v1, v2;
237390aac0d8SBjoern A. Zeeb
237490aac0d8SBjoern A. Zeeb v1 = rtw_read32_mask(rtwdev, reg1->addr, reg1->mask);
237590aac0d8SBjoern A. Zeeb v2 = rtw_read32_mask(rtwdev, reg2->addr, reg2->mask);
237690aac0d8SBjoern A. Zeeb rtw_write32_mask(rtwdev, reg2->addr, reg2->mask, v1);
237790aac0d8SBjoern A. Zeeb rtw_write32_mask(rtwdev, reg1->addr, reg1->mask, v2);
237890aac0d8SBjoern A. Zeeb }
237990aac0d8SBjoern A. Zeeb
238090aac0d8SBjoern A. Zeeb struct rtw_iter_port_switch_data {
238190aac0d8SBjoern A. Zeeb struct rtw_dev *rtwdev;
238290aac0d8SBjoern A. Zeeb struct rtw_vif *rtwvif_ap;
238390aac0d8SBjoern A. Zeeb };
238490aac0d8SBjoern A. Zeeb
rtw_port_switch_iter(void * data,struct ieee80211_vif * vif)238590aac0d8SBjoern A. Zeeb static void rtw_port_switch_iter(void *data, struct ieee80211_vif *vif)
238690aac0d8SBjoern A. Zeeb {
238790aac0d8SBjoern A. Zeeb struct rtw_iter_port_switch_data *iter_data = data;
238890aac0d8SBjoern A. Zeeb struct rtw_dev *rtwdev = iter_data->rtwdev;
238990aac0d8SBjoern A. Zeeb struct rtw_vif *rtwvif_target = (struct rtw_vif *)vif->drv_priv;
239090aac0d8SBjoern A. Zeeb struct rtw_vif *rtwvif_ap = iter_data->rtwvif_ap;
239190aac0d8SBjoern A. Zeeb const struct rtw_hw_reg *reg1, *reg2;
239290aac0d8SBjoern A. Zeeb
239390aac0d8SBjoern A. Zeeb if (rtwvif_target->port != RTW_PORT_0)
239490aac0d8SBjoern A. Zeeb return;
239590aac0d8SBjoern A. Zeeb
239690aac0d8SBjoern A. Zeeb rtw_dbg(rtwdev, RTW_DBG_STATE, "AP port switch from %d -> %d\n",
239790aac0d8SBjoern A. Zeeb rtwvif_ap->port, rtwvif_target->port);
239890aac0d8SBjoern A. Zeeb
239990aac0d8SBjoern A. Zeeb /* Leave LPS so the value swapped are not in PS mode */
240090aac0d8SBjoern A. Zeeb rtw_leave_lps(rtwdev);
240190aac0d8SBjoern A. Zeeb
240290aac0d8SBjoern A. Zeeb reg1 = &rtwvif_ap->conf->net_type;
240390aac0d8SBjoern A. Zeeb reg2 = &rtwvif_target->conf->net_type;
240490aac0d8SBjoern A. Zeeb rtw_swap_reg_mask(rtwdev, reg1, reg2);
240590aac0d8SBjoern A. Zeeb
240690aac0d8SBjoern A. Zeeb reg1 = &rtwvif_ap->conf->mac_addr;
240790aac0d8SBjoern A. Zeeb reg2 = &rtwvif_target->conf->mac_addr;
240890aac0d8SBjoern A. Zeeb rtw_swap_reg_nbytes(rtwdev, reg1, reg2, ETH_ALEN);
240990aac0d8SBjoern A. Zeeb
241090aac0d8SBjoern A. Zeeb reg1 = &rtwvif_ap->conf->bssid;
241190aac0d8SBjoern A. Zeeb reg2 = &rtwvif_target->conf->bssid;
241290aac0d8SBjoern A. Zeeb rtw_swap_reg_nbytes(rtwdev, reg1, reg2, ETH_ALEN);
241390aac0d8SBjoern A. Zeeb
241490aac0d8SBjoern A. Zeeb reg1 = &rtwvif_ap->conf->bcn_ctrl;
241590aac0d8SBjoern A. Zeeb reg2 = &rtwvif_target->conf->bcn_ctrl;
241690aac0d8SBjoern A. Zeeb rtw_swap_reg_nbytes(rtwdev, reg1, reg2, 1);
241790aac0d8SBjoern A. Zeeb
241890aac0d8SBjoern A. Zeeb swap(rtwvif_target->port, rtwvif_ap->port);
241990aac0d8SBjoern A. Zeeb swap(rtwvif_target->conf, rtwvif_ap->conf);
242090aac0d8SBjoern A. Zeeb
242190aac0d8SBjoern A. Zeeb rtw_fw_default_port(rtwdev, rtwvif_target);
242290aac0d8SBjoern A. Zeeb }
242390aac0d8SBjoern A. Zeeb
rtw_core_port_switch(struct rtw_dev * rtwdev,struct ieee80211_vif * vif)242490aac0d8SBjoern A. Zeeb void rtw_core_port_switch(struct rtw_dev *rtwdev, struct ieee80211_vif *vif)
242590aac0d8SBjoern A. Zeeb {
242690aac0d8SBjoern A. Zeeb struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
242790aac0d8SBjoern A. Zeeb struct rtw_iter_port_switch_data iter_data;
242890aac0d8SBjoern A. Zeeb
242990aac0d8SBjoern A. Zeeb if (vif->type != NL80211_IFTYPE_AP || rtwvif->port == RTW_PORT_0)
243090aac0d8SBjoern A. Zeeb return;
243190aac0d8SBjoern A. Zeeb
243290aac0d8SBjoern A. Zeeb iter_data.rtwdev = rtwdev;
243390aac0d8SBjoern A. Zeeb iter_data.rtwvif_ap = rtwvif;
243490aac0d8SBjoern A. Zeeb rtw_iterate_vifs(rtwdev, rtw_port_switch_iter, &iter_data);
243590aac0d8SBjoern A. Zeeb }
243690aac0d8SBjoern A. Zeeb
rtw_check_sta_active_iter(void * data,struct ieee80211_vif * vif)243790aac0d8SBjoern A. Zeeb static void rtw_check_sta_active_iter(void *data, struct ieee80211_vif *vif)
243890aac0d8SBjoern A. Zeeb {
243990aac0d8SBjoern A. Zeeb struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
244090aac0d8SBjoern A. Zeeb bool *active = data;
244190aac0d8SBjoern A. Zeeb
244290aac0d8SBjoern A. Zeeb if (*active)
244390aac0d8SBjoern A. Zeeb return;
244490aac0d8SBjoern A. Zeeb
244590aac0d8SBjoern A. Zeeb if (vif->type != NL80211_IFTYPE_STATION)
244690aac0d8SBjoern A. Zeeb return;
244790aac0d8SBjoern A. Zeeb
244890aac0d8SBjoern A. Zeeb if (vif->cfg.assoc || !is_zero_ether_addr(rtwvif->bssid))
244990aac0d8SBjoern A. Zeeb *active = true;
245090aac0d8SBjoern A. Zeeb }
245190aac0d8SBjoern A. Zeeb
rtw_core_check_sta_active(struct rtw_dev * rtwdev)245290aac0d8SBjoern A. Zeeb bool rtw_core_check_sta_active(struct rtw_dev *rtwdev)
245390aac0d8SBjoern A. Zeeb {
245490aac0d8SBjoern A. Zeeb bool sta_active = false;
245590aac0d8SBjoern A. Zeeb
245690aac0d8SBjoern A. Zeeb rtw_iterate_vifs(rtwdev, rtw_check_sta_active_iter, &sta_active);
245790aac0d8SBjoern A. Zeeb
245890aac0d8SBjoern A. Zeeb return rtwdev->ap_active || sta_active;
245990aac0d8SBjoern A. Zeeb }
246090aac0d8SBjoern A. Zeeb
rtw_core_enable_beacon(struct rtw_dev * rtwdev,bool enable)246190aac0d8SBjoern A. Zeeb void rtw_core_enable_beacon(struct rtw_dev *rtwdev, bool enable)
246290aac0d8SBjoern A. Zeeb {
246390aac0d8SBjoern A. Zeeb if (!rtwdev->ap_active)
246490aac0d8SBjoern A. Zeeb return;
246590aac0d8SBjoern A. Zeeb
246690aac0d8SBjoern A. Zeeb if (enable) {
246790aac0d8SBjoern A. Zeeb rtw_write32_set(rtwdev, REG_BCN_CTRL, BIT_EN_BCN_FUNCTION);
246890aac0d8SBjoern A. Zeeb rtw_write32_clr(rtwdev, REG_TXPAUSE, BIT_HIGH_QUEUE);
246990aac0d8SBjoern A. Zeeb } else {
247090aac0d8SBjoern A. Zeeb rtw_write32_clr(rtwdev, REG_BCN_CTRL, BIT_EN_BCN_FUNCTION);
247190aac0d8SBjoern A. Zeeb rtw_write32_set(rtwdev, REG_TXPAUSE, BIT_HIGH_QUEUE);
247290aac0d8SBjoern A. Zeeb }
247390aac0d8SBjoern A. Zeeb }
247490aac0d8SBjoern A. Zeeb
24752774f206SBjoern A. Zeeb MODULE_AUTHOR("Realtek Corporation");
24762774f206SBjoern A. Zeeb MODULE_DESCRIPTION("Realtek 802.11ac wireless core module");
24772774f206SBjoern A. Zeeb MODULE_LICENSE("Dual BSD/GPL");
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